trap.c revision 1.43
11.43Sagc/*	$NetBSD: trap.c,v 1.43 2003/08/07 16:28:57 agc Exp $	*/
21.7Sdbj
31.7Sdbj/*
41.10Sabs * This file was taken from mvme68k/mvme68k/trap.c
51.7Sdbj * should probably be re-synced when needed.
61.16Sdbj * Darrin B. Jewell <jewell@mit.edu> Tue Aug  3 10:53:12 UTC 1999
71.16Sdbj * original cvs id: NetBSD: trap.c,v 1.32 1999/08/03 10:52:06 dbj Exp
81.7Sdbj */
91.1Sdbj
101.1Sdbj/*
111.1Sdbj * Copyright (c) 1982, 1986, 1990, 1993
121.1Sdbj *	The Regents of the University of California.  All rights reserved.
131.1Sdbj *
141.1Sdbj * This code is derived from software contributed to Berkeley by
151.1Sdbj * the Systems Programming Group of the University of Utah Computer
161.1Sdbj * Science Department.
171.1Sdbj *
181.1Sdbj * Redistribution and use in source and binary forms, with or without
191.1Sdbj * modification, are permitted provided that the following conditions
201.1Sdbj * are met:
211.1Sdbj * 1. Redistributions of source code must retain the above copyright
221.1Sdbj *    notice, this list of conditions and the following disclaimer.
231.1Sdbj * 2. Redistributions in binary form must reproduce the above copyright
241.1Sdbj *    notice, this list of conditions and the following disclaimer in the
251.1Sdbj *    documentation and/or other materials provided with the distribution.
261.43Sagc * 3. Neither the name of the University nor the names of its contributors
271.43Sagc *    may be used to endorse or promote products derived from this software
281.43Sagc *    without specific prior written permission.
291.43Sagc *
301.43Sagc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
311.43Sagc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
321.43Sagc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
331.43Sagc * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
341.43Sagc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
351.43Sagc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
361.43Sagc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
371.43Sagc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
381.43Sagc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
391.43Sagc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
401.43Sagc * SUCH DAMAGE.
411.43Sagc *
421.43Sagc * from: Utah $Hdr: trap.c 1.37 92/12/20$
431.43Sagc *
441.43Sagc *	@(#)trap.c	8.5 (Berkeley) 1/4/94
451.43Sagc */
461.43Sagc/*
471.43Sagc * Copyright (c) 1988 University of Utah.
481.43Sagc *
491.43Sagc * This code is derived from software contributed to Berkeley by
501.43Sagc * the Systems Programming Group of the University of Utah Computer
511.43Sagc * Science Department.
521.43Sagc *
531.43Sagc * Redistribution and use in source and binary forms, with or without
541.43Sagc * modification, are permitted provided that the following conditions
551.43Sagc * are met:
561.43Sagc * 1. Redistributions of source code must retain the above copyright
571.43Sagc *    notice, this list of conditions and the following disclaimer.
581.43Sagc * 2. Redistributions in binary form must reproduce the above copyright
591.43Sagc *    notice, this list of conditions and the following disclaimer in the
601.43Sagc *    documentation and/or other materials provided with the distribution.
611.1Sdbj * 3. All advertising materials mentioning features or use of this software
621.1Sdbj *    must display the following acknowledgement:
631.1Sdbj *	This product includes software developed by the University of
641.1Sdbj *	California, Berkeley and its contributors.
651.1Sdbj * 4. Neither the name of the University nor the names of its contributors
661.1Sdbj *    may be used to endorse or promote products derived from this software
671.1Sdbj *    without specific prior written permission.
681.1Sdbj *
691.1Sdbj * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
701.1Sdbj * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
711.1Sdbj * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
721.1Sdbj * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
731.1Sdbj * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
741.1Sdbj * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
751.1Sdbj * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
761.1Sdbj * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
771.1Sdbj * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
781.1Sdbj * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
791.1Sdbj * SUCH DAMAGE.
801.1Sdbj *
811.1Sdbj * from: Utah $Hdr: trap.c 1.37 92/12/20$
821.1Sdbj *
831.1Sdbj *	@(#)trap.c	8.5 (Berkeley) 1/4/94
841.1Sdbj */
851.42Slukem
861.42Slukem#include <sys/cdefs.h>
871.43Sagc__KERNEL_RCSID(0, "$NetBSD: trap.c,v 1.43 2003/08/07 16:28:57 agc Exp $");
881.2Sthorpej
891.5Sjonathan#include "opt_ddb.h"
901.9Sitohy#include "opt_execfmt.h"
911.33Slukem#include "opt_kgdb.h"
921.3Sthorpej#include "opt_compat_sunos.h"
931.4Sthorpej#include "opt_compat_hpux.h"
941.1Sdbj
951.1Sdbj#include <sys/param.h>
961.1Sdbj#include <sys/systm.h>
971.1Sdbj#include <sys/proc.h>
981.1Sdbj#include <sys/acct.h>
991.1Sdbj#include <sys/kernel.h>
1001.1Sdbj#include <sys/signalvar.h>
1011.1Sdbj#include <sys/resourcevar.h>
1021.39Sthorpej#include <sys/sa.h>
1031.39Sthorpej#include <sys/savar.h>
1041.1Sdbj#include <sys/syscall.h>
1051.1Sdbj#include <sys/syslog.h>
1061.1Sdbj#include <sys/user.h>
1071.16Sdbj
1081.16Sdbj#ifdef DEBUG
1091.16Sdbj#include <dev/cons.h>
1101.14Sdbj#endif
1111.1Sdbj
1121.16Sdbj#include <machine/db_machdep.h>
1131.1Sdbj#include <machine/psl.h>
1141.1Sdbj#include <machine/trap.h>
1151.1Sdbj#include <machine/cpu.h>
1161.1Sdbj#include <machine/reg.h>
1171.1Sdbj
1181.16Sdbj#include <m68k/cacheops.h>
1191.16Sdbj
1201.7Sdbj#include <uvm/uvm_extern.h>
1211.1Sdbj
1221.1Sdbj#ifdef COMPAT_HPUX
1231.1Sdbj#include <compat/hpux/hpux.h>
1241.1Sdbj#endif
1251.1Sdbj
