• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /******************************************************************************
2  * hypercall.h
3  *
4  * Linux-specific hypervisor handling.
5  *
6  * Copyright (c) 2002-2004, K A Fraser
7  *
8  * This program is free software; you can redistribute it and/or
9  * modify it under the terms of the GNU General Public License version 2
10  * as published by the Free Software Foundation; or, when distributed
11  * separately from the Linux kernel or incorporated into other
12  * software packages, subject to the following license:
13  *
14  * Permission is hereby granted, free of charge, to any person obtaining a copy
15  * of this source file (the "Software"), to deal in the Software without
16  * restriction, including without limitation the rights to use, copy, modify,
17  * merge, publish, distribute, sublicense, and/or sell copies of the Software,
18  * and to permit persons to whom the Software is furnished to do so, subject to
19  * the following conditions:
20  *
21  * The above copyright notice and this permission notice shall be included in
22  * all copies or substantial portions of the Software.
23  *
24  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
25  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
26  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
27  * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
28  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
29  * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
30  * IN THE SOFTWARE.
31  */
32 
33 #ifndef _ASM_X86_XEN_HYPERCALL_H
34 #define _ASM_X86_XEN_HYPERCALL_H
35 
36 #include <linux/kernel.h>
37 #include <linux/spinlock.h>
38 #include <linux/errno.h>
39 #include <linux/string.h>
40 #include <linux/types.h>
41 
42 #include <trace/events/xen.h>
43 
44 #include <asm/page.h>
45 #include <asm/pgtable.h>
46 #include <asm/smap.h>
47 #include <asm/nospec-branch.h>
48 
49 #include <xen/interface/xen.h>
50 #include <xen/interface/sched.h>
51 #include <xen/interface/physdev.h>
52 #include <xen/interface/platform.h>
53 #include <xen/interface/xen-mca.h>
54 
55 /*
56  * The hypercall asms have to meet several constraints:
57  * - Work on 32- and 64-bit.
58  *    The two architectures put their arguments in different sets of
59  *    registers.
60  *
61  * - Work around asm syntax quirks
62  *    It isn't possible to specify one of the rNN registers in a
63  *    constraint, so we use explicit register variables to get the
64  *    args into the right place.
65  *
66  * - Mark all registers as potentially clobbered
67  *    Even unused parameters can be clobbered by the hypervisor, so we
68  *    need to make sure gcc knows it.
69  *
70  * - Avoid compiler bugs.
71  *    This is the tricky part.  Because x86_32 has such a constrained
72  *    register set, gcc versions below 4.3 have trouble generating
73  *    code when all the arg registers and memory are trashed by the
74  *    asm.  There are syntactically simpler ways of achieving the
75  *    semantics below, but they cause the compiler to crash.
76  *
77  *    The only combination I found which works is:
78  *     - assign the __argX variables first
79  *     - list all actually used parameters as "+r" (__argX)
80  *     - clobber the rest
81  *
82  * The result certainly isn't pretty, and it really shows up cpp's
83  * weakness as as macro language.  Sorry.  (But let's just give thanks
84  * there aren't more than 5 arguments...)
