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subr_xcall.c revision 1.15.4.1
      1  1.15.4.1     rmind /*	$NetBSD: subr_xcall.c,v 1.15.4.1 2014/05/18 17:46:07 rmind Exp $	*/
      2       1.2        ad 
      3       1.2        ad /*-
      4      1.12     rmind  * Copyright (c) 2007-2010 The NetBSD Foundation, Inc.
      5       1.2        ad  * All rights reserved.
      6       1.2        ad  *
      7       1.2        ad  * This code is derived from software contributed to The NetBSD Foundation
      8      1.12     rmind  * by Andrew Doran and Mindaugas Rasiukevicius.
      9       1.2        ad  *
     10       1.2        ad  * Redistribution and use in source and binary forms, with or without
     11       1.2        ad  * modification, are permitted provided that the following conditions
     12       1.2        ad  * are met:
     13       1.2        ad  * 1. Redistributions of source code must retain the above copyright
     14       1.2        ad  *    notice, this list of conditions and the following disclaimer.
     15       1.2        ad  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.2        ad  *    notice, this list of conditions and the following disclaimer in the
     17       1.2        ad  *    documentation and/or other materials provided with the distribution.
     18       1.2        ad  *
     19       1.2        ad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.2        ad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.2        ad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.2        ad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.2        ad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.2        ad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.2        ad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.2        ad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.2        ad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.2        ad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.2        ad  * POSSIBILITY OF SUCH DAMAGE.
     30       1.2        ad  */
     31       1.2        ad 
     32       1.2        ad /*
     33       1.2        ad  * Cross call support
     34       1.2        ad  *
     35       1.2        ad  * Background
     36       1.2        ad  *
     37       1.2        ad  *	Sometimes it is necessary to modify hardware state that is tied
     38       1.2        ad  *	directly to individual CPUs (such as a CPU's local timer), and
     39       1.2        ad  *	these updates can not be done remotely by another CPU.  The LWP
     40       1.2        ad  *	requesting the update may be unable to guarantee that it will be
     41       1.2        ad  *	running on the CPU where the update must occur, when the update
     42       1.2        ad  *	occurs.
     43       1.2        ad  *
     44       1.2        ad  *	Additionally, it's sometimes necessary to modify per-CPU software
     45       1.2        ad  *	state from a remote CPU.  Where these update operations are so
     46       1.2        ad  *	rare or the access to the per-CPU data so frequent that the cost
     47       1.2        ad  *	of using locking or atomic operations to provide coherency is
     48       1.4        ad  *	prohibitive, another way must be found.
     49       1.2        ad  *
     50       1.2        ad  *	Cross calls help to solve these types of problem by allowing
     51       1.2        ad  *	any CPU in the system to request that an arbitrary function be
     52       1.2        ad  *	executed on any other CPU.
     53       1.2        ad  *
     54       1.2        ad  * Implementation
     55       1.2        ad  *
     56       1.2        ad  *	A slow mechanism for making 'low priority' cross calls is
     57       1.2        ad  *	provided.  The function to be executed runs on the remote CPU
     58       1.2        ad  *	within a bound kthread.  No queueing is provided, and the
     59       1.2        ad  *	implementation uses global state.  The function being called may
     60       1.2        ad  *	block briefly on locks, but in doing so must be careful to not
     61       1.2        ad  *	interfere with other cross calls in the system.  The function is
     62       1.2        ad  *	called with thread context and not from a soft interrupt, so it
     63       1.2        ad  *	can ensure that it is not interrupting other code running on the
     64       1.2        ad  *	CPU, and so has exclusive access to the CPU.  Since this facility
     65       1.2        ad  *	is heavyweight, it's expected that it will not be used often.
     66       1.2        ad  *
     67       1.4        ad  *	Cross calls must not allocate memory, as the pagedaemon uses
     68       1.4        ad  *	them (and memory allocation may need to wait on the pagedaemon).
     69       1.4        ad  *
     70      1.12     rmind  *	A low-overhead mechanism for high priority calls (XC_HIGHPRI) is
     71      1.12     rmind  *	also provided.  The function to be executed runs on a software
     72  1.15.4.1     rmind  *	interrupt context, at IPL_SOFTSERIAL level, and is expected to
     73  1.15.4.1     rmind  *	be very lightweight, e.g. avoid blocking.
