xref: /openbsd/sys/dev/pci/ahd_pci.c (revision 63b1d17d)
1 /*	$OpenBSD: ahd_pci.c,v 1.16 2007/10/20 22:44:01 fgsch Exp $	*/
2 
3 /*
4  * Copyright (c) 2004 Milos Urbanek, Kenneth R. Westerback & Marco Peereboom
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHORS AND CONTRIBUTORS ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHORS OR CONTRIBUTORS BE LIABLE FOR
20  * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  *
28  */
29 
30 /*
31  * Product specific probe and attach routines for:
32  *	aic7901 and aic7902 SCSI controllers
33  *
34  * Copyright (c) 1994-2001 Justin T. Gibbs.
35  * Copyright (c) 2000-2002 Adaptec Inc.
36  * All rights reserved.
37  *
38  * Redistribution and use in source and binary forms, with or without
39  * modification, are permitted provided that the following conditions
40  * are met:
41  * 1. Redistributions of source code must retain the above copyright
42  *    notice, this list of conditions, and the following disclaimer,
43  *    without modification.
44  * 2. Redistributions in binary form must reproduce at minimum a disclaimer
45  *    substantially similar to the "NO WARRANTY" disclaimer below
46  *    ("Disclaimer") and any redistribution must be conditioned upon
47  *    including a substantially similar Disclaimer requirement for further
48  *    binary redistribution.
49  * 3. Neither the names of the above-listed copyright holders nor the names
50  *    of any contributors may be used to endorse or promote products derived
51  *    from this software without specific prior written permission.
52  *
53  * Alternatively, this software may be distributed under the terms of the
54  * GNU General Public License ("GPL") version 2 as published by the Free
55  * Software Foundation.
56  *
57  * NO WARRANTY
58  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
59  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
60  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
61  * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
62  * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
63  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
64  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
65  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
66  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
67  * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
68  * POSSIBILITY OF SUCH DAMAGES.
69  *
70  */
71 
72 #include <sys/cdefs.h>
73 /*
74 __FBSDID("$FreeBSD: src/sys/dev/aic7xxx/aic79xx_pci.c,v 1.18 2004/02/04 16:38:38 gibbs Exp $");
75 */
76 
77 #include <dev/ic/aic79xx_openbsd.h>
78 #include <dev/ic/aic79xx_inline.h>
79 #include <dev/ic/aic79xx.h>
80 
81 #include <dev/pci/pcivar.h>
82 
83 __inline uint64_t ahd_compose_id(u_int, u_int, u_int, u_int);
84 __inline uint64_t
85 ahd_compose_id(u_int device, u_int vendor, u_int subdevice, u_int subvendor)
86 {
87 	uint64_t id;
88 
89 	id = subvendor
90 	   | (subdevice << 16)
91 	   | ((uint64_t)vendor << 32)
92 	   | ((uint64_t)device << 48);
93 
94 	return (id);
95 }
96 
97 #define ID_ALL_MASK			0xFFFFFFFFFFFFFFFFull
98 #define ID_ALL_IROC_MASK		0xFF7FFFFFFFFFFFFFull
99 #define ID_DEV_VENDOR_MASK		0xFFFFFFFF00000000ull
100 #define ID_9005_GENERIC_MASK		0xFFF0FFFF00000000ull
101 #define ID_9005_GENERIC_IROC_MASK	0xFF70FFFF00000000ull
102 
103 #define ID_AIC7901			0x800F9005FFFF9005ull
104 #define ID_AHA_29320A			0x8000900500609005ull
105 #define ID_AHA_29320ALP			0x8017900500449005ull
106 
107 #define ID_AIC7901A			0x801E9005FFFF9005ull
108 #define ID_AHA_29320LP			0x8014900500449005ull
109 
110 #define ID_AIC7902			0x801F9005FFFF9005ull
111 #define ID_AIC7902_B			0x801D9005FFFF9005ull
112 #define ID_AHA_39320			0x8010900500409005ull
113 #define ID_AHA_29320			0x8012900500429005ull
114 #define ID_AHA_29320B			0x8013900500439005ull
115 #define ID_AHA_39320_B			0x8015900500409005ull
116 #define ID_AHA_39320_B_DELL		0x8015900501681028ull
117 #define ID_AHA_39320A			0x8016900500409005ull
118 #define ID_AHA_39320D			0x8011900500419005ull
119 #define ID_AHA_39320D_B			0x801C900500419005ull
120 #define ID_AHA_39320D_HP		0x8011900500AC0E11ull
121 #define ID_AHA_39320D_B_HP		0x801C900500AC0E11ull
122 #define ID_AIC7902_PCI_REV_A4		0x3
123 #define ID_AIC7902_PCI_REV_B0		0x10
124 #define SUBID_HP			0x0E11
125 
126 #define DEVID_9005_HOSTRAID(id) ((id) & 0x80)
127 
128 #define DEVID_9005_TYPE(id) ((id) & 0xF)
129 #define		DEVID_9005_TYPE_HBA		0x0	/* Standard Card */
130 #define		DEVID_9005_TYPE_HBA_2EXT	0x1	/* 2 External Ports */
131 #define		DEVID_9005_TYPE_MB		0xF	/* On Motherboard */
132 
133 #define DEVID_9005_MFUNC(id) ((id) & 0x10)
134 
135 #define DEVID_9005_PACKETIZED(id) ((id) & 0x8000)
136 
137 #define SUBID_9005_TYPE(id) ((id) & 0xF)
138 #define		SUBID_9005_TYPE_HBA		0x0	/* Standard Card */
139 #define		SUBID_9005_TYPE_MB		0xF	/* On Motherboard */
140 
141 #define SUBID_9005_AUTOTERM(id)	(((id) & 0x10) == 0)
142 
143 #define SUBID_9005_LEGACYCONN_FUNC(id) ((id) & 0x20)
144 
145 #define SUBID_9005_SEEPTYPE(id) ((id) & 0x0C0) >> 6)
146 #define		SUBID_9005_SEEPTYPE_NONE	0x0
147 #define		SUBID_9005_SEEPTYPE_4K		0x1
148 
149 ahd_device_setup_t ahd_aic7901_setup;
150 ahd_device_setup_t ahd_aic7901A_setup;
151 ahd_device_setup_t ahd_aic7902_setup;
