xref: /illumos-gate/usr/src/uts/sun4/io/px/px.c (revision 5435d801)
1 /*
2  * CDDL HEADER START
3  *
4  * The contents of this file are subject to the terms of the
5  * Common Development and Distribution License, Version 1.0 only
6  * (the "License").  You may not use this file except in compliance
7  * with the License.
8  *
9  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
10  * or http://www.opensolaris.org/os/licensing.
11  * See the License for the specific language governing permissions
12  * and limitations under the License.
13  *
14  * When distributing Covered Code, include this CDDL HEADER in each
15  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
16  * If applicable, add the following below this CDDL HEADER, with the
17  * fields enclosed by brackets "[]" replaced with your own identifying
18  * information: Portions Copyright [yyyy] [name of copyright owner]
19  *
20  * CDDL HEADER END
21  */
22 /*
23  * Copyright 2005 Sun Microsystems, Inc.  All rights reserved.
24  * Use is subject to license terms.
25  */
26 
27 #pragma ident	"%Z%%M%	%I%	%E% SMI"
28 
29 /*
30  * PCI Express nexus driver interface
31  */
32 
33 #include <sys/types.h>
34 #include <sys/conf.h>		/* nulldev */
35 #include <sys/stat.h>		/* devctl */
36 #include <sys/kmem.h>
37 #include <sys/sunddi.h>
38 #include <sys/sunndi.h>
39 #include <sys/hotplug/pci/pcihp.h>
40 #include <sys/ontrap.h>
41 #include <sys/ddi_impldefs.h>
42 #include <sys/ddi_subrdefs.h>
43 #include <sys/epm.h>
44 #include <sys/iommutsb.h>
45 #include "px_obj.h"
46 #include "pcie_pwr.h"
47 
48 /*LINTLIBRARY*/
49 
50 /*
51  * function prototypes for dev ops routines:
52  */
53 static int px_attach(dev_info_t *dip, ddi_attach_cmd_t cmd);
54 static int px_detach(dev_info_t *dip, ddi_detach_cmd_t cmd);
55 static int px_info(dev_info_t *dip, ddi_info_cmd_t infocmd,
56 	void *arg, void **result);
57 static int px_pwr_setup(dev_info_t *dip);
58 static void px_pwr_teardown(dev_info_t *dip);
59 
60 /*
61  * bus ops and dev ops structures:
62  */
63 static struct bus_ops px_bus_ops = {
64 	BUSO_REV,
65 	px_map,
66 	0,
67 	0,
68 	0,
69 	i_ddi_map_fault,
70 	px_dma_setup,
71 	px_dma_allochdl,
72 	px_dma_freehdl,
73 	px_dma_bindhdl,
74 	px_dma_unbindhdl,
75 	px_lib_dma_sync,
76 	px_dma_win,
77 	px_dma_ctlops,
78 	px_ctlops,
79 	ddi_bus_prop_op,
80 	ndi_busop_get_eventcookie,
81 	ndi_busop_add_eventcall,
82 	ndi_busop_remove_eventcall,
83 	ndi_post_event,
84 	NULL,
85 	NULL,			/* (*bus_config)(); */
86 	NULL,			/* (*bus_unconfig)(); */
87 	px_fm_init_child,	/* (*bus_fm_init)(); */
88 	NULL,			/* (*bus_fm_fini)(); */
89 	px_bus_enter,		/* (*bus_fm_access_enter)(); */
90 	px_bus_exit,		/* (*bus_fm_access_fini)(); */
91 	pcie_bus_power,		/* (*bus_power)(); */
92 	px_intr_ops		/* (*bus_intr_op)(); */
93 };
94 
95 extern struct cb_ops px_cb_ops;
96 
97 static struct dev_ops px_ops = {
98 	DEVO_REV,
99 	0,
100 	px_info,
101 	nulldev,
102 	0,
103 	px_attach,
104 	px_detach,
105 	nodev,
106 	&px_cb_ops,
107 	&px_bus_ops,
108 	nulldev
109 };
110 
111 /*
112  * module definitions:
113  */
114 #include <sys/modctl.h>
115 extern struct mod_ops mod_driverops;
116 
117 static struct modldrv modldrv = {
118 	&mod_driverops, 		/* Type of module - driver */
119 	"PCI Express nexus driver %I%",	/* Name of module. */
120 	&px_ops,			/* driver ops */
121 };
122 
123 static struct modlinkage modlinkage = {
124 	MODREV_1, (void *)&modldrv, NULL
125 };
126 
127 /* driver soft state */
128 void *px_state_p;
129 
130 int
131 _init(void)
132 {
133 	int e;
134 
135 	/*
136 	 * Initialize per-px bus soft state pointer.
137 	 */
138 	e = ddi_soft_state_init(&px_state_p, sizeof (px_t), 1);
139 	if (e != DDI_SUCCESS)
140 		return (e);
141 
142 	/*
143 	 * Install the module.
144 	 */
145 	e = mod_install(&modlinkage);
146 	if (e != DDI_SUCCESS)
147 		ddi_soft_state_fini(&px_state_p);
148 	return (e);
149 }
150 
151 int
152 _fini(void)
153 {
154 	int e;
155 
156 	/*
157 	 * Remove the module.
158 	 */
159 	e = mod_remove(&modlinkage);
160 	if (e != DDI_SUCCESS)
161 		return (e);
162 
163 	/* Free px soft state */
164 	ddi_soft_state_fini(&px_state_p);
165 
166 	return (e);
167 }
168 
169 int
170 _info(struct modinfo *modinfop)
171 {
172 	return (mod_info(&modlinkage, modinfop));
173 }
174 
175 /* ARGSUSED */
176 static int
177 px_info(dev_info_t *dip, ddi_info_cmd_t infocmd, void *arg, void **result)
178 {
179 	int	instance = getminor((dev_t)arg);
180 	px_t	*px_p = INST_TO_STATE(instance);
181 
182 #ifdef	HOTPLUG
183 	/*
184 	 * Allow hotplug to deal with ones it manages
185 	 * Hot Plug will be done later.
