zephyr/dts/arm/silabs/efr32mg.dtsi
Diego Sueiro 537798db0d soc: arm: exx32: Add Silabs EFR32MG12P soc files
The Silicon Labs EFR32MG12P Mighty Gecko MCU includes:
* Cortex-M4F core at 40MHz
* up to 1024KB of flash and 256KB of RAM
* integrated Sub-GHz and/or 2.4GHz radio
* multiple low power peripherals

Signed-off-by: Diego Sueiro <diego.sueiro@gmail.com>
Signed-off-by: Endre Karlson <endre.karslon@gmail.com>
2018-10-19 13:47:49 -05:00

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3.2 KiB
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#include <arm/armv7-m.dtsi>
#include <dt-bindings/gpio/gpio.h>
#include <dt-bindings/i2c/i2c.h>
/ {
cpus {
#address-cells = <1>;
#size-cells = <0>;
cpu@0 {
compatible = "arm,cortex-m4f";
reg = <0>;
};
};
flash0: flash@0 {
compatible = "soc-nv-flash";
label = "FLASH_0";
};
sram0: memory@20000000 {
device_type = "memory";
compatible = "mmio-sram";
};
soc {
usart0: usart@40010000 { /* USART0 */
compatible = "silabs,gecko-usart";
reg = <0x40010000 0x400>;
interrupts = <12 0>, <13 0>;
interrupt-names = "rx", "tx";
status = "disabled";
label = "USART_0";
};
usart1: usart@40010400 { /* USART1 */
compatible = "silabs,gecko-usart";
reg = <0x40010400 0x400>;
interrupts = <20 0>, <21 0>;
interrupt-names = "rx", "tx";
status = "disabled";
label = "USART_1";
};
usart2: usart@40010800 { /* USART2 */
compatible = "silabs,gecko-usart";
reg = <0x40010800 0x400>;
interrupts = <40 0>, <41 0>;
interrupt-names = "rx", "tx";
status = "disabled";
label = "USART_2";
};
usart3: usart@40010C00 { /* USART3 */
compatible = "silabs,gecko-usart";
reg = <0x40010C00 0x400>;
interrupts = <43 0>, <44 0>;
interrupt-names = "rx", "tx";
status = "disabled";
label = "USART_3";
};
leuart0: leuart@4004A000 { /* LEUART0 */
compatible = "silabs,gecko-leuart";
reg = <0x4004A000 0x400>;
interrupts = <22 0>;
status = "disabled";
label = "LEUART_0";
};
i2c0: i2c@4000C000 {
compatible = "silabs,gecko-i2c";
clock-frequency = <I2C_BITRATE_STANDARD>;
#address-cells = <1>;
#size-cells = <0>;
reg = <0x4000C000 0x400>;
interrupts = <17 0>;
label = "I2C_0";
status = "disabled";
};
i2c1: i2c@4000C400 {
compatible = "silabs,gecko-i2c";
clock-frequency = <I2C_BITRATE_STANDARD>;
#address-cells = <1>;
#size-cells = <0>;
reg = <0x4000C400 0x400>;
interrupts = <42 0>;
label = "I2C_1";
status = "disabled";
};
gpio@4000a400 {
compatible = "silabs,efr32mg-gpio";
reg = <0x4000a400 0xc00>;
interrupts = <9 2 17 2>;
interrupt-names = "GPIO_EVEN", "GPIO_ODD";
label = "GPIO";
ranges;
#address-cells = <1>;
#size-cells = <1>;
gpioa: gpio@4000a000 {
compatible = "silabs,efr32mg-gpio-port";
reg = <0x4000a000 0x30>;
label = "GPIO_A";
gpio-controller;
#gpio-cells = <2>;
};
gpiob: gpio@4000a030 {
compatible = "silabs,efr32mg-gpio-port";
reg = <0x4000a030 0x30>;
label = "GPIO_B";
gpio-controller;
#gpio-cells = <2>;
};
gpioc: gpio@4000a060 {
compatible = "silabs,efr32mg-gpio-port";
reg = <0x4000a060 0x30>;
label = "GPIO_C";
gpio-controller;
#gpio-cells = <2>;
};
gpiod: gpio@4000a090 {
compatible = "silabs,efr32mg-gpio-port";
reg = <0x4000a090 0x30>;
label = "GPIO_D";
gpio-controller;
#gpio-cells = <2>;
};
gpioe: gpio@4000a0c0 {
compatible = "silabs,efr32mg-gpio-port";
reg = <0x4000a0c0 0x30>;
label = "GPIO_E";
gpio-controller;
#gpio-cells = <2>;
};
gpiof: gpio@4000a0f0 {
compatible = "silabs,efr32mg-gpio-port";
reg = <0x4000af0 0x30>;
label = "GPIO_F";
gpio-controller;
#gpio-cells = <2>;
};
};
};
};
&nvic {
arm,num-irq-priority-bits = <3>;
};