379 lines
11 KiB
YAML
379 lines
11 KiB
YAML
# SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause)
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# Copyright (C) 2019 Renesas Electronics Corp.
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%YAML 1.2
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---
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$id: http://devicetree.org/schemas/media/i2c/maxim,max9286.yaml#
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$schema: http://devicetree.org/meta-schemas/core.yaml#
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title: Maxim Integrated Quad GMSL Deserializer
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maintainers:
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- Jacopo Mondi <jacopo+renesas@jmondi.org>
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- Kieran Bingham <kieran.bingham+renesas@ideasonboard.com>
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- Laurent Pinchart <laurent.pinchart+renesas@ideasonboard.com>
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- Niklas Söderlund <niklas.soderlund+renesas@ragnatech.se>
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description: |
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The MAX9286 deserializer receives video data on up to 4 Gigabit Multimedia
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Serial Links (GMSL) and outputs them on a CSI-2 D-PHY port using up to 4 data
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lanes.
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In addition to video data, the GMSL links carry a bidirectional control
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channel that encapsulates I2C messages. The MAX9286 forwards all I2C traffic
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not addressed to itself to the other side of the links, where a GMSL
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serializer will output it on a local I2C bus. In the other direction all I2C
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traffic received over GMSL by the MAX9286 is output on the local I2C bus.
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properties:
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'#address-cells':
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const: 1
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'#size-cells':
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const: 0
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compatible:
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const: maxim,max9286
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reg:
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description: I2C device address
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maxItems: 1
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poc-supply:
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description: Regulator providing Power over Coax to the cameras
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enable-gpios:
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description: GPIO connected to the \#PWDN pin with inverted polarity
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maxItems: 1
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gpio-controller: true
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'#gpio-cells':
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const: 2
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maxim,reverse-channel-microvolt:
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minimum: 30000
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maximum: 200000
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default: 170000
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description: |
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Initial amplitude of the reverse control channel, in micro volts.
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The initial amplitude shall be adjusted to a value compatible with the
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configuration of the connected remote serializer.
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Some camera modules (for example RDACM20) include an on-board MCU that
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pre-programs the embedded serializer with power supply noise immunity
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(high-threshold) enabled. A typical value of the deserializer's reverse
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channel amplitude to communicate with pre-programmed serializers is
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170000 micro volts.
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A typical value for the reverse channel amplitude to communicate with
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a remote serializer whose high-threshold noise immunity is not enabled
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is 100000 micro volts
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maxim,gpio-poc:
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$ref: '/schemas/types.yaml#/definitions/uint32-array'
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minItems: 2
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maxItems: 2
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description: |
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Index of the MAX9286 gpio output line (0 or 1) that controls Power over
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Coax to the cameras and its associated polarity flag.
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The property accepts an array of two unsigned integers, the first being
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the gpio line index (0 or 1) and the second being the gpio line polarity
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flag (GPIO_ACTIVE_HIGH or GPIO_ACTIVE_LOW) as defined in
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<include/dt-bindings/gpio/gpio.h>.
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When the remote cameras power is controlled by one of the MAX9286 gpio
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lines, this property has to be used to specify which line among the two
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available ones controls the remote camera power enablement.
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When this property is used it is not possible to register a gpio
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controller as the gpio lines are controlled directly by the MAX9286 and
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not available for consumers, nor the 'poc-supply' property should be
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specified.
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ports:
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$ref: /schemas/graph.yaml#/properties/ports
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properties:
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port@0:
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$ref: /schemas/graph.yaml#/properties/port
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description: GMSL Input 0
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port@1:
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$ref: /schemas/graph.yaml#/properties/port
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description: GMSL Input 1
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port@2:
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$ref: /schemas/graph.yaml#/properties/port
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description: GMSL Input 2
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port@3:
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$ref: /schemas/graph.yaml#/properties/port
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description: GMSL Input 3
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port@4:
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$ref: /schemas/graph.yaml#/$defs/port-base
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unevaluatedProperties: false
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description: CSI-2 Output
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properties:
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endpoint:
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$ref: /schemas/media/video-interfaces.yaml#
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unevaluatedProperties: false
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properties:
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data-lanes: true
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required:
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- data-lanes
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required:
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- port@4
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i2c-mux:
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type: object
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$ref: /schemas/i2c/i2c-mux.yaml#
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unevaluatedProperties: false
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description: |
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Each GMSL link is modelled as a child bus of an i2c bus multiplexer/switch.
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patternProperties:
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"^i2c@[0-3]$":
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type: object
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description: |
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Child node of the i2c bus multiplexer which represents a GMSL link.
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Each serializer device on the GMSL link remote end is represented with
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an i2c-mux child node. The MAX9286 chip supports up to 4 GMSL
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channels.
