ncr5380.c revision 1.17 1 1.17 thorpej /* $NetBSD: ncr5380.c,v 1.17 1996/03/17 01:26:53 thorpej Exp $ */
2 1.1 leo
3 1.1 leo /*
4 1.1 leo * Copyright (c) 1995 Leo Weppelman.
5 1.1 leo * All rights reserved.
6 1.1 leo *
7 1.1 leo * Redistribution and use in source and binary forms, with or without
8 1.1 leo * modification, are permitted provided that the following conditions
9 1.1 leo * are met:
10 1.1 leo * 1. Redistributions of source code must retain the above copyright
11 1.1 leo * notice, this list of conditions and the following disclaimer.
12 1.1 leo * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 leo * notice, this list of conditions and the following disclaimer in the
14 1.1 leo * documentation and/or other materials provided with the distribution.
15 1.1 leo * 3. All advertising materials mentioning features or use of this software
16 1.1 leo * must display the following acknowledgement:
17 1.1 leo * This product includes software developed by Leo Weppelman.
18 1.1 leo * 4. The name of the author may not be used to endorse or promote products
19 1.1 leo * derived from this software without specific prior written permission
20 1.1 leo *
21 1.1 leo * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 leo * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 leo * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 leo * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 leo * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.1 leo * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.1 leo * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.1 leo * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.1 leo * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.1 leo * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.1 leo */
32 1.1 leo
33 1.6 leo /*
34 1.6 leo * Bit mask of targets you want debugging to be shown
35 1.6 leo */
36 1.6 leo u_char dbg_target_mask = 0x7f;
37 1.1 leo
38 1.1 leo /*
39 1.1 leo * Set bit for target when parity checking must be disabled.
40 1.1 leo * My (LWP) Maxtor 7245S seems to generate parity errors on about 50%
41 1.1 leo * of all transfers while the data is correct!?
42 1.1 leo */
43 1.4 leo u_char ncr5380_no_parchk = 0xff;
44 1.1 leo
45 1.13 leo #ifdef AUTO_SENSE
46 1.13 leo
47 1.13 leo /*
48 1.13 leo * Bit masks of targets that accept linked commands, and those
49 1.13 leo * that we've already checked out
50 1.13 leo */
51 1.13 leo u_char ncr_will_link = 0x00;
52 1.13 leo u_char ncr_test_link = 0x00;
53 1.13 leo
54 1.13 leo #endif /* AUTO_SENSE */
55 1.13 leo
56 1.1 leo /*
57 1.1 leo * This is the default sense-command we send.
58 1.1 leo */
59 1.1 leo static u_char sense_cmd[] = {
60 1.6 leo REQUEST_SENSE, 0, 0, 0, sizeof(struct scsi_sense_data), 0
61 1.1 leo };
62 1.1 leo
63 1.1 leo /*
64 1.1 leo * True if the main co-routine is running
65 1.1 leo */
66 1.1 leo static volatile int main_running = 0;
67 1.1 leo
68 1.1 leo /*
69 1.1 leo * Mask of targets selected
70 1.1 leo */
71 1.4 leo static u_char busy;
72 1.1 leo
73 1.5 mycroft static void ncr5380_minphys(struct buf *bp);
74 1.1 leo static int ncr5380_scsi_cmd(struct scsi_xfer *xs);
75 1.16 leo static void ncr5380_show_scsi_cmd(struct scsi_xfer *xs);
76 1.1 leo
77 1.1 leo struct scsi_adapter ncr5380_switch = {
78 1.1 leo ncr5380_scsi_cmd, /* scsi_cmd() */
79 1.1 leo ncr5380_minphys, /* scsi_minphys() */
80 1.1 leo 0, /* open_target_lu() */
81 1.1 leo 0 /* close_target_lu() */
82 1.1 leo };
83 1.1 leo
84 1.1 leo struct scsi_device ncr5380_dev = {
85 1.1 leo NULL, /* use default error handler */
86 1.1 leo NULL, /* do not have a start functio */
87 1.1 leo NULL, /* have no async handler */
88 1.1 leo NULL /* Use default done routine */
89 1.1 leo };
90 1.1 leo
91 1.1 leo
92 1.1 leo static SC_REQ req_queue[NREQ];
93 1.1 leo static SC_REQ *free_head = NULL; /* Free request structures */
94 1.4 leo
95 1.1 leo
96 1.1 leo /*
97 1.1 leo * Inline functions:
98 1.1 leo */
99 1.1 leo
100 1.1 leo /*
101 1.1 leo * Determine the size of a SCSI command.
102 1.1 leo */
103 1.1 leo extern __inline__ int command_size(opcode)
104 1.1 leo u_char opcode;
105 1.1 leo {
106 1.4 leo switch ((opcode >> 4) & 0xf) {
107 1.1 leo case 0:
108 1.1 leo case 1:
109 1.4 leo return (6);
110 1.1 leo case 2:
111 1.1 leo case 3:
112 1.4 leo return (10);
113 1.1 leo }
114 1.4 leo return (12);
115 1.1 leo }
116 1.1 leo
117 1.1 leo
118 1.1 leo /*
119 1.1 leo * Wait for request-line to become active. When it doesn't return 0.
120 1.1 leo * Otherwise return != 0.
121 1.1 leo * The timeouts in the 'wait_req_*' functions are arbitrary and rather
122 1.1 leo * large. In 99% of the invocations nearly no timeout is needed but in
123 1.1 leo * some cases (especially when using my tapedrive, a Tandberg 3600) the
124 1.1 leo * device is busy internally and the first SCSI-phase will be delayed.
125 1.1 leo */
126 1.1 leo extern __inline__ int wait_req_true(void)
127 1.1 leo {
128 1.1 leo int timeout = 25000;
129 1.1 leo
130 1.4 leo while (!(GET_5380_REG(NCR5380_IDSTAT) & SC_S_REQ) && --timeout)
131 1.1 leo delay(1);
132 1.4 leo return (GET_5380_REG(NCR5380_IDSTAT) & SC_S_REQ);
133 1.1 leo }
134 1.1 leo
135 1.1 leo /*
136 1.1 leo * Wait for request-line to become inactive. When it doesn't return 0.
137 1.1 leo * Otherwise return != 0.
138 1.1 leo */
139 1.1 leo extern __inline__ int wait_req_false(void)
140 1.1 leo {
141 1.1 leo int timeout = 25000;
142 1.1 leo
143 1.4 leo while ((GET_5380_REG(NCR5380_IDSTAT) & SC_S_REQ) && --timeout)
144 1.1 leo delay(1);
145 1.4 leo return (!(GET_5380_REG(NCR5380_IDSTAT) & SC_S_REQ));
146 1.1 leo }
147 1.1 leo
148 1.8 leo extern __inline__ void ack_message()
149 1.8 leo {
150 1.8 leo SET_5380_REG(NCR5380_ICOM, 0);
151 1.8 leo }
152 1.8 leo
153 1.10 leo extern __inline__ void nack_message(SC_REQ *reqp, u_char msg)
154 1.8 leo {
155 1.8 leo SET_5380_REG(NCR5380_ICOM, SC_A_ATN);
156 1.10 leo reqp->msgout = msg;
157 1.8 leo }
158 1.8 leo
159 1.1 leo extern __inline__ void finish_req(SC_REQ *reqp)
160 1.1 leo {
161 1.1 leo int sps;
162 1.1 leo struct scsi_xfer *xs = reqp->xs;
163 1.1 leo
164 1.4 leo #ifdef REAL_DMA
165 1.4 leo /*
166 1.4 leo * If we bounced, free the bounce buffer
167 1.4 leo */
168 1.4 leo if (reqp->dr_flag & DRIVER_BOUNCING)
169 1.4 leo free_bounceb(reqp->bounceb);
170 1.4 leo #endif /* REAL_DMA */
171 1.6 leo #ifdef DBG_REQ
172 1.6 leo if (dbg_target_mask & (1 << reqp->targ_id))
173 1.6 leo show_request(reqp, "DONE");
174 1.6 leo #endif
175 1.6 leo #ifdef DBG_ERR_RET
176 1.6 leo if (reqp->xs->error != 0)
177 1.6 leo show_request(reqp, "ERR_RET");
178 1.6 leo #endif
179 1.1 leo /*
180 1.1 leo * Return request to free-q
181 1.1 leo */
182 1.1 leo sps = splbio();
183 1.1 leo reqp->next = free_head;
184 1.1 leo free_head = reqp;
185 1.1 leo splx(sps);
186 1.1 leo
187 1.1 leo xs->flags |= ITSDONE;
188 1.13 leo if (!(reqp->dr_flag & DRIVER_LINKCHK))
189 1.13 leo scsi_done(xs);
190 1.1 leo }
191 1.1 leo
192 1.1 leo /*
193 1.1 leo * Auto config stuff....
194 1.1 leo */
195 1.4 leo int ncr_cprint __P((void *auxp, char *));
196 1.1 leo void ncr_attach __P((struct device *, struct device *, void *));
197 1.17 thorpej int ncr_match __P((struct device *, void *, void *));
198 1.1 leo
199 1.4 leo /*
200 1.4 leo * Tricks to make driver-name configurable
201 1.4 leo */
202 1.17 thorpej #define CFNAME(n) __CONCAT(n,_cd)
203 1.17 thorpej #define CANAME(n) __CONCAT(n,_ca)
204 1.4 leo #define CFSTRING(n) __STRING(n)
205 1.4 leo
206 1.17 thorpej struct cfattach CANAME(DRNAME) = {
207 1.17 thorpej sizeof(struct ncr_softc), ncr_match, ncr_attach
208 1.17 thorpej };
209 1.17 thorpej
210 1.4 leo struct cfdriver CFNAME(DRNAME) = {
211 1.17 thorpej NULL, CFSTRING(DRNAME), DV_DULL, NULL, 0
212 1.17 thorpej };
213 1.1 leo
214 1.1 leo int
215 1.17 thorpej ncr_match(pdp, match, auxp)
216 1.1 leo struct device *pdp;
217 1.17 thorpej void *match, *auxp;
218 1.1 leo {
219 1.17 thorpej return (machine_match(pdp, match, auxp, &CFNAME(DRNAME)));
220 1.1 leo }
221 1.1 leo
222 1.1 leo void
223 1.1 leo ncr_attach(pdp, dp, auxp)
224 1.1 leo struct device *pdp, *dp;
225 1.1 leo void *auxp;
226 1.1 leo {
227 1.1 leo struct ncr_softc *sc;
228 1.4 leo int i;
229 1.1 leo
230 1.1 leo sc = (struct ncr_softc *)dp;
231 1.1 leo
232 1.1 leo sc->sc_link.adapter_softc = sc;
233 1.1 leo sc->sc_link.adapter_target = 7;
234 1.1 leo sc->sc_link.adapter = &ncr5380_switch;
235 1.1 leo sc->sc_link.device = &ncr5380_dev;
236 1.1 leo sc->sc_link.openings = NREQ - 1;
237 1.1 leo
238 1.1 leo /*
239 1.9 leo * bitmasks
240 1.9 leo */
241 1.9 leo sc->sc_noselatn = 0;
242 1.9 leo sc->sc_selected = 0;
243 1.9 leo
244 1.9 leo /*
245 1.4 leo * Initialize machine-type specific things...
246 1.1 leo */
247 1.4 leo scsi_mach_init(sc);
248 1.4 leo printf("\n");
249 1.1 leo
250 1.1 leo /*
251 1.1 leo * Initialize request queue freelist.
252 1.1 leo */
253 1.4 leo for (i = 0; i < NREQ; i++) {
254 1.1 leo req_queue[i].next = free_head;
255 1.1 leo free_head = &req_queue[i];
256 1.1 leo }
257 1.1 leo
258 1.1 leo /*
259 1.1 leo * Initialize the host adapter
260 1.1 leo */
261 1.1 leo scsi_idisable();
262 1.4 leo ENABLE_NCR5380(sc);
263 1.4 leo SET_5380_REG(NCR5380_ICOM, 0);
264 1.4 leo SET_5380_REG(NCR5380_MODE, IMODE_BASE);
265 1.4 leo SET_5380_REG(NCR5380_TCOM, 0);
266 1.4 leo SET_5380_REG(NCR5380_IDSTAT, 0);
267 1.4 leo scsi_ienable();
268 1.1 leo
269 1.1 leo /*
270 1.1 leo * attach all scsi units on us
271 1.1 leo */
272 1.4 leo config_found(dp, &sc->sc_link, ncr_cprint);
273 1.1 leo }
274 1.1 leo
275 1.1 leo /*
276 1.1 leo * print diag if name is NULL else just extra
277 1.1 leo */
278 1.1 leo int
279 1.4 leo ncr_cprint(auxp, name)
280 1.1 leo void *auxp;
281 1.1 leo char *name;
282 1.1 leo {
283 1.4 leo if (name == NULL)
284 1.4 leo return (UNCONF);
285 1.4 leo return (QUIET);
286 1.1 leo }
287 1.1 leo /*
288 1.1 leo * End of auto config stuff....
