freecad-cam/Mod/cam-dev/ref-fusion/CAM360/Data/Posts/heidenhain iso.cps

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/**
Copyright (C) 2012-2025 by Autodesk, Inc.
All rights reserved.
Heidenhain ISO post processor configuration.
$Revision: 45583 10f6400eaf1c75a27c852ee82b57479e7a9134c0 $
$Date: 2025-08-21 13:23:15 $
FORKID {43354140-D681-47d0-B056-9A0A277F620D}
*/
description = "Heidenhain ISO";
vendor = "Heidenhain";
vendorUrl = "http://www.heidenhain.com";
legal = "Copyright (C) 2012-2025 by Autodesk, Inc.";
certificationLevel = 2;
minimumRevision = 45702;
longDescription = "Generic milling post for Heidenhain ISO.";
extension = "i";
setCodePage("ascii");
capabilities = CAPABILITY_MILLING;
tolerance = spatial(0.002, MM);
minimumChordLength = spatial(0.25, MM);
minimumCircularRadius = spatial(0.01, MM);
maximumCircularRadius = spatial(1000, MM);
minimumCircularSweep = toRad(0.01);
maximumCircularSweep = toRad(180);
allowHelicalMoves = true;
allowedCircularPlanes = undefined; // allow any circular motion
// user-defined properties
properties = {
writeMachine: {
title : "Write machine",
description: "Output the machine settings in the header of the code.",
group : "formats",
type : "boolean",
value : true,
scope : "post"
},
writeTools: {
title : "Write tool list",
description: "Output a tool list in the header of the code.",
group : "formats",
type : "boolean",
value : true,
scope : "post"
},
preloadTool: {
title : "Preload tool",
description: "Preloads the next tool at a tool change (if any).",
group : "preferences",
type : "boolean",
value : false,
scope : "post"
},
showSequenceNumbers: {
title : "Use sequence numbers",
description: "'Yes' outputs sequence numbers on each block, 'Only on tool change' outputs sequence numbers on tool change blocks only, and 'No' disables the output of sequence numbers.",
group : "formats",
type : "enum",
values : [
{title:"Yes", id:"true"},
{title:"No", id:"false"},
{title:"Only on tool change", id:"toolChange"}
],
value: "true",
scope: "post"
},
sequenceNumberStart: {
title : "Start sequence number",
description: "The number at which to start the sequence numbers.",
group : "formats",
type : "integer",
value : 10,
scope : "post"
},
sequenceNumberIncrement: {
title : "Sequence number increment",
description: "The amount by which the sequence number is incremented by in each block.",
group : "formats",
type : "integer",
value : 5,
scope : "post"
},
optionalStop: {
title : "Optional stop",
description: "Outputs optional stop code during when necessary in the code.",
group : "preferences",
type : "boolean",
value : true,
scope : "post"
},
separateWordsWithSpace: {
title : "Separate words with space",
description: "Adds spaces between words if 'yes' is selected.",
group : "formats",
type : "boolean",
value : true,
scope : "post"
},
useRadius: {
title : "Radius arcs",
description: "If yes is selected, arcs are outputted using radius values rather than IJK.",
group : "preferences",
type : "boolean",
value : false,
scope : "post"
},
showNotes: {
title : "Show notes",
description: "Writes operation notes as comments in the outputted code.",
group : "formats",
type : "boolean",
value : false,
scope : "post"
},
useParametricFeed: {
title : "Parametric feed",
description: "Specifies the feed value that should be output using a Q value.",
group : "preferences",
type : "boolean",
value : false,
scope : "post"
},
safePositionMethod: {
title : "Safe Retracts",
description: "Select your desired retract option. 'Clearance Height' retracts to the operation clearance height.",
group : "homePositions",
type : "enum",
values : [
{title:"Clearance Height", id:"clearanceHeight"},
{title:"M91", id:"M91"},
{title:"M92", id:"M92"}
],
value: "M91",
scope: "post"
},
useM140: {
title : "Use M140",
description: "Specifies to use M140 MB MAX for Z-axis retracts instead of M91/M92 positions.",
group : "homePositions",
type : "boolean",
value : false,
scope : "post"
},
useParkPosition: {
title : "Home XY at end",
description: "Specifies that the machine moves to the home position in XY at the end of the program.",
group : "homePositions",
type : "boolean",
value : false,
scope : "post"
},
cycleFormat: {
title : "Cycle format",
description: "Select 'New' to output canned cycles in 'G2xx Q' format instead of in 'G8x. P0y' format.",
group : "preferences",
type : "enum",
values : [
{title:"New", id:"new"},
{title:"Old", id:"old"}
],
value: "old",
scope: "post"
}
};
// wcs definiton
wcsDefinitions = {
useZeroOffset: false,
wcs : [
{name:"Standard", format:"#", range:[1, 1]}
]
};
var singleLineCoolant = false; // specifies to output multiple coolant codes in one line rather than in separate lines
// samples:
// {id: COOLANT_THROUGH_TOOL, on: 88, off: 89}
// {id: COOLANT_THROUGH_TOOL, on: [8, 88], off: [9, 89]}
// {id: COOLANT_THROUGH_TOOL, on: "M88 P3 (myComment)", off: "M89"}
var coolants = [
{id:COOLANT_FLOOD, on:8},
{id:COOLANT_MIST},
{id:COOLANT_THROUGH_TOOL},
{id:COOLANT_AIR},
{id:COOLANT_AIR_THROUGH_TOOL},
{id:COOLANT_SUCTION},
{id:COOLANT_FLOOD_MIST},
{id:COOLANT_FLOOD_THROUGH_TOOL},
{id:COOLANT_OFF, off:9}
];
var permittedCommentChars = " ABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789.,=_-";
var gFormat = createFormat({prefix:"G", width:2, zeropad:true, decimals:1});
var mFormat = createFormat({prefix:"M", width:2, zeropad:true, decimals:1});
var hFormat = createFormat({prefix:"H", width:2, zeropad:true, decimals:1});
var dFormat = createFormat({prefix:"D", width:2, zeropad:true, decimals:1});
var xyzFormat = createFormat({decimals:(unit == MM ? 3 : 4), forceDecimal:true, forceSign:true});
var rFormat = xyzFormat; // radius
var abcFormat = createFormat({decimals:3, forceDecimal:true, scale:DEG});
var feedFormat = createFormat({decimals:(unit == MM ? 0 : 1), forceDecimal:true});
var toolFormat = createFormat({decimals:0});
var rpmFormat = createFormat({decimals:0});
var angleFormat = createFormat({decimals:0, scale:DEG});
var pitchFormat = createFormat({decimals:(unit == MM ? 3 : 4), forceSign:true});
var ratioFormat = createFormat({decimals:3});
var secFormat = createFormat({decimals:3}); // seconds - range 0.001-99999.999
var taperFormat = createFormat({decimals:1, scale:DEG});
var xOutput = createVariable({prefix:"X"}, xyzFormat);
var yOutput = createVariable({prefix:"Y"}, xyzFormat);
var zOutput = createVariable({onchange:function () {retracted = false;}, prefix:"Z"}, xyzFormat);
var aOutput = createVariable({prefix:"A"}, abcFormat);
var bOutput = createVariable({prefix:"B"}, abcFormat);
var cOutput = createVariable({prefix:"C"}, abcFormat);
var feedOutput = createVariable({prefix:"F"}, feedFormat);
var sOutput = createVariable({prefix:"S", force:true}, rpmFormat);
// circular output
var iOutput = createVariable({prefix:"I", force:true}, xyzFormat);
var jOutput = createVariable({prefix:"J", force:true}, xyzFormat);
var kOutput = createVariable({prefix:"K", force:true}, xyzFormat);
var gMotionModal = createModal({}, gFormat); // modal group 1 // G0-G3, ...
var gPlaneModal = createModal({onchange:function () {gMotionModal.reset();}}, gFormat); // modal group 2 // G17-19
var gAbsIncModal = createModal({}, gFormat); // modal group 3 // G90-91
var gUnitModal = createModal({force:true}, gFormat); // modal group 6 // G70-71
// fixed settings
var retracted = false; // specifies that the tool has been retracted to the safe plane
var firstFeedParameter = 50;
var useCycl205 = false; // use CYCL 205 for universal pecking
// collected state
var sequenceNumber;
var currentWorkOffset;
var forceSpindleSpeed = false;
var activeMovements; // do not use by default
var currentFeedId;
/**
Writes the specified block.
