added firmware retract. disabled by default
This commit is contained in:
parent
88d2a671cc
commit
bf077125b9
5 changed files with 722 additions and 317 deletions
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@ -179,6 +179,16 @@ const int dropsegments=5; //everything with less than this number of steps will
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#define MAX_CMD_SIZE 96
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#define BUFSIZE 4
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// Firmware based and LCD controled retract
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// M207 and M208 can be used to define parameters for the retraction.
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// The retraction can be called by the slicer using G10 and G11
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// until then, intended retractions can be detected by moves that only extrude and the direction.
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// the moves are than replaced by the firmware controlled ones.
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// #define FWRETRACT //ONLY PARTIALLY TESTED
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#define MIN_RETRACT 0.1 //minimum extruded mm to accept a automatic gcode retraction attempt
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//===========================================================================
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//============================= Define Defines ============================
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//===========================================================================
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@ -50,6 +50,8 @@
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// G2 - CW ARC
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// G3 - CCW ARC
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// G4 - Dwell S<seconds> or P<milliseconds>
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// G10 - retract filament according to settings of M207
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// G11 - retract recover filament according to settings of M208
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// G28 - Home all Axis
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// G90 - Use Absolute Coordinates
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// G91 - Use Relative Coordinates
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@ -102,6 +104,9 @@
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// M204 - Set default acceleration: S normal moves T filament only moves (M204 S3000 T7000) im mm/sec^2 also sets minimum segment time in ms (B20000) to prevent buffer underruns and M20 minimum feedrate
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// M205 - advanced settings: minimum travel speed S=while printing T=travel only, B=minimum segment time X= maximum xy jerk, Z=maximum Z jerk, E=maximum E jerk
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// M206 - set additional homeing offset
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// M207 - set retract length S[positive mm] F[feedrate mm/sec] Z[additional zlift/hop]
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// M208 - set recover=unretract length S[positive mm surplus to the M207 S*] F[feedrate mm/sec]
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// M209 - S<1=true/0=false> enable automatic retract detect if the slicer did not support G10/11: every normal extrude-only move will be classified as retract depending on the direction.
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// M220 S<factor in percent>- set speed factor override percentage
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// M221 S<factor in percent>- set extrude factor override percentage
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// M240 - Trigger a camera to take a photograph
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@ -139,6 +144,12 @@ float add_homeing[3]={0,0,0};
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uint8_t active_extruder = 0;
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unsigned char FanSpeed=0;
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#ifdef FWRETRACT
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bool autoretract_enabled=true;
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bool retracted=false;
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float retract_length=3, retract_feedrate=17*60, retract_zlift=0.8;
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float retract_recover_length=0, retract_recover_feedrate=8*60;
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#endif
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//===========================================================================
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//=============================private variables=============================
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@ -179,6 +190,7 @@ static unsigned long stoptime=0;
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static uint8_t tmp_extruder;
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bool Stopped=false;
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//===========================================================================
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@ -601,6 +613,36 @@ void process_commands()
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LCD_STATUS;
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}
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break;
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#ifdef FWRETRACT
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case 10: // G10 retract
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if(!retracted)
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{
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destination[X_AXIS]=current_position[X_AXIS];
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destination[Y_AXIS]=current_position[Y_AXIS];
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destination[Z_AXIS]=current_position[Z_AXIS];
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current_position[Z_AXIS]+=-retract_zlift;
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destination[E_AXIS]=current_position[E_AXIS]-retract_length;
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feedrate=retract_feedrate;
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retracted=true;
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prepare_move();
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}
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break;
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case 11: // G10 retract_recover
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if(!retracted)
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{
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destination[X_AXIS]=current_position[X_AXIS];
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destination[Y_AXIS]=current_position[Y_AXIS];
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destination[Z_AXIS]=current_position[Z_AXIS];
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current_position[Z_AXIS]+=retract_zlift;
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current_position[E_AXIS]+=-retract_recover_length;
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feedrate=retract_recover_feedrate;
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retracted=false;
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prepare_move();
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}
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break;
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#endif //FWRETRACT
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case 28: //G28 Home all Axis one at a time
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saved_feedrate = feedrate;
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saved_feedmultiply = feedmultiply;
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@ -1212,6 +1254,53 @@ void process_commands()
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if(code_seen(axis_codes[i])) add_homeing[i] = code_value();
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}
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break;
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#ifdef FWRETRACT
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case 207: //M207 - set retract length S[positive mm] F[feedrate mm/sec] Z[additional zlift/hop]
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{
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if(code_seen('S'))
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{
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retract_length = code_value() ;
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}
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if(code_seen('F'))
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{
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retract_feedrate = code_value() ;
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}
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if(code_seen('Z'))
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{
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retract_zlift = code_value() ;
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}
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}break;
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case 208: // M208 - set retract recover length S[positive mm surplus to the M207 S*] F[feedrate mm/sec]
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{
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if(code_seen('S'))
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{
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retract_recover_length = code_value() ;
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}
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if(code_seen('F'))
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{
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retract_recover_feedrate = code_value() ;
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}
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}break;
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case 209: // M209 - S<1=true/0=false> enable automatic retract detect if the slicer did not support G10/11: every normal extrude-only move will be classified as retract depending on the direction.
