import { randomUUID } from "node:crypto"; import { writeFile } from "node:fs/promises"; import { join } from "node:path"; import type { FastifyInstance } from "fastify"; import sharp from "sharp"; import { ensureSharpCompat } from "../../lib/heic-converter.js"; import { createWorkspace } from "../../lib/workspace.js"; /** * Compare two images: compute a pixel-level diff and similarity score. */ export function registerCompare(app: FastifyInstance) { app.post("/api/v1/tools/compare", async (request, reply) => { let bufferA: Buffer | null = null; let bufferB: Buffer | null = null; try { const parts = request.parts(); for await (const part of parts) { if (part.type === "file") { const chunks: Buffer[] = []; for await (const chunk of part.file) { chunks.push(chunk); } const buf = Buffer.concat(chunks); if (!bufferA) { bufferA = buf; } else { bufferB = buf; } } } } catch (err) { return reply.status(400).send({ error: "Failed to parse multipart request", details: err instanceof Error ? err.message : String(err), }); } if (!bufferA || !bufferB) { return reply.status(400).send({ error: "Two image files are required for comparison" }); } try { // Decode HEIC/HEIF if needed bufferA = await ensureSharpCompat(bufferA); bufferB = await ensureSharpCompat(bufferB); // Normalize both to same size for comparison const metaA = await sharp(bufferA).metadata(); const metaB = await sharp(bufferB).metadata(); const w = Math.max(metaA.width ?? 100, metaB.width ?? 100); const h = Math.max(metaA.height ?? 100, metaB.height ?? 100); const rawA = await sharp(bufferA) .resize(w, h, { fit: "fill" }) .ensureAlpha() .raw() .toBuffer(); const rawB = await sharp(bufferB) .resize(w, h, { fit: "fill" }) .ensureAlpha() .raw() .toBuffer(); // Compute pixel diff const diffPixels = Buffer.alloc(w * h * 4); let totalDiff = 0; const pixelCount = w * h; for (let i = 0; i < rawA.length; i += 4) { const dr = Math.abs(rawA[i] - rawB[i]); const dg = Math.abs(rawA[i + 1] - rawB[i + 1]); const db = Math.abs(rawA[i + 2] - rawB[i + 2]); const pixelDiff = (dr + dg + db) / 3; totalDiff += pixelDiff; // Red tint for differences, transparent for identical if (pixelDiff > 10) { diffPixels[i] = 255; // R diffPixels[i + 1] = 0; // G diffPixels[i + 2] = 0; // B diffPixels[i + 3] = Math.min(255, Math.round(pixelDiff * 3)); // A } else { // Slightly show original diffPixels[i] = rawA[i]; diffPixels[i + 1] = rawA[i + 1]; diffPixels[i + 2] = rawA[i + 2]; diffPixels[i + 3] = 128; } } const similarity = Math.max(0, 100 - (totalDiff / (pixelCount * 255)) * 100); const diffBuffer = await sharp(diffPixels, { raw: { width: w, height: h, channels: 4 }, }) .png() .toBuffer(); const jobId = randomUUID(); const workspacePath = await createWorkspace(jobId); const diffFilename = "diff.png"; const outputPath = join(workspacePath, "output", diffFilename); await writeFile(outputPath, diffBuffer); return reply.send({ jobId, similarity: Math.round(similarity * 100) / 100, dimensions: { width: w, height: h }, downloadUrl: `/api/v1/download/${jobId}/${diffFilename}`, originalSize: bufferA.length + bufferB.length, processedSize: diffBuffer.length, }); } catch (err) { return reply.status(422).send({ error: "Comparison failed", details: err instanceof Error ? err.message : "Unknown error", }); } }); }