grid-apps-cmms/js/kiri-conf.js
2020-04-14 15:57:34 -04:00

555 lines
19 KiB
JavaScript

/** Copyright Stewart Allen -- All Rights Reserved */
"use strict";
let gs_kiri_conf = exports;
(function() {
if (!self.kiri) self.kiri = {};
if (self.kiri.conf) return;
let KIRI = self.kiri,
CVER = 185,
clone = Object.clone;
function genID() {
while (true) {
let k = Math.round(Math.random() * 9999999999).toString(36);
if (k.length >= 4 && k.length <= 8) return k;
}
}
// add fields to o(bject) from d(efault) that are missing
// remove fields from o(bject) that don't exist in d(efault)
function fill_cull_once(obj, def) {
if (!obj) return;
// add missing
for (let k in def) {
if (def.hasOwnProperty(k)) {
let okv = obj[k];
if ((okv === undefined || okv === null)) {
// console.log({fill: k});
obj[k] = def[k];
}
}
}
// remove invalid
for (let k in obj) {
if (!def.hasOwnProperty(k)) {
// console.log({cull: k});
delete obj[k];
}
}
}
function fill_cull_many(map, def) {
forValues(map, (obj) => { fill_cull_once(obj, def) });
}
function objectMap(o, fn) {
for (let [key, val] of Object.entries(o)) {
o[key] = fn(val) || val;
}
}
function valueOf(val, dv) {
return typeof(val) !== 'undefined' ? val : dv;
}
function forValues(o, fn) {
Object.values(o).forEach(v => fn(v));
}
function device_v1_to_v2(device) {
if (device && device.filamentSize) {
device.extruders = [{
extFilament: device.filamentSize,
extNozzle: device.nozzleSize,
extSelect: ["T0"],
extOffsetX: 0,
extOffsetY: 0
}];
delete device.filamentSize;
delete device.nozzleSize;
}
}
// convert default filter (from server) into device structure
function device_from_code(code,mode) {
// presence of internal field indicates already converted
if (code.internal >= 0) return code;
let API = KIRI.api,
cmd = code.cmd || {},
set = code.settings || {},
ext = code.extruders;
// currently causes unecessary fills and culls because
// it's not mode and device type sensitive
let device = {
mode: mode || code.mode || '',
internal: 0,
bedHeight: 2.5,
bedWidth: valueOf(set.bed_width, 300),
bedDepth: valueOf(set.bed_depth, 175),
bedRound: valueOf(set.bed_circle, false),
maxHeight: valueOf(set.build_height, 150),
originCenter: valueOf(set.origin_center, false),
extrudeAbs: valueOf(set.extrude_abs, false),
spindleMax: valueOf(set.spindle_max, 0),
gcodeFan: valueOf(cmd.fan_power, ''),
gcodeTrack: valueOf(cmd.progress, ''),
gcodeLayer: valueOf(cmd.layer, []),
gcodePre: valueOf(code.pre, []),
gcodePost: valueOf(code.post, []),
gcodeProc: valueOf(code.proc, ''),
gcodePause: valueOf(code.pause, []),
gcodeDwell: valueOf(code.dwell, []),
gcodeSpindle: valueOf(cmd.spindle, []),
gcodeChange: valueOf(code['tool-change'], []),
gcodeFExt: valueOf(code['file-ext'], 'gcode'),
gcodeSpace: valueOf(code['token-space'], true),
gcodeStrip: valueOf(code['strip-comments'], false),
gcodeLaserOn: valueOf(code['laser-on'], []),
gcodeLaserOff: valueOf(code['laser-off'], []),
extruders: []
};
if (ext) {
// synthesize extruders from new style settings
ext.forEach(rec => {
let e = API.clone(CONF.defaults.fdm.d.extruders[0]);
if (rec.nozzle) e.extNozzle = rec.nozzle;
if (rec.filament) e.extFilament = rec.filament;
if (rec.offset_x) e.extOffsetX = rec.offset_x;
if (rec.offset_y) e.extOffsetY = rec.offset_y;
if (rec.select) e.extSelect = rec.select;
device.extruders.push(e);
});
} else {
// synthesize extruders from old style settings
device.extruders = [API.clone(CONF.defaults.fdm.d.extruders[0])];
device.extruders[0].extNozzle = valueOf(set.nozzle_size, 0.4);
device.extruders[0].extFilament = valueOf(set.filament_diameter, 1.75);
}
return device;
}
// ensure settings structure is up-to-date
function normalize(settings) {
let API = KIRI.api,
defaults = CONF.defaults,
template = CONF.template,
mode = settings.mode.toLowerCase(),
default_dev = defaults[mode].d,
default_pro = defaults[mode].p;
// v1 to v2 changed FDM extruder / nozzle / filament structure
if (settings.ver != CVER) {