152 ahd_device_setup_t ahd_aic790X_setup;
153 
154 struct ahd_pci_identity ahd_pci_ident_table [] =
155 {
156 	/* aic7901 based controllers */
157 	{
158 		ID_AHA_29320A,
159 		ID_ALL_MASK,
160 		ahd_aic7901_setup
161 	},
162 	{
163 		ID_AHA_29320ALP,
164 		ID_ALL_MASK,
165 		ahd_aic7901_setup
166 	},
167 	/* aic7901A based controllers */
168 	{
169 		ID_AHA_29320LP,
170 		ID_ALL_MASK,
171 		ahd_aic7901A_setup
172 	},
173 	/* aic7902 based controllers */
174 	{
175 		ID_AHA_29320,
176 		ID_ALL_MASK,
177 		ahd_aic7902_setup
178 	},
179 	{
180 		ID_AHA_29320B,
181 		ID_ALL_MASK,
182 		ahd_aic7902_setup
183 	},
184 	{
185 		ID_AHA_39320,
186 		ID_ALL_MASK,
187 		ahd_aic7902_setup
188 	},
189 	{
190 		ID_AHA_39320_B,
191 		ID_ALL_MASK,
192 		ahd_aic7902_setup
193 	},
194 	{
195 		ID_AHA_39320_B_DELL,
196 		ID_ALL_MASK,
197 		ahd_aic7902_setup
198 	},
199 	{
200 		ID_AHA_39320A,
201 		ID_ALL_MASK,
202 		ahd_aic7902_setup
203 	},
204 	{
205 		ID_AHA_39320D,
206 		ID_ALL_MASK,
207 		ahd_aic7902_setup
208 	},
209 	{
210 		ID_AHA_39320D_HP,
211 		ID_ALL_MASK,
212 		ahd_aic7902_setup
213 	},
214 	{
215 		ID_AHA_39320D_B,
216 		ID_ALL_MASK,
217 		ahd_aic7902_setup
218 	},
219 	{
220 		ID_AHA_39320D_B_HP,
221 		ID_ALL_MASK,
222 		ahd_aic7902_setup
223 	},
224 	/* Generic chip probes for devices we don't know 'exactly' */
225 	{
226 		ID_AIC7901 & ID_9005_GENERIC_MASK,
227 		ID_9005_GENERIC_MASK,
228 		ahd_aic7901_setup
229 	},
230 	{
231 		ID_AIC7901A & ID_DEV_VENDOR_MASK,
232 		ID_DEV_VENDOR_MASK,
233 		ahd_aic7901A_setup
234 	},
235 	{
236 		ID_AIC7902 & ID_9005_GENERIC_MASK,
237 		ID_9005_GENERIC_MASK,
238 		ahd_aic7902_setup
239 	}
240 };
241 
242 const u_int ahd_num_pci_devs = NUM_ELEMENTS(ahd_pci_ident_table);
243 
244 #define			DEVCONFIG		0x40
245 #define			PCIXINITPAT		0x0000E000ul
246 #define			PCIXINIT_PCI33_66	0x0000E000ul
247 #define			PCIXINIT_PCIX50_66	0x0000C000ul
248 #define			PCIXINIT_PCIX66_100	0x0000A000ul
249 #define			PCIXINIT_PCIX100_133	0x00008000ul
250 #define	PCI_BUS_MODES_INDEX(devconfig)	\
251 	(((devconfig) & PCIXINITPAT) >> 13)
252 
253 static const char *pci_bus_modes[] =
254 {
255 	"PCI bus mode unknown",
256 	"PCI bus mode unknown",
257 	"PCI bus mode unknown",
258 	"PCI bus mode unknown",
259 	"PCI-X 101-133MHz",
260 	"PCI-X 67-100MHz",
261 	"PCI-X 50-66MHz",
262 	"PCI 33 or 66MHz"
263 };
264 
265 #define		TESTMODE	0x00000800ul
266 #define		IRDY_RST	0x00000200ul
267 #define		FRAME_RST	0x00000100ul
268 #define		PCI64BIT	0x00000080ul
269 #define		MRDCEN		0x00000040ul
270 #define		ENDIANSEL	0x00000020ul
271 #define		MIXQWENDIANEN	0x00000008ul
272 #define		DACEN		0x00000004ul
273 #define		STPWLEVEL	0x00000002ul
274 #define		QWENDIANSEL	0x00000001ul
275 
276 #define	DEVCONFIG1		0x44
277 #define		PREQDIS		0x01
278 
279 #define	CSIZE_LATTIME		0x0c
280 #define		CACHESIZE	0x000000fful
281 #define		LATTIME		0x0000ff00ul
282 
283 int	ahd_pci_probe(struct device *, void *, void *);
284 void	ahd_pci_attach(struct device *, struct device *, void *);
285 
286 struct cfattach ahd_pci_ca = {
287 	        sizeof(struct ahd_softc), ahd_pci_probe, ahd_pci_attach
288 };
289 
290 int	ahd_check_extport(struct ahd_softc *ahd);
291 void	ahd_configure_termination(struct ahd_softc *ahd,
292 					  u_int adapter_control);
293 void	ahd_pci_split_intr(struct ahd_softc *ahd, u_int intstat);
294 
295 const struct ahd_pci_identity *
296 ahd_find_pci_device(pcireg_t id, pcireg_t subid)
297 {
298 	const struct ahd_pci_identity *entry;
299 	u_int64_t full_id;
300 	u_int i;
301 
302 	full_id = ahd_compose_id(PCI_PRODUCT(id), PCI_VENDOR(id),
303 	    PCI_PRODUCT(subid), PCI_VENDOR(subid));
304 
305 	/*
306 	 * If we are configured to attach to HostRAID
307 	 * controllers, mask out the IROC/HostRAID bit
308 	 * in the
309 	 */
310 	if (ahd_attach_to_HostRAID_controllers)
311 		full_id &= ID_ALL_IROC_MASK;
312 
313 	for (i = 0; i < ahd_num_pci_devs; i++) {
314 		entry = &ahd_pci_ident_table[i];
315 		if (entry->full_id == (full_id & entry->id_mask)) {
316 			return (entry);
317 		}
318 	}
319 	return (NULL);
320 }
321 
322 int
323 ahd_pci_probe(struct device *parent, void *match, void *aux)
324 {
325 	const struct ahd_pci_identity *entry;
326 	struct pci_attach_args *pa = aux;
327 	pcireg_t subid;
328 
329 	subid = pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_SUBSYS_ID_REG);
330 	entry = ahd_find_pci_device(pa->pa_id, subid);
331 	return entry != NULL ? 1 : 0;
332 }
333 
334 void
335 ahd_pci_attach(struct device *parent, struct device *self, void *aux)
336 {
337 	const struct ahd_pci_identity *entry;
338 	struct pci_attach_args *pa = aux;
339 	struct ahd_softc *ahd = (void *)self;
340 	pci_intr_handle_t ih;
341 	const char *intrstr;
342 	pcireg_t devconfig, memtype, reg, subid;
343 	uint16_t device, subvendor;
344 	int error, ioh_valid, ioh2_valid, l, memh_valid, offset;
345 
346 	ahd->dev_softc = pa;
347 	ahd->parent_dmat = pa->pa_dmat;
348 
349 	if (ahd_alloc(ahd, ahd->sc_dev.dv_xname) == NULL)
350 		return;
351 
352 	subid = pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_SUBSYS_ID_REG);
353 	entry = ahd_find_pci_device(pa->pa_id, subid);
354 	if (entry == NULL)
355 		return;
356 
357 	/*
358 	 * Record if this is a HostRAID board.
