sbic.c revision 1.11 1 1.11 chopps /* $NetBSD: sbic.c,v 1.11 1995/03/02 02:24:06 chopps Exp $ */
2 1.6 cgd
3 1.1 chopps /*
4 1.1 chopps * Copyright (c) 1994 Christian E. Hopps
5 1.1 chopps * Copyright (c) 1990 The Regents of the University of California.
6 1.1 chopps * All rights reserved.
7 1.1 chopps *
8 1.1 chopps * This code is derived from software contributed to Berkeley by
9 1.1 chopps * Van Jacobson of Lawrence Berkeley Laboratory.
10 1.1 chopps *
11 1.1 chopps * Redistribution and use in source and binary forms, with or without
12 1.1 chopps * modification, are permitted provided that the following conditions
13 1.1 chopps * are met:
14 1.1 chopps * 1. Redistributions of source code must retain the above copyright
15 1.1 chopps * notice, this list of conditions and the following disclaimer.
16 1.1 chopps * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 chopps * notice, this list of conditions and the following disclaimer in the
18 1.1 chopps * documentation and/or other materials provided with the distribution.
19 1.1 chopps * 3. All advertising materials mentioning features or use of this software
20 1.1 chopps * must display the following acknowledgement:
21 1.1 chopps * This product includes software developed by the University of
22 1.1 chopps * California, Berkeley and its contributors.
23 1.1 chopps * 4. Neither the name of the University nor the names of its contributors
24 1.1 chopps * may be used to endorse or promote products derived from this software
25 1.1 chopps * without specific prior written permission.
26 1.1 chopps *
27 1.1 chopps * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
28 1.1 chopps * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
29 1.1 chopps * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
30 1.1 chopps * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
31 1.1 chopps * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
32 1.1 chopps * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
33 1.1 chopps * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
34 1.1 chopps * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
35 1.1 chopps * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
36 1.1 chopps * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
37 1.1 chopps * SUCH DAMAGE.
38 1.1 chopps *
39 1.1 chopps * @(#)scsi.c 7.5 (Berkeley) 5/4/91
40 1.1 chopps */
41 1.1 chopps
42 1.1 chopps /*
43 1.1 chopps * AMIGA AMD 33C93 scsi adaptor driver
44 1.1 chopps */
45 1.1 chopps
46 1.1 chopps /* need to know if any tapes have been configured */
47 1.1 chopps #include "st.h"
48 1.1 chopps
49 1.1 chopps #include <sys/param.h>
50 1.1 chopps #include <sys/systm.h>
51 1.1 chopps #include <sys/device.h>
52 1.10 chopps #include <sys/disklabel.h>
53 1.10 chopps #include <sys/dkstat.h>
54 1.1 chopps #include <sys/buf.h>
55 1.1 chopps #include <scsi/scsi_all.h>
56 1.1 chopps #include <scsi/scsiconf.h>
57 1.1 chopps #include <vm/vm.h>
58 1.1 chopps #include <vm/vm_kern.h>
59 1.1 chopps #include <vm/vm_page.h>
60 1.1 chopps #include <machine/pmap.h>
61 1.1 chopps #include <machine/cpu.h>
62 1.1 chopps #include <amiga/amiga/device.h>
63 1.1 chopps #include <amiga/amiga/custom.h>
64 1.10 chopps #include <amiga/amiga/isr.h>
65 1.1 chopps #include <amiga/dev/dmavar.h>
66 1.1 chopps #include <amiga/dev/sbicreg.h>
67 1.1 chopps #include <amiga/dev/sbicvar.h>
68 1.1 chopps
69 1.1 chopps /*
70 1.1 chopps * SCSI delays
71 1.1 chopps * In u-seconds, primarily for state changes on the SPC.
72 1.1 chopps */
73 1.1 chopps #define SBIC_CMD_WAIT 50000 /* wait per step of 'immediate' cmds */
74 1.1 chopps #define SBIC_DATA_WAIT 50000 /* wait per data in/out step */
75 1.1 chopps #define SBIC_INIT_WAIT 50000 /* wait per step (both) during init */
76 1.1 chopps
77 1.1 chopps #define b_cylin b_resid
78 1.1 chopps #define SBIC_WAIT(regs, until, timeo) sbicwait(regs, until, timeo, __LINE__)
79 1.1 chopps
80 1.1 chopps extern u_int kvtop();
81 1.1 chopps
82 1.7 chopps int sbicicmd __P((struct sbic_softc *, int, int, void *, int, void *, int,u_char));
83 1.1 chopps int sbicgo __P((struct sbic_softc *, struct scsi_xfer *));
84 1.1 chopps int sbicdmaok __P((struct sbic_softc *, struct scsi_xfer *));
85 1.1 chopps int sbicgetsense __P((struct sbic_softc *, struct scsi_xfer *));
86 1.1 chopps int sbicwait __P((sbic_regmap_p, char, int , int));
87 1.1 chopps int sbiccheckdmap __P((void *, u_long, u_long));
88 1.7 chopps int sbicselectbus __P((struct sbic_softc *, sbic_regmap_p, u_char, u_char, u_char));
89 1.1 chopps int sbicxfstart __P((sbic_regmap_p, int, u_char, int));
90 1.1 chopps int sbicxfout __P((sbic_regmap_p regs, int, void *, int));
91 1.1 chopps int sbicfromscsiperiod __P((struct sbic_softc *, sbic_regmap_p, int));
92 1.1 chopps int sbictoscsiperiod __P((struct sbic_softc *, sbic_regmap_p, int));
93 1.1 chopps int sbicintr __P((struct sbic_softc *));
94 1.1 chopps void sbicxfin __P((sbic_regmap_p regs, int, void *));
95 1.1 chopps void sbicxfdone __P((struct sbic_softc *, sbic_regmap_p, int));
96 1.1 chopps void sbicabort __P((struct sbic_softc *, sbic_regmap_p, char *));
97 1.1 chopps void sbicerror __P((struct sbic_softc *, sbic_regmap_p, u_char));
98 1.1 chopps void sbicstart __P((struct sbic_softc *));
99 1.1 chopps void sbicreset __P((struct sbic_softc *));
100 1.1 chopps void sbicsetdelay __P((int));
101 1.1 chopps void sbic_scsidone __P((struct sbic_softc *, int));
102 1.1 chopps void sbic_donextcmd __P((struct sbic_softc *));
103 1.1 chopps
104 1.1 chopps /*
105 1.1 chopps * Synch xfer parameters, and timing conversions
106 1.1 chopps */
107 1.1 chopps int sbic_min_period = SBIC_SYN_MIN_PERIOD; /* in cycles = f(ICLK,FSn) */
108 1.1 chopps int sbic_max_offset = SBIC_SYN_MAX_OFFSET; /* pure number */
109 1.1 chopps
110 1.1 chopps int sbic_cmd_wait = SBIC_CMD_WAIT;
111 1.1 chopps int sbic_data_wait = SBIC_DATA_WAIT;
112 1.1 chopps int sbic_init_wait = SBIC_INIT_WAIT;
113 1.1 chopps
114 1.1 chopps /*
115 1.1 chopps * was broken before.. now if you want this you get it for all drives
116 1.1 chopps * on sbic controllers.
117 1.1 chopps */
118 1.9 chopps int sbic_inhibit_sync = 0;
119 1.1 chopps int sbic_clock_override = 0;
120 1.1 chopps int sbic_no_dma = 0;
121 1.1 chopps
122 1.1 chopps #ifdef DEBUG
123 1.10 chopps int sbicdma_ops = 0; /* total DMA operations */
124 1.10 chopps int sbicdma_bounces = 0; /* number operations using bounce buffer */
125 1.10 chopps int sbicdma_hits = 0; /* number of DMA chains that were contiguous */
126 1.10 chopps int sbicdma_misses = 0; /* number of DMA chains that were not contiguous */
127 1.1 chopps #define QPRINTF(a) if (sbic_debug > 1) printf a
128 1.1 chopps int sbic_debug = 0;
129 1.1 chopps int sync_debug = 0;
130 1.1 chopps int sbic_dma_debug = 0;
131 1.1 chopps #else
132 1.1 chopps #define QPRINTF
133 1.1 chopps #endif
134 1.1 chopps
135 1.1 chopps /*
136 1.1 chopps * default minphys routine for sbic based controllers
137 1.1 chopps */
138 1.1 chopps void
139 1.1 chopps sbic_minphys(bp)
140 1.1 chopps struct buf *bp;
141 1.1 chopps {
142 1.1 chopps /*
143 1.1 chopps * no max transfer at this level
144 1.1 chopps */
145 1.1 chopps }
146 1.1 chopps
147 1.1 chopps /*
148 1.1 chopps * used by specific sbic controller
149 1.1 chopps *
150 1.1 chopps * it appears that the higher level code does nothing with LUN's
151 1.1 chopps * so I will too. I could plug it in, however so could they
152 1.1 chopps * in scsi_scsi_cmd().
153 1.1 chopps */
154 1.1 chopps int
155 1.1 chopps sbic_scsicmd(xs)
156 1.1 chopps struct scsi_xfer *xs;
157 1.1 chopps {
158 1.1 chopps struct sbic_pending *pendp;
159 1.1 chopps struct sbic_softc *dev;
160 1.1 chopps struct scsi_link *slp;
161 1.1 chopps int flags, s;
162 1.1 chopps
163 1.1 chopps slp = xs->sc_link;
164 1.1 chopps dev = slp->adapter_softc;
165 1.1 chopps flags = xs->flags;
166 1.1 chopps
167 1.1 chopps if (flags & SCSI_DATA_UIO)
168 1.1 chopps panic("sbic: scsi data uio requested");
169 1.1 chopps
170 1.8 chopps if (dev->sc_xs && flags & SCSI_POLL)
171 1.1 chopps panic("sbic_scsicmd: busy");
172 1.1 chopps
173 1.1 chopps s = splbio();
174 1.1 chopps pendp = &dev->sc_xsstore[slp->target][slp->lun];
175 1.1 chopps if (pendp->xs) {
176 1.1 chopps splx(s);
177 1.1 chopps return(TRY_AGAIN_LATER);
178 1.1 chopps }
179 1.1 chopps
180 1.1 chopps if (dev->sc_xs) {
181 1.1 chopps pendp->xs = xs;
182 1.1 chopps TAILQ_INSERT_TAIL(&dev->sc_xslist, pendp, link);
183 1.1 chopps splx(s);
184 1.1 chopps return(SUCCESSFULLY_QUEUED);
185 1.1 chopps }
186 1.1 chopps pendp->xs = NULL;
187 1.1 chopps dev->sc_xs = xs;
188 1.1 chopps splx(s);
189 1.1 chopps
190 1.1 chopps /*
191 1.1 chopps * nothing is pending do it now.