85  */
86 
87 extern struct { char _entry[32]; } hypercall_page[];
88 
89 #define __HYPERCALL		"call hypercall_page+%c[offset]"
90 #define __HYPERCALL_ENTRY(x)						\
91 	[offset] "i" (__HYPERVISOR_##x * sizeof(hypercall_page[0]))
92 
93 #ifdef CONFIG_X86_32
94 #define __HYPERCALL_RETREG	"eax"
95 #define __HYPERCALL_ARG1REG	"ebx"
96 #define __HYPERCALL_ARG2REG	"ecx"
97 #define __HYPERCALL_ARG3REG	"edx"
98 #define __HYPERCALL_ARG4REG	"esi"
99 #define __HYPERCALL_ARG5REG	"edi"
100 #else
101 #define __HYPERCALL_RETREG	"rax"
102 #define __HYPERCALL_ARG1REG	"rdi"
103 #define __HYPERCALL_ARG2REG	"rsi"
104 #define __HYPERCALL_ARG3REG	"rdx"
105 #define __HYPERCALL_ARG4REG	"r10"
106 #define __HYPERCALL_ARG5REG	"r8"
107 #endif
108 
109 #define __HYPERCALL_DECLS						\
110 	register unsigned long __res  asm(__HYPERCALL_RETREG);		\
111 	register unsigned long __arg1 asm(__HYPERCALL_ARG1REG) = __arg1; \
112 	register unsigned long __arg2 asm(__HYPERCALL_ARG2REG) = __arg2; \
113 	register unsigned long __arg3 asm(__HYPERCALL_ARG3REG) = __arg3; \
114 	register unsigned long __arg4 asm(__HYPERCALL_ARG4REG) = __arg4; \
115 	register unsigned long __arg5 asm(__HYPERCALL_ARG5REG) = __arg5;
116 
117 #define __HYPERCALL_0PARAM	"=r" (__res)
118 #define __HYPERCALL_1PARAM	__HYPERCALL_0PARAM, "+r" (__arg1)
119 #define __HYPERCALL_2PARAM	__HYPERCALL_1PARAM, "+r" (__arg2)
120 #define __HYPERCALL_3PARAM	__HYPERCALL_2PARAM, "+r" (__arg3)
121 #define __HYPERCALL_4PARAM	__HYPERCALL_3PARAM, "+r" (__arg4)
122 #define __HYPERCALL_5PARAM	__HYPERCALL_4PARAM, "+r" (__arg5)
123 
124 #define __HYPERCALL_0ARG()
125 #define __HYPERCALL_1ARG(a1)						\
126 	__HYPERCALL_0ARG()		__arg1 = (unsigned long)(a1);
127 #define __HYPERCALL_2ARG(a1,a2)						\
128 	__HYPERCALL_1ARG(a1)		__arg2 = (unsigned long)(a2);
129 #define __HYPERCALL_3ARG(a1,a2,a3)					\
130 	__HYPERCALL_2ARG(a1,a2)		__arg3 = (unsigned long)(a3);
131 #define __HYPERCALL_4ARG(a1,a2,a3,a4)					\
132 	__HYPERCALL_3ARG(a1,a2,a3)	__arg4 = (unsigned long)(a4);
133 #define __HYPERCALL_5ARG(a1,a2,a3,a4,a5)				\
134 	__HYPERCALL_4ARG(a1,a2,a3,a4)	__arg5 = (unsigned long)(a5);
135 
136 #define __HYPERCALL_CLOBBER5	"memory"
137 #define __HYPERCALL_CLOBBER4	__HYPERCALL_CLOBBER5, __HYPERCALL_ARG5REG
138 #define __HYPERCALL_CLOBBER3	__HYPERCALL_CLOBBER4, __HYPERCALL_ARG4REG
139 #define __HYPERCALL_CLOBBER2	__HYPERCALL_CLOBBER3, __HYPERCALL_ARG3REG
140 #define __HYPERCALL_CLOBBER1	__HYPERCALL_CLOBBER2, __HYPERCALL_ARG2REG
141 #define __HYPERCALL_CLOBBER0	__HYPERCALL_CLOBBER1, __HYPERCALL_ARG1REG
142 
143 #define _hypercall0(type, name)						\
144 ({									\
145 	__HYPERCALL_DECLS;						\
146 	__HYPERCALL_0ARG();						\
147 	asm volatile (__HYPERCALL					\
148 		      : __HYPERCALL_0PARAM				\
149 		      : __HYPERCALL_ENTRY(name)				\
150 		      : __HYPERCALL_CLOBBER0);				\
151 	(type)__res;							\
152 })
153 
154 #define _hypercall1(type, name, a1)					\
155 ({									\
156 	__HYPERCALL_DECLS;						\
157 	__HYPERCALL_1ARG(a1);						\
158 	asm volatile (__HYPERCALL					\
159 		      : __HYPERCALL_1PARAM				\
160 		      : __HYPERCALL_ENTRY(name)				\
161 		      : __HYPERCALL_CLOBBER1);				\
162 	(type)__res;							\
163 })
164 
165 #define _hypercall2(type, name, a1, a2)					\
166 ({									\
167 	__HYPERCALL_DECLS;						\
168 	__HYPERCALL_2ARG(a1, a2);					\
