entry_64.S 41.9 KB
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/*
 *  linux/arch/x86_64/entry.S
 *
 *  Copyright (C) 1991, 1992  Linus Torvalds
 *  Copyright (C) 2000, 2001, 2002  Andi Kleen SuSE Labs
 *  Copyright (C) 2000  Pavel Machek <pavel@suse.cz>
 */

/*
 * entry.S contains the system-call and fault low-level handling routines.
 *
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 * Some of this is documented in Documentation/x86/entry_64.txt
 *
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 * NOTE: This code handles signal-recognition, which happens every time
 * after an interrupt and after each system call.
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 *
 * Normal syscalls and interrupts don't save a full stack frame, this is
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 * only done for syscall tracing, signals or fork/exec et.al.
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 *
 * A note on terminology:
 * - top of stack: Architecture defined interrupt frame from SS to RIP
 * at the top of the kernel process stack.
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 * - partial stack frame: partially saved registers up to R11.
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 * - full stack frame: Like partial stack frame, but all register saved.
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 *
 * Some macro usage:
 * - CFI macros are used to generate dwarf2 unwind information for better
 * backtraces. They don't change any code.
 * - SAVE_ALL/RESTORE_ALL - Save/restore all registers
 * - SAVE_ARGS/RESTORE_ARGS - Save/restore registers that C functions modify.
 * There are unfortunately lots of special cases where some registers
 * not touched. The macro is a big mess that should be cleaned up.
 * - SAVE_REST/RESTORE_REST - Handle the registers not saved by SAVE_ARGS.
 * Gives a full stack frame.
 * - ENTRY/END Define functions in the symbol table.
 * - FIXUP_TOP_OF_STACK/RESTORE_TOP_OF_STACK - Fix up the hardware stack
 * frame that is otherwise undefined after a SYSCALL
 * - TRACE_IRQ_* - Trace hard interrupt state for lock debugging.
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 * - idtentry - Define exception entry points.
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 */

#include <linux/linkage.h>
#include <asm/segment.h>
#include <asm/cache.h>
#include <asm/errno.h>
#include <asm/dwarf2.h>
#include <asm/calling.h>
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#include <asm/asm-offsets.h>
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#include <asm/msr.h>
#include <asm/unistd.h>
#include <asm/thread_info.h>
#include <asm/hw_irq.h>
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#include <asm/page_types.h>
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#include <asm/irqflags.h>
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#include <asm/paravirt.h>
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#include <asm/percpu.h>
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#include <asm/asm.h>
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#include <asm/context_tracking.h>
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#include <asm/smap.h>
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#include <asm/pgtable_types.h>
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#include <linux/err.h>
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/* Avoid __ASSEMBLER__'ifying <linux/audit.h> just for this.  */
#include <linux/elf-em.h>
#define AUDIT_ARCH_X86_64	(EM_X86_64|__AUDIT_ARCH_64BIT|__AUDIT_ARCH_LE)
#define __AUDIT_ARCH_64BIT 0x80000000
#define __AUDIT_ARCH_LE	   0x40000000

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	.code64
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	.section .entry.text, "ax"

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#ifndef CONFIG_PREEMPT
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#define retint_kernel retint_restore_args
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#endif
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#ifdef CONFIG_PARAVIRT
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ENTRY(native_usergs_sysret64)
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	swapgs
	sysretq
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ENDPROC(native_usergs_sysret64)
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#endif /* CONFIG_PARAVIRT */

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.macro TRACE_IRQS_IRETQ offset=ARGOFFSET
#ifdef CONFIG_TRACE_IRQFLAGS
	bt   $9,EFLAGS-\offset(%rsp)	/* interrupts off? */
	jnc  1f
	TRACE_IRQS_ON
1:
#endif
.endm

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/*
 * When dynamic function tracer is enabled it will add a breakpoint
 * to all locations that it is about to modify, sync CPUs, update
 * all the code, sync CPUs, then remove the breakpoints. In this time
 * if lockdep is enabled, it might jump back into the debug handler
 * outside the updating of the IST protection. (TRACE_IRQS_ON/OFF).
 *
 * We need to change the IDT table before calling TRACE_IRQS_ON/OFF to
 * make sure the stack pointer does not get reset back to the top
 * of the debug stack, and instead just reuses the current stack.
 */
#if defined(CONFIG_DYNAMIC_FTRACE) && defined(CONFIG_TRACE_IRQFLAGS)

.macro TRACE_IRQS_OFF_DEBUG
	call debug_stack_set_zero
	TRACE_IRQS_OFF
	call debug_stack_reset
.endm

.macro TRACE_IRQS_ON_DEBUG
	call debug_stack_set_zero
	TRACE_IRQS_ON
	call debug_stack_reset
.endm

.macro TRACE_IRQS_IRETQ_DEBUG offset=ARGOFFSET
	bt   $9,EFLAGS-\offset(%rsp)	/* interrupts off? */
	jnc  1f
	TRACE_IRQS_ON_DEBUG
1:
.endm

#else
# define TRACE_IRQS_OFF_DEBUG		TRACE_IRQS_OFF
# define TRACE_IRQS_ON_DEBUG		TRACE_IRQS_ON
# define TRACE_IRQS_IRETQ_DEBUG		TRACE_IRQS_IRETQ
#endif

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/*
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 * C code is not supposed to know about undefined top of stack. Every time
 * a C function with an pt_regs argument is called from the SYSCALL based
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 * fast path FIXUP_TOP_OF_STACK is needed.
 * RESTORE_TOP_OF_STACK syncs the syscall state after any possible ptregs
 * manipulation.
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 */

	/* %rsp:at FRAMEEND */
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	.macro FIXUP_TOP_OF_STACK tmp offset=0
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	movq PER_CPU_VAR(old_rsp),\tmp
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	movq \tmp,RSP+\offset(%rsp)
	movq $__USER_DS,SS+\offset(%rsp)
	movq $__USER_CS,CS+\offset(%rsp)
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	movq RIP+\offset(%rsp),\tmp  /* get rip */
	movq \tmp,RCX+\offset(%rsp)  /* copy it to rcx as sysret would do */
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	movq R11+\offset(%rsp),\tmp  /* get eflags */
	movq \tmp,EFLAGS+\offset(%rsp)
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	.endm

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	.macro RESTORE_TOP_OF_STACK tmp offset=0
	movq RSP+\offset(%rsp),\tmp
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	movq \tmp,PER_CPU_VAR(old_rsp)
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	movq EFLAGS+\offset(%rsp),\tmp
	movq \tmp,R11+\offset(%rsp)
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	.endm

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/*
 * initial frame state for interrupts (and exceptions without error code)
 */
	.macro EMPTY_FRAME start=1 offset=0
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	.if \start
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	CFI_STARTPROC simple
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	CFI_SIGNAL_FRAME
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	CFI_DEF_CFA rsp,8+\offset
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	.else
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	CFI_DEF_CFA_OFFSET 8+\offset
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	.endif
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	.endm
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/*
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 * initial frame state for interrupts (and exceptions without error code)
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 */
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	.macro INTR_FRAME start=1 offset=0
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	EMPTY_FRAME \start, SS+8+\offset-RIP
	/*CFI_REL_OFFSET ss, SS+\offset-RIP*/
	CFI_REL_OFFSET rsp, RSP+\offset-RIP
	/*CFI_REL_OFFSET rflags, EFLAGS+\offset-RIP*/
	/*CFI_REL_OFFSET cs, CS+\offset-RIP*/
	CFI_REL_OFFSET rip, RIP+\offset-RIP
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	.endm

/*
 * initial frame state for exceptions with error code (and interrupts
 * with vector already pushed)
 */
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	.macro XCPT_FRAME start=1 offset=0
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	INTR_FRAME \start, RIP+\offset-ORIG_RAX
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	.endm

/*
 * frame that enables calling into C.
 */
	.macro PARTIAL_FRAME start=1 offset=0
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	XCPT_FRAME \start, ORIG_RAX+\offset-ARGOFFSET
	CFI_REL_OFFSET rdi, RDI+\offset-ARGOFFSET
	CFI_REL_OFFSET rsi, RSI+\offset-ARGOFFSET
	CFI_REL_OFFSET rdx, RDX+\offset-ARGOFFSET
	CFI_REL_OFFSET rcx, RCX+\offset-ARGOFFSET
	CFI_REL_OFFSET rax, RAX+\offset-ARGOFFSET
	CFI_REL_OFFSET r8, R8+\offset-ARGOFFSET
	CFI_REL_OFFSET r9, R9+\offset-ARGOFFSET
	CFI_REL_OFFSET r10, R10+\offset-ARGOFFSET
	CFI_REL_OFFSET r11, R11+\offset-ARGOFFSET
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	.endm

