2e7ec81e59
- _drawAngleMeasures(): реальные дуги через биссектрису (midAngle±halfSpread), маркер правого угла квадратом при |angle-90°|<2° - gIncircle(): функция вписанной окружности треугольника - GeoEngine: поддержка constr='foot' (точка), constr='circumcircle'/'incircle' (окружность) в _dependsOn и recompute; cascadeDelete через derived circles - _drawCircle(): обработка derived=true (circumcircle/incircle) — dashed + cx/cy/r - getStats(): исправлена статистика для производных окружностей - constructions учитывает derivedCircles - lab.html: 3 новые кнопки (Основание, Описанная, Вписанная) + хинты Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
1733 lines
65 KiB
JavaScript
1733 lines
65 KiB
JavaScript
/* ═══════════════════════════════════════════════════════════════════════
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geometry.js — Интерактивная планиметрия для LearnSpace
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Phase 1: точки, отрезки, прямые, лучи, окружности, многоугольники
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Phase 2: инструменты построения (середина, биссектрисы, параллельные,
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перпендикуляры, пересечения) + система производных объектов
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═══════════════════════════════════════════════════════════════════════ */
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'use strict';
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/* ── Утилиты ─────────────────────────────────────────────────────────── */
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function gDist(a, b) { return Math.hypot(b.x - a.x, b.y - a.y); }
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function gMid(a, b) { return { x: (a.x+b.x)/2, y: (a.y+b.y)/2 }; }
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function gDot(a, b) { return a.x*b.x + a.y*b.y; }
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function gNorm(v) { const l = Math.hypot(v.x,v.y); return l<1e-12?{x:0,y:0}:{x:v.x/l,y:v.y/l}; }
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function gSub(a, b) { return { x: a.x-b.x, y: a.y-b.y }; }
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function gAdd(a, b) { return { x: a.x+b.x, y: a.y+b.y }; }
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function gScale(v, s) { return { x: v.x*s, y: v.y*s }; }
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/** Проекция точки P на прямую через L1-L2 */
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function gFoot(P, L1, L2) {
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const dx = L2.x-L1.x, dy = L2.y-L1.y;
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const l2 = dx*dx + dy*dy;
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if (l2 < 1e-12) return { x: L1.x, y: L1.y };
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const t = ((P.x-L1.x)*dx + (P.y-L1.y)*dy) / l2;
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return { x: L1.x + t*dx, y: L1.y + t*dy };
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}
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/** Расстояние от точки до прямой через L1-L2 */
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function gDistToLine(P, L1, L2) {
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return gDist(P, gFoot(P, L1, L2));
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}
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/** Расстояние от точки до отрезка L1-L2 */
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function gDistToSegment(P, L1, L2) {
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const dx = L2.x-L1.x, dy = L2.y-L1.y;
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const l2 = dx*dx + dy*dy;
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if (l2 < 1e-12) return gDist(P, L1);
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const t = Math.max(0, Math.min(1, ((P.x-L1.x)*dx+(P.y-L1.y)*dy)/l2));
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return gDist(P, { x: L1.x+t*dx, y: L1.y+t*dy });
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}
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/** Пересечение двух прямых (через A1-A2 и B1-B2) */
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function gIntersectLines(A1, A2, B1, B2) {
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const dx1 = A2.x-A1.x, dy1 = A2.y-A1.y;
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const dx2 = B2.x-B1.x, dy2 = B2.y-B1.y;
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const det = dx1*dy2 - dy1*dx2;
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if (Math.abs(det) < 1e-10) return null;
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const t = ((B1.x-A1.x)*dy2 - (B1.y-A1.y)*dx2) / det;
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return { x: A1.x + t*dx1, y: A1.y + t*dy1 };
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}
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/** Описанная окружность треугольника */
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function gCircumcircle(A, B, C) {
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const D = 2*(A.x*(B.y-C.y) + B.x*(C.y-A.y) + C.x*(A.y-B.y));
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if (Math.abs(D) < 1e-10) return null;
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const a2=A.x*A.x+A.y*A.y, b2=B.x*B.x+B.y*B.y, c2=C.x*C.x+C.y*C.y;
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const cx = (a2*(B.y-C.y)+b2*(C.y-A.y)+c2*(A.y-B.y))/D;
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const cy = (a2*(C.x-B.x)+b2*(A.x-C.x)+c2*(B.x-A.x))/D;
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return { cx, cy, r: gDist({x:cx,y:cy}, A) };
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}
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/** Вписанная окружность треугольника */
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function gIncircle(A, B, C) {
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const a = gDist(B, C), b = gDist(A, C), c = gDist(A, B);
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const s = a + b + c;
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if (s < 1e-12) return null;
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const cx = (a*A.x + b*B.x + c*C.x) / s;
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const cy = (a*A.y + b*B.y + c*C.y) / s;
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const area = gPolygonArea([A, B, C]);
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const r = area / (s / 2);
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return { cx, cy, r };
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}
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/** Угол ABC (в градусах, вершина B) */
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function gAngleDeg(A, B, C) {
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const v1 = gSub(A, B), v2 = gSub(C, B);
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const cos = gDot(v1, v2) / (gDist(A,B) * gDist(C,B));
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return Math.acos(Math.max(-1, Math.min(1, cos))) * 180 / Math.PI;
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}
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/** Площадь многоугольника (формула Гаусса) */
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function gPolygonArea(pts) {
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let area = 0;
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for (let i = 0, n = pts.length; i < n; i++) {
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const j = (i+1)%n;
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area += pts[i].x * pts[j].y - pts[j].x * pts[i].y;
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}
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return Math.abs(area) / 2;
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}
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/* ── Viewport (система координат) ───────────────────────────────────── */
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class GeoViewport {
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constructor() {
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this.cx = 0; // центр в мат. координатах
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this.cy = 0;
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this.scale = 60; // пикселей на единицу
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this.W = 800;
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this.H = 600;
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}
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/** Математические → пиксельные */
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toCanvas(mx, my) {
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return {
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x: this.W/2 + (mx - this.cx) * this.scale,
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y: this.H/2 - (my - this.cy) * this.scale,
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};
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}
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/** Пиксельные → математические */
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toMath(px, py) {
