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1 #ifndef _ASM_X86_PARAVIRT_H
2 #define _ASM_X86_PARAVIRT_H
3 /* Various instructions on x86 need to be replaced for
4  * para-virtualization: those hooks are defined here. */
5
6 #ifdef CONFIG_PARAVIRT
7 #include <asm/pgtable_types.h>
8 #include <asm/asm.h>
9
10 #include <asm/paravirt_types.h>
11
12 #ifndef __ASSEMBLY__
13 #include <linux/bug.h>
14 #include <linux/types.h>
15 #include <linux/cpumask.h>
16 #include <asm/frame.h>
17
18 static inline void load_sp0(struct tss_struct *tss,
19                              struct thread_struct *thread)
20 {
21         PVOP_VCALL2(pv_cpu_ops.load_sp0, tss, thread);
22 }
23
24 /* The paravirtualized CPUID instruction. */
25 static inline void __cpuid(unsigned int *eax, unsigned int *ebx,
26                            unsigned int *ecx, unsigned int *edx)
27 {
28         PVOP_VCALL4(pv_cpu_ops.cpuid, eax, ebx, ecx, edx);
29 }
30
31 /*
32  * These special macros can be used to get or set a debugging register
33  */
34 static inline unsigned long paravirt_get_debugreg(int reg)
35 {
36         return PVOP_CALL1(unsigned long, pv_cpu_ops.get_debugreg, reg);
37 }
38 #define get_debugreg(var, reg) var = paravirt_get_debugreg(reg)
39 static inline void set_debugreg(unsigned long val, int reg)
40 {
41         PVOP_VCALL2(pv_cpu_ops.set_debugreg, reg, val);
42 }
43
44 static inline unsigned long read_cr0(void)
45 {
46         return PVOP_CALL0(unsigned long, pv_cpu_ops.read_cr0);
47 }
48
49 static inline void write_cr0(unsigned long x)
50 {
51         PVOP_VCALL1(pv_cpu_ops.write_cr0, x);
52 }
53
54 static inline unsigned long read_cr2(void)
55 {
56         return PVOP_CALL0(unsigned long, pv_mmu_ops.read_cr2);
57 }
58
59 static inline void write_cr2(unsigned long x)
60 {
61         PVOP_VCALL1(pv_mmu_ops.write_cr2, x);
62 }
63
64 static inline unsigned long read_cr3(void)
65 {
66         return PVOP_CALL0(unsigned long, pv_mmu_ops.read_cr3);
67 }
68
69 static inline void write_cr3(unsigned long x)
70 {
71         PVOP_VCALL1(pv_mmu_ops.write_cr3, x);
72 }
73
74 static inline unsigned long __read_cr4(void)
75 {
76         return PVOP_CALL0(unsigned long, pv_cpu_ops.read_cr4);
77 }
78
79 static inline void __write_cr4(unsigned long x)
80 {
81         PVOP_VCALL1(pv_cpu_ops.write_cr4, x);
82 }
83
84 #ifdef CONFIG_X86_64
85 static inline unsigned long read_cr8(void)
86 {
87         return PVOP_CALL0(unsigned long, pv_cpu_ops.read_cr8);
88 }
89
90 static inline void write_cr8(unsigned long x)
91 {
92         PVOP_VCALL1(pv_cpu_ops.write_cr8, x);
93 }
94 #endif
95
96 static inline void arch_safe_halt(void)
97 {
98         PVOP_VCALL0(pv_irq_ops.safe_halt);
99 }
100
101 static inline void halt(void)
102 {
103         PVOP_VCALL0(pv_irq_ops.halt);
104 }
105
106 static inline void wbinvd(void)
107 {
108         PVOP_VCALL0(pv_cpu_ops.wbinvd);
109 }
110
111 #define get_kernel_rpl()  (pv_info.kernel_rpl)
112
113 static inline u64 paravirt_read_msr(unsigned msr)
114 {
115         return PVOP_CALL1(u64, pv_cpu_ops.read_msr, msr);
116 }
117
118 static inline void paravirt_write_msr(unsigned msr,
119                                       unsigned low, unsigned high)
120 {
121         return PVOP_VCALL3(pv_cpu_ops.write_msr, msr, low, high);
122 }
123
124 static inline u64 paravirt_read_msr_safe(unsigned msr, int *err)
125 {
126         return PVOP_CALL2(u64, pv_cpu_ops.read_msr_safe, msr, err);
127 }
128
129 static inline int paravirt_write_msr_safe(unsigned msr,
130                                           unsigned low, unsigned high)
131 {
132         return PVOP_CALL3(int, pv_cpu_ops.write_msr_safe, msr, low, high);
133 }
134
135 #define rdmsr(msr, val1, val2)                  \
136 do {                                            \
137         u64 _l = paravirt_read_msr(msr);        \
138         val1 = (u32)_l;                         \
139         val2 = _l >> 32;                        \
140 } while (0)
141
142 #define wrmsr(msr, val1, val2)                  \