1261.1Sdbj#ifdef COMPAT_SUNOS
1271.1Sdbj#include <compat/sunos/sunos_syscall.h>
1281.1Sdbjextern struct emul emul_sunos;
1291.1Sdbj#endif
1301.1Sdbj
1311.37Sjdolecek#ifdef KGDB
1321.37Sjdolecek#include <sys/kgdb.h>
1331.37Sjdolecek#endif
1341.37Sjdolecek
1351.16Sdbjint	writeback __P((struct frame *fp, int docachepush));
1361.16Sdbjvoid	trap __P((int type, u_int code, u_int v, struct frame frame));
1371.16Sdbj
1381.16Sdbj#ifdef DEBUG
1391.16Sdbjvoid	dumpssw __P((u_short));
1401.16Sdbjvoid	dumpwb __P((int, u_short, u_int, u_int));
1411.16Sdbj#endif
1421.16Sdbj
1431.39Sthorpejstatic inline void userret __P((struct lwp *l, struct frame *fp,
1441.16Sdbj	    u_quad_t oticks, u_int faultaddr, int fromtrap));
1451.1Sdbj
1461.7Sdbjint	astpending;
1471.1Sdbj
1481.1Sdbjchar	*trap_type[] = {
1491.1Sdbj	"Bus error",
1501.1Sdbj	"Address error",
1511.1Sdbj	"Illegal instruction",
1521.1Sdbj	"Zero divide",
1531.1Sdbj	"CHK instruction",
1541.1Sdbj	"TRAPV instruction",
1551.1Sdbj	"Privilege violation",
1561.1Sdbj	"Trace trap",
1571.1Sdbj	"MMU fault",
1581.1Sdbj	"SSIR trap",
1591.1Sdbj	"Format error",
1601.1Sdbj	"68881 exception",
1611.1Sdbj	"Coprocessor violation",
1621.1Sdbj	"Async system trap"
1631.1Sdbj};
1641.1Sdbjint	trap_types = sizeof trap_type / sizeof trap_type[0];
1651.1Sdbj
1661.1Sdbj/*
1671.1Sdbj * Size of various exception stack frames (minus the standard 8 bytes)
1681.1Sdbj */
1691.1Sdbjshort	exframesize[] = {
1701.16Sdbj	FMT0SIZE,	/* type 0 - normal (68020/030/040/060) */
1711.1Sdbj	FMT1SIZE,	/* type 1 - throwaway (68020/030/040) */
1721.16Sdbj	FMT2SIZE,	/* type 2 - normal 6-word (68020/030/040/060) */
1731.16Sdbj	FMT3SIZE,	/* type 3 - FP post-instruction (68040/060) */
1741.16Sdbj	FMT4SIZE,	/* type 4 - access error/fp disabled (68060) */
1751.16Sdbj	-1, -1,		/* type 5-6 - undefined */
1761.1Sdbj	FMT7SIZE,	/* type 7 - access error (68040) */
1771.1Sdbj	58,		/* type 8 - bus fault (68010) */
1781.1Sdbj	FMT9SIZE,	/* type 9 - coprocessor mid-instruction (68020/030) */
1791.1Sdbj	FMTASIZE,	/* type A - short bus fault (68020/030) */
1801.1Sdbj	FMTBSIZE,	/* type B - long bus fault (68020/030) */
1811.1Sdbj	-1, -1, -1, -1	/* type C-F - undefined */
1821.1Sdbj};
1831.1Sdbj
1841.16Sdbj#ifdef M68060
1851.16Sdbj#define	KDFAULT_060(c)	(cputype == CPU_68060 && ((c) & FSLW_TM_SV))
1861.16Sdbj#define	WRFAULT_060(c)	(cputype == CPU_68060 && ((c) & FSLW_RW_W))
1871.16Sdbj#else
1881.16Sdbj#define	KDFAULT_060(c)	0
1891.16Sdbj#define	WRFAULT_060(c)	0
1901.16Sdbj#endif
1911.16Sdbj
1921.1Sdbj#ifdef M68040
1931.16Sdbj#define	KDFAULT_040(c)	(cputype == CPU_68040 && \
1941.16Sdbj			 ((c) & SSW4_TMMASK) == SSW4_TMKD)
1951.16Sdbj#define	WRFAULT_040(c)	(cputype == CPU_68040 && \
1961.16Sdbj			 ((c) & SSW4_RW) == 0)
1971.16Sdbj#else
1981.16Sdbj#define	KDFAULT_040(c)	0
1991.16Sdbj#define	WRFAULT_040(c)	0
2001.16Sdbj#endif
2011.16Sdbj
2021.16Sdbj#if defined(M68030) || defined(M68020)
2031.16Sdbj#define	KDFAULT_OTH(c)	(cputype <= CPU_68030 && \
2041.16Sdbj			 ((c) & (SSW_DF|SSW_FCMASK)) == (SSW_DF|FC_SUPERD))
2051.16Sdbj#define	WRFAULT_OTH(c)	(cputype <= CPU_68030 && \
2061.16Sdbj			 ((c) & (SSW_DF|SSW_RW)) == SSW_DF)
2071.1Sdbj#else
2081.16Sdbj#define	KDFAULT_OTH(c)	0
2091.16Sdbj#define	WRFAULT_OTH(c)	0
2101.1Sdbj#endif
2111.1Sdbj
2121.16Sdbj#define	KDFAULT(c)	(KDFAULT_060(c) || KDFAULT_040(c) || KDFAULT_OTH(c))
2131.16Sdbj#define	WRFAULT(c)	(WRFAULT_060(c) || WRFAULT_040(c) || WRFAULT_OTH(c))
2141.16Sdbj
2151.1Sdbj#ifdef DEBUG
2161.1Sdbjint mmudebug = 0;
2171.1Sdbjint mmupid = -1;
2181.1Sdbj#define MDB_FOLLOW	1
2191.1Sdbj#define MDB_WBFOLLOW	2
2201.1Sdbj#define MDB_WBFAILED	4
2211.16Sdbj#define MDB_ISPID(p)	((p) == mmupid)
2221.1Sdbj#endif
2231.1Sdbj
2241.16Sdbj
2251.1Sdbj#define NSIR	32
2261.16Sdbjvoid (*sir_routines[NSIR])(void *);
2271.1Sdbjvoid *sir_args[NSIR];
2281.1Sdbjint next_sir;
2291.1Sdbj
2301.1Sdbj/*
2311.1Sdbj * trap and syscall both need the following work done before returning
2321.1Sdbj * to user mode.
2331.1Sdbj */
2341.1Sdbjstatic inline void
2351.39Sthorpejuserret(l, fp, oticks, faultaddr, fromtrap)
2361.39Sthorpej	struct lwp *l;
2371.1Sdbj	struct frame *fp;
2381.1Sdbj	u_quad_t oticks;
2391.1Sdbj	u_int faultaddr;
2401.1Sdbj	int fromtrap;
2411.1Sdbj{
2421.39Sthorpej	struct proc *p = l->l_proc;
2431.20Sthorpej	int sig;
2441.1Sdbj#ifdef M68040
2451.1Sdbj	int beenhere = 0;
2461.1Sdbj
2471.1Sdbjagain:
2481.1Sdbj#endif
2491.1Sdbj	/* take pending signals */
2501.39Sthorpej	while ((sig = CURSIG(l)) != 0)
2511.1Sdbj		postsig(sig);
2521.39Sthorpej
2531.39Sthorpej	/* Invoke per-process kernel-exit handling, if any */
2541.39Sthorpej	if (p->p_userret)
2551.39Sthorpej		(p->p_userret)(l, p->p_userret_arg);
2561.39Sthorpej
2571.39Sthorpej	/* Invoke any pending upcalls. */
2581.39Sthorpej	while (l->l_flag & L_SA_UPCALL)
2591.39Sthorpej		sa_upcall_userret(l);
2601.1Sdbj
2611.1Sdbj	/*
2621.1Sdbj	 * If profiling, charge system time to the trapped pc.
2631.1Sdbj	 */
2641.1Sdbj	if (p->p_flag & P_PROFIL) {
2651.1Sdbj		extern int psratio;
2661.1Sdbj
2671.1Sdbj		addupc_task(p, fp->f_pc,
2681.1Sdbj			    (int)(p->p_sticks - oticks) * psratio);
2691.1Sdbj	}
2701.1Sdbj#ifdef M68040
2711.1Sdbj	/*
2721.1Sdbj	 * Deal with user mode writebacks (from trap, or from sigreturn).
2731.1Sdbj	 * If any writeback fails, go back and attempt signal delivery.
2741.1Sdbj	 * unless we have already been here and attempted the writeback
2751.1Sdbj	 * (e.g. bad address with user ignoring SIGSEGV).  In that case
2761.40Swiz	 * we just return to the user without successfully completing
2771.1Sdbj	 * the writebacks.  Maybe we should just drop the sucker?
2781.1Sdbj	 */
2791.16Sdbj	if (cputype == CPU_68040 && fp->f_format == FMT7) {
2801.1Sdbj		if (beenhere) {
2811.1Sdbj#ifdef DEBUG
2821.1Sdbj			if (mmudebug & MDB_WBFAILED)
2831.1Sdbj				printf(fromtrap ?
