paravirt.h 29 KB
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#ifndef __ASM_PARAVIRT_H
#define __ASM_PARAVIRT_H
/* Various instructions on x86 need to be replaced for
 * para-virtualization: those hooks are defined here. */
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#ifdef CONFIG_PARAVIRT
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#include <asm/page.h>
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/* Bitmask of what can be clobbered: usually at least eax. */
#define CLBR_NONE 0x0
#define CLBR_EAX 0x1
#define CLBR_ECX 0x2
#define CLBR_EDX 0x4
#define CLBR_ANY 0x7

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#ifndef __ASSEMBLY__
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#include <linux/types.h>
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#include <linux/cpumask.h>
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#include <asm/kmap_types.h>
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struct page;
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struct thread_struct;
struct Xgt_desc_struct;
struct tss_struct;
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struct mm_struct;
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struct desc_struct;
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/* Lazy mode for batching updates / context switch */
enum paravirt_lazy_mode {
	PARAVIRT_LAZY_NONE = 0,
	PARAVIRT_LAZY_MMU = 1,
	PARAVIRT_LAZY_CPU = 2,
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	PARAVIRT_LAZY_FLUSH = 3,
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};

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struct paravirt_ops
{
	unsigned int kernel_rpl;
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	int shared_kernel_pmd;
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 	int paravirt_enabled;
	const char *name;

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	/*
	 * Patch may replace one of the defined code sequences with arbitrary
	 * code, subject to the same register constraints.  This generally
	 * means the code is not free to clobber any registers other than EAX.
	 * The patch function should return the number of bytes of code
	 * generated, as we nop pad the rest in generic code.
	 */
	unsigned (*patch)(u8 type, u16 clobber, void *firstinsn, unsigned len);

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	/* Basic arch-specific setup */
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	void (*arch_setup)(void);
	char *(*memory_setup)(void);
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	void (*post_allocator_init)(void);

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	void (*init_IRQ)(void);
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	void (*time_init)(void);
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	/*
	 * Called before/after init_mm pagetable setup. setup_start
	 * may reset %cr3, and may pre-install parts of the pagetable;
	 * pagetable setup is expected to preserve any existing
	 * mapping.
	 */
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	void (*pagetable_setup_start)(pgd_t *pgd_base);
	void (*pagetable_setup_done)(pgd_t *pgd_base);

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	/* Print a banner to identify the environment */
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	void (*banner)(void);

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	/* Set and set time of day */
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	unsigned long (*get_wallclock)(void);
	int (*set_wallclock)(unsigned long);

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	/* cpuid emulation, mostly so that caps bits can be disabled */
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	void (*cpuid)(unsigned int *eax, unsigned int *ebx,
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		      unsigned int *ecx, unsigned int *edx);

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	/* hooks for various privileged instructions */
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	unsigned long (*get_debugreg)(int regno);
	void (*set_debugreg)(int regno, unsigned long value);
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	void (*clts)(void);
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	unsigned long (*read_cr0)(void);
	void (*write_cr0)(unsigned long);
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	unsigned long (*read_cr2)(void);
	void (*write_cr2)(unsigned long);
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	unsigned long (*read_cr3)(void);
	void (*write_cr3)(unsigned long);
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	unsigned long (*read_cr4_safe)(void);
	unsigned long (*read_cr4)(void);
	void (*write_cr4)(unsigned long);
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	/*
	 * Get/set interrupt state.  save_fl and restore_fl are only
	 * expected to use X86_EFLAGS_IF; all other bits
	 * returned from save_fl are undefined, and may be ignored by
	 * restore_fl.
	 */
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	unsigned long (*save_fl)(void);
	void (*restore_fl)(unsigned long);
	void (*irq_disable)(void);
	void (*irq_enable)(void);
	void (*safe_halt)(void);
	void (*halt)(void);
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	void (*wbinvd)(void);
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	/* MSR, PMC and TSR operations.
	   err = 0/-EFAULT.  wrmsr returns 0/-EFAULT. */
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	u64 (*read_msr)(unsigned int msr, int *err);
	int (*write_msr)(unsigned int msr, u64 val);

	u64 (*read_tsc)(void);
	u64 (*read_pmc)(void);
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	unsigned long long (*sched_clock)(void);
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	unsigned long (*get_cpu_khz)(void);
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	/* Segment descriptor handling */
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	void (*load_tr_desc)(void);
	void (*load_gdt)(const struct Xgt_desc_struct *);
	void (*load_idt)(const struct Xgt_desc_struct *);
	void (*store_gdt)(struct Xgt_desc_struct *);
	void (*store_idt)(struct Xgt_desc_struct *);
	void (*set_ldt)(const void *desc, unsigned entries);
	unsigned long (*store_tr)(void);
	void (*load_tls)(struct thread_struct *t, unsigned int cpu);
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	void (*write_ldt_entry)(struct desc_struct *,
				int entrynum, u32 low, u32 high);
	void (*write_gdt_entry)(struct desc_struct *,
				int entrynum, u32 low, u32 high);
	void (*write_idt_entry)(struct desc_struct *,
				int entrynum, u32 low, u32 high);
	void (*load_esp0)(struct tss_struct *tss, struct thread_struct *t);
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	void (*set_iopl_mask)(unsigned mask);
	void (*io_delay)(void);
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	/*
	 * Hooks for intercepting the creation/use/destruction of an
	 * mm_struct.
	 */
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	void (*activate_mm)(struct mm_struct *prev,
			    struct mm_struct *next);
	void (*dup_mmap)(struct mm_struct *oldmm,
			 struct mm_struct *mm);
	void (*exit_mmap)(struct mm_struct *mm);