143 do {                                            \
144         paravirt_write_msr(msr, val1, val2);    \
145 } while (0)
146
147 #define rdmsrl(msr, val)                        \
148 do {                                            \
149         val = paravirt_read_msr(msr);           \
150 } while (0)
151
152 static inline void wrmsrl(unsigned msr, u64 val)
153 {
154         wrmsr(msr, (u32)val, (u32)(val>>32));
155 }
156
157 #define wrmsr_safe(msr, a, b)   paravirt_write_msr_safe(msr, a, b)
158
159 /* rdmsr with exception handling */
160 #define rdmsr_safe(msr, a, b)                           \
161 ({                                                      \
162         int _err;                                       \
163         u64 _l = paravirt_read_msr_safe(msr, &_err);    \
164         (*a) = (u32)_l;                                 \
165         (*b) = _l >> 32;                                \
166         _err;                                           \
167 })
168
169 static inline int rdmsrl_safe(unsigned msr, unsigned long long *p)
170 {
171         int err;
172
173         *p = paravirt_read_msr_safe(msr, &err);
174         return err;
175 }
176
177 static inline unsigned long long paravirt_sched_clock(void)
178 {
179         return PVOP_CALL0(unsigned long long, pv_time_ops.sched_clock);
180 }
181
182 struct static_key;
183 extern struct static_key paravirt_steal_enabled;
184 extern struct static_key paravirt_steal_rq_enabled;
185
186 static inline u64 paravirt_steal_clock(int cpu)
187 {
188         return PVOP_CALL1(u64, pv_time_ops.steal_clock, cpu);
189 }
190
191 static inline unsigned long long paravirt_read_pmc(int counter)
192 {
193         return PVOP_CALL1(u64, pv_cpu_ops.read_pmc, counter);
194 }
195
196 #define rdpmc(counter, low, high)               \
197 do {                                            \
198         u64 _l = paravirt_read_pmc(counter);    \
199         low = (u32)_l;                          \
200         high = _l >> 32;                        \
201 } while (0)
202
203 #define rdpmcl(counter, val) ((val) = paravirt_read_pmc(counter))
204
205 static inline void paravirt_alloc_ldt(struct desc_struct *ldt, unsigned entries)
206 {
207         PVOP_VCALL2(pv_cpu_ops.alloc_ldt, ldt, entries);
208 }
209
210 static inline void paravirt_free_ldt(struct desc_struct *ldt, unsigned entries)
211 {
212         PVOP_VCALL2(pv_cpu_ops.free_ldt, ldt, entries);
213 }
214
215 static inline void load_TR_desc(void)
216 {
217         PVOP_VCALL0(pv_cpu_ops.load_tr_desc);
218 }
219 static inline void load_gdt(const struct desc_ptr *dtr)
220 {
221         PVOP_VCALL1(pv_cpu_ops.load_gdt, dtr);
222 }
223 static inline void load_idt(const struct desc_ptr *dtr)
224 {
225         PVOP_VCALL1(pv_cpu_ops.load_idt, dtr);
226 }
227 static inline void set_ldt(const void *addr, unsigned entries)
228 {
229         PVOP_VCALL2(pv_cpu_ops.set_ldt, addr, entries);
230 }
231 static inline void store_idt(struct desc_ptr *dtr)
232 {
233         PVOP_VCALL1(pv_cpu_ops.store_idt, dtr);
234 }
235 static inline unsigned long paravirt_store_tr(void)
236 {
237         return PVOP_CALL0(unsigned long, pv_cpu_ops.store_tr);
238 }
239 #define store_tr(tr)    ((tr) = paravirt_store_tr())
240 static inline void load_TLS(struct thread_struct *t, unsigned cpu)
241 {
242         PVOP_VCALL2(pv_cpu_ops.load_tls, t, cpu);
243 }
244
245 #ifdef CONFIG_X86_64
246 static inline void load_gs_index(unsigned int gs)
247 {
248         PVOP_VCALL1(pv_cpu_ops.load_gs_index, gs);
249 }
250 #endif
251
252 static inline void write_ldt_entry(struct desc_struct *dt, int entry,
253                                    const void *desc)
254 {
255         PVOP_VCALL3(pv_cpu_ops.write_ldt_entry, dt, entry, desc);
256 }
257
258 static inline void write_gdt_entry(struct desc_struct *dt, int entry,
259                                    void *desc, int type)
260 {
261         PVOP_VCALL4(pv_cpu_ops.write_gdt_entry, dt, entry, desc, type);
262 }
263
264 static inline void write_idt_entry(gate_desc *dt, int entry, const gate_desc *g)
