1b2441318SGreg Kroah-Hartman/* SPDX-License-Identifier: GPL-2.0 */ 2905a36a2SIngo Molnar/* 3905a36a2SIngo Molnar * linux/arch/x86_64/entry.S 4905a36a2SIngo Molnar * 5905a36a2SIngo Molnar * Copyright (C) 1991, 1992 Linus Torvalds 6905a36a2SIngo Molnar * Copyright (C) 2000, 2001, 2002 Andi Kleen SuSE Labs 7905a36a2SIngo Molnar * Copyright (C) 2000 Pavel Machek <pavel@suse.cz> 84d732138SIngo Molnar * 9905a36a2SIngo Molnar * entry.S contains the system-call and fault low-level handling routines. 10905a36a2SIngo Molnar * 11cb1aaebeSMauro Carvalho Chehab * Some of this is documented in Documentation/x86/entry_64.rst 12905a36a2SIngo Molnar * 13905a36a2SIngo Molnar * A note on terminology: 14905a36a2SIngo Molnar * - iret frame: Architecture defined interrupt frame from SS to RIP 15905a36a2SIngo Molnar * at the top of the kernel process stack. 16905a36a2SIngo Molnar * 17905a36a2SIngo Molnar * Some macro usage: 186dcc5627SJiri Slaby * - SYM_FUNC_START/END:Define functions in the symbol table. 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> 25905a36a2SIngo Molnar#include <asm/asm-offsets.h> 26905a36a2SIngo Molnar#include <asm/msr.h> 27905a36a2SIngo Molnar#include <asm/unistd.h> 28905a36a2SIngo Molnar#include <asm/thread_info.h> 29905a36a2SIngo Molnar#include <asm/hw_irq.h> 30905a36a2SIngo Molnar#include <asm/page_types.h> 31905a36a2SIngo Molnar#include <asm/irqflags.h> 32905a36a2SIngo Molnar#include <asm/paravirt.h> 33905a36a2SIngo Molnar#include <asm/percpu.h> 34905a36a2SIngo Molnar#include <asm/asm.h> 35905a36a2SIngo Molnar#include <asm/smap.h> 36905a36a2SIngo Molnar#include <asm/pgtable_types.h> 37784d5699SAl Viro#include <asm/export.h> 388c1f7558SJosh Poimboeuf#include <asm/frame.h> 39cfa82a00SThomas Gleixner#include <asm/trapnr.h> 402641f08bSDavid Woodhouse#include <asm/nospec-branch.h> 41c82965f9SChang S. Bae#include <asm/fsgsbase.h> 42905a36a2SIngo Molnar#include <linux/err.h> 43905a36a2SIngo Molnar 446fd166aaSPeter Zijlstra#include "calling.h" 456fd166aaSPeter Zijlstra 46905a36a2SIngo Molnar.code64 47905a36a2SIngo Molnar.section .entry.text, "ax" 48905a36a2SIngo Molnar 49905a36a2SIngo Molnar/* 504d732138SIngo Molnar * 64-bit SYSCALL instruction entry. Up to 6 arguments in registers. 51905a36a2SIngo Molnar * 52fda57b22SAndy Lutomirski * This is the only entry point used for 64-bit system calls. The 53fda57b22SAndy Lutomirski * hardware interface is reasonably well designed and the register to 54fda57b22SAndy Lutomirski * argument mapping Linux uses fits well with the registers that are 55fda57b22SAndy Lutomirski * available when SYSCALL is used. 56fda57b22SAndy Lutomirski * 57fda57b22SAndy Lutomirski * SYSCALL instructions can be found inlined in libc implementations as 58fda57b22SAndy Lutomirski * well as some other programs and libraries. There are also a handful 59fda57b22SAndy Lutomirski * of SYSCALL instructions in the vDSO used, for example, as a 60fda57b22SAndy Lutomirski * clock_gettimeofday fallback. 61fda57b22SAndy Lutomirski * 624d732138SIngo Molnar * 64-bit SYSCALL saves rip to rcx, clears rflags.RF, then saves rflags to r11, 63905a36a2SIngo Molnar * then loads new ss, cs, and rip from previously programmed MSRs. 64905a36a2SIngo Molnar * rflags gets masked by a value from another MSR (so CLD and CLAC 65905a36a2SIngo Molnar * are not needed). SYSCALL does not save anything on the stack 66905a36a2SIngo Molnar * and does not change rsp. 67905a36a2SIngo Molnar * 68905a36a2SIngo Molnar * Registers on entry: 69905a36a2SIngo Molnar * rax system call number 70905a36a2SIngo Molnar * rcx return address 71905a36a2SIngo Molnar * r11 saved rflags (note: r11 is callee-clobbered register in C ABI) 72905a36a2SIngo Molnar * rdi arg0 73905a36a2SIngo Molnar * rsi arg1 74905a36a2SIngo Molnar * rdx arg2 75905a36a2SIngo Molnar * r10 arg3 (needs to be moved to rcx to conform to C ABI) 76905a36a2SIngo Molnar * r8 arg4 77905a36a2SIngo Molnar * r9 arg5 78905a36a2SIngo Molnar * (note: r12-r15, rbp, rbx are callee-preserved in C ABI) 79905a36a2SIngo Molnar * 80905a36a2SIngo Molnar * Only called from user space. 81905a36a2SIngo Molnar * 82905a36a2SIngo Molnar * When user can change pt_regs->foo always force IRET. That is because 83905a36a2SIngo Molnar * it deals with uncanonical addresses better. SYSRET has trouble 84905a36a2SIngo Molnar * with them due to bugs in both AMD and Intel CPUs. 85905a36a2SIngo Molnar */ 86905a36a2SIngo Molnar 87bc7b11c0SJiri SlabySYM_CODE_START(entry_SYSCALL_64) 888c1f7558SJosh Poimboeuf UNWIND_HINT_EMPTY 898f93402bSPeter Zijlstra ENDBR 90905a36a2SIngo Molnar 918a9949bcSAndy Lutomirski swapgs 92bf904d27SAndy Lutomirski /* tss.sp2 is scratch space. */ 9398f05b51SAndy Lutomirski movq %rsp, PER_CPU_VAR(cpu_tss_rw + TSS_sp2) 94bf904d27SAndy Lutomirski SWITCH_TO_KERNEL_CR3 scratch_reg=%rsp 95905a36a2SIngo Molnar movq PER_CPU_VAR(cpu_current_top_of_stack), %rsp 96905a36a2SIngo Molnar 97a13644f3SJoerg RoedelSYM_INNER_LABEL(entry_SYSCALL_64_safe_stack, SYM_L_GLOBAL) 98a13644f3SJoerg Roedel 99905a36a2SIngo Molnar /* Construct struct pt_regs on stack */ 100905a36a2SIngo Molnar pushq $__USER_DS /* pt_regs->ss */ 10198f05b51SAndy Lutomirski pushq PER_CPU_VAR(cpu_tss_rw + TSS_sp2) /* pt_regs->sp */ 102905a36a2SIngo Molnar pushq %r11 /* pt_regs->flags */ 103905a36a2SIngo Molnar pushq $__USER_CS /* pt_regs->cs */ 104905a36a2SIngo Molnar pushq %rcx /* pt_regs->ip */ 10526ba4e57SJiri SlabySYM_INNER_LABEL(entry_SYSCALL_64_after_hwframe, SYM_L_GLOBAL) 106905a36a2SIngo Molnar pushq %rax /* pt_regs->orig_ax */ 10730907fd1SDominik Brodowski 10830907fd1SDominik Brodowski PUSH_AND_CLEAR_REGS rax=$-ENOSYS 109905a36a2SIngo Molnar 1101e423bffSAndy Lutomirski /* IRQs are off. */ 1113e5e7f77SH. Peter Anvin (Intel) movq %rsp, %rdi 11205954948SH. Peter Anvin (Intel) /* Sign extend the lower 32bit as syscall numbers are treated as int */ 11305954948SH. Peter Anvin (Intel) movslq %eax, %rsi 1141e423bffSAndy Lutomirski call do_syscall_64 /* returns with IRQs disabled */ 1151e423bffSAndy Lutomirski 116905a36a2SIngo Molnar /* 117905a36a2SIngo Molnar * Try to use SYSRET instead of IRET if we're returning to 1188a055d7fSAndy Lutomirski * a completely clean 64-bit userspace context. If we're not, 1198a055d7fSAndy Lutomirski * go to the slow exit path. 120afd30525SJuergen Gross * In the Xen PV case we must use iret anyway. 121905a36a2SIngo Molnar */ 122afd30525SJuergen Gross 123afd30525SJuergen Gross ALTERNATIVE "", "jmp swapgs_restore_regs_and_return_to_usermode", \ 124afd30525SJuergen Gross X86_FEATURE_XENPV 125afd30525SJuergen Gross 126905a36a2SIngo Molnar movq RCX(%rsp), %rcx 127905a36a2SIngo Molnar movq RIP(%rsp), %r11 1288a055d7fSAndy Lutomirski 1298a055d7fSAndy Lutomirski cmpq %rcx, %r11 /* SYSRET requires RCX == RIP */ 1308a055d7fSAndy Lutomirski jne swapgs_restore_regs_and_return_to_usermode 131905a36a2SIngo Molnar 132905a36a2SIngo Molnar /* 133905a36a2SIngo Molnar * On Intel CPUs, SYSRET with non-canonical RCX/RIP will #GP 134905a36a2SIngo Molnar * in kernel space. This essentially lets the user take over 135905a36a2SIngo Molnar * the kernel, since userspace controls RSP. 136905a36a2SIngo Molnar * 137905a36a2SIngo Molnar * If width of "canonical tail" ever becomes variable, this will need 138905a36a2SIngo Molnar * to be updated to remain correct on both old and new CPUs. 139361b4b58SKirill A. Shutemov * 140cbe0317bSKirill A. Shutemov * Change top bits to match most significant bit (47th or 56th bit 141cbe0317bSKirill A. Shutemov * depending on paging mode) in the address. 142905a36a2SIngo Molnar */ 14309e61a77SKirill A. Shutemov#ifdef CONFIG_X86_5LEVEL 14439b95522SKirill A. Shutemov ALTERNATIVE "shl $(64 - 48), %rcx; sar $(64 - 48), %rcx", \ 14539b95522SKirill A. Shutemov "shl $(64 - 57), %rcx; sar $(64 - 57), %rcx", X86_FEATURE_LA57 14609e61a77SKirill A. Shutemov#else 147905a36a2SIngo Molnar shl $(64 - (__VIRTUAL_MASK_SHIFT+1)), %rcx 148905a36a2SIngo Molnar sar $(64 - (__VIRTUAL_MASK_SHIFT+1)), %rcx 14909e61a77SKirill A. Shutemov#endif 1504d732138SIngo Molnar 151905a36a2SIngo Molnar /* If this changed %rcx, it was not canonical */ 152905a36a2SIngo Molnar cmpq %rcx, %r11 1538a055d7fSAndy Lutomirski jne swapgs_restore_regs_and_return_to_usermode 154905a36a2SIngo Molnar 155905a36a2SIngo Molnar cmpq $__USER_CS, CS(%rsp) /* CS must match SYSRET */ 1568a055d7fSAndy Lutomirski jne swapgs_restore_regs_and_return_to_usermode 157905a36a2SIngo Molnar 158905a36a2SIngo Molnar movq R11(%rsp), %r11 159905a36a2SIngo Molnar cmpq %r11, EFLAGS(%rsp) /* R11 == RFLAGS */ 1608a055d7fSAndy Lutomirski jne swapgs_restore_regs_and_return_to_usermode 161905a36a2SIngo Molnar 162905a36a2SIngo Molnar /* 1633e035305SBorislav Petkov * SYSCALL clears RF when it saves RFLAGS in R11 and SYSRET cannot 1643e035305SBorislav Petkov * restore RF properly. If the slowpath sets it for whatever reason, we 1653e035305SBorislav Petkov * need to restore it correctly. 1663e035305SBorislav Petkov * 1673e035305SBorislav Petkov * SYSRET can restore TF, but unlike IRET, restoring TF results in a 1683e035305SBorislav Petkov * trap from userspace immediately after SYSRET. This would cause an 1693e035305SBorislav Petkov * infinite loop whenever #DB happens with register state that satisfies 1703e035305SBorislav Petkov * the opportunistic SYSRET conditions. For example, single-stepping 1713e035305SBorislav Petkov * this user code: 172905a36a2SIngo Molnar * 173905a36a2SIngo Molnar * movq $stuck_here, %rcx 174905a36a2SIngo Molnar * pushfq 175905a36a2SIngo Molnar * popq %r11 176905a36a2SIngo Molnar * stuck_here: 177905a36a2SIngo Molnar * 178905a36a2SIngo Molnar * would never get past 'stuck_here'. 