micropython/ports/stm32
Damien George fb01415599 stm32/boards/PYBD_SF2: Configure LEDs as inverted, for LED.intensity(). 2019-12-13 17:28:24 +11:00
..
boards stm32/boards/PYBD_SF2: Configure LEDs as inverted, for LED.intensity(). 2019-12-13 17:28:24 +11:00
lwip_inc stm32/lwip_inc: Enable LWIP_NETIF_EXT_STATUS_CALLBACK for mDNS. 2019-09-12 18:08:50 +10:00
mbedtls
mboot stm32/mboot: Add option to automatically reset when USB is disconnected. 2019-10-08 16:07:32 +11:00
usbdev stm32/usbdev: Fix compile error if MICROPY_HW_USB_CDC_NUM is set to 2. 2019-10-05 23:33:38 +10:00
usbhost
Makefile stm32/Makefile: Enable max buffer size on W5200 NIC when used with lwIP. 2019-12-13 12:36:12 +11:00
README.md ports: Add new make target "submodules" which inits required modules. 2019-10-15 17:14:41 +11:00
accel.c stm32/accel: Fix Accel.read() method so it does read a byte. 2019-10-18 11:53:34 +11:00
accel.h
adc.c stm32/adc: Fix sampling for internal channels on H7 MCUs. 2019-10-15 22:08:45 +11:00
adc.h
autoflash
bufhelper.c
bufhelper.h
can.c stm32: Add support for FDCAN peripheral, exposed as pyb.CAN. 2019-09-23 17:00:54 +10:00
can.h stm32/can: Guard header file by MICROPY_HW_ENABLE_CAN. 2019-09-23 23:45:07 +10:00
dac.c docs/library/pyb.DAC.rst: Correct frequency for triangle mode output. 2019-09-03 23:25:45 +10:00
dac.h
dma.c stm32/dma: Fix DMA config for L0 MCUs. 2019-09-03 23:33:09 +10:00
dma.h stm32: Add initial support for STM32WBxx MCUs. 2019-07-17 16:33:31 +10:00
eth.c stm32/mpu: Save and restore the IRQ state when configuring MPU. 2019-10-16 23:12:06 +11:00
eth.h
extint.c stm32: Use mp_printf with MICROPY_ERROR_PRINTER for uncaught exceptions. 2019-09-23 17:15:07 +10:00
extint.h stm32: Add initial support for STM32WBxx MCUs. 2019-07-17 16:33:31 +10:00
factoryreset.c stm32: Generalise flash mounting code so it supports arbitrary FS. 2019-11-25 18:10:58 +11:00
factoryreset.h stm32: Generalise flash mounting code so it supports arbitrary FS. 2019-11-25 18:10:58 +11:00
fatfs_port.c
fdcan.c stm32: Add support for FDCAN peripheral, exposed as pyb.CAN. 2019-09-23 17:00:54 +10:00
flash.c stm32/flashbdev: Support internal filesystem on STM32F722/23/32/33. 2019-07-25 16:31:12 +10:00
flash.h
flashbdev.c stm32/storage: Make pyb.Flash configurable, and support ext block proto. 2019-11-26 00:07:09 +11:00
font_petme128_8x8.h
gccollect.c stm32/gccollect: Always use MP_STATE_THREAD(stack_top) to get stack top. 2019-07-11 17:32:01 +10:00
gccollect.h
help.c
i2c.c stm32/i2c: Fix generation of restart condition for hw I2C on F0/F7. 2019-08-16 13:34:04 +10:00
i2c.h
i2cslave.c
i2cslave.h
irq.c
irq.h stm32/powerctrlboot: Fix config of systick IRQ priority on F0/L0/WB MCU. 2019-10-21 12:23:41 +11:00
lcd.c
lcd.h
led.c
led.h
machine_adc.c stm32/{adc,machine_adc}: Change ADC clock and sampling time for F0 MCUs. 2019-10-04 21:39:17 +10:00
machine_i2c.c stm32/machine_i2c: Add ability to specify I2C(4) by name. 2019-09-23 15:08:24 +10:00
machine_spi.c
machine_timer.c stm32: Add machine.Timer with soft timer implementation. 2019-10-31 22:12:55 +11:00
