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SnapOtter/tests/integration/doc-engine-pdfcpu.test.ts
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TypeScript

import { mkdtempSync, rmSync } from "node:fs";
import { readFile } from "node:fs/promises";
import { tmpdir } from "node:os";
import { join } from "node:path";
import {
pdfcpuAvailable,
pdfcpuBooklet,
pdfcpuCropMargin,
pdfcpuNup,
pdfcpuTextStamp,
} from "@snapotter/doc-engine";
import { describe, expect, it } from "vitest";
const PDF = join(process.cwd(), "tests/fixtures/test-3page.pdf");
// --- Gated integration tests: skip when pdfcpu is not installed locally ---
describe.skipIf(!pdfcpuAvailable())("doc-engine pdfcpu (requires pdfcpu binary)", () => {
it("nup(2) reduces 3 pages to 2 sheets", async () => {
const dir = mkdtempSync(join(tmpdir(), "pdfcpu-"));
try {
const out = join(dir, "nup2.pdf");
await pdfcpuNup(PDF, 2, out);
const bytes = await readFile(out);
expect(bytes.subarray(0, 5).toString()).toBe("%PDF-");
} finally {
rmSync(dir, { recursive: true, force: true });
}
});
it("crop preserves page count", async () => {
const dir = mkdtempSync(join(tmpdir(), "pdfcpu-"));
try {
const out = join(dir, "cropped.pdf");
await pdfcpuCropMargin(PDF, 20, out);
const bytes = await readFile(out);
expect(bytes.subarray(0, 5).toString()).toBe("%PDF-");
} finally {
rmSync(dir, { recursive: true, force: true });
}
});
it("textStamp produces valid pdf output", async () => {
const dir = mkdtempSync(join(tmpdir(), "pdfcpu-"));
try {
const out = join(dir, "stamped.pdf");
await pdfcpuTextStamp(
PDF,
{ text: "CONFIDENTIAL", position: "c", fontSize: 24, opacity: 0.5, rotation: 45 },
out,
);
const bytes = await readFile(out);
expect(bytes.subarray(0, 5).toString()).toBe("%PDF-");
} finally {
rmSync(dir, { recursive: true, force: true });
}
});
it("booklet produces valid pdf output", async () => {
const dir = mkdtempSync(join(tmpdir(), "pdfcpu-"));
try {
const out = join(dir, "booklet.pdf");
await pdfcpuBooklet(PDF, 2, out);
const bytes = await readFile(out);
expect(bytes.subarray(0, 5).toString()).toBe("%PDF-");
} finally {
rmSync(dir, { recursive: true, force: true });
}
});
it("textStamp with page numbers (%p/%P) produces valid output", async () => {
const dir = mkdtempSync(join(tmpdir(), "pdfcpu-"));
try {
const out = join(dir, "numbered.pdf");
await pdfcpuTextStamp(
PDF,
{ text: "Page %p of %P", position: "bc", fontSize: 10, opacity: 1, rotation: 0 },
out,
);
const bytes = await readFile(out);
expect(bytes.subarray(0, 5).toString()).toBe("%PDF-");
} finally {
rmSync(dir, { recursive: true, force: true });
}
});
});
// --- Ungated validation tests: run without the binary ---
describe("pdfcpu validation (no binary required)", () => {
it("rejects invalid stamp position", async () => {
await expect(
pdfcpuTextStamp(
"/fake.pdf",
{ text: "test", position: "xx", fontSize: 12, opacity: 0.5, rotation: 0 },
"/out.pdf",
),
).rejects.toThrow(/position/i);
});
it("rejects empty stamp text", async () => {
await expect(
pdfcpuTextStamp(
"/fake.pdf",
{ text: "", position: "c", fontSize: 12, opacity: 0.5, rotation: 0 },
"/out.pdf",
),
).rejects.toThrow(/text/i);
});
it("rejects oversize stamp text (>200 chars)", async () => {
await expect(
pdfcpuTextStamp(
"/fake.pdf",
{ text: "x".repeat(201), position: "c", fontSize: 12, opacity: 0.5, rotation: 0 },
"/out.pdf",
),
).rejects.toThrow(/text/i);
});
it("rejects fontSize out of range", async () => {
await expect(
pdfcpuTextStamp(
"/fake.pdf",
{ text: "test", position: "c", fontSize: 5, opacity: 0.5, rotation: 0 },
"/out.pdf",
),
).rejects.toThrow(/font size/i);
await expect(
pdfcpuTextStamp(
"/fake.pdf",
{ text: "test", position: "c", fontSize: 73, opacity: 0.5, rotation: 0 },
"/out.pdf",
),
).rejects.toThrow(/font size/i);
});
it("rejects opacity out of range", async () => {
await expect(
pdfcpuTextStamp(
"/fake.pdf",
{ text: "test", position: "c", fontSize: 12, opacity: 0.04, rotation: 0 },
"/out.pdf",
),
).rejects.toThrow(/opacity/i);
await expect(
pdfcpuTextStamp(
"/fake.pdf",
{ text: "test", position: "c", fontSize: 12, opacity: 1.1, rotation: 0 },
"/out.pdf",
),
).rejects.toThrow(/opacity/i);
});
it("rejects rotation out of range", async () => {
await expect(
pdfcpuTextStamp(
"/fake.pdf",
{ text: "test", position: "c", fontSize: 12, opacity: 0.5, rotation: -181 },
"/out.pdf",
),
).rejects.toThrow(/rotation/i);
await expect(
pdfcpuTextStamp(
"/fake.pdf",
{ text: "test", position: "c", fontSize: 12, opacity: 0.5, rotation: 181 },
"/out.pdf",
),
).rejects.toThrow(/rotation/i);
});
it("rejects crop margin out of range", async () => {
await expect(pdfcpuCropMargin("/fake.pdf", -1, "/out.pdf")).rejects.toThrow(/margin/i);
await expect(pdfcpuCropMargin("/fake.pdf", 2001, "/out.pdf")).rejects.toThrow(/margin/i);
await expect(pdfcpuCropMargin("/fake.pdf", NaN, "/out.pdf")).rejects.toThrow(/margin/i);
});
it("rejects invalid nup value", async () => {
await expect(pdfcpuNup("/fake.pdf", 5 as never, "/out.pdf")).rejects.toThrow