265 {
266         PVOP_VCALL3(pv_cpu_ops.write_idt_entry, dt, entry, g);
267 }
268 static inline void set_iopl_mask(unsigned mask)
269 {
270         PVOP_VCALL1(pv_cpu_ops.set_iopl_mask, mask);
271 }
272
273 /* The paravirtualized I/O functions */
274 static inline void slow_down_io(void)
275 {
276         pv_cpu_ops.io_delay();
277 #ifdef REALLY_SLOW_IO
278         pv_cpu_ops.io_delay();
279         pv_cpu_ops.io_delay();
280         pv_cpu_ops.io_delay();
281 #endif
282 }
283
284 static inline void paravirt_activate_mm(struct mm_struct *prev,
285                                         struct mm_struct *next)
286 {
287         PVOP_VCALL2(pv_mmu_ops.activate_mm, prev, next);
288 }
289
290 static inline void paravirt_arch_dup_mmap(struct mm_struct *oldmm,
291                                           struct mm_struct *mm)
292 {
293         PVOP_VCALL2(pv_mmu_ops.dup_mmap, oldmm, mm);
294 }
295
296 static inline void paravirt_arch_exit_mmap(struct mm_struct *mm)
297 {
298         PVOP_VCALL1(pv_mmu_ops.exit_mmap, mm);
299 }
300
301 static inline void __flush_tlb(void)
302 {
303         PVOP_VCALL0(pv_mmu_ops.flush_tlb_user);
304 }
305 static inline void __flush_tlb_global(void)
306 {
307         PVOP_VCALL0(pv_mmu_ops.flush_tlb_kernel);
308 }
309 static inline void __flush_tlb_single(unsigned long addr)
310 {
311         PVOP_VCALL1(pv_mmu_ops.flush_tlb_single, addr);
312 }
313
314 static inline void flush_tlb_others(const struct cpumask *cpumask,
315                                     struct mm_struct *mm,
316                                     unsigned long start,
317                                     unsigned long end)
318 {
319         PVOP_VCALL4(pv_mmu_ops.flush_tlb_others, cpumask, mm, start, end);
320 }
321
322 static inline int paravirt_pgd_alloc(struct mm_struct *mm)
323 {
324         return PVOP_CALL1(int, pv_mmu_ops.pgd_alloc, mm);
325 }
326
327 static inline void paravirt_pgd_free(struct mm_struct *mm, pgd_t *pgd)
328 {
329         PVOP_VCALL2(pv_mmu_ops.pgd_free, mm, pgd);
330 }
331
332 static inline void paravirt_alloc_pte(struct mm_struct *mm, unsigned long pfn)
333 {
334         PVOP_VCALL2(pv_mmu_ops.alloc_pte, mm, pfn);
335 }
336 static inline void paravirt_release_pte(unsigned long pfn)
337 {
338         PVOP_VCALL1(pv_mmu_ops.release_pte, pfn);
339 }
340
341 static inline void paravirt_alloc_pmd(struct mm_struct *mm, unsigned long pfn)
342 {
343         PVOP_VCALL2(pv_mmu_ops.alloc_pmd, mm, pfn);
344 }
345
346 static inline void paravirt_release_pmd(unsigned long pfn)
347 {
348         PVOP_VCALL1(pv_mmu_ops.release_pmd, pfn);
349 }
350
351 static inline void paravirt_alloc_pud(struct mm_struct *mm, unsigned long pfn)
352 {
353         PVOP_VCALL2(pv_mmu_ops.alloc_pud, mm, pfn);
354 }
355 static inline void paravirt_release_pud(unsigned long pfn)
356 {
357         PVOP_VCALL1(pv_mmu_ops.release_pud, pfn);
358 }
359
360 static inline void pte_update(struct mm_struct *mm, unsigned long addr,
361                               pte_t *ptep)
362 {
363         PVOP_VCALL3(pv_mmu_ops.pte_update, mm, addr, ptep);
364 }
365
366 static inline pte_t __pte(pteval_t val)
367 {
368         pteval_t ret;
369
370         if (sizeof(pteval_t) > sizeof(long))
371                 ret = PVOP_CALLEE2(pteval_t,
372                                    pv_mmu_ops.make_pte,
373                                    val, (u64)val >> 32);
374         else
375                 ret = PVOP_CALLEE1(pteval_t,
376                                    pv_mmu_ops.make_pte,
377                                    val);
378
379         return (pte_t) { .pte = ret };
380 }
381
382 static inline pteval_t pte_val(pte_t pte)
383 {
384         pteval_t ret;
385
386         if (sizeof(pteval_t) > sizeof(long))
387                 ret = PVOP_CALLEE2(pteval_t, pv_mmu_ops.pte_val,
388                                    pte.pte, (u64)pte.pte >> 32);
389         else
390                 ret = PVOP_CALLEE1(pteval_t, pv_mmu_ops.pte_val,
391                                    pte.pte);