*/
function writeBlock() {
var text = formatWords(arguments);
if (!text) {
return;
}
if (getProperty("showSequenceNumbers") == "true") {
writeWords2("N" + sequenceNumber, arguments);
sequenceNumber += getProperty("sequenceNumberIncrement");
} else {
writeWords(arguments);
}
}
function formatComment(text) {
return ";" + filterText(String(text).toUpperCase(), permittedCommentChars).replace(/[()]/g, "");
}
/**
Writes the specified block - used for tool changes only.
*/
function writeToolBlock() {
var show = getProperty("showSequenceNumbers");
setProperty("showSequenceNumbers", (show == "true" || show == "toolChange") ? "true" : "false");
writeBlock(arguments);
setProperty("showSequenceNumbers", show);
}
/**
Output a comment.
*/
function writeComment(text) {
writeln(formatComment(text));
}
function onOpen() {
if (getProperty("useRadius")) {
maximumCircularSweep = toRad(90); // avoid potential center calculation errors for CNC
}
if (false) { // note: setup your machine here
var aAxis = createAxis({coordinate:0, table:false, axis:[1, 0, 0], range:[-360, 360], preference:1});
var cAxis = createAxis({coordinate:2, table:false, axis:[0, 0, 1], range:[-360, 360], preference:1});
machineConfiguration = new MachineConfiguration(aAxis, cAxis);
setMachineConfiguration(machineConfiguration);
optimizeMachineAngles2(0); // TCP mode
}
/*
// NOTE: setup your home positions here
machineConfiguration.setRetractPlane(-20.415); // home position Z
machineConfiguration.setHomePositionX(-200); // home position X
machineConfiguration.setHomePositionY(-5); // home position Y
*/
if (!machineConfiguration.isMachineCoordinate(0)) {
aOutput.disable();
}
if (!machineConfiguration.isMachineCoordinate(1)) {
bOutput.disable();
}
if (!machineConfiguration.isMachineCoordinate(2)) {
cOutput.disable();
}
if (!getProperty("separateWordsWithSpace")) {
setWordSeparator("");
}
sequenceNumber = getProperty("sequenceNumberStart");
writeln(
"%" + programName + " " + gUnitModal.format((unit == MM) ? 71 : 70)
);
if (programComment) {
writeComment(programComment);
}
{ // stock - workpiece
var workpiece = getWorkpiece();
var delta = Vector.diff(workpiece.upper, workpiece.lower);
if (delta.isNonZero()) {
writeBlock(gFormat.format(30), gPlaneModal.format(17), "X" + xyzFormat.format(workpiece.lower.x) + " Y" + xyzFormat.format(workpiece.lower.y) + " Z" + xyzFormat.format(workpiece.lower.z));
writeBlock(gFormat.format(31), gAbsIncModal.format(90), "X" + xyzFormat.format(workpiece.upper.x) + " Y" + xyzFormat.format(workpiece.upper.y) + " Z" + xyzFormat.format(workpiece.upper.z));
}
}
// dump machine configuration
var vendor = machineConfiguration.getVendor();
var model = machineConfiguration.getModel();
var description = machineConfiguration.getDescription();
if (getProperty("writeMachine") && (vendor || model || description)) {
writeComment(localize("Machine"));
if (vendor) {
writeComment(" " + localize("vendor") + ": " + vendor);
}
if (model) {
writeComment(" " + localize("model") + ": " + model);
}
if (description) {
writeComment(" " + localize("description") + ": " + description);
}
}
// dump tool information
if (getProperty("writeTools")) {
var zRanges = {};
if (is3D()) {
var numberOfSections = getNumberOfSections();
for (var i = 0; i < numberOfSections; ++i) {
var section = getSection(i);
var zRange = section.getGlobalZRange();
var tool = section.getTool();
if (zRanges[tool.number]) {
zRanges[tool.number].expandToRange(zRange);
} else {
zRanges[tool.number] = zRange;
}
}
}
var tools = getToolTable();
if (tools.getNumberOfTools() > 0) {
for (var i = 0; i < tools.getNumberOfTools(); ++i) {
var tool = tools.getTool(i);
var comment = "T" + toolFormat.format(tool.number) + " " +
"D=" + xyzFormat.format(tool.diameter) + " " +
localize("CR") + "=" + xyzFormat.format(tool.cornerRadius);
if ((tool.taperAngle > 0) && (tool.taperAngle < Math.PI)) {
comment += " " + localize("TAPER") + "=" + taperFormat.format(tool.taperAngle) + localize("deg");
}
if (zRanges[tool.number]) {
comment += " - " + localize("ZMIN") + "=" + xyzFormat.format(zRanges[tool.number].getMinimum());
}
comment += " - " + getToolTypeName(tool.type);
writeComment(comment);
}
}
}
// absolute coordinates and feed per min
writeBlock(gAbsIncModal.format(90), gPlaneModal.format(17));
}
function onComment(message) {
var comments = String(message).split(";");
for (comment in comments) {
writeComment(comments[comment]);
}
}
/** Force output of X, Y, and Z. */
function forceXYZ() {
xOutput.reset();
yOutput.reset();
zOutput.reset();
}
/** Force output of A, B, and C. */
function forceABC() {
aOutput.reset();
bOutput.reset();
cOutput.reset();
}
function forceFeed() {
currentFeedId = undefined;
feedOutput.reset();
}
/** Force output of X, Y, Z, A, B, C, and F on next output. */
function forceAny() {
forceXYZ();
forceABC();
forceFeed();
}
function onParameter(name, value) {
}
function FeedContext(id, description, feed) {
this.id = id;
this.description = description;
this.feed = feed;
}
function getFeed(f) {
if (activeMovements) {
var feedContext = activeMovements[movement];
if (feedContext != undefined) {
if (!feedFormat.areDifferent(feedContext.feed, f)) {
if (feedContext.id == currentFeedId) {
return ""; // nothing has changed
}
forceFeed();
currentFeedId = feedContext.id;
return "F#" + (firstFeedParameter + feedContext.id);
}
}
currentFeedId = undefined; // force Q feed next time
}
return feedOutput.format(f); // use feed value
}
function initializeActiveFeeds() {
activeMovements = new Array();
var movements = currentSection.getMovements();
var id = 0;
var activeFeeds = new Array();
if (hasParameter("operation:tool_feedCutting")) {
if (movements & ((1 << MOVEMENT_CUTTING) | (1 << MOVEMENT_LINK_TRANSITION) | (1 << MOVEMENT_EXTENDED))) {
var feedContext = new FeedContext(id, localize("Cutting"), getParameter("operation:tool_feedCutting"));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_CUTTING] = feedContext;
if (!hasParameter("operation:tool_feedTransition")) {
activeMovements[MOVEMENT_LINK_TRANSITION] = feedContext;
}
activeMovements[MOVEMENT_EXTENDED] = feedContext;
}
++id;
if (movements & (1 << MOVEMENT_PREDRILL)) {
feedContext = new FeedContext(id, localize("Predrilling"), getParameter("operation:tool_feedCutting"));
activeMovements[MOVEMENT_PREDRILL] = feedContext;
activeFeeds.push(feedContext);
}
++id;
}
if (hasParameter("operation:finishFeedrate")) {
if (movements & (1 << MOVEMENT_FINISH_CUTTING)) {
var feedContext = new FeedContext(id, localize("Finish"), getParameter("operation:finishFeedrate"));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_FINISH_CUTTING] = feedContext;
}
++id;
} else if (hasParameter("operation:tool_feedCutting")) {
if (movements & (1 << MOVEMENT_FINISH_CUTTING)) {
var feedContext = new FeedContext(id, localize("Finish"), getParameter("operation:tool_feedCutting"));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_FINISH_CUTTING] = feedContext;
