sys_machdep.c revision 1.7 1 1.7 bouyer /* $NetBSD: sys_machdep.c,v 1.7 2007/11/22 16:17:13 bouyer Exp $ */
2 1.1 ad
3 1.1 ad /*-
4 1.1 ad * Copyright (c) 1998, 2007 The NetBSD Foundation, Inc.
5 1.1 ad * All rights reserved.
6 1.1 ad *
7 1.1 ad * This code is derived from software contributed to The NetBSD Foundation
8 1.1 ad * by Charles M. Hannum, and by Andrew Doran.
9 1.1 ad *
10 1.1 ad * Redistribution and use in source and binary forms, with or without
11 1.1 ad * modification, are permitted provided that the following conditions
12 1.1 ad * are met:
13 1.1 ad * 1. Redistributions of source code must retain the above copyright
14 1.1 ad * notice, this list of conditions and the following disclaimer.
15 1.1 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 ad * notice, this list of conditions and the following disclaimer in the
17 1.1 ad * documentation and/or other materials provided with the distribution.
18 1.1 ad * 3. All advertising materials mentioning features or use of this software
19 1.1 ad * must display the following acknowledgement:
20 1.1 ad * This product includes software developed by the NetBSD
21 1.1 ad * Foundation, Inc. and its contributors.
22 1.1 ad * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 ad * contributors may be used to endorse or promote products derived
24 1.1 ad * from this software without specific prior written permission.
25 1.1 ad *
26 1.1 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 ad * POSSIBILITY OF SUCH DAMAGE.
37 1.1 ad */
38 1.1 ad
39 1.1 ad #include <sys/cdefs.h>
40 1.7 bouyer __KERNEL_RCSID(0, "$NetBSD: sys_machdep.c,v 1.7 2007/11/22 16:17:13 bouyer Exp $");
41 1.1 ad
42 1.1 ad #include "opt_compat_netbsd.h"
43 1.1 ad #include "opt_mtrr.h"
44 1.1 ad #include "opt_perfctrs.h"
45 1.1 ad #include "opt_user_ldt.h"
46 1.1 ad #include "opt_vm86.h"
47 1.1 ad #include "opt_xen.h"
48 1.1 ad
49 1.1 ad #include <sys/param.h>
50 1.1 ad #include <sys/systm.h>
51 1.1 ad #include <sys/ioctl.h>
52 1.1 ad #include <sys/file.h>
53 1.1 ad #include <sys/time.h>
54 1.1 ad #include <sys/proc.h>
55 1.1 ad #include <sys/user.h>
56 1.1 ad #include <sys/uio.h>
57 1.1 ad #include <sys/kernel.h>
58 1.1 ad #include <sys/buf.h>
59 1.1 ad #include <sys/signal.h>
60 1.1 ad #include <sys/malloc.h>
61 1.1 ad #include <sys/kauth.h>
62 1.1 ad
63 1.1 ad #include <sys/mount.h>
64 1.1 ad #include <sys/syscallargs.h>
65 1.1 ad
66 1.1 ad #include <uvm/uvm_extern.h>
67 1.1 ad
68 1.1 ad #include <machine/cpu.h>
69 1.1 ad #include <machine/cpufunc.h>
70 1.1 ad #include <machine/gdt.h>
71 1.1 ad #include <machine/psl.h>
72 1.1 ad #include <machine/reg.h>
73 1.1 ad #include <machine/sysarch.h>
74 1.1 ad #include <machine/mtrr.h>
75 1.1 ad
76 1.1 ad #ifdef __x86_64__
77 1.1 ad /* Need to be checked. */
78 1.1 ad #undef USER_LDT
79 1.1 ad #undef PERFCTRS
80 1.1 ad #undef VM86
81 1.1 ad #undef IOPERM
82 1.1 ad #else
83 1.1 ad #define IOPERM
84 1.1 ad #endif
85 1.1 ad
86 1.1 ad #ifdef VM86
87 1.1 ad #include <machine/vm86.h>
88 1.1 ad #endif
89 1.1 ad
90 1.1 ad #ifdef PERFCTRS
91 1.1 ad #include <machine/pmc.h>
92 1.1 ad #endif
93 1.1 ad
94 1.3 ad /* XXX needs changes from vmlocking branch */
95 1.3 ad #define mutex_enter(x) /* nothing */
96 1.3 ad #define mutex_exit(x) /* nothing */
