This updates the documentation of all the M5Stack boards to use the new `zephyr:board::` directive. Signed-off-by: Benjamin Cabé <benjamin@zephyrproject.org>
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8.2 KiB
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220 lines
8.2 KiB
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.. zephyr:board:: m5stickc_plus
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Overview
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********
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M5StickC PLUS, one of the core devices in M5Stacks product series, is an ESP32-based development board.
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M5StickC PLUS features the following integrated components:
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- ESP32-PICO-D4 chip (240MHz dual core, 600 DMIPS, 520KB SRAM, Wi-Fi)
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- ST7789v2, LCD TFT 1.14", 135x240 px screen
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- IMU MPU-6886
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- SPM-1423 microphone
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- RTC BM8563
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- PMU AXP192
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- 120 mAh 3,7 V battery
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Some of the ESP32 I/O pins are broken out to the board's pin headers for easy access.
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Functional Description
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**********************
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The following table below describes the key components, interfaces, and controls
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of the M5StickC PLUS board.
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.. _ST7789v2: https://m5stack.oss-cn-shenzhen.aliyuncs.com/resource/docs/datasheet/core/ST7789V.pdf
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.. _MPU-6886: https://m5stack.oss-cn-shenzhen.aliyuncs.com/resource/docs/datasheet/core/MPU-6886-000193%2Bv1.1_GHIC_en.pdf
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.. _ESP32-PICO-D4: https://m5stack.oss-cn-shenzhen.aliyuncs.com/resource/docs/datasheet/core/esp32-pico-d4_datasheet_en.pdf
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.. _SPM-1423: https://m5stack.oss-cn-shenzhen.aliyuncs.com/resource/docs/datasheet/core/SPM1423HM4H-B_datasheet_en.pdf
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+------------------+-------------------------------------------------------------------------+
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| Key Component | Description |
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+==================+=========================================================================+
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| 32.768 kHz RTC | External precision 32.768 kHz crystal oscillator serves as a clock with |
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| | low-power consumption while the chip is in Deep-sleep mode. |
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+------------------+-------------------------------------------------------------------------+
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| ESP32-PICO-D4 | This `ESP32-PICO-D4`_ module provides complete Wi-Fi and Bluetooth |
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| module | functionalities and integrates a 4-MB SPI flash. |
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+------------------+-------------------------------------------------------------------------+
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| Diagnostic LED | One user LED connected to the GPIO pin. |
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+------------------+-------------------------------------------------------------------------+
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| USB Port | USB interface. Power supply for the board as well as the |
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| | communication interface between a computer and the board. |
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| | Contains: TypeC x 1, GROVE(I2C+I/O+UART) x 1 |
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+------------------+-------------------------------------------------------------------------+
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| Power Switch | Power on/off button. |
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+------------------+-------------------------------------------------------------------------+
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| A/B user buttons | Two push buttons intended for any user use. |
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+------------------+-------------------------------------------------------------------------+
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| LCD screen | Built-in LCD TFT display \(`ST7789v2`_, 1.14", 135x240 px\) controlled |
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| | by the SPI interface |
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+------------------+-------------------------------------------------------------------------+
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| MPU-6886 | The `MPU-6886`_ is a 6-axis MotionTracking device that combines a |
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| | 3-axis gyroscope and a 3-axis accelerometer. |
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+------------------+-------------------------------------------------------------------------+
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| Built-in | The `SPM-1423`_ I2S driven microphone. |
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| microphone | |
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+------------------+-------------------------------------------------------------------------+
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Start Application Development
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*****************************
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Before powering up your M5StickC PLUS, please make sure that the board is in good
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condition with no obvious signs of damage.
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System requirements
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===================
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Prerequisites
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-------------
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Espressif HAL requires WiFi and Bluetooth binary blobs in order work. Run the command
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below to retrieve those files.
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.. code-block:: console
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west blobs fetch hal_espressif
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.. note::
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It is recommended running the command above after :file:`west update`.
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Building & Flashing
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*******************
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Simple boot
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===========
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The board could be loaded using the single binary image, without 2nd stage bootloader.