179905a36a2SIngo Molnar */ 180905a36a2SIngo Molnar testq $(X86_EFLAGS_RF|X86_EFLAGS_TF), %r11 1818a055d7fSAndy Lutomirski jnz swapgs_restore_regs_and_return_to_usermode 182905a36a2SIngo Molnar 183905a36a2SIngo Molnar /* nothing to check for RSP */ 184905a36a2SIngo Molnar 185905a36a2SIngo Molnar cmpq $__USER_DS, SS(%rsp) /* SS must match SYSRET */ 1868a055d7fSAndy Lutomirski jne swapgs_restore_regs_and_return_to_usermode 187905a36a2SIngo Molnar 188905a36a2SIngo Molnar /* 189905a36a2SIngo Molnar * We win! This label is here just for ease of understanding 190905a36a2SIngo Molnar * perf profiles. Nothing jumps here. 191905a36a2SIngo Molnar */ 192905a36a2SIngo Molnarsyscall_return_via_sysret: 193905a36a2SIngo Molnar /* rcx and r11 are already restored (see code above) */ 194502af0d7SDominik Brodowski POP_REGS pop_rdi=0 skip_r11rcx=1 1953e3b9293SAndy Lutomirski 1963e3b9293SAndy Lutomirski /* 1973e3b9293SAndy Lutomirski * Now all regs are restored except RSP and RDI. 1983e3b9293SAndy Lutomirski * Save old stack pointer and switch to trampoline stack. 1993e3b9293SAndy Lutomirski */ 2003e3b9293SAndy Lutomirski movq %rsp, %rdi 201c482feefSAndy Lutomirski movq PER_CPU_VAR(cpu_tss_rw + TSS_sp0), %rsp 2021fb14363SJosh Poimboeuf UNWIND_HINT_EMPTY 2033e3b9293SAndy Lutomirski 2043e3b9293SAndy Lutomirski pushq RSP-RDI(%rdi) /* RSP */ 2053e3b9293SAndy Lutomirski pushq (%rdi) /* RDI */ 2063e3b9293SAndy Lutomirski 2073e3b9293SAndy Lutomirski /* 2083e3b9293SAndy Lutomirski * We are on the trampoline stack. All regs except RDI are live. 2093e3b9293SAndy Lutomirski * We can do future final exit work right here. 2103e3b9293SAndy Lutomirski */ 211afaef01cSAlexander Popov STACKLEAK_ERASE_NOCLOBBER 212afaef01cSAlexander Popov 2136fd166aaSPeter Zijlstra SWITCH_TO_USER_CR3_STACK scratch_reg=%rdi 2143e3b9293SAndy Lutomirski 2154fbb3910SAndy Lutomirski popq %rdi 2163e3b9293SAndy Lutomirski popq %rsp 217afd30525SJuergen Gross swapgs 218afd30525SJuergen Gross sysretq 219bc7b11c0SJiri SlabySYM_CODE_END(entry_SYSCALL_64) 220905a36a2SIngo Molnar 221905a36a2SIngo Molnar/* 2220100301bSBrian Gerst * %rdi: prev task 2230100301bSBrian Gerst * %rsi: next task 2240100301bSBrian Gerst */ 225b9f6976bSThomas Gleixner.pushsection .text, "ax" 22696c64806SJosh PoimboeufSYM_FUNC_START(__switch_to_asm) 2270100301bSBrian Gerst /* 2280100301bSBrian Gerst * Save callee-saved registers 2290100301bSBrian Gerst * This must match the order in inactive_task_frame 2300100301bSBrian Gerst */ 2310100301bSBrian Gerst pushq %rbp 2320100301bSBrian Gerst pushq %rbx 2330100301bSBrian Gerst pushq %r12 2340100301bSBrian Gerst pushq %r13 2350100301bSBrian Gerst pushq %r14 2360100301bSBrian Gerst pushq %r15 2370100301bSBrian Gerst 2380100301bSBrian Gerst /* switch stack */ 2390100301bSBrian Gerst movq %rsp, TASK_threadsp(%rdi) 2400100301bSBrian Gerst movq TASK_threadsp(%rsi), %rsp 2410100301bSBrian Gerst 242050e9baaSLinus Torvalds#ifdef CONFIG_STACKPROTECTOR 2430100301bSBrian Gerst movq TASK_stack_canary(%rsi), %rbx 244e6401c13SAndy Lutomirski movq %rbx, PER_CPU_VAR(fixed_percpu_data) + stack_canary_offset 2450100301bSBrian Gerst#endif 2460100301bSBrian Gerst 247c995efd5SDavid Woodhouse#ifdef CONFIG_RETPOLINE 248c995efd5SDavid Woodhouse /* 249c995efd5SDavid Woodhouse * When switching from a shallower to a deeper call stack 250c995efd5SDavid Woodhouse * the RSB may either underflow or use entries populated 251c995efd5SDavid Woodhouse * with userspace addresses. On CPUs where those concerns 252c995efd5SDavid Woodhouse * exist, overwrite the RSB with entries which capture 253c995efd5SDavid Woodhouse * speculative execution to prevent attack. 254c995efd5SDavid Woodhouse */ 255d1c99108SDavid Woodhouse FILL_RETURN_BUFFER %r12, RSB_CLEAR_LOOPS, X86_FEATURE_RSB_CTXSW 256c995efd5SDavid Woodhouse#endif 257c995efd5SDavid Woodhouse 2580100301bSBrian Gerst /* restore callee-saved registers */ 2590100301bSBrian Gerst popq %r15 2600100301bSBrian Gerst popq %r14 2610100301bSBrian Gerst popq %r13 2620100301bSBrian Gerst popq %r12 2630100301bSBrian Gerst popq %rbx 2640100301bSBrian Gerst popq %rbp 2650100301bSBrian Gerst 2660100301bSBrian Gerst jmp __switch_to 26796c64806SJosh PoimboeufSYM_FUNC_END(__switch_to_asm) 268b9f6976bSThomas Gleixner.popsection 2690100301bSBrian Gerst 2700100301bSBrian Gerst/* 271905a36a2SIngo Molnar * A newly forked process directly context switches into this address. 272905a36a2SIngo Molnar * 2730100301bSBrian Gerst * rax: prev task we switched from 274616d2483SBrian Gerst * rbx: kernel thread func (NULL for user thread) 275616d2483SBrian Gerst * r12: kernel thread arg 276905a36a2SIngo Molnar */ 277b9f6976bSThomas Gleixner.pushsection .text, "ax" 278bc7b11c0SJiri SlabySYM_CODE_START(ret_from_fork) 2798c1f7558SJosh Poimboeuf UNWIND_HINT_EMPTY 280*3e3f0695SPeter Zijlstra ANNOTATE_NOENDBR // copy_thread 2810100301bSBrian Gerst movq %rax, %rdi 2824d732138SIngo Molnar call schedule_tail /* rdi: 'prev' task parameter */ 283905a36a2SIngo Molnar 284616d2483SBrian Gerst testq %rbx, %rbx /* from kernel_thread? */ 285616d2483SBrian Gerst jnz 1f /* kernel threads are uncommon */ 286905a36a2SIngo Molnar 287616d2483SBrian Gerst2: 2888c1f7558SJosh Poimboeuf UNWIND_HINT_REGS 289ebd57499SJosh Poimboeuf movq %rsp, %rdi 290167fd210SThomas Gleixner call syscall_exit_to_user_mode /* returns with IRQs disabled */ 2918a055d7fSAndy Lutomirski jmp swapgs_restore_regs_and_return_to_usermode 292616d2483SBrian Gerst 293616d2483SBrian Gerst1: 294616d2483SBrian Gerst /* kernel thread */ 295d31a5802SJosh Poimboeuf UNWIND_HINT_EMPTY 296616d2483SBrian Gerst movq %r12, %rdi 29734fdce69SPeter Zijlstra CALL_NOSPEC rbx 298616d2483SBrian Gerst /* 299616d2483SBrian Gerst * A kernel thread is allowed to return here after successfully 300be619f7fSEric W. Biederman * calling kernel_execve(). Exit to userspace to complete the execve() 301616d2483SBrian Gerst * syscall. 302616d2483SBrian Gerst */ 303616d2483SBrian Gerst movq $0, RAX(%rsp) 304616d2483SBrian Gerst jmp 2b 305bc7b11c0SJiri SlabySYM_CODE_END(ret_from_fork) 306b9f6976bSThomas Gleixner.popsection 307905a36a2SIngo Molnar 3081d3e53e8SAndy Lutomirski.macro DEBUG_ENTRY_ASSERT_IRQS_OFF 3091d3e53e8SAndy Lutomirski#ifdef CONFIG_DEBUG_ENTRY 310e17f8234SBoris Ostrovsky pushq %rax 311fafe5e74SJuergen Gross SAVE_FLAGS 312e17f8234SBoris Ostrovsky testl $X86_EFLAGS_IF, %eax 3131d3e53e8SAndy Lutomirski jz .Lokay_\@ 3141d3e53e8SAndy Lutomirski ud2 3151d3e53e8SAndy Lutomirski.Lokay_\@: 316e17f8234SBoris Ostrovsky popq %rax 3171d3e53e8SAndy Lutomirski#endif 3181d3e53e8SAndy Lutomirski.endm 3191d3e53e8SAndy Lutomirski 320cfa82a00SThomas Gleixner/** 321cfa82a00SThomas Gleixner * idtentry_body - Macro to emit code calling the C function 322cfa82a00SThomas Gleixner * @cfunc: C function to be called 323cfa82a00SThomas Gleixner * @has_error_code: Hardware pushed error code on stack 324cfa82a00SThomas Gleixner */ 325e2dcb5f1SThomas Gleixner.macro idtentry_body cfunc has_error_code:req 326cfa82a00SThomas Gleixner 327cfa82a00SThomas Gleixner call error_entry 328cfa82a00SThomas Gleixner UNWIND_HINT_REGS 329cfa82a00SThomas Gleixner 330cfa82a00SThomas Gleixner movq %rsp, %rdi /* pt_regs pointer into 1st argument*/ 331cfa82a00SThomas Gleixner 332cfa82a00SThomas Gleixner .if \has_error_code == 1 333cfa82a00SThomas Gleixner movq ORIG_RAX(%rsp), %rsi /* get error code into 2nd argument*/ 334cfa82a00SThomas Gleixner movq $-1, ORIG_RAX(%rsp) /* no syscall to restart */ 335cfa82a00SThomas Gleixner .endif 336cfa82a00SThomas Gleixner 337cfa82a00SThomas Gleixner call \cfunc 338cfa82a00SThomas Gleixner 339424c7d0aSThomas Gleixner jmp error_return 340cfa82a00SThomas Gleixner.endm 341cfa82a00SThomas Gleixner 342cfa82a00SThomas Gleixner/** 343cfa82a00SThomas Gleixner * idtentry - Macro to generate entry stubs for simple IDT entries 344cfa82a00SThomas Gleixner * @vector: Vector number 345cfa82a00SThomas Gleixner * @asmsym: ASM symbol for the entry point 346cfa82a00SThomas Gleixner * @cfunc: C function to be called 347cfa82a00SThomas Gleixner * @has_error_code: Hardware pushed error code on stack 348cfa82a00SThomas Gleixner * 349cfa82a00SThomas Gleixner * The macro emits code to set up the kernel context for straight forward 350cfa82a00SThomas Gleixner * and simple IDT entries. No IST stack, no paranoid entry checks. 351cfa82a00SThomas Gleixner */ 352e2dcb5f1SThomas Gleixner.macro idtentry vector asmsym cfunc has_error_code:req 353cfa82a00SThomas GleixnerSYM_CODE_START(\asmsym) 354cfa82a00SThomas Gleixner UNWIND_HINT_IRET_REGS offset=\has_error_code*8 3558f93402bSPeter Zijlstra ENDBR 356cfa82a00SThomas Gleixner ASM_CLAC 357cfa82a00SThomas Gleixner 358cfa82a00SThomas Gleixner .if \has_error_code == 0 359cfa82a00SThomas Gleixner pushq $-1 /* ORIG_RAX: no syscall to restart */ 360cfa82a00SThomas Gleixner .endif 361cfa82a00SThomas Gleixner 362cfa82a00SThomas Gleixner .if \vector == X86_TRAP_BP 363cfa82a00SThomas Gleixner /* 364cfa82a00SThomas Gleixner * If coming from kernel space, create a 6-word gap to allow the 365cfa82a00SThomas Gleixner * int3 handler to emulate a call instruction. 366cfa82a00SThomas Gleixner */ 367cfa82a00SThomas Gleixner testb $3, CS-ORIG_RAX(%rsp) 368cfa82a00SThomas Gleixner jnz .Lfrom_usermode_no_gap_\@ 369cfa82a00SThomas Gleixner .rept 6 370cfa82a00SThomas Gleixner pushq 5*8(%rsp) 371cfa82a00SThomas Gleixner .endr 372cfa82a00SThomas Gleixner UNWIND_HINT_IRET_REGS offset=8 373cfa82a00SThomas Gleixner.Lfrom_usermode_no_gap_\@: 374cfa82a00SThomas Gleixner .endif 375cfa82a00SThomas Gleixner 376e2dcb5f1SThomas Gleixner idtentry_body \cfunc \has_error_code 377cfa82a00SThomas Gleixner 378cfa82a00SThomas Gleixner_ASM_NOKPROBE(\asmsym) 379cfa82a00SThomas GleixnerSYM_CODE_END(\asmsym) 380cfa82a00SThomas Gleixner.endm 381cfa82a00SThomas Gleixner 382cfa82a00SThomas Gleixner/* 3830bf7c314SThomas Gleixner * Interrupt entry/exit. 3840bf7c314SThomas Gleixner * 3850bf7c314SThomas Gleixner + The interrupt stubs push (vector) onto the stack, which is the error_code 3860bf7c314SThomas Gleixner * position of idtentry exceptions, and jump to one of the two idtentry points 3870bf7c314SThomas Gleixner * (common/spurious). 