186 	 */
187 	if (px_p && (px_p->hotplug_capable == B_TRUE))
188 		return (pcihp_info(dip, infocmd, arg, result));
189 #endif	/* HOTPLUG */
190 
191 	/* non-hotplug or not attached */
192 	switch (infocmd) {
193 	case DDI_INFO_DEVT2INSTANCE:
194 		*result = (void *)instance;
195 		return (DDI_SUCCESS);
196 
197 	case DDI_INFO_DEVT2DEVINFO:
198 		if (px_p == NULL)
199 			return (DDI_FAILURE);
200 		*result = (void *)px_p->px_dip;
201 		return (DDI_SUCCESS);
202 
203 	default:
204 		return (DDI_FAILURE);
205 	}
206 }
207 
208 /* device driver entry points */
209 /*
210  * attach entry point:
211  */
212 /*ARGSUSED*/
213 static int
214 px_attach(dev_info_t *dip, ddi_attach_cmd_t cmd)
215 {
216 	px_t		*px_p;	/* per bus state pointer */
217 	int		instance = DIP_TO_INST(dip);
218 	int		ret = DDI_SUCCESS;
219 	devhandle_t	dev_hdl = NULL;
220 
221 	switch (cmd) {
222 	case DDI_ATTACH:
223 		DBG(DBG_ATTACH, dip, "DDI_ATTACH\n");
224 
225 		/*
226 		 * Allocate and get the per-px soft state structure.
227 		 */
228 		if (ddi_soft_state_zalloc(px_state_p, instance)
229 		    != DDI_SUCCESS) {
230 			cmn_err(CE_WARN, "%s%d: can't allocate px state",
231 				ddi_driver_name(dip), instance);
232 			goto err_bad_px_softstate;
233 		}
234 		px_p = INST_TO_STATE(instance);
235 		px_p->px_dip = dip;
236 		mutex_init(&px_p->px_mutex, NULL, MUTEX_DRIVER, NULL);
237 		px_p->px_soft_state = PX_SOFT_STATE_CLOSED;
238 		px_p->px_open_count = 0;
239 
240 		/*
241 		 * Get key properties of the pci bridge node and
242 		 * determine it's type (psycho, schizo, etc ...).
243 		 */
244 		if (px_get_props(px_p, dip) == DDI_FAILURE)
245 			goto err_bad_px_prop;
246 
247 		if ((px_fm_attach(px_p)) != DDI_SUCCESS)
248 			goto err_bad_fm;
249 
250 		if (px_lib_dev_init(dip, &dev_hdl) != DDI_SUCCESS)
251 			goto err_bad_dev_init;
252 
253 		/* Initilize device handle */
254 		px_p->px_dev_hdl = dev_hdl;
255 
256 		/*
257 		 * Initialize interrupt block.  Note that this
258 		 * initialize error handling for the PEC as well.
259 		 */
260 		if ((ret = px_ib_attach(px_p)) != DDI_SUCCESS)
261 			goto err_bad_ib;
262 
263 		if (px_cb_attach(px_p) != DDI_SUCCESS)
264 			goto err_bad_cb;
265 
266 		/*
267 		 * Start creating the modules.
268 		 * Note that attach() routines should
269 		 * register and enable their own interrupts.
270 		 */
271 
272 		if ((px_mmu_attach(px_p)) != DDI_SUCCESS)
273 			goto err_bad_mmu;
274 
275 		if ((px_msiq_attach(px_p)) != DDI_SUCCESS)
276 			goto err_bad_msiq;
277 
278 		if ((px_msi_attach(px_p)) != DDI_SUCCESS)
279 			goto err_bad_msi;
280 
281 		if ((px_pec_attach(px_p)) != DDI_SUCCESS)
282 			goto err_bad_pec;
283 
284 		if ((px_dma_attach(px_p)) != DDI_SUCCESS)
285 			goto err_bad_pec; /* nothing to uninitialize on DMA */
286 
287 		/*
288 		 * All of the error handlers have been registered
289 		 * by now so it's time to activate the interrupt.
290 		 */
291 		if ((ret = px_err_add_intr(&px_p->px_fault)) != DDI_SUCCESS)
292 			goto err_bad_pec_add_intr;
293 
294 		/*
295 		 * Create the "devctl" node for hotplug and pcitool support.
296 		 * For non-hotplug bus, we still need ":devctl" to
297 		 * support DEVCTL_DEVICE_* and DEVCTL_BUS_* ioctls.
298 		 */
299 		if (ddi_create_minor_node(dip, "devctl", S_IFCHR,
300 		    PCIHP_AP_MINOR_NUM(instance, PCIHP_DEVCTL_MINOR),
301 		    DDI_NT_NEXUS, 0) != DDI_SUCCESS) {
302 			goto err_bad_devctl_node;
303 		}
304 		/*
305 		 * power management setup. Even if it fails, attach will
306 		 * succeed as this is a optional feature. Since we are
307 		 * always at full power, this is not critical.
308 		 */
309 		if (pwr_common_setup(dip) != DDI_SUCCESS) {
310 			DBG(DBG_PWR, dip, "pwr_common_setup failed\n");
311 		} else if (px_pwr_setup(dip) != DDI_SUCCESS) {
312 			DBG(DBG_PWR, dip, "px_pwr_setup failed \n");
313 			pwr_common_teardown(dip);
314 		}
315 
316 		ddi_report_dev(dip);
317 
318 		px_p->px_state = PX_ATTACHED;
319 		DBG(DBG_ATTACH, dip, "attach success\n");
320 		break;
321 
322 err_bad_devctl_node:
323 		px_err_rem_intr(&px_p->px_fault);
324 err_bad_pec_add_intr:
325 		px_pec_detach(px_p);
326 err_bad_pec:
327 		px_msi_detach(px_p);
328 err_bad_msi:
329 		px_msiq_detach(px_p);
330 err_bad_msiq:
331 		px_mmu_detach(px_p);
332 err_bad_mmu:
333 		px_cb_detach(px_p);
334 err_bad_cb:
335 		px_ib_detach(px_p);
336 err_bad_ib:
337 		(void) px_lib_dev_fini(dip);
338 err_bad_dev_init:
339 		px_fm_detach(px_p);
340 err_bad_fm:
341 		px_free_props(px_p);
342 err_bad_px_prop:
343 		mutex_destroy(&px_p->px_mutex);
344 		ddi_soft_state_free(px_state_p, instance);
345 err_bad_px_softstate:
346 		ret = DDI_FAILURE;
347 		break;
348 
349 	case DDI_RESUME:
350 		DBG(DBG_ATTACH, dip, "DDI_RESUME\n");
351 
352 		px_p = INST_TO_STATE(instance);
353 
354 		mutex_enter(&px_p->px_mutex);
355 
356 		/* suspend might have not succeeded */
357 		if (px_p->px_state != PX_SUSPENDED) {
358 			DBG(DBG_ATTACH, px_p->px_dip,
359 			    "instance NOT suspended\n");
360 			ret = DDI_FAILURE;
361 			break;
362 		}
363 
364 		px_lib_resume(dip);
365 		(void) pcie_pwr_resume(dip);
366 		px_p->px_state = PX_ATTACHED;
367 
368 		mutex_exit(&px_p->px_mutex);
369 
370 		break;
371 	default:
372 		DBG(DBG_ATTACH, dip, "unsupported attach op\n");
373 		ret = DDI_FAILURE;
374 		break;
375 	}
376 
377 	return (ret);
378 }
379 
380 /*
381  * detach entry point:
382  */
383 /*ARGSUSED*/
384 static int
385 px_detach(dev_info_t *dip, ddi_detach_cmd_t cmd)
386 {
387 	int instance = ddi_get_instance(dip);
388 	px_t *px_p = INST_TO_STATE(instance);
389 	int ret;
390 
391 	/*
392 	 * Make sure we are currently attached
393 	 */
394 	if (px_p->px_state != PX_ATTACHED) {
395 		DBG(DBG_DETACH, dip, "failed - instance not attached\n");
396 		return (DDI_FAILURE);
397 	}
398 
399 	mutex_enter(&px_p->px_mutex);
400 
401 	switch (cmd) {
402 	case DDI_DETACH:
403 		DBG(DBG_DETACH, dip, "DDI_DETACH\n");
404 
405 #ifdef	HOTPLUG
406 		/*
407 		 * Hot plug will be done later.