     74       1.2        ad  */
     75  1.15.4.1     rmind 
     76       1.2        ad #include <sys/cdefs.h>
     77  1.15.4.1     rmind __KERNEL_RCSID(0, "$NetBSD: subr_xcall.c,v 1.15.4.1 2014/05/18 17:46:07 rmind Exp $");
     78       1.2        ad 
     79       1.2        ad #include <sys/types.h>
     80       1.2        ad #include <sys/param.h>
     81       1.2        ad #include <sys/xcall.h>
     82       1.2        ad #include <sys/mutex.h>
     83       1.2        ad #include <sys/condvar.h>
     84       1.2        ad #include <sys/evcnt.h>
     85       1.2        ad #include <sys/kthread.h>
     86       1.3        ad #include <sys/cpu.h>
     87       1.2        ad 
     88      1.14    martin #ifdef _RUMPKERNEL
     89      1.14    martin #include "rump_private.h"
     90      1.14    martin #endif
     91      1.14    martin 
     92      1.12     rmind /* Cross-call state box. */
     93      1.12     rmind typedef struct {
     94      1.12     rmind 	kmutex_t	xc_lock;
     95      1.12     rmind 	kcondvar_t	xc_busy;
     96      1.12     rmind 	xcfunc_t	xc_func;
     97      1.12     rmind 	void *		xc_arg1;
     98      1.12     rmind 	void *		xc_arg2;
     99      1.12     rmind 	uint64_t	xc_headp;
    100      1.12     rmind 	uint64_t	xc_donep;
    101      1.12     rmind } xc_state_t;
    102      1.12     rmind 
    103      1.12     rmind /* Bit indicating high (1) or low (0) priority. */
    104      1.12     rmind #define	XC_PRI_BIT	(1ULL << 63)
    105      1.12     rmind 
    106      1.12     rmind /* Low priority xcall structures. */
    107      1.13     rmind static xc_state_t	xc_low_pri	__cacheline_aligned;
    108      1.13     rmind static uint64_t		xc_tailp	__cacheline_aligned;
    109      1.12     rmind 
    110      1.12     rmind /* High priority xcall structures. */
    111      1.13     rmind static xc_state_t	xc_high_pri	__cacheline_aligned;
    112      1.13     rmind static void *		xc_sih		__cacheline_aligned;
    113       1.2        ad 
    114      1.12     rmind /* Event counters. */
    115      1.13     rmind static struct evcnt	xc_unicast_ev	__cacheline_aligned;
    116      1.13     rmind static struct evcnt	xc_broadcast_ev	__cacheline_aligned;
    117      1.12     rmind 
    118      1.12     rmind static void		xc_init(void);
    119      1.12     rmind static void		xc_thread(void *);
    120      1.12     rmind 
    121      1.12     rmind static inline uint64_t	xc_highpri(xcfunc_t, void *, void *, struct cpu_info *);
    122      1.12     rmind static inline uint64_t	xc_lowpri(xcfunc_t, void *, void *, struct cpu_info *);
    123      1.12     rmind 
    124      1.12     rmind /*
    125      1.12     rmind  * xc_init:
    126      1.12     rmind  *
    127      1.12     rmind  *	Initialize low and high priority cross-call structures.
