| 12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667686970717273747576777879808182838485868788899091929394959697989910010110210310410510610710810911011111211311411511611711811912012112212312412512612712812913013113213313413513613713813914014114214314414514614714814915015115215315415515615715815916016116216316416516616716816917017117217317417517617717817918018118218318418518618718818919019119219319419519619719819920020120220320420520620720820921021121221321421521621721821922022122222322422522622722822923023123223323423523623723823924024124224324424524624724824925025125225325425525625725825926026126226326426526626726826927027127227327427527627727827928028128228328428528628728828929029129229329429529629729829930030130230330430530630730830931031131231331431531631731831932032132232332432532632732832933033133233333433533633733833934034134234334434534634734834935035135235335435535635735835936036136236336436536636736836937037137237337437537637737837938038138238338438538638738838939039139239339439539639739839940040140240340440540640740840941041141241341441541641741841942042142242342442542642742842943043143243343443543643743843944044144244344444544644744844945045145245345445545645745845946046146246346446546646746846947047147247347447547647747847948048148248348448548648748848949049149249349449549649749849950050150250350450550650750850951051151251351451551651751851952052152252352452552652752852953053153253353453553653753853954054154254354454554654754854955055155255355455555655755855956056156256356456556656756856957057157257357457557657757857958058158258358458558658758858959059159259359459559659759859960060160260360460560660760860961061161261361461561661761861962062162262362462562662762862963063163263363463563663763863964064164264364464564664764864965065165265365465565665765865966066166266366466566666766866967067167267367467567667767867968068168268368468568668768868969069169269369469569669769869970070170270370470570670770870971071171271371471571671771871972072172272372472572672772872973073173273373473573673773873974074174274374474574674774874975075175275375475575675775875976076176276376476576676776876977077177277377477577677777877978078178278378478578678778878979079179279379479579679779879980080180280380480580680780880981081181281381481581681781881982082182282382482582682782882983083183283383483583683783883984084184284384484584684784884985085185285385485585685785885986086186286386486586686786886987087187287387487587687787887988088188288388488588688788888989089189289389489589689789889990090190290390490590690790890991091191291391491591691791891992092192292392492592692792892993093193293393493593693793893994094194294394494594694794894995095195295395495595695795895996096196296396496596696796896997097197297397497597697797897998098198298398498598698798898999099199299399499599699799899910001001100210031004100510061007100810091010 | //menu.cpp#include "lcd.h"#include <stdio.h>#include <stdarg.h>#include <avr/pgmspace.h>#include <util/delay.h>#include "Timer.h"#include "Configuration.h"#include "pins.h"#include <binary.h>#include <Arduino.h>#include "Marlin.h"#include "fastio.h"//-//#include "sound.h"#define LCD_DEFAULT_DELAY 100#if (defined(LCD_PINS_D0) && defined(LCD_PINS_D1) && defined(LCD_PINS_D2) && defined(LCD_PINS_D3))	#define LCD_8BIT#endif// #define VT100// commands#define LCD_CLEARDISPLAY 0x01#define LCD_RETURNHOME 0x02#define LCD_ENTRYMODESET 0x04#define LCD_DISPLAYCONTROL 0x08#define LCD_CURSORSHIFT 0x10#define LCD_FUNCTIONSET 0x20#define LCD_SETCGRAMADDR 0x40#define LCD_SETDDRAMADDR 0x80// flags for display entry mode#define LCD_ENTRYRIGHT 0x00#define LCD_ENTRYLEFT 0x02#define LCD_ENTRYSHIFTINCREMENT 0x01#define LCD_ENTRYSHIFTDECREMENT 0x00// flags for display on/off control#define LCD_DISPLAYON 0x04#define LCD_DISPLAYOFF 0x00#define LCD_CURSORON 0x02#define LCD_CURSOROFF 0x00#define LCD_BLINKON 0x01#define LCD_BLINKOFF 0x00// flags for display/cursor shift#define LCD_DISPLAYMOVE 0x08#define LCD_CURSORMOVE 0x00#define LCD_MOVERIGHT 0x04#define LCD_MOVELEFT 0x00// flags for function set#define LCD_8BITMODE 0x10#define LCD_4BITMODE 0x00#define LCD_2LINE 0x08#define LCD_1LINE 0x00#define LCD_5x10DOTS 0x04#define LCD_5x8DOTS 0x00// bitmasks for flag argument settings#define LCD_RS_FLAG 0x01#define LCD_HALF_FLAG 0x02FILE _lcdout; // = {0}; Global variable is always zero initialized, no need to explicitly state that.uint8_t lcd_displayfunction = 0;uint8_t lcd_displaycontrol = 0;uint8_t lcd_displaymode = 0;uint8_t lcd_currline;#ifdef VT100uint8_t lcd_escape[8];#endifstatic void lcd_display(void);#if 0static void lcd_no_display(void);static void lcd_no_cursor(void);static void lcd_cursor(void);static void lcd_no_blink(void);static void lcd_blink(void);static void lcd_scrollDisplayLeft(void);static void lcd_scrollDisplayRight(void);static void lcd_leftToRight(void);static void lcd_rightToLeft(void);static void lcd_autoscroll(void);static void lcd_no_autoscroll(void);#endif#ifdef VT100void lcd_escape_write(uint8_t chr);#endifstatic void lcd_pulseEnable(void){  	WRITE(LCD_PINS_ENABLE,HIGH);	_delay_us(1);    // enable pulse must be >450ns	WRITE(LCD_PINS_ENABLE,LOW);}static void lcd_writebits(uint8_t value){#ifdef LCD_8BIT	WRITE(LCD_PINS_D0, value & 0x01);	WRITE(LCD_PINS_D1, value & 0x02);	WRITE(LCD_PINS_D2, value & 0x04);	WRITE(LCD_PINS_D3, value & 0x08);#endif	WRITE(LCD_PINS_D4, value & 0x10);	WRITE(LCD_PINS_D5, value & 0x20);	WRITE(LCD_PINS_D6, value & 0x40);	WRITE(LCD_PINS_D7, value & 0x80);		lcd_pulseEnable();}static void lcd_send(uint8_t data, uint8_t flags, uint16_t duration = LCD_DEFAULT_DELAY){	WRITE(LCD_PINS_RS,flags&LCD_RS_FLAG);	_delay_us(5);	lcd_writebits(data);#ifndef LCD_8BIT	if (!