408 		 */
409 		if (px_p->hotplug_capable == B_TRUE) {
410 			if (pxhp_uninit(dip) == DDI_FAILURE) {
411 				mutex_exit(&px_p->px_mutex);
412 				return (DDI_FAILURE);
413 			}
414 		}
415 #endif	/* HOTPLUG */
416 
417 		/*
418 		 * things which used to be done in obj_destroy
419 		 * are now in-lined here.
420 		 */
421 
422 		px_p->px_state = PX_DETACHED;
423 
424 		ddi_remove_minor_node(dip, "devctl");
425 		px_err_rem_intr(&px_p->px_fault);
426 		px_pec_detach(px_p);
427 		px_msi_detach(px_p);
428 		px_msiq_detach(px_p);
429 		px_mmu_detach(px_p);
430 		px_cb_detach(px_p);
431 		px_ib_detach(px_p);
432 		(void) px_lib_dev_fini(dip);
433 		px_fm_detach(px_p);
434 
435 		/*
436 		 * Free the px soft state structure and the rest of the
437 		 * resources it's using.
438 		 */
439 		px_free_props(px_p);
440 		px_pwr_teardown(dip);
441 		pwr_common_teardown(dip);
442 		mutex_exit(&px_p->px_mutex);
443 		mutex_destroy(&px_p->px_mutex);
444 		ddi_soft_state_free(px_state_p, instance);
445 
446 		/* Free the interrupt-priorities prop if we created it. */ {
447 			int len;
448 
449 			if (ddi_getproplen(DDI_DEV_T_ANY, dip,
450 			    DDI_PROP_NOTPROM | DDI_PROP_DONTPASS,
451 			    "interrupt-priorities", &len) == DDI_PROP_SUCCESS)
452 				(void) ddi_prop_remove(DDI_DEV_T_NONE, dip,
453 				    "interrupt-priorities");
454 		}
455 
456 		px_p->px_dev_hdl = NULL;
457 
458 		return (DDI_SUCCESS);
459 
460 	case DDI_SUSPEND:
461 		if (pcie_pwr_suspend(dip) != DDI_SUCCESS) {
462 			mutex_exit(&px_p->px_mutex);
463 			return (DDI_FAILURE);
464 		}
465 		if ((ret = px_lib_suspend(dip)) == DDI_SUCCESS)
466 			px_p->px_state = PX_SUSPENDED;
467 		mutex_exit(&px_p->px_mutex);
468 
469 		return (ret);
470 
471 	default:
472 		DBG(DBG_DETACH, dip, "unsupported detach op\n");
473 		mutex_exit(&px_p->px_mutex);
474 		return (DDI_FAILURE);
475 	}
476 }
477 
478 /*
479  * power management related initialization specific to px
480  * called by px_attach()
481  */
482 static int
483 px_pwr_setup(dev_info_t *dip)
484 {
485 	pcie_pwr_t *pwr_p;
486 	ddi_intr_handle_impl_t hdl;
487 
488 	ASSERT(PCIE_PMINFO(dip));
489 	pwr_p = PCIE_NEXUS_PMINFO(dip);
490 	ASSERT(pwr_p);
491 
492 	/*
493 	 * indicate support LDI (Layered Driver Interface)
494 	 * Create the property, if it is not already there
495 	 */
496 	if (!ddi_prop_exists(DDI_DEV_T_NONE, dip, DDI_PROP_DONTPASS,
497 	    DDI_KERNEL_IOCTL)) {
498 		if (ddi_prop_create(DDI_DEV_T_NONE, dip, DDI_PROP_CANSLEEP,
499 		    DDI_KERNEL_IOCTL, NULL, 0) != DDI_PROP_SUCCESS) {
500 			DBG(DBG_PWR, dip, "can't create kernel ioctl prop\n");
501 			return (DDI_FAILURE);
502 		}
503 	}
504 	/* No support for device PM. We are always at full power */
505 	pwr_p->pwr_func_lvl = PM_LEVEL_D0;
506 
507 	/* we know that we are only a low pil interrupt */
508 	mutex_init(&pwr_p->pwr_intr_lock, NULL, MUTEX_DRIVER, NULL);
509 	cv_init(&pwr_p->pwr_cv, NULL, CV_DRIVER, NULL);
510 
511 	/* Initilize handle */
512 	hdl.ih_ver = DDI_INTR_VERSION;
513 	hdl.ih_state = DDI_IHDL_STATE_ALLOC;
514 	hdl.ih_dip = dip;
515 	hdl.ih_inum = 0;
516 	hdl.ih_pri = px_pwr_pil;
517 
518 	/* Add PME_TO_ACK message handler */
519 	hdl.ih_cb_func = (ddi_intr_handler_t *)pcie_pwr_intr;
520 	hdl.ih_cb_arg1 = pwr_p;
521 	hdl.ih_cb_arg2 = NULL;
522 	if (px_add_msiq_intr(dip, dip, &hdl, MSG_REC,
523 	    (msgcode_t)PCIE_PME_ACK_MSG, &pwr_p->pwr_msiq_id) != DDI_SUCCESS) {
524 		DBG(DBG_PWR, dip, "px_pwr_setup: couldn't add intr\n");
525 		goto px_pwrsetup_err;
526 	}
527 
528 	px_lib_msg_setmsiq(dip, PCIE_PME_ACK_MSG, pwr_p->pwr_msiq_id);
529 	px_lib_msg_setvalid(dip, PCIE_PME_ACK_MSG, PCIE_MSG_VALID);
530 
531 	return (DDI_SUCCESS);
532 
533 px_pwrsetup_err:
534 	cv_destroy(&pwr_p->pwr_cv);
535 	mutex_destroy(&pwr_p->pwr_intr_lock);
536 	return (DDI_FAILURE);
537 }
538 
539 /*
540  * undo whatever is done in px_pwr_setup. called by px_detach()
541  */
542 static void
543 px_pwr_teardown(dev_info_t *dip)
