Add other example
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import jarray
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import math
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import itertools
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_byte_lookup = {}
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brightness_max = 0.5
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# Bit values which represent the zero and one bit pulses.
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_ZERO = bytearray([0b00000000])
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_ONE = bytearray([0b11111111])
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def _build_byte_lookup():
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"""Return lookup table to map from every byte value 0-255 and the associated raw SPI data."""
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lookup = {}
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for i in range(256):
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value = bytearray()
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for j in range(7, -1, -1):
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if ((i >> j) & 1) == 0:
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value += _ZERO
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else:
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value += _ONE
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lookup[i] = value
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return lookup
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def color_to_rgb(c):
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"""Convert a 24 bit color to RGB triplets."""
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return ((c >> 16) & 0xFF, (c >> 8) & 0xFF, c & 0xFF)
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def _encode_color_grb(c):
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"""Encode an RGB tuple into NeoPixel GRB 24 byte SPI bit stream."""
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return _byte_lookup[int(c[1] * brightness)] + _byte_lookup[int(c[0] * brightness)] + _byte_lookup[int(c[2] * brightness)]
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def _encode_pixel(c):
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"""Encode an RGB tuple into NeoPixel GRB 24 byte SPI bit stream."""
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rgb = color_to_rgb(c)
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encoded = _encode_color_grb(rgb)
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return encoded
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def prepare_data(dimension, b):
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global brightness
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global _byte_lookup
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if b > brightness_max:
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brightness = brightness_max
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else:
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brightness = b
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_byte_lookup = _build_byte_lookup()
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data = jarray.zeros(dimension * 24 + 1, "b")
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return data
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'''
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Possibilities:
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Start: Top left / Top Right / Bottom Left / Bottom Right
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Direction: Up / Down / Right / Left
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'''
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def make_line(type, nb, long_line):
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'''
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If moving up or down: 0 <= nb < height
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If moving right or left: 0 <= nb < width
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'''
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indexes = []
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if type == 0:
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# top left -> down / OK
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pxstart = nb
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for h in range(height):
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indexes.append(pxstart + width * h)
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elif type == 1:
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# top left -> right / OK
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pxstart = nb * width
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for w in range(width):
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indexes.append(pxstart + w)
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elif type == 2:
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# bottom left -> up / OK
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pxstart = width * (height - 1) + nb
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for h in range(height):
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indexes.append(pxstart - width * h)
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elif type == 3:
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# bottom left -> right / OK
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pxstart = width * (height - 1) - nb * width
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for w in range(width):
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indexes.append(pxstart + w)
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elif type == 4:
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# top right -> down / OK
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pxstart = width - 1 - nb
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for h in range(height):
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indexes.append(pxstart + width * h)
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elif type == 5:
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# top right -> left / OK
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pxstart = width - 1 + nb * width
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for w in range(width):
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indexes.append(pxstart - w)
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elif type == 6:
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# bottom right -> up / OK
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pxstart = width * height - 1 - nb * height
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for h in range(height):
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indexes.append(pxstart - width * h)
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elif type == 7:
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# bottom right -> left / OK
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pxstart = width * height - 1 - nb * width
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for w in range(width):
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indexes.append(pxstart - w)
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else:
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raise Exception("Invalid Type")
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if long_line and nb % 2 == 1:
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return reversed([pixels[px] for px in indexes])
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return [pixels[px] for px in indexes]
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def image2data(data, type, long_line):
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offset = 0
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loadPixels()
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inline_image = []
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if type in [0, 2, 4, 6]:
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# Organized up or down
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for x in range(0, width):
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inline_image += make_line(type, x, long_line)
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elif type in [1, 3, 5, 7]:
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# Organized left or right
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for x in range(0, height):
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inline_image += make_line(type, x, long_line)
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for img_px in inline_image:
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py_bytes = _encode_pixel(img_px)
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for b in py_bytes:
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if b > 127:
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# Convert to signed bytes (expected by jarray)
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b -= 256
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data[offset] = b
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else:
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data[offset] = b
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offset += 1
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# New line
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data[-1] = 10
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return data
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"""
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Saturation.
