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uvm_fault.c revision 1.147
      1  1.130  uebayasi /*	$NetBSD: uvm_fault.c,v 1.147 2010/02/01 11:58:39 uebayasi Exp $	*/
      2    1.1       mrg 
      3    1.1       mrg /*
      4    1.1       mrg  *
      5    1.1       mrg  * Copyright (c) 1997 Charles D. Cranor and Washington University.
      6    1.1       mrg  * All rights reserved.
      7    1.1       mrg  *
      8    1.1       mrg  * Redistribution and use in source and binary forms, with or without
      9    1.1       mrg  * modification, are permitted provided that the following conditions
     10    1.1       mrg  * are met:
     11    1.1       mrg  * 1. Redistributions of source code must retain the above copyright
     12    1.1       mrg  *    notice, this list of conditions and the following disclaimer.
     13    1.1       mrg  * 2. Redistributions in binary form must reproduce the above copyright
     14    1.1       mrg  *    notice, this list of conditions and the following disclaimer in the
     15    1.1       mrg  *    documentation and/or other materials provided with the distribution.
     16    1.1       mrg  * 3. All advertising materials mentioning features or use of this software
     17    1.1       mrg  *    must display the following acknowledgement:
     18    1.1       mrg  *      This product includes software developed by Charles D. Cranor and
     19    1.1       mrg  *      Washington University.
     20    1.1       mrg  * 4. The name of the author may not be used to endorse or promote products
     21    1.1       mrg  *    derived from this software without specific prior written permission.
     22    1.1       mrg  *
     23    1.1       mrg  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     24    1.1       mrg  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     25    1.1       mrg  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     26    1.1       mrg  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     27    1.1       mrg  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     28    1.1       mrg  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     29    1.1       mrg  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     30    1.1       mrg  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     31    1.1       mrg  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     32    1.1       mrg  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     33    1.4       mrg  *
     34    1.4       mrg  * from: Id: uvm_fault.c,v 1.1.2.23 1998/02/06 05:29:05 chs Exp
     35    1.1       mrg  */
     36    1.1       mrg 
     37    1.1       mrg /*
     38    1.1       mrg  * uvm_fault.c: fault handler
     39    1.1       mrg  */
     40   1.71     lukem 
     41   1.71     lukem #include <sys/cdefs.h>
     42  1.130  uebayasi __KERNEL_RCSID(0, "$NetBSD: uvm_fault.c,v 1.147 2010/02/01 11:58:39 uebayasi Exp $");
     43   1.71     lukem 
     44   1.71     lukem #include "opt_uvmhist.h"
     45    1.1       mrg 
     46    1.1       mrg #include <sys/param.h>
     47    1.1       mrg #include <sys/systm.h>
     48    1.1       mrg #include <sys/kernel.h>
     49    1.1       mrg #include <sys/proc.h>
     50    1.1       mrg #include <sys/malloc.h>
     51    1.1       mrg #include <sys/mman.h>
     52    1.1       mrg 
     53    1.1       mrg #include <uvm/uvm.h>
     54    1.1       mrg 
     55    1.1       mrg /*
     56    1.1       mrg  *
     57    1.1       mrg  * a word on page faults:
     58    1.1       mrg  *
     59    1.1       mrg  * types of page faults we handle:
     60    1.1       mrg  *
     61    1.1       mrg  * CASE 1: upper layer faults                   CASE 2: lower layer faults
     62    1.1       mrg  *
     63    1.1       mrg  *    CASE 1A         CASE 1B                  CASE 2A        CASE 2B
     64    1.1       mrg  *    read/write1     write>1                  read/write   +-cow_write/zero
     65   1.63       chs  *         |             |                         |        |
     66    1.1       mrg  *      +--|--+       +--|--+     +-----+       +  |  +     | +-----+
     67  1.127  uebayasi  * amap |  V  |       |  ---------> new |          |        | |  ^  |
     68    1.1       mrg  *      +-----+       +-----+     +-----+       +  |  +     | +--|--+
     69    1.1       mrg  *                                                 |        |    |
     70    1.1       mrg  *      +-----+       +-----+                   +--|--+     | +--|--+
     71  1.127  uebayasi  * uobj | d/c |       | d/c |                   |  V  |     +----+  |
     72    1.1       mrg  *      +-----+       +-----+                   +-----+       +-----+
     73    1.1       mrg  *
     74    1.1       mrg  * d/c = don't care
     75   1.63       chs  *
     76    1.1       mrg  *   case [0]: layerless fault
     77    1.1       mrg  *	no amap or uobj is present.   this is an error.
     78    1.1       mrg  *
     79    1.1       mrg  *   case [1]: upper layer fault [anon active]
     80    1.1       mrg  *     1A: [read] or [write with anon->an_ref == 1]
     81  1.127  uebayasi  *		I/O takes place in upper level anon and uobj is not touched.
     82    1.1       mrg  *     1B: [write with anon->an_ref > 1]
     83    1.1       mrg  *		new anon is alloc'd and data is copied off ["COW"]
     84    1.1       mrg  *
     85    1.1       mrg  *   case [2]: lower layer fault [uobj]
     86    1.1       mrg  *     2A: [read on non-NULL uobj] or [write to non-copy_on_write area]
     87    1.1       mrg  *		I/O takes place directly in object.
     88    1.1       mrg  *     2B: [write to copy_on_write] or [read on NULL uobj]
     89   1.63       chs  *		data is "promoted" from uobj to a new anon.
     90    1.1       mrg  *		if uobj is null, then we zero fill.
     91    1.1       mrg  *
     92    1.1       mrg  * we follow the standard UVM locking protocol ordering:
     93    1.1       mrg  *
     94   1.63       chs  * MAPS => AMAP => UOBJ => ANON => PAGE QUEUES (PQ)
     95    1.1       mrg  * we hold a PG_BUSY page if we unlock for I/O
     96    1.1       mrg  *
     97    1.1       mrg  *
     98    1.1       mrg  * the code is structured as follows:
     99   1.63       chs  *
    100    1.1       mrg  *     - init the "IN" params in the ufi structure
    101    1.1       mrg  *   ReFault:
    102    1.1       mrg  *     - do lookups [locks maps], check protection, handle needs_copy
    103    1.1       mrg  *     - check for case 0 fault (error)
    104    1.1       mrg  *     - establish "range" of fault
    105    1.1       mrg  *     - if we have an amap lock it and extract the anons
    106    1.1       mrg  *     - if sequential advice deactivate pages behind us
    107    1.1       mrg  *     - at the same time check pmap for unmapped areas and anon for pages
    108    1.1       mrg  *	 that we could map in (and do map it if found)
    109    1.1       mrg  *     - check object for resident pages that we could map in
    110    1.1       mrg  *     - if (case 2) goto Case2
    111    1.1       mrg  *     - >>> handle case 1
    112    1.1       mrg  *           - ensure source anon is resident in RAM
    113    1.1       mrg  *           - if case 1B alloc new anon and copy from source
    114    1.1       mrg  *           - map the correct page in
    115    1.1       mrg  *   Case2:
    116    1.1       mrg  *     - >>> handle case 2
    117    1.1       mrg  *           - ensure source page is resident (if uobj)
    118    1.1       mrg  *           - if case 2B alloc new anon and copy from source (could be zero
    119    1.1       mrg  *		fill if uobj == NULL)
    120    1.1       mrg  *           - map the correct page in
    121    1.1       mrg  *     - done!
    122    1.1       mrg  *
    123    1.1       mrg  * note on paging:
    124    1.1       mrg  *   if we have to do I/O we place a PG_BUSY page in the correct object,
    125    1.1       mrg  * unlock everything, and do the I/O.   when I/O is done we must reverify
    126    1.1       mrg  * the state of the world before assuming that our data structures are
    127    1.1       mrg  * valid.   [because mappings could change while the map is unlocked]
    128    1.1       mrg  *
    129    1.1       mrg  *  alternative 1: unbusy the page in question and restart the page fault
    130    1.1       mrg  *    from the top (ReFault).   this is easy but does not take advantage
    131   1.63       chs  *    of the information that we already have from our previous lookup,
    132    1.1       mrg  *    although it is possible that the "hints" in the vm_map will help here.
    133    1.1       mrg  *
    134    1.1       mrg  * alternative 2: the system already keeps track of a "version" number of
    135    1.1       mrg  *    a map.   [i.e. every time you write-lock a map (e.g. to change a
    136    1.1       mrg  *    mapping) you bump the version number up by one...]   so, we can save
    137    1.1       mrg  *    the version number of the map before we release the lock and start I/O.
    138    1.1       mrg  *    then when I/O is done we can relock and check the version numbers
    139    1.1       mrg  *    to see if anything changed.    this might save us some over 1 because
    140    1.1       mrg  *    we don't have to unbusy the page and may be less compares(?).
    141    1.1       mrg  *
    142    1.1       mrg  * alternative 3: put in backpointers or a way to "hold" part of a map
    143    1.1       mrg  *    in place while I/O is in progress.   this could be complex to
    144    1.1       mrg  *    implement (especially with structures like amap that can be referenced
    145    1.1       mrg  *    by multiple map entries, and figuring out what should wait could be
    146    1.1       mrg  *    complex as well...).
    147    1.1       mrg  *
    148  1.125        ad  * we use alternative 2.  given that we are multi-threaded now we may want
    149  1.125        ad  * to reconsider the choice.
    150    1.1       mrg  */
    151    1.1       mrg 
    152    1.1       mrg /*
    153    1.1       mrg  * local data structures
    154    1.1       mrg  */
    155    1.1       mrg 
    156    1.1       mrg struct uvm_advice {
    157    1.7       mrg 	int advice;
    158    1.7       mrg 	int nback;
    159    1.7       mrg 	int nforw;
    160    1.1       mrg };
    161    1.1       mrg 
    162    1.1       mrg /*
    163    1.1       mrg  * page range array:
    164   1.63       chs  * note: index in array must match "advice" value
    165    1.1       mrg  * XXX: borrowed numbers from freebsd.   do they work well for us?
    166    1.1       mrg  */
    167    1.1       mrg 
    168   1.95   thorpej static const struct uvm_advice uvmadvice[] = {
    169    1.7       mrg 	{ MADV_NORMAL, 3, 4 },
    170    1.7       mrg 	{ MADV_RANDOM, 0, 0 },
    171    1.7       mrg 	{ MADV_SEQUENTIAL, 8, 7},
    172    1.1       mrg };
    173    1.1       mrg 
    174   1.69       chs #define UVM_MAXRANGE 16	/* must be MAX() of nback+nforw+1 */
    175    1.1       mrg 
    176    1.1       mrg /*
    177    1.1       mrg  * private prototypes
    178    1.1       mrg  */
    179    1.1       mrg 
    180    1.1       mrg /*
    181    1.1       mrg  * inline functions
    182    1.1       mrg  */
    183    1.1       mrg 
    184    1.1       mrg /*
    185    1.1       mrg  * uvmfault_anonflush: try and deactivate pages in specified anons
    186    1.1       mrg  *
    187    1.1       mrg  * => does not have to deactivate page if it is busy
    188    1.1       mrg  */
    189    1.1       mrg 
    190  1.103     perry static inline void
    191   1.95   thorpej uvmfault_anonflush(struct vm_anon **anons, int n)
    192    1.1       mrg {
    193    1.7       mrg 	int lcv;
    194    1.7       mrg 	struct vm_page *pg;
    195   1.63       chs 
    196    1.7       mrg 	for (lcv = 0 ; lcv < n ; lcv++) {
    197    1.7       mrg 		if (anons[lcv] == NULL)
    198    1.7       mrg 			continue;
    199  1.122        ad 		mutex_enter(&anons[lcv]->an_lock);
    200   1.94      yamt 		pg = anons[lcv]->an_page;
    201  1.117      yamt 		if (pg && (pg->flags & PG_BUSY) == 0) {
    202  1.122        ad 			mutex_enter(&uvm_pageqlock);
    203    1.7       mrg 			if (pg->wire_count == 0) {
    204    1.7       mrg 				uvm_pagedeactivate(pg);
    205    1.7       mrg 			}
    206  1.122        ad 			mutex_exit(&uvm_pageqlock);
    207    1.7       mrg 		}
    208  1.122        ad 		mutex_exit(&anons[lcv]->an_lock);
    209    1.7       mrg 	}
    210    1.1       mrg }
    211    1.1       mrg 
    212    1.1       mrg /*
    213    1.1       mrg  * normal functions
    214    1.1       mrg  */
    215    1.1       mrg 
    216    1.1       mrg /*
    217    1.1       mrg  * uvmfault_amapcopy: clear "needs_copy" in a map.
    218    1.1       mrg  *
    219    1.1       mrg  * => called with VM data structures unlocked (usually, see below)
    220    1.1       mrg  * => we get a write lock on the maps and clear needs_copy for a VA
    221    1.1       mrg  * => if we are out of RAM we sleep (waiting for more)
    222    1.1       mrg  */
    223    1.1       mrg 
    224    1.7       mrg static void
    225   1.95   thorpej uvmfault_amapcopy(struct uvm_faultinfo *ufi)
    226    1.1       mrg {
    227   1.69       chs 	for (;;) {
    228    1.1       mrg 
    229    1.7       mrg 		/*
    230    1.7       mrg 		 * no mapping?  give up.
    231    1.7       mrg 		 */
    232    1.1       mrg 
    233  1.119   thorpej 		if (uvmfault_lookup(ufi, true) == false)
    234    1.7       mrg 			return;
    235    1.1       mrg 
    236    1.7       mrg 		/*
    237    1.7       mrg 		 * copy if needed.
    238    1.7       mrg 		 */
    239    1.1       mrg 
    240    1.7       mrg 		if (UVM_ET_ISNEEDSCOPY(ufi->entry))
    241  1.108      yamt 			amap_copy(ufi->map, ufi->entry, AMAP_COPY_NOWAIT,
    242   1.13     chuck 				ufi->orig_rvaddr, ufi->orig_rvaddr + 1);
    243    1.1       mrg 
    244    1.7       mrg 		/*
    245    1.7       mrg 		 * didn't work?  must be out of RAM.   unlock and sleep.
    246    1.7       mrg 		 */
    247    1.7       mrg 
    248    1.7       mrg 		if (UVM_ET_ISNEEDSCOPY(ufi->entry)) {
    249  1.119   thorpej 			uvmfault_unlockmaps(ufi, true);
    250    1.7       mrg 			uvm_wait("fltamapcopy");
    251    1.7       mrg 			continue;
    252    1.7       mrg 		}
    253    1.7       mrg 
    254    1.7       mrg 		/*
    255    1.7       mrg 		 * got it!   unlock and return.
    256    1.7       mrg 		 */
    257   1.63       chs 
    258  1.119   thorpej 		uvmfault_unlockmaps(ufi, true);
    259    1.7       mrg 		return;
    260    1.7       mrg 	}
    261    1.7       mrg 	/*NOTREACHED*/
    262    1.1       mrg }
    263    1.1       mrg 
    264    1.1       mrg /*
    265    1.1       mrg  * uvmfault_anonget: get data in an anon into a non-busy, non-released
    266    1.1       mrg  * page in that anon.
    267    1.1       mrg  *
    268    1.1       mrg  * => maps, amap, and anon locked by caller.
    269   1.57       chs  * => if we fail (result != 0) we unlock everything.
    270    1.1       mrg  * => if we are successful, we return with everything still locked.
    271    1.1       mrg  * => we don't move the page on the queues [gets moved later]
    272    1.1       mrg  * => if we allocate a new page [we_own], it gets put on the queues.
    273    1.1       mrg  *    either way, the result is that the page is on the queues at return time
    274    1.1       mrg  * => for pages which are on loan from a uvm_object (and thus are not
    275    1.1       mrg  *    owned by the anon): if successful, we return with the owning object
    276    1.1       mrg  *    locked.   the caller must unlock this object when it unlocks everything
    277    1.1       mrg  *    else.
