Merge pull request #219 from Justblair/Marlin_v1
Added new function to the LCD menu. Preheat settings now adjustable and can be stored
This commit is contained in:
commit
8c94ad0d26
@ -6,7 +6,13 @@
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#include "temperature.h"
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//#include <EEPROM.h>
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int plaPreheatHotendTemp;
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int plaPreheatHPBTemp;
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int plaPreheatFanSpeed;
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int absPreheatHotendTemp;
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int absPreheatHPBTemp;
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int absPreheatFanSpeed;
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template <class T> int EEPROM_writeAnything(int &ee, const T& value)
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{
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@ -38,7 +44,7 @@ template <class T> int EEPROM_readAnything(int &ee, T& value)
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// the default values are used whenever there is a change to the data, to prevent
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// wrong data being written to the variables.
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// ALSO: always make sure the variables in the Store and retrieve sections are in the same order.
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#define EEPROM_VERSION "V06"
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#define EEPROM_VERSION "V07"
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inline void EEPROM_StoreSettings()
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{
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@ -58,6 +64,12 @@ inline void EEPROM_StoreSettings()
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EEPROM_writeAnything(i,max_z_jerk);
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EEPROM_writeAnything(i,max_e_jerk);
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EEPROM_writeAnything(i,add_homeing);
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EEPROM_writeAnything(i,plaPreheatHotendTemp);
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EEPROM_writeAnything(i,plaPreheatHPBTemp);
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EEPROM_writeAnything(i,plaPreheatFanSpeed);
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EEPROM_writeAnything(i,absPreheatHotendTemp);
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EEPROM_writeAnything(i,absPreheatHPBTemp);
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EEPROM_writeAnything(i,absPreheatFanSpeed);
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#ifdef PIDTEMP
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EEPROM_writeAnything(i,Kp);
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EEPROM_writeAnything(i,Ki);
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@ -162,6 +174,12 @@ inline void EEPROM_RetrieveSettings(bool def=false)
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EEPROM_readAnything(i,max_z_jerk);
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EEPROM_readAnything(i,max_e_jerk);
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EEPROM_readAnything(i,add_homeing);
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EEPROM_readAnything(i,plaPreheatHotendTemp);
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EEPROM_readAnything(i,plaPreheatHPBTemp);
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EEPROM_readAnything(i,plaPreheatFanSpeed);
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EEPROM_readAnything(i,absPreheatHotendTemp);
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EEPROM_readAnything(i,absPreheatHPBTemp);
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EEPROM_readAnything(i,absPreheatFanSpeed);
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#ifndef PIDTEMP
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float Kp,Ki,Kd;
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#endif
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@ -195,6 +213,14 @@ inline void EEPROM_RetrieveSettings(bool def=false)
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add_homeing[0] = add_homeing[1] = add_homeing[2] = 0;
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SERIAL_ECHO_START;
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SERIAL_ECHOLN("Using Default settings:");
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#ifdef ULTIPANEL
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plaPreheatHotendTemp = PLA_PREHEAT_HOTEND_TEMP;
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plaPreheatHPBTemp = PLA_PREHEAT_HPB_TEMP;
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plaPreheatFanSpeed = PLA_PREHEAT_FAN_SPEED;
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absPreheatHotendTemp = ABS_PREHEAT_HOTEND_TEMP;
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absPreheatHPBTemp = ABS_PREHEAT_HPB_TEMP;
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absPreheatFanSpeed = ABS_PREHEAT_FAN_SPEED;
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#endif
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}
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#ifdef EEPROM_CHITCHAT
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EEPROM_printSettings();
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@ -77,6 +77,7 @@
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#define MSG_MAIN_WIDE " Main \003"
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#define MSG_RECTRACT_WIDE " Rectract \x7E"
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#define MSG_TEMPERATURE_WIDE " Temperature \x7E"
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#define MSG_TEMPERATURE_RTN " Temperature \003"
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#define MSG_MOTION_WIDE " Motion \x7E"
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#define MSG_STORE_EPROM " Store memory"
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#define MSG_LOAD_EPROM " Load memory"
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@ -101,6 +102,8 @@
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#define MSG_KILLED "KILLED. "
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#define MSG_STOPPED "STOPPED. "
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#define MSG_PREHEAT_PLA " Preheat PLA"
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#define MSG_PREHEAT_PLA_SETTINGS " Preheat PLA Setting"
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#define MSG_PREHEAT_ABS_SETTINGS " Preheat ABS Setting"
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#define MSG_PREHEAT_ABS " Preheat ABS"
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#define MSG_STEPPER_RELEASED "Released."
