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pmap.c revision 1.172.2.2
      1  1.172.2.2      yamt /*	$NetBSD: pmap.c,v 1.172.2.2 2008/06/17 09:13:55 yamt Exp $	*/
      2       1.12     chris 
      3       1.12     chris /*
      4      1.134   thorpej  * Copyright 2003 Wasabi Systems, Inc.
      5      1.134   thorpej  * All rights reserved.
      6      1.134   thorpej  *
      7      1.134   thorpej  * Written by Steve C. Woodford for Wasabi Systems, Inc.
      8      1.134   thorpej  *
      9      1.134   thorpej  * Redistribution and use in source and binary forms, with or without
     10      1.134   thorpej  * modification, are permitted provided that the following conditions
     11      1.134   thorpej  * are met:
     12      1.134   thorpej  * 1. Redistributions of source code must retain the above copyright
     13      1.134   thorpej  *    notice, this list of conditions and the following disclaimer.
     14      1.134   thorpej  * 2. Redistributions in binary form must reproduce the above copyright
     15      1.134   thorpej  *    notice, this list of conditions and the following disclaimer in the
     16      1.134   thorpej  *    documentation and/or other materials provided with the distribution.
     17      1.134   thorpej  * 3. All advertising materials mentioning features or use of this software
     18      1.134   thorpej  *    must display the following acknowledgement:
     19      1.134   thorpej  *      This product includes software developed for the NetBSD Project by
     20      1.134   thorpej  *      Wasabi Systems, Inc.
     21      1.134   thorpej  * 4. The name of Wasabi Systems, Inc. may not be used to endorse
     22      1.134   thorpej  *    or promote products derived from this software without specific prior
     23      1.134   thorpej  *    written permission.
     24      1.134   thorpej  *
     25      1.134   thorpej  * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
     26      1.134   thorpej  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     27      1.134   thorpej  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     28      1.134   thorpej  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL WASABI SYSTEMS, INC
     29      1.134   thorpej  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     30      1.134   thorpej  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     31      1.134   thorpej  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     32      1.134   thorpej  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     33      1.134   thorpej  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     34      1.134   thorpej  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     35      1.134   thorpej  * POSSIBILITY OF SUCH DAMAGE.
     36      1.134   thorpej  */
     37      1.134   thorpej 
     38      1.134   thorpej /*
     39      1.134   thorpej  * Copyright (c) 2002-2003 Wasabi Systems, Inc.
     40       1.12     chris  * Copyright (c) 2001 Richard Earnshaw
     41      1.119     chris  * Copyright (c) 2001-2002 Christopher Gilbert
     42       1.12     chris  * All rights reserved.
     43       1.12     chris  *
     44       1.12     chris  * 1. Redistributions of source code must retain the above copyright
     45       1.12     chris  *    notice, this list of conditions and the following disclaimer.
     46       1.12     chris  * 2. Redistributions in binary form must reproduce the above copyright
     47       1.12     chris  *    notice, this list of conditions and the following disclaimer in the
     48       1.12     chris  *    documentation and/or other materials provided with the distribution.
     49       1.12     chris  * 3. The name of the company nor the name of the author may be used to
     50       1.12     chris  *    endorse or promote products derived from this software without specific
     51       1.12     chris  *    prior written permission.
     52       1.12     chris  *
     53       1.12     chris  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
     54       1.12     chris  * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
     55       1.12     chris  * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     56       1.12     chris  * IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
     57       1.12     chris  * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
     58       1.12     chris  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     59       1.12     chris  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     60       1.12     chris  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     61       1.12     chris  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     62       1.12     chris  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     63       1.12     chris  * SUCH DAMAGE.
     64       1.12     chris  */
     65        1.1      matt 
     66        1.1      matt /*-
     67        1.1      matt  * Copyright (c) 1999 The NetBSD Foundation, Inc.
     68        1.1      matt  * All rights reserved.
     69        1.1      matt  *
     70        1.1      matt  * This code is derived from software contributed to The NetBSD Foundation
     71        1.1      matt  * by Charles M. Hannum.
     72        1.1      matt  *
     73        1.1      matt  * Redistribution and use in source and binary forms, with or without
     74        1.1      matt  * modification, are permitted provided that the following conditions
     75        1.1      matt  * are met:
     76        1.1      matt  * 1. Redistributions of source code must retain the above copyright
     77        1.1      matt  *    notice, this list of conditions and the following disclaimer.
     78        1.1      matt  * 2. Redistributions in binary form must reproduce the above copyright
     79        1.1      matt  *    notice, this list of conditions and the following disclaimer in the
     80        1.1      matt  *    documentation and/or other materials provided with the distribution.
     81        1.1      matt  *
     82        1.1      matt  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     83        1.1      matt  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     84        1.1      matt  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     85        1.1      matt  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     86        1.1      matt  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     87        1.1      matt  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     88        1.1      matt  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     89        1.1      matt  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     90        1.1      matt  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     91        1.1      matt  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     92        1.1      matt  * POSSIBILITY OF SUCH DAMAGE.
     93        1.1      matt  */
     94        1.1      matt 
     95        1.1      matt /*
     96        1.1      matt  * Copyright (c) 1994-1998 Mark Brinicombe.
     97        1.1      matt  * Copyright (c) 1994 Brini.
     98        1.1      matt  * All rights reserved.
     99        1.1      matt  *
    100        1.1      matt  * This code is derived from software written for Brini by Mark Brinicombe
    101        1.1      matt  *
    102        1.1      matt  * Redistribution and use in source and binary forms, with or without
    103        1.1      matt  * modification, are permitted provided that the following conditions
    104        1.1      matt  * are met:
    105        1.1      matt  * 1. Redistributions of source code must retain the above copyright
    106        1.1      matt  *    notice, this list of conditions and the following disclaimer.
    107        1.1      matt  * 2. Redistributions in binary form must reproduce the above copyright
    108        1.1      matt  *    notice, this list of conditions and the following disclaimer in the
    109        1.1      matt  *    documentation and/or other materials provided with the distribution.
    110        1.1      matt  * 3. All advertising materials mentioning features or use of this software
    111        1.1      matt  *    must display the following acknowledgement:
    112        1.1      matt  *	This product includes software developed by Mark Brinicombe.
    113        1.1      matt  * 4. The name of the author may not be used to endorse or promote products
    114        1.1      matt  *    derived from this software without specific prior written permission.
    115        1.1      matt  *
    116        1.1      matt  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
    117        1.1      matt  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
    118        1.1      matt  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
    119        1.1      matt  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
    120        1.1      matt  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
    121        1.1      matt  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
    122        1.1      matt  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
    123        1.1      matt  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
    124        1.1      matt  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
    125        1.1      matt  *
    126        1.1      matt  * RiscBSD kernel project
    127        1.1      matt  *
    128        1.1      matt  * pmap.c
    129        1.1      matt  *
    130        1.1      matt  * Machine dependant vm stuff
    131        1.1      matt  *
    132        1.1      matt  * Created      : 20/09/94
    133        1.1      matt  */
    134        1.1      matt 
    135        1.1      matt /*
    136  1.172.2.1      yamt  * armv6 and VIPT cache support by 3am Software Foundry,
    137  1.172.2.1      yamt  * Copyright (c) 2007 Microsoft
    138  1.172.2.1      yamt  */
    139  1.172.2.1      yamt 
    140  1.172.2.1      yamt /*
    141        1.1      matt  * Performance improvements, UVM changes, overhauls and part-rewrites
    142        1.1      matt  * were contributed by Neil A. Carson <neil (at) causality.com>.
    143        1.1      matt  */
    144        1.1      matt 
    145        1.1      matt /*
    146      1.134   thorpej  * Overhauled again to speedup the pmap, use MMU Domains so that L1 tables
    147      1.134   thorpej  * can be shared, and re-work the KVM layout, by Steve Woodford of Wasabi
    148      1.134   thorpej  * Systems, Inc.
    149      1.134   thorpej  *
    150      1.134   thorpej  * There are still a few things outstanding at this time:
    151      1.134   thorpej  *
    152      1.134   thorpej  *   - There are some unresolved issues for MP systems:
    153      1.134   thorpej  *
    154      1.134   thorpej  *     o The L1 metadata needs a lock, or more specifically, some places
    155      1.134   thorpej  *       need to acquire an exclusive lock when modifying L1 translation
    156      1.134   thorpej  *       table entries.
    157      1.134   thorpej  *
    158      1.134   thorpej  *     o When one cpu modifies an L1 entry, and that L1 table is also
    159      1.134   thorpej  *       being used by another cpu, then the latter will need to be told
    160      1.134   thorpej  *       that a tlb invalidation may be necessary. (But only if the old
    161      1.134   thorpej  *       domain number in the L1 entry being over-written is currently
    162      1.134   thorpej  *       the active domain on that cpu). I guess there are lots more tlb
    163      1.134   thorpej  *       shootdown issues too...
    164      1.134   thorpej  *
    165      1.134   thorpej  *     o If the vector_page is at 0x00000000 instead of 0xffff0000, then
    166      1.134   thorpej  *       MP systems will lose big-time because of the MMU domain hack.
    167      1.134   thorpej  *       The only way this can be solved (apart from moving the vector
    168      1.134   thorpej  *       page to 0xffff0000) is to reserve the first 1MB of user address
    169      1.134   thorpej  *       space for kernel use only. This would require re-linking all
    170      1.134   thorpej  *       applications so that the text section starts above this 1MB
    171      1.134   thorpej  *       boundary.
    172      1.134   thorpej  *
    173      1.134   thorpej  *     o Tracking which VM space is resident in the cache/tlb has not yet
    174      1.134   thorpej  *       been implemented for MP systems.
    175      1.134   thorpej  *
    176      1.134   thorpej  *     o Finally, there is a pathological condition where two cpus running
    177      1.134   thorpej  *       two separate processes (not lwps) which happen to share an L1
    178      1.134   thorpej  *       can get into a fight over one or more L1 entries. This will result
    179      1.134   thorpej  *       in a significant slow-down if both processes are in tight loops.
    180        1.1      matt  */
    181        1.1      matt 
    182        1.1      matt /*
    183        1.1      matt  * Special compilation symbols
    184        1.1      matt  * PMAP_DEBUG		- Build in pmap_debug_level code
    185        1.1      matt  */
    186      1.134   thorpej 
    187        1.1      matt /* Include header files */
    188        1.1      matt 
    189      1.134   thorpej #include "opt_cpuoptions.h"
    190        1.1      matt #include "opt_pmap_debug.h"
    191        1.1      matt #include "opt_ddb.h"
    192      1.137    martin #include "opt_lockdebug.h"
    193      1.137    martin #include "opt_multiprocessor.h"
    194        1.1      matt 
    195      1.171      matt #include <sys/param.h>
    196        1.1      matt #include <sys/types.h>
    197        1.1      matt #include <sys/kernel.h>
    198        1.1      matt #include <sys/systm.h>
    199        1.1      matt #include <sys/proc.h>
    200        1.1      matt #include <sys/malloc.h>
    201        1.1      matt #include <sys/user.h>
    202       1.10     chris #include <sys/pool.h>
    203       1.16     chris #include <sys/cdefs.h>
    204      1.171      matt #include <sys/cpu.h>
    205       1.16     chris 
    206        1.1      matt #include <uvm/uvm.h>
    207        1.1      matt 
    208        1.1      matt #include <machine/bus.h>
    209        1.1      matt #include <machine/pmap.h>
    210        1.1      matt #include <machine/pcb.h>
    211        1.1      matt #include <machine/param.h>
    212       1.32   thorpej #include <arm/arm32/katelib.h>
    213       1.16     chris 
    214  1.172.2.2      yamt __KERNEL_RCSID(0, "$NetBSD: pmap.c,v 1.172.2.2 2008/06/17 09:13:55 yamt Exp $");
    215      1.116  jdolecek 
    216        1.1      matt #ifdef PMAP_DEBUG
    217      1.140      matt 
    218      1.140      matt /* XXX need to get rid of all refs to this */
    219      1.134   thorpej int pmap_debug_level = 0;
    220       1.17     chris 
    221       1.17     chris /*
    222       1.17     chris  * for switching to potentially finer grained debugging
    223       1.17     chris  */
    224       1.17     chris #define	PDB_FOLLOW	0x0001
    225       1.17     chris #define	PDB_INIT	0x0002
    226       1.17     chris #define	PDB_ENTER	0x0004
    227       1.17     chris #define	PDB_REMOVE	0x0008
    228       1.17     chris #define	PDB_CREATE	0x0010
    229       1.17     chris #define	PDB_PTPAGE	0x0020
    230       1.48     chris #define	PDB_GROWKERN	0x0040
    231       1.17     chris #define	PDB_BITS	0x0080
    232       1.17     chris #define	PDB_COLLECT	0x0100
    233       1.17     chris #define	PDB_PROTECT	0x0200
    234       1.48     chris #define	PDB_MAP_L1	0x0400
    235       1.17     chris #define	PDB_BOOTSTRAP	0x1000
    236       1.17     chris #define	PDB_PARANOIA	0x2000
    237       1.17     chris #define	PDB_WIRING	0x4000
    238       1.17     chris #define	PDB_PVDUMP	0x8000
    239      1.134   thorpej #define	PDB_VAC		0x10000
    240      1.134   thorpej #define	PDB_KENTER	0x20000
    241      1.134   thorpej #define	PDB_KREMOVE	0x40000
    242  1.172.2.1      yamt #define	PDB_EXEC	0x80000
    243       1.17     chris 
    244      1.134   thorpej int debugmap = 1;
    245      1.134   thorpej int pmapdebug = 0;
    246       1.17     chris #define	NPDEBUG(_lev_,_stat_) \
    247       1.17     chris 	if (pmapdebug & (_lev_)) \
    248       1.17     chris         	((_stat_))
    249       1.17     chris 
    250        1.1      matt #else	/* PMAP_DEBUG */
    251       1.48     chris #define NPDEBUG(_lev_,_stat_) /* Nothing */
    252        1.1      matt #endif	/* PMAP_DEBUG */
    253        1.1      matt 
    254      1.134   thorpej /*
    255      1.134   thorpej  * pmap_kernel() points here
    256      1.134   thorpej  */
    257        1.1      matt struct pmap     kernel_pmap_store;
    258        1.1      matt 
    259       1.10     chris /*
    260      1.134   thorpej  * Which pmap is currently 'live' in the cache
    261      1.134   thorpej  *
    262      1.134   thorpej  * XXXSCW: Fix for SMP ...
    263       1.48     chris  */
    264      1.165       scw static pmap_t pmap_recent_user;
    265       1.48     chris 
    266      1.134   thorpej /*
    267  1.172.2.1      yamt  * Pointer to last active lwp, or NULL if it exited.
    268  1.172.2.1      yamt  */
    269  1.172.2.1      yamt struct lwp *pmap_previous_active_lwp;
    270  1.172.2.1      yamt 
    271  1.172.2.1      yamt /*
    272      1.134   thorpej  * Pool and cache that pmap structures are allocated from.
    273      1.134   thorpej  * We use a cache to avoid clearing the pm_l2[] array (1KB)
    274      1.134   thorpej  * in pmap_create().
    275      1.134   thorpej  */
    276      1.168        ad static struct pool_cache pmap_cache;
    277      1.134   thorpej static LIST_HEAD(, pmap) pmap_pmaps;
    278       1.48     chris 
    279       1.48     chris /*
    280      1.134   thorpej  * Pool of PV structures
    281       1.10     chris  */
    282      1.134   thorpej static struct pool pmap_pv_pool;
    283      1.134   thorpej static void *pmap_bootstrap_pv_page_alloc(struct pool *, int);
    284      1.134   thorpej static void pmap_bootstrap_pv_page_free(struct pool *, void *);
    285      1.134   thorpej static struct pool_allocator pmap_bootstrap_pv_allocator = {
    286      1.134   thorpej 	pmap_bootstrap_pv_page_alloc, pmap_bootstrap_pv_page_free
    287      1.134   thorpej };
    288       1.10     chris 
    289      1.134   thorpej /*
    290      1.134   thorpej  * Pool and cache of l2_dtable structures.
    291      1.134   thorpej  * We use a cache to avoid clearing the structures when they're
    292      1.134   thorpej  * allocated. (196 bytes)
    293      1.134   thorpej  */
    294      1.134   thorpej static struct pool_cache pmap_l2dtable_cache;
    295      1.134   thorpej static vaddr_t pmap_kernel_l2dtable_kva;
    296       1.10     chris 
    297      1.111   thorpej /*
    298      1.134   thorpej  * Pool and cache of L2 page descriptors.
    299      1.134   thorpej  * We use a cache to avoid clearing the descriptor table
    300      1.134   thorpej  * when they're allocated. (1KB)
    301      1.111   thorpej  */
    302      1.134   thorpej static struct pool_cache pmap_l2ptp_cache;
    303      1.134   thorpej static vaddr_t pmap_kernel_l2ptp_kva;
    304      1.134   thorpej static paddr_t pmap_kernel_l2ptp_phys;
    305      1.111   thorpej 
    306  1.172.2.1      yamt #ifdef PMAPCOUNT
    307  1.172.2.1      yamt #define	PMAP_EVCNT_INITIALIZER(name) \
    308  1.172.2.1      yamt 	EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "pmap", name)
    309  1.172.2.1      yamt 
    310  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
    311  1.172.2.1      yamt static struct evcnt pmap_ev_vac_color_new =
    312  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("new page color");
    313  1.172.2.1      yamt static struct evcnt pmap_ev_vac_color_reuse =
    314  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("ok first page color");
    315  1.172.2.1      yamt static struct evcnt pmap_ev_vac_color_ok =
    316  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("ok page color");
    317  1.172.2.1      yamt static struct evcnt pmap_ev_vac_color_change =
    318  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("change page color");
    319  1.172.2.1      yamt static struct evcnt pmap_ev_vac_color_erase =
    320  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("erase page color");
    321  1.172.2.1      yamt static struct evcnt pmap_ev_vac_color_none =
    322  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("no page color");
    323  1.172.2.1      yamt static struct evcnt pmap_ev_vac_color_restore =
    324  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("restore page color");
    325  1.172.2.1      yamt 
    326  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_vac_color_new);
    327  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_vac_color_reuse);
    328  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_vac_color_ok);
    329  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_vac_color_change);
    330  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_vac_color_erase);
    331  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_vac_color_none);
    332  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_vac_color_restore);
    333  1.172.2.1      yamt #endif
    334  1.172.2.1      yamt 
    335  1.172.2.1      yamt static struct evcnt pmap_ev_mappings =
    336  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("pages mapped");
    337  1.172.2.1      yamt static struct evcnt pmap_ev_unmappings =
    338  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("pages unmapped");
    339  1.172.2.1      yamt static struct evcnt pmap_ev_remappings =
    340  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("pages remapped");
    341  1.172.2.1      yamt 
    342  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_mappings);
    343  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_unmappings);
    344  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_remappings);
    345  1.172.2.1      yamt 
    346  1.172.2.1      yamt static struct evcnt pmap_ev_kernel_mappings =
    347  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("kernel pages mapped");
    348  1.172.2.1      yamt static struct evcnt pmap_ev_kernel_unmappings =
    349  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("kernel pages unmapped");
    350  1.172.2.1      yamt static struct evcnt pmap_ev_kernel_remappings =
    351  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("kernel pages remapped");
    352  1.172.2.1      yamt 
    353  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_kernel_mappings);
    354  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_kernel_unmappings);
    355  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_kernel_remappings);
    356  1.172.2.1      yamt 
    357  1.172.2.1      yamt static struct evcnt pmap_ev_kenter_mappings =
    358  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("kenter pages mapped");
    359  1.172.2.1      yamt static struct evcnt pmap_ev_kenter_unmappings =
    360  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("kenter pages unmapped");
    361  1.172.2.1      yamt static struct evcnt pmap_ev_kenter_remappings =
    362  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("kenter pages remapped");
    363  1.172.2.1      yamt static struct evcnt pmap_ev_pt_mappings =
    364  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("page table pages mapped");
    365  1.172.2.1      yamt 
    366  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_kenter_mappings);
    367  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_kenter_unmappings);
    368  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_kenter_remappings);
    369  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_pt_mappings);
    370  1.172.2.1      yamt 
    371  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
    372  1.172.2.1      yamt static struct evcnt pmap_ev_exec_mappings =
    373  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages mapped");
    374  1.172.2.1      yamt static struct evcnt pmap_ev_exec_cached =
    375  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages cached");
    376  1.172.2.1      yamt 
    377  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_mappings);
    378  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_cached);
    379  1.172.2.1      yamt 
    380  1.172.2.1      yamt static struct evcnt pmap_ev_exec_synced =
    381  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages synced");
    382  1.172.2.1      yamt static struct evcnt pmap_ev_exec_synced_map =
    383  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages synced (MP)");
    384  1.172.2.1      yamt static struct evcnt pmap_ev_exec_synced_unmap =
    385  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages synced (UM)");
    386  1.172.2.1      yamt static struct evcnt pmap_ev_exec_synced_remap =
    387  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages synced (RM)");
    388  1.172.2.1      yamt static struct evcnt pmap_ev_exec_synced_clearbit =
    389  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages synced (DG)");
    390  1.172.2.1      yamt static struct evcnt pmap_ev_exec_synced_kremove =
    391  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages synced (KU)");
    392  1.172.2.1      yamt 
    393  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_synced);
    394  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_synced_map);
    395  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_synced_unmap);
    396  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_synced_remap);
    397  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_synced_clearbit);
    398  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_synced_kremove);
    399  1.172.2.1      yamt 
    400  1.172.2.1      yamt static struct evcnt pmap_ev_exec_discarded_unmap =
    401  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages discarded (UM)");
    402  1.172.2.1      yamt static struct evcnt pmap_ev_exec_discarded_zero =
    403  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages discarded (ZP)");
    404  1.172.2.1      yamt static struct evcnt pmap_ev_exec_discarded_copy =
    405  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages discarded (CP)");
    406  1.172.2.1      yamt static struct evcnt pmap_ev_exec_discarded_page_protect =
    407  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages discarded (PP)");
    408  1.172.2.1      yamt static struct evcnt pmap_ev_exec_discarded_clearbit =
    409  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages discarded (DG)");
    410  1.172.2.1      yamt static struct evcnt pmap_ev_exec_discarded_kremove =
    411  1.172.2.1      yamt    PMAP_EVCNT_INITIALIZER("exec pages discarded (KU)");
    412  1.172.2.1      yamt 
    413  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_discarded_unmap);
    414  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_discarded_zero);
    415  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_discarded_copy);
    416  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_discarded_page_protect);
    417  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_discarded_clearbit);
    418  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_exec_discarded_kremove);
    419  1.172.2.1      yamt #endif /* PMAP_CACHE_VIPT */
    420  1.172.2.1      yamt 
    421  1.172.2.1      yamt static struct evcnt pmap_ev_updates = PMAP_EVCNT_INITIALIZER("updates");
    422  1.172.2.1      yamt static struct evcnt pmap_ev_collects = PMAP_EVCNT_INITIALIZER("collects");
    423  1.172.2.1      yamt static struct evcnt pmap_ev_activations = PMAP_EVCNT_INITIALIZER("activations");
    424  1.172.2.1      yamt 
    425  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_updates);
    426  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_collects);
    427  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_ev_activations);
    428  1.172.2.1      yamt 
    429  1.172.2.1      yamt #define	PMAPCOUNT(x)	((void)(pmap_ev_##x.ev_count++))
    430  1.172.2.1      yamt #else
    431  1.172.2.1      yamt #define	PMAPCOUNT(x)	((void)0)
    432  1.172.2.1      yamt #endif
    433  1.172.2.1      yamt 
    434      1.134   thorpej /*
    435      1.134   thorpej  * pmap copy/zero page, and mem(5) hook point
    436      1.134   thorpej  */
    437       1.54   thorpej static pt_entry_t *csrc_pte, *cdst_pte;
    438       1.54   thorpej static vaddr_t csrcp, cdstp;
    439      1.170     chris vaddr_t memhook;
    440      1.161  christos extern void *msgbufaddr;
    441        1.1      matt 
    442       1.17     chris /*
    443      1.134   thorpej  * Flag to indicate if pmap_init() has done its thing
    444      1.134   thorpej  */
    445      1.159   thorpej bool pmap_initialized;
    446      1.134   thorpej 
    447      1.134   thorpej /*
    448      1.134   thorpej  * Misc. locking data structures
    449       1.17     chris  */
    450        1.1      matt 
    451      1.166        ad #if 0 /* defined(MULTIPROCESSOR) || defined(LOCKDEBUG) */
    452       1.17     chris static struct lock pmap_main_lock;
    453      1.134   thorpej 
    454       1.17     chris #define PMAP_MAP_TO_HEAD_LOCK() \
    455       1.17     chris      (void) spinlockmgr(&pmap_main_lock, LK_SHARED, NULL)
    456       1.17     chris #define PMAP_MAP_TO_HEAD_UNLOCK() \
    457       1.17     chris      (void) spinlockmgr(&pmap_main_lock, LK_RELEASE, NULL)
    458       1.17     chris #define PMAP_HEAD_TO_MAP_LOCK() \
    459       1.17     chris      (void) spinlockmgr(&pmap_main_lock, LK_EXCLUSIVE, NULL)
    460       1.17     chris #define PMAP_HEAD_TO_MAP_UNLOCK() \
    461      1.134   thorpej      spinlockmgr(&pmap_main_lock, LK_RELEASE, (void *) 0)
    462       1.17     chris #else
    463      1.134   thorpej #define PMAP_MAP_TO_HEAD_LOCK()		/* null */
    464      1.134   thorpej #define PMAP_MAP_TO_HEAD_UNLOCK()	/* null */
    465      1.134   thorpej #define PMAP_HEAD_TO_MAP_LOCK()		/* null */
    466      1.134   thorpej #define PMAP_HEAD_TO_MAP_UNLOCK()	/* null */
    467      1.134   thorpej #endif
    468      1.134   thorpej 
    469      1.134   thorpej #define	pmap_acquire_pmap_lock(pm)			\
    470      1.134   thorpej 	do {						\
    471      1.134   thorpej 		if ((pm) != pmap_kernel())		\
    472      1.172     chris 			mutex_enter(&(pm)->pm_lock);	\
    473      1.134   thorpej 	} while (/*CONSTCOND*/0)
    474      1.134   thorpej 
    475      1.134   thorpej #define	pmap_release_pmap_lock(pm)			\
    476      1.134   thorpej 	do {						\
    477      1.134   thorpej 		if ((pm) != pmap_kernel())		\
    478      1.172     chris 			mutex_exit(&(pm)->pm_lock);	\
    479      1.134   thorpej 	} while (/*CONSTCOND*/0)
    480        1.1      matt 
    481       1.33     chris 
    482       1.69   thorpej /*
    483      1.134   thorpej  * Metadata for L1 translation tables.
    484       1.69   thorpej  */
    485      1.134   thorpej struct l1_ttable {
    486      1.134   thorpej 	/* Entry on the L1 Table list */
    487      1.134   thorpej 	SLIST_ENTRY(l1_ttable) l1_link;
    488        1.1      matt 
    489      1.134   thorpej 	/* Entry on the L1 Least Recently Used list */
    490      1.134   thorpej 	TAILQ_ENTRY(l1_ttable) l1_lru;
    491        1.1      matt 
    492      1.134   thorpej 	/* Track how many domains are allocated from this L1 */
    493      1.134   thorpej 	volatile u_int l1_domain_use_count;
    494        1.1      matt 
    495      1.134   thorpej 	/*
    496      1.134   thorpej 	 * A free-list of domain numbers for this L1.
    497      1.134   thorpej 	 * We avoid using ffs() and a bitmap to track domains since ffs()
    498      1.134   thorpej 	 * is slow on ARM.
    499      1.134   thorpej 	 */
    500      1.134   thorpej 	u_int8_t l1_domain_first;
    501      1.134   thorpej 	u_int8_t l1_domain_free[PMAP_DOMAINS];
    502        1.1      matt 
    503      1.134   thorpej 	/* Physical address of this L1 page table */
    504      1.134   thorpej 	paddr_t l1_physaddr;
    505        1.1      matt 
    506      1.134   thorpej 	/* KVA of this L1 page table */
    507      1.134   thorpej 	pd_entry_t *l1_kva;
    508      1.134   thorpej };
    509        1.1      matt 
    510      1.134   thorpej /*
    511      1.134   thorpej  * Convert a virtual address into its L1 table index. That is, the
    512      1.134   thorpej  * index used to locate the L2 descriptor table pointer in an L1 table.
    513      1.134   thorpej  * This is basically used to index l1->l1_kva[].
    514      1.134   thorpej  *
    515      1.134   thorpej  * Each L2 descriptor table represents 1MB of VA space.
    516      1.134   thorpej  */
    517      1.134   thorpej #define	L1_IDX(va)		(((vaddr_t)(va)) >> L1_S_SHIFT)
    518       1.11     chris 
    519       1.17     chris /*
    520      1.134   thorpej  * L1 Page Tables are tracked using a Least Recently Used list.
    521      1.134   thorpej  *  - New L1s are allocated from the HEAD.
    522      1.134   thorpej  *  - Freed L1s are added to the TAIl.
    523      1.134   thorpej  *  - Recently accessed L1s (where an 'access' is some change to one of
    524      1.134   thorpej  *    the userland pmaps which owns this L1) are moved to the TAIL.
    525       1.17     chris  */
    526      1.134   thorpej static TAILQ_HEAD(, l1_ttable) l1_lru_list;
    527      1.134   thorpej static struct simplelock l1_lru_lock;
    528       1.17     chris 
    529      1.134   thorpej /*
    530      1.134   thorpej  * A list of all L1 tables
    531      1.134   thorpej  */
    532      1.134   thorpej static SLIST_HEAD(, l1_ttable) l1_list;
    533       1.17     chris 
    534       1.17     chris /*
    535      1.134   thorpej  * The l2_dtable tracks L2_BUCKET_SIZE worth of L1 slots.
    536      1.134   thorpej  *
    537      1.134   thorpej  * This is normally 16MB worth L2 page descriptors for any given pmap.
    538      1.134   thorpej  * Reference counts are maintained for L2 descriptors so they can be
    539      1.134   thorpej  * freed when empty.
    540       1.17     chris  */
    541      1.134   thorpej struct l2_dtable {
    542      1.134   thorpej 	/* The number of L2 page descriptors allocated to this l2_dtable */
    543      1.134   thorpej 	u_int l2_occupancy;
    544       1.17     chris 
    545      1.134   thorpej 	/* List of L2 page descriptors */
    546      1.134   thorpej 	struct l2_bucket {
    547      1.134   thorpej 		pt_entry_t *l2b_kva;	/* KVA of L2 Descriptor Table */
    548      1.134   thorpej 		paddr_t l2b_phys;	/* Physical address of same */
    549      1.134   thorpej 		u_short l2b_l1idx;	/* This L2 table's L1 index */
    550      1.134   thorpej 		u_short l2b_occupancy;	/* How many active descriptors */
    551      1.134   thorpej 	} l2_bucket[L2_BUCKET_SIZE];
    552       1.17     chris };
    553       1.17     chris 
    554       1.17     chris /*
    555      1.134   thorpej  * Given an L1 table index, calculate the corresponding l2_dtable index
    556      1.134   thorpej  * and bucket index within the l2_dtable.
    557       1.17     chris  */
    558      1.134   thorpej #define	L2_IDX(l1idx)		(((l1idx) >> L2_BUCKET_LOG2) & \
    559      1.134   thorpej 				 (L2_SIZE - 1))
    560      1.134   thorpej #define	L2_BUCKET(l1idx)	((l1idx) & (L2_BUCKET_SIZE - 1))
    561       1.17     chris 
    562      1.134   thorpej /*
    563      1.134   thorpej  * Given a virtual address, this macro returns the
    564      1.134   thorpej  * virtual address required to drop into the next L2 bucket.
    565      1.134   thorpej  */
    566      1.134   thorpej #define	L2_NEXT_BUCKET(va)	(((va) & L1_S_FRAME) + L1_S_SIZE)
    567       1.17     chris 
    568       1.17     chris /*
    569      1.134   thorpej  * L2 allocation.
    570       1.17     chris  */
    571      1.134   thorpej #define	pmap_alloc_l2_dtable()		\
    572      1.134   thorpej 	    pool_cache_get(&pmap_l2dtable_cache, PR_NOWAIT)
    573      1.134   thorpej #define	pmap_free_l2_dtable(l2)		\
    574      1.134   thorpej 	    pool_cache_put(&pmap_l2dtable_cache, (l2))
    575      1.134   thorpej #define pmap_alloc_l2_ptp(pap)		\
    576      1.134   thorpej 	    ((pt_entry_t *)pool_cache_get_paddr(&pmap_l2ptp_cache,\
    577      1.134   thorpej 	    PR_NOWAIT, (pap)))
    578        1.1      matt 
    579        1.1      matt /*
    580      1.134   thorpej  * We try to map the page tables write-through, if possible.  However, not
    581      1.134   thorpej  * all CPUs have a write-through cache mode, so on those we have to sync
    582      1.134   thorpej  * the cache when we frob page tables.
    583      1.113   thorpej  *
    584      1.134   thorpej  * We try to evaluate this at compile time, if possible.  However, it's
    585      1.134   thorpej  * not always possible to do that, hence this run-time var.
    586      1.134   thorpej  */
    587      1.134   thorpej int	pmap_needs_pte_sync;
    588      1.113   thorpej 
    589      1.113   thorpej /*
    590      1.134   thorpej  * Real definition of pv_entry.
    591      1.113   thorpej  */
    592      1.134   thorpej struct pv_entry {
    593      1.134   thorpej 	struct pv_entry *pv_next;       /* next pv_entry */
    594      1.134   thorpej 	pmap_t		pv_pmap;        /* pmap where mapping lies */
    595      1.134   thorpej 	vaddr_t		pv_va;          /* virtual address for mapping */
    596      1.134   thorpej 	u_int		pv_flags;       /* flags */
    597      1.134   thorpej };
    598      1.113   thorpej 
    599      1.113   thorpej /*
    600      1.134   thorpej  * Macro to determine if a mapping might be resident in the
    601      1.134   thorpej  * instruction cache and/or TLB
    602       1.17     chris  */
    603      1.134   thorpej #define	PV_BEEN_EXECD(f)  (((f) & (PVF_REF | PVF_EXEC)) == (PVF_REF | PVF_EXEC))
    604  1.172.2.1      yamt #define	PV_IS_EXEC_P(f)   (((f) & PVF_EXEC) != 0)
    605       1.17     chris 
    606       1.17     chris /*
    607      1.134   thorpej  * Macro to determine if a mapping might be resident in the
    608      1.134   thorpej  * data cache and/or TLB
    609        1.1      matt  */
    610      1.134   thorpej #define	PV_BEEN_REFD(f)   (((f) & PVF_REF) != 0)
    611        1.1      matt 
    612        1.1      matt /*
    613      1.134   thorpej  * Local prototypes
    614        1.1      matt  */
    615      1.134   thorpej static int		pmap_set_pt_cache_mode(pd_entry_t *, vaddr_t);
    616      1.134   thorpej static void		pmap_alloc_specials(vaddr_t *, int, vaddr_t *,
    617      1.134   thorpej 			    pt_entry_t **);
    618      1.159   thorpej static bool		pmap_is_current(pmap_t);
    619      1.159   thorpej static bool		pmap_is_cached(pmap_t);
    620      1.134   thorpej static void		pmap_enter_pv(struct vm_page *, struct pv_entry *,
    621      1.134   thorpej 			    pmap_t, vaddr_t, u_int);
    622      1.134   thorpej static struct pv_entry *pmap_find_pv(struct vm_page *, pmap_t, vaddr_t);
    623      1.156       scw static struct pv_entry *pmap_remove_pv(struct vm_page *, pmap_t, vaddr_t, int);
    624      1.134   thorpej static u_int		pmap_modify_pv(struct vm_page *, pmap_t, vaddr_t,
    625      1.134   thorpej 			    u_int, u_int);
    626       1.17     chris 
    627      1.134   thorpej static void		pmap_pinit(pmap_t);
    628      1.134   thorpej static int		pmap_pmap_ctor(void *, void *, int);
    629       1.17     chris 
    630      1.134   thorpej static void		pmap_alloc_l1(pmap_t);
    631      1.134   thorpej static void		pmap_free_l1(pmap_t);
    632      1.134   thorpej static void		pmap_use_l1(pmap_t);
    633       1.17     chris 
    634      1.134   thorpej static struct l2_bucket *pmap_get_l2_bucket(pmap_t, vaddr_t);
    635      1.134   thorpej static struct l2_bucket *pmap_alloc_l2_bucket(pmap_t, vaddr_t);
    636      1.134   thorpej static void		pmap_free_l2_bucket(pmap_t, struct l2_bucket *, u_int);
    637      1.134   thorpej static int		pmap_l2ptp_ctor(void *, void *, int);
    638      1.134   thorpej static int		pmap_l2dtable_ctor(void *, void *, int);
    639       1.51     chris 
    640      1.134   thorpej static void		pmap_vac_me_harder(struct vm_page *, pmap_t, vaddr_t);
    641  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
    642      1.134   thorpej static void		pmap_vac_me_kpmap(struct vm_page *, pmap_t, vaddr_t);
    643      1.134   thorpej static void		pmap_vac_me_user(struct vm_page *, pmap_t, vaddr_t);
    644  1.172.2.1      yamt #endif
    645       1.17     chris 
    646      1.134   thorpej static void		pmap_clearbit(struct vm_page *, u_int);
    647  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
    648      1.159   thorpej static int		pmap_clean_page(struct pv_entry *, bool);
    649  1.172.2.1      yamt #endif
    650  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
    651  1.172.2.1      yamt static void		pmap_syncicache_page(struct vm_page *);
    652  1.172.2.1      yamt static void		pmap_flush_page(struct vm_page *);
    653  1.172.2.1      yamt #endif
    654      1.134   thorpej static void		pmap_page_remove(struct vm_page *);
    655       1.17     chris 
    656      1.134   thorpej static void		pmap_init_l1(struct l1_ttable *, pd_entry_t *);
    657      1.134   thorpej static vaddr_t		kernel_pt_lookup(paddr_t);
    658       1.17     chris 
    659       1.17     chris 
    660       1.17     chris /*
    661      1.134   thorpej  * External function prototypes
    662       1.17     chris  */
    663      1.134   thorpej extern void bzero_page(vaddr_t);
    664      1.134   thorpej extern void bcopy_page(vaddr_t, vaddr_t);
    665       1.17     chris 
    666      1.134   thorpej /*
    667      1.134   thorpej  * Misc variables
    668      1.134   thorpej  */
    669      1.134   thorpej vaddr_t virtual_avail;
    670      1.134   thorpej vaddr_t virtual_end;
    671      1.134   thorpej vaddr_t pmap_curmaxkvaddr;
    672       1.17     chris 
    673      1.134   thorpej vaddr_t avail_start;
    674      1.134   thorpej vaddr_t avail_end;
    675       1.17     chris 
    676  1.172.2.1      yamt pv_addrqh_t pmap_boot_freeq = SLIST_HEAD_INITIALIZER(&pmap_boot_freeq);
    677  1.172.2.1      yamt pv_addr_t kernelpages;
    678  1.172.2.1      yamt pv_addr_t kernel_l1pt;
    679  1.172.2.1      yamt pv_addr_t systempage;
    680       1.17     chris 
    681      1.134   thorpej /* Function to set the debug level of the pmap code */
    682       1.17     chris 
    683      1.134   thorpej #ifdef PMAP_DEBUG
    684      1.134   thorpej void
    685      1.134   thorpej pmap_debug(int level)
    686      1.134   thorpej {
    687      1.134   thorpej 	pmap_debug_level = level;
    688      1.134   thorpej 	printf("pmap_debug: level=%d\n", pmap_debug_level);
    689        1.1      matt }
    690      1.134   thorpej #endif	/* PMAP_DEBUG */
    691        1.1      matt 
    692        1.1      matt /*
    693      1.134   thorpej  * A bunch of routines to conditionally flush the caches/TLB depending
    694      1.134   thorpej  * on whether the specified pmap actually needs to be flushed at any
    695      1.134   thorpej  * given time.
    696        1.1      matt  */
    697      1.157     perry static inline void
    698      1.134   thorpej pmap_tlb_flushID_SE(pmap_t pm, vaddr_t va)
    699      1.134   thorpej {
    700      1.134   thorpej 
    701      1.134   thorpej 	if (pm->pm_cstate.cs_tlb_id)
    702      1.134   thorpej 		cpu_tlb_flushID_SE(va);
    703      1.134   thorpej }
    704        1.1      matt 
    705      1.157     perry static inline void
    706      1.134   thorpej pmap_tlb_flushD_SE(pmap_t pm, vaddr_t va)
    707        1.1      matt {
    708        1.1      matt 
    709      1.134   thorpej 	if (pm->pm_cstate.cs_tlb_d)
    710      1.134   thorpej 		cpu_tlb_flushD_SE(va);
    711        1.1      matt }
    712        1.1      matt 
    713      1.157     perry static inline void
    714      1.134   thorpej pmap_tlb_flushID(pmap_t pm)
    715        1.1      matt {
    716        1.1      matt 
    717      1.134   thorpej 	if (pm->pm_cstate.cs_tlb_id) {
    718      1.134   thorpej 		cpu_tlb_flushID();
    719      1.134   thorpej 		pm->pm_cstate.cs_tlb = 0;
    720        1.1      matt 	}
    721      1.134   thorpej }
    722        1.1      matt 
    723      1.157     perry static inline void
    724      1.134   thorpej pmap_tlb_flushD(pmap_t pm)
    725      1.134   thorpej {
    726        1.1      matt 
    727      1.134   thorpej 	if (pm->pm_cstate.cs_tlb_d) {
    728      1.134   thorpej 		cpu_tlb_flushD();
    729      1.134   thorpej 		pm->pm_cstate.cs_tlb_d = 0;
    730        1.1      matt 	}
    731        1.1      matt }
    732        1.1      matt 
    733  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
    734      1.157     perry static inline void
    735      1.134   thorpej pmap_idcache_wbinv_range(pmap_t pm, vaddr_t va, vsize_t len)
    736        1.1      matt {
    737  1.172.2.1      yamt 	if (pm->pm_cstate.cs_cache_id) {
    738      1.134   thorpej 		cpu_idcache_wbinv_range(va, len);
    739  1.172.2.1      yamt 	}
    740       1.17     chris }
    741        1.1      matt 
    742      1.157     perry static inline void
    743      1.134   thorpej pmap_dcache_wb_range(pmap_t pm, vaddr_t va, vsize_t len,
    744      1.159   thorpej     bool do_inv, bool rd_only)
    745       1.17     chris {
    746        1.1      matt 
    747      1.134   thorpej 	if (pm->pm_cstate.cs_cache_d) {
    748      1.134   thorpej 		if (do_inv) {
    749      1.134   thorpej 			if (rd_only)
    750      1.134   thorpej 				cpu_dcache_inv_range(va, len);
    751      1.134   thorpej 			else
    752      1.134   thorpej 				cpu_dcache_wbinv_range(va, len);
    753      1.134   thorpej 		} else
    754      1.134   thorpej 		if (!rd_only)
    755      1.134   thorpej 			cpu_dcache_wb_range(va, len);
    756        1.1      matt 	}
    757      1.134   thorpej }
    758        1.1      matt 
    759      1.157     perry static inline void
    760      1.134   thorpej pmap_idcache_wbinv_all(pmap_t pm)
    761      1.134   thorpej {
    762      1.134   thorpej 	if (pm->pm_cstate.cs_cache_id) {
    763      1.134   thorpej 		cpu_idcache_wbinv_all();
    764      1.134   thorpej 		pm->pm_cstate.cs_cache = 0;
    765      1.134   thorpej 	}
    766        1.1      matt }
    767        1.1      matt 
    768      1.157     perry static inline void
    769      1.134   thorpej pmap_dcache_wbinv_all(pmap_t pm)
    770      1.134   thorpej {
    771      1.134   thorpej 	if (pm->pm_cstate.cs_cache_d) {
    772      1.134   thorpej 		cpu_dcache_wbinv_all();
    773      1.134   thorpej 		pm->pm_cstate.cs_cache_d = 0;
    774      1.134   thorpej 	}
    775      1.134   thorpej }
    776  1.172.2.1      yamt #endif /* PMAP_CACHE_VIVT */
    777        1.1      matt 
    778      1.159   thorpej static inline bool
    779      1.134   thorpej pmap_is_current(pmap_t pm)
    780        1.1      matt {
    781       1.17     chris 
    782      1.134   thorpej 	if (pm == pmap_kernel() ||
    783      1.134   thorpej 	    (curproc && curproc->p_vmspace->vm_map.pmap == pm))
    784  1.172.2.1      yamt 		return true;
    785        1.1      matt 
    786  1.172.2.1      yamt 	return false;
    787      1.134   thorpej }
    788        1.1      matt 
    789      1.159   thorpej static inline bool
    790      1.134   thorpej pmap_is_cached(pmap_t pm)
    791      1.134   thorpej {
    792       1.17     chris 
    793      1.165       scw 	if (pm == pmap_kernel() || pmap_recent_user == NULL ||
    794      1.165       scw 	    pmap_recent_user == pm)
    795      1.160   thorpej 		return (true);
    796       1.17     chris 
    797  1.172.2.1      yamt 	return false;
    798      1.134   thorpej }
    799        1.1      matt 
    800      1.134   thorpej /*
    801      1.134   thorpej  * PTE_SYNC_CURRENT:
    802      1.134   thorpej  *
    803      1.134   thorpej  *     Make sure the pte is written out to RAM.
    804      1.134   thorpej  *     We need to do this for one of two cases:
    805      1.134   thorpej  *       - We're dealing with the kernel pmap
    806      1.134   thorpej  *       - There is no pmap active in the cache/tlb.
    807      1.134   thorpej  *       - The specified pmap is 'active' in the cache/tlb.
    808      1.134   thorpej  */
    809      1.134   thorpej #ifdef PMAP_INCLUDE_PTE_SYNC
    810      1.134   thorpej #define	PTE_SYNC_CURRENT(pm, ptep)	\
    811      1.134   thorpej do {					\
    812      1.134   thorpej 	if (PMAP_NEEDS_PTE_SYNC && 	\
    813      1.134   thorpej 	    pmap_is_cached(pm))		\
    814      1.134   thorpej 		PTE_SYNC(ptep);		\
    815      1.134   thorpej } while (/*CONSTCOND*/0)
    816      1.134   thorpej #else
    817      1.134   thorpej #define	PTE_SYNC_CURRENT(pm, ptep)	/* nothing */
    818      1.134   thorpej #endif
    819        1.1      matt 
    820        1.1      matt /*
    821       1.17     chris  * main pv_entry manipulation functions:
    822       1.49   thorpej  *   pmap_enter_pv: enter a mapping onto a vm_page list
    823       1.49   thorpej  *   pmap_remove_pv: remove a mappiing from a vm_page list
    824       1.17     chris  *
    825       1.17     chris  * NOTE: pmap_enter_pv expects to lock the pvh itself
    826       1.17     chris  *       pmap_remove_pv expects te caller to lock the pvh before calling
    827       1.17     chris  */
    828       1.17     chris 
    829       1.17     chris /*
    830       1.49   thorpej  * pmap_enter_pv: enter a mapping onto a vm_page lst
    831       1.17     chris  *
    832       1.17     chris  * => caller should hold the proper lock on pmap_main_lock
    833       1.17     chris  * => caller should have pmap locked
    834       1.49   thorpej  * => we will gain the lock on the vm_page and allocate the new pv_entry
    835       1.17     chris  * => caller should adjust ptp's wire_count before calling
    836       1.17     chris  * => caller should not adjust pmap's wire_count
    837       1.17     chris  */
    838      1.134   thorpej static void
    839      1.134   thorpej pmap_enter_pv(struct vm_page *pg, struct pv_entry *pve, pmap_t pm,
    840      1.134   thorpej     vaddr_t va, u_int flags)
    841      1.134   thorpej {
    842       1.17     chris 
    843      1.134   thorpej 	NPDEBUG(PDB_PVDUMP,
    844      1.134   thorpej 	    printf("pmap_enter_pv: pm %p, pg %p, flags 0x%x\n", pm, pg, flags));
    845      1.134   thorpej 
    846      1.134   thorpej 	pve->pv_pmap = pm;
    847       1.17     chris 	pve->pv_va = va;
    848       1.17     chris 	pve->pv_flags = flags;
    849      1.134   thorpej 
    850       1.49   thorpej 	simple_lock(&pg->mdpage.pvh_slock);	/* lock vm_page */
    851       1.49   thorpej 	pve->pv_next = pg->mdpage.pvh_list;	/* add to ... */
    852       1.49   thorpej 	pg->mdpage.pvh_list = pve;		/* ... locked list */
    853      1.134   thorpej 	pg->mdpage.pvh_attrs |= flags & (PVF_REF | PVF_MOD);
    854      1.134   thorpej 	if (pm == pmap_kernel()) {
    855  1.172.2.1      yamt 		PMAPCOUNT(kernel_mappings);
    856      1.134   thorpej 		if (flags & PVF_WRITE)
    857      1.134   thorpej 			pg->mdpage.krw_mappings++;
    858      1.134   thorpej 		else
    859      1.134   thorpej 			pg->mdpage.kro_mappings++;
    860      1.134   thorpej 	} else
    861      1.134   thorpej 	if (flags & PVF_WRITE)
    862      1.134   thorpej 		pg->mdpage.urw_mappings++;
    863      1.134   thorpej 	else
    864      1.134   thorpej 		pg->mdpage.uro_mappings++;
    865  1.172.2.1      yamt 
    866  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
    867  1.172.2.1      yamt 	/*
    868  1.172.2.1      yamt 	 * If this is an exec mapping and its the first exec mapping
    869  1.172.2.1      yamt 	 * for this page, make sure to sync the I-cache.
