Две этикетки
This commit is contained in:
228
ili9341.cpp
228
ili9341.cpp
@@ -11,166 +11,170 @@ ILI9341::ILI9341(PinName MOSI, PinName MISO, PinName SCK, PinName DC, PinName RS
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rst = 1;
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osDelay(10);
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ThisThread::sleep_for(10ms);
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// (void)osDelay(10);
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rst = 0;
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osDelay(10);
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ThisThread::sleep_for(10ms);
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// osDelay(10);
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rst = 1;
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osDelay(10);
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ThisThread::sleep_for(10ms);
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// osDelay(10);
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LCD_WR_REG(0x01); //software reset
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osDelay(50);
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LCD_WR_REG(0x28);
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LCD_WR_REG(0x01U); //software reset
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ThisThread::sleep_for(50ms);
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// osDelay(50);
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LCD_WR_REG(0x28U);
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// display off
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//---------------------------------------------------------
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// magic?
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LCD_WR_REG(0xcf);
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LCD_WR_Data(0x00);
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LCD_WR_Data(0x83);
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LCD_WR_Data(0x30);
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LCD_WR_REG(0xcfU);
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LCD_WR_Data(0x00U);
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LCD_WR_Data(0x83U);
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LCD_WR_Data(0x30U);
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LCD_WR_REG(0xed);
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LCD_WR_Data(0x64);
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LCD_WR_Data(0x03);
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LCD_WR_Data(0x12);
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LCD_WR_Data(0x81);
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LCD_WR_REG(0xe8);
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LCD_WR_Data(0x85);
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LCD_WR_Data(0x01);
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LCD_WR_Data(0x79);
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LCD_WR_REG(0xcb);
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LCD_WR_Data(0x39);
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LCD_WR_Data(0x2c);
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LCD_WR_Data(0x00);
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LCD_WR_Data(0x34);
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LCD_WR_Data(0x02);
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LCD_WR_REG(0xf7);
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LCD_WR_Data(0x20);
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LCD_WR_REG(0xea);
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LCD_WR_Data(0x00);
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LCD_WR_Data(0x00);
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LCD_WR_REG(0xedU);
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LCD_WR_Data(0x64U);
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LCD_WR_Data(0x03U);
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LCD_WR_Data(0x12U);
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LCD_WR_Data(0x81U);
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LCD_WR_REG(0xe8U);
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LCD_WR_Data(0x85U);
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LCD_WR_Data(0x01U);
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LCD_WR_Data(0x79U);
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LCD_WR_REG(0xcbU);
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LCD_WR_Data(0x39U);
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LCD_WR_Data(0x2cU);
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LCD_WR_Data(0x00U);
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LCD_WR_Data(0x34U);
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LCD_WR_Data(0x02U);
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LCD_WR_REG(0xf7U);
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LCD_WR_Data(0x20U);
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LCD_WR_REG(0xeaU);
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LCD_WR_Data(0x00U);