97 1.3 ad
98 1.1 ad extern struct vm_map *kernel_map;
99 1.1 ad
100 1.1 ad int x86_get_ioperm(struct lwp *, void *, register_t *);
101 1.1 ad int x86_set_ioperm(struct lwp *, void *, register_t *);
102 1.1 ad int x86_get_mtrr(struct lwp *, void *, register_t *);
103 1.1 ad int x86_set_mtrr(struct lwp *, void *, register_t *);
104 1.5 ad int x86_set_sdbase(void *arg, char which);
105 1.5 ad int x86_get_sdbase(void *arg, char which);
106 1.1 ad
107 1.1 ad #ifdef LDT_DEBUG
108 1.1 ad static void x86_print_ldt(int, const struct segment_descriptor *);
109 1.1 ad
110 1.1 ad static void
111 1.1 ad x86_print_ldt(int i, const struct segment_descriptor *d)
112 1.1 ad {
113 1.1 ad printf("[%d] lolimit=0x%x, lobase=0x%x, type=%u, dpl=%u, p=%u, "
114 1.1 ad "hilimit=0x%x, xx=%x, def32=%u, gran=%u, hibase=0x%x\n",
115 1.1 ad i, d->sd_lolimit, d->sd_lobase, d->sd_type, d->sd_dpl, d->sd_p,
116 1.1 ad d->sd_hilimit, d->sd_xx, d->sd_def32, d->sd_gran, d->sd_hibase);
117 1.1 ad }
118 1.1 ad #endif
119 1.1 ad
120 1.1 ad int
121 1.2 dsl x86_get_ldt_len(struct lwp *l)
122 1.2 dsl {
123 1.2 dsl #ifndef USER_LDT
124 1.2 dsl return -1;
125 1.2 dsl #else
126 1.2 dsl pmap_t pmap = l->l_proc->p_vmspace->vm_map.pmap;
127 1.2 dsl int nldt;
128 1.2 dsl
129 1.3 ad mutex_enter(&pmap->pm_lock);
130 1.2 dsl
131 1.2 dsl if (pmap->pm_flags & PMF_USER_LDT) {
132 1.2 dsl nldt = pmap->pm_ldt_len;
133 1.2 dsl } else {
134 1.2 dsl nldt = NLDT;
135 1.2 dsl }
136 1.3 ad mutex_exit(&pmap->pm_lock);
137 1.2 dsl return nldt;
138 1.2 dsl #endif
139 1.2 dsl }
140 1.2 dsl
141 1.2 dsl
142 1.2 dsl int
143 1.1 ad x86_get_ldt(struct lwp *l, void *args, register_t *retval)
144 1.1 ad {
145 1.2 dsl #ifndef USER_LDT
146 1.2 dsl return EINVAL;
147 1.2 dsl #else
148 1.2 dsl struct x86_get_ldt_args ua;
149 1.2 dsl union descriptor *cp;
150 1.2 dsl int error;
151 1.2 dsl
152 1.2 dsl if ((error = copyin(args, &ua, sizeof(ua))) != 0)
153 1.2 dsl return error;
154 1.2 dsl
155 1.2 dsl if (ua.num < 0 || ua.num > 8192)
156 1.2 dsl return EINVAL;
157 1.2 dsl
158 1.2 dsl cp = malloc(ua.num * sizeof(union descriptor), M_TEMP, M_WAITOK);
159 1.2 dsl if (cp == NULL)
160 1.2 dsl return ENOMEM;
161 1.2 dsl
162 1.2 dsl error = x86_get_ldt1(l, &ua, cp);
163 1.2 dsl *retval = ua.num;
164 1.2 dsl if (error == 0)
165 1.2 dsl error = copyout(cp, ua.desc, ua.num * sizeof(*cp));
166 1.2 dsl
167 1.2 dsl free(cp, M_TEMP);
168 1.2 dsl return error;
169 1.2 dsl #endif
170 1.2 dsl }
171 1.2 dsl
172 1.2 dsl int
173 1.2 dsl x86_get_ldt1(struct lwp *l, struct x86_get_ldt_args *ua, union descriptor *cp)
174 1.2 dsl {
175 1.2 dsl #ifndef USER_LDT
176 1.2 dsl return EINVAL;
177 1.2 dsl #else
178 1.1 ad int error;
179 1.1 ad struct proc *p = l->l_proc;
180 1.1 ad pmap_t pmap = p->p_vmspace->vm_map.pmap;
181 1.1 ad int nldt, num;
182 1.2 dsl union descriptor *lp;
183 1.1 ad
184 1.1 ad error = kauth_authorize_machdep(l->l_cred, KAUTH_MACHDEP_LDT_GET,
185 1.1 ad NULL, NULL, NULL, NULL);
186 1.1 ad if (error)
187 1.1 ad return (error);
188 1.1 ad
189 1.1 ad #ifdef LDT_DEBUG
190 1.2 dsl printf("x86_get_ldt: start=%d num=%d descs=%p\n", ua->start,
191 1.2 dsl ua->num, ua->desc);
192 1.1 ad #endif
193 1.1 ad
194 1.2 dsl if (ua->start < 0 || ua->num < 0 || ua->start > 8192 || ua->num > 8192 ||