    870  1.172.2.1      yamt 	 */
    871  1.172.2.1      yamt 	if (PV_IS_EXEC_P(flags)) {
    872  1.172.2.1      yamt 		if (!PV_IS_EXEC_P(pg->mdpage.pvh_attrs)) {
    873  1.172.2.1      yamt 			pmap_syncicache_page(pg);
    874  1.172.2.1      yamt 			PMAPCOUNT(exec_synced_map);
    875  1.172.2.1      yamt 		}
    876  1.172.2.1      yamt 		PMAPCOUNT(exec_mappings);
    877  1.172.2.1      yamt 	}
    878  1.172.2.1      yamt #endif
    879  1.172.2.1      yamt 
    880  1.172.2.1      yamt 	PMAPCOUNT(mappings);
    881       1.49   thorpej 	simple_unlock(&pg->mdpage.pvh_slock);	/* unlock, done! */
    882      1.134   thorpej 
    883       1.78   thorpej 	if (pve->pv_flags & PVF_WIRED)
    884      1.134   thorpej 		++pm->pm_stats.wired_count;
    885       1.17     chris }
    886       1.17     chris 
    887       1.17     chris /*
    888      1.134   thorpej  *
    889      1.134   thorpej  * pmap_find_pv: Find a pv entry
    890      1.134   thorpej  *
    891      1.134   thorpej  * => caller should hold lock on vm_page
    892      1.134   thorpej  */
    893      1.157     perry static inline struct pv_entry *
    894      1.134   thorpej pmap_find_pv(struct vm_page *pg, pmap_t pm, vaddr_t va)
    895      1.134   thorpej {
    896      1.134   thorpej 	struct pv_entry *pv;
    897      1.134   thorpej 
    898      1.134   thorpej 	for (pv = pg->mdpage.pvh_list; pv; pv = pv->pv_next) {
    899      1.134   thorpej 		if (pm == pv->pv_pmap && va == pv->pv_va)
    900      1.134   thorpej 			break;
    901      1.134   thorpej 	}
    902      1.134   thorpej 
    903      1.134   thorpej 	return (pv);
    904      1.134   thorpej }
    905      1.134   thorpej 
    906      1.134   thorpej /*
    907      1.134   thorpej  * pmap_remove_pv: try to remove a mapping from a pv_list
    908       1.17     chris  *
    909       1.17     chris  * => caller should hold proper lock on pmap_main_lock
    910       1.17     chris  * => pmap should be locked
    911       1.49   thorpej  * => caller should hold lock on vm_page [so that attrs can be adjusted]
    912       1.17     chris  * => caller should adjust ptp's wire_count and free PTP if needed
    913       1.17     chris  * => caller should NOT adjust pmap's wire_count
    914       1.17     chris  * => we return the removed pve
    915       1.17     chris  */
    916      1.134   thorpej static struct pv_entry *
    917      1.156       scw pmap_remove_pv(struct vm_page *pg, pmap_t pm, vaddr_t va, int skip_wired)
    918       1.17     chris {
    919       1.17     chris 	struct pv_entry *pve, **prevptr;
    920       1.17     chris 
    921      1.134   thorpej 	NPDEBUG(PDB_PVDUMP,
    922      1.134   thorpej 	    printf("pmap_remove_pv: pm %p, pg %p, va 0x%08lx\n", pm, pg, va));
    923      1.134   thorpej 
    924       1.49   thorpej 	prevptr = &pg->mdpage.pvh_list;		/* previous pv_entry pointer */
    925       1.17     chris 	pve = *prevptr;
    926      1.134   thorpej 
    927       1.17     chris 	while (pve) {
    928      1.134   thorpej 		if (pve->pv_pmap == pm && pve->pv_va == va) {	/* match? */
    929      1.156       scw 			NPDEBUG(PDB_PVDUMP, printf("pmap_remove_pv: pm %p, pg "
    930      1.156       scw 			    "%p, flags 0x%x\n", pm, pg, pve->pv_flags));
    931      1.156       scw 			if (pve->pv_flags & PVF_WIRED) {
    932      1.156       scw 				if (skip_wired)
    933      1.156       scw 					return (NULL);
    934      1.156       scw 				--pm->pm_stats.wired_count;
    935      1.156       scw 			}
    936       1.17     chris 			*prevptr = pve->pv_next;		/* remove it! */
    937      1.134   thorpej 			if (pm == pmap_kernel()) {
    938  1.172.2.1      yamt 				PMAPCOUNT(kernel_unmappings);
    939      1.134   thorpej 				if (pve->pv_flags & PVF_WRITE)
    940      1.134   thorpej 					pg->mdpage.krw_mappings--;
    941      1.134   thorpej 				else
    942      1.134   thorpej 					pg->mdpage.kro_mappings--;
    943      1.134   thorpej 			} else
    944      1.134   thorpej 			if (pve->pv_flags & PVF_WRITE)
    945      1.134   thorpej 				pg->mdpage.urw_mappings--;
    946      1.134   thorpej 			else
    947      1.134   thorpej 				pg->mdpage.uro_mappings--;
    948  1.172.2.1      yamt 
    949  1.172.2.1      yamt 			PMAPCOUNT(unmappings);
    950  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
    951  1.172.2.1      yamt 			if (!(pve->pv_flags & PVF_WRITE))
    952  1.172.2.1      yamt 				break;
    953  1.172.2.1      yamt 			/*
    954  1.172.2.1      yamt 			 * If this page has had an exec mapping, then if
    955  1.172.2.1      yamt 			 * this was the last mapping, discard the contents,
    956  1.172.2.1      yamt 			 * otherwise sync the i-cache for this page.
    957  1.172.2.1      yamt 			 */
    958  1.172.2.1      yamt 			if (PV_IS_EXEC_P(pg->mdpage.pvh_attrs)) {
    959  1.172.2.1      yamt 				if (pg->mdpage.pvh_list == NULL) {
    960  1.172.2.1      yamt 					pg->mdpage.pvh_attrs &= ~PVF_EXEC;
    961  1.172.2.1      yamt 					PMAPCOUNT(exec_discarded_unmap);
    962  1.172.2.1      yamt 				} else {
    963  1.172.2.1      yamt 					pmap_syncicache_page(pg);
    964  1.172.2.1      yamt 					PMAPCOUNT(exec_synced_unmap);
    965  1.172.2.1      yamt 				}
    966  1.172.2.1      yamt 			}
    967  1.172.2.1      yamt #endif /* PMAP_CACHE_VIPT */
    968       1.17     chris 			break;
    969       1.17     chris 		}
    970       1.17     chris 		prevptr = &pve->pv_next;		/* previous pointer */
    971       1.17     chris 		pve = pve->pv_next;			/* advance */
    972       1.17     chris 	}
    973      1.134   thorpej 
    974       1.17     chris 	return(pve);				/* return removed pve */
    975       1.17     chris }
    976       1.17     chris 
    977       1.17     chris /*
    978       1.17     chris  *
    979       1.17     chris  * pmap_modify_pv: Update pv flags
    980       1.17     chris  *
    981       1.49   thorpej  * => caller should hold lock on vm_page [so that attrs can be adjusted]
    982       1.17     chris  * => caller should NOT adjust pmap's wire_count
    983       1.29  rearnsha  * => caller must call pmap_vac_me_harder() if writable status of a page
    984       1.29  rearnsha  *    may have changed.
    985       1.17     chris  * => we return the old flags
    986       1.17     chris  *
    987        1.1      matt  * Modify a physical-virtual mapping in the pv table
    988        1.1      matt  */
    989      1.134   thorpej static u_int
    990      1.134   thorpej pmap_modify_pv(struct vm_page *pg, pmap_t pm, vaddr_t va,
    991      1.134   thorpej     u_int clr_mask, u_int set_mask)
    992        1.1      matt {
    993        1.1      matt 	struct pv_entry *npv;
    994        1.1      matt 	u_int flags, oflags;
    995        1.1      matt 
    996      1.134   thorpej 	if ((npv = pmap_find_pv(pg, pm, va)) == NULL)
    997      1.134   thorpej 		return (0);
    998      1.134   thorpej 
    999      1.134   thorpej 	NPDEBUG(PDB_PVDUMP,
   1000      1.134   thorpej 	    printf("pmap_modify_pv: pm %p, pg %p, clr 0x%x, set 0x%x, flags 0x%x\n", pm, pg, clr_mask, set_mask, npv->pv_flags));
   1001      1.134   thorpej 
   1002        1.1      matt 	/*
   1003        1.1      matt 	 * There is at least one VA mapping this page.
   1004        1.1      matt 	 */
   1005        1.1      matt 
   1006      1.134   thorpej 	if (clr_mask & (PVF_REF | PVF_MOD))
   1007      1.134   thorpej 		pg->mdpage.pvh_attrs |= set_mask & (PVF_REF | PVF_MOD);
   1008      1.134   thorpej 
   1009      1.134   thorpej 	oflags = npv->pv_flags;
   1010      1.134   thorpej 	npv->pv_flags = flags = (oflags & ~clr_mask) | set_mask;
   1011      1.134   thorpej 
   1012      1.134   thorpej 	if ((flags ^ oflags) & PVF_WIRED) {
   1013      1.134   thorpej 		if (flags & PVF_WIRED)
   1014      1.134   thorpej 			++pm->pm_stats.wired_count;
   1015      1.134   thorpej 		else
   1016      1.134   thorpej 			--pm->pm_stats.wired_count;
   1017      1.134   thorpej 	}
   1018      1.134   thorpej 
   1019      1.134   thorpej 	if ((flags ^ oflags) & PVF_WRITE) {
   1020      1.134   thorpej 		if (pm == pmap_kernel()) {
   1021      1.134   thorpej 			if (flags & PVF_WRITE) {
   1022      1.134   thorpej 				pg->mdpage.krw_mappings++;
   1023      1.134   thorpej 				pg->mdpage.kro_mappings--;
   1024      1.134   thorpej 			} else {
   1025      1.134   thorpej 				pg->mdpage.kro_mappings++;
   1026      1.134   thorpej 				pg->mdpage.krw_mappings--;
   1027        1.1      matt 			}
   1028      1.134   thorpej 		} else
   1029      1.134   thorpej 		if (flags & PVF_WRITE) {
   1030      1.134   thorpej 			pg->mdpage.urw_mappings++;
   1031      1.134   thorpej 			pg->mdpage.uro_mappings--;
   1032      1.134   thorpej 		} else {
   1033      1.134   thorpej 			pg->mdpage.uro_mappings++;
   1034      1.134   thorpej 			pg->mdpage.urw_mappings--;
   1035        1.1      matt 		}
   1036        1.1      matt 	}
   1037  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   1038  1.172.2.1      yamt 	/*
   1039  1.172.2.1      yamt 	 * We have two cases here: the first is from enter_pv (new exec
   1040  1.172.2.1      yamt 	 * page), the second is a combined pmap_remove_pv/pmap_enter_pv.
   1041  1.172.2.1      yamt 	 * Since in latter, pmap_enter_pv won't do anything, we just have
   1042  1.172.2.1      yamt 	 * to do what pmap_remove_pv would do.
   1043  1.172.2.1      yamt 	 */
   1044  1.172.2.1      yamt 	if ((PV_IS_EXEC_P(flags) && !PV_IS_EXEC_P(pg->mdpage.pvh_attrs))
   1045  1.172.2.1      yamt 	    || (PV_IS_EXEC_P(pg->mdpage.pvh_attrs)
   1046  1.172.2.1      yamt 		|| (!(flags & PVF_WRITE) && (oflags & PVF_WRITE)))) {
   1047  1.172.2.1      yamt 		pmap_syncicache_page(pg);
   1048  1.172.2.1      yamt 		PMAPCOUNT(exec_synced_remap);
   1049  1.172.2.1      yamt 	}
   1050  1.172.2.1      yamt #endif
   1051  1.172.2.1      yamt 
   1052  1.172.2.1      yamt 	PMAPCOUNT(remappings);
   1053      1.134   thorpej 
   1054      1.134   thorpej 	return (oflags);
   1055        1.1      matt }
   1056        1.1      matt 
   1057      1.134   thorpej /*
   1058      1.134   thorpej  * Allocate an L1 translation table for the specified pmap.
   1059      1.134   thorpej  * This is called at pmap creation time.
   1060      1.134   thorpej  */
   1061      1.134   thorpej static void
   1062      1.134   thorpej pmap_alloc_l1(pmap_t pm)
   1063        1.1      matt {
   1064      1.134   thorpej 	struct l1_ttable *l1;
   1065      1.134   thorpej 	u_int8_t domain;
   1066      1.134   thorpej 
   1067      1.134   thorpej 	/*
   1068      1.134   thorpej 	 * Remove the L1 at the head of the LRU list
   1069      1.134   thorpej 	 */
   1070      1.134   thorpej 	simple_lock(&l1_lru_lock);
   1071      1.134   thorpej 	l1 = TAILQ_FIRST(&l1_lru_list);
   1072      1.134   thorpej 	KDASSERT(l1 != NULL);
   1073      1.134   thorpej 	TAILQ_REMOVE(&l1_lru_list, l1, l1_lru);
   1074        1.1      matt 
   1075      1.134   thorpej 	/*
   1076      1.134   thorpej 	 * Pick the first available domain number, and update
   1077      1.134   thorpej 	 * the link to the next number.
   1078      1.134   thorpej 	 */
   1079      1.134   thorpej 	domain = l1->l1_domain_first;
   1080      1.134   thorpej 	l1->l1_domain_first = l1->l1_domain_free[domain];
   1081      1.115   thorpej 
   1082      1.134   thorpej 	/*
   1083      1.134   thorpej 	 * If there are still free domain numbers in this L1,
   1084      1.134   thorpej 	 * put it back on the TAIL of the LRU list.
   1085      1.134   thorpej 	 */
   1086      1.134   thorpej 	if (++l1->l1_domain_use_count < PMAP_DOMAINS)
   1087      1.134   thorpej 		TAILQ_INSERT_TAIL(&l1_lru_list, l1, l1_lru);
   1088        1.1      matt 
   1089      1.134   thorpej 	simple_unlock(&l1_lru_lock);
   1090        1.1      matt 
   1091      1.134   thorpej 	/*
   1092      1.134   thorpej 	 * Fix up the relevant bits in the pmap structure
   1093      1.134   thorpej 	 */
   1094      1.134   thorpej 	pm->pm_l1 = l1;
   1095      1.134   thorpej 	pm->pm_domain = domain;
   1096        1.1      matt }
   1097        1.1      matt 
   1098        1.1      matt /*
   1099      1.134   thorpej  * Free an L1 translation table.
   1100      1.134   thorpej  * This is called at pmap destruction time.
   1101        1.1      matt  */
   1102      1.134   thorpej static void
   1103      1.134   thorpej pmap_free_l1(pmap_t pm)
   1104        1.1      matt {
   1105      1.134   thorpej 	struct l1_ttable *l1 = pm->pm_l1;
   1106        1.1      matt 
   1107      1.134   thorpej 	simple_lock(&l1_lru_lock);
   1108        1.1      matt 
   1109      1.134   thorpej 	/*
   1110      1.134   thorpej 	 * If this L1 is currently on the LRU list, remove it.
   1111      1.134   thorpej 	 */
   1112      1.134   thorpej 	if (l1->l1_domain_use_count < PMAP_DOMAINS)
   1113      1.134   thorpej 		TAILQ_REMOVE(&l1_lru_list, l1, l1_lru);
   1114        1.1      matt 
   1115        1.1      matt 	/*
   1116      1.134   thorpej 	 * Free up the domain number which was allocated to the pmap
   1117        1.1      matt 	 */
   1118      1.134   thorpej 	l1->l1_domain_free[pm->pm_domain] = l1->l1_domain_first;
   1119      1.134   thorpej 	l1->l1_domain_first = pm->pm_domain;
   1120      1.134   thorpej 	l1->l1_domain_use_count--;
   1121        1.1      matt 
   1122      1.134   thorpej 	/*
   1123      1.134   thorpej 	 * The L1 now must have at least 1 free domain, so add
   1124      1.134   thorpej 	 * it back to the LRU list. If the use count is zero,
   1125      1.134   thorpej 	 * put it at the head of the list, otherwise it goes
   1126      1.134   thorpej 	 * to the tail.
   1127      1.134   thorpej 	 */
   1128      1.134   thorpej 	if (l1->l1_domain_use_count == 0)
   1129      1.134   thorpej 		TAILQ_INSERT_HEAD(&l1_lru_list, l1, l1_lru);
   1130      1.134   thorpej 	else
   1131      1.134   thorpej 		TAILQ_INSERT_TAIL(&l1_lru_list, l1, l1_lru);
   1132       1.54   thorpej 
   1133      1.134   thorpej 	simple_unlock(&l1_lru_lock);
   1134      1.134   thorpej }
   1135       1.54   thorpej 
   1136      1.157     perry static inline void
   1137      1.134   thorpej pmap_use_l1(pmap_t pm)
   1138      1.134   thorpej {
   1139      1.134   thorpej 	struct l1_ttable *l1;
   1140       1.54   thorpej 
   1141      1.134   thorpej 	/*
   1142      1.134   thorpej 	 * Do nothing if we're in interrupt context.
   1143      1.134   thorpej 	 * Access to an L1 by the kernel pmap must not affect
   1144      1.134   thorpej 	 * the LRU list.
   1145      1.134   thorpej 	 */
   1146      1.171      matt 	if (cpu_intr_p() || pm == pmap_kernel())
   1147      1.134   thorpej 		return;
   1148       1.54   thorpej 
   1149      1.134   thorpej 	l1 = pm->pm_l1;
   1150        1.1      matt 
   1151       1.17     chris 	/*
   1152      1.134   thorpej 	 * If the L1 is not currently on the LRU list, just return
   1153       1.17     chris 	 */
   1154      1.134   thorpej 	if (l1->l1_domain_use_count == PMAP_DOMAINS)
   1155      1.134   thorpej 		return;
   1156      1.134   thorpej 
   1157      1.134   thorpej 	simple_lock(&l1_lru_lock);
   1158        1.1      matt 
   1159       1.10     chris 	/*
   1160      1.134   thorpej 	 * Check the use count again, now that we've acquired the lock
   1161       1.10     chris 	 */
   1162      1.134   thorpej 	if (l1->l1_domain_use_count == PMAP_DOMAINS) {
   1163      1.134   thorpej 		simple_unlock(&l1_lru_lock);
   1164      1.134   thorpej 		return;
   1165      1.134   thorpej 	}
   1166      1.111   thorpej 
   1167      1.111   thorpej 	/*
   1168      1.134   thorpej 	 * Move the L1 to the back of the LRU list
   1169      1.111   thorpej 	 */
   1170      1.134   thorpej 	TAILQ_REMOVE(&l1_lru_list, l1, l1_lru);
   1171      1.134   thorpej 	TAILQ_INSERT_TAIL(&l1_lru_list, l1, l1_lru);
   1172      1.111   thorpej 
   1173      1.134   thorpej 	simple_unlock(&l1_lru_lock);
   1174        1.1      matt }
   1175        1.1      matt 
   1176        1.1      matt /*
   1177      1.134   thorpej  * void pmap_free_l2_ptp(pt_entry_t *, paddr_t *)
   1178        1.1      matt  *
   1179      1.134   thorpej  * Free an L2 descriptor table.
   1180        1.1      matt  */
   1181      1.157     perry static inline void
   1182      1.134   thorpej #ifndef PMAP_INCLUDE_PTE_SYNC
   1183      1.134   thorpej pmap_free_l2_ptp(pt_entry_t *l2, paddr_t pa)
   1184      1.134   thorpej #else
   1185      1.159   thorpej pmap_free_l2_ptp(bool need_sync, pt_entry_t *l2, paddr_t pa)
   1186      1.134   thorpej #endif
   1187        1.1      matt {
   1188      1.134   thorpej #ifdef PMAP_INCLUDE_PTE_SYNC
   1189  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   1190        1.1      matt 	/*
   1191      1.134   thorpej 	 * Note: With a write-back cache, we may need to sync this
   1192      1.134   thorpej 	 * L2 table before re-using it.
   1193      1.134   thorpej 	 * This is because it may have belonged to a non-current
   1194      1.134   thorpej 	 * pmap, in which case the cache syncs would have been
   1195  1.172.2.1      yamt 	 * skipped for the pages that were being unmapped. If the
   1196      1.134   thorpej 	 * L2 table were then to be immediately re-allocated to
   1197      1.134   thorpej 	 * the *current* pmap, it may well contain stale mappings
   1198      1.134   thorpej 	 * which have not yet been cleared by a cache write-back
   1199      1.134   thorpej 	 * and so would still be visible to the mmu.
   1200        1.1      matt 	 */
   1201      1.134   thorpej 	if (need_sync)
   1202      1.134   thorpej 		PTE_SYNC_RANGE(l2, L2_TABLE_SIZE_REAL / sizeof(pt_entry_t));
   1203  1.172.2.1      yamt #endif /* PMAP_CACHE_VIVT */
   1204  1.172.2.1      yamt #endif /* PMAP_INCLUDE_PTE_SYNC */
   1205      1.134   thorpej 	pool_cache_put_paddr(&pmap_l2ptp_cache, (void *)l2, pa);
   1206        1.1      matt }
   1207        1.1      matt 
   1208        1.1      matt /*
   1209      1.134   thorpej  * Returns a pointer to the L2 bucket associated with the specified pmap
   1210      1.134   thorpej  * and VA, or NULL if no L2 bucket exists for the address.
   1211        1.1      matt  */
   1212      1.157     perry static inline struct l2_bucket *
   1213      1.134   thorpej pmap_get_l2_bucket(pmap_t pm, vaddr_t va)
   1214      1.134   thorpej {
   1215      1.134   thorpej 	struct l2_dtable *l2;
   1216      1.134   thorpej 	struct l2_bucket *l2b;
   1217      1.134   thorpej 	u_short l1idx;
   1218        1.1      matt 
   1219      1.134   thorpej 	l1idx = L1_IDX(va);
   1220        1.1      matt 
   1221      1.134   thorpej 	if ((l2 = pm->pm_l2[L2_IDX(l1idx)]) == NULL ||
   1222      1.134   thorpej 	    (l2b = &l2->l2_bucket[L2_BUCKET(l1idx)])->l2b_kva == NULL)
   1223      1.134   thorpej 		return (NULL);
   1224        1.1      matt 
   1225      1.134   thorpej 	return (l2b);
   1226        1.1      matt }
   1227        1.1      matt 
   1228        1.1      matt /*
   1229      1.134   thorpej  * Returns a pointer to the L2 bucket associated with the specified pmap
   1230      1.134   thorpej  * and VA.
   1231        1.1      matt  *
   1232      1.134   thorpej  * If no L2 bucket exists, perform the necessary allocations to put an L2
   1233      1.134   thorpej  * bucket/page table in place.
   1234        1.1      matt  *
   1235      1.134   thorpej  * Note that if a new L2 bucket/page was allocated, the caller *must*
   1236      1.134   thorpej  * increment the bucket occupancy counter appropriately *before*
   1237      1.134   thorpej  * releasing the pmap's lock to ensure no other thread or cpu deallocates
   1238      1.134   thorpej  * the bucket/page in the meantime.
   1239        1.1      matt  */
   1240      1.134   thorpej static struct l2_bucket *
   1241      1.134   thorpej pmap_alloc_l2_bucket(pmap_t pm, vaddr_t va)
   1242      1.134   thorpej {
   1243      1.134   thorpej 	struct l2_dtable *l2;
   1244      1.134   thorpej 	struct l2_bucket *l2b;
   1245      1.134   thorpej 	u_short l1idx;
   1246      1.134   thorpej 
   1247      1.134   thorpej 	l1idx = L1_IDX(va);
   1248      1.134   thorpej 
   1249      1.134   thorpej 	if ((l2 = pm->pm_l2[L2_IDX(l1idx)]) == NULL) {
   1250      1.134   thorpej 		/*
   1251      1.134   thorpej 		 * No mapping at this address, as there is
   1252      1.134   thorpej 		 * no entry in the L1 table.
   1253      1.134   thorpej 		 * Need to allocate a new l2_dtable.
   1254      1.134   thorpej 		 */
   1255      1.134   thorpej 		if ((l2 = pmap_alloc_l2_dtable()) == NULL)
   1256      1.134   thorpej 			return (NULL);
   1257      1.134   thorpej 
   1258      1.134   thorpej 		/*
   1259      1.134   thorpej 		 * Link it into the parent pmap
   1260      1.134   thorpej 		 */
   1261      1.134   thorpej 		pm->pm_l2[L2_IDX(l1idx)] = l2;
   1262      1.134   thorpej 	}
   1263        1.1      matt 
   1264      1.134   thorpej 	l2b = &l2->l2_bucket[L2_BUCKET(l1idx)];
   1265        1.1      matt 
   1266       1.10     chris 	/*
   1267      1.134   thorpej 	 * Fetch pointer to the L2 page table associated with the address.
   1268       1.10     chris 	 */
   1269      1.134   thorpej 	if (l2b->l2b_kva == NULL) {
   1270      1.134   thorpej 		pt_entry_t *ptep;
   1271      1.134   thorpej 
   1272      1.134   thorpej 		/*
   1273      1.134   thorpej 		 * No L2 page table has been allocated. Chances are, this
   1274      1.134   thorpej 		 * is because we just allocated the l2_dtable, above.
   1275      1.134   thorpej 		 */
   1276      1.134   thorpej 		if ((ptep = pmap_alloc_l2_ptp(&l2b->l2b_phys)) == NULL) {
   1277      1.134   thorpej 			/*
   1278      1.134   thorpej 			 * Oops, no more L2 page tables available at this
   1279      1.134   thorpej 			 * time. We may need to deallocate the l2_dtable
   1280      1.134   thorpej 			 * if we allocated a new one above.
   1281      1.134   thorpej 			 */
   1282      1.134   thorpej 			if (l2->l2_occupancy == 0) {
   1283      1.134   thorpej 				pm->pm_l2[L2_IDX(l1idx)] = NULL;
   1284      1.134   thorpej 				pmap_free_l2_dtable(l2);
   1285      1.134   thorpej 			}
   1286      1.134   thorpej 			return (NULL);
   1287      1.134   thorpej 		}
   1288        1.1      matt 
   1289      1.134   thorpej 		l2->l2_occupancy++;
   1290      1.134   thorpej 		l2b->l2b_kva = ptep;
   1291      1.134   thorpej 		l2b->l2b_l1idx = l1idx;
   1292      1.134   thorpej 	}
   1293       1.16     chris 
   1294      1.134   thorpej 	return (l2b);
   1295        1.1      matt }
   1296        1.1      matt 
   1297        1.1      matt /*
   1298      1.134   thorpej  * One or more mappings in the specified L2 descriptor table have just been
   1299      1.134   thorpej  * invalidated.
   1300        1.1      matt  *
   1301      1.134   thorpej  * Garbage collect the metadata and descriptor table itself if necessary.
   1302        1.1      matt  *
   1303      1.134   thorpej  * The pmap lock must be acquired when this is called (not necessary
   1304      1.134   thorpej  * for the kernel pmap).
   1305        1.1      matt  */
   1306      1.134   thorpej static void
   1307      1.134   thorpej pmap_free_l2_bucket(pmap_t pm, struct l2_bucket *l2b, u_int count)
   1308        1.1      matt {
   1309      1.134   thorpej 	struct l2_dtable *l2;
   1310      1.134   thorpej 	pd_entry_t *pl1pd, l1pd;
   1311      1.134   thorpej 	pt_entry_t *ptep;
   1312      1.134   thorpej 	u_short l1idx;
   1313        1.1      matt 
   1314      1.134   thorpej 	KDASSERT(count <= l2b->l2b_occupancy);
   1315        1.1      matt 
   1316      1.134   thorpej 	/*
   1317      1.134   thorpej 	 * Update the bucket's reference count according to how many
   1318      1.134   thorpej 	 * PTEs the caller has just invalidated.
   1319      1.134   thorpej 	 */
   1320      1.134   thorpej 	l2b->l2b_occupancy -= count;
   1321        1.1      matt 
   1322        1.1      matt 	/*
   1323      1.134   thorpej 	 * Note:
   1324      1.134   thorpej 	 *
   1325      1.134   thorpej 	 * Level 2 page tables allocated to the kernel pmap are never freed
   1326      1.134   thorpej 	 * as that would require checking all Level 1 page tables and
   1327      1.134   thorpej 	 * removing any references to the Level 2 page table. See also the
   1328      1.134   thorpej 	 * comment elsewhere about never freeing bootstrap L2 descriptors.
   1329      1.134   thorpej 	 *
   1330      1.134   thorpej 	 * We make do with just invalidating the mapping in the L2 table.
   1331      1.134   thorpej 	 *
   1332      1.134   thorpej 	 * This isn't really a big deal in practice and, in fact, leads
   1333      1.134   thorpej 	 * to a performance win over time as we don't need to continually
   1334      1.134   thorpej 	 * alloc/free.
   1335        1.1      matt 	 */
   1336      1.134   thorpej 	if (l2b->l2b_occupancy > 0 || pm == pmap_kernel())
   1337      1.134   thorpej 		return;
   1338        1.1      matt 
   1339      1.134   thorpej 	/*
   1340      1.134   thorpej 	 * There are no more valid mappings in this level 2 page table.
   1341      1.134   thorpej 	 * Go ahead and NULL-out the pointer in the bucket, then
   1342      1.134   thorpej 	 * free the page table.
   1343      1.134   thorpej 	 */
   1344      1.134   thorpej 	l1idx = l2b->l2b_l1idx;
   1345      1.134   thorpej 	ptep = l2b->l2b_kva;
   1346      1.134   thorpej 	l2b->l2b_kva = NULL;
   1347        1.1      matt 
   1348      1.134   thorpej 	pl1pd = &pm->pm_l1->l1_kva[l1idx];
   1349        1.1      matt 
   1350      1.134   thorpej 	/*
   1351      1.134   thorpej 	 * If the L1 slot matches the pmap's domain
   1352      1.134   thorpej 	 * number, then invalidate it.
   1353      1.134   thorpej 	 */
   1354      1.134   thorpej 	l1pd = *pl1pd & (L1_TYPE_MASK | L1_C_DOM_MASK);
   1355      1.134   thorpej 	if (l1pd == (L1_C_DOM(pm->pm_domain) | L1_TYPE_C)) {
   1356      1.134   thorpej 		*pl1pd = 0;
   1357      1.134   thorpej 		PTE_SYNC(pl1pd);
   1358        1.1      matt 	}
   1359        1.1      matt 
   1360      1.134   thorpej 	/*
   1361      1.134   thorpej 	 * Release the L2 descriptor table back to the pool cache.
   1362      1.134   thorpej 	 */
   1363      1.134   thorpej #ifndef PMAP_INCLUDE_PTE_SYNC
   1364      1.134   thorpej 	pmap_free_l2_ptp(ptep, l2b->l2b_phys);
   1365      1.134   thorpej #else
   1366      1.134   thorpej 	pmap_free_l2_ptp(!pmap_is_cached(pm), ptep, l2b->l2b_phys);
   1367      1.134   thorpej #endif
   1368      1.134   thorpej 
   1369      1.134   thorpej 	/*
   1370      1.134   thorpej 	 * Update the reference count in the associated l2_dtable
   1371      1.134   thorpej 	 */
   1372      1.134   thorpej 	l2 = pm->pm_l2[L2_IDX(l1idx)];
   1373      1.134   thorpej 	if (--l2->l2_occupancy > 0)
   1374      1.134   thorpej 		return;
   1375        1.1      matt 
   1376      1.134   thorpej 	/*
   1377      1.134   thorpej 	 * There are no more valid mappings in any of the Level 1
   1378      1.134   thorpej 	 * slots managed by this l2_dtable. Go ahead and NULL-out
   1379      1.134   thorpej 	 * the pointer in the parent pmap and free the l2_dtable.
   1380      1.134   thorpej 	 */
   1381      1.134   thorpej 	pm->pm_l2[L2_IDX(l1idx)] = NULL;
   1382      1.134   thorpej 	pmap_free_l2_dtable(l2);
   1383        1.1      matt }
   1384        1.1      matt 
   1385        1.1      matt /*
   1386      1.134   thorpej  * Pool cache constructors for L2 descriptor tables, metadata and pmap
   1387      1.134   thorpej  * structures.
   1388        1.1      matt  */
   1389      1.134   thorpej static int
   1390      1.134   thorpej pmap_l2ptp_ctor(void *arg, void *v, int flags)
   1391        1.1      matt {
   1392      1.134   thorpej #ifndef PMAP_INCLUDE_PTE_SYNC
   1393      1.134   thorpej 	struct l2_bucket *l2b;
   1394      1.134   thorpej 	pt_entry_t *ptep, pte;
   1395      1.134   thorpej 	vaddr_t va = (vaddr_t)v & ~PGOFSET;
   1396      1.134   thorpej 
   1397      1.134   thorpej 	/*
   1398      1.134   thorpej 	 * The mappings for these page tables were initially made using
   1399      1.134   thorpej 	 * pmap_kenter_pa() by the pool subsystem. Therefore, the cache-
   1400      1.134   thorpej 	 * mode will not be right for page table mappings. To avoid
   1401      1.134   thorpej 	 * polluting the pmap_kenter_pa() code with a special case for
   1402      1.134   thorpej 	 * page tables, we simply fix up the cache-mode here if it's not
   1403      1.134   thorpej 	 * correct.
   1404      1.134   thorpej 	 */
   1405      1.134   thorpej 	l2b = pmap_get_l2_bucket(pmap_kernel(), va);
   1406      1.134   thorpej 	KDASSERT(l2b != NULL);
   1407      1.134   thorpej 	ptep = &l2b->l2b_kva[l2pte_index(va)];
   1408      1.134   thorpej 	pte = *ptep;
   1409        1.1      matt 
   1410      1.134   thorpej 	if ((pte & L2_S_CACHE_MASK) != pte_l2_s_cache_mode_pt) {
   1411      1.134   thorpej 		/*
   1412      1.134   thorpej 		 * Page tables must have the cache-mode set to Write-Thru.
   1413      1.134   thorpej 		 */
   1414      1.134   thorpej 		*ptep = (pte & ~L2_S_CACHE_MASK) | pte_l2_s_cache_mode_pt;
   1415      1.134   thorpej 		PTE_SYNC(ptep);
   1416      1.134   thorpej 		cpu_tlb_flushD_SE(va);
   1417      1.134   thorpej 		cpu_cpwait();
   1418      1.134   thorpej 	}
   1419      1.134   thorpej #endif
   1420        1.1      matt 
   1421      1.134   thorpej 	memset(v, 0, L2_TABLE_SIZE_REAL);
   1422      1.134   thorpej 	PTE_SYNC_RANGE(v, L2_TABLE_SIZE_REAL / sizeof(pt_entry_t));
   1423      1.134   thorpej 	return (0);
   1424        1.1      matt }
   1425        1.1      matt 
   1426      1.134   thorpej static int
   1427      1.134   thorpej pmap_l2dtable_ctor(void *arg, void *v, int flags)
   1428       1.93   thorpej {
   1429       1.93   thorpej 
   1430      1.134   thorpej 	memset(v, 0, sizeof(struct l2_dtable));
   1431      1.134   thorpej 	return (0);
   1432      1.134   thorpej }
   1433       1.93   thorpej 
   1434      1.134   thorpej static int
   1435      1.134   thorpej pmap_pmap_ctor(void *arg, void *v, int flags)
   1436      1.134   thorpej {
   1437       1.93   thorpej 
   1438      1.134   thorpej 	memset(v, 0, sizeof(struct pmap));
   1439      1.134   thorpej 	return (0);
   1440       1.93   thorpej }
   1441       1.93   thorpej 
   1442      1.165       scw static void
   1443      1.165       scw pmap_pinit(pmap_t pm)
   1444      1.165       scw {
   1445      1.165       scw 	struct l2_bucket *l2b;
   1446      1.165       scw 
   1447      1.165       scw 	if (vector_page < KERNEL_BASE) {
   1448      1.165       scw 		/*
   1449      1.165       scw 		 * Map the vector page.
   1450      1.165       scw 		 */
   1451      1.165       scw 		pmap_enter(pm, vector_page, systempage.pv_pa,
   1452      1.165       scw 		    VM_PROT_READ, VM_PROT_READ | PMAP_WIRED);
   1453      1.165       scw 		pmap_update(pm);
   1454      1.165       scw 
   1455      1.165       scw 		pm->pm_pl1vec = &pm->pm_l1->l1_kva[L1_IDX(vector_page)];
   1456      1.165       scw 		l2b = pmap_get_l2_bucket(pm, vector_page);
   1457      1.165       scw 		pm->pm_l1vec = l2b->l2b_phys | L1_C_PROTO |
   1458      1.165       scw 		    L1_C_DOM(pm->pm_domain);
   1459      1.165       scw 	} else
   1460      1.165       scw 		pm->pm_pl1vec = NULL;
   1461      1.165       scw }
   1462      1.165       scw 
   1463  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   1464       1.93   thorpej /*
   1465      1.134   thorpej  * Since we have a virtually indexed cache, we may need to inhibit caching if
   1466      1.134   thorpej  * there is more than one mapping and at least one of them is writable.
   1467      1.134   thorpej  * Since we purge the cache on every context switch, we only need to check for
   1468      1.134   thorpej  * other mappings within the same pmap, or kernel_pmap.
   1469      1.134   thorpej  * This function is also called when a page is unmapped, to possibly reenable
   1470      1.134   thorpej  * caching on any remaining mappings.
   1471      1.134   thorpej  *
   1472      1.134   thorpej  * The code implements the following logic, where:
   1473      1.134   thorpej  *
   1474      1.134   thorpej  * KW = # of kernel read/write pages
   1475      1.134   thorpej  * KR = # of kernel read only pages
   1476      1.134   thorpej  * UW = # of user read/write pages
   1477      1.134   thorpej  * UR = # of user read only pages
   1478      1.134   thorpej  *
   1479      1.134   thorpej  * KC = kernel mapping is cacheable
   1480      1.134   thorpej  * UC = user mapping is cacheable
   1481       1.93   thorpej  *
   1482      1.134   thorpej  *               KW=0,KR=0  KW=0,KR>0  KW=1,KR=0  KW>1,KR>=0
   1483      1.134   thorpej  *             +---------------------------------------------
   1484      1.134   thorpej  * UW=0,UR=0   | ---        KC=1       KC=1       KC=0
   1485      1.134   thorpej  * UW=0,UR>0   | UC=1       KC=1,UC=1  KC=0,UC=0  KC=0,UC=0
   1486      1.134   thorpej  * UW=1,UR=0   | UC=1       KC=0,UC=0  KC=0,UC=0  KC=0,UC=0
   1487      1.134   thorpej  * UW>1,UR>=0  | UC=0       KC=0,UC=0  KC=0,UC=0  KC=0,UC=0
   1488       1.93   thorpej  */
   1489      1.111   thorpej 
   1490      1.134   thorpej static const int pmap_vac_flags[4][4] = {
   1491      1.134   thorpej 	{-1,		0,		0,		PVF_KNC},
   1492      1.134   thorpej 	{0,		0,		PVF_NC,		PVF_NC},
   1493      1.134   thorpej 	{0,		PVF_NC,		PVF_NC,		PVF_NC},
   1494      1.134   thorpej 	{PVF_UNC,	PVF_NC,		PVF_NC,		PVF_NC}
   1495      1.134   thorpej };
   1496       1.93   thorpej 
   1497      1.157     perry static inline int
   1498      1.134   thorpej pmap_get_vac_flags(const struct vm_page *pg)
   1499      1.134   thorpej {
   1500      1.134   thorpej 	int kidx, uidx;
   1501       1.93   thorpej 
   1502      1.134   thorpej 	kidx = 0;
   1503      1.134   thorpej 	if (pg->mdpage.kro_mappings || pg->mdpage.krw_mappings > 1)
   1504      1.134   thorpej 		kidx |= 1;
   1505      1.134   thorpej 	if (pg->mdpage.krw_mappings)
   1506      1.134   thorpej 		kidx |= 2;
   1507      1.134   thorpej 
   1508      1.134   thorpej 	uidx = 0;
   1509      1.134   thorpej 	if (pg->mdpage.uro_mappings || pg->mdpage.urw_mappings > 1)
   1510      1.134   thorpej 		uidx |= 1;
   1511      1.134   thorpej 	if (pg->mdpage.urw_mappings)
   1512      1.134   thorpej 		uidx |= 2;
   1513      1.111   thorpej 
   1514      1.134   thorpej 	return (pmap_vac_flags[uidx][kidx]);
   1515      1.111   thorpej }
   1516      1.111   thorpej 
   1517      1.157     perry static inline void
   1518      1.134   thorpej pmap_vac_me_harder(struct vm_page *pg, pmap_t pm, vaddr_t va)
   1519      1.111   thorpej {
   1520      1.134   thorpej 	int nattr;
   1521      1.134   thorpej 
   1522      1.134   thorpej 	nattr = pmap_get_vac_flags(pg);
   1523      1.111   thorpej 
   1524      1.134   thorpej 	if (nattr < 0) {
   1525      1.134   thorpej 		pg->mdpage.pvh_attrs &= ~PVF_NC;
   1526      1.134   thorpej 		return;
   1527      1.134   thorpej 	}
   1528       1.93   thorpej 
   1529      1.134   thorpej 	if (nattr == 0 && (pg->mdpage.pvh_attrs & PVF_NC) == 0)
   1530      1.134   thorpej 		return;
   1531      1.111   thorpej 
   1532      1.134   thorpej 	if (pm == pmap_kernel())
   1533      1.134   thorpej 		pmap_vac_me_kpmap(pg, pm, va);
   1534      1.134   thorpej 	else
   1535      1.134   thorpej 		pmap_vac_me_user(pg, pm, va);
   1536      1.134   thorpej 
   1537      1.134   thorpej 	pg->mdpage.pvh_attrs = (pg->mdpage.pvh_attrs & ~PVF_NC) | nattr;
   1538       1.93   thorpej }
   1539       1.93   thorpej 
   1540      1.134   thorpej static void
   1541      1.134   thorpej pmap_vac_me_kpmap(struct vm_page *pg, pmap_t pm, vaddr_t va)
   1542        1.1      matt {
   1543      1.134   thorpej 	u_int u_cacheable, u_entries;
   1544      1.134   thorpej 	struct pv_entry *pv;
   1545      1.134   thorpej 	pmap_t last_pmap = pm;
   1546      1.134   thorpej 
   1547      1.134   thorpej 	/*
   1548      1.134   thorpej 	 * Pass one, see if there are both kernel and user pmaps for
   1549      1.134   thorpej 	 * this page.  Calculate whether there are user-writable or
   1550      1.134   thorpej 	 * kernel-writable pages.
   1551      1.134   thorpej 	 */
   1552      1.134   thorpej 	u_cacheable = 0;
   1553      1.134   thorpej 	for (pv = pg->mdpage.pvh_list; pv; pv = pv->pv_next) {
   1554      1.134   thorpej 		if (pv->pv_pmap != pm && (pv->pv_flags & PVF_NC) == 0)
   1555      1.134   thorpej 			u_cacheable++;
   1556        1.1      matt 	}
   1557        1.1      matt 
   1558      1.134   thorpej 	u_entries = pg->mdpage.urw_mappings + pg->mdpage.uro_mappings;
   1559        1.1      matt 
   1560      1.134   thorpej 	/*
   1561      1.134   thorpej 	 * We know we have just been updating a kernel entry, so if
   1562      1.134   thorpej 	 * all user pages are already cacheable, then there is nothing
   1563      1.134   thorpej 	 * further to do.
   1564      1.134   thorpej 	 */
   1565      1.134   thorpej 	if (pg->mdpage.k_mappings == 0 && u_cacheable == u_entries)
   1566      1.134   thorpej 		return;
   1567        1.1      matt 
   1568      1.134   thorpej 	if (u_entries) {
   1569      1.134   thorpej 		/*
   1570      1.134   thorpej 		 * Scan over the list again, for each entry, if it
   1571      1.134   thorpej 		 * might not be set correctly, call pmap_vac_me_user
   1572      1.134   thorpej 		 * to recalculate the settings.
   1573      1.134   thorpej 		 */
   1574      1.134   thorpej 		for (pv = pg->mdpage.pvh_list; pv; pv = pv->pv_next) {
   1575      1.134   thorpej 			/*
   1576      1.134   thorpej 			 * We know kernel mappings will get set
   1577      1.134   thorpej 			 * correctly in other calls.  We also know
   1578      1.134   thorpej 			 * that if the pmap is the same as last_pmap
   1579      1.134   thorpej 			 * then we've just handled this entry.
   1580      1.134   thorpej 			 */
   1581      1.134   thorpej 			if (pv->pv_pmap == pm || pv->pv_pmap == last_pmap)
   1582      1.134   thorpej 				continue;
   1583        1.1      matt 
   1584      1.134   thorpej 			/*
   1585      1.134   thorpej 			 * If there are kernel entries and this page
   1586      1.134   thorpej 			 * is writable but non-cacheable, then we can
   1587      1.134   thorpej 			 * skip this entry also.
   1588      1.134   thorpej 			 */
   1589      1.134   thorpej 			if (pg->mdpage.k_mappings &&
   1590      1.134   thorpej 			    (pv->pv_flags & (PVF_NC | PVF_WRITE)) ==
   1591      1.134   thorpej 			    (PVF_NC | PVF_WRITE))
   1592      1.134   thorpej 				continue;
   1593      1.111   thorpej 
   1594      1.134   thorpej 			/*
   1595      1.134   thorpej 			 * Similarly if there are no kernel-writable
   1596      1.134   thorpej 			 * entries and the page is already
   1597      1.134   thorpej 			 * read-only/cacheable.
   1598      1.134   thorpej 			 */
   1599      1.134   thorpej 			if (pg->mdpage.krw_mappings == 0 &&
   1600      1.134   thorpej 			    (pv->pv_flags & (PVF_NC | PVF_WRITE)) == 0)
   1601      1.134   thorpej 				continue;
   1602        1.5    toshii 
   1603      1.134   thorpej 			/*
   1604      1.134   thorpej 			 * For some of the remaining cases, we know
   1605      1.134   thorpej 			 * that we must recalculate, but for others we
   1606      1.134   thorpej 			 * can't tell if they are correct or not, so
   1607      1.134   thorpej 			 * we recalculate anyway.
   1608      1.134   thorpej 			 */
   1609      1.134   thorpej 			pmap_vac_me_user(pg, (last_pmap = pv->pv_pmap), 0);
   1610      1.134   thorpej 		}
   1611       1.48     chris 
   1612      1.134   thorpej 		if (pg->mdpage.k_mappings == 0)
   1613      1.134   thorpej 			return;
   1614      1.111   thorpej 	}
   1615      1.111   thorpej 
   1616      1.134   thorpej 	pmap_vac_me_user(pg, pm, va);
   1617      1.134   thorpej }
   1618      1.111   thorpej 
   1619      1.134   thorpej static void
   1620      1.134   thorpej pmap_vac_me_user(struct vm_page *pg, pmap_t pm, vaddr_t va)
   1621      1.134   thorpej {
   1622      1.134   thorpej 	pmap_t kpmap = pmap_kernel();
   1623      1.134   thorpej 	struct pv_entry *pv, *npv;
   1624      1.134   thorpej 	struct l2_bucket *l2b;
   1625      1.134   thorpej 	pt_entry_t *ptep, pte;
   1626      1.134   thorpej 	u_int entries = 0;
   1627      1.134   thorpej 	u_int writable = 0;
   1628      1.134   thorpej 	u_int cacheable_entries = 0;
   1629      1.134   thorpej 	u_int kern_cacheable = 0;
   1630      1.134   thorpej 	u_int other_writable = 0;
   1631       1.48     chris 
   1632      1.134   thorpej 	/*
   1633      1.134   thorpej 	 * Count mappings and writable mappings in this pmap.
   1634      1.134   thorpej 	 * Include kernel mappings as part of our own.
   1635      1.134   thorpej 	 * Keep a pointer to the first one.
   1636      1.134   thorpej 	 */
   1637      1.134   thorpej 	for (pv = npv = pg->mdpage.pvh_list; pv; pv = pv->pv_next) {
   1638      1.134   thorpej 		/* Count mappings in the same pmap */
   1639      1.134   thorpej 		if (pm == pv->pv_pmap || kpmap == pv->pv_pmap) {
   1640      1.134   thorpej 			if (entries++ == 0)
   1641      1.134   thorpej 				npv = pv;
   1642        1.1      matt 
   1643      1.134   thorpej 			/* Cacheable mappings */
   1644      1.134   thorpej 			if ((pv->pv_flags & PVF_NC) == 0) {
   1645      1.134   thorpej 				cacheable_entries++;
   1646      1.134   thorpej 				if (kpmap == pv->pv_pmap)
   1647      1.134   thorpej 					kern_cacheable++;
   1648      1.134   thorpej 			}
   1649      1.110   thorpej 
   1650      1.134   thorpej 			/* Writable mappings */
   1651      1.134   thorpej 			if (pv->pv_flags & PVF_WRITE)
   1652      1.134   thorpej 				++writable;
   1653      1.134   thorpej 		} else
   1654      1.134   thorpej 		if (pv->pv_flags & PVF_WRITE)
   1655      1.134   thorpej 			other_writable = 1;
   1656      1.134   thorpej 	}
   1657        1.1      matt 
   1658      1.134   thorpej 	/*
   1659      1.134   thorpej 	 * Enable or disable caching as necessary.
   1660      1.134   thorpej 	 * Note: the first entry might be part of the kernel pmap,
   1661      1.134   thorpej 	 * so we can't assume this is indicative of the state of the
   1662      1.134   thorpej 	 * other (maybe non-kpmap) entries.
