moving things around and adding examples for mic hat code
This commit is contained in:
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|
||||
# Byte-compiled / optimized / DLL files
|
||||
__pycache__/
|
||||
*.py[cod]
|
||||
*$py.class
|
||||
|
||||
# C extensions
|
||||
*.so
|
||||
|
||||
# Distribution / packaging
|
||||
.Python
|
||||
build/
|
||||
develop-eggs/
|
||||
dist/
|
||||
downloads/
|
||||
eggs/
|
||||
.eggs/
|
||||
lib/
|
||||
lib64/
|
||||
parts/
|
||||
sdist/
|
||||
var/
|
||||
wheels/
|
||||
share/python-wheels/
|
||||
*.egg-info/
|
||||
.installed.cfg
|
||||
*.egg
|
||||
MANIFEST
|
||||
|
||||
# PyInstaller
|
||||
# Usually these files are written by a python script from a template
|
||||
# before PyInstaller builds the exe, so as to inject date/other infos into it.
|
||||
*.manifest
|
||||
*.spec
|
||||
|
||||
# Installer logs
|
||||
pip-log.txt
|
||||
pip-delete-this-directory.txt
|
||||
|
||||
# Unit test / coverage reports
|
||||
htmlcov/
|
||||
.tox/
|
||||
.nox/
|
||||
.coverage
|
||||
.coverage.*
|
||||
.cache
|
||||
nosetests.xml
|
||||
coverage.xml
|
||||
*.cover
|
||||
*.py,cover
|
||||
.hypothesis/
|
||||
.pytest_cache/
|
||||
cover/
|
||||
|
||||
# Translations
|
||||
*.mo
|
||||
*.pot
|
||||
|
||||
# Django stuff:
|
||||
*.log
|
||||
local_settings.py
|
||||
db.sqlite3
|
||||
db.sqlite3-journal
|
||||
|
||||
# Flask stuff:
|
||||
instance/
|
||||
.webassets-cache
|
||||
|
||||
# Scrapy stuff:
|
||||
.scrapy
|
||||
|
||||
# Sphinx documentation
|
||||
docs/_build/
|
||||
|
||||
# PyBuilder
|
||||
.pybuilder/
|
||||
target/
|
||||
|
||||
# Jupyter Notebook
|
||||
.ipynb_checkpoints
|
||||
|
||||
# IPython
|
||||
profile_default/
|
||||
ipython_config.py
|
||||
|
||||
# pyenv
|
||||
# For a library or package, you might want to ignore these files since the code is
|
||||
# intended to run in multiple environments; otherwise, check them in:
|
||||
# .python-version
|
||||
|
||||
# pipenv
|
||||
# According to pypa/pipenv#598, it is recommended to include Pipfile.lock in version control.
|
||||
# However, in case of collaboration, if having platform-specific dependencies or dependencies
|
||||
# having no cross-platform support, pipenv may install dependencies that don't work, or not
|
||||
# install all needed dependencies.
|
||||
#Pipfile.lock
|
||||
|
||||
# PEP 582; used by e.g. github.com/David-OConnor/pyflow
|
||||
__pypackages__/
|
||||
|
||||
# Celery stuff
|
||||
celerybeat-schedule
|
||||
celerybeat.pid
|
||||
|
||||
# SageMath parsed files
|
||||
*.sage.py
|
||||
|
||||
# Environments
|
||||
.env
|
||||
.venv
|
||||
env/
|
||||
venv/
|
||||
ENV/
|
||||
env.bak/
|
||||
venv.bak/
|
||||
|
||||
# Spyder project settings
|
||||
.spyderproject
|
||||
.spyproject
|
||||
|
||||
# Rope project settings
|
||||
.ropeproject
|
||||
|
||||
# mkdocs documentation
|
||||
/site
|
||||
|
||||
# mypy
|
||||
.mypy_cache/
|
||||
.dmypy.json
|
||||
dmypy.json
|
||||
|
||||
# Pyre type checker
|
||||
.pyre/
|
||||
|
||||
# pytype static type analyzer
|
||||
.pytype/
|
||||
|
||||
# Cython debug symbols
|
||||
cython_debug/
|
||||
|
||||
@@ -0,0 +1,340 @@
|
||||
GNU GENERAL PUBLIC LICENSE
|
||||
Version 2, June 1991
|
||||
|
||||
Copyright (C) 1989, 1991 Free Software Foundation, Inc., <http://fsf.org/>
|
||||
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
|
||||
Everyone is permitted to copy and distribute verbatim copies
|
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of this license document, but changing it is not allowed.
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|
||||
Preamble
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||||
|
||||
The licenses for most software are designed to take away your
|
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freedom to share and change it. By contrast, the GNU General Public
|
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License is intended to guarantee your freedom to share and change free
|
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software--to make sure the software is free for all its users. This
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General Public License applies to most of the Free Software
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Foundation's software and to any other program whose authors commit to
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using it. (Some other Free Software Foundation software is covered by
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the GNU Lesser General Public License instead.) You can apply it to
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your programs, too.
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When we speak of free software, we are referring to freedom, not
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price. Our General Public Licenses are designed to make sure that you
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have the freedom to distribute copies of free software (and charge for
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if you want it, that you can change the software or use pieces of it
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in new free programs; and that you know you can do these things.
