Overview
Thingiverse is a terrific repository of Things that you can download and build using various digital fabrication techniques, with an emphasis on 3D printable models.
You can display a collection of your favorite Thingiverse maker Things with the PyPortal and admire these builds in convenient 2D image form!
You can build this project with parts in AdaBox 011 or order parts separately.
Page last edited March 08, 2024
Text editor powered by tinymce.
Install CircuitPython
CircuitPython is a derivative of MicroPython designed to simplify experimentation and education on low-cost microcontrollers. It makes it easier than ever to get prototyping by requiring no upfront desktop software downloads. Simply copy and edit files on the CIRCUITPY "flash" drive to iterate.
The following instructions will show you how to install CircuitPython. If you've already installed CircuitPython but are looking to update it or reinstall it, the same steps work for that as well!
Click the link above to download the latest version of CircuitPython for the PyPortal.
Download and save it to your desktop (or wherever is handy).
Plug your PyPortal into your computer using a known-good USB cable.
A lot of people end up using charge-only USB cables and it is very frustrating! So make sure you have a USB cable you know is good for data sync.
Double-click the Reset button on the top in the middle (magenta arrow) on your board, and you will see the NeoPixel RGB LED (green arrow) turn green. If it turns red, check the USB cable, try another USB port, etc. Note: The little red LED next to the USB connector will pulse red. That's ok!
If double-clicking doesn't work the first time, try again. Sometimes it can take a few tries to get the rhythm right!
You will see a new disk drive appear called PORTALBOOT.
Drag the adafruit-circuitpython-pyportal-<whatever>.uf2 file to PORTALBOOT.
The LED will flash. Then, the PORTALBOOT drive will disappear and a new disk drive called CIRCUITPY will appear.
If you haven't added any code to your board, the only file that will be present is boot_out.txt. This is absolutely normal! It's time for you to add your code.py and get started!
That's it, you're done! :)
PyPortal Default Files
Click below to download a zip of the files that shipped on the PyPortal or PyPortal Pynt.
Page last edited March 08, 2024
Text editor powered by tinymce.
PyPortal CircuitPython Setup
To use all the amazing features of your PyPortal with CircuitPython, you must first install a number of libraries. This page covers that process.
Adafruit CircuitPython Bundle
Download the Adafruit CircuitPython Library Bundle. You can find the latest release here:
Download the adafruit-circuitpython-bundle-*.x-mpy-*.zip bundle zip file where *.x MATCHES THE VERSION OF CIRCUITPYTHON YOU INSTALLED, and unzip a folder of the same name. Inside you'll find a lib folder. You have two options:
- You can add the lib folder to your CIRCUITPY drive. This will ensure you have all the drivers. But it will take a bunch of space on the 8 MB disk
- Add each library as you need it, this will reduce the space usage but you'll need to put in a little more effort.
At a minimum we recommend the following libraries, in fact we more than recommend. They're basically required. So grab them and install them into CIRCUITPY/lib now!
- adafruit_esp32spi - This is the library that gives you internet access via the ESP32 using (you guessed it!) SPI transport. You need this for anything Internet
- adafruit_requests - This library allows us to perform HTTP requests and get responses back from servers. GET/POST/PUT/PATCH - they're all in here!
- adafruit_connection_manager - used by adafruit_requests.
- adafruit_pyportal - This is our friendly wrapper library that does a lot of our projects, displays graphics and text, fetches data from the internet. Nearly all of our projects depend on it!
- adafruit_portalbase - This library is the base library that adafruit_pyportal library is built on top of.
- adafruit_touchscreen - a library for reading touches from the resistive touchscreen. Handles all the analog noodling, rotation and calibration for you.
- adafruit_io - this library helps connect the PyPortal to our free datalogging and viewing service
- adafruit_imageload - an image display helper, required for any graphics!
- adafruit_display_text - not surprisingly, it displays text on the screen
- adafruit_bitmap_font - we have fancy font support, and its easy to make new fonts. This library reads and parses font files.
- adafruit_slideshow - for making image slideshows - handy for quick display of graphics and sound
- neopixel - for controlling the onboard neopixel
- adafruit_adt7410 - library to read the temperature from the on-board Analog Devices ADT7410 precision temperature sensor (not necessary for Titano or Pynt)
- adafruit_bus_device - low level support for I2C/SPI
- adafruit_fakerequests - This library allows you to create fake HTTP requests by using local files.