195 1.2 dsl ua->start + ua->num > 8192)
196 1.1 ad return (EINVAL);
197 1.1 ad
198 1.3 ad mutex_enter(&pmap->pm_lock);
199 1.1 ad
200 1.1 ad if (pmap->pm_flags & PMF_USER_LDT) {
201 1.1 ad nldt = pmap->pm_ldt_len;
202 1.1 ad lp = pmap->pm_ldt;
203 1.1 ad } else {
204 1.1 ad nldt = NLDT;
205 1.1 ad lp = ldt;
206 1.1 ad }
207 1.1 ad
208 1.2 dsl if (ua->start > nldt) {
209 1.3 ad mutex_exit(&pmap->pm_lock);
210 1.1 ad return (EINVAL);
211 1.1 ad }
212 1.1 ad
213 1.2 dsl lp += ua->start;
214 1.2 dsl num = min(ua->num, nldt - ua->start);
215 1.2 dsl ua->num = num;
216 1.1 ad #ifdef LDT_DEBUG
217 1.1 ad {
218 1.1 ad int i;
219 1.1 ad for (i = 0; i < num; i++)
220 1.1 ad x86_print_ldt(i, &lp[i].sd);
221 1.1 ad }
222 1.1 ad #endif
223 1.1 ad
224 1.1 ad memcpy(cp, lp, num * sizeof(union descriptor));
225 1.3 ad mutex_exit(&pmap->pm_lock);
226 1.1 ad
227 1.2 dsl return 0;
228 1.2 dsl #endif
229 1.2 dsl }
230 1.2 dsl
231 1.2 dsl int
232 1.2 dsl x86_set_ldt(struct lwp *l, void *args, register_t *retval)
233 1.2 dsl {
234 1.2 dsl #ifndef USER_LDT
235 1.2 dsl return EINVAL;
236 1.2 dsl #else
237 1.2 dsl struct x86_set_ldt_args ua;
238 1.2 dsl union descriptor *descv;
239 1.2 dsl int error;
240 1.2 dsl
241 1.2 dsl if ((error = copyin(args, &ua, sizeof(ua))) != 0)
242 1.2 dsl return (error);
243 1.2 dsl
244 1.2 dsl if (ua.num < 0 || ua.num > 8192)
245 1.2 dsl return EINVAL;
246 1.2 dsl
247 1.2 dsl descv = malloc(sizeof (*descv) * ua.num, M_TEMP, M_NOWAIT);
248 1.2 dsl if (descv == NULL)
249 1.2 dsl return ENOMEM;
250 1.2 dsl
251 1.2 dsl error = copyin(ua.desc, descv, sizeof (*descv) * ua.num);
252 1.1 ad if (error == 0)
253 1.2 dsl error = x86_set_ldt1(l, &ua, descv);
254 1.2 dsl *retval = ua.start;
255 1.1 ad
256 1.2 dsl free(descv, M_TEMP);
257 1.2 dsl return error;
258 1.1 ad #endif
259 1.1 ad }
260 1.1 ad
261 1.1 ad int
262 1.2 dsl x86_set_ldt1(struct lwp *l, struct x86_set_ldt_args *ua,
263 1.2 dsl union descriptor *descv)
264 1.1 ad {
265 1.2 dsl #ifndef USER_LDT
266 1.2 dsl return EINVAL;
267 1.2 dsl #else
268 1.1 ad int error, i, n, sel, free_sel;
269 1.1 ad struct proc *p = l->l_proc;
270 1.1 ad struct pcb *pcb = &l->l_addr->u_pcb;
271 1.1 ad pmap_t pmap = p->p_vmspace->vm_map.pmap;
272 1.1 ad size_t old_len, new_len, ldt_len, free_len;
273 1.1 ad union descriptor *old_ldt, *new_ldt, *free_ldt;
274 1.1 ad
275 1.1 ad error = kauth_authorize_machdep(l->l_cred, KAUTH_MACHDEP_LDT_SET,
276 1.1 ad NULL, NULL, NULL, NULL);
277 1.1 ad if (error)
278 1.1 ad return (error);
279 1.1 ad
280 1.2 dsl if (ua->start < 0 || ua->num < 0 || ua->start > 8192 || ua->num > 8192 ||
281 1.2 dsl ua->start + ua->num > 8192)
282 1.1 ad return (EINVAL);
283 1.1 ad
284 1.1 ad /* Check descriptors for access violations. */
285 1.2 dsl for (i = 0; i < ua->num; i++) {
286 1.1 ad union descriptor *desc = &descv[i];
287 1.1 ad
288 1.1 ad switch (desc->sd.sd_type) {
289 1.1 ad case SDT_SYSNULL:
290 1.1 ad desc->sd.sd_p = 0;
291 1.1 ad break;
292 1.1 ad case SDT_SYS286CGT:
293 1.1 ad case SDT_SYS386CGT:
294 1.1 ad /*
295 1.1 ad * Only allow call gates targeting a segment
296 1.1 ad * in the LDT or a user segment in the fixed
297 1.1 ad * part of the gdt. Segments in the LDT are
298 1.1 ad * constrained (below) to be user segments.
