dec_3min.c revision 1.59
11.59Sjoerg/* $NetBSD: dec_3min.c,v 1.59 2008/01/03 23:02:25 joerg Exp $ */
21.1Sjonathan
31.1Sjonathan/*
41.1Sjonathan * Copyright (c) 1998 Jonathan Stone.  All rights reserved.
51.1Sjonathan *
61.1Sjonathan * Redistribution and use in source and binary forms, with or without
71.1Sjonathan * modification, are permitted provided that the following conditions
81.1Sjonathan * are met:
91.1Sjonathan * 1. Redistributions of source code must retain the above copyright
101.1Sjonathan *    notice, this list of conditions and the following disclaimer.
111.1Sjonathan * 2. Redistributions in binary form must reproduce the above copyright
121.1Sjonathan *    notice, this list of conditions and the following disclaimer in the
131.1Sjonathan *    documentation and/or other materials provided with the distribution.
141.1Sjonathan * 3. All advertising materials mentioning features or use of this software
151.1Sjonathan *    must display the following acknowledgement:
161.1Sjonathan *	This product includes software developed by Jonathan Stone for
171.1Sjonathan *      the NetBSD Project.
181.1Sjonathan * 4. The name of the author may not be used to endorse or promote products
191.1Sjonathan *    derived from this software without specific prior written permission.
201.1Sjonathan *
211.1Sjonathan * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
221.1Sjonathan * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
231.1Sjonathan * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
241.1Sjonathan * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
251.1Sjonathan * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
261.1Sjonathan * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
271.1Sjonathan * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
281.1Sjonathan * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
291.1Sjonathan * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
301.1Sjonathan * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
311.1Sjonathan */
321.1Sjonathan
331.1Sjonathan/*
341.1Sjonathan * Copyright (c) 1992, 1993
351.1Sjonathan *	The Regents of the University of California.  All rights reserved.
361.1Sjonathan *
371.1Sjonathan * This code is derived from software contributed to Berkeley by
381.1Sjonathan * the Systems Programming Group of the University of Utah Computer
391.1Sjonathan * Science Department, The Mach Operating System project at
401.1Sjonathan * Carnegie-Mellon University and Ralph Campbell.
411.1Sjonathan *
421.1Sjonathan * Redistribution and use in source and binary forms, with or without
431.1Sjonathan * modification, are permitted provided that the following conditions
441.1Sjonathan * are met:
451.1Sjonathan * 1. Redistributions of source code must retain the above copyright
461.1Sjonathan *    notice, this list of conditions and the following disclaimer.
471.1Sjonathan * 2. Redistributions in binary form must reproduce the above copyright
481.1Sjonathan *    notice, this list of conditions and the following disclaimer in the
491.1Sjonathan *    documentation and/or other materials provided with the distribution.
501.50Sagc * 3. Neither the name of the University nor the names of its contributors
511.50Sagc *    may be used to endorse or promote products derived from this software
521.50Sagc *    without specific prior written permission.
531.50Sagc *
541.50Sagc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
551.50Sagc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
561.50Sagc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
571.50Sagc * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
581.50Sagc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
591.50Sagc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
601.50Sagc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
611.50Sagc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
621.50Sagc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
631.50Sagc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
641.50Sagc * SUCH DAMAGE.
651.50Sagc *
661.50Sagc *	@(#)machdep.c	8.3 (Berkeley) 1/12/94
671.50Sagc */
681.50Sagc/*
691.50Sagc * Copyright (c) 1988 University of Utah.
701.50Sagc *
711.50Sagc * This code is derived from software contributed to Berkeley by
721.50Sagc * the Systems Programming Group of the University of Utah Computer
731.50Sagc * Science Department, The Mach Operating System project at
741.50Sagc * Carnegie-Mellon University and Ralph Campbell.
751.50Sagc *
761.50Sagc * Redistribution and use in source and binary forms, with or without
771.50Sagc * modification, are permitted provided that the following conditions
781.50Sagc * are met:
791.50Sagc * 1. Redistributions of source code must retain the above copyright
801.50Sagc *    notice, this list of conditions and the following disclaimer.
811.50Sagc * 2. Redistributions in binary form must reproduce the above copyright
821.50Sagc *    notice, this list of conditions and the following disclaimer in the
831.50Sagc *    documentation and/or other materials provided with the distribution.