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return {
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x: (px - this.W/2) / this.scale + this.cx,
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y: -((py - this.H/2) / this.scale) + this.cy,
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};
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}
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zoom(factor, px, py) {
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const m = this.toMath(px, py);
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this.scale = Math.max(10, Math.min(400, this.scale * factor));
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// Зафиксировать точку под курсором
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this.cx = m.x - (px - this.W/2) / this.scale;
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this.cy = m.y + (py - this.H/2) / this.scale;
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}
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pan(dpx, dpy) {
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this.cx -= dpx / this.scale;
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this.cy += dpy / this.scale;
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}
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/** Расстояние в пикселях между двумя мат. точками */
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toCanvasDist(md) { return md * this.scale; }
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/** Пиксельное расстояние → мат. единицы */
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toMathDist(pd) { return pd / this.scale; }
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}
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/* ── GeoEngine (хранилище объектов) ─────────────────────────────────── */
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class GeoEngine {
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constructor() {
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this._objects = new Map();
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this._counter = 0;
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}
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_newId() { return 'g' + (++this._counter); }
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add(obj) {
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if (!obj.id) obj.id = this._newId();
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obj.style = obj.style || {};
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this._objects.set(obj.id, obj);
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return obj;
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}
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remove(id) {
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this._objects.delete(id);
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// Удалить объекты, зависящие от этой точки
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for (const [oid, obj] of this._objects) {
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if (this._dependsOn(obj, id)) this._objects.delete(oid);
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}
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}
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_dependsOn(obj, id) {
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switch (obj.type) {
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case 'segment': case 'line': case 'ray':
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return obj.p1Id === id || obj.p2Id === id;
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case 'polygon':
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return obj.pointIds.includes(id);
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case 'circle':
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if (obj.derived) return obj.ptA === id || obj.ptB === id || obj.ptC === id;
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return obj.centerId === id || obj.edgeId === id;
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case 'point':
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if (!obj.derived) return false;
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if (obj.constr === 'midpoint') return obj.srcA === id || obj.srcB === id;
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if (obj.constr === 'intersect') return obj.src1 === id || obj.src2 === id;
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if (obj.constr === 'foot') {
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if (obj.srcPt === id || obj.srcLine === id) return true;
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// Если srcLine — обычная прямая, зависим и от её точек
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const sl = this._objects.get(obj.srcLine);
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return !!(sl && (sl.p1Id === id || sl.p2Id === id));
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}
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return false;
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case 'derived_line':
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switch (obj.constr) {
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case 'perpbisect': return obj.srcA === id || obj.srcB === id;
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case 'anglebisect': return obj.srcA === id || obj.srcVtx === id || obj.srcB === id;
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case 'parallel': case 'perpendicular':
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return obj.srcPt === id || obj.srcDirPt1 === id || obj.srcDirPt2 === id;
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}
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return false;
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}
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return false;
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}
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/* Перевычислить производный объект из его источников */
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recompute(id) {
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const obj = this._objects.get(id);
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if (!obj || !obj.derived) return;
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const _g = oid => this._objects.get(oid);
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if (obj.type === 'point') {
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if (obj.constr === 'midpoint') {
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const a = _g(obj.srcA), b = _g(obj.srcB);
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if (a && b) { obj.x = (a.x+b.x)/2; obj.y = (a.y+b.y)/2; }
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} else if (obj.constr === 'intersect') {
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// Вычислить пересечение двух прямых (линии/отрезки/лучи/derived_line)
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const pts1 = this._twoMathPts(obj.src1);
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const pts2 = this._twoMathPts(obj.src2);
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if (pts1 && pts2) {
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const pt = gIntersectLines(pts1[0], pts1[1], pts2[0], pts2[1]);
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if (pt) { obj.x = pt.x; obj.y = pt.y; obj.valid = true; }
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else obj.valid = false;
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}
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} else if (obj.constr === 'foot') {
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const srcPt = _g(obj.srcPt);
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const sl = _g(obj.srcLine);
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if (!srcPt || !sl) return;
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let L1, L2;
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if (sl.type === 'derived_line') {
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L1 = { x: sl.ptX, y: sl.ptY };
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L2 = { x: sl.ptX + sl.dirX, y: sl.ptY + sl.dirY };
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} else {
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L1 = _g(sl.p1Id); L2 = _g(sl.p2Id);
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}
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if (L1 && L2) {
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const f = gFoot({ x: srcPt.x, y: srcPt.y }, L1, L2);
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obj.x = f.x; obj.y = f.y;
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}
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}
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} else if (obj.type === 'circle' && obj.derived) {
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const pA = _g(obj.ptA), pB = _g(obj.ptB), pC = _g(obj.ptC);
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if (!pA || !pB || !pC) return;
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const A = { x: pA.x, y: pA.y }, B = { x: pB.x, y: pB.y }, C = { x: pC.x, y: pC.y };
