1f9bac91bSBenno Rice /* 25244eac9SBenno Rice * Copyright (c) 2001 The NetBSD Foundation, Inc. 35244eac9SBenno Rice * All rights reserved. 45244eac9SBenno Rice * 55244eac9SBenno Rice * This code is derived from software contributed to The NetBSD Foundation 65244eac9SBenno Rice * by Matt Thomas <matt@3am-software.com> of Allegro Networks, Inc. 75244eac9SBenno Rice * 85244eac9SBenno Rice * Redistribution and use in source and binary forms, with or without 95244eac9SBenno Rice * modification, are permitted provided that the following conditions 105244eac9SBenno Rice * are met: 115244eac9SBenno Rice * 1. Redistributions of source code must retain the above copyright 125244eac9SBenno Rice * notice, this list of conditions and the following disclaimer. 135244eac9SBenno Rice * 2. Redistributions in binary form must reproduce the above copyright 145244eac9SBenno Rice * notice, this list of conditions and the following disclaimer in the 155244eac9SBenno Rice * documentation and/or other materials provided with the distribution. 165244eac9SBenno Rice * 3. All advertising materials mentioning features or use of this software 175244eac9SBenno Rice * must display the following acknowledgement: 185244eac9SBenno Rice * This product includes software developed by the NetBSD 195244eac9SBenno Rice * Foundation, Inc. and its contributors. 205244eac9SBenno Rice * 4. Neither the name of The NetBSD Foundation nor the names of its 215244eac9SBenno Rice * contributors may be used to endorse or promote products derived 225244eac9SBenno Rice * from this software without specific prior written permission. 235244eac9SBenno Rice * 245244eac9SBenno Rice * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS 255244eac9SBenno Rice * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED 265244eac9SBenno Rice * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 275244eac9SBenno Rice * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS 285244eac9SBenno Rice * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 295244eac9SBenno Rice * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 305244eac9SBenno Rice * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS 315244eac9SBenno Rice * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN 325244eac9SBenno Rice * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 335244eac9SBenno Rice * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 345244eac9SBenno Rice * POSSIBILITY OF SUCH DAMAGE. 355244eac9SBenno Rice */ 365244eac9SBenno Rice /* 37f9bac91bSBenno Rice * Copyright (C) 1995, 1996 Wolfgang Solfrank. 38f9bac91bSBenno Rice * Copyright (C) 1995, 1996 TooLs GmbH. 39f9bac91bSBenno Rice * All rights reserved. 40f9bac91bSBenno Rice * 41f9bac91bSBenno Rice * Redistribution and use in source and binary forms, with or without 42f9bac91bSBenno Rice * modification, are permitted provided that the following conditions 43f9bac91bSBenno Rice * are met: 44f9bac91bSBenno Rice * 1. Redistributions of source code must retain the above copyright 45f9bac91bSBenno Rice * notice, this list of conditions and the following disclaimer. 46f9bac91bSBenno Rice * 2. Redistributions in binary form must reproduce the above copyright 47f9bac91bSBenno Rice * notice, this list of conditions and the following disclaimer in the 48f9bac91bSBenno Rice * documentation and/or other materials provided with the distribution. 49f9bac91bSBenno Rice * 3. All advertising materials mentioning features or use of this software 50f9bac91bSBenno Rice * must display the following acknowledgement: 51f9bac91bSBenno Rice * This product includes software developed by TooLs GmbH. 52f9bac91bSBenno Rice * 4. The name of TooLs GmbH may not be used to endorse or promote products 53f9bac91bSBenno Rice * derived from this software without specific prior written permission. 54f9bac91bSBenno Rice * 55f9bac91bSBenno Rice * THIS SOFTWARE IS PROVIDED BY TOOLS GMBH ``AS IS'' AND ANY EXPRESS OR 56f9bac91bSBenno Rice * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 57f9bac91bSBenno Rice * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 58f9bac91bSBenno Rice * IN NO EVENT SHALL TOOLS GMBH BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 59f9bac91bSBenno Rice * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 60f9bac91bSBenno Rice * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; 61f9bac91bSBenno Rice * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, 62f9bac91bSBenno Rice * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR 63f9bac91bSBenno Rice * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF 64f9bac91bSBenno Rice * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 65f9bac91bSBenno Rice * 66111c77dcSBenno Rice * $NetBSD: pmap.c,v 1.28 2000/03/26 20:42:36 kleink Exp $ 67f9bac91bSBenno Rice */ 68f9bac91bSBenno Rice /* 69f9bac91bSBenno Rice * Copyright (C) 2001 Benno Rice. 70f9bac91bSBenno Rice * All rights reserved. 71f9bac91bSBenno Rice * 72f9bac91bSBenno Rice * Redistribution and use in source and binary forms, with or without 73f9bac91bSBenno Rice * modification, are permitted provided that the following conditions 74f9bac91bSBenno Rice * are met: 75f9bac91bSBenno Rice * 1. Redistributions of source code must retain the above copyright 76f9bac91bSBenno Rice * notice, this list of conditions and the following disclaimer. 77f9bac91bSBenno Rice * 2. Redistributions in binary form must reproduce the above copyright 78f9bac91bSBenno Rice * notice, this list of conditions and the following disclaimer in the 79f9bac91bSBenno Rice * documentation and/or other materials provided with the distribution. 80f9bac91bSBenno Rice * 81f9bac91bSBenno Rice * THIS SOFTWARE IS PROVIDED BY Benno Rice ``AS IS'' AND ANY EXPRESS OR 82f9bac91bSBenno Rice * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 83f9bac91bSBenno Rice * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 84f9bac91bSBenno Rice * IN NO EVENT SHALL TOOLS GMBH BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 85f9bac91bSBenno Rice * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, 86f9bac91bSBenno Rice * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; 87f9bac91bSBenno Rice * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, 88f9bac91bSBenno Rice * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR 89f9bac91bSBenno Rice * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF 90f9bac91bSBenno Rice * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 91f9bac91bSBenno Rice */ 92f9bac91bSBenno Rice 938368cf8fSDavid E. O'Brien #include <sys/cdefs.h> 948368cf8fSDavid E. O'Brien __FBSDID("$FreeBSD$"); 95f9bac91bSBenno Rice 965244eac9SBenno Rice /* 975244eac9SBenno Rice * Manages physical address maps. 985244eac9SBenno Rice * 995244eac9SBenno Rice * In addition to hardware address maps, this module is called upon to 1005244eac9SBenno Rice * provide software-use-only maps which may or may not be stored in the 1015244eac9SBenno Rice * same form as hardware maps. These pseudo-maps are used to store 1025244eac9SBenno Rice * intermediate results from copy operations to and from address spaces. 1035244eac9SBenno Rice * 1045244eac9SBenno Rice * Since the information managed by this module is also stored by the 1055244eac9SBenno Rice * logical address mapping module, this module may throw away valid virtual 1065244eac9SBenno Rice * to physical mappings at almost any time. However, invalidations of 1075244eac9SBenno Rice * mappings must be done as requested. 1085244eac9SBenno Rice * 1095244eac9SBenno Rice * In order to cope with hardware architectures which make virtual to 1105244eac9SBenno Rice * physical map invalidates expensive, this module may delay invalidate 1115244eac9SBenno Rice * reduced protection operations until such time as they are actually 1125244eac9SBenno Rice * necessary. This module is given full information as to which processors 1135244eac9SBenno Rice * are currently using which maps, and to when physical maps must be made 1145244eac9SBenno Rice * correct. 1155244eac9SBenno Rice */ 1165244eac9SBenno Rice 117ad7a226fSPeter Wemm #include "opt_kstack_pages.h" 118ad7a226fSPeter Wemm 119f9bac91bSBenno Rice #include <sys/param.h> 1200b27d710SPeter Wemm #include <sys/kernel.h> 1215244eac9SBenno Rice #include <sys/ktr.h> 12294e0b85eSMark Peek #include <sys/lock.h> 1235244eac9SBenno Rice #include <sys/msgbuf.h> 124f9bac91bSBenno Rice #include <sys/mutex.h> 1255244eac9SBenno Rice #include <sys/proc.h> 1265244eac9SBenno Rice #include <sys/sysctl.h> 1275244eac9SBenno Rice #include <sys/systm.h> 1285244eac9SBenno Rice #include <sys/vmmeter.h> 1295244eac9SBenno Rice 1305244eac9SBenno Rice #include <dev/ofw/openfirm.h> 131f9bac91bSBenno Rice 132f9bac91bSBenno Rice #include <vm/vm.h> 133f9bac91bSBenno Rice #include <vm/vm_param.h> 134f9bac91bSBenno Rice #include <vm/vm_kern.h> 135f9bac91bSBenno Rice #include <vm/vm_page.h> 136f9bac91bSBenno Rice #include <vm/vm_map.h> 137f9bac91bSBenno Rice #include <vm/vm_object.h> 138f9bac91bSBenno Rice #include <vm/vm_extern.h> 139f9bac91bSBenno Rice #include <vm/vm_pageout.h> 140f9bac91bSBenno Rice #include <vm/vm_pager.h> 141378862a7SJeff Roberson #include <vm/uma.h> 142f9bac91bSBenno Rice 14331c82d03SBenno Rice #include <machine/powerpc.h> 144d699b539SMark Peek #include <machine/bat.h> 1455244eac9SBenno Rice #include <machine/frame.h> 1465244eac9SBenno Rice #include <machine/md_var.h> 1475244eac9SBenno Rice #include <machine/psl.h> 148f9bac91bSBenno Rice #include <machine/pte.h> 1495244eac9SBenno Rice #include <machine/sr.h> 150f9bac91bSBenno Rice 1515244eac9SBenno Rice #define PMAP_DEBUG 152f9bac91bSBenno Rice 1535244eac9SBenno Rice #define TODO panic("%s: not implemented", __func__); 154f9bac91bSBenno Rice 1555244eac9SBenno Rice #define PMAP_LOCK(pm) 1565244eac9SBenno Rice #define PMAP_UNLOCK(pm) 1575244eac9SBenno Rice 1585244eac9SBenno Rice #define TLBIE(va) __asm __volatile("tlbie %0" :: "r"(va)) 1595244eac9SBenno Rice #define TLBSYNC() __asm __volatile("tlbsync"); 1605244eac9SBenno Rice #define SYNC() __asm __volatile("sync"); 1615244eac9SBenno Rice #define EIEIO() __asm __volatile("eieio"); 1625244eac9SBenno Rice 1635244eac9SBenno Rice #define VSID_MAKE(sr, hash) ((sr) | (((hash) & 0xfffff) << 4)) 1645244eac9SBenno Rice #define VSID_TO_SR(vsid) ((vsid) & 0xf) 1655244eac9SBenno Rice #define VSID_TO_HASH(vsid) (((vsid) >> 4) & 0xfffff) 1665244eac9SBenno Rice 1675244eac9SBenno Rice #define PVO_PTEGIDX_MASK 0x0007 /* which PTEG slot */ 1685244eac9SBenno Rice #define PVO_PTEGIDX_VALID 0x0008 /* slot is valid */ 1695244eac9SBenno Rice #define PVO_WIRED 0x0010 /* PVO entry is wired */ 1705244eac9SBenno Rice #define PVO_MANAGED 0x0020 /* PVO entry is managed */ 1715244eac9SBenno Rice #define PVO_EXECUTABLE 0x0040 /* PVO entry is executable */ 172a8aaf02cSBenno Rice #define PVO_BOOTSTRAP 0x0080 /* PVO entry allocated during 17349f8f727SBenno Rice bootstrap */ 1745244eac9SBenno Rice #define PVO_VADDR(pvo) ((pvo)->pvo_vaddr & ~ADDR_POFF) 1755244eac9SBenno Rice #define PVO_ISEXECUTABLE(pvo) ((pvo)->pvo_vaddr & PVO_EXECUTABLE) 1765244eac9SBenno Rice #define PVO_PTEGIDX_GET(pvo) ((pvo)->pvo_vaddr & PVO_PTEGIDX_MASK) 1775244eac9SBenno Rice #define PVO_PTEGIDX_ISSET(pvo) ((pvo)->pvo_vaddr & PVO_PTEGIDX_VALID) 1785244eac9SBenno Rice #define PVO_PTEGIDX_CLR(pvo) \ 1795244eac9SBenno Rice ((void)((pvo)->pvo_vaddr &= ~(PVO_PTEGIDX_VALID|PVO_PTEGIDX_MASK))) 1805244eac9SBenno Rice #define PVO_PTEGIDX_SET(pvo, i) \ 1815244eac9SBenno Rice ((void)((pvo)->pvo_vaddr |= (i)|PVO_PTEGIDX_VALID)) 1825244eac9SBenno Rice 1835244eac9SBenno Rice #define PMAP_PVO_CHECK(pvo) 1845244eac9SBenno Rice 1855244eac9SBenno Rice struct ofw_map { 1865244eac9SBenno Rice vm_offset_t om_va; 1875244eac9SBenno Rice vm_size_t om_len; 1885244eac9SBenno Rice vm_offset_t om_pa; 1895244eac9SBenno Rice u_int om_mode; 1905244eac9SBenno Rice }; 191f9bac91bSBenno Rice 1925244eac9SBenno Rice int pmap_bootstrapped = 0; 193f9bac91bSBenno Rice 1945244eac9SBenno Rice /* 1955244eac9SBenno Rice * Virtual and physical address of message buffer. 1965244eac9SBenno Rice */ 1975244eac9SBenno Rice struct msgbuf *msgbufp; 1985244eac9SBenno Rice vm_offset_t msgbuf_phys; 199f9bac91bSBenno Rice 2005244eac9SBenno Rice /* 2015244eac9SBenno Rice * Physical addresses of first and last available physical page. 2025244eac9SBenno Rice */ 203f9bac91bSBenno Rice vm_offset_t avail_start; 204f9bac91bSBenno Rice vm_offset_t avail_end; 2055244eac9SBenno Rice 20603b6e025SPeter Grehan int pmap_pagedaemon_waken; 20703b6e025SPeter Grehan 2085244eac9SBenno Rice /* 2095244eac9SBenno Rice * Map of physical memory regions. 2105244eac9SBenno Rice */ 2115244eac9SBenno Rice vm_offset_t phys_avail[128]; 2125244eac9SBenno Rice u_int phys_avail_count; 21331c82d03SBenno Rice static struct mem_region *regions; 21431c82d03SBenno Rice static struct mem_region *pregions; 21531c82d03SBenno Rice int regions_sz, pregions_sz; 216aa39961eSBenno Rice static struct ofw_map *translations; 2175244eac9SBenno Rice 2185244eac9SBenno Rice /* 2195244eac9SBenno Rice * First and last available kernel virtual addresses. 