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LCD_WR_Data(0x00U);
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//------------power control------------------------------
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LCD_WR_REG(0xc0); //power control
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LCD_WR_Data(0x26);
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LCD_WR_REG(0xc1); //power control
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LCD_WR_Data(0x11);
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LCD_WR_REG(0xc0U); //power control
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LCD_WR_Data(0x26U);
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LCD_WR_REG(0xc1U); //power control
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LCD_WR_Data(0x11U);
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//--------------VCOM
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LCD_WR_REG(0xc5); //vcom control
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LCD_WR_Data(0x35); //35
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LCD_WR_Data(0x3e); //3E
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LCD_WR_REG(0xc7); //vcom control
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LCD_WR_Data(0xbe); // 0x94
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LCD_WR_REG(0xc5U); //vcom control
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LCD_WR_Data(0x35U); //35
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LCD_WR_Data(0x3eU); //3E
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LCD_WR_REG(0xc7U); //vcom control
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LCD_WR_Data(0xbeU); // 0x94
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//------------memory access control------------------------
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LCD_WR_REG(0x36);
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LCD_WR_REG(0x36U);
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// memory access control
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LCD_WR_Data(0xE8U); //Поворот экрана на 0 градусов
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// LCD_WR_Data(0x28U); //Поворот экрана на 180 градусов
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LCD_WR_REG(0x3a); // pixel format set
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LCD_WR_Data(0x55); //16bit /pixel
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LCD_WR_REG(0x3aU); // pixel format set
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LCD_WR_Data(0x55U); //16bit /pixel
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//----------------- frame rate------------------------------
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LCD_WR_REG(0xb1);
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LCD_WR_REG(0xb1U);
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// frame rate
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LCD_WR_Data(0x00U);
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LCD_WR_Data(0x1BU); //70
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//----------------Gamma---------------------------------
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LCD_WR_REG(0xf2); // 3Gamma Function Disable
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LCD_WR_Data(0x08);
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LCD_WR_REG(0x26);
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LCD_WR_Data(0x01); // gamma set 4 gamma curve 01/02/04/08
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LCD_WR_REG(0xf2U); // 3Gamma Function Disable
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LCD_WR_Data(0x08U);
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LCD_WR_REG(0x26U);
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LCD_WR_Data(0x01U); // gamma set 4 gamma curve 01/02/04/08
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LCD_WR_REG(0xE0); //positive gamma correction
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LCD_WR_Data(0x1f);
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LCD_WR_Data(0x1a);
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LCD_WR_Data(0x18);
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LCD_WR_Data(0x0a);
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LCD_WR_Data(0x0f);
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LCD_WR_Data(0x06);
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LCD_WR_Data(0x45);
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LCD_WR_Data(0x87);
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LCD_WR_Data(0x32);
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LCD_WR_Data(0x0a);
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LCD_WR_Data(0x07);
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LCD_WR_Data(0x02);
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LCD_WR_Data(0x07);
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LCD_WR_Data(0x05);
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LCD_WR_Data(0x00);
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LCD_WR_REG(0xE1); //negamma correction