359 	 */
360 	device = PCI_PRODUCT(pa->pa_id);
361 	if (DEVID_9005_HOSTRAID(device))
362 		ahd->flags |= AHD_HOSTRAID_BOARD;
363 
364 	/*
365 	 * Record if this is an HP board.
366 	 */
367 	subvendor = PCI_VENDOR(subid);
368 	if (subvendor == SUBID_HP)
369 		ahd->flags |= AHD_HP_BOARD;
370 
371 	error = entry->setup(ahd, pa);
372 	if (error != 0)
373 		return;
374 
375 	/* XXX ahc on sparc64 needs this twice */
376 	devconfig = pci_conf_read(pa->pa_pc, pa->pa_tag, DEVCONFIG);
377 
378 	if ((devconfig & PCIXINITPAT) == PCIXINIT_PCI33_66) {
379 		ahd->chip |= AHD_PCI;
380 		/* Disable PCIX workarounds when running in PCI mode. */
381 		ahd->bugs &= ~AHD_PCIX_BUG_MASK;
382 	} else {
383 		ahd->chip |= AHD_PCIX;
384 	}
385 	ahd->bus_description = pci_bus_modes[PCI_BUS_MODES_INDEX(devconfig)];
386 
387 	memh_valid = ioh_valid = ioh2_valid = 0;
388 
389 	if (!pci_get_capability(pa->pa_pc, pa->pa_tag, PCI_CAP_PCIX,
390 	    &ahd->pcix_off, NULL)) {
391 		if (ahd->chip & AHD_PCIX)
392 			printf("%s: warning: can't find PCI-X capability\n",
393 			    ahd_name(ahd));
394 		ahd->chip &= ~AHD_PCIX;
395 		ahd->chip |= AHD_PCI;
396 		ahd->bugs &= ~AHD_PCIX_BUG_MASK;
397 	}
398 
399 	/*
400 	 * Map PCI registers
401 	 */
402 	if ((ahd->bugs & AHD_PCIX_MMAPIO_BUG) == 0) {
403 		memtype = pci_mapreg_type(pa->pa_pc, pa->pa_tag,
404 		    AHD_PCI_MEMADDR);
405 		switch (memtype) {
406 		case PCI_MAPREG_TYPE_MEM | PCI_MAPREG_MEM_TYPE_32BIT:
407 		case PCI_MAPREG_TYPE_MEM | PCI_MAPREG_MEM_TYPE_64BIT:
408 			memh_valid = (pci_mapreg_map(pa, AHD_PCI_MEMADDR,
409 			    memtype, 0, &ahd->tags[0], &ahd->bshs[0], NULL,
410 			    NULL, 0) == 0);
411 			if (memh_valid) {
412 				ahd->tags[1] = ahd->tags[0];
413 				bus_space_subregion(ahd->tags[0], ahd->bshs[0],
414 				    /*offset*/0x100, /*size*/0x100,
415 				    &ahd->bshs[1]);
416 				if (ahd_pci_test_register_access(ahd) != 0)
417 					memh_valid = 0;
418 			}
419 			break;
420 		default:
421 			memh_valid = 0;
422 			printf("%s: unknown memory type: 0x%x\n",
423 			ahd_name(ahd), memtype);
424 			break;
425 		}
426 
427 #ifdef AHD_DEBUG
428 		printf("%s: doing memory mapping tag0 0x%x, tag1 0x%x, shs0 "
429 		    "0x%lx, shs1 0x%lx\n", ahd_name(ahd), ahd->tags[0],
430 		    ahd->tags[1], ahd->bshs[0], ahd->bshs[1]);
431 #endif
432 	}
433 
434 	if (!memh_valid) {
435 		/* First BAR */
436 		ioh_valid = (pci_mapreg_map(pa, AHD_PCI_IOADDR,
437 		    PCI_MAPREG_TYPE_IO, 0, &ahd->tags[0], &ahd->bshs[0], NULL,
438 		    NULL, 0) == 0);
439 
440 		/* 2nd BAR */
441 		ioh2_valid = (pci_mapreg_map(pa, AHD_PCI_IOADDR1,
442 		    PCI_MAPREG_TYPE_IO, 0, &ahd->tags[1], &ahd->bshs[1], NULL,
443 		    NULL, 0) == 0);
444 
445 #ifdef AHD_DEBUG
446 		printf("%s: doing io mapping tag0 0x%x, tag1 0x%x, shs0 0x%lx, "
447 		    "shs1 0x%lx\n", ahd_name(ahd), ahd->tags[0], ahd->tags[1],
448 		    ahd->bshs[0], ahd->bshs[1]);
449 #endif
450 	}
451 
452 	if (memh_valid == 0 && (ioh_valid == 0 || ioh2_valid == 0)) {
453 		printf("%s: unable to map registers\n", ahd_name(ahd));
454 		return;
455 	}
456 
457 	/*
458 	 * Set Power State D0.