/*
 * frame that enables passing a complete pt_regs to a C function.
 */
	.macro DEFAULT_FRAME start=1 offset=0
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	PARTIAL_FRAME \start, R11+\offset-R15
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	CFI_REL_OFFSET rbx, RBX+\offset
	CFI_REL_OFFSET rbp, RBP+\offset
	CFI_REL_OFFSET r12, R12+\offset
	CFI_REL_OFFSET r13, R13+\offset
	CFI_REL_OFFSET r14, R14+\offset
	CFI_REL_OFFSET r15, R15+\offset
	.endm
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ENTRY(save_paranoid)
	XCPT_FRAME 1 RDI+8
	cld
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	movq %rdi, RDI+8(%rsp)
	movq %rsi, RSI+8(%rsp)
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	movq_cfi rdx, RDX+8
	movq_cfi rcx, RCX+8
	movq_cfi rax, RAX+8
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	movq %r8, R8+8(%rsp)
	movq %r9, R9+8(%rsp)
	movq %r10, R10+8(%rsp)
	movq %r11, R11+8(%rsp)
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	movq_cfi rbx, RBX+8
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	movq %rbp, RBP+8(%rsp)
	movq %r12, R12+8(%rsp)
	movq %r13, R13+8(%rsp)
	movq %r14, R14+8(%rsp)
	movq %r15, R15+8(%rsp)
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	movl $1,%ebx
	movl $MSR_GS_BASE,%ecx
	rdmsr
	testl %edx,%edx
	js 1f	/* negative -> in kernel */
	SWAPGS
	xorl %ebx,%ebx
1:	ret
	CFI_ENDPROC
END(save_paranoid)

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/*
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 * A newly forked process directly context switches into this address.
 *
 * rdi: prev task we switched from
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 */
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ENTRY(ret_from_fork)
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	DEFAULT_FRAME
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	LOCK ; btr $TIF_FORK,TI_flags(%r8)

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	pushq_cfi $0x0002
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	popfq_cfi				# reset kernel eflags
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	call schedule_tail			# rdi: 'prev' task parameter

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	GET_THREAD_INFO(%rcx)
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	RESTORE_REST
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	testl $3, CS-ARGOFFSET(%rsp)		# from kernel_thread?
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	jz   1f
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	testl $_TIF_IA32, TI_flags(%rcx)	# 32-bit compat task needs IRET
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	jnz  int_ret_from_sys_call
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	RESTORE_TOP_OF_STACK %rdi, -ARGOFFSET
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	jmp ret_from_sys_call			# go to the SYSRET fastpath

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1:
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	subq $REST_SKIP, %rsp	# leave space for volatiles
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	CFI_ADJUST_CFA_OFFSET	REST_SKIP
	movq %rbp, %rdi
	call *%rbx
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	movl $0, RAX(%rsp)
	RESTORE_REST
	jmp int_ret_from_sys_call
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	CFI_ENDPROC
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END(ret_from_fork)
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/*
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 * System call entry. Up to 6 arguments in registers are supported.
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 *
 * SYSCALL does not save anything on the stack and does not change the
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 * stack pointer.  However, it does mask the flags register for us, so
 * CLD and CLAC are not needed.
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 */
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/*
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 * Register setup:
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 * rax  system call number
 * rdi  arg0
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 * rcx  return address for syscall/sysret, C arg3
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 * rsi  arg1
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 * rdx  arg2
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 * r10  arg3 	(--> moved to rcx for C)
 * r8   arg4
 * r9   arg5
 * r11  eflags for syscall/sysret, temporary for C
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 * r12-r15,rbp,rbx saved by C code, not touched.
 *
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 * Interrupts are off on entry.
 * Only called from user space.
 *
 * XXX	if we had a free scratch register we could save the RSP into the stack frame
 *      and report it properly in ps. Unfortunately we haven't.
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 *
 * When user can change the frames always force IRET. That is because
 * it deals with uncanonical addresses better. SYSRET has trouble
 * with them due to bugs in both AMD and Intel CPUs.
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 */
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ENTRY(system_call)
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	CFI_STARTPROC	simple
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	CFI_SIGNAL_FRAME
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	CFI_DEF_CFA	rsp,KERNEL_STACK_OFFSET
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	CFI_REGISTER	rip,rcx
	/*CFI_REGISTER	rflags,r11*/
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	SWAPGS_UNSAFE_STACK
	/*
	 * A hypervisor implementation might want to use a label
	 * after the swapgs, so that it can do the swapgs
	 * for the guest and jump here on syscall.
	 */
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GLOBAL(system_call_after_swapgs)
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	movq	%rsp,PER_CPU_VAR(old_rsp)
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	movq	PER_CPU_VAR(kernel_stack),%rsp
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	/*
	 * No need to follow this irqs off/on section - it's straight
	 * and short:
	 */
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	ENABLE_INTERRUPTS(CLBR_NONE)
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	SAVE_ARGS 8, 0, rax_enosys=1
	movq_cfi rax,(ORIG_RAX-ARGOFFSET)
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	movq  %rcx,RIP-ARGOFFSET(%rsp)
	CFI_REL_OFFSET rip,RIP-ARGOFFSET
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	testl $_TIF_WORK_SYSCALL_ENTRY,TI_flags+THREAD_INFO(%rsp,RIP-ARGOFFSET)
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	jnz tracesys
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system_call_fastpath:
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#if __SYSCALL_MASK == ~0
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	cmpq $__NR_syscall_max,%rax
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#else
	andl $__SYSCALL_MASK,%eax
	cmpl $__NR_syscall_max,%eax
#endif
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	ja ret_from_sys_call  /* and return regs->ax */
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	movq %r10,%rcx
	call *sys_call_table(,%rax,8)  # XXX:	 rip relative
	movq %rax,RAX-ARGOFFSET(%rsp)
/*
 * Syscall return path ending with SYSRET (fast path)
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 * Has incomplete stack frame and undefined top of stack.
 */
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ret_from_sys_call:
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	movl $_TIF_ALLWORK_MASK,%edi
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	/* edi:	flagmask */
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sysret_check:
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	LOCKDEP_SYS_EXIT
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	DISABLE_INTERRUPTS(CLBR_NONE)
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	TRACE_IRQS_OFF
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	movl TI_flags+THREAD_INFO(%rsp,RIP-ARGOFFSET),%edx
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	andl %edi,%edx
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	jnz  sysret_careful
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	CFI_REMEMBER_STATE
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	/*
	 * sysretq will re-enable interrupts:
	 */
	TRACE_IRQS_ON
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	movq RIP-ARGOFFSET(%rsp),%rcx
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	CFI_REGISTER	rip,rcx
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	RESTORE_ARGS 1,-ARG_SKIP,0
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	/*CFI_REGISTER	rflags,r11*/
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	movq	PER_CPU_VAR(old_rsp), %rsp
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	USERGS_SYSRET64
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	CFI_RESTORE_STATE
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	/* Handle reschedules */
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	/* edx:	work, edi: workmask */
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sysret_careful:
	bt $TIF_NEED_RESCHED,%edx
	jnc sysret_signal
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	TRACE_IRQS_ON
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	ENABLE_INTERRUPTS(CLBR_NONE)
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	pushq_cfi %rdi
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	SCHEDULE_USER
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	popq_cfi %rdi
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	jmp sysret_check

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	/* Handle a signal */
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sysret_signal:
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	TRACE_IRQS_ON
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	ENABLE_INTERRUPTS(CLBR_NONE)
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#ifdef CONFIG_AUDITSYSCALL
	bt $TIF_SYSCALL_AUDIT,%edx
	jc sysret_audit
#endif
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	/*
	 * We have a signal, or exit tracing or single-step.
	 * These all wind up with the iret return path anyway,
	 * so just join that path right now.
	 */
	FIXUP_TOP_OF_STACK %r11, -ARGOFFSET
	jmp int_check_syscall_exit_work
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#ifdef CONFIG_AUDITSYSCALL
	/*
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	 * Return fast path for syscall audit.  Call __audit_syscall_exit()
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	 * directly and then jump back to the fast path with TIF_SYSCALL_AUDIT
	 * masked off.
	 */
sysret_audit:
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	movq RAX-ARGOFFSET(%rsp),%rsi	/* second arg, syscall return value */
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	cmpq $-MAX_ERRNO,%rsi	/* is it < -MAX_ERRNO? */
	setbe %al		/* 1 if so, 0 if not */
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	movzbl %al,%edi		/* zero-extend that into %edi */
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	call __audit_syscall_exit
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	movl $(_TIF_ALLWORK_MASK & ~_TIF_SYSCALL_AUDIT),%edi
	jmp sysret_check
#endif	/* CONFIG_AUDITSYSCALL */

