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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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pinctrl: sirf: add DT-binding pinmux mapping support
This makes us possible to define pinmux mapping in board-specific DTS. prima2.dtsi provides all possible (groups,functions) configuration, and device in .dts select configurations from dtsi files. Signed-off-by: Barry Song <Baohua.Song@csr.com> Acked-by: Linus Walleij <linus.walleij@linaro.org>
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434e1c574c
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37
arch/arm/boot/dts/prima2-evb.dts
Normal file
37
arch/arm/boot/dts/prima2-evb.dts
Normal file
@ -0,0 +1,37 @@
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/*
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* DTS file for CSR SiRFprimaII Evaluation Board
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*
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* Copyright (c) 2012 Cambridge Silicon Radio Limited, a CSR plc group company.
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*
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* Licensed under GPLv2 or later.
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*/
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/dts-v1/;
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/include/ "prima2.dtsi"
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/ {
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model = "CSR SiRFprimaII Evaluation Board";
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compatible = "sirf,prima2", "sirf,prima2-cb";
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memory {
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reg = <0x00000000 0x20000000>;
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};
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axi {
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peri-iobg {
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uart@b0060000 {
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pinctrl-names = "default";
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pinctrl-0 = <&uart1_pins_a>;
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};
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spi@b00d0000 {
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pinctrl-names = "default";
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pinctrl-0 = <&spi0_pins_a>;
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};
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spi@b0170000 {
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pinctrl-names = "default";
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pinctrl-0 = <&spi1_pins_a>;
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};
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};
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};
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};
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@ -277,14 +277,231 @@ tsc@b0110000 {
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interrupts = <33>;
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};
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gpio: gpio-controller@b0120000 {
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gpio: pinctrl@b0120000 {
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#gpio-cells = <2>;
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#interrupt-cells = <2>;
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compatible = "sirf,prima2-gpio-pinmux";
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compatible = "sirf,prima2-pinctrl";
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reg = <0xb0120000 0x10000>;
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interrupts = <43 44 45 46 47>;
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gpio-controller;
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interrupt-controller;
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lcd_16pins_a: lcd0@0 {
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lcd {
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sirf,pins = "lcd_16bitsgrp";
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sirf,function = "lcd_16bits";
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};
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};
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lcd_18pins_a: lcd0@1 {
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lcd {
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sirf,pins = "lcd_18bitsgrp";
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sirf,function = "lcd_18bits";
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};
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};
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lcd_24pins_a: lcd0@2 {
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lcd {
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sirf,pins = "lcd_24bitsgrp";
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sirf,function = "lcd_24bits";
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};
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};
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lcdrom_pins_a: lcdrom0@0 {
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lcd {
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sirf,pins = "lcdromgrp";
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sirf,function = "lcdrom";
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};
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};
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uart0_pins_a: uart0@0 {
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uart {
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sirf,pins = "uart0grp";
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sirf,function = "uart0";
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};
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};
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uart1_pins_a: uart1@0 {
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uart {
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sirf,pins = "uart1grp";
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sirf,function = "uart1";
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};
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};
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uart2_pins_a: uart2@0 {
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uart {
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sirf,pins = "uart2grp";
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sirf,function = "uart2";
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};
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};
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uart2_noflow_pins_a: uart2@1 {
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uart {
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sirf,pins = "uart2_nostreamctrlgrp";
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sirf,function = "uart2_nostreamctrl";
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};
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};
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spi0_pins_a: spi0@0 {
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spi {
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sirf,pins = "spi0grp";
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sirf,function = "spi0";
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};
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};
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spi1_pins_a: spi1@0 {
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spi {
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sirf,pins = "spi1grp";
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sirf,function = "spi1";
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};
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};
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i2c0_pins_a: i2c0@0 {
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i2c {
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sirf,pins = "i2c0grp";
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sirf,function = "i2c0";
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};
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};
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i2c1_pins_a: i2c1@0 {
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i2c {
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sirf,pins = "i2c1grp";
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sirf,function = "i2c1";
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};
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};
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pwm0_pins_a: pwm0@0 {
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pwm {
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sirf,pins = "pwm0grp";
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sirf,function = "pwm0";
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};
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};
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pwm1_pins_a: pwm1@0 {
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pwm {
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sirf,pins = "pwm1grp";
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sirf,function = "pwm1";
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};
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};
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pwm2_pins_a: pwm2@0 {
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pwm {
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sirf,pins = "pwm2grp";
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sirf,function = "pwm2";
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};
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};
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pwm3_pins_a: pwm3@0 {
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pwm {
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sirf,pins = "pwm3grp";
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sirf,function = "pwm3";
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};
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};
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gps_pins_a: gps@0 {
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gps {
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sirf,pins = "gpsgrp";
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sirf,function = "gps";
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};
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};
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vip_pins_a: vip@0 {
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vip {
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sirf,pins = "vipgrp";
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sirf,function = "vip";
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};
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};
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sdmmc0_pins_a: sdmmc0@0 {
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sdmmc0 {
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sirf,pins = "sdmmc0grp";
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sirf,function = "sdmmc0";
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};
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};
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sdmmc1_pins_a: sdmmc1@0 {
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sdmmc1 {
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sirf,pins = "sdmmc1grp";
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sirf,function = "sdmmc1";
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};
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};
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sdmmc2_pins_a: sdmmc2@0 {
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sdmmc2 {
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sirf,pins = "sdmmc2grp";
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sirf,function = "sdmmc2";
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};
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};
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sdmmc3_pins_a: sdmmc3@0 {