}
++id;
}
if (hasParameter("operation:tool_feedEntry")) {
if (movements & (1 << MOVEMENT_LEAD_IN)) {
var feedContext = new FeedContext(id, localize("Entry"), getParameter("operation:tool_feedEntry"));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_LEAD_IN] = feedContext;
}
++id;
}
if (hasParameter("operation:tool_feedExit")) {
if (movements & (1 << MOVEMENT_LEAD_OUT)) {
var feedContext = new FeedContext(id, localize("Exit"), getParameter("operation:tool_feedExit"));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_LEAD_OUT] = feedContext;
}
++id;
}
if (hasParameter("operation:noEngagementFeedrate")) {
if (movements & (1 << MOVEMENT_LINK_DIRECT)) {
var feedContext = new FeedContext(id, localize("Direct"), getParameter("operation:noEngagementFeedrate"));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_LINK_DIRECT] = feedContext;
}
++id;
} else if (hasParameter("operation:tool_feedCutting") &&
hasParameter("operation:tool_feedEntry") &&
hasParameter("operation:tool_feedExit")) {
if (movements & (1 << MOVEMENT_LINK_DIRECT)) {
var feedContext = new FeedContext(id, localize("Direct"), Math.max(getParameter("operation:tool_feedCutting"), getParameter("operation:tool_feedEntry"), getParameter("operation:tool_feedExit")));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_LINK_DIRECT] = feedContext;
}
++id;
}
if (hasParameter("operation:reducedFeedrate")) {
if (movements & (1 << MOVEMENT_REDUCED)) {
var feedContext = new FeedContext(id, localize("Reduced"), getParameter("operation:reducedFeedrate"));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_REDUCED] = feedContext;
}
++id;
}
if (hasParameter("operation:tool_feedRamp")) {
if (movements & ((1 << MOVEMENT_RAMP) | (1 << MOVEMENT_RAMP_HELIX) | (1 << MOVEMENT_RAMP_PROFILE) | (1 << MOVEMENT_RAMP_ZIG_ZAG))) {
var feedContext = new FeedContext(id, localize("Ramping"), getParameter("operation:tool_feedRamp"));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_RAMP] = feedContext;
activeMovements[MOVEMENT_RAMP_HELIX] = feedContext;
activeMovements[MOVEMENT_RAMP_PROFILE] = feedContext;
activeMovements[MOVEMENT_RAMP_ZIG_ZAG] = feedContext;
}
++id;
}
if (hasParameter("operation:tool_feedPlunge")) {
if (movements & (1 << MOVEMENT_PLUNGE)) {
var feedContext = new FeedContext(id, localize("Plunge"), getParameter("operation:tool_feedPlunge"));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_PLUNGE] = feedContext;
}
++id;
}
if (true) { // high feed
if ((movements & (1 << MOVEMENT_HIGH_FEED)) || (highFeedMapping != HIGH_FEED_NO_MAPPING)) {
var feed;
if (hasParameter("operation:highFeedrateMode") && getParameter("operation:highFeedrateMode") != "disabled") {
feed = getParameter("operation:highFeedrate");
} else {
feed = this.highFeedrate;
}
var feedContext = new FeedContext(id, localize("High Feed"), feed);
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_HIGH_FEED] = feedContext;
activeMovements[MOVEMENT_RAPID] = feedContext;
}
++id;
}
if (hasParameter("operation:tool_feedTransition")) {
if (movements & (1 << MOVEMENT_LINK_TRANSITION)) {
var feedContext = new FeedContext(id, localize("Transition"), getParameter("operation:tool_feedTransition"));
activeFeeds.push(feedContext);
activeMovements[MOVEMENT_LINK_TRANSITION] = feedContext;
}
++id;
}
for (var i = 0; i < activeFeeds.length; ++i) {
var feedContext = activeFeeds[i];
writeBlock("#" + (firstFeedParameter + feedContext.id) + "=" + feedFormat.format(feedContext.feed), formatComment(feedContext.description));
}
}
var currentWorkPlaneABC = undefined;
function forceWorkPlane() {
currentWorkPlaneABC = undefined;
}
function positionABC(abc, force) {
if (typeof unwindABC == "function") {
unwindABC(abc, false);
}
if (force) {
forceABC();
}
var a = aOutput.format(abc.x);
var b = bOutput.format(abc.y);
var c = cOutput.format(abc.z);
if (a || b || c) {
if (!retracted) {
if (typeof moveToSafeRetractPosition == "function") {
moveToSafeRetractPosition();
} else {
writeRetract(Z);
}
}
onCommand(COMMAND_UNLOCK_MULTI_AXIS);
writeBlock(gMotionModal.format(0), a, b, c);
currentMachineABC = new Vector(abc);
setCurrentABC(abc); // required for machine simulation
}
}
function setWorkPlane(abc) {
if (!machineConfiguration.isMultiAxisConfiguration()) {
return; // ignore
}
if (!((currentWorkPlaneABC == undefined) ||
abcFormat.areDifferent(abc.x, currentWorkPlaneABC.x) ||
abcFormat.areDifferent(abc.y, currentWorkPlaneABC.y) ||
abcFormat.areDifferent(abc.z, currentWorkPlaneABC.z))) {
return; // no change
}
positionABC(abc, true);
onCommand(COMMAND_LOCK_MULTI_AXIS);
currentWorkPlaneABC = abc;
}
var closestABC = false; // choose closest machine angles
var currentMachineABC;
function getWorkPlaneMachineABC(workPlane) {
var W = workPlane; // map to global frame
var abc = machineConfiguration.getABC(W);
if (closestABC) {
if (currentMachineABC) {
abc = machineConfiguration.remapToABC(abc, currentMachineABC);
} else {
abc = machineConfiguration.getPreferredABC(abc);
}
} else {
abc = machineConfiguration.getPreferredABC(abc);
}
try {
abc = machineConfiguration.remapABC(abc);
currentMachineABC = abc;
} catch (e) {
error(
localize("Machine angles not supported") + ":"
+ conditional(machineConfiguration.isMachineCoordinate(0), " A" + abcFormat.format(abc.x))
+ conditional(machineConfiguration.isMachineCoordinate(1), " B" + abcFormat.format(abc.y))
+ conditional(machineConfiguration.isMachineCoordinate(2), " C" + abcFormat.format(abc.z))
);
}
var direction = machineConfiguration.getDirection(abc);
if (!isSameDirection(direction, W.forward)) {
error(localize("Orientation not supported."));
}
if (!machineConfiguration.isABCSupported(abc)) {
error(
localize("Work plane is not supported") + ":"
+ conditional(machineConfiguration.isMachineCoordinate(0), " A" + abcFormat.format(abc.x))
+ conditional(machineConfiguration.isMachineCoordinate(1), " B" + abcFormat.format(abc.y))
+ conditional(machineConfiguration.isMachineCoordinate(2), " C" + abcFormat.format(abc.z))
);
}
var tcp = true;
if (tcp) {
setRotation(W); // TCP mode
} else {
var O = machineConfiguration.getOrientation(abc);
var R = machineConfiguration.getRemainingOrientation(abc, W);
setRotation(R);
}
return abc;
}
function onSection() {
var insertToolCall = isFirstSection() ||
currentSection.getForceToolChange && currentSection.getForceToolChange() ||
(tool.number != getPreviousSection().getTool().number);
retracted = false; // specifies that the tool has been retracted to the safe plane
var newWorkOffset = isFirstSection() ||
(getPreviousSection().workOffset != currentSection.workOffset); // work offset changes
var newWorkPlane = isFirstSection() ||
!isSameDirection(getPreviousSection().getGlobalFinalToolAxis(), currentSection.getGlobalInitialToolAxis()) ||
(currentSection.isOptimizedForMachine() && getPreviousSection().isOptimizedForMachine() &&
