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x86_xpmap.c revision 1.12.4.5
      1  1.12.4.5     jym /*	$NetBSD: x86_xpmap.c,v 1.12.4.5 2009/07/24 11:30:28 jym Exp $	*/
      2       1.2  bouyer 
      3       1.2  bouyer /*
      4       1.2  bouyer  * Copyright (c) 2006 Mathieu Ropert <mro (at) adviseo.fr>
      5       1.2  bouyer  *
      6       1.2  bouyer  * Permission to use, copy, modify, and distribute this software for any
      7       1.2  bouyer  * purpose with or without fee is hereby granted, provided that the above
      8       1.2  bouyer  * copyright notice and this permission notice appear in all copies.
      9       1.2  bouyer  *
     10       1.2  bouyer  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
     11       1.2  bouyer  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
     12       1.2  bouyer  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
     13       1.2  bouyer  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
     14       1.2  bouyer  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
     15       1.2  bouyer  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
     16       1.2  bouyer  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
     17       1.2  bouyer  */
     18       1.2  bouyer 
     19       1.2  bouyer /*
     20       1.2  bouyer  * Copyright (c) 2006, 2007 Manuel Bouyer.
     21       1.2  bouyer  *
     22       1.2  bouyer  * Redistribution and use in source and binary forms, with or without
     23       1.2  bouyer  * modification, are permitted provided that the following conditions
     24       1.2  bouyer  * are met:
     25       1.2  bouyer  * 1. Redistributions of source code must retain the above copyright
     26       1.2  bouyer  *    notice, this list of conditions and the following disclaimer.
     27       1.2  bouyer  * 2. Redistributions in binary form must reproduce the above copyright
     28       1.2  bouyer  *    notice, this list of conditions and the following disclaimer in the
     29       1.2  bouyer  *    documentation and/or other materials provided with the distribution.
     30       1.2  bouyer  * 3. All advertising materials mentioning features or use of this software
     31       1.2  bouyer  *    must display the following acknowledgement:
     32       1.2  bouyer  *	This product includes software developed by Manuel Bouyer.
     33       1.2  bouyer  * 4. The name of the author may not be used to endorse or promote products
     34       1.2  bouyer  *    derived from this software without specific prior written permission.
     35       1.2  bouyer  *
     36       1.2  bouyer  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     37       1.2  bouyer  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     38       1.2  bouyer  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     39       1.2  bouyer  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     40       1.2  bouyer  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     41       1.2  bouyer  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     42       1.2  bouyer  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     43       1.2  bouyer  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     44       1.2  bouyer  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     45       1.2  bouyer  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     46       1.2  bouyer  *
     47       1.2  bouyer  */
     48       1.2  bouyer 
     49       1.2  bouyer /*
     50       1.2  bouyer  *
     51       1.2  bouyer  * Copyright (c) 2004 Christian Limpach.
     52       1.2  bouyer  * All rights reserved.
     53       1.2  bouyer  *
     54       1.2  bouyer  * Redistribution and use in source and binary forms, with or without
     55       1.2  bouyer  * modification, are permitted provided that the following conditions
     56       1.2  bouyer  * are met:
     57       1.2  bouyer  * 1. Redistributions of source code must retain the above copyright
     58       1.2  bouyer  *    notice, this list of conditions and the following disclaimer.
     59       1.2  bouyer  * 2. Redistributions in binary form must reproduce the above copyright
     60       1.2  bouyer  *    notice, this list of conditions and the following disclaimer in the
     61       1.2  bouyer  *    documentation and/or other materials provided with the distribution.
     62       1.2  bouyer  * 3. All advertising materials mentioning features or use of this software
     63       1.2  bouyer  *    must display the following acknowledgement:
     64       1.2  bouyer  *      This product includes software developed by Christian Limpach.
     65       1.2  bouyer  * 4. The name of the author may not be used to endorse or promote products
     66       1.2  bouyer  *    derived from this software without specific prior written permission.
     67       1.2  bouyer  *
     68       1.2  bouyer  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     69       1.2  bouyer  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     70       1.2  bouyer  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     71       1.2  bouyer  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     72       1.2  bouyer  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     73       1.2  bouyer  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     74       1.2  bouyer  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     75       1.2  bouyer  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     76       1.2  bouyer  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     77       1.2  bouyer  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     78       1.2  bouyer  */
     79       1.2  bouyer 
     80       1.2  bouyer 
     81       1.2  bouyer #include <sys/cdefs.h>
     82  1.12.4.5     jym __KERNEL_RCSID(0, "$NetBSD: x86_xpmap.c,v 1.12.4.5 2009/07/24 11:30:28 jym Exp $");
     83       1.2  bouyer 
     84       1.2  bouyer #include "opt_xen.h"
     85       1.4  bouyer #include "opt_ddb.h"
     86       1.4  bouyer #include "ksyms.h"
     87       1.2  bouyer 
     88       1.2  bouyer #include <sys/param.h>
     89       1.2  bouyer #include <sys/systm.h>
     90  1.12.4.1     jym #include <sys/rwlock.h>
     91       1.2  bouyer 
     92       1.2  bouyer #include <uvm/uvm.h>
     93       1.2  bouyer 
     94       1.2  bouyer #include <machine/pmap.h>
     95       1.2  bouyer #include <machine/gdt.h>
     96       1.2  bouyer #include <xen/xenfunc.h>
     97       1.2  bouyer 
     98       1.2  bouyer #include <dev/isa/isareg.h>
     99       1.2  bouyer #include <machine/isa_machdep.h>
    100       1.2  bouyer 
    101       1.2  bouyer #undef	XENDEBUG
    102       1.2  bouyer /* #define XENDEBUG_SYNC */
    103       1.2  bouyer /* #define	XENDEBUG_LOW */
    104       1.2  bouyer 
    105       1.2  bouyer #ifdef XENDEBUG
    106       1.2  bouyer #define	XENPRINTF(x) printf x
    107       1.2  bouyer #define	XENPRINTK(x) printk x
    108       1.2  bouyer #define	XENPRINTK2(x) /* printk x */
    109       1.2  bouyer 
    110       1.2  bouyer static char XBUF[256];
    111       1.2  bouyer #else
    112       1.2  bouyer #define	XENPRINTF(x)
    113       1.2  bouyer #define	XENPRINTK(x)
    114       1.2  bouyer #define	XENPRINTK2(x)
    115       1.2  bouyer #endif
    116       1.2  bouyer #define	PRINTF(x) printf x
    117       1.2  bouyer #define	PRINTK(x) printk x
    118       1.2  bouyer 
    119       1.4  bouyer /* on x86_64 kernel runs in ring 3 */
    120       1.4  bouyer #ifdef __x86_64__
    121       1.4  bouyer #define PG_k PG_u
    122       1.4  bouyer #else
    123       1.4  bouyer #define PG_k 0
    124       1.4  bouyer #endif
    125       1.4  bouyer 
    126       1.2  bouyer volatile shared_info_t *HYPERVISOR_shared_info;
    127      1.11     jym /* Xen requires the start_info struct to be page aligned */
    128      1.11     jym union start_info_union start_info_union __aligned(PAGE_SIZE);
    129       1.6  bouyer unsigned long *xpmap_phys_to_machine_mapping;
    130       1.2  bouyer 
    131  1.12.4.1     jym /*
    132  1.12.4.1     jym  * We should avoid the domU to manipulate MFNs when it is suspending
    133  1.12.4.1     jym  * or migrating, as they could be invalid once domU resumes operations.
    134  1.12.4.1     jym  *
    135  1.12.4.1     jym  * We use a read/write lock for that: when a thread is expected to
    136  1.12.4.1     jym  * manipulate MFNs, it should first acquire a reader lock, then proceed
    137  1.12.4.1     jym  * to MFN's manipulation. Once it has finished with it, the reader lock is
    138  1.12.4.1     jym  * released.
    139  1.12.4.1     jym  *
    140  1.12.4.1     jym  * The thread responsible for the domU suspension will acquire an exclusive
    141  1.12.4.1     jym  * (writer) lock.
