boards: renesas: Add initial support for EK-RA4E2 board

Initial commit to support Renesas EK-RA4E2 board

Signed-off-by: Quy Tran <quy.tran.pz@renesas.com>
Signed-off-by: Duy Phuong Hoang. Nguyen <duy.nguyen.xa@renesas.com>
This commit is contained in:
Quy Tran 2024-06-11 04:27:20 +00:00 committed by Anas Nashif
commit 5663c885e7
11 changed files with 325 additions and 0 deletions

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# Copyright (c) 2024 Renesas Electronics Corporation
# SPDX-License-Identifier: Apache-2.0
config BOARD_EK_RA4E2
select SOC_R7FA4E2B93CFM

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# Copyright (c) 2024 Renesas Electronics Corporation
# SPDX-License-Identifier: Apache-2.0
board_runner_args(jlink "--device=R7FA4E2B9")
include(${ZEPHYR_BASE}/boards/common/jlink.board.cmake)

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board:
name: ek_ra4e2
vendor: renesas
socs:
- name: r7fa4e2b93cfm

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.. _ek_ra4e2:
RA4E2 Evaluation Kit
####################
Overview
********
The RA4E2 Group delivers up to 100 MHz of CPU performance using an Arm® Cortex®-M33 core
with 128 KB of code flash memory, 4 KB of data flash memory, and 40 KB of SRAM. RA4E2 MCUs
offer high-performance and optimized peripheral functions along with the smallest package
options, including space-saving 36-pin BGA and 32-pin QFN packages. The RA4E2
Group offers a wide set of peripherals, including USB Full Speed, CANFD, I3C, and ADC.
The MCU in this series incorporates a high-performance Arm Cortex®-M33 core running up to
100 MHz with the following features:
**MCU Native Pin Access**
- R7FA4E2B93CFM MCU (referred to as RA MCU)
- 100 MHz, Arm® Cortex®-M33 core
- 128 kB Code Flash, 40 kB SRAM
- 64 pins, LQFP package
- Native pin access through 2 x 14-pin and 1 x 40-pin male headers
- MCU current measurement points for precision current consumption measurement
- Multiple clock sources - RA MCU oscillator and sub-clock oscillator crystals, providing precision
20.000 MHz and 32,768 Hz reference clock. Additional low-precision clocks are available internal to the
RA MCU
**System Control and Ecosystem Access**
- USB Full Speed Device (micro-AB connector)
- Three 5 V input sources
- USB (Debug, Full Speed)
- External power supply (using surface mount clamp test points and J31 through holes)
- Three Debug modes
- Debug on-board (SWD)
- Debug in (SWD)
- Debug out (JTAG, SWD)
- User LEDs and buttons
- Three User LEDs (red, blue, green)
- Power LED (white) indicating availability of regulated power
- Debug LED (yellow) indicating the debug connection
- Two User buttons
- One Reset button
- Five most popular ecosystems expansions
- 2 Seeed Grove® system (I3C/Analog) connectors
- SparkFun® Qwiic® connector
- 2 Digilent PmodTM (SPI and UART) connectors
- ArduinoTM (Uno R3) connector
- MikroElektronikaTM mikroBUS connector
- MCU boot configuration jumper
**Special Feature Access**
- CAN FD (3-pin header)
.. figure:: ek-ra4e2-board.webp
:align: center
:alt: RA4E2 Evaluation Kit
EK-RA4E2 Board Functional Area Definitions (Credit: Renesas Electronics Corporation)
Hardware
********
Detail Hardware feature for the RA4E2 MCU group can be found at `RA4E2 Group User's Manual Hardware`_
.. figure:: ra4e2-block-diagram.webp
:width: 442px
:align: center
:alt: RA4E2 MCU group feature
RA4E2 Block diagram (Credit: Renesas Electronics Corporation)
Detail Hardware feature for the EK-RA4E2 MCU can be found at `EK-RA4E2 - User's Manual`_
Supported Features
==================
The below features are currently supported on Zephyr OS for EK-RA4E2 board:
+-----------+------------+----------------------+
| Interface | Controller | Driver/Component |
+===========+============+======================+
| GPIO | on-chip | gpio |
+-----------+------------+----------------------+
| MPU | on-chip | arch/arm |
+-----------+------------+----------------------+
| NVIC | on-chip | arch/arm |
+-----------+------------+----------------------+
| UART | on-chip | serial |
+-----------+------------+----------------------+
Other hardware features are currently not supported by the port.
Programming and Debugging
*************************
Applications for the ``ek_ra4e2`` board target configuration can be
built, flashed, and debugged in the usual way. See
:ref:`build_an_application` and :ref:`application_run` for more details on
building and running.
Flashing
========
Program can be flashed to EK-RA4E2 via the on-board SEGGER J-Link debugger.
SEGGER J-link's drivers are avaialbe at https://www.segger.com/downloads/jlink/
To flash the program to board
1. Connect to J-Link OB via USB port to host PC
2. Make sure J-Link OB jumper is in default configuration as describe in `EK-RA4E2 - User's Manual`_
3. Execute west command
.. code-block:: console
west flash -r jlink
Debugging
=========
You can use Segger Ozone (`Segger Ozone Download`_) for a visual debug interface
Once downloaded and installed, open Segger Ozone and configure the debug project
like so:
* Target Device: R7FA4E2B9
* Target Interface: SWD
* Target Interface Speed: 4 MHz
* Host Interface: USB
* Program File: <path/to/your/build/zephyr.elf>
**Note:** It's verified that we can debug OK on Segger Ozone v3.30d so please use this or later
version of Segger Ozone
References
**********
- `EK-RA4E2 Website`_
- `RA4E2 MCU group Website`_
.. _EK-RA4E2 Website:
https://www.renesas.com/us/en/products/microcontrollers-microprocessors/ra-cortex-m-mcus/ek-ra4e2-evaluation-kit-ra4e2-mcu-group
.. _RA4E2 MCU group Website:
https://www.renesas.com/us/en/products/microcontrollers-microprocessors/ra-cortex-m-mcus/ra4e2-entry-line-100mhz-arm-cortex-m33-general-purpose-microcontroller
.. _EK-RA4E2 - User's Manual:
https://www.renesas.com/us/en/document/mat/ek-ra4e2-v1-users-manual
.. _RA4E2 Group User's Manual Hardware:
https://www.renesas.com/us/en/document/mah/ra4e2-group-users-manual-hardware
.. _Segger Ozone Download:
https://www.segger.com/downloads/jlink#Ozone

