xref: /openbmc/linux/arch/x86/entry/entry_64.S (revision e872045bfd9c465a8555bab4b8567d56a4d2d3bb)
1905a36a2SIngo Molnar/*
2905a36a2SIngo Molnar *  linux/arch/x86_64/entry.S
3905a36a2SIngo Molnar *
4905a36a2SIngo Molnar *  Copyright (C) 1991, 1992  Linus Torvalds
5905a36a2SIngo Molnar *  Copyright (C) 2000, 2001, 2002  Andi Kleen SuSE Labs
6905a36a2SIngo Molnar *  Copyright (C) 2000  Pavel Machek <pavel@suse.cz>
74d732138SIngo Molnar *
8905a36a2SIngo Molnar * entry.S contains the system-call and fault low-level handling routines.
9905a36a2SIngo Molnar *
10905a36a2SIngo Molnar * Some of this is documented in Documentation/x86/entry_64.txt
11905a36a2SIngo Molnar *
12905a36a2SIngo Molnar * A note on terminology:
13905a36a2SIngo Molnar * - iret frame:	Architecture defined interrupt frame from SS to RIP
14905a36a2SIngo Molnar *			at the top of the kernel process stack.
15905a36a2SIngo Molnar *
16905a36a2SIngo Molnar * Some macro usage:
174d732138SIngo Molnar * - ENTRY/END:		Define functions in the symbol table.
184d732138SIngo Molnar * - TRACE_IRQ_*:	Trace hardirq state for lock debugging.
194d732138SIngo Molnar * - idtentry:		Define exception entry points.
20905a36a2SIngo Molnar */
21905a36a2SIngo Molnar#include <linux/linkage.h>
22905a36a2SIngo Molnar#include <asm/segment.h>
23905a36a2SIngo Molnar#include <asm/cache.h>
24905a36a2SIngo Molnar#include <asm/errno.h>
25d36f9479SIngo Molnar#include "calling.h"
26905a36a2SIngo Molnar#include <asm/asm-offsets.h>
27905a36a2SIngo Molnar#include <asm/msr.h>
28905a36a2SIngo Molnar#include <asm/unistd.h>
29905a36a2SIngo Molnar#include <asm/thread_info.h>
30905a36a2SIngo Molnar#include <asm/hw_irq.h>
31905a36a2SIngo Molnar#include <asm/page_types.h>
32905a36a2SIngo Molnar#include <asm/irqflags.h>
33905a36a2SIngo Molnar#include <asm/paravirt.h>
34905a36a2SIngo Molnar#include <asm/percpu.h>
35905a36a2SIngo Molnar#include <asm/asm.h>
36905a36a2SIngo Molnar#include <asm/smap.h>
37905a36a2SIngo Molnar#include <asm/pgtable_types.h>
38784d5699SAl Viro#include <asm/export.h>
398c1f7558SJosh Poimboeuf#include <asm/frame.h>
40905a36a2SIngo Molnar#include <linux/err.h>
41905a36a2SIngo Molnar
42905a36a2SIngo Molnar.code64
43905a36a2SIngo Molnar.section .entry.text, "ax"
44905a36a2SIngo Molnar
45905a36a2SIngo Molnar#ifdef CONFIG_PARAVIRT
46905a36a2SIngo MolnarENTRY(native_usergs_sysret64)
478c1f7558SJosh Poimboeuf	UNWIND_HINT_EMPTY
48905a36a2SIngo Molnar	swapgs
49905a36a2SIngo Molnar	sysretq
508c1f7558SJosh PoimboeufEND(native_usergs_sysret64)
51905a36a2SIngo Molnar#endif /* CONFIG_PARAVIRT */
52905a36a2SIngo Molnar
53905a36a2SIngo Molnar.macro TRACE_IRQS_IRETQ
54905a36a2SIngo Molnar#ifdef CONFIG_TRACE_IRQFLAGS
55905a36a2SIngo Molnar	bt	$9, EFLAGS(%rsp)		/* interrupts off? */
56905a36a2SIngo Molnar	jnc	1f
57905a36a2SIngo Molnar	TRACE_IRQS_ON
58905a36a2SIngo Molnar1:
59905a36a2SIngo Molnar#endif
60905a36a2SIngo Molnar.endm
61905a36a2SIngo Molnar
62905a36a2SIngo Molnar/*
63905a36a2SIngo Molnar * When dynamic function tracer is enabled it will add a breakpoint
64905a36a2SIngo Molnar * to all locations that it is about to modify, sync CPUs, update
65905a36a2SIngo Molnar * all the code, sync CPUs, then remove the breakpoints. In this time
66905a36a2SIngo Molnar * if lockdep is enabled, it might jump back into the debug handler
67905a36a2SIngo Molnar * outside the updating of the IST protection. (TRACE_IRQS_ON/OFF).
68905a36a2SIngo Molnar *
69905a36a2SIngo Molnar * We need to change the IDT table before calling TRACE_IRQS_ON/OFF to
70905a36a2SIngo Molnar * make sure the stack pointer does not get reset back to the top
71905a36a2SIngo Molnar * of the debug stack, and instead just reuses the current stack.
72905a36a2SIngo Molnar */
73905a36a2SIngo Molnar#if defined(CONFIG_DYNAMIC_FTRACE) && defined(CONFIG_TRACE_IRQFLAGS)
74905a36a2SIngo Molnar
75905a36a2SIngo Molnar.macro TRACE_IRQS_OFF_DEBUG
76905a36a2SIngo Molnar	call	debug_stack_set_zero
77905a36a2SIngo Molnar	TRACE_IRQS_OFF
78905a36a2SIngo Molnar	call	debug_stack_reset
79905a36a2SIngo Molnar.endm
80905a36a2SIngo Molnar
81905a36a2SIngo Molnar.macro TRACE_IRQS_ON_DEBUG
82905a36a2SIngo Molnar	call	debug_stack_set_zero
83905a36a2SIngo Molnar	TRACE_IRQS_ON
84905a36a2SIngo Molnar	call	debug_stack_reset
85905a36a2SIngo Molnar.endm
86905a36a2SIngo Molnar
87905a36a2SIngo Molnar.macro TRACE_IRQS_IRETQ_DEBUG
88905a36a2SIngo Molnar	bt	$9, EFLAGS(%rsp)		/* interrupts off? */
89905a36a2SIngo Molnar	jnc	1f
90905a36a2SIngo Molnar	TRACE_IRQS_ON_DEBUG
91905a36a2SIngo Molnar1:
92905a36a2SIngo Molnar.endm
93905a36a2SIngo Molnar
94905a36a2SIngo Molnar#else
95905a36a2SIngo Molnar# define TRACE_IRQS_OFF_DEBUG			TRACE_IRQS_OFF
96905a36a2SIngo Molnar# define TRACE_IRQS_ON_DEBUG			TRACE_IRQS_ON
97905a36a2SIngo Molnar# define TRACE_IRQS_IRETQ_DEBUG			TRACE_IRQS_IRETQ
98905a36a2SIngo Molnar#endif
99905a36a2SIngo Molnar
100905a36a2SIngo Molnar/*
1014d732138SIngo Molnar * 64-bit SYSCALL instruction entry. Up to 6 arguments in registers.
102905a36a2SIngo Molnar *
103fda57b22SAndy Lutomirski * This is the only entry point used for 64-bit system calls.  The
104fda57b22SAndy Lutomirski * hardware interface is reasonably well designed and the register to
105fda57b22SAndy Lutomirski * argument mapping Linux uses fits well with the registers that are
106fda57b22SAndy Lutomirski * available when SYSCALL is used.
107fda57b22SAndy Lutomirski *
108fda57b22SAndy Lutomirski * SYSCALL instructions can be found inlined in libc implementations as
109fda57b22SAndy Lutomirski * well as some other programs and libraries.  There are also a handful
110fda57b22SAndy Lutomirski * of SYSCALL instructions in the vDSO used, for example, as a
111fda57b22SAndy Lutomirski * clock_gettimeofday fallback.
112fda57b22SAndy Lutomirski *
1134d732138SIngo Molnar * 64-bit SYSCALL saves rip to rcx, clears rflags.RF, then saves rflags to r11,
114905a36a2SIngo Molnar * then loads new ss, cs, and rip from previously programmed MSRs.
115905a36a2SIngo Molnar * rflags gets masked by a value from another MSR (so CLD and CLAC
116905a36a2SIngo Molnar * are not needed). SYSCALL does not save anything on the stack
117905a36a2SIngo Molnar * and does not change rsp.
118905a36a2SIngo Molnar *
119905a36a2SIngo Molnar * Registers on entry:
120905a36a2SIngo Molnar * rax  system call number
121905a36a2SIngo Molnar * rcx  return address
122905a36a2SIngo Molnar * r11  saved rflags (note: r11 is callee-clobbered register in C ABI)
123905a36a2SIngo Molnar * rdi  arg0
124905a36a2SIngo Molnar * rsi  arg1
125905a36a2SIngo Molnar * rdx  arg2
126905a36a2SIngo Molnar * r10  arg3 (needs to be moved to rcx to conform to C ABI)
127905a36a2SIngo Molnar * r8   arg4
128905a36a2SIngo Molnar * r9   arg5
129905a36a2SIngo Molnar * (note: r12-r15, rbp, rbx are callee-preserved in C ABI)
130905a36a2SIngo Molnar *
131905a36a2SIngo Molnar * Only called from user space.
132905a36a2SIngo Molnar *
133905a36a2SIngo Molnar * When user can change pt_regs->foo always force IRET. That is because
134905a36a2SIngo Molnar * it deals with uncanonical addresses better. SYSRET has trouble
135905a36a2SIngo Molnar * with them due to bugs in both AMD and Intel CPUs.
136905a36a2SIngo Molnar */
137905a36a2SIngo Molnar
138b2502b41SIngo MolnarENTRY(entry_SYSCALL_64)
1398c1f7558SJosh Poimboeuf	UNWIND_HINT_EMPTY
140905a36a2SIngo Molnar	/*
141905a36a2SIngo Molnar	 * Interrupts are off on entry.
142905a36a2SIngo Molnar	 * We do not frame this tiny irq-off block with TRACE_IRQS_OFF/ON,
143905a36a2SIngo Molnar	 * it is too small to ever cause noticeable irq latency.
144905a36a2SIngo Molnar	 */
145905a36a2SIngo Molnar
1468a9949bcSAndy Lutomirski	swapgs
147905a36a2SIngo Molnar	movq	%rsp, PER_CPU_VAR(rsp_scratch)
148905a36a2SIngo Molnar	movq	PER_CPU_VAR(cpu_current_top_of_stack), %rsp
149905a36a2SIngo Molnar
1501e423bffSAndy Lutomirski	TRACE_IRQS_OFF
1511e423bffSAndy Lutomirski
152905a36a2SIngo Molnar	/* Construct struct pt_regs on stack */
153905a36a2SIngo Molnar	pushq	$__USER_DS			/* pt_regs->ss */
154905a36a2SIngo Molnar	pushq	PER_CPU_VAR(rsp_scratch)	/* pt_regs->sp */
155905a36a2SIngo Molnar	pushq	%r11				/* pt_regs->flags */
156905a36a2SIngo Molnar	pushq	$__USER_CS			/* pt_regs->cs */
157905a36a2SIngo Molnar	pushq	%rcx				/* pt_regs->ip */
1588a9949bcSAndy LutomirskiGLOBAL(entry_SYSCALL_64_after_hwframe)
159905a36a2SIngo Molnar	pushq	%rax				/* pt_regs->orig_ax */
160905a36a2SIngo Molnar	pushq	%rdi				/* pt_regs->di */
161905a36a2SIngo Molnar	pushq	%rsi				/* pt_regs->si */
162905a36a2SIngo Molnar	pushq	%rdx				/* pt_regs->dx */
163905a36a2SIngo Molnar	pushq	%rcx				/* pt_regs->cx */
164905a36a2SIngo Molnar	pushq	$-ENOSYS			/* pt_regs->ax */
165905a36a2SIngo Molnar	pushq	%r8				/* pt_regs->r8 */
166905a36a2SIngo Molnar	pushq	%r9				/* pt_regs->r9 */
167905a36a2SIngo Molnar	pushq	%r10				/* pt_regs->r10 */
168905a36a2SIngo Molnar	pushq	%r11				/* pt_regs->r11 */
169905a36a2SIngo Molnar	sub	$(6*8), %rsp			/* pt_regs->bp, bx, r12-15 not saved */
1708c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS extra=0
171905a36a2SIngo Molnar
1721e423bffSAndy Lutomirski	/*
1731e423bffSAndy Lutomirski	 * If we need to do entry work or if we guess we'll need to do
1741e423bffSAndy Lutomirski	 * exit work, go straight to the slow path.
1751e423bffSAndy Lutomirski	 */
17615f4eae7SAndy Lutomirski	movq	PER_CPU_VAR(current_task), %r11
17715f4eae7SAndy Lutomirski	testl	$_TIF_WORK_SYSCALL_ENTRY|_TIF_ALLWORK_MASK, TASK_TI_flags(%r11)
1781e423bffSAndy Lutomirski	jnz	entry_SYSCALL64_slow_path
1791e423bffSAndy Lutomirski
180b2502b41SIngo Molnarentry_SYSCALL_64_fastpath:
1811e423bffSAndy Lutomirski	/*
1821e423bffSAndy Lutomirski	 * Easy case: enable interrupts and issue the syscall.  If the syscall
1831e423bffSAndy Lutomirski	 * needs pt_regs, we'll call a stub that disables interrupts again
1841e423bffSAndy Lutomirski	 * and jumps to the slow path.
1851e423bffSAndy Lutomirski	 */
1861e423bffSAndy Lutomirski	TRACE_IRQS_ON
1871e423bffSAndy Lutomirski	ENABLE_INTERRUPTS(CLBR_NONE)
188905a36a2SIngo Molnar#if __SYSCALL_MASK == ~0
189905a36a2SIngo Molnar	cmpq	$__NR_syscall_max, %rax
190905a36a2SIngo Molnar#else
191905a36a2SIngo Molnar	andl	$__SYSCALL_MASK, %eax
192905a36a2SIngo Molnar	cmpl	$__NR_syscall_max, %eax
193905a36a2SIngo Molnar#endif
194905a36a2SIngo Molnar	ja	1f				/* return -ENOSYS (already in pt_regs->ax) */
195905a36a2SIngo Molnar	movq	%r10, %rcx
196302f5b26SAndy Lutomirski
197302f5b26SAndy Lutomirski	/*
198302f5b26SAndy Lutomirski	 * This call instruction is handled specially in stub_ptregs_64.