   1663      1.134   thorpej 	 */
   1664      1.134   thorpej 	if ((entries > 1 && writable) ||
   1665      1.134   thorpej 	    (entries > 0 && pm == kpmap && other_writable)) {
   1666      1.134   thorpej 		if (cacheable_entries == 0)
   1667      1.134   thorpej 			return;
   1668        1.1      matt 
   1669      1.134   thorpej 		for (pv = npv; pv; pv = pv->pv_next) {
   1670      1.134   thorpej 			if ((pm != pv->pv_pmap && kpmap != pv->pv_pmap) ||
   1671      1.134   thorpej 			    (pv->pv_flags & PVF_NC))
   1672      1.134   thorpej 				continue;
   1673        1.1      matt 
   1674      1.134   thorpej 			pv->pv_flags |= PVF_NC;
   1675       1.26  rearnsha 
   1676      1.134   thorpej 			l2b = pmap_get_l2_bucket(pv->pv_pmap, pv->pv_va);
   1677      1.134   thorpej 			ptep = &l2b->l2b_kva[l2pte_index(pv->pv_va)];
   1678      1.134   thorpej 			pte = *ptep & ~L2_S_CACHE_MASK;
   1679      1.134   thorpej 
   1680      1.134   thorpej 			if ((va != pv->pv_va || pm != pv->pv_pmap) &&
   1681      1.134   thorpej 			    l2pte_valid(pte)) {
   1682      1.134   thorpej 				if (PV_BEEN_EXECD(pv->pv_flags)) {
   1683  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   1684      1.134   thorpej 					pmap_idcache_wbinv_range(pv->pv_pmap,
   1685      1.134   thorpej 					    pv->pv_va, PAGE_SIZE);
   1686  1.172.2.1      yamt #endif
   1687      1.134   thorpej 					pmap_tlb_flushID_SE(pv->pv_pmap,
   1688      1.134   thorpej 					    pv->pv_va);
   1689      1.134   thorpej 				} else
   1690      1.134   thorpej 				if (PV_BEEN_REFD(pv->pv_flags)) {
   1691  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   1692      1.134   thorpej 					pmap_dcache_wb_range(pv->pv_pmap,
   1693      1.160   thorpej 					    pv->pv_va, PAGE_SIZE, true,
   1694      1.134   thorpej 					    (pv->pv_flags & PVF_WRITE) == 0);
   1695  1.172.2.1      yamt #endif
   1696      1.134   thorpej 					pmap_tlb_flushD_SE(pv->pv_pmap,
   1697      1.134   thorpej 					    pv->pv_va);
   1698      1.134   thorpej 				}
   1699      1.134   thorpej 			}
   1700        1.1      matt 
   1701      1.134   thorpej 			*ptep = pte;
   1702      1.134   thorpej 			PTE_SYNC_CURRENT(pv->pv_pmap, ptep);
   1703      1.134   thorpej 		}
   1704      1.134   thorpej 		cpu_cpwait();
   1705      1.134   thorpej 	} else
   1706      1.134   thorpej 	if (entries > cacheable_entries) {
   1707        1.1      matt 		/*
   1708      1.134   thorpej 		 * Turn cacheing back on for some pages.  If it is a kernel
   1709      1.134   thorpej 		 * page, only do so if there are no other writable pages.
   1710        1.1      matt 		 */
   1711      1.134   thorpej 		for (pv = npv; pv; pv = pv->pv_next) {
   1712      1.134   thorpej 			if (!(pv->pv_flags & PVF_NC) || (pm != pv->pv_pmap &&
   1713      1.134   thorpej 			    (kpmap != pv->pv_pmap || other_writable)))
   1714      1.134   thorpej 				continue;
   1715      1.134   thorpej 
   1716      1.134   thorpej 			pv->pv_flags &= ~PVF_NC;
   1717        1.1      matt 
   1718      1.134   thorpej 			l2b = pmap_get_l2_bucket(pv->pv_pmap, pv->pv_va);
   1719      1.134   thorpej 			ptep = &l2b->l2b_kva[l2pte_index(pv->pv_va)];
   1720      1.134   thorpej 			pte = (*ptep & ~L2_S_CACHE_MASK) | pte_l2_s_cache_mode;
   1721      1.134   thorpej 
   1722      1.134   thorpej 			if (l2pte_valid(pte)) {
   1723      1.134   thorpej 				if (PV_BEEN_EXECD(pv->pv_flags)) {
   1724      1.134   thorpej 					pmap_tlb_flushID_SE(pv->pv_pmap,
   1725      1.134   thorpej 					    pv->pv_va);
   1726      1.134   thorpej 				} else
   1727      1.134   thorpej 				if (PV_BEEN_REFD(pv->pv_flags)) {
   1728      1.134   thorpej 					pmap_tlb_flushD_SE(pv->pv_pmap,
   1729      1.134   thorpej 					    pv->pv_va);
   1730      1.134   thorpej 				}
   1731      1.134   thorpej 			}
   1732        1.1      matt 
   1733      1.134   thorpej 			*ptep = pte;
   1734      1.134   thorpej 			PTE_SYNC_CURRENT(pv->pv_pmap, ptep);
   1735      1.134   thorpej 		}
   1736      1.111   thorpej 	}
   1737        1.1      matt }
   1738  1.172.2.1      yamt #endif
   1739  1.172.2.1      yamt 
   1740  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   1741  1.172.2.1      yamt /*
   1742  1.172.2.1      yamt  * For virtually indexed / physically tagged caches, what we have to worry
   1743  1.172.2.1      yamt  * about is illegal cache aliases.  To prevent this, we must ensure that
   1744  1.172.2.1      yamt  * virtual addresses that map the physical page use the same bits for those
   1745  1.172.2.1      yamt  * bits masked by "arm_cache_prefer_mask" (bits 12+).  If there is a conflict,
   1746  1.172.2.1      yamt  * all mappings of the page must be non-cached.
   1747  1.172.2.1      yamt  */
   1748  1.172.2.1      yamt #if 0
   1749  1.172.2.1      yamt static inline vaddr_t
   1750  1.172.2.1      yamt pmap_check_sets(paddr_t pa)
   1751  1.172.2.1      yamt {
   1752  1.172.2.1      yamt 	extern int arm_dcache_l2_nsets;
   1753  1.172.2.1      yamt 	int set, way;
   1754  1.172.2.1      yamt 	vaddr_t mask = 0;
   1755  1.172.2.1      yamt 	int v;
   1756  1.172.2.1      yamt 	pa |= 1;
   1757  1.172.2.1      yamt 	for (set = 0; set < (1 << arm_dcache_l2_nsets); set++) {
   1758  1.172.2.1      yamt 		for (way = 0; way < 4; way++) {
   1759  1.172.2.1      yamt 			v = (way << 30) | (set << 5);
   1760  1.172.2.1      yamt 			asm("mcr	p15, 3, %0, c15, c2, 0" :: "r"(v));
   1761  1.172.2.1      yamt 			asm("mrc	p15, 3, %0, c15, c0, 0" : "=r"(v));
   1762  1.172.2.1      yamt 
   1763  1.172.2.1      yamt 			if ((v & (1 | ~(PAGE_SIZE-1))) == pa) {
   1764  1.172.2.1      yamt 				mask |= 1 << (set >> 7);
   1765  1.172.2.1      yamt 			}
   1766  1.172.2.1      yamt 		}
   1767  1.172.2.1      yamt 	}
   1768  1.172.2.1      yamt 	return mask;
   1769  1.172.2.1      yamt }
   1770  1.172.2.1      yamt #endif
   1771  1.172.2.1      yamt static void
   1772  1.172.2.1      yamt pmap_vac_me_harder(struct vm_page *pg, pmap_t pm, vaddr_t va)
   1773  1.172.2.1      yamt {
   1774  1.172.2.1      yamt 	struct pv_entry *pv, pv0;
   1775  1.172.2.1      yamt 	vaddr_t tst_mask;
   1776  1.172.2.1      yamt 	bool bad_alias;
   1777  1.172.2.1      yamt 	struct l2_bucket *l2b;
   1778  1.172.2.1      yamt 	pt_entry_t *ptep, pte, opte;
   1779  1.172.2.1      yamt 
   1780  1.172.2.1      yamt 	/* do we need to do anything? */
   1781  1.172.2.1      yamt 	if (arm_cache_prefer_mask == 0)
   1782  1.172.2.1      yamt 		return;
   1783  1.172.2.1      yamt 
   1784  1.172.2.1      yamt 	NPDEBUG(PDB_VAC, printf("pmap_vac_me_harder: pg=%p, pmap=%p va=%08lx\n",
   1785  1.172.2.1      yamt 	    pg, pm, va));
   1786  1.172.2.1      yamt 
   1787  1.172.2.1      yamt #define popc4(x) \
   1788  1.172.2.1      yamt 	(((0x94 >> ((x & 3) << 1)) & 3) + ((0x94 >> ((x & 12) >> 1)) & 3))
   1789  1.172.2.1      yamt #if 0
   1790  1.172.2.1      yamt 	tst_mask = pmap_check_sets(pg->phys_addr);
   1791  1.172.2.1      yamt 	KASSERT(popc4(tst_mask) < 2);
   1792  1.172.2.1      yamt #endif
   1793  1.172.2.1      yamt 
   1794  1.172.2.1      yamt 	KASSERT(!va || pm || (pg->mdpage.pvh_attrs & PVF_KENTRY));
   1795  1.172.2.1      yamt 
   1796  1.172.2.1      yamt 	/* Already a conflict? */
   1797  1.172.2.1      yamt 	if (__predict_false(pg->mdpage.pvh_attrs & PVF_NC)) {
   1798  1.172.2.1      yamt 		/* just an add, things are already non-cached */
   1799  1.172.2.1      yamt 		bad_alias = false;
   1800  1.172.2.1      yamt 		if (va) {
   1801  1.172.2.1      yamt 			PMAPCOUNT(vac_color_none);
   1802  1.172.2.1      yamt 			bad_alias = true;
   1803  1.172.2.1      yamt 			goto fixup;
   1804  1.172.2.1      yamt 		}
   1805  1.172.2.1      yamt 		pv = pg->mdpage.pvh_list;
   1806  1.172.2.1      yamt 		/* the list can't be empty because it would be cachable */
   1807  1.172.2.1      yamt 		if (pg->mdpage.pvh_attrs & PVF_KENTRY) {
   1808  1.172.2.1      yamt 			tst_mask = pg->mdpage.pvh_attrs;
   1809  1.172.2.1      yamt 		} else {
   1810  1.172.2.1      yamt 			KASSERT(pv);
   1811  1.172.2.1      yamt 			tst_mask = pv->pv_va;
   1812  1.172.2.1      yamt 			pv = pv->pv_next;
   1813  1.172.2.1      yamt 		}
   1814  1.172.2.1      yamt 		tst_mask &= arm_cache_prefer_mask;
   1815  1.172.2.1      yamt 		for (; pv && !bad_alias; pv = pv->pv_next) {
   1816  1.172.2.1      yamt 			/* if there's a bad alias, stop checking. */
   1817  1.172.2.1      yamt 			if (tst_mask != (pv->pv_va & arm_cache_prefer_mask))
   1818  1.172.2.1      yamt 				bad_alias = true;
   1819  1.172.2.1      yamt 		}
   1820  1.172.2.1      yamt 		/* If no conflicting colors, set everything back to cached */
   1821  1.172.2.1      yamt 		if (!bad_alias) {
   1822  1.172.2.1      yamt 			PMAPCOUNT(vac_color_restore);
   1823  1.172.2.1      yamt 			pg->mdpage.pvh_attrs |= PVF_COLORED;
   1824  1.172.2.1      yamt 			if (!(pg->mdpage.pvh_attrs & PVF_KENTRY)) {
   1825  1.172.2.1      yamt 				pg->mdpage.pvh_attrs &= PAGE_SIZE - 1;
   1826  1.172.2.1      yamt 				pg->mdpage.pvh_attrs |= tst_mask;
   1827  1.172.2.1      yamt 			}
   1828  1.172.2.1      yamt 			pg->mdpage.pvh_attrs &= ~PVF_NC;
   1829  1.172.2.1      yamt 		} else {
   1830  1.172.2.1      yamt 			KASSERT(pg->mdpage.pvh_list != NULL);
   1831  1.172.2.1      yamt 			KASSERT((pg->mdpage.pvh_attrs & PVF_KENTRY)
   1832  1.172.2.1      yamt 			     || pg->mdpage.pvh_list->pv_next != NULL);
   1833  1.172.2.1      yamt 		}
   1834  1.172.2.1      yamt 	} else if (!va) {
   1835  1.172.2.1      yamt 		KASSERT(pmap_is_page_colored_p(pg));
   1836  1.172.2.1      yamt 		if (pm == NULL)
   1837  1.172.2.1      yamt 			pg->mdpage.pvh_attrs &=
   1838  1.172.2.1      yamt 			    (PAGE_SIZE - 1) | arm_cache_prefer_mask;
   1839  1.172.2.1      yamt 		return;
   1840  1.172.2.1      yamt 	} else if (!pmap_is_page_colored_p(pg)) {
   1841  1.172.2.1      yamt 		/* not colored so we just use its color */
   1842  1.172.2.1      yamt 		PMAPCOUNT(vac_color_new);
   1843  1.172.2.1      yamt 		pg->mdpage.pvh_attrs &= PAGE_SIZE - 1;
   1844  1.172.2.1      yamt 		if (pm == NULL)
   1845  1.172.2.1      yamt 			pg->mdpage.pvh_attrs |= PVF_COLORED | va;
   1846  1.172.2.1      yamt 		else
   1847  1.172.2.1      yamt 			pg->mdpage.pvh_attrs |= PVF_COLORED
   1848  1.172.2.1      yamt 			    | (va & arm_cache_prefer_mask);
   1849  1.172.2.1      yamt 		return;
   1850  1.172.2.1      yamt 	} else if (!((pg->mdpage.pvh_attrs ^ va) & arm_cache_prefer_mask)) {
   1851  1.172.2.1      yamt 		if (pm == NULL) {
   1852  1.172.2.1      yamt 			pg->mdpage.pvh_attrs &= PAGE_SIZE - 1;
   1853  1.172.2.1      yamt 			pg->mdpage.pvh_attrs |= va;
   1854  1.172.2.1      yamt 		}
   1855  1.172.2.1      yamt 		if (pg->mdpage.pvh_list)
   1856  1.172.2.1      yamt 			PMAPCOUNT(vac_color_reuse);
   1857  1.172.2.1      yamt 		else
   1858  1.172.2.1      yamt 			PMAPCOUNT(vac_color_ok);
   1859  1.172.2.1      yamt 		/* matching color, just return */
   1860  1.172.2.1      yamt 		return;
   1861  1.172.2.1      yamt 	} else {
   1862  1.172.2.1      yamt 		/* color conflict.  evict from cache. */
   1863  1.172.2.1      yamt 		pmap_flush_page(pg);
   1864  1.172.2.1      yamt 
   1865  1.172.2.1      yamt 		/* the list can't be empty because this was a enter/modify */
   1866  1.172.2.1      yamt 		pv = pg->mdpage.pvh_list;
   1867  1.172.2.1      yamt 		KASSERT((pg->mdpage.pvh_attrs & PVF_KENTRY) || pv);
   1868  1.172.2.1      yamt 
   1869  1.172.2.1      yamt 		/*
   1870  1.172.2.1      yamt 		 * If there's only one mapped page, change color to the
   1871  1.172.2.1      yamt 		 * page's new color and return.
   1872  1.172.2.1      yamt 		 */
   1873  1.172.2.1      yamt 		if (((pg->mdpage.pvh_attrs & PVF_KENTRY)
   1874  1.172.2.1      yamt 		    ? pv : pv->pv_next) == NULL) {
   1875  1.172.2.1      yamt 			PMAPCOUNT(vac_color_change);
   1876  1.172.2.1      yamt 			pg->mdpage.pvh_attrs &= PAGE_SIZE - 1;
   1877  1.172.2.1      yamt 			if (pm == NULL)
   1878  1.172.2.1      yamt 				pg->mdpage.pvh_attrs |= va;
   1879  1.172.2.1      yamt 			else
   1880  1.172.2.1      yamt 				pg->mdpage.pvh_attrs |=
   1881  1.172.2.1      yamt 				    (va & arm_cache_prefer_mask);
   1882  1.172.2.1      yamt 			return;
   1883  1.172.2.1      yamt 		}
   1884  1.172.2.1      yamt 		bad_alias = true;
   1885  1.172.2.1      yamt 		pg->mdpage.pvh_attrs &= ~PVF_COLORED;
   1886  1.172.2.1      yamt 		pg->mdpage.pvh_attrs |= PVF_NC;
   1887  1.172.2.1      yamt 		PMAPCOUNT(vac_color_erase);
   1888  1.172.2.1      yamt 	}
   1889  1.172.2.1      yamt 
   1890  1.172.2.1      yamt   fixup:
   1891  1.172.2.1      yamt 	/*
   1892  1.172.2.1      yamt 	 * If the pmap is NULL, then we got called from pmap_kenter_pa
   1893  1.172.2.1      yamt 	 * and we must save the kenter'ed va.  And this changes the
   1894  1.172.2.1      yamt 	 * color to match the kenter'ed page.  if this is a remove clear
   1895  1.172.2.1      yamt 	 * saved va bits which retaining the color bits.
   1896  1.172.2.1      yamt 	 */
   1897  1.172.2.1      yamt 	if (pm == NULL) {
   1898  1.172.2.1      yamt 		if (va) {
   1899  1.172.2.1      yamt 			pg->mdpage.pvh_attrs &= (PAGE_SIZE - 1);
   1900  1.172.2.1      yamt 			pg->mdpage.pvh_attrs |= va;
   1901  1.172.2.1      yamt 		} else {
   1902  1.172.2.1      yamt 			pg->mdpage.pvh_attrs &=
   1903  1.172.2.1      yamt 			    ((PAGE_SIZE - 1) | arm_cache_prefer_mask);
   1904  1.172.2.1      yamt 		}
   1905  1.172.2.1      yamt 	}
   1906  1.172.2.1      yamt 
   1907  1.172.2.1      yamt 	pv = pg->mdpage.pvh_list;
   1908  1.172.2.1      yamt 
   1909  1.172.2.1      yamt 	/*
   1910  1.172.2.1      yamt 	 * If this page has an kenter'ed mapping, fake up a pv entry.
   1911  1.172.2.1      yamt 	 */
   1912  1.172.2.1      yamt 	if (__predict_false(pg->mdpage.pvh_attrs & PVF_KENTRY)) {
   1913  1.172.2.1      yamt 		pv0.pv_pmap = pmap_kernel();
   1914  1.172.2.1      yamt 		pv0.pv_va = pg->mdpage.pvh_attrs & ~(PAGE_SIZE - 1);
   1915  1.172.2.1      yamt 		pv0.pv_next = pv;
   1916  1.172.2.1      yamt 		pv0.pv_flags = PVF_REF;
   1917  1.172.2.1      yamt 		pv = &pv0;
   1918  1.172.2.1      yamt 	}
   1919  1.172.2.1      yamt 
   1920  1.172.2.1      yamt 	/*
   1921  1.172.2.1      yamt 	 * Turn cacheing on/off for all pages.
   1922  1.172.2.1      yamt 	 */
   1923  1.172.2.1      yamt 	for (; pv; pv = pv->pv_next) {
   1924  1.172.2.1      yamt 		l2b = pmap_get_l2_bucket(pv->pv_pmap, pv->pv_va);
   1925  1.172.2.1      yamt 		ptep = &l2b->l2b_kva[l2pte_index(pv->pv_va)];
   1926  1.172.2.1      yamt 		opte = *ptep;
   1927  1.172.2.1      yamt 		pte = opte & ~L2_S_CACHE_MASK;
   1928  1.172.2.1      yamt 		if (bad_alias) {
   1929  1.172.2.1      yamt 			pv->pv_flags |= PVF_NC;
   1930  1.172.2.1      yamt 		} else {
   1931  1.172.2.1      yamt 			pv->pv_flags &= ~PVF_NC;
   1932  1.172.2.1      yamt 			pte |= pte_l2_s_cache_mode;
   1933  1.172.2.1      yamt 		}
   1934  1.172.2.1      yamt 		if (opte == pte)	/* only update is there's a change */
   1935  1.172.2.1      yamt 			continue;
   1936  1.172.2.1      yamt 
   1937  1.172.2.1      yamt 		if (l2pte_valid(pte)) {
   1938  1.172.2.1      yamt 			if (PV_BEEN_EXECD(pv->pv_flags)) {
   1939  1.172.2.1      yamt 				pmap_tlb_flushID_SE(pv->pv_pmap, pv->pv_va);
   1940  1.172.2.1      yamt 			} else if (PV_BEEN_REFD(pv->pv_flags)) {
   1941  1.172.2.1      yamt 				pmap_tlb_flushD_SE(pv->pv_pmap, pv->pv_va);
   1942  1.172.2.1      yamt 			}
   1943  1.172.2.1      yamt 		}
   1944  1.172.2.1      yamt 
   1945  1.172.2.1      yamt 		*ptep = pte;
   1946  1.172.2.1      yamt 		PTE_SYNC_CURRENT(pv->pv_pmap, ptep);
   1947  1.172.2.1      yamt 	}
   1948  1.172.2.1      yamt }
   1949  1.172.2.1      yamt #endif	/* PMAP_CACHE_VIPT */
   1950  1.172.2.1      yamt 
   1951        1.1      matt 
   1952        1.1      matt /*
   1953      1.134   thorpej  * Modify pte bits for all ptes corresponding to the given physical address.
   1954      1.134   thorpej  * We use `maskbits' rather than `clearbits' because we're always passing
   1955      1.134   thorpej  * constants and the latter would require an extra inversion at run-time.
   1956        1.1      matt  */
   1957      1.134   thorpej static void
   1958      1.134   thorpej pmap_clearbit(struct vm_page *pg, u_int maskbits)
   1959        1.1      matt {
   1960      1.134   thorpej 	struct l2_bucket *l2b;
   1961      1.134   thorpej 	struct pv_entry *pv;
   1962      1.134   thorpej 	pt_entry_t *ptep, npte, opte;
   1963      1.134   thorpej 	pmap_t pm;
   1964      1.134   thorpej 	vaddr_t va;
   1965      1.134   thorpej 	u_int oflags;
   1966  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   1967  1.172.2.1      yamt 	const bool want_syncicache = PV_IS_EXEC_P(pg->mdpage.pvh_attrs);
   1968  1.172.2.1      yamt 	bool need_syncicache = false;
   1969  1.172.2.1      yamt 	bool did_syncicache = false;
   1970  1.172.2.1      yamt #endif
   1971        1.1      matt 
   1972      1.134   thorpej 	NPDEBUG(PDB_BITS,
   1973      1.134   thorpej 	    printf("pmap_clearbit: pg %p (0x%08lx) mask 0x%x\n",
   1974      1.155      yamt 	    pg, VM_PAGE_TO_PHYS(pg), maskbits));
   1975        1.1      matt 
   1976      1.134   thorpej 	PMAP_HEAD_TO_MAP_LOCK();
   1977      1.134   thorpej 	simple_lock(&pg->mdpage.pvh_slock);
   1978       1.17     chris 
   1979  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   1980  1.172.2.1      yamt 	/*
   1981  1.172.2.1      yamt 	 * If we might want to sync the I-cache and we've modified it,
   1982  1.172.2.1      yamt 	 * then we know we definitely need to sync or discard it.
   1983  1.172.2.1      yamt 	 */
   1984  1.172.2.1      yamt 	if (want_syncicache)
   1985  1.172.2.1      yamt 		need_syncicache = pg->mdpage.pvh_attrs & PVF_MOD;
   1986  1.172.2.1      yamt #endif
   1987       1.17     chris 	/*
   1988      1.134   thorpej 	 * Clear saved attributes (modify, reference)
   1989       1.17     chris 	 */
   1990      1.134   thorpej 	pg->mdpage.pvh_attrs &= ~(maskbits & (PVF_MOD | PVF_REF));
   1991      1.134   thorpej 
   1992      1.134   thorpej 	if (pg->mdpage.pvh_list == NULL) {
   1993  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   1994  1.172.2.1      yamt 		if (need_syncicache) {
   1995  1.172.2.1      yamt 			/*
   1996  1.172.2.1      yamt 			 * No one has it mapped, so just discard it.  The next
   1997  1.172.2.1      yamt 			 * exec remapping will cause it to be synced.
   1998  1.172.2.1      yamt 			 */
   1999  1.172.2.1      yamt 			pg->mdpage.pvh_attrs &= ~PVF_EXEC;
   2000  1.172.2.1      yamt 			PMAPCOUNT(exec_discarded_clearbit);
   2001  1.172.2.1      yamt 		}
   2002  1.172.2.1      yamt #endif
   2003      1.134   thorpej 		simple_unlock(&pg->mdpage.pvh_slock);
   2004      1.134   thorpej 		PMAP_HEAD_TO_MAP_UNLOCK();
   2005       1.17     chris 		return;
   2006        1.1      matt 	}
   2007        1.1      matt 
   2008       1.17     chris 	/*
   2009      1.134   thorpej 	 * Loop over all current mappings setting/clearing as appropos
   2010       1.17     chris 	 */
   2011      1.134   thorpej 	for (pv = pg->mdpage.pvh_list; pv; pv = pv->pv_next) {
   2012      1.134   thorpej 		va = pv->pv_va;
   2013      1.134   thorpej 		pm = pv->pv_pmap;
   2014      1.134   thorpej 		oflags = pv->pv_flags;
   2015      1.134   thorpej 		pv->pv_flags &= ~maskbits;
   2016       1.48     chris 
   2017      1.134   thorpej 		pmap_acquire_pmap_lock(pm);
   2018       1.48     chris 
   2019      1.134   thorpej 		l2b = pmap_get_l2_bucket(pm, va);
   2020      1.134   thorpej 		KDASSERT(l2b != NULL);
   2021        1.1      matt 
   2022      1.134   thorpej 		ptep = &l2b->l2b_kva[l2pte_index(va)];
   2023      1.134   thorpej 		npte = opte = *ptep;
   2024      1.114   thorpej 
   2025      1.134   thorpej 		NPDEBUG(PDB_BITS,
   2026      1.134   thorpej 		    printf(
   2027      1.134   thorpej 		    "pmap_clearbit: pv %p, pm %p, va 0x%08lx, flag 0x%x\n",
   2028      1.134   thorpej 		    pv, pv->pv_pmap, pv->pv_va, oflags));
   2029      1.114   thorpej 
   2030      1.134   thorpej 		if (maskbits & (PVF_WRITE|PVF_MOD)) {
   2031  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2032      1.134   thorpej 			if ((pv->pv_flags & PVF_NC)) {
   2033      1.134   thorpej 				/*
   2034      1.134   thorpej 				 * Entry is not cacheable:
   2035      1.134   thorpej 				 *
   2036      1.134   thorpej 				 * Don't turn caching on again if this is a
   2037      1.134   thorpej 				 * modified emulation. This would be
   2038      1.134   thorpej 				 * inconsitent with the settings created by
   2039      1.134   thorpej 				 * pmap_vac_me_harder(). Otherwise, it's safe
   2040      1.134   thorpej 				 * to re-enable cacheing.
   2041      1.134   thorpej 				 *
   2042      1.134   thorpej 				 * There's no need to call pmap_vac_me_harder()
   2043      1.134   thorpej 				 * here: all pages are losing their write
   2044      1.134   thorpej 				 * permission.
   2045      1.134   thorpej 				 */
   2046      1.134   thorpej 				if (maskbits & PVF_WRITE) {
   2047      1.134   thorpej 					npte |= pte_l2_s_cache_mode;
   2048      1.134   thorpej 					pv->pv_flags &= ~PVF_NC;
   2049      1.134   thorpej 				}
   2050      1.134   thorpej 			} else
   2051      1.134   thorpej 			if (opte & L2_S_PROT_W) {
   2052      1.134   thorpej 				/*
   2053      1.134   thorpej 				 * Entry is writable/cacheable: check if pmap
   2054      1.134   thorpej 				 * is current if it is flush it, otherwise it
   2055      1.134   thorpej 				 * won't be in the cache
   2056      1.134   thorpej 				 */
   2057      1.134   thorpej 				if (PV_BEEN_EXECD(oflags))
   2058      1.134   thorpej 					pmap_idcache_wbinv_range(pm, pv->pv_va,
   2059      1.134   thorpej 					    PAGE_SIZE);
   2060      1.134   thorpej 				else
   2061      1.134   thorpej 				if (PV_BEEN_REFD(oflags))
   2062      1.134   thorpej 					pmap_dcache_wb_range(pm, pv->pv_va,
   2063      1.134   thorpej 					    PAGE_SIZE,
   2064  1.172.2.1      yamt 					    (maskbits & PVF_REF) != 0, false);
   2065      1.134   thorpej 			}
   2066  1.172.2.1      yamt #endif
   2067      1.111   thorpej 
   2068      1.134   thorpej 			/* make the pte read only */
   2069      1.134   thorpej 			npte &= ~L2_S_PROT_W;
   2070      1.111   thorpej 
   2071  1.172.2.1      yamt 			if (maskbits & oflags & PVF_WRITE) {
   2072      1.134   thorpej 				/*
   2073      1.134   thorpej 				 * Keep alias accounting up to date
   2074      1.134   thorpej 				 */
   2075      1.134   thorpej 				if (pv->pv_pmap == pmap_kernel()) {
   2076  1.172.2.1      yamt 					pg->mdpage.krw_mappings--;
   2077  1.172.2.1      yamt 					pg->mdpage.kro_mappings++;
   2078  1.172.2.1      yamt 				} else {
   2079      1.134   thorpej 					pg->mdpage.urw_mappings--;
   2080      1.134   thorpej 					pg->mdpage.uro_mappings++;
   2081      1.134   thorpej 				}
   2082  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   2083  1.172.2.1      yamt 				if (want_syncicache)
   2084  1.172.2.1      yamt 					need_syncicache = true;
   2085  1.172.2.1      yamt #endif
   2086      1.134   thorpej 			}
   2087      1.134   thorpej 		}
   2088        1.1      matt 
   2089      1.134   thorpej 		if (maskbits & PVF_REF) {
   2090  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2091      1.134   thorpej 			if ((pv->pv_flags & PVF_NC) == 0 &&
   2092  1.172.2.1      yamt 			    (maskbits & (PVF_WRITE|PVF_MOD)) == 0 &&
   2093  1.172.2.1      yamt 			    l2pte_valid(npte)) {
   2094      1.134   thorpej 				/*
   2095      1.134   thorpej 				 * Check npte here; we may have already
   2096      1.134   thorpej 				 * done the wbinv above, and the validity
   2097      1.134   thorpej 				 * of the PTE is the same for opte and
   2098      1.134   thorpej 				 * npte.
   2099      1.134   thorpej 				 */
   2100  1.172.2.1      yamt 				/* XXXJRT need idcache_inv_range */
   2101  1.172.2.1      yamt 				if (PV_BEEN_EXECD(oflags))
   2102  1.172.2.1      yamt 					pmap_idcache_wbinv_range(pm,
   2103  1.172.2.1      yamt 					    pv->pv_va, PAGE_SIZE);
   2104  1.172.2.1      yamt 				else
   2105  1.172.2.1      yamt 				if (PV_BEEN_REFD(oflags))
   2106  1.172.2.1      yamt 					pmap_dcache_wb_range(pm,
   2107  1.172.2.1      yamt 					    pv->pv_va, PAGE_SIZE,
   2108  1.172.2.1      yamt 					    true, true);
   2109      1.134   thorpej 			}
   2110  1.172.2.1      yamt #endif
   2111        1.1      matt 
   2112      1.134   thorpej 			/*
   2113      1.134   thorpej 			 * Make the PTE invalid so that we will take a
   2114      1.134   thorpej 			 * page fault the next time the mapping is
   2115      1.134   thorpej 			 * referenced.
   2116      1.134   thorpej 			 */
   2117      1.134   thorpej 			npte &= ~L2_TYPE_MASK;
   2118      1.134   thorpej 			npte |= L2_TYPE_INV;
   2119      1.134   thorpej 		}
   2120        1.1      matt 
   2121      1.134   thorpej 		if (npte != opte) {
   2122      1.134   thorpej 			*ptep = npte;
   2123      1.134   thorpej 			PTE_SYNC(ptep);
   2124      1.134   thorpej 			/* Flush the TLB entry if a current pmap. */
   2125      1.134   thorpej 			if (PV_BEEN_EXECD(oflags))
   2126      1.134   thorpej 				pmap_tlb_flushID_SE(pm, pv->pv_va);
   2127      1.134   thorpej 			else
   2128      1.134   thorpej 			if (PV_BEEN_REFD(oflags))
   2129      1.134   thorpej 				pmap_tlb_flushD_SE(pm, pv->pv_va);
   2130      1.134   thorpej 		}
   2131        1.1      matt 
   2132      1.134   thorpej 		pmap_release_pmap_lock(pm);
   2133      1.133   thorpej 
   2134      1.134   thorpej 		NPDEBUG(PDB_BITS,
   2135      1.134   thorpej 		    printf("pmap_clearbit: pm %p va 0x%lx opte 0x%08x npte 0x%08x\n",
   2136      1.134   thorpej 		    pm, va, opte, npte));
   2137      1.134   thorpej 	}
   2138      1.133   thorpej 
   2139  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   2140  1.172.2.1      yamt 	/*
   2141  1.172.2.1      yamt 	 * If we need to sync the I-cache and we haven't done it yet, do it.
   2142  1.172.2.1      yamt 	 */
   2143  1.172.2.1      yamt 	if (need_syncicache && !did_syncicache) {
   2144  1.172.2.1      yamt 		pmap_syncicache_page(pg);
   2145  1.172.2.1      yamt 		PMAPCOUNT(exec_synced_clearbit);
   2146  1.172.2.1      yamt 	}
   2147  1.172.2.1      yamt #endif
   2148  1.172.2.1      yamt 
   2149      1.134   thorpej 	simple_unlock(&pg->mdpage.pvh_slock);
   2150      1.134   thorpej 	PMAP_HEAD_TO_MAP_UNLOCK();
   2151        1.1      matt }
   2152        1.1      matt 
   2153        1.1      matt /*
   2154      1.134   thorpej  * pmap_clean_page()
   2155      1.134   thorpej  *
   2156      1.134   thorpej  * This is a local function used to work out the best strategy to clean
   2157      1.134   thorpej  * a single page referenced by its entry in the PV table. It's used by
   2158      1.134   thorpej  * pmap_copy_page, pmap_zero page and maybe some others later on.
   2159      1.134   thorpej  *
   2160      1.134   thorpej  * Its policy is effectively:
   2161      1.134   thorpej  *  o If there are no mappings, we don't bother doing anything with the cache.
   2162      1.134   thorpej  *  o If there is one mapping, we clean just that page.
   2163      1.134   thorpej  *  o If there are multiple mappings, we clean the entire cache.
   2164      1.134   thorpej  *
   2165      1.134   thorpej  * So that some functions can be further optimised, it returns 0 if it didn't
   2166      1.134   thorpej  * clean the entire cache, or 1 if it did.
   2167      1.134   thorpej  *
   2168      1.134   thorpej  * XXX One bug in this routine is that if the pv_entry has a single page
   2169      1.134   thorpej  * mapped at 0x00000000 a whole cache clean will be performed rather than
   2170      1.134   thorpej  * just the 1 page. Since this should not occur in everyday use and if it does
   2171      1.134   thorpej  * it will just result in not the most efficient clean for the page.
   2172        1.1      matt  */
   2173  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2174      1.134   thorpej static int
   2175      1.159   thorpej pmap_clean_page(struct pv_entry *pv, bool is_src)
   2176        1.1      matt {
   2177      1.134   thorpej 	pmap_t pm, pm_to_clean = NULL;
   2178      1.134   thorpej 	struct pv_entry *npv;
   2179      1.134   thorpej 	u_int cache_needs_cleaning = 0;
   2180      1.134   thorpej 	u_int flags = 0;
   2181      1.134   thorpej 	vaddr_t page_to_clean = 0;
   2182        1.1      matt 
   2183      1.134   thorpej 	if (pv == NULL) {
   2184      1.134   thorpej 		/* nothing mapped in so nothing to flush */
   2185       1.17     chris 		return (0);
   2186      1.108   thorpej 	}
   2187       1.17     chris 
   2188      1.108   thorpej 	/*
   2189      1.134   thorpej 	 * Since we flush the cache each time we change to a different
   2190      1.134   thorpej 	 * user vmspace, we only need to flush the page if it is in the
   2191      1.134   thorpej 	 * current pmap.
   2192       1.17     chris 	 */
   2193       1.17     chris 	if (curproc)
   2194      1.134   thorpej 		pm = curproc->p_vmspace->vm_map.pmap;
   2195       1.17     chris 	else
   2196      1.134   thorpej 		pm = pmap_kernel();
   2197       1.17     chris 
   2198       1.17     chris 	for (npv = pv; npv; npv = npv->pv_next) {
   2199      1.134   thorpej 		if (npv->pv_pmap == pmap_kernel() || npv->pv_pmap == pm) {
   2200      1.134   thorpej 			flags |= npv->pv_flags;
   2201      1.108   thorpej 			/*
   2202      1.108   thorpej 			 * The page is mapped non-cacheable in
   2203       1.17     chris 			 * this map.  No need to flush the cache.
   2204       1.17     chris 			 */
   2205       1.78   thorpej 			if (npv->pv_flags & PVF_NC) {
   2206       1.17     chris #ifdef DIAGNOSTIC
   2207       1.17     chris 				if (cache_needs_cleaning)
   2208       1.17     chris 					panic("pmap_clean_page: "
   2209      1.108   thorpej 					    "cache inconsistency");
   2210       1.17     chris #endif
   2211       1.17     chris 				break;
   2212      1.108   thorpej 			} else if (is_src && (npv->pv_flags & PVF_WRITE) == 0)
   2213       1.17     chris 				continue;
   2214      1.108   thorpej 			if (cache_needs_cleaning) {
   2215       1.17     chris 				page_to_clean = 0;
   2216       1.17     chris 				break;
   2217      1.134   thorpej 			} else {
   2218       1.17     chris 				page_to_clean = npv->pv_va;
   2219      1.134   thorpej 				pm_to_clean = npv->pv_pmap;
   2220      1.134   thorpej 			}
   2221      1.134   thorpej 			cache_needs_cleaning = 1;
   2222       1.17     chris 		}
   2223        1.1      matt 	}
   2224        1.1      matt 
   2225      1.108   thorpej 	if (page_to_clean) {
   2226      1.134   thorpej 		if (PV_BEEN_EXECD(flags))
   2227      1.134   thorpej 			pmap_idcache_wbinv_range(pm_to_clean, page_to_clean,
   2228      1.134   thorpej 			    PAGE_SIZE);
   2229      1.134   thorpej 		else
   2230      1.134   thorpej 			pmap_dcache_wb_range(pm_to_clean, page_to_clean,
   2231      1.134   thorpej 			    PAGE_SIZE, !is_src, (flags & PVF_WRITE) == 0);
   2232      1.108   thorpej 	} else if (cache_needs_cleaning) {
   2233      1.134   thorpej 		if (PV_BEEN_EXECD(flags))
   2234      1.134   thorpej 			pmap_idcache_wbinv_all(pm);
   2235      1.134   thorpej 		else
   2236      1.134   thorpej 			pmap_dcache_wbinv_all(pm);
   2237        1.1      matt 		return (1);
   2238        1.1      matt 	}
   2239        1.1      matt 	return (0);
   2240        1.1      matt }
   2241  1.172.2.1      yamt #endif
   2242  1.172.2.1      yamt 
   2243  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   2244  1.172.2.1      yamt /*
   2245  1.172.2.1      yamt  * Sync a page with the I-cache.  Since this is a VIPT, we must pick the
   2246  1.172.2.1      yamt  * right cache alias to make sure we flush the right stuff.
   2247  1.172.2.1      yamt  */
   2248  1.172.2.1      yamt void
   2249  1.172.2.1      yamt pmap_syncicache_page(struct vm_page *pg)
   2250  1.172.2.1      yamt {
   2251  1.172.2.1      yamt 	const vsize_t va_offset = pg->mdpage.pvh_attrs & arm_cache_prefer_mask;
   2252  1.172.2.1      yamt 	pt_entry_t * const ptep = &cdst_pte[va_offset >> PGSHIFT];
   2253  1.172.2.1      yamt 
   2254  1.172.2.1      yamt 	NPDEBUG(PDB_EXEC, printf("pmap_syncicache_page: pg=%p (attrs=%#x)\n",
   2255  1.172.2.1      yamt 	    pg, pg->mdpage.pvh_attrs));
   2256  1.172.2.1      yamt 	/*
   2257  1.172.2.1      yamt 	 * No need to clean the page if it's non-cached.
   2258  1.172.2.1      yamt 	 */
   2259  1.172.2.1      yamt 	if (pg->mdpage.pvh_attrs & PVF_NC)
   2260  1.172.2.1      yamt 		return;
   2261  1.172.2.1      yamt 	KASSERT(pg->mdpage.pvh_attrs & PVF_COLORED);
   2262  1.172.2.1      yamt 
   2263  1.172.2.1      yamt 	pmap_tlb_flushID_SE(pmap_kernel(), cdstp + va_offset);
   2264  1.172.2.1      yamt 	/*
   2265  1.172.2.1      yamt 	 * Set up a PTE with the right coloring to flush existing cache lines.
   2266  1.172.2.1      yamt 	 */
   2267  1.172.2.1      yamt 	*ptep = L2_S_PROTO |
   2268  1.172.2.1      yamt 	    VM_PAGE_TO_PHYS(pg)
   2269  1.172.2.1      yamt 	    | L2_S_PROT(PTE_KERNEL, VM_PROT_READ|VM_PROT_WRITE)
   2270  1.172.2.1      yamt 	    | pte_l2_s_cache_mode;
   2271  1.172.2.1      yamt 	PTE_SYNC(ptep);
   2272  1.172.2.1      yamt 
   2273  1.172.2.1      yamt 	/*
   2274  1.172.2.1      yamt 	 * Flush it.
   2275  1.172.2.1      yamt 	 */
   2276  1.172.2.1      yamt 	cpu_icache_sync_range(cdstp + va_offset, PAGE_SIZE);
   2277  1.172.2.1      yamt 	/*
   2278  1.172.2.1      yamt 	 * Unmap the page.
   2279  1.172.2.1      yamt 	 */
   2280  1.172.2.1      yamt 	*ptep = 0;
   2281  1.172.2.1      yamt 	PTE_SYNC(ptep);
   2282  1.172.2.1      yamt 	pmap_tlb_flushID_SE(pmap_kernel(), cdstp + va_offset);
   2283  1.172.2.1      yamt 
   2284  1.172.2.1      yamt 	pg->mdpage.pvh_attrs |= PVF_EXEC;
   2285  1.172.2.1      yamt 	PMAPCOUNT(exec_synced);
   2286  1.172.2.1      yamt }
   2287  1.172.2.1      yamt 
   2288  1.172.2.1      yamt void
   2289  1.172.2.1      yamt pmap_flush_page(struct vm_page *pg)
   2290  1.172.2.1      yamt {
   2291  1.172.2.1      yamt 	const vsize_t va_offset = pg->mdpage.pvh_attrs & arm_cache_prefer_mask;
   2292  1.172.2.1      yamt 	const size_t pte_offset = va_offset >> PGSHIFT;
   2293  1.172.2.1      yamt 	pt_entry_t * const ptep = &cdst_pte[pte_offset];
   2294  1.172.2.1      yamt 	const pt_entry_t oldpte = *ptep;
   2295  1.172.2.1      yamt #if 0
   2296  1.172.2.1      yamt 	vaddr_t mask;
   2297  1.172.2.1      yamt #endif
   2298  1.172.2.1      yamt 
   2299  1.172.2.1      yamt 	KASSERT(!(pg->mdpage.pvh_attrs & PVF_NC));
   2300  1.172.2.1      yamt #if 0
   2301  1.172.2.1      yamt 	mask = pmap_check_sets(pg->phys_addr);
   2302  1.172.2.1      yamt 	KASSERT(popc4(mask) < 2);
   2303  1.172.2.1      yamt #endif
   2304  1.172.2.1      yamt 
   2305  1.172.2.1      yamt 	NPDEBUG(PDB_VAC, printf("pmap_flush_page: pg=%p (attrs=%#x)\n",
   2306  1.172.2.1      yamt 	    pg, pg->mdpage.pvh_attrs));
   2307  1.172.2.1      yamt 	pmap_tlb_flushID_SE(pmap_kernel(), cdstp + va_offset);
   2308  1.172.2.1      yamt 	/*
   2309  1.172.2.1      yamt 	 * Set up a PTE with the right coloring to flush existing cache entries.
   2310  1.172.2.1      yamt 	 */
   2311  1.172.2.1      yamt 	*ptep = L2_S_PROTO
   2312  1.172.2.1      yamt 	    | VM_PAGE_TO_PHYS(pg)
   2313  1.172.2.1      yamt 	    | L2_S_PROT(PTE_KERNEL, VM_PROT_READ|VM_PROT_WRITE)
   2314  1.172.2.1      yamt 	    | pte_l2_s_cache_mode;
   2315  1.172.2.1      yamt 	PTE_SYNC(ptep);
   2316  1.172.2.1      yamt 
   2317  1.172.2.1      yamt 	/*
   2318  1.172.2.1      yamt 	 * Flush it.
   2319  1.172.2.1      yamt 	 */
   2320  1.172.2.1      yamt 	cpu_idcache_wbinv_range(cdstp + va_offset, PAGE_SIZE);
   2321  1.172.2.1      yamt 
   2322  1.172.2.1      yamt 	/*
   2323  1.172.2.1      yamt 	 * Restore the page table entry since we might have interrupted
   2324  1.172.2.1      yamt 	 * pmap_zero_page or pmap_copy_page which was already using this pte.
   2325  1.172.2.1      yamt 	 */
   2326  1.172.2.1      yamt 	*ptep = oldpte;
   2327  1.172.2.1      yamt 	PTE_SYNC(ptep);
   2328  1.172.2.1      yamt 	pmap_tlb_flushID_SE(pmap_kernel(), cdstp + va_offset);
   2329  1.172.2.1      yamt #if 0
   2330  1.172.2.1      yamt 	mask = pmap_check_sets(pg->phys_addr);
   2331  1.172.2.1      yamt 	KASSERT(mask == 0);
   2332  1.172.2.1      yamt #endif
   2333  1.172.2.1      yamt }
   2334  1.172.2.1      yamt #endif /* PMAP_CACHE_VIPT */
   2335        1.1      matt 
   2336        1.1      matt /*
   2337      1.134   thorpej  * Routine:	pmap_page_remove
   2338      1.134   thorpej  * Function:
   2339      1.134   thorpej  *		Removes this physical page from
   2340      1.134   thorpej  *		all physical maps in which it resides.
   2341      1.134   thorpej  *		Reflects back modify bits to the pager.
   2342        1.1      matt  */
   2343      1.134   thorpej static void
   2344      1.134   thorpej pmap_page_remove(struct vm_page *pg)
   2345        1.1      matt {
   2346      1.134   thorpej 	struct l2_bucket *l2b;
   2347      1.134   thorpej 	struct pv_entry *pv, *npv;
   2348      1.134   thorpej 	pmap_t pm, curpm;
   2349      1.134   thorpej 	pt_entry_t *ptep, pte;
   2350      1.159   thorpej 	bool flush;
   2351      1.134   thorpej 	u_int flags;
   2352      1.134   thorpej 
   2353      1.134   thorpej 	NPDEBUG(PDB_FOLLOW,
   2354      1.155      yamt 	    printf("pmap_page_remove: pg %p (0x%08lx)\n", pg,
   2355      1.155      yamt 	    VM_PAGE_TO_PHYS(pg)));
   2356       1.71   thorpej 
   2357      1.134   thorpej 	PMAP_HEAD_TO_MAP_LOCK();
   2358      1.134   thorpej 	simple_lock(&pg->mdpage.pvh_slock);
   2359        1.1      matt 
   2360      1.134   thorpej 	pv = pg->mdpage.pvh_list;
   2361      1.134   thorpej 	if (pv == NULL) {
   2362  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   2363  1.172.2.1      yamt 		/*
   2364  1.172.2.1      yamt 		 * We *know* the page contents are about to be replaced.
