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vm.c revision 1.54
      1 /*	$NetBSD: vm.c,v 1.54 2009/04/24 13:27:03 pooka Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 2007 Antti Kantee.  All Rights Reserved.
      5  *
      6  * Development of this software was supported by Google Summer of Code.
      7  *
      8  * Redistribution and use in source and binary forms, with or without
      9  * modification, are permitted provided that the following conditions
     10  * are met:
     11  * 1. Redistributions of source code must retain the above copyright
     12  *    notice, this list of conditions and the following disclaimer.
     13  * 2. Redistributions in binary form must reproduce the above copyright
     14  *    notice, this list of conditions and the following disclaimer in the
     15  *    documentation and/or other materials provided with the distribution.
     16  *
     17  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     18  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     19  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     20  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     21  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     22  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     23  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     24  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     25  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     26  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     27  * SUCH DAMAGE.
     28  */
     29 
     30 /*
     31  * Virtual memory emulation routines.  Contents:
     32  *  + anon objects & pager
     33  *  + misc support routines
     34  *  + kmem
     35  */
     36 
     37 /*
     38  * XXX: we abuse pg->uanon for the virtual address of the storage
     39  * for each page.  phys_addr would fit the job description better,
     40  * except that it will create unnecessary lossage on some platforms
     41  * due to not being a pointer type.
     42  */
     43 
     44 #include <sys/cdefs.h>
     45 __KERNEL_RCSID(0, "$NetBSD: vm.c,v 1.54 2009/04/24 13:27:03 pooka Exp $");
     46 
     47 #include <sys/param.h>
     48 #include <sys/atomic.h>
     49 #include <sys/null.h>
     50 #include <sys/vnode.h>
     51 #include <sys/buf.h>
     52 #include <sys/kmem.h>
     53 
     54 #include <machine/pmap.h>
     55 
     56 #include <rump/rumpuser.h>
     57 
     58 #include <uvm/uvm.h>
     59 #include <uvm/uvm_prot.h>
     60 
     61 #include "rump_private.h"
     62 
     63 static int ao_get(struct uvm_object *, voff_t, struct vm_page **,
     64 	int *, int, vm_prot_t, int, int);
     65 static int ao_put(struct uvm_object *, voff_t, voff_t, int);
     66 
     67 const struct uvm_pagerops aobj_pager = {
     68 	.pgo_get = ao_get,
     69 	.pgo_put = ao_put,
     70 };
     71 
     72 kmutex_t uvm_pageqlock;
     73 
     74 struct uvmexp uvmexp;
     75 struct uvm uvm;
     76 
     77 struct vmspace rump_vmspace;
     78 struct vm_map rump_vmmap;
     79 static struct vm_map_kernel kmem_map_store;
     80 struct vm_map *kmem_map = &kmem_map_store.vmk_map;
     81 const struct rb_tree_ops uvm_page_tree_ops;
     82 
     83 static struct vm_map_kernel kernel_map_store;
     84 struct vm_map *kernel_map = &kernel_map_store.vmk_map;
     85 
     86 /*
     87  * vm pages
     88  */
     89 
     90 /* called with the object locked */
     91 struct vm_page *
     92 rumpvm_makepage(struct uvm_object *uobj, voff_t off)
     93 {
     94 	struct vm_page *pg;
     95 
     96 	pg = kmem_zalloc(sizeof(struct vm_page), KM_SLEEP);
     97 	pg->offset = off;
     98 	pg->uobject = uobj;
     99 
    100 	pg->uanon = (void *)kmem_zalloc(PAGE_SIZE, KM_SLEEP);
    101 	pg->flags = PG_CLEAN|PG_BUSY|PG_FAKE;
    102 
    103 	TAILQ_INSERT_TAIL(&uobj->memq, pg, listq.queue);
    104 
    105 	return pg;
    106 }
    107 
    108 /*
    109  * Release a page.
    110  *
    111  * Called with the vm object locked.