392
393         return ret;
394 }
395
396 static inline pgd_t __pgd(pgdval_t val)
397 {
398         pgdval_t ret;
399
400         if (sizeof(pgdval_t) > sizeof(long))
401                 ret = PVOP_CALLEE2(pgdval_t, pv_mmu_ops.make_pgd,
402                                    val, (u64)val >> 32);
403         else
404                 ret = PVOP_CALLEE1(pgdval_t, pv_mmu_ops.make_pgd,
405                                    val);
406
407         return (pgd_t) { ret };
408 }
409
410 static inline pgdval_t pgd_val(pgd_t pgd)
411 {
412         pgdval_t ret;
413
414         if (sizeof(pgdval_t) > sizeof(long))
415                 ret =  PVOP_CALLEE2(pgdval_t, pv_mmu_ops.pgd_val,
416                                     pgd.pgd, (u64)pgd.pgd >> 32);
417         else
418                 ret =  PVOP_CALLEE1(pgdval_t, pv_mmu_ops.pgd_val,
419                                     pgd.pgd);
420
421         return ret;
422 }
423
424 #define  __HAVE_ARCH_PTEP_MODIFY_PROT_TRANSACTION
425 static inline pte_t ptep_modify_prot_start(struct mm_struct *mm, unsigned long addr,
426                                            pte_t *ptep)
427 {
428         pteval_t ret;
429
430         ret = PVOP_CALL3(pteval_t, pv_mmu_ops.ptep_modify_prot_start,
431                          mm, addr, ptep);
432
433         return (pte_t) { .pte = ret };
434 }
435
436 static inline void ptep_modify_prot_commit(struct mm_struct *mm, unsigned long addr,
437                                            pte_t *ptep, pte_t pte)
438 {
439         if (sizeof(pteval_t) > sizeof(long))
440                 /* 5 arg words */
441                 pv_mmu_ops.ptep_modify_prot_commit(mm, addr, ptep, pte);
442         else
443                 PVOP_VCALL4(pv_mmu_ops.ptep_modify_prot_commit,
444                             mm, addr, ptep, pte.pte);
445 }
446
447 static inline void set_pte(pte_t *ptep, pte_t pte)
448 {
449         if (sizeof(pteval_t) > sizeof(long))
450                 PVOP_VCALL3(pv_mmu_ops.set_pte, ptep,
451                             pte.pte, (u64)pte.pte >> 32);
452         else
453                 PVOP_VCALL2(pv_mmu_ops.set_pte, ptep,
454                             pte.pte);
455 }
456
457 static inline void set_pte_at(struct mm_struct *mm, unsigned long addr,
458                               pte_t *ptep, pte_t pte)
459 {
460         if (sizeof(pteval_t) > sizeof(long))
461                 /* 5 arg words */
462                 pv_mmu_ops.set_pte_at(mm, addr, ptep, pte);
463         else
464                 PVOP_VCALL4(pv_mmu_ops.set_pte_at, mm, addr, ptep, pte.pte);
465 }
466
467 static inline void set_pmd_at(struct mm_struct *mm, unsigned long addr,
468                               pmd_t *pmdp, pmd_t pmd)
469 {
470         if (sizeof(pmdval_t) > sizeof(long))
471                 /* 5 arg words */
472                 pv_mmu_ops.set_pmd_at(mm, addr, pmdp, pmd);
473         else
474                 PVOP_VCALL4(pv_mmu_ops.set_pmd_at, mm, addr, pmdp,
475                             native_pmd_val(pmd));
476 }
477
478 static inline void set_pmd(pmd_t *pmdp, pmd_t pmd)
479 {
480         pmdval_t val = native_pmd_val(pmd);
481
482         if (sizeof(pmdval_t) > sizeof(long))
483                 PVOP_VCALL3(pv_mmu_ops.set_pmd, pmdp, val, (u64)val >> 32);
484         else
485                 PVOP_VCALL2(pv_mmu_ops.set_pmd, pmdp, val);
486 }
487
488 #if CONFIG_PGTABLE_LEVELS >= 3
489 static inline pmd_t __pmd(pmdval_t val)
490 {
491         pmdval_t ret;
492
493         if (sizeof(pmdval_t) > sizeof(long))
494                 ret = PVOP_CALLEE2(pmdval_t, pv_mmu_ops.make_pmd,
495                                    val, (u64)val >> 32);
496         else
497                 ret = PVOP_CALLEE1(pmdval_t, pv_mmu_ops.make_pmd,
498                                    val);
499
500         return (pmd_t) { ret };
501 }
502
503 static inline pmdval_t pmd_val(pmd_t pmd)
504 {
505         pmdval_t ret;
506
507         if (sizeof(pmdval_t) > sizeof(long))
508                 ret =  PVOP_CALLEE2(pmdval_t, pv_mmu_ops.pmd_val,
