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https://github.com/mbirth/wipy-ussd1306.git
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Initial import
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21
LICENSE.md
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LICENSE.md
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The MIT License (MIT)
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Copyright (c) 2016 Markus Birth <markus@birth-online.de>
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in all
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copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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SOFTWARE.
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6
README.md
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README.md
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ussd1306
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========
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MicroPython module for the SSD1306 OLED.
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[Datasheet](doc/SSD1306.pdf)
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doc/SSD1306.pdf
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BIN
doc/SSD1306.pdf
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183
ussd1306-i2c.py
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ussd1306-i2c.py
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# -*- coding: utf-8 -*-
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"""
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MicroPython SSD1306 I2C driver
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"""
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__author__ = "Markus Birth"
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__copyright__ = "Copyright 2016, Markus Birth"
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__credits__ = ["Markus Birth"]
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__license__ = "MIT"
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__version__ = "1.0"
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__maintainer__ = "Markus Birth"
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__email__ = "markus@birth-online.de"
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__status__ = "Production"
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# Datasheet: https://www.adafruit.com/datasheets/SSD1306.pdf
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# Inspiration from:
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# - https://github.com/khenderick/micropython-drivers/tree/master/ssd1306
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#
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# PINOUT
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# WiPy/pyBoard display function
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#
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# 3V3 or any Pin => VCC 3.3V logic voltage (0=off, 1=on)
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# SDA => SDM data
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# SCL => SCL clock
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# GND => GND
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#
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# WiPy (on Exp board, SD and User-LED jumper have to be removed!)
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# PWR = directly from 3V3 pin of the WiPy
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try:
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import pyb as machine
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except:
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# WiPy
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import machine
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import struct
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import time
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class SSD1306:
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ADDRESSING_HORIZ = 0x00
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ADDRESSING_VERT = 0x01
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ADDRESSING_PAGE = 0x02
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POWER_UP = 0xaf
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POWER_DOWN = 0xae
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DISPLAY_BLANK = 0xae
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DISPLAY_ALL = 0xa5
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DISPLAY_NORMAL = [0xaf, 0xa4, 0xa6]
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DISPLAY_INVERSE = 0xa7
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DC_CMD = 0x80
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DC_DATA = 0x40
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def __init__(self, i2c, pwr=None, devid=0x3c):
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self.width = 128
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self.height = 64
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self.devid = devid
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self.power = self.POWER_DOWN
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self.addressing = self.ADDRESSING_HORIZ
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self.display_mode = self.DISPLAY_NORMAL
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# init the I2C bus and pins
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i2c.init(i2c.MASTER, baudrate=400000) # 400 kHz
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if pwr:
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if "OUT_PP" in dir(pwr):
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# pyBoard style
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pwr.init(pwr.OUT_PP, pwr_PULL_NONE)
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else:
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# WiPy style
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pwr.init(pwr.OUT, None)
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self.i2c = i2c
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self.pwr = pwr
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self.power_on()
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# set disp off : 0xae
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# set clock div : 0xd5, 0x80
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# set multiplex : 0xa8, 0x3f (for 32px: 0x1f)
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# set disp offset: 0xd3 0x00
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# set start line : 0x40|0x00
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# chargepump on : 0x8d, 0x14 (ext. VCC: 0x10)
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# memory mode : 0x20, 0x00
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# segment remap : 0xa0|0x10 (invalid value: 0xb0, maybe 0x01?)
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# com scan dir : 0xc8 (decreasing, inc.: 0xc0)
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# com pins : 0xda, 0x12 (for 32px: 0x02)
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# contrast : 0x81, 0xff
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# precharge : 0xd9, 0xf1 (ext. VCC: 0x22 = RESET)
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# Vcom deselect : 0xdb, 0x40
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# disp resume ram: 0xa4
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# disp not invers: 0xa6
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# set disp on : 0xaf
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self.clear()
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def set_power(self, power, set=True):
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""" Sets the power mode of the LCD controller """
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assert power in [self.POWER_UP, self.POWER_DOWN], "Power must be POWER_UP or POWER_DOWN."
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self.power = power
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self.command(power)
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def set_adressing(self, addr):
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""" Sets the adressing mode """
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assert addr in [self.ADDRESSING_HORIZ, self.ADDRESSING_VERT, self.ADDRESSING_PAGE], "Addressing must be ADDRESSING_HORIZ, ADDRESSING_VERT or ADDRESSING_PAGE."
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self.addressing = addr
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self.command([0x20, addr])
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def set_display(self, display_mode):
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""" Sets display mode (blank, black, normal, inverse) """
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assert display_mode in [self.DISPLAY_BLANK, self.DISPLAY_ALL, self.DISPLAY_NORMAL, self.DISPLAY_INVERSE], "Mode must be one of DISPLAY_BLANK, DISPLAY_ALL, DISPLAY_NORMAL or DISPLAY_INVERSE."
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self.display_mode = display_mode
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self.command([display_mode])
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def set_contrast(self, value):
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""" set OLED contrast """
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assert 0x00 <= value <= 0xff, "Contrast value must be between 0x00 and 0xff"
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self.command([0x81, value])
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def position(self, x, y):
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""" set cursor to page y, column x """
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assert 0 <= x < self.width, "x must be between 0 and 127"
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assert 0 <= y < self.height // 8, "y must be between 0 and 7"
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self.command([0x20, 0x00, x, 0x21, 0x00, y])
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def clear(self):
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""" clear screen """
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self.position(0, 0)
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self.data([0] * (self.height * self.width // 8))
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self.position(0, 0)
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def sleep_ms(self, mseconds):
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try:
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time.sleep_ms(mseconds)
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except AttributeError:
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machine.delay(mseconds)
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def sleep_us(self, useconds):
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try:
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time.sleep_us(useconds)
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except AttributeError:
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machine.udelay(useconds)
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def power_on(self):
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if self.pwr:
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self.pwr.value(1)
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self.reset()
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def reset(self):
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""" issue reset impulse to reset the display """
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self.rst.value(0) # RST on
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self.sleep_us(100) # reset impulse has to be >100 ns and <100 ms
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self.rst.value(1) # RST off
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# Defaults after reset:
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# 1. Display is OFF
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# 2. 128 x 64 Display Mode
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# 3. Normal segment and display data column address and row address mapping (SEG0 mapped to
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# address 00h and COM0 mapped to address 00h)
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# 4. Shift register data clear in serial interface
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# 5. Display start line is set at display RAM address 0
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# 6. Column address counter is set at 0
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# 7. Normal scan direction of the COM outputs
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# 8. Contrast control register is set at 7Fh
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# 9. Normal display mode (Equivalent to A4h command)
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self.power = self.POWER_DOWN
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self.addressing = self.ADDRESSING_HORIZ
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self.display_mode = self.DISPLAY_NORMAL
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def power_off(self):
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self.clear()
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self.set_power(self.POWER_DOWN)
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self.sleep_ms(10)
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if self.pwr:
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self.pwr.value(0) # turn off power
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def command(self, arr):
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""" send bytes in command mode """
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self.bitmap(arr, self.DC_CMD)
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def data(self, arr):
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""" send bytes in data mode """
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self.bitmap(arr, self.DC_DATA)
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def bitmap(self, arr, dc):
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arr = [dc] + arr
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buf = struct.pack('B'*len(arr), *arr)
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self.i2c.send(buf, addr=self.devid, timeout=5000)
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