169 	asm volatile (__HYPERCALL					\
170 		      : __HYPERCALL_2PARAM				\
171 		      : __HYPERCALL_ENTRY(name)				\
172 		      : __HYPERCALL_CLOBBER2);				\
173 	(type)__res;							\
174 })
175 
176 #define _hypercall3(type, name, a1, a2, a3)				\
177 ({									\
178 	__HYPERCALL_DECLS;						\
179 	__HYPERCALL_3ARG(a1, a2, a3);					\
180 	asm volatile (__HYPERCALL					\
181 		      : __HYPERCALL_3PARAM				\
182 		      : __HYPERCALL_ENTRY(name)				\
183 		      : __HYPERCALL_CLOBBER3);				\
184 	(type)__res;							\
185 })
186 
187 #define _hypercall4(type, name, a1, a2, a3, a4)				\
188 ({									\
189 	__HYPERCALL_DECLS;						\
190 	__HYPERCALL_4ARG(a1, a2, a3, a4);				\
191 	asm volatile (__HYPERCALL					\
192 		      : __HYPERCALL_4PARAM				\
193 		      : __HYPERCALL_ENTRY(name)				\
194 		      : __HYPERCALL_CLOBBER4);				\
195 	(type)__res;							\
196 })
197 
198 #define _hypercall5(type, name, a1, a2, a3, a4, a5)			\
199 ({									\
200 	__HYPERCALL_DECLS;						\
201 	__HYPERCALL_5ARG(a1, a2, a3, a4, a5);				\
202 	asm volatile (__HYPERCALL					\
203 		      : __HYPERCALL_5PARAM				\
204 		      : __HYPERCALL_ENTRY(name)				\
205 		      : __HYPERCALL_CLOBBER5);				\
206 	(type)__res;							\
207 })
208 
209 static inline long
privcmd_call(unsigned call,unsigned long a1,unsigned long a2,unsigned long a3,unsigned long a4,unsigned long a5)210 privcmd_call(unsigned call,
211 	     unsigned long a1, unsigned long a2,
212 	     unsigned long a3, unsigned long a4,
213 	     unsigned long a5)
214 {
215 	__HYPERCALL_DECLS;
216 	__HYPERCALL_5ARG(a1, a2, a3, a4, a5);
217 
218 	if (call >= PAGE_SIZE / sizeof(hypercall_page[0]))
219 		return -EINVAL;
220 
221 	stac();
222 	asm volatile(CALL_NOSPEC
223 		     : __HYPERCALL_5PARAM
224 		     : [thunk_target] "a" (&hypercall_page[call])
225 		     : __HYPERCALL_CLOBBER5);
226 	clac();
227 
228 	return (long)__res;
229 }
230 
231 static inline int
HYPERVISOR_set_trap_table(struct trap_info * table)232 HYPERVISOR_set_trap_table(struct trap_info *table)
233 {
234 	return _hypercall1(int, set_trap_table, table);
235 }
236 
237 static inline int
HYPERVISOR_mmu_update(struct mmu_update * req,int count,int * success_count,domid_t domid)238 HYPERVISOR_mmu_update(struct mmu_update *req, int count,
239 		      int *success_count, domid_t domid)
240 {
241 	return _hypercall4(int, mmu_update, req, count, success_count, domid);
242 }
243 
244 static inline int
HYPERVISOR_mmuext_op(struct mmuext_op * op,int count,int * success_count,domid_t domid)245 HYPERVISOR_mmuext_op(struct mmuext_op *op, int count,
246 		     int *success_count, domid_t domid)
247 {
248 	return _hypercall4(int, mmuext_op, op, count, success_count, domid);
249 }
250 
251 static inline int
HYPERVISOR_set_gdt(unsigned long * frame_list,int entries)252 HYPERVISOR_set_gdt(unsigned long *frame_list, int entries)
253 {
254 	return _hypercall2(int, set_gdt, frame_list, entries);
255 }
256 
257 static inline int
HYPERVISOR_stack_switch(unsigned long ss,unsigned long esp)258 HYPERVISOR_stack_switch(unsigned long ss, unsigned long esp)
259 {
260 	return _hypercall2(int, stack_switch, ss, esp);
261 }
262 
263 #ifdef CONFIG_X86_32
264 static inline int
HYPERVISOR_set_callbacks(unsigned long event_selector,unsigned long event_address,unsigned long failsafe_selector,unsigned long failsafe_address)265 HYPERVISOR_set_callbacks(unsigned long event_selector,