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#ifdef CONFIG_X86_LOCAL_APIC
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	/*
	 * Direct APIC operations, principally for VMI.  Ideally
	 * these shouldn't be in this interface.
	 */
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	void (*apic_write)(unsigned long reg, unsigned long v);
	void (*apic_write_atomic)(unsigned long reg, unsigned long v);
	unsigned long (*apic_read)(unsigned long reg);
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	void (*setup_boot_clock)(void);
	void (*setup_secondary_clock)(void);
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	void (*startup_ipi_hook)(int phys_apicid,
				 unsigned long start_eip,
				 unsigned long start_esp);
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#endif

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	/* TLB operations */
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	void (*flush_tlb_user)(void);
	void (*flush_tlb_kernel)(void);
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	void (*flush_tlb_single)(unsigned long addr);
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	void (*flush_tlb_others)(const cpumask_t *cpus, struct mm_struct *mm,
				 unsigned long va);
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	/* Hooks for allocating/releasing pagetable pages */
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	void (*alloc_pt)(struct mm_struct *mm, u32 pfn);
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	void (*alloc_pd)(u32 pfn);
	void (*alloc_pd_clone)(u32 pfn, u32 clonepfn, u32 start, u32 count);
	void (*release_pt)(u32 pfn);
	void (*release_pd)(u32 pfn);

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	/* Pagetable manipulation functions */
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	void (*set_pte)(pte_t *ptep, pte_t pteval);
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	void (*set_pte_at)(struct mm_struct *mm, unsigned long addr,
			   pte_t *ptep, pte_t pteval);
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	void (*set_pmd)(pmd_t *pmdp, pmd_t pmdval);
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	void (*pte_update)(struct mm_struct *mm, unsigned long addr, pte_t *ptep);
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	void (*pte_update_defer)(struct mm_struct *mm,
				 unsigned long addr, pte_t *ptep);
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#ifdef CONFIG_HIGHPTE
	void *(*kmap_atomic_pte)(struct page *page, enum km_type type);
#endif

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#ifdef CONFIG_X86_PAE
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	void (*set_pte_atomic)(pte_t *ptep, pte_t pteval);
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 	void (*set_pte_present)(struct mm_struct *mm, unsigned long addr, pte_t *ptep, pte_t pte);
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	void (*set_pud)(pud_t *pudp, pud_t pudval);
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 	void (*pte_clear)(struct mm_struct *mm, unsigned long addr, pte_t *ptep);
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	void (*pmd_clear)(pmd_t *pmdp);
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	unsigned long long (*pte_val)(pte_t);
	unsigned long long (*pmd_val)(pmd_t);
	unsigned long long (*pgd_val)(pgd_t);

	pte_t (*make_pte)(unsigned long long pte);
	pmd_t (*make_pmd)(unsigned long long pmd);
	pgd_t (*make_pgd)(unsigned long long pgd);
#else
	unsigned long (*pte_val)(pte_t);
	unsigned long (*pgd_val)(pgd_t);

	pte_t (*make_pte)(unsigned long pte);
	pgd_t (*make_pgd)(unsigned long pgd);
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#endif

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	/* Set deferred update mode, used for batching operations. */
	void (*set_lazy_mode)(enum paravirt_lazy_mode mode);
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	/* These two are jmp to, not actually called. */
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	void (*irq_enable_sysexit)(void);
	void (*iret)(void);
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};

extern struct paravirt_ops paravirt_ops;

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#define PARAVIRT_PATCH(x)					\
	(offsetof(struct paravirt_ops, x) / sizeof(void *))

#define paravirt_type(type)					\
	[paravirt_typenum] "i" (PARAVIRT_PATCH(type))
#define paravirt_clobber(clobber)		\
	[paravirt_clobber] "i" (clobber)

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/*
 * Generate some code, and mark it as patchable by the
 * apply_paravirt() alternate instruction patcher.
 */
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#define _paravirt_alt(insn_string, type, clobber)	\
	"771:\n\t" insn_string "\n" "772:\n"		\
	".pushsection .parainstructions,\"a\"\n"	\
	"  .long 771b\n"				\
	"  .byte " type "\n"				\
	"  .byte 772b-771b\n"				\
	"  .short " clobber "\n"			\
	".popsection\n"

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/* Generate patchable code, with the default asm parameters. */
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#define paravirt_alt(insn_string)					\
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	_paravirt_alt(insn_string, "%c[paravirt_typenum]", "%c[paravirt_clobber]")

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unsigned paravirt_patch_nop(void);
unsigned paravirt_patch_ignore(unsigned len);
unsigned paravirt_patch_call(void *target, u16 tgt_clobbers,
			     void *site, u16 site_clobbers,
			     unsigned len);
unsigned paravirt_patch_jmp(void *target, void *site, unsigned len);
unsigned paravirt_patch_default(u8 type, u16 clobbers, void *site, unsigned len);

unsigned paravirt_patch_insns(void *site, unsigned len,
			      const char *start, const char *end);