841.1Sjonathan * 3. All advertising materials mentioning features or use of this software
851.1Sjonathan *    must display the following acknowledgement:
861.1Sjonathan *	This product includes software developed by the University of
871.1Sjonathan *	California, Berkeley and its contributors.
881.1Sjonathan * 4. Neither the name of the University nor the names of its contributors
891.1Sjonathan *    may be used to endorse or promote products derived from this software
901.1Sjonathan *    without specific prior written permission.
911.1Sjonathan *
921.1Sjonathan * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
931.1Sjonathan * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
941.1Sjonathan * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
951.1Sjonathan * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
961.1Sjonathan * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
971.1Sjonathan * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
981.1Sjonathan * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
991.1Sjonathan * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
1001.1Sjonathan * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
1011.1Sjonathan * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
1021.1Sjonathan * SUCH DAMAGE.
1031.1Sjonathan *
1041.1Sjonathan *	@(#)machdep.c	8.3 (Berkeley) 1/12/94
1051.1Sjonathan */
1061.1Sjonathan
1071.1Sjonathan#include <sys/cdefs.h>			/* RCS ID & Copyright macro defns */
1081.1Sjonathan
1091.59Sjoerg__KERNEL_RCSID(0, "$NetBSD: dec_3min.c,v 1.59 2008/01/03 23:02:25 joerg Exp $");
1101.1Sjonathan
1111.34Snisimura#include <sys/param.h>
1121.1Sjonathan#include <sys/systm.h>
1131.34Snisimura#include <sys/device.h>
1141.59Sjoerg#include <sys/timetc.h>
1151.1Sjonathan
1161.1Sjonathan#include <machine/cpu.h>
1171.1Sjonathan#include <machine/intr.h>
1181.1Sjonathan#include <machine/sysconf.h>
1191.1Sjonathan
1201.1Sjonathan#include <mips/mips/mips_mcclock.h>	/* mcclock CPUspeed estimation */
1211.2Sjonathan
1221.2Sjonathan/* all these to get ioasic_base */
1231.2Sjonathan#include <dev/tc/tcvar.h>		/* tc type definitions for.. */
1241.7Sjonathan#include <dev/tc/ioasicreg.h>		/* ioasic interrrupt masks */
1251.2Sjonathan#include <dev/tc/ioasicvar.h>		/* ioasic_base */
1261.1Sjonathan
1271.20Ssimonb#include <pmax/pmax/machdep.h>
1281.1Sjonathan#include <pmax/pmax/kmin.h>		/* 3min baseboard addresses */
1291.15Snisimura#include <pmax/pmax/memc.h>		/* 3min/maxine memory errors */
1301.51Sad
1311.51Sad#include <pmax/pmax/cons.h>
1321.51Sad#include <dev/ic/z8530sc.h>
1331.51Sad#include <dev/tc/zs_ioasicvar.h>
1341.51Sad#include "wsdisplay.h"
1351.1Sjonathan
1361.31Ssimonbvoid		dec_3min_init __P((void));		/* XXX */
1371.31Ssimonbstatic void	dec_3min_bus_reset __P((void));
1381.33Ssimonbstatic void	dec_3min_cons_init __P((void));
1391.42Snisimurastatic void	dec_3min_intr __P((unsigned, unsigned, unsigned, unsigned));
1401.33Ssimonbstatic void	dec_3min_intr_establish __P((struct device *, void *,
1411.33Ssimonb		    int, int (*)(void *), void *));
1421.1Sjonathan
1431.31Ssimonbstatic void	kn02ba_wbflush __P((void));
1441.1Sjonathan
1451.59Sjoergstatic void	dec_3min_tc_init(void);
1461.1Sjonathan
1471.1Sjonathan/*
1481.1Sjonathan * Local declarations.
1491.1Sjonathan */
1501.22Snisimurastatic u_int32_t kmin_tc3_imask;
1511.18Snisimura
1521.57Syamtstatic const int dec_3min_ipl2spl_table[] = {
1531.57Syamt	[IPL_NONE] = 0,
1541.57Syamt	[IPL_SOFTCLOCK] = _SPL_SOFTCLOCK,
1551.57Syamt	[IPL_SOFTNET] = _SPL_SOFTNET,
1561.57Syamt	/*
1571.57Syamt	 * Since all the motherboard interrupts come through the
1581.57Syamt	 * IOASIC, it has to be turned off for all the spls and
1591.57Syamt	 * since we don't know what kinds of devices are in the
1601.57Syamt	 * TURBOchannel option slots, just splhigh().