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if (obj.constr === 'circumcircle') {
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const cc = gCircumcircle(A, B, C);
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if (cc) { obj.cx = cc.cx; obj.cy = cc.cy; obj.r = cc.r; obj.valid = true; }
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else { obj.valid = false; }
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} else if (obj.constr === 'incircle') {
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const ic = gIncircle(A, B, C);
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if (ic) { obj.cx = ic.cx; obj.cy = ic.cy; obj.r = ic.r; obj.valid = true; }
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else { obj.valid = false; }
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}
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} else if (obj.type === 'derived_line') {
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if (obj.constr === 'perpbisect') {
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const a = _g(obj.srcA), b = _g(obj.srcB);
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if (!a || !b) return;
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obj.ptX = (a.x+b.x)/2; obj.ptY = (a.y+b.y)/2;
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const dx = b.x-a.x, dy = b.y-a.y, len = Math.hypot(dx,dy);
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if (len > 1e-12) { obj.dirX = -dy/len; obj.dirY = dx/len; }
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} else if (obj.constr === 'anglebisect') {
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const a = _g(obj.srcA), vtx = _g(obj.srcVtx), b = _g(obj.srcB);
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if (!a || !vtx || !b) return;
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const va = gNorm({x:a.x-vtx.x, y:a.y-vtx.y});
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const vb = gNorm({x:b.x-vtx.x, y:b.y-vtx.y});
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const bis = gNorm({x:va.x+vb.x, y:va.y+vb.y});
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obj.ptX = vtx.x; obj.ptY = vtx.y;
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obj.dirX = bis.x; obj.dirY = bis.y;
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} else if (obj.constr === 'parallel') {
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const srcPt = _g(obj.srcPt), d1 = _g(obj.srcDirPt1), d2 = _g(obj.srcDirPt2);
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if (!srcPt || !d1 || !d2) return;
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const dx = d2.x-d1.x, dy = d2.y-d1.y, len = Math.hypot(dx,dy);
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if (len < 1e-12) return;
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obj.ptX = srcPt.x; obj.ptY = srcPt.y;
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obj.dirX = dx/len; obj.dirY = dy/len;
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} else if (obj.constr === 'perpendicular') {
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const srcPt = _g(obj.srcPt), d1 = _g(obj.srcDirPt1), d2 = _g(obj.srcDirPt2);
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if (!srcPt || !d1 || !d2) return;
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const dx = d2.x-d1.x, dy = d2.y-d1.y, len = Math.hypot(dx,dy);
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if (len < 1e-12) return;
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obj.ptX = srcPt.x; obj.ptY = srcPt.y;
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obj.dirX = -dy/len; obj.dirY = dx/len;
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}
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}
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}
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/* Возвращает два математических точки на объекте-линии (line/segment/ray/derived_line) */
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_twoMathPts(id) {
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const obj = this._objects.get(id);
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if (!obj) return null;
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if (obj.type === 'derived_line') {
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return [{ x:obj.ptX, y:obj.ptY }, { x:obj.ptX+obj.dirX, y:obj.ptY+obj.dirY }];
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}
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const p1 = this._objects.get(obj.p1Id), p2 = this._objects.get(obj.p2Id);
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if (!p1 || !p2) return null;
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return [{ x:p1.x, y:p1.y }, { x:p2.x, y:p2.y }];
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}
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/* Перевычислить все производные объекты, зависящие от changedId */
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propagateDeps(changedId) {
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for (const obj of this._objects.values()) {
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if (this._dependsOn(obj, changedId)) {
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this.recompute(obj.id);
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// Каскадная цепочка: производная точка может быть источником для других
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if (obj.derived) this.propagateDeps(obj.id);
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}
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}
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}
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get(id) { return this._objects.get(id); }
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has(id) { return this._objects.has(id); }
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all() { return [...this._objects.values()]; }
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byType(t) { return this.all().filter(o => o.type === t); }
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points() { return this.byType('point'); }
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movePoint(id, x, y) {
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const obj = this._objects.get(id);
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if (obj && obj.type === 'point' && !obj.derived && !obj.locked) {
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obj.x = x; obj.y = y;
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this.propagateDeps(id);
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}
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}
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clear() {
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this._objects.clear();
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this._counter = 0;
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}
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serialize() {
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return JSON.stringify([...this._objects.values()]);
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}
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deserialize(json) {
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this._objects.clear();
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const arr = JSON.parse(json);
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for (const obj of arr) this._objects.set(obj.id, obj);
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this._counter = Math.max(...arr.map(o => parseInt(o.id.slice(1))||0), 0);
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}
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}
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/* ══════════════════════════════════════════════════════════════════════
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GeoSim — главный класс интерактивной планиметрии
|
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══════════════════════════════════════════════════════════════════════ */
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class GeoSim {
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constructor(canvas) {
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this.canvas = canvas;
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this.ctx = canvas.getContext('2d');
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this.vp = new GeoViewport();
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this.eng = new GeoEngine();
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/* ── Состояние инструментов ── */
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this.tool = 'select';
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this._pending = []; // промежуточные клики многошаговых инструментов
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this._preview = null; // предпросмотр (курсор при рисовании)
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this._pendingLineRef = null; // первый кликнутый линейный объект для parallel/perp/intersect
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/* ── Состояние drag/pan ── */
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this._drag = null; // { id, offX, offY } — перетаскиваем точку
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this._panning = false;