   2365  1.172.2.1      yamt 		 * Discard the exec contents
   2366  1.172.2.1      yamt 		 */
   2367  1.172.2.1      yamt 		if (PV_IS_EXEC_P(pg->mdpage.pvh_attrs))
   2368  1.172.2.1      yamt 			PMAPCOUNT(exec_discarded_page_protect);
   2369  1.172.2.1      yamt 		pg->mdpage.pvh_attrs &= ~PVF_EXEC;
   2370  1.172.2.1      yamt #endif
   2371      1.134   thorpej 		simple_unlock(&pg->mdpage.pvh_slock);
   2372      1.134   thorpej 		PMAP_HEAD_TO_MAP_UNLOCK();
   2373      1.134   thorpej 		return;
   2374      1.134   thorpej 	}
   2375  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   2376  1.172.2.1      yamt 	KASSERT(pmap_is_page_colored_p(pg));
   2377  1.172.2.1      yamt #endif
   2378       1.79   thorpej 
   2379        1.1      matt 	/*
   2380      1.134   thorpej 	 * Clear alias counts
   2381        1.1      matt 	 */
   2382      1.134   thorpej 	pg->mdpage.k_mappings = 0;
   2383      1.134   thorpej 	pg->mdpage.urw_mappings = pg->mdpage.uro_mappings = 0;
   2384      1.134   thorpej 
   2385      1.160   thorpej 	flush = false;
   2386      1.134   thorpej 	flags = 0;
   2387      1.134   thorpej 	if (curproc)
   2388      1.134   thorpej 		curpm = curproc->p_vmspace->vm_map.pmap;
   2389      1.134   thorpej 	else
   2390      1.134   thorpej 		curpm = pmap_kernel();
   2391      1.134   thorpej 
   2392  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2393      1.160   thorpej 	pmap_clean_page(pv, false);
   2394  1.172.2.1      yamt #endif
   2395      1.134   thorpej 
   2396      1.134   thorpej 	while (pv) {
   2397      1.134   thorpej 		pm = pv->pv_pmap;
   2398      1.160   thorpej 		if (flush == false && (pm == curpm || pm == pmap_kernel()))
   2399      1.160   thorpej 			flush = true;
   2400      1.134   thorpej 
   2401  1.172.2.1      yamt 		if (pm == pmap_kernel())
   2402  1.172.2.1      yamt 			PMAPCOUNT(kernel_unmappings);
   2403  1.172.2.1      yamt 		PMAPCOUNT(unmappings);
   2404  1.172.2.1      yamt 
   2405      1.134   thorpej 		pmap_acquire_pmap_lock(pm);
   2406      1.134   thorpej 
   2407      1.134   thorpej 		l2b = pmap_get_l2_bucket(pm, pv->pv_va);
   2408      1.134   thorpej 		KDASSERT(l2b != NULL);
   2409      1.134   thorpej 
   2410      1.134   thorpej 		ptep = &l2b->l2b_kva[l2pte_index(pv->pv_va)];
   2411      1.134   thorpej 		pte = *ptep;
   2412      1.134   thorpej 
   2413      1.134   thorpej 		/*
   2414      1.134   thorpej 		 * Update statistics
   2415      1.134   thorpej 		 */
   2416      1.134   thorpej 		--pm->pm_stats.resident_count;
   2417      1.134   thorpej 
   2418      1.134   thorpej 		/* Wired bit */
   2419      1.134   thorpej 		if (pv->pv_flags & PVF_WIRED)
   2420      1.134   thorpej 			--pm->pm_stats.wired_count;
   2421       1.88   thorpej 
   2422      1.134   thorpej 		flags |= pv->pv_flags;
   2423       1.88   thorpej 
   2424      1.134   thorpej 		/*
   2425      1.134   thorpej 		 * Invalidate the PTEs.
   2426      1.134   thorpej 		 */
   2427      1.134   thorpej 		*ptep = 0;
   2428      1.134   thorpej 		PTE_SYNC_CURRENT(pm, ptep);
   2429      1.134   thorpej 		pmap_free_l2_bucket(pm, l2b, 1);
   2430       1.88   thorpej 
   2431      1.134   thorpej 		npv = pv->pv_next;
   2432      1.134   thorpej 		pool_put(&pmap_pv_pool, pv);
   2433      1.134   thorpej 		pv = npv;
   2434  1.172.2.1      yamt 		if (pv == NULL) {
   2435  1.172.2.1      yamt 			pg->mdpage.pvh_list = NULL;
   2436  1.172.2.1      yamt 			if (pg->mdpage.pvh_attrs & PVF_KENTRY)
   2437  1.172.2.1      yamt 				pmap_vac_me_harder(pg, pm, 0);
   2438  1.172.2.1      yamt 		}
   2439      1.134   thorpej 		pmap_release_pmap_lock(pm);
   2440      1.134   thorpej 	}
   2441  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   2442  1.172.2.1      yamt 	/*
   2443  1.172.2.1      yamt 	 * Since there are now no mappings, there isn't reason to mark it
   2444  1.172.2.1      yamt 	 * as uncached.  Its EXEC cache is also gone.
   2445  1.172.2.1      yamt 	 */
   2446  1.172.2.1      yamt 	if (PV_IS_EXEC_P(pg->mdpage.pvh_attrs))
   2447  1.172.2.1      yamt 		PMAPCOUNT(exec_discarded_page_protect);
   2448  1.172.2.1      yamt 	pg->mdpage.pvh_attrs &= ~(PVF_NC|PVF_EXEC);
   2449  1.172.2.1      yamt #endif
   2450  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2451      1.134   thorpej 	pg->mdpage.pvh_list = NULL;
   2452  1.172.2.1      yamt #endif
   2453      1.134   thorpej 	simple_unlock(&pg->mdpage.pvh_slock);
   2454      1.134   thorpej 	PMAP_HEAD_TO_MAP_UNLOCK();
   2455       1.88   thorpej 
   2456      1.134   thorpej 	if (flush) {
   2457      1.152       scw 		/*
   2458      1.152       scw 		 * Note: We can't use pmap_tlb_flush{I,}D() here since that
   2459      1.152       scw 		 * would need a subsequent call to pmap_update() to ensure
   2460      1.152       scw 		 * curpm->pm_cstate.cs_all is reset. Our callers are not
   2461      1.152       scw 		 * required to do that (see pmap(9)), so we can't modify
   2462      1.152       scw 		 * the current pmap's state.
   2463      1.152       scw 		 */
   2464      1.134   thorpej 		if (PV_BEEN_EXECD(flags))
   2465      1.152       scw 			cpu_tlb_flushID();
   2466      1.134   thorpej 		else
   2467      1.152       scw 			cpu_tlb_flushD();
   2468      1.134   thorpej 	}
   2469       1.88   thorpej 	cpu_cpwait();
   2470       1.88   thorpej }
   2471        1.1      matt 
   2472      1.134   thorpej /*
   2473      1.134   thorpej  * pmap_t pmap_create(void)
   2474      1.134   thorpej  *
   2475      1.134   thorpej  *      Create a new pmap structure from scratch.
   2476       1.17     chris  */
   2477      1.134   thorpej pmap_t
   2478      1.134   thorpej pmap_create(void)
   2479       1.17     chris {
   2480      1.134   thorpej 	pmap_t pm;
   2481      1.134   thorpej 
   2482      1.168        ad 	pm = pool_cache_get(&pmap_cache, PR_WAITOK);
   2483       1.79   thorpej 
   2484      1.172     chris 	UVM_OBJ_INIT(&pm->pm_obj, NULL, 1);
   2485      1.134   thorpej 	pm->pm_stats.wired_count = 0;
   2486      1.134   thorpej 	pm->pm_stats.resident_count = 1;
   2487      1.134   thorpej 	pm->pm_cstate.cs_all = 0;
   2488      1.134   thorpej 	pmap_alloc_l1(pm);
   2489       1.79   thorpej 
   2490       1.17     chris 	/*
   2491      1.134   thorpej 	 * Note: The pool cache ensures that the pm_l2[] array is already
   2492      1.134   thorpej 	 * initialised to zero.
   2493       1.17     chris 	 */
   2494       1.32   thorpej 
   2495      1.134   thorpej 	pmap_pinit(pm);
   2496      1.134   thorpej 
   2497      1.134   thorpej 	LIST_INSERT_HEAD(&pmap_pmaps, pm, pm_list);
   2498       1.17     chris 
   2499      1.134   thorpej 	return (pm);
   2500       1.17     chris }
   2501      1.134   thorpej 
   2502        1.1      matt /*
   2503      1.134   thorpej  * void pmap_enter(pmap_t pm, vaddr_t va, paddr_t pa, vm_prot_t prot,
   2504      1.134   thorpej  *     int flags)
   2505      1.134   thorpej  *
   2506      1.134   thorpej  *      Insert the given physical page (p) at
   2507      1.134   thorpej  *      the specified virtual address (v) in the
   2508      1.134   thorpej  *      target physical map with the protection requested.
   2509        1.1      matt  *
   2510      1.134   thorpej  *      NB:  This is the only routine which MAY NOT lazy-evaluate
   2511      1.134   thorpej  *      or lose information.  That is, this routine must actually
   2512      1.134   thorpej  *      insert this page into the given map NOW.
   2513        1.1      matt  */
   2514      1.134   thorpej int
   2515      1.134   thorpej pmap_enter(pmap_t pm, vaddr_t va, paddr_t pa, vm_prot_t prot, int flags)
   2516        1.1      matt {
   2517      1.134   thorpej 	struct l2_bucket *l2b;
   2518      1.134   thorpej 	struct vm_page *pg, *opg;
   2519      1.134   thorpej 	struct pv_entry *pve;
   2520      1.134   thorpej 	pt_entry_t *ptep, npte, opte;
   2521      1.134   thorpej 	u_int nflags;
   2522      1.134   thorpej 	u_int oflags;
   2523       1.71   thorpej 
   2524      1.134   thorpej 	NPDEBUG(PDB_ENTER, printf("pmap_enter: pm %p va 0x%lx pa 0x%lx prot %x flag %x\n", pm, va, pa, prot, flags));
   2525       1.71   thorpej 
   2526      1.134   thorpej 	KDASSERT((flags & PMAP_WIRED) == 0 || (flags & VM_PROT_ALL) != 0);
   2527      1.134   thorpej 	KDASSERT(((va | pa) & PGOFSET) == 0);
   2528       1.79   thorpej 
   2529       1.71   thorpej 	/*
   2530      1.134   thorpej 	 * Get a pointer to the page.  Later on in this function, we
   2531      1.134   thorpej 	 * test for a managed page by checking pg != NULL.
   2532       1.71   thorpej 	 */
   2533      1.134   thorpej 	pg = pmap_initialized ? PHYS_TO_VM_PAGE(pa) : NULL;
   2534      1.134   thorpej 
   2535      1.134   thorpej 	nflags = 0;
   2536      1.134   thorpej 	if (prot & VM_PROT_WRITE)
   2537      1.134   thorpej 		nflags |= PVF_WRITE;
   2538      1.134   thorpej 	if (prot & VM_PROT_EXECUTE)
   2539      1.134   thorpej 		nflags |= PVF_EXEC;
   2540      1.134   thorpej 	if (flags & PMAP_WIRED)
   2541      1.134   thorpej 		nflags |= PVF_WIRED;
   2542      1.134   thorpej 
   2543      1.134   thorpej 	PMAP_MAP_TO_HEAD_LOCK();
   2544      1.134   thorpej 	pmap_acquire_pmap_lock(pm);
   2545        1.1      matt 
   2546        1.1      matt 	/*
   2547      1.134   thorpej 	 * Fetch the L2 bucket which maps this page, allocating one if
   2548      1.134   thorpej 	 * necessary for user pmaps.
   2549        1.1      matt 	 */
   2550      1.134   thorpej 	if (pm == pmap_kernel())
   2551      1.134   thorpej 		l2b = pmap_get_l2_bucket(pm, va);
   2552      1.134   thorpej 	else
   2553      1.134   thorpej 		l2b = pmap_alloc_l2_bucket(pm, va);
   2554      1.134   thorpej 	if (l2b == NULL) {
   2555      1.134   thorpej 		if (flags & PMAP_CANFAIL) {
   2556      1.134   thorpej 			pmap_release_pmap_lock(pm);
   2557      1.134   thorpej 			PMAP_MAP_TO_HEAD_UNLOCK();
   2558      1.134   thorpej 			return (ENOMEM);
   2559      1.134   thorpej 		}
   2560      1.134   thorpej 		panic("pmap_enter: failed to allocate L2 bucket");
   2561      1.134   thorpej 	}
   2562      1.134   thorpej 	ptep = &l2b->l2b_kva[l2pte_index(va)];
   2563      1.134   thorpej 	opte = *ptep;
   2564      1.134   thorpej 	npte = pa;
   2565      1.134   thorpej 	oflags = 0;
   2566       1.88   thorpej 
   2567      1.134   thorpej 	if (opte) {
   2568      1.134   thorpej 		/*
   2569      1.134   thorpej 		 * There is already a mapping at this address.
   2570      1.134   thorpej 		 * If the physical address is different, lookup the
   2571      1.134   thorpej 		 * vm_page.
   2572      1.134   thorpej 		 */
   2573      1.134   thorpej 		if (l2pte_pa(opte) != pa)
   2574      1.134   thorpej 			opg = PHYS_TO_VM_PAGE(l2pte_pa(opte));
   2575      1.134   thorpej 		else
   2576      1.134   thorpej 			opg = pg;
   2577      1.134   thorpej 	} else
   2578      1.134   thorpej 		opg = NULL;
   2579       1.88   thorpej 
   2580      1.134   thorpej 	if (pg) {
   2581      1.134   thorpej 		/*
   2582      1.134   thorpej 		 * This is to be a managed mapping.
   2583      1.134   thorpej 		 */
   2584      1.134   thorpej 		if ((flags & VM_PROT_ALL) ||
   2585      1.134   thorpej 		    (pg->mdpage.pvh_attrs & PVF_REF)) {
   2586      1.134   thorpej 			/*
   2587      1.134   thorpej 			 * - The access type indicates that we don't need
   2588      1.134   thorpej 			 *   to do referenced emulation.
   2589      1.134   thorpej 			 * OR
   2590      1.134   thorpej 			 * - The physical page has already been referenced
   2591      1.134   thorpej 			 *   so no need to re-do referenced emulation here.
   2592      1.134   thorpej 			 */
   2593      1.134   thorpej 			npte |= L2_S_PROTO;
   2594       1.88   thorpej 
   2595      1.134   thorpej 			nflags |= PVF_REF;
   2596       1.88   thorpej 
   2597      1.134   thorpej 			if ((prot & VM_PROT_WRITE) != 0 &&
   2598      1.134   thorpej 			    ((flags & VM_PROT_WRITE) != 0 ||
   2599      1.134   thorpej 			     (pg->mdpage.pvh_attrs & PVF_MOD) != 0)) {
   2600      1.134   thorpej 				/*
   2601      1.134   thorpej 				 * This is a writable mapping, and the
   2602      1.134   thorpej 				 * page's mod state indicates it has
   2603      1.134   thorpej 				 * already been modified. Make it
   2604      1.134   thorpej 				 * writable from the outset.
   2605      1.134   thorpej 				 */
   2606      1.134   thorpej 				npte |= L2_S_PROT_W;
   2607      1.134   thorpej 				nflags |= PVF_MOD;
   2608      1.134   thorpej 			}
   2609      1.134   thorpej 		} else {
   2610      1.134   thorpej 			/*
   2611      1.134   thorpej 			 * Need to do page referenced emulation.
   2612      1.134   thorpej 			 */
   2613      1.134   thorpej 			npte |= L2_TYPE_INV;
   2614      1.134   thorpej 		}
   2615       1.88   thorpej 
   2616      1.134   thorpej 		npte |= pte_l2_s_cache_mode;
   2617        1.1      matt 
   2618      1.134   thorpej 		if (pg == opg) {
   2619      1.134   thorpej 			/*
   2620      1.134   thorpej 			 * We're changing the attrs of an existing mapping.
   2621      1.134   thorpej 			 */
   2622      1.134   thorpej 			simple_lock(&pg->mdpage.pvh_slock);
   2623      1.134   thorpej 			oflags = pmap_modify_pv(pg, pm, va,
   2624      1.134   thorpej 			    PVF_WRITE | PVF_EXEC | PVF_WIRED |
   2625      1.134   thorpej 			    PVF_MOD | PVF_REF, nflags);
   2626      1.134   thorpej 			simple_unlock(&pg->mdpage.pvh_slock);
   2627        1.1      matt 
   2628  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2629      1.134   thorpej 			/*
   2630      1.134   thorpej 			 * We may need to flush the cache if we're
   2631      1.134   thorpej 			 * doing rw-ro...
   2632      1.134   thorpej 			 */
   2633      1.134   thorpej 			if (pm->pm_cstate.cs_cache_d &&
   2634      1.134   thorpej 			    (oflags & PVF_NC) == 0 &&
   2635      1.134   thorpej 			    (opte & L2_S_PROT_W) != 0 &&
   2636      1.134   thorpej 			    (prot & VM_PROT_WRITE) == 0)
   2637      1.134   thorpej 				cpu_dcache_wb_range(va, PAGE_SIZE);
   2638  1.172.2.1      yamt #endif
   2639      1.134   thorpej 		} else {
   2640      1.134   thorpej 			/*
   2641      1.134   thorpej 			 * New mapping, or changing the backing page
   2642      1.134   thorpej 			 * of an existing mapping.
   2643      1.134   thorpej 			 */
   2644      1.134   thorpej 			if (opg) {
   2645      1.134   thorpej 				/*
   2646      1.134   thorpej 				 * Replacing an existing mapping with a new one.
   2647      1.134   thorpej 				 * It is part of our managed memory so we
   2648      1.134   thorpej 				 * must remove it from the PV list
   2649      1.134   thorpej 				 */
   2650      1.134   thorpej 				simple_lock(&opg->mdpage.pvh_slock);
   2651      1.156       scw 				pve = pmap_remove_pv(opg, pm, va, 0);
   2652      1.134   thorpej 				pmap_vac_me_harder(opg, pm, 0);
   2653      1.134   thorpej 				simple_unlock(&opg->mdpage.pvh_slock);
   2654      1.134   thorpej 				oflags = pve->pv_flags;
   2655        1.1      matt 
   2656  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2657      1.134   thorpej 				/*
   2658      1.134   thorpej 				 * If the old mapping was valid (ref/mod
   2659      1.134   thorpej 				 * emulation creates 'invalid' mappings
   2660      1.134   thorpej 				 * initially) then make sure to frob
   2661      1.134   thorpej 				 * the cache.
   2662      1.134   thorpej 				 */
   2663      1.134   thorpej 				if ((oflags & PVF_NC) == 0 &&
   2664      1.134   thorpej 				    l2pte_valid(opte)) {
   2665      1.134   thorpej 					if (PV_BEEN_EXECD(oflags)) {
   2666      1.134   thorpej 						pmap_idcache_wbinv_range(pm, va,
   2667      1.134   thorpej 						    PAGE_SIZE);
   2668      1.134   thorpej 					} else
   2669      1.134   thorpej 					if (PV_BEEN_REFD(oflags)) {
   2670      1.134   thorpej 						pmap_dcache_wb_range(pm, va,
   2671      1.160   thorpej 						    PAGE_SIZE, true,
   2672      1.134   thorpej 						    (oflags & PVF_WRITE) == 0);
   2673      1.134   thorpej 					}
   2674      1.134   thorpej 				}
   2675  1.172.2.1      yamt #endif
   2676      1.134   thorpej 			} else
   2677      1.134   thorpej 			if ((pve = pool_get(&pmap_pv_pool, PR_NOWAIT)) == NULL){
   2678      1.134   thorpej 				if ((flags & PMAP_CANFAIL) == 0)
   2679      1.134   thorpej 					panic("pmap_enter: no pv entries");
   2680      1.134   thorpej 
   2681      1.134   thorpej 				if (pm != pmap_kernel())
   2682      1.134   thorpej 					pmap_free_l2_bucket(pm, l2b, 0);
   2683      1.134   thorpej 				pmap_release_pmap_lock(pm);
   2684      1.134   thorpej 				PMAP_MAP_TO_HEAD_UNLOCK();
   2685      1.134   thorpej 				NPDEBUG(PDB_ENTER,
   2686      1.134   thorpej 				    printf("pmap_enter: ENOMEM\n"));
   2687      1.134   thorpej 				return (ENOMEM);
   2688      1.134   thorpej 			}
   2689       1.25  rearnsha 
   2690      1.134   thorpej 			pmap_enter_pv(pg, pve, pm, va, nflags);
   2691       1.25  rearnsha 		}
   2692      1.134   thorpej 	} else {
   2693      1.134   thorpej 		/*
   2694      1.134   thorpej 		 * We're mapping an unmanaged page.
   2695      1.134   thorpej 		 * These are always readable, and possibly writable, from
   2696      1.134   thorpej 		 * the get go as we don't need to track ref/mod status.
   2697      1.134   thorpej 		 */
   2698      1.134   thorpej 		npte |= L2_S_PROTO;
   2699      1.134   thorpej 		if (prot & VM_PROT_WRITE)
   2700      1.134   thorpej 			npte |= L2_S_PROT_W;
   2701       1.25  rearnsha 
   2702      1.134   thorpej 		/*
   2703      1.134   thorpej 		 * Make sure the vector table is mapped cacheable
   2704      1.134   thorpej 		 */
   2705      1.134   thorpej 		if (pm != pmap_kernel() && va == vector_page)
   2706      1.134   thorpej 			npte |= pte_l2_s_cache_mode;
   2707       1.25  rearnsha 
   2708      1.134   thorpej 		if (opg) {
   2709      1.134   thorpej 			/*
   2710      1.134   thorpej 			 * Looks like there's an existing 'managed' mapping
   2711      1.134   thorpej 			 * at this address.
   2712       1.25  rearnsha 			 */
   2713      1.134   thorpej 			simple_lock(&opg->mdpage.pvh_slock);
   2714      1.156       scw 			pve = pmap_remove_pv(opg, pm, va, 0);
   2715      1.134   thorpej 			pmap_vac_me_harder(opg, pm, 0);
   2716      1.134   thorpej 			simple_unlock(&opg->mdpage.pvh_slock);
   2717      1.134   thorpej 			oflags = pve->pv_flags;
   2718      1.134   thorpej 
   2719  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2720      1.134   thorpej 			if ((oflags & PVF_NC) == 0 && l2pte_valid(opte)) {
   2721      1.134   thorpej 				if (PV_BEEN_EXECD(oflags))
   2722      1.134   thorpej 					pmap_idcache_wbinv_range(pm, va,
   2723      1.134   thorpej 					    PAGE_SIZE);
   2724      1.134   thorpej 				else
   2725      1.134   thorpej 				if (PV_BEEN_REFD(oflags))
   2726      1.134   thorpej 					pmap_dcache_wb_range(pm, va, PAGE_SIZE,
   2727      1.160   thorpej 					    true, (oflags & PVF_WRITE) == 0);
   2728      1.134   thorpej 			}
   2729  1.172.2.1      yamt #endif
   2730      1.134   thorpej 			pool_put(&pmap_pv_pool, pve);
   2731       1.25  rearnsha 		}
   2732       1.25  rearnsha 	}
   2733       1.25  rearnsha 
   2734      1.134   thorpej 	/*
   2735      1.134   thorpej 	 * Make sure userland mappings get the right permissions
   2736      1.134   thorpej 	 */
   2737      1.134   thorpej 	if (pm != pmap_kernel() && va != vector_page)
   2738      1.134   thorpej 		npte |= L2_S_PROT_U;
   2739       1.25  rearnsha 
   2740      1.134   thorpej 	/*
   2741      1.134   thorpej 	 * Keep the stats up to date
   2742      1.134   thorpej 	 */
   2743      1.134   thorpej 	if (opte == 0) {
   2744      1.134   thorpej 		l2b->l2b_occupancy++;
   2745      1.134   thorpej 		pm->pm_stats.resident_count++;
   2746      1.134   thorpej 	}
   2747        1.1      matt 
   2748      1.134   thorpej 	NPDEBUG(PDB_ENTER,
   2749      1.134   thorpej 	    printf("pmap_enter: opte 0x%08x npte 0x%08x\n", opte, npte));
   2750        1.1      matt 
   2751        1.1      matt 	/*
   2752      1.134   thorpej 	 * If this is just a wiring change, the two PTEs will be
   2753      1.134   thorpej 	 * identical, so there's no need to update the page table.
   2754        1.1      matt 	 */
   2755      1.134   thorpej 	if (npte != opte) {
   2756      1.159   thorpej 		bool is_cached = pmap_is_cached(pm);
   2757        1.1      matt 
   2758      1.134   thorpej 		*ptep = npte;
   2759      1.134   thorpej 		if (is_cached) {
   2760      1.134   thorpej 			/*
   2761      1.134   thorpej 			 * We only need to frob the cache/tlb if this pmap
   2762      1.134   thorpej 			 * is current
   2763      1.134   thorpej 			 */
   2764      1.134   thorpej 			PTE_SYNC(ptep);
   2765      1.134   thorpej 			if (va != vector_page && l2pte_valid(npte)) {
   2766       1.25  rearnsha 				/*
   2767      1.134   thorpej 				 * This mapping is likely to be accessed as
   2768      1.134   thorpej 				 * soon as we return to userland. Fix up the
   2769      1.134   thorpej 				 * L1 entry to avoid taking another
   2770      1.134   thorpej 				 * page/domain fault.
   2771       1.25  rearnsha 				 */
   2772      1.134   thorpej 				pd_entry_t *pl1pd, l1pd;
   2773      1.134   thorpej 
   2774      1.134   thorpej 				pl1pd = &pm->pm_l1->l1_kva[L1_IDX(va)];
   2775      1.134   thorpej 				l1pd = l2b->l2b_phys | L1_C_DOM(pm->pm_domain) |
   2776      1.134   thorpej 				    L1_C_PROTO;
   2777      1.134   thorpej 				if (*pl1pd != l1pd) {
   2778      1.134   thorpej 					*pl1pd = l1pd;
   2779      1.134   thorpej 					PTE_SYNC(pl1pd);
   2780       1.12     chris 				}
   2781        1.1      matt 			}
   2782        1.1      matt 		}
   2783      1.134   thorpej 
   2784      1.134   thorpej 		if (PV_BEEN_EXECD(oflags))
   2785      1.134   thorpej 			pmap_tlb_flushID_SE(pm, va);
   2786      1.134   thorpej 		else
   2787      1.134   thorpej 		if (PV_BEEN_REFD(oflags))
   2788      1.134   thorpej 			pmap_tlb_flushD_SE(pm, va);
   2789      1.134   thorpej 
   2790      1.134   thorpej 		NPDEBUG(PDB_ENTER,
   2791      1.134   thorpej 		    printf("pmap_enter: is_cached %d cs 0x%08x\n",
   2792      1.134   thorpej 		    is_cached, pm->pm_cstate.cs_all));
   2793      1.134   thorpej 
   2794      1.134   thorpej 		if (pg != NULL) {
   2795      1.134   thorpej 			simple_lock(&pg->mdpage.pvh_slock);
   2796      1.134   thorpej 			pmap_vac_me_harder(pg, pm, va);
   2797      1.134   thorpej 			simple_unlock(&pg->mdpage.pvh_slock);
   2798        1.1      matt 		}
   2799        1.1      matt 	}
   2800      1.134   thorpej 
   2801      1.134   thorpej 	pmap_release_pmap_lock(pm);
   2802      1.134   thorpej 	PMAP_MAP_TO_HEAD_UNLOCK();
   2803      1.134   thorpej 
   2804      1.134   thorpej 	return (0);
   2805        1.1      matt }
   2806        1.1      matt 
   2807        1.1      matt /*
   2808        1.1      matt  * pmap_remove()
   2809        1.1      matt  *
   2810        1.1      matt  * pmap_remove is responsible for nuking a number of mappings for a range
   2811        1.1      matt  * of virtual address space in the current pmap. To do this efficiently
   2812        1.1      matt  * is interesting, because in a number of cases a wide virtual address
   2813        1.1      matt  * range may be supplied that contains few actual mappings. So, the
   2814        1.1      matt  * optimisations are:
   2815      1.134   thorpej  *  1. Skip over hunks of address space for which no L1 or L2 entry exists.
   2816        1.1      matt  *  2. Build up a list of pages we've hit, up to a maximum, so we can
   2817        1.1      matt  *     maybe do just a partial cache clean. This path of execution is
   2818        1.1      matt  *     complicated by the fact that the cache must be flushed _before_
   2819        1.1      matt  *     the PTE is nuked, being a VAC :-)
   2820      1.134   thorpej  *  3. If we're called after UVM calls pmap_remove_all(), we can defer
   2821      1.134   thorpej  *     all invalidations until pmap_update(), since pmap_remove_all() has
   2822      1.134   thorpej  *     already flushed the cache.
   2823      1.134   thorpej  *  4. Maybe later fast-case a single page, but I don't think this is
   2824        1.1      matt  *     going to make _that_ much difference overall.
   2825        1.1      matt  */
   2826        1.1      matt 
   2827      1.134   thorpej #define	PMAP_REMOVE_CLEAN_LIST_SIZE	3
   2828        1.1      matt 
   2829        1.1      matt void
   2830      1.156       scw pmap_do_remove(pmap_t pm, vaddr_t sva, vaddr_t eva, int skip_wired)
   2831        1.1      matt {
   2832      1.134   thorpej 	struct l2_bucket *l2b;
   2833      1.134   thorpej 	vaddr_t next_bucket;
   2834      1.134   thorpej 	pt_entry_t *ptep;
   2835      1.134   thorpej 	u_int cleanlist_idx, total, cnt;
   2836      1.134   thorpej 	struct {
   2837        1.1      matt 		vaddr_t va;
   2838  1.172.2.1      yamt 		pt_entry_t *ptep;
   2839        1.1      matt 	} cleanlist[PMAP_REMOVE_CLEAN_LIST_SIZE];
   2840      1.134   thorpej 	u_int mappings, is_exec, is_refd;
   2841        1.1      matt 
   2842      1.156       scw 	NPDEBUG(PDB_REMOVE, printf("pmap_do_remove: pmap=%p sva=%08lx "
   2843      1.156       scw 	    "eva=%08lx\n", pm, sva, eva));
   2844        1.1      matt 
   2845       1.17     chris 	/*
   2846      1.134   thorpej 	 * we lock in the pmap => pv_head direction
   2847       1.17     chris 	 */
   2848       1.17     chris 	PMAP_MAP_TO_HEAD_LOCK();
   2849      1.134   thorpej 	pmap_acquire_pmap_lock(pm);
   2850      1.134   thorpej 
   2851      1.134   thorpej 	if (pm->pm_remove_all || !pmap_is_cached(pm)) {
   2852      1.134   thorpej 		cleanlist_idx = PMAP_REMOVE_CLEAN_LIST_SIZE + 1;
   2853      1.134   thorpej 		if (pm->pm_cstate.cs_tlb == 0)
   2854      1.160   thorpej 			pm->pm_remove_all = true;
   2855      1.134   thorpej 	} else
   2856      1.134   thorpej 		cleanlist_idx = 0;
   2857      1.134   thorpej 
   2858      1.134   thorpej 	total = 0;
   2859      1.134   thorpej 
   2860        1.1      matt 	while (sva < eva) {
   2861      1.134   thorpej 		/*
   2862      1.134   thorpej 		 * Do one L2 bucket's worth at a time.
   2863      1.134   thorpej 		 */
   2864      1.134   thorpej 		next_bucket = L2_NEXT_BUCKET(sva);
   2865      1.134   thorpej 		if (next_bucket > eva)
   2866      1.134   thorpej 			next_bucket = eva;
   2867      1.134   thorpej 
   2868      1.134   thorpej 		l2b = pmap_get_l2_bucket(pm, sva);
   2869      1.134   thorpej 		if (l2b == NULL) {
   2870      1.134   thorpej 			sva = next_bucket;
   2871      1.134   thorpej 			continue;
   2872      1.134   thorpej 		}
   2873      1.134   thorpej 
   2874      1.134   thorpej 		ptep = &l2b->l2b_kva[l2pte_index(sva)];
   2875      1.134   thorpej 
   2876      1.156       scw 		for (mappings = 0; sva < next_bucket; sva += PAGE_SIZE, ptep++){
   2877      1.134   thorpej 			struct vm_page *pg;
   2878      1.134   thorpej 			pt_entry_t pte;
   2879      1.134   thorpej 			paddr_t pa;
   2880      1.134   thorpej 
   2881      1.134   thorpej 			pte = *ptep;
   2882        1.1      matt 
   2883      1.134   thorpej 			if (pte == 0) {
   2884      1.156       scw 				/* Nothing here, move along */
   2885        1.1      matt 				continue;
   2886        1.1      matt 			}
   2887        1.1      matt 
   2888      1.134   thorpej 			pa = l2pte_pa(pte);
   2889      1.134   thorpej 			is_exec = 0;
   2890      1.134   thorpej 			is_refd = 1;
   2891        1.1      matt 
   2892        1.1      matt 			/*
   2893      1.134   thorpej 			 * Update flags. In a number of circumstances,
   2894      1.134   thorpej 			 * we could cluster a lot of these and do a
   2895      1.134   thorpej 			 * number of sequential pages in one go.
   2896        1.1      matt 			 */
   2897      1.134   thorpej 			if ((pg = PHYS_TO_VM_PAGE(pa)) != NULL) {
   2898      1.134   thorpej 				struct pv_entry *pve;
   2899      1.134   thorpej 				simple_lock(&pg->mdpage.pvh_slock);
   2900      1.156       scw 				pve = pmap_remove_pv(pg, pm, sva, skip_wired);
   2901      1.134   thorpej 				pmap_vac_me_harder(pg, pm, 0);
   2902      1.134   thorpej 				simple_unlock(&pg->mdpage.pvh_slock);
   2903      1.134   thorpej 				if (pve != NULL) {
   2904      1.160   thorpej 					if (pm->pm_remove_all == false) {
   2905      1.134   thorpej 						is_exec =
   2906      1.134   thorpej 						   PV_BEEN_EXECD(pve->pv_flags);
   2907      1.134   thorpej 						is_refd =
   2908      1.134   thorpej 						   PV_BEEN_REFD(pve->pv_flags);
   2909      1.134   thorpej 					}
   2910      1.134   thorpej 					pool_put(&pmap_pv_pool, pve);
   2911      1.156       scw 				} else
   2912      1.156       scw 				if (skip_wired) {
   2913      1.156       scw 					/* The mapping is wired. Skip it */
   2914      1.156       scw 					continue;
   2915      1.134   thorpej 				}
   2916      1.156       scw 			} else
   2917      1.156       scw 			if (skip_wired) {
   2918      1.156       scw 				/* Unmanaged pages are always wired. */
   2919      1.156       scw 				continue;
   2920      1.134   thorpej 			}
   2921      1.134   thorpej 
   2922      1.156       scw 			mappings++;
   2923      1.156       scw 
   2924      1.134   thorpej 			if (!l2pte_valid(pte)) {
   2925      1.156       scw 				/*
   2926      1.156       scw 				 * Ref/Mod emulation is still active for this
   2927      1.156       scw 				 * mapping, therefore it is has not yet been
   2928      1.156       scw 				 * accessed. No need to frob the cache/tlb.
   2929      1.156       scw 				 */
   2930      1.134   thorpej 				*ptep = 0;
   2931      1.134   thorpej 				PTE_SYNC_CURRENT(pm, ptep);
   2932      1.134   thorpej 				continue;
   2933      1.134   thorpej 			}
   2934        1.1      matt 
   2935        1.1      matt 			if (cleanlist_idx < PMAP_REMOVE_CLEAN_LIST_SIZE) {
   2936        1.1      matt 				/* Add to the clean list. */
   2937  1.172.2.1      yamt 				cleanlist[cleanlist_idx].ptep = ptep;
   2938      1.134   thorpej 				cleanlist[cleanlist_idx].va =
   2939      1.134   thorpej 				    sva | (is_exec & 1);
   2940        1.1      matt 				cleanlist_idx++;
   2941      1.134   thorpej 			} else
   2942      1.134   thorpej 			if (cleanlist_idx == PMAP_REMOVE_CLEAN_LIST_SIZE) {
   2943        1.1      matt 				/* Nuke everything if needed. */
   2944  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2945      1.134   thorpej 				pmap_idcache_wbinv_all(pm);
   2946  1.172.2.1      yamt #endif
   2947      1.134   thorpej 				pmap_tlb_flushID(pm);
   2948        1.1      matt 
   2949        1.1      matt 				/*
   2950        1.1      matt 				 * Roll back the previous PTE list,
   2951        1.1      matt 				 * and zero out the current PTE.
   2952        1.1      matt 				 */
   2953      1.113   thorpej 				for (cnt = 0;
   2954      1.134   thorpej 				     cnt < PMAP_REMOVE_CLEAN_LIST_SIZE; cnt++) {
   2955  1.172.2.1      yamt 					*cleanlist[cnt].ptep = 0;
   2956        1.1      matt 				}
   2957      1.134   thorpej 				*ptep = 0;
   2958      1.134   thorpej 				PTE_SYNC(ptep);
   2959        1.1      matt 				cleanlist_idx++;
   2960      1.160   thorpej 				pm->pm_remove_all = true;
   2961        1.1      matt 			} else {
   2962      1.134   thorpej 				*ptep = 0;
   2963      1.134   thorpej 				PTE_SYNC(ptep);
   2964      1.160   thorpej 				if (pm->pm_remove_all == false) {
   2965      1.134   thorpej 					if (is_exec)
   2966      1.134   thorpej 						pmap_tlb_flushID_SE(pm, sva);
   2967      1.134   thorpej 					else
   2968      1.134   thorpej 					if (is_refd)
   2969      1.134   thorpej 						pmap_tlb_flushD_SE(pm, sva);
   2970      1.134   thorpej 				}
   2971      1.134   thorpej 			}
   2972      1.134   thorpej 		}
   2973      1.134   thorpej 
   2974      1.134   thorpej 		/*
   2975      1.134   thorpej 		 * Deal with any left overs
   2976      1.134   thorpej 		 */
   2977      1.134   thorpej 		if (cleanlist_idx <= PMAP_REMOVE_CLEAN_LIST_SIZE) {
   2978      1.134   thorpej 			total += cleanlist_idx;
   2979      1.134   thorpej 			for (cnt = 0; cnt < cleanlist_idx; cnt++) {
   2980      1.134   thorpej 				if (pm->pm_cstate.cs_all != 0) {
   2981      1.134   thorpej 					vaddr_t clva = cleanlist[cnt].va & ~1;
   2982      1.134   thorpej 					if (cleanlist[cnt].va & 1) {
   2983  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2984      1.134   thorpej 						pmap_idcache_wbinv_range(pm,
   2985      1.134   thorpej 						    clva, PAGE_SIZE);
   2986  1.172.2.1      yamt #endif
   2987      1.134   thorpej 						pmap_tlb_flushID_SE(pm, clva);
   2988      1.134   thorpej 					} else {
   2989  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   2990      1.134   thorpej 						pmap_dcache_wb_range(pm,
   2991      1.160   thorpej 						    clva, PAGE_SIZE, true,
   2992      1.160   thorpej 						    false);
   2993  1.172.2.1      yamt #endif
   2994      1.134   thorpej 						pmap_tlb_flushD_SE(pm, clva);
   2995      1.134   thorpej 					}
   2996      1.134   thorpej 				}
   2997  1.172.2.1      yamt 				*cleanlist[cnt].ptep = 0;
   2998  1.172.2.1      yamt 				PTE_SYNC_CURRENT(pm, cleanlist[cnt].ptep);
   2999        1.1      matt 			}
   3000        1.1      matt 
   3001        1.1      matt 			/*
   3002      1.134   thorpej 			 * If it looks like we're removing a whole bunch
   3003      1.134   thorpej 			 * of mappings, it's faster to just write-back
   3004      1.134   thorpej 			 * the whole cache now and defer TLB flushes until
   3005      1.134   thorpej 			 * pmap_update() is called.
   3006        1.1      matt 			 */
   3007      1.134   thorpej 			if (total <= PMAP_REMOVE_CLEAN_LIST_SIZE)
   3008      1.134   thorpej 				cleanlist_idx = 0;
   3009      1.134   thorpej 			else {
   3010      1.134   thorpej 				cleanlist_idx = PMAP_REMOVE_CLEAN_LIST_SIZE + 1;
   3011  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   3012      1.134   thorpej 				pmap_idcache_wbinv_all(pm);
   3013  1.172.2.1      yamt #endif
   3014      1.160   thorpej 				pm->pm_remove_all = true;
   3015      1.134   thorpej 			}
   3016      1.134   thorpej 		}
   3017      1.134   thorpej 
   3018      1.134   thorpej 		pmap_free_l2_bucket(pm, l2b, mappings);
   3019      1.156       scw 		pm->pm_stats.resident_count -= mappings;
   3020      1.134   thorpej 	}
   3021      1.134   thorpej 
   3022      1.134   thorpej 	pmap_release_pmap_lock(pm);
   3023      1.134   thorpej 	PMAP_MAP_TO_HEAD_UNLOCK();
   3024      1.134   thorpej }
   3025      1.134   thorpej 
   3026      1.134   thorpej /*
   3027      1.134   thorpej  * pmap_kenter_pa: enter an unmanaged, wired kernel mapping
   3028      1.134   thorpej  *
   3029      1.134   thorpej  * We assume there is already sufficient KVM space available
   3030      1.134   thorpej  * to do this, as we can't allocate L2 descriptor tables/metadata
   3031      1.134   thorpej  * from here.
   3032      1.134   thorpej  */
   3033      1.134   thorpej void
   3034      1.134   thorpej pmap_kenter_pa(vaddr_t va, paddr_t pa, vm_prot_t prot)
   3035      1.134   thorpej {
   3036      1.134   thorpej 	struct l2_bucket *l2b;
   3037      1.134   thorpej 	pt_entry_t *ptep, opte;
   3038  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   3039  1.172.2.1      yamt 	struct vm_page *pg = PHYS_TO_VM_PAGE(pa);
   3040  1.172.2.1      yamt 	struct vm_page *opg;
   3041  1.172.2.1      yamt #endif
   3042  1.172.2.1      yamt 
   3043      1.134   thorpej 
   3044      1.134   thorpej 	NPDEBUG(PDB_KENTER,
   3045      1.134   thorpej 	    printf("pmap_kenter_pa: va 0x%08lx, pa 0x%08lx, prot 0x%x\n",
   3046      1.134   thorpej 	    va, pa, prot));
   3047      1.134   thorpej 
   3048      1.134   thorpej 	l2b = pmap_get_l2_bucket(pmap_kernel(), va);
   3049      1.134   thorpej 	KDASSERT(l2b != NULL);
   3050      1.134   thorpej 
   3051      1.134   thorpej 	ptep = &l2b->l2b_kva[l2pte_index(va)];
   3052      1.134   thorpej 	opte = *ptep;
   3053      1.134   thorpej 
   3054  1.172.2.1      yamt 	if (opte == 0) {
   3055  1.172.2.1      yamt 		PMAPCOUNT(kenter_mappings);
   3056      1.134   thorpej 		l2b->l2b_occupancy++;
   3057  1.172.2.1      yamt 	} else {
   3058  1.172.2.1      yamt 		PMAPCOUNT(kenter_remappings);
   3059  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   3060  1.172.2.1      yamt 		opg = PHYS_TO_VM_PAGE(l2pte_pa(opte));
   3061  1.172.2.1      yamt 		if (opg) {
   3062  1.172.2.1      yamt 			KASSERT(opg != pg);
   3063  1.172.2.1      yamt 			simple_lock(&opg->mdpage.pvh_slock);
   3064  1.172.2.1      yamt 			KASSERT(opg->mdpage.pvh_attrs & PVF_KENTRY);
   3065  1.172.2.1      yamt 			if (PV_IS_EXEC_P(opg->mdpage.pvh_attrs)
   3066  1.172.2.1      yamt 			    && !(opg->mdpage.pvh_attrs & PVF_NC)) {
   3067  1.172.2.1      yamt 				if (opg->mdpage.pvh_list == NULL) {
   3068  1.172.2.1      yamt 					opg->mdpage.pvh_attrs &= ~PVF_EXEC;
   3069  1.172.2.1      yamt 					PMAPCOUNT(exec_discarded_kremove);
   3070  1.172.2.1      yamt 				} else {
   3071  1.172.2.1      yamt 					pmap_syncicache_page(opg);
   3072  1.172.2.1      yamt 					PMAPCOUNT(exec_synced_kremove);
   3073  1.172.2.1      yamt 				}
   3074  1.172.2.1      yamt 			}
   3075  1.172.2.2      yamt 			KASSERT(opg->mdpage.pvh_attrs & (PVF_COLORED|PVF_NC));
   3076  1.172.2.1      yamt 			opg->mdpage.pvh_attrs &= ~PVF_KENTRY;
   3077  1.172.2.1      yamt 			pmap_vac_me_harder(opg, NULL, 0);
   3078  1.172.2.1      yamt 			simple_unlock(&opg->mdpage.pvh_slock);
   3079  1.172.2.1      yamt 		}
   3080  1.172.2.1      yamt #endif
   3081  1.172.2.1      yamt 		if (l2pte_valid(opte)) {
   3082  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   3083  1.172.2.1      yamt 			cpu_dcache_wbinv_range(va, PAGE_SIZE);
   3084  1.172.2.1      yamt #endif
   3085  1.172.2.1      yamt 			cpu_tlb_flushD_SE(va);
   3086  1.172.2.1      yamt 			cpu_cpwait();
   3087  1.172.2.1      yamt 		}
   3088  1.172.2.1      yamt 	}
   3089      1.134   thorpej 
   3090      1.134   thorpej 	*ptep = L2_S_PROTO | pa | L2_S_PROT(PTE_KERNEL, prot) |
   3091      1.134   thorpej 	    pte_l2_s_cache_mode;
   3092      1.134   thorpej 	PTE_SYNC(ptep);
   3093  1.172.2.1      yamt 
   3094  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   3095  1.172.2.1      yamt 	if (pg) {
   3096  1.172.2.1      yamt 		simple_lock(&pg->mdpage.pvh_slock);
   3097  1.172.2.1      yamt 		KASSERT((pg->mdpage.pvh_attrs & PVF_KENTRY) == 0);
   3098  1.172.2.1      yamt 		pg->mdpage.pvh_attrs |= PVF_KENTRY;
   3099  1.172.2.1      yamt 		pmap_vac_me_harder(pg, NULL, va);
   3100  1.172.2.1      yamt 		simple_unlock(&pg->mdpage.pvh_slock);
   3101  1.172.2.1      yamt 	}
   3102  1.172.2.1      yamt #endif
   3103      1.134   thorpej }
   3104      1.134   thorpej 
   3105      1.134   thorpej void
   3106      1.134   thorpej pmap_kremove(vaddr_t va, vsize_t len)
   3107      1.134   thorpej {
   3108      1.134   thorpej 	struct l2_bucket *l2b;
   3109      1.134   thorpej 	pt_entry_t *ptep, *sptep, opte;
   3110      1.134   thorpej 	vaddr_t next_bucket, eva;
   3111      1.134   thorpej 	u_int mappings;
   3112  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   3113  1.172.2.1      yamt 	struct vm_page *opg;
   3114  1.172.2.1      yamt #endif
   3115  1.172.2.1      yamt 
   3116  1.172.2.1      yamt 	PMAPCOUNT(kenter_unmappings);
   3117      1.134   thorpej 
   3118      1.134   thorpej 	NPDEBUG(PDB_KREMOVE, printf("pmap_kremove: va 0x%08lx, len 0x%08lx\n",
   3119      1.134   thorpej 	    va, len));
   3120      1.134   thorpej 
   3121      1.134   thorpej 	eva = va + len;
   3122      1.134   thorpej 
   3123      1.134   thorpej 	while (va < eva) {
   3124      1.134   thorpej 		next_bucket = L2_NEXT_BUCKET(va);
   3125      1.134   thorpej 		if (next_bucket > eva)
   3126      1.134   thorpej 			next_bucket = eva;
   3127      1.134   thorpej 
   3128      1.134   thorpej 		l2b = pmap_get_l2_bucket(pmap_kernel(), va);
   3129      1.134   thorpej 		KDASSERT(l2b != NULL);
   3130      1.134   thorpej 
   3131      1.134   thorpej 		sptep = ptep = &l2b->l2b_kva[l2pte_index(va)];
   3132      1.134   thorpej 		mappings = 0;
   3133      1.134   thorpej 
   3134      1.134   thorpej 		while (va < next_bucket) {
   3135      1.134   thorpej 			opte = *ptep;
   3136  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   3137  1.172.2.1      yamt 			opg = PHYS_TO_VM_PAGE(l2pte_pa(opte));
   3138  1.172.2.1      yamt 			if (opg) {
   3139  1.172.2.1      yamt 				simple_lock(&opg->mdpage.pvh_slock);
   3140  1.172.2.1      yamt 				KASSERT(opg->mdpage.pvh_attrs & PVF_KENTRY);
   3141  1.172.2.1      yamt 				if (PV_IS_EXEC_P(opg->mdpage.pvh_attrs)
   3142  1.172.2.1      yamt 				    && !(opg->mdpage.pvh_attrs & PVF_NC)) {
   3143  1.172.2.1      yamt 					if (opg->mdpage.pvh_list == NULL) {
   3144  1.172.2.1      yamt 						opg->mdpage.pvh_attrs &=
   3145  1.172.2.1      yamt 						    ~PVF_EXEC;
   3146  1.172.2.1      yamt 						PMAPCOUNT(exec_discarded_kremove);
   3147  1.172.2.1      yamt 					} else {
   3148  1.172.2.1      yamt 						pmap_syncicache_page(opg);
   3149  1.172.2.1      yamt 						PMAPCOUNT(exec_synced_kremove);
   3150  1.172.2.1      yamt 					}
   3151  1.172.2.1      yamt 				}
   3152  1.172.2.2      yamt 				KASSERT(opg->mdpage.pvh_attrs & (PVF_COLORED|PVF_NC));
   3153  1.172.2.1      yamt 				opg->mdpage.pvh_attrs &= ~PVF_KENTRY;
   3154  1.172.2.1      yamt 				pmap_vac_me_harder(opg, NULL, 0);
   3155  1.172.2.1      yamt 				simple_unlock(&opg->mdpage.pvh_slock);
   3156  1.172.2.1      yamt 			}
   3157  1.172.2.1      yamt #endif
   3158      1.134   thorpej 			if (l2pte_valid(opte)) {
   3159  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   3160      1.134   thorpej 				cpu_dcache_wbinv_range(va, PAGE_SIZE);
   3161  1.172.2.1      yamt #endif
   3162      1.134   thorpej 				cpu_tlb_flushD_SE(va);
   3163      1.134   thorpej 			}
   3164      1.134   thorpej 			if (opte) {
   3165      1.134   thorpej 				*ptep = 0;
   3166      1.134   thorpej 				mappings++;
   3167      1.134   thorpej 			}
   3168      1.134   thorpej 			va += PAGE_SIZE;
   3169      1.134   thorpej 			ptep++;
   3170      1.134   thorpej 		}
   3171      1.134   thorpej 		KDASSERT(mappings <= l2b->l2b_occupancy);
   3172      1.134   thorpej 		l2b->l2b_occupancy -= mappings;
   3173      1.134   thorpej 		PTE_SYNC_RANGE(sptep, (u_int)(ptep - sptep));
   3174      1.134   thorpej 	}
   3175      1.134   thorpej 	cpu_cpwait();
   3176      1.134   thorpej }
   3177      1.134   thorpej 
   3178      1.159   thorpej bool
   3179      1.134   thorpej pmap_extract(pmap_t pm, vaddr_t va, paddr_t *pap)
   3180      1.134   thorpej {
   3181      1.134   thorpej 	struct l2_dtable *l2;
   3182      1.134   thorpej 	pd_entry_t *pl1pd, l1pd;
   3183      1.134   thorpej 	pt_entry_t *ptep, pte;
   3184      1.134   thorpej 	paddr_t pa;
   3185      1.134   thorpej 	u_int l1idx;
   3186      1.134   thorpej 
   3187      1.134   thorpej 	pmap_acquire_pmap_lock(pm);
   3188      1.134   thorpej 
   3189      1.134   thorpej 	l1idx = L1_IDX(va);
   3190      1.134   thorpej 	pl1pd = &pm->pm_l1->l1_kva[l1idx];
   3191      1.134   thorpej 	l1pd = *pl1pd;
   3192      1.134   thorpej 
   3193      1.134   thorpej 	if (l1pte_section_p(l1pd)) {
   3194      1.134   thorpej 		/*
   3195      1.134   thorpej 		 * These should only happen for pmap_kernel()
   3196      1.134   thorpej 		 */
   3197      1.134   thorpej 		KDASSERT(pm == pmap_kernel());
   3198      1.134   thorpej 		pmap_release_pmap_lock(pm);
   3199      1.134   thorpej 		pa = (l1pd & L1_S_FRAME) | (va & L1_S_OFFSET);
   3200      1.134   thorpej 	} else {
   3201      1.134   thorpej 		/*
   3202      1.134   thorpej 		 * Note that we can't rely on the validity of the L1
   3203      1.134   thorpej 		 * descriptor as an indication that a mapping exists.