266 			 unsigned long event_address,
267 			 unsigned long failsafe_selector,
268 			 unsigned long failsafe_address)
269 {
270 	return _hypercall4(int, set_callbacks,
271 			   event_selector, event_address,
272 			   failsafe_selector, failsafe_address);
273 }
274 #else  /* CONFIG_X86_64 */
275 static inline int
HYPERVISOR_set_callbacks(unsigned long event_address,unsigned long failsafe_address,unsigned long syscall_address)276 HYPERVISOR_set_callbacks(unsigned long event_address,
277 			unsigned long failsafe_address,
278 			unsigned long syscall_address)
279 {
280 	return _hypercall3(int, set_callbacks,
281 			   event_address, failsafe_address,
282 			   syscall_address);
283 }
284 #endif  /* CONFIG_X86_{32,64} */
285 
286 static inline int
HYPERVISOR_callback_op(int cmd,void * arg)287 HYPERVISOR_callback_op(int cmd, void *arg)
288 {
289 	return _hypercall2(int, callback_op, cmd, arg);
290 }
291 
292 static inline int
HYPERVISOR_fpu_taskswitch(int set)293 HYPERVISOR_fpu_taskswitch(int set)
294 {
295 	return _hypercall1(int, fpu_taskswitch, set);
296 }
297 
298 static inline int
HYPERVISOR_sched_op(int cmd,void * arg)299 HYPERVISOR_sched_op(int cmd, void *arg)
300 {
301 	return _hypercall2(int, sched_op, cmd, arg);
302 }
303 
304 static inline long
HYPERVISOR_set_timer_op(u64 timeout)305 HYPERVISOR_set_timer_op(u64 timeout)
306 {
307 	unsigned long timeout_hi = (unsigned long)(timeout>>32);
308 	unsigned long timeout_lo = (unsigned long)timeout;
309 	return _hypercall2(long, set_timer_op, timeout_lo, timeout_hi);
310 }
311 
312 static inline int
HYPERVISOR_mca(struct xen_mc * mc_op)313 HYPERVISOR_mca(struct xen_mc *mc_op)
314 {
315 	mc_op->interface_version = XEN_MCA_INTERFACE_VERSION;
316 	return _hypercall1(int, mca, mc_op);
317 }
318 
319 static inline int
HYPERVISOR_dom0_op(struct xen_platform_op * platform_op)320 HYPERVISOR_dom0_op(struct xen_platform_op *platform_op)
321 {
322 	platform_op->interface_version = XENPF_INTERFACE_VERSION;
323 	return _hypercall1(int, dom0_op, platform_op);
324 }
325 
326 static inline int
HYPERVISOR_set_debugreg(int reg,unsigned long value)327 HYPERVISOR_set_debugreg(int reg, unsigned long value)
328 {
329 	return _hypercall2(int, set_debugreg, reg, value);
330 }
331 
332 static inline unsigned long
HYPERVISOR_get_debugreg(int reg)333 HYPERVISOR_get_debugreg(int reg)
334 {
335 	return _hypercall1(unsigned long, get_debugreg, reg);
336 }
337 
338 static inline int
HYPERVISOR_update_descriptor(u64 ma,u64 desc)339 HYPERVISOR_update_descriptor(u64 ma, u64 desc)
340 {
341 	if (sizeof(u64) == sizeof(long))
342 		return _hypercall2(int, update_descriptor, ma, desc);
343 	return _hypercall4(int, update_descriptor, ma, ma>>32, desc, desc>>32);
344 }
345 
346 static inline long
HYPERVISOR_memory_op(unsigned int cmd,void * arg)347 HYPERVISOR_memory_op(unsigned int cmd, void *arg)
348 {
349 	return _hypercall2(long, memory_op, cmd, arg);
350 }
351 
352 static inline int
HYPERVISOR_multicall(void * call_list,uint32_t nr_calls)353 HYPERVISOR_multicall(void *call_list, uint32_t nr_calls)
354 {
355 	return _hypercall2(int, multicall, call_list, nr_calls);
356 }
357 
358 static inline int
HYPERVISOR_update_va_mapping(unsigned long va,pte_t new_val,unsigned long flags)359 HYPERVISOR_update_va_mapping(unsigned long va, pte_t new_val,