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this._panLast = null;
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/* ── Snap ── */
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this._snapPt = null; // { x, y } в мат. координатах
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this._snapId = null; // ID точки-снапа
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/* ── Undo/Redo ── */
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this._undoStack = [];
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this._redoStack = [];
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/* ── Опции ── */
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this.showGrid = true;
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this.showAxes = true;
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this.showLabels = true;
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this.showLengths = false;
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this.showAngles = false;
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this.readOnly = false;
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/* ── Выбранный объект ── */
|
|
this._selected = null;
|
|
this._hovered = null;
|
|
|
|
/* ── Callbacks ── */
|
|
this.onUpdate = null; // cb(stats)
|
|
this.onHintChange = null; // cb(tool, phase) — уведомить UI о смене подсказки
|
|
|
|
this._labelCounter = 0;
|
|
this._bindEvents();
|
|
}
|
|
|
|
/* ── Инициализация ─────────────────────────────────────────── */
|
|
fit() {
|
|
const c = this.canvas;
|
|
c.width = c.offsetWidth || c.parentElement?.offsetWidth || 800;
|
|
c.height = c.offsetHeight || c.parentElement?.offsetHeight || 600;
|
|
this.vp.W = c.width;
|
|
this.vp.H = c.height;
|
|
this.render();
|
|
}
|
|
|
|
setTool(name) {
|
|
this.tool = name;
|
|
this._pending = [];
|
|
this._preview = null;
|
|
this._selected = null;
|
|
this._pendingLineRef = null;
|
|
this.canvas.style.cursor = name === 'select' ? 'default' : 'crosshair';
|
|
this.render();
|
|
}
|
|
|
|
setReadOnly(v) {
|
|
this.readOnly = v;
|
|
if (v) { this.setTool('select'); this.canvas.style.cursor = 'default'; }
|
|
}
|
|
|
|
/* ── Следующая буква-метка ─────────────────────────────────── */
|
|
_nextLabel() {
|
|
const used = new Set(this.eng.points().map(p => p.label));
|
|
for (let i = 0; i < 26; i++) {
|
|
const l = String.fromCharCode(65+i);
|
|
if (!used.has(l)) return l;
|
|
}
|
|
return String(++this._labelCounter);
|
|
}
|
|
|
|
/* ══ РЕНДЕР ══════════════════════════════════════════════════ */
|
|
render() {
|
|
const ctx = this.ctx;
|
|
const { W, H } = this.vp;
|
|
if (!W || !H) return;
|
|
|
|
ctx.clearRect(0, 0, W, H);
|
|
this._drawBg(ctx, W, H);
|
|
if (this.showGrid) this._drawGrid(ctx, W, H);
|
|
|
|
// Заливки многоугольников
|
|
for (const obj of this.eng.byType('polygon')) this._drawPolyFill(ctx, obj);
|
|
// Производные прямые (под основными объектами)
|
|
for (const obj of this.eng.byType('derived_line')) this._drawDerivedLine(ctx, obj);
|
|
// Прямые (рисуем до краёв)
|
|
for (const obj of this.eng.byType('line')) this._drawLine(ctx, obj);
|
|
// Лучи
|
|
for (const obj of this.eng.byType('ray')) this._drawRay(ctx, obj);
|
|
// Отрезки
|
|
for (const obj of this.eng.byType('segment')) this._drawSegment(ctx, obj);
|
|
// Стороны многоугольников
|
|
for (const obj of this.eng.byType('polygon')) this._drawPolyStroke(ctx, obj);
|
|
// Окружности
|
|
for (const obj of this.eng.byType('circle')) this._drawCircle(ctx, obj);
|
|
// Измерения
|
|
if (this.showLengths) this._drawLengths(ctx);
|
|
if (this.showAngles) this._drawAngleMeasures(ctx);
|
|
// Точки поверх всего (включая производные)
|
|
for (const obj of this.eng.points()) this._drawPoint(ctx, obj);
|
|
// Предпросмотр строящегося объекта
|
|
this._drawPreview(ctx);
|
|
// Подсветка первого объекта при инструментах построения
|
|
if (this._pendingLineRef) this._drawLineRefHighlight(ctx, this._pendingLineRef);
|
|
// Индикатор снапа
|
|
if (this._snapPt) this._drawSnapIndicator(ctx);
|
|
}
|
|
|
|
_drawBg(ctx, W, H) {
|
|
const bg = ctx.createLinearGradient(0, 0, W, H);
|
|
bg.addColorStop(0, '#0a0718');
|
|
bg.addColorStop(1, '#0e0d22');
|
|
ctx.fillStyle = bg;
|
|
ctx.fillRect(0, 0, W, H);
|
|
}
|
|
|
|
_drawGrid(ctx, W, H) {
|
|
const vp = this.vp;
|
|
// Определяем шаг сетки в мат. единицах (красивые числа)
|
|
const rawStep = 80 / vp.scale; // примерно 80px между линиями
|
|
const exp = Math.floor(Math.log10(rawStep));
|
|
const frac = rawStep / Math.pow(10, exp);
|
|
let step = frac < 1.5 ? 1 : frac < 3.5 ? 2 : frac < 7.5 ? 5 : 10;
|
|
step *= Math.pow(10, exp);
|
|
step = Math.max(0.001, step);
|
|
|
|
const pxStep = step * vp.scale;
|
|
|
|
// Математические границы видимой области
|
|
const mLeft = vp.toMath(0, 0).x;
|
|
const mRight = vp.toMath(W, 0).x;
|
|
const mBot = vp.toMath(0, H).y;
|
|
const mTop = vp.toMath(0, 0).y;
|
|
|
|
const x0 = Math.floor(mLeft / step) * step;
|
|
const y0 = Math.floor(mBot / step) * step;
|
|
|
|
// Подсетка (× 0.2)
|
|
if (pxStep > 30) {
|
|
ctx.strokeStyle = 'rgba(255,255,255,0.025)';
|
|
ctx.lineWidth = 0.5;
|
|
const sub = step / 5;
|
|
for (let mx = Math.floor(mLeft/sub)*sub; mx <= mRight+sub; mx += sub) {
|
|
const px = vp.toCanvas(mx, 0).x;
|
|
ctx.beginPath(); ctx.moveTo(px, 0); ctx.lineTo(px, H); ctx.stroke();
|
|
}
|
|
for (let my = Math.floor(mBot/sub)*sub; my <= mTop+sub; my += sub) {
|
|
const py = vp.toCanvas(0, my).y;
|
|
ctx.beginPath(); ctx.moveTo(0, py); ctx.lineTo(W, py); ctx.stroke();
|
|
}
|
|
}
|
|
|
|
// Основная сетка
|
|
ctx.strokeStyle = 'rgba(255,255,255,0.07)';
|
|
ctx.lineWidth = 1;
|
|
for (let mx = x0; mx <= mRight + step; mx += step) {
|
|
const px = vp.toCanvas(mx, 0).x;
|
|
ctx.beginPath(); ctx.moveTo(px, 0); ctx.lineTo(px, H); ctx.stroke();
|
|
}
|
|
for (let my = y0; my <= mTop + step; my += step) {
|
|
const py = vp.toCanvas(0, my).y;
|
|
ctx.beginPath(); ctx.moveTo(0, py); ctx.lineTo(W, py); ctx.stroke();
|
|
}
|
|
|
|
if (!this.showAxes) return;
|
|
|
|
// Оси
|
|
ctx.strokeStyle = 'rgba(255,255,255,0.18)';
|
|
ctx.lineWidth = 1.5;
|
|
const ox = vp.toCanvas(0, 0).x, oy = vp.toCanvas(0, 0).y;
|
|
if (ox >= 0 && ox <= W) {
|
|
ctx.beginPath(); ctx.moveTo(ox, 0); ctx.lineTo(ox, H); ctx.stroke();
|
|
}
|
|
if (oy >= 0 && oy <= H) {
|
|
ctx.beginPath(); ctx.moveTo(0, oy); ctx.lineTo(W, oy); ctx.stroke();
|
|
}
|
|
|
|
// Подписи осей
|
|
ctx.fillStyle = 'rgba(255,255,255,0.25)';
|
|
ctx.font = '11px Manrope,sans-serif';
|
|
ctx.textAlign = 'center';
|
|
|
|
// Подписи по X
|
|
for (let mx = x0; mx <= mRight + step; mx += step) {
|
|
if (Math.abs(mx) < step*0.01) continue;
|
|
const px = vp.toCanvas(mx, 0).x;
|
|
const py = Math.min(H-10, Math.max(14, oy + 14));
|
|
ctx.fillText(String(Math.round(mx*1000)/1000), px, py);
|
|
}
|
|
// Подписи по Y
|
|
ctx.textAlign = 'right';
|
|
for (let my = y0; my <= mTop + step; my += step) {
|
|
if (Math.abs(my) < step*0.01) continue;
|
|
const py = vp.toCanvas(0, my).y;
|
|
const px = Math.max(24, Math.min(W-4, ox - 6));
|
|
ctx.fillText(String(Math.round(my*1000)/1000), px, py + 4);
|
|
}
|
|
|
|
// Стрелки на концах осей
|
|
ctx.fillStyle = 'rgba(255,255,255,0.25)';
|
|
if (ox >= 0 && ox <= W) {
|
|
ctx.beginPath(); ctx.moveTo(ox,4); ctx.lineTo(ox-4,14); ctx.lineTo(ox+4,14); ctx.closePath(); ctx.fill();
|
|
}
|
|
if (oy >= 0 && oy <= H) {
|
|
ctx.beginPath(); ctx.moveTo(W-4,oy); ctx.lineTo(W-14,oy-4); ctx.lineTo(W-14,oy+4); ctx.closePath(); ctx.fill();
|
|
}
|
|
ctx.fillStyle = 'rgba(255,255,255,0.3)';
|
|
ctx.font = 'italic 13px serif';
|
|
ctx.textAlign = 'left';
|
|
if (oy > 4 && oy < H) ctx.fillText('y', ox+6, 14);
|
|
if (ox > 0 && ox < W) ctx.fillText('x', W-14, oy-6);
|
|
}
|
|
|
|
/* ── Отрисовка объектов ──────────────────────────────────────── */
|
|
_p(id) {
|
|
const o = this.eng.get(id);
|
|
return o ? this.vp.toCanvas(o.x, o.y) : null;
|
|
}
|
|
|
|
_mpt(id) {
|
|
const o = this.eng.get(id);
|
|
return o ? { x: o.x, y: o.y } : null;
|
|
}
|
|
|
|
_lineColor(obj) {
|
|
return obj.style?.color || this._catColor(obj._cat || 'default');
|
|
}
|
|
|
|
_catColor(cat) {
|
|
const MAP = {
|
|
segment: '#9B5DE5', line: '#06D6E0', ray: '#F15BB5',
|
|
circle: '#FFB347', polygon: '#22d55e', default: '#9B5DE5',
|
|
};
|
|
return MAP[cat] || MAP.default;
|
|
}
|
|
|
|
_isSelected(obj) { return this._selected?.id === obj.id; }
|
|
_isHovered(obj) { return this._hovered?.id === obj.id; }
|
|
|
|
_drawPoint(ctx, obj) {
|
|
const { x: px, y: py } = this.vp.toCanvas(obj.x, obj.y);
|
|
const sel = this._isSelected(obj);
|
|
const hov = this._isHovered(obj);
|
|
// Производные точки рисуем иначе (меньше, другой цвет, пунктирный ободок)
|
|
const isDerived = !!obj.derived;
|
|
const col = obj.style?.color || (isDerived ? '#22d55e' : '#fff');
|
|
const r = isDerived ? 4 : (obj.style?.size || 5);
|
|
|
|
if (sel || hov) {
|
|
ctx.save();
|
|
ctx.shadowColor = col; ctx.shadowBlur = 16;
|
|
ctx.strokeStyle = col; ctx.lineWidth = 1.5;
|
|
if (isDerived) ctx.setLineDash([3,3]);
|
|
ctx.beginPath(); ctx.arc(px, py, r+5, 0, Math.PI*2); ctx.stroke();
|
|
ctx.restore();
|
|
}
|
|
|
|
ctx.save();
|
|
ctx.shadowColor = col; ctx.shadowBlur = 8;
|
|
if (isDerived) {
|
|
// Производные точки: только контур + центр
|
|
ctx.globalAlpha = 0.85;
|
|
ctx.strokeStyle = col; ctx.lineWidth = 1.5;
|
|
ctx.beginPath(); ctx.arc(px, py, r, 0, Math.PI*2); ctx.stroke();