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To protect your rights, we need to make restrictions that forbid
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These restrictions translate to certain responsibilities for you if you
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distribute copies of the software, or if you modify it.
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For example, if you distribute copies of such a program, whether
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We protect your rights with two steps: (1) copyright the software, and
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Also, for each author's protection and ours, we want to make certain
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Finally, any free program is threatened constantly by software
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The precise terms and conditions for copying, distribution and
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GNU GENERAL PUBLIC LICENSE
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TERMS AND CONDITIONS FOR COPYING, DISTRIBUTION AND MODIFICATION
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||||
0. This License applies to any program or other work which contains
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These requirements apply to the modified work as a whole. If
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Thus, it is not the intent of this section to claim rights or contest
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In addition, mere aggregation of another work not based on the Program
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The source code for a work means the preferred form of the work for
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If any portion of this section is held invalid or unenforceable under
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It is not the purpose of this section to induce you to infringe any
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END OF TERMS AND CONDITIONS
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How to Apply These Terms to Your New Programs
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||||
If you develop a new program, and you want it to be of the greatest
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||||
To do so, attach the following notices to the program. It is safest
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|
||||
{description}
|
||||
Copyright (C) {year} {fullname}
|
||||
|
||||
This program is free software; you can redistribute it and/or modify
|
||||
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||||
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|
||||
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||||
|
||||
This program is distributed in the hope that it will be useful,
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||||
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||||
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||||
|
||||
You should have received a copy of the GNU General Public License along
|
||||
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|
||||
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|
||||
Also add information on how to contact you by electronic and paper mail.
|
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|
||||
If the program is interactive, make it output a short notice like this
|
||||
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|
||||
|
||||
Gnomovision version 69, Copyright (C) year name of author
|
||||
Gnomovision comes with ABSOLUTELY NO WARRANTY; for details type `show w'.
|
||||
This is free software, and you are welcome to redistribute it
|
||||
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||||
|
||||
The hypothetical commands `show w' and `show c' should show the appropriate
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You should also get your employer (if you work as a programmer) or your
|
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|
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||||
|
||||
Yoyodyne, Inc., hereby disclaims all copyright interest in the program
|
||||
`Gnomovision' (which makes passes at compilers) written by James Hacker.
|
||||
|
||||
{signature of Ty Coon}, 1 April 1989
|
||||
Ty Coon, President of Vice
|
||||
|
||||
This General Public License does not permit incorporating your program into
|
||||
proprietary programs. If your program is a subroutine library, you may
|
||||
consider it more useful to permit linking proprietary applications with the
|
||||
library. If this is what you want to do, use the GNU Lesser General
|
||||
Public License instead of this License.
|
||||
|
||||
@@ -0,0 +1,29 @@
|
||||
MIC HAT for Raspberry Pi
|
||||
========================
|
||||
|
||||
To build voice enabled projects with Google Assistant, Amazon Alexa Voice service and etc.
|
||||
|
||||
[](https://www.seeedstudio.com/ReSpeaker-2-Mics-Pi-HAT-p-2874.html)
|
||||
|
||||
|
||||
## Requirements
|
||||
+ [seeed-voicecard](https://github.com/respeaker/seeed-voicecard), the kernel driver for on-board WM8960 codec
|
||||
+ [spidev](https://pypi.python.org/pypi/spidev) for on-board SPI interface APA102 LEDs
|
||||
+ [google-assistant-library](https://github.com/googlesamples/assistant-sdk-python/tree/master/google-assistant-sdk/googlesamples/assistant/library)
|
||||
+ [avs](https://github.com/respeaker/avs), Alexa Voice Service client python library
|
||||
+ [voice-engine](https://github.com/voice-engine/voice-engine)
|
||||
|
||||
## Setup
|
||||
1. Go to [seeed-voicecard](https://github.com/respeaker/seeed-voicecard) and install it
|
||||
2. Use `raspi-config` to enable SPI.
|
||||
3. Install `spidev` (`pip install spidev`).
|
||||
4. Run `python pixels.py` to test the pixels.
|
||||
|
||||
## Build a Google Home like device with Google Assistant SDK
|
||||
1. Setup [google-assistant-library](https://github.com/googlesamples/assistant-sdk-python/tree/master/google-assistant-sdk/googlesamples/assistant/library)
|
||||
2. Run `python google_assistant.py --device_model_id 'respeaker-xyz'`
|
||||
|
||||
## Build an Echo like device with Alexa Voice Service
|
||||
1. `pip install avs voice-engine`
|
||||
2. Go to [snowboy](https://github.com/Kitt-AI/snowboy) and install its python binding.
|
||||
3. `python alexa.py`
|
||||
Executable
+246
@@ -0,0 +1,246 @@
|
||||
"""
|
||||
The code is based on https://github.com/tinue/APA102_Pi
|
||||
This is the main driver module for APA102 LEDs
|
||||
|
||||
License: GPL V2
|
||||
"""
|
||||
|
||||
import spidev
|
||||
from math import ceil
|
||||
|
||||
RGB_MAP = { 'rgb': [3, 2, 1], 'rbg': [3, 1, 2], 'grb': [2, 3, 1],
|
||||
'gbr': [2, 1, 3], 'brg': [1, 3, 2], 'bgr': [1, 2, 3] }
|
||||
|
||||
class APA102:
|
||||
"""
|
||||
Driver for APA102 LEDS (aka "DotStar").