   3204      1.134   thorpej 		 * We have to look it up in the L2 dtable.
   3205      1.134   thorpej 		 */
   3206      1.134   thorpej 		l2 = pm->pm_l2[L2_IDX(l1idx)];
   3207      1.134   thorpej 
   3208      1.134   thorpej 		if (l2 == NULL ||
   3209      1.134   thorpej 		    (ptep = l2->l2_bucket[L2_BUCKET(l1idx)].l2b_kva) == NULL) {
   3210      1.134   thorpej 			pmap_release_pmap_lock(pm);
   3211  1.172.2.1      yamt 			return false;
   3212      1.134   thorpej 		}
   3213      1.134   thorpej 
   3214      1.134   thorpej 		ptep = &ptep[l2pte_index(va)];
   3215      1.134   thorpej 		pte = *ptep;
   3216      1.134   thorpej 		pmap_release_pmap_lock(pm);
   3217      1.134   thorpej 
   3218      1.134   thorpej 		if (pte == 0)
   3219  1.172.2.1      yamt 			return false;
   3220      1.134   thorpej 
   3221      1.134   thorpej 		switch (pte & L2_TYPE_MASK) {
   3222      1.134   thorpej 		case L2_TYPE_L:
   3223      1.134   thorpej 			pa = (pte & L2_L_FRAME) | (va & L2_L_OFFSET);
   3224      1.134   thorpej 			break;
   3225      1.134   thorpej 
   3226      1.134   thorpej 		default:
   3227      1.134   thorpej 			pa = (pte & L2_S_FRAME) | (va & L2_S_OFFSET);
   3228      1.134   thorpej 			break;
   3229      1.134   thorpej 		}
   3230      1.134   thorpej 	}
   3231      1.134   thorpej 
   3232      1.134   thorpej 	if (pap != NULL)
   3233      1.134   thorpej 		*pap = pa;
   3234      1.134   thorpej 
   3235  1.172.2.1      yamt 	return true;
   3236      1.134   thorpej }
   3237      1.134   thorpej 
   3238      1.134   thorpej void
   3239      1.134   thorpej pmap_protect(pmap_t pm, vaddr_t sva, vaddr_t eva, vm_prot_t prot)
   3240      1.134   thorpej {
   3241      1.134   thorpej 	struct l2_bucket *l2b;
   3242      1.134   thorpej 	pt_entry_t *ptep, pte;
   3243      1.134   thorpej 	vaddr_t next_bucket;
   3244      1.134   thorpej 	u_int flags;
   3245  1.172.2.1      yamt 	u_int clr_mask;
   3246      1.134   thorpej 	int flush;
   3247      1.134   thorpej 
   3248      1.134   thorpej 	NPDEBUG(PDB_PROTECT,
   3249      1.134   thorpej 	    printf("pmap_protect: pm %p sva 0x%lx eva 0x%lx prot 0x%x\n",
   3250      1.134   thorpej 	    pm, sva, eva, prot));
   3251      1.134   thorpej 
   3252      1.134   thorpej 	if ((prot & VM_PROT_READ) == 0) {
   3253      1.134   thorpej 		pmap_remove(pm, sva, eva);
   3254      1.134   thorpej 		return;
   3255      1.134   thorpej 	}
   3256      1.134   thorpej 
   3257      1.134   thorpej 	if (prot & VM_PROT_WRITE) {
   3258      1.134   thorpej 		/*
   3259      1.134   thorpej 		 * If this is a read->write transition, just ignore it and let
   3260      1.134   thorpej 		 * uvm_fault() take care of it later.
   3261      1.134   thorpej 		 */
   3262      1.134   thorpej 		return;
   3263      1.134   thorpej 	}
   3264      1.134   thorpej 
   3265      1.134   thorpej 	PMAP_MAP_TO_HEAD_LOCK();
   3266      1.134   thorpej 	pmap_acquire_pmap_lock(pm);
   3267      1.134   thorpej 
   3268      1.134   thorpej 	flush = ((eva - sva) >= (PAGE_SIZE * 4)) ? 0 : -1;
   3269      1.134   thorpej 	flags = 0;
   3270  1.172.2.1      yamt 	clr_mask = PVF_WRITE | ((prot & VM_PROT_EXECUTE) ? 0 : PVF_EXEC);
   3271      1.134   thorpej 
   3272      1.134   thorpej 	while (sva < eva) {
   3273      1.134   thorpej 		next_bucket = L2_NEXT_BUCKET(sva);
   3274      1.134   thorpej 		if (next_bucket > eva)
   3275      1.134   thorpej 			next_bucket = eva;
   3276      1.134   thorpej 
   3277      1.134   thorpej 		l2b = pmap_get_l2_bucket(pm, sva);
   3278      1.134   thorpej 		if (l2b == NULL) {
   3279      1.134   thorpej 			sva = next_bucket;
   3280      1.134   thorpej 			continue;
   3281      1.134   thorpej 		}
   3282      1.134   thorpej 
   3283      1.134   thorpej 		ptep = &l2b->l2b_kva[l2pte_index(sva)];
   3284      1.134   thorpej 
   3285      1.134   thorpej 		while (sva < next_bucket) {
   3286  1.172.2.1      yamt 			pte = *ptep;
   3287  1.172.2.1      yamt 			if (l2pte_valid(pte) != 0 && (pte & L2_S_PROT_W) != 0) {
   3288      1.134   thorpej 				struct vm_page *pg;
   3289      1.134   thorpej 				u_int f;
   3290      1.134   thorpej 
   3291  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   3292  1.172.2.1      yamt 				/*
   3293  1.172.2.1      yamt 				 * OK, at this point, we know we're doing
   3294  1.172.2.1      yamt 				 * write-protect operation.  If the pmap is
   3295  1.172.2.1      yamt 				 * active, write-back the page.
   3296  1.172.2.1      yamt 				 */
   3297  1.172.2.1      yamt 				pmap_dcache_wb_range(pm, sva, PAGE_SIZE,
   3298  1.172.2.1      yamt 				    false, false);
   3299  1.172.2.1      yamt #endif
   3300  1.172.2.1      yamt 
   3301      1.134   thorpej 				pg = PHYS_TO_VM_PAGE(l2pte_pa(pte));
   3302      1.134   thorpej 				pte &= ~L2_S_PROT_W;
   3303      1.134   thorpej 				*ptep = pte;
   3304      1.134   thorpej 				PTE_SYNC(ptep);
   3305      1.134   thorpej 
   3306      1.134   thorpej 				if (pg != NULL) {
   3307      1.134   thorpej 					simple_lock(&pg->mdpage.pvh_slock);
   3308      1.134   thorpej 					f = pmap_modify_pv(pg, pm, sva,
   3309  1.172.2.1      yamt 					    clr_mask, 0);
   3310      1.134   thorpej 					pmap_vac_me_harder(pg, pm, sva);
   3311      1.134   thorpej 					simple_unlock(&pg->mdpage.pvh_slock);
   3312      1.134   thorpej 				} else
   3313      1.134   thorpej 					f = PVF_REF | PVF_EXEC;
   3314      1.134   thorpej 
   3315      1.134   thorpej 				if (flush >= 0) {
   3316      1.134   thorpej 					flush++;
   3317      1.134   thorpej 					flags |= f;
   3318      1.134   thorpej 				} else
   3319      1.134   thorpej 				if (PV_BEEN_EXECD(f))
   3320      1.134   thorpej 					pmap_tlb_flushID_SE(pm, sva);
   3321      1.134   thorpej 				else
   3322      1.134   thorpej 				if (PV_BEEN_REFD(f))
   3323      1.134   thorpej 					pmap_tlb_flushD_SE(pm, sva);
   3324        1.1      matt 			}
   3325      1.134   thorpej 
   3326      1.134   thorpej 			sva += PAGE_SIZE;
   3327      1.134   thorpej 			ptep++;
   3328      1.134   thorpej 		}
   3329        1.1      matt 	}
   3330        1.1      matt 
   3331      1.134   thorpej 	pmap_release_pmap_lock(pm);
   3332      1.134   thorpej 	PMAP_MAP_TO_HEAD_UNLOCK();
   3333      1.134   thorpej 
   3334      1.134   thorpej 	if (flush) {
   3335      1.134   thorpej 		if (PV_BEEN_EXECD(flags))
   3336      1.134   thorpej 			pmap_tlb_flushID(pm);
   3337      1.134   thorpej 		else
   3338      1.134   thorpej 		if (PV_BEEN_REFD(flags))
   3339      1.134   thorpej 			pmap_tlb_flushD(pm);
   3340      1.134   thorpej 	}
   3341      1.134   thorpej }
   3342      1.134   thorpej 
   3343      1.134   thorpej void
   3344  1.172.2.1      yamt pmap_icache_sync_range(pmap_t pm, vaddr_t sva, vaddr_t eva)
   3345  1.172.2.1      yamt {
   3346  1.172.2.1      yamt 	struct l2_bucket *l2b;
   3347  1.172.2.1      yamt 	pt_entry_t *ptep;
   3348  1.172.2.1      yamt 	vaddr_t next_bucket;
   3349  1.172.2.1      yamt 	vsize_t page_size = trunc_page(sva) + PAGE_SIZE - sva;
   3350  1.172.2.1      yamt 
   3351  1.172.2.1      yamt 	NPDEBUG(PDB_EXEC,
   3352  1.172.2.1      yamt 	    printf("pmap_icache_sync_range: pm %p sva 0x%lx eva 0x%lx\n",
   3353  1.172.2.1      yamt 	    pm, sva, eva));
   3354  1.172.2.1      yamt 
   3355  1.172.2.1      yamt 	PMAP_MAP_TO_HEAD_LOCK();
   3356  1.172.2.1      yamt 	pmap_acquire_pmap_lock(pm);
   3357  1.172.2.1      yamt 
   3358  1.172.2.1      yamt 	while (sva < eva) {
   3359  1.172.2.1      yamt 		next_bucket = L2_NEXT_BUCKET(sva);
   3360  1.172.2.1      yamt 		if (next_bucket > eva)
   3361  1.172.2.1      yamt 			next_bucket = eva;
   3362  1.172.2.1      yamt 
   3363  1.172.2.1      yamt 		l2b = pmap_get_l2_bucket(pm, sva);
   3364  1.172.2.1      yamt 		if (l2b == NULL) {
   3365  1.172.2.1      yamt 			sva = next_bucket;
   3366  1.172.2.1      yamt 			continue;
   3367  1.172.2.1      yamt 		}
   3368  1.172.2.1      yamt 
   3369  1.172.2.1      yamt 		for (ptep = &l2b->l2b_kva[l2pte_index(sva)];
   3370  1.172.2.1      yamt 		     sva < next_bucket;
   3371  1.172.2.1      yamt 		     sva += page_size, ptep++, page_size = PAGE_SIZE) {
   3372  1.172.2.1      yamt 			if (l2pte_valid(*ptep)) {
   3373  1.172.2.1      yamt 				cpu_icache_sync_range(sva,
   3374  1.172.2.1      yamt 				    min(page_size, eva - sva));
   3375  1.172.2.1      yamt 			}
   3376  1.172.2.1      yamt 		}
   3377  1.172.2.1      yamt 	}
   3378  1.172.2.1      yamt 
   3379  1.172.2.1      yamt 	pmap_release_pmap_lock(pm);
   3380  1.172.2.1      yamt 	PMAP_MAP_TO_HEAD_UNLOCK();
   3381  1.172.2.1      yamt }
   3382  1.172.2.1      yamt 
   3383  1.172.2.1      yamt void
   3384      1.134   thorpej pmap_page_protect(struct vm_page *pg, vm_prot_t prot)
   3385      1.134   thorpej {
   3386      1.134   thorpej 
   3387      1.134   thorpej 	NPDEBUG(PDB_PROTECT,
   3388      1.134   thorpej 	    printf("pmap_page_protect: pg %p (0x%08lx), prot 0x%x\n",
   3389      1.155      yamt 	    pg, VM_PAGE_TO_PHYS(pg), prot));
   3390      1.134   thorpej 
   3391      1.134   thorpej 	switch(prot) {
   3392      1.134   thorpej 		return;
   3393  1.172.2.1      yamt 	case VM_PROT_READ|VM_PROT_WRITE:
   3394  1.172.2.1      yamt #if defined(PMAP_CHECK_VIPT) && defined(PMAP_APX)
   3395  1.172.2.1      yamt 		pmap_clearbit(pg, PVF_EXEC);
   3396  1.172.2.1      yamt 		break;
   3397  1.172.2.1      yamt #endif
   3398  1.172.2.1      yamt 	case VM_PROT_READ|VM_PROT_WRITE|VM_PROT_EXECUTE:
   3399  1.172.2.1      yamt 		break;
   3400      1.134   thorpej 
   3401      1.134   thorpej 	case VM_PROT_READ:
   3402  1.172.2.1      yamt #if defined(PMAP_CHECK_VIPT) && defined(PMAP_APX)
   3403  1.172.2.1      yamt 		pmap_clearbit(pg, PVF_WRITE|PVF_EXEC);
   3404  1.172.2.1      yamt 		break;
   3405  1.172.2.1      yamt #endif
   3406      1.134   thorpej 	case VM_PROT_READ|VM_PROT_EXECUTE:
   3407      1.134   thorpej 		pmap_clearbit(pg, PVF_WRITE);
   3408      1.134   thorpej 		break;
   3409      1.134   thorpej 
   3410      1.134   thorpej 	default:
   3411      1.134   thorpej 		pmap_page_remove(pg);
   3412      1.134   thorpej 		break;
   3413      1.134   thorpej 	}
   3414      1.134   thorpej }
   3415      1.134   thorpej 
   3416      1.134   thorpej /*
   3417      1.134   thorpej  * pmap_clear_modify:
   3418      1.134   thorpej  *
   3419      1.134   thorpej  *	Clear the "modified" attribute for a page.
   3420      1.134   thorpej  */
   3421      1.159   thorpej bool
   3422      1.134   thorpej pmap_clear_modify(struct vm_page *pg)
   3423      1.134   thorpej {
   3424      1.159   thorpej 	bool rv;
   3425      1.134   thorpej 
   3426      1.134   thorpej 	if (pg->mdpage.pvh_attrs & PVF_MOD) {
   3427      1.160   thorpej 		rv = true;
   3428      1.134   thorpej 		pmap_clearbit(pg, PVF_MOD);
   3429      1.134   thorpej 	} else
   3430      1.160   thorpej 		rv = false;
   3431      1.134   thorpej 
   3432      1.134   thorpej 	return (rv);
   3433      1.134   thorpej }
   3434      1.134   thorpej 
   3435      1.134   thorpej /*
   3436      1.134   thorpej  * pmap_clear_reference:
   3437      1.134   thorpej  *
   3438      1.134   thorpej  *	Clear the "referenced" attribute for a page.
   3439      1.134   thorpej  */
   3440      1.159   thorpej bool
   3441      1.134   thorpej pmap_clear_reference(struct vm_page *pg)
   3442      1.134   thorpej {
   3443      1.159   thorpej 	bool rv;
   3444      1.134   thorpej 
   3445      1.134   thorpej 	if (pg->mdpage.pvh_attrs & PVF_REF) {
   3446      1.160   thorpej 		rv = true;
   3447      1.134   thorpej 		pmap_clearbit(pg, PVF_REF);
   3448      1.134   thorpej 	} else
   3449      1.160   thorpej 		rv = false;
   3450      1.134   thorpej 
   3451      1.134   thorpej 	return (rv);
   3452      1.134   thorpej }
   3453      1.134   thorpej 
   3454      1.134   thorpej /*
   3455      1.134   thorpej  * pmap_is_modified:
   3456      1.134   thorpej  *
   3457      1.134   thorpej  *	Test if a page has the "modified" attribute.
   3458      1.134   thorpej  */
   3459      1.134   thorpej /* See <arm/arm32/pmap.h> */
   3460      1.134   thorpej 
   3461      1.134   thorpej /*
   3462      1.134   thorpej  * pmap_is_referenced:
   3463      1.134   thorpej  *
   3464      1.134   thorpej  *	Test if a page has the "referenced" attribute.
   3465      1.134   thorpej  */
   3466      1.134   thorpej /* See <arm/arm32/pmap.h> */
   3467      1.134   thorpej 
   3468      1.134   thorpej int
   3469      1.134   thorpej pmap_fault_fixup(pmap_t pm, vaddr_t va, vm_prot_t ftype, int user)
   3470      1.134   thorpej {
   3471      1.134   thorpej 	struct l2_dtable *l2;
   3472      1.134   thorpej 	struct l2_bucket *l2b;
   3473      1.134   thorpej 	pd_entry_t *pl1pd, l1pd;
   3474      1.134   thorpej 	pt_entry_t *ptep, pte;
   3475      1.134   thorpej 	paddr_t pa;
   3476      1.134   thorpej 	u_int l1idx;
   3477      1.134   thorpej 	int rv = 0;
   3478      1.134   thorpej 
   3479      1.134   thorpej 	PMAP_MAP_TO_HEAD_LOCK();
   3480      1.134   thorpej 	pmap_acquire_pmap_lock(pm);
   3481      1.134   thorpej 
   3482      1.134   thorpej 	l1idx = L1_IDX(va);
   3483      1.134   thorpej 
   3484      1.134   thorpej 	/*
   3485      1.134   thorpej 	 * If there is no l2_dtable for this address, then the process
   3486      1.134   thorpej 	 * has no business accessing it.
   3487      1.134   thorpej 	 *
   3488      1.134   thorpej 	 * Note: This will catch userland processes trying to access
   3489      1.134   thorpej 	 * kernel addresses.
   3490      1.134   thorpej 	 */
   3491      1.134   thorpej 	l2 = pm->pm_l2[L2_IDX(l1idx)];
   3492      1.134   thorpej 	if (l2 == NULL)
   3493      1.134   thorpej 		goto out;
   3494      1.134   thorpej 
   3495        1.1      matt 	/*
   3496      1.134   thorpej 	 * Likewise if there is no L2 descriptor table
   3497        1.1      matt 	 */
   3498      1.134   thorpej 	l2b = &l2->l2_bucket[L2_BUCKET(l1idx)];
   3499      1.134   thorpej 	if (l2b->l2b_kva == NULL)
   3500      1.134   thorpej 		goto out;
   3501      1.134   thorpej 
   3502      1.134   thorpej 	/*
   3503      1.134   thorpej 	 * Check the PTE itself.
   3504      1.134   thorpej 	 */
   3505      1.134   thorpej 	ptep = &l2b->l2b_kva[l2pte_index(va)];
   3506      1.134   thorpej 	pte = *ptep;
   3507      1.134   thorpej 	if (pte == 0)
   3508      1.134   thorpej 		goto out;
   3509      1.134   thorpej 
   3510      1.134   thorpej 	/*
   3511      1.134   thorpej 	 * Catch a userland access to the vector page mapped at 0x0
   3512      1.134   thorpej 	 */
   3513      1.134   thorpej 	if (user && (pte & L2_S_PROT_U) == 0)
   3514      1.134   thorpej 		goto out;
   3515      1.134   thorpej 
   3516      1.134   thorpej 	pa = l2pte_pa(pte);
   3517      1.134   thorpej 
   3518      1.134   thorpej 	if ((ftype & VM_PROT_WRITE) && (pte & L2_S_PROT_W) == 0) {
   3519      1.134   thorpej 		/*
   3520      1.134   thorpej 		 * This looks like a good candidate for "page modified"
   3521      1.134   thorpej 		 * emulation...
   3522      1.134   thorpej 		 */
   3523      1.134   thorpej 		struct pv_entry *pv;
   3524      1.134   thorpej 		struct vm_page *pg;
   3525      1.134   thorpej 
   3526      1.134   thorpej 		/* Extract the physical address of the page */
   3527      1.134   thorpej 		if ((pg = PHYS_TO_VM_PAGE(pa)) == NULL)
   3528      1.134   thorpej 			goto out;
   3529      1.134   thorpej 
   3530      1.134   thorpej 		/* Get the current flags for this page. */
   3531      1.134   thorpej 		simple_lock(&pg->mdpage.pvh_slock);
   3532      1.134   thorpej 
   3533      1.134   thorpej 		pv = pmap_find_pv(pg, pm, va);
   3534      1.134   thorpej 		if (pv == NULL) {
   3535      1.134   thorpej 	    		simple_unlock(&pg->mdpage.pvh_slock);
   3536      1.134   thorpej 			goto out;
   3537      1.134   thorpej 		}
   3538      1.134   thorpej 
   3539      1.134   thorpej 		/*
   3540      1.134   thorpej 		 * Do the flags say this page is writable? If not then it
   3541      1.134   thorpej 		 * is a genuine write fault. If yes then the write fault is
   3542      1.134   thorpej 		 * our fault as we did not reflect the write access in the
   3543      1.134   thorpej 		 * PTE. Now we know a write has occurred we can correct this
   3544      1.134   thorpej 		 * and also set the modified bit
   3545      1.134   thorpej 		 */
   3546      1.134   thorpej 		if ((pv->pv_flags & PVF_WRITE) == 0) {
   3547      1.134   thorpej 		    	simple_unlock(&pg->mdpage.pvh_slock);
   3548      1.134   thorpej 			goto out;
   3549      1.134   thorpej 		}
   3550      1.134   thorpej 
   3551      1.134   thorpej 		NPDEBUG(PDB_FOLLOW,
   3552      1.134   thorpej 		    printf("pmap_fault_fixup: mod emul. pm %p, va 0x%08lx, pa 0x%08lx\n",
   3553      1.155      yamt 		    pm, va, VM_PAGE_TO_PHYS(pg)));
   3554      1.134   thorpej 
   3555      1.134   thorpej 		pg->mdpage.pvh_attrs |= PVF_REF | PVF_MOD;
   3556      1.134   thorpej 		pv->pv_flags |= PVF_REF | PVF_MOD;
   3557      1.134   thorpej 		simple_unlock(&pg->mdpage.pvh_slock);
   3558      1.134   thorpej 
   3559      1.134   thorpej 		/*
   3560      1.134   thorpej 		 * Re-enable write permissions for the page.  No need to call
   3561      1.134   thorpej 		 * pmap_vac_me_harder(), since this is just a
   3562      1.134   thorpej 		 * modified-emulation fault, and the PVF_WRITE bit isn't
   3563      1.134   thorpej 		 * changing. We've already set the cacheable bits based on
   3564      1.134   thorpej 		 * the assumption that we can write to this page.
   3565      1.134   thorpej 		 */
   3566      1.134   thorpej 		*ptep = (pte & ~L2_TYPE_MASK) | L2_S_PROTO | L2_S_PROT_W;
   3567      1.134   thorpej 		PTE_SYNC(ptep);
   3568      1.134   thorpej 		rv = 1;
   3569      1.134   thorpej 	} else
   3570      1.134   thorpej 	if ((pte & L2_TYPE_MASK) == L2_TYPE_INV) {
   3571      1.134   thorpej 		/*
   3572      1.134   thorpej 		 * This looks like a good candidate for "page referenced"
   3573      1.134   thorpej 		 * emulation.
   3574      1.134   thorpej 		 */
   3575      1.134   thorpej 		struct pv_entry *pv;
   3576      1.134   thorpej 		struct vm_page *pg;
   3577      1.134   thorpej 
   3578      1.134   thorpej 		/* Extract the physical address of the page */
   3579      1.134   thorpej 		if ((pg = PHYS_TO_VM_PAGE(pa)) == NULL)
   3580      1.134   thorpej 			goto out;
   3581      1.134   thorpej 
   3582      1.134   thorpej 		/* Get the current flags for this page. */
   3583      1.134   thorpej 		simple_lock(&pg->mdpage.pvh_slock);
   3584      1.134   thorpej 
   3585      1.134   thorpej 		pv = pmap_find_pv(pg, pm, va);
   3586      1.134   thorpej 		if (pv == NULL) {
   3587      1.134   thorpej 	    		simple_unlock(&pg->mdpage.pvh_slock);
   3588      1.134   thorpej 			goto out;
   3589      1.134   thorpej 		}
   3590      1.134   thorpej 
   3591      1.134   thorpej 		pg->mdpage.pvh_attrs |= PVF_REF;
   3592      1.134   thorpej 		pv->pv_flags |= PVF_REF;
   3593      1.134   thorpej 		simple_unlock(&pg->mdpage.pvh_slock);
   3594        1.1      matt 
   3595      1.134   thorpej 		NPDEBUG(PDB_FOLLOW,
   3596      1.134   thorpej 		    printf("pmap_fault_fixup: ref emul. pm %p, va 0x%08lx, pa 0x%08lx\n",
   3597      1.155      yamt 		    pm, va, VM_PAGE_TO_PHYS(pg)));
   3598      1.134   thorpej 
   3599      1.134   thorpej 		*ptep = (pte & ~L2_TYPE_MASK) | L2_S_PROTO;
   3600      1.134   thorpej 		PTE_SYNC(ptep);
   3601      1.134   thorpej 		rv = 1;
   3602      1.134   thorpej 	}
   3603      1.134   thorpej 
   3604      1.134   thorpej 	/*
   3605      1.134   thorpej 	 * We know there is a valid mapping here, so simply
   3606      1.134   thorpej 	 * fix up the L1 if necessary.
   3607      1.134   thorpej 	 */
   3608      1.134   thorpej 	pl1pd = &pm->pm_l1->l1_kva[l1idx];
   3609      1.134   thorpej 	l1pd = l2b->l2b_phys | L1_C_DOM(pm->pm_domain) | L1_C_PROTO;
   3610      1.134   thorpej 	if (*pl1pd != l1pd) {
   3611      1.134   thorpej 		*pl1pd = l1pd;
   3612      1.134   thorpej 		PTE_SYNC(pl1pd);
   3613      1.134   thorpej 		rv = 1;
   3614      1.134   thorpej 	}
   3615      1.134   thorpej 
   3616      1.134   thorpej #ifdef CPU_SA110
   3617      1.134   thorpej 	/*
   3618      1.134   thorpej 	 * There are bugs in the rev K SA110.  This is a check for one
   3619      1.134   thorpej 	 * of them.
   3620      1.134   thorpej 	 */
   3621      1.134   thorpej 	if (rv == 0 && curcpu()->ci_arm_cputype == CPU_ID_SA110 &&
   3622      1.134   thorpej 	    curcpu()->ci_arm_cpurev < 3) {
   3623      1.134   thorpej 		/* Always current pmap */
   3624      1.134   thorpej 		if (l2pte_valid(pte)) {
   3625      1.134   thorpej 			extern int kernel_debug;
   3626      1.134   thorpej 			if (kernel_debug & 1) {
   3627      1.134   thorpej 				struct proc *p = curlwp->l_proc;
   3628      1.134   thorpej 				printf("prefetch_abort: page is already "
   3629      1.134   thorpej 				    "mapped - pte=%p *pte=%08x\n", ptep, pte);
   3630      1.134   thorpej 				printf("prefetch_abort: pc=%08lx proc=%p "
   3631      1.134   thorpej 				    "process=%s\n", va, p, p->p_comm);
   3632      1.134   thorpej 				printf("prefetch_abort: far=%08x fs=%x\n",
   3633      1.134   thorpej 				    cpu_faultaddress(), cpu_faultstatus());
   3634      1.113   thorpej 			}
   3635      1.134   thorpej #ifdef DDB
   3636      1.134   thorpej 			if (kernel_debug & 2)
   3637      1.134   thorpej 				Debugger();
   3638      1.134   thorpej #endif
   3639      1.134   thorpej 			rv = 1;
   3640        1.1      matt 		}
   3641        1.1      matt 	}
   3642      1.134   thorpej #endif /* CPU_SA110 */
   3643      1.104   thorpej 
   3644      1.134   thorpej #ifdef DEBUG
   3645      1.134   thorpej 	/*
   3646      1.134   thorpej 	 * If 'rv == 0' at this point, it generally indicates that there is a
   3647      1.134   thorpej 	 * stale TLB entry for the faulting address. This happens when two or
   3648      1.134   thorpej 	 * more processes are sharing an L1. Since we don't flush the TLB on
   3649      1.134   thorpej 	 * a context switch between such processes, we can take domain faults
   3650      1.134   thorpej 	 * for mappings which exist at the same VA in both processes. EVEN IF
   3651      1.134   thorpej 	 * WE'VE RECENTLY FIXED UP THE CORRESPONDING L1 in pmap_enter(), for
   3652      1.134   thorpej 	 * example.
   3653      1.134   thorpej 	 *
   3654      1.134   thorpej 	 * This is extremely likely to happen if pmap_enter() updated the L1
   3655      1.134   thorpej 	 * entry for a recently entered mapping. In this case, the TLB is
   3656      1.134   thorpej 	 * flushed for the new mapping, but there may still be TLB entries for
   3657      1.134   thorpej 	 * other mappings belonging to other processes in the 1MB range
   3658      1.134   thorpej 	 * covered by the L1 entry.
   3659      1.134   thorpej 	 *
   3660      1.134   thorpej 	 * Since 'rv == 0', we know that the L1 already contains the correct
   3661      1.134   thorpej 	 * value, so the fault must be due to a stale TLB entry.
   3662      1.134   thorpej 	 *
   3663      1.134   thorpej 	 * Since we always need to flush the TLB anyway in the case where we
   3664      1.134   thorpej 	 * fixed up the L1, or frobbed the L2 PTE, we effectively deal with
   3665      1.134   thorpej 	 * stale TLB entries dynamically.
   3666      1.134   thorpej 	 *
   3667      1.134   thorpej 	 * However, the above condition can ONLY happen if the current L1 is
   3668      1.134   thorpej 	 * being shared. If it happens when the L1 is unshared, it indicates
   3669      1.134   thorpej 	 * that other parts of the pmap are not doing their job WRT managing
   3670      1.134   thorpej 	 * the TLB.
   3671      1.134   thorpej 	 */
   3672      1.134   thorpej 	if (rv == 0 && pm->pm_l1->l1_domain_use_count == 1) {
   3673      1.134   thorpej 		extern int last_fault_code;
   3674      1.134   thorpej 		printf("fixup: pm %p, va 0x%lx, ftype %d - nothing to do!\n",
   3675      1.134   thorpej 		    pm, va, ftype);
   3676      1.134   thorpej 		printf("fixup: l2 %p, l2b %p, ptep %p, pl1pd %p\n",
   3677      1.134   thorpej 		    l2, l2b, ptep, pl1pd);
   3678      1.134   thorpej 		printf("fixup: pte 0x%x, l1pd 0x%x, last code 0x%x\n",
   3679      1.134   thorpej 		    pte, l1pd, last_fault_code);
   3680      1.134   thorpej #ifdef DDB
   3681      1.134   thorpej 		Debugger();
   3682      1.134   thorpej #endif
   3683      1.134   thorpej 	}
   3684      1.134   thorpej #endif
   3685      1.134   thorpej 
   3686      1.134   thorpej 	cpu_tlb_flushID_SE(va);
   3687      1.134   thorpej 	cpu_cpwait();
   3688      1.134   thorpej 
   3689      1.134   thorpej 	rv = 1;
   3690      1.104   thorpej 
   3691      1.134   thorpej out:
   3692      1.134   thorpej 	pmap_release_pmap_lock(pm);
   3693       1.17     chris 	PMAP_MAP_TO_HEAD_UNLOCK();
   3694      1.134   thorpej 
   3695      1.134   thorpej 	return (rv);
   3696      1.134   thorpej }
   3697      1.134   thorpej 
   3698      1.134   thorpej /*
   3699      1.134   thorpej  * pmap_collect: free resources held by a pmap
   3700      1.134   thorpej  *
   3701      1.134   thorpej  * => optional function.
   3702      1.134   thorpej  * => called when a process is swapped out to free memory.
   3703      1.134   thorpej  */
   3704      1.134   thorpej void
   3705      1.134   thorpej pmap_collect(pmap_t pm)
   3706      1.134   thorpej {
   3707      1.156       scw 
   3708  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   3709      1.156       scw 	pmap_idcache_wbinv_all(pm);
   3710  1.172.2.1      yamt #endif
   3711      1.160   thorpej 	pm->pm_remove_all = true;
   3712      1.156       scw 	pmap_do_remove(pm, VM_MIN_ADDRESS, VM_MAX_ADDRESS, 1);
   3713      1.156       scw 	pmap_update(pm);
   3714  1.172.2.1      yamt 	PMAPCOUNT(collects);
   3715        1.1      matt }
   3716        1.1      matt 
   3717        1.1      matt /*
   3718      1.134   thorpej  * Routine:	pmap_procwr
   3719      1.134   thorpej  *
   3720        1.1      matt  * Function:
   3721      1.134   thorpej  *	Synchronize caches corresponding to [addr, addr+len) in p.
   3722      1.134   thorpej  *
   3723      1.134   thorpej  */
   3724      1.134   thorpej void
   3725      1.134   thorpej pmap_procwr(struct proc *p, vaddr_t va, int len)
   3726      1.134   thorpej {
   3727      1.134   thorpej 	/* We only need to do anything if it is the current process. */
   3728      1.134   thorpej 	if (p == curproc)
   3729      1.134   thorpej 		cpu_icache_sync_range(va, len);
   3730      1.134   thorpej }
   3731      1.134   thorpej 
   3732      1.134   thorpej /*
   3733      1.134   thorpej  * Routine:	pmap_unwire
   3734      1.134   thorpej  * Function:	Clear the wired attribute for a map/virtual-address pair.
   3735      1.134   thorpej  *
   3736      1.134   thorpej  * In/out conditions:
   3737      1.134   thorpej  *		The mapping must already exist in the pmap.
   3738        1.1      matt  */
   3739      1.134   thorpej void
   3740      1.134   thorpej pmap_unwire(pmap_t pm, vaddr_t va)
   3741      1.134   thorpej {
   3742      1.134   thorpej 	struct l2_bucket *l2b;
   3743      1.134   thorpej 	pt_entry_t *ptep, pte;
   3744      1.134   thorpej 	struct vm_page *pg;
   3745      1.134   thorpej 	paddr_t pa;
   3746      1.134   thorpej 
   3747      1.134   thorpej 	NPDEBUG(PDB_WIRING, printf("pmap_unwire: pm %p, va 0x%08lx\n", pm, va));
   3748      1.134   thorpej 
   3749      1.134   thorpej 	PMAP_MAP_TO_HEAD_LOCK();
   3750      1.134   thorpej 	pmap_acquire_pmap_lock(pm);
   3751      1.134   thorpej 
   3752      1.134   thorpej 	l2b = pmap_get_l2_bucket(pm, va);
   3753      1.134   thorpej 	KDASSERT(l2b != NULL);
   3754      1.134   thorpej 
   3755      1.134   thorpej 	ptep = &l2b->l2b_kva[l2pte_index(va)];
   3756      1.134   thorpej 	pte = *ptep;
   3757      1.134   thorpej 
   3758      1.134   thorpej 	/* Extract the physical address of the page */
   3759      1.134   thorpej 	pa = l2pte_pa(pte);
   3760        1.1      matt 
   3761      1.134   thorpej 	if ((pg = PHYS_TO_VM_PAGE(pa)) != NULL) {
   3762      1.134   thorpej 		/* Update the wired bit in the pv entry for this page. */
   3763      1.134   thorpej 		simple_lock(&pg->mdpage.pvh_slock);
   3764      1.134   thorpej 		(void) pmap_modify_pv(pg, pm, va, PVF_WIRED, 0);
   3765      1.134   thorpej 		simple_unlock(&pg->mdpage.pvh_slock);
   3766      1.134   thorpej 	}
   3767      1.134   thorpej 
   3768      1.134   thorpej 	pmap_release_pmap_lock(pm);
   3769      1.134   thorpej 	PMAP_MAP_TO_HEAD_UNLOCK();
   3770      1.134   thorpej }
   3771      1.134   thorpej 
   3772      1.134   thorpej void
   3773  1.172.2.1      yamt pmap_activate(struct lwp *l)
   3774        1.1      matt {
   3775      1.165       scw 	extern int block_userspace_access;
   3776      1.165       scw 	pmap_t opm, npm, rpm;
   3777      1.165       scw 	uint32_t odacr, ndacr;
   3778      1.165       scw 	int oldirqstate;
   3779      1.165       scw 
   3780  1.172.2.1      yamt 	/*
   3781  1.172.2.1      yamt 	 * If activating a non-current lwp or the current lwp is
   3782  1.172.2.1      yamt 	 * already active, just return.
   3783  1.172.2.1      yamt 	 */
   3784  1.172.2.1      yamt 	if (l != curlwp ||
   3785  1.172.2.1      yamt 	    l->l_proc->p_vmspace->vm_map.pmap->pm_activated == true)
   3786  1.172.2.1      yamt 		return;
   3787  1.172.2.1      yamt 
   3788  1.172.2.1      yamt 	npm = l->l_proc->p_vmspace->vm_map.pmap;
   3789      1.165       scw 	ndacr = (DOMAIN_CLIENT << (PMAP_DOMAIN_KERNEL * 2)) |
   3790      1.165       scw 	    (DOMAIN_CLIENT << (npm->pm_domain * 2));
   3791      1.134   thorpej 
   3792      1.165       scw 	/*
   3793      1.165       scw 	 * If TTB and DACR are unchanged, short-circuit all the
   3794      1.165       scw 	 * TLB/cache management stuff.
   3795      1.165       scw 	 */
   3796  1.172.2.1      yamt 	if (pmap_previous_active_lwp != NULL) {
   3797  1.172.2.1      yamt 		opm = pmap_previous_active_lwp->l_proc->p_vmspace->vm_map.pmap;
   3798      1.165       scw 		odacr = (DOMAIN_CLIENT << (PMAP_DOMAIN_KERNEL * 2)) |
   3799      1.165       scw 		    (DOMAIN_CLIENT << (opm->pm_domain * 2));
   3800      1.134   thorpej 
   3801      1.165       scw 		if (opm->pm_l1 == npm->pm_l1 && odacr == ndacr)
   3802      1.165       scw 			goto all_done;
   3803      1.165       scw 	} else
   3804      1.165       scw 		opm = NULL;
   3805      1.134   thorpej 
   3806  1.172.2.1      yamt 	PMAPCOUNT(activations);
   3807      1.165       scw 	block_userspace_access = 1;
   3808      1.134   thorpej 
   3809      1.165       scw 	/*
   3810      1.165       scw 	 * If switching to a user vmspace which is different to the
   3811      1.165       scw 	 * most recent one, and the most recent one is potentially
   3812      1.165       scw 	 * live in the cache, we must write-back and invalidate the
   3813      1.165       scw 	 * entire cache.
   3814      1.165       scw 	 */
   3815      1.165       scw 	rpm = pmap_recent_user;
   3816      1.165       scw 	if (npm != pmap_kernel() && rpm && npm != rpm &&
   3817      1.165       scw 	    rpm->pm_cstate.cs_cache) {
   3818      1.165       scw 		rpm->pm_cstate.cs_cache = 0;
   3819  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   3820      1.165       scw 		cpu_idcache_wbinv_all();
   3821  1.172.2.1      yamt #endif
   3822      1.165       scw 	}
   3823      1.134   thorpej 
   3824      1.165       scw 	/* No interrupts while we frob the TTB/DACR */
   3825      1.165       scw 	oldirqstate = disable_interrupts(I32_bit | F32_bit);
   3826        1.1      matt 
   3827      1.165       scw 	/*
   3828      1.165       scw 	 * For ARM_VECTORS_LOW, we MUST, I repeat, MUST fix up the L1
   3829      1.165       scw 	 * entry corresponding to 'vector_page' in the incoming L1 table
   3830      1.165       scw 	 * before switching to it otherwise subsequent interrupts/exceptions
   3831      1.165       scw 	 * (including domain faults!) will jump into hyperspace.
   3832      1.165       scw 	 */
   3833      1.165       scw 	if (npm->pm_pl1vec != NULL) {
   3834      1.165       scw 		cpu_tlb_flushID_SE((u_int)vector_page);
   3835      1.165       scw 		cpu_cpwait();
   3836      1.165       scw 		*npm->pm_pl1vec = npm->pm_l1vec;
   3837      1.165       scw 		PTE_SYNC(npm->pm_pl1vec);
   3838      1.165       scw 	}
   3839        1.1      matt 
   3840      1.165       scw 	cpu_domains(ndacr);
   3841        1.1      matt 
   3842      1.165       scw 	if (npm == pmap_kernel() || npm == rpm) {
   3843      1.134   thorpej 		/*
   3844      1.165       scw 		 * Switching to a kernel thread, or back to the
   3845      1.165       scw 		 * same user vmspace as before... Simply update
   3846      1.165       scw 		 * the TTB (no TLB flush required)
   3847      1.134   thorpej 		 */
   3848      1.165       scw 		__asm volatile("mcr p15, 0, %0, c2, c0, 0" ::
   3849      1.165       scw 		    "r"(npm->pm_l1->l1_physaddr));
   3850      1.165       scw 		cpu_cpwait();
   3851      1.165       scw 	} else {
   3852      1.165       scw 		/*
   3853      1.165       scw 		 * Otherwise, update TTB and flush TLB
   3854      1.165       scw 		 */
   3855      1.165       scw 		cpu_context_switch(npm->pm_l1->l1_physaddr);
   3856      1.165       scw 		if (rpm != NULL)
   3857      1.165       scw 			rpm->pm_cstate.cs_tlb = 0;
   3858      1.165       scw 	}
   3859      1.165       scw 
   3860      1.165       scw 	restore_interrupts(oldirqstate);
   3861      1.165       scw 
   3862      1.165       scw 	block_userspace_access = 0;
   3863      1.165       scw 
   3864      1.165       scw  all_done:
   3865      1.165       scw 	/*
   3866      1.165       scw 	 * The new pmap is resident. Make sure it's marked
   3867      1.165       scw 	 * as resident in the cache/TLB.
   3868      1.165       scw 	 */
   3869      1.165       scw 	npm->pm_cstate.cs_all = PMAP_CACHE_STATE_ALL;
   3870      1.165       scw 	if (npm != pmap_kernel())
   3871      1.165       scw 		pmap_recent_user = npm;
   3872        1.1      matt 
   3873      1.165       scw 	/* The old pmap is not longer active */
   3874      1.165       scw 	if (opm != NULL)
   3875      1.165       scw 		opm->pm_activated = false;
   3876        1.1      matt 
   3877      1.165       scw 	/* But the new one is */
   3878      1.165       scw 	npm->pm_activated = true;
   3879      1.165       scw }
   3880        1.1      matt 
   3881      1.165       scw void
   3882      1.134   thorpej pmap_deactivate(struct lwp *l)
   3883      1.134   thorpej {
   3884      1.165       scw 
   3885      1.165       scw 	l->l_proc->p_vmspace->vm_map.pmap->pm_activated = false;
   3886        1.1      matt }
   3887        1.1      matt 
   3888        1.1      matt void
   3889      1.134   thorpej pmap_update(pmap_t pm)
   3890        1.1      matt {
   3891        1.1      matt 
   3892      1.134   thorpej 	if (pm->pm_remove_all) {
   3893      1.134   thorpej 		/*
   3894      1.134   thorpej 		 * Finish up the pmap_remove_all() optimisation by flushing
   3895      1.134   thorpej 		 * the TLB.
   3896      1.134   thorpej 		 */
   3897      1.134   thorpej 		pmap_tlb_flushID(pm);
   3898      1.160   thorpej 		pm->pm_remove_all = false;
   3899      1.134   thorpej 	}
   3900        1.1      matt 
   3901      1.134   thorpej 	if (pmap_is_current(pm)) {
   3902      1.107   thorpej 		/*
   3903      1.134   thorpej 		 * If we're dealing with a current userland pmap, move its L1
   3904      1.134   thorpej 		 * to the end of the LRU.
   3905      1.107   thorpej 		 */
   3906      1.134   thorpej 		if (pm != pmap_kernel())
   3907      1.134   thorpej 			pmap_use_l1(pm);
   3908      1.134   thorpej 
   3909        1.1      matt 		/*
   3910      1.134   thorpej 		 * We can assume we're done with frobbing the cache/tlb for
   3911      1.134   thorpej 		 * now. Make sure any future pmap ops don't skip cache/tlb
   3912      1.134   thorpej 		 * flushes.
   3913        1.1      matt 		 */
   3914      1.134   thorpej 		pm->pm_cstate.cs_all = PMAP_CACHE_STATE_ALL;
   3915        1.1      matt 	}
   3916        1.1      matt 
   3917  1.172.2.1      yamt 	PMAPCOUNT(updates);
   3918  1.172.2.1      yamt 
   3919       1.96   thorpej 	/*
   3920      1.134   thorpej 	 * make sure TLB/cache operations have completed.
   3921       1.96   thorpej 	 */
   3922      1.134   thorpej 	cpu_cpwait();
   3923      1.134   thorpej }
   3924      1.134   thorpej 
   3925      1.134   thorpej void
   3926      1.134   thorpej pmap_remove_all(pmap_t pm)
   3927      1.134   thorpej {
   3928       1.96   thorpej 
   3929        1.1      matt 	/*
   3930      1.134   thorpej 	 * The vmspace described by this pmap is about to be torn down.
   3931      1.134   thorpej 	 * Until pmap_update() is called, UVM will only make calls
   3932      1.134   thorpej 	 * to pmap_remove(). We can make life much simpler by flushing
   3933      1.134   thorpej 	 * the cache now, and deferring TLB invalidation to pmap_update().
   3934        1.1      matt 	 */
   3935  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   3936      1.134   thorpej 	pmap_idcache_wbinv_all(pm);
   3937  1.172.2.1      yamt #endif
   3938      1.160   thorpej 	pm->pm_remove_all = true;
   3939        1.1      matt }
   3940        1.1      matt 
   3941        1.1      matt /*
   3942      1.134   thorpej  * Retire the given physical map from service.
   3943      1.134   thorpej  * Should only be called if the map contains no valid mappings.
   3944        1.1      matt  */
   3945      1.134   thorpej void
   3946      1.134   thorpej pmap_destroy(pmap_t pm)
   3947        1.1      matt {
   3948      1.134   thorpej 	u_int count;
   3949        1.1      matt 
   3950      1.134   thorpej 	if (pm == NULL)
   3951      1.134   thorpej 		return;
   3952        1.1      matt 
   3953      1.134   thorpej 	if (pm->pm_remove_all) {
   3954      1.134   thorpej 		pmap_tlb_flushID(pm);
   3955      1.160   thorpej 		pm->pm_remove_all = false;
   3956        1.1      matt 	}
   3957       1.79   thorpej 
   3958       1.49   thorpej 	/*
   3959      1.134   thorpej 	 * Drop reference count
   3960       1.49   thorpej 	 */
   3961      1.172     chris 	mutex_enter(&pm->pm_lock);
   3962      1.134   thorpej 	count = --pm->pm_obj.uo_refs;
   3963      1.172     chris 	mutex_exit(&pm->pm_lock);
   3964      1.134   thorpej 	if (count > 0) {
   3965      1.134   thorpej 		if (pmap_is_current(pm)) {
   3966      1.134   thorpej 			if (pm != pmap_kernel())
   3967      1.134   thorpej 				pmap_use_l1(pm);
   3968      1.134   thorpej 			pm->pm_cstate.cs_all = PMAP_CACHE_STATE_ALL;
   3969      1.134   thorpej 		}
   3970      1.134   thorpej 		return;
   3971      1.134   thorpej 	}
   3972       1.66   thorpej 
   3973        1.1      matt 	/*
   3974      1.134   thorpej 	 * reference count is zero, free pmap resources and then free pmap.