2841.1Sdbj		"pid %d(%s): writeback aborted, pc=%x, fa=%x\n" :
2851.1Sdbj		"pid %d(%s): writeback aborted in sigreturn, pc=%x\n",
2861.1Sdbj				    p->p_pid, p->p_comm, fp->f_pc, faultaddr);
2871.1Sdbj#endif
2881.16Sdbj		} else if ((sig = writeback(fp, fromtrap))) {
2891.1Sdbj			beenhere = 1;
2901.1Sdbj			oticks = p->p_sticks;
2911.39Sthorpej			trapsignal(l, sig, faultaddr);
2921.1Sdbj			goto again;
2931.1Sdbj		}
2941.1Sdbj	}
2951.1Sdbj#endif
2961.39Sthorpej	curcpu()->ci_schedstate.spc_curpriority = l->l_priority = l->l_usrpri;
2971.1Sdbj}
2981.1Sdbj
2991.1Sdbj/*
3001.28Sscw * Used by the common m68k syscall() and child_return() functions.
3011.28Sscw * XXX: Temporary until all m68k ports share common trap()/userret() code.
3021.28Sscw */
3031.39Sthorpejvoid machine_userret(struct lwp *, struct frame *, u_quad_t);
3041.28Sscw
3051.28Sscwvoid
3061.39Sthorpejmachine_userret(l, f, t)
3071.39Sthorpej	struct lwp *l;
3081.28Sscw	struct frame *f;
3091.28Sscw	u_quad_t t;
3101.28Sscw{
3111.28Sscw
3121.39Sthorpej	userret(l, f, t, 0, 0);
3131.28Sscw}
3141.28Sscw
3151.28Sscw/*
3161.1Sdbj * Trap is called from locore to handle most types of processor traps,
3171.1Sdbj * including events such as simulated software interrupts/AST's.
3181.1Sdbj * System calls are broken out for efficiency.
3191.1Sdbj */
3201.1Sdbj/*ARGSUSED*/
3211.16Sdbjvoid
3221.1Sdbjtrap(type, code, v, frame)
3231.1Sdbj	int type;
3241.1Sdbj	unsigned code;
3251.1Sdbj	unsigned v;
3261.1Sdbj	struct frame frame;
3271.1Sdbj{
3281.1Sdbj	extern char fubail[], subail[];
3291.39Sthorpej	struct lwp *l;
3301.1Sdbj	struct proc *p;
3311.16Sdbj	int i, s;
3321.1Sdbj	u_int ucode;
3331.16Sdbj	u_quad_t sticks = 0 /* XXX initialiser works around compiler bug */;
3341.7Sdbj	int bit;
3351.38Smycroft	static int panicing = 0;
3361.1Sdbj
3371.7Sdbj	uvmexp.traps++;
3381.39Sthorpej	l = curlwp;
3391.1Sdbj	ucode = 0;
3401.16Sdbj
3411.16Sdbj	/* I have verified that this DOES happen! -gwr */
3421.39Sthorpej	if (l == NULL)
3431.39Sthorpej		l = &lwp0;
3441.39Sthorpej	p = l->l_proc;
3451.39Sthorpej
3461.16Sdbj#ifdef DIAGNOSTIC
3471.39Sthorpej	if (l->l_addr == NULL)
3481.16Sdbj		panic("trap: no pcb");
3491.16Sdbj#endif
3501.16Sdbj
3511.1Sdbj	if (USERMODE(frame.f_sr)) {
3521.1Sdbj		type |= T_USER;
3531.1Sdbj		sticks = p->p_sticks;
3541.39Sthorpej		l->l_md.md_regs = frame.f_regs;
3551.1Sdbj	}
3561.1Sdbj	switch (type) {
3571.1Sdbj
3581.1Sdbj	default:
3591.14Sdbj	dopanic:
3601.14Sdbj		/*
3611.14Sdbj		 * Let the kernel debugger see the trap frame that
3621.14Sdbj		 * caused us to panic.  This is a convenience so
3631.14Sdbj		 * one can see registers at the point of failure.
3641.14Sdbj		 */
3651.16Sdbj		s = splhigh();
3661.38Smycroft		panicing = 1;
3671.38Smycroft		printf("trap type %d, code = 0x%x, v = 0x%x\n", type, code, v);
3681.38Smycroft		printf("%s program counter = 0x%x\n",
3691.38Smycroft		    (type & T_USER) ? "user" : "kernel", frame.f_pc);
3701.14Sdbj#ifdef KGDB
3711.14Sdbj		/* If connected, step or cont returns 1 */
3721.37Sjdolecek		if (kgdb_trap(type, (db_regs_t *)&frame))
3731.14Sdbj			goto kgdb_cont;
3741.14Sdbj#endif
3751.16Sdbj#ifdef DDB
3761.16Sdbj		(void)kdb_trap(type, (db_regs_t *)&frame);
3771.1Sdbj#endif
3781.14Sdbj#ifdef KGDB
3791.14Sdbj	kgdb_cont:
3801.14Sdbj#endif
3811.16Sdbj		splx(s);
3821.14Sdbj		if (panicstr) {
3831.16Sdbj			printf("trap during panic!\n");
3841.16Sdbj#ifdef DEBUG
3851.16Sdbj			/* XXX should be a machine-dependent hook */
3861.16Sdbj			printf("(press a key)\n"); (void)cngetc();
3871.16Sdbj#endif
3881.14Sdbj		}
3891.1Sdbj		regdump((struct trapframe *)&frame, 128);
3901.1Sdbj		type &= ~T_USER;
3911.16Sdbj		if ((u_int)type < trap_types)
3921.1Sdbj			panic(trap_type[type]);
3931.1Sdbj		panic("trap");
3941.1Sdbj
3951.1Sdbj	case T_BUSERR:		/* kernel bus error */
3961.39Sthorpej		if (l->l_addr->u_pcb.pcb_onfault == 0)
3971.1Sdbj			goto dopanic;
3981.16Sdbj		/* FALLTHROUGH */
3991.16Sdbj
4001.16Sdbj	copyfault:
4011.1Sdbj		/*
4021.1Sdbj		 * If we have arranged to catch this fault in any of the
4031.1Sdbj		 * copy to/from user space routines, set PC to return to
4041.1Sdbj		 * indicated location and set flag informing buserror code
4051.1Sdbj		 * that it may need to clean up stack frame.
4061.1Sdbj		 */
4071.1Sdbj		frame.f_stackadj = exframesize[frame.f_format];
4081.1Sdbj		frame.f_format = frame.f_vector = 0;
4091.39Sthorpej		frame.f_pc = (int) l->l_addr->u_pcb.pcb_onfault;
4101.1Sdbj		return;
4111.1Sdbj
4121.1Sdbj	case T_BUSERR|T_USER:	/* bus error */
4131.1Sdbj	case T_ADDRERR|T_USER:	/* address error */
4141.1Sdbj		ucode = v;
4151.1Sdbj		i = SIGBUS;
4161.1Sdbj		break;
4171.1Sdbj
4181.1Sdbj	case T_COPERR:		/* kernel coprocessor violation */
4191.1Sdbj	case T_FMTERR|T_USER:	/* do all RTE errors come in as T_USER? */
4201.1Sdbj	case T_FMTERR:		/* ...just in case... */
4211.1Sdbj	/*
4221.1Sdbj	 * The user has most likely trashed the RTE or FP state info
4231.1Sdbj	 * in the stack frame of a signal handler.