1611.57Syamt	 */
1621.57Syamt	[IPL_VM] = MIPS_SPL_0_1_2_3,
1631.58Sad	[IPL_SCHED] = MIPS_SPL_0_1_2_3,
1641.58Sad	[IPL_HIGH] = MIPS_SPL_0_1_2_3,
1651.57Syamt};
1661.1Sjonathan
1671.1Sjonathanvoid
1681.1Sjonathandec_3min_init()
1691.1Sjonathan{
1701.24Snisimura	platform.iobus = "tcbus";
1711.1Sjonathan	platform.bus_reset = dec_3min_bus_reset;
1721.1Sjonathan	platform.cons_init = dec_3min_cons_init;
1731.22Snisimura	platform.iointr = dec_3min_intr;
1741.33Ssimonb	platform.intr_establish = dec_3min_intr_establish;
1751.47Smhitch	platform.memsize = memsize_bitmap;
1761.59Sjoerg	platform.tc_init = dec_3min_tc_init;
1771.1Sjonathan
1781.22Snisimura	/* clear any memory errors */
1791.17Snisimura	*(u_int32_t *)MIPS_PHYS_TO_KSEG1(KMIN_REG_TIMEOUT) = 0;
1801.14Snisimura	kn02ba_wbflush();
1811.1Sjonathan
1821.1Sjonathan	ioasic_base = MIPS_PHYS_TO_KSEG1(KMIN_SYS_ASIC);
1831.1Sjonathan
1841.57Syamt	ipl2spl_table = dec_3min_ipl2spl_table;
1851.16Snisimura
1861.28Snisimura	/* enable posting of MIPS_INT_MASK_3 to CAUSE register */
1871.28Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_IMSK) = KMIN_INTR_CLOCK;
1881.44Stsutsui	/* calibrate cpu_mhz value */
1891.29Snisimura	mc_cpuspeed(ioasic_base+IOASIC_SLOT_8_START, MIPS_INT_MASK_3);
1901.1Sjonathan
1911.17Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_LANCE_DECODE) = 0x3;
1921.17Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_SCSI_DECODE) = 0xe;
1931.44Stsutsui#if 0
1941.17Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_SCC0_DECODE) = (0x10|4);
1951.17Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_SCC1_DECODE) = (0x10|6);
1961.17Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_CSR) = 0x00000f00;
1971.44Stsutsui#endif
1981.44Stsutsui
1991.22Snisimura	/* sanitize interrupt mask */
2001.22Snisimura	kmin_tc3_imask = (KMIN_INTR_CLOCK|KMIN_INTR_PSWARN|KMIN_INTR_TIMEOUT);
2011.17Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_INTR) = 0;
2021.22Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_IMSK) = kmin_tc3_imask;
2031.1Sjonathan
2041.1Sjonathan	/*
2051.22Snisimura	 * The kmin memory hardware seems to wrap memory addresses
2061.1Sjonathan	 * with 4Mbyte SIMMs, which causes the physmem computation
2071.1Sjonathan	 * to lose.  Find out how big the SIMMS are and set
2081.22Snisimura	 * max_ physmem accordingly.
2091.22Snisimura	 * XXX Do MAXINEs lose the same way?
2101.1Sjonathan	 */
2111.1Sjonathan	physmem_boardmax = KMIN_PHYS_MEMORY_END + 1;
2121.22Snisimura	if ((KMIN_MSR_SIZE_16Mb & *(int *)MIPS_PHYS_TO_KSEG1(KMIN_REG_MSR))
2131.22Snisimura			== 0)
2141.1Sjonathan		physmem_boardmax = physmem_boardmax >> 2;
2151.1Sjonathan	physmem_boardmax = MIPS_PHYS_TO_KSEG1(physmem_boardmax);
2161.10Sjonathan
2171.22Snisimura	sprintf(cpu_model, "DECstation 5000/1%d (3MIN)", cpu_mhz);
2181.22Snisimura}
2191.22Snisimura
2201.22Snisimura/*
2211.49Stsutsui * Initialize the memory system and I/O buses.