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{
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if(code_seen('S'))
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{
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int t= code_value() ;
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switch(t)
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{
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case 0: autoretract_enabled=false;retracted=false;break;
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case 1: autoretract_enabled=true;retracted=false;break;
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default:
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SERIAL_ECHO_START;
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SERIAL_ECHOPGM(MSG_UNKNOWN_COMMAND);
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SERIAL_ECHO(cmdbuffer[bufindr]);
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SERIAL_ECHOLNPGM("\"");
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}
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}
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}break;
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#endif
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case 220: // M220 S<factor in percent>- set speed factor override percentage
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{
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if(code_seen('S'))
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@ -1373,14 +1462,55 @@ void ClearToSend()
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void get_coordinates()
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{
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bool seen[4]={false,false,false,false};
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for(int8_t i=0; i < NUM_AXIS; i++) {
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if(code_seen(axis_codes[i])) destination[i] = (float)code_value() + (axis_relative_modes[i] || relative_mode)*current_position[i];
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if(code_seen(axis_codes[i]))
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{
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destination[i] = (float)code_value() + (axis_relative_modes[i] || relative_mode)*current_position[i];
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seen[i]=true;
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}
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else destination[i] = current_position[i]; //Are these else lines really needed?
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}
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if(code_seen('F')) {
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next_feedrate = code_value();
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if(next_feedrate > 0.0) feedrate = next_feedrate;
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}
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#ifdef FWRETRACT
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if(autoretract_enabled)
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if( !(seen[X_AXIS] || seen[Y_AXIS] || seen[Z_AXIS]) && seen[E_AXIS])
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{
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float echange=destination[E_AXIS]-current_position[E_AXIS];
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if(echange<-MIN_RETRACT) //retract
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{
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if(!retracted)
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{
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destination[Z_AXIS]+=retract_zlift; //not sure why chaninging current_position negatively does not work.
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//if slicer retracted by echange=-1mm and you want to retract 3mm, corrrectede=-2mm additionally
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float correctede=-echange-retract_length;
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//to generate the additional steps, not the destination is changed, but inversely the current position
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destination[E_AXIS]+=correctede;
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feedrate=retract_feedrate;
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retracted=true;
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}
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}
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else
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if(echange>MIN_RETRACT) //retract_recover
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{
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if(retracted)
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{
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//current_position[Z_AXIS]+=-retract_zlift;
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//if slicer retracted_recovered by echange=+1mm and you want to retract_recover 3mm, corrrectede=2mm additionally
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float correctede=-echange+0*retract_length+retract_recover_length; //total unretract=retract_length+retract_recover_length[surplus]
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current_position[E_AXIS]+=-correctede; //to generate the additional steps, not the destination is changed, but inversely the current position
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feedrate=retract_recover_feedrate;
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retracted=false;
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}
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}
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}
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#endif //FWRETRACT
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}
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void get_arc_coordinates()
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@ -73,6 +73,7 @@
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#define MSG_ZSTEPS " Zsteps/mm:"
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#define MSG_ESTEPS " Esteps/mm:"
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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_MOTION_WIDE " Motion \x7E"
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#define MSG_STORE_EPROM " Store memory"
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@ -83,6 +84,7 @@
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#define MSG_PREPARE " Prepare \x7E"
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#define MSG_PREPARE_ALT " Prepare \003"
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#define MSG_CONTROL_ARROW " Control \x7E"