199b7765086SAndy Lutomirski	 * It might end up jumping to the slow path.  If it jumps, RAX
200b7765086SAndy Lutomirski	 * and all argument registers are clobbered.
201302f5b26SAndy Lutomirski	 */
202905a36a2SIngo Molnar	call	*sys_call_table(, %rax, 8)
203302f5b26SAndy Lutomirski.Lentry_SYSCALL_64_after_fastpath_call:
204302f5b26SAndy Lutomirski
205905a36a2SIngo Molnar	movq	%rax, RAX(%rsp)
206905a36a2SIngo Molnar1:
2071e423bffSAndy Lutomirski
208905a36a2SIngo Molnar	/*
2091e423bffSAndy Lutomirski	 * If we get here, then we know that pt_regs is clean for SYSRET64.
2101e423bffSAndy Lutomirski	 * If we see that no exit work is required (which we are required
2111e423bffSAndy Lutomirski	 * to check with IRQs off), then we can go straight to SYSRET64.
212905a36a2SIngo Molnar	 */
2132140a994SJan Beulich	DISABLE_INTERRUPTS(CLBR_ANY)
2141e423bffSAndy Lutomirski	TRACE_IRQS_OFF
21515f4eae7SAndy Lutomirski	movq	PER_CPU_VAR(current_task), %r11
21615f4eae7SAndy Lutomirski	testl	$_TIF_ALLWORK_MASK, TASK_TI_flags(%r11)
2171e423bffSAndy Lutomirski	jnz	1f
218905a36a2SIngo Molnar
2191e423bffSAndy Lutomirski	LOCKDEP_SYS_EXIT
2201e423bffSAndy Lutomirski	TRACE_IRQS_ON		/* user mode is traced as IRQs on */
221eb2a54c3SAndy Lutomirski	movq	RIP(%rsp), %rcx
222eb2a54c3SAndy Lutomirski	movq	EFLAGS(%rsp), %r11
223eb2a54c3SAndy Lutomirski	RESTORE_C_REGS_EXCEPT_RCX_R11
224905a36a2SIngo Molnar	movq	RSP(%rsp), %rsp
2258c1f7558SJosh Poimboeuf	UNWIND_HINT_EMPTY
226905a36a2SIngo Molnar	USERGS_SYSRET64
227905a36a2SIngo Molnar
2281e423bffSAndy Lutomirski1:
2291e423bffSAndy Lutomirski	/*
2301e423bffSAndy Lutomirski	 * The fast path looked good when we started, but something changed
2311e423bffSAndy Lutomirski	 * along the way and we need to switch to the slow path.  Calling
2321e423bffSAndy Lutomirski	 * raise(3) will trigger this, for example.  IRQs are off.
2331e423bffSAndy Lutomirski	 */
23429ea1b25SAndy Lutomirski	TRACE_IRQS_ON
2352140a994SJan Beulich	ENABLE_INTERRUPTS(CLBR_ANY)
236905a36a2SIngo Molnar	SAVE_EXTRA_REGS
23729ea1b25SAndy Lutomirski	movq	%rsp, %rdi
23829ea1b25SAndy Lutomirski	call	syscall_return_slowpath	/* returns with IRQs disabled */
2391e423bffSAndy Lutomirski	jmp	return_from_SYSCALL_64
2401e423bffSAndy Lutomirski
2411e423bffSAndy Lutomirskientry_SYSCALL64_slow_path:
2421e423bffSAndy Lutomirski	/* IRQs are off. */
2431e423bffSAndy Lutomirski	SAVE_EXTRA_REGS
2441e423bffSAndy Lutomirski	movq	%rsp, %rdi
2451e423bffSAndy Lutomirski	call	do_syscall_64		/* returns with IRQs disabled */
2461e423bffSAndy Lutomirski
2471e423bffSAndy Lutomirskireturn_from_SYSCALL_64:
24829ea1b25SAndy Lutomirski	TRACE_IRQS_IRETQ		/* we're about to change IF */
249905a36a2SIngo Molnar
250905a36a2SIngo Molnar	/*
251905a36a2SIngo Molnar	 * Try to use SYSRET instead of IRET if we're returning to
2528a055d7fSAndy Lutomirski	 * a completely clean 64-bit userspace context.  If we're not,
2538a055d7fSAndy Lutomirski	 * go to the slow exit path.
254905a36a2SIngo Molnar	 */
255905a36a2SIngo Molnar	movq	RCX(%rsp), %rcx
256905a36a2SIngo Molnar	movq	RIP(%rsp), %r11
2578a055d7fSAndy Lutomirski
2588a055d7fSAndy Lutomirski	cmpq	%rcx, %r11	/* SYSRET requires RCX == RIP */
2598a055d7fSAndy Lutomirski	jne	swapgs_restore_regs_and_return_to_usermode
260905a36a2SIngo Molnar
261905a36a2SIngo Molnar	/*
262905a36a2SIngo Molnar	 * On Intel CPUs, SYSRET with non-canonical RCX/RIP will #GP
263905a36a2SIngo Molnar	 * in kernel space.  This essentially lets the user take over
264905a36a2SIngo Molnar	 * the kernel, since userspace controls RSP.
265905a36a2SIngo Molnar	 *
266905a36a2SIngo Molnar	 * If width of "canonical tail" ever becomes variable, this will need
267905a36a2SIngo Molnar	 * to be updated to remain correct on both old and new CPUs.
268361b4b58SKirill A. Shutemov	 *
269cbe0317bSKirill A. Shutemov	 * Change top bits to match most significant bit (47th or 56th bit
270cbe0317bSKirill A. Shutemov	 * depending on paging mode) in the address.
271905a36a2SIngo Molnar	 */
272905a36a2SIngo Molnar	shl	$(64 - (__VIRTUAL_MASK_SHIFT+1)), %rcx
273905a36a2SIngo Molnar	sar	$(64 - (__VIRTUAL_MASK_SHIFT+1)), %rcx
2744d732138SIngo Molnar
275905a36a2SIngo Molnar	/* If this changed %rcx, it was not canonical */
276905a36a2SIngo Molnar	cmpq	%rcx, %r11
2778a055d7fSAndy Lutomirski	jne	swapgs_restore_regs_and_return_to_usermode
278905a36a2SIngo Molnar
279905a36a2SIngo Molnar	cmpq	$__USER_CS, CS(%rsp)		/* CS must match SYSRET */
2808a055d7fSAndy Lutomirski	jne	swapgs_restore_regs_and_return_to_usermode
281905a36a2SIngo Molnar
282905a36a2SIngo Molnar	movq	R11(%rsp), %r11
283905a36a2SIngo Molnar	cmpq	%r11, EFLAGS(%rsp)		/* R11 == RFLAGS */
2848a055d7fSAndy Lutomirski	jne	swapgs_restore_regs_and_return_to_usermode
285905a36a2SIngo Molnar
286905a36a2SIngo Molnar	/*
2873e035305SBorislav Petkov	 * SYSCALL clears RF when it saves RFLAGS in R11 and SYSRET cannot
2883e035305SBorislav Petkov	 * restore RF properly. If the slowpath sets it for whatever reason, we
2893e035305SBorislav Petkov	 * need to restore it correctly.
2903e035305SBorislav Petkov	 *
2913e035305SBorislav Petkov	 * SYSRET can restore TF, but unlike IRET, restoring TF results in a
2923e035305SBorislav Petkov	 * trap from userspace immediately after SYSRET.  This would cause an
2933e035305SBorislav Petkov	 * infinite loop whenever #DB happens with register state that satisfies
2943e035305SBorislav Petkov	 * the opportunistic SYSRET conditions.  For example, single-stepping
2953e035305SBorislav Petkov	 * this user code:
296905a36a2SIngo Molnar	 *
297905a36a2SIngo Molnar	 *           movq	$stuck_here, %rcx
298905a36a2SIngo Molnar	 *           pushfq
299905a36a2SIngo Molnar	 *           popq %r11
300905a36a2SIngo Molnar	 *   stuck_here:
301905a36a2SIngo Molnar	 *
302905a36a2SIngo Molnar	 * would never get past 'stuck_here'.
303905a36a2SIngo Molnar	 */
304905a36a2SIngo Molnar	testq	$(X86_EFLAGS_RF|X86_EFLAGS_TF), %r11
3058a055d7fSAndy Lutomirski	jnz	swapgs_restore_regs_and_return_to_usermode
306905a36a2SIngo Molnar
307905a36a2SIngo Molnar	/* nothing to check for RSP */
308905a36a2SIngo Molnar
309905a36a2SIngo Molnar	cmpq	$__USER_DS, SS(%rsp)		/* SS must match SYSRET */
3108a055d7fSAndy Lutomirski	jne	swapgs_restore_regs_and_return_to_usermode
311905a36a2SIngo Molnar
312905a36a2SIngo Molnar	/*
313905a36a2SIngo Molnar	 * We win! This label is here just for ease of understanding
314905a36a2SIngo Molnar	 * perf profiles. Nothing jumps here.
315905a36a2SIngo Molnar	 */
316905a36a2SIngo Molnarsyscall_return_via_sysret:
317905a36a2SIngo Molnar	/* rcx and r11 are already restored (see code above) */
3189da78ba6SAndy Lutomirski	RESTORE_EXTRA_REGS
319905a36a2SIngo Molnar	RESTORE_C_REGS_EXCEPT_RCX_R11
320905a36a2SIngo Molnar	movq	RSP(%rsp), %rsp
3218c1f7558SJosh Poimboeuf	UNWIND_HINT_EMPTY
322905a36a2SIngo Molnar	USERGS_SYSRET64
323b2502b41SIngo MolnarEND(entry_SYSCALL_64)
324905a36a2SIngo Molnar
325302f5b26SAndy LutomirskiENTRY(stub_ptregs_64)
326302f5b26SAndy Lutomirski	/*
327302f5b26SAndy Lutomirski	 * Syscalls marked as needing ptregs land here.
328b7765086SAndy Lutomirski	 * If we are on the fast path, we need to save the extra regs,
329b7765086SAndy Lutomirski	 * which we achieve by trying again on the slow path.  If we are on
330b7765086SAndy Lutomirski	 * the slow path, the extra regs are already saved.
331302f5b26SAndy Lutomirski	 *
332302f5b26SAndy Lutomirski	 * RAX stores a pointer to the C function implementing the syscall.
333b7765086SAndy Lutomirski	 * IRQs are on.
334302f5b26SAndy Lutomirski	 */
335302f5b26SAndy Lutomirski	cmpq	$.Lentry_SYSCALL_64_after_fastpath_call, (%rsp)
336302f5b26SAndy Lutomirski	jne	1f
337302f5b26SAndy Lutomirski
338b7765086SAndy Lutomirski	/*
339b7765086SAndy Lutomirski	 * Called from fast path -- disable IRQs again, pop return address
340b7765086SAndy Lutomirski	 * and jump to slow path
341b7765086SAndy Lutomirski	 */
3422140a994SJan Beulich	DISABLE_INTERRUPTS(CLBR_ANY)
343b7765086SAndy Lutomirski	TRACE_IRQS_OFF
344302f5b26SAndy Lutomirski	popq	%rax
3458c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS extra=0
346b7765086SAndy Lutomirski	jmp	entry_SYSCALL64_slow_path
347302f5b26SAndy Lutomirski
348302f5b26SAndy Lutomirski1:
349b3830e8dSBorislav Petkov	jmp	*%rax				/* Called from C */
350302f5b26SAndy LutomirskiEND(stub_ptregs_64)
351302f5b26SAndy Lutomirski
352302f5b26SAndy Lutomirski.macro ptregs_stub func
353302f5b26SAndy LutomirskiENTRY(ptregs_\func)
3548c1f7558SJosh Poimboeuf	UNWIND_HINT_FUNC
355302f5b26SAndy Lutomirski	leaq	\func(%rip), %rax
356302f5b26SAndy Lutomirski	jmp	stub_ptregs_64
357302f5b26SAndy LutomirskiEND(ptregs_\func)
358302f5b26SAndy Lutomirski.endm
359302f5b26SAndy Lutomirski
360302f5b26SAndy Lutomirski/* Instantiate ptregs_stub for each ptregs-using syscall */
361302f5b26SAndy Lutomirski#define __SYSCALL_64_QUAL_(sym)
362302f5b26SAndy Lutomirski#define __SYSCALL_64_QUAL_ptregs(sym) ptregs_stub sym
363302f5b26SAndy Lutomirski#define __SYSCALL_64(nr, sym, qual) __SYSCALL_64_QUAL_##qual(sym)
364302f5b26SAndy Lutomirski#include <asm/syscalls_64.h>
365905a36a2SIngo Molnar
366905a36a2SIngo Molnar/*
3670100301bSBrian Gerst * %rdi: prev task
3680100301bSBrian Gerst * %rsi: next task
3690100301bSBrian Gerst */
3700100301bSBrian GerstENTRY(__switch_to_asm)
3718c1f7558SJosh Poimboeuf	UNWIND_HINT_FUNC
3720100301bSBrian Gerst	/*
3730100301bSBrian Gerst	 * Save callee-saved registers
3740100301bSBrian Gerst	 * This must match the order in inactive_task_frame
3750100301bSBrian Gerst	 */
3760100301bSBrian Gerst	pushq	%rbp
3770100301bSBrian Gerst	pushq	%rbx
3780100301bSBrian Gerst	pushq	%r12
3790100301bSBrian Gerst	pushq	%r13
3800100301bSBrian Gerst	pushq	%r14
3810100301bSBrian Gerst	pushq	%r15
3820100301bSBrian Gerst
3830100301bSBrian Gerst	/* switch stack */
3840100301bSBrian Gerst	movq	%rsp, TASK_threadsp(%rdi)
3850100301bSBrian Gerst	movq	TASK_threadsp(%rsi), %rsp
3860100301bSBrian Gerst
3870100301bSBrian Gerst#ifdef CONFIG_CC_STACKPROTECTOR
3880100301bSBrian Gerst	movq	TASK_stack_canary(%rsi), %rbx
3890100301bSBrian Gerst	movq	%rbx, PER_CPU_VAR(irq_stack_union)+stack_canary_offset
3900100301bSBrian Gerst#endif
3910100301bSBrian Gerst
3920100301bSBrian Gerst	/* restore callee-saved registers */
3930100301bSBrian Gerst	popq	%r15
3940100301bSBrian Gerst	popq	%r14
3950100301bSBrian Gerst	popq	%r13
3960100301bSBrian Gerst	popq	%r12
3970100301bSBrian Gerst	popq	%rbx
3980100301bSBrian Gerst	popq	%rbp
3990100301bSBrian Gerst
4000100301bSBrian Gerst	jmp	__switch_to
4010100301bSBrian GerstEND(__switch_to_asm)
4020100301bSBrian Gerst
4030100301bSBrian Gerst/*
404905a36a2SIngo Molnar * A newly forked process directly context switches into this address.