459 	 */
460 	if (pci_get_capability(pa->pa_pc, pa->pa_tag, PCI_CAP_PWRMGMT, &offset,
461 	    NULL)) {
462 		/* Increment offset from cap register to csr register. */
463 		offset += 4;
464 		reg = pci_conf_read(pa->pa_pc, pa->pa_tag, offset);
465 		if ((reg & PCI_PMCSR_STATE_MASK) != PCI_PMCSR_STATE_D0) {
466 			pci_conf_write(pa->pa_pc, pa->pa_tag, offset,
467 			    (reg & ~PCI_PMCSR_STATE_MASK) | PCI_PMCSR_STATE_D0);
468 		}
469 	}
470 
471 	/*
472 	 * Should we bother disabling 39Bit addressing
473 	 * based on installed memory?
474 	 */
475 	if (sizeof(bus_addr_t) > 4)
476 		ahd->flags |= AHD_39BIT_ADDRESSING;
477 
478 	/*
479 	 * If we need to support high memory, enable dual
480 	 * address cycles.  This bit must be set to enable
481 	 * high address bit generation even if we are on a
482 	 * 64bit bus (PCI64BIT set in devconfig).
483 	 */
484 	if ((ahd->flags & (AHD_39BIT_ADDRESSING|AHD_64BIT_ADDRESSING)) != 0) {
485 		if (bootverbose)
486 			printf("%s: Enabling 39Bit Addressing\n",
487 			       ahd_name(ahd));
488 		devconfig = pci_conf_read(pa->pa_pc, pa->pa_tag, DEVCONFIG);
489 		devconfig |= DACEN;
490 		pci_conf_write(pa->pa_pc, pa->pa_tag, DEVCONFIG, devconfig);
491 	}
492 
493 	ahd_softc_init(ahd);
494 
495 	/*
496 	 * Map the interrupts routines
497 	 */
498 	ahd->bus_intr = ahd_pci_intr;
499 
500 	error = ahd_reset(ahd, /*reinit*/FALSE);
501 	if (error != 0) {
502 		ahd_free(ahd);
503 		return;
504 	}
505 
506 	if (pci_intr_map(pa, &ih)) {
507 		printf("%s: couldn't map interrupt\n", ahd_name(ahd));
508 		ahd_free(ahd);
509 		return;
510 	}
511 	intrstr = pci_intr_string(pa->pa_pc, ih);
512 	ahd->ih = pci_intr_establish(pa->pa_pc, ih, IPL_BIO,
513 	ahd_platform_intr, ahd, ahd->sc_dev.dv_xname);
514 	if (ahd->ih == NULL) {
515 		printf("%s: couldn't establish interrupt", ahd_name(ahd));
516 		if (intrstr != NULL)
517 			printf(" at %s", intrstr);
518 		printf("\n");
519 		ahd_free(ahd);
520 		return;
521 	}
522 	if (intrstr != NULL)
523 		printf(": %s\n", intrstr);
524 
525 	/* Get the size of the cache */
526 	ahd->pci_cachesize = pci_conf_read(pa->pa_pc, pa->pa_tag, PCI_BHLC_REG);
527 	ahd->pci_cachesize *= 4;
528 
529 	ahd_set_modes(ahd, AHD_MODE_SCSI, AHD_MODE_SCSI);
530 	/* See if we have a SEEPROM and perform auto-term */
531 	error = ahd_check_extport(ahd);
532 	if (error != 0)
533 		return;
534 
535 	/* Core initialization */
536 	error = ahd_init(ahd);
537 	if (error != 0)
538 		return;
539 
540 	ahd_list_lock(&l);
541 	/*
542 	 * Link this softc in with all other ahd instances.
543 	 */
544 	ahd_softc_insert(ahd);
545 	ahd_list_unlock(&l);
546 
547 	/* complete the attach */
548 	ahd_attach(ahd);
549 }
550 
551 /*
552  * Perform some simple tests that should catch situations where
553  * our registers are invalidly mapped.
554  */
555 int
556 ahd_pci_test_register_access(struct ahd_softc *ahd)
557 {
558 	const pci_chipset_tag_t pc = ahd->dev_softc->pa_pc;
559 	const pcitag_t tag = ahd->dev_softc->pa_tag;
560 	pcireg_t cmd;
561 	u_int	 targpcistat;
562 	pcireg_t pci_status1;
563 	int	 error;
564 	uint8_t	 hcntrl;
565 
566 	error = EIO;
567 
568 	/*
569 	 * Enable PCI error interrupt status, but suppress NMIs
570 	 * generated by SERR raised due to target aborts.
571 	 */
572 	cmd = pci_conf_read(pc, tag, PCI_COMMAND_STATUS_REG);
573 	pci_conf_write(pc, tag, PCI_COMMAND_STATUS_REG,
574 	    cmd & ~PCI_COMMAND_SERR_ENABLE);
575 
576 	/*
577 	 * First a simple test to see if any
578 	 * registers can be read.  Reading
579 	 * HCNTRL has no side effects and has
580 	 * at least one bit that is guaranteed to
581 	 * be zero so it is a good register to
582 	 * use for this test.
583 	 */
584 	hcntrl = ahd_inb(ahd, HCNTRL);
585 	if (hcntrl == 0xFF)
586 		goto fail;
587 
588 	/*
589 	 * Next create a situation where write combining
590 	 * or read prefetching could be initiated by the
591 	 * CPU or host bridge.  Our device does not support
592 	 * either, so look for data corruption and/or flaged
593 	 * PCI errors.  First pause without causing another
594 	 * chip reset.