    142  1.12.4.3     jym  *
    143  1.12.4.3     jym  * XXX JYM the locking will need revisit - rwlock(9) is currently inadequate
    144  1.12.4.1     jym  */
    145  1.12.4.1     jym static krwlock_t xen_ptom_lock;
    146  1.12.4.1     jym 
    147  1.12.4.1     jym void
    148  1.12.4.1     jym xen_init_ptom_lock(void) {
    149  1.12.4.1     jym 	rw_init(&xen_ptom_lock);
    150  1.12.4.1     jym }
    151  1.12.4.1     jym 
    152  1.12.4.1     jym void
    153  1.12.4.1     jym xen_release_ptom_lock(void) {
    154  1.12.4.3     jym 	/* rw_exit(&xen_ptom_lock); */
    155  1.12.4.1     jym }
    156  1.12.4.1     jym 
    157  1.12.4.1     jym void
    158  1.12.4.1     jym xen_acquire_reader_ptom_lock(void) {
    159  1.12.4.3     jym 	/* rw_enter(&xen_ptom_lock, RW_READER); */
    160  1.12.4.1     jym }
    161  1.12.4.1     jym 
    162  1.12.4.1     jym void
    163  1.12.4.1     jym xen_acquire_writer_ptom_lock(void) {
    164  1.12.4.3     jym 	/* rw_enter(&xen_ptom_lock, RW_WRITER); */
    165  1.12.4.1     jym }
    166  1.12.4.1     jym 
    167       1.2  bouyer void xen_failsafe_handler(void);
    168       1.2  bouyer 
    169       1.2  bouyer #ifdef XEN3
    170       1.2  bouyer #define HYPERVISOR_mmu_update_self(req, count, success_count) \
    171       1.2  bouyer 	HYPERVISOR_mmu_update((req), (count), (success_count), DOMID_SELF)
    172       1.2  bouyer #else
    173       1.2  bouyer #define HYPERVISOR_mmu_update_self(req, count, success_count) \
    174       1.2  bouyer 	HYPERVISOR_mmu_update((req), (count), (success_count))
    175       1.2  bouyer #endif
    176       1.2  bouyer 
    177       1.2  bouyer void
    178       1.2  bouyer xen_failsafe_handler(void)
    179       1.2  bouyer {
    180       1.2  bouyer 
    181       1.2  bouyer 	panic("xen_failsafe_handler called!\n");
    182       1.2  bouyer }
    183       1.2  bouyer 
    184       1.2  bouyer 
    185       1.2  bouyer void
    186       1.2  bouyer xen_set_ldt(vaddr_t base, uint32_t entries)
    187       1.2  bouyer {
    188       1.2  bouyer 	vaddr_t va;
    189       1.2  bouyer 	vaddr_t end;
    190       1.4  bouyer 	pt_entry_t *ptp;
    191       1.2  bouyer 	int s;
    192       1.2  bouyer 
    193       1.2  bouyer #ifdef __x86_64__
    194       1.2  bouyer 	end = base + (entries << 3);
    195       1.2  bouyer #else
    196       1.2  bouyer 	end = base + entries * sizeof(union descriptor);
    197       1.2  bouyer #endif
    198       1.2  bouyer 
    199  1.12.4.1     jym #ifdef XEN3
    200  1.12.4.1     jym 	xen_acquire_reader_ptom_lock();
    201  1.12.4.1     jym #endif
    202  1.12.4.1     jym 
    203       1.2  bouyer 	for (va = base; va < end; va += PAGE_SIZE) {
    204       1.2  bouyer 		KASSERT(va >= VM_MIN_KERNEL_ADDRESS);
    205       1.2  bouyer 		ptp = kvtopte(va);
    206       1.5  bouyer 		XENPRINTF(("xen_set_ldt %p %d %p\n", (void *)base,
    207       1.5  bouyer 			      entries, ptp));
    208       1.4  bouyer 		pmap_pte_clearbits(ptp, PG_RW);
    209       1.2  bouyer 	}
    210       1.2  bouyer 	s = splvm();
    211       1.2  bouyer 	xpq_queue_set_ldt(base, entries);
    212       1.2  bouyer 	xpq_flush_queue();
    213  1.12.4.1     jym 
    214  1.12.4.1     jym #ifdef XEN3
    215  1.12.4.1     jym 	xen_release_ptom_lock();
    216  1.12.4.1     jym #endif
    217  1.12.4.1     jym 
    218       1.2  bouyer 	splx(s);
    219       1.2  bouyer }
    220       1.2  bouyer 
    221       1.2  bouyer #ifdef XENDEBUG
    222       1.2  bouyer void xpq_debug_dump(void);
    223       1.2  bouyer #endif
    224       1.2  bouyer 
    225       1.2  bouyer #define XPQUEUE_SIZE 2048
    226       1.2  bouyer static mmu_update_t xpq_queue[XPQUEUE_SIZE];
    227       1.2  bouyer static int xpq_idx = 0;
    228       1.2  bouyer 
    229       1.2  bouyer void
    230       1.8  cegger xpq_flush_queue(void)
    231       1.2  bouyer {
    232       1.2  bouyer 	int i, ok;
    233       1.2  bouyer 
    234       1.2  bouyer 	XENPRINTK2(("flush queue %p entries %d\n", xpq_queue, xpq_idx));
    235       1.2  bouyer 	for (i = 0; i < xpq_idx; i++)
    236       1.6  bouyer 		XENPRINTK2(("%d: %p %08" PRIx64 "\n", i,
    237       1.8  cegger 		    (uint64_t)xpq_queue[i].ptr, (uint64_t)xpq_queue[i].val));
    238       1.2  bouyer 	if (xpq_idx != 0 &&
    239       1.2  bouyer 	    HYPERVISOR_mmu_update_self(xpq_queue, xpq_idx, &ok) < 0) {
    240       1.2  bouyer 		printf("xpq_flush_queue: %d entries \n", xpq_idx);
    241       1.2  bouyer 		for (i = 0; i < xpq_idx; i++)
    242       1.3  bouyer 			printf("0x%016" PRIx64 ": 0x%016" PRIx64 "\n",
    243       1.8  cegger 			   (uint64_t)xpq_queue[i].ptr,
    244       1.8  cegger 			   (uint64_t)xpq_queue[i].val);
    245       1.2  bouyer 		panic("HYPERVISOR_mmu_update failed\n");
    246       1.2  bouyer 	}
    247       1.2  bouyer 	xpq_idx = 0;
    248       1.2  bouyer }
    249       1.2  bouyer 
    250       1.2  bouyer static inline void
    251       1.2  bouyer xpq_increment_idx(void)
    252       1.2  bouyer {
    253       1.2  bouyer 
    254       1.2  bouyer 	xpq_idx++;
    255       1.2  bouyer 	if (__predict_false(xpq_idx == XPQUEUE_SIZE))
    256       1.2  bouyer 		xpq_flush_queue();
    257       1.2  bouyer }
    258       1.2  bouyer 
    259       1.2  bouyer void
    260       1.2  bouyer xpq_queue_machphys_update(paddr_t ma, paddr_t pa)
    261       1.2  bouyer {
    262       1.6  bouyer 	XENPRINTK2(("xpq_queue_machphys_update ma=0x%" PRIx64 " pa=0x%" PRIx64
    263       1.6  bouyer 	    "\n", (int64_t)ma, (int64_t)pa));
    264       1.2  bouyer 	xpq_queue[xpq_idx].ptr = ma | MMU_MACHPHYS_UPDATE;
    265       1.2  bouyer 	xpq_queue[xpq_idx].val = (pa - XPMAP_OFFSET) >> PAGE_SHIFT;
    266       1.2  bouyer 	xpq_increment_idx();
    267       1.2  bouyer #ifdef XENDEBUG_SYNC
    268       1.2  bouyer 	xpq_flush_queue();
    269       1.2  bouyer #endif
    270       1.2  bouyer }
    271       1.2  bouyer 
    272       1.2  bouyer void
    273       1.6  bouyer xpq_queue_pte_update(paddr_t ptr, pt_entry_t val)
    274       1.2  bouyer {
    275       1.2  bouyer 
    276       1.6  bouyer 	KASSERT((ptr & 3) == 0);
    277       1.2  bouyer 	xpq_queue[xpq_idx].ptr = (paddr_t)ptr | MMU_NORMAL_PT_UPDATE;
    278       1.2  bouyer 	xpq_queue[xpq_idx].val = val;
    279       1.2  bouyer 	xpq_increment_idx();
    280       1.2  bouyer #ifdef XENDEBUG_SYNC
    281       1.2  bouyer 	xpq_flush_queue();
    282       1.2  bouyer #endif
