xref: /onnv-gate/usr/src/uts/common/xen/io/xpvd.c (revision 7632)
15084Sjohnlev /*
25084Sjohnlev  * CDDL HEADER START
35084Sjohnlev  *
45084Sjohnlev  * The contents of this file are subject to the terms of the
55084Sjohnlev  * Common Development and Distribution License (the "License").
65084Sjohnlev  * You may not use this file except in compliance with the License.
75084Sjohnlev  *
85084Sjohnlev  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
95084Sjohnlev  * or http://www.opensolaris.org/os/licensing.
105084Sjohnlev  * See the License for the specific language governing permissions
115084Sjohnlev  * and limitations under the License.
125084Sjohnlev  *
135084Sjohnlev  * When distributing Covered Code, include this CDDL HEADER in each
145084Sjohnlev  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
155084Sjohnlev  * If applicable, add the following below this CDDL HEADER, with the
165084Sjohnlev  * fields enclosed by brackets "[]" replaced with your own identifying
175084Sjohnlev  * information: Portions Copyright [yyyy] [name of copyright owner]
185084Sjohnlev  *
195084Sjohnlev  * CDDL HEADER END
205084Sjohnlev  */
215084Sjohnlev 
225084Sjohnlev /*
236318Sedp  * Copyright 2008 Sun Microsystems, Inc.  All rights reserved.
245084Sjohnlev  * Use is subject to license terms.
255084Sjohnlev  */
265084Sjohnlev 
275084Sjohnlev /*
285084Sjohnlev  *	Host to hypervisor virtual devices nexus driver
295084Sjohnlev  *
305084Sjohnlev  * TODO:
315084Sjohnlev  * - Add watchpoints on vbd/vif and enumerate/offline on watch callback
325084Sjohnlev  * - Add DR IOCTLs
335084Sjohnlev  * - Filter/restrict property lookups into xenstore
345084Sjohnlev  */
355084Sjohnlev 
365084Sjohnlev #include <sys/conf.h>
375084Sjohnlev #include <sys/kmem.h>
385084Sjohnlev #include <sys/debug.h>
395084Sjohnlev #include <sys/modctl.h>
405084Sjohnlev #include <sys/autoconf.h>
415084Sjohnlev #include <sys/ddi_impldefs.h>
425084Sjohnlev #include <sys/ddi_subrdefs.h>
435084Sjohnlev #include <sys/ddi.h>
445084Sjohnlev #include <sys/sunddi.h>
455084Sjohnlev #include <sys/sunndi.h>
465084Sjohnlev #include <sys/avintr.h>
475084Sjohnlev #include <sys/psm.h>
485084Sjohnlev #include <sys/spl.h>
495084Sjohnlev #include <sys/promif.h>
505084Sjohnlev #include <sys/list.h>
515084Sjohnlev #include <sys/bootconf.h>
525084Sjohnlev #include <sys/bootsvcs.h>
535741Smrj #include <util/sscanf.h>
545741Smrj #include <sys/mach_intr.h>
555084Sjohnlev #include <sys/bootinfo.h>
565741Smrj #ifdef XPV_HVM_DRIVER
575741Smrj #include <sys/xpv_support.h>
585741Smrj #include <sys/hypervisor.h>
595741Smrj #include <sys/archsystm.h>
605741Smrj #include <sys/cpu.h>
615741Smrj #include <public/xen.h>
625741Smrj #include <public/event_channel.h>
635741Smrj #include <public/io/xenbus.h>
645741Smrj #else
655741Smrj #include <sys/hypervisor.h>
665741Smrj #include <sys/evtchn_impl.h>
675741Smrj #include <sys/xen_mmu.h>
685741Smrj #endif
695084Sjohnlev #include <xen/sys/xenbus_impl.h>
705084Sjohnlev #include <xen/sys/xendev.h>
715084Sjohnlev 
725084Sjohnlev /*
735084Sjohnlev  * DDI dev_ops entrypoints
745084Sjohnlev  */
755084Sjohnlev static int xpvd_info(dev_info_t *, ddi_info_cmd_t, void *, void **);
765084Sjohnlev static int xpvd_attach(dev_info_t *devi, ddi_attach_cmd_t cmd);
775084Sjohnlev static int xpvd_detach(dev_info_t *devi, ddi_detach_cmd_t cmd);
785084Sjohnlev 
795084Sjohnlev 
805084Sjohnlev /*
815084Sjohnlev  * NDI bus_ops entrypoints
825084Sjohnlev  */
835084Sjohnlev static int xpvd_ctlops(dev_info_t *, dev_info_t *, ddi_ctl_enum_t, void *,
845084Sjohnlev 	void *);
855084Sjohnlev static int xpvd_intr_ops(dev_info_t *, dev_info_t *, ddi_intr_op_t,
865084Sjohnlev 	ddi_intr_handle_impl_t *, void *);
875084Sjohnlev static int xpvd_prop_op(dev_t, dev_info_t *, dev_info_t *, ddi_prop_op_t,
885084Sjohnlev 	int, char *, caddr_t, int *);
895084Sjohnlev static int xpvd_bus_config(dev_info_t *, uint_t, ddi_bus_config_op_t,
905084Sjohnlev 	void *, dev_info_t **);
915084Sjohnlev static int xpvd_bus_unconfig(dev_info_t *, uint_t, ddi_bus_config_op_t,
925084Sjohnlev     void *);
935084Sjohnlev static int xpvd_get_eventcookie(dev_info_t *, dev_info_t *,
945084Sjohnlev     char *, ddi_eventcookie_t *);
955084Sjohnlev static int xpvd_add_eventcall(dev_info_t *, dev_info_t *,
965084Sjohnlev     ddi_eventcookie_t, void (*)(dev_info_t *,
975084Sjohnlev     ddi_eventcookie_t, void *, void *),
985084Sjohnlev     void *, ddi_callback_id_t *);
995084Sjohnlev static int xpvd_remove_eventcall(dev_info_t *, ddi_callback_id_t);
1005084Sjohnlev static int xpvd_post_event(dev_info_t *, dev_info_t *,
1015084Sjohnlev     ddi_eventcookie_t, void *);
1025084Sjohnlev 
1035084Sjohnlev /*
1045084Sjohnlev  * misc functions
1055084Sjohnlev  */
1065084Sjohnlev static int xpvd_enable_intr(dev_info_t *, ddi_intr_handle_impl_t *, int);
1075084Sjohnlev static void xpvd_disable_intr(dev_info_t *, ddi_intr_handle_impl_t *, int);
1085084Sjohnlev static int xpvd_removechild(dev_info_t *);
1095084Sjohnlev static int xpvd_initchild(dev_info_t *);
1105084Sjohnlev static int xpvd_name_child(dev_info_t *, char *, int);
1115084Sjohnlev static boolean_t i_xpvd_parse_devname(char *, xendev_devclass_t *,
1125084Sjohnlev     domid_t *, int *);
1135084Sjohnlev 
1145084Sjohnlev 
1155084Sjohnlev /* Extern declarations */
1165084Sjohnlev extern int (*psm_intr_ops)(dev_info_t *, ddi_intr_handle_impl_t *,
1175084Sjohnlev     psm_intr_op_t, int *);
1185084Sjohnlev 
1195084Sjohnlev struct bus_ops xpvd_bus_ops = {
1205084Sjohnlev 	BUSO_REV,
1215084Sjohnlev 	i_ddi_bus_map,
