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breakpilot-lehrer/admin-lehrer/components/ocr-pipeline/usePixelWordPositions.ts
Benjamin Admin 080fcb5e3c
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feat: 180°-Rotation fuer Pixel-Matching im Overlay-Modus
- usePixelWordPositions: neuer rotation-Parameter (0 | 180)
- Bei 180°: Bild auf Canvas rotiert, Zell-Koordinaten transformiert,
  Cluster-Positionen zurueck-gespiegelt
- StepReconstruction: 180°-Toggle-Button in Overlay-Toolbar
- Default 180° bei Parent-Sessions mit Boxen
- Linkes Originalbild wird ebenfalls CSS-rotiert

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
2026-03-10 17:19:14 +01:00

199 lines
7.0 KiB
TypeScript

import { useEffect, useState } from 'react'
import type { GridCell } from '@/app/(admin)/ai/ocr-pipeline/types'
export interface WordPosition {
xPct: number
wPct: number
text: string
fontRatio: number
}
/**
* Shared hook: analyse dark-pixel clusters on an image to determine
* the exact horizontal position & auto-font-size of word groups in each cell.
*
* When rotation=180, the image is rotated 180° before pixel analysis.
* Cell coordinates are transformed to the rotated space for reading,
* and cluster positions are mirrored back to the original coordinate system.
*
* Returns a Map<cell_id, WordPosition[]>.
*/
export function usePixelWordPositions(
imageUrl: string,
cells: GridCell[],
active: boolean,
rotation: 0 | 180 = 0,
): Map<string, WordPosition[]> {
const [cellWordPositions, setCellWordPositions] = useState<Map<string, WordPosition[]>>(new Map())
useEffect(() => {
if (!active || cells.length === 0 || !imageUrl) return
const img = new Image()
img.crossOrigin = 'anonymous'
img.onload = () => {
const imgW = img.naturalWidth
const imgH = img.naturalHeight
const canvas = document.createElement('canvas')
canvas.width = imgW
canvas.height = imgH
const ctx = canvas.getContext('2d')
if (!ctx) return
if (rotation === 180) {
// Draw image rotated 180°
ctx.translate(imgW, imgH)
ctx.rotate(Math.PI)
ctx.drawImage(img, 0, 0)
ctx.setTransform(1, 0, 0, 1, 0, 0) // reset transform for measureText
} else {
ctx.drawImage(img, 0, 0)
}
const refFontSize = 40
const fontFam = "'Liberation Sans', Arial, sans-serif"
ctx.font = `${refFontSize}px ${fontFam}`
const positions = new Map<string, WordPosition[]>()
for (const cell of cells) {
if (!cell.bbox_pct || !cell.text) continue
// Split by 3+ whitespace into word-groups
const groups = cell.text.split(/\s{3,}/).map(s => s.trim()).filter(Boolean)
// Cell pixel region — when rotated 180°, transform coordinates
let cx: number, cy: number
const cw = Math.round(cell.bbox_pct.w / 100 * imgW)
const ch = Math.round(cell.bbox_pct.h / 100 * imgH)
if (rotation === 180) {
// In rotated image: (x,y) maps to (W-x-w, H-y-h)
cx = Math.round((100 - cell.bbox_pct.x - cell.bbox_pct.w) / 100 * imgW)
cy = Math.round((100 - cell.bbox_pct.y - cell.bbox_pct.h) / 100 * imgH)
} else {
cx = Math.round(cell.bbox_pct.x / 100 * imgW)
cy = Math.round(cell.bbox_pct.y / 100 * imgH)
}
if (cw <= 0 || ch <= 0) continue
// Clamp to image bounds
if (cx < 0) cx = 0
if (cy < 0) cy = 0
if (cx + cw > imgW || cy + ch > imgH) continue
const imageData = ctx.getImageData(cx, cy, cw, ch)
// Vertical projection: count dark pixels per column
