micropython/esp8266
Paul Sokolovsky c2070d771a esp8266/modmachine: Implement idle() function. 2016-08-07 15:51:04 +03:00
..
modules esp8266/flashbdev: Reserve extra sysparam sector for SDK 2.0.0 compatibility. 2016-08-06 15:21:49 +03:00
scripts esp8266/scripts/inisetup: Add commented-out call to esp.osdebug(None). 2016-08-06 15:27:38 +03:00
Makefile esp8266: Enable btree module. 2016-07-31 02:39:59 +03:00
README.md esp8266/README: Promote from "highly experimental" to "experimental". 2016-07-02 23:14:22 +03:00
axtls_helpers.c esp8266/axtls_helpers: Remove abort_(), now in lib/embed/. 2016-07-30 00:36:28 +03:00
eagle.rom.addr.v6.ld esp8266/eagle.rom.addr.v6.ld: Add Enable_QMode symbol from SDK 2.0.0. 2016-08-01 00:01:49 +03:00
esp8266.ld esp8266: Enable btree module. 2016-07-31 02:39:59 +03:00
esp_mphal.c esp8266/esp_mphal: Implement libc's errno. 2016-07-31 02:30:05 +03:00
esp_mphal.h esp8266: Enable DHT C-level driver. 2016-05-26 17:11:43 +01:00
espapa102.c esp8266: Make APA102 driver inclusion configurable. 2016-08-01 00:03:55 +03:00
espapa102.h esp8266: Add APA102 serial individually controllable LEDs support. 2016-05-19 22:29:11 +03:00
espneopixel.c
espneopixel.h
esponewire.c
esponewire.h
esppwm.c
esppwm.h
ets_alt_task.c esp8266: Provide a dedicated variable to disable ets_loop_iter. 2016-06-01 17:26:49 +01:00
ets_alt_task.h esp8266: Provide a dedicated variable to disable ets_loop_iter. 2016-06-01 17:26:49 +01:00
etshal.h esp8266/modesp: Add check_fw() function to check integrity of the firmware. 2016-08-04 00:29:19 +03:00
fatfs_port.c esp8266: Use RTC to set date & time stamps for files. 2016-06-16 19:31:58 +03:00
gccollect.c
gccollect.h
gchelper.s
help.c
intr.c
lexerstr32.c
main.c esp8266: dupterm_task_init() should be called before running _boot.py, etc. 2016-07-23 00:05:38 +03:00
makeimg.py esp8266/makeimg.py: Append md5 hash to the generated binary. 2016-08-04 00:21:05 +03:00
modesp.c esp8266/modesp: Add check_fw() function to check integrity of the firmware. 2016-08-04 00:29:19 +03:00
modmachine.c esp8266/modmachine: Implement idle() function. 2016-08-07 15:51:04 +03:00
modnetwork.c esp8266/modnetwork: Use struct bss_info::ssid_len for ESSID length. 2016-06-04 22:02:01 +03:00
modonewire.c
modpyb.c
modpyb.h
modpybadc.c
modpybpin.c esp8266: Add mp_hal_pin_input() and mp_hal_pin_output() functions. 2016-05-26 15:42:27 +01:00
modpybpwm.c
modpybrtc.c esp8266: Let RTC work correctly after deepsleep. 2016-06-06 10:51:12 +01:00
modpybrtc.h esp8266: Let RTC work correctly after deepsleep. 2016-06-06 10:51:12 +01:00
modpybspi.c esp8266/modpybspi: Configure pins when initialising an SPI object. 2016-05-26 15:42:44 +01:00
modpybuart.c esp8266/modpybuart: Fix UART parity setting. 2016-07-27 21:05:45 +03:00
moduos.c esp8266/moduos: Add rmdir() function. 2016-07-16 03:53:55 +03:00
modutime.c
mpconfigport.h esp8266: Make APA102 driver inclusion configurable. 2016-08-01 00:03:55 +03:00
qstrdefsport.h
strtoll.c
uart.c esp8266/modpybuart: allow setting baudrate and other params 2016-06-30 18:18:50 +02:00
uart.h esp8266/modpybuart: Fix UART parity setting. 2016-07-27 21:05:45 +03:00
uart_register.h
user_config.h
xtirq.h esp8266/xtirq: Add xtirq.h for controlling xtensa irqs. 2016-05-26 15:47:47 +01:00

README.md

MicroPython port to ESP8266

This is an experimental port of MicroPython for the WiFi modules based on Espressif ESP8266 chip.

