Searched full:arm64 (Results 1 – 25 of 109) sorted by relevance
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/Documentation/virt/kvm/arm/ |
D | hyp-abi.rst | 19 On arm and arm64 (without VHE), the kernel doesn't run in hypervisor 24 EL2 (arm64), allowing it to install a set of stubs before dropping to 53 x2 = x0's value when entering the next payload (arm64) 54 x3 = x1's value when entering the next payload (arm64) 55 x4 = x2's value when entering the next payload (arm64) 58 into place (arm64 only), and jump to the restart address while at HYP/EL2. 63 x0 = HVC_VHE_RESTART (arm64 only) 75 clobber any of the caller-saved registers (x0-x18 on arm64, r0-r3 and
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/Documentation/arm64/ |
D | acpi_object_usage.rst | 14 For ACPI on arm64, tables also fall into the following categories: 145 Required for arm64. 172 Required for arm64. 182 used on arm64. 203 arm64 only table, required in order to describe IO topology, SMMUs, 229 Required for arm64. Only the GIC interrupt controller structures 275 not supported by the kernel for arm64. 281 Recommend for use on arm64; use of PCC is recommended when using CPPC 306 Required for arm64. 313 on arm64, and will not be used. If provided, it will be ignored. [all …]
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D | elf_hwcaps.rst | 2 ARM64 ELF hwcaps 5 This document describes the usage and semantics of the arm64 ELF hwcaps. 103 described by Documentation/arm64/cpu-feature-registers.rst. 164 Documentation/arm64/pointer-authentication.rst. 169 Documentation/arm64/pointer-authentication.rst. 246 by Documentation/arm64/memory-tagging-extension.rst.
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D | hugetlbpage.rst | 4 HugeTLBpage on ARM64 13 The ARM64 port supports two flavours of hugepages.
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D | index.rst | 4 ARM64 Architecture
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/Documentation/admin-guide/ |
D | efi-stub.rst | 16 For arm64, there is no compressed kernel support, so the Image itself 18 kernel. The arm64 EFI stub lives in arch/arm64/kernel/efi-entry.S 19 and drivers/firmware/efi/libstub/arm64-stub.c. 38 may not need to be renamed. Similarly for arm64, arch/arm64/boot/Image 86 For the ARM and arm64 architectures, a device tree must be provided to
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/Documentation/translations/zh_CN/arm64/ |
D | index.rst | 3 :Original: :ref:`Documentation/arm64/index.rst <arm64_index>` 10 ARM64 架构
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D | legacy_instructions.txt | 1 Chinese translated version of Documentation/arm64/legacy_instructions.rst 13 Documentation/arm64/legacy_instructions.rst 的中文翻译 29 Linux 内核在 arm64 上的移植提供了一个基础框架,以支持构架中正在被淘汰或已废弃指令的模拟执行。
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D | hugetlbpage.rst | 3 :Original: :ref:`Documentation/arm64/hugetlbpage.rst <hugetlbpage_index>` 17 ARM64 接口支持2种大页方式。
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D | amu.rst | 3 :Original: :ref:`Documentation/arm64/amu.rst <amu_index>` 78 详细信息定义在目录:arch/arm64/include/asm/sysreg.h。
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D | tagged-pointers.txt | 1 Chinese translated version of Documentation/arm64/tagged-pointers.rst 12 Documentation/arm64/tagged-pointers.rst 的中文翻译
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D | silicon-errata.txt | 1 Chinese translated version of Documentation/arm64/silicon-errata.rst 13 Documentation/arm64/silicon-errata.rst 的中文翻译
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/Documentation/riscv/ |
D | boot-image-header.rst | 28 ARM64 header. Thus, both ARM64 & RISC-V header can be combined into one common 52 with the ARM64 header "magic" field, but unfortunately does not. 53 The "magic2" field replaces it, matching up with the ARM64 header.
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/Documentation/devicetree/bindings/gpio/ |
D | gpio-xlp.txt | 7 Broadcom Vulcan ARM64. 18 - "brcm,vulcan-gpio": For Broadcom Vulcan ARM64
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/Documentation/features/sched/membarrier-sync-core/ |
D | arch-support.txt | 8 # * arm/arm64/powerpc 35 | arm64: | ok |
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/Documentation/translations/zh_CN/ |
D | index.rst | 22 arm64/index
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/Documentation/devicetree/bindings/reset/ |
D | socfpga-reset.txt | 5 "altr,stratix10-rst-mgr","altr,rst-mgr" for Stratix10 ARM64 SoC
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/Documentation/devicetree/bindings/arm/altera/ |
D | socfpga-system.txt | 15 ARM64 - Stratix10
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/Documentation/dev-tools/ |
D | kasan.rst | 24 Currently generic KASAN is supported for the x86_64, arm64, xtensa, s390 and 25 and riscv architectures, and tag-based KASAN modes are supported only for arm64. 170 register for arm64). The kernel periodically checks the hardware and 247 Software tag-based KASAN is currently only implemented for arm64 architecture. 249 Software tag-based KASAN uses the Top Byte Ignore (TBI) feature of arm64 CPUs 284 Hardware tag-based KASAN is currently only implemented for arm64 architecture 285 and based on both arm64 Memory Tagging Extension (MTE) introduced in ARMv8.5 288 Special arm64 instructions are used to assign memory tags for each allocation.
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/Documentation/devicetree/bindings/soc/ti/ |
D | k3-socinfo.yaml | 14 Texas Instruments (ARM64) K3 Multicore SoC platforms chipid module is
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/Documentation/devicetree/bindings/interrupt-controller/ |
D | marvell,armada-8k-pic.txt | 5 controller available on the Marvell Armada 7K/8K ARM64 SoCs, and
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/Documentation/features/locking/cmpxchg-local/ |
D | arch-support.txt | 12 | arm64: | ok |
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/Documentation/features/debug/KASAN/ |
D | arch-support.txt | 12 | arm64: | ok |
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/Documentation/features/io/dma-contiguous/ |
D | arch-support.txt | 12 | arm64: | ok |
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/Documentation/features/locking/lockdep/ |
D | arch-support.txt | 12 | arm64: | ok |
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