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#define MSG_CONTROL_RETRACT " Retract mm:"
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@ -47,11 +47,13 @@
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#endif
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// blocking time for recognizing a new keypress of one key, ms
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#define blocktime 500
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#define lcdslow 5
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enum MainStatus{Main_Status, Main_Menu, Main_Prepare,Sub_PrepareMove, Main_Control, Main_SD,Sub_TempControl,Sub_MotionControl,Sub_RetractControl};
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enum MainStatus{Main_Status, Main_Menu, Main_Prepare,Sub_PrepareMove, Main_Control, Main_SD,Sub_TempControl,Sub_MotionControl,Sub_RetractControl, Sub_PreheatPLASettings, Sub_PreheatABSSettings};
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class MainMenu{
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public:
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@ -71,6 +73,8 @@
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void showControlRetract();
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void showAxisMove();
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void showSD();
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void showPLAsettings();
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void showABSsettings();
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bool force_lcd_update;
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long lastencoderpos;
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int8_t lineoffset;
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@ -528,17 +528,17 @@ void MainMenu::showPrepare()
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MENUITEM( lcdprintPGM(MSG_SET_ORIGIN) , BLOCK;enquecommand("G92 X0 Y0 Z0");beepshort(); ) ;
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break;
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case ItemP_preheat_pla:
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MENUITEM( lcdprintPGM(MSG_PREHEAT_PLA) , BLOCK;setTargetHotend0(PLA_PREHEAT_HOTEND_TEMP);setTargetBed(PLA_PREHEAT_HPB_TEMP);
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MENUITEM( lcdprintPGM(MSG_PREHEAT_PLA) , BLOCK;setTargetHotend0(plaPreheatHotendTemp);setTargetBed(plaPreheatHPBTemp);
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#if FAN_PIN > -1
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FanSpeed=PLA_PREHEAT_FAN_SPEED;
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FanSpeed = plaPreheatFanSpeed;
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analogWrite(FAN_PIN, FanSpeed);
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#endif
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beepshort(); );
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break;
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case ItemP_preheat_abs:
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MENUITEM( lcdprintPGM(MSG_PREHEAT_ABS) , BLOCK;setTargetHotend0(ABS_PREHEAT_HOTEND_TEMP);setTargetBed(ABS_PREHEAT_HPB_TEMP);
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MENUITEM( lcdprintPGM(MSG_PREHEAT_ABS) , BLOCK;setTargetHotend0(absPreheatHotendTemp);setTargetBed(absPreheatHPBTemp);
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#if FAN_PIN > -1
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FanSpeed=ABS_PREHEAT_FAN_SPEED;
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FanSpeed = absPreheatFanSpeed;
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analogWrite(FAN_PIN, FanSpeed);
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#endif
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beepshort(); );
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@ -967,7 +967,9 @@ enum {
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ItemCT_bed,
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#endif
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ItemCT_fan,
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ItemCT_PID_P,ItemCT_PID_I,ItemCT_PID_D,ItemCT_PID_C
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ItemCT_PID_P,ItemCT_PID_I,ItemCT_PID_D,ItemCT_PID_C,
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ItemCT_PLA_PreHeat_Setting,
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ItemCT_ABS_PreHeat_Setting,
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};
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void MainMenu::showControlTemp()
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@ -1434,16 +1436,19 @@ void MainMenu::showControlTemp()
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#endif
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#endif
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break;
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case ItemCT_PLA_PreHeat_Setting:
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MENUITEM( lcdprintPGM(MSG_PREHEAT_PLA_SETTINGS) , BLOCK;status=Sub_PreheatPLASettings;beepshort(); ) ;
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break;
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case ItemCT_ABS_PreHeat_Setting:
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MENUITEM( lcdprintPGM(MSG_PREHEAT_ABS_SETTINGS) , BLOCK;status=Sub_PreheatABSSettings;beepshort(); ) ;
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break;
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default:
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break;
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}
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line++;
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}
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#ifdef PID_ADD_EXTRUSION_RATE
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updateActiveLines(ItemCT_PID_C,encoderpos);
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#else
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updateActiveLines(ItemCT_PID_D,encoderpos);
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#endif
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updateActiveLines(ItemCT_ABS_PreHeat_Setting,encoderpos);
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}
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@ -2569,6 +2574,14 @@ void MainMenu::update()
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{
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showSD();
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}break;
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case Sub_PreheatPLASettings:
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{
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showPLAsettings();
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}break;
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case Sub_PreheatABSSettings:
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{
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showABSsettings();
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}break;
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}
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if(timeoutToStatus<millis())
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@ -2577,11 +2590,299 @@ void MainMenu::update()
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lastencoderpos=encoderpos;
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}
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enum {
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ItemPLAPreHeat_Exit,
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ItemPLAPreHeat_set_PLA_FanSpeed,
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ItemPLAPreHeat_set_nozzle,
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ItemPLAPreHeat_set_HPB,
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ItemPLAPreHeat_Store_Eprom
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};
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void MainMenu::showPLAsettings()
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{
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#ifdef ULTIPANEL
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uint8_t line=0;
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clearIfNecessary();
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for(int8_t i=lineoffset;i<lineoffset+LCD_HEIGHT;i++)
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{
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switch(i)
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{
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case ItemPLAPreHeat_Exit:
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MENUITEM( lcdprintPGM(MSG_TEMPERATURE_RTN) , BLOCK;status=Sub_TempControl;beepshort(); ) ;
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break;