4241.1Sdbj	 */
4251.1Sdbj		printf("pid %d: kernel %s exception\n", p->p_pid,
4261.1Sdbj		       type==T_COPERR ? "coprocessor" : "format");
4271.1Sdbj		type |= T_USER;
4281.29Sjdolecek		SIGACTION(p, SIGILL).sa_handler = SIG_DFL;
4291.29Sjdolecek		sigdelset(&p->p_sigctx.ps_sigignore, SIGILL);
4301.29Sjdolecek		sigdelset(&p->p_sigctx.ps_sigcatch, SIGILL);
4311.29Sjdolecek		sigdelset(&p->p_sigctx.ps_sigmask, SIGILL);
4321.1Sdbj		i = SIGILL;
4331.1Sdbj		ucode = frame.f_format;	/* XXX was ILL_RESAD_FAULT */
4341.1Sdbj		break;
4351.1Sdbj
4361.1Sdbj	case T_COPERR|T_USER:	/* user coprocessor violation */
4371.1Sdbj	/* What is a proper response here? */
4381.1Sdbj		ucode = 0;
4391.1Sdbj		i = SIGFPE;
4401.1Sdbj		break;
4411.1Sdbj
4421.1Sdbj	case T_FPERR|T_USER:	/* 68881 exceptions */
4431.1Sdbj	/*
4441.7Sdbj	 * We pass along the 68881 status register which locore stashed
4451.1Sdbj	 * in code for us.  Note that there is a possibility that the
4461.7Sdbj	 * bit pattern of this register will conflict with one of the
4471.1Sdbj	 * FPE_* codes defined in signal.h.  Fortunately for us, the
4481.1Sdbj	 * only such codes we use are all in the range 1-7 and the low
4491.7Sdbj	 * 3 bits of the status register are defined as 0 so there is
4501.1Sdbj	 * no clash.
4511.1Sdbj	 */
4521.1Sdbj		ucode = code;
4531.1Sdbj		i = SIGFPE;
4541.1Sdbj		break;
4551.1Sdbj
4561.1Sdbj#ifdef M68040
4571.1Sdbj	case T_FPEMULI|T_USER:	/* unimplemented FP instuction */
4581.1Sdbj	case T_FPEMULD|T_USER:	/* unimplemented FP data type */
4591.1Sdbj		/* XXX need to FSAVE */
4601.1Sdbj		printf("pid %d(%s): unimplemented FP %s at %x (EA %x)\n",
4611.1Sdbj		       p->p_pid, p->p_comm,
4621.1Sdbj		       frame.f_format == 2 ? "instruction" : "data type",
4631.1Sdbj		       frame.f_pc, frame.f_fmt2.f_iaddr);
4641.1Sdbj		/* XXX need to FRESTORE */
4651.1Sdbj		i = SIGFPE;
4661.1Sdbj		break;
4671.1Sdbj#endif
4681.1Sdbj
4691.1Sdbj	case T_ILLINST|T_USER:	/* illegal instruction fault */
4701.1Sdbj#ifdef COMPAT_HPUX
4711.1Sdbj		if (p->p_emul == &emul_hpux) {
4721.1Sdbj			ucode = HPUX_ILL_ILLINST_TRAP;
4731.1Sdbj			i = SIGILL;
4741.1Sdbj			break;
4751.1Sdbj		}
4761.1Sdbj		/* fall through */
4771.1Sdbj#endif
4781.1Sdbj	case T_PRIVINST|T_USER:	/* privileged instruction fault */
4791.1Sdbj#ifdef COMPAT_HPUX
4801.1Sdbj		if (p->p_emul == &emul_hpux)
4811.1Sdbj			ucode = HPUX_ILL_PRIV_TRAP;
4821.1Sdbj		else
4831.1Sdbj#endif
4841.1Sdbj		ucode = frame.f_format;	/* XXX was ILL_PRIVIN_FAULT */
4851.1Sdbj		i = SIGILL;
4861.1Sdbj		break;
4871.1Sdbj
4881.1Sdbj	case T_ZERODIV|T_USER:	/* Divide by zero */
4891.1Sdbj#ifdef COMPAT_HPUX
4901.1Sdbj		if (p->p_emul == &emul_hpux)
4911.1Sdbj			ucode = HPUX_FPE_INTDIV_TRAP;
4921.1Sdbj		else
4931.1Sdbj#endif
4941.1Sdbj		ucode = frame.f_format;	/* XXX was FPE_INTDIV_TRAP */
4951.1Sdbj		i = SIGFPE;
4961.1Sdbj		break;
4971.1Sdbj
4981.1Sdbj	case T_CHKINST|T_USER:	/* CHK instruction trap */
4991.1Sdbj#ifdef COMPAT_HPUX
5001.1Sdbj		if (p->p_emul == &emul_hpux) {
5011.1Sdbj			/* handled differently under hp-ux */
5021.1Sdbj			i = SIGILL;
5031.1Sdbj			ucode = HPUX_ILL_CHK_TRAP;
5041.1Sdbj			break;
5051.1Sdbj		}
5061.1Sdbj#endif
5071.1Sdbj		ucode = frame.f_format;	/* XXX was FPE_SUBRNG_TRAP */
5081.1Sdbj		i = SIGFPE;
5091.1Sdbj		break;
5101.1Sdbj
5111.1Sdbj	case T_TRAPVINST|T_USER:	/* TRAPV instruction trap */
5121.1Sdbj#ifdef COMPAT_HPUX
5131.1Sdbj		if (p->p_emul == &emul_hpux) {
5141.1Sdbj			/* handled differently under hp-ux */
5151.1Sdbj			i = SIGILL;
5161.1Sdbj			ucode = HPUX_ILL_TRAPV_TRAP;
5171.1Sdbj			break;
5181.1Sdbj		}
5191.1Sdbj#endif
5201.1Sdbj		ucode = frame.f_format;	/* XXX was FPE_INTOVF_TRAP */
5211.1Sdbj		i = SIGFPE;
5221.1Sdbj		break;
5231.1Sdbj
5241.1Sdbj	/*
5251.1Sdbj	 * XXX: Trace traps are a nightmare.
5261.1Sdbj	 *
5271.1Sdbj	 *	HP-UX uses trap #1 for breakpoints,
5281.16Sdbj	 *	NetBSD/m68k uses trap #2,
5291.1Sdbj	 *	SUN 3.x uses trap #15,
5301.16Sdbj	 *	DDB and KGDB uses trap #15 (for kernel breakpoints;
5311.16Sdbj	 *	handled elsewhere).
5321.1Sdbj	 *
5331.16Sdbj	 * NetBSD and HP-UX traps both get mapped by locore.s into T_TRACE.
5341.1Sdbj	 * SUN 3.x traps get passed through as T_TRAP15 and are not really
5351.1Sdbj	 * supported yet.
5361.16Sdbj	 *
5371.17Sitohy	 * XXX: We should never get kernel-mode T_TRAP15
5381.16Sdbj	 * XXX: because locore.s now gives them special treatment.
5391.1Sdbj	 */
5401.16Sdbj	case T_TRAP15:		/* kernel breakpoint */
5411.16Sdbj#ifdef DEBUG
5421.16Sdbj		printf("unexpected kernel trace trap, type = %d\n", type);
5431.16Sdbj		printf("program counter = 0x%x\n", frame.f_pc);
5441.1Sdbj#endif
5451.1Sdbj		frame.f_sr &= ~PSL_T;
5461.16Sdbj		return;
5471.1Sdbj
5481.1Sdbj	case T_TRACE|T_USER:	/* user trace trap */
5491.1Sdbj#ifdef COMPAT_SUNOS
5501.1Sdbj		/*
5511.1Sdbj		 * SunOS uses Trap #2 for a "CPU cache flush".