192 1.1 chopps */
193 1.1 chopps sbic_donextcmd(dev);
194 1.1 chopps
195 1.8 chopps if (flags & SCSI_POLL)
196 1.1 chopps return(COMPLETE);
197 1.1 chopps return(SUCCESSFULLY_QUEUED);
198 1.1 chopps }
199 1.1 chopps
200 1.1 chopps /*
201 1.1 chopps * entered with dev->sc_xs pointing to the next xfer to perform
202 1.1 chopps */
203 1.1 chopps void
204 1.1 chopps sbic_donextcmd(dev)
205 1.1 chopps struct sbic_softc *dev;
206 1.1 chopps {
207 1.1 chopps struct scsi_xfer *xs;
208 1.1 chopps struct scsi_link *slp;
209 1.1 chopps int flags, phase, stat;
210 1.1 chopps
211 1.1 chopps xs = dev->sc_xs;
212 1.1 chopps slp = xs->sc_link;
213 1.1 chopps flags = xs->flags;
214 1.1 chopps
215 1.1 chopps if (flags & SCSI_DATA_IN)
216 1.1 chopps phase = DATA_IN_PHASE;
217 1.1 chopps else if (flags & SCSI_DATA_OUT)
218 1.1 chopps phase = DATA_OUT_PHASE;
219 1.1 chopps else
220 1.1 chopps phase = STATUS_PHASE;
221 1.1 chopps
222 1.1 chopps if (flags & SCSI_RESET)
223 1.1 chopps sbicreset(dev);
224 1.1 chopps
225 1.1 chopps dev->sc_stat[0] = -1;
226 1.7 chopps xs->cmd->bytes[0] |= slp->lun << 5;
227 1.8 chopps if (phase == STATUS_PHASE || flags & SCSI_POLL ||
228 1.1 chopps sbicdmaok(dev, xs) == 0)
229 1.7 chopps stat = sbicicmd(dev, slp->target, slp->lun, xs->cmd,
230 1.7 chopps xs->cmdlen, xs->data, xs->datalen, phase);
231 1.1 chopps else if (sbicgo(dev, xs) == 0)
232 1.1 chopps return;
233 1.1 chopps else
234 1.1 chopps stat = dev->sc_stat[0];
235 1.1 chopps
236 1.1 chopps sbic_scsidone(dev, stat);
237 1.1 chopps }
238 1.1 chopps
239 1.1 chopps void
240 1.1 chopps sbic_scsidone(dev, stat)
241 1.1 chopps struct sbic_softc *dev;
242 1.1 chopps int stat;
243 1.1 chopps {
244 1.1 chopps struct sbic_pending *pendp;
245 1.1 chopps struct scsi_xfer *xs;
246 1.1 chopps int s, donext;
247 1.1 chopps
248 1.1 chopps xs = dev->sc_xs;
249 1.1 chopps #ifdef DIAGNOSTIC
250 1.1 chopps if (xs == NULL)
251 1.1 chopps panic("sbic_scsidone");
252 1.1 chopps #endif
253 1.10 chopps #if 1
254 1.10 chopps if (((struct device *)(xs->sc_link->device_softc))->dv_unit < dk_ndrive)
255 1.10 chopps ++dk_xfer[((struct device *)(xs->sc_link->device_softc))->dv_unit];
256 1.10 chopps #endif
257 1.1 chopps /*
258 1.1 chopps * is this right?
259 1.1 chopps */
260 1.1 chopps xs->status = stat;
261 1.1 chopps
262 1.8 chopps if (stat == 0)
263 1.1 chopps xs->resid = 0;
264 1.1 chopps else {
265 1.1 chopps switch(stat) {
266 1.1 chopps case SCSI_CHECK:
267 1.1 chopps if (stat = sbicgetsense(dev, xs))
268 1.1 chopps goto bad_sense;
269 1.1 chopps xs->error = XS_SENSE;
270 1.1 chopps break;
271 1.1 chopps case SCSI_BUSY:
272 1.1 chopps xs->error = XS_BUSY;
273 1.1 chopps break;
274 1.1 chopps bad_sense:
275 1.1 chopps default:
276 1.1 chopps xs->error = XS_DRIVER_STUFFUP;
277 1.1 chopps QPRINTF(("sbic_scsicmd() bad %x\n", stat));
278 1.1 chopps break;
279 1.1 chopps }
280 1.1 chopps }
281 1.1 chopps xs->flags |= ITSDONE;
282 1.1 chopps
283 1.1 chopps /*
284 1.1 chopps * grab next command before scsi_done()
285 1.1 chopps * this way no single device can hog scsi resources.
286 1.1 chopps */
287 1.1 chopps s = splbio();
288 1.1 chopps pendp = dev->sc_xslist.tqh_first;
289 1.1 chopps if (pendp == NULL) {
290 1.1 chopps donext = 0;
291 1.1 chopps dev->sc_xs = NULL;
292 1.1 chopps } else {
293 1.1 chopps donext = 1;
294 1.1 chopps TAILQ_REMOVE(&dev->sc_xslist, pendp, link);
295 1.1 chopps dev->sc_xs = pendp->xs;
296 1.1 chopps pendp->xs = NULL;
297 1.1 chopps }
298 1.1 chopps splx(s);
299 1.1 chopps scsi_done(xs);
300 1.1 chopps
301 1.1 chopps if (donext)
302 1.1 chopps sbic_donextcmd(dev);
303 1.1 chopps }
304 1.1 chopps
305 1.1 chopps int
306 1.1 chopps sbicgetsense(dev, xs)
307 1.1 chopps struct sbic_softc *dev;
308 1.1 chopps struct scsi_xfer *xs;
309 1.1 chopps {
310 1.1 chopps struct scsi_sense rqs;
311 1.1 chopps struct scsi_link *slp;
312 1.1 chopps int stat;
313 1.1 chopps
314 1.1 chopps slp = xs->sc_link;
315 1.1 chopps
316 1.8 chopps rqs.opcode = REQUEST_SENSE;
317 1.1 chopps rqs.byte2 = slp->lun << 5;
318 1.2 chopps #ifdef not_yet
319 1.1 chopps rqs.length = xs->req_sense_length ? xs->req_sense_length :
320 1.1 chopps sizeof(xs->sense);
321 1.2 chopps #else
322 1.2 chopps rqs.length = sizeof(xs->sense);
323 1.2 chopps #endif
324 1.2 chopps
325 1.1 chopps rqs.unused[0] = rqs.unused[1] = rqs.control = 0;
326 1.1 chopps
327 1.7 chopps return(sbicicmd(dev, slp->target, slp->lun, &rqs, sizeof(rqs),
328 1.7 chopps &xs->sense, rqs.length, DATA_IN_PHASE));
329 1.1 chopps }
330 1.1 chopps
331 1.1 chopps int
332 1.1 chopps sbicdmaok(dev, xs)
333 1.1 chopps struct sbic_softc *dev;
334 1.1 chopps struct scsi_xfer *xs;
335 1.1 chopps {
336 1.1 chopps if (sbic_no_dma || xs->datalen & 0x1 || (u_int)xs->data & 0x3)
337 1.1 chopps return(0);
338 1.1 chopps /*
339 1.1 chopps * controller supports dma to any addresses?
340 1.1 chopps */
341 1.1 chopps else if ((dev->sc_flags & SBICF_BADDMA) == 0)
342 1.1 chopps return(1);
343 1.1 chopps /*
344 1.1 chopps * this address is ok for dma?
345 1.1 chopps */
346 1.1 chopps else if (sbiccheckdmap(xs->data, xs->datalen, dev->sc_dmamask) == 0)
347 1.1 chopps return(1);
348 1.1 chopps /*
349 1.1 chopps * we have a bounce buffer?