544 {
545 	pcie_pwr_t	*pwr_p;
546 	ddi_intr_handle_impl_t hdl;
547 
548 	if (!PCIE_PMINFO(dip) || !(pwr_p = PCIE_NEXUS_PMINFO(dip)))
549 		return;
550 
551 	DBG(DBG_MSG, dip, "px_pwr_teardown: msiq_id 0x%x\n",
552 	    pwr_p->pwr_msiq_id);
553 
554 	/* Initilize handle */
555 	hdl.ih_ver = DDI_INTR_VERSION;
556 	hdl.ih_state = DDI_IHDL_STATE_ALLOC;
557 	hdl.ih_dip = dip;
558 	hdl.ih_inum = 0;
559 
560 	px_lib_msg_setvalid(dip, PCIE_PME_ACK_MSG, PCIE_MSG_INVALID);
561 	(void) px_rem_msiq_intr(dip, dip, &hdl, MSG_REC, PCIE_PME_ACK_MSG,
562 	    pwr_p->pwr_msiq_id);
563 
564 	pwr_p->pwr_msiq_id = -1;
565 
566 	cv_destroy(&pwr_p->pwr_cv);
567 	mutex_destroy(&pwr_p->pwr_intr_lock);
568 }
569 
570 /* bus driver entry points */
571 
572 /*
573  * bus map entry point:
574  *
575  * 	if map request is for an rnumber
576  *		get the corresponding regspec from device node
577  * 	build a new regspec in our parent's format
578  *	build a new map_req with the new regspec
579  *	call up the tree to complete the mapping
580  */
581 int
582 px_map(dev_info_t *dip, dev_info_t *rdip, ddi_map_req_t *mp,
583 	off_t off, off_t len, caddr_t *addrp)
584 {
585 	px_t *px_p = DIP_TO_STATE(dip);
586 	struct regspec p_regspec;
587 	ddi_map_req_t p_mapreq;
588 	int reglen, rval, r_no;
589 	pci_regspec_t reloc_reg, *rp = &reloc_reg;
590 
591 	DBG(DBG_MAP, dip, "rdip=%s%d:",
592 		ddi_driver_name(rdip), ddi_get_instance(rdip));
593 
594 	if (mp->map_flags & DDI_MF_USER_MAPPING)
595 		return (DDI_ME_UNIMPLEMENTED);
596 
597 	switch (mp->map_type) {
598 	case DDI_MT_REGSPEC:
599 		reloc_reg = *(pci_regspec_t *)mp->map_obj.rp;	/* dup whole */
600 		break;
601 
602 	case DDI_MT_RNUMBER:
603 		r_no = mp->map_obj.rnumber;
604 		DBG(DBG_MAP | DBG_CONT, dip, " r#=%x", r_no);
605 
606 		if (ddi_getlongprop(DDI_DEV_T_NONE, rdip, DDI_PROP_DONTPASS,
607 			"reg", (caddr_t)&rp, &reglen) != DDI_SUCCESS)
608 				return (DDI_ME_RNUMBER_RANGE);
609 
610 		if (r_no < 0 || r_no >= reglen / sizeof (pci_regspec_t)) {
611 			kmem_free(rp, reglen);
612 			return (DDI_ME_RNUMBER_RANGE);
613 		}
614 		rp += r_no;
615 		break;
616 
617 	default:
618 		return (DDI_ME_INVAL);
619 	}
620 	DBG(DBG_MAP | DBG_CONT, dip, "\n");
621 
622 	if ((rp->pci_phys_hi & PCI_REG_ADDR_M) == PCI_ADDR_CONFIG) {
623 		/*
624 		 * There may be a need to differentiate between PCI
625 		 * and PCI-Ex devices so the following range check is
626 		 * done correctly, depending on the implementation of
627 		 * px_pci bridge nexus driver.
628 		 */
629 		if ((off >= PCIE_CONF_HDR_SIZE) ||
630 				(len > PCIE_CONF_HDR_SIZE) ||
631 				(off + len > PCIE_CONF_HDR_SIZE))
632 			return (DDI_ME_INVAL);
633 		/*
634 		 * the following function returning a DDI_FAILURE assumes
635 		 * that there are no virtual config space access services
636 		 * defined in this layer. Otherwise it is availed right
637 		 * here and we return.
638 		 */
639 		rval = px_lib_map_vconfig(dip, mp, off, rp, addrp);
640 		if (rval == DDI_SUCCESS)
641 			goto done;
642 	}
643 
644 	/*
645 	 * No virtual config space services or we are mapping
646 	 * a region of memory mapped config/IO/memory space, so proceed
647 	 * to the parent.
648 	 */
649 
650 	/* relocate within 64-bit pci space through "assigned-addresses" */
651 	if (rval = px_reloc_reg(dip, rdip, px_p, rp))
652 		goto done;
653 
654 	if (len)	/* adjust regspec according to mapping request */
655 		rp->pci_size_low = len;	/* MIN ? */
656 	rp->pci_phys_low += off;
657 
658 	/* translate relocated pci regspec into parent space through "ranges" */
659 	if (rval = px_xlate_reg(px_p, rp, &p_regspec))
660 		goto done;
661 
662 	p_mapreq = *mp;		/* dup the whole structure */
663 	p_mapreq.map_type = DDI_MT_REGSPEC;
664 	p_mapreq.map_obj.rp = &p_regspec;
665 	rval = ddi_map(dip, &p_mapreq, 0, 0, addrp);
666 
667 	if (rval == DDI_SUCCESS) {
668 		/*
669 		 * Set-up access functions for FM access error capable drivers.
