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@ -6,72 +6,35 @@
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* When selecting the rusian language, a slightly different LCD implementation is used to handle UTF8 characters.
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**/
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// Declare LCD class to use
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#if defined(LCD_I2C_TYPE_PCF8575)
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// note: these are virtual pins on the PCF8575 controller not Arduino pins
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#define LCD_I2C_PIN_BL 3
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#define LCD_I2C_PIN_EN 2
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#define LCD_I2C_PIN_RW 1
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#define LCD_I2C_PIN_RS 0
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#define LCD_I2C_PIN_D4 4
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#define LCD_I2C_PIN_D5 5
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#define LCD_I2C_PIN_D6 6
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#define LCD_I2C_PIN_D7 7
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#include <Wire.h>
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#include <LCD.h>
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#include <LiquidCrystal_I2C.h>
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#define LCD_CLASS LiquidCrystal_I2C
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LCD_CLASS lcd(LCD_I2C_ADDRESS,LCD_I2C_PIN_EN,LCD_I2C_PIN_RW,LCD_I2C_PIN_RS,LCD_I2C_PIN_D4,LCD_I2C_PIN_D5,LCD_I2C_PIN_D6,LCD_I2C_PIN_D7);
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#elif defined(LCD_I2C_TYPE_MCP23017)
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//for the LED indicators (which maybe mapped to different things in lcd_implementation_update_indicators())
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#define LED_A 0x04 //100
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#define LED_B 0x02 //010
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#define LED_C 0x01 //001
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#include <Wire.h>
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#include <LiquidTWI2.h>
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#define LCD_CLASS LiquidTWI2
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LCD_CLASS lcd(LCD_I2C_ADDRESS); //An alternative I2C master address can be used in place of "0"
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#elif defined(LCD_I2C_TYPE_MCP23008)
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#include <Wire.h>
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#include <LiquidTWI2.h>
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#define LCD_CLASS LiquidTWI2
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LCD_CLASS lcd(LCD_I2C_ADDRESS); //An alternative I2C master address can be used in place of "0"
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#else
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#if LANGUAGE_CHOICE == 6
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#include "LiquidCrystalRus.h"
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#define LCD_CLASS LiquidCrystalRus
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#else
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#include <LiquidCrystal.h>
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#define LCD_CLASS LiquidCrystal
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#endif
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LCD_CLASS lcd(LCD_PINS_RS, LCD_PINS_ENABLE, LCD_PINS_D4, LCD_PINS_D5,LCD_PINS_D6,LCD_PINS_D7); //RS,Enable,D4,D5,D6,D7
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#endif
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extern volatile uint8_t buttons; //the last checked buttons in a bit array.
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// provide default button bitmask and encoder definitions (note this is not pin or motherboard specific)
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#ifdef LCD_I2C_VIKI
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//encoder rotation values
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#define encrot0 0
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#define encrot1 2
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#define encrot2 3
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#define encrot3 1
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#define BLEN_C 2
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#define BLEN_B 1
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#define BLEN_A 0
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#define EN_C (1<<BLEN_C) // The stop/pause/resume button comes through BTN_ENC pin (for consistency with NEWPANEL code)
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#define EN_B (1<<BLEN_B) // The two encoder pins are connected through BTN_EN1 and BTN_EN2
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#define EN_A (1<<BLEN_A)
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#define B_I2C_BTN_OFFSET 3 // (the first three bit positions reserved for EN_A, EN_B, EN_C)
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////////////////////////////////////
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// Setup button and encode mappings for each panel (into 'buttons' variable)
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//
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// This is just to map common functions (across different panels) onto the same
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// macro name. The mapping is independent of whether the button is directly connected or
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// via a shift/i2c register.
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#ifdef ULTIPANEL
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// All Ultipanels might have an encoder - so this is always be mapped onto first two bits
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#define BLEN_B 1
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#define BLEN_A 0
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#define EN_B (1<<BLEN_B) // The two encoder pins are connected through BTN_EN1 and BTN_EN2
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#define EN_A (1<<BLEN_A)
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//
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// Setup other button mappings of each panel
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//
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#if defined(LCD_I2C_VIKI)
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#define BLEN_C 2 // == pause/stop/restart button connected to BTN_ENC pin (named for consistency with NEWPANEL code)
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#define EN_C (1<<BLEN_C)
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#define B_I2C_BTN_OFFSET (BLEN_C+1) // (the first three bit positions reserved for EN_A, EN_B, EN_C)
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// button and encoder bit positions within 'buttons'
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#define B_ST (EN_C) // The pause/stop/resume button is mapped to EN_C for consistency with NEWPANEL
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#define B_LE (BUTTON_LEFT<<B_I2C_BTN_OFFSET) // The remaining buttons are I2C read buttons.
