zephyr/boards/st/stm32g071b_disco/stm32g071b_disco.dts

190 lines
4.2 KiB
Plaintext

/*
* Copyright 2021 The Chromium OS Authors
*
* SPDX-License-Identifier: Apache-2.0
*/
/dts-v1/;
#include <st/g0/stm32g071Xb.dtsi>
#include <st/g0/stm32g071r(6-8-b)tx-pinctrl.dtsi>
#include <zephyr/dt-bindings/sensor/ina230.h>
#include <zephyr/dt-bindings/input/input-event-codes.h>
/ {
model = "STM32G071B DEMO board";
compatible = "st,stm32g071-demo";
chosen {
zephyr,console = &usart3;
zephyr,shell-uart = &usart3;
zephyr,sram = &sram0;
zephyr,flash = &flash0;
};
leds {
compatible = "gpio-leds";
red_led_4: led4 {
gpios = <&gpiod 9 GPIO_ACTIVE_HIGH>;
label = "TO_REC";
};
red_led_5: led5 {
gpios = <&gpiod 8 GPIO_ACTIVE_HIGH>;
label = "TO_PLUG";
};
green_led_6: led6 {
gpios = <&gpiod 5 GPIO_ACTIVE_HIGH>;
label = "SINK_SPY";
};
green_led_7: led7 {
gpios = <&gpioc 12 GPIO_ACTIVE_HIGH>;
label = "SOURCE";
};
};
gpio_keys {
compatible = "gpio-keys";
joy_sel: button0 {
label = "JOY_SEL";
gpios = <&gpioc 0 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>;
zephyr,code = <INPUT_KEY_ENTER>;
};
joy_left: button1 {
label = "JOY_LEFT";
gpios = <&gpioc 1 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>;
zephyr,code = <INPUT_KEY_LEFT>;
};
joy_down: button2 {
label = "JOY_DOWN";
gpios = <&gpioc 2 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>;
zephyr,code = <INPUT_KEY_DOWN>;
};
joy_right: button3 {
label = "JOY_RIGHT";
gpios = <&gpioc 3 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>;
zephyr,code = <INPUT_KEY_RIGHT>;
};
joy_up: button4 {
label = "JOY_UP";
gpios = <&gpioc 4 (GPIO_ACTIVE_HIGH | GPIO_PULL_DOWN)>;
zephyr,code = <INPUT_KEY_UP>;
};
};
cc_config {
compatible = "gpio-leds";
encc1 {
gpios = <&gpiob 10 GPIO_ACTIVE_HIGH>;
label = "ENCC1";
};
encc2 {
gpios = <&gpiob 11 GPIO_ACTIVE_HIGH>;
label = "ENCC2";
};
rdcc1 {
gpios = <&gpiob 12 GPIO_ACTIVE_LOW>;
label = "RDCC1";
};
};
aliases {
led0 = &red_led_4;
led1 = &red_led_5;
led2 = &green_led_6;
led3 = &green_led_7;
sw0 = &joy_sel;
sw1 = &joy_left;
sw2 = &joy_down;
sw3 = &joy_right;
sw4 = &joy_up;
watchdog0 = &iwdg;
};
};
&clk_hsi {
status = "okay";
};
&pll {
div-m = <1>;
mul-n = <8>;
div-p = <2>;
div-q = <2>;
div-r = <2>;
clocks = <&clk_hsi>;
status = "okay";
};
&rcc {
clocks = <&pll>;
clock-frequency = <DT_FREQ_M(64)>;
ahb-prescaler = <1>;
apb1-prescaler = <1>;
};
&usart3 {
pinctrl-0 = <&usart3_tx_pc10 &usart3_rx_pc11>;
pinctrl-names = "default";
current-speed = <115200>;
status = "okay";
};
&i2c1 {
status = "okay";
pinctrl-0 = <&i2c1_scl_pb6 &i2c1_sda_pb7>;
pinctrl-names = "default";
status = "okay";
clock-frequency = <I2C_BITRATE_FAST>;
/*
* Use U10, INA230 to measure VBUS. I2C Address: 0x40
*/
vbus_meas: ina230@40 {
status = "okay";
compatible = "ti,ina230";
reg = <0x40>;
adc-mode = "Bus voltage continuous";
vbus-conversion-time-us = <1100>;
vshunt-conversion-time-us = <1100>;
avg-count = <1>;
current-lsb-microamps = <1000>;
rshunt-micro-ohms = <15000>;
};
};
&ucpd1 {
status = "okay";
/*
* UCPD is fed directly from HSI which is @ 16MHz. The ucpd_clk goes to
* a prescaler who's output feeds the 'half-bit' divider which is used
* to generate clock for delay counters and BMC Rx/Tx blocks. The rx is
* designed to work in freq ranges of 6 <--> 18 MHz, however recommended
* range is 9 <--> 18 MHz.
*
* +-------+ @ 16 MHz +-------+ @ ~600 kHz +-----------+
* HSI ---->| /psc |--------->| /hbit |--------------->| trans_cnt |
* +-------+ +-------+ | +-----------+
* | +-----------+
* +----------->| ifrgap_cnt|
* +-----------+
* Requirements:
* 1. hbit_clk ~= 600 kHz: 16 MHz / 600 kHz = 26.67
* 2. tTransitionWindow - 12 to 20 uSec
* 3. tInterframGap - uSec
*
* hbit_clk = HSI_clk / 27 = 592.6 kHz = 1.687 uSec period
* tTransitionWindow = 1.687 uS * 8 = 13.5 uS
* tInterFrameGap = 1.687 uS * 17 = 28.68 uS
*/
psc-ucpdclk = <1>;
hbitclkdiv = <27>;
pinctrl-0 = <&ucpd1_cc1_pa8 &ucpd1_cc2_pb15>;
pinctrl-names = "default";
};
&iwdg {
status = "okay";
};