machine_uart.c stm32: Add initial support for STM32WBxx MCUs. 2019-07-17 16:33:31 +10:00
main.c stm32/main: Fix SKIPSD file detection so SD card is mounted by default. 2019-12-09 17:01:30 +11:00
make-stmconst.py stm32/make-stmconst.py: Allow more variation in parens and int-suffix L. 2019-07-17 16:27:17 +10:00
modmachine.c stm32: Add machine.Timer with soft timer implementation. 2019-10-31 22:12:55 +11:00
modmachine.h stm32: Add machine.Timer with soft timer implementation. 2019-10-31 22:12:55 +11:00
modnetwork.c all: Convert nlr_raise(mp_obj_new_exception_msg(x)) to mp_raise_msg(x). 2019-11-05 11:35:45 +11:00
modnetwork.h
modnwcc3k.c all: Convert nlr_raise(mp_obj_new_exception_msg(x)) to mp_raise_msg(x). 2019-11-05 11:35:45 +11:00
modnwwiznet5k.c
modpyb.c stm32/accel: Add support for KXTJ3. 2019-10-18 11:41:22 +11:00
modstm.c
moduos.c stm32/moduos: Add VfsLfs1 and VfsLfs2 to uos module, if enabled. 2019-11-26 00:07:09 +11:00
modusocket.c stm32/modusocket: Handle case of NULL NIC in socket ioctl. 2019-12-13 14:45:21 +11:00
modutime.c
mpconfigboard_common.h stm32/uart: Add support for UART4/5 on L0 MCUs. 2019-12-05 15:31:41 +11:00
mpconfigport.h stm32/mpconfigport.h: Use IRQ_PRI_PENDSV to protect bluetooth ringbuf. 2019-12-04 13:39:22 +11:00
mpconfigport.mk extmod: Consolidate FAT FS config to MICROPY_VFS_FAT across all ports. 2019-11-11 11:37:38 +11:00
mphalport.c stm32/mphalport: Put PYBD specific MAC code in board specific file. 2019-08-28 12:37:13 +10:00
mphalport.h stm32/mphalport: Put PYBD specific MAC code in board specific file. 2019-08-28 12:37:13 +10:00
mpthreadport.c stm32/mpthreadport: Include runtime.h to get defn of mp_raise_msg. 2019-11-05 13:20:25 +11:00
mpthreadport.h
mpu.h stm32/mpu: Save and restore the IRQ state when configuring MPU. 2019-10-16 23:12:06 +11:00
network_lan.c
network_wiznet5k.c
nimble.c stm32: Extract port-specific Nimble implementation. 2019-10-08 14:40:35 +11:00
nimble_hci_uart.c stm32/nimble_hci_uart.c: Prevent scheduler running during CYW-BT wakeup. 2019-11-25 17:32:10 +11:00
pendsv.c
pendsv.h stm32: Add soft timer implementation, using SysTick at 1ms resolution. 2019-10-31 22:12:55 +11:00
pin.c py: Rename MP_QSTR_NULL to MP_QSTRnull to avoid intern collisions. 2019-09-26 16:04:56 +10:00
pin.h
pin_defs_stm32.c
pin_defs_stm32.h stm32: Add support for FDCAN peripheral, exposed as pyb.CAN. 2019-09-23 17:00:54 +10:00
pin_named_pins.c
pin_static_af.h
portmodules.h
powerctrl.c stm32/powerctrl: Fix machine.bootloader() for L0 MCUs. 2019-09-04 11:36:53 +10:00
powerctrl.h stm32/powerctrl: Move L0's SystemClock_Config to powerctrlboot.c file. 2019-07-08 15:23:53 +10:00
powerctrlboot.c stm32/powerctrlboot: Fix config of systick IRQ priority on F0/L0/WB MCU. 2019-10-21 12:23:41 +11:00
pyb_can.c stm32: Use mp_printf with MICROPY_ERROR_PRINTER for uncaught exceptions. 2019-09-23 17:15:07 +10:00
pyb_i2c.c
pyb_spi.c
pybcdc.inf_template
pybthread.c
pybthread.h
qspi.c stm32/mpu: Save and restore the IRQ state when configuring MPU. 2019-10-16 23:12:06 +11:00
qspi.h