289 1.1 leo */
290 1.1 leo
291 1.1 leo /*
292 1.1 leo * Carry out a request from the high level driver.
293 1.1 leo */
294 1.1 leo static int
295 1.1 leo ncr5380_scsi_cmd(struct scsi_xfer *xs)
296 1.1 leo {
297 1.1 leo int sps;
298 1.13 leo SC_REQ *reqp, *link, *tmp;
299 1.1 leo int flags = xs->flags;
300 1.1 leo
301 1.1 leo /*
302 1.1 leo * We do not queue RESET commands
303 1.1 leo */
304 1.4 leo if (flags & SCSI_RESET) {
305 1.16 leo scsi_reset_verbose(xs->sc_link->adapter_softc,
306 1.16 leo "Got reset-command");
307 1.4 leo return (COMPLETE);
308 1.1 leo }
309 1.1 leo
310 1.1 leo /*
311 1.1 leo * Get a request block
312 1.1 leo */
313 1.1 leo sps = splbio();
314 1.4 leo if ((reqp = free_head) == 0) {
315 1.1 leo splx(sps);
316 1.4 leo return (TRY_AGAIN_LATER);
317 1.1 leo }
318 1.1 leo free_head = reqp->next;
319 1.1 leo reqp->next = NULL;
320 1.1 leo splx(sps);
321 1.1 leo
322 1.1 leo /*
323 1.1 leo * Initialize our private fields
324 1.1 leo */
325 1.4 leo reqp->dr_flag = (flags & SCSI_POLL) ? DRIVER_NOINT : 0;
326 1.1 leo reqp->phase = NR_PHASE;
327 1.1 leo reqp->msgout = MSG_NOOP;
328 1.1 leo reqp->status = SCSGOOD;
329 1.1 leo reqp->link = NULL;
330 1.1 leo reqp->xs = xs;
331 1.1 leo reqp->targ_id = xs->sc_link->target;
332 1.4 leo reqp->targ_lun = xs->sc_link->lun;
333 1.1 leo reqp->xdata_ptr = (u_char*)xs->data;
334 1.1 leo reqp->xdata_len = xs->datalen;
335 1.1 leo memcpy(&reqp->xcmd, xs->cmd, sizeof(struct scsi_generic));
336 1.4 leo reqp->xcmd.bytes[0] |= reqp->targ_lun << 5;
337 1.1 leo
338 1.1 leo /*
339 1.4 leo * Sanity check on flags...
340 1.4 leo */
341 1.4 leo if (flags & ITSDONE) {
342 1.4 leo ncr_tprint(reqp, "scsi_cmd: command already done.....\n");
343 1.4 leo xs->flags &= ~ITSDONE;
344 1.4 leo }
345 1.4 leo if (!(flags & INUSE)) {
346 1.4 leo ncr_tprint(reqp, "scsi_cmd: command not in use.....\n");
347 1.4 leo xs->flags |= ~INUSE;
348 1.4 leo }
349 1.4 leo
350 1.4 leo #ifdef REAL_DMA
351 1.4 leo /*
352 1.1 leo * Check if DMA can be used on this request
353 1.1 leo */
354 1.4 leo if (scsi_dmaok(reqp))
355 1.1 leo reqp->dr_flag |= DRIVER_DMAOK;
356 1.4 leo #endif /* REAL_DMA */
357 1.1 leo
358 1.1 leo /*
359 1.1 leo * Insert the command into the issue queue. Note that 'REQUEST SENSE'
360 1.1 leo * commands are inserted at the head of the queue since any command
361 1.1 leo * will clear the existing contingent allegience condition and the sense
362 1.1 leo * data is only valid while the condition exists.
363 1.1 leo * When possible, link the command to a previous command to the same
364 1.1 leo * target. This is not very sensible when AUTO_SENSE is not defined!
365 1.1 leo * Interrupts are disabled while we are fiddling with the issue-queue.
366 1.1 leo */
367 1.1 leo sps = splbio();
368 1.13 leo link = NULL;
369 1.4 leo if ((issue_q == NULL) || (reqp->xcmd.opcode == REQUEST_SENSE)) {
370 1.1 leo reqp->next = issue_q;
371 1.1 leo issue_q = reqp;
372 1.1 leo }
373 1.1 leo else {
374 1.1 leo tmp = issue_q;
375 1.1 leo do {
376 1.4 leo if (!link && (tmp->targ_id == reqp->targ_id) && !tmp->link)
377 1.1 leo link = tmp;
378 1.4 leo } while (tmp->next && (tmp = tmp->next));
379 1.1 leo tmp->next = reqp;
380 1.1 leo #ifdef AUTO_SENSE
381 1.13 leo if (link && (ncr_will_link & (1<<reqp->targ_id))) {
382 1.1 leo link->link = reqp;
383 1.12 jtc link->xcmd.bytes[link->xs->cmdlen-2] |= 1;
384 1.1 leo }
385 1.1 leo #endif
386 1.1 leo }
387 1.13 leo #ifdef AUTO_SENSE
388 1.13 leo /*
389 1.13 leo * If we haven't already, check the target for link support.
390 1.13 leo * Do this by prefixing the current command with a dummy
391 1.13 leo * Request_Sense command, link the dummy to the current
392 1.13 leo * command, and insert the dummy command at the head of the
393 1.13 leo * issue queue. Set the DRIVER_LINKCHK flag so that we'll
394 1.13 leo * ignore the results of the dummy command, since we only
395 1.13 leo * care about whether it was accepted or not.
396 1.13 leo */
397 1.13 leo if (!link && !(ncr_test_link & (1<<reqp->targ_id)) &&
398 1.13 leo (tmp = free_head) && !(reqp->dr_flag & DRIVER_NOINT)) {
399 1.13 leo free_head = tmp->next;
400 1.13 leo tmp->dr_flag = (reqp->dr_flag & ~DRIVER_DMAOK) | DRIVER_LINKCHK;
401 1.13 leo tmp->phase = NR_PHASE;
402 1.13 leo tmp->msgout = MSG_NOOP;
403 1.13 leo tmp->status = SCSGOOD;
404 1.13 leo tmp->xs = reqp->xs;
405 1.13 leo tmp->targ_id = reqp->targ_id;
406 1.13 leo tmp->targ_lun = reqp->targ_lun;
407 1.13 leo bcopy(sense_cmd, &tmp->xcmd, sizeof(sense_cmd));
408 1.13 leo tmp->xdata_ptr = (u_char *)&tmp->xs->sense;
409 1.13 leo tmp->xdata_len = sizeof(tmp->xs->sense);
410 1.13 leo ncr_test_link |= 1<<tmp->targ_id;
411 1.13 leo tmp->link = reqp;
412 1.13 leo tmp->xcmd.bytes[sizeof(sense_cmd)-2] |= 1;
413 1.13 leo tmp->next = issue_q;
414 1.13 leo issue_q = tmp;
415 1.13 leo #ifdef DBG_REQ
416 1.13 leo if (dbg_target_mask & (1 << tmp->targ_id))
417 1.13 leo show_request(tmp, "LINKCHK");
418 1.13 leo #endif
419 1.13 leo }
420 1.13 leo #endif
421 1.1 leo splx(sps);
422 1.1 leo
423 1.1 leo #ifdef DBG_REQ
424 1.6 leo if (dbg_target_mask & (1 << reqp->targ_id))
425 1.6 leo show_request(reqp, (reqp->xcmd.opcode == REQUEST_SENSE) ?
426 1.6 leo "HEAD":"TAIL");
427 1.1 leo #endif
428 1.1 leo
429 1.4 leo run_main(xs->sc_link->adapter_softc);
430 1.1 leo
431 1.12 jtc if (xs->flags & (SCSI_POLL|ITSDONE))
432 1.12 jtc return (COMPLETE); /* We're booting or run_main has completed */
433 1.4 leo return (SUCCESSFULLY_QUEUED);
434 1.1 leo }
435 1.1 leo
436 1.5 mycroft static void
437 1.1 leo ncr5380_minphys(struct buf *bp)
438 1.1 leo {
439 1.6 leo if (bp->b_bcount > MIN_PHYS)
440 1.1 leo bp->b_bcount = MIN_PHYS;
441 1.5 mycroft minphys(bp);
442 1.1 leo }
443 1.1 leo #undef MIN_PHYS
444 1.1 leo
445 1.16 leo static void
446 1.1 leo ncr5380_show_scsi_cmd(struct scsi_xfer *xs)
447 1.1 leo {
448 1.1 leo u_char *b = (u_char *) xs->cmd;
449 1.1 leo int i = 0;
450 1.1 leo
451 1.4 leo if (!(xs->flags & SCSI_RESET)) {
452 1.4 leo printf("(%d:%d:%d,0x%x)-", xs->sc_link->scsibus,
453 1.1 leo xs->sc_link->target, xs->sc_link->lun, xs->sc_link->flags);
454 1.4 leo while (i < xs->cmdlen) {
455 1.4 leo if (i)
456 1.1 leo printf(",");
457 1.1 leo printf("%x",b[i++]);
458 1.1 leo }
459 1.1 leo printf("-\n");
460 1.1 leo }
461 1.1 leo else {
462 1.4 leo printf("(%d:%d:%d)-RESET-\n",
463 1.1 leo xs->sc_link->scsibus,xs->sc_link->target, xs->sc_link->lun);
464 1.1 leo }
465 1.1 leo }
466 1.1 leo
467 1.1 leo /*
468 1.1 leo * The body of the driver.
469 1.1 leo */
470 1.1 leo static void
471 1.4 leo scsi_main(sc)
472 1.4 leo struct ncr_softc *sc;
473 1.1 leo {
474 1.1 leo SC_REQ *req, *prev;
475 1.1 leo int itype;
476 1.1 leo int sps;
477 1.1 leo
478 1.1 leo /*
479 1.1 leo * While running in the driver SCSI-interrupts are disabled.
480 1.1 leo */
481 1.1 leo scsi_idisable();
482 1.4 leo ENABLE_NCR5380(sc);
483 1.1 leo
484 1.4 leo PID("scsi_main1");
485 1.4 leo for (;;) {
486 1.1 leo sps = splbio();
487 1.4 leo if (!connected) {
488 1.4 leo /*
489 1.4 leo * Check if it is fair keep any exclusive access to DMA
490 1.4 leo * claimed. If not, stop queueing new jobs so the discon_q
491 1.4 leo * will be eventually drained and DMA can be given up.
492 1.4 leo */
493 1.4 leo if (!fair_to_keep_dma())
494 1.4 leo goto main_exit;
495 1.1 leo
496 1.1 leo /*
497 1.1 leo * Search through the issue-queue for a command
498 1.1 leo * destined for a target that isn't busy.
499 1.1 leo */
500 1.1 leo prev = NULL;
501 1.4 leo for (req=issue_q; req != NULL; prev = req, req = req->next) {
502 1.4 leo if (!(busy & (1 << req->targ_id))) {
503 1.1 leo /*
504 1.1 leo * Found one, remove it from the issue queue
505 1.1 leo */
506 1.4 leo if (prev == NULL)
507 1.1 leo issue_q = req->next;
508 1.1 leo else prev->next = req->next;
509 1.1 leo req->next = NULL;
510 1.1 leo break;
511 1.1 leo }
512 1.1 leo }
513 1.1 leo
514 1.1 leo /*
515 1.1 leo * When a request has just ended, we get here before an other
516 1.1 leo * device detects that the bus is free and that it can
517 1.1 leo * reconnect. The problem is that when this happens, we always
518 1.1 leo * baffle the device because our (initiator) id is higher. This
519 1.1 leo * can cause a sort of starvation on slow devices. So we check
520 1.1 leo * for a pending reselection here.
521 1.1 leo * Note that 'connected' will be non-null if the reselection
522 1.1 leo * succeeds.
