x86_xpmap.c revision 1.8.4.3 1 1.8.4.3 yamt /* $NetBSD: x86_xpmap.c,v 1.8.4.3 2009/08/19 18:46:54 yamt 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 1.8.4.3 yamt __KERNEL_RCSID(0, "$NetBSD: x86_xpmap.c,v 1.8.4.3 2009/08/19 18:46:54 yamt 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 1.2 bouyer
91 1.2 bouyer #include <uvm/uvm.h>
92 1.2 bouyer
93 1.2 bouyer #include <machine/pmap.h>
94 1.2 bouyer #include <machine/gdt.h>
95 1.2 bouyer #include <xen/xenfunc.h>
96 1.2 bouyer
97 1.2 bouyer #include <dev/isa/isareg.h>
98 1.2 bouyer #include <machine/isa_machdep.h>
99 1.2 bouyer
100 1.2 bouyer #undef XENDEBUG
101 1.2 bouyer /* #define XENDEBUG_SYNC */
102 1.2 bouyer /* #define XENDEBUG_LOW */
103 1.2 bouyer
104 1.2 bouyer #ifdef XENDEBUG
105 1.2 bouyer #define XENPRINTF(x) printf x
106 1.2 bouyer #define XENPRINTK(x) printk x
107 1.2 bouyer #define XENPRINTK2(x) /* printk x */
108 1.2 bouyer
109 1.2 bouyer static char XBUF[256];
110 1.2 bouyer #else
111 1.2 bouyer #define XENPRINTF(x)
112 1.2 bouyer #define XENPRINTK(x)
113 1.2 bouyer #define XENPRINTK2(x)
114 1.2 bouyer #endif
115 1.2 bouyer #define PRINTF(x) printf x
116 1.2 bouyer #define PRINTK(x) printk x
117 1.2 bouyer
118 1.4 bouyer /* on x86_64 kernel runs in ring 3 */
119 1.4 bouyer #ifdef __x86_64__
120 1.4 bouyer #define PG_k PG_u
121 1.4 bouyer #else
122 1.4 bouyer #define PG_k 0
123 1.4 bouyer #endif
124 1.4 bouyer
125 1.2 bouyer volatile shared_info_t *HYPERVISOR_shared_info;
126 1.8.4.1 yamt /* Xen requires the start_info struct to be page aligned */
127 1.8.4.1 yamt union start_info_union start_info_union __aligned(PAGE_SIZE);
128 1.6 bouyer unsigned long *xpmap_phys_to_machine_mapping;
129 1.2 bouyer
130 1.2 bouyer void xen_failsafe_handler(void);
131 1.2 bouyer
132 1.2 bouyer #define HYPERVISOR_mmu_update_self(req, count, success_count) \
133 1.2 bouyer HYPERVISOR_mmu_update((req), (count), (success_count), DOMID_SELF)
134 1.2 bouyer
135 1.2 bouyer void
136 1.2 bouyer xen_failsafe_handler(void)
137 1.2 bouyer {
138 1.2 bouyer
139 1.2 bouyer panic("xen_failsafe_handler called!\n");
140 1.2 bouyer }
141 1.2 bouyer
142 1.2 bouyer
143 1.2 bouyer void
144 1.2 bouyer xen_set_ldt(vaddr_t base, uint32_t entries)
145 1.2 bouyer {
146 1.2 bouyer vaddr_t va;
147 1.2 bouyer vaddr_t end;
148 1.4 bouyer pt_entry_t *ptp;
149 1.2 bouyer int s;
150 1.2 bouyer
151 1.2 bouyer #ifdef __x86_64__
152 1.2 bouyer end = base + (entries << 3);
153 1.2 bouyer #else
154 1.2 bouyer end = base + entries * sizeof(union descriptor);
155 1.2 bouyer #endif
156 1.2 bouyer
157 1.2 bouyer for (va = base; va < end; va += PAGE_SIZE) {
158 1.2 bouyer KASSERT(va >= VM_MIN_KERNEL_ADDRESS);
159 1.2 bouyer ptp = kvtopte(va);
160 1.5 bouyer XENPRINTF(("xen_set_ldt %p %d %p\n", (void *)base,
161 1.5 bouyer entries, ptp));
162 1.4 bouyer pmap_pte_clearbits(ptp, PG_RW);
163 1.2 bouyer }
164 1.2 bouyer s = splvm();
165 1.2 bouyer xpq_queue_set_ldt(base, entries);
166 1.2 bouyer xpq_flush_queue();
167 1.2 bouyer splx(s);
168 1.2 bouyer }
169 1.2 bouyer
170 1.2 bouyer #ifdef XENDEBUG
171 1.2 bouyer void xpq_debug_dump(void);
172 1.2 bouyer #endif
173 1.2 bouyer
174 1.2 bouyer #define XPQUEUE_SIZE 2048
175 1.2 bouyer static mmu_update_t xpq_queue[XPQUEUE_SIZE];
176 1.2 bouyer static int xpq_idx = 0;
177 1.2 bouyer
178 1.2 bouyer void
179 1.8 cegger xpq_flush_queue(void)
180 1.2 bouyer {
181 1.2 bouyer int i, ok;
182 1.2 bouyer
183 1.2 bouyer XENPRINTK2(("flush queue %p entries %d\n", xpq_queue, xpq_idx));
184 1.2 bouyer for (i = 0; i < xpq_idx; i++)
185 1.6 bouyer XENPRINTK2(("%d: %p %08" PRIx64 "\n", i,
186 1.8 cegger (uint64_t)xpq_queue[i].ptr, (uint64_t)xpq_queue[i].val));
187 1.2 bouyer if (xpq_idx != 0 &&
188 1.2 bouyer HYPERVISOR_mmu_update_self(xpq_queue, xpq_idx, &ok) < 0) {
189 1.2 bouyer printf("xpq_flush_queue: %d entries \n", xpq_idx);
190 1.2 bouyer for (i = 0; i < xpq_idx; i++)
191 1.3 bouyer printf("0x%016" PRIx64 ": 0x%016" PRIx64 "\n",
192 1.8 cegger (uint64_t)xpq_queue[i].ptr,
193 1.8 cegger (uint64_t)xpq_queue[i].val);
194 1.2 bouyer panic("HYPERVISOR_mmu_update failed\n");
195 1.2 bouyer }
196 1.2 bouyer xpq_idx = 0;
197 1.2 bouyer }
198 1.2 bouyer
199 1.2 bouyer static inline void
200 1.2 bouyer xpq_increment_idx(void)
