mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-14 00:47:26 +00:00
e7bb113cc4
The uart nodes already provide <clocks> property for the driver to dynamically calculate the correct clock frequency. There is no need to keep the hard-coded <clock-frequency> property. Signed-off-by: Bin Meng <bmeng.cn@gmail.com> Reviewed-by: Padmarao Begari <padmarao.begari@microchip.com> Tested-by: Padmarao Begari <padmarao.begari@microchip.com>
417 lines
10 KiB
Text
417 lines
10 KiB
Text
// SPDX-License-Identifier: (GPL-2.0 OR MIT)
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/* Copyright (c) 2020 Microchip Technology Inc */
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/dts-v1/;
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#include "dt-bindings/clock/microchip-mpfs-clock.h"
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/* Clock frequency (in Hz) of the rtcclk */
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#define RTCCLK_FREQ 1000000
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/ {
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#address-cells = <2>;
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#size-cells = <2>;
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model = "Microchip MPFS Icicle Kit";
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compatible = "microchip,mpfs-icicle-kit";
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aliases {
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serial0 = &uart0;
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ethernet0 = &emac1;
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};
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chosen {
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stdout-path = "serial0";
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};
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cpucomplex: cpus {
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#address-cells = <1>;
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#size-cells = <0>;
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timebase-frequency = <RTCCLK_FREQ>;
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cpu0: cpu@0 {
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clocks = <&clkcfg CLK_CPU>;
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compatible = "sifive,e51", "sifive,rocket0", "riscv";
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device_type = "cpu";
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i-cache-block-size = <64>;
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i-cache-sets = <128>;
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i-cache-size = <16384>;
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reg = <0>;
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riscv,isa = "rv64imac";
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status = "disabled";
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operating-points = <
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/* kHz uV */
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600000 1100000
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300000 950000
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150000 750000
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>;
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cpu0intc: interrupt-controller {
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#interrupt-cells = <1>;
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compatible = "riscv,cpu-intc";
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interrupt-controller;
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};
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};
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cpu1: cpu@1 {
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clocks = <&clkcfg CLK_CPU>;
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compatible = "sifive,u54-mc", "sifive,rocket0", "riscv";
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d-cache-block-size = <64>;
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d-cache-sets = <64>;
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d-cache-size = <32768>;
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d-tlb-sets = <1>;
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d-tlb-size = <32>;
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device_type = "cpu";
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i-cache-block-size = <64>;
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i-cache-sets = <64>;
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i-cache-size = <32768>;
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i-tlb-sets = <1>;
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i-tlb-size = <32>;
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mmu-type = "riscv,sv39";
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reg = <1>;
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riscv,isa = "rv64imafdc";
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tlb-split;
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status = "okay";
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operating-points = <
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/* kHz uV */
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600000 1100000
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300000 950000
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150000 750000
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>;
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cpu1intc: interrupt-controller {
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#interrupt-cells = <1>;
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compatible = "riscv,cpu-intc";
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interrupt-controller;
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};
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};
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cpu2: cpu@2 {
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clocks = <&clkcfg CLK_CPU>;
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compatible = "sifive,u54-mc", "sifive,rocket0", "riscv";
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d-cache-block-size = <64>;
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d-cache-sets = <64>;
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d-cache-size = <32768>;
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d-tlb-sets = <1>;
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d-tlb-size = <32>;
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device_type = "cpu";
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i-cache-block-size = <64>;
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i-cache-sets = <64>;
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i-cache-size = <32768>;
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i-tlb-sets = <1>;
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i-tlb-size = <32>;
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mmu-type = "riscv,sv39";
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reg = <2>;
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riscv,isa = "rv64imafdc";
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tlb-split;
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status = "okay";
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operating-points = <
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/* kHz uV */
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600000 1100000
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300000 950000
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150000 750000
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>;
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cpu2intc: interrupt-controller {
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#interrupt-cells = <1>;
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compatible = "riscv,cpu-intc";
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interrupt-controller;
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};
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};
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cpu3: cpu@3 {
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clocks = <&clkcfg CLK_CPU>;
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compatible = "sifive,u54-mc", "sifive,rocket0", "riscv";
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d-cache-block-size = <64>;
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d-cache-sets = <64>;
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d-cache-size = <32768>;
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d-tlb-sets = <1>;
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d-tlb-size = <32>;
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device_type = "cpu";
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i-cache-block-size = <64>;
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i-cache-sets = <64>;
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i-cache-size = <32768>;
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i-tlb-sets = <1>;
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i-tlb-size = <32>;
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mmu-type = "riscv,sv39";
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reg = <3>;
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riscv,isa = "rv64imafdc";
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tlb-split;
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status = "okay";
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operating-points = <
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/* kHz uV */
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600000 1100000
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300000 950000
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150000 750000
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>;
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cpu3intc: interrupt-controller {
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#interrupt-cells = <1>;
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compatible = "riscv,cpu-intc";