1225084Sjohnlev 	NULL,
1235084Sjohnlev 	NULL,
1245084Sjohnlev 	NULL,
1255084Sjohnlev 	i_ddi_map_fault,
1265084Sjohnlev 	ddi_dma_map,
1275084Sjohnlev 	ddi_dma_allochdl,
1285084Sjohnlev 	ddi_dma_freehdl,
1295084Sjohnlev 	ddi_dma_bindhdl,
1305084Sjohnlev 	ddi_dma_unbindhdl,
1315084Sjohnlev 	ddi_dma_flush,
1325084Sjohnlev 	ddi_dma_win,
1335084Sjohnlev 	ddi_dma_mctl,
1345084Sjohnlev 	xpvd_ctlops,
1355084Sjohnlev 	xpvd_prop_op,
1365084Sjohnlev 	xpvd_get_eventcookie,
1375084Sjohnlev 	xpvd_add_eventcall,
1385084Sjohnlev 	xpvd_remove_eventcall,
1395084Sjohnlev 	xpvd_post_event,
1405084Sjohnlev 	0,		/* (*bus_intr_ctl)(); */
1415084Sjohnlev 	xpvd_bus_config,
1425084Sjohnlev 	xpvd_bus_unconfig,
1435084Sjohnlev 	NULL,		/* (*bus_fm_init)(); */
1445084Sjohnlev 	NULL,		/* (*bus_fm_fini)(); */
1455084Sjohnlev 	NULL,		/* (*bus_fm_access_enter)(); */
1465084Sjohnlev 	NULL,		/* (*bus_fm_access_exit)(); */
1475084Sjohnlev 	NULL,		/* (*bus_power)(); */
1485084Sjohnlev 	xpvd_intr_ops	/* (*bus_intr_op)(); */
1495084Sjohnlev };
1505084Sjohnlev 
1515084Sjohnlev struct dev_ops xpvd_ops = {
1525084Sjohnlev 	DEVO_REV,		/* devo_rev */
1535084Sjohnlev 	0,			/* refcnt  */
1545084Sjohnlev 	xpvd_info,		/* info */
1555084Sjohnlev 	nulldev,		/* identify */
1565084Sjohnlev 	nulldev,		/* probe */
1575084Sjohnlev 	xpvd_attach,		/* attach */
1585084Sjohnlev 	xpvd_detach,		/* detach */
1595084Sjohnlev 	nulldev,		/* reset */
1605084Sjohnlev 	(struct cb_ops *)0,	/* driver operations */
1615084Sjohnlev 	&xpvd_bus_ops		/* bus operations */
1625084Sjohnlev };
1635084Sjohnlev 
1645084Sjohnlev 
1655084Sjohnlev dev_info_t *xpvd_dip;
1665084Sjohnlev 
1675084Sjohnlev #define	CF_DBG		0x1
1685084Sjohnlev #define	ALL_DBG		0xff
1695084Sjohnlev 
1705084Sjohnlev static ndi_event_definition_t xpvd_ndi_event_defs[] = {
1715084Sjohnlev 	{ 0, XS_OE_STATE, EPL_KERNEL, NDI_EVENT_POST_TO_TGT },
1725084Sjohnlev 	{ 1, XS_HP_STATE, EPL_KERNEL, NDI_EVENT_POST_TO_TGT },
1735084Sjohnlev };
1745084Sjohnlev 
1755084Sjohnlev #define	XENDEV_N_NDI_EVENTS \
1765084Sjohnlev 	(sizeof (xpvd_ndi_event_defs) / sizeof (xpvd_ndi_event_defs[0]))
1775084Sjohnlev 
1785084Sjohnlev static ndi_event_set_t xpvd_ndi_events = {
1795084Sjohnlev 	NDI_EVENTS_REV1, XENDEV_N_NDI_EVENTS, xpvd_ndi_event_defs
1805084Sjohnlev };
1815084Sjohnlev 
1825084Sjohnlev static ndi_event_hdl_t xpvd_ndi_event_handle;
1835084Sjohnlev 
1845084Sjohnlev /*
1855084Sjohnlev  * Hypervisor interrupt capabilities
1865084Sjohnlev  */
1875084Sjohnlev #define	XENDEV_INTR_CAPABILITIES \
1885084Sjohnlev 	(DDI_INTR_FLAG_EDGE | DDI_INTR_FLAG_MASKABLE | DDI_INTR_FLAG_PENDING)
1895084Sjohnlev 
1905084Sjohnlev /*
1915084Sjohnlev  * Module linkage information for the kernel.
1925084Sjohnlev  */
1935084Sjohnlev 
1945084Sjohnlev static struct modldrv modldrv = {
1955084Sjohnlev 	&mod_driverops, /* Type of module */
196*7632SNick.Todd@Sun.COM 	"virtual device nexus driver",
1975084Sjohnlev 	&xpvd_ops,	/* driver ops */
1985084Sjohnlev };
1995084Sjohnlev 
2005084Sjohnlev static struct modlinkage modlinkage = {
2015084Sjohnlev 	MODREV_1,
2025084Sjohnlev 	(void *)&modldrv,
2035084Sjohnlev 	NULL
2045084Sjohnlev };
2055084Sjohnlev 
2065084Sjohnlev int
2075084Sjohnlev _init(void)
2085084Sjohnlev {
2095084Sjohnlev 	return (mod_install(&modlinkage));
2105084Sjohnlev }
2115084Sjohnlev 
2125084Sjohnlev int
2135084Sjohnlev _fini(void)
2145084Sjohnlev {
2155084Sjohnlev 	return (mod_remove(&modlinkage));
2165084Sjohnlev }
2175084Sjohnlev 
2185084Sjohnlev int
2195084Sjohnlev _info(struct modinfo *modinfop)
2205084Sjohnlev {
2215084Sjohnlev 	return (mod_info(&modlinkage, modinfop));
2225084Sjohnlev }
2235084Sjohnlev 
2245084Sjohnlev /* ARGSUSED */
2255084Sjohnlev static int
2265084Sjohnlev xpvd_info(dev_info_t *dip, ddi_info_cmd_t cmd, void *arg, void **result)
2275084Sjohnlev {
2285084Sjohnlev 	switch (cmd) {
2295084Sjohnlev 	default:
2305084Sjohnlev 		return (DDI_FAILURE);
2315084Sjohnlev 
2325084Sjohnlev 	case DDI_INFO_DEVT2INSTANCE:
2335084Sjohnlev 		*result = (void *)0;
2345084Sjohnlev 		return (DDI_SUCCESS);
2355084Sjohnlev 
2365084Sjohnlev 	case DDI_INFO_DEVT2DEVINFO:
2375084Sjohnlev 		*result = (void *)xpvd_dip;
2385084Sjohnlev 		return (DDI_SUCCESS);
2395084Sjohnlev 	}
2405084Sjohnlev }
2415084Sjohnlev 
2425084Sjohnlev /*ARGSUSED*/
2435084Sjohnlev static int
2445084Sjohnlev xpvd_attach(dev_info_t *devi, ddi_attach_cmd_t cmd)
2455084Sjohnlev {
2465084Sjohnlev 	extern void xvdi_watch_devices(int);
2475741Smrj 
2485741Smrj #ifdef XPV_HVM_DRIVER
2495741Smrj 	if (xen_info == NULL) {
2505741Smrj 		if (ddi_hold_installed_driver(ddi_name_to_major("xpv")) ==
2515741Smrj 		    NULL) {
2525741Smrj 			cmn_err(CE_WARN, "Couldn't initialize xpv framework");
2535741Smrj 			return (DDI_FAILURE);
2545741Smrj 		}
2555741Smrj 	}
2566318Sedp #endif /* XPV_HVM_DRIVER */
2575084Sjohnlev 
2585084Sjohnlev 	if (ndi_event_alloc_hdl(devi, 0, &xpvd_ndi_event_handle,
2595084Sjohnlev 	    NDI_SLEEP) != NDI_SUCCESS) {
2605084Sjohnlev 		xpvd_dip = NULL;
2615084Sjohnlev 		return (DDI_FAILURE);
2625084Sjohnlev 	}
2635084Sjohnlev 	if (ndi_event_bind_set(xpvd_ndi_event_handle, &xpvd_ndi_events,
2645084Sjohnlev 	    NDI_SLEEP) != NDI_SUCCESS) {
2655084Sjohnlev 		(void) ndi_event_free_hdl(xpvd_ndi_event_handle);
2665084Sjohnlev 		xpvd_dip = NULL;
2675084Sjohnlev 		return (DDI_FAILURE);
2685084Sjohnlev 	}
2695084Sjohnlev 
2706318Sedp #ifdef XPV_HVM_DRIVER
2716318Sedp 	(void) ddi_prop_update_int(DDI_DEV_T_NONE, devi, DDI_NO_AUTODETACH, 1);
2726450Srab 
2736450Srab 	/*
2746450Srab 	 * Report our version to dom0.
