13 Commits

42 changed files with 125 additions and 390 deletions

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@@ -1,7 +1,14 @@
# To install on robot # To install on robot
``` ```
git clone <url> git clone https://kitsunehosting.net/gitea/Kenwood/lewis-crawler /srv/crawler
cd lewis-crawler/crawler_software/raspberry_pi cd /srv/crawler/crawler_software/raspberry_pi
make install? make install
```
# Updating
```
cd /srv/crawler
git pull
``` ```

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@@ -0,0 +1,23 @@
from discord_webhook import DiscordWebhook
from picamera import PiCamera
from time import sleep
def get_uptime():
with open('/proc/uptime', 'r') as f:
uptime_seconds = float(f.readline().split()[0])
return uptime_seconds
webhookURL = "https://discord.com/api/webhooks/856609966404534272/TR9tnLq2sIGZoOeADNswmGRNlzBcqM5aKihfU6snVTP9WhSSoVVvi7nT6i-ZfZS7Hcqm"
webhook = DiscordWebhook(url=webhookURL, content="Uptime: " + str( round( ((get_uptime() / 60) / 60 ), 2 )) + " hours")
camera = PiCamera()
sleep(3) # let iso settle out
camera.capture('still.jpg')
with open("still.jpg", "rb") as f:
webhook.add_file(file=f.read(), filename='still.jpg')
response = webhook.execute() # Hit send

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@@ -1,22 +0,0 @@
Setting up getty override
=========================
```console
systemctl edit getty@tty1.service
```
add
```
[Service]
ExecStart=
ExecStart=-/opt/lewis-crawler/companion_software/dashboard/entrypoint.sh
StandardInput=tty
StandardOutput=tty
```
then
```
systemctl daemon-reload; systemctl restart getty@tty1.service
```

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@@ -1,9 +0,0 @@
#!/bin/bash
cd /opt/lewis-crawler/companion_software
git pull
pipenv install -r requirements.txt
pipenv run python -m houston -v

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@@ -1,43 +0,0 @@
# Lewis Crawler
# 2021 - 2022
# Kitsune Scientific
import logging
import argparse
import verboselogs
import coloredlogs
from houston.houston import Houston
# Get debug args
parser = argparse.ArgumentParser()
parser.add_argument(
'-d', '--debug',
help="Print lots of debugging statements",
action="store_const", dest="loglevel", const='DEBUG',
default='WARNING',
)
parser.add_argument(
'-v', '--verbose',
help="Be verbose",
action="store_const", dest="loglevel", const='INFO',
)
args = parser.parse_args()
# Install verbose logs
verboselogs.install()
# Create a logger object.
logger = logging.getLogger('Houston_Log')
# Install colored logs
coloredlogs.install(level=args.loglevel,
logger=logger,
fmt='%(asctime)s,%(msecs)03d %(hostname)s %(levelname)s %(message)s') # noqa: E501
logger.info('Lewis Companion Software Started.')
if __name__ == '__main__':
app = Houston(logger)
app.run()

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@@ -1,30 +0,0 @@
# Lewis Crawler
# 2021 - 2022
# Kitsune Scientific
import time
from houston.robotstreamer.streamer import RobotStreamer
class Houston:
def __init__(self, logger):
# Setup logger
self.log = logger
# Setup robotstreamer
self.rs = RobotStreamer(self.log)
# We're ready to go!
self.log.success('Ready to robot!')
def run(self):
self.rs.run()
# Junk~
while True:
try:
self.log.debug('Nothing to do.')
time.sleep(1)
except KeyboardInterrupt:
break

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@@ -1,3 +0,0 @@
# Lewis Crawler
# 2021 - 2022
# Kitsune Scientific