Page last edited March 08, 2024
Text editor powered by tinymce.
Create Your settings.toml File
CircuitPython works with WiFi-capable boards to enable you to make projects that have network connectivity. This means working with various passwords and API keys. As of CircuitPython 8, there is support for a settings.toml file. This is a file that is stored on your CIRCUITPY drive, that contains all of your secret network information, such as your SSID, SSID password and any API keys for IoT services. It is designed to separate your sensitive information from your code.py file so you are able to share your code without sharing your credentials.
CircuitPython previously used a secrets.py file for this purpose. The settings.toml file is quite similar.
CircuitPython settings.toml File
This section will provide a couple of examples of what your settings.toml file should look like, specifically for CircuitPython WiFi projects in general.
The most minimal settings.toml file must contain your WiFi SSID and password, as that is the minimum required to connect to WiFi. Copy this example, paste it into your settings.toml, and update:
your_wifi_ssidyour_wifi_password
CIRCUITPY_WIFI_SSID = "your_wifi_ssid" CIRCUITPY_WIFI_PASSWORD = "your_wifi_password"
Many CircuitPython network-connected projects on the Adafruit Learn System involve using Adafruit IO. For these projects, you must also include your Adafruit IO username and key. Copy the following example, paste it into your settings.toml file, and update:
your_wifi_ssidyour_wifi_passwordyour_aio_usernameyour_aio_key
CIRCUITPY_WIFI_SSID = "your_wifi_ssid" CIRCUITPY_WIFI_PASSWORD = "your_wifi_password" ADAFRUIT_AIO_USERNAME = "your_aio_username" ADAFRUIT_AIO_KEY = "your_aio_key"
Some projects use different variable names for the entries in the settings.toml file. For example, a project might use ADAFRUIT_AIO_ID in the place of ADAFRUIT_AIO_USERNAME. If you run into connectivity issues, one of the first things to check is that the names in the settings.toml file match the names in the code.
Here is an example settings.toml file.
# Comments are supported CIRCUITPY_WIFI_SSID = "guest wifi" CIRCUITPY_WIFI_PASSWORD = "guessable" CIRCUITPY_WEB_API_PORT = 80 CIRCUITPY_WEB_API_PASSWORD = "passw0rd" test_variable = "this is a test" thumbs_up = "\U0001f44d"
In a settings.toml file, it's important to keep these factors in mind:
- Strings are wrapped in double quotes; ex:
"your-string-here" - Integers are not quoted and may be written in decimal with optional sign (
+1,-1,1000) or hexadecimal (0xabcd).- Floats (decimal numbers), octal (
0o567) and binary (0b11011) are not supported.
- Floats (decimal numbers), octal (
- Use
\uescapes for weird characters,\xand\oooescapes are not available in .toml files- Example:
\U0001f44dfor 👍 (thumbs up emoji) and\u20acfor € (EUR sign)
- Example:
- Unicode emoji, and non-ASCII characters, stand for themselves as long as you're careful to save in "UTF-8 without BOM" format
When your settings.toml file is ready, you can save it in your text editor with the .toml extension.
In your code.py file, you'll need to import the os library to access the settings.toml file. Your settings are accessed with the os.getenv() function. You'll pass your settings entry to the function to import it into the code.py file.
import os
print(os.getenv("test_variable"))
In the upcoming CircuitPython WiFi examples, you'll see how the settings.toml file is used for connecting to your SSID and accessing your API keys.
Page last edited March 08, 2024
Text editor powered by tinymce.
Internet Connect!
Connect to WiFi
OK, now that you have your settings.toml file set up - you can connect to the Internet.
To do this, you need to first install a few libraries, into the lib folder on your CIRCUITPY drive. Then you need to update code.py with the example script.
Thankfully, we can do this in one go. In the example below, click the Download Project Bundle button below to download the necessary libraries and the code.py file in a zip file. Extract the contents of the zip file, open the directory examples/ and then click on the directory that matches the version of CircuitPython you're using and copy the contents of that directory to your CIRCUITPY drive.