360 			     unsigned long flags)
361 {
362 	if (sizeof(new_val) == sizeof(long))
363 		return _hypercall3(int, update_va_mapping, va,
364 				   new_val.pte, flags);
365 	else
366 		return _hypercall4(int, update_va_mapping, va,
367 				   new_val.pte, new_val.pte >> 32, flags);
368 }
369 extern int __must_check xen_event_channel_op_compat(int, void *);
370 
371 static inline int
HYPERVISOR_event_channel_op(int cmd,void * arg)372 HYPERVISOR_event_channel_op(int cmd, void *arg)
373 {
374 	int rc = _hypercall2(int, event_channel_op, cmd, arg);
375 	if (unlikely(rc == -ENOSYS))
376 		rc = xen_event_channel_op_compat(cmd, arg);
377 	return rc;
378 }
379 
380 static inline int
HYPERVISOR_xen_version(int cmd,void * arg)381 HYPERVISOR_xen_version(int cmd, void *arg)
382 {
383 	return _hypercall2(int, xen_version, cmd, arg);
384 }
385 
386 static inline int
HYPERVISOR_console_io(int cmd,int count,char * str)387 HYPERVISOR_console_io(int cmd, int count, char *str)
388 {
389 	return _hypercall3(int, console_io, cmd, count, str);
390 }
391 
392 extern int __must_check xen_physdev_op_compat(int, void *);
393 
394 static inline int
HYPERVISOR_physdev_op(int cmd,void * arg)395 HYPERVISOR_physdev_op(int cmd, void *arg)
396 {
397 	int rc = _hypercall2(int, physdev_op, cmd, arg);
398 	if (unlikely(rc == -ENOSYS))
399 		rc = xen_physdev_op_compat(cmd, arg);
400 	return rc;
401 }
402 
403 static inline int
HYPERVISOR_grant_table_op(unsigned int cmd,void * uop,unsigned int count)404 HYPERVISOR_grant_table_op(unsigned int cmd, void *uop, unsigned int count)
405 {
406 	return _hypercall3(int, grant_table_op, cmd, uop, count);
407 }
408 
409 static inline int
HYPERVISOR_update_va_mapping_otherdomain(unsigned long va,pte_t new_val,unsigned long flags,domid_t domid)410 HYPERVISOR_update_va_mapping_otherdomain(unsigned long va, pte_t new_val,
411 					 unsigned long flags, domid_t domid)
412 {
413 	if (sizeof(new_val) == sizeof(long))
414 		return _hypercall4(int, update_va_mapping_otherdomain, va,
415 				   new_val.pte, flags, domid);
416 	else
417 		return _hypercall5(int, update_va_mapping_otherdomain, va,
418 				   new_val.pte, new_val.pte >> 32,
419 				   flags, domid);
420 }
421 
422 static inline int
HYPERVISOR_vm_assist(unsigned int cmd,unsigned int type)423 HYPERVISOR_vm_assist(unsigned int cmd, unsigned int type)
424 {
425 	return _hypercall2(int, vm_assist, cmd, type);
426 }
427 
428 static inline int
HYPERVISOR_vcpu_op(int cmd,int vcpuid,void * extra_args)429 HYPERVISOR_vcpu_op(int cmd, int vcpuid, void *extra_args)
430 {
431 	return _hypercall3(int, vcpu_op, cmd, vcpuid, extra_args);
432 }
433 
434 #ifdef CONFIG_X86_64
435 static inline int
HYPERVISOR_set_segment_base(int reg,unsigned long value)436 HYPERVISOR_set_segment_base(int reg, unsigned long value)
437 {
438 	return _hypercall2(int, set_segment_base, reg, value);
439 }
440 #endif
441 
442 static inline int
HYPERVISOR_suspend(unsigned long start_info_mfn)443 HYPERVISOR_suspend(unsigned long start_info_mfn)
444 {
445 	struct sched_shutdown r = { .reason = SHUTDOWN_suspend };
446 
447 	/*
448 	 * For a PV guest the tools require that the start_info mfn be
449 	 * present in rdx/edx when the hypercall is made. Per the
450 	 * hypercall calling convention this is the third hypercall
451 	 * argument, which is start_info_mfn here.