    112  */
    113 void
    114 uvm_pagefree(struct vm_page *pg)
    115 {
    116 	struct uvm_object *uobj = pg->uobject;
    117 
    118 	if (pg->flags & PG_WANTED)
    119 		wakeup(pg);
    120 
    121 	TAILQ_REMOVE(&uobj->memq, pg, listq.queue);
    122 	kmem_free((void *)pg->uanon, PAGE_SIZE);
    123 	kmem_free(pg, sizeof(*pg));
    124 }
    125 
    126 struct rumpva {
    127 	vaddr_t addr;
    128 	struct vm_page *pg;
    129 
    130 	LIST_ENTRY(rumpva) entries;
    131 };
    132 static LIST_HEAD(, rumpva) rvahead = LIST_HEAD_INITIALIZER(rvahead);
    133 static kmutex_t rvamtx;
    134 
    135 void
    136 rumpvm_enterva(vaddr_t addr, struct vm_page *pg)
    137 {
    138 	struct rumpva *rva;
    139 
    140 	rva = kmem_alloc(sizeof(struct rumpva), KM_SLEEP);
    141 	rva->addr = addr;
    142 	rva->pg = pg;
    143 	mutex_enter(&rvamtx);
    144 	LIST_INSERT_HEAD(&rvahead, rva, entries);
    145 	mutex_exit(&rvamtx);
    146 }
    147 
    148 void
    149 rumpvm_flushva(struct uvm_object *uobj)
    150 {
    151 	struct rumpva *rva, *rva_next;
    152 
    153 	mutex_enter(&rvamtx);
    154 	for (rva = LIST_FIRST(&rvahead); rva; rva = rva_next) {
    155 		rva_next = LIST_NEXT(rva, entries);
    156 		if (rva->pg->uobject == uobj) {
    157 			LIST_REMOVE(rva, entries);
    158 			uvm_page_unbusy(&rva->pg, 1);
    159 			kmem_free(rva, sizeof(*rva));
    160 		}
    161 	}
    162 	mutex_exit(&rvamtx);
    163 }
    164 
    165 /*
    166  * Anon object stuff
    167  */
    168 
    169 static int
    170 ao_get(struct uvm_object *uobj, voff_t off, struct vm_page **pgs,
    171 	int *npages, int centeridx, vm_prot_t access_type,
    172 	int advice, int flags)
    173 {
    174 	struct vm_page *pg;
    175 	int i;
    176 
    177 	if (centeridx)
    178 		panic("%s: centeridx != 0 not supported", __func__);
    179 
    180 	/* loop over pages */
    181 	off = trunc_page(off);
    182 	for (i = 0; i < *npages; i++) {
    183  retrylookup:
    184 		pg = uvm_pagelookup(uobj, off + (i << PAGE_SHIFT));
    185 		if (pg) {
    186 			if (pg->flags & PG_BUSY) {
    187 				pg->flags |= PG_WANTED;
    188 				UVM_UNLOCK_AND_WAIT(pg, &uobj->vmobjlock, 0,
    189 				    "aogetpg", 0);
    190 				goto retrylookup;
    191 			}
    192 			pg->flags |= PG_BUSY;
    193 			pgs[i] = pg;
    194 		} else {
    195 			pg = rumpvm_makepage(uobj, off + (i << PAGE_SHIFT));
    196 			pgs[i] = pg;
    197 		}
    198 	}
    199 	mutex_exit(&uobj->vmobjlock);
    200 
    201 	return 0;
    202 
    203 }
    204 
    205 static int
    206 ao_put(struct uvm_object *uobj, voff_t start, voff_t stop, int flags)
    207 {
    208 	struct vm_page *pg;
    209 
    210 	/* we only free all pages for now */
    211 	if ((flags & PGO_FREE) == 0 || (flags & PGO_ALLPAGES) == 0) {
    212 		mutex_exit(&uobj->vmobjlock);
    213 		return 0;
    214 	}
    215 
    216 	while ((pg = TAILQ_FIRST(&uobj->memq)) != NULL)
    217 		uvm_pagefree(pg);
    218 	mutex_exit(&uobj->vmobjlock);
    219 
    220 	return 0;
    221 }
    222 
    223 struct uvm_object *
    224 uao_create(vsize_t size, int flags)
    225 {
    226 	struct uvm_object *uobj;
    227 
    228 	uobj = kmem_zalloc(sizeof(struct uvm_object), KM_SLEEP);
    229 	uobj->pgops = &aobj_pager;
    230 	TAILQ_INIT(&uobj->memq);
    231 	mutex_init(&uobj->vmobjlock, MUTEX_DEFAULT, IPL_NONE);
    232 
    233 	return uobj;
    234 }
    235 
    236 void
    237 uao_detach(struct uvm_object *uobj)
    238 {
    239 
    240 	mutex_enter(&uobj->vmobjlock);
    241 	ao_put(uobj, 0, 0, PGO_ALLPAGES | PGO_FREE);