Your CIRCUITPY drive should now look similar to the following image:
# SPDX-FileCopyrightText: 2019 ladyada for Adafruit Industries
# SPDX-License-Identifier: MIT
from os import getenv
import adafruit_connection_manager
import adafruit_requests
import board
import busio
from digitalio import DigitalInOut
# Use this import for adafruit_esp32spi version 11.0.0 and up.
# Note that frozen libraries may not be up to date.
# import adafruit_esp32spi
from adafruit_esp32spi import adafruit_esp32spi
# Get wifi details and more from a settings.toml file
# tokens used by this Demo: CIRCUITPY_WIFI_SSID, CIRCUITPY_WIFI_PASSWORD
ssid = getenv("CIRCUITPY_WIFI_SSID")
password = getenv("CIRCUITPY_WIFI_PASSWORD")
print("ESP32 SPI webclient test")
TEXT_URL = "http://wifitest.adafruit.com/testwifi/index.html"
JSON_URL = "http://wifitest.adafruit.com/testwifi/sample.json"
# If you are using a board with pre-defined ESP32 Pins:
esp32_cs = DigitalInOut(board.ESP_CS)
esp32_ready = DigitalInOut(board.ESP_BUSY)
esp32_reset = DigitalInOut(board.ESP_RESET)
# If you have an AirLift Shield:
# esp32_cs = DigitalInOut(board.D10)
# esp32_ready = DigitalInOut(board.D7)
# esp32_reset = DigitalInOut(board.D5)
# If you have an AirLift Featherwing or ItsyBitsy Airlift:
# esp32_cs = DigitalInOut(board.D13)
# esp32_ready = DigitalInOut(board.D11)
# esp32_reset = DigitalInOut(board.D12)
# If you have an externally connected ESP32:
# NOTE: You may need to change the pins to reflect your wiring
# esp32_cs = DigitalInOut(board.D9)
# esp32_ready = DigitalInOut(board.D10)
# esp32_reset = DigitalInOut(board.D5)
# Secondary (SCK1) SPI used to connect to WiFi board on Arduino Nano Connect RP2040
if "SCK1" in dir(board):
spi = busio.SPI(board.SCK1, board.MOSI1, board.MISO1)
else:
spi = busio.SPI(board.SCK, board.MOSI, board.MISO)
esp = adafruit_esp32spi.ESP_SPIcontrol(spi, esp32_cs, esp32_ready, esp32_reset)
pool = adafruit_connection_manager.get_radio_socketpool(esp)
ssl_context = adafruit_connection_manager.get_radio_ssl_context(esp)
requests = adafruit_requests.Session(pool, ssl_context)
if esp.status == adafruit_esp32spi.WL_IDLE_STATUS:
print("ESP32 found and in idle mode")
print("Firmware vers.", esp.firmware_version)
print("MAC addr:", ":".join(f"{byte:02X}" for byte in esp.MAC_address))
for ap in esp.scan_networks():
print(f"\t{ap.ssid:<23} RSSI: {ap.rssi}")
print("Connecting to AP...")
while not esp.is_connected:
try:
esp.connect_AP(ssid, password)
except OSError as e:
print("could not connect to AP, retrying: ", e)
continue
print("Connected to", esp.ap_info.ssid, "\tRSSI:", esp.ap_info.rssi)
print("My IP address is", esp.ipv4_address)
print(f"IP lookup adafruit.com: {esp.pretty_ip(esp.get_host_by_name('adafruit.com'))}")
print(f"Ping google.com: {esp.ping('google.com')} ms")
# esp._debug = True
print("Fetching text from", TEXT_URL)
r = requests.get(TEXT_URL)
print("-" * 40)
print(r.text)
print("-" * 40)
r.close()
print()
print("Fetching json from", JSON_URL)
r = requests.get(JSON_URL)
print("-" * 40)
print(r.json())
print("-" * 40)
r.close()
print("Done!")
And save it to your board, with the name code.py.
Don't forget you'll also need to create the settings.toml file as seen above, with your WiFi ssid and password.
In a serial console, you should see something like the following. For more information about connecting with a serial console, view the guide Connecting to the Serial Console.
>>> import wifitest
ESP32 SPI webclient test
ESP32 found and in idle mode
Firmware vers. 1.7.5
MAC addr: 24:C9:DC:BD:0F:3F
HomeNetwork RSSI: -46
HomeNetwork RSSI: -76
Fios-12345 RSSI: -92
FiOS-AB123 RSSI: -92
NETGEAR53 RSSI: -93
Connecting to AP...