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	/* Do syscall tracing */
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tracesys:
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	leaq -REST_SKIP(%rsp), %rdi
	movq $AUDIT_ARCH_X86_64, %rsi
	call syscall_trace_enter_phase1
	test %rax, %rax
	jnz tracesys_phase2		/* if needed, run the slow path */
	LOAD_ARGS 0			/* else restore clobbered regs */
	jmp system_call_fastpath	/*      and return to the fast path */

tracesys_phase2:
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	SAVE_REST
	FIXUP_TOP_OF_STACK %rdi
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	movq %rsp, %rdi
	movq $AUDIT_ARCH_X86_64, %rsi
	movq %rax,%rdx
	call syscall_trace_enter_phase2

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	/*
	 * Reload arg registers from stack in case ptrace changed them.
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	 * We don't reload %rax because syscall_trace_entry_phase2() returned
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	 * the value it wants us to use in the table lookup.
	 */
	LOAD_ARGS ARGOFFSET, 1
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	RESTORE_REST
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#if __SYSCALL_MASK == ~0
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	cmpq $__NR_syscall_max,%rax
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#else
	andl $__SYSCALL_MASK,%eax
	cmpl $__NR_syscall_max,%eax
#endif
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	ja   int_ret_from_sys_call	/* RAX(%rsp) is already set */
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	movq %r10,%rcx	/* fixup for C */
	call *sys_call_table(,%rax,8)
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	movq %rax,RAX-ARGOFFSET(%rsp)
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	/* Use IRET because user could have changed frame */
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/*
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 * Syscall return path ending with IRET.
 * Has correct top of stack, but partial stack frame.
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 */
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GLOBAL(int_ret_from_sys_call)
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	DISABLE_INTERRUPTS(CLBR_NONE)
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	TRACE_IRQS_OFF
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	movl $_TIF_ALLWORK_MASK,%edi
	/* edi:	mask to check */
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GLOBAL(int_with_check)
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	LOCKDEP_SYS_EXIT_IRQ
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	GET_THREAD_INFO(%rcx)
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	movl TI_flags(%rcx),%edx
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	andl %edi,%edx
	jnz   int_careful
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	andl    $~TS_COMPAT,TI_status(%rcx)
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	jmp   retint_swapgs

	/* Either reschedule or signal or syscall exit tracking needed. */
	/* First do a reschedule test. */
	/* edx:	work, edi: workmask */
int_careful:
	bt $TIF_NEED_RESCHED,%edx
	jnc  int_very_careful
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	TRACE_IRQS_ON
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	ENABLE_INTERRUPTS(CLBR_NONE)
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	pushq_cfi %rdi
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	SCHEDULE_USER
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	popq_cfi %rdi
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	DISABLE_INTERRUPTS(CLBR_NONE)
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	TRACE_IRQS_OFF
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	jmp int_with_check

	/* handle signals and tracing -- both require a full stack frame */
int_very_careful:
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	TRACE_IRQS_ON
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	ENABLE_INTERRUPTS(CLBR_NONE)
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int_check_syscall_exit_work:
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	SAVE_REST
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	/* Check for syscall exit trace */
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	testl $_TIF_WORK_SYSCALL_EXIT,%edx
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	jz int_signal
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	pushq_cfi %rdi
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	leaq 8(%rsp),%rdi	# &ptregs -> arg1
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	call syscall_trace_leave
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	popq_cfi %rdi
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	andl $~(_TIF_WORK_SYSCALL_EXIT|_TIF_SYSCALL_EMU),%edi
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	jmp int_restore_rest
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int_signal:
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	testl $_TIF_DO_NOTIFY_MASK,%edx
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	jz 1f
	movq %rsp,%rdi		# &ptregs -> arg1
	xorl %esi,%esi		# oldset -> arg2
	call do_notify_resume
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1:	movl $_TIF_WORK_MASK,%edi
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int_restore_rest:
	RESTORE_REST
525
	DISABLE_INTERRUPTS(CLBR_NONE)
526
	TRACE_IRQS_OFF
L
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	jmp int_with_check
	CFI_ENDPROC
529
END(system_call)
530

531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546
	.macro FORK_LIKE func
ENTRY(stub_\func)
	CFI_STARTPROC
	popq	%r11			/* save return address */
	PARTIAL_FRAME 0
	SAVE_REST
	pushq	%r11			/* put it back on stack */
	FIXUP_TOP_OF_STACK %r11, 8
	DEFAULT_FRAME 0 8		/* offset 8: return address */
	call sys_\func
	RESTORE_TOP_OF_STACK %r11, 8
	ret $REST_SKIP		/* pop extended registers */
	CFI_ENDPROC
END(stub_\func)
	.endm

547 548 549 550 551 552 553 554 555 556 557 558
	.macro FIXED_FRAME label,func
ENTRY(\label)
	CFI_STARTPROC
	PARTIAL_FRAME 0 8		/* offset 8: return address */
	FIXUP_TOP_OF_STACK %r11, 8-ARGOFFSET
	call \func
	RESTORE_TOP_OF_STACK %r11, 8-ARGOFFSET
	ret
	CFI_ENDPROC
END(\label)
	.endm

559 560 561
	FORK_LIKE  clone
	FORK_LIKE  fork
	FORK_LIKE  vfork
562
	FIXED_FRAME stub_iopl, sys_iopl
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ENTRY(stub_execve)
	CFI_STARTPROC
566 567
	addq $8, %rsp
	PARTIAL_FRAME 0
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	SAVE_REST
	FIXUP_TOP_OF_STACK %r11
	call sys_execve
	movq %rax,RAX(%rsp)
	RESTORE_REST
	jmp int_ret_from_sys_call
	CFI_ENDPROC
575
END(stub_execve)
576

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577 578 579 580 581 582 583 584 585 586 587 588 589 590
ENTRY(stub_execveat)
	CFI_STARTPROC
	addq $8, %rsp
	PARTIAL_FRAME 0
	SAVE_REST
	FIXUP_TOP_OF_STACK %r11
	call sys_execveat
	RESTORE_TOP_OF_STACK %r11
	movq %rax,RAX(%rsp)
	RESTORE_REST
	jmp int_ret_from_sys_call
	CFI_ENDPROC
END(stub_execveat)

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/*
 * sigreturn is special because it needs to restore all registers on return.
 * This cannot be done with SYSRET, so use the IRET return path instead.
594
 */
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ENTRY(stub_rt_sigreturn)
	CFI_STARTPROC
597
	addq $8, %rsp
598
	PARTIAL_FRAME 0
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	SAVE_REST
	FIXUP_TOP_OF_STACK %r11
	call sys_rt_sigreturn
	movq %rax,RAX(%rsp) # fixme, this could be done at the higher layer
	RESTORE_REST
	jmp int_ret_from_sys_call
	CFI_ENDPROC
606
END(stub_rt_sigreturn)
L
Linus Torvalds 已提交
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608 609 610 611 612 613 614 615 616 617 618 619 620 621
#ifdef CONFIG_X86_X32_ABI
ENTRY(stub_x32_rt_sigreturn)
	CFI_STARTPROC
	addq $8, %rsp
	PARTIAL_FRAME 0
	SAVE_REST
	FIXUP_TOP_OF_STACK %r11
	call sys32_x32_rt_sigreturn
	movq %rax,RAX(%rsp) # fixme, this could be done at the higher layer
	RESTORE_REST
	jmp int_ret_from_sys_call
	CFI_ENDPROC
END(stub_x32_rt_sigreturn)

H
H. Peter Anvin 已提交
622 623 624 625 626 627
ENTRY(stub_x32_execve)
	CFI_STARTPROC
	addq $8, %rsp
	PARTIAL_FRAME 0
	SAVE_REST
	FIXUP_TOP_OF_STACK %r11
628
	call compat_sys_execve
H
H. Peter Anvin 已提交
629 630 631 632 633 634 635
	RESTORE_TOP_OF_STACK %r11
	movq %rax,RAX(%rsp)
	RESTORE_REST
	jmp int_ret_from_sys_call
	CFI_ENDPROC
END(stub_x32_execve)

