fix pocket
This commit is contained in:
parent
e13c1e7430
commit
83a4bdebfd
7 changed files with 128 additions and 122 deletions
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@ -422,7 +422,7 @@ func.traceAdd = (ev) => {
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CAM.traces((ids) => {
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api.hide.alert(alert);
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alert = api.show.alert("[esc] cancels trace editing");
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kiri.api.widgets.for(widget => {
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api.widgets.for(widget => {
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if (ids.indexOf(widget.id) >= 0) {
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unselectTraces(widget, true);
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widget.trace_stack = null;
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@ -454,7 +454,7 @@ func.traceAdd = (ev) => {
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});
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});
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// ensure appropriate traces are toggled matching current record
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kiri.api.widgets.for(widget => {
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api.widgets.for(widget => {
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widget.setVisualState({ opacity: 0.25 });
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let areas = (poppedRec.areas[widget.id] || []);
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let stack = widget.trace_stack;
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@ -480,11 +480,11 @@ func.traceDone = () => {
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func.unpop();
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traceOn.classList.remove("editing");
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traceOn = false;
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kiri.api.widgets.opacity(1);
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api.widgets.opacity(1);
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api.hide.alert(alert);
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api.feature.hover = false;
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api.feature.hoverAdds = false;
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kiri.api.widgets.for(widget => {
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api.widgets.for(widget => {
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widget.restoreVisualState();
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if (widget.trace_stack) {
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widget.trace_stack.hide();
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@ -595,7 +595,7 @@ func.selectHoles = async function(individual){
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func.hover = func.selectHolesHover;
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func.hoverUp = func.selectHolesHoverUp;
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const widgets = kiri.api.widgets.all()
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const widgets = api.widgets.all()
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/**
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* creates a mesh for a hole and adds it to a widget
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* @param {Object3D} widget - widget to add the hole mesh to
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@ -623,7 +623,7 @@ func.selectHoles = async function(individual){
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if( individual && meshesCached ){ // if any widget already has cached holes
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// console.log("already has cached holes",poppedRec.drills)
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api.hide.alert(alert)
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kiri.api.widgets.for(widget => {
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api.widgets.for(widget => {
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if(widget.adds){
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let drills = poppedRec.drills[widget.id]
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let ids = drills
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@ -665,7 +665,7 @@ func.selectHoles = async function(individual){
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}
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centers = centers ?? []
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// list of all hole centers and if they are selected
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kiri.api.widgets.for(widget => {
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api.widgets.for(widget => {
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const {holes} = centers.find(center=>center.id == widget.id)
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// console.log(holes)
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if (!holes.length) unselectHoles(holes);
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@ -689,7 +689,7 @@ func.selectHoles = async function(individual){
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setTimeout(() => {
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api.hide.alert(escAlert);
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}, 5000);
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kiri.api.widgets.opacity(0.8);
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api.widgets.opacity(0.8);
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}
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func.selectHolesHover = function(data) {
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@ -751,12 +751,12 @@ func.selectHolesDone = () => {
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func.unpop();
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holeSelOn.classList.remove("editing");
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holeSelOn = false;
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kiri.api.widgets.opacity(1);
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api.widgets.opacity(1);
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api.hide.alert(alert);
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api.feature.hover = false;
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api.feature.hoverAdds = false;
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kiri.api.widgets.for(widget => {
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api.widgets.for(widget => {
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for(let add of widget.adds){
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add.visible = false
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widget.mesh.remove(add);
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@ -1,20 +1,21 @@
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/** Copyright Stewart Allen <sa@grid.space> -- All Rights Reserved */
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import { codec } from '../../kiri/codec.js';
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import { cam_slice } from './slice.js';
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import { cam_slice, holes, traces } from './slice.js';
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import { cam_prepare } from './prepare.js';
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import { cam_export } from './export.js';
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import { tool as mesh_tool } from '../../mesh/tool.js';
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function surface_prep(widget, index) {
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if (!widget.tool) {
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let tool = widget.tool = new mesh.tool();
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let tool = widget.tool = new mesh_tool();
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let translate = index ? true : false;
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tool.index(widget.getGeoVertices({ unroll: true, translate }));
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}
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};
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function surface_find(widget, faces, radians) {