|
||||
|
||||
(c) Martin Erzberger 2016-2017
|
||||
|
||||
My very first Python code, so I am sure there is a lot to be optimized ;)
|
||||
|
||||
Public methods are:
|
||||
- set_pixel
|
||||
- set_pixel_rgb
|
||||
- show
|
||||
- clear_strip
|
||||
- cleanup
|
||||
|
||||
Helper methods for color manipulation are:
|
||||
- combine_color
|
||||
- wheel
|
||||
|
||||
The rest of the methods are used internally and should not be used by the
|
||||
user of the library.
|
||||
|
||||
Very brief overview of APA102: An APA102 LED is addressed with SPI. The bits
|
||||
are shifted in one by one, starting with the least significant bit.
|
||||
|
||||
An LED usually just forwards everything that is sent to its data-in to
|
||||
data-out. While doing this, it remembers its own color and keeps glowing
|
||||
with that color as long as there is power.
|
||||
|
||||
An LED can be switched to not forward the data, but instead use the data
|
||||
to change it's own color. This is done by sending (at least) 32 bits of
|
||||
zeroes to data-in. The LED then accepts the next correct 32 bit LED
|
||||
frame (with color information) as its new color setting.
|
||||
|
||||
After having received the 32 bit color frame, the LED changes color,
|
||||
and then resumes to just copying data-in to data-out.
|
||||
|
||||
The really clever bit is this: While receiving the 32 bit LED frame,
|
||||
the LED sends zeroes on its data-out line. Because a color frame is
|
||||
32 bits, the LED sends 32 bits of zeroes to the next LED.
|
||||
As we have seen above, this means that the next LED is now ready
|
||||
to accept a color frame and update its color.
|
||||
|
||||
So that's really the entire protocol:
|
||||
- Start by sending 32 bits of zeroes. This prepares LED 1 to update
|
||||
its color.
|
||||
- Send color information one by one, starting with the color for LED 1,
|
||||
then LED 2 etc.
|
||||
- Finish off by cycling the clock line a few times to get all data
|
||||
to the very last LED on the strip
|
||||
|
||||
The last step is necessary, because each LED delays forwarding the data
|
||||
a bit. Imagine ten people in a row. When you yell the last color
|
||||
information, i.e. the one for person ten, to the first person in
|
||||
the line, then you are not finished yet. Person one has to turn around
|
||||
and yell it to person 2, and so on. So it takes ten additional "dummy"
|
||||
cycles until person ten knows the color. When you look closer,
|
||||
you will see that not even person 9 knows its own color yet. This
|
||||
information is still with person 2. Essentially the driver sends additional
|
||||
zeroes to LED 1 as long as it takes for the last color frame to make it
|
||||
down the line to the last LED.
|
||||
"""
|
||||
# Constants
|
||||
MAX_BRIGHTNESS = 0b11111 # Safeguard: Set to a value appropriate for your setup
|
||||
LED_START = 0b11100000 # Three "1" bits, followed by 5 brightness bits
|
||||
|
||||
def __init__(self, num_led, global_brightness=MAX_BRIGHTNESS,
|
||||
order='rgb', bus=0, device=1, max_speed_hz=8000000):
|
||||
self.num_led = num_led # The number of LEDs in the Strip
|
||||
order = order.lower()
|
||||
self.rgb = RGB_MAP.get(order, RGB_MAP['rgb'])
|
||||
# Limit the brightness to the maximum if it's set higher
|
||||
if global_brightness > self.MAX_BRIGHTNESS:
|
||||
self.global_brightness = self.MAX_BRIGHTNESS
|
||||
else:
|
||||
self.global_brightness = global_brightness
|
||||
|
||||
self.leds = [self.LED_START,0,0,0] * self.num_led # Pixel buffer
|
||||
self.spi = spidev.SpiDev() # Init the SPI device
|
||||
self.spi.open(bus, device) # Open SPI port 0, slave device (CS) 1
|
||||
# Up the speed a bit, so that the LEDs are painted faster
|
||||
if max_speed_hz:
|
||||
self.spi.max_speed_hz = max_speed_hz
|
||||
|
||||
def clock_start_frame(self):
|
||||
"""Sends a start frame to the LED strip.
|
||||
|
||||
This method clocks out a start frame, telling the receiving LED
|
||||
that it must update its own color now.
|
||||
"""
|
||||
self.spi.xfer2([0] * 4) # Start frame, 32 zero bits
|
||||
|
||||
|
||||
def clock_end_frame(self):
|
||||
"""Sends an end frame to the LED strip.
|
||||
|
||||
As explained above, dummy data must be sent after the last real colour
|
||||
information so that all of the data can reach its destination down the line.
|
||||
The delay is not as bad as with the human example above.
|
||||
It is only 1/2 bit per LED. This is because the SPI clock line
|
||||
needs to be inverted.