D
David Drysdale 已提交
636 637 638 639 640 641 642 643 644 645 646 647 648 649
ENTRY(stub_x32_execveat)
	CFI_STARTPROC
	addq $8, %rsp
	PARTIAL_FRAME 0
	SAVE_REST
	FIXUP_TOP_OF_STACK %r11
	call compat_sys_execveat
	RESTORE_TOP_OF_STACK %r11
	movq %rax,RAX(%rsp)
	RESTORE_REST
	jmp int_ret_from_sys_call
	CFI_ENDPROC
END(stub_x32_execveat)

650 651
#endif

652 653 654 655 656 657 658
/*
 * Build the entry stubs and pointer table with some assembler magic.
 * We pack 7 stubs into a single 32-byte chunk, which will fit in a
 * single cache line on all modern x86 implementations.
 */
	.section .init.rodata,"a"
ENTRY(interrupt)
J
Jiri Olsa 已提交
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	.section .entry.text
660 661 662 663 664
	.p2align 5
	.p2align CONFIG_X86_L1_CACHE_SHIFT
ENTRY(irq_entries_start)
	INTR_FRAME
vector=FIRST_EXTERNAL_VECTOR
665
.rept (FIRST_SYSTEM_VECTOR-FIRST_EXTERNAL_VECTOR+6)/7
666 667
	.balign 32
  .rept	7
668
    .if vector < FIRST_SYSTEM_VECTOR
669
      .if vector <> FIRST_EXTERNAL_VECTOR
670 671
	CFI_ADJUST_CFA_OFFSET -8
      .endif
672
1:	pushq_cfi $(~vector+0x80)	/* Note: always in signed byte range */
673
      .if ((vector-FIRST_EXTERNAL_VECTOR)%7) <> 6
674 675 676 677
	jmp 2f
      .endif
      .previous
	.quad 1b
J
Jiri Olsa 已提交
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      .section .entry.text
679 680 681 682 683 684 685 686 687 688 689 690
vector=vector+1
    .endif
  .endr
2:	jmp common_interrupt
.endr
	CFI_ENDPROC
END(irq_entries_start)

.previous
END(interrupt)
.previous

691
/*
L
Linus Torvalds 已提交
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 * Interrupt entry/exit.
 *
 * Interrupt entry points save only callee clobbered registers in fast path.
695 696 697
 *
 * Entry runs with interrupts off.
 */
L
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698

699
/* 0(%rsp): ~(interrupt number) */
L
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700
	.macro interrupt func
701 702 703
	/* reserve pt_regs for scratch regs and rbp */
	subq $ORIG_RAX-RBP, %rsp
	CFI_ADJUST_CFA_OFFSET ORIG_RAX-RBP
704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745
	cld
	/* start from rbp in pt_regs and jump over */
	movq_cfi rdi, (RDI-RBP)
	movq_cfi rsi, (RSI-RBP)
	movq_cfi rdx, (RDX-RBP)
	movq_cfi rcx, (RCX-RBP)
	movq_cfi rax, (RAX-RBP)
	movq_cfi  r8,  (R8-RBP)
	movq_cfi  r9,  (R9-RBP)
	movq_cfi r10, (R10-RBP)
	movq_cfi r11, (R11-RBP)

	/* Save rbp so that we can unwind from get_irq_regs() */
	movq_cfi rbp, 0

	/* Save previous stack value */
	movq %rsp, %rsi

	leaq -RBP(%rsp),%rdi	/* arg1 for handler */
	testl $3, CS-RBP(%rsi)
	je 1f
	SWAPGS
	/*
	 * irq_count is used to check if a CPU is already on an interrupt stack
	 * or not. While this is essentially redundant with preempt_count it is
	 * a little cheaper to use a separate counter in the PDA (short of
	 * moving irq_enter into assembly, which would be too much work)
	 */
1:	incl PER_CPU_VAR(irq_count)
	cmovzq PER_CPU_VAR(irq_stack_ptr),%rsp
	CFI_DEF_CFA_REGISTER	rsi

	/* Store previous stack value */
	pushq %rsi
	CFI_ESCAPE	0x0f /* DW_CFA_def_cfa_expression */, 6, \
			0x77 /* DW_OP_breg7 */, 0, \
			0x06 /* DW_OP_deref */, \
			0x08 /* DW_OP_const1u */, SS+8-RBP, \
			0x22 /* DW_OP_plus */
	/* We entered an interrupt context - irqs are off: */
	TRACE_IRQS_OFF

L
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746 747 748
	call \func
	.endm

749 750 751 752
	/*
	 * The interrupt stubs push (~vector+0x80) onto the stack and
	 * then jump to common_interrupt.
	 */
753 754
	.p2align CONFIG_X86_L1_CACHE_SHIFT
common_interrupt:
755
	XCPT_FRAME
756
	ASM_CLAC
757
	addq $-0x80,(%rsp)		/* Adjust vector to [-256,-1] range */
L
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758
	interrupt do_IRQ
759
	/* 0(%rsp): old_rsp-ARGOFFSET */
760
ret_from_intr:
761
	DISABLE_INTERRUPTS(CLBR_NONE)
762
	TRACE_IRQS_OFF
763
	decl PER_CPU_VAR(irq_count)
764

765 766
	/* Restore saved previous stack */
	popq %rsi
767
	CFI_DEF_CFA rsi,SS+8-RBP	/* reg/off reset after def_cfa_expr */
768
	leaq ARGOFFSET-RBP(%rsi), %rsp
769
	CFI_DEF_CFA_REGISTER	rsp
770
	CFI_ADJUST_CFA_OFFSET	RBP-ARGOFFSET
771

772
exit_intr:
L
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773 774 775
	GET_THREAD_INFO(%rcx)
	testl $3,CS-ARGOFFSET(%rsp)
	je retint_kernel
776

L
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	/* Interrupt came from user space */
	/*
	 * Has a correct top of stack, but a partial stack frame
	 * %rcx: thread info. Interrupts off.
781
	 */
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retint_with_reschedule:
	movl $_TIF_WORK_MASK,%edi
784
retint_check:
785
	LOCKDEP_SYS_EXIT_IRQ
G
Glauber Costa 已提交
786
	movl TI_flags(%rcx),%edx
L
Linus Torvalds 已提交
787
	andl %edi,%edx
788
	CFI_REMEMBER_STATE
L
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789
	jnz  retint_careful
790 791

retint_swapgs:		/* return to user-space */
792 793 794
	/*
	 * The iretq could re-enable interrupts:
	 */
795
	DISABLE_INTERRUPTS(CLBR_ANY)
796
	TRACE_IRQS_IRETQ
797
	SWAPGS
798 799
	jmp restore_args

800
retint_restore_args:	/* return to kernel space */
801
	DISABLE_INTERRUPTS(CLBR_ANY)
802 803 804 805 806
	/*
	 * The iretq could re-enable interrupts:
	 */
	TRACE_IRQS_IRETQ
restore_args:
807
	RESTORE_ARGS 1,8,1
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Ingo Molnar 已提交
808

A
Adrian Bunk 已提交
809
irq_return:
810 811 812
	INTERRUPT_RETURN

ENTRY(native_iret)
813 814 815 816
	/*
	 * Are we returning to a stack segment from the LDT?  Note: in
	 * 64-bit mode SS:RSP on the exception stack is always valid.
	 */
817
#ifdef CONFIG_X86_ESPFIX64
818
	testb $4,(SS-RIP)(%rsp)
819
	jnz native_irq_return_ldt
820
#endif
821

822
.global native_irq_return_iret
823
native_irq_return_iret:
A
Andy Lutomirski 已提交
824 825 826 827 828 829
	/*
	 * This may fault.  Non-paranoid faults on return to userspace are
	 * handled by fixup_bad_iret.  These include #SS, #GP, and #NP.
	 * Double-faults due to espfix64 are handled in do_double_fault.
	 * Other faults here are fatal.
	 */
L
Linus Torvalds 已提交
830
	iretq
I
Ingo Molnar 已提交
831

832
#ifdef CONFIG_X86_ESPFIX64
833
native_irq_return_ldt:
834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854
	pushq_cfi %rax
	pushq_cfi %rdi
	SWAPGS
	movq PER_CPU_VAR(espfix_waddr),%rdi
	movq %rax,(0*8)(%rdi)	/* RAX */
	movq (2*8)(%rsp),%rax	/* RIP */
	movq %rax,(1*8)(%rdi)
	movq (3*8)(%rsp),%rax	/* CS */
	movq %rax,(2*8)(%rdi)
	movq (4*8)(%rsp),%rax	/* RFLAGS */
	movq %rax,(3*8)(%rdi)
	movq (6*8)(%rsp),%rax	/* SS */
	movq %rax,(5*8)(%rdi)
	movq (5*8)(%rsp),%rax	/* RSP */
	movq %rax,(4*8)(%rdi)
	andl $0xffff0000,%eax
	popq_cfi %rdi
	orq PER_CPU_VAR(espfix_stack),%rax
	SWAPGS
	movq %rax,%rsp
	popq_cfi %rax
855
	jmp native_irq_return_iret
856
#endif
857