    128      1.12     rmind  */
    129      1.12     rmind static void
    130      1.12     rmind xc_init(void)
    131      1.12     rmind {
    132      1.12     rmind 	xc_state_t *xclo = &xc_low_pri, *xchi = &xc_high_pri;
    133      1.12     rmind 
    134      1.12     rmind 	memset(xclo, 0, sizeof(xc_state_t));
    135      1.12     rmind 	mutex_init(&xclo->xc_lock, MUTEX_DEFAULT, IPL_NONE);
    136      1.12     rmind 	cv_init(&xclo->xc_busy, "xclocv");
    137      1.12     rmind 	xc_tailp = 0;
    138      1.12     rmind 
    139      1.12     rmind 	memset(xchi, 0, sizeof(xc_state_t));
    140  1.15.4.1     rmind 	mutex_init(&xchi->xc_lock, MUTEX_DEFAULT, IPL_SOFTSERIAL);
    141      1.12     rmind 	cv_init(&xchi->xc_busy, "xchicv");
    142  1.15.4.1     rmind 	xc_sih = softint_establish(SOFTINT_SERIAL | SOFTINT_MPSAFE,
    143      1.14    martin 	    xc__highpri_intr, NULL);
    144      1.12     rmind 	KASSERT(xc_sih != NULL);
    145      1.12     rmind 
    146      1.12     rmind 	evcnt_attach_dynamic(&xc_unicast_ev, EVCNT_TYPE_MISC, NULL,
    147      1.12     rmind 	   "crosscall", "unicast");
    148      1.12     rmind 	evcnt_attach_dynamic(&xc_broadcast_ev, EVCNT_TYPE_MISC, NULL,
    149      1.12     rmind 	   "crosscall", "broadcast");
    150      1.12     rmind }
    151       1.2        ad 
    152       1.2        ad /*
    153       1.2        ad  * xc_init_cpu:
    154       1.2        ad  *
    155       1.2        ad  *	Initialize the cross-call subsystem.  Called once for each CPU
    156       1.2        ad  *	in the system as they are attached.
    157       1.2        ad  */
    158       1.2        ad void
    159       1.2        ad xc_init_cpu(struct cpu_info *ci)
    160       1.2        ad {
    161      1.11     pooka 	static bool again = false;
    162  1.15.4.1     rmind 	int error __diagused;
    163       1.2        ad 
    164       1.2        ad 	if (!again) {
    165       1.2        ad 		/* Autoconfiguration will prevent re-entry. */
    166      1.12     rmind 		xc_init();
    167       1.2        ad 		again = true;
    168       1.2        ad 	}
    169       1.2        ad 	cv_init(&ci->ci_data.cpu_xcall, "xcall");
    170       1.2        ad 	error = kthread_create(PRI_XCALL, KTHREAD_MPSAFE, ci, xc_thread,
    171       1.6    martin 	    NULL, NULL, "xcall/%u", ci->ci_index);
    172      1.12     rmind 	KASSERT(error == 0);
    173       1.2        ad }
    174       1.2        ad 
    175       1.2        ad /*
    176       1.7        ad  * xc_broadcast:
    177       1.2        ad  *
    178       1.2        ad  *	Trigger a call on all CPUs in the system.
    179       1.2        ad  */
    180       1.2        ad uint64_t
    181       1.2        ad xc_broadcast(u_int flags, xcfunc_t func, void *arg1, void *arg2)
    182       1.2        ad {
    183       1.2        ad 
    184      1.12     rmind 	KASSERT(!cpu_intr_p() && !cpu_softintr_p());
    185      1.12     rmind 
    186       1.2        ad 	if ((flags & XC_HIGHPRI) != 0) {
    187      1.12     rmind 		return xc_highpri(func, arg1, arg2, NULL);
    188       1.2        ad 	} else {
    189      1.12     rmind 		return xc_lowpri(func, arg1, arg2, NULL);
    190       1.2        ad 	}
    191       1.2        ad }
    192       1.2        ad 
    193       1.2        ad /*
    194       1.2        ad  * xc_unicast:
    195       1.2        ad  *
    196       1.2        ad  *	Trigger a call on one CPU.
    197       1.2        ad  */
    198       1.2        ad uint64_t
    199       1.2        ad xc_unicast(u_int flags, xcfunc_t func, void *arg1, void *arg2,
    200       1.2        ad 	   struct cpu_info *ci)
    201       1.2        ad {
    202       1.2        ad 
    203      1.12     rmind 	KASSERT(ci != NULL);
    204      1.12     rmind 	KASSERT(!cpu_intr_p() && !cpu_softintr_p());
    205      1.12     rmind 
    206       1.2        ad 	if ((flags & XC_HIGHPRI) != 0) {
    207      1.12     rmind 		return xc_highpri(func, arg1, arg2, ci);
    208      1.12     rmind 	} else {
    209      1.12     rmind 		return xc_lowpri(func, arg1, arg2, ci);
    210      1.12     rmind 	}
    211      1.12     rmind }
    212      1.12     rmind 
    213      1.12     rmind /*
    214      1.12     rmind  * xc_wait:
    215      1.12     rmind  *
    216      1.12     rmind  *	Wait for a cross call to complete.