350 1.1 chopps */
351 1.1 chopps else if (dev->sc_dmabuffer)
352 1.1 chopps return(1);
353 1.1 chopps return(0);
354 1.1 chopps }
355 1.1 chopps
356 1.1 chopps
357 1.1 chopps int
358 1.1 chopps sbicwait(regs, until, timeo, line)
359 1.1 chopps sbic_regmap_p regs;
360 1.1 chopps char until;
361 1.1 chopps int timeo;
362 1.1 chopps int line;
363 1.1 chopps {
364 1.1 chopps u_char val;
365 1.1 chopps int csr;
366 1.1 chopps
367 1.1 chopps if (timeo == 0)
368 1.1 chopps timeo = 1000000; /* some large value.. */
369 1.1 chopps
370 1.1 chopps GET_SBIC_asr(regs,val);
371 1.1 chopps while ((val & until) == 0) {
372 1.1 chopps if (timeo-- == 0) {
373 1.1 chopps GET_SBIC_csr(regs, csr);
374 1.1 chopps printf("sbicwait TIMEO @%d with asr=x%x csr=x%x\n",
375 1.1 chopps line, val, csr);
376 1.1 chopps break;
377 1.1 chopps }
378 1.1 chopps DELAY(1);
379 1.1 chopps GET_SBIC_asr(regs,val);
380 1.1 chopps }
381 1.1 chopps return(val);
382 1.1 chopps }
383 1.1 chopps
384 1.1 chopps void
385 1.1 chopps sbicabort(dev, regs, where)
386 1.1 chopps struct sbic_softc *dev;
387 1.1 chopps sbic_regmap_p regs;
388 1.1 chopps char *where;
389 1.1 chopps {
390 1.1 chopps u_char csr, asr;
391 1.1 chopps
392 1.1 chopps GET_SBIC_csr(regs, csr);
393 1.1 chopps GET_SBIC_asr(regs, asr);
394 1.1 chopps
395 1.1 chopps printf ("%s: abort %s: csr = 0x%02x, asr = 0x%02x\n",
396 1.1 chopps dev->sc_dev.dv_xname, where, csr, asr);
397 1.1 chopps
398 1.1 chopps if (dev->sc_flags & SBICF_SELECTED) {
399 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_ABORT);
400 1.1 chopps WAIT_CIP(regs);
401 1.1 chopps
402 1.1 chopps GET_SBIC_asr(regs, asr);
403 1.1 chopps if (asr & (SBIC_ASR_BSY|SBIC_ASR_LCI)) {
404 1.1 chopps /* ok, get more drastic.. */
405 1.1 chopps
406 1.1 chopps SET_SBIC_cmd (regs, SBIC_CMD_RESET);
407 1.1 chopps DELAY(25);
408 1.1 chopps SBIC_WAIT(regs, SBIC_ASR_INT, 0);
409 1.1 chopps /* clears interrupt also */
410 1.1 chopps GET_SBIC_csr (regs, csr);
411 1.1 chopps
412 1.1 chopps dev->sc_flags &= ~SBICF_SELECTED;
413 1.1 chopps return;
414 1.1 chopps }
415 1.1 chopps
416 1.1 chopps do {
417 1.1 chopps SBIC_WAIT (regs, SBIC_ASR_INT, 0);
418 1.1 chopps GET_SBIC_csr (regs, csr);
419 1.1 chopps } while ((csr != SBIC_CSR_DISC) && (csr != SBIC_CSR_DISC_1)
420 1.1 chopps && (csr != SBIC_CSR_CMD_INVALID));
421 1.1 chopps
422 1.1 chopps /* lets just hope it worked.. */
423 1.1 chopps dev->sc_flags &= ~SBICF_SELECTED;
424 1.1 chopps }
425 1.1 chopps }
426 1.1 chopps
427 1.1 chopps /*
428 1.1 chopps * XXX Set/reset long delays.
429 1.1 chopps *
430 1.1 chopps * if delay == 0, reset default delays
431 1.1 chopps * if delay < 0, set both delays to default long initialization values
432 1.1 chopps * if delay > 0, set both delays to this value
433 1.1 chopps *
434 1.1 chopps * Used when a devices is expected to respond slowly (e.g. during
435 1.1 chopps * initialization).
436 1.1 chopps */
437 1.1 chopps void
438 1.1 chopps sbicsetdelay(del)
439 1.1 chopps int del;
440 1.1 chopps {
441 1.1 chopps static int saved_cmd_wait, saved_data_wait;
442 1.1 chopps
443 1.1 chopps if (del) {
444 1.1 chopps saved_cmd_wait = sbic_cmd_wait;
445 1.1 chopps saved_data_wait = sbic_data_wait;
446 1.1 chopps if (del > 0)
447 1.1 chopps sbic_cmd_wait = sbic_data_wait = del;
448 1.1 chopps else
449 1.1 chopps sbic_cmd_wait = sbic_data_wait = sbic_init_wait;
450 1.1 chopps } else {
451 1.1 chopps sbic_cmd_wait = saved_cmd_wait;
452 1.1 chopps sbic_data_wait = saved_data_wait;
453 1.1 chopps }
454 1.1 chopps }
455 1.1 chopps
456 1.1 chopps void
457 1.1 chopps sbicreset(dev)
458 1.1 chopps struct sbic_softc *dev;
459 1.1 chopps {
460 1.1 chopps sbic_regmap_p regs;
461 1.1 chopps u_int i, s;
462 1.1 chopps u_char my_id, csr;
463 1.1 chopps
464 1.1 chopps regs = dev->sc_sbicp;
465 1.1 chopps
466 1.1 chopps if (dev->sc_flags & SBICF_ALIVE)
467 1.1 chopps sbicabort(dev, regs, "reset");
468 1.1 chopps
469 1.1 chopps s = splbio();
470 1.1 chopps /* preserve our ID for now */
471 1.1 chopps GET_SBIC_myid (regs, my_id);
472 1.1 chopps my_id &= SBIC_ID_MASK;
473 1.1 chopps
474 1.1 chopps if (dev->sc_clkfreq < 110)
475 1.1 chopps my_id |= SBIC_ID_FS_8_10;
476 1.1 chopps else if (dev->sc_clkfreq < 160)
477 1.1 chopps my_id |= SBIC_ID_FS_12_15;
478 1.1 chopps else if (dev->sc_clkfreq < 210)
479 1.1 chopps my_id |= SBIC_ID_FS_16_20;
480 1.1 chopps
481 1.1 chopps my_id |= SBIC_ID_EAF /*| SBIC_ID_EHP*/ ;
482 1.1 chopps
483 1.1 chopps SET_SBIC_myid(regs, my_id);
484 1.1 chopps
485 1.1 chopps /*
486 1.1 chopps * Disable interrupts (in dmainit) then reset the chip
487 1.1 chopps */
488 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_RESET);
489 1.1 chopps DELAY(25);
490 1.1 chopps SBIC_WAIT(regs, SBIC_ASR_INT, 0);
491 1.1 chopps GET_SBIC_csr(regs, csr); /* clears interrupt also */
492 1.1 chopps
493 1.1 chopps /*
494 1.1 chopps * Set up various chip parameters
495 1.1 chopps */
496 1.1 chopps SET_SBIC_control(regs, SBIC_CTL_EDI | SBIC_CTL_IDI
497 1.1 chopps | SBIC_MACHINE_DMA_MODE);
498 1.1 chopps /*
499 1.1 chopps * don't allow (re)selection (SBIC_RID_ES)
500 1.1 chopps * until we can handle target mode!!
501 1.1 chopps */
502 1.1 chopps SET_SBIC_rselid(regs, 0);
503 1.1 chopps SET_SBIC_syn(regs, 0); /* asynch for now */
504 1.1 chopps
505 1.1 chopps /*
506 1.1 chopps * anything else was zeroed by reset
507 1.1 chopps */
508 1.1 chopps splx(s);
509 1.1 chopps
510 1.1 chopps dev->sc_flags |= SBICF_ALIVE;
511 1.1 chopps dev->sc_flags &= ~SBICF_SELECTED;
512 1.1 chopps }
513 1.1 chopps
514 1.1 chopps void
515 1.1 chopps sbicerror(dev, regs, csr)
516 1.1 chopps struct sbic_softc *dev;
517 1.1 chopps sbic_regmap_p regs;
518 1.1 chopps u_char csr;
519 1.1 chopps {
520 1.1 chopps struct scsi_xfer *xs;
521 1.1 chopps
522 1.1 chopps xs = dev->sc_xs;
523 1.1 chopps
524 1.1 chopps #ifdef DIAGNOSTIC
525 1.1 chopps if (xs == NULL)
526 1.1 chopps panic("sbicerror");
527 1.1 chopps #endif
528 1.1 chopps if (xs->flags & SCSI_SILENT)
529 1.1 chopps return;
530 1.1 chopps
531 1.1 chopps printf("%s: ", dev->sc_dev.dv_xname);
532 1.1 chopps printf("csr == 0x%02i\n", csr); /* XXX */
533 1.1 chopps }
534 1.1 chopps
535 1.1 chopps /*
536 1.1 chopps * select the bus, return when selected or error.
537 1.1 chopps */
538 1.1 chopps int
539 1.7 chopps sbicselectbus(dev, regs, target, lun, our_addr)
540 1.1 chopps struct sbic_softc *dev;
541 1.1 chopps sbic_regmap_p regs;
542 1.7 chopps u_char target, lun, our_addr;
543 1.1 chopps {
544 1.1 chopps u_char asr, csr, id;
545 1.1 chopps
546 1.1 chopps QPRINTF(("sbicselectbus %d\n", target));
547 1.1 chopps
548 1.1 chopps /*
549 1.1 chopps * if we're already selected, return (XXXX panic maybe?)
550 1.1 chopps */
551 1.1 chopps if (dev->sc_flags & SBICF_SELECTED)
552 1.1 chopps return(1);
553 1.1 chopps
554 1.1 chopps /*
555 1.1 chopps * issue select
556 1.1 chopps */
557 1.1 chopps SBIC_TC_PUT(regs, 0);
558 1.1 chopps SET_SBIC_selid(regs, target);
559 1.1 chopps SET_SBIC_timeo(regs, SBIC_TIMEOUT(250,dev->sc_clkfreq));
560 1.1 chopps
561 1.1 chopps /*
562 1.1 chopps * set sync or async
563 1.1 chopps */
564 1.1 chopps if (dev->sc_sync[target].state == SYNC_DONE)
565 1.1 chopps SET_SBIC_syn(regs, SBIC_SYN (dev->sc_sync[target].offset,
566 1.1 chopps dev->sc_sync[target].period));
567 1.1 chopps else
568 1.1 chopps SET_SBIC_syn(regs, SBIC_SYN (0, sbic_min_period));
569 1.1 chopps
570 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_SEL_ATN);
571 1.1 chopps
572 1.1 chopps /*
573 1.1 chopps * wait for select (merged from seperate function may need
574 1.1 chopps * cleanup)
575 1.1 chopps */
576 1.1 chopps WAIT_CIP(regs);
577 1.1 chopps do {
578 1.1 chopps SBIC_WAIT(regs, SBIC_ASR_INT, 0);
579 1.1 chopps GET_SBIC_csr (regs, csr);
580 1.1 chopps QPRINTF(("%02x ", csr));
581 1.1 chopps } while (csr != (SBIC_CSR_MIS_2|MESG_OUT_PHASE)
582 1.1 chopps && csr != (SBIC_CSR_MIS_2|CMD_PHASE) && csr != SBIC_CSR_SEL_TIMEO);
583 1.1 chopps
584 1.1 chopps if (csr == (SBIC_CSR_MIS_2|CMD_PHASE))
585 1.1 chopps dev->sc_flags |= SBICF_SELECTED; /* device ignored ATN */
586 1.1 chopps else if (csr == (SBIC_CSR_MIS_2|MESG_OUT_PHASE)) {
587 1.1 chopps /*
588 1.1 chopps * Send identify message
589 1.1 chopps * (SCSI-2 requires an identify msg (?))