405905a36a2SIngo Molnar *
4060100301bSBrian Gerst * rax: prev task we switched from
407616d2483SBrian Gerst * rbx: kernel thread func (NULL for user thread)
408616d2483SBrian Gerst * r12: kernel thread arg
409905a36a2SIngo Molnar */
410905a36a2SIngo MolnarENTRY(ret_from_fork)
4118c1f7558SJosh Poimboeuf	UNWIND_HINT_EMPTY
4120100301bSBrian Gerst	movq	%rax, %rdi
4134d732138SIngo Molnar	call	schedule_tail			/* rdi: 'prev' task parameter */
414905a36a2SIngo Molnar
415616d2483SBrian Gerst	testq	%rbx, %rbx			/* from kernel_thread? */
416616d2483SBrian Gerst	jnz	1f				/* kernel threads are uncommon */
417905a36a2SIngo Molnar
418616d2483SBrian Gerst2:
4198c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS
420ebd57499SJosh Poimboeuf	movq	%rsp, %rdi
42124d978b7SAndy Lutomirski	call	syscall_return_slowpath	/* returns with IRQs disabled */
42224d978b7SAndy Lutomirski	TRACE_IRQS_ON			/* user mode is traced as IRQS on */
4238a055d7fSAndy Lutomirski	jmp	swapgs_restore_regs_and_return_to_usermode
424616d2483SBrian Gerst
425616d2483SBrian Gerst1:
426616d2483SBrian Gerst	/* kernel thread */
427616d2483SBrian Gerst	movq	%r12, %rdi
428616d2483SBrian Gerst	call	*%rbx
429616d2483SBrian Gerst	/*
430616d2483SBrian Gerst	 * A kernel thread is allowed to return here after successfully
431616d2483SBrian Gerst	 * calling do_execve().  Exit to userspace to complete the execve()
432616d2483SBrian Gerst	 * syscall.
433616d2483SBrian Gerst	 */
434616d2483SBrian Gerst	movq	$0, RAX(%rsp)
435616d2483SBrian Gerst	jmp	2b
436905a36a2SIngo MolnarEND(ret_from_fork)
437905a36a2SIngo Molnar
438905a36a2SIngo Molnar/*
439905a36a2SIngo Molnar * Build the entry stubs with some assembler magic.
440905a36a2SIngo Molnar * We pack 1 stub into every 8-byte block.
441905a36a2SIngo Molnar */
442905a36a2SIngo Molnar	.align 8
443905a36a2SIngo MolnarENTRY(irq_entries_start)
444905a36a2SIngo Molnar    vector=FIRST_EXTERNAL_VECTOR
445905a36a2SIngo Molnar    .rept (FIRST_SYSTEM_VECTOR - FIRST_EXTERNAL_VECTOR)
4468c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS
447905a36a2SIngo Molnar	pushq	$(~vector+0x80)			/* Note: always in signed byte range */
448905a36a2SIngo Molnar	jmp	common_interrupt
449905a36a2SIngo Molnar	.align	8
4508c1f7558SJosh Poimboeuf	vector=vector+1
451905a36a2SIngo Molnar    .endr
452905a36a2SIngo MolnarEND(irq_entries_start)
453905a36a2SIngo Molnar
4541d3e53e8SAndy Lutomirski.macro DEBUG_ENTRY_ASSERT_IRQS_OFF
4551d3e53e8SAndy Lutomirski#ifdef CONFIG_DEBUG_ENTRY
4561d3e53e8SAndy Lutomirski	pushfq
4571d3e53e8SAndy Lutomirski	testl $X86_EFLAGS_IF, (%rsp)
4581d3e53e8SAndy Lutomirski	jz .Lokay_\@
4591d3e53e8SAndy Lutomirski	ud2
4601d3e53e8SAndy Lutomirski.Lokay_\@:
4611d3e53e8SAndy Lutomirski	addq $8, %rsp
4621d3e53e8SAndy Lutomirski#endif
4631d3e53e8SAndy Lutomirski.endm
4641d3e53e8SAndy Lutomirski
4651d3e53e8SAndy Lutomirski/*
4661d3e53e8SAndy Lutomirski * Enters the IRQ stack if we're not already using it.  NMI-safe.  Clobbers
4671d3e53e8SAndy Lutomirski * flags and puts old RSP into old_rsp, and leaves all other GPRs alone.
4681d3e53e8SAndy Lutomirski * Requires kernel GSBASE.
4691d3e53e8SAndy Lutomirski *
4701d3e53e8SAndy Lutomirski * The invariant is that, if irq_count != -1, then the IRQ stack is in use.
4711d3e53e8SAndy Lutomirski */
4728c1f7558SJosh Poimboeuf.macro ENTER_IRQ_STACK regs=1 old_rsp
4731d3e53e8SAndy Lutomirski	DEBUG_ENTRY_ASSERT_IRQS_OFF
4741d3e53e8SAndy Lutomirski	movq	%rsp, \old_rsp
4758c1f7558SJosh Poimboeuf
4768c1f7558SJosh Poimboeuf	.if \regs
4778c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS base=\old_rsp
4788c1f7558SJosh Poimboeuf	.endif
4798c1f7558SJosh Poimboeuf
4801d3e53e8SAndy Lutomirski	incl	PER_CPU_VAR(irq_count)
48129955909SAndy Lutomirski	jnz	.Lirq_stack_push_old_rsp_\@
4821d3e53e8SAndy Lutomirski
4831d3e53e8SAndy Lutomirski	/*
4841d3e53e8SAndy Lutomirski	 * Right now, if we just incremented irq_count to zero, we've
4851d3e53e8SAndy Lutomirski	 * claimed the IRQ stack but we haven't switched to it yet.
4861d3e53e8SAndy Lutomirski	 *
4871d3e53e8SAndy Lutomirski	 * If anything is added that can interrupt us here without using IST,
4881d3e53e8SAndy Lutomirski	 * it must be *extremely* careful to limit its stack usage.  This
4891d3e53e8SAndy Lutomirski	 * could include kprobes and a hypothetical future IST-less #DB
4901d3e53e8SAndy Lutomirski	 * handler.
49129955909SAndy Lutomirski	 *
49229955909SAndy Lutomirski	 * The OOPS unwinder relies on the word at the top of the IRQ
49329955909SAndy Lutomirski	 * stack linking back to the previous RSP for the entire time we're
49429955909SAndy Lutomirski	 * on the IRQ stack.  For this to work reliably, we need to write
49529955909SAndy Lutomirski	 * it before we actually move ourselves to the IRQ stack.
4961d3e53e8SAndy Lutomirski	 */
4971d3e53e8SAndy Lutomirski
49829955909SAndy Lutomirski	movq	\old_rsp, PER_CPU_VAR(irq_stack_union + IRQ_STACK_SIZE - 8)
49929955909SAndy Lutomirski	movq	PER_CPU_VAR(irq_stack_ptr), %rsp
50029955909SAndy Lutomirski
50129955909SAndy Lutomirski#ifdef CONFIG_DEBUG_ENTRY
50229955909SAndy Lutomirski	/*
50329955909SAndy Lutomirski	 * If the first movq above becomes wrong due to IRQ stack layout
50429955909SAndy Lutomirski	 * changes, the only way we'll notice is if we try to unwind right
50529955909SAndy Lutomirski	 * here.  Assert that we set up the stack right to catch this type
50629955909SAndy Lutomirski	 * of bug quickly.
50729955909SAndy Lutomirski	 */
50829955909SAndy Lutomirski	cmpq	-8(%rsp), \old_rsp
50929955909SAndy Lutomirski	je	.Lirq_stack_okay\@
51029955909SAndy Lutomirski	ud2
51129955909SAndy Lutomirski	.Lirq_stack_okay\@:
51229955909SAndy Lutomirski#endif
51329955909SAndy Lutomirski
51429955909SAndy Lutomirski.Lirq_stack_push_old_rsp_\@:
5151d3e53e8SAndy Lutomirski	pushq	\old_rsp
5168c1f7558SJosh Poimboeuf
5178c1f7558SJosh Poimboeuf	.if \regs
5188c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS indirect=1
5198c1f7558SJosh Poimboeuf	.endif
5201d3e53e8SAndy Lutomirski.endm
5211d3e53e8SAndy Lutomirski
5221d3e53e8SAndy Lutomirski/*
5231d3e53e8SAndy Lutomirski * Undoes ENTER_IRQ_STACK.
5241d3e53e8SAndy Lutomirski */
5258c1f7558SJosh Poimboeuf.macro LEAVE_IRQ_STACK regs=1
5261d3e53e8SAndy Lutomirski	DEBUG_ENTRY_ASSERT_IRQS_OFF
5271d3e53e8SAndy Lutomirski	/* We need to be off the IRQ stack before decrementing irq_count. */
5281d3e53e8SAndy Lutomirski	popq	%rsp
5291d3e53e8SAndy Lutomirski
5308c1f7558SJosh Poimboeuf	.if \regs
5318c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS
5328c1f7558SJosh Poimboeuf	.endif
5338c1f7558SJosh Poimboeuf
5341d3e53e8SAndy Lutomirski	/*
5351d3e53e8SAndy Lutomirski	 * As in ENTER_IRQ_STACK, irq_count == 0, we are still claiming
5361d3e53e8SAndy Lutomirski	 * the irq stack but we're not on it.
5371d3e53e8SAndy Lutomirski	 */
5381d3e53e8SAndy Lutomirski
5391d3e53e8SAndy Lutomirski	decl	PER_CPU_VAR(irq_count)
5401d3e53e8SAndy Lutomirski.endm
5411d3e53e8SAndy Lutomirski
542905a36a2SIngo Molnar/*
543905a36a2SIngo Molnar * Interrupt entry/exit.
544905a36a2SIngo Molnar *
545905a36a2SIngo Molnar * Interrupt entry points save only callee clobbered registers in fast path.
546905a36a2SIngo Molnar *
547905a36a2SIngo Molnar * Entry runs with interrupts off.
548905a36a2SIngo Molnar */
549905a36a2SIngo Molnar
550905a36a2SIngo Molnar/* 0(%rsp): ~(interrupt number) */
551905a36a2SIngo Molnar	.macro interrupt func
552905a36a2SIngo Molnar	cld
553ff467594SAndy Lutomirski	ALLOC_PT_GPREGS_ON_STACK
554ff467594SAndy Lutomirski	SAVE_C_REGS
555ff467594SAndy Lutomirski	SAVE_EXTRA_REGS
556946c1911SJosh Poimboeuf	ENCODE_FRAME_POINTER
557905a36a2SIngo Molnar
558ff467594SAndy Lutomirski	testb	$3, CS(%rsp)
559905a36a2SIngo Molnar	jz	1f
56002bc7768SAndy Lutomirski
56102bc7768SAndy Lutomirski	/*
56202bc7768SAndy Lutomirski	 * IRQ from user mode.  Switch to kernel gsbase and inform context
56302bc7768SAndy Lutomirski	 * tracking that we're in kernel mode.
56402bc7768SAndy Lutomirski	 */
565905a36a2SIngo Molnar	SWAPGS
566f1075053SAndy Lutomirski
567f1075053SAndy Lutomirski	/*
568f1075053SAndy Lutomirski	 * We need to tell lockdep that IRQs are off.  We can't do this until
569f1075053SAndy Lutomirski	 * we fix gsbase, and we should do it before enter_from_user_mode
570f1075053SAndy Lutomirski	 * (which can take locks).  Since TRACE_IRQS_OFF idempotent,
571f1075053SAndy Lutomirski	 * the simplest way to handle it is to just call it twice if
572f1075053SAndy Lutomirski	 * we enter from user mode.  There's no reason to optimize this since
573f1075053SAndy Lutomirski	 * TRACE_IRQS_OFF is a no-op if lockdep is off.
574f1075053SAndy Lutomirski	 */
575f1075053SAndy Lutomirski	TRACE_IRQS_OFF
576f1075053SAndy Lutomirski
577478dc89cSAndy Lutomirski	CALL_enter_from_user_mode
57802bc7768SAndy Lutomirski
579905a36a2SIngo Molnar1:
5801d3e53e8SAndy Lutomirski	ENTER_IRQ_STACK old_rsp=%rdi
581905a36a2SIngo Molnar	/* We entered an interrupt context - irqs are off: */
582905a36a2SIngo Molnar	TRACE_IRQS_OFF
583905a36a2SIngo Molnar
584a586f98eSAndy Lutomirski	call	\func	/* rdi points to pt_regs */
585905a36a2SIngo Molnar	.endm
586905a36a2SIngo Molnar
587905a36a2SIngo Molnar	/*
588905a36a2SIngo Molnar	 * The interrupt stubs push (~vector+0x80) onto the stack and
589905a36a2SIngo Molnar	 * then jump to common_interrupt.