523 1.1 leo */
524 1.4 leo if ((GET_5380_REG(NCR5380_IDSTAT) & (SC_S_SEL|SC_S_IO))
525 1.1 leo == (SC_S_SEL|SC_S_IO)){
526 1.4 leo if (req != NULL) {
527 1.1 leo req->next = issue_q;
528 1.1 leo issue_q = req;
529 1.1 leo }
530 1.1 leo splx(sps);
531 1.1 leo
532 1.4 leo reselect(sc);
533 1.4 leo scsi_clr_ipend();
534 1.1 leo goto connected;
535 1.1 leo }
536 1.1 leo
537 1.1 leo /*
538 1.1 leo * The host is not connected and there is no request
539 1.1 leo * pending, exit.
540 1.1 leo */
541 1.4 leo if (req == NULL) {
542 1.4 leo PID("scsi_main2");
543 1.1 leo goto main_exit;
544 1.1 leo }
545 1.1 leo
546 1.1 leo /*
547 1.1 leo * Re-enable interrupts before handling the request.
548 1.1 leo */
549 1.1 leo splx(sps);
550 1.1 leo
551 1.1 leo #ifdef DBG_REQ
552 1.6 leo if (dbg_target_mask & (1 << req->targ_id))
553 1.6 leo show_request(req, "TARGET");
554 1.1 leo #endif
555 1.1 leo /*
556 1.1 leo * We found a request. Try to connect to the target. If the
557 1.1 leo * initiator fails arbitration, the command is put back in the
558 1.1 leo * issue queue.
559 1.1 leo */
560 1.4 leo if (scsi_select(req, 0)) {
561 1.1 leo sps = splbio();
562 1.6 leo req->next = issue_q;
563 1.1 leo issue_q = req;
564 1.1 leo splx(sps);
565 1.1 leo #ifdef DBG_REQ
566 1.6 leo if (dbg_target_mask & (1 << req->targ_id))
567 1.6 leo ncr_tprint(req, "Select failed\n");
568 1.1 leo #endif
569 1.1 leo }
570 1.1 leo }
571 1.1 leo else splx(sps);
572 1.1 leo connected:
573 1.4 leo if (connected) {
574 1.1 leo /*
575 1.1 leo * If the host is currently connected but a 'real-dma' transfer
576 1.1 leo * is in progress, the 'end-of-dma' interrupt restarts main.
577 1.1 leo * So quit.
578 1.1 leo */
579 1.1 leo sps = splbio();
580 1.4 leo if (connected && (connected->dr_flag & DRIVER_IN_DMA)) {
581 1.4 leo PID("scsi_main3");
582 1.1 leo goto main_exit;
583 1.1 leo }
584 1.1 leo splx(sps);
585 1.1 leo
586 1.1 leo /*
587 1.1 leo * Let the target guide us through the bus-phases
588 1.1 leo */
589 1.15 leo while (information_transfer(sc) == -1)
590 1.1 leo ;
591 1.1 leo }
592 1.1 leo }
593 1.1 leo /* NEVER TO REACH HERE */
594 1.4 leo panic("ncr5380-SCSI: not designed to come here");
595 1.1 leo
596 1.1 leo main_exit:
597 1.1 leo /*
598 1.1 leo * We enter here with interrupts disabled. We are about to exit main
599 1.1 leo * so interrupts should be re-enabled. Because interrupts are edge
600 1.1 leo * triggered, we could already have missed the interrupt. Therefore
601 1.1 leo * we check the IRQ-line here and re-enter when we really missed a
602 1.1 leo * valid interrupt.
603 1.1 leo */
604 1.4 leo PID("scsi_main4");
605 1.1 leo scsi_ienable();
606 1.15 leo
607 1.15 leo /*
608 1.15 leo * If we're not currently connected, enable reselection
609 1.15 leo * interrupts.
610 1.15 leo */
611 1.15 leo if (!connected)
612 1.15 leo SET_5380_REG(NCR5380_IDSTAT, SC_HOST_ID);
613 1.15 leo
614 1.15 leo if (scsi_ipending()) {
615 1.4 leo if ((itype = check_intr(sc)) != INTR_SPURIOUS) {
616 1.1 leo scsi_idisable();
617 1.1 leo splx(sps);
618 1.1 leo
619 1.4 leo if (itype == INTR_RESEL)
620 1.4 leo reselect(sc);
621 1.4 leo #ifdef REAL_DMA
622 1.4 leo else dma_ready();
623 1.4 leo #else
624 1.9 leo else {
625 1.9 leo if (pdma_ready())
626 1.9 leo goto connected;
627 1.9 leo panic("Got DMA interrupt without DMA");
628 1.9 leo }
629 1.4 leo #endif
630 1.4 leo scsi_clr_ipend();
631 1.1 leo goto connected;
632 1.1 leo }
633 1.1 leo }
634 1.4 leo reconsider_dma();
635 1.4 leo
636 1.1 leo main_running = 0;
637 1.1 leo splx(sps);
638 1.4 leo PID("scsi_main5");
639 1.1 leo }
640 1.1 leo
641 1.4 leo #ifdef REAL_DMA
642 1.1 leo /*
643 1.1 leo * The SCSI-DMA interrupt.
644 1.1 leo * This interrupt can only be triggered when running in non-polled DMA
645 1.1 leo * mode. When DMA is not active, it will be silently ignored, it is usually
646 1.1 leo * to late because the EOP interrupt of the controller happens just a tiny
647 1.1 leo * bit earlier. It might become usefull when scatter/gather is implemented,
648 1.1 leo * because in that case only part of the DATAIN/DATAOUT transfer is taken
649 1.1 leo * out of a single buffer.
650 1.1 leo */
651 1.4 leo static void
652 1.4 leo ncr_dma_intr(sc)
653 1.4 leo struct ncr_softc *sc;
654 1.1 leo {
655 1.1 leo SC_REQ *reqp;
656 1.1 leo int dma_done;
657 1.1 leo
658 1.4 leo PID("ncr_dma_intr");
659 1.4 leo if ((reqp = connected) && (reqp->dr_flag & DRIVER_IN_DMA)) {
660 1.1 leo scsi_idisable();
661 1.4 leo if (!(dma_done = dma_ready())) {
662 1.1 leo transfer_dma(reqp, reqp->phase, 0);
663 1.1 leo return;
664 1.1 leo }
665 1.4 leo run_main(sc);
666 1.1 leo }
667 1.1 leo }
668 1.4 leo #endif /* REAL_DMA */
669 1.1 leo
670 1.1 leo /*
671 1.1 leo * The SCSI-controller interrupt. This interrupt occurs on reselections and
672 1.4 leo * at the end of non-polled DMA-interrupts. It is assumed to be called from
673 1.4 leo * the machine-dependent hardware interrupt.
674 1.1 leo */
675 1.4 leo static void
676 1.4 leo ncr_ctrl_intr(sc)
677 1.4 leo struct ncr_softc *sc;
678 1.1 leo {
679 1.1 leo int itype;
680 1.1 leo int dma_done;
681 1.1 leo
682 1.15 leo while (scsi_ipending()) {
683 1.1 leo scsi_idisable();
684 1.4 leo if ((itype = check_intr(sc)) != INTR_SPURIOUS) {
685 1.4 leo if (itype == INTR_RESEL)
686 1.4 leo reselect(sc);
687 1.1 leo else {
688 1.4 leo #ifdef REAL_DMA
689 1.4 leo if (!(dma_done = dma_ready())) {
690 1.1 leo transfer_dma(connected, connected->phase, 0);
691 1.1 leo return;
692 1.1 leo }
693 1.4 leo #else
694 1.9 leo if (pdma_ready())
695 1.9 leo return;
696 1.4 leo panic("Got DMA interrupt without DMA\n");
697 1.4 leo #endif
698 1.1 leo }
699 1.4 leo scsi_clr_ipend();
700 1.1 leo }
701 1.4 leo run_main(sc);
702 1.1 leo return;
703 1.1 leo }
704 1.4 leo PID("ncr_ctrl_intr1");
705 1.1 leo }
706 1.1 leo
707 1.1 leo /*
708 1.1 leo * Initiate a connection path between the host and the target. The function
709 1.1 leo * first goes into arbitration for the SCSI-bus. When this succeeds, the target
710 1.1 leo * is selected and an 'IDENTIFY' message is send.
711 1.1 leo * Returns -1 when the arbitration failed. Otherwise 0 is returned. When
712 1.1 leo * the target does not respond (to either selection or 'MESSAGE OUT') the
713 1.1 leo * 'done' function is executed.
714 1.1 leo * The result code given by the driver can be influenced by setting 'code'
715 1.1 leo * to a non-zero value. This is the case when 'select' is called by abort.
716 1.1 leo */
717 1.1 leo static int
718 1.1 leo scsi_select(reqp, code)
719 1.1 leo SC_REQ *reqp;
720 1.16 leo int code;
721 1.1 leo {
722 1.4 leo u_char tmp[1];
723 1.4 leo u_char phase;
724 1.4 leo u_long cnt;
725 1.4 leo int sps;
726 1.9 leo u_int8_t atn_flag;
727 1.9 leo u_int8_t targ_bit;
728 1.4 leo struct ncr_softc *sc;
729 1.1 leo
730 1.4 leo sc = reqp->xs->sc_link->adapter_softc;
731 1.1 leo DBG_SELPRINT ("Starting arbitration\n", 0);
732 1.4 leo PID("scsi_select1");
733 1.1 leo
734 1.1 leo sps = splbio();
735 1.1 leo
736 1.1 leo /*
737 1.1 leo * Prevent a race condition here. If a reslection interrupt occurred
738 1.1 leo * between the decision to pick a new request and the call to select,
739 1.1 leo * we abort the selection.
740 1.1 leo * Interrupts are lowered when the 5380 is setup to arbitrate for the
741 1.1 leo * bus.
742 1.1 leo */
743 1.11 leo if (connected) {
744 1.1 leo splx(sps);
745 1.4 leo PID("scsi_select2");
746 1.4 leo return (-1);
747 1.1 leo }
748 1.1 leo
749 1.1 leo /*
750 1.1 leo * Set phase bits to 0, otherwise the 5380 won't drive the bus during
751 1.1 leo * selection.
752 1.1 leo */
753 1.4 leo SET_5380_REG(NCR5380_TCOM, 0);
754 1.4 leo SET_5380_REG(NCR5380_ICOM, 0);
755 1.1 leo
756 1.1 leo /*
757 1.1 leo * Arbitrate for the bus.
758 1.1 leo */
759 1.4 leo SET_5380_REG(NCR5380_DATA, SC_HOST_ID);
760 1.4 leo SET_5380_REG(NCR5380_MODE, SC_ARBIT);
761 1.1 leo
762 1.1 leo splx(sps);
763 1.1 leo
764 1.11 leo cnt = 10;
765 1.4 leo while (!(GET_5380_REG(NCR5380_ICOM) & SC_AIP) && --cnt)
766 1.1 leo delay(1);
767 1.1 leo
768 1.4 leo if (!(GET_5380_REG(NCR5380_ICOM) & SC_AIP)) {
769 1.4 leo SET_5380_REG(NCR5380_MODE, IMODE_BASE);
770 1.11 leo SET_5380_REG(NCR5380_ICOM, 0);
771 1.11 leo DBG_SELPRINT ("Arbitration lost, bus not free\n",0);
772 1.4 leo PID("scsi_select3");
773 1.4 leo return (-1);
774 1.1 leo }
775 1.1 leo
776 1.1 leo /* The arbitration delay is 2.2 usecs */
777 1.1 leo delay(3);
778 1.1 leo
779 1.1 leo /*
780 1.1 leo * Check the result of the arbitration. If we failed, return -1.
781 1.1 leo */
782 1.4 leo if (GET_5380_REG(NCR5380_ICOM) & SC_LA) {
783 1.11 leo SET_5380_REG(NCR5380_MODE, IMODE_BASE);
784 1.11 leo SET_5380_REG(NCR5380_ICOM, 0);
785 1.11 leo PID("scsi_select4");
786 1.11 leo return (-1);
787 1.11 leo }
788 1.11 leo
789 1.11 leo /*
790 1.11 leo * The spec requires that we should read the data register to
791 1.11 leo * check for higher id's and check the SC_LA again.