2205244eac9SBenno Rice */ 221f9bac91bSBenno Rice vm_offset_t virtual_avail; 222f9bac91bSBenno Rice vm_offset_t virtual_end; 223f9bac91bSBenno Rice vm_offset_t kernel_vm_end; 224f9bac91bSBenno Rice 2255244eac9SBenno Rice /* 2265244eac9SBenno Rice * Kernel pmap. 2275244eac9SBenno Rice */ 2285244eac9SBenno Rice struct pmap kernel_pmap_store; 2295244eac9SBenno Rice extern struct pmap ofw_pmap; 230f9bac91bSBenno Rice 231f9bac91bSBenno Rice /* 2325244eac9SBenno Rice * PTEG data. 233f9bac91bSBenno Rice */ 2345244eac9SBenno Rice static struct pteg *pmap_pteg_table; 2355244eac9SBenno Rice u_int pmap_pteg_count; 2365244eac9SBenno Rice u_int pmap_pteg_mask; 2375244eac9SBenno Rice 2385244eac9SBenno Rice /* 2395244eac9SBenno Rice * PVO data. 2405244eac9SBenno Rice */ 2415244eac9SBenno Rice struct pvo_head *pmap_pvo_table; /* pvo entries by pteg index */ 2425244eac9SBenno Rice struct pvo_head pmap_pvo_kunmanaged = 2435244eac9SBenno Rice LIST_HEAD_INITIALIZER(pmap_pvo_kunmanaged); /* list of unmanaged pages */ 2445244eac9SBenno Rice struct pvo_head pmap_pvo_unmanaged = 2455244eac9SBenno Rice LIST_HEAD_INITIALIZER(pmap_pvo_unmanaged); /* list of unmanaged pages */ 2465244eac9SBenno Rice 247378862a7SJeff Roberson uma_zone_t pmap_upvo_zone; /* zone for pvo entries for unmanaged pages */ 248378862a7SJeff Roberson uma_zone_t pmap_mpvo_zone; /* zone for pvo entries for managed pages */ 2495244eac9SBenno Rice struct vm_object pmap_upvo_zone_obj; 2505244eac9SBenno Rice struct vm_object pmap_mpvo_zone_obj; 2515244eac9SBenno Rice 2520d290675SBenno Rice #define BPVO_POOL_SIZE 32768 25349f8f727SBenno Rice static struct pvo_entry *pmap_bpvo_pool; 2540d290675SBenno Rice static int pmap_bpvo_pool_index = 0; 2555244eac9SBenno Rice 2565244eac9SBenno Rice #define VSID_NBPW (sizeof(u_int32_t) * 8) 2575244eac9SBenno Rice static u_int pmap_vsid_bitmap[NPMAPS / VSID_NBPW]; 2585244eac9SBenno Rice 2595244eac9SBenno Rice static boolean_t pmap_initialized = FALSE; 2605244eac9SBenno Rice 2615244eac9SBenno Rice /* 2625244eac9SBenno Rice * Statistics. 2635244eac9SBenno Rice */ 2645244eac9SBenno Rice u_int pmap_pte_valid = 0; 2655244eac9SBenno Rice u_int pmap_pte_overflow = 0; 2665244eac9SBenno Rice u_int pmap_pte_replacements = 0; 2675244eac9SBenno Rice u_int pmap_pvo_entries = 0; 2685244eac9SBenno Rice u_int pmap_pvo_enter_calls = 0; 2695244eac9SBenno Rice u_int pmap_pvo_remove_calls = 0; 2705244eac9SBenno Rice u_int pmap_pte_spills = 0; 2715244eac9SBenno Rice SYSCTL_INT(_machdep, OID_AUTO, pmap_pte_valid, CTLFLAG_RD, &pmap_pte_valid, 2725244eac9SBenno Rice 0, ""); 2735244eac9SBenno Rice SYSCTL_INT(_machdep, OID_AUTO, pmap_pte_overflow, CTLFLAG_RD, 2745244eac9SBenno Rice &pmap_pte_overflow, 0, ""); 2755244eac9SBenno Rice SYSCTL_INT(_machdep, OID_AUTO, pmap_pte_replacements, CTLFLAG_RD, 2765244eac9SBenno Rice &pmap_pte_replacements, 0, ""); 2775244eac9SBenno Rice SYSCTL_INT(_machdep, OID_AUTO, pmap_pvo_entries, CTLFLAG_RD, &pmap_pvo_entries, 2785244eac9SBenno Rice 0, ""); 2795244eac9SBenno Rice SYSCTL_INT(_machdep, OID_AUTO, pmap_pvo_enter_calls, CTLFLAG_RD, 2805244eac9SBenno Rice &pmap_pvo_enter_calls, 0, ""); 2815244eac9SBenno Rice SYSCTL_INT(_machdep, OID_AUTO, pmap_pvo_remove_calls, CTLFLAG_RD, 2825244eac9SBenno Rice &pmap_pvo_remove_calls, 0, ""); 2835244eac9SBenno Rice SYSCTL_INT(_machdep, OID_AUTO, pmap_pte_spills, CTLFLAG_RD, 2845244eac9SBenno Rice &pmap_pte_spills, 0, ""); 2855244eac9SBenno Rice 2865244eac9SBenno Rice struct pvo_entry *pmap_pvo_zeropage; 2875244eac9SBenno Rice 2885244eac9SBenno Rice vm_offset_t pmap_rkva_start = VM_MIN_KERNEL_ADDRESS; 2895244eac9SBenno Rice u_int pmap_rkva_count = 4; 2905244eac9SBenno Rice 2915244eac9SBenno Rice /* 2925244eac9SBenno Rice * Allocate physical memory for use in pmap_bootstrap. 2935244eac9SBenno Rice */ 2945244eac9SBenno Rice static vm_offset_t pmap_bootstrap_alloc(vm_size_t, u_int); 2955244eac9SBenno Rice 2965244eac9SBenno Rice /* 2975244eac9SBenno Rice * PTE calls. 2985244eac9SBenno Rice */ 2995244eac9SBenno Rice static int pmap_pte_insert(u_int, struct pte *); 3005244eac9SBenno Rice 3015244eac9SBenno Rice /* 3025244eac9SBenno Rice * PVO calls. 3035244eac9SBenno Rice */ 304378862a7SJeff Roberson static int pmap_pvo_enter(pmap_t, uma_zone_t, struct pvo_head *, 3055244eac9SBenno Rice vm_offset_t, vm_offset_t, u_int, int); 3065244eac9SBenno Rice static void pmap_pvo_remove(struct pvo_entry *, int); 3075244eac9SBenno Rice static struct pvo_entry *pmap_pvo_find_va(pmap_t, vm_offset_t, int *); 3085244eac9SBenno Rice static struct pte *pmap_pvo_to_pte(const struct pvo_entry *, int); 3095244eac9SBenno Rice 3105244eac9SBenno Rice /* 3115244eac9SBenno Rice * Utility routines. 3125244eac9SBenno Rice */ 3138355f576SJeff Roberson static void * pmap_pvo_allocf(uma_zone_t, int, u_int8_t *, int); 3145244eac9SBenno Rice static struct pvo_entry *pmap_rkva_alloc(void); 3155244eac9SBenno Rice static void pmap_pa_map(struct pvo_entry *, vm_offset_t, 3165244eac9SBenno Rice struct pte *, int *); 3175244eac9SBenno Rice static void pmap_pa_unmap(struct pvo_entry *, struct pte *, int *); 3185244eac9SBenno Rice static void pmap_syncicache(vm_offset_t, vm_size_t); 3195244eac9SBenno Rice static boolean_t pmap_query_bit(vm_page_t, int); 32003b6e025SPeter Grehan static u_int pmap_clear_bit(vm_page_t, int, int *); 3215244eac9SBenno Rice static void tlbia(void); 3225244eac9SBenno Rice 3235244eac9SBenno Rice static __inline int 3245244eac9SBenno Rice va_to_sr(u_int *sr, vm_offset_t va) 3255244eac9SBenno Rice { 3265244eac9SBenno Rice return (sr[(uintptr_t)va >> ADDR_SR_SHFT]); 3275244eac9SBenno Rice } 3285244eac9SBenno Rice 3295244eac9SBenno Rice static __inline u_int 3305244eac9SBenno Rice va_to_pteg(u_int sr, vm_offset_t addr) 3315244eac9SBenno Rice { 3325244eac9SBenno Rice u_int hash; 3335244eac9SBenno Rice 3345244eac9SBenno Rice hash = (sr & SR_VSID_MASK) ^ (((u_int)addr & ADDR_PIDX) >> 3355244eac9SBenno Rice ADDR_PIDX_SHFT); 3365244eac9SBenno Rice return (hash & pmap_pteg_mask); 3375244eac9SBenno Rice } 3385244eac9SBenno Rice 3395244eac9SBenno Rice static __inline struct pvo_head * 3408207b362SBenno Rice pa_to_pvoh(vm_offset_t pa, vm_page_t *pg_p) 3415244eac9SBenno Rice { 3425244eac9SBenno Rice struct vm_page *pg; 3435244eac9SBenno Rice 3445244eac9SBenno Rice pg = PHYS_TO_VM_PAGE(pa); 3455244eac9SBenno Rice 3468207b362SBenno Rice if (pg_p != NULL) 3478207b362SBenno Rice *pg_p = pg; 3488207b362SBenno Rice 3495244eac9SBenno Rice if (pg == NULL) 3505244eac9SBenno Rice return (&pmap_pvo_unmanaged); 3515244eac9SBenno Rice 3525244eac9SBenno Rice return (&pg->md.mdpg_pvoh); 3535244eac9SBenno Rice } 3545244eac9SBenno Rice 3555244eac9SBenno Rice static __inline struct pvo_head * 3565244eac9SBenno Rice vm_page_to_pvoh(vm_page_t m) 357f9bac91bSBenno Rice { 358f9bac91bSBenno Rice 3595244eac9SBenno Rice return (&m->md.mdpg_pvoh); 360f9bac91bSBenno Rice } 361f9bac91bSBenno Rice 362f9bac91bSBenno Rice static __inline void 3635244eac9SBenno Rice pmap_attr_clear(vm_page_t m, int ptebit) 364f9bac91bSBenno Rice { 365f9bac91bSBenno Rice 3665244eac9SBenno Rice m->md.mdpg_attrs &= ~ptebit; 3675244eac9SBenno Rice } 3685244eac9SBenno Rice 3695244eac9SBenno Rice static __inline int 3705244eac9SBenno Rice pmap_attr_fetch(vm_page_t m) 3715244eac9SBenno Rice { 3725244eac9SBenno Rice 3735244eac9SBenno Rice return (m->md.mdpg_attrs); 374f9bac91bSBenno Rice } 375f9bac91bSBenno Rice 376f9bac91bSBenno Rice static __inline void 3775244eac9SBenno Rice pmap_attr_save(vm_page_t m, int ptebit) 378f9bac91bSBenno Rice { 379f9bac91bSBenno Rice 3805244eac9SBenno Rice m->md.mdpg_attrs |= ptebit; 381f9bac91bSBenno Rice } 382f9bac91bSBenno Rice 383f9bac91bSBenno Rice static __inline int 3845244eac9SBenno Rice pmap_pte_compare(const struct pte *pt, const struct pte *pvo_pt) 385f9bac91bSBenno Rice { 3865244eac9SBenno Rice if (pt->pte_hi == pvo_pt->pte_hi) 3875244eac9SBenno Rice return (1); 388f9bac91bSBenno Rice 3895244eac9SBenno Rice return (0); 390f9bac91bSBenno Rice } 391f9bac91bSBenno Rice 392f9bac91bSBenno Rice static __inline int 3935244eac9SBenno Rice pmap_pte_match(struct pte *pt, u_int sr, vm_offset_t va, int which) 394f9bac91bSBenno Rice { 3955244eac9SBenno Rice return (pt->pte_hi & ~PTE_VALID) == 3965244eac9SBenno Rice (((sr & SR_VSID_MASK) << PTE_VSID_SHFT) | 3975244eac9SBenno Rice ((va >> ADDR_API_SHFT) & PTE_API) | which); 398f9bac91bSBenno Rice } 399f9bac91bSBenno Rice 4005244eac9SBenno Rice static __inline void 4015244eac9SBenno Rice pmap_pte_create(struct pte *pt, u_int sr, vm_offset_t va, u_int pte_lo) 402f9bac91bSBenno Rice { 403f9bac91bSBenno Rice /* 4045244eac9SBenno Rice * Construct a PTE. Default to IMB initially. Valid bit only gets 4055244eac9SBenno Rice * set when the real pte is set in memory. 406f9bac91bSBenno Rice * 407f9bac91bSBenno Rice * Note: Don't set the valid bit for correct operation of tlb update. 408f9bac91bSBenno Rice */ 4095244eac9SBenno Rice pt->pte_hi = ((sr & SR_VSID_MASK) << PTE_VSID_SHFT) | 4105244eac9SBenno Rice (((va & ADDR_PIDX) >> ADDR_API_SHFT) & PTE_API); 4115244eac9SBenno Rice pt->pte_lo = pte_lo; 412f9bac91bSBenno Rice } 413f9bac91bSBenno Rice 4145244eac9SBenno Rice static __inline void 4155244eac9SBenno Rice pmap_pte_synch(struct pte *pt, struct pte *pvo_pt) 416f9bac91bSBenno Rice { 417f9bac91bSBenno Rice 4185244eac9SBenno Rice pvo_pt->pte_lo |= pt->pte_lo & (PTE_REF | PTE_CHG); 419f9bac91bSBenno Rice } 420f9bac91bSBenno Rice 4215244eac9SBenno Rice static __inline void 4225244eac9SBenno Rice pmap_pte_clear(struct pte *pt, vm_offset_t va, int ptebit) 423f9bac91bSBenno Rice { 4245244eac9SBenno Rice 4255244eac9SBenno Rice /* 4265244eac9SBenno Rice * As shown in Section 7.6.3.2.3 4275244eac9SBenno Rice */ 4285244eac9SBenno Rice pt->pte_lo &= ~ptebit; 4295244eac9SBenno Rice TLBIE(va); 4305244eac9SBenno Rice EIEIO(); 4315244eac9SBenno Rice TLBSYNC(); 4325244eac9SBenno Rice SYNC(); 4335244eac9SBenno Rice } 4345244eac9SBenno Rice 4355244eac9SBenno Rice static __inline void 4365244eac9SBenno Rice pmap_pte_set(struct pte *pt, struct pte *pvo_pt) 4375244eac9SBenno Rice { 4385244eac9SBenno Rice 4395244eac9SBenno Rice pvo_pt->pte_hi |= PTE_VALID; 4405244eac9SBenno Rice 4415244eac9SBenno Rice /* 4425244eac9SBenno Rice * Update the PTE as defined in section 7.6.3.1. 4435244eac9SBenno Rice * Note that the REF/CHG bits are from pvo_pt and thus should havce 4445244eac9SBenno Rice * been saved so this routine can restore them (if desired). 4455244eac9SBenno Rice */ 4465244eac9SBenno Rice pt->pte_lo = pvo_pt->pte_lo; 4475244eac9SBenno Rice EIEIO(); 4485244eac9SBenno Rice pt->pte_hi = pvo_pt->pte_hi; 4495244eac9SBenno Rice SYNC(); 4505244eac9SBenno Rice pmap_pte_valid++; 4515244eac9SBenno Rice } 4525244eac9SBenno Rice 4535244eac9SBenno Rice static __inline void 4545244eac9SBenno Rice pmap_pte_unset(struct pte *pt, struct pte *pvo_pt, vm_offset_t va) 4555244eac9SBenno Rice { 4565244eac9SBenno Rice 4575244eac9SBenno Rice pvo_pt->pte_hi &= ~PTE_VALID; 4585244eac9SBenno Rice 4595244eac9SBenno Rice /* 4605244eac9SBenno Rice * Force the reg & chg bits back into the PTEs. 4615244eac9SBenno Rice */ 4625244eac9SBenno Rice SYNC(); 4635244eac9SBenno Rice 4645244eac9SBenno Rice /* 4655244eac9SBenno Rice * Invalidate the pte. 4665244eac9SBenno Rice */ 4675244eac9SBenno Rice pt->pte_hi &= ~PTE_VALID; 4685244eac9SBenno Rice 4695244eac9SBenno Rice SYNC(); 4705244eac9SBenno Rice TLBIE(va); 4715244eac9SBenno Rice EIEIO(); 4725244eac9SBenno Rice TLBSYNC(); 4735244eac9SBenno Rice SYNC(); 4745244eac9SBenno Rice 4755244eac9SBenno Rice /* 4765244eac9SBenno Rice * Save the reg & chg bits. 4775244eac9SBenno Rice */ 4785244eac9SBenno Rice pmap_pte_synch(pt, pvo_pt); 4795244eac9SBenno Rice pmap_pte_valid--; 4805244eac9SBenno Rice } 4815244eac9SBenno Rice 4825244eac9SBenno Rice static __inline void 4835244eac9SBenno Rice pmap_pte_change(struct pte *pt, struct pte *pvo_pt, vm_offset_t va) 4845244eac9SBenno Rice { 4855244eac9SBenno Rice 4865244eac9SBenno Rice /* 4875244eac9SBenno Rice * Invalidate the PTE 4885244eac9SBenno Rice */ 4895244eac9SBenno Rice pmap_pte_unset(pt, pvo_pt, va); 4905244eac9SBenno Rice pmap_pte_set(pt, pvo_pt); 491f9bac91bSBenno Rice } 492f9bac91bSBenno Rice 493f9bac91bSBenno Rice /* 4945244eac9SBenno Rice * Quick sort callout for comparing memory regions. 495f9bac91bSBenno Rice */ 4965244eac9SBenno Rice static int mr_cmp(const void *a, const void *b); 4975244eac9SBenno Rice static int om_cmp(const void *a, const void *b); 4985244eac9SBenno Rice 4995244eac9SBenno Rice static int 5005244eac9SBenno Rice mr_cmp(const void *a, const void *b) 501f9bac91bSBenno Rice { 5025244eac9SBenno Rice const struct mem_region *regiona; 5035244eac9SBenno Rice const struct mem_region *regionb; 504f9bac91bSBenno Rice 5055244eac9SBenno Rice regiona = a; 5065244eac9SBenno Rice regionb = b; 5075244eac9SBenno Rice if (regiona->mr_start < regionb->mr_start) 5085244eac9SBenno Rice return (-1); 5095244eac9SBenno Rice else if (regiona->mr_start > regionb->mr_start) 5105244eac9SBenno Rice return (1); 5115244eac9SBenno Rice else 512f9bac91bSBenno Rice return (0); 513f9bac91bSBenno Rice } 5145244eac9SBenno Rice 5155244eac9SBenno Rice static int 5165244eac9SBenno Rice om_cmp(const void *a, const void *b) 5175244eac9SBenno Rice { 5185244eac9SBenno Rice const struct ofw_map *mapa; 5195244eac9SBenno Rice const struct ofw_map *mapb; 5205244eac9SBenno Rice 5215244eac9SBenno Rice mapa = a; 5225244eac9SBenno Rice mapb = b; 5235244eac9SBenno Rice if (mapa->om_pa < mapb->om_pa) 5245244eac9SBenno Rice return (-1); 5255244eac9SBenno Rice else if (mapa->om_pa > mapb->om_pa) 5265244eac9SBenno Rice return (1); 5275244eac9SBenno Rice else 5285244eac9SBenno Rice return (0); 529f9bac91bSBenno Rice } 530f9bac91bSBenno Rice 531f9bac91bSBenno Rice void 5325244eac9SBenno Rice pmap_bootstrap(vm_offset_t kernelstart, vm_offset_t kernelend) 533f9bac91bSBenno Rice { 53431c82d03SBenno Rice ihandle_t mmui; 5355244eac9SBenno Rice phandle_t chosen, mmu; 5365244eac9SBenno Rice int sz; 5375244eac9SBenno Rice int i, j; 53832bc7846SPeter Grehan int ofw_mappings; 539d2c1f576SBenno Rice vm_size_t size, physsz; 5405244eac9SBenno Rice vm_offset_t pa, va, off; 5415244eac9SBenno Rice u_int batl, batu; 542f9bac91bSBenno Rice 543f9bac91bSBenno Rice /* 54432bc7846SPeter Grehan * Set up BAT0 to map the lowest 256 MB area 5450d290675SBenno Rice */ 5460d290675SBenno Rice battable[0x0].batl = BATL(0x00000000, BAT_M, BAT_PP_RW); 5470d290675SBenno Rice battable[0x0].batu = BATU(0x00000000, BAT_BL_256M, BAT_Vs); 5480d290675SBenno Rice 5490d290675SBenno Rice /* 5500d290675SBenno Rice * Map PCI memory space. 