1 #ifndef __ASM_PARAVIRT_H
2 #define __ASM_PARAVIRT_H
3 /* Various instructions on x86 need to be replaced for
4 * para-virtualization: those hooks are defined here. */
9 /* Bitmask of what can be clobbered: usually at least eax. */
17 #include <linux/types.h>
18 #include <linux/cpumask.h>
19 #include <asm/kmap_types.h>
23 struct Xgt_desc_struct
;
28 /* Lazy mode for batching updates / context switch */
29 enum paravirt_lazy_mode
{
30 PARAVIRT_LAZY_NONE
= 0,
31 PARAVIRT_LAZY_MMU
= 1,
32 PARAVIRT_LAZY_CPU
= 2,
33 PARAVIRT_LAZY_FLUSH
= 3,
38 unsigned int kernel_rpl
;
39 int shared_kernel_pmd
;
44 * Patch may replace one of the defined code sequences with arbitrary
45 * code, subject to the same register constraints. This generally
46 * means the code is not free to clobber any registers other than EAX.
47 * The patch function should return the number of bytes of code
48 * generated, as we nop pad the rest in generic code.
50 unsigned (*patch
)(u8 type
, u16 clobber
, void *insnbuf
,
51 unsigned long addr
, unsigned len
);
53 /* Basic arch-specific setup */
54 void (*arch_setup
)(void);
55 char *(*memory_setup
)(void);
56 void (*post_allocator_init
)(void);
58 void (*init_IRQ
)(void);
59 void (*time_init
)(void);
62 * Called before/after init_mm pagetable setup. setup_start
63 * may reset %cr3, and may pre-install parts of the pagetable;
64 * pagetable setup is expected to preserve any existing
67 void (*pagetable_setup_start
)(pgd_t
*pgd_base
);
68 void (*pagetable_setup_done
)(pgd_t
*pgd_base
);
70 /* Print a banner to identify the environment */
73 /* Set and set time of day */
74 unsigned long (*get_wallclock
)(void);
75 int (*set_wallclock
)(unsigned long);
77 /* cpuid emulation, mostly so that caps bits can be disabled */
78 void (*cpuid
)(unsigned int *eax
, unsigned int *ebx
,
79 unsigned int *ecx
, unsigned int *edx
);
81 /* hooks for various privileged instructions */
82 unsigned long (*get_debugreg
)(int regno
);
83 void (*set_debugreg
)(int regno
, unsigned long value
);
87 unsigned long (*read_cr0
)(void);
88 void (*write_cr0
)(unsigned long);
90 unsigned long (*read_cr2
)(void);
91 void (*write_cr2
)(unsigned long);
93 unsigned long (*read_cr3
)(void);
94 void (*write_cr3
)(unsigned long);
96 unsigned long (*read_cr4_safe
)(void);
97 unsigned long (*read_cr4
)(void);
98 void (*write_cr4
)(unsigned long);
101 * Get/set interrupt state. save_fl and restore_fl are only
102 * expected to use X86_EFLAGS_IF; all other bits
103 * returned from save_fl are undefined, and may be ignored by
106 unsigned long (*save_fl
)(void);
107 void (*restore_fl
)(unsigned long);
108 void (*irq_disable
)(void);
109 void (*irq_enable
)(void);
110 void (*safe_halt
)(void);
113 void (*wbinvd
)(void);
115 /* MSR, PMC and TSR operations.
116 err = 0/-EFAULT. wrmsr returns 0/-EFAULT. */
117 u64 (*read_msr
)(unsigned int msr
, int *err
);
118 int (*write_msr
)(unsigned int msr
, u64 val
);
120 u64 (*read_tsc
)(void);
121 u64 (*read_pmc
)(void);
122 unsigned long long (*sched_clock
)(void);
123 unsigned long (*get_cpu_khz
)(void);
125 /* Segment descriptor handling */
126 void (*load_tr_desc
)(void);
127 void (*load_gdt
)(const struct Xgt_desc_struct
*);
128 void (*load_idt
)(const struct Xgt_desc_struct
*);
129 void (*store_gdt
)(struct Xgt_desc_struct
*);
130 void (*store_idt
)(struct Xgt_desc_struct
*);
131 void (*set_ldt
)(const void *desc
, unsigned entries
);
132 unsigned long (*store_tr
)(void);
133 void (*load_tls
)(struct thread_struct
*t
, unsigned int cpu
);
134 void (*write_ldt_entry
)(struct desc_struct
*,
135 int entrynum
, u32 low
, u32 high
);
136 void (*write_gdt_entry
)(struct desc_struct
*,
137 int entrynum
, u32 low
, u32 high
);
138 void (*write_idt_entry
)(struct desc_struct
*,
139 int entrynum
, u32 low
, u32 high
);
140 void (*load_esp0
)(struct tss_struct
*tss
, struct thread_struct
*t
);
142 void (*set_iopl_mask
)(unsigned mask
);
143 void (*io_delay
)(void);
146 * Hooks for intercepting the creation/use/destruction of an
149 void (*activate_mm
)(struct mm_struct
*prev
,
150 struct mm_struct
*next
);
151 void (*dup_mmap
)(struct mm_struct
*oldmm
,
152 struct mm_struct
*mm
);
153 void (*exit_mmap
)(struct mm_struct
*mm
);
155 #ifdef CONFIG_X86_LOCAL_APIC
157 * Direct APIC operations, principally for VMI. Ideally
158 * these shouldn't be in this interface.