(flags & LCD_HALF_FLAG))	{		_delay_us(LCD_DEFAULT_DELAY);		lcd_writebits(data<<4);	}#endif	delayMicroseconds(duration);}static void lcd_command(uint8_t value, uint16_t delayExtra = 0){	lcd_send(value, LOW, LCD_DEFAULT_DELAY + delayExtra);}static void lcd_write(uint8_t value){	if (value == '\n')	{		if (lcd_currline > 3) lcd_currline = -1;		lcd_set_cursor(0, lcd_currline + 1); // LF		return;	}	#ifdef VT100	if (lcd_escape[0] || (value == 0x1b)){		lcd_escape_write(value);		return;	}	#endif	lcd_send(value, HIGH);}static void lcd_begin(uint8_t clear){	lcd_currline = 0;	lcd_send(LCD_FUNCTIONSET | LCD_8BITMODE, LOW | LCD_HALF_FLAG, 4500); // wait min 4.1ms	// second try	lcd_send(LCD_FUNCTIONSET | LCD_8BITMODE, LOW | LCD_HALF_FLAG, 150);	// third go!	lcd_send(LCD_FUNCTIONSET | LCD_8BITMODE, LOW | LCD_HALF_FLAG, 150);#ifndef LCD_8BIT	// set to 4-bit interface	lcd_send(LCD_FUNCTIONSET | LCD_4BITMODE, LOW | LCD_HALF_FLAG, 150);#endif	// finally, set # lines, font size, etc.0	lcd_command(LCD_FUNCTIONSET | lcd_displayfunction);	// turn the display on with no cursor or blinking default	lcd_displaycontrol = LCD_CURSOROFF | LCD_BLINKOFF;  	lcd_display();	// clear it off	if (clear) lcd_clear();	// Initialize to default text direction (for romance languages)	lcd_displaymode = LCD_ENTRYLEFT | LCD_ENTRYSHIFTDECREMENT;	// set the entry mode	lcd_command(LCD_ENTRYMODESET | lcd_displaymode);		#ifdef VT100	lcd_escape[0] = 0;	#endif}static int lcd_putchar(char c, FILE *){	lcd_write(c);	return 0;}void lcd_init(void){	WRITE(LCD_PINS_ENABLE,LOW);	SET_OUTPUT(LCD_PINS_RS);	SET_OUTPUT(LCD_PINS_ENABLE);#ifdef LCD_8BIT	SET_OUTPUT(LCD_PINS_D0);	SET_OUTPUT(LCD_PINS_D1);	SET_OUTPUT(LCD_PINS_D2);	SET_OUTPUT(LCD_PINS_D3);#endif	SET_OUTPUT(LCD_PINS_D4);	SET_OUTPUT(LCD_PINS_D5);	SET_OUTPUT(LCD_PINS_D6);	SET_OUTPUT(LCD_PINS_D7);	#ifdef LCD_8BIT	lcd_displayfunction |= LCD_8BITMODE;#endif	lcd_displayfunction |= LCD_2LINE;	_delay_us(50000); 	lcd_begin(1); //first time init	fdev_setup_stream(lcdout, lcd_putchar, NULL, _FDEV_SETUP_WRITE); //setup lcdout stream}void lcd_refresh(void){    lcd_begin(1);    lcd_set_custom_characters();}void lcd_refresh_noclear(void){    lcd_begin(0);    lcd_set_custom_characters();}void lcd_clear(void){	lcd_command(LCD_CLEARDISPLAY, 1600);  // clear display, set cursor position to zero	lcd_currline = 0;}void lcd_home(void){	lcd_command(LCD_RETURNHOME, 1600);  // set cursor position to zero	lcd_currline = 0;}// Turn the display on/off (quickly)void lcd_display(void){    lcd_displaycontrol |= LCD_DISPLAYON;    lcd_command(LCD_DISPLAYCONTROL | lcd_displaycontrol);}#if 0void lcd_no_display(void){	lcd_displaycontrol &= ~LCD_DISPLAYON;	lcd_command(LCD_DISPLAYCONTROL | lcd_displaycontrol);}#endif#ifdef VT100 //required functions for VT100// Turns the underline cursor on/offvoid lcd_no_cursor(void){	lcd_displaycontrol &= ~LCD_CURSORON;	lcd_command(LCD_DISPLAYCONTROL | lcd_displaycontrol);}void lcd_cursor(void){	lcd_displaycontrol |= LCD_CURSORON;	lcd_command(LCD_DISPLAYCONTROL | lcd_displaycontrol);}#endif#if 0// Turn on and off the blinking cursorvoid lcd_no_blink(void){	lcd_displaycontrol &= ~LCD_BLINKON;	lcd_command(LCD_DISPLAYCONTROL | lcd_displaycontrol);}void lcd_blink(void){	lcd_displaycontrol |= LCD_BLINKON;	lcd_command(LCD_DISPLAYCONTROL | lcd_displaycontrol);}// These commands scroll the display without