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int paravirt_disable_iospace(void);
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/*
 * This generates an indirect call based on the operation type number.
 * The type number, computed in PARAVIRT_PATCH, is derived from the
 * offset into the paravirt_ops structure, and can therefore be freely
 * converted back into a structure offset.
 */
#define PARAVIRT_CALL	"call *(paravirt_ops+%c[paravirt_typenum]*4);"

/*
 * These macros are intended to wrap calls into a paravirt_ops
 * operation, so that they can be later identified and patched at
 * runtime.
 *
 * Normally, a call to a pv_op function is a simple indirect call:
 * (paravirt_ops.operations)(args...).
 *
 * Unfortunately, this is a relatively slow operation for modern CPUs,
 * because it cannot necessarily determine what the destination
 * address is.  In this case, the address is a runtime constant, so at
 * the very least we can patch the call to e a simple direct call, or
 * ideally, patch an inline implementation into the callsite.  (Direct
 * calls are essentially free, because the call and return addresses
 * are completely predictable.)
 *
 * These macros rely on the standard gcc "regparm(3)" calling
 * convention, in which the first three arguments are placed in %eax,
 * %edx, %ecx (in that order), and the remaining arguments are placed
 * on the stack.  All caller-save registers (eax,edx,ecx) are expected
 * to be modified (either clobbered or used for return values).
 *
 * The call instruction itself is marked by placing its start address
 * and size into the .parainstructions section, so that
 * apply_paravirt() in arch/i386/kernel/alternative.c can do the
 * appropriate patching under the control of the backend paravirt_ops
 * implementation.
 *
 * Unfortunately there's no way to get gcc to generate the args setup
 * for the call, and then allow the call itself to be generated by an
 * inline asm.  Because of this, we must do the complete arg setup and
 * return value handling from within these macros.  This is fairly
 * cumbersome.
 *
 * There are 5 sets of PVOP_* macros for dealing with 0-4 arguments.
 * It could be extended to more arguments, but there would be little
 * to be gained from that.  For each number of arguments, there are
 * the two VCALL and CALL variants for void and non-void functions.
 *
 * When there is a return value, the invoker of the macro must specify
 * the return type.  The macro then uses sizeof() on that type to
 * determine whether its a 32 or 64 bit value, and places the return
 * in the right register(s) (just %eax for 32-bit, and %edx:%eax for
 * 64-bit).
 *
 * 64-bit arguments are passed as a pair of adjacent 32-bit arguments
 * in low,high order.
 *
 * Small structures are passed and returned in registers.  The macro
 * calling convention can't directly deal with this, so the wrapper
 * functions must do this.
 *
 * These PVOP_* macros are only defined within this header.  This
 * means that all uses must be wrapped in inline functions.  This also
 * makes sure the incoming and outgoing types are always correct.
 */
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#define __PVOP_CALL(rettype, op, pre, post, ...)			\
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	({								\
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		rettype __ret;						\
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		unsigned long __eax, __edx, __ecx;			\
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		if (sizeof(rettype) > sizeof(unsigned long)) {		\
			asm volatile(pre				\
				     paravirt_alt(PARAVIRT_CALL)	\
				     post				\
				     : "=a" (__eax), "=d" (__edx),	\
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				       "=c" (__ecx)			\
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				     : paravirt_type(op),		\
				       paravirt_clobber(CLBR_ANY),	\
				       ##__VA_ARGS__			\
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				     : "memory", "cc");			\
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			__ret = (rettype)((((u64)__edx) << 32) | __eax); \
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		} else {						\
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			asm volatile(pre				\
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				     paravirt_alt(PARAVIRT_CALL)	\
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				     post				\
				     : "=a" (__eax), "=d" (__edx),	\
				       "=c" (__ecx)			\
				     : paravirt_type(op),		\
				       paravirt_clobber(CLBR_ANY),	\
				       ##__VA_ARGS__			\
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				     : "memory", "cc");			\
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			__ret = (rettype)__eax;				\
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		}							\
		__ret;							\
	})
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#define __PVOP_VCALL(op, pre, post, ...)				\
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	({								\
		unsigned long __eax, __edx, __ecx;			\
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		asm volatile(pre					\
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			     paravirt_alt(PARAVIRT_CALL)		\
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			     post					\
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			     : "=a" (__eax), "=d" (__edx), "=c" (__ecx) \
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			     : paravirt_type(op),			\
			       paravirt_clobber(CLBR_ANY),		\
			       ##__VA_ARGS__				\
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			     : "memory", "cc");				\
	})

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#define PVOP_CALL0(rettype, op)						\
	__PVOP_CALL(rettype, op, "", "")
#define PVOP_VCALL0(op)							\
	__PVOP_VCALL(op, "", "")

#define PVOP_CALL1(rettype, op, arg1)					\
	__PVOP_CALL(rettype, op, "", "", "0" ((u32)(arg1)))
#define PVOP_VCALL1(op, arg1)						\
	__PVOP_VCALL(op, "", "", "0" ((u32)(arg1)))