2221.22Snisimura */
2231.31Ssimonbstatic void
2241.22Snisimuradec_3min_bus_reset()
2251.22Snisimura{
2261.22Snisimura
2271.22Snisimura	/*
2281.22Snisimura	 * Reset interrupts, clear any errors from newconf probes
2291.22Snisimura	 */
2301.22Snisimura
2311.17Snisimura	*(u_int32_t *)MIPS_PHYS_TO_KSEG1(KMIN_REG_TIMEOUT) = 0;
2321.17Snisimura	kn02ba_wbflush();
2331.17Snisimura
2341.22Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_INTR) = 0;
2351.22Snisimura	kn02ba_wbflush();
2361.1Sjonathan}
2371.1Sjonathan
2381.31Ssimonbstatic void
2391.1Sjonathandec_3min_cons_init()
2401.1Sjonathan{
2411.34Snisimura	int kbd, crt, screen;
2421.34Snisimura
2431.34Snisimura	kbd = crt = screen = 0;
2441.34Snisimura	prom_findcons(&kbd, &crt, &screen);
2451.34Snisimura
2461.34Snisimura	if (screen > 0) {
2471.51Sad#if NWSDISPLAY > 0
2481.51Sad 		if (tcfb_cnattach(crt) > 0) {
2491.51Sad			zs_ioasic_lk201_cnattach(ioasic_base, 0x180000, 0);
2501.51Sad 			return;
2511.51Sad 		}
2521.34Snisimura#endif
2531.34Snisimura		printf("No framebuffer device configured for slot %d: ", crt);
2541.34Snisimura		printf("using serial console\n");
2551.34Snisimura	}
2561.34Snisimura	/*
2571.34Snisimura	 * Delay to allow PROM putchars to complete.
2581.34Snisimura	 * FIFO depth * character time,
2591.34Snisimura	 * character time = (1000000 / (defaultrate / 10))
2601.34Snisimura	 */
2611.34Snisimura	DELAY(160000000 / 9600);	/* XXX */
2621.34Snisimura
2631.51Sad	zs_ioasic_cnattach(ioasic_base, 0x180000, 1);
2641.1Sjonathan}
2651.1Sjonathan
2661.31Ssimonbstatic void
2671.33Ssimonbdec_3min_intr_establish(dev, cookie, level, handler, arg)
2681.33Ssimonb	struct device *dev;
2691.33Ssimonb	void *cookie;
2701.33Ssimonb	int level;
2711.24Snisimura	int (*handler) __P((void *));
2721.33Ssimonb	void *arg;
2731.1Sjonathan{
2741.13Ssimonb	unsigned mask;
2751.1Sjonathan
2761.35Snisimura	switch ((int)cookie) {
2771.1Sjonathan		/* slots 0-2 don't interrupt through the IOASIC. */
2781.35Snisimura	  case SYS_DEV_OPT0:
2791.33Ssimonb		mask = MIPS_INT_MASK_0;
2801.33Ssimonb		break;
2811.35Snisimura	  case SYS_DEV_OPT1:
2821.33Ssimonb		mask = MIPS_INT_MASK_1;
2831.33Ssimonb		break;
2841.35Snisimura	  case SYS_DEV_OPT2:
2851.33Ssimonb		mask = MIPS_INT_MASK_2;
2861.33Ssimonb		break;
2871.1Sjonathan
2881.35Snisimura	  case SYS_DEV_SCSI:
2891.7Sjonathan		mask = (IOASIC_INTR_SCSI | IOASIC_INTR_SCSI_PTR_LOAD |
2901.7Sjonathan			IOASIC_INTR_SCSI_OVRUN | IOASIC_INTR_SCSI_READ_E);
2911.1Sjonathan		break;
2921.35Snisimura	  case SYS_DEV_LANCE:
2931.1Sjonathan		mask = KMIN_INTR_LANCE;
2941.1Sjonathan		break;
2951.35Snisimura	  case SYS_DEV_SCC0:
2961.1Sjonathan		mask = KMIN_INTR_SCC_0;
2971.1Sjonathan		break;
2981.35Snisimura	  case SYS_DEV_SCC1:
2991.1Sjonathan		mask = KMIN_INTR_SCC_1;
3001.1Sjonathan		break;
3011.33Ssimonb	  default:
3021.33Ssimonb#ifdef DIAGNOSTIC
3031.35Snisimura		printf("warning: enabling unknown intr %x\n", (int)cookie);
3041.33Ssimonb#endif
3051.1Sjonathan		return;
3061.1Sjonathan	}
3071.1Sjonathan
3081.38Sad#if defined(DEBUG)
3091.36Sad	printf("3MIN: imask %x, enabling slot %d, dev %p handler %p\n",
3101.36Sad	    kmin_tc3_imask, (int)cookie, dev, handler);
3111.1Sjonathan#endif
3121.1Sjonathan
3131.1Sjonathan	/*
3141.1Sjonathan	 * Enable the interrupt  handler, and if it's an IOASIC
3151.1Sjonathan	 * slot, set the IOASIC interrupt mask.