    283       1.2  bouyer }
    284       1.2  bouyer 
    285       1.2  bouyer #ifdef XEN3
    286       1.2  bouyer void
    287       1.2  bouyer xpq_queue_pt_switch(paddr_t pa)
    288       1.2  bouyer {
    289       1.2  bouyer 	struct mmuext_op op;
    290       1.2  bouyer 	xpq_flush_queue();
    291       1.2  bouyer 
    292       1.6  bouyer 	XENPRINTK2(("xpq_queue_pt_switch: 0x%" PRIx64 " 0x%" PRIx64 "\n",
    293       1.6  bouyer 	    (int64_t)pa, (int64_t)pa));
    294       1.2  bouyer 	op.cmd = MMUEXT_NEW_BASEPTR;
    295       1.2  bouyer 	op.arg1.mfn = pa >> PAGE_SHIFT;
    296       1.2  bouyer 	if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
    297       1.2  bouyer 		panic("xpq_queue_pt_switch");
    298       1.2  bouyer }
    299       1.2  bouyer 
    300       1.2  bouyer void
    301  1.12.4.5     jym xpq_queue_pin_table(paddr_t pa, unsigned int level) {
    302       1.2  bouyer 
    303       1.6  bouyer 	struct mmuext_op op;
    304       1.6  bouyer 	xpq_flush_queue();
    305       1.6  bouyer 
    306  1.12.4.5     jym 	XENPRINTK2(("xpq_queue_pin_table: level %u %#"PRIx64"\n",
    307  1.12.4.5     jym 	    level, (int64_t)pa));
    308  1.12.4.5     jym 
    309       1.6  bouyer 	op.arg1.mfn = pa >> PAGE_SHIFT;
    310  1.12.4.5     jym 	op.cmd = level;
    311       1.6  bouyer 
    312       1.6  bouyer 	if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
    313  1.12.4.5     jym 		panic("xpq_queue_pin_table: level %u %#"PRIx64"\n",
    314  1.12.4.5     jym 		    level, (int64_t)pa);
    315       1.6  bouyer }
    316       1.6  bouyer 
    317       1.2  bouyer void
    318       1.2  bouyer xpq_queue_unpin_table(paddr_t pa)
    319       1.2  bouyer {
    320       1.2  bouyer 	struct mmuext_op op;
    321       1.2  bouyer 	xpq_flush_queue();
    322       1.2  bouyer 
    323       1.6  bouyer 	XENPRINTK2(("xpq_queue_unpin_table: 0x%" PRIx64 " 0x%" PRIx64 "\n",
    324       1.6  bouyer 	    (int64_t)pa, (int64_t)pa));
    325       1.2  bouyer 	op.arg1.mfn = pa >> PAGE_SHIFT;
    326       1.2  bouyer 	op.cmd = MMUEXT_UNPIN_TABLE;
    327       1.2  bouyer 	if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
    328       1.2  bouyer 		panic("xpq_queue_unpin_table");
    329       1.2  bouyer }
    330       1.2  bouyer 
    331       1.2  bouyer void
    332       1.2  bouyer xpq_queue_set_ldt(vaddr_t va, uint32_t entries)
    333       1.2  bouyer {
    334       1.2  bouyer 	struct mmuext_op op;
    335       1.2  bouyer 	xpq_flush_queue();
    336       1.2  bouyer 
    337       1.2  bouyer 	XENPRINTK2(("xpq_queue_set_ldt\n"));
    338       1.2  bouyer 	KASSERT(va == (va & ~PAGE_MASK));
    339       1.2  bouyer 	op.cmd = MMUEXT_SET_LDT;
    340       1.2  bouyer 	op.arg1.linear_addr = va;
    341       1.2  bouyer 	op.arg2.nr_ents = entries;
    342       1.2  bouyer 	if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
    343       1.2  bouyer 		panic("xpq_queue_set_ldt");
    344       1.2  bouyer }
    345       1.2  bouyer 
    346       1.2  bouyer void
    347       1.8  cegger xpq_queue_tlb_flush(void)
    348       1.2  bouyer {
    349       1.2  bouyer 	struct mmuext_op op;
    350       1.2  bouyer 	xpq_flush_queue();
    351       1.2  bouyer 
    352       1.2  bouyer 	XENPRINTK2(("xpq_queue_tlb_flush\n"));
    353       1.2  bouyer 	op.cmd = MMUEXT_TLB_FLUSH_LOCAL;
    354       1.2  bouyer 	if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
    355       1.2  bouyer 		panic("xpq_queue_tlb_flush");
    356       1.2  bouyer }
    357       1.2  bouyer 
    358       1.2  bouyer void
    359       1.8  cegger xpq_flush_cache(void)
    360       1.2  bouyer {
    361       1.2  bouyer 	struct mmuext_op op;
    362       1.2  bouyer 	int s = splvm();
    363       1.2  bouyer 	xpq_flush_queue();
    364       1.2  bouyer 
    365       1.2  bouyer 	XENPRINTK2(("xpq_queue_flush_cache\n"));
    366       1.2  bouyer 	op.cmd = MMUEXT_FLUSH_CACHE;
    367       1.2  bouyer 	if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
    368       1.2  bouyer 		panic("xpq_flush_cache");
    369       1.2  bouyer 	splx(s);
    370       1.2  bouyer }
    371       1.2  bouyer 
    372       1.2  bouyer void
    373       1.2  bouyer xpq_queue_invlpg(vaddr_t va)
    374       1.2  bouyer {
    375       1.2  bouyer 	struct mmuext_op op;
    376       1.2  bouyer 	xpq_flush_queue();
    377       1.2  bouyer 
    378       1.2  bouyer 	XENPRINTK2(("xpq_queue_invlpg %p\n", (void *)va));
    379       1.2  bouyer 	op.cmd = MMUEXT_INVLPG_LOCAL;
    380       1.2  bouyer 	op.arg1.linear_addr = (va & ~PAGE_MASK);
    381       1.2  bouyer 	if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
    382       1.2  bouyer 		panic("xpq_queue_invlpg");
    383       1.2  bouyer }
    384       1.2  bouyer 
    385       1.2  bouyer int
    386       1.6  bouyer xpq_update_foreign(paddr_t ptr, pt_entry_t val, int dom)
    387       1.2  bouyer {
    388       1.2  bouyer 	mmu_update_t op;
    389       1.2  bouyer 	int ok;
    390       1.2  bouyer 	xpq_flush_queue();
    391       1.2  bouyer 
    392       1.6  bouyer 	op.ptr = ptr;
    393       1.2  bouyer 	op.val = val;
    394       1.2  bouyer 	if (HYPERVISOR_mmu_update(&op, 1, &ok, dom) < 0)
    395       1.2  bouyer 		return EFAULT;
    396       1.2  bouyer 	return (0);
    397       1.2  bouyer }
    398       1.2  bouyer #else /* XEN3 */
    399       1.2  bouyer void
    400       1.2  bouyer xpq_queue_pt_switch(paddr_t pa)
    401       1.2  bouyer {
    402       1.2  bouyer 
    403       1.2  bouyer 	XENPRINTK2(("xpq_queue_pt_switch: %p %p\n", (void *)pa, (void *)pa));
    404       1.2  bouyer 	xpq_queue[xpq_idx].ptr = pa | MMU_EXTENDED_COMMAND;
    405       1.2  bouyer 	xpq_queue[xpq_idx].val = MMUEXT_NEW_BASEPTR;
    406       1.2  bouyer 	xpq_increment_idx();
    407       1.2  bouyer }
    408       1.2  bouyer 
    409       1.2  bouyer void
    410       1.2  bouyer xpq_queue_pin_table(paddr_t pa)
    411       1.2  bouyer {
    412       1.2  bouyer 
    413       1.2  bouyer 	XENPRINTK2(("xpq_queue_pin_table: %p %p\n", (void *)pa, (void *)pa));
    414       1.2  bouyer 	xpq_queue[xpq_idx].ptr = pa | MMU_EXTENDED_COMMAND;
    415       1.2  bouyer 	xpq_queue[xpq_idx].val = MMUEXT_PIN_L2_TABLE;
    416       1.2  bouyer 	xpq_increment_idx();
    417       1.2  bouyer }
    418       1.2  bouyer 
    419       1.2  bouyer void
    420       1.2  bouyer xpq_queue_unpin_table(paddr_t pa)
    421       1.2  bouyer {