|
|
ctx.fillStyle = col; ctx.globalAlpha = 0.5;
|
|
ctx.beginPath(); ctx.arc(px, py, r*0.5, 0, Math.PI*2); ctx.fill();
|
|
} else {
|
|
ctx.fillStyle = col;
|
|
ctx.beginPath(); ctx.arc(px, py, r, 0, Math.PI*2); ctx.fill();
|
|
ctx.shadowBlur = 0;
|
|
ctx.fillStyle = 'rgba(255,255,255,0.6)';
|
|
ctx.beginPath(); ctx.arc(px, py, r*0.38, 0, Math.PI*2); ctx.fill();
|
|
}
|
|
ctx.restore();
|
|
|
|
if (this.showLabels && obj.label) {
|
|
ctx.save();
|
|
ctx.font = isDerived ? '12px Manrope,sans-serif' : 'bold 14px Manrope,sans-serif';
|
|
ctx.fillStyle = isDerived ? col : '#fff';
|
|
ctx.globalAlpha = isDerived ? 0.85 : 1;
|
|
ctx.shadowColor = 'rgba(0,0,0,0.8)';
|
|
ctx.shadowBlur = 4;
|
|
ctx.fillText(obj.label, px+9, py-9);
|
|
ctx.restore();
|
|
}
|
|
}
|
|
|
|
_drawSegment(ctx, obj) {
|
|
const p1 = this._p(obj.p1Id), p2 = this._p(obj.p2Id);
|
|
if (!p1 || !p2) return;
|
|
const col = obj.style?.color || '#9B5DE5';
|
|
const sel = this._isSelected(obj);
|
|
ctx.save();
|
|
ctx.strokeStyle = col;
|
|
ctx.lineWidth = obj.style?.width || (sel ? 2.5 : 2);
|
|
ctx.shadowColor = col; ctx.shadowBlur = sel ? 10 : 4;
|
|
if (obj.style?.dash) ctx.setLineDash(obj.style.dash);
|
|
ctx.beginPath(); ctx.moveTo(p1.x, p1.y); ctx.lineTo(p2.x, p2.y); ctx.stroke();
|
|
ctx.restore();
|
|
if (this.showLabels && obj.label) this._drawObjLabel(ctx, obj.label, {x:(p1.x+p2.x)/2, y:(p1.y+p2.y)/2}, col);
|
|
}
|
|
|
|
_drawLine(ctx, obj) {
|
|
const m1 = this._mpt(obj.p1Id), m2 = this._mpt(obj.p2Id);
|
|
if (!m1 || !m2) return;
|
|
const { W, H, vp } = { W: this.vp.W, H: this.vp.H, vp: this.vp };
|
|
// Расширить до границ экрана
|
|
const [p1c, p2c] = this._extendToEdges(m1, m2);
|
|
if (!p1c || !p2c) return;
|
|
const col = obj.style?.color || '#06D6E0';
|
|
ctx.save();
|
|
ctx.strokeStyle = col;
|
|
ctx.lineWidth = obj.style?.width || 1.5;
|
|
ctx.globalAlpha = 0.8;
|
|
ctx.shadowColor = col; ctx.shadowBlur = 3;
|
|
ctx.setLineDash([6, 6]);
|
|
ctx.beginPath(); ctx.moveTo(p1c.x, p1c.y); ctx.lineTo(p2c.x, p2c.y); ctx.stroke();
|
|
ctx.restore();
|
|
}
|
|
|
|
_drawRay(ctx, obj) {
|
|
const m1 = this._mpt(obj.p1Id), m2 = this._mpt(obj.p2Id);
|
|
if (!m1 || !m2) return;
|
|
const endC = this._extendOneWay(m1, m2);
|
|
const p1c = this.vp.toCanvas(m1.x, m1.y);
|
|
if (!endC) return;
|
|
const col = obj.style?.color || '#F15BB5';
|
|
ctx.save();
|
|
ctx.strokeStyle = col;
|
|
ctx.lineWidth = obj.style?.width || 1.5;
|
|
ctx.globalAlpha = 0.8;
|
|
ctx.shadowColor = col; ctx.shadowBlur = 3;
|
|
ctx.beginPath(); ctx.moveTo(p1c.x, p1c.y); ctx.lineTo(endC.x, endC.y); ctx.stroke();
|
|
ctx.restore();
|
|
}
|
|
|
|
/* ── Производная прямая (dashed, lighter) ── */
|
|
_drawDerivedLine(ctx, obj) {
|
|
if (!obj.ptX && obj.ptX !== 0) return;
|
|
const m1 = { x: obj.ptX, y: obj.ptY };
|
|
const m2 = { x: obj.ptX + obj.dirX, y: obj.ptY + obj.dirY };
|
|
const [p1c, p2c] = this._extendToEdges(m1, m2);
|
|
const col = obj.style?.color || '#4CC9F0';
|
|
ctx.save();
|
|
ctx.strokeStyle = col;
|
|
ctx.lineWidth = 1.5;
|
|
ctx.globalAlpha = 0.7;
|
|
ctx.setLineDash([8, 5]);
|
|
ctx.shadowColor = col; ctx.shadowBlur = 4;
|
|
ctx.beginPath(); ctx.moveTo(p1c.x, p1c.y); ctx.lineTo(p2c.x, p2c.y); ctx.stroke();
|
|
ctx.restore();
|
|
// Подпись типа
|
|
if (this.showLabels && obj.label) {
|
|
const mid = { x:(p1c.x+p2c.x)/2, y:(p1c.y+p2c.y)/2 };
|
|
ctx.save(); ctx.font = '11px Manrope,sans-serif';
|
|
ctx.fillStyle = col; ctx.globalAlpha = 0.8;
|
|
ctx.fillText(obj.label, mid.x + 6, mid.y - 6);
|
|
ctx.restore();
|
|
}
|
|
}
|
|
|
|
/* Подсветить линейный объект (первый клик в parallel/perpendicular/intersect) */
|
|
_drawLineRefHighlight(ctx, obj) {
|
|
if (!obj) return;
|
|
let p1c, p2c;
|
|
if (obj.type === 'derived_line') {
|
|
const m1 = { x:obj.ptX, y:obj.ptY }, m2 = { x:obj.ptX+obj.dirX, y:obj.ptY+obj.dirY };
|
|
[p1c, p2c] = this._extendToEdges(m1, m2);
|
|
} else {
|
|
const m1 = this._mpt(obj.p1Id), m2 = this._mpt(obj.p2Id);
|
|
if (!m1 || !m2) return;
|
|
if (obj.type === 'segment') { p1c = this.vp.toCanvas(m1.x,m1.y); p2c = this.vp.toCanvas(m2.x,m2.y); }
|
|
else [p1c, p2c] = this._extendToEdges(m1, m2);
|
|
}
|
|
ctx.save();
|
|
ctx.strokeStyle = '#FFE066'; ctx.lineWidth = 3; ctx.globalAlpha = 0.55;
|
|
ctx.setLineDash([6, 4]);
|
|
ctx.beginPath(); ctx.moveTo(p1c.x, p1c.y); ctx.lineTo(p2c.x, p2c.y); ctx.stroke();
|
|
ctx.restore();
|
|
}
|
|
|
|
/* Вернуть две мат. точки на объекте (line/segment/ray/derived_line) — для хит-теста и пересечений */
|
|
_twoPointsOnObj(obj) {
|
|
if (!obj) return null;
|
|
if (obj.type === 'derived_line') {
|
|
return [{ x:obj.ptX, y:obj.ptY }, { x:obj.ptX+obj.dirX, y:obj.ptY+obj.dirY }];
|
|
}
|
|
const m1 = this._mpt(obj.p1Id), m2 = this._mpt(obj.p2Id);
|
|
return (m1 && m2) ? [m1, m2] : null;
|
|
}
|
|
|
|
/* Найти линейный объект под курсором (для инструментов построения) */
|
|
_hitTestLine(px, py) {
|
|
const HIT = 12, m = this.vp.toMath(px, py);
|
|
const types = ['line','segment','ray'];
|
|
for (const t of types) {
|
|
for (const obj of this.eng.byType(t)) {
|
|
const pts = this._twoPointsOnObj(obj);
|
|
if (!pts) continue;
|
|
const d = t === 'segment' ? gDistToSegment(m,pts[0],pts[1]) : gDistToLine(m,pts[0],pts[1]);
|
|
if (d * this.vp.scale < HIT) return obj;
|
|
}
|
|
}
|
|
for (const obj of this.eng.byType('derived_line')) {
|
|
const pts = this._twoPointsOnObj(obj);
|
|
if (!pts) continue;
|
|
if (gDistToLine(m, pts[0], pts[1]) * this.vp.scale < HIT) return obj;
|
|
}
|
|
return null;
|
|
}
|
|
|
|
_drawPolyFill(ctx, obj) {
|
|
const pts = obj.pointIds.map(id => this._p(id)).filter(Boolean);
|
|
if (pts.length < 3) return;
|
|
const col = obj.style?.fillColor || 'rgba(155,93,229,0.12)';
|
|
ctx.save();
|
|
ctx.fillStyle = col;
|
|
ctx.beginPath();
|
|
ctx.moveTo(pts[0].x, pts[0].y);
|
|
for (let i = 1; i < pts.length; i++) ctx.lineTo(pts[i].x, pts[i].y);
|
|
ctx.closePath(); ctx.fill();
|
|
ctx.restore();
|
|
}
|
|
|
|
_drawPolyStroke(ctx, obj) {
|
|
const pts = obj.pointIds.map(id => this._p(id)).filter(Boolean);
|
|
if (pts.length < 2) return;
|
|
const col = obj.style?.color || '#22d55e';
|
|
const sel = this._isSelected(obj);
|
|
ctx.save();
|
|
ctx.strokeStyle = col;
|
|
ctx.lineWidth = obj.style?.width || (sel ? 2.5 : 2);
|
|
ctx.shadowColor = col; ctx.shadowBlur = sel ? 10 : 4;
|
|
ctx.beginPath();
|
|
ctx.moveTo(pts[0].x, pts[0].y);
|
|
for (let i = 1; i < pts.length; i++) ctx.lineTo(pts[i].x, pts[i].y);
|
|
ctx.closePath(); ctx.stroke();
|
|
ctx.restore();
|
|
}
|
|
|
|
_drawCircle(ctx, obj) {
|
|
let cx, cy, r;
|
|
const isDerived = obj.derived && (obj.constr === 'circumcircle' || obj.constr === 'incircle');
|
|
if (isDerived) {
|
|
if (!obj.valid) return;
|
|
const c = this.vp.toCanvas(obj.cx, obj.cy);
|
|
cx = c.x; cy = c.y;
|
|
r = this.vp.toCanvasDist(obj.r);
|
|
} else {
|
|
const c = this._p(obj.centerId), e = this._p(obj.edgeId);
|
|
if (!c || !e) return;
|
|
cx = c.x; cy = c.y;
|
|
r = gDist(c, e);
|
|
}
|
|
const col = obj.style?.color || '#FFB347';
|
|
const sel = this._isSelected(obj);
|
|
ctx.save();
|
|
ctx.strokeStyle = col;
|
|
ctx.lineWidth = obj.style?.width || (sel ? 2.5 : 2);
|
|
ctx.shadowColor = col; ctx.shadowBlur = sel ? 10 : 4;
|
|
ctx.globalAlpha = isDerived ? 0.75 : 0.9;
|
|
if (isDerived) ctx.setLineDash([7, 4]);
|
|
ctx.fillStyle = obj.style?.fillColor || `rgba(255,179,71,0.04)`;
|
|
ctx.beginPath(); ctx.arc(cx, cy, r, 0, Math.PI*2);
|
|
ctx.fill(); ctx.stroke();
|
|
ctx.restore();
|
|
if (this.showLabels && obj.label)
|
|
this._drawObjLabel(ctx, obj.label, { x: cx, y: cy - r - 8 }, col);
|
|
}
|
|
|
|
_drawObjLabel(ctx, label, pos, col) {
|
|
ctx.save();
|
|
ctx.font = '12px Manrope,sans-serif';
|
|
ctx.fillStyle = col || '#fff';
|
|
ctx.textAlign = 'center';
|
|
ctx.shadowColor = 'rgba(0,0,0,0.8)'; ctx.shadowBlur = 4;
|
|
ctx.fillText(label, pos.x, pos.y);
|
|
ctx.restore();
|
|
}
|
|
|
|
_drawLengths(ctx) {
|
|
for (const seg of this.eng.byType('segment')) {
|
|
const m1 = this._mpt(seg.p1Id), m2 = this._mpt(seg.p2Id);
|
|
if (!m1 || !m2) continue;
|
|
const len = gDist(m1, m2);
|
|
const mid = this.vp.toCanvas((m1.x+m2.x)/2, (m1.y+m2.y)/2);
|
|
const dx = m2.x-m1.x, dy = m2.y-m1.y;
|
|
const nx = -dy / Math.hypot(dx,dy) * 14;
|
|
const ny = dx / Math.hypot(dx,dy) * 14; // отступ перпендикулярно
|
|
ctx.save();
|
|
ctx.font = '11px Manrope,sans-serif';
|
|
ctx.fillStyle = seg.style?.color || '#9B5DE5';
|
|
ctx.textAlign = 'center';
|
|
ctx.shadowColor = 'rgba(0,0,0,0.9)'; ctx.shadowBlur = 4;
|
|
ctx.fillText(len.toFixed(2), mid.x + nx, mid.y - ny + 4);
|
|
ctx.restore();
|
|
}
|
|
for (const poly of this.eng.byType('polygon')) {
|
|
const ids = poly.pointIds;
|
|
for (let i = 0; i < ids.length; i++) {
|
|
const m1 = this._mpt(ids[i]), m2 = this._mpt(ids[(i+1)%ids.length]);
|
|
if (!m1 || !m2) continue;
|
|
const len = gDist(m1, m2);
|
|
const mid = this.vp.toCanvas((m1.x+m2.x)/2, (m1.y+m2.y)/2);
|
|
ctx.save();
|
|
ctx.font = '11px Manrope,sans-serif';
|
|
ctx.fillStyle = poly.style?.color || '#22d55e';
|
|
ctx.textAlign = 'center';
|
|
ctx.shadowColor = 'rgba(0,0,0,0.9)'; ctx.shadowBlur = 4;
|
|
ctx.fillText(len.toFixed(2), mid.x, mid.y - 8);
|
|
ctx.restore();
|
|
}
|
|
}
|
|
}
|
|
|
|
_drawAngleMeasures(ctx) {
|
|
const ARC_R = 22; // радиус дуги угла, пикселей
|
|
const SQ_SZ = 11; // сторона квадрата прямого угла, пикселей
|
|
const LBL_D = 14; // отступ подписи от дуги/квадрата, пикселей
|
|