590905a36a2SIngo Molnar	 */
591905a36a2SIngo Molnar	.p2align CONFIG_X86_L1_CACHE_SHIFT
592905a36a2SIngo Molnarcommon_interrupt:
593905a36a2SIngo Molnar	ASM_CLAC
594905a36a2SIngo Molnar	addq	$-0x80, (%rsp)			/* Adjust vector to [-256, -1] range */
595905a36a2SIngo Molnar	interrupt do_IRQ
596905a36a2SIngo Molnar	/* 0(%rsp): old RSP */
597905a36a2SIngo Molnarret_from_intr:
5982140a994SJan Beulich	DISABLE_INTERRUPTS(CLBR_ANY)
599905a36a2SIngo Molnar	TRACE_IRQS_OFF
600905a36a2SIngo Molnar
6011d3e53e8SAndy Lutomirski	LEAVE_IRQ_STACK
602905a36a2SIngo Molnar
603905a36a2SIngo Molnar	testb	$3, CS(%rsp)
604905a36a2SIngo Molnar	jz	retint_kernel
60502bc7768SAndy Lutomirski
606905a36a2SIngo Molnar	/* Interrupt came from user space */
60702bc7768SAndy LutomirskiGLOBAL(retint_user)
60802bc7768SAndy Lutomirski	mov	%rsp,%rdi
60902bc7768SAndy Lutomirski	call	prepare_exit_to_usermode
610905a36a2SIngo Molnar	TRACE_IRQS_IRETQ
61126c4ef9cSAndy Lutomirski
6128a055d7fSAndy LutomirskiGLOBAL(swapgs_restore_regs_and_return_to_usermode)
61326c4ef9cSAndy Lutomirski#ifdef CONFIG_DEBUG_ENTRY
61426c4ef9cSAndy Lutomirski	/* Assert that pt_regs indicates user mode. */
61526c4ef9cSAndy Lutomirski	testl	$3, CS(%rsp)
61626c4ef9cSAndy Lutomirski	jnz	1f
61726c4ef9cSAndy Lutomirski	ud2
61826c4ef9cSAndy Lutomirski1:
61926c4ef9cSAndy Lutomirski#endif
6208a055d7fSAndy Lutomirski	SWAPGS
621*e872045bSAndy Lutomirski	POP_EXTRA_REGS
622*e872045bSAndy Lutomirski	POP_C_REGS
623*e872045bSAndy Lutomirski	addq	$8, %rsp	/* skip regs->orig_ax */
62426c4ef9cSAndy Lutomirski	INTERRUPT_RETURN
62526c4ef9cSAndy Lutomirski
626905a36a2SIngo Molnar
627905a36a2SIngo Molnar/* Returning to kernel space */
628905a36a2SIngo Molnarretint_kernel:
629905a36a2SIngo Molnar#ifdef CONFIG_PREEMPT
630905a36a2SIngo Molnar	/* Interrupts are off */
631905a36a2SIngo Molnar	/* Check if we need preemption */
6324d732138SIngo Molnar	bt	$9, EFLAGS(%rsp)		/* were interrupts off? */
633905a36a2SIngo Molnar	jnc	1f
634905a36a2SIngo Molnar0:	cmpl	$0, PER_CPU_VAR(__preempt_count)
635905a36a2SIngo Molnar	jnz	1f
636905a36a2SIngo Molnar	call	preempt_schedule_irq
637905a36a2SIngo Molnar	jmp	0b
638905a36a2SIngo Molnar1:
639905a36a2SIngo Molnar#endif
640905a36a2SIngo Molnar	/*
641905a36a2SIngo Molnar	 * The iretq could re-enable interrupts:
642905a36a2SIngo Molnar	 */
643905a36a2SIngo Molnar	TRACE_IRQS_IRETQ
644905a36a2SIngo Molnar
64526c4ef9cSAndy LutomirskiGLOBAL(restore_regs_and_return_to_kernel)
64626c4ef9cSAndy Lutomirski#ifdef CONFIG_DEBUG_ENTRY
64726c4ef9cSAndy Lutomirski	/* Assert that pt_regs indicates kernel mode. */
64826c4ef9cSAndy Lutomirski	testl	$3, CS(%rsp)
64926c4ef9cSAndy Lutomirski	jz	1f
65026c4ef9cSAndy Lutomirski	ud2
65126c4ef9cSAndy Lutomirski1:
65226c4ef9cSAndy Lutomirski#endif
653*e872045bSAndy Lutomirski	POP_EXTRA_REGS
654*e872045bSAndy Lutomirski	POP_C_REGS
655*e872045bSAndy Lutomirski	addq	$8, %rsp	/* skip regs->orig_ax */
656905a36a2SIngo Molnar	INTERRUPT_RETURN
657905a36a2SIngo Molnar
658905a36a2SIngo MolnarENTRY(native_iret)
6598c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS
660905a36a2SIngo Molnar	/*
661905a36a2SIngo Molnar	 * Are we returning to a stack segment from the LDT?  Note: in
662905a36a2SIngo Molnar	 * 64-bit mode SS:RSP on the exception stack is always valid.
663905a36a2SIngo Molnar	 */
664905a36a2SIngo Molnar#ifdef CONFIG_X86_ESPFIX64
665905a36a2SIngo Molnar	testb	$4, (SS-RIP)(%rsp)
666905a36a2SIngo Molnar	jnz	native_irq_return_ldt
667905a36a2SIngo Molnar#endif
668905a36a2SIngo Molnar
669905a36a2SIngo Molnar.global native_irq_return_iret
670905a36a2SIngo Molnarnative_irq_return_iret:
671905a36a2SIngo Molnar	/*
672905a36a2SIngo Molnar	 * This may fault.  Non-paranoid faults on return to userspace are
673905a36a2SIngo Molnar	 * handled by fixup_bad_iret.  These include #SS, #GP, and #NP.
674905a36a2SIngo Molnar	 * Double-faults due to espfix64 are handled in do_double_fault.
675905a36a2SIngo Molnar	 * Other faults here are fatal.
676905a36a2SIngo Molnar	 */
677905a36a2SIngo Molnar	iretq
678905a36a2SIngo Molnar
679905a36a2SIngo Molnar#ifdef CONFIG_X86_ESPFIX64
680905a36a2SIngo Molnarnative_irq_return_ldt:
68185063facSAndy Lutomirski	/*
68285063facSAndy Lutomirski	 * We are running with user GSBASE.  All GPRs contain their user
68385063facSAndy Lutomirski	 * values.  We have a percpu ESPFIX stack that is eight slots
68485063facSAndy Lutomirski	 * long (see ESPFIX_STACK_SIZE).  espfix_waddr points to the bottom
68585063facSAndy Lutomirski	 * of the ESPFIX stack.
68685063facSAndy Lutomirski	 *
68785063facSAndy Lutomirski	 * We clobber RAX and RDI in this code.  We stash RDI on the
68885063facSAndy Lutomirski	 * normal stack and RAX on the ESPFIX stack.
68985063facSAndy Lutomirski	 *
69085063facSAndy Lutomirski	 * The ESPFIX stack layout we set up looks like this:
69185063facSAndy Lutomirski	 *
69285063facSAndy Lutomirski	 * --- top of ESPFIX stack ---
69385063facSAndy Lutomirski	 * SS
69485063facSAndy Lutomirski	 * RSP
69585063facSAndy Lutomirski	 * RFLAGS
69685063facSAndy Lutomirski	 * CS
69785063facSAndy Lutomirski	 * RIP  <-- RSP points here when we're done
69885063facSAndy Lutomirski	 * RAX  <-- espfix_waddr points here
69985063facSAndy Lutomirski	 * --- bottom of ESPFIX stack ---
70085063facSAndy Lutomirski	 */
70185063facSAndy Lutomirski
70285063facSAndy Lutomirski	pushq	%rdi				/* Stash user RDI */
703905a36a2SIngo Molnar	SWAPGS
704905a36a2SIngo Molnar	movq	PER_CPU_VAR(espfix_waddr), %rdi
70585063facSAndy Lutomirski	movq	%rax, (0*8)(%rdi)		/* user RAX */
70685063facSAndy Lutomirski	movq	(1*8)(%rsp), %rax		/* user RIP */
707905a36a2SIngo Molnar	movq	%rax, (1*8)(%rdi)
70885063facSAndy Lutomirski	movq	(2*8)(%rsp), %rax		/* user CS */
709905a36a2SIngo Molnar	movq	%rax, (2*8)(%rdi)
71085063facSAndy Lutomirski	movq	(3*8)(%rsp), %rax		/* user RFLAGS */
711905a36a2SIngo Molnar	movq	%rax, (3*8)(%rdi)
71285063facSAndy Lutomirski	movq	(5*8)(%rsp), %rax		/* user SS */
713905a36a2SIngo Molnar	movq	%rax, (5*8)(%rdi)
71485063facSAndy Lutomirski	movq	(4*8)(%rsp), %rax		/* user RSP */
715905a36a2SIngo Molnar	movq	%rax, (4*8)(%rdi)
71685063facSAndy Lutomirski	/* Now RAX == RSP. */
71785063facSAndy Lutomirski
71885063facSAndy Lutomirski	andl	$0xffff0000, %eax		/* RAX = (RSP & 0xffff0000) */
71985063facSAndy Lutomirski	popq	%rdi				/* Restore user RDI */
72085063facSAndy Lutomirski
72185063facSAndy Lutomirski	/*
72285063facSAndy Lutomirski	 * espfix_stack[31:16] == 0.  The page tables are set up such that
72385063facSAndy Lutomirski	 * (espfix_stack | (X & 0xffff0000)) points to a read-only alias of
72485063facSAndy Lutomirski	 * espfix_waddr for any X.  That is, there are 65536 RO aliases of
72585063facSAndy Lutomirski	 * the same page.  Set up RSP so that RSP[31:16] contains the
72685063facSAndy Lutomirski	 * respective 16 bits of the /userspace/ RSP and RSP nonetheless
72785063facSAndy Lutomirski	 * still points to an RO alias of the ESPFIX stack.
72885063facSAndy Lutomirski	 */
729905a36a2SIngo Molnar	orq	PER_CPU_VAR(espfix_stack), %rax
730905a36a2SIngo Molnar	SWAPGS
731905a36a2SIngo Molnar	movq	%rax, %rsp
7328c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS offset=8
73385063facSAndy Lutomirski
73485063facSAndy Lutomirski	/*
73585063facSAndy Lutomirski	 * At this point, we cannot write to the stack any more, but we can
73685063facSAndy Lutomirski	 * still read.
73785063facSAndy Lutomirski	 */
73885063facSAndy Lutomirski	popq	%rax				/* Restore user RAX */
73985063facSAndy Lutomirski
74085063facSAndy Lutomirski	/*
74185063facSAndy Lutomirski	 * RSP now points to an ordinary IRET frame, except that the page
74285063facSAndy Lutomirski	 * is read-only and RSP[31:16] are preloaded with the userspace
74385063facSAndy Lutomirski	 * values.  We can now IRET back to userspace.
74485063facSAndy Lutomirski	 */
745905a36a2SIngo Molnar	jmp	native_irq_return_iret
746905a36a2SIngo Molnar#endif
747905a36a2SIngo MolnarEND(common_interrupt)
748905a36a2SIngo Molnar
749905a36a2SIngo Molnar/*
750905a36a2SIngo Molnar * APIC interrupts.
751905a36a2SIngo Molnar */
752905a36a2SIngo Molnar.macro apicinterrupt3 num sym do_sym
753905a36a2SIngo MolnarENTRY(\sym)
7548c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS
755905a36a2SIngo Molnar	ASM_CLAC
756905a36a2SIngo Molnar	pushq	$~(\num)
757905a36a2SIngo Molnar.Lcommon_\sym:
758905a36a2SIngo Molnar	interrupt \do_sym
759905a36a2SIngo Molnar	jmp	ret_from_intr
760905a36a2SIngo MolnarEND(\sym)
761905a36a2SIngo Molnar.endm
762905a36a2SIngo Molnar
763469f0023SAlexander Potapenko/* Make sure APIC interrupt handlers end up in the irqentry section: */
764469f0023SAlexander Potapenko#define PUSH_SECTION_IRQENTRY	.pushsection .irqentry.text, "ax"
765469f0023SAlexander Potapenko#define POP_SECTION_IRQENTRY	.popsection
766469f0023SAlexander Potapenko
767905a36a2SIngo Molnar.macro apicinterrupt num sym do_sym
768469f0023SAlexander PotapenkoPUSH_SECTION_IRQENTRY
769905a36a2SIngo Molnarapicinterrupt3 \num \sym \do_sym
770469f0023SAlexander PotapenkoPOP_SECTION_IRQENTRY
771905a36a2SIngo Molnar.endm
772905a36a2SIngo Molnar
773905a36a2SIngo Molnar#ifdef CONFIG_SMP
7744d732138SIngo Molnarapicinterrupt3 IRQ_MOVE_CLEANUP_VECTOR		irq_move_cleanup_interrupt	smp_irq_move_cleanup_interrupt
7754d732138SIngo Molnarapicinterrupt3 REBOOT_VECTOR			reboot_interrupt		smp_reboot_interrupt
776905a36a2SIngo Molnar#endif
777905a36a2SIngo Molnar
778905a36a2SIngo Molnar#ifdef CONFIG_X86_UV
7794d732138SIngo Molnarapicinterrupt3 UV_BAU_MESSAGE			uv_bau_message_intr1		uv_bau_message_interrupt
780905a36a2SIngo Molnar#endif
7814d732138SIngo Molnar
7824d732138SIngo Molnarapicinterrupt LOCAL_TIMER_VECTOR		apic_timer_interrupt		smp_apic_timer_interrupt
7834d732138SIngo Molnarapicinterrupt X86_PLATFORM_IPI_VECTOR		x86_platform_ipi		smp_x86_platform_ipi
784905a36a2SIngo Molnar
785905a36a2SIngo Molnar#ifdef CONFIG_HAVE_KVM
7864d732138SIngo Molnarapicinterrupt3 POSTED_INTR_VECTOR		kvm_posted_intr_ipi		smp_kvm_posted_intr_ipi
7874d732138SIngo Molnarapicinterrupt3 POSTED_INTR_WAKEUP_VECTOR	kvm_posted_intr_wakeup_ipi	smp_kvm_posted_intr_wakeup_ipi
788210f84b0SWincy Vanapicinterrupt3 POSTED_INTR_NESTED_VECTOR	kvm_posted_intr_nested_ipi	smp_kvm_posted_intr_nested_ipi
789905a36a2SIngo Molnar#endif
790905a36a2SIngo Molnar
791905a36a2SIngo Molnar#ifdef CONFIG_X86_MCE_THRESHOLD
7924d732138SIngo Molnarapicinterrupt THRESHOLD_APIC_VECTOR		threshold_interrupt		smp_threshold_interrupt
793905a36a2SIngo Molnar#endif
794905a36a2SIngo Molnar
7959dda1658SIngo Molnar#ifdef CONFIG_X86_MCE_AMD
7964d732138SIngo Molnarapicinterrupt DEFERRED_ERROR_VECTOR		deferred_error_interrupt	smp_deferred_error_interrupt
7979dda1658SIngo Molnar#endif
7989dda1658SIngo Molnar
799905a36a2SIngo Molnar#ifdef CONFIG_X86_THERMAL_VECTOR
8004d732138SIngo Molnarapicinterrupt THERMAL_APIC_VECTOR		thermal_interrupt		smp_thermal_interrupt
801905a36a2SIngo Molnar#endif
802905a36a2SIngo Molnar
803905a36a2SIngo Molnar#ifdef CONFIG_SMP
8044d732138SIngo Molnarapicinterrupt CALL_FUNCTION_SINGLE_VECTOR	call_function_single_interrupt	smp_call_function_single_interrupt
8054d732138SIngo Molnarapicinterrupt CALL_FUNCTION_VECTOR		call_function_interrupt		smp_call_function_interrupt
8064d732138SIngo Molnarapicinterrupt RESCHEDULE_VECTOR			reschedule_interrupt		smp_reschedule_interrupt
807905a36a2SIngo Molnar#endif
808905a36a2SIngo Molnar
8094d732138SIngo Molnarapicinterrupt ERROR_APIC_VECTOR			error_interrupt			smp_error_interrupt
8104d732138SIngo Molnarapicinterrupt SPURIOUS_APIC_VECTOR		spurious_interrupt		smp_spurious_interrupt
811905a36a2SIngo Molnar
812905a36a2SIngo Molnar#ifdef CONFIG_IRQ_WORK
8134d732138SIngo Molnarapicinterrupt IRQ_WORK_VECTOR			irq_work_interrupt		smp_irq_work_interrupt
814905a36a2SIngo Molnar#endif
815905a36a2SIngo Molnar
816905a36a2SIngo Molnar/*
817905a36a2SIngo Molnar * Exception entry points.
