linux/arch/arm/boot/dts/imx53-ppd.dts
Linus Torvalds 9805529ec5 ARM: device tree updates for 5.11
Across all platforms, there is a continued move towards DT schema for
 validating the dts files. As a result there are bug fixes for mistakes
 that are found using these schema, in addition to warnings from the
 dtc compiler.
 
 As usual, many changes are for adding support for additional on-chip
 and on-board components in the machines we already support.
 
 The newly supported SoCs for this release are:
 
  - MStar Infinity2M, a low-end IP camera chip based on a dual-core
    Cortex-A7, otherwise similar to the Infinity chip we already support.
    This is also known as the SigmaStar SSD202D, and we add support for
    the Honestar ssd201htv2 development kit.
 
  - Nuvoton NPCM730, a Cortex-A9 based Baseboard Management Controller
    (BMC), in the same family as the NPCM750. This gets used in the Ampere
    Altra based "Fii Kudo" server and the Quanta GSJ, both of which are
    added as well.
 
  - Broadcom BCM4908, a 64-bit home router chip based on Broadcom's own
    Brahma-B53 CPU. Support is also added for the Asus ROG Rapture
    GT-AC5300 high-end WiFi router based on this chip.
 
  - Mediatek MT8192 is a new SoC based on eight Cortex-A76/A55 cores,
    meant for faster Chromebooks and tablets. It gets added along with
    its reference design.
 
  - Mediatek MT6779 (Helio P90) is a high-end phone chip from last year's
    generation, also added along with its reference board.  This one is
    still based on Cortex-A75/A55.
 
  - Mediatek MT8167 is a version of the already supported MT8516 chip,
    both based on Cortex-A35. It gets added along with the "Pumpkin"
    single board computer, but is likely to also make its way into low-end
    tablets in the future.
 
 For the already supported chips, there are a number of new boards.
 Interestingly there are more 32-bit machines added this time than
 64-bit. Here is a brief list of the new boards:
 
  - Three new Mikrotik router variants based on Marvell Prestera
    98DX3236, a close relative of the more common Armada XP
 
  - A reference board for the Marvell Armada 382
 
  - Three new servers using ASpeed baseboard management controllers,
    the actual machines being from Bytedance, Facebook and IBM,
    and one machine using the Nuvoton NPCM750 BMC.
 
  - The Galaxy Note 10.1 (P4) tablet, using an Exynos 4412.
 
  - The usual set of 32-bit i.MX industrial/embedded hardware:
    * Protonic WD3 (tractor e-cockpit)
    * Kamstrup OMNIA Flex Concentrator (smart grid platform)
    * Van der Laan LANMCU (food storage)
    * Altesco I6P (vehicle inspection stations)
    * PHYTEC phyBOARD-Segin/phyCORE-i.MX6UL baseboard
 
  - DH electronics STM32MP157C DHCOM, a PicoITX carrier board
    for the aleady supported DHCOM module
 
  - Three new Allwinner SoC based single-board computers:
    * NanoPi R1 (H3 based)
    * FriendlyArm ZeroPi (H3 based)
    * Elimo Initium SBC (S3 based)
 
  - Ouya Game Console based on Nvidia Tegra 3
 
  - Version 5 of the already supported Zynq Z-Turn MYIR Board
 
  - LX2162AQDS, a reference platform for NXP Layerscape
    LX2162A, which is a repackaged 16-core LX2160A
 
  - A series of Kontron i.MX8M Mini baseboard/SoM versions
 
  - Espressobin Ultra, a new variant of the popular Armada 3700 based board,
 
  - IEI Puzzle-M801, a rackmount network appliance based on
    Marvell Armada 8040
 
  - Microsoft Lumia 950 XL, a phone
 
  - HDK855 and HDK865 Hardware development kits for Qualcomm
    sm8250 and sm8150, respectively
 
  - Three new board variants of the "Trogdor" Chromebook
    (sc7180)
 
  - New board variants of the Renesas based "Kingfisher" and
    "HiHope" reference boards
 
  - Kobol Helios64, an open source NAS appliance based on Rockchips
    RK3399
 
  - Engicam PX30.Core, a SoM based on Rockchip PX30, along with
    a few carrier boards.
 
 There is one conflict in mt6577_auxadc.txt, which got replaced in
 another tree and modified here, the modification is already part of
 the new file.
 
 Signed-off-by: Arnd Bergmann <arnd@arndb.de>
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Merge tag 'arm-soc-dt-5.11' of git://git.kernel.org/pub/scm/linux/kernel/git/soc/soc

Pull ARM device tree updates from Arnd Bergmann:
 "Across all platforms, there is a continued move towards DT schema for
  validating the dts files. As a result there are bug fixes for mistakes
  that are found using these schema, in addition to warnings from the
  dtc compiler.

  As usual, many changes are for adding support for additional on-chip
  and on-board components in the machines we already support.

  The newly supported SoCs for this release are:

   - MStar Infinity2M, a low-end IP camera chip based on a dual-core
     Cortex-A7, otherwise similar to the Infinity chip we already
     support. This is also known as the SigmaStar SSD202D, and we add
     support for the Honestar ssd201htv2 development kit.

   - Nuvoton NPCM730, a Cortex-A9 based Baseboard Management Controller
     (BMC), in the same family as the NPCM750. This gets used in the
     Ampere Altra based "Fii Kudo" server and the Quanta GSJ, both of
     which are added as well.

   - Broadcom BCM4908, a 64-bit home router chip based on Broadcom's own
     Brahma-B53 CPU. Support is also added for the Asus ROG Rapture
     GT-AC5300 high-end WiFi router based on this chip.

   - Mediatek MT8192 is a new SoC based on eight Cortex-A76/A55 cores,
     meant for faster Chromebooks and tablets. It gets added along with
     its reference design.

   - Mediatek MT6779 (Helio P90) is a high-end phone chip from last
     year's generation, also added along with its reference board. This
     one is still based on Cortex-A75/A55.

   - Mediatek MT8167 is a version of the already supported MT8516 chip,
     both based on Cortex-A35. It gets added along with the "Pumpkin"
     single board computer, but is likely to also make its way into
     low-end tablets in the future.