299 1.1 ad */
300 1.1 ad if (desc->gd.gd_p != 0 &&
301 1.1 ad !ISLDT(desc->gd.gd_selector) &&
302 1.1 ad ((IDXSEL(desc->gd.gd_selector) >= NGDT) ||
303 1.1 ad (gdt[IDXSEL(desc->gd.gd_selector)].sd.sd_dpl !=
304 1.1 ad SEL_UPL))) {
305 1.2 dsl return EACCES;
306 1.1 ad }
307 1.1 ad break;
308 1.1 ad case SDT_MEMEC:
309 1.1 ad case SDT_MEMEAC:
310 1.1 ad case SDT_MEMERC:
311 1.1 ad case SDT_MEMERAC:
312 1.1 ad /* Must be "present" if executable and conforming. */
313 1.2 dsl if (desc->sd.sd_p == 0)
314 1.2 dsl return EACCES;
315 1.1 ad break;
316 1.1 ad case SDT_MEMRO:
317 1.1 ad case SDT_MEMROA:
318 1.1 ad case SDT_MEMRW:
319 1.1 ad case SDT_MEMRWA:
320 1.1 ad case SDT_MEMROD:
321 1.1 ad case SDT_MEMRODA:
322 1.1 ad case SDT_MEMRWD:
323 1.1 ad case SDT_MEMRWDA:
324 1.1 ad case SDT_MEME:
325 1.1 ad case SDT_MEMEA:
326 1.1 ad case SDT_MEMER:
327 1.1 ad case SDT_MEMERA:
328 1.1 ad break;
329 1.1 ad default:
330 1.1 ad /*
331 1.1 ad * Make sure that unknown descriptor types are
332 1.1 ad * not marked present.
333 1.1 ad */
334 1.2 dsl if (desc->sd.sd_p != 0)
335 1.2 dsl return EACCES;
336 1.1 ad break;
337 1.1 ad }
338 1.1 ad
339 1.1 ad if (desc->sd.sd_p != 0) {
340 1.1 ad /* Only user (ring-3) descriptors may be present. */
341 1.2 dsl if (desc->sd.sd_dpl != SEL_UPL)
342 1.2 dsl return EACCES;
343 1.1 ad }
344 1.1 ad }
345 1.1 ad
346 1.1 ad /* allocate user ldt */
347 1.1 ad free_sel = -1;
348 1.1 ad new_ldt = NULL;
349 1.1 ad new_len = 0;
350 1.1 ad free_ldt = NULL;
351 1.1 ad free_len = 0;
352 1.3 ad mutex_enter(&pmap->pm_lock);
353 1.2 dsl if (pmap->pm_ldt == 0 || (ua->start + ua->num) > pmap->pm_ldt_len) {
354 1.1 ad if (pmap->pm_flags & PMF_USER_LDT)
355 1.1 ad ldt_len = pmap->pm_ldt_len;
356 1.1 ad else
357 1.1 ad ldt_len = 512;
358 1.2 dsl while ((ua->start + ua->num) > ldt_len)
359 1.1 ad ldt_len *= 2;
360 1.1 ad new_len = ldt_len * sizeof(union descriptor);
361 1.1 ad
362 1.3 ad mutex_exit(&pmap->pm_lock);
363 1.1 ad new_ldt = (union descriptor *)uvm_km_alloc(kernel_map,
364 1.1 ad new_len, 0, UVM_KMF_WIRED);
365 1.1 ad memset(new_ldt, 0, new_len);
366 1.1 ad sel = ldt_alloc(new_ldt, new_len);
367 1.3 ad mutex_enter(&pmap->pm_lock);
368 1.1 ad
369 1.1 ad if (pmap->pm_ldt != NULL && ldt_len <= pmap->pm_ldt_len) {
370 1.1 ad /*
371 1.1 ad * Another thread (re)allocated the LDT to
372 1.1 ad * sufficient size while we were blocked in
373 1.1 ad * uvm_km_alloc. Oh well. The new entries
374 1.1 ad * will quite probably not be right, but
375 1.1 ad * hey.. not our problem if user applications
376 1.1 ad * have race conditions like that.