5510d290675SBenno Rice */ 5520d290675SBenno Rice battable[0x8].batl = BATL(0x80000000, BAT_I|BAT_G, BAT_PP_RW); 5530d290675SBenno Rice battable[0x8].batu = BATU(0x80000000, BAT_BL_256M, BAT_Vs); 5540d290675SBenno Rice 5550d290675SBenno Rice battable[0x9].batl = BATL(0x90000000, BAT_I|BAT_G, BAT_PP_RW); 5560d290675SBenno Rice battable[0x9].batu = BATU(0x90000000, BAT_BL_256M, BAT_Vs); 5570d290675SBenno Rice 5580d290675SBenno Rice battable[0xa].batl = BATL(0xa0000000, BAT_I|BAT_G, BAT_PP_RW); 5590d290675SBenno Rice battable[0xa].batu = BATU(0xa0000000, BAT_BL_256M, BAT_Vs); 5600d290675SBenno Rice 5610d290675SBenno Rice battable[0xb].batl = BATL(0xb0000000, BAT_I|BAT_G, BAT_PP_RW); 5620d290675SBenno Rice battable[0xb].batu = BATU(0xb0000000, BAT_BL_256M, BAT_Vs); 5630d290675SBenno Rice 5640d290675SBenno Rice /* 5650d290675SBenno Rice * Map obio devices. 5660d290675SBenno Rice */ 5670d290675SBenno Rice battable[0xf].batl = BATL(0xf0000000, BAT_I|BAT_G, BAT_PP_RW); 5680d290675SBenno Rice battable[0xf].batu = BATU(0xf0000000, BAT_BL_256M, BAT_Vs); 5690d290675SBenno Rice 5700d290675SBenno Rice /* 5715244eac9SBenno Rice * Use an IBAT and a DBAT to map the bottom segment of memory 5725244eac9SBenno Rice * where we are. 573f9bac91bSBenno Rice */ 5745244eac9SBenno Rice batu = BATU(0x00000000, BAT_BL_256M, BAT_Vs); 5755244eac9SBenno Rice batl = BATL(0x00000000, BAT_M, BAT_PP_RW); 5765244eac9SBenno Rice __asm ("mtibatu 0,%0; mtibatl 0,%1; mtdbatu 0,%0; mtdbatl 0,%1" 5775244eac9SBenno Rice :: "r"(batu), "r"(batl)); 5780d290675SBenno Rice 5795244eac9SBenno Rice #if 0 5800d290675SBenno Rice /* map frame buffer */ 5810d290675SBenno Rice batu = BATU(0x90000000, BAT_BL_256M, BAT_Vs); 5820d290675SBenno Rice batl = BATL(0x90000000, BAT_I|BAT_G, BAT_PP_RW); 5830d290675SBenno Rice __asm ("mtdbatu 1,%0; mtdbatl 1,%1" 5840d290675SBenno Rice :: "r"(batu), "r"(batl)); 5850d290675SBenno Rice #endif 5860d290675SBenno Rice 5870d290675SBenno Rice #if 1 5880d290675SBenno Rice /* map pci space */ 5895244eac9SBenno Rice batu = BATU(0x80000000, BAT_BL_256M, BAT_Vs); 5900d290675SBenno Rice batl = BATL(0x80000000, BAT_I|BAT_G, BAT_PP_RW); 5910d290675SBenno Rice __asm ("mtdbatu 1,%0; mtdbatl 1,%1" 5925244eac9SBenno Rice :: "r"(batu), "r"(batl)); 5935244eac9SBenno Rice #endif 594f9bac91bSBenno Rice 595f9bac91bSBenno Rice /* 5965244eac9SBenno Rice * Set the start and end of kva. 597f9bac91bSBenno Rice */ 5985244eac9SBenno Rice virtual_avail = VM_MIN_KERNEL_ADDRESS; 5995244eac9SBenno Rice virtual_end = VM_MAX_KERNEL_ADDRESS; 600f9bac91bSBenno Rice 60131c82d03SBenno Rice mem_regions(&pregions, &pregions_sz, ®ions, ®ions_sz); 6025244eac9SBenno Rice CTR0(KTR_PMAP, "pmap_bootstrap: physical memory"); 60331c82d03SBenno Rice 60431c82d03SBenno Rice qsort(pregions, pregions_sz, sizeof(*pregions), mr_cmp); 60531c82d03SBenno Rice for (i = 0; i < pregions_sz; i++) { 60632bc7846SPeter Grehan vm_offset_t pa; 60732bc7846SPeter Grehan vm_offset_t end; 60832bc7846SPeter Grehan 60931c82d03SBenno Rice CTR3(KTR_PMAP, "physregion: %#x - %#x (%#x)", 61031c82d03SBenno Rice pregions[i].mr_start, 61131c82d03SBenno Rice pregions[i].mr_start + pregions[i].mr_size, 61231c82d03SBenno Rice pregions[i].mr_size); 61332bc7846SPeter Grehan /* 61432bc7846SPeter Grehan * Install entries into the BAT table to allow all 61532bc7846SPeter Grehan * of physmem to be convered by on-demand BAT entries. 61632bc7846SPeter Grehan * The loop will sometimes set the same battable element 61732bc7846SPeter Grehan * twice, but that's fine since they won't be used for 61832bc7846SPeter Grehan * a while yet. 61932bc7846SPeter Grehan */ 62032bc7846SPeter Grehan pa = pregions[i].mr_start & 0xf0000000; 62132bc7846SPeter Grehan end = pregions[i].mr_start + pregions[i].mr_size; 62232bc7846SPeter Grehan do { 62332bc7846SPeter Grehan u_int n = pa >> ADDR_SR_SHFT; 62432bc7846SPeter Grehan 62532bc7846SPeter Grehan battable[n].batl = BATL(pa, BAT_M, BAT_PP_RW); 62632bc7846SPeter Grehan battable[n].batu = BATU(pa, BAT_BL_256M, BAT_Vs); 62732bc7846SPeter Grehan pa += SEGMENT_LENGTH; 62832bc7846SPeter Grehan } while (pa < end); 62931c82d03SBenno Rice } 63031c82d03SBenno Rice 63131c82d03SBenno Rice if (sizeof(phys_avail)/sizeof(phys_avail[0]) < regions_sz) 63231c82d03SBenno Rice panic("pmap_bootstrap: phys_avail too small"); 63331c82d03SBenno Rice qsort(regions, regions_sz, sizeof(*regions), mr_cmp); 6345244eac9SBenno Rice phys_avail_count = 0; 635d2c1f576SBenno Rice physsz = 0; 63631c82d03SBenno Rice for (i = 0, j = 0; i < regions_sz; i++, j += 2) { 6375244eac9SBenno Rice CTR3(KTR_PMAP, "region: %#x - %#x (%#x)", regions[i].mr_start, 6385244eac9SBenno Rice regions[i].mr_start + regions[i].mr_size, 6395244eac9SBenno Rice regions[i].mr_size); 6405244eac9SBenno Rice phys_avail[j] = regions[i].mr_start; 6415244eac9SBenno Rice phys_avail[j + 1] = regions[i].mr_start + regions[i].mr_size; 6425244eac9SBenno Rice phys_avail_count++; 643d2c1f576SBenno Rice physsz += regions[i].mr_size; 644f9bac91bSBenno Rice } 645d2c1f576SBenno Rice physmem = btoc(physsz); 646f9bac91bSBenno Rice 647f9bac91bSBenno Rice /* 6485244eac9SBenno Rice * Allocate PTEG table. 649f9bac91bSBenno Rice */ 6505244eac9SBenno Rice #ifdef PTEGCOUNT 6515244eac9SBenno Rice pmap_pteg_count = PTEGCOUNT; 6525244eac9SBenno Rice #else 6535244eac9SBenno Rice pmap_pteg_count = 0x1000; 654f9bac91bSBenno Rice 6555244eac9SBenno Rice while (pmap_pteg_count < physmem) 6565244eac9SBenno Rice pmap_pteg_count <<= 1; 657f9bac91bSBenno Rice 6585244eac9SBenno Rice pmap_pteg_count >>= 1; 6595244eac9SBenno Rice #endif /* PTEGCOUNT */ 660f9bac91bSBenno Rice 6615244eac9SBenno Rice size = pmap_pteg_count * sizeof(struct pteg); 6625244eac9SBenno Rice CTR2(KTR_PMAP, "pmap_bootstrap: %d PTEGs, %d bytes", pmap_pteg_count, 6635244eac9SBenno Rice size); 6645244eac9SBenno Rice pmap_pteg_table = (struct pteg *)pmap_bootstrap_alloc(size, size); 6655244eac9SBenno Rice CTR1(KTR_PMAP, "pmap_bootstrap: PTEG table at %p", pmap_pteg_table); 6665244eac9SBenno Rice bzero((void *)pmap_pteg_table, pmap_pteg_count * sizeof(struct pteg)); 6675244eac9SBenno Rice pmap_pteg_mask = pmap_pteg_count - 1; 668f9bac91bSBenno Rice 6695244eac9SBenno Rice /* 670864bc520SBenno Rice * Allocate pv/overflow lists. 6715244eac9SBenno Rice */ 6725244eac9SBenno Rice size = sizeof(struct pvo_head) * pmap_pteg_count; 6735244eac9SBenno Rice pmap_pvo_table = (struct pvo_head *)pmap_bootstrap_alloc(size, 6745244eac9SBenno Rice PAGE_SIZE); 6755244eac9SBenno Rice CTR1(KTR_PMAP, "pmap_bootstrap: PVO table at %p", pmap_pvo_table); 6765244eac9SBenno Rice for (i = 0; i < pmap_pteg_count; i++) 6775244eac9SBenno Rice LIST_INIT(&pmap_pvo_table[i]); 6785244eac9SBenno Rice 6795244eac9SBenno Rice /* 6805244eac9SBenno Rice * Allocate the message buffer. 6815244eac9SBenno Rice */ 6825244eac9SBenno Rice msgbuf_phys = pmap_bootstrap_alloc(MSGBUF_SIZE, 0); 6835244eac9SBenno Rice 6845244eac9SBenno Rice /* 6855244eac9SBenno Rice * Initialise the unmanaged pvo pool. 6865244eac9SBenno Rice */ 6870d290675SBenno Rice pmap_bpvo_pool = (struct pvo_entry *)pmap_bootstrap_alloc( 6880d290675SBenno Rice BPVO_POOL_SIZE*sizeof(struct pvo_entry), 0); 68949f8f727SBenno Rice pmap_bpvo_pool_index = 0; 6905244eac9SBenno Rice 6915244eac9SBenno Rice /* 6925244eac9SBenno Rice * Make sure kernel vsid is allocated as well as VSID 0. 6935244eac9SBenno Rice */ 6945244eac9SBenno Rice pmap_vsid_bitmap[(KERNEL_VSIDBITS & (NPMAPS - 1)) / VSID_NBPW] 6955244eac9SBenno Rice |= 1 << (KERNEL_VSIDBITS % VSID_NBPW); 6965244eac9SBenno Rice pmap_vsid_bitmap[0] |= 1; 6975244eac9SBenno Rice 6985244eac9SBenno Rice /* 6995244eac9SBenno Rice * Set up the OpenFirmware pmap and add it's mappings. 7005244eac9SBenno Rice */ 7015244eac9SBenno Rice pmap_pinit(&ofw_pmap); 7025244eac9SBenno Rice ofw_pmap.pm_sr[KERNEL_SR] = KERNEL_SEGMENT; 7035244eac9SBenno Rice if ((chosen = OF_finddevice("/chosen")) == -1) 7045244eac9SBenno Rice panic("pmap_bootstrap: can't find /chosen"); 7055244eac9SBenno Rice OF_getprop(chosen, "mmu", &mmui, 4); 7065244eac9SBenno Rice if ((mmu = OF_instance_to_package(mmui)) == -1) 7075244eac9SBenno Rice panic("pmap_bootstrap: can't get mmu package"); 7085244eac9SBenno Rice if ((sz = OF_getproplen(mmu, "translations")) == -1) 7095244eac9SBenno Rice panic("pmap_bootstrap: can't get ofw translation count"); 710aa39961eSBenno Rice translations = NULL; 711aa39961eSBenno Rice for (i = 0; phys_avail[i + 2] != 0; i += 2) { 712aa39961eSBenno Rice if (phys_avail[i + 1] >= sz) 713aa39961eSBenno Rice translations = (struct ofw_map *)phys_avail[i]; 714aa39961eSBenno Rice } 715aa39961eSBenno Rice if (translations == NULL) 716aa39961eSBenno Rice panic("pmap_bootstrap: no space to copy translations"); 7175244eac9SBenno Rice bzero(translations, sz); 7185244eac9SBenno Rice if (OF_getprop(mmu, "translations", translations, sz) == -1) 7195244eac9SBenno Rice panic("pmap_bootstrap: can't get ofw translations"); 7205244eac9SBenno Rice CTR0(KTR_PMAP, "pmap_bootstrap: translations"); 72131c82d03SBenno Rice sz /= sizeof(*translations); 7225244eac9SBenno Rice qsort(translations, sz, sizeof (*translations), om_cmp); 72332bc7846SPeter Grehan for (i = 0, ofw_mappings = 0; i < sz; i++) { 7245244eac9SBenno Rice CTR3(KTR_PMAP, "translation: pa=%#x va=%#x len=%#x", 7255244eac9SBenno Rice translations[i].om_pa, translations[i].om_va, 7265244eac9SBenno Rice translations[i].om_len); 7275244eac9SBenno Rice 72832bc7846SPeter Grehan /* 72932bc7846SPeter Grehan * If the mapping is 1:1, let the RAM and device on-demand 73032bc7846SPeter Grehan * BAT tables take care of the translation. 73132bc7846SPeter Grehan */ 73232bc7846SPeter Grehan if (translations[i].om_va == translations[i].om_pa) 73332bc7846SPeter Grehan continue; 7345244eac9SBenno Rice 73532bc7846SPeter Grehan /* Enter the pages */ 7365244eac9SBenno Rice for (off = 0; off < translations[i].om_len; off += PAGE_SIZE) { 7375244eac9SBenno Rice struct vm_page m; 7385244eac9SBenno Rice 7395244eac9SBenno Rice m.phys_addr = translations[i].om_pa + off; 7405244eac9SBenno Rice pmap_enter(&ofw_pmap, translations[i].om_va + off, &m, 7415244eac9SBenno Rice VM_PROT_ALL, 1); 74232bc7846SPeter Grehan ofw_mappings++; 743f9bac91bSBenno Rice } 744f9bac91bSBenno Rice } 7455244eac9SBenno Rice #ifdef SMP 7465244eac9SBenno Rice TLBSYNC(); 7475244eac9SBenno Rice #endif 7485244eac9SBenno Rice 7495244eac9SBenno Rice /* 7505244eac9SBenno Rice * Initialize the kernel pmap (which is statically allocated). 7515244eac9SBenno Rice */ 7525244eac9SBenno Rice for (i = 0; i < 16; i++) { 7535244eac9SBenno Rice kernel_pmap->pm_sr[i] = EMPTY_SEGMENT; 754f9bac91bSBenno Rice } 7555244eac9SBenno Rice kernel_pmap->pm_sr[KERNEL_SR] = KERNEL_SEGMENT; 7565244eac9SBenno Rice kernel_pmap->pm_active = ~0; 7575244eac9SBenno Rice 7585244eac9SBenno Rice /* 7595244eac9SBenno Rice * Allocate a kernel stack with a guard page for thread0 and map it 7605244eac9SBenno Rice * into the kernel page map. 7615244eac9SBenno Rice */ 7625244eac9SBenno Rice pa = pmap_bootstrap_alloc(KSTACK_PAGES * PAGE_SIZE, 0); 7635244eac9SBenno Rice kstack0_phys = pa; 7645244eac9SBenno Rice kstack0 = virtual_avail + (KSTACK_GUARD_PAGES * PAGE_SIZE); 7655244eac9SBenno Rice CTR2(KTR_PMAP, "pmap_bootstrap: kstack0 at %#x (%#x)", kstack0_phys, 7665244eac9SBenno Rice kstack0); 7675244eac9SBenno Rice virtual_avail += (KSTACK_PAGES + KSTACK_GUARD_PAGES) * PAGE_SIZE; 7685244eac9SBenno Rice for (i = 0; i < KSTACK_PAGES; i++) { 7695244eac9SBenno Rice pa = kstack0_phys + i * PAGE_SIZE; 7705244eac9SBenno Rice va = kstack0 + i * PAGE_SIZE; 7715244eac9SBenno Rice pmap_kenter(va, pa); 7725244eac9SBenno Rice TLBIE(va); 773f9bac91bSBenno Rice } 774f9bac91bSBenno Rice 775f9bac91bSBenno Rice /* 7765244eac9SBenno Rice * Calculate the first and last available physical addresses. 7775244eac9SBenno Rice */ 7785244eac9SBenno Rice avail_start = phys_avail[0]; 7795244eac9SBenno Rice for (i = 0; phys_avail[i + 2] != 0; i += 2) 7805244eac9SBenno Rice ; 7815244eac9SBenno Rice avail_end = phys_avail[i + 1]; 7825244eac9SBenno Rice Maxmem = powerpc_btop(avail_end); 7835244eac9SBenno Rice 7845244eac9SBenno Rice /* 7855244eac9SBenno Rice * Allocate virtual address space for the message buffer. 7865244eac9SBenno Rice */ 7875244eac9SBenno Rice msgbufp = (struct msgbuf *)virtual_avail; 7885244eac9SBenno Rice virtual_avail += round_page(MSGBUF_SIZE); 7895244eac9SBenno Rice 7905244eac9SBenno Rice /* 7915244eac9SBenno Rice * Initialize hardware. 7925244eac9SBenno Rice */ 7935244eac9SBenno Rice for (i = 0; i < 16; i++) { 794d080d5fdSBenno Rice mtsrin(i << ADDR_SR_SHFT, EMPTY_SEGMENT); 7955244eac9SBenno Rice } 7965244eac9SBenno Rice __asm __volatile ("mtsr %0,%1" 7975244eac9SBenno Rice :: "n"(KERNEL_SR), "r"(KERNEL_SEGMENT)); 7985244eac9SBenno Rice __asm __volatile ("sync; mtsdr1 %0; isync" 7995244eac9SBenno Rice :: "r"((u_int)pmap_pteg_table | (pmap_pteg_mask >> 10))); 8005244eac9SBenno Rice tlbia(); 8015244eac9SBenno Rice 8025244eac9SBenno Rice pmap_bootstrapped++; 8035244eac9SBenno Rice } 8045244eac9SBenno Rice 8055244eac9SBenno Rice /* 8065244eac9SBenno Rice * Activate a user pmap. The pmap must be activated before it's address 8075244eac9SBenno Rice * space can be accessed in any way. 808f9bac91bSBenno Rice */ 809f9bac91bSBenno Rice void 810b40ce416SJulian Elischer pmap_activate(struct thread *td) 811f9bac91bSBenno Rice { 8128207b362SBenno Rice pmap_t pm, pmr; 813f9bac91bSBenno Rice 814f9bac91bSBenno Rice /* 81532bc7846SPeter Grehan * Load all the data we need up front to encourage the compiler to 8165244eac9SBenno Rice * not issue any loads while we have interrupts disabled below. 