isp_sbus.c revision 1.69.8.1 1 /* $NetBSD: isp_sbus.c,v 1.69.8.1 2007/11/06 23:30:10 matt Exp $ */
2 /*
3 * SBus specific probe and attach routines for Qlogic ISP SCSI adapters.
4 *
5 * Copyright (C) 1997, 1998, 1999 National Aeronautics & Space Administration
6 * All rights reserved.
7 *
8 * Additional Copyright (C) 2000-2007 by Matthew Jacob
9 * All rights reserved.
10 *
11 * Redistribution and use in source and binary forms, with or without
12 * modification, are permitted provided that the following conditions
13 * are met:
14 * 1. Redistributions of source code must retain the above copyright
15 * notice, this list of conditions and the following disclaimer.
16 * 2. Redistributions in binary form must reproduce the above copyright
17 * notice, this list of conditions and the following disclaimer in the
18 * documentation and/or other materials provided with the distribution.
19 * 3. The name of the author may not be used to endorse or promote products
20 * derived from this software without specific prior written permission
21 *
22 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 *
33 */
34
35 #include <sys/cdefs.h>
36 __KERNEL_RCSID(0, "$NetBSD: isp_sbus.c,v 1.69.8.1 2007/11/06 23:30:10 matt Exp $");
37
38 #include <sys/param.h>
39 #include <sys/systm.h>
40 #include <sys/device.h>
41 #include <sys/kernel.h>
42 #include <sys/malloc.h>
43 #include <sys/queue.h>
44 #include <dev/ic/isp_netbsd.h>
45 #include <sys/intr.h>
46 #include <machine/autoconf.h>
47 #include <dev/sbus/sbusvar.h>
48 #include <sys/reboot.h>
49
50 static void isp_sbus_reset0(struct ispsoftc *);
51 static void isp_sbus_reset1(struct ispsoftc *);
52 static int isp_sbus_intr(void *);
53 static int
54 isp_sbus_rd_isr(struct ispsoftc *, uint32_t *, uint16_t *, uint16_t *);
55 static uint32_t isp_sbus_rd_reg(struct ispsoftc *, int);
56 static void isp_sbus_wr_reg (struct ispsoftc *, int, uint32_t);
57 static int isp_sbus_mbxdma(struct ispsoftc *);
58 static int isp_sbus_dmasetup(struct ispsoftc *, XS_T *, ispreq_t *, uint32_t *,
59 uint32_t);
60 static void isp_sbus_dmateardown(struct ispsoftc *, XS_T *, uint32_t);
61
62 #ifndef ISP_DISABLE_FW
63 #include <dev/microcode/isp/asm_sbus.h>
64 #else
65 #define ISP_1000_RISC_CODE NULL
66 #endif
67
68 static const struct ispmdvec mdvec = {
69 isp_sbus_rd_isr,
70 isp_sbus_rd_reg,
71 isp_sbus_wr_reg,
72 isp_sbus_mbxdma,
73 isp_sbus_dmasetup,
74 isp_sbus_dmateardown,
75 isp_sbus_reset0,
76 isp_sbus_reset1,
77 NULL,
78 ISP_1000_RISC_CODE,
79 0,
80 0
81 };
82
83 struct isp_sbussoftc {
84 struct ispsoftc sbus_isp;
85 struct sbusdev sbus_sd;
86 sdparam sbus_dev;
87 bus_space_tag_t sbus_bustag;
88 bus_space_handle_t sbus_reg;
89 int sbus_node;
90 int sbus_pri;
91 struct ispmdvec sbus_mdvec;
92 bus_dmamap_t *sbus_dmamap;
93 int16_t sbus_poff[_NREG_BLKS];
94 };
95
96
97 static int isp_match(struct device *, struct cfdata *, void *);
98 static void isp_sbus_attach(struct device *, struct device *, void *);
99 CFATTACH_DECL(isp_sbus, sizeof (struct isp_sbussoftc),
100 isp_match, isp_sbus_attach, NULL, NULL);
101
102 static int
103 isp_match(struct device *parent, struct cfdata *cf, void *aux)
104 {
105 int rv;
106 #ifdef DEBUG
107 static int oneshot = 1;
108 #endif
109 struct sbus_attach_args *sa = aux;
110
111 rv = (strcmp(cf->cf_name, sa->sa_name) == 0 ||