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CAM.surface_prep(widget);
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surface_prep(widget);
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return widget.tool.findConnectedSurface(faces, radians || 0, 0.0);
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};
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@ -38,7 +39,7 @@ function init(worker) {
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worker.cam_surface_find = function(data, send) {
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const { id, face, radians } = data;
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const widget = worker.cache[id];
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const faces = CAM.surface_find(widget, [face], radians);
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const faces = surface_find(widget, [face], radians);
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send.done(faces);
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}
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@ -47,11 +48,11 @@ function init(worker) {
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const widgets = Object.values(worker.cache);
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const fresh = [];
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for (let widget of widgets) {
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if (await CAM.traces(settings, widget, single)) {
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if (await traces(settings, widget, single)) {
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fresh.push(widget);
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}
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}
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// const fresh = widgets.filter(widget => CAM.traces(settings, widget, single));
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// const fresh = widgets.filter(widget => traces(settings, widget, single));
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send.done(codec.encode(fresh.map(widget => { return {
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id: widget.id,
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traces: widget.traces,
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@ -72,7 +73,7 @@ function init(worker) {
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const fresh = [];
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for (let [i,widget] of widgets.entries() ) {
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if (await CAM.holes(settings, widget, indiv, rec,
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if (await holes(settings, widget, indiv, rec,
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( prog, msg )=>{ send.data({progress: (i/widgets.length)+(prog/widgets.length),msg})}
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)){
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fresh.push(widget);
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@ -1,5 +1,7 @@
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/** Copyright Stewart Allen <sa@grid.space> -- All Rights Reserved */
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import { CAM } from './driver-be.js';
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import { util as base_util } from '../../geo/base.js';
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import { Tool } from './tool.js';
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import { newPoint } from '../../geo/point.js';
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import { newPolygon } from '../../geo/polygon.js';
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@ -399,7 +401,7 @@ class OpRough extends CamOp {
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let last = slices[slices.length-1];
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if (workarea.bottom_z < 0)
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for (let zneg of base.util.lerp(0, -workarea.bottom_cut, op.down)) {
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for (let zneg of base_util.lerp(0, -workarea.bottom_cut, op.down)) {
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if (!last) continue;
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let add = last.clone(true);
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add.z -= zneg;
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@ -554,7 +556,7 @@ class OpOutline extends CamOp {
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// extend cut thru (only when z bottom is 0)
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if (workarea.bottom_z < 0) {
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let last = slices[slices.length-1];
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for (let zneg of base.util.lerp(0, -workarea.bottom_cut, op.down)) {
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for (let zneg of base_util.lerp(0, -workarea.bottom_cut, op.down)) {
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if (!last) continue;
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let add = last.clone(true);
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add.tops.forEach(top => top.poly.setZ(add.z));
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@ -1046,7 +1048,7 @@ class OpTrace extends CamOp {
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let diff = zTop - z;
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down = diff / Math.ceil(diff / down);
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}
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let zs = down ? base.util.lerp(zTop, z, down) : [ z ];
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let zs = down ? base_util.lerp(zTop, z, down) : [ z ];
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let zpro = 0, zinc = 1 / (polys.length * zs.length);
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for (let poly of polys) {
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// newPocket();
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@ -1178,7 +1180,7 @@ class OpTrace extends CamOp {
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if (zThru && similar(zto,0)) {
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zto -= zThru;
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}
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for (let z of base.util.lerp(zTop, zto, down)) {
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for (let z of base_util.lerp(zTop, zto, down)) {
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output.push(pi.clone().setZ(z));
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}
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} else {
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@ -1297,7 +1299,7 @@ class OpPocket extends CamOp {
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let diff = zTop - z;
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down = diff / Math.ceil(diff / down);
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}
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let zs = down ? base.util.lerp(zTop, z, down) : [ z ];
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let zs = down ? base_util.lerp(zTop, z, down) : [ z ];
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if (engrave) {
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toolDiam = toolOver;
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}
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@ -1373,7 +1375,7 @@ class OpPocket extends CamOp {
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let vert = widget.getGeoVertices({ unroll: true, translate: true }).map(v => v.round(4));
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// let vert = widget.getVertices().array.map(v => v.round(4));
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let outline = [];
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let faces = surface_find(widget, surfaces, (op.follow || 5) * DEG2RAG);
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let faces = CAM.surface_find(widget, surfaces, (op.follow || 5) * DEG2RAG);
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let zmin = Infinity;
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let j=0, k=faces.length;
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for (let face of faces) {
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@ -1647,7 +1649,7 @@ class OpRegister extends CamOp {