595 	 */
596 	hcntrl &= ~CHIPRST;
597 	ahd_outb(ahd, HCNTRL, hcntrl|PAUSE);
598 	while (ahd_is_paused(ahd) == 0)
599 		;
600 
601 	/* Clear any PCI errors that occurred before our driver attached. */
602 	ahd_set_modes(ahd, AHD_MODE_CFG, AHD_MODE_CFG);
603 	targpcistat = ahd_inb(ahd, TARGPCISTAT);
604 	ahd_outb(ahd, TARGPCISTAT, targpcistat);
605 	pci_status1 = pci_conf_read(pc, tag, PCI_COMMAND_STATUS_REG);
606 	pci_conf_write(pc, tag, PCI_COMMAND_STATUS_REG, pci_status1);
607 	ahd_set_modes(ahd, AHD_MODE_SCSI, AHD_MODE_SCSI);
608 	ahd_outb(ahd, CLRINT, CLRPCIINT);
609 
610 	ahd_outb(ahd, SEQCTL0, PERRORDIS);
611 	ahd_outl(ahd, SRAM_BASE, 0x5aa555aa);
612 	if (ahd_inl(ahd, SRAM_BASE) != 0x5aa555aa)
613 		goto fail;
614 
615 	if ((ahd_inb(ahd, INTSTAT) & PCIINT) != 0) {
616 		ahd_set_modes(ahd, AHD_MODE_CFG, AHD_MODE_CFG);
617 		targpcistat = ahd_inb(ahd, TARGPCISTAT);
618 		if ((targpcistat & STA) != 0)
619 			goto fail;
620 	}
621 
622 	error = 0;
623 
624 fail:
625 	if ((ahd_inb(ahd, INTSTAT) & PCIINT) != 0) {
626 
627 		ahd_set_modes(ahd, AHD_MODE_CFG, AHD_MODE_CFG);
628 		targpcistat = ahd_inb(ahd, TARGPCISTAT);
629 
630 		/* Silently clear any latched errors. */
631 		ahd_outb(ahd, TARGPCISTAT, targpcistat);
632 		pci_status1 = pci_conf_read(pc, tag, PCI_COMMAND_STATUS_REG);
633 		pci_conf_write(pc, tag, PCI_COMMAND_STATUS_REG, pci_status1);
634 		ahd_outb(ahd, CLRINT, CLRPCIINT);
635 	}
636 	ahd_outb(ahd, SEQCTL0, PERRORDIS|FAILDIS);
637 	pci_conf_write(pc, tag, PCI_COMMAND_STATUS_REG, cmd);
638 	return (error);
639 }
640 
641 /*
642  * Check the external port logic for a serial eeprom
643  * and termination/cable detection contrls.
644  */
645 int
646 ahd_check_extport(struct ahd_softc *ahd)
647 {
648 	struct	vpd_config vpd;
649 	struct	seeprom_config *sc;
650 	u_int	adapter_control;
651 	int	have_seeprom;
652 	int	error;
653 
654 	sc = ahd->seep_config;
655 	have_seeprom = ahd_acquire_seeprom(ahd);
656 	if (have_seeprom) {
657 		u_int start_addr;
658 
659 		/*
660 		 * Fetch VPD for this function and parse it.
661 		 */
662 		if (bootverbose)
663 			printf("%s: Reading VPD from SEEPROM...",
664 			       ahd_name(ahd));
665 
666 		/* Address is always in units of 16bit words */
667 		start_addr = ((2 * sizeof(*sc))
668 			    + (sizeof(vpd) * (ahd->channel - 'A'))) / 2;
669 
670 		error = ahd_read_seeprom(ahd, (uint16_t *)&vpd,
671 					 start_addr, sizeof(vpd)/2,
672 					 /*bytestream*/TRUE);
673 		if (error == 0)
674 			error = ahd_parse_vpddata(ahd, &vpd);
675 		if (bootverbose)
676 			printf("%s: VPD parsing %s\n",
677 			       ahd_name(ahd),
678 			       error == 0 ? "successful" : "failed");
679 
680 		if (bootverbose)
681 			printf("%s: Reading SEEPROM...", ahd_name(ahd));
682 
683 		/* Address is always in units of 16bit words */
684 		start_addr = (sizeof(*sc) / 2) * (ahd->channel - 'A');
685 
686 		error = ahd_read_seeprom(ahd, (uint16_t *)sc,
687 					 start_addr, sizeof(*sc)/2,
688 					 /*bytestream*/FALSE);
689 
690 		if (error != 0) {
691 			printf("Unable to read SEEPROM\n");
692 			have_seeprom = 0;
693 		} else {
694 			have_seeprom = ahd_verify_cksum(sc);
695 
696 			if (bootverbose) {
697 				if (have_seeprom == 0)
698 					printf ("checksum error\n");
699 				else
700 					printf ("done.\n");
701 			}
702 		}
703 		ahd_release_seeprom(ahd);
704 	}
705 
706 	if (!have_seeprom) {
707 		u_int	  nvram_scb;
708 
709 		/*
710 		 * Pull scratch ram settings and treat them as
711 		 * if they are the contents of an seeprom if
712 		 * the 'ADPT', 'BIOS', or 'ASPI' signature is found
713 		 * in SCB 0xFF.  We manually compose the data as 16bit
714 		 * values to avoid endian issues.
715 		 */
716 		ahd_set_scbptr(ahd, 0xFF);
717 		nvram_scb = ahd_inb_scbram(ahd, SCB_BASE + NVRAM_SCB_OFFSET);
718 		if (nvram_scb != 0xFF
719 		 && ((ahd_inb_scbram(ahd, SCB_BASE + 0) == 'A'
720 		   && ahd_inb_scbram(ahd, SCB_BASE + 1) == 'D'
721 		   && ahd_inb_scbram(ahd, SCB_BASE + 2) == 'P'
722 		   && ahd_inb_scbram(ahd, SCB_BASE + 3) == 'T')
723 		  || (ahd_inb_scbram(ahd, SCB_BASE + 0) == 'B'
724 		   && ahd_inb_scbram(ahd, SCB_BASE + 1) == 'I'
725 		   && ahd_inb_scbram(ahd, SCB_BASE + 2) == 'O'
726 		   && ahd_inb_scbram(ahd, SCB_BASE + 3) == 'S')
727 		  || (ahd_inb_scbram(ahd, SCB_BASE + 0) == 'A'
728 		   && ahd_inb_scbram(ahd, SCB_BASE + 1) == 'S'
729 		   && ahd_inb_scbram(ahd, SCB_BASE + 2) == 'P'
730 		   && ahd_inb_scbram(ahd, SCB_BASE + 3) == 'I'))) {
731 			uint16_t *sc_data;
732 			int	  i;
733 
734 			ahd_set_scbptr(ahd, nvram_scb);
735 			sc_data = (uint16_t *)sc;
736 			for (i = 0; i < 64; i += 2)
737 				*sc_data++ = ahd_inw_scbram(ahd, SCB_BASE+i);
738 			have_seeprom = ahd_verify_cksum(sc);