WARNING: The port is experimental and many APIs are subject to change.

Supported features include:

  • REPL (Python prompt) over UART0.
  • Garbage collector, exceptions.
  • Unicode support.
  • Builtin modules: gc, array, collections, io, struct, sys, esp, network, many more.
  • Arbitrary-precision long integers and 30-bit precision floats.
  • WiFi support.
  • Sockets using modlwip.
  • GPIO and bit-banging I2C, SPI support.
  • 1-Wire and WS2812 (aka Neopixel) protocols support.
  • Internal filesystem using the flash.
  • WebREPL over WiFi from a browser (clients at https://github.com/micropython/webrepl).
  • Modules for HTTP, MQTT, many other formats and protocols via https://github.com/micropython/micropython-lib .

Work-in-progress documentation is available at http://docs.micropython.org/en/latest/esp8266/ .

Build instructions

The tool chain required for the build is the OpenSource ESP SDK, which can be found at https://github.com/pfalcon/esp-open-sdk. Clone this repository and run make in its directory to build and install the SDK locally. Make sure to add toolchain bin directory to your PATH. Read esp-open-sdk's README for additional important information on toolchain setup.

Add the external dependencies to the MicroPython repository checkout:

$ git submodule update --init

See the README in the repository root for more information about external dependencies.

The MicroPython cross-compiler must be built to pre-compile some of the built-in scripts to bytecode. This can be done using:

$ make -C mpy-cross

Then, to build MicroPython for the ESP8266, just run:

$ cd esp8266
$ make axtls
$ make

This will produce binary images in the build/ subdirectory. If you install MicroPython to your module for the first time, or after installing any other firmware, you should erase flash completely:

esptool.py --port /dev/ttyXXX erase_flash

Erase flash also as a troubleshooting measure, if a module doesn't behave as expected.

To flash MicroPython image to your ESP8266, use:

$ make deploy

This will use the esptool.py script to download the images. You must have your ESP module in the bootloader mode, and connected to a serial port on your PC. The default serial port is /dev/ttyACM0. To specify another, use, eg:

$ make PORT=/dev/ttyUSB0 deploy

The image produced is firmware-combined.bin, to be flashed at 0x00000.

First start

Serial prompt

You can access the REPL (Python prompt) over UART (the same as used for programming).

  • Baudrate: 115200

WiFi

Initally, the device configures itself as a WiFi access point (AP).

  • ESSID: MicroPython-xxxxxx (xs are replaced with part of the MAC address).
  • Password: micropythoN (note the upper-case N).
  • IP address of the board: 192.168.4.1.
  • DHCP-server is activated.

WebREPL

Python prompt over WiFi, connecting through a browser.

Please follow the instructions there.

More detailed instructions can be found at http://docs.micropython.org/en/latest/esp8266/esp8266/tutorial/intro.html

Troubleshooting

While the port is still in alpha, it's known to be generally stable. If you experience strange bootloops, crashes, lockups, here's a list to check against:

  • You didn't erase flash before programming MicroPython firmware.
  • Firmware can be occasionally flashed incorrectly. Just retry. Recent esptool.py versions have --verify option.
  • Power supply you use doesn't provide enough power for ESP8266 or isn't stable enough.
  • A module/flash may be defective (not unheard of for cheap modules).

Please consult dedicated ESP8266 forums/resources for hardware-related problems.