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#define B_ST (EN_C) // Map the pause/stop/resume button into its normalized functional name
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#define B_LE (BUTTON_LEFT<<B_I2C_BTN_OFFSET) // The remaining normalized buttons are all read via I2C
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#define B_UP (BUTTON_UP<<B_I2C_BTN_OFFSET)
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#define B_MI (BUTTON_SELECT<<B_I2C_BTN_OFFSET)
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#define B_DW (BUTTON_DOWN<<B_I2C_BTN_OFFSET)
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@ -79,41 +42,16 @@ extern volatile uint8_t buttons; //the last checked buttons in a bit array.
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#define LCD_CLICKED (buttons&(B_MI|B_RI|B_ST)) // pause/stop button also acts as click until we implement proper pause/stop.
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// I2C buttons are likely to take too long to read inside interrupt context and so we read them during lcd_update
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#define LCD_HAS_EXTRA_BUTTONS
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#elif defined(NEWPANEL)
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//from the same bit in the RAMPS Newpanel define
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//encoder rotation values
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#define encrot0 0
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#define encrot1 2
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#define encrot2 3
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#define encrot3 1
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#define BLEN_C 2
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#define BLEN_B 1
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#define BLEN_A 0
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// I2C buttons take too long to read inside an interrupt context and so we read them during lcd_update
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#define LCD_HAS_SLOW_BUTTONS
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#elif defined(NEWPANEL)
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// Standard Newpanel has just a single button (all direclty connected)
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#define BLEN_C 2 // == select button
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#define EN_C (1<<BLEN_C)
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#define EN_B (1<<BLEN_B)
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#define EN_A (1<<BLEN_A)
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#define LCD_CLICKED (buttons&EN_C)
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#else // old style ULTIPANEL
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//encoder rotation values
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#ifndef ULTIMAKERCONTROLLER
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#define encrot0 0
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#define encrot1 2
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#define encrot2 3
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#define encrot3 1
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#else
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#define encrot0 0
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#define encrot1 1
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#define encrot2 3
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#define encrot3 2
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#endif
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//bits in the shift register that carry the buttons for:
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// left up center down right red(stop)
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#define BL_LE 7
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@ -123,9 +61,6 @@ extern volatile uint8_t buttons; //the last checked buttons in a bit array.
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#define BL_RI 3
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#define BL_ST 2
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#define BLEN_B 1
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#define BLEN_A 0
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//automatic, do not change
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#define B_LE (1<<BL_LE)
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#define B_UP (1<<BL_UP)
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@ -133,15 +68,78 @@ extern volatile uint8_t buttons; //the last checked buttons in a bit array.
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#define B_DW (1<<BL_DW)
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#define B_RI (1<<BL_RI)
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#define B_ST (1<<BL_ST)
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#define EN_B (1<<BLEN_B)
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#define EN_A (1<<BLEN_A)
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#define LCD_CLICKED (buttons&(B_MI|B_ST))
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#endif//else NEWPANEL
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#ifdef LCD_HAS_STATUS_INDICATORS
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//forward declaration
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static void lcd_implementation_update_indicators();
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////////////////////////
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// Setup Rotary Encoder Bit Values (for two pin encoders to indicate movement)
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// These values are independent of which pins are used for EN_A and EN_B indications
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// The rotary encoder part is also independent to the chipset used for the LCD
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#if defined(EN_A) && defined(EN_B)
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#ifndef ULTIMAKERCONTROLLER
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#define encrot0 0
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#define encrot1 2
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#define encrot2 3
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#define encrot3 1
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#else
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#define encrot0 0
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#define encrot1 1
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#define encrot2 3
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#define encrot3 2
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#endif
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#endif
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#endif //ULTIPANEL
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////////////////////////////////////
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// Create LCD class instance and chipset-specific information
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#if defined(LCD_I2C_TYPE_PCF8575)
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// note: these are register mapped pins on the PCF8575 controller not Arduino pins
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#define LCD_I2C_PIN_BL 3