509                                     pmd.pmd, (u64)pmd.pmd >> 32);
510         else
511                 ret =  PVOP_CALLEE1(pmdval_t, pv_mmu_ops.pmd_val,
512                                     pmd.pmd);
513
514         return ret;
515 }
516
517 static inline void set_pud(pud_t *pudp, pud_t pud)
518 {
519         pudval_t val = native_pud_val(pud);
520
521         if (sizeof(pudval_t) > sizeof(long))
522                 PVOP_VCALL3(pv_mmu_ops.set_pud, pudp,
523                             val, (u64)val >> 32);
524         else
525                 PVOP_VCALL2(pv_mmu_ops.set_pud, pudp,
526                             val);
527 }
528 #if CONFIG_PGTABLE_LEVELS == 4
529 static inline pud_t __pud(pudval_t val)
530 {
531         pudval_t ret;
532
533         if (sizeof(pudval_t) > sizeof(long))
534                 ret = PVOP_CALLEE2(pudval_t, pv_mmu_ops.make_pud,
535                                    val, (u64)val >> 32);
536         else
537                 ret = PVOP_CALLEE1(pudval_t, pv_mmu_ops.make_pud,
538                                    val);
539
540         return (pud_t) { ret };
541 }
542
543 static inline pudval_t pud_val(pud_t pud)
544 {
545         pudval_t ret;
546
547         if (sizeof(pudval_t) > sizeof(long))
548                 ret =  PVOP_CALLEE2(pudval_t, pv_mmu_ops.pud_val,
549                                     pud.pud, (u64)pud.pud >> 32);
550         else
551                 ret =  PVOP_CALLEE1(pudval_t, pv_mmu_ops.pud_val,
552                                     pud.pud);
553
554         return ret;
555 }
556
557 static inline void set_pgd(pgd_t *pgdp, pgd_t pgd)
558 {
559         pgdval_t val = native_pgd_val(pgd);
560
561         if (sizeof(pgdval_t) > sizeof(long))
562                 PVOP_VCALL3(pv_mmu_ops.set_pgd, pgdp,
563                             val, (u64)val >> 32);
564         else
565                 PVOP_VCALL2(pv_mmu_ops.set_pgd, pgdp,
566                             val);
567 }
568
569 static inline void pgd_clear(pgd_t *pgdp)
570 {
571         set_pgd(pgdp, __pgd(0));
572 }
573
574 static inline void pud_clear(pud_t *pudp)
575 {
576         set_pud(pudp, __pud(0));
577 }
578
579 #endif  /* CONFIG_PGTABLE_LEVELS == 4 */
580
581 #endif  /* CONFIG_PGTABLE_LEVELS >= 3 */
582
583 #ifdef CONFIG_X86_PAE
584 /* Special-case pte-setting operations for PAE, which can't update a
585    64-bit pte atomically */
586 static inline void set_pte_atomic(pte_t *ptep, pte_t pte)
587 {
588         PVOP_VCALL3(pv_mmu_ops.set_pte_atomic, ptep,
589                     pte.pte, pte.pte >> 32);
590 }
591
592 static inline void pte_clear(struct mm_struct *mm, unsigned long addr,
593                              pte_t *ptep)
594 {
595         PVOP_VCALL3(pv_mmu_ops.pte_clear, mm, addr, ptep);
596 }
597
598 static inline void pmd_clear(pmd_t *pmdp)
599 {
600         PVOP_VCALL1(pv_mmu_ops.pmd_clear, pmdp);
601 }
602 #else  /* !CONFIG_X86_PAE */
603 static inline void set_pte_atomic(pte_t *ptep, pte_t pte)
604 {
605         set_pte(ptep, pte);
606 }
607
608 static inline void pte_clear(struct mm_struct *mm, unsigned long addr,
609                              pte_t *ptep)
610 {
611         set_pte_at(mm, addr, ptep, __pte(0));
612 }
613
614 static inline void pmd_clear(pmd_t *pmdp)
615 {
616         set_pmd(pmdp, __pmd(0));
617 }
618 #endif  /* CONFIG_X86_PAE */
619
620 #define  __HAVE_ARCH_START_CONTEXT_SWITCH
621 static inline void arch_start_context_switch(struct task_struct *prev)
622 {
623         PVOP_VCALL1(pv_cpu_ops.start_context_switch, prev);
624 }
625
626 static inline void arch_end_context_switch(struct task_struct *next)
627 {
628         PVOP_VCALL1(pv_cpu_ops.end_context_switch, next);
629 }
630
631 #define  __HAVE_ARCH_ENTER_LAZY_MMU_MODE
632 static inline void arch_enter_lazy_mmu_mode(void)
633 {
634         PVOP_VCALL0(pv_mmu_ops.lazy_mode.enter);
635 }
636
637 static inline void arch_leave_lazy_mmu_mode(void)
638 {
639         PVOP_VCALL0(pv_mmu_ops.lazy_mode.leave);
640 }
641
642 static inline void arch_flush_lazy_mmu_mode(void)