670 		 */
671 		if (DDI_FM_ACC_ERR_CAP(ddi_fm_capable(rdip)) &&
672 		    mp->map_handlep->ah_acc.devacc_attr_access !=
673 		    DDI_DEFAULT_ACC)
674 			px_fm_acc_setup(mp, rdip);
675 	}
676 
677 done:
678 	if (mp->map_type == DDI_MT_RNUMBER)
679 		kmem_free(rp - r_no, reglen);
680 
681 	return (rval);
682 }
683 
684 /*
685  * bus dma map entry point
686  * return value:
687  *	DDI_DMA_PARTIAL_MAP	 1
688  *	DDI_DMA_MAPOK		 0
689  *	DDI_DMA_MAPPED		 0
690  *	DDI_DMA_NORESOURCES	-1
691  *	DDI_DMA_NOMAPPING	-2
692  *	DDI_DMA_TOOBIG		-3
693  */
694 int
695 px_dma_setup(dev_info_t *dip, dev_info_t *rdip, ddi_dma_req_t *dmareq,
696 	ddi_dma_handle_t *handlep)
697 {
698 	px_t *px_p = DIP_TO_STATE(dip);
699 	px_mmu_t *mmu_p = px_p->px_mmu_p;
700 	ddi_dma_impl_t *mp;
701 	int ret;
702 
703 	DBG(DBG_DMA_MAP, dip, "mapping - rdip=%s%d type=%s\n",
704 		ddi_driver_name(rdip), ddi_get_instance(rdip),
705 		handlep ? "alloc" : "advisory");
706 
707 	if (!(mp = px_dma_lmts2hdl(dip, rdip, mmu_p, dmareq)))
708 		return (DDI_DMA_NORESOURCES);
709 	if (mp == (ddi_dma_impl_t *)DDI_DMA_NOMAPPING)
710 		return (DDI_DMA_NOMAPPING);
711 	if (ret = px_dma_type(px_p, dmareq, mp))
712 		goto freehandle;
713 	if (ret = px_dma_pfn(px_p, dmareq, mp))
714 		goto freehandle;
715 
716 	switch (PX_DMA_TYPE(mp)) {
717 	case DMAI_FLAGS_DVMA:	/* LINTED E_EQUALITY_NOT_ASSIGNMENT */
718 		if ((ret = px_dvma_win(px_p, dmareq, mp)) || !handlep)
719 			goto freehandle;
720 		if (!PX_DMA_CANCACHE(mp)) {	/* try fast track */
721 			if (PX_DMA_CANFAST(mp)) {
722 				if (!px_dvma_map_fast(mmu_p, mp))
723 					break;
724 			/* LINTED E_NOP_ELSE_STMT */
725 			} else {
726 				PX_DVMA_FASTTRAK_PROF(mp);
727 			}
728 		}
729 		if (ret = px_dvma_map(mp, dmareq, mmu_p))
730 			goto freehandle;
731 		break;
732 	case DMAI_FLAGS_PTP:	/* LINTED E_EQUALITY_NOT_ASSIGNMENT */
733 		if ((ret = px_dma_physwin(px_p, dmareq, mp)) || !handlep)
734 			goto freehandle;
735 		break;
736 	case DMAI_FLAGS_BYPASS:
737 	default:
738 		cmn_err(CE_PANIC, "%s%d: px_dma_setup: bad dma type 0x%x",
739 			ddi_driver_name(rdip), ddi_get_instance(rdip),
740 			PX_DMA_TYPE(mp));
741 		/*NOTREACHED*/
742 	}
743 	*handlep = (ddi_dma_handle_t)mp;
744 	mp->dmai_flags |= DMAI_FLAGS_INUSE;
745 	px_dump_dma_handle(DBG_DMA_MAP, dip, mp);
746 
747 	return ((mp->dmai_nwin == 1) ? DDI_DMA_MAPPED : DDI_DMA_PARTIAL_MAP);
748 freehandle:
749 	if (ret == DDI_DMA_NORESOURCES)
750 		px_dma_freemp(mp); /* don't run_callback() */
751 	else
752 		(void) px_dma_freehdl(dip, rdip, (ddi_dma_handle_t)mp);
753 	return (ret);
754 }
755 
756 
757 /*
758  * bus dma alloc handle entry point:
759  */
760 int
761 px_dma_allochdl(dev_info_t *dip, dev_info_t *rdip, ddi_dma_attr_t *attrp,
762 	int (*waitfp)(caddr_t), caddr_t arg, ddi_dma_handle_t *handlep)
763 {
764 	px_t *px_p = DIP_TO_STATE(dip);
765 	ddi_dma_impl_t *mp;
766 	int rval;
767 
768 	DBG(DBG_DMA_ALLOCH, dip, "rdip=%s%d\n",
769 		ddi_driver_name(rdip), ddi_get_instance(rdip));
770 
771 	if (attrp->dma_attr_version != DMA_ATTR_V0)
772 		return (DDI_DMA_BADATTR);
773 
774 	if (!(mp = px_dma_allocmp(dip, rdip, waitfp, arg)))
775 		return (DDI_DMA_NORESOURCES);
776 
777 	/*
778 	 * Save requestor's information
779 	 */
780 	mp->dmai_attr	= *attrp; /* whole object - augmented later  */
781 	*DEV_ATTR(mp)	= *attrp; /* whole object - device orig attr */
782 	DBG(DBG_DMA_ALLOCH, dip, "mp=%p\n", mp);
783 
784 	/* check and convert dma attributes to handle parameters */
785 	if (rval = px_dma_attr2hdl(px_p, mp)) {
786 		px_dma_freehdl(dip, rdip, (ddi_dma_handle_t)mp);
787 		*handlep = NULL;
788 		return (rval);
789 	}
790 	*handlep = (ddi_dma_handle_t)mp;
791 	return (DDI_SUCCESS);
792 }
793 
794 
795 /*
796  * bus dma free handle entry point:
797  */
798 /*ARGSUSED*/
799 int
800 px_dma_freehdl(dev_info_t *dip, dev_info_t *rdip, ddi_dma_handle_t handle)
801 {
802 	DBG(DBG_DMA_FREEH, dip, "rdip=%s%d mp=%p\n",
803 		ddi_driver_name(rdip), ddi_get_instance(rdip), handle);
804 	px_dma_freemp((ddi_dma_impl_t *)handle);
805 
806 	if (px_kmem_clid) {
807 		DBG(DBG_DMA_FREEH, dip, "run handle callback\n");
808 		ddi_run_callback(&px_kmem_clid);
809 	}
810 	return (DDI_SUCCESS);
811 }
812 
813 
814 /*
815  * bus dma bind handle entry point:
816  */
817 int
818 px_dma_bindhdl(dev_info_t *dip, dev_info_t *rdip,
819 	ddi_dma_handle_t handle, ddi_dma_req_t *dmareq,