112 strcmp("PTI,ptisp", sa->sa_name) == 0 ||
113 strcmp("ptisp", sa->sa_name) == 0 ||
114 strcmp("SUNW,isp", sa->sa_name) == 0 ||
115 strcmp("QLGC,isp", sa->sa_name) == 0);
116 #ifdef DEBUG
117 if (rv && oneshot) {
118 oneshot = 0;
119 printf("Qlogic ISP Driver, NetBSD (sbus) Platform Version "
120 "%d.%d Core Version %d.%d\n",
121 ISP_PLATFORM_VERSION_MAJOR, ISP_PLATFORM_VERSION_MINOR,
122 ISP_CORE_VERSION_MAJOR, ISP_CORE_VERSION_MINOR);
123 }
124 #endif
125 return (rv);
126 }
127
128
129 static void
130 isp_sbus_attach(struct device *parent, struct device *self, void *aux)
131 {
132 int freq, ispburst, sbusburst;
133 struct sbus_attach_args *sa = aux;
134 struct isp_sbussoftc *sbc = (struct isp_sbussoftc *) self;
135 struct ispsoftc *isp = &sbc->sbus_isp;
136
137 printf(" for %s\n", sa->sa_name);
138
139 sbc->sbus_bustag = sa->sa_bustag;
140 if (sa->sa_nintr != 0)
141 sbc->sbus_pri = sa->sa_pri;
142 sbc->sbus_mdvec = mdvec;
143
144 if (sa->sa_npromvaddrs) {
145 sbus_promaddr_to_handle(sa->sa_bustag,
146 sa->sa_promvaddrs[0], &sbc->sbus_reg);
147 } else {
148 if (sbus_bus_map(sa->sa_bustag, sa->sa_slot, sa->sa_offset,
149 sa->sa_size, 0, &sbc->sbus_reg) != 0) {
150 printf("%s: cannot map registers\n", self->dv_xname);
151 return;
152 }
153 }
154 sbc->sbus_node = sa->sa_node;
155
156 freq = prom_getpropint(sa->sa_node, "clock-frequency", 0);
157 if (freq) {
158 /*
159 * Convert from HZ to MHz, rounding up.
160 */
161 freq = (freq + 500000)/1000000;
162 }
163 sbc->sbus_mdvec.dv_clock = freq;
164
165 /*
166 * Now figure out what the proper burst sizes, etc., to use.
167 * Unfortunately, there is no ddi_dma_burstsizes here which
168 * walks up the tree finding the limiting burst size node (if
169 * any).
170 */
171 sbusburst = ((struct sbus_softc *)parent)->sc_burst;
172 if (sbusburst == 0)
173 sbusburst = SBUS_BURST_32 - 1;
174 ispburst = prom_getpropint(sa->sa_node, "burst-sizes", -1);
175 if (ispburst == -1) {
176 ispburst = sbusburst;
177 }
178 ispburst &= sbusburst;
179 ispburst &= ~(1 << 7);
180 ispburst &= ~(1 << 6);
181 sbc->sbus_mdvec.dv_conf1 = 0;
182 if (ispburst & (1 << 5)) {
183 sbc->sbus_mdvec.dv_conf1 = BIU_SBUS_CONF1_FIFO_32;
184 } else if (ispburst & (1 << 4)) {
185 sbc->sbus_mdvec.dv_conf1 = BIU_SBUS_CONF1_FIFO_16;
186 } else if (ispburst & (1 << 3)) {
187 sbc->sbus_mdvec.dv_conf1 =
188 BIU_SBUS_CONF1_BURST8 | BIU_SBUS_CONF1_FIFO_8;
189 }
190 if (sbc->sbus_mdvec.dv_conf1) {
191 sbc->sbus_mdvec.dv_conf1 |= BIU_BURST_ENABLE;
192 }
193
194 isp->isp_mdvec = &sbc->sbus_mdvec;
195 isp->isp_bustype = ISP_BT_SBUS;
196 isp->isp_type = ISP_HA_SCSI_UNKNOWN;
197 isp->isp_param = &sbc->sbus_dev;
198 isp->isp_dmatag = sa->sa_dmatag;
199 MEMZERO(isp->isp_param, sizeof (sdparam));
200
201 sbc->sbus_poff[BIU_BLOCK >> _BLK_REG_SHFT] = BIU_REGS_OFF;
202 sbc->sbus_poff[MBOX_BLOCK >> _BLK_REG_SHFT] = SBUS_MBOX_REGS_OFF;
203 sbc->sbus_poff[SXP_BLOCK >> _BLK_REG_SHFT] = SBUS_SXP_REGS_OFF;
204 sbc->sbus_poff[RISC_BLOCK >> _BLK_REG_SHFT] = SBUS_RISC_REGS_OFF;
205 sbc->sbus_poff[DMA_BLOCK >> _BLK_REG_SHFT] = DMA_REGS_OFF;
206
207 /* Establish interrupt channel */
208 bus_intr_establish(sbc->sbus_bustag, sbc->sbus_pri, IPL_BIO,
209 isp_sbus_intr, sbc);
210 sbus_establish(&sbc->sbus_sd, &sbc->sbus_isp.isp_osinfo._dev);
211
212 /*
213 * Set up logging levels.