changing the RAMvoid lcd_scrollDisplayLeft(void){	lcd_command(LCD_CURSORSHIFT | LCD_DISPLAYMOVE | LCD_MOVELEFT);}void lcd_scrollDisplayRight(void){	lcd_command(LCD_CURSORSHIFT | LCD_DISPLAYMOVE | LCD_MOVERIGHT);}// This is for text that flows Left to Rightvoid lcd_leftToRight(void){	lcd_displaymode |= LCD_ENTRYLEFT;	lcd_command(LCD_ENTRYMODESET | lcd_displaymode);}// This is for text that flows Right to Leftvoid lcd_rightToLeft(void){	lcd_displaymode &= ~LCD_ENTRYLEFT;	lcd_command(LCD_ENTRYMODESET | lcd_displaymode);}// This will 'right justify' text from the cursorvoid lcd_autoscroll(void){	lcd_displaymode |= LCD_ENTRYSHIFTINCREMENT;	lcd_command(LCD_ENTRYMODESET | lcd_displaymode);}// This will 'left justify' text from the cursorvoid lcd_no_autoscroll(void){	lcd_displaymode &= ~LCD_ENTRYSHIFTINCREMENT;	lcd_command(LCD_ENTRYMODESET | lcd_displaymode);}#endifvoid lcd_set_cursor(uint8_t col, uint8_t row){	int row_offsets[] = { 0x00, 0x40, 0x14, 0x54 };	if (row >= LCD_HEIGHT)		row = LCD_HEIGHT - 1;    // we count rows starting w/0	lcd_currline = row;  	lcd_command(LCD_SETDDRAMADDR | (col + row_offsets[row]));}// Allows us to fill the first 8 CGRAM locations// with custom charactersvoid lcd_createChar_P(uint8_t location, const uint8_t* charmap){  location &= 0x7; // we only have 8 locations 0-7  lcd_command(LCD_SETCGRAMADDR | (location << 3));  for (int i=0; i<8; i++)    lcd_send(pgm_read_byte(&charmap[i]), HIGH);}#ifdef VT100//Supported VT100 escape codes://EraseScreen  "\x1b[2J"//CursorHome   "\x1b[%d;%dH"//CursorShow   "\x1b[?25h"//CursorHide   "\x1b[?25l"void lcd_escape_write(uint8_t chr){#define escape_cnt (lcd_escape[0])        //escape character counter#define is_num_msk (lcd_escape[1])        //numeric character bit mask#define chr_is_num (is_num_msk & 0x01) //current character is numeric#define e_2_is_num (is_num_msk & 0x04) //escape char 2 is numeric#define e_3_is_num (is_num_msk & 0x08) //...#define e_4_is_num (is_num_msk & 0x10)#define e_5_is_num (is_num_msk & 0x20)#define e_6_is_num (is_num_msk & 0x40)#define e_7_is_num (is_num_msk & 0x80)#define e2_num (lcd_escape[2] - '0')      //number from character 2#define e3_num (lcd_escape[3] - '0')      //number from character 3#define e23_num (10*e2_num+e3_num)     //number from characters 2 and 3#define e4_num (lcd_escape[4] - '0')      //number from character 4#define e5_num (lcd_escape[5] - '0')      //number from character 5#define e45_num (10*e4_num+e5_num)     //number from characters 4 and 5#define e6_num (lcd_escape[6] - '0')      //number from character 6#define e56_num (10*e5_num+e6_num)     //number from characters 5 and 6	if (escape_cnt > 1) // escape length > 1 = "\x1b["	{		lcd_escape[escape_cnt] = chr; // store current char		if ((chr >= '0') && (chr <= '9')) // char is numeric			is_num_msk |= (1 | (1 << escape_cnt)); //set mask		else			is_num_msk &= ~1; //clear mask	}	switch (escape_cnt++)	{	case 0:		if (chr == 0x1b) return;  // escape = "\x1b"		break;	case 1:		is_num_msk = 0x00; // reset 'is number' bit mask		if (chr == '[') return; // escape = "\x1b["		break;	case 2:		switch (chr)		{		case '2': return; // escape = "\x1b[2"		case '?': return; // escape = "\x1b[?"		