818905a36a2SIngo Molnar */
819905a36a2SIngo Molnar#define CPU_TSS_IST(x) PER_CPU_VAR(cpu_tss) + (TSS_ist + ((x) - 1) * 8)
820905a36a2SIngo Molnar
821905a36a2SIngo Molnar.macro idtentry sym do_sym has_error_code:req paranoid=0 shift_ist=-1
822905a36a2SIngo MolnarENTRY(\sym)
82398990a33SJosh Poimboeuf	UNWIND_HINT_IRET_REGS offset=\has_error_code*8
8248c1f7558SJosh Poimboeuf
825905a36a2SIngo Molnar	/* Sanity check */
826905a36a2SIngo Molnar	.if \shift_ist != -1 && \paranoid == 0
827905a36a2SIngo Molnar	.error "using shift_ist requires paranoid=1"
828905a36a2SIngo Molnar	.endif
829905a36a2SIngo Molnar
830905a36a2SIngo Molnar	ASM_CLAC
831905a36a2SIngo Molnar
83282c62fa0SJosh Poimboeuf	.if \has_error_code == 0
833905a36a2SIngo Molnar	pushq	$-1				/* ORIG_RAX: no syscall to restart */
834905a36a2SIngo Molnar	.endif
835905a36a2SIngo Molnar
836905a36a2SIngo Molnar	ALLOC_PT_GPREGS_ON_STACK
837905a36a2SIngo Molnar
838905a36a2SIngo Molnar	.if \paranoid
839905a36a2SIngo Molnar	.if \paranoid == 1
8404d732138SIngo Molnar	testb	$3, CS(%rsp)			/* If coming from userspace, switch stacks */
8414d732138SIngo Molnar	jnz	1f
842905a36a2SIngo Molnar	.endif
843905a36a2SIngo Molnar	call	paranoid_entry
844905a36a2SIngo Molnar	.else
845905a36a2SIngo Molnar	call	error_entry
846905a36a2SIngo Molnar	.endif
8478c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS
848905a36a2SIngo Molnar	/* returned flag: ebx=0: need swapgs on exit, ebx=1: don't need it */
849905a36a2SIngo Molnar
850905a36a2SIngo Molnar	.if \paranoid
851905a36a2SIngo Molnar	.if \shift_ist != -1
852905a36a2SIngo Molnar	TRACE_IRQS_OFF_DEBUG			/* reload IDT in case of recursion */
853905a36a2SIngo Molnar	.else
854905a36a2SIngo Molnar	TRACE_IRQS_OFF
855905a36a2SIngo Molnar	.endif
856905a36a2SIngo Molnar	.endif
857905a36a2SIngo Molnar
858905a36a2SIngo Molnar	movq	%rsp, %rdi			/* pt_regs pointer */
859905a36a2SIngo Molnar
860905a36a2SIngo Molnar	.if \has_error_code
861905a36a2SIngo Molnar	movq	ORIG_RAX(%rsp), %rsi		/* get error code */
862905a36a2SIngo Molnar	movq	$-1, ORIG_RAX(%rsp)		/* no syscall to restart */
863905a36a2SIngo Molnar	.else
864905a36a2SIngo Molnar	xorl	%esi, %esi			/* no error code */
865905a36a2SIngo Molnar	.endif
866905a36a2SIngo Molnar
867905a36a2SIngo Molnar	.if \shift_ist != -1
868905a36a2SIngo Molnar	subq	$EXCEPTION_STKSZ, CPU_TSS_IST(\shift_ist)
869905a36a2SIngo Molnar	.endif
870905a36a2SIngo Molnar
871905a36a2SIngo Molnar	call	\do_sym
872905a36a2SIngo Molnar
873905a36a2SIngo Molnar	.if \shift_ist != -1
874905a36a2SIngo Molnar	addq	$EXCEPTION_STKSZ, CPU_TSS_IST(\shift_ist)
875905a36a2SIngo Molnar	.endif
876905a36a2SIngo Molnar
877905a36a2SIngo Molnar	/* these procedures expect "no swapgs" flag in ebx */
878905a36a2SIngo Molnar	.if \paranoid
879905a36a2SIngo Molnar	jmp	paranoid_exit
880905a36a2SIngo Molnar	.else
881905a36a2SIngo Molnar	jmp	error_exit
882905a36a2SIngo Molnar	.endif
883905a36a2SIngo Molnar
884905a36a2SIngo Molnar	.if \paranoid == 1
885905a36a2SIngo Molnar	/*
886905a36a2SIngo Molnar	 * Paranoid entry from userspace.  Switch stacks and treat it
887905a36a2SIngo Molnar	 * as a normal entry.  This means that paranoid handlers
888905a36a2SIngo Molnar	 * run in real process context if user_mode(regs).
889905a36a2SIngo Molnar	 */
890905a36a2SIngo Molnar1:
891905a36a2SIngo Molnar	call	error_entry
892905a36a2SIngo Molnar
893905a36a2SIngo Molnar
894905a36a2SIngo Molnar	movq	%rsp, %rdi			/* pt_regs pointer */
895905a36a2SIngo Molnar	call	sync_regs
896905a36a2SIngo Molnar	movq	%rax, %rsp			/* switch stack */
897905a36a2SIngo Molnar
898905a36a2SIngo Molnar	movq	%rsp, %rdi			/* pt_regs pointer */
899905a36a2SIngo Molnar
900905a36a2SIngo Molnar	.if \has_error_code
901905a36a2SIngo Molnar	movq	ORIG_RAX(%rsp), %rsi		/* get error code */
902905a36a2SIngo Molnar	movq	$-1, ORIG_RAX(%rsp)		/* no syscall to restart */
903905a36a2SIngo Molnar	.else
904905a36a2SIngo Molnar	xorl	%esi, %esi			/* no error code */
905905a36a2SIngo Molnar	.endif
906905a36a2SIngo Molnar
907905a36a2SIngo Molnar	call	\do_sym
908905a36a2SIngo Molnar
909905a36a2SIngo Molnar	jmp	error_exit			/* %ebx: no swapgs flag */
910905a36a2SIngo Molnar	.endif
911905a36a2SIngo MolnarEND(\sym)
912905a36a2SIngo Molnar.endm
913905a36a2SIngo Molnar
914905a36a2SIngo Molnaridtentry divide_error			do_divide_error			has_error_code=0
915905a36a2SIngo Molnaridtentry overflow			do_overflow			has_error_code=0
916905a36a2SIngo Molnaridtentry bounds				do_bounds			has_error_code=0
917905a36a2SIngo Molnaridtentry invalid_op			do_invalid_op			has_error_code=0
918905a36a2SIngo Molnaridtentry device_not_available		do_device_not_available		has_error_code=0
919905a36a2SIngo Molnaridtentry double_fault			do_double_fault			has_error_code=1 paranoid=2
920905a36a2SIngo Molnaridtentry coprocessor_segment_overrun	do_coprocessor_segment_overrun	has_error_code=0
921905a36a2SIngo Molnaridtentry invalid_TSS			do_invalid_TSS			has_error_code=1
922905a36a2SIngo Molnaridtentry segment_not_present		do_segment_not_present		has_error_code=1
923905a36a2SIngo Molnaridtentry spurious_interrupt_bug		do_spurious_interrupt_bug	has_error_code=0
924905a36a2SIngo Molnaridtentry coprocessor_error		do_coprocessor_error		has_error_code=0
925905a36a2SIngo Molnaridtentry alignment_check		do_alignment_check		has_error_code=1
926905a36a2SIngo Molnaridtentry simd_coprocessor_error		do_simd_coprocessor_error	has_error_code=0
927905a36a2SIngo Molnar
928905a36a2SIngo Molnar
9294d732138SIngo Molnar	/*
9304d732138SIngo Molnar	 * Reload gs selector with exception handling
9314d732138SIngo Molnar	 * edi:  new selector
9324d732138SIngo Molnar	 */
933905a36a2SIngo MolnarENTRY(native_load_gs_index)
9348c1f7558SJosh Poimboeuf	FRAME_BEGIN
935905a36a2SIngo Molnar	pushfq
936905a36a2SIngo Molnar	DISABLE_INTERRUPTS(CLBR_ANY & ~CLBR_RDI)
937905a36a2SIngo Molnar	SWAPGS
93842c748bbSBorislav Petkov.Lgs_change:
939905a36a2SIngo Molnar	movl	%edi, %gs
94096e5d28aSBorislav Petkov2:	ALTERNATIVE "", "mfence", X86_BUG_SWAPGS_FENCE
941905a36a2SIngo Molnar	SWAPGS
942905a36a2SIngo Molnar	popfq
9438c1f7558SJosh Poimboeuf	FRAME_END
944905a36a2SIngo Molnar	ret
9458c1f7558SJosh PoimboeufENDPROC(native_load_gs_index)
946784d5699SAl ViroEXPORT_SYMBOL(native_load_gs_index)
947905a36a2SIngo Molnar
94842c748bbSBorislav Petkov	_ASM_EXTABLE(.Lgs_change, bad_gs)
949905a36a2SIngo Molnar	.section .fixup, "ax"
950905a36a2SIngo Molnar	/* running with kernelgs */
951905a36a2SIngo Molnarbad_gs:
952905a36a2SIngo Molnar	SWAPGS					/* switch back to user gs */
953b038c842SAndy Lutomirski.macro ZAP_GS
954b038c842SAndy Lutomirski	/* This can't be a string because the preprocessor needs to see it. */
955b038c842SAndy Lutomirski	movl $__USER_DS, %eax
956b038c842SAndy Lutomirski	movl %eax, %gs
957b038c842SAndy Lutomirski.endm
958b038c842SAndy Lutomirski	ALTERNATIVE "", "ZAP_GS", X86_BUG_NULL_SEG
959905a36a2SIngo Molnar	xorl	%eax, %eax
960905a36a2SIngo Molnar	movl	%eax, %gs
961905a36a2SIngo Molnar	jmp	2b
962905a36a2SIngo Molnar	.previous
963905a36a2SIngo Molnar
964905a36a2SIngo Molnar/* Call softirq on interrupt stack. Interrupts are off. */
965905a36a2SIngo MolnarENTRY(do_softirq_own_stack)
966905a36a2SIngo Molnar	pushq	%rbp
967905a36a2SIngo Molnar	mov	%rsp, %rbp
9688c1f7558SJosh Poimboeuf	ENTER_IRQ_STACK regs=0 old_rsp=%r11
969905a36a2SIngo Molnar	call	__do_softirq
9708c1f7558SJosh Poimboeuf	LEAVE_IRQ_STACK regs=0
971905a36a2SIngo Molnar	leaveq
972905a36a2SIngo Molnar	ret
9738c1f7558SJosh PoimboeufENDPROC(do_softirq_own_stack)
974905a36a2SIngo Molnar
975905a36a2SIngo Molnar#ifdef CONFIG_XEN
9765878d5d6SJuergen Grossidtentry hypervisor_callback xen_do_hypervisor_callback has_error_code=0
977905a36a2SIngo Molnar
978905a36a2SIngo Molnar/*
979905a36a2SIngo Molnar * A note on the "critical region" in our callback handler.
980905a36a2SIngo Molnar * We want to avoid stacking callback handlers due to events occurring
981905a36a2SIngo Molnar * during handling of the last event. To do this, we keep events disabled
982905a36a2SIngo Molnar * until we've done all processing. HOWEVER, we must enable events before
983905a36a2SIngo Molnar * popping the stack frame (can't be done atomically) and so it would still
984905a36a2SIngo Molnar * be possible to get enough handler activations to overflow the stack.
985905a36a2SIngo Molnar * Although unlikely, bugs of that kind are hard to track down, so we'd
986905a36a2SIngo Molnar * like to avoid the possibility.
987905a36a2SIngo Molnar * So, on entry to the handler we detect whether we interrupted an
988905a36a2SIngo Molnar * existing activation in its critical region -- if so, we pop the current
989905a36a2SIngo Molnar * activation and restart the handler using the previous one.
990905a36a2SIngo Molnar */
9914d732138SIngo MolnarENTRY(xen_do_hypervisor_callback)		/* do_hypervisor_callback(struct *pt_regs) */
9924d732138SIngo Molnar
993905a36a2SIngo Molnar/*
994905a36a2SIngo Molnar * Since we don't modify %rdi, evtchn_do_upall(struct *pt_regs) will
995905a36a2SIngo Molnar * see the correct pointer to the pt_regs
996905a36a2SIngo Molnar */
9978c1f7558SJosh Poimboeuf	UNWIND_HINT_FUNC
9984d732138SIngo Molnar	movq	%rdi, %rsp			/* we don't return, adjust the stack frame */
9998c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS
10001d3e53e8SAndy Lutomirski
10011d3e53e8SAndy Lutomirski	ENTER_IRQ_STACK old_rsp=%r10
1002905a36a2SIngo Molnar	call	xen_evtchn_do_upcall
10031d3e53e8SAndy Lutomirski	LEAVE_IRQ_STACK
10041d3e53e8SAndy Lutomirski
1005905a36a2SIngo Molnar#ifndef CONFIG_PREEMPT
1006905a36a2SIngo Molnar	call	xen_maybe_preempt_hcall
1007905a36a2SIngo Molnar#endif
1008905a36a2SIngo Molnar	jmp	error_exit
1009905a36a2SIngo MolnarEND(xen_do_hypervisor_callback)
1010905a36a2SIngo Molnar
1011905a36a2SIngo Molnar/*
1012905a36a2SIngo Molnar * Hypervisor uses this for application faults while it executes.