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properties:
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reg:
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description: The index of the GMSL channel.
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maxItems: 1
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patternProperties:
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"^camera@[a-f0-9]+$":
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type: object
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description: |
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The remote camera device, composed by a GMSL serializer and a
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connected video source.
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properties:
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compatible:
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description: The remote device compatible string.
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reg:
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minItems: 2
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maxItems: 3
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description: |
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The I2C addresses to be assigned to the remote devices through
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address reprogramming. The number of entries depends on the
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requirements of the currently connected remote device.
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port:
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$ref: /schemas/graph.yaml#/properties/port
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description: Connection to the MAX9286 sink.
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required:
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- compatible
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- reg
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- port
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additionalProperties: false
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required:
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- compatible
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- reg
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- ports
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- i2c-mux
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# If 'maxim,gpio-poc' is present, then 'poc-supply' and 'gpio-controller'
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# are not allowed.
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if:
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required:
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- maxim,gpio-poc
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then:
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properties:
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poc-supply: false
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gpio-controller: false
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additionalProperties: false
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examples:
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- |
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#include <dt-bindings/gpio/gpio.h>
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i2c@e66d8000 {
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#address-cells = <1>;
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#size-cells = <0>;
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reg = <0 0xe66d8000>;
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gmsl-deserializer@2c {
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compatible = "maxim,max9286";
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reg = <0x2c>;
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poc-supply = <&camera_poc_12v>;
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enable-gpios = <&gpio 13 GPIO_ACTIVE_HIGH>;
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gpio-controller;
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#gpio-cells = <2>;
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maxim,reverse-channel-microvolt = <170000>;
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ports {
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#address-cells = <1>;
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#size-cells = <0>;
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port@0 {
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reg = <0>;
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max9286_in0: endpoint {
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remote-endpoint = <&rdacm20_out0>;
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};
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};
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port@1 {
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reg = <1>;
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max9286_in1: endpoint {
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remote-endpoint = <&rdacm20_out1>;
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};
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};
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port@2 {
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reg = <2>;
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max9286_in2: endpoint {
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remote-endpoint = <&rdacm20_out2>;
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};
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};
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port@3 {
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reg = <3>;
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max9286_in3: endpoint {
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remote-endpoint = <&rdacm20_out3>;
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};
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};
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port@4 {
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reg = <4>;
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max9286_out: endpoint {
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data-lanes = <1 2 3 4>;
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remote-endpoint = <&csi40_in>;
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};
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};
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};
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i2c-mux {
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#address-cells = <1>;
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#size-cells = <0>;
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i2c@0 {
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#address-cells = <1>;
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#size-cells = <0>;
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reg = <0>;
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camera@51 {
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compatible = "imi,rdacm20";
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reg = <0x51>, <0x61>;
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port {
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rdacm20_out0: endpoint {
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remote-endpoint = <&max9286_in0>;
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};
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};
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};
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};
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i2c@1 {
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#address-cells = <1>;
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#size-cells = <0>;
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reg = <1>;
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camera@52 {
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compatible = "imi,rdacm20";
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reg = <0x52>, <0x62>;
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port {
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rdacm20_out1: endpoint {
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remote-endpoint = <&max9286_in1>;
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};
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};
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};
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};
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i2c@2 {
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#address-cells = <1>;
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#size-cells = <0>;
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reg = <2>;
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camera@53 {
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compatible = "imi,rdacm20";
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reg = <0x53>, <0x63>;
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port {
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rdacm20_out2: endpoint {
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remote-endpoint = <&max9286_in2>;
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};
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};
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};
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};
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i2c@3 {
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#address-cells = <1>;
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#size-cells = <0>;
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reg = <3>;
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camera@54 {
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compatible = "imi,rdacm20";
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reg = <0x54>, <0x64>;
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port {
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rdacm20_out3: endpoint {
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remote-endpoint = <&max9286_in3>;
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};
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};
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};
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};
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};
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};
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/*
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* Example of a deserializer that controls the camera Power over Coax
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* through one of its gpio lines.
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*/
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gmsl-deserializer@6c {
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compatible = "maxim,max9286";
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reg = <0x6c>;
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enable-gpios = <&gpio 14 GPIO_ACTIVE_HIGH>;
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/*
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* The remote camera power is controlled by MAX9286 GPIO line #0.
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* No 'poc-supply' nor 'gpio-controller' are specified.
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*/
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maxim,gpio-poc = <0 GPIO_ACTIVE_LOW>;
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/*
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* Do not describe connections as they're the same as in the previous
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* example.
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*/
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ports {
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#address-cells = <1>;
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#size-cells = <0>;
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port@4 {
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reg = <4>;
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};
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};
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i2c-mux {
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#address-cells = <1>;
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#size-cells = <0>;
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};
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};
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};
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