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/Documentation/devicetree/bindings/mtd/
Dnvidia-tegra20-nand.txt1 NVIDIA Tegra NAND Flash controller
4 - compatible: Must be one of:
5 - "nvidia,tegra20-nand"
6 - reg: MMIO address range
7 - interrupts: interrupt output of the NFC controller
8 - clocks: Must contain an entry for each entry in clock-names.
9 See ../clocks/clock-bindings.txt for details.
10 - clock-names: Must include the following entries:
11 - nand
12 - resets: Must contain an entry for each entry in reset-names.
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Dhisi504-nand.txt1 Hisilicon Hip04 Soc NAND controller DT binding
5 - compatible: Should be "hisilicon,504-nfc".
6 - reg: The first contains base physical address and size of
7 NAND controller's registers. The second contains base
8 physical address and size of NAND controller's buffer.
9 - interrupts: Interrupt number for nfc.
10 - nand-bus-width: See nand-controller.yaml.
11 - nand-ecc-mode: Support none and hw ecc mode.
12 - #address-cells: Partition address, should be set 1.
13 - #size-cells: Partition size, should be set 1.
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Ddavinci-nand.txt1 Device tree bindings for Texas instruments Davinci/Keystone NAND controller
4 NAND interface contains.
7 Davinci DM646x - https://www.ti.com/lit/ug/sprueq7c/sprueq7c.pdf
8 Kestone - https://www.ti.com/lit/ug/sprugz3a/sprugz3a.pdf
12 - compatible: "ti,davinci-nand"
13 "ti,keystone-nand"
15 - reg: Contains 2 offset/length values:
16 - offset and length for the access window.
17 - offset and length for accessing the AEMIF
20 - ti,davinci-chipselect: number of chipselect. Indicates on the
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Dvf610-nfc.txt1 Freescale's NAND flash controller (NFC)
3 This variant of the Freescale NAND flash controller (NFC) can be found on
7 - compatible: Should be set to "fsl,vf610-nfc".
8 - reg: address range of the NFC.
9 - interrupts: interrupt of the NFC.
10 - #address-cells: shall be set to 1. Encode the nand CS.
11 - #size-cells : shall be set to 0.
12 - assigned-clocks: main clock from the SoC, for Vybrid <&clks VF610_CLK_NFC>;
13 - assigned-clock-rates: The NAND bus timing is derived from this clock
14 rate and should not exceed maximum timing for any NAND memory chip
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Damlogic,meson-nand.yaml1 # SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
3 ---
4 $id: http://devicetree.org/schemas/mtd/amlogic,meson-nand.yaml#
5 $schema: http://devicetree.org/meta-schemas/core.yaml#
7 title: Amlogic NAND Flash Controller (NFC) for GXBB/GXL/AXG family SoCs
10 - $ref: nand-controller.yaml
13 - liang.yang@amlogic.com
18 - amlogic,meson-gxl-nfc
19 - amlogic,meson-axg-nfc
24 reg-names:
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Drockchip,nand-controller.yaml1 # SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
3 ---
4 $id: http://devicetree.org/schemas/mtd/rockchip,nand-controller.yaml#
5 $schema: http://devicetree.org/meta-schemas/core.yaml#
7 title: Rockchip SoCs NAND FLASH Controller (NFC)
10 - $ref: nand-controller.yaml#
13 - Heiko Stuebner <heiko@sntech.de>
18 - const: rockchip,px30-nfc
19 - const: rockchip,rk2928-nfc
20 - const: rockchip,rv1108-nfc
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Dmarvell,nand-controller.yaml1 # SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
3 ---
4 $id: http://devicetree.org/schemas/mtd/marvell,nand-controller.yaml#
5 $schema: http://devicetree.org/meta-schemas/core.yaml#
7 title: Marvell NAND Flash Controller (NFC)
10 - Miquel Raynal <miquel.raynal@bootlin.com>
15 - items:
16 - const: marvell,armada-8k-nand-controller
17 - const: marvell,armada370-nand-controller
18 - enum:
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Dmediatek,mtk-nfc.yaml1 # SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
3 ---
4 $id: http://devicetree.org/schemas/mtd/mediatek,mtk-nfc.yaml#
5 $schema: http://devicetree.org/meta-schemas/core.yaml#
7 title: MediaTek(MTK) SoCs raw NAND FLASH controller (NFC)
10 - Xiangsheng Hou <xiangsheng.hou@mediatek.com>
15 - mediatek,mt2701-nfc
16 - mediatek,mt2712-nfc
17 - mediatek,mt7622-nfc
21 - description: Base physical address and size of NFI.
