4db76eadf2
This patch introduces support of new boards with ARC HS38 cores. ARC HS38 is a new generation of ARC cores which utilize ARCv2 ISA. As with ARC770 we're addind support for 2 boards for now: [1] Synopsys SDP board (AXS103) This is the same base-board as in AXS101 but with FPGA-based CPU-tile where ARCHs38 core is implemented. [2] nSIM Again this is the same simulation engine but configured for new instruction set and features of new CPU. Signed-off-by: Alexey Brodkin <abrodkin@synopsys.com> Cc: Felix Fietkau <nbd@openwrt.org> Cc: Jo-Philipp Wich <jow@openwrt.org> Cc: Jonas Gorski <jogo@openwrt.org> SVN-Revision: 48740
226 lines
4.9 KiB
Plaintext
226 lines
4.9 KiB
Plaintext
/*
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* Support for peripherals on the AXS10x mainboard
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*
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* Copyright (C) 2013-15 Synopsys, Inc. (www.synopsys.com)
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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*/
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/ {
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axs10x_mb {
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compatible = "simple-bus";
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#address-cells = <1>;
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#size-cells = <1>;
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ranges = <0x00000000 0xe0000000 0x10000000>;
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interrupt-parent = <&mb_intc>;
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clocks {
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i2cclk: i2cclk {
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compatible = "fixed-clock";
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clock-frequency = <50000000>;
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#clock-cells = <0>;
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};
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apbclk: apbclk {
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compatible = "fixed-clock";
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clock-frequency = <50000000>;
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#clock-cells = <0>;
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};
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mmcclk: mmcclk {
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compatible = "fixed-clock";
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clock-frequency = <50000000>;
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#clock-cells = <0>;
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};
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};
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ethernet@0x18000 {
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#interrupt-cells = <1>;
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compatible = "snps,dwmac";
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reg = < 0x18000 0x2000 >;
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interrupts = < 4 >;
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interrupt-names = "macirq";
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phy-mode = "rgmii";
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snps,pbl = < 32 >;
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clocks = <&apbclk>;
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clock-names = "stmmaceth";
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max-speed = <100>;
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};
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ehci@0x40000 {
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compatible = "generic-ehci";
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reg = < 0x40000 0x100 >;
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interrupts = < 8 >;
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};
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ohci@0x60000 {
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compatible = "generic-ohci";
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reg = < 0x60000 0x100 >;
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interrupts = < 8 >;
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};
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/*
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* According to DW Mobile Storage databook it is required
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* to use "Hold Register" if card is enumerated in SDR12 or
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* SDR25 modes.
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*
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* Utilization of "Hold Register" is already implemented via
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* dw_mci_pltfm_prepare_command() which in its turn gets
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* used through dw_mci_drv_data->prepare_command call-back.
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* This call-back is used in Altera Socfpga platform and so
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* we may reuse it saying that we're compatible with their
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* "altr,socfpga-dw-mshc".
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*
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* Most probably "Hold Register" utilization is platform-
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* independent requirement which means that single unified
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* "snps,dw-mshc" should be enough for all users of DW MMC once
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* dw_mci_pltfm_prepare_command() is used in generic platform
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* code.
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*/
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mmc@0x15000 {
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compatible = "altr,socfpga-dw-mshc";
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reg = < 0x15000 0x400 >;
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num-slots = < 1 >;
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fifo-depth = < 16 >;
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card-detect-delay = < 200 >;
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clocks = <&apbclk>, <&mmcclk>;
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clock-names = "biu", "ciu";
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interrupts = < 7 >;
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bus-width = < 4 >;
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};
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uart@0x20000 {
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compatible = "snps,dw-apb-uart";
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reg = <0x20000 0x100>;
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clock-frequency = <33333333>;
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interrupts = <17>;
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baud = <115200>;
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reg-shift = <2>;
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reg-io-width = <4>;
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};
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uart@0x21000 {
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compatible = "snps,dw-apb-uart";
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reg = <0x21000 0x100>;
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clock-frequency = <33333333>;
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interrupts = <18>;
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baud = <115200>;
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reg-shift = <2>;
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reg-io-width = <4>;
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};
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/* UART muxed with USB data port (ttyS3) */
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uart@0x22000 {
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compatible = "snps,dw-apb-uart";
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reg = <0x22000 0x100>;
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clock-frequency = <33333333>;
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interrupts = <19>;
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baud = <115200>;
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reg-shift = <2>;
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reg-io-width = <4>;
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};
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i2c@0x1d000 {
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compatible = "snps,designware-i2c";
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reg = <0x1d000 0x100>;
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clock-frequency = <400000>;
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clocks = <&i2cclk>;
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interrupts = <14>;
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};
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i2c@0x1e000 {
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compatible = "snps,designware-i2c";
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reg = <0x1e000 0x100>;
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clock-frequency = <400000>;
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clocks = <&i2cclk>;
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interrupts = <15>;
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};
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i2c@0x1f000 {
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compatible = "snps,designware-i2c";
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#address-cells = <1>;
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#size-cells = <0>;
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reg = <0x1f000 0x100>;
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clock-frequency = <400000>;
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clocks = <&i2cclk>;
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interrupts = <16>;
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eeprom@0x54{
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compatible = "24c01";
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reg = <0x54>;
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pagesize = <0x8>;
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};
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eeprom@0x57{
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compatible = "24c04";
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reg = <0x57>;
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pagesize = <0x8>;
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};
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};
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gpio0:gpio@13000 {
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compatible = "snps,dw-apb-gpio";
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reg = <0x13000 0x1000>;
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#address-cells = <1>;
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#size-cells = <0>;
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gpio0_banka: gpio-controller@0 {
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compatible = "snps,dw-apb-gpio-port";
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gpio-controller;
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#gpio-cells = <2>;
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snps,nr-gpios = <32>;
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reg = <0>;
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};
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gpio0_bankb: gpio-controller@1 {
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compatible = "snps,dw-apb-gpio-port";
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gpio-controller;
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#gpio-cells = <2>;
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snps,nr-gpios = <8>;
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reg = <1>;
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};
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gpio0_bankc: gpio-controller@2 {
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compatible = "snps,dw-apb-gpio-port";
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gpio-controller;
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#gpio-cells = <2>;
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snps,nr-gpios = <8>;
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reg = <2>;
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};
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};
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gpio1:gpio@14000 {
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compatible = "snps,dw-apb-gpio";
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reg = <0x14000 0x1000>;
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#address-cells = <1>;
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#size-cells = <0>;
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gpio1_banka: gpio-controller@0 {
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compatible = "snps,dw-apb-gpio-port";
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gpio-controller;
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#gpio-cells = <2>;
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snps,nr-gpios = <30>;
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reg = <0>;
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};
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gpio1_bankb: gpio-controller@1 {
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compatible = "snps,dw-apb-gpio-port";
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gpio-controller;
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#gpio-cells = <2>;
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snps,nr-gpios = <10>;
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reg = <1>;
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};
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gpio1_bankc: gpio-controller@2 {
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compatible = "snps,dw-apb-gpio-port";
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gpio-controller;
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#gpio-cells = <2>;
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snps,nr-gpios = <8>;
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reg = <2>;
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};
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};
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};
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};
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