3161.1Sjonathan	 * Otherwise, set the appropriate spl level in the R3000
3171.1Sjonathan	 * register.
3181.35Snisimura	 * Be careful to set handlers before enabling, and disable
3191.1Sjonathan	 * interrupts before clearing handlers.
3201.1Sjonathan	 */
3211.1Sjonathan
3221.33Ssimonb	/* Set the interrupt handler and argument ... */
3231.35Snisimura	intrtab[(int)cookie].ih_func = handler;
3241.35Snisimura	intrtab[(int)cookie].ih_arg = arg;
3251.33Ssimonb	/* ... and set the relevant mask */
3261.35Snisimura	switch ((int)cookie) {
3271.35Snisimura	case SYS_DEV_OPT0:
3281.35Snisimura	case SYS_DEV_OPT1:
3291.35Snisimura	case SYS_DEV_OPT2:
3301.33Ssimonb		/* it's an option slot */
3311.35Snisimura		{
3321.33Ssimonb		int s = splhigh();
3331.33Ssimonb		s |= mask;
3341.33Ssimonb		splx(s);
3351.35Snisimura		}
3361.35Snisimura		break;
3371.35Snisimura	default:
3381.35Snisimura		/* it's a baseboard device going via the IOASIC */
3391.33Ssimonb		kmin_tc3_imask |= mask;
3401.35Snisimura		break;
3411.1Sjonathan	}
3421.33Ssimonb
3431.25Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_IMSK) = kmin_tc3_imask;
3441.25Snisimura	kn02ba_wbflush();
3451.1Sjonathan}
3461.1Sjonathan
3471.1Sjonathan
3481.44Stsutsui#define CHECKINTR(slot, bits)					\
3491.35Snisimura    do {							\
3501.44Stsutsui	if (can_serve & (bits)) {				\
3511.52Ssimonb		intrtab[slot].ih_count.ev_count++;		\
3521.44Stsutsui		(*intrtab[slot].ih_func)(intrtab[slot].ih_arg);	\
3531.44Stsutsui	}							\
3541.35Snisimura    } while (0)
3551.1Sjonathan
3561.42Snisimurastatic void
3571.39Snisimuradec_3min_intr(status, cause, pc, ipending)
3581.17Snisimura	unsigned status;
3591.17Snisimura	unsigned cause;
3601.39Snisimura	unsigned pc;
3611.39Snisimura	unsigned ipending;
3621.1Sjonathan{
3631.1Sjonathan	static int user_warned = 0;
3641.17Snisimura	static int intr_depth = 0;
3651.17Snisimura	u_int32_t old_mask;
3661.1Sjonathan
3671.10Sjonathan	intr_depth++;
3681.17Snisimura	old_mask = *(u_int32_t *)(ioasic_base + IOASIC_IMSK);
3691.10Sjonathan
3701.39Snisimura	if (ipending & MIPS_INT_MASK_4)
3711.1Sjonathan		prom_haltbutton();
3721.1Sjonathan
3731.39Snisimura	if (ipending & MIPS_INT_MASK_3) {
3741.10Sjonathan		/* NB: status & MIPS_INT_MASK3 must also be set */
3751.10Sjonathan		/* masked interrupts are still observable */
3761.35Snisimura		u_int32_t intr, imsk, can_serve, turnoff;
3771.17Snisimura
3781.17Snisimura		turnoff = 0;
3791.17Snisimura		intr = *(u_int32_t *)(ioasic_base + IOASIC_INTR);
3801.17Snisimura		imsk = *(u_int32_t *)(ioasic_base + IOASIC_IMSK);
3811.35Snisimura		can_serve = intr & imsk;
3821.1Sjonathan
3831.7Sjonathan		if (intr & IOASIC_INTR_SCSI_PTR_LOAD) {
3841.17Snisimura			turnoff |= IOASIC_INTR_SCSI_PTR_LOAD;
3851.1Sjonathan#ifdef notdef