Connected to HomeNetwork RSSI: -45
My IP address is 192.168.1.245
IP lookup adafruit.com: 104.20.39.240
Ping google.com: 30 ms
Fetching text from http://wifitest.adafruit.com/testwifi/index.html
----------------------------------------
This is a test of Adafruit WiFi!
If you can read this, its working :)
----------------------------------------
Fetching json from http://wifitest.adafruit.com/testwifi/sample.json
----------------------------------------
{'fun': True, 'company': 'Adafruit', 'founded': 2005, 'primes': [2, 3, 5], 'pi': 3.14, 'mixed': [False, None, 3, True, 2.7, 'cheese']}
----------------------------------------
Done!
Going over the example above, here's a breakdown of what the program is doing:
- Initialize the ESP32 over SPI using the SPI port and 3 control pins:
esp32_cs = DigitalInOut(board.ESP_CS)
esp32_ready = DigitalInOut(board.ESP_BUSY)
esp32_reset = DigitalInOut(board.ESP_RESET)
#...
else:
spi = busio.SPI(board.SCK, board.MOSI, board.MISO)
esp = adafruit_esp32spi.ESP_SPIcontrol(spi, esp32_cs, esp32_ready, esp32_reset)
- Get the socket pool and the SSL context, and then tell the
adafruit_requestslibrary about them.
pool = adafruit_connection_manager.get_radio_socketpool(esp) ssl_context = adafruit_connection_manager.get_radio_ssl_context(esp) requests = adafruit_requests.Session(pool, ssl_context)
- Verify an ESP32 is found, checks the firmware and MAC address
if esp.status == adafruit_esp32spi.WL_IDLE_STATUS:
print("ESP32 found and in idle mode")
print("Firmware vers.", esp.firmware_version)
print("MAC addr:", ":".join("%02X" % byte for byte in esp.MAC_address))
- Perform a scan of all access points it can see and print out the name and signal strength.
for ap in esp.scan_networks():
print("\t%-23s RSSI: %d" % (ap.ssid, ap.rssi))
- Connect to the AP we've defined here, then print out the local IP address. Then attempt to do a domain name lookup and ping google.com to check network connectivity. (Note sometimes the ping fails or takes a while; this isn't a big deal.)
print("Connecting to AP...")
while not esp.is_connected:
try:
esp.connect_AP(ssid, password)
except OSError as e:
print("could not connect to AP, retrying: ", e)
continue
print("Connected to", esp.ap_info.ssid, "\tRSSI:", esp.ap_info.rssi)
print("My IP address is", esp.ipv4_address)
print(
"IP lookup adafruit.com: %s" % esp.pretty_ip(esp.get_host_by_name("adafruit.com"))
)
Now we're getting to the really interesting part of the example program. We've written a library for web fetching web data, named adafruit_requests. It is a lot like the regular Python library named requests. This library allows you to send HTTP and HTTPS requests easily and provides helpful methods for parsing the response from the server.
- Here is the part of the example program is fetching text data from a URL.
TEXT_URL = "http://wifitest.adafruit.com/testwifi/index.html" # Further up in the program
# ...
print("Fetching text from", TEXT_URL)
r = requests.get(TEXT_URL)
print('-' * 40)
print(r.text)
print('-' * 40)
r.close()
- Finally, here the program is fetching some JSON data. The
adafruit_requestslibrary will parse the JSON into a Python dictionary whose structure is the same as the structure of the JSON.
JSON_URL = "http://wifitest.adafruit.com/testwifi/sample.json" # Further up in the program
# ...
print("Fetching json from", JSON_URL)
r = requests.get(JSON_URL)
print('-' * 40)
print(r.json())
print('-' * 40)
r.close()
Advanced Requests Usage
Want to send custom HTTP headers, parse the response as raw bytes, or handle a response's http status code in your CircuitPython code?
We've written an example to show advanced usage of the requests module below.
To use with CircuitPython, you need to first install a few libraries, into the lib folder on your CIRCUITPY drive. Then you need to update code.py with the example script.