643 {
644         PVOP_VCALL0(pv_mmu_ops.lazy_mode.flush);
645 }
646
647 static inline void __set_fixmap(unsigned /* enum fixed_addresses */ idx,
648                                 phys_addr_t phys, pgprot_t flags)
649 {
650         pv_mmu_ops.set_fixmap(idx, phys, flags);
651 }
652
653 #if defined(CONFIG_SMP) && defined(CONFIG_PARAVIRT_SPINLOCKS)
654
655 static __always_inline void pv_queued_spin_lock_slowpath(struct qspinlock *lock,
656                                                         u32 val)
657 {
658         PVOP_VCALL2(pv_lock_ops.queued_spin_lock_slowpath, lock, val);
659 }
660
661 static __always_inline void pv_queued_spin_unlock(struct qspinlock *lock)
662 {
663         PVOP_VCALLEE1(pv_lock_ops.queued_spin_unlock, lock);
664 }
665
666 static __always_inline void pv_wait(u8 *ptr, u8 val)
667 {
668         PVOP_VCALL2(pv_lock_ops.wait, ptr, val);
669 }
670
671 static __always_inline void pv_kick(int cpu)
672 {
673         PVOP_VCALL1(pv_lock_ops.kick, cpu);
674 }
675
676 static __always_inline bool pv_vcpu_is_preempted(int cpu)
677 {
678         return PVOP_CALLEE1(bool, pv_lock_ops.vcpu_is_preempted, cpu);
679 }
680
681 #endif /* SMP && PARAVIRT_SPINLOCKS */
682
683 #ifdef CONFIG_X86_32
684 #define PV_SAVE_REGS "pushl %ecx; pushl %edx;"
685 #define PV_RESTORE_REGS "popl %edx; popl %ecx;"
686
687 /* save and restore all caller-save registers, except return value */
688 #define PV_SAVE_ALL_CALLER_REGS         "pushl %ecx;"
689 #define PV_RESTORE_ALL_CALLER_REGS      "popl  %ecx;"
690
691 #define PV_FLAGS_ARG "0"
692 #define PV_EXTRA_CLOBBERS
693 #define PV_VEXTRA_CLOBBERS
694 #else
695 /* save and restore all caller-save registers, except return value */
696 #define PV_SAVE_ALL_CALLER_REGS                                         \
697         "push %rcx;"                                                    \
698         "push %rdx;"                                                    \
699         "push %rsi;"                                                    \
700         "push %rdi;"                                                    \
701         "push %r8;"                                                     \
702         "push %r9;"                                                     \
703         "push %r10;"                                                    \
704         "push %r11;"
705 #define PV_RESTORE_ALL_CALLER_REGS                                      \
706         "pop %r11;"                                                     \
707         "pop %r10;"                                                     \
708         "pop %r9;"                                                      \
709         "pop %r8;"                                                      \
710         "pop %rdi;"                                                     \
711         "pop %rsi;"                                                     \
712         "pop %rdx;"                                                     \
713         "pop %rcx;"
714
715 /* We save some registers, but all of them, that's too much. We clobber all
716  * caller saved registers but the argument parameter */
717 #define PV_SAVE_REGS "pushq %%rdi;"
718 #define PV_RESTORE_REGS "popq %%rdi;"
719 #define PV_EXTRA_CLOBBERS EXTRA_CLOBBERS, "rcx" , "rdx", "rsi"
720 #define PV_VEXTRA_CLOBBERS EXTRA_CLOBBERS, "rdi", "rcx" , "rdx", "rsi"
721 #define PV_FLAGS_ARG "D"
722 #endif
723
724 /*
725  * Generate a thunk around a function which saves all caller-save
726  * registers except for the return value.  This allows C functions to
727  * be called from assembler code where fewer than normal registers are
728  * available.  It may also help code generation around calls from C
729  * code if the common case doesn't use many registers.
730  *
731  * When a callee is wrapped in a thunk, the caller can assume that all
732  * arg regs and all scratch registers are preserved across the
733  * call. The return value in rax/eax will not be saved, even for void
734  * functions.