452 	 */
453 	return _hypercall3(int, sched_op, SCHEDOP_shutdown, &r, start_info_mfn);
454 }
455 
456 static inline int
HYPERVISOR_nmi_op(unsigned long op,unsigned long arg)457 HYPERVISOR_nmi_op(unsigned long op, unsigned long arg)
458 {
459 	return _hypercall2(int, nmi_op, op, arg);
460 }
461 
462 static inline unsigned long __must_check
HYPERVISOR_hvm_op(int op,void * arg)463 HYPERVISOR_hvm_op(int op, void *arg)
464 {
465        return _hypercall2(unsigned long, hvm_op, op, arg);
466 }
467 
468 static inline int
HYPERVISOR_tmem_op(struct tmem_op * op)469 HYPERVISOR_tmem_op(
470 	struct tmem_op *op)
471 {
472 	return _hypercall1(int, tmem_op, op);
473 }
474 
475 static inline int
HYPERVISOR_xenpmu_op(unsigned int op,void * arg)476 HYPERVISOR_xenpmu_op(unsigned int op, void *arg)
477 {
478 	return _hypercall2(int, xenpmu_op, op, arg);
479 }
480 
481 static inline void
MULTI_fpu_taskswitch(struct multicall_entry * mcl,int set)482 MULTI_fpu_taskswitch(struct multicall_entry *mcl, int set)
483 {
484 	mcl->op = __HYPERVISOR_fpu_taskswitch;
485 	mcl->args[0] = set;
486 
487 	trace_xen_mc_entry(mcl, 1);
488 }
489 
490 static inline void
MULTI_update_va_mapping(struct multicall_entry * mcl,unsigned long va,pte_t new_val,unsigned long flags)491 MULTI_update_va_mapping(struct multicall_entry *mcl, unsigned long va,
492 			pte_t new_val, unsigned long flags)
493 {
494 	mcl->op = __HYPERVISOR_update_va_mapping;
495 	mcl->args[0] = va;
496 	if (sizeof(new_val) == sizeof(long)) {
497 		mcl->args[1] = new_val.pte;
498 		mcl->args[2] = flags;
499 	} else {
500 		mcl->args[1] = new_val.pte;
501 		mcl->args[2] = new_val.pte >> 32;
502 		mcl->args[3] = flags;
503 	}
504 
505 	trace_xen_mc_entry(mcl, sizeof(new_val) == sizeof(long) ? 3 : 4);
506 }
507 
508 static inline void
MULTI_grant_table_op(struct multicall_entry * mcl,unsigned int cmd,void * uop,unsigned int count)509 MULTI_grant_table_op(struct multicall_entry *mcl, unsigned int cmd,
510 		     void *uop, unsigned int count)
511 {
512 	mcl->op = __HYPERVISOR_grant_table_op;
513 	mcl->args[0] = cmd;
514 	mcl->args[1] = (unsigned long)uop;
515 	mcl->args[2] = count;
516 
517 	trace_xen_mc_entry(mcl, 3);
518 }
519 
520 static inline void
MULTI_update_va_mapping_otherdomain(struct multicall_entry * mcl,unsigned long va,pte_t new_val,unsigned long flags,domid_t domid)521 MULTI_update_va_mapping_otherdomain(struct multicall_entry *mcl, unsigned long va,
522 				    pte_t new_val, unsigned long flags,
523 				    domid_t domid)
524 {
525 	mcl->op = __HYPERVISOR_update_va_mapping_otherdomain;
526 	mcl->args[0] = va;
527 	if (sizeof(new_val) == sizeof(long)) {
528 		mcl->args[1] = new_val.pte;
529 		mcl->args[2] = flags;
530 		mcl->args[3] = domid;
531 	} else {
532 		mcl->args[1] = new_val.pte;
533 		mcl->args[2] = new_val.pte >> 32;