    278    1.1       mrg  */
    279    1.1       mrg 
    280   1.47       chs int
    281   1.95   thorpej uvmfault_anonget(struct uvm_faultinfo *ufi, struct vm_amap *amap,
    282   1.95   thorpej     struct vm_anon *anon)
    283    1.7       mrg {
    284  1.118   thorpej 	bool we_own;	/* we own anon's page? */
    285  1.118   thorpej 	bool locked;	/* did we relock? */
    286    1.7       mrg 	struct vm_page *pg;
    287   1.58       chs 	int error;
    288    1.7       mrg 	UVMHIST_FUNC("uvmfault_anonget"); UVMHIST_CALLED(maphist);
    289    1.7       mrg 
    290  1.122        ad 	KASSERT(mutex_owned(&anon->an_lock));
    291   1.53   thorpej 
    292   1.58       chs 	error = 0;
    293    1.9     chuck 	uvmexp.fltanget++;
    294    1.9     chuck         /* bump rusage counters */
    295   1.94      yamt 	if (anon->an_page)
    296  1.124        ad 		curlwp->l_ru.ru_minflt++;
    297    1.9     chuck 	else
    298  1.124        ad 		curlwp->l_ru.ru_majflt++;
    299    1.7       mrg 
    300   1.63       chs 	/*
    301    1.7       mrg 	 * loop until we get it, or fail.
    302    1.7       mrg 	 */
    303    1.7       mrg 
    304   1.69       chs 	for (;;) {
    305  1.119   thorpej 		we_own = false;		/* true if we set PG_BUSY on a page */
    306   1.94      yamt 		pg = anon->an_page;
    307    1.1       mrg 
    308    1.7       mrg 		/*
    309    1.7       mrg 		 * if there is a resident page and it is loaned, then anon
    310    1.7       mrg 		 * may not own it.   call out to uvm_anon_lockpage() to ensure
    311    1.7       mrg 		 * the real owner of the page has been identified and locked.
    312    1.7       mrg 		 */
    313    1.7       mrg 
    314    1.7       mrg 		if (pg && pg->loan_count)
    315   1.13     chuck 			pg = uvm_anon_lockloanpg(anon);
    316    1.7       mrg 
    317    1.7       mrg 		/*
    318    1.7       mrg 		 * page there?   make sure it is not busy/released.
    319    1.7       mrg 		 */
    320    1.7       mrg 
    321    1.7       mrg 		if (pg) {
    322    1.7       mrg 
    323    1.7       mrg 			/*
    324    1.7       mrg 			 * at this point, if the page has a uobject [meaning
    325    1.7       mrg 			 * we have it on loan], then that uobject is locked
    326    1.7       mrg 			 * by us!   if the page is busy, we drop all the
    327    1.7       mrg 			 * locks (including uobject) and try again.
    328    1.7       mrg 			 */
    329    1.7       mrg 
    330   1.69       chs 			if ((pg->flags & PG_BUSY) == 0) {
    331    1.7       mrg 				UVMHIST_LOG(maphist, "<- OK",0,0,0,0);
    332   1.57       chs 				return (0);
    333    1.7       mrg 			}
    334    1.7       mrg 			pg->flags |= PG_WANTED;
    335    1.7       mrg 			uvmexp.fltpgwait++;
    336    1.7       mrg 
    337    1.7       mrg 			/*
    338    1.7       mrg 			 * the last unlock must be an atomic unlock+wait on
    339    1.7       mrg 			 * the owner of page
    340    1.7       mrg 			 */
    341   1.69       chs 
    342    1.7       mrg 			if (pg->uobject) {	/* owner is uobject ? */
    343    1.7       mrg 				uvmfault_unlockall(ufi, amap, NULL, anon);
    344    1.7       mrg 				UVMHIST_LOG(maphist, " unlock+wait on uobj",0,
    345    1.7       mrg 				    0,0,0);
    346    1.7       mrg 				UVM_UNLOCK_AND_WAIT(pg,
    347    1.7       mrg 				    &pg->uobject->vmobjlock,
    348  1.119   thorpej 				    false, "anonget1",0);
    349    1.7       mrg 			} else {
    350    1.7       mrg 				/* anon owns page */
    351    1.7       mrg 				uvmfault_unlockall(ufi, amap, NULL, NULL);
    352    1.7       mrg 				UVMHIST_LOG(maphist, " unlock+wait on anon",0,
    353    1.7       mrg 				    0,0,0);
    354    1.7       mrg 				UVM_UNLOCK_AND_WAIT(pg,&anon->an_lock,0,
    355    1.7       mrg 				    "anonget2",0);
    356    1.7       mrg 			}
    357    1.7       mrg 		} else {
    358  1.101      yamt #if defined(VMSWAP)
    359   1.63       chs 
    360    1.7       mrg 			/*
    361    1.7       mrg 			 * no page, we must try and bring it in.
    362    1.7       mrg 			 */
    363   1.69       chs 
    364   1.28       chs 			pg = uvm_pagealloc(NULL, 0, anon, 0);
    365    1.7       mrg 			if (pg == NULL) {		/* out of RAM.  */
    366    1.7       mrg 				uvmfault_unlockall(ufi, amap, NULL, anon);
    367    1.7       mrg 				uvmexp.fltnoram++;
    368    1.7       mrg 				UVMHIST_LOG(maphist, "  noram -- UVM_WAIT",0,
    369    1.7       mrg 				    0,0,0);
    370   1.93      yamt 				if (!uvm_reclaimable()) {
    371   1.93      yamt 					return ENOMEM;
    372   1.93      yamt 				}
    373    1.7       mrg 				uvm_wait("flt_noram1");
    374    1.7       mrg 			} else {
    375    1.7       mrg 				/* we set the PG_BUSY bit */
    376  1.119   thorpej 				we_own = true;
    377    1.7       mrg 				uvmfault_unlockall(ufi, amap, NULL, anon);
    378    1.7       mrg 
    379    1.7       mrg 				/*
    380    1.7       mrg 				 * we are passing a PG_BUSY+PG_FAKE+PG_CLEAN
    381    1.7       mrg 				 * page into the uvm_swap_get function with
    382   1.18     chuck 				 * all data structures unlocked.  note that
    383   1.18     chuck 				 * it is ok to read an_swslot here because
    384   1.18     chuck 				 * we hold PG_BUSY on the page.
    385    1.7       mrg 				 */
    386    1.7       mrg 				uvmexp.pageins++;
    387   1.58       chs 				error = uvm_swap_get(pg, anon->an_swslot,
    388    1.7       mrg 				    PGO_SYNCIO);
    389    1.7       mrg 
    390    1.7       mrg 				/*
    391    1.7       mrg 				 * we clean up after the i/o below in the
    392    1.7       mrg 				 * "we_own" case
    393    1.7       mrg 				 */
    394    1.7       mrg 			}
    395  1.101      yamt #else /* defined(VMSWAP) */
    396  1.101      yamt 			panic("%s: no page", __func__);
    397  1.101      yamt #endif /* defined(VMSWAP) */
    398    1.7       mrg 		}
    399    1.7       mrg 
    400    1.7       mrg 		/*
    401    1.7       mrg 		 * now relock and try again
    402    1.7       mrg 		 */
    403    1.7       mrg 
    404    1.7       mrg 		locked = uvmfault_relock(ufi);
    405   1.47       chs 		if (locked && amap != NULL) {
    406   1.19     chuck 			amap_lock(amap);
    407    1.7       mrg 		}
    408    1.7       mrg 		if (locked || we_own)
    409  1.122        ad 			mutex_enter(&anon->an_lock);
    410    1.7       mrg 
    411    1.7       mrg 		/*
    412    1.7       mrg 		 * if we own the page (i.e. we set PG_BUSY), then we need
    413    1.7       mrg 		 * to clean up after the I/O. there are three cases to
    414    1.7       mrg 		 * consider:
    415    1.7       mrg 		 *   [1] page released during I/O: free anon and ReFault.
    416   1.63       chs 		 *   [2] I/O not OK.   free the page and cause the fault
    417    1.7       mrg 		 *       to fail.
    418    1.7       mrg 		 *   [3] I/O OK!   activate the page and sync with the
    419    1.7       mrg 		 *       non-we_own case (i.e. drop anon lock if not locked).
    420    1.7       mrg 		 */
    421   1.63       chs 
    422    1.7       mrg 		if (we_own) {
    423  1.101      yamt #if defined(VMSWAP)
    424    1.7       mrg 			if (pg->flags & PG_WANTED) {
    425   1.63       chs 				wakeup(pg);
    426    1.7       mrg 			}
    427   1.58       chs 			if (error) {
    428    1.1       mrg 
    429   1.47       chs 				/*
    430   1.47       chs 				 * remove the swap slot from the anon
    431   1.47       chs 				 * and mark the anon as having no real slot.
    432   1.47       chs 				 * don't free the swap slot, thus preventing
    433   1.47       chs 				 * it from being used again.
    434   1.47       chs 				 */
    435   1.69       chs 
    436   1.84        pk 				if (anon->an_swslot > 0)
    437   1.84        pk 					uvm_swap_markbad(anon->an_swslot, 1);
    438   1.47       chs 				anon->an_swslot = SWSLOT_BAD;
    439   1.47       chs 
    440   1.88      yamt 				if ((pg->flags & PG_RELEASED) != 0)
    441   1.88      yamt 					goto released;
    442   1.88      yamt 
    443   1.47       chs 				/*
    444    1.7       mrg 				 * note: page was never !PG_BUSY, so it
    445    1.7       mrg 				 * can't be mapped and thus no need to
    446    1.7       mrg 				 * pmap_page_protect it...
    447    1.7       mrg 				 */
    448   1.69       chs 
    449  1.122        ad 				mutex_enter(&uvm_pageqlock);
    450    1.7       mrg 				uvm_pagefree(pg);
    451  1.122        ad 				mutex_exit(&uvm_pageqlock);
    452    1.7       mrg 
    453    1.7       mrg 				if (locked)
    454    1.7       mrg 					uvmfault_unlockall(ufi, amap, NULL,
    455    1.7       mrg 					    anon);
    456    1.7       mrg 				else
    457  1.122        ad 					mutex_exit(&anon->an_lock);
    458    1.7       mrg 				UVMHIST_LOG(maphist, "<- ERROR", 0,0,0,0);
    459   1.58       chs 				return error;
    460    1.7       mrg 			}
    461   1.63       chs 
    462   1.88      yamt 			if ((pg->flags & PG_RELEASED) != 0) {
    463   1.88      yamt released:
    464   1.88      yamt 				KASSERT(anon->an_ref == 0);
    465   1.88      yamt 
    466   1.88      yamt 				/*
    467   1.88      yamt 				 * released while we unlocked amap.
    468   1.88      yamt 				 */
    469   1.88      yamt 
    470   1.88      yamt 				if (locked)
    471   1.88      yamt 					uvmfault_unlockall(ufi, amap, NULL,
    472   1.88      yamt 					    NULL);
    473   1.88      yamt 
    474   1.88      yamt 				uvm_anon_release(anon);
    475   1.88      yamt 
    476   1.88      yamt 				if (error) {
    477   1.88      yamt 					UVMHIST_LOG(maphist,
    478   1.88      yamt 					    "<- ERROR/RELEASED", 0,0,0,0);
    479   1.88      yamt 					return error;
    480   1.88      yamt 				}
    481   1.88      yamt 
    482   1.88      yamt 				UVMHIST_LOG(maphist, "<- RELEASED", 0,0,0,0);
    483   1.88      yamt 				return ERESTART;
    484   1.88      yamt 			}
    485   1.88      yamt 
    486    1.7       mrg 			/*
    487   1.69       chs 			 * we've successfully read the page, activate it.
    488    1.7       mrg 			 */
    489   1.69       chs 
    490  1.122        ad 			mutex_enter(&uvm_pageqlock);
    491    1.7       mrg 			uvm_pageactivate(pg);
    492  1.122        ad 			mutex_exit(&uvm_pageqlock);
    493   1.69       chs 			pg->flags &= ~(PG_WANTED|PG_BUSY|PG_FAKE);
    494   1.69       chs 			UVM_PAGE_OWN(pg, NULL);
    495    1.7       mrg 			if (!locked)
    496  1.122        ad 				mutex_exit(&anon->an_lock);
    497  1.101      yamt #else /* defined(VMSWAP) */
    498  1.101      yamt 			panic("%s: we_own", __func__);
    499  1.101      yamt #endif /* defined(VMSWAP) */
    500    1.7       mrg 		}
    501    1.7       mrg 
    502    1.7       mrg 		/*
    503    1.7       mrg 		 * we were not able to relock.   restart fault.
    504    1.7       mrg 		 */
    505    1.7       mrg 
    506    1.7       mrg 		if (!locked) {
    507    1.7       mrg 			UVMHIST_LOG(maphist, "<- REFAULT", 0,0,0,0);
    508   1.57       chs 			return (ERESTART);
    509    1.7       mrg 		}
    510    1.7       mrg 
    511    1.7       mrg 		/*
    512    1.7       mrg 		 * verify no one has touched the amap and moved the anon on us.
    513    1.7       mrg 		 */
    514    1.1       mrg 
    515   1.47       chs 		if (ufi != NULL &&
    516   1.63       chs 		    amap_lookup(&ufi->entry->aref,
    517   1.47       chs 				ufi->orig_rvaddr - ufi->entry->start) != anon) {
    518   1.63       chs 
    519    1.7       mrg 			uvmfault_unlockall(ufi, amap, NULL, anon);
    520    1.7       mrg 			UVMHIST_LOG(maphist, "<- REFAULT", 0,0,0,0);
    521   1.57       chs 			return (ERESTART);
    522    1.7       mrg 		}
    523   1.63       chs 
    524    1.7       mrg 		/*
    525   1.63       chs 		 * try it again!
    526    1.7       mrg 		 */
    527    1.1       mrg 
    528    1.7       mrg 		uvmexp.fltanretry++;
    529    1.7       mrg 		continue;
    530   1.69       chs 	}
    531    1.7       mrg 	/*NOTREACHED*/
    532    1.1       mrg }
    533    1.1       mrg 
    534    1.1       mrg /*
    535  1.106      yamt  * uvmfault_promote: promote data to a new anon.  used for 1B and 2B.
    536  1.106      yamt  *
    537  1.106      yamt  *	1. allocate an anon and a page.
    538  1.106      yamt  *	2. fill its contents.
    539  1.106      yamt  *	3. put it into amap.
    540  1.106      yamt  *
    541  1.106      yamt  * => if we fail (result != 0) we unlock everything.
    542  1.106      yamt  * => on success, return a new locked anon via 'nanon'.
    543  1.106      yamt  *    (*nanon)->an_page will be a resident, locked, dirty page.
    544  1.106      yamt  */
    545  1.106      yamt 
    546  1.106      yamt static int
    547  1.106      yamt uvmfault_promote(struct uvm_faultinfo *ufi,
    548  1.106      yamt     struct vm_anon *oanon,
    549  1.106      yamt     struct vm_page *uobjpage,
    550  1.106      yamt     struct vm_anon **nanon, /* OUT: allocated anon */
    551  1.106      yamt     struct vm_anon **spare)
    552  1.106      yamt {
    553  1.106      yamt 	struct vm_amap *amap = ufi->entry->aref.ar_amap;
    554  1.106      yamt 	struct uvm_object *uobj;
    555  1.106      yamt 	struct vm_anon *anon;
    556  1.106      yamt 	struct vm_page *pg;
    557  1.106      yamt 	struct vm_page *opg;
    558  1.106      yamt 	int error;
    559  1.106      yamt 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(maphist);
    560  1.106      yamt 
    561  1.106      yamt 	if (oanon) {
    562  1.106      yamt 		/* anon COW */
    563  1.106      yamt 		opg = oanon->an_page;
    564  1.106      yamt 		KASSERT(opg != NULL);
    565  1.106      yamt 		KASSERT(opg->uobject == NULL || opg->loan_count > 0);
    566  1.106      yamt 	} else if (uobjpage != PGO_DONTCARE) {
    567  1.106      yamt 		/* object-backed COW */
    568  1.106      yamt 		opg = uobjpage;
    569  1.106      yamt 	} else {
    570  1.106      yamt 		/* ZFOD */
    571  1.106      yamt 		opg = NULL;
    572  1.106      yamt 	}
    573  1.106      yamt 	if (opg != NULL) {
    574  1.106      yamt 		uobj = opg->uobject;
    575  1.106      yamt 	} else {
    576  1.106      yamt 		uobj = NULL;
    577  1.106      yamt 	}
    578  1.106      yamt 
    579  1.106      yamt 	KASSERT(amap != NULL);
    580  1.106      yamt 	KASSERT(uobjpage != NULL);
    581  1.106      yamt 	KASSERT(uobjpage == PGO_DONTCARE || (uobjpage->flags & PG_BUSY) != 0);
    582  1.120        ad 	KASSERT(mutex_owned(&amap->am_l));
    583  1.122        ad 	KASSERT(oanon == NULL || mutex_owned(&oanon->an_lock));
    584  1.122        ad 	KASSERT(uobj == NULL || mutex_owned(&uobj->vmobjlock));
    585  1.122        ad #if 0
    586  1.122        ad 	KASSERT(*spare == NULL || !mutex_owned(&(*spare)->an_lock));
    587  1.122        ad #endif
    588  1.106      yamt 
    589  1.106      yamt 	if (*spare != NULL) {
    590  1.106      yamt 		anon = *spare;
    591  1.106      yamt 		*spare = NULL;
    592  1.122        ad 		mutex_enter(&anon->an_lock);
    593  1.106      yamt 	} else if (ufi->map != kernel_map) {
    594  1.106      yamt 		anon = uvm_analloc();
    595  1.106      yamt 	} else {
    596  1.106      yamt 		UVMHIST_LOG(maphist, "kernel_map, unlock and retry", 0,0,0,0);
    597  1.106      yamt 
    598  1.106      yamt 		/*
    599  1.106      yamt 		 * we can't allocate anons with kernel_map locked.