2756450Srab 	 */
2766450Srab 	if (xenbus_printf(XBT_NULL, "hvmpv/xpvd", "version", "%d",
2776450Srab 	    HVMPV_XPVD_VERS))
2786450Srab 		cmn_err(CE_WARN, "xpvd: couldn't write version\n");
2796318Sedp #endif /* XPV_HVM_DRIVER */
2806318Sedp 
2815084Sjohnlev 	/* watch both frontend and backend for new devices */
2825084Sjohnlev 	if (DOMAIN_IS_INITDOMAIN(xen_info))
2835084Sjohnlev 		(void) xs_register_xenbus_callback(xvdi_watch_devices);
2845084Sjohnlev 	else
2855084Sjohnlev 		xvdi_watch_devices(XENSTORE_UP);
2865084Sjohnlev 
2875741Smrj 	xpvd_dip = devi;
2885084Sjohnlev 	ddi_report_dev(devi);
2895084Sjohnlev 
2905084Sjohnlev 	return (DDI_SUCCESS);
2915084Sjohnlev }
2925084Sjohnlev 
2935084Sjohnlev /*ARGSUSED*/
2945084Sjohnlev static int
2955084Sjohnlev xpvd_detach(dev_info_t *devi, ddi_detach_cmd_t cmd)
2965084Sjohnlev {
2975084Sjohnlev 	return (DDI_FAILURE);
2985084Sjohnlev }
2995084Sjohnlev 
3005084Sjohnlev /*
3015084Sjohnlev  * xpvd_prop_op()
3025084Sjohnlev  *
3035084Sjohnlev  * Query xenstore for the value of properties if DDI_PROP_NOTPROM
3045084Sjohnlev  * is not set.  Xenstore property values are represented as ascii strings.
3055084Sjohnlev  */
3065084Sjohnlev static int
3075084Sjohnlev xpvd_prop_op(dev_t dev, dev_info_t *dip, dev_info_t *ch_dip,
3085084Sjohnlev     ddi_prop_op_t prop_op, int mod_flags, char *name, caddr_t valuep,
3095084Sjohnlev     int *lengthp)
3105084Sjohnlev {
3115084Sjohnlev 	caddr_t buff;
3125084Sjohnlev 	struct xendev_ppd *pdp;
3135084Sjohnlev 	void *prop_str;
3145084Sjohnlev 	size_t prop_len;
3155084Sjohnlev 	unsigned int len;
3165084Sjohnlev 	int rv;
3175084Sjohnlev 
3185084Sjohnlev 	pdp = (struct xendev_ppd *)ddi_get_parent_data(ch_dip);
3195084Sjohnlev 
3205084Sjohnlev 	if ((pdp == NULL) || !(mod_flags & (DDI_PROP_CANSLEEP)) ||
3215084Sjohnlev 	    (mod_flags & DDI_PROP_NOTPROM) || (pdp->xd_xsdev.nodename == NULL))
3225084Sjohnlev 		goto toss_off;
3235084Sjohnlev 	/*
3245084Sjohnlev 	 * First try reading the property off the the frontend. if that
3255084Sjohnlev 	 * fails, try and read it from the backend node.  If that
3265084Sjohnlev 	 * also fails, pass the request on the DDI framework
3275084Sjohnlev 	 */
3285084Sjohnlev 	prop_str = NULL;
3295084Sjohnlev 	if ((xenbus_read(XBT_NULL, pdp->xd_xsdev.nodename, name, &prop_str,
3305084Sjohnlev 	    &len) == 0) && (prop_str != NULL) && (strlen(prop_str) != 0))
3315084Sjohnlev 		goto got_xs_prop;
3325084Sjohnlev 
3335084Sjohnlev 	prop_str = NULL;
3345084Sjohnlev 	if ((pdp->xd_xsdev.otherend != NULL) &&
3355084Sjohnlev 	    (xenbus_read(XBT_NULL, pdp->xd_xsdev.otherend, name, &prop_str,
3365084Sjohnlev 	    &len) == 0) && (prop_str != NULL) && (strlen(prop_str) != 0))
3375084Sjohnlev 		goto got_xs_prop;
3385084Sjohnlev 
3395084Sjohnlev toss_off:
3405084Sjohnlev 	return (ddi_bus_prop_op(dev, dip, ch_dip, prop_op,
3415084Sjohnlev 	    mod_flags | DDI_PROP_NOTPROM, name, valuep, lengthp));
3425084Sjohnlev 
3435084Sjohnlev got_xs_prop:
3445084Sjohnlev 	prop_len = strlen(prop_str) + 1;
3455084Sjohnlev 	rv = DDI_PROP_SUCCESS;
3465084Sjohnlev 
3475084Sjohnlev 	switch (prop_op) {
3485084Sjohnlev 	case PROP_LEN:
3495084Sjohnlev 		*lengthp = prop_len;
3505084Sjohnlev 		break;
3515084Sjohnlev 
3525084Sjohnlev 	case PROP_LEN_AND_VAL_ALLOC:
3535084Sjohnlev 		buff = kmem_alloc((size_t)prop_len, KM_SLEEP);
3545084Sjohnlev 		*(caddr_t *)valuep = (caddr_t)buff;
3555084Sjohnlev 		break;
3565084Sjohnlev 	case PROP_LEN_AND_VAL_BUF:
3575084Sjohnlev 		buff = (caddr_t)valuep;
3585084Sjohnlev 		if (*lengthp < prop_len)
3595084Sjohnlev 			rv = DDI_PROP_BUF_TOO_SMALL;
3605084Sjohnlev 		break;
3615084Sjohnlev 	default:
3625084Sjohnlev 		rv = DDI_PROP_INVAL_ARG;
3635084Sjohnlev 		break;
3645084Sjohnlev 	}
3655084Sjohnlev 
3665084Sjohnlev 	if ((rv == DDI_PROP_SUCCESS) && (prop_len > 0)) {
3675084Sjohnlev 		bcopy(prop_str, buff, prop_len);
3685084Sjohnlev 		*lengthp = prop_len;
3695084Sjohnlev 	}
3705084Sjohnlev 	kmem_free(prop_str, len);
3715084Sjohnlev 	return (rv);
3725084Sjohnlev }
3735084Sjohnlev 
3745084Sjohnlev 
3755084Sjohnlev /*
3765084Sjohnlev  * return address of the device's interrupt spec structure.