201 1.2 bouyer {
202 1.2 bouyer
203 1.2 bouyer xpq_idx++;
204 1.2 bouyer if (__predict_false(xpq_idx == XPQUEUE_SIZE))
205 1.2 bouyer xpq_flush_queue();
206 1.2 bouyer }
207 1.2 bouyer
208 1.2 bouyer void
209 1.2 bouyer xpq_queue_machphys_update(paddr_t ma, paddr_t pa)
210 1.2 bouyer {
211 1.6 bouyer XENPRINTK2(("xpq_queue_machphys_update ma=0x%" PRIx64 " pa=0x%" PRIx64
212 1.6 bouyer "\n", (int64_t)ma, (int64_t)pa));
213 1.2 bouyer xpq_queue[xpq_idx].ptr = ma | MMU_MACHPHYS_UPDATE;
214 1.2 bouyer xpq_queue[xpq_idx].val = (pa - XPMAP_OFFSET) >> PAGE_SHIFT;
215 1.2 bouyer xpq_increment_idx();
216 1.2 bouyer #ifdef XENDEBUG_SYNC
217 1.2 bouyer xpq_flush_queue();
218 1.2 bouyer #endif
219 1.2 bouyer }
220 1.2 bouyer
221 1.2 bouyer void
222 1.6 bouyer xpq_queue_pte_update(paddr_t ptr, pt_entry_t val)
223 1.2 bouyer {
224 1.2 bouyer
225 1.6 bouyer KASSERT((ptr & 3) == 0);
226 1.2 bouyer xpq_queue[xpq_idx].ptr = (paddr_t)ptr | MMU_NORMAL_PT_UPDATE;
227 1.2 bouyer xpq_queue[xpq_idx].val = val;
228 1.2 bouyer xpq_increment_idx();
229 1.2 bouyer #ifdef XENDEBUG_SYNC
230 1.2 bouyer xpq_flush_queue();
231 1.2 bouyer #endif
232 1.2 bouyer }
233 1.2 bouyer
234 1.2 bouyer void
235 1.2 bouyer xpq_queue_pt_switch(paddr_t pa)
236 1.2 bouyer {
237 1.2 bouyer struct mmuext_op op;
238 1.2 bouyer xpq_flush_queue();
239 1.2 bouyer
240 1.6 bouyer XENPRINTK2(("xpq_queue_pt_switch: 0x%" PRIx64 " 0x%" PRIx64 "\n",
241 1.6 bouyer (int64_t)pa, (int64_t)pa));
242 1.2 bouyer op.cmd = MMUEXT_NEW_BASEPTR;
243 1.2 bouyer op.arg1.mfn = pa >> PAGE_SHIFT;
244 1.2 bouyer if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
245 1.2 bouyer panic("xpq_queue_pt_switch");
246 1.2 bouyer }
247 1.2 bouyer
248 1.2 bouyer void
249 1.2 bouyer xpq_queue_pin_table(paddr_t pa)
250 1.2 bouyer {
251 1.2 bouyer struct mmuext_op op;
252 1.2 bouyer xpq_flush_queue();
253 1.2 bouyer
254 1.6 bouyer XENPRINTK2(("xpq_queue_pin_table: 0x%" PRIx64 " 0x%" PRIx64 "\n",
255 1.6 bouyer (int64_t)pa, (int64_t)pa));
256 1.2 bouyer op.arg1.mfn = pa >> PAGE_SHIFT;
257 1.2 bouyer
258 1.6 bouyer #if defined(__x86_64__)
259 1.2 bouyer op.cmd = MMUEXT_PIN_L4_TABLE;
260 1.2 bouyer #else
261 1.2 bouyer op.cmd = MMUEXT_PIN_L2_TABLE;
262 1.2 bouyer #endif
263 1.2 bouyer if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
264 1.2 bouyer panic("xpq_queue_pin_table");
265 1.2 bouyer }
266 1.2 bouyer
267 1.6 bouyer #ifdef PAE
268 1.6 bouyer static void
269 1.6 bouyer xpq_queue_pin_l3_table(paddr_t pa)
270 1.6 bouyer {
271 1.6 bouyer struct mmuext_op op;
272 1.6 bouyer xpq_flush_queue();
273 1.6 bouyer
274 1.6 bouyer XENPRINTK2(("xpq_queue_pin_l2_table: 0x%" PRIx64 " 0x%" PRIx64 "\n",
275 1.6 bouyer (int64_t)pa, (int64_t)pa));
276 1.6 bouyer op.arg1.mfn = pa >> PAGE_SHIFT;
277 1.6 bouyer
278 1.6 bouyer op.cmd = MMUEXT_PIN_L3_TABLE;
279 1.6 bouyer if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
280 1.6 bouyer panic("xpq_queue_pin_table");
281 1.6 bouyer }
282 1.6 bouyer #endif
283 1.6 bouyer
284 1.2 bouyer void
285 1.2 bouyer xpq_queue_unpin_table(paddr_t pa)
286 1.2 bouyer {
287 1.2 bouyer struct mmuext_op op;
288 1.2 bouyer xpq_flush_queue();
289 1.2 bouyer
290 1.6 bouyer XENPRINTK2(("xpq_queue_unpin_table: 0x%" PRIx64 " 0x%" PRIx64 "\n",
291 1.6 bouyer (int64_t)pa, (int64_t)pa));
292 1.2 bouyer op.arg1.mfn = pa >> PAGE_SHIFT;
293 1.2 bouyer op.cmd = MMUEXT_UNPIN_TABLE;
294 1.2 bouyer if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
295 1.2 bouyer panic("xpq_queue_unpin_table");
296 1.2 bouyer }
297 1.2 bouyer
298 1.2 bouyer void
299 1.2 bouyer xpq_queue_set_ldt(vaddr_t va, uint32_t entries)
300 1.2 bouyer {
301 1.2 bouyer struct mmuext_op op;
302 1.2 bouyer xpq_flush_queue();
303 1.2 bouyer
304 1.2 bouyer XENPRINTK2(("xpq_queue_set_ldt\n"));
305 1.2 bouyer KASSERT(va == (va & ~PAGE_MASK));
306 1.2 bouyer op.cmd = MMUEXT_SET_LDT;
307 1.2 bouyer op.arg1.linear_addr = va;
308 1.2 bouyer op.arg2.nr_ents = entries;
309 1.2 bouyer if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
310 1.2 bouyer panic("xpq_queue_set_ldt");
311 1.2 bouyer }
312 1.2 bouyer
313 1.2 bouyer void
314 1.8 cegger xpq_queue_tlb_flush(void)
315 1.2 bouyer {
316 1.2 bouyer struct mmuext_op op;
317 1.2 bouyer xpq_flush_queue();