    600  1.106      yamt 		 */
    601  1.106      yamt 
    602  1.106      yamt 		uvm_page_unbusy(&uobjpage, 1);
    603  1.106      yamt 		uvmfault_unlockall(ufi, amap, uobj, oanon);
    604  1.106      yamt 
    605  1.106      yamt 		*spare = uvm_analloc();
    606  1.106      yamt 		if (*spare == NULL) {
    607  1.106      yamt 			goto nomem;
    608  1.106      yamt 		}
    609  1.122        ad 		mutex_exit(&(*spare)->an_lock);
    610  1.106      yamt 		error = ERESTART;
    611  1.106      yamt 		goto done;
    612  1.106      yamt 	}
    613  1.106      yamt 	if (anon) {
    614  1.106      yamt 
    615  1.106      yamt 		/*
    616  1.106      yamt 		 * The new anon is locked.
    617  1.106      yamt 		 *
    618  1.106      yamt 		 * if opg == NULL, we want a zero'd, dirty page,
    619  1.106      yamt 		 * so have uvm_pagealloc() do that for us.
    620  1.106      yamt 		 */
    621  1.106      yamt 
    622  1.106      yamt 		pg = uvm_pagealloc(NULL, 0, anon,
    623  1.106      yamt 		    (opg == NULL) ? UVM_PGA_ZERO : 0);
    624  1.106      yamt 	} else {
    625  1.106      yamt 		pg = NULL;
    626  1.106      yamt 	}
    627  1.106      yamt 
    628  1.106      yamt 	/*
    629  1.106      yamt 	 * out of memory resources?
    630  1.106      yamt 	 */
    631  1.106      yamt 
    632  1.106      yamt 	if (pg == NULL) {
    633  1.106      yamt 		/* save anon for the next try. */
    634  1.106      yamt 		if (anon != NULL) {
    635  1.122        ad 			mutex_exit(&anon->an_lock);
    636  1.106      yamt 			*spare = anon;
    637  1.106      yamt 		}
    638  1.106      yamt 
    639  1.106      yamt 		/* unlock and fail ... */
    640  1.106      yamt 		uvm_page_unbusy(&uobjpage, 1);
    641  1.106      yamt 		uvmfault_unlockall(ufi, amap, uobj, oanon);
    642  1.106      yamt nomem:
    643  1.106      yamt 		if (!uvm_reclaimable()) {
    644  1.106      yamt 			UVMHIST_LOG(maphist, "out of VM", 0,0,0,0);
    645  1.106      yamt 			uvmexp.fltnoanon++;
    646  1.106      yamt 			error = ENOMEM;
    647  1.106      yamt 			goto done;
    648  1.106      yamt 		}
    649  1.106      yamt 
    650  1.106      yamt 		UVMHIST_LOG(maphist, "out of RAM, waiting for more", 0,0,0,0);
    651  1.106      yamt 		uvmexp.fltnoram++;
    652  1.106      yamt 		uvm_wait("flt_noram5");
    653  1.106      yamt 		error = ERESTART;
    654  1.106      yamt 		goto done;
    655  1.106      yamt 	}
    656  1.106      yamt 
    657  1.106      yamt 	/* copy page [pg now dirty] */
    658  1.106      yamt 	if (opg) {
    659  1.106      yamt 		uvm_pagecopy(opg, pg);
    660  1.106      yamt 	}
    661  1.106      yamt 
    662  1.106      yamt 	amap_add(&ufi->entry->aref, ufi->orig_rvaddr - ufi->entry->start, anon,
    663  1.106      yamt 	    oanon != NULL);
    664  1.106      yamt 
    665  1.106      yamt 	*nanon = anon;
    666  1.106      yamt 	error = 0;
    667  1.106      yamt done:
    668  1.106      yamt 	return error;
    669  1.106      yamt }
    670  1.106      yamt 
    671  1.106      yamt 
    672  1.106      yamt /*
    673    1.1       mrg  *   F A U L T   -   m a i n   e n t r y   p o i n t
    674    1.1       mrg  */
    675    1.1       mrg 
    676    1.1       mrg /*
    677    1.1       mrg  * uvm_fault: page fault handler
    678    1.1       mrg  *
    679    1.1       mrg  * => called from MD code to resolve a page fault
    680   1.63       chs  * => VM data structures usually should be unlocked.   however, it is
    681    1.1       mrg  *	possible to call here with the main map locked if the caller
    682    1.1       mrg  *	gets a write lock, sets it recusive, and then calls us (c.f.
    683    1.1       mrg  *	uvm_map_pageable).   this should be avoided because it keeps
    684    1.1       mrg  *	the map locked off during I/O.
    685   1.66   thorpej  * => MUST NEVER BE CALLED IN INTERRUPT CONTEXT
    686    1.1       mrg  */
    687    1.1       mrg 
    688   1.24   mycroft #define MASK(entry)     (UVM_ET_ISCOPYONWRITE(entry) ? \
    689   1.24   mycroft 			 ~VM_PROT_WRITE : VM_PROT_ALL)
    690   1.24   mycroft 
    691  1.110  drochner /* fault_flag values passed from uvm_fault_wire to uvm_fault_internal */
    692  1.130  uebayasi #define UVM_FAULT_WIRE		(1 << 0)
    693  1.130  uebayasi #define UVM_FAULT_MAXPROT	(1 << 1)
    694  1.110  drochner 
    695  1.140  uebayasi struct uvm_faultctx {
    696  1.140  uebayasi 	vm_prot_t access_type;
    697  1.140  uebayasi 	vm_prot_t enter_prot;
    698  1.146  uebayasi 	bool wire_mapping;
    699  1.140  uebayasi 	bool narrow;
    700  1.146  uebayasi 	bool wire_paging;
    701  1.140  uebayasi 	bool maxprot;
    702  1.140  uebayasi 	bool cow_now;
    703  1.140  uebayasi 	int npages;
    704  1.140  uebayasi 	int centeridx;
    705  1.140  uebayasi 	vaddr_t startva;
    706  1.140  uebayasi 	struct vm_anon *anon_spare;
    707  1.140  uebayasi };
    708  1.140  uebayasi 
    709  1.144  uebayasi static int uvm_fault_check(
    710  1.144  uebayasi     struct uvm_faultinfo *, struct uvm_faultctx *,
    711  1.144  uebayasi     struct vm_anon ***, struct vm_page ***);
    712  1.144  uebayasi typedef int uvm_fault_upper_subfunc_t(
    713  1.144  uebayasi     struct uvm_faultinfo *, struct uvm_faultctx *,
    714  1.144  uebayasi     struct vm_anon **, struct vm_page **);
    715  1.144  uebayasi static uvm_fault_upper_subfunc_t uvm_fault_upper_lookup;
    716  1.144  uebayasi static uvm_fault_upper_subfunc_t uvm_fault_upper;
    717  1.144  uebayasi typedef int uvm_fault_lower_subfunc_t(
    718  1.144  uebayasi     struct uvm_faultinfo *, struct uvm_faultctx *,
    719  1.144  uebayasi     struct vm_page **);
    720  1.144  uebayasi static uvm_fault_lower_subfunc_t uvm_fault_lower;
    721  1.144  uebayasi static uvm_fault_lower_subfunc_t uvm_fault_lower_special;
    722  1.144  uebayasi static uvm_fault_lower_subfunc_t uvm_fault_lower_generic_lookup;
    723  1.144  uebayasi static uvm_fault_lower_subfunc_t uvm_fault_lower_generic;
    724  1.144  uebayasi static uvm_fault_lower_subfunc_t uvm_fault_lower_generic1;
    725  1.144  uebayasi static uvm_fault_lower_subfunc_t uvm_fault_lower_generic2;
    726  1.138  uebayasi 
    727    1.7       mrg int
    728  1.110  drochner uvm_fault_internal(struct vm_map *orig_map, vaddr_t vaddr,
    729  1.110  drochner     vm_prot_t access_type, int fault_flag)
    730    1.1       mrg {
    731    1.7       mrg 	struct uvm_faultinfo ufi;
    732  1.140  uebayasi 	struct uvm_faultctx flt = {
    733  1.140  uebayasi 		.access_type = access_type,
    734  1.146  uebayasi 
    735  1.146  uebayasi 		/* don't look for neighborhood * pages on "wire" fault */
    736  1.146  uebayasi 		.narrow = (fault_flag & UVM_FAULT_WIRE) != 0,
    737  1.146  uebayasi 
    738  1.146  uebayasi 		/* "wire" fault causes wiring of both mapping and paging */
    739  1.146  uebayasi 		.wire_mapping = (fault_flag & UVM_FAULT_WIRE) != 0,
    740  1.146  uebayasi 		.wire_paging = (fault_flag & UVM_FAULT_WIRE) != 0,
    741  1.146  uebayasi 
    742  1.140  uebayasi 		.maxprot = (fault_flag & UVM_FAULT_MAXPROT) != 0,
    743  1.140  uebayasi 	};
    744  1.137  uebayasi 	struct vm_anon *anons_store[UVM_MAXRANGE], **anons;
    745  1.141  uebayasi 	struct vm_page *pages_store[UVM_MAXRANGE], **pages;
    746  1.140  uebayasi 	int error;
    747    1.7       mrg 	UVMHIST_FUNC("uvm_fault"); UVMHIST_CALLED(maphist);
    748    1.1       mrg 
    749  1.110  drochner 	UVMHIST_LOG(maphist, "(map=0x%x, vaddr=0x%x, at=%d, ff=%d)",
    750  1.110  drochner 	      orig_map, vaddr, access_type, fault_flag);
    751    1.1       mrg 
    752    1.7       mrg 	uvmexp.faults++;	/* XXX: locking? */
    753    1.7       mrg 
    754    1.7       mrg 	/*
    755    1.7       mrg 	 * init the IN parameters in the ufi
    756    1.7       mrg 	 */
    757    1.1       mrg 
    758    1.7       mrg 	ufi.orig_map = orig_map;
    759    1.7       mrg 	ufi.orig_rvaddr = trunc_page(vaddr);
    760    1.7       mrg 	ufi.orig_size = PAGE_SIZE;	/* can't get any smaller than this */
    761    1.7       mrg 
    762  1.142  uebayasi 	error = ERESTART;
    763  1.142  uebayasi 	while (error == ERESTART) {
    764  1.143  uebayasi 		anons = anons_store;
    765  1.143  uebayasi 		pages = pages_store;
    766    1.1       mrg 
    767  1.143  uebayasi 		error = uvm_fault_check(&ufi, &flt, &anons, &pages);
    768  1.143  uebayasi 		if (error != 0)
    769  1.143  uebayasi 			continue;
    770  1.141  uebayasi 
    771  1.143  uebayasi 		error = uvm_fault_upper_lookup(&ufi, &flt, anons, pages);
    772  1.143  uebayasi 		if (error != 0)
    773  1.143  uebayasi 			continue;
    774  1.138  uebayasi 
    775  1.144  uebayasi 		if (pages[flt.centeridx] == PGO_DONTCARE)
    776  1.143  uebayasi 			error = uvm_fault_upper(&ufi, &flt, anons, pages);
    777  1.143  uebayasi 		else
    778  1.144  uebayasi 			error = uvm_fault_lower(&ufi, &flt, pages);
    779  1.142  uebayasi 	}
    780  1.138  uebayasi 
    781  1.140  uebayasi 	if (flt.anon_spare != NULL) {
    782  1.140  uebayasi 		flt.anon_spare->an_ref--;
    783  1.140  uebayasi 		uvm_anfree(flt.anon_spare);
    784  1.138  uebayasi 	}
    785  1.138  uebayasi 	return error;
    786  1.141  uebayasi }
    787  1.138  uebayasi 
    788  1.144  uebayasi static int
    789  1.141  uebayasi uvm_fault_check(
    790  1.141  uebayasi 	struct uvm_faultinfo *ufi, struct uvm_faultctx *flt,
    791  1.141  uebayasi 	struct vm_anon ***ranons, struct vm_page ***rpages)
    792  1.141  uebayasi {
    793  1.141  uebayasi 	struct vm_amap *amap;
    794  1.141  uebayasi 	struct uvm_object *uobj;
    795  1.137  uebayasi 	vm_prot_t check_prot;
    796  1.137  uebayasi 	int nback, nforw;
    797  1.137  uebayasi 
    798    1.7       mrg 	/*
    799    1.7       mrg 	 * lookup and lock the maps
    800    1.7       mrg 	 */
    801    1.7       mrg 
    802  1.141  uebayasi 	if (uvmfault_lookup(ufi, false) == false) {
    803    1.7       mrg 		UVMHIST_LOG(maphist, "<- no mapping @ 0x%x", vaddr, 0,0,0);
    804  1.141  uebayasi 		return EFAULT;
    805    1.7       mrg 	}
    806    1.7       mrg 	/* locked: maps(read) */
    807    1.7       mrg 
    808   1.61   thorpej #ifdef DIAGNOSTIC
    809  1.141  uebayasi 	if ((ufi->map->flags & VM_MAP_PAGEABLE) == 0) {
    810   1.61   thorpej 		printf("Page fault on non-pageable map:\n");
    811  1.141  uebayasi 		printf("ufi->map = %p\n", ufi->map);
    812  1.141  uebayasi 		printf("ufi->orig_map = %p\n", ufi->orig_map);
    813  1.141  uebayasi 		printf("ufi->orig_rvaddr = 0x%lx\n", (u_long) ufi->orig_rvaddr);
    814  1.141  uebayasi 		panic("uvm_fault: (ufi->map->flags & VM_MAP_PAGEABLE) == 0");
    815   1.61   thorpej 	}
    816   1.61   thorpej #endif
    817   1.58       chs 
    818    1.7       mrg 	/*
    819    1.7       mrg 	 * check protection
    820    1.7       mrg 	 */
    821    1.7       mrg 
    822  1.141  uebayasi 	check_prot = flt->maxprot ?
    823  1.141  uebayasi 	    ufi->entry->max_protection : ufi->entry->protection;
    824  1.141  uebayasi 	if ((check_prot & flt->access_type) != flt->access_type) {
    825    1.7       mrg 		UVMHIST_LOG(maphist,
    826    1.7       mrg 		    "<- protection failure (prot=0x%x, access=0x%x)",
    827  1.141  uebayasi 		    ufi->entry->protection, flt->access_type, 0, 0);
    828  1.141  uebayasi 		uvmfault_unlockmaps(ufi, false);
    829  1.141  uebayasi 		return EACCES;
    830    1.7       mrg 	}
    831    1.7       mrg 
    832    1.7       mrg 	/*
    833    1.7       mrg 	 * "enter_prot" is the protection we want to enter the page in at.
    834    1.7       mrg 	 * for certain pages (e.g. copy-on-write pages) this protection can
    835  1.141  uebayasi 	 * be more strict than ufi->entry->protection.  "wired" means either
    836    1.7       mrg 	 * the entry is wired or we are fault-wiring the pg.