3775084Sjohnlev  */
3785084Sjohnlev /*ARGSUSED*/
3795084Sjohnlev struct intrspec *
3805084Sjohnlev xpvd_get_ispec(dev_info_t *rdip, uint_t inumber)
3815084Sjohnlev {
3825084Sjohnlev 	struct xendev_ppd *pdp;
3835084Sjohnlev 
3845084Sjohnlev 	ASSERT(inumber == 0);
3855084Sjohnlev 
3865084Sjohnlev 	if ((pdp = ddi_get_parent_data(rdip)) == NULL)
3875084Sjohnlev 		return (NULL);
3885084Sjohnlev 
3895084Sjohnlev 	return (&pdp->xd_ispec);
3905084Sjohnlev }
3915084Sjohnlev 
3925084Sjohnlev /*
3935084Sjohnlev  * return (and determine) the interrupt priority of the device.
3945084Sjohnlev  */
3955084Sjohnlev /*ARGSUSED*/
3965084Sjohnlev static int
3975084Sjohnlev xpvd_get_priority(dev_info_t *dip, int inum, int *pri)
3985084Sjohnlev {
3995084Sjohnlev 	struct xendev_ppd *pdp;
4005084Sjohnlev 	struct intrspec *ispec;
4015084Sjohnlev 	int	*intpriorities;
4025084Sjohnlev 	uint_t	num_intpriorities;
4035084Sjohnlev 
4045084Sjohnlev 	DDI_INTR_NEXDBG((CE_CONT, "xpvd_get_priority: dip = 0x%p\n",
4055084Sjohnlev 	    (void *)dip));
4065084Sjohnlev 
4075084Sjohnlev 	ASSERT(inum == 0);
4085084Sjohnlev 
4095084Sjohnlev 	if ((pdp = ddi_get_parent_data(dip)) == NULL)
4105084Sjohnlev 		return (DDI_FAILURE);
4115084Sjohnlev 
4125084Sjohnlev 	ispec = &pdp->xd_ispec;
4135084Sjohnlev 
4145084Sjohnlev 	/*
4155084Sjohnlev 	 * Set the default priority based on the device class.  The
4165084Sjohnlev 	 * "interrupt-priorities" property can be used to override
4175084Sjohnlev 	 * the default.
4185084Sjohnlev 	 */
4195084Sjohnlev 	if (ispec->intrspec_pri == 0) {
4205084Sjohnlev 		ispec->intrspec_pri = xendev_devclass_ipl(pdp->xd_devclass);
4215084Sjohnlev 		if (ddi_prop_lookup_int_array(DDI_DEV_T_ANY, dip,
4225084Sjohnlev 		    DDI_PROP_NOTPROM | DDI_PROP_DONTPASS,
4235084Sjohnlev 		    "interrupt-priorities", &intpriorities,
4245084Sjohnlev 		    &num_intpriorities) == DDI_PROP_SUCCESS) {
4255084Sjohnlev 			ispec->intrspec_pri = intpriorities[0];
4265084Sjohnlev 			ddi_prop_free(intpriorities);
4275084Sjohnlev 		}
4285084Sjohnlev 	}
4295084Sjohnlev 	*pri = ispec->intrspec_pri;
4305084Sjohnlev 	return (DDI_SUCCESS);
4315084Sjohnlev }
4325084Sjohnlev 
4335084Sjohnlev 
4345084Sjohnlev /*
4355084Sjohnlev  * xpvd_intr_ops: bus_intr_op() function for interrupt support
4365084Sjohnlev  */
4375084Sjohnlev /* ARGSUSED */
4385084Sjohnlev static int
4395084Sjohnlev xpvd_intr_ops(dev_info_t *pdip, dev_info_t *rdip, ddi_intr_op_t intr_op,
4405084Sjohnlev     ddi_intr_handle_impl_t *hdlp, void *result)
4415084Sjohnlev {
4425084Sjohnlev 	int priority = 0;
4435084Sjohnlev 	struct intrspec *ispec;
4445084Sjohnlev 	struct xendev_ppd *pdp;
4455084Sjohnlev 
4465084Sjohnlev 	DDI_INTR_NEXDBG((CE_CONT,
4475084Sjohnlev 	    "xpvd_intr_ops: pdip 0x%p, rdip 0x%p, op %x handle 0x%p\n",
4485084Sjohnlev 	    (void *)pdip, (void *)rdip, intr_op, (void *)hdlp));
4495084Sjohnlev 
4505084Sjohnlev 	/* Process the request */
4515084Sjohnlev 	switch (intr_op) {
4525084Sjohnlev 	case DDI_INTROP_SUPPORTED_TYPES:
4535084Sjohnlev 		/* Fixed supported by default */
4545084Sjohnlev 		*(int *)result = DDI_INTR_TYPE_FIXED;
4555084Sjohnlev 		break;
4565084Sjohnlev 
4575084Sjohnlev 	case DDI_INTROP_NINTRS:
4585084Sjohnlev 		*(int *)result = 1;
4595084Sjohnlev 		break;
4605084Sjohnlev 
4615084Sjohnlev 	case DDI_INTROP_ALLOC:
4625084Sjohnlev 		/*
4635084Sjohnlev 		 * FIXED interrupts: just return available interrupts
4645084Sjohnlev 		 */
4655084Sjohnlev 		if (hdlp->ih_type == DDI_INTR_TYPE_FIXED) {
4665084Sjohnlev 			/*
4675084Sjohnlev 			 * event channels are edge-triggered, maskable,
4685084Sjohnlev 			 * and support int pending.