default:			if (chr_is_num) return; // escape = "\x1b[%1d"		}		break;	case 3:		switch (lcd_escape[2])		{		case '?': // escape = "\x1b[?"			if (chr == '2') return; // escape = "\x1b[?2"			break;		case '2':			if (chr == 'J') // escape = "\x1b[2J"				{ lcd_clear(); lcd_currline = 0; break; } // EraseScreen		default:			if (e_2_is_num && // escape = "\x1b[%1d"				((chr == ';') || // escape = "\x1b[%1d;"				chr_is_num)) // escape = "\x1b[%2d"				return;		}		break;	case 4:		switch (lcd_escape[2])		{		case '?': // "\x1b[?"			if ((lcd_escape[3] == '2') && (chr == '5')) return; // escape = "\x1b[?25"			break;		default:			if (e_2_is_num) // escape = "\x1b[%1d"			{				if ((lcd_escape[3] == ';') && chr_is_num) return; // escape = "\x1b[%1d;%1d"				else if (e_3_is_num && (chr == ';')) return; // escape = "\x1b[%2d;"			}		}		break;	case 5:		switch (lcd_escape[2])		{		case '?':			if ((lcd_escape[3] == '2') && (lcd_escape[4] == '5')) // escape = "\x1b[?25"				switch (chr)				{				case 'h': // escape = "\x1b[?25h"  					lcd_cursor(); // CursorShow					break;				case 'l': // escape = "\x1b[?25l"					lcd_no_cursor(); // CursorHide					break;				}			break;		default:			if (e_2_is_num) // escape = "\x1b[%1d"			{				if ((lcd_escape[3] == ';') && e_4_is_num) // escape = "\x1b%1d;%1dH"				{					if (chr == 'H') // escape = "\x1b%1d;%1dH"						lcd_set_cursor(e4_num, e2_num); // CursorHome					else if (chr_is_num)						return; // escape = "\x1b%1d;%2d"				}				else if (e_3_is_num && (lcd_escape[4] == ';') && chr_is_num)					return; // escape = "\x1b%2d;%1d"			}		}		break;	case 6:		if (e_2_is_num) // escape = "\x1b[%1d"		{			if ((lcd_escape[3] == ';') && e_4_is_num && e_5_is_num && (chr == 'H')) // escape = "\x1b%1d;%2dH"				lcd_set_cursor(e45_num, e2_num); // CursorHome			else if (e_3_is_num && (lcd_escape[4] == ';') && e_5_is_num) // escape = "\x1b%2d;%1d"			{				if (chr == 'H') // escape = "\x1b%2d;%1dH"					lcd_set_cursor(e5_num, e23_num); // CursorHome				else if (chr_is_num) // "\x1b%2d;%2d"					return;			}		}		break;	case 7:		if (e_2_is_num && e_3_is_num && (lcd_escape[4] == ';')) // "\x1b[%2d;"			if (e_5_is_num && e_6_is_num && (chr == 'H')) // "\x1b[%2d;%2dH"				lcd_set_cursor(e56_num, e23_num); // CursorHome		break;	}	escape_cnt = 0; // reset escape}#endif //VT100int lcd_putc(char c){	return fputc(c, lcdout);}int lcd_putc_at(uint8_t c, uint8_t r, char ch){	lcd_set_cursor(c, r);	return fputc(ch, lcdout);}int lcd_puts_P(const char* str){	return fputs_P(str, lcdout);}int lcd_puts_at_P(uint8_t c, uint8_t r, const char* str){	lcd_set_cursor(c, r);	return fputs_P(str, lcdout);}int lcd_printf_P(const char* format, ...){	va_list args;	va_start(args, format);	int ret = vfprintf_P(lcdout, format, args);	va_end(args);	return ret;}void lcd_space(uint8_t n){	while (n--) lcd_putc(' ');}void lcd_print(const char* s){	