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| author | hathach <[email protected]> | 2024-04-09 20:26:26 +0700 |
|---|---|---|
| committer | hathach <[email protected]> | 2024-04-09 22:04:43 +0700 |
| commit | 2bce68a065aa873ffd738b5a90639b3b4b18d2c2 (patch) | |
| tree | c1a2bfc42a3be56b4751969681005665dfaf90ad /docs/reference/getting_started.rst | |
| parent | 75cf8e21a7e525eb24b7fd34fe5859cba331fcc2 (diff) | |
| parent | 68a08e33d2a1a3b02a28c616bc825eb674700833 (diff) | |
Merge branch 'master' into dwc2-interrupts
Diffstat (limited to 'docs/reference/getting_started.rst')
| -rw-r--r-- | docs/reference/getting_started.rst | 57 |
1 files changed, 42 insertions, 15 deletions
diff --git a/docs/reference/getting_started.rst b/docs/reference/getting_started.rst index 1f41cb888..3db3fa206 100644 --- a/docs/reference/getting_started.rst +++ b/docs/reference/getting_started.rst @@ -5,8 +5,7 @@ Getting Started Add TinyUSB to your project --------------------------- -It is relatively simple to incorporate tinyusb to your (existing) project - +It is relatively simple to incorporate tinyusb to your project * Copy or ``git submodule`` this repo into your project in a subfolder. Let's say it is *your_project/tinyusb* * Add all the .c in the ``tinyusb/src`` folder to your project @@ -46,28 +45,41 @@ For your convenience, TinyUSB contains a handful of examples for both host and d Some ports will also require a port-specific SDK (e.g. RP2040) or binary (e.g. Sony Spresense) to build examples. They are out of scope for tinyusb, you should download/install it first according to its manufacturer guide. -Build -^^^^^ +Dependencies +^^^^^^^^^^^^ -To build example, first change directory to an example folder. +The hardware code is located in ``hw/bsp`` folder, and is organized by family/boards. e.g raspberry_pi_pico is located in ``hw/bsp/rp2040/boards/raspberry_pi_pico`` where FAMILY=rp2040 and BOARD=raspberry_pi_pico. Before building, we firstly need to download dependencies such as: MCU low-level peripheral driver and external libraries e.g FreeRTOS (required by some examples). We can do that by either ways: + +1. Run ``tools/get_deps.py {FAMILY}`` script to download all dependencies for a family as follow. Note: For TinyUSB developer to download all dependencies, use FAMILY=all. .. code-block:: - $ cd examples/device/cdc_msc + $ python tools/get_deps.py rp2040 -Before building, we firstly need to download dependencies such as: MCU low-level peripheral driver and external libraries e.g FreeRTOS (required by some examples). Run the ``get-deps`` target in one of the example folder as follow. You only need to do this once per mcu. Check out `complete list of dependencies and their designated path here <dependencies.rst>`_ +2. Or run the ``get-deps`` target in one of the example folder as follow. .. code-block:: + $ cd examples/device/cdc_msc $ make BOARD=raspberry_pi_pico get-deps -Then compile with ``make BOARD=[board_name] all``\ , for example +You only need to do this once per family. Check out `complete list of dependencies and their designated path here <dependencies.rst>`_ + +Build +^^^^^ + +To build example, first change directory to an example folder. + +.. code-block:: + + $ cd examples/device/cdc_msc + +Then compile with ``make BOARD={board_name} all`` , for example .. code-block:: $ make BOARD=raspberry_pi_pico all -Note: ``BOARD`` can be found as directory name in ``hw/bsp``\ , either in its family/boards or directly under bsp (no family). Note: some examples especially those that uses Vendor class (e.g webUSB) may requires udev permission on Linux (and/or macOS) to access usb device. It depends on your OS distro, typically copy ``99-tinyusb.rules`` and reload your udev is good to go .. code-block:: @@ -75,8 +87,8 @@ Note: some examples especially those that uses Vendor class (e.g webUSB) may req $ cp examples/device/99-tinyusb.rules /etc/udev/rules.d/ $ sudo udevadm control --reload-rules && sudo udevadm trigger -Port Selection -~~~~~~~~~~~~~~ +RootHub Port Selection +~~~~~~~~~~~~~~~~~~~~~~ If a board has several ports, one port is chosen by default in the individual board.mk file. Use option ``PORT=x`` To choose another port. For example to select the HS port of a STM32F746Disco board, use: @@ -166,7 +178,10 @@ Some board use uf2 bootloader for drag & drop in to mass storage device, uf2 can $ make BOARD=feather_nrf52840_express all uf2 IAR Support -^^^^^^^^^^^ +----------- + +Use project connection +^^^^^^^^^^^^^^^^^^^^^^ IAR Project Connection files are provided to import TinyUSB stack into your project. @@ -179,19 +194,19 @@ IAR Project Connection files are provided to import TinyUSB stack into your proj - `STM32L0xx_HAL_Driver` is only needed to run examples, TinyUSB stack itself doesn't rely on MCU's SDKs. -* Open `Tools -> Configure Custom Argument Variables` (Switch to `Global` tab if you want to do it for all your projects) +* Open ``Tools -> Configure Custom Argument Variables`` (Switch to `Global` tab if you want to do it for all your projects) Click `New Group ...`, name it to `TUSB`, Click `Add Variable ...`, name it to `TUSB_DIR`, change it's value to the path of your TinyUSB stack, for example `C:\\tinyusb` Import stack only ~~~~~~~~~~~~~~~~~ -1. Open `Project -> Add project Connection ...`, click `OK`, choose `tinyusb\\tools\\iar_template.ipcf`. +1. Open ``Project -> Add project Connection ...``, click `OK`, choose `tinyusb\\tools\\iar_template.ipcf`. Run examples ~~~~~~~~~~~~ -1. (Python3 is needed) Run `iar_gen.py` to generate .ipcf files of examples: +1. (Python3 is needed) Run ``iar_gen.py`` to generate .ipcf files of examples: .. code-block:: @@ -200,3 +215,15 @@ Run examples 2. Open `Project -> Add project Connection ...`, click `OK`, choose `tinyusb\\examples\\(.ipcf of example)`. For example `C:\\tinyusb\\examples\\device\\cdc_msc\\iar_cdc_msc.ipcf` + +Native CMake support (9.50.1+) +^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ + +With 9.50.1 release, IAR added experimental native CMake support (strangely not mentioned in public release note). Now it's possible to import CMakeLists.txt then build and debug as a normal project. + +Following these steps: + +1. Add IAR compiler binary path to system ``PATH`` environment variable, such as ``C:\Program Files\IAR Systems\Embedded Workbench 9.2\arm\bin``. +2. Create new project in IAR, in Tool chain dropdown menu, choose CMake for Arm then Import ``CMakeLists.txt`` from chosen example directory. +3. Set up board option in ``Option - CMake/CMSIS-TOOLBOX - CMake``, for example :code:`-DBOARD=stm32f439nucleo -DTOOLCHAIN=iar`, **Uncheck 'Override tools in env'**. +4. (For debug only) Choose correct CPU model in ``Option - General Options - Target``, to profit register and memory view. |