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tv = -tv;
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}
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}
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for (let z of base.util.lerp(z1, z2, op.down)) {
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for (let z of base_util.lerp(z1, z2, op.down)) {
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let slice = newSlice(z);
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addSlices(slice);
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sliceOut.push(slice);
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@ -1845,95 +1847,6 @@ class OpShadow extends CamOp {
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}
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}
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// union triangles > z (opt cap < ztop) into polygon(s)
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export function shadowAt(widget, z, ztop) {
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const geo = widget.cache.geo;
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const length = geo.length;
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// cache faces with normals up
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if (!widget.cache.shadow) {
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const faces = [];
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for (let i=0, ip=0; i<length; i += 3) {
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const a = new THREE.Vector3(geo[ip++], geo[ip++], geo[ip++]);
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const b = new THREE.Vector3(geo[ip++], geo[ip++], geo[ip++]);
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const c = new THREE.Vector3(geo[ip++], geo[ip++], geo[ip++]);
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const n = THREE.computeFaceNormal(a,b,c);
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if (n.z > 0.001) {
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faces.push(a,b,c);
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// faces.push(newPoint(...a), newPoint(...b), newPoint(...c));
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}
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}
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widget.cache.shadow = faces;
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}
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const found = [];
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const faces = widget.cache.shadow;
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const { checkOverUnderOn, intersectPoints } = self.kiri.cam_slicer;
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for (let i=0; i<faces.length; ) {
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const a = faces[i++];
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const b = faces[i++];
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const c = faces[i++];
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let where = undefined;
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if (ztop && a.z > ztop && b.z > ztop && c.z > ztop) {
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// skip faces over top threshold
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continue;
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}
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if (a.z < z && b.z < z && c.z < z) {
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// skip faces under threshold
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continue;
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} else if (a.z > z && b.z > z && c.z > z) {
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found.push([a,b,c]);
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} else {
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// check faces straddling threshold
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const where = { under: [], over: [], on: [] };
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checkOverUnderOn(newPoint(a.x, a.y, a.z), z, where);
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checkOverUnderOn(newPoint(b.x, b.y, b.z), z, where);
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checkOverUnderOn(newPoint(c.x, c.y, c.z), z, where);
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if (where.on.length === 0 && (where.over.length === 2 || where.under.length === 2)) {
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// compute two point intersections and construct line
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let line = intersectPoints(where.over, where.under, z);
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if (line.length === 2) {
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if (where.over.length === 2) {
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found.push([where.over[1], line[0], line[1]]);
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found.push([where.over[0], where.over[1], line[0]]);
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} else {
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found.push([where.over[0], line[0], line[1]]);
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}
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} else {
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console.log({msg: "invalid ips", line: line, where: where});
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}
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}
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}
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}
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// const lines = {};
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// function addline(p1, p2) {
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// let key = p1.key < p2.key ? p1.key + ',' + p2.key : p2.key + ',' + p1.key;
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// let rec = lines[key];
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// if (rec) {
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// rec.count++;
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// } else {
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// lines[key] = { p1, p2, count: 1 };
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// }
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// }
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// for (let face of found) {
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// addline(face[0], face[1]);
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// addline(face[1], face[2]);
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// addline(face[2], face[0]);
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// }
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// const singles = Object.entries(lines).filter(a => a[1].count === 1).map(a => a[1]);
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// const loops = POLY.nest(sliceConnect(singles, z));
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let polys = found.map(a => {
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return newPolygon()
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.add(a[0].x,a[0].y,a[0].z)
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.add(a[1].x,a[1].y,a[1].z)
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.add(a[2].x,a[2].y,a[2].z);
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});
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polys = POLY.union(polys, 0.001, true);
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// console.log({z, loops, polys});
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// return loops;
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return polys;
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};
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export const ops = {
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"xray": OpXRay,
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"shadow": OpShadow,
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@ -212,7 +212,7 @@ export async function cam_slice(settings, widget, onupdate, ondone) {
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minZabove = zkey;
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}
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}
