test
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leds.py
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leds.py
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#!/usr/bin/env python
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# -*- coding: utf-8 -*-
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'''
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sudo aot install python3-pip
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sudo pip3 install rpi_ws281x adafruit-circuitpython-neopixel
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sudo python3 -m pip install --force-reinstall adafruit-blinka
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SPDX-FileCopyrightText: 2021 ladyada for Adafruit Industries
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SPDX-License-Identifier: MIT
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'''
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# Simple test for NeoPixels on Raspberry Pi
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import time
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import board
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import neopixel
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# Choose an open pin connected to the Data In of the NeoPixel strip, i.e. board.D18
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# NeoPixels must be connected to D10, D12, D18 or D21 to work.
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pixel_pin = board.D18
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# The number of NeoPixels
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num_pixels = 6
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# The order of the pixel colors - RGB or GRB. Some NeoPixels have red and green reversed!
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# For RGBW NeoPixels, simply change the ORDER to RGBW or GRBW.
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ORDER = neopixel.GRB
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pixels = neopixel.NeoPixel(
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pixel_pin, num_pixels, brightness=0.2, auto_write=False, pixel_order=ORDER
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)
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def wheel(pos):
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# Input a value 0 to 255 to get a color value.
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# The colours are a transition r - g - b - back to r.
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if pos < 0 or pos > 255:
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r = g = b = 0
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elif pos < 85:
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r = int(pos * 3)
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g = int(255 - pos * 3)
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b = 0
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elif pos < 170:
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pos -= 85
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r = int(255 - pos * 3)
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g = 0
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b = int(pos * 3)
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else:
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pos -= 170
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r = 0
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g = int(pos * 3)
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b = int(255 - pos * 3)
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return (r, g, b) if ORDER in (neopixel.RGB, neopixel.GRB) else (r, g, b, 0)
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def rainbow_cycle(wait):
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for j in range(255):
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for i in range(num_pixels):
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pixel_index = (i * 256 // num_pixels) + j
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pixels[i] = wheel(pixel_index & 255)
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pixels.show()
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time.sleep(wait)
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while True:
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# Comment this line out if you have RGBW/GRBW NeoPixels
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pixels.fill((255, 0, 0))
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# Uncomment this line if you have RGBW/GRBW NeoPixels
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# pixels.fill((255, 0, 0, 0))
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pixels.show()
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time.sleep(1)
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# Comment this line out if you have RGBW/GRBW NeoPixels
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pixels.fill((0, 255, 0))
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# Uncomment this line if you have RGBW/GRBW NeoPixels
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# pixels.fill((0, 255, 0, 0))
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pixels.show()
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time.sleep(1)
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# Comment this line out if you have RGBW/GRBW NeoPixels
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pixels.fill((0, 0, 255))
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# Uncomment this line if you have RGBW/GRBW NeoPixels
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# pixels.fill((0, 0, 255, 0))
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pixels.show()
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time.sleep(1)
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rainbow_cycle(0.001) # rainbow cycle with 1ms delay per step
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88
nerves.py
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nerves.py
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#!/usr/bin/env python
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# -*- coding: utf-8 -*-
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'''
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Nerves
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sniff packets from interface en0 using python module scapy (2.3.1)
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generate led color for bhoreal in usb midi mode depending on packet port number
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send led number + color to PD patch boreal.pd
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in OSC format : /bhoreal/in lednumber ledcolor
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color is midi parameter so 0 to 127.
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v0.3
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By Sam Neurohack
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LICENCE : CC
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'''
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from OSC import OSCClient, OSCMessage
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from time import sleep
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import types
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import random
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from scapy.all import *
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client = OSCClient()
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msg = OSCMessage()
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counter = 0
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def sendled(zzzport):
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global counter
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zzz = zzzport % 127
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# zzz = led color
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msg = OSCMessage()
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msg.setAddress("/bhoreal/in")
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msg.append(counter)
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msg.append(zzz)
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try:
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client.sendto(msg, ('127.0.0.1', 9002))
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msg.clearData()
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except:
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print 'Connection refused'
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pass
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sleep(0.001)
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counter += 1
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if counter > 63:
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counter = 0
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def print_summary(pkt):
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if IP in pkt:
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ip_src=pkt[IP].src
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ip_dst=pkt[IP].dst
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if TCP in pkt:
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tcp_sport=pkt[TCP].sport
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tcp_dport=pkt[TCP].dport
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if tcp_sport < 50000:
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print " IP src " + str(ip_src) + " TCP sport " + str(tcp_sport)
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sendled(tcp_sport)
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if tcp_dport < 50000:
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print " IP dst " + str(ip_dst) + " TCP dport " + str(tcp_dport)
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sendled(tcp_dport)
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if UDP in pkt:
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udp_sport=pkt[UDP].sport
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udp_dport=pkt[UDP].dport
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if udp_sport < 50000:
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print " IP src " + str(ip_src) + " UDP sport " + str(udp_sport)
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sendled(udp_sport)
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if udp_dport < 50000:
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print " IP dst " + str(ip_dst) + " UDP dport " + str(udp_dport)
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sendled(udp_dport)
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if ARP in pkt and pkt[ARP].op in (1,2):
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print " ARP"
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sendled(67)
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def handle_error(self,request,client_address): # All callbacks
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pass
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sniff(iface='en0', prn=print_summary, store=0)
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