160 void (*apic_write
)(unsigned long reg
, unsigned long v
);
161 void (*apic_write_atomic
)(unsigned long reg
, unsigned long v
);
162 unsigned long (*apic_read
)(unsigned long reg
);
163 void (*setup_boot_clock
)(void);
164 void (*setup_secondary_clock
)(void);
166 void (*startup_ipi_hook
)(int phys_apicid
,
167 unsigned long start_eip
,
168 unsigned long start_esp
);
172 void (*flush_tlb_user
)(void);
173 void (*flush_tlb_kernel
)(void);
174 void (*flush_tlb_single
)(unsigned long addr
);
175 void (*flush_tlb_others
)(const cpumask_t
*cpus
, struct mm_struct
*mm
,
178 /* Hooks for allocating/releasing pagetable pages */
179 void (*alloc_pt
)(struct mm_struct
*mm
, u32 pfn
);
180 void (*alloc_pd
)(u32 pfn
);
181 void (*alloc_pd_clone
)(u32 pfn
, u32 clonepfn
, u32 start
, u32 count
);
182 void (*release_pt
)(u32 pfn
);
183 void (*release_pd
)(u32 pfn
);
185 /* Pagetable manipulation functions */
186 void (*set_pte
)(pte_t
*ptep
, pte_t pteval
);
187 void (*set_pte_at
)(struct mm_struct
*mm
, unsigned long addr
,
188 pte_t
*ptep
, pte_t pteval
);
189 void (*set_pmd
)(pmd_t
*pmdp
, pmd_t pmdval
);
190 void (*pte_update
)(struct mm_struct
*mm
, unsigned long addr
, pte_t
*ptep
);
191 void (*pte_update_defer
)(struct mm_struct
*mm
,
192 unsigned long addr
, pte_t
*ptep
);
194 #ifdef CONFIG_HIGHPTE
195 void *(*kmap_atomic_pte
)(struct page
*page
, enum km_type type
);
198 #ifdef CONFIG_X86_PAE
199 void (*set_pte_atomic
)(pte_t
*ptep
, pte_t pteval
);
200 void (*set_pte_present
)(struct mm_struct
*mm
, unsigned long addr
, pte_t
*ptep
, pte_t pte
);
201 void (*set_pud
)(pud_t
*pudp
, pud_t pudval
);
202 void (*pte_clear
)(struct mm_struct
*mm
, unsigned long addr
, pte_t
*ptep
);
203 void (*pmd_clear
)(pmd_t
*pmdp
);
205 unsigned long long (*pte_val
)(pte_t
);
206 unsigned long long (*pmd_val
)(pmd_t
);
207 unsigned long long (*pgd_val
)(pgd_t
);
209 pte_t (*make_pte
)(unsigned long long pte
);
210 pmd_t (*make_pmd
)(unsigned long long pmd
);
211 pgd_t (*make_pgd
)(unsigned long long pgd
);
213 unsigned long (*pte_val
)(pte_t
);
214 unsigned long (*pgd_val
)(pgd_t
);
216 pte_t (*make_pte
)(unsigned long pte
);
217 pgd_t (*make_pgd
)(unsigned long pgd
);
220 /* Set deferred update mode, used for batching operations. */
221 void (*set_lazy_mode
)(enum paravirt_lazy_mode mode
);
223 /* These two are jmp to, not actually called. */
224 void (*irq_enable_sysexit
)(void);
228 extern struct paravirt_ops paravirt_ops
;
230 #define PARAVIRT_PATCH(x) \
231 (offsetof(struct paravirt_ops, x) / sizeof(void *))
233 #define paravirt_type(type) \
234 [paravirt_typenum] "i" (PARAVIRT_PATCH(type))
235 #define paravirt_clobber(clobber) \
236 [paravirt_clobber] "i" (clobber)
239 * Generate some code, and mark it as patchable by the
240 * apply_paravirt() alternate instruction patcher.