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LCD_WR_Data(0x00);
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LCD_WR_Data(0x25);
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LCD_WR_Data(0x27);
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LCD_WR_Data(0x05);
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LCD_WR_Data(0x10);
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LCD_WR_Data(0x09);
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LCD_WR_Data(0x3a);
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LCD_WR_Data(0x78);
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LCD_WR_Data(0x4d);
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LCD_WR_Data(0x05);
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LCD_WR_Data(0x18);
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LCD_WR_Data(0x0d);
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LCD_WR_Data(0x38);
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LCD_WR_Data(0x3a);
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LCD_WR_Data(0x1f);
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LCD_WR_REG(0xE0U); //positive gamma correction
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LCD_WR_Data(0x1fU);
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LCD_WR_Data(0x1aU);
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LCD_WR_Data(0x18U);
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LCD_WR_Data(0x0aU);
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LCD_WR_Data(0x0fU);
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LCD_WR_Data(0x06U);
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LCD_WR_Data(0x45U);
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LCD_WR_Data(0x87U);
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LCD_WR_Data(0x32U);
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LCD_WR_Data(0x0aU);
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LCD_WR_Data(0x07U);
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LCD_WR_Data(0x02U);
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LCD_WR_Data(0x07U);
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LCD_WR_Data(0x05U);
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LCD_WR_Data(0x00U);
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LCD_WR_REG(0xE1U); //negamma correction
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LCD_WR_Data(0x00U);
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LCD_WR_Data(0x25U);
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LCD_WR_Data(0x27U);
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LCD_WR_Data(0x05U);
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LCD_WR_Data(0x10U);
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LCD_WR_Data(0x09U);
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LCD_WR_Data(0x3aU);
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LCD_WR_Data(0x78U);
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LCD_WR_Data(0x4dU);
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LCD_WR_Data(0x05U);
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LCD_WR_Data(0x18U);
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LCD_WR_Data(0x0dU);
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LCD_WR_Data(0x38U);
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LCD_WR_Data(0x3aU);
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LCD_WR_Data(0x1fU);
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//--------------ddram ---------------------
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LCD_WR_REG(0x2a);
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LCD_WR_REG(0x2aU);
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// column set
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// size = 239
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LCD_WR_Data(0x00);
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LCD_WR_Data(0x00);
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LCD_WR_Data(0x00);
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LCD_WR_Data(0xEF);
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LCD_WR_REG(0x2b);
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LCD_WR_Data(0x00U);
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LCD_WR_Data(0x00U);
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LCD_WR_Data(0x00U);
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LCD_WR_Data(0xEFU);
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LCD_WR_REG(0x2bU);
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// page address set
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// size = 319
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LCD_WR_Data(0x00);
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LCD_WR_Data(0x00);
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LCD_WR_Data(0x01);
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LCD_WR_Data(0x3F);
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LCD_WR_Data(0x00U);
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LCD_WR_Data(0x00U);
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LCD_WR_Data(0x01U);