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#define MSG_RETRACT_ARROW " Control \x7E"
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#define MSG_TUNE " Tune \x7E"
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#define MSG_STOP_PRINT " Stop Print \x7E"
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#define MSG_CARD_MENU " Card Menu \x7E"
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@ -97,7 +99,12 @@
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#define MSG_PREHEAT_PLA " Preheat PLA"
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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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#define MSG_CONTROL_RETRACTF " Retract F:"
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#define MSG_CONTROL_RETRACT_ZLIFT " Hop mm:"
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#define MSG_CONTROL_RETRACT_RECOVER " UnRet +mm:"
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#define MSG_CONTROL_RETRACT_RECOVERF " UnRet F:"
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#define MSG_AUTORETRACT " AutoRetr.:"
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// Serial Console Messages
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#define MSG_PREPARE " Prepare \x7E"
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#define MSG_PREPARE_ALT " Prepare \003"
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#define MSG_CONTROL_ARROW " Control \x7E"
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#define MSG_TUNE " Tune \x7E"
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#define MSG_STOP_PRINT " Druck stoppen \x7E"
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#define MSG_CARD_MENU " SDKarten Menue \x7E"
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@ -246,6 +254,7 @@
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#define MSG_STEPPER_RELEASED "Released."
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// Serial Console Messages
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#define MSG_Enqueing "enqueing \""
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@ -51,7 +51,7 @@
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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};
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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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class MainMenu{
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public:
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@ -68,6 +68,7 @@
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void showControl();
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void showControlMotion();
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void showControlTemp();
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void showControlRetract();
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void showAxisMove();
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void showSD();
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bool force_lcd_update;
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@ -1688,6 +1688,8 @@ void MainMenu::showControlMotion()
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}
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}break;
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case ItemCM_aret://float retract_acceleration = 7000;
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{
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if(force_lcd_update)
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@ -1884,8 +1886,252 @@ void MainMenu::showControlMotion()
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}
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enum {
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ItemR_exit,
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ItemR_autoretract,
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ItemR_retract_length,ItemR_retract_feedrate,ItemR_retract_zlift,
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ItemR_unretract_length,ItemR_unretract_feedrate,
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};
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void MainMenu::showControlRetract()
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{
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#ifdef FWRETRACT
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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 ItemR_exit:
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MENUITEM( lcdprintPGM(MSG_CONTROL) , BLOCK;status=Main_Control;beepshort(); ) ;
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break;
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//float retract_length=2, retract_feedrate=1200, retract_zlift=0.4;
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//float retract_recover_length=0, retract_recover_feedrate=500;
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case ItemR_autoretract:
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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_AUTORETRACT);
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lcd.setCursor(13,line);
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if(autoretract_enabled)
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lcdprintPGM(MSG_ON);
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else
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lcdprintPGM(MSG_OFF);
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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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autoretract_enabled=!autoretract_enabled;
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lcd.setCursor(13,line);
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if(autoretract_enabled)
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lcdprintPGM(MSG_ON);
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else
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lcdprintPGM(MSG_OFF);
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BLOCK;
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}
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}break;
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case ItemR_retract_length:
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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_CONTROL_RETRACT);
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lcd.setCursor(13,line);lcd.print(ftostr52(retract_length));
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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=(long)(retract_length*100);
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}
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else
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{
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retract_length= encoderpos/100.;
