15b81b6b3SRodney W. Grimes /*- 25b81b6b3SRodney W. Grimes * Copyright (c) 1982, 1986 The Regents of the University of California. 35b81b6b3SRodney W. Grimes * Copyright (c) 1989, 1990 William Jolitz 41561d038SDavid Greenman * Copyright (c) 1994 John Dyson 55b81b6b3SRodney W. Grimes * All rights reserved. 65b81b6b3SRodney W. Grimes * 75b81b6b3SRodney W. Grimes * This code is derived from software contributed to Berkeley by 85b81b6b3SRodney W. Grimes * the Systems Programming Group of the University of Utah Computer 95b81b6b3SRodney W. Grimes * Science Department, and William Jolitz. 105b81b6b3SRodney W. Grimes * 115b81b6b3SRodney W. Grimes * Redistribution and use in source and binary forms, with or without 125b81b6b3SRodney W. Grimes * modification, are permitted provided that the following conditions 135b81b6b3SRodney W. Grimes * are met: 145b81b6b3SRodney W. Grimes * 1. Redistributions of source code must retain the above copyright 155b81b6b3SRodney W. Grimes * notice, this list of conditions and the following disclaimer. 165b81b6b3SRodney W. Grimes * 2. Redistributions in binary form must reproduce the above copyright 175b81b6b3SRodney W. Grimes * notice, this list of conditions and the following disclaimer in the 185b81b6b3SRodney W. Grimes * documentation and/or other materials provided with the distribution. 195b81b6b3SRodney W. Grimes * 3. All advertising materials mentioning features or use of this software 205b81b6b3SRodney W. Grimes * must display the following acknowledgement: 215b81b6b3SRodney W. Grimes * This product includes software developed by the University of 225b81b6b3SRodney W. Grimes * California, Berkeley and its contributors. 235b81b6b3SRodney W. Grimes * 4. Neither the name of the University nor the names of its contributors 245b81b6b3SRodney W. Grimes * may be used to endorse or promote products derived from this software 255b81b6b3SRodney W. Grimes * without specific prior written permission. 265b81b6b3SRodney W. Grimes * 275b81b6b3SRodney W. Grimes * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 285b81b6b3SRodney W. Grimes * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 295b81b6b3SRodney W. Grimes * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 305b81b6b3SRodney W. Grimes * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 315b81b6b3SRodney W. Grimes * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 325b81b6b3SRodney W. Grimes * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 335b81b6b3SRodney W. Grimes * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 345b81b6b3SRodney W. Grimes * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 355b81b6b3SRodney W. Grimes * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 365b81b6b3SRodney W. Grimes * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 375b81b6b3SRodney W. Grimes * SUCH DAMAGE. 385b81b6b3SRodney W. Grimes * 39960173b9SRodney W. Grimes * from: @(#)vm_machdep.c 7.3 (Berkeley) 5/13/91 405b81b6b3SRodney W. Grimes * Utah $Hdr: vm_machdep.c 1.16.1.1 89/06/23$ 412f1e7069STor Egge * $Id: vm_machdep.c,v 1.106 1998/05/16 14:44:11 kato Exp $ 425b81b6b3SRodney W. Grimes */ 435b81b6b3SRodney W. Grimes 44960173b9SRodney W. Grimes #include "npx.h" 458890984dSGarrett Wollman #include "opt_bounce.h" 4619d768b8SPeter Wemm #include "opt_user_ldt.h" 4798823b23SPeter Wemm #include "opt_vm86.h" 4861324207SKATO Takenori #ifdef PC98 4961324207SKATO Takenori #include "opt_pc98.h" 5061324207SKATO Takenori #endif 518890984dSGarrett Wollman 5226f9a767SRodney W. Grimes #include <sys/param.h> 5326f9a767SRodney W. Grimes #include <sys/systm.h> 5426f9a767SRodney W. Grimes #include <sys/proc.h> 5526f9a767SRodney W. Grimes #include <sys/malloc.h> 5626f9a767SRodney W. Grimes #include <sys/buf.h> 5726f9a767SRodney W. Grimes #include <sys/vnode.h> 58efeaf95aSDavid Greenman #include <sys/vmmeter.h> 5966095752SJohn Dyson #include <sys/kernel.h> 6066095752SJohn Dyson #include <sys/sysctl.h> 615b81b6b3SRodney W. Grimes 622320728fSRodney W. Grimes #include <machine/clock.h> 63a2a1c95cSPeter Wemm #include <machine/cpu.h> 641f8745a9SPeter Wemm #include <machine/md_var.h> 658fa40736SBruce Evans #ifdef SMP 668fa40736SBruce Evans #include <machine/smp.h> 678fa40736SBruce Evans #endif 68640c4313SJonathan Lemon #ifdef VM86 69640c4313SJonathan Lemon #include <machine/pcb_ext.h> 70640c4313SJonathan Lemon #include <machine/vm86.h> 71640c4313SJonathan Lemon #endif 725b81b6b3SRodney W. Grimes 7326f9a767SRodney W. Grimes #include <vm/vm.h> 74efeaf95aSDavid Greenman #include <vm/vm_param.h> 75efeaf95aSDavid Greenman #include <vm/vm_prot.h> 76996c772fSJohn Dyson #include <sys/lock.h> 7726f9a767SRodney W. Grimes #include <vm/vm_kern.h> 7824a1cce3SDavid Greenman #include <vm/vm_page.h> 79efeaf95aSDavid Greenman #include <vm/vm_map.h> 80efeaf95aSDavid Greenman #include <vm/vm_extern.h> 81efeaf95aSDavid Greenman 82efeaf95aSDavid Greenman #include <sys/user.h> 835b81b6b3SRodney W. Grimes 84e30f0011SSatoshi Asami #ifdef PC98 85e30f0011SSatoshi Asami #include <pc98/pc98/pc98.h> 86e30f0011SSatoshi Asami #else 872320728fSRodney W. Grimes #include <i386/isa/isa.h> 88e30f0011SSatoshi Asami #endif 892320728fSRodney W. Grimes 902f1e7069STor Egge static void cpu_reset_real __P((void)); 912f1e7069STor Egge #ifdef SMP 922f1e7069STor Egge static void cpu_reset_proxy __P((void)); 932f1e7069STor Egge static u_int cpu_reset_proxyid; 942f1e7069STor Egge static volatile u_int cpu_reset_proxy_active; 952f1e7069STor Egge #endif 962f1e7069STor Egge 979aba88bfSDavid Greenman #ifdef BOUNCE_BUFFERS 9887b91157SPoul-Henning Kamp static vm_offset_t 996c146e28SBruce Evans vm_bounce_kva __P((int size, int waitok)); 10087b91157SPoul-Henning Kamp static void vm_bounce_kva_free __P((vm_offset_t addr, vm_offset_t size, 1016c146e28SBruce Evans int now)); 10287b91157SPoul-Henning Kamp static vm_offset_t 1036c146e28SBruce Evans vm_bounce_page_find __P((int count)); 10487b91157SPoul-Henning Kamp static void vm_bounce_page_free __P((vm_offset_t pa, int count)); 1056c146e28SBruce Evans 10687b6de2bSPoul-Henning Kamp static volatile int kvasfreecnt; 107ae92ea44SDavid Greenman 108d5e26ef0SDavid Greenman caddr_t bouncememory; 10987b91157SPoul-Henning Kamp static int bpwait; 11087b91157SPoul-Henning Kamp static vm_offset_t *bouncepa; 11187b91157SPoul-Henning Kamp static int bmwait, bmfreeing; 112d5e26ef0SDavid Greenman 113ed7fcbd0SDavid Greenman #define BITS_IN_UNSIGNED (8*sizeof(unsigned)) 11487b91157SPoul-Henning Kamp static int bounceallocarraysize; 11587b91157SPoul-Henning Kamp static unsigned *bounceallocarray; 11687b91157SPoul-Henning Kamp static int bouncefree; 117d5e26ef0SDavid Greenman 118e30f0011SSatoshi Asami #if defined(PC98) && defined (EPSON_BOUNCEDMA) 119e30f0011SSatoshi Asami #define SIXTEENMEG (3840*4096) /* 