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LCD_WR_Data(0x3FU);
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// LCD_WR_REG(0x34);
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//LCD_WR_REG(0x35);
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// tearing effect off
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// tearing effect on
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// LCD_WR_REG(0xb4); // display inversion
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// LCD_WR_Data(0x00);
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LCD_WR_REG(0xb7); //entry mode set
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LCD_WR_Data(0x07);
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LCD_WR_REG(0xb7U); //entry mode set
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LCD_WR_Data(0x07U);
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//-----------------display---------------------
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LCD_WR_REG(0xb6);
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LCD_WR_REG(0xb6U);
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// display function control
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LCD_WR_Data(0x0a);
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LCD_WR_Data(0x82);
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LCD_WR_Data(0x27);
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LCD_WR_Data(0x00);
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LCD_WR_REG(0x11); //sleep out
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osDelay(100);
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LCD_WR_REG(0x29); // display on
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LCD_WR_Data(0x0aU);
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LCD_WR_Data(0x82U);
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LCD_WR_Data(0x27U);
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LCD_WR_Data(0x00U);
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LCD_WR_REG(0x11U); //sleep out
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ThisThread::sleep_for(100ms);
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LCD_WR_REG(0x29U); // display on
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}
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void ILI9341::LCD_WR_Data(uint8_t Data) {
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dc = 1;
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dispPort.write(Data);
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(void)dispPort.write(static_cast<int>(Data));
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}
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void ILI9341::LCD_WR_REG(uint8_t Reg) {
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dc = 0;
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dispPort.write(Reg);
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(void)dispPort.write(static_cast<int>(Reg));
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}
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void
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ILI9341::LCD_setaddress(uint16_t x1, uint16_t y1, uint16_t x2, uint16_t y2) //set coordinate for print or other function
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{
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LCD_WR_REG(0x2A);
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LCD_WR_Data(x1 >> 8);
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LCD_WR_Data(x1);
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LCD_WR_Data(x2 >> 8);
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LCD_WR_Data(x2);
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LCD_WR_REG(0x2AU);
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LCD_WR_Data(x1 >> 8U);
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LCD_WR_Data(static_cast<uint8_t>(x1));
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LCD_WR_Data(x2 >> 8U);
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LCD_WR_Data(static_cast<uint8_t>(x2));
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LCD_WR_REG(0x2B);
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LCD_WR_Data(y1 >> 8);
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LCD_WR_Data(y1);
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LCD_WR_Data(y2 >> 8);
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LCD_WR_Data(y2);
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LCD_WR_REG(0x2BU);
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LCD_WR_Data(y1 >> 8U);
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LCD_WR_Data(static_cast<uint8_t>(y1));
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LCD_WR_Data(y2 >> 8U);
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LCD_WR_Data(static_cast<uint8_t>(y2));
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LCD_WR_REG(0x2C); //memory write
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LCD_WR_REG(0x2CU); //memory write
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}
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void ILI9341::transmitData(const uint8_t *pixels, uint16_t x, uint16_t y, uint16_t w, uint16_t h) {