242 #define _paravirt_alt(insn_string, type, clobber) \
243 "771:\n\t" insn_string "\n" "772:\n" \
244 ".pushsection .parainstructions,\"a\"\n" \
246 " .byte " type "\n" \
247 " .byte 772b-771b\n" \
248 " .short " clobber "\n" \
251 /* Generate patchable code, with the default asm parameters. */
252 #define paravirt_alt(insn_string) \
253 _paravirt_alt(insn_string, "%c[paravirt_typenum]", "%c[paravirt_clobber]")
255 unsigned paravirt_patch_nop(void);
256 unsigned paravirt_patch_ignore(unsigned len
);
257 unsigned paravirt_patch_call(void *insnbuf
,
258 const void *target
, u16 tgt_clobbers
,
259 unsigned long addr
, u16 site_clobbers
,
261 unsigned paravirt_patch_jmp(const void *target
, void *insnbuf
,
262 unsigned long addr
, unsigned len
);
263 unsigned paravirt_patch_default(u8 type
, u16 clobbers
, void *insnbuf
,
264 unsigned long addr
, unsigned len
);
266 unsigned paravirt_patch_insns(void *insnbuf
, unsigned len
,
267 const char *start
, const char *end
);
269 int paravirt_disable_iospace(void);
272 * This generates an indirect call based on the operation type number.
273 * The type number, computed in PARAVIRT_PATCH, is derived from the
274 * offset into the paravirt_ops structure, and can therefore be freely
275 * converted back into a structure offset.
277 #define PARAVIRT_CALL "call *(paravirt_ops+%c[paravirt_typenum]*4);"
280 * These macros are intended to wrap calls into a paravirt_ops
281 * operation, so that they can be later identified and patched at
284 * Normally, a call to a pv_op function is a simple indirect call:
285 * (paravirt_ops.operations)(args...).
287 * Unfortunately, this is a relatively slow operation for modern CPUs,
288 * because it cannot necessarily determine what the destination
289 * address is. In this case, the address is a runtime constant, so at
290 * the very least we can patch the call to e a simple direct call, or
291 * ideally, patch an inline implementation into the callsite. (Direct
292 * calls are essentially free, because the call and return addresses
293 * are completely predictable.)
295 * These macros rely on the standard gcc "regparm(3)" calling
296 * convention, in which the first three arguments are placed in %eax,
297 * %edx, %ecx (in that order), and the remaining arguments are placed
298 * on the stack. All caller-save registers (eax,edx,ecx) are expected
299 * to be modified (either clobbered or used for return values).
301 * The call instruction itself is marked by placing its start address
302 * and size into the .parainstructions section, so that
303 * apply_paravirt() in arch/i386/kernel/alternative.c can do the
304 * appropriate patching under the control of the backend paravirt_ops
307 * Unfortunately there's no way to get gcc to generate the args setup
308 * for the call, and then allow the call itself to be generated by an
309 * inline asm. Because of this, we must do the complete arg setup and
310 * return value handling from within these macros. This is fairly
313 * There are 5 sets of PVOP_* macros for dealing with 0-4 arguments.
314 * It could be extended to more arguments, but there would be little
315 * to be gained from that. For each number of arguments, there are
316 * the two VCALL and CALL variants for void and non-void functions.
318 * When there is a return value, the invoker of the macro must specify
319 * the return type. The macro then uses sizeof() on that type to
320 * determine whether its a 32 or 64 bit value, and places the return
321 * in the right register(s) (just %eax for 32-bit, and %edx:%eax for
324 * 64-bit arguments are passed as a pair of adjacent 32-bit arguments
327 * Small structures are passed and returned in registers. The macro
328 * calling convention can't directly deal with this, so the wrapper
329 * functions must do this.
331 * These PVOP_* macros are only defined within this header. This
332 * means that all uses must be wrapped in inline functions. This also
333 * makes sure the incoming and outgoing types are always correct.
