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iq80310_machdep.c revision 1.70.6.1
      1  1.70.6.1     haad /*	$NetBSD: iq80310_machdep.c,v 1.70.6.1 2008/12/13 01:13:08 haad Exp $	*/
      2      1.12  thorpej 
      3      1.12  thorpej /*
      4      1.48  thorpej  * Copyright (c) 2001, 2002, 2003 Wasabi Systems, Inc.
      5      1.12  thorpej  * All rights reserved.
      6      1.12  thorpej  *
      7      1.12  thorpej  * Written by Jason R. Thorpe for Wasabi Systems, Inc.
      8      1.12  thorpej  *
      9      1.12  thorpej  * Redistribution and use in source and binary forms, with or without
     10      1.12  thorpej  * modification, are permitted provided that the following conditions
     11      1.12  thorpej  * are met:
     12      1.12  thorpej  * 1. Redistributions of source code must retain the above copyright
     13      1.12  thorpej  *    notice, this list of conditions and the following disclaimer.
     14      1.12  thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     15      1.12  thorpej  *    notice, this list of conditions and the following disclaimer in the
     16      1.12  thorpej  *    documentation and/or other materials provided with the distribution.
     17      1.12  thorpej  * 3. All advertising materials mentioning features or use of this software
     18      1.12  thorpej  *    must display the following acknowledgement:
     19      1.12  thorpej  *	This product includes software developed for the NetBSD Project by
     20      1.12  thorpej  *	Wasabi Systems, Inc.
     21      1.12  thorpej  * 4. The name of Wasabi Systems, Inc. may not be used to endorse
     22      1.12  thorpej  *    or promote products derived from this software without specific prior
     23      1.12  thorpej  *    written permission.
     24      1.12  thorpej  *
     25      1.12  thorpej  * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
     26      1.12  thorpej  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     27      1.12  thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     28      1.12  thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL WASABI SYSTEMS, INC
     29      1.12  thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     30      1.12  thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     31      1.12  thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     32      1.12  thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     33      1.12  thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     34      1.12  thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     35      1.12  thorpej  * POSSIBILITY OF SUCH DAMAGE.
     36      1.12  thorpej  */
     37       1.1     matt 
     38       1.1     matt /*
     39       1.1     matt  * Copyright (c) 1997,1998 Mark Brinicombe.
     40       1.1     matt  * Copyright (c) 1997,1998 Causality Limited.
     41       1.1     matt  * All rights reserved.
     42       1.1     matt  *
     43       1.1     matt  * Redistribution and use in source and binary forms, with or without
     44       1.1     matt  * modification, are permitted provided that the following conditions
     45       1.1     matt  * are met:
     46       1.1     matt  * 1. Redistributions of source code must retain the above copyright
     47       1.1     matt  *    notice, this list of conditions and the following disclaimer.
     48       1.1     matt  * 2. Redistributions in binary form must reproduce the above copyright
     49       1.1     matt  *    notice, this list of conditions and the following disclaimer in the
     50       1.1     matt  *    documentation and/or other materials provided with the distribution.
     51       1.1     matt  * 3. All advertising materials mentioning features or use of this software
     52       1.1     matt  *    must display the following acknowledgement:
     53       1.1     matt  *	This product includes software developed by Mark Brinicombe
     54       1.1     matt  *	for the NetBSD Project.
     55       1.1     matt  * 4. The name of the company nor the name of the author may be used to
     56       1.1     matt  *    endorse or promote products derived from this software without specific
     57       1.1     matt  *    prior written permission.
     58       1.1     matt  *
     59       1.1     matt  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
     60       1.1     matt  * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
     61       1.1     matt  * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     62       1.1     matt  * IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
     63       1.1     matt  * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
     64       1.1     matt  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     65       1.1     matt  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     66       1.1     matt  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     67       1.1     matt  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     68       1.1     matt  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     69       1.1     matt  * SUCH DAMAGE.
     70       1.1     matt  *
     71       1.2  thorpej  * Machine dependant functions for kernel setup for Intel IQ80310 evaluation
     72       1.2  thorpej  * boards using RedBoot firmware.
     73       1.1     matt  */
     74      1.61    lukem 
     75      1.61    lukem #include <sys/cdefs.h>
     76  1.70.6.1     haad __KERNEL_RCSID(0, "$NetBSD: iq80310_machdep.c,v 1.70.6.1 2008/12/13 01:13:08 haad Exp $");
     77       1.1     matt 
     78       1.1     matt #include "opt_ddb.h"
     79       1.1     matt #include "opt_pmap_debug.h"
     80       1.1     matt 
     81       1.1     matt #include <sys/param.h>
     82       1.1     matt #include <sys/device.h>
     83       1.1     matt #include <sys/systm.h>
     84       1.1     matt #include <sys/kernel.h>
     85       1.1     matt #include <sys/exec.h>
     86       1.1     matt #include <sys/proc.h>
     87       1.1     matt #include <sys/msgbuf.h>
     88       1.1     matt #include <sys/reboot.h>
     89       1.1     matt #include <sys/termios.h>
     90      1.50    ragge #include <sys/ksyms.h>
     91       1.1     matt 
     92      1.47  thorpej #include <uvm/uvm_extern.h>
     93      1.47  thorpej 
     94       1.1     matt #include <dev/cons.h>
     95       1.1     matt 
     96       1.1     matt #include <machine/db_machdep.h>
     97       1.1     matt #include <ddb/db_sym.h>
     98       1.1     matt #include <ddb/db_extern.h>
     99       1.1     matt 
    100       1.1     matt #include <machine/bootconfig.h>
    101       1.1     matt #include <machine/bus.h>
    102       1.1     matt #include <machine/cpu.h>
    103       1.1     matt #include <machine/frame.h>
    104      1.10  thorpej #include <arm/undefined.h>
    105       1.1     matt 
    106      1.16  thorpej #include <arm/arm32/machdep.h>
    107      1.16  thorpej 
    108       1.1     matt #include <arm/xscale/i80312reg.h>
    109       1.1     matt #include <arm/xscale/i80312var.h>
    110       1.1     matt 
    111       1.3  thorpej #include <dev/pci/ppbreg.h>
    112       1.3  thorpej 
    113       1.2  thorpej #include <evbarm/iq80310/iq80310reg.h>
    114       1.2  thorpej #include <evbarm/iq80310/iq80310var.h>
    115       1.2  thorpej #include <evbarm/iq80310/obiovar.h>
    116       1.2  thorpej 
    117      1.50    ragge #include "ksyms.h"
    118      1.54  thorpej 
    119      1.54  thorpej /* Kernel text starts 2MB in from the bottom of the kernel address space. */
    120      1.54  thorpej #define	KERNEL_TEXT_BASE	(KERNEL_BASE + 0x00200000)
    121      1.56  thorpej #define	KERNEL_VM_BASE		(KERNEL_BASE + 0x01000000)
    122      1.57  thorpej 
    123      1.57  thorpej /*
    124      1.57  thorpej  * The range 0xc1000000 - 0xccffffff is available for kernel VM space
    125      1.57  thorpej  * Core-logic registers and I/O mappings occupy 0xfd000000 - 0xffffffff
    126      1.57  thorpej  */
    127      1.57  thorpej #define KERNEL_VM_SIZE		0x0C000000
    128       1.1     matt 
    129       1.1     matt /*
    130       1.1     matt  * Address to call from cpu_reset() to reset the machine.