214 */
215 #ifdef ISP_LOGDEFAULT
216 isp->isp_dblev = ISP_LOGDEFAULT;
217 #else
218 isp->isp_dblev = ISP_LOGWARN|ISP_LOGERR;
219 if (bootverbose)
220 isp->isp_dblev |= ISP_LOGCONFIG|ISP_LOGINFO;
221 #ifdef SCSIDEBUG
222 isp->isp_dblev |= ISP_LOGDEBUG1|ISP_LOGDEBUG2;
223 #endif
224 #ifdef DEBUG
225 isp->isp_dblev |= ISP_LOGDEBUG0;
226 #endif
227 #endif
228
229 isp->isp_confopts = device_cfdata(self)->cf_flags;
230 isp->isp_role = ISP_DEFAULT_ROLES;
231
232 /*
233 * There's no tool on sparc to set NVRAM for ISPs, so ignore it.
234 */
235 isp->isp_confopts |= ISP_CFG_NONVRAM;
236
237 /*
238 * Mark things if we're a PTI SBus adapter.
239 */
240 if (strcmp("PTI,ptisp", sa->sa_name) == 0 ||
241 strcmp("ptisp", sa->sa_name) == 0) {
242 SDPARAM(isp)->isp_ptisp = 1;
243 }
244 ISP_LOCK(isp);
245 isp_reset(isp);
246 if (isp->isp_state != ISP_RESETSTATE) {
247 ISP_UNLOCK(isp);
248 return;
249 }
250 ISP_ENABLE_INTS(isp);
251 isp_init(isp);
252 if (isp->isp_state != ISP_INITSTATE) {
253 isp_uninit(isp);
254 ISP_UNLOCK(isp);
255 return;
256 }
257
258 /*
259 * do generic attach.
260 */
261 ISP_UNLOCK(isp);
262 isp_attach(isp);
263 if (isp->isp_state != ISP_RUNSTATE) {
264 ISP_LOCK(isp);
265 isp_uninit(isp);
266 ISP_UNLOCK(isp);
267 }
268 }
269
270
271 static void
272 isp_sbus_reset0(struct ispsoftc *isp)
273 {
274 ISP_DISABLE_INTS(isp);
275 }
276
277 static void
278 isp_sbus_reset1(struct ispsoftc *isp)
279 {
280 ISP_ENABLE_INTS(isp);
281 }
282
283 static int
284 isp_sbus_intr(void *arg)
285 {
286 uint32_t isr;
287 uint16_t sema, mbox;
288 struct ispsoftc *isp = arg;
289
290 if (ISP_READ_ISR(isp, &isr, &sema, &mbox) == 0) {
291 isp->isp_intbogus++;
292 return (0);
293 } else {
294 struct isp_sbussoftc *sbc = arg;
295 sbc->sbus_isp.isp_osinfo.onintstack = 1;
296 isp_intr(isp, isr, sema, mbox);
297 sbc->sbus_isp.isp_osinfo.onintstack = 0;
298 return (1);
299 }
300 }
301
302 #define IspVirt2Off(a, x) \
303 (((struct isp_sbussoftc *)a)->sbus_poff[((x) & _BLK_REG_MASK) >> \
304 _BLK_REG_SHFT] + ((x) & 0xff))
305
306 #define BXR2(sbc, off) \
307 bus_space_read_2(sbc->sbus_bustag, sbc->sbus_reg, off)
308
309 static int
310 isp_sbus_rd_isr(struct ispsoftc *isp, uint32_t *isrp,
311 uint16_t *semap, uint16_t *mbp)
312 {
313 struct isp_sbussoftc *sbc = (struct isp_sbussoftc *) isp;
314 uint32_t isr;
315 uint16_t sema;
316
317 isr = BXR2(sbc, IspVirt2Off(isp, BIU_ISR));
318 sema = BXR2(sbc, IspVirt2Off(isp, BIU_SEMA));
319 isp_prt(isp, ISP_LOGDEBUG3, "ISR 0x%x SEMA 0x%x", isr, sema);
320 isr &= INT_PENDING_MASK(isp);