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Datmel-nand.txt1 Atmel NAND flash controller bindings
3 The NAND flash controller node should be defined under the EBI bus (see
4 Documentation/devicetree/bindings/memory-controllers/atmel,ebi.txt).
5 One or several NAND devices can be defined under this NAND controller.
6 The NAND controller might be connected to an ECC engine.
8 * NAND controller bindings:
11 - compatible: should be one of the following
12 "atmel,at91rm9200-nand-controller"
13 "atmel,at91sam9260-nand-controller"
14 "atmel,at91sam9261-nand-controller"
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Draw-nand-chip.yaml1 # SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
3 ---
4 $id: http://devicetree.org/schemas/mtd/raw-nand-chip.yaml#
5 $schema: http://devicetree.org/meta-schemas/core.yaml#
7 title: Raw NAND Chip Common Properties
10 - Miquel Raynal <miquel.raynal@bootlin.com>
13 - $ref: nand-chip.yaml#
16 The ECC strength and ECC step size properties define the user
18 they request the ECC engine to correct {strength} bit errors per
19 {size} bytes for a particular raw NAND chip.
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Dsamsung-s3c2410.txt1 * Samsung S3C2410 and compatible NAND flash controller
4 - compatible : The possible values are:
5 "samsung,s3c2410-nand"
6 "samsung,s3c2412-nand"
7 "samsung,s3c2440-nand"
8 - reg : register's location and length.
9 - #address-cells, #size-cells : see nand-controller.yaml
10 - clocks : phandle to the nand controller clock
11 - clock-names : must contain "nand"
14 Child nodes representing the available nand chips.
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Dfsmc-nand.txt2 NAND Interface
5 - compatible : "st,spear600-fsmc-nand", "stericsson,fsmc-nand"
6 - reg : Address range of the mtd chip
7 - reg-names: Should contain the reg names "fsmc_regs", "nand_data", "nand_addr" and "nand_cmd"
10 - bank-width : Width (in bytes) of the device. If not present, the width
12 - nand-skip-bbtscan: Indicates the BBT scanning should be skipped
13 - timings: array of 6 bytes for NAND timings. The meanings of these bytes
20 kept in Hi-Z (tristate) after the start of a write access.
27 NAND flash in response to SMWAITn. Zero means 1 cycle,
32 - bank: default NAND bank to use (0-3 are valid, 0 is the default).
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Dingenic,nand.yaml1 # SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
3 ---
4 $id: http://devicetree.org/schemas/mtd/ingenic,nand.yaml#
5 $schema: http://devicetree.org/meta-schemas/core.yaml#
7 title: Ingenic SoCs NAND controller
10 - Paul Cercueil <paul@crapouillou.net>
13 - $ref: nand-controller.yaml#
14 - $ref: /schemas/memory-controllers/ingenic,nemc-peripherals.yaml#
19 - ingenic,jz4740-nand
20 - ingenic,jz4725b-nand
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Dmxic-nand.txt1 Macronix Raw NAND Controller Device Tree Bindings
2 -------------------------------------------------
5 - compatible: should be "mxic,multi-itfc-v009-nand-controller"
6 - reg: should contain 1 entry for the registers
7 - #address-cells: should be set to 1
8 - #size-cells: should be set to 0
9 - interrupts: interrupt line connected to this raw NAND controller
10 - clock-names: should contain "ps", "send" and "send_dly"
11 - clocks: should contain 3 phandles for the "ps", "send" and
15 - children nodes represent the available NAND chips.