    217      1.12     rmind  */
    218      1.12     rmind void
    219      1.12     rmind xc_wait(uint64_t where)
    220      1.12     rmind {
    221      1.12     rmind 	xc_state_t *xc;
    222      1.12     rmind 
    223      1.12     rmind 	KASSERT(!cpu_intr_p() && !cpu_softintr_p());
    224      1.12     rmind 
    225      1.12     rmind 	/* Determine whether it is high or low priority cross-call. */
    226      1.12     rmind 	if ((where & XC_PRI_BIT) != 0) {
    227      1.12     rmind 		xc = &xc_high_pri;
    228      1.12     rmind 		where &= ~XC_PRI_BIT;
    229       1.2        ad 	} else {
    230      1.12     rmind 		xc = &xc_low_pri;
    231      1.12     rmind 	}
    232      1.12     rmind 
    233      1.12     rmind 	/* Fast path, if already done. */
    234      1.12     rmind 	if (xc->xc_donep >= where) {
    235      1.12     rmind 		return;
    236      1.12     rmind 	}
    237      1.12     rmind 
    238      1.12     rmind 	/* Slow path: block until awoken. */
    239      1.12     rmind 	mutex_enter(&xc->xc_lock);
    240      1.12     rmind 	while (xc->xc_donep < where) {
    241      1.12     rmind 		cv_wait(&xc->xc_busy, &xc->xc_lock);
    242       1.2        ad 	}
    243      1.12     rmind 	mutex_exit(&xc->xc_lock);
    244       1.2        ad }
    245       1.2        ad 
    246       1.2        ad /*
    247       1.2        ad  * xc_lowpri:
    248       1.2        ad  *
    249       1.2        ad  *	Trigger a low priority call on one or more CPUs.
    250       1.2        ad  */
    251      1.12     rmind static inline uint64_t
    252      1.12     rmind xc_lowpri(xcfunc_t func, void *arg1, void *arg2, struct cpu_info *ci)
    253       1.2        ad {
    254      1.12     rmind 	xc_state_t *xc = &xc_low_pri;
    255       1.2        ad 	CPU_INFO_ITERATOR cii;
    256      1.10  uebayasi 	uint64_t where;
    257       1.2        ad 
    258      1.12     rmind 	mutex_enter(&xc->xc_lock);
    259      1.12     rmind 	while (xc->xc_headp != xc_tailp) {
    260      1.12     rmind 		cv_wait(&xc->xc_busy, &xc->xc_lock);
    261      1.12     rmind 	}
    262      1.12     rmind 	xc->xc_arg1 = arg1;
    263      1.12     rmind 	xc->xc_arg2 = arg2;
    264      1.12     rmind 	xc->xc_func = func;
    265       1.2        ad 	if (ci == NULL) {
    266       1.2        ad 		xc_broadcast_ev.ev_count++;
    267       1.2        ad 		for (CPU_INFO_FOREACH(cii, ci)) {
    268       1.8        ad 			if ((ci->ci_schedstate.spc_flags & SPCF_RUNNING) == 0)
    269       1.8        ad 				continue;
    270      1.12     rmind 			xc->xc_headp += 1;
    271       1.2        ad 			ci->ci_data.cpu_xcall_pending = true;
    272       1.2        ad 			cv_signal(&ci->ci_data.cpu_xcall);
    273       1.2        ad 		}
    274       1.2        ad 	} else {
    275       1.2        ad 		xc_unicast_ev.ev_count++;
    276      1.12     rmind 		xc->xc_headp += 1;
    277       1.2        ad 		ci->ci_data.cpu_xcall_pending = true;
    278       1.2        ad 		cv_signal(&ci->ci_data.cpu_xcall);
    279       1.2        ad 	}
    280      1.12     rmind 	KASSERT(xc_tailp < xc->xc_headp);
    281      1.12     rmind 	where = xc->xc_headp;
    282      1.12     rmind 	mutex_exit(&xc->xc_lock);
    283       1.2        ad 
    284      1.12     rmind 	/* Return a low priority ticket. */
    285      1.12     rmind 	KASSERT((where & XC_PRI_BIT) == 0);
    286       1.2        ad 	return where;
    287       1.2        ad }
    288       1.2        ad 
    289       1.2        ad /*
    290       1.2        ad  * xc_thread:
    291       1.2        ad  *
    292       1.2        ad  *	One thread per-CPU to dispatch low priority calls.