792 1.11 leo */
793 1.11 leo tmp[0] = GET_5380_REG(NCR5380_DATA);
794 1.11 leo if (tmp[0] & ~((SC_HOST_ID << 1) - 1)) {
795 1.11 leo SET_5380_REG(NCR5380_MODE, IMODE_BASE);
796 1.11 leo SET_5380_REG(NCR5380_ICOM, 0);
797 1.11 leo DBG_SELPRINT ("Arbitration lost, higher id present\n",0);
798 1.11 leo PID("scsi_select5");
799 1.11 leo return (-1);
800 1.11 leo }
801 1.11 leo if (GET_5380_REG(NCR5380_ICOM) & SC_LA) {
802 1.11 leo SET_5380_REG(NCR5380_MODE, IMODE_BASE);
803 1.11 leo SET_5380_REG(NCR5380_ICOM, 0);
804 1.11 leo DBG_SELPRINT ("Arbitration lost,deassert SC_ARBIT\n",0);
805 1.11 leo PID("scsi_select6");
806 1.11 leo return (-1);
807 1.1 leo }
808 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_A_SEL | SC_A_BSY);
809 1.4 leo if (GET_5380_REG(NCR5380_ICOM) & SC_LA) {
810 1.4 leo SET_5380_REG(NCR5380_MODE, IMODE_BASE);
811 1.4 leo SET_5380_REG(NCR5380_ICOM, 0);
812 1.1 leo DBG_SELPRINT ("Arbitration lost, deassert SC_A_SEL\n", 0);
813 1.11 leo PID("scsi_select7");
814 1.4 leo return (-1);
815 1.1 leo }
816 1.1 leo /* Bus settle delay + Bus clear delay = 1.2 usecs */
817 1.1 leo delay(2);
818 1.1 leo DBG_SELPRINT ("Arbitration complete\n", 0);
819 1.1 leo
820 1.1 leo /*
821 1.1 leo * Now that we won the arbitration, start the selection.
822 1.1 leo */
823 1.11 leo targ_bit = 1 << reqp->targ_id;
824 1.9 leo SET_5380_REG(NCR5380_DATA, SC_HOST_ID | targ_bit);
825 1.9 leo
826 1.9 leo if (sc->sc_noselatn & targ_bit)
827 1.9 leo atn_flag = 0;
828 1.9 leo else
829 1.9 leo atn_flag = SC_A_ATN;
830 1.1 leo
831 1.1 leo /*
832 1.1 leo * Raise ATN while SEL is true before BSY goes false from arbitration,
833 1.1 leo * since this is the only way to guarantee that we'll get a MESSAGE OUT
834 1.1 leo * phase immediately after the selection.
835 1.1 leo */
836 1.9 leo SET_5380_REG(NCR5380_ICOM, SC_A_BSY | SC_A_SEL | atn_flag | SC_ADTB);
837 1.4 leo SET_5380_REG(NCR5380_MODE, IMODE_BASE);
838 1.1 leo
839 1.1 leo /*
840 1.1 leo * Turn off reselection interrupts
841 1.1 leo */
842 1.4 leo SET_5380_REG(NCR5380_IDSTAT, 0);
843 1.1 leo
844 1.1 leo /*
845 1.1 leo * Reset BSY. The delay following it, surpresses a glitch in the
846 1.1 leo * 5380 which causes us to see our own BSY signal instead of that of
847 1.1 leo * the target.
848 1.1 leo */
849 1.9 leo SET_5380_REG(NCR5380_ICOM, SC_A_SEL | atn_flag | SC_ADTB);
850 1.1 leo delay(1);
851 1.1 leo
852 1.1 leo /*
853 1.1 leo * Wait for the target to react, the specs call for a timeout of
854 1.1 leo * 250 ms.
855 1.1 leo */
856 1.11 leo cnt = 25000;
857 1.4 leo while (!(GET_5380_REG(NCR5380_IDSTAT) & SC_S_BSY) && --cnt)
858 1.4 leo delay(10);
859 1.1 leo
860 1.4 leo if (!(GET_5380_REG(NCR5380_IDSTAT) & SC_S_BSY)) {
861 1.1 leo /*
862 1.1 leo * There is no reaction from the target, start the selection
863 1.1 leo * timeout procedure. We release the databus but keep SEL
864 1.1 leo * asserted. After that we wait a 'selection abort time' (200
865 1.1 leo * usecs) and 2 deskew delays (90 ns) and check BSY again.
866 1.1 leo * When BSY is asserted, we assume the selection succeeded,
867 1.1 leo * otherwise we release the bus.
868 1.1 leo */
869 1.11 leo SET_5380_REG(NCR5380_ICOM, SC_A_SEL | atn_flag);
870 1.1 leo delay(201);
871 1.4 leo if (!(GET_5380_REG(NCR5380_IDSTAT) & SC_S_BSY)) {
872 1.4 leo SET_5380_REG(NCR5380_ICOM, 0);
873 1.1 leo reqp->xs->error = code ? code : XS_SELTIMEOUT;
874 1.1 leo DBG_SELPRINT ("Target %d not responding to sel\n",
875 1.1 leo reqp->targ_id);
876 1.13 leo if (reqp->dr_flag & DRIVER_LINKCHK)
877 1.13 leo ncr_test_link &= ~(1<<reqp->targ_id);
878 1.1 leo finish_req(reqp);
879 1.11 leo PID("scsi_select8");
880 1.4 leo return (0);
881 1.1 leo }
882 1.1 leo }
883 1.9 leo SET_5380_REG(NCR5380_ICOM, atn_flag);
884 1.1 leo
885 1.1 leo DBG_SELPRINT ("Target %d responding to select.\n", reqp->targ_id);
886 1.1 leo
887 1.1 leo /*
888 1.1 leo * The SCSI-interrupts are disabled while a request is being handled.
889 1.1 leo */
890 1.1 leo scsi_idisable();
891 1.1 leo
892 1.1 leo /*
893 1.9 leo * If we did not request ATN, then don't try to send IDENTIFY.
894 1.9 leo */
895 1.9 leo if (atn_flag == 0) {
896 1.9 leo reqp->phase = PH_CMD;
897 1.9 leo goto identify_failed;
898 1.9 leo }
899 1.9 leo
900 1.9 leo /*
901 1.9 leo * Here we prepare to send an 'IDENTIFY' message.
902 1.1 leo * Allow disconnect only when interrups are allowed.
903 1.1 leo */
904 1.4 leo tmp[0] = MSG_IDENTIFY(reqp->targ_lun,
905 1.9 leo (reqp->dr_flag & DRIVER_NOINT) ? 0 : 1);
906 1.1 leo cnt = 1;
907 1.1 leo phase = PH_MSGOUT;
908 1.9 leo
909 1.9 leo /*
910 1.9 leo * Since we followed the SCSI-spec and raised ATN while SEL was true
911 1.9 leo * but before BSY was false during the selection, a 'MESSAGE OUT'
912 1.9 leo * phase should follow. Unfortunately, this does not happen on
913 1.9 leo * all targets (Asante ethernet devices, for example), so we must
914 1.9 leo * check the actual mode if the message transfer fails--if the
915 1.9 leo * new phase is PH_CMD and has never been successfully selected
916 1.9 leo * w/ATN in the past, then we assume that it is an old device
917 1.9 leo * that doesn't support select w/ATN.
918 1.9 leo */
919 1.8 leo if (transfer_pio(&phase, tmp, &cnt, 0) || cnt) {
920 1.9 leo
921 1.9 leo if ((phase == PH_CMD) && !(sc->sc_selected & targ_bit)) {
922 1.9 leo DBG_SELPRINT ("Target %d: not responding to ATN.\n",
923 1.9 leo reqp->targ_id);
924 1.9 leo sc->sc_noselatn |= targ_bit;
925 1.9 leo reqp->phase = PH_CMD;
926 1.9 leo goto identify_failed;
927 1.9 leo }
928 1.9 leo
929 1.1 leo DBG_SELPRINT ("Target %d: failed to send identify\n",
930 1.1 leo reqp->targ_id);
931 1.1 leo /*
932 1.9 leo * Try to disconnect from the target. We cannot leave
933 1.9 leo * it just hanging here.
934 1.1 leo */
935 1.4 leo if (!reach_msg_out(sc, sizeof(struct scsi_generic))) {
936 1.1 leo u_long len = 1;
937 1.1 leo u_char phase = PH_MSGOUT;
938 1.1 leo u_char msg = MSG_ABORT;
939 1.1 leo
940 1.8 leo transfer_pio(&phase, &msg, &len, 0);
941 1.1 leo }
942 1.16 leo else scsi_reset_verbose(sc, "Connected to unidentified target");
943 1.1 leo
944 1.4 leo SET_5380_REG(NCR5380_ICOM, 0);
945 1.1 leo reqp->xs->error = code ? code : XS_DRIVER_STUFFUP;
946 1.1 leo finish_req(reqp);
947 1.11 leo PID("scsi_select9");
948 1.4 leo return (0);
949 1.1 leo }
950 1.1 leo reqp->phase = PH_MSGOUT;
951 1.1 leo
952 1.9 leo identify_failed:
953 1.9 leo sc->sc_selected |= targ_bit;
954 1.9 leo
955 1.1 leo #ifdef notyet /* LWP: Do we need timeouts in the driver? */
956 1.1 leo /*
957 1.1 leo * Command is connected, start timer ticking.
958 1.1 leo */
959 1.1 leo ccb_p->xtimeout = ccb_p->timeout + Lbolt;
960 1.1 leo #endif
961 1.1 leo
962 1.1 leo connected = reqp;
963 1.9 leo busy |= targ_bit;
964 1.11 leo PID("scsi_select10");
965 1.4 leo return (0);
966 1.1 leo }
967 1.1 leo
968 1.1 leo /*
969 1.1 leo * Return codes:
970 1.15 leo * 0: Job has finished or disconnected, find something else
971 1.15 leo * -1: keep on calling information_transfer() from scsi_main()
972 1.1 leo */
973 1.1 leo static int
974 1.15 leo information_transfer(sc)
975 1.15 leo struct ncr_softc *sc;
976 1.1 leo {
977 1.1 leo SC_REQ *reqp = connected;
978 1.1 leo u_char tmp, phase;
979 1.1 leo u_long len;
980 1.1 leo
981 1.4 leo PID("info_transf1");
982 1.1 leo /*
983 1.1 leo * Clear pending interrupts from 5380-chip.
984 1.1 leo */
985 1.4 leo scsi_clr_ipend();
986 1.1 leo
987 1.1 leo /*
988 1.15 leo * The SCSI-spec requires BSY to be true while connected to a target,
989 1.15 leo * loosing it means we lost the target...
990 1.15 leo * Also REQ needs to be asserted here to indicate that the bus-phase
991 1.15 leo * is valid. When the target does not supply REQ within a 'reasonable'
992 1.15 leo * amount of time, it's probably lost in it's own maze of twisting
993 1.15 leo * passages, we have to reset the bus to free it.
994 1.1 leo */
995 1.15 leo if (GET_5380_REG(NCR5380_IDSTAT) & SC_S_BSY)
996 1.15 leo wait_req_true();
997 1.4 leo tmp = GET_5380_REG(NCR5380_IDSTAT);
998 1.1 leo
999 1.15 leo
1000 1.15 leo if ((tmp & (SC_S_BSY|SC_S_REQ)) != (SC_S_BSY|SC_S_REQ)) {
1001 1.1 leo busy &= ~(1 << reqp->targ_id);
1002 1.1 leo connected = NULL;
1003 1.15 leo reqp->xs->error = XS_TIMEOUT;
1004 1.1 leo finish_req(reqp);
1005 1.15 leo if (!(tmp & SC_S_REQ))
1006 1.16 leo scsi_reset_verbose(sc,
1007 1.16 leo "Timeout waiting for phase-change");
1008 1.4 leo PID("info_transf2");
1009 1.4 leo return (0);
1010 1.1 leo }
1011 1.1 leo
1012 1.15 leo phase = (tmp >> 2) & 7;
1013 1.15 leo if (phase != reqp->phase) {
1014 1.15 leo reqp->phase = phase;
1015 1.15 leo DBG_INFPRINT(show_phase, reqp, phase);
1016 1.1 leo }
1017 1.1 leo
1018 1.4 leo switch (phase) {
1019 1.1 leo case PH_DATAOUT:
1020 1.1 leo #ifdef DBG_NOWRITE
1021 1.4 leo ncr_tprint(reqp, "NOWRITE set -- write attempt aborted.");
1022 1.1 leo reqp->msgout = MSG_ABORT;
1023 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_A_ATN);
1024 1.4 leo return (-1);
1025 1.1 leo #endif /* DBG_NOWRITE */
1026 1.4 leo /*
1027 1.4 leo * If this is the first write using DMA, fill
1028 1.4 leo * the bounce buffer.