  For the already supported chips, there are a number of new boards.
  Interestingly there are more 32-bit machines added this time than
  64-bit. Here is a brief list of the new boards:

   - Three new Mikrotik router variants based on Marvell Prestera
     98DX3236, a close relative of the more common Armada XP

   - A reference board for the Marvell Armada 382

   - Three new servers using ASpeed baseboard management controllers,
     the actual machines being from Bytedance, Facebook and IBM, and one
     machine using the Nuvoton NPCM750 BMC.

   - The Galaxy Note 10.1 (P4) tablet, using an Exynos 4412.

   - The usual set of 32-bit i.MX industrial/embedded hardware:
       * Protonic WD3 (tractor e-cockpit)
       * Kamstrup OMNIA Flex Concentrator (smart grid platform)
       * Van der Laan LANMCU (food storage)
       * Altesco I6P (vehicle inspection stations)
       * PHYTEC phyBOARD-Segin/phyCORE-i.MX6UL baseboard

   - DH electronics STM32MP157C DHCOM, a PicoITX carrier board for the
     aleady supported DHCOM module

   - Three new Allwinner SoC based single-board computers:
       * NanoPi R1 (H3 based)
       * FriendlyArm ZeroPi (H3 based)
       * Elimo Initium SBC (S3 based)

   - Ouya Game Console based on Nvidia Tegra 3

   - Version 5 of the already supported Zynq Z-Turn MYIR Board

   - LX2162AQDS, a reference platform for NXP Layerscape LX2162A, which
     is a repackaged 16-core LX2160A

   - A series of Kontron i.MX8M Mini baseboard/SoM versions

   - Espressobin Ultra, a new variant of the popular Armada 3700 based
     board,

   - IEI Puzzle-M801, a rackmount network appliance based on Marvell
     Armada 8040

   - Microsoft Lumia 950 XL, a phone

   - HDK855 and HDK865 Hardware development kits for Qualcomm sm8250 and
     sm8150, respectively

   - Three new board variants of the "Trogdor" Chromebook (sc7180)

   - New board variants of the Renesas based "Kingfisher" and "HiHope"
     reference boards

   - Kobol Helios64, an open source NAS appliance based on Rockchips
     RK3399

   - Engicam PX30.Core, a SoM based on Rockchip PX30, along with a few
     carrier boards"

* tag 'arm-soc-dt-5.11' of git://git.kernel.org/pub/scm/linux/kernel/git/soc/soc: (679 commits)
  arm64: dts: sparx5: Add SGPIO devices
  arm64: dts: sparx5: Add reset support
  dt-bindings: gpio: Add a binding header for the MSC313 GPIO driver
  ARM: mstar: SMP support
  ARM: mstar: Wire up smpctrl for SSD201/SSD202D
  ARM: mstar: Add smp ctrl registers to infinity2m dtsi
  ARM: mstar: Add dts for Honestar ssd201htv2
  ARM: mstar: Add chip level dtsi for SSD202D
  ARM: mstar: Add common dtsi for SSD201/SSD202D
  ARM: mstar: Add infinity2m support
  dt-bindings: mstar: Add Honestar SSD201_HT_V2 to mstar boards
  dt-bindings: vendor-prefixes: Add honestar vendor prefix
  dt-bindings: mstar: Add binding details for mstar,smpctrl
  ARM: mstar: Fill in GPIO controller properties for infinity
  ARM: mstar: Add gpio controller to MStar base dtsi
  ARM: zynq: Fix incorrect reference to XM013 instead of XM011
  ARM: zynq: Convert at25 binding to new description on zc770-xm013
  ARM: zynq: Fix OCM mapping to be aligned with binding on zc702
  ARM: zynq: Fix leds subnode name for zc702/zybo-z7
  ARM: zynq: Rename bus to be align with simple-bus yaml
  ...
2020-12-16 16:27:35 -08:00