    837    1.7       mrg 	 */
    838    1.7       mrg 
    839  1.141  uebayasi 	flt->enter_prot = ufi->entry->protection;
    840  1.146  uebayasi 	if (VM_MAPENT_ISWIRED(ufi->entry))
    841  1.146  uebayasi 		flt->wire_mapping = true;
    842  1.146  uebayasi 
    843  1.146  uebayasi 	if (flt->wire_mapping) {
    844  1.141  uebayasi 		flt->access_type = flt->enter_prot; /* full access for wired */
    845  1.141  uebayasi 		flt->cow_now = (check_prot & VM_PROT_WRITE) != 0;
    846   1.73       chs 	} else {
    847  1.141  uebayasi 		flt->cow_now = (flt->access_type & VM_PROT_WRITE) != 0;
    848   1.73       chs 	}
    849    1.7       mrg 
    850    1.7       mrg 	/*
    851    1.7       mrg 	 * handle "needs_copy" case.   if we need to copy the amap we will
    852    1.7       mrg 	 * have to drop our readlock and relock it with a write lock.  (we
    853    1.7       mrg 	 * need a write lock to change anything in a map entry [e.g.
    854    1.7       mrg 	 * needs_copy]).
    855    1.7       mrg 	 */
    856    1.7       mrg 
    857  1.141  uebayasi 	if (UVM_ET_ISNEEDSCOPY(ufi->entry)) {
    858  1.141  uebayasi 		if (flt->cow_now || (ufi->entry->object.uvm_obj == NULL)) {
    859  1.141  uebayasi 			KASSERT(!flt->maxprot);
    860    1.7       mrg 			/* need to clear */
    861    1.7       mrg 			UVMHIST_LOG(maphist,
    862    1.7       mrg 			    "  need to clear needs_copy and refault",0,0,0,0);
    863  1.141  uebayasi 			uvmfault_unlockmaps(ufi, false);
    864  1.141  uebayasi 			uvmfault_amapcopy(ufi);
    865    1.7       mrg 			uvmexp.fltamcopy++;
    866  1.141  uebayasi 			return ERESTART;
    867    1.7       mrg 
    868    1.7       mrg 		} else {
    869    1.7       mrg 
    870    1.7       mrg 			/*
    871    1.7       mrg 			 * ensure that we pmap_enter page R/O since
    872    1.7       mrg 			 * needs_copy is still true
    873    1.7       mrg 			 */
    874   1.72       chs 
    875  1.141  uebayasi 			flt->enter_prot &= ~VM_PROT_WRITE;
    876    1.7       mrg 		}
    877    1.7       mrg 	}
    878    1.7       mrg 
    879    1.7       mrg 	/*
    880    1.7       mrg 	 * identify the players
    881    1.7       mrg 	 */
    882    1.7       mrg 
    883  1.141  uebayasi 	amap = ufi->entry->aref.ar_amap;	/* upper layer */
    884  1.141  uebayasi 	uobj = ufi->entry->object.uvm_obj;	/* lower layer */
    885    1.7       mrg 
    886    1.7       mrg 	/*
    887    1.7       mrg 	 * check for a case 0 fault.  if nothing backing the entry then
    888    1.7       mrg 	 * error now.
    889    1.7       mrg 	 */
    890    1.7       mrg 
    891    1.7       mrg 	if (amap == NULL && uobj == NULL) {
    892  1.141  uebayasi 		uvmfault_unlockmaps(ufi, false);
    893    1.7       mrg 		UVMHIST_LOG(maphist,"<- no backing store, no overlay",0,0,0,0);
    894  1.141  uebayasi 		return EFAULT;
    895    1.7       mrg 	}
    896    1.1       mrg 
    897    1.7       mrg 	/*
    898    1.7       mrg 	 * establish range of interest based on advice from mapper
    899    1.7       mrg 	 * and then clip to fit map entry.   note that we only want
    900   1.63       chs 	 * to do this the first time through the fault.   if we
    901    1.7       mrg 	 * ReFault we will disable this by setting "narrow" to true.
    902    1.7       mrg 	 */
    903    1.1       mrg 
    904  1.141  uebayasi 	if (flt->narrow == false) {
    905    1.7       mrg 
    906    1.7       mrg 		/* wide fault (!narrow) */
    907  1.141  uebayasi 		KASSERT(uvmadvice[ufi->entry->advice].advice ==
    908  1.141  uebayasi 			 ufi->entry->advice);
    909  1.141  uebayasi 		nback = MIN(uvmadvice[ufi->entry->advice].nback,
    910  1.141  uebayasi 			    (ufi->orig_rvaddr - ufi->entry->start) >> PAGE_SHIFT);
    911  1.141  uebayasi 		flt->startva = ufi->orig_rvaddr - (nback << PAGE_SHIFT);
    912  1.141  uebayasi 		nforw = MIN(uvmadvice[ufi->entry->advice].nforw,
    913  1.141  uebayasi 			    ((ufi->entry->end - ufi->orig_rvaddr) >>
    914   1.15       chs 			     PAGE_SHIFT) - 1);
    915    1.7       mrg 		/*
    916    1.7       mrg 		 * note: "-1" because we don't want to count the
    917    1.7       mrg 		 * faulting page as forw
    918    1.7       mrg 		 */
    919  1.141  uebayasi 		flt->npages = nback + nforw + 1;
    920  1.141  uebayasi 		flt->centeridx = nback;
    921    1.7       mrg 
    922  1.141  uebayasi 		flt->narrow = true;	/* ensure only once per-fault */
    923    1.7       mrg 
    924    1.7       mrg 	} else {
    925   1.63       chs 
    926    1.7       mrg 		/* narrow fault! */
    927    1.7       mrg 		nback = nforw = 0;
    928  1.141  uebayasi 		flt->startva = ufi->orig_rvaddr;
    929  1.141  uebayasi 		flt->npages = 1;
    930  1.141  uebayasi 		flt->centeridx = 0;
    931    1.1       mrg 
    932    1.7       mrg 	}
    933  1.131  uebayasi 	/* offset from entry's start to pgs' start */
    934  1.141  uebayasi 	const voff_t eoff = flt->startva - ufi->entry->start;
    935    1.1       mrg 
    936    1.7       mrg 	/* locked: maps(read) */
    937   1.13     chuck 	UVMHIST_LOG(maphist, "  narrow=%d, back=%d, forw=%d, startva=0x%x",
    938  1.141  uebayasi 		    flt->narrow, nback, nforw, flt->startva);
    939  1.141  uebayasi 	UVMHIST_LOG(maphist, "  entry=0x%x, amap=0x%x, obj=0x%x", ufi->entry,
    940   1.16       chs 		    amap, uobj, 0);
    941    1.1       mrg 
    942    1.7       mrg 	/*
    943    1.7       mrg 	 * if we've got an amap, lock it and extract current anons.
    944    1.7       mrg 	 */
    945    1.7       mrg 
    946    1.7       mrg 	if (amap) {
    947   1.19     chuck 		amap_lock(amap);
    948  1.141  uebayasi 		amap_lookups(&ufi->entry->aref, eoff, *ranons, flt->npages);
    949    1.7       mrg 	} else {
    950  1.141  uebayasi 		*ranons = NULL;	/* to be safe */
    951    1.7       mrg 	}
    952    1.7       mrg 
    953    1.7       mrg 	/* locked: maps(read), amap(if there) */
    954  1.120        ad 	KASSERT(amap == NULL || mutex_owned(&amap->am_l));
    955    1.7       mrg 
    956    1.7       mrg 	/*
    957    1.7       mrg 	 * for MADV_SEQUENTIAL mappings we want to deactivate the back pages
    958    1.7       mrg 	 * now and then forget about them (for the rest of the fault).
    959    1.7       mrg 	 */
    960    1.7       mrg 
    961  1.141  uebayasi 	if (ufi->entry->advice == MADV_SEQUENTIAL && nback != 0) {
    962    1.7       mrg 
    963    1.7       mrg 		UVMHIST_LOG(maphist, "  MADV_SEQUENTIAL: flushing backpages",
    964    1.7       mrg 		    0,0,0,0);
    965    1.7       mrg 		/* flush back-page anons? */
    966   1.63       chs 		if (amap)
    967  1.141  uebayasi 			uvmfault_anonflush(*ranons, nback);
    968    1.7       mrg 
    969    1.7       mrg 		/* flush object? */
    970    1.7       mrg 		if (uobj) {
    971  1.137  uebayasi 			voff_t uoff;
    972  1.137  uebayasi 
    973  1.141  uebayasi 			uoff = ufi->entry->offset + eoff;
    974  1.122        ad 			mutex_enter(&uobj->vmobjlock);
    975   1.90      yamt 			(void) (uobj->pgops->pgo_put)(uobj, uoff, uoff +
    976   1.15       chs 				    (nback << PAGE_SHIFT), PGO_DEACTIVATE);
    977    1.7       mrg 		}
    978    1.7       mrg 
    979    1.7       mrg 		/* now forget about the backpages */
    980    1.7       mrg 		if (amap)
    981  1.141  uebayasi 			*ranons += nback;
    982  1.141  uebayasi #if 0
    983  1.141  uebayasi 		/* XXXUEBS */
    984  1.141  uebayasi 		if (uobj)
    985  1.141  uebayasi 			*rpages += nback;
    986  1.141  uebayasi #endif
    987  1.141  uebayasi 		flt->startva += (nback << PAGE_SHIFT);
    988  1.141  uebayasi 		flt->npages -= nback;
    989  1.141  uebayasi 		flt->centeridx = 0;
    990    1.7       mrg 	}
    991  1.137  uebayasi 	/*
    992  1.137  uebayasi 	 * => startva is fixed
    993  1.137  uebayasi 	 * => npages is fixed
    994  1.137  uebayasi 	 */
    995  1.137  uebayasi 
    996  1.141  uebayasi 	return 0;
    997  1.141  uebayasi }
    998  1.141  uebayasi 
    999  1.144  uebayasi static int
   1000  1.141  uebayasi uvm_fault_upper_lookup(
   1001  1.141  uebayasi 	struct uvm_faultinfo *ufi, struct uvm_faultctx *flt,
   1002  1.141  uebayasi 	struct vm_anon **anons, struct vm_page **pages)
   1003  1.141  uebayasi {
   1004  1.141  uebayasi 	struct vm_amap *amap = ufi->entry->aref.ar_amap;
   1005  1.137  uebayasi 	int lcv;
   1006  1.137  uebayasi 	vaddr_t currva;
   1007  1.144  uebayasi 	bool shadowed;
   1008    1.7       mrg 
   1009    1.7       mrg 	/* locked: maps(read), amap(if there) */
   1010  1.120        ad 	KASSERT(amap == NULL || mutex_owned(&amap->am_l));
   1011    1.1       mrg 
   1012    1.7       mrg 	/*
   1013    1.7       mrg 	 * map in the backpages and frontpages we found in the amap in hopes
   1014    1.7       mrg 	 * of preventing future faults.    we also init the pages[] array as
   1015    1.7       mrg 	 * we go.
   1016    1.7       mrg 	 */
   1017    1.7       mrg 
   1018  1.141  uebayasi 	currva = flt->startva;
   1019  1.144  uebayasi 	shadowed = false;
   1020  1.141  uebayasi 	for (lcv = 0 ; lcv < flt->npages ; lcv++, currva += PAGE_SIZE) {
   1021  1.137  uebayasi 		struct vm_anon *anon;
   1022    1.7       mrg 
   1023    1.7       mrg 		/*
   1024    1.7       mrg 		 * dont play with VAs that are already mapped
   1025   1.13     chuck 		 * except for center)
   1026    1.7       mrg 		 */
   1027  1.141  uebayasi 		if (lcv != flt->centeridx &&
   1028  1.141  uebayasi 		    pmap_extract(ufi->orig_map->pmap, currva, NULL)) {
   1029   1.52       chs 			pages[lcv] = PGO_DONTCARE;
   1030   1.52       chs 			continue;
   1031    1.7       mrg 		}
   1032    1.7       mrg 
   1033    1.7       mrg 		/*
   1034    1.7       mrg 		 * unmapped or center page.   check if any anon at this level.
   1035    1.7       mrg 		 */
   1036    1.7       mrg 		if (amap == NULL || anons[lcv] == NULL) {
   1037    1.7       mrg 			pages[lcv] = NULL;
   1038    1.7       mrg 			continue;
   1039    1.7       mrg 		}
   1040    1.7       mrg 
   1041    1.7       mrg 		/*
   1042    1.7       mrg 		 * check for present page and map if possible.   re-activate it.
   1043    1.7       mrg 		 */
   1044    1.7       mrg 
   1045    1.7       mrg 		pages[lcv] = PGO_DONTCARE;
   1046  1.141  uebayasi 		if (lcv == flt->centeridx) {		/* save center for later! */
   1047  1.144  uebayasi 			shadowed = true;
   1048    1.7       mrg 			continue;
   1049    1.7       mrg 		}
   1050    1.7       mrg 		anon = anons[lcv];
   1051  1.122        ad 		mutex_enter(&anon->an_lock);
   1052   1.52       chs 
   1053  1.145  uebayasi 		/* ignore loaned and busy pages */
   1054  1.145  uebayasi 		if (anon->an_page == NULL || anon->an_page->loan_count != 0 ||
   1055  1.145  uebayasi 		    (anon->an_page->flags & PG_BUSY) != 0)
   1056  1.145  uebayasi 			goto uvm_fault_upper_lookup_enter_done;
   1057  1.145  uebayasi 
   1058  1.145  uebayasi 		mutex_enter(&uvm_pageqlock);
   1059  1.145  uebayasi 		uvm_pageenqueue(anon->an_page);
   1060  1.145  uebayasi 		mutex_exit(&uvm_pageqlock);
   1061  1.145  uebayasi 		UVMHIST_LOG(maphist,
   1062  1.145  uebayasi 		    "  MAPPING: n anon: pm=0x%x, va=0x%x, pg=0x%x",
   1063  1.145  uebayasi 		    ufi->orig_map->pmap, currva, anon->an_page, 0);
   1064  1.145  uebayasi 		uvmexp.fltnamap++;
   1065  1.145  uebayasi 
   1066  1.145  uebayasi 		/*
   1067  1.145  uebayasi 		 * Since this isn't the page that's actually faulting,
   1068  1.145  uebayasi 		 * ignore pmap_enter() failures; it's not critical
   1069  1.145  uebayasi 		 * that we enter these right now.
   1070  1.145  uebayasi 		 */
   1071  1.145  uebayasi 
   1072  1.145  uebayasi 		(void) pmap_enter(ufi->orig_map->pmap, currva,
   1073  1.145  uebayasi 		    VM_PAGE_TO_PHYS(anon->an_page),
   1074  1.145  uebayasi 		    (anon->an_ref > 1) ? (flt->enter_prot & ~VM_PROT_WRITE) :
   1075  1.145  uebayasi 		    flt->enter_prot,
   1076  1.145  uebayasi 		    PMAP_CANFAIL |
   1077  1.145  uebayasi 		     (VM_MAPENT_ISWIRED(ufi->entry) ? PMAP_WIRED : 0));
   1078   1.52       chs 
   1079  1.145  uebayasi uvm_fault_upper_lookup_enter_done:
   1080  1.141  uebayasi 		pmap_update(ufi->orig_map->pmap);
   1081  1.122        ad 		mutex_exit(&anon->an_lock);
   1082    1.7       mrg 	}
   1083    1.7       mrg 
   1084    1.7       mrg 	/* locked: maps(read), amap(if there) */
   1085  1.120        ad 	KASSERT(amap == NULL || mutex_owned(&amap->am_l));
   1086  1.119   thorpej 	/* (shadowed == true) if there is an anon at the faulting address */
   1087  1.144  uebayasi 	UVMHIST_LOG(maphist, "  shadowed=%d, will_get=%d", shadowed,
   1088  1.144  uebayasi 	    (uobj && shadowed != false),0,0);
   1089    1.1       mrg 
   1090    1.7       mrg 	/*
   1091    1.7       mrg 	 * note that if we are really short of RAM we could sleep in the above
   1092    1.7       mrg 	 * call to pmap_enter with everything locked.   bad?