3861.1Sjonathan			asc_dma_intr();
3871.1Sjonathan#endif
3881.1Sjonathan		}
3891.12Ssimonb
3901.7Sjonathan		if (intr & (IOASIC_INTR_SCSI_OVRUN | IOASIC_INTR_SCSI_READ_E))
3911.17Snisimura			turnoff |= IOASIC_INTR_SCSI_OVRUN | IOASIC_INTR_SCSI_READ_E;
3921.1Sjonathan
3931.7Sjonathan		if (intr & IOASIC_INTR_LANCE_READ_E)
3941.17Snisimura			turnoff |= IOASIC_INTR_LANCE_READ_E;
3951.17Snisimura
3961.17Snisimura		if (turnoff)
3971.17Snisimura			*(u_int32_t *)(ioasic_base + IOASIC_INTR) = ~turnoff;
3981.1Sjonathan
3991.48Snisimura		if (intr & KMIN_INTR_TIMEOUT) {
4001.1Sjonathan			kn02ba_errintr();
4011.48Snisimura			pmax_memerr_evcnt.ev_count++;
4021.48Snisimura		}
4031.12Ssimonb
4041.1Sjonathan		if (intr & KMIN_INTR_CLOCK) {
4051.17Snisimura			struct clockframe cf;
4061.17Snisimura
4071.54Sperry			__asm volatile("lbu $0,48(%0)" ::
4081.22Snisimura				"r"(ioasic_base + IOASIC_SLOT_8_START));
4091.59Sjoerg
4101.17Snisimura			cf.pc = pc;
4111.17Snisimura			cf.sr = status;
4121.1Sjonathan			hardclock(&cf);
4131.46Snisimura			pmax_clock_evcnt.ev_count++;
4141.1Sjonathan		}
4151.10Sjonathan
4161.55Swiz		/* If clock interrupts were enabled, re-enable them ASAP. */
4171.10Sjonathan		if (old_mask & KMIN_INTR_CLOCK) {
4181.17Snisimura			/* ioctl interrupt mask to splclock and higher */
4191.17Snisimura			*(u_int32_t *)(ioasic_base + IOASIC_IMSK)
4201.17Snisimura				= old_mask &
4211.17Snisimura					~(KMIN_INTR_SCC_0|KMIN_INTR_SCC_1 |
4221.17Snisimura					  IOASIC_INTR_LANCE|IOASIC_INTR_SCSI);
4231.14Snisimura			kn02ba_wbflush();
4241.17Snisimura			_splset(MIPS_SR_INT_IE | (status & MIPS_INT_MASK_3));
4251.10Sjonathan		}
4261.10Sjonathan
4271.11Sjonathan		if (intr_depth > 1)
4281.11Sjonathan			 goto done;
4291.11Sjonathan
4301.35Snisimura		CHECKINTR(SYS_DEV_SCC0, IOASIC_INTR_SCC_0);
4311.35Snisimura		CHECKINTR(SYS_DEV_SCC1, IOASIC_INTR_SCC_1);
4321.10Sjonathan
4331.10Sjonathan#ifdef notyet /* untested */
4341.10Sjonathan		/* If tty interrupts were enabled, re-enable them ASAP. */
4351.10Sjonathan		if ((old_mask & (KMIN_INTR_SCC_1|KMIN_INTR_SCC_0)) ==
4361.10Sjonathan		     (KMIN_INTR_SCC_1|KMIN_INTR_SCC_0)) {
4371.12Ssimonb			*imaskp = old_mask &
4381.10Sjonathan			  ~(KMIN_INTR_SCC_0|KMIN_INTR_SCC_1 |
4391.10Sjonathan			  IOASIC_INTR_LANCE|IOASIC_INTR_SCSI);
4401.14Snisimura			kn02ba_wbflush();
4411.10Sjonathan		}
4421.10Sjonathan
4431.10Sjonathan		/* XXX until we know about SPLs of TC options. */
4441.10Sjonathan		if (intr_depth > 1)
4451.10Sjonathan			 goto done;
4461.10Sjonathan#endif
4471.35Snisimura		CHECKINTR(SYS_DEV_LANCE, IOASIC_INTR_LANCE);
4481.35Snisimura		CHECKINTR(SYS_DEV_SCSI, IOASIC_INTR_SCSI);
4491.1Sjonathan
4501.1Sjonathan		if (user_warned && ((intr & KMIN_INTR_PSWARN) == 0)) {
