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@ -20,15 +20,13 @@ |
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* |
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*/ |
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/**
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****************************************************************************** |
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/*****************************************************************************
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* @file rotary_encoder.cpp |
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* @author LEO / Creality3D |
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* @date 2019/07/06 |
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* @version 2.0.1 |
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* @brief 旋转编码器操作函数 |
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****************************************************************************** |
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**/ |
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* @brief Rotary encoder functions |
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*****************************************************************************/ |
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#include "../../../inc/MarlinConfigPre.h" |
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@ -47,14 +45,14 @@ |
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ENCODER_Rate EncoderRate; |
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/*蜂鸣器响*/ |
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// Buzzer
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void Encoder_tick(void) { |
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WRITE(BEEPER_PIN, 1); |
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delay(10); |
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WRITE(BEEPER_PIN, 0); |
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} |
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/*编码器初始化 PB12:Encoder_A PB13:Encoder_B PB14:Encoder_C*/ |
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// Encoder initialization
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void Encoder_Configuration(void) { |
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#if BUTTON_EXISTS(EN1) |
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SET_INPUT_PULLUP(BTN_EN1); |
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@ -70,8 +68,7 @@ void Encoder_Configuration(void) { |
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#endif |
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} |
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millis_t next_click_update_ms; |
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/*接收数据解析 返回值:ENCODER_DIFF_NO,无状态; ENCODER_DIFF_CW,顺时针旋转; ENCODER_DIFF_CCW,逆时针旋转; ENCODER_DIFF_ENTER,按下*/ |
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// Analyze encoder value and return state
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ENCODER_DiffState Encoder_ReceiveAnalyze(void) { |
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const millis_t now = millis(); |
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static unsigned char lastEncoderBits; |
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@ -82,6 +79,7 @@ ENCODER_DiffState Encoder_ReceiveAnalyze(void) { |
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if (BUTTON_PRESSED(EN1)) newbutton |= 0x01; |
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if (BUTTON_PRESSED(EN2)) newbutton |= 0x02; |
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if (BUTTON_PRESSED(ENC)) { |
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static millis_t next_click_update_ms; |
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if (ELAPSED(now, next_click_update_ms)) { |
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next_click_update_ms = millis() + 300; |
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Encoder_tick(); |
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@ -154,22 +152,22 @@ ENCODER_DiffState Encoder_ReceiveAnalyze(void) { |
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#if PIN_EXISTS(LCD_LED) |
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/*取低24位有效 24Bit: G7 G6 G5 G4 G3 G2 G1 G0 R7 R6 R5 R4 R3 R2 R1 R0 B7 B6 B5 B4 B3 B2 B1 B0*/ |
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// Take the low 24 valid bits 24Bit: G7 G6 G5 G4 G3 G2 G1 G0 R7 R6 R5 R4 R3 R2 R1 R0 B7 B6 B5 B4 B3 B2 B1 B0
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unsigned int LED_DataArray[LED_NUM]; |
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/*LED灯操作*/ |
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// LED light operation
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void LED_Action(void) { |
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LED_Control(RGB_SCALE_WARM_WHITE,0x0F); |
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delay(30); |
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LED_Control(RGB_SCALE_WARM_WHITE,0x00); |
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} |
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/*LED初始化*/ |
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// LED initialization
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void LED_Configuration(void) { |
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SET_OUTPUT(LCD_LED_PIN); |
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} |
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/*LED写数据*/ |
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// LED write data
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void LED_WriteData(void) { |
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unsigned char tempCounter_LED, tempCounter_Bit; |
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for (tempCounter_LED = 0; tempCounter_LED < LED_NUM; tempCounter_LED++) { |
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@ -189,7 +187,9 @@ ENCODER_DiffState Encoder_ReceiveAnalyze(void) { |
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} |
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} |
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/*LED控制 RGB_Scale:RGB色彩配比 luminance:亮度(0~0xFF)*/ |
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// LED control
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// RGB_Scale: RGB color ratio
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// luminance: brightness (0~0xFF)
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void LED_Control(unsigned char RGB_Scale, unsigned char luminance) { |
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unsigned char temp_Counter; |
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for (temp_Counter = 0; temp_Counter < LED_NUM; temp_Counter++) { |
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@ -203,7 +203,10 @@ ENCODER_DiffState Encoder_ReceiveAnalyze(void) { |
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LED_WriteData(); |
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} |
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/*LED渐变控制 RGB_Scale:RGB色彩配比 luminance:亮度(0~0xFF) change_Time:渐变时间(ms)*/ |
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// LED gradient control
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// RGB_Scale: RGB color ratio
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// luminance: brightness (0~0xFF)
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// change_Time: gradient time (ms)
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void LED_GraduallyControl(unsigned char RGB_Scale, unsigned char luminance, unsigned int change_Interval) { |
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unsigned char temp_Counter; |
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unsigned char LED_R_Data[LED_NUM], LED_G_Data[LED_NUM], LED_B_Data[LED_NUM]; |
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@ -246,6 +249,6 @@ ENCODER_DiffState Encoder_ReceiveAnalyze(void) { |
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} |
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} |
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#endif |
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#endif // LCD_LED
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#endif // DWIN_CREALITY_LCD
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