1118 lines
27 KiB
Plaintext

/*
* Copyright 2014 General Electric Company
*
* This file is dual-licensed: you can use it either under the terms
* of the GPL or the X11 license, at your option. Note that this dual
* licensing only applies to this file, and not this project as a
* whole.
*
* a) This file is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License
* version 2 as published by the Free Software Foundation.
*
* This file is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* Or, alternatively,
*
* b) Permission is hereby granted, free of charge, to any person
* obtaining a copy of this software and associated documentation
* files (the "Software"), to deal in the Software without
* restriction, including without limitation the rights to use,
* copy, modify, merge, publish, distribute, sublicense, and/or
* sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following
* conditions:
*
* The above copyright notice and this permission notice shall be
* included in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES
* OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT
* HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
*/
/dts-v1/;
#include "imx53.dtsi"
#include <dt-bindings/input/input.h>
/ {
model = "General Electric CS ONE";
compatible = "ge,imx53-cpuvo", "fsl,imx53";
aliases {
spi0 = &cspi;
spi1 = &ecspi1;
spi2 = &ecspi2;
};
chosen {
stdout-path = "serial0:115200n8";
};
memory@70000000 {
device_type = "memory";
reg = <0x70000000 0x20000000>,
<0xb0000000 0x20000000>;
};
cko2_11M: sgtl-clock-cko2 {
compatible = "fixed-clock";
#clock-cells = <0>;
clock-frequency = <11289600>;
};
sgtlsound: sound {
compatible = "fsl,imx53-cpuvo-sgtl5000",
"fsl,imx-audio-sgtl5000";
model = "imx53-cpuvo-sgtl5000";
ssi-controller = <&ssi2>;
audio-codec = <&sgtl5000>;
audio-routing =
"MIC_IN", "Mic Jack",
"Mic Jack", "Mic Bias",
"Headphone Jack", "HP_OUT";
mux-int-port = <2>;
mux-ext-port = <6>;
};
reg_sgtl5k: regulator-sgtl5k {
compatible = "regulator-fixed";
regulator-name = "regulator-sgtl5k";
regulator-min-microvolt = <3300000>;
regulator-max-microvolt = <3300000>;
regulator-always-on;
};
reg_usb_otg_vbus: regulator-usb-otg-vbus {
compatible = "regulator-fixed";
regulator-name = "usbotg_vbus";
regulator-min-microvolt = <5000000>;
regulator-max-microvolt = <5000000>;
pinctrl-0 = <&pinctrl_usb_otg_vbus>;
gpio = <&gpio4 15 GPIO_ACTIVE_HIGH>;
enable-active-high;
};
reg_usb_vbus: regulator-usb-vbus {
compatible = "regulator-fixed";
regulator-name = "usbh1_vbus";
regulator-min-microvolt = <5000000>;
regulator-max-microvolt = <5000000>;
regulator-always-on;
};
reg_usbh2_vbus: regulator-usbh2-vbus {
compatible = "regulator-fixed";
regulator-name = "usbh2_vbus";
regulator-min-microvolt = <5000000>;
regulator-max-microvolt = <5000000>;
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_usbh2_vbus>;
gpio = <&gpio3 31 GPIO_ACTIVE_HIGH>;
enable-active-high;
};
reg_usbh3_vbus: regulator-usbh3-vbus {
compatible = "regulator-fixed";
regulator-name = "usbh3_vbus";
regulator-min-microvolt = <5000000>;
regulator-max-microvolt = <5000000>;
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_usbh3_vbus>;
gpio = <&gpio5 27 GPIO_ACTIVE_HIGH>;
enable-active-high;
};
reg_tsiref: regulator-tsiref {
compatible = "regulator-fixed";
regulator-name = "tsiref";
regulator-min-microvolt = <2500000>;
regulator-max-microvolt = <2500000>;
regulator-always-on;
};
reg_3v3: regulator-3v3 {
/* TPS54320 */
compatible = "regulator-fixed";
regulator-name = "3V3";
regulator-min-microvolt = <3300000>;
regulator-max-microvolt = <3300000>;
regulator-always-on;
};
reg_3v3_lcd: regulator-3v3-lcd {
/* MIC2009 */
compatible = "regulator-fixed";
regulator-name = "LCD_3V3";
vin-supply = <&reg_3v3>;
regulator-min-microvolt = <3300000>;
regulator-max-microvolt = <3300000>;
regulator-always-on;
};
pwm_bl: backlight {
compatible = "pwm-backlight";
pwms = <&pwm2 0 50000>;
brightness-levels = <0 2 5 7 10 12 15 17 20 22 25 28 30 33 35
38 40 43 45 48 51 53 56 58 61 63 66 68 71