1029 1.4 leo */
1030 1.4 leo if (reqp->xdata_ptr == reqp->xs->data) { /* XXX */
1031 1.4 leo if (reqp->dr_flag & DRIVER_BOUNCING)
1032 1.4 leo bcopy(reqp->xdata_ptr, reqp->bounceb, reqp->xdata_len);
1033 1.4 leo }
1034 1.1 leo
1035 1.1 leo case PH_DATAIN:
1036 1.1 leo #ifdef REAL_DMA
1037 1.4 leo if (reqp->dr_flag & DRIVER_DMAOK) {
1038 1.1 leo int poll = REAL_DMA_POLL|(reqp->dr_flag & DRIVER_NOINT);
1039 1.1 leo transfer_dma(reqp, phase, poll);
1040 1.4 leo if (!poll)
1041 1.4 leo return (0);
1042 1.1 leo }
1043 1.1 leo else
1044 1.1 leo #endif
1045 1.1 leo {
1046 1.4 leo PID("info_transf3");
1047 1.1 leo len = reqp->xdata_len;
1048 1.4 leo #ifdef USE_PDMA
1049 1.7 leo if (transfer_pdma(&phase, reqp->xdata_ptr, &len) == 0)
1050 1.7 leo return (0);
1051 1.4 leo #else
1052 1.8 leo transfer_pio(&phase, reqp->xdata_ptr, &len, 0);
1053 1.4 leo #endif
1054 1.1 leo reqp->xdata_ptr += reqp->xdata_len - len;
1055 1.1 leo reqp->xdata_len = len;
1056 1.1 leo }
1057 1.4 leo return (-1);
1058 1.1 leo case PH_MSGIN:
1059 1.1 leo /*
1060 1.1 leo * We only expect single byte messages here.
1061 1.1 leo */
1062 1.1 leo len = 1;
1063 1.8 leo transfer_pio(&phase, &tmp, &len, 1);
1064 1.1 leo reqp->message = tmp;
1065 1.4 leo return (handle_message(reqp, tmp));
1066 1.1 leo case PH_MSGOUT:
1067 1.1 leo len = 1;
1068 1.8 leo transfer_pio(&phase, &reqp->msgout, &len, 0);
1069 1.4 leo if (reqp->msgout == MSG_ABORT) {
1070 1.1 leo busy &= ~(1 << reqp->targ_id);
1071 1.1 leo connected = NULL;
1072 1.1 leo reqp->xs->error = XS_DRIVER_STUFFUP;
1073 1.1 leo finish_req(reqp);
1074 1.4 leo PID("info_transf4");
1075 1.4 leo return (0);
1076 1.1 leo }
1077 1.1 leo reqp->msgout = MSG_NOOP;
1078 1.4 leo return (-1);
1079 1.1 leo case PH_CMD :
1080 1.1 leo len = command_size(reqp->xcmd.opcode);
1081 1.8 leo transfer_pio(&phase, (u_char *)&reqp->xcmd, &len, 0);
1082 1.4 leo PID("info_transf5");
1083 1.4 leo return (-1);
1084 1.1 leo case PH_STATUS:
1085 1.1 leo len = 1;
1086 1.8 leo transfer_pio(&phase, &tmp, &len, 0);
1087 1.1 leo reqp->status = tmp;
1088 1.4 leo PID("info_transf6");
1089 1.4 leo return (-1);
1090 1.1 leo default :
1091 1.4 leo ncr_tprint(reqp, "Unknown phase\n");
1092 1.1 leo }
1093 1.4 leo PID("info_transf7");
1094 1.4 leo return (-1);
1095 1.1 leo }
1096 1.1 leo
1097 1.1 leo /*
1098 1.1 leo * Handle the message 'msg' send to us by the target.
1099 1.1 leo * Return values:
1100 1.1 leo * 0 : The current command has completed.
1101 1.1 leo * -1 : Get on to the next phase.
1102 1.1 leo */
1103 1.1 leo static int
1104 1.1 leo handle_message(reqp, msg)
1105 1.1 leo SC_REQ *reqp;
1106 1.1 leo u_int msg;
1107 1.1 leo {
1108 1.1 leo int sps;
1109 1.12 jtc SC_REQ *prev, *req;
1110 1.1 leo
1111 1.4 leo PID("hmessage1");
1112 1.4 leo switch (msg) {
1113 1.1 leo /*
1114 1.1 leo * Linking lets us reduce the time required to get
1115 1.1 leo * the next command to the device, skipping the arbitration
1116 1.1 leo * and selection time. In the current implementation,
1117 1.1 leo * we merely have to start the next command pointed
1118 1.1 leo * to by 'next_link'.
1119 1.1 leo */
1120 1.1 leo case MSG_LINK_CMD_COMPLETE:
1121 1.1 leo case MSG_LINK_CMD_COMPLETEF:
1122 1.4 leo if (reqp->link == NULL) {
1123 1.4 leo ncr_tprint(reqp, "No link for linked command");
1124 1.10 leo nack_message(reqp, MSG_ABORT);
1125 1.4 leo PID("hmessage2");
1126 1.4 leo return (-1);
1127 1.1 leo }
1128 1.8 leo ack_message();
1129 1.12 jtc if (!(reqp->dr_flag & DRIVER_AUTOSEN)) {
1130 1.12 jtc reqp->xs->resid = reqp->xdata_len;
1131 1.12 jtc reqp->xs->error = 0;
1132 1.12 jtc }
1133 1.1 leo
1134 1.1 leo #ifdef AUTO_SENSE
1135 1.12 jtc if (check_autosense(reqp, 1) == -1)
1136 1.4 leo return (-1);
1137 1.1 leo #endif /* AUTO_SENSE */
1138 1.1 leo
1139 1.1 leo #ifdef DBG_REQ
1140 1.6 leo if (dbg_target_mask & (1 << reqp->targ_id))
1141 1.6 leo show_request(reqp->link, "LINK");
1142 1.1 leo #endif
1143 1.1 leo connected = reqp->link;
1144 1.12 jtc
1145 1.12 jtc /*
1146 1.12 jtc * Unlink the 'linked' request from the issue_q
1147 1.12 jtc */
1148 1.12 jtc sps = splbio();
1149 1.12 jtc prev = NULL;
1150 1.12 jtc req = issue_q;
1151 1.12 jtc for (; req != NULL; prev = req, req = req->next) {
1152 1.12 jtc if (req == connected)
1153 1.12 jtc break;
1154 1.12 jtc }
1155 1.12 jtc if (req == NULL)
1156 1.12 jtc panic("Inconsistent issue_q");
1157 1.12 jtc if (prev == NULL)
1158 1.12 jtc issue_q = req->next;
1159 1.12 jtc else prev->next = req->next;
1160 1.12 jtc req->next = NULL;
1161 1.12 jtc splx(sps);
1162 1.12 jtc
1163 1.1 leo finish_req(reqp);
1164 1.4 leo PID("hmessage3");
1165 1.4 leo return (-1);
1166 1.1 leo case MSG_ABORT:
1167 1.1 leo case MSG_CMDCOMPLETE:
1168 1.8 leo ack_message();
1169 1.6 leo connected = NULL;
1170 1.1 leo busy &= ~(1 << reqp->targ_id);
1171 1.6 leo if (!(reqp->dr_flag & DRIVER_AUTOSEN)) {
1172 1.1 leo reqp->xs->resid = reqp->xdata_len;
1173 1.1 leo reqp->xs->error = 0;
1174 1.6 leo }
1175 1.1 leo
1176 1.1 leo #ifdef AUTO_SENSE
1177 1.4 leo if (check_autosense(reqp, 0) == -1) {
1178 1.4 leo PID("hmessage4");
1179 1.4 leo return (0);
1180 1.1 leo }
1181 1.1 leo #endif /* AUTO_SENSE */
1182 1.1 leo
1183 1.1 leo finish_req(reqp);
1184 1.4 leo PID("hmessage5");
1185 1.4 leo return (0);
1186 1.1 leo case MSG_MESSAGE_REJECT:
1187 1.8 leo ack_message();
1188 1.4 leo PID("hmessage6");
1189 1.4 leo return (-1);
1190 1.1 leo case MSG_DISCONNECT:
1191 1.8 leo ack_message();
1192 1.1 leo #ifdef DBG_REQ
1193 1.6 leo if (dbg_target_mask & (1 << reqp->targ_id))
1194 1.6 leo show_request(reqp, "DISCON");
1195 1.1 leo #endif
1196 1.1 leo sps = splbio();
1197 1.1 leo connected = NULL;
1198 1.1 leo reqp->next = discon_q;
1199 1.1 leo discon_q = reqp;
1200 1.1 leo splx(sps);
1201 1.4 leo PID("hmessage7");
1202 1.4 leo return (0);
1203 1.1 leo case MSG_SAVEDATAPOINTER:
1204 1.1 leo case MSG_RESTOREPOINTERS:
1205 1.1 leo /*
1206 1.1 leo * We save pointers implicitely at disconnect.
1207 1.1 leo * So we can ignore these messages.
1208 1.1 leo */
1209 1.8 leo ack_message();
1210 1.4 leo PID("hmessage8");
1211 1.4 leo return (-1);
1212 1.8 leo case MSG_EXTENDED:
1213 1.10 leo nack_message(reqp, MSG_MESSAGE_REJECT);
1214 1.8 leo PID("hmessage9");
1215 1.8 leo return (-1);
1216 1.1 leo default:
1217 1.10 leo ncr_tprint(reqp, "Unknown message %x\n", msg);
1218 1.4 leo return (-1);
1219 1.1 leo }
1220 1.8 leo PID("hmessage10");
1221 1.4 leo return (-1);
1222 1.1 leo }
1223 1.1 leo
1224 1.1 leo /*
1225 1.1 leo * Handle reselection. If a valid reconnection occurs, connected
1226 1.1 leo * points at the reconnected command. The command is removed from the
1227 1.1 leo * disconnected queue.
1228 1.1 leo */
1229 1.1 leo static void
1230 1.4 leo reselect(sc)
1231 1.4 leo struct ncr_softc *sc;
1232 1.1 leo {
1233 1.1 leo u_char phase;
1234 1.1 leo u_long len;
1235 1.1 leo u_char msg;
1236 1.1 leo u_char target_mask;
1237 1.1 leo int abort = 0;
1238 1.16 leo SC_REQ *tmp = NULL, *prev;
1239 1.1 leo
1240 1.4 leo PID("reselect1");
1241 1.4 leo target_mask = GET_5380_REG(NCR5380_DATA) & ~SC_HOST_ID;
1242 1.1 leo
1243 1.1 leo /*
1244 1.1 leo * At this point, we have detected that our SCSI-id is on the bus,
1245 1.1 leo * SEL is true and BSY was false for at least one bus settle
1246 1.1 leo * delay (400 ns.).
1247 1.1 leo * We must assert BSY ourselves, until the target drops the SEL signal.
1248 1.8 leo * The SCSI-spec specifies no maximum time for this, so we have to
1249 1.8 leo * choose something long enough to suit all targets.
1250 1.1 leo */
1251 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_A_BSY);
1252 1.12 jtc len = 250000;
1253 1.7 leo while ((GET_5380_REG(NCR5380_IDSTAT) & SC_S_SEL) && (len > 0)) {
1254 1.7 leo delay(1);
1255 1.7 leo len--;
1256 1.7 leo }
1257 1.7 leo if (GET_5380_REG(NCR5380_IDSTAT) & SC_S_SEL) {
1258 1.7 leo /* Damn SEL isn't dropping */
1259 1.16 leo scsi_reset_verbose(sc, "Target won't drop SEL during Reselect");
1260 1.7 leo return;
1261 1.7 leo }
1262 1.7 leo
1263 1.4 leo SET_5380_REG(NCR5380_ICOM, 0);
1264 1.1 leo
1265 1.1 leo /*
1266 1.12 jtc * Check if the reselection is still valid. Check twice because
1267 1.12 jtc * of possible line glitches - cheaper than delay(1) and we need
1268 1.12 jtc * only a few nanoseconds.