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144
tsc2046.cpp
144
tsc2046.cpp
@@ -1,11 +1,11 @@
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#include "tsc2046.h"
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#define CMD_X 0xD1
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#define CMD_Y 0x91
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#define CMD_ENABLE_IRQ 0x80
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constexpr char CMD_X=0xD1U;
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constexpr char CMD_Y=0x91U;
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constexpr char CMD_ENABLE_IRQ=0x80U;
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#define RESCALE_FACTOR 1000000
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#define EE_MEM_ADDR 400
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constexpr uint32_t EE_MEM_ADDR=400U;
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const constexpr auto dispWidth = 320;
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const constexpr auto dispHeight = 240;
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@@ -18,33 +18,36 @@ const constexpr auto yd1 = (10 * dispHeight) / 100;
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const constexpr auto yd2 = (50 * dispHeight) / 100;
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const constexpr auto yd3 = (90 * dispHeight) / 100;
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TSC2046::TSC2046(EEPROM* mem, PinName MOSI, PinName MISO, PinName SCK, PinName CS, PinName INT)
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TSC2046::TSC2046(EEPROM* mem, PinName MOSI, PinName MISO, PinName SCK, PinName CS, PinName INT):
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tpPort(MOSI, MISO, SCK),
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tpCS(CS),
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tpInt(INT, PullUp)
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{
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tpPort = new SPI(MOSI, MISO, SCK);
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tpCS = new DigitalOut(CS);
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tpInt = new DigitalIn(INT, PullUp);
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// tpPort = new SPI(MOSI, MISO, SCK);
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// tpCS = new DigitalOut(CS);
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// tpInt = new DigitalIn(INT, PullUp);
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eeprom = mem;
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eeprom->read(EE_MEM_ADDR, (uint8_t*)&touchCoeff, sizeof(touchCoeff));
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if (touchCoeff.touchIsCalibrated > 2)
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touchCoeff.touchIsCalibrated = false;
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eeprom->read(EE_MEM_ADDR, reinterpret_cast<uint8_t*>(&touchCoeff), sizeof(touchCoeff));
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if (touchCoeff.touchIsCalibrated > 2U) { touchCoeff.touchIsCalibrated = false; }
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readValue(CMD_ENABLE_IRQ); // Enable IRQ
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(void)readValue(CMD_ENABLE_IRQ); // Enable IRQ
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}
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void TSC2046::GetRawXY(uint16_t* X, uint16_t* Y)
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{
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readValue(CMD_X); // Dummy read - disable PenIRQ
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(void)readValue(CMD_X); // Dummy read - disable PenIRQ
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*X = readValue(CMD_X); // Read X-Value
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readValue(CMD_Y); // Dummy read - disable PenIRQ
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(void)readValue(CMD_Y); // Dummy read - disable PenIRQ
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*Y = readValue(CMD_Y); // Read Y-Value
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readValue(CMD_ENABLE_IRQ); // Enable IRQ
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(void)readValue(CMD_ENABLE_IRQ); // Enable IRQ
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}
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void TSC2046::GetXY(int32_t* X, int32_t* Y)
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{
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uint16_t x, y;
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uint16_t x;
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uint16_t y;
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if (DetectTouch()) {
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GetRawXY(&x, &y);
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*X = (touchCoeff.cali_A * x + touchCoeff.cali_B * y + touchCoeff.cali_C) / RESCALE_FACTOR;
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@@ -52,116 +55,129 @@ void TSC2046::GetXY(int32_t* X, int32_t* Y)