3880bf7c314SThomas Gleixner * 3890bf7c314SThomas Gleixner * common_interrupt is a hotpath, align it to a cache line 3900bf7c314SThomas Gleixner */ 3910bf7c314SThomas Gleixner.macro idtentry_irq vector cfunc 3920bf7c314SThomas Gleixner .p2align CONFIG_X86_L1_CACHE_SHIFT 3930bf7c314SThomas Gleixner idtentry \vector asm_\cfunc \cfunc has_error_code=1 3940bf7c314SThomas Gleixner.endm 3950bf7c314SThomas Gleixner 3960bf7c314SThomas Gleixner/* 3976368558cSThomas Gleixner * System vectors which invoke their handlers directly and are not 3986368558cSThomas Gleixner * going through the regular common device interrupt handling code. 3996368558cSThomas Gleixner */ 4006368558cSThomas Gleixner.macro idtentry_sysvec vector cfunc 4016368558cSThomas Gleixner idtentry \vector asm_\cfunc \cfunc has_error_code=0 4026368558cSThomas Gleixner.endm 4036368558cSThomas Gleixner 404cfa82a00SThomas Gleixner/** 405cfa82a00SThomas Gleixner * idtentry_mce_db - Macro to generate entry stubs for #MC and #DB 406cfa82a00SThomas Gleixner * @vector: Vector number 407cfa82a00SThomas Gleixner * @asmsym: ASM symbol for the entry point 408cfa82a00SThomas Gleixner * @cfunc: C function to be called 409cfa82a00SThomas Gleixner * 410cfa82a00SThomas Gleixner * The macro emits code to set up the kernel context for #MC and #DB 411cfa82a00SThomas Gleixner * 412cfa82a00SThomas Gleixner * If the entry comes from user space it uses the normal entry path 413cfa82a00SThomas Gleixner * including the return to user space work and preemption checks on 414cfa82a00SThomas Gleixner * exit. 415cfa82a00SThomas Gleixner * 416cfa82a00SThomas Gleixner * If hits in kernel mode then it needs to go through the paranoid 417cfa82a00SThomas Gleixner * entry as the exception can hit any random state. No preemption 418cfa82a00SThomas Gleixner * check on exit to keep the paranoid path simple. 419cfa82a00SThomas Gleixner */ 420cfa82a00SThomas Gleixner.macro idtentry_mce_db vector asmsym cfunc 421cfa82a00SThomas GleixnerSYM_CODE_START(\asmsym) 422cfa82a00SThomas Gleixner UNWIND_HINT_IRET_REGS 4238f93402bSPeter Zijlstra ENDBR 424cfa82a00SThomas Gleixner ASM_CLAC 425cfa82a00SThomas Gleixner 426cfa82a00SThomas Gleixner pushq $-1 /* ORIG_RAX: no syscall to restart */ 427cfa82a00SThomas Gleixner 428cfa82a00SThomas Gleixner /* 429cfa82a00SThomas Gleixner * If the entry is from userspace, switch stacks and treat it as 430cfa82a00SThomas Gleixner * a normal entry. 431cfa82a00SThomas Gleixner */ 432cfa82a00SThomas Gleixner testb $3, CS-ORIG_RAX(%rsp) 433cfa82a00SThomas Gleixner jnz .Lfrom_usermode_switch_stack_\@ 434cfa82a00SThomas Gleixner 435c82965f9SChang S. Bae /* paranoid_entry returns GS information for paranoid_exit in EBX. */ 436cfa82a00SThomas Gleixner call paranoid_entry 437cfa82a00SThomas Gleixner 438cfa82a00SThomas Gleixner UNWIND_HINT_REGS 439cfa82a00SThomas Gleixner 440cfa82a00SThomas Gleixner movq %rsp, %rdi /* pt_regs pointer */ 441cfa82a00SThomas Gleixner 442cfa82a00SThomas Gleixner call \cfunc 443cfa82a00SThomas Gleixner 444cfa82a00SThomas Gleixner jmp paranoid_exit 445cfa82a00SThomas Gleixner 446cfa82a00SThomas Gleixner /* Switch to the regular task stack and use the noist entry point */ 447cfa82a00SThomas Gleixner.Lfrom_usermode_switch_stack_\@: 448e2dcb5f1SThomas Gleixner idtentry_body noist_\cfunc, has_error_code=0 449cfa82a00SThomas Gleixner 450cfa82a00SThomas Gleixner_ASM_NOKPROBE(\asmsym) 451cfa82a00SThomas GleixnerSYM_CODE_END(\asmsym) 452cfa82a00SThomas Gleixner.endm 453cfa82a00SThomas Gleixner 454a13644f3SJoerg Roedel#ifdef CONFIG_AMD_MEM_ENCRYPT 455a13644f3SJoerg Roedel/** 456a13644f3SJoerg Roedel * idtentry_vc - Macro to generate entry stub for #VC 457a13644f3SJoerg Roedel * @vector: Vector number 458a13644f3SJoerg Roedel * @asmsym: ASM symbol for the entry point 459a13644f3SJoerg Roedel * @cfunc: C function to be called 460a13644f3SJoerg Roedel * 461a13644f3SJoerg Roedel * The macro emits code to set up the kernel context for #VC. The #VC handler 462a13644f3SJoerg Roedel * runs on an IST stack and needs to be able to cause nested #VC exceptions. 463a13644f3SJoerg Roedel * 464a13644f3SJoerg Roedel * To make this work the #VC entry code tries its best to pretend it doesn't use 465a13644f3SJoerg Roedel * an IST stack by switching to the task stack if coming from user-space (which 466a13644f3SJoerg Roedel * includes early SYSCALL entry path) or back to the stack in the IRET frame if 467a13644f3SJoerg Roedel * entered from kernel-mode. 468a13644f3SJoerg Roedel * 469a13644f3SJoerg Roedel * If entered from kernel-mode the return stack is validated first, and if it is 470a13644f3SJoerg Roedel * not safe to use (e.g. because it points to the entry stack) the #VC handler 471a13644f3SJoerg Roedel * will switch to a fall-back stack (VC2) and call a special handler function. 472a13644f3SJoerg Roedel * 473a13644f3SJoerg Roedel * The macro is only used for one vector, but it is planned to be extended in 474a13644f3SJoerg Roedel * the future for the #HV exception. 475a13644f3SJoerg Roedel */ 476a13644f3SJoerg Roedel.macro idtentry_vc vector asmsym cfunc 477a13644f3SJoerg RoedelSYM_CODE_START(\asmsym) 478a13644f3SJoerg Roedel UNWIND_HINT_IRET_REGS 4798f93402bSPeter Zijlstra ENDBR 480a13644f3SJoerg Roedel ASM_CLAC 481a13644f3SJoerg Roedel 482a13644f3SJoerg Roedel /* 483a13644f3SJoerg Roedel * If the entry is from userspace, switch stacks and treat it as 484a13644f3SJoerg Roedel * a normal entry. 485a13644f3SJoerg Roedel */ 486a13644f3SJoerg Roedel testb $3, CS-ORIG_RAX(%rsp) 487a13644f3SJoerg Roedel jnz .Lfrom_usermode_switch_stack_\@ 488a13644f3SJoerg Roedel 489a13644f3SJoerg Roedel /* 490a13644f3SJoerg Roedel * paranoid_entry returns SWAPGS flag for paranoid_exit in EBX. 491a13644f3SJoerg Roedel * EBX == 0 -> SWAPGS, EBX == 1 -> no SWAPGS 492a13644f3SJoerg Roedel */ 493a13644f3SJoerg Roedel call paranoid_entry 494a13644f3SJoerg Roedel 495a13644f3SJoerg Roedel UNWIND_HINT_REGS 496a13644f3SJoerg Roedel 497a13644f3SJoerg Roedel /* 498a13644f3SJoerg Roedel * Switch off the IST stack to make it free for nested exceptions. The 499a13644f3SJoerg Roedel * vc_switch_off_ist() function will switch back to the interrupted 500a13644f3SJoerg Roedel * stack if it is safe to do so. If not it switches to the VC fall-back 501a13644f3SJoerg Roedel * stack. 502a13644f3SJoerg Roedel */ 503a13644f3SJoerg Roedel movq %rsp, %rdi /* pt_regs pointer */ 504a13644f3SJoerg Roedel call vc_switch_off_ist 505a13644f3SJoerg Roedel movq %rax, %rsp /* Switch to new stack */ 506a13644f3SJoerg Roedel 507a13644f3SJoerg Roedel UNWIND_HINT_REGS 508a13644f3SJoerg Roedel 509a13644f3SJoerg Roedel /* Update pt_regs */ 510a13644f3SJoerg Roedel movq ORIG_RAX(%rsp), %rsi /* get error code into 2nd argument*/ 511a13644f3SJoerg Roedel movq $-1, ORIG_RAX(%rsp) /* no syscall to restart */ 512a13644f3SJoerg Roedel 513a13644f3SJoerg Roedel movq %rsp, %rdi /* pt_regs pointer */ 514a13644f3SJoerg Roedel 515be1a5408SJoerg Roedel call kernel_\cfunc 516a13644f3SJoerg Roedel 517a13644f3SJoerg Roedel /* 518a13644f3SJoerg Roedel * No need to switch back to the IST stack. The current stack is either 519a13644f3SJoerg Roedel * identical to the stack in the IRET frame or the VC fall-back stack, 520163b0991SIngo Molnar * so it is definitely mapped even with PTI enabled. 521a13644f3SJoerg Roedel */ 522a13644f3SJoerg Roedel jmp paranoid_exit 523a13644f3SJoerg Roedel 524a13644f3SJoerg Roedel /* Switch to the regular task stack */ 525a13644f3SJoerg Roedel.Lfrom_usermode_switch_stack_\@: 526be1a5408SJoerg Roedel idtentry_body user_\cfunc, has_error_code=1 527a13644f3SJoerg Roedel 528a13644f3SJoerg Roedel_ASM_NOKPROBE(\asmsym) 529a13644f3SJoerg RoedelSYM_CODE_END(\asmsym) 530a13644f3SJoerg Roedel.endm 531a13644f3SJoerg Roedel#endif 532a13644f3SJoerg Roedel 533cfa82a00SThomas Gleixner/* 534cfa82a00SThomas Gleixner * Double fault entry. Straight paranoid. No checks from which context 535cfa82a00SThomas Gleixner * this comes because for the espfix induced #DF this would do the wrong 536cfa82a00SThomas Gleixner * thing. 537cfa82a00SThomas Gleixner */ 538cfa82a00SThomas Gleixner.macro idtentry_df vector asmsym cfunc 539cfa82a00SThomas GleixnerSYM_CODE_START(\asmsym) 540cfa82a00SThomas Gleixner UNWIND_HINT_IRET_REGS offset=8 5418f93402bSPeter Zijlstra ENDBR 542cfa82a00SThomas Gleixner ASM_CLAC 543cfa82a00SThomas Gleixner 544c82965f9SChang S. Bae /* paranoid_entry returns GS information for paranoid_exit in EBX. */ 545cfa82a00SThomas Gleixner call paranoid_entry 546cfa82a00SThomas Gleixner UNWIND_HINT_REGS 547cfa82a00SThomas Gleixner 548cfa82a00SThomas Gleixner movq %rsp, %rdi /* pt_regs pointer into first argument */ 549cfa82a00SThomas Gleixner movq ORIG_RAX(%rsp), %rsi /* get error code into 2nd argument*/ 550cfa82a00SThomas Gleixner movq $-1, ORIG_RAX(%rsp) /* no syscall to restart */ 551cfa82a00SThomas Gleixner call \cfunc 552cfa82a00SThomas Gleixner 553cfa82a00SThomas Gleixner jmp paranoid_exit 554cfa82a00SThomas Gleixner 555cfa82a00SThomas Gleixner_ASM_NOKPROBE(\asmsym) 556cfa82a00SThomas GleixnerSYM_CODE_END(\asmsym) 557cfa82a00SThomas Gleixner.endm 558cfa82a00SThomas Gleixner 559905a36a2SIngo Molnar/* 56053aaf262SThomas Gleixner * Include the defines which emit the idt entries which are shared 561f0178fc0SThomas Gleixner * shared between 32 and 64 bit and emit the __irqentry_text_* markers 562f0178fc0SThomas Gleixner * so the stacktrace boundary checks work. 56353aaf262SThomas Gleixner */ 564f0178fc0SThomas Gleixner .align 16 565f0178fc0SThomas Gleixner .globl __irqentry_text_start 566f0178fc0SThomas Gleixner__irqentry_text_start: 567f0178fc0SThomas Gleixner 56853aaf262SThomas Gleixner#include <asm/idtentry.h> 56953aaf262SThomas Gleixner 570f0178fc0SThomas Gleixner .align 16 571f0178fc0SThomas Gleixner .globl __irqentry_text_end 572f0178fc0SThomas Gleixner__irqentry_text_end: 573*3e3f0695SPeter Zijlstra ANNOTATE_NOENDBR 574f0178fc0SThomas Gleixner 575fa5e5c40SThomas GleixnerSYM_CODE_START_LOCAL(common_interrupt_return) 57626ba4e57SJiri SlabySYM_INNER_LABEL(swapgs_restore_regs_and_return_to_usermode, SYM_L_GLOBAL) 57726c4ef9cSAndy Lutomirski#ifdef CONFIG_DEBUG_ENTRY 57826c4ef9cSAndy Lutomirski /* Assert that pt_regs indicates user mode. */ 5791e4c4f61SBorislav Petkov testb $3, CS(%rsp) 58026c4ef9cSAndy Lutomirski jnz 1f 58126c4ef9cSAndy Lutomirski ud2 58226c4ef9cSAndy Lutomirski1: 58326c4ef9cSAndy Lutomirski#endif 5845c8f6a2eSLai Jiangshan#ifdef CONFIG_XEN_PV 5855c8f6a2eSLai Jiangshan ALTERNATIVE "", "jmp xenpv_restore_regs_and_return_to_usermode", X86_FEATURE_XENPV 5865c8f6a2eSLai Jiangshan#endif 5875c8f6a2eSLai Jiangshan 588502af0d7SDominik Brodowski POP_REGS pop_rdi=0 5893e3b9293SAndy Lutomirski 5903e3b9293SAndy Lutomirski /* 5913e3b9293SAndy Lutomirski * The stack is now user RDI, orig_ax, RIP, CS, EFLAGS, RSP, SS. 5923e3b9293SAndy Lutomirski * Save old stack pointer and switch to trampoline stack. 