Vector.diff(getPreviousSection().getFinalToolAxisABC(), currentSection.getInitialToolAxisABC()).length > 1e-4) ||
(!machineConfiguration.isMultiAxisConfiguration() && currentSection.isMultiAxis()) ||
(!getPreviousSection().isMultiAxis() && currentSection.isMultiAxis() ||
getPreviousSection().isMultiAxis() && !currentSection.isMultiAxis()); // force newWorkPlane between indexing and simultaneous operations
if (insertToolCall || newWorkOffset || newWorkPlane) {
// retract to safe plane
if (!getProperty("useM140") || !isFirstSection()) {
writeRetract(Z);
}
writeBlock(gAbsIncModal.format(90));
}
if (hasParameter("operation-comment")) {
var comment = getParameter("operation-comment");
if (comment) {
writeComment(comment);
}
}
if (getProperty("showNotes") && hasParameter("notes")) {
var notes = getParameter("notes");
if (notes) {
var lines = String(notes).split("\n");
var r1 = new RegExp("^[\\s]+", "g");
var r2 = new RegExp("[\\s]+$", "g");
for (line in lines) {
var comment = lines[line].replace(r1, "").replace(r2, "");
if (comment) {
writeComment(comment);
}
}
}
}
if (insertToolCall) {
forceWorkPlane();
onCommand(COMMAND_COOLANT_OFF);
if (!isFirstSection() && getProperty("optionalStop")) {
onCommand(COMMAND_OPTIONAL_STOP);
}
if (tool.number > 99) {
warning(localize("Tool number exceeds maximum value."));
}
/*
writeBlock(
gFormat.format(99), "T" + tool.number, "L" + xyzFormat.format(tool.bodyLength), "R" + xyzFormat.format(tool.diameter/2)
);
*/
gPlaneModal.reset();
writeToolBlock(
"T" + tool.number, gPlaneModal.format(17), sOutput.format(spindleSpeed)
);
if (tool.comment) {
writeComment(tool.comment);
}
var showToolZMin = false;
if (showToolZMin) {
if (is3D()) {
var numberOfSections = getNumberOfSections();
var zRange = currentSection.getGlobalZRange();
var number = tool.number;
for (var i = currentSection.getId() + 1; i < numberOfSections; ++i) {
var section = getSection(i);
if (section.getTool().number != number) {
break;
}
zRange.expandToRange(section.getGlobalZRange());
}
writeComment(localize("ZMIN") + "=" + zRange.getMinimum());
}
}
if (getProperty("preloadTool")) {
var nextTool = getNextTool(tool.number);
if (nextTool) {
writeBlock(gFormat.format(51), "T" + toolFormat.format(nextTool.number));
} else {
// preload first tool
var section = getSection(0);
var firstToolNumber = section.getTool().number;
if (tool.number != firstToolNumber) {
writeBlock(gFormat.format(51), "T" + toolFormat.format(firstToolNumber));
}
}
}
}
if (getProperty("useM140")) {
writeRetract(Z);
}
var spindleChanged = tool.type != TOOL_PROBE &&
(insertToolCall || forceSpindleSpeed || isFirstSection() ||
(rpmFormat.areDifferent(spindleSpeed, sOutput.getCurrent())) ||
(tool.clockwise != getPreviousSection().getTool().clockwise));
if (spindleChanged) {
forceSpindleSpeed = false;
if (spindleSpeed < 1) {
error(localize("Spindle speed out of range."));
}
if (spindleSpeed > 99999) {
warning(localize("Spindle speed exceeds maximum value."));
}
writeBlock(
sOutput.format(spindleSpeed), mFormat.format(tool.clockwise ? 3 : 4)
);
}
// wcs
/*
if (insertToolCall) { // force work offset when changing tool
currentWorkOffset = undefined;
}
if (currentSection.workOffset != currentWorkOffset) {
writeBlock(currentSection.wcs);
currentWorkOffset = currentSection.workOffset;
}
*/
forceXYZ();
if (machineConfiguration.isMultiAxisConfiguration()) { // use 5-axis indexing for multi-axis mode
var abc = new Vector(0, 0, 0);
if (currentSection.isMultiAxis()) {
forceWorkPlane();
cancelTransformation();
if (currentSection.isOptimizedForMachine()) {
abc = currentSection.getInitialToolAxisABC();
positionABC(abc, true);
}
} else {
abc = getWorkPlaneMachineABC(currentSection.workPlane);
setWorkPlane(abc);
}
} else { // pure 3D
var remaining = currentSection.workPlane;
if (!isSameDirection(remaining.forward, new Vector(0, 0, 1))) {
error(localize("Tool orientation is not supported."));
return;
}
setRotation(remaining);
}
// set coolant after we have positioned at Z
setCoolant(tool.coolant);
forceAny();
gMotionModal.reset();
var initialPosition = getFramePosition(currentSection.getInitialPosition());
if (!retracted && !insertToolCall) {
if (getCurrentPosition().z < initialPosition.z) {
writeBlock(gMotionModal.format(0), zOutput.format(initialPosition.z));
}
}
if (insertToolCall) {
gMotionModal.reset();
writeBlock(gPlaneModal.format(17));
if (!machineConfiguration.isHeadConfiguration()) {
writeBlock(
gAbsIncModal.format(90),
gMotionModal.format(0), xOutput.format(initialPosition.x), yOutput.format(initialPosition.y)
);
writeBlock(gMotionModal.format(0), zOutput.format(initialPosition.z));
} else {
writeBlock(
gAbsIncModal.format(90),
gMotionModal.format(0),
xOutput.format(initialPosition.x),
yOutput.format(initialPosition.y),
zOutput.format(initialPosition.z)
);
}
gMotionModal.reset();
} else {
writeBlock(
gAbsIncModal.format(90),
gMotionModal.format(0),
xOutput.format(initialPosition.x),
yOutput.format(initialPosition.y)
);
}
if (getProperty("useParametricFeed") &&
hasParameter("operation-strategy") &&
(getParameter("operation-strategy") != "drill") && // legacy
!(currentSection.hasAnyCycle && currentSection.hasAnyCycle())) {
if (!insertToolCall &&
activeMovements &&
(getCurrentSectionId() > 0) &&
((getPreviousSection().getPatternId() == currentSection.getPatternId()) && (currentSection.getPatternId() != 0))) {
// use the current feeds
} else {
initializeActiveFeeds();
}
} else {
activeMovements = undefined;
}
retracted = false;
}
function onDwell(seconds) {
if (seconds > 99999.999) {
warning(localize("Dwelling time is out of range."));
}
writeBlock(gFormat.format(4), "F" + secFormat.format(seconds));
}
function onSpindleSpeed(spindleSpeed) {
writeBlock(sOutput.format(spindleSpeed));
}
function onDrilling(cycle) {
writeBlock(gFormat.format(200) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q202=" + xyzFormat.format(cycle.depth) + " ;" + localize("INFEED DEPTH") + " ~" + EOL
+ " Q210=" + secFormat.format(0) + " ;" + localize("DWELL AT TOP") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q211=" + secFormat.format(0) + " ;" + localize("DWELL AT BOTTOM")
);
}
function onCounterBoring(cycle) {
writeBlock(gFormat.format(200) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q202=" + xyzFormat.format(cycle.depth) + " ;" + localize("INFEED DEPTH") + " ~" + EOL
+ " Q210=" + secFormat.format(0) + " ;" + localize("DWELL AT TOP") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q211=" + secFormat.format(cycle.dwell) + " ;" + localize("DWELL AT BOTTOM")
);
}
function onChipBreaking(cycle) {
writeBlock(gFormat.format(203) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q202=" + xyzFormat.format(cycle.incrementalDepth) + " ;" + localize("INFEED DEPTH") + " ~" + EOL
+ " Q210=" + secFormat.format(0) + " ;" + localize("DWELL AT TOP") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q212=" + xyzFormat.format(cycle.incrementalDepthReduction) + " ;" + localize("DECREMENT") + " ~" + EOL
