arm64: dts: imx8mp: Add Engicam i.Core MX8M Plus SoM

i.Core MX8M Plus is an EDIMM SoM based on NXP i.MX8M Plus
from Engicam.

General features:
- NXP i.MX8M Plus
- Up to 4GB LDDR4
- 8 eMMC
- Gigabit Ethernet
- USB 3.0, 2.0 Host/OTG
- PCIe 3.0 interface
- I2S
- LVDS
- rest of i.MX8M Plus features

i.Core MX8M Plus needs to mount on top of Engicam baseboards
for creating complete platform solutions.

Add support for it.

Sync the i.Core MX8M Plus is an EDIMM SoM based on NXP i.MX8M Plus
from Engicam devicetree file from linux-next tree.
commit <eefe06b295087> (arm64: dts: imx8mp: Add Engicam i.Core MX8M Plus SoM)

Signed-off-by: Manoj Sai <abbaraju.manojsai@amarulasolutions.com>
Signed-off-by: Jagan Teki <jagan@amarulasolutions.com>
This commit is contained in:
Manoj Sai 2022-08-26 18:03:35 +05:30 committed by Stefano Babic
parent ad0ff2f7b0
commit 068782b498

View file

@ -0,0 +1,186 @@
// SPDX-License-Identifier: (GPL-2.0+ OR MIT)
/*
* Copyright (c) 2018 NXP
* Copyright (c) 2019 Engicam srl
* Copyright (c) 2020 Amarula Solutons(India)
*/
/ {
compatible = "engicam,icore-mx8mp", "fsl,imx8mp";
};
&A53_0 {
cpu-supply = <&buck2>;
};
&A53_1 {
cpu-supply = <&buck2>;
};
&A53_2 {
cpu-supply = <&buck2>;
};
&A53_3 {
cpu-supply = <&buck2>;
};
&i2c1 {
clock-frequency = <100000>;
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_i2c1>;
status = "okay";
pca9450: pmic@25 {
compatible = "nxp,pca9450c";
interrupt-parent = <&gpio3>;
interrupts = <1 IRQ_TYPE_LEVEL_LOW>;
pinctrl-names = "default";
pinctrl-0 = <&pinctrl_pmic>;
reg = <0x25>;
regulators {
buck1: BUCK1 {
regulator-always-on;
regulator-boot-on;
regulator-min-microvolt = <720000>;
regulator-max-microvolt = <1000000>;
regulator-name = "BUCK1";
regulator-ramp-delay = <3125>;
};
buck2: BUCK2 {
nxp,dvs-run-voltage = <950000>;
nxp,dvs-standby-voltage = <850000>;
regulator-always-on;
regulator-boot-on;
regulator-max-microvolt = <1025000>;
regulator-min-microvolt = <720000>;
regulator-name = "BUCK2";
regulator-ramp-delay = <3125>;
};
buck4: BUCK4 {
regulator-always-on;
regulator-boot-on;
regulator-max-microvolt = <3600000>;
regulator-min-microvolt = <3000000>;
regulator-name = "BUCK4";
};
buck5: BUCK5 {
regulator-always-on;
regulator-boot-on;
regulator-max-microvolt = <1950000>;
regulator-min-microvolt = <1650000>;
regulator-name = "BUCK5";
};
buck6: BUCK6 {
regulator-always-on;
regulator-boot-on;
regulator-max-microvolt = <1155000>;
regulator-min-microvolt = <1045000>;
regulator-name = "BUCK6";
};
ldo1: LDO1 {
regulator-always-on;