590 1.1 chopps */
591 1.1 chopps GET_SBIC_selid(regs, id);
592 1.1 chopps
593 1.1 chopps /*
594 1.1 chopps * handle drives that don't want to be asked
595 1.1 chopps * whether to go sync at all.
596 1.1 chopps */
597 1.1 chopps if (sbic_inhibit_sync && dev->sc_sync[id].state == SYNC_START) {
598 1.1 chopps #ifdef DEBUG
599 1.1 chopps if (sync_debug)
600 1.1 chopps printf("Forcing target %d asynchronous.\n", id);
601 1.1 chopps #endif
602 1.1 chopps dev->sc_sync[id].offset = 0;
603 1.1 chopps dev->sc_sync[id].period = sbic_min_period;
604 1.1 chopps dev->sc_sync[id].state = SYNC_DONE;
605 1.1 chopps }
606 1.1 chopps
607 1.1 chopps
608 1.1 chopps if (dev->sc_sync[id].state != SYNC_START)
609 1.7 chopps SEND_BYTE (regs, MSG_IDENTIFY | lun);
610 1.1 chopps else {
611 1.1 chopps /*
612 1.1 chopps * try to initiate a sync transfer.
613 1.1 chopps * So compose the sync message we're going
614 1.1 chopps * to send to the target
615 1.1 chopps */
616 1.1 chopps
617 1.1 chopps #ifdef DEBUG
618 1.1 chopps if (sync_debug)
619 1.1 chopps printf("Sending sync request to target %d ... ",
620 1.1 chopps id);
621 1.1 chopps #endif
622 1.1 chopps /*
623 1.1 chopps * setup scsi message sync message request
624 1.1 chopps */
625 1.7 chopps dev->sc_msg[0] = MSG_IDENTIFY | lun;
626 1.1 chopps dev->sc_msg[1] = MSG_EXT_MESSAGE;
627 1.1 chopps dev->sc_msg[2] = 3;
628 1.1 chopps dev->sc_msg[3] = MSG_SYNC_REQ;
629 1.1 chopps dev->sc_msg[4] = sbictoscsiperiod(dev, regs,
630 1.1 chopps sbic_min_period);
631 1.1 chopps dev->sc_msg[5] = sbic_max_offset;
632 1.1 chopps
633 1.1 chopps if (sbicxfstart(regs, 6, MESG_OUT_PHASE, sbic_cmd_wait))
634 1.1 chopps sbicxfout(regs, 6, dev->sc_msg, MESG_OUT_PHASE);
635 1.1 chopps
636 1.1 chopps dev->sc_sync[id].state = SYNC_SENT;
637 1.1 chopps #ifdef DEBUG
638 1.1 chopps if (sync_debug)
639 1.1 chopps printf ("sent\n");
640 1.1 chopps #endif
641 1.1 chopps }
642 1.1 chopps
643 1.1 chopps SBIC_WAIT (regs, SBIC_ASR_INT, 0);
644 1.1 chopps GET_SBIC_csr (regs, csr);
645 1.1 chopps QPRINTF(("[%02x]", csr));
646 1.1 chopps #ifdef DEBUG
647 1.1 chopps if (sync_debug && dev->sc_sync[id].state == SYNC_SENT)
648 1.1 chopps printf("csr-result of last msgout: 0x%x\n", csr);
649 1.1 chopps #endif
650 1.1 chopps
651 1.1 chopps if (csr != SBIC_CSR_SEL_TIMEO)
652 1.1 chopps dev->sc_flags |= SBICF_SELECTED;
653 1.1 chopps }
654 1.1 chopps
655 1.1 chopps QPRINTF(("\n"));
656 1.1 chopps
657 1.1 chopps return(csr == SBIC_CSR_SEL_TIMEO);
658 1.1 chopps }
659 1.1 chopps
660 1.1 chopps int
661 1.1 chopps sbicxfstart(regs, len, phase, wait)
662 1.1 chopps sbic_regmap_p regs;
663 1.1 chopps int len, wait;
664 1.1 chopps u_char phase;
665 1.1 chopps {
666 1.1 chopps u_char id;
667 1.1 chopps
668 1.1 chopps if (phase == DATA_IN_PHASE || phase == MESG_IN_PHASE) {
669 1.1 chopps GET_SBIC_selid (regs, id);
670 1.1 chopps id |= SBIC_SID_FROM_SCSI;
671 1.1 chopps SET_SBIC_selid (regs, id);
672 1.1 chopps SBIC_TC_PUT (regs, (unsigned)len);
673 1.1 chopps } else if (phase == DATA_OUT_PHASE || phase == MESG_OUT_PHASE
674 1.1 chopps || phase == CMD_PHASE)
675 1.1 chopps SBIC_TC_PUT (regs, (unsigned)len);
676 1.1 chopps else
677 1.1 chopps SBIC_TC_PUT (regs, 0);
678 1.1 chopps QPRINTF(("sbicxfstart %d, %d, %d\n", len, phase, wait));
679 1.1 chopps
680 1.1 chopps return(1);
681 1.1 chopps }
682 1.1 chopps
683 1.1 chopps int
684 1.1 chopps sbicxfout(regs, len, bp, phase)
685 1.1 chopps sbic_regmap_p regs;
686 1.1 chopps int len;
687 1.1 chopps void *bp;
688 1.1 chopps int phase;
689 1.1 chopps {
690 1.1 chopps u_char orig_csr, csr, asr, *buf;
691 1.1 chopps int wait;
692 1.1 chopps
693 1.1 chopps buf = bp;
694 1.1 chopps wait = sbic_data_wait;
695 1.1 chopps
696 1.1 chopps QPRINTF(("sbicxfout {%d} %02x %02x %02x %02x %02x "
697 1.1 chopps "%02x %02x %02x %02x %02x\n", len, buf[0], buf[1], buf[2],
698 1.1 chopps buf[3], buf[4], buf[5], buf[6], buf[7], buf[8], buf[9]));
699 1.1 chopps
700 1.1 chopps GET_SBIC_csr (regs, orig_csr);
701 1.1 chopps
702 1.1 chopps /*
703 1.1 chopps * sigh.. WD-PROTO strikes again.. sending the command in one go
704 1.1 chopps * causes the chip to lock up if talking to certain (misbehaving?)
705 1.1 chopps * targets. Anyway, this procedure should work for all targets, but
706 1.1 chopps * it's slightly slower due to the overhead
707 1.1 chopps */
708 1.1 chopps WAIT_CIP (regs);
709 1.1 chopps SET_SBIC_cmd (regs, SBIC_CMD_XFER_INFO);
710 1.1 chopps for (;len > 0; len--) {
711 1.1 chopps GET_SBIC_asr (regs, asr);
712 1.1 chopps while ((asr & SBIC_ASR_DBR) == 0) {
713 1.1 chopps if ((asr & SBIC_ASR_INT) || --wait < 0) {
714 1.1 chopps #ifdef DEBUG
715 1.1 chopps if (sbic_debug)
716 1.1 chopps printf("sbicxfout fail: l%d i%x w%d\n",
717 1.1 chopps len, asr, wait);
718 1.1 chopps #endif
719 1.1 chopps return (len);
720 1.1 chopps }
721 1.1 chopps DELAY(1);
722 1.1 chopps GET_SBIC_asr (regs, asr);
723 1.1 chopps }
724 1.1 chopps
725 1.1 chopps SET_SBIC_data (regs, *buf);
726 1.1 chopps buf++;
727 1.1 chopps }
728 1.1 chopps
729 1.1 chopps QPRINTF(("sbicxfout done\n"));
730 1.1 chopps /*
731 1.1 chopps * this leaves with one csr to be read
732 1.1 chopps */
733 1.1 chopps return(0);
734 1.1 chopps }
735 1.1 chopps
736 1.1 chopps void
737 1.1 chopps sbicxfin(regs, len, bp)
738 1.1 chopps sbic_regmap_p regs;
739 1.1 chopps int len;
740 1.1 chopps void *bp;
741 1.1 chopps {
742 1.1 chopps int wait;
743 1.1 chopps u_char *obp, *buf;
744 1.1 chopps u_char orig_csr, csr, asr;
745 1.1 chopps
746 1.1 chopps wait = sbic_data_wait;
747 1.1 chopps obp = bp;
748 1.1 chopps buf = bp;
749 1.1 chopps
750 1.1 chopps GET_SBIC_csr (regs, orig_csr);
751 1.1 chopps
752 1.1 chopps QPRINTF(("sbicxfin %d, csr=%02x\n", len, orig_csr));
753 1.1 chopps
754 1.1 chopps WAIT_CIP (regs);
755 1.1 chopps SET_SBIC_cmd (regs, SBIC_CMD_XFER_INFO);
756 1.1 chopps for (;len > 0; len--) {
757 1.1 chopps GET_SBIC_asr (regs, asr);
758 1.1 chopps while ((asr & SBIC_ASR_DBR) == 0) {
759 1.1 chopps if ((asr & SBIC_ASR_INT) || --wait < 0) {
760 1.1 chopps #ifdef DEBUG
761 1.1 chopps if (sbic_debug)
762 1.1 chopps printf("sbicxfin fail: l%d i%x w%d\n",
763 1.1 chopps len, asr, wait);
764 1.1 chopps #endif
765 1.1 chopps return;
766 1.1 chopps }
767 1.1 chopps
768 1.1 chopps DELAY(1);
769 1.1 chopps GET_SBIC_asr (regs, asr);
770 1.1 chopps }
771 1.1 chopps
772 1.1 chopps GET_SBIC_data (regs, *buf);
773 1.1 chopps buf++;
774 1.1 chopps }
775 1.1 chopps
776 1.1 chopps QPRINTF(("sbicxfin {%d} %02x %02x %02x %02x %02x %02x "
777 1.1 chopps "%02x %02x %02x %02x\n", len, obp[0], obp[1], obp[2],
778 1.1 chopps obp[3], obp[4], obp[5], obp[6], obp[7], obp[8], obp[9]));
779 1.1 chopps
780 1.1 chopps /* this leaves with one csr to be read */
781 1.1 chopps }
782 1.1 chopps
783 1.1 chopps
784 1.1 chopps /*
785 1.1 chopps * SCSI 'immediate' command: issue a command to some SCSI device
786 1.1 chopps * and get back an 'immediate' response (i.e., do programmed xfer
787 1.1 chopps * to get the response data). 'cbuf' is a buffer containing a scsi
788 1.1 chopps * command of length clen bytes. 'buf' is a buffer of length 'len'
789 1.1 chopps * bytes for data. The transfer direction is determined by the device
790 1.1 chopps * (i.e., by the scsi bus data xfer phase). If 'len' is zero, the
791 1.1 chopps * command must supply no data. 'xferphase' is the bus phase the
792 1.1 chopps * caller expects to happen after the command is issued. It should
793 1.1 chopps * be one of DATA_IN_PHASE, DATA_OUT_PHASE or STATUS_PHASE.