335 #define __PVOP_CALL(rettype, op, pre, post, ...) \
338 unsigned long __eax, __edx, __ecx; \
339 if (sizeof(rettype) > sizeof(unsigned long)) { \
341 paravirt_alt(PARAVIRT_CALL) \
343 : "=a" (__eax), "=d" (__edx), \
345 : paravirt_type(op), \
346 paravirt_clobber(CLBR_ANY), \
349 __ret = (rettype)((((u64)__edx) << 32) | __eax); \
352 paravirt_alt(PARAVIRT_CALL) \
354 : "=a" (__eax), "=d" (__edx), \
356 : paravirt_type(op), \
357 paravirt_clobber(CLBR_ANY), \
360 __ret = (rettype)__eax; \
364 #define __PVOP_VCALL(op, pre, post, ...) \
366 unsigned long __eax, __edx, __ecx; \
368 paravirt_alt(PARAVIRT_CALL) \
370 : "=a" (__eax), "=d" (__edx), "=c" (__ecx) \
371 : paravirt_type(op), \
372 paravirt_clobber(CLBR_ANY), \
377 #define PVOP_CALL0(rettype, op) \
378 __PVOP_CALL(rettype, op, "", "")
379 #define PVOP_VCALL0(op) \
380 __PVOP_VCALL(op, "", "")
382 #define PVOP_CALL1(rettype, op, arg1) \
383 __PVOP_CALL(rettype, op, "", "", "0" ((u32)(arg1)))
384 #define PVOP_VCALL1(op, arg1) \
385 __PVOP_VCALL(op, "", "", "0" ((u32)(arg1)))
387 #define PVOP_CALL2(rettype, op, arg1, arg2) \
388 __PVOP_CALL(rettype, op, "", "", "0" ((u32)(arg1)), "1" ((u32)(arg2)))
389 #define PVOP_VCALL2(op, arg1, arg2) \
390 __PVOP_VCALL(op, "", "", "0" ((u32)(arg1)), "1" ((u32)(arg2)))
392 #define PVOP_CALL3(rettype, op, arg1, arg2, arg3) \
393 __PVOP_CALL(rettype, op, "", "", "0" ((u32)(arg1)), \
394 "1"((u32)(arg2)), "2"((u32)(arg3)))
395 #define PVOP_VCALL3(op, arg1, arg2, arg3) \
396 __PVOP_VCALL(op, "", "", "0" ((u32)(arg1)), "1"((u32)(arg2)), \
399 #define PVOP_CALL4(rettype, op, arg1, arg2, arg3, arg4) \
400 __PVOP_CALL(rettype, op, \
401 "push %[_arg4];", "lea 4(%%esp),%%esp;", \
402 "0" ((u32)(arg1)), "1" ((u32)(arg2)), \
403 "2" ((u32)(arg3)), [_arg4] "mr" ((u32)(arg4)))
404 #define PVOP_VCALL4(op, arg1, arg2, arg3, arg4) \
406 "push %[_arg4];", "lea 4(%%esp),%%esp;", \
407 "0" ((u32)(arg1)), "1" ((u32)(arg2)), \
408 "2" ((u32)(arg3)), [_arg4] "mr" ((u32)(arg4)))
410 static inline int paravirt_enabled(void)
412 return paravirt_ops
.paravirt_enabled
;
415 static inline void load_esp0(struct tss_struct
*tss
,
416 struct thread_struct
*thread
)
418 PVOP_VCALL2(load_esp0
, tss
, thread
);
421 #define ARCH_SETUP paravirt_ops.arch_setup();
422 static inline unsigned long get_wallclock(void)
424 return PVOP_CALL0(unsigned long, get_wallclock
);
427 static inline int set_wallclock(unsigned long nowtime
)
429 return PVOP_CALL1(int, set_wallclock
, nowtime
);
432 static inline void (*choose_time_init(void))(void)
434 return paravirt_ops
.time_init
;
437 /* The paravirtualized CPUID instruction. */
438 static inline void __cpuid(unsigned int *eax
, unsigned int *ebx
,
439 unsigned int *ecx
, unsigned int *edx
)
441 PVOP_VCALL4(cpuid
, eax
, ebx
, ecx
, edx
);
445 * These special macros can be used to get or set a debugging register
447 static inline unsigned long paravirt_get_debugreg(int reg
)
449 return PVOP_CALL1(unsigned long, get_debugreg
, reg
);
451 #define get_debugreg(var, reg) var = paravirt_get_debugreg(reg)
452 static inline void set_debugreg(unsigned long val
, int reg
)
454 PVOP_VCALL2(set_debugreg
, reg
, val
);
457 static inline void clts(void)
462 static inline unsigned long read_cr0(void)
464 return PVOP_CALL0(unsigned long, read_cr0
);
467 static inline void write_cr0(unsigned long x
)
469 PVOP_VCALL1(write_cr0
, x
);
472 static inline unsigned long read_cr2(void)
474 return PVOP_CALL0(unsigned long, read_cr2
);
477 static inline void write_cr2(unsigned long x
)
479 PVOP_VCALL1(write_cr2
, x
);
482 static inline unsigned long read_cr3(void)
484 return PVOP_CALL0(unsigned long, read_cr3
);
487 static inline void write_cr3(unsigned long x
)
489 PVOP_VCALL1(write_cr3