5933e3b9293SAndy Lutomirski */ 5943e3b9293SAndy Lutomirski movq %rsp, %rdi 595c482feefSAndy Lutomirski movq PER_CPU_VAR(cpu_tss_rw + TSS_sp0), %rsp 5961fb14363SJosh Poimboeuf UNWIND_HINT_EMPTY 5973e3b9293SAndy Lutomirski 5983e3b9293SAndy Lutomirski /* Copy the IRET frame to the trampoline stack. */ 5993e3b9293SAndy Lutomirski pushq 6*8(%rdi) /* SS */ 6003e3b9293SAndy Lutomirski pushq 5*8(%rdi) /* RSP */ 6013e3b9293SAndy Lutomirski pushq 4*8(%rdi) /* EFLAGS */ 6023e3b9293SAndy Lutomirski pushq 3*8(%rdi) /* CS */ 6033e3b9293SAndy Lutomirski pushq 2*8(%rdi) /* RIP */ 6043e3b9293SAndy Lutomirski 6053e3b9293SAndy Lutomirski /* Push user RDI on the trampoline stack. */ 6063e3b9293SAndy Lutomirski pushq (%rdi) 6073e3b9293SAndy Lutomirski 6083e3b9293SAndy Lutomirski /* 6093e3b9293SAndy Lutomirski * We are on the trampoline stack. All regs except RDI are live. 6103e3b9293SAndy Lutomirski * We can do future final exit work right here. 6113e3b9293SAndy Lutomirski */ 612afaef01cSAlexander Popov STACKLEAK_ERASE_NOCLOBBER 6133e3b9293SAndy Lutomirski 6146fd166aaSPeter Zijlstra SWITCH_TO_USER_CR3_STACK scratch_reg=%rdi 6158a09317bSDave Hansen 6163e3b9293SAndy Lutomirski /* Restore RDI. */ 6173e3b9293SAndy Lutomirski popq %rdi 6186cf3e4c0SPeter Zijlstra swapgs 6198b87d8ceSPeter Zijlstra jmp .Lnative_iret 62026c4ef9cSAndy Lutomirski 621905a36a2SIngo Molnar 62226ba4e57SJiri SlabySYM_INNER_LABEL(restore_regs_and_return_to_kernel, SYM_L_GLOBAL) 62326c4ef9cSAndy Lutomirski#ifdef CONFIG_DEBUG_ENTRY 62426c4ef9cSAndy Lutomirski /* Assert that pt_regs indicates kernel mode. */ 6251e4c4f61SBorislav Petkov testb $3, CS(%rsp) 62626c4ef9cSAndy Lutomirski jz 1f 62726c4ef9cSAndy Lutomirski ud2 62826c4ef9cSAndy Lutomirski1: 62926c4ef9cSAndy Lutomirski#endif 630502af0d7SDominik Brodowski POP_REGS 631e872045bSAndy Lutomirski addq $8, %rsp /* skip regs->orig_ax */ 63210bcc80eSMathieu Desnoyers /* 63310bcc80eSMathieu Desnoyers * ARCH_HAS_MEMBARRIER_SYNC_CORE rely on IRET core serialization 63410bcc80eSMathieu Desnoyers * when returning from IPI handler. 63510bcc80eSMathieu Desnoyers */ 6368b87d8ceSPeter Zijlstra#ifdef CONFIG_XEN_PV 6378b87d8ceSPeter ZijlstraSYM_INNER_LABEL(early_xen_iret_patch, SYM_L_GLOBAL) 6388b87d8ceSPeter Zijlstra ANNOTATE_NOENDBR 6398b87d8ceSPeter Zijlstra .byte 0xe9 6408b87d8ceSPeter Zijlstra .long .Lnative_iret - (. + 4) 6418b87d8ceSPeter Zijlstra#endif 642905a36a2SIngo Molnar 6438b87d8ceSPeter Zijlstra.Lnative_iret: 6448c1f7558SJosh Poimboeuf UNWIND_HINT_IRET_REGS 645905a36a2SIngo Molnar /* 646905a36a2SIngo Molnar * Are we returning to a stack segment from the LDT? Note: in 647905a36a2SIngo Molnar * 64-bit mode SS:RSP on the exception stack is always valid. 648905a36a2SIngo Molnar */ 649905a36a2SIngo Molnar#ifdef CONFIG_X86_ESPFIX64 650905a36a2SIngo Molnar testb $4, (SS-RIP)(%rsp) 651905a36a2SIngo Molnar jnz native_irq_return_ldt 652905a36a2SIngo Molnar#endif 653905a36a2SIngo Molnar 654cc66936eSJiri SlabySYM_INNER_LABEL(native_irq_return_iret, SYM_L_GLOBAL) 655*3e3f0695SPeter Zijlstra ANNOTATE_NOENDBR // exc_double_fault 656905a36a2SIngo Molnar /* 657905a36a2SIngo Molnar * This may fault. Non-paranoid faults on return to userspace are 658905a36a2SIngo Molnar * handled by fixup_bad_iret. These include #SS, #GP, and #NP. 659c29c775aSThomas Gleixner * Double-faults due to espfix64 are handled in exc_double_fault. 660905a36a2SIngo Molnar * Other faults here are fatal. 661905a36a2SIngo Molnar */ 662905a36a2SIngo Molnar iretq 663905a36a2SIngo Molnar 664905a36a2SIngo Molnar#ifdef CONFIG_X86_ESPFIX64 665905a36a2SIngo Molnarnative_irq_return_ldt: 66685063facSAndy Lutomirski /* 66785063facSAndy Lutomirski * We are running with user GSBASE. All GPRs contain their user 66885063facSAndy Lutomirski * values. We have a percpu ESPFIX stack that is eight slots 66985063facSAndy Lutomirski * long (see ESPFIX_STACK_SIZE). espfix_waddr points to the bottom 67085063facSAndy Lutomirski * of the ESPFIX stack. 67185063facSAndy Lutomirski * 67285063facSAndy Lutomirski * We clobber RAX and RDI in this code. We stash RDI on the 67385063facSAndy Lutomirski * normal stack and RAX on the ESPFIX stack. 67485063facSAndy Lutomirski * 67585063facSAndy Lutomirski * The ESPFIX stack layout we set up looks like this: 67685063facSAndy Lutomirski * 67785063facSAndy Lutomirski * --- top of ESPFIX stack --- 67885063facSAndy Lutomirski * SS 67985063facSAndy Lutomirski * RSP 68085063facSAndy Lutomirski * RFLAGS 68185063facSAndy Lutomirski * CS 68285063facSAndy Lutomirski * RIP <-- RSP points here when we're done 68385063facSAndy Lutomirski * RAX <-- espfix_waddr points here 68485063facSAndy Lutomirski * --- bottom of ESPFIX stack --- 68585063facSAndy Lutomirski */ 68685063facSAndy Lutomirski 68785063facSAndy Lutomirski pushq %rdi /* Stash user RDI */ 68853c9d924SJuergen Gross swapgs /* to kernel GS */ 6898a09317bSDave Hansen SWITCH_TO_KERNEL_CR3 scratch_reg=%rdi /* to kernel CR3 */ 6908a09317bSDave Hansen 691905a36a2SIngo Molnar movq PER_CPU_VAR(espfix_waddr), %rdi 69285063facSAndy Lutomirski movq %rax, (0*8)(%rdi) /* user RAX */ 69385063facSAndy Lutomirski movq (1*8)(%rsp), %rax /* user RIP */ 694905a36a2SIngo Molnar movq %rax, (1*8)(%rdi) 69585063facSAndy Lutomirski movq (2*8)(%rsp), %rax /* user CS */ 696905a36a2SIngo Molnar movq %rax, (2*8)(%rdi) 69785063facSAndy Lutomirski movq (3*8)(%rsp), %rax /* user RFLAGS */ 698905a36a2SIngo Molnar movq %rax, (3*8)(%rdi) 69985063facSAndy Lutomirski movq (5*8)(%rsp), %rax /* user SS */ 700905a36a2SIngo Molnar movq %rax, (5*8)(%rdi) 70185063facSAndy Lutomirski movq (4*8)(%rsp), %rax /* user RSP */ 702905a36a2SIngo Molnar movq %rax, (4*8)(%rdi) 70385063facSAndy Lutomirski /* Now RAX == RSP. */ 70485063facSAndy Lutomirski 70585063facSAndy Lutomirski andl $0xffff0000, %eax /* RAX = (RSP & 0xffff0000) */ 70685063facSAndy Lutomirski 70785063facSAndy Lutomirski /* 70885063facSAndy Lutomirski * espfix_stack[31:16] == 0. The page tables are set up such that 70985063facSAndy Lutomirski * (espfix_stack | (X & 0xffff0000)) points to a read-only alias of 71085063facSAndy Lutomirski * espfix_waddr for any X. That is, there are 65536 RO aliases of 71185063facSAndy Lutomirski * the same page. Set up RSP so that RSP[31:16] contains the 71285063facSAndy Lutomirski * respective 16 bits of the /userspace/ RSP and RSP nonetheless 71385063facSAndy Lutomirski * still points to an RO alias of the ESPFIX stack. 71485063facSAndy Lutomirski */ 715905a36a2SIngo Molnar orq PER_CPU_VAR(espfix_stack), %rax 7168a09317bSDave Hansen 7176fd166aaSPeter Zijlstra SWITCH_TO_USER_CR3_STACK scratch_reg=%rdi 71853c9d924SJuergen Gross swapgs /* to user GS */ 7198a09317bSDave Hansen popq %rdi /* Restore user RDI */ 7208a09317bSDave Hansen 721905a36a2SIngo Molnar movq %rax, %rsp 7228c1f7558SJosh Poimboeuf UNWIND_HINT_IRET_REGS offset=8 72385063facSAndy Lutomirski 72485063facSAndy Lutomirski /* 72585063facSAndy Lutomirski * At this point, we cannot write to the stack any more, but we can 72685063facSAndy Lutomirski * still read. 72785063facSAndy Lutomirski */ 72885063facSAndy Lutomirski popq %rax /* Restore user RAX */ 72985063facSAndy Lutomirski 73085063facSAndy Lutomirski /* 73185063facSAndy Lutomirski * RSP now points to an ordinary IRET frame, except that the page 73285063facSAndy Lutomirski * is read-only and RSP[31:16] are preloaded with the userspace 73385063facSAndy Lutomirski * values. We can now IRET back to userspace. 73485063facSAndy Lutomirski */ 735905a36a2SIngo Molnar jmp native_irq_return_iret 736905a36a2SIngo Molnar#endif 737fa5e5c40SThomas GleixnerSYM_CODE_END(common_interrupt_return) 738fa5e5c40SThomas Gleixner_ASM_NOKPROBE(common_interrupt_return) 739905a36a2SIngo Molnar 740905a36a2SIngo Molnar/* 7414d732138SIngo Molnar * Reload gs selector with exception handling 7424d732138SIngo Molnar * edi: new selector 743b9f6976bSThomas Gleixner * 744b9f6976bSThomas Gleixner * Is in entry.text as it shouldn't be instrumented. 