73 76 79 81 84 86 89 91 94 96 99 102 104
107 109 112 114 117 119 122 124 127 130
132 135 137 140 142 145 147 150 153 155
158 160 163 165 168 170 173 175 178 181
183 186 188 191 193 196 198 201 204 206
209 211 214 216 219 221 224 226 229 232
234 237 239 242 244 247 249 252 255>;
default-brightness-level = <0>;
enable-gpios = <&gpio5 29 GPIO_ACTIVE_HIGH>;
power-supply = <&reg_3v3_lcd>;
};
led-controller-1 {
compatible = "pwm-leds";
led-1 {
label = "alarm-brightness";
pwms = <&pwm1 0 100000>;
max-brightness = <255>;
};
};
led-controller-2 {
compatible = "gpio-leds";
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_alarmled_pins>;
led-2 {
label = "alarm:red";
gpios = <&gpio7 3 GPIO_ACTIVE_HIGH>;
};
led-3 {
label = "alarm:yellow";
gpios = <&gpio7 7 GPIO_ACTIVE_HIGH>;
};
led-4 {
label = "alarm:blue";
gpios = <&gpio7 8 GPIO_ACTIVE_HIGH>;
};
led-5 {
label = "alarm:silenced";
gpios = <&gpio7 13 GPIO_ACTIVE_HIGH>;
};
};
gpio-poweroff {
compatible = "gpio-poweroff";
gpios = <&gpio3 9 GPIO_ACTIVE_HIGH>;
};
gpio-restart {
compatible = "gpio-restart";
gpios = <&gpio3 8 GPIO_ACTIVE_HIGH>;
active-delay = <100>;
inactive-delay = <10>;
wait-delay = <100>;
};
power-gpio-keys {
compatible = "gpio-keys";
power-button {
label = "Power button";
gpios = <&gpio4 13 GPIO_ACTIVE_HIGH>;
linux,code = <KEY_POWER>;
};
};
touch-lock-key {
compatible = "gpio-keys";
touch-lock-button {
label = "Touch lock button";
gpios = <&gpio5 2 GPIO_ACTIVE_LOW>;
linux,code = <KEY_F12>;
};
};
usbphy2: usbphy-2 {
compatible = "usb-nop-xceiv";
vcc-supply = <&reg_3v3>;
reset-gpios = <&gpio4 4 GPIO_ACTIVE_LOW>;
clock-names = "main_clk";
clock-frequency = <24000000>;
clocks = <&clks IMX5_CLK_CKO2>;
assigned-clocks = <&clks IMX5_CLK_CKO2_SEL>, <&clks IMX5_CLK_OSC>;
assigned-clock-parents = <&clks IMX5_CLK_OSC>;
};
usbphy3: usbphy-3 {
compatible = "usb-nop-xceiv";
vcc-supply = <&reg_3v3>;
reset-gpios = <&gpio2 19 GPIO_ACTIVE_LOW>;
clock-names = "main_clk";
clock-frequency = <24000000>;
clocks = <&clks IMX5_CLK_CKO2>;
assigned-clocks = <&clks IMX5_CLK_CKO2_SEL>, <&clks IMX5_CLK_OSC>;
assigned-clock-parents = <&clks IMX5_CLK_OSC>;
};
panel-lvds0 {
compatible = "nvd,9128";
power-supply = <&reg_3v3_lcd>;
port {
panel_in_lvds0: endpoint {
remote-endpoint = <&lvds0_out>;
};
};
};
};
&usbphy0 {
vcc-supply = <&reg_3v3>;
};
&usbphy1 {
vcc-supply = <&reg_3v3>;
};
&audmux {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_audmux>;
status = "okay";
};
&cpu0 {
/* CPU rated to 1GHz, not 1.2GHz as per the default settings */
operating-points = <
/* kHz uV */
166666 850000
400000 900000
800000 1050000
1000000 1200000
>;
};
&ecspi1 {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_ecspi1>;
cs-gpios = <&gpio5 17 GPIO_ACTIVE_LOW
&gpio4 10 GPIO_ACTIVE_LOW
&gpio4 11 GPIO_ACTIVE_LOW
&gpio4 12 GPIO_ACTIVE_LOW>;
status = "okay";
spidev0: spi@0 {
compatible = "ge,achc";
reg = <0>;
spi-max-frequency = <1000000>;
};
spidev1: spi@1 {
compatible = "ge,achc";
reg = <1>;
spi-max-frequency = <1000000>;
};
gpioxra0: gpio@2 {
compatible = "exar,xra1403";
reg = <2>;
gpio-controller;
#gpio-cells = <2>;
spi-max-frequency = <1000000>;
};
gpioxra1: gpio@3 {
compatible = "exar,xra1403";
reg = <3>;
gpio-controller;
#gpio-cells = <2>;
spi-max-frequency = <1000000>;
};
};
&ecspi2 {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_ecspi2>;
cs-gpios = <&gpio2 26 GPIO_ACTIVE_LOW>;
status = "okay";
da9053@0 {
compatible = "dlg,da9053-aa";
reg = <0>;
interrupt-parent = <&gpio3>;
interrupts = <12 IRQ_TYPE_LEVEL_LOW>;
spi-max-frequency = <1000000>;
dlg,tsi-as-adc;
tsiref-supply = <&reg_tsiref>;
regulators {
buck1_reg: buck1 {
regulator-name = "BUCKCORE";
regulator-min-microvolt = <500000>;
regulator-max-microvolt = <2075000>;
regulator-always-on;
};
buck2_reg: buck2 {
regulator-name = "BUCKPRO";
regulator-min-microvolt = <500000>;
regulator-max-microvolt = <2075000>;
regulator-always-on;
};
buck3_reg: buck3 {
regulator-name = "BUCKMEM";
regulator-min-microvolt = <925000>;
regulator-max-microvolt = <2500000>;
regulator-always-on;
};
buck4_reg: buck4 {