318 1.2 bouyer
319 1.2 bouyer XENPRINTK2(("xpq_queue_tlb_flush\n"));
320 1.2 bouyer op.cmd = MMUEXT_TLB_FLUSH_LOCAL;
321 1.2 bouyer if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
322 1.2 bouyer panic("xpq_queue_tlb_flush");
323 1.2 bouyer }
324 1.2 bouyer
325 1.2 bouyer void
326 1.8 cegger xpq_flush_cache(void)
327 1.2 bouyer {
328 1.2 bouyer struct mmuext_op op;
329 1.2 bouyer int s = splvm();
330 1.2 bouyer xpq_flush_queue();
331 1.2 bouyer
332 1.2 bouyer XENPRINTK2(("xpq_queue_flush_cache\n"));
333 1.2 bouyer op.cmd = MMUEXT_FLUSH_CACHE;
334 1.2 bouyer if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
335 1.2 bouyer panic("xpq_flush_cache");
336 1.2 bouyer splx(s);
337 1.2 bouyer }
338 1.2 bouyer
339 1.2 bouyer void
340 1.2 bouyer xpq_queue_invlpg(vaddr_t va)
341 1.2 bouyer {
342 1.2 bouyer struct mmuext_op op;
343 1.2 bouyer xpq_flush_queue();
344 1.2 bouyer
345 1.2 bouyer XENPRINTK2(("xpq_queue_invlpg %p\n", (void *)va));
346 1.2 bouyer op.cmd = MMUEXT_INVLPG_LOCAL;
347 1.2 bouyer op.arg1.linear_addr = (va & ~PAGE_MASK);
348 1.2 bouyer if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
349 1.2 bouyer panic("xpq_queue_invlpg");
350 1.2 bouyer }
351 1.2 bouyer
352 1.2 bouyer int
353 1.6 bouyer xpq_update_foreign(paddr_t ptr, pt_entry_t val, int dom)
354 1.2 bouyer {
355 1.2 bouyer mmu_update_t op;
356 1.2 bouyer int ok;
357 1.2 bouyer xpq_flush_queue();
358 1.2 bouyer
359 1.6 bouyer op.ptr = ptr;
360 1.2 bouyer op.val = val;
361 1.2 bouyer if (HYPERVISOR_mmu_update(&op, 1, &ok, dom) < 0)
362 1.2 bouyer return EFAULT;
363 1.2 bouyer return (0);
364 1.2 bouyer }
365 1.2 bouyer
366 1.2 bouyer #ifdef XENDEBUG
367 1.2 bouyer void
368 1.8 cegger xpq_debug_dump(void)
369 1.2 bouyer {
370 1.2 bouyer int i;
371 1.2 bouyer
372 1.2 bouyer XENPRINTK2(("idx: %d\n", xpq_idx));
373 1.2 bouyer for (i = 0; i < xpq_idx; i++) {
374 1.8.4.2 yamt snprintf(XBUF, sizeof(XBUF), "%" PRIx64 " %08" PRIx64,
375 1.8 cegger (uint64_t)xpq_queue[i].ptr, (uint64_t)xpq_queue[i].val);
376 1.2 bouyer if (++i < xpq_idx)
377 1.8.4.2 yamt snprintf(XBUF + strlen(XBUF),
378 1.8.4.2 yamt sizeof(XBUF) - strlen(XBUF),
379 1.8.4.2 yamt "%" PRIx64 " %08" PRIx64,
380 1.8.4.2 yamt (uint64_t)xpq_queue[i].ptr,
381 1.8.4.2 yamt (uint64_t)xpq_queue[i].val);
382 1.2 bouyer if (++i < xpq_idx)
383 1.8.4.2 yamt snprintf(XBUF + strlen(XBUF),
384 1.8.4.2 yamt sizeof(XBUF) - strlen(XBUF),
385 1.8.4.2 yamt "%" PRIx64 " %08" PRIx64,
386 1.8.4.2 yamt (uint64_t)xpq_queue[i].ptr,
387 1.8.4.2 yamt (uint64_t)xpq_queue[i].val);
388 1.2 bouyer if (++i < xpq_idx)
389 1.8.4.2 yamt snprintf(XBUF + strlen(XBUF),
390 1.8.4.2 yamt sizeof(XBUF) - strlen(XBUF),
391 1.8.4.2 yamt "%" PRIx64 " %08" PRIx64,
392 1.8.4.2 yamt (uint64_t)xpq_queue[i].ptr,
393 1.8.4.2 yamt (uint64_t)xpq_queue[i].val);
394 1.2 bouyer XENPRINTK2(("%d: %s\n", xpq_idx, XBUF));
395 1.2 bouyer }
396 1.2 bouyer }
397 1.2 bouyer #endif
398 1.2 bouyer
399 1.2 bouyer
400 1.2 bouyer extern volatile struct xencons_interface *xencons_interface; /* XXX */
401 1.2 bouyer extern struct xenstore_domain_interface *xenstore_interface; /* XXX */
402 1.2 bouyer
403 1.2 bouyer static void xen_bt_set_readonly (vaddr_t);
404 1.2 bouyer static void xen_bootstrap_tables (vaddr_t, vaddr_t, int, int, int);
405 1.2 bouyer
406 1.2 bouyer /* How many PDEs ? */
407 1.2 bouyer #if L2_SLOT_KERNBASE > 0
408 1.2 bouyer #define TABLE_L2_ENTRIES (2 * (NKL2_KIMG_ENTRIES + 1))
409 1.2 bouyer #else
410 1.2 bouyer #define TABLE_L2_ENTRIES (NKL2_KIMG_ENTRIES + 1)
411 1.2 bouyer #endif
412 1.2 bouyer
413 1.2 bouyer /*
414 1.2 bouyer * Construct and switch to new pagetables
415 1.2 bouyer * first_avail is the first vaddr we can use after
416 1.2 bouyer * we get rid of Xen pagetables
417 1.2 bouyer */
418 1.2 bouyer
419 1.2 bouyer vaddr_t xen_pmap_bootstrap (void);
420 1.2 bouyer
421 1.2 bouyer /*
422 1.2 bouyer * Function to get rid of Xen bootstrap tables
423 1.2 bouyer */
424 1.2 bouyer
425 1.6 bouyer /* How many PDP do we need: */
426 1.6 bouyer #ifdef PAE
427 1.6 bouyer /*
428 1.6 bouyer * For PAE, we consider a single contigous L2 "superpage" of 4 pages,
429 1.6 bouyer * all of them mapped by the L3 page. We also need a shadow page
430 1.6 bouyer * for L3[3].