5521.1Sdbj		 * Just flush the on-chip caches and return.
5531.1Sdbj		 */
5541.1Sdbj		if (p->p_emul == &emul_sunos) {
5551.1Sdbj			ICIA();
5561.1Sdbj			DCIU();
5571.1Sdbj			return;
5581.1Sdbj		}
5591.16Sdbj#endif
5601.17Sitohy		/* FALLTHROUGH */
5611.17Sitohy	case T_TRACE:		/* tracing a trap instruction */
5621.17Sitohy	case T_TRAP15|T_USER:	/* SUN user trace trap */
5631.1Sdbj		frame.f_sr &= ~PSL_T;
5641.1Sdbj		i = SIGTRAP;
5651.1Sdbj		break;
5661.1Sdbj
5671.1Sdbj	case T_ASTFLT:		/* system async trap, cannot happen */
5681.1Sdbj		goto dopanic;
5691.1Sdbj
5701.1Sdbj	case T_ASTFLT|T_USER:	/* user async trap */
5711.1Sdbj		astpending = 0;
5721.1Sdbj		/*
5731.1Sdbj		 * We check for software interrupts first.  This is because
5741.1Sdbj		 * they are at a higher level than ASTs, and on a VAX would
5751.1Sdbj		 * interrupt the AST.  We assume that if we are processing
5761.1Sdbj		 * an AST that we must be at IPL0 so we don't bother to
5771.1Sdbj		 * check.  Note that we ensure that we are at least at SIR
5781.1Sdbj		 * IPL while processing the SIR.
5791.1Sdbj		 */
5801.1Sdbj		spl1();
5811.1Sdbj		/* fall into... */
5821.1Sdbj
5831.1Sdbj	case T_SSIR:		/* software interrupt */
5841.1Sdbj	case T_SSIR|T_USER:
5851.16Sdbj		while ((bit = ffs(ssir))) {
5861.1Sdbj			--bit;
5871.1Sdbj			ssir &= ~(1 << bit);
5881.7Sdbj			uvmexp.softs++;
5891.1Sdbj			if (sir_routines[bit])
5901.1Sdbj				sir_routines[bit](sir_args[bit]);
5911.1Sdbj		}
5921.1Sdbj		/*
5931.1Sdbj		 * If this was not an AST trap, we are all done.
5941.1Sdbj		 */
5951.1Sdbj		if (type != (T_ASTFLT|T_USER)) {
5961.16Sdbj			uvmexp.traps--;
5971.1Sdbj			return;
5981.1Sdbj		}
5991.1Sdbj		spl0();
6001.1Sdbj		if (p->p_flag & P_OWEUPC) {
6011.1Sdbj			p->p_flag &= ~P_OWEUPC;
6021.1Sdbj			ADDUPROF(p);
6031.1Sdbj		}
6041.39Sthorpej		if (want_resched)
6051.39Sthorpej			preempt(0);
6061.1Sdbj		goto out;
6071.1Sdbj
6081.1Sdbj	case T_MMUFLT:		/* kernel mode page fault */
6091.1Sdbj		/*
6101.1Sdbj		 * If we were doing profiling ticks or other user mode
6111.1Sdbj		 * stuff from interrupt code, Just Say No.
6121.1Sdbj		 */
6131.39Sthorpej		if (l->l_addr->u_pcb.pcb_onfault == fubail ||
6141.39Sthorpej		    l->l_addr->u_pcb.pcb_onfault == subail)
6151.1Sdbj			goto copyfault;
6161.1Sdbj		/* fall into ... */
6171.1Sdbj
6181.1Sdbj	case T_MMUFLT|T_USER:	/* page fault */
6191.1Sdbj	    {
6201.7Sdbj		vaddr_t va;
6211.1Sdbj		struct vmspace *vm = p->p_vmspace;
6221.34Schs		struct vm_map *map;
6231.1Sdbj		int rv;
6241.1Sdbj		vm_prot_t ftype;
6251.34Schs		extern struct vm_map *kernel_map;
6261.1Sdbj
6271.1Sdbj#ifdef DEBUG
6281.1Sdbj		if ((mmudebug & MDB_WBFOLLOW) || MDB_ISPID(p->p_pid))
6291.1Sdbj		printf("trap: T_MMUFLT pid=%d, code=%x, v=%x, pc=%x, sr=%x\n",
6301.1Sdbj		       p->p_pid, code, v, frame.f_pc, frame.f_sr);
6311.1Sdbj#endif
6321.1Sdbj		/*
6331.1Sdbj		 * It is only a kernel address space fault iff:
6341.1Sdbj		 * 	1. (type & T_USER) == 0  and
6351.1Sdbj		 * 	2. pcb_onfault not set or
6361.1Sdbj		 *	3. pcb_onfault set but supervisor space data fault
6371.1Sdbj		 * The last can occur during an exec() copyin where the
6381.1Sdbj		 * argument space is lazy-allocated.
6391.1Sdbj		 */
6401.16Sdbj		if ((type & T_USER) == 0 &&
6411.39Sthorpej		    ((l->l_addr->u_pcb.pcb_onfault == 0) || KDFAULT(code)))
6421.1Sdbj			map = kernel_map;
6431.1Sdbj		else
6441.16Sdbj			map = vm ? &vm->vm_map : kernel_map;
6451.16Sdbj
6461.1Sdbj		if (WRFAULT(code))
6471.36Schs			ftype = VM_PROT_WRITE;
6481.1Sdbj		else
6491.1Sdbj			ftype = VM_PROT_READ;
6501.16Sdbj
6511.7Sdbj		va = trunc_page((vaddr_t)v);
6521.16Sdbj
6531.1Sdbj		if (map == kernel_map && va == 0) {
6541.16Sdbj			printf("trap: bad kernel %s access at 0x%x\n",
6551.16Sdbj			    (ftype & VM_PROT_WRITE) ? "read/write" :
6561.16Sdbj			    "read", v);
6571.1Sdbj			goto dopanic;
6581.1Sdbj		}
6591.16Sdbj
6601.38Smycroft#ifdef DIAGNOSTIC
6611.38Smycroft		if (interrupt_depth && !panicing) {
6621.38Smycroft			printf("trap: calling uvm_fault() from interrupt!\n");
6631.38Smycroft			goto dopanic;
6641.38Smycroft		}
6651.38Smycroft#endif
6661.38Smycroft
6671.1Sdbj#ifdef COMPAT_HPUX
6681.1Sdbj		if (ISHPMMADDR(va)) {
6691.16Sdbj			int pmap_mapmulti __P((pmap_t, vaddr_t));
6701.7Sdbj			vaddr_t bva;
6711.1Sdbj
6721.1Sdbj			rv = pmap_mapmulti(map->pmap, va);
6731.31Schs			if (rv != 0) {
6741.1Sdbj				bva = HPMMBASEADDR(va);
6751.7Sdbj				rv = uvm_fault(map, bva, 0, ftype);
6761.31Schs				if (rv == 0)
6771.1Sdbj					(void) pmap_mapmulti(map->pmap, va);
6781.1Sdbj			}
6791.1Sdbj		} else
6801.1Sdbj#endif
6811.7Sdbj		rv = uvm_fault(map, va, 0, ftype);
6821.7Sdbj#ifdef DEBUG
6831.7Sdbj		if (rv && MDB_ISPID(p->p_pid))
6841.7Sdbj			printf("uvm_fault(%p, 0x%lx, 0, 0x%x) -> 0x%x\n",
6851.16Sdbj			    map, va, ftype, rv);
6861.7Sdbj#endif
6871.1Sdbj		/*
6881.1Sdbj		 * If this was a stack access we keep track of the maximum
6891.1Sdbj		 * accessed stack size.  Also, if vm_fault gets a protection
6901.1Sdbj		 * failure it is due to accessing the stack region outside
6911.1Sdbj		 * the current limit and we need to reflect that as an access
6921.1Sdbj		 * error.