739 			if (have_seeprom)
740 				ahd->flags |= AHD_SCB_CONFIG_USED;
741 		}
742 	}
743 
744 #ifdef AHD_DEBUG
745 	if (have_seeprom != 0
746 	 && (ahd_debug & AHD_DUMP_SEEPROM) != 0) {
747 		uint16_t *sc_data;
748 		int	  i;
749 
750 		printf("%s: Seeprom Contents:", ahd_name(ahd));
751 		sc_data = (uint16_t *)sc;
752 		for (i = 0; i < (sizeof(*sc)); i += 2)
753 			printf("\n\t0x%.4x", sc_data[i]);
754 		printf("\n");
755 	}
756 #endif
757 
758 	if (!have_seeprom) {
759 		if (bootverbose)
760 			printf("%s: No SEEPROM available.\n", ahd_name(ahd));
761 		ahd->flags |= AHD_USEDEFAULTS;
762 		error = ahd_default_config(ahd);
763 		adapter_control = CFAUTOTERM|CFSEAUTOTERM;
764 		free(ahd->seep_config, M_DEVBUF);
765 		ahd->seep_config = NULL;
766 	} else {
767 		error = ahd_parse_cfgdata(ahd, sc);
768 		adapter_control = sc->adapter_control;
769 	}
770 	if (error != 0)
771 		return (error);
772 
773 	ahd_configure_termination(ahd, adapter_control);
774 
775 	return (0);
776 }
777 
778 void
779 ahd_configure_termination(struct ahd_softc *ahd, u_int adapter_control)
780 {
781 	const pci_chipset_tag_t pc = ahd->dev_softc->pa_pc;
782 	const pcitag_t tag = ahd->dev_softc->pa_tag;
783 	int	 error;
784 	u_int	 sxfrctl1;
785 	uint8_t	 termctl;
786 	pcireg_t devconfig;
787 
788 	devconfig = pci_conf_read(pc, tag, DEVCONFIG);
789 	devconfig &= ~STPWLEVEL;
790 	if ((ahd->flags & AHD_STPWLEVEL_A) != 0)
791 		devconfig |= STPWLEVEL;
792 	if (bootverbose)
793 		printf("%s: STPWLEVEL is %s\n",
794 		       ahd_name(ahd), (devconfig & STPWLEVEL) ? "on" : "off");
795 	pci_conf_write(pc, tag, DEVCONFIG, devconfig);
796 
797 	/* Make sure current sensing is off. */
798 	if ((ahd->flags & AHD_CURRENT_SENSING) != 0) {
799 		(void)ahd_write_flexport(ahd, FLXADDR_ROMSTAT_CURSENSECTL, 0);
800 	}
801 
802 	/*
803 	 * Read to sense.  Write to set.
804 	 */
805 	error = ahd_read_flexport(ahd, FLXADDR_TERMCTL, &termctl);
806 	if ((adapter_control & CFAUTOTERM) == 0) {
807 		if (bootverbose)
808 			printf("%s: Manual Primary Termination\n",
809 			       ahd_name(ahd));
810 		termctl &= ~(FLX_TERMCTL_ENPRILOW|FLX_TERMCTL_ENPRIHIGH);
811 		if ((adapter_control & CFSTERM) != 0)
812 			termctl |= FLX_TERMCTL_ENPRILOW;
813 		if ((adapter_control & CFWSTERM) != 0)
814 			termctl |= FLX_TERMCTL_ENPRIHIGH;
815 	} else if (error != 0) {
816 		printf("%s: Primary Auto-Term Sensing failed! "
817 		       "Using Defaults.\n", ahd_name(ahd));
818 		termctl = FLX_TERMCTL_ENPRILOW|FLX_TERMCTL_ENPRIHIGH;
819 	}
820 
821 	if ((adapter_control & CFSEAUTOTERM) == 0) {
822 		if (bootverbose)
823 			printf("%s: Manual Secondary Termination\n",
824 			       ahd_name(ahd));
825 		termctl &= ~(FLX_TERMCTL_ENSECLOW|FLX_TERMCTL_ENSECHIGH);
826 		if ((adapter_control & CFSELOWTERM) != 0)
827 			termctl |= FLX_TERMCTL_ENSECLOW;
828 		if ((adapter_control & CFSEHIGHTERM) != 0)
829 			termctl |= FLX_TERMCTL_ENSECHIGH;
830 	} else if (error != 0) {
831 		printf("%s: Secondary Auto-Term Sensing failed! "
832 		       "Using Defaults.\n", ahd_name(ahd));
833 		termctl |= FLX_TERMCTL_ENSECLOW|FLX_TERMCTL_ENSECHIGH;
834 	}
835 
836 	/*
837 	 * Now set the termination based on what we found.
838 	 */
839 	sxfrctl1 = ahd_inb(ahd, SXFRCTL1) & ~STPWEN;
840 	ahd->flags &= ~AHD_TERM_ENB_A;
841 	if ((termctl & FLX_TERMCTL_ENPRILOW) != 0) {
842 		ahd->flags |= AHD_TERM_ENB_A;
843 		sxfrctl1 |= STPWEN;
844 	}
845 	/* Must set the latch once in order to be effective. */
846 	ahd_outb(ahd, SXFRCTL1, sxfrctl1|STPWEN);
847 	ahd_outb(ahd, SXFRCTL1, sxfrctl1);
848 
849 	error = ahd_write_flexport(ahd, FLXADDR_TERMCTL, termctl);
850 	if (error != 0) {
851 		printf("%s: Unable to set termination settings!\n",
852 		       ahd_name(ahd));
853 	} else if (bootverbose) {
854 		printf("%s: Primary High byte termination %sabled\n",
855 		       ahd_name(ahd),
856 		       (termctl & FLX_TERMCTL_ENPRIHIGH) ? "En" : "Dis");
857 
858 		printf("%s: Primary Low byte termination %sabled\n",
859 		       ahd_name(ahd),
860 		       (termctl & FLX_TERMCTL_ENPRILOW) ? "En" : "Dis");
861 
862 		printf("%s: Secondary High byte termination %sabled\n",
863 		       ahd_name(ahd),
864 		       (termctl & FLX_TERMCTL_ENSECHIGH) ? "En" : "Dis");
865 
866 		printf("%s: Secondary Low byte termination %sabled\n",
867 		       ahd_name(ahd),
868 		       (termctl & FLX_TERMCTL_ENSECLOW) ? "En" : "Dis");
869 	}
870 	return;
871 }
872 
873 #define	DPE	0x80
874 #define SSE	0x40
875 #define	RMA	0x20
876 #define	RTA	0x10
877 #define STA	0x08
878 #define DPR	0x01
879 
880 static const char *split_status_source[] =
881 {
882 	"DFF0",
883 	"DFF1",
884 	"OVLY",
885 	"CMC",
886 };
887 
888 static const char *pci_status_source[] =
889 {
890 	"DFF0",
891 	"DFF1",