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#define LCD_I2C_PIN_EN 2
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#define LCD_I2C_PIN_RW 1
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#define LCD_I2C_PIN_RS 0
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#define LCD_I2C_PIN_D4 4
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#define LCD_I2C_PIN_D5 5
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#define LCD_I2C_PIN_D6 6
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#define LCD_I2C_PIN_D7 7
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#include <Wire.h>
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#include <LCD.h>
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#include <LiquidCrystal_I2C.h>
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#define LCD_CLASS LiquidCrystal_I2C
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LCD_CLASS lcd(LCD_I2C_ADDRESS,LCD_I2C_PIN_EN,LCD_I2C_PIN_RW,LCD_I2C_PIN_RS,LCD_I2C_PIN_D4,LCD_I2C_PIN_D5,LCD_I2C_PIN_D6,LCD_I2C_PIN_D7);
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#elif defined(LCD_I2C_TYPE_MCP23017)
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//for the LED indicators (which maybe mapped to different things in lcd_implementation_update_indicators())
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#define LED_A 0x04 //100
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#define LED_B 0x02 //010
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#define LED_C 0x01 //001
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#define LCD_HAS_STATUS_INDICATORS
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#include <Wire.h>
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#include <LiquidTWI2.h>
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#define LCD_CLASS LiquidTWI2
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LCD_CLASS lcd(LCD_I2C_ADDRESS);
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#elif defined(LCD_I2C_TYPE_MCP23008)
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#include <Wire.h>
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#include <LiquidTWI2.h>
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#define LCD_CLASS LiquidTWI2
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LCD_CLASS lcd(LCD_I2C_ADDRESS);
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#else
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// Standard directly connected LCD implementations
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#if LANGUAGE_CHOICE == 6
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#include "LiquidCrystalRus.h"
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#define LCD_CLASS LiquidCrystalRus
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#else
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#include <LiquidCrystal.h>
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#define LCD_CLASS LiquidCrystal
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#endif
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LCD_CLASS lcd(LCD_PINS_RS, LCD_PINS_ENABLE, LCD_PINS_D4, LCD_PINS_D5,LCD_PINS_D6,LCD_PINS_D7); //RS,Enable,D4,D5,D6,D7
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#endif
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/* Custom characters defined in the first 8 characters of the LCD */
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@ -247,13 +245,16 @@ static void lcd_implementation_init()
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lcd.setBacklightPin(LCD_I2C_PIN_BL,POSITIVE);
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lcd.setBacklight(HIGH);
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#endif
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#elif defined(LCD_I2C_TYPE_MCP23017)
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lcd.setMCPType(LTI_TYPE_MCP23017);
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lcd.begin(LCD_WIDTH, LCD_HEIGHT);
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lcd.setBacklight(0); //set all the LEDs off to begin with
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#elif defined(LCD_I2C_TYPE_MCP23008)
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lcd.setMCPType(LTI_TYPE_MCP23008);
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lcd.begin(LCD_WIDTH, LCD_HEIGHT);
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#else
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lcd.begin(LCD_WIDTH, LCD_HEIGHT);
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#endif
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@ -439,9 +440,6 @@ static void lcd_implementation_status_screen()
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//Status message line on the last line
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lcd.setCursor(0, LCD_HEIGHT - 1);
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lcd.print(lcd_status_message);
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#ifdef LCD_HAS_STATUS_INDICATORS
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lcd_implementation_update_indicators();
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#endif
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}
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static void lcd_implementation_drawmenu_generic(uint8_t row, const char* pstr, char pre_char, char post_char)
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{
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@ -630,7 +628,7 @@ static void lcd_implementation_drawmenu_sddirectory(uint8_t row, const char* pst
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static void lcd_implementation_quick_feedback()
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{
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#ifdef LCD_HAS_I2C_BUZZ
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#ifdef LCD_USE_I2C_BUZZER
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lcd.buzz(300,4000);
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#elif defined(BEEPER) && BEEPER > -1
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SET_OUTPUT(BEEPER);
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@ -665,12 +663,12 @@ static void lcd_implementation_update_indicators()
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}
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#endif
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#ifdef LCD_HAS_EXTRA_BUTTONS
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static uint8_t lcd_read_extra_buttons()
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#ifdef LCD_HAS_SLOW_BUTTONS
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static uint8_t lcd_implementation_read_slow_buttons()
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{
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#ifdef LCD_I2C_TYPE_MCP23017
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// the I2C button bit positions are shifted by three bits from the native LiquidTWI2 position
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// this is potentially too slow to call inside interrupt context
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// Reading these buttons this is likely to be too slow to call inside interrupt context
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// so they are called during normal lcd_update
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return lcd.readButtons() << B_I2C_BTN_OFFSET;
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#endif
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|
|
}
|
|
|
|
|