|
||||
|
||||
Say a bit is ready on the SPI data line. The sender communicates
|
||||
this by toggling the clock line. The bit is read by the LED
|
||||
and immediately forwarded to the output data line. When the clock goes
|
||||
down again on the input side, the LED will toggle the clock up
|
||||
on the output to tell the next LED that the bit is ready.
|
||||
|
||||
After one LED the clock is inverted, and after two LEDs it is in sync
|
||||
again, but one cycle behind. Therefore, for every two LEDs, one bit
|
||||
of delay gets accumulated. For 300 LEDs, 150 additional bits must be fed to
|
||||
the input of LED one so that the data can reach the last LED.
|
||||
|
||||
Ultimately, we need to send additional numLEDs/2 arbitrary data bits,
|
||||
in order to trigger numLEDs/2 additional clock changes. This driver
|
||||
sends zeroes, which has the benefit of getting LED one partially or
|
||||
fully ready for the next update to the strip. An optimized version
|
||||
of the driver could omit the "clockStartFrame" method if enough zeroes have
|
||||
been sent as part of "clockEndFrame".
|
||||
"""
|
||||
|
||||
self.spi.xfer2([0xFF] * 4)
|
||||
|
||||
# Round up num_led/2 bits (or num_led/16 bytes)
|
||||
#for _ in range((self.num_led + 15) // 16):
|
||||
# self.spi.xfer2([0x00])
|
||||
|
||||
|
||||
def clear_strip(self):
|
||||
""" Turns off the strip and shows the result right away."""
|
||||
|
||||
for led in range(self.num_led):
|
||||
self.set_pixel(led, 0, 0, 0)
|
||||
self.show()
|
||||
|
||||
|
||||
def set_pixel(self, led_num, red, green, blue, bright_percent=100):
|
||||
"""Sets the color of one pixel in the LED stripe.
|
||||
|
||||
The changed pixel is not shown yet on the Stripe, it is only
|
||||
written to the pixel buffer. Colors are passed individually.
|
||||
If brightness is not set the global brightness setting is used.
|
||||
"""
|
||||
if led_num < 0:
|
||||
return # Pixel is invisible, so ignore
|
||||
if led_num >= self.num_led:
|
||||
return # again, invisible
|
||||
|
||||
# Calculate pixel brightness as a percentage of the
|
||||
# defined global_brightness. Round up to nearest integer
|
||||
# as we expect some brightness unless set to 0
|
||||
brightness = int(ceil(bright_percent*self.global_brightness/100.0))
|
||||
|
||||
# LED startframe is three "1" bits, followed by 5 brightness bits
|
||||
ledstart = (brightness & 0b00011111) | self.LED_START
|
||||
|
||||
start_index = 4 * led_num
|
||||
self.leds[start_index] = ledstart
|
||||
self.leds[start_index + self.rgb[0]] = red
|
||||
self.leds[start_index + self.rgb[1]] = green
|
||||
self.leds[start_index + self.rgb[2]] = blue
|
||||
|
||||
|
||||
def set_pixel_rgb(self, led_num, rgb_color, bright_percent=100):
|
||||
"""Sets the color of one pixel in the LED stripe.
|
||||
|
||||
The changed pixel is not shown yet on the Stripe, it is only
|
||||
written to the pixel buffer.
|
||||
Colors are passed combined (3 bytes concatenated)
|
||||
If brightness is not set the global brightness setting is used.
|
||||
"""
|
||||
self.set_pixel(led_num, (rgb_color & 0xFF0000) >> 16,
|
||||
(rgb_color & 0x00FF00) >> 8, rgb_color & 0x0000FF,
|
||||
bright_percent)
|
||||
|
||||
|
||||
def rotate(self, positions=1):
|
||||
""" Rotate the LEDs by the specified number of positions.
|
||||
|
||||
Treating the internal LED array as a circular buffer, rotate it by
|
||||
the specified number of positions. The number could be negative,
|
||||
which means rotating in the opposite direction.
|
||||
"""
|
||||
cutoff = 4 * (positions % self.num_led)
|
||||
self.leds = self.leds[cutoff:] + self.leds[:cutoff]
|
||||
|
||||
|
||||
def show(self):
|
||||
"""Sends the content of the pixel buffer to the strip.
|
||||
|
||||
Todo: More than 1024 LEDs requires more than one xfer operation.
|
||||
"""
|
||||
self.clock_start_frame()
|
||||
# xfer2 kills the list, unfortunately. So it must be copied first
|
||||
# SPI takes up to 4096 Integers. So we are fine for up to 1024 LEDs.
|
||||
data = list(self.leds)
|
||||
while data:
|
||||
self.spi.xfer2(data[:32])
|
||||
data = data[32:]
|
||||
self.clock_end_frame()
|
||||
|
||||
|
||||
def cleanup(self):
|
||||
"""Release the SPI device; Call this method at the end"""
|
||||
|
||||
self.spi.close() # Close SPI port
|
||||
|
||||
@staticmethod
|
||||
def combine_color(red, green, blue):
|
||||
"""Make one 3*8 byte color value."""