817f9bac91bSBenno Rice */ 8185244eac9SBenno Rice pm = &td->td_proc->p_vmspace->vm_pmap; 819f9bac91bSBenno Rice 8208207b362SBenno Rice if ((pmr = (pmap_t)pmap_kextract((vm_offset_t)pm)) == NULL) 8218207b362SBenno Rice pmr = pm; 8228207b362SBenno Rice 8235244eac9SBenno Rice pm->pm_active |= PCPU_GET(cpumask); 8248207b362SBenno Rice PCPU_SET(curpmap, pmr); 825ac6ba8bdSBenno Rice } 826ac6ba8bdSBenno Rice 827ac6ba8bdSBenno Rice void 828ac6ba8bdSBenno Rice pmap_deactivate(struct thread *td) 829ac6ba8bdSBenno Rice { 830ac6ba8bdSBenno Rice pmap_t pm; 831ac6ba8bdSBenno Rice 832ac6ba8bdSBenno Rice pm = &td->td_proc->p_vmspace->vm_pmap; 833ac6ba8bdSBenno Rice pm->pm_active &= ~(PCPU_GET(cpumask)); 8348207b362SBenno Rice PCPU_SET(curpmap, NULL); 835f9bac91bSBenno Rice } 836f9bac91bSBenno Rice 837f9bac91bSBenno Rice vm_offset_t 8385244eac9SBenno Rice pmap_addr_hint(vm_object_t object, vm_offset_t va, vm_size_t size) 839f9bac91bSBenno Rice { 8400f92104cSBenno Rice 8410f92104cSBenno Rice return (va); 842f9bac91bSBenno Rice } 843f9bac91bSBenno Rice 844f9bac91bSBenno Rice void 8450f92104cSBenno Rice pmap_change_wiring(pmap_t pm, vm_offset_t va, boolean_t wired) 846f9bac91bSBenno Rice { 8470f92104cSBenno Rice struct pvo_entry *pvo; 8480f92104cSBenno Rice 8490f92104cSBenno Rice pvo = pmap_pvo_find_va(pm, va & ~ADDR_POFF, NULL); 8500f92104cSBenno Rice 8510f92104cSBenno Rice if (pvo != NULL) { 8520f92104cSBenno Rice if (wired) { 8530f92104cSBenno Rice if ((pvo->pvo_vaddr & PVO_WIRED) == 0) 8540f92104cSBenno Rice pm->pm_stats.wired_count++; 8550f92104cSBenno Rice pvo->pvo_vaddr |= PVO_WIRED; 8560f92104cSBenno Rice } else { 8570f92104cSBenno Rice if ((pvo->pvo_vaddr & PVO_WIRED) != 0) 8580f92104cSBenno Rice pm->pm_stats.wired_count--; 8590f92104cSBenno Rice pvo->pvo_vaddr &= ~PVO_WIRED; 8600f92104cSBenno Rice } 8610f92104cSBenno Rice } 862f9bac91bSBenno Rice } 863f9bac91bSBenno Rice 864f9bac91bSBenno Rice void 8655244eac9SBenno Rice pmap_copy(pmap_t dst_pmap, pmap_t src_pmap, vm_offset_t dst_addr, 8665244eac9SBenno Rice vm_size_t len, vm_offset_t src_addr) 867f9bac91bSBenno Rice { 86825e2288dSBenno Rice 86925e2288dSBenno Rice /* 87025e2288dSBenno Rice * This is not needed as it's mainly an optimisation. 87125e2288dSBenno Rice * It may want to be implemented later though. 87225e2288dSBenno Rice */ 873f9bac91bSBenno Rice } 874f9bac91bSBenno Rice 875f9bac91bSBenno Rice void 87625e2288dSBenno Rice pmap_copy_page(vm_page_t msrc, vm_page_t mdst) 877f9bac91bSBenno Rice { 87825e2288dSBenno Rice vm_offset_t dst; 87925e2288dSBenno Rice vm_offset_t src; 88025e2288dSBenno Rice 88125e2288dSBenno Rice dst = VM_PAGE_TO_PHYS(mdst); 88225e2288dSBenno Rice src = VM_PAGE_TO_PHYS(msrc); 88325e2288dSBenno Rice 88425e2288dSBenno Rice kcopy((void *)src, (void *)dst, PAGE_SIZE); 885f9bac91bSBenno Rice } 886111c77dcSBenno Rice 887111c77dcSBenno Rice /* 8885244eac9SBenno Rice * Zero a page of physical memory by temporarily mapping it into the tlb. 8895244eac9SBenno Rice */ 8905244eac9SBenno Rice void 8911a87a0daSPeter Wemm pmap_zero_page(vm_page_t m) 8925244eac9SBenno Rice { 8931a87a0daSPeter Wemm vm_offset_t pa = VM_PAGE_TO_PHYS(m); 8945244eac9SBenno Rice caddr_t va; 8955244eac9SBenno Rice 8965244eac9SBenno Rice if (pa < SEGMENT_LENGTH) { 8975244eac9SBenno Rice va = (caddr_t) pa; 8985244eac9SBenno Rice } else if (pmap_initialized) { 8995244eac9SBenno Rice if (pmap_pvo_zeropage == NULL) 9005244eac9SBenno Rice pmap_pvo_zeropage = pmap_rkva_alloc(); 9015244eac9SBenno Rice pmap_pa_map(pmap_pvo_zeropage, pa, NULL, NULL); 9025244eac9SBenno Rice va = (caddr_t)PVO_VADDR(pmap_pvo_zeropage); 9035244eac9SBenno Rice } else { 9045244eac9SBenno Rice panic("pmap_zero_page: can't zero pa %#x", pa); 9055244eac9SBenno Rice } 9065244eac9SBenno Rice 9075244eac9SBenno Rice bzero(va, PAGE_SIZE); 9085244eac9SBenno Rice 9095244eac9SBenno Rice if (pa >= SEGMENT_LENGTH) 9105244eac9SBenno Rice pmap_pa_unmap(pmap_pvo_zeropage, NULL, NULL); 9115244eac9SBenno Rice } 9125244eac9SBenno Rice 9135244eac9SBenno Rice void 9141a87a0daSPeter Wemm pmap_zero_page_area(vm_page_t m, int off, int size) 9155244eac9SBenno Rice { 9163495845eSBenno Rice vm_offset_t pa = VM_PAGE_TO_PHYS(m); 9173495845eSBenno Rice caddr_t va; 9183495845eSBenno Rice 9193495845eSBenno Rice if (pa < SEGMENT_LENGTH) { 9203495845eSBenno Rice va = (caddr_t) pa; 9213495845eSBenno Rice } else if (pmap_initialized) { 9223495845eSBenno Rice if (pmap_pvo_zeropage == NULL) 9233495845eSBenno Rice pmap_pvo_zeropage = pmap_rkva_alloc(); 9243495845eSBenno Rice pmap_pa_map(pmap_pvo_zeropage, pa, NULL, NULL); 9253495845eSBenno Rice va = (caddr_t)PVO_VADDR(pmap_pvo_zeropage); 9263495845eSBenno Rice } else { 9273495845eSBenno Rice panic("pmap_zero_page: can't zero pa %#x", pa); 9283495845eSBenno Rice } 9293495845eSBenno Rice 93032bc7846SPeter Grehan bzero(va + off, size); 9313495845eSBenno Rice 9323495845eSBenno Rice if (pa >= SEGMENT_LENGTH) 9333495845eSBenno Rice pmap_pa_unmap(pmap_pvo_zeropage, NULL, NULL); 9345244eac9SBenno Rice } 9355244eac9SBenno Rice 936a58b3a68SPeter Wemm void 937a58b3a68SPeter Wemm pmap_zero_page_idle(vm_page_t m) 938a58b3a68SPeter Wemm { 939a58b3a68SPeter Wemm 940a58b3a68SPeter Wemm /* XXX this is called outside of Giant, is pmap_zero_page safe? */ 941a58b3a68SPeter Wemm /* XXX maybe have a dedicated mapping for this to avoid the problem? */ 942a58b3a68SPeter Wemm mtx_lock(&Giant); 943a58b3a68SPeter Wemm pmap_zero_page(m); 944a58b3a68SPeter Wemm mtx_unlock(&Giant); 945a58b3a68SPeter Wemm } 946a58b3a68SPeter Wemm 9475244eac9SBenno Rice /* 9485244eac9SBenno Rice * Map the given physical page at the specified virtual address in the 9495244eac9SBenno Rice * target pmap with the protection requested. If specified the page 9505244eac9SBenno Rice * will be wired down. 9515244eac9SBenno Rice */ 9525244eac9SBenno Rice void 9535244eac9SBenno Rice pmap_enter(pmap_t pmap, vm_offset_t va, vm_page_t m, vm_prot_t prot, 9545244eac9SBenno Rice boolean_t wired) 9555244eac9SBenno Rice { 9565244eac9SBenno Rice struct pvo_head *pvo_head; 957378862a7SJeff Roberson uma_zone_t zone; 9588207b362SBenno Rice vm_page_t pg; 9598207b362SBenno Rice u_int pte_lo, pvo_flags, was_exec, i; 9605244eac9SBenno Rice int error; 9615244eac9SBenno Rice 9625244eac9SBenno Rice if (!pmap_initialized) { 9635244eac9SBenno Rice pvo_head = &pmap_pvo_kunmanaged; 9645244eac9SBenno Rice zone = pmap_upvo_zone; 9655244eac9SBenno Rice pvo_flags = 0; 9668207b362SBenno Rice pg = NULL; 9678207b362SBenno Rice was_exec = PTE_EXEC; 9685244eac9SBenno Rice } else { 96903b6e025SPeter Grehan pvo_head = vm_page_to_pvoh(m); 97003b6e025SPeter Grehan pg = m; 9715244eac9SBenno Rice zone = pmap_mpvo_zone; 9725244eac9SBenno Rice pvo_flags = PVO_MANAGED; 9738207b362SBenno Rice was_exec = 0; 9745244eac9SBenno Rice } 9755244eac9SBenno Rice 9768207b362SBenno Rice /* 9778207b362SBenno Rice * If this is a managed page, and it's the first reference to the page, 9788207b362SBenno Rice * clear the execness of the page. Otherwise fetch the execness. 9798207b362SBenno Rice */ 9808207b362SBenno Rice if (pg != NULL) { 9818207b362SBenno Rice if (LIST_EMPTY(pvo_head)) { 9828207b362SBenno Rice pmap_attr_clear(pg, PTE_EXEC); 9838207b362SBenno Rice } else { 9848207b362SBenno Rice was_exec = pmap_attr_fetch(pg) & PTE_EXEC; 9858207b362SBenno Rice } 9868207b362SBenno Rice } 9878207b362SBenno Rice 9888207b362SBenno Rice 9898207b362SBenno Rice /* 9908207b362SBenno Rice * Assume the page is cache inhibited and access is guarded unless 9918207b362SBenno Rice * it's in our available memory array. 9928207b362SBenno Rice */ 9935244eac9SBenno Rice pte_lo = PTE_I | PTE_G; 99431c82d03SBenno Rice for (i = 0; i < pregions_sz; i++) { 99531c82d03SBenno Rice if ((VM_PAGE_TO_PHYS(m) >= pregions[i].mr_start) && 99631c82d03SBenno Rice (VM_PAGE_TO_PHYS(m) < 99731c82d03SBenno Rice (pregions[i].mr_start + pregions[i].mr_size))) { 9988207b362SBenno Rice pte_lo &= ~(PTE_I | PTE_G); 9998207b362SBenno Rice break; 10008207b362SBenno Rice } 10018207b362SBenno Rice } 10025244eac9SBenno Rice 10035244eac9SBenno Rice if (prot & VM_PROT_WRITE) 10045244eac9SBenno Rice pte_lo |= PTE_BW; 10055244eac9SBenno Rice else 10065244eac9SBenno Rice pte_lo |= PTE_BR; 10075244eac9SBenno Rice 10088207b362SBenno Rice pvo_flags |= (prot & VM_PROT_EXECUTE); 10095244eac9SBenno Rice 10105244eac9SBenno Rice if (wired) 10115244eac9SBenno Rice pvo_flags |= PVO_WIRED; 10125244eac9SBenno Rice 10138207b362SBenno Rice error = pmap_pvo_enter(pmap, zone, pvo_head, va, VM_PAGE_TO_PHYS(m), 10148207b362SBenno Rice pte_lo, pvo_flags); 10155244eac9SBenno Rice 10168207b362SBenno Rice /* 10178207b362SBenno Rice * Flush the real page from the instruction cache if this page is 10188207b362SBenno Rice * mapped executable and cacheable and was not previously mapped (or 10198207b362SBenno Rice * was not mapped executable). 10208207b362SBenno Rice */ 10218207b362SBenno Rice if (error == 0 && (pvo_flags & PVO_EXECUTABLE) && 10228207b362SBenno Rice (pte_lo & PTE_I) == 0 && was_exec == 0) { 10235244eac9SBenno Rice /* 10245244eac9SBenno Rice * Flush the real memory from the cache. 10255244eac9SBenno Rice */ 10268207b362SBenno Rice pmap_syncicache(VM_PAGE_TO_PHYS(m), PAGE_SIZE); 10278207b362SBenno Rice if (pg != NULL) 10288207b362SBenno Rice pmap_attr_save(pg, PTE_EXEC); 10295244eac9SBenno Rice } 103032bc7846SPeter Grehan 103132bc7846SPeter Grehan /* XXX syncicache always until problems are sorted */ 103232bc7846SPeter Grehan pmap_syncicache(VM_PAGE_TO_PHYS(m), PAGE_SIZE); 10335244eac9SBenno Rice } 10345244eac9SBenno Rice 1035dca96f1aSAlan Cox vm_page_t 1036dca96f1aSAlan Cox pmap_enter_quick(pmap_t pm, vm_offset_t va, vm_page_t m, vm_page_t mpte) 1037dca96f1aSAlan Cox { 1038dca96f1aSAlan Cox 1039dca96f1aSAlan Cox pmap_enter(pm, va, m, VM_PROT_READ | VM_PROT_EXECUTE, FALSE); 1040dca96f1aSAlan Cox return (NULL); 1041dca96f1aSAlan Cox } 1042dca96f1aSAlan Cox 10435244eac9SBenno Rice vm_offset_t 10440f92104cSBenno Rice pmap_extract(pmap_t pm, vm_offset_t va) 10455244eac9SBenno Rice { 10460f92104cSBenno Rice struct pvo_entry *pvo; 10470f92104cSBenno Rice 10480f92104cSBenno Rice pvo = pmap_pvo_find_va(pm, va & ~ADDR_POFF, NULL); 10490f92104cSBenno Rice 10500f92104cSBenno Rice if (pvo != NULL) { 10510f92104cSBenno Rice return ((pvo->pvo_pte.pte_lo & PTE_RPGN) | (va & ADDR_POFF)); 10520f92104cSBenno Rice } 10530f92104cSBenno Rice 10545244eac9SBenno Rice return (0); 10555244eac9SBenno Rice } 10565244eac9SBenno Rice 10575244eac9SBenno Rice /* 105884792e72SPeter Grehan * Atomically extract and hold the physical page with the given 105984792e72SPeter Grehan * pmap and virtual address pair if that mapping permits the given 106084792e72SPeter Grehan * protection. 106184792e72SPeter Grehan */ 106284792e72SPeter Grehan vm_page_t 106384792e72SPeter Grehan pmap_extract_and_hold(pmap_t pmap, vm_offset_t va, vm_prot_t prot) 106484792e72SPeter Grehan { 106584792e72SPeter Grehan vm_paddr_t pa; 106684792e72SPeter Grehan vm_page_t m; 106784792e72SPeter Grehan 106884792e72SPeter Grehan m = NULL; 106984792e72SPeter Grehan mtx_lock(&Giant); 107084792e72SPeter Grehan if ((pa = pmap_extract(pmap, va)) != 0) { 107184792e72SPeter Grehan m = PHYS_TO_VM_PAGE(pa); 107284792e72SPeter Grehan vm_page_lock_queues(); 107384792e72SPeter Grehan vm_page_hold(m); 107484792e72SPeter Grehan vm_page_unlock_queues(); 107584792e72SPeter Grehan } 107684792e72SPeter Grehan mtx_unlock(&Giant); 107784792e72SPeter Grehan return (m); 107884792e72SPeter Grehan } 107984792e72SPeter Grehan 108084792e72SPeter Grehan /* 10815244eac9SBenno Rice * Grow the number of kernel page table entries. Unneeded. 10825244eac9SBenno Rice */ 10835244eac9SBenno Rice void 10845244eac9SBenno Rice pmap_growkernel(vm_offset_t addr) 10855244eac9SBenno Rice { 10865244eac9SBenno Rice } 10875244eac9SBenno Rice 10885244eac9SBenno Rice void 10895244eac9SBenno Rice pmap_init(vm_offset_t phys_start, vm_offset_t phys_end) 10905244eac9SBenno Rice { 10915244eac9SBenno Rice 109252a3cde5SBenno Rice CTR0(KTR_PMAP, "pmap_init"); 10930d290675SBenno Rice 10940d290675SBenno Rice pmap_upvo_zone = uma_zcreate("UPVO entry", sizeof (struct pvo_entry), 1095b053bc84SBosko Milekic NULL, NULL, NULL, NULL, UMA_ALIGN_PTR, UMA_ZONE_VM | UMA_ZONE_NOFREE); 10960d290675SBenno Rice uma_zone_set_allocf(pmap_upvo_zone, pmap_pvo_allocf); 10970d290675SBenno Rice pmap_mpvo_zone = uma_zcreate("MPVO entry", sizeof(struct pvo_entry), 1098b053bc84SBosko Milekic NULL, NULL, NULL, NULL, UMA_ALIGN_PTR, UMA_ZONE_VM | UMA_ZONE_NOFREE); 10990d290675SBenno Rice uma_zone_set_allocf(pmap_mpvo_zone, pmap_pvo_allocf); 11000d290675SBenno Rice pmap_initialized = TRUE; 11015244eac9SBenno Rice } 11025244eac9SBenno Rice 11035244eac9SBenno Rice void 11045244eac9SBenno Rice pmap_init2(void) 11055244eac9SBenno Rice { 11065244eac9SBenno Rice 110752a3cde5SBenno Rice CTR0(KTR_PMAP, "pmap_init2"); 11085244eac9SBenno Rice } 11095244eac9SBenno Rice 11105244eac9SBenno Rice boolean_t 11115244eac9SBenno Rice pmap_is_modified(vm_page_t m) 11125244eac9SBenno Rice { 11130f92104cSBenno Rice 111403b6e025SPeter Grehan if ((m->flags & (PG_FICTITIOUS |PG_UNMANAGED)) != 0) 11150f92104cSBenno Rice return (FALSE); 11160f92104cSBenno Rice 11170f92104cSBenno Rice return (pmap_query_bit(m, PTE_CHG)); 11185244eac9SBenno Rice } 11195244eac9SBenno Rice 1120566526a9SAlan Cox /* 1121566526a9SAlan Cox * pmap_is_prefaultable: 1122566526a9SAlan Cox * 1123566526a9SAlan Cox * Return whether or not the specified virtual address is elgible 1124566526a9SAlan Cox * for prefault. 1125566526a9SAlan Cox */ 1126566526a9SAlan Cox boolean_t 1127566526a9SAlan Cox pmap_is_prefaultable(pmap_t pmap, vm_offset_t addr) 1128566526a9SAlan Cox { 1129566526a9SAlan Cox 1130566526a9SAlan Cox return (FALSE); 1131566526a9SAlan Cox } 1132566526a9SAlan Cox 11335244eac9SBenno Rice void 11345244eac9SBenno Rice pmap_clear_reference(vm_page_t m) 11355244eac9SBenno Rice { 113603b6e025SPeter Grehan 113703b6e025SPeter Grehan if ((m->flags & (PG_FICTITIOUS | PG_UNMANAGED)) != 0) 113803b6e025SPeter Grehan return; 113903b6e025SPeter Grehan pmap_clear_bit(m, PTE_REF, NULL); 114003b6e025SPeter Grehan } 114103b6e025SPeter Grehan 114203b6e025SPeter Grehan void 114303b6e025SPeter Grehan pmap_clear_modify(vm_page_t m) 114403b6e025SPeter Grehan { 114503b6e025SPeter Grehan 114603b6e025SPeter Grehan if ((m->flags & (PG_FICTITIOUS | PG_UNMANAGED)) != 0) 114703b6e025SPeter Grehan return; 114803b6e025SPeter Grehan pmap_clear_bit(m, PTE_CHG, NULL); 11495244eac9SBenno Rice } 11505244eac9SBenno Rice 11517f3a4093SMike Silbersack /* 11527f3a4093SMike Silbersack * pmap_ts_referenced: 11537f3a4093SMike Silbersack * 11547f3a4093SMike Silbersack * Return a count of reference bits for a page, clearing those bits. 11557f3a4093SMike Silbersack * It is not necessary for every reference bit to be cleared, but it 11567f3a4093SMike Silbersack * is necessary that 0 only be returned when there are truly no 11577f3a4093SMike Silbersack * reference bits set. 11587f3a4093SMike Silbersack * 11597f3a4093SMike Silbersack * XXX: The exact number of bits to check and clear is a matter that 11607f3a4093SMike Silbersack * should be tested and standardized at some point in the future for 11617f3a4093SMike Silbersack * optimal aging of shared pages. 