+ " Q213=" + cycle.plungesPerRetract + " ;" + localize("BREAKS") + " ~" + EOL
+ " Q205=" + xyzFormat.format(cycle.minimumIncrementalDepth) + " ;" + localize("MIN. PLUNGING DEPTH") + " ~" + EOL
+ " Q211=" + secFormat.format(cycle.dwell) + " ;" + localize("DWELL TIME AT DEPTH") + " ~" + EOL
+ " Q208=" + "MAX" + " ;" + localize("RETRACTION FEED RATE") + " ~" + EOL
+ " Q256=" + xyzFormat.format((cycle.chipBreakDistance != undefined) ? cycle.chipBreakDistance : machineParameters.chipBreakingDistance) + " ;" + localize("DIST. FOR CHIP BRKNG")
);
}
function onDeepDrilling(cycle) {
if (useCycl205) {
writeBlock(gFormat.format(205) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q202=" + xyzFormat.format(cycle.incrementalDepth) + " ;" + localize("PLUNGING DEPTH") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q212=" + xyzFormat.format(cycle.incrementalDepthReduction) + " ;" + localize("DECREMENT") + " ~" + EOL
+ " Q205=" + xyzFormat.format(cycle.minimumIncrementalDepth) + " ;" + localize("MIN. PLUNGING DEPTH") + " ~" + EOL
+ " Q258=" + xyzFormat.format(0.5) + " ;" + localize("UPPER ADV. STOP DIST.") + " ~" + EOL
+ " Q259=" + xyzFormat.format(1) + " ;" + localize("LOWER ADV. STOP DIST.") + " ~" + EOL
+ " Q257=" + xyzFormat.format(5) + " ;" + localize("DEPTH FOR CHIP BRKNG") + " ~" + EOL
+ " Q256=" + xyzFormat.format((cycle.chipBreakDistance != undefined) ? cycle.chipBreakDistance : machineParameters.chipBreakingDistance) + " ;" + localize("DIST. FOR CHIP BRKNG") + " ~" + EOL
+ " Q211=" + secFormat.format(cycle.dwell) + " ;" + localize("DWELL TIME AT DEPTH") + " ~" + EOL
+ " Q379=" + "0" + " ;" + localize("STARTING POINT") + " ~" + EOL
+ " Q253=" + feedFormat.format(cycle.retractFeedrate) + " ;" + localize("F PRE-POSITIONING")
);
} else {
writeBlock(gFormat.format(200) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q202=" + xyzFormat.format(cycle.incrementalDepth) + " ;" + localize("INFEED DEPTH") + " ~" + EOL
+ " Q210=" + secFormat.format(0) + " ;" + localize("DWELL AT TOP") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q211=" + secFormat.format(cycle.dwell) + " ;" + localize("DWELL AT BOTTOM")
);
}
}
function onGunDrilling(cycle) {
var coolantCode = getCoolantCode(tool.coolant);
writeBlock(gFormat.format(241) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q211=" + secFormat.format(cycle.dwell) + " ;" + localize("DWELL TIME AT DEPTH") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q379=" + xyzFormat.format(cycle.startingDepth) + " ;" + localize("STARTING POINT") + " ~" + EOL
+ " Q253=" + feedFormat.format(cycle.positioningFeedrate) + " ;" + localize("F PRE-POSITIONING") + " ~" + EOL
+ " Q208=" + feedFormat.format(cycle.retractFeedrate) + " ;" + localize("RETRACT FEED RATE") + " ~" + EOL
+ " Q426=" + (cycle.stopSpindle ? 5 : (tool.clockwise ? 3 : 4)) + " ;" + localize("DIR. OF SPINDLE ROT.") + " ~" + EOL
+ " Q427=" + rpmFormat.format(cycle.positioningSpindleSpeed ? cycle.positioningSpindleSpeed : tool.spindleRPM) + " ;" + localize("ENTRY EXIT SPEED") + " ~" + EOL
+ " Q428=" + rpmFormat.format(tool.spindleRPM) + " ;" + localize("DRILLING SPEED") + " ~" + EOL
+ conditional(coolantCode, " Q429=" + (coolantCode ? coolantCode[0] : 0) + " ;" + localize("COOLANT ON") + " ~" + EOL)
+ conditional(coolantCode, " Q430=" + (coolantCode ? coolantCode[1] : 0) + " ;" + localize("COOLANT OFF") + " ~" + EOL)
// Heidenhain manual doesn't specify Q435 fully - adjust to fit CNC
+ " Q435=" + xyzFormat.format(cycle.dwellDepth ? (cycle.depth + cycle.dwellDepth) : 0) + " ;" + localize("DWELL DEPTH") // 0 to disable
);
}
function onTapping(cycle) {
writeBlock(gFormat.format(207) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q239=" + pitchFormat.format((tool.type == TOOL_TAP_LEFT_HAND ? -1 : 1) * tool.threadPitch) + " ;" + localize("THREAD PITCH") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE")
);
}
function onTappingWithChipBreaking(cycle) {
writeBlock(gFormat.format(209) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q239=" + pitchFormat.format((tool.type == TOOL_TAP_LEFT_HAND ? -1 : 1) * tool.threadPitch) + " ;" + localize("THREAD PITCH") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q257=" + xyzFormat.format(cycle.incrementalDepth) + " ;" + localize("DEPTH FOR CHIP BRKNG") + " ~" + EOL
+ " Q256=" + xyzFormat.format((cycle.chipBreakDistance != undefined) ? cycle.chipBreakDistance : machineParameters.chipBreakingDistance) + " ;" + localize("DIST. FOR CHIP BRKNG") + " ~" + EOL
+ " Q336=" + angleFormat.format(0) + " ;" + localize("ANGLE OF SPINDLE")
);
}
function onReaming(cycle) {
writeBlock(gFormat.format(201) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q211=" + secFormat.format(cycle.dwell) + " ;" + localize("DWELL AT BOTTOM") + " ~" + EOL
+ " Q208=" + feedFormat.format(cycle.retractFeedrate) + " ;" + localize("RETRACTION FEED TIME") + " ~" + EOL // retract at reaming feed rate
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE")
);
}
function onStopBoring(cycle) {
writeBlock(gFormat.format(202) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q211=" + secFormat.format(cycle.dwell) + " ;" + localize("DWELL AT BOTTOM") + " ~" + EOL
+ " Q208=" + "MAX" + " ;" + localize("RETRACTION FEED RATE") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q214=" + 0 + " ;" + localize("DISENGAGING DIRECTION") + " ~" + EOL
+ " Q336=" + angleFormat.format(0) + " ;" + localize("ANGLE OF SPINDLE")
);
}
/** Returns the best discrete disengagement direction for the specified direction. */
function getDisengagementDirection(direction) {
switch (getQuadrant(direction + 45 * Math.PI / 180)) {
case 0:
return 3;
case 1:
return 4;
case 2:
return 1;
case 3:
return 2;
}
error(localize("Invalid disengagement direction."));
return 3;
}
function onFineBoring(cycle) {
// we do not support cycle.shift
writeBlock(gFormat.format(202) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q211=" + secFormat.format(cycle.dwell) + " ;" + localize("DWELL AT BOTTOM") + " ~" + EOL
+ " Q208=" + "MAX" + " ;" + localize("RETRACTION FEED TIME") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q214=" + getDisengagementDirection(cycle.shiftDirection) + " ;" + localize("DISENGAGING DIRECTION") + " ~" + EOL
+ " Q336=" + angleFormat.format(cycle.compensatedShiftOrientation) + " ;" + localize("ANGLE OF SPINDLE")
);
}
function onBackBoring(cycle) {
writeBlock(gFormat.format(204) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q249=" + xyzFormat.format(cycle.backBoreDistance) + " ;" + localize("DEPTH REDUCTION") + " ~" + EOL
+ " Q250=" + xyzFormat.format(cycle.depth) + " ;" + localize("MATERIAL THICKNESS") + " ~" + EOL
+ " Q251=" + xyzFormat.format(cycle.shift) + " ;" + localize("OFF-CENTER DISTANCE") + " ~" + EOL
+ " Q252=" + xyzFormat.format(0) + " ;" + localize("TOOL EDGE HEIGHT") + " ~" + EOL