|
||||
|
||||
return (red << 16) + (green << 8) + blue
|
||||
|
||||
|
||||
def wheel(self, wheel_pos):
|
||||
"""Get a color from a color wheel; Green -> Red -> Blue -> Green"""
|
||||
|
||||
if wheel_pos > 255:
|
||||
wheel_pos = 255 # Safeguard
|
||||
if wheel_pos < 85: # Green -> Red
|
||||
return self.combine_color(wheel_pos * 3, 255 - wheel_pos * 3, 0)
|
||||
if wheel_pos < 170: # Red -> Blue
|
||||
wheel_pos -= 85
|
||||
return self.combine_color(255 - wheel_pos * 3, 0, wheel_pos * 3)
|
||||
# Blue -> Green
|
||||
wheel_pos -= 170
|
||||
return self.combine_color(0, wheel_pos * 3, 255 - wheel_pos * 3)
|
||||
|
||||
|
||||
def dump_array(self):
|
||||
"""For debug purposes: Dump the LED array onto the console."""
|
||||
|
||||
print(self.leds)
|
||||
@@ -0,0 +1,15 @@
|
||||
import RPi.GPIO as GPIO
|
||||
import time
|
||||
|
||||
BUTTON = 17
|
||||
|
||||
GPIO.setmode(GPIO.BCM)
|
||||
GPIO.setup(BUTTON, GPIO.IN)
|
||||
|
||||
while True:
|
||||
state = GPIO.input(BUTTON)
|
||||
if state:
|
||||
print("off")
|
||||
else:
|
||||
print("on")
|
||||
time.sleep(1)
|
||||
Executable
+150
@@ -0,0 +1,150 @@
|
||||
"""
|
||||
LED light pattern like Google Home
|
||||
"""
|
||||
|
||||
import apa102
|
||||
import time
|
||||
import threading
|
||||
try:
|
||||
import queue as Queue
|
||||
except ImportError:
|
||||
import Queue as Queue
|
||||
|
||||
|
||||
class Pixels:
|
||||
PIXELS_N = 3
|
||||
|
||||
def __init__(self):
|
||||
self.basis = [0] * 3 * self.PIXELS_N
|
||||
self.basis[0] = 2
|
||||
self.basis[3] = 1
|
||||
self.basis[4] = 1
|
||||
self.basis[7] = 2
|
||||
|
||||
self.colors = [0] * 3 * self.PIXELS_N
|
||||
self.dev = apa102.APA102(num_led=self.PIXELS_N)
|
||||
|
||||
self.next = threading.Event()
|
||||
self.queue = Queue.Queue()
|
||||
self.thread = threading.Thread(target=self._run)
|
||||
self.thread.daemon = True
|
||||
self.thread.start()
|
||||
|
||||
def wakeup(self, direction=0):
|
||||
def f():
|
||||
self._wakeup(direction)
|
||||
|
||||
self.next.set()
|
||||
self.queue.put(f)
|
||||
|
||||
def listen(self):
|
||||
self.next.set()
|
||||
self.queue.put(self._listen)
|
||||
|
||||
def think(self):
|
||||
self.next.set()
|
||||
self.queue.put(self._think)
|
||||
|
||||
def speak(self):
|
||||
self.next.set()
|
||||
self.queue.put(self._speak)
|
||||
|
||||
def off(self):
|
||||
self.next.set()
|
||||
self.queue.put(self._off)
|
||||
|
||||
def _run(self):
|
||||
while True:
|
||||
func = self.queue.get()
|
||||
func()
|
||||
|
||||
def _wakeup(self, direction=0):
|
||||
for i in range(1, 25):
|
||||
colors = [i * v for v in self.basis]
|
||||
self.write(colors)
|
||||
time.sleep(0.01)
|
||||
|
||||
self.colors = colors
|
||||
|
||||
def _listen(self):
|
||||
for i in range(1, 25):
|
||||
colors = [i * v for v in self.basis]
|
||||
self.write(colors)
|
||||
time.sleep(0.01)
|
||||
|
||||
self.colors = colors
|
||||
|
||||
def _think(self):
|
||||
colors = self.colors
|
||||
|
||||
self.next.clear()
|
||||
while not self.next.is_set():
|
||||
colors = colors[3:] + colors[:3]
|
||||
self.write(colors)
|
||||
time.sleep(0.2)
|
||||
|
||||
t = 0.1
|
||||
for i in range(0, 5):
|
||||
colors = colors[3:] + colors[:3]
|
||||
self.write([(v * (4 - i) / 4) for v in colors])
|
||||
time.sleep(t)
|
||||
t /= 2
|
||||
|
||||
# time.sleep(0.5)
|
||||
|
||||
self.colors = colors
|
||||
|
||||
def _speak(self):
|
||||
colors = self.colors
|
||||
gradient = -1
|
||||
position = 24
|
||||
|
||||
self.next.clear()
|
||||
while not self.next.is_set():
|
||||
position += gradient
|
||||
self.write([(v * position / 24) for v in colors])
|
||||
|
||||
if position == 24 or position == 4:
|
||||
gradient = -gradient
|
||||
time.sleep(0.2)
|
||||
else:
|
||||
time.sleep(0.01)
|
||||
|
||||
while position > 0:
|
||||
position -= 1
|
||||
self.write([(v * position / 24) for v in colors])
|
||||
time.sleep(0.01)
|
||||
|
||||
# self._off()
|
||||
|
||||
def _off(self):
|
||||
self.write([0] * 3 * self.PIXELS_N)
|
||||
|
||||
def write(self, colors):
|
||||
