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intr.c revision 1.8.2.1
      1  1.8.2.1  skrll /*	$NetBSD: intr.c,v 1.8.2.1 2009/01/19 13:20:25 skrll Exp $	*/
      2      1.2     ad 
      3      1.5  pooka /*
      4      1.5  pooka  * Copyright (c) 2008 Antti Kantee.  All Rights Reserved.
      5      1.2     ad  *
      6      1.2     ad  * Redistribution and use in source and binary forms, with or without
      7      1.2     ad  * modification, are permitted provided that the following conditions
      8      1.2     ad  * are met:
      9      1.2     ad  * 1. Redistributions of source code must retain the above copyright
     10      1.2     ad  *    notice, this list of conditions and the following disclaimer.
     11      1.2     ad  * 2. Redistributions in binary form must reproduce the above copyright
     12      1.2     ad  *    notice, this list of conditions and the following disclaimer in the
     13      1.2     ad  *    documentation and/or other materials provided with the distribution.
     14      1.2     ad  *
     15      1.5  pooka  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     16      1.5  pooka  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     17      1.5  pooka  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     18      1.5  pooka  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     19      1.5  pooka  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     20      1.5  pooka  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     21      1.5  pooka  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     22      1.5  pooka  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     23      1.5  pooka  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     24      1.5  pooka  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     25      1.5  pooka  * SUCH DAMAGE.
     26      1.2     ad  */
     27      1.2     ad 
     28  1.8.2.1  skrll #include <sys/cdefs.h>
     29  1.8.2.1  skrll __KERNEL_RCSID(0, "$NetBSD: intr.c,v 1.8.2.1 2009/01/19 13:20:25 skrll Exp $");
     30  1.8.2.1  skrll 
     31      1.2     ad #include <sys/param.h>
     32      1.5  pooka #include <sys/cpu.h>
     33  1.8.2.1  skrll #include <sys/kmem.h>
     34      1.5  pooka #include <sys/kthread.h>
     35      1.2     ad #include <sys/intr.h>
     36      1.2     ad 
     37      1.5  pooka #include <rump/rumpuser.h>
     38      1.5  pooka 
     39      1.5  pooka #include "rump_private.h"
     40      1.5  pooka 
     41      1.5  pooka /*
     42      1.5  pooka  * Interrupt simulator.  It executes hardclock() and softintrs.
     43      1.5  pooka  */
     44      1.5  pooka 
     45      1.8  pooka time_t time_uptime = 1;
     46      1.8  pooka 
     47      1.5  pooka struct softint {
     48      1.5  pooka 	void (*si_func)(void *);
     49      1.5  pooka 	void *si_arg;
     50      1.5  pooka 	bool si_onlist;
     51      1.5  pooka 	bool si_mpsafe;
     52      1.5  pooka 
     53      1.5  pooka 	LIST_ENTRY(softint) si_entries;
     54      1.2     ad };
     55      1.5  pooka static LIST_HEAD(, softint) si_pending = LIST_HEAD_INITIALIZER(si_pending);
     56      1.5  pooka static kmutex_t si_mtx;
     57      1.5  pooka static kcondvar_t si_cv;
     58      1.5  pooka 
     59  1.8.2.1  skrll #define INTRTHREAD_DEFAULT	2
     60  1.8.2.1  skrll #define INTRTHREAD_MAX		20