#define PVOP_CALL2(rettype, op, arg1, arg2)				\
	__PVOP_CALL(rettype, op, "", "", "0" ((u32)(arg1)), "1" ((u32)(arg2)))
#define PVOP_VCALL2(op, arg1, arg2)					\
	__PVOP_VCALL(op, "", "", "0" ((u32)(arg1)), "1" ((u32)(arg2)))

#define PVOP_CALL3(rettype, op, arg1, arg2, arg3)			\
	__PVOP_CALL(rettype, op, "", "", "0" ((u32)(arg1)),		\
		    "1"((u32)(arg2)), "2"((u32)(arg3)))
#define PVOP_VCALL3(op, arg1, arg2, arg3)				\
	__PVOP_VCALL(op, "", "", "0" ((u32)(arg1)), "1"((u32)(arg2)),	\
		     "2"((u32)(arg3)))

#define PVOP_CALL4(rettype, op, arg1, arg2, arg3, arg4)			\
	__PVOP_CALL(rettype, op,					\
		    "push %[_arg4];", "lea 4(%%esp),%%esp;",		\
		    "0" ((u32)(arg1)), "1" ((u32)(arg2)),		\
		    "2" ((u32)(arg3)), [_arg4] "mr" ((u32)(arg4)))
#define PVOP_VCALL4(op, arg1, arg2, arg3, arg4)				\
	__PVOP_VCALL(op,						\
		    "push %[_arg4];", "lea 4(%%esp),%%esp;",		\
		    "0" ((u32)(arg1)), "1" ((u32)(arg2)),		\
		    "2" ((u32)(arg3)), [_arg4] "mr" ((u32)(arg4)))

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static inline int paravirt_enabled(void)
{
	return paravirt_ops.paravirt_enabled;
}
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static inline void load_esp0(struct tss_struct *tss,
			     struct thread_struct *thread)
{
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	PVOP_VCALL2(load_esp0, tss, thread);
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}

#define ARCH_SETUP			paravirt_ops.arch_setup();
static inline unsigned long get_wallclock(void)
{
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	return PVOP_CALL0(unsigned long, get_wallclock);
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}

static inline int set_wallclock(unsigned long nowtime)
{
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	return PVOP_CALL1(int, set_wallclock, nowtime);
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}

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static inline void (*choose_time_init(void))(void)
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{
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	return paravirt_ops.time_init;
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}

/* The paravirtualized CPUID instruction. */
static inline void __cpuid(unsigned int *eax, unsigned int *ebx,
			   unsigned int *ecx, unsigned int *edx)
{
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	PVOP_VCALL4(cpuid, eax, ebx, ecx, edx);
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}

/*
 * These special macros can be used to get or set a debugging register
 */
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static inline unsigned long paravirt_get_debugreg(int reg)
{
	return PVOP_CALL1(unsigned long, get_debugreg, reg);
}
#define get_debugreg(var, reg) var = paravirt_get_debugreg(reg)
static inline void set_debugreg(unsigned long val, int reg)
{
	PVOP_VCALL2(set_debugreg, reg, val);
}
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static inline void clts(void)
{
	PVOP_VCALL0(clts);
}
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static inline unsigned long read_cr0(void)
{
	return PVOP_CALL0(unsigned long, read_cr0);
}
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static inline void write_cr0(unsigned long x)
{
	PVOP_VCALL1(write_cr0, x);
}

static inline unsigned long read_cr2(void)
{
	return PVOP_CALL0(unsigned long, read_cr2);
}

static inline void write_cr2(unsigned long x)
{
	PVOP_VCALL1(write_cr2, x);
}

static inline unsigned long read_cr3(void)
{
	return PVOP_CALL0(unsigned long, read_cr3);
}
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static inline void write_cr3(unsigned long x)
{
	PVOP_VCALL1(write_cr3, x);
}
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static inline unsigned long read_cr4(void)
{
	return PVOP_CALL0(unsigned long, read_cr4);
}
static inline unsigned long read_cr4_safe(void)
{
	return PVOP_CALL0(unsigned long, read_cr4_safe);
}
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static inline void write_cr4(unsigned long x)
{
	PVOP_VCALL1(write_cr4, x);
}
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static inline void raw_safe_halt(void)
{
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	PVOP_VCALL0(safe_halt);
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}

static inline void halt(void)
{
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	PVOP_VCALL0(safe_halt);
}

static inline void wbinvd(void)
{
	PVOP_VCALL0(wbinvd);
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}

#define get_kernel_rpl()  (paravirt_ops.kernel_rpl)

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static inline u64 paravirt_read_msr(unsigned msr, int *err)
{
	return PVOP_CALL2(u64, read_msr, msr, err);
}
static inline int paravirt_write_msr(unsigned msr, unsigned low, unsigned high)
{
	return PVOP_CALL3(int, write_msr, msr, low, high);
}

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/* These should all do BUG_ON(_err), but our headers are too tangled. */
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#define rdmsr(msr,val1,val2) do {		\
	int _err;				\
	u64 _l = paravirt_read_msr(msr, &_err);	\
	val1 = (u32)_l;				\
	val2 = _l >> 32;			\
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} while(0)