while (*s) lcd_write(*(s++));}void lcd_print(char c, int base){	lcd_print((long) c, base);}void lcd_print(unsigned char b, int base){	lcd_print((unsigned long) b, base);}void lcd_print(int n, int base){	lcd_print((long) n, base);}void lcd_print(unsigned int n, int base){	lcd_print((unsigned long) n, base);}void lcd_print(long n, int base){	if (base == 0)		lcd_write(n);	else if (base == 10)	{		if (n < 0)		{			lcd_print('-');			n = -n;		}		lcd_printNumber(n, 10);	}	else		lcd_printNumber(n, base);}void lcd_print(unsigned long n, int base){	if (base == 0)		lcd_write(n);	else		lcd_printNumber(n, base);}void lcd_print(double n, int digits){  lcd_printFloat(n, digits);}void lcd_printNumber(unsigned long n, uint8_t base){	unsigned char buf[8 * sizeof(long)]; // Assumes 8-bit chars. 	unsigned long i = 0;	if (n == 0)	{		lcd_print('0');		return;	} 	while (n > 0)	{		buf[i++] = n % base;		n /= base;	}	for (; i > 0; i--)		lcd_print((char) (buf[i - 1] < 10 ?	'0' + buf[i - 1] : 'A' + buf[i - 1] - 10));}void lcd_printFloat(double number, uint8_t digits) { 	// Handle negative numbers	if (number < 0.0)	{		lcd_print('-');		number = -number;	}	// Round correctly so that print(1.999, 2) prints as "2.00"	double rounding = 0.5;	for (uint8_t i=0; i<digits; ++i)		rounding /= 10.0;	number += rounding;	// Extract the integer part of the number and print it	unsigned long int_part = (unsigned long)number;	double remainder = number - (double)int_part;	lcd_print(int_part);	// Print the decimal point, but only if there are digits beyond	if (digits > 0)		lcd_print('.'); 	// Extract digits from the remainder one at a time	while (digits-- > 0)	{		remainder *= 10.0;		int toPrint = int(remainder);		lcd_print(toPrint);		remainder -= toPrint; 	} }uint8_t lcd_draw_update = 2;int32_t lcd_encoder = 0;uint8_t lcd_encoder_bits = 0;int8_t lcd_encoder_diff = 0;uint8_t lcd_buttons = 0;uint8_t lcd_button_pressed = 0;uint8_t lcd_update_enabled = 1;uint32_t lcd_next_update_millis = 0;uint8_t lcd_status_update_delay = 0;lcd_longpress_func_t lcd_longpress_func = 0;lcd_charsetup_func_t lcd_charsetup_func = 0;lcd_lcdupdate_func_t lcd_lcdupdate_func = 0;static ShortTimer buttonBlanking;ShortTimer longPressTimer;LongTimer lcd_timeoutToStatus;//! @brief Was button clicked?//!//! Consume click event, following call would return 0.//! See #LCD_CLICKED macro for version not consuming the event.//!//! Generally is used in modal dialogs.//!//! @retval 0 not clicked//! @retval nonzero clickeduint8_t lcd_clicked(void){	bool clicked = LCD_CLICKED;	if(clicked)	{	    lcd_consume_click();	}    return clicked;}void lcd_beeper_quick_feedback(void){//-//Sound_MakeSound(e_SOUND_TYPE_ButtonEcho);/*	for(int8_t i = 0; i < 10; i++)	{		Sound_MakeCustom(100,0,false);		_delay_us(100);	}*/}void lcd_quick_feedback(void){  lcd_draw_update = 2;  lcd_button_pressed = false;  lcd_beeper_quick_feedback();}void lcd_update(uint8_t lcdDrawUpdateOverride){	if (lcd_draw_update < lcdDrawUpdateOverride)		lcd_draw_update = lcdDrawUpdateOverride;	if (!lcd_update_enabled)		return;	if (lcd_lcdupdate_func)		lcd_lcdupdate_func();}void lcd_update_enable(uint8_t enabled){	if (lcd_update_enabled != enabled)	{		lcd_update_enabled = enabled;		if (enabled)		{ // Reset encoder position. This is equivalent to re-entering a menu.			lcd_encoder = 0;			lcd_encoder_diff = 0;			// Enabling the normal LCD update procedure.			