   1093   1.46   thorpej 	 *
   1094   1.46   thorpej 	 * XXX Actually, that is bad; pmap_enter() should just fail in that
   1095   1.46   thorpej 	 * XXX case.  --thorpej
   1096    1.7       mrg 	 */
   1097  1.141  uebayasi 
   1098  1.141  uebayasi 	return 0;
   1099  1.138  uebayasi }
   1100   1.63       chs 
   1101  1.138  uebayasi static int
   1102  1.138  uebayasi uvm_fault_lower(
   1103  1.140  uebayasi 	struct uvm_faultinfo *ufi, struct uvm_faultctx *flt,
   1104  1.144  uebayasi 	struct vm_page **pages)
   1105  1.138  uebayasi {
   1106  1.141  uebayasi 	struct uvm_object *uobj = ufi->entry->object.uvm_obj;
   1107  1.138  uebayasi 	int error;
   1108  1.133  uebayasi 
   1109    1.7       mrg 	/*
   1110    1.7       mrg 	 * if the desired page is not shadowed by the amap and we have a
   1111    1.7       mrg 	 * backing object, then we check to see if the backing object would
   1112    1.7       mrg 	 * prefer to handle the fault itself (rather than letting us do it
   1113    1.7       mrg 	 * with the usual pgo_get hook).  the backing object signals this by
   1114    1.7       mrg 	 * providing a pgo_fault routine.
   1115    1.7       mrg 	 */
   1116    1.1       mrg 
   1117  1.133  uebayasi 	if (uobj && uobj->pgops->pgo_fault != NULL) {
   1118  1.144  uebayasi 		error = uvm_fault_lower_special(ufi, flt, pages);
   1119  1.138  uebayasi 	} else {
   1120  1.144  uebayasi 		error = uvm_fault_lower_generic(ufi, flt, pages);
   1121  1.138  uebayasi 	}
   1122  1.138  uebayasi 	return error;
   1123  1.138  uebayasi }
   1124  1.138  uebayasi 
   1125  1.138  uebayasi static int
   1126  1.138  uebayasi uvm_fault_lower_special(
   1127  1.140  uebayasi 	struct uvm_faultinfo *ufi, struct uvm_faultctx *flt,
   1128  1.144  uebayasi 	struct vm_page **pages)
   1129  1.138  uebayasi {
   1130  1.141  uebayasi 	struct uvm_object *uobj = ufi->entry->object.uvm_obj;
   1131  1.138  uebayasi 	int error;
   1132  1.138  uebayasi 
   1133  1.143  uebayasi 	mutex_enter(&uobj->vmobjlock);
   1134  1.143  uebayasi 	/* locked: maps(read), amap (if there), uobj */
   1135  1.143  uebayasi 	error = uobj->pgops->pgo_fault(ufi, flt->startva, pages, flt->npages,
   1136  1.143  uebayasi 	    flt->centeridx, flt->access_type, PGO_LOCKED|PGO_SYNCIO);
   1137   1.52       chs 
   1138  1.143  uebayasi 	/* locked: nothing, pgo_fault has unlocked everything */
   1139    1.7       mrg 
   1140  1.143  uebayasi 	if (error == ERESTART)
   1141  1.143  uebayasi 		error = ERESTART;		/* try again! */
   1142  1.143  uebayasi 	/*
   1143  1.143  uebayasi 	 * object fault routine responsible for pmap_update().
   1144  1.143  uebayasi 	 */
   1145    1.7       mrg 
   1146  1.143  uebayasi 	return error;
   1147  1.138  uebayasi }
   1148  1.138  uebayasi 
   1149  1.138  uebayasi static int
   1150  1.138  uebayasi uvm_fault_lower_generic(
   1151  1.140  uebayasi 	struct uvm_faultinfo *ufi, struct uvm_faultctx *flt,
   1152  1.144  uebayasi 	struct vm_page **pages)
   1153  1.138  uebayasi {
   1154  1.141  uebayasi 	struct uvm_object *uobj = ufi->entry->object.uvm_obj;
   1155  1.137  uebayasi 
   1156    1.7       mrg 	/*
   1157    1.7       mrg 	 * now, if the desired page is not shadowed by the amap and we have
   1158    1.7       mrg 	 * a backing object that does not have a special fault routine, then
   1159    1.7       mrg 	 * we ask (with pgo_get) the object for resident pages that we care
   1160    1.7       mrg 	 * about and attempt to map them in.  we do not let pgo_get block
   1161    1.7       mrg 	 * (PGO_LOCKED).
   1162    1.7       mrg 	 */
   1163    1.7       mrg 
   1164  1.135  uebayasi 	if (uobj == NULL) {
   1165  1.135  uebayasi 		/* zero fill; don't care neighbor pages */
   1166  1.141  uebayasi 		pages[flt->centeridx] = NULL;
   1167  1.138  uebayasi 	} else {
   1168  1.144  uebayasi 		uvm_fault_lower_generic_lookup(ufi, flt, pages);
   1169  1.141  uebayasi 	}
   1170  1.144  uebayasi 	return uvm_fault_lower_generic1(ufi, flt, pages);
   1171  1.138  uebayasi }
   1172  1.138  uebayasi 
   1173  1.141  uebayasi static int
   1174  1.138  uebayasi uvm_fault_lower_generic_lookup(
   1175  1.140  uebayasi 	struct uvm_faultinfo *ufi, struct uvm_faultctx *flt,
   1176  1.144  uebayasi 	struct vm_page **pages)
   1177  1.138  uebayasi {
   1178  1.141  uebayasi 	struct uvm_object *uobj = ufi->entry->object.uvm_obj;
   1179  1.138  uebayasi 	int lcv, gotpages;
   1180  1.138  uebayasi 	vaddr_t currva;
   1181  1.135  uebayasi 
   1182  1.136  uebayasi 	mutex_enter(&uobj->vmobjlock);
   1183  1.136  uebayasi 	/* locked (!shadowed): maps(read), amap (if there), uobj */
   1184  1.136  uebayasi 	/*
   1185  1.136  uebayasi 	 * the following call to pgo_get does _not_ change locking state
   1186  1.136  uebayasi 	 */
   1187    1.7       mrg 
   1188  1.136  uebayasi 	uvmexp.fltlget++;
   1189  1.140  uebayasi 	gotpages = flt->npages;
   1190  1.143  uebayasi 	(void) uobj->pgops->pgo_get(uobj,
   1191  1.143  uebayasi 	    ufi->entry->offset + flt->startva - ufi->entry->start,
   1192  1.143  uebayasi 	    pages, &gotpages, flt->centeridx,
   1193  1.143  uebayasi 	    flt->access_type & MASK(ufi->entry), ufi->entry->advice, PGO_LOCKED);
   1194    1.1       mrg 
   1195  1.136  uebayasi 	/*
   1196  1.136  uebayasi 	 * check for pages to map, if we got any
   1197  1.136  uebayasi 	 */
   1198    1.7       mrg 
   1199  1.141  uebayasi 	if (gotpages == 0) {
   1200  1.141  uebayasi 		pages[flt->centeridx] = NULL;
   1201  1.141  uebayasi 		return 0;
   1202  1.141  uebayasi 	}
   1203  1.134  uebayasi 
   1204  1.140  uebayasi 	currva = flt->startva;
   1205  1.143  uebayasi 	for (lcv = 0; lcv < flt->npages; lcv++, currva += PAGE_SIZE) {
   1206  1.136  uebayasi 		struct vm_page *curpg;
   1207  1.136  uebayasi 		bool readonly;
   1208   1.86      yamt 
   1209  1.136  uebayasi 		curpg = pages[lcv];
   1210  1.136  uebayasi 		if (curpg == NULL || curpg == PGO_DONTCARE) {
   1211  1.136  uebayasi 			continue;
   1212  1.136  uebayasi 		}
   1213  1.136  uebayasi 		KASSERT(curpg->uobject == uobj);
   1214    1.1       mrg 
   1215  1.136  uebayasi 		/*
   1216  1.143  uebayasi 		 * if center page is resident and not PG_BUSY|PG_RELEASED
   1217  1.143  uebayasi 		 * then pgo_get made it PG_BUSY for us and gave us a handle
   1218  1.143  uebayasi 		 * to it.  remember this page as "uobjpage." (for later use).
   1219  1.136  uebayasi 		 */
   1220   1.63       chs 
   1221  1.140  uebayasi 		if (lcv == flt->centeridx) {
   1222  1.136  uebayasi 			UVMHIST_LOG(maphist, "  got uobjpage "
   1223  1.136  uebayasi 			    "(0x%x) with locked get",
   1224  1.141  uebayasi 			    curpg, 0,0,0);
   1225  1.136  uebayasi 			continue;
   1226  1.136  uebayasi 		}
   1227   1.63       chs 
   1228  1.136  uebayasi 		/*
   1229  1.143  uebayasi 		 * calling pgo_get with PGO_LOCKED returns us pages which
   1230  1.143  uebayasi 		 * are neither busy nor released, so we don't need to check
   1231  1.143  uebayasi 		 * for this.  we can just directly enter the pages.
   1232  1.136  uebayasi 		 */
   1233    1.7       mrg 
   1234  1.136  uebayasi 		mutex_enter(&uvm_pageqlock);
   1235  1.136  uebayasi 		uvm_pageenqueue(curpg);
   1236  1.136  uebayasi 		mutex_exit(&uvm_pageqlock);
   1237  1.136  uebayasi 		UVMHIST_LOG(maphist,
   1238  1.136  uebayasi 		  "  MAPPING: n obj: pm=0x%x, va=0x%x, pg=0x%x",
   1239  1.138  uebayasi 		  ufi->orig_map->pmap, currva, curpg, 0);
   1240  1.136  uebayasi 		uvmexp.fltnomap++;
   1241  1.136  uebayasi 
   1242  1.136  uebayasi 		/*
   1243  1.143  uebayasi 		 * Since this page isn't the page that's actually faulting,
   1244  1.143  uebayasi 		 * ignore pmap_enter() failures; it's not critical that we
   1245  1.136  uebayasi 		 * enter these right now.
   1246  1.136  uebayasi 		 */
   1247  1.136  uebayasi 		KASSERT((curpg->flags & PG_PAGEOUT) == 0);
   1248  1.136  uebayasi 		KASSERT((curpg->flags & PG_RELEASED) == 0);
   1249  1.136  uebayasi 		KASSERT(!UVM_OBJ_IS_CLEAN(curpg->uobject) ||
   1250  1.136  uebayasi 		    (curpg->flags & PG_CLEAN) != 0);
   1251  1.136  uebayasi 		readonly = (curpg->flags & PG_RDONLY)
   1252  1.136  uebayasi 		    || (curpg->loan_count > 0)
   1253  1.136  uebayasi 		    || UVM_OBJ_NEEDS_WRITEFAULT(curpg->uobject);
   1254  1.136  uebayasi 
   1255  1.138  uebayasi 		(void) pmap_enter(ufi->orig_map->pmap, currva,
   1256  1.136  uebayasi 		    VM_PAGE_TO_PHYS(curpg),
   1257  1.143  uebayasi 		    readonly ?  flt->enter_prot & ~VM_PROT_WRITE :
   1258  1.140  uebayasi 		    flt->enter_prot & MASK(ufi->entry),
   1259  1.146  uebayasi 		    PMAP_CANFAIL | (flt->wire_mapping ? PMAP_WIRED : 0));
   1260  1.136  uebayasi 
   1261  1.136  uebayasi 		/*
   1262  1.143  uebayasi 		 * NOTE: page can't be PG_WANTED or PG_RELEASED because we've
   1263  1.143  uebayasi 		 * held the lock the whole time we've had the handle.
   1264  1.136  uebayasi 		 */
   1265  1.136  uebayasi 		KASSERT((curpg->flags & PG_WANTED) == 0);
   1266  1.136  uebayasi 		KASSERT((curpg->flags & PG_RELEASED) == 0);
   1267   1.52       chs 
   1268  1.136  uebayasi 		curpg->flags &= ~(PG_BUSY);
   1269  1.136  uebayasi 		UVM_PAGE_OWN(curpg, NULL);
   1270  1.136  uebayasi 	}
   1271  1.138  uebayasi 	pmap_update(ufi->orig_map->pmap);
   1272  1.141  uebayasi 	return 0;
   1273  1.138  uebayasi }
   1274  1.134  uebayasi 
   1275  1.138  uebayasi static int
   1276  1.138  uebayasi uvm_fault_lower_generic1(
   1277  1.140  uebayasi 	struct uvm_faultinfo *ufi, struct uvm_faultctx *flt,
   1278  1.144  uebayasi 	struct vm_page **pages)
   1279  1.138  uebayasi {
   1280  1.147  uebayasi #ifdef DIAGNOSTIC
   1281  1.141  uebayasi 	struct vm_amap *amap = ufi->entry->aref.ar_amap;
   1282  1.141  uebayasi 	struct uvm_object *uobj = ufi->entry->object.uvm_obj;
   1283  1.141  uebayasi 	struct vm_page *uobjpage = pages[flt->centeridx];
   1284  1.147  uebayasi #endif
   1285    1.7       mrg 
   1286  1.133  uebayasi 	/* locked: maps(read), amap(if there), uobj(if !null), uobjpage(if !null) */
   1287  1.133  uebayasi 	KASSERT(amap == NULL || mutex_owned(&amap->am_l));
   1288  1.133  uebayasi 	KASSERT(uobj == NULL || mutex_owned(&uobj->vmobjlock));
   1289  1.133  uebayasi 	KASSERT(uobjpage == NULL || (uobjpage->flags & PG_BUSY) != 0);
   1290    1.7       mrg 
   1291    1.7       mrg 	/*
   1292    1.7       mrg 	 * note that at this point we are done with any front or back pages.
   1293    1.7       mrg 	 * we are now going to focus on the center page (i.e. the one we've
   1294  1.127  uebayasi 	 * faulted on).  if we have faulted on the upper (anon) layer
   1295    1.7       mrg 	 * [i.e. case 1], then the anon we want is anons[centeridx] (we have
   1296    1.7       mrg 	 * not touched it yet).  if we have faulted on the bottom (uobj)
   1297    1.7       mrg 	 * layer [i.e. case 2] and the page was both present and available,
   1298    1.7       mrg 	 * then we've got a pointer to it as "uobjpage" and we've already
   1299    1.8     chuck 	 * made it BUSY.
   1300    1.7       mrg 	 */
   1301    1.7       mrg 
   1302    1.7       mrg 	/*
   1303    1.7       mrg 	 * there are four possible cases we must address: 1A, 1B, 2A, and 2B
   1304    1.7       mrg 	 */
   1305    1.7       mrg 
   1306    1.7       mrg 	/*
   1307    1.7       mrg 	 * redirect case 2: if we are not shadowed, go to case 2.
   1308    1.7       mrg 	 */
   1309    1.7       mrg 
   1310  1.144  uebayasi 	return uvm_fault_lower_generic2(ufi, flt, pages);
   1311  1.138  uebayasi }
   1312    1.7       mrg 
   1313  1.138  uebayasi static int
   1314  1.138  uebayasi uvm_fault_upper(
   1315  1.140  uebayasi 	struct uvm_faultinfo *ufi, struct uvm_faultctx *flt,
   1316  1.141  uebayasi 	struct vm_anon **anons, struct vm_page **pages)
   1317  1.138  uebayasi {
   1318  1.141  uebayasi 	struct vm_amap *amap = ufi->entry->aref.ar_amap;
   1319  1.141  uebayasi 	struct uvm_object *uobj = ufi->entry->object.uvm_obj;
   1320  1.137  uebayasi 	struct vm_anon *anon, *oanon;
   1321  1.138  uebayasi 	int error;
   1322  1.137  uebayasi 
   1323    1.7       mrg 	/* locked: maps(read), amap */
   1324  1.133  uebayasi 	KASSERT(mutex_owned(&amap->am_l));
   1325    1.7       mrg 
   1326    1.7       mrg 	/*
   1327    1.7       mrg 	 * handle case 1: fault on an anon in our amap
   1328    1.7       mrg 	 */
   1329    1.7       mrg 
   1330  1.140  uebayasi 	anon = anons[flt->centeridx];
   1331    1.7       mrg 	UVMHIST_LOG(maphist, "  case 1 fault: anon=0x%x", anon, 0,0,0);
   1332  1.122        ad 	mutex_enter(&anon->an_lock);
   1333    1.7       mrg 
   1334    1.7       mrg 	/* locked: maps(read), amap, anon */
   1335  1.120        ad 	KASSERT(mutex_owned(&amap->am_l));
   1336  1.122        ad 	KASSERT(mutex_owned(&anon->an_lock));
   1337    1.7       mrg 
   1338    1.7       mrg 	/*
   1339    1.7       mrg 	 * no matter if we have case 1A or case 1B we are going to need to
   1340    1.7       mrg 	 * have the anon's memory resident.   ensure that now.