, x
);
492 static inline unsigned long read_cr4(void)
494 return PVOP_CALL0(unsigned long, read_cr4
);
496 static inline unsigned long read_cr4_safe(void)
498 return PVOP_CALL0(unsigned long, read_cr4_safe
);
501 static inline void write_cr4(unsigned long x
)
503 PVOP_VCALL1(write_cr4
, x
);
506 static inline void raw_safe_halt(void)
508 PVOP_VCALL0(safe_halt
);
511 static inline void halt(void)
513 PVOP_VCALL0(safe_halt
);
516 static inline void wbinvd(void)
521 #define get_kernel_rpl() (paravirt_ops.kernel_rpl)
523 static inline u64
paravirt_read_msr(unsigned msr
, int *err
)
525 return PVOP_CALL2(u64
, read_msr
, msr
, err
);
527 static inline int paravirt_write_msr(unsigned msr
, unsigned low
, unsigned high
)
529 return PVOP_CALL3(int, write_msr
, msr
, low
, high
);
532 /* These should all do BUG_ON(_err), but our headers are too tangled. */
533 #define rdmsr(msr,val1,val2) do { \
535 u64 _l = paravirt_read_msr(msr, &_err); \
540 #define wrmsr(msr,val1,val2) do { \
541 paravirt_write_msr(msr, val1, val2); \
544 #define rdmsrl(msr,val) do { \
546 val = paravirt_read_msr(msr, &_err); \
549 #define wrmsrl(msr,val) wrmsr(msr, (u32)((u64)(val)), ((u64)(val))>>32)
550 #define wrmsr_safe(msr,a,b) paravirt_write_msr(msr, a, b)
552 /* rdmsr with exception handling */
553 #define rdmsr_safe(msr,a,b) ({ \
555 u64 _l = paravirt_read_msr(msr, &_err); \
561 static inline u64
paravirt_read_tsc(void)
563 return PVOP_CALL0(u64
, read_tsc
);
566 #define rdtscl(low) do { \
567 u64 _l = paravirt_read_tsc(); \
571 #define rdtscll(val) (val = paravirt_read_tsc())
573 static inline unsigned long long paravirt_sched_clock(void)
575 return PVOP_CALL0(unsigned long long, sched_clock
);
577 #define calculate_cpu_khz() (paravirt_ops.get_cpu_khz())
579 #define write_tsc(val1,val2) wrmsr(0x10, val1, val2)
581 static inline unsigned long long paravirt_read_pmc(int counter
)
583 return PVOP_CALL1(u64
, read_pmc
, counter
);
586 #define rdpmc(counter,low,high) do { \
587 u64 _l = paravirt_read_pmc(counter); \
592 static inline void load_TR_desc(void)
594 PVOP_VCALL0(load_tr_desc
);
596 static inline void load_gdt(const struct Xgt_desc_struct
*dtr
)
598 PVOP_VCALL1(load_gdt
, dtr
);
600 static inline void load_idt(const struct Xgt_desc_struct
*dtr
)
602 PVOP_VCALL1(load_idt
, dtr
);
604 static inline void set_ldt(const void *addr
, unsigned entries
)
606 PVOP_VCALL2(set_ldt
, addr
, entries
);
608 static inline void store_gdt(struct Xgt_desc_struct
*dtr
)
610 PVOP_VCALL1(store_gdt
, dtr
);
612 static inline void store_idt(struct Xgt_desc_struct
*dtr
)
614 PVOP_VCALL1(store_idt
, dtr
);
616 static inline unsigned long paravirt_store_tr(void)
618 return PVOP_CALL0(unsigned long, store_tr
);
620 #define store_tr(tr) ((tr) = paravirt_store_tr())
621 static inline void load_TLS(struct thread_struct
*t
, unsigned cpu
)
623 PVOP_VCALL2(load_tls
, t
, cpu
);
625 static inline void write_ldt_entry(void *dt
, int entry
, u32 low
, u32 high
)
627 PVOP_VCALL4(write_ldt_entry
, dt
, entry
, low
, high
);
629 static inline void write_gdt_entry(void *dt
, int entry
, u32 low
, u32 high
)
631 PVOP_VCALL4(write_gdt_entry
, dt
, entry
, low
, high
);
633 static inline void write_idt_entry(void *dt
, int entry
, u32 low
, u32 high
)
635 PVOP_VCALL4(write_idt_entry
, dt
, entry
, low
, high
);
637 static inline void set_iopl_mask(unsigned mask
)
639 PVOP_VCALL1(set_iopl_mask
, mask
);
642 /* The paravirtualized I/O functions */
643 static inline void slow_down_io(void) {
644 paravirt_ops
.io_delay();
645 #ifdef REALLY_SLOW_IO
646 paravirt_ops
.io_delay();
647 paravirt_ops
.io_delay();
648 paravirt_ops
.io_delay();
652 #ifdef CONFIG_X86_LOCAL_APIC
654 * Basic functions accessing APICs.