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@@ -1 +0,0 @@
ffmpeg -f image2 -loop 1 -framerate 25 -video_size 1280x720 -r 25 -i Test-Pattern.jpg -vcodec libx264 -profile:v main -preset:v medium -r 30 -g 60 -keyint_min 60 -sc_threshold 0 -b:v 2500k -maxrate 2500k -bufsize 2500k -sws_flags lanczos+accurate_rnd -acodec aac -b:a 96k -ar 48000 -ac 2 -f flv -maxrate 55k "rtmp://rtmp.robotstreamer.com/live/4619?key=jEquBubjizYDMQNe8nKjLdu88iqFpNe3sVQmGRJ2tzbxd4QJrkSSEZBQhi9UTL3k"

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@@ -1,30 +0,0 @@
# Lewis Crawler
# 2021 - 2022
# Kitsune Scientific
import ffmpeg
class RobotStreamer:
def __init__(self, logger):
self.log = logger
def run(self):
self.log.debug('Running RobotStreamer')
stream = ffmpeg.input(
'houston/robotstreamer/resources/Test-Pattern.jpg',
f='image2',
loop='1',
framerate=25,
video_size='1280x720')
stream = ffmpeg.output(
stream,
'http://robotstreamer.com/<secret>/1280/720',
f='mpegts',
bf=0,
muxdelay=0.001,
codec='mpeg1video')
ffmpeg.run(stream)

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@@ -1,79 +0,0 @@
import time
from PIL import Image, ImageDraw, ImageFont
def testScreen(
x=1280, y=720,
image=None,
stripeList=["lightgrey",
"yellow",
"cyan",
"lightgreen",
"magenta",
"red",
"blue"]):
if image is None:
image = Image.new("RGB", (x, y))
draw = ImageDraw.Draw(image)
for i, stripe in enumerate(stripeList):
draw.rectangle((
(x/len(stripeList)) * i, 0,
(x/len(stripeList)) * (i + 1), x),
fill=stripe)
draw.rectangle((
0, y - (y/3),
x, y),
fill="black")
for i, stripe in enumerate(stripeList):
if i % 2 != 0:
_fill = "black"
else:
_fill = stripeList[len(stripeList) - i - 1]
draw.rectangle((
(x/len(stripeList)) * i, y - (y/3.1),
(x/len(stripeList)) * (i + 1), y - (y/4.9)),
fill=_fill)
draw.rectangle((
(x/(len(stripeList)/4)), y - (y/5.3),
(0), y),
fill="darkblue")
draw.rectangle((
(x/(len(stripeList)/2)), y - (y/5.3),
(x/(len(stripeList)/1)), y),
fill="white")
return image
def drawText(image):
# get a font
fnt = ImageFont.truetype("FreeMono.ttf", 50)
# get a drawing context
d = ImageDraw.Draw(image)
# draw multiline text
d.multiline_text((10, 10), str(time.time()), font=fnt, fill=(0, 0, 0))
return image
if __name__ == '__main__':
blank_screen = testScreen()
while True:
annotated_image = drawText(blank_screen.copy())
annotated_image.save('Test-Pattern.png')
time.sleep(2)
# testScreen().save('Test-Pattern.png')

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@@ -1 +0,0 @@
ffmpeg -re -f image2 -loop 1 -framerate 25 -video_size 1280x720 -r 25 -i Test-Pattern.png -c:v libx264 -b:v 1M -g 50 -bf 0 -muxdelay 0.001 -f flv "rtmp://rtmp.robotstreamer.com/live/4619?key=jEquBubjizYDMQNe8nKjLdu88iqFpNe3sVQmGRJ2tzbxd4QJrkSSEZBQhi9UTL3k"

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@@ -1,3 +0,0 @@
coloredlogs
verboselogs
ffmpeg-python