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Saturation is the strength or purity of the color and represents the
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amount of gray in proportion to the hue. A "saturated" color is pure
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and an "unsaturated" color has a large percentage of gray.
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Move the cursor vertically over each bar to alter its saturation.
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"""
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add_library('net')
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from network import send_TCP
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from prepare import prepare
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import random
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# Config, will be checked upstream
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height = 8
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width = 32
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framerate = 100
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brightness = 0.05
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#####################################
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receiver_IP = "10.2.113.107"
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#receiver_IP = "dummy"
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receiver_port = 9999
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# Do we have one single long line?
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long_line = False
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# Type of installation (see details in data_generator)
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type = 1
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ledTCP = None
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data = None
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barWidth = 1
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def setup():
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global ledTCP
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global data
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size(width, height)
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colorMode(HSB, width, height, 100)
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noStroke()
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background(0)
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ledTCP, data = prepare(Client, receiver_IP, receiver_port, height, width, framerate, brightness)
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send_TCP(ledTCP, data, long_line, type)
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def draw():
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whichBar = mouseX / barWidth
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barX = whichBar * barWidth
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fill(barX, mouseY, random.randint(0, 255))
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rect(barX, 0, barWidth, height)
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send_TCP(ledTCP, data, long_line, type)
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@ -0,0 +1,36 @@
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import jarray
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import time
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import struct
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from data_generator import image2data
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def TCPConfigure(cl_class, server, port):
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return cl_class(this, server, port)
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def receive_config(socket):
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max_height = jarray.zeros(4, "b")
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max_width = jarray.zeros(4, "b")
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max_framerate = jarray.zeros(4, "b")
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while True:
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available_bytes = socket.available()
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if available_bytes > 0:
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break
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time.sleep(1)
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socket.readBytes(max_height)
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socket.readBytes(max_width)
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socket.readBytes(max_framerate)
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max_height = struct.unpack("<i", max_height)[0]
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max_width = struct.unpack("<i", max_width)[0]
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max_framerate = struct.unpack("<i", max_framerate)[0]
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return max_height, max_width, max_framerate
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def send_config(socket, height, width, framerate):
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socket.write(struct.pack('<i', height))
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socket.write(struct.pack('<i', width))
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socket.write(struct.pack('<i', framerate))
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def send_TCP(socket, data, long_line, type):
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if socket is None:
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# Dummy mode
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return
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image2data(data, type, long_line)
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socket.write(data)
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from network import receive_config, send_config, TCPConfigure
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from data_generator import prepare_data
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def check_config(max_height, max_width, max_framerate, height, width, framerate):
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if height <= 0 or height > max_height:
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return False, "height cannot be higher than {}. Current: {}.".format(max_height, height)
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if width <= 0 or width > max_width:
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return False, "width cannot be higher than {}. Current: {}.".format(max_width, width)
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if framerate <= 0 or framerate > max_framerate:
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return False, "framerate cannot be higher than {}. Current: {}.".format(max_framerate, framerate)
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return True, None
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def prepare(cl_class, server_ip, server_port, height, width, framerate, brightness):
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# Just to make sure pixels[] is initialized.
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if server_ip == 'dummy':
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size(width, height)
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loadPixels()
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return None, None
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ledTCP = TCPConfigure(cl_class, server_ip, server_port)
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max_height, max_width, max_framerate = receive_config(ledTCP)
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good, reason = check_config(max_height, max_width, max_framerate, height, width, framerate)
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if not good:
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raise Exception(reason)
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send_config(ledTCP, height, width, framerate)
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size(width, height)
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loadPixels()
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dimension = width * height
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data = prepare_data(dimension, brightness)
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return ledTCP, data
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