for i in range(self.PIXELS_N):
|
||||
self.dev.set_pixel(i, int(colors[3*i]), int(colors[3*i + 1]), int(colors[3*i + 2]))
|
||||
|
||||
self.dev.show()
|
||||
|
||||
|
||||
pixels = Pixels()
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
while True:
|
||||
|
||||
try:
|
||||
pixels.wakeup()
|
||||
time.sleep(3)
|
||||
pixels.think()
|
||||
time.sleep(3)
|
||||
pixels.speak()
|
||||
time.sleep(3)
|
||||
pixels.off()
|
||||
time.sleep(3)
|
||||
except KeyboardInterrupt:
|
||||
break
|
||||
|
||||
|
||||
pixels.off()
|
||||
time.sleep(1)
|
||||
@@ -0,0 +1,53 @@
|
||||
"""
|
||||
Hands-free Voice Assistant with Snowboy and Alexa Voice Service. The wake-up keyword is "alexa"
|
||||
|
||||
Requirement:
|
||||
pip install avs
|
||||
pip install voice-engine
|
||||
"""
|
||||
|
||||
|
||||
import time
|
||||
import logging
|
||||
from voice_engine.source import Source
|
||||
from voice_engine.kws import KWS
|
||||
from avs.alexa import Alexa
|
||||
from pixels import pixels
|
||||
|
||||
|
||||
def main():
|
||||
logging.basicConfig(level=logging.DEBUG)
|
||||
|
||||
src = Source(rate=16000, frames_size=320)
|
||||
kws = KWS(model='alexa', sensitivity=0.8)
|
||||
alexa = Alexa()
|
||||
|
||||
|
||||
alexa.state_listener.on_listening = pixels.listen
|
||||
alexa.state_listener.on_thinking = pixels.think
|
||||
alexa.state_listener.on_speaking = pixels.speak
|
||||
alexa.state_listener.on_finished = pixels.off
|
||||
|
||||
|
||||
src.link(kws)
|
||||
kws.link(alexa)
|
||||
|
||||
def on_detected(keyword):
|
||||
logging.info('detected {}'.format(keyword))
|
||||
alexa.listen()
|
||||
|
||||
kws.set_callback(on_detected)
|
||||
|
||||
src.recursive_start()
|
||||
|
||||
while True:
|
||||
try:
|
||||
time.sleep(1)
|
||||
except KeyboardInterrupt:
|
||||
break
|
||||
|
||||
src.recursive_stop()
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
||||
@@ -0,0 +1,165 @@
|
||||
#!/usr/bin/env python
|
||||
|
||||
# The code is based on google-assistant-sdk's hotword.py
|
||||
# LED light is added to notify its status.
|
||||
#
|
||||
# Licensed under the Apache License, Version 2.0 (the "License");
|
||||
# you may not use this file except in compliance with the License.
|
||||
# You may obtain a copy of the License at
|
||||
#
|
||||
# http://www.apache.org/licenses/LICENSE-2.0
|
||||
#
|
||||
# Unless required by applicable law or agreed to in writing, software
|
||||
# distributed under the License is distributed on an "AS IS" BASIS,
|
||||
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
# See the License for the specific language governing permissions and
|
||||
# limitations under the License.
|
||||
|
||||
|
||||
from __future__ import print_function
|
||||
|
||||
import argparse
|
||||
import os.path
|
||||
import json
|
||||
|
||||
import google.auth.transport.requests
|
||||
import google.oauth2.credentials
|
||||
|
||||
from google.assistant.library import Assistant
|
||||
from google.assistant.library.event import EventType
|
||||
from google.assistant.library.file_helpers import existing_file
|
||||
|
||||
from pixels import pixels
|
||||
|
||||
|
||||
DEVICE_API_URL = 'https://embeddedassistant.googleapis.com/v1alpha2'
|
||||
|
||||
|
||||
def process_device_actions(event, device_id):
|
||||
if 'inputs' in event.args:
|
||||
for i in event.args['inputs']:
|
||||
if i['intent'] == 'action.devices.EXECUTE':
|
||||
for c in i['payload']['commands']:
|
||||
for device in c['devices']:
|
||||
if device['id'] == device_id:
|
||||
if 'execution' in c:
|
||||
for e in c['execution']:
|
||||
if 'params' in e:
|
||||
yield e['command'], e['params']
|
||||
else:
|
||||
yield e['command'], None
|
||||
|
||||
|
||||
def process_event(event, device_id):
|
||||
"""Pretty prints events.
|
||||
|
||||
Prints all events that occur with two spaces between each new
|
||||
conversation and a single space between turns of a conversation.
|
||||
|
||||
Args:
|
||||
event(event.Event): The current event to process.
|
||||
device_id(str): The device ID of the new instance.