656 static inline void apic_write(unsigned long reg
, unsigned long v
)
658 PVOP_VCALL2(apic_write
, reg
, v
);
661 static inline void apic_write_atomic(unsigned long reg
, unsigned long v
)
663 PVOP_VCALL2(apic_write_atomic
, reg
, v
);
666 static inline unsigned long apic_read(unsigned long reg
)
668 return PVOP_CALL1(unsigned long, apic_read
, reg
);
671 static inline void setup_boot_clock(void)
673 PVOP_VCALL0(setup_boot_clock
);
676 static inline void setup_secondary_clock(void)
678 PVOP_VCALL0(setup_secondary_clock
);
682 static inline void paravirt_post_allocator_init(void)
684 if (paravirt_ops
.post_allocator_init
)
685 (*paravirt_ops
.post_allocator_init
)();
688 static inline void paravirt_pagetable_setup_start(pgd_t
*base
)
690 if (paravirt_ops
.pagetable_setup_start
)
691 (*paravirt_ops
.pagetable_setup_start
)(base
);
694 static inline void paravirt_pagetable_setup_done(pgd_t
*base
)
696 if (paravirt_ops
.pagetable_setup_done
)
697 (*paravirt_ops
.pagetable_setup_done
)(base
);
701 static inline void startup_ipi_hook(int phys_apicid
, unsigned long start_eip
,
702 unsigned long start_esp
)
704 PVOP_VCALL3(startup_ipi_hook
, phys_apicid
, start_eip
, start_esp
);
708 static inline void paravirt_activate_mm(struct mm_struct
*prev
,
709 struct mm_struct
*next
)
711 PVOP_VCALL2(activate_mm
, prev
, next
);
714 static inline void arch_dup_mmap(struct mm_struct
*oldmm
,
715 struct mm_struct
*mm
)
717 PVOP_VCALL2(dup_mmap
, oldmm
, mm
);
720 static inline void arch_exit_mmap(struct mm_struct
*mm
)
722 PVOP_VCALL1(exit_mmap
, mm
);
725 static inline void __flush_tlb(void)
727 PVOP_VCALL0(flush_tlb_user
);
729 static inline void __flush_tlb_global(void)
731 PVOP_VCALL0(flush_tlb_kernel
);
733 static inline void __flush_tlb_single(unsigned long addr
)
735 PVOP_VCALL1(flush_tlb_single
, addr
);
738 static inline void flush_tlb_others(cpumask_t cpumask
, struct mm_struct
*mm
,
741 PVOP_VCALL3(flush_tlb_others
, &cpumask
, mm
, va
);
744 static inline void paravirt_alloc_pt(struct mm_struct
*mm
, unsigned pfn
)
746 PVOP_VCALL2(alloc_pt
, mm
, pfn
);
748 static inline void paravirt_release_pt(unsigned pfn
)
750 PVOP_VCALL1(release_pt
, pfn
);
753 static inline void paravirt_alloc_pd(unsigned pfn
)
755 PVOP_VCALL1(alloc_pd
, pfn
);
758 static inline void paravirt_alloc_pd_clone(unsigned pfn
, unsigned clonepfn
,
759 unsigned start
, unsigned count
)
761 PVOP_VCALL4(alloc_pd_clone
, pfn
, clonepfn
, start
, count
);
763 static inline void paravirt_release_pd(unsigned pfn
)
765 PVOP_VCALL1(release_pd
, pfn
);
768 #ifdef CONFIG_HIGHPTE
769 static inline void *kmap_atomic_pte(struct page
*page
, enum km_type type
)
772 ret
= PVOP_CALL2(unsigned long, kmap_atomic_pte
, page
, type
);
777 static inline void pte_update(struct mm_struct
*mm
, unsigned long addr
,
780 PVOP_VCALL3(pte_update
, mm
, addr
, ptep
);
783 static inline void pte_update_defer(struct mm_struct
*mm
, unsigned long addr
,
786 PVOP_VCALL3(pte_update_defer
, mm
, addr
, ptep
);
789 #ifdef CONFIG_X86_PAE
790 static inline pte_t
__pte(unsigned long long val
)
792 unsigned long long ret
= PVOP_CALL2(unsigned long long, make_pte
,
794 return (pte_t
) { ret
, ret
>> 32 };
797 static inline pmd_t
__pmd(unsigned long long val
)
799 return (pmd_t
) { PVOP_CALL2(unsigned long long, make_pmd
, val
, val
>> 32) };
802 static inline pgd_t