    131       1.1     matt  * This is machine architecture dependant as it varies depending
    132       1.1     matt  * on where the ROM appears when you turn the MMU off.
    133       1.1     matt  */
    134       1.1     matt 
    135       1.2  thorpej u_int cpu_reset_address = 0;
    136       1.1     matt 
    137       1.1     matt /* Define various stack sizes in pages */
    138       1.1     matt #define IRQ_STACK_SIZE	1
    139       1.1     matt #define ABT_STACK_SIZE	1
    140       1.1     matt #define UND_STACK_SIZE	1
    141       1.1     matt 
    142       1.1     matt BootConfig bootconfig;		/* Boot config storage */
    143       1.1     matt char *boot_args = NULL;
    144       1.1     matt char *boot_file = NULL;
    145       1.1     matt 
    146       1.1     matt vm_offset_t physical_start;
    147       1.1     matt vm_offset_t physical_freestart;
    148       1.1     matt vm_offset_t physical_freeend;
    149       1.1     matt vm_offset_t physical_end;
    150       1.1     matt u_int free_pages;
    151       1.1     matt vm_offset_t pagetables_start;
    152       1.1     matt int physmem = 0;
    153       1.1     matt 
    154       1.1     matt /*int debug_flags;*/
    155       1.1     matt #ifndef PMAP_STATIC_L1S
    156       1.1     matt int max_processes = 64;			/* Default number */
    157       1.1     matt #endif	/* !PMAP_STATIC_L1S */
    158       1.1     matt 
    159       1.1     matt /* Physical and virtual addresses for some global pages */
    160       1.1     matt pv_addr_t irqstack;
    161       1.1     matt pv_addr_t undstack;
    162       1.1     matt pv_addr_t abtstack;
    163       1.1     matt pv_addr_t kernelstack;
    164       1.8  thorpej pv_addr_t minidataclean;
    165       1.1     matt 
    166       1.1     matt vm_offset_t msgbufphys;
    167       1.1     matt 
    168       1.1     matt extern u_int data_abort_handler_address;
    169       1.1     matt extern u_int prefetch_abort_handler_address;
    170       1.1     matt extern u_int undefined_handler_address;
    171       1.1     matt 
    172       1.1     matt #ifdef PMAP_DEBUG
    173       1.1     matt extern int pmap_debug_level;
    174       1.1     matt #endif
    175       1.1     matt 
    176      1.27  thorpej #define KERNEL_PT_SYS		0	/* L2 table for mapping zero page */
    177      1.27  thorpej 
    178      1.27  thorpej #define KERNEL_PT_KERNEL	1	/* L2 table for mapping kernel */
    179      1.62  thorpej #define	KERNEL_PT_KERNEL_NUM	4
    180      1.27  thorpej 
    181      1.27  thorpej 					/* L2 table for mapping i80312 */
    182      1.27  thorpej #define	KERNEL_PT_IOPXS		(KERNEL_PT_KERNEL + KERNEL_PT_KERNEL_NUM)
    183      1.27  thorpej 
    184      1.27  thorpej 					/* L2 tables for mapping kernel VM */
    185      1.27  thorpej #define KERNEL_PT_VMDATA	(KERNEL_PT_IOPXS + 1)
    186      1.32    chris #define	KERNEL_PT_VMDATA_NUM	4	/* start with 16MB of KVM */
    187       1.1     matt #define NUM_KERNEL_PTS		(KERNEL_PT_VMDATA + KERNEL_PT_VMDATA_NUM)
    188       1.1     matt 
    189      1.27  thorpej pv_addr_t kernel_pt_table[NUM_KERNEL_PTS];
    190       1.1     matt 
    191       1.1     matt struct user *proc0paddr;
    192       1.1     matt 
    193       1.1     matt /* Prototypes */
    194       1.1     matt 
    195       1.2  thorpej void	consinit(void);
    196       1.1     matt 
    197       1.1     matt #include "com.h"
    198       1.2  thorpej #if NCOM > 0
    199       1.1     matt #include <dev/ic/comreg.h>
    200       1.1     matt #include <dev/ic/comvar.h>
    201       1.1     matt #endif
    202       1.1     matt 
    203      1.20  thorpej /*
    204      1.20  thorpej  * Define the default console speed for the board.  This is generally
    205      1.20  thorpej  * what the firmware provided with the board defaults to.
    206      1.20  thorpej  */
    207       1.1     matt #ifndef CONSPEED
    208      1.20  thorpej #define CONSPEED B115200
    209      1.20  thorpej #endif /* ! CONSPEED */
    210      1.20  thorpej 
    211      1.20  thorpej #ifndef CONUNIT
    212      1.20  thorpej #define	CONUNIT	0
    213       1.1     matt #endif
    214      1.20  thorpej 
    215       1.1     matt #ifndef CONMODE
    216       1.1     matt #define CONMODE ((TTYDEF_CFLAG & ~(CSIZE | CSTOPB | PARENB)) | CS8) /* 8N1 */
    217      1.15  thorpej #endif
    218       1.1     matt 
    219       1.1     matt int comcnspeed = CONSPEED;
    220       1.1     matt int comcnmode = CONMODE;
    221      1.15  thorpej int comcnunit = CONUNIT;
    222       1.1     matt 
    223       1.1     matt /*
    224       1.1     matt  * void cpu_reboot(int howto, char *bootstr)
    225       1.1     matt  *
    226       1.1     matt  * Reboots the system
    227       1.1     matt  *
    228       1.1     matt  * Deal with any syncing, unmounting, dumping and shutdown hooks,
    229       1.1     matt  * then reset the CPU.