858
	/* edi: workmask, edx: work */
L
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859
retint_careful:
860
	CFI_RESTORE_STATE
L
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861 862
	bt    $TIF_NEED_RESCHED,%edx
	jnc   retint_signal
863
	TRACE_IRQS_ON
864
	ENABLE_INTERRUPTS(CLBR_NONE)
865
	pushq_cfi %rdi
866
	SCHEDULE_USER
867
	popq_cfi %rdi
L
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868
	GET_THREAD_INFO(%rcx)
869
	DISABLE_INTERRUPTS(CLBR_NONE)
870
	TRACE_IRQS_OFF
L
Linus Torvalds 已提交
871
	jmp retint_check
872

L
Linus Torvalds 已提交
873
retint_signal:
P
Peter Zijlstra 已提交
874
	testl $_TIF_DO_NOTIFY_MASK,%edx
875
	jz    retint_swapgs
876
	TRACE_IRQS_ON
877
	ENABLE_INTERRUPTS(CLBR_NONE)
L
Linus Torvalds 已提交
878
	SAVE_REST
879
	movq $-1,ORIG_RAX(%rsp)
880
	xorl %esi,%esi		# oldset
L
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881 882 883
	movq %rsp,%rdi		# &pt_regs
	call do_notify_resume
	RESTORE_REST
884
	DISABLE_INTERRUPTS(CLBR_NONE)
885
	TRACE_IRQS_OFF
886
	GET_THREAD_INFO(%rcx)
R
Roland McGrath 已提交
887
	jmp retint_with_reschedule
L
Linus Torvalds 已提交
888 889 890 891

#ifdef CONFIG_PREEMPT
	/* Returning to kernel space. Check if we need preemption */
	/* rcx:	 threadinfo. interrupts off. */
892
ENTRY(retint_kernel)
893
	cmpl $0,PER_CPU_VAR(__preempt_count)
L
Linus Torvalds 已提交
894 895 896 897 898
	jnz  retint_restore_args
	bt   $9,EFLAGS-ARGOFFSET(%rsp)	/* interrupts off? */
	jnc  retint_restore_args
	call preempt_schedule_irq
	jmp exit_intr
899
#endif
L
Linus Torvalds 已提交
900
	CFI_ENDPROC
901
END(common_interrupt)
902

L
Linus Torvalds 已提交
903 904
/*
 * APIC interrupts.
905
 */
906
.macro apicinterrupt3 num sym do_sym
907
ENTRY(\sym)
908
	INTR_FRAME
909
	ASM_CLAC
910
	pushq_cfi $~(\num)
911
.Lcommon_\sym:
912
	interrupt \do_sym
L
Linus Torvalds 已提交
913 914
	jmp ret_from_intr
	CFI_ENDPROC
915 916
END(\sym)
.endm
L
Linus Torvalds 已提交
917

918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934
#ifdef CONFIG_TRACING
#define trace(sym) trace_##sym
#define smp_trace(sym) smp_trace_##sym

.macro trace_apicinterrupt num sym
apicinterrupt3 \num trace(\sym) smp_trace(\sym)
.endm
#else
.macro trace_apicinterrupt num sym do_sym
.endm
#endif

.macro apicinterrupt num sym do_sym
apicinterrupt3 \num \sym \do_sym
trace_apicinterrupt \num \sym
.endm

935
#ifdef CONFIG_SMP
936
apicinterrupt3 IRQ_MOVE_CLEANUP_VECTOR \
937
	irq_move_cleanup_interrupt smp_irq_move_cleanup_interrupt
938
apicinterrupt3 REBOOT_VECTOR \
939
	reboot_interrupt smp_reboot_interrupt
940
#endif
L
Linus Torvalds 已提交
941

N
Nick Piggin 已提交
942
#ifdef CONFIG_X86_UV
943
apicinterrupt3 UV_BAU_MESSAGE \
944
	uv_bau_message_intr1 uv_bau_message_interrupt
N
Nick Piggin 已提交
945
#endif
946 947
apicinterrupt LOCAL_TIMER_VECTOR \
	apic_timer_interrupt smp_apic_timer_interrupt
948 949
apicinterrupt X86_PLATFORM_IPI_VECTOR \
	x86_platform_ipi smp_x86_platform_ipi
950

951
#ifdef CONFIG_HAVE_KVM
952
apicinterrupt3 POSTED_INTR_VECTOR \
953 954 955
	kvm_posted_intr_ipi smp_kvm_posted_intr_ipi
#endif

956
#ifdef CONFIG_X86_MCE_THRESHOLD
957
apicinterrupt THRESHOLD_APIC_VECTOR \
958
	threshold_interrupt smp_threshold_interrupt
959 960 961
#endif

#ifdef CONFIG_X86_THERMAL_VECTOR
962 963
apicinterrupt THERMAL_APIC_VECTOR \
	thermal_interrupt smp_thermal_interrupt
964
#endif
965

966 967 968 969 970 971 972 973
#ifdef CONFIG_SMP
apicinterrupt CALL_FUNCTION_SINGLE_VECTOR \
	call_function_single_interrupt smp_call_function_single_interrupt
apicinterrupt CALL_FUNCTION_VECTOR \
	call_function_interrupt smp_call_function_interrupt
apicinterrupt RESCHEDULE_VECTOR \
	reschedule_interrupt smp_reschedule_interrupt
#endif
L
Linus Torvalds 已提交
974

975 976 977 978
apicinterrupt ERROR_APIC_VECTOR \
	error_interrupt smp_error_interrupt
apicinterrupt SPURIOUS_APIC_VECTOR \
	spurious_interrupt smp_spurious_interrupt
979

980 981 982
#ifdef CONFIG_IRQ_WORK
apicinterrupt IRQ_WORK_VECTOR \
	irq_work_interrupt smp_irq_work_interrupt
I
Ingo Molnar 已提交
983 984
#endif

L
Linus Torvalds 已提交
985 986
/*
 * Exception entry points.
987
 */
988 989 990
#define INIT_TSS_IST(x) PER_CPU_VAR(init_tss) + (TSS_ist + ((x) - 1) * 8)

.macro idtentry sym do_sym has_error_code:req paranoid=0 shift_ist=-1
991
ENTRY(\sym)
992 993 994 995 996
	/* Sanity check */
	.if \shift_ist != -1 && \paranoid == 0
	.error "using shift_ist requires paranoid=1"
	.endif

997 998 999
	.if \has_error_code
	XCPT_FRAME
	.else
1000
	INTR_FRAME
1001
	.endif
L
Linus Torvalds 已提交
1002

1003
	ASM_CLAC
1004
	PARAVIRT_ADJUST_EXCEPTION_FRAME
1005 1006 1007 1008 1009

	.ifeq \has_error_code
	pushq_cfi $-1			/* ORIG_RAX: no syscall to restart */
	.endif

1010 1011
	subq $ORIG_RAX-R15, %rsp
	CFI_ADJUST_CFA_OFFSET ORIG_RAX-R15
1012 1013

	.if \paranoid
1014 1015 1016 1017 1018
	.if \paranoid == 1
	CFI_REMEMBER_STATE
	testl $3, CS(%rsp)		/* If coming from userspace, switch */
	jnz 1f				/* stacks. */
	.endif
1019
	call save_paranoid
1020 1021 1022 1023
	.else
	call error_entry
	.endif

1024
	DEFAULT_FRAME 0
1025 1026

	.if \paranoid
1027 1028 1029
	.if \shift_ist != -1
	TRACE_IRQS_OFF_DEBUG		/* reload IDT in case of recursion */
	.else
1030
	TRACE_IRQS_OFF
1031
	.endif
1032
	.endif
1033 1034 1035 1036 1037 1038 1039 1040 1041 1042

	movq %rsp,%rdi			/* pt_regs pointer */

	.if \has_error_code
	movq ORIG_RAX(%rsp),%rsi	/* get error code */
	movq $-1,ORIG_RAX(%rsp)		/* no syscall to restart */
	.else
	xorl %esi,%esi			/* no error code */
	.endif

1043 1044 1045 1046
	.if \shift_ist != -1
	subq $EXCEPTION_STKSZ, INIT_TSS_IST(\shift_ist)
	.endif

