Searched full:layout (Results 1 – 25 of 242) sorted by relevance
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| /Documentation/filesystems/nfs/ |
| D | pnfs.rst | 17 Each nfs_inode may hold a pointer to a cache of these layout 18 segments in nfsi->layout, of type struct pnfs_layout_hdr. 26 the reference count, as the layout is kept around by the lseg that 33 layout driver type. The device ids are held in a RCU cache (struct 62 layout drivers 65 PNFS utilizes what is called layout drivers. The STD defines 4 basic 66 layout types: "files", "objects", "blocks", and "flexfiles". For each 67 of these types there is a layout-driver with a common function-vectors 69 different layout types. 71 Files-layout-driver code is in: fs/nfs/filelayout/.. directory [all …]
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| /Documentation/devicetree/bindings/nvmem/layouts/ |
| D | fixed-layout.yaml | 4 $id: http://devicetree.org/schemas/nvmem/layouts/fixed-layout.yaml# 7 title: NVMEM layout for fixed NVMEM cells 10 Many NVMEM devices have hardcoded cells layout (offset and size of defined 13 This binding allows defining such NVMEM layout with its cells. It can be used 21 const: fixed-layout 42 nvmem-layout { 43 compatible = "fixed-layout";
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| D | onie,tlv-layout.yaml | 4 $id: http://devicetree.org/schemas/nvmem/layouts/onie,tlv-layout.yaml# 7 title: NVMEM layout of the ONIE tlv table 26 const: onie,tlv-layout 116 nvmem-layout { 117 compatible = "onie,tlv-layout"; 137 nvmem-layout { 138 compatible = "onie,tlv-layout";
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| D | nvmem-layout.yaml | 4 $id: http://devicetree.org/schemas/nvmem/layouts/nvmem-layout.yaml# 18 perform their parsing. The nvmem-layout container is here to describe these. 21 - $ref: fixed-layout.yaml 23 - $ref: onie,tlv-layout.yaml
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| D | kontron,sl28-vpd.yaml | 7 title: NVMEM layout of the Kontron SMARC-sAL28 vital product data 52 nvmem-layout {
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| /Documentation/gpu/xe/ |
| D | xe_firmware.rst | 7 Firmware Layout 11 :doc: CSS-based Firmware Layout 14 :doc: GSC-based Firmware Layout 16 Write Once Protected Content Memory (WOPCM) Layout 20 :doc: Write Once Protected Content Memory (WOPCM) Layout
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| /Documentation/devicetree/bindings/nvmem/ |
| D | nvmem.yaml | 42 nvmem-layout: 43 $ref: /schemas/nvmem/layouts/nvmem-layout.yaml 46 container may reference more advanced (dynamic) layout 65 nvmem-layout { 66 compatible = "fixed-layout";
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| D | xlnx,zynqmp-nvmem.yaml | 33 nvmem-layout { 34 compatible = "fixed-layout";
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| /Documentation/devicetree/bindings/mtd/partitions/ |
| D | ubi-volume.yaml | 27 nvmem-layout: 28 $ref: /schemas/nvmem/layouts/nvmem-layout.yaml# 30 This container may reference an NVMEM layout parser.
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| D | linux,ubi.yaml | 63 nvmem-layout { 64 compatible = "fixed-layout";
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| D | tplink,safeloader-partitions.yaml | 11 flash layout, firmware, product info, configuration, calibration 14 Flash space layout of TP-Link devices is stored on flash itself using
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| /Documentation/devicetree/bindings/usb/ |
| D | fcs,fsa4480.yaml | 55 Default AUX/SBU layout (FSA4480) 58 Default AUX/SBU layout (OCP96011) 65 Swapped AUX/SBU layout (FSA4480) 68 Swapped AUX/SBU layout (OCP96011)
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| /Documentation/arch/arm/samsung/ |
| D | overview.rst | 31 Layout chapter 34 The directory layout is currently being restructured, and consists of 48 Layout changes
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| /Documentation/ABI/testing/ |
| D | sysfs-bus-iio-sx9324 | 6 SX9324 has 3 inputs, CS0, CS1 and CS2. Hardware layout 28 Note, these are the chip default. Hardware layout will most
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| D | sysfs-class-intel_pmt | 19 of the device. The register layout of the telemetry space is 38 be used to get the register layout. 65 resulting crashlog buffer. The register layout for the buffer 84 used to determine the register layout.
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| D | sysfs-firmware-gsmi | 17 Layout: 21 This directory has the same layout (and
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| D | sysfs-driver-intel_sdsi | 36 the layout of the registers file in this directory. 46 a CPU and monitor status information. The layout of this file 48 the layout for a particular GUID is available at
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| /Documentation/devicetree/bindings/interrupt-controller/ |
| D | aspeed,ast2400-vic.yaml | 13 The AST2400 and AST2500 SoC families include a legacy register layout before 14 a redesigned layout, but the bindings do not prescribe the use of one or the
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| /Documentation/driver-api/pldmfw/ |
| D | file-format.rst | 14 overall file layout 59 header layout 92 area layout 115 record layout 147 area layout 170 component layout
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| /Documentation/admin-guide/device-mapper/ |
| D | dm-raid.rst | 26 - Transitory layout 51 layout for takeover from/to raid4/raid5_n 54 - layout for takeover from raid5_la from/to raid6 57 - layout for takeover from raid5_ra from/to raid6 60 - layout for takeover from raid5_ls from/to raid6 63 - layout for takeover from raid5_rs from/to raid6 114 These two options are used to alter the default layout of 133 The 2-device layout is equivalent 2-way RAID1. The 4-device 134 layout is what a traditional RAID10 would look like. The 135 3-device layout is what might be called a 'RAID1E - Integrated [all …]
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| /Documentation/admin-guide/nfs/ |
| D | pnfs-block-server.rst | 2 pNFS block layout server user guide 5 The Linux NFS server now supports the pNFS block layout extension. In this
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| /Documentation/arch/s390/ |
| D | mm.rst | 7 Virtual memory layout 12 - Some aspects of the virtual memory layout setup are not 15 - Unused gaps in the virtual memory layout could be present
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| /Documentation/admin-guide/media/ |
| D | si476x.rst | 34 following layout: 68 has the following layout: 84 The layout is: 109 The layout is: 159 RSQ(Received Signal Quality) for primary tuner only. Layout is as
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| /Documentation/filesystems/ext4/ |
| D | blockgroup.rst | 3 Layout chapter 6 The layout of a standard block group is approximately as follows (each 112 descriptor layout, or existing filesystems can be resized on-line, and 114 block group using this new layout.
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| /Documentation/arch/arm/ |
| D | memory.rst | 2 Kernel Memory Layout on ARM Linux 9 This document describes the virtual memory layout which the Linux 100 Since future CPUs may impact the kernel mapping layout, user programs
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