   3975        1.1      matt 	 */
   3976      1.134   thorpej 
   3977      1.134   thorpej 	if (vector_page < KERNEL_BASE) {
   3978      1.165       scw 		KDASSERT(!pmap_is_current(pm));
   3979      1.147       scw 
   3980      1.134   thorpej 		/* Remove the vector page mapping */
   3981      1.134   thorpej 		pmap_remove(pm, vector_page, vector_page + PAGE_SIZE);
   3982      1.134   thorpej 		pmap_update(pm);
   3983        1.1      matt 	}
   3984        1.1      matt 
   3985      1.134   thorpej 	LIST_REMOVE(pm, pm_list);
   3986      1.134   thorpej 
   3987      1.134   thorpej 	pmap_free_l1(pm);
   3988      1.134   thorpej 
   3989      1.165       scw 	if (pmap_recent_user == pm)
   3990      1.165       scw 		pmap_recent_user = NULL;
   3991      1.165       scw 
   3992      1.172     chris 	UVM_OBJ_DESTROY(&pm->pm_obj);
   3993      1.172     chris 
   3994      1.134   thorpej 	/* return the pmap to the pool */
   3995      1.168        ad 	pool_cache_put(&pmap_cache, pm);
   3996      1.134   thorpej }
   3997      1.134   thorpej 
   3998      1.134   thorpej 
   3999      1.134   thorpej /*
   4000      1.134   thorpej  * void pmap_reference(pmap_t pm)
   4001      1.134   thorpej  *
   4002      1.134   thorpej  * Add a reference to the specified pmap.
   4003      1.134   thorpej  */
   4004      1.134   thorpej void
   4005      1.134   thorpej pmap_reference(pmap_t pm)
   4006      1.134   thorpej {
   4007        1.1      matt 
   4008      1.134   thorpej 	if (pm == NULL)
   4009      1.134   thorpej 		return;
   4010        1.1      matt 
   4011      1.134   thorpej 	pmap_use_l1(pm);
   4012      1.104   thorpej 
   4013      1.172     chris 	mutex_enter(&pm->pm_lock);
   4014      1.134   thorpej 	pm->pm_obj.uo_refs++;
   4015      1.172     chris 	mutex_exit(&pm->pm_lock);
   4016      1.134   thorpej }
   4017       1.49   thorpej 
   4018  1.172.2.1      yamt #if ARM_MMU_V6 > 0
   4019  1.172.2.1      yamt 
   4020  1.172.2.1      yamt static struct evcnt pmap_prefer_nochange_ev =
   4021  1.172.2.1      yamt     EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "pmap prefer", "nochange");
   4022  1.172.2.1      yamt static struct evcnt pmap_prefer_change_ev =
   4023  1.172.2.1      yamt     EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "pmap prefer", "change");
   4024  1.172.2.1      yamt 
   4025  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_prefer_change_ev);
   4026  1.172.2.1      yamt EVCNT_ATTACH_STATIC(pmap_prefer_nochange_ev);
   4027  1.172.2.1      yamt 
   4028  1.172.2.1      yamt void
   4029  1.172.2.1      yamt pmap_prefer(vaddr_t hint, vaddr_t *vap, int td)
   4030  1.172.2.1      yamt {
   4031  1.172.2.1      yamt 	vsize_t mask = arm_cache_prefer_mask | (PAGE_SIZE - 1);
   4032  1.172.2.1      yamt 	vaddr_t va = *vap;
   4033  1.172.2.1      yamt 	vaddr_t diff = (hint - va) & mask;
   4034  1.172.2.1      yamt 	if (diff == 0) {
   4035  1.172.2.1      yamt 		pmap_prefer_nochange_ev.ev_count++;
   4036  1.172.2.1      yamt 	} else {
   4037  1.172.2.1      yamt 		pmap_prefer_change_ev.ev_count++;
   4038  1.172.2.1      yamt 		if (__predict_false(td))
   4039  1.172.2.1      yamt 			va -= mask + 1;
   4040  1.172.2.1      yamt 		*vap = va + diff;
   4041  1.172.2.1      yamt 	}
   4042  1.172.2.1      yamt }
   4043  1.172.2.1      yamt #endif /* ARM_MMU_V6 */
   4044  1.172.2.1      yamt 
   4045      1.134   thorpej /*
   4046      1.134   thorpej  * pmap_zero_page()
   4047      1.134   thorpej  *
   4048      1.134   thorpej  * Zero a given physical page by mapping it at a page hook point.
   4049      1.134   thorpej  * In doing the zero page op, the page we zero is mapped cachable, as with
   4050      1.134   thorpej  * StrongARM accesses to non-cached pages are non-burst making writing
   4051      1.134   thorpej  * _any_ bulk data very slow.
   4052      1.134   thorpej  */
   4053  1.172.2.1      yamt #if (ARM_MMU_GENERIC + ARM_MMU_SA1 + ARM_MMU_V6) != 0
   4054      1.134   thorpej void
   4055      1.134   thorpej pmap_zero_page_generic(paddr_t phys)
   4056      1.134   thorpej {
   4057  1.172.2.1      yamt #if defined(PMAP_CACHE_VIPT) || defined(DEBUG)
   4058      1.134   thorpej 	struct vm_page *pg = PHYS_TO_VM_PAGE(phys);
   4059  1.172.2.1      yamt #endif
   4060  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   4061  1.172.2.1      yamt 	/* Choose the last page color it had, if any */
   4062  1.172.2.1      yamt 	const vsize_t va_offset = pg->mdpage.pvh_attrs & arm_cache_prefer_mask;
   4063  1.172.2.1      yamt #else
   4064  1.172.2.1      yamt 	const vsize_t va_offset = 0;
   4065  1.172.2.1      yamt #endif
   4066  1.172.2.1      yamt 	pt_entry_t * const ptep = &cdst_pte[va_offset >> PGSHIFT];
   4067        1.1      matt 
   4068  1.172.2.1      yamt #ifdef DEBUG
   4069      1.134   thorpej 	if (pg->mdpage.pvh_list != NULL)
   4070      1.134   thorpej 		panic("pmap_zero_page: page has mappings");
   4071      1.134   thorpej #endif
   4072        1.1      matt 
   4073      1.134   thorpej 	KDASSERT((phys & PGOFSET) == 0);
   4074      1.120     chris 
   4075      1.134   thorpej 	/*
   4076      1.134   thorpej 	 * Hook in the page, zero it, and purge the cache for that
   4077      1.134   thorpej 	 * zeroed page. Invalidate the TLB as needed.
   4078      1.134   thorpej 	 */
   4079  1.172.2.1      yamt 	*ptep = L2_S_PROTO | phys |
   4080      1.134   thorpej 	    L2_S_PROT(PTE_KERNEL, VM_PROT_WRITE) | pte_l2_s_cache_mode;
   4081  1.172.2.1      yamt 	PTE_SYNC(ptep);
   4082  1.172.2.1      yamt 	cpu_tlb_flushD_SE(cdstp + va_offset);
   4083      1.134   thorpej 	cpu_cpwait();
   4084  1.172.2.1      yamt 	bzero_page(cdstp + va_offset);
   4085  1.172.2.1      yamt 	/*
   4086  1.172.2.1      yamt 	 * Unmap the page.
   4087  1.172.2.1      yamt 	 */
   4088  1.172.2.1      yamt 	*ptep = 0;
   4089  1.172.2.1      yamt 	PTE_SYNC(ptep);
   4090  1.172.2.1      yamt 	cpu_tlb_flushD_SE(cdstp + va_offset);
   4091  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   4092  1.172.2.1      yamt 	cpu_dcache_wbinv_range(cdstp + va_offset, PAGE_SIZE);
   4093  1.172.2.1      yamt #endif
   4094  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   4095  1.172.2.1      yamt 	/*
   4096  1.172.2.1      yamt 	 * This page is now cache resident so it now has a page color.
   4097  1.172.2.1      yamt 	 * Any contents have been obliterated so clear the EXEC flag.
   4098  1.172.2.1      yamt 	 */
   4099  1.172.2.1      yamt 	if (!pmap_is_page_colored_p(pg)) {
   4100  1.172.2.1      yamt 		PMAPCOUNT(vac_color_new);
   4101  1.172.2.1      yamt 		pg->mdpage.pvh_attrs |= PVF_COLORED;
   4102  1.172.2.1      yamt 	}
   4103  1.172.2.1      yamt 	if (PV_IS_EXEC_P(pg->mdpage.pvh_attrs)) {
   4104  1.172.2.1      yamt 		pg->mdpage.pvh_attrs &= ~PVF_EXEC;
   4105  1.172.2.1      yamt 		PMAPCOUNT(exec_discarded_zero);
   4106  1.172.2.1      yamt 	}
   4107  1.172.2.1      yamt #endif
   4108      1.134   thorpej }
   4109  1.172.2.1      yamt #endif /* (ARM_MMU_GENERIC + ARM_MMU_SA1 + ARM_MMU_V6) != 0 */
   4110        1.1      matt 
   4111      1.134   thorpej #if ARM_MMU_XSCALE == 1
   4112      1.134   thorpej void
   4113      1.134   thorpej pmap_zero_page_xscale(paddr_t phys)
   4114      1.134   thorpej {
   4115      1.134   thorpej #ifdef DEBUG
   4116      1.134   thorpej 	struct vm_page *pg = PHYS_TO_VM_PAGE(phys);
   4117        1.1      matt 
   4118      1.134   thorpej 	if (pg->mdpage.pvh_list != NULL)
   4119      1.134   thorpej 		panic("pmap_zero_page: page has mappings");
   4120      1.134   thorpej #endif
   4121        1.1      matt 
   4122      1.134   thorpej 	KDASSERT((phys & PGOFSET) == 0);
   4123        1.1      matt 
   4124      1.134   thorpej 	/*
   4125      1.134   thorpej 	 * Hook in the page, zero it, and purge the cache for that
   4126      1.134   thorpej 	 * zeroed page. Invalidate the TLB as needed.
   4127      1.134   thorpej 	 */
   4128      1.134   thorpej 	*cdst_pte = L2_S_PROTO | phys |
   4129      1.134   thorpej 	    L2_S_PROT(PTE_KERNEL, VM_PROT_WRITE) |
   4130  1.172.2.1      yamt 	    L2_C | L2_XS_T_TEX(TEX_XSCALE_X);	/* mini-data */
   4131      1.134   thorpej 	PTE_SYNC(cdst_pte);
   4132      1.134   thorpej 	cpu_tlb_flushD_SE(cdstp);
   4133      1.134   thorpej 	cpu_cpwait();
   4134      1.134   thorpej 	bzero_page(cdstp);
   4135      1.134   thorpej 	xscale_cache_clean_minidata();
   4136      1.134   thorpej }
   4137      1.134   thorpej #endif /* ARM_MMU_XSCALE == 1 */
   4138        1.1      matt 
   4139      1.134   thorpej /* pmap_pageidlezero()
   4140      1.134   thorpej  *
   4141      1.134   thorpej  * The same as above, except that we assume that the page is not
   4142      1.134   thorpej  * mapped.  This means we never have to flush the cache first.  Called
   4143      1.134   thorpej  * from the idle loop.
   4144      1.134   thorpej  */
   4145      1.159   thorpej bool
   4146      1.134   thorpej pmap_pageidlezero(paddr_t phys)
   4147      1.134   thorpej {
   4148      1.134   thorpej 	unsigned int i;
   4149      1.134   thorpej 	int *ptr;
   4150      1.160   thorpej 	bool rv = true;
   4151  1.172.2.1      yamt #if defined(PMAP_CACHE_VIPT) || defined(DEBUG)
   4152  1.172.2.1      yamt 	struct vm_page * const pg = PHYS_TO_VM_PAGE(phys);
   4153  1.172.2.1      yamt #endif
   4154  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   4155  1.172.2.1      yamt 	/* Choose the last page color it had, if any */
   4156  1.172.2.1      yamt 	const vsize_t va_offset = pg->mdpage.pvh_attrs & arm_cache_prefer_mask;
   4157  1.172.2.1      yamt #else
   4158  1.172.2.1      yamt 	const vsize_t va_offset = 0;
   4159  1.172.2.1      yamt #endif
   4160  1.172.2.1      yamt 	pt_entry_t * const ptep = &csrc_pte[va_offset >> PGSHIFT];
   4161  1.172.2.1      yamt 
   4162  1.172.2.1      yamt 
   4163      1.134   thorpej #ifdef DEBUG
   4164      1.134   thorpej 	if (pg->mdpage.pvh_list != NULL)
   4165      1.134   thorpej 		panic("pmap_pageidlezero: page has mappings");
   4166        1.1      matt #endif
   4167        1.1      matt 
   4168      1.134   thorpej 	KDASSERT((phys & PGOFSET) == 0);
   4169      1.134   thorpej 
   4170      1.109   thorpej 	/*
   4171      1.134   thorpej 	 * Hook in the page, zero it, and purge the cache for that
   4172      1.134   thorpej 	 * zeroed page. Invalidate the TLB as needed.
   4173      1.109   thorpej 	 */
   4174  1.172.2.1      yamt 	*ptep = L2_S_PROTO | phys |
   4175      1.134   thorpej 	    L2_S_PROT(PTE_KERNEL, VM_PROT_WRITE) | pte_l2_s_cache_mode;
   4176  1.172.2.1      yamt 	PTE_SYNC(ptep);
   4177  1.172.2.1      yamt 	cpu_tlb_flushD_SE(cdstp + va_offset);
   4178      1.134   thorpej 	cpu_cpwait();
   4179        1.1      matt 
   4180  1.172.2.1      yamt 	for (i = 0, ptr = (int *)(cdstp + va_offset);
   4181      1.134   thorpej 			i < (PAGE_SIZE / sizeof(int)); i++) {
   4182  1.172.2.1      yamt 		if (sched_curcpu_runnable_p() != 0) {
   4183      1.134   thorpej 			/*
   4184      1.134   thorpej 			 * A process has become ready.  Abort now,
   4185      1.134   thorpej 			 * so we don't keep it waiting while we
   4186      1.134   thorpej 			 * do slow memory access to finish this
   4187      1.134   thorpej 			 * page.
   4188      1.134   thorpej 			 */
   4189      1.160   thorpej 			rv = false;
   4190      1.134   thorpej 			break;
   4191      1.134   thorpej 		}
   4192      1.134   thorpej 		*ptr++ = 0;
   4193       1.11     chris 	}
   4194        1.1      matt 
   4195  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   4196      1.134   thorpej 	if (rv)
   4197      1.134   thorpej 		/*
   4198      1.134   thorpej 		 * if we aborted we'll rezero this page again later so don't
   4199      1.134   thorpej 		 * purge it unless we finished it
   4200      1.134   thorpej 		 */
   4201      1.134   thorpej 		cpu_dcache_wbinv_range(cdstp, PAGE_SIZE);
   4202  1.172.2.1      yamt #elif defined(PMAP_CACHE_VIPT)
   4203  1.172.2.1      yamt 	/*
   4204  1.172.2.1      yamt 	 * This page is now cache resident so it now has a page color.
   4205  1.172.2.1      yamt 	 * Any contents have been obliterated so clear the EXEC flag.
   4206  1.172.2.1      yamt 	 */
   4207  1.172.2.1      yamt 	if (!pmap_is_page_colored_p(pg)) {
   4208  1.172.2.1      yamt 		PMAPCOUNT(vac_color_new);
   4209  1.172.2.1      yamt 		pg->mdpage.pvh_attrs |= PVF_COLORED;
   4210  1.172.2.1      yamt 	}
   4211  1.172.2.1      yamt 	if (PV_IS_EXEC_P(pg->mdpage.pvh_attrs)) {
   4212  1.172.2.1      yamt 		pg->mdpage.pvh_attrs &= ~PVF_EXEC;
   4213  1.172.2.1      yamt 		PMAPCOUNT(exec_discarded_zero);
   4214  1.172.2.1      yamt 	}
   4215  1.172.2.1      yamt #endif
   4216  1.172.2.1      yamt 	/*
   4217  1.172.2.1      yamt 	 * Unmap the page.
   4218  1.172.2.1      yamt 	 */
   4219  1.172.2.1      yamt 	*ptep = 0;
   4220  1.172.2.1      yamt 	PTE_SYNC(ptep);
   4221  1.172.2.1      yamt 	cpu_tlb_flushD_SE(cdstp + va_offset);
   4222        1.1      matt 
   4223      1.134   thorpej 	return (rv);
   4224        1.1      matt }
   4225      1.134   thorpej 
   4226       1.48     chris /*
   4227      1.134   thorpej  * pmap_copy_page()
   4228       1.48     chris  *
   4229      1.134   thorpej  * Copy one physical page into another, by mapping the pages into
   4230      1.134   thorpej  * hook points. The same comment regarding cachability as in
   4231      1.134   thorpej  * pmap_zero_page also applies here.
   4232       1.48     chris  */
   4233  1.172.2.1      yamt #if (ARM_MMU_GENERIC + ARM_MMU_SA1 + ARM_MMU_V6) != 0
   4234        1.1      matt void
   4235      1.134   thorpej pmap_copy_page_generic(paddr_t src, paddr_t dst)
   4236        1.1      matt {
   4237  1.172.2.1      yamt 	struct vm_page * const src_pg = PHYS_TO_VM_PAGE(src);
   4238  1.172.2.1      yamt #if defined(PMAP_CACHE_VIPT) || defined(DEBUG)
   4239  1.172.2.1      yamt 	struct vm_page * const dst_pg = PHYS_TO_VM_PAGE(dst);
   4240  1.172.2.1      yamt #endif
   4241  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   4242  1.172.2.1      yamt 	const vsize_t src_va_offset = src_pg->mdpage.pvh_attrs & arm_cache_prefer_mask;
   4243  1.172.2.1      yamt 	const vsize_t dst_va_offset = dst_pg->mdpage.pvh_attrs & arm_cache_prefer_mask;
   4244  1.172.2.1      yamt #else
   4245  1.172.2.1      yamt 	const vsize_t src_va_offset = 0;
   4246  1.172.2.1      yamt 	const vsize_t dst_va_offset = 0;
   4247  1.172.2.1      yamt #endif
   4248  1.172.2.1      yamt 	pt_entry_t * const src_ptep = &csrc_pte[src_va_offset >> PGSHIFT];
   4249  1.172.2.1      yamt 	pt_entry_t * const dst_ptep = &cdst_pte[dst_va_offset >> PGSHIFT];
   4250      1.105   thorpej 
   4251  1.172.2.1      yamt #ifdef DEBUG
   4252      1.134   thorpej 	if (dst_pg->mdpage.pvh_list != NULL)
   4253      1.134   thorpej 		panic("pmap_copy_page: dst page has mappings");
   4254      1.134   thorpej #endif
   4255       1.83   thorpej 
   4256  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   4257  1.172.2.1      yamt 	KASSERT(src_pg->mdpage.pvh_attrs & (PVF_COLORED|PVF_NC));
   4258  1.172.2.1      yamt #endif
   4259      1.134   thorpej 	KDASSERT((src & PGOFSET) == 0);
   4260      1.134   thorpej 	KDASSERT((dst & PGOFSET) == 0);
   4261      1.105   thorpej 
   4262      1.134   thorpej 	/*
   4263      1.134   thorpej 	 * Clean the source page.  Hold the source page's lock for
   4264      1.134   thorpej 	 * the duration of the copy so that no other mappings can
   4265      1.134   thorpej 	 * be created while we have a potentially aliased mapping.
   4266      1.134   thorpej 	 */
   4267      1.134   thorpej 	simple_lock(&src_pg->mdpage.pvh_slock);
   4268  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   4269      1.160   thorpej 	(void) pmap_clean_page(src_pg->mdpage.pvh_list, true);
   4270  1.172.2.1      yamt #endif
   4271      1.105   thorpej 
   4272      1.134   thorpej 	/*
   4273      1.134   thorpej 	 * Map the pages into the page hook points, copy them, and purge
   4274      1.134   thorpej 	 * the cache for the appropriate page. Invalidate the TLB
   4275      1.134   thorpej 	 * as required.
   4276      1.134   thorpej 	 */
   4277  1.172.2.1      yamt 	*src_ptep = L2_S_PROTO
   4278  1.172.2.1      yamt 	    | src
   4279  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   4280  1.172.2.1      yamt 	    | ((src_pg->mdpage.pvh_attrs & PVF_NC) ? 0 : pte_l2_s_cache_mode)
   4281  1.172.2.1      yamt #endif
   4282  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   4283  1.172.2.1      yamt 	    | pte_l2_s_cache_mode
   4284  1.172.2.1      yamt #endif
   4285  1.172.2.1      yamt 	    | L2_S_PROT(PTE_KERNEL, VM_PROT_READ);
   4286  1.172.2.1      yamt 	*dst_ptep = L2_S_PROTO | dst |
   4287      1.134   thorpej 	    L2_S_PROT(PTE_KERNEL, VM_PROT_WRITE) | pte_l2_s_cache_mode;
   4288  1.172.2.1      yamt 	PTE_SYNC(src_ptep);
   4289  1.172.2.1      yamt 	PTE_SYNC(dst_ptep);
   4290  1.172.2.1      yamt 	cpu_tlb_flushD_SE(csrcp + src_va_offset);
   4291  1.172.2.1      yamt 	cpu_tlb_flushD_SE(cdstp + dst_va_offset);
   4292      1.134   thorpej 	cpu_cpwait();
   4293  1.172.2.1      yamt 	bcopy_page(csrcp + src_va_offset, cdstp + dst_va_offset);
   4294  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   4295  1.172.2.1      yamt 	cpu_dcache_inv_range(csrcp + src_va_offset, PAGE_SIZE);
   4296  1.172.2.1      yamt #endif
   4297      1.134   thorpej 	simple_unlock(&src_pg->mdpage.pvh_slock); /* cache is safe again */
   4298  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   4299  1.172.2.1      yamt 	cpu_dcache_wbinv_range(cdstp + dst_va_offset, PAGE_SIZE);
   4300  1.172.2.1      yamt #endif
   4301  1.172.2.1      yamt 	/*
   4302  1.172.2.1      yamt 	 * Unmap the pages.
   4303  1.172.2.1      yamt 	 */
   4304  1.172.2.1      yamt 	*src_ptep = 0;
   4305  1.172.2.1      yamt 	*dst_ptep = 0;
   4306  1.172.2.1      yamt 	PTE_SYNC(src_ptep);
   4307  1.172.2.1      yamt 	PTE_SYNC(dst_ptep);
   4308  1.172.2.1      yamt 	cpu_tlb_flushD_SE(csrcp + src_va_offset);
   4309  1.172.2.1      yamt 	cpu_tlb_flushD_SE(cdstp + dst_va_offset);
   4310  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   4311  1.172.2.1      yamt 	/*
   4312  1.172.2.1      yamt 	 * Now that the destination page is in the cache, mark it as colored.
   4313  1.172.2.1      yamt 	 * If this was an exec page, discard it.
   4314  1.172.2.1      yamt 	 */
   4315  1.172.2.1      yamt 	if (!pmap_is_page_colored_p(dst_pg)) {
   4316  1.172.2.1      yamt 		PMAPCOUNT(vac_color_new);
   4317  1.172.2.1      yamt 		dst_pg->mdpage.pvh_attrs |= PVF_COLORED;
   4318  1.172.2.1      yamt 	}
   4319  1.172.2.1      yamt 	if (PV_IS_EXEC_P(dst_pg->mdpage.pvh_attrs)) {
   4320  1.172.2.1      yamt 		dst_pg->mdpage.pvh_attrs &= ~PVF_EXEC;
   4321  1.172.2.1      yamt 		PMAPCOUNT(exec_discarded_copy);
   4322  1.172.2.1      yamt 	}
   4323  1.172.2.1      yamt #endif
   4324        1.1      matt }
   4325  1.172.2.1      yamt #endif /* (ARM_MMU_GENERIC + ARM_MMU_SA1 + ARM_MMU_V6) != 0 */
   4326        1.1      matt 
   4327      1.134   thorpej #if ARM_MMU_XSCALE == 1
   4328        1.1      matt void
   4329      1.134   thorpej pmap_copy_page_xscale(paddr_t src, paddr_t dst)
   4330        1.1      matt {
   4331      1.134   thorpej 	struct vm_page *src_pg = PHYS_TO_VM_PAGE(src);
   4332      1.134   thorpej #ifdef DEBUG
   4333      1.134   thorpej 	struct vm_page *dst_pg = PHYS_TO_VM_PAGE(dst);
   4334       1.14       chs 
   4335      1.134   thorpej 	if (dst_pg->mdpage.pvh_list != NULL)
   4336      1.134   thorpej 		panic("pmap_copy_page: dst page has mappings");
   4337      1.134   thorpej #endif
   4338       1.13     chris 
   4339      1.134   thorpej 	KDASSERT((src & PGOFSET) == 0);
   4340      1.134   thorpej 	KDASSERT((dst & PGOFSET) == 0);
   4341       1.14       chs 
   4342      1.134   thorpej 	/*
   4343      1.134   thorpej 	 * Clean the source page.  Hold the source page's lock for
   4344      1.134   thorpej 	 * the duration of the copy so that no other mappings can
   4345      1.134   thorpej 	 * be created while we have a potentially aliased mapping.
   4346      1.134   thorpej 	 */
   4347      1.134   thorpej 	simple_lock(&src_pg->mdpage.pvh_slock);
   4348  1.172.2.1      yamt #ifdef PMAP_CACHE_VIVT
   4349      1.160   thorpej 	(void) pmap_clean_page(src_pg->mdpage.pvh_list, true);
   4350  1.172.2.1      yamt #endif
   4351      1.105   thorpej 
   4352      1.134   thorpej 	/*
   4353      1.134   thorpej 	 * Map the pages into the page hook points, copy them, and purge
   4354      1.134   thorpej 	 * the cache for the appropriate page. Invalidate the TLB
   4355      1.134   thorpej 	 * as required.
   4356      1.134   thorpej 	 */
   4357      1.134   thorpej 	*csrc_pte = L2_S_PROTO | src |
   4358      1.134   thorpej 	    L2_S_PROT(PTE_KERNEL, VM_PROT_READ) |
   4359  1.172.2.1      yamt 	    L2_C | L2_XS_T_TEX(TEX_XSCALE_X);	/* mini-data */
   4360      1.134   thorpej 	PTE_SYNC(csrc_pte);
   4361      1.134   thorpej 	*cdst_pte = L2_S_PROTO | dst |
   4362      1.134   thorpej 	    L2_S_PROT(PTE_KERNEL, VM_PROT_WRITE) |
   4363  1.172.2.1      yamt 	    L2_C | L2_XS_T_TEX(TEX_XSCALE_X);	/* mini-data */
   4364      1.134   thorpej 	PTE_SYNC(cdst_pte);
   4365      1.134   thorpej 	cpu_tlb_flushD_SE(csrcp);
   4366      1.134   thorpej 	cpu_tlb_flushD_SE(cdstp);
   4367      1.134   thorpej 	cpu_cpwait();
   4368      1.134   thorpej 	bcopy_page(csrcp, cdstp);
   4369      1.134   thorpej 	simple_unlock(&src_pg->mdpage.pvh_slock); /* cache is safe again */
   4370      1.134   thorpej 	xscale_cache_clean_minidata();
   4371        1.1      matt }
   4372      1.134   thorpej #endif /* ARM_MMU_XSCALE == 1 */
   4373        1.1      matt 
   4374        1.1      matt /*
   4375      1.134   thorpej  * void pmap_virtual_space(vaddr_t *start, vaddr_t *end)
   4376        1.1      matt  *
   4377      1.134   thorpej  * Return the start and end addresses of the kernel's virtual space.
   4378      1.134   thorpej  * These values are setup in pmap_bootstrap and are updated as pages
   4379      1.134   thorpej  * are allocated.
   4380        1.1      matt  */
   4381        1.1      matt void
   4382      1.134   thorpej pmap_virtual_space(vaddr_t *start, vaddr_t *end)
   4383        1.1      matt {
   4384      1.134   thorpej 	*start = virtual_avail;
   4385      1.134   thorpej 	*end = virtual_end;
   4386        1.1      matt }
   4387        1.1      matt 
   4388        1.1      matt /*
   4389      1.134   thorpej  * Helper function for pmap_grow_l2_bucket()
   4390        1.1      matt  */
   4391      1.157     perry static inline int
   4392      1.134   thorpej pmap_grow_map(vaddr_t va, pt_entry_t cache_mode, paddr_t *pap)
   4393        1.1      matt {
   4394      1.134   thorpej 	struct l2_bucket *l2b;
   4395      1.134   thorpej 	pt_entry_t *ptep;
   4396        1.2      matt 	paddr_t pa;
   4397        1.1      matt 
   4398      1.160   thorpej 	if (uvm.page_init_done == false) {
   4399  1.172.2.1      yamt #ifdef PMAP_STEAL_MEMORY
   4400  1.172.2.1      yamt 		pv_addr_t pv;
   4401  1.172.2.1      yamt 		pmap_boot_pagealloc(PAGE_SIZE,
   4402  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   4403  1.172.2.1      yamt 		    arm_cache_prefer_mask,
   4404  1.172.2.1      yamt 		    va & arm_cache_prefer_mask,
   4405  1.172.2.1      yamt #else
   4406  1.172.2.1      yamt 		    0, 0,
   4407  1.172.2.1      yamt #endif
   4408  1.172.2.1      yamt 		    &pv);
   4409  1.172.2.1      yamt 		pa = pv.pv_pa;
   4410  1.172.2.1      yamt #else
   4411      1.160   thorpej 		if (uvm_page_physget(&pa) == false)
   4412      1.134   thorpej 			return (1);
   4413  1.172.2.1      yamt #endif	/* PMAP_STEAL_MEMORY */
   4414      1.134   thorpej 	} else {
   4415      1.134   thorpej 		struct vm_page *pg;
   4416      1.134   thorpej 		pg = uvm_pagealloc(NULL, 0, NULL, UVM_PGA_USERESERVE);
   4417      1.134   thorpej 		if (pg == NULL)
   4418      1.134   thorpej 			return (1);
   4419      1.134   thorpej 		pa = VM_PAGE_TO_PHYS(pg);
   4420  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   4421  1.172.2.1      yamt 		/*
   4422  1.172.2.1      yamt 		 * This new page must not have any mappings.  However, it might
   4423  1.172.2.1      yamt 		 * have previously used and therefore present in the cache.  If
   4424  1.172.2.1      yamt 		 * it doesn't have the desired color, we have to flush it from
   4425  1.172.2.1      yamt 		 * the cache.  And while we are at it, make sure to clear its
   4426  1.172.2.1      yamt 		 * EXEC status.
   4427  1.172.2.1      yamt 		 */
   4428  1.172.2.1      yamt 		KASSERT(!(pg->mdpage.pvh_attrs & PVF_KENTRY));
   4429  1.172.2.1      yamt 		KASSERT(pg->mdpage.pvh_list == NULL);
   4430  1.172.2.1      yamt 		if (pmap_is_page_colored_p(pg)) {
   4431  1.172.2.1      yamt 			if ((va ^ pg->mdpage.pvh_attrs) & arm_cache_prefer_mask) {
   4432  1.172.2.1      yamt 				pmap_flush_page(pg);
   4433  1.172.2.1      yamt 				PMAPCOUNT(vac_color_change);
   4434  1.172.2.1      yamt 			} else {
   4435  1.172.2.1      yamt 				PMAPCOUNT(vac_color_reuse);
   4436  1.172.2.1      yamt 			}
   4437  1.172.2.1      yamt 		} else {
   4438  1.172.2.1      yamt 			PMAPCOUNT(vac_color_new);
   4439  1.172.2.1      yamt 		}
   4440  1.172.2.1      yamt 		if (PV_IS_EXEC_P(pg->mdpage.pvh_attrs))
   4441  1.172.2.1      yamt 			PMAPCOUNT(exec_discarded_kremove);
   4442  1.172.2.1      yamt 		/*
   4443  1.172.2.1      yamt 		 * We'll pretend this page was entered by pmap_kenter_pa
   4444  1.172.2.1      yamt 		 */
   4445  1.172.2.1      yamt 		pg->mdpage.pvh_attrs &= (PAGE_SIZE - 1) & ~PVF_EXEC;
   4446  1.172.2.1      yamt 		pg->mdpage.pvh_attrs |= va | PVF_KENTRY | PVF_COLORED | PVF_REF | PVF_MOD;
   4447  1.172.2.1      yamt #endif
   4448      1.134   thorpej 	}
   4449        1.1      matt 
   4450      1.134   thorpej 	if (pap)
   4451      1.134   thorpej 		*pap = pa;
   4452        1.1      matt 
   4453  1.172.2.1      yamt 	PMAPCOUNT(pt_mappings);
   4454      1.134   thorpej 	l2b = pmap_get_l2_bucket(pmap_kernel(), va);
   4455      1.134   thorpej 	KDASSERT(l2b != NULL);
   4456        1.1      matt 
   4457      1.134   thorpej 	ptep = &l2b->l2b_kva[l2pte_index(va)];
   4458      1.134   thorpej 	*ptep = L2_S_PROTO | pa | cache_mode |
   4459      1.134   thorpej 	    L2_S_PROT(PTE_KERNEL, VM_PROT_READ | VM_PROT_WRITE);
   4460      1.134   thorpej 	PTE_SYNC(ptep);
   4461      1.134   thorpej 	memset((void *)va, 0, PAGE_SIZE);
   4462      1.134   thorpej 	return (0);
   4463        1.1      matt }
   4464        1.1      matt 
   4465        1.1      matt /*
   4466      1.134   thorpej  * This is the same as pmap_alloc_l2_bucket(), except that it is only
   4467      1.134   thorpej  * used by pmap_growkernel().
   4468        1.1      matt  */
   4469      1.157     perry static inline struct l2_bucket *
   4470      1.134   thorpej pmap_grow_l2_bucket(pmap_t pm, vaddr_t va)
   4471        1.1      matt {
   4472      1.134   thorpej 	struct l2_dtable *l2;
   4473      1.134   thorpej 	struct l2_bucket *l2b;
   4474      1.134   thorpej 	u_short l1idx;
   4475      1.134   thorpej 	vaddr_t nva;
   4476      1.134   thorpej 
   4477      1.134   thorpej 	l1idx = L1_IDX(va);
   4478      1.134   thorpej 
   4479      1.134   thorpej 	if ((l2 = pm->pm_l2[L2_IDX(l1idx)]) == NULL) {
   4480      1.134   thorpej 		/*
   4481      1.134   thorpej 		 * No mapping at this address, as there is
   4482      1.134   thorpej 		 * no entry in the L1 table.
   4483      1.134   thorpej 		 * Need to allocate a new l2_dtable.
   4484      1.134   thorpej 		 */
   4485      1.134   thorpej 		nva = pmap_kernel_l2dtable_kva;
   4486      1.134   thorpej 		if ((nva & PGOFSET) == 0) {
   4487      1.134   thorpej 			/*
   4488      1.134   thorpej 			 * Need to allocate a backing page
   4489      1.134   thorpej 			 */
   4490      1.134   thorpej 			if (pmap_grow_map(nva, pte_l2_s_cache_mode, NULL))
   4491      1.134   thorpej 				return (NULL);
   4492      1.134   thorpej 		}
   4493        1.1      matt 
   4494      1.134   thorpej 		l2 = (struct l2_dtable *)nva;
   4495      1.134   thorpej 		nva += sizeof(struct l2_dtable);
   4496       1.82   thorpej 
   4497      1.134   thorpej 		if ((nva & PGOFSET) < (pmap_kernel_l2dtable_kva & PGOFSET)) {
   4498      1.134   thorpej 			/*
   4499      1.134   thorpej 			 * The new l2_dtable straddles a page boundary.
   4500      1.134   thorpej 			 * Map in another page to cover it.
   4501      1.134   thorpej 			 */
   4502      1.134   thorpej 			if (pmap_grow_map(nva, pte_l2_s_cache_mode, NULL))
   4503      1.134   thorpej 				return (NULL);
   4504      1.134   thorpej 		}
   4505        1.1      matt 
   4506      1.134   thorpej 		pmap_kernel_l2dtable_kva = nva;
   4507        1.1      matt 
   4508      1.134   thorpej 		/*
   4509      1.134   thorpej 		 * Link it into the parent pmap
   4510      1.134   thorpej 		 */
   4511      1.134   thorpej 		pm->pm_l2[L2_IDX(l1idx)] = l2;
   4512       1.82   thorpej 	}
   4513       1.75   reinoud 
   4514      1.134   thorpej 	l2b = &l2->l2_bucket[L2_BUCKET(l1idx)];
   4515      1.134   thorpej 
   4516      1.134   thorpej 	/*
   4517      1.134   thorpej 	 * Fetch pointer to the L2 page table associated with the address.
   4518      1.134   thorpej 	 */
   4519      1.134   thorpej 	if (l2b->l2b_kva == NULL) {
   4520      1.134   thorpej 		pt_entry_t *ptep;
   4521      1.134   thorpej 
   4522      1.134   thorpej 		/*
   4523      1.134   thorpej 		 * No L2 page table has been allocated. Chances are, this
   4524      1.134   thorpej 		 * is because we just allocated the l2_dtable, above.
   4525      1.134   thorpej 		 */
   4526      1.134   thorpej 		nva = pmap_kernel_l2ptp_kva;
   4527      1.134   thorpej 		ptep = (pt_entry_t *)nva;
   4528      1.134   thorpej 		if ((nva & PGOFSET) == 0) {
   4529      1.134   thorpej 			/*
   4530      1.134   thorpej 			 * Need to allocate a backing page
   4531      1.134   thorpej 			 */
   4532      1.134   thorpej 			if (pmap_grow_map(nva, pte_l2_s_cache_mode_pt,
   4533      1.134   thorpej 			    &pmap_kernel_l2ptp_phys))
   4534      1.134   thorpej 				return (NULL);
   4535      1.134   thorpej 			PTE_SYNC_RANGE(ptep, PAGE_SIZE / sizeof(pt_entry_t));
   4536      1.134   thorpej 		}
   4537      1.134   thorpej 
   4538      1.134   thorpej 		l2->l2_occupancy++;
   4539      1.134   thorpej 		l2b->l2b_kva = ptep;
   4540      1.134   thorpej 		l2b->l2b_l1idx = l1idx;
   4541      1.134   thorpej 		l2b->l2b_phys = pmap_kernel_l2ptp_phys;
   4542      1.134   thorpej 
   4543      1.134   thorpej 		pmap_kernel_l2ptp_kva += L2_TABLE_SIZE_REAL;
   4544      1.134   thorpej 		pmap_kernel_l2ptp_phys += L2_TABLE_SIZE_REAL;
   4545       1.82   thorpej 	}
   4546        1.1      matt 
   4547      1.134   thorpej 	return (l2b);
   4548      1.134   thorpej }
   4549      1.134   thorpej 
   4550      1.134   thorpej vaddr_t
   4551      1.134   thorpej pmap_growkernel(vaddr_t maxkvaddr)
   4552      1.134   thorpej {
   4553      1.134   thorpej 	pmap_t kpm = pmap_kernel();
   4554      1.134   thorpej 	struct l1_ttable *l1;
   4555      1.134   thorpej 	struct l2_bucket *l2b;
   4556      1.134   thorpej 	pd_entry_t *pl1pd;
   4557      1.134   thorpej 	int s;
   4558      1.134   thorpej 
   4559      1.134   thorpej 	if (maxkvaddr <= pmap_curmaxkvaddr)
   4560      1.134   thorpej 		goto out;		/* we are OK */
   4561        1.1      matt 
   4562      1.134   thorpej 	NPDEBUG(PDB_GROWKERN,
   4563      1.134   thorpej 	    printf("pmap_growkernel: growing kernel from 0x%lx to 0x%lx\n",
   4564      1.134   thorpej 	    pmap_curmaxkvaddr, maxkvaddr));
   4565        1.1      matt 
   4566      1.134   thorpej 	KDASSERT(maxkvaddr <= virtual_end);
   4567       1.34   thorpej 
   4568      1.134   thorpej 	/*
   4569      1.134   thorpej 	 * whoops!   we need to add kernel PTPs
   4570      1.134   thorpej 	 */
   4571        1.1      matt 
   4572      1.134   thorpej 	s = splhigh();	/* to be safe */
   4573      1.172     chris 	mutex_enter(&kpm->pm_lock);
   4574        1.1      matt 
   4575      1.134   thorpej 	/* Map 1MB at a time */
   4576      1.134   thorpej 	for (; pmap_curmaxkvaddr < maxkvaddr; pmap_curmaxkvaddr += L1_S_SIZE) {
   4577        1.1      matt 
   4578      1.134   thorpej 		l2b = pmap_grow_l2_bucket(kpm, pmap_curmaxkvaddr);
   4579      1.134   thorpej 		KDASSERT(l2b != NULL);
   4580        1.1      matt 
   4581      1.134   thorpej 		/* Distribute new L1 entry to all other L1s */
   4582      1.134   thorpej 		SLIST_FOREACH(l1, &l1_list, l1_link) {
   4583      1.134   thorpej 			pl1pd = &l1->l1_kva[L1_IDX(pmap_curmaxkvaddr)];
   4584      1.134   thorpej 			*pl1pd = l2b->l2b_phys | L1_C_DOM(PMAP_DOMAIN_KERNEL) |
   4585      1.134   thorpej 			    L1_C_PROTO;
   4586      1.134   thorpej 			PTE_SYNC(pl1pd);
   4587      1.134   thorpej 		}
   4588        1.1      matt 	}
   4589        1.1      matt 
   4590      1.134   thorpej 	/*
   4591      1.134   thorpej 	 * flush out the cache, expensive but growkernel will happen so
   4592      1.134   thorpej 	 * rarely
   4593      1.134   thorpej 	 */
   4594      1.134   thorpej 	cpu_dcache_wbinv_all();
   4595      1.134   thorpej 	cpu_tlb_flushD();
   4596      1.134   thorpej 	cpu_cpwait();
   4597      1.134   thorpej 
   4598      1.172     chris 	mutex_exit(&kpm->pm_lock);
   4599      1.134   thorpej 	splx(s);
   4600        1.1      matt 
   4601      1.134   thorpej out:
   4602      1.134   thorpej 	return (pmap_curmaxkvaddr);
   4603        1.1      matt }
   4604        1.1      matt 
   4605      1.134   thorpej /************************ Utility routines ****************************/
   4606        1.1      matt 
   4607      1.134   thorpej /*
   4608      1.134   thorpej  * vector_page_setprot:
   4609      1.134   thorpej  *
   4610      1.134   thorpej  *	Manipulate the protection of the vector page.
   4611      1.134   thorpej  */
   4612      1.134   thorpej void
   4613      1.134   thorpej vector_page_setprot(int prot)
   4614       1.11     chris {
   4615      1.134   thorpej 	struct l2_bucket *l2b;
   4616      1.134   thorpej 	pt_entry_t *ptep;
   4617      1.134   thorpej 
   4618      1.134   thorpej 	l2b = pmap_get_l2_bucket(pmap_kernel(), vector_page);
   4619      1.134   thorpej 	KDASSERT(l2b != NULL);
   4620       1.17     chris 
   4621      1.134   thorpej 	ptep = &l2b->l2b_kva[l2pte_index(vector_page)];
   4622       1.72   thorpej 
   4623      1.134   thorpej 	*ptep = (*ptep & ~L1_S_PROT_MASK) | L2_S_PROT(PTE_KERNEL, prot);
   4624      1.134   thorpej 	PTE_SYNC(ptep);
   4625      1.134   thorpej 	cpu_tlb_flushD_SE(vector_page);
   4626       1.32   thorpej 	cpu_cpwait();
   4627       1.17     chris }
   4628       1.17     chris 
   4629       1.17     chris /*
   4630      1.134   thorpej  * Fetch pointers to the PDE/PTE for the given pmap/VA pair.
   4631      1.160   thorpej  * Returns true if the mapping exists, else false.
   4632      1.134   thorpej  *
   4633      1.134   thorpej  * NOTE: This function is only used by a couple of arm-specific modules.
   4634      1.134   thorpej  * It is not safe to take any pmap locks here, since we could be right
   4635      1.134   thorpej  * in the middle of debugging the pmap anyway...
   4636      1.134   thorpej  *
   4637      1.160   thorpej  * It is possible for this routine to return false even though a valid
   4638      1.134   thorpej  * mapping does exist. This is because we don't lock, so the metadata
   4639      1.134   thorpej  * state may be inconsistent.
   4640      1.134   thorpej  *
   4641      1.134   thorpej  * NOTE: We can return a NULL *ptp in the case where the L1 pde is
   4642      1.134   thorpej  * a "section" mapping.
   4643        1.1      matt  */
   4644      1.159   thorpej bool
   4645      1.134   thorpej pmap_get_pde_pte(pmap_t pm, vaddr_t va, pd_entry_t **pdp, pt_entry_t **ptp)
   4646        1.1      matt {
   4647      1.134   thorpej 	struct l2_dtable *l2;
   4648      1.134   thorpej 	pd_entry_t *pl1pd, l1pd;
   4649      1.134   thorpej 	pt_entry_t *ptep;
   4650      1.134   thorpej 	u_short l1idx;
   4651      1.134   thorpej 
   4652      1.134   thorpej 	if (pm->pm_l1 == NULL)
   4653  1.172.2.1      yamt 		return false;
   4654      1.134   thorpej 
   4655      1.134   thorpej 	l1idx = L1_IDX(va);
   4656      1.134   thorpej 	*pdp = pl1pd = &pm->pm_l1->l1_kva[l1idx];
   4657      1.134   thorpej 	l1pd = *pl1pd;
   4658        1.1      matt 
   4659      1.134   thorpej 	if (l1pte_section_p(l1pd)) {
   4660      1.134   thorpej 		*ptp = NULL;
   4661  1.172.2.1      yamt 		return true;
   4662        1.1      matt 	}
   4663        1.1      matt 
   4664      1.134   thorpej 	if (pm->pm_l2 == NULL)
   4665  1.172.2.1      yamt 		return false;
   4666       1.21     chris 
   4667      1.134   thorpej 	l2 = pm->pm_l2[L2_IDX(l1idx)];
   4668      1.104   thorpej 
   4669      1.134   thorpej 	if (l2 == NULL ||
   4670      1.134   thorpej 	    (ptep = l2->l2_bucket[L2_BUCKET(l1idx)].l2b_kva) == NULL) {
   4671  1.172.2.1      yamt 		return false;
   4672       1.29  rearnsha 	}
   4673       1.21     chris 
   4674      1.134   thorpej 	*ptp = &ptep[l2pte_index(va)];
   4675  1.172.2.1      yamt 	return true;
   4676        1.1      matt }
   4677        1.1      matt 
   4678      1.159   thorpej bool
   4679      1.134   thorpej pmap_get_pde(pmap_t pm, vaddr_t va, pd_entry_t **pdp)
   4680        1.1      matt {
   4681      1.134   thorpej 	u_short l1idx;
   4682        1.1      matt 
   4683      1.134   thorpej 	if (pm->pm_l1 == NULL)
   4684  1.172.2.1      yamt 		return false;
   4685       1.50   thorpej 
   4686      1.134   thorpej 	l1idx = L1_IDX(va);
   4687      1.134   thorpej 	*pdp = &pm->pm_l1->l1_kva[l1idx];
   4688       1.50   thorpej 
   4689  1.172.2.1      yamt 	return true;
   4690        1.1      matt }
   4691        1.1      matt 
   4692      1.134   thorpej /************************ Bootstrapping routines ****************************/
   4693      1.134   thorpej 
   4694      1.134   thorpej static void
   4695      1.134   thorpej pmap_init_l1(struct l1_ttable *l1, pd_entry_t *l1pt)
   4696        1.1      matt {
   4697      1.134   thorpej 	int i;
   4698      1.134   thorpej 
   4699      1.134   thorpej 	l1->l1_kva = l1pt;
   4700      1.134   thorpej 	l1->l1_domain_use_count = 0;
   4701      1.134   thorpej 	l1->l1_domain_first = 0;
   4702      1.134   thorpej 
   4703      1.134   thorpej 	for (i = 0; i < PMAP_DOMAINS; i++)
   4704      1.134   thorpej 		l1->l1_domain_free[i] = i + 1;
   4705        1.1      matt 
   4706      1.134   thorpej 	/*
   4707      1.134   thorpej 	 * Copy the kernel's L1 entries to each new L1.
   4708      1.134   thorpej 	 */
   4709      1.134   thorpej 	if (pmap_initialized)
   4710      1.134   thorpej 		memcpy(l1pt, pmap_kernel()->pm_l1->l1_kva, L1_TABLE_SIZE);
   4711       1.50   thorpej 
   4712      1.134   thorpej 	if (pmap_extract(pmap_kernel(), (vaddr_t)l1pt,
   4713      1.160   thorpej 	    &l1->l1_physaddr) == false)
   4714      1.134   thorpej 		panic("pmap_init_l1: can't get PA of L1 at %p", l1pt);
   4715       1.50   thorpej 
   4716      1.134   thorpej 	SLIST_INSERT_HEAD(&l1_list, l1, l1_link);
   4717      1.134   thorpej 	TAILQ_INSERT_TAIL(&l1_lru_list, l1, l1_lru);
   4718        1.1      matt }
   4719        1.1      matt 
   4720       1.50   thorpej /*
   4721      1.134   thorpej  * pmap_bootstrap() is called from the board-specific initarm() routine
   4722      1.134   thorpej  * once the kernel L1/L2 descriptors tables have been set up.
   4723      1.134   thorpej  *
   4724      1.134   thorpej  * This is a somewhat convoluted process since pmap bootstrap is, effectively,
   4725      1.134   thorpej  * spread over a number of disparate files/functions.