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#define wrmsr(msr,val1,val2) do {		\
	paravirt_write_msr(msr, val1, val2);	\
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} while(0)

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#define rdmsrl(msr,val) do {			\
	int _err;				\
	val = paravirt_read_msr(msr, &_err);	\
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} while(0)

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#define wrmsrl(msr,val)		wrmsr(msr, (u32)((u64)(val)), ((u64)(val))>>32)
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#define wrmsr_safe(msr,a,b)	paravirt_write_msr(msr, a, b)
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/* rdmsr with exception handling */
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#define rdmsr_safe(msr,a,b) ({			\
	int _err;				\
	u64 _l = paravirt_read_msr(msr, &_err);	\
	(*a) = (u32)_l;				\
	(*b) = _l >> 32;			\
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	_err; })

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static inline u64 paravirt_read_tsc(void)
{
	return PVOP_CALL0(u64, read_tsc);
}
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#define rdtscl(low) do {			\
	u64 _l = paravirt_read_tsc();		\
	low = (int)_l;				\
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} while(0)

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#define rdtscll(val) (val = paravirt_read_tsc())
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static inline unsigned long long paravirt_sched_clock(void)
{
	return PVOP_CALL0(unsigned long long, sched_clock);
}
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#define calculate_cpu_khz() (paravirt_ops.get_cpu_khz())
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#define write_tsc(val1,val2) wrmsr(0x10, val1, val2)

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static inline unsigned long long paravirt_read_pmc(int counter)
{
	return PVOP_CALL1(u64, read_pmc, counter);
}
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#define rdpmc(counter,low,high) do {		\
	u64 _l = paravirt_read_pmc(counter);	\
	low = (u32)_l;				\
	high = _l >> 32;			\
} while(0)
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588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636
static inline void load_TR_desc(void)
{
	PVOP_VCALL0(load_tr_desc);
}
static inline void load_gdt(const struct Xgt_desc_struct *dtr)
{
	PVOP_VCALL1(load_gdt, dtr);
}
static inline void load_idt(const struct Xgt_desc_struct *dtr)
{
	PVOP_VCALL1(load_idt, dtr);
}
static inline void set_ldt(const void *addr, unsigned entries)
{
	PVOP_VCALL2(set_ldt, addr, entries);
}
static inline void store_gdt(struct Xgt_desc_struct *dtr)
{
	PVOP_VCALL1(store_gdt, dtr);
}
static inline void store_idt(struct Xgt_desc_struct *dtr)
{
	PVOP_VCALL1(store_idt, dtr);
}
static inline unsigned long paravirt_store_tr(void)
{
	return PVOP_CALL0(unsigned long, store_tr);
}
#define store_tr(tr)	((tr) = paravirt_store_tr())
static inline void load_TLS(struct thread_struct *t, unsigned cpu)
{
	PVOP_VCALL2(load_tls, t, cpu);
}
static inline void write_ldt_entry(void *dt, int entry, u32 low, u32 high)
{
	PVOP_VCALL4(write_ldt_entry, dt, entry, low, high);
}
static inline void write_gdt_entry(void *dt, int entry, u32 low, u32 high)
{
	PVOP_VCALL4(write_gdt_entry, dt, entry, low, high);
}
static inline void write_idt_entry(void *dt, int entry, u32 low, u32 high)
{
	PVOP_VCALL4(write_idt_entry, dt, entry, low, high);
}
static inline void set_iopl_mask(unsigned mask)
{
	PVOP_VCALL1(set_iopl_mask, mask);
}
637

638 639 640 641 642 643 644 645 646 647
/* The paravirtualized I/O functions */
static inline void slow_down_io(void) {
	paravirt_ops.io_delay();
#ifdef REALLY_SLOW_IO
	paravirt_ops.io_delay();
	paravirt_ops.io_delay();
	paravirt_ops.io_delay();
#endif
}

648 649 650 651 652 653
#ifdef CONFIG_X86_LOCAL_APIC
/*
 * Basic functions accessing APICs.
 */
static inline void apic_write(unsigned long reg, unsigned long v)
{
654
	PVOP_VCALL2(apic_write, reg, v);
655 656 657 658
}

static inline void apic_write_atomic(unsigned long reg, unsigned long v)
{
659
	PVOP_VCALL2(apic_write_atomic, reg, v);
660 661 662 663
}

static inline unsigned long apic_read(unsigned long reg)
{
664
	return PVOP_CALL1(unsigned long, apic_read, reg);
665
}
666 667 668

static inline void setup_boot_clock(void)
{
669
	PVOP_VCALL0(setup_boot_clock);
670 671 672 673
}

static inline void setup_secondary_clock(void)
{
674
	PVOP_VCALL0(setup_secondary_clock);
675
}
676 677
#endif

678 679 680 681 682 683
static inline void paravirt_post_allocator_init(void)
{
	if (paravirt_ops.post_allocator_init)
		(*paravirt_ops.post_allocator_init)();
}

684 685 686 687 688 689 690 691 692 693 694
static inline void paravirt_pagetable_setup_start(pgd_t *base)
{
	if (paravirt_ops.pagetable_setup_start)
		(*paravirt_ops.pagetable_setup_start)(base);
}

static inline void paravirt_pagetable_setup_done(pgd_t *base)
{
	if (paravirt_ops.pagetable_setup_done)
		(*paravirt_ops.pagetable_setup_done)(base);
}
695