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let shadow = shadowAt(widget, z, minZabove);
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let shadow = computeShadowAt(widget, z, minZabove);
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if (minZabove) {
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// const merge = shadow.length;
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// const plus = shadows[minZabove].length;
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@ -737,3 +737,92 @@ function healPolys(noff) {
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}
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return noff;
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}
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// union triangles > z (opt cap < ztop) into polygon(s)
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export function computeShadowAt(widget, z, ztop) {
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const geo = widget.cache.geo;
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const length = geo.length;
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// cache faces with normals up
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if (!widget.cache.shadow) {
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const faces = [];
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for (let i=0, ip=0; i<length; i += 3) {
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const a = new THREE.Vector3(geo[ip++], geo[ip++], geo[ip++]);
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const b = new THREE.Vector3(geo[ip++], geo[ip++], geo[ip++]);
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const c = new THREE.Vector3(geo[ip++], geo[ip++], geo[ip++]);
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const n = THREE.computeFaceNormal(a,b,c);
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if (n.z > 0.001) {
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faces.push(a,b,c);
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// faces.push(newPoint(...a), newPoint(...b), newPoint(...c));
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}
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}
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widget.cache.shadow = faces;
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}
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const found = [];
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const faces = widget.cache.shadow;
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const { checkOverUnderOn, intersectPoints } = cam_slicer;
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for (let i=0; i<faces.length; ) {
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const a = faces[i++];
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const b = faces[i++];
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const c = faces[i++];
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let where = undefined;
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if (ztop && a.z > ztop && b.z > ztop && c.z > ztop) {
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// skip faces over top threshold
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continue;
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}
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if (a.z < z && b.z < z && c.z < z) {
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// skip faces under threshold
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continue;
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} else if (a.z > z && b.z > z && c.z > z) {
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found.push([a,b,c]);
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} else {
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// check faces straddling threshold
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const where = { under: [], over: [], on: [] };
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checkOverUnderOn(newPoint(a.x, a.y, a.z), z, where);
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checkOverUnderOn(newPoint(b.x, b.y, b.z), z, where);
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checkOverUnderOn(newPoint(c.x, c.y, c.z), z, where);
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if (where.on.length === 0 && (where.over.length === 2 || where.under.length === 2)) {
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// compute two point intersections and construct line
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let line = intersectPoints(where.over, where.under, z);
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if (line.length === 2) {
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if (where.over.length === 2) {
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found.push([where.over[1], line[0], line[1]]);
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found.push([where.over[0], where.over[1], line[0]]);
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} else {
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found.push([where.over[0], line[0], line[1]]);
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}
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} else {
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console.log({msg: "invalid ips", line: line, where: where});
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}
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}
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}
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}
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// const lines = {};
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// function addline(p1, p2) {
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// let key = p1.key < p2.key ? p1.key + ',' + p2.key : p2.key + ',' + p1.key;
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// let rec = lines[key];
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// if (rec) {
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// rec.count++;
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// } else {
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// lines[key] = { p1, p2, count: 1 };
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// }
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// }
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// for (let face of found) {
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// addline(face[0], face[1]);
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// addline(face[1], face[2]);
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// addline(face[2], face[0]);
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// }
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// const singles = Object.entries(lines).filter(a => a[1].count === 1).map(a => a[1]);
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// const loops = POLY.nest(sliceConnect(singles, z));
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let polys = found.map(a => {
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return newPolygon()
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.add(a[0].x,a[0].y,a[0].z)
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.add(a[1].x,a[1].y,a[1].z)
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||||
.add(a[2].x,a[2].y,a[2].z);
|
||||
});
|
||||
polys = POLY.union(polys, 0.001, true);
|
||||
// console.log({z, loops, polys});
|
||||
// return loops;
|
||||
return polys;
|
||||
}
|
||||
|
|
|
|||
|
|
@ -2,7 +2,8 @@
|
|||
|
||||
import { base } from '../geo/base.js';
|
||||
import { Layers } from './layers.js';
|
||||
import { Polygon } from '../geo/polygon.js';
|
||||
import { newPoint } from '../geo/point.js';
|
||||
import { Polygon, newPolygon } from '../geo/polygon.js';
|
||||
import { Slice, newSlice, Top, newTop } from './slice.js';
|
||||
import { Widget, newWidget } from './widget.js';
|
||||
|
||||
|
|
@ -192,7 +193,7 @@ function decodePointArray(array) {
|
|||
const points = new Array(length / 3);
|
||||
|
||||
for (let vid=0, pid=0; vid < length; ) {
|
||||
points[pid++] = base.newPoint(array[vid++], array[vid++], array[vid++]);
|
||||
points[pid++] = newPoint(array[vid++], array[vid++], array[vid++]);
|
||||
}
|
||||
|
||||
return points;
|
||||
|
|
@ -207,7 +208,7 @@ function decodePointArray2D(array, z, fn) {
|
|||
for (let vid=0, pid=0; vid < length; ) {
|
||||
points[pid++] = fn ?