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case ItemPLAPreHeat_set_PLA_FanSpeed:
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{
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if(force_lcd_update)
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{
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lcd.setCursor(0,line);lcdprintPGM(MSG_FAN_SPEED);
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lcd.setCursor(13,line);lcd.print(ftostr3(plaPreheatFanSpeed));
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}
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if((activeline!=line) )
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break;
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if(CLICKED)
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{
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linechanging=!linechanging;
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if(linechanging)
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{
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encoderpos=plaPreheatFanSpeed;
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}
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else
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{
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encoderpos=activeline*lcdslow;
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beepshort();
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}
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BLOCK;
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}
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if(linechanging)
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{
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if(encoderpos<0) encoderpos=0;
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if(encoderpos>255) encoderpos=255;
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plaPreheatFanSpeed=encoderpos;
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lcd.setCursor(13,line);lcd.print(itostr3(encoderpos));
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}
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}break;
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case ItemPLAPreHeat_set_nozzle:
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{
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if(force_lcd_update)
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{
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lcd.setCursor(0,line);lcdprintPGM(MSG_NOZZLE);
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lcd.setCursor(13,line);lcd.print(ftostr3(plaPreheatHotendTemp));
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}
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if((activeline!=line) )
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break;
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if(CLICKED)
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{
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linechanging=!linechanging;
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if(linechanging)
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{
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encoderpos=plaPreheatHotendTemp;
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}
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else
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{
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encoderpos=activeline*lcdslow;
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beepshort();
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}
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BLOCK;
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}
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if(linechanging)
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{
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if(encoderpos<0) encoderpos=0;
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if(encoderpos>260) encoderpos=260;
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plaPreheatHotendTemp = encoderpos;
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lcd.setCursor(13,line);lcd.print(itostr3(encoderpos));
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}
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}break;
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case ItemPLAPreHeat_set_HPB:
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{
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if(force_lcd_update)
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{
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lcd.setCursor(0,line);lcdprintPGM(MSG_BED);
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lcd.setCursor(13,line);lcd.print(ftostr3(plaPreheatHPBTemp));
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}
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if((activeline!=line) )
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break;
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if(CLICKED)
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{
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linechanging=!linechanging;
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if(linechanging)
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{
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encoderpos=plaPreheatHPBTemp;
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}
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else
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{
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encoderpos=activeline*lcdslow;
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beepshort();
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}
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BLOCK;
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}
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if(linechanging)
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{
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if(encoderpos<0) encoderpos=0;
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if(encoderpos>250) encoderpos=150;
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plaPreheatHPBTemp = encoderpos;
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lcd.setCursor(13,line);lcd.print(itostr3(encoderpos));
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}
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}break;
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case ItemPLAPreHeat_Store_Eprom:
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{
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if(force_lcd_update)
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{
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lcd.setCursor(0,line);lcdprintPGM(MSG_STORE_EPROM);
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}
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if((activeline==line) && CLICKED)
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{
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//enquecommand("M84");
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beepshort();
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BLOCK;
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EEPROM_StoreSettings();
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}
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}break;
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default:
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break;
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}
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line++;
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}
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updateActiveLines(ItemPLAPreHeat_Store_Eprom,encoderpos);
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#endif
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}
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enum {
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ItemABSPreHeat_Exit,
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ItemABSPreHeat_set_FanSpeed,
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ItemABSPreHeat_set_nozzle,
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ItemABSPreHeat_set_HPB,
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ItemABSPreHeat_Store_Eprom
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};
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void MainMenu::showABSsettings()
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{
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#ifdef ULTIPANEL
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uint8_t line=0;
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clearIfNecessary();
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for(int8_t i=lineoffset;i<lineoffset+LCD_HEIGHT;i++)