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}
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}
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uint16_t TSC2046::readValue(uint16_t port)
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uint16_t TSC2046::readValue(char port)
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{
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static char txbuf[3] = { 0 };
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static char rxbuf[3] = { 0 };
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static char txbuf[3] = { 0U };
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static char rxbuf[3] = { 0U };
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txbuf[0] = port;
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tpCS->write(0);
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tpPort->write(txbuf, 3, rxbuf, 3);
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tpCS->write(1);
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tpCS.write(0);
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(void)tpPort.write(txbuf, 3, rxbuf, 3);
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tpCS.write(1);
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return ((uint16_t)rxbuf[1] << 5) | (rxbuf[2] >> 3);
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}
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bool TSC2046::DetectTouch()
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{
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return !tpInt->read();
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return !tpInt.read();
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}
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void TSC2046::coeffCalc()
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{
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double temp1, temp2;
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double cal_A = 0.0, cal_B = 0.0, cal_C = 0.0, cal_D = 0.0, cal_E = 0.0, cal_F = 0.0;
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double temp1;
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double temp2;
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double cal_A = 0.0;
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double cal_B = 0.0;
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double cal_C = 0.0;
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double cal_D = 0.0;
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double cal_E = 0.0;
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double cal_F = 0.0;
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//A
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temp1 = ((double)xd1 * ((double)yt2 - (double)yt3)) + ((double)xd2 * ((double)yt3 - (double)yt1)) + ((double)xd3 * ((double)yt1 - (double)yt2));
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temp2 = ((double)xt1 * ((double)yt2 - (double)yt3)) + ((double)xt2 * ((double)yt3 - (double)yt1)) + ((double)xt3 * ((double)yt1 - (double)yt2));
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temp1 = (static_cast<double>(xd1) * (static_cast<double>(yt2) - static_cast<double>(yt3))) + (static_cast<double>(xd2)
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* (static_cast<double>(yt3) - static_cast<double>(yt1))) + (static_cast<double>(xd3)
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* (static_cast<double>(yt1) - static_cast<double>(yt2)));
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temp2 = (static_cast<double>(xt1) * (static_cast<double>(yt2) - static_cast<double>(yt3))) + (static_cast<double>(xt2)
|
||||
* (static_cast<double>(yt3) - static_cast<double>(yt1))) + (static_cast<double>(xt3) *
|
||||
(static_cast<double>(yt1) - static_cast<double>(yt2)));
|
||||
cal_A = temp1 / temp2;
|
||||
touchCoeff.cali_A = (int32_t)((double)cal_A * RESCALE_FACTOR);
|
||||
touchCoeff.cali_A = static_cast<int32_t>(cal_A * RESCALE_FACTOR);
|
||||
|
||||
//B
|
||||
temp1 = (cal_A * ((double)xt3 - (double)xt2)) + (double)xd2 - (double)xd3;
|
||||
temp2 = (double)yt2 - (double)yt3;
|
||||
temp1 = (cal_A * (static_cast<double>(xt3) - static_cast<double>(xt2))) + static_cast<double>(xd2) - static_cast<double>(xd3);
|
||||
temp2 = static_cast<double>(yt2) - static_cast<double>(yt3);
|
||||
cal_B = temp1 / temp2;
|
||||
touchCoeff.cali_B = (int32_t)((double)cal_B * RESCALE_FACTOR);
|
||||
touchCoeff.cali_B = static_cast<int32_t>(cal_B * RESCALE_FACTOR);
|
||||
|
||||
//C
|
||||
cal_C = (double)xd3 - (cal_A * (double)xt3) - (cal_B * (double)yt3);
|
||||
touchCoeff.cali_C = (int32_t)(cal_C * RESCALE_FACTOR);
|
||||
cal_C = static_cast<double>(xd3) - (cal_A * static_cast<double>(xt3)) - (cal_B * static_cast<double>(yt3));
|
||||
touchCoeff.cali_C = static_cast<int32_t>(cal_C * RESCALE_FACTOR);
|
||||
|
||||
//D
|
||||
temp1 = ((double)yd1 * ((double)yt2 - (double)yt3)) + ((double)yd2 * ((double)yt3 - (double)yt1)) + ((double)yd3 * ((double)yt1 - (double)yt2));
|
||||
temp2 = ((double)xt1 * ((double)yt2 - (double)yt3)) + ((double)xt2 * ((double)yt3 - (double)yt1)) + ((double)xt3 * ((double)yt1 - (double)yt2));
|
||||