15MB boundary */ 120e30f0011SSatoshi Asami #else 121d5e26ef0SDavid Greenman #define SIXTEENMEG (4096*4096) 122e30f0011SSatoshi Asami #endif 123ae92ea44SDavid Greenman #define MAXBKVA 1024 124f8845af0SPoul-Henning Kamp int maxbkva = MAXBKVA*PAGE_SIZE; 125d5e26ef0SDavid Greenman 126d5e26ef0SDavid Greenman /* special list that can be used at interrupt time for eventual kva free */ 12787b91157SPoul-Henning Kamp static struct kvasfree { 128d5e26ef0SDavid Greenman vm_offset_t addr; 129d5e26ef0SDavid Greenman vm_offset_t size; 130d5e26ef0SDavid Greenman } kvaf[MAXBKVA]; 131d5e26ef0SDavid Greenman 132d5e26ef0SDavid Greenman /* 133d5e26ef0SDavid Greenman * get bounce buffer pages (count physically contiguous) 134d5e26ef0SDavid Greenman * (only 1 inplemented now) 135d5e26ef0SDavid Greenman */ 13687b91157SPoul-Henning Kamp static vm_offset_t 137d5e26ef0SDavid Greenman vm_bounce_page_find(count) 138d5e26ef0SDavid Greenman int count; 139d5e26ef0SDavid Greenman { 140d5e26ef0SDavid Greenman int bit; 141d5e26ef0SDavid Greenman int s,i; 142d5e26ef0SDavid Greenman 143d5e26ef0SDavid Greenman if (count != 1) 144d5e26ef0SDavid Greenman panic("vm_bounce_page_find -- no support for > 1 page yet!!!"); 145d5e26ef0SDavid Greenman 146d5e26ef0SDavid Greenman s = splbio(); 147d5e26ef0SDavid Greenman retry: 148d5e26ef0SDavid Greenman for (i = 0; i < bounceallocarraysize; i++) { 149d5e26ef0SDavid Greenman if (bounceallocarray[i] != 0xffffffff) { 1503fb3086eSPoul-Henning Kamp bit = ffs(~bounceallocarray[i]); 1513fb3086eSPoul-Henning Kamp if (bit) { 152d5e26ef0SDavid Greenman bounceallocarray[i] |= 1 << (bit - 1) ; 153d5e26ef0SDavid Greenman bouncefree -= count; 154d5e26ef0SDavid Greenman splx(s); 155ae92ea44SDavid Greenman return bouncepa[(i * BITS_IN_UNSIGNED + (bit - 1))]; 156d5e26ef0SDavid Greenman } 157d5e26ef0SDavid Greenman } 158d5e26ef0SDavid Greenman } 159ed7fcbd0SDavid Greenman bpwait = 1; 160d5e26ef0SDavid Greenman tsleep((caddr_t) &bounceallocarray, PRIBIO, "bncwai", 0); 161d5e26ef0SDavid Greenman goto retry; 162d5e26ef0SDavid Greenman } 163d5e26ef0SDavid Greenman 16487b91157SPoul-Henning Kamp static void 1651561d038SDavid Greenman vm_bounce_kva_free(addr, size, now) 1661561d038SDavid Greenman vm_offset_t addr; 1671561d038SDavid Greenman vm_offset_t size; 1681561d038SDavid Greenman int now; 1691561d038SDavid Greenman { 1701561d038SDavid Greenman int s = splbio(); 1711561d038SDavid Greenman kvaf[kvasfreecnt].addr = addr; 172ae92ea44SDavid Greenman kvaf[kvasfreecnt].size = size; 173ae92ea44SDavid Greenman ++kvasfreecnt; 1740e195446SDavid Greenman if( now) { 1750e195446SDavid Greenman /* 1760e195446SDavid Greenman * this will do wakeups 1770e195446SDavid Greenman */ 1781561d038SDavid Greenman vm_bounce_kva(0,0); 1790e195446SDavid Greenman } else { 1800e195446SDavid Greenman if (bmwait) { 1810e195446SDavid Greenman /* 1820e195446SDavid Greenman * if anyone is waiting on the bounce-map, then wakeup 1830e195446SDavid Greenman */ 1841561d038SDavid Greenman wakeup((caddr_t) io_map); 1850e195446SDavid Greenman bmwait = 0; 1860e195446SDavid Greenman } 1870e195446SDavid Greenman } 1881561d038SDavid Greenman splx(s); 1891561d038SDavid Greenman } 1901561d038SDavid Greenman 191d5e26ef0SDavid Greenman /* 192d5e26ef0SDavid Greenman * free count bounce buffer pages 193d5e26ef0SDavid Greenman */ 19487b91157SPoul-Henning Kamp static void 195d5e26ef0SDavid Greenman vm_bounce_page_free(pa, count) 196d5e26ef0SDavid Greenman vm_offset_t pa; 197d5e26ef0SDavid Greenman int count; 198d5e26ef0SDavid Greenman { 199d5e26ef0SDavid Greenman int allocindex; 200d5e26ef0SDavid Greenman int index; 201d5e26ef0SDavid Greenman int bit; 202d5e26ef0SDavid Greenman 203d5e26ef0SDavid Greenman if (count != 1) 204edf8a815SDavid Greenman panic("vm_bounce_page_free -- no support for > 1 page yet!!!"); 205d5e26ef0SDavid Greenman 206ae92ea44SDavid Greenman for(index=0;index<bouncepages;index++) { 207ae92ea44SDavid Greenman if( pa == bouncepa[index]) 208ae92ea44SDavid Greenman break; 209ae92ea44SDavid Greenman } 210d5e26ef0SDavid Greenman 211ae92ea44SDavid Greenman if( index == bouncepages) 212ae92ea44SDavid Greenman panic("vm_bounce_page_free: invalid bounce buffer"); 213d5e26ef0SDavid Greenman 214ed7fcbd0SDavid Greenman allocindex = index / BITS_IN_UNSIGNED; 215ed7fcbd0SDavid Greenman bit = index % BITS_IN_UNSIGNED; 216d5e26ef0SDavid Greenman 217d5e26ef0SDavid Greenman bounceallocarray[allocindex] &= ~(1 << bit); 218d5e26ef0SDavid Greenman 219d5e26ef0SDavid Greenman bouncefree += count; 220ed7fcbd0SDavid Greenman if (bpwait) { 221ed7fcbd0SDavid Greenman bpwait = 0; 222d5e26ef0SDavid Greenman wakeup((caddr_t) &bounceallocarray); 223d5e26ef0SDavid Greenman } 224ed7fcbd0SDavid Greenman } 225d5e26ef0SDavid Greenman 226d5e26ef0SDavid Greenman /* 227d5e26ef0SDavid Greenman * allocate count bounce buffer kva pages 228d5e26ef0SDavid Greenman */ 22987b91157SPoul-Henning Kamp static vm_offset_t 230ae92ea44SDavid Greenman vm_bounce_kva(size, waitok) 231ae92ea44SDavid Greenman int size; 2321561d038SDavid Greenman int waitok; 233d5e26ef0SDavid Greenman { 234d5e26ef0SDavid Greenman int i; 2356b4ac811SDavid Greenman vm_offset_t kva = 0; 236c564966bSDavid Greenman vm_offset_t off; 237d5e26ef0SDavid Greenman int s = splbio(); 238d5e26ef0SDavid Greenman more: 239ae92ea44SDavid Greenman if (!bmfreeing && kvasfreecnt) { 240d5e26ef0SDavid Greenman bmfreeing = 1; 241ae92ea44SDavid Greenman for (i = 0; i < kvasfreecnt; i++) { 242f8845af0SPoul-Henning Kamp for(off=0;off<kvaf[i].size;off+=PAGE_SIZE) { 243c564966bSDavid Greenman pmap_kremove( kvaf[i].addr + off); 244c564966bSDavid Greenman } 2451561d038SDavid Greenman kmem_free_wakeup(io_map, kvaf[i].addr, 246d5e26ef0SDavid Greenman kvaf[i].size); 247d5e26ef0SDavid Greenman } 248d5e26ef0SDavid Greenman kvasfreecnt = 0; 249d5e26ef0SDavid Greenman bmfreeing = 0; 250ae92ea44SDavid Greenman if( bmwait) { 251ae92ea44SDavid Greenman bmwait = 0; 252ae92ea44SDavid Greenman wakeup( (caddr_t) io_map); 253ae92ea44SDavid Greenman } 254d5e26ef0SDavid Greenman } 255d5e26ef0SDavid Greenman 2561561d038SDavid Greenman if( size == 0) { 2571561d038SDavid Greenman splx(s); 2586ab46d52SBruce Evans return 0; 2591561d038SDavid Greenman } 2601561d038SDavid Greenman 261ae92ea44SDavid Greenman if ((kva = kmem_alloc_pageable(io_map, size)) == 0) { 2621561d038SDavid Greenman if( !waitok) { 2631561d038SDavid Greenman splx(s); 2646ab46d52SBruce Evans return 0; 2651561d038SDavid Greenman } 266d5e26ef0SDavid Greenman bmwait = 1; 2671561d038SDavid Greenman tsleep((caddr_t) io_map, PRIBIO, "bmwait", 0); 268d5e26ef0SDavid Greenman goto more; 269d5e26ef0SDavid Greenman } 270d5e26ef0SDavid Greenman splx(s); 271d5e26ef0SDavid Greenman return kva; 272d5e26ef0SDavid Greenman } 273d5e26ef0SDavid Greenman 274d5e26ef0SDavid