377 1.1 ad */
378 1.1 ad goto copy;
379 1.1 ad }
380 1.1 ad
381 1.1 ad old_ldt = pmap->pm_ldt;
382 1.1 ad free_ldt = old_ldt;
383 1.1 ad free_len = pmap->pm_ldt_len * sizeof(union descriptor);
384 1.1 ad
385 1.1 ad if (old_ldt != NULL) {
386 1.1 ad old_len = pmap->pm_ldt_len * sizeof(union descriptor);
387 1.1 ad } else {
388 1.1 ad old_len = NLDT * sizeof(union descriptor);
389 1.1 ad old_ldt = ldt;
390 1.1 ad }
391 1.1 ad
392 1.1 ad memcpy(new_ldt, old_ldt, old_len);
393 1.1 ad memset((char *)new_ldt + old_len, 0, new_len - old_len);
394 1.1 ad
395 1.1 ad pmap->pm_ldt = new_ldt;
396 1.1 ad pmap->pm_ldt_len = ldt_len;
397 1.1 ad
398 1.1 ad if (pmap->pm_flags & PMF_USER_LDT)
399 1.1 ad free_sel = pmap->pm_ldt_sel;
400 1.1 ad else {
401 1.1 ad pmap->pm_flags |= PMF_USER_LDT;
402 1.1 ad free_sel = -1;
403 1.1 ad }
404 1.1 ad pmap->pm_ldt_sel = sel;
405 1.1 ad pcb->pcb_ldt_sel = pmap->pm_ldt_sel;
406 1.1 ad if (pcb == curpcb)
407 1.1 ad lldt(pcb->pcb_ldt_sel);
408 1.1 ad new_ldt = NULL;
409 1.1 ad }
410 1.1 ad copy:
411 1.1 ad /* Now actually replace the descriptors. */
412 1.2 dsl for (i = 0, n = ua->start; i < ua->num; i++, n++)
413 1.1 ad pmap->pm_ldt[n] = descv[i];
414 1.1 ad
415 1.3 ad mutex_exit(&pmap->pm_lock);
416 1.1 ad
417 1.1 ad if (new_ldt != NULL)
418 1.1 ad uvm_km_free(kernel_map, (vaddr_t)new_ldt, new_len,
419 1.1 ad UVM_KMF_WIRED);
420 1.1 ad if (free_sel != -1)
421 1.1 ad ldt_free(free_sel);
422 1.1 ad if (free_ldt != NULL)
423 1.1 ad uvm_km_free(kernel_map, (vaddr_t)free_ldt, free_len,
424 1.1 ad UVM_KMF_WIRED);
425 1.2 dsl
426 1.1 ad return (error);
427 1.1 ad #endif
428 1.1 ad }
429 1.1 ad
430 1.1 ad int
431 1.1 ad x86_iopl(struct lwp *l, void *args, register_t *retval)
432 1.1 ad {
433 1.1 ad int error;
434 1.1 ad struct x86_iopl_args ua;
435 1.1 ad #ifdef XEN
436 1.1 ad struct pcb *pcb = &l->l_addr->u_pcb;
437 1.7 bouyer #ifdef __x86_64__
438 1.7 bouyer #define TSS_IO tss_iobase
439 1.7 bouyer #else
440 1.7 bouyer #define TSS_IO tss_ioopt
441 1.7 bouyer #endif /* __x86_64__ */
442 1.1 ad #else
443 1.1 ad struct trapframe *tf = l->l_md.md_regs;
444 1.1 ad #endif
445 1.1 ad
446 1.1 ad error = kauth_authorize_machdep(l->l_cred, KAUTH_MACHDEP_IOPL,
447 1.1 ad NULL, NULL, NULL, NULL);
448 1.1 ad if (error)
449 1.1 ad return (error);
450 1.1 ad
451 1.1 ad if ((error = copyin(args, &ua, sizeof(ua))) != 0)
452 1.1 ad return error;
453 1.1 ad
454 1.1 ad #ifdef XEN
455 1.1 ad {
456 1.7 bouyer pcb->pcb_tss.TSS_IO &= ~SEL_RPL;
457 1.1 ad if (ua.iopl)
458 1.7 bouyer pcb->pcb_tss.TSS_IO |= SEL_UPL; /* i/o pl */
459 1.1 ad else
460 1.7 bouyer pcb->pcb_tss.TSS_IO |= SEL_KPL; /* i/o pl */
461 1.1 ad }
462 1.1 ad /* Force the change at ring 0. */
463 1.1 ad #ifdef XEN3
464 1.1 ad {
465 1.1 ad struct physdev_op physop;