     61  1.8.2.1  skrll static int wrkidle, wrktotal;
     62  1.8.2.1  skrll 
     63  1.8.2.1  skrll static void sithread(void *);
     64  1.8.2.1  skrll 
     65      1.5  pooka static void
     66  1.8.2.1  skrll makeworker(bool bootstrap)
     67      1.5  pooka {
     68  1.8.2.1  skrll 	int rv;
     69  1.8.2.1  skrll 
     70  1.8.2.1  skrll 	if (wrktotal > INTRTHREAD_MAX) {
     71  1.8.2.1  skrll 		/* XXX: ratecheck */
     72  1.8.2.1  skrll 		printf("maximum interrupt threads (%d) reached\n",
     73  1.8.2.1  skrll 		    INTRTHREAD_MAX);
     74  1.8.2.1  skrll 		return;
     75  1.8.2.1  skrll 	}
     76  1.8.2.1  skrll 	rv = kthread_create(PRI_NONE, 0, NULL, sithread,
     77  1.8.2.1  skrll 	    NULL, NULL, "rumpsi");
     78  1.8.2.1  skrll 	if (rv) {
     79  1.8.2.1  skrll 		if (bootstrap)
     80  1.8.2.1  skrll 			panic("intr thread creation failed %d", rv);
     81  1.8.2.1  skrll 		else
     82  1.8.2.1  skrll 			printf("intr thread creation failed %d\n", rv);
     83  1.8.2.1  skrll 	} else {
     84  1.8.2.1  skrll 		wrkidle++;
     85  1.8.2.1  skrll 		wrktotal++;
     86  1.8.2.1  skrll 	}
     87  1.8.2.1  skrll }
     88  1.8.2.1  skrll 
     89  1.8.2.1  skrll /*
     90  1.8.2.1  skrll  * clock "interrupt"
     91  1.8.2.1  skrll  */
     92  1.8.2.1  skrll static void
     93  1.8.2.1  skrll doclock(void *noarg)
     94  1.8.2.1  skrll {
     95  1.8.2.1  skrll 	static int ticks = 0;
     96  1.8.2.1  skrll 	extern int hz;
     97  1.8.2.1  skrll 
     98  1.8.2.1  skrll 	for (;;) {
     99      1.5  pooka 		callout_hardclock();
    100      1.5  pooka 
    101  1.8.2.1  skrll 		/* XXX: will drift */
    102  1.8.2.1  skrll 		if (++ticks == hz) {
    103      1.8  pooka 			time_uptime++;
    104      1.8  pooka 			ticks = 0;
    105      1.8  pooka 		}
    106  1.8.2.1  skrll 		kpause("tickw8", false, 1, NULL);
    107  1.8.2.1  skrll 	}
    108  1.8.2.1  skrll }
    109      1.8  pooka 
    110  1.8.2.1  skrll /*
    111  1.8.2.1  skrll  * run a scheduled soft interrupt
    112  1.8.2.1  skrll  */
    113  1.8.2.1  skrll static void
    114  1.8.2.1  skrll sithread(void *arg)
    115  1.8.2.1  skrll {
    116  1.8.2.1  skrll 	struct softint *si;
    117  1.8.2.1  skrll 	void (*func)(void *) = NULL;
    118  1.8.2.1  skrll 	void *funarg;
    119  1.8.2.1  skrll 	bool mpsafe;
    120  1.8.2.1  skrll 
    121  1.8.2.1  skrll 	mutex_enter(&si_mtx);
    122  1.8.2.1  skrll 	for (;;) {
    123  1.8.2.1  skrll 		if (!LIST_EMPTY(&si_pending)) {
    124      1.5  pooka 			si = LIST_FIRST(&si_pending);
    125      1.5  pooka 			func = si->si_func;
    126      1.5  pooka 			funarg = si->si_arg;
    127      1.5  pooka 			mpsafe = si->si_mpsafe;
    128      1.5  pooka 
    129      1.5  pooka 			si->si_onlist = false;
    130      1.5  pooka 			LIST_REMOVE(si, si_entries);
    131  1.8.2.1  skrll 		} else {
    132  1.8.2.1  skrll 			cv_wait(&si_cv, &si_mtx);
    133  1.8.2.1  skrll 			continue;
    134      1.5  pooka 		}
    135  1.8.2.1  skrll 		wrkidle--;
    136  1.8.2.1  skrll 		if (__predict_false(wrkidle == 0))
    137  1.8.2.1  skrll 			makeworker(false);
    138      1.5  pooka 		mutex_exit(&si_mtx);
    139      1.5  pooka 
    140  1.8.2.1  skrll 		if (!mpsafe)
    141  1.8.2.1  skrll 			KERNEL_LOCK(1, curlwp);
    142  1.8.2.1  skrll 		func(funarg);
    143  1.8.2.1  skrll 		if (!mpsafe)