Greenman /* 275ae92ea44SDavid Greenman * same as vm_bounce_kva -- but really allocate (but takes pages as arg) 2760e195446SDavid Greenman */ 2770e195446SDavid Greenman vm_offset_t 2780e195446SDavid Greenman vm_bounce_kva_alloc(count) 2790e195446SDavid Greenman int count; 2800e195446SDavid Greenman { 2810e195446SDavid Greenman int i; 2820e195446SDavid Greenman vm_offset_t kva; 2830e195446SDavid Greenman vm_offset_t pa; 2840e195446SDavid Greenman if( bouncepages == 0) { 285f8845af0SPoul-Henning Kamp kva = (vm_offset_t) malloc(count*PAGE_SIZE, M_TEMP, M_WAITOK); 2860e195446SDavid Greenman return kva; 2870e195446SDavid Greenman } 288f8845af0SPoul-Henning Kamp kva = vm_bounce_kva(count*PAGE_SIZE, 1); 2890e195446SDavid Greenman for(i=0;i<count;i++) { 2900e195446SDavid Greenman pa = vm_bounce_page_find(1); 291f8845af0SPoul-Henning Kamp pmap_kenter(kva + i * PAGE_SIZE, pa); 2920e195446SDavid Greenman } 2930e195446SDavid Greenman return kva; 2940e195446SDavid Greenman } 2950e195446SDavid Greenman 2960e195446SDavid Greenman /* 2970e195446SDavid Greenman * same as vm_bounce_kva_free -- but really free 2980e195446SDavid Greenman */ 2990e195446SDavid Greenman void 3000e195446SDavid Greenman vm_bounce_kva_alloc_free(kva, count) 3010e195446SDavid Greenman vm_offset_t kva; 3020e195446SDavid Greenman int count; 3030e195446SDavid Greenman { 3040e195446SDavid Greenman int i; 3050e195446SDavid Greenman vm_offset_t pa; 3060e195446SDavid Greenman if( bouncepages == 0) { 3070e195446SDavid Greenman free((caddr_t) kva, M_TEMP); 3080e195446SDavid Greenman return; 3090e195446SDavid Greenman } 3100e195446SDavid Greenman for(i = 0; i < count; i++) { 311f8845af0SPoul-Henning Kamp pa = pmap_kextract(kva + i * PAGE_SIZE); 3120e195446SDavid Greenman vm_bounce_page_free(pa, 1); 3130e195446SDavid Greenman } 314f8845af0SPoul-Henning Kamp vm_bounce_kva_free(kva, count*PAGE_SIZE, 0); 3150e195446SDavid Greenman } 3160e195446SDavid Greenman 3170e195446SDavid Greenman /* 318d5e26ef0SDavid Greenman * do the things necessary to the struct buf to implement 319d5e26ef0SDavid Greenman * bounce buffers... inserted before the disk sort 320d5e26ef0SDavid Greenman */ 321d5e26ef0SDavid Greenman void 322d5e26ef0SDavid Greenman vm_bounce_alloc(bp) 323d5e26ef0SDavid Greenman struct buf *bp; 324d5e26ef0SDavid Greenman { 325d5e26ef0SDavid Greenman int countvmpg; 326d5e26ef0SDavid Greenman vm_offset_t vastart, vaend; 327d5e26ef0SDavid Greenman vm_offset_t vapstart, vapend; 328d5e26ef0SDavid Greenman vm_offset_t va, kva; 329d5e26ef0SDavid Greenman vm_offset_t pa; 330d5e26ef0SDavid Greenman int dobounceflag = 0; 331d5e26ef0SDavid Greenman int i; 332d5e26ef0SDavid Greenman 333d5e26ef0SDavid Greenman if (bouncepages == 0) 334d5e26ef0SDavid Greenman return; 335d5e26ef0SDavid Greenman 336ae92ea44SDavid Greenman if (bp->b_flags & B_BOUNCE) { 337ae92ea44SDavid Greenman printf("vm_bounce_alloc: called recursively???\n"); 338ae92ea44SDavid Greenman return; 3391561d038SDavid Greenman } 3401561d038SDavid Greenman 341ae92ea44SDavid Greenman if (bp->b_bufsize < bp->b_bcount) { 3423fb3086eSPoul-Henning Kamp printf( 3433fb3086eSPoul-Henning Kamp "vm_bounce_alloc: b_bufsize(0x%lx) < b_bcount(0x%lx) !!\n", 344ae92ea44SDavid Greenman bp->b_bufsize, bp->b_bcount); 345ae92ea44SDavid Greenman panic("vm_bounce_alloc"); 346ae92ea44SDavid Greenman } 347ae92ea44SDavid Greenman 348ae92ea44SDavid Greenman /* 349ae92ea44SDavid Greenman * This is not really necessary 350ae92ea44SDavid Greenman * if( bp->b_bufsize != bp->b_bcount) { 351ae92ea44SDavid Greenman * printf("size: %d, count: %d\n", bp->b_bufsize, bp->b_bcount); 352ae92ea44SDavid Greenman * } 353ae92ea44SDavid Greenman */ 354ae92ea44SDavid Greenman 355ae92ea44SDavid Greenman 35626f9a767SRodney W. Grimes vastart = (vm_offset_t) bp->b_data; 35726f9a767SRodney W. Grimes vaend = (vm_offset_t) bp->b_data + bp->b_bufsize; 358d5e26ef0SDavid Greenman 359bd7e5f99SJohn Dyson vapstart = trunc_page(vastart); 360bd7e5f99SJohn Dyson vapend = round_page(vaend); 361f8845af0SPoul-Henning Kamp countvmpg = (vapend - vapstart) / PAGE_SIZE; 362d5e26ef0SDavid Greenman 363d5e26ef0SDavid Greenman /* 364d5e26ef0SDavid Greenman * if any page is above 16MB, then go into bounce-buffer mode 365d5e26ef0SDavid Greenman */ 366d5e26ef0SDavid Greenman va = vapstart; 367d5e26ef0SDavid Greenman for (i = 0; i < countvmpg; i++) { 368ed7fcbd0SDavid Greenman pa = pmap_kextract(va); 369d5e26ef0SDavid Greenman if (pa >= SIXTEENMEG) 370d5e26ef0SDavid Greenman ++dobounceflag; 3710d94caffSDavid Greenman if( pa == 0) 3720d94caffSDavid Greenman panic("vm_bounce_alloc: Unmapped page"); 373f8845af0SPoul-Henning Kamp va += PAGE_SIZE; 374d5e26ef0SDavid Greenman } 375d5e26ef0SDavid Greenman if (dobounceflag == 0) 376d5e26ef0SDavid Greenman return; 377d5e26ef0SDavid Greenman 378d5e26ef0SDavid Greenman if (bouncepages < dobounceflag) 379d5e26ef0SDavid Greenman panic("Not enough bounce buffers!!!"); 380d5e26ef0SDavid Greenman 381d5e26ef0SDavid Greenman /* 382d5e26ef0SDavid Greenman * allocate a replacement kva for b_addr 383d5e26ef0SDavid Greenman */ 384f8845af0SPoul-Henning Kamp kva = vm_bounce_kva(countvmpg*PAGE_SIZE, 1); 385ae92ea44SDavid Greenman #if 0 386ae92ea44SDavid Greenman printf("%s: vapstart: %x, vapend: %x, countvmpg: %d, kva: %x ", 387ae92ea44SDavid Greenman (bp->b_flags & B_READ) ? "read":"write", 388ae92ea44SDavid Greenman vapstart, vapend, countvmpg, kva); 389ae92ea44SDavid Greenman #endif 390d5e26ef0SDavid Greenman va = vapstart; 391d5e26ef0SDavid Greenman for (i = 0; i < countvmpg; i++) { 392ed7fcbd0SDavid Greenman pa = pmap_kextract(va); 393d5e26ef0SDavid Greenman if (pa >= SIXTEENMEG) { 394d5e26ef0SDavid Greenman /* 395d5e26ef0SDavid Greenman * allocate a replacement page 396d5e26ef0SDavid Greenman */ 397d5e26ef0SDavid Greenman vm_offset_t bpa = vm_bounce_page_find(1); 398f8845af0SPoul-Henning Kamp pmap_kenter(kva + (PAGE_SIZE * i), bpa); 399ae92ea44SDavid Greenman #if 0 400ae92ea44SDavid Greenman printf("r(%d): (%x,%x,%x) ", i, va, pa, bpa); 401ae92ea44SDavid Greenman #endif 402d5e26ef0SDavid Greenman /* 403d5e26ef0SDavid Greenman * if we are writing, the copy the data into the page 404d5e26ef0SDavid Greenman */ 4051561d038SDavid Greenman if ((bp->b_flags & B_READ) == 0) { 406f8845af0SPoul-Henning Kamp bcopy((caddr_t) va, (caddr_t) kva + (PAGE_SIZE * i), PAGE_SIZE); 4071561d038SDavid Greenman } 408d5e26ef0SDavid Greenman } else { 409d5e26ef0SDavid Greenman /* 410d5e26ef0SDavid Greenman * use original page 411d5e26ef0SDavid Greenman */ 412f8845af0SPoul-Henning Kamp pmap_kenter(kva + (PAGE_SIZE * i), pa); 413d5e26ef0SDavid Greenman } 414f8845af0SPoul-Henning Kamp va += PAGE_SIZE; 415d5e26ef0SDavid Greenman } 416d5e26ef0SDavid Greenman 417d5e26ef0SDavid Greenman /* 418d5e26ef0SDavid Greenman * flag