735  */
736 #define PV_THUNK_NAME(func) "__raw_callee_save_" #func
737 #define PV_CALLEE_SAVE_REGS_THUNK(func)                                 \
738         extern typeof(func) __raw_callee_save_##func;                   \
739                                                                         \
740         asm(".pushsection .text;"                                       \
741             ".globl " PV_THUNK_NAME(func) ";"                           \
742             ".type " PV_THUNK_NAME(func) ", @function;"                 \
743             PV_THUNK_NAME(func) ":"                                     \
744             FRAME_BEGIN                                                 \
745             PV_SAVE_ALL_CALLER_REGS                                     \
746             "call " #func ";"                                           \
747             PV_RESTORE_ALL_CALLER_REGS                                  \
748             FRAME_END                                                   \
749             "ret;"                                                      \
750             ".popsection")
751
752 /* Get a reference to a callee-save function */
753 #define PV_CALLEE_SAVE(func)                                            \
754         ((struct paravirt_callee_save) { __raw_callee_save_##func })
755
756 /* Promise that "func" already uses the right calling convention */
757 #define __PV_IS_CALLEE_SAVE(func)                       \
758         ((struct paravirt_callee_save) { func })
759
760 static inline notrace unsigned long arch_local_save_flags(void)
761 {
762         return PVOP_CALLEE0(unsigned long, pv_irq_ops.save_fl);
763 }
764
765 static inline notrace void arch_local_irq_restore(unsigned long f)
766 {
767         PVOP_VCALLEE1(pv_irq_ops.restore_fl, f);
768 }
769
770 static inline notrace void arch_local_irq_disable(void)
771 {
772         PVOP_VCALLEE0(pv_irq_ops.irq_disable);
773 }
774
775 static inline notrace void arch_local_irq_enable(void)
776 {
777         PVOP_VCALLEE0(pv_irq_ops.irq_enable);
778 }
779
780 static inline notrace unsigned long arch_local_irq_save(void)
781 {
782         unsigned long f;
783
784         f = arch_local_save_flags();
785         arch_local_irq_disable();
786         return f;
787 }
788
789
790 /* Make sure as little as possible of this mess escapes. */
791 #undef PARAVIRT_CALL
792 #undef __PVOP_CALL
793 #undef __PVOP_VCALL
794 #undef PVOP_VCALL0
795 #undef PVOP_CALL0
796 #undef PVOP_VCALL1
797 #undef PVOP_CALL1
798 #undef PVOP_VCALL2
799 #undef PVOP_CALL2
800 #undef PVOP_VCALL3
801 #undef PVOP_CALL3
802 #undef PVOP_VCALL4
803 #undef PVOP_CALL4
804
805 extern void default_banner(void);
806
807 #else  /* __ASSEMBLY__ */
808
809 #define _PVSITE(ptype, clobbers, ops, word, algn)       \
810 771:;                                           \
811         ops;                                    \
812 772:;                                           \
813         .pushsection .parainstructions,"a";     \
814          .align algn;                           \
815          word 771b;                             \
816          .byte ptype;                           \
817          .byte 772b-771b;                       \
818          .short clobbers;                       \
819         .popsection
820
821
822 #define COND_PUSH(set, mask, reg)                       \
823         .if ((~(set)) & mask); push %reg; .endif
824 #define COND_POP(set, mask, reg)                        \
825         .if ((~(set)) & mask); pop %reg; .endif
826
827 #ifdef CONFIG_X86_64
828
829 #define PV_SAVE_REGS(set)                       \
830         COND_PUSH(set, CLBR_RAX, rax);          \
831         COND_PUSH(set, CLBR_RCX, rcx);          \
832         COND_PUSH(set, CLBR_RDX, rdx);          \
833         COND_PUSH(set, CLBR_RSI, rsi);          \
834         COND_PUSH(set, CLBR_RDI, rdi);          \
835         COND_PUSH(set, CLBR_R8, r8);            \
836         COND_PUSH(set, CLBR_R9, r9);            \
837         COND_PUSH(set, CLBR_R10, r10);          \
838         COND_PUSH(set, CLBR_R11, r11)
839 #define PV_RESTORE_REGS(set)                    \
840         COND_POP(set, CLBR_R11, r11);           \
841         COND_POP(set, CLBR_R10, r10);           \
842         COND_POP(set, CLBR_R9, r9);             \
843         COND_POP(set, CLBR_R8, r8);             \
844         COND_POP(set, CLBR_RDI, rdi);           \
845         COND_POP(set, CLBR_RSI, rsi);           \
846         COND_POP(set, CLBR_RDX, rdx);           \