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{
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switch(i)
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{
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case ItemABSPreHeat_Exit:
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MENUITEM( lcdprintPGM(MSG_TEMPERATURE_RTN) , BLOCK;status=Sub_TempControl;beepshort(); ) ;
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break;
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case ItemABSPreHeat_set_FanSpeed:
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{
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if(force_lcd_update)
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{
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lcd.setCursor(0,line);lcdprintPGM(MSG_FAN_SPEED);
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lcd.setCursor(13,line);lcd.print(ftostr3(absPreheatFanSpeed));
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}
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if((activeline!=line) )
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break;
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if(CLICKED)
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{
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linechanging=!linechanging;
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if(linechanging)
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{
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encoderpos=absPreheatFanSpeed;
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}
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else
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{
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encoderpos=activeline*lcdslow;
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beepshort();
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}
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BLOCK;
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}
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if(linechanging)
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{
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if(encoderpos<0) encoderpos=0;
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if(encoderpos>255) encoderpos=255;
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absPreheatFanSpeed=encoderpos;
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lcd.setCursor(13,line);lcd.print(itostr3(encoderpos));
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}
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}break;
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case ItemABSPreHeat_set_nozzle:
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{
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if(force_lcd_update)
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{
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lcd.setCursor(0,line);lcdprintPGM(MSG_NOZZLE);
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lcd.setCursor(13,line);lcd.print(ftostr3(absPreheatHotendTemp));
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}
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if((activeline!=line) )
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break;
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if(CLICKED)
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{
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linechanging=!linechanging;
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if(linechanging)
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{
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encoderpos=absPreheatHotendTemp;
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}
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else
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{
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encoderpos=activeline*lcdslow;
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beepshort();
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}
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BLOCK;
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}
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if(linechanging)
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{
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if(encoderpos<0) encoderpos=0;
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if(encoderpos>260) encoderpos=260;
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absPreheatHotendTemp = encoderpos;
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lcd.setCursor(13,line);lcd.print(itostr3(encoderpos));
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}
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}break;
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case ItemABSPreHeat_set_HPB:
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{
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if(force_lcd_update)
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{
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lcd.setCursor(0,line);lcdprintPGM(MSG_BED);
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lcd.setCursor(13,line);lcd.print(ftostr3(absPreheatHPBTemp));
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}
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if((activeline!=line) )
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break;
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if(CLICKED)
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{
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linechanging=!linechanging;
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if(linechanging)
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{
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encoderpos=absPreheatHPBTemp;
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}
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else
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{
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encoderpos=activeline*lcdslow;
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beepshort();
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}
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BLOCK;
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}
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if(linechanging)
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{
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if(encoderpos<0) encoderpos=0;
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if(encoderpos>250) encoderpos=150;
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absPreheatHPBTemp = encoderpos;
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lcd.setCursor(13,line);lcd.print(itostr3(encoderpos));
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}
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}break;
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case ItemABSPreHeat_Store_Eprom:
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{
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if(force_lcd_update)
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{
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lcd.setCursor(0,line);lcdprintPGM(MSG_STORE_EPROM);
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}
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if((activeline==line) && CLICKED)
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{
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//enquecommand("M84");
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beepshort();
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BLOCK;
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EEPROM_StoreSettings();
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}
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}break;
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default:
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break;
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}
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line++;
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}
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updateActiveLines(ItemABSPreHeat_Store_Eprom,encoderpos);
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#endif
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}
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//**********************************************************************************************************
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// convert float to string with +123.4 format
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char *ftostr3(const float &x)
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{
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|
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