Thankfully, we can do this in one go. In the example below, click the Download Project Bundle button below to download the necessary libraries and the code.py file in a zip file. Extract the contents of the zip file, open the directory examples/ and then click on the directory that matches the version of CircuitPython you're using and copy the contents of that directory to your CIRCUITPY drive.
# SPDX-FileCopyrightText: 2021 ladyada for Adafruit Industries
# SPDX-License-Identifier: MIT
import os
import adafruit_connection_manager
import board
import busio
from adafruit_esp32spi import adafruit_esp32spi
from digitalio import DigitalInOut
import adafruit_requests
# Get WiFi details, ensure these are setup in settings.toml
ssid = os.getenv("CIRCUITPY_WIFI_SSID")
password = os.getenv("CIRCUITPY_WIFI_PASSWORD")
# If you are using a board with pre-defined ESP32 Pins:
esp32_cs = DigitalInOut(board.ESP_CS)
esp32_ready = DigitalInOut(board.ESP_BUSY)
esp32_reset = DigitalInOut(board.ESP_RESET)
# If you have an externally connected ESP32:
# esp32_cs = DigitalInOut(board.D9)
# esp32_ready = DigitalInOut(board.D10)
# esp32_reset = DigitalInOut(board.D5)
# If you have an AirLift Featherwing or ItsyBitsy Airlift:
# esp32_cs = DigitalInOut(board.D13)
# esp32_ready = DigitalInOut(board.D11)
# esp32_reset = DigitalInOut(board.D12)
spi = busio.SPI(board.SCK, board.MOSI, board.MISO)
radio = adafruit_esp32spi.ESP_SPIcontrol(spi, esp32_cs, esp32_ready, esp32_reset)
print("Connecting to AP...")
while not radio.is_connected:
try:
radio.connect_AP(ssid, password)
except RuntimeError as e:
print("could not connect to AP, retrying: ", e)
continue
print("Connected to", str(radio.ap_info.ssid, "utf-8"), "\tRSSI:", radio.ap_info.rssi)
# Initialize a requests session
pool = adafruit_connection_manager.get_radio_socketpool(radio)
ssl_context = adafruit_connection_manager.get_radio_ssl_context(radio)
requests = adafruit_requests.Session(pool, ssl_context)
JSON_GET_URL = "https://httpbin.org/get"
# Define a custom header as a dict.
headers = {"user-agent": "blinka/1.0.0"}
print(f"Fetching JSON data from {JSON_GET_URL}...")
with requests.get(JSON_GET_URL, headers=headers) as response:
print("-" * 60)
json_data = response.json()
headers = json_data["headers"]
print("Response's Custom User-Agent Header: {0}".format(headers["User-Agent"]))
print("-" * 60)
# Read Response's HTTP status code
print("Response HTTP Status Code: ", response.status_code)
print("-" * 60)
Your CIRCUITPY drive should now look similar to the following image:
WiFi Manager
The way the examples above connect to WiFi works but it's a little finicky. Since WiFi is not necessarily so reliable, you may have disconnects and need to reconnect. For more advanced uses, we recommend using the WiFiManager class. It will wrap the connection/status/requests loop for you - reconnecting if WiFi drops, resetting the ESP32 if it gets into a bad state, etc.
Here's a more advanced example that shows using the WiFiManager and also how to fetch the current time from a web source.
