/usr/src/linux-headers-5.15.0-190/arch/riscv/include/uapi/asm
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auxvec.h11450644editdlrm
bitsperlong.h3770644editdlrm
bpf_perf_event.h2610644editdlrm
byteorder.h3270644editdlrm
elf.h28230644editdlrm
hwcap.h9270644editdlrm
Kbuild350644editdlrm
perf_regs.h9200644editdlrm
ptrace.h16330644editdlrm
setup.h2030644editdlrm
sigcontext.h5370644editdlrm
ucontext.h13360644editdlrm
unistd.h18690644editdlrm
Edit: /usr/src/linux-headers-5.15.0-190/arch/riscv/include/uapi/asm/hwcap.h (927B)
/* SPDX-License-Identifier: GPL-2.0-only WITH Linux-syscall-note */ /* * Copied from arch/arm64/include/asm/hwcap.h * * Copyright (C) 2012 ARM Ltd. * Copyright (C) 2017 SiFive */ #ifndef _UAPI_ASM_RISCV_HWCAP_H #define _UAPI_ASM_RISCV_HWCAP_H /* * Linux saves the floating-point registers according to the ISA Linux is * executing on, as opposed to the ISA the user program is compiled for. This * is necessary for a handful of esoteric use cases: for example, userspace * threading libraries must be able to examine the actual machine state in * order to fully reconstruct the state of a thread. */ #define COMPAT_HWCAP_ISA_I (1 << ('I' - 'A')) #define COMPAT_HWCAP_ISA_M (1 << ('M' - 'A')) #define COMPAT_HWCAP_ISA_A (1 << ('A' - 'A')) #define COMPAT_HWCAP_ISA_F (1 << ('F' - 'A')) #define COMPAT_HWCAP_ISA_D (1 << ('D' - 'A')) #define COMPAT_HWCAP_ISA_C (1 << ('C' - 'A')) #endif /* _UAPI_ASM_RISCV_HWCAP_H */