1047
	call \do_sym
1048

1049 1050 1051 1052
	.if \shift_ist != -1
	addq $EXCEPTION_STKSZ, INIT_TSS_IST(\shift_ist)
	.endif

1053 1054 1055 1056 1057 1058
	.if \paranoid
	jmp paranoid_exit		/* %ebx: no swapgs flag */
	.else
	jmp error_exit			/* %ebx: no swapgs flag */
	.endif

1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088
	.if \paranoid == 1
	CFI_RESTORE_STATE
	/*
	 * Paranoid entry from userspace.  Switch stacks and treat it
	 * as a normal entry.  This means that paranoid handlers
	 * run in real process context if user_mode(regs).
	 */
1:
	call error_entry

	DEFAULT_FRAME 0

	movq %rsp,%rdi			/* pt_regs pointer */
	call sync_regs
	movq %rax,%rsp			/* switch stack */

	movq %rsp,%rdi			/* pt_regs pointer */

	.if \has_error_code
	movq ORIG_RAX(%rsp),%rsi	/* get error code */
	movq $-1,ORIG_RAX(%rsp)		/* no syscall to restart */
	.else
	xorl %esi,%esi			/* no error code */
	.endif

	call \do_sym

	jmp error_exit			/* %ebx: no swapgs flag */
	.endif

1089
	CFI_ENDPROC
1090
END(\sym)
1091
.endm
1092

1093
#ifdef CONFIG_TRACING
1094 1095 1096
.macro trace_idtentry sym do_sym has_error_code:req
idtentry trace(\sym) trace(\do_sym) has_error_code=\has_error_code
idtentry \sym \do_sym has_error_code=\has_error_code
1097 1098
.endm
#else
1099 1100
.macro trace_idtentry sym do_sym has_error_code:req
idtentry \sym \do_sym has_error_code=\has_error_code
1101 1102 1103
.endm
#endif

1104 1105 1106 1107 1108
idtentry divide_error do_divide_error has_error_code=0
idtentry overflow do_overflow has_error_code=0
idtentry bounds do_bounds has_error_code=0
idtentry invalid_op do_invalid_op has_error_code=0
idtentry device_not_available do_device_not_available has_error_code=0
1109
idtentry double_fault do_double_fault has_error_code=1 paranoid=2
1110 1111 1112 1113 1114 1115 1116
idtentry coprocessor_segment_overrun do_coprocessor_segment_overrun has_error_code=0
idtentry invalid_TSS do_invalid_TSS has_error_code=1
idtentry segment_not_present do_segment_not_present has_error_code=1
idtentry spurious_interrupt_bug do_spurious_interrupt_bug has_error_code=0
idtentry coprocessor_error do_coprocessor_error has_error_code=0
idtentry alignment_check do_alignment_check has_error_code=1
idtentry simd_coprocessor_error do_simd_coprocessor_error has_error_code=0
1117

1118

1119 1120
	/* Reload gs selector with exception handling */
	/* edi:  new selector */
1121
ENTRY(native_load_gs_index)
1122
	CFI_STARTPROC
1123
	pushfq_cfi
1124
	DISABLE_INTERRUPTS(CLBR_ANY & ~CLBR_RDI)
1125
	SWAPGS
1126
gs_change:
1127
	movl %edi,%gs
L
Linus Torvalds 已提交
1128
2:	mfence		/* workaround */
1129
	SWAPGS
1130
	popfq_cfi
1131
	ret
1132
	CFI_ENDPROC
1133
END(native_load_gs_index)
1134

1135
	_ASM_EXTABLE(gs_change,bad_gs)
1136
	.section .fixup,"ax"
L
Linus Torvalds 已提交
1137
	/* running with kernelgs */
1138
bad_gs:
1139
	SWAPGS			/* switch back to user gs */
L
Linus Torvalds 已提交
1140
	xorl %eax,%eax
1141 1142 1143
	movl %eax,%gs
	jmp  2b
	.previous
1144

1145
/* Call softirq on interrupt stack. Interrupts are off. */
1146
ENTRY(do_softirq_own_stack)
1147
	CFI_STARTPROC
1148
	pushq_cfi %rbp
1149 1150 1151
	CFI_REL_OFFSET rbp,0
	mov  %rsp,%rbp
	CFI_DEF_CFA_REGISTER rbp
1152
	incl PER_CPU_VAR(irq_count)
1153
	cmove PER_CPU_VAR(irq_stack_ptr),%rsp
1154
	push  %rbp			# backlink for old unwinder
1155
	call __do_softirq
1156
	leaveq
1157
	CFI_RESTORE		rbp
1158
	CFI_DEF_CFA_REGISTER	rsp
1159
	CFI_ADJUST_CFA_OFFSET   -8
1160
	decl PER_CPU_VAR(irq_count)
1161
	ret
1162
	CFI_ENDPROC
1163
END(do_softirq_own_stack)
1164

1165
#ifdef CONFIG_XEN
1166
idtentry xen_hypervisor_callback xen_do_hypervisor_callback has_error_code=0
1167 1168

/*
1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180
 * A note on the "critical region" in our callback handler.
 * We want to avoid stacking callback handlers due to events occurring
 * during handling of the last event. To do this, we keep events disabled
 * until we've done all processing. HOWEVER, we must enable events before
 * popping the stack frame (can't be done atomically) and so it would still
 * be possible to get enough handler activations to overflow the stack.
 * Although unlikely, bugs of that kind are hard to track down, so we'd
 * like to avoid the possibility.
 * So, on entry to the handler we detect whether we interrupted an
 * existing activation in its critical region -- if so, we pop the current
 * activation and restart the handler using the previous one.
 */
1181 1182
ENTRY(xen_do_hypervisor_callback)   # do_hypervisor_callback(struct *pt_regs)
	CFI_STARTPROC
1183 1184 1185 1186
/*
 * Since we don't modify %rdi, evtchn_do_upall(struct *pt_regs) will
 * see the correct pointer to the pt_regs
 */
1187 1188
	movq %rdi, %rsp            # we don't return, adjust the stack frame
	CFI_ENDPROC
1189
	DEFAULT_FRAME
1190
11:	incl PER_CPU_VAR(irq_count)
1191 1192
	movq %rsp,%rbp
	CFI_DEF_CFA_REGISTER rbp
1193
	cmovzq PER_CPU_VAR(irq_stack_ptr),%rsp
1194 1195 1196 1197
	pushq %rbp			# backlink for old unwinder
	call xen_evtchn_do_upcall
	popq %rsp
	CFI_DEF_CFA_REGISTER rsp
1198
	decl PER_CPU_VAR(irq_count)
1199 1200
	jmp  error_exit
	CFI_ENDPROC
1201
END(xen_do_hypervisor_callback)
1202 1203

/*
1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215
 * Hypervisor uses this for application faults while it executes.
 * We get here for two reasons:
 *  1. Fault while reloading DS, ES, FS or GS
 *  2. Fault while executing IRET
 * Category 1 we do not need to fix up as Xen has already reloaded all segment
 * registers that could be reloaded and zeroed the others.
 * Category 2 we fix up by killing the current process. We cannot use the
 * normal Linux return path in this case because if we use the IRET hypercall
 * to pop the stack frame we end up in an infinite loop of failsafe callbacks.
 * We distinguish between categories by comparing each saved segment register
 * with its current contents: any discrepancy means we in category 1.
 */
1216
ENTRY(xen_failsafe_callback)
1217 1218 1219 1220 1221 1222 1223
	INTR_FRAME 1 (6*8)
	/*CFI_REL_OFFSET gs,GS*/
	/*CFI_REL_OFFSET fs,FS*/
	/*CFI_REL_OFFSET es,ES*/
	/*CFI_REL_OFFSET ds,DS*/
	CFI_REL_OFFSET r11,8
	CFI_REL_OFFSET rcx,0
1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243
	movw %ds,%cx
	cmpw %cx,0x10(%rsp)
	CFI_REMEMBER_STATE
	jne 1f
	movw %es,%cx
	cmpw %cx,0x18(%rsp)
	jne 1f
	movw %fs,%cx
	cmpw %cx,0x20(%rsp)
	jne 1f
	movw %gs,%cx
	cmpw %cx,0x28(%rsp)
	jne 1f
	/* All segments match their saved values => Category 2 (Bad IRET). */
	movq (%rsp),%rcx
	CFI_RESTORE rcx
	movq 8(%rsp),%r11
	CFI_RESTORE r11
	addq $0x30,%rsp
	CFI_ADJUST_CFA_OFFSET -0x30
I
Ingo Molnar 已提交
1244 1245 1246
	pushq_cfi $0	/* RIP */
	pushq_cfi %r11
	pushq_cfi %rcx
1247
	jmp general_protection
1248 1249 1250 1251 1252 1253 1254 1255
	CFI_RESTORE_STATE
1:	/* Segment mismatch => Category 1 (Bad segment). Retry the IRET. */
	movq (%rsp),%rcx
	CFI_RESTORE rcx
	movq 8(%rsp),%r11
	CFI_RESTORE r11
	addq $0x30,%rsp
	CFI_ADJUST_CFA_OFFSET -0x30
1256
	pushq_cfi $-1 /* orig_ax = -1 => not a system call */
1257 1258 1259 1260 1261
	SAVE_ALL
	jmp error_exit
	CFI_ENDPROC
END(xen_failsafe_callback)