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@@ -1,70 +1,38 @@
### DISCLAIMER # A makefile for building the robot's slave software
### This is an example Makefile and it MUST be configured to suit your needs. # Uses arduino-cli
### For detailed explanations about all the available options, #
### please refer to https://github.com/sudar/Arduino-Makefile/blob/master/arduino-mk-vars.md # Kitsune Scientific 2021
### PROJECT_DIR # What board to build for and its core
### This is the path to where you have created/cloned your project CORE ?= arduino:avr
PROJECT_DIR = $(shell dirname $(shell pwd)) FQBN ?= arduino:avr:nano:cpu=atmega328old
### ARDMK_DIR # What port to build on
### Path to the Arduino-Makefile directory. ifndef SERIAL_DEV
ARDMK_DIR = $(PROJECT_DIR)/Arduino-Makefile ifneq (,$(wildcard /dev/ttyUSB0))
SERIAL_DEV = /dev/ttyUSB0
else ifneq (,$(wildcard /dev/ttyACM0))
SERIAL_DEV = /dev/ttyACM0
else
SERIAL_DEV = unknown
endif
endif
### ARDUINO_DIR all: requirements build upload
### Path to the Arduino application and resources directory.
ARDUINO_DIR = /usr/share/arduino
### USER_LIB_PATH build: requirements crawler_slave.ino
### Path to where the your project's libraries are stored. arduino-cli core install $(CORE)
USER_LIB_PATH := $(realpath $(PROJECT_DIR)/lib)
### BOARD_TAG & BOARD_SUB arduino-cli compile -b $(FQBN) crawler_slave
### For Arduino IDE 1.0.x
### Only BOARD_TAG is needed. It must be set to the board you are currently using. (i.e uno, mega2560, etc.)
# BOARD_TAG = mega2560
### For Arduino IDE 1.6.x
### Both BOARD_TAG and BOARD_SUB are needed. They must be set to the board you are currently using. (i.e BOARD_TAG = uno, mega, etc. & BOARD_SUB = atmega2560, etc.)
### Note: for the Arduino Uno, only BOARD_TAG is mandatory and BOARD_SUB can be equal to anything
BOARD_TAG = mega
BOARD_SUB = atmega2560
### MONITOR_PORT upload: requirements crawler_slave.ino
### The port your board is connected to. Using an '*' tries all the ports and finds the right one. Choose one of the two. arduino-cli upload -b $(FQBN) crawler_slave -p $(SERIAL_DEV)
MONITOR_PORT = /dev/ttyUSB*
# MONITOR_PORT = /dev/ttyACM*
### MONITOR_BAUDRATE requirements:
### It must be set to Serial baudrate value you are using. @if [ -e requirements.txt ]; \
MONITOR_BAUDRATE = 115200 then while read -r i ; do echo ; \
echo "---> Installing " '"'$$i'"' ; \
### AVR_TOOLS_DIR arduino-cli lib install "$$i" ; \
### Path to the AVR tools directory such as avr-gcc, avr-g++, etc. done < requirements.txt ; \
AVR_TOOLS_DIR = /usr else echo "---> MISSING requirements.txt file"; \
fi
### AVRDUDE
### Path to avrdude directory.
AVRDUDE = /usr/bin/avrdude
### CFLAGS_STD
CFLAGS_STD = -std=gnu11
### CXXFLAGS_STD
### You can choose wich ever you like
# CXXFLAGS_STD = -std=gnu++11
CXXFLAGS_STD = -std=gnu++17
### CPPFLAGS
### Flags you might want to set for debugging purpose. Comment to stop.
CXXFLAGS += -pedantic -Wall -Wextra
LDFLAGS += -fdiagnostics-color
### OBJDIR
### Don't touch this!
### This is were you put the binaries you just compile using 'make'
CURRENT_DIR = $(shell basename $(CURDIR))
OBJDIR = $(PROJECT_DIR)/build/$(CURRENT_DIR)/$(BOARD_TAG)
### path to Arduino.mk, inside the ARDMK_DIR, don't touch.
include $(ARDMK_DIR)/Arduino.mk

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@@ -51,7 +51,9 @@ void receiveEvent(int n) {
switch(id) { switch(id) {
case 1: case 1:
windowWiperServo.write(val); windowWiperServo.write(val); // Set a val
delay(5); // pause for a moment
windowWiperServo.detach(); // Detach (stop moving) the servo
break; break;
} }
} }