regulator-name = "BUCKPERI";
regulator-min-microvolt = <1800000>;
regulator-max-microvolt = <3600000>;
regulator-always-on;
};
ldo1_reg: ldo1 {
regulator-name = "ldo1_1v3";
regulator-min-microvolt = <600000>;
regulator-max-microvolt = <1800000>;
regulator-always-on;
};
ldo2_reg: ldo2 {
regulator-name = "ldo2_1v3";
regulator-min-microvolt = <600000>;
regulator-max-microvolt = <1800000>;
regulator-always-on;
};
ldo3_reg: ldo3 {
regulator-name = "ldo3_3v3";
regulator-min-microvolt = <1725000>;
regulator-max-microvolt = <3300000>;
regulator-always-on;
};
ldo4_reg: ldo4 {
regulator-name = "ldo4_2v775";
regulator-min-microvolt = <1725000>;
regulator-max-microvolt = <3300000>;
regulator-always-on;
};
ldo5_reg: ldo5 {
regulator-name = "ldo5_3v3";
regulator-min-microvolt = <1200000>;
regulator-max-microvolt = <3600000>;
regulator-always-on;
};
ldo6_reg: ldo6 {
regulator-name = "ldo6_1v3";
regulator-min-microvolt = <1200000>;
regulator-max-microvolt = <3600000>;
regulator-always-on;
};
ldo7_reg: ldo7 {
regulator-name = "ldo7_2v75";
regulator-min-microvolt = <1200000>;
regulator-max-microvolt = <3600000>;
regulator-always-on;
};
ldo8_reg: ldo8 {
regulator-name = "ldo8_1v8";
regulator-min-microvolt = <1200000>;
regulator-max-microvolt = <3600000>;
regulator-always-on;
};
ldo9_reg: ldo9 {
regulator-name = "ldo9_1v5";
regulator-min-microvolt = <1250000>;
regulator-max-microvolt = <3650000>;
regulator-always-on;
};
ldo10_reg: ldo10 {
regulator-name = "ldo10_1v3";
regulator-min-microvolt = <1200000>;
regulator-max-microvolt = <3600000>;
regulator-always-on;
};
};
};
};
&esdhc3 {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_esdhc3>;
bus-width = <8>;
status = "okay";
};
&fec {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_fec>;
phy-supply = <&reg_3v3>;
phy-mode = "rmii";
phy-reset-gpios = <&gpio2 16 GPIO_ACTIVE_LOW>;
status = "okay";
};
&i2c1 {
pinctrl-names = "default", "gpio";
pinctrl-0 = <&pinctrl_i2c1>;
pinctrl-1 = <&pinctrl_i2c1_gpio>;
sda-gpios = <&gpio3 28 GPIO_ACTIVE_HIGH>;
scl-gpios = <&gpio3 21 GPIO_ACTIVE_HIGH>;
status = "okay";
i2c-switch@70 {
compatible = "nxp,pca9547";
#address-cells = <1>;
#size-cells = <0>;
reg = <0x70>;
reset-gpios = <&gpio2 18 GPIO_ACTIVE_LOW>;
i2c4: i2c@0 {
#address-cells = <1>;
#size-cells = <0>;
reg = <0>;
sgtl5000: codec@a {
compatible = "fsl,sgtl5000";
reg = <0xa>;
#sound-dai-cells = <0>;
VDDA-supply = <&reg_sgtl5k>;
VDDIO-supply = <&reg_sgtl5k>;
clocks = <&cko2_11M>;
status = "okay";
};
};
i2c5: i2c@1 {
#address-cells = <1>;
#size-cells = <0>;
reg = <1>;
rtc@30 {
compatible = "sii,s35390a";
reg = <0x30>;
};
temp@48 {
compatible = "ti,tmp112";
reg = <0x48>;
};
mma8453q: accelerometer@1c {
compatible = "fsl,mma8453";
reg = <0x1c>;
interrupt-parent = <&gpio1>;
interrupts = <6 IRQ_TYPE_NONE>;
interrupt-names = "INT1";
};
mpl3115: pressure-sensor@60 {
compatible = "fsl,mpl3115";
reg = <0x60>;
};
eeprom: eeprom@50 {
compatible = "atmel,24c08";
reg = <0x50>;
};
};
i2c6: i2c@2 {
#address-cells = <1>;
#size-cells = <0>;
reg = <2>;
};
i2c7: i2c@3 {
#address-cells = <1>;
#size-cells = <0>;
reg = <3>;
};
i2c8: i2c@4 {
#address-cells = <1>;
#size-cells = <0>;
reg = <4>;
};
i2c9: i2c@5 {
#address-cells = <1>;
#size-cells = <0>;
reg = <5>;
};
i2c10: i2c@6 {
#address-cells = <1>;
#size-cells = <0>;
reg = <6>;
};
i2c11: i2c@7 {
#address-cells = <1>;
#size-cells = <0>;
reg = <7>;
};
};
};
&i2c2 {
pinctrl-names = "default", "gpio";
pinctrl-0 = <&pinctrl_i2c2>;
pinctrl-1 = <&pinctrl_i2c2_gpio>;
sda-gpios = <&gpio3 16 GPIO_ACTIVE_HIGH>;
scl-gpios = <&gpio2 30 GPIO_ACTIVE_HIGH>;
status = "okay";
touchscreen@4b {
compatible = "atmel,maxtouch";
reset-gpio = <&gpio5 19 GPIO_ACTIVE_LOW>;
reg = <0x4b>;
interrupt-parent = <&gpio5>;
interrupts = <4 IRQ_TYPE_LEVEL_LOW>;
};
};
&i2c3 {
pinctrl-names = "default", "gpio";
pinctrl-0 = <&pinctrl_i2c3>;
pinctrl-1 = <&pinctrl_i2c3_gpio>;
sda-gpios = <&gpio3 18 GPIO_ACTIVE_HIGH>;
scl-gpios = <&gpio3 17 GPIO_ACTIVE_HIGH>;
status = "okay";
};
&ldb {
status = "okay";
lvds0: lvds-channel@0 {