|
|
for (const poly of this.eng.byType('polygon')) {
|
|
const ids = poly.pointIds;
|
|
const n = ids.length;
|
|
for (let i = 0; i < n; i++) {
|
|
const A = this._mpt(ids[(i-1+n)%n]);
|
|
const B = this._mpt(ids[i]);
|
|
const C = this._mpt(ids[(i+1)%n]);
|
|
if (!A || !B || !C) continue;
|
|
|
|
const angle = gAngleDeg(A, B, C);
|
|
const Apx = this.vp.toCanvas(A.x, A.y);
|
|
const Bpx = this.vp.toCanvas(B.x, B.y);
|
|
const Cpx = this.vp.toCanvas(C.x, C.y);
|
|
const col = poly.style?.color || '#FFE066';
|
|
|
|
// Единичные векторы B→A и B→C в пиксельных координатах
|
|
const dAx = Apx.x - Bpx.x, dAy = Apx.y - Bpx.y;
|
|
const dCx = Cpx.x - Bpx.x, dCy = Cpx.y - Bpx.y;
|
|
const lenA = Math.hypot(dAx, dAy), lenC = Math.hypot(dCx, dCy);
|
|
if (lenA < 1e-4 || lenC < 1e-4) continue;
|
|
const uAx = dAx/lenA, uAy = dAy/lenA;
|
|
const uCx = dCx/lenC, uCy = dCy/lenC;
|
|
|
|
// Биссектриса угла в пиксельных координатах
|
|
const bisX = uAx + uCx, bisY = uAy + uCy;
|
|
const bisLen = Math.hypot(bisX, bisY);
|
|
|
|
ctx.save();
|
|
ctx.strokeStyle = col;
|
|
ctx.lineWidth = 1.5;
|
|
|
|
if (Math.abs(angle - 90) < 2) {
|
|
// Прямой угол — маленький квадрат
|
|
ctx.globalAlpha = 0.8;
|
|
ctx.beginPath();
|
|
ctx.moveTo(Bpx.x + uAx*SQ_SZ, Bpx.y + uAy*SQ_SZ);
|
|
ctx.lineTo(Bpx.x + uAx*SQ_SZ + uCx*SQ_SZ, Bpx.y + uAy*SQ_SZ + uCy*SQ_SZ);
|
|
ctx.lineTo(Bpx.x + uCx*SQ_SZ, Bpx.y + uCy*SQ_SZ);
|
|
ctx.stroke();
|
|
} else if (bisLen > 1e-6) {
|
|
// Дуга угла — от midAngle-halfSpread до midAngle+halfSpread через биссектрису
|
|
const midAngle = Math.atan2(bisY, bisX);
|
|
const halfSpread = Math.acos(Math.max(-1, Math.min(1, uAx*uCx + uAy*uCy))) / 2;
|
|
ctx.globalAlpha = 0.7;
|
|
ctx.beginPath();
|
|
ctx.arc(Bpx.x, Bpx.y, ARC_R, midAngle - halfSpread, midAngle + halfSpread, false);
|
|
ctx.stroke();
|
|
}
|
|
|
|
// Подпись угла вдоль биссектрисы
|
|
if (bisLen > 1e-6) {
|
|
const ldist = (Math.abs(angle - 90) < 2 ? SQ_SZ : ARC_R) + LBL_D;
|
|
const bx = bisX / bisLen, by = bisY / bisLen;
|
|
ctx.font = '10px Manrope,sans-serif';
|
|
ctx.fillStyle = col;
|
|
ctx.globalAlpha = 0.9;
|
|
ctx.textAlign = 'center';
|
|
ctx.shadowColor = 'rgba(0,0,0,0.9)'; ctx.shadowBlur = 3;
|
|
ctx.fillText(angle.toFixed(1) + '°', Bpx.x + bx*ldist, Bpx.y + by*ldist + 3);
|
|
}
|
|
|
|
ctx.restore();
|
|
}
|
|
}
|
|
}
|
|
|
|
/* ── Предпросмотр (строящийся объект) ─────────────────────── */
|
|
_drawPreview(ctx) {
|
|
if (this._pending.length === 0 || !this._preview) return;
|
|
const lastM = this._pending[this._pending.length-1];
|
|
const curM = this._preview;
|
|
const p1c = this.vp.toCanvas(lastM.x, lastM.y);
|
|
const p2c = this.vp.toCanvas(curM.x, curM.y);
|
|
|
|
ctx.save();
|
|
ctx.globalAlpha = 0.55;
|
|
ctx.strokeStyle = '#fff';
|
|
ctx.lineWidth = 1.5;
|
|
ctx.setLineDash([4, 4]);
|
|
|
|
if (this.tool === 'circle') {
|
|
// Предпросмотр окружности
|
|
const r = gDist(p1c, p2c);
|
|
ctx.beginPath(); ctx.arc(p1c.x, p1c.y, r, 0, Math.PI*2); ctx.stroke();
|
|
} else if (this.tool === 'line') {
|
|
// Расширить до краёв
|
|
const ext = this._extendToEdges(lastM, curM);
|
|
if (ext) {
|
|
ctx.beginPath(); ctx.moveTo(ext[0].x, ext[0].y); ctx.lineTo(ext[1].x, ext[1].y); ctx.stroke();
|
|
}
|
|
} else if (this.tool === 'ray') {
|
|
const end = this._extendOneWay(lastM, curM);
|
|
if (end) {
|
|
ctx.beginPath(); ctx.moveTo(p1c.x, p1c.y); ctx.lineTo(end.x, end.y); ctx.stroke();
|
|
}
|
|
} else {
|
|
ctx.beginPath(); ctx.moveTo(p1c.x, p1c.y); ctx.lineTo(p2c.x, p2c.y); ctx.stroke();
|
|
}
|
|
|
|
// Для полигона — показать цепочку
|
|
if ((this.tool === 'polygon' || this.tool === 'triangle' || this.tool === 'quad') && this._pending.length > 1) {
|
|
ctx.setLineDash([]);
|
|
ctx.strokeStyle = '#22d55e';
|
|
ctx.globalAlpha = 0.4;
|
|
ctx.beginPath();
|
|
const p0 = this.vp.toCanvas(this._pending[0].x, this._pending[0].y);
|
|
ctx.moveTo(p0.x, p0.y);
|
|
for (let i = 1; i < this._pending.length; i++) {
|
|
const pp = this.vp.toCanvas(this._pending[i].x, this._pending[i].y);
|
|
ctx.lineTo(pp.x, pp.y);
|
|
}
|
|
ctx.lineTo(p2c.x, p2c.y);
|
|
ctx.stroke();
|
|
}
|
|
|
|
ctx.restore();
|
|
|
|
// Фантомная точка в позиции курсора
|
|
ctx.save();
|
|
ctx.globalAlpha = 0.5;
|
|
ctx.fillStyle = '#fff';
|
|
ctx.beginPath(); ctx.arc(p2c.x, p2c.y, 4, 0, Math.PI*2); ctx.fill();
|
|
ctx.restore();
|
|
}
|
|
|
|
_drawSnapIndicator(ctx) {
|
|
const p = this.vp.toCanvas(this._snapPt.x, this._snapPt.y);
|
|
ctx.save();
|
|
ctx.strokeStyle = '#FFE066';
|
|
ctx.lineWidth = 1.5;
|
|
ctx.shadowColor = '#FFE066'; ctx.shadowBlur = 8;
|
|
// Крестик
|
|
const s = 8;
|
|
ctx.beginPath();
|
|
ctx.moveTo(p.x-s, p.y); ctx.lineTo(p.x+s, p.y);
|
|
ctx.moveTo(p.x, p.y-s); ctx.lineTo(p.x, p.y+s);
|
|
ctx.stroke();
|
|
// Кольцо
|
|
ctx.beginPath(); ctx.arc(p.x, p.y, s+2, 0, Math.PI*2); ctx.stroke();
|
|
ctx.restore();
|
|
}
|
|
|
|
/* ── Геом. вспомогательные ───────────────────────────────────── */
|
|
/** Расширить прямую через m1-m2 до границ экрана */
|
|
_extendToEdges(m1, m2) {
|
|
const vp = this.vp;
|
|
const W = vp.W, H = vp.H;
|
|
const dx = m2.x-m1.x, dy = m2.y-m1.y;
|
|
if (Math.abs(dx)<1e-12 && Math.abs(dy)<1e-12) return null;
|
|
const big = 1e6;
|
|
const A = { x: m1.x - dx*big, y: m1.y - dy*big };
|
|
const B = { x: m1.x + dx*big, y: m1.y + dy*big };
|
|
const Apx = vp.toCanvas(A.x, A.y);
|
|
const Bpx = vp.toCanvas(B.x, B.y);
|
|
// Обрезаем по viewport
|
|
const clipped = this._clipSegment(Apx.x, Apx.y, Bpx.x, Bpx.y, 0, 0, W, H);
|
|
return clipped;
|
|
}
|
|
|
|
_extendOneWay(m1, m2) {
|
|
const vp = this.vp;
|
|
const dx = m2.x-m1.x, dy = m2.y-m1.y;
|
|
if (Math.abs(dx)<1e-12 && Math.abs(dy)<1e-12) return null;
|
|
const big = 1e6;
|
|
const B = { x: m1.x + dx*big, y: m1.y + dy*big };
|
|
return vp.toCanvas(B.x, B.y);
|
|
}
|
|
|
|
/** Cohen-Sutherland line clipping */
|
|
_clipSegment(x0,y0,x1,y1,xmin,ymin,xmax,ymax) {
|
|
const code = (x,y) =>
|
|
(x<xmin?1:x>xmax?2:0) | (y<ymin?4:y>ymax?8:0);
|
|
let c0=code(x0,y0), c1=code(x1,y1);
|
|
while (true) {
|
|
if (!(c0|c1)) return [{x:x0,y:y0},{x:x1,y:y1}];
|
|
if (c0&c1) return null;
|
|
const c = c0||c1;
|
|
let x,y;
|
|
if (c&8) { x=x0+(x1-x0)*(ymax-y0)/(y1-y0); y=ymax; }
|
|
else if (c&4) { x=x0+(x1-x0)*(ymin-y0)/(y1-y0); y=ymin; }
|
|
else if (c&2) { y=y0+(y1-y0)*(xmax-x0)/(x1-x0); x=xmax; }
|
|
else { y=y0+(y1-y0)*(xmin-x0)/(x1-x0); x=xmin; }
|
|
if (c===c0) { x0=x;y0=y;c0=code(x,y); }
|
|
else { x1=x;y1=y;c1=code(x,y); }
|
|
}
|
|
}
|
|
|
|
/* ══ SNAP ════════════════════════════════════════════════════ */
|
|
_computeSnap(mx, my) {
|
|
const SNAP_DIST_PX = 14; // радиус снапа в пикселях
|
|
const snapDist = this.vp.toMathDist(SNAP_DIST_PX);
|
|
|
|
this._snapPt = null;
|
|
this._snapId = null;
|
|
|
|
// 1. Снап к существующим точкам
|
|
let best = Infinity, bestId = null;
|
|
for (const pt of this.eng.points()) {
|
|
const d = Math.hypot(pt.x - mx, pt.y - my);
|
|
if (d < snapDist && d < best) { best = d; bestId = pt.id; }
|
|
}
|
|
if (bestId) {
|
|
const pt = this.eng.get(bestId);
|
|
this._snapPt = { x: pt.x, y: pt.y };
|
|
this._snapId = bestId;
|
|
return { x: pt.x, y: pt.y };
|
|
}
|
|
|
|
// 2. Снап к сетке
|
|
if (this.showGrid) {
|
|
const step = this._gridStep();
|
|
const sx = Math.round(mx / step) * step;
|
|
const sy = Math.round(my / step) * step;
|
|
const dpx = this.vp.toCanvasDist(Math.hypot(sx-mx, sy-my));
|
|
if (dpx < SNAP_DIST_PX * 0.7) {
|
|
this._snapPt = { x: sx, y: sy };
|
|
return { x: sx, y: sy };
|
|
}
|
|
}
|
|
|
|
return { x: mx, y: my };
|
|
}
|
|
|
|
_gridStep() {
|
|
const rawStep = 80 / this.vp.scale;
|
|
const exp = Math.floor(Math.log10(rawStep));
|
|
const frac = rawStep / Math.pow(10, exp);
|
|
let step = frac < 1.5 ? 1 : frac < 3.5 ? 2 : frac < 7.5 ? 5 : 10;
|
|
return step * Math.pow(10, exp);
|
|
}
|
|
|
|
/* ══ СОБЫТИЯ ══════════════════════════════════════════════════ */
|
|
_bindEvents() {
|
|
const c = this.canvas;
|
|
c.addEventListener('pointerdown', e => this._onDown(e));
|
|
c.addEventListener('pointermove', e => this._onMove(e));
|
|
c.addEventListener('pointerup', e => this._onUp(e));
|
|
c.addEventListener('pointerleave', e => this._onLeave(e));
|
|
c.addEventListener('wheel', e => this._onWheel(e), { passive: false });
|
|
c.addEventListener('contextmenu', e => e.preventDefault());
|
|
}
|
|
|
|
_evPos(e) {
|
|
const r = this.canvas.getBoundingClientRect();
|
|
return { px: e.clientX - r.left, py: e.clientY - r.top };
|
|
}
|
|
|
|
_onDown(e) {
|
|
e.preventDefault();
|
|
if (this.readOnly) return;
|
|
const { px, py } = this._evPos(e);
|
|
|
|
// ПКМ → отмена текущего построения
|
|
if (e.button === 2) {
|
|
this._pending = []; this._preview = null; this._pendingLineRef = null;
|
|
this.render(); return;
|
|
}
|
|
|
|
// Пан (средняя кнопка или Alt+ЛКМ)
|
|
if (e.button === 1 || e.altKey) {
|
|
this._panning = true; this._panLast = { px, py };
|
|
this.canvas.style.cursor = 'grabbing';
|
|
return;
|
|
}
|
|
|
|
const m = this.vp.toMath(px, py);
|
|
const snapped = this._computeSnap(m.x, m.y);
|
|
|
|
if (this.tool === 'select') {
|
|
this._handleSelectDown(snapped, px, py);
|
|
return;
|
|
}
|
|
|
|
this._handleToolClick(snapped, px, py);
|
|
}
|
|
|
|
_handleSelectDown(m, px, py) {
|
|
// Найти точку под курсором
|
|
const SNAP_PX = 12;
|
|
let found = null;
|
|
for (const pt of this.eng.points()) {
|
|
const pp = this.vp.toCanvas(pt.x, pt.y);
|
|