820 	ddi_dma_cookie_t *cookiep, uint_t *ccountp)
821 {
822 	px_t *px_p = DIP_TO_STATE(dip);
823 	px_mmu_t *mmu_p = px_p->px_mmu_p;
824 	ddi_dma_impl_t *mp = (ddi_dma_impl_t *)handle;
825 	int ret;
826 
827 	DBG(DBG_DMA_BINDH, dip, "rdip=%s%d mp=%p dmareq=%p\n",
828 		ddi_driver_name(rdip), ddi_get_instance(rdip), mp, dmareq);
829 
830 	if (mp->dmai_flags & DMAI_FLAGS_INUSE)
831 		return (DDI_DMA_INUSE);
832 
833 	ASSERT((mp->dmai_flags & ~DMAI_FLAGS_PRESERVE) == 0);
834 	mp->dmai_flags |= DMAI_FLAGS_INUSE;
835 
836 	if (ret = px_dma_type(px_p, dmareq, mp))
837 		goto err;
838 	if (ret = px_dma_pfn(px_p, dmareq, mp))
839 		goto err;
840 
841 	switch (PX_DMA_TYPE(mp)) {
842 	case DMAI_FLAGS_DVMA:
843 		if (ret = px_dvma_win(px_p, dmareq, mp))
844 			goto map_err;
845 		if (!PX_DMA_CANCACHE(mp)) {	/* try fast track */
846 			if (PX_DMA_CANFAST(mp)) {
847 				if (!px_dvma_map_fast(mmu_p, mp))
848 					goto mapped; /*LINTED E_NOP_ELSE_STMT*/
849 			} else {
850 				PX_DVMA_FASTTRAK_PROF(mp);
851 			}
852 		}
853 		if (ret = px_dvma_map(mp, dmareq, mmu_p))
854 			goto map_err;
855 mapped:
856 		*ccountp = 1;
857 		MAKE_DMA_COOKIE(cookiep, mp->dmai_mapping, mp->dmai_size);
858 		break;
859 	case DMAI_FLAGS_BYPASS:
860 	case DMAI_FLAGS_PTP:
861 		if (ret = px_dma_physwin(px_p, dmareq, mp))
862 			goto map_err;
863 		*ccountp = WINLST(mp)->win_ncookies;
864 		*cookiep = *(ddi_dma_cookie_t *)(WINLST(mp) + 1); /* wholeobj */
865 		break;
866 	default:
867 		cmn_err(CE_PANIC, "%s%d: px_dma_bindhdl(%p): bad dma type",
868 			ddi_driver_name(rdip), ddi_get_instance(rdip), mp);
869 		/*NOTREACHED*/
870 	}
871 	DBG(DBG_DMA_BINDH, dip, "cookie %llx+%x\n", cookiep->dmac_address,
872 		cookiep->dmac_size);
873 	px_dump_dma_handle(DBG_DMA_MAP, dip, mp);
874 
875 	/* insert dma handle into FMA cache */
876 	if (mp->dmai_attr.dma_attr_flags & DDI_DMA_FLAGERR)
877 		(void) ndi_fmc_insert(rdip, DMA_HANDLE, mp, NULL);
878 
879 	return (mp->dmai_nwin == 1 ? DDI_DMA_MAPPED : DDI_DMA_PARTIAL_MAP);
880 map_err:
881 	px_dma_freepfn(mp);
882 err:
883 	mp->dmai_flags &= DMAI_FLAGS_PRESERVE;
884 	return (ret);
885 }
886 
887 
888 /*
889  * bus dma unbind handle entry point:
890  */
891 /*ARGSUSED*/
892 int
893 px_dma_unbindhdl(dev_info_t *dip, dev_info_t *rdip, ddi_dma_handle_t handle)
894 {
895 	ddi_dma_impl_t *mp = (ddi_dma_impl_t *)handle;
896 	px_t *px_p = DIP_TO_STATE(dip);
897 	px_mmu_t *mmu_p = px_p->px_mmu_p;
898 
899 	DBG(DBG_DMA_UNBINDH, dip, "rdip=%s%d, mp=%p\n",
900 		ddi_driver_name(rdip), ddi_get_instance(rdip), handle);
901 	if ((mp->dmai_flags & DMAI_FLAGS_INUSE) == 0) {
902 		DBG(DBG_DMA_UNBINDH, dip, "handle not inuse\n");
903 		return (DDI_FAILURE);
904 	}
905 
906 	/* remove dma handle from FMA cache */
907 	if (mp->dmai_attr.dma_attr_flags & DDI_DMA_FLAGERR) {
908 		if (DEVI(rdip)->devi_fmhdl != NULL &&
909 		    DDI_FM_DMA_ERR_CAP(DEVI(rdip)->devi_fmhdl->fh_cap)) {
910 			(void) ndi_fmc_remove(rdip, DMA_HANDLE, mp);
911 		}
912 	}
913 
914 	/*
915 	 * Here if the handle is using the iommu.  Unload all the iommu
916 	 * translations.
917 	 */
918 	switch (PX_DMA_TYPE(mp)) {
919 	case DMAI_FLAGS_DVMA:
920 		px_mmu_unmap_window(mmu_p, mp);
921 		px_dvma_unmap(mmu_p, mp);
922 		px_dma_freepfn(mp);
923 		break;
924 	case DMAI_FLAGS_BYPASS:
925 	case DMAI_FLAGS_PTP:
926 		px_dma_freewin(mp);
927 		break;
928 	default:
929 		cmn_err(CE_PANIC, "%s%d: px_dma_unbindhdl:bad dma type %p",
930 			ddi_driver_name(rdip), ddi_get_instance(rdip), mp);
931 		/*NOTREACHED*/
932 	}
933 	if (mmu_p->mmu_dvma_clid != 0) {
934 		DBG(DBG_DMA_UNBINDH, dip, "run dvma callback\n");
935 		ddi_run_callback(&mmu_p->mmu_dvma_clid);
936 	}
937 	if (px_kmem_clid) {
938 		DBG(DBG_DMA_UNBINDH, dip, "run handle callback\n");
939 		ddi_run_callback(&px_kmem_clid);
940 	}
941 	mp->dmai_flags &= DMAI_FLAGS_PRESERVE;
942 
943 	return (DDI_SUCCESS);
944 }
945 
946 /*
947  * bus dma win entry point:
948  */
949 int
950 px_dma_win(dev_info_t *dip, dev_info_t *rdip,
951 	ddi_dma_handle_t handle, uint_t win, off_t *offp,
952 	size_t *lenp, ddi_dma_cookie_t *cookiep, uint_t *ccountp)
953 {
954 	ddi_dma_impl_t	*mp = (ddi_dma_impl_t *)handle;
955 	int		ret;
956 
957 	DBG(DBG_DMA_WIN, dip, "rdip=%s%d\n",
958 		ddi_driver_name(rdip), ddi_get_instance(rdip));
959 
960 	px_dump_dma_handle(DBG_DMA_WIN, dip, mp);
961 	if (win >= mp->dmai_nwin) {