__pgd(unsigned long long val
)
804 return (pgd_t
) { PVOP_CALL2(unsigned long long, make_pgd
, val
, val
>> 32) };
807 static inline unsigned long long pte_val(pte_t x
)
809 return PVOP_CALL2(unsigned long long, pte_val
, x
.pte_low
, x
.pte_high
);
812 static inline unsigned long long pmd_val(pmd_t x
)
814 return PVOP_CALL2(unsigned long long, pmd_val
, x
.pmd
, x
.pmd
>> 32);
817 static inline unsigned long long pgd_val(pgd_t x
)
819 return PVOP_CALL2(unsigned long long, pgd_val
, x
.pgd
, x
.pgd
>> 32);
822 static inline void set_pte(pte_t
*ptep
, pte_t pteval
)
824 PVOP_VCALL3(set_pte
, ptep
, pteval
.pte_low
, pteval
.pte_high
);
827 static inline void set_pte_at(struct mm_struct
*mm
, unsigned long addr
,
828 pte_t
*ptep
, pte_t pteval
)
831 paravirt_ops
.set_pte_at(mm
, addr
, ptep
, pteval
);
834 static inline void set_pte_atomic(pte_t
*ptep
, pte_t pteval
)
836 PVOP_VCALL3(set_pte_atomic
, ptep
, pteval
.pte_low
, pteval
.pte_high
);
839 static inline void set_pte_present(struct mm_struct
*mm
, unsigned long addr
,
840 pte_t
*ptep
, pte_t pte
)
843 paravirt_ops
.set_pte_present(mm
, addr
, ptep
, pte
);
846 static inline void set_pmd(pmd_t
*pmdp
, pmd_t pmdval
)
848 PVOP_VCALL3(set_pmd
, pmdp
, pmdval
.pmd
, pmdval
.pmd
>> 32);
851 static inline void set_pud(pud_t
*pudp
, pud_t pudval
)
853 PVOP_VCALL3(set_pud
, pudp
, pudval
.pgd
.pgd
, pudval
.pgd
.pgd
>> 32);
856 static inline void pte_clear(struct mm_struct
*mm
, unsigned long addr
, pte_t
*ptep
)
858 PVOP_VCALL3(pte_clear
, mm
, addr
, ptep
);
861 static inline void pmd_clear(pmd_t
*pmdp
)
863 PVOP_VCALL1(pmd_clear
, pmdp
);
866 #else /* !CONFIG_X86_PAE */
868 static inline pte_t
__pte(unsigned long val
)
870 return (pte_t
) { PVOP_CALL1(unsigned long, make_pte
, val
) };
873 static inline pgd_t
__pgd(unsigned long val
)
875 return (pgd_t
) { PVOP_CALL1(unsigned long, make_pgd
, val
) };
878 static inline unsigned long pte_val(pte_t x
)
880 return PVOP_CALL1(unsigned long, pte_val
, x
.pte_low
);
883 static inline unsigned long pgd_val(pgd_t x
)
885 return PVOP_CALL1(unsigned long, pgd_val
, x
.pgd
);
888 static inline void set_pte(pte_t
*ptep
, pte_t pteval
)
890 PVOP_VCALL2(set_pte
, ptep
, pteval
.pte_low
);
893 static inline void set_pte_at(struct mm_struct
*mm
, unsigned long addr
,
894 pte_t
*ptep
, pte_t pteval
)
896 PVOP_VCALL4(set_pte_at
, mm
, addr
, ptep
, pteval
.pte_low
);
899 static inline void set_pmd(pmd_t
*pmdp
, pmd_t pmdval
)
901 PVOP_VCALL2(set_pmd
, pmdp
, pmdval
.pud
.pgd
.pgd
);
903 #endif /* CONFIG_X86_PAE */
905 #define __HAVE_ARCH_ENTER_LAZY_CPU_MODE
906 static inline void arch_enter_lazy_cpu_mode(void)
908 PVOP_VCALL1(set_lazy_mode
, PARAVIRT_LAZY_CPU
);
911 static inline void arch_leave_lazy_cpu_mode(void)
913 PVOP_VCALL1(set_lazy_mode
, PARAVIRT_LAZY_NONE
);
916 static inline void arch_flush_lazy_cpu_mode(void)
918 PVOP_VCALL1(set_lazy_mode
, PARAVIRT_LAZY_FLUSH
);
922 #define __HAVE_ARCH_ENTER_LAZY_MMU_MODE
923 static inline void arch_enter_lazy_mmu_mode(void)
925 PVOP_VCALL1(set_lazy_mode
, PARAVIRT_LAZY_MMU
);
928 static inline void arch_leave_lazy_mmu_mode(void)
930 PVOP_VCALL1(set_lazy_mode
, PARAVIRT_LAZY_NONE
);
933 static inline void arch_flush_lazy_mmu_mode(void)
935 PVOP_VCALL1(set_lazy_mode
, PARAVIRT_LAZY_FLUSH
);
938 void _paravirt_nop(void);