794 1.1 chopps */
795 1.1 chopps int
796 1.7 chopps sbicicmd(dev, target, lun, cbuf, clen, buf, len, xferphase)
797 1.1 chopps struct sbic_softc *dev;
798 1.1 chopps void *cbuf, *buf;
799 1.1 chopps int clen, len;
800 1.1 chopps u_char xferphase;
801 1.1 chopps {
802 1.1 chopps sbic_regmap_p regs;
803 1.1 chopps u_char phase, csr, asr;
804 1.1 chopps int wait;
805 1.1 chopps
806 1.1 chopps regs = dev->sc_sbicp;
807 1.1 chopps
808 1.1 chopps /*
809 1.1 chopps * set the sbic into non-DMA mode
810 1.1 chopps */
811 1.1 chopps SET_SBIC_control(regs, SBIC_CTL_EDI | SBIC_CTL_IDI);
812 1.1 chopps
813 1.1 chopps retry_selection:
814 1.1 chopps /*
815 1.1 chopps * select the SCSI bus (it's an error if bus isn't free)
816 1.1 chopps */
817 1.7 chopps if (sbicselectbus(dev, regs, target, lun, dev->sc_scsiaddr))
818 1.1 chopps return(-1);
819 1.1 chopps /*
820 1.1 chopps * Wait for a phase change (or error) then let the device sequence
821 1.1 chopps * us through the various SCSI phases.
822 1.1 chopps */
823 1.1 chopps dev->sc_stat[0] = 0xff;
824 1.1 chopps dev->sc_msg[0] = 0xff;
825 1.1 chopps phase = CMD_PHASE;
826 1.1 chopps
827 1.1 chopps new_phase:
828 1.1 chopps wait = sbic_cmd_wait;
829 1.1 chopps
830 1.1 chopps GET_SBIC_csr (regs, csr);
831 1.1 chopps QPRINTF((">CSR:%02x<", csr));
832 1.1 chopps
833 1.1 chopps /*
834 1.1 chopps * requesting some new phase
835 1.1 chopps */
836 1.1 chopps if ((csr != 0xff) && (csr & 0xf0) && (csr & 0x08))
837 1.1 chopps phase = csr & PHASE;
838 1.1 chopps else if ((csr == SBIC_CSR_DISC) || (csr == SBIC_CSR_DISC_1)
839 1.1 chopps || (csr == SBIC_CSR_S_XFERRED)) {
840 1.1 chopps dev->sc_flags &= ~SBICF_SELECTED;
841 1.1 chopps GET_SBIC_cmd_phase (regs, phase);
842 1.1 chopps if (phase == 0x60)
843 1.1 chopps GET_SBIC_tlun (regs, dev->sc_stat[0]);
844 1.1 chopps else
845 1.1 chopps return(-1);
846 1.1 chopps goto out;
847 1.1 chopps } else {
848 1.1 chopps sbicerror(dev, regs, csr);
849 1.1 chopps goto abort;
850 1.1 chopps }
851 1.1 chopps
852 1.1 chopps switch (phase) {
853 1.1 chopps case CMD_PHASE:
854 1.1 chopps if (sbicxfstart (regs, clen, phase, wait))
855 1.1 chopps if (sbicxfout (regs, clen, cbuf, phase))
856 1.1 chopps goto abort;
857 1.1 chopps phase = xferphase;
858 1.1 chopps break;
859 1.1 chopps case DATA_IN_PHASE:
860 1.1 chopps if (len <= 0)
861 1.1 chopps goto abort;
862 1.1 chopps wait = sbic_data_wait;
863 1.1 chopps if (sbicxfstart(regs, len, phase, wait))
864 1.1 chopps sbicxfin(regs, len, buf);
865 1.1 chopps phase = STATUS_PHASE;
866 1.1 chopps break;
867 1.1 chopps case MESG_IN_PHASE:
868 1.1 chopps if (sbicxfstart(regs, sizeof(dev->sc_msg), phase, wait) == 0)
869 1.1 chopps break;
870 1.1 chopps dev->sc_msg[0] = 0xff;
871 1.1 chopps sbicxfin(regs, sizeof(dev->sc_msg), dev->sc_msg);
872 1.1 chopps /*
873 1.1 chopps * get the command completion interrupt, or we
874 1.1 chopps * can't send a new command (LCI)
875 1.1 chopps */
876 1.1 chopps SBIC_WAIT(regs, SBIC_ASR_INT, wait);
877 1.1 chopps GET_SBIC_csr(regs, csr);
878 1.1 chopps #ifdef DEBUG
879 1.1 chopps if (sync_debug)
880 1.1 chopps printf("msgin done csr 0x%x\n", csr);
881 1.1 chopps #endif
882 1.1 chopps /*
883 1.1 chopps * test whether this is a reply to our sync
884 1.1 chopps * request
885 1.1 chopps */
886 1.1 chopps if (dev->sc_msg[0] == MSG_EXT_MESSAGE && dev->sc_msg[1] == 3
887 1.1 chopps && dev->sc_msg[2] == MSG_SYNC_REQ) {
888 1.1 chopps
889 1.1 chopps dev->sc_sync[target].period = sbicfromscsiperiod(dev,
890 1.1 chopps regs, dev->sc_msg[3]);
891 1.1 chopps dev->sc_sync[target].offset = dev->sc_msg[4];
892 1.1 chopps dev->sc_sync[target].state = SYNC_DONE;
893 1.1 chopps SET_SBIC_syn(regs, SBIC_SYN(dev->sc_sync[target].offset,
894 1.1 chopps dev->sc_sync[target].period));
895 1.1 chopps /* ACK the message */
896 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_CLR_ACK);
897 1.1 chopps WAIT_CIP(regs);
898 1.1 chopps phase = CMD_PHASE; /* or whatever */
899 1.1 chopps printf("%s: target %d now synchronous,"
900 1.1 chopps " period=%dns, offset=%d.\n",
901 1.1 chopps dev->sc_dev.dv_xname, target, dev->sc_msg[3] * 4,
902 1.1 chopps dev->sc_msg[4]);
903 1.1 chopps } else if (dev->sc_msg[0] == MSG_REJECT
904 1.1 chopps && dev->sc_sync[target].state == SYNC_SENT) {
905 1.1 chopps #ifdef DEBUG
906 1.1 chopps if (sync_debug)
907 1.1 chopps printf("target %d rejected sync, going async\n",
908 1.1 chopps target);
909 1.1 chopps #endif
910 1.1 chopps dev->sc_sync[target].period = sbic_min_period;
911 1.1 chopps dev->sc_sync[target].offset = 0;
912 1.1 chopps dev->sc_sync[target].state = SYNC_DONE;
913 1.1 chopps SET_SBIC_syn(regs, SBIC_SYN(dev->sc_sync[target].offset,
914 1.1 chopps dev->sc_sync[target].period));
915 1.1 chopps /* ACK the message */
916 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_CLR_ACK);
917 1.1 chopps WAIT_CIP(regs);
918 1.1 chopps phase = CMD_PHASE; /* or whatever */
919 1.1 chopps } else if (dev->sc_msg[0] == MSG_REJECT) {
920 1.1 chopps /*
921 1.1 chopps * we'll never REJECt a REJECT message..
922 1.1 chopps */
923 1.1 chopps /* ACK the message */
924 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_CLR_ACK);
925 1.1 chopps WAIT_CIP(regs);
926 1.1 chopps phase = CMD_PHASE; /* or whatever */
927 1.9 chopps } else if (dev->sc_msg[0] == MSG_CMD_COMPLETE
928 1.9 chopps || dev->sc_msg[0] == 0xff) {
929 1.1 chopps /* !! KLUDGE ALERT !! quite a few drives don't seem to
930 1.1 chopps * really like the current way of sending the
931 1.1 chopps * sync-handshake together with the ident-message, and
932 1.1 chopps * they react by sending command-complete and
933 1.1 chopps * disconnecting right after returning the valid sync
934 1.1 chopps * handshake. So, all I can do is reselect the drive,
935 1.1 chopps * and hope it won't disconnect again. I don't think
936 1.1 chopps * this is valid behavior, but I can't help fixing a
937 1.1 chopps * problem that apparently exists.
938 1.1 chopps *
939 1.1 chopps * Note: we should not get here on `normal' command
940 1.1 chopps * completion, as that condition is handled by the
941 1.1 chopps * high-level sel&xfer resume command used to walk
942 1.1 chopps * thru status/cc-phase.
943 1.1 chopps */
944 1.1 chopps
945 1.1 chopps #ifdef DEBUG
946 1.1 chopps if (sync_debug)
947 1.1 chopps printf ("GOT CMD-COMPLETE! %d acting weird.."