1262
apicinterrupt3 HYPERVISOR_CALLBACK_VECTOR \
1263 1264
	xen_hvm_callback_vector xen_evtchn_do_upcall

1265
#endif /* CONFIG_XEN */
1266

1267
#if IS_ENABLED(CONFIG_HYPERV)
1268
apicinterrupt3 HYPERVISOR_CALLBACK_VECTOR \
1269 1270 1271
	hyperv_callback_vector hyperv_vector_handler
#endif /* CONFIG_HYPERV */

1272 1273
idtentry debug do_debug has_error_code=0 paranoid=1 shift_ist=DEBUG_STACK
idtentry int3 do_int3 has_error_code=0 paranoid=1 shift_ist=DEBUG_STACK
1274
idtentry stack_segment do_stack_segment has_error_code=1
1275
#ifdef CONFIG_XEN
1276 1277 1278
idtentry xen_debug do_debug has_error_code=0
idtentry xen_int3 do_int3 has_error_code=0
idtentry xen_stack_segment do_stack_segment has_error_code=1
1279
#endif
1280 1281
idtentry general_protection do_general_protection has_error_code=1
trace_idtentry page_fault do_page_fault has_error_code=1
G
Gleb Natapov 已提交
1282
#ifdef CONFIG_KVM_GUEST
1283
idtentry async_page_fault do_async_page_fault has_error_code=1
G
Gleb Natapov 已提交
1284
#endif
1285
#ifdef CONFIG_X86_MCE
1286
idtentry machine_check has_error_code=0 paranoid=1 do_sym=*machine_check_vector(%rip)
1287 1288 1289
#endif

	/*
1290 1291 1292
	 * "Paranoid" exit path from exception stack.  This is invoked
	 * only on return from non-NMI IST interrupts that came
	 * from kernel space.
1293
	 *
1294 1295 1296 1297
	 * We may be returning to very strange contexts (e.g. very early
	 * in syscall entry), so checking for preemption here would
	 * be complicated.  Fortunately, we there's no good reason
	 * to try to handle preemption here.
1298 1299 1300 1301
	 */

	/* ebx:	no swapgs flag */
ENTRY(paranoid_exit)
1302
	DEFAULT_FRAME
1303
	DISABLE_INTERRUPTS(CLBR_NONE)
1304
	TRACE_IRQS_OFF_DEBUG
1305 1306 1307 1308
	testl %ebx,%ebx				/* swapgs needed? */
	jnz paranoid_restore
	TRACE_IRQS_IRETQ 0
	SWAPGS_UNSAFE_STACK
1309
	RESTORE_ALL 8
1310
	INTERRUPT_RETURN
1311
paranoid_restore:
1312
	TRACE_IRQS_IRETQ_DEBUG 0
1313
	RESTORE_ALL 8
1314
	INTERRUPT_RETURN
1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326
	CFI_ENDPROC
END(paranoid_exit)

/*
 * Exception entry point. This expects an error code/orig_rax on the stack.
 * returns in "no swapgs flag" in %ebx.
 */
ENTRY(error_entry)
	XCPT_FRAME
	CFI_ADJUST_CFA_OFFSET 15*8
	/* oldrax contains error code */
	cld
1327 1328 1329 1330 1331 1332 1333 1334 1335
	movq %rdi, RDI+8(%rsp)
	movq %rsi, RSI+8(%rsp)
	movq %rdx, RDX+8(%rsp)
	movq %rcx, RCX+8(%rsp)
	movq %rax, RAX+8(%rsp)
	movq  %r8,  R8+8(%rsp)
	movq  %r9,  R9+8(%rsp)
	movq %r10, R10+8(%rsp)
	movq %r11, R11+8(%rsp)
1336
	movq_cfi rbx, RBX+8
1337 1338 1339 1340 1341
	movq %rbp, RBP+8(%rsp)
	movq %r12, R12+8(%rsp)
	movq %r13, R13+8(%rsp)
	movq %r14, R14+8(%rsp)
	movq %r15, R15+8(%rsp)
1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352
	xorl %ebx,%ebx
	testl $3,CS+8(%rsp)
	je error_kernelspace
error_swapgs:
	SWAPGS
error_sti:
	TRACE_IRQS_OFF
	ret

/*
 * There are two places in the kernel that can potentially fault with
A
Andy Lutomirski 已提交
1353 1354 1355
 * usergs. Handle them here.  B stepping K8s sometimes report a
 * truncated RIP for IRET exceptions returning to compat mode. Check
 * for these here too.
1356 1357
 */
error_kernelspace:
1358
	CFI_REL_OFFSET rcx, RCX+8
1359
	incl %ebx
1360
	leaq native_irq_return_iret(%rip),%rcx
1361
	cmpq %rcx,RIP+8(%rsp)
A
Andy Lutomirski 已提交
1362
	je error_bad_iret
1363 1364 1365
	movl %ecx,%eax	/* zero extend */
	cmpq %rax,RIP+8(%rsp)
	je bstep_iret
1366
	cmpq $gs_change,RIP+8(%rsp)
1367
	je error_swapgs
1368
	jmp error_sti
1369 1370 1371 1372

bstep_iret:
	/* Fix truncated RIP */
	movq %rcx,RIP+8(%rsp)
A
Andy Lutomirski 已提交
1373 1374 1375 1376 1377 1378 1379 1380 1381
	/* fall through */

error_bad_iret:
	SWAPGS
	mov %rsp,%rdi
	call fixup_bad_iret
	mov %rax,%rsp
	decl %ebx	/* Return to usergs */
	jmp error_sti
1382
	CFI_ENDPROC
1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404
END(error_entry)


/* ebx:	no swapgs flag (1: don't need swapgs, 0: need it) */
ENTRY(error_exit)
	DEFAULT_FRAME
	movl %ebx,%eax
	RESTORE_REST
	DISABLE_INTERRUPTS(CLBR_NONE)
	TRACE_IRQS_OFF
	GET_THREAD_INFO(%rcx)
	testl %eax,%eax
	jne retint_kernel
	LOCKDEP_SYS_EXIT_IRQ
	movl TI_flags(%rcx),%edx
	movl $_TIF_WORK_MASK,%edi
	andl %edi,%edx
	jnz retint_careful
	jmp retint_swapgs
	CFI_ENDPROC
END(error_exit)

1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415
/*
 * Test if a given stack is an NMI stack or not.
 */
	.macro test_in_nmi reg stack nmi_ret normal_ret
	cmpq %\reg, \stack
	ja \normal_ret
	subq $EXCEPTION_STKSZ, %\reg
	cmpq %\reg, \stack
	jb \normal_ret
	jmp \nmi_ret
	.endm
1416 1417 1418 1419 1420

	/* runs on exception stack */
ENTRY(nmi)
	INTR_FRAME
	PARAVIRT_ADJUST_EXCEPTION_FRAME
1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454
	/*
	 * We allow breakpoints in NMIs. If a breakpoint occurs, then
	 * the iretq it performs will take us out of NMI context.
	 * This means that we can have nested NMIs where the next
	 * NMI is using the top of the stack of the previous NMI. We
	 * can't let it execute because the nested NMI will corrupt the
	 * stack of the previous NMI. NMI handlers are not re-entrant
	 * anyway.
	 *
	 * To handle this case we do the following:
	 *  Check the a special location on the stack that contains
	 *  a variable that is set when NMIs are executing.
	 *  The interrupted task's stack is also checked to see if it
	 *  is an NMI stack.
	 *  If the variable is not set and the stack is not the NMI
	 *  stack then:
	 *    o Set the special variable on the stack
	 *    o Copy the interrupt frame into a "saved" location on the stack
	 *    o Copy the interrupt frame into a "copy" location on the stack
	 *    o Continue processing the NMI
	 *  If the variable is set or the previous stack is the NMI stack:
	 *    o Modify the "copy" location to jump to the repeate_nmi
	 *    o return back to the first NMI
	 *
	 * Now on exit of the first NMI, we first clear the stack variable
	 * The NMI stack will tell any nested NMIs at that point that it is
	 * nested. Then we pop the stack normally with iret, and if there was
	 * a nested NMI that updated the copy interrupt stack frame, a
	 * jump will be made to the repeat_nmi code that will handle the second
	 * NMI.
	 */