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/*
* Copyright (c) 2024 Renesas Electronics Corporation
* SPDX-License-Identifier: Apache-2.0
*/
&pinctrl {
sci0_default: sci0_default {
group1 {
/* tx rx */
psels = <RA_PSEL(RA_PSEL_SCI_0, 4, 11)>,
<RA_PSEL(RA_PSEL_SCI_0, 4, 10)>;
};
};
};

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/*
* Copyright (c) 2024 Renesas Electronics Corporation
* SPDX-License-Identifier: Apache-2.0
*/
/dts-v1/;
#include <renesas/ra/ra4/r7fa4e2b93cfm.dtsi>
#include <dt-bindings/gpio/gpio.h>
#include "ek_ra4e2-pinctrl.dtsi"
/ {
model = "Renesas EK-RA4E2";
compatible = "renesas,ra4e2", "renesas,ra";
chosen {
zephyr,sram = &sram0;
zephyr,flash = &flash0;
zephyr,console = &uart0;
zephyr,shell-uart = &uart0;
};
leds {
compatible = "gpio-leds";
led1: led1 {
gpios = <&ioport2 7 GPIO_ACTIVE_HIGH>;
label = "LED1";
};
led2: led2 {
gpios = <&ioport1 4 GPIO_ACTIVE_HIGH>;
label = "LED2";
};
led3: led3 {
gpios = <&ioport1 12 GPIO_ACTIVE_HIGH>;
label = "LED3";
};
};
aliases {
led0 = &led1;
};
};
&xtal {
clock-frequency = <DT_FREQ_M(20)>;
mosel = <0>;
#clock-cells = <0>;
status = "okay";
};
&subclk {
status = "okay";
};
&pll {
source = <RA_PLL_SOURCE_MAIN_OSC>;
div = <RA_PLL_DIV_1>;
mul = <10 0>;
freq = <DT_FREQ_M(200)>;
status = "okay";
};
&sci0 {
pinctrl-0 = <&sci0_default>;
pinctrl-names = "default";
status = "okay";
uart0: uart {
current-speed = <115200>;
status = "okay";
};
};
&ioport1 {
status = "okay";
};
&ioport2 {
status = "okay";
};

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identifier: ek_ra4e2
name: Renesas EK-RA4E2
type: mcu
arch: arm
ram: 40
flash: 128
toolchain:
- zephyr
- gnuarmemb
supported:
- gpio
- uart

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# Copyright (c) 2024 Renesas Electronics Corporation
# SPDX-License-Identifier: Apache-2.0
CONFIG_SYS_CLOCK_HW_CYCLES_PER_SEC=100000000
# Enable GPIO
CONFIG_GPIO=y
CONFIG_PINCTRL=y
# Enable Console
CONFIG_SERIAL=y
CONFIG_UART_INTERRUPT_DRIVEN=y
CONFIG_UART_CONSOLE=y
CONFIG_CONSOLE=y
CONFIG_BUILD_OUTPUT_HEX=y
CONFIG_BUILD_NO_GAP_FILL=y

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/*
* Copyright (c) 2024 Renesas Electronics Corporation
* SPDX-License-Identifier: Apache-2.0
*/
&pinctrl {
sci9_default: sci9_default {
group1 {
/* tx rx */
psels = <RA_PSEL(RA_PSEL_SCI_9, 1, 9)>,
<RA_PSEL(RA_PSEL_SCI_9, 1, 10)>;
};
};
};
&sci9 {
pinctrl-0 = <&sci9_default>;
pinctrl-names = "default";
status = "okay";
dut: uart {
current-speed = <115200>;
status = "okay";
};
};