6db4831e98
Android 14
238 lines
7.2 KiB
Plaintext
238 lines
7.2 KiB
Plaintext
ARM Integrator/AP (Application Platform) and Integrator/CP (Compact Platform)
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-----------------------------------------------------------------------------
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ARM's oldest Linux-supported platform with connectors for different core
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tiles of ARMv4, ARMv5 and ARMv6 type.
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Required properties (in root node):
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compatible = "arm,integrator-ap"; /* Application Platform */
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compatible = "arm,integrator-cp"; /* Compact Platform */
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FPGA type interrupt controllers, see the versatile-fpga-irq binding doc.
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Required nodes:
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- core-module: the root node to the Integrator platforms must have
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a core-module with regs and the compatible string
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"arm,core-module-integrator"
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- external-bus-interface: the root node to the Integrator platforms
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must have an external bus interface with regs and the
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compatible-string "arm,external-bus-interface"
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Required properties for the core module:
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- regs: the location and size of the core module registers, one
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range of 0x200 bytes.
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- syscon: the root node of the Integrator platforms must have a
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system controller node pointing to the control registers,
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with the compatible string
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"arm,integrator-ap-syscon"
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"arm,integrator-cp-syscon"
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respectively.
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Required properties for the system controller:
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- regs: the location and size of the system controller registers,
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one range of 0x100 bytes.
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Required properties for the AP system controller:
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- interrupts: the AP syscon node must include the logical module
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interrupts, stated in order of module instance <module 0>,
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<module 1>, <module 2> ... for the CP system controller this
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is not required not of any use.
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/dts-v1/;
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/include/ "integrator.dtsi"
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/ {
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model = "ARM Integrator/AP";
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compatible = "arm,integrator-ap";
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core-module@10000000 {
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compatible = "arm,core-module-integrator";
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reg = <0x10000000 0x200>;
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};
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ebi@12000000 {
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compatible = "arm,external-bus-interface";
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reg = <0x12000000 0x100>;
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};
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syscon {
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compatible = "arm,integrator-ap-syscon";
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reg = <0x11000000 0x100>;
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interrupt-parent = <&pic>;
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/* These are the logic module IRQs */
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interrupts = <9>, <10>, <11>, <12>;
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};
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};
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ARM Versatile Application and Platform Baseboards
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-------------------------------------------------
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ARM's development hardware platform with connectors for customizable
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core tiles. The hardware configuration of the Versatile boards is
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highly customizable.
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Required properties (in root node):
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compatible = "arm,versatile-ab"; /* Application baseboard */
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compatible = "arm,versatile-pb"; /* Platform baseboard */
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Interrupt controllers:
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- VIC required properties:
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compatible = "arm,versatile-vic";
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interrupt-controller;
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#interrupt-cells = <1>;
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- SIC required properties:
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compatible = "arm,versatile-sic";
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interrupt-controller;
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#interrupt-cells = <1>;
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Required nodes:
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- core-module: the root node to the Versatile platforms must have
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a core-module with regs and the compatible strings
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"arm,core-module-versatile", "syscon"
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Optional nodes:
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- arm,versatile-ib2-syscon : if the Versatile has an IB2 interface
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board mounted, this has a separate system controller that is
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defined in this node.
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Required properties:
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compatible = "arm,versatile-ib2-syscon", "syscon"
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ARM RealView Boards
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-------------------
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The RealView boards cover tailored evaluation boards that are used to explore
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the ARM11 and Cortex A-8 and Cortex A-9 processors.