7454d732138SIngo Molnar */ 746410367e3SThomas GleixnerSYM_FUNC_START(asm_load_gs_index) 7478c1f7558SJosh Poimboeuf FRAME_BEGIN 748c9317202SThomas Gleixner swapgs 74942c748bbSBorislav Petkov.Lgs_change: 750*3e3f0695SPeter Zijlstra ANNOTATE_NOENDBR // error_entry 751905a36a2SIngo Molnar movl %edi, %gs 75296e5d28aSBorislav Petkov2: ALTERNATIVE "", "mfence", X86_BUG_SWAPGS_FENCE 753c9317202SThomas Gleixner swapgs 7548c1f7558SJosh Poimboeuf FRAME_END 755f94909ceSPeter Zijlstra RET 756905a36a2SIngo Molnar 757905a36a2SIngo Molnar /* running with kernelgs */ 75816e617d0SPeter Zijlstra.Lbad_gs: 759c9317202SThomas Gleixner swapgs /* switch back to user gs */ 760b038c842SAndy Lutomirski.macro ZAP_GS 761b038c842SAndy Lutomirski /* This can't be a string because the preprocessor needs to see it. */ 762b038c842SAndy Lutomirski movl $__USER_DS, %eax 763b038c842SAndy Lutomirski movl %eax, %gs 764b038c842SAndy Lutomirski.endm 765b038c842SAndy Lutomirski ALTERNATIVE "", "ZAP_GS", X86_BUG_NULL_SEG 766905a36a2SIngo Molnar xorl %eax, %eax 767905a36a2SIngo Molnar movl %eax, %gs 768905a36a2SIngo Molnar jmp 2b 76916e617d0SPeter Zijlstra 77016e617d0SPeter Zijlstra _ASM_EXTABLE(.Lgs_change, .Lbad_gs) 77116e617d0SPeter Zijlstra 77216e617d0SPeter ZijlstraSYM_FUNC_END(asm_load_gs_index) 77316e617d0SPeter ZijlstraEXPORT_SYMBOL(asm_load_gs_index) 774905a36a2SIngo Molnar 77528c11b0fSJuergen Gross#ifdef CONFIG_XEN_PV 776905a36a2SIngo Molnar/* 777905a36a2SIngo Molnar * A note on the "critical region" in our callback handler. 778905a36a2SIngo Molnar * We want to avoid stacking callback handlers due to events occurring 779905a36a2SIngo Molnar * during handling of the last event. To do this, we keep events disabled 780905a36a2SIngo Molnar * until we've done all processing. HOWEVER, we must enable events before 781905a36a2SIngo Molnar * popping the stack frame (can't be done atomically) and so it would still 782905a36a2SIngo Molnar * be possible to get enough handler activations to overflow the stack. 783905a36a2SIngo Molnar * Although unlikely, bugs of that kind are hard to track down, so we'd 784905a36a2SIngo Molnar * like to avoid the possibility. 785905a36a2SIngo Molnar * So, on entry to the handler we detect whether we interrupted an 786905a36a2SIngo Molnar * existing activation in its critical region -- if so, we pop the current 787905a36a2SIngo Molnar * activation and restart the handler using the previous one. 7882f6474e4SThomas Gleixner * 7892f6474e4SThomas Gleixner * C calling convention: exc_xen_hypervisor_callback(struct *pt_regs) 790905a36a2SIngo Molnar */ 7912f6474e4SThomas GleixnerSYM_CODE_START_LOCAL(exc_xen_hypervisor_callback) 7924d732138SIngo Molnar 793905a36a2SIngo Molnar/* 794905a36a2SIngo Molnar * Since we don't modify %rdi, evtchn_do_upall(struct *pt_regs) will 795905a36a2SIngo Molnar * see the correct pointer to the pt_regs 796905a36a2SIngo Molnar */ 7978c1f7558SJosh Poimboeuf UNWIND_HINT_FUNC 7984d732138SIngo Molnar movq %rdi, %rsp /* we don't return, adjust the stack frame */ 7998c1f7558SJosh Poimboeuf UNWIND_HINT_REGS 8001d3e53e8SAndy Lutomirski 8012f6474e4SThomas Gleixner call xen_pv_evtchn_do_upcall 8021d3e53e8SAndy Lutomirski 8032f6474e4SThomas Gleixner jmp error_return 8042f6474e4SThomas GleixnerSYM_CODE_END(exc_xen_hypervisor_callback) 805905a36a2SIngo Molnar 806905a36a2SIngo Molnar/* 807905a36a2SIngo Molnar * Hypervisor uses this for application faults while it executes. 808905a36a2SIngo Molnar * We get here for two reasons: 809905a36a2SIngo Molnar * 1. Fault while reloading DS, ES, FS or GS 810905a36a2SIngo Molnar * 2. Fault while executing IRET 811905a36a2SIngo Molnar * Category 1 we do not need to fix up as Xen has already reloaded all segment 812905a36a2SIngo Molnar * registers that could be reloaded and zeroed the others. 813905a36a2SIngo Molnar * Category 2 we fix up by killing the current process. We cannot use the 814905a36a2SIngo Molnar * normal Linux return path in this case because if we use the IRET hypercall 815905a36a2SIngo Molnar * to pop the stack frame we end up in an infinite loop of failsafe callbacks. 816905a36a2SIngo Molnar * We distinguish between categories by comparing each saved segment register 817905a36a2SIngo Molnar * with its current contents: any discrepancy means we in category 1. 818905a36a2SIngo Molnar */ 819bc7b11c0SJiri SlabySYM_CODE_START(xen_failsafe_callback) 8208c1f7558SJosh Poimboeuf UNWIND_HINT_EMPTY 8215b2fc515SPeter Zijlstra ENDBR 822905a36a2SIngo Molnar movl %ds, %ecx 823905a36a2SIngo Molnar cmpw %cx, 0x10(%rsp) 824905a36a2SIngo Molnar jne 1f 825905a36a2SIngo Molnar movl %es, %ecx 826905a36a2SIngo Molnar cmpw %cx, 0x18(%rsp) 827905a36a2SIngo Molnar jne 1f 828905a36a2SIngo Molnar movl %fs, %ecx 829905a36a2SIngo Molnar cmpw %cx, 0x20(%rsp) 830905a36a2SIngo Molnar jne 1f 831905a36a2SIngo Molnar movl %gs, %ecx 832905a36a2SIngo Molnar cmpw %cx, 0x28(%rsp) 833905a36a2SIngo Molnar jne 1f 834905a36a2SIngo Molnar /* All segments match their saved values => Category 2 (Bad IRET). */ 835905a36a2SIngo Molnar movq (%rsp), %rcx 836905a36a2SIngo Molnar movq 8(%rsp), %r11 837905a36a2SIngo Molnar addq $0x30, %rsp 838905a36a2SIngo Molnar pushq $0 /* RIP */ 8398c1f7558SJosh Poimboeuf UNWIND_HINT_IRET_REGS offset=8 840be4c11afSThomas Gleixner jmp asm_exc_general_protection 841905a36a2SIngo Molnar1: /* Segment mismatch => Category 1 (Bad segment). Retry the IRET. */ 842905a36a2SIngo Molnar movq (%rsp), %rcx 843905a36a2SIngo Molnar movq 8(%rsp), %r11 844905a36a2SIngo Molnar addq $0x30, %rsp 8458c1f7558SJosh Poimboeuf UNWIND_HINT_IRET_REGS 846905a36a2SIngo Molnar pushq $-1 /* orig_ax = -1 => not a system call */ 8473f01daecSDominik Brodowski PUSH_AND_CLEAR_REGS 848946c1911SJosh Poimboeuf ENCODE_FRAME_POINTER 849e88d9741SThomas Gleixner jmp error_return 850bc7b11c0SJiri SlabySYM_CODE_END(xen_failsafe_callback) 85128c11b0fSJuergen Gross#endif /* CONFIG_XEN_PV */ 852905a36a2SIngo Molnar 853905a36a2SIngo Molnar/* 854c82965f9SChang S. Bae * Save all registers in pt_regs. Return GSBASE related information 855c82965f9SChang S. Bae * in EBX depending on the availability of the FSGSBASE instructions: 856c82965f9SChang S. Bae * 857c82965f9SChang S. Bae * FSGSBASE R/EBX 858c82965f9SChang S. Bae * N 0 -> SWAPGS on exit 859c82965f9SChang S. Bae * 1 -> no SWAPGS on exit 860c82965f9SChang S. Bae * 861c82965f9SChang S. Bae * Y GSBASE value at entry, must be restored in paranoid_exit 862905a36a2SIngo Molnar */ 863ef1e0315SJiri SlabySYM_CODE_START_LOCAL(paranoid_entry) 8648c1f7558SJosh Poimboeuf UNWIND_HINT_FUNC 865905a36a2SIngo Molnar cld 8669e809d15SDominik Brodowski PUSH_AND_CLEAR_REGS save_ret=1 8679e809d15SDominik Brodowski ENCODE_FRAME_POINTER 8 8688a09317bSDave Hansen 86916561f27SDave Hansen /* 87016561f27SDave Hansen * Always stash CR3 in %r14. This value will be restored, 871ae852495SAndy Lutomirski * verbatim, at exit. Needed if paranoid_entry interrupted 872ae852495SAndy Lutomirski * another entry that already switched to the user CR3 value 873ae852495SAndy Lutomirski * but has not yet returned to userspace. 87416561f27SDave Hansen * 87516561f27SDave Hansen * This is also why CS (stashed in the "iret frame" by the 87616561f27SDave Hansen * hardware at entry) can not be used: this may be a return 877ae852495SAndy Lutomirski * to kernel code, but with a user CR3 value. 87896b23714SChang S. Bae * 87996b23714SChang S. Bae * Switching CR3 does not depend on kernel GSBASE so it can 88096b23714SChang S. Bae * be done before switching to the kernel GSBASE. This is 88196b23714SChang S. Bae * required for FSGSBASE because the kernel GSBASE has to 88296b23714SChang S. Bae * be retrieved from a kernel internal table. 88316561f27SDave Hansen */ 8848a09317bSDave Hansen SAVE_AND_SWITCH_TO_KERNEL_CR3 scratch_reg=%rax save_reg=%r14 8858a09317bSDave Hansen 88618ec54fdSJosh Poimboeuf /* 887c82965f9SChang S. Bae * Handling GSBASE depends on the availability of FSGSBASE. 888c82965f9SChang S. Bae * 889c82965f9SChang S. Bae * Without FSGSBASE the kernel enforces that negative GSBASE 890c82965f9SChang S. Bae * values indicate kernel GSBASE. With FSGSBASE no assumptions 891c82965f9SChang S. Bae * can be made about the GSBASE value when entering from user 892c82965f9SChang S. Bae * space. 893c82965f9SChang S. Bae */ 894c82965f9SChang S. Bae ALTERNATIVE "jmp .Lparanoid_entry_checkgs", "", X86_FEATURE_FSGSBASE 895c82965f9SChang S. Bae 896c82965f9SChang S. Bae /* 897c82965f9SChang S. Bae * Read the current GSBASE and store it in %rbx unconditionally, 898c82965f9SChang S. Bae * retrieve and set the current CPUs kernel GSBASE. The stored value 899c82965f9SChang S. Bae * has to be restored in paranoid_exit unconditionally. 900c82965f9SChang S. Bae * 9010b2c605fSBorislav Petkov * The unconditional write to GS base below ensures that no subsequent 9020b2c605fSBorislav Petkov * loads based on a mispredicted GS base can happen, therefore no LFENCE 9030b2c605fSBorislav Petkov * is needed here. 904c82965f9SChang S. Bae */ 905c82965f9SChang S. Bae SAVE_AND_SET_GSBASE scratch_reg=%rax save_reg=%rbx 906f94909ceSPeter Zijlstra RET 907c82965f9SChang S. Bae 908c82965f9SChang S. Bae.Lparanoid_entry_checkgs: 90996b23714SChang S. Bae /* EBX = 1 -> kernel GSBASE active, no restore required */ 91096b23714SChang S. Bae movl $1, %ebx 911c07e4555SLai Jiangshan 91296b23714SChang S. Bae /* 91396b23714SChang S. Bae * The kernel-enforced convention is a negative GSBASE indicates 91496b23714SChang S. Bae * a kernel value. No SWAPGS needed on entry and exit. 91596b23714SChang S. Bae */ 91696b23714SChang S. Bae movl $MSR_GS_BASE, %ecx 91796b23714SChang S. Bae rdmsr 91896b23714SChang S. Bae testl %edx, %edx 919c07e4555SLai Jiangshan js .Lparanoid_kernel_gsbase 92018ec54fdSJosh Poimboeuf 92196b23714SChang S. Bae /* EBX = 0 -> SWAPGS required on exit */ 92296b23714SChang S. Bae xorl %ebx, %ebx 923c07e4555SLai Jiangshan swapgs 924c07e4555SLai Jiangshan.Lparanoid_kernel_gsbase: 925c07e4555SLai Jiangshan 926c07e4555SLai Jiangshan FENCE_SWAPGS_KERNEL_ENTRY 927f94909ceSPeter Zijlstra RET 928ef1e0315SJiri SlabySYM_CODE_END(paranoid_entry) 929905a36a2SIngo Molnar 930905a36a2SIngo Molnar/* 931905a36a2SIngo Molnar * "Paranoid" exit path from exception stack. This is invoked 932905a36a2SIngo Molnar * only on return from non-NMI IST interrupts that came 933905a36a2SIngo Molnar * from kernel space. 