466 1.1 ad physop.cmd = PHYSDEVOP_SET_IOPL;
467 1.7 bouyer physop.u.set_iopl.iopl = pcb->pcb_tss.TSS_IO & SEL_RPL;
468 1.1 ad HYPERVISOR_physdev_op(&physop);
469 1.1 ad }
470 1.1 ad #else /* XEN3 */
471 1.1 ad {
472 1.1 ad dom0_op_t op;
473 1.1 ad op.cmd = DOM0_IOPL;
474 1.1 ad op.u.iopl.domain = DOMID_SELF;
475 1.7 bouyer op.u.iopl.iopl = pcb->pcb_tss.TSS_IO & SEL_RPL; /* i/o pl */
476 1.1 ad HYPERVISOR_dom0_op(&op);
477 1.1 ad }
478 1.1 ad #endif /* XEN3 */
479 1.7 bouyer #undef TSS_IO
480 1.1 ad #elif defined(__x86_64__)
481 1.1 ad if (ua.iopl)
482 1.1 ad tf->tf_rflags |= PSL_IOPL;
483 1.1 ad else
484 1.1 ad tf->tf_rflags &= ~PSL_IOPL;
485 1.1 ad #else
486 1.1 ad if (ua.iopl)
487 1.1 ad tf->tf_eflags |= PSL_IOPL;
488 1.1 ad else
489 1.1 ad tf->tf_eflags &= ~PSL_IOPL;
490 1.1 ad #endif
491 1.1 ad
492 1.1 ad return 0;
493 1.1 ad }
494 1.1 ad
495 1.1 ad int
496 1.1 ad x86_get_ioperm(struct lwp *l, void *args, register_t *retval)
497 1.1 ad {
498 1.1 ad #ifdef IOPERM
499 1.1 ad int error;
500 1.1 ad struct pcb *pcb = &l->l_addr->u_pcb;
501 1.1 ad struct x86_get_ioperm_args ua;
502 1.1 ad
503 1.1 ad error = kauth_authorize_machdep(l->l_cred, KAUTH_MACHDEP_IOPERM_GET,
504 1.1 ad NULL, NULL, NULL, NULL);
505 1.1 ad if (error)
506 1.1 ad return (error);
507 1.1 ad
508 1.1 ad if ((error = copyin(args, &ua, sizeof(ua))) != 0)
509 1.1 ad return (error);
510 1.1 ad
511 1.1 ad return copyout(pcb->pcb_iomap, ua.iomap, sizeof(pcb->pcb_iomap));
512 1.1 ad #else
513 1.1 ad return EINVAL;
514 1.1 ad #endif
515 1.1 ad }
516 1.1 ad
517 1.1 ad int
518 1.1 ad x86_set_ioperm(struct lwp *l, void *args, register_t *retval)
519 1.1 ad {
520 1.1 ad #ifdef IOPERM
521 1.1 ad int error;
522 1.1 ad struct pcb *pcb = &l->l_addr->u_pcb;
523 1.1 ad struct x86_set_ioperm_args ua;
524 1.1 ad
525 1.1 ad error = kauth_authorize_machdep(l->l_cred, KAUTH_MACHDEP_IOPERM_SET,
526 1.1 ad NULL, NULL, NULL, NULL);
527 1.1 ad if (error)
528 1.1 ad return (error);
529 1.1 ad
530 1.1 ad if ((error = copyin(args, &ua, sizeof(ua))) != 0)
531 1.1 ad return (error);
532 1.1 ad
533 1.1 ad return copyin(ua.iomap, pcb->pcb_iomap, sizeof(pcb->pcb_iomap));
534 1.1 ad #else
535 1.1 ad return EINVAL;
536 1.1 ad #endif
537 1.1 ad }
538 1.1 ad
539 1.1 ad int
540 1.1 ad x86_get_mtrr(struct lwp *l, void *args, register_t *retval)
541 1.1 ad {
542 1.1 ad #ifdef MTRR
543 1.1 ad struct x86_get_mtrr_args ua;
544 1.1 ad int error, n;
545 1.1 ad
546 1.1 ad if (mtrr_funcs == NULL)
547 1.1 ad return ENOSYS;
548 1.1 ad
549 1.1 ad error = kauth_authorize_machdep(l->l_cred, KAUTH_MACHDEP_MTRR_GET,
550 1.1 ad NULL, NULL, NULL, NULL);
551 1.1 ad if (error)
552 1.1 ad return (error);
553 1.1 ad
554 1.1 ad error = copyin(args, &ua, sizeof ua);
555 1.1 ad if (error != 0)
556 1.1 ad return error;
557 1.1 ad
558 1.1 ad error = copyin(ua.n, &n, sizeof n);