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Servo

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@@ -0,0 +1,18 @@
# A makefile for installing the robot's python
# software and setting it up.
#
# Requires sudo
#
# Kitsune Scientific 2021
all: install
upload: crawler.service
sudo cp crawler.service /etc/systemd/system/crawler.service
sudo systemctl daemon-reload
sudo systemctl enable crawler.service
sudo systemctl start crawler.service
sudo systemctl status crawler

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@@ -0,0 +1,16 @@
from PIL import Image
import base64
im = Image.open('still.jpg')
# using Image.ADAPTIVE to avoid dithering
for i in range(8, 0, -1):
out = im.convert('P', palette=Image.ADAPTIVE, colors=i)
out.save(f'out_{i}_bits.png')
with open(f'out_{i}_bits.png', 'rb') as image_file:
encoded_string = base64.a85encode(image_file.read())
with open(f'out_{i}_bits.txt', 'w') as f:
f.write(encoded_string.decode('UTF-8'))

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@@ -0,0 +1 @@
M,6r;%14!\!!!!.8Ou6I!!!)I!!!&X#Qk&,!4s2MScA`m!)Q?g7AGd(zzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzz!.5pZZiC(+%V8a6Akbu".KBGK#QOi)zdSl>0!!-\'6pXdsSF+-I!<<*"_P$QtD$r"izzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzzz!!!"D(e?.W!V_LqE<#t=!(fUS7'8jaJc

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@@ -1,14 +0,0 @@
[[source]]
url = "https://pypi.org/simple"
verify_ssl = true
name = "pypi"
[packages]
picamera = "*"
PySSTV = "*"
pyotp = "*"
[dev-packages]
[requires]
python_version = "3.9"