4695084Sjohnlev 			 */
4705084Sjohnlev 			hdlp->ih_cap |= XENDEV_INTR_CAPABILITIES;
4715084Sjohnlev 			*(int *)result = 1;	/* DDI_INTR_TYPE_FIXED */
4725084Sjohnlev 		} else {
4735084Sjohnlev 			return (DDI_FAILURE);
4745084Sjohnlev 		}
4755084Sjohnlev 		break;
4765084Sjohnlev 
4775084Sjohnlev 	case DDI_INTROP_FREE:
4785084Sjohnlev 		ispec = xpvd_get_ispec(rdip, (int)hdlp->ih_inum);
4795084Sjohnlev 		if (ispec == NULL)
4805084Sjohnlev 			return (DDI_FAILURE);
4815084Sjohnlev 		ispec->intrspec_pri = 0; /* mark as un-initialized */
4825084Sjohnlev 		break;
4835084Sjohnlev 
4845084Sjohnlev 	case DDI_INTROP_GETPRI:
4855084Sjohnlev 		if (xpvd_get_priority(rdip, hdlp->ih_inum, &priority) !=
4865084Sjohnlev 		    DDI_SUCCESS)
4875084Sjohnlev 			return (DDI_FAILURE);
4885084Sjohnlev 		DDI_INTR_NEXDBG((CE_CONT, "xpvd_intr_ops: priority = 0x%x\n",
4895084Sjohnlev 		    priority));
4905084Sjohnlev 		*(int *)result = priority;
4915084Sjohnlev 		break;
4925084Sjohnlev 
4935084Sjohnlev 	case DDI_INTROP_SETPRI:
4945084Sjohnlev 		/* Validate the interrupt priority passed */
4955084Sjohnlev 		if (*(int *)result > LOCK_LEVEL)
4965084Sjohnlev 			return (DDI_FAILURE);
4975084Sjohnlev 
4985084Sjohnlev 		/* Ensure that PSM is all initialized */
4995084Sjohnlev 		if (psm_intr_ops == NULL)
5005084Sjohnlev 			return (DDI_FAILURE);
5015084Sjohnlev 
5025084Sjohnlev 		/* Change the priority */
5035084Sjohnlev 		if ((*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_SET_PRI, result) ==
5045084Sjohnlev 		    PSM_FAILURE)
5055084Sjohnlev 			return (DDI_FAILURE);
5065084Sjohnlev 
5075084Sjohnlev 		ispec = xpvd_get_ispec(rdip, (int)hdlp->ih_inum);
5085084Sjohnlev 		if (ispec == NULL)
5095084Sjohnlev 			return (DDI_FAILURE);
5105084Sjohnlev 		ispec->intrspec_pri = *(int *)result;
5115084Sjohnlev 		break;
5125084Sjohnlev 
5135084Sjohnlev 	case DDI_INTROP_ADDISR:
5145084Sjohnlev 		/* update ispec */
5155084Sjohnlev 		ispec = xpvd_get_ispec(rdip, (int)hdlp->ih_inum);
5165084Sjohnlev 		if (ispec == NULL)
5175084Sjohnlev 			return (DDI_FAILURE);
5185084Sjohnlev 		ispec->intrspec_func = hdlp->ih_cb_func;
5195084Sjohnlev 
5205084Sjohnlev 		break;
5215084Sjohnlev 
5225084Sjohnlev 	case DDI_INTROP_REMISR:
5235084Sjohnlev 		ispec = xpvd_get_ispec(rdip, (int)hdlp->ih_inum);
5245084Sjohnlev 		pdp = (struct xendev_ppd *)ddi_get_parent_data(rdip);
5255084Sjohnlev 
5265084Sjohnlev 		ASSERT(pdp != NULL);
5275084Sjohnlev 		ASSERT(pdp->xd_evtchn != INVALID_EVTCHN);
5285084Sjohnlev 
5295084Sjohnlev 		if (ispec) {
5305084Sjohnlev 			ispec->intrspec_vec = 0;
5315084Sjohnlev 			ispec->intrspec_func = (uint_t (*)()) 0;
5325084Sjohnlev 		}
5335084Sjohnlev 		pdp->xd_evtchn = INVALID_EVTCHN;
5345084Sjohnlev 		break;
5355084Sjohnlev 
5365084Sjohnlev 	case DDI_INTROP_GETCAP:
5375084Sjohnlev 		if (hdlp->ih_type ==  DDI_INTR_TYPE_FIXED) {
5385084Sjohnlev 			/*
5395084Sjohnlev 			 * event channels are edge-triggered, maskable,
5405084Sjohnlev 			 * and support int pending.
5415084Sjohnlev 			 */
5425084Sjohnlev 			*(int *)result = XENDEV_INTR_CAPABILITIES;
5435084Sjohnlev 		} else {
5445084Sjohnlev 			*(int *)result = 0;
5455084Sjohnlev 			return (DDI_FAILURE);
5465084Sjohnlev 		}
5475084Sjohnlev 		DDI_INTR_NEXDBG((CE_CONT, "xpvd: GETCAP returned = %x\n",
5485084Sjohnlev 		    *(int *)result));
5495084Sjohnlev 		break;
5505084Sjohnlev 	case DDI_INTROP_SETCAP:
5515084Sjohnlev 		DDI_INTR_NEXDBG((CE_CONT, "xpvd_intr_ops: SETCAP cap=0x%x\n",
5525084Sjohnlev 		    *(int *)result));
5535084Sjohnlev 		if (psm_intr_ops == NULL)
5545084Sjohnlev 			return (DDI_FAILURE);
5555084Sjohnlev 
5565084Sjohnlev 		if ((*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_SET_CAP, result)) {
5575084Sjohnlev 			DDI_INTR_NEXDBG((CE_CONT, "GETCAP: psm_intr_ops"
5585084Sjohnlev 			    " returned failure\n"));
5595084Sjohnlev 			return (DDI_FAILURE);
5605084Sjohnlev 		}
5615084Sjohnlev 		break;
5625084Sjohnlev 
5635084Sjohnlev 	case DDI_INTROP_ENABLE:
5645084Sjohnlev 		if (psm_intr_ops == NULL)
5655084Sjohnlev 			return (DDI_FAILURE);
5665084Sjohnlev 
5675084Sjohnlev 		if (xpvd_enable_intr(rdip, hdlp, (int)hdlp->ih_inum) !=
5685084Sjohnlev 		    DDI_SUCCESS)
5695084Sjohnlev 			return (DDI_FAILURE);
5705084Sjohnlev 
5715084Sjohnlev 		DDI_INTR_NEXDBG((CE_CONT, "xpvd_intr_ops: ENABLE vec=0x%x\n",
5725084Sjohnlev 		    hdlp->ih_vector));
5735084Sjohnlev 		break;
5745084Sjohnlev 
5755084Sjohnlev 	case DDI_INTROP_DISABLE:
5765084Sjohnlev 		if (psm_intr_ops == NULL)
5775084Sjohnlev 			return (DDI_FAILURE);
5785084Sjohnlev 		xpvd_disable_intr(rdip, hdlp, hdlp->ih_inum);
5795084Sjohnlev 		DDI_INTR_NEXDBG((CE_CONT, "xpvd_intr_ops: DISABLE vec = %x\n",
5805084Sjohnlev 		    hdlp->ih_vector));
5815084Sjohnlev 		break;
5825084Sjohnlev 
5835084Sjohnlev 	case DDI_INTROP_BLOCKENABLE:
5845084Sjohnlev 	case DDI_INTROP_BLOCKDISABLE:
5855084Sjohnlev 		return (DDI_FAILURE);
5865084Sjohnlev 
5875084Sjohnlev 	case DDI_INTROP_SETMASK:
5885084Sjohnlev 	case DDI_INTROP_CLRMASK:
5895741Smrj #ifdef XPV_HVM_DRIVER
5905741Smrj 		return (DDI_ENOTSUP);
5915741Smrj #else
5925084Sjohnlev 		/*
5935084Sjohnlev 		 * Handle this here
5945084Sjohnlev 		 */
5955084Sjohnlev 		if (hdlp->ih_type != DDI_INTR_TYPE_FIXED)
5965084Sjohnlev 			return (DDI_FAILURE);
5975084Sjohnlev 		if (intr_op == DDI_INTROP_SETMASK) {
5985084Sjohnlev 			ec_disable_irq(hdlp->ih_vector);
5995084Sjohnlev 		} else {
6005084Sjohnlev 			ec_enable_irq(hdlp->ih_vector);
6015084Sjohnlev 		}
6025084Sjohnlev 		break;
6035741Smrj #endif
6045084Sjohnlev 	case DDI_INTROP_GETPENDING:
6055741Smrj #ifdef XPV_HVM_DRIVER