559 1.1 ad if (error != 0)
560 1.1 ad return error;
561 1.1 ad
562 1.1 ad error = mtrr_get(ua.mtrrp, &n, l->l_proc, MTRR_GETSET_USER);
563 1.1 ad
564 1.1 ad copyout(&n, ua.n, sizeof (int));
565 1.1 ad
566 1.1 ad return error;
567 1.1 ad #else
568 1.1 ad return EINVAL;
569 1.1 ad #endif
570 1.1 ad }
571 1.1 ad
572 1.1 ad int
573 1.1 ad x86_set_mtrr(struct lwp *l, void *args, register_t *retval)
574 1.1 ad {
575 1.1 ad #ifdef MTRR
576 1.1 ad int error, n;
577 1.1 ad struct x86_set_mtrr_args ua;
578 1.1 ad
579 1.1 ad if (mtrr_funcs == NULL)
580 1.1 ad return ENOSYS;
581 1.1 ad
582 1.1 ad error = kauth_authorize_machdep(l->l_cred, KAUTH_MACHDEP_MTRR_SET,
583 1.1 ad NULL, NULL, NULL, NULL);
584 1.1 ad if (error)
585 1.1 ad return (error);
586 1.1 ad
587 1.1 ad error = copyin(args, &ua, sizeof ua);
588 1.1 ad if (error != 0)
589 1.1 ad return error;
590 1.1 ad
591 1.1 ad error = copyin(ua.n, &n, sizeof n);
592 1.1 ad if (error != 0)
593 1.1 ad return error;
594 1.1 ad
595 1.1 ad error = mtrr_set(ua.mtrrp, &n, l->l_proc, MTRR_GETSET_USER);
596 1.1 ad if (n != 0)
597 1.1 ad mtrr_commit();
598 1.1 ad
599 1.1 ad copyout(&n, ua.n, sizeof n);
600 1.1 ad
601 1.1 ad return error;
602 1.1 ad #else
603 1.1 ad return EINVAL;
604 1.1 ad #endif
605 1.1 ad }
606 1.1 ad
607 1.1 ad int
608 1.5 ad x86_set_sdbase(void *arg, char which)
609 1.5 ad {
610 1.5 ad #ifdef i386
611 1.6 ad struct segment_descriptor sd;
612 1.5 ad vaddr_t base;
613 1.6 ad int error;
614 1.5 ad
615 1.5 ad error = copyin(arg, &base, sizeof(base));
616 1.5 ad if (error != 0)
617 1.5 ad return error;
618 1.5 ad
619 1.6 ad sd.sd_lobase = base & 0xffffff;
620 1.6 ad sd.sd_hibase = (base >> 24) & 0xff;
621 1.6 ad sd.sd_lolimit = 0xffff;
622 1.6 ad sd.sd_hilimit = 0xf;
623 1.6 ad sd.sd_type = SDT_MEMRWA;
624 1.6 ad sd.sd_dpl = SEL_UPL;
625 1.6 ad sd.sd_p = 1;
626 1.6 ad sd.sd_xx = 0;
627 1.6 ad sd.sd_def32 = 1;
628 1.6 ad sd.sd_gran = 1;
629 1.6 ad
630 1.6 ad crit_enter();
631 1.6 ad if (which == 'f') {
632 1.6 ad memcpy(&curpcb->pcb_fsd, &sd, sizeof(sd));
633 1.6 ad memcpy(&curcpu()->ci_gdt[GUFS_SEL], &sd, sizeof(sd));
634 1.6 ad } else /* which == 'g' */ {
635 1.6 ad memcpy(&curpcb->pcb_gsd, &sd, sizeof(sd));
636 1.6 ad memcpy(&curcpu()->ci_gdt[GUGS_SEL], &sd, sizeof(sd));
637 1.6 ad }
638 1.6 ad crit_exit();
639 1.5 ad
640 1.5 ad return 0;
641 1.5 ad #else
642 1.5 ad return EINVAL;
643 1.5 ad #endif
644 1.5 ad }
645 1.5 ad
646 1.5 ad int
647 1.5 ad x86_get_sdbase(void *arg, char which)
648 1.5 ad {
649 1.5 ad #ifdef i386
650 1.5 ad struct segment_descriptor *sd;
651 1.5 ad vaddr_t base;
652 1.5 ad
653 1.5 ad switch (which) {
654 1.5 ad case 'f':
655 1.6 ad sd = (struct segment_descriptor *)&curpcb->pcb_fsd;
656 1.5 ad break;
657 1.5 ad case 'g':
658 1.6 ad sd = (struct segment_descriptor *)&curpcb->pcb_gsd;