    422       1.2  bouyer 
    423       1.2  bouyer 	XENPRINTK2(("xpq_queue_unpin_table: %p %p\n", (void *)pa, (void *)pa));
    424       1.2  bouyer 	xpq_queue[xpq_idx].ptr = pa | MMU_EXTENDED_COMMAND;
    425       1.2  bouyer 	xpq_queue[xpq_idx].val = MMUEXT_UNPIN_TABLE;
    426       1.2  bouyer 	xpq_increment_idx();
    427       1.2  bouyer }
    428       1.2  bouyer 
    429       1.2  bouyer void
    430       1.2  bouyer xpq_queue_set_ldt(vaddr_t va, uint32_t entries)
    431       1.2  bouyer {
    432       1.2  bouyer 
    433       1.2  bouyer 	XENPRINTK2(("xpq_queue_set_ldt\n"));
    434       1.2  bouyer 	KASSERT(va == (va & ~PAGE_MASK));
    435       1.2  bouyer 	xpq_queue[xpq_idx].ptr = MMU_EXTENDED_COMMAND | va;
    436       1.2  bouyer 	xpq_queue[xpq_idx].val = MMUEXT_SET_LDT | (entries << MMUEXT_CMD_SHIFT);
    437       1.2  bouyer 	xpq_increment_idx();
    438       1.2  bouyer }
    439       1.2  bouyer 
    440       1.2  bouyer void
    441       1.8  cegger xpq_queue_tlb_flush(void)
    442       1.2  bouyer {
    443       1.2  bouyer 
    444       1.2  bouyer 	XENPRINTK2(("xpq_queue_tlb_flush\n"));
    445       1.2  bouyer 	xpq_queue[xpq_idx].ptr = MMU_EXTENDED_COMMAND;
    446       1.2  bouyer 	xpq_queue[xpq_idx].val = MMUEXT_TLB_FLUSH;
    447       1.2  bouyer 	xpq_increment_idx();
    448       1.2  bouyer }
    449       1.2  bouyer 
    450       1.2  bouyer void
    451       1.8  cegger xpq_flush_cache(void)
    452       1.2  bouyer {
    453       1.2  bouyer 	int s = splvm();
    454       1.2  bouyer 
    455       1.2  bouyer 	XENPRINTK2(("xpq_queue_flush_cache\n"));
    456       1.2  bouyer 	xpq_queue[xpq_idx].ptr = MMU_EXTENDED_COMMAND;
    457       1.2  bouyer 	xpq_queue[xpq_idx].val = MMUEXT_FLUSH_CACHE;
    458       1.2  bouyer 	xpq_increment_idx();
    459       1.2  bouyer 	xpq_flush_queue();
    460       1.2  bouyer 	splx(s);
    461       1.2  bouyer }
    462       1.2  bouyer 
    463       1.2  bouyer void
    464       1.2  bouyer xpq_queue_invlpg(vaddr_t va)
    465       1.2  bouyer {
    466       1.2  bouyer 
    467       1.2  bouyer 	XENPRINTK2(("xpq_queue_invlpg %p\n", (void *)va));
    468       1.2  bouyer 	xpq_queue[xpq_idx].ptr = (va & ~PAGE_MASK) | MMU_EXTENDED_COMMAND;
    469       1.2  bouyer 	xpq_queue[xpq_idx].val = MMUEXT_INVLPG;
    470       1.2  bouyer 	xpq_increment_idx();
    471       1.2  bouyer }
    472       1.2  bouyer 
    473       1.2  bouyer int
    474       1.6  bouyer xpq_update_foreign(paddr_t ptr, pt_entry_t val, int dom)
    475       1.2  bouyer {
    476       1.2  bouyer 	mmu_update_t xpq_up[3];
    477       1.2  bouyer 
    478       1.2  bouyer 	xpq_up[0].ptr = MMU_EXTENDED_COMMAND;
    479       1.2  bouyer 	xpq_up[0].val = MMUEXT_SET_FOREIGNDOM | (dom << 16);
    480       1.6  bouyer 	xpq_up[1].ptr = ptr;
    481       1.2  bouyer 	xpq_up[1].val = val;
    482       1.2  bouyer 	if (HYPERVISOR_mmu_update_self(xpq_up, 2, NULL) < 0)
    483       1.2  bouyer 		return EFAULT;
    484       1.2  bouyer 	return (0);
    485       1.2  bouyer }
    486       1.2  bouyer #endif /* XEN3 */
    487       1.2  bouyer 
    488       1.2  bouyer #ifdef XENDEBUG
    489       1.2  bouyer void
    490       1.8  cegger xpq_debug_dump(void)
    491       1.2  bouyer {
    492       1.2  bouyer 	int i;
    493       1.2  bouyer 
    494       1.2  bouyer 	XENPRINTK2(("idx: %d\n", xpq_idx));
    495       1.2  bouyer 	for (i = 0; i < xpq_idx; i++) {
    496  1.12.4.4     jym 		snprintf(XBUF, sizeof(XBUF), "%" PRIx64 " %08" PRIx64,
    497       1.8  cegger 		    (uint64_t)xpq_queue[i].ptr, (uint64_t)xpq_queue[i].val);
    498       1.2  bouyer 		if (++i < xpq_idx)
    499  1.12.4.4     jym 			snprintf(XBUF + strlen(XBUF),
    500  1.12.4.4     jym 			    sizeof(XBUF) - strlen(XBUF),
    501  1.12.4.4     jym 			    "%" PRIx64 " %08" PRIx64,
    502  1.12.4.4     jym 			    (uint64_t)xpq_queue[i].ptr,
    503  1.12.4.4     jym 			    (uint64_t)xpq_queue[i].val);
    504       1.2  bouyer 		if (++i < xpq_idx)
    505  1.12.4.4     jym 			snprintf(XBUF + strlen(XBUF),
    506  1.12.4.4     jym 			    sizeof(XBUF) - strlen(XBUF),
    507  1.12.4.4     jym 			    "%" PRIx64 " %08" PRIx64,
    508  1.12.4.4     jym 			    (uint64_t)xpq_queue[i].ptr,
    509  1.12.4.4     jym 			    (uint64_t)xpq_queue[i].val);
    510       1.2  bouyer 		if (++i < xpq_idx)
    511  1.12.4.4     jym 			snprintf(XBUF + strlen(XBUF),
    512  1.12.4.4     jym 			    sizeof(XBUF) - strlen(XBUF),
    513  1.12.4.4     jym 			    "%" PRIx64 " %08" PRIx64,
    514  1.12.4.4     jym 			    (uint64_t)xpq_queue[i].ptr,
    515  1.12.4.4     jym 			    (uint64_t)xpq_queue[i].val);
    516       1.2  bouyer 		XENPRINTK2(("%d: %s\n", xpq_idx, XBUF));
    517       1.2  bouyer 	}
    518       1.2  bouyer }
    519       1.2  bouyer #endif
    520       1.2  bouyer 
    521       1.2  bouyer 
    522       1.2  bouyer extern volatile struct xencons_interface *xencons_interface; /* XXX */
    523       1.2  bouyer extern struct xenstore_domain_interface *xenstore_interface; /* XXX */
    524       1.2  bouyer 
    525       1.2  bouyer static void xen_bt_set_readonly (vaddr_t);
    526       1.2  bouyer static void xen_bootstrap_tables (vaddr_t, vaddr_t, int, int, int);
    527       1.2  bouyer 
    528       1.2  bouyer /* How many PDEs ? */
    529       1.2  bouyer #if L2_SLOT_KERNBASE > 0
    530       1.2  bouyer #define TABLE_L2_ENTRIES (2 * (NKL2_KIMG_ENTRIES + 1))
    531       1.2  bouyer #else
    532       1.2  bouyer #define TABLE_L2_ENTRIES (NKL2_KIMG_ENTRIES + 1)
    533       1.2  bouyer #endif
    534       1.2  bouyer 
    535       1.2  bouyer /*
    536       1.2  bouyer  * Construct and switch to new pagetables
    537       1.2  bouyer  * first_avail is the first vaddr we can use after
    538       1.2  bouyer  * we get rid of Xen pagetables
    539       1.2  bouyer  */
    540       1.2  bouyer 
    541       1.2  bouyer vaddr_t xen_pmap_bootstrap (void);
    542       1.2  bouyer 
    543       1.2  bouyer /*
    544       1.2  bouyer  * Function to get rid of Xen bootstrap tables
    545       1.2  bouyer  */
    546       1.2  bouyer 
    547       1.6  bouyer /* How many PDP do we need: */
    548       1.6  bouyer #ifdef PAE
    549       1.6  bouyer /*
    550       1.6  bouyer  * For PAE, we consider a single contigous L2 "superpage" of 4 pages,
    551       1.6  bouyer  * all of them mapped by the L3 page. We also need a shadow page
    552       1.6  bouyer  * for L3[3].
