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ssd1306OLED显示屏-MicroPython-ESP32-中文显示-利用GB2312字库(非手动取模)

License: MIT License

Python 100.00%

ssd1306-micropython-esp32-chinese's Introduction

ssd1306OLED显示屏-MicroPython-ESP32-中文显示-利用GB2312字库(非手动取模)

前言:

!!!没有刷固件,是没有load_font()函数的!!!

!!!没有刷固件,是没有load_font()函数的!!!

!!!没有刷固件,是没有load_font()函数的!!!

阿这,为了让这个十几块的OLED显示中文,我可真的是付出了太多。 百度搜不到一个靠谱的教程,昨天晚上搜了一谷歌,终于找到了一个大佬17年的博客,uPyCraft IDE-micropython支持中文啦!

坏消息是:里面也没有一个step by step 的步骤~

好消息是:里面有一个micropython的群号-619558168;

我随即加了群;

好消息是:里面有很多成功显示中文的视频

坏消息是:里面固件文件和python脚本太多,我根本不知道用哪一个,而且没有找到一个保姆级的教程;

然后我问了群里的大佬,大佬告诉我下载这样的一个文件: fb增强固件及字库.rar的文件。

好消息是:我会刷固件

坏消息是:我不知道该怎么把笔记本上的文件,上传字体到ESP32中,以及该怎么在python脚本中导入字库,并且显示出来。

于是接下来就是step by step 的教程了。

1. 安装好thonny和基本操作:

参考教程:安装 Thonny 软件环境开发PI Pico

把其中的PI Pico换成ESP32就可以了。

2. 刷固件:

官方的固件,直接在官方网站上下载就可以了,但是官方的功能有点少,所以我们以这次可以中文显示的固件为例。

  1. 插上USB,确认esp32板子的LED闪烁;
  2. 点一下 stop/restart 按键,确保得到下面的效果,如果一直是横线,可以将鼠标点到横线下方,摁一下enter按键;出现>>>字符,说明连接正常。 在这里插入图片描述
  3. 点击tools,会进入 Thonny options界面,选择interpreter,选好设备ESP32,选好端口 COM5在这里插入图片描述
  4. 最后选择要刷的固件,如果你是4M的ESP32,那就选择esp32_1.15_fb_boost_4M_ULAB.bin,其他关于flash什么的,默认的就行。每次刷固件,之前存到esp32中的脚本文件都会被清空,这个一定要做好备份! 在这里插入图片描述

3. Windows10笔记本上传字体到MicroPython设备中:

  1. 点击View,选择files,左侧栏会出现下图,上面是This computer,下面是MicroPython device,选中要上传的文件,选择upload,即可上传到esp32中。
  2. 这种方法比什么花里胡哨的 ampy --port COM5 put GB2312-12.fon靠谱多了,这个需要先pip install adafruit-ampy,然后上传文件,还看不到进度条,上传这种稍微大点的文件不知道啥时候能传完~ 在这里插入图片描述

4. 示例python脚本:

4.1. ssd1306.py脚本代码:

# MicroPython SSD1306 OLED driver, I2C and SPI interfaces

from micropython import const
import framebuf


# register definitions
SET_CONTRAST = const(0x81)
SET_ENTIRE_ON = const(0xA4)
SET_NORM_INV = const(0xA6)
SET_DISP = const(0xAE)
SET_MEM_ADDR = const(0x20)
SET_COL_ADDR = const(0x21)
SET_PAGE_ADDR = const(0x22)
SET_DISP_START_LINE = const(0x40)
SET_SEG_REMAP = const(0xA0)
SET_MUX_RATIO = const(0xA8)
SET_COM_OUT_DIR = const(0xC0)
SET_DISP_OFFSET = const(0xD3)
SET_COM_PIN_CFG = const(0xDA)
SET_DISP_CLK_DIV = const(0xD5)
SET_PRECHARGE = const(0xD9)
SET_VCOM_DESEL = const(0xDB)
SET_CHARGE_PUMP = const(0x8D)

# Subclassing FrameBuffer provides support for graphics primitives
# http://docs.micropython.org/en/latest/pyboard/library/framebuf.html
class SSD1306(framebuf.FrameBuffer):
    def __init__(self, width, height, external_vcc):
        self.width = width
        self.height = height
        self.external_vcc = external_vcc
        self.pages = self.height // 8
        self.buffer = bytearray(self.pages * self.width)
        super().__init__(self.buffer, self.width, self.height, framebuf.MONO_VLSB, self.width)
        self.init_display()

    def init_display(self):
        for cmd in (
            SET_DISP | 0x00,  # off
            # address setting
            SET_MEM_ADDR,
            0x00,  # horizontal
            # resolution and layout
            SET_DISP_START_LINE | 0x00,
            SET_SEG_REMAP | 0x01,  # column addr 127 mapped to SEG0
            SET_MUX_RATIO,
            self.height - 1,
            SET_COM_OUT_DIR | 0x08,  # scan from COM[N] to COM0
            SET_DISP_OFFSET,
            0x00,
            SET_COM_PIN_CFG,
            0x02 if self.width > 2 * self.height else 0x12,
            # timing and driving scheme
            SET_DISP_CLK_DIV,
            0x80,
            SET_PRECHARGE,
            0x22 if self.external_vcc else 0xF1,
            SET_VCOM_DESEL,
            0x30,  # 0.83*Vcc
            # display
            SET_CONTRAST,
            0xFF,  # maximum
            SET_ENTIRE_ON,  # output follows RAM contents
            SET_NORM_INV,  # not inverted
            # charge pump
            SET_CHARGE_PUMP,
            0x10 if self.external_vcc else 0x14,
            SET_DISP | 0x01,
        ):  # on
            self.write_cmd(cmd)
        self.fill(0)
        self.show()