11627f3a4093SMike Silbersack */ 11635244eac9SBenno Rice int 11645244eac9SBenno Rice pmap_ts_referenced(vm_page_t m) 11655244eac9SBenno Rice { 116603b6e025SPeter Grehan int count; 116703b6e025SPeter Grehan 116803b6e025SPeter Grehan if ((m->flags & (PG_FICTITIOUS | PG_UNMANAGED)) != 0) 11695244eac9SBenno Rice return (0); 117003b6e025SPeter Grehan 117103b6e025SPeter Grehan count = pmap_clear_bit(m, PTE_REF, NULL); 117203b6e025SPeter Grehan 117303b6e025SPeter Grehan return (count); 11745244eac9SBenno Rice } 11755244eac9SBenno Rice 11765244eac9SBenno Rice /* 11775244eac9SBenno Rice * Map a wired page into kernel virtual address space. 11785244eac9SBenno Rice */ 11795244eac9SBenno Rice void 11805244eac9SBenno Rice pmap_kenter(vm_offset_t va, vm_offset_t pa) 11815244eac9SBenno Rice { 11825244eac9SBenno Rice u_int pte_lo; 11835244eac9SBenno Rice int error; 11845244eac9SBenno Rice int i; 11855244eac9SBenno Rice 11865244eac9SBenno Rice #if 0 11875244eac9SBenno Rice if (va < VM_MIN_KERNEL_ADDRESS) 11885244eac9SBenno Rice panic("pmap_kenter: attempt to enter non-kernel address %#x", 11895244eac9SBenno Rice va); 11905244eac9SBenno Rice #endif 11915244eac9SBenno Rice 119232bc7846SPeter Grehan pte_lo = PTE_I | PTE_G; 119332bc7846SPeter Grehan for (i = 0; i < pregions_sz; i++) { 119432bc7846SPeter Grehan if ((pa >= pregions[i].mr_start) && 119532bc7846SPeter Grehan (pa < (pregions[i].mr_start + pregions[i].mr_size))) { 11965244eac9SBenno Rice pte_lo &= ~(PTE_I | PTE_G); 11975244eac9SBenno Rice break; 11985244eac9SBenno Rice } 11995244eac9SBenno Rice } 12005244eac9SBenno Rice 12015244eac9SBenno Rice error = pmap_pvo_enter(kernel_pmap, pmap_upvo_zone, 12025244eac9SBenno Rice &pmap_pvo_kunmanaged, va, pa, pte_lo, PVO_WIRED); 12035244eac9SBenno Rice 12045244eac9SBenno Rice if (error != 0 && error != ENOENT) 12055244eac9SBenno Rice panic("pmap_kenter: failed to enter va %#x pa %#x: %d", va, 12065244eac9SBenno Rice pa, error); 12075244eac9SBenno Rice 12085244eac9SBenno Rice /* 12095244eac9SBenno Rice * Flush the real memory from the instruction cache. 12105244eac9SBenno Rice */ 12115244eac9SBenno Rice if ((pte_lo & (PTE_I | PTE_G)) == 0) { 12125244eac9SBenno Rice pmap_syncicache(pa, PAGE_SIZE); 12135244eac9SBenno Rice } 12145244eac9SBenno Rice } 12155244eac9SBenno Rice 1216e79f59e8SBenno Rice /* 1217e79f59e8SBenno Rice * Extract the physical page address associated with the given kernel virtual 1218e79f59e8SBenno Rice * address. 1219e79f59e8SBenno Rice */ 12205244eac9SBenno Rice vm_offset_t 12215244eac9SBenno Rice pmap_kextract(vm_offset_t va) 12225244eac9SBenno Rice { 1223e79f59e8SBenno Rice struct pvo_entry *pvo; 1224e79f59e8SBenno Rice 12250efd0097SPeter Grehan #ifdef UMA_MD_SMALL_ALLOC 12260efd0097SPeter Grehan /* 12270efd0097SPeter Grehan * Allow direct mappings 12280efd0097SPeter Grehan */ 12290efd0097SPeter Grehan if (va < VM_MIN_KERNEL_ADDRESS) { 12300efd0097SPeter Grehan return (va); 12310efd0097SPeter Grehan } 12320efd0097SPeter Grehan #endif 12330efd0097SPeter Grehan 1234e79f59e8SBenno Rice pvo = pmap_pvo_find_va(kernel_pmap, va & ~ADDR_POFF, NULL); 12350efd0097SPeter Grehan KASSERT(pvo != NULL, ("pmap_kextract: no addr found")); 1236e79f59e8SBenno Rice if (pvo == NULL) { 12375244eac9SBenno Rice return (0); 12385244eac9SBenno Rice } 12395244eac9SBenno Rice 1240e79f59e8SBenno Rice return ((pvo->pvo_pte.pte_lo & PTE_RPGN) | (va & ADDR_POFF)); 1241e79f59e8SBenno Rice } 1242e79f59e8SBenno Rice 124388afb2a3SBenno Rice /* 124488afb2a3SBenno Rice * Remove a wired page from kernel virtual address space. 124588afb2a3SBenno Rice */ 12465244eac9SBenno Rice void 12475244eac9SBenno Rice pmap_kremove(vm_offset_t va) 12485244eac9SBenno Rice { 124988afb2a3SBenno Rice 125032bc7846SPeter Grehan pmap_remove(kernel_pmap, va, va + PAGE_SIZE); 12515244eac9SBenno Rice } 12525244eac9SBenno Rice 12535244eac9SBenno Rice /* 12545244eac9SBenno Rice * Map a range of physical addresses into kernel virtual address space. 12555244eac9SBenno Rice * 12565244eac9SBenno Rice * The value passed in *virt is a suggested virtual address for the mapping. 12575244eac9SBenno Rice * Architectures which can support a direct-mapped physical to virtual region 12585244eac9SBenno Rice * can return the appropriate address within that region, leaving '*virt' 12595244eac9SBenno Rice * unchanged. We cannot and therefore do not; *virt is updated with the 12605244eac9SBenno Rice * first usable address after the mapped region. 12615244eac9SBenno Rice */ 12625244eac9SBenno Rice vm_offset_t 12635244eac9SBenno Rice pmap_map(vm_offset_t *virt, vm_offset_t pa_start, vm_offset_t pa_end, int prot) 12645244eac9SBenno Rice { 12655244eac9SBenno Rice vm_offset_t sva, va; 12665244eac9SBenno Rice 12675244eac9SBenno Rice sva = *virt; 12685244eac9SBenno Rice va = sva; 12695244eac9SBenno Rice for (; pa_start < pa_end; pa_start += PAGE_SIZE, va += PAGE_SIZE) 12705244eac9SBenno Rice pmap_kenter(va, pa_start); 12715244eac9SBenno Rice *virt = va; 12725244eac9SBenno Rice return (sva); 12735244eac9SBenno Rice } 12745244eac9SBenno Rice 12755244eac9SBenno Rice int 12765244eac9SBenno Rice pmap_mincore(pmap_t pmap, vm_offset_t addr) 12775244eac9SBenno Rice { 12785244eac9SBenno Rice TODO; 12795244eac9SBenno Rice return (0); 12805244eac9SBenno Rice } 12815244eac9SBenno Rice 12825244eac9SBenno Rice void 1283e79f59e8SBenno Rice pmap_object_init_pt(pmap_t pm, vm_offset_t addr, vm_object_t object, 12841f78f902SAlan Cox vm_pindex_t pindex, vm_size_t size) 1285bdf71f56SBenno Rice { 1286e79f59e8SBenno Rice 12871f78f902SAlan Cox VM_OBJECT_LOCK_ASSERT(object, MA_OWNED); 12881f78f902SAlan Cox KASSERT(object->type == OBJT_DEVICE, 12891f78f902SAlan Cox ("pmap_object_init_pt: non-device object")); 1290e79f59e8SBenno Rice KASSERT(pm == &curproc->p_vmspace->vm_pmap || pm == kernel_pmap, 12911f78f902SAlan Cox ("pmap_object_init_pt: non current pmap")); 1292bdf71f56SBenno Rice } 1293bdf71f56SBenno Rice 12945244eac9SBenno Rice /* 12955244eac9SBenno Rice * Lower the permission for all mappings to a given page. 12965244eac9SBenno Rice */ 12975244eac9SBenno Rice void 12985244eac9SBenno Rice pmap_page_protect(vm_page_t m, vm_prot_t prot) 12995244eac9SBenno Rice { 13005244eac9SBenno Rice struct pvo_head *pvo_head; 13015244eac9SBenno Rice struct pvo_entry *pvo, *next_pvo; 13025244eac9SBenno Rice struct pte *pt; 13035244eac9SBenno Rice 13045244eac9SBenno Rice /* 13055244eac9SBenno Rice * Since the routine only downgrades protection, if the 13065244eac9SBenno Rice * maximal protection is desired, there isn't any change 13075244eac9SBenno Rice * to be made. 13085244eac9SBenno Rice */ 13095244eac9SBenno Rice if ((prot & (VM_PROT_READ|VM_PROT_WRITE)) == 13105244eac9SBenno Rice (VM_PROT_READ|VM_PROT_WRITE)) 13115244eac9SBenno Rice return; 13125244eac9SBenno Rice 13135244eac9SBenno Rice pvo_head = vm_page_to_pvoh(m); 13145244eac9SBenno Rice for (pvo = LIST_FIRST(pvo_head); pvo != NULL; pvo = next_pvo) { 13155244eac9SBenno Rice next_pvo = LIST_NEXT(pvo, pvo_vlink); 13165244eac9SBenno Rice PMAP_PVO_CHECK(pvo); /* sanity check */ 13175244eac9SBenno Rice 13185244eac9SBenno Rice /* 13195244eac9SBenno Rice * Downgrading to no mapping at all, we just remove the entry. 13205244eac9SBenno Rice */ 13215244eac9SBenno Rice if ((prot & VM_PROT_READ) == 0) { 13225244eac9SBenno Rice pmap_pvo_remove(pvo, -1); 13235244eac9SBenno Rice continue; 13245244eac9SBenno Rice } 13255244eac9SBenno Rice 13265244eac9SBenno Rice /* 13275244eac9SBenno Rice * If EXEC permission is being revoked, just clear the flag 13285244eac9SBenno Rice * in the PVO. 13295244eac9SBenno Rice */ 13305244eac9SBenno Rice if ((prot & VM_PROT_EXECUTE) == 0) 13315244eac9SBenno Rice pvo->pvo_vaddr &= ~PVO_EXECUTABLE; 13325244eac9SBenno Rice 13335244eac9SBenno Rice /* 13345244eac9SBenno Rice * If this entry is already RO, don't diddle with the page 13355244eac9SBenno Rice * table. 13365244eac9SBenno Rice */ 13375244eac9SBenno Rice if ((pvo->pvo_pte.pte_lo & PTE_PP) == PTE_BR) { 13385244eac9SBenno Rice PMAP_PVO_CHECK(pvo); 13395244eac9SBenno Rice continue; 13405244eac9SBenno Rice } 13415244eac9SBenno Rice 13425244eac9SBenno Rice /* 13435244eac9SBenno Rice * Grab the PTE before we diddle the bits so pvo_to_pte can 13445244eac9SBenno Rice * verify the pte contents are as expected. 13455244eac9SBenno Rice */ 13465244eac9SBenno Rice pt = pmap_pvo_to_pte(pvo, -1); 13475244eac9SBenno Rice pvo->pvo_pte.pte_lo &= ~PTE_PP; 13485244eac9SBenno Rice pvo->pvo_pte.pte_lo |= PTE_BR; 13495244eac9SBenno Rice if (pt != NULL) 13505244eac9SBenno Rice pmap_pte_change(pt, &pvo->pvo_pte, pvo->pvo_vaddr); 13515244eac9SBenno Rice PMAP_PVO_CHECK(pvo); /* sanity check */ 13525244eac9SBenno Rice } 13535244eac9SBenno Rice } 13545244eac9SBenno Rice 13555244eac9SBenno Rice /* 13567f3a4093SMike Silbersack * Returns true if the pmap's pv is one of the first 13577f3a4093SMike Silbersack * 16 pvs linked to from this page. This count may 13587f3a4093SMike Silbersack * be changed upwards or downwards in the future; it 13597f3a4093SMike Silbersack * is only necessary that true be returned for a small 13607f3a4093SMike Silbersack * subset of pmaps for proper page aging. 13617f3a4093SMike Silbersack */ 13625244eac9SBenno Rice boolean_t 13637f3a4093SMike Silbersack pmap_page_exists_quick(pmap_t pmap, vm_page_t m) 13645244eac9SBenno Rice { 136503b6e025SPeter Grehan int loops; 136603b6e025SPeter Grehan struct pvo_entry *pvo; 136703b6e025SPeter Grehan 136803b6e025SPeter Grehan if (!pmap_initialized || (m->flags & PG_FICTITIOUS)) 136903b6e025SPeter Grehan return FALSE; 137003b6e025SPeter Grehan 137103b6e025SPeter Grehan loops = 0; 137203b6e025SPeter Grehan LIST_FOREACH(pvo, vm_page_to_pvoh(m), pvo_vlink) { 137303b6e025SPeter Grehan if (pvo->pvo_pmap == pmap) 137403b6e025SPeter Grehan return (TRUE); 137503b6e025SPeter Grehan if (++loops >= 16) 137603b6e025SPeter Grehan break; 137703b6e025SPeter Grehan } 137803b6e025SPeter Grehan 137903b6e025SPeter Grehan return (FALSE); 13805244eac9SBenno Rice } 13815244eac9SBenno Rice 13825244eac9SBenno Rice static u_int pmap_vsidcontext; 13835244eac9SBenno Rice 13845244eac9SBenno Rice void 13855244eac9SBenno Rice pmap_pinit(pmap_t pmap) 13865244eac9SBenno Rice { 13875244eac9SBenno Rice int i, mask; 13885244eac9SBenno Rice u_int entropy; 13895244eac9SBenno Rice 13905244eac9SBenno Rice entropy = 0; 13915244eac9SBenno Rice __asm __volatile("mftb %0" : "=r"(entropy)); 13925244eac9SBenno Rice 13935244eac9SBenno Rice /* 13945244eac9SBenno Rice * Allocate some segment registers for this pmap. 13955244eac9SBenno Rice */ 13965244eac9SBenno Rice for (i = 0; i < NPMAPS; i += VSID_NBPW) { 13975244eac9SBenno Rice u_int hash, n; 13985244eac9SBenno Rice 13995244eac9SBenno Rice /* 14005244eac9SBenno Rice * Create a new value by mutiplying by a prime and adding in 14015244eac9SBenno Rice * entropy from the timebase register. This is to make the 14025244eac9SBenno Rice * VSID more random so that the PT hash function collides 14035244eac9SBenno Rice * less often. (Note that the prime casues gcc to do shifts 14045244eac9SBenno Rice * instead of a multiply.) 14055244eac9SBenno Rice */ 14065244eac9SBenno Rice pmap_vsidcontext = (pmap_vsidcontext * 0x1105) + entropy; 14075244eac9SBenno Rice hash = pmap_vsidcontext & (NPMAPS - 1); 14085244eac9SBenno Rice if (hash == 0) /* 0 is special, avoid it */ 14095244eac9SBenno Rice continue; 14105244eac9SBenno Rice n = hash >> 5; 14115244eac9SBenno Rice mask = 1 << (hash & (VSID_NBPW - 1)); 14125244eac9SBenno Rice hash = (pmap_vsidcontext & 0xfffff); 14135244eac9SBenno Rice if (pmap_vsid_bitmap[n] & mask) { /* collision? */ 14145244eac9SBenno Rice /* anything free in this bucket? */ 14155244eac9SBenno Rice if (pmap_vsid_bitmap[n] == 0xffffffff) { 14165244eac9SBenno Rice entropy = (pmap_vsidcontext >> 20); 14175244eac9SBenno Rice continue; 14185244eac9SBenno Rice } 14195244eac9SBenno Rice i = ffs(~pmap_vsid_bitmap[i]) - 1; 14205244eac9SBenno Rice mask = 1 << i; 14215244eac9SBenno Rice hash &= 0xfffff & ~(VSID_NBPW - 1); 14225244eac9SBenno Rice hash |= i; 14235244eac9SBenno Rice } 14245244eac9SBenno Rice pmap_vsid_bitmap[n] |= mask; 14255244eac9SBenno Rice for (i = 0; i < 16; i++) 14265244eac9SBenno Rice pmap->pm_sr[i] = VSID_MAKE(i, hash); 14275244eac9SBenno Rice return; 14285244eac9SBenno Rice } 14295244eac9SBenno Rice 14305244eac9SBenno Rice panic("pmap_pinit: out of segments"); 14315244eac9SBenno Rice } 14325244eac9SBenno Rice 14335244eac9SBenno Rice /* 14345244eac9SBenno Rice * Initialize the pmap associated with process 0. 14355244eac9SBenno Rice */ 14365244eac9SBenno Rice void 14375244eac9SBenno Rice pmap_pinit0(pmap_t pm) 14385244eac9SBenno Rice { 14395244eac9SBenno Rice 14405244eac9SBenno Rice pmap_pinit(pm); 14415244eac9SBenno Rice bzero(&pm->pm_stats, sizeof(pm->pm_stats)); 14425244eac9SBenno Rice } 14435244eac9SBenno Rice 14445244eac9SBenno Rice void 14455244eac9SBenno Rice pmap_pinit2(pmap_t pmap) 14465244eac9SBenno Rice { 14475244eac9SBenno Rice /* XXX: Remove this stub when no longer called */ 14485244eac9SBenno Rice } 14495244eac9SBenno Rice 1450e79f59e8SBenno Rice /* 1451e79f59e8SBenno Rice * Set the physical protection on the specified range of this map as requested. 