934905a36a2SIngo Molnar * 935905a36a2SIngo Molnar * We may be returning to very strange contexts (e.g. very early 936905a36a2SIngo Molnar * in syscall entry), so checking for preemption here would 937c82965f9SChang S. Bae * be complicated. Fortunately, there's no good reason to try 938c82965f9SChang S. Bae * to handle preemption here. 9394d732138SIngo Molnar * 940c82965f9SChang S. Bae * R/EBX contains the GSBASE related information depending on the 941c82965f9SChang S. Bae * availability of the FSGSBASE instructions: 942c82965f9SChang S. Bae * 943c82965f9SChang S. Bae * FSGSBASE R/EBX 944c82965f9SChang S. Bae * N 0 -> SWAPGS on exit 945c82965f9SChang S. Bae * 1 -> no SWAPGS on exit 946c82965f9SChang S. Bae * 947c82965f9SChang S. Bae * Y User space GSBASE, must be restored unconditionally 948905a36a2SIngo Molnar */ 949ef1e0315SJiri SlabySYM_CODE_START_LOCAL(paranoid_exit) 9508c1f7558SJosh Poimboeuf UNWIND_HINT_REGS 951c82965f9SChang S. Bae /* 952c82965f9SChang S. Bae * The order of operations is important. RESTORE_CR3 requires 953c82965f9SChang S. Bae * kernel GSBASE. 954c82965f9SChang S. Bae * 955c82965f9SChang S. Bae * NB to anyone to try to optimize this code: this code does 956c82965f9SChang S. Bae * not execute at all for exceptions from user mode. Those 957c82965f9SChang S. Bae * exceptions go through error_exit instead. 958c82965f9SChang S. Bae */ 959c82965f9SChang S. Bae RESTORE_CR3 scratch_reg=%rax save_reg=%r14 960c82965f9SChang S. Bae 961c82965f9SChang S. Bae /* Handle the three GSBASE cases */ 962c82965f9SChang S. Bae ALTERNATIVE "jmp .Lparanoid_exit_checkgs", "", X86_FEATURE_FSGSBASE 963c82965f9SChang S. Bae 964c82965f9SChang S. Bae /* With FSGSBASE enabled, unconditionally restore GSBASE */ 965c82965f9SChang S. Bae wrgsbase %rbx 96645c08383SThomas Gleixner jmp restore_regs_and_return_to_kernel 967c82965f9SChang S. Bae 968c82965f9SChang S. Bae.Lparanoid_exit_checkgs: 969c82965f9SChang S. Bae /* On non-FSGSBASE systems, conditionally do SWAPGS */ 970c82965f9SChang S. Bae testl %ebx, %ebx 971c82965f9SChang S. Bae jnz restore_regs_and_return_to_kernel 972c82965f9SChang S. Bae 973c82965f9SChang S. Bae /* We are returning to a context with user GSBASE */ 97453c9d924SJuergen Gross swapgs 975e5317832SAndy Lutomirski jmp restore_regs_and_return_to_kernel 976ef1e0315SJiri SlabySYM_CODE_END(paranoid_exit) 977905a36a2SIngo Molnar 978905a36a2SIngo Molnar/* 9799e809d15SDominik Brodowski * Save all registers in pt_regs, and switch GS if needed. 980905a36a2SIngo Molnar */ 981ef1e0315SJiri SlabySYM_CODE_START_LOCAL(error_entry) 9829e809d15SDominik Brodowski UNWIND_HINT_FUNC 983905a36a2SIngo Molnar cld 9849e809d15SDominik Brodowski PUSH_AND_CLEAR_REGS save_ret=1 9859e809d15SDominik Brodowski ENCODE_FRAME_POINTER 8 986905a36a2SIngo Molnar testb $3, CS+8(%rsp) 987cb6f64edSAndy Lutomirski jz .Lerror_kernelspace 988539f5113SAndy Lutomirski 989cb6f64edSAndy Lutomirski /* 990cb6f64edSAndy Lutomirski * We entered from user mode or we're pretending to have entered 991cb6f64edSAndy Lutomirski * from user mode due to an IRET fault. 992cb6f64edSAndy Lutomirski */ 993905a36a2SIngo Molnar SWAPGS 99418ec54fdSJosh Poimboeuf FENCE_SWAPGS_USER_ENTRY 9958a09317bSDave Hansen /* We have user CR3. Change to kernel CR3. */ 9968a09317bSDave Hansen SWITCH_TO_KERNEL_CR3 scratch_reg=%rax 997539f5113SAndy Lutomirski 998cb6f64edSAndy Lutomirski.Lerror_entry_from_usermode_after_swapgs: 9997f2590a1SAndy Lutomirski /* Put us onto the real thread stack. */ 10007f2590a1SAndy Lutomirski popq %r12 /* save return addr in %12 */ 10017f2590a1SAndy Lutomirski movq %rsp, %rdi /* arg0 = pt_regs pointer */ 10027f2590a1SAndy Lutomirski call sync_regs 10037f2590a1SAndy Lutomirski movq %rax, %rsp /* switch stack */ 10047f2590a1SAndy Lutomirski ENCODE_FRAME_POINTER 10057f2590a1SAndy Lutomirski pushq %r12 1006f94909ceSPeter Zijlstra RET 100702bc7768SAndy Lutomirski 1008905a36a2SIngo Molnar /* 1009905a36a2SIngo Molnar * There are two places in the kernel that can potentially fault with 1010905a36a2SIngo Molnar * usergs. Handle them here. B stepping K8s sometimes report a 1011905a36a2SIngo Molnar * truncated RIP for IRET exceptions returning to compat mode. Check 1012905a36a2SIngo Molnar * for these here too. 1013905a36a2SIngo Molnar */ 1014cb6f64edSAndy Lutomirski.Lerror_kernelspace: 1015905a36a2SIngo Molnar leaq native_irq_return_iret(%rip), %rcx 1016905a36a2SIngo Molnar cmpq %rcx, RIP+8(%rsp) 1017cb6f64edSAndy Lutomirski je .Lerror_bad_iret 1018905a36a2SIngo Molnar movl %ecx, %eax /* zero extend */ 1019905a36a2SIngo Molnar cmpq %rax, RIP+8(%rsp) 1020cb6f64edSAndy Lutomirski je .Lbstep_iret 102142c748bbSBorislav Petkov cmpq $.Lgs_change, RIP+8(%rsp) 102218ec54fdSJosh Poimboeuf jne .Lerror_entry_done_lfence 1023539f5113SAndy Lutomirski 1024539f5113SAndy Lutomirski /* 102542c748bbSBorislav Petkov * hack: .Lgs_change can fail with user gsbase. If this happens, fix up 1026539f5113SAndy Lutomirski * gsbase and proceed. We'll fix up the exception and land in 102742c748bbSBorislav Petkov * .Lgs_change's error handler with kernel gsbase. 1028539f5113SAndy Lutomirski */ 10292fa5f04fSWanpeng Li SWAPGS 10301367afaaSLai Jiangshan 10311367afaaSLai Jiangshan /* 10321367afaaSLai Jiangshan * Issue an LFENCE to prevent GS speculation, regardless of whether it is a 10331367afaaSLai Jiangshan * kernel or user gsbase. 10341367afaaSLai Jiangshan */ 10351367afaaSLai Jiangshan.Lerror_entry_done_lfence: 10361367afaaSLai Jiangshan FENCE_SWAPGS_KERNEL_ENTRY 1037f94909ceSPeter Zijlstra RET 1038905a36a2SIngo Molnar 1039cb6f64edSAndy Lutomirski.Lbstep_iret: 1040905a36a2SIngo Molnar /* Fix truncated RIP */ 1041905a36a2SIngo Molnar movq %rcx, RIP+8(%rsp) 1042905a36a2SIngo Molnar /* fall through */ 1043905a36a2SIngo Molnar 1044cb6f64edSAndy Lutomirski.Lerror_bad_iret: 1045539f5113SAndy Lutomirski /* 10468a09317bSDave Hansen * We came from an IRET to user mode, so we have user 10478a09317bSDave Hansen * gsbase and CR3. Switch to kernel gsbase and CR3: 1048539f5113SAndy Lutomirski */ 1049905a36a2SIngo Molnar SWAPGS 105018ec54fdSJosh Poimboeuf FENCE_SWAPGS_USER_ENTRY 10518a09317bSDave Hansen SWITCH_TO_KERNEL_CR3 scratch_reg=%rax 1052539f5113SAndy Lutomirski 1053539f5113SAndy Lutomirski /* 1054539f5113SAndy Lutomirski * Pretend that the exception came from user mode: set up pt_regs 1055b3681dd5SAndy Lutomirski * as if we faulted immediately after IRET. 1056539f5113SAndy Lutomirski */ 1057905a36a2SIngo Molnar mov %rsp, %rdi 1058905a36a2SIngo Molnar call fixup_bad_iret 1059905a36a2SIngo Molnar mov %rax, %rsp 1060cb6f64edSAndy Lutomirski jmp .Lerror_entry_from_usermode_after_swapgs 1061ef1e0315SJiri SlabySYM_CODE_END(error_entry) 1062905a36a2SIngo Molnar 1063424c7d0aSThomas GleixnerSYM_CODE_START_LOCAL(error_return) 1064424c7d0aSThomas Gleixner UNWIND_HINT_REGS 1065424c7d0aSThomas Gleixner DEBUG_ENTRY_ASSERT_IRQS_OFF 1066424c7d0aSThomas Gleixner testb $3, CS(%rsp) 1067424c7d0aSThomas Gleixner jz restore_regs_and_return_to_kernel 1068424c7d0aSThomas Gleixner jmp swapgs_restore_regs_and_return_to_usermode 1069424c7d0aSThomas GleixnerSYM_CODE_END(error_return) 1070424c7d0aSThomas Gleixner 1071929bacecSAndy Lutomirski/* 1072929bacecSAndy Lutomirski * Runs on exception stack. Xen PV does not go through this path at all, 1073929bacecSAndy Lutomirski * so we can use real assembly here. 10748a09317bSDave Hansen * 10758a09317bSDave Hansen * Registers: 10768a09317bSDave Hansen * %r14: Used to save/restore the CR3 of the interrupted context 10778a09317bSDave Hansen * when PAGE_TABLE_ISOLATION is in use. Do not clobber. 1078929bacecSAndy Lutomirski */ 10796271fef0SThomas GleixnerSYM_CODE_START(asm_exc_nmi) 10808c1f7558SJosh Poimboeuf UNWIND_HINT_IRET_REGS 10818f93402bSPeter Zijlstra ENDBR 1082929bacecSAndy Lutomirski 1083fc57a7c6SAndy Lutomirski /* 1084905a36a2SIngo Molnar * We allow breakpoints in NMIs. If a breakpoint occurs, then 1085905a36a2SIngo Molnar * the iretq it performs will take us out of NMI context. 1086905a36a2SIngo Molnar * This means that we can have nested NMIs where the next 1087905a36a2SIngo Molnar * NMI is using the top of the stack of the previous NMI. We 1088905a36a2SIngo Molnar * can't let it execute because the nested NMI will corrupt the 1089905a36a2SIngo Molnar * stack of the previous NMI. NMI handlers are not re-entrant 1090905a36a2SIngo Molnar * anyway. 1091905a36a2SIngo Molnar * 1092905a36a2SIngo Molnar * To handle this case we do the following: 1093905a36a2SIngo Molnar * Check the a special location on the stack that contains 1094905a36a2SIngo Molnar * a variable that is set when NMIs are executing. 1095905a36a2SIngo Molnar * The interrupted task's stack is also checked to see if it 1096905a36a2SIngo Molnar * is an NMI stack. 1097905a36a2SIngo Molnar * If the variable is not set and the stack is not the NMI 1098905a36a2SIngo Molnar * stack then: 1099905a36a2SIngo Molnar * o Set the special variable on the stack 11000b22930eSAndy Lutomirski * o Copy the interrupt frame into an "outermost" location on the 11010b22930eSAndy Lutomirski * stack 11020b22930eSAndy Lutomirski * o Copy the interrupt frame into an "iret" location on the stack 1103905a36a2SIngo Molnar * o Continue processing the NMI 1104905a36a2SIngo Molnar * If the variable is set or the previous stack is the NMI stack: 11050b22930eSAndy Lutomirski * o Modify the "iret" location to jump to the repeat_nmi 1106905a36a2SIngo Molnar * o return back to the first NMI 1107905a36a2SIngo Molnar * 1108905a36a2SIngo Molnar * Now on exit of the first NMI, we first clear the stack variable 1109905a36a2SIngo Molnar * The NMI stack will tell any nested NMIs at that point that it is 1110905a36a2SIngo Molnar * nested. Then we pop the stack normally with iret, and if there was 1111905a36a2SIngo Molnar * a nested NMI that updated the copy interrupt stack frame, a 1112905a36a2SIngo Molnar * jump will be made to the repeat_nmi code that will handle the second 1113905a36a2SIngo Molnar * NMI. 11149b6e6a83SAndy Lutomirski * 11159b6e6a83SAndy Lutomirski * However, espfix prevents us from directly returning to userspace 11169b6e6a83SAndy Lutomirski * with a single IRET instruction. Similarly, IRET to user mode 11179b6e6a83SAndy Lutomirski * can fault. We therefore handle NMIs from user space like 11189b6e6a83SAndy Lutomirski * other IST entries. 