1013905a36a2SIngo Molnar * We get here for two reasons:
1014905a36a2SIngo Molnar *  1. Fault while reloading DS, ES, FS or GS
1015905a36a2SIngo Molnar *  2. Fault while executing IRET
1016905a36a2SIngo Molnar * Category 1 we do not need to fix up as Xen has already reloaded all segment
1017905a36a2SIngo Molnar * registers that could be reloaded and zeroed the others.
1018905a36a2SIngo Molnar * Category 2 we fix up by killing the current process. We cannot use the
1019905a36a2SIngo Molnar * normal Linux return path in this case because if we use the IRET hypercall
1020905a36a2SIngo Molnar * to pop the stack frame we end up in an infinite loop of failsafe callbacks.
1021905a36a2SIngo Molnar * We distinguish between categories by comparing each saved segment register
1022905a36a2SIngo Molnar * with its current contents: any discrepancy means we in category 1.
1023905a36a2SIngo Molnar */
1024905a36a2SIngo MolnarENTRY(xen_failsafe_callback)
10258c1f7558SJosh Poimboeuf	UNWIND_HINT_EMPTY
1026905a36a2SIngo Molnar	movl	%ds, %ecx
1027905a36a2SIngo Molnar	cmpw	%cx, 0x10(%rsp)
1028905a36a2SIngo Molnar	jne	1f
1029905a36a2SIngo Molnar	movl	%es, %ecx
1030905a36a2SIngo Molnar	cmpw	%cx, 0x18(%rsp)
1031905a36a2SIngo Molnar	jne	1f
1032905a36a2SIngo Molnar	movl	%fs, %ecx
1033905a36a2SIngo Molnar	cmpw	%cx, 0x20(%rsp)
1034905a36a2SIngo Molnar	jne	1f
1035905a36a2SIngo Molnar	movl	%gs, %ecx
1036905a36a2SIngo Molnar	cmpw	%cx, 0x28(%rsp)
1037905a36a2SIngo Molnar	jne	1f
1038905a36a2SIngo Molnar	/* All segments match their saved values => Category 2 (Bad IRET). */
1039905a36a2SIngo Molnar	movq	(%rsp), %rcx
1040905a36a2SIngo Molnar	movq	8(%rsp), %r11
1041905a36a2SIngo Molnar	addq	$0x30, %rsp
1042905a36a2SIngo Molnar	pushq	$0				/* RIP */
10438c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS offset=8
1044905a36a2SIngo Molnar	jmp	general_protection
1045905a36a2SIngo Molnar1:	/* Segment mismatch => Category 1 (Bad segment). Retry the IRET. */
1046905a36a2SIngo Molnar	movq	(%rsp), %rcx
1047905a36a2SIngo Molnar	movq	8(%rsp), %r11
1048905a36a2SIngo Molnar	addq	$0x30, %rsp
10498c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS
1050905a36a2SIngo Molnar	pushq	$-1 /* orig_ax = -1 => not a system call */
1051905a36a2SIngo Molnar	ALLOC_PT_GPREGS_ON_STACK
1052905a36a2SIngo Molnar	SAVE_C_REGS
1053905a36a2SIngo Molnar	SAVE_EXTRA_REGS
1054946c1911SJosh Poimboeuf	ENCODE_FRAME_POINTER
1055905a36a2SIngo Molnar	jmp	error_exit
1056905a36a2SIngo MolnarEND(xen_failsafe_callback)
1057905a36a2SIngo Molnar
1058905a36a2SIngo Molnarapicinterrupt3 HYPERVISOR_CALLBACK_VECTOR \
1059905a36a2SIngo Molnar	xen_hvm_callback_vector xen_evtchn_do_upcall
1060905a36a2SIngo Molnar
1061905a36a2SIngo Molnar#endif /* CONFIG_XEN */
1062905a36a2SIngo Molnar
1063905a36a2SIngo Molnar#if IS_ENABLED(CONFIG_HYPERV)
1064905a36a2SIngo Molnarapicinterrupt3 HYPERVISOR_CALLBACK_VECTOR \
1065905a36a2SIngo Molnar	hyperv_callback_vector hyperv_vector_handler
1066905a36a2SIngo Molnar#endif /* CONFIG_HYPERV */
1067905a36a2SIngo Molnar
1068905a36a2SIngo Molnaridtentry debug			do_debug		has_error_code=0	paranoid=1 shift_ist=DEBUG_STACK
1069905a36a2SIngo Molnaridtentry int3			do_int3			has_error_code=0	paranoid=1 shift_ist=DEBUG_STACK
1070905a36a2SIngo Molnaridtentry stack_segment		do_stack_segment	has_error_code=1
10714d732138SIngo Molnar
1072905a36a2SIngo Molnar#ifdef CONFIG_XEN
10735878d5d6SJuergen Grossidtentry xendebug		do_debug		has_error_code=0
10745878d5d6SJuergen Grossidtentry xenint3		do_int3			has_error_code=0
1075905a36a2SIngo Molnar#endif
10764d732138SIngo Molnar
1077905a36a2SIngo Molnaridtentry general_protection	do_general_protection	has_error_code=1
107811a7ffb0SThomas Gleixneridtentry page_fault		do_page_fault		has_error_code=1
10794d732138SIngo Molnar
1080905a36a2SIngo Molnar#ifdef CONFIG_KVM_GUEST
1081905a36a2SIngo Molnaridtentry async_page_fault	do_async_page_fault	has_error_code=1
1082905a36a2SIngo Molnar#endif
10834d732138SIngo Molnar
1084905a36a2SIngo Molnar#ifdef CONFIG_X86_MCE
1085905a36a2SIngo Molnaridtentry machine_check					has_error_code=0	paranoid=1 do_sym=*machine_check_vector(%rip)
1086905a36a2SIngo Molnar#endif
1087905a36a2SIngo Molnar
1088905a36a2SIngo Molnar/*
1089905a36a2SIngo Molnar * Save all registers in pt_regs, and switch gs if needed.
1090905a36a2SIngo Molnar * Use slow, but surefire "are we in kernel?" check.
1091905a36a2SIngo Molnar * Return: ebx=0: need swapgs on exit, ebx=1: otherwise
1092905a36a2SIngo Molnar */
1093905a36a2SIngo MolnarENTRY(paranoid_entry)
10948c1f7558SJosh Poimboeuf	UNWIND_HINT_FUNC
1095905a36a2SIngo Molnar	cld
1096905a36a2SIngo Molnar	SAVE_C_REGS 8
1097905a36a2SIngo Molnar	SAVE_EXTRA_REGS 8
1098946c1911SJosh Poimboeuf	ENCODE_FRAME_POINTER 8
1099905a36a2SIngo Molnar	movl	$1, %ebx
1100905a36a2SIngo Molnar	movl	$MSR_GS_BASE, %ecx
1101905a36a2SIngo Molnar	rdmsr
1102905a36a2SIngo Molnar	testl	%edx, %edx
1103905a36a2SIngo Molnar	js	1f				/* negative -> in kernel */
1104905a36a2SIngo Molnar	SWAPGS
1105905a36a2SIngo Molnar	xorl	%ebx, %ebx
1106905a36a2SIngo Molnar1:	ret
1107905a36a2SIngo MolnarEND(paranoid_entry)
1108905a36a2SIngo Molnar
1109905a36a2SIngo Molnar/*
1110905a36a2SIngo Molnar * "Paranoid" exit path from exception stack.  This is invoked
1111905a36a2SIngo Molnar * only on return from non-NMI IST interrupts that came
1112905a36a2SIngo Molnar * from kernel space.
1113905a36a2SIngo Molnar *
1114905a36a2SIngo Molnar * We may be returning to very strange contexts (e.g. very early
1115905a36a2SIngo Molnar * in syscall entry), so checking for preemption here would
1116905a36a2SIngo Molnar * be complicated.  Fortunately, we there's no good reason
1117905a36a2SIngo Molnar * to try to handle preemption here.
11184d732138SIngo Molnar *
11194d732138SIngo Molnar * On entry, ebx is "no swapgs" flag (1: don't need swapgs, 0: need it)
1120905a36a2SIngo Molnar */
1121905a36a2SIngo MolnarENTRY(paranoid_exit)
11228c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS
11232140a994SJan Beulich	DISABLE_INTERRUPTS(CLBR_ANY)
1124905a36a2SIngo Molnar	TRACE_IRQS_OFF_DEBUG
1125905a36a2SIngo Molnar	testl	%ebx, %ebx			/* swapgs needed? */
1126905a36a2SIngo Molnar	jnz	paranoid_exit_no_swapgs
1127905a36a2SIngo Molnar	TRACE_IRQS_IRETQ
1128905a36a2SIngo Molnar	SWAPGS_UNSAFE_STACK
1129905a36a2SIngo Molnar	jmp	paranoid_exit_restore
1130905a36a2SIngo Molnarparanoid_exit_no_swapgs:
1131905a36a2SIngo Molnar	TRACE_IRQS_IRETQ_DEBUG
1132905a36a2SIngo Molnarparanoid_exit_restore:
1133905a36a2SIngo Molnar	RESTORE_EXTRA_REGS
1134905a36a2SIngo Molnar	RESTORE_C_REGS
1135905a36a2SIngo Molnar	REMOVE_PT_GPREGS_FROM_STACK 8
1136905a36a2SIngo Molnar	INTERRUPT_RETURN
1137905a36a2SIngo MolnarEND(paranoid_exit)
1138905a36a2SIngo Molnar
1139905a36a2SIngo Molnar/*
1140905a36a2SIngo Molnar * Save all registers in pt_regs, and switch gs if needed.
1141539f5113SAndy Lutomirski * Return: EBX=0: came from user mode; EBX=1: otherwise
1142905a36a2SIngo Molnar */
1143905a36a2SIngo MolnarENTRY(error_entry)
11448c1f7558SJosh Poimboeuf	UNWIND_HINT_FUNC
1145905a36a2SIngo Molnar	cld
1146905a36a2SIngo Molnar	SAVE_C_REGS 8
1147905a36a2SIngo Molnar	SAVE_EXTRA_REGS 8
1148946c1911SJosh Poimboeuf	ENCODE_FRAME_POINTER 8
1149905a36a2SIngo Molnar	xorl	%ebx, %ebx
1150905a36a2SIngo Molnar	testb	$3, CS+8(%rsp)
1151cb6f64edSAndy Lutomirski	jz	.Lerror_kernelspace
1152539f5113SAndy Lutomirski
1153cb6f64edSAndy Lutomirski	/*
1154cb6f64edSAndy Lutomirski	 * We entered from user mode or we're pretending to have entered
1155cb6f64edSAndy Lutomirski	 * from user mode due to an IRET fault.
1156cb6f64edSAndy Lutomirski	 */
1157905a36a2SIngo Molnar	SWAPGS
1158539f5113SAndy Lutomirski
1159cb6f64edSAndy Lutomirski.Lerror_entry_from_usermode_after_swapgs:
1160f1075053SAndy Lutomirski	/*
1161f1075053SAndy Lutomirski	 * We need to tell lockdep that IRQs are off.  We can't do this until
1162f1075053SAndy Lutomirski	 * we fix gsbase, and we should do it before enter_from_user_mode
1163f1075053SAndy Lutomirski	 * (which can take locks).
1164f1075053SAndy Lutomirski	 */
1165f1075053SAndy Lutomirski	TRACE_IRQS_OFF
1166478dc89cSAndy Lutomirski	CALL_enter_from_user_mode
1167f1075053SAndy Lutomirski	ret
116802bc7768SAndy Lutomirski
1169cb6f64edSAndy Lutomirski.Lerror_entry_done:
1170905a36a2SIngo Molnar	TRACE_IRQS_OFF
1171905a36a2SIngo Molnar	ret
1172905a36a2SIngo Molnar
1173905a36a2SIngo Molnar	/*
1174905a36a2SIngo Molnar	 * There are two places in the kernel that can potentially fault with
1175905a36a2SIngo Molnar	 * usergs. Handle them here.  B stepping K8s sometimes report a
1176905a36a2SIngo Molnar	 * truncated RIP for IRET exceptions returning to compat mode. Check
1177905a36a2SIngo Molnar	 * for these here too.
1178905a36a2SIngo Molnar	 */
1179cb6f64edSAndy Lutomirski.Lerror_kernelspace:
1180905a36a2SIngo Molnar	incl	%ebx
1181905a36a2SIngo Molnar	leaq	native_irq_return_iret(%rip), %rcx
1182905a36a2SIngo Molnar	cmpq	%rcx, RIP+8(%rsp)
1183cb6f64edSAndy Lutomirski	je	.Lerror_bad_iret
1184905a36a2SIngo Molnar	movl	%ecx, %eax			/* zero extend */
1185905a36a2SIngo Molnar	cmpq	%rax, RIP+8(%rsp)
1186cb6f64edSAndy Lutomirski	je	.Lbstep_iret
118742c748bbSBorislav Petkov	cmpq	$.Lgs_change, RIP+8(%rsp)
1188cb6f64edSAndy Lutomirski	jne	.Lerror_entry_done
1189539f5113SAndy Lutomirski
1190539f5113SAndy Lutomirski	/*
119142c748bbSBorislav Petkov	 * hack: .Lgs_change can fail with user gsbase.  If this happens, fix up
1192539f5113SAndy Lutomirski	 * gsbase and proceed.  We'll fix up the exception and land in
119342c748bbSBorislav Petkov	 * .Lgs_change's error handler with kernel gsbase.
1194539f5113SAndy Lutomirski	 */
11952fa5f04fSWanpeng Li	SWAPGS
11962fa5f04fSWanpeng Li	jmp .Lerror_entry_done
1197905a36a2SIngo Molnar
1198cb6f64edSAndy Lutomirski.Lbstep_iret:
1199905a36a2SIngo Molnar	/* Fix truncated RIP */
1200905a36a2SIngo Molnar	movq	%rcx, RIP+8(%rsp)
1201905a36a2SIngo Molnar	/* fall through */
1202905a36a2SIngo Molnar
1203cb6f64edSAndy Lutomirski.Lerror_bad_iret:
1204539f5113SAndy Lutomirski	/*
1205539f5113SAndy Lutomirski	 * We came from an IRET to user mode, so we have user gsbase.
1206539f5113SAndy Lutomirski	 * Switch to kernel gsbase:
1207539f5113SAndy Lutomirski	 */
1208905a36a2SIngo Molnar	SWAPGS
1209539f5113SAndy Lutomirski
1210539f5113SAndy Lutomirski	/*
1211539f5113SAndy Lutomirski	 * Pretend that the exception came from user mode: set up pt_regs
1212539f5113SAndy Lutomirski	 * as if we faulted immediately after IRET and clear EBX so that
1213539f5113SAndy Lutomirski	 * error_exit knows that we will be returning to user mode.
