micropython/ports/rp2
Jim Mussared 5f8f32f917 extmod/modnetwork: Use a type protocol to implement NIC functions.
This was previously implemented by adding additional members to the
mp_obj_type_t defined for each NIC, which is difficult to do cleanly with
the new object type slots mechanism. The way this works is also not
supported on GCC 8.x and below.

Instead replace it with the type protocol, which is a much simpler way of
achieving the same thing.

This affects the WizNet (in non-LWIP mode) and Nina NIC drivers.

This work was funded through GitHub Sponsors.

Signed-off-by: Jim Mussared <jim.mussared@gmail.com>
2022-12-15 17:40:06 +11:00
..
boards rp2/boards/ARDUINO_NANO_RP2040: Add more modules and enable MD5 hash. 2022-11-14 19:06:51 +11:00
lwip_inc
mbedtls extmod/mbedtls: Enable elliptic curve DH and DSA cryptography. 2022-10-22 19:08:21 +11:00
modules
CMakeLists.txt shared/tinyusb: Further refactor static USB device implementation. 2022-11-11 16:47:36 +11:00
Makefile rp2/Makefile: Add support for BOARD_VARIANTS. 2022-09-26 12:38:58 +10:00
README.md
cyw43_configport.h rp2/cyw43_configport: Make sure only core0 executes a __WFI(). 2022-11-09 12:00:10 +11:00
fatfs_port.c rp2/fatfs_port: Fix the modification date of files. 2022-10-12 00:31:38 +11:00
machine_adc.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
machine_bitstream.c
machine_i2c.c rp2: Rename machine I2C type consistently across ports. 2022-10-22 12:56:58 +11:00
machine_i2s.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
machine_pin.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
machine_pwm.c
machine_rtc.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
machine_spi.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
machine_timer.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
machine_uart.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
machine_wdt.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
main.c rp2: Allow enabling USB device without enabling USB-CDC. 2022-11-11 16:49:18 +11:00
memmap_mp.ld
modmachine.c rp2/modmachine: Move dht_readinto() to the machine module. 2022-11-09 15:57:17 +11:00
modmachine.h rp2: Rename machine I2C type consistently across ports. 2022-10-22 12:56:58 +11:00
modrp2.c rp2/modmachine: Move dht_readinto() to the machine module. 2022-11-09 15:57:17 +11:00
modrp2.h
moduos.c
modutime.c
mpbthciport.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
mpbthciport.h
mpconfigport.h extmod/modnetwork: Use a type protocol to implement NIC functions. 2022-12-15 17:40:06 +11:00
mphalport.c rp2: Allow enabling USB device without enabling USB-CDC. 2022-11-11 16:49:18 +11:00
mphalport.h rp2/mphalport: Add a timeout to mp_hal_stdout_tx_strn(). 2022-11-09 11:12:53 +11:00
mpnetworkport.c
mpnimbleport.c
mpnimbleport.h
mpthreadport.c
mpthreadport.h
msc_disk.c
pendsv.c
pendsv.h
qstrdefsport.h
rp2_flash.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
rp2_pio.c py/obj: Convert make_new into a mp_obj_type_t slot. 2022-09-19 19:06:15 +10:00
uart.c
uart.h
usbd.c shared/tinyusb: Further refactor static USB device implementation. 2022-11-11 16:47:36 +11:00

README.md

The RP2 port

This is a port of MicroPython to the Raspberry Pi RP2 series of microcontrollers. Currently supported features are:

  • REPL over USB VCP, and optionally over UART (on GP0/GP1).
  • Filesystem on the internal flash, using littlefs2.
  • Support for native code generation and inline assembler.
  • utime module with sleep, time and ticks functions.
  • uos module with VFS support.
  • machine module with the following classes: Pin, ADC, PWM, I2C, SPI, SoftI2C, SoftSPI, Timer, UART, WDT.
  • rp2 module with programmable IO (PIO) support.

See the examples/rp2/ directory for some example code.

Building

The MicroPython cross-compiler must be built first, which will be used to pre-compile (freeze) built-in Python code. This 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/rp2/ directory.

Building of the RP2 firmware is done entirely using CMake, although a simple Makefile is also provided as a convenience. To build the firmware run (from this directory):

$ make submodules
$ make clean
$ make

You can also build the standard CMake way. The final firmware is found in the top-level of the CMake build directory (build by default) and is called firmware.uf2.

If you are using a different board other than a Rasoberry Pi Pico, then you should pass the board name to the build; e.g. for Raspberry Pi Pico W:

$ make BOARD=PICO_W submodules
$ make BOARD=PICO_W clean
$ make BOARD=PICO_W

Deploying firmware to the device

Firmware can be deployed to the device by putting it into bootloader mode (hold down BOOTSEL while powering on or resetting) and then copying firmware.uf2 to the USB mass storage device that appears.

If MicroPython is already installed then the bootloader can be entered by executing import machine; machine.bootloader() at the REPL.

Sample code

The following samples can be easily run on the board by entering paste mode with Ctrl-E at the REPL, then cut-and-pasting the sample code to the REPL, then executing the code with Ctrl-D.

Blinky

This blinks the on-board LED on the Pico board at 1.25Hz, using a Timer object with a callback.

from machine import Pin, Timer
led = Pin(25, Pin.OUT)
tim = Timer()
def tick(timer):
    global led
    led.toggle()

tim.init(freq=2.5, mode=Timer.PERIODIC, callback=tick)

PIO blinky

This blinks the on-board LED on the Pico board at 1Hz, using a PIO peripheral and PIO assembler to directly toggle the LED at the required rate.

from machine import Pin
import rp2

@rp2.asm_pio(set_init=rp2.PIO.OUT_LOW)
def blink_1hz():
    # Turn on the LED and delay, taking 1000 cycles.
    set(pins, 1)
    set(x, 31)                  [6]
    label("delay_high")
    nop()                       [29]
    jmp(x_dec, "delay_high")

    # Turn off the LED and delay, taking 1000 cycles.
    set(pins, 0)
    set(x, 31)                  [6]
    label("delay_low")
    nop()                       [29]
    jmp(x_dec, "delay_low")

# Create StateMachine(0) with the blink_1hz program, outputting on Pin(25).
sm = rp2.StateMachine(0, blink_1hz, freq=2000, set_base=Pin(25))
sm.active(1)

See the examples/rp2/ directory for further example code.