qstrdefsport.h stm32/qstrdefsport.h: Remove unused qstrs and make USB ones conditional. 2019-11-27 21:59:47 +11:00
resethandler.s
resethandler_m0.s
rfcore.c stm32: Add support for RF coprocessor on WB55 MCUs. 2019-11-01 14:52:17 +11:00
rfcore.h stm32: Add support for RF coprocessor on WB55 MCUs. 2019-11-01 14:52:17 +11:00
rng.c
rng.h
rtc.c stm32: Add initial support for STM32WBxx MCUs. 2019-07-17 16:33:31 +10:00
rtc.h
sdcard.c extmod/vfs: Rename BP_IOCTL_xxx constants to MP_BLOCKDEV_IOCTL_xxx. 2019-10-29 14:17:29 +11:00
sdcard.h
sdio.c
sdio.h
sdram.c stm32/sdram: Fix to use new mpu_config_start/mpu_config_end signature. 2019-10-22 22:02:06 +11:00
sdram.h
servo.c
servo.h
softtimer.c stm32: Add soft timer implementation, using SysTick at 1ms resolution. 2019-10-31 22:12:55 +11:00
softtimer.h stm32: Add soft timer implementation, using SysTick at 1ms resolution. 2019-10-31 22:12:55 +11:00
spi.c stm32/spi: Factor out code to calculate SPI source frequency. 2019-07-03 12:02:46 +10:00
spi.h
spibdev.c stm32/storage: Make pyb.Flash configurable, and support ext block proto. 2019-11-26 00:07:09 +11:00
stm32_it.c stm32/uart: Add support for UART4/5 on L0 MCUs. 2019-12-05 15:31:41 +11:00
stm32_it.h
storage.c stm32/storage: Make start/len args of pyb.Flash keyword only. 2019-11-26 21:35:00 +11:00
storage.h stm32/storage: Change storage_read/write_blocks to return int type. 2019-11-26 00:08:57 +11:00
system_stm32.c stm32/system_stm32: Support selection of HSE and LSI on L4 MCUs. 2019-10-04 16:09:06 +10:00
systick.c stm32: Add soft timer implementation, using SysTick at 1ms resolution. 2019-10-31 22:12:55 +11:00
systick.h stm32: Provide port-specific implementation for Nimble on STM32. 2019-10-01 09:51:02 +10:00
timer.c stm32/timer: Fix Timer.freq() calc so mult doesn't overflow uint32_t. 2019-10-31 12:49:18 +11:00
timer.h
uart.c stm32/uart: Add support for UART4/5 on L0 MCUs. 2019-12-05 15:31:41 +11:00
uart.h stm32: Update components to work with new H7xx HAL. 2019-07-03 23:40:49 +10:00
usb.c stm32/usbd_cdc_interface: Add CTS flow control option for USB VCP. 2019-09-26 13:50:24 +10:00
usb.h stm32/usb: Add support for VCP+MSC+HID mode, incl 2xVCP and 3xVCP. 2019-09-11 15:17:38 +10:00
usbd_cdc_interface.c stm32/usbd_cdc_interface: Add CTS flow control option for USB VCP. 2019-09-26 13:50:24 +10:00
usbd_cdc_interface.h stm32/usbd_cdc_interface: Add CTS flow control option for USB VCP. 2019-09-26 13:50:24 +10:00
usbd_conf.c stm32/usbd: Make USB device FIFO sizes dynamically configurable. 2019-08-15 13:56:50 +10:00
usbd_conf.h stm32/usb: Add support for VCP+MSC+HID mode, incl 2xVCP and 3xVCP. 2019-09-11 15:17:38 +10:00
usbd_desc.c
usbd_desc.h
usbd_hid_interface.c stm32/usbd_hid_interface: Include extra header to build with threading. 2019-07-26 12:44:14 +10:00
usbd_hid_interface.h stm32/usbd_hid_interface: Rewrite USB HID interface code. 2019-07-25 17:42:17 +10:00
usbd_msc_interface.c extmod/vfs: Rename BP_IOCTL_xxx constants to MP_BLOCKDEV_IOCTL_xxx. 2019-10-29 14:17:29 +11:00
usbd_msc_interface.h
usrsw.c
usrsw.h
wdt.c
wdt.h