    230       1.1     matt  */
    231       1.1     matt void
    232       1.1     matt cpu_reboot(int howto, char *bootstr)
    233       1.1     matt {
    234       1.1     matt 
    235       1.1     matt 	/*
    236       1.1     matt 	 * If we are still cold then hit the air brakes
    237       1.1     matt 	 * and crash to earth fast
    238       1.1     matt 	 */
    239       1.1     matt 	if (cold) {
    240       1.1     matt 		doshutdownhooks();
    241  1.70.6.1     haad 		pmf_system_shutdown(boothowto);
    242       1.1     matt 		printf("The operating system has halted.\n");
    243       1.1     matt 		printf("Please press any key to reboot.\n\n");
    244       1.1     matt 		cngetc();
    245       1.1     matt 		printf("rebooting...\n");
    246       1.1     matt 		cpu_reset();
    247       1.1     matt 		/*NOTREACHED*/
    248       1.1     matt 	}
    249       1.1     matt 
    250       1.1     matt 	/* Disable console buffering */
    251       1.1     matt 
    252       1.1     matt 	/*
    253       1.1     matt 	 * If RB_NOSYNC was not specified sync the discs.
    254       1.2  thorpej 	 * Note: Unless cold is set to 1 here, syslogd will die during the
    255       1.2  thorpej 	 * unmount.  It looks like syslogd is getting woken up only to find
    256       1.2  thorpej 	 * that it cannot page part of the binary in as the filesystem has
    257       1.2  thorpej 	 * been unmounted.
    258       1.1     matt 	 */
    259       1.1     matt 	if (!(howto & RB_NOSYNC))
    260       1.1     matt 		bootsync();
    261       1.1     matt 
    262       1.1     matt 	/* Say NO to interrupts */
    263       1.1     matt 	splhigh();
    264       1.1     matt 
    265       1.1     matt 	/* Do a dump if requested. */
    266       1.1     matt 	if ((howto & (RB_DUMP | RB_HALT)) == RB_DUMP)
    267       1.1     matt 		dumpsys();
    268       1.1     matt 
    269       1.1     matt 	/* Run any shutdown hooks */
    270       1.1     matt 	doshutdownhooks();
    271       1.1     matt 
    272  1.70.6.1     haad 	pmf_system_shutdown(boothowto);
    273  1.70.6.1     haad 
    274       1.1     matt 	/* Make sure IRQ's are disabled */
    275       1.1     matt 	IRQdisable;
    276       1.1     matt 
    277       1.1     matt 	if (howto & RB_HALT) {
    278      1.40  thorpej 		iq80310_7seg('.', '.');
    279       1.1     matt 		printf("The operating system has halted.\n");
    280       1.1     matt 		printf("Please press any key to reboot.\n\n");
    281       1.1     matt 		cngetc();
    282       1.1     matt 	}
    283       1.1     matt 
    284       1.1     matt 	printf("rebooting...\n");
    285       1.1     matt 	cpu_reset();
    286       1.1     matt 	/*NOTREACHED*/
    287       1.1     matt }
    288       1.1     matt 
    289      1.59  thorpej /* Static device mappings. */
    290      1.59  thorpej static const struct pmap_devmap iq80310_devmap[] = {
    291       1.2  thorpej     /*
    292       1.2  thorpej      * Map the on-board devices VA == PA so that we can access them
    293       1.2  thorpej      * with the MMU on or off.
    294       1.2  thorpej      */
    295       1.2  thorpej     {
    296       1.2  thorpej 	IQ80310_OBIO_BASE,
    297       1.2  thorpej 	IQ80310_OBIO_BASE,
    298       1.2  thorpej 	IQ80310_OBIO_SIZE,
    299      1.21  thorpej 	VM_PROT_READ|VM_PROT_WRITE,
    300      1.21  thorpej 	PTE_NOCACHE,
    301       1.2  thorpej     },
    302      1.59  thorpej     {
    303      1.59  thorpej 	IQ80310_PIOW_VBASE,
    304      1.59  thorpej 	I80312_PCI_XLATE_PIOW_BASE,
    305      1.59  thorpej 	I80312_PCI_XLATE_IOSIZE,
    306      1.59  thorpej 	VM_PROT_READ|VM_PROT_WRITE,
    307      1.59  thorpej 	PTE_NOCACHE,
    308      1.59  thorpej     },
    309      1.59  thorpej     {
    310      1.59  thorpej 	IQ80310_SIOW_VBASE,
    311      1.59  thorpej 	I80312_PCI_XLATE_SIOW_BASE,
    312      1.59  thorpej 	I80312_PCI_XLATE_IOSIZE,
    313      1.59  thorpej 	VM_PROT_READ|VM_PROT_WRITE,
    314      1.59  thorpej 	PTE_NOCACHE,
    315      1.59  thorpej     },
    316      1.59  thorpej     {
    317      1.59  thorpej 	IQ80310_80312_VBASE,
    318      1.59  thorpej 	I80312_PMMR_BASE,
    319      1.59  thorpej 	I80312_PMMR_SIZE,
    320      1.59  thorpej 	VM_PROT_READ|VM_PROT_WRITE,
    321      1.59  thorpej 	PTE_NOCACHE,
    322      1.59  thorpej     },
    323       1.2  thorpej 
    324       1.1     matt     {
    325       1.1     matt 	0,
    326       1.1     matt 	0,
    327       1.1     matt 	0,
    328       1.1     matt 	0,
    329      1.21  thorpej 	0,
    330       1.1     matt     }
    331       1.1     matt };
    332       1.1     matt 
    333       1.1     matt /*
    334       1.2  thorpej  * u_int initarm(...)
    335       1.1     matt  *
    336       1.1     matt  * Initial entry point on startup. This gets called before main() is
    337       1.1     matt  * entered.