    def poweroff(self):
        self.write_cmd(SET_DISP | 0x00)

    def poweron(self):
        self.write_cmd(SET_DISP | 0x01)

    def contrast(self, contrast):
        self.write_cmd(SET_CONTRAST)
        self.write_cmd(contrast)

    def invert(self, invert):
        self.write_cmd(SET_NORM_INV | (invert & 1))

    def show(self):
        x0 = 0
        x1 = self.width - 1
        if self.width == 64:
            # displays with width of 64 pixels are shifted by 32
            x0 += 32
            x1 += 32
        self.write_cmd(SET_COL_ADDR)
        self.write_cmd(x0)
        self.write_cmd(x1)
        self.write_cmd(SET_PAGE_ADDR)
        self.write_cmd(0)
        self.write_cmd(self.pages - 1)
        self.write_data(self.buffer)


class SSD1306_I2C(SSD1306):
    def __init__(self, width, height, i2c, addr=0x3C, external_vcc=False):
        self.i2c = i2c
        self.addr = addr
        self.temp = bytearray(2)
        self.write_list = [b"\x40", None]  # Co=0, D/C#=1
        super().__init__(width, height, external_vcc)

    def write_cmd(self, cmd):
        self.temp[0] = 0x80  # Co=1, D/C#=0
        self.temp[1] = cmd
        self.i2c.writeto(self.addr, self.temp)

    def write_data(self, buf):
        self.write_list[1] = buf
        self.i2c.writevto(self.addr, self.write_list)


class SSD1306_SPI(SSD1306):
    def __init__(self, width, height, spi, dc, res, cs, external_vcc=False):
        self.rate = 10 * 1024 * 1024
        dc.init(dc.OUT, value=0)
        res.init(res.OUT, value=0)
        cs.init(cs.OUT, value=1)
        self.spi = spi
        self.dc = dc
        self.res = res
        self.cs = cs
        import time

        self.res(1)
        time.sleep_ms(1)
        self.res(0)
        time.sleep_ms(10)
        self.res(1)
        super().__init__(width, height, external_vcc)

    def write_cmd(self, cmd):
        self.spi.init(baudrate=self.rate, polarity=0, phase=0)
        self.cs(1)
        self.dc(0)
        self.cs(0)
        self.spi.write(bytearray([cmd]))
        self.cs(1)

    def write_data(self, buf):
        self.spi.init(baudrate=self.rate, polarity=0, phase=0)
        self.cs(1)
        self.dc(1)
        self.cs(0)
        self.spi.write(buf)
        self.cs(1)

4.2. OLED_show.py脚本代码:

'''
实验名称:OLED显示屏(I2C总线)
版本:v1.0
日期:2019.4
作者:01Studio
'''

from machine import I2C,Pin         #从machine模块导入I2C、Pin子模块
from ssd1306 import SSD1306_I2C     #从ssd1306模块中导入SSD1306_I2C子模块

i2c = I2C(sda=Pin(5), scl=Pin(4))   #pyBoard I2C初始化:sda--> Y8, scl --> Y6
oled = SSD1306_I2C(128, 64, i2c, addr=0x3c) #OLED显示屏初始化:128*64分辨率,OLED的I2C地址是0x3c

oled.font_load("GB2312-12.fon")
oled.fill(0)

for i in range(4):
#     oled.font_set(0x24, i, 1, 0)
    oled.text("Hello World!", 0,  0)      #写入第1行内容
    oled.text("MicroPython",  0, 20)      #写入第2行内容
    oled.text("By 01Studio",  0, 30)      #写入第3行内容
    oled.text("中文",  0, 40)

    oled.show()   #OLED执行显示

4.3. OLED_class.py脚本代码:

'''
实验名称:【我的学习系统】之OLED中文显示(I2C总线)
版本:v1.0
日期:2021.6.5
作者:kaixindelele
'''

from machine import SoftI2C,Pin         #从machine模块导入I2C、Pin子模块
from ssd1306 import SSD1306_I2C     #从ssd1306模块中导入SSD1306_I2C子模块


class OLED_Show:
    def __init__(self, sda_pin=18, scl_pin=23):        
        # 初始化I2C,设定好端口
        self.i2c = SoftI2C(sda=Pin(sda_pin), scl=Pin(scl_pin))
        #OLED显示屏初始化:128*64分辨率,OLED的I2C地址是0x3c
        self.oled = SSD1306_I2C(128, 64, self.i2c, addr=0x3c)
        # 导入字库
        self.oled.font_load("GB2312-32.fon")
        self.init_display()

    def init_display(self,):
        # 标题
        self.oled.text("我的学习系统?", 0,  0)
        # 标题和正文的分割线
        self.oled.line(0, 14, 128, 14, 1)        
        # 正文1-3
        self.oled.text("手机已使用时间:3H25M",  0, 16)
        self.oled.text("本次剩余时间:0H21M",  0, 30)
        self.oled.text("一定要好好学习啊!",  0, 44)
        # OLED执行显示
        self.oled.show()


def main():
    oled_show = OLED_Show()


if __name__=="__main__":
    main()

这个可以将显示封装成类了,可以针对性的显示一行,选择居中或者左对齐,这样就能轻松定制一个显示界面。

5. 显示效果:

图中的中文显示非常舒服~ 当然还有一些字体大小的设置,没调好,但是这个不重要了~ 在这里插入图片描述

6. 代码和资源

https://github.com/kaixindelele/ssd1306-MicroPython-ESP32-Chinese/ 欢迎给个star~

ssd1306-micropython-esp32-chinese's People

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