README.md

MicroPython port to STM32 MCUs

This directory contains the port of MicroPython to ST's line of STM32 microcontrollers. Supported MCU series are: STM32F0, STM32F4, STM32F7 and STM32L4. Parts of the code here utilise the STM32Cube HAL library.

The officially supported boards are the line of pyboards: PYBv1.0 and PYBv1.1 (both with STM32F405), and PYBLITEv1.0 (with STM32F411). See micropython.org/pyboard for further details.

Other boards that are supported include ST Discovery and Nucleo boards. See the boards/ subdirectory, which contains the configuration files used to build each individual board.

The STM32H7 series has preliminary support: there is a working REPL via USB and UART, as well as very basic peripheral support, but some things do not work and none of the advanced features of the STM32H7 are yet supported, such as the clock tree. At this point the STM32H7 should be considered as a fast version of the STM32F7.

Build instructions

Before building the firmware for a given board the MicroPython cross-compiler must be built; it will be used to pre-compile some of the built-in scripts to bytecode. The cross-compiler is built and run on the host machine, using:

$ make -C mpy-cross

This command should be executed from the root directory of this repository. All other commands below should be executed from the ports/stm32/ directory.

An ARM compiler is required for the build, along with the associated binary utilities. The default compiler is arm-none-eabi-gcc, which is available for Arch Linux via the package arm-none-eabi-gcc, for Ubuntu via instructions here, or see here for the main GCC ARM Embedded page. The compiler can be changed using the CROSS_COMPILE variable when invoking make.

First the submodules must be obtained using:

$ make submodules

Then to build for a given board, run:

$ make BOARD=PYBV11

The default board is PYBV10 but any of the names of the subdirectories in the boards/ directory can be passed as the argument to BOARD=. The above command should produce binary images in the build-PYBV11/ subdirectory (or the equivalent directory for the board specified).

You must then get your board/microcontroller into DFU mode. On the pyboard connect the 3V3 pin to the P1/DFU pin with a wire (they are next to each other on the bottom left of the board, second row from the bottom) and then reset (by pressing the RST button) or power on the board. Then flash the firmware using the command:

$ make BOARD=PYBV11 deploy

This will use the included tools/pydfu.py script. You can use instead the dfu-util program (available here) by passing USE_PYDFU=0:

$ make BOARD=PYBV11 USE_PYDFU=0 deploy

If flashing the firmware does not work it may be because you don't have the correct permissions. Try then:

$ sudo make BOARD=PYBV11 deploy

Or using dfu-util directly:

$ sudo dfu-util -a 0 -d 0483:df11 -D build-PYBV11/firmware.dfu

ST Discovery or Nucleo boards have a builtin programmer called ST-LINK. With these boards and using Linux or OS X, you have the option to upload the stm32 firmware using the st-flash utility from the stlink project. To do so, connect the board with a mini USB cable to its ST-LINK USB port and then use the make target deploy-stlink. For example, if you have the STM32F4DISCOVERY board, you can run:

$ make BOARD=STM32F4DISC deploy-stlink

The st-flash program should detect the USB connection to the board automatically. If not, run lsusb to determine its USB bus and device number and set the STLINK_DEVICE environment variable accordingly, using the format <USB_BUS>:<USB_ADDR>. Example:

$ lsusb
[...]
Bus 002 Device 035: ID 0483:3748 STMicroelectronics ST-LINK/V2
$ export STLINK_DEVICE="002:0035"
$ make BOARD=STM32F4DISC deploy-stlink

Flashing the Firmware with OpenOCD

Another option to deploy the firmware on ST Discovery or Nucleo boards with a ST-LINK interface uses OpenOCD. Connect the board with a mini USB cable to its ST-LINK USB port and then use the make target deploy-openocd. For example, if you have the STM32F4DISCOVERY board:

$ make BOARD=STM32F4DISC deploy-openocd

The openocd program, which writes the firmware to the target board's flash, is configured via the file ports/stm32/boards/openocd_stm32f4.cfg. This configuration should work for all boards based on a STM32F4xx MCU with a ST-LINKv2 interface. You can override the path to this configuration by setting OPENOCD_CONFIG in your Makefile or on the command line.

Accessing the board

Once built and deployed, access the MicroPython REPL (the Python prompt) via USB serial or UART, depending on the board. For the pyboard you can try:

$ picocom /dev/ttyACM0