321 sema &= BIU_SEMA_LOCK;
322 if (isr == 0 && sema == 0) {
323 return (0);
324 }
325 *isrp = isr;
326 if ((*semap = sema) != 0) {
327 *mbp = BXR2(sbc, IspVirt2Off(isp, OUTMAILBOX0));
328 }
329 return (1);
330 }
331
332 static uint32_t
333 isp_sbus_rd_reg(struct ispsoftc *isp, int regoff)
334 {
335 struct isp_sbussoftc *sbc = (struct isp_sbussoftc *) isp;
336 int offset = sbc->sbus_poff[(regoff & _BLK_REG_MASK) >> _BLK_REG_SHFT];
337 offset += (regoff & 0xff);
338 return (bus_space_read_2(sbc->sbus_bustag, sbc->sbus_reg, offset));
339 }
340
341 static void
342 isp_sbus_wr_reg(struct ispsoftc *isp, int regoff, uint32_t val)
343 {
344 struct isp_sbussoftc *sbc = (struct isp_sbussoftc *) isp;
345 int offset = sbc->sbus_poff[(regoff & _BLK_REG_MASK) >> _BLK_REG_SHFT];
346 offset += (regoff & 0xff);
347 bus_space_write_2(sbc->sbus_bustag, sbc->sbus_reg, offset, val);
348 }
349
350 static int
351 isp_sbus_mbxdma(struct ispsoftc *isp)
352 {
353 struct isp_sbussoftc *sbc = (struct isp_sbussoftc *) isp;
354 bus_dma_segment_t reqseg, rspseg;
355 int reqrs, rsprs, i, progress;
356 size_t n;
357 bus_size_t len;
358
359 if (isp->isp_rquest_dma)
360 return (0);
361
362 n = isp->isp_maxcmds * sizeof (XS_T *);
363 isp->isp_xflist = (XS_T **) malloc(n, M_DEVBUF, M_WAITOK);
364 if (isp->isp_xflist == NULL) {
365 isp_prt(isp, ISP_LOGERR, "cannot alloc xflist array");
366 return (1);
367 }
368 MEMZERO(isp->isp_xflist, n);
369 n = sizeof (bus_dmamap_t) * isp->isp_maxcmds;
370 sbc->sbus_dmamap = (bus_dmamap_t *) malloc(n, M_DEVBUF, M_WAITOK);
371 if (sbc->sbus_dmamap == NULL) {
372 free(isp->isp_xflist, M_DEVBUF);
373 isp->isp_xflist = NULL;
374 isp_prt(isp, ISP_LOGERR, "cannot alloc dmamap array");
375 return (1);
376 }
377 for (i = 0; i < isp->isp_maxcmds; i++) {
378 /* Allocate a DMA handle */
379 if (bus_dmamap_create(isp->isp_dmatag, MAXPHYS, 1, MAXPHYS,
380 1 << 24, BUS_DMA_NOWAIT, &sbc->sbus_dmamap[i]) != 0) {
381 isp_prt(isp, ISP_LOGERR, "cmd DMA maps create error");
382 break;
383 }
384 }
385 if (i < isp->isp_maxcmds) {
386 while (--i >= 0) {
387 bus_dmamap_destroy(isp->isp_dmatag,
388 sbc->sbus_dmamap[i]);
389 }
390 free(isp->isp_xflist, M_DEVBUF);
391 free(sbc->sbus_dmamap, M_DEVBUF);
392 isp->isp_xflist = NULL;
393 sbc->sbus_dmamap = NULL;
394 return (1);
395 }
396
397 /*
398 * Allocate and map the request and response queues
399 */
400 progress = 0;
401 len = ISP_QUEUE_SIZE(RQUEST_QUEUE_LEN(isp));
402 if (bus_dmamem_alloc(isp->isp_dmatag, len, 0, 0, &reqseg, 1, &reqrs,
403 BUS_DMA_NOWAIT)) {
404 goto dmafail;