the buffer as being bounced 419d5e26ef0SDavid Greenman */ 420d5e26ef0SDavid Greenman bp->b_flags |= B_BOUNCE; 421d5e26ef0SDavid Greenman /* 422d5e26ef0SDavid Greenman * save the original buffer kva 423d5e26ef0SDavid Greenman */ 42426f9a767SRodney W. Grimes bp->b_savekva = bp->b_data; 425d5e26ef0SDavid Greenman /* 426d5e26ef0SDavid Greenman * put our new kva into the buffer (offset by original offset) 427d5e26ef0SDavid Greenman */ 42826f9a767SRodney W. Grimes bp->b_data = (caddr_t) (((vm_offset_t) kva) | 429f8845af0SPoul-Henning Kamp ((vm_offset_t) bp->b_savekva & PAGE_MASK)); 430ae92ea44SDavid Greenman #if 0 431ae92ea44SDavid Greenman printf("b_savekva: %x, newva: %x\n", bp->b_savekva, bp->b_data); 432ae92ea44SDavid Greenman #endif 433d5e26ef0SDavid Greenman return; 434d5e26ef0SDavid Greenman } 435d5e26ef0SDavid Greenman 436d5e26ef0SDavid Greenman /* 437d5e26ef0SDavid Greenman * hook into biodone to free bounce buffer 438d5e26ef0SDavid Greenman */ 439d5e26ef0SDavid Greenman void 440d5e26ef0SDavid Greenman vm_bounce_free(bp) 441d5e26ef0SDavid Greenman struct buf *bp; 442d5e26ef0SDavid Greenman { 443d5e26ef0SDavid Greenman int i; 444ae92ea44SDavid Greenman vm_offset_t origkva, bouncekva, bouncekvaend; 445d5e26ef0SDavid Greenman 446d5e26ef0SDavid Greenman /* 447d5e26ef0SDavid Greenman * if this isn't a bounced buffer, then just return 448d5e26ef0SDavid Greenman */ 449d5e26ef0SDavid Greenman if ((bp->b_flags & B_BOUNCE) == 0) 450d5e26ef0SDavid Greenman return; 451d5e26ef0SDavid Greenman 452ae92ea44SDavid Greenman /* 453ae92ea44SDavid Greenman * This check is not necessary 454ae92ea44SDavid Greenman * if (bp->b_bufsize != bp->b_bcount) { 455ae92ea44SDavid Greenman * printf("vm_bounce_free: b_bufsize=%d, b_bcount=%d\n", 456ae92ea44SDavid Greenman * bp->b_bufsize, bp->b_bcount); 457ae92ea44SDavid Greenman * } 458ae92ea44SDavid Greenman */ 459ae92ea44SDavid Greenman 460d5e26ef0SDavid Greenman origkva = (vm_offset_t) bp->b_savekva; 46126f9a767SRodney W. Grimes bouncekva = (vm_offset_t) bp->b_data; 462ae92ea44SDavid Greenman /* 463ae92ea44SDavid Greenman printf("free: %d ", bp->b_bufsize); 464ae92ea44SDavid Greenman */ 465d5e26ef0SDavid Greenman 466d5e26ef0SDavid Greenman /* 467d5e26ef0SDavid Greenman * check every page in the kva space for b_addr 468d5e26ef0SDavid Greenman */ 469ae92ea44SDavid Greenman for (i = 0; i < bp->b_bufsize; ) { 470d5e26ef0SDavid Greenman vm_offset_t mybouncepa; 471d5e26ef0SDavid Greenman vm_offset_t copycount; 472d5e26ef0SDavid Greenman 473bd7e5f99SJohn Dyson copycount = round_page(bouncekva + 1) - bouncekva; 474bd7e5f99SJohn Dyson mybouncepa = pmap_kextract(trunc_page(bouncekva)); 475d5e26ef0SDavid Greenman 476d5e26ef0SDavid Greenman /* 477d5e26ef0SDavid Greenman * if this is a bounced pa, then process as one 478d5e26ef0SDavid Greenman */ 479bd7e5f99SJohn Dyson if ( mybouncepa != pmap_kextract( trunc_page( origkva))) { 480ae92ea44SDavid Greenman vm_offset_t tocopy = copycount; 481ae92ea44SDavid Greenman if (i + tocopy > bp->b_bufsize) 482ae92ea44SDavid Greenman tocopy = bp->b_bufsize - i; 483d5e26ef0SDavid Greenman /* 484d5e26ef0SDavid Greenman * if this is a read, then copy from bounce buffer into original buffer 485d5e26ef0SDavid Greenman */ 486d5e26ef0SDavid Greenman if (bp->b_flags & B_READ) 487ae92ea44SDavid Greenman bcopy((caddr_t) bouncekva, (caddr_t) origkva, tocopy); 488d5e26ef0SDavid Greenman /* 489d5e26ef0SDavid Greenman * free the bounce allocation 490d5e26ef0SDavid Greenman */ 491ae92ea44SDavid Greenman 492ae92ea44SDavid Greenman /* 493ae92ea44SDavid Greenman printf("(kva: %x, pa: %x)", bouncekva, mybouncepa); 494ae92ea44SDavid Greenman */ 495ae92ea44SDavid Greenman vm_bounce_page_free(mybouncepa, 1); 496d5e26ef0SDavid Greenman } 497d5e26ef0SDavid Greenman 498d5e26ef0SDavid Greenman origkva += copycount; 499d5e26ef0SDavid Greenman bouncekva += copycount; 500ae92ea44SDavid Greenman i += copycount; 501d5e26ef0SDavid Greenman } 502d5e26ef0SDavid Greenman 503d5e26ef0SDavid Greenman /* 504ae92ea44SDavid Greenman printf("\n"); 505ae92ea44SDavid Greenman */ 506ae92ea44SDavid Greenman /* 507d5e26ef0SDavid Greenman * add the old kva into the "to free" list 508d5e26ef0SDavid Greenman */ 509ae92ea44SDavid Greenman 510bd7e5f99SJohn Dyson bouncekva= trunc_page((vm_offset_t) bp->b_data); 511bd7e5f99SJohn Dyson bouncekvaend= round_page((vm_offset_t)bp->b_data + bp->b_bufsize); 512ae92ea44SDavid Greenman 513ae92ea44SDavid Greenman /* 514f8845af0SPoul-Henning Kamp printf("freeva: %d\n", (bouncekvaend - bouncekva) / PAGE_SIZE); 515ae92ea44SDavid Greenman */ 516ae92ea44SDavid Greenman vm_bounce_kva_free( bouncekva, (bouncekvaend - bouncekva), 0); 51726f9a767SRodney W. Grimes bp->b_data = bp->b_savekva; 518d5e26ef0SDavid Greenman bp->b_savekva = 0; 519d5e26ef0SDavid Greenman bp->b_flags &= ~B_BOUNCE; 520d5e26ef0SDavid Greenman 521d5e26ef0SDavid Greenman return; 522d5e26ef0SDavid Greenman } 523d5e26ef0SDavid Greenman 524ae92ea44SDavid Greenman 5255b81b6b3SRodney W. Grimes /* 5261561d038SDavid Greenman * init the bounce buffer system 5271561d038SDavid Greenman */ 5281561d038SDavid Greenman void 5291561d038SDavid Greenman vm_bounce_init() 5301561d038SDavid Greenman { 531ae92ea44SDavid Greenman int i; 5321561d038SDavid Greenman 5331561d038SDavid Greenman kvasfreecnt = 0; 5341561d038SDavid Greenman 5351561d038SDavid Greenman if (bouncepages == 0) 5361561d038SDavid Greenman return; 5371561d038SDavid Greenman 5381561d038SDavid Greenman bounceallocarraysize = (bouncepages + BITS_IN_UNSIGNED - 1) / BITS_IN_UNSIGNED; 5391561d038SDavid Greenman bounceallocarray = malloc(bounceallocarraysize * sizeof(unsigned), M_TEMP, M_NOWAIT); 5401561d038SDavid Greenman 5411561d038SDavid Greenman if (!bounceallocarray) 542edf8a815SDavid Greenman panic("Cannot allocate bounce resource array"); 5431561d038SDavid Greenman 544ae92ea44SDavid Greenman bouncepa = malloc(bouncepages * sizeof(vm_offset_t), M_TEMP, M_NOWAIT); 545ae92ea44SDavid Greenman if (!bouncepa) 546edf8a815SDavid Greenman panic("Cannot allocate physical memory array"); 5471561d038SDavid Greenman 5480d94caffSDavid Greenman for(i=0;i<bounceallocarraysize;i++) { 5490d94caffSDavid Greenman bounceallocarray[i] = 0xffffffff; 5500d94caffSDavid Greenman } 5510d94caffSDavid Greenman 552ae92ea44SDavid Greenman for(i=0;i<bouncepages;i++) { 553ae92ea44SDavid Greenman vm_offset_t pa; 5540621c31aSJohn Dyson if( (pa = pmap_kextract((vm_offset_t) bouncememory + i * PAGE_SIZE)) >= SIXTEENMEG) { 5550621c31aSJohn Dyson printf("vm_bounce_init: bounce memory out of range -- bounce disabled\n"); 5560621c31aSJohn Dyson free(bounceallocarray, M_TEMP); 5570621c31aSJohn Dyson bounceallocarray = NULL; 5580621c31aSJohn Dyson free(bouncepa, M_TEMP); 5590621c31aSJohn Dyson bouncepa = NULL; 5600621c31aSJohn Dyson bouncepages = 