1452e79f59e8SBenno Rice */ 14535244eac9SBenno Rice void 1454e79f59e8SBenno Rice pmap_protect(pmap_t pm, vm_offset_t sva, vm_offset_t eva, vm_prot_t prot) 14555244eac9SBenno Rice { 1456e79f59e8SBenno Rice struct pvo_entry *pvo; 1457e79f59e8SBenno Rice struct pte *pt; 1458e79f59e8SBenno Rice int pteidx; 1459e79f59e8SBenno Rice 1460e79f59e8SBenno Rice CTR4(KTR_PMAP, "pmap_protect: pm=%p sva=%#x eva=%#x prot=%#x", pm, sva, 1461e79f59e8SBenno Rice eva, prot); 1462e79f59e8SBenno Rice 1463e79f59e8SBenno Rice 1464e79f59e8SBenno Rice KASSERT(pm == &curproc->p_vmspace->vm_pmap || pm == kernel_pmap, 1465e79f59e8SBenno Rice ("pmap_protect: non current pmap")); 1466e79f59e8SBenno Rice 1467e79f59e8SBenno Rice if ((prot & VM_PROT_READ) == VM_PROT_NONE) { 1468e79f59e8SBenno Rice pmap_remove(pm, sva, eva); 1469e79f59e8SBenno Rice return; 1470e79f59e8SBenno Rice } 1471e79f59e8SBenno Rice 1472e79f59e8SBenno Rice for (; sva < eva; sva += PAGE_SIZE) { 1473e79f59e8SBenno Rice pvo = pmap_pvo_find_va(pm, sva, &pteidx); 1474e79f59e8SBenno Rice if (pvo == NULL) 1475e79f59e8SBenno Rice continue; 1476e79f59e8SBenno Rice 1477e79f59e8SBenno Rice if ((prot & VM_PROT_EXECUTE) == 0) 1478e79f59e8SBenno Rice pvo->pvo_vaddr &= ~PVO_EXECUTABLE; 1479e79f59e8SBenno Rice 1480e79f59e8SBenno Rice /* 1481e79f59e8SBenno Rice * Grab the PTE pointer before we diddle with the cached PTE 1482e79f59e8SBenno Rice * copy. 1483e79f59e8SBenno Rice */ 1484e79f59e8SBenno Rice pt = pmap_pvo_to_pte(pvo, pteidx); 1485e79f59e8SBenno Rice /* 1486e79f59e8SBenno Rice * Change the protection of the page. 1487e79f59e8SBenno Rice */ 1488e79f59e8SBenno Rice pvo->pvo_pte.pte_lo &= ~PTE_PP; 1489e79f59e8SBenno Rice pvo->pvo_pte.pte_lo |= PTE_BR; 1490e79f59e8SBenno Rice 1491e79f59e8SBenno Rice /* 1492e79f59e8SBenno Rice * If the PVO is in the page table, update that pte as well. 1493e79f59e8SBenno Rice */ 1494e79f59e8SBenno Rice if (pt != NULL) 1495e79f59e8SBenno Rice pmap_pte_change(pt, &pvo->pvo_pte, pvo->pvo_vaddr); 1496e79f59e8SBenno Rice } 14975244eac9SBenno Rice } 14985244eac9SBenno Rice 149988afb2a3SBenno Rice /* 150088afb2a3SBenno Rice * Map a list of wired pages into kernel virtual address space. This is 150188afb2a3SBenno Rice * intended for temporary mappings which do not need page modification or 150288afb2a3SBenno Rice * references recorded. Existing mappings in the region are overwritten. 150388afb2a3SBenno Rice */ 15045244eac9SBenno Rice void 150503b6e025SPeter Grehan pmap_qenter(vm_offset_t sva, vm_page_t *m, int count) 15065244eac9SBenno Rice { 150703b6e025SPeter Grehan vm_offset_t va; 15085244eac9SBenno Rice 150903b6e025SPeter Grehan va = sva; 151003b6e025SPeter Grehan while (count-- > 0) { 151103b6e025SPeter Grehan pmap_kenter(va, VM_PAGE_TO_PHYS(*m)); 151203b6e025SPeter Grehan va += PAGE_SIZE; 151303b6e025SPeter Grehan m++; 151403b6e025SPeter Grehan } 15155244eac9SBenno Rice } 15165244eac9SBenno Rice 151788afb2a3SBenno Rice /* 151888afb2a3SBenno Rice * Remove page mappings from kernel virtual address space. Intended for 151988afb2a3SBenno Rice * temporary mappings entered by pmap_qenter. 152088afb2a3SBenno Rice */ 15215244eac9SBenno Rice void 152203b6e025SPeter Grehan pmap_qremove(vm_offset_t sva, int count) 15235244eac9SBenno Rice { 152403b6e025SPeter Grehan vm_offset_t va; 152588afb2a3SBenno Rice 152603b6e025SPeter Grehan va = sva; 152703b6e025SPeter Grehan while (count-- > 0) { 152888afb2a3SBenno Rice pmap_kremove(va); 152903b6e025SPeter Grehan va += PAGE_SIZE; 153003b6e025SPeter Grehan } 15315244eac9SBenno Rice } 15325244eac9SBenno Rice 15335244eac9SBenno Rice void 15345244eac9SBenno Rice pmap_release(pmap_t pmap) 15355244eac9SBenno Rice { 153632bc7846SPeter Grehan int idx, mask; 153732bc7846SPeter Grehan 153832bc7846SPeter Grehan /* 153932bc7846SPeter Grehan * Free segment register's VSID 154032bc7846SPeter Grehan */ 154132bc7846SPeter Grehan if (pmap->pm_sr[0] == 0) 154232bc7846SPeter Grehan panic("pmap_release"); 154332bc7846SPeter Grehan 154432bc7846SPeter Grehan idx = VSID_TO_HASH(pmap->pm_sr[0]) & (NPMAPS-1); 154532bc7846SPeter Grehan mask = 1 << (idx % VSID_NBPW); 154632bc7846SPeter Grehan idx /= VSID_NBPW; 154732bc7846SPeter Grehan pmap_vsid_bitmap[idx] &= ~mask; 15485244eac9SBenno Rice } 15495244eac9SBenno Rice 155088afb2a3SBenno Rice /* 155188afb2a3SBenno Rice * Remove the given range of addresses from the specified map. 155288afb2a3SBenno Rice */ 15535244eac9SBenno Rice void 155488afb2a3SBenno Rice pmap_remove(pmap_t pm, vm_offset_t sva, vm_offset_t eva) 15555244eac9SBenno Rice { 155688afb2a3SBenno Rice struct pvo_entry *pvo; 155788afb2a3SBenno Rice int pteidx; 155888afb2a3SBenno Rice 155988afb2a3SBenno Rice for (; sva < eva; sva += PAGE_SIZE) { 156088afb2a3SBenno Rice pvo = pmap_pvo_find_va(pm, sva, &pteidx); 156188afb2a3SBenno Rice if (pvo != NULL) { 156288afb2a3SBenno Rice pmap_pvo_remove(pvo, pteidx); 156388afb2a3SBenno Rice } 156488afb2a3SBenno Rice } 15655244eac9SBenno Rice } 15665244eac9SBenno Rice 1567e79f59e8SBenno Rice /* 156803b6e025SPeter Grehan * Remove physical page from all pmaps in which it resides. pmap_pvo_remove() 156903b6e025SPeter Grehan * will reflect changes in pte's back to the vm_page. 157003b6e025SPeter Grehan */ 157103b6e025SPeter Grehan void 157203b6e025SPeter Grehan pmap_remove_all(vm_page_t m) 157303b6e025SPeter Grehan { 157403b6e025SPeter Grehan struct pvo_head *pvo_head; 157503b6e025SPeter Grehan struct pvo_entry *pvo, *next_pvo; 157603b6e025SPeter Grehan 157784792e72SPeter Grehan mtx_assert(&vm_page_queue_mtx, MA_OWNED); 157803b6e025SPeter Grehan 157903b6e025SPeter Grehan pvo_head = vm_page_to_pvoh(m); 158003b6e025SPeter Grehan for (pvo = LIST_FIRST(pvo_head); pvo != NULL; pvo = next_pvo) { 158103b6e025SPeter Grehan next_pvo = LIST_NEXT(pvo, pvo_vlink); 158203b6e025SPeter Grehan 158303b6e025SPeter Grehan PMAP_PVO_CHECK(pvo); /* sanity check */ 158403b6e025SPeter Grehan pmap_pvo_remove(pvo, -1); 158503b6e025SPeter Grehan } 158603b6e025SPeter Grehan vm_page_flag_clear(m, PG_WRITEABLE); 158703b6e025SPeter Grehan } 158803b6e025SPeter Grehan 158903b6e025SPeter Grehan /* 1590e79f59e8SBenno Rice * Remove all pages from specified address space, this aids process exit 1591e79f59e8SBenno Rice * speeds. This is much faster than pmap_remove in the case of running down 1592e79f59e8SBenno Rice * an entire address space. Only works for the current pmap. 1593e79f59e8SBenno Rice */ 15945244eac9SBenno Rice void 1595e79f59e8SBenno Rice pmap_remove_pages(pmap_t pm, vm_offset_t sva, vm_offset_t eva) 15965244eac9SBenno Rice { 1597e79f59e8SBenno Rice 1598e79f59e8SBenno Rice KASSERT(pm == &curproc->p_vmspace->vm_pmap || pm == kernel_pmap, 1599e79f59e8SBenno Rice ("pmap_remove_pages: non current pmap")); 1600e79f59e8SBenno Rice pmap_remove(pm, sva, eva); 16015244eac9SBenno Rice } 16025244eac9SBenno Rice 16035244eac9SBenno Rice /* 16045244eac9SBenno Rice * Allocate a physical page of memory directly from the phys_avail map. 16055244eac9SBenno Rice * Can only be called from pmap_bootstrap before avail start and end are 16065244eac9SBenno Rice * calculated. 16075244eac9SBenno Rice */ 16085244eac9SBenno Rice static vm_offset_t 16095244eac9SBenno Rice pmap_bootstrap_alloc(vm_size_t size, u_int align) 16105244eac9SBenno Rice { 16115244eac9SBenno Rice vm_offset_t s, e; 16125244eac9SBenno Rice int i, j; 16135244eac9SBenno Rice 16145244eac9SBenno Rice size = round_page(size); 16155244eac9SBenno Rice for (i = 0; phys_avail[i + 1] != 0; i += 2) { 16165244eac9SBenno Rice if (align != 0) 16175244eac9SBenno Rice s = (phys_avail[i] + align - 1) & ~(align - 1); 16185244eac9SBenno Rice else 16195244eac9SBenno Rice s = phys_avail[i]; 16205244eac9SBenno Rice e = s + size; 16215244eac9SBenno Rice 16225244eac9SBenno Rice if (s < phys_avail[i] || e > phys_avail[i + 1]) 16235244eac9SBenno Rice continue; 16245244eac9SBenno Rice 16255244eac9SBenno Rice if (s == phys_avail[i]) { 16265244eac9SBenno Rice phys_avail[i] += size; 16275244eac9SBenno Rice } else if (e == phys_avail[i + 1]) { 16285244eac9SBenno Rice phys_avail[i + 1] -= size; 16295244eac9SBenno Rice } else { 16305244eac9SBenno Rice for (j = phys_avail_count * 2; j > i; j -= 2) { 16315244eac9SBenno Rice phys_avail[j] = phys_avail[j - 2]; 16325244eac9SBenno Rice phys_avail[j + 1] = phys_avail[j - 1]; 16335244eac9SBenno Rice } 16345244eac9SBenno Rice 16355244eac9SBenno Rice phys_avail[i + 3] = phys_avail[i + 1]; 16365244eac9SBenno Rice phys_avail[i + 1] = s; 16375244eac9SBenno Rice phys_avail[i + 2] = e; 16385244eac9SBenno Rice phys_avail_count++; 16395244eac9SBenno Rice } 16405244eac9SBenno Rice 16415244eac9SBenno Rice return (s); 16425244eac9SBenno Rice } 16435244eac9SBenno Rice panic("pmap_bootstrap_alloc: could not allocate memory"); 16445244eac9SBenno Rice } 16455244eac9SBenno Rice 16465244eac9SBenno Rice /* 16475244eac9SBenno Rice * Return an unmapped pvo for a kernel virtual address. 16485244eac9SBenno Rice * Used by pmap functions that operate on physical pages. 16495244eac9SBenno Rice */ 16505244eac9SBenno Rice static struct pvo_entry * 16515244eac9SBenno Rice pmap_rkva_alloc(void) 16525244eac9SBenno Rice { 16535244eac9SBenno Rice struct pvo_entry *pvo; 16545244eac9SBenno Rice struct pte *pt; 16555244eac9SBenno Rice vm_offset_t kva; 16565244eac9SBenno Rice int pteidx; 16575244eac9SBenno Rice 16585244eac9SBenno Rice if (pmap_rkva_count == 0) 16595244eac9SBenno Rice panic("pmap_rkva_alloc: no more reserved KVAs"); 16605244eac9SBenno Rice 16615244eac9SBenno Rice kva = pmap_rkva_start + (PAGE_SIZE * --pmap_rkva_count); 16625244eac9SBenno Rice pmap_kenter(kva, 0); 16635244eac9SBenno Rice 16645244eac9SBenno Rice pvo = pmap_pvo_find_va(kernel_pmap, kva, &pteidx); 16655244eac9SBenno Rice 16665244eac9SBenno Rice if (pvo == NULL) 16675244eac9SBenno Rice panic("pmap_kva_alloc: pmap_pvo_find_va failed"); 16685244eac9SBenno Rice 16695244eac9SBenno Rice pt = pmap_pvo_to_pte(pvo, pteidx); 16705244eac9SBenno Rice 16715244eac9SBenno Rice if (pt == NULL) 16725244eac9SBenno Rice panic("pmap_kva_alloc: pmap_pvo_to_pte failed"); 16735244eac9SBenno Rice 16745244eac9SBenno Rice pmap_pte_unset(pt, &pvo->pvo_pte, pvo->pvo_vaddr); 16755244eac9SBenno Rice PVO_PTEGIDX_CLR(pvo); 16765244eac9SBenno Rice 16775244eac9SBenno Rice pmap_pte_overflow++; 16785244eac9SBenno Rice 16795244eac9SBenno Rice return (pvo); 16805244eac9SBenno Rice } 16815244eac9SBenno Rice 16825244eac9SBenno Rice static void 16835244eac9SBenno Rice pmap_pa_map(struct pvo_entry *pvo, vm_offset_t pa, struct pte *saved_pt, 16845244eac9SBenno Rice int *depth_p) 16855244eac9SBenno Rice { 16865244eac9SBenno Rice struct pte *pt; 16875244eac9SBenno Rice 16885244eac9SBenno Rice /* 16895244eac9SBenno Rice * If this pvo already has a valid pte, we need to save it so it can 16905244eac9SBenno Rice * be restored later. We then just reload the new PTE over the old 16915244eac9SBenno Rice * slot. 16925244eac9SBenno Rice */ 16935244eac9SBenno Rice if (saved_pt != NULL) { 16945244eac9SBenno Rice pt = pmap_pvo_to_pte(pvo, -1); 16955244eac9SBenno Rice 16965244eac9SBenno Rice if (pt != NULL) { 16975244eac9SBenno Rice pmap_pte_unset(pt, &pvo->pvo_pte, pvo->pvo_vaddr); 16985244eac9SBenno Rice PVO_PTEGIDX_CLR(pvo); 16995244eac9SBenno Rice pmap_pte_overflow++; 17005244eac9SBenno Rice } 17015244eac9SBenno Rice 17025244eac9SBenno Rice *saved_pt = pvo->pvo_pte; 17035244eac9SBenno Rice 17045244eac9SBenno Rice pvo->pvo_pte.pte_lo &= ~PTE_RPGN; 17055244eac9SBenno Rice } 17065244eac9SBenno Rice 17075244eac9SBenno Rice pvo->pvo_pte.pte_lo |= pa; 17085244eac9SBenno Rice 17095244eac9SBenno Rice if (!pmap_pte_spill(pvo->pvo_vaddr)) 17105244eac9SBenno Rice panic("pmap_pa_map: could not spill pvo %p", pvo); 17115244eac9SBenno Rice 17125244eac9SBenno Rice if (depth_p != NULL) 17135244eac9SBenno Rice (*depth_p)++; 17145244eac9SBenno Rice } 17155244eac9SBenno Rice 17165244eac9SBenno Rice static void 17175244eac9SBenno Rice pmap_pa_unmap(struct pvo_entry *pvo, struct pte *saved_pt, int *depth_p) 17185244eac9SBenno Rice { 17195244eac9SBenno Rice struct pte *pt; 17205244eac9SBenno Rice 17215244eac9SBenno Rice pt = pmap_pvo_to_pte(pvo, -1); 17225244eac9SBenno Rice 17235244eac9SBenno Rice if (pt != NULL) { 17245244eac9SBenno Rice pmap_pte_unset(pt, &pvo->pvo_pte, pvo->pvo_vaddr); 17255244eac9SBenno Rice PVO_PTEGIDX_CLR(pvo); 17265244eac9SBenno Rice pmap_pte_overflow++; 17275244eac9SBenno Rice } 17285244eac9SBenno Rice 17295244eac9SBenno Rice pvo->pvo_pte.pte_lo &= ~PTE_RPGN; 17305244eac9SBenno Rice 17315244eac9SBenno Rice /* 17325244eac9SBenno Rice * If there is a saved PTE and it's valid, restore it and return. 17335244eac9SBenno Rice */ 17345244eac9SBenno Rice if (saved_pt != NULL && (saved_pt->pte_lo & PTE_RPGN) != 0) { 17355244eac9SBenno Rice if (depth_p != NULL && --(*depth_p) == 0) 17365244eac9SBenno Rice panic("pmap_pa_unmap: restoring but depth == 0"); 17375244eac9SBenno Rice 17385244eac9SBenno Rice pvo->pvo_pte = *saved_pt; 17395244eac9SBenno Rice 17405244eac9SBenno Rice if (!pmap_pte_spill(pvo->pvo_vaddr)) 17415244eac9SBenno Rice panic("pmap_pa_unmap: could not spill pvo %p", pvo); 17425244eac9SBenno Rice } 17435244eac9SBenno Rice } 17445244eac9SBenno Rice 17455244eac9SBenno Rice static void 17465244eac9SBenno Rice pmap_syncicache(vm_offset_t pa, vm_size_t len) 17475244eac9SBenno Rice { 17485244eac9SBenno Rice __syncicache((void *)pa, len); 17495244eac9SBenno Rice } 17505244eac9SBenno Rice 17515244eac9SBenno Rice static void 17525244eac9SBenno Rice tlbia(void) 17535244eac9SBenno Rice { 17545244eac9SBenno Rice caddr_t i; 17555244eac9SBenno Rice 17565244eac9SBenno Rice SYNC(); 17575244eac9SBenno Rice for (i = 0; i < (caddr_t)0x00040000; i += 0x00001000) { 17585244eac9SBenno Rice TLBIE(i); 17595244eac9SBenno Rice EIEIO(); 17605244eac9SBenno Rice } 17615244eac9SBenno Rice TLBSYNC(); 17625244eac9SBenno Rice SYNC(); 17635244eac9SBenno Rice } 17645244eac9SBenno Rice 17655244eac9SBenno Rice static int 1766378862a7SJeff Roberson pmap_pvo_enter(pmap_t pm, uma_zone_t zone, struct pvo_head *pvo_head, 17675244eac9SBenno Rice vm_offset_t va, vm_offset_t pa, u_int pte_lo, int flags) 17685244eac9SBenno Rice { 17695244eac9SBenno Rice struct pvo_entry *pvo; 17705244eac9SBenno Rice u_int sr; 17715244eac9SBenno Rice int first; 17725244eac9SBenno Rice u_int ptegidx; 17735244eac9SBenno Rice int i; 177432bc7846SPeter Grehan int bootstrap; 17755244eac9SBenno Rice 17765244eac9SBenno Rice pmap_pvo_enter_calls++; 17778207b362SBenno Rice first = 0; 17785244eac9SBenno Rice 177932bc7846SPeter Grehan bootstrap = 0; 178032bc7846SPeter Grehan 17815244eac9SBenno Rice /* 17825244eac9SBenno Rice * Compute the PTE Group index. 