    553       1.6  bouyer  */
    554       1.6  bouyer static const int l2_4_count = 6;
    555       1.6  bouyer #else
    556       1.6  bouyer static const int l2_4_count = PTP_LEVELS - 1;
    557       1.6  bouyer #endif
    558       1.6  bouyer 
    559       1.2  bouyer vaddr_t
    560       1.8  cegger xen_pmap_bootstrap(void)
    561       1.2  bouyer {
    562       1.4  bouyer 	int count, oldcount;
    563       1.4  bouyer 	long mapsize;
    564       1.2  bouyer 	vaddr_t bootstrap_tables, init_tables;
    565       1.2  bouyer 
    566       1.6  bouyer 	xpmap_phys_to_machine_mapping =
    567       1.6  bouyer 	    (unsigned long *)xen_start_info.mfn_list;
    568       1.2  bouyer 	init_tables = xen_start_info.pt_base;
    569       1.2  bouyer 	__PRINTK(("xen_arch_pmap_bootstrap init_tables=0x%lx\n", init_tables));
    570       1.2  bouyer 
    571       1.2  bouyer 	/* Space after Xen boostrap tables should be free */
    572       1.2  bouyer 	bootstrap_tables = xen_start_info.pt_base +
    573       1.2  bouyer 		(xen_start_info.nr_pt_frames * PAGE_SIZE);
    574       1.2  bouyer 
    575       1.4  bouyer 	/*
    576       1.4  bouyer 	 * Calculate how many space we need
    577       1.4  bouyer 	 * first everything mapped before the Xen bootstrap tables
    578       1.4  bouyer 	 */
    579       1.4  bouyer 	mapsize = init_tables - KERNTEXTOFF;
    580       1.4  bouyer 	/* after the tables we'll have:
    581       1.4  bouyer 	 *  - UAREA
    582       1.4  bouyer 	 *  - dummy user PGD (x86_64)
    583       1.4  bouyer 	 *  - HYPERVISOR_shared_info
    584       1.4  bouyer 	 *  - ISA I/O mem (if needed)
    585       1.4  bouyer 	 */
    586       1.4  bouyer 	mapsize += UPAGES * NBPG;
    587       1.4  bouyer #ifdef __x86_64__
    588       1.4  bouyer 	mapsize += NBPG;
    589       1.4  bouyer #endif
    590       1.4  bouyer 	mapsize += NBPG;
    591       1.2  bouyer 
    592       1.2  bouyer #ifdef DOM0OPS
    593      1.10  cegger 	if (xendomain_is_dom0()) {
    594       1.2  bouyer 		/* space for ISA I/O mem */
    595       1.4  bouyer 		mapsize += IOM_SIZE;
    596       1.4  bouyer 	}
    597       1.4  bouyer #endif
    598       1.4  bouyer 	/* at this point mapsize doens't include the table size */
    599       1.4  bouyer 
    600       1.4  bouyer #ifdef __x86_64__
    601       1.4  bouyer 	count = TABLE_L2_ENTRIES;
    602       1.4  bouyer #else
    603       1.4  bouyer 	count = (mapsize + (NBPD_L2 -1)) >> L2_SHIFT;
    604       1.4  bouyer #endif /* __x86_64__ */
    605       1.4  bouyer 
    606       1.4  bouyer 	/* now compute how many L2 pages we need exactly */
    607       1.4  bouyer 	XENPRINTK(("bootstrap_final mapsize 0x%lx count %d\n", mapsize, count));
    608       1.4  bouyer 	while (mapsize + (count + l2_4_count) * PAGE_SIZE + KERNTEXTOFF >
    609       1.4  bouyer 	    ((long)count << L2_SHIFT) + KERNBASE) {
    610       1.4  bouyer 		count++;
    611       1.2  bouyer 	}
    612       1.4  bouyer #ifndef __x86_64__
    613       1.5  bouyer 	/*
    614       1.5  bouyer 	 * one more L2 page: we'll alocate several pages after kva_start
    615       1.5  bouyer 	 * in pmap_bootstrap() before pmap_growkernel(), which have not been
    616       1.5  bouyer 	 * counted here. It's not a big issue to allocate one more L2 as
    617       1.5  bouyer 	 * pmap_growkernel() will be called anyway.
    618       1.5  bouyer 	 */
    619       1.5  bouyer 	count++;
    620       1.4  bouyer 	nkptp[1] = count;
    621       1.2  bouyer #endif
    622       1.2  bouyer 
    623       1.4  bouyer 	/*
    624       1.4  bouyer 	 * install bootstrap pages. We may need more L2 pages than will
    625       1.4  bouyer 	 * have the final table here, as it's installed after the final table
    626       1.4  bouyer 	 */
    627       1.4  bouyer 	oldcount = count;
    628       1.4  bouyer 
    629       1.4  bouyer bootstrap_again:
    630       1.4  bouyer 	XENPRINTK(("bootstrap_again oldcount %d\n", oldcount));
    631       1.2  bouyer 	/*
    632       1.2  bouyer 	 * Xen space we'll reclaim may not be enough for our new page tables,
    633       1.2  bouyer 	 * move bootstrap tables if necessary
    634       1.2  bouyer 	 */
    635       1.4  bouyer 	if (bootstrap_tables < init_tables + ((count + l2_4_count) * PAGE_SIZE))
    636       1.2  bouyer 		bootstrap_tables = init_tables +
    637       1.4  bouyer 					((count + l2_4_count) * PAGE_SIZE);
    638       1.4  bouyer 	/* make sure we have enough to map the bootstrap_tables */
    639       1.4  bouyer 	if (bootstrap_tables + ((oldcount + l2_4_count) * PAGE_SIZE) >
    640       1.4  bouyer 	    ((long)oldcount << L2_SHIFT) + KERNBASE) {
    641       1.4  bouyer 		oldcount++;
    642       1.4  bouyer 		goto bootstrap_again;
    643       1.4  bouyer 	}
    644       1.2  bouyer 
    645       1.2  bouyer 	/* Create temporary tables */
    646       1.2  bouyer 	xen_bootstrap_tables(xen_start_info.pt_base, bootstrap_tables,
    647       1.4  bouyer 		xen_start_info.nr_pt_frames, oldcount, 0);
    648       1.2  bouyer 
    649       1.2  bouyer 	/* Create final tables */
    650       1.2  bouyer 	xen_bootstrap_tables(bootstrap_tables, init_tables,
    651       1.4  bouyer 	    oldcount + l2_4_count, count, 1);
    652       1.2  bouyer 
    653       1.4  bouyer 	/* zero out free space after tables */
    654       1.4  bouyer 	memset((void *)(init_tables + ((count + l2_4_count) * PAGE_SIZE)), 0,
    655       1.4  bouyer 	    (UPAGES + 1) * NBPG);
    656       1.4  bouyer 	return (init_tables + ((count + l2_4_count) * PAGE_SIZE));
    657       1.2  bouyer }
    658       1.2  bouyer 
    659       1.2  bouyer 
    660       1.2  bouyer /*
    661       1.2  bouyer  * Build a new table and switch to it
    662       1.2  bouyer  * old_count is # of old tables (including PGD, PDTPE and PDE)
    663       1.2  bouyer  * new_count is # of new tables (PTE only)
    664       1.2  bouyer  * we assume areas don't overlap
    665       1.2  bouyer  */
    666       1.2  bouyer 
    667       1.2  bouyer 
    668       1.2  bouyer static void
    669       1.2  bouyer xen_bootstrap_tables (vaddr_t old_pgd, vaddr_t new_pgd,
    670       1.2  bouyer 	int old_count, int new_count, int final)
    671       1.2  bouyer {
    672       1.2  bouyer 	pd_entry_t *pdtpe, *pde, *pte;
    673       1.2  bouyer 	pd_entry_t *cur_pgd, *bt_pgd;
    674       1.6  bouyer 	paddr_t addr;
    675       1.6  bouyer 	vaddr_t page, avail, text_end, map_end;
    676       1.2  bouyer 	int i;
    677       1.2  bouyer 	extern char __data_start;
    678       1.2  bouyer 
    679       1.2  bouyer 	__PRINTK(("xen_bootstrap_tables(0x%lx, 0x%lx, %d, %d)\n",
    680       1.2  bouyer 	    old_pgd, new_pgd, old_count, new_count));
    681       1.2  bouyer 	text_end = ((vaddr_t)&__data_start) & ~PAGE_MASK;
    682       1.2  bouyer 	/*
    683       1.2  bouyer 	 * size of R/W area after kernel text:
    684       1.2  bouyer 	 *  xencons_interface (if present)
    685       1.2  bouyer 	 *  xenstore_interface (if present)
    686       1.6  bouyer 	 *  table pages (new_count + l2_4_count entries)
    687       1.2  bouyer 	 * extra mappings (only when final is true):
    688       1.4  bouyer 	 *  UAREA
    689       1.4  bouyer 	 *  dummy user PGD (x86_64 only)/gdt page (i386 only)
    690       1.2  bouyer 	 *  HYPERVISOR_shared_info
    691       1.2  bouyer 	 *  ISA I/O mem (if needed)
    692       1.2  bouyer 	 */
    693       1.6  bouyer 	map_end = new_pgd + ((new_count + l2_4_count) * NBPG);
    694       1.2  bouyer 	if (final) {
    695       1.4  bouyer 		map_end += (UPAGES + 1) * NBPG;
    696       1.4  bouyer 		HYPERVISOR_shared_info = (shared_info_t *)map_end;
    697       1.2  bouyer 		map_end += NBPG;
    698       1.2  bouyer 	}
    699       1.4  bouyer 	/*
    700       1.4  bouyer 	 * we always set atdevbase, as it's used by init386 to find the first
    701       1.4  bouyer 	 * available VA. map_end is updated only if we are dom0, so
    702       1.4  bouyer 	 * atdevbase -> atdevbase + IOM_SIZE will be mapped only in
    703       1.4  bouyer 	 * this case.