0; 5610621c31aSJohn Dyson break; 5620621c31aSJohn Dyson } 563ae92ea44SDavid Greenman if( pa == 0) 564ae92ea44SDavid Greenman panic("bounce memory not resident"); 565ae92ea44SDavid Greenman bouncepa[i] = pa; 5660d94caffSDavid Greenman bounceallocarray[i/(8*sizeof(int))] &= ~(1<<(i%(8*sizeof(int)))); 567ae92ea44SDavid Greenman } 5681561d038SDavid Greenman bouncefree = bouncepages; 5691561d038SDavid Greenman 5701561d038SDavid Greenman } 5719aba88bfSDavid Greenman #endif /* BOUNCE_BUFFERS */ 5726c146e28SBruce Evans 573a4f7a4c9SDavid Greenman /* 574a4f7a4c9SDavid Greenman * quick version of vm_fault 575a4f7a4c9SDavid Greenman */ 576dca51299SJohn Dyson void 577a4f7a4c9SDavid Greenman vm_fault_quick(v, prot) 5786c146e28SBruce Evans caddr_t v; 579a4f7a4c9SDavid Greenman int prot; 580a4f7a4c9SDavid Greenman { 5811d1b971bSDavid Greenman if (prot & VM_PROT_WRITE) 5826c146e28SBruce Evans subyte(v, fubyte(v)); 583a4f7a4c9SDavid Greenman else 5846c146e28SBruce Evans fubyte(v); 585a4f7a4c9SDavid Greenman } 586a4f7a4c9SDavid Greenman 5871561d038SDavid Greenman /* 5885b81b6b3SRodney W. Grimes * Finish a fork operation, with process p2 nearly set up. 589a2a1c95cSPeter Wemm * Copy and update the pcb, set up the stack so that the child 590a2a1c95cSPeter Wemm * ready to run and return to user mode. 5915b81b6b3SRodney W. Grimes */ 592a2a1c95cSPeter Wemm void 5935b81b6b3SRodney W. Grimes cpu_fork(p1, p2) 5945b81b6b3SRodney W. Grimes register struct proc *p1, *p2; 5955b81b6b3SRodney W. Grimes { 596f83a01b6SDavid Greenman struct pcb *pcb2 = &p2->p_addr->u_pcb; 5975b81b6b3SRodney W. Grimes 5989f449d2aSBruce Evans #if NNPX > 0 5991f8745a9SPeter Wemm /* Ensure that p1's pcb is up to date. */ 6001f8745a9SPeter Wemm if (npxproc == p1) 6011f8745a9SPeter Wemm npxsave(&p1->p_addr->u_pcb.pcb_savefpu); 6029f449d2aSBruce Evans #endif 6031f8745a9SPeter Wemm 6041f8745a9SPeter Wemm /* Copy p1's pcb. */ 6051f8745a9SPeter Wemm p2->p_addr->u_pcb = p1->p_addr->u_pcb; 606a2a1c95cSPeter Wemm 607a2a1c95cSPeter Wemm /* 608a2a1c95cSPeter Wemm * Create a new fresh stack for the new process. 6091f8745a9SPeter Wemm * Copy the trap frame for the return to user mode as if from a 6101f8745a9SPeter Wemm * syscall. This copies the user mode register values. 611a2a1c95cSPeter Wemm */ 6121f8745a9SPeter Wemm p2->p_md.md_regs = (struct trapframe *) 613640c4313SJonathan Lemon #ifdef VM86 614640c4313SJonathan Lemon ((int)p2->p_addr + UPAGES * PAGE_SIZE - 16) - 1; 615640c4313SJonathan Lemon #else 6161f8745a9SPeter Wemm ((int)p2->p_addr + UPAGES * PAGE_SIZE) - 1; 617640c4313SJonathan Lemon #endif /* VM86 */ 6181f8745a9SPeter Wemm *p2->p_md.md_regs = *p1->p_md.md_regs; 619a2a1c95cSPeter Wemm 620a2a1c95cSPeter Wemm /* 621a2a1c95cSPeter Wemm * Set registers for trampoline to user mode. Leave space for the 622a2a1c95cSPeter Wemm * return address on stack. These are the kernel mode register values. 623a2a1c95cSPeter Wemm */ 6241f8745a9SPeter Wemm pcb2->pcb_cr3 = vtophys(p2->p_vmspace->vm_pmap.pm_pdir); 6251f8745a9SPeter Wemm pcb2->pcb_edi = p2->p_md.md_regs->tf_edi; 626a2a1c95cSPeter Wemm pcb2->pcb_esi = (int)fork_return; 6271f8745a9SPeter Wemm pcb2->pcb_ebp = p2->p_md.md_regs->tf_ebp; 628a2a1c95cSPeter Wemm pcb2->pcb_esp = (int)p2->p_md.md_regs - sizeof(void *); 6291f8745a9SPeter Wemm pcb2->pcb_ebx = (int)p2; 6301f8745a9SPeter Wemm pcb2->pcb_eip = (int)fork_trampoline; 6311f8745a9SPeter Wemm /* 6321f8745a9SPeter Wemm * pcb2->pcb_ldt: duplicated below, if necessary. 6331f8745a9SPeter Wemm * pcb2->pcb_ldt_len: cloned above. 6341f8745a9SPeter Wemm * pcb2->pcb_savefpu: cloned above. 6351f8745a9SPeter Wemm * pcb2->pcb_flags: cloned above (always 0 here?). 6361f8745a9SPeter Wemm * pcb2->pcb_onfault: cloned above (always NULL here?). 6371f8745a9SPeter Wemm */ 6385b81b6b3SRodney W. Grimes 63948a09cf2SJohn Dyson #ifdef VM86 64048a09cf2SJohn Dyson /* 64148a09cf2SJohn Dyson * XXX don't copy the i/o pages. this should probably be fixed. 64248a09cf2SJohn Dyson */ 64348a09cf2SJohn Dyson pcb2->pcb_ext = 0; 64448a09cf2SJohn Dyson #endif 64548a09cf2SJohn Dyson 6468c39a127SStefan Eßer #ifdef USER_LDT 6478c39a127SStefan Eßer /* Copy the LDT, if necessary. */ 648a2a1c95cSPeter Wemm if (pcb2->pcb_ldt != 0) { 6498c39a127SStefan Eßer union descriptor *new_ldt; 650a2a1c95cSPeter Wemm size_t len = pcb2->pcb_ldt_len * sizeof(union descriptor); 6518c39a127SStefan Eßer 6528c39a127SStefan Eßer new_ldt = (union descriptor *)kmem_alloc(kernel_map, len); 653a2a1c95cSPeter Wemm bcopy(pcb2->pcb_ldt, new_ldt, len); 654a2a1c95cSPeter Wemm pcb2->pcb_ldt = (caddr_t)new_ldt; 6558c39a127SStefan Eßer } 6568c39a127SStefan Eßer #endif 6578c39a127SStefan Eßer 658a2a1c95cSPeter Wemm /* 659a2a1c95cSPeter Wemm * Now, cpu_switch() can schedule the new process. 660a2a1c95cSPeter Wemm * pcb_esp is loaded pointing to the cpu_switch() stack frame 661a2a1c95cSPeter Wemm * containing the return address when exiting cpu_switch. 662a2a1c95cSPeter Wemm * This will normally be to proc_trampoline(), which will have 663a2a1c95cSPeter Wemm * %ebx loaded with the new proc's pointer. proc_trampoline() 664a2a1c95cSPeter Wemm * will set up a stack to call fork_return(p, frame); to complete 665a2a1c95cSPeter Wemm * the return to user-mode. 666a2a1c95cSPeter Wemm */ 667a2a1c95cSPeter Wemm } 668a2a1c95cSPeter Wemm 669a2a1c95cSPeter Wemm /* 670a2a1c95cSPeter Wemm * Intercept the return address from a freshly forked process that has NOT 671a2a1c95cSPeter Wemm * been scheduled yet. 672a2a1c95cSPeter Wemm * 673a2a1c95cSPeter Wemm * This is needed to make kernel threads stay in kernel mode. 674a2a1c95cSPeter Wemm */ 675a2a1c95cSPeter Wemm void 676a2a1c95cSPeter Wemm cpu_set_fork_handler(p, func, arg) 677a2a1c95cSPeter Wemm struct proc *p; 678a2a1c95cSPeter Wemm void (*func) __P((void *)); 679a2a1c95cSPeter Wemm void *arg; 680a2a1c95cSPeter Wemm { 681a2a1c95cSPeter Wemm /* 682a2a1c95cSPeter Wemm * Note that the trap frame follows the args, so the function 683a2a1c95cSPeter Wemm * is really called like this: func(arg, frame); 684a2a1c95cSPeter Wemm */ 685a2a1c95cSPeter Wemm p->p_addr->u_pcb.pcb_esi = (int) func; /* function */ 686a2a1c95cSPeter Wemm p->p_addr->u_pcb.pcb_ebx = (int) arg; /* first arg */ 6875b81b6b3SRodney W. Grimes } 6885b81b6b3SRodney W. Grimes 6897c2b54e8SNate Williams void 6905b81b6b3SRodney W. Grimes cpu_exit(p) 6915b81b6b3SRodney W. Grimes register struct proc *p; 6925b81b6b3SRodney W. Grimes { 69348a09cf2SJohn Dyson #if defined(USER_LDT) || defined(VM86) 69448a09cf2SJohn Dyson struct pcb *pcb = &p->p_addr->u_pcb; 6950dbf6d73SJordan K. Hubbard #endif 6965b81b6b3SRodney W. Grimes 697960173b9SRodney W. Grimes #if NNPX > 0 6985b81b6b3SRodney W. Grimes npxexit(p); 699960173b9SRodney W. Grimes #endif /* NNPX */ 70048a09cf2SJohn Dyson #ifdef VM86 70148a09cf2SJohn Dyson