939 #define paravirt_nop ((void *)_paravirt_nop)
941 /* These all sit in the .parainstructions section to tell us what to patch. */
942 struct paravirt_patch_site
{
943 u8
*instr
; /* original instructions */
944 u8 instrtype
; /* type of this instruction */
945 u8 len
; /* length of original instruction */
946 u16 clobbers
; /* what registers you may clobber */
949 extern struct paravirt_patch_site __parainstructions
[],
950 __parainstructions_end
[];
952 static inline unsigned long __raw_local_save_flags(void)
956 asm volatile(paravirt_alt("pushl %%ecx; pushl %%edx;"
958 "popl %%edx; popl %%ecx")
960 : paravirt_type(save_fl
),
961 paravirt_clobber(CLBR_EAX
)
966 static inline void raw_local_irq_restore(unsigned long f
)
968 asm volatile(paravirt_alt("pushl %%ecx; pushl %%edx;"
970 "popl %%edx; popl %%ecx")
973 paravirt_type(restore_fl
),
974 paravirt_clobber(CLBR_EAX
)
978 static inline void raw_local_irq_disable(void)
980 asm volatile(paravirt_alt("pushl %%ecx; pushl %%edx;"
982 "popl %%edx; popl %%ecx")
984 : paravirt_type(irq_disable
),
985 paravirt_clobber(CLBR_EAX
)
986 : "memory", "eax", "cc");
989 static inline void raw_local_irq_enable(void)
991 asm volatile(paravirt_alt("pushl %%ecx; pushl %%edx;"
993 "popl %%edx; popl %%ecx")
995 : paravirt_type(irq_enable
),
996 paravirt_clobber(CLBR_EAX
)
997 : "memory", "eax", "cc");
1000 static inline unsigned long __raw_local_irq_save(void)
1004 f
= __raw_local_save_flags();
1005 raw_local_irq_disable();
1009 #define CLI_STRING \
1010 _paravirt_alt("pushl %%ecx; pushl %%edx;" \
1011 "call *paravirt_ops+%c[paravirt_cli_type]*4;" \
1012 "popl %%edx; popl %%ecx", \
1013 "%c[paravirt_cli_type]", "%c[paravirt_clobber]")
1015 #define STI_STRING \
1016 _paravirt_alt("pushl %%ecx; pushl %%edx;" \
1017 "call *paravirt_ops+%c[paravirt_sti_type]*4;" \
1018 "popl %%edx; popl %%ecx", \
1019 "%c[paravirt_sti_type]", "%c[paravirt_clobber]")
1021 #define CLI_STI_CLOBBERS , "%eax"
1022 #define CLI_STI_INPUT_ARGS \
1024 [paravirt_cli_type] "i" (PARAVIRT_PATCH(irq_disable)), \
1025 [paravirt_sti_type] "i" (PARAVIRT_PATCH(irq_enable)), \
1026 paravirt_clobber(CLBR_EAX)
1028 /* Make sure as little as possible of this mess escapes. */
1029 #undef PARAVIRT_CALL
1043 #else /* __ASSEMBLY__ */
1045 #define PARA_PATCH(off) ((off) / 4)
1047 #define PARA_SITE(ptype, clobbers, ops) \
1051 .pushsection .parainstructions,"a"; \
1058 #define INTERRUPT_RETURN \
1059 PARA_SITE(PARA_PATCH(PARAVIRT_iret), CLBR_NONE, \
1060 jmp *%cs:paravirt_ops+PARAVIRT_iret)
1062 #define DISABLE_INTERRUPTS(clobbers) \
1063 PARA_SITE(PARA_PATCH(PARAVIRT_irq_disable), clobbers, \
1064 pushl %eax; pushl %ecx; pushl %edx; \
1065 call *%cs:paravirt_ops+PARAVIRT_irq_disable; \
1066 popl %edx; popl %ecx; popl %eax) \
1068 #define ENABLE_INTERRUPTS(clobbers) \
1069 PARA_SITE(PARA_PATCH(PARAVIRT_irq_enable), clobbers, \
1070 pushl %eax; pushl %ecx; pushl %edx; \
1071 call *%cs:paravirt_ops+PARAVIRT_irq_enable; \
1072 popl %edx; popl %ecx; popl %eax)
1074 #define ENABLE_INTERRUPTS_SYSEXIT \
1075 PARA_SITE(PARA_PATCH(PARAVIRT_irq_enable_sysexit), CLBR_NONE, \
1076 jmp *%cs:paravirt_ops+PARAVIRT_irq_enable_sysexit)
1078 #define GET_CR0_INTO_EAX \
1079 push %ecx; push %edx; \
1080 call *paravirt_ops+PARAVIRT_read_cr0; \
1083 #endif /* __ASSEMBLY__ */
1084 #endif /* CONFIG_PARAVIRT */
1085 #endif /* __ASM_PARAVIRT_H */