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interrupt-controller;
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};
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};
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cpu4: cpu@4 {
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clocks = <&clkcfg CLK_CPU>;
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compatible = "sifive,u54-mc", "sifive,rocket0", "riscv";
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d-cache-block-size = <64>;
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d-cache-sets = <64>;
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d-cache-size = <32768>;
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d-tlb-sets = <1>;
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d-tlb-size = <32>;
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device_type = "cpu";
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i-cache-block-size = <64>;
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i-cache-sets = <64>;
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i-cache-size = <32768>;
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i-tlb-sets = <1>;
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i-tlb-size = <32>;
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mmu-type = "riscv,sv39";
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reg = <4>;
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riscv,isa = "rv64imafdc";
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tlb-split;
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status = "okay";
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operating-points = <
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/* kHz uV */
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600000 1100000
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300000 950000
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150000 750000
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>;
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cpu4intc: interrupt-controller {
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#interrupt-cells = <1>;
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compatible = "riscv,cpu-intc";
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interrupt-controller;
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};
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};
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};
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refclk: refclk {
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compatible = "fixed-clock";
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#clock-cells = <0>;
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clock-frequency = <600000000>;
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clock-output-names = "msspllclk";
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};
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ddr: memory@80000000 {
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device_type = "memory";
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reg = <0x0 0x80000000 0x0 0x40000000>;
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clocks = <&clkcfg CLK_DDRC>;
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};
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soc: soc {
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#address-cells = <2>;
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#size-cells = <2>;
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compatible = "microchip,mpfs-icicle-kit", "simple-bus";
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ranges;
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clint0: clint@2000000 {
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compatible = "riscv,clint0";
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interrupts-extended = <&cpu0intc 3 &cpu0intc 7
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&cpu1intc 3 &cpu1intc 7
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&cpu2intc 3 &cpu2intc 7
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&cpu3intc 3 &cpu3intc 7
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&cpu4intc 3 &cpu4intc 7>;
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reg = <0x0 0x2000000 0x0 0x10000>;
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reg-names = "control";
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clock-frequency = <RTCCLK_FREQ>;
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};
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cachecontroller: cache-controller@2010000 {
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compatible = "sifive,fu540-c000-ccache", "cache";
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cache-block-size = <64>;
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cache-level = <2>;
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cache-sets = <1024>;
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cache-size = <2097152>;
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cache-unified;
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interrupt-parent = <&plic>;
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interrupts = <1 2 3>;
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reg = <0x0 0x2010000 0x0 0x1000>;
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};
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plic: interrupt-controller@c000000 {
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#interrupt-cells = <1>;
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compatible = "sifive,plic-1.0.0";
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reg = <0x0 0xc000000 0x0 0x4000000>;
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riscv,max-priority = <7>;
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riscv,ndev = <186>;
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interrupt-controller;
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interrupts-extended = <
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&cpu0intc 11
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&cpu1intc 11 &cpu1intc 9
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&cpu2intc 11 &cpu2intc 9
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&cpu3intc 11 &cpu3intc 9
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&cpu4intc 11 &cpu4intc 9>;
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};
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uart0: serial@20000000 {
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compatible = "ns16550a";
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reg = <0x0 0x20000000 0x0 0x400>;
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reg-io-width = <4>;
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reg-shift = <2>;
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interrupt-parent = <&plic>;
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interrupts = <90>;
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clocks = <&clkcfg CLK_MMUART0>;
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status = "okay";
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};
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clkcfg: clkcfg@20002000 {
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compatible = "microchip,mpfs-clkcfg";
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reg = <0x0 0x20002000 0x0 0x1000>;
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reg-names = "mss_sysreg";
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clocks = <&refclk>;
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#clock-cells = <1>;
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clock-output-names = "cpu", "axi", "ahb", "envm",
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"mac0", "mac1", "mmc", "timer",
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"mmuart0", "mmuart1", "mmuart2",
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"mmuart3", "mmuart4", "spi0", "spi1",
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"i2c0", "i2c1", "can0", "can1", "usb",
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"reserved", "rtc", "qspi", "gpio0",
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"gpio1", "gpio2", "ddrc", "fic0",
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"fic1", "fic2", "fic3", "athena",
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"cfm";
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};
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emmc: mmc@20008000 {
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compatible = "cdns,sd4hc";
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reg = <0x0 0x20008000 0x0 0x1000>;
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interrupt-parent = <&plic>;
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interrupts = <88 89>;
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pinctrl-names = "default";
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clocks = <&clkcfg CLK_MMC>;
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bus-width = <4>;
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cap-mmc-highspeed;
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mmc-ddr-3_3v;
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max-frequency = <200000000>;
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non-removable;
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no-sd;
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no-sdio;
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voltage-ranges = <3300 3300>;
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status = "okay";
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};
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sdcard: sd@20008000 {
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compatible = "cdns,sd4hc";
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reg = <0x0 0x20008000 0x0 0x1000>;
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interrupt-parent = <&plic>;
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interrupts = <88>;
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pinctrl-names = "default";
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clocks = <&clkcfg CLK_MMC>;