    704       1.4  bouyer 	 */
    705       1.4  bouyer 	if (final)
    706       1.4  bouyer 		atdevbase = map_end;
    707       1.2  bouyer #ifdef DOM0OPS
    708      1.10  cegger 	if (final && xendomain_is_dom0()) {
    709       1.2  bouyer 		/* ISA I/O mem */
    710       1.2  bouyer 		map_end += IOM_SIZE;
    711       1.2  bouyer 	}
    712       1.2  bouyer #endif /* DOM0OPS */
    713       1.2  bouyer 
    714       1.2  bouyer 	__PRINTK(("xen_bootstrap_tables text_end 0x%lx map_end 0x%lx\n",
    715       1.2  bouyer 	    text_end, map_end));
    716      1.12  cegger 	__PRINTK(("console 0x%lx ", xen_start_info.console.domU.mfn));
    717       1.7  bouyer 	__PRINTK(("xenstore 0x%lx\n", xen_start_info.store_mfn));
    718       1.2  bouyer 
    719       1.2  bouyer 	/*
    720       1.2  bouyer 	 * Create bootstrap page tables
    721       1.2  bouyer 	 * What we need:
    722       1.2  bouyer 	 * - a PGD (level 4)
    723       1.2  bouyer 	 * - a PDTPE (level 3)
    724       1.2  bouyer 	 * - a PDE (level2)
    725       1.2  bouyer 	 * - some PTEs (level 1)
    726       1.2  bouyer 	 */
    727       1.2  bouyer 
    728       1.2  bouyer 	cur_pgd = (pd_entry_t *) old_pgd;
    729       1.2  bouyer 	bt_pgd = (pd_entry_t *) new_pgd;
    730       1.2  bouyer 	memset (bt_pgd, 0, PAGE_SIZE);
    731       1.2  bouyer 	avail = new_pgd + PAGE_SIZE;
    732       1.4  bouyer #if PTP_LEVELS > 3
    733       1.2  bouyer 	/* Install level 3 */
    734       1.2  bouyer 	pdtpe = (pd_entry_t *) avail;
    735       1.2  bouyer 	memset (pdtpe, 0, PAGE_SIZE);
    736       1.2  bouyer 	avail += PAGE_SIZE;
    737       1.2  bouyer 
    738       1.6  bouyer 	addr = ((u_long) pdtpe) - KERNBASE;
    739       1.2  bouyer 	bt_pgd[pl4_pi(KERNTEXTOFF)] =
    740       1.4  bouyer 	    xpmap_ptom_masked(addr) | PG_k | PG_RW | PG_V;
    741       1.2  bouyer 
    742       1.6  bouyer 	__PRINTK(("L3 va 0x%lx pa 0x%" PRIx64 " entry 0x%" PRIx64 " -> L4[0x%x]\n",
    743       1.8  cegger 	    pdtpe, (uint64_t)addr, (uint64_t)bt_pgd[pl4_pi(KERNTEXTOFF)],
    744       1.6  bouyer 	    pl4_pi(KERNTEXTOFF)));
    745       1.4  bouyer #else
    746       1.4  bouyer 	pdtpe = bt_pgd;
    747       1.4  bouyer #endif /* PTP_LEVELS > 3 */
    748       1.2  bouyer 
    749       1.4  bouyer #if PTP_LEVELS > 2
    750       1.2  bouyer 	/* Level 2 */
    751       1.2  bouyer 	pde = (pd_entry_t *) avail;
    752       1.2  bouyer 	memset(pde, 0, PAGE_SIZE);
    753       1.2  bouyer 	avail += PAGE_SIZE;
    754       1.2  bouyer 
    755       1.6  bouyer 	addr = ((u_long) pde) - KERNBASE;
    756       1.2  bouyer 	pdtpe[pl3_pi(KERNTEXTOFF)] =
    757       1.6  bouyer 	    xpmap_ptom_masked(addr) | PG_k | PG_V | PG_RW;
    758       1.6  bouyer 	__PRINTK(("L2 va 0x%lx pa 0x%" PRIx64 " entry 0x%" PRIx64 " -> L3[0x%x]\n",
    759       1.6  bouyer 	    pde, (int64_t)addr, (int64_t)pdtpe[pl3_pi(KERNTEXTOFF)],
    760       1.6  bouyer 	    pl3_pi(KERNTEXTOFF)));
    761       1.6  bouyer #elif defined(PAE)
    762       1.6  bouyer 	/* our PAE-style level 2: 5 contigous pages (4 L2 + 1 shadow) */
    763       1.6  bouyer 	pde = (pd_entry_t *) avail;
    764       1.6  bouyer 	memset(pde, 0, PAGE_SIZE * 5);
    765       1.6  bouyer 	avail += PAGE_SIZE * 5;
    766       1.6  bouyer 	addr = ((u_long) pde) - KERNBASE;
    767       1.6  bouyer 	/*
    768       1.6  bouyer 	 * enter L2 pages in the L3.
    769       1.6  bouyer 	 * The real L2 kernel PD will be the last one (so that
    770       1.6  bouyer 	 * pde[L2_SLOT_KERN] always point to the shadow).
    771       1.6  bouyer 	 */
    772       1.6  bouyer 	for (i = 0; i < 3; i++, addr += PAGE_SIZE) {
    773       1.6  bouyer 		/*
    774       1.6  bouyer 		 * Xen doens't want R/W mappings in L3 entries, it'll add it
    775       1.6  bouyer 		 * itself.
    776       1.6  bouyer 		 */
    777       1.6  bouyer 		pdtpe[i] = xpmap_ptom_masked(addr) | PG_k | PG_V;
    778       1.6  bouyer 		__PRINTK(("L2 va 0x%lx pa 0x%" PRIx64 " entry 0x%" PRIx64
    779       1.6  bouyer 		    " -> L3[0x%x]\n", (vaddr_t)pde + PAGE_SIZE * i,
    780       1.6  bouyer 		    (int64_t)addr, (int64_t)pdtpe[i], i));
    781       1.6  bouyer 	}
    782       1.6  bouyer 	addr += PAGE_SIZE;
    783       1.6  bouyer 	pdtpe[3] = xpmap_ptom_masked(addr) | PG_k | PG_V;
    784       1.6  bouyer 	__PRINTK(("L2 va 0x%lx pa 0x%" PRIx64 " entry 0x%" PRIx64
    785       1.6  bouyer 	    " -> L3[0x%x]\n", (vaddr_t)pde + PAGE_SIZE * 4,
    786       1.6  bouyer 	    (int64_t)addr, (int64_t)pdtpe[3], 3));
    787       1.6  bouyer 
    788       1.6  bouyer #else /* PAE */
    789       1.4  bouyer 	pde = bt_pgd;
    790       1.6  bouyer #endif /* PTP_LEVELS > 2 */
    791       1.2  bouyer 
    792       1.2  bouyer 	/* Level 1 */
    793       1.2  bouyer 	page = KERNTEXTOFF;
    794       1.2  bouyer 	for (i = 0; i < new_count; i ++) {
    795       1.6  bouyer 		vaddr_t cur_page = page;
    796       1.2  bouyer 
    797       1.2  bouyer 		pte = (pd_entry_t *) avail;
    798       1.2  bouyer 		avail += PAGE_SIZE;
    799       1.2  bouyer 
    800       1.2  bouyer 		memset(pte, 0, PAGE_SIZE);
    801       1.2  bouyer 		while (pl2_pi(page) == pl2_pi (cur_page)) {
    802       1.2  bouyer 			if (page >= map_end) {
    803       1.2  bouyer 				/* not mapped at all */
    804       1.2  bouyer 				pte[pl1_pi(page)] = 0;
    805       1.2  bouyer 				page += PAGE_SIZE;
    806       1.2  bouyer 				continue;
    807       1.2  bouyer 			}
    808       1.2  bouyer 			pte[pl1_pi(page)] = xpmap_ptom_masked(page - KERNBASE);
    809       1.2  bouyer 			if (page == (vaddr_t)HYPERVISOR_shared_info) {
    810       1.2  bouyer 				pte[pl1_pi(page)] = xen_start_info.shared_info;
    811       1.2  bouyer 				__PRINTK(("HYPERVISOR_shared_info "
    812       1.6  bouyer 				    "va 0x%lx pte 0x%" PRIx64 "\n",
    813       1.6  bouyer 				    HYPERVISOR_shared_info, (int64_t)pte[pl1_pi(page)]));
    814       1.2  bouyer 			}
    815       1.4  bouyer #ifdef XEN3
    816       1.7  bouyer 			if ((xpmap_ptom_masked(page - KERNBASE) >> PAGE_SHIFT)
    817      1.12  cegger 			    == xen_start_info.console.domU.mfn) {
    818       1.2  bouyer 				xencons_interface = (void *)page;
    819      1.12  cegger 				pte[pl1_pi(page)] = xen_start_info.console.domU.mfn;
    820       1.6  bouyer 				pte[pl1_pi(page)] <<= PAGE_SHIFT;
    821       1.2  bouyer 				__PRINTK(("xencons_interface "