1269 1.12 jtc */
1270 1.12 jtc if (!(GET_5380_REG(NCR5380_IDSTAT) & SC_S_BSY)) {
1271 1.12 jtc if (!(GET_5380_REG(NCR5380_IDSTAT) & SC_S_BSY)) {
1272 1.12 jtc ncr_aprint(sc, "Stepped into the reselection timeout\n");
1273 1.12 jtc return;
1274 1.12 jtc }
1275 1.12 jtc }
1276 1.12 jtc
1277 1.12 jtc /*
1278 1.1 leo * Get the expected identify message.
1279 1.1 leo */
1280 1.1 leo phase = PH_MSGIN;
1281 1.1 leo len = 1;
1282 1.8 leo transfer_pio(&phase, &msg, &len, 0);
1283 1.4 leo if (len || !MSG_ISIDENTIFY(msg)) {
1284 1.4 leo ncr_aprint(sc, "Expecting IDENTIFY, got 0x%x\n", msg);
1285 1.1 leo abort = 1;
1286 1.1 leo }
1287 1.1 leo else {
1288 1.1 leo /*
1289 1.1 leo * Find the command reconnecting
1290 1.1 leo */
1291 1.4 leo for (tmp = discon_q, prev = NULL; tmp; prev = tmp, tmp = tmp->next){
1292 1.4 leo if (target_mask == (1 << tmp->targ_id)) {
1293 1.4 leo if (prev)
1294 1.1 leo prev->next = tmp->next;
1295 1.1 leo else discon_q = tmp->next;
1296 1.1 leo tmp->next = NULL;
1297 1.1 leo break;
1298 1.1 leo }
1299 1.1 leo }
1300 1.4 leo if (tmp == NULL) {
1301 1.4 leo ncr_aprint(sc, "No disconnected job for targetmask %x\n",
1302 1.1 leo target_mask);
1303 1.4 leo abort = 1;
1304 1.1 leo }
1305 1.1 leo }
1306 1.4 leo if (abort) {
1307 1.1 leo msg = MSG_ABORT;
1308 1.1 leo len = 1;
1309 1.1 leo phase = PH_MSGOUT;
1310 1.1 leo
1311 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_A_ATN);
1312 1.13 leo if (transfer_pio(&phase, &msg, &len, 0) || len)
1313 1.16 leo scsi_reset_verbose(sc, "Failure to abort reselection");
1314 1.1 leo }
1315 1.1 leo else {
1316 1.1 leo connected = tmp;
1317 1.1 leo #ifdef DBG_REQ
1318 1.6 leo if (dbg_target_mask & (1 << tmp->targ_id))
1319 1.6 leo show_request(tmp, "RECON");
1320 1.1 leo #endif
1321 1.1 leo }
1322 1.4 leo PID("reselect2");
1323 1.1 leo }
1324 1.1 leo
1325 1.1 leo /*
1326 1.4 leo * Transfer data in a given phase using programmed I/O.
1327 1.1 leo * Returns -1 when a different phase is entered without transferring the
1328 1.8 leo * maximum number of bytes, 0 if all bytes transferred or exit is in the same
1329 1.1 leo * phase.
1330 1.1 leo */
1331 1.1 leo static int
1332 1.8 leo transfer_pio(phase, data, len, dont_drop_ack)
1333 1.1 leo u_char *phase;
1334 1.1 leo u_char *data;
1335 1.1 leo u_long *len;
1336 1.8 leo int dont_drop_ack;
1337 1.1 leo {
1338 1.1 leo u_int cnt = *len;
1339 1.1 leo u_char ph = *phase;
1340 1.8 leo u_char tmp, new_icom;
1341 1.1 leo
1342 1.1 leo DBG_PIOPRINT ("SCSI: transfer_pio start: phase: %d, len: %d\n", ph,cnt);
1343 1.4 leo PID("tpio1");
1344 1.4 leo SET_5380_REG(NCR5380_TCOM, ph);
1345 1.1 leo do {
1346 1.4 leo if (!wait_req_true()) {
1347 1.1 leo DBG_PIOPRINT ("SCSI: transfer_pio: missing REQ\n", 0, 0);
1348 1.1 leo break;
1349 1.1 leo }
1350 1.4 leo if (((GET_5380_REG(NCR5380_IDSTAT) >> 2) & 7) != ph) {
1351 1.1 leo DBG_PIOPRINT ("SCSI: transfer_pio: phase mismatch\n", 0, 0);
1352 1.1 leo break;
1353 1.1 leo }
1354 1.4 leo if (PH_IN(ph)) {
1355 1.4 leo *data++ = GET_5380_REG(NCR5380_DATA);
1356 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_A_ACK);
1357 1.8 leo if ((cnt == 1) && dont_drop_ack)
1358 1.8 leo new_icom = SC_A_ACK;
1359 1.8 leo else new_icom = 0;
1360 1.1 leo }
1361 1.1 leo else {
1362 1.4 leo SET_5380_REG(NCR5380_DATA, *data++);
1363 1.1 leo
1364 1.1 leo /*
1365 1.1 leo * The SCSI-standard suggests that in the 'MESSAGE OUT' phase,
1366 1.1 leo * the initiator should drop ATN on the last byte of the
1367 1.1 leo * message phase after REQ has been asserted for the handshake
1368 1.1 leo * but before the initiator raises ACK.
1369 1.1 leo */
1370 1.4 leo if (!( (ph == PH_MSGOUT) && (cnt > 1) )) {
1371 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_ADTB);
1372 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_ADTB | SC_A_ACK);
1373 1.8 leo new_icom = 0;
1374 1.1 leo }
1375 1.1 leo else {
1376 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_ADTB | SC_A_ATN);
1377 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_ADTB|SC_A_ATN|SC_A_ACK);
1378 1.8 leo new_icom = SC_A_ATN;
1379 1.1 leo }
1380 1.1 leo }
1381 1.4 leo if (!wait_req_false()) {
1382 1.1 leo DBG_PIOPRINT ("SCSI: transfer_pio - REQ not dropping\n", 0, 0);
1383 1.1 leo break;
1384 1.1 leo }
1385 1.8 leo SET_5380_REG(NCR5380_ICOM, new_icom);
1386 1.1 leo
1387 1.4 leo } while (--cnt);
1388 1.1 leo
1389 1.4 leo if ((tmp = GET_5380_REG(NCR5380_IDSTAT)) & SC_S_REQ)
1390 1.1 leo *phase = (tmp >> 2) & 7;
1391 1.1 leo else *phase = NR_PHASE;
1392 1.1 leo *len = cnt;
1393 1.1 leo DBG_PIOPRINT ("SCSI: transfer_pio done: phase: %d, len: %d\n",
1394 1.1 leo *phase, cnt);
1395 1.4 leo PID("tpio2");
1396 1.4 leo if (!cnt || (*phase == ph))
1397 1.4 leo return (0);
1398 1.4 leo return (-1);
1399 1.1 leo }
1400 1.1 leo
1401 1.4 leo #ifdef REAL_DMA
1402 1.1 leo /*
1403 1.1 leo * Start a DMA-transfer on the device using the current pointers.
1404 1.4 leo * If 'poll' is true, the function busy-waits until DMA has completed.
1405 1.1 leo */
1406 1.1 leo static void
1407 1.1 leo transfer_dma(reqp, phase, poll)
1408 1.1 leo SC_REQ *reqp;
1409 1.1 leo u_int phase;
1410 1.1 leo int poll;
1411 1.1 leo {
1412 1.4 leo int dma_done;
1413 1.1 leo u_char mbase = 0;
1414 1.1 leo int sps;
1415 1.1 leo
1416 1.1 leo again:
1417 1.4 leo PID("tdma1");
1418 1.4 leo
1419 1.1 leo /*
1420 1.1 leo * We should be in phase, otherwise we are not allowed to
1421 1.1 leo * drive the bus.
1422 1.1 leo */
1423 1.4 leo SET_5380_REG(NCR5380_TCOM, phase);
1424 1.1 leo
1425 1.1 leo /*
1426 1.1 leo * Defer interrupts until DMA is fully running.
1427 1.1 leo */
1428 1.1 leo sps = splbio();
1429 1.1 leo
1430 1.1 leo /*
1431 1.1 leo * Clear pending interrupts and parity errors.
1432 1.1 leo */
1433 1.4 leo scsi_clr_ipend();
1434 1.1 leo
1435 1.4 leo if (!poll) {
1436 1.1 leo /*
1437 1.1 leo * Enable SCSI interrupts and set IN_DMA flag, set 'mbase'
1438 1.1 leo * to the interrupts we want enabled.
1439 1.1 leo */
1440 1.1 leo scsi_ienable();
1441 1.1 leo reqp->dr_flag |= DRIVER_IN_DMA;
1442 1.1 leo mbase = SC_E_EOPI | SC_MON_BSY;
1443 1.1 leo }
1444 1.4 leo else scsi_idisable();
1445 1.4 leo mbase |= IMODE_BASE | SC_M_DMA;
1446 1.4 leo scsi_dma_setup(reqp, phase, mbase);
1447 1.1 leo
1448 1.1 leo splx(sps);
1449 1.1 leo
1450 1.4 leo if (poll) {
1451 1.1 leo /*
1452 1.4 leo * On polled-dma transfers, we wait here until the
1453 1.4 leo * 'end-of-dma' condition occurs.
1454 1.4 leo */
1455 1.4 leo poll_edma(reqp);
1456 1.4 leo if (!(dma_done = dma_ready()))
1457 1.1 leo goto again;
1458 1.1 leo }
1459 1.4 leo PID("tdma2");
1460 1.1 leo }
1461 1.1 leo
1462 1.1 leo /*
1463 1.1 leo * Check results of a DMA data-transfer.
1464 1.1 leo */
1465 1.1 leo static int
1466 1.4 leo dma_ready()
1467 1.1 leo {
1468 1.1 leo SC_REQ *reqp = connected;
1469 1.4 leo int dmstat, is_edma;
1470 1.4 leo long bytes_left, bytes_done;
1471 1.1 leo
1472 1.4 leo is_edma = get_dma_result(reqp, &bytes_left);
1473 1.4 leo dmstat = GET_5380_REG(NCR5380_DMSTAT);
1474 1.1 leo
1475 1.1 leo /*
1476 1.1 leo * Check if the call is sensible and not caused by any spurious
1477 1.1 leo * interrupt.
1478 1.1 leo */
1479 1.4 leo if (!is_edma && !(dmstat & (SC_END_DMA|SC_BSY_ERR))
1480 1.4 leo && (dmstat & SC_PHS_MTCH) ) {
1481 1.14 leo ncr_tprint(reqp, "dma_ready: spurious call "
1482 1.4 leo "(dm:%x,last_hit: %s)\n",
1483 1.4 leo #ifdef DBG_PID
1484 1.14 leo dmstat, last_hit[DBG_PID-1]);
1485 1.4 leo #else
1486 1.14 leo dmstat, "unknown");
1487 1.4 leo #endif
1488 1.4 leo return (0);
1489 1.1 leo }
1490 1.1 leo
1491 1.1 leo /*
1492 1.4 leo * Clear all (pending) interrupts.
1493 1.1 leo */
1494 1.4 leo scsi_clr_ipend();
1495 1.1 leo
1496 1.1 leo /*
1497 1.1 leo * Update various transfer-pointers/lengths
1498 1.1 leo */
1499 1.1 leo bytes_done = reqp->dm_cur->dm_count - bytes_left;
1500 1.1 leo
1501 1.4 leo if ((reqp->dr_flag & DRIVER_BOUNCING) && (PH_IN(reqp->phase))) {
1502 1.4 leo /*
1503 1.4 leo * Copy the bytes read until now from the bounce buffer
1504 1.4 leo * to the 'real' destination. Flush the data-cache
1505 1.4 leo * before copying.
1506 1.4 leo */
1507 1.4 leo PCIA();
1508 1.4 leo bcopy(reqp->bouncerp, reqp->xdata_ptr, bytes_done);
1509 1.4 leo reqp->bouncerp += bytes_done;
1510 1.4 leo }
1511 1.4 leo
1512 1.1 leo reqp->xdata_ptr = &reqp->xdata_ptr[bytes_done]; /* XXX */
1513 1.1 leo reqp->xdata_len -= bytes_done; /* XXX */
1514 1.4 leo if ((reqp->dm_cur->dm_count -= bytes_done) == 0)
1515 1.1 leo reqp->dm_cur++;
1516 1.1 leo else reqp->dm_cur->dm_addr += bytes_done;
1517 1.1 leo
1518 1.4 leo if (PH_IN(reqp->phase) && (dmstat & SC_PAR_ERR)) {
1519 1.4 leo if (!(ncr5380_no_parchk & (1 << reqp->targ_id)))
1520 1.1 leo /* XXX: Should be parity error ???? */
1521 1.1 leo reqp->xs->error = XS_DRIVER_STUFFUP;
1522 1.1 leo }
1523 1.1 leo
1524 1.1 leo /*
1525 1.1 leo * DMA mode should always be reset even when we will continue with the
1526 1.11 leo * next chain. It is also essential to clear the MON_BUSY because
1527 1.11 leo * when LOST_BUSY is unexpectedly set, we will not be able to drive
1528 1.11 leo * the bus....