+ " Q253=" + "MAX" + " ;" + localize("F PRE-POSITIONING") + " ~" + EOL
+ " Q254=" + feedFormat.format(cycle.feedrate) + " ;" + localize("F COUNTERBORING") + " ~" + EOL
+ " Q255=" + secFormat.format(cycle.dwell) + " ;" + localize("DWELL AT BOTTOM") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q214=" + getDisengagementDirection(cycle.shiftDirection) + " ;" + localize("DISENGAGING DIRECTION") + " ~" + EOL
+ " Q336=" + angleFormat.format(cycle.compensatedShiftOrientation) + " ;" + localize("ANGLE OF SPINDLE")
);
}
function onBoring(cycle) {
writeBlock(gFormat.format(202) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q211=" + secFormat.format(cycle.dwell) + " ;" + localize("DWELL AT BOTTOM") + " ~" + EOL
+ " Q208=" + feedFormat.format(cycle.retractFeedrate) + " ;" + localize("RETRACTION FEED RATE") + " ~" + EOL // retract at feed
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q214=" + 0 + " ;" + localize("DISENGAGING DIRECTION") + " ~" + EOL
+ " Q336=" + angleFormat.format(0) + " ;" + localize("ANGLE OF SPINDLE")
);
}
function onBoreMilling(cycle) {
writeBlock(gFormat.format(208) + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q334=" + pitchFormat.format(cycle.pitch) + " ;" + localize("INFEED DEPTH") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q335=" + xyzFormat.format(cycle.diameter) + " ;" + localize("NOMINAL DIAMETER") + " ~" + EOL
+ " Q342=" + xyzFormat.format(tool.diameter) + " ;" + localize("ROUGHING DIAMETER")
);
}
function onThreadMilling(cycle) {
cycle.numberOfThreads = 1;
writeBlock(gFormat.format(262) + " ~" + EOL
+ " Q335=" + xyzFormat.format(cycle.diameter) + " ;" + localize("NOMINAL DIAMETER") + " ~" + EOL
// + for right-hand and - for left-hand
+ " Q239=" + pitchFormat.format(cycle.threading == "right" ? cycle.pitch : -cycle.pitch) + " ;" + localize("PITCH") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("THREAD DEPTH") + " ~" + EOL
// 0 for threads over entire depth
+ " Q355=" + xyzFormat.format(cycle.numberOfThreads) + " ;" + localize("THREADS PER STEP") + " ~" + EOL
+ " Q253=" + feedFormat.format(cycle.feedrate) + " ;" + localize("F PRE-POSITIONING") + " ~" + EOL
+ " Q351=" + xyzFormat.format(cycle.direction == "climb" ? 1 : -1) + " ;" + localize("CLIMB OR UP-CUT") + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q207=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR MILLING")
);
}
function onCircularPocketMilling(cycle) {
if (tool.taperAngle > 0) {
error(localize("Circular pocket milling is not supported for taper tools."));
return;
}
// do NOT use with undercutting - doesnt move to the center before retracting
writeBlock(gFormat.format(252) + " ~" + EOL
+ " Q215=1 ;" + localize("MACHINE OPERATION") + " ~" + EOL
+ " Q223=" + xyzFormat.format(cycle.diameter) + " ;" + localize("CIRCLE DIAMETER") + " ~" + EOL
+ " Q368=" + xyzFormat.format(0) + " ;" + localize("FINISHING ALLOWANCE FOR SIDE") + " ~" + EOL
+ " Q207=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR MILLING") + " ~" + EOL
+ " Q351=" + xyzFormat.format(cycle.direction == "climb" ? 1 : -1) + " ;" + localize("CLIMB OR UP-CUT") + " ~" + EOL
+ " Q201=" + xyzFormat.format(-cycle.depth) + " ;" + localize("DEPTH") + " ~" + EOL
+ " Q202=" + xyzFormat.format(cycle.incrementalDepth) + " ;" + localize("INFEED DEPTH") + " ~" + EOL
+ " Q369=" + xyzFormat.format(0) + " ;" + localize("FINISHING ALLOWANCE FOR FLOOR") + " ~" + EOL
+ " Q206=" + feedFormat.format(cycle.plungeFeedrate) + " ;" + localize("FEED RATE FOR PLUNGING") + " ~" + EOL
+ " Q338=0 ;" + localize("INFEED FOR FINISHING") + " ~" + EOL
+ " Q200=" + xyzFormat.format(cycle.retract - cycle.stock) + " ;" + localize("SET-UP CLEARANCE") + " ~" + EOL
+ " Q203=" + xyzFormat.format(cycle.stock) + " ;" + localize("SURFACE COORDINATE") + " ~" + EOL
+ " Q204=" + xyzFormat.format(cycle.clearance - cycle.stock) + " ;" + localize("2ND SET-UP CLEARANCE") + " ~" + EOL
+ " Q370=" + ratioFormat.format(cycle.stepover / (tool.diameter / 2)) + " ;" + localize("TOOL PATH OVERLAP") + " ~" + EOL
+ " Q366=" + "0" + " ;" + localize("PLUNGING") + " ~" + EOL
+ " Q385=" + feedFormat.format(cycle.feedrate) + " ;" + localize("FEED RATE FOR FINISHING")
);
}
function setCyclePosition(_position) {
zOutput.format(_position);
}
function onCycle() {
writeBlock(gPlaneModal.format(17));
}
function getCommonCycle(x, y, z, r) {
forceXYZ();
return [xOutput.format(x), yOutput.format(y),
zOutput.format(z),
"R" + xyzFormat.format(r)];
}
function onCyclePoint(x, y, z) {
if (!isSameDirection(getRotation().forward, new Vector(0, 0, 1))) {
expandCyclePoint(x, y, z);
return;
}
var useNewCycles = getProperty("cycleFormat") == "new";
if (isFirstCyclePoint()) {
repositionToCycleClearance(cycle, x, y, z);
// return to initial Z which is clearance plane and set absolute mode
var F = cycle.feedrate;
var P = !cycle.dwell ? 0 : clamp(0.001, cycle.dwell, 99999.999); // in seconds
switch (cycleType) {
case "drilling":
if (useNewCycles) {
onDrilling(cycle);
} else {
writeBlock(
gAbsIncModal.format(90), gFormat.format(83),
"P01 " + xyzFormat.format(cycle.stock - cycle.clearance),
"P02 " + xyzFormat.format(-cycle.depth),
"P03 " + xyzFormat.format(-cycle.depth),
"P04 " + secFormat.format(P),
"P05 " + feedOutput.format(F)
);
writeBlock(xOutput.format(x), yOutput.format(y), mFormat.format(99));
}
break;
case "counter-boring":
if (useNewCycles) {
onCounterBoring(cycle);
} else {
writeBlock(
gAbsIncModal.format(90), gFormat.format(83),
"P01 " + xyzFormat.format(cycle.stock - cycle.clearance),
"P02 " + xyzFormat.format(-cycle.depth),
"P03 " + xyzFormat.format(-cycle.depth),
"P04 " + secFormat.format(P),
"P05 " + feedOutput.format(F)
);
writeBlock(xOutput.format(x), yOutput.format(y), mFormat.format(99));
}
break;
case "chip-breaking":
if (useNewCycles) {
onChipBreaking(cycle);
} else {
if (cycle.accumulatedDepth < cycle.depth) {
expandCyclePoint(x, y, z);
} else {
writeBlock(
gAbsIncModal.format(90), gFormat.format(83),
"P01 " + xyzFormat.format(cycle.stock - cycle.clearance),
"P02 " + xyzFormat.format(-cycle.depth),
"P03 " + xyzFormat.format(cycle.incrementalDepth),
"P04 " + secFormat.format(P),
"P05 " + feedOutput.format(F)
);
writeBlock(xOutput.format(x), yOutput.format(y), mFormat.format(99));
}
}
break;
case "deep-drilling":
if (useNewCycles) {
onDeepDrilling(cycle);
} else {
writeBlock(
gAbsIncModal.format(90), gFormat.format(83),
"P01 " + xyzFormat.format(cycle.stock - cycle.clearance),
"P02 " + xyzFormat.format(-cycle.depth),
"P03 " + xyzFormat.format(cycle.incrementalDepth),
"P04 " + secFormat.format(P),
"P05 " + feedOutput.format(F)
);
writeBlock(xOutput.format(x), yOutput.format(y), mFormat.format(99));
}
break;
case "tapping":
case "left-tapping":
case "right-tapping":
if (useNewCycles) {
onTapping(cycle);
} else {
// cycles calculates feed from spindle speed and pitch
writeBlock(
gAbsIncModal.format(90), gFormat.format(85),