    242 	kmem_free(uobj, sizeof(*uobj));
    243 }
    244 
    245 /*
    246  * Misc routines
    247  */
    248 
    249 static kmutex_t cachepgmtx;
    250 
    251 void
    252 rumpvm_init(void)
    253 {
    254 
    255 	uvmexp.free = 1024*1024; /* XXX */
    256 	uvm.pagedaemon_lwp = NULL; /* doesn't match curlwp */
    257 	rump_vmspace.vm_map.pmap = pmap_kernel();
    258 
    259 	mutex_init(&rvamtx, MUTEX_DEFAULT, 0);
    260 	mutex_init(&uvm_pageqlock, MUTEX_DEFAULT, 0);
    261 	mutex_init(&cachepgmtx, MUTEX_DEFAULT, 0);
    262 
    263 	kernel_map->pmap = pmap_kernel();
    264 	callback_head_init(&kernel_map_store.vmk_reclaim_callback, IPL_VM);
    265 	kmem_map->pmap = pmap_kernel();
    266 	callback_head_init(&kmem_map_store.vmk_reclaim_callback, IPL_VM);
    267 }
    268 
    269 void
    270 uvm_pageactivate(struct vm_page *pg)
    271 {
    272 
    273 	/* nada */
    274 }
    275 
    276 void
    277 uvm_pagewire(struct vm_page *pg)
    278 {
    279 
    280 	/* nada */
    281 }
    282 
    283 void
    284 uvm_pageunwire(struct vm_page *pg)
    285 {
    286 
    287 	/* nada */
    288 }
    289 
    290 int
    291 uvm_mmap(struct vm_map *map, vaddr_t *addr, vsize_t size, vm_prot_t prot,
    292 	vm_prot_t maxprot, int flags, void *handle, voff_t off, vsize_t locklim)
    293 {
    294 
    295 	panic("%s: unimplemented", __func__);
    296 }
    297 
    298 vaddr_t
    299 uvm_pagermapin(struct vm_page **pps, int npages, int flags)
    300 {
    301 
    302 	panic("%s: unimplemented", __func__);
    303 }
    304 
    305 /* Called with the vm object locked */
    306 struct vm_page *
    307 uvm_pagelookup(struct uvm_object *uobj, voff_t off)
    308 {
    309 	struct vm_page *pg;
    310 
    311 	TAILQ_FOREACH(pg, &uobj->memq, listq.queue) {
    312 		if (pg->offset == off) {
    313 			return pg;
    314 		}
    315 	}
    316 
    317 	return NULL;
    318 }
    319 
    320 struct vm_page *
    321 uvm_pageratop(vaddr_t va)
    322 {
    323 	struct rumpva *rva;
    324 
    325 	mutex_enter(&rvamtx);
    326 	LIST_FOREACH(rva, &rvahead, entries)
    327 		if (rva->addr == va)
    328 			break;
    329 	mutex_exit(&rvamtx);
    330 
    331 	if (rva == NULL)
    332 		panic("%s: va %llu", __func__, (unsigned long long)va);
    333 
    334 	return rva->pg;
    335 }
    336 
    337 void
    338 uvm_page_unbusy(struct vm_page **pgs, int npgs)
    339 {
    340 	struct vm_page *pg;
    341 	int i;
    342 
    343 	for (i = 0; i < npgs; i++) {
    344 		pg = pgs[i];
    345 		if (pg == NULL)
    346 			continue;
    347 
    348 		KASSERT(pg->flags & PG_BUSY);
    349 		if (pg->flags & PG_WANTED)
    350 			wakeup(pg);
    351 		if (pg->flags & PG_RELEASED)
    352 			uvm_pagefree(pg);
    353 		else
    354 			pg->flags &= ~(PG_WANTED|PG_BUSY);
    355 	}
    356 }
    357 
    358 void
    359 uvm_estimatepageable(int *active, int *inactive)
    360 {
    361 
    362 	/* XXX: guessing game */
    363 	*active = 1024;
    364 	*inactive = 1024;
    365 }
    366 
    367 struct vm_map_kernel *
    368 vm_map_to_kernel(struct vm_map *map)
    369 {
    370 
    371 	return (struct vm_map_kernel *)map;
    372 }
    373 
    374 bool
    375 vm_map_starved_p(struct vm_map *map)
    376 {
    377 
    378 	return false;
    379 }
    380 
    381 void
    382 uvm_pageout_start(int npages)
    383 {
    384 
    385 	uvmexp.paging += npages;
    386 }
    387 
    388 void
    389 uvm_pageout_done(int npages)
    390 {
    391 
    392 	uvmexp.paging -= npages;
    393 
    394 	/*
    395 	 * wake up either of pagedaemon or LWPs waiting for it.