status = "okay";
port@2 {
lvds0_out: endpoint {
remote-endpoint = <&panel_in_lvds0>;
};
};
};
};
&pmu {
secure-reg-access;
};
&pwm1 {
#pwm-cells = <2>;
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_pwm1>;
status = "okay";
};
&pwm2 {
#pwm-cells = <2>;
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_pwm2>;
status = "okay";
};
&ssi2 {
status = "okay";
};
&uart1 {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_uart1>;
status = "okay";
};
&uart2 {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_uart2>;
status = "okay";
};
&uart3 {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_uart3>;
uart-has-rtscts;
status = "okay";
};
&uart4 {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_uart4>;
status = "okay";
};
&uart5 {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_uart5>;
status = "okay";
};
&usbotg {
dr_mode = "otg";
phy_type = "utmi";
vbus-supply = <&reg_usb_otg_vbus>;
pinctrl-0 = <&pinctrl_usb_otg>;
status = "okay";
};
&usbh1 {
vbus-supply = <&reg_usb_vbus>;
phy_type = "utmi";
dr_mode = "host";
status = "okay";
};
&usbh2 {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_usbh2>;
phy_type = "ulpi";
dr_mode = "host";
fsl,usbphy = <&usbphy2>;
vbus-supply = <&reg_usbh2_vbus>;
status = "okay";
};
&usbh3 {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_usbh3>;
phy_type = "ulpi";
dr_mode = "host";
vbus-supply = <&reg_usbh3_vbus>;
fsl,usbphy = <&usbphy3>;
status = "okay";
};
&iomuxc {
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_hog_rev6>;
pinctrl_audmux: audmuxgrp {
fsl,pins = <
MX53_PAD_DISP0_DAT19__AUDMUX_AUD5_RXD 0x400
MX53_PAD_DISP0_DAT17__AUDMUX_AUD5_TXD 0x400
MX53_PAD_DISP0_DAT16__AUDMUX_AUD5_TXC 0x400
MX53_PAD_DISP0_DAT18__AUDMUX_AUD5_TXFS 0x400
MX53_PAD_DI0_PIN15__AUDMUX_AUD6_TXC 0x400
MX53_PAD_DI0_PIN3__AUDMUX_AUD6_TXFS 0x400
MX53_PAD_DI0_PIN4__AUDMUX_AUD6_RXD 0x400
MX53_PAD_DI0_PIN2__AUDMUX_AUD6_TXD 0x400
>;
};
pinctrl_ecspi1: ecspi1grp {
fsl,pins = <
MX53_PAD_DISP0_DAT21__ECSPI1_MOSI 0x400
MX53_PAD_DISP0_DAT22__ECSPI1_MISO 0x400
MX53_PAD_DISP0_DAT20__ECSPI1_SCLK 0x400
/* ECSPI1_SS0, must treat as GPIO for EzPort */
MX53_PAD_DISP0_DAT23__GPIO5_17 0x400
MX53_PAD_KEY_COL2__GPIO4_10 0x0
MX53_PAD_KEY_ROW2__GPIO4_11 0x0
MX53_PAD_KEY_COL3__GPIO4_12 0x0
>;
};
pinctrl_ecspi2: ecspi2grp {
fsl,pins = <
MX53_PAD_EIM_CS1__ECSPI2_MOSI 0x0
MX53_PAD_EIM_OE__ECSPI2_MISO 0x0
MX53_PAD_EIM_CS0__ECSPI2_SCLK 0x0
MX53_PAD_EIM_RW__GPIO2_26 0x0
>;
};
pinctrl_esdhc1: esdhc1grp {
fsl,pins = <
MX53_PAD_SD1_DATA0__ESDHC1_DAT0 0x1d5
MX53_PAD_SD1_DATA1__ESDHC1_DAT1 0x1d5
MX53_PAD_SD1_DATA2__ESDHC1_DAT2 0x1d5
MX53_PAD_SD1_DATA3__ESDHC1_DAT3 0x1d5
MX53_PAD_SD1_CMD__ESDHC1_CMD 0x1d5
MX53_PAD_SD1_CLK__ESDHC1_CLK 0x1d5
>;
};
pinctrl_esdhc3: esdhc3grp {
fsl,pins = <
MX53_PAD_PATA_DATA8__ESDHC3_DAT0 0x1d5
MX53_PAD_PATA_DATA9__ESDHC3_DAT1 0x1d5
MX53_PAD_PATA_DATA10__ESDHC3_DAT2 0x1d5
MX53_PAD_PATA_DATA11__ESDHC3_DAT3 0x1d5
MX53_PAD_PATA_DATA0__ESDHC3_DAT4 0x1d5
MX53_PAD_PATA_DATA1__ESDHC3_DAT5 0x1d5
MX53_PAD_PATA_DATA2__ESDHC3_DAT6 0x1d5
MX53_PAD_PATA_DATA3__ESDHC3_DAT7 0x1d5
MX53_PAD_PATA_RESET_B__ESDHC3_CMD 0x1d5
MX53_PAD_PATA_IORDY__ESDHC3_CLK 0x1d5
>;
};
pinctrl_fec: fecgrp {
fsl,pins = <
MX53_PAD_FEC_MDC__FEC_MDC 0x0
MX53_PAD_FEC_MDIO__FEC_MDIO 0x0
MX53_PAD_FEC_REF_CLK__FEC_TX_CLK 0x0
MX53_PAD_FEC_RX_ER__FEC_RX_ER 0x0
MX53_PAD_FEC_CRS_DV__FEC_RX_DV 0x0
MX53_PAD_FEC_RXD1__FEC_RDATA_1 0x0
MX53_PAD_FEC_RXD0__FEC_RDATA_0 0x0
MX53_PAD_FEC_TX_EN__FEC_TX_EN 0x0
MX53_PAD_FEC_TXD1__FEC_TDATA_1 0x0
MX53_PAD_FEC_TXD0__FEC_TDATA_0 0x0
>;
};
pinctrl_hog_rev6: hoggrp {
fsl,pins = <
/* CKO2 */
MX53_PAD_GPIO_3__CCM_CLKO2 0x4
/* DEFIB_SYNC_MARKER_IN_IRQ */
MX53_PAD_GPIO_5__GPIO1_5 0x0
/* ACCELEROMETER_DATA_RDY_N */
MX53_PAD_GPIO_6__GPIO1_6 0x0
/* TEMPERATURE_ALERT_N */
MX53_PAD_GPIO_7__GPIO1_7 0x0
/* BAROMETRIC_PRESSURE_DATA_RDY_N */
MX53_PAD_GPIO_8__GPIO1_8 0x0
/* DOCKING_I2C_INTERFACE_IRQ_N */
MX53_PAD_PATA_DATA4__GPIO2_4 0x0
/* PWR_OUT_TO_DOCK_FAULT_N */
MX53_PAD_PATA_DATA5__GPIO2_5 0x0
/* ENABLE_PWR_TO_DOCK_N */
MX53_PAD_PATA_DATA6__GPIO2_6 0x0