cal_D = (double)temp1 / (double)temp2;
|
||||
touchCoeff.cali_D = (int32_t)(cal_D * RESCALE_FACTOR);
|
||||
temp1 = (static_cast<double>(yd1) * (static_cast<double>(yt2) - static_cast<double>(yt3))) + (static_cast<double>(yd2)
|
||||
* (static_cast<double>(yt3) - static_cast<double>(yt1))) + (static_cast<double>(yd3)
|
||||
* (static_cast<double>(yt1) - static_cast<double>(yt2)));
|
||||
temp2 = (static_cast<double>(xt1) * (static_cast<double>(yt2) - static_cast<double>(yt3))) + (static_cast<double>(xt2)
|
||||
* (static_cast<double>(yt3) - static_cast<double>(yt1))) + (static_cast<double>(xt3)
|
||||
* (static_cast<double>(yt1) - static_cast<double>(yt2)));
|
||||
cal_D = static_cast<double>(temp1) / static_cast<double>(temp2);
|
||||
touchCoeff.cali_D = static_cast<int32_t>(cal_D * RESCALE_FACTOR);
|
||||
|
||||
//E
|
||||
temp1 = (cal_D * ((double)xt3 - (double)xt2)) + (double)yd2 - (double)yd3;
|
||||
temp2 = (double)yt2 - (double)yt3;
|
||||
cal_E = (double)temp1 / (double)temp2;
|
||||
touchCoeff.cali_E = (int32_t)(cal_E * RESCALE_FACTOR);
|
||||
temp1 = (cal_D * (static_cast<double>(xt3) - static_cast<double>(xt2))) + static_cast<double>(yd2) - static_cast<double>(yd3);
|
||||
temp2 = static_cast<double>(yt2) - static_cast<double>(yt3);
|
||||
cal_E = static_cast<double>(temp1) / static_cast<double>(temp2);
|
||||
touchCoeff.cali_E = static_cast<int32_t>(cal_E * RESCALE_FACTOR);
|
||||
|
||||
//F
|
||||
cal_F = (double)yd3 - cal_D * (double)xt3 - cal_E * (double)yt3;
|
||||
touchCoeff.cali_F = (int32_t)(cal_F * RESCALE_FACTOR);
|
||||
cal_F = static_cast<double>(yd3) - cal_D * static_cast<double>(xt3) - cal_E * static_cast<double>(yt3);
|
||||
touchCoeff.cali_F = static_cast<int32_t>(cal_F * RESCALE_FACTOR);
|
||||
}
|
||||
|
||||
uint16_t TSC2046::getXd1(void)
|
||||
int TSC2046::getXd1()
|
||||
{
|
||||
return xd1;
|
||||
}
|
||||
|
||||
uint16_t TSC2046::getXd2(void)
|
||||
int TSC2046::getXd2()
|
||||
{
|
||||
return xd2;
|
||||
}
|
||||
uint16_t TSC2046::getXd3(void)
|
||||
int TSC2046::getXd3()
|
||||
{
|
||||
return xd3;
|
||||
}
|
||||
uint16_t TSC2046::getYd1(void)
|
||||
int TSC2046::getYd1()
|
||||
{
|
||||
return yd1;
|
||||
}
|
||||
|
||||
uint16_t TSC2046::getYd2(void)
|
||||
int TSC2046::getYd2()
|
||||
{
|
||||
return yd2;
|
||||
}
|
||||
uint16_t TSC2046::getYd3(void)
|
||||
int TSC2046::getYd3()
|
||||
{
|
||||
return yd3;
|
||||
}
|
||||
|
||||
void TSC2046::setXt1(uint32_t xt1)
|
||||
void TSC2046::setXt1(uint32_t _xt1)
|
||||
{
|
||||
this->xt1 = xt1;
|
||||
this->xt1 = _xt1;
|
||||
}
|
||||
void TSC2046::setXt2(uint32_t xt2)
|
||||
void TSC2046::setXt2(uint32_t _xt2)
|
||||
{
|
||||
this->xt2 = xt2;
|
||||
this->xt2 = _xt2;
|
||||
}
|
||||
void TSC2046::setXt3(uint32_t xt3)
|
||||
void TSC2046::setXt3(uint32_t _xt3)
|
||||
{
|
||||
this->xt3 = xt3;
|
||||
this->xt3 = _xt3;
|
||||
}
|
||||
void TSC2046::setYt1(uint32_t yt1)
|
||||
void TSC2046::setYt1(uint32_t _yt1)
|
||||
{
|
||||
this->yt1 = yt1;
|
||||
this->yt1 = _yt1;
|
||||
}
|
||||
void TSC2046::setYt2(uint32_t yt2)
|
||||
void TSC2046::setYt2(uint32_t _yt2)
|
||||
{
|
||||
this->yt2 = yt2;
|
||||
this->yt2 = _yt2;
|
||||
}
|
||||
void TSC2046::setYt3(uint32_t yt3)
|
||||
void TSC2046::setYt3(uint32_t _yt3)
|
||||
{
|
||||
this->yt3 = yt3;
|
||||
this->yt3 = _yt3;
|
||||
}
|
||||
|
||||
bool TSC2046::getCalibrated()
|
||||
bool TSC2046::getCalibrated() const
|
||||
{
|
||||
return touchCoeff.touchIsCalibrated;
|
||||
}
|
||||
@@ -169,5 +185,5 @@ bool TSC2046::getCalibrated()
|
||||
void TSC2046::setCalibrated()
|
||||
{
|
||||
touchCoeff.touchIsCalibrated = true;
|
||||
eeprom->write(EE_MEM_ADDR, (uint8_t*)&touchCoeff, sizeof(touchCoeff));
|
||||
eeprom->write(EE_MEM_ADDR, reinterpret_cast<uint8_t *>(&touchCoeff), sizeof(touchCoeff));
|
||||
}
|
||||
|
||||
34
tsc2046.h
34
tsc2046.h
@@ -7,21 +7,21 @@ public:
|
||||
|
||||
void GetXY(int32_t* X, int32_t* Y);
|
||||
|
||||
uint16_t getXd1(void);
|
||||
uint16_t getXd2(void);
|
||||
uint16_t getXd3(void);
|
||||
uint16_t getYd1(void);
|
||||
uint16_t getYd2(void);
|
||||
uint16_t getYd3(void);
|
||||
static int getXd1();
|
||||
static int getXd2();
|
||||
static int getXd3();
|
||||
static int getYd1();
|
||||
static int getYd2();
|
||||
static int getYd3();
|
||||
|
||||
void setXt1(uint32_t xt1);
|
||||
void setXt2(uint32_t xt2);
|
||||
void setXt3(uint32_t xt3);
|
||||
void setYt1(uint32_t yt1);
|
||||
void setYt2(uint32_t yt2);
|
||||
void setYt3(uint32_t yt3);
|
||||
void setXt1(uint32_t _xt1);
|
||||
void setXt2(uint32_t _xt2);
|
||||
void setXt3(uint32_t _xt3);
|
||||
void setYt1(uint32_t _yt1);
|
||||
void setYt2(uint32_t _yt2);
|
||||
void setYt3(uint32_t _yt3);
|
||||
void setCalibrated();
|
||||
bool getCalibrated();
|
||||
bool getCalibrated() const;
|
||||
|
||||
bool DetectTouch();
|
||||
|
||||
@@ -49,9 +49,9 @@ private:
|
||||
uint32_t yt2;
|
||||
uint32_t yt3;
|
||||
|
||||
SPI* tpPort;
|
||||
DigitalOut* tpCS;
|
||||
DigitalIn* tpInt;
|
||||
SPI tpPort;
|
||||
DigitalOut tpCS;
|
||||
DigitalIn tpInt;
|
||||
EEPROM* eeprom;
|
||||
uint16_t readValue(uint16_t port);
|
||||
uint16_t readValue(char port);
|
||||
};
|
||||
|
||||
Reference in New Issue
Block a user