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a.out.h
(756 B)
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amd_hsmp.h
(8.68 KB)
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auxvec.h
(618 B)
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bitsperlong.h
(321 B)
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boot.h
(323 B)
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bootparam.h
(7.58 KB)
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bpf_perf_event.h
(40 B)
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byteorder.h
(176 B)
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debugreg.h
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e820.h
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errno.h
(31 B)
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fcntl.h
(31 B)
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hw_breakpoint.h
(69 B)
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hwcap2.h
(270 B)
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ioctl.h
(31 B)
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ioctls.h
(32 B)
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ipcbuf.h
(32 B)
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ist.h
(854 B)
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kvm.h
(11.44 KB)
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kvm_para.h
(4.24 KB)
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kvm_perf.h
(388 B)
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ldt.h
(1.28 KB)
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mce.h
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mman.h
(1002 B)
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msgbuf.h
(1.03 KB)
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msr.h
(346 B)
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mtrr.h
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param.h
(31 B)
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perf_regs.h
(1.37 KB)
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poll.h
(30 B)
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posix_types.h
(224 B)
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posix_types_32.h
(765 B)
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posix_types_64.h
(609 B)
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posix_types_x32.h
(581 B)
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prctl.h
(618 B)
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processor-flags.h
(6.47 KB)
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ptrace-abi.h
(1.99 KB)
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ptrace.h
(1.46 KB)
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resource.h
(34 B)
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sembuf.h
(1.02 KB)
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setup.h
(6 B)
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sgx.h
(8.15 KB)
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shmbuf.h
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sigcontext.h
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sigcontext32.h
(247 B)
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siginfo.h
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signal.h
(2.83 KB)
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socket.h
(32 B)
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sockios.h
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stat.h
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statfs.h
(416 B)
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svm.h
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swab.h
(724 B)
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termbits.h
(34 B)
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termios.h
(33 B)
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types.h
(152 B)
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ucontext.h
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unistd.h
(359 B)
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unistd_32.h
(10.87 KB)
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unistd_64.h
(9.1 KB)
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unistd_x32.h
(16.03 KB)
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vm86.h
(3.04 KB)
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vmx.h
(7.2 KB)
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vsyscall.h
(263 B)
Editing: vm86.h
/* SPDX-License-Identifier: GPL-2.0 WITH Linux-syscall-note */ #ifndef _ASM_X86_VM86_H #define _ASM_X86_VM86_H /* * I'm guessing at the VIF/VIP flag usage, but hope that this is how * the Pentium uses them. Linux will return from vm86 mode when both * VIF and VIP is set. * * On a Pentium, we could probably optimize the virtual flags directly * in the eflags register instead of doing it "by hand" in vflags... * * Linus */ #include <asm/processor-flags.h> #define BIOSSEG 0x0f000 #define CPU_086 0 #define CPU_186 1 #define CPU_286 2 #define CPU_386 3 #define CPU_486 4 #define CPU_586 5 /* * Return values for the 'vm86()' system call */ #define VM86_TYPE(retval) ((retval) & 0xff) #define VM86_ARG(retval) ((retval) >> 8) #define VM86_SIGNAL 0 /* return due to signal */ #define VM86_UNKNOWN 1 /* unhandled GP fault - IO-instruction or similar */ #define VM86_INTx 2 /* int3/int x instruction (ARG = x) */ #define VM86_STI 3 /* sti/popf/iret instruction enabled virtual interrupts */ /* * Additional return values when invoking new vm86() */ #define VM86_PICRETURN 4 /* return due to pending PIC request */ #define VM86_TRAP 6 /* return due to DOS-debugger request */ /* * function codes when invoking new vm86() */ #define VM86_PLUS_INSTALL_CHECK 0 #define VM86_ENTER 1 #define VM86_ENTER_NO_BYPASS 2 #define VM86_REQUEST_IRQ 3 #define VM86_FREE_IRQ 4 #define VM86_GET_IRQ_BITS 5 #define VM86_GET_AND_RESET_IRQ 6 /* * This is the stack-layout seen by the user space program when we have * done a translation of "SAVE_ALL" from vm86 mode. The real kernel layout * is 'kernel_vm86_regs' (see below). */ struct vm86_regs { /* * normal regs, with special meaning for the segment descriptors.. */ long ebx; long ecx; long edx; long esi; long edi; long ebp; long eax; long __null_ds; long __null_es; long __null_fs; long __null_gs; long orig_eax; long eip; unsigned short cs, __csh; long eflags; long esp; unsigned short ss, __ssh; /* * these are specific to v86 mode: */ unsigned short es, __esh; unsigned short ds, __dsh; unsigned short fs, __fsh; unsigned short gs, __gsh; }; struct revectored_struct { unsigned long __map[8]; /* 256 bits */ }; struct vm86_struct { struct vm86_regs regs; unsigned long flags; unsigned long screen_bitmap; unsigned long cpu_type; struct revectored_struct int_revectored; struct revectored_struct int21_revectored; }; /* * flags masks */ #define VM86_SCREEN_BITMAP 0x0001 struct vm86plus_info_struct { unsigned long force_return_for_pic:1; unsigned long vm86dbg_active:1; /* for debugger */ unsigned long vm86dbg_TFpendig:1; /* for debugger */ unsigned long unused:28; unsigned long is_vm86pus:1; /* for vm86 internal use */ unsigned char vm86dbg_intxxtab[32]; /* for debugger */ }; struct vm86plus_struct { struct vm86_regs regs; unsigned long flags; unsigned long screen_bitmap; unsigned long cpu_type; struct revectored_struct int_revectored; struct revectored_struct int21_revectored; struct vm86plus_info_struct vm86plus; }; #endif /* _ASM_X86_VM86_H */
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