   1341    1.7       mrg 	 */
   1342    1.7       mrg 
   1343    1.7       mrg 	/*
   1344   1.47       chs 	 * let uvmfault_anonget do the dirty work.
   1345   1.51   thorpej 	 * if it fails (!OK) it will unlock everything for us.
   1346   1.47       chs 	 * if it succeeds, locks are still valid and locked.
   1347    1.7       mrg 	 * also, if it is OK, then the anon's page is on the queues.
   1348    1.7       mrg 	 * if the page is on loan from a uvm_object, then anonget will
   1349    1.7       mrg 	 * lock that object for us if it does not fail.
   1350    1.7       mrg 	 */
   1351    1.7       mrg 
   1352  1.138  uebayasi 	error = uvmfault_anonget(ufi, amap, anon);
   1353   1.58       chs 	switch (error) {
   1354   1.57       chs 	case 0:
   1355   1.63       chs 		break;
   1356    1.7       mrg 
   1357   1.57       chs 	case ERESTART:
   1358  1.139  uebayasi 		return ERESTART;
   1359    1.7       mrg 
   1360   1.57       chs 	case EAGAIN:
   1361  1.128     pooka 		kpause("fltagain1", false, hz/2, NULL);
   1362  1.139  uebayasi 		return ERESTART;
   1363   1.51   thorpej 
   1364   1.51   thorpej 	default:
   1365  1.138  uebayasi 		return error;
   1366    1.1       mrg 	}
   1367    1.7       mrg 
   1368    1.7       mrg 	/*
   1369    1.7       mrg 	 * uobj is non null if the page is on loan from an object (i.e. uobj)
   1370    1.7       mrg 	 */
   1371    1.7       mrg 
   1372   1.94      yamt 	uobj = anon->an_page->uobject;	/* locked by anonget if !NULL */
   1373    1.7       mrg 
   1374    1.7       mrg 	/* locked: maps(read), amap, anon, uobj(if one) */
   1375  1.120        ad 	KASSERT(mutex_owned(&amap->am_l));
   1376  1.122        ad 	KASSERT(mutex_owned(&anon->an_lock));
   1377  1.122        ad 	KASSERT(uobj == NULL || mutex_owned(&uobj->vmobjlock));
   1378    1.7       mrg 
   1379    1.7       mrg 	/*
   1380   1.63       chs 	 * special handling for loaned pages
   1381    1.7       mrg 	 */
   1382   1.52       chs 
   1383   1.94      yamt 	if (anon->an_page->loan_count) {
   1384    1.7       mrg 
   1385  1.140  uebayasi 		if (!flt->cow_now) {
   1386   1.63       chs 
   1387    1.7       mrg 			/*
   1388    1.7       mrg 			 * for read faults on loaned pages we just cap the
   1389    1.7       mrg 			 * protection at read-only.
   1390    1.7       mrg 			 */
   1391    1.7       mrg 
   1392  1.140  uebayasi 			flt->enter_prot = flt->enter_prot & ~VM_PROT_WRITE;
   1393    1.7       mrg 
   1394    1.7       mrg 		} else {
   1395    1.7       mrg 			/*
   1396    1.7       mrg 			 * note that we can't allow writes into a loaned page!
   1397    1.7       mrg 			 *
   1398    1.7       mrg 			 * if we have a write fault on a loaned page in an
   1399    1.7       mrg 			 * anon then we need to look at the anon's ref count.
   1400    1.7       mrg 			 * if it is greater than one then we are going to do
   1401    1.7       mrg 			 * a normal copy-on-write fault into a new anon (this
   1402    1.7       mrg 			 * is not a problem).  however, if the reference count
   1403    1.7       mrg 			 * is one (a case where we would normally allow a
   1404    1.7       mrg 			 * write directly to the page) then we need to kill
   1405    1.7       mrg 			 * the loan before we continue.
   1406    1.7       mrg 			 */
   1407    1.7       mrg 
   1408    1.7       mrg 			/* >1 case is already ok */
   1409    1.7       mrg 			if (anon->an_ref == 1) {
   1410  1.137  uebayasi 				struct vm_page *pg;
   1411    1.7       mrg 
   1412    1.7       mrg 				/* get new un-owned replacement page */
   1413   1.28       chs 				pg = uvm_pagealloc(NULL, 0, NULL, 0);
   1414    1.7       mrg 				if (pg == NULL) {
   1415  1.138  uebayasi 					uvmfault_unlockall(ufi, amap, uobj,
   1416    1.7       mrg 					    anon);
   1417    1.7       mrg 					uvm_wait("flt_noram2");
   1418  1.139  uebayasi 					return ERESTART;
   1419    1.7       mrg 				}
   1420    1.7       mrg 
   1421    1.7       mrg 				/*
   1422    1.7       mrg 				 * copy data, kill loan, and drop uobj lock
   1423    1.7       mrg 				 * (if any)
   1424    1.7       mrg 				 */
   1425    1.7       mrg 				/* copy old -> new */
   1426   1.94      yamt 				uvm_pagecopy(anon->an_page, pg);
   1427    1.7       mrg 
   1428    1.7       mrg 				/* force reload */
   1429  1.115      yamt 				pmap_page_protect(anon->an_page, VM_PROT_NONE);
   1430  1.122        ad 				mutex_enter(&uvm_pageqlock);	  /* KILL loan */
   1431   1.78   thorpej 
   1432   1.94      yamt 				anon->an_page->uanon = NULL;
   1433    1.7       mrg 				/* in case we owned */
   1434   1.94      yamt 				anon->an_page->pqflags &= ~PQ_ANON;
   1435   1.78   thorpej 
   1436   1.78   thorpej 				if (uobj) {
   1437   1.78   thorpej 					/* if we were receiver of loan */
   1438   1.94      yamt 					anon->an_page->loan_count--;
   1439   1.78   thorpej 				} else {
   1440   1.78   thorpej 					/*
   1441   1.78   thorpej 					 * we were the lender (A->K); need
   1442   1.78   thorpej 					 * to remove the page from pageq's.
   1443   1.78   thorpej 					 */
   1444   1.94      yamt 					uvm_pagedequeue(anon->an_page);
   1445   1.78   thorpej 				}
   1446   1.78   thorpej 
   1447    1.7       mrg 				if (uobj) {
   1448  1.122        ad 					mutex_exit(&uobj->vmobjlock);
   1449    1.7       mrg 					uobj = NULL;
   1450    1.7       mrg 				}
   1451    1.7       mrg 
   1452    1.7       mrg 				/* install new page in anon */
   1453   1.94      yamt 				anon->an_page = pg;
   1454    1.7       mrg 				pg->uanon = anon;
   1455    1.7       mrg 				pg->pqflags |= PQ_ANON;
   1456  1.112      yamt 
   1457  1.112      yamt 				uvm_pageactivate(pg);
   1458  1.122        ad 				mutex_exit(&uvm_pageqlock);
   1459  1.112      yamt 
   1460    1.7       mrg 				pg->flags &= ~(PG_BUSY|PG_FAKE);
   1461    1.7       mrg 				UVM_PAGE_OWN(pg, NULL);
   1462    1.7       mrg 
   1463    1.7       mrg 				/* done! */
   1464    1.7       mrg 			}     /* ref == 1 */
   1465    1.7       mrg 		}       /* write fault */
   1466    1.7       mrg 	}         /* loan count */
   1467    1.7       mrg 
   1468    1.7       mrg 	/*
   1469    1.7       mrg 	 * if we are case 1B then we will need to allocate a new blank
   1470    1.7       mrg 	 * anon to transfer the data into.   note that we have a lock
   1471    1.7       mrg 	 * on anon, so no one can busy or release the page until we are done.
   1472    1.7       mrg 	 * also note that the ref count can't drop to zero here because
   1473    1.7       mrg 	 * it is > 1 and we are only dropping one ref.
   1474    1.7       mrg 	 *
   1475   1.63       chs 	 * in the (hopefully very rare) case that we are out of RAM we
   1476   1.63       chs 	 * will unlock, wait for more RAM, and refault.
   1477    1.7       mrg 	 *
   1478    1.7       mrg 	 * if we are out of anon VM we kill the process (XXX: could wait?).
   1479    1.7       mrg 	 */
   1480    1.7       mrg 
   1481  1.137  uebayasi 	struct vm_page *pg;
   1482  1.140  uebayasi 	if (flt->cow_now && anon->an_ref > 1) {
   1483    1.7       mrg 
   1484    1.7       mrg 		UVMHIST_LOG(maphist, "  case 1B: COW fault",0,0,0,0);
   1485    1.7       mrg 		uvmexp.flt_acow++;
   1486    1.7       mrg 		oanon = anon;		/* oanon = old, locked anon */
   1487   1.22       chs 
   1488  1.138  uebayasi 		error = uvmfault_promote(ufi, oanon, PGO_DONTCARE,
   1489  1.140  uebayasi 		    &anon, &flt->anon_spare);
   1490  1.106      yamt 		switch (error) {
   1491  1.106      yamt 		case 0:
   1492  1.106      yamt 			break;
   1493  1.106      yamt 		case ERESTART:
   1494  1.139  uebayasi 			return ERESTART;
   1495  1.106      yamt 		default:
   1496  1.138  uebayasi 			return error;
   1497    1.7       mrg 		}
   1498    1.7       mrg 
   1499  1.106      yamt 		pg = anon->an_page;
   1500  1.122        ad 		mutex_enter(&uvm_pageqlock);
   1501   1.69       chs 		uvm_pageactivate(pg);
   1502  1.122        ad 		mutex_exit(&uvm_pageqlock);
   1503  1.105      yamt 		pg->flags &= ~(PG_BUSY|PG_FAKE);
   1504    1.7       mrg 		UVM_PAGE_OWN(pg, NULL);
   1505    1.7       mrg 
   1506    1.7       mrg 		/* deref: can not drop to zero here by defn! */
   1507    1.7       mrg 		oanon->an_ref--;
   1508   1.53   thorpej 
   1509    1.7       mrg 		/*
   1510   1.53   thorpej 		 * note: oanon is still locked, as is the new anon.  we
   1511   1.53   thorpej 		 * need to check for this later when we unlock oanon; if
   1512   1.53   thorpej 		 * oanon != anon, we'll have to unlock anon, too.
   1513    1.7       mrg 		 */
   1514    1.7       mrg 
   1515    1.7       mrg 	} else {
   1516   1.52       chs 
   1517    1.7       mrg 		uvmexp.flt_anon++;
   1518    1.7       mrg 		oanon = anon;		/* old, locked anon is same as anon */
   1519   1.94      yamt 		pg = anon->an_page;
   1520    1.7       mrg 		if (anon->an_ref > 1)     /* disallow writes to ref > 1 anons */
   1521  1.140  uebayasi 			flt->enter_prot = flt->enter_prot & ~VM_PROT_WRITE;
   1522    1.7       mrg 
   1523    1.7       mrg 	}
   1524    1.7       mrg 
   1525   1.53   thorpej 	/* locked: maps(read), amap, oanon, anon (if different from oanon) */
   1526  1.120        ad 	KASSERT(mutex_owned(&amap->am_l));
   1527  1.122        ad 	KASSERT(mutex_owned(&anon->an_lock));
   1528  1.122        ad 	KASSERT(mutex_owned(&oanon->an_lock));
   1529    1.7       mrg 
   1530    1.7       mrg 	/*
   1531   1.69       chs 	 * now map the page in.
   1532    1.7       mrg 	 */
   1533    1.7       mrg 
   1534    1.7       mrg 	UVMHIST_LOG(maphist, "  MAPPING: anon: pm=0x%x, va=0x%x, pg=0x%x",
   1535  1.138  uebayasi 	    ufi->orig_map->pmap, ufi->orig_rvaddr, pg, 0);
   1536  1.138  uebayasi 	if (pmap_enter(ufi->orig_map->pmap, ufi->orig_rvaddr, VM_PAGE_TO_PHYS(pg),
   1537  1.146  uebayasi 	    flt->enter_prot, flt->access_type | PMAP_CANFAIL | (flt->wire_mapping ? PMAP_WIRED : 0))
   1538   1.58       chs 	    != 0) {
   1539   1.69       chs 
   1540   1.46   thorpej 		/*
   1541   1.46   thorpej 		 * No need to undo what we did; we can simply think of
   1542   1.46   thorpej 		 * this as the pmap throwing away the mapping information.
   1543   1.46   thorpej 		 *
   1544   1.46   thorpej 		 * We do, however, have to go through the ReFault path,
   1545   1.46   thorpej 		 * as the map may change while we're asleep.
   1546   1.46   thorpej 		 */
   1547   1.69       chs 
   1548   1.53   thorpej 		if (anon != oanon)
   1549  1.122        ad 			mutex_exit(&anon->an_lock);
   1550  1.138  uebayasi 		uvmfault_unlockall(ufi, amap, uobj, oanon);
   1551   1.92      yamt 		if (!uvm_reclaimable()) {
   1552   1.46   thorpej 			UVMHIST_LOG(maphist,
   1553   1.46   thorpej 			    "<- failed.  out of VM",0,0,0,0);
   1554   1.46   thorpej 			/* XXX instrumentation */
   1555  1.106      yamt 			error = ENOMEM;
   1556  1.138  uebayasi 			return error;
   1557   1.46   thorpej 		}
   1558   1.46   thorpej 		/* XXX instrumentation */
   1559   1.46   thorpej 		uvm_wait("flt_pmfail1");
   1560  1.139  uebayasi 		return ERESTART;
   1561   1.46   thorpej 	}
   1562    1.7       mrg 
   1563    1.7       mrg 	/*
   1564   1.46   thorpej 	 * ... update the page queues.
   1565    1.7       mrg 	 */
   1566    1.7       mrg 
   1567  1.122        ad 	mutex_enter(&uvm_pageqlock);
   1568  1.146  uebayasi 	if (flt->wire_paging) {
   1569    1.8     chuck 		uvm_pagewire(pg);
   1570   1.29       chs 
   1571   1.29       chs 		/*
   1572   1.29       chs 		 * since the now-wired page cannot be paged out,
   1573   1.29       chs 		 * release its swap resources for others to use.
   1574   1.29       chs 		 * since an anon with no swap cannot be PG_CLEAN,
   1575   1.29       chs 		 * clear its clean flag now.
   1576   1.29       chs 		 */
   1577   1.29       chs 
   1578   1.29       chs 		pg->flags &= ~(PG_CLEAN);
   1579   1.22       chs 		uvm_anon_dropswap(anon);
   1580    1.7       mrg 	} else {
   1581    1.7       mrg 		uvm_pageactivate(pg);
   1582    1.7       mrg 	}
   1583  1.122        ad 	mutex_exit(&uvm_pageqlock);
   1584    1.7       mrg 
   1585    1.7       mrg 	/*
   1586    1.7       mrg 	 * done case 1!  finish up by unlocking everything and returning success
   1587    1.7       mrg 	 */
   1588    1.1       mrg 
   1589   1.53   thorpej 	if (anon != oanon)
   1590  1.122        ad 		mutex_exit(&anon->an_lock);
   1591  1.138  uebayasi 	uvmfault_unlockall(ufi, amap, uobj, oanon);
   1592  1.138  uebayasi 	pmap_update(ufi->orig_map->pmap);
   1593  1.139  uebayasi 	return 0;
   1594  1.138  uebayasi }
   1595    1.1       mrg 
   1596  1.138  uebayasi static int
   1597  1.138  uebayasi uvm_fault_lower_generic2(
   1598  1.140  uebayasi 	struct uvm_faultinfo *ufi, struct uvm_faultctx *flt,
   1599  1.144  uebayasi 	struct vm_page **pages)
   1600  1.138  uebayasi {
   1601  1.141  uebayasi 	struct vm_amap *amap = ufi->entry->aref.ar_amap;
   1602  1.141  uebayasi 	struct uvm_object *uobj = ufi->entry->object.uvm_obj;
   1603  1.141  uebayasi 	struct vm_page *uobjpage = pages[flt->centeridx];
   1604  1.137  uebayasi 	struct vm_anon *anon;
   1605  1.137  uebayasi 	bool promote;
   1606  1.138  uebayasi 	int error;
   1607  1.137  uebayasi 
   1608    1.7       mrg 	/*
   1609    1.7       mrg 	 * handle case 2: faulting on backing object or zero fill
   1610    1.7       mrg 	 */
   1611    1.7       mrg 
   1612    1.7       mrg 	/*
   1613    1.7       mrg 	 * locked:
   1614    1.7       mrg 	 * maps(read), amap(if there), uobj(if !null), uobjpage(if !null)
   1615    1.7       mrg 	 */
   1616  1.120        ad 	KASSERT(amap == NULL || mutex_owned(&amap->am_l));
   1617  1.122        ad 	KASSERT(uobj == NULL || mutex_owned(&uobj->vmobjlock));
   1618  1.120        ad 	KASSERT(uobjpage == NULL || (uobjpage->flags & PG_BUSY) != 0);
   1619    1.7       mrg 
   1620    1.7       mrg 	/*
   1621    1.7       mrg 	 * note that uobjpage can not be PGO_DONTCARE at this point.  we now
   1622    1.7       mrg 	 * set uobjpage to PGO_DONTCARE if we are doing a zero fill.  if we
   1623    1.7       mrg 	 * have a backing object, check and see if we are going to promote
   1624    1.7       mrg 	 * the data up to an anon during the fault.