431 1.6 bouyer */
432 1.6 bouyer static const int l2_4_count = 6;
433 1.6 bouyer #else
434 1.6 bouyer static const int l2_4_count = PTP_LEVELS - 1;
435 1.6 bouyer #endif
436 1.6 bouyer
437 1.2 bouyer vaddr_t
438 1.8 cegger xen_pmap_bootstrap(void)
439 1.2 bouyer {
440 1.4 bouyer int count, oldcount;
441 1.4 bouyer long mapsize;
442 1.2 bouyer vaddr_t bootstrap_tables, init_tables;
443 1.2 bouyer
444 1.6 bouyer xpmap_phys_to_machine_mapping =
445 1.6 bouyer (unsigned long *)xen_start_info.mfn_list;
446 1.2 bouyer init_tables = xen_start_info.pt_base;
447 1.2 bouyer __PRINTK(("xen_arch_pmap_bootstrap init_tables=0x%lx\n", init_tables));
448 1.2 bouyer
449 1.2 bouyer /* Space after Xen boostrap tables should be free */
450 1.2 bouyer bootstrap_tables = xen_start_info.pt_base +
451 1.2 bouyer (xen_start_info.nr_pt_frames * PAGE_SIZE);
452 1.2 bouyer
453 1.4 bouyer /*
454 1.4 bouyer * Calculate how many space we need
455 1.4 bouyer * first everything mapped before the Xen bootstrap tables
456 1.4 bouyer */
457 1.4 bouyer mapsize = init_tables - KERNTEXTOFF;
458 1.4 bouyer /* after the tables we'll have:
459 1.4 bouyer * - UAREA
460 1.4 bouyer * - dummy user PGD (x86_64)
461 1.4 bouyer * - HYPERVISOR_shared_info
462 1.4 bouyer * - ISA I/O mem (if needed)
463 1.4 bouyer */
464 1.4 bouyer mapsize += UPAGES * NBPG;
465 1.4 bouyer #ifdef __x86_64__
466 1.4 bouyer mapsize += NBPG;
467 1.4 bouyer #endif
468 1.4 bouyer mapsize += NBPG;
469 1.2 bouyer
470 1.2 bouyer #ifdef DOM0OPS
471 1.8.4.1 yamt if (xendomain_is_dom0()) {
472 1.2 bouyer /* space for ISA I/O mem */
473 1.4 bouyer mapsize += IOM_SIZE;
474 1.4 bouyer }
475 1.4 bouyer #endif
476 1.4 bouyer /* at this point mapsize doens't include the table size */
477 1.4 bouyer
478 1.4 bouyer #ifdef __x86_64__
479 1.4 bouyer count = TABLE_L2_ENTRIES;
480 1.4 bouyer #else
481 1.4 bouyer count = (mapsize + (NBPD_L2 -1)) >> L2_SHIFT;
482 1.4 bouyer #endif /* __x86_64__ */
483 1.4 bouyer
484 1.4 bouyer /* now compute how many L2 pages we need exactly */
485 1.4 bouyer XENPRINTK(("bootstrap_final mapsize 0x%lx count %d\n", mapsize, count));
486 1.4 bouyer while (mapsize + (count + l2_4_count) * PAGE_SIZE + KERNTEXTOFF >
487 1.4 bouyer ((long)count << L2_SHIFT) + KERNBASE) {
488 1.4 bouyer count++;
489 1.2 bouyer }
490 1.4 bouyer #ifndef __x86_64__
491 1.5 bouyer /*
492 1.5 bouyer * one more L2 page: we'll alocate several pages after kva_start
493 1.5 bouyer * in pmap_bootstrap() before pmap_growkernel(), which have not been
494 1.5 bouyer * counted here. It's not a big issue to allocate one more L2 as
495 1.5 bouyer * pmap_growkernel() will be called anyway.
496 1.5 bouyer */
497 1.5 bouyer count++;
498 1.4 bouyer nkptp[1] = count;
499 1.2 bouyer #endif
500 1.2 bouyer
501 1.4 bouyer /*
502 1.4 bouyer * install bootstrap pages. We may need more L2 pages than will
503 1.4 bouyer * have the final table here, as it's installed after the final table
504 1.4 bouyer */
505 1.4 bouyer oldcount = count;
506 1.4 bouyer
507 1.4 bouyer bootstrap_again:
508 1.4 bouyer XENPRINTK(("bootstrap_again oldcount %d\n", oldcount));
509 1.2 bouyer /*
510 1.2 bouyer * Xen space we'll reclaim may not be enough for our new page tables,
511 1.2 bouyer * move bootstrap tables if necessary
512 1.2 bouyer */
513 1.4 bouyer if (bootstrap_tables < init_tables + ((count + l2_4_count) * PAGE_SIZE))
514 1.2 bouyer bootstrap_tables = init_tables +
515 1.4 bouyer ((count + l2_4_count) * PAGE_SIZE);
516 1.4 bouyer /* make sure we have enough to map the bootstrap_tables */
517 1.4 bouyer if (bootstrap_tables + ((oldcount + l2_4_count) * PAGE_SIZE) >
518 1.4 bouyer ((long)oldcount << L2_SHIFT) + KERNBASE) {
519 1.4 bouyer oldcount++;
520 1.4 bouyer goto bootstrap_again;
521 1.4 bouyer }
522 1.2 bouyer
523 1.2 bouyer /* Create temporary tables */
524 1.2 bouyer xen_bootstrap_tables(xen_start_info.pt_base, bootstrap_tables,
525 1.4 bouyer xen_start_info.nr_pt_frames, oldcount, 0);
526 1.2 bouyer
527 1.2 bouyer /* Create final tables */
528 1.2 bouyer xen_bootstrap_tables(bootstrap_tables, init_tables,
529 1.4 bouyer oldcount + l2_4_count, count, 1);
530 1.2 bouyer
531 1.4 bouyer /* zero out free space after tables */
532 1.4 bouyer memset((void *)(init_tables + ((count + l2_4_count) * PAGE_SIZE)), 0,
533 1.4 bouyer (UPAGES + 1) * NBPG);
534 1.4 bouyer return (init_tables + ((count + l2_4_count) * PAGE_SIZE));
535 1.2 bouyer }
536 1.2 bouyer
537 1.2 bouyer
538 1.2 bouyer /*
539 1.2 bouyer * Build a new table and switch to it