    293       1.2        ad  */
    294       1.2        ad static void
    295       1.2        ad xc_thread(void *cookie)
    296       1.2        ad {
    297      1.12     rmind 	struct cpu_info *ci = curcpu();
    298      1.12     rmind 	xc_state_t *xc = &xc_low_pri;
    299       1.2        ad 	void *arg1, *arg2;
    300       1.2        ad 	xcfunc_t func;
    301       1.2        ad 
    302      1.12     rmind 	mutex_enter(&xc->xc_lock);
    303       1.2        ad 	for (;;) {
    304       1.2        ad 		while (!ci->ci_data.cpu_xcall_pending) {
    305      1.12     rmind 			if (xc->xc_headp == xc_tailp) {
    306      1.12     rmind 				cv_broadcast(&xc->xc_busy);
    307      1.12     rmind 			}
    308      1.12     rmind 			cv_wait(&ci->ci_data.cpu_xcall, &xc->xc_lock);
    309       1.2        ad 			KASSERT(ci == curcpu());
    310       1.2        ad 		}
    311       1.2        ad 		ci->ci_data.cpu_xcall_pending = false;
    312      1.12     rmind 		func = xc->xc_func;
    313      1.12     rmind 		arg1 = xc->xc_arg1;
    314      1.12     rmind 		arg2 = xc->xc_arg2;
    315       1.2        ad 		xc_tailp++;
    316      1.12     rmind 		mutex_exit(&xc->xc_lock);
    317       1.2        ad 
    318      1.12     rmind 		KASSERT(func != NULL);
    319       1.2        ad 		(*func)(arg1, arg2);
    320       1.2        ad 
    321      1.12     rmind 		mutex_enter(&xc->xc_lock);
    322      1.12     rmind 		xc->xc_donep++;
    323       1.2        ad 	}
    324       1.2        ad 	/* NOTREACHED */
    325       1.2        ad }
    326      1.12     rmind 
    327      1.12     rmind /*
    328      1.12     rmind  * xc_ipi_handler:
    329      1.12     rmind  *
    330      1.12     rmind  *	Handler of cross-call IPI.
    331      1.12     rmind  */
    332      1.12     rmind void
    333      1.12     rmind xc_ipi_handler(void)
    334      1.12     rmind {
    335      1.14    martin 	/* Executes xc__highpri_intr() via software interrupt. */
    336      1.12     rmind 	softint_schedule(xc_sih);
    337      1.12     rmind }
    338      1.12     rmind 
    339      1.12     rmind /*
    340      1.14    martin  * xc__highpri_intr:
    341      1.12     rmind  *
    342      1.12     rmind  *	A software interrupt handler for high priority calls.
    343      1.12     rmind  */
    344      1.14    martin void
    345      1.14    martin xc__highpri_intr(void *dummy)
    346      1.12     rmind {
    347      1.12     rmind 	xc_state_t *xc = &xc_high_pri;
    348      1.12     rmind 	void *arg1, *arg2;
    349      1.12     rmind 	xcfunc_t func;
    350      1.12     rmind 
    351      1.14    martin 	KASSERT(!cpu_intr_p());
    352      1.12     rmind 	/*
    353      1.12     rmind 	 * Lock-less fetch of function and its arguments.
    354      1.12     rmind 	 * Safe since it cannot change at this point.