962 		DBG(DBG_DMA_WIN, dip, "%x out of range\n", win);
963 		return (DDI_FAILURE);
964 	}
965 
966 	switch (PX_DMA_TYPE(mp)) {
967 	case DMAI_FLAGS_DVMA:
968 		if (win != PX_DMA_CURWIN(mp)) {
969 			px_t *px_p = DIP_TO_STATE(dip);
970 			px_mmu_t *mmu_p = px_p->px_mmu_p;
971 			px_mmu_unmap_window(mmu_p, mp);
972 
973 			/* map_window sets dmai_mapping/size/offset */
974 			px_mmu_map_window(mmu_p, mp, win);
975 			if ((ret = px_mmu_map_window(mmu_p,
976 			    mp, win)) != DDI_SUCCESS)
977 				return (ret);
978 		}
979 		if (cookiep)
980 			MAKE_DMA_COOKIE(cookiep, mp->dmai_mapping,
981 				mp->dmai_size);
982 		if (ccountp)
983 			*ccountp = 1;
984 		break;
985 	case DMAI_FLAGS_PTP:
986 	case DMAI_FLAGS_BYPASS: {
987 		int i;
988 		ddi_dma_cookie_t *ck_p;
989 		px_dma_win_t *win_p = mp->dmai_winlst;
990 
991 		for (i = 0; i < win; win_p = win_p->win_next, i++);
992 		ck_p = (ddi_dma_cookie_t *)(win_p + 1);
993 		*cookiep = *ck_p;
994 		mp->dmai_offset = win_p->win_offset;
995 		mp->dmai_size   = win_p->win_size;
996 		mp->dmai_mapping = ck_p->dmac_laddress;
997 		mp->dmai_cookie = ck_p + 1;
998 		win_p->win_curseg = 0;
999 		if (ccountp)
1000 			*ccountp = win_p->win_ncookies;
1001 		}
1002 		break;
1003 	default:
1004 		cmn_err(CE_WARN, "%s%d: px_dma_win:bad dma type 0x%x",
1005 			ddi_driver_name(rdip), ddi_get_instance(rdip),
1006 			PX_DMA_TYPE(mp));
1007 		return (DDI_FAILURE);
1008 	}
1009 	if (cookiep)
1010 		DBG(DBG_DMA_WIN, dip,
1011 			"cookie - dmac_address=%x dmac_size=%x\n",
1012 			cookiep->dmac_address, cookiep->dmac_size);
1013 	if (offp)
1014 		*offp = (off_t)mp->dmai_offset;
1015 	if (lenp)
1016 		*lenp = mp->dmai_size;
1017 	return (DDI_SUCCESS);
1018 }
1019 
1020 #ifdef	DEBUG
1021 static char *px_dmactl_str[] = {
1022 	"DDI_DMA_FREE",
1023 	"DDI_DMA_SYNC",
1024 	"DDI_DMA_HTOC",
1025 	"DDI_DMA_KVADDR",
1026 	"DDI_DMA_MOVWIN",
1027 	"DDI_DMA_REPWIN",
1028 	"DDI_DMA_GETERR",
1029 	"DDI_DMA_COFF",
1030 	"DDI_DMA_NEXTWIN",
1031 	"DDI_DMA_NEXTSEG",
1032 	"DDI_DMA_SEGTOC",
1033 	"DDI_DMA_RESERVE",
1034 	"DDI_DMA_RELEASE",
1035 	"DDI_DMA_RESETH",
1036 	"DDI_DMA_CKSYNC",
1037 	"DDI_DMA_IOPB_ALLOC",
1038 	"DDI_DMA_IOPB_FREE",
1039 	"DDI_DMA_SMEM_ALLOC",
1040 	"DDI_DMA_SMEM_FREE",
1041 	"DDI_DMA_SET_SBUS64"
1042 };
1043 #endif	/* DEBUG */
1044 
1045 /*
1046  * bus dma control entry point:
1047  */
1048 /*ARGSUSED*/
1049 int
1050 px_dma_ctlops(dev_info_t *dip, dev_info_t *rdip, ddi_dma_handle_t handle,
1051 	enum ddi_dma_ctlops cmd, off_t *offp, size_t *lenp, caddr_t *objp,
1052 	uint_t cache_flags)
1053 {
1054 	ddi_dma_impl_t *mp = (ddi_dma_impl_t *)handle;
1055 
1056 #ifdef	DEBUG
1057 	DBG(DBG_DMA_CTL, dip, "%s: rdip=%s%d\n", px_dmactl_str[cmd],
1058 		ddi_driver_name(rdip), ddi_get_instance(rdip));
1059 #endif	/* DEBUG */
1060 
1061 	switch (cmd) {
1062 	case DDI_DMA_FREE:
1063 		(void) px_dma_unbindhdl(dip, rdip, handle);
1064 		(void) px_dma_freehdl(dip, rdip, handle);
1065 		return (DDI_SUCCESS);
1066 	case DDI_DMA_RESERVE: {
1067 		px_t *px_p = DIP_TO_STATE(dip);
1068 		return (px_fdvma_reserve(dip, rdip, px_p,
1069 			(ddi_dma_req_t *)offp, (ddi_dma_handle_t *)objp));
1070 		}
1071 	case DDI_DMA_RELEASE: {
1072 		px_t *px_p = DIP_TO_STATE(dip);
1073 		return (px_fdvma_release(dip, px_p, mp));
1074 		}
1075 	default:
1076 		break;
1077 	}
1078 
1079 	switch (PX_DMA_TYPE(mp)) {
1080 	case DMAI_FLAGS_DVMA:
1081 		return (px_dvma_ctl(dip, rdip, mp, cmd, offp, lenp, objp,
1082 			cache_flags));
1083 	case DMAI_FLAGS_PTP:
1084 	case DMAI_FLAGS_BYPASS:
1085 		return (px_dma_ctl(dip, rdip, mp, cmd, offp, lenp, objp,
1086 			cache_flags));
1087 	default:
1088 		cmn_err(CE_PANIC, "%s%d: px_dma_ctlops(%x):bad dma type %x",
1089 			ddi_driver_name(rdip), ddi_get_instance(rdip), cmd,
1090 			mp->dmai_flags);
1091 		/*NOTREACHED*/
1092 	}
1093 }
1094 
1095 /*
1096  * control ops entry point:
1097  *
1098  * Requests handled completely:
1099  *	DDI_CTLOPS_INITCHILD	see init_child() for details
1100  *	DDI_CTLOPS_UNINITCHILD
1101  *	DDI_CTLOPS_REPORTDEV	see report_dev() for details
1102  *	DDI_CTLOPS_XLATE_INTRS	nothing to do
1103  *	DDI_CTLOPS_IOMIN	cache line size if streaming otherwise 1
1104  *	DDI_CTLOPS_REGSIZE
1105  *	DDI_CTLOPS_NREGS
1106  *	DDI_CTLOPS_NINTRS
1107  *	DDI_CTLOPS_DVMAPAGESIZE
1108  *	DDI_CTLOPS_POKE
1109  *	DDI_CTLOPS_PEEK
1110  *
1111  * All others passed to parent.