540 1.2 bouyer * old_count is # of old tables (including PGD, PDTPE and PDE)
541 1.2 bouyer * new_count is # of new tables (PTE only)
542 1.2 bouyer * we assume areas don't overlap
543 1.2 bouyer */
544 1.2 bouyer
545 1.2 bouyer
546 1.2 bouyer static void
547 1.2 bouyer xen_bootstrap_tables (vaddr_t old_pgd, vaddr_t new_pgd,
548 1.2 bouyer int old_count, int new_count, int final)
549 1.2 bouyer {
550 1.2 bouyer pd_entry_t *pdtpe, *pde, *pte;
551 1.2 bouyer pd_entry_t *cur_pgd, *bt_pgd;
552 1.6 bouyer paddr_t addr;
553 1.6 bouyer vaddr_t page, avail, text_end, map_end;
554 1.2 bouyer int i;
555 1.2 bouyer extern char __data_start;
556 1.2 bouyer
557 1.2 bouyer __PRINTK(("xen_bootstrap_tables(0x%lx, 0x%lx, %d, %d)\n",
558 1.2 bouyer old_pgd, new_pgd, old_count, new_count));
559 1.2 bouyer text_end = ((vaddr_t)&__data_start) & ~PAGE_MASK;
560 1.2 bouyer /*
561 1.2 bouyer * size of R/W area after kernel text:
562 1.2 bouyer * xencons_interface (if present)
563 1.2 bouyer * xenstore_interface (if present)
564 1.6 bouyer * table pages (new_count + l2_4_count entries)
565 1.2 bouyer * extra mappings (only when final is true):
566 1.4 bouyer * UAREA
567 1.4 bouyer * dummy user PGD (x86_64 only)/gdt page (i386 only)
568 1.2 bouyer * HYPERVISOR_shared_info
569 1.2 bouyer * ISA I/O mem (if needed)
570 1.2 bouyer */
571 1.6 bouyer map_end = new_pgd + ((new_count + l2_4_count) * NBPG);
572 1.2 bouyer if (final) {
573 1.4 bouyer map_end += (UPAGES + 1) * NBPG;
574 1.4 bouyer HYPERVISOR_shared_info = (shared_info_t *)map_end;
575 1.2 bouyer map_end += NBPG;
576 1.2 bouyer }
577 1.4 bouyer /*
578 1.4 bouyer * we always set atdevbase, as it's used by init386 to find the first
579 1.4 bouyer * available VA. map_end is updated only if we are dom0, so
580 1.4 bouyer * atdevbase -> atdevbase + IOM_SIZE will be mapped only in
581 1.4 bouyer * this case.
582 1.4 bouyer */
583 1.4 bouyer if (final)
584 1.4 bouyer atdevbase = map_end;
585 1.2 bouyer #ifdef DOM0OPS
586 1.8.4.1 yamt if (final && xendomain_is_dom0()) {
587 1.2 bouyer /* ISA I/O mem */
588 1.2 bouyer map_end += IOM_SIZE;
589 1.2 bouyer }
590 1.2 bouyer #endif /* DOM0OPS */
591 1.2 bouyer
592 1.2 bouyer __PRINTK(("xen_bootstrap_tables text_end 0x%lx map_end 0x%lx\n",
593 1.2 bouyer text_end, map_end));
594 1.8.4.1 yamt __PRINTK(("console 0x%lx ", xen_start_info.console.domU.mfn));
595 1.7 bouyer __PRINTK(("xenstore 0x%lx\n", xen_start_info.store_mfn));
596 1.2 bouyer
597 1.2 bouyer /*
598 1.2 bouyer * Create bootstrap page tables
599 1.2 bouyer * What we need:
600 1.2 bouyer * - a PGD (level 4)
601 1.2 bouyer * - a PDTPE (level 3)
602 1.2 bouyer * - a PDE (level2)
603 1.2 bouyer * - some PTEs (level 1)
604 1.2 bouyer */
605 1.2 bouyer
606 1.2 bouyer cur_pgd = (pd_entry_t *) old_pgd;
607 1.2 bouyer bt_pgd = (pd_entry_t *) new_pgd;
608 1.2 bouyer memset (bt_pgd, 0, PAGE_SIZE);
609 1.2 bouyer avail = new_pgd + PAGE_SIZE;
610 1.4 bouyer #if PTP_LEVELS > 3
611 1.2 bouyer /* Install level 3 */
612 1.2 bouyer pdtpe = (pd_entry_t *) avail;
613 1.2 bouyer memset (pdtpe, 0, PAGE_SIZE);
614 1.2 bouyer avail += PAGE_SIZE;
615 1.2 bouyer
616 1.6 bouyer addr = ((u_long) pdtpe) - KERNBASE;
617 1.2 bouyer bt_pgd[pl4_pi(KERNTEXTOFF)] =
618 1.4 bouyer xpmap_ptom_masked(addr) | PG_k | PG_RW | PG_V;
619 1.2 bouyer
620 1.6 bouyer __PRINTK(("L3 va 0x%lx pa 0x%" PRIx64 " entry 0x%" PRIx64 " -> L4[0x%x]\n",
621 1.8 cegger pdtpe, (uint64_t)addr, (uint64_t)bt_pgd[pl4_pi(KERNTEXTOFF)],
622 1.6 bouyer pl4_pi(KERNTEXTOFF)));
623 1.4 bouyer #else
624 1.4 bouyer pdtpe = bt_pgd;
625 1.4 bouyer #endif /* PTP_LEVELS > 3 */
626 1.2 bouyer
627 1.4 bouyer #if PTP_LEVELS > 2
628 1.2 bouyer /* Level 2 */
629 1.2 bouyer pde = (pd_entry_t *) avail;
630 1.2 bouyer memset(pde, 0, PAGE_SIZE);
631 1.2 bouyer avail += PAGE_SIZE;
632 1.2 bouyer
633 1.6 bouyer addr = ((u_long) pde) - KERNBASE;
634 1.2 bouyer pdtpe[pl3_pi(KERNTEXTOFF)] =
635 1.6 bouyer xpmap_ptom_masked(addr) | PG_k | PG_V | PG_RW;
636 1.6 bouyer __PRINTK(("L2 va 0x%lx pa 0x%" PRIx64 " entry 0x%" PRIx64 " -> L3[0x%x]\n",
637 1.6 bouyer pde, (int64_t)addr, (int64_t)pdtpe[pl3_pi(KERNTEXTOFF)],
638 1.6 bouyer pl3_pi(KERNTEXTOFF)));
639 1.6 bouyer #elif defined(PAE)
640 1.6 bouyer /* our PAE-style level 2: 5 contigous pages (4 L2 + 1 shadow) */
641 1.6 bouyer pde = (pd_entry_t *) avail;
642 1.6 bouyer memset(pde, 0, PAGE_SIZE * 5);
643 1.6 bouyer avail += PAGE_SIZE * 5;
644 1.6 bouyer addr = ((u_long) pde) - KERNBASE;
645 1.6 bouyer /*
646 1.6 bouyer * enter L2 pages in the L3.