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encoderpos=activeline*lcdslow;
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}
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BLOCK;
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beepshort();
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}
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if(linechanging)
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{
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if(encoderpos<1) encoderpos=1;
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if(encoderpos>990) encoderpos=990;
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lcd.setCursor(13,line);lcd.print(ftostr52(encoderpos/100.));
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}
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}break;
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case ItemR_retract_feedrate:
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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_CONTROL_RETRACTF);
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lcd.setCursor(13,line);lcd.print(itostr4(retract_feedrate));
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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=(long)(retract_feedrate/5);
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}
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else
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{
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retract_feedrate= encoderpos*5.;
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encoderpos=activeline*lcdslow;
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}
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BLOCK;
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beepshort();
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}
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if(linechanging)
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{
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if(encoderpos<1) encoderpos=1;
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if(encoderpos>990) encoderpos=990;
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lcd.setCursor(13,line);lcd.print(itostr4(encoderpos*5));
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}
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}break;
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case ItemR_retract_zlift://float retract_acceleration = 7000;
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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_CONTROL_RETRACT_ZLIFT);
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lcd.setCursor(13,line);lcd.print(ftostr52(retract_zlift));;
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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=(long)(retract_zlift*10);
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}
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else
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{
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retract_zlift= encoderpos/10.;
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encoderpos=activeline*lcdslow;
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}
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BLOCK;
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beepshort();
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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>990) encoderpos=990;
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lcd.setCursor(13,line);lcd.print(ftostr52(encoderpos/10.));
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}
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}break;
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case ItemR_unretract_length:
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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_CONTROL_RETRACT_RECOVER);
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lcd.setCursor(13,line);lcd.print(ftostr52(retract_recover_length));;
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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=(long)(retract_recover_length*100);
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}
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else
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{
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retract_recover_length= encoderpos/100.;
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encoderpos=activeline*lcdslow;
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}
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BLOCK;
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||||
beepshort();
|
||||
}
|
||||
if(linechanging)
|
||||
{
|
||||
if(encoderpos<0) encoderpos=0;
|
||||
if(encoderpos>990) encoderpos=990;
|
||||
lcd.setCursor(13,line);lcd.print(ftostr52(encoderpos/100.));
|
||||
}
|
||||
|
||||
}break;
|
||||
|
||||
case ItemR_unretract_feedrate:
|
||||
{
|
||||
if(force_lcd_update)
|
||||
{
|
||||
lcd.setCursor(0,line);lcdprintPGM(MSG_CONTROL_RETRACT_RECOVERF);
|
||||
lcd.setCursor(13,line);lcd.print(itostr4(retract_recover_feedrate));
|
||||
}
|
||||
|
||||
if((activeline!=line) )
|
||||
break;
|
||||
|
||||
if(CLICKED)
|
||||
{
|
||||
linechanging=!linechanging;
|
||||
if(linechanging)
|
||||
{
|
||||
encoderpos=(long)retract_recover_feedrate/5;
|
||||
}
|
||||
else
|
||||
{
|
||||
retract_recover_feedrate= encoderpos*5.;
|
||||
encoderpos=activeline*lcdslow;
|
||||
|
||||
}
|
||||
BLOCK;
|
||||
beepshort();
|
||||
}
|
||||
if(linechanging)
|
||||
{
|
||||
if(encoderpos<1) encoderpos=1;
|
||||
if(encoderpos>990) encoderpos=990;
|
||||
lcd.setCursor(13,line);lcd.print(itostr4(encoderpos*5));
|
||||
}
|
||||
|
||||
}break;
|
||||
|
||||
default:
|
||||
break;
|
||||
}
|
||||
line++;
|
||||
}
|
||||
updateActiveLines(ItemR_unretract_feedrate,encoderpos);
|
||||
#endif
|
||||
}
|
||||
|
||||
|
||||
|
||||
enum {
|
||||
ItemC_exit,ItemC_temp,ItemC_move,
|
||||
#ifdef FWRETRACT
|
||||
ItemC_rectract,
|
||||
#endif
|
||||
ItemC_store, ItemC_load,ItemC_failsafe
|
||||
};
|
||||
|
||||
|
@ -1906,6 +2152,11 @@ void MainMenu::showControl()
|
|||
case ItemC_move:
|
||||
MENUITEM( lcdprintPGM(MSG_MOTION_WIDE) , BLOCK;status=Sub_MotionControl;beepshort(); ) ;
|
||||
break;
|
||||
#ifdef FWRETRACT
|
||||
case ItemC_rectract:
|
||||
MENUITEM( lcdprintPGM(MSG_RECTRACT_WIDE) , BLOCK;status=Sub_RetractControl;beepshort(); ) ;
|
||||
break;
|
||||
#endif
|
||||
case ItemC_store:
|
||||
{
|
||||
if(force_lcd_update)
|
||||
|
@ -2250,6 +2501,10 @@ void MainMenu::update()
|
|||
{
|
||||
showControlMotion();
|
||||
}break;
|
||||
case Sub_RetractControl:
|
||||
{
|
||||
showControlRetract();
|
||||
}break;
|
||||
case Sub_TempControl:
|
||||
{
|
||||
showControlTemp();
|
||||
|
|
Reference in a new issue