4511.1Sjonathan			printf("%s\n", "Power supply ok now.");
4521.1Sjonathan			user_warned = 0;
4531.1Sjonathan		}
4541.1Sjonathan		if ((intr & KMIN_INTR_PSWARN) && (user_warned < 3)) {
4551.1Sjonathan			user_warned++;
4561.1Sjonathan			printf("%s\n", "Power supply overheating");
4571.1Sjonathan		}
4581.1Sjonathan	}
4591.39Snisimura	if ((ipending & MIPS_INT_MASK_0) && intrtab[SYS_DEV_OPT0].ih_func) {
4601.35Snisimura		(*intrtab[SYS_DEV_OPT0].ih_func)(intrtab[SYS_DEV_OPT0].ih_arg);
4611.52Ssimonb		intrtab[SYS_DEV_OPT0].ih_count.ev_count++;
4621.1Sjonathan 	}
4631.12Ssimonb
4641.39Snisimura	if ((ipending & MIPS_INT_MASK_1) && intrtab[SYS_DEV_OPT1].ih_func) {
4651.35Snisimura		(*intrtab[SYS_DEV_OPT1].ih_func)(intrtab[SYS_DEV_OPT1].ih_arg);
4661.52Ssimonb		intrtab[SYS_DEV_OPT1].ih_count.ev_count++;
4671.1Sjonathan	}
4681.39Snisimura	if ((ipending & MIPS_INT_MASK_2) && intrtab[SYS_DEV_OPT2].ih_func) {
4691.35Snisimura		(*intrtab[SYS_DEV_OPT2].ih_func)(intrtab[SYS_DEV_OPT2].ih_arg);
4701.52Ssimonb		intrtab[SYS_DEV_OPT2].ih_count.ev_count++;
4711.1Sjonathan	}
4721.1Sjonathan
4731.10Sjonathandone:
4741.10Sjonathan	/* restore entry state */
4751.10Sjonathan	splhigh();
4761.10Sjonathan	intr_depth--;
4771.17Snisimura	*(u_int32_t *)(ioasic_base + IOASIC_IMSK) = old_mask;
4781.10Sjonathan
4791.42Snisimura	_splset(MIPS_SR_INT_IE | (status & ~cause & MIPS_HARD_INT_MASK));
4801.1Sjonathan}
4811.1Sjonathan
4821.1Sjonathan
4831.1Sjonathan
4841.1Sjonathan/*
4851.1Sjonathan ************************************************************************
4861.1Sjonathan * Extra functions
4871.1Sjonathan ************************************************************************
4881.1Sjonathan */
4891.14Snisimura
4901.31Ssimonbstatic void
4911.14Snisimurakn02ba_wbflush()
4921.14Snisimura{
4931.21Snisimura	/* read twice IOASIC_IMSK */
4941.54Sperry	__asm volatile("lw $0,%0; lw $0,%0" ::
4951.27Ssimonb	    "i"(MIPS_PHYS_TO_KSEG1(KMIN_REG_IMSK)));
4961.14Snisimura}
4971.14Snisimura
4981.59Sjoerg/*
4991.59Sjoerg * Support for using the MIPS 3 clock as a timecounter.
5001.59Sjoerg */
5011.59Sjoerg
5021.59Sjoergvoid
5031.59Sjoergdec_3min_tc_init(void)
5041.14Snisimura{
5051.59Sjoerg	static struct timecounter tc =  {
5061.59Sjoerg		.tc_get_timecount = (timecounter_get_t *)mips3_cp0_count_read,
5071.59Sjoerg		.tc_counter_mask = ~0u,
5081.59Sjoerg		.tc_name = "mips3_cp0_counter",
5091.59Sjoerg		.tc_quality = 100,
5101.59Sjoerg	};
5111.59Sjoerg
5121.59Sjoerg	if (MIPS_HAS_CLOCK) {
5131.59Sjoerg		tc.tc_frequency = cpu_mhz * 1000000;
5141.59Sjoerg		if (mips_cpu_flags & CPU_MIPS_DOUBLE_COUNT) {
5151.59Sjoerg			tc.tc_frequency /= 2;
5161.59Sjoerg		}
5171.59Sjoerg
5181.59Sjoerg		tc_init(&tc);
5191.14Snisimura	}
5201.1Sjonathan}
521