647 1.6 bouyer * The real L2 kernel PD will be the last one (so that
648 1.6 bouyer * pde[L2_SLOT_KERN] always point to the shadow).
649 1.6 bouyer */
650 1.6 bouyer for (i = 0; i < 3; i++, addr += PAGE_SIZE) {
651 1.6 bouyer /*
652 1.6 bouyer * Xen doens't want R/W mappings in L3 entries, it'll add it
653 1.6 bouyer * itself.
654 1.6 bouyer */
655 1.6 bouyer pdtpe[i] = xpmap_ptom_masked(addr) | PG_k | PG_V;
656 1.6 bouyer __PRINTK(("L2 va 0x%lx pa 0x%" PRIx64 " entry 0x%" PRIx64
657 1.6 bouyer " -> L3[0x%x]\n", (vaddr_t)pde + PAGE_SIZE * i,
658 1.6 bouyer (int64_t)addr, (int64_t)pdtpe[i], i));
659 1.6 bouyer }
660 1.6 bouyer addr += PAGE_SIZE;
661 1.6 bouyer pdtpe[3] = xpmap_ptom_masked(addr) | PG_k | PG_V;
662 1.6 bouyer __PRINTK(("L2 va 0x%lx pa 0x%" PRIx64 " entry 0x%" PRIx64
663 1.6 bouyer " -> L3[0x%x]\n", (vaddr_t)pde + PAGE_SIZE * 4,
664 1.6 bouyer (int64_t)addr, (int64_t)pdtpe[3], 3));
665 1.6 bouyer
666 1.6 bouyer #else /* PAE */
667 1.4 bouyer pde = bt_pgd;
668 1.6 bouyer #endif /* PTP_LEVELS > 2 */
669 1.2 bouyer
670 1.2 bouyer /* Level 1 */
671 1.2 bouyer page = KERNTEXTOFF;
672 1.2 bouyer for (i = 0; i < new_count; i ++) {
673 1.6 bouyer vaddr_t cur_page = page;
674 1.2 bouyer
675 1.2 bouyer pte = (pd_entry_t *) avail;
676 1.2 bouyer avail += PAGE_SIZE;
677 1.2 bouyer
678 1.2 bouyer memset(pte, 0, PAGE_SIZE);
679 1.2 bouyer while (pl2_pi(page) == pl2_pi (cur_page)) {
680 1.2 bouyer if (page >= map_end) {
681 1.2 bouyer /* not mapped at all */
682 1.2 bouyer pte[pl1_pi(page)] = 0;
683 1.2 bouyer page += PAGE_SIZE;
684 1.2 bouyer continue;
685 1.2 bouyer }
686 1.2 bouyer pte[pl1_pi(page)] = xpmap_ptom_masked(page - KERNBASE);
687 1.2 bouyer if (page == (vaddr_t)HYPERVISOR_shared_info) {
688 1.2 bouyer pte[pl1_pi(page)] = xen_start_info.shared_info;
689 1.2 bouyer __PRINTK(("HYPERVISOR_shared_info "
690 1.6 bouyer "va 0x%lx pte 0x%" PRIx64 "\n",
691 1.6 bouyer HYPERVISOR_shared_info, (int64_t)pte[pl1_pi(page)]));
692 1.2 bouyer }
693 1.7 bouyer if ((xpmap_ptom_masked(page - KERNBASE) >> PAGE_SHIFT)
694 1.8.4.1 yamt == xen_start_info.console.domU.mfn) {
695 1.2 bouyer xencons_interface = (void *)page;
696 1.8.4.1 yamt pte[pl1_pi(page)] = xen_start_info.console.domU.mfn;
697 1.6 bouyer pte[pl1_pi(page)] <<= PAGE_SHIFT;
698 1.2 bouyer __PRINTK(("xencons_interface "
699 1.6 bouyer "va 0x%lx pte 0x%" PRIx64 "\n",
700 1.6 bouyer xencons_interface, (int64_t)pte[pl1_pi(page)]));
701 1.2 bouyer }
702 1.7 bouyer if ((xpmap_ptom_masked(page - KERNBASE) >> PAGE_SHIFT)
703 1.7 bouyer == xen_start_info.store_mfn) {
704 1.2 bouyer xenstore_interface = (void *)page;
705 1.6 bouyer pte[pl1_pi(page)] = xen_start_info.store_mfn;
706 1.6 bouyer pte[pl1_pi(page)] <<= PAGE_SHIFT;
707 1.2 bouyer __PRINTK(("xenstore_interface "
708 1.6 bouyer "va 0x%lx pte 0x%" PRIx64 "\n",
709 1.6 bouyer xenstore_interface, (int64_t)pte[pl1_pi(page)]));
710 1.2 bouyer }
711 1.2 bouyer #ifdef DOM0OPS
712 1.2 bouyer if (page >= (vaddr_t)atdevbase &&
713 1.2 bouyer page < (vaddr_t)atdevbase + IOM_SIZE) {
714 1.2 bouyer pte[pl1_pi(page)] =
715 1.2 bouyer IOM_BEGIN + (page - (vaddr_t)atdevbase);
716 1.2 bouyer }
717 1.2 bouyer #endif
718 1.4 bouyer pte[pl1_pi(page)] |= PG_k | PG_V;
719 1.2 bouyer if (page < text_end) {
720 1.2 bouyer /* map kernel text RO */
721 1.2 bouyer pte[pl1_pi(page)] |= 0;
722 1.2 bouyer } else if (page >= old_pgd
723 1.2 bouyer && page < old_pgd + (old_count * PAGE_SIZE)) {
724 1.2 bouyer /* map old page tables RO */
725 1.2 bouyer pte[pl1_pi(page)] |= 0;
726 1.2 bouyer } else if (page >= new_pgd &&
727 1.6 bouyer page < new_pgd + ((new_count + l2_4_count) * PAGE_SIZE)) {
728 1.2 bouyer /* map new page tables RO */
729 1.2 bouyer pte[pl1_pi(page)] |= 0;
730 1.2 bouyer } else {
731 1.2 bouyer /* map page RW */
732 1.2 bouyer pte[pl1_pi(page)] |= PG_RW;
733 1.2 bouyer }
734 1.6 bouyer
735 1.8.4.1 yamt if ((page >= old_pgd && page < old_pgd + (old_count * PAGE_SIZE))
736 1.8.4.1 yamt || page >= new_pgd) {
737 1.4 bouyer __PRINTK(("va 0x%lx pa 0x%lx "
738 1.6 bouyer "entry 0x%" PRIx64 " -> L1[0x%x]\n",
739 1.2 bouyer page, page - KERNBASE,
740 1.6 bouyer (int64_t)pte[pl1_pi(page)], pl1_pi(page)));
741 1.8.4.1 yamt }
742 1.2 bouyer page += PAGE_SIZE;
743 1.2 bouyer }
744 1.2 bouyer
745 1.6 bouyer addr = ((u_long) pte) - KERNBASE;
746 1.2 bouyer pde[pl2_pi(cur_page)] =
747 1.4 bouyer xpmap_ptom_masked(addr) | PG_k | PG_RW | PG_V;
748 1.6 bouyer __PRINTK(("L1 va 0x%lx pa 0x%" PRIx64 " entry 0x%" PRIx64
749 1.6 bouyer " -> L2[0x%x]\n", pte, (int64_t)addr,
750 1.6 bouyer (int64_t)pde[pl2_pi(cur_page)], pl2_pi(cur_page)));
751 1.2 bouyer /* Mark readonly */
752 1.2 bouyer xen_bt_set_readonly((vaddr_t) pte);
753 1.2 bouyer }
754 1.2 bouyer
755 1.2 bouyer /* Install recursive page tables mapping */
756 1.6 bouyer #ifdef PAE
757 1.6 bouyer /*
758 1.6 bouyer * we need a shadow page for the kernel's L2 page
759 1.6 bouyer * The real L2 kernel PD will be the last one (so that
760 1.6 bouyer * pde[L2_SLOT_KERN] always point to the shadow.