405 }
406 progress++;
407 if (bus_dmamem_map(isp->isp_dmatag, &reqseg, reqrs, len,
408 (void *)&isp->isp_rquest, BUS_DMA_NOWAIT|BUS_DMA_COHERENT)) {
409 goto dmafail;
410 }
411 progress++;
412 if (bus_dmamap_create(isp->isp_dmatag, len, 1, len, 1 << 24,
413 BUS_DMA_NOWAIT, &isp->isp_rqdmap) != 0) {
414 goto dmafail;
415 }
416 progress++;
417 if (bus_dmamap_load(isp->isp_dmatag, isp->isp_rqdmap,
418 isp->isp_rquest, len, NULL, BUS_DMA_NOWAIT) != 0) {
419 goto dmafail;
420 }
421 progress++;
422 isp->isp_rquest_dma = isp->isp_rqdmap->dm_segs[0].ds_addr;
423
424 len = ISP_QUEUE_SIZE(RESULT_QUEUE_LEN(isp));
425 if (bus_dmamem_alloc(isp->isp_dmatag, len, 0, 0, &rspseg, 1, &rsprs,
426 BUS_DMA_NOWAIT)) {
427 goto dmafail;
428 }
429 progress++;
430 if (bus_dmamem_map(isp->isp_dmatag, &rspseg, rsprs, len,
431 (void *)&isp->isp_result, BUS_DMA_NOWAIT|BUS_DMA_COHERENT)) {
432 goto dmafail;
433 }
434 progress++;
435 if (bus_dmamap_create(isp->isp_dmatag, len, 1, len, 1 << 24,
436 BUS_DMA_NOWAIT, &isp->isp_rsdmap) != 0) {
437 goto dmafail;
438 }
439 progress++;
440 if (bus_dmamap_load(isp->isp_dmatag, isp->isp_rsdmap,
441 isp->isp_result, len, NULL, BUS_DMA_NOWAIT) != 0) {
442 goto dmafail;
443 }
444 isp->isp_result_dma = isp->isp_rsdmap->dm_segs[0].ds_addr;
445
446 return (0);
447
448 dmafail:
449 isp_prt(isp, ISP_LOGERR, "Mailbox DMA Setup Failure");
450
451 if (progress >= 8) {
452 bus_dmamap_unload(isp->isp_dmatag, isp->isp_rsdmap);
453 }
454 if (progress >= 7) {
455 bus_dmamap_destroy(isp->isp_dmatag, isp->isp_rsdmap);
456 }
457 if (progress >= 6) {
458 bus_dmamem_unmap(isp->isp_dmatag,
459 isp->isp_result, ISP_QUEUE_SIZE(RESULT_QUEUE_LEN(isp)));
460 }
461 if (progress >= 5) {
462 bus_dmamem_free(isp->isp_dmatag, &rspseg, rsprs);
463 }
464
465 if (progress >= 4) {
466 bus_dmamap_unload(isp->isp_dmatag, isp->isp_rqdmap);
467 }
468 if (progress >= 3) {
469 bus_dmamap_destroy(isp->isp_dmatag, isp->isp_rqdmap);
470 }
471 if (progress >= 2) {
472 bus_dmamem_unmap(isp->isp_dmatag,
473 isp->isp_rquest, ISP_QUEUE_SIZE(RQUEST_QUEUE_LEN(isp)));
474 }
475 if (progress >= 1) {
476 bus_dmamem_free(isp->isp_dmatag, &reqseg, reqrs);
477 }
478
479 for (i = 0; i < isp->isp_maxcmds; i++) {
480 bus_dmamap_destroy(isp->isp_dmatag, sbc->sbus_dmamap[i]);
481 }
482 free(sbc->sbus_dmamap, M_DEVBUF);
483 free(isp->isp_xflist, M_DEVBUF);
484 isp->isp_xflist = NULL;
485 sbc->sbus_dmamap = NULL;
486 return (1);
487 }
488
489 /*
490 * Map a DMA request.
491 * We're guaranteed that rq->req_handle is a value from 1 to isp->isp_maxcmds.