if (Math.hypot(pp.x-px, pp.y-py) < SNAP_PX) { found = pt; break; }
|
|
}
|
|
|
|
if (found && !found.locked && !found.derived) {
|
|
this._drag = { id: found.id };
|
|
this._selected = found;
|
|
this.canvas.style.cursor = 'grabbing';
|
|
} else {
|
|
// Выбрать объект (отрезок, окружность, полигон...)
|
|
this._selected = this._hitTest(px, py);
|
|
this._drag = null;
|
|
}
|
|
this.render();
|
|
}
|
|
|
|
/** Hit-test для не-точечных объектов */
|
|
_hitTest(px, py) {
|
|
const HIT = 8; // pixels
|
|
const m = this.vp.toMath(px, py);
|
|
|
|
// Полигоны (проверяем стороны)
|
|
for (const obj of this.eng.byType('polygon')) {
|
|
const ids = obj.pointIds;
|
|
for (let i = 0; i < ids.length; i++) {
|
|
const m1 = this._mpt(ids[i]), m2 = this._mpt(ids[(i+1)%ids.length]);
|
|
if (!m1||!m2) continue;
|
|
if (gDistToSegment(m, m1, m2) * this.vp.scale < HIT) return obj;
|
|
}
|
|
}
|
|
// Отрезки
|
|
for (const obj of this.eng.byType('segment')) {
|
|
const m1 = this._mpt(obj.p1Id), m2 = this._mpt(obj.p2Id);
|
|
if (!m1||!m2) continue;
|
|
if (gDistToSegment(m, m1, m2) * this.vp.scale < HIT) return obj;
|
|
}
|
|
// Окружности
|
|
for (const obj of this.eng.byType('circle')) {
|
|
const mc = this._mpt(obj.centerId), me = this._mpt(obj.edgeId);
|
|
if (!mc||!me) continue;
|
|
const r = gDist(mc, me);
|
|
const d = Math.abs(gDist(m, mc) - r);
|
|
if (d * this.vp.scale < HIT) return obj;
|
|
}
|
|
// Прямые
|
|
for (const obj of this.eng.byType('line')) {
|
|
const m1 = this._mpt(obj.p1Id), m2 = this._mpt(obj.p2Id);
|
|
if (!m1||!m2) continue;
|
|
if (gDistToLine(m, m1, m2) * this.vp.scale < HIT) return obj;
|
|
}
|
|
// Лучи
|
|
for (const obj of this.eng.byType('ray')) {
|
|
const m1 = this._mpt(obj.p1Id), m2 = this._mpt(obj.p2Id);
|
|
if (!m1||!m2) continue;
|
|
if (gDistToLine(m, m1, m2) * this.vp.scale < HIT) return obj;
|
|
}
|
|
// Производные прямые
|
|
for (const obj of this.eng.byType('derived_line')) {
|
|
const pts = this._twoPointsOnObj(obj);
|
|
if (!pts) continue;
|
|
if (gDistToLine(m, pts[0], pts[1]) * this.vp.scale < HIT) return obj;
|
|
}
|
|
return null;
|
|
}
|
|
|
|
_handleToolClick(snapped, px, py) {
|
|
switch (this.tool) {
|
|
case 'point':
|
|
this._pushUndo();
|
|
this._addPoint(snapped);
|
|
break;
|
|
|
|
case 'segment':
|
|
case 'line':
|
|
case 'ray': {
|
|
this._pending.push(snapped);
|
|
if (this._pending.length === 2) {
|
|
this._pushUndo();
|
|
const [p1, p2] = this._pending;
|
|
const pt1 = this._ensurePoint(p1);
|
|
const pt2 = this._ensurePoint(p2);
|
|
if (this.tool === 'segment') {
|
|
this.eng.add({ type:'segment', p1Id:pt1.id, p2Id:pt2.id, style:{color:'#9B5DE5'} });
|
|
} else if (this.tool === 'line') {
|
|
this.eng.add({ type:'line', p1Id:pt1.id, p2Id:pt2.id, style:{color:'#06D6E0'} });
|
|
} else {
|
|
this.eng.add({ type:'ray', p1Id:pt1.id, p2Id:pt2.id, style:{color:'#F15BB5'} });
|
|
}
|
|
this._pending = [];
|
|
this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
}
|
|
|
|
case 'circle':
|
|
this._pending.push(snapped);
|
|
if (this._pending.length === 2) {
|
|
this._pushUndo();
|
|
const [c, e] = this._pending;
|
|
const pc = this._ensurePoint(c);
|
|
const pe = this._ensurePoint(e);
|
|
this.eng.add({ type:'circle', centerId:pc.id, edgeId:pe.id, style:{color:'#FFB347'} });
|
|
this._pending = [];
|
|
this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
|
|
case 'triangle':
|
|
this._pending.push(snapped);
|
|
if (this._pending.length === 3) {
|
|
this._pushUndo();
|
|
const pts = this._pending.map(p => this._ensurePoint(p));
|
|
this.eng.add({ type:'polygon', pointIds:pts.map(p=>p.id),
|
|
style:{color:'#22d55e', fillColor:'rgba(34,213,94,0.08)'} });
|
|
this._pending = [];
|
|
this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
|
|
case 'quad':
|
|
this._pending.push(snapped);
|
|
if (this._pending.length === 4) {
|
|
this._pushUndo();
|
|
const pts = this._pending.map(p => this._ensurePoint(p));
|
|
this.eng.add({ type:'polygon', pointIds:pts.map(p=>p.id),
|
|
style:{color:'#22d55e', fillColor:'rgba(34,213,94,0.08)'} });
|
|
this._pending = [];
|
|
this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
|
|
case 'polygon':
|
|
// Незамкнутый многоугольник — двойной клик или клик на первую точку замыкает
|
|
if (this._pending.length > 0 && this._snapId === this._pending[0]._id) {
|
|
// Замкнуть
|
|
this._finishPolygon();
|
|
} else {
|
|
this._pending.push({ ...snapped, _id: this._snapId });
|
|
}
|
|
break;
|
|
|
|
/* ══ Phase 2: Инструменты построения ══ */
|
|
|
|
case 'midpoint': {
|
|
this._pending.push(snapped);
|
|
if (this._pending.length === 2) {
|
|
this._pushUndo();
|
|
const pt1 = this._ensurePoint(this._pending[0]);
|
|
const pt2 = this._ensurePoint(this._pending[1]);
|
|
const lbl = 'M' + (this.eng.byType('point').filter(p=>p.constr==='midpoint').length+1||'');
|
|
this.eng.add({
|
|
type:'point', derived:true, constr:'midpoint',
|
|
srcA:pt1.id, srcB:pt2.id,
|
|
x:(pt1.x+pt2.x)/2, y:(pt1.y+pt2.y)/2,
|
|
label:lbl, style:{color:'#22d55e', size:4}
|
|
});
|
|
this._pending = []; this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
}
|
|
|
|
case 'perpbisect': {
|
|
this._pending.push(snapped);
|
|
if (this._pending.length === 2) {
|
|
this._pushUndo();
|
|
const pt1 = this._ensurePoint(this._pending[0]);
|
|
const pt2 = this._ensurePoint(this._pending[1]);
|
|
const dx = pt2.x-pt1.x, dy = pt2.y-pt1.y, len = Math.hypot(dx,dy);
|
|
if (len > 1e-12) {
|
|
const cnt = this.eng.byType('derived_line').filter(d=>d.constr==='perpbisect').length;
|
|
this.eng.add({
|
|
type:'derived_line', derived:true, constr:'perpbisect',
|
|
srcA:pt1.id, srcB:pt2.id,
|
|
ptX:(pt1.x+pt2.x)/2, ptY:(pt1.y+pt2.y)/2,
|
|
dirX:-dy/len, dirY:dx/len,
|
|
label: cnt ? 'l'+(cnt+1) : 'l₁',
|
|
style:{color:'#A78BFA'}
|
|
});
|
|
}
|
|
this._pending = []; this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
}
|
|
|
|
case 'anglebisect': {
|
|
this._pending.push(snapped);
|
|
if (this._pending.length === 3) {
|
|
this._pushUndo();
|
|
const ptA = this._ensurePoint(this._pending[0]);
|
|
const ptVtx = this._ensurePoint(this._pending[1]);
|
|
const ptB = this._ensurePoint(this._pending[2]);
|
|
const va = gNorm({x:ptA.x-ptVtx.x, y:ptA.y-ptVtx.y});
|
|
const vb = gNorm({x:ptB.x-ptVtx.x, y:ptB.y-ptVtx.y});
|
|
const bis = gNorm({x:va.x+vb.x, y:va.y+vb.y});
|
|
if (Math.hypot(bis.x,bis.y) > 1e-12) {
|
|
const cnt = this.eng.byType('derived_line').filter(d=>d.constr==='anglebisect').length;
|
|
this.eng.add({
|
|
type:'derived_line', derived:true, constr:'anglebisect',
|
|
srcA:ptA.id, srcVtx:ptVtx.id, srcB:ptB.id,
|
|
ptX:ptVtx.x, ptY:ptVtx.y,
|
|
dirX:bis.x, dirY:bis.y,
|
|
label: cnt ? 'b'+(cnt+1) : 'b₁',
|
|
style:{color:'#FB923C'}
|
|
});
|
|
}
|
|
this._pending = []; this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
}
|
|
|
|
case 'parallel':
|
|
case 'perpendicular': {
|
|
if (!this._pendingLineRef) {
|
|
// Первый клик: ищем линейный объект
|
|
const hit = this._hitTestLine(px, py);
|
|
if (hit) {
|
|
this._pendingLineRef = hit;
|
|
if (this.onHintChange) this.onHintChange(this.tool, 2);
|
|
}
|
|
} else {
|
|
// Второй клик: точка через которую проводим прямую
|
|
this._pushUndo();
|
|
const throughPt = this._ensurePoint(snapped);
|
|
const hit = this._pendingLineRef;
|
|
let d1, d2;
|
|
if (hit.type === 'derived_line') {
|
|
d1 = { x:hit.ptX, y:hit.ptY };
|
|
d2 = { x:hit.ptX+hit.dirX, y:hit.ptY+hit.dirY };
|
|
} else {
|
|
d1 = this._mpt(hit.p1Id); d2 = this._mpt(hit.p2Id);
|
|
}
|
|
if (d1 && d2) {
|
|
const dx = d2.x-d1.x, dy = d2.y-d1.y, len = Math.hypot(dx,dy);
|
|
if (len > 1e-12) {
|
|
let dirX, dirY;
|
|
const srcDirPt1 = hit.p1Id || null, srcDirPt2 = hit.p2Id || null;
|
|
if (this.tool === 'parallel') {
|
|
dirX = dx/len; dirY = dy/len;
|
|
} else {
|
|
dirX = -dy/len; dirY = dx/len;
|
|
}
|
|
const cnt = this.eng.byType('derived_line').filter(d=>d.constr===this.tool).length;
|
|
this.eng.add({
|
|
type:'derived_line', derived:true, constr:this.tool,
|
|
srcPt:throughPt.id,
|
|
srcDirPt1: srcDirPt1, srcDirPt2: srcDirPt2,
|
|
ptX:throughPt.x, ptY:throughPt.y, dirX, dirY,
|
|
label: (this.tool==='parallel' ? 'p' : '⊥') + (cnt+1||''),
|
|
style:{color: this.tool==='parallel' ? '#4CC9F0' : '#FF9F43'}
|
|
});
|
|
}
|
|
}
|
|
this._pendingLineRef = null; this._pending = []; this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
}
|
|
|
|
case 'intersect': {
|
|
const hit = this._hitTestLine(px, py);
|
|
if (!hit) break;
|
|
if (!this._pendingLineRef) {
|
|
this._pendingLineRef = hit;
|
|
if (this.onHintChange) this.onHintChange('intersect', 2);
|
|
} else if (hit !== this._pendingLineRef) {
|
|
this._pushUndo();
|
|
const pts1 = this._twoPointsOnObj(this._pendingLineRef);
|
|
const pts2 = this._twoPointsOnObj(hit);
|
|
if (pts1 && pts2) {
|
|
const iPt = gIntersectLines(pts1[0], pts1[1], pts2[0], pts2[1]);
|
|
if (iPt) {
|
|
const lbl = this._nextLabel();
|
|
this.eng.add({
|
|
type:'point', derived:true, constr:'intersect',
|
|
src1:this._pendingLineRef.id, src2:hit.id,
|
|
x:iPt.x, y:iPt.y, valid:true,
|
|
label:lbl, style:{color:'#F15BB5', size:5}
|
|
});
|
|
}
|
|
}
|
|
this._pendingLineRef = null; this._pending = [];
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
}
|
|
|
|
/* ══ Phase 3: foot, circumcircle, incircle ══ */
|
|
|
|
case 'foot': {
|
|
if (!this._pendingLineRef) {
|
|
// Первый клик: выбрать прямую
|
|
const hit = this._hitTestLine(px, py);
|
|
if (hit) {
|
|
this._pendingLineRef = hit;