1529 1.1 leo */
1530 1.11 leo SET_5380_REG(NCR5380_MODE, IMODE_BASE);
1531 1.4 leo
1532 1.4 leo
1533 1.4 leo if ((dmstat & SC_BSY_ERR) || !(dmstat & SC_PHS_MTCH)
1534 1.4 leo || (reqp->dm_cur > reqp->dm_last) || (reqp->xs->error)) {
1535 1.1 leo
1536 1.1 leo /*
1537 1.1 leo * Tell interrupt functions DMA mode has ended.
1538 1.1 leo */
1539 1.1 leo reqp->dr_flag &= ~DRIVER_IN_DMA;
1540 1.1 leo
1541 1.1 leo /*
1542 1.4 leo * Clear mode and icom
1543 1.1 leo */
1544 1.4 leo SET_5380_REG(NCR5380_MODE, IMODE_BASE);
1545 1.4 leo SET_5380_REG(NCR5380_ICOM, 0);
1546 1.1 leo
1547 1.4 leo if (dmstat & SC_BSY_ERR) {
1548 1.4 leo if (!reqp->xs->error)
1549 1.1 leo reqp->xs->error = XS_BUSY;
1550 1.1 leo finish_req(reqp);
1551 1.4 leo PID("dma_ready1");
1552 1.4 leo return (1);
1553 1.1 leo }
1554 1.1 leo
1555 1.4 leo if (reqp->xs->error != 0) {
1556 1.4 leo ncr_tprint(reqp, "dma-ready: code = %d\n", reqp->xs->error); /* LWP */
1557 1.1 leo reqp->msgout = MSG_ABORT;
1558 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_A_ATN);
1559 1.1 leo }
1560 1.4 leo PID("dma_ready2");
1561 1.4 leo return (1);
1562 1.1 leo }
1563 1.4 leo return (0);
1564 1.1 leo }
1565 1.4 leo #endif /* REAL_DMA */
1566 1.1 leo
1567 1.1 leo static int
1568 1.1 leo check_autosense(reqp, linked)
1569 1.1 leo SC_REQ *reqp;
1570 1.1 leo int linked;
1571 1.1 leo {
1572 1.1 leo int sps;
1573 1.1 leo
1574 1.1 leo /*
1575 1.13 leo * If this is the driver's Link Check for this target, ignore
1576 1.13 leo * the results of the command. All we care about is whether we
1577 1.13 leo * got here from a LINK_CMD_COMPLETE or CMD_COMPLETE message.
1578 1.13 leo */
1579 1.13 leo PID("linkcheck");
1580 1.13 leo if (reqp->dr_flag & DRIVER_LINKCHK) {
1581 1.13 leo if (linked)
1582 1.13 leo ncr_will_link |= 1<<reqp->targ_id;
1583 1.13 leo else ncr_tprint(reqp, "Does not support linked commands\n");
1584 1.13 leo return (0);
1585 1.13 leo }
1586 1.13 leo /*
1587 1.1 leo * If we not executing an auto-sense and the status code
1588 1.1 leo * is request-sense, we automatically issue a request
1589 1.1 leo * sense command.
1590 1.1 leo */
1591 1.4 leo PID("cautos1");
1592 1.4 leo if (!(reqp->dr_flag & DRIVER_AUTOSEN)) {
1593 1.12 jtc switch (reqp->status & SCSMASK) {
1594 1.12 jtc case SCSCHKC:
1595 1.12 jtc bcopy(sense_cmd, &reqp->xcmd, sizeof(sense_cmd));
1596 1.1 leo reqp->xdata_ptr = (u_char *)&reqp->xs->sense;
1597 1.1 leo reqp->xdata_len = sizeof(reqp->xs->sense);
1598 1.1 leo reqp->dr_flag |= DRIVER_AUTOSEN;
1599 1.1 leo reqp->dr_flag &= ~DRIVER_DMAOK;
1600 1.4 leo if (!linked) {
1601 1.1 leo sps = splbio();
1602 1.1 leo reqp->next = issue_q;
1603 1.1 leo issue_q = reqp;
1604 1.1 leo splx(sps);
1605 1.1 leo }
1606 1.13 leo else reqp->xcmd.bytes[sizeof(sense_cmd)-2] |= 1;
1607 1.1 leo
1608 1.1 leo #ifdef DBG_REQ
1609 1.6 leo bzero(reqp->xdata_ptr, reqp->xdata_len);
1610 1.6 leo if (dbg_target_mask & (1 << reqp->targ_id))
1611 1.6 leo show_request(reqp, "AUTO-SENSE");
1612 1.1 leo #endif
1613 1.4 leo PID("cautos2");
1614 1.4 leo return (-1);
1615 1.12 jtc case SCSBUSY:
1616 1.12 jtc reqp->xs->error = XS_BUSY;
1617 1.12 jtc return (0);
1618 1.1 leo }
1619 1.1 leo }
1620 1.1 leo else {
1621 1.1 leo /*
1622 1.1 leo * An auto-sense has finished
1623 1.1 leo */
1624 1.4 leo if ((reqp->status & SCSMASK) != SCSGOOD)
1625 1.1 leo reqp->xs->error = XS_DRIVER_STUFFUP; /* SC_E_AUTOSEN; */
1626 1.1 leo else reqp->xs->error = XS_SENSE;
1627 1.1 leo reqp->status = SCSCHKC;
1628 1.1 leo }
1629 1.4 leo PID("cautos3");
1630 1.4 leo return (0);
1631 1.1 leo }
1632 1.1 leo
1633 1.1 leo static int
1634 1.4 leo reach_msg_out(sc, len)
1635 1.4 leo struct ncr_softc *sc;
1636 1.4 leo u_long len;
1637 1.1 leo {
1638 1.1 leo u_char phase;
1639 1.1 leo u_char data;
1640 1.1 leo
1641 1.4 leo ncr_aprint(sc, "Trying to reach Message-out phase\n");
1642 1.4 leo if ((phase = GET_5380_REG(NCR5380_IDSTAT)) & SC_S_REQ)
1643 1.1 leo phase = (phase >> 2) & 7;
1644 1.4 leo else return (-1);
1645 1.4 leo ncr_aprint(sc, "Trying to reach Message-out phase, now: %d\n", phase);
1646 1.4 leo if (phase == PH_MSGOUT)
1647 1.4 leo return (0);
1648 1.1 leo
1649 1.4 leo SET_5380_REG(NCR5380_TCOM, phase);
1650 1.1 leo
1651 1.1 leo do {
1652 1.4 leo if (!wait_req_true())
1653 1.1 leo break;
1654 1.4 leo if (((GET_5380_REG(NCR5380_IDSTAT) >> 2) & 7) != phase)
1655 1.1 leo break;
1656 1.4 leo if (PH_IN(phase)) {
1657 1.4 leo data = GET_5380_REG(NCR5380_DATA);
1658 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_A_ACK | SC_A_ATN);
1659 1.1 leo }
1660 1.1 leo else {
1661 1.4 leo SET_5380_REG(NCR5380_DATA, 0);
1662 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_ADTB|SC_A_ACK|SC_A_ATN);
1663 1.1 leo }
1664 1.4 leo if (!wait_req_false())
1665 1.1 leo break;
1666 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_A_ATN);
1667 1.4 leo } while (--len);
1668 1.1 leo
1669 1.4 leo if ((phase = GET_5380_REG(NCR5380_IDSTAT)) & SC_S_REQ) {
1670 1.1 leo phase = (phase >> 2) & 7;
1671 1.4 leo if (phase == PH_MSGOUT) {
1672 1.4 leo ncr_aprint(sc, "Message-out phase reached.\n");
1673 1.4 leo return (0);
1674 1.1 leo }
1675 1.1 leo }
1676 1.4 leo return (-1);
1677 1.1 leo }
1678 1.1 leo
1679 1.16 leo void
1680 1.16 leo scsi_reset()
1681 1.1 leo {
1682 1.1 leo SC_REQ *tmp, *next;
1683 1.4 leo int sps;
1684 1.1 leo
1685 1.4 leo PID("scsi_reset1");
1686 1.1 leo sps = splbio();
1687 1.4 leo SET_5380_REG(NCR5380_ICOM, SC_A_RST);
1688 1.15 leo delay(100);
1689 1.4 leo SET_5380_REG(NCR5380_ICOM, 0);
1690 1.15 leo scsi_clr_ipend();
1691 1.1 leo
1692 1.1 leo /*
1693 1.1 leo * None of the jobs in the discon_q will ever be reconnected,
1694 1.1 leo * notify this to the higher level code.
1695 1.1 leo */
1696 1.4 leo for (tmp = discon_q; tmp ;) {
1697 1.1 leo next = tmp->next;
1698 1.1 leo tmp->next = NULL;
1699 1.1 leo tmp->xs->error = XS_TIMEOUT;
1700 1.1 leo busy &= ~(1 << tmp->targ_id);
1701 1.1 leo finish_req(tmp);
1702 1.1 leo tmp = next;
1703 1.1 leo }
1704 1.1 leo discon_q = NULL;
1705 1.1 leo
1706 1.1 leo /*
1707 1.1 leo * The current job will never finish either.
1708 1.1 leo * The problem is that we can't finish the job because an instance
1709 1.1 leo * of main is running on it. Our best guess is that the job is currently
1710 1.1 leo * doing REAL-DMA. In that case 'dma_ready()' should correctly finish
1711 1.1 leo * the job because it detects BSY-loss.
1712 1.1 leo */
1713 1.4 leo if (tmp = connected) {
1714 1.4 leo if (tmp->dr_flag & DRIVER_IN_DMA) {
1715 1.1 leo tmp->xs->error = XS_DRIVER_STUFFUP;
1716 1.4 leo #ifdef REAL_DMA
1717 1.4 leo dma_ready();
1718 1.4 leo #endif
1719 1.1 leo }
1720 1.1 leo }
1721 1.1 leo splx(sps);
1722 1.4 leo PID("scsi_reset2");
1723 1.15 leo
1724 1.15 leo /*
1725 1.15 leo * Give the attached devices some time to handle the reset. This
1726 1.15 leo * value is arbitrary but should be relatively long.
1727 1.15 leo */
1728 1.15 leo delay(100000);
1729 1.1 leo }
1730 1.1 leo
1731 1.16 leo static void
1732 1.16 leo scsi_reset_verbose(sc, why)
1733 1.16 leo struct ncr_softc *sc;
1734 1.16 leo const char *why;
1735 1.16 leo {
1736 1.16 leo ncr_aprint(sc, "Resetting SCSI-bus (%s)\n", why);
1737 1.16 leo
1738 1.16 leo scsi_reset();
1739 1.16 leo }
1740 1.16 leo
1741 1.1 leo /*
1742 1.1 leo * Check validity of the IRQ set by the 5380. If the interrupt is valid,
1743 1.1 leo * the appropriate action is carried out (reselection or DMA ready) and
1744 1.1 leo * INTR_RESEL or INTR_DMA is returned. Otherwise a console notice is written
1745 1.1 leo * and INTR_SPURIOUS is returned.
1746 1.1 leo */
1747 1.1 leo static int
1748 1.4 leo check_intr(sc)
1749 1.4 leo struct ncr_softc *sc;
1750 1.1 leo {
1751 1.1 leo SC_REQ *reqp;
1752 1.1 leo
1753 1.4 leo if ((GET_5380_REG(NCR5380_IDSTAT) & (SC_S_SEL|SC_S_IO))
1754 1.4 leo ==(SC_S_SEL|SC_S_IO))
1755 1.4 leo return (INTR_RESEL);
1756 1.1 leo else {
1757 1.4 leo if ((reqp = connected) && (reqp->dr_flag & DRIVER_IN_DMA)){
1758 1.1 leo reqp->dr_flag &= ~DRIVER_IN_DMA;
1759 1.4 leo return (INTR_DMA);
1760 1.1 leo }
1761 1.1 leo }
1762 1.4 leo scsi_clr_ipend();
1763 1.1 leo printf("-->");
1764 1.1 leo scsi_show();
1765 1.4 leo ncr_aprint(sc, "Spurious interrupt.\n");
1766 1.4 leo return (INTR_SPURIOUS);
1767 1.1 leo }
1768 1.1 leo
1769 1.4 leo #ifdef REAL_DMA
1770 1.1 leo /*
1771 1.1 leo * Check if DMA can be used for this request. This function also builds
1772 1.1 leo * the dma-chain.