|
||||
"""
|
||||
if event.type == EventType.ON_CONVERSATION_TURN_STARTED:
|
||||
print()
|
||||
pixels.wakeup()
|
||||
|
||||
print(event)
|
||||
|
||||
if event.type == EventType.ON_END_OF_UTTERANCE:
|
||||
pixels.think()
|
||||
|
||||
if event.type == EventType.ON_RESPONDING_STARTED:
|
||||
pixels.speak()
|
||||
|
||||
if event.type == EventType.ON_CONVERSATION_TURN_FINISHED:
|
||||
if event.args and event.args['with_follow_on_turn']:
|
||||
pixels.listen()
|
||||
else:
|
||||
pixels.off()
|
||||
print()
|
||||
|
||||
if event.type == EventType.ON_DEVICE_ACTION:
|
||||
for command, params in process_device_actions(event, device_id):
|
||||
print('Do command', command, 'with params', str(params))
|
||||
|
||||
|
||||
def register_device(project_id, credentials, device_model_id, device_id):
|
||||
"""Register the device if needed.
|
||||
|
||||
Registers a new assistant device if an instance with the given id
|
||||
does not already exists for this model.
|
||||
|
||||
Args:
|
||||
project_id(str): The project ID used to register device instance.
|
||||
credentials(google.oauth2.credentials.Credentials): The Google
|
||||
OAuth2 credentials of the user to associate the device
|
||||
instance with.
|
||||
device_model_id(str): The registered device model ID.
|
||||
device_id(str): The device ID of the new instance.
|
||||
"""
|
||||
base_url = '/'.join([DEVICE_API_URL, 'projects', project_id, 'devices'])
|
||||
device_url = '/'.join([base_url, device_id])
|
||||
session = google.auth.transport.requests.AuthorizedSession(credentials)
|
||||
r = session.get(device_url)
|
||||
print(device_url, r.status_code)
|
||||
if r.status_code == 404:
|
||||
print('Registering....')
|
||||
r = session.post(base_url, data=json.dumps({
|
||||
'id': device_id,
|
||||
'model_id': device_model_id,
|
||||
'client_type': 'SDK_LIBRARY'
|
||||
}))
|
||||
if r.status_code != 200:
|
||||
raise Exception('failed to register device: ' + r.text)
|
||||
print('\rDevice registered.')
|
||||
|
||||
|
||||
def main():
|
||||
parser = argparse.ArgumentParser(
|
||||
formatter_class=argparse.RawTextHelpFormatter)
|
||||
parser.add_argument('--credentials', type=existing_file,
|
||||
metavar='OAUTH2_CREDENTIALS_FILE',
|
||||
default=os.path.join(
|
||||
os.path.expanduser('~/.config'),
|
||||
'google-oauthlib-tool',
|
||||
'credentials.json'
|
||||
),
|
||||
help='Path to store and read OAuth2 credentials')
|
||||
parser.add_argument('--device_model_id', type=str,
|
||||
metavar='DEVICE_MODEL_ID', required=True,
|
||||
help='The device model ID registered with Google')
|
||||
parser.add_argument(
|
||||
'--project_id',
|
||||
type=str,
|
||||
metavar='PROJECT_ID',
|
||||
required=False,
|
||||
help='The project ID used to register device instances.')
|
||||
parser.add_argument(
|
||||
'-v',
|
||||
'--version',
|
||||
action='version',
|
||||
version='%(prog)s ' +
|
||||
Assistant.__version_str__())
|
||||
|
||||
args = parser.parse_args()
|
||||
with open(args.credentials, 'r') as f:
|
||||
credentials = google.oauth2.credentials.Credentials(token=None,
|
||||
**json.load(f))
|
||||
|
||||
with Assistant(credentials, args.device_model_id) as assistant:
|
||||
events = assistant.start()
|
||||
|
||||
print('device_model_id:', args.device_model_id + '\n' +
|
||||
'device_id:', assistant.device_id + '\n')
|
||||
|
||||
if args.project_id:
|
||||
register_device(args.project_id, credentials,
|
||||
args.device_model_id, assistant.device_id)
|
||||
|
||||
for event in events:
|
||||
process_event(event, assistant.device_id)
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
main()
|
||||
@@ -0,0 +1,11 @@
|
||||
import pyaudio
|
||||
|
||||
p = pyaudio.PyAudio()
|
||||
info = p.get_host_api_info_by_index(0)
|
||||
numdevices = info.get('deviceCount')
|
||||
|
||||
for i in range(0, numdevices):
|
||||
if (p.get_device_info_by_host_api_device_index(0, i).get('maxInputChannels')) > 0:
|
||||
print("Input Device id ", i, " - ", p.get_device_info_by_host_api_device_index(0, i).get('name'))
|
||||
else:
|
||||
print("Output Device id ", i, " - ", p.get_device_info_by_host_api_device_index(0, i).get('name'))
|
||||
@@ -0,0 +1,36 @@
|
||||
import pyaudio
|
||||
import wave
|
||||
import sys
|
||||
|
||||
# length of data to read.
|
||||
chunk = 1024
|
||||
RESPEAKER_INDEX = 1
|
||||
# validation. If a wave file hasn't been specified, exit.
|
||||
if len(sys.argv) < 2:
|
||||
print("Plays a wave file.\n\n" + "Usage: %s filename.wav" % sys.argv[0])
|
||||
sys.exit(-1)