regulator-boot-on;
regulator-max-microvolt = <1950000>;
regulator-min-microvolt = <1650000>;
regulator-name = "LDO1";
};
ldo3: LDO3 {
regulator-always-on;
regulator-boot-on;
regulator-max-microvolt = <1890000>;
regulator-min-microvolt = <1710000>;
regulator-name = "LDO3";
};
ldo5: LDO5 {
regulator-always-on;
regulator-boot-on;
regulator-max-microvolt = <3300000>;
regulator-min-microvolt = <1800000>;
regulator-name = "LDO5";
};
};
};
};
/* EMMC */
&usdhc3 {
bus-width = <8>;
non-removable;
pinctrl-names = "default", "state_100mhz", "state_200mhz";
pinctrl-0 = <&pinctrl_usdhc3>;
pinctrl-1 = <&pinctrl_usdhc3_100mhz>;
pinctrl-2 = <&pinctrl_usdhc3_200mhz>;
status = "okay";
};
&iomuxc {
pinctrl_i2c1: i2c1grp {
fsl,pins = <
MX8MP_IOMUXC_I2C1_SCL__I2C1_SCL 0x400001c3
MX8MP_IOMUXC_I2C1_SDA__I2C1_SDA 0x400001c3
>;
};
pinctrl_pmic: pmicgrp {
fsl,pins = <
MX8MP_IOMUXC_NAND_CE0_B__GPIO3_IO01 0x41
>;
};
pinctrl_usdhc3: usdhc3grp {
fsl,pins = <
MX8MP_IOMUXC_NAND_WE_B__USDHC3_CLK 0x190
MX8MP_IOMUXC_NAND_WP_B__USDHC3_CMD 0x1d0
MX8MP_IOMUXC_NAND_DATA04__USDHC3_DATA0 0x1d0
MX8MP_IOMUXC_NAND_DATA05__USDHC3_DATA1 0x1d0
MX8MP_IOMUXC_NAND_DATA06__USDHC3_DATA2 0x1d0
MX8MP_IOMUXC_NAND_DATA07__USDHC3_DATA3 0x1d0
MX8MP_IOMUXC_NAND_RE_B__USDHC3_DATA4 0x1d0
MX8MP_IOMUXC_NAND_CE2_B__USDHC3_DATA5 0x1d0
MX8MP_IOMUXC_NAND_CE3_B__USDHC3_DATA6 0x1d0
MX8MP_IOMUXC_NAND_CLE__USDHC3_DATA7 0x1d0
MX8MP_IOMUXC_NAND_CE1_B__USDHC3_STROBE 0x190
>;
};
pinctrl_usdhc3_100mhz: usdhc3-100mhzgrp {
fsl,pins = <
MX8MP_IOMUXC_NAND_WE_B__USDHC3_CLK 0x194
MX8MP_IOMUXC_NAND_WP_B__USDHC3_CMD 0x1d4
MX8MP_IOMUXC_NAND_DATA04__USDHC3_DATA0 0x1d4
MX8MP_IOMUXC_NAND_DATA05__USDHC3_DATA1 0x1d4
MX8MP_IOMUXC_NAND_DATA06__USDHC3_DATA2 0x1d4
MX8MP_IOMUXC_NAND_DATA07__USDHC3_DATA3 0x1d4
MX8MP_IOMUXC_NAND_RE_B__USDHC3_DATA4 0x1d4
MX8MP_IOMUXC_NAND_CE2_B__USDHC3_DATA5 0x1d4
MX8MP_IOMUXC_NAND_CE3_B__USDHC3_DATA6 0x1d4
MX8MP_IOMUXC_NAND_CLE__USDHC3_DATA7 0x1d4
MX8MP_IOMUXC_NAND_CE1_B__USDHC3_STROBE 0x194
>;
};
pinctrl_usdhc3_200mhz: usdhc3-200mhzgrp {
fsl,pins = <
MX8MP_IOMUXC_NAND_WE_B__USDHC3_CLK 0x196
MX8MP_IOMUXC_NAND_WP_B__USDHC3_CMD 0x1d6
MX8MP_IOMUXC_NAND_DATA04__USDHC3_DATA0 0x1d6
MX8MP_IOMUXC_NAND_DATA05__USDHC3_DATA1 0x1d6
MX8MP_IOMUXC_NAND_DATA06__USDHC3_DATA2 0x1d6
MX8MP_IOMUXC_NAND_DATA07__USDHC3_DATA3 0x1d6
MX8MP_IOMUXC_NAND_RE_B__USDHC3_DATA4 0x1d6
MX8MP_IOMUXC_NAND_CE2_B__USDHC3_DATA5 0x1d6
MX8MP_IOMUXC_NAND_CE3_B__USDHC3_DATA6 0x1d6
MX8MP_IOMUXC_NAND_CLE__USDHC3_DATA7 0x1d6
MX8MP_IOMUXC_NAND_CE1_B__USDHC3_STROBE 0x196
>;
};
};