const proj = new Float32Array(cw)
for (let y = 0; y < ch; y++) {
for (let x = 0; x < cw; x++) {
const idx = (y * cw + x) * 4
const lum = 0.299 * imageData.data[idx] + 0.587 * imageData.data[idx + 1] + 0.114 * imageData.data[idx + 2]
if (lum < 128) proj[x]++
}
}
// Find dark-pixel clusters (word groups on the image)
const threshold = Math.max(1, ch * 0.03)
const minGap = Math.max(5, Math.round(cw * 0.02))
let clusters: { start: number; end: number }[] = []
let inCluster = false
let clStart = 0
let gap = 0
for (let x = 0; x < cw; x++) {
if (proj[x] >= threshold) {
if (!inCluster) { clStart = x; inCluster = true }
gap = 0
} else if (inCluster) {
gap++
if (gap > minGap) {
clusters.push({ start: clStart, end: x - gap })
inCluster = false
gap = 0
}
}
}
if (inCluster) clusters.push({ start: clStart, end: cw - 1 - gap })
if (clusters.length === 0) continue
// When rotated 180°, mirror clusters back to original coordinate system
// A cluster at (start, end) in rotated space = (cw-1-end, cw-1-start) in original
if (rotation === 180) {
clusters = clusters.map(c => ({
start: cw - 1 - c.end,
end: cw - 1 - c.start,
})).reverse() // reverse to restore left-to-right order in original space
}
const wordPos: WordPosition[] = []
if (groups.length <= 1) {
// Single group: position at first cluster, merge all clusters for width
const firstCl = clusters[0]
const lastCl = clusters[clusters.length - 1]
const clusterW = lastCl.end - firstCl.start + 1
const measured = ctx.measureText(cell.text.trim())
const autoFontPx = refFontSize * (clusterW / measured.width)
const fontRatio = Math.min(autoFontPx / ch, 1.0)
wordPos.push({
xPct: cell.bbox_pct.x + (firstCl.start / cw) * cell.bbox_pct.w,
wPct: ((lastCl.end - firstCl.start + 1) / cw) * cell.bbox_pct.w,
text: cell.text.trim(),
fontRatio,
})
} else if (clusters.length >= groups.length) {
// Multiple groups: match to clusters left-to-right
for (let i = 0; i < groups.length; i++) {
const cl = clusters[i]
const clusterW = cl.end - cl.start + 1
const measured = ctx.measureText(groups[i])
const autoFontPx = refFontSize * (clusterW / measured.width)
const fontRatio = Math.min(autoFontPx / ch, 1.0)
wordPos.push({
xPct: cell.bbox_pct.x + (cl.start / cw) * cell.bbox_pct.w,
wPct: ((cl.end - cl.start + 1) / cw) * cell.bbox_pct.w,
text: groups[i],
fontRatio,
})
}
} else {
continue // fewer clusters than groups — skip
}
positions.set(cell.cell_id, wordPos)
}
// Normalise: find the most common fontRatio (mode) and apply it to all
const allRatios: number[] = []
for (const wps of positions.values()) {
for (const wp of wps) allRatios.push(wp.fontRatio)
}
if (allRatios.length > 0) {
// Bucket ratios to 2 decimal places, find mode
const buckets = new Map<number, number>()
for (const r of allRatios) {
const key = Math.round(r * 50) / 50 // round to nearest 0.02
buckets.set(key, (buckets.get(key) || 0) + 1)
}
let modeRatio = allRatios[0]
let modeCount = 0
for (const [ratio, count] of buckets) {
if (count > modeCount) { modeRatio = ratio; modeCount = count }
}
// Apply mode to all word positions
for (const wps of positions.values()) {
for (const wp of wps) wp.fontRatio = modeRatio
}
}
setCellWordPositions(positions)
}
img.src = imageUrl
}, [active, cells, imageUrl, rotation])
return cellWordPositions
}