1773 1.1 leo */
1774 1.1 leo static int
1775 1.1 leo scsi_dmaok(reqp)
1776 1.1 leo SC_REQ *reqp;
1777 1.1 leo {
1778 1.1 leo u_long phy_buf;
1779 1.1 leo u_long phy_len;
1780 1.1 leo void *req_addr;
1781 1.1 leo u_long req_len;
1782 1.1 leo struct dma_chain *dm;
1783 1.1 leo
1784 1.1 leo /*
1785 1.1 leo * Initialize locals and requests' DMA-chain.
1786 1.1 leo */
1787 1.4 leo req_len = reqp->xdata_len;
1788 1.4 leo req_addr = (void*)reqp->xdata_ptr;
1789 1.4 leo dm = reqp->dm_cur = reqp->dm_last = reqp->dm_chain;
1790 1.4 leo dm->dm_count = dm->dm_addr = 0;
1791 1.4 leo reqp->dr_flag &= ~DRIVER_BOUNCING;
1792 1.1 leo
1793 1.1 leo /*
1794 1.1 leo * Do not accept zero length DMA.
1795 1.1 leo */
1796 1.4 leo if (req_len == 0)
1797 1.4 leo return (0);
1798 1.1 leo
1799 1.1 leo /*
1800 1.1 leo * LWP: I think that this restriction is not strictly nessecary.
1801 1.1 leo */
1802 1.4 leo if ((req_len & 0x1) || ((u_int)req_addr & 0x3))
1803 1.4 leo return (0);
1804 1.1 leo
1805 1.1 leo /*
1806 1.1 leo * Build the DMA-chain.
1807 1.1 leo */
1808 1.1 leo dm->dm_addr = phy_buf = kvtop(req_addr);
1809 1.4 leo while (req_len) {
1810 1.4 leo if (req_len < (phy_len = NBPG - ((u_long)req_addr & PGOFSET)))
1811 1.1 leo phy_len = req_len;
1812 1.1 leo
1813 1.1 leo req_addr += phy_len;
1814 1.1 leo req_len -= phy_len;
1815 1.1 leo dm->dm_count += phy_len;
1816 1.1 leo
1817 1.4 leo if (req_len) {
1818 1.4 leo u_long tmp = kvtop(req_addr);
1819 1.1 leo
1820 1.4 leo if ((phy_buf + phy_len) != tmp) {
1821 1.4 leo if (wrong_dma_range(reqp, dm)) {
1822 1.4 leo if (reqp->dr_flag & DRIVER_BOUNCING)
1823 1.4 leo goto bounceit;
1824 1.4 leo return (0);
1825 1.4 leo }
1826 1.1 leo
1827 1.4 leo if (++dm >= &reqp->dm_chain[MAXDMAIO]) {
1828 1.4 leo ncr_tprint(reqp,"dmaok: DMA chain too long!\n");
1829 1.4 leo return (0);
1830 1.1 leo }
1831 1.1 leo dm->dm_count = 0;
1832 1.1 leo dm->dm_addr = tmp;
1833 1.1 leo }
1834 1.1 leo phy_buf = tmp;
1835 1.1 leo }
1836 1.1 leo }
1837 1.4 leo if (wrong_dma_range(reqp, dm)) {
1838 1.4 leo if (reqp->dr_flag & DRIVER_BOUNCING)
1839 1.4 leo goto bounceit;
1840 1.4 leo return (0);
1841 1.4 leo }
1842 1.1 leo reqp->dm_last = dm;
1843 1.4 leo return (1);
1844 1.4 leo
1845 1.4 leo bounceit:
1846 1.4 leo if ((reqp->bounceb = alloc_bounceb(reqp->xdata_len)) == NULL) {
1847 1.4 leo /*
1848 1.4 leo * If we can't get a bounce buffer, forget DMA
1849 1.4 leo */
1850 1.4 leo reqp->dr_flag &= ~DRIVER_BOUNCING;
1851 1.4 leo return(0);
1852 1.4 leo }
1853 1.4 leo /*
1854 1.4 leo * Initialize a single DMA-range containing the bounced request
1855 1.4 leo */
1856 1.4 leo dm = reqp->dm_cur = reqp->dm_last = reqp->dm_chain;
1857 1.4 leo dm->dm_addr = kvtop(reqp->bounceb);
1858 1.4 leo dm->dm_count = reqp->xdata_len;
1859 1.4 leo reqp->bouncerp = reqp->bounceb;
1860 1.4 leo
1861 1.4 leo return (1);
1862 1.1 leo }
1863 1.4 leo #endif /* REAL_DMA */
1864 1.1 leo
1865 1.1 leo static void
1866 1.4 leo run_main(sc)
1867 1.4 leo struct ncr_softc *sc;
1868 1.1 leo {
1869 1.1 leo int sps = splbio();
1870 1.1 leo
1871 1.4 leo if (!main_running) {
1872 1.4 leo /*
1873 1.4 leo * If shared resources are required, claim them
1874 1.4 leo * before entering 'scsi_main'. If we can't get them
1875 1.4 leo * now, assume 'run_main' will be called when the resource
1876 1.4 leo * becomes available.
1877 1.4 leo */
1878 1.4 leo if (!claimed_dma()) {
1879 1.4 leo splx(sps);
1880 1.4 leo return;
1881 1.4 leo }
1882 1.1 leo main_running = 1;
1883 1.1 leo splx(sps);
1884 1.4 leo scsi_main(sc);
1885 1.1 leo }
1886 1.1 leo else splx(sps);
1887 1.1 leo }
1888 1.1 leo
1889 1.4 leo /*
1890 1.4 leo * Prefix message with full target info.
1891 1.4 leo */
1892 1.4 leo static void
1893 1.4 leo ncr_tprint(SC_REQ *reqp, char *fmt, ...)
1894 1.4 leo {
1895 1.4 leo va_list ap;
1896 1.4 leo
1897 1.4 leo va_start(ap, fmt);
1898 1.4 leo sc_print_addr(reqp->xs->sc_link);
1899 1.4 leo printf("%r", fmt, ap);
1900 1.4 leo va_end(ap);
1901 1.4 leo }
1902 1.4 leo
1903 1.4 leo /*
1904 1.4 leo * Prefix message with adapter info.
1905 1.4 leo */
1906 1.4 leo static void
1907 1.4 leo ncr_aprint(struct ncr_softc *sc, char *fmt, ...)
1908 1.4 leo {
1909 1.4 leo va_list ap;
1910 1.4 leo
1911 1.4 leo va_start(ap, fmt);
1912 1.4 leo printf("%s : %r", sc->sc_dev.dv_xname, fmt, ap);
1913 1.4 leo va_end(ap);
1914 1.4 leo }
1915 1.1 leo /****************************************************************************
1916 1.1 leo * Start Debugging Functions *
1917 1.1 leo ****************************************************************************/
1918 1.1 leo static void
1919 1.1 leo show_data_sense(xs)
1920 1.1 leo struct scsi_xfer *xs;
1921 1.1 leo {
1922 1.6 leo u_char *p1, *p2;
1923 1.1 leo int i;
1924 1.1 leo int sz;
1925 1.1 leo
1926 1.6 leo p1 = (u_char *) xs->cmd;
1927 1.6 leo p2 = (u_char *)&xs->sense;
1928 1.6 leo if(*p2 == 0)
1929 1.6 leo return; /* No(n)sense */
1930 1.6 leo printf("cmd[%d,%d]: ", xs->cmdlen, sz = command_size(*p1));
1931 1.4 leo for (i = 0; i < sz; i++)
1932 1.6 leo printf("%x ", p1[i]);
1933 1.1 leo printf("\nsense: ");
1934 1.4 leo for (i = 0; i < sizeof(xs->sense); i++)
1935 1.6 leo printf("%x ", p2[i]);
1936 1.1 leo printf("\n");
1937 1.1 leo }
1938 1.1 leo
1939 1.1 leo static void
1940 1.1 leo show_request(reqp, qtxt)
1941 1.1 leo SC_REQ *reqp;
1942 1.1 leo char *qtxt;
1943 1.1 leo {
1944 1.16 leo printf("REQ-%s: %d %p[%d] cmd[0]=%x S=%x M=%x R=%x resid=%d dr_flag=%x %s\n",
1945 1.6 leo qtxt, reqp->targ_id, reqp->xdata_ptr, reqp->xdata_len,
1946 1.1 leo reqp->xcmd.opcode, reqp->status, reqp->message,
1947 1.13 leo reqp->xs->error, reqp->xs->resid, reqp->dr_flag,
1948 1.13 leo reqp->link ? "L":"");
1949 1.4 leo if (reqp->status == SCSCHKC)
1950 1.1 leo show_data_sense(reqp->xs);
1951 1.1 leo }
1952 1.1 leo
1953 1.8 leo static char *sig_names[] = {
1954 1.8 leo "PAR", "SEL", "I/O", "C/D", "MSG", "REQ", "BSY", "RST",
1955 1.8 leo "ACK", "ATN", "LBSY", "PMATCH", "IRQ", "EPAR", "DREQ", "EDMA"
1956 1.8 leo };
1957 1.8 leo
1958 1.8 leo static void
1959 1.8 leo show_signals(dmstat, idstat)
1960 1.8 leo u_char dmstat, idstat;
1961 1.8 leo {
1962 1.8 leo u_short tmp, mask;
1963 1.16 leo int j, need_pipe;
1964 1.8 leo
1965 1.8 leo tmp = idstat | ((dmstat & 3) << 8);
1966 1.8 leo printf("Bus signals (%02x/%02x): ", idstat, dmstat & 3);
1967 1.8 leo for (mask = 1, j = need_pipe = 0; mask <= tmp; mask <<= 1, j++) {
1968 1.8 leo if (tmp & mask)
1969 1.8 leo printf("%s%s", need_pipe++ ? "|" : "", sig_names[j]);
1970 1.8 leo }
1971 1.8 leo printf("\nDma status (%02x): ", dmstat);
1972 1.8 leo for (mask = 4, j = 10, need_pipe = 0; mask <= dmstat; mask <<= 1, j++) {
1973 1.8 leo if (dmstat & mask)
1974 1.8 leo printf("%s%s", need_pipe++ ? "|" : "", sig_names[j]);
1975 1.8 leo }
1976 1.8 leo printf("\n");
1977 1.8 leo }
1978 1.8 leo
1979 1.16 leo void
1980 1.1 leo scsi_show()
1981 1.1 leo {
1982 1.1 leo SC_REQ *tmp;
1983 1.1 leo int sps = splhigh();
1984 1.8 leo u_char idstat, dmstat;
1985 1.14 leo int i;
1986 1.1 leo
1987 1.16 leo printf("scsi_show: main_running is%s running\n",
1988 1.16 leo main_running ? "" : " not");
1989 1.4 leo for (tmp = issue_q; tmp; tmp = tmp->next)
1990 1.1 leo show_request(tmp, "ISSUED");
1991 1.4 leo for (tmp = discon_q; tmp; tmp = tmp->next)
1992 1.1 leo show_request(tmp, "DISCONNECTED");
1993 1.4 leo if (connected)
1994 1.1 leo show_request(connected, "CONNECTED");
1995 1.8 leo idstat = GET_5380_REG(NCR5380_IDSTAT);
1996 1.8 leo dmstat = GET_5380_REG(NCR5380_DMSTAT);
1997 1.8 leo show_signals(dmstat, idstat);
1998 1.4 leo if (connected)
1999 1.1 leo printf("phase = %d, ", connected->phase);
2000 1.14 leo printf("busy:%x, spl:%04x\n", busy, sps);
2001 1.14 leo #ifdef DBG_PID
2002 1.14 leo for (i=0; i<DBG_PID; i++)
2003 1.14 leo printf("\t%d\t%s\n", i, last_hit[i]);
2004 1.14 leo #endif
2005 1.1 leo
2006 1.1 leo splx(sps);
2007 1.1 leo }
2008