1119905a36a2SIngo Molnar */ 1120905a36a2SIngo Molnar 1121e93c1730SAndy Lutomirski ASM_CLAC 1122e93c1730SAndy Lutomirski 1123905a36a2SIngo Molnar /* Use %rdx as our temp variable throughout */ 1124905a36a2SIngo Molnar pushq %rdx 1125905a36a2SIngo Molnar 11269b6e6a83SAndy Lutomirski testb $3, CS-RIP+8(%rsp) 11279b6e6a83SAndy Lutomirski jz .Lnmi_from_kernel 1128905a36a2SIngo Molnar 1129905a36a2SIngo Molnar /* 11309b6e6a83SAndy Lutomirski * NMI from user mode. We need to run on the thread stack, but we 11319b6e6a83SAndy Lutomirski * can't go through the normal entry paths: NMIs are masked, and 11329b6e6a83SAndy Lutomirski * we don't want to enable interrupts, because then we'll end 11339b6e6a83SAndy Lutomirski * up in an awkward situation in which IRQs are on but NMIs 11349b6e6a83SAndy Lutomirski * are off. 113583c133cfSAndy Lutomirski * 113683c133cfSAndy Lutomirski * We also must not push anything to the stack before switching 113783c133cfSAndy Lutomirski * stacks lest we corrupt the "NMI executing" variable. 11389b6e6a83SAndy Lutomirski */ 11399b6e6a83SAndy Lutomirski 1140929bacecSAndy Lutomirski swapgs 11419b6e6a83SAndy Lutomirski cld 114218ec54fdSJosh Poimboeuf FENCE_SWAPGS_USER_ENTRY 11438a09317bSDave Hansen SWITCH_TO_KERNEL_CR3 scratch_reg=%rdx 11449b6e6a83SAndy Lutomirski movq %rsp, %rdx 11459b6e6a83SAndy Lutomirski movq PER_CPU_VAR(cpu_current_top_of_stack), %rsp 11468c1f7558SJosh Poimboeuf UNWIND_HINT_IRET_REGS base=%rdx offset=8 11479b6e6a83SAndy Lutomirski pushq 5*8(%rdx) /* pt_regs->ss */ 11489b6e6a83SAndy Lutomirski pushq 4*8(%rdx) /* pt_regs->rsp */ 11499b6e6a83SAndy Lutomirski pushq 3*8(%rdx) /* pt_regs->flags */ 11509b6e6a83SAndy Lutomirski pushq 2*8(%rdx) /* pt_regs->cs */ 11519b6e6a83SAndy Lutomirski pushq 1*8(%rdx) /* pt_regs->rip */ 11528c1f7558SJosh Poimboeuf UNWIND_HINT_IRET_REGS 11539b6e6a83SAndy Lutomirski pushq $-1 /* pt_regs->orig_ax */ 115430907fd1SDominik Brodowski PUSH_AND_CLEAR_REGS rdx=(%rdx) 1155946c1911SJosh Poimboeuf ENCODE_FRAME_POINTER 11569b6e6a83SAndy Lutomirski 11579b6e6a83SAndy Lutomirski /* 11589b6e6a83SAndy Lutomirski * At this point we no longer need to worry about stack damage 11599b6e6a83SAndy Lutomirski * due to nesting -- we're on the normal thread stack and we're 11609b6e6a83SAndy Lutomirski * done with the NMI stack. 11619b6e6a83SAndy Lutomirski */ 11629b6e6a83SAndy Lutomirski 11639b6e6a83SAndy Lutomirski movq %rsp, %rdi 11649b6e6a83SAndy Lutomirski movq $-1, %rsi 11656271fef0SThomas Gleixner call exc_nmi 11669b6e6a83SAndy Lutomirski 11679b6e6a83SAndy Lutomirski /* 11689b6e6a83SAndy Lutomirski * Return back to user mode. We must *not* do the normal exit 1169946c1911SJosh Poimboeuf * work, because we don't want to enable interrupts. 11709b6e6a83SAndy Lutomirski */ 11718a055d7fSAndy Lutomirski jmp swapgs_restore_regs_and_return_to_usermode 11729b6e6a83SAndy Lutomirski 11739b6e6a83SAndy Lutomirski.Lnmi_from_kernel: 11749b6e6a83SAndy Lutomirski /* 11750b22930eSAndy Lutomirski * Here's what our stack frame will look like: 11760b22930eSAndy Lutomirski * +---------------------------------------------------------+ 11770b22930eSAndy Lutomirski * | original SS | 11780b22930eSAndy Lutomirski * | original Return RSP | 11790b22930eSAndy Lutomirski * | original RFLAGS | 11800b22930eSAndy Lutomirski * | original CS | 11810b22930eSAndy Lutomirski * | original RIP | 11820b22930eSAndy Lutomirski * +---------------------------------------------------------+ 11830b22930eSAndy Lutomirski * | temp storage for rdx | 11840b22930eSAndy Lutomirski * +---------------------------------------------------------+ 11850b22930eSAndy Lutomirski * | "NMI executing" variable | 11860b22930eSAndy Lutomirski * +---------------------------------------------------------+ 11870b22930eSAndy Lutomirski * | iret SS } Copied from "outermost" frame | 11880b22930eSAndy Lutomirski * | iret Return RSP } on each loop iteration; overwritten | 11890b22930eSAndy Lutomirski * | iret RFLAGS } by a nested NMI to force another | 11900b22930eSAndy Lutomirski * | iret CS } iteration if needed. | 11910b22930eSAndy Lutomirski * | iret RIP } | 11920b22930eSAndy Lutomirski * +---------------------------------------------------------+ 11930b22930eSAndy Lutomirski * | outermost SS } initialized in first_nmi; | 11940b22930eSAndy Lutomirski * | outermost Return RSP } will not be changed before | 11950b22930eSAndy Lutomirski * | outermost RFLAGS } NMI processing is done. | 11960b22930eSAndy Lutomirski * | outermost CS } Copied to "iret" frame on each | 11970b22930eSAndy Lutomirski * | outermost RIP } iteration. | 11980b22930eSAndy Lutomirski * +---------------------------------------------------------+ 11990b22930eSAndy Lutomirski * | pt_regs | 12000b22930eSAndy Lutomirski * +---------------------------------------------------------+ 12010b22930eSAndy Lutomirski * 12020b22930eSAndy Lutomirski * The "original" frame is used by hardware. Before re-enabling 12030b22930eSAndy Lutomirski * NMIs, we need to be done with it, and we need to leave enough 12040b22930eSAndy Lutomirski * space for the asm code here. 12050b22930eSAndy Lutomirski * 12060b22930eSAndy Lutomirski * We return by executing IRET while RSP points to the "iret" frame. 12070b22930eSAndy Lutomirski * That will either return for real or it will loop back into NMI 12080b22930eSAndy Lutomirski * processing. 12090b22930eSAndy Lutomirski * 12100b22930eSAndy Lutomirski * The "outermost" frame is copied to the "iret" frame on each 12110b22930eSAndy Lutomirski * iteration of the loop, so each iteration starts with the "iret" 12120b22930eSAndy Lutomirski * frame pointing to the final return target. 12130b22930eSAndy Lutomirski */ 12140b22930eSAndy Lutomirski 12150b22930eSAndy Lutomirski /* 12160b22930eSAndy Lutomirski * Determine whether we're a nested NMI. 12170b22930eSAndy Lutomirski * 1218a27507caSAndy Lutomirski * If we interrupted kernel code between repeat_nmi and 1219a27507caSAndy Lutomirski * end_repeat_nmi, then we are a nested NMI. We must not 1220a27507caSAndy Lutomirski * modify the "iret" frame because it's being written by 1221a27507caSAndy Lutomirski * the outer NMI. That's okay; the outer NMI handler is 12226271fef0SThomas Gleixner * about to about to call exc_nmi() anyway, so we can just 1223a27507caSAndy Lutomirski * resume the outer NMI. 1224a27507caSAndy Lutomirski */ 1225a27507caSAndy Lutomirski 1226a27507caSAndy Lutomirski movq $repeat_nmi, %rdx 1227a27507caSAndy Lutomirski cmpq 8(%rsp), %rdx 1228a27507caSAndy Lutomirski ja 1f 1229a27507caSAndy Lutomirski movq $end_repeat_nmi, %rdx 1230a27507caSAndy Lutomirski cmpq 8(%rsp), %rdx 1231a27507caSAndy Lutomirski ja nested_nmi_out 1232a27507caSAndy Lutomirski1: 1233a27507caSAndy Lutomirski 1234a27507caSAndy Lutomirski /* 1235a27507caSAndy Lutomirski * Now check "NMI executing". If it's set, then we're nested. 12360b22930eSAndy Lutomirski * This will not detect if we interrupted an outer NMI just 12370b22930eSAndy Lutomirski * before IRET. 1238905a36a2SIngo Molnar */ 1239905a36a2SIngo Molnar cmpl $1, -8(%rsp) 1240905a36a2SIngo Molnar je nested_nmi 1241905a36a2SIngo Molnar 1242905a36a2SIngo Molnar /* 12430b22930eSAndy Lutomirski * Now test if the previous stack was an NMI stack. This covers 12440b22930eSAndy Lutomirski * the case where we interrupt an outer NMI after it clears 1245810bc075SAndy Lutomirski * "NMI executing" but before IRET. We need to be careful, though: 1246810bc075SAndy Lutomirski * there is one case in which RSP could point to the NMI stack 1247810bc075SAndy Lutomirski * despite there being no NMI active: naughty userspace controls 1248810bc075SAndy Lutomirski * RSP at the very beginning of the SYSCALL targets. We can 1249810bc075SAndy Lutomirski * pull a fast one on naughty userspace, though: we program 1250810bc075SAndy Lutomirski * SYSCALL to mask DF, so userspace cannot cause DF to be set 1251810bc075SAndy Lutomirski * if it controls the kernel's RSP. We set DF before we clear 1252810bc075SAndy Lutomirski * "NMI executing". 1253905a36a2SIngo Molnar */ 1254905a36a2SIngo Molnar lea 6*8(%rsp), %rdx 1255905a36a2SIngo Molnar /* Compare the NMI stack (rdx) with the stack we came from (4*8(%rsp)) */ 1256905a36a2SIngo Molnar cmpq %rdx, 4*8(%rsp) 1257905a36a2SIngo Molnar /* If the stack pointer is above the NMI stack, this is a normal NMI */ 1258905a36a2SIngo Molnar ja first_nmi 12594d732138SIngo Molnar 1260905a36a2SIngo Molnar subq $EXCEPTION_STKSZ, %rdx 1261905a36a2SIngo Molnar cmpq %rdx, 4*8(%rsp) 1262905a36a2SIngo Molnar /* If it is below the NMI stack, it is a normal NMI */ 1263905a36a2SIngo Molnar jb first_nmi 1264810bc075SAndy Lutomirski 1265810bc075SAndy Lutomirski /* Ah, it is within the NMI stack. */ 1266810bc075SAndy Lutomirski 1267810bc075SAndy Lutomirski testb $(X86_EFLAGS_DF >> 8), (3*8 + 1)(%rsp) 1268810bc075SAndy Lutomirski jz first_nmi /* RSP was user controlled. */ 1269810bc075SAndy Lutomirski 1270810bc075SAndy Lutomirski /* This is a nested NMI. */ 1271905a36a2SIngo Molnar 1272905a36a2SIngo Molnarnested_nmi: 1273905a36a2SIngo Molnar /* 12740b22930eSAndy Lutomirski * Modify the "iret" frame to point to repeat_nmi, forcing another 12750b22930eSAndy Lutomirski * iteration of NMI handling. 