# SPDX-FileCopyrightText: 2019 ladyada for Adafruit Industries
# SPDX-License-Identifier: MIT
import time
from os import getenv
import board
import busio
import neopixel
import rtc
from digitalio import DigitalInOut
# Use these imports for adafruit_esp32spi version 11.0.0 and up.
# Note that frozen libraries may not be up to date.
# import adafruit_esp32spi
# from adafruit_esp32spi.wifimanager import WiFiManager
from adafruit_esp32spi import adafruit_esp32spi
from adafruit_esp32spi.adafruit_esp32spi_wifimanager import WiFiManager
# Get wifi details and more from a settings.toml file
# tokens used by this Demo: CIRCUITPY_WIFI_SSID, CIRCUITPY_WIFI_PASSWORD
ssid = getenv("CIRCUITPY_WIFI_SSID")
password = getenv("CIRCUITPY_WIFI_PASSWORD")
print("ESP32 local time")
TIME_API = "https://time.now/developer/api/ip"
# If you are using a board with pre-defined ESP32 Pins:
esp32_cs = DigitalInOut(board.ESP_CS)
esp32_ready = DigitalInOut(board.ESP_BUSY)
esp32_reset = DigitalInOut(board.ESP_RESET)
# If you have an externally connected ESP32:
# esp32_cs = DigitalInOut(board.D9)
# esp32_ready = DigitalInOut(board.D10)
# esp32_reset = DigitalInOut(board.D5)
# Secondary (SCK1) SPI used to connect to WiFi board on Arduino Nano Connect RP2040
if "SCK1" in dir(board):
spi = busio.SPI(board.SCK1, board.MOSI1, board.MISO1)
else:
spi = busio.SPI(board.SCK, board.MOSI, board.MISO)
esp = adafruit_esp32spi.ESP_SPIcontrol(spi, esp32_cs, esp32_ready, esp32_reset)
"""Use below for Most Boards"""
status_pixel = neopixel.NeoPixel(board.NEOPIXEL, 1, brightness=0.2)
"""Uncomment below for ItsyBitsy M4"""
# status_pixel = dotstar.DotStar(board.APA102_SCK, board.APA102_MOSI, 1, brightness=0.2)
"""Uncomment below for an externally defined RGB LED (including Arduino Nano Connect)"""
# import adafruit_rgbled
# from adafruit_esp32spi import PWMOut
# RED_LED = PWMOut.PWMOut(esp, 26)
# GREEN_LED = PWMOut.PWMOut(esp, 27)
# BLUE_LED = PWMOut.PWMOut(esp, 25)
# status_pixel = adafruit_rgbled.RGBLED(RED_LED, BLUE_LED, GREEN_LED)
wifi = WiFiManager(esp, ssid, password, status_pixel=status_pixel)
the_rtc = rtc.RTC()
response = None
while True:
try:
print("Fetching json from", TIME_API)
response = wifi.get(TIME_API)
break
except OSError as e:
print("Failed to get data, retrying\n", e)
continue
json = response.json()
current_time = json["datetime"]
the_date, the_time = current_time.split("T")
year, month, mday = (int(x) for x in the_date.split("-"))
the_time = the_time.split(".")[0]
hours, minutes, seconds = (int(x) for x in the_time.split(":"))
# We can also fill in these extra nice things
year_day = json["day_of_year"]
week_day = json["day_of_week"]
is_dst = json["dst"]
now = time.struct_time((year, month, mday, hours, minutes, seconds, week_day, year_day, is_dst))
print(now)
the_rtc.datetime = now
while True:
print(time.localtime())
time.sleep(1)
Further Information
For more information on the basics of doing networking in CircuitPython, see this guide:
Page last edited March 08, 2024
Text editor powered by tinymce.
Code the Thingiverse Thing Viewer
Thingiverse Apps API
As with most Internet of Things (IoT) projects on the PyPortal, we are able to perform our dynamic data and image gathering through the wonderful magic of a REST Application Programming Interface (API) request, that returns a JSON text file.
The Thingiverse Apps API makes it easy for us to request essential info about a Thing, including its name, URL, and image.
In order to use the Thingiverse API, you'll need to sign up for a free developer apps account. This will grant you your own Thingiverse app token needed for running queries.
Here's how to sign up:
- First, log in or sign up for a regular Thingiverse account here https://accounts.thingiverse.com/register
- Once you're logged in, go to the Apps create page here: https://www.thingiverse.com/apps/create
- On this page, click the Web App radio button
- In the Basic Information area, enter an App Name, such as PyPortal Thingiverse Viewer (if you use a name that's already in use, you'll need to adjust it slightly to make it unique). Also enter an App Description
- Click the checkbox to agree to the MakerBot API terms
- Up at the top, right corner of the screen, click on the Create & Get App Key button
This will generate your Client ID, Client Secret, and App Token keys. Do not share these, keep them secret! You'll need to copy and paste them into a secure note somewhere on your computer. Later, we'll enter the App Token into the PyPortal's secrets.py file in order to query the Thingiverse API in read-only mode.
Adafruit IO Image Converter Server
In order to use the Adafruit image converter, this project will require you to have an Adafruit IO username and key. Adafruit IO is absolutely free to use, but you'll need to log in with your Adafruit account to use it. If you don't already have an Adafruit login, create one here.