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sdmmc3 {
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sirf,pins = "sdmmc3grp";
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sirf,function = "sdmmc3";
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};
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};
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sdmmc4_pins_a: sdmmc4@0 {
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sdmmc4 {
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sirf,pins = "sdmmc4grp";
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sirf,function = "sdmmc4";
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};
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};
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sdmmc5_pins_a: sdmmc5@0 {
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sdmmc5 {
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sirf,pins = "sdmmc5grp";
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sirf,function = "sdmmc5";
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};
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};
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i2s_pins_a: i2s@0 {
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i2s {
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sirf,pins = "i2sgrp";
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sirf,function = "i2s";
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};
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};
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ac97_pins_a: ac97@0 {
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ac97 {
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sirf,pins = "ac97grp";
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sirf,function = "ac97";
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};
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};
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nand_pins_a: nand@0 {
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nand {
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sirf,pins = "nandgrp";
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sirf,function = "nand";
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};
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};
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usp0_pins_a: usp0@0 {
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usp0 {
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sirf,pins = "usp0grp";
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sirf,function = "usp0";
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};
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};
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usp1_pins_a: usp1@0 {
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usp1 {
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sirf,pins = "usp1grp";
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sirf,function = "usp1";
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};
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};
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usp2_pins_a: usp2@0 {
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usp2 {
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sirf,pins = "usp2grp";
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sirf,function = "usp2";
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};
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};
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usb0_utmi_drvbus_pins_a: usb0_utmi_drvbus@0 {
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usb0_utmi_drvbus {
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sirf,pins = "usb0_utmi_drvbusgrp";
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sirf,function = "usb0_utmi_drvbus";
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};
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};
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usb1_utmi_drvbus_pins_a: usb1_utmi_drvbus@0 {
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usb1_utmi_drvbus {
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sirf,pins = "usb1_utmi_drvbusgrp";
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sirf,function = "usb1_utmi_drvbus";
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};
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};
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warm_rst_pins_a: warm_rst@0 {
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warm_rst {
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sirf,pins = "warm_rstgrp";
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sirf,function = "warm_rst";
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};
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};
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pulse_count_pins_a: pulse_count@0 {
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pulse_count {
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sirf,pins = "pulse_countgrp";
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sirf,function = "pulse_count";
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};
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};
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cko0_rst_pins_a: cko0_rst@0 {
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cko0_rst {
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sirf,pins = "cko0_rstgrp";
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sirf,function = "cko0_rst";
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};
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};
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cko1_rst_pins_a: cko1_rst@0 {
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cko1_rst {
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sirf,pins = "cko1_rstgrp";
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sirf,function = "cko1_rst";
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};
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};
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};
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pwm@b0130000 {
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@ -1,3 +1,5 @@
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zreladdr-y += 0x00008000
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params_phys-y := 0x00000100
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initrd_phys-y := 0x00800000
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dtb-$(CONFIG_ARCH_PRIMA2) += prima2-evb.dtb
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@ -17,6 +17,7 @@
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#include <linux/pinctrl/pinctrl.h>
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#include <linux/pinctrl/pinmux.h>
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#include <linux/pinctrl/consumer.h>
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#include <linux/pinctrl/machine.h>
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#include <linux/of.h>
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#include <linux/of_address.h>
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#include <linux/of_device.h>
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@ -916,11 +917,66 @@ static void sirfsoc_pin_dbg_show(struct pinctrl_dev *pctldev, struct seq_file *s
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seq_printf(s, " " DRIVER_NAME);
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}
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static int sirfsoc_dt_node_to_map(struct pinctrl_dev *pctldev,
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struct device_node *np_config,
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struct pinctrl_map **map, unsigned *num_maps)
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{
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struct sirfsoc_pmx *spmx = pinctrl_dev_get_drvdata(pctldev);
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struct device_node *np;
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struct property *prop;
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const char *function, *group;
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int ret, index = 0, count = 0;
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/* calculate number of maps required */
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for_each_child_of_node(np_config, np) {
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ret = of_property_read_string(np, "sirf,function", &function);
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if (ret < 0)
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return ret;
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ret = of_property_count_strings(np, "sirf,pins");
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if (ret < 0)
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return ret;
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count += ret;
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}
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if (!count) {
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dev_err(spmx->dev, "No child nodes passed via DT\n");
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return -ENODEV;
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}
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*map = kzalloc(sizeof(**map) * count, GFP_KERNEL);
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if (!*map)
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return -ENOMEM;
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for_each_child_of_node(np_config, np) {
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of_property_read_string(np, "sirf,function", &function);
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of_property_for_each_string(np, "sirf,pins", prop, group) {
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(*map)[index].type = PIN_MAP_TYPE_MUX_GROUP;
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(*map)[index].data.mux.group = group;
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(*map)[index].data.mux.function = function;
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index++;
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}
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}
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*num_maps = count;
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return 0;
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}
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static void sirfsoc_dt_free_map(struct pinctrl_dev *pctldev,
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struct pinctrl_map *map, unsigned num_maps)
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{
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kfree(map);
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}
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static struct pinctrl_ops sirfsoc_pctrl_ops = {
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.get_groups_count = sirfsoc_get_groups_count,
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.get_group_name = sirfsoc_get_group_name,
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.get_group_pins = sirfsoc_get_group_pins,
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.pin_dbg_show = sirfsoc_pin_dbg_show,
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.dt_node_to_map = sirfsoc_dt_node_to_map,
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.dt_free_map = sirfsoc_dt_free_map,
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};
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struct sirfsoc_pmx_func {
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@ -1221,7 +1277,7 @@ static int __devinit sirfsoc_pinmux_probe(struct platform_device *pdev)
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}
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static const struct of_device_id pinmux_ids[] __devinitconst = {
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{ .compatible = "sirf,prima2-gpio-pinmux" },
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{ .compatible = "sirf,prima2-pinctrl" },
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{}
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};
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