6931.1Sdbj		 */
6941.16Sdbj		if ((vm != NULL && (caddr_t)va >= vm->vm_maxsaddr)
6951.16Sdbj		    && map != kernel_map) {
6961.31Schs			if (rv == 0) {
6971.1Sdbj				unsigned nss;
6981.1Sdbj
6991.19Sragge				nss = btoc(USRSTACK-(unsigned)va);
7001.1Sdbj				if (nss > vm->vm_ssize)
7011.1Sdbj					vm->vm_ssize = nss;
7021.31Schs			} else if (rv == EACCES)
7031.31Schs				rv = EFAULT;
7041.1Sdbj		}
7051.31Schs		if (rv == 0) {
7061.1Sdbj			if (type == T_MMUFLT) {
7071.16Sdbj#ifdef M68040
7081.16Sdbj				if (cputype == CPU_68040)
7091.1Sdbj					(void) writeback(&frame, 1);
7101.1Sdbj#endif
7111.1Sdbj				return;
7121.1Sdbj			}
7131.1Sdbj			goto out;
7141.1Sdbj		}
7151.1Sdbj		if (type == T_MMUFLT) {
7161.39Sthorpej			if (l->l_addr->u_pcb.pcb_onfault)
7171.1Sdbj				goto copyfault;
7181.7Sdbj			printf("uvm_fault(%p, 0x%lx, 0, 0x%x) -> 0x%x\n",
7191.16Sdbj			    map, va, ftype, rv);
7201.1Sdbj			printf("  type %x, code [mmu,,ssw]: %x\n",
7211.1Sdbj			       type, code);
7221.1Sdbj			goto dopanic;
7231.1Sdbj		}
7241.1Sdbj		ucode = v;
7251.31Schs		if (rv == ENOMEM) {
7261.11Schs			printf("UVM: pid %d (%s), uid %d killed: out of swap\n",
7271.11Schs			       p->p_pid, p->p_comm,
7281.11Schs			       p->p_cred && p->p_ucred ?
7291.11Schs			       p->p_ucred->cr_uid : -1);
7301.11Schs			i = SIGKILL;
7311.11Schs		} else {
7321.11Schs			i = SIGSEGV;
7331.11Schs		}
7341.1Sdbj		break;
7351.1Sdbj	    }
7361.1Sdbj	}
7371.39Sthorpej	trapsignal(l, i, ucode);
7381.1Sdbj	if ((type & T_USER) == 0)
7391.1Sdbj		return;
7401.1Sdbjout:
7411.39Sthorpej	userret(l, &frame, sticks, v, 1);
7421.1Sdbj}
7431.1Sdbj
7441.1Sdbj#ifdef M68040
7451.1Sdbj#ifdef DEBUG
7461.1Sdbjstruct writebackstats {
7471.1Sdbj	int calls;
7481.1Sdbj	int cpushes;
7491.1Sdbj	int move16s;
7501.1Sdbj	int wb1s, wb2s, wb3s;
7511.1Sdbj	int wbsize[4];
7521.1Sdbj} wbstats;
7531.1Sdbj
7541.1Sdbjchar *f7sz[] = { "longword", "byte", "word", "line" };
7551.1Sdbjchar *f7tt[] = { "normal", "MOVE16", "AFC", "ACK" };
7561.1Sdbjchar *f7tm[] = { "d-push", "u-data", "u-code", "M-data",
7571.1Sdbj		 "M-code", "k-data", "k-code", "RES" };
7581.1Sdbjchar wberrstr[] =
7591.16Sdbj    "WARNING: pid %d(%s) writeback [%s] failed, pc=%x fa=%x wba=%x wbd=%x\n";
7601.1Sdbj#endif
7611.1Sdbj
7621.16Sdbjint
7631.1Sdbjwriteback(fp, docachepush)
7641.1Sdbj	struct frame *fp;
7651.1Sdbj	int docachepush;
7661.1Sdbj{
7671.1Sdbj	struct fmt7 *f = &fp->f_fmt7;
7681.39Sthorpej	struct lwp *l = curlwp;
7691.39Sthorpej	struct proc *p = l->l_proc;
7701.1Sdbj	int err = 0;
7711.1Sdbj	u_int fa;
7721.39Sthorpej	caddr_t oonfault = l->l_addr->u_pcb.pcb_onfault;
7731.15Sthorpej	paddr_t pa;
7741.1Sdbj
7751.1Sdbj#ifdef DEBUG
7761.1Sdbj	if ((mmudebug & MDB_WBFOLLOW) || MDB_ISPID(p->p_pid)) {
7771.1Sdbj		printf(" pid=%d, fa=%x,", p->p_pid, f->f_fa);
7781.1Sdbj		dumpssw(f->f_ssw);
7791.1Sdbj	}
7801.1Sdbj	wbstats.calls++;
7811.1Sdbj#endif
7821.1Sdbj	/*
7831.1Sdbj	 * Deal with special cases first.
7841.1Sdbj	 */
7851.1Sdbj	if ((f->f_ssw & SSW4_TMMASK) == SSW4_TMDCP) {
7861.1Sdbj		/*
7871.1Sdbj		 * Dcache push fault.
7881.1Sdbj		 * Line-align the address and write out the push data to
7891.1Sdbj		 * the indicated physical address.
7901.1Sdbj		 */
7911.1Sdbj#ifdef DEBUG
7921.1Sdbj		if ((mmudebug & MDB_WBFOLLOW) || MDB_ISPID(p->p_pid)) {
7931.1Sdbj			printf(" pushing %s to PA %x, data %x",
7941.1Sdbj			       f7sz[(f->f_ssw & SSW4_SZMASK) >> 5],
7951.1Sdbj			       f->f_fa, f->f_pd0);
7961.1Sdbj			if ((f->f_ssw & SSW4_SZMASK) == SSW4_SZLN)
7971.1Sdbj				printf("/%x/%x/%x",
7981.1Sdbj				       f->f_pd1, f->f_pd2, f->f_pd3);
7991.1Sdbj			printf("\n");
8001.1Sdbj		}
8011.1Sdbj		if (f->f_wb1s & SSW4_WBSV)
8021.1Sdbj			panic("writeback: cache push with WB1S valid");
8031.1Sdbj		wbstats.cpushes++;
8041.1Sdbj#endif
8051.1Sdbj		/*
8061.1Sdbj		 * XXX there are security problems if we attempt to do a
8071.1Sdbj		 * cache push after a signal handler has been called.
8081.1Sdbj		 */
8091.1Sdbj		if (docachepush) {
8101.7Sdbj			pmap_enter(pmap_kernel(), (vaddr_t)vmmap,
8111.18Sthorpej			    trunc_page(f->f_fa), VM_PROT_WRITE,
8121.18Sthorpej			    VM_PROT_WRITE|PMAP_WIRED);
8131.35Schris			pmap_update(pmap_kernel());
8141.1Sdbj			fa = (u_int)&vmmap[(f->f_fa & PGOFSET) & ~0xF];
8151.1Sdbj			bcopy((caddr_t)&f->f_pd0, (caddr_t)fa, 16);
8161.15Sthorpej			(void) pmap_extract(pmap_kernel(), (vaddr_t)fa, &pa);
8171.15Sthorpej			DCFL(pa);
8181.7Sdbj			pmap_remove(pmap_kernel(), (vaddr_t)vmmap,
8191.41Sthorpej				    (vaddr_t)&vmmap[PAGE_SIZE]);
8201.35Schris			pmap_update(pmap_kernel());
8211.1Sdbj		} else
8221.1Sdbj			printf("WARNING: pid %d(%s) uid %d: CPUSH not done\n",
8231.1Sdbj			       p->p_pid, p->p_comm, p->p_ucred->cr_uid);
8241.1Sdbj	} else if ((f->f_ssw & (SSW4_RW|SSW4_TTMASK)) == SSW4_TTM16) {
8251.1Sdbj		/*
8261.1Sdbj		 * MOVE16 fault.