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Dintel,lgm-ebunand.yaml1 # SPDX-License-Identifier: (GPL-2.0 OR BSD-2-Clause)
3 ---
4 $id: http://devicetree.org/schemas/mtd/intel,lgm-ebunand.yaml#
5 $schema: http://devicetree.org/meta-schemas/core.yaml#
7 title: Intel LGM SoC NAND Controller
10 - $ref: nand-controller.yaml
13 - Ramuthevar Vadivel Murugan <vadivel.muruganx.ramuthevar@linux.intel.com>
17 const: intel,lgm-ebunand
22 reg-names:
24 - const: ebunand
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Dnand-macronix.txt2 -----------------------------------
11 For more high-reliability concern, if subpage write is not available
12 with hardware ECC and not enabled at UBI level, then enabling the
16 Required NAND chip properties in children mode:
17 - randomizer enable: should be "mxic,enable-randomizer-otp"
21 nand: nand-controller@unit-address {
23 nand@0 {
25 mxic,enable-randomizer-otp;
/Documentation/devicetree/bindings/spi/
Dmediatek,spi-mtk-snfi.yaml1 # SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
3 ---
4 $id: http://devicetree.org/schemas/spi/mediatek,spi-mtk-snfi.yaml#
5 $schema: http://devicetree.org/meta-schemas/core.yaml#
7 title: SPI-NAND flash controller for MediaTek ARM SoCs
10 - Chuanhong Guo <gch981213@gmail.com>
13 The Mediatek SPI-NAND flash controller is an extended version of
14 the Mediatek NAND flash controller. It can perform standard SPI
15 instructions with one continuous write and one read for up-to 0xa0
16 bytes. It also supports typical SPI-NAND page cache operations
[all …]
/Documentation/driver-api/
Dmtdnand.rst2 MTD NAND Driver Programming Interface
10 The generic NAND driver supports almost all NAND and AG-AND based chips
15 board drivers or filesystem drivers suitable for NAND devices.
31 --------------------------
37 - [MTD Interface]
43 - [NAND Interface]
45 These functions are exported and provide the interface to the NAND
48 - [GENERIC]
53 - [DEFAULT]
58 via pointers in the NAND chip description structure. The board driver
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/Documentation/devicetree/bindings/memory-controllers/
Dti,gpmc.yaml1 # SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
3 ---
4 $id: http://devicetree.org/schemas/memory-controllers/ti,gpmc.yaml#
5 $schema: http://devicetree.org/meta-schemas/core.yaml#
10 - Tony Lindgren <tony@atomide.com>
11 - Roger Quadros <rogerq@kernel.org>
16 - Asynchronous SRAM-like memories and ASICs
17 - Asynchronous, synchronous, and page mode burst NOR flash
18 - NAND flash
19 - Pseudo-SRAM devices
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/Documentation/driver-api/mtd/
Dnand_ecc.rst2 NAND Error-correction Code
8 Having looked at the linux mtd/nand Hamming software ECC engine driver
11 After that the speed was increased by 35-40%.
22 NAND flash (at least SLC one) typically has sectors of 256 bytes.
23 However NAND flash is not extremely reliable so some error detection
31 As I said before the ecc calculation is performed on sectors of 256
41 Back to ecc.
63 - cp0 is the parity that belongs to all bit0, bit2, bit4, bit6.
69 - cp2 is the parity over bit0, bit1, bit4 and bit5
70 - cp3 is the parity over bit2, bit3, bit6 and bit7.
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/Documentation/admin-guide/
Ddevices.txt1 0 Unnamed devices (e.g. non-device mounts)
7 2 = /dev/kmem OBSOLETE - replaced by /proc/kcore
11 6 = /dev/core OBSOLETE - replaced by /proc/kcore
18 12 = /dev/oldmem OBSOLETE - replaced by /proc/vmcore
31 2 char Pseudo-TTY masters
37 Pseudo-tty's are named as follows:
40 the 1st through 16th series of 16 pseudo-ttys each, and
44 These are the old-style (BSD) PTY devices; Unix98
106 3 char Pseudo-TTY slaves
112 These are the old-style (BSD) PTY devices; Unix98
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