    822       1.6  bouyer 				    "va 0x%lx pte 0x%" PRIx64 "\n",
    823       1.6  bouyer 				    xencons_interface, (int64_t)pte[pl1_pi(page)]));
    824       1.2  bouyer 			}
    825       1.7  bouyer 			if ((xpmap_ptom_masked(page - KERNBASE) >> PAGE_SHIFT)
    826       1.7  bouyer 			    == xen_start_info.store_mfn) {
    827       1.2  bouyer 				xenstore_interface = (void *)page;
    828       1.6  bouyer 				pte[pl1_pi(page)] = xen_start_info.store_mfn;
    829       1.6  bouyer 				pte[pl1_pi(page)] <<= PAGE_SHIFT;
    830       1.2  bouyer 				__PRINTK(("xenstore_interface "
    831       1.6  bouyer 				    "va 0x%lx pte 0x%" PRIx64 "\n",
    832       1.6  bouyer 				    xenstore_interface, (int64_t)pte[pl1_pi(page)]));
    833       1.2  bouyer 			}
    834       1.4  bouyer #endif /* XEN3 */
    835       1.2  bouyer #ifdef DOM0OPS
    836       1.2  bouyer 			if (page >= (vaddr_t)atdevbase &&
    837       1.2  bouyer 			    page < (vaddr_t)atdevbase + IOM_SIZE) {
    838       1.2  bouyer 				pte[pl1_pi(page)] =
    839       1.2  bouyer 				    IOM_BEGIN + (page - (vaddr_t)atdevbase);
    840       1.2  bouyer 			}
    841       1.2  bouyer #endif
    842       1.4  bouyer 			pte[pl1_pi(page)] |= PG_k | PG_V;
    843       1.2  bouyer 			if (page < text_end) {
    844       1.2  bouyer 				/* map kernel text RO */
    845       1.2  bouyer 				pte[pl1_pi(page)] |= 0;
    846       1.2  bouyer 			} else if (page >= old_pgd
    847       1.2  bouyer 			    && page < old_pgd + (old_count * PAGE_SIZE)) {
    848       1.2  bouyer 				/* map old page tables RO */
    849       1.2  bouyer 				pte[pl1_pi(page)] |= 0;
    850       1.2  bouyer 			} else if (page >= new_pgd &&
    851       1.6  bouyer 			    page < new_pgd + ((new_count + l2_4_count) * PAGE_SIZE)) {
    852       1.2  bouyer 				/* map new page tables RO */
    853       1.2  bouyer 				pte[pl1_pi(page)] |= 0;
    854       1.2  bouyer 			} else {
    855       1.2  bouyer 				/* map page RW */
    856       1.2  bouyer 				pte[pl1_pi(page)] |= PG_RW;
    857       1.2  bouyer 			}
    858       1.6  bouyer 
    859       1.9    tron 			if ((page  >= old_pgd && page < old_pgd + (old_count * PAGE_SIZE))
    860       1.9    tron 			    || page >= new_pgd) {
    861       1.4  bouyer 				__PRINTK(("va 0x%lx pa 0x%lx "
    862       1.6  bouyer 				    "entry 0x%" PRIx64 " -> L1[0x%x]\n",
    863       1.2  bouyer 				    page, page - KERNBASE,
    864       1.6  bouyer 				    (int64_t)pte[pl1_pi(page)], pl1_pi(page)));
    865       1.9    tron 			}
    866       1.2  bouyer 			page += PAGE_SIZE;
    867       1.2  bouyer 		}
    868       1.2  bouyer 
    869       1.6  bouyer 		addr = ((u_long) pte) - KERNBASE;
    870       1.2  bouyer 		pde[pl2_pi(cur_page)] =
    871       1.4  bouyer 		    xpmap_ptom_masked(addr) | PG_k | PG_RW | PG_V;
    872       1.6  bouyer 		__PRINTK(("L1 va 0x%lx pa 0x%" PRIx64 " entry 0x%" PRIx64
    873       1.6  bouyer 		    " -> L2[0x%x]\n", pte, (int64_t)addr,
    874       1.6  bouyer 		    (int64_t)pde[pl2_pi(cur_page)], pl2_pi(cur_page)));
    875       1.2  bouyer 		/* Mark readonly */
    876       1.2  bouyer 		xen_bt_set_readonly((vaddr_t) pte);
    877       1.2  bouyer 	}
    878       1.2  bouyer 
    879       1.2  bouyer 	/* Install recursive page tables mapping */
    880       1.6  bouyer #ifdef PAE
    881       1.6  bouyer 	/*
    882       1.6  bouyer 	 * we need a shadow page for the kernel's L2 page
    883       1.6  bouyer 	 * The real L2 kernel PD will be the last one (so that
    884       1.6  bouyer 	 * pde[L2_SLOT_KERN] always point to the shadow.
    885       1.6  bouyer 	 */
    886       1.6  bouyer 	memcpy(&pde[L2_SLOT_KERN + NPDPG], &pde[L2_SLOT_KERN], PAGE_SIZE);
    887       1.6  bouyer 	pmap_kl2pd = &pde[L2_SLOT_KERN + NPDPG];
    888       1.6  bouyer 	pmap_kl2paddr = (u_long)pmap_kl2pd - KERNBASE;
    889       1.6  bouyer 
    890       1.6  bouyer 	/*
    891       1.6  bouyer 	 * We don't enter a recursive entry from the L3 PD. Instead,
    892       1.6  bouyer 	 * we enter the first 4 L2 pages, which includes the kernel's L2
    893       1.6  bouyer 	 * shadow. But we have to entrer the shadow after switching
    894       1.6  bouyer 	 * %cr3, or Xen will refcount some PTE with the wrong type.
    895       1.6  bouyer 	 */
    896       1.6  bouyer 	addr = (u_long)pde - KERNBASE;
    897       1.6  bouyer 	for (i = 0; i < 3; i++, addr += PAGE_SIZE) {
    898       1.6  bouyer 		pde[PDIR_SLOT_PTE + i] = xpmap_ptom_masked(addr) | PG_k | PG_V;
    899       1.6  bouyer 		__PRINTK(("pde[%d] va 0x%lx pa 0x%lx entry 0x%" PRIx64 "\n",
    900       1.6  bouyer 		    (int)(PDIR_SLOT_PTE + i), pde + PAGE_SIZE * i, (long)addr,
    901       1.6  bouyer 		    (int64_t)pde[PDIR_SLOT_PTE + i]));
    902       1.6  bouyer 	}
    903       1.6  bouyer #if 0
    904       1.6  bouyer 	addr += PAGE_SIZE; /* point to shadow L2 */
    905       1.6  bouyer 	pde[PDIR_SLOT_PTE + 3] = xpmap_ptom_masked(addr) | PG_k | PG_V;
    906       1.6  bouyer 	__PRINTK(("pde[%d] va 0x%lx pa 0x%lx entry 0x%" PRIx64 "\n",
    907       1.6  bouyer 	    (int)(PDIR_SLOT_PTE + 3), pde + PAGE_SIZE * 4, (long)addr,
    908       1.6  bouyer 	    (int64_t)pde[PDIR_SLOT_PTE + 3]));
    909       1.6  bouyer #endif
    910  1.12.4.4     jym 	/* Mark tables RO, and pin the kernel's shadow as L2 */
    911       1.6  bouyer 	addr = (u_long)pde - KERNBASE;
    912       1.6  bouyer 	for (i = 0; i < 5; i++, addr += PAGE_SIZE) {
    913       1.6  bouyer 		xen_bt_set_readonly(((vaddr_t)pde) + PAGE_SIZE * i);
    914       1.6  bouyer 		if (i == 2 || i == 3)
    915       1.6  bouyer 			continue;
    916       1.6  bouyer #if 0
    917       1.6  bouyer 		__PRINTK(("pin L2 %d addr 0x%" PRIx64 "\n", i, (int64_t)addr));
    918  1.12.4.5     jym 		xpq_queue_pin_l2_table(xpmap_ptom_masked(addr));
    919       1.6  bouyer #endif
    920       1.6  bouyer 	}
    921       1.6  bouyer 	if (final) {
    922       1.6  bouyer 		addr = (u_long)pde - KERNBASE + 3 * PAGE_SIZE;
    923       1.6  bouyer 		__PRINTK(("pin L2 %d addr 0x%" PRIx64 "\n", 2, (int64_t)addr));
    924  1.12.4.5     jym 		xpq_queue_pin_l2_table(xpmap_ptom_masked(addr));
    925       1.6  bouyer 	}
    926       1.6  bouyer #if 0
    927       1.6  bouyer 	addr = (u_long)pde - KERNBASE + 2 * PAGE_SIZE;
    928       1.6  bouyer 	__PRINTK(("pin L2 %d addr 0x%" PRIx64 "\n", 2, (int64_t)addr));
    929  1.12.4.5     jym 	xpq_queue_pin_l2_table(xpmap_ptom_masked(addr));
    930       1.6  bouyer #endif