    338       1.1     matt  * It should be responsible for setting up everything that must be
    339       1.1     matt  * in place when main is called.
    340       1.1     matt  * This includes
    341       1.1     matt  *   Taking a copy of the boot configuration structure.
    342       1.1     matt  *   Initialising the physical console so characters can be printed.
    343       1.1     matt  *   Setting up page tables for the kernel
    344       1.1     matt  *   Relocating the kernel to the bottom of physical memory
    345       1.1     matt  */
    346       1.1     matt u_int
    347      1.16  thorpej initarm(void *arg)
    348       1.1     matt {
    349      1.38  thorpej 	extern vaddr_t xscale_cache_clean_addr;
    350      1.46  thorpej #ifdef DIAGNOSTIC
    351       1.8  thorpej 	extern vsize_t xscale_minidata_clean_size;
    352      1.46  thorpej #endif
    353       1.1     matt 	int loop;
    354       1.1     matt 	int loop1;
    355       1.1     matt 	u_int l1pagetable;
    356       1.2  thorpej 	paddr_t memstart;
    357       1.2  thorpej 	psize_t memsize;
    358       1.2  thorpej 
    359       1.2  thorpej 	/*
    360       1.2  thorpej 	 * Clear out the 7-segment display.  Whee, the first visual
    361       1.2  thorpej 	 * indication that we're running kernel code.
    362       1.2  thorpej 	 */
    363       1.2  thorpej 	iq80310_7seg(' ', ' ');
    364       1.1     matt 
    365       1.1     matt 	/*
    366       1.1     matt 	 * Heads up ... Setup the CPU / MMU / TLB functions
    367       1.1     matt 	 */
    368       1.1     matt 	if (set_cpufuncs())
    369      1.63      wiz 		panic("CPU not recognized!");
    370       1.1     matt 
    371       1.2  thorpej 	/* Calibrate the delay loop. */
    372       1.2  thorpej 	iq80310_calibrate_delay();
    373       1.1     matt 
    374       1.1     matt 	/*
    375       1.2  thorpej 	 * Since we map the on-board devices VA==PA, and the kernel
    376       1.2  thorpej 	 * is running VA==PA, it's possible for us to initialize
    377       1.2  thorpej 	 * the console now.
    378       1.1     matt 	 */
    379       1.2  thorpej 	consinit();
    380       1.1     matt 
    381      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    382       1.1     matt 	/* Talk to the user */
    383       1.2  thorpej 	printf("\nNetBSD/evbarm (IQ80310) booting ...\n");
    384      1.55  thorpej #endif
    385       1.1     matt 
    386       1.1     matt 	/*
    387       1.3  thorpej 	 * Reset the secondary PCI bus.  RedBoot doesn't stop devices
    388       1.3  thorpej 	 * on the PCI bus before handing us control, so we have to
    389       1.3  thorpej 	 * do this.
    390       1.3  thorpej 	 *
    391       1.3  thorpej 	 * XXX This is arguably a bug in RedBoot, and doing this reset
    392       1.3  thorpej 	 * XXX could be problematic in the future if we encounter an
    393       1.3  thorpej 	 * XXX application where the PPB in the i80312 is used as a
    394       1.3  thorpej 	 * XXX PPB.
    395       1.3  thorpej 	 */
    396       1.3  thorpej 	{
    397       1.3  thorpej 		uint32_t reg;
    398       1.3  thorpej 
    399      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    400       1.3  thorpej 		printf("Resetting secondary PCI bus...\n");
    401      1.55  thorpej #endif
    402       1.3  thorpej 		reg = bus_space_read_4(&obio_bs_tag,
    403       1.3  thorpej 		    I80312_PMMR_BASE + I80312_PPB_BASE, PPB_REG_BRIDGECONTROL);
    404       1.3  thorpej 		bus_space_write_4(&obio_bs_tag,
    405       1.3  thorpej 		    I80312_PMMR_BASE + I80312_PPB_BASE, PPB_REG_BRIDGECONTROL,
    406       1.3  thorpej 		    reg | PPB_BC_SECONDARY_RESET);
    407       1.3  thorpej 		delay(10 * 1000);	/* 10ms enough? */
    408       1.3  thorpej 		bus_space_write_4(&obio_bs_tag,
    409       1.3  thorpej 		    I80312_PMMR_BASE + I80312_PPB_BASE, PPB_REG_BRIDGECONTROL,
    410       1.3  thorpej 		    reg);
    411       1.3  thorpej 	}
    412       1.3  thorpej 
    413       1.3  thorpej 	/*
    414      1.33  thorpej 	 * We are currently running with the MMU enabled and the
    415      1.33  thorpej 	 * entire address space mapped VA==PA, except for the
    416      1.33  thorpej 	 * first 64M of RAM is also double-mapped at 0xc0000000.
    417      1.33  thorpej 	 * There is an L1 page table at 0xa0004000.
    418       1.1     matt 	 */
    419       1.1     matt 
    420       1.2  thorpej 	/*
    421      1.65      abs 	 * Fetch the SDRAM start/size from the i80312 SDRAM configuration
    422       1.2  thorpej 	 * registers.
    423       1.2  thorpej 	 */
    424       1.3  thorpej 	i80312_sdram_bounds(&obio_bs_tag, I80312_PMMR_BASE + I80312_MEM_BASE,
    425       1.3  thorpej 	    &memstart, &memsize);
    426       1.2  thorpej 
    427      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    428       1.1     matt 	printf("initarm: Configuring system ...\n");
    429      1.55  thorpej #endif
    430       1.1     matt 
    431       1.2  thorpej 	/* Fake bootconfig structure for the benefit of pmap.c */
    432      1.68      wiz 	/* XXX must make the memory description h/w independent */
    433       1.2  thorpej 	bootconfig.dramblocks = 1;
    434       1.2  thorpej 	bootconfig.dram[0].address = memstart;
    435      1.47  thorpej 	bootconfig.dram[0].pages = memsize / PAGE_SIZE;
    436       1.2  thorpej 
    437       1.1     matt 	/*
    438       1.1     matt 	 * Set up the variables that define the availablilty of
    439       1.2  thorpej 	 * physical memory.  For now, we're going to set
    440       1.2  thorpej 	 * physical_freestart to 0xa0200000 (where the kernel
    441       1.2  thorpej 	 * was loaded), and allocate the memory we need downwards.