   4726       1.50   thorpej  *
   4727      1.134   thorpej  * We are passed the following parameters
   4728      1.134   thorpej  *  - kernel_l1pt
   4729      1.134   thorpej  *    This is a pointer to the base of the kernel's L1 translation table.
   4730      1.134   thorpej  *  - vstart
   4731      1.134   thorpej  *    1MB-aligned start of managed kernel virtual memory.
   4732      1.134   thorpej  *  - vend
   4733      1.134   thorpej  *    1MB-aligned end of managed kernel virtual memory.
   4734       1.50   thorpej  *
   4735      1.134   thorpej  * We use the first parameter to build the metadata (struct l1_ttable and
   4736      1.134   thorpej  * struct l2_dtable) necessary to track kernel mappings.
   4737       1.50   thorpej  */
   4738      1.134   thorpej #define	PMAP_STATIC_L2_SIZE 16
   4739      1.134   thorpej void
   4740  1.172.2.1      yamt pmap_bootstrap(vaddr_t vstart, vaddr_t vend)
   4741        1.1      matt {
   4742      1.134   thorpej 	static struct l1_ttable static_l1;
   4743      1.134   thorpej 	static struct l2_dtable static_l2[PMAP_STATIC_L2_SIZE];
   4744      1.134   thorpej 	struct l1_ttable *l1 = &static_l1;
   4745      1.134   thorpej 	struct l2_dtable *l2;
   4746      1.134   thorpej 	struct l2_bucket *l2b;
   4747  1.172.2.1      yamt 	pd_entry_t *l1pt = (pd_entry_t *) kernel_l1pt.pv_va;
   4748      1.134   thorpej 	pmap_t pm = pmap_kernel();
   4749      1.134   thorpej 	pd_entry_t pde;
   4750      1.134   thorpej 	pt_entry_t *ptep;
   4751        1.2      matt 	paddr_t pa;
   4752      1.134   thorpej 	vaddr_t va;
   4753      1.134   thorpej 	vsize_t size;
   4754  1.172.2.1      yamt 	int nptes, l1idx, l2idx, l2next = 0;
   4755      1.134   thorpej 
   4756      1.134   thorpej 	/*
   4757      1.134   thorpej 	 * Initialise the kernel pmap object
   4758      1.134   thorpej 	 */
   4759      1.134   thorpej 	pm->pm_l1 = l1;
   4760      1.134   thorpej 	pm->pm_domain = PMAP_DOMAIN_KERNEL;
   4761      1.165       scw 	pm->pm_activated = true;
   4762      1.134   thorpej 	pm->pm_cstate.cs_all = PMAP_CACHE_STATE_ALL;
   4763      1.172     chris 	UVM_OBJ_INIT(&pm->pm_obj, NULL, 1);
   4764      1.134   thorpej 
   4765      1.134   thorpej 	/*
   4766      1.134   thorpej 	 * Scan the L1 translation table created by initarm() and create
   4767      1.134   thorpej 	 * the required metadata for all valid mappings found in it.
   4768      1.134   thorpej 	 */
   4769      1.134   thorpej 	for (l1idx = 0; l1idx < (L1_TABLE_SIZE / sizeof(pd_entry_t)); l1idx++) {
   4770  1.172.2.1      yamt 		pde = l1pt[l1idx];
   4771      1.134   thorpej 
   4772      1.134   thorpej 		/*
   4773      1.134   thorpej 		 * We're only interested in Coarse mappings.
   4774      1.134   thorpej 		 * pmap_extract() can deal with section mappings without
   4775      1.134   thorpej 		 * recourse to checking L2 metadata.
   4776      1.134   thorpej 		 */
   4777      1.134   thorpej 		if ((pde & L1_TYPE_MASK) != L1_TYPE_C)
   4778      1.134   thorpej 			continue;
   4779      1.134   thorpej 
   4780      1.134   thorpej 		/*
   4781      1.134   thorpej 		 * Lookup the KVA of this L2 descriptor table
   4782      1.134   thorpej 		 */
   4783      1.134   thorpej 		pa = (paddr_t)(pde & L1_C_ADDR_MASK);
   4784      1.134   thorpej 		ptep = (pt_entry_t *)kernel_pt_lookup(pa);
   4785      1.134   thorpej 		if (ptep == NULL) {
   4786      1.134   thorpej 			panic("pmap_bootstrap: No L2 for va 0x%x, pa 0x%lx",
   4787      1.134   thorpej 			    (u_int)l1idx << L1_S_SHIFT, pa);
   4788      1.134   thorpej 		}
   4789      1.134   thorpej 
   4790      1.134   thorpej 		/*
   4791      1.134   thorpej 		 * Fetch the associated L2 metadata structure.
   4792      1.134   thorpej 		 * Allocate a new one if necessary.
   4793      1.134   thorpej 		 */
   4794      1.134   thorpej 		if ((l2 = pm->pm_l2[L2_IDX(l1idx)]) == NULL) {
   4795      1.134   thorpej 			if (l2next == PMAP_STATIC_L2_SIZE)
   4796      1.134   thorpej 				panic("pmap_bootstrap: out of static L2s");
   4797      1.134   thorpej 			pm->pm_l2[L2_IDX(l1idx)] = l2 = &static_l2[l2next++];
   4798      1.134   thorpej 		}
   4799      1.134   thorpej 
   4800      1.134   thorpej 		/*
   4801      1.134   thorpej 		 * One more L1 slot tracked...
   4802      1.134   thorpej 		 */
   4803      1.134   thorpej 		l2->l2_occupancy++;
   4804      1.134   thorpej 
   4805      1.134   thorpej 		/*
   4806      1.134   thorpej 		 * Fill in the details of the L2 descriptor in the
   4807      1.134   thorpej 		 * appropriate bucket.
   4808      1.134   thorpej 		 */
   4809      1.134   thorpej 		l2b = &l2->l2_bucket[L2_BUCKET(l1idx)];
   4810      1.134   thorpej 		l2b->l2b_kva = ptep;
   4811      1.134   thorpej 		l2b->l2b_phys = pa;
   4812      1.134   thorpej 		l2b->l2b_l1idx = l1idx;
   4813        1.1      matt 
   4814      1.134   thorpej 		/*
   4815      1.134   thorpej 		 * Establish an initial occupancy count for this descriptor
   4816      1.134   thorpej 		 */
   4817      1.134   thorpej 		for (l2idx = 0;
   4818      1.134   thorpej 		    l2idx < (L2_TABLE_SIZE_REAL / sizeof(pt_entry_t));
   4819      1.134   thorpej 		    l2idx++) {
   4820      1.134   thorpej 			if ((ptep[l2idx] & L2_TYPE_MASK) != L2_TYPE_INV) {
   4821      1.134   thorpej 				l2b->l2b_occupancy++;
   4822      1.134   thorpej 			}
   4823      1.134   thorpej 		}
   4824        1.1      matt 
   4825      1.134   thorpej 		/*
   4826      1.134   thorpej 		 * Make sure the descriptor itself has the correct cache mode.
   4827      1.146  jdolecek 		 * If not, fix it, but whine about the problem. Port-meisters
   4828      1.134   thorpej 		 * should consider this a clue to fix up their initarm()
   4829      1.134   thorpej 		 * function. :)
   4830      1.134   thorpej 		 */
   4831  1.172.2.1      yamt 		if (pmap_set_pt_cache_mode(l1pt, (vaddr_t)ptep)) {
   4832      1.134   thorpej 			printf("pmap_bootstrap: WARNING! wrong cache mode for "
   4833      1.134   thorpej 			    "L2 pte @ %p\n", ptep);
   4834      1.134   thorpej 		}
   4835      1.134   thorpej 	}
   4836       1.61   thorpej 
   4837      1.134   thorpej 	/*
   4838      1.134   thorpej 	 * Ensure the primary (kernel) L1 has the correct cache mode for
   4839      1.134   thorpej 	 * a page table. Bitch if it is not correctly set.
   4840      1.134   thorpej 	 */
   4841  1.172.2.1      yamt 	for (va = (vaddr_t)l1pt;
   4842  1.172.2.1      yamt 	    va < ((vaddr_t)l1pt + L1_TABLE_SIZE); va += PAGE_SIZE) {
   4843  1.172.2.1      yamt 		if (pmap_set_pt_cache_mode(l1pt, va))
   4844      1.134   thorpej 			printf("pmap_bootstrap: WARNING! wrong cache mode for "
   4845      1.134   thorpej 			    "primary L1 @ 0x%lx\n", va);
   4846        1.1      matt 	}
   4847        1.1      matt 
   4848      1.134   thorpej 	cpu_dcache_wbinv_all();
   4849      1.134   thorpej 	cpu_tlb_flushID();
   4850      1.134   thorpej 	cpu_cpwait();
   4851        1.1      matt 
   4852      1.113   thorpej 	/*
   4853      1.134   thorpej 	 * now we allocate the "special" VAs which are used for tmp mappings
   4854      1.134   thorpej 	 * by the pmap (and other modules).  we allocate the VAs by advancing
   4855      1.134   thorpej 	 * virtual_avail (note that there are no pages mapped at these VAs).
   4856      1.134   thorpej 	 *
   4857      1.134   thorpej 	 * Managed KVM space start from wherever initarm() tells us.
   4858      1.113   thorpej 	 */
   4859      1.134   thorpej 	virtual_avail = vstart;
   4860      1.134   thorpej 	virtual_end = vend;
   4861      1.113   thorpej 
   4862  1.172.2.1      yamt #ifdef PMAP_CACHE_VIPT
   4863  1.172.2.1      yamt 	/*
   4864  1.172.2.1      yamt 	 * If we have a VIPT cache, we need one page/pte per possible alias
   4865  1.172.2.1      yamt 	 * page so we won't violate cache aliasing rules.
   4866  1.172.2.1      yamt 	 */
   4867  1.172.2.1      yamt 	virtual_avail = (virtual_avail + arm_cache_prefer_mask) & ~arm_cache_prefer_mask;
   4868  1.172.2.1      yamt 	nptes = (arm_cache_prefer_mask >> PGSHIFT) + 1;
   4869  1.172.2.1      yamt #else
   4870  1.172.2.1      yamt 	nptes = 1;
   4871  1.172.2.1      yamt #endif
   4872  1.172.2.1      yamt 	pmap_alloc_specials(&virtual_avail, nptes, &csrcp, &csrc_pte);
   4873  1.172.2.1      yamt 	pmap_set_pt_cache_mode(l1pt, (vaddr_t)csrc_pte);
   4874  1.172.2.1      yamt 	pmap_alloc_specials(&virtual_avail, nptes, &cdstp, &cdst_pte);
   4875  1.172.2.1      yamt 	pmap_set_pt_cache_mode(l1pt, (vaddr_t)cdst_pte);
   4876  1.172.2.1      yamt 	pmap_alloc_specials(&virtual_avail, 1, (void *)&memhook, NULL);
   4877      1.134   thorpej 	pmap_alloc_specials(&virtual_avail, round_page(MSGBUFSIZE) / PAGE_SIZE,
   4878      1.139      matt 	    (void *)&msgbufaddr, NULL);
   4879      1.134   thorpej 
   4880      1.134   thorpej 	/*
   4881      1.134   thorpej 	 * Allocate a range of kernel virtual address space to be used
   4882      1.134   thorpej 	 * for L2 descriptor tables and metadata allocation in
   4883      1.134   thorpej 	 * pmap_growkernel().
   4884      1.134   thorpej 	 */
   4885      1.134   thorpej 	size = ((virtual_end - pmap_curmaxkvaddr) + L1_S_OFFSET) / L1_S_SIZE;
   4886      1.134   thorpej 	pmap_alloc_specials(&virtual_avail,
   4887      1.134   thorpej 	    round_page(size * L2_TABLE_SIZE_REAL) / PAGE_SIZE,
   4888      1.134   thorpej 	    &pmap_kernel_l2ptp_kva, NULL);
   4889        1.1      matt 
   4890      1.134   thorpej 	size = (size + (L2_BUCKET_SIZE - 1)) / L2_BUCKET_SIZE;
   4891      1.134   thorpej 	pmap_alloc_specials(&virtual_avail,
   4892      1.134   thorpej 	    round_page(size * sizeof(struct l2_dtable)) / PAGE_SIZE,
   4893      1.134   thorpej 	    &pmap_kernel_l2dtable_kva, NULL);
   4894        1.1      matt 
   4895      1.134   thorpej 	/*
   4896      1.134   thorpej 	 * init the static-global locks and global pmap list.
   4897      1.134   thorpej 	 */
   4898      1.166        ad 	/* spinlockinit(&pmap_main_lock, "pmaplk", 0); */
   4899        1.1      matt 
   4900      1.134   thorpej 	/*
   4901      1.134   thorpej 	 * We can now initialise the first L1's metadata.
   4902      1.134   thorpej 	 */
   4903      1.134   thorpej 	SLIST_INIT(&l1_list);
   4904      1.134   thorpej 	TAILQ_INIT(&l1_lru_list);
   4905      1.134   thorpej 	simple_lock_init(&l1_lru_lock);
   4906  1.172.2.1      yamt 	pmap_init_l1(l1, l1pt);
   4907        1.1      matt 
   4908      1.165       scw 	/* Set up vector page L1 details, if necessary */
   4909      1.165       scw 	if (vector_page < KERNEL_BASE) {
   4910      1.165       scw 		pm->pm_pl1vec = &pm->pm_l1->l1_kva[L1_IDX(vector_page)];
   4911      1.165       scw 		l2b = pmap_get_l2_bucket(pm, vector_page);
   4912      1.165       scw 		pm->pm_l1vec = l2b->l2b_phys | L1_C_PROTO |
   4913      1.165       scw 		    L1_C_DOM(pm->pm_domain);
   4914      1.165       scw 	} else
   4915      1.165       scw 		pm->pm_pl1vec = NULL;
   4916      1.165       scw 
   4917        1.1      matt 	/*
   4918      1.168        ad 	 * Initialize the pmap cache
   4919        1.1      matt 	 */
   4920      1.168        ad 	pool_cache_bootstrap(&pmap_cache, sizeof(struct pmap), 0, 0, 0,
   4921      1.168        ad 	    "pmappl", NULL, IPL_NONE, pmap_pmap_ctor, NULL, NULL);
   4922      1.134   thorpej 	LIST_INIT(&pmap_pmaps);
   4923      1.134   thorpej 	LIST_INSERT_HEAD(&pmap_pmaps, pm, pm_list);
   4924        1.1      matt 
   4925      1.134   thorpej 	/*
   4926      1.134   thorpej 	 * Initialize the pv pool.
   4927      1.134   thorpej 	 */
   4928      1.134   thorpej 	pool_init(&pmap_pv_pool, sizeof(struct pv_entry), 0, 0, 0, "pvepl",
   4929      1.162        ad 	    &pmap_bootstrap_pv_allocator, IPL_NONE);
   4930       1.29  rearnsha 
   4931      1.134   thorpej 	/*
   4932      1.134   thorpej 	 * Initialize the L2 dtable pool and cache.
   4933      1.134   thorpej 	 */
   4934      1.168        ad 	pool_cache_bootstrap(&pmap_l2dtable_cache, sizeof(struct l2_dtable), 0,
   4935      1.168        ad 	    0, 0, "l2dtblpl", NULL, IPL_NONE, pmap_l2dtable_ctor, NULL, NULL);
   4936        1.1      matt 
   4937      1.134   thorpej 	/*
   4938      1.134   thorpej 	 * Initialise the L2 descriptor table pool and cache
   4939      1.134   thorpej 	 */
   4940      1.168        ad 	pool_cache_bootstrap(&pmap_l2ptp_cache, L2_TABLE_SIZE_REAL, 0,
   4941      1.168        ad 	    L2_TABLE_SIZE_REAL, 0, "l2ptppl", NULL, IPL_NONE,
   4942      1.134   thorpej 	    pmap_l2ptp_ctor, NULL, NULL);
   4943       1.61   thorpej 
   4944      1.134   thorpej 	cpu_dcache_wbinv_all();
   4945        1.1      matt }
   4946        1.1      matt 
   4947      1.134   thorpej static int
   4948      1.134   thorpej pmap_set_pt_cache_mode(pd_entry_t *kl1, vaddr_t va)
   4949        1.1      matt {
   4950      1.134   thorpej 	pd_entry_t *pdep, pde;
   4951      1.134   thorpej 	pt_entry_t *ptep, pte;
   4952      1.134   thorpej 	vaddr_t pa;
   4953      1.134   thorpej 	int rv = 0;
   4954      1.134   thorpej 
   4955      1.134   thorpej 	/*
   4956      1.134   thorpej 	 * Make sure the descriptor itself has the correct cache mode
   4957      1.134   thorpej 	 */
   4958      1.134   thorpej 	pdep = &kl1[L1_IDX(va)];
   4959      1.134   thorpej 	pde = *pdep;
   4960      1.134   thorpej 
   4961      1.134   thorpej 	if (l1pte_section_p(pde)) {
   4962      1.134   thorpej 		if ((pde & L1_S_CACHE_MASK) != pte_l1_s_cache_mode_pt) {
   4963      1.134   thorpej 			*pdep = (pde & ~L1_S_CACHE_MASK) |
   4964      1.134   thorpej 			    pte_l1_s_cache_mode_pt;
   4965      1.134   thorpej 			PTE_SYNC(pdep);
   4966      1.134   thorpej 			cpu_dcache_wbinv_range((vaddr_t)pdep, sizeof(*pdep));
   4967      1.134   thorpej 			rv = 1;
   4968      1.134   thorpej 		}
   4969      1.134   thorpej 	} else {
   4970      1.134   thorpej 		pa = (paddr_t)(pde & L1_C_ADDR_MASK);
   4971      1.134   thorpej 		ptep = (pt_entry_t *)kernel_pt_lookup(pa);
   4972      1.134   thorpej 		if (ptep == NULL)
   4973      1.134   thorpej 			panic("pmap_bootstrap: No L2 for L2 @ va %p\n", ptep);
   4974      1.134   thorpej 
   4975      1.134   thorpej 		ptep = &ptep[l2pte_index(va)];
   4976      1.134   thorpej 		pte = *ptep;
   4977      1.134   thorpej 		if ((pte & L2_S_CACHE_MASK) != pte_l2_s_cache_mode_pt) {
   4978      1.134   thorpej 			*ptep = (pte & ~L2_S_CACHE_MASK) |
   4979      1.134   thorpej 			    pte_l2_s_cache_mode_pt;
   4980      1.134   thorpej 			PTE_SYNC(ptep);
   4981      1.134   thorpej 			cpu_dcache_wbinv_range((vaddr_t)ptep, sizeof(*ptep));
   4982      1.134   thorpej 			rv = 1;
   4983      1.134   thorpej 		}
   4984      1.134   thorpej 	}
   4985      1.134   thorpej 
   4986      1.134   thorpej 	return (rv);
   4987      1.134   thorpej }
   4988        1.1      matt 
   4989      1.134   thorpej static void
   4990      1.134   thorpej pmap_alloc_specials(vaddr_t *availp, int pages, vaddr_t *vap, pt_entry_t **ptep)
   4991      1.134   thorpej {
   4992      1.134   thorpej 	vaddr_t va = *availp;
   4993      1.134   thorpej 	struct l2_bucket *l2b;
   4994        1.1      matt 
   4995      1.134   thorpej 	if (ptep) {
   4996      1.134   thorpej 		l2b = pmap_get_l2_bucket(pmap_kernel(), va);
   4997      1.134   thorpej 		if (l2b == NULL)
   4998      1.134   thorpej 			panic("pmap_alloc_specials: no l2b for 0x%lx", va);
   4999       1.62   thorpej 
   5000      1.134   thorpej 		if (ptep)
   5001      1.134   thorpej 			*ptep = &l2b->l2b_kva[l2pte_index(va)];
   5002        1.1      matt 	}
   5003        1.1      matt 
   5004      1.134   thorpej 	*vap = va;
   5005      1.134   thorpej 	*availp = va + (PAGE_SIZE * pages);
   5006      1.134   thorpej }
   5007      1.134   thorpej 
   5008      1.134   thorpej void
   5009      1.134   thorpej pmap_init(void)
   5010      1.134   thorpej {
   5011      1.134   thorpej 	extern int physmem;
   5012        1.1      matt 
   5013      1.113   thorpej 	/*
   5014      1.134   thorpej 	 * Set the available memory vars - These do not map to real memory
   5015      1.134   thorpej 	 * addresses and cannot as the physical memory is fragmented.
   5016      1.134   thorpej 	 * They are used by ps for %mem calculations.
   5017      1.134   thorpej 	 * One could argue whether this should be the entire memory or just
   5018      1.134   thorpej 	 * the memory that is useable in a user process.
   5019      1.113   thorpej 	 */
   5020      1.134   thorpej 	avail_start = 0;
   5021      1.134   thorpej 	avail_end = physmem * PAGE_SIZE;
   5022       1.63   thorpej 
   5023        1.1      matt 	/*
   5024      1.134   thorpej 	 * Now we need to free enough pv_entry structures to allow us to get
   5025      1.134   thorpej 	 * the kmem_map/kmem_object allocated and inited (done after this
   5026      1.134   thorpej 	 * function is finished).  to do this we allocate one bootstrap page out
   5027      1.134   thorpej 	 * of kernel_map and use it to provide an initial pool of pv_entry
   5028      1.134   thorpej 	 * structures.   we never free this page.
   5029        1.1      matt 	 */
   5030      1.134   thorpej 	pool_setlowat(&pmap_pv_pool,
   5031      1.134   thorpej 	    (PAGE_SIZE / sizeof(struct pv_entry)) * 2);
   5032       1.62   thorpej 
   5033      1.160   thorpej 	pmap_initialized = true;
   5034        1.1      matt }
   5035       1.17     chris 
   5036      1.134   thorpej static vaddr_t last_bootstrap_page = 0;
   5037      1.134   thorpej static void *free_bootstrap_pages = NULL;
   5038        1.1      matt 
   5039      1.134   thorpej static void *
   5040      1.134   thorpej pmap_bootstrap_pv_page_alloc(struct pool *pp, int flags)
   5041        1.1      matt {
   5042      1.134   thorpej 	extern void *pool_page_alloc(struct pool *, int);
   5043      1.134   thorpej 	vaddr_t new_page;
   5044      1.134   thorpej 	void *rv;
   5045      1.134   thorpej 
   5046      1.134   thorpej 	if (pmap_initialized)
   5047      1.134   thorpej 		return (pool_page_alloc(pp, flags));
   5048      1.134   thorpej 
   5049      1.134   thorpej 	if (free_bootstrap_pages) {
   5050      1.134   thorpej 		rv = free_bootstrap_pages;
   5051      1.134   thorpej 		free_bootstrap_pages = *((void **)rv);
   5052      1.134   thorpej 		return (rv);
   5053      1.134   thorpej 	}
   5054      1.134   thorpej 
   5055      1.151      yamt 	new_page = uvm_km_alloc(kernel_map, PAGE_SIZE, 0,
   5056      1.151      yamt 	    UVM_KMF_WIRED | ((flags & PR_WAITOK) ? 0 : UVM_KMF_NOWAIT));
   5057        1.1      matt 
   5058      1.134   thorpej 	KASSERT(new_page > last_bootstrap_page);
   5059      1.134   thorpej 	last_bootstrap_page = new_page;
   5060      1.134   thorpej 	return ((void *)new_page);
   5061       1.17     chris }
   5062       1.17     chris 
   5063      1.134   thorpej static void
   5064      1.134   thorpej pmap_bootstrap_pv_page_free(struct pool *pp, void *v)
   5065       1.17     chris {
   5066      1.134   thorpej 	extern void pool_page_free(struct pool *, void *);
   5067       1.17     chris 
   5068      1.150      joff 	if ((vaddr_t)v <= last_bootstrap_page) {
   5069      1.150      joff 		*((void **)v) = free_bootstrap_pages;
   5070      1.150      joff 		free_bootstrap_pages = v;
   5071      1.134   thorpej 		return;
   5072      1.134   thorpej 	}
   5073      1.114   thorpej 
   5074      1.150      joff 	if (pmap_initialized) {
   5075      1.150      joff 		pool_page_free(pp, v);
   5076      1.134   thorpej 		return;
   5077       1.57   thorpej 	}
   5078       1.17     chris }
   5079       1.17     chris 
   5080       1.17     chris /*
   5081      1.134   thorpej  * pmap_postinit()
   5082       1.17     chris  *
   5083      1.134   thorpej  * This routine is called after the vm and kmem subsystems have been
   5084      1.134   thorpej  * initialised. This allows the pmap code to perform any initialisation
   5085      1.134   thorpej  * that can only be done one the memory allocation is in place.
   5086       1.17     chris  */
   5087      1.134   thorpej void
   5088      1.134   thorpej pmap_postinit(void)
   5089       1.17     chris {
   5090      1.134   thorpej 	extern paddr_t physical_start, physical_end;
   5091      1.134   thorpej 	struct l2_bucket *l2b;
   5092      1.134   thorpej 	struct l1_ttable *l1;
   5093      1.134   thorpej 	struct pglist plist;
   5094      1.134   thorpej 	struct vm_page *m;
   5095      1.134   thorpej 	pd_entry_t *pl1pt;
   5096      1.134   thorpej 	pt_entry_t *ptep, pte;
   5097      1.134   thorpej 	vaddr_t va, eva;
   5098      1.134   thorpej 	u_int loop, needed;
   5099      1.134   thorpej 	int error;
   5100      1.114   thorpej 
   5101      1.169      matt 	pool_cache_setlowat(&pmap_l2ptp_cache,
   5102      1.134   thorpej 	    (PAGE_SIZE / L2_TABLE_SIZE_REAL) * 4);
   5103      1.169      matt 	pool_cache_setlowat(&pmap_l2dtable_cache,
   5104      1.134   thorpej 	    (PAGE_SIZE / sizeof(struct l2_dtable)) * 2);
   5105       1.17     chris 
   5106      1.134   thorpej 	needed = (maxproc / PMAP_DOMAINS) + ((maxproc % PMAP_DOMAINS) ? 1 : 0);
   5107      1.134   thorpej 	needed -= 1;
   5108       1.48     chris 
   5109      1.134   thorpej 	l1 = malloc(sizeof(*l1) * needed, M_VMPMAP, M_WAITOK);
   5110       1.48     chris 
   5111      1.134   thorpej 	for (loop = 0; loop < needed; loop++, l1++) {
   5112      1.134   thorpej 		/* Allocate a L1 page table */
   5113      1.151      yamt 		va = uvm_km_alloc(kernel_map, L1_TABLE_SIZE, 0, UVM_KMF_VAONLY);
   5114      1.134   thorpej 		if (va == 0)
   5115      1.134   thorpej 			panic("Cannot allocate L1 KVM");
   5116      1.134   thorpej 
   5117      1.134   thorpej 		error = uvm_pglistalloc(L1_TABLE_SIZE, physical_start,
   5118      1.134   thorpej 		    physical_end, L1_TABLE_SIZE, 0, &plist, 1, M_WAITOK);
   5119      1.134   thorpej 		if (error)
   5120      1.134   thorpej 			panic("Cannot allocate L1 physical pages");
   5121      1.134   thorpej 
   5122      1.134   thorpej 		m = TAILQ_FIRST(&plist);
   5123      1.134   thorpej 		eva = va + L1_TABLE_SIZE;
   5124      1.134   thorpej 		pl1pt = (pd_entry_t *)va;
   5125       1.48     chris 
   5126      1.134   thorpej 		while (m && va < eva) {
   5127      1.134   thorpej 			paddr_t pa = VM_PAGE_TO_PHYS(m);
   5128       1.48     chris 
   5129      1.134   thorpej 			pmap_kenter_pa(va, pa, VM_PROT_READ | VM_PROT_WRITE);
   5130       1.48     chris 
   5131       1.48     chris 			/*
   5132      1.134   thorpej 			 * Make sure the L1 descriptor table is mapped
   5133      1.134   thorpej 			 * with the cache-mode set to write-through.
   5134       1.48     chris 			 */
   5135      1.134   thorpej 			l2b = pmap_get_l2_bucket(pmap_kernel(), va);
   5136      1.134   thorpej 			ptep = &l2b->l2b_kva[l2pte_index(va)];
   5137      1.134   thorpej 			pte = *ptep;
   5138      1.134   thorpej 			pte = (pte & ~L2_S_CACHE_MASK) | pte_l2_s_cache_mode_pt;
   5139      1.134   thorpej 			*ptep = pte;
   5140      1.134   thorpej 			PTE_SYNC(ptep);
   5141      1.134   thorpej 			cpu_tlb_flushD_SE(va);
   5142       1.48     chris 
   5143      1.134   thorpej 			va += PAGE_SIZE;
   5144  1.172.2.2      yamt 			m = TAILQ_NEXT(m, pageq.queue);
   5145       1.48     chris 		}
   5146       1.48     chris 
   5147      1.134   thorpej #ifdef DIAGNOSTIC
   5148      1.134   thorpej 		if (m)
   5149      1.134   thorpej 			panic("pmap_alloc_l1pt: pglist not empty");
   5150      1.134   thorpej #endif	/* DIAGNOSTIC */
   5151       1.48     chris 
   5152      1.134   thorpej 		pmap_init_l1(l1, pl1pt);
   5153       1.48     chris 	}
   5154       1.48     chris 
   5155      1.134   thorpej #ifdef DEBUG
   5156      1.134   thorpej 	printf("pmap_postinit: Allocated %d static L1 descriptor tables\n",
   5157      1.134   thorpej 	    needed);
   5158      1.134   thorpej #endif
   5159       1.48     chris }
   5160       1.48     chris 
   5161       1.76   thorpej /*
   5162      1.134   thorpej  * Note that the following routines are used by board-specific initialisation
   5163      1.134   thorpej  * code to configure the initial kernel page tables.
   5164      1.134   thorpej  *
   5165      1.134   thorpej  * If ARM32_NEW_VM_LAYOUT is *not* defined, they operate on the assumption that
   5166      1.134   thorpej  * L2 page-table pages are 4KB in size and use 4 L1 slots. This mimics the
   5167      1.134   thorpej  * behaviour of the old pmap, and provides an easy migration path for
   5168      1.134   thorpej  * initial bring-up of the new pmap on existing ports. Fortunately,
   5169      1.134   thorpej  * pmap_bootstrap() compensates for this hackery. This is only a stop-gap and
   5170      1.134   thorpej  * will be deprecated.
   5171       1.76   thorpej  *
   5172      1.134   thorpej  * If ARM32_NEW_VM_LAYOUT *is* defined, these functions deal with 1KB L2 page
   5173      1.134   thorpej  * tables.
   5174       1.76   thorpej  */
   5175       1.40   thorpej 
   5176       1.40   thorpej /*
   5177       1.46   thorpej  * This list exists for the benefit of pmap_map_chunk().  It keeps track
   5178       1.46   thorpej  * of the kernel L2 tables during bootstrap, so that pmap_map_chunk() can
   5179       1.46   thorpej  * find them as necessary.
   5180       1.46   thorpej  *
   5181      1.134   thorpej  * Note that the data on this list MUST remain valid after initarm() returns,
   5182      1.134   thorpej  * as pmap_bootstrap() uses it to contruct L2 table metadata.
   5183       1.46   thorpej  */
   5184       1.46   thorpej SLIST_HEAD(, pv_addr) kernel_pt_list = SLIST_HEAD_INITIALIZER(kernel_pt_list);
   5185       1.46   thorpej 
   5186       1.46   thorpej static vaddr_t
   5187       1.46   thorpej kernel_pt_lookup(paddr_t pa)
   5188       1.46   thorpej {
   5189       1.46   thorpej 	pv_addr_t *pv;
   5190       1.46   thorpej 
   5191       1.46   thorpej 	SLIST_FOREACH(pv, &kernel_pt_list, pv_list) {
   5192      1.134   thorpej #ifndef ARM32_NEW_VM_LAYOUT
   5193      1.134   thorpej 		if (pv->pv_pa == (pa & ~PGOFSET))
   5194      1.134   thorpej 			return (pv->pv_va | (pa & PGOFSET));
   5195      1.134   thorpej #else
   5196       1.46   thorpej 		if (pv->pv_pa == pa)
   5197       1.46   thorpej 			return (pv->pv_va);
   5198      1.134   thorpej #endif
   5199       1.46   thorpej 	}
   5200       1.46   thorpej 	return (0);
   5201       1.46   thorpej }
   5202       1.46   thorpej 
   5203       1.46   thorpej /*
   5204       1.40   thorpej  * pmap_map_section:
   5205       1.40   thorpej  *
   5206       1.40   thorpej  *	Create a single section mapping.
   5207       1.40   thorpej  */
   5208       1.40   thorpej void
   5209       1.40   thorpej pmap_map_section(vaddr_t l1pt, vaddr_t va, paddr_t pa, int prot, int cache)
   5210       1.40   thorpej {
   5211       1.40   thorpej 	pd_entry_t *pde = (pd_entry_t *) l1pt;
   5212      1.134   thorpej 	pd_entry_t fl;
   5213       1.40   thorpej 
   5214       1.81   thorpej 	KASSERT(((va | pa) & L1_S_OFFSET) == 0);
   5215       1.40   thorpej 
   5216      1.134   thorpej 	switch (cache) {
   5217      1.134   thorpej 	case PTE_NOCACHE:
   5218      1.134   thorpej 	default:
   5219      1.134   thorpej 		fl = 0;
   5220      1.134   thorpej 		break;
   5221      1.134   thorpej 
   5222      1.134   thorpej 	case PTE_CACHE:
   5223      1.134   thorpej 		fl = pte_l1_s_cache_mode;
   5224      1.134   thorpej 		break;
   5225      1.134   thorpej 
   5226      1.134   thorpej 	case PTE_PAGETABLE:
   5227      1.134   thorpej 		fl = pte_l1_s_cache_mode_pt;
   5228      1.134   thorpej 		break;
   5229      1.134   thorpej 	}
   5230      1.134   thorpej 
   5231       1.83   thorpej 	pde[va >> L1_S_SHIFT] = L1_S_PROTO | pa |
   5232      1.134   thorpej 	    L1_S_PROT(PTE_KERNEL, prot) | fl | L1_S_DOM(PMAP_DOMAIN_KERNEL);
   5233      1.134   thorpej 	PTE_SYNC(&pde[va >> L1_S_SHIFT]);
   5234       1.41   thorpej }
   5235       1.41   thorpej 
   5236       1.41   thorpej /*
   5237       1.41   thorpej  * pmap_map_entry:
   5238       1.41   thorpej  *
   5239       1.41   thorpej  *	Create a single page mapping.
   5240       1.41   thorpej  */
   5241       1.41   thorpej void
   5242       1.47   thorpej pmap_map_entry(vaddr_t l1pt, vaddr_t va, paddr_t pa, int prot, int cache)
   5243       1.41   thorpej {
   5244       1.47   thorpej 	pd_entry_t *pde = (pd_entry_t *) l1pt;
   5245      1.134   thorpej 	pt_entry_t fl;
   5246       1.47   thorpej 	pt_entry_t *pte;
   5247       1.41   thorpej 
   5248       1.41   thorpej 	KASSERT(((va | pa) & PGOFSET) == 0);
   5249       1.41   thorpej 
   5250      1.134   thorpej 	switch (cache) {
   5251      1.134   thorpej 	case PTE_NOCACHE:
   5252      1.134   thorpej 	default:
   5253      1.134   thorpej 		fl = 0;
   5254      1.134   thorpej 		break;
   5255      1.134   thorpej 
   5256      1.134   thorpej 	case PTE_CACHE:
   5257      1.134   thorpej 		fl = pte_l2_s_cache_mode;
   5258      1.134   thorpej 		break;
   5259      1.134   thorpej 
   5260      1.134   thorpej 	case PTE_PAGETABLE:
   5261      1.134   thorpej 		fl = pte_l2_s_cache_mode_pt;
   5262      1.134   thorpej 		break;
   5263      1.134   thorpej 	}
   5264      1.134   thorpej 
   5265       1.81   thorpej 	if ((pde[va >> L1_S_SHIFT] & L1_TYPE_MASK) != L1_TYPE_C)
   5266       1.47   thorpej 		panic("pmap_map_entry: no L2 table for VA 0x%08lx", va);
   5267       1.47   thorpej 
   5268      1.134   thorpej #ifndef ARM32_NEW_VM_LAYOUT
   5269       1.47   thorpej 	pte = (pt_entry_t *)
   5270       1.81   thorpej 	    kernel_pt_lookup(pde[va >> L1_S_SHIFT] & L2_S_FRAME);
   5271      1.134   thorpej #else
   5272      1.134   thorpej 	pte = (pt_entry_t *) kernel_pt_lookup(pde[L1_IDX(va)] & L1_C_ADDR_MASK);
   5273      1.134   thorpej #endif
   5274       1.47   thorpej 	if (pte == NULL)
   5275       1.47   thorpej 		panic("pmap_map_entry: can't find L2 table for VA 0x%08lx", va);
   5276       1.47   thorpej 
   5277  1.172.2.1      yamt 	fl |= L2_S_PROTO | pa | L2_S_PROT(PTE_KERNEL, prot);
   5278      1.134   thorpej #ifndef ARM32_NEW_VM_LAYOUT
   5279  1.172.2.1      yamt 	pte += (va >> PGSHIFT) & 0x3ff;
   5280      1.134   thorpej #else
   5281  1.172.2.1      yamt 	pte += l2pte_index(va);
   5282      1.134   thorpej 	    L2_S_PROTO | pa | L2_S_PROT(PTE_KERNEL, prot) | fl;
   5283      1.134   thorpej #endif
   5284  1.172.2.1      yamt 	*pte = fl;
   5285  1.172.2.1      yamt 	PTE_SYNC(pte);
   5286       1.42   thorpej }
   5287       1.42   thorpej 
   5288       1.42   thorpej /*
   5289       1.42   thorpej  * pmap_link_l2pt:
   5290       1.42   thorpej  *
   5291      1.134   thorpej  *	Link the L2 page table specified by "l2pv" into the L1
   5292       1.42   thorpej  *	page table at the slot for "va".
   5293       1.42   thorpej  */
   5294       1.42   thorpej void
   5295       1.46   thorpej pmap_link_l2pt(vaddr_t l1pt, vaddr_t va, pv_addr_t *l2pv)
   5296       1.42   thorpej {
   5297      1.134   thorpej 	pd_entry_t *pde = (pd_entry_t *) l1pt, proto;
   5298       1.81   thorpej 	u_int slot = va >> L1_S_SHIFT;
   5299       1.42   thorpej 
   5300      1.134   thorpej #ifndef ARM32_NEW_VM_LAYOUT
   5301      1.134   thorpej 	KASSERT((va & ((L1_S_SIZE * 4) - 1)) == 0);
   5302       1.46   thorpej 	KASSERT((l2pv->pv_pa & PGOFSET) == 0);
   5303      1.134   thorpej #endif
   5304       1.46   thorpej 
   5305      1.134   thorpej 	proto = L1_S_DOM(PMAP_DOMAIN_KERNEL) | L1_C_PROTO;
   5306      1.134   thorpej 
   5307      1.134   thorpej 	pde[slot + 0] = proto | (l2pv->pv_pa + 0x000);
   5308      1.134   thorpej #ifdef ARM32_NEW_VM_LAYOUT
   5309      1.134   thorpej 	PTE_SYNC(&pde[slot]);
   5310      1.134   thorpej #else
   5311      1.134   thorpej 	pde[slot + 1] = proto | (l2pv->pv_pa + 0x400);
   5312      1.134   thorpej 	pde[slot + 2] = proto | (l2pv->pv_pa + 0x800);
   5313      1.134   thorpej 	pde[slot + 3] = proto | (l2pv->pv_pa + 0xc00);
   5314      1.134   thorpej 	PTE_SYNC_RANGE(&pde[slot + 0], 4);
   5315      1.134   thorpej #endif
   5316       1.42   thorpej 
   5317       1.46   thorpej 	SLIST_INSERT_HEAD(&kernel_pt_list, l2pv, pv_list);
   5318       1.43   thorpej }
   5319       1.43   thorpej 
   5320       1.43   thorpej /*
   5321       1.43   thorpej  * pmap_map_chunk:
   5322       1.43   thorpej  *
   5323       1.43   thorpej  *	Map a chunk of memory using the most efficient mappings
   5324       1.43   thorpej  *	possible (section, large page, small page) into the
   5325       1.43   thorpej  *	provided L1 and L2 tables at the specified virtual address.
   5326       1.43   thorpej  */
   5327       1.43   thorpej vsize_t
   5328       1.46   thorpej pmap_map_chunk(vaddr_t l1pt, vaddr_t va, paddr_t pa, vsize_t size,
   5329       1.46   thorpej     int prot, int cache)
   5330       1.43   thorpej {
   5331       1.43   thorpej 	pd_entry_t *pde = (pd_entry_t *) l1pt;
   5332      1.134   thorpej 	pt_entry_t *pte, f1, f2s, f2l;
   5333       1.43   thorpej 	vsize_t resid;
   5334      1.134   thorpej 	int i;
   5335       1.43   thorpej 
   5336      1.130   thorpej 	resid = (size + (PAGE_SIZE - 1)) & ~(PAGE_SIZE - 1);
   5337       1.43   thorpej 
   5338       1.44   thorpej 	if (l1pt == 0)
   5339       1.44   thorpej 		panic("pmap_map_chunk: no L1 table provided");
   5340       1.44   thorpej 
   5341       1.43   thorpej #ifdef VERBOSE_INIT_ARM
   5342       1.43   thorpej 	printf("pmap_map_chunk: pa=0x%lx va=0x%lx size=0x%lx resid=0x%lx "
   5343       1.43   thorpej 	    "prot=0x%x cache=%d\n", pa, va, size, resid, prot, cache);
   5344       1.43   thorpej #endif
   5345       1.43   thorpej 
   5346      1.134   thorpej 	switch (cache) {
   5347      1.134   thorpej 	case PTE_NOCACHE:
   5348      1.134   thorpej 	default:
   5349      1.134   thorpej 		f1 = 0;
   5350      1.134   thorpej 		f2l = 0;
   5351      1.134   thorpej 		f2s = 0;
   5352      1.134   thorpej 		break;
   5353      1.134   thorpej 
   5354      1.134   thorpej 	case PTE_CACHE:
   5355      1.134   thorpej 		f1 = pte_l1_s_cache_mode;
   5356      1.134   thorpej 		f2l = pte_l2_l_cache_mode;
   5357      1.134   thorpej 		f2s = pte_l2_s_cache_mode;
   5358      1.134   thorpej 		break;
   5359      1.134   thorpej 
   5360      1.134   thorpej 	case PTE_PAGETABLE:
   5361      1.134   thorpej 		f1 = pte_l1_s_cache_mode_pt;
   5362      1.134   thorpej 		f2l = pte_l2_l_cache_mode_pt;
   5363      1.134   thorpej 		f2s = pte_l2_s_cache_mode_pt;
   5364      1.134   thorpej 		break;
   5365      1.134   thorpej 	}
   5366      1.134   thorpej 
   5367       1.43   thorpej 	size = resid;
   5368       1.43   thorpej 
   5369       1.43   thorpej 	while (resid > 0) {
   5370       1.43   thorpej 		/* See if we can use a section mapping. */
   5371      1.134   thorpej 		if (L1_S_MAPPABLE_P(va, pa, resid)) {
   5372       1.43   thorpej #ifdef VERBOSE_INIT_ARM
   5373       1.43   thorpej 			printf("S");
   5374       1.43   thorpej #endif
   5375       1.83   thorpej 			pde[va >> L1_S_SHIFT] = L1_S_PROTO | pa |
   5376      1.134   thorpej 			    L1_S_PROT(PTE_KERNEL, prot) | f1 |
   5377      1.134   thorpej 			    L1_S_DOM(PMAP_DOMAIN_KERNEL);
   5378      1.134   thorpej 			PTE_SYNC(&pde[va >> L1_S_SHIFT]);
   5379       1.81   thorpej 			va += L1_S_SIZE;
   5380       1.81   thorpej 			pa += L1_S_SIZE;
   5381       1.81   thorpej 			resid -= L1_S_SIZE;
   5382       1.43   thorpej 			continue;
   5383       1.43   thorpej 		}
   5384       1.45   thorpej 
   5385       1.45   thorpej 		/*
   5386       1.45   thorpej 		 * Ok, we're going to use an L2 table.  Make sure
   5387       1.45   thorpej 		 * one is actually in the corresponding L1 slot
   5388       1.45   thorpej 		 * for the current VA.
   5389       1.45   thorpej 		 */
   5390       1.81   thorpej 		if ((pde[va >> L1_S_SHIFT] & L1_TYPE_MASK) != L1_TYPE_C)
   5391       1.46   thorpej 			panic("pmap_map_chunk: no L2 table for VA 0x%08lx", va);
   5392       1.46   thorpej 
   5393      1.134   thorpej #ifndef ARM32_NEW_VM_LAYOUT
   5394       1.46   thorpej 		pte = (pt_entry_t *)
   5395       1.81   thorpej 		    kernel_pt_lookup(pde[va >> L1_S_SHIFT] & L2_S_FRAME);
   5396      1.134   thorpej #else
   5397      1.134   thorpej 		pte = (pt_entry_t *) kernel_pt_lookup(
   5398      1.134   thorpej 		    pde[L1_IDX(va)] & L1_C_ADDR_MASK);
   5399      1.134   thorpej #endif
   5400       1.46   thorpej 		if (pte == NULL)
   5401       1.46   thorpej 			panic("pmap_map_chunk: can't find L2 table for VA"
   5402       1.46   thorpej 			    "0x%08lx", va);
   5403       1.43   thorpej 
   5404       1.43   thorpej 		/* See if we can use a L2 large page mapping. */
   5405      1.134   thorpej 		if (L2_L_MAPPABLE_P(va, pa, resid)) {
   5406       1.43   thorpej #ifdef VERBOSE_INIT_ARM
   5407       1.43   thorpej 			printf("L");
   5408       1.43   thorpej #endif
   5409       1.43   thorpej 			for (i = 0; i < 16; i++) {
   5410      1.134   thorpej #ifndef ARM32_NEW_VM_LAYOUT
   5411       1.43   thorpej 				pte[((va >> PGSHIFT) & 0x3f0) + i] =
   5412       1.83   thorpej 				    L2_L_PROTO | pa |
   5413      1.134   thorpej 				    L2_L_PROT(PTE_KERNEL, prot) | f2l;
   5414      1.134   thorpej 				PTE_SYNC(&pte[((va >> PGSHIFT) & 0x3f0) + i]);
   5415      1.134   thorpej #else
   5416      1.134   thorpej 				pte[l2pte_index(va) + i] =
   5417      1.134   thorpej 				    L2_L_PROTO | pa |
   5418      1.134   thorpej 				    L2_L_PROT(PTE_KERNEL, prot) | f2l;
   5419      1.134   thorpej 				PTE_SYNC(&pte[l2pte_index(va) + i]);
   5420      1.134   thorpej #endif
   5421       1.43   thorpej 			}
   5422       1.81   thorpej 			va += L2_L_SIZE;
   5423       1.81   thorpej 			pa += L2_L_SIZE;
   5424       1.81   thorpej 			resid -= L2_L_SIZE;
   5425       1.43   thorpej 			continue;
   5426       1.43   thorpej 		}
   5427       1.43   thorpej 
   5428       1.43   thorpej 		/* Use a small page mapping. */
   5429       1.43   thorpej #ifdef VERBOSE_INIT_ARM
   5430       1.43   thorpej 		printf("P");
   5431       1.43   thorpej #endif
   5432      1.134   thorpej #ifndef ARM32_NEW_VM_LAYOUT
   5433      1.134   thorpej 		pte[(va >> PGSHIFT) & 0x3ff] =
   5434      1.134   thorpej 		    L2_S_PROTO | pa | L2_S_PROT(PTE_KERNEL, prot) | f2s;
   5435      1.134   thorpej 		PTE_SYNC(&pte[(va >> PGSHIFT) & 0x3ff]);
   5436      1.134   thorpej #else
   5437      1.134   thorpej 		pte[l2pte_index(va)] =
   5438      1.134   thorpej 		    L2_S_PROTO | pa | L2_S_PROT(PTE_KERNEL, prot) | f2s;
   5439      1.134   thorpej 		PTE_SYNC(&pte[l2pte_index(va)]);
   5440      1.134   thorpej #endif
   5441      1.130   thorpej 		va += PAGE_SIZE;
   5442      1.130   thorpej 		pa += PAGE_SIZE;
   5443      1.130   thorpej 		resid -= PAGE_SIZE;
   5444       1.43   thorpej 	}
   5445       1.43   thorpej #ifdef VERBOSE_INIT_ARM
   5446       1.43   thorpej 	printf("\n");
   5447       1.43   thorpej #endif
   5448       1.43   thorpej 	return (size);
   5449      1.135   thorpej }
   5450      1.135   thorpej 
   5451      1.135   thorpej /********************** Static device map routines ***************************/
   5452      1.135   thorpej 
   5453      1.135   thorpej static const struct pmap_devmap *pmap_devmap_table;
   5454      1.135   thorpej 
   5455      1.135   thorpej /*
   5456      1.136   thorpej  * Register the devmap table.  This is provided in case early console
   5457      1.136   thorpej  * initialization needs to register mappings created by bootstrap code
   5458      1.136   thorpej  * before pmap_devmap_bootstrap() is called.
   5459      1.136   thorpej  */
   5460      1.136   thorpej void
   5461      1.136   thorpej pmap_devmap_register(const struct pmap_devmap *table)
   5462      1.136   thorpej {
   5463      1.136   thorpej 
   5464      1.136   thorpej 	pmap_devmap_table = table;
   5465      1.136   thorpej }
   5466      1.136   thorpej 
   5467      1.136   thorpej /*
   5468      1.135   thorpej  * Map all of the static regions in the devmap table, and remember
   5469      1.135   thorpej  * the devmap table so other parts of the kernel can look up entries
   5470      1.135   thorpej  * later.