892 	"SG",
893 	"CMC",
894 	"OVLY",
895 	"NONE",
896 	"MSI",
897 	"TARG"
898 };
899 
900 static const char *split_status_strings[] =
901 {
902 	"%s: Received split response in %s.\n",
903 	"%s: Received split completion error message in %s\n",
904 	"%s: Receive overrun in %s\n",
905 	"%s: Count not complete in %s\n",
906 	"%s: Split completion data bucket in %s\n",
907 	"%s: Split completion address error in %s\n",
908 	"%s: Split completion byte count error in %s\n",
909 	"%s: Signaled Target-abort to early terminate a split in %s\n"
910 };
911 
912 static const char *pci_status_strings[] =
913 {
914 	"%s: Data Parity Error has been reported via PERR# in %s\n",
915 	"%s: Target initial wait state error in %s\n",
916 	"%s: Split completion read data parity error in %s\n",
917 	"%s: Split completion address attribute parity error in %s\n",
918 	"%s: Received a Target Abort in %s\n",
919 	"%s: Received a Master Abort in %s\n",
920 	"%s: Signal System Error Detected in %s\n",
921 	"%s: Address or Write Phase Parity Error Detected in %s.\n"
922 };
923 
924 void
925 ahd_pci_intr(struct ahd_softc *ahd)
926 {
927 	const pci_chipset_tag_t pc = ahd->dev_softc->pa_pc;
928 	const pcitag_t tag = ahd->dev_softc->pa_tag;
929 	uint8_t		pci_status[8];
930 	ahd_mode_state	saved_modes;
931 	pcireg_t	pci_status1;
932 	u_int		intstat;
933 	u_int		i;
934 	u_int		reg;
935 
936 	intstat = ahd_inb(ahd, INTSTAT);
937 
938 	if ((intstat & SPLTINT) != 0)
939 		ahd_pci_split_intr(ahd, intstat);
940 
941 	if ((intstat & PCIINT) == 0)
942 		return;
943 
944 	printf("%s: PCI error Interrupt\n", ahd_name(ahd));
945 	saved_modes = ahd_save_modes(ahd);
946 	ahd_dump_card_state(ahd);
947 	ahd_set_modes(ahd, AHD_MODE_CFG, AHD_MODE_CFG);
948 	for (i = 0, reg = DF0PCISTAT; i < 8; i++, reg++) {
949 
950 		if (i == 5)
951 			continue;
952 		pci_status[i] = ahd_inb(ahd, reg);
953 		/* Clear latched errors.  So our interrupt deasserts. */
954 		ahd_outb(ahd, reg, pci_status[i]);
955 	}
956 
957 	for (i = 0; i < 8; i++) {
958 		u_int bit;
959 
960 		if (i == 5)
961 			continue;
962 
963 		for (bit = 0; bit < 8; bit++) {
964 
965 			if ((pci_status[i] & (0x1 << bit)) != 0) {
966 				static const char *s;
967 
968 				s = pci_status_strings[bit];
969 				if (i == 7/*TARG*/ && bit == 3)
970 					s = "%s: Signaled Target Abort\n";
971 				printf(s, ahd_name(ahd), pci_status_source[i]);
972 			}
973 		}
974 	}
975 	pci_status1 = pci_conf_read(pc, tag, PCI_COMMAND_STATUS_REG);
976 	pci_conf_write(pc, tag, PCI_COMMAND_STATUS_REG , pci_status1);
977 
978 	ahd_restore_modes(ahd, saved_modes);
979 	ahd_outb(ahd, CLRINT, CLRPCIINT);
980 	ahd_unpause(ahd);
981 
982 	return;
983 }
984 
985 void
986 ahd_pci_split_intr(struct ahd_softc *ahd, u_int intstat)
987 {
988 	const pci_chipset_tag_t pc = ahd->dev_softc->pa_pc;
989 	const pcitag_t tag = ahd->dev_softc->pa_tag;
990 	uint8_t		split_status[4];
991 	uint8_t		split_status1[4];
992 	uint8_t		sg_split_status[2];
993 	uint8_t		sg_split_status1[2];
994 	ahd_mode_state	saved_modes;
995 	u_int		i;
996 	pcireg_t	pcix_status;
997 
998 	/*
999 	 * Check for splits in all modes.  Modes 0 and 1
1000 	 * additionally have SG engine splits to look at.
1001 	 */
1002 	pcix_status = pci_conf_read(pc, tag, ahd->pcix_off + 0x04);
1003 	printf("%s: PCI Split Interrupt - PCI-X status = 0x%x\n",
1004 	       ahd_name(ahd), pcix_status);
1005 
1006 	saved_modes = ahd_save_modes(ahd);
1007 	for (i = 0; i < 4; i++) {
1008 		ahd_set_modes(ahd, i, i);
1009 
1010 		split_status[i] = ahd_inb(ahd, DCHSPLTSTAT0);
1011 		split_status1[i] = ahd_inb(ahd, DCHSPLTSTAT1);
1012 		/* Clear latched errors.  So our interrupt deasserts. */
1013 		ahd_outb(ahd, DCHSPLTSTAT0, split_status[i]);
1014 		ahd_outb(ahd, DCHSPLTSTAT1, split_status1[i]);
1015 		if (i > 1)
1016 			continue;
1017 		sg_split_status[i] = ahd_inb(ahd, SGSPLTSTAT0);
1018 		sg_split_status1[i] = ahd_inb(ahd, SGSPLTSTAT1);
1019 		/* Clear latched errors.  So our interrupt deasserts. */
1020 		ahd_outb(ahd, SGSPLTSTAT0, sg_split_status[i]);
1021 		ahd_outb(ahd, SGSPLTSTAT1, sg_split_status1[i]);
1022 	}
1023 
1024 	for (i = 0; i < 4; i++) {
1025 		u_int bit;
1026 
1027 		for (bit = 0; bit < 8; bit++) {
1028 
1029 			if ((split_status[i] & (0x1 << bit)) != 0) {
1030 				static const char *s;
1031 
1032 				s = split_status_strings[bit];
1033 				printf(s, ahd_name(ahd),
1034 				       split_status_source[i]);
1035 			}
1036 
1037 			if (i > 1)
1038 				continue;
1039 
1040 			if ((sg_split_status[i] & (0x1 << bit)) != 0) {
1041 				static const char *s;
1042 
1043 				s = split_status_strings[bit];
1044 				printf(s, ahd_name(ahd), "SG");
1045 			}
1046 		}
1047 	}
1048 	/*
1049 	 * Clear PCI-X status bits.