"P01 " + xyzFormat.format(cycle.stock - cycle.clearance),
"P02 " + xyzFormat.format(-cycle.depth),
"P03 " + xyzFormat.format(((tool.type == TOOL_TAP_LEFT_HAND) ? -1 : 1) * tool.threadPitch)
);
writeBlock(xOutput.format(x), yOutput.format(y), mFormat.format(99));
}
break;
case "tapping-with-chip-breaking":
case "left-tapping-with-chip-breaking":
case "right-tapping-with-chip-breaking":
if (useNewCycles) {
onTappingWithChipBreaking(cycle);
} else {
expandCyclePoint(x, y, z);
}
break;
case "fine-boring":
if (useNewCycles) {
onFineBoring(cycle);
} else {
expandCyclePoint(x, y, z);
}
break;
case "back-boring":
if (useNewCycles) {
onBackBoring(cycle);
} else {
expandCyclePoint(x, y, z);
}
break;
case "reaming":
if (useNewCycles) {
onReaming(cycle);
} else {
expandCyclePoint(x, y, z);
}
break;
case "stop-boring":
if (useNewCycles) {
onStopBoring(cycle);
} else {
expandCyclePoint(x, y, z);
}
break;
case "manual-boring":
expandCyclePoint(x, y, z);
break;
case "boring":
if (useNewCycles) {
onBoring(cycle);
} else {
expandCyclePoint(x, y, z);
}
break;
case "bore-milling":
if (!useNewCycles || (cycle.numberOfSteps != undefined && cycle.numberOfSteps > 1)) {
expandCyclePoint(x, y, z);
} else {
onBoreMilling(cycle);
}
break;
case "thread-milling":
if (!useNewCycles || (cycle.numberOfSteps != undefined && cycle.numberOfSteps > 1)) {
expandCyclePoint(x, y, z);
} else {
onThreadMilling(cycle);
}
break;
case "circular-pocket-milling":
if (useNewCycles) {
onCircularPocketMilling(cycle);
break;
} else {
expandCyclePoint(x, y, z);
}
break;
default:
expandCyclePoint(x, y, z);
}
} else {
if (cycleExpanded) {
expandCyclePoint(x, y, z);
} else {
writeBlock(xOutput.format(x), yOutput.format(y), mFormat.format(99));
}
}
}
function onCycleEnd() {
if (!cycleExpanded) {
zOutput.reset();
}
}
var pendingRadiusCompensation = -1;
function onRadiusCompensation() {
pendingRadiusCompensation = radiusCompensation;
}
function onRapid(_x, _y, _z) {
var x = xOutput.format(_x);
var y = yOutput.format(_y);
var z = zOutput.format(_z);
if (x || y || z) {
if (pendingRadiusCompensation >= 0) {
error(localize("Radius compensation mode cannot be changed at rapid traversal."));
}
writeBlock(gMotionModal.format(0), x, y, z);
forceFeed();
}
}
function onLinear(_x, _y, _z, feed) {
var x = xOutput.format(_x);
var y = yOutput.format(_y);
var z = zOutput.format(_z);
var f = getFeed(feed);
if (x || y || z) {
if (pendingRadiusCompensation >= 0) {
pendingRadiusCompensation = -1;
writeBlock(gPlaneModal.format(17));
switch (radiusCompensation) {
case RADIUS_COMPENSATION_LEFT:
writeBlock(gMotionModal.format(1), gFormat.format(41), x, y, z, f);
break;
case RADIUS_COMPENSATION_RIGHT:
writeBlock(gMotionModal.format(1), gFormat.format(42), x, y, z, f);
break;
default:
writeBlock(gMotionModal.format(1), gFormat.format(40), x, y, z, f);
}
} else {
writeBlock(gMotionModal.format(1), x, y, z, f);
}
} else if (f) {
if (getNextRecord().isMotion()) { // try not to output feed without motion
forceFeed(); // force feed on next line
} else {
writeBlock(gMotionModal.format(1), f);
}
}
}
function onRapid5D(_x, _y, _z, _a, _b, _c) {
if (!currentSection.isOptimizedForMachine()) {
error(localize("This post configuration has not been customized for 5-axis simultaneous toolpath."));
return;
}
if (pendingRadiusCompensation >= 0) {
error(localize("Radius compensation mode cannot be changed at rapid traversal."));
return;
}
var x = xOutput.format(_x);
var y = yOutput.format(_y);
var z = zOutput.format(_z);
var a = aOutput.format(_a);
var b = bOutput.format(_b);
var c = cOutput.format(_c);
writeBlock(gMotionModal.format(0), x, y, z, a, b, c);
forceFeed();
}
function onLinear5D(_x, _y, _z, _a, _b, _c, feed) {
if (!currentSection.isOptimizedForMachine()) {
error(localize("This post configuration has not been customized for 5-axis simultaneous toolpath."));
return;
}
if (pendingRadiusCompensation >= 0) {
error(localize("Radius compensation cannot be activated/deactivated for 5-axis move."));
return;
}
var x = xOutput.format(_x);
var y = yOutput.format(_y);
var z = zOutput.format(_z);
var a = aOutput.format(_a);
var b = bOutput.format(_b);
var c = cOutput.format(_c);
var f = getFeed(feed);
if (x || y || z || a || b || c) {
writeBlock(gMotionModal.format(1), x, y, z, a, b, c, f);
} else if (f) {
if (getNextRecord().isMotion()) { // try not to output feed without motion
forceFeed(); // force feed on next line
} else {
writeBlock(gMotionModal.format(1), f);
}
}
}
function onCircular(clockwise, cx, cy, cz, x, y, z, feed) {
if (pendingRadiusCompensation >= 0) {
error(localize("Radius compensation cannot be activated/deactivated for a circular move."));
return;
}
if (isFullCircle()) {
if (getProperty("useRadius") || isHelical()) { // radius mode does not support full arcs
linearize(tolerance);
return;
}
switch (getCircularPlane()) {
case PLANE_XY:
writeBlock(
gAbsIncModal.format(90), iOutput.format(cx), jOutput.format(cy),
gAbsIncModal.format(90), gPlaneModal.format(17), gMotionModal.format(clockwise ? 2 : 3), getFeed(feed)
);
break;
case PLANE_ZX:
writeBlock(
gAbsIncModal.format(90), iOutput.format(cx), kOutput.format(cz),
gAbsIncModal.format(90), gPlaneModal.format(18), gMotionModal.format(clockwise ? 2 : 3), getFeed(feed)
);
break;
case PLANE_YZ:
writeBlock(
gAbsIncModal.format(90), jOutput.format(cy), kOutput.format(cz),
gAbsIncModal.format(90), gPlaneModal.format(19), gMotionModal.format(clockwise ? 2 : 3), getFeed(feed)
);
break;
default:
linearize(tolerance);
}
} else if (!getProperty("useRadius")) {
switch (getCircularPlane()) {
case PLANE_XY:
writeBlock(
gAbsIncModal.format(90), iOutput.format(cx), jOutput.format(cy),
gAbsIncModal.format(90), gPlaneModal.format(17), gMotionModal.format(clockwise ? 2 : 3), xOutput.format(x), yOutput.format(y), zOutput.format(z), getFeed(feed)
);
break;
case PLANE_ZX:
writeBlock(
iOutput.format(cx), kOutput.format(cz),
gAbsIncModal.format(90), gPlaneModal.format(18), gMotionModal.format(clockwise ? 2 : 3), xOutput.format(x), yOutput.format(y), zOutput.format(z), getFeed(feed)
);
break;
case PLANE_YZ:
writeBlock(
jOutput.format(cy), kOutput.format(cz),
gAbsIncModal.format(90), gPlaneModal.format(19), gMotionModal.format(clockwise ? 2 : 3), xOutput.format(x), yOutput.format(y), zOutput.format(z), getFeed(feed)
);
break;
default:
linearize(tolerance);
}
} else { // use radius mode
var r = getCircularRadius();
if (toDeg(getCircularSweep()) > (180 + 1e-9)) {
r = -r; // allow up to <360 deg arcs
}
switch (getCircularPlane()) {
case PLANE_XY:
writeBlock(
gPlaneModal.format(17), gMotionModal.format(clockwise ? 2 : 3), xOutput.format(x), yOutput.format(y), zOutput.format(z), "R" + rFormat.format(r), getFeed(feed)
);
break;
case PLANE_ZX:
writeBlock(
gPlaneModal.format(18), gMotionModal.format(clockwise ? 2 : 3), xOutput.format(x), yOutput.format(y), zOutput.format(z), "R" + rFormat.format(r), getFeed(feed)
);
break;
case PLANE_YZ:
writeBlock(
gPlaneModal.format(19), gMotionModal.format(clockwise ? 2 : 3), xOutput.format(x), yOutput.format(y), zOutput.format(z), "R" + rFormat.format(r), getFeed(feed)
);
break;
default:
linearize(tolerance);
}
}
}
var currentCoolantMode = COOLANT_OFF;
var coolantOff = undefined;
var forceCoolant = false;
function setCoolant(coolant) {
var coolantCodes = getCoolantCodes(coolant);
if (Array.isArray(coolantCodes)) {
if (singleLineCoolant) {
writeBlock(coolantCodes.join(getWordSeparator()));
} else {
for (var c in coolantCodes) {
writeBlock(coolantCodes[c]);
}
}
return undefined;
}
return coolantCodes;
}
function getCoolantCodes(coolant) {
var multipleCoolantBlocks = new Array(); // create a formatted array to be passed into the outputted line
if (!coolants) {
error(localize("Coolants have not been defined."));
}
if (tool.type == TOOL_PROBE) { // avoid coolant output for probing
coolant = COOLANT_OFF;
}
if (coolant == currentCoolantMode && (!forceCoolant || coolant == COOLANT_OFF)) {
return undefined; // coolant is already active
}
if ((coolant != COOLANT_OFF) && (currentCoolantMode != COOLANT_OFF) && (coolantOff != undefined) && !forceCoolant) {
if (Array.isArray(coolantOff)) {
for (var i in coolantOff) {
multipleCoolantBlocks.push(coolantOff[i]);
}
} else {
multipleCoolantBlocks.push(coolantOff);
}
}
forceCoolant = false;
var m;
var coolantCodes = {};
for (var c in coolants) { // find required coolant codes into the coolants array
if (coolants[c].id == coolant) {
coolantCodes.on = coolants[c].on;
if (coolants[c].off != undefined) {
coolantCodes.off = coolants[c].off;
break;
} else {
for (var i in coolants) {
if (coolants[i].id == COOLANT_OFF) {
coolantCodes.off = coolants[i].off;
break;
}
}
}
}
}
if (coolant == COOLANT_OFF) {
m = !coolantOff ? coolantCodes.off : coolantOff; // use the default coolant off command when an 'off' value is not specified
} else {
coolantOff = coolantCodes.off;
m = coolantCodes.on;
}
if (!m) {
onUnsupportedCoolant(coolant);
m = 9;
} else {
if (Array.isArray(m)) {
for (var i in m) {
multipleCoolantBlocks.push(m[i]);
}
} else {
multipleCoolantBlocks.push(m);
}
currentCoolantMode = coolant;
for (var i in multipleCoolantBlocks) {
if (typeof multipleCoolantBlocks[i] == "number") {
multipleCoolantBlocks[i] = mFormat.format(multipleCoolantBlocks[i]);
}
}
return multipleCoolantBlocks; // return the single formatted coolant value
}
return undefined;
}
var mapCommand = {
COMMAND_END : 2,
COMMAND_SPINDLE_CLOCKWISE : 3,
COMMAND_SPINDLE_COUNTERCLOCKWISE: 4,
COMMAND_STOP_SPINDLE : 5,
COMMAND_ORIENTATE_SPINDLE : 19,
COMMAND_LOAD_TOOL : 6
};
function onCommand(command) {
switch (command) {
case COMMAND_STOP:
writeBlock(mFormat.format(0));
forceSpindleSpeed = true;
forceCoolant = true;
return;
case COMMAND_OPTIONAL_STOP:
writeBlock(mFormat.format(1));
forceSpindleSpeed = true;
forceCoolant = true;
return;
case COMMAND_COOLANT_ON:
setCoolant(COOLANT_FLOOD);
return;
case COMMAND_COOLANT_OFF:
setCoolant(COOLANT_OFF);
return;
case COMMAND_START_SPINDLE:
onCommand(tool.clockwise ? COMMAND_SPINDLE_CLOCKWISE : COMMAND_SPINDLE_COUNTERCLOCKWISE);
return;
case COMMAND_LOCK_MULTI_AXIS:
return;
case COMMAND_UNLOCK_MULTI_AXIS:
return;
case COMMAND_BREAK_CONTROL:
return;
case COMMAND_TOOL_MEASURE:
return;
}
var stringId = getCommandStringId(command);
var mcode = mapCommand[stringId];
if (mcode != undefined) {
writeBlock(mFormat.format(mcode));
} else {
onUnsupportedCommand(command);
}
}
function onSectionEnd() {
writeBlock(gPlaneModal.format(17));
if (!isLastSection() && (getNextSection().getTool().coolant != tool.coolant)) {
setCoolant(COOLANT_OFF);
}
// the code below gets the machine angles from previous operation. closestABC must also be set to true
if (currentSection.isMultiAxis() && currentSection.isOptimizedForMachine()) {
currentMachineABC = currentSection.getFinalToolAxisABC();
}
forceAny();
}
/** Output block to do safe retract and/or move to home position. */
function writeRetract() {
var words = []; // store all retracted axes in an array
var retractAxes = new Array(false, false, false);
var method = getProperty("safePositionMethod");
if (method == "clearanceHeight") {
if (!is3D()) {
error(localize("Safe retract option 'Clearance Height' is only supported when all operations are along the setup Z-axis."));
}
return;
}
validate(arguments.length != 0, "No axis specified for writeRetract().");
for (i in arguments) {
retractAxes[arguments[i]] = true;
}
if ((retractAxes[0] || retractAxes[1]) && !retracted) { // retract Z first before moving to X/Y home
error(localize("Retracting in X/Y is not possible without being retracted in Z."));
return;
}
// special conditions
/*
if (retractAxes[2]) { // Z doesn't use G53
method = "G28";
}
*/
// define home positions
var _xHome;
var _yHome;
var _zHome;
if (false && method == "G28") { // always use machine home positions
_xHome = toPreciseUnit(0, MM);
_yHome = toPreciseUnit(0, MM);
_zHome = toPreciseUnit(0, MM);
} else {
_xHome = machineConfiguration.hasHomePositionX() ? machineConfiguration.getHomePositionX() : toPreciseUnit(0, MM);
_yHome = machineConfiguration.hasHomePositionY() ? machineConfiguration.getHomePositionY() : toPreciseUnit(0, MM);
_zHome = machineConfiguration.getRetractPlane() != 0 ? machineConfiguration.getRetractPlane() : toPreciseUnit(0, MM);
}
for (var i = 0; i < arguments.length; ++i) {
switch (arguments[i]) {
case X:
words.push("X" + xyzFormat.format(_xHome));
xOutput.reset();
break;
case Y:
words.push("Y" + xyzFormat.format(_yHome));
yOutput.reset();
break;
case Z:
if (getProperty("useM140")) {
gMotionModal.reset();
validate((arguments.length <= 1), "Retracts for the Z-axis have to be specified separately by using the useM140 property.");
writeBlock(gMotionModal.format(0), gFormat.format(40), mFormat.format(140), "MB MAX");
zOutput.reset();
retracted = true;
return;
} else {
words.push("Z" + xyzFormat.format(_zHome));
zOutput.reset();
retracted = true;
break;
}
default:
error(localize("Unsupported axis specified for writeRetract()."));
return;
}
}
if (words.length > 0) {
switch (method) {
case "M91":
case "M92":
gMotionModal.reset();
writeBlock(gMotionModal.format(0), gFormat.format(40), gAbsIncModal.format(90), words.join(getWordSeparator()) + SP + mFormat.format(method == "M92" ? 92 : 91));
break;
default:
error(localize("Unsupported safe position method."));
return;
}
}
}
function onClose() {
onCommand(COMMAND_COOLANT_OFF);
writeRetract(Z);
if (getProperty("useParkPosition")) {
writeRetract(X, Y);
}
setWorkPlane(new Vector(0, 0, 0)); // reset working plane
onImpliedCommand(COMMAND_END);
onImpliedCommand(COMMAND_STOP_SPINDLE);
writeBlock(mFormat.format(30)); // stop program, spindle stop, coolant off
writeln(
"N99999999 %" + programName + " " + gUnitModal.format((unit == MM) ? 71 : 70)
);
}
function setProperty(property, value) {
properties[property].current = value;
}