    442      1.33  thorpej 	 * If we get too close to the L1 table that we set up, we
    443      1.33  thorpej 	 * will panic.  We will update physical_freestart and
    444      1.33  thorpej 	 * physical_freeend later to reflect what pmap_bootstrap()
    445       1.2  thorpej 	 * wants to see.
    446       1.2  thorpej 	 *
    447       1.2  thorpej 	 * XXX pmap_bootstrap() needs an enema.
    448       1.1     matt 	 */
    449       1.2  thorpej 	physical_start = bootconfig.dram[0].address;
    450      1.47  thorpej 	physical_end = physical_start + (bootconfig.dram[0].pages * PAGE_SIZE);
    451       1.2  thorpej 
    452       1.2  thorpej 	physical_freestart = 0xa0009000UL;
    453       1.2  thorpej 	physical_freeend = 0xa0200000UL;
    454       1.2  thorpej 
    455      1.47  thorpej 	physmem = (physical_end - physical_start) / PAGE_SIZE;
    456       1.1     matt 
    457      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    458       1.1     matt 	/* Tell the user about the memory */
    459       1.1     matt 	printf("physmemory: %d pages at 0x%08lx -> 0x%08lx\n", physmem,
    460       1.1     matt 	    physical_start, physical_end - 1);
    461      1.55  thorpej #endif
    462       1.1     matt 
    463       1.1     matt 	/*
    464       1.2  thorpej 	 * Okay, the kernel starts 2MB in from the bottom of physical
    465       1.2  thorpej 	 * memory.  We are going to allocate our bootstrap pages downwards
    466       1.2  thorpej 	 * from there.
    467       1.2  thorpej 	 *
    468       1.2  thorpej 	 * We need to allocate some fixed page tables to get the kernel
    469       1.2  thorpej 	 * going.  We allocate one page directory and a number of page
    470       1.2  thorpej 	 * tables and store the physical addresses in the kernel_pt_table
    471       1.2  thorpej 	 * array.
    472       1.1     matt 	 *
    473       1.2  thorpej 	 * The kernel page directory must be on a 16K boundary.  The page
    474      1.65      abs 	 * tables must be on 4K boundaries.  What we do is allocate the
    475       1.2  thorpej 	 * page directory on the first 16K boundary that we encounter, and
    476       1.2  thorpej 	 * the page tables on 4K boundaries otherwise.  Since we allocate
    477       1.2  thorpej 	 * at least 3 L2 page tables, we are guaranteed to encounter at
    478       1.2  thorpej 	 * least one 16K aligned region.
    479       1.1     matt 	 */
    480       1.1     matt 
    481       1.1     matt #ifdef VERBOSE_INIT_ARM
    482       1.1     matt 	printf("Allocating page tables\n");
    483       1.1     matt #endif
    484       1.1     matt 
    485      1.47  thorpej 	free_pages = (physical_freeend - physical_freestart) / PAGE_SIZE;
    486       1.1     matt 
    487       1.1     matt #ifdef VERBOSE_INIT_ARM
    488       1.2  thorpej 	printf("freestart = 0x%08lx, free_pages = %d (0x%08x)\n",
    489       1.1     matt 	       physical_freestart, free_pages, free_pages);
    490       1.1     matt #endif
    491       1.1     matt 
    492       1.1     matt 	/* Define a macro to simplify memory allocation */
    493       1.2  thorpej #define	valloc_pages(var, np)				\
    494       1.2  thorpej 	alloc_pages((var).pv_pa, (np));			\
    495       1.1     matt 	(var).pv_va = KERNEL_BASE + (var).pv_pa - physical_start;
    496       1.1     matt 
    497       1.2  thorpej #define alloc_pages(var, np)				\
    498      1.47  thorpej 	physical_freeend -= ((np) * PAGE_SIZE);		\
    499       1.2  thorpej 	if (physical_freeend < physical_freestart)	\
    500       1.2  thorpej 		panic("initarm: out of memory");	\
    501       1.2  thorpej 	(var) = physical_freeend;			\
    502       1.2  thorpej 	free_pages -= (np);				\
    503      1.47  thorpej 	memset((char *)(var), 0, ((np) * PAGE_SIZE));
    504       1.1     matt 
    505       1.1     matt 	loop1 = 0;
    506       1.1     matt 	for (loop = 0; loop <= NUM_KERNEL_PTS; ++loop) {
    507       1.1     matt 		/* Are we 16KB aligned for an L1 ? */
    508      1.37  thorpej 		if (((physical_freeend - L1_TABLE_SIZE) & (L1_TABLE_SIZE - 1)) == 0
    509       1.1     matt 		    && kernel_l1pt.pv_pa == 0) {
    510      1.47  thorpej 			valloc_pages(kernel_l1pt, L1_TABLE_SIZE / PAGE_SIZE);
    511       1.1     matt 		} else {
    512      1.48  thorpej 			valloc_pages(kernel_pt_table[loop1],
    513      1.48  thorpej 			    L2_TABLE_SIZE / PAGE_SIZE);
    514       1.1     matt 			++loop1;
    515       1.1     matt 		}
    516       1.1     matt 	}
    517       1.1     matt 
    518       1.1     matt 	/* This should never be able to happen but better confirm that. */
    519      1.37  thorpej 	if (!kernel_l1pt.pv_pa || (kernel_l1pt.pv_pa & (L1_TABLE_SIZE-1)) != 0)
    520      1.45   provos 		panic("initarm: Failed to align the kernel page directory");
    521       1.1     matt 
    522       1.1     matt 	/*
    523       1.1     matt 	 * Allocate a page for the system page mapped to V0x00000000
    524       1.1     matt 	 * This page will just contain the system vectors and can be
    525       1.1     matt 	 * shared by all processes.