   5471      1.135   thorpej  */
   5472      1.135   thorpej void
   5473      1.135   thorpej pmap_devmap_bootstrap(vaddr_t l1pt, const struct pmap_devmap *table)
   5474      1.135   thorpej {
   5475      1.135   thorpej 	int i;
   5476      1.135   thorpej 
   5477      1.135   thorpej 	pmap_devmap_table = table;
   5478      1.135   thorpej 
   5479      1.135   thorpej 	for (i = 0; pmap_devmap_table[i].pd_size != 0; i++) {
   5480      1.135   thorpej #ifdef VERBOSE_INIT_ARM
   5481      1.135   thorpej 		printf("devmap: %08lx -> %08lx @ %08lx\n",
   5482      1.135   thorpej 		    pmap_devmap_table[i].pd_pa,
   5483      1.135   thorpej 		    pmap_devmap_table[i].pd_pa +
   5484      1.135   thorpej 			pmap_devmap_table[i].pd_size - 1,
   5485      1.135   thorpej 		    pmap_devmap_table[i].pd_va);
   5486      1.135   thorpej #endif
   5487      1.135   thorpej 		pmap_map_chunk(l1pt, pmap_devmap_table[i].pd_va,
   5488      1.135   thorpej 		    pmap_devmap_table[i].pd_pa,
   5489      1.135   thorpej 		    pmap_devmap_table[i].pd_size,
   5490      1.135   thorpej 		    pmap_devmap_table[i].pd_prot,
   5491      1.135   thorpej 		    pmap_devmap_table[i].pd_cache);
   5492      1.135   thorpej 	}
   5493      1.135   thorpej }
   5494      1.135   thorpej 
   5495      1.135   thorpej const struct pmap_devmap *
   5496      1.135   thorpej pmap_devmap_find_pa(paddr_t pa, psize_t size)
   5497      1.135   thorpej {
   5498      1.153       scw 	uint64_t endpa;
   5499      1.135   thorpej 	int i;
   5500      1.135   thorpej 
   5501      1.135   thorpej 	if (pmap_devmap_table == NULL)
   5502      1.135   thorpej 		return (NULL);
   5503      1.135   thorpej 
   5504      1.158  christos 	endpa = (uint64_t)pa + (uint64_t)(size - 1);
   5505      1.153       scw 
   5506      1.135   thorpej 	for (i = 0; pmap_devmap_table[i].pd_size != 0; i++) {
   5507      1.135   thorpej 		if (pa >= pmap_devmap_table[i].pd_pa &&
   5508      1.153       scw 		    endpa <= (uint64_t)pmap_devmap_table[i].pd_pa +
   5509      1.158  christos 			     (uint64_t)(pmap_devmap_table[i].pd_size - 1))
   5510      1.135   thorpej 			return (&pmap_devmap_table[i]);
   5511      1.135   thorpej 	}
   5512      1.135   thorpej 
   5513      1.135   thorpej 	return (NULL);
   5514      1.135   thorpej }
   5515      1.135   thorpej 
   5516      1.135   thorpej const struct pmap_devmap *
   5517      1.135   thorpej pmap_devmap_find_va(vaddr_t va, vsize_t size)
   5518      1.135   thorpej {
   5519      1.135   thorpej 	int i;
   5520      1.135   thorpej 
   5521      1.135   thorpej 	if (pmap_devmap_table == NULL)
   5522      1.135   thorpej 		return (NULL);
   5523      1.135   thorpej 
   5524      1.135   thorpej 	for (i = 0; pmap_devmap_table[i].pd_size != 0; i++) {
   5525      1.135   thorpej 		if (va >= pmap_devmap_table[i].pd_va &&
   5526      1.158  christos 		    va + size - 1 <= pmap_devmap_table[i].pd_va +
   5527      1.158  christos 				     pmap_devmap_table[i].pd_size - 1)
   5528      1.135   thorpej 			return (&pmap_devmap_table[i]);
   5529      1.135   thorpej 	}
   5530      1.135   thorpej 
   5531      1.135   thorpej 	return (NULL);
   5532       1.40   thorpej }
   5533       1.85   thorpej 
   5534       1.85   thorpej /********************** PTE initialization routines **************************/
   5535       1.85   thorpej 
   5536       1.85   thorpej /*
   5537       1.85   thorpej  * These routines are called when the CPU type is identified to set up
   5538       1.85   thorpej  * the PTE prototypes, cache modes, etc.
   5539       1.85   thorpej  *
   5540       1.85   thorpej  * The variables are always here, just in case LKMs need to reference
   5541       1.85   thorpej  * them (though, they shouldn't).
   5542       1.85   thorpej  */
   5543       1.85   thorpej 
   5544       1.86   thorpej pt_entry_t	pte_l1_s_cache_mode;
   5545      1.134   thorpej pt_entry_t	pte_l1_s_cache_mode_pt;
   5546       1.86   thorpej pt_entry_t	pte_l1_s_cache_mask;
   5547       1.86   thorpej 
   5548       1.86   thorpej pt_entry_t	pte_l2_l_cache_mode;
   5549      1.134   thorpej pt_entry_t	pte_l2_l_cache_mode_pt;
   5550       1.86   thorpej pt_entry_t	pte_l2_l_cache_mask;
   5551       1.86   thorpej 
   5552       1.86   thorpej pt_entry_t	pte_l2_s_cache_mode;
   5553      1.134   thorpej pt_entry_t	pte_l2_s_cache_mode_pt;
   5554       1.86   thorpej pt_entry_t	pte_l2_s_cache_mask;
   5555       1.85   thorpej 
   5556       1.85   thorpej pt_entry_t	pte_l2_s_prot_u;
   5557       1.85   thorpej pt_entry_t	pte_l2_s_prot_w;
   5558       1.85   thorpej pt_entry_t	pte_l2_s_prot_mask;
   5559       1.85   thorpej 
   5560       1.85   thorpej pt_entry_t	pte_l1_s_proto;
   5561       1.85   thorpej pt_entry_t	pte_l1_c_proto;
   5562       1.85   thorpej pt_entry_t	pte_l2_s_proto;
   5563       1.85   thorpej 
   5564       1.88   thorpej void		(*pmap_copy_page_func)(paddr_t, paddr_t);
   5565       1.88   thorpej void		(*pmap_zero_page_func)(paddr_t);
   5566       1.88   thorpej 
   5567  1.172.2.1      yamt #if (ARM_MMU_GENERIC + ARM_MMU_SA1 + ARM_MMU_V6) != 0
   5568       1.85   thorpej void
   5569       1.85   thorpej pmap_pte_init_generic(void)
   5570       1.85   thorpej {
   5571       1.85   thorpej 
   5572       1.86   thorpej 	pte_l1_s_cache_mode = L1_S_B|L1_S_C;
   5573       1.86   thorpej 	pte_l1_s_cache_mask = L1_S_CACHE_MASK_generic;
   5574       1.86   thorpej 
   5575       1.86   thorpej 	pte_l2_l_cache_mode = L2_B|L2_C;
   5576       1.86   thorpej 	pte_l2_l_cache_mask = L2_L_CACHE_MASK_generic;
   5577       1.86   thorpej 
   5578       1.86   thorpej 	pte_l2_s_cache_mode = L2_B|L2_C;
   5579       1.86   thorpej 	pte_l2_s_cache_mask = L2_S_CACHE_MASK_generic;
   5580       1.85   thorpej 
   5581      1.134   thorpej 	/*
   5582      1.134   thorpej 	 * If we have a write-through cache, set B and C.  If
   5583      1.134   thorpej 	 * we have a write-back cache, then we assume setting
   5584      1.134   thorpej 	 * only C will make those pages write-through.
   5585      1.134   thorpej 	 */
   5586      1.134   thorpej 	if (cpufuncs.cf_dcache_wb_range == (void *) cpufunc_nullop) {
   5587      1.134   thorpej 		pte_l1_s_cache_mode_pt = L1_S_B|L1_S_C;
   5588      1.134   thorpej 		pte_l2_l_cache_mode_pt = L2_B|L2_C;
   5589      1.134   thorpej 		pte_l2_s_cache_mode_pt = L2_B|L2_C;
   5590      1.134   thorpej 	} else {
   5591  1.172.2.1      yamt #if ARM_MMU_V6 > 1
   5592  1.172.2.1      yamt 		pte_l1_s_cache_mode_pt = L1_S_B|L1_S_C; /* arm116 errata 399234 */
   5593  1.172.2.1      yamt 		pte_l2_l_cache_mode_pt = L2_B|L2_C; /* arm116 errata 399234 */
   5594  1.172.2.1      yamt 		pte_l2_s_cache_mode_pt = L2_B|L2_C; /* arm116 errata 399234 */
   5595  1.172.2.1      yamt #else
   5596      1.134   thorpej 		pte_l1_s_cache_mode_pt = L1_S_C;
   5597      1.134   thorpej 		pte_l2_l_cache_mode_pt = L2_C;
   5598      1.134   thorpej 		pte_l2_s_cache_mode_pt = L2_C;
   5599  1.172.2.1      yamt #endif
   5600      1.134   thorpej 	}
   5601      1.134   thorpej 
   5602       1.85   thorpej 	pte_l2_s_prot_u = L2_S_PROT_U_generic;
   5603       1.85   thorpej 	pte_l2_s_prot_w = L2_S_PROT_W_generic;
   5604       1.85   thorpej 	pte_l2_s_prot_mask = L2_S_PROT_MASK_generic;
   5605       1.85   thorpej 
   5606       1.85   thorpej 	pte_l1_s_proto = L1_S_PROTO_generic;
   5607       1.85   thorpej 	pte_l1_c_proto = L1_C_PROTO_generic;
   5608       1.85   thorpej 	pte_l2_s_proto = L2_S_PROTO_generic;
   5609       1.88   thorpej 
   5610       1.88   thorpej 	pmap_copy_page_func = pmap_copy_page_generic;
   5611       1.88   thorpej 	pmap_zero_page_func = pmap_zero_page_generic;
   5612       1.85   thorpej }
   5613       1.85   thorpej 
   5614      1.131   thorpej #if defined(CPU_ARM8)
   5615      1.131   thorpej void
   5616      1.131   thorpej pmap_pte_init_arm8(void)
   5617      1.131   thorpej {
   5618      1.131   thorpej 
   5619      1.134   thorpej 	/*
   5620      1.134   thorpej 	 * ARM8 is compatible with generic, but we need to use
   5621      1.134   thorpej 	 * the page tables uncached.
   5622      1.134   thorpej 	 */
   5623      1.131   thorpej 	pmap_pte_init_generic();
   5624      1.134   thorpej 
   5625      1.134   thorpej 	pte_l1_s_cache_mode_pt = 0;
   5626      1.134   thorpej 	pte_l2_l_cache_mode_pt = 0;
   5627      1.134   thorpej 	pte_l2_s_cache_mode_pt = 0;
   5628      1.131   thorpej }
   5629      1.131   thorpej #endif /* CPU_ARM8 */
   5630      1.131   thorpej 
   5631      1.148       bsh #if defined(CPU_ARM9) && defined(ARM9_CACHE_WRITE_THROUGH)
   5632       1.85   thorpej void
   5633       1.85   thorpej pmap_pte_init_arm9(void)
   5634       1.85   thorpej {
   5635       1.85   thorpej 
   5636       1.85   thorpej 	/*
   5637       1.85   thorpej 	 * ARM9 is compatible with generic, but we want to use
   5638       1.85   thorpej 	 * write-through caching for now.
   5639       1.85   thorpej 	 */
   5640       1.85   thorpej 	pmap_pte_init_generic();
   5641       1.86   thorpej 
   5642       1.86   thorpej 	pte_l1_s_cache_mode = L1_S_C;
   5643       1.86   thorpej 	pte_l2_l_cache_mode = L2_C;
   5644       1.86   thorpej 	pte_l2_s_cache_mode = L2_C;
   5645      1.134   thorpej 
   5646      1.134   thorpej 	pte_l1_s_cache_mode_pt = L1_S_C;
   5647      1.134   thorpej 	pte_l2_l_cache_mode_pt = L2_C;
   5648      1.134   thorpej 	pte_l2_s_cache_mode_pt = L2_C;
   5649       1.85   thorpej }
   5650       1.85   thorpej #endif /* CPU_ARM9 */
   5651  1.172.2.1      yamt #endif /* (ARM_MMU_GENERIC + ARM_MMU_SA1 + ARM_MMU_V6) != 0 */
   5652      1.138  rearnsha 
   5653      1.138  rearnsha #if defined(CPU_ARM10)
   5654      1.138  rearnsha void
   5655      1.138  rearnsha pmap_pte_init_arm10(void)
   5656      1.138  rearnsha {
   5657      1.138  rearnsha 
   5658      1.138  rearnsha 	/*
   5659      1.138  rearnsha 	 * ARM10 is compatible with generic, but we want to use
   5660      1.138  rearnsha 	 * write-through caching for now.
   5661      1.138  rearnsha 	 */
   5662      1.138  rearnsha 	pmap_pte_init_generic();
   5663      1.138  rearnsha 
   5664      1.138  rearnsha 	pte_l1_s_cache_mode = L1_S_B | L1_S_C;
   5665      1.138  rearnsha 	pte_l2_l_cache_mode = L2_B | L2_C;
   5666      1.138  rearnsha 	pte_l2_s_cache_mode = L2_B | L2_C;
   5667      1.138  rearnsha 
   5668      1.138  rearnsha 	pte_l1_s_cache_mode_pt = L1_S_C;
   5669      1.138  rearnsha 	pte_l2_l_cache_mode_pt = L2_C;
   5670      1.138  rearnsha 	pte_l2_s_cache_mode_pt = L2_C;
   5671      1.138  rearnsha 
   5672      1.138  rearnsha }
   5673      1.138  rearnsha #endif /* CPU_ARM10 */
   5674      1.131   thorpej 
   5675      1.131   thorpej #if ARM_MMU_SA1 == 1
   5676      1.131   thorpej void
   5677      1.131   thorpej pmap_pte_init_sa1(void)
   5678      1.131   thorpej {
   5679      1.131   thorpej 
   5680      1.134   thorpej 	/*
   5681      1.134   thorpej 	 * The StrongARM SA-1 cache does not have a write-through
   5682      1.134   thorpej 	 * mode.  So, do the generic initialization, then reset
   5683      1.134   thorpej 	 * the page table cache mode to B=1,C=1, and note that
   5684      1.134   thorpej 	 * the PTEs need to be sync'd.
   5685      1.134   thorpej 	 */
   5686      1.131   thorpej 	pmap_pte_init_generic();
   5687      1.134   thorpej 
   5688      1.134   thorpej 	pte_l1_s_cache_mode_pt = L1_S_B|L1_S_C;
   5689      1.134   thorpej 	pte_l2_l_cache_mode_pt = L2_B|L2_C;
   5690      1.134   thorpej 	pte_l2_s_cache_mode_pt = L2_B|L2_C;
   5691      1.134   thorpej 
   5692      1.134   thorpej 	pmap_needs_pte_sync = 1;
   5693      1.131   thorpej }
   5694      1.134   thorpej #endif /* ARM_MMU_SA1 == 1*/
   5695       1.85   thorpej 
   5696       1.85   thorpej #if ARM_MMU_XSCALE == 1
   5697      1.141       scw #if (ARM_NMMUS > 1)
   5698      1.141       scw static u_int xscale_use_minidata;
   5699      1.141       scw #endif
   5700      1.141       scw 
   5701       1.85   thorpej void
   5702       1.85   thorpej pmap_pte_init_xscale(void)
   5703       1.85   thorpej {
   5704       1.96   thorpej 	uint32_t auxctl;
   5705      1.134   thorpej 	int write_through = 0;
   5706       1.85   thorpej 
   5707       1.96   thorpej 	pte_l1_s_cache_mode = L1_S_B|L1_S_C;
   5708       1.86   thorpej 	pte_l1_s_cache_mask = L1_S_CACHE_MASK_xscale;
   5709       1.86   thorpej 
   5710       1.96   thorpej 	pte_l2_l_cache_mode = L2_B|L2_C;
   5711       1.86   thorpej 	pte_l2_l_cache_mask = L2_L_CACHE_MASK_xscale;
   5712       1.86   thorpej 
   5713       1.96   thorpej 	pte_l2_s_cache_mode = L2_B|L2_C;
   5714       1.86   thorpej 	pte_l2_s_cache_mask = L2_S_CACHE_MASK_xscale;
   5715      1.106   thorpej 
   5716      1.134   thorpej 	pte_l1_s_cache_mode_pt = L1_S_C;
   5717      1.134   thorpej 	pte_l2_l_cache_mode_pt = L2_C;
   5718      1.134   thorpej 	pte_l2_s_cache_mode_pt = L2_C;
   5719      1.134   thorpej 
   5720      1.106   thorpej #ifdef XSCALE_CACHE_READ_WRITE_ALLOCATE
   5721      1.106   thorpej 	/*
   5722      1.106   thorpej 	 * The XScale core has an enhanced mode where writes that
   5723      1.106   thorpej 	 * miss the cache cause a cache line to be allocated.  This
   5724      1.106   thorpej 	 * is significantly faster than the traditional, write-through
   5725      1.106   thorpej 	 * behavior of this case.
   5726      1.106   thorpej 	 */
   5727  1.172.2.1      yamt 	pte_l1_s_cache_mode |= L1_S_XS_TEX(TEX_XSCALE_X);
   5728  1.172.2.1      yamt 	pte_l2_l_cache_mode |= L2_XS_L_TEX(TEX_XSCALE_X);
   5729  1.172.2.1      yamt 	pte_l2_s_cache_mode |= L2_XS_T_TEX(TEX_XSCALE_X);
   5730      1.106   thorpej #endif /* XSCALE_CACHE_READ_WRITE_ALLOCATE */
   5731       1.85   thorpej 
   5732       1.95   thorpej #ifdef XSCALE_CACHE_WRITE_THROUGH
   5733       1.95   thorpej 	/*
   5734       1.95   thorpej 	 * Some versions of the XScale core have various bugs in
   5735       1.95   thorpej 	 * their cache units, the work-around for which is to run
   5736       1.95   thorpej 	 * the cache in write-through mode.  Unfortunately, this
   5737       1.95   thorpej 	 * has a major (negative) impact on performance.  So, we
   5738       1.95   thorpej 	 * go ahead and run fast-and-loose, in the hopes that we
   5739       1.95   thorpej 	 * don't line up the planets in a way that will trip the
   5740       1.95   thorpej 	 * bugs.
   5741       1.95   thorpej 	 *
   5742       1.95   thorpej 	 * However, we give you the option to be slow-but-correct.
   5743       1.95   thorpej 	 */
   5744      1.129       bsh 	write_through = 1;
   5745      1.129       bsh #elif defined(XSCALE_CACHE_WRITE_BACK)
   5746      1.134   thorpej 	/* force write back cache mode */
   5747      1.129       bsh 	write_through = 0;
   5748      1.154       bsh #elif defined(CPU_XSCALE_PXA250) || defined(CPU_XSCALE_PXA270)
   5749      1.129       bsh 	/*
   5750      1.129       bsh 	 * Intel PXA2[15]0 processors are known to have a bug in
   5751      1.129       bsh 	 * write-back cache on revision 4 and earlier (stepping
   5752      1.129       bsh 	 * A[01] and B[012]).  Fixed for C0 and later.
   5753      1.129       bsh 	 */
   5754      1.129       bsh 	{
   5755      1.134   thorpej 		uint32_t id, type;
   5756      1.129       bsh 
   5757      1.129       bsh 		id = cpufunc_id();
   5758      1.129       bsh 		type = id & ~(CPU_ID_XSCALE_COREREV_MASK|CPU_ID_REVISION_MASK);
   5759      1.129       bsh 
   5760      1.129       bsh 		if (type == CPU_ID_PXA250 || type == CPU_ID_PXA210) {
   5761      1.129       bsh 			if ((id & CPU_ID_REVISION_MASK) < 5) {
   5762      1.129       bsh 				/* write through for stepping A0-1 and B0-2 */
   5763      1.129       bsh 				write_through = 1;
   5764      1.129       bsh 			}
   5765      1.129       bsh 		}
   5766      1.129       bsh 	}
   5767       1.95   thorpej #endif /* XSCALE_CACHE_WRITE_THROUGH */
   5768      1.129       bsh 
   5769      1.129       bsh 	if (write_through) {
   5770      1.129       bsh 		pte_l1_s_cache_mode = L1_S_C;
   5771      1.129       bsh 		pte_l2_l_cache_mode = L2_C;
   5772      1.129       bsh 		pte_l2_s_cache_mode = L2_C;
   5773      1.129       bsh 	}
   5774       1.95   thorpej 
   5775      1.141       scw #if (ARM_NMMUS > 1)
   5776      1.141       scw 	xscale_use_minidata = 1;
   5777      1.141       scw #endif
   5778      1.141       scw 
   5779       1.85   thorpej 	pte_l2_s_prot_u = L2_S_PROT_U_xscale;
   5780       1.85   thorpej 	pte_l2_s_prot_w = L2_S_PROT_W_xscale;
   5781       1.85   thorpej 	pte_l2_s_prot_mask = L2_S_PROT_MASK_xscale;
   5782       1.85   thorpej 
   5783       1.85   thorpej 	pte_l1_s_proto = L1_S_PROTO_xscale;
   5784       1.85   thorpej 	pte_l1_c_proto = L1_C_PROTO_xscale;
   5785       1.85   thorpej 	pte_l2_s_proto = L2_S_PROTO_xscale;
   5786       1.88   thorpej 
   5787       1.88   thorpej 	pmap_copy_page_func = pmap_copy_page_xscale;
   5788       1.88   thorpej 	pmap_zero_page_func = pmap_zero_page_xscale;
   5789       1.96   thorpej 
   5790       1.96   thorpej 	/*
   5791       1.96   thorpej 	 * Disable ECC protection of page table access, for now.
   5792       1.96   thorpej 	 */
   5793      1.157     perry 	__asm volatile("mrc p15, 0, %0, c1, c0, 1" : "=r" (auxctl));
   5794       1.96   thorpej 	auxctl &= ~XSCALE_AUXCTL_P;
   5795      1.157     perry 	__asm volatile("mcr p15, 0, %0, c1, c0, 1" : : "r" (auxctl));
   5796       1.85   thorpej }
   5797       1.87   thorpej 
   5798       1.87   thorpej /*
   5799       1.87   thorpej  * xscale_setup_minidata:
   5800       1.87   thorpej  *
   5801       1.87   thorpej  *	Set up the mini-data cache clean area.  We require the
   5802       1.87   thorpej  *	caller to allocate the right amount of physically and
   5803       1.87   thorpej  *	virtually contiguous space.
   5804       1.87   thorpej  */
   5805       1.87   thorpej void
   5806       1.87   thorpej xscale_setup_minidata(vaddr_t l1pt, vaddr_t va, paddr_t pa)
   5807       1.87   thorpej {
   5808       1.87   thorpej 	extern vaddr_t xscale_minidata_clean_addr;
   5809       1.87   thorpej 	extern vsize_t xscale_minidata_clean_size; /* already initialized */
   5810       1.87   thorpej 	pd_entry_t *pde = (pd_entry_t *) l1pt;
   5811       1.87   thorpej 	pt_entry_t *pte;
   5812       1.87   thorpej 	vsize_t size;
   5813       1.96   thorpej 	uint32_t auxctl;
   5814       1.87   thorpej 
   5815       1.87   thorpej 	xscale_minidata_clean_addr = va;
   5816       1.87   thorpej 
   5817       1.87   thorpej 	/* Round it to page size. */
   5818       1.87   thorpej 	size = (xscale_minidata_clean_size + L2_S_OFFSET) & L2_S_FRAME;
   5819       1.87   thorpej 
   5820       1.87   thorpej 	for (; size != 0;
   5821       1.87   thorpej 	     va += L2_S_SIZE, pa += L2_S_SIZE, size -= L2_S_SIZE) {
   5822      1.134   thorpej #ifndef ARM32_NEW_VM_LAYOUT
   5823       1.87   thorpej 		pte = (pt_entry_t *)
   5824       1.87   thorpej 		    kernel_pt_lookup(pde[va >> L1_S_SHIFT] & L2_S_FRAME);
   5825      1.134   thorpej #else
   5826      1.134   thorpej 		pte = (pt_entry_t *) kernel_pt_lookup(
   5827      1.134   thorpej 		    pde[L1_IDX(va)] & L1_C_ADDR_MASK);
   5828      1.134   thorpej #endif
   5829       1.87   thorpej 		if (pte == NULL)
   5830       1.87   thorpej 			panic("xscale_setup_minidata: can't find L2 table for "
   5831       1.87   thorpej 			    "VA 0x%08lx", va);
   5832      1.134   thorpej #ifndef ARM32_NEW_VM_LAYOUT
   5833      1.134   thorpej 		pte[(va >> PGSHIFT) & 0x3ff] =
   5834      1.134   thorpej #else
   5835      1.134   thorpej 		pte[l2pte_index(va)] =
   5836      1.134   thorpej #endif
   5837      1.134   thorpej 		    L2_S_PROTO | pa | L2_S_PROT(PTE_KERNEL, VM_PROT_READ) |
   5838  1.172.2.1      yamt 		    L2_C | L2_XS_T_TEX(TEX_XSCALE_X);
   5839       1.87   thorpej 	}
   5840       1.96   thorpej 
   5841       1.96   thorpej 	/*
   5842       1.96   thorpej 	 * Configure the mini-data cache for write-back with
   5843       1.96   thorpej 	 * read/write-allocate.
   5844       1.96   thorpej 	 *
   5845       1.96   thorpej 	 * NOTE: In order to reconfigure the mini-data cache, we must
   5846       1.96   thorpej 	 * make sure it contains no valid data!  In order to do that,
   5847       1.96   thorpej 	 * we must issue a global data cache invalidate command!
   5848       1.96   thorpej 	 *
   5849       1.96   thorpej 	 * WE ASSUME WE ARE RUNNING UN-CACHED WHEN THIS ROUTINE IS CALLED!
   5850       1.96   thorpej 	 * THIS IS VERY IMPORTANT!
   5851       1.96   thorpej 	 */
   5852      1.134   thorpej 
   5853       1.96   thorpej 	/* Invalidate data and mini-data. */
   5854      1.157     perry 	__asm volatile("mcr p15, 0, %0, c7, c6, 0" : : "r" (0));
   5855      1.157     perry 	__asm volatile("mrc p15, 0, %0, c1, c0, 1" : "=r" (auxctl));
   5856       1.96   thorpej 	auxctl = (auxctl & ~XSCALE_AUXCTL_MD_MASK) | XSCALE_AUXCTL_MD_WB_RWA;
   5857      1.157     perry 	__asm volatile("mcr p15, 0, %0, c1, c0, 1" : : "r" (auxctl));
   5858       1.87   thorpej }
   5859      1.141       scw 
   5860      1.141       scw /*
   5861      1.141       scw  * Change the PTEs for the specified kernel mappings such that they
   5862      1.141       scw  * will use the mini data cache instead of the main data cache.
   5863      1.141       scw  */
   5864      1.141       scw void
   5865      1.141       scw pmap_uarea(vaddr_t va)
   5866      1.141       scw {
   5867      1.141       scw 	struct l2_bucket *l2b;
   5868      1.141       scw 	pt_entry_t *ptep, *sptep, pte;
   5869      1.141       scw 	vaddr_t next_bucket, eva;
   5870      1.141       scw 
   5871      1.141       scw #if (ARM_NMMUS > 1)
   5872      1.141       scw 	if (xscale_use_minidata == 0)
   5873      1.141       scw 		return;
   5874      1.141       scw #endif
   5875      1.141       scw 
   5876      1.141       scw 	eva = va + USPACE;
   5877      1.141       scw 
   5878      1.141       scw 	while (va < eva) {
   5879      1.141       scw 		next_bucket = L2_NEXT_BUCKET(va);
   5880      1.141       scw 		if (next_bucket > eva)
   5881      1.141       scw 			next_bucket = eva;
   5882      1.141       scw 
   5883      1.141       scw 		l2b = pmap_get_l2_bucket(pmap_kernel(), va);
   5884      1.141       scw 		KDASSERT(l2b != NULL);
   5885      1.141       scw 
   5886      1.141       scw 		sptep = ptep = &l2b->l2b_kva[l2pte_index(va)];
   5887      1.141       scw 
   5888      1.141       scw 		while (va < next_bucket) {
   5889      1.141       scw 			pte = *ptep;
   5890      1.141       scw 			if (!l2pte_minidata(pte)) {
   5891      1.141       scw 				cpu_dcache_wbinv_range(va, PAGE_SIZE);
   5892      1.141       scw 				cpu_tlb_flushD_SE(va);
   5893      1.141       scw 				*ptep = pte & ~L2_B;
   5894      1.141       scw 			}
   5895      1.141       scw 			ptep++;
   5896      1.141       scw 			va += PAGE_SIZE;
   5897      1.141       scw 		}
   5898      1.141       scw 		PTE_SYNC_RANGE(sptep, (u_int)(ptep - sptep));
   5899      1.141       scw 	}
   5900      1.141       scw 	cpu_cpwait();
   5901      1.141       scw }
   5902       1.85   thorpej #endif /* ARM_MMU_XSCALE == 1 */
   5903      1.134   thorpej 
   5904      1.170     chris /*
   5905      1.170     chris  * return the PA of the current L1 table, for use when handling a crash dump
   5906      1.170     chris  */
   5907      1.170     chris uint32_t pmap_kernel_L1_addr()
   5908      1.170     chris {
   5909      1.170     chris 	return pmap_kernel()->pm_l1->l1_physaddr;
   5910      1.170     chris }
   5911      1.170     chris 
   5912      1.134   thorpej #if defined(DDB)
   5913      1.134   thorpej /*
   5914      1.134   thorpej  * A couple of ddb-callable functions for dumping pmaps
   5915      1.134   thorpej  */
   5916      1.134   thorpej void pmap_dump_all(void);
   5917      1.134   thorpej void pmap_dump(pmap_t);
   5918      1.134   thorpej 
   5919      1.134   thorpej void
   5920      1.134   thorpej pmap_dump_all(void)
   5921      1.134   thorpej {
   5922      1.134   thorpej 	pmap_t pm;
   5923      1.134   thorpej 
   5924      1.134   thorpej 	LIST_FOREACH(pm, &pmap_pmaps, pm_list) {
   5925      1.134   thorpej 		if (pm == pmap_kernel())
   5926      1.134   thorpej 			continue;
   5927      1.134   thorpej 		pmap_dump(pm);
   5928      1.134   thorpej 		printf("\n");
   5929      1.134   thorpej 	}
   5930      1.134   thorpej }
   5931      1.134   thorpej 
   5932      1.134   thorpej static pt_entry_t ncptes[64];
   5933      1.134   thorpej static void pmap_dump_ncpg(pmap_t);
   5934      1.134   thorpej 
   5935      1.134   thorpej void
   5936      1.134   thorpej pmap_dump(pmap_t pm)
   5937      1.134   thorpej {
   5938      1.134   thorpej 	struct l2_dtable *l2;
   5939      1.134   thorpej 	struct l2_bucket *l2b;
   5940      1.134   thorpej 	pt_entry_t *ptep, pte;
   5941      1.134   thorpej 	vaddr_t l2_va, l2b_va, va;
   5942      1.134   thorpej 	int i, j, k, occ, rows = 0;
   5943      1.134   thorpej 
   5944      1.134   thorpej 	if (pm == pmap_kernel())
   5945      1.134   thorpej 		printf("pmap_kernel (%p): ", pm);
   5946      1.134   thorpej 	else
   5947      1.134   thorpej 		printf("user pmap (%p): ", pm);
   5948      1.134   thorpej 
   5949      1.134   thorpej 	printf("domain %d, l1 at %p\n", pm->pm_domain, pm->pm_l1->l1_kva);
   5950      1.134   thorpej 
   5951      1.134   thorpej 	l2_va = 0;
   5952      1.134   thorpej 	for (i = 0; i < L2_SIZE; i++, l2_va += 0x01000000) {
   5953      1.134   thorpej 		l2 = pm->pm_l2[i];
   5954      1.134   thorpej 
   5955      1.134   thorpej 		if (l2 == NULL || l2->l2_occupancy == 0)
   5956      1.134   thorpej 			continue;
   5957      1.134   thorpej 
   5958      1.134   thorpej 		l2b_va = l2_va;
   5959      1.134   thorpej 		for (j = 0; j < L2_BUCKET_SIZE; j++, l2b_va += 0x00100000) {
   5960      1.134   thorpej 			l2b = &l2->l2_bucket[j];
   5961      1.134   thorpej 
   5962      1.134   thorpej 			if (l2b->l2b_occupancy == 0 || l2b->l2b_kva == NULL)
   5963      1.134   thorpej 				continue;
   5964      1.134   thorpej 
   5965      1.134   thorpej 			ptep = l2b->l2b_kva;
   5966      1.134   thorpej 
   5967      1.134   thorpej 			for (k = 0; k < 256 && ptep[k] == 0; k++)
   5968      1.134   thorpej 				;
   5969      1.134   thorpej 
   5970      1.134   thorpej 			k &= ~63;
   5971      1.134   thorpej 			occ = l2b->l2b_occupancy;
   5972      1.134   thorpej 			va = l2b_va + (k * 4096);
   5973      1.134   thorpej 			for (; k < 256; k++, va += 0x1000) {
   5974      1.142     chris 				char ch = ' ';
   5975      1.134   thorpej 				if ((k % 64) == 0) {
   5976      1.134   thorpej 					if ((rows % 8) == 0) {
   5977      1.134   thorpej 						printf(
   5978      1.134   thorpej "          |0000   |8000   |10000  |18000  |20000  |28000  |30000  |38000\n");
   5979      1.134   thorpej 					}
   5980      1.134   thorpej 					printf("%08lx: ", va);
   5981      1.134   thorpej 				}
   5982      1.134   thorpej 
   5983      1.134   thorpej 				ncptes[k & 63] = 0;
   5984      1.134   thorpej 				pte = ptep[k];
   5985      1.134   thorpej 				if (pte == 0) {
   5986      1.134   thorpej 					ch = '.';
   5987      1.134   thorpej 				} else {
   5988      1.134   thorpej 					occ--;
   5989      1.134   thorpej 					switch (pte & 0x0c) {
   5990      1.134   thorpej 					case 0x00:
   5991      1.134   thorpej 						ch = 'D'; /* No cache No buff */
   5992      1.134   thorpej 						break;
   5993      1.134   thorpej 					case 0x04:
   5994      1.134   thorpej 						ch = 'B'; /* No cache buff */
   5995      1.134   thorpej 						break;
   5996      1.134   thorpej 					case 0x08:
   5997      1.141       scw 						if (pte & 0x40)
   5998      1.141       scw 							ch = 'm';
   5999      1.141       scw 						else
   6000      1.141       scw 						   ch = 'C'; /* Cache No buff */
   6001      1.134   thorpej 						break;
   6002      1.134   thorpej 					case 0x0c:
   6003      1.134   thorpej 						ch = 'F'; /* Cache Buff */
   6004      1.134   thorpej 						break;
   6005      1.134   thorpej 					}
   6006      1.134   thorpej 
   6007      1.134   thorpej 					if ((pte & L2_S_PROT_U) == L2_S_PROT_U)
   6008      1.134   thorpej 						ch += 0x20;
   6009      1.134   thorpej 
   6010      1.134   thorpej 					if ((pte & 0xc) == 0)
   6011      1.134   thorpej 						ncptes[k & 63] = pte;
   6012      1.134   thorpej 				}
   6013      1.134   thorpej 
   6014      1.134   thorpej 				if ((k % 64) == 63) {
   6015      1.134   thorpej 					rows++;
   6016      1.134   thorpej 					printf("%c\n", ch);
   6017      1.134   thorpej 					pmap_dump_ncpg(pm);
   6018      1.134   thorpej 					if (occ == 0)
   6019      1.134   thorpej 						break;
   6020      1.134   thorpej 				} else
   6021      1.134   thorpej 					printf("%c", ch);
   6022      1.134   thorpej 			}
   6023      1.134   thorpej 		}
   6024      1.134   thorpej 	}
   6025      1.134   thorpej }
   6026      1.134   thorpej 
   6027      1.134   thorpej static void
   6028      1.134   thorpej pmap_dump_ncpg(pmap_t pm)
   6029      1.134   thorpej {
   6030      1.134   thorpej 	struct vm_page *pg;
   6031      1.134   thorpej 	struct pv_entry *pv;
   6032      1.134   thorpej 	int i;
   6033      1.134   thorpej 
   6034      1.134   thorpej 	for (i = 0; i < 63; i++) {
   6035      1.134   thorpej 		if (ncptes[i] == 0)
   6036      1.134   thorpej 			continue;
   6037      1.134   thorpej 
   6038      1.134   thorpej 		pg = PHYS_TO_VM_PAGE(l2pte_pa(ncptes[i]));
   6039      1.134   thorpej 		if (pg == NULL)
   6040      1.134   thorpej 			continue;
   6041      1.134   thorpej 
   6042      1.134   thorpej 		printf(" pa 0x%08lx: krw %d kro %d urw %d uro %d\n",
   6043      1.155      yamt 		    VM_PAGE_TO_PHYS(pg),
   6044      1.134   thorpej 		    pg->mdpage.krw_mappings, pg->mdpage.kro_mappings,
   6045      1.134   thorpej 		    pg->mdpage.urw_mappings, pg->mdpage.uro_mappings);
   6046      1.134   thorpej 
   6047      1.134   thorpej 		for (pv = pg->mdpage.pvh_list; pv; pv = pv->pv_next) {
   6048      1.134   thorpej 			printf("   %c va 0x%08lx, flags 0x%x\n",
   6049      1.134   thorpej 			    (pm == pv->pv_pmap) ? '*' : ' ',
   6050      1.134   thorpej 			    pv->pv_va, pv->pv_flags);
   6051      1.134   thorpej 		}
   6052      1.134   thorpej 	}
   6053      1.134   thorpej }
   6054      1.134   thorpej #endif
   6055  1.172.2.1      yamt 
   6056  1.172.2.1      yamt #ifdef PMAP_STEAL_MEMORY
   6057  1.172.2.1      yamt void
   6058  1.172.2.1      yamt pmap_boot_pageadd(pv_addr_t *newpv)
   6059  1.172.2.1      yamt {
   6060  1.172.2.1      yamt 	pv_addr_t *pv, *npv;
   6061  1.172.2.1      yamt 
   6062  1.172.2.1      yamt 	if ((pv = SLIST_FIRST(&pmap_boot_freeq)) != NULL) {
   6063  1.172.2.1      yamt 		if (newpv->pv_pa < pv->pv_va) {
   6064  1.172.2.1      yamt 			KASSERT(newpv->pv_pa + newpv->pv_size <= pv->pv_pa);
   6065  1.172.2.1      yamt 			if (newpv->pv_pa + newpv->pv_size == pv->pv_pa) {
   6066  1.172.2.1      yamt 				newpv->pv_size += pv->pv_size;
   6067  1.172.2.1      yamt 				SLIST_REMOVE_HEAD(&pmap_boot_freeq, pv_list);
   6068  1.172.2.1      yamt 			}
   6069  1.172.2.1      yamt 			pv = NULL;
   6070  1.172.2.1      yamt 		} else {
   6071  1.172.2.1      yamt 			for (; (npv = SLIST_NEXT(pv, pv_list)) != NULL;
   6072  1.172.2.1      yamt 			     pv = npv) {
   6073  1.172.2.1      yamt 				KASSERT(pv->pv_pa + pv->pv_size < npv->pv_pa);
   6074  1.172.2.1      yamt 				KASSERT(pv->pv_pa < newpv->pv_pa);
   6075  1.172.2.1      yamt 				if (newpv->pv_pa > npv->pv_pa)
   6076  1.172.2.1      yamt 					continue;
   6077  1.172.2.1      yamt 				if (pv->pv_pa + pv->pv_size == newpv->pv_pa) {
   6078  1.172.2.1      yamt 					pv->pv_size += newpv->pv_size;
   6079  1.172.2.1      yamt 					return;
   6080  1.172.2.1      yamt 				}
   6081  1.172.2.1      yamt 				if (newpv->pv_pa + newpv->pv_size < npv->pv_pa)
   6082  1.172.2.1      yamt 					break;
   6083  1.172.2.1      yamt 				newpv->pv_size += npv->pv_size;
   6084  1.172.2.1      yamt 				SLIST_INSERT_AFTER(pv, newpv, pv_list);
   6085  1.172.2.1      yamt 				SLIST_REMOVE_AFTER(newpv, pv_list);
   6086  1.172.2.1      yamt 				return;
   6087  1.172.2.1      yamt 			}
   6088  1.172.2.1      yamt 		}
   6089  1.172.2.1      yamt 	}
   6090  1.172.2.1      yamt 
   6091  1.172.2.1      yamt 	if (pv) {
   6092  1.172.2.1      yamt 		SLIST_INSERT_AFTER(pv, newpv, pv_list);
   6093  1.172.2.1      yamt 	} else {
   6094  1.172.2.1      yamt 		SLIST_INSERT_HEAD(&pmap_boot_freeq, newpv, pv_list);
   6095  1.172.2.1      yamt 	}
   6096  1.172.2.1      yamt }
   6097  1.172.2.1      yamt 
   6098  1.172.2.1      yamt void
   6099  1.172.2.1      yamt pmap_boot_pagealloc(psize_t amount, psize_t mask, psize_t match,
   6100  1.172.2.1      yamt 	pv_addr_t *rpv)
   6101  1.172.2.1      yamt {
   6102  1.172.2.1      yamt 	pv_addr_t *pv, **pvp;
   6103  1.172.2.1      yamt 	struct vm_physseg *ps;
   6104  1.172.2.1      yamt 	size_t i;
   6105  1.172.2.1      yamt 
   6106  1.172.2.1      yamt 	KASSERT(amount & PGOFSET);
   6107  1.172.2.1      yamt 	KASSERT((mask & PGOFSET) == 0);
   6108  1.172.2.1      yamt 	KASSERT((match & PGOFSET) == 0);
   6109  1.172.2.1      yamt 	KASSERT(amount != 0);
   6110  1.172.2.1      yamt 
   6111  1.172.2.1      yamt 	for (pvp = &SLIST_FIRST(&pmap_boot_freeq);
   6112  1.172.2.1      yamt 	     (pv = *pvp) != NULL;
   6113  1.172.2.1      yamt 	     pvp = &SLIST_NEXT(pv, pv_list)) {
   6114  1.172.2.1      yamt 		pv_addr_t *newpv;
   6115  1.172.2.1      yamt 		psize_t off;
   6116  1.172.2.1      yamt 		/*
   6117  1.172.2.1      yamt 		 * If this entry is too small to satify the request...
   6118  1.172.2.1      yamt 		 */
   6119  1.172.2.1      yamt 		KASSERT(pv->pv_size > 0);
   6120  1.172.2.1      yamt 		if (pv->pv_size < amount)
   6121  1.172.2.1      yamt 			continue;
   6122  1.172.2.1      yamt 
   6123  1.172.2.1      yamt 		for (off = 0; off <= mask; off += PAGE_SIZE) {
   6124  1.172.2.1      yamt 			if (((pv->pv_pa + off) & mask) == match
   6125  1.172.2.1      yamt 			    && off + amount <= pv->pv_size)
   6126  1.172.2.1      yamt 				break;
   6127  1.172.2.1      yamt 		}
   6128  1.172.2.1      yamt 		if (off > mask)
   6129  1.172.2.1      yamt 			continue;
   6130  1.172.2.1      yamt 
   6131  1.172.2.1      yamt 		rpv->pv_va = pv->pv_va + off;
   6132  1.172.2.1      yamt 		rpv->pv_pa = pv->pv_pa + off;
   6133  1.172.2.1      yamt 		rpv->pv_size = amount;
   6134  1.172.2.1      yamt 		pv->pv_size -= amount;
   6135  1.172.2.1      yamt 		if (pv->pv_size == 0) {
   6136  1.172.2.1      yamt 			KASSERT(off == 0);
   6137  1.172.2.1      yamt 			KASSERT((vaddr_t) pv == rpv->pv_va);
   6138  1.172.2.1      yamt 			*pvp = SLIST_NEXT(pv, pv_list);
   6139  1.172.2.1      yamt 		} else if (off == 0) {
   6140  1.172.2.1      yamt 			KASSERT((vaddr_t) pv == rpv->pv_va);
   6141  1.172.2.1      yamt 			newpv = (pv_addr_t *) (rpv->pv_va + amount);
   6142  1.172.2.1      yamt 			*newpv = *pv;
   6143  1.172.2.1      yamt 			newpv->pv_pa += amount;
   6144  1.172.2.1      yamt 			newpv->pv_va += amount;
   6145  1.172.2.1      yamt 			*pvp = newpv;
   6146  1.172.2.1      yamt 		} else if (off < pv->pv_size) {
   6147  1.172.2.1      yamt 			newpv = (pv_addr_t *) (rpv->pv_va + amount);
   6148  1.172.2.1      yamt 			*newpv = *pv;
   6149  1.172.2.1      yamt 			newpv->pv_size -= off;
   6150  1.172.2.1      yamt 			newpv->pv_pa += off + amount;
   6151  1.172.2.1      yamt 			newpv->pv_va += off + amount;
   6152  1.172.2.1      yamt 
   6153  1.172.2.1      yamt 			SLIST_NEXT(pv, pv_list) = newpv;
   6154  1.172.2.1      yamt 			pv->pv_size = off;
   6155  1.172.2.1      yamt 		} else {
   6156  1.172.2.1      yamt 			KASSERT((vaddr_t) pv != rpv->pv_va);
   6157  1.172.2.1      yamt 		}
   6158  1.172.2.1      yamt 		memset((void *)rpv->pv_va, 0, amount);
   6159  1.172.2.1      yamt 		return;
   6160  1.172.2.1      yamt 	}
   6161  1.172.2.1      yamt 
   6162  1.172.2.1      yamt 	if (vm_nphysseg == 0)
   6163  1.172.2.1      yamt 		panic("pmap_boot_pagealloc: couldn't allocate memory");
   6164  1.172.2.1      yamt 
   6165  1.172.2.1      yamt 	for (pvp = &SLIST_FIRST(&pmap_boot_freeq);
   6166  1.172.2.1      yamt 	     (pv = *pvp) != NULL;
   6167  1.172.2.1      yamt 	     pvp = &SLIST_NEXT(pv, pv_list)) {
   6168  1.172.2.1      yamt 		if (SLIST_NEXT(pv, pv_list) == NULL)
   6169  1.172.2.1      yamt 			break;
   6170  1.172.2.1      yamt 	}
   6171  1.172.2.1      yamt 	KASSERT(mask == 0);
   6172  1.172.2.1      yamt 	for (ps = vm_physmem, i = 0; i < vm_nphysseg; ps++, i++) {
   6173  1.172.2.1      yamt 		if (ps->avail_start == atop(pv->pv_pa + pv->pv_size)
   6174  1.172.2.1      yamt 		    && pv->pv_va + pv->pv_size <= ptoa(ps->avail_end)) {
   6175  1.172.2.1      yamt 			rpv->pv_va = pv->pv_va;
   6176  1.172.2.1      yamt 			rpv->pv_pa = pv->pv_pa;
   6177  1.172.2.1      yamt 			rpv->pv_size = amount;
   6178  1.172.2.1      yamt 			*pvp = NULL;
   6179  1.172.2.1      yamt 			pmap_map_chunk(kernel_l1pt.pv_va,
   6180  1.172.2.1      yamt 			     ptoa(ps->avail_start) + (pv->pv_va - pv->pv_pa),
   6181  1.172.2.1      yamt 			     ptoa(ps->avail_start),
   6182  1.172.2.1      yamt 			     amount - pv->pv_size,
   6183  1.172.2.1      yamt 			     VM_PROT_READ|VM_PROT_WRITE,
   6184  1.172.2.1      yamt 			     PTE_CACHE);
   6185  1.172.2.1      yamt 			ps->avail_start += atop(amount - pv->pv_size);
   6186  1.172.2.1      yamt 			/*
   6187  1.172.2.1      yamt 			 * If we consumed the entire physseg, remove it.
   6188  1.172.2.1      yamt 			 */
   6189  1.172.2.1      yamt 			if (ps->avail_start == ps->avail_end) {
   6190  1.172.2.1      yamt 				for (--vm_nphysseg; i < vm_nphysseg; i++, ps++)
   6191  1.172.2.1      yamt 					ps[0] = ps[1];
   6192  1.172.2.1      yamt 			}
   6193  1.172.2.1      yamt 			memset((void *)rpv->pv_va, 0, rpv->pv_size);
   6194  1.172.2.1      yamt 			return;
   6195  1.172.2.1      yamt 		}
   6196  1.172.2.1      yamt 	}
   6197  1.172.2.1      yamt 
   6198  1.172.2.1      yamt 	panic("pmap_boot_pagealloc: couldn't allocate memory");
   6199  1.172.2.1      yamt }
   6200  1.172.2.1      yamt 
   6201  1.172.2.1      yamt vaddr_t
   6202  1.172.2.1      yamt pmap_steal_memory(vsize_t size, vaddr_t *vstartp, vaddr_t *vendp)
   6203  1.172.2.1      yamt {
   6204  1.172.2.1      yamt 	pv_addr_t pv;
   6205  1.172.2.1      yamt 
   6206  1.172.2.1      yamt 	pmap_boot_pagealloc(size, 0, 0, &pv);
   6207  1.172.2.1      yamt 
   6208  1.172.2.1      yamt 	return pv.pv_va;
   6209  1.172.2.1      yamt }
   6210  1.172.2.1      yamt #endif /* PMAP_STEAL_MEMORY */
   6211