    931       1.6  bouyer #else /* PAE */
    932       1.6  bouyer 	/* recursive entry in higher-level PD */
    933       1.2  bouyer 	bt_pgd[PDIR_SLOT_PTE] =
    934       1.4  bouyer 	    xpmap_ptom_masked(new_pgd - KERNBASE) | PG_k | PG_V;
    935       1.6  bouyer 	__PRINTK(("bt_pgd[PDIR_SLOT_PTE] va 0x%lx pa 0x%" PRIx64
    936       1.6  bouyer 	    " entry 0x%" PRIx64 "\n", new_pgd, (int64_t)new_pgd - KERNBASE,
    937       1.6  bouyer 	    (int64_t)bt_pgd[PDIR_SLOT_PTE]));
    938       1.2  bouyer 	/* Mark tables RO */
    939       1.2  bouyer 	xen_bt_set_readonly((vaddr_t) pde);
    940       1.6  bouyer #endif
    941       1.6  bouyer #if PTP_LEVELS > 2 || defined(PAE)
    942       1.2  bouyer 	xen_bt_set_readonly((vaddr_t) pdtpe);
    943       1.4  bouyer #endif
    944       1.4  bouyer #if PTP_LEVELS > 3
    945       1.2  bouyer 	xen_bt_set_readonly(new_pgd);
    946       1.4  bouyer #endif
    947       1.2  bouyer 	/* Pin the PGD */
    948  1.12.4.4     jym 	__PRINTK(("pin PGD\n"));
    949       1.6  bouyer #ifdef PAE
    950       1.6  bouyer 	xpq_queue_pin_l3_table(xpmap_ptom_masked(new_pgd - KERNBASE));
    951  1.12.4.5     jym #elif __x86_64__
    952  1.12.4.5     jym 	xpq_queue_pin_l4_table(xpmap_ptom_masked(new_pgd - KERNBASE));
    953       1.6  bouyer #else
    954  1.12.4.5     jym 	xpq_queue_pin_l2_table(xpmap_ptom_masked(new_pgd - KERNBASE));
    955       1.6  bouyer #endif
    956       1.4  bouyer #ifdef __i386__
    957       1.4  bouyer 	/* Save phys. addr of PDP, for libkvm. */
    958       1.6  bouyer 	PDPpaddr = (long)pde;
    959       1.6  bouyer #ifdef PAE
    960       1.6  bouyer 	/* also save the address of the L3 page */
    961       1.6  bouyer 	pmap_l3pd = pdtpe;
    962       1.6  bouyer 	pmap_l3paddr = (new_pgd - KERNBASE);
    963       1.6  bouyer #endif /* PAE */
    964       1.6  bouyer #endif /* i386 */
    965       1.2  bouyer 	/* Switch to new tables */
    966  1.12.4.4     jym 	__PRINTK(("switch to PGD\n"));
    967       1.2  bouyer 	xpq_queue_pt_switch(xpmap_ptom_masked(new_pgd - KERNBASE));
    968       1.6  bouyer 	__PRINTK(("bt_pgd[PDIR_SLOT_PTE] now entry 0x%" PRIx64 "\n",
    969       1.6  bouyer 	    (int64_t)bt_pgd[PDIR_SLOT_PTE]));
    970       1.6  bouyer #ifdef PAE
    971       1.6  bouyer 	if (final) {
    972       1.6  bouyer 		/* now enter kernel's PTE mappings */
    973       1.6  bouyer 		addr =  (u_long)pde - KERNBASE + PAGE_SIZE * 3;
    974       1.6  bouyer 		xpq_queue_pte_update(
    975       1.6  bouyer 		    xpmap_ptom(((vaddr_t)&pde[PDIR_SLOT_PTE + 3]) - KERNBASE),
    976       1.6  bouyer 		    xpmap_ptom_masked(addr) | PG_k | PG_V);
    977       1.6  bouyer 		xpq_flush_queue();
    978       1.6  bouyer 	}
    979       1.6  bouyer #endif
    980       1.6  bouyer 
    981       1.6  bouyer 
    982       1.2  bouyer 
    983       1.2  bouyer 	/* Now we can safely reclaim space taken by old tables */
    984       1.2  bouyer 
    985  1.12.4.4     jym 	__PRINTK(("unpin old PGD\n"));
    986       1.2  bouyer 	/* Unpin old PGD */
    987       1.2  bouyer 	xpq_queue_unpin_table(xpmap_ptom_masked(old_pgd - KERNBASE));
    988       1.2  bouyer 	/* Mark old tables RW */
    989       1.2  bouyer 	page = old_pgd;
    990       1.2  bouyer 	addr = (paddr_t) pde[pl2_pi(page)] & PG_FRAME;
    991       1.2  bouyer 	addr = xpmap_mtop(addr);
    992       1.6  bouyer 	pte = (pd_entry_t *) ((u_long)addr + KERNBASE);
    993       1.2  bouyer 	pte += pl1_pi(page);
    994       1.6  bouyer 	__PRINTK(("*pde 0x%" PRIx64 " addr 0x%" PRIx64 " pte 0x%lx\n",
    995       1.6  bouyer 	    (int64_t)pde[pl2_pi(page)], (int64_t)addr, (long)pte));
    996       1.2  bouyer 	while (page < old_pgd + (old_count * PAGE_SIZE) && page < map_end) {
    997       1.6  bouyer 		addr = xpmap_ptom(((u_long) pte) - KERNBASE);
    998       1.6  bouyer 		XENPRINTK(("addr 0x%" PRIx64 " pte 0x%lx *pte 0x%" PRIx64 "\n",
    999       1.6  bouyer 		   (int64_t)addr, (long)pte, (int64_t)*pte));
   1000       1.6  bouyer 		xpq_queue_pte_update(addr, *pte | PG_RW);
   1001       1.2  bouyer 		page += PAGE_SIZE;
   1002       1.2  bouyer 		/*
   1003       1.2  bouyer 		 * Our ptes are contiguous
   1004       1.2  bouyer 		 * so it's safe to just "++" here
   1005       1.2  bouyer 		 */
   1006       1.2  bouyer 		pte++;
   1007       1.2  bouyer 	}
   1008       1.2  bouyer 	xpq_flush_queue();
   1009       1.2  bouyer }
   1010       1.2  bouyer 
   1011       1.2  bouyer 
   1012       1.2  bouyer /*
   1013       1.2  bouyer  * Bootstrap helper functions
   1014       1.2  bouyer  */
   1015       1.2  bouyer 
   1016       1.2  bouyer /*
   1017       1.2  bouyer  * Mark a page readonly
   1018       1.2  bouyer  * XXX: assuming vaddr = paddr + KERNBASE
   1019       1.2  bouyer  */
   1020       1.2  bouyer 
   1021       1.2  bouyer static void
   1022       1.2  bouyer xen_bt_set_readonly (vaddr_t page)
   1023       1.2  bouyer {
   1024       1.2  bouyer 	pt_entry_t entry;
   1025       1.2  bouyer 
   1026  1.12.4.1     jym 	xen_acquire_reader_ptom_lock();
   1027  1.12.4.1     jym 
   1028       1.2  bouyer 	entry = xpmap_ptom_masked(page - KERNBASE);
   1029       1.4  bouyer 	entry |= PG_k | PG_V;
   1030       1.2  bouyer 
   1031       1.2  bouyer 	HYPERVISOR_update_va_mapping (page, entry, UVMF_INVLPG);
   1032  1.12.4.1     jym 
   1033  1.12.4.1     jym 	xen_release_ptom_lock();
   1034       1.2  bouyer }
   1035       1.4  bouyer 
   1036       1.4  bouyer #ifdef __x86_64__
   1037       1.4  bouyer void
   1038       1.4  bouyer xen_set_user_pgd(paddr_t page)
   1039       1.4  bouyer {
   1040       1.4  bouyer 	struct mmuext_op op;
   1041       1.4  bouyer 	int s = splvm();
   1042       1.4  bouyer 
   1043       1.4  bouyer 	xpq_flush_queue();
   1044       1.4  bouyer 	op.cmd = MMUEXT_NEW_USER_BASEPTR;
   1045  1.12.4.1     jym 
   1046  1.12.4.1     jym 	xen_acquire_reader_ptom_lock();
   1047  1.12.4.1     jym 
   1048  1.12.4.1     jym 	op.arg1.mfn = pfn_to_mfn(page >> PAGE_SHIFT);
   1049       1.4  bouyer         if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
   1050       1.4  bouyer 		panic("xen_set_user_pgd: failed to install new user page"
   1051       1.4  bouyer 			" directory %lx", page);
   1052  1.12.4.1     jym 
   1053  1.12.4.1     jym 	xen_release_ptom_lock();
   1054  1.12.4.1     jym 
   1055       1.4  bouyer 	splx(s);
   1056       1.4  bouyer }
   1057       1.4  bouyer #endif /* __x86_64__ */
   1058