492 */
493
494 static int
495 isp_sbus_dmasetup(struct ispsoftc *isp, XS_T *xs, ispreq_t *rq,
496 uint32_t *nxtip, uint32_t optr)
497 {
498 struct isp_sbussoftc *sbc = (struct isp_sbussoftc *) isp;
499 bus_dmamap_t dmap;
500 ispreq_t *qep;
501 int error, cansleep = (xs->xs_control & XS_CTL_NOSLEEP) == 0;
502 int in = (xs->xs_control & XS_CTL_DATA_IN) != 0;
503
504 qep = (ispreq_t *) ISP_QUEUE_ENTRY(isp->isp_rquest, isp->isp_reqidx);
505 if (xs->datalen == 0) {
506 rq->req_seg_count = 1;
507 goto mbxsync;
508 }
509
510 dmap = sbc->sbus_dmamap[isp_handle_index(rq->req_handle)];
511 if (dmap->dm_nsegs != 0) {
512 panic("%s: DMA map already allocated", isp->isp_name);
513 /* NOTREACHED */
514 }
515 error = bus_dmamap_load(isp->isp_dmatag, dmap, xs->data, xs->datalen,
516 NULL, (cansleep ? BUS_DMA_WAITOK : BUS_DMA_NOWAIT) |
517 BUS_DMA_STREAMING);
518 if (error != 0) {
519 XS_SETERR(xs, HBA_BOTCH);
520 if (error == EAGAIN || error == ENOMEM)
521 return (CMD_EAGAIN);
522 else
523 return (CMD_COMPLETE);
524 }
525
526 bus_dmamap_sync(isp->isp_dmatag, dmap, 0, xs->datalen,
527 in? BUS_DMASYNC_PREREAD : BUS_DMASYNC_PREWRITE);
528
529 if (in) {
530 rq->req_flags |= REQFLAG_DATA_IN;
531 } else {
532 rq->req_flags |= REQFLAG_DATA_OUT;
533 }
534
535 if (XS_CDBLEN(xs) > 12) {
536 uint32_t onxti;
537 ispcontreq_t local, *crq = &local, *cqe;
538
539 onxti = *nxtip;
540 cqe = (ispcontreq_t *) ISP_QUEUE_ENTRY(isp->isp_rquest, onxti);
541 *nxtip = ISP_NXT_QENTRY(onxti, RQUEST_QUEUE_LEN(isp));
542 if (*nxtip == optr) {
543 isp_prt(isp, ISP_LOGDEBUG0, "Request Queue Overflow++");
544 bus_dmamap_unload(isp->isp_dmatag, dmap);
545 XS_SETERR(xs, HBA_BOTCH);
546 return (CMD_EAGAIN);
547 }
548 rq->req_seg_count = 2;
549 MEMZERO((void *)crq, sizeof (*crq));
550 crq->req_header.rqs_entry_count = 1;
551 crq->req_header.rqs_entry_type = RQSTYPE_DATASEG;
552 crq->req_dataseg[0].ds_count = xs->datalen;
553 crq->req_dataseg[0].ds_base = dmap->dm_segs[0].ds_addr;
554 isp_put_cont_req(isp, crq, cqe);
555 MEMORYBARRIER(isp, SYNC_REQUEST, onxti, QENTRY_LEN);
556 } else {
557 rq->req_seg_count = 1;
558 rq->req_dataseg[0].ds_count = xs->datalen;
559 rq->req_dataseg[0].ds_base = dmap->dm_segs[0].ds_addr;
560 }
561
562 mbxsync:
563 if (XS_CDBLEN(xs) > 12) {
564 isp_put_extended_request(isp,
565 (ispextreq_t *)rq, (ispextreq_t *) qep);
566 } else {
567 isp_put_request(isp, rq, qep);
568 }
569 return (CMD_QUEUED);
570 }
571
572 static void
573 isp_sbus_dmateardown(struct ispsoftc *isp, XS_T *xs, uint32_t handle)
574 {
575 struct isp_sbussoftc *sbc = (struct isp_sbussoftc *) isp;
576 bus_dmamap_t dmap;
577
578 dmap = sbc->sbus_dmamap[isp_handle_index(handle)];
579
580 if (dmap->dm_nsegs == 0) {
581 panic("%s: DMA map not already allocated", isp->isp_name);
582 /* NOTREACHED */
583 }
584 bus_dmamap_sync(isp->isp_dmatag, dmap, 0,
585 xs->datalen, (xs->xs_control & XS_CTL_DATA_IN)?
586 BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
587 bus_dmamap_unload(isp->isp_dmatag, dmap);
588 }
589