1214539f5113SAndy Lutomirski	 */
1215905a36a2SIngo Molnar	mov	%rsp, %rdi
1216905a36a2SIngo Molnar	call	fixup_bad_iret
1217905a36a2SIngo Molnar	mov	%rax, %rsp
1218539f5113SAndy Lutomirski	decl	%ebx
1219cb6f64edSAndy Lutomirski	jmp	.Lerror_entry_from_usermode_after_swapgs
1220905a36a2SIngo MolnarEND(error_entry)
1221905a36a2SIngo Molnar
1222905a36a2SIngo Molnar
1223539f5113SAndy Lutomirski/*
122475ca5b22SNicolas Iooss * On entry, EBX is a "return to kernel mode" flag:
1225539f5113SAndy Lutomirski *   1: already in kernel mode, don't need SWAPGS
1226539f5113SAndy Lutomirski *   0: user gsbase is loaded, we need SWAPGS and standard preparation for return to usermode
1227539f5113SAndy Lutomirski */
1228905a36a2SIngo MolnarENTRY(error_exit)
12298c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS
12302140a994SJan Beulich	DISABLE_INTERRUPTS(CLBR_ANY)
1231905a36a2SIngo Molnar	TRACE_IRQS_OFF
12322140a994SJan Beulich	testl	%ebx, %ebx
1233905a36a2SIngo Molnar	jnz	retint_kernel
1234905a36a2SIngo Molnar	jmp	retint_user
1235905a36a2SIngo MolnarEND(error_exit)
1236905a36a2SIngo Molnar
1237905a36a2SIngo Molnar/* Runs on exception stack */
12385878d5d6SJuergen Gross/* XXX: broken on Xen PV */
1239905a36a2SIngo MolnarENTRY(nmi)
12408c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS
1241fc57a7c6SAndy Lutomirski	/*
1242905a36a2SIngo Molnar	 * We allow breakpoints in NMIs. If a breakpoint occurs, then
1243905a36a2SIngo Molnar	 * the iretq it performs will take us out of NMI context.
1244905a36a2SIngo Molnar	 * This means that we can have nested NMIs where the next
1245905a36a2SIngo Molnar	 * NMI is using the top of the stack of the previous NMI. We
1246905a36a2SIngo Molnar	 * can't let it execute because the nested NMI will corrupt the
1247905a36a2SIngo Molnar	 * stack of the previous NMI. NMI handlers are not re-entrant
1248905a36a2SIngo Molnar	 * anyway.
1249905a36a2SIngo Molnar	 *
1250905a36a2SIngo Molnar	 * To handle this case we do the following:
1251905a36a2SIngo Molnar	 *  Check the a special location on the stack that contains
1252905a36a2SIngo Molnar	 *  a variable that is set when NMIs are executing.
1253905a36a2SIngo Molnar	 *  The interrupted task's stack is also checked to see if it
1254905a36a2SIngo Molnar	 *  is an NMI stack.
1255905a36a2SIngo Molnar	 *  If the variable is not set and the stack is not the NMI
1256905a36a2SIngo Molnar	 *  stack then:
1257905a36a2SIngo Molnar	 *    o Set the special variable on the stack
12580b22930eSAndy Lutomirski	 *    o Copy the interrupt frame into an "outermost" location on the
12590b22930eSAndy Lutomirski	 *      stack
12600b22930eSAndy Lutomirski	 *    o Copy the interrupt frame into an "iret" location on the stack
1261905a36a2SIngo Molnar	 *    o Continue processing the NMI
1262905a36a2SIngo Molnar	 *  If the variable is set or the previous stack is the NMI stack:
12630b22930eSAndy Lutomirski	 *    o Modify the "iret" location to jump to the repeat_nmi
1264905a36a2SIngo Molnar	 *    o return back to the first NMI
1265905a36a2SIngo Molnar	 *
1266905a36a2SIngo Molnar	 * Now on exit of the first NMI, we first clear the stack variable
1267905a36a2SIngo Molnar	 * The NMI stack will tell any nested NMIs at that point that it is
1268905a36a2SIngo Molnar	 * nested. Then we pop the stack normally with iret, and if there was
1269905a36a2SIngo Molnar	 * a nested NMI that updated the copy interrupt stack frame, a
1270905a36a2SIngo Molnar	 * jump will be made to the repeat_nmi code that will handle the second
1271905a36a2SIngo Molnar	 * NMI.
12729b6e6a83SAndy Lutomirski	 *
12739b6e6a83SAndy Lutomirski	 * However, espfix prevents us from directly returning to userspace
12749b6e6a83SAndy Lutomirski	 * with a single IRET instruction.  Similarly, IRET to user mode
12759b6e6a83SAndy Lutomirski	 * can fault.  We therefore handle NMIs from user space like
12769b6e6a83SAndy Lutomirski	 * other IST entries.
1277905a36a2SIngo Molnar	 */
1278905a36a2SIngo Molnar
1279e93c1730SAndy Lutomirski	ASM_CLAC
1280e93c1730SAndy Lutomirski
1281905a36a2SIngo Molnar	/* Use %rdx as our temp variable throughout */
1282905a36a2SIngo Molnar	pushq	%rdx
1283905a36a2SIngo Molnar
12849b6e6a83SAndy Lutomirski	testb	$3, CS-RIP+8(%rsp)
12859b6e6a83SAndy Lutomirski	jz	.Lnmi_from_kernel
1286905a36a2SIngo Molnar
1287905a36a2SIngo Molnar	/*
12889b6e6a83SAndy Lutomirski	 * NMI from user mode.  We need to run on the thread stack, but we
12899b6e6a83SAndy Lutomirski	 * can't go through the normal entry paths: NMIs are masked, and
12909b6e6a83SAndy Lutomirski	 * we don't want to enable interrupts, because then we'll end
12919b6e6a83SAndy Lutomirski	 * up in an awkward situation in which IRQs are on but NMIs
12929b6e6a83SAndy Lutomirski	 * are off.
129383c133cfSAndy Lutomirski	 *
129483c133cfSAndy Lutomirski	 * We also must not push anything to the stack before switching
129583c133cfSAndy Lutomirski	 * stacks lest we corrupt the "NMI executing" variable.
12969b6e6a83SAndy Lutomirski	 */
12979b6e6a83SAndy Lutomirski
129883c133cfSAndy Lutomirski	SWAPGS_UNSAFE_STACK
12999b6e6a83SAndy Lutomirski	cld
13009b6e6a83SAndy Lutomirski	movq	%rsp, %rdx
13019b6e6a83SAndy Lutomirski	movq	PER_CPU_VAR(cpu_current_top_of_stack), %rsp
13028c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS base=%rdx offset=8
13039b6e6a83SAndy Lutomirski	pushq	5*8(%rdx)	/* pt_regs->ss */
13049b6e6a83SAndy Lutomirski	pushq	4*8(%rdx)	/* pt_regs->rsp */
13059b6e6a83SAndy Lutomirski	pushq	3*8(%rdx)	/* pt_regs->flags */
13069b6e6a83SAndy Lutomirski	pushq	2*8(%rdx)	/* pt_regs->cs */
13079b6e6a83SAndy Lutomirski	pushq	1*8(%rdx)	/* pt_regs->rip */
13088c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS
13099b6e6a83SAndy Lutomirski	pushq   $-1		/* pt_regs->orig_ax */
13109b6e6a83SAndy Lutomirski	pushq   %rdi		/* pt_regs->di */
13119b6e6a83SAndy Lutomirski	pushq   %rsi		/* pt_regs->si */
13129b6e6a83SAndy Lutomirski	pushq   (%rdx)		/* pt_regs->dx */
13139b6e6a83SAndy Lutomirski	pushq   %rcx		/* pt_regs->cx */
13149b6e6a83SAndy Lutomirski	pushq   %rax		/* pt_regs->ax */
13159b6e6a83SAndy Lutomirski	pushq   %r8		/* pt_regs->r8 */
13169b6e6a83SAndy Lutomirski	pushq   %r9		/* pt_regs->r9 */
13179b6e6a83SAndy Lutomirski	pushq   %r10		/* pt_regs->r10 */
13189b6e6a83SAndy Lutomirski	pushq   %r11		/* pt_regs->r11 */
13199b6e6a83SAndy Lutomirski	pushq	%rbx		/* pt_regs->rbx */
13209b6e6a83SAndy Lutomirski	pushq	%rbp		/* pt_regs->rbp */
13219b6e6a83SAndy Lutomirski	pushq	%r12		/* pt_regs->r12 */
13229b6e6a83SAndy Lutomirski	pushq	%r13		/* pt_regs->r13 */
13239b6e6a83SAndy Lutomirski	pushq	%r14		/* pt_regs->r14 */
13249b6e6a83SAndy Lutomirski	pushq	%r15		/* pt_regs->r15 */
13258c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS
1326946c1911SJosh Poimboeuf	ENCODE_FRAME_POINTER
13279b6e6a83SAndy Lutomirski
13289b6e6a83SAndy Lutomirski	/*
13299b6e6a83SAndy Lutomirski	 * At this point we no longer need to worry about stack damage
13309b6e6a83SAndy Lutomirski	 * due to nesting -- we're on the normal thread stack and we're
13319b6e6a83SAndy Lutomirski	 * done with the NMI stack.
13329b6e6a83SAndy Lutomirski	 */
13339b6e6a83SAndy Lutomirski
13349b6e6a83SAndy Lutomirski	movq	%rsp, %rdi
13359b6e6a83SAndy Lutomirski	movq	$-1, %rsi
13369b6e6a83SAndy Lutomirski	call	do_nmi
13379b6e6a83SAndy Lutomirski
13389b6e6a83SAndy Lutomirski	/*
13399b6e6a83SAndy Lutomirski	 * Return back to user mode.  We must *not* do the normal exit
1340946c1911SJosh Poimboeuf	 * work, because we don't want to enable interrupts.
13419b6e6a83SAndy Lutomirski	 */
13428a055d7fSAndy Lutomirski	jmp	swapgs_restore_regs_and_return_to_usermode
13439b6e6a83SAndy Lutomirski
13449b6e6a83SAndy Lutomirski.Lnmi_from_kernel:
13459b6e6a83SAndy Lutomirski	/*
13460b22930eSAndy Lutomirski	 * Here's what our stack frame will look like:
13470b22930eSAndy Lutomirski	 * +---------------------------------------------------------+
13480b22930eSAndy Lutomirski	 * | original SS                                             |
13490b22930eSAndy Lutomirski	 * | original Return RSP                                     |
13500b22930eSAndy Lutomirski	 * | original RFLAGS                                         |
13510b22930eSAndy Lutomirski	 * | original CS                                             |
13520b22930eSAndy Lutomirski	 * | original RIP                                            |
13530b22930eSAndy Lutomirski	 * +---------------------------------------------------------+
13540b22930eSAndy Lutomirski	 * | temp storage for rdx                                    |
13550b22930eSAndy Lutomirski	 * +---------------------------------------------------------+
13560b22930eSAndy Lutomirski	 * | "NMI executing" variable                                |
13570b22930eSAndy Lutomirski	 * +---------------------------------------------------------+
13580b22930eSAndy Lutomirski	 * | iret SS          } Copied from "outermost" frame        |
13590b22930eSAndy Lutomirski	 * | iret Return RSP  } on each loop iteration; overwritten  |
13600b22930eSAndy Lutomirski	 * | iret RFLAGS      } by a nested NMI to force another     |
13610b22930eSAndy Lutomirski	 * | iret CS          } iteration if needed.                 |
13620b22930eSAndy Lutomirski	 * | iret RIP         }                                      |
13630b22930eSAndy Lutomirski	 * +---------------------------------------------------------+
13640b22930eSAndy Lutomirski	 * | outermost SS          } initialized in first_nmi;       |
13650b22930eSAndy Lutomirski	 * | outermost Return RSP  } will not be changed before      |
13660b22930eSAndy Lutomirski	 * | outermost RFLAGS      } NMI processing is done.         |
13670b22930eSAndy Lutomirski	 * | outermost CS          } Copied to "iret" frame on each  |
13680b22930eSAndy Lutomirski	 * | outermost RIP         } iteration.                      |
13690b22930eSAndy Lutomirski	 * +---------------------------------------------------------+
13700b22930eSAndy Lutomirski	 * | pt_regs                                                 |
13710b22930eSAndy Lutomirski	 * +---------------------------------------------------------+
13720b22930eSAndy Lutomirski	 *
13730b22930eSAndy Lutomirski	 * The "original" frame is used by hardware.  Before re-enabling
13740b22930eSAndy Lutomirski	 * NMIs, we need to be done with it, and we need to leave enough
13750b22930eSAndy Lutomirski	 * space for the asm code here.
13760b22930eSAndy Lutomirski	 *
13770b22930eSAndy Lutomirski	 * We return by executing IRET while RSP points to the "iret" frame.
13780b22930eSAndy Lutomirski	 * That will either return for real or it will loop back into NMI
13790b22930eSAndy Lutomirski	 * processing.
13800b22930eSAndy Lutomirski	 *
13810b22930eSAndy Lutomirski	 * The "outermost" frame is copied to the "iret" frame on each
13820b22930eSAndy Lutomirski	 * iteration of the loop, so each iteration starts with the "iret"
13830b22930eSAndy Lutomirski	 * frame pointing to the final return target.
13840b22930eSAndy Lutomirski	 */
13850b22930eSAndy Lutomirski
13860b22930eSAndy Lutomirski	/*
13870b22930eSAndy Lutomirski	 * Determine whether we're a nested NMI.
13880b22930eSAndy Lutomirski	 *
1389a27507caSAndy Lutomirski	 * If we interrupted kernel code between repeat_nmi and
1390a27507caSAndy Lutomirski	 * end_repeat_nmi, then we are a nested NMI.  We must not
1391a27507caSAndy Lutomirski	 * modify the "iret" frame because it's being written by
1392a27507caSAndy Lutomirski	 * the outer NMI.  That's okay; the outer NMI handler is
1393a27507caSAndy Lutomirski	 * about to about to call do_nmi anyway, so we can just
1394a27507caSAndy Lutomirski	 * resume the outer NMI.
1395a27507caSAndy Lutomirski	 */
1396a27507caSAndy Lutomirski
1397a27507caSAndy Lutomirski	movq	$repeat_nmi, %rdx
1398a27507caSAndy Lutomirski	cmpq	8(%rsp), %rdx
1399a27507caSAndy Lutomirski	ja	1f
1400a27507caSAndy Lutomirski	movq	$end_repeat_nmi, %rdx
1401a27507caSAndy Lutomirski	cmpq	8(%rsp), %rdx
1402a27507caSAndy Lutomirski	ja	nested_nmi_out
1403a27507caSAndy Lutomirski1:
1404a27507caSAndy Lutomirski
1405a27507caSAndy Lutomirski	/*
1406a27507caSAndy Lutomirski	 * Now check "NMI executing".  If it's set, then we're nested.