    526       1.1     matt 	 */
    527       1.1     matt 	alloc_pages(systempage.pv_pa, 1);
    528       1.1     matt 
    529       1.1     matt 	/* Allocate stacks for all modes */
    530       1.1     matt 	valloc_pages(irqstack, IRQ_STACK_SIZE);
    531       1.1     matt 	valloc_pages(abtstack, ABT_STACK_SIZE);
    532       1.1     matt 	valloc_pages(undstack, UND_STACK_SIZE);
    533       1.1     matt 	valloc_pages(kernelstack, UPAGES);
    534       1.1     matt 
    535       1.8  thorpej 	/* Allocate enough pages for cleaning the Mini-Data cache. */
    536      1.47  thorpej 	KASSERT(xscale_minidata_clean_size <= PAGE_SIZE);
    537       1.8  thorpej 	valloc_pages(minidataclean, 1);
    538       1.8  thorpej 
    539       1.1     matt #ifdef VERBOSE_INIT_ARM
    540       1.2  thorpej 	printf("IRQ stack: p0x%08lx v0x%08lx\n", irqstack.pv_pa,
    541       1.2  thorpej 	    irqstack.pv_va);
    542       1.2  thorpej 	printf("ABT stack: p0x%08lx v0x%08lx\n", abtstack.pv_pa,
    543       1.2  thorpej 	    abtstack.pv_va);
    544       1.2  thorpej 	printf("UND stack: p0x%08lx v0x%08lx\n", undstack.pv_pa,
    545       1.2  thorpej 	    undstack.pv_va);
    546       1.2  thorpej 	printf("SVC stack: p0x%08lx v0x%08lx\n", kernelstack.pv_pa,
    547       1.2  thorpej 	    kernelstack.pv_va);
    548       1.1     matt #endif
    549       1.1     matt 
    550       1.2  thorpej 	/*
    551       1.2  thorpej 	 * XXX Defer this to later so that we can reclaim the memory
    552       1.2  thorpej 	 * XXX used by the RedBoot page tables.
    553       1.2  thorpej 	 */
    554      1.47  thorpej 	alloc_pages(msgbufphys, round_page(MSGBUFSIZE) / PAGE_SIZE);
    555       1.1     matt 
    556       1.1     matt 	/*
    557       1.1     matt 	 * Ok we have allocated physical pages for the primary kernel
    558       1.1     matt 	 * page tables
    559       1.1     matt 	 */
    560       1.1     matt 
    561       1.1     matt #ifdef VERBOSE_INIT_ARM
    562       1.2  thorpej 	printf("Creating L1 page table at 0x%08lx\n", kernel_l1pt.pv_pa);
    563       1.1     matt #endif
    564       1.1     matt 
    565       1.1     matt 	/*
    566      1.24    skrll 	 * Now we start construction of the L1 page table
    567       1.1     matt 	 * We start by mapping the L2 page tables into the L1.
    568       1.1     matt 	 * This means that we can replace L1 mappings later on if necessary
    569       1.1     matt 	 */
    570       1.1     matt 	l1pagetable = kernel_l1pt.pv_pa;
    571       1.1     matt 
    572       1.1     matt 	/* Map the L2 pages tables in the L1 page table */
    573      1.49  thorpej 	pmap_link_l2pt(l1pagetable, ARM_VECTORS_HIGH & ~(0x00400000 - 1),
    574      1.27  thorpej 	    &kernel_pt_table[KERNEL_PT_SYS]);
    575      1.27  thorpej 	for (loop = 0; loop < KERNEL_PT_KERNEL_NUM; loop++)
    576      1.27  thorpej 		pmap_link_l2pt(l1pagetable, KERNEL_BASE + loop * 0x00400000,
    577      1.27  thorpej 		    &kernel_pt_table[KERNEL_PT_KERNEL + loop]);
    578      1.23  thorpej 	pmap_link_l2pt(l1pagetable, IQ80310_IOPXS_VBASE,
    579      1.27  thorpej 	    &kernel_pt_table[KERNEL_PT_IOPXS]);
    580      1.27  thorpej 	for (loop = 0; loop < KERNEL_PT_VMDATA_NUM; loop++)
    581      1.23  thorpej 		pmap_link_l2pt(l1pagetable, KERNEL_VM_BASE + loop * 0x00400000,
    582      1.27  thorpej 		    &kernel_pt_table[KERNEL_PT_VMDATA + loop]);
    583      1.32    chris 
    584      1.32    chris 	/* update the top of the kernel VM */
    585      1.33  thorpej 	pmap_curmaxkvaddr =
    586      1.35  thorpej 	    KERNEL_VM_BASE + (KERNEL_PT_VMDATA_NUM * 0x00400000);
    587       1.1     matt 
    588       1.1     matt #ifdef VERBOSE_INIT_ARM
    589       1.1     matt 	printf("Mapping kernel\n");
    590       1.1     matt #endif
    591       1.1     matt 
    592       1.1     matt 	/* Now we fill in the L2 pagetable for the kernel static code/data */
    593       1.1     matt 	{
    594       1.2  thorpej 		extern char etext[], _end[];
    595       1.2  thorpej 		size_t textsize = (uintptr_t) etext - KERNEL_TEXT_BASE;
    596       1.2  thorpej 		size_t totalsize = (uintptr_t) _end - KERNEL_TEXT_BASE;
    597       1.1     matt 		u_int logical;
    598       1.1     matt 
    599      1.14  thorpej 		textsize = (textsize + PGOFSET) & ~PGOFSET;
    600       1.1     matt 		totalsize = (totalsize + PGOFSET) & ~PGOFSET;
    601       1.2  thorpej 
    602       1.2  thorpej 		logical = 0x00200000;	/* offset of kernel in RAM */
    603       1.2  thorpej 
    604      1.27  thorpej 		logical += pmap_map_chunk(l1pagetable, KERNEL_BASE + logical,
    605       1.1     matt 		    physical_start + logical, textsize,
    606      1.25  thorpej 		    VM_PROT_READ|VM_PROT_WRITE, PTE_CACHE);
    607      1.27  thorpej 		logical += pmap_map_chunk(l1pagetable, KERNEL_BASE + logical,
    608       1.1     matt 		    physical_start + logical, totalsize - textsize,
    609      1.25  thorpej 		    VM_PROT_READ|VM_PROT_WRITE, PTE_CACHE);
    610       1.1     matt 	}
    611       1.1     matt 
    612       1.1     matt #ifdef VERBOSE_INIT_ARM
    613       1.1     matt 	printf("Constructing L2 page tables\n");
    614       1.1     matt #endif