	/* Use %rdx as out temp variable throughout */
	pushq_cfi %rdx
1455
	CFI_REL_OFFSET rdx, 0
1456

1457 1458 1459 1460
	/*
	 * If %cs was not the kernel segment, then the NMI triggered in user
	 * space, which means it is definitely not nested.
	 */
1461
	cmpl $__KERNEL_CS, 16(%rsp)
1462 1463
	jne first_nmi

1464 1465 1466 1467
	/*
	 * Check the special variable on the stack to see if NMIs are
	 * executing.
	 */
1468
	cmpl $1, -8(%rsp)
1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479
	je nested_nmi

	/*
	 * Now test if the previous stack was an NMI stack.
	 * We need the double check. We check the NMI stack to satisfy the
	 * race when the first NMI clears the variable before returning.
	 * We check the variable because the first NMI could be in a
	 * breakpoint routine using a breakpoint stack.
	 */
	lea 6*8(%rsp), %rdx
	test_in_nmi rdx, 4*8(%rsp), nested_nmi, first_nmi
1480
	CFI_REMEMBER_STATE
1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496

nested_nmi:
	/*
	 * Do nothing if we interrupted the fixup in repeat_nmi.
	 * It's about to repeat the NMI handler, so we are fine
	 * with ignoring this one.
	 */
	movq $repeat_nmi, %rdx
	cmpq 8(%rsp), %rdx
	ja 1f
	movq $end_repeat_nmi, %rdx
	cmpq 8(%rsp), %rdx
	ja nested_nmi_out

1:
	/* Set up the interrupted NMIs stack to jump to repeat_nmi */
1497
	leaq -1*8(%rsp), %rdx
1498
	movq %rdx, %rsp
1499 1500
	CFI_ADJUST_CFA_OFFSET 1*8
	leaq -10*8(%rsp), %rdx
1501 1502 1503 1504 1505 1506 1507
	pushq_cfi $__KERNEL_DS
	pushq_cfi %rdx
	pushfq_cfi
	pushq_cfi $__KERNEL_CS
	pushq_cfi $repeat_nmi

	/* Put stack back */
1508 1509
	addq $(6*8), %rsp
	CFI_ADJUST_CFA_OFFSET -6*8
1510 1511 1512

nested_nmi_out:
	popq_cfi %rdx
1513
	CFI_RESTORE rdx
1514 1515 1516 1517

	/* No need to check faults here */
	INTERRUPT_RETURN

1518
	CFI_RESTORE_STATE
1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540
first_nmi:
	/*
	 * Because nested NMIs will use the pushed location that we
	 * stored in rdx, we must keep that space available.
	 * Here's what our stack frame will look like:
	 * +-------------------------+
	 * | original SS             |
	 * | original Return RSP     |
	 * | original RFLAGS         |
	 * | original CS             |
	 * | original RIP            |
	 * +-------------------------+
	 * | temp storage for rdx    |
	 * +-------------------------+
	 * | NMI executing variable  |
	 * +-------------------------+
	 * | copied SS               |
	 * | copied Return RSP       |
	 * | copied RFLAGS           |
	 * | copied CS               |
	 * | copied RIP              |
	 * +-------------------------+
1541 1542 1543 1544 1545 1546
	 * | Saved SS                |
	 * | Saved Return RSP        |
	 * | Saved RFLAGS            |
	 * | Saved CS                |
	 * | Saved RIP               |
	 * +-------------------------+
1547 1548 1549
	 * | pt_regs                 |
	 * +-------------------------+
	 *
1550 1551 1552
	 * The saved stack frame is used to fix up the copied stack frame
	 * that a nested NMI may change to make the interrupted NMI iret jump
	 * to the repeat_nmi. The original stack frame and the temp storage
1553 1554
	 * is also used by nested NMIs and can not be trusted on exit.
	 */
1555
	/* Do not pop rdx, nested NMIs will corrupt that part of the stack */
1556 1557 1558
	movq (%rsp), %rdx
	CFI_RESTORE rdx

1559 1560 1561
	/* Set the NMI executing variable on the stack. */
	pushq_cfi $1

1562 1563 1564 1565
	/*
	 * Leave room for the "copied" frame
	 */
	subq $(5*8), %rsp
1566
	CFI_ADJUST_CFA_OFFSET 5*8
1567

1568 1569
	/* Copy the stack frame to the Saved frame */
	.rept 5
1570
	pushq_cfi 11*8(%rsp)
1571
	.endr
1572 1573
	CFI_DEF_CFA_OFFSET SS+8-RIP

1574 1575
	/* Everything up to here is safe from nested NMIs */

1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590
	/*
	 * If there was a nested NMI, the first NMI's iret will return
	 * here. But NMIs are still enabled and we can take another
	 * nested NMI. The nested NMI checks the interrupted RIP to see
	 * if it is between repeat_nmi and end_repeat_nmi, and if so
	 * it will just return, as we are about to repeat an NMI anyway.
	 * This makes it safe to copy to the stack frame that a nested
	 * NMI will update.
	 */
repeat_nmi:
	/*
	 * Update the stack variable to say we are still in NMI (the update
	 * is benign for the non-repeat case, where 1 was pushed just above
	 * to this very stack slot).
	 */
1591
	movq $1, 10*8(%rsp)
1592 1593

	/* Make another copy, this one may be modified by nested NMIs */
1594 1595
	addq $(10*8), %rsp
	CFI_ADJUST_CFA_OFFSET -10*8
1596
	.rept 5
1597
	pushq_cfi -6*8(%rsp)
1598
	.endr
1599
	subq $(5*8), %rsp
1600 1601
	CFI_DEF_CFA_OFFSET SS+8-RIP
end_repeat_nmi:
1602 1603 1604

	/*
	 * Everything below this point can be preempted by a nested
1605 1606
	 * NMI if the first NMI took an exception and reset our iret stack
	 * so that we repeat another NMI.
1607
	 */
1608
	pushq_cfi $-1		/* ORIG_RAX: no syscall to restart */
1609 1610
	subq $ORIG_RAX-R15, %rsp
	CFI_ADJUST_CFA_OFFSET ORIG_RAX-R15
1611 1612 1613 1614 1615 1616 1617
	/*
	 * Use save_paranoid to handle SWAPGS, but no need to use paranoid_exit
	 * as we should not be calling schedule in NMI context.
	 * Even with normal interrupts enabled. An NMI should not be
	 * setting NEED_RESCHED or anything that normal interrupts and
	 * exceptions might do.
	 */
1618 1619
	call save_paranoid
	DEFAULT_FRAME 0
1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631

	/*
	 * Save off the CR2 register. If we take a page fault in the NMI then
	 * it could corrupt the CR2 value. If the NMI preempts a page fault
	 * handler before it was able to read the CR2 register, and then the
	 * NMI itself takes a page fault, the page fault that was preempted
	 * will read the information from the NMI page fault and not the
	 * origin fault. Save it off and restore it if it changes.
	 * Use the r12 callee-saved register.
	 */
	movq %cr2, %r12

1632 1633 1634 1635
	/* paranoidentry do_nmi, 0; without TRACE_IRQS_OFF */
	movq %rsp,%rdi
	movq $-1,%rsi
	call do_nmi
1636 1637 1638 1639 1640 1641 1642 1643

	/* Did the NMI take a page fault? Restore cr2 if it did */
	movq %cr2, %rcx
	cmpq %rcx, %r12
	je 1f
	movq %r12, %cr2
1:
	
1644 1645 1646 1647 1648
	testl %ebx,%ebx				/* swapgs needed? */
	jnz nmi_restore
nmi_swapgs:
	SWAPGS_UNSAFE_STACK
nmi_restore:
1649 1650
	/* Pop the extra iret frame at once */
	RESTORE_ALL 6*8
1651

1652
	/* Clear the NMI executing stack variable */
1653
	movq $0, 5*8(%rsp)
1654
	jmp irq_return
1655
	CFI_ENDPROC
1656 1657 1658 1659 1660 1661 1662 1663 1664
END(nmi)

ENTRY(ignore_sysret)
	CFI_STARTPROC
	mov $-ENOSYS,%eax
	sysret
	CFI_ENDPROC
END(ignore_sysret)