17835244eac9SBenno Rice */ 17845244eac9SBenno Rice va &= ~ADDR_POFF; 17855244eac9SBenno Rice sr = va_to_sr(pm->pm_sr, va); 17865244eac9SBenno Rice ptegidx = va_to_pteg(sr, va); 17875244eac9SBenno Rice 17885244eac9SBenno Rice /* 17895244eac9SBenno Rice * Remove any existing mapping for this page. Reuse the pvo entry if 17905244eac9SBenno Rice * there is a mapping. 17915244eac9SBenno Rice */ 17925244eac9SBenno Rice LIST_FOREACH(pvo, &pmap_pvo_table[ptegidx], pvo_olink) { 17935244eac9SBenno Rice if (pvo->pvo_pmap == pm && PVO_VADDR(pvo) == va) { 1794fafc7362SBenno Rice if ((pvo->pvo_pte.pte_lo & PTE_RPGN) == pa && 1795fafc7362SBenno Rice (pvo->pvo_pte.pte_lo & PTE_PP) == 1796fafc7362SBenno Rice (pte_lo & PTE_PP)) { 179749f8f727SBenno Rice return (0); 1798fafc7362SBenno Rice } 17995244eac9SBenno Rice pmap_pvo_remove(pvo, -1); 18005244eac9SBenno Rice break; 18015244eac9SBenno Rice } 18025244eac9SBenno Rice } 18035244eac9SBenno Rice 18045244eac9SBenno Rice /* 18055244eac9SBenno Rice * If we aren't overwriting a mapping, try to allocate. 18065244eac9SBenno Rice */ 180749f8f727SBenno Rice if (pmap_initialized) { 1808378862a7SJeff Roberson pvo = uma_zalloc(zone, M_NOWAIT); 180949f8f727SBenno Rice } else { 18100d290675SBenno Rice if (pmap_bpvo_pool_index >= BPVO_POOL_SIZE) { 18110d290675SBenno Rice panic("pmap_enter: bpvo pool exhausted, %d, %d, %d", 18120d290675SBenno Rice pmap_bpvo_pool_index, BPVO_POOL_SIZE, 18130d290675SBenno Rice BPVO_POOL_SIZE * sizeof(struct pvo_entry)); 181449f8f727SBenno Rice } 181549f8f727SBenno Rice pvo = &pmap_bpvo_pool[pmap_bpvo_pool_index]; 181649f8f727SBenno Rice pmap_bpvo_pool_index++; 181732bc7846SPeter Grehan bootstrap = 1; 181849f8f727SBenno Rice } 18195244eac9SBenno Rice 18205244eac9SBenno Rice if (pvo == NULL) { 18215244eac9SBenno Rice return (ENOMEM); 18225244eac9SBenno Rice } 18235244eac9SBenno Rice 18245244eac9SBenno Rice pmap_pvo_entries++; 18255244eac9SBenno Rice pvo->pvo_vaddr = va; 18265244eac9SBenno Rice pvo->pvo_pmap = pm; 18275244eac9SBenno Rice LIST_INSERT_HEAD(&pmap_pvo_table[ptegidx], pvo, pvo_olink); 18285244eac9SBenno Rice pvo->pvo_vaddr &= ~ADDR_POFF; 18295244eac9SBenno Rice if (flags & VM_PROT_EXECUTE) 18305244eac9SBenno Rice pvo->pvo_vaddr |= PVO_EXECUTABLE; 18315244eac9SBenno Rice if (flags & PVO_WIRED) 18325244eac9SBenno Rice pvo->pvo_vaddr |= PVO_WIRED; 18335244eac9SBenno Rice if (pvo_head != &pmap_pvo_kunmanaged) 18345244eac9SBenno Rice pvo->pvo_vaddr |= PVO_MANAGED; 183532bc7846SPeter Grehan if (bootstrap) 183632bc7846SPeter Grehan pvo->pvo_vaddr |= PVO_BOOTSTRAP; 18375244eac9SBenno Rice pmap_pte_create(&pvo->pvo_pte, sr, va, pa | pte_lo); 18385244eac9SBenno Rice 18395244eac9SBenno Rice /* 18405244eac9SBenno Rice * Remember if the list was empty and therefore will be the first 18415244eac9SBenno Rice * item. 18425244eac9SBenno Rice */ 18438207b362SBenno Rice if (LIST_FIRST(pvo_head) == NULL) 18448207b362SBenno Rice first = 1; 18455244eac9SBenno Rice 18465244eac9SBenno Rice LIST_INSERT_HEAD(pvo_head, pvo, pvo_vlink); 18475244eac9SBenno Rice if (pvo->pvo_pte.pte_lo & PVO_WIRED) 18485244eac9SBenno Rice pvo->pvo_pmap->pm_stats.wired_count++; 18495244eac9SBenno Rice pvo->pvo_pmap->pm_stats.resident_count++; 18505244eac9SBenno Rice 18515244eac9SBenno Rice /* 18525244eac9SBenno Rice * We hope this succeeds but it isn't required. 18535244eac9SBenno Rice */ 18545244eac9SBenno Rice i = pmap_pte_insert(ptegidx, &pvo->pvo_pte); 18555244eac9SBenno Rice if (i >= 0) { 18565244eac9SBenno Rice PVO_PTEGIDX_SET(pvo, i); 18575244eac9SBenno Rice } else { 18585244eac9SBenno Rice panic("pmap_pvo_enter: overflow"); 18595244eac9SBenno Rice pmap_pte_overflow++; 18605244eac9SBenno Rice } 18615244eac9SBenno Rice 18625244eac9SBenno Rice return (first ? ENOENT : 0); 18635244eac9SBenno Rice } 18645244eac9SBenno Rice 18655244eac9SBenno Rice static void 18665244eac9SBenno Rice pmap_pvo_remove(struct pvo_entry *pvo, int pteidx) 18675244eac9SBenno Rice { 18685244eac9SBenno Rice struct pte *pt; 18695244eac9SBenno Rice 18705244eac9SBenno Rice /* 18715244eac9SBenno Rice * If there is an active pte entry, we need to deactivate it (and 18725244eac9SBenno Rice * save the ref & cfg bits). 18735244eac9SBenno Rice */ 18745244eac9SBenno Rice pt = pmap_pvo_to_pte(pvo, pteidx); 18755244eac9SBenno Rice if (pt != NULL) { 18765244eac9SBenno Rice pmap_pte_unset(pt, &pvo->pvo_pte, pvo->pvo_vaddr); 18775244eac9SBenno Rice PVO_PTEGIDX_CLR(pvo); 18785244eac9SBenno Rice } else { 18795244eac9SBenno Rice pmap_pte_overflow--; 18805244eac9SBenno Rice } 18815244eac9SBenno Rice 18825244eac9SBenno Rice /* 18835244eac9SBenno Rice * Update our statistics. 18845244eac9SBenno Rice */ 18855244eac9SBenno Rice pvo->pvo_pmap->pm_stats.resident_count--; 18865244eac9SBenno Rice if (pvo->pvo_pte.pte_lo & PVO_WIRED) 18875244eac9SBenno Rice pvo->pvo_pmap->pm_stats.wired_count--; 18885244eac9SBenno Rice 18895244eac9SBenno Rice /* 18905244eac9SBenno Rice * Save the REF/CHG bits into their cache if the page is managed. 18915244eac9SBenno Rice */ 18925244eac9SBenno Rice if (pvo->pvo_vaddr & PVO_MANAGED) { 18935244eac9SBenno Rice struct vm_page *pg; 18945244eac9SBenno Rice 18958862232dSBenno Rice pg = PHYS_TO_VM_PAGE(pvo->pvo_pte.pte_lo & PTE_RPGN); 18965244eac9SBenno Rice if (pg != NULL) { 18975244eac9SBenno Rice pmap_attr_save(pg, pvo->pvo_pte.pte_lo & 18985244eac9SBenno Rice (PTE_REF | PTE_CHG)); 18995244eac9SBenno Rice } 19005244eac9SBenno Rice } 19015244eac9SBenno Rice 19025244eac9SBenno Rice /* 19035244eac9SBenno Rice * Remove this PVO from the PV list. 19045244eac9SBenno Rice */ 19055244eac9SBenno Rice LIST_REMOVE(pvo, pvo_vlink); 19065244eac9SBenno Rice 19075244eac9SBenno Rice /* 19085244eac9SBenno Rice * Remove this from the overflow list and return it to the pool 19095244eac9SBenno Rice * if we aren't going to reuse it. 19105244eac9SBenno Rice */ 19115244eac9SBenno Rice LIST_REMOVE(pvo, pvo_olink); 191249f8f727SBenno Rice if (!(pvo->pvo_vaddr & PVO_BOOTSTRAP)) 1913378862a7SJeff Roberson uma_zfree(pvo->pvo_vaddr & PVO_MANAGED ? pmap_mpvo_zone : 191449f8f727SBenno Rice pmap_upvo_zone, pvo); 19155244eac9SBenno Rice pmap_pvo_entries--; 19165244eac9SBenno Rice pmap_pvo_remove_calls++; 19175244eac9SBenno Rice } 19185244eac9SBenno Rice 19195244eac9SBenno Rice static __inline int 19205244eac9SBenno Rice pmap_pvo_pte_index(const struct pvo_entry *pvo, int ptegidx) 19215244eac9SBenno Rice { 19225244eac9SBenno Rice int pteidx; 19235244eac9SBenno Rice 19245244eac9SBenno Rice /* 19255244eac9SBenno Rice * We can find the actual pte entry without searching by grabbing 19265244eac9SBenno Rice * the PTEG index from 3 unused bits in pte_lo[11:9] and by 19275244eac9SBenno Rice * noticing the HID bit. 19285244eac9SBenno Rice */ 19295244eac9SBenno Rice pteidx = ptegidx * 8 + PVO_PTEGIDX_GET(pvo); 19305244eac9SBenno Rice if (pvo->pvo_pte.pte_hi & PTE_HID) 19315244eac9SBenno Rice pteidx ^= pmap_pteg_mask * 8; 19325244eac9SBenno Rice 19335244eac9SBenno Rice return (pteidx); 19345244eac9SBenno Rice } 19355244eac9SBenno Rice 19365244eac9SBenno Rice static struct pvo_entry * 19375244eac9SBenno Rice pmap_pvo_find_va(pmap_t pm, vm_offset_t va, int *pteidx_p) 19385244eac9SBenno Rice { 19395244eac9SBenno Rice struct pvo_entry *pvo; 19405244eac9SBenno Rice int ptegidx; 19415244eac9SBenno Rice u_int sr; 19425244eac9SBenno Rice 19435244eac9SBenno Rice va &= ~ADDR_POFF; 19445244eac9SBenno Rice sr = va_to_sr(pm->pm_sr, va); 19455244eac9SBenno Rice ptegidx = va_to_pteg(sr, va); 19465244eac9SBenno Rice 19475244eac9SBenno Rice LIST_FOREACH(pvo, &pmap_pvo_table[ptegidx], pvo_olink) { 19485244eac9SBenno Rice if (pvo->pvo_pmap == pm && PVO_VADDR(pvo) == va) { 19495244eac9SBenno Rice if (pteidx_p) 19505244eac9SBenno Rice *pteidx_p = pmap_pvo_pte_index(pvo, ptegidx); 19515244eac9SBenno Rice return (pvo); 19525244eac9SBenno Rice } 19535244eac9SBenno Rice } 19545244eac9SBenno Rice 19555244eac9SBenno Rice return (NULL); 19565244eac9SBenno Rice } 19575244eac9SBenno Rice 19585244eac9SBenno Rice static struct pte * 19595244eac9SBenno Rice pmap_pvo_to_pte(const struct pvo_entry *pvo, int pteidx) 19605244eac9SBenno Rice { 19615244eac9SBenno Rice struct pte *pt; 19625244eac9SBenno Rice 19635244eac9SBenno Rice /* 19645244eac9SBenno Rice * If we haven't been supplied the ptegidx, calculate it. 19655244eac9SBenno Rice */ 19665244eac9SBenno Rice if (pteidx == -1) { 19675244eac9SBenno Rice int ptegidx; 19685244eac9SBenno Rice u_int sr; 19695244eac9SBenno Rice 19705244eac9SBenno Rice sr = va_to_sr(pvo->pvo_pmap->pm_sr, pvo->pvo_vaddr); 19715244eac9SBenno Rice ptegidx = va_to_pteg(sr, pvo->pvo_vaddr); 19725244eac9SBenno Rice pteidx = pmap_pvo_pte_index(pvo, ptegidx); 19735244eac9SBenno Rice } 19745244eac9SBenno Rice 19755244eac9SBenno Rice pt = &pmap_pteg_table[pteidx >> 3].pt[pteidx & 7]; 19765244eac9SBenno Rice 19775244eac9SBenno Rice if ((pvo->pvo_pte.pte_hi & PTE_VALID) && !PVO_PTEGIDX_ISSET(pvo)) { 19785244eac9SBenno Rice panic("pmap_pvo_to_pte: pvo %p has valid pte in pvo but no " 19795244eac9SBenno Rice "valid pte index", pvo); 19805244eac9SBenno Rice } 19815244eac9SBenno Rice 19825244eac9SBenno Rice if ((pvo->pvo_pte.pte_hi & PTE_VALID) == 0 && PVO_PTEGIDX_ISSET(pvo)) { 19835244eac9SBenno Rice panic("pmap_pvo_to_pte: pvo %p has valid pte index in pvo " 19845244eac9SBenno Rice "pvo but no valid pte", pvo); 19855244eac9SBenno Rice } 19865244eac9SBenno Rice 19875244eac9SBenno Rice if ((pt->pte_hi ^ (pvo->pvo_pte.pte_hi & ~PTE_VALID)) == PTE_VALID) { 19885244eac9SBenno Rice if ((pvo->pvo_pte.pte_hi & PTE_VALID) == 0) { 19895244eac9SBenno Rice panic("pmap_pvo_to_pte: pvo %p has valid pte in " 19905244eac9SBenno Rice "pmap_pteg_table %p but invalid in pvo", pvo, pt); 19915244eac9SBenno Rice } 19925244eac9SBenno Rice 19935244eac9SBenno Rice if (((pt->pte_lo ^ pvo->pvo_pte.pte_lo) & ~(PTE_CHG|PTE_REF)) 19945244eac9SBenno Rice != 0) { 19955244eac9SBenno Rice panic("pmap_pvo_to_pte: pvo %p pte does not match " 19965244eac9SBenno Rice "pte %p in pmap_pteg_table", pvo, pt); 19975244eac9SBenno Rice } 19985244eac9SBenno Rice 19995244eac9SBenno Rice return (pt); 20005244eac9SBenno Rice } 20015244eac9SBenno Rice 20025244eac9SBenno Rice if (pvo->pvo_pte.pte_hi & PTE_VALID) { 20035244eac9SBenno Rice panic("pmap_pvo_to_pte: pvo %p has invalid pte %p in " 20045244eac9SBenno Rice "pmap_pteg_table but valid in pvo", pvo, pt); 20055244eac9SBenno Rice } 20065244eac9SBenno Rice 20075244eac9SBenno Rice return (NULL); 20085244eac9SBenno Rice } 20095244eac9SBenno Rice 20108355f576SJeff Roberson static void * 20118355f576SJeff Roberson pmap_pvo_allocf(uma_zone_t zone, int bytes, u_int8_t *flags, int wait) 20128355f576SJeff Roberson { 2013cdedf486SAlan Cox static vm_pindex_t color; 20148355f576SJeff Roberson vm_page_t m; 20158355f576SJeff Roberson 20168355f576SJeff Roberson if (bytes != PAGE_SIZE) 20178355f576SJeff Roberson panic("pmap_pvo_allocf: benno was shortsighted. hit him."); 20188355f576SJeff Roberson 20198355f576SJeff Roberson *flags = UMA_SLAB_PRIV; 2020cdedf486SAlan Cox /* 2021cdedf486SAlan Cox * The color is only a hint. Thus, a data race in the read- 2022cdedf486SAlan Cox * modify-write operation below isn't a catastrophe. 2023cdedf486SAlan Cox */ 2024cdedf486SAlan Cox m = vm_page_alloc(NULL, color++, VM_ALLOC_NOOBJ | VM_ALLOC_SYSTEM); 20258355f576SJeff Roberson if (m == NULL) 20268355f576SJeff Roberson return (NULL); 20278355f576SJeff Roberson return ((void *)VM_PAGE_TO_PHYS(m)); 20288355f576SJeff Roberson } 20298355f576SJeff Roberson 20305244eac9SBenno Rice /* 20315244eac9SBenno Rice * XXX: THIS STUFF SHOULD BE IN pte.c? 20325244eac9SBenno Rice */ 20335244eac9SBenno Rice int 20345244eac9SBenno Rice pmap_pte_spill(vm_offset_t addr) 20355244eac9SBenno Rice { 20365244eac9SBenno Rice struct pvo_entry *source_pvo, *victim_pvo; 20375244eac9SBenno Rice struct pvo_entry *pvo; 20385244eac9SBenno Rice int ptegidx, i, j; 20395244eac9SBenno Rice u_int sr; 20405244eac9SBenno Rice struct pteg *pteg; 20415244eac9SBenno Rice struct pte *pt; 20425244eac9SBenno Rice 20435244eac9SBenno Rice pmap_pte_spills++; 20445244eac9SBenno Rice 2045d080d5fdSBenno Rice sr = mfsrin(addr); 20465244eac9SBenno Rice ptegidx = va_to_pteg(sr, addr); 20475244eac9SBenno Rice 20485244eac9SBenno Rice /* 20495244eac9SBenno Rice * Have to substitute some entry. Use the primary hash for this. 20505244eac9SBenno Rice * Use low bits of timebase as random generator. 20515244eac9SBenno Rice */ 20525244eac9SBenno Rice pteg = &pmap_pteg_table[ptegidx]; 20535244eac9SBenno Rice __asm __volatile("mftb %0" : "=r"(i)); 20545244eac9SBenno Rice i &= 7; 20555244eac9SBenno Rice pt = &pteg->pt[i]; 20565244eac9SBenno Rice 20575244eac9SBenno Rice source_pvo = NULL; 20585244eac9SBenno Rice victim_pvo = NULL; 20595244eac9SBenno Rice LIST_FOREACH(pvo, &pmap_pvo_table[ptegidx], pvo_olink) { 20605244eac9SBenno Rice /* 20615244eac9SBenno Rice * We need to find a pvo entry for this address. 20625244eac9SBenno Rice */ 20635244eac9SBenno Rice PMAP_PVO_CHECK(pvo); 20645244eac9SBenno Rice if (source_pvo == NULL && 20655244eac9SBenno Rice pmap_pte_match(&pvo->pvo_pte, sr, addr, 20665244eac9SBenno Rice pvo->pvo_pte.pte_hi & PTE_HID)) { 20675244eac9SBenno Rice /* 20685244eac9SBenno Rice * Now found an entry to be spilled into the pteg. 20695244eac9SBenno Rice * The PTE is now valid, so we know it's active. 