|
||||
|
||||
# open the file for reading.
|
||||
wf = wave.open(sys.argv[1], 'rb')
|
||||
|
||||
# create an audio object
|
||||
p = pyaudio.PyAudio()
|
||||
|
||||
# open stream based on the wave object which has been input.
|
||||
stream = p.open(format = p.get_format_from_width(wf.getsampwidth()),
|
||||
channels = wf.getnchannels(),
|
||||
rate = wf.getframerate(),
|
||||
output = True,
|
||||
output_device_index = RESPEAKER_INDEX)
|
||||
|
||||
# read data (based on the chunk size)
|
||||
data = wf.readframes(chunk)
|
||||
# play stream (looping from beginning of file to the end)
|
||||
while data:
|
||||
# writing to the stream is what *actually* plays the sound.
|
||||
stream.write(data)
|
||||
data = wf.readframes(chunk)
|
||||
|
||||
# cleanup stuff.
|
||||
stream.close()
|
||||
p.terminate()
|
||||
@@ -0,0 +1,41 @@
|
||||
import pyaudio
|
||||
import wave
|
||||
|
||||
RESPEAKER_RATE = 16000
|
||||
RESPEAKER_CHANNELS = 2
|
||||
RESPEAKER_WIDTH = 2
|
||||
# run getDeviceInfo.py to get index
|
||||
RESPEAKER_INDEX = 1 # refer to input device id
|
||||
CHUNK = 1024
|
||||
RECORD_SECONDS = 5
|
||||
WAVE_OUTPUT_FILENAME = "output.wav"
|
||||
|
||||
p = pyaudio.PyAudio()
|
||||
|
||||
stream = p.open(
|
||||
rate=RESPEAKER_RATE,
|
||||
format=p.get_format_from_width(RESPEAKER_WIDTH),
|
||||
channels=RESPEAKER_CHANNELS,
|
||||
input=True,
|
||||
input_device_index=RESPEAKER_INDEX,)
|
||||
|
||||
print("* recording")
|
||||
|
||||
frames = []
|
||||
|
||||
for i in range(0, int(RESPEAKER_RATE / CHUNK * RECORD_SECONDS)):
|
||||
data = stream.read(CHUNK)
|
||||
frames.append(data)
|
||||
|
||||
print("* done recording")
|
||||
|
||||
stream.stop_stream()
|
||||
stream.close()
|
||||
p.terminate()
|
||||
|
||||
wf = wave.open(WAVE_OUTPUT_FILENAME, 'wb')
|
||||
wf.setnchannels(RESPEAKER_CHANNELS)
|
||||
wf.setsampwidth(p.get_sample_size(p.get_format_from_width(RESPEAKER_WIDTH)))
|
||||
wf.setframerate(RESPEAKER_RATE)
|
||||
wf.writeframes(b''.join(frames))
|
||||
wf.close()
|
||||
@@ -0,0 +1,45 @@
|
||||
import pyaudio
|
||||
import wave
|
||||
import numpy as np
|
||||
|
||||
RESPEAKER_RATE = 16000
|
||||
RESPEAKER_CHANNELS = 2
|
||||
RESPEAKER_WIDTH = 2
|
||||
# run getDeviceInfo.py to get index
|
||||
RESPEAKER_INDEX = 1 # refer to input device id
|
||||
CHUNK = 1024
|
||||
RECORD_SECONDS = 3
|
||||
WAVE_OUTPUT_FILENAME = "output_one_channel.wav"
|
||||
|
||||
p = pyaudio.PyAudio()
|
||||
|
||||
stream = p.open(
|
||||
rate=RESPEAKER_RATE,
|
||||
format=p.get_format_from_width(RESPEAKER_WIDTH),
|
||||
channels=RESPEAKER_CHANNELS,
|
||||
input=True,
|
||||
input_device_index=RESPEAKER_INDEX,)
|
||||
|
||||
print("* recording")
|
||||
|
||||
frames = []
|
||||
|
||||
for i in range(0, int(RESPEAKER_RATE / CHUNK * RECORD_SECONDS)):
|
||||
data = stream.read(CHUNK)
|
||||
# extract channel 0 data from 2 channels, if you want to extract channel 1, please change to [1::2]
|
||||
a = np.fromstring(data,dtype=np.int16)[0::2]
|
||||
frames.append(a.tostring())
|
||||
|
||||
print("* done recording")
|
||||
|
||||
stream.stop_stream()
|
||||
stream.close()
|
||||
p.terminate()
|
||||
|
||||
wf = wave.open(WAVE_OUTPUT_FILENAME, 'wb')
|
||||
wf.setnchannels(1)
|
||||
wf.setsampwidth(p.get_sample_size(p.get_format_from_width(RESPEAKER_WIDTH)))
|
||||
wf.setframerate(RESPEAKER_RATE)
|
||||
wf.writeframes(b''.join(frames))
|
||||
wf.close()
|
||||
|
||||
@@ -0,0 +1,3 @@
|
||||
spidev
|
||||
rpi.gpio
|
||||
pyaudio
|
||||
|
Before Width: | Height: | Size: 192 KiB After Width: | Height: | Size: 192 KiB |
|
Before Width: | Height: | Size: 483 KiB After Width: | Height: | Size: 483 KiB |
Vendored
Some files were not shown because too many files have changed in this diff Show More
Reference in New Issue
Block a user