/* HOST_CONTROLLED_RESET_TO_DOCKING_CONNECTOR_N */
MX53_PAD_PATA_DATA7__GPIO2_7 0x0
/* REMOTE_ON_REQUEST_FROM_DOCKING_CONNECTOR_IS_ACTIVE_N */
MX53_PAD_PATA_DATA12__GPIO2_12 0x0
/* DOCK_PRESENT_N */
MX53_PAD_PATA_DATA13__GPIO2_13 0x0
/* ECG_MARKER_IN_FROM_DOCKING_CONNECTOR_IRQ */
MX53_PAD_PATA_DATA14__GPIO2_14 0x0
/* ENABLE_ECG_MARKER_INTERFACE_TO_DOCKING_CONNECTOR */
MX53_PAD_PATA_DATA15__GPIO2_15 0x0
/* RESET_IMX535_ETHERNET_PHY_N */
MX53_PAD_EIM_A22__GPIO2_16 0x0
/* ENABLE_PWR_TO_LCD_AND_UI_INTERFACE */
MX53_PAD_EIM_A21__GPIO2_17 0x0
/* RESET_I2C1_BUS_SEGMENT_MUX_N */
MX53_PAD_EIM_A20__GPIO2_18 0x0
/* RESET_IMX535_USB_HOST3_PHY_N */
MX53_PAD_EIM_A19__GPIO2_19 0x0
/* ESDHC3_EMMC_NAND_RST_N */
MX53_PAD_EIM_A18__GPIO2_20 0x0
/* LCD_AND_UI_INTERFACE_PWR_FAULT_N */
MX53_PAD_EIM_A17__GPIO2_21 0x0
/* POWER_DOWN_LVDS0_DESERIALIZER_N */
MX53_PAD_EIM_A16__GPIO2_22 0x0
/* POWER_DOWN_LVDS1_DESERIALIZER_N */
MX53_PAD_EIM_LBA__GPIO2_27 0x0
/* RESET_DP0_TRANSMITTER_N */
MX53_PAD_EIM_EB0__GPIO2_28 0x0
/* RESET_DP1_TRANSMITTER_N */
MX53_PAD_EIM_EB1__GPIO2_29 0x0
/* ENABLE_SPDIF_AUDIO_TO_DP0 */
MX53_PAD_EIM_DA0__GPIO3_0 0x0
/* ENABLE_SPDIF_AUDIO_TO_DP1 */
MX53_PAD_EIM_DA1__GPIO3_1 0x0
/* LVDS1_MUX_CTRL */
MX53_PAD_EIM_DA2__GPIO3_2 0x0
/* LVDS0_MUX_CTRL */
MX53_PAD_EIM_DA3__GPIO3_3 0x0
/* DP1_TRANSMITTER_IRQ */
MX53_PAD_EIM_DA4__GPIO3_4 0x0
/* DP0_TRANSMITTER_IRQ */
MX53_PAD_EIM_DA5__GPIO3_5 0x0
/* USB_RESET_N */
MX53_PAD_EIM_DA6__GPIO3_6 0x0
/* ENABLE_BATTERY_CHARGER */
MX53_PAD_EIM_DA7__GPIO3_7 0x0
/* SOFTWARE_CONTROLLED_PWR_CYCLE */
MX53_PAD_EIM_DA8__GPIO3_8 0x0
/* SOFTWARE_CONTROLLED_POWERDOWN */
MX53_PAD_EIM_DA9__GPIO3_9 0x0
/* DC_PWR_IN_OK */
MX53_PAD_EIM_DA10__GPIO3_10 0x0
/* BATT_PRESENT_N */
MX53_PAD_EIM_DA11__GPIO3_11 0xe4
/* PMIC_IRQ_N */
MX53_PAD_EIM_DA12__GPIO3_12 0x0
/* PMIC_VDD_FAULT_STATUS_N */
MX53_PAD_EIM_DA13__GPIO3_13 0x0
/* IMX535_ETHERNET_PHY_STATUS_IRQ_N */
MX53_PAD_EIM_DA14__GPIO3_14 0x0
/* NOT USED - AVAILABLE 3.3V GPIO */
MX53_PAD_EIM_DA15__GPIO3_15 0x0
/* NOT USED - AVAILABLE 3.3V GPIO */
MX53_PAD_EIM_D22__GPIO3_22 0x0
/* NOT USED - AVAILABLE 3.3V GPIO */
MX53_PAD_EIM_D24__GPIO3_24 0x0
/* NBP_PUMP_VALVE_PWR_ENABLE */
MX53_PAD_EIM_D25__GPIO3_25 0x0
/* NIBP_RESET_N */
MX53_PAD_EIM_D26__GPIO3_26 0x0
/* LATCHED_OVERPRESSURE_N */
MX53_PAD_EIM_D27__GPIO3_27 0x0
/* NBP_SBWTCLK */
MX53_PAD_EIM_D29__GPIO3_29 0x0
/* ENABLE_WIFI_MODULE */
MX53_PAD_GPIO_11__GPIO4_1 0x400
/* WIFI_MODULE_IRQ_N */
MX53_PAD_GPIO_12__GPIO4_2 0x400
/* ENABLE_BLUETOOTH_MODULE */
MX53_PAD_GPIO_13__GPIO4_3 0x400
/* RESET_IMX535_USB_HOST2_PHY_N */
MX53_PAD_GPIO_14__GPIO4_4 0x400
/* ONKEY_IS_DEPRESSED */
MX53_PAD_KEY_ROW3__GPIO4_13 0x0
/* UNUSED_GPIO_TO_ALARM_LIGHT_BOARD */
MX53_PAD_EIM_WAIT__GPIO5_0 0x0
/* DISPLAY_LOCK_BUTTON_IS_DEPRESSED_N */
MX53_PAD_EIM_A25__GPIO5_2 0x0
/* I2C_PCAP_TOUCHSCREEN_IRQ_N */
MX53_PAD_EIM_A24__GPIO5_4 0x0
/* NOT USED - AVAILABLE 1.8V GPIO */
MX53_PAD_DISP0_DAT13__GPIO5_7 0x400
/* NOT USED - AVAILABLE 1.8V GPIO */
MX53_PAD_DISP0_DAT14__GPIO5_8 0x400
/* NOT USED - AVAILABLE 1.8V GPIO */
MX53_PAD_DISP0_DAT15__GPIO5_9 0x400
/* HOST_CONTROLLED_RESET_TO_LCD_N */
MX53_PAD_CSI0_PIXCLK__GPIO5_18 0x0
/* HOST_CONTROLLED_RESET_TO_PCAP_N */
MX53_PAD_CSI0_MCLK__GPIO5_19 0x0
/* LR_SCAN_CTRL */
MX53_PAD_CSI0_DATA_EN__GPIO5_20 0x0
/* UD_SCAN_CTRL */
MX53_PAD_CSI0_VSYNC__GPIO5_21 0x0
/* DATA_WIDTH_CTRL */
MX53_PAD_CSI0_DAT10__GPIO5_28 0x0
/* BACKLIGHT_ENABLE */
MX53_PAD_CSI0_DAT11__GPIO5_29 0x0
/* MED_USB_PORT_1_HOST_SELECT */
MX53_PAD_EIM_A23__GPIO6_6 0x0
/* MED_USB_PORT_2_HOST_SELECT */
MX53_PAD_NANDF_CLE__GPIO6_7 0x0
/* MED_USB_PORT_3_HOST_SELECT */
MX53_PAD_NANDF_ALE__GPIO6_8 0x0
/* MED_USB_PORT_4_HOST_SELECT */
MX53_PAD_NANDF_WP_B__GPIO6_9 0x0
/* MED_USB_PORT_5_HOST_SELECT */
MX53_PAD_NANDF_RB0__GPIO6_10 0x0
/* MED_USB_PORT_6_HOST_SELECT */
MX53_PAD_NANDF_CS0__GPIO6_11 0x0
/* MED_USB_PORT_7_HOST_SELECT */
MX53_PAD_NANDF_WE_B__GPIO6_12 0x0
/* MED_USB_PORT_8_HOST_SELECT */
MX53_PAD_NANDF_RE_B__GPIO6_13 0x0
/* MED_USB_PORT_TO_IMX_SELECT_0 */
MX53_PAD_NANDF_CS1__GPIO6_14 0x0