1276905a36a2SIngo Molnar */ 127723a781e9SAndy Lutomirski subq $8, %rsp 1278905a36a2SIngo Molnar leaq -10*8(%rsp), %rdx 1279905a36a2SIngo Molnar pushq $__KERNEL_DS 1280905a36a2SIngo Molnar pushq %rdx 1281905a36a2SIngo Molnar pushfq 1282905a36a2SIngo Molnar pushq $__KERNEL_CS 1283905a36a2SIngo Molnar pushq $repeat_nmi 1284905a36a2SIngo Molnar 1285905a36a2SIngo Molnar /* Put stack back */ 1286905a36a2SIngo Molnar addq $(6*8), %rsp 1287905a36a2SIngo Molnar 1288905a36a2SIngo Molnarnested_nmi_out: 1289905a36a2SIngo Molnar popq %rdx 1290905a36a2SIngo Molnar 12910b22930eSAndy Lutomirski /* We are returning to kernel mode, so this cannot result in a fault. */ 1292929bacecSAndy Lutomirski iretq 1293905a36a2SIngo Molnar 1294905a36a2SIngo Molnarfirst_nmi: 12950b22930eSAndy Lutomirski /* Restore rdx. */ 1296905a36a2SIngo Molnar movq (%rsp), %rdx 1297905a36a2SIngo Molnar 129836f1a77bSAndy Lutomirski /* Make room for "NMI executing". */ 129936f1a77bSAndy Lutomirski pushq $0 1300905a36a2SIngo Molnar 13010b22930eSAndy Lutomirski /* Leave room for the "iret" frame */ 1302905a36a2SIngo Molnar subq $(5*8), %rsp 1303905a36a2SIngo Molnar 13040b22930eSAndy Lutomirski /* Copy the "original" frame to the "outermost" frame */ 1305905a36a2SIngo Molnar .rept 5 1306905a36a2SIngo Molnar pushq 11*8(%rsp) 1307905a36a2SIngo Molnar .endr 13088c1f7558SJosh Poimboeuf UNWIND_HINT_IRET_REGS 1309905a36a2SIngo Molnar 1310905a36a2SIngo Molnar /* Everything up to here is safe from nested NMIs */ 1311905a36a2SIngo Molnar 1312a97439aaSAndy Lutomirski#ifdef CONFIG_DEBUG_ENTRY 1313a97439aaSAndy Lutomirski /* 1314a97439aaSAndy Lutomirski * For ease of testing, unmask NMIs right away. Disabled by 1315a97439aaSAndy Lutomirski * default because IRET is very expensive. 1316a97439aaSAndy Lutomirski */ 1317a97439aaSAndy Lutomirski pushq $0 /* SS */ 1318a97439aaSAndy Lutomirski pushq %rsp /* RSP (minus 8 because of the previous push) */ 1319a97439aaSAndy Lutomirski addq $8, (%rsp) /* Fix up RSP */ 1320a97439aaSAndy Lutomirski pushfq /* RFLAGS */ 1321a97439aaSAndy Lutomirski pushq $__KERNEL_CS /* CS */ 1322a97439aaSAndy Lutomirski pushq $1f /* RIP */ 1323929bacecSAndy Lutomirski iretq /* continues at repeat_nmi below */ 13248c1f7558SJosh Poimboeuf UNWIND_HINT_IRET_REGS 1325a97439aaSAndy Lutomirski1: 1326a97439aaSAndy Lutomirski#endif 1327a97439aaSAndy Lutomirski 13280b22930eSAndy Lutomirskirepeat_nmi: 1329*3e3f0695SPeter Zijlstra ANNOTATE_NOENDBR // this code 1330905a36a2SIngo Molnar /* 1331905a36a2SIngo Molnar * If there was a nested NMI, the first NMI's iret will return 1332905a36a2SIngo Molnar * here. But NMIs are still enabled and we can take another 1333905a36a2SIngo Molnar * nested NMI. The nested NMI checks the interrupted RIP to see 1334905a36a2SIngo Molnar * if it is between repeat_nmi and end_repeat_nmi, and if so 1335905a36a2SIngo Molnar * it will just return, as we are about to repeat an NMI anyway. 1336905a36a2SIngo Molnar * This makes it safe to copy to the stack frame that a nested 1337905a36a2SIngo Molnar * NMI will update. 13380b22930eSAndy Lutomirski * 13390b22930eSAndy Lutomirski * RSP is pointing to "outermost RIP". gsbase is unknown, but, if 13400b22930eSAndy Lutomirski * we're repeating an NMI, gsbase has the same value that it had on 13410b22930eSAndy Lutomirski * the first iteration. paranoid_entry will load the kernel 13426271fef0SThomas Gleixner * gsbase if needed before we call exc_nmi(). "NMI executing" 134336f1a77bSAndy Lutomirski * is zero. 1344905a36a2SIngo Molnar */ 134536f1a77bSAndy Lutomirski movq $1, 10*8(%rsp) /* Set "NMI executing". */ 1346905a36a2SIngo Molnar 13470b22930eSAndy Lutomirski /* 13480b22930eSAndy Lutomirski * Copy the "outermost" frame to the "iret" frame. NMIs that nest 13490b22930eSAndy Lutomirski * here must not modify the "iret" frame while we're writing to 13500b22930eSAndy Lutomirski * it or it will end up containing garbage. 13510b22930eSAndy Lutomirski */ 1352905a36a2SIngo Molnar addq $(10*8), %rsp 1353905a36a2SIngo Molnar .rept 5 1354905a36a2SIngo Molnar pushq -6*8(%rsp) 1355905a36a2SIngo Molnar .endr 1356905a36a2SIngo Molnar subq $(5*8), %rsp 1357905a36a2SIngo Molnarend_repeat_nmi: 1358*3e3f0695SPeter Zijlstra ANNOTATE_NOENDBR // this code 1359905a36a2SIngo Molnar 1360905a36a2SIngo Molnar /* 13610b22930eSAndy Lutomirski * Everything below this point can be preempted by a nested NMI. 13620b22930eSAndy Lutomirski * If this happens, then the inner NMI will change the "iret" 13630b22930eSAndy Lutomirski * frame to point back to repeat_nmi. 1364905a36a2SIngo Molnar */ 1365905a36a2SIngo Molnar pushq $-1 /* ORIG_RAX: no syscall to restart */ 1366905a36a2SIngo Molnar 1367905a36a2SIngo Molnar /* 1368905a36a2SIngo Molnar * Use paranoid_entry to handle SWAPGS, but no need to use paranoid_exit 1369905a36a2SIngo Molnar * as we should not be calling schedule in NMI context. 1370905a36a2SIngo Molnar * Even with normal interrupts enabled. An NMI should not be 1371905a36a2SIngo Molnar * setting NEED_RESCHED or anything that normal interrupts and 1372905a36a2SIngo Molnar * exceptions might do. 1373905a36a2SIngo Molnar */ 1374905a36a2SIngo Molnar call paranoid_entry 13758c1f7558SJosh Poimboeuf UNWIND_HINT_REGS 1376905a36a2SIngo Molnar 1377905a36a2SIngo Molnar movq %rsp, %rdi 1378905a36a2SIngo Molnar movq $-1, %rsi 13796271fef0SThomas Gleixner call exc_nmi 1380905a36a2SIngo Molnar 138116561f27SDave Hansen /* Always restore stashed CR3 value (see paranoid_entry) */ 138221e94459SPeter Zijlstra RESTORE_CR3 scratch_reg=%r15 save_reg=%r14 13838a09317bSDave Hansen 1384c82965f9SChang S. Bae /* 1385c82965f9SChang S. Bae * The above invocation of paranoid_entry stored the GSBASE 1386c82965f9SChang S. Bae * related information in R/EBX depending on the availability 1387c82965f9SChang S. Bae * of FSGSBASE. 1388c82965f9SChang S. Bae * 1389c82965f9SChang S. Bae * If FSGSBASE is enabled, restore the saved GSBASE value 1390c82965f9SChang S. Bae * unconditionally, otherwise take the conditional SWAPGS path. 1391c82965f9SChang S. Bae */ 1392c82965f9SChang S. Bae ALTERNATIVE "jmp nmi_no_fsgsbase", "", X86_FEATURE_FSGSBASE 1393c82965f9SChang S. Bae 1394c82965f9SChang S. Bae wrgsbase %rbx 1395c82965f9SChang S. Bae jmp nmi_restore 1396c82965f9SChang S. Bae 1397c82965f9SChang S. Baenmi_no_fsgsbase: 1398c82965f9SChang S. Bae /* EBX == 0 -> invoke SWAPGS */ 1399c82965f9SChang S. Bae testl %ebx, %ebx 1400905a36a2SIngo Molnar jnz nmi_restore 1401c82965f9SChang S. Bae 1402905a36a2SIngo Molnarnmi_swapgs: 140353c9d924SJuergen Gross swapgs 1404c82965f9SChang S. Bae 1405905a36a2SIngo Molnarnmi_restore: 1406502af0d7SDominik Brodowski POP_REGS 14070b22930eSAndy Lutomirski 1408471ee483SAndy Lutomirski /* 1409471ee483SAndy Lutomirski * Skip orig_ax and the "outermost" frame to point RSP at the "iret" 1410471ee483SAndy Lutomirski * at the "iret" frame. 1411471ee483SAndy Lutomirski */ 1412471ee483SAndy Lutomirski addq $6*8, %rsp 1413905a36a2SIngo Molnar 1414810bc075SAndy Lutomirski /* 1415810bc075SAndy Lutomirski * Clear "NMI executing". Set DF first so that we can easily 1416810bc075SAndy Lutomirski * distinguish the remaining code between here and IRET from 1417929bacecSAndy Lutomirski * the SYSCALL entry and exit paths. 1418929bacecSAndy Lutomirski * 1419929bacecSAndy Lutomirski * We arguably should just inspect RIP instead, but I (Andy) wrote 1420929bacecSAndy Lutomirski * this code when I had the misapprehension that Xen PV supported 1421929bacecSAndy Lutomirski * NMIs, and Xen PV would break that approach. 1422810bc075SAndy Lutomirski */ 1423810bc075SAndy Lutomirski std 1424810bc075SAndy Lutomirski movq $0, 5*8(%rsp) /* clear "NMI executing" */ 14250b22930eSAndy Lutomirski 14260b22930eSAndy Lutomirski /* 1427929bacecSAndy Lutomirski * iretq reads the "iret" frame and exits the NMI stack in a 1428929bacecSAndy Lutomirski * single instruction. We are returning to kernel mode, so this 1429929bacecSAndy Lutomirski * cannot result in a fault. Similarly, we don't need to worry 1430929bacecSAndy Lutomirski * about espfix64 on the way back to kernel mode. 14310b22930eSAndy Lutomirski */ 1432929bacecSAndy Lutomirski iretq 14336271fef0SThomas GleixnerSYM_CODE_END(asm_exc_nmi) 1434905a36a2SIngo Molnar 1435dffb3f9dSAndy Lutomirski#ifndef CONFIG_IA32_EMULATION 1436dffb3f9dSAndy Lutomirski/* 1437dffb3f9dSAndy Lutomirski * This handles SYSCALL from 32-bit code. There is no way to program 1438dffb3f9dSAndy Lutomirski * MSRs to fully disable 32-bit SYSCALL. 1439dffb3f9dSAndy Lutomirski */ 1440bc7b11c0SJiri SlabySYM_CODE_START(ignore_sysret) 14418c1f7558SJosh Poimboeuf UNWIND_HINT_EMPTY 14428f93402bSPeter Zijlstra ENDBR 1443905a36a2SIngo Molnar mov $-ENOSYS, %eax 1444b2b1d94cSJan Beulich sysretl 1445bc7b11c0SJiri SlabySYM_CODE_END(ignore_sysret) 1446dffb3f9dSAndy Lutomirski#endif 14472deb4be2SAndy Lutomirski 1448b9f6976bSThomas Gleixner.pushsection .text, "ax" 14490e25498fSEric W. BiedermanSYM_CODE_START(rewind_stack_and_make_dead) 14508c1f7558SJosh Poimboeuf UNWIND_HINT_FUNC 14512deb4be2SAndy Lutomirski /* Prevent any naive code from trying to unwind to our caller. */ 14522deb4be2SAndy Lutomirski xorl %ebp, %ebp 14532deb4be2SAndy Lutomirski 14542deb4be2SAndy Lutomirski movq PER_CPU_VAR(cpu_current_top_of_stack), %rax 14558c1f7558SJosh Poimboeuf leaq -PTREGS_SIZE(%rax), %rsp 1456f977df7bSJann Horn UNWIND_HINT_REGS 14572deb4be2SAndy Lutomirski 14580e25498fSEric W. Biederman call make_task_dead 14590e25498fSEric W. BiedermanSYM_CODE_END(rewind_stack_and_make_dead) 1460b9f6976bSThomas Gleixner.popsection 1461