|
|
if (this.onHintChange) this.onHintChange('foot', 2);
|
|
}
|
|
} else {
|
|
// Второй клик: выбрать точку, с которой опускаем перпендикуляр
|
|
this._pushUndo();
|
|
const srcPt = this._ensurePoint(snapped);
|
|
const sl = this._pendingLineRef;
|
|
let L1, L2;
|
|
if (sl.type === 'derived_line') {
|
|
L1 = { x: sl.ptX, y: sl.ptY };
|
|
L2 = { x: sl.ptX + sl.dirX, y: sl.ptY + sl.dirY };
|
|
} else {
|
|
L1 = this._mpt(sl.p1Id); L2 = this._mpt(sl.p2Id);
|
|
}
|
|
if (L1 && L2) {
|
|
const f = gFoot({ x: srcPt.x, y: srcPt.y }, L1, L2);
|
|
const lbl = this._nextLabel();
|
|
this.eng.add({
|
|
type: 'point', derived: true, constr: 'foot',
|
|
srcLine: sl.id, srcPt: srcPt.id,
|
|
x: f.x, y: f.y,
|
|
label: lbl, style: { color: '#4ADE80', size: 4 }
|
|
});
|
|
}
|
|
this._pendingLineRef = null; this._pending = []; this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
}
|
|
|
|
case 'circumcircle':
|
|
case 'incircle': {
|
|
this._pending.push(snapped);
|
|
if (this._pending.length === 3) {
|
|
this._pushUndo();
|
|
const pts = this._pending.map(p => this._ensurePoint(p));
|
|
const A = { x: pts[0].x, y: pts[0].y };
|
|
const B = { x: pts[1].x, y: pts[1].y };
|
|
const C = { x: pts[2].x, y: pts[2].y };
|
|
const cc = this.tool === 'circumcircle'
|
|
? gCircumcircle(A, B, C)
|
|
: gIncircle(A, B, C);
|
|
if (cc) {
|
|
const sameConstr = this.eng.byType('circle').filter(c => c.constr === this.tool).length;
|
|
const isCircum = this.tool === 'circumcircle';
|
|
this.eng.add({
|
|
type: 'circle', derived: true, constr: this.tool,
|
|
ptA: pts[0].id, ptB: pts[1].id, ptC: pts[2].id,
|
|
cx: cc.cx, cy: cc.cy, r: cc.r, valid: true,
|
|
label: isCircum
|
|
? (sameConstr ? 'C' + (sameConstr+1) : 'C₁')
|
|
: (sameConstr ? 'I' + (sameConstr+1) : 'I₁'),
|
|
style: { color: isCircum ? '#38BDF8' : '#34D399' }
|
|
});
|
|
}
|
|
this._pending = []; this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
this.render();
|
|
}
|
|
|
|
_finishPolygon() {
|
|
if (this._pending.length < 3) { this._pending = []; this._preview = null; this.render(); return; }
|
|
this._pushUndo();
|
|
const pts = this._pending.map(p => this._ensurePoint(p));
|
|
this.eng.add({ type:'polygon', pointIds:pts.map(p=>p.id),
|
|
style:{color:'#22d55e', fillColor:'rgba(34,213,94,0.08)'} });
|
|
this._pending = [];
|
|
this._preview = null;
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
this.render();
|
|
}
|
|
|
|
_addPoint(m) {
|
|
const pt = this.eng.add({ type:'point', x:m.x, y:m.y, label:this._nextLabel(),
|
|
style:{color:'#9B5DE5', size:5} });
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
return pt;
|
|
}
|
|
|
|
/** Найти или создать точку в мат. координатах */
|
|
_ensurePoint(m) {
|
|
if (m._id && this.eng.has(m._id)) return this.eng.get(m._id);
|
|
// Ищем существующую точку в этой позиции (snap)
|
|
for (const pt of this.eng.points()) {
|
|
if (Math.abs(pt.x - m.x) < 1e-9 && Math.abs(pt.y - m.y) < 1e-9) return pt;
|
|
}
|
|
return this._addPoint(m);
|
|
}
|
|
|
|
_onMove(e) {
|
|
const { px, py } = this._evPos(e);
|
|
|
|
if (this._panning) {
|
|
this.vp.pan(px - this._panLast.px, py - this._panLast.py);
|
|
this._panLast = { px, py };
|
|
this.render(); return;
|
|
}
|
|
|
|
const m = this.vp.toMath(px, py);
|
|
|
|
if (this._drag) {
|
|
const snapped = this._computeSnap(m.x, m.y);
|
|
this.eng.movePoint(this._drag.id, snapped.x, snapped.y);
|
|
this.render(); return;
|
|
}
|
|
|
|
// Обновить snap для предпросмотра
|
|
const snapped = this._computeSnap(m.x, m.y);
|
|
this._preview = snapped;
|
|
|
|
// Hover
|
|
if (this.tool === 'select') {
|
|
let h = null;
|
|
for (const pt of this.eng.points()) {
|
|
const pp = this.vp.toCanvas(pt.x, pt.y);
|
|
if (Math.hypot(pp.x-px, pp.y-py) < 12) { h = pt; break; }
|
|
}
|
|
if (!h) h = this._hitTest(px, py);
|
|
this._hovered = h;
|
|
this.canvas.style.cursor = h ? 'pointer' : 'default';
|
|
}
|
|
|
|
this.render();
|
|
}
|
|
|
|
_onUp(e) {
|
|
if (this._panning) {
|
|
this._panning = false;
|
|
this.canvas.style.cursor = this.tool === 'select' ? 'default' : 'crosshair';
|
|
}
|
|
if (this._drag) {
|
|
this._drag = null;
|
|
this.canvas.style.cursor = 'default';
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
}
|
|
|
|
_onLeave(e) {
|
|
this._preview = null;
|
|
this._panning = false;
|
|
this._snapPt = null;
|
|
this.render();
|
|
}
|
|
|
|
_onWheel(e) {
|
|
e.preventDefault();
|
|
const { px, py } = this._evPos(e);
|
|
const factor = e.deltaY < 0 ? 1.12 : 1/1.12;
|
|
this.vp.zoom(factor, px, py);
|
|
this.render();
|
|
}
|
|
|
|
/* ══ UNDO/REDO ════════════════════════════════════════════════ */
|
|
_pushUndo() {
|
|
this._undoStack.push(this.eng.serialize());
|
|
this._redoStack = [];
|
|
if (this._undoStack.length > 80) this._undoStack.shift();
|
|
}
|
|
|
|
undo() {
|
|
if (!this._undoStack.length) return;
|
|
this._redoStack.push(this.eng.serialize());
|
|
this.eng.deserialize(this._undoStack.pop());
|
|
this._selected = null; this._pending = []; this._preview = null;
|
|
this.render();
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
|
|
redo() {
|
|
if (!this._redoStack.length) return;
|
|
this._undoStack.push(this.eng.serialize());
|
|
this.eng.deserialize(this._redoStack.pop());
|
|
this._selected = null;
|
|
this.render();
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
|
|
/* ── Удалить выбранный объект ── */
|
|
deleteSelected() {
|
|
if (!this._selected) return;
|
|
this._pushUndo();
|
|
this.eng.remove(this._selected.id);
|
|
this._selected = null;
|
|
this.render();
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
|
|
/* ── Очистить всё ── */
|
|
reset() {
|
|
this._pushUndo();
|
|
this.eng.clear();
|
|
this._pending = []; this._preview = null; this._selected = null;
|
|
this.render();
|
|
if (this.onUpdate) this.onUpdate(this.getStats());
|
|
}
|
|
|
|
/* ── Центрировать вид ── */
|
|
resetView() {
|
|
this.vp.cx = 0; this.vp.cy = 0; this.vp.scale = 60;
|
|
this.render();
|
|
}
|
|
|
|
/* ══ СТАТИСТИКА ══════════════════════════════════════════════ */
|
|
getStats() {
|
|
const allPts = this.eng.points();
|
|
const pts = allPts.filter(p => !p.derived).length;
|
|
const derivedPts = allPts.filter(p => !!p.derived).length;
|
|
const segs = this.eng.byType('segment').length + this.eng.byType('polygon').reduce((s,p)=>s+p.pointIds.length,0);
|
|
const circs= this.eng.byType('circle').length;
|
|
const polys= this.eng.byType('polygon').length;
|
|
const derivedCircles = this.eng.byType('circle').filter(c => c.derived).length;
|
|
const constructions = this.eng.byType('derived_line').length + derivedPts + derivedCircles;
|
|
|
|
// Статистика для выбранного объекта
|
|
let sel = null;
|
|
if (this._selected) {
|
|
const obj = this._selected;
|
|
if (obj.type === 'segment') {
|
|
const m1 = this._mpt(obj.p1Id), m2 = this._mpt(obj.p2Id);
|
|
if (m1&&m2) sel = { type:'segment', len: gDist(m1,m2).toFixed(3), mid: gMid(m1,m2) };
|
|
} else if (obj.type === 'circle') {
|
|
let r = null;
|
|
if (obj.derived && (obj.constr === 'circumcircle' || obj.constr === 'incircle')) {
|
|
if (obj.valid) r = obj.r;
|
|
} else {
|
|
const mc = this._mpt(obj.centerId), me = this._mpt(obj.edgeId);
|
|
if (mc && me) r = gDist(mc, me);
|
|
}
|
|
if (r != null) sel = { type:'circle', r:r.toFixed(3), perimeter:(2*Math.PI*r).toFixed(3), area:(Math.PI*r*r).toFixed(3) };
|
|
} else if (obj.type === 'polygon') {
|
|
const pts2 = obj.pointIds.map(id=>this._mpt(id)).filter(Boolean);
|
|
if (pts2.length >= 3) {
|
|
const perimeter = pts2.reduce((s,p,i)=>s+gDist(p,pts2[(i+1)%pts2.length]),0);
|
|
const area = gPolygonArea(pts2);
|
|
const angles = pts2.map((_,i)=>gAngleDeg(pts2[(i-1+pts2.length)%pts2.length],pts2[i],pts2[(i+1)%pts2.length]));
|
|
sel = { type:'polygon', n:pts2.length, perimeter:perimeter.toFixed(3), area:area.toFixed(3), angles };
|
|
}
|
|
} else if (obj.type === 'point') {
|
|
sel = { type:'point', x:obj.x.toFixed(3), y:obj.y.toFixed(3), label:obj.label };
|
|
}
|
|
}
|
|
|
|
return { pts, segs, circs, polys, constructions, selected: sel };
|
|
}
|
|
|
|
/* ══ ЭКСПОРТ/ИМПОРТ СОСТОЯНИЯ (для classroom sim sync) ════════ */
|
|
exportState() {
|
|
return {
|
|
objects: this.eng.serialize(),
|
|
viewport: { cx: this.vp.cx, cy: this.vp.cy, scale: this.vp.scale },
|
|
showGrid: this.showGrid,
|
|
showAxes: this.showAxes,
|
|
showLabels: this.showLabels,
|
|
showLengths:this.showLengths,
|
|
showAngles: this.showAngles,
|
|
};
|
|
}
|
|
|
|
importState(st) {
|
|
if (!st) return;
|
|
try {
|
|
if (st.objects) this.eng.deserialize(st.objects);
|
|
if (st.viewport) {
|
|
this.vp.cx = st.viewport.cx;
|
|
this.vp.cy = st.viewport.cy;
|
|
this.vp.scale = st.viewport.scale;
|
|
}
|
|
if (st.showGrid !== undefined) this.showGrid = st.showGrid;
|
|
if (st.showAxes !== undefined) this.showAxes = st.showAxes;
|
|
if (st.showLabels !== undefined) this.showLabels = st.showLabels;
|
|
if (st.showLengths !== undefined) this.showLengths = st.showLengths;
|
|
if (st.showAngles !== undefined) this.showAngles = st.showAngles;
|
|
this._selected = null; this._pending = []; this._preview = null;
|
|
this.render();
|
|
} catch(err) { console.warn('GeoSim.importState error:', err); }
|
|
}
|
|
|
|
/* ── Экспорт PNG ── */
|
|
exportPNG() {
|
|
this.canvas.toBlob(blob => {
|
|
const a = document.createElement('a');
|
|
a.href = URL.createObjectURL(blob);
|
|
a.download = 'geometry.png';
|
|
a.click();
|
|
}, 'image/png');
|
|
}
|
|
}
|