948 1.1 chopps " waiting for disconnect...\n", target);
949 1.1 chopps #endif
950 1.1 chopps /* ACK the message */
951 1.1 chopps SET_SBIC_cmd (regs, SBIC_CMD_CLR_ACK);
952 1.1 chopps WAIT_CIP(regs);
953 1.1 chopps
954 1.1 chopps /* wait for disconnect */
955 1.1 chopps while (csr != SBIC_CSR_DISC &&
956 1.1 chopps csr != SBIC_CSR_DISC_1) {
957 1.1 chopps DELAY(1);
958 1.1 chopps GET_SBIC_csr(regs, csr);
959 1.1 chopps }
960 1.1 chopps #ifdef DEBUG
961 1.1 chopps if (sync_debug)
962 1.1 chopps printf ("ok.\nRetrying selection.\n");
963 1.1 chopps #endif
964 1.1 chopps dev->sc_flags &= ~SBICF_SELECTED;
965 1.1 chopps goto retry_selection;
966 1.1 chopps } else {
967 1.1 chopps #ifdef DEBUG
968 1.1 chopps if (sbic_debug || sync_debug)
969 1.1 chopps printf ("Rejecting message 0x%02x\n",
970 1.1 chopps dev->sc_msg[0]);
971 1.1 chopps #endif
972 1.1 chopps /* prepare to reject the message, NACK */
973 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_SET_ATN);
974 1.1 chopps WAIT_CIP(regs);
975 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_CLR_ACK);
976 1.1 chopps WAIT_CIP(regs);
977 1.1 chopps phase = MESG_OUT_PHASE;
978 1.1 chopps }
979 1.1 chopps break;
980 1.1 chopps
981 1.1 chopps case MESG_OUT_PHASE:
982 1.1 chopps #ifdef DEBUG
983 1.1 chopps if (sync_debug)
984 1.1 chopps printf ("sending REJECT msg to last msg.\n");
985 1.1 chopps #endif
986 1.1 chopps /*
987 1.1 chopps * should only get here on reject,
988 1.1 chopps * since it's always US that
989 1.1 chopps * initiate a sync transfer
990 1.1 chopps */
991 1.1 chopps SEND_BYTE(regs, MSG_REJECT);
992 1.1 chopps phase = STATUS_PHASE;
993 1.1 chopps break;
994 1.1 chopps case DATA_OUT_PHASE:
995 1.1 chopps if (len <= 0)
996 1.1 chopps goto abort;
997 1.1 chopps wait = sbic_data_wait;
998 1.1 chopps if (sbicxfstart(regs, len, phase, wait))
999 1.1 chopps if (sbicxfout (regs, len, buf, phase))
1000 1.1 chopps goto abort;
1001 1.1 chopps phase = STATUS_PHASE;
1002 1.1 chopps break;
1003 1.1 chopps case STATUS_PHASE:
1004 1.1 chopps /*
1005 1.1 chopps * the sbic does the status/cmd-complete reading ok,
1006 1.1 chopps * so do this with its hi-level commands.
1007 1.1 chopps */
1008 1.1 chopps SBIC_TC_PUT(regs, 0);
1009 1.1 chopps SET_SBIC_cmd_phase(regs, 0x46);
1010 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_SEL_ATN_XFER);
1011 1.1 chopps phase = BUS_FREE_PHASE;
1012 1.1 chopps break;
1013 1.1 chopps case BUS_FREE_PHASE:
1014 1.1 chopps goto out;
1015 1.1 chopps default:
1016 1.1 chopps printf("%s: unexpected phase %d in icmd from %d\n",
1017 1.1 chopps dev->sc_dev.dv_xname, phase, target);
1018 1.1 chopps goto abort;
1019 1.1 chopps }
1020 1.1 chopps
1021 1.1 chopps /*
1022 1.1 chopps * make sure the last command was taken,
1023 1.1 chopps * ie. we're not hunting after an ignored command..
1024 1.1 chopps */
1025 1.1 chopps GET_SBIC_asr(regs, asr);
1026 1.1 chopps if (asr & SBIC_ASR_LCI)
1027 1.1 chopps goto abort;
1028 1.1 chopps
1029 1.1 chopps /* tapes may take a loooong time.. */
1030 1.1 chopps while (asr & SBIC_ASR_BSY) {
1031 1.1 chopps DELAY(1);
1032 1.1 chopps GET_SBIC_asr(regs, asr);
1033 1.1 chopps }
1034 1.1 chopps
1035 1.1 chopps /*
1036 1.1 chopps * wait for last command to complete
1037 1.1 chopps */
1038 1.1 chopps SBIC_WAIT (regs, SBIC_ASR_INT, wait);
1039 1.1 chopps
1040 1.1 chopps /*
1041 1.1 chopps * do it again
1042 1.1 chopps */
1043 1.1 chopps goto new_phase;
1044 1.1 chopps abort:
1045 1.1 chopps sbicabort(dev, regs, "icmd");
1046 1.1 chopps out:
1047 1.1 chopps QPRINTF(("=STS:%02x=", dev->sc_stat[0]));
1048 1.1 chopps return(dev->sc_stat[0]);
1049 1.1 chopps }
1050 1.1 chopps
1051 1.1 chopps /*
1052 1.1 chopps * Finish SCSI xfer command: After the completion interrupt from
1053 1.1 chopps * a read/write operation, sequence through the final phases in
1054 1.1 chopps * programmed i/o. This routine is a lot like sbicicmd except we
1055 1.1 chopps * skip (and don't allow) the select, cmd out and data in/out phases.
1056 1.1 chopps */
1057 1.1 chopps void
1058 1.1 chopps sbicxfdone(dev, regs, target)
1059 1.1 chopps struct sbic_softc *dev;
1060 1.1 chopps sbic_regmap_p regs;
1061 1.1 chopps int target;
1062 1.1 chopps {
1063 1.1 chopps u_char phase, csr;
1064 1.1 chopps int s;
1065 1.1 chopps
1066 1.1 chopps QPRINTF(("{"));
1067 1.1 chopps s = splbio();
1068 1.1 chopps
1069 1.1 chopps /*
1070 1.1 chopps * have the sbic complete on its own
1071 1.1 chopps */
1072 1.1 chopps SBIC_TC_PUT(regs, 0);
1073 1.1 chopps SET_SBIC_cmd_phase(regs, 0x46);
1074 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_SEL_ATN_XFER);
1075 1.1 chopps
1076 1.1 chopps do {
1077 1.1 chopps SBIC_WAIT (regs, SBIC_ASR_INT, 0);
1078 1.1 chopps GET_SBIC_csr (regs, csr);
1079 1.1 chopps QPRINTF(("%02x:", csr));
1080 1.1 chopps } while ((csr != SBIC_CSR_DISC) && (csr != SBIC_CSR_DISC_1)
1081 1.1 chopps && (csr != SBIC_CSR_S_XFERRED));
1082 1.1 chopps
1083 1.1 chopps dev->sc_flags &= ~SBICF_SELECTED;
1084 1.1 chopps
1085 1.1 chopps GET_SBIC_cmd_phase (regs, phase);
1086 1.1 chopps QPRINTF(("}%02x", phase));
1087 1.1 chopps if (phase == 0x60)
1088 1.1 chopps GET_SBIC_tlun(regs, dev->sc_stat[0]);
1089 1.1 chopps else
1090 1.1 chopps sbicerror(dev, regs, csr);
1091 1.1 chopps
1092 1.1 chopps QPRINTF(("=STS:%02x=\n", dev->sc_stat[0]));
1093 1.1 chopps splx(s);
1094 1.1 chopps }
1095 1.1 chopps
1096 1.1 chopps int
1097 1.1 chopps sbicgo(dev, xs)
1098 1.1 chopps struct sbic_softc *dev;
1099 1.1 chopps struct scsi_xfer *xs;
1100 1.1 chopps {
1101 1.3 chopps int i, dmaflags, count, tcount, target, len, wait;
1102 1.3 chopps u_char phase, csr, asr, cmd, *addr, *tmpaddr;
1103 1.1 chopps sbic_regmap_p regs;
1104 1.1 chopps struct dma_chain *dcp;
1105 1.3 chopps u_int deoff, dspa;
1106 1.1 chopps char *dmaend;
1107 1.1 chopps
1108 1.1 chopps target = xs->sc_link->target;
1109 1.1 chopps count = xs->datalen;
1110 1.1 chopps addr = xs->data;
1111 1.1 chopps
1112 1.1 chopps regs = dev->sc_sbicp;
1113 1.1 chopps dmaend = NULL;
1114 1.1 chopps
1115 1.1 chopps /*
1116 1.1 chopps * set the sbic into DMA mode
1117 1.1 chopps */
1118 1.1 chopps SET_SBIC_control(regs, SBIC_CTL_EDI | SBIC_CTL_IDI |
1119 1.1 chopps SBIC_MACHINE_DMA_MODE);
1120 1.1 chopps
1121 1.1 chopps /*
1122 1.1 chopps * select the SCSI bus (it's an error if bus isn't free)
1123 1.1 chopps */
1124 1.7 chopps if (sbicselectbus(dev, regs, target, xs->sc_link->lun,
1125 1.7 chopps dev->sc_scsiaddr)) {
1126 1.1 chopps dev->sc_dmafree(dev);
1127 1.1 chopps return(-1);
1128 1.1 chopps }
1129 1.1 chopps
1130 1.1 chopps /*
1131 1.1 chopps * Wait for a phase change (or error) then let the device
1132 1.1 chopps * sequence us through command phase (we may have to take
1133 1.1 chopps * a msg in/out before doing the command). If the disk has
1134 1.1 chopps * to do a seek, it may be a long time until we get a change
1135 1.1 chopps * to data phase so, in the absense of an explicit phase
1136 1.1 chopps * change, we assume data phase will be coming up and tell
1137 1.1 chopps * the SPC to start a transfer whenever it does. We'll get
1138 1.1 chopps * a service required interrupt later if this assumption is
1139 1.1 chopps * wrong. Otherwise we'll get a service required int when
1140 1.1 chopps * the transfer changes to status phase.
1141 1.1 chopps */
1142 1.1 chopps phase = CMD_PHASE;
1143 1.1 chopps
1144 1.1 chopps new_phase:
1145 1.1 chopps wait = sbic_cmd_wait;
1146 1.1 chopps switch (phase) {
1147 1.1 chopps case CMD_PHASE:
1148 1.1 chopps if (sbicxfstart(regs, xs->cmdlen, phase, wait))
1149 1.1 chopps if (sbicxfout(regs, xs->cmdlen, xs->cmd, phase))
1150 1.1 chopps goto abort;
1151 1.1 chopps break;
1152 1.1 chopps case MESG_IN_PHASE:
1153 1.1 chopps if (sbicxfstart(regs, sizeof(dev->sc_msg), phase, wait) == 0)
1154 1.1 chopps break;
1155 1.1 chopps
1156 1.1 chopps sbicxfin(regs, sizeof(dev->sc_msg), dev->sc_msg);
1157 1.1 chopps /*
1158 1.1 chopps * prepare to reject any mesgin,
1159 1.1 chopps * no matter what it might be..