    144  1.8.2.1  skrll 			KERNEL_UNLOCK_ONE(curlwp);
    145  1.8.2.1  skrll 
    146  1.8.2.1  skrll 		mutex_enter(&si_mtx);
    147  1.8.2.1  skrll 		wrkidle++;
    148      1.5  pooka 	}
    149      1.5  pooka }
    150      1.2     ad 
    151      1.5  pooka void
    152      1.5  pooka softint_init(struct cpu_info *ci)
    153      1.2     ad {
    154      1.5  pooka 	int rv;
    155      1.5  pooka 
    156      1.5  pooka 	mutex_init(&si_mtx, MUTEX_DEFAULT, IPL_NONE);
    157  1.8.2.1  skrll 	cv_init(&si_cv, "intrw8"); /* cv of temporary w8ness */
    158      1.2     ad 
    159      1.5  pooka 	/* XXX: should have separate "wanttimer" control */
    160      1.5  pooka 	if (rump_threads) {
    161  1.8.2.1  skrll 		rv = kthread_create(PRI_NONE, 0, NULL, doclock,
    162  1.8.2.1  skrll 		    NULL, NULL, "rumpclk");
    163      1.5  pooka 		if (rv)
    164  1.8.2.1  skrll 			panic("clock thread creation failed: %d", rv);
    165  1.8.2.1  skrll 		mutex_enter(&si_mtx);
    166  1.8.2.1  skrll 		while (wrktotal < INTRTHREAD_DEFAULT) {
    167  1.8.2.1  skrll 			makeworker(true);
    168  1.8.2.1  skrll 		}
    169  1.8.2.1  skrll 		mutex_exit(&si_mtx);
    170      1.2     ad 	}
    171      1.2     ad }
    172      1.2     ad 
    173      1.5  pooka /*
    174      1.5  pooka  * Soft interrupts bring two choices.  If we are running with thread
    175      1.5  pooka  * support enabled, defer execution, otherwise execute in place.
    176      1.5  pooka  * See softint_schedule().
    177      1.5  pooka  *
    178      1.5  pooka  * As there is currently no clear concept of when a thread finishes
    179      1.5  pooka  * work (although rump_clear_curlwp() is close), simply execute all
    180      1.5  pooka  * softints in the timer thread.  This is probably not the most
    181      1.5  pooka  * efficient method, but good enough for now.
    182      1.5  pooka  */
    183      1.5  pooka void *
    184      1.5  pooka softint_establish(u_int flags, void (*func)(void *), void *arg)
    185      1.2     ad {
    186      1.5  pooka 	struct softint *si;
    187      1.2     ad 
    188      1.5  pooka 	si = kmem_alloc(sizeof(*si), KM_SLEEP);
    189      1.5  pooka 	si->si_func = func;
    190      1.5  pooka 	si->si_arg = arg;
    191      1.5  pooka 	si->si_onlist = false;
    192      1.5  pooka 	si->si_mpsafe = flags & SOFTINT_MPSAFE;
    193      1.5  pooka 
    194      1.5  pooka 	return si;
    195      1.2     ad }
    196      1.2     ad 
    197      1.2     ad void
    198      1.2     ad softint_schedule(void *arg)
    199      1.2     ad {
    200      1.5  pooka 	struct softint *si = arg;
    201      1.2     ad 
    202      1.5  pooka 	if (!rump_threads) {
    203      1.5  pooka 		si->si_func(si->si_arg);
    204      1.5  pooka 	} else {
    205      1.5  pooka 		mutex_enter(&si_mtx);
    206      1.5  pooka 		if (!si->si_onlist) {
    207      1.5  pooka 			LIST_INSERT_HEAD(&si_pending, si, si_entries);
    208      1.5  pooka 			si->si_onlist = true;
    209      1.5  pooka 		}
    210      1.5  pooka 		cv_signal(&si_cv);
    211      1.5  pooka 		mutex_exit(&si_mtx);
    212      1.5  pooka 	}
    213      1.2     ad }
    214      1.2     ad 
    215      1.2     ad bool
    216  1.8.2.1  skrll cpu_intr_p(void)
    217      1.2     ad {
    218      1.2     ad 
    219      1.2     ad 	return false;
    220      1.2     ad }
    221