1050 	 */
1051 	pci_conf_write(pc, tag, ahd->pcix_off + 0x04, pcix_status);
1052 	ahd_outb(ahd, CLRINT, CLRSPLTINT);
1053 	ahd_restore_modes(ahd, saved_modes);
1054 }
1055 
1056 int
1057 ahd_aic7901_setup(struct ahd_softc *ahd, struct pci_attach_args *pa)
1058 {
1059 
1060 	ahd->chip = AHD_AIC7901;
1061 	ahd->features = AHD_AIC7901_FE;
1062 	return (ahd_aic790X_setup(ahd, pa));
1063 }
1064 
1065 int
1066 ahd_aic7901A_setup(struct ahd_softc *ahd, struct pci_attach_args *pa)
1067 {
1068 
1069 	ahd->chip = AHD_AIC7901A;
1070 	ahd->features = AHD_AIC7901A_FE;
1071 	return (ahd_aic790X_setup(ahd, pa));
1072 }
1073 
1074 int
1075 ahd_aic7902_setup(struct ahd_softc *ahd, struct pci_attach_args *pa)
1076 {
1077 	ahd->chip = AHD_AIC7902;
1078 	ahd->features = AHD_AIC7902_FE;
1079 	return (ahd_aic790X_setup(ahd, pa));
1080 }
1081 
1082 int
1083 ahd_aic790X_setup(struct ahd_softc *ahd, struct pci_attach_args *pa)
1084 {
1085 	u_int rev;
1086 
1087 	rev = PCI_REVISION(pa->pa_class);
1088 #ifdef AHD_DEBUG
1089 	printf("\n%s: aic7902 chip revision 0x%x\n", ahd_name(ahd), rev);
1090 #endif
1091 	if (rev < ID_AIC7902_PCI_REV_A4) {
1092 		printf("%s: Unable to attach to unsupported chip revision %d\n",
1093 		       ahd_name(ahd), rev);
1094 		pci_conf_write(pa->pa_pc, pa->pa_tag, PCI_COMMAND_STATUS_REG, 0);
1095 		return (ENXIO);
1096 	}
1097 
1098 	ahd->channel = (pa->pa_function == 1) ? 'B' : 'A';
1099 	if (rev < ID_AIC7902_PCI_REV_B0) {
1100 		/*
1101 		 * Enable A series workarounds.
1102 		 */
1103 		ahd->bugs |= AHD_SENT_SCB_UPDATE_BUG|AHD_ABORT_LQI_BUG
1104 			  |  AHD_PKT_BITBUCKET_BUG|AHD_LONG_SETIMO_BUG
1105 			  |  AHD_NLQICRC_DELAYED_BUG|AHD_SCSIRST_BUG
1106 			  |  AHD_LQO_ATNO_BUG|AHD_AUTOFLUSH_BUG
1107 			  |  AHD_CLRLQO_AUTOCLR_BUG|AHD_PCIX_MMAPIO_BUG
1108 			  |  AHD_PCIX_CHIPRST_BUG|AHD_PCIX_SCBRAM_RD_BUG
1109 			  |  AHD_PKTIZED_STATUS_BUG|AHD_PKT_LUN_BUG
1110 			  |  AHD_MDFF_WSCBPTR_BUG|AHD_REG_SLOW_SETTLE_BUG
1111 			  |  AHD_SET_MODE_BUG|AHD_BUSFREEREV_BUG
1112 			  |  AHD_NONPACKFIFO_BUG|AHD_PACED_NEGTABLE_BUG
1113 			  |  AHD_FAINT_LED_BUG;
1114 
1115 		/*
1116 		 * IO Cell parameter setup.
1117 		 */
1118 		AHD_SET_PRECOMP(ahd, AHD_PRECOMP_CUTBACK_29);
1119 
1120 		if ((ahd->flags & AHD_HP_BOARD) == 0)
1121 			AHD_SET_SLEWRATE(ahd, AHD_SLEWRATE_DEF_REVA);
1122 	} else {
1123 		pcireg_t devconfig1;
1124 
1125 		ahd->features |= AHD_RTI|AHD_NEW_IOCELL_OPTS
1126 			      |  AHD_NEW_DFCNTRL_OPTS|AHD_FAST_CDB_DELIVERY;
1127 		ahd->bugs |= AHD_LQOOVERRUN_BUG|AHD_EARLY_REQ_BUG
1128 		    	  |  AHD_BUSFREEREV_BUG;
1129 
1130 		/*
1131 		 * Some issues have been resolved in the 7901B.
1132 		 */
1133 		if ((ahd->features & AHD_MULTI_FUNC) != 0)
1134 			ahd->bugs |= AHD_INTCOLLISION_BUG|AHD_ABORT_LQI_BUG;
1135 
1136 		/*
1137 		 * IO Cell parameter setup.
1138 		 */
1139 		AHD_SET_PRECOMP(ahd, AHD_PRECOMP_CUTBACK_29);
1140 		AHD_SET_SLEWRATE(ahd, AHD_SLEWRATE_DEF_REVB);
1141 		AHD_SET_AMPLITUDE(ahd, AHD_AMPLITUDE_DEF);
1142 
1143 		/*
1144 		 * Set the PREQDIS bit for H2B which disables some workaround
1145 		 * that doesn't work on regular PCI busses.
1146 		 * XXX - Find out exactly what this does from the hardware
1147 		 * 	 folks!
1148 		 */
1149 		devconfig1 = pci_conf_read(pa->pa_pc, pa->pa_tag, DEVCONFIG1);
1150 		pci_conf_write(pa->pa_pc, pa->pa_tag, DEVCONFIG1, devconfig1|PREQDIS);
1151 		devconfig1 = pci_conf_read(pa->pa_pc, pa->pa_tag, DEVCONFIG1);
1152 	}
1153 
1154 	return (0);
1155 }
1156