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bus-width = <4>;
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disable-wp;
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cap-sd-highspeed;
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card-detect-delay = <200>;
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sd-uhs-sdr12;
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sd-uhs-sdr25;
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sd-uhs-sdr50;
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sd-uhs-sdr104;
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max-frequency = <200000000>;
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status = "disabled";
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};
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uart1: serial@20100000 {
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compatible = "ns16550a";
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reg = <0x0 0x20100000 0x0 0x400>;
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reg-io-width = <4>;
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reg-shift = <2>;
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interrupt-parent = <&plic>;
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interrupts = <91>;
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clocks = <&clkcfg CLK_MMUART1>;
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status = "okay";
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};
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uart2: serial@20102000 {
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compatible = "ns16550a";
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reg = <0x0 0x20102000 0x0 0x400>;
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reg-io-width = <4>;
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reg-shift = <2>;
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interrupt-parent = <&plic>;
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interrupts = <92>;
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clocks = <&clkcfg CLK_MMUART2>;
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status = "okay";
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};
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uart3: serial@20104000 {
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compatible = "ns16550a";
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reg = <0x0 0x20104000 0x0 0x400>;
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reg-io-width = <4>;
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reg-shift = <2>;
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interrupt-parent = <&plic>;
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interrupts = <93>;
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clocks = <&clkcfg CLK_MMUART3>;
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status = "okay";
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};
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i2c0: i2c@2010a000 {
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#address-cells = <1>;
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#size-cells = <0>;
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compatible = "microchip,mpfs-mss-i2c";
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reg = <0x0 0x2010a000 0x0 0x1000>;
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interrupt-parent = <&plic>;
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interrupts = <58>;
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clocks = <&clkcfg CLK_I2C0>;
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status = "disabled";
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};
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i2c1: i2c@2010b000 {
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#address-cells = <1>;
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#size-cells = <0>;
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compatible = "microchip,mpfs-mss-i2c";
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reg = <0x0 0x2010b000 0x0 0x1000>;
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interrupt-parent = <&plic>;
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interrupts = <61>;
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clocks = <&clkcfg CLK_I2C1>;
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status = "disabled";
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pac193x@10 {
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compatible = "microchip,pac1934";
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reg = <0x10>;
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samp-rate = <64>;
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status = "disabled";
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ch1: channel0 {
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uohms-shunt-res = <10000>;
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rail-name = "VDD";
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channel_enabled;
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};
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ch2: channel1 {
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uohms-shunt-res = <10000>;
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rail-name = "VDDA25";
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channel_enabled;
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};
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ch3: channel2 {
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uohms-shunt-res = <10000>;
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rail-name = "VDD25";
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channel_enabled;
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};
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ch4: channel3 {
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uohms-shunt-res = <10000>;
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rail-name = "VDDA";
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channel_enabled;
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};
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};
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};
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emac0: ethernet@20110000 {
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compatible = "microchip,mpfs-mss-gem";
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reg = <0x0 0x20110000 0x0 0x2000>;
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interrupt-parent = <&plic>;
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interrupts = <64 65 66 67>;
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local-mac-address = [56 34 00 FC 00 02];
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phy-mode = "sgmii";
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clocks = <&clkcfg CLK_MAC0>, <&clkcfg CLK_AXI>;
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clock-names = "pclk", "hclk";
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status = "disabled";
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#address-cells = <1>;
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#size-cells = <0>;
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phy-handle = <&phy0>;
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phy0: ethernet-phy@8 {
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reg = <8>;
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ti,fifo-depth = <0x01>;
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};
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};
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emac1: ethernet@20112000 {
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compatible = "microchip,mpfs-mss-gem";
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reg = <0x0 0x20112000 0x0 0x2000>;
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interrupt-parent = <&plic>;
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interrupts = <70 71 72 73>;
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local-mac-address = [00 00 00 00 00 00];
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phy-mode = "sgmii";
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clocks = <&clkcfg CLK_MAC1>, <&clkcfg CLK_AHB>;
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clock-names = "pclk", "hclk";
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status = "okay";
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#address-cells = <1>;
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#size-cells = <0>;
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phy-handle = <&phy1>;
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phy1: ethernet-phy@9 {
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reg = <9>;
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ti,fifo-depth = <0x01>;
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};
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};
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gpio: gpio@20122000 {
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compatible = "microchip,mpfs-mss-gpio";
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interrupt-parent = <&plic>;
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interrupts = <13 14 15 16 17 18 19 20 21 22 23 24 25 26
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27 28 29 30 31 32 33 34 35 36 37 38 39
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40 41 42 43 44>;
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gpio-controller;
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clocks = <&clkcfg CLK_GPIO2>;
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reg = <0x00 0x20122000 0x0 0x1000>;
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reg-names = "control";
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#gpio-cells = <2>;
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status = "disabled";
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};
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};
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};
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