6065741Smrj 		return (DDI_ENOTSUP);
6075741Smrj #else
6085084Sjohnlev 		if (hdlp->ih_type != DDI_INTR_TYPE_FIXED)
6095084Sjohnlev 			return (DDI_FAILURE);
6105084Sjohnlev 		*(int *)result = ec_pending_irq(hdlp->ih_vector);
6115084Sjohnlev 		DDI_INTR_NEXDBG((CE_CONT, "xpvd: GETPENDING returned = %x\n",
6125084Sjohnlev 		    *(int *)result));
6135084Sjohnlev 		break;
6145741Smrj #endif
6155084Sjohnlev 
6165084Sjohnlev 	case DDI_INTROP_NAVAIL:
6175084Sjohnlev 		*(int *)result = 1;
6185084Sjohnlev 		DDI_INTR_NEXDBG((CE_CONT, "xpvd: NAVAIL returned = %x\n",
6195084Sjohnlev 		    *(int *)result));
6205084Sjohnlev 		break;
6215084Sjohnlev 
6225084Sjohnlev 	default:
6235084Sjohnlev 		return (i_ddi_intr_ops(pdip, rdip, intr_op, hdlp, result));
6245084Sjohnlev 	}
6255084Sjohnlev 
6265084Sjohnlev 	return (DDI_SUCCESS);
6275084Sjohnlev }
6285084Sjohnlev 
6295084Sjohnlev 
6305084Sjohnlev static int
6315084Sjohnlev xpvd_enable_intr(dev_info_t *rdip, ddi_intr_handle_impl_t *hdlp, int inum)
6325084Sjohnlev {
6335084Sjohnlev 	int		vector;
6345084Sjohnlev 	ihdl_plat_t	*ihdl_plat_datap = (ihdl_plat_t *)hdlp->ih_private;
6355084Sjohnlev 
6365084Sjohnlev 	DDI_INTR_NEXDBG((CE_CONT, "xpvd_enable_intr: hdlp %p inum %x\n",
6375084Sjohnlev 	    (void *)hdlp, inum));
6385084Sjohnlev 
6395084Sjohnlev 	ihdl_plat_datap->ip_ispecp = xpvd_get_ispec(rdip, inum);
6405084Sjohnlev 	if (ihdl_plat_datap->ip_ispecp == NULL)
6415084Sjohnlev 		return (DDI_FAILURE);
6425084Sjohnlev 
6435084Sjohnlev 	/* translate the interrupt if needed */
6445084Sjohnlev 	(void) (*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_XLATE_VECTOR, &vector);
6455084Sjohnlev 	DDI_INTR_NEXDBG((CE_CONT, "xpvd_enable_intr: priority=%x vector=%x\n",
6465084Sjohnlev 	    hdlp->ih_pri, vector));
6475084Sjohnlev 
6485084Sjohnlev 	/* Add the interrupt handler */
6495084Sjohnlev 	if (!add_avintr((void *)hdlp, hdlp->ih_pri, hdlp->ih_cb_func,
6505084Sjohnlev 	    DEVI(rdip)->devi_name, vector, hdlp->ih_cb_arg1,
6515084Sjohnlev 	    hdlp->ih_cb_arg2, NULL, rdip))
6525084Sjohnlev 		return (DDI_FAILURE);
6535084Sjohnlev 
6545084Sjohnlev 	/* Note this really is an irq. */
6555084Sjohnlev 	hdlp->ih_vector = (ushort_t)vector;
6565084Sjohnlev 
6575084Sjohnlev 	return (DDI_SUCCESS);
6585084Sjohnlev }
6595084Sjohnlev 
6605084Sjohnlev 
6615084Sjohnlev static void
6625084Sjohnlev xpvd_disable_intr(dev_info_t *rdip, ddi_intr_handle_impl_t *hdlp, int inum)
6635084Sjohnlev {
6645084Sjohnlev 	int		vector;
6655084Sjohnlev 	ihdl_plat_t	*ihdl_plat_datap = (ihdl_plat_t *)hdlp->ih_private;
6665084Sjohnlev 
6675084Sjohnlev 	DDI_INTR_NEXDBG((CE_CONT, "xpvd_disable_intr: \n"));
6685084Sjohnlev 	ihdl_plat_datap->ip_ispecp = xpvd_get_ispec(rdip, inum);
6695084Sjohnlev 	if (ihdl_plat_datap->ip_ispecp == NULL)
6705084Sjohnlev 		return;
6715084Sjohnlev 
6725084Sjohnlev 	/* translate the interrupt if needed */
6735084Sjohnlev 	(void) (*psm_intr_ops)(rdip, hdlp, PSM_INTR_OP_XLATE_VECTOR, &vector);
6745084Sjohnlev 
6755084Sjohnlev 	/* Disable the interrupt handler */
6765084Sjohnlev 	rem_avintr((void *)hdlp, hdlp->ih_pri, hdlp->ih_cb_func, vector);
6775084Sjohnlev 	ihdl_plat_datap->ip_ispecp = NULL;
6785084Sjohnlev }
6795084Sjohnlev 
6805084Sjohnlev /*ARGSUSED*/
6815084Sjohnlev static int
6825084Sjohnlev xpvd_ctlops(dev_info_t *dip, dev_info_t *rdip,
6835084Sjohnlev 	ddi_ctl_enum_t ctlop, void *arg, void *result)
6845084Sjohnlev {
6855084Sjohnlev 	switch (ctlop) {
6865084Sjohnlev 	case DDI_CTLOPS_REPORTDEV:
6875084Sjohnlev 		if (rdip == (dev_info_t *)0)
6885084Sjohnlev 			return (DDI_FAILURE);
6895084Sjohnlev 		cmn_err(CE_CONT, "?%s@%s, %s%d\n", ddi_node_name(rdip),
6905084Sjohnlev 		    ddi_get_name_addr(rdip), ddi_driver_name(rdip),
6915084Sjohnlev 		    ddi_get_instance(rdip));
6925084Sjohnlev 		return (DDI_SUCCESS);
6935084Sjohnlev 
6945084Sjohnlev 	case DDI_CTLOPS_INITCHILD:
6955084Sjohnlev 		return (xpvd_initchild((dev_info_t *)arg));
6965084Sjohnlev 
6975084Sjohnlev 	case DDI_CTLOPS_UNINITCHILD:
6985084Sjohnlev 		return (xpvd_removechild((dev_info_t *)arg));
6995084Sjohnlev 
7005084Sjohnlev 	case DDI_CTLOPS_SIDDEV:
7015084Sjohnlev 		return (DDI_SUCCESS);
7025084Sjohnlev 
7035084Sjohnlev 	case DDI_CTLOPS_REGSIZE:
7045084Sjohnlev 	case DDI_CTLOPS_NREGS:
7055084Sjohnlev 		return (DDI_FAILURE);
7065084Sjohnlev 
7075084Sjohnlev 	case DDI_CTLOPS_POWER: {
7085084Sjohnlev 		return (ddi_ctlops(dip, rdip, ctlop, arg, result));
7095084Sjohnlev 	}
7105084Sjohnlev 
7115084Sjohnlev 	default:
7125084Sjohnlev 		return (ddi_ctlops(dip, rdip, ctlop, arg, result));
7135084Sjohnlev 	}
7145084Sjohnlev 
7155084Sjohnlev 	/* NOTREACHED */
7165084Sjohnlev 
7175084Sjohnlev }
7185084Sjohnlev 
7195084Sjohnlev /*
7205084Sjohnlev  * Assign the address portion of the node name
7215084Sjohnlev  */
7225084Sjohnlev static int
7236318Sedp xpvd_name_child(dev_info_t *child, char *addr, int addrlen)
7245084Sjohnlev {
7255084Sjohnlev 	int *domain, *vdev;
7265084Sjohnlev 	uint_t ndomain, nvdev;
7276318Sedp 	char *prop_str;
7285084Sjohnlev 
7295084Sjohnlev 	/*
7305084Sjohnlev 	 * i_xpvd_parse_devname() knows the formats used by this
7315084Sjohnlev 	 * routine.  If this code changes, so must that.
7325084Sjohnlev 	 */
7335084Sjohnlev 
7345084Sjohnlev 	if (ddi_prop_lookup_int_array(DDI_DEV_T_ANY, child, DDI_PROP_DONTPASS,
7355084Sjohnlev 	    "domain", &domain, &ndomain) != DDI_PROP_SUCCESS)
7365084Sjohnlev 		return (DDI_FAILURE);
7375084Sjohnlev 	ASSERT(ndomain == 1);
7385084Sjohnlev 
7395084Sjohnlev 	/*
7405084Sjohnlev 	 * Use "domain" and "vdev" properties (backend drivers).