   1625    1.7       mrg 	 */
   1626    1.7       mrg 
   1627    1.7       mrg 	if (uobj == NULL) {
   1628   1.63       chs 		uobjpage = PGO_DONTCARE;
   1629  1.119   thorpej 		promote = true;		/* always need anon here */
   1630    1.7       mrg 	} else {
   1631   1.52       chs 		KASSERT(uobjpage != PGO_DONTCARE);
   1632  1.140  uebayasi 		promote = flt->cow_now && UVM_ET_ISCOPYONWRITE(ufi->entry);
   1633    1.7       mrg 	}
   1634    1.7       mrg 	UVMHIST_LOG(maphist, "  case 2 fault: promote=%d, zfill=%d",
   1635   1.46   thorpej 	    promote, (uobj == NULL), 0,0);
   1636    1.1       mrg 
   1637    1.7       mrg 	/*
   1638    1.9     chuck 	 * if uobjpage is not null then we do not need to do I/O to get the
   1639    1.9     chuck 	 * uobjpage.
   1640    1.9     chuck 	 *
   1641   1.63       chs 	 * if uobjpage is null, then we need to unlock and ask the pager to
   1642    1.7       mrg 	 * get the data for us.   once we have the data, we need to reverify
   1643    1.7       mrg 	 * the state the world.   we are currently not holding any resources.
   1644    1.7       mrg 	 */
   1645    1.1       mrg 
   1646    1.9     chuck 	if (uobjpage) {
   1647    1.9     chuck 		/* update rusage counters */
   1648  1.124        ad 		curlwp->l_ru.ru_minflt++;
   1649    1.9     chuck 	} else {
   1650  1.137  uebayasi 		bool locked;
   1651  1.137  uebayasi 		int gotpages;
   1652  1.137  uebayasi 		voff_t uoff;
   1653  1.137  uebayasi 
   1654    1.9     chuck 		/* update rusage counters */
   1655  1.124        ad 		curlwp->l_ru.ru_majflt++;
   1656   1.63       chs 
   1657    1.7       mrg 		/* locked: maps(read), amap(if there), uobj */
   1658  1.138  uebayasi 		uvmfault_unlockall(ufi, amap, NULL, NULL);
   1659    1.7       mrg 		/* locked: uobj */
   1660    1.7       mrg 
   1661    1.7       mrg 		uvmexp.fltget++;
   1662    1.7       mrg 		gotpages = 1;
   1663  1.138  uebayasi 		uoff = (ufi->orig_rvaddr - ufi->entry->start) + ufi->entry->offset;
   1664   1.58       chs 		error = uobj->pgops->pgo_get(uobj, uoff, &uobjpage, &gotpages,
   1665  1.140  uebayasi 		    0, flt->access_type & MASK(ufi->entry), ufi->entry->advice,
   1666   1.52       chs 		    PGO_SYNCIO);
   1667   1.58       chs 		/* locked: uobjpage(if no error) */
   1668  1.120        ad 		KASSERT(error != 0 || (uobjpage->flags & PG_BUSY) != 0);
   1669   1.52       chs 
   1670    1.7       mrg 		/*
   1671    1.7       mrg 		 * recover from I/O
   1672    1.7       mrg 		 */
   1673    1.1       mrg 
   1674   1.58       chs 		if (error) {
   1675   1.58       chs 			if (error == EAGAIN) {
   1676   1.46   thorpej 				UVMHIST_LOG(maphist,
   1677   1.46   thorpej 				    "  pgo_get says TRY AGAIN!",0,0,0,0);
   1678  1.128     pooka 				kpause("fltagain2", false, hz/2, NULL);
   1679  1.139  uebayasi 				return ERESTART;
   1680    1.7       mrg 			}
   1681    1.1       mrg 
   1682  1.139  uebayasi #if 0
   1683  1.139  uebayasi 			KASSERT(error != ERESTART);
   1684  1.139  uebayasi #else
   1685  1.139  uebayasi 			/* XXXUEBS don't re-fault? */
   1686  1.139  uebayasi 			if (error == ERESTART)
   1687  1.139  uebayasi 				error = EIO;
   1688  1.139  uebayasi #endif
   1689  1.139  uebayasi 
   1690    1.7       mrg 			UVMHIST_LOG(maphist, "<- pgo_get failed (code %d)",
   1691   1.58       chs 			    error, 0,0,0);
   1692  1.138  uebayasi 			return error;
   1693    1.7       mrg 		}
   1694    1.7       mrg 
   1695    1.7       mrg 		/* locked: uobjpage */
   1696    1.7       mrg 
   1697  1.122        ad 		mutex_enter(&uvm_pageqlock);
   1698   1.69       chs 		uvm_pageactivate(uobjpage);
   1699  1.122        ad 		mutex_exit(&uvm_pageqlock);
   1700   1.69       chs 
   1701    1.7       mrg 		/*
   1702    1.7       mrg 		 * re-verify the state of the world by first trying to relock
   1703    1.7       mrg 		 * the maps.  always relock the object.
   1704    1.7       mrg 		 */
   1705    1.7       mrg 
   1706  1.138  uebayasi 		locked = uvmfault_relock(ufi);
   1707    1.7       mrg 		if (locked && amap)
   1708   1.19     chuck 			amap_lock(amap);
   1709  1.107      yamt 		uobj = uobjpage->uobject;
   1710  1.122        ad 		mutex_enter(&uobj->vmobjlock);
   1711   1.63       chs 
   1712    1.7       mrg 		/* locked(locked): maps(read), amap(if !null), uobj, uobjpage */
   1713    1.7       mrg 		/* locked(!locked): uobj, uobjpage */
   1714    1.7       mrg 
   1715    1.7       mrg 		/*
   1716    1.7       mrg 		 * verify that the page has not be released and re-verify
   1717    1.7       mrg 		 * that amap slot is still free.   if there is a problem,
   1718    1.7       mrg 		 * we unlock and clean up.
   1719    1.7       mrg 		 */
   1720    1.7       mrg 
   1721    1.7       mrg 		if ((uobjpage->flags & PG_RELEASED) != 0 ||
   1722   1.63       chs 		    (locked && amap &&
   1723  1.138  uebayasi 		    amap_lookup(&ufi->entry->aref,
   1724  1.138  uebayasi 		      ufi->orig_rvaddr - ufi->entry->start))) {
   1725   1.63       chs 			if (locked)
   1726  1.138  uebayasi 				uvmfault_unlockall(ufi, amap, NULL, NULL);
   1727  1.119   thorpej 			locked = false;
   1728    1.7       mrg 		}
   1729    1.7       mrg 
   1730    1.7       mrg 		/*
   1731    1.7       mrg 		 * didn't get the lock?   release the page and retry.
   1732    1.7       mrg 		 */
   1733    1.7       mrg 
   1734  1.119   thorpej 		if (locked == false) {
   1735    1.7       mrg 			UVMHIST_LOG(maphist,
   1736   1.63       chs 			    "  wasn't able to relock after fault: retry",
   1737    1.7       mrg 			    0,0,0,0);
   1738    1.7       mrg 			if (uobjpage->flags & PG_WANTED)
   1739   1.44   thorpej 				wakeup(uobjpage);
   1740    1.7       mrg 			if (uobjpage->flags & PG_RELEASED) {
   1741    1.7       mrg 				uvmexp.fltpgrele++;
   1742   1.69       chs 				uvm_pagefree(uobjpage);
   1743  1.139  uebayasi 				return ERESTART;
   1744    1.7       mrg 			}
   1745    1.7       mrg 			uobjpage->flags &= ~(PG_BUSY|PG_WANTED);
   1746    1.7       mrg 			UVM_PAGE_OWN(uobjpage, NULL);
   1747  1.122        ad 			mutex_exit(&uobj->vmobjlock);
   1748  1.139  uebayasi 			return ERESTART;
   1749    1.7       mrg 		}
   1750    1.7       mrg 
   1751    1.7       mrg 		/*
   1752   1.69       chs 		 * we have the data in uobjpage which is busy and
   1753   1.69       chs 		 * not released.  we are holding object lock (so the page
   1754    1.7       mrg 		 * can't be released on us).
   1755    1.7       mrg 		 */
   1756    1.7       mrg 
   1757    1.7       mrg 		/* locked: maps(read), amap(if !null), uobj, uobjpage */
   1758    1.7       mrg 	}
   1759    1.1       mrg 
   1760    1.1       mrg 	/*
   1761    1.7       mrg 	 * locked:
   1762    1.7       mrg 	 * maps(read), amap(if !null), uobj(if !null), uobjpage(if uobj)
   1763    1.1       mrg 	 */
   1764  1.120        ad 	KASSERT(amap == NULL || mutex_owned(&amap->am_l));
   1765  1.122        ad 	KASSERT(uobj == NULL || mutex_owned(&uobj->vmobjlock));
   1766  1.120        ad 	KASSERT(uobj == NULL || (uobjpage->flags & PG_BUSY) != 0);
   1767    1.1       mrg 
   1768    1.7       mrg 	/*
   1769    1.7       mrg 	 * notes:
   1770    1.7       mrg 	 *  - at this point uobjpage can not be NULL
   1771    1.7       mrg 	 *  - at this point uobjpage can not be PG_RELEASED (since we checked
   1772    1.7       mrg 	 *  for it above)
   1773    1.7       mrg 	 *  - at this point uobjpage could be PG_WANTED (handle later)
   1774    1.7       mrg 	 */
   1775   1.63       chs 
   1776  1.107      yamt 	KASSERT(uobj == NULL || uobj == uobjpage->uobject);
   1777   1.97      yamt 	KASSERT(uobj == NULL || !UVM_OBJ_IS_CLEAN(uobjpage->uobject) ||
   1778   1.96      yamt 	    (uobjpage->flags & PG_CLEAN) != 0);
   1779  1.137  uebayasi 	struct vm_page *pg;
   1780  1.119   thorpej 	if (promote == false) {
   1781    1.1       mrg 
   1782    1.7       mrg 		/*
   1783    1.7       mrg 		 * we are not promoting.   if the mapping is COW ensure that we
   1784    1.7       mrg 		 * don't give more access than we should (e.g. when doing a read
   1785    1.7       mrg 		 * fault on a COPYONWRITE mapping we want to map the COW page in
   1786    1.7       mrg 		 * R/O even though the entry protection could be R/W).
   1787    1.7       mrg 		 *
   1788    1.7       mrg 		 * set "pg" to the page we want to map in (uobjpage, usually)
   1789    1.7       mrg 		 */
   1790    1.7       mrg 
   1791   1.53   thorpej 		/* no anon in this case. */
   1792   1.53   thorpej 		anon = NULL;
   1793   1.53   thorpej 
   1794    1.7       mrg 		uvmexp.flt_obj++;
   1795  1.138  uebayasi 		if (UVM_ET_ISCOPYONWRITE(ufi->entry) ||
   1796   1.98      yamt 		    UVM_OBJ_NEEDS_WRITEFAULT(uobjpage->uobject))
   1797  1.140  uebayasi 			flt->enter_prot &= ~VM_PROT_WRITE;
   1798    1.7       mrg 		pg = uobjpage;		/* map in the actual object */
   1799    1.7       mrg 
   1800  1.111      yamt 		KASSERT(uobjpage != PGO_DONTCARE);
   1801    1.7       mrg 
   1802    1.7       mrg 		/*
   1803    1.7       mrg 		 * we are faulting directly on the page.   be careful
   1804    1.7       mrg 		 * about writing to loaned pages...
   1805    1.7       mrg 		 */
   1806   1.69       chs 
   1807    1.7       mrg 		if (uobjpage->loan_count) {
   1808  1.140  uebayasi 			if (!flt->cow_now) {
   1809    1.7       mrg 				/* read fault: cap the protection at readonly */
   1810    1.7       mrg 				/* cap! */
   1811  1.140  uebayasi 				flt->enter_prot = flt->enter_prot & ~VM_PROT_WRITE;
   1812    1.7       mrg 			} else {
   1813    1.7       mrg 				/* write fault: must break the loan here */
   1814    1.7       mrg 
   1815   1.82      yamt 				pg = uvm_loanbreak(uobjpage);
   1816    1.7       mrg 				if (pg == NULL) {
   1817   1.69       chs 
   1818    1.7       mrg 					/*
   1819    1.7       mrg 					 * drop ownership of page, it can't
   1820    1.7       mrg 					 * be released
   1821   1.46   thorpej 					 */
   1822   1.69       chs 
   1823    1.7       mrg 					if (uobjpage->flags & PG_WANTED)
   1824   1.44   thorpej 						wakeup(uobjpage);
   1825    1.7       mrg 					uobjpage->flags &= ~(PG_BUSY|PG_WANTED);
   1826    1.7       mrg 					UVM_PAGE_OWN(uobjpage, NULL);
   1827    1.7       mrg 
   1828  1.138  uebayasi 					uvmfault_unlockall(ufi, amap, uobj,
   1829    1.7       mrg 					  NULL);
   1830    1.7       mrg 					UVMHIST_LOG(maphist,
   1831   1.20       mrg 					  "  out of RAM breaking loan, waiting",
   1832   1.20       mrg 					  0,0,0,0);
   1833    1.7       mrg 					uvmexp.fltnoram++;
   1834    1.7       mrg 					uvm_wait("flt_noram4");
   1835  1.139  uebayasi 					return ERESTART;
   1836    1.7       mrg 				}
   1837    1.7       mrg 				uobjpage = pg;
   1838   1.69       chs 			}
   1839   1.69       chs 		}
   1840    1.7       mrg 	} else {
   1841   1.63       chs 
   1842    1.7       mrg 		/*
   1843    1.7       mrg 		 * if we are going to promote the data to an anon we
   1844    1.7       mrg 		 * allocate a blank anon here and plug it into our amap.
   1845    1.7       mrg 		 */
   1846    1.1       mrg #if DIAGNOSTIC
   1847    1.7       mrg 		if (amap == NULL)
   1848    1.7       mrg 			panic("uvm_fault: want to promote data, but no anon");
   1849    1.1       mrg #endif
   1850  1.138  uebayasi 		error = uvmfault_promote(ufi, NULL, uobjpage,
   1851  1.140  uebayasi 		    &anon, &flt->anon_spare);
   1852  1.106      yamt 		switch (error) {
   1853  1.106      yamt 		case 0:
   1854  1.106      yamt 			break;
   1855  1.106      yamt 		case ERESTART:
   1856  1.139  uebayasi 			return ERESTART;
   1857  1.106      yamt 		default:
   1858  1.138  uebayasi 			return error;
   1859  1.105      yamt 		}
   1860  1.105      yamt 
   1861  1.106      yamt 		pg = anon->an_page;
   1862    1.1       mrg 
   1863    1.7       mrg 		/*
   1864    1.7       mrg 		 * fill in the data
   1865    1.7       mrg 		 */
   1866    1.7       mrg 
   1867    1.7       mrg 		if (uobjpage != PGO_DONTCARE) {
   1868    1.7       mrg 			uvmexp.flt_prcopy++;
   1869    1.7       mrg 
   1870    1.7       mrg 			/*
   1871    1.7       mrg 			 * promote to shared amap?  make sure all sharing
   1872    1.7       mrg 			 * procs see it
   1873    1.7       mrg 			 */
   1874   1.69       chs 
   1875   1.19     chuck 			if ((amap_flags(amap) & AMAP_SHARED) != 0) {
   1876   1.45       chs 				pmap_page_protect(uobjpage, VM_PROT_NONE);
   1877   1.62   thorpej 				/*
   1878   1.62   thorpej 				 * XXX: PAGE MIGHT BE WIRED!