1112  */
1113 int
1114 px_ctlops(dev_info_t *dip, dev_info_t *rdip,
1115 	ddi_ctl_enum_t op, void *arg, void *result)
1116 {
1117 	px_t *px_p = DIP_TO_STATE(dip);
1118 	struct detachspec *ds;
1119 	struct attachspec *as;
1120 
1121 	switch (op) {
1122 	case DDI_CTLOPS_INITCHILD:
1123 		return (px_init_child(px_p, (dev_info_t *)arg));
1124 
1125 	case DDI_CTLOPS_UNINITCHILD:
1126 		return (px_uninit_child(px_p, (dev_info_t *)arg));
1127 
1128 	case DDI_CTLOPS_ATTACH:
1129 		as = (struct attachspec *)arg;
1130 		switch (as->when) {
1131 		case DDI_PRE:
1132 			if (as->cmd == DDI_ATTACH) {
1133 				DBG(DBG_PWR, dip, "PRE_ATTACH for %s@%d\n",
1134 				    ddi_driver_name(rdip),
1135 				    ddi_get_instance(rdip));
1136 				return (pcie_pm_hold(dip));
1137 			}
1138 			return (DDI_SUCCESS);
1139 
1140 		case DDI_POST:
1141 			DBG(DBG_PWR, dip, "POST_ATTACH for %s@%d\n",
1142 			    ddi_driver_name(rdip), ddi_get_instance(rdip));
1143 			if (as->cmd == DDI_ATTACH && as->result != DDI_SUCCESS)
1144 				pcie_pm_release(dip);
1145 			return (DDI_SUCCESS);
1146 		default:
1147 			break;
1148 		}
1149 		break;
1150 
1151 	case DDI_CTLOPS_DETACH:
1152 		ds = (struct detachspec *)arg;
1153 		switch (ds->when) {
1154 		case DDI_POST:
1155 			if (ds->cmd == DDI_DETACH &&
1156 			    ds->result == DDI_SUCCESS) {
1157 				DBG(DBG_PWR, dip, "POST_DETACH for %s@%d\n",
1158 				    ddi_driver_name(rdip),
1159 				    ddi_get_instance(rdip));
1160 				return (pcie_pm_remove_child(dip, rdip));
1161 			}
1162 			return (DDI_SUCCESS);
1163 		default:
1164 			break;
1165 		}
1166 		break;
1167 
1168 	case DDI_CTLOPS_REPORTDEV:
1169 		return (px_report_dev(rdip));
1170 
1171 	case DDI_CTLOPS_IOMIN:
1172 		return (DDI_SUCCESS);
1173 
1174 	case DDI_CTLOPS_REGSIZE:
1175 		*((off_t *)result) = px_get_reg_set_size(rdip, *((int *)arg));
1176 		return (*((off_t *)result) == 0 ? DDI_FAILURE : DDI_SUCCESS);
1177 
1178 	case DDI_CTLOPS_NREGS:
1179 		*((uint_t *)result) = px_get_nreg_set(rdip);
1180 		return (DDI_SUCCESS);
1181 
1182 	case DDI_CTLOPS_DVMAPAGESIZE:
1183 		*((ulong_t *)result) = MMU_PAGE_SIZE;
1184 		return (DDI_SUCCESS);
1185 
1186 	case DDI_CTLOPS_POKE:	/* platform dependent implementation. */
1187 		return (px_lib_ctlops_poke(dip, rdip,
1188 		    (peekpoke_ctlops_t *)arg));
1189 
1190 	case DDI_CTLOPS_PEEK:	/* platform dependent implementation. */
1191 		return (px_lib_ctlops_peek(dip, rdip,
1192 		    (peekpoke_ctlops_t *)arg, result));
1193 
1194 	case DDI_CTLOPS_POWER:
1195 	default:
1196 		break;
1197 	}
1198 
1199 	/*
1200 	 * Now pass the request up to our parent.
1201 	 */
1202 	DBG(DBG_CTLOPS, dip, "passing request to parent: rdip=%s%d\n",
1203 		ddi_driver_name(rdip), ddi_get_instance(rdip));
1204 	return (ddi_ctlops(dip, rdip, op, arg, result));
1205 }
1206 
1207 /* ARGSUSED */
1208 int
1209 px_intr_ops(dev_info_t *dip, dev_info_t *rdip, ddi_intr_op_t intr_op,
1210     ddi_intr_handle_impl_t *hdlp, void *result)
1211 {
1212 	int	intr_types, ret = DDI_SUCCESS;
1213 
1214 	DBG(DBG_INTROPS, dip, "px_intr_ops: rdip=%s%d\n",
1215 	    ddi_driver_name(rdip), ddi_get_instance(rdip));
1216 
1217 	/* Process DDI_INTROP_SUPPORTED_TYPES request here */
1218 	if (intr_op == DDI_INTROP_SUPPORTED_TYPES) {
1219 		px_t		*px_p = DIP_TO_STATE(dip);
1220 		px_msi_state_t	*msi_state_p = &px_p->px_ib_p->ib_msi_state;
1221 
1222 		*(int *)result = i_ddi_get_nintrs(rdip) ?
1223 		    DDI_INTR_TYPE_FIXED : 0;
1224 
1225 		if ((pci_msi_get_supported_type(rdip,
1226 		    &intr_types)) == DDI_SUCCESS) {
1227 			/*
1228 			 * Double check supported interrupt types vs.
1229 			 * what the host bridge supports.
1230 			 */
1231 			*(int *)result |= (intr_types & msi_state_p->msi_type);
1232 		}
1233 
1234 		return (ret);
1235 	}
1236 
1237 	/*
1238 	 * PCI-E nexus driver supports fixed, MSI and MSI-X interrupts.
1239 	 * Return failure if interrupt type is not supported.
1240 	 */
1241 	switch (hdlp->ih_type) {
1242 	case DDI_INTR_TYPE_FIXED:
1243 		ret = px_intx_ops(dip, rdip, intr_op, hdlp, result);
1244 		break;
1245 	case DDI_INTR_TYPE_MSI:
1246 	case DDI_INTR_TYPE_MSIX:
1247 		ret = px_msix_ops(dip, rdip, intr_op, hdlp, result);
1248 		break;
1249 	default:
1250 		ret = DDI_ENOTSUP;
1251 		break;
1252 	}
1253 
1254 	return (ret);
1255 }
1256