1160 1.1 chopps */
1161 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_SET_ATN);
1162 1.1 chopps WAIT_CIP(regs);
1163 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_CLR_ACK);
1164 1.1 chopps phase = MESG_OUT_PHASE;
1165 1.1 chopps break;
1166 1.1 chopps case MESG_OUT_PHASE:
1167 1.1 chopps SEND_BYTE(regs, MSG_REJECT);
1168 1.1 chopps phase = STATUS_PHASE;
1169 1.1 chopps break;
1170 1.1 chopps case DATA_IN_PHASE:
1171 1.1 chopps case DATA_OUT_PHASE:
1172 1.1 chopps goto out;
1173 1.1 chopps /*
1174 1.1 chopps * status phase can happen, if the issued read/write command
1175 1.1 chopps * is illegal (for example, reading after EOT on tape) and the
1176 1.1 chopps * device doesn't even go to data in/out phase. So handle this
1177 1.1 chopps * here normally, instead of going thru abort-handling.
1178 1.1 chopps */
1179 1.1 chopps case STATUS_PHASE:
1180 1.1 chopps dev->sc_dmafree(dev);
1181 1.1 chopps sbicxfdone(dev, regs, target);
1182 1.1 chopps dev->sc_flags &= ~(SBICF_INDMA | SBICF_BBUF);
1183 1.1 chopps sbic_scsidone(dev, dev->sc_stat[0]);
1184 1.1 chopps return(0);
1185 1.1 chopps default:
1186 1.1 chopps printf("%s: unexpected phase %d in go from %d\n", phase,
1187 1.1 chopps dev->sc_dev.dv_xname, target);
1188 1.1 chopps goto abort;
1189 1.1 chopps }
1190 1.1 chopps
1191 1.1 chopps /*
1192 1.1 chopps * make sure the last command was taken,
1193 1.1 chopps * ie. we're not hunting after an ignored command..
1194 1.1 chopps */
1195 1.1 chopps GET_SBIC_asr(regs, asr);
1196 1.1 chopps if (asr & SBIC_ASR_LCI)
1197 1.1 chopps goto abort;
1198 1.1 chopps
1199 1.1 chopps /*
1200 1.1 chopps * tapes may take a loooong time..
1201 1.1 chopps */
1202 1.1 chopps while (asr & SBIC_ASR_BSY) {
1203 1.1 chopps DELAY(1);
1204 1.1 chopps GET_SBIC_asr(regs, asr);
1205 1.1 chopps }
1206 1.1 chopps
1207 1.1 chopps if (wait <= 0)
1208 1.1 chopps goto abort;
1209 1.1 chopps
1210 1.1 chopps /*
1211 1.1 chopps * wait for last command to complete
1212 1.1 chopps */
1213 1.1 chopps SBIC_WAIT(regs, SBIC_ASR_INT, wait);
1214 1.1 chopps
1215 1.1 chopps GET_SBIC_csr(regs, csr);
1216 1.1 chopps QPRINTF((">CSR:%02x<", csr));
1217 1.1 chopps
1218 1.1 chopps /*
1219 1.1 chopps * requesting some new phase
1220 1.1 chopps */
1221 1.1 chopps if ((csr != 0xff) && (csr & 0xf0) && (csr & 0x08))
1222 1.1 chopps phase = csr & PHASE;
1223 1.1 chopps else {
1224 1.1 chopps sbicerror(dev, regs, csr);
1225 1.1 chopps goto abort;
1226 1.1 chopps }
1227 1.1 chopps /*
1228 1.1 chopps * start again with for new phase
1229 1.1 chopps */
1230 1.1 chopps goto new_phase;
1231 1.1 chopps out:
1232 1.1 chopps dmaflags = 0;
1233 1.1 chopps if (xs->flags & SCSI_DATA_IN)
1234 1.1 chopps dmaflags |= DMAGO_READ;
1235 1.1 chopps
1236 1.1 chopps if (count > MAXPHYS)
1237 1.1 chopps printf("sbicgo: bp->b_bcount > MAXPHYS %08x\n", count);
1238 1.1 chopps
1239 1.10 chopps #ifdef DEBUG
1240 1.10 chopps ++sbicdma_ops; /* count total DMA operations */
1241 1.10 chopps #endif
1242 1.1 chopps if (dev->sc_flags & SBICF_BADDMA &&
1243 1.1 chopps sbiccheckdmap(addr, count, dev->sc_dmamask)) {
1244 1.1 chopps /*
1245 1.1 chopps * need to bounce the dma.
1246 1.1 chopps */
1247 1.1 chopps if (dmaflags & DMAGO_READ) {
1248 1.1 chopps dev->sc_flags |= SBICF_BBUF;
1249 1.1 chopps dev->sc_dmausrbuf = addr;
1250 1.1 chopps dev->sc_dmausrlen = count;
1251 1.1 chopps } else { /* write: copy to dma buffer */
1252 1.1 chopps bcopy (addr, dev->sc_dmabuffer, count);
1253 1.1 chopps }
1254 1.1 chopps addr = dev->sc_dmabuffer; /* and use dma buffer */
1255 1.10 chopps #ifdef DEBUG
1256 1.10 chopps ++sbicdma_bounces; /* count number of bounced */
1257 1.10 chopps #endif
1258 1.1 chopps }
1259 1.3 chopps tmpaddr = addr;
1260 1.3 chopps len = count;
1261 1.1 chopps #ifdef DEBUG
1262 1.1 chopps if (sbic_dma_debug & DDB_FOLLOW)
1263 1.1 chopps printf("sbicgo(%d, %x, %x, %x)\n", dev->sc_dev.dv_unit,
1264 1.1 chopps addr, count, dmaflags);
1265 1.1 chopps #endif
1266 1.1 chopps /*
1267 1.1 chopps * Build the DMA chain
1268 1.1 chopps */
1269 1.1 chopps for (dcp = dev->sc_chain; count > 0; dcp++) {
1270 1.1 chopps dcp->dc_addr = (char *) kvtop(addr);
1271 1.1 chopps if (count < (tcount = NBPG - ((int)addr & PGOFSET)))
1272 1.1 chopps tcount = count;
1273 1.1 chopps addr += tcount;
1274 1.1 chopps count -= tcount;
1275 1.1 chopps dcp->dc_count = tcount >> 1;
1276 1.1 chopps
1277 1.1 chopps /*
1278 1.1 chopps * check if contigous, if not mark new end
1279 1.1 chopps * else increment end and count on previous.
1280 1.1 chopps */
1281 1.10 chopps if (dcp->dc_addr != dmaend) {
1282 1.1 chopps dmaend = dcp->dc_addr + tcount;
1283 1.10 chopps #ifdef DEBUG
1284 1.10 chopps if (dcp != dev->sc_chain)
1285 1.10 chopps ++sbicdma_misses; /* count non-contiguous */
1286 1.10 chopps #endif
1287 1.10 chopps } else {
1288 1.1 chopps dcp--;
1289 1.1 chopps dmaend += tcount;
1290 1.1 chopps dcp->dc_count += tcount >> 1;
1291 1.10 chopps #ifdef DEBUG
1292 1.10 chopps ++sbicdma_hits; /* count contiguous */
1293 1.10 chopps #endif
1294 1.1 chopps }
1295 1.1 chopps }
1296 1.1 chopps
1297 1.1 chopps dev->sc_cur = dev->sc_chain;
1298 1.1 chopps dev->sc_last = --dcp;
1299 1.1 chopps dev->sc_tcnt = dev->sc_cur->dc_count << 1;
1300 1.1 chopps
1301 1.1 chopps #ifdef DEBUG
1302 1.1 chopps if (sbic_dma_debug & DDB_IO) {
1303 1.1 chopps for (dcp = dev->sc_chain; dcp <= dev->sc_last; dcp++)
1304 1.1 chopps printf(" %d: %d@%x\n", dcp-dev->sc_chain,
1305 1.1 chopps dcp->dc_count, dcp->dc_addr);
1306 1.1 chopps }
1307 1.1 chopps #endif
1308 1.1 chopps
1309 1.1 chopps /*
1310 1.1 chopps * push the data cash
1311 1.1 chopps */
1312 1.3 chopps #if 0
1313 1.1 chopps DCIS();
1314 1.4 chopps #elif defined(M68040)
1315 1.5 chopps if (cpu040) {
1316 1.5 chopps dma_cachectl(tmpaddr, len);
1317 1.3 chopps
1318 1.5 chopps dspa = (u_int)dev->sc_chain[0].dc_addr;
1319 1.5 chopps deoff = (u_int)dev->sc_last->dc_addr
1320 1.5 chopps + (dev->sc_last->dc_count >> 1);
1321 1.5 chopps if ((dspa & 0xF) || (deoff & 0xF))
1322 1.5 chopps dev->sc_flags |= SBICF_DCFLUSH;
1323 1.5 chopps }
1324 1.3 chopps #endif
1325 1.1 chopps
1326 1.1 chopps /*
1327 1.1 chopps * dmago() also enables interrupts for the sbic
1328 1.1 chopps */
1329 1.1 chopps i = dev->sc_dmago(dev, addr, xs->datalen, dmaflags);
1330 1.1 chopps
1331 1.1 chopps SBIC_TC_PUT(regs, (unsigned)i);
1332 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_XFER_INFO);
1333 1.1 chopps
1334 1.1 chopps return(0);
1335 1.1 chopps
1336 1.1 chopps abort:
1337 1.1 chopps sbicabort(dev, regs, "go");
1338 1.1 chopps dev->sc_dmafree(dev);
1339 1.1 chopps return(-1);
1340 1.1 chopps }
1341 1.1 chopps
1342 1.1 chopps
1343 1.1 chopps int
1344 1.1 chopps sbicintr(dev)
1345 1.1 chopps struct sbic_softc *dev;
1346 1.1 chopps {
1347 1.1 chopps sbic_regmap_p regs;
1348 1.3 chopps struct dma_chain *df, *dl;
1349 1.1 chopps u_char asr, csr;
1350 1.1 chopps int i;
1351 1.1 chopps
1352 1.1 chopps regs = dev->sc_sbicp;
1353 1.1 chopps
1354 1.1 chopps /*
1355 1.1 chopps * pending interrupt?