if (pcb->pcb_ext != 0) { 70248a09cf2SJohn Dyson /* 70348a09cf2SJohn Dyson * XXX do we need to move the TSS off the allocated pages 70448a09cf2SJohn Dyson * before freeing them? (not done here) 70548a09cf2SJohn Dyson */ 70648a09cf2SJohn Dyson kmem_free(kernel_map, (vm_offset_t)pcb->pcb_ext, 70748a09cf2SJohn Dyson ctob(IOPAGES + 1)); 70848a09cf2SJohn Dyson pcb->pcb_ext = 0; 70948a09cf2SJohn Dyson } 71048a09cf2SJohn Dyson #endif 7110dbf6d73SJordan K. Hubbard #ifdef USER_LDT 7120dbf6d73SJordan K. Hubbard if (pcb->pcb_ldt != 0) { 7130dbf6d73SJordan K. Hubbard if (pcb == curpcb) 7140dbf6d73SJordan K. Hubbard lldt(GSEL(GUSERLDT_SEL, SEL_KPL)); 7150dbf6d73SJordan K. Hubbard kmem_free(kernel_map, (vm_offset_t)pcb->pcb_ldt, 7160dbf6d73SJordan K. Hubbard pcb->pcb_ldt_len * sizeof(union descriptor)); 7170dbf6d73SJordan K. Hubbard pcb->pcb_ldt_len = (int)pcb->pcb_ldt = 0; 7180dbf6d73SJordan K. Hubbard } 7190dbf6d73SJordan K. Hubbard #endif 7201a051896SBruce Evans cnt.v_swtch++; 7211a051896SBruce Evans cpu_switch(p); 7227c2b54e8SNate Williams panic("cpu_exit"); 7235b81b6b3SRodney W. Grimes } 7245b81b6b3SRodney W. Grimes 725381fe1aaSGarrett Wollman void 726bd7e5f99SJohn Dyson cpu_wait(p) 727bd7e5f99SJohn Dyson struct proc *p; 728bd7e5f99SJohn Dyson { 7295b81b6b3SRodney W. Grimes /* drop per-process resources */ 730675878e7SJohn Dyson pmap_dispose_proc(p); 7312d8acc0fSJohn Dyson 7322d8acc0fSJohn Dyson /* and clean-out the vmspace */ 7337f8cb368SDavid Greenman vmspace_free(p->p_vmspace); 7345b81b6b3SRodney W. Grimes } 7355b81b6b3SRodney W. Grimes 7365b81b6b3SRodney W. Grimes /* 73726f9a767SRodney W. Grimes * Dump the machine specific header information at the start of a core dump. 73826f9a767SRodney W. Grimes */ 73926f9a767SRodney W. Grimes int 74026f9a767SRodney W. Grimes cpu_coredump(p, vp, cred) 74126f9a767SRodney W. Grimes struct proc *p; 74226f9a767SRodney W. Grimes struct vnode *vp; 74326f9a767SRodney W. Grimes struct ucred *cred; 74426f9a767SRodney W. Grimes { 74526f9a767SRodney W. Grimes 74626f9a767SRodney W. Grimes return (vn_rdwr(UIO_WRITE, vp, (caddr_t) p->p_addr, ctob(UPAGES), 74726f9a767SRodney W. Grimes (off_t)0, UIO_SYSSPACE, IO_NODELOCKED|IO_UNIT, cred, (int *)NULL, 74826f9a767SRodney W. Grimes p)); 74926f9a767SRodney W. Grimes } 75026f9a767SRodney W. Grimes 75187b6de2bSPoul-Henning Kamp #ifdef notyet 75287b91157SPoul-Henning Kamp static void 7535b81b6b3SRodney W. Grimes setredzone(pte, vaddr) 7545b81b6b3SRodney W. Grimes u_short *pte; 7555b81b6b3SRodney W. Grimes caddr_t vaddr; 7565b81b6b3SRodney W. Grimes { 7575b81b6b3SRodney W. Grimes /* eventually do this by setting up an expand-down stack segment 7585b81b6b3SRodney W. Grimes for ss0: selector, allowing stack access down to top of u. 7595b81b6b3SRodney W. Grimes this means though that protection violations need to be handled 7605b81b6b3SRodney W. Grimes thru a double fault exception that must do an integral task 7615b81b6b3SRodney W. Grimes switch to a known good context, within which a dump can be 7625b81b6b3SRodney W. Grimes taken. a sensible scheme might be to save the initial context 7635b81b6b3SRodney W. Grimes used by sched (that has physical memory mapped 1:1 at bottom) 7645b81b6b3SRodney W. Grimes and take the dump while still in mapped mode */ 7655b81b6b3SRodney W. Grimes } 76687b6de2bSPoul-Henning Kamp #endif 76726f9a767SRodney W. Grimes 76826f9a767SRodney W. Grimes /* 7695b81b6b3SRodney W. Grimes * Convert kernel VA to physical address 7705b81b6b3SRodney W. Grimes */ 771aaf08d94SGarrett Wollman u_long 7727f8cb368SDavid Greenman kvtop(void *addr) 7735b81b6b3SRodney W. Grimes { 7745b81b6b3SRodney W. Grimes vm_offset_t va; 7755b81b6b3SRodney W. Grimes 776ed7fcbd0SDavid Greenman va = pmap_kextract((vm_offset_t)addr); 7775b81b6b3SRodney W. Grimes if (va == 0) 7785b81b6b3SRodney W. Grimes panic("kvtop: zero page frame"); 7797f8cb368SDavid Greenman return((int)va); 7805b81b6b3SRodney W. Grimes } 7815b81b6b3SRodney W. Grimes 7825b81b6b3SRodney W. Grimes /* 783ac322158SDavid Greenman * Map an IO request into kernel virtual address space. 7845b81b6b3SRodney W. Grimes * 785ac322158SDavid Greenman * All requests are (re)mapped into kernel VA space. 786ac322158SDavid Greenman * Notice that we use b_bufsize for the size of the buffer 787ac322158SDavid Greenman * to be mapped. b_bcount might be modified by the driver. 7885b81b6b3SRodney W. Grimes */ 789381fe1aaSGarrett Wollman void 7905b81b6b3SRodney W. Grimes vmapbuf(bp) 7915b81b6b3SRodney W. Grimes register struct buf *bp; 7925b81b6b3SRodney W. Grimes { 7930157d6d9SJohn Dyson register caddr_t addr, v, kva; 79407658526SPoul-Henning Kamp vm_offset_t pa; 7955b81b6b3SRodney W. Grimes 79626f9a767SRodney W. Grimes if ((bp->b_flags & B_PHYS) == 0) 7975b81b6b3SRodney W. Grimes panic("vmapbuf"); 79826f9a767SRodney W. Grimes 79912936855SDavid Greenman for (v = bp->b_saveaddr, addr = (caddr_t)trunc_page(bp->b_data); 80026f9a767SRodney W. Grimes addr < bp->b_data + bp->b_bufsize; 8010157d6d9SJohn Dyson addr += PAGE_SIZE, v += PAGE_SIZE) { 80226f9a767SRodney W. Grimes /* 803ac269d78SDavid Greenman * Do the vm_fault if needed; do the copy-on-write thing 804ac269d78SDavid Greenman * when reading stuff off device into memory. 80526f9a767SRodney W. Grimes */ 80626f9a767SRodney W. Grimes vm_fault_quick(addr, 80726f9a767SRodney W. Grimes (bp->b_flags&B_READ)?(VM_PROT_READ|VM_PROT_WRITE):VM_PROT_READ); 8080157d6d9SJohn Dyson pa = trunc_page(pmap_kextract((vm_offset_t) addr)); 809641a27e6SJohn Dyson if (pa == 0) 810641a27e6SJohn Dyson panic("vmapbuf: page not present"); 81126f9a767SRodney W. Grimes vm_page_hold(PHYS_TO_VM_PAGE(pa)); 8120157d6d9SJohn Dyson pmap_kenter((vm_offset_t) v, pa); 81326f9a767SRodney W. Grimes } 81426f9a767SRodney W. Grimes 8150157d6d9SJohn Dyson kva = bp->b_saveaddr; 8160157d6d9SJohn Dyson bp->b_saveaddr = bp->b_data; 8170157d6d9SJohn Dyson bp->b_data = kva + (((vm_offset_t) bp->b_data) & PAGE_MASK); 8185b81b6b3SRodney W. Grimes } 8195b81b6b3SRodney W. Grimes 8205b81b6b3SRodney W. Grimes /* 8215b81b6b3SRodney W. Grimes * Free the io map PTEs associated with this IO operation. 8225b81b6b3SRodney W. Grimes * We also invalidate the TLB entries and restore the original b_addr. 8235b81b6b3SRodney W. Grimes */ 824381fe1aaSGarrett Wollman void 8255b81b6b3SRodney W. Grimes vunmapbuf(bp) 8265b81b6b3SRodney W. Grimes register struct buf *bp; 8275b81b6b3SRodney W. Grimes { 828c564966bSDavid Greenman register caddr_t addr; 82907658526SPoul-Henning Kamp vm_offset_t pa; 8305b81b6b3SRodney W. Grimes 8315b81b6b3SRodney W. Grimes if ((bp->b_flags & B_PHYS) == 0) 8325b81b6b3SRodney W. Grimes panic("vunmapbuf"); 833c564966bSDavid Greenman 83412936855SDavid Greenman for (addr = (caddr_t)trunc_page(bp->b_data); 83512936855SDavid Greenman addr < bp->b_data + bp->b_bufsize; 836f8845af0SPoul-Henning Kamp addr += PAGE_SIZE) { 8370157d6d9SJohn Dyson pa = trunc_page(pmap_kextract((vm_offset_t) addr)); 8380157d6d9SJohn Dyson pmap_kremove((vm_offset_t) addr); 83926f9a767SRodney W. Grimes vm_page_unhold(PHYS_TO_VM_PAGE(pa)); 84026f9a767SRodney W. Grimes } 8410157d6d9SJohn Dyson 8420157d6d9SJohn Dyson bp->b_data = bp->b_saveaddr; 8435b81b6b3SRodney W. Grimes } 8445b81b6b3SRodney W. Grimes 8455b81b6b3SRodney W. Grimes /* 8465b81b6b3SRodney W. Grimes * Force reset the processor by invalidating the entire address space! 