   1879   1.62   thorpej 				 */
   1880    1.7       mrg 			}
   1881   1.63       chs 
   1882    1.7       mrg 			/*
   1883    1.7       mrg 			 * dispose of uobjpage.  it can't be PG_RELEASED
   1884   1.52       chs 			 * since we still hold the object lock.
   1885   1.52       chs 			 * drop handle to uobj as well.
   1886    1.7       mrg 			 */
   1887    1.7       mrg 
   1888    1.7       mrg 			if (uobjpage->flags & PG_WANTED)
   1889    1.7       mrg 				/* still have the obj lock */
   1890   1.44   thorpej 				wakeup(uobjpage);
   1891    1.7       mrg 			uobjpage->flags &= ~(PG_BUSY|PG_WANTED);
   1892    1.7       mrg 			UVM_PAGE_OWN(uobjpage, NULL);
   1893  1.122        ad 			mutex_exit(&uobj->vmobjlock);
   1894    1.7       mrg 			uobj = NULL;
   1895   1.52       chs 
   1896    1.7       mrg 			UVMHIST_LOG(maphist,
   1897    1.7       mrg 			    "  promote uobjpage 0x%x to anon/page 0x%x/0x%x",
   1898    1.7       mrg 			    uobjpage, anon, pg, 0);
   1899    1.7       mrg 
   1900    1.7       mrg 		} else {
   1901    1.7       mrg 			uvmexp.flt_przero++;
   1902   1.69       chs 
   1903   1.48   thorpej 			/*
   1904  1.106      yamt 			 * Page is zero'd and marked dirty by
   1905  1.106      yamt 			 * uvmfault_promote().
   1906   1.48   thorpej 			 */
   1907   1.69       chs 
   1908    1.7       mrg 			UVMHIST_LOG(maphist,"  zero fill anon/page 0x%x/0%x",
   1909    1.7       mrg 			    anon, pg, 0, 0);
   1910    1.7       mrg 		}
   1911    1.7       mrg 	}
   1912    1.7       mrg 
   1913    1.7       mrg 	/*
   1914    1.7       mrg 	 * locked:
   1915   1.53   thorpej 	 * maps(read), amap(if !null), uobj(if !null), uobjpage(if uobj),
   1916   1.53   thorpej 	 *   anon(if !null), pg(if anon)
   1917    1.7       mrg 	 *
   1918    1.7       mrg 	 * note: pg is either the uobjpage or the new page in the new anon
   1919    1.7       mrg 	 */
   1920  1.120        ad 	KASSERT(amap == NULL || mutex_owned(&amap->am_l));
   1921  1.122        ad 	KASSERT(uobj == NULL || mutex_owned(&uobj->vmobjlock));
   1922  1.120        ad 	KASSERT(uobj == NULL || (uobjpage->flags & PG_BUSY) != 0);
   1923  1.122        ad 	KASSERT(anon == NULL || mutex_owned(&anon->an_lock));
   1924  1.120        ad 	KASSERT((pg->flags & PG_BUSY) != 0);
   1925    1.7       mrg 
   1926    1.7       mrg 	/*
   1927    1.7       mrg 	 * all resources are present.   we can now map it in and free our
   1928    1.7       mrg 	 * resources.
   1929    1.7       mrg 	 */
   1930    1.7       mrg 
   1931    1.7       mrg 	UVMHIST_LOG(maphist,
   1932    1.7       mrg 	    "  MAPPING: case2: pm=0x%x, va=0x%x, pg=0x%x, promote=%d",
   1933  1.138  uebayasi 	    ufi->orig_map->pmap, ufi->orig_rvaddr, pg, promote);
   1934  1.140  uebayasi 	KASSERT((flt->access_type & VM_PROT_WRITE) == 0 ||
   1935   1.75       chs 		(pg->flags & PG_RDONLY) == 0);
   1936  1.138  uebayasi 	if (pmap_enter(ufi->orig_map->pmap, ufi->orig_rvaddr, VM_PAGE_TO_PHYS(pg),
   1937  1.140  uebayasi 	    pg->flags & PG_RDONLY ? flt->enter_prot & ~VM_PROT_WRITE : flt->enter_prot,
   1938  1.146  uebayasi 	    flt->access_type | PMAP_CANFAIL | (flt->wire_mapping ? PMAP_WIRED : 0)) != 0) {
   1939   1.52       chs 
   1940   1.46   thorpej 		/*
   1941   1.46   thorpej 		 * No need to undo what we did; we can simply think of
   1942   1.46   thorpej 		 * this as the pmap throwing away the mapping information.
   1943   1.46   thorpej 		 *
   1944   1.46   thorpej 		 * We do, however, have to go through the ReFault path,
   1945   1.46   thorpej 		 * as the map may change while we're asleep.
   1946   1.46   thorpej 		 */
   1947   1.52       chs 
   1948   1.46   thorpej 		if (pg->flags & PG_WANTED)
   1949   1.69       chs 			wakeup(pg);
   1950   1.46   thorpej 
   1951   1.63       chs 		/*
   1952   1.46   thorpej 		 * note that pg can't be PG_RELEASED since we did not drop
   1953   1.46   thorpej 		 * the object lock since the last time we checked.
   1954   1.46   thorpej 		 */
   1955  1.111      yamt 		KASSERT((pg->flags & PG_RELEASED) == 0);
   1956   1.63       chs 
   1957   1.46   thorpej 		pg->flags &= ~(PG_BUSY|PG_FAKE|PG_WANTED);
   1958   1.46   thorpej 		UVM_PAGE_OWN(pg, NULL);
   1959  1.138  uebayasi 		uvmfault_unlockall(ufi, amap, uobj, anon);
   1960   1.92      yamt 		if (!uvm_reclaimable()) {
   1961   1.46   thorpej 			UVMHIST_LOG(maphist,
   1962   1.46   thorpej 			    "<- failed.  out of VM",0,0,0,0);
   1963   1.46   thorpej 			/* XXX instrumentation */
   1964  1.106      yamt 			error = ENOMEM;
   1965  1.138  uebayasi 			return error;
   1966   1.46   thorpej 		}
   1967   1.46   thorpej 		/* XXX instrumentation */
   1968   1.46   thorpej 		uvm_wait("flt_pmfail2");
   1969  1.139  uebayasi 		return ERESTART;
   1970   1.46   thorpej 	}
   1971    1.1       mrg 
   1972  1.122        ad 	mutex_enter(&uvm_pageqlock);
   1973  1.146  uebayasi 	if (flt->wire_paging) {
   1974    1.8     chuck 		uvm_pagewire(pg);
   1975   1.22       chs 		if (pg->pqflags & PQ_AOBJ) {
   1976   1.29       chs 
   1977   1.29       chs 			/*
   1978   1.29       chs 			 * since the now-wired page cannot be paged out,
   1979   1.29       chs 			 * release its swap resources for others to use.
   1980   1.29       chs 			 * since an aobj page with no swap cannot be PG_CLEAN,
   1981   1.29       chs 			 * clear its clean flag now.
   1982   1.29       chs 			 */
   1983   1.29       chs 
   1984  1.113  christos 			KASSERT(uobj != NULL);
   1985   1.29       chs 			pg->flags &= ~(PG_CLEAN);
   1986   1.22       chs 			uao_dropswap(uobj, pg->offset >> PAGE_SHIFT);
   1987   1.22       chs 		}
   1988    1.7       mrg 	} else {
   1989    1.7       mrg 		uvm_pageactivate(pg);
   1990    1.7       mrg 	}
   1991  1.122        ad 	mutex_exit(&uvm_pageqlock);
   1992    1.7       mrg 	if (pg->flags & PG_WANTED)
   1993   1.69       chs 		wakeup(pg);
   1994    1.7       mrg 
   1995   1.63       chs 	/*
   1996   1.63       chs 	 * note that pg can't be PG_RELEASED since we did not drop the object
   1997    1.7       mrg 	 * lock since the last time we checked.
   1998    1.7       mrg 	 */
   1999  1.111      yamt 	KASSERT((pg->flags & PG_RELEASED) == 0);
   2000   1.63       chs 
   2001    1.7       mrg 	pg->flags &= ~(PG_BUSY|PG_FAKE|PG_WANTED);
   2002    1.7       mrg 	UVM_PAGE_OWN(pg, NULL);
   2003  1.138  uebayasi 	uvmfault_unlockall(ufi, amap, uobj, anon);
   2004  1.138  uebayasi 	pmap_update(ufi->orig_map->pmap);
   2005    1.7       mrg 	UVMHIST_LOG(maphist, "<- done (SUCCESS!)",0,0,0,0);
   2006  1.139  uebayasi 	return 0;
   2007    1.1       mrg }
   2008    1.1       mrg 
   2009  1.110  drochner 
   2010    1.1       mrg /*
   2011    1.1       mrg  * uvm_fault_wire: wire down a range of virtual addresses in a map.
   2012    1.1       mrg  *
   2013   1.36   thorpej  * => map may be read-locked by caller, but MUST NOT be write-locked.
   2014   1.36   thorpej  * => if map is read-locked, any operations which may cause map to
   2015   1.36   thorpej  *	be write-locked in uvm_fault() must be taken care of by
   2016   1.36   thorpej  *	the caller.  See uvm_map_pageable().
   2017    1.1       mrg  */
   2018    1.1       mrg 
   2019    1.7       mrg int
   2020   1.95   thorpej uvm_fault_wire(struct vm_map *map, vaddr_t start, vaddr_t end,
   2021  1.130  uebayasi     vm_prot_t access_type, int maxprot)
   2022    1.7       mrg {
   2023   1.12       eeh 	vaddr_t va;
   2024   1.58       chs 	int error;
   2025    1.7       mrg 
   2026    1.7       mrg 	/*
   2027   1.47       chs 	 * now fault it in a page at a time.   if the fault fails then we have
   2028   1.63       chs 	 * to undo what we have done.   note that in uvm_fault VM_PROT_NONE
   2029   1.47       chs 	 * is replaced with the max protection if fault_type is VM_FAULT_WIRE.
   2030    1.7       mrg 	 */
   2031    1.1       mrg 
   2032   1.65       chs 	/*
   2033   1.65       chs 	 * XXX work around overflowing a vaddr_t.  this prevents us from
   2034   1.65       chs 	 * wiring the last page in the address space, though.
   2035   1.65       chs 	 */
   2036   1.65       chs 	if (start > end) {
   2037   1.65       chs 		return EFAULT;
   2038   1.65       chs 	}
   2039   1.65       chs 
   2040    1.7       mrg 	for (va = start ; va < end ; va += PAGE_SIZE) {
   2041  1.110  drochner 		error = uvm_fault_internal(map, va, access_type,
   2042  1.130  uebayasi 				(maxprot ? UVM_FAULT_MAXPROT : 0) | UVM_FAULT_WIRE);
   2043   1.58       chs 		if (error) {
   2044    1.7       mrg 			if (va != start) {
   2045   1.31   thorpej 				uvm_fault_unwire(map, start, va);
   2046    1.7       mrg 			}
   2047   1.58       chs 			return error;
   2048    1.7       mrg 		}
   2049    1.7       mrg 	}
   2050   1.58       chs 	return 0;
   2051    1.1       mrg }
   2052    1.1       mrg 
   2053    1.1       mrg /*
   2054    1.1       mrg  * uvm_fault_unwire(): unwire range of virtual space.
   2055    1.1       mrg  */
   2056    1.1       mrg 
   2057    1.7       mrg void
   2058   1.95   thorpej uvm_fault_unwire(struct vm_map *map, vaddr_t start, vaddr_t end)
   2059   1.36   thorpej {
   2060   1.36   thorpej 	vm_map_lock_read(map);
   2061   1.36   thorpej 	uvm_fault_unwire_locked(map, start, end);
   2062   1.36   thorpej 	vm_map_unlock_read(map);
   2063   1.36   thorpej }
   2064   1.36   thorpej 
   2065   1.36   thorpej /*
   2066   1.36   thorpej  * uvm_fault_unwire_locked(): the guts of uvm_fault_unwire().
   2067   1.36   thorpej  *
   2068   1.36   thorpej  * => map must be at least read-locked.
   2069   1.36   thorpej  */
   2070   1.36   thorpej 
   2071   1.36   thorpej void
   2072   1.95   thorpej uvm_fault_unwire_locked(struct vm_map *map, vaddr_t start, vaddr_t end)
   2073    1.7       mrg {
   2074   1.64       chs 	struct vm_map_entry *entry;
   2075   1.31   thorpej 	pmap_t pmap = vm_map_pmap(map);
   2076   1.42   thorpej 	vaddr_t va;
   2077   1.12       eeh 	paddr_t pa;
   2078   1.42   thorpej 	struct vm_page *pg;
   2079   1.31   thorpej 
   2080   1.52       chs 	KASSERT((map->flags & VM_MAP_INTRSAFE) == 0);
   2081    1.7       mrg 
   2082    1.7       mrg 	/*
   2083    1.7       mrg 	 * we assume that the area we are unwiring has actually been wired
   2084    1.7       mrg 	 * in the first place.   this means that we should be able to extract
   2085    1.7       mrg 	 * the PAs from the pmap.   we also lock out the page daemon so that
   2086    1.7       mrg 	 * we can call uvm_pageunwire.
   2087    1.7       mrg 	 */
   2088   1.37   thorpej 
   2089  1.122        ad 	mutex_enter(&uvm_pageqlock);
   2090    1.7       mrg 
   2091   1.37   thorpej 	/*
   2092   1.37   thorpej 	 * find the beginning map entry for the region.
   2093   1.37   thorpej 	 */
   2094   1.74       chs 
   2095   1.56       chs 	KASSERT(start >= vm_map_min(map) && end <= vm_map_max(map));
   2096  1.119   thorpej 	if (uvm_map_lookup_entry(map, start, &entry) == false)
   2097   1.37   thorpej 		panic("uvm_fault_unwire_locked: address not in map");
   2098   1.37   thorpej 
   2099   1.69       chs 	for (va = start; va < end; va += PAGE_SIZE) {
   2100  1.119   thorpej 		if (pmap_extract(pmap, va, &pa) == false)
   2101   1.74       chs 			continue;
   2102   1.42   thorpej 
   2103   1.42   thorpej 		/*
   2104   1.74       chs 		 * find the map entry for the current address.
   2105   1.42   thorpej 		 */
   2106   1.56       chs 
   2107   1.56       chs 		KASSERT(va >= entry->start);
   2108   1.74       chs 		while (va >= entry->end) {
   2109   1.56       chs 			KASSERT(entry->next != &map->header &&
   2110   1.56       chs 				entry->next->start <= entry->end);
   2111   1.42   thorpej 			entry = entry->next;
   2112   1.42   thorpej 		}
   2113   1.37   thorpej 
   2114   1.42   thorpej 		/*
   2115   1.42   thorpej 		 * if the entry is no longer wired, tell the pmap.
   2116   1.42   thorpej 		 */
   2117   1.74       chs 
   2118   1.42   thorpej 		if (VM_MAPENT_ISWIRED(entry) == 0)
   2119   1.42   thorpej 			pmap_unwire(pmap, va);
   2120   1.42   thorpej 
   2121   1.42   thorpej 		pg = PHYS_TO_VM_PAGE(pa);
   2122   1.42   thorpej 		if (pg)
   2123   1.42   thorpej 			uvm_pageunwire(pg);
   2124    1.7       mrg 	}
   2125    1.1       mrg 
   2126  1.122        ad 	mutex_exit(&uvm_pageqlock);
   2127    1.1       mrg }
   2128