659 1.5 ad break;
660 1.5 ad default:
661 1.5 ad panic("x86_get_sdbase");
662 1.5 ad }
663 1.5 ad
664 1.5 ad base = sd->sd_hibase << 24 | sd->sd_lobase;
665 1.5 ad return copyout(&base, &arg, sizeof(base));
666 1.5 ad #else
667 1.5 ad return EINVAL;
668 1.5 ad #endif
669 1.5 ad }
670 1.5 ad
671 1.5 ad int
672 1.1 ad sys_sysarch(struct lwp *l, void *v, register_t *retval)
673 1.1 ad {
674 1.1 ad struct sys_sysarch_args /* {
675 1.1 ad syscallarg(int) op;
676 1.1 ad syscallarg(void *) parms;
677 1.1 ad } */ *uap = v;
678 1.1 ad int error = 0;
679 1.1 ad
680 1.1 ad switch(SCARG(uap, op)) {
681 1.1 ad case X86_IOPL:
682 1.1 ad error = x86_iopl(l, SCARG(uap, parms), retval);
683 1.1 ad break;
684 1.1 ad
685 1.1 ad case X86_GET_LDT:
686 1.1 ad error = x86_get_ldt(l, SCARG(uap, parms), retval);
687 1.1 ad break;
688 1.1 ad
689 1.1 ad case X86_SET_LDT:
690 1.1 ad error = x86_set_ldt(l, SCARG(uap, parms), retval);
691 1.1 ad break;
692 1.1 ad
693 1.1 ad case X86_GET_IOPERM:
694 1.1 ad error = x86_get_ioperm(l, SCARG(uap, parms), retval);
695 1.1 ad break;
696 1.1 ad
697 1.1 ad case X86_SET_IOPERM:
698 1.1 ad error = x86_set_ioperm(l, SCARG(uap, parms), retval);
699 1.1 ad break;
700 1.1 ad
701 1.1 ad case X86_GET_MTRR:
702 1.1 ad error = x86_get_mtrr(l, SCARG(uap, parms), retval);
703 1.1 ad break;
704 1.1 ad case X86_SET_MTRR:
705 1.1 ad error = x86_set_mtrr(l, SCARG(uap, parms), retval);
706 1.1 ad break;
707 1.1 ad
708 1.1 ad #ifdef VM86
709 1.1 ad case X86_VM86:
710 1.1 ad error = x86_vm86(l, SCARG(uap, parms), retval);
711 1.1 ad break;
712 1.1 ad #ifdef COMPAT_16
713 1.1 ad case X86_OLD_VM86:
714 1.1 ad error = compat_16_x86_vm86(l, SCARG(uap, parms), retval);
715 1.1 ad break;
716 1.1 ad #endif
717 1.1 ad #endif
718 1.1 ad
719 1.1 ad #ifdef PERFCTRS
720 1.1 ad case X86_PMC_INFO:
721 1.1 ad error = pmc_info(l, SCARG(uap, parms), retval);
722 1.1 ad break;
723 1.1 ad
724 1.1 ad case X86_PMC_STARTSTOP:
725 1.1 ad error = pmc_startstop(l, SCARG(uap, parms), retval);
726 1.1 ad break;
727 1.1 ad
728 1.1 ad case X86_PMC_READ:
729 1.1 ad error = pmc_read(l, SCARG(uap, parms), retval);
730 1.1 ad break;
731 1.1 ad #endif
732 1.1 ad
733 1.5 ad case X86_SET_FSBASE:
734 1.5 ad error = x86_set_sdbase(SCARG(uap, parms), 'f');
735 1.5 ad break;
736 1.5 ad
737 1.5 ad case X86_SET_GSBASE:
738 1.5 ad error = x86_set_sdbase(SCARG(uap, parms), 'g');
739 1.5 ad break;
740 1.5 ad
741 1.5 ad case X86_GET_FSBASE:
742 1.5 ad error = x86_get_sdbase(SCARG(uap, parms), 'f');
743 1.5 ad break;
744 1.5 ad
745 1.5 ad case X86_GET_GSBASE:
746 1.5 ad error = x86_get_sdbase(SCARG(uap, parms), 'g');
747 1.5 ad break;
748 1.5 ad
749 1.1 ad default:
750 1.1 ad error = EINVAL;
751 1.1 ad break;
752 1.1 ad }
753 1.1 ad return (error);
754 1.1 ad }
755