    355      1.12     rmind 	 */
    356      1.12     rmind 	KASSERT(xc->xc_donep < xc->xc_headp);
    357      1.12     rmind 	func = xc->xc_func;
    358      1.12     rmind 	arg1 = xc->xc_arg1;
    359      1.12     rmind 	arg2 = xc->xc_arg2;
    360      1.12     rmind 
    361      1.12     rmind 	KASSERT(func != NULL);
    362      1.12     rmind 	(*func)(arg1, arg2);
    363      1.12     rmind 
    364      1.12     rmind 	/*
    365      1.12     rmind 	 * Note the request as done, and if we have reached the head,
    366      1.12     rmind 	 * cross-call has been processed - notify waiters, if any.
    367      1.12     rmind 	 */
    368      1.12     rmind 	mutex_enter(&xc->xc_lock);
    369      1.12     rmind 	if (++xc->xc_donep == xc->xc_headp) {
    370      1.12     rmind 		cv_broadcast(&xc->xc_busy);
    371      1.12     rmind 	}
    372      1.12     rmind 	mutex_exit(&xc->xc_lock);
    373      1.12     rmind }
    374      1.12     rmind 
    375      1.12     rmind /*
    376      1.12     rmind  * xc_highpri:
    377      1.12     rmind  *
    378      1.12     rmind  *	Trigger a high priority call on one or more CPUs.
    379      1.12     rmind  */
    380      1.12     rmind static inline uint64_t
    381      1.12     rmind xc_highpri(xcfunc_t func, void *arg1, void *arg2, struct cpu_info *ci)
    382      1.12     rmind {
    383      1.12     rmind 	xc_state_t *xc = &xc_high_pri;
    384      1.12     rmind 	uint64_t where;
    385      1.12     rmind 
    386      1.12     rmind 	mutex_enter(&xc->xc_lock);
    387      1.12     rmind 	while (xc->xc_headp != xc->xc_donep) {
    388      1.12     rmind 		cv_wait(&xc->xc_busy, &xc->xc_lock);
    389      1.12     rmind 	}
    390      1.12     rmind 	xc->xc_func = func;
    391      1.12     rmind 	xc->xc_arg1 = arg1;
    392      1.12     rmind 	xc->xc_arg2 = arg2;
    393      1.12     rmind 	xc->xc_headp += (ci ? 1 : ncpu);
    394      1.12     rmind 	where = xc->xc_headp;
    395      1.12     rmind 	mutex_exit(&xc->xc_lock);
    396      1.12     rmind 
    397      1.12     rmind 	/*
    398      1.12     rmind 	 * Send the IPI once lock is released.
    399      1.12     rmind 	 * Note: it will handle the local CPU case.
    400      1.12     rmind 	 */
    401      1.12     rmind 
    402      1.14    martin #ifdef _RUMPKERNEL
    403      1.14    martin 	rump_xc_highpri(ci);
    404      1.14    martin #else
    405      1.12     rmind #ifdef MULTIPROCESSOR
    406      1.12     rmind 	kpreempt_disable();
    407      1.12     rmind 	if (curcpu() == ci) {
    408      1.12     rmind 		/* Unicast: local CPU. */
    409      1.12     rmind 		xc_ipi_handler();
    410      1.12     rmind 	} else if (ci) {
    411      1.12     rmind 		/* Unicast: remote CPU. */
    412      1.12     rmind 		xc_send_ipi(ci);
    413      1.12     rmind 	} else {
    414      1.12     rmind 		/* Broadcast: all, including local. */
    415      1.12     rmind 		xc_send_ipi(NULL);
    416      1.12     rmind 		xc_ipi_handler();
    417      1.12     rmind 	}
    418      1.12     rmind 	kpreempt_enable();
    419      1.12     rmind #else
    420      1.15     rmind 	KASSERT(ci == NULL || curcpu() == ci);
    421      1.12     rmind 	xc_ipi_handler();
    422      1.12     rmind #endif
    423      1.14    martin #endif
    424      1.12     rmind 
    425      1.12     rmind 	/* Indicate a high priority ticket. */
    426      1.12     rmind 	return (where | XC_PRI_BIT);
    427      1.12     rmind }
    428