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Required properties (in root node):
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/* RealView Emulation Baseboard */
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compatible = "arm,realview-eb";
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/* RealView Platform Baseboard for ARM1176JZF-S */
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compatible = "arm,realview-pb1176";
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/* RealView Platform Baseboard for ARM11 MPCore */
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compatible = "arm,realview-pb11mp";
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/* RealView Platform Baseboard for Cortex A-8 */
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compatible = "arm,realview-pba8";
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/* RealView Platform Baseboard Explore for Cortex A-9 */
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compatible = "arm,realview-pbx";
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Required nodes:
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- soc: some node of the RealView platforms must be the SoC
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node that contain the SoC-specific devices, withe the compatible
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string set to one of these tuples:
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"arm,realview-eb-soc", "simple-bus"
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"arm,realview-pb1176-soc", "simple-bus"
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"arm,realview-pb11mp-soc", "simple-bus"
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"arm,realview-pba8-soc", "simple-bus"
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"arm,realview-pbx-soc", "simple-bus"
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- syscon: some subnode of the RealView SoC node must be a
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system controller node pointing to the control registers,
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with the compatible string set to one of these:
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"arm,realview-eb11mp-revb-syscon", "arm,realview-eb-syscon", "syscon"
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"arm,realview-eb11mp-revc-syscon", "arm,realview-eb-syscon", "syscon"
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"arm,realview-eb-syscon", "syscon"
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"arm,realview-pb1176-syscon", "syscon"
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"arm,realview-pb11mp-syscon", "syscon"
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"arm,realview-pba8-syscon", "syscon"
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"arm,realview-pbx-syscon", "syscon"
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Required properties for the system controller:
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- regs: the location and size of the system controller registers,
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one range of 0x1000 bytes.
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Example:
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/dts-v1/;
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#include <dt-bindings/interrupt-controller/irq.h>
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/ {
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model = "ARM RealView PB1176 with device tree";
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compatible = "arm,realview-pb1176";
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#address-cells = <1>;
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#size-cells = <1>;
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soc {
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#address-cells = <1>;
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#size-cells = <1>;
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compatible = "arm,realview-pb1176-soc", "simple-bus";
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ranges;
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syscon: syscon@10000000 {
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compatible = "arm,realview-syscon", "syscon";
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reg = <0x10000000 0x1000>;
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};
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};
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};
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ARM Versatile Express Boards
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-----------------------------
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For details on the device tree bindings for ARM Versatile Express boards
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please consult the vexpress.txt file in the same directory as this file.
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ARM Juno Boards
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----------------
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The Juno boards are targeting development for AArch64 systems. The first
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iteration, Juno r0, is a vehicle for evaluating big.LITTLE on AArch64,
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with the second iteration, Juno r1, mainly aimed at development of PCIe
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based systems. Juno r1 also has support for AXI masters placed on the TLX
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connectors to join the coherency domain.
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Juno boards are described in a similar way to ARM Versatile Express boards,
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with the motherboard part of the hardware being described in a separate file
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to highlight the fact that is part of the support infrastructure for the SoC.
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Juno device tree bindings also share the Versatile Express bindings as
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described under the RS1 memory mapping.
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Required properties (in root node):
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compatible = "arm,juno"; /* For Juno r0 board */
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compatible = "arm,juno-r1"; /* For Juno r1 board */
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compatible = "arm,juno-r2"; /* For Juno r2 board */
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Required nodes:
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The description for the board must include:
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- a "psci" node describing the boot method used for the secondary CPUs.
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A detailed description of the bindings used for "psci" nodes is present
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in the psci.txt file.
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- a "cpus" node describing the available cores and their associated
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"enable-method"s. For more details see cpus.txt file.
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Example:
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/dts-v1/;
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/ {
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model = "ARM Juno development board (r0)";
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compatible = "arm,juno", "arm,vexpress";
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interrupt-parent = <&gic>;
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#address-cells = <2>;
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#size-cells = <2>;
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cpus {
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#address-cells = <2>;
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#size-cells = <0>;
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A57_0: cpu@0 {
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compatible = "arm,cortex-a57","arm,armv8";
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reg = <0x0 0x0>;
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device_type = "cpu";
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enable-method = "psci";
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};
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.....
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A53_0: cpu@100 {
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compatible = "arm,cortex-a53","arm,armv8";
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reg = <0x0 0x100>;
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device_type = "cpu";
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enable-method = "psci";
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};
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.....
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};
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};
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