7415084Sjohnlev 	 */
7425084Sjohnlev 	if (*domain != DOMID_SELF) {
7435084Sjohnlev 		if (ddi_prop_lookup_int_array(DDI_DEV_T_ANY, child,
7445084Sjohnlev 		    DDI_PROP_DONTPASS, "vdev", &vdev, &nvdev)
7455084Sjohnlev 		    != DDI_PROP_SUCCESS) {
7465084Sjohnlev 			ddi_prop_free(domain);
7475084Sjohnlev 			return (DDI_FAILURE);
7485084Sjohnlev 		}
7495084Sjohnlev 		ASSERT(nvdev == 1);
7505084Sjohnlev 
7516318Sedp 		(void) snprintf(addr, addrlen, "%d,%d", domain[0], vdev[0]);
7525084Sjohnlev 		ddi_prop_free(vdev);
7535084Sjohnlev 		ddi_prop_free(domain);
7545084Sjohnlev 		return (DDI_SUCCESS);
7555084Sjohnlev 	}
7565084Sjohnlev 	ddi_prop_free(domain);
7575084Sjohnlev 
7585084Sjohnlev 	/*
7595084Sjohnlev 	 * Use "unit-address" property (frontend/softdev drivers).
7605084Sjohnlev 	 */
7616318Sedp 	if (ddi_prop_lookup_string(DDI_DEV_T_ANY, child, DDI_PROP_DONTPASS,
7626318Sedp 	    "unit-address", &prop_str) != DDI_PROP_SUCCESS)
7636318Sedp 		return (DDI_FAILURE);
7646318Sedp 	(void) strlcpy(addr, prop_str, addrlen);
7656318Sedp 	ddi_prop_free(prop_str);
7666318Sedp 	return (DDI_SUCCESS);
7675084Sjohnlev }
7685084Sjohnlev 
7695084Sjohnlev static int
7705084Sjohnlev xpvd_initchild(dev_info_t *child)
7715084Sjohnlev {
7726318Sedp 	char addr[80];
7735084Sjohnlev 
7745084Sjohnlev 	/*
7755084Sjohnlev 	 * Pseudo nodes indicate a prototype node with per-instance
7765084Sjohnlev 	 * properties to be merged into the real h/w device node.
7775084Sjohnlev 	 */
7785084Sjohnlev 	if (ndi_dev_is_persistent_node(child) == 0) {
7795084Sjohnlev 		ddi_set_parent_data(child, NULL);
7805084Sjohnlev 
7815084Sjohnlev 		/*
7825084Sjohnlev 		 * Try to merge the properties from this prototype
7835084Sjohnlev 		 * node into real h/w nodes.
7845084Sjohnlev 		 */
7855084Sjohnlev 		if (ndi_merge_node(child, xpvd_name_child) == DDI_SUCCESS) {
7865084Sjohnlev 			/*
7875084Sjohnlev 			 * Merged ok - return failure to remove the node.
7885084Sjohnlev 			 */
7895084Sjohnlev 			ddi_set_name_addr(child, NULL);
7905084Sjohnlev 			return (DDI_FAILURE);
7915084Sjohnlev 		}
7925084Sjohnlev 
7935084Sjohnlev 		/*
7945084Sjohnlev 		 * The child was not merged into a h/w node,
7955084Sjohnlev 		 * but there's not much we can do with it other
7965084Sjohnlev 		 * than return failure to cause the node to be removed.
7975084Sjohnlev 		 */
7985084Sjohnlev 		cmn_err(CE_WARN, "!%s@%s: %s.conf properties not merged",
7995084Sjohnlev 		    ddi_get_name(child), ddi_get_name_addr(child),
8005084Sjohnlev 		    ddi_get_name(child));
8015084Sjohnlev 		ddi_set_name_addr(child, NULL);
8025084Sjohnlev 		return (DDI_NOT_WELL_FORMED);
8035084Sjohnlev 	}
8045084Sjohnlev 
8055084Sjohnlev 	if (xvdi_init_dev(child) != DDI_SUCCESS)
8065084Sjohnlev 		return (DDI_FAILURE);
8075084Sjohnlev 
8086318Sedp 	if (xpvd_name_child(child, addr, sizeof (addr)) != DDI_SUCCESS) {
8095084Sjohnlev 		xvdi_uninit_dev(child);
8105084Sjohnlev 		return (DDI_FAILURE);
8115084Sjohnlev 	}
8126318Sedp 	ddi_set_name_addr(child, addr);
8135084Sjohnlev 
8145084Sjohnlev 	return (DDI_SUCCESS);
8155084Sjohnlev }
8165084Sjohnlev 
8175084Sjohnlev static int
8185084Sjohnlev xpvd_removechild(dev_info_t *dip)
8195084Sjohnlev {
8205084Sjohnlev 	xvdi_uninit_dev(dip);
8215084Sjohnlev 
8225084Sjohnlev 	ddi_set_name_addr(dip, NULL);
8235084Sjohnlev 
8245084Sjohnlev 	/*
8255084Sjohnlev 	 * Strip the node to properly convert it back to prototype
8265084Sjohnlev 	 * form.
8275084Sjohnlev 	 */
8285084Sjohnlev 	ddi_remove_minor_node(dip, NULL);
8295084Sjohnlev 
8305084Sjohnlev 	return (DDI_SUCCESS);
8315084Sjohnlev }
8325084Sjohnlev 
8335084Sjohnlev static int
8345084Sjohnlev xpvd_bus_unconfig(dev_info_t *parent, uint_t flag, ddi_bus_config_op_t op,
8355084Sjohnlev     void *device_name)
8365084Sjohnlev {
8375084Sjohnlev 	return (ndi_busop_bus_unconfig(parent, flag, op, device_name));
8385084Sjohnlev }
8395084Sjohnlev 
8405084Sjohnlev /*
8415084Sjohnlev  * Given the name of a child of xpvd, determine the device class,
8425084Sjohnlev  * domain and vdevnum to which it refers.
8435084Sjohnlev  */
8445084Sjohnlev static boolean_t
8455084Sjohnlev i_xpvd_parse_devname(char *name, xendev_devclass_t *devclassp,
8465084Sjohnlev     domid_t *domp, int *vdevp)
8475084Sjohnlev {
8485084Sjohnlev 	int len = strlen(name) + 1;
8495084Sjohnlev 	char *device_name = i_ddi_strdup(name, KM_SLEEP);
8505084Sjohnlev 	char *cname = NULL, *caddr = NULL;
8515084Sjohnlev 	boolean_t ret;
8525084Sjohnlev 
8535084Sjohnlev 	i_ddi_parse_name(device_name, &cname, &caddr, NULL);
8545084Sjohnlev 
8555084Sjohnlev 	if ((cname == NULL) || (strlen(cname) == 0) ||
8565084Sjohnlev 	    (caddr == NULL) || (strlen(caddr) == 0)) {
8575084Sjohnlev 		ret = B_FALSE;
8585084Sjohnlev 		goto done;
8595084Sjohnlev 	}
8605084Sjohnlev 
8615084Sjohnlev 	*devclassp = xendev_nodename_to_devclass(cname);
8625084Sjohnlev 	if (*devclassp < 0) {
8635084Sjohnlev 		ret = B_FALSE;
8645084Sjohnlev 		goto done;
8655084Sjohnlev 	}
8665084Sjohnlev 
8675084Sjohnlev 	/*
8685084Sjohnlev 	 * Parsing the address component requires knowledge of how
8695084Sjohnlev 	 * xpvd_name_child() works.  If that code changes, so must
8705084Sjohnlev 	 * this.