696 697 698 699
#ifdef CONFIG_SMP
static inline void startup_ipi_hook(int phys_apicid, unsigned long start_eip,
				    unsigned long start_esp)
{
700
	PVOP_VCALL3(startup_ipi_hook, phys_apicid, start_eip, start_esp);
701 702
}
#endif
703

704 705 706
static inline void paravirt_activate_mm(struct mm_struct *prev,
					struct mm_struct *next)
{
707
	PVOP_VCALL2(activate_mm, prev, next);
708 709 710 711 712
}

static inline void arch_dup_mmap(struct mm_struct *oldmm,
				 struct mm_struct *mm)
{
713
	PVOP_VCALL2(dup_mmap, oldmm, mm);
714 715 716 717
}

static inline void arch_exit_mmap(struct mm_struct *mm)
{
718
	PVOP_VCALL1(exit_mmap, mm);
719 720
}

721 722 723 724 725 726 727 728 729 730 731 732
static inline void __flush_tlb(void)
{
	PVOP_VCALL0(flush_tlb_user);
}
static inline void __flush_tlb_global(void)
{
	PVOP_VCALL0(flush_tlb_kernel);
}
static inline void __flush_tlb_single(unsigned long addr)
{
	PVOP_VCALL1(flush_tlb_single, addr);
}
733

734 735 736 737 738 739
static inline void flush_tlb_others(cpumask_t cpumask, struct mm_struct *mm,
				    unsigned long va)
{
	PVOP_VCALL3(flush_tlb_others, &cpumask, mm, va);
}

740
static inline void paravirt_alloc_pt(struct mm_struct *mm, unsigned pfn)
741
{
742
	PVOP_VCALL2(alloc_pt, mm, pfn);
743 744 745 746 747
}
static inline void paravirt_release_pt(unsigned pfn)
{
	PVOP_VCALL1(release_pt, pfn);
}
748

749 750 751 752
static inline void paravirt_alloc_pd(unsigned pfn)
{
	PVOP_VCALL1(alloc_pd, pfn);
}
753

754 755 756 757 758 759
static inline void paravirt_alloc_pd_clone(unsigned pfn, unsigned clonepfn,
					   unsigned start, unsigned count)
{
	PVOP_VCALL4(alloc_pd_clone, pfn, clonepfn, start, count);
}
static inline void paravirt_release_pd(unsigned pfn)
760
{
761
	PVOP_VCALL1(release_pd, pfn);
762 763
}

764 765 766 767 768 769 770 771 772
#ifdef CONFIG_HIGHPTE
static inline void *kmap_atomic_pte(struct page *page, enum km_type type)
{
	unsigned long ret;
	ret = PVOP_CALL2(unsigned long, kmap_atomic_pte, page, type);
	return (void *)ret;
}
#endif

773 774
static inline void pte_update(struct mm_struct *mm, unsigned long addr,
			      pte_t *ptep)
775
{
776
	PVOP_VCALL3(pte_update, mm, addr, ptep);
777 778
}

779 780
static inline void pte_update_defer(struct mm_struct *mm, unsigned long addr,
				    pte_t *ptep)
781
{
782
	PVOP_VCALL3(pte_update_defer, mm, addr, ptep);
783 784
}

785 786
#ifdef CONFIG_X86_PAE
static inline pte_t __pte(unsigned long long val)
787
{
788 789 790
	unsigned long long ret = PVOP_CALL2(unsigned long long, make_pte,
					    val, val >> 32);
	return (pte_t) { ret, ret >> 32 };
791 792
}

793
static inline pmd_t __pmd(unsigned long long val)
794
{
795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827
	return (pmd_t) { PVOP_CALL2(unsigned long long, make_pmd, val, val >> 32) };
}

static inline pgd_t __pgd(unsigned long long val)
{
	return (pgd_t) { PVOP_CALL2(unsigned long long, make_pgd, val, val >> 32) };
}

static inline unsigned long long pte_val(pte_t x)
{
	return PVOP_CALL2(unsigned long long, pte_val, x.pte_low, x.pte_high);
}

static inline unsigned long long pmd_val(pmd_t x)
{
	return PVOP_CALL2(unsigned long long, pmd_val, x.pmd, x.pmd >> 32);
}

static inline unsigned long long pgd_val(pgd_t x)
{
	return PVOP_CALL2(unsigned long long, pgd_val, x.pgd, x.pgd >> 32);
}

static inline void set_pte(pte_t *ptep, pte_t pteval)
{
	PVOP_VCALL3(set_pte, ptep, pteval.pte_low, pteval.pte_high);
}

static inline void set_pte_at(struct mm_struct *mm, unsigned long addr,
			      pte_t *ptep, pte_t pteval)
{
	/* 5 arg words */
	paravirt_ops.set_pte_at(mm, addr, ptep, pteval);
828 829 830 831
}

static inline void set_pte_atomic(pte_t *ptep, pte_t pteval)
{
832
	PVOP_VCALL3(set_pte_atomic, ptep, pteval.pte_low, pteval.pte_high);
833 834
}

