This commit is contained in:
Халимов Рустам
2026-01-11 22:07:46 +03:00
parent fe1f5df710
commit d9bc3bda17
+31 -33
View File
@@ -61,7 +61,7 @@ export const LayoutStep: React.FC<Props> = ({ config, splits, onChange }) => {
}; };
const selectedData = getSelectedPartition(); const selectedData = getSelectedPartition();
// --- SOLVER --- // --- SOLVER (Тот самый, рабочий) ---
const solveWallLimits = (parts: Partition[]): LimitMap => { const solveWallLimits = (parts: Partition[]): LimitMap => {
const limits: LimitMap = {}; const limits: LimitMap = {};
parts.forEach(p => { limits[p.id] = { min: 0, max: 1 }; }); parts.forEach(p => { limits[p.id] = { min: 0, max: 1 }; });
@@ -78,7 +78,9 @@ export const LayoutStep: React.FC<Props> = ({ config, splits, onChange }) => {
const obsMin = limits[obstacle.id].min; const obsMin = limits[obstacle.id].min;
const obsMax = limits[obstacle.id].max; const obsMax = limits[obstacle.id].max;
if (target.offset >= obsMin - 0.001 && target.offset <= obsMax + 0.001) { // EPSILON для надежности пересечений
const EPS = 0.002;
if (target.offset >= obsMin - EPS && target.offset <= obsMax + EPS) {
if (obstacle.offset < center) newMin = Math.max(newMin, obstacle.offset); if (obstacle.offset < center) newMin = Math.max(newMin, obstacle.offset);
else if (obstacle.offset > center) newMax = Math.min(newMax, obstacle.offset); else if (obstacle.offset > center) newMax = Math.min(newMax, obstacle.offset);
} }
@@ -89,7 +91,7 @@ export const LayoutStep: React.FC<Props> = ({ config, splits, onChange }) => {
return limits; return limits;
}; };
// --- RAYCASTING --- // --- RAYCASTING (Рабочая логика поиска коробки) ---
const getCursorBox = (lx: number, ly: number, parts: Partition[], limitMap: LimitMap) => { const getCursorBox = (lx: number, ly: number, parts: Partition[], limitMap: LimitMap) => {
let minX = 0, maxX = 1; let minX = 0, maxX = 1;
let minY = 0, maxY = 1; let minY = 0, maxY = 1;
@@ -98,14 +100,16 @@ export const LayoutStep: React.FC<Props> = ({ config, splits, onChange }) => {
const { min: pMin, max: pMax } = limitMap[p.id]; const { min: pMin, max: pMax } = limitMap[p.id];
if (pMax - pMin < 0.001) return; if (pMax - pMin < 0.001) return;
const EPS = 0.002; const EPS = 0.005; // Чувствительность к стенкам
if (p.axis === 'x') { if (p.axis === 'x') {
// Вертикальная преграда
if (ly >= pMin - EPS && ly <= pMax + EPS) { if (ly >= pMin - EPS && ly <= pMax + EPS) {
if (p.offset < lx) minX = Math.max(minX, p.offset); if (p.offset < lx) minX = Math.max(minX, p.offset);
if (p.offset > lx) maxX = Math.min(maxX, p.offset); if (p.offset > lx) maxX = Math.min(maxX, p.offset);
} }
} else { } else {
// Горизонтальная преграда
if (lx >= pMin - EPS && lx <= pMax + EPS) { if (lx >= pMin - EPS && lx <= pMax + EPS) {
if (p.offset < ly) minY = Math.max(minY, p.offset); if (p.offset < ly) minY = Math.max(minY, p.offset);
if (p.offset > ly) maxY = Math.min(maxY, p.offset); if (p.offset > ly) maxY = Math.min(maxY, p.offset);
@@ -115,6 +119,7 @@ export const LayoutStep: React.FC<Props> = ({ config, splits, onChange }) => {
return { minX, maxX, minY, maxY }; return { minX, maxX, minY, maxY };
}; };
// Поиск соседей для размеров
const getNeighborOffsets = (offset: number, crossPos: number, axis: Axis, parts: Partition[], limitMap: LimitMap) => { const getNeighborOffsets = (offset: number, crossPos: number, axis: Axis, parts: Partition[], limitMap: LimitMap) => {
let min = 0; let min = 0;
let max = 1; let max = 1;
@@ -236,9 +241,6 @@ export const LayoutStep: React.FC<Props> = ({ config, splits, onChange }) => {
const lx = (nx - cx1) / cw; const lx = (nx - cx1) / cw;
const ly = (ny - cy1) / ch; const ly = (ny - cy1) / ch;
const realCellW = cw * drawerW;
const realCellH = ch * drawerD;
let found = null; let found = null;
const SNAP = 0.05; const SNAP = 0.05;
for (const p of parts) { for (const p of parts) {
@@ -253,26 +255,21 @@ export const LayoutStep: React.FC<Props> = ({ config, splits, onChange }) => {