// backup settings before upgrade
API.sdb.setItem(`ws-settings-${Date.now()}`, JSON.stringify(settings));
device_v1_to_v2(settings.device);
device_v1_to_v2(settings.cdev.FDM);
objectMap(settings.devices, dev => {
return dev ? device_from_code(dev) : dev;
});
settings.ver = CVER;
}
fill_cull_once(settings, template);
fill_cull_once(settings.device, default_dev);
fill_cull_once(settings.process, default_pro);
fill_cull_once(settings.cdev, template.cdev);
fill_cull_once(settings.cproc, template.cproc);
fill_cull_once(settings.sproc, template.sproc);
fill_cull_once(settings.defaults, template.defaults);
fill_cull_once(settings.cdev.FDM, defaults.fdm.d);
fill_cull_once(settings.cdev.SLA, defaults.sla.d);
fill_cull_once(settings.cdev.CAM, defaults.cam.d);
fill_cull_once(settings.cdev.LASER, defaults.laser.d);
fill_cull_many(settings.sproc.FDM, defaults.fdm.p);
fill_cull_many(settings.sproc.SLA, defaults.sla.p);
fill_cull_many(settings.sproc.CAM, defaults.cam.p);
fill_cull_many(settings.sproc.LASER, defaults.laser.p);
fill_cull_once(settings.controller, template.controller);
return settings;
}
let CONF = KIRI.conf = {
// --------------- helper functions
normalize: normalize,
device_from_code: device_from_code,
// ---------------
MODES: {
FDM: 1, // fused deposition modeling (also FFF)
LASER: 2, // laser cutters
CAM: 3, // 3 axis milling/machining
SLA: 4 // cured resin printers
},
VIEWS: {
ARRANGE: 1,
SLICE: 2,
PREVIEW: 3
},
// --------------- device and process defaults
defaults: {
fdm:{
// device defaults FDM:Device
d:{
mode: "",
internal: 0,
bedWidth: 300,
bedDepth: 175,
bedHeight: 2.5,
bedRound: false,
originCenter: false,
maxHeight: 150,
gcodePre: [],
gcodePost: [],
gcodePause: [],
gcodeProc: "",
gcodeFan: "",
gcodeTrack: "",
gcodeLayer: [],
gcodeFExt: "",
extruders:[{
extFilament: 1.75,
extNozzle: 0.4,
extSelect: ["T0"],
extOffsetX: 0,
extOffsetY: 0
}]
},
// process defaults FDM:Process
p:{
processName: "default",
sliceHeight: 0.25,
sliceShells: 3,
sliceFillAngle: 45,
sliceFillOverlap: 0.3,
sliceFillSparse: 0.5,
sliceFillType: "hex",
sliceSupportEnable: false,
sliceSupportDensity: 0.25,
sliceSupportOffset: 1.0,
sliceSupportGap: 1,
sliceSupportSize: 10,
sliceSupportArea: 1,
sliceSupportExtra: 0,
sliceSupportSpan: 6,
sliceSupportNozzle: 0,
sliceSolidMinArea: 1,
sliceSolidLayers: 3,
sliceBottomLayers: 3,
sliceTopLayers: 3,
firstSliceHeight: 0.25,
firstLayerRate: 30,
firstLayerFillRate: 40,
firstLayerPrintMult: 1.0,
firstLayerNozzleTemp: 0,
firstLayerBedTemp: 0,
outputRaft: false,
outputRaftSpacing: 0.2,
outputTemp: 200,
outputFanMax: 255,
outputBedTemp: 0,
outputFeedrate: 80,
outputFinishrate: 60,
outputSeekrate: 100,
outputShellMult: 1.2,
outputFillMult: 1.2,
outputSparseMult: 1.2,
outputFanLayer: 1,
outputRetractDist: 1.0,
outputRetractSpeed: 40,
outputRetractDwell: 30,
outputBrimCount: 2,
outputBrimOffset: 2,
outputShortPoly: 50.0,
outputMinSpeed: 15.0,
outputCoastDist: 0,
outputWipeDistance: 0,
sliceMinHeight: 0,
detectThinWalls: false,
antiBacklash: 1,
zHopDistance: 0.2,
outputLayerRetract: false,
gcodePause: "",
outputOriginCenter: true,
outputInvertX: false,
outputInvertY: false,
}
},
sla:{
// device defaults SLA:Device
d:{
mode: "",
internal: 0,
bedWidth: 150,
bedDepth: 150,
bedHeight: 2.5,
maxHeight: 150
},
// process defaults SLA:Process
p:{
processName: "default",
slaSlice: 0.05,
slaShell: 1.00,
slaOpenTop: false,
slaOpenBase: false,
slaLayerOn: 8,
slaLayerOff: 1,
slaBaseLayers: 8,
slaBaseOn: 90,
slaPeelDist: 6,
slaPeelLift: 3,
slaPeelDrop: 3
}
},
cam:{
// device defaults CAM:Device
d:{
mode: "",
internal: 0,
bedWidth: 300,
bedDepth: 175,
bedHeight: 2.5,
originCenter: false,
spindleMax: 0,
gcodePre: [],
gcodePost: [],
gcodeFExt: "",
gcodeSpace: true,
gcodeStrip: true,
gcodeDwell: ["G4 P{time}"],
gcodeChange: ["M6 T{tool}"],
gcodeSpindle: ["M3 S{speed}"]
},
// process defaults CAM:Process
p:{
processName: "default",
camFastFeed: 6000,
roughingTool: 1000,