761 1.6 bouyer */
762 1.6 bouyer memcpy(&pde[L2_SLOT_KERN + NPDPG], &pde[L2_SLOT_KERN], PAGE_SIZE);
763 1.6 bouyer pmap_kl2pd = &pde[L2_SLOT_KERN + NPDPG];
764 1.6 bouyer pmap_kl2paddr = (u_long)pmap_kl2pd - KERNBASE;
765 1.6 bouyer
766 1.6 bouyer /*
767 1.6 bouyer * We don't enter a recursive entry from the L3 PD. Instead,
768 1.6 bouyer * we enter the first 4 L2 pages, which includes the kernel's L2
769 1.6 bouyer * shadow. But we have to entrer the shadow after switching
770 1.6 bouyer * %cr3, or Xen will refcount some PTE with the wrong type.
771 1.6 bouyer */
772 1.6 bouyer addr = (u_long)pde - KERNBASE;
773 1.6 bouyer for (i = 0; i < 3; i++, addr += PAGE_SIZE) {
774 1.6 bouyer pde[PDIR_SLOT_PTE + i] = xpmap_ptom_masked(addr) | PG_k | PG_V;
775 1.6 bouyer __PRINTK(("pde[%d] va 0x%lx pa 0x%lx entry 0x%" PRIx64 "\n",
776 1.6 bouyer (int)(PDIR_SLOT_PTE + i), pde + PAGE_SIZE * i, (long)addr,
777 1.6 bouyer (int64_t)pde[PDIR_SLOT_PTE + i]));
778 1.6 bouyer }
779 1.6 bouyer #if 0
780 1.6 bouyer addr += PAGE_SIZE; /* point to shadow L2 */
781 1.6 bouyer pde[PDIR_SLOT_PTE + 3] = xpmap_ptom_masked(addr) | PG_k | PG_V;
782 1.6 bouyer __PRINTK(("pde[%d] va 0x%lx pa 0x%lx entry 0x%" PRIx64 "\n",
783 1.6 bouyer (int)(PDIR_SLOT_PTE + 3), pde + PAGE_SIZE * 4, (long)addr,
784 1.6 bouyer (int64_t)pde[PDIR_SLOT_PTE + 3]));
785 1.6 bouyer #endif
786 1.8.4.3 yamt /* Mark tables RO, and pin the kernel's shadow as L2 */
787 1.6 bouyer addr = (u_long)pde - KERNBASE;
788 1.6 bouyer for (i = 0; i < 5; i++, addr += PAGE_SIZE) {
789 1.6 bouyer xen_bt_set_readonly(((vaddr_t)pde) + PAGE_SIZE * i);
790 1.6 bouyer if (i == 2 || i == 3)
791 1.6 bouyer continue;
792 1.6 bouyer #if 0
793 1.6 bouyer __PRINTK(("pin L2 %d addr 0x%" PRIx64 "\n", i, (int64_t)addr));
794 1.6 bouyer xpq_queue_pin_table(xpmap_ptom_masked(addr));
795 1.6 bouyer #endif
796 1.6 bouyer }
797 1.6 bouyer if (final) {
798 1.6 bouyer addr = (u_long)pde - KERNBASE + 3 * PAGE_SIZE;
799 1.6 bouyer __PRINTK(("pin L2 %d addr 0x%" PRIx64 "\n", 2, (int64_t)addr));
800 1.6 bouyer xpq_queue_pin_table(xpmap_ptom_masked(addr));
801 1.6 bouyer }
802 1.6 bouyer #if 0
803 1.6 bouyer addr = (u_long)pde - KERNBASE + 2 * PAGE_SIZE;
804 1.6 bouyer __PRINTK(("pin L2 %d addr 0x%" PRIx64 "\n", 2, (int64_t)addr));
805 1.6 bouyer xpq_queue_pin_table(xpmap_ptom_masked(addr));
806 1.6 bouyer #endif
807 1.6 bouyer #else /* PAE */
808 1.6 bouyer /* recursive entry in higher-level PD */
809 1.2 bouyer bt_pgd[PDIR_SLOT_PTE] =
810 1.4 bouyer xpmap_ptom_masked(new_pgd - KERNBASE) | PG_k | PG_V;
811 1.6 bouyer __PRINTK(("bt_pgd[PDIR_SLOT_PTE] va 0x%lx pa 0x%" PRIx64
812 1.6 bouyer " entry 0x%" PRIx64 "\n", new_pgd, (int64_t)new_pgd - KERNBASE,
813 1.6 bouyer (int64_t)bt_pgd[PDIR_SLOT_PTE]));
814 1.2 bouyer /* Mark tables RO */
815 1.2 bouyer xen_bt_set_readonly((vaddr_t) pde);
816 1.6 bouyer #endif
817 1.6 bouyer #if PTP_LEVELS > 2 || defined(PAE)
818 1.2 bouyer xen_bt_set_readonly((vaddr_t) pdtpe);
819 1.4 bouyer #endif
820 1.4 bouyer #if PTP_LEVELS > 3
821 1.2 bouyer xen_bt_set_readonly(new_pgd);
822 1.4 bouyer #endif
823 1.2 bouyer /* Pin the PGD */
824 1.8.4.3 yamt __PRINTK(("pin PGD\n"));
825 1.6 bouyer #ifdef PAE
826 1.6 bouyer xpq_queue_pin_l3_table(xpmap_ptom_masked(new_pgd - KERNBASE));
827 1.6 bouyer #else
828 1.2 bouyer xpq_queue_pin_table(xpmap_ptom_masked(new_pgd - KERNBASE));
829 1.6 bouyer #endif
830 1.4 bouyer #ifdef __i386__
831 1.4 bouyer /* Save phys. addr of PDP, for libkvm. */
832 1.6 bouyer PDPpaddr = (long)pde;