20705244eac9SBenno Rice */ 20715244eac9SBenno Rice j = pmap_pte_insert(ptegidx, &pvo->pvo_pte); 20725244eac9SBenno Rice 20735244eac9SBenno Rice if (j >= 0) { 20745244eac9SBenno Rice PVO_PTEGIDX_SET(pvo, j); 20755244eac9SBenno Rice pmap_pte_overflow--; 20765244eac9SBenno Rice PMAP_PVO_CHECK(pvo); 20775244eac9SBenno Rice return (1); 20785244eac9SBenno Rice } 20795244eac9SBenno Rice 20805244eac9SBenno Rice source_pvo = pvo; 20815244eac9SBenno Rice 20825244eac9SBenno Rice if (victim_pvo != NULL) 20835244eac9SBenno Rice break; 20845244eac9SBenno Rice } 20855244eac9SBenno Rice 20865244eac9SBenno Rice /* 20875244eac9SBenno Rice * We also need the pvo entry of the victim we are replacing 20885244eac9SBenno Rice * so save the R & C bits of the PTE. 20895244eac9SBenno Rice */ 20905244eac9SBenno Rice if ((pt->pte_hi & PTE_HID) == 0 && victim_pvo == NULL && 20915244eac9SBenno Rice pmap_pte_compare(pt, &pvo->pvo_pte)) { 20925244eac9SBenno Rice victim_pvo = pvo; 20935244eac9SBenno Rice if (source_pvo != NULL) 20945244eac9SBenno Rice break; 20955244eac9SBenno Rice } 20965244eac9SBenno Rice } 20975244eac9SBenno Rice 20985244eac9SBenno Rice if (source_pvo == NULL) 20995244eac9SBenno Rice return (0); 21005244eac9SBenno Rice 21015244eac9SBenno Rice if (victim_pvo == NULL) { 21025244eac9SBenno Rice if ((pt->pte_hi & PTE_HID) == 0) 21035244eac9SBenno Rice panic("pmap_pte_spill: victim p-pte (%p) has no pvo" 21045244eac9SBenno Rice "entry", pt); 21055244eac9SBenno Rice 21065244eac9SBenno Rice /* 21075244eac9SBenno Rice * If this is a secondary PTE, we need to search it's primary 21085244eac9SBenno Rice * pvo bucket for the matching PVO. 21095244eac9SBenno Rice */ 21105244eac9SBenno Rice LIST_FOREACH(pvo, &pmap_pvo_table[ptegidx ^ pmap_pteg_mask], 21115244eac9SBenno Rice pvo_olink) { 21125244eac9SBenno Rice PMAP_PVO_CHECK(pvo); 21135244eac9SBenno Rice /* 21145244eac9SBenno Rice * We also need the pvo entry of the victim we are 21155244eac9SBenno Rice * replacing so save the R & C bits of the PTE. 21165244eac9SBenno Rice */ 21175244eac9SBenno Rice if (pmap_pte_compare(pt, &pvo->pvo_pte)) { 21185244eac9SBenno Rice victim_pvo = pvo; 21195244eac9SBenno Rice break; 21205244eac9SBenno Rice } 21215244eac9SBenno Rice } 21225244eac9SBenno Rice 21235244eac9SBenno Rice if (victim_pvo == NULL) 21245244eac9SBenno Rice panic("pmap_pte_spill: victim s-pte (%p) has no pvo" 21255244eac9SBenno Rice "entry", pt); 21265244eac9SBenno Rice } 21275244eac9SBenno Rice 21285244eac9SBenno Rice /* 21295244eac9SBenno Rice * We are invalidating the TLB entry for the EA we are replacing even 21305244eac9SBenno Rice * though it's valid. If we don't, we lose any ref/chg bit changes 21315244eac9SBenno Rice * contained in the TLB entry. 21325244eac9SBenno Rice */ 21335244eac9SBenno Rice source_pvo->pvo_pte.pte_hi &= ~PTE_HID; 21345244eac9SBenno Rice 21355244eac9SBenno Rice pmap_pte_unset(pt, &victim_pvo->pvo_pte, victim_pvo->pvo_vaddr); 21365244eac9SBenno Rice pmap_pte_set(pt, &source_pvo->pvo_pte); 21375244eac9SBenno Rice 21385244eac9SBenno Rice PVO_PTEGIDX_CLR(victim_pvo); 21395244eac9SBenno Rice PVO_PTEGIDX_SET(source_pvo, i); 21405244eac9SBenno Rice pmap_pte_replacements++; 21415244eac9SBenno Rice 21425244eac9SBenno Rice PMAP_PVO_CHECK(victim_pvo); 21435244eac9SBenno Rice PMAP_PVO_CHECK(source_pvo); 21445244eac9SBenno Rice 21455244eac9SBenno Rice return (1); 21465244eac9SBenno Rice } 21475244eac9SBenno Rice 21485244eac9SBenno Rice static int 21495244eac9SBenno Rice pmap_pte_insert(u_int ptegidx, struct pte *pvo_pt) 21505244eac9SBenno Rice { 21515244eac9SBenno Rice struct pte *pt; 21525244eac9SBenno Rice int i; 21535244eac9SBenno Rice 21545244eac9SBenno Rice /* 21555244eac9SBenno Rice * First try primary hash. 21565244eac9SBenno Rice */ 21575244eac9SBenno Rice for (pt = pmap_pteg_table[ptegidx].pt, i = 0; i < 8; i++, pt++) { 21585244eac9SBenno Rice if ((pt->pte_hi & PTE_VALID) == 0) { 21595244eac9SBenno Rice pvo_pt->pte_hi &= ~PTE_HID; 21605244eac9SBenno Rice pmap_pte_set(pt, pvo_pt); 21615244eac9SBenno Rice return (i); 21625244eac9SBenno Rice } 21635244eac9SBenno Rice } 21645244eac9SBenno Rice 21655244eac9SBenno Rice /* 21665244eac9SBenno Rice * Now try secondary hash. 21675244eac9SBenno Rice */ 21685244eac9SBenno Rice ptegidx ^= pmap_pteg_mask; 21695244eac9SBenno Rice ptegidx++; 21705244eac9SBenno Rice for (pt = pmap_pteg_table[ptegidx].pt, i = 0; i < 8; i++, pt++) { 21715244eac9SBenno Rice if ((pt->pte_hi & PTE_VALID) == 0) { 21725244eac9SBenno Rice pvo_pt->pte_hi |= PTE_HID; 21735244eac9SBenno Rice pmap_pte_set(pt, pvo_pt); 21745244eac9SBenno Rice return (i); 21755244eac9SBenno Rice } 21765244eac9SBenno Rice } 21775244eac9SBenno Rice 21785244eac9SBenno Rice panic("pmap_pte_insert: overflow"); 21795244eac9SBenno Rice return (-1); 21805244eac9SBenno Rice } 21815244eac9SBenno Rice 21825244eac9SBenno Rice static boolean_t 21835244eac9SBenno Rice pmap_query_bit(vm_page_t m, int ptebit) 21845244eac9SBenno Rice { 21855244eac9SBenno Rice struct pvo_entry *pvo; 21865244eac9SBenno Rice struct pte *pt; 21875244eac9SBenno Rice 21887b33c6efSPeter Grehan #if 0 21895244eac9SBenno Rice if (pmap_attr_fetch(m) & ptebit) 21905244eac9SBenno Rice return (TRUE); 21917b33c6efSPeter Grehan #endif 21925244eac9SBenno Rice 21935244eac9SBenno Rice LIST_FOREACH(pvo, vm_page_to_pvoh(m), pvo_vlink) { 21945244eac9SBenno Rice PMAP_PVO_CHECK(pvo); /* sanity check */ 21955244eac9SBenno Rice 21965244eac9SBenno Rice /* 21975244eac9SBenno Rice * See if we saved the bit off. If so, cache it and return 21985244eac9SBenno Rice * success. 21995244eac9SBenno Rice */ 22005244eac9SBenno Rice if (pvo->pvo_pte.pte_lo & ptebit) { 22015244eac9SBenno Rice pmap_attr_save(m, ptebit); 22025244eac9SBenno Rice PMAP_PVO_CHECK(pvo); /* sanity check */ 22035244eac9SBenno Rice return (TRUE); 22045244eac9SBenno Rice } 22055244eac9SBenno Rice } 22065244eac9SBenno Rice 22075244eac9SBenno Rice /* 22085244eac9SBenno Rice * No luck, now go through the hard part of looking at the PTEs 22095244eac9SBenno Rice * themselves. Sync so that any pending REF/CHG bits are flushed to 22105244eac9SBenno Rice * the PTEs. 22115244eac9SBenno Rice */ 22125244eac9SBenno Rice SYNC(); 22135244eac9SBenno Rice LIST_FOREACH(pvo, vm_page_to_pvoh(m), pvo_vlink) { 22145244eac9SBenno Rice PMAP_PVO_CHECK(pvo); /* sanity check */ 22155244eac9SBenno Rice 22165244eac9SBenno Rice /* 22175244eac9SBenno Rice * See if this pvo has a valid PTE. if so, fetch the 22185244eac9SBenno Rice * REF/CHG bits from the valid PTE. If the appropriate 22195244eac9SBenno Rice * ptebit is set, cache it and return success. 22205244eac9SBenno Rice */ 22215244eac9SBenno Rice pt = pmap_pvo_to_pte(pvo, -1); 22225244eac9SBenno Rice if (pt != NULL) { 22235244eac9SBenno Rice pmap_pte_synch(pt, &pvo->pvo_pte); 22245244eac9SBenno Rice if (pvo->pvo_pte.pte_lo & ptebit) { 22255244eac9SBenno Rice pmap_attr_save(m, ptebit); 22265244eac9SBenno Rice PMAP_PVO_CHECK(pvo); /* sanity check */ 22275244eac9SBenno Rice return (TRUE); 22285244eac9SBenno Rice } 22295244eac9SBenno Rice } 22305244eac9SBenno Rice } 22315244eac9SBenno Rice 22324f7daed0SAndrew Gallatin return (FALSE); 22335244eac9SBenno Rice } 22345244eac9SBenno Rice 223503b6e025SPeter Grehan static u_int 223603b6e025SPeter Grehan pmap_clear_bit(vm_page_t m, int ptebit, int *origbit) 22375244eac9SBenno Rice { 223803b6e025SPeter Grehan u_int count; 22395244eac9SBenno Rice struct pvo_entry *pvo; 22405244eac9SBenno Rice struct pte *pt; 22415244eac9SBenno Rice int rv; 22425244eac9SBenno Rice 22435244eac9SBenno Rice /* 22445244eac9SBenno Rice * Clear the cached value. 22455244eac9SBenno Rice */ 22465244eac9SBenno Rice rv = pmap_attr_fetch(m); 22475244eac9SBenno Rice pmap_attr_clear(m, ptebit); 22485244eac9SBenno Rice 22495244eac9SBenno Rice /* 22505244eac9SBenno Rice * Sync so that any pending REF/CHG bits are flushed to the PTEs (so 22515244eac9SBenno Rice * we can reset the right ones). note that since the pvo entries and 22525244eac9SBenno Rice * list heads are accessed via BAT0 and are never placed in the page 22535244eac9SBenno Rice * table, we don't have to worry about further accesses setting the 22545244eac9SBenno Rice * REF/CHG bits. 22555244eac9SBenno Rice */ 22565244eac9SBenno Rice SYNC(); 22575244eac9SBenno Rice 22585244eac9SBenno Rice /* 22595244eac9SBenno Rice * For each pvo entry, clear the pvo's ptebit. If this pvo has a 22605244eac9SBenno Rice * valid pte clear the ptebit from the valid pte. 22615244eac9SBenno Rice */ 226203b6e025SPeter Grehan count = 0; 22635244eac9SBenno Rice LIST_FOREACH(pvo, vm_page_to_pvoh(m), pvo_vlink) { 22645244eac9SBenno Rice PMAP_PVO_CHECK(pvo); /* sanity check */ 22655244eac9SBenno Rice pt = pmap_pvo_to_pte(pvo, -1); 22665244eac9SBenno Rice if (pt != NULL) { 22675244eac9SBenno Rice pmap_pte_synch(pt, &pvo->pvo_pte); 226803b6e025SPeter Grehan if (pvo->pvo_pte.pte_lo & ptebit) { 226903b6e025SPeter Grehan count++; 22705244eac9SBenno Rice pmap_pte_clear(pt, PVO_VADDR(pvo), ptebit); 22715244eac9SBenno Rice } 227203b6e025SPeter Grehan } 22735244eac9SBenno Rice rv |= pvo->pvo_pte.pte_lo; 22745244eac9SBenno Rice pvo->pvo_pte.pte_lo &= ~ptebit; 22755244eac9SBenno Rice PMAP_PVO_CHECK(pvo); /* sanity check */ 22765244eac9SBenno Rice } 22775244eac9SBenno Rice 227803b6e025SPeter Grehan if (origbit != NULL) { 227903b6e025SPeter Grehan *origbit = rv; 228003b6e025SPeter Grehan } 228103b6e025SPeter Grehan 228203b6e025SPeter Grehan return (count); 2283bdf71f56SBenno Rice } 22848bbfa33aSBenno Rice 22858bbfa33aSBenno Rice /* 228632bc7846SPeter Grehan * Return true if the physical range is encompassed by the battable[idx] 228732bc7846SPeter Grehan */ 228832bc7846SPeter Grehan static int 228932bc7846SPeter Grehan pmap_bat_mapped(int idx, vm_offset_t pa, vm_size_t size) 229032bc7846SPeter Grehan { 229132bc7846SPeter Grehan u_int prot; 229232bc7846SPeter Grehan u_int32_t start; 229332bc7846SPeter Grehan u_int32_t end; 229432bc7846SPeter Grehan u_int32_t bat_ble; 229532bc7846SPeter Grehan 229632bc7846SPeter Grehan /* 229732bc7846SPeter Grehan * Return immediately if not a valid mapping 229832bc7846SPeter Grehan */ 229932bc7846SPeter Grehan if (!battable[idx].batu & BAT_Vs) 230032bc7846SPeter Grehan return (EINVAL); 230132bc7846SPeter Grehan 230232bc7846SPeter Grehan /* 230332bc7846SPeter Grehan * The BAT entry must be cache-inhibited, guarded, and r/w 230432bc7846SPeter Grehan * so it can function as an i/o page 230532bc7846SPeter Grehan */ 230632bc7846SPeter Grehan prot = battable[idx].batl & (BAT_I|BAT_G|BAT_PP_RW); 230732bc7846SPeter Grehan if (prot != (BAT_I|BAT_G|BAT_PP_RW)) 230832bc7846SPeter Grehan return (EPERM); 230932bc7846SPeter Grehan 231032bc7846SPeter Grehan /* 231132bc7846SPeter Grehan * The address should be within the BAT range. Assume that the 231232bc7846SPeter Grehan * start address in the BAT has the correct alignment (thus 231332bc7846SPeter Grehan * not requiring masking) 231432bc7846SPeter Grehan */ 231532bc7846SPeter Grehan start = battable[idx].batl & BAT_PBS; 231632bc7846SPeter Grehan bat_ble = (battable[idx].batu & ~(BAT_EBS)) | 0x03; 231732bc7846SPeter Grehan end = start | (bat_ble << 15) | 0x7fff; 231832bc7846SPeter Grehan 231932bc7846SPeter Grehan if ((pa < start) || ((pa + size) > end)) 232032bc7846SPeter Grehan return (ERANGE); 232132bc7846SPeter Grehan 232232bc7846SPeter Grehan return (0); 232332bc7846SPeter Grehan } 232432bc7846SPeter Grehan 232532bc7846SPeter Grehan 232632bc7846SPeter Grehan /* 23278bbfa33aSBenno Rice * Map a set of physical memory pages into the kernel virtual 23288bbfa33aSBenno Rice * address space. Return a pointer to where it is mapped. This 23298bbfa33aSBenno Rice * routine is intended to be used for mapping device memory, 23308bbfa33aSBenno Rice * NOT real memory. 23318bbfa33aSBenno Rice */ 23328bbfa33aSBenno Rice void * 23338bbfa33aSBenno Rice pmap_mapdev(vm_offset_t pa, vm_size_t size) 23348bbfa33aSBenno Rice { 233532bc7846SPeter Grehan vm_offset_t va, tmpva, ppa, offset; 233632bc7846SPeter Grehan int i; 23378bbfa33aSBenno Rice 233832bc7846SPeter Grehan ppa = trunc_page(pa); 23398bbfa33aSBenno Rice offset = pa & PAGE_MASK; 23408bbfa33aSBenno Rice size = roundup(offset + size, PAGE_SIZE); 23418bbfa33aSBenno Rice 23428bbfa33aSBenno Rice GIANT_REQUIRED; 23438bbfa33aSBenno Rice 234432bc7846SPeter Grehan /* 234532bc7846SPeter Grehan * If the physical address lies within a valid BAT table entry, 234632bc7846SPeter Grehan * return the 1:1 mapping. This currently doesn't work 234732bc7846SPeter Grehan * for regions that overlap 256M BAT segments. 234832bc7846SPeter Grehan */ 234932bc7846SPeter Grehan for (i = 0; i < 16; i++) { 235032bc7846SPeter Grehan if (pmap_bat_mapped(i, pa, size) == 0) 235132bc7846SPeter Grehan return ((void *) pa); 235232bc7846SPeter Grehan } 235332bc7846SPeter Grehan 2354e53f32acSAlan Cox va = kmem_alloc_nofault(kernel_map, size); 23558bbfa33aSBenno Rice if (!va) 23568bbfa33aSBenno Rice panic("pmap_mapdev: Couldn't alloc kernel virtual memory"); 23578bbfa33aSBenno Rice 23588bbfa33aSBenno Rice for (tmpva = va; size > 0;) { 235932bc7846SPeter Grehan pmap_kenter(tmpva, ppa); 23608bbfa33aSBenno Rice TLBIE(tmpva); /* XXX or should it be invalidate-all ? */ 23618bbfa33aSBenno Rice size -= PAGE_SIZE; 23628bbfa33aSBenno Rice tmpva += PAGE_SIZE; 236332bc7846SPeter Grehan ppa += PAGE_SIZE; 23648bbfa33aSBenno Rice } 23658bbfa33aSBenno Rice 23668bbfa33aSBenno Rice return ((void *)(va + offset)); 23678bbfa33aSBenno Rice } 23688bbfa33aSBenno Rice 23698bbfa33aSBenno Rice void 23708bbfa33aSBenno Rice pmap_unmapdev(vm_offset_t va, vm_size_t size) 23718bbfa33aSBenno Rice { 23728bbfa33aSBenno Rice vm_offset_t base, offset; 23738bbfa33aSBenno Rice 237432bc7846SPeter Grehan /* 237532bc7846SPeter Grehan * If this is outside kernel virtual space, then it's a 237632bc7846SPeter Grehan * battable entry and doesn't require unmapping 237732bc7846SPeter Grehan */ 237832bc7846SPeter Grehan if ((va >= VM_MIN_KERNEL_ADDRESS) && (va <= VM_MAX_KERNEL_ADDRESS)) { 23798bbfa33aSBenno Rice base = trunc_page(va); 23808bbfa33aSBenno Rice offset = va & PAGE_MASK; 23818bbfa33aSBenno Rice size = roundup(offset + size, PAGE_SIZE); 23828bbfa33aSBenno Rice kmem_free(kernel_map, base, size); 23838bbfa33aSBenno Rice } 238432bc7846SPeter Grehan } 2385