835 836
static inline void set_pte_present(struct mm_struct *mm, unsigned long addr,
				   pte_t *ptep, pte_t pte)
837
{
838
	/* 5 arg words */
839 840 841
	paravirt_ops.set_pte_present(mm, addr, ptep, pte);
}

842 843 844 845 846
static inline void set_pmd(pmd_t *pmdp, pmd_t pmdval)
{
	PVOP_VCALL3(set_pmd, pmdp, pmdval.pmd, pmdval.pmd >> 32);
}

847 848
static inline void set_pud(pud_t *pudp, pud_t pudval)
{
849
	PVOP_VCALL3(set_pud, pudp, pudval.pgd.pgd, pudval.pgd.pgd >> 32);
850 851 852 853
}

static inline void pte_clear(struct mm_struct *mm, unsigned long addr, pte_t *ptep)
{
854
	PVOP_VCALL3(pte_clear, mm, addr, ptep);
855 856 857 858
}

static inline void pmd_clear(pmd_t *pmdp)
{
859 860 861 862
	PVOP_VCALL1(pmd_clear, pmdp);
}

#else  /* !CONFIG_X86_PAE */
863

864 865 866
static inline pte_t __pte(unsigned long val)
{
	return (pte_t) { PVOP_CALL1(unsigned long, make_pte, val) };
867
}
868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899

static inline pgd_t __pgd(unsigned long val)
{
	return (pgd_t) { PVOP_CALL1(unsigned long, make_pgd, val) };
}

static inline unsigned long pte_val(pte_t x)
{
	return PVOP_CALL1(unsigned long, pte_val, x.pte_low);
}

static inline unsigned long pgd_val(pgd_t x)
{
	return PVOP_CALL1(unsigned long, pgd_val, x.pgd);
}

static inline void set_pte(pte_t *ptep, pte_t pteval)
{
	PVOP_VCALL2(set_pte, ptep, pteval.pte_low);
}

static inline void set_pte_at(struct mm_struct *mm, unsigned long addr,
			      pte_t *ptep, pte_t pteval)
{
	PVOP_VCALL4(set_pte_at, mm, addr, ptep, pteval.pte_low);
}

static inline void set_pmd(pmd_t *pmdp, pmd_t pmdval)
{
	PVOP_VCALL2(set_pmd, pmdp, pmdval.pud.pgd.pgd);
}
#endif	/* CONFIG_X86_PAE */
900

901
#define  __HAVE_ARCH_ENTER_LAZY_CPU_MODE
902 903 904 905 906 907 908 909 910 911 912 913 914 915 916
static inline void arch_enter_lazy_cpu_mode(void)
{
	PVOP_VCALL1(set_lazy_mode, PARAVIRT_LAZY_CPU);
}

static inline void arch_leave_lazy_cpu_mode(void)
{
	PVOP_VCALL1(set_lazy_mode, PARAVIRT_LAZY_NONE);
}

static inline void arch_flush_lazy_cpu_mode(void)
{
	PVOP_VCALL1(set_lazy_mode, PARAVIRT_LAZY_FLUSH);
}

917 918

#define  __HAVE_ARCH_ENTER_LAZY_MMU_MODE
919 920 921 922 923 924 925 926 927 928 929 930 931 932
static inline void arch_enter_lazy_mmu_mode(void)
{
	PVOP_VCALL1(set_lazy_mode, PARAVIRT_LAZY_MMU);
}

static inline void arch_leave_lazy_mmu_mode(void)
{
	PVOP_VCALL1(set_lazy_mode, PARAVIRT_LAZY_NONE);
}

static inline void arch_flush_lazy_mmu_mode(void)
{
	PVOP_VCALL1(set_lazy_mode, PARAVIRT_LAZY_FLUSH);
}
933

934 935 936
void _paravirt_nop(void);
#define paravirt_nop	((void *)_paravirt_nop)

937
/* These all sit in the .parainstructions section to tell us what to patch. */
938
struct paravirt_patch_site {
939 940 941 942 943 944
	u8 *instr; 		/* original instructions */
	u8 instrtype;		/* type of this instruction */
	u8 len;			/* length of original instruction */
	u16 clobbers;		/* what registers you may clobber */
};

945 946 947
extern struct paravirt_patch_site __parainstructions[],
	__parainstructions_end[];

948 949 950 951
static inline unsigned long __raw_local_save_flags(void)
{
	unsigned long f;