8715084Sjohnlev 	 */
8725084Sjohnlev 
8735084Sjohnlev 	/* Backend format is "<domain>,<vdev>". */
874*7632SNick.Todd@Sun.COM 	if (sscanf(caddr, "%hu,%d", domp, vdevp) == 2) {
8755084Sjohnlev 		ret = B_TRUE;
8765084Sjohnlev 		goto done;
8775084Sjohnlev 	}
8785084Sjohnlev 
8795084Sjohnlev 	/* Frontend format is "<vdev>". */
8805084Sjohnlev 	*domp = DOMID_SELF;
8816500Sjhd 	if (sscanf(caddr, "%d", vdevp) == 1)
8825084Sjohnlev 		ret = B_TRUE;
8835084Sjohnlev done:
8845084Sjohnlev 	kmem_free(device_name, len);
8855084Sjohnlev 	return (ret);
8865084Sjohnlev }
8875084Sjohnlev 
8885084Sjohnlev /*
8895084Sjohnlev  * xpvd_bus_config()
8905084Sjohnlev  *
8915084Sjohnlev  * BUS_CONFIG_ONE:
8925084Sjohnlev  *	Enumerate the exact instance of a driver.
8935084Sjohnlev  *
8945084Sjohnlev  * BUS_CONFIG_ALL:
8955084Sjohnlev  *	Enumerate all the instances of all the possible children (seen before
8965084Sjohnlev  *	and never seen before).
8975084Sjohnlev  *
8985084Sjohnlev  * BUS_CONFIG_DRIVER:
8995084Sjohnlev  *	Enumerate all the instances of a particular driver.
9005084Sjohnlev  */
9015084Sjohnlev static int
9025084Sjohnlev xpvd_bus_config(dev_info_t *parent, uint_t flag, ddi_bus_config_op_t op,
9035084Sjohnlev 	void *arg, dev_info_t **childp)
9045084Sjohnlev {
9055084Sjohnlev 	int circ;
9065084Sjohnlev 	char *cname = NULL;
9075084Sjohnlev 
9085084Sjohnlev 	ndi_devi_enter(parent, &circ);
9095084Sjohnlev 
9105084Sjohnlev 	switch (op) {
9115084Sjohnlev 	case BUS_CONFIG_ONE: {
9125084Sjohnlev 		xendev_devclass_t devclass;
9135084Sjohnlev 		domid_t dom;
9145084Sjohnlev 		int vdev;
9155084Sjohnlev 
9165084Sjohnlev 		if (!i_xpvd_parse_devname(arg, &devclass, &dom, &vdev)) {
9175084Sjohnlev 			ndi_devi_exit(parent, circ);
9185084Sjohnlev 			return (NDI_FAILURE);
9195084Sjohnlev 		}
9205084Sjohnlev 
9215084Sjohnlev 		*childp = xvdi_find_dev(parent, devclass, dom, vdev);
9225084Sjohnlev 		if (*childp == NULL)
9235084Sjohnlev 			*childp = xvdi_create_dev(parent, devclass, dom, vdev);
9245084Sjohnlev 
9255084Sjohnlev 		ndi_devi_exit(parent, circ);
9265084Sjohnlev 
9275084Sjohnlev 		if (*childp == NULL)
9285084Sjohnlev 			return (NDI_FAILURE);
9295084Sjohnlev 		else
9305084Sjohnlev 			return (ndi_busop_bus_config(parent, flag,
9315084Sjohnlev 			    op, arg, childp, 0));
9325084Sjohnlev 	}
9335084Sjohnlev 
9345084Sjohnlev 	case BUS_CONFIG_DRIVER: {
9355084Sjohnlev 		xendev_devclass_t devclass = XEN_INVAL;
9365084Sjohnlev 
9375084Sjohnlev 		cname = ddi_major_to_name((major_t)(uintptr_t)arg);
9385084Sjohnlev 		if (cname != NULL)
9395084Sjohnlev 			devclass = xendev_nodename_to_devclass(cname);
9405084Sjohnlev 
9415084Sjohnlev 		if (devclass == XEN_INVAL) {
9425084Sjohnlev 			ndi_devi_exit(parent, circ);
9435084Sjohnlev 			return (NDI_FAILURE);
9445084Sjohnlev 		} else {
9455084Sjohnlev 			xendev_enum_class(parent, devclass);
9465084Sjohnlev 			ndi_devi_exit(parent, circ);
9475084Sjohnlev 			return (ndi_busop_bus_config(parent, flag, op,
9485084Sjohnlev 			    arg, childp, 0));
9495084Sjohnlev 		}
9505084Sjohnlev 		/* NOTREACHED */
9515084Sjohnlev 	}
9525084Sjohnlev 
9535084Sjohnlev 	case BUS_CONFIG_ALL:
9545084Sjohnlev 		xendev_enum_all(parent, B_FALSE);
9555084Sjohnlev 		ndi_devi_exit(parent, circ);
9565084Sjohnlev 
9575084Sjohnlev 		return (ndi_busop_bus_config(parent, flag, op,
9585084Sjohnlev 		    arg, childp, 0));
9595084Sjohnlev 
9605084Sjohnlev 	default:
9615084Sjohnlev 		ndi_devi_exit(parent, circ);
9625084Sjohnlev 		return (NDI_FAILURE);
9635084Sjohnlev 	}
9645084Sjohnlev }
9655084Sjohnlev 
9665084Sjohnlev /*ARGSUSED*/
9675084Sjohnlev static int
9685084Sjohnlev xpvd_get_eventcookie(dev_info_t *dip, dev_info_t *rdip,
9695084Sjohnlev     char *eventname, ddi_eventcookie_t *cookie)
9705084Sjohnlev {
9715084Sjohnlev 	return (ndi_event_retrieve_cookie(xpvd_ndi_event_handle,
9725084Sjohnlev 	    rdip, eventname, cookie, NDI_EVENT_NOPASS));
9735084Sjohnlev }
9745084Sjohnlev 
9755084Sjohnlev /*ARGSUSED*/
9765084Sjohnlev static int
9775084Sjohnlev xpvd_add_eventcall(dev_info_t *dip, dev_info_t *rdip,
9785084Sjohnlev     ddi_eventcookie_t cookie, void (*callback)(dev_info_t *dip,
9795084Sjohnlev     ddi_eventcookie_t cookie, void *arg, void *bus_impldata),
9805084Sjohnlev     void *arg, ddi_callback_id_t *cb_id)
9815084Sjohnlev {
9825084Sjohnlev 	return (ndi_event_add_callback(xpvd_ndi_event_handle,
9835084Sjohnlev 	    rdip, cookie, callback, arg, NDI_SLEEP, cb_id));
9845084Sjohnlev }
9855084Sjohnlev 
9865084Sjohnlev /*ARGSUSED*/
9875084Sjohnlev static int
9885084Sjohnlev xpvd_remove_eventcall(dev_info_t *dip, ddi_callback_id_t cb_id)
9895084Sjohnlev {
9905084Sjohnlev 	return (ndi_event_remove_callback(xpvd_ndi_event_handle,
9915084Sjohnlev 	    cb_id));
9925084Sjohnlev }
9935084Sjohnlev 
9945084Sjohnlev /*ARGSUSED*/
9955084Sjohnlev static int
9965084Sjohnlev xpvd_post_event(dev_info_t *dip, dev_info_t *rdip,
9975084Sjohnlev     ddi_eventcookie_t cookie, void *bus_impldata)
9985084Sjohnlev {
9995084Sjohnlev 	return (ndi_event_run_callbacks(xpvd_ndi_event_handle, rdip,
10005084Sjohnlev 	    cookie, bus_impldata));
10015084Sjohnlev }
1002