// Reset the timeout interval.			lcd_timeoutToStatus.start();			// Force the keypad update now.			lcd_next_update_millis = _millis() - 1;			// Full update.			lcd_clear();			if (lcd_charsetup_func)				lcd_charsetup_func();			lcd_update(2);		} else		{			// Clear the LCD always, or let it to the caller?		}	}}void lcd_buttons_update(void){    static uint8_t lcd_long_press_active = 0;	uint8_t newbutton = 0;	if (READ(BTN_EN1) == 0)  newbutton |= EN_A;	if (READ(BTN_EN2) == 0)  newbutton |= EN_B;    if (READ(BTN_ENC) == 0)    { //button is pressed        lcd_timeoutToStatus.start();        if (!buttonBlanking.running() || buttonBlanking.expired(BUTTON_BLANKING_TIME)) {            buttonBlanking.start();            safetyTimer.start();            if ((lcd_button_pressed == 0) && (lcd_long_press_active == 0))            {                longPressTimer.start();                lcd_button_pressed = 1;            }            else if (longPressTimer.expired(LONG_PRESS_TIME))            {                lcd_long_press_active = 1;                //long press is not possible in modal mode                if (lcd_longpress_func && lcd_update_enabled)                    lcd_longpress_func();            }        }    }    else    { //button not pressed        if (lcd_button_pressed)        { //button was released            buttonBlanking.start();            if (lcd_long_press_active == 0)            { //button released before long press gets activated                newbutton |= EN_C;            }            //else if (menu_menu == lcd_move_z) lcd_quick_feedback();            //lcd_button_pressed is set back to false via lcd_quick_feedback function        }        lcd_long_press_active = 0;    }	lcd_buttons = newbutton;	//manage encoder rotation	uint8_t enc = 0;	if (lcd_buttons & EN_A) enc |= B01;	if (lcd_buttons & EN_B) enc |= B10;	if (enc != lcd_encoder_bits)	{		switch (enc)		{		case encrot0:			if (lcd_encoder_bits == encrot3)				lcd_encoder_diff++;			else if (lcd_encoder_bits == encrot1)				lcd_encoder_diff--;			break;		case encrot1:			if (lcd_encoder_bits == encrot0)				lcd_encoder_diff++;			else if (lcd_encoder_bits == encrot2)				lcd_encoder_diff--;			break;		case encrot2:			if (lcd_encoder_bits == encrot1)				lcd_encoder_diff++;			else if (lcd_encoder_bits == encrot3)				lcd_encoder_diff--;			break;		case encrot3:			if (lcd_encoder_bits == encrot2)				lcd_encoder_diff++;			else if (lcd_encoder_bits == encrot0)				lcd_encoder_diff--;			break;		}	}	lcd_encoder_bits = enc;}////////////////////////////////////////////////////////////////////////////////// Custom character dataconst uint8_t lcd_chardata_bedTemp[8] PROGMEM = {	B00000,	B11111,	B10101,	B10001,	B10101,	B11111,	B00000,	B00000}; //thanks Sonny Mounicouconst uint8_t lcd_chardata_degree[8] PROGMEM = {	B01100,	B10010,	B10010,	B01100,	B00000,	B00000,	B00000,	B00000};const uint8_t lcd_chardata_thermometer[8] PROGMEM = {	B00100,	B01010,	B01010,	B01010,	B01010,	B10001,	B10001,	B01110};const uint8_t lcd_chardata_uplevel[8] PROGMEM = {	B00100,	B01110,	B11111,	B00100,	B11100,	B00000,	B00000,	B00000}; //thanks jorisconst uint8_t lcd_chardata_refresh[8] PROGMEM = {	B00000,	B00110,	B11001,	B11000,	B00011,	B10011,	B01100,	B00000}; //thanks jorisconst uint8_t lcd_chardata_folder[8] PROGMEM = {	B00000,	B11100,	B11111,	B10001,	B10001,	B11111,	B00000,	B00000}; //thanks joris/*const uint8_t lcd_chardata_feedrate[8] PROGMEM = {	B11100,	B10000,	B11000,	B10111,	B00101,	B00110,	B00101,	B00000};*/ //thanks Sonny Mounicou/*const uint8_t lcd_chardata_feedrate[8] PROGMEM = {	B11100,	B10100,	B11000,	B10100,	B00000,	B00111,	B00010,	B00010};*//*const uint8_t lcd_chardata_feedrate[8] PROGMEM = {	B01100,	B10011,	B00000,	B01100,	B10011,	B00000,	B01100,	B10011};*/const uint8_t lcd_chardata_feedrate[8] PROGMEM = {	B00000,	B00100,	B10010,	B01001,	B10010,	B00100,	B00000,	B00000};const uint8_t lcd_chardata_clock[8] PROGMEM = {	B00000,	B01110,	B10011,	B10101,	B10001,	B01110,	B00000,	B00000}; //thanks Sonny Mounicouconst uint8_t lcd_chardata_arrup[8] PROGMEM = {	B00100,	B01110,	B11111,	B00000,	B00000,	B00000,	B00000,	B00000};const uint8_t lcd_chardata_arrdown[8] PROGMEM = {	B00000,	B00000,	B00000,	B00000,	B00000,	B10001,	B01010,	B00100};void lcd_set_custom_characters(void){	lcd_createChar_P(LCD_STR_BEDTEMP[0], lcd_chardata_bedTemp);	lcd_createChar_P(LCD_STR_DEGREE[0], lcd_chardata_degree);	lcd_createChar_P(LCD_STR_THERMOMETER[0], lcd_chardata_thermometer);	lcd_createChar_P(LCD_STR_UPLEVEL[0], lcd_chardata_uplevel);	lcd_createChar_P(LCD_STR_REFRESH[0], lcd_chardata_refresh);	lcd_createChar_P(LCD_STR_FOLDER[0], lcd_chardata_folder);	lcd_createChar_P(LCD_STR_FEEDRATE[0], lcd_chardata_feedrate);	lcd_createChar_P(LCD_STR_CLOCK[0], lcd_chardata_clock);	//lcd_createChar_P(LCD_STR_ARROW_UP[0], lcd_chardata_arrup);	//lcd_createChar_P(LCD_STR_ARROW_DOWN[0], lcd_chardata_arrdown);}void lcd_set_custom_characters_arrows(void){	lcd_createChar_P(1, lcd_chardata_arrdown);}const uint8_t lcd_chardata_progress[8] PROGMEM = {	B11111,	B11111,	B11111,	B11111,	B11111,	B11111,	B11111,	B11111};void lcd_set_custom_characters_progress(void){	lcd_createChar_P(1, lcd_chardata_progress);}const uint8_t lcd_chardata_arr2down[8] PROGMEM = {	B00000,	B00000,	B10001,	B01010,	B00100,	B10001,	B01010,	B00100};const uint8_t lcd_chardata_confirm[8] PROGMEM = {	B00000,	B00001,	B00011,	B10110,	B11100,	B01000,	B00000};void lcd_set_custom_characters_nextpage(void){	lcd_createChar_P(1, lcd_chardata_arr2down);	lcd_createChar_P(2, lcd_chardata_confirm);}void lcd_set_custom_characters_degree(void){	lcd_createChar_P(1, lcd_chardata_degree);}
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