8475b81b6b3SRodney W. Grimes */ 8482f1e7069STor Egge 8492f1e7069STor Egge #ifdef SMP 8502f1e7069STor Egge static void 8512f1e7069STor Egge cpu_reset_proxy() 8522f1e7069STor Egge { 8532f1e7069STor Egge u_int saved_mp_lock; 8542f1e7069STor Egge 8552f1e7069STor Egge cpu_reset_proxy_active = 1; 8562f1e7069STor Egge while (cpu_reset_proxy_active == 1) 8572f1e7069STor Egge ; /* Wait for other cpu to disable interupts */ 8582f1e7069STor Egge saved_mp_lock = mp_lock; 8592f1e7069STor Egge mp_lock = 1; 8602f1e7069STor Egge printf("cpu_reset_proxy: Grabbed mp lock for BSP\n"); 8612f1e7069STor Egge cpu_reset_proxy_active = 3; 8622f1e7069STor Egge while (cpu_reset_proxy_active == 3) 8632f1e7069STor Egge ; /* Wait for other cpu to enable interrupts */ 8642f1e7069STor Egge stop_cpus((1<<cpu_reset_proxyid)); 8652f1e7069STor Egge printf("cpu_reset_proxy: Stopped CPU %d\n", cpu_reset_proxyid); 8662f1e7069STor Egge DELAY(1000000); 8672f1e7069STor Egge cpu_reset_real(); 8682f1e7069STor Egge } 8692f1e7069STor Egge #endif 8702f1e7069STor Egge 8717f8cb368SDavid Greenman void 872d447dbeeSBruce Evans cpu_reset() 873d447dbeeSBruce Evans { 8742f1e7069STor Egge #ifdef SMP 8752f1e7069STor Egge if (smp_active == 0) { 8762f1e7069STor Egge cpu_reset_real(); 8772f1e7069STor Egge /* NOTREACHED */ 8782f1e7069STor Egge } else { 8792f1e7069STor Egge 8802f1e7069STor Egge u_int map; 8812f1e7069STor Egge int cnt; 8822f1e7069STor Egge printf("cpu_reset called on cpu#%d\n",cpuid); 8832f1e7069STor Egge 8842f1e7069STor Egge map = other_cpus & ~ stopped_cpus; 8852f1e7069STor Egge 8862f1e7069STor Egge if (map != 0) { 8872f1e7069STor Egge printf("cpu_reset: Stopping other CPUs\n"); 8882f1e7069STor Egge stop_cpus(map); /* Stop all other CPUs */ 8892f1e7069STor Egge } 8902f1e7069STor Egge 8912f1e7069STor Egge if (cpuid == 0) { 8922f1e7069STor Egge DELAY(1000000); 8932f1e7069STor Egge cpu_reset_real(); 8942f1e7069STor Egge /* NOTREACHED */ 8952f1e7069STor Egge } else { 8962f1e7069STor Egge /* We are not BSP (CPU #0) */ 8972f1e7069STor Egge 8982f1e7069STor Egge cpu_reset_proxyid = cpuid; 8992f1e7069STor Egge cpustop_restartfunc = cpu_reset_proxy; 9002f1e7069STor Egge printf("cpu_reset: Restarting BSP\n"); 9012f1e7069STor Egge started_cpus = (1<<0); /* Restart CPU #0 */ 9022f1e7069STor Egge 9032f1e7069STor Egge cnt = 0; 9042f1e7069STor Egge while (cpu_reset_proxy_active == 0 && cnt < 10000000) 9052f1e7069STor Egge cnt++; /* Wait for BSP to announce restart */ 9062f1e7069STor Egge if (cpu_reset_proxy_active == 0) 9072f1e7069STor Egge printf("cpu_reset: Failed to restart BSP\n"); 9082f1e7069STor Egge __asm __volatile("cli" : : : "memory"); 9092f1e7069STor Egge cpu_reset_proxy_active = 2; 9102f1e7069STor Egge cnt = 0; 9112f1e7069STor Egge while (cpu_reset_proxy_active == 2 && cnt < 10000000) 9122f1e7069STor Egge cnt++; /* Do nothing */ 9132f1e7069STor Egge if (cpu_reset_proxy_active == 2) { 9142f1e7069STor Egge printf("cpu_reset: BSP did not grab mp lock\n"); 9152f1e7069STor Egge cpu_reset_real(); /* XXX: Bogus ? */ 9162f1e7069STor Egge } 9172f1e7069STor Egge cpu_reset_proxy_active = 4; 9182f1e7069STor Egge __asm __volatile("sti" : : : "memory"); 9192f1e7069STor Egge while (1); 9202f1e7069STor Egge /* NOTREACHED */ 9212f1e7069STor Egge } 9222f1e7069STor Egge } 9232f1e7069STor Egge #else 9242f1e7069STor Egge cpu_reset_real(); 9252f1e7069STor Egge #endif 9262f1e7069STor Egge } 9272f1e7069STor Egge 9282f1e7069STor Egge static void 9292f1e7069STor Egge cpu_reset_real() 9302f1e7069STor Egge { 931d447dbeeSBruce Evans 93203245f09SKATO Takenori #ifdef PC98 93303245f09SKATO Takenori /* 93403245f09SKATO Takenori * Attempt to do a CPU reset via CPU reset port. 93503245f09SKATO Takenori */ 936d447dbeeSBruce Evans disable_intr(); 9378e929d65SKATO Takenori if ((inb(0x35) & 0xa0) != 0xa0) { 93803245f09SKATO Takenori outb(0x37, 0x0f); /* SHUT0 = 0. */ 93903245f09SKATO Takenori outb(0x37, 0x0b); /* SHUT1 = 0. */ 9408e929d65SKATO Takenori } 94103245f09SKATO Takenori outb(0xf0, 0x00); /* Reset. */ 94203245f09SKATO Takenori #else 9432320728fSRodney W. Grimes /* 9442320728fSRodney W. Grimes * Attempt to do a CPU reset via the keyboard controller, 9452320728fSRodney W. Grimes * do not turn of the GateA20, as any machine that fails 9462320728fSRodney W. Grimes * to do the reset here would then end up in no man's land. 9472320728fSRodney W. Grimes */ 9485eb46edfSDavid Greenman 94903245f09SKATO Takenori #if !defined(BROKEN_KEYBOARD_RESET) 9502320728fSRodney W. Grimes outb(IO_KBD + 4, 0xFE); 9512320728fSRodney W. Grimes DELAY(500000); /* wait 0.5 sec to see if that did it */ 9522320728fSRodney W. Grimes printf("Keyboard reset did not work, attempting CPU shutdown\n"); 9532320728fSRodney W. Grimes DELAY(1000000); /* wait 1 sec for printf to complete */ 9545eb46edfSDavid Greenman #endif 95503245f09SKATO Takenori #endif /* PC98 */ 9565b81b6b3SRodney W. Grimes /* force a shutdown by unmapping entire address space ! */ 957f8845af0SPoul-Henning Kamp bzero((caddr_t) PTD, PAGE_SIZE); 9585b81b6b3SRodney W. Grimes 9595b81b6b3SRodney W. Grimes /* "good night, sweet prince .... <THUNK!>" */ 96027e9b35eSJohn Dyson invltlb(); 9615b81b6b3SRodney W. Grimes /* NOTREACHED */ 9627f8cb368SDavid Greenman while(1); 9635b81b6b3SRodney W. Grimes } 964b9d60b3fSDavid Greenman 965b9d60b3fSDavid Greenman /* 966b9d60b3fSDavid Greenman * Grow the user stack to allow for 'sp'. This version grows the stack in 96729360eb0SDavid Greenman * chunks of SGROWSIZ. 968b9d60b3fSDavid Greenman */ 969b9d60b3fSDavid Greenman int 970b9d60b3fSDavid Greenman grow(p, sp) 971b9d60b3fSDavid Greenman struct proc *p; 97226f9a767SRodney W. Grimes u_int sp; 973b9d60b3fSDavid Greenman { 974b9d60b3fSDavid Greenman unsigned int nss; 975b9d60b3fSDavid Greenman caddr_t v; 976b9d60b3fSDavid Greenman struct vmspace *vm = p->p_vmspace; 977b9d60b3fSDavid Greenman 978b9d60b3fSDavid Greenman if ((caddr_t)sp <= vm->vm_maxsaddr || (unsigned)sp >= (unsigned)USRSTACK) 979b9d60b3fSDavid Greenman return (1); 980b9d60b3fSDavid Greenman 981b9d60b3fSDavid Greenman nss = roundup(USRSTACK - (unsigned)sp, PAGE_SIZE); 982b9d60b3fSDavid Greenman 983b9d60b3fSDavid Greenman if (nss > p->p_rlimit[RLIMIT_STACK].rlim_cur) 984b9d60b3fSDavid Greenman return (0); 985b9d60b3fSDavid Greenman 986b9d60b3fSDavid Greenman if (vm->vm_ssize && roundup(vm->vm_ssize << PAGE_SHIFT, 98729360eb0SDavid Greenman SGROWSIZ) < nss) { 988b9d60b3fSDavid Greenman int grow_amount; 989b9d60b3fSDavid Greenman /* 990b9d60b3fSDavid Greenman * If necessary, grow the VM that the stack occupies 991b9d60b3fSDavid Greenman * to allow for the rlimit. This allows us to not have 992b9d60b3fSDavid Greenman * to allocate all of the VM up-front in execve (which 993b9d60b3fSDavid Greenman * is expensive). 