|
||||
fn(array[vid++], array[vid++]) :
|
||||
base.newPoint(array[vid++], array[vid++], z);
|
||||
newPoint(array[vid++], array[vid++], z);
|
||||
}
|
||||
|
||||
return points;
|
||||
|
|
@ -334,10 +335,10 @@ registerDecoder(TYPE.POLY, function(v, state) {
|
|||
|
||||
const array = v.array;
|
||||
const length = array.length;
|
||||
const poly = base.newPolygon();
|
||||
const poly = newPolygon();
|
||||
|
||||
for (let vid = 0; vid < length; ) {
|
||||
poly.push(base.newPoint(array[vid++], array[vid++], array[vid++]));
|
||||
poly.push(newPoint(array[vid++], array[vid++], array[vid++]));
|
||||
}
|
||||
|
||||
state.poly[v.id] = poly;
|
||||
|
|
|
|||
|
|
@ -7,6 +7,7 @@ import { base } from '../geo/base.js';
|
|||
import { load } from '../load/file.js';
|
||||
import { space } from '../moto/space.js';
|
||||
import { Widget } from './widget.js';
|
||||
import { Packer } from './pack.js';
|
||||
|
||||
import { COLOR, MODES } from './consts.js';
|
||||
import { THREE } from '../ext/three.js';
|
||||
|
|
@ -708,12 +709,12 @@ function platformLayout() {
|
|||
mp = [sz.x, sz.y],
|
||||
ms = [mp[0] / 2, mp[1] / 2],
|
||||
c = Widget.Groups.blocks().sort(),
|
||||
p = new kiri.Pack(ms[0], ms[1], gap).fit(c);
|
||||
p = new Packer(ms[0], ms[1], gap).fit(c);
|
||||
|
||||
while (!p.packed) {
|
||||
ms[0] *= 1.1;
|
||||
ms[1] *= 1.1;
|
||||
p = new kiri.Pack(ms[0], ms[1], gap).fit(c);
|
||||
p = new Packer(ms[0], ms[1], gap).fit(c);
|
||||
}
|
||||
|
||||
for (i = 0; i < c.length; i++) {
|
||||
|
|
|
|||
|
|
@ -2,6 +2,7 @@
|
|||
|
||||
import { base } from '../geo/base.js';
|
||||
import { verticesToPoints } from '../geo/points.js';
|
||||
import { util as mesh_util } from '../mesh/util.js';
|
||||
|
||||
const { inRange, time } = base.util;
|
||||
const solid_opacity = 1.0;
|
||||
|
|
@ -333,7 +334,7 @@ class Widget {
|
|||
}
|
||||
|
||||
selectFaces(faces) {
|
||||
let groups = mesh.util.facesToGroups(faces || []);
|
||||
let groups = mesh_util.facesToGroups(faces || []);
|
||||
let geo = this.mesh.geometry;
|
||||
geo.clearGroups();
|
||||
for (let group of groups) {
|
||||
|
|
|
|||
Loading…
Reference in a new issue