If you haven't used Adafruit IO before, check out this guide for more info.
Once you have logged into your account, there are two pieces of information you'll need to place in your settings.toml file: Adafruit IO username, and Adafruit IO key. Head to io.adafruit.com and simply click the View AIO Key link on the left hand side of the Adafruit IO page to get this information.
Then, add them to the settings.toml file, along with your Thingiverse App Token like this:
CIRCUITPY_WIFI_SSID = "your_wifi_ssid" CIRCUITPY_WIFI_PASSWORD = "your_wifi_password" AIO_USERNAME = "your_aio_username" AIO_KEY = "your_aio_key" THINGIVERSE_TOKEN = "very_long_thingiverse_app_token"
At this point make sure your WiFi SSID and password are also in settings.toml. You only have to do this once when you set it up. If you move the PyPortal to a different WiFi served location, use a text editor to enter the new values in this file.
Add CircuitPython Code and Assets
In the embedded code element below, click on the Download Project Bundle button, and save the .zip archive file to your computer.
Then, uncompress the .zip file, it will unpack to a folder named PyPortal_Thingiverse.
Copy the contents of the PyPortal_Thingiverse directory to your PyPortal CIRCUITPY drive.
Editing the Code
You can edit the code.py file with any text editor you like. Adafruit suggests installing the free Mu Python editor as it's super handy, recognizes Adafruit boards, and has a built in serial monitor/REPL to interact with the board. Find out more about Mu here.
boot.py
We're using a special file to ensure the .bmp cache writes to the flash properly. This is the unsafe_boot.py file you copied to the drive. Rename it to boot.py now.
Note that you'll see this scary looking text appear during restart, don't worry, it's supposed to say that!
**************** WARNING ******************
Using the filesystem as a write-able cache!
This is risky behavior, backup your files!
**************** WARNING ******************
This is what the final contents of the CIRCUITPY drive will look like:
# SPDX-FileCopyrightText: 2019 Limor Fried for Adafruit Industries
#
# SPDX-License-Identifier: MIT
import os
import time
import random
import board
import adafruit_pyportal
# Set up where we'll be fetching data from
NUM_THINGS=25 # how many things to select from (we randomize between em)
DATA_SOURCE = "https://api.thingiverse.com/users/adafruit/things?per_page="+str(NUM_THINGS)
DATA_SOURCE += "&access_token=" + os.getenv("THINGIVERSE_TOKEN")
IMAGE_LOCATION = [0, "thumbnail"]
TITLE_LOCATION = [0, "name"]
URL_LOCATION = [0, "public_url"]
# determine the current working directory needed so we know where to find files
cwd = ("/"+__file__).rsplit('/', 1)[0]
pyportal = adafruit_pyportal.PyPortal(url=DATA_SOURCE,
json_path=(TITLE_LOCATION, URL_LOCATION, IMAGE_LOCATION),
status_neopixel=board.NEOPIXEL,
default_bg=cwd+"/thingiverse_background.bmp",
text_font=cwd+"/fonts/Arial-12.bdf",
text_position=((5, 10), (5, 230)),
text_color=(0x00FF00, 0x00FF00),
text_transform=(None, None))
pyportal.preload_font()
while True:
response = None
try:
response = pyportal.fetch()
print("Response is", response)
pyportal.set_background(None)
image_url = response[2].replace('_thumb_medium.', '_display_large.')
pyportal.wget(pyportal.image_converter_url(image_url,320, 240,color_depth=16),
"/cache.bmp",
chunk_size=512)
pyportal.set_background("/cache.bmp")
except (IndexError, RuntimeError, ValueError) as e:
print("Some error occured, retrying! -", e)
# next thingy should be random!
thingy = random.randint(0, NUM_THINGS - 1)
URL_LOCATION[0] = TITLE_LOCATION[0] = IMAGE_LOCATION[0] = thingy
time.sleep(60 * 3) # cycle every 3 minutes
How It Works
The Thingiverse Viewer works like this: first, when it starts up it connects to your Wifi access point as specified (and authenticated) in the secrets.py file.
Background Splash Screen
Next, it displays the thingiverse_background.bmp image file splash screen. This is a 320x240 pixel RGB 16-bit raster graphic in .bmp format.