833 1.6 bouyer #ifdef PAE
834 1.6 bouyer /* also save the address of the L3 page */
835 1.6 bouyer pmap_l3pd = pdtpe;
836 1.6 bouyer pmap_l3paddr = (new_pgd - KERNBASE);
837 1.6 bouyer #endif /* PAE */
838 1.6 bouyer #endif /* i386 */
839 1.2 bouyer /* Switch to new tables */
840 1.8.4.3 yamt __PRINTK(("switch to PGD\n"));
841 1.2 bouyer xpq_queue_pt_switch(xpmap_ptom_masked(new_pgd - KERNBASE));
842 1.6 bouyer __PRINTK(("bt_pgd[PDIR_SLOT_PTE] now entry 0x%" PRIx64 "\n",
843 1.6 bouyer (int64_t)bt_pgd[PDIR_SLOT_PTE]));
844 1.6 bouyer #ifdef PAE
845 1.6 bouyer if (final) {
846 1.6 bouyer /* now enter kernel's PTE mappings */
847 1.6 bouyer addr = (u_long)pde - KERNBASE + PAGE_SIZE * 3;
848 1.6 bouyer xpq_queue_pte_update(
849 1.6 bouyer xpmap_ptom(((vaddr_t)&pde[PDIR_SLOT_PTE + 3]) - KERNBASE),
850 1.6 bouyer xpmap_ptom_masked(addr) | PG_k | PG_V);
851 1.6 bouyer xpq_flush_queue();
852 1.6 bouyer }
853 1.6 bouyer #endif
854 1.6 bouyer
855 1.6 bouyer
856 1.2 bouyer
857 1.2 bouyer /* Now we can safely reclaim space taken by old tables */
858 1.2 bouyer
859 1.8.4.3 yamt __PRINTK(("unpin old PGD\n"));
860 1.2 bouyer /* Unpin old PGD */
861 1.2 bouyer xpq_queue_unpin_table(xpmap_ptom_masked(old_pgd - KERNBASE));
862 1.2 bouyer /* Mark old tables RW */
863 1.2 bouyer page = old_pgd;
864 1.2 bouyer addr = (paddr_t) pde[pl2_pi(page)] & PG_FRAME;
865 1.2 bouyer addr = xpmap_mtop(addr);
866 1.6 bouyer pte = (pd_entry_t *) ((u_long)addr + KERNBASE);
867 1.2 bouyer pte += pl1_pi(page);
868 1.6 bouyer __PRINTK(("*pde 0x%" PRIx64 " addr 0x%" PRIx64 " pte 0x%lx\n",
869 1.6 bouyer (int64_t)pde[pl2_pi(page)], (int64_t)addr, (long)pte));
870 1.2 bouyer while (page < old_pgd + (old_count * PAGE_SIZE) && page < map_end) {
871 1.6 bouyer addr = xpmap_ptom(((u_long) pte) - KERNBASE);
872 1.6 bouyer XENPRINTK(("addr 0x%" PRIx64 " pte 0x%lx *pte 0x%" PRIx64 "\n",
873 1.6 bouyer (int64_t)addr, (long)pte, (int64_t)*pte));
874 1.6 bouyer xpq_queue_pte_update(addr, *pte | PG_RW);
875 1.2 bouyer page += PAGE_SIZE;
876 1.2 bouyer /*
877 1.2 bouyer * Our ptes are contiguous
878 1.2 bouyer * so it's safe to just "++" here
879 1.2 bouyer */
880 1.2 bouyer pte++;
881 1.2 bouyer }
882 1.2 bouyer xpq_flush_queue();
883 1.2 bouyer }
884 1.2 bouyer
885 1.2 bouyer
886 1.2 bouyer /*
887 1.2 bouyer * Bootstrap helper functions
888 1.2 bouyer */
889 1.2 bouyer
890 1.2 bouyer /*
891 1.2 bouyer * Mark a page readonly
892 1.2 bouyer * XXX: assuming vaddr = paddr + KERNBASE
893 1.2 bouyer */
894 1.2 bouyer
895 1.2 bouyer static void
896 1.2 bouyer xen_bt_set_readonly (vaddr_t page)
897 1.2 bouyer {
898 1.2 bouyer pt_entry_t entry;
899 1.2 bouyer
900 1.2 bouyer entry = xpmap_ptom_masked(page - KERNBASE);
901 1.4 bouyer entry |= PG_k | PG_V;
902 1.2 bouyer
903 1.2 bouyer HYPERVISOR_update_va_mapping (page, entry, UVMF_INVLPG);
904 1.2 bouyer }
905 1.4 bouyer
906 1.4 bouyer #ifdef __x86_64__
907 1.4 bouyer void
908 1.4 bouyer xen_set_user_pgd(paddr_t page)
909 1.4 bouyer {
910 1.4 bouyer struct mmuext_op op;
911 1.4 bouyer int s = splvm();
912 1.4 bouyer
913 1.4 bouyer xpq_flush_queue();
914 1.4 bouyer op.cmd = MMUEXT_NEW_USER_BASEPTR;
915 1.4 bouyer op.arg1.mfn = xpmap_phys_to_machine_mapping[page >> PAGE_SHIFT];
916 1.4 bouyer if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF) < 0)
917 1.4 bouyer panic("xen_set_user_pgd: failed to install new user page"
918 1.4 bouyer " directory %lx", page);
919 1.4 bouyer splx(s);
920 1.4 bouyer }
921 1.4 bouyer #endif /* __x86_64__ */
922