    396 	 */
    397 
    398 	if (uvmexp.free <= uvmexp.reserve_kernel) {
    399 		wakeup(&uvm.pagedaemon);
    400 	} else {
    401 		wakeup(&uvmexp.free);
    402 	}
    403 }
    404 
    405 /* XXX: following two are unfinished because lwp's are not refcounted yet */
    406 void
    407 uvm_lwp_hold(struct lwp *l)
    408 {
    409 
    410 	atomic_inc_uint(&l->l_holdcnt);
    411 }
    412 
    413 void
    414 uvm_lwp_rele(struct lwp *l)
    415 {
    416 
    417 	atomic_dec_uint(&l->l_holdcnt);
    418 }
    419 
    420 int
    421 uvm_loan(struct vm_map *map, vaddr_t start, vsize_t len, void *v, int flags)
    422 {
    423 
    424 	panic("%s: unimplemented", __func__);
    425 }
    426 
    427 void
    428 uvm_unloan(void *v, int npages, int flags)
    429 {
    430 
    431 	panic("%s: unimplemented", __func__);
    432 }
    433 
    434 int
    435 uvm_loanuobjpages(struct uvm_object *uobj, voff_t pgoff, int orignpages,
    436 	struct vm_page **opp)
    437 {
    438 
    439 	panic("%s: unimplemented", __func__);
    440 }
    441 
    442 /*
    443  * Kmem
    444  */
    445 
    446 #ifndef RUMP_USE_REAL_ALLOCATORS
    447 void
    448 kmem_init()
    449 {
    450 
    451 	/* nothing to do */
    452 }
    453 
    454 void *
    455 kmem_alloc(size_t size, km_flag_t kmflag)
    456 {
    457 
    458 	return rumpuser_malloc(size, kmflag == KM_NOSLEEP);
    459 }
    460 
    461 void *
    462 kmem_zalloc(size_t size, km_flag_t kmflag)
    463 {
    464 	void *rv;
    465 
    466 	rv = kmem_alloc(size, kmflag);
    467 	if (rv)
    468 		memset(rv, 0, size);
    469 
    470 	return rv;
    471 }
    472 
    473 void
    474 kmem_free(void *p, size_t size)
    475 {
    476 
    477 	rumpuser_free(p);
    478 }
    479 #endif /* RUMP_USE_REAL_ALLOCATORS */
    480 
    481 /*
    482  * UVM km
    483  */
    484 
    485 vaddr_t
    486 uvm_km_alloc(struct vm_map *map, vsize_t size, vsize_t align, uvm_flag_t flags)
    487 {
    488 	void *rv;
    489 	int alignbit, error;
    490 
    491 	alignbit = 0;
    492 	if (align) {
    493 		alignbit = ffs(align)-1;
    494 	}
    495 
    496 	rv = rumpuser_anonmmap(size, alignbit, flags & UVM_KMF_EXEC, &error);
    497 	if (rv == NULL) {
    498 		if (flags & (UVM_KMF_CANFAIL | UVM_KMF_NOWAIT))
    499 			return 0;
    500 		else
    501 			panic("uvm_km_alloc failed");
    502 	}
    503 
    504 	if (flags & UVM_KMF_ZERO)
    505 		memset(rv, 0, size);
    506 
    507 	return (vaddr_t)rv;
    508 }
    509 
    510 void
    511 uvm_km_free(struct vm_map *map, vaddr_t vaddr, vsize_t size, uvm_flag_t flags)
    512 {
    513 
    514 	rumpuser_unmap((void *)vaddr, size);
    515 }
    516 
    517 struct vm_map *
    518 uvm_km_suballoc(struct vm_map *map, vaddr_t *minaddr, vaddr_t *maxaddr,
    519 	vsize_t size, int pageable, bool fixed, struct vm_map_kernel *submap)
    520 {
    521 
    522 	return (struct vm_map *)417416;
    523 }
    524 
    525 vaddr_t
    526 uvm_km_alloc_poolpage(struct vm_map *map, bool waitok)
    527 {
    528 
    529 	return (vaddr_t)rumpuser_malloc(PAGE_SIZE, !waitok);
    530 }
    531 
    532 void
    533 uvm_km_free_poolpage(struct vm_map *map, vaddr_t addr)
    534 {
    535 
    536 	rumpuser_unmap((void *)addr, PAGE_SIZE);
    537 }
    538 
    539 vaddr_t
    540 uvm_km_alloc_poolpage_cache(struct vm_map *map, bool waitok)
    541 {
    542 	void *rv;
    543 	int error;
    544 
    545 	rv = rumpuser_anonmmap(PAGE_SIZE, PAGE_SHIFT, 0, &error);
    546 	if (rv == NULL && waitok)
    547 		panic("fixme: poolpage alloc failed");
    548 
    549 	return (vaddr_t)rv;
    550 }
    551 
    552 void
    553 uvm_km_free_poolpage_cache(struct vm_map *map, vaddr_t vaddr)
    554 {
    555 
    556 	rumpuser_unmap((void *)vaddr, PAGE_SIZE);
    557 }
    558