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@@ -1,88 +0,0 @@
{
"_meta": {
"hash": {
"sha256": "bd19925493e125dc5aa15b339778c61c21e0f1a5574097d1721abf99245fa605"
},
"pipfile-spec": 6,
"requires": {
"python_version": "3.9"
},
"sources": [
{
"name": "pypi",
"url": "https://pypi.org/simple",
"verify_ssl": true
}
]
},
"default": {
"picamera": {
"hashes": [
"sha256:890815aa01e4d855a6a95dd3ad0953b872a6b954982106407df0c5a31a163e50"
],
"index": "pypi",
"version": "==1.13"
},
"pillow": {
"hashes": [
"sha256:0b2efa07f69dc395d95bb9ef3299f4ca29bcb2157dc615bae0b42c3c20668ffc",
"sha256:114f816e4f73f9ec06997b2fde81a92cbf0777c9e8f462005550eed6bae57e63",
"sha256:147bd9e71fb9dcf08357b4d530b5167941e222a6fd21f869c7911bac40b9994d",
"sha256:15a2808e269a1cf2131930183dcc0419bc77bb73eb54285dde2706ac9939fa8e",
"sha256:196560dba4da7a72c5e7085fccc5938ab4075fd37fe8b5468869724109812edd",
"sha256:1c03e24be975e2afe70dfc5da6f187eea0b49a68bb2b69db0f30a61b7031cee4",
"sha256:1fd5066cd343b5db88c048d971994e56b296868766e461b82fa4e22498f34d77",
"sha256:29c9569049d04aaacd690573a0398dbd8e0bf0255684fee512b413c2142ab723",
"sha256:2b6dfa068a8b6137da34a4936f5a816aba0ecc967af2feeb32c4393ddd671cba",
"sha256:2cac53839bfc5cece8fdbe7f084d5e3ee61e1303cccc86511d351adcb9e2c792",
"sha256:2ee77c14a0299d0541d26f3d8500bb57e081233e3fa915fa35abd02c51fa7fae",
"sha256:37730f6e68bdc6a3f02d2079c34c532330d206429f3cee651aab6b66839a9f0e",
"sha256:3f08bd8d785204149b5b33e3b5f0ebbfe2190ea58d1a051c578e29e39bfd2367",
"sha256:479ab11cbd69612acefa8286481f65c5dece2002ffaa4f9db62682379ca3bb77",
"sha256:4bc3c7ef940eeb200ca65bd83005eb3aae8083d47e8fcbf5f0943baa50726856",
"sha256:660a87085925c61a0dcc80efb967512ac34dbb256ff7dd2b9b4ee8dbdab58cf4",
"sha256:67b3666b544b953a2777cb3f5a922e991be73ab32635666ee72e05876b8a92de",
"sha256:70af7d222df0ff81a2da601fab42decb009dc721545ed78549cb96e3a1c5f0c8",
"sha256:75e09042a3b39e0ea61ce37e941221313d51a9c26b8e54e12b3ececccb71718a",
"sha256:8960a8a9f4598974e4c2aeb1bff9bdd5db03ee65fd1fce8adf3223721aa2a636",
"sha256:9364c81b252d8348e9cc0cb63e856b8f7c1b340caba6ee7a7a65c968312f7dab",
"sha256:969cc558cca859cadf24f890fc009e1bce7d7d0386ba7c0478641a60199adf79",
"sha256:9a211b663cf2314edbdb4cf897beeb5c9ee3810d1d53f0e423f06d6ebbf9cd5d",
"sha256:a17ca41f45cf78c2216ebfab03add7cc350c305c38ff34ef4eef66b7d76c5229",
"sha256:a2f381932dca2cf775811a008aa3027671ace723b7a38838045b1aee8669fdcf",
"sha256:a4eef1ff2d62676deabf076f963eda4da34b51bc0517c70239fafed1d5b51500",
"sha256:c088a000dfdd88c184cc7271bfac8c5b82d9efa8637cd2b68183771e3cf56f04",
"sha256:c0e0550a404c69aab1e04ae89cca3e2a042b56ab043f7f729d984bf73ed2a093",
"sha256:c11003197f908878164f0e6da15fce22373ac3fc320cda8c9d16e6bba105b844",
"sha256:c2a5ff58751670292b406b9f06e07ed1446a4b13ffced6b6cab75b857485cbc8",
"sha256:c35d09db702f4185ba22bb33ef1751ad49c266534339a5cebeb5159d364f6f82",
"sha256:c379425c2707078dfb6bfad2430728831d399dc95a7deeb92015eb4c92345eaf",
"sha256:cc866706d56bd3a7dbf8bac8660c6f6462f2f2b8a49add2ba617bc0c54473d83",
"sha256:d0da39795049a9afcaadec532e7b669b5ebbb2a9134576ebcc15dd5bdae33cc0",
"sha256:f156d6ecfc747ee111c167f8faf5f4953761b5e66e91a4e6767e548d0f80129c",
"sha256:f4ebde71785f8bceb39dcd1e7f06bcc5d5c3cf48b9f69ab52636309387b097c8",
"sha256:fc214a6b75d2e0ea7745488da7da3c381f41790812988c7a92345978414fad37",
"sha256:fd7eef578f5b2200d066db1b50c4aa66410786201669fb76d5238b007918fb24",
"sha256:ff04c373477723430dce2e9d024c708a047d44cf17166bf16e604b379bf0ca14"
],
"markers": "python_version >= '3.6'",
"version": "==8.3.1"
},
"pyotp": {
"hashes": [
"sha256:9d144de0f8a601d6869abe1409f4a3f75f097c37b50a36a3bf165810a6e23f28",
"sha256:d28ddfd40e0c1b6a6b9da961c7d47a10261fb58f378cb00f05ce88b26df9c432"
],
"index": "pypi",
"version": "==2.6.0"
},
"pysstv": {
"hashes": [
"sha256:91f85096591606e774811de8940aef57f30e10cbf81387064f8a686cff0ac3fa"
],
"index": "pypi",
"version": "==0.5.2"
}
},
"develop": {}
}

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@@ -0,0 +1,15 @@
import time, pyotp
totp = pyotp.TOTP(pyotp.random_base32())
code = totp.now()
for i in range(0,60):
if totp.verify(code):
print(f'{code} verified fine at t+{i}')
else:
print(f'{code} expired at t+{i}')
break
time.sleep(1)