847         COND_POP(set, CLBR_RCX, rcx);           \
848         COND_POP(set, CLBR_RAX, rax)
849
850 #define PARA_PATCH(struct, off)        ((PARAVIRT_PATCH_##struct + (off)) / 8)
851 #define PARA_SITE(ptype, clobbers, ops) _PVSITE(ptype, clobbers, ops, .quad, 8)
852 #define PARA_INDIRECT(addr)     *addr(%rip)
853 #else
854 #define PV_SAVE_REGS(set)                       \
855         COND_PUSH(set, CLBR_EAX, eax);          \
856         COND_PUSH(set, CLBR_EDI, edi);          \
857         COND_PUSH(set, CLBR_ECX, ecx);          \
858         COND_PUSH(set, CLBR_EDX, edx)
859 #define PV_RESTORE_REGS(set)                    \
860         COND_POP(set, CLBR_EDX, edx);           \
861         COND_POP(set, CLBR_ECX, ecx);           \
862         COND_POP(set, CLBR_EDI, edi);           \
863         COND_POP(set, CLBR_EAX, eax)
864
865 #define PARA_PATCH(struct, off)        ((PARAVIRT_PATCH_##struct + (off)) / 4)
866 #define PARA_SITE(ptype, clobbers, ops) _PVSITE(ptype, clobbers, ops, .long, 4)
867 #define PARA_INDIRECT(addr)     *%cs:addr
868 #endif
869
870 #define INTERRUPT_RETURN                                                \
871         PARA_SITE(PARA_PATCH(pv_cpu_ops, PV_CPU_iret), CLBR_NONE,       \
872                   jmp PARA_INDIRECT(pv_cpu_ops+PV_CPU_iret))
873
874 #define DISABLE_INTERRUPTS(clobbers)                                    \
875         PARA_SITE(PARA_PATCH(pv_irq_ops, PV_IRQ_irq_disable), clobbers, \
876                   PV_SAVE_REGS(clobbers | CLBR_CALLEE_SAVE);            \
877                   call PARA_INDIRECT(pv_irq_ops+PV_IRQ_irq_disable);    \
878                   PV_RESTORE_REGS(clobbers | CLBR_CALLEE_SAVE);)
879
880 #define ENABLE_INTERRUPTS(clobbers)                                     \
881         PARA_SITE(PARA_PATCH(pv_irq_ops, PV_IRQ_irq_enable), clobbers,  \
882                   PV_SAVE_REGS(clobbers | CLBR_CALLEE_SAVE);            \
883                   call PARA_INDIRECT(pv_irq_ops+PV_IRQ_irq_enable);     \
884                   PV_RESTORE_REGS(clobbers | CLBR_CALLEE_SAVE);)
885
886 #ifdef CONFIG_X86_32
887 #define GET_CR0_INTO_EAX                                \
888         push %ecx; push %edx;                           \
889         call PARA_INDIRECT(pv_cpu_ops+PV_CPU_read_cr0); \
890         pop %edx; pop %ecx
891 #else   /* !CONFIG_X86_32 */
892
893 /*
894  * If swapgs is used while the userspace stack is still current,
895  * there's no way to call a pvop.  The PV replacement *must* be
896  * inlined, or the swapgs instruction must be trapped and emulated.
897  */
898 #define SWAPGS_UNSAFE_STACK                                             \
899         PARA_SITE(PARA_PATCH(pv_cpu_ops, PV_CPU_swapgs), CLBR_NONE,     \
900                   swapgs)
901
902 /*
903  * Note: swapgs is very special, and in practise is either going to be
904  * implemented with a single "swapgs" instruction or something very
905  * special.  Either way, we don't need to save any registers for
906  * it.
907  */
908 #define SWAPGS                                                          \
909         PARA_SITE(PARA_PATCH(pv_cpu_ops, PV_CPU_swapgs), CLBR_NONE,     \
910                   call PARA_INDIRECT(pv_cpu_ops+PV_CPU_swapgs)          \
911                  )
912
913 #define GET_CR2_INTO_RAX                                \
914         call PARA_INDIRECT(pv_mmu_ops+PV_MMU_read_cr2)
915
916 #define PARAVIRT_ADJUST_EXCEPTION_FRAME                                 \
917         PARA_SITE(PARA_PATCH(pv_irq_ops, PV_IRQ_adjust_exception_frame), \
918                   CLBR_NONE,                                            \
919                   call PARA_INDIRECT(pv_irq_ops+PV_IRQ_adjust_exception_frame))
920
921 #define USERGS_SYSRET64                                                 \
922         PARA_SITE(PARA_PATCH(pv_cpu_ops, PV_CPU_usergs_sysret64),       \
923                   CLBR_NONE,                                            \
924                   jmp PARA_INDIRECT(pv_cpu_ops+PV_CPU_usergs_sysret64))
925 #endif  /* CONFIG_X86_32 */
926
927 #endif /* __ASSEMBLY__ */
928 #else  /* CONFIG_PARAVIRT */
929 # define default_banner x86_init_noop
930 #ifndef __ASSEMBLY__
931 static inline void paravirt_arch_dup_mmap(struct mm_struct *oldmm,
932                                           struct mm_struct *mm)
933 {
934 }
935
936 static inline void paravirt_arch_exit_mmap(struct mm_struct *mm)
937 {
938 }
939 #endif /* __ASSEMBLY__ */
940 #endif /* !CONFIG_PARAVIRT */
941 #endif /* _ASM_X86_PARAVIRT_H */