    615       1.1     matt 
    616       1.1     matt 	/* Map the stack pages */
    617      1.27  thorpej 	pmap_map_chunk(l1pagetable, irqstack.pv_va, irqstack.pv_pa,
    618      1.47  thorpej 	    IRQ_STACK_SIZE * PAGE_SIZE, VM_PROT_READ|VM_PROT_WRITE, PTE_CACHE);
    619      1.27  thorpej 	pmap_map_chunk(l1pagetable, abtstack.pv_va, abtstack.pv_pa,
    620      1.47  thorpej 	    ABT_STACK_SIZE * PAGE_SIZE, VM_PROT_READ|VM_PROT_WRITE, PTE_CACHE);
    621      1.27  thorpej 	pmap_map_chunk(l1pagetable, undstack.pv_va, undstack.pv_pa,
    622      1.47  thorpej 	    UND_STACK_SIZE * PAGE_SIZE, VM_PROT_READ|VM_PROT_WRITE, PTE_CACHE);
    623      1.27  thorpej 	pmap_map_chunk(l1pagetable, kernelstack.pv_va, kernelstack.pv_pa,
    624      1.47  thorpej 	    UPAGES * PAGE_SIZE, VM_PROT_READ|VM_PROT_WRITE, PTE_CACHE);
    625      1.25  thorpej 
    626      1.48  thorpej 	pmap_map_chunk(l1pagetable, kernel_l1pt.pv_va, kernel_l1pt.pv_pa,
    627      1.48  thorpej 	    L1_TABLE_SIZE, VM_PROT_READ|VM_PROT_WRITE, PTE_PAGETABLE);
    628      1.48  thorpej 
    629      1.48  thorpej 	for (loop = 0; loop < NUM_KERNEL_PTS; ++loop) {
    630      1.48  thorpej 		pmap_map_chunk(l1pagetable, kernel_pt_table[loop].pv_va,
    631      1.48  thorpej 		    kernel_pt_table[loop].pv_pa, L2_TABLE_SIZE,
    632      1.48  thorpej 		    VM_PROT_READ|VM_PROT_WRITE, PTE_PAGETABLE);
    633      1.48  thorpej 	}
    634       1.1     matt 
    635       1.8  thorpej 	/* Map the Mini-Data cache clean area. */
    636      1.38  thorpej 	xscale_setup_minidata(l1pagetable, minidataclean.pv_va,
    637      1.38  thorpej 	    minidataclean.pv_pa);
    638       1.8  thorpej 
    639      1.36  thorpej 	/* Map the vector page. */
    640      1.49  thorpej 	pmap_map_entry(l1pagetable, ARM_VECTORS_HIGH, systempage.pv_pa,
    641      1.22  thorpej 	    VM_PROT_READ|VM_PROT_WRITE, PTE_CACHE);
    642       1.1     matt 
    643      1.59  thorpej 	/* Map the statically mapped devices. */
    644      1.59  thorpej 	pmap_devmap_bootstrap(l1pagetable, iq80310_devmap);
    645       1.8  thorpej 
    646       1.8  thorpej 	/*
    647       1.8  thorpej 	 * Give the XScale global cache clean code an appropriately
    648       1.8  thorpej 	 * sized chunk of unmapped VA space starting at 0xff000000
    649       1.8  thorpej 	 * (our device mappings end before this address).
    650       1.8  thorpej 	 */
    651       1.8  thorpej 	xscale_cache_clean_addr = 0xff000000U;
    652       1.1     matt 
    653       1.1     matt 	/*
    654       1.1     matt 	 * Now we have the real page tables in place so we can switch to them.
    655       1.2  thorpej 	 * Once this is done we will be running with the REAL kernel page
    656       1.2  thorpej 	 * tables.
    657       1.2  thorpej 	 */
    658       1.2  thorpej 
    659       1.2  thorpej 	/*
    660       1.2  thorpej 	 * Update the physical_freestart/physical_freeend/free_pages
    661       1.2  thorpej 	 * variables.
    662       1.1     matt 	 */
    663       1.2  thorpej 	{
    664       1.2  thorpej 		extern char _end[];
    665       1.2  thorpej 
    666      1.33  thorpej 		physical_freestart = physical_start +
    667      1.33  thorpej 		    (((((uintptr_t) _end) + PGOFSET) & ~PGOFSET) -
    668      1.33  thorpej 		     KERNEL_BASE);
    669       1.2  thorpej 		physical_freeend = physical_end;
    670      1.47  thorpej 		free_pages =
    671      1.47  thorpej 		    (physical_freeend - physical_freestart) / PAGE_SIZE;
    672       1.2  thorpej 	}
    673       1.1     matt 
    674       1.1     matt 	/* Switch tables */
    675       1.1     matt #ifdef VERBOSE_INIT_ARM
    676       1.2  thorpej 	printf("freestart = 0x%08lx, free_pages = %d (0x%x)\n",
    677       1.1     matt 	       physical_freestart, free_pages, free_pages);
    678       1.1     matt 	printf("switching to new L1 page table  @%#lx...", kernel_l1pt.pv_pa);
    679       1.1     matt #endif
    680      1.48  thorpej 	cpu_domains((DOMAIN_CLIENT << (PMAP_DOMAIN_KERNEL*2)) | DOMAIN_CLIENT);
    681       1.1     matt 	setttb(kernel_l1pt.pv_pa);
    682      1.30  thorpej 	cpu_tlb_flushID();
    683      1.48  thorpej 	cpu_domains(DOMAIN_CLIENT << (PMAP_DOMAIN_KERNEL*2));
    684      1.48  thorpej 
    685      1.48  thorpej 	/*
    686      1.48  thorpej 	 * Moved from cpu_startup() as data_abort_handler() references
    687      1.48  thorpej 	 * this during uvm init
    688      1.48  thorpej 	 */
    689      1.48  thorpej 	proc0paddr = (struct user *)kernelstack.pv_va;
    690      1.48  thorpej 	lwp0.l_addr = proc0paddr;
    691       1.1     matt 
    692       1.1     matt #ifdef VERBOSE_INIT_ARM
    693       1.1     matt 	printf("done!\n");
    694       1.1     matt #endif
    695       1.1     matt 
    696       1.1     matt #ifdef VERBOSE_INIT_ARM
    697       1.1     matt 	printf("bootstrap done.\n");
    698       1.1     matt #endif
    699       1.1     matt 
    700      1.49  thorpej 	arm32_vector_init(ARM_VECTORS_HIGH, ARM_VEC_ALL);
    701       1.1     matt 
    702       1.1     matt 	/*
    703       1.1     matt 	 * Pages were allocated during the secondary bootstrap for the
    704       1.1     matt 	 * stacks for different CPU modes.