952 953 954 955 956
	asm volatile(paravirt_alt("pushl %%ecx; pushl %%edx;"
				  PARAVIRT_CALL
				  "popl %%edx; popl %%ecx")
		     : "=a"(f)
		     : paravirt_type(save_fl),
957
		       paravirt_clobber(CLBR_EAX)
958
		     : "memory", "cc");
959 960 961 962 963
	return f;
}

static inline void raw_local_irq_restore(unsigned long f)
{
964 965 966 967 968 969 970 971
	asm volatile(paravirt_alt("pushl %%ecx; pushl %%edx;"
				  PARAVIRT_CALL
				  "popl %%edx; popl %%ecx")
		     : "=a"(f)
		     : "0"(f),
		       paravirt_type(restore_fl),
		       paravirt_clobber(CLBR_EAX)
		     : "memory", "cc");
972 973 974 975
}

static inline void raw_local_irq_disable(void)
{
976 977 978 979 980 981 982
	asm volatile(paravirt_alt("pushl %%ecx; pushl %%edx;"
				  PARAVIRT_CALL
				  "popl %%edx; popl %%ecx")
		     :
		     : paravirt_type(irq_disable),
		       paravirt_clobber(CLBR_EAX)
		     : "memory", "eax", "cc");
983 984 985 986
}

static inline void raw_local_irq_enable(void)
{
987 988 989 990 991 992 993
	asm volatile(paravirt_alt("pushl %%ecx; pushl %%edx;"
				  PARAVIRT_CALL
				  "popl %%edx; popl %%ecx")
		     :
		     : paravirt_type(irq_enable),
		       paravirt_clobber(CLBR_EAX)
		     : "memory", "eax", "cc");
994 995 996 997 998 999
}

static inline unsigned long __raw_local_irq_save(void)
{
	unsigned long f;

1000 1001
	f = __raw_local_save_flags();
	raw_local_irq_disable();
1002 1003 1004
	return f;
}

1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015
#define CLI_STRING							\
	_paravirt_alt("pushl %%ecx; pushl %%edx;"			\
		      "call *paravirt_ops+%c[paravirt_cli_type]*4;"	\
		      "popl %%edx; popl %%ecx",				\
		      "%c[paravirt_cli_type]", "%c[paravirt_clobber]")

#define STI_STRING							\
	_paravirt_alt("pushl %%ecx; pushl %%edx;"			\
		      "call *paravirt_ops+%c[paravirt_sti_type]*4;"	\
		      "popl %%edx; popl %%ecx",				\
		      "%c[paravirt_sti_type]", "%c[paravirt_clobber]")
1016 1017

#define CLI_STI_CLOBBERS , "%eax"
1018
#define CLI_STI_INPUT_ARGS						\
1019
	,								\
1020 1021 1022 1023
	[paravirt_cli_type] "i" (PARAVIRT_PATCH(irq_disable)),		\
	[paravirt_sti_type] "i" (PARAVIRT_PATCH(irq_enable)),		\
	paravirt_clobber(CLBR_EAX)

1024
/* Make sure as little as possible of this mess escapes. */
1025
#undef PARAVIRT_CALL
1026 1027
#undef __PVOP_CALL
#undef __PVOP_VCALL
1028 1029 1030 1031 1032 1033 1034 1035 1036 1037
#undef PVOP_VCALL0
#undef PVOP_CALL0
#undef PVOP_VCALL1
#undef PVOP_CALL1
#undef PVOP_VCALL2
#undef PVOP_CALL2
#undef PVOP_VCALL3
#undef PVOP_CALL3
#undef PVOP_VCALL4
#undef PVOP_CALL4
1038

1039 1040
#else  /* __ASSEMBLY__ */

1041 1042 1043
#define PARA_PATCH(off)	((off) / 4)

#define PARA_SITE(ptype, clobbers, ops)		\
1044 1045 1046 1047 1048 1049 1050 1051 1052 1053
771:;						\
	ops;					\
772:;						\
	.pushsection .parainstructions,"a";	\
	 .long 771b;				\
	 .byte ptype;				\
	 .byte 772b-771b;			\
	 .short clobbers;			\
	.popsection

1054
#define INTERRUPT_RETURN					\
1055
	PARA_SITE(PARA_PATCH(PARAVIRT_iret), CLBR_NONE,		\
1056 1057 1058 1059
		  jmp *%cs:paravirt_ops+PARAVIRT_iret)

#define DISABLE_INTERRUPTS(clobbers)					\
	PARA_SITE(PARA_PATCH(PARAVIRT_irq_disable), clobbers,		\
1060
		  pushl %eax; pushl %ecx; pushl %edx;			\
1061
		  call *%cs:paravirt_ops+PARAVIRT_irq_disable;		\
1062
		  popl %edx; popl %ecx; popl %eax)			\
1063 1064 1065

#define ENABLE_INTERRUPTS(clobbers)					\
	PARA_SITE(PARA_PATCH(PARAVIRT_irq_enable), clobbers,		\
1066
		  pushl %eax; pushl %ecx; pushl %edx;			\
1067
		  call *%cs:paravirt_ops+PARAVIRT_irq_enable;		\
1068
		  popl %edx; popl %ecx; popl %eax)
1069 1070

#define ENABLE_INTERRUPTS_SYSEXIT					\
1071
	PARA_SITE(PARA_PATCH(PARAVIRT_irq_enable_sysexit), CLBR_NONE,	\
1072
		  jmp *%cs:paravirt_ops+PARAVIRT_irq_enable_sysexit)
1073 1074

#define GET_CR0_INTO_EAX			\
1075 1076 1077
	push %ecx; push %edx;			\
	call *paravirt_ops+PARAVIRT_read_cr0;	\
	pop %edx; pop %ecx
1078

1079 1080 1081
#endif /* __ASSEMBLY__ */
#endif /* CONFIG_PARAVIRT */
#endif	/* __ASM_PARAVIRT_H */