14070b22930eSAndy Lutomirski	 * This will not detect if we interrupted an outer NMI just
14080b22930eSAndy Lutomirski	 * before IRET.
1409905a36a2SIngo Molnar	 */
1410905a36a2SIngo Molnar	cmpl	$1, -8(%rsp)
1411905a36a2SIngo Molnar	je	nested_nmi
1412905a36a2SIngo Molnar
1413905a36a2SIngo Molnar	/*
14140b22930eSAndy Lutomirski	 * Now test if the previous stack was an NMI stack.  This covers
14150b22930eSAndy Lutomirski	 * the case where we interrupt an outer NMI after it clears
1416810bc075SAndy Lutomirski	 * "NMI executing" but before IRET.  We need to be careful, though:
1417810bc075SAndy Lutomirski	 * there is one case in which RSP could point to the NMI stack
1418810bc075SAndy Lutomirski	 * despite there being no NMI active: naughty userspace controls
1419810bc075SAndy Lutomirski	 * RSP at the very beginning of the SYSCALL targets.  We can
1420810bc075SAndy Lutomirski	 * pull a fast one on naughty userspace, though: we program
1421810bc075SAndy Lutomirski	 * SYSCALL to mask DF, so userspace cannot cause DF to be set
1422810bc075SAndy Lutomirski	 * if it controls the kernel's RSP.  We set DF before we clear
1423810bc075SAndy Lutomirski	 * "NMI executing".
1424905a36a2SIngo Molnar	 */
1425905a36a2SIngo Molnar	lea	6*8(%rsp), %rdx
1426905a36a2SIngo Molnar	/* Compare the NMI stack (rdx) with the stack we came from (4*8(%rsp)) */
1427905a36a2SIngo Molnar	cmpq	%rdx, 4*8(%rsp)
1428905a36a2SIngo Molnar	/* If the stack pointer is above the NMI stack, this is a normal NMI */
1429905a36a2SIngo Molnar	ja	first_nmi
14304d732138SIngo Molnar
1431905a36a2SIngo Molnar	subq	$EXCEPTION_STKSZ, %rdx
1432905a36a2SIngo Molnar	cmpq	%rdx, 4*8(%rsp)
1433905a36a2SIngo Molnar	/* If it is below the NMI stack, it is a normal NMI */
1434905a36a2SIngo Molnar	jb	first_nmi
1435810bc075SAndy Lutomirski
1436810bc075SAndy Lutomirski	/* Ah, it is within the NMI stack. */
1437810bc075SAndy Lutomirski
1438810bc075SAndy Lutomirski	testb	$(X86_EFLAGS_DF >> 8), (3*8 + 1)(%rsp)
1439810bc075SAndy Lutomirski	jz	first_nmi	/* RSP was user controlled. */
1440810bc075SAndy Lutomirski
1441810bc075SAndy Lutomirski	/* This is a nested NMI. */
1442905a36a2SIngo Molnar
1443905a36a2SIngo Molnarnested_nmi:
1444905a36a2SIngo Molnar	/*
14450b22930eSAndy Lutomirski	 * Modify the "iret" frame to point to repeat_nmi, forcing another
14460b22930eSAndy Lutomirski	 * iteration of NMI handling.
1447905a36a2SIngo Molnar	 */
144823a781e9SAndy Lutomirski	subq	$8, %rsp
1449905a36a2SIngo Molnar	leaq	-10*8(%rsp), %rdx
1450905a36a2SIngo Molnar	pushq	$__KERNEL_DS
1451905a36a2SIngo Molnar	pushq	%rdx
1452905a36a2SIngo Molnar	pushfq
1453905a36a2SIngo Molnar	pushq	$__KERNEL_CS
1454905a36a2SIngo Molnar	pushq	$repeat_nmi
1455905a36a2SIngo Molnar
1456905a36a2SIngo Molnar	/* Put stack back */
1457905a36a2SIngo Molnar	addq	$(6*8), %rsp
1458905a36a2SIngo Molnar
1459905a36a2SIngo Molnarnested_nmi_out:
1460905a36a2SIngo Molnar	popq	%rdx
1461905a36a2SIngo Molnar
14620b22930eSAndy Lutomirski	/* We are returning to kernel mode, so this cannot result in a fault. */
1463905a36a2SIngo Molnar	INTERRUPT_RETURN
1464905a36a2SIngo Molnar
1465905a36a2SIngo Molnarfirst_nmi:
14660b22930eSAndy Lutomirski	/* Restore rdx. */
1467905a36a2SIngo Molnar	movq	(%rsp), %rdx
1468905a36a2SIngo Molnar
146936f1a77bSAndy Lutomirski	/* Make room for "NMI executing". */
147036f1a77bSAndy Lutomirski	pushq	$0
1471905a36a2SIngo Molnar
14720b22930eSAndy Lutomirski	/* Leave room for the "iret" frame */
1473905a36a2SIngo Molnar	subq	$(5*8), %rsp
1474905a36a2SIngo Molnar
14750b22930eSAndy Lutomirski	/* Copy the "original" frame to the "outermost" frame */
1476905a36a2SIngo Molnar	.rept 5
1477905a36a2SIngo Molnar	pushq	11*8(%rsp)
1478905a36a2SIngo Molnar	.endr
14798c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS
1480905a36a2SIngo Molnar
1481905a36a2SIngo Molnar	/* Everything up to here is safe from nested NMIs */
1482905a36a2SIngo Molnar
1483a97439aaSAndy Lutomirski#ifdef CONFIG_DEBUG_ENTRY
1484a97439aaSAndy Lutomirski	/*
1485a97439aaSAndy Lutomirski	 * For ease of testing, unmask NMIs right away.  Disabled by
1486a97439aaSAndy Lutomirski	 * default because IRET is very expensive.
1487a97439aaSAndy Lutomirski	 */
1488a97439aaSAndy Lutomirski	pushq	$0		/* SS */
1489a97439aaSAndy Lutomirski	pushq	%rsp		/* RSP (minus 8 because of the previous push) */
1490a97439aaSAndy Lutomirski	addq	$8, (%rsp)	/* Fix up RSP */
1491a97439aaSAndy Lutomirski	pushfq			/* RFLAGS */
1492a97439aaSAndy Lutomirski	pushq	$__KERNEL_CS	/* CS */
1493a97439aaSAndy Lutomirski	pushq	$1f		/* RIP */
1494a97439aaSAndy Lutomirski	INTERRUPT_RETURN	/* continues at repeat_nmi below */
14958c1f7558SJosh Poimboeuf	UNWIND_HINT_IRET_REGS
1496a97439aaSAndy Lutomirski1:
1497a97439aaSAndy Lutomirski#endif
1498a97439aaSAndy Lutomirski
14990b22930eSAndy Lutomirskirepeat_nmi:
1500905a36a2SIngo Molnar	/*
1501905a36a2SIngo Molnar	 * If there was a nested NMI, the first NMI's iret will return
1502905a36a2SIngo Molnar	 * here. But NMIs are still enabled and we can take another
1503905a36a2SIngo Molnar	 * nested NMI. The nested NMI checks the interrupted RIP to see
1504905a36a2SIngo Molnar	 * if it is between repeat_nmi and end_repeat_nmi, and if so
1505905a36a2SIngo Molnar	 * it will just return, as we are about to repeat an NMI anyway.
1506905a36a2SIngo Molnar	 * This makes it safe to copy to the stack frame that a nested
1507905a36a2SIngo Molnar	 * NMI will update.
15080b22930eSAndy Lutomirski	 *
15090b22930eSAndy Lutomirski	 * RSP is pointing to "outermost RIP".  gsbase is unknown, but, if
15100b22930eSAndy Lutomirski	 * we're repeating an NMI, gsbase has the same value that it had on
15110b22930eSAndy Lutomirski	 * the first iteration.  paranoid_entry will load the kernel
151236f1a77bSAndy Lutomirski	 * gsbase if needed before we call do_nmi.  "NMI executing"
151336f1a77bSAndy Lutomirski	 * is zero.
1514905a36a2SIngo Molnar	 */
151536f1a77bSAndy Lutomirski	movq	$1, 10*8(%rsp)		/* Set "NMI executing". */
1516905a36a2SIngo Molnar
15170b22930eSAndy Lutomirski	/*
15180b22930eSAndy Lutomirski	 * Copy the "outermost" frame to the "iret" frame.  NMIs that nest
15190b22930eSAndy Lutomirski	 * here must not modify the "iret" frame while we're writing to
15200b22930eSAndy Lutomirski	 * it or it will end up containing garbage.
15210b22930eSAndy Lutomirski	 */
1522905a36a2SIngo Molnar	addq	$(10*8), %rsp
1523905a36a2SIngo Molnar	.rept 5
1524905a36a2SIngo Molnar	pushq	-6*8(%rsp)
1525905a36a2SIngo Molnar	.endr
1526905a36a2SIngo Molnar	subq	$(5*8), %rsp
1527905a36a2SIngo Molnarend_repeat_nmi:
1528905a36a2SIngo Molnar
1529905a36a2SIngo Molnar	/*
15300b22930eSAndy Lutomirski	 * Everything below this point can be preempted by a nested NMI.
15310b22930eSAndy Lutomirski	 * If this happens, then the inner NMI will change the "iret"
15320b22930eSAndy Lutomirski	 * frame to point back to repeat_nmi.
1533905a36a2SIngo Molnar	 */
1534905a36a2SIngo Molnar	pushq	$-1				/* ORIG_RAX: no syscall to restart */
1535905a36a2SIngo Molnar	ALLOC_PT_GPREGS_ON_STACK
1536905a36a2SIngo Molnar
1537905a36a2SIngo Molnar	/*
1538905a36a2SIngo Molnar	 * Use paranoid_entry to handle SWAPGS, but no need to use paranoid_exit
1539905a36a2SIngo Molnar	 * as we should not be calling schedule in NMI context.
1540905a36a2SIngo Molnar	 * Even with normal interrupts enabled. An NMI should not be
1541905a36a2SIngo Molnar	 * setting NEED_RESCHED or anything that normal interrupts and
1542905a36a2SIngo Molnar	 * exceptions might do.
1543905a36a2SIngo Molnar	 */
1544905a36a2SIngo Molnar	call	paranoid_entry
15458c1f7558SJosh Poimboeuf	UNWIND_HINT_REGS
1546905a36a2SIngo Molnar
1547905a36a2SIngo Molnar	/* paranoidentry do_nmi, 0; without TRACE_IRQS_OFF */
1548905a36a2SIngo Molnar	movq	%rsp, %rdi
1549905a36a2SIngo Molnar	movq	$-1, %rsi
1550905a36a2SIngo Molnar	call	do_nmi
1551905a36a2SIngo Molnar
1552905a36a2SIngo Molnar	testl	%ebx, %ebx			/* swapgs needed? */
1553905a36a2SIngo Molnar	jnz	nmi_restore
1554905a36a2SIngo Molnarnmi_swapgs:
1555905a36a2SIngo Molnar	SWAPGS_UNSAFE_STACK
1556905a36a2SIngo Molnarnmi_restore:
1557905a36a2SIngo Molnar	RESTORE_EXTRA_REGS
1558905a36a2SIngo Molnar	RESTORE_C_REGS
15590b22930eSAndy Lutomirski
15600b22930eSAndy Lutomirski	/* Point RSP at the "iret" frame. */
1561905a36a2SIngo Molnar	REMOVE_PT_GPREGS_FROM_STACK 6*8
1562905a36a2SIngo Molnar
1563810bc075SAndy Lutomirski	/*
1564810bc075SAndy Lutomirski	 * Clear "NMI executing".  Set DF first so that we can easily
1565810bc075SAndy Lutomirski	 * distinguish the remaining code between here and IRET from
1566810bc075SAndy Lutomirski	 * the SYSCALL entry and exit paths.  On a native kernel, we
1567810bc075SAndy Lutomirski	 * could just inspect RIP, but, on paravirt kernels,
1568810bc075SAndy Lutomirski	 * INTERRUPT_RETURN can translate into a jump into a
1569810bc075SAndy Lutomirski	 * hypercall page.
1570810bc075SAndy Lutomirski	 */
1571810bc075SAndy Lutomirski	std
1572810bc075SAndy Lutomirski	movq	$0, 5*8(%rsp)		/* clear "NMI executing" */
15730b22930eSAndy Lutomirski
15740b22930eSAndy Lutomirski	/*
15750b22930eSAndy Lutomirski	 * INTERRUPT_RETURN reads the "iret" frame and exits the NMI
15760b22930eSAndy Lutomirski	 * stack in a single instruction.  We are returning to kernel
15770b22930eSAndy Lutomirski	 * mode, so this cannot result in a fault.
15780b22930eSAndy Lutomirski	 */
15795ca6f70fSAndy Lutomirski	INTERRUPT_RETURN
1580905a36a2SIngo MolnarEND(nmi)
1581905a36a2SIngo Molnar
1582905a36a2SIngo MolnarENTRY(ignore_sysret)
15838c1f7558SJosh Poimboeuf	UNWIND_HINT_EMPTY
1584905a36a2SIngo Molnar	mov	$-ENOSYS, %eax
1585905a36a2SIngo Molnar	sysret
1586905a36a2SIngo MolnarEND(ignore_sysret)
15872deb4be2SAndy Lutomirski
15882deb4be2SAndy LutomirskiENTRY(rewind_stack_do_exit)
15898c1f7558SJosh Poimboeuf	UNWIND_HINT_FUNC
15902deb4be2SAndy Lutomirski	/* Prevent any naive code from trying to unwind to our caller. */
15912deb4be2SAndy Lutomirski	xorl	%ebp, %ebp
15922deb4be2SAndy Lutomirski
15932deb4be2SAndy Lutomirski	movq	PER_CPU_VAR(cpu_current_top_of_stack), %rax
15948c1f7558SJosh Poimboeuf	leaq	-PTREGS_SIZE(%rax), %rsp
15958c1f7558SJosh Poimboeuf	UNWIND_HINT_FUNC sp_offset=PTREGS_SIZE
15962deb4be2SAndy Lutomirski
15972deb4be2SAndy Lutomirski	call	do_exit
15982deb4be2SAndy LutomirskiEND(rewind_stack_do_exit)
1599