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It is the default option when building the application without additional configuration.
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.. note::
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Simple boot does not provide any security features nor OTA updates.
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MCUboot bootloader
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==================
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User may choose to use MCUboot bootloader instead. In that case the bootloader
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must be built (and flashed) at least once.
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There are two options to be used when building an application:
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1. Sysbuild
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2. Manual build
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.. note::
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User can select the MCUboot bootloader by adding the following line
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to the board default configuration file.
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.. code:: cfg
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CONFIG_BOOTLOADER_MCUBOOT=y
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Sysbuild
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========
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The sysbuild makes possible to build and flash all necessary images needed to
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bootstrap the board with the ESP32 SoC.
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To build the sample application using sysbuild use the command:
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.. zephyr-app-commands::
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:tool: west
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:zephyr-app: samples/hello_world
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:board: m5stickc_plus
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:goals: build
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:west-args: --sysbuild
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:compact:
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By default, the ESP32 sysbuild creates bootloader (MCUboot) and application
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images. But it can be configured to create other kind of images.
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Build directory structure created by sysbuild is different from traditional
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Zephyr build. Output is structured by the domain subdirectories:
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.. code-block::
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build/
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├── hello_world
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│ └── zephyr
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│ ├── zephyr.elf
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│ └── zephyr.bin
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├── mcuboot
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│ └── zephyr
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│ ├── zephyr.elf
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│ └── zephyr.bin
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└── domains.yaml
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.. note::
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With ``--sysbuild`` option the bootloader will be re-build and re-flash
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every time the pristine build is used.
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For more information about the system build please read the :ref:`sysbuild` documentation.
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Manual build
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============
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During the development cycle, it is intended to build & flash as quickly possible.
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For that reason, images can be built one at a time using traditional build.
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The instructions following are relevant for both manual build and sysbuild.
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The only difference is the structure of the build directory.
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.. note::
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Remember that bootloader (MCUboot) needs to be flash at least once.
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Build and flash applications as usual (see :ref:`build_an_application` and
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:ref:`application_run` for more details).
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.. zephyr-app-commands::
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:zephyr-app: samples/hello_world
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:board: m5stickc_plus/esp32/procpu
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:goals: build
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The usual ``flash`` target will work with the ``m5stickc_plus`` board
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configuration. Here is an example for the :zephyr:code-sample:`hello_world`
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application.
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.. zephyr-app-commands::
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:zephyr-app: samples/hello_world
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:board: m5stickc_plus/esp32/procpu
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:goals: flash
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The default baud rate for the M5StickC PLUS is set to 1500000bps. If experiencing issues when flashing,
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try using different values by using ``--esp-baud-rate <BAUD>`` option during
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``west flash`` (e.g. ``west flash --esp-baud-rate 115200``).
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You can also open the serial monitor using the following command:
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.. code-block:: shell
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west espressif monitor
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After the board has automatically reset and booted, you should see the following
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message in the monitor:
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.. code-block:: console
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***** Booting Zephyr OS vx.x.x-xxx-gxxxxxxxxxxxx *****
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Hello World! m5stickc_plus
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Debugging
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*********
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M5StickC PLUS debugging is not supported due to pinout limitations.
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Related Documents
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*****************
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- `M5StickC PLUS schematic <https://static-cdn.m5stack.com/resource/docs/products/core/m5stickc_plus/m5stickc_plus_sch_03.webp>`_ (WEBP)
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- `ESP32-PICO-D4 Datasheet <https://www.espressif.com/sites/default/files/documentation/esp32-pico-d4_datasheet_en.pdf>`_ (PDF)
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- `M5StickC PLUS docs <https://docs.m5stack.com/en/core/m5stickc_plus>`_
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- `ESP32 Datasheet <https://www.espressif.com/sites/default/files/documentation/esp32_datasheet_en.pdf>`_ (PDF)
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- `ESP32 Hardware Reference <https://docs.espressif.com/projects/esp-idf/en/latest/esp32/hw-reference/index.html>`_
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