8271.1Sdbj		 * Line-align the address and write out the push data to
8281.1Sdbj		 * the indicated virtual address.
8291.1Sdbj		 */
8301.1Sdbj#ifdef DEBUG
8311.1Sdbj		if ((mmudebug & MDB_WBFOLLOW) || MDB_ISPID(p->p_pid))
8321.1Sdbj			printf(" MOVE16 to VA %x(%x), data %x/%x/%x/%x\n",
8331.1Sdbj			       f->f_fa, f->f_fa & ~0xF, f->f_pd0, f->f_pd1,
8341.1Sdbj			       f->f_pd2, f->f_pd3);
8351.1Sdbj		if (f->f_wb1s & SSW4_WBSV)
8361.1Sdbj			panic("writeback: MOVE16 with WB1S valid");
8371.1Sdbj		wbstats.move16s++;
8381.1Sdbj#endif
8391.1Sdbj		if (KDFAULT(f->f_wb1s))
8401.1Sdbj			bcopy((caddr_t)&f->f_pd0, (caddr_t)(f->f_fa & ~0xF), 16);
8411.1Sdbj		else
8421.1Sdbj			err = suline((caddr_t)(f->f_fa & ~0xF), (caddr_t)&f->f_pd0);
8431.1Sdbj		if (err) {
8441.1Sdbj			fa = f->f_fa & ~0xF;
8451.1Sdbj#ifdef DEBUG
8461.1Sdbj			if (mmudebug & MDB_WBFAILED)
8471.1Sdbj				printf(wberrstr, p->p_pid, p->p_comm,
8481.1Sdbj				       "MOVE16", fp->f_pc, f->f_fa,
8491.1Sdbj				       f->f_fa & ~0xF, f->f_pd0);
8501.1Sdbj#endif
8511.1Sdbj		}
8521.1Sdbj	} else if (f->f_wb1s & SSW4_WBSV) {
8531.1Sdbj		/*
8541.1Sdbj		 * Writeback #1.
8551.1Sdbj		 * Position the "memory-aligned" data and write it out.
8561.1Sdbj		 */
8571.1Sdbj		u_int wb1d = f->f_wb1d;
8581.1Sdbj		int off;
8591.1Sdbj
8601.1Sdbj#ifdef DEBUG
8611.1Sdbj		if ((mmudebug & MDB_WBFOLLOW) || MDB_ISPID(p->p_pid))
8621.1Sdbj			dumpwb(1, f->f_wb1s, f->f_wb1a, f->f_wb1d);
8631.1Sdbj		wbstats.wb1s++;
8641.1Sdbj		wbstats.wbsize[(f->f_wb2s&SSW4_SZMASK)>>5]++;
8651.1Sdbj#endif
8661.1Sdbj		off = (f->f_wb1a & 3) * 8;
8671.1Sdbj		switch (f->f_wb1s & SSW4_SZMASK) {
8681.1Sdbj		case SSW4_SZLW:
8691.1Sdbj			if (off)
8701.1Sdbj				wb1d = (wb1d >> (32 - off)) | (wb1d << off);
8711.1Sdbj			if (KDFAULT(f->f_wb1s))
8721.1Sdbj				*(long *)f->f_wb1a = wb1d;
8731.1Sdbj			else
8741.1Sdbj				err = suword((caddr_t)f->f_wb1a, wb1d);
8751.1Sdbj			break;
8761.1Sdbj		case SSW4_SZB:
8771.1Sdbj			off = 24 - off;
8781.1Sdbj			if (off)
8791.1Sdbj				wb1d >>= off;
8801.1Sdbj			if (KDFAULT(f->f_wb1s))
8811.1Sdbj				*(char *)f->f_wb1a = wb1d;
8821.1Sdbj			else
8831.1Sdbj				err = subyte((caddr_t)f->f_wb1a, wb1d);
8841.1Sdbj			break;
8851.1Sdbj		case SSW4_SZW:
8861.1Sdbj			off = (off + 16) % 32;
8871.1Sdbj			if (off)
8881.1Sdbj				wb1d = (wb1d >> (32 - off)) | (wb1d << off);
8891.1Sdbj			if (KDFAULT(f->f_wb1s))
8901.1Sdbj				*(short *)f->f_wb1a = wb1d;
8911.1Sdbj			else
8921.1Sdbj				err = susword((caddr_t)f->f_wb1a, wb1d);
8931.1Sdbj			break;
8941.1Sdbj		}
8951.1Sdbj		if (err) {
8961.1Sdbj			fa = f->f_wb1a;
8971.1Sdbj#ifdef DEBUG
8981.1Sdbj			if (mmudebug & MDB_WBFAILED)
8991.1Sdbj				printf(wberrstr, p->p_pid, p->p_comm,
9001.1Sdbj				       "#1", fp->f_pc, f->f_fa,
9011.1Sdbj				       f->f_wb1a, f->f_wb1d);
9021.1Sdbj#endif
9031.1Sdbj		}
9041.1Sdbj	}
9051.1Sdbj	/*
9061.1Sdbj	 * Deal with the "normal" writebacks.
9071.1Sdbj	 *
9081.1Sdbj	 * XXX writeback2 is known to reflect a LINE size writeback after
9091.1Sdbj	 * a MOVE16 was already dealt with above.  Ignore it.