if (found) { if (found) {
setHoveredPartition({ id: found.id, cellKey: key }); setHoveredPartition({ id: found.id, cellKey: key });
} else { } else {
// --- ОПРЕДЕЛЕНИЕ ФАНТОМА ---
const box = getCursorBox(lx, ly, parts, limitMap); const box = getCursorBox(lx, ly, parts, limitMap);
const boxW = (box.maxX - box.minX) * realCellW;
const boxH = (box.maxY - box.minY) * realCellH;
let newAxis: Axis = boxW > boxH ? 'x' : 'y'; const width = box.maxX - box.minX;
const height = box.maxY - box.minY;
const relL = (lx - box.minX) / (box.maxX - box.minX); // Простейшая логика: делим длинную сторону "комнаты"
const relT = (ly - box.minY) / (box.maxY - box.minY); // Это работает лучше всего
const THRESHOLD = 0.2; const axis = width > height ? 'x' : 'y';
if (relL < THRESHOLD || relL > 1 - THRESHOLD) newAxis = 'x'; if ((axis === 'y' && height > 0.05) || (axis === 'x' && width > 0.05)) {
else if (relT < THRESHOLD || relT > 1 - THRESHOLD) newAxis = 'y'; const offset = axis === 'x' ? lx : ly;
const min = axis === 'x' ? box.minY : box.minX;
const valid = (newAxis === 'x' && (box.maxX - box.minX) > 0.05) || (newAxis === 'y' && (box.maxY - box.minY) > 0.05); const max = axis === 'x' ? box.maxY : box.maxX;
setPhantomPartition({ axis, offset, min, max });
if (valid) {
const offset = newAxis === 'x' ? lx : ly;
const min = newAxis === 'x' ? box.minY : box.minX;
const max = newAxis === 'x' ? box.maxY : box.maxX;
setPhantomPartition({ axis: newAxis, offset, min, max });
} }
} }
} }
@@ -315,12 +312,14 @@ export const LayoutStep: React.FC<Props> = ({ config, splits, onChange }) => {
} }
}; };
// --- MOUSE LEAVE (Clear Phantoms) --- // --- НОВОЕ: Очистка при уходе мыши ---
const handleMouseLeave = () => { const handleMouseLeave = () => {
setDragging(null); setDragging(null);
setPhantomMainAxis(null); setPhantomMainAxis(null);
setPhantomPartition(null); setHoveredMainSplit(null);
setHoveredCell(null); setHoveredCell(null);
setHoveredPartition(null);
setPhantomPartition(null);
}; };
// --- RENDER --- // --- RENDER ---
@@ -344,6 +343,7 @@ export const LayoutStep: React.FC<Props> = ({ config, splits, onChange }) => {
const limitMap = solveWallLimits(parts); const limitMap = solveWallLimits(parts);
// Label
if (parts.length === 0) { if (parts.length === 0) {
const labelX = cellX + cellW / 2; const labelX = cellX + cellW / 2;
const labelY = cellY + cellH / 2; const labelY = cellY + cellH / 2;
@@ -377,20 +377,18 @@ export const LayoutStep: React.FC<Props> = ({ config, splits, onChange }) => {
lx1 = px; lx2 = px; lx1 = px; lx2 = px;
ly1 = cellY + (cellH * min); ly2 = cellY + (cellH * max); ly1 = cellY + (cellH * min); ly2 = cellY + (cellH * max);
const cy = (min + max) / 2; const neighbors = getNeighborOffsets(p.offset, (min + max)/2, p.axis, parts, limitMap);
const box = getCursorBox(p.offset, cy, parts, limitMap); dist1 = Math.abs((p.offset - neighbors.min) * realW) - wallThick;
dist1 = Math.abs((p.offset - box.minX) * realW) - wallThick; dist2 = Math.abs((neighbors.max - p.offset) * realW) - wallThick;
dist2 = Math.abs((box.maxX - p.offset) * realW) - wallThick;
midX = px; midY = (ly1 + ly2) / 2; midX = px; midY = (ly1 + ly2) / 2;
} else { } else {
const py = cellY + (cellH * p.offset); const py = cellY + (cellH * p.offset);
ly1 = py; ly2 = py; ly1 = py; ly2 = py;
lx1 = cellX + (cellW * min); lx2 = cellX + (cellW * max); lx1 = cellX + (cellW * min); lx2 = cellX + (cellW * max);
const cx = (min + max) / 2; const neighbors = getNeighborOffsets(p.offset, (min + max)/2, p.axis, parts, limitMap);
const box = getCursorBox(cx, p.offset, parts, limitMap); dist1 = Math.abs((p.offset - neighbors.min) * realD) - wallThick;
dist1 = Math.abs((p.offset - box.minY) * realD) - wallThick; dist2 = Math.abs((neighbors.max - p.offset) * realD) - wallThick;
dist2 = Math.abs((box.maxY - p.offset) * realD) - wallThick;
midX = (lx1 + lx2) / 2; midY = py; midX = (lx1 + lx2) / 2; midY = py;
} }