JSON
In order to retrieve images, we'll be making a query to the Thingiverse API.
When you make a request of the server, you'll get a JSON file returned as the response.
In fact, you can run the same query as the PyPortal does to see the result. Copy and paste this link https://api.thingiverse.com/users/adafruit/things?per_page=1&access_token= into your browser, where you paste your Thingiverse token in at the end of that URL.
When you enter this in your web browser, you'll see a result returned like this (in the actual code we request 25 things and then randomly pick which one to show, so you may see a different one than this):
[
{
"id": 3553481,
"name": "Prop-Maker Keyblade",
"url": "https://api.thingiverse.com/things/3553481",
"public_url": "https://www.thingiverse.com/thing:3553481",
"thumbnail": "https://cdn.thingiverse.com/renders/e2/a8/15/5b/c1/41109f706f73d0cbaa74e0f38e597173_thumb_medium.jpg",
"creator": {
"id": 491,
"name": "adafruit",
"first_name": "Adafruit",
"last_name": "Industries",
"url": "https://api.thingiverse.com/users/adafruit",
"public_url": "https://www.thingiverse.com/adafruit",
"thumbnail": "https://cdn.thingiverse.com/renders/30/1b/8b/a1/70/adafruit-tv-avatar_thumb_medium.jpg"
},
"is_private": false,
"is_purchased": false,
"is_published": true
}
]
That result is a JSON (JavaScript Object Notation) array. It is comprised of a single element with a number key:value pairs, or sub-hierarchies of additional key:value pairs. For example, there is one key called name which has a value of "Prop-Maker Keyblade"
which is expressed this way:
"name":"Prop-Maker Keyblade"
Since this JSON object array has a consistent way to return the results to us, the code we're running on the PyPortal can easily parse the data and display it!
The thumbnail key leads to this value: "https://cdn.thingiverse.com/renders/e2/a8/15/5b/c1/41109f706f73d0cbaa74e0f38e597173_thumb_medium.jpg"
Here's the image at that url:
In our code, we'll do a string substitution in order to get the "_display_large" version of that image in place of the "_thumb_medium" version. Here's what that looks like:
We also get the public_url key, which is the short URL that will be displayed at the bottom of the screen, in this case, "https://www.thingiverse.com/thing:3553481"
You can see how it's done in this part of code.py:
NUM_THINGS=25 # how many things to select from (we randomize between em) DATA_SOURCE = "https://api.thingiverse.com/users/adafruit/things?per_page="+str(NUM_THINGS) DATA_SOURCE += "&access_token=" + secrets['thingiverse_token'] IMAGE_LOCATION = [0, "thumbnail"] TITLE_LOCATION = [0, "name"] URL_LOCATION = [0, "public_url"]
Then, in the pyportal query we ask for the image name from that URL to get the path to the .jpeg image file, as well as the name and url values.
pyportal = adafruit_pyportal.PyPortal(url=DATA_SOURCE,
json_path=(TITLE_LOCATION, URL_LOCATION, IMAGE_LOCATION),
status_neopixel=board.NEOPIXEL,
default_bg=cwd+"/thingiverse_background.bmp",
text_font=cwd+"/fonts/Arial-12.bdf",
text_position=((5, 10), (5, 230)),
text_color=(0x00FF00, 0x00FF00),
text_transform=(None, None))
With all of this prepared, during the main loop of while True: the code will query the page for the JSON data.
The first of the 25 things will be selected. When it gets the path of the .jpeg file, the pyportal library passes it along to an Adafruit IO image converter server where the file is converted into the format the PyPortal can display, a 320x240 pixel RGB 16-bit .bmp.
This image is then cached onto the PyPortal's storage and displayed on the PyPortal TFT screen.
Then, the text for both the name and public_url values are drawn on top of the image background, using the specified font, color, and position in the PyPortal constructor.
Note, we're also specifying the text_wrap amount so that lines of text won't get cut off.
This updates every three minutes, so your Things stay fresh!
Speaking of 3D printing -- if you'd like to make your own 3D printed PyPortal stand, check out the Thingiverse model and instructions here!
If you have AdaBox 011, the laser cut acrylic stand also works very well.
Page last edited March 08, 2024
Text editor powered by tinymce.