9101.1Sdbj	 */
9111.1Sdbj	if (err == 0 && (f->f_wb2s & SSW4_WBSV) &&
9121.1Sdbj	    (f->f_wb2s & SSW4_SZMASK) != SSW4_SZLN) {
9131.1Sdbj#ifdef DEBUG
9141.1Sdbj		if ((mmudebug & MDB_WBFOLLOW) || MDB_ISPID(p->p_pid))
9151.1Sdbj			dumpwb(2, f->f_wb2s, f->f_wb2a, f->f_wb2d);
9161.1Sdbj		wbstats.wb2s++;
9171.1Sdbj		wbstats.wbsize[(f->f_wb2s&SSW4_SZMASK)>>5]++;
9181.1Sdbj#endif
9191.1Sdbj		switch (f->f_wb2s & SSW4_SZMASK) {
9201.1Sdbj		case SSW4_SZLW:
9211.1Sdbj			if (KDFAULT(f->f_wb2s))
9221.1Sdbj				*(long *)f->f_wb2a = f->f_wb2d;
9231.1Sdbj			else
9241.1Sdbj				err = suword((caddr_t)f->f_wb2a, f->f_wb2d);
9251.1Sdbj			break;
9261.1Sdbj		case SSW4_SZB:
9271.1Sdbj			if (KDFAULT(f->f_wb2s))
9281.1Sdbj				*(char *)f->f_wb2a = f->f_wb2d;
9291.1Sdbj			else
9301.1Sdbj				err = subyte((caddr_t)f->f_wb2a, f->f_wb2d);
9311.1Sdbj			break;
9321.1Sdbj		case SSW4_SZW:
9331.1Sdbj			if (KDFAULT(f->f_wb2s))
9341.1Sdbj				*(short *)f->f_wb2a = f->f_wb2d;
9351.1Sdbj			else
9361.1Sdbj				err = susword((caddr_t)f->f_wb2a, f->f_wb2d);
9371.1Sdbj			break;
9381.1Sdbj		}
9391.1Sdbj		if (err) {
9401.1Sdbj			fa = f->f_wb2a;
9411.1Sdbj#ifdef DEBUG
9421.1Sdbj			if (mmudebug & MDB_WBFAILED) {
9431.1Sdbj				printf(wberrstr, p->p_pid, p->p_comm,
9441.1Sdbj				       "#2", fp->f_pc, f->f_fa,
9451.1Sdbj				       f->f_wb2a, f->f_wb2d);
9461.1Sdbj				dumpssw(f->f_ssw);
9471.1Sdbj				dumpwb(2, f->f_wb2s, f->f_wb2a, f->f_wb2d);
9481.1Sdbj			}
9491.1Sdbj#endif
9501.1Sdbj		}
9511.1Sdbj	}
9521.1Sdbj	if (err == 0 && (f->f_wb3s & SSW4_WBSV)) {
9531.1Sdbj#ifdef DEBUG
9541.1Sdbj		if ((mmudebug & MDB_WBFOLLOW) || MDB_ISPID(p->p_pid))
9551.1Sdbj			dumpwb(3, f->f_wb3s, f->f_wb3a, f->f_wb3d);
9561.1Sdbj		wbstats.wb3s++;
9571.1Sdbj		wbstats.wbsize[(f->f_wb3s&SSW4_SZMASK)>>5]++;
9581.1Sdbj#endif
9591.1Sdbj		switch (f->f_wb3s & SSW4_SZMASK) {
9601.1Sdbj		case SSW4_SZLW:
9611.1Sdbj			if (KDFAULT(f->f_wb3s))
9621.1Sdbj				*(long *)f->f_wb3a = f->f_wb3d;
9631.1Sdbj			else
9641.1Sdbj				err = suword((caddr_t)f->f_wb3a, f->f_wb3d);
9651.1Sdbj			break;
9661.1Sdbj		case SSW4_SZB:
9671.1Sdbj			if (KDFAULT(f->f_wb3s))
9681.1Sdbj				*(char *)f->f_wb3a = f->f_wb3d;
9691.1Sdbj			else
9701.1Sdbj				err = subyte((caddr_t)f->f_wb3a, f->f_wb3d);
9711.1Sdbj			break;
9721.1Sdbj		case SSW4_SZW:
9731.1Sdbj			if (KDFAULT(f->f_wb3s))
9741.1Sdbj				*(short *)f->f_wb3a = f->f_wb3d;
9751.1Sdbj			else
9761.1Sdbj				err = susword((caddr_t)f->f_wb3a, f->f_wb3d);
9771.1Sdbj			break;
9781.1Sdbj#ifdef DEBUG
9791.1Sdbj		case SSW4_SZLN:
9801.1Sdbj			panic("writeback: wb3s indicates LINE write");
9811.1Sdbj#endif
9821.1Sdbj		}
9831.1Sdbj		if (err) {
9841.1Sdbj			fa = f->f_wb3a;
9851.1Sdbj#ifdef DEBUG
9861.1Sdbj			if (mmudebug & MDB_WBFAILED)
9871.1Sdbj				printf(wberrstr, p->p_pid, p->p_comm,
9881.1Sdbj				       "#3", fp->f_pc, f->f_fa,
9891.1Sdbj				       f->f_wb3a, f->f_wb3d);
9901.1Sdbj#endif
9911.1Sdbj		}
9921.1Sdbj	}
9931.39Sthorpej	l->l_addr->u_pcb.pcb_onfault = oonfault;
9941.1Sdbj	if (err)
9951.1Sdbj		err = SIGSEGV;
9961.16Sdbj	return (err);
9971.1Sdbj}
9981.1Sdbj
9991.1Sdbj#ifdef DEBUG
10001.16Sdbjvoid
10011.1Sdbjdumpssw(ssw)
10021.1Sdbj	u_short ssw;
10031.1Sdbj{
10041.1Sdbj	printf(" SSW: %x: ", ssw);
10051.1Sdbj	if (ssw & SSW4_CP)
10061.1Sdbj		printf("CP,");
10071.1Sdbj	if (ssw & SSW4_CU)
10081.1Sdbj		printf("CU,");
10091.1Sdbj	if (ssw & SSW4_CT)
10101.1Sdbj		printf("CT,");
10111.1Sdbj	if (ssw & SSW4_CM)
10121.1Sdbj		printf("CM,");
10131.1Sdbj	if (ssw & SSW4_MA)
10141.1Sdbj		printf("MA,");
10151.1Sdbj	if (ssw & SSW4_ATC)
10161.1Sdbj		printf("ATC,");
10171.1Sdbj	if (ssw & SSW4_LK)
10181.1Sdbj		printf("LK,");
10191.1Sdbj	if (ssw & SSW4_RW)
10201.1Sdbj		printf("RW,");
10211.1Sdbj	printf(" SZ=%s, TT=%s, TM=%s\n",
10221.1Sdbj	       f7sz[(ssw & SSW4_SZMASK) >> 5],
10231.1Sdbj	       f7tt[(ssw & SSW4_TTMASK) >> 3],
10241.1Sdbj	       f7tm[ssw & SSW4_TMMASK]);
10251.1Sdbj}
10261.1Sdbj
10271.16Sdbjvoid
10281.1Sdbjdumpwb(num, s, a, d)
10291.1Sdbj	int num;
10301.1Sdbj	u_short s;
10311.1Sdbj	u_int a, d;
10321.1Sdbj{
10331.1Sdbj	struct proc *p = curproc;
10341.7Sdbj	paddr_t pa;
10351.1Sdbj
10361.1Sdbj	printf(" writeback #%d: VA %x, data %x, SZ=%s, TT=%s, TM=%s\n",
10371.1Sdbj	       num, a, d, f7sz[(s & SSW4_SZMASK) >> 5],
10381.1Sdbj	       f7tt[(s & SSW4_TTMASK) >> 3], f7tm[s & SSW4_TMMASK]);
10391.16Sdbj	printf("               PA ");
10401.15Sthorpej	if (pmap_extract(p->p_vmspace->vm_map.pmap, (vaddr_t)a, &pa) == FALSE)
10411.1Sdbj		printf("<invalid address>");
10421.1Sdbj	else
10431.16Sdbj		printf("%lx, current value %lx", pa, fuword((caddr_t)a));
10441.1Sdbj	printf("\n");
10451.1Sdbj}
10461.1Sdbj#endif
10471.1Sdbj#endif
10481.1Sdbj
10491.1Sdbj/*
10501.1Sdbj * Allocation routines for software interrupts.
10511.1Sdbj */
10521.1Sdbju_long
10531.1Sdbjallocate_sir(proc, arg)
10541.16Sdbj	void (*proc)(void *);
10551.1Sdbj	void *arg;
10561.1Sdbj{
10571.1Sdbj	int bit;
10581.1Sdbj
10591.1Sdbj	if( next_sir >= NSIR )
10601.1Sdbj		panic("allocate_sir: none left");
10611.1Sdbj	bit = next_sir++;
10621.1Sdbj	sir_routines[bit] = proc;
10631.1Sdbj	sir_args[bit] = arg;
10641.1Sdbj	return (1 << bit);
10651.1Sdbj}
10661.1Sdbj
10671.1Sdbjvoid
10681.1Sdbjinit_sir()
10691.1Sdbj{
10701.16Sdbj	extern void netintr(void);
10711.1Sdbj
10721.16Sdbj	sir_routines[0] = (void (*)(void *))netintr;
10731.30Sthorpej	sir_routines[1] = softclock;
10741.1Sdbj	next_sir = 2;
10751.1Sdbj}
1076