/* MED_USB_PORT_TO_IMX_SELECT_1 */
MX53_PAD_NANDF_CS2__GPIO6_15 0x0
/* MED_USB_PORT_TO_IMX_SELECT_2 */
MX53_PAD_NANDF_CS3__GPIO6_16 0x0
/* POWER_AND_BOOT_STATUS_INDICATOR */
MX53_PAD_PATA_INTRQ__GPIO7_2 0x1e4
/* RUNNING_ON_BATTERY_INDICATOR_GREEN */
MX53_PAD_GPIO_16__GPIO7_11 0x0
/* BATTERY_STATUS_INDICATOR_AMBER */
MX53_PAD_GPIO_17__GPIO7_12 0x0
>;
};
pinctrl_i2c1: i2c1grp {
fsl,pins = <
MX53_PAD_EIM_D21__I2C1_SCL 0x400001e4
MX53_PAD_EIM_D28__I2C1_SDA 0x400001e4
>;
};
pinctrl_i2c1_gpio: i2c1gpiogrp {
fsl,pins = <
MX53_PAD_EIM_D28__GPIO3_28 0x1e4
MX53_PAD_EIM_D21__GPIO3_21 0x1e4
>;
};
pinctrl_i2c2: i2c2grp {
fsl,pins = <
MX53_PAD_EIM_EB2__I2C2_SCL 0x400001e4
MX53_PAD_EIM_D16__I2C2_SDA 0x400001e4
>;
};
pinctrl_i2c2_gpio: i2c2gpiogrp {
fsl,pins = <
MX53_PAD_EIM_D16__GPIO3_16 0x1e4
MX53_PAD_EIM_EB2__GPIO2_30 0x1e4
>;
};
pinctrl_i2c3: i2c3grp {
fsl,pins = <
MX53_PAD_EIM_D17__I2C3_SCL 0x400001e4
MX53_PAD_EIM_D18__I2C3_SDA 0x400001e4
>;
};
pinctrl_i2c3_gpio: i2c3gpiogrp {
fsl,pins = <
MX53_PAD_EIM_D18__GPIO3_18 0x1e4
MX53_PAD_EIM_D17__GPIO3_17 0x1e4
>;
};
pinctrl_pwm1: pwm1grp {
fsl,pins = <
MX53_PAD_GPIO_9__PWM1_PWMO 0x5
>;
};
pinctrl_pwm2: pwm2grp {
fsl,pins = <
MX53_PAD_DISP0_DAT9__PWM2_PWMO 0x5
>;
};
pinctrl_uart1: uart1grp {
fsl,pins = <
MX53_PAD_PATA_DIOW__UART1_TXD_MUX 0x1e4
MX53_PAD_PATA_DMACK__UART1_RXD_MUX 0x1e4
>;
};
pinctrl_uart2: uart2grp {
fsl,pins = <
MX53_PAD_PATA_DMARQ__UART2_TXD_MUX 0x1e4
MX53_PAD_PATA_BUFFER_EN__UART2_RXD_MUX 0x1e4
>;
};
pinctrl_uart3: uart3grp {
fsl,pins = <
MX53_PAD_PATA_CS_0__UART3_TXD_MUX 0x1e4
MX53_PAD_PATA_CS_1__UART3_RXD_MUX 0x1e4
MX53_PAD_EIM_D23__UART3_CTS 0x1e4
MX53_PAD_EIM_EB3__UART3_RTS 0x1e4
>;
};
pinctrl_uart4: uart4grp {
fsl,pins = <
MX53_PAD_KEY_COL0__UART4_TXD_MUX 0x1e4
MX53_PAD_KEY_ROW0__UART4_RXD_MUX 0x1e4
>;
};
pinctrl_uart5: uart5grp {
fsl,pins = <
MX53_PAD_KEY_COL1__UART5_TXD_MUX 0x1e4
MX53_PAD_KEY_ROW1__UART5_RXD_MUX 0x1e4
>;
};
pinctrl_usb_otg_vbus: usb-otg-vbusgrp {
fsl,pins = <
/* USB_HS_OTG_VBUS_ENABLE */
MX53_PAD_KEY_ROW4__GPIO4_15 0x1c4
>;
};
pinctrl_usbh2: usbh2grp {
fsl,pins = <
/* USB H2 */
MX53_PAD_DISP0_DAT0__USBOH3_USBH2_DATA_0 0x180
MX53_PAD_DISP0_DAT1__USBOH3_USBH2_DATA_1 0x180
MX53_PAD_DISP0_DAT2__USBOH3_USBH2_DATA_2 0x180
MX53_PAD_DISP0_DAT3__USBOH3_USBH2_DATA_3 0x180
MX53_PAD_DISP0_DAT4__USBOH3_USBH2_DATA_4 0x180
MX53_PAD_DISP0_DAT5__USBOH3_USBH2_DATA_5 0x180
MX53_PAD_DISP0_DAT6__USBOH3_USBH2_DATA_6 0x180
MX53_PAD_DISP0_DAT7__USBOH3_USBH2_DATA_7 0x180
MX53_PAD_DISP0_DAT10__USBOH3_USBH2_STP 0x180
MX53_PAD_DISP0_DAT11__USBOH3_USBH2_NXT 0x180
MX53_PAD_DISP0_DAT12__USBOH3_USBH2_CLK 0x180
MX53_PAD_DI0_DISP_CLK__USBOH3_USBH2_DIR 0x5
MX53_PAD_EIM_D30__USBOH3_USBH2_OC 0x180
>;
};
pinctrl_usbh2_vbus: usbh2-vbusgrp {
fsl,pins = <
/* USB_HS_HOST2_VBUS_ENABLE */
MX53_PAD_EIM_D31__GPIO3_31 0x0
>;
};
pinctrl_usbh3_vbus: usbh3-vbusgrp {
fsl,pins = <
/* USB_HS_HOST3_VBUS_ENABLE */
MX53_PAD_CSI0_DAT9__GPIO5_27 0x0
>;
};
pinctrl_usbh3: usbh3grp {
fsl,pins = <
/* USB H3 */
MX53_PAD_CSI0_DAT12__USBOH3_USBH3_DATA_0 0x180
MX53_PAD_CSI0_DAT13__USBOH3_USBH3_DATA_1 0x180
MX53_PAD_CSI0_DAT14__USBOH3_USBH3_DATA_2 0x180
MX53_PAD_CSI0_DAT15__USBOH3_USBH3_DATA_3 0x180
MX53_PAD_CSI0_DAT16__USBOH3_USBH3_DATA_4 0x180
MX53_PAD_CSI0_DAT17__USBOH3_USBH3_DATA_5 0x180
MX53_PAD_CSI0_DAT18__USBOH3_USBH3_DATA_6 0x180
MX53_PAD_CSI0_DAT19__USBOH3_USBH3_DATA_7 0x180
MX53_PAD_CSI0_DAT7__USBOH3_USBH3_DIR 0x5
MX53_PAD_CSI0_DAT6__USBOH3_USBH3_CLK 0x180
MX53_PAD_CSI0_DAT5__USBOH3_USBH3_NXT 0x180
MX53_PAD_CSI0_DAT4__USBOH3_USBH3_STP 0x180
MX53_PAD_CSI0_DAT8__USBOH3_USBH3_OC 0x180
>;
};
pinctrl_usb_otg: usbotggrp {
fsl,pins = <
/* USB_OTG_FAULT_N */
MX53_PAD_KEY_COL4__USBOH3_USBOTG_OC 0x180
>;
};
pinctrl_alarmled_pins: qmx6alarmledgrp {
fsl,pins = <
/* ACTIVATE_ALARM_LIGHT_RED */
MX53_PAD_PATA_DIOR__GPIO7_3 0x0
/* ACTIVATE_ALARM_LIGHT_YELLOW */
MX53_PAD_PATA_DA_1__GPIO7_7 0x0
/* ACTIVATE_ALARM_LIGHT_CYAN */
MX53_PAD_PATA_DA_2__GPIO7_8 0x0
/* AUDIO_ALARMS_SILENCED_INDICATOR */
MX53_PAD_GPIO_18__GPIO7_13 0x0
>;
};
};