534 		mcl->args[3] = flags;
535 		mcl->args[4] = domid;
536 	}
537 
538 	trace_xen_mc_entry(mcl, sizeof(new_val) == sizeof(long) ? 4 : 5);
539 }
540 
541 static inline void
MULTI_update_descriptor(struct multicall_entry * mcl,u64 maddr,struct desc_struct desc)542 MULTI_update_descriptor(struct multicall_entry *mcl, u64 maddr,
543 			struct desc_struct desc)
544 {
545 	mcl->op = __HYPERVISOR_update_descriptor;
546 	if (sizeof(maddr) == sizeof(long)) {
547 		mcl->args[0] = maddr;
548 		mcl->args[1] = *(unsigned long *)&desc;
549 	} else {
550 		mcl->args[0] = maddr;
551 		mcl->args[1] = maddr >> 32;
552 		mcl->args[2] = desc.a;
553 		mcl->args[3] = desc.b;
554 	}
555 
556 	trace_xen_mc_entry(mcl, sizeof(maddr) == sizeof(long) ? 2 : 4);
557 }
558 
559 static inline void
MULTI_memory_op(struct multicall_entry * mcl,unsigned int cmd,void * arg)560 MULTI_memory_op(struct multicall_entry *mcl, unsigned int cmd, void *arg)
561 {
562 	mcl->op = __HYPERVISOR_memory_op;
563 	mcl->args[0] = cmd;
564 	mcl->args[1] = (unsigned long)arg;
565 
566 	trace_xen_mc_entry(mcl, 2);
567 }
568 
569 static inline void
MULTI_mmu_update(struct multicall_entry * mcl,struct mmu_update * req,int count,int * success_count,domid_t domid)570 MULTI_mmu_update(struct multicall_entry *mcl, struct mmu_update *req,
571 		 int count, int *success_count, domid_t domid)
572 {
573 	mcl->op = __HYPERVISOR_mmu_update;
574 	mcl->args[0] = (unsigned long)req;
575 	mcl->args[1] = count;
576 	mcl->args[2] = (unsigned long)success_count;
577 	mcl->args[3] = domid;
578 
579 	trace_xen_mc_entry(mcl, 4);
580 }
581 
582 static inline void
MULTI_mmuext_op(struct multicall_entry * mcl,struct mmuext_op * op,int count,int * success_count,domid_t domid)583 MULTI_mmuext_op(struct multicall_entry *mcl, struct mmuext_op *op, int count,
584 		int *success_count, domid_t domid)
585 {
586 	mcl->op = __HYPERVISOR_mmuext_op;
587 	mcl->args[0] = (unsigned long)op;
588 	mcl->args[1] = count;
589 	mcl->args[2] = (unsigned long)success_count;
590 	mcl->args[3] = domid;
591 
592 	trace_xen_mc_entry(mcl, 4);
593 }
594 
595 static inline void
MULTI_set_gdt(struct multicall_entry * mcl,unsigned long * frames,int entries)596 MULTI_set_gdt(struct multicall_entry *mcl, unsigned long *frames, int entries)
597 {
598 	mcl->op = __HYPERVISOR_set_gdt;
599 	mcl->args[0] = (unsigned long)frames;
600 	mcl->args[1] = entries;
601 
602 	trace_xen_mc_entry(mcl, 2);
603 }
604 
605 static inline void
MULTI_stack_switch(struct multicall_entry * mcl,unsigned long ss,unsigned long esp)606 MULTI_stack_switch(struct multicall_entry *mcl,
607 		   unsigned long ss, unsigned long esp)
608 {
609 	mcl->op = __HYPERVISOR_stack_switch;
610 	mcl->args[0] = ss;
611 	mcl->args[1] = esp;
612 
613 	trace_xen_mc_entry(mcl, 2);
614 }
615 
616 #endif /* _ASM_X86_XEN_HYPERCALL_H */
617