994b9d60b3fSDavid Greenman * Grow the VM by the amount requested rounded up to 99529360eb0SDavid Greenman * the nearest SGROWSIZ to provide for some hysteresis. 996b9d60b3fSDavid Greenman */ 99729360eb0SDavid Greenman grow_amount = roundup((nss - (vm->vm_ssize << PAGE_SHIFT)), SGROWSIZ); 998b9d60b3fSDavid Greenman v = (char *)USRSTACK - roundup(vm->vm_ssize << PAGE_SHIFT, 99929360eb0SDavid Greenman SGROWSIZ) - grow_amount; 1000b9d60b3fSDavid Greenman /* 100129360eb0SDavid Greenman * If there isn't enough room to extend by SGROWSIZ, then 1002b9d60b3fSDavid Greenman * just extend to the maximum size 1003b9d60b3fSDavid Greenman */ 1004b9d60b3fSDavid Greenman if (v < vm->vm_maxsaddr) { 1005b9d60b3fSDavid Greenman v = vm->vm_maxsaddr; 1006b9d60b3fSDavid Greenman grow_amount = MAXSSIZ - (vm->vm_ssize << PAGE_SHIFT); 1007b9d60b3fSDavid Greenman } 100868940ac1SDavid Greenman if ((grow_amount == 0) || (vm_map_find(&vm->vm_map, NULL, 0, (vm_offset_t *)&v, 1009bd7e5f99SJohn Dyson grow_amount, FALSE, VM_PROT_ALL, VM_PROT_ALL, 0) != KERN_SUCCESS)) { 1010b9d60b3fSDavid Greenman return (0); 1011b9d60b3fSDavid Greenman } 1012b9d60b3fSDavid Greenman vm->vm_ssize += grow_amount >> PAGE_SHIFT; 1013b9d60b3fSDavid Greenman } 1014b9d60b3fSDavid Greenman 1015b9d60b3fSDavid Greenman return (1); 1016b9d60b3fSDavid Greenman } 1017a29b63cbSJohn Dyson 10187762bc7bSBruce Evans static int cnt_prezero; 101966095752SJohn Dyson 102066095752SJohn Dyson SYSCTL_INT(_machdep, OID_AUTO, cnt_prezero, CTLFLAG_RD, &cnt_prezero, 0, ""); 102166095752SJohn Dyson 1022a29b63cbSJohn Dyson /* 102383eab616SBruce Evans * Implement the pre-zeroed page mechanism. 102483eab616SBruce Evans * This routine is called from the idle loop. 1025a29b63cbSJohn Dyson */ 1026a29b63cbSJohn Dyson int 102783eab616SBruce Evans vm_page_zero_idle() 102883eab616SBruce Evans { 102983eab616SBruce Evans static int free_rover; 1030a29b63cbSJohn Dyson vm_page_t m; 103183eab616SBruce Evans int s; 103283eab616SBruce Evans 103383eab616SBruce Evans /* 103483eab616SBruce Evans * XXX 10358e56e561SJohn Dyson * We stop zeroing pages when there are sufficent prezeroed pages. 10368e56e561SJohn Dyson * This threshold isn't really needed, except we want to 10378e56e561SJohn Dyson * bypass unneeded calls to vm_page_list_find, and the 10388e56e561SJohn Dyson * associated cache flush and latency. The pre-zero will 10398e56e561SJohn Dyson * still be called when there are significantly more 10408e56e561SJohn Dyson * non-prezeroed pages than zeroed pages. The threshold 10418e56e561SJohn Dyson * of half the number of reserved pages is arbitrary, but 10428e56e561SJohn Dyson * approximately the right amount. Eventually, we should 10438e56e561SJohn Dyson * perhaps interrupt the zero operation when a process 10448e56e561SJohn Dyson * is found to be ready to run. 10458e56e561SJohn Dyson */ 104683eab616SBruce Evans if (cnt.v_free_count - vm_page_zero_count <= cnt.v_free_reserved / 2) 104783eab616SBruce Evans return (0); 10489a3b3e8bSPeter Wemm #ifdef SMP 104966095752SJohn Dyson if (try_mplock()) { 10509a3b3e8bSPeter Wemm #endif 105183eab616SBruce Evans s = splvm(); 1052d20d60beSTor Egge __asm __volatile("sti" : : : "memory"); 105383eab616SBruce Evans m = vm_page_list_find(PQ_FREE, free_rover); 105483eab616SBruce Evans if (m != NULL) { 10555070c7f8SJohn Dyson --(*vm_page_queues[m->queue].lcnt); 10565070c7f8SJohn Dyson TAILQ_REMOVE(vm_page_queues[m->queue].pl, m, pageq); 105795f67de2STor Egge m->queue = PQ_NONE; 105883eab616SBruce Evans splx(s); 105966095752SJohn Dyson #if 0 10609a3b3e8bSPeter Wemm rel_mplock(); 10619a3b3e8bSPeter Wemm #endif 1062a29b63cbSJohn Dyson pmap_zero_page(VM_PAGE_TO_PHYS(m)); 10637762bc7bSBruce Evans #if 0 10649a3b3e8bSPeter Wemm get_mplock(); 10659a3b3e8bSPeter Wemm #endif 106683eab616SBruce Evans (void)splvm(); 10675070c7f8SJohn Dyson m->queue = PQ_ZERO + m->pc; 10685070c7f8SJohn Dyson ++(*vm_page_queues[m->queue].lcnt); 10697762bc7bSBruce Evans TAILQ_INSERT_HEAD(vm_page_queues[m->queue].pl, m, 10707762bc7bSBruce Evans pageq); 10715070c7f8SJohn Dyson free_rover = (free_rover + PQ_PRIME3) & PQ_L2_MASK; 1072a316d390SJohn Dyson ++vm_page_zero_count; 107366095752SJohn Dyson ++cnt_prezero; 1074a29b63cbSJohn Dyson } 107583eab616SBruce Evans splx(s); 1076d20d60beSTor Egge __asm __volatile("cli" : : : "memory"); 10779a3b3e8bSPeter Wemm #ifdef SMP 10789a3b3e8bSPeter Wemm rel_mplock(); 10797762bc7bSBruce Evans #endif 108083eab616SBruce Evans return (1); 10817762bc7bSBruce Evans #ifdef SMP 1082a29b63cbSJohn Dyson } 108366095752SJohn Dyson #endif 108466095752SJohn Dyson return (0); 108566095752SJohn Dyson } 1086e0b78e19SJoerg Wunsch 1087e0b78e19SJoerg Wunsch /* 108857d7d7b3SJustin T. Gibbs * Software interrupt handler for queued VM system processing. 108957d7d7b3SJustin T. Gibbs */ 109057d7d7b3SJustin T. Gibbs void 109157d7d7b3SJustin T. Gibbs swi_vm() 109257d7d7b3SJustin T. Gibbs { 109357d7d7b3SJustin T. Gibbs if (busdma_swi_pending != 0) 109457d7d7b3SJustin T. Gibbs busdma_swi(); 109557d7d7b3SJustin T. Gibbs } 109657d7d7b3SJustin T. Gibbs 109757d7d7b3SJustin T. Gibbs /* 1098cae6f73aSJoerg Wunsch * Tell whether this address is in some physical memory region. 1099e0b78e19SJoerg Wunsch * Currently used by the kernel coredump code in order to avoid 1100e0b78e19SJoerg Wunsch * dumping the ``ISA memory hole'' which could cause indefinite hangs, 1101e0b78e19SJoerg Wunsch * or other unpredictable behaviour. 1102e0b78e19SJoerg Wunsch */ 1103e0b78e19SJoerg Wunsch 1104e0b78e19SJoerg Wunsch #include "isa.h" 1105e0b78e19SJoerg Wunsch 1106e0b78e19SJoerg Wunsch int 1107cae6f73aSJoerg Wunsch is_physical_memory(addr) 1108e0b78e19SJoerg Wunsch vm_offset_t addr; 1109e0b78e19SJoerg Wunsch { 1110e0b78e19SJoerg Wunsch 1111e0b78e19SJoerg Wunsch #if NISA > 0 1112e0b78e19SJoerg Wunsch /* The ISA ``memory hole''. */ 1113e0b78e19SJoerg Wunsch if (addr >= 0xa0000 && addr < 0x100000) 1114cae6f73aSJoerg Wunsch return 0; 1115e0b78e19SJoerg Wunsch #endif 1116e0b78e19SJoerg Wunsch 1117e0b78e19SJoerg Wunsch /* 1118e0b78e19SJoerg Wunsch * stuff other tests for known memory-mapped devices (PCI?) 1119e0b78e19SJoerg Wunsch * here 1120e0b78e19SJoerg Wunsch */ 1121e0b78e19SJoerg Wunsch 1122cae6f73aSJoerg Wunsch return 1; 1123e0b78e19SJoerg Wunsch } 1124