roughingSpindle: 1000,
roughingDown: 2,
roughingOver: 0.5,
roughingSpeed: 1000,
roughingPlunge: 250,
roughingStock: 0,
camPocketOnlyRough: false,
roughingOn: true,
finishingTool: 1000,
finishingSpindle: 1000,
finishingDown: 3,
finishingOver: 0.5,
finishingAngle: 85,
finishingSpeed: 800,
finishingPlunge: 250,
finishingOn: true,
finishingXOn: true,
finishingYOn: true,
finishCurvesOnly: false,
camPocketOnlyFinish: false,
drillTool: 1000,
drillSpindle: 1000,
drillDownSpeed: 250,
drillDown: 5,
drillDwell: 250,
drillLift: 2,
drillingOn: false,
camTabsAngle: 0,
camTabsCount: 4,
camTabsWidth: 5,
camTabsHeight: 5,
camTabsOn: false,
camPocketOnly: false,
camDepthFirst: false,
camEaseDown: false,
camOriginTop: true,
camTolerance: 0.15,
camZTopOffset: 0,
camZBottom: 0,
camZClearance: 1,
camStockX: 0,
camStockY: 0,
camStockZ: 0,
camStockOffset: true,
outputClockwise: false,
outputOriginCenter: true,
outputInvertX: false,
outputInvertY: false
}
},
laser: {
// device defaults Laser:Device
d:{
mode: "",
internal: 0,
bedWidth: 300,
bedDepth: 175,
bedHeight: 2.5,
gcodePre: [],
gcodePost: [],
gcodeFExt: "",
gcodeSpace: true,
gcodeLaserOn: ["M106 S{power}"],
gcodeLaserOff: ["M107"]
},
// process defaults Laser:Process
p:{
processName: "default",
laserOffset: 0.25,
laserSliceHeight: 1,
laserSliceSingle: false,
outputTileSpacing: 1,
outputTileScaling: 1,
outputLaserPower: 100,
outputLaserSpeed: 1000,
outputLaserGroup: true,
outputLaserMerged: false,
outputOriginCenter: true,
outputInvertX: false,
outputInvertY: false
}
}
},
// --------------- settings template
template: {
// CAM only
bounds: {},
origin: {},
stock: {},
tools:[
{
id: 1000,
number: 1,
type: "endmill",
name: "end 1/4",
metric: false,
shaft_diam: 0.25,
shaft_len: 1,
flute_diam: 0.25,
flute_len: 2,
// taper_angle: 70,
taper_tip: 0,
},
{
id: 1001,
number: 2,
type: "endmill",
name: "end 1/8",
metric: false,
shaft_diam: 0.125,
shaft_len: 1,
flute_diam: 0.125,
flute_len: 1.5,
// taper_angle: 70,
taper_tip: 0,
},
{
id: 1002,
number: 3,
type: "endmill",
name: "end 1/16",
metric: false,
shaft_diam: 0.0625,
shaft_len: 1,
flute_diam: 0.0625,
flute_len: 1.5,
// taper_angle: 70,
taper_tip: 0,
}
],
// currently selected device
device:{},
// currently selected process
process:{},
// current process name by mode
cproc:{
FDM: "default",
SLA: "default",
CAM: "default",
LASER: "default"
},
// stored processes by mode
sproc:{
FDM: {},
SLA: {},
CAM: {},
LASER: {}
},
// current device name by mode
filter:{
FDM: "Any.Generic.Marlin",
SLA: "Any.Generic.SLA",
CAM: "Any.Generic.Grbl",
LASER: "Any.Generic.Laser"
},
// stored device by mode
cdev: {
FDM: null,
SLA: null,
CAM: null,
LASER: null
},
// custom devices by name (all modes)
devices:{},
// favorited devices (all modes)
favorites:{},
// map of device to last process setting (name)
devproc: {},
layers:{
layerOutline: true,
layerTrace: true,
layerFacing: true,
layerRough: true,
layerFinish: true,
layerFinishX: true,
layerFinishY: true,
layerDelta: false,
layerSolid: false,
layerSparse: true,
layerFill: true,
layerSupport: true,
layerPrint: false,
layerMoves: false
},
controller:{
view: null,
dark: false,
expert: false,
compact: false,
zoomSpeed: 1.0,
reverseZoom: true,
showOrigin: false,
freeLayout: true,
autoLayout: true,
alignTop: true,
units: "mm"
},
// for passing temporary slice hints (topo currently)
synth: {},
// widget extra info for slicing (extruder mapping)
widget: {},
mode: 'FDM',
id: genID(),
ver: CVER
}
};
let settings = CONF.template;
// seed defaults. will get culled on save
settings.sproc.FDM.default = clone(settings.process);
settings.sproc.SLA.default = clone(settings.process);
settings.sproc.CAM.default = clone(settings.process);
settings.sproc.LASER.default = clone(settings.process);
settings.cdev.FDM = clone(settings.device);
settings.cdev.SLA = clone(settings.device);
settings.cdev.CAM = clone(settings.device);
settings.cdev.LASER = clone(settings.device);
})();