1356 1.1 chopps */
1357 1.1 chopps GET_SBIC_asr (regs, asr);
1358 1.1 chopps if ((asr & SBIC_ASR_INT) == 0)
1359 1.1 chopps return(0);
1360 1.1 chopps
1361 1.1 chopps GET_SBIC_csr(regs, csr);
1362 1.1 chopps QPRINTF(("[0x%x]", csr));
1363 1.1 chopps
1364 1.1 chopps if (csr == (SBIC_CSR_XFERRED|STATUS_PHASE)
1365 1.1 chopps || csr == (SBIC_CSR_MIS|STATUS_PHASE)
1366 1.1 chopps || csr == (SBIC_CSR_MIS_1|STATUS_PHASE)
1367 1.1 chopps || csr == (SBIC_CSR_MIS_2|STATUS_PHASE)) {
1368 1.1 chopps /*
1369 1.1 chopps * this should be the normal i/o completion case.
1370 1.1 chopps * get the status & cmd complete msg then let the
1371 1.1 chopps * device driver look at what happened.
1372 1.1 chopps */
1373 1.1 chopps sbicxfdone(dev, regs, dev->sc_xs->sc_link->target);
1374 1.3 chopps /*
1375 1.3 chopps * check for overlapping cache line, flush if so
1376 1.3 chopps */
1377 1.4 chopps #ifdef M68040
1378 1.3 chopps if (dev->sc_flags & SBICF_DCFLUSH) {
1379 1.3 chopps df = dev->sc_chain;
1380 1.3 chopps dl = dev->sc_last;
1381 1.3 chopps DCFL(df->dc_addr);
1382 1.3 chopps DCFL(dl->dc_addr + (dl->dc_count >> 1));
1383 1.3 chopps }
1384 1.4 chopps #endif
1385 1.11 chopps dev->sc_dmafree(dev);
1386 1.11 chopps if (dev->sc_flags & SBICF_BBUF) {
1387 1.11 chopps bcopy(dev->sc_dmabuffer, dev->sc_dmausrbuf,
1388 1.11 chopps dev->sc_dmausrlen);
1389 1.11 chopps if (dev->sc_dmausrbuf >= (u_char *)0xff000000)
1390 1.11 chopps printf("%s: WARNING - dmausrbuf = %x\n",
1391 1.11 chopps dev->sc_dev.dv_xname, dev->sc_dmausrbuf);
1392 1.11 chopps }
1393 1.3 chopps dev->sc_flags &= ~(SBICF_INDMA | SBICF_BBUF | SBICF_DCFLUSH);
1394 1.1 chopps sbic_scsidone(dev, dev->sc_stat[0]);
1395 1.1 chopps } else if (csr == (SBIC_CSR_XFERRED|DATA_OUT_PHASE)
1396 1.1 chopps || csr == (SBIC_CSR_XFERRED|DATA_IN_PHASE)
1397 1.1 chopps || csr == (SBIC_CSR_MIS|DATA_OUT_PHASE)
1398 1.1 chopps || csr == (SBIC_CSR_MIS|DATA_IN_PHASE)
1399 1.1 chopps || csr == (SBIC_CSR_MIS_1|DATA_OUT_PHASE)
1400 1.1 chopps || csr == (SBIC_CSR_MIS_1|DATA_IN_PHASE)
1401 1.1 chopps || csr == (SBIC_CSR_MIS_2|DATA_OUT_PHASE)
1402 1.1 chopps || csr == (SBIC_CSR_MIS_2|DATA_IN_PHASE)) {
1403 1.1 chopps /*
1404 1.1 chopps * do scatter-gather dma
1405 1.1 chopps * hacking the controller chip, ouch..
1406 1.1 chopps */
1407 1.1 chopps /*
1408 1.1 chopps * set next dma addr and dec count
1409 1.1 chopps */
1410 1.1 chopps dev->sc_cur->dc_addr += dev->sc_tcnt;
1411 1.1 chopps dev->sc_cur->dc_count -= (dev->sc_tcnt >> 1);
1412 1.1 chopps
1413 1.1 chopps if (dev->sc_cur->dc_count == 0)
1414 1.1 chopps ++dev->sc_cur; /* advance to next segment */
1415 1.1 chopps
1416 1.1 chopps i = dev->sc_dmanext(dev);
1417 1.1 chopps SBIC_TC_PUT(regs, (unsigned)i);
1418 1.1 chopps SET_SBIC_cmd(regs, SBIC_CMD_XFER_INFO);
1419 1.1 chopps } else {
1420 1.1 chopps /*
1421 1.1 chopps * Something unexpected happened -- deal with it.
1422 1.1 chopps */
1423 1.1 chopps dev->sc_dmastop(dev);
1424 1.1 chopps sbicerror(dev, regs, csr);
1425 1.1 chopps sbicabort(dev, regs, "intr");
1426 1.1 chopps if (dev->sc_flags & SBICF_INDMA) {
1427 1.3 chopps /*
1428 1.3 chopps * check for overlapping cache line, flush if so
1429 1.3 chopps */
1430 1.4 chopps #ifdef M68040
1431 1.3 chopps if (dev->sc_flags & SBICF_DCFLUSH) {
1432 1.3 chopps df = dev->sc_chain;
1433 1.3 chopps dl = dev->sc_last;
1434 1.3 chopps DCFL(df->dc_addr);
1435 1.3 chopps DCFL(dl->dc_addr + (dl->dc_count >> 1));
1436 1.3 chopps }
1437 1.4 chopps #endif
1438 1.3 chopps dev->sc_flags &=
1439 1.3 chopps ~(SBICF_INDMA | SBICF_BBUF | SBICF_DCFLUSH);
1440 1.1 chopps dev->sc_dmafree(dev);
1441 1.1 chopps sbic_scsidone(dev, -1);
1442 1.1 chopps }
1443 1.1 chopps }
1444 1.1 chopps return(1);
1445 1.1 chopps }
1446 1.1 chopps
1447 1.1 chopps /*
1448 1.1 chopps * Check if DMA can not be used with specified buffer
1449 1.1 chopps */
1450 1.1 chopps
1451 1.1 chopps int
1452 1.1 chopps sbiccheckdmap(bp, len, mask)
1453 1.1 chopps void *bp;
1454 1.1 chopps u_long len, mask;
1455 1.1 chopps {
1456 1.1 chopps u_char *buffer;
1457 1.1 chopps u_long phy_buf;
1458 1.1 chopps u_long phy_len;
1459 1.1 chopps
1460 1.1 chopps buffer = bp;
1461 1.1 chopps
1462 1.1 chopps if (len == 0)
1463 1.1 chopps return(0);
1464 1.1 chopps
1465 1.1 chopps while (len) {
1466 1.1 chopps phy_buf = kvtop(buffer);
1467 1.1 chopps if (len < (phy_len = NBPG - ((int) buffer & PGOFSET)))
1468 1.1 chopps phy_len = len;
1469 1.1 chopps if (phy_buf & mask)
1470 1.1 chopps return(1);
1471 1.1 chopps buffer += phy_len;
1472 1.1 chopps len -= phy_len;
1473 1.1 chopps }
1474 1.1 chopps return(0);
1475 1.1 chopps }
1476 1.1 chopps
1477 1.1 chopps int
1478 1.1 chopps sbictoscsiperiod(dev, regs, a)
1479 1.1 chopps struct sbic_softc *dev;
1480 1.1 chopps sbic_regmap_p regs;
1481 1.1 chopps int a;
1482 1.1 chopps {
1483 1.1 chopps unsigned int fs;
1484 1.1 chopps
1485 1.1 chopps /*
1486 1.1 chopps * cycle = DIV / (2*CLK)
1487 1.1 chopps * DIV = FS+2
1488 1.1 chopps * best we can do is 200ns at 20Mhz, 2 cycles
1489 1.1 chopps */
1490 1.1 chopps
1491 1.1 chopps GET_SBIC_myid(regs,fs);
1492 1.1 chopps fs = (fs >>6) + 2; /* DIV */
1493 1.1 chopps fs = (fs * 10000) / (dev->sc_clkfreq<<1); /* Cycle, in ns */
1494 1.1 chopps if (a < 2) a = 8; /* map to Cycles */
1495 1.1 chopps return ((fs*a)>>2); /* in 4 ns units */
1496 1.1 chopps }
1497 1.1 chopps
1498 1.1 chopps int
1499 1.1 chopps sbicfromscsiperiod(dev, regs, p)
1500 1.1 chopps struct sbic_softc *dev;
1501 1.1 chopps sbic_regmap_p regs;
1502 1.1 chopps int p;
1503 1.1 chopps {
1504 1.1 chopps register unsigned int fs, ret;
1505 1.1 chopps
1506 1.1 chopps /* Just the inverse of the above */
1507 1.1 chopps
1508 1.1 chopps GET_SBIC_myid(regs,fs);
1509 1.1 chopps fs = (fs >>6) + 2; /* DIV */
1510 1.1 chopps fs = (fs * 10000) / (dev->sc_clkfreq<<1); /* Cycle, in ns */
1511 1.1 chopps
1512 1.1 chopps ret = p << 2; /* in ns units */
1513 1.1 chopps ret = ret / fs; /* in Cycles */
1514 1.1 chopps if (ret < sbic_min_period)
1515 1.1 chopps return(sbic_min_period);
1516 1.1 chopps
1517 1.1 chopps /* verify rounding */
1518 1.1 chopps if (sbictoscsiperiod(dev, regs, ret) < p)
1519 1.1 chopps ret++;
1520 1.1 chopps return (ret >= 8) ? 0 : ret;
1521 1.1 chopps }
1522 1.1 chopps
1523