    705       1.1     matt 	 * We must now set the r13 registers in the different CPU modes to
    706       1.1     matt 	 * point to these stacks.
    707       1.1     matt 	 * Since the ARM stacks use STMFD etc. we must set r13 to the top end
    708       1.1     matt 	 * of the stack memory.
    709       1.1     matt 	 */
    710      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    711       1.1     matt 	printf("init subsystems: stacks ");
    712      1.55  thorpej #endif
    713       1.1     matt 
    714      1.47  thorpej 	set_stackptr(PSR_IRQ32_MODE,
    715      1.47  thorpej 	    irqstack.pv_va + IRQ_STACK_SIZE * PAGE_SIZE);
    716      1.47  thorpej 	set_stackptr(PSR_ABT32_MODE,
    717      1.47  thorpej 	    abtstack.pv_va + ABT_STACK_SIZE * PAGE_SIZE);
    718      1.47  thorpej 	set_stackptr(PSR_UND32_MODE,
    719      1.47  thorpej 	    undstack.pv_va + UND_STACK_SIZE * PAGE_SIZE);
    720       1.1     matt 
    721       1.1     matt 	/*
    722       1.1     matt 	 * Well we should set a data abort handler.
    723       1.2  thorpej 	 * Once things get going this will change as we will need a proper
    724       1.2  thorpej 	 * handler.
    725       1.1     matt 	 * Until then we will use a handler that just panics but tells us
    726       1.1     matt 	 * why.
    727       1.1     matt 	 * Initialisation of the vectors will just panic on a data abort.
    728      1.64      abs 	 * This just fills in a slightly better one.
    729       1.1     matt 	 */
    730      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    731       1.1     matt 	printf("vectors ");
    732      1.55  thorpej #endif
    733       1.1     matt 	data_abort_handler_address = (u_int)data_abort_handler;
    734       1.1     matt 	prefetch_abort_handler_address = (u_int)prefetch_abort_handler;
    735       1.1     matt 	undefined_handler_address = (u_int)undefinedinstruction_bounce;
    736       1.1     matt 
    737       1.1     matt 	/* Initialise the undefined instruction handlers */
    738      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    739       1.1     matt 	printf("undefined ");
    740      1.55  thorpej #endif
    741       1.1     matt 	undefined_init();
    742       1.1     matt 
    743      1.42  thorpej 	/* Load memory into UVM. */
    744      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    745      1.42  thorpej 	printf("page ");
    746      1.55  thorpej #endif
    747      1.42  thorpej 	uvm_setpagesize();	/* initialize PAGE_SIZE-dependent variables */
    748      1.42  thorpej 	uvm_page_physload(atop(physical_freestart), atop(physical_freeend),
    749      1.42  thorpej 	    atop(physical_freestart), atop(physical_freeend),
    750      1.42  thorpej 	    VM_FREELIST_DEFAULT);
    751      1.42  thorpej 
    752       1.1     matt 	/* Boot strap pmap telling it where the kernel page table is */
    753      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    754       1.1     matt 	printf("pmap ");
    755      1.55  thorpej #endif
    756      1.70     matt 	pmap_bootstrap(KERNEL_VM_BASE, KERNEL_VM_BASE + KERNEL_VM_SIZE);
    757       1.1     matt 
    758       1.1     matt 	/* Setup the IRQ system */
    759      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    760       1.1     matt 	printf("irq ");
    761      1.55  thorpej #endif
    762      1.18  thorpej 	iq80310_intr_init();
    763      1.55  thorpej 
    764      1.55  thorpej #ifdef VERBOSE_INIT_ARM
    765       1.1     matt 	printf("done.\n");
    766      1.55  thorpej #endif
    767       1.1     matt 
    768       1.1     matt #ifdef DDB
    769       1.1     matt 	db_machine_init();
    770       1.1     matt 	if (boothowto & RB_KDB)
    771       1.1     matt 		Debugger();
    772       1.1     matt #endif
    773       1.1     matt 
    774       1.1     matt 	/* We return the new stack pointer address */
    775       1.1     matt 	return(kernelstack.pv_va + USPACE_SVC_STACK_TOP);
    776       1.1     matt }
    777       1.1     matt 
    778       1.1     matt void
    779       1.1     matt consinit(void)
    780       1.1     matt {
    781      1.15  thorpej 	static const bus_addr_t comcnaddrs[] = {
    782      1.15  thorpej 		IQ80310_UART2,		/* com0 (J9) */
    783      1.15  thorpej 		IQ80310_UART1,		/* com1 (J10) */
    784      1.15  thorpej 	};
    785       1.2  thorpej 	static int consinit_called;
    786       1.1     matt 
    787       1.1     matt 	if (consinit_called != 0)
    788       1.1     matt 		return;
    789       1.1     matt 
    790       1.1     matt 	consinit_called = 1;
    791      1.60  thorpej 
    792      1.60  thorpej 	/*
    793      1.60  thorpej 	 * Console devices are mapped VA==PA.  Our devmap reflects
    794      1.60  thorpej 	 * this, so register it now so drivers can map the console
    795      1.60  thorpej 	 * device.
    796      1.60  thorpej 	 */
    797      1.60  thorpej 	pmap_devmap_register(iq80310_devmap);
    798       1.1     matt 
    799       1.2  thorpej #if NCOM > 0
    800      1.15  thorpej 	if (comcnattach(&obio_bs_tag, comcnaddrs[comcnunit], comcnspeed,
    801      1.58  thorpej 	    COM_FREQ, COM_TYPE_NORMAL, comcnmode))
    802      1.19  thorpej 		panic("can't init serial console @%lx", comcnaddrs[comcnunit]);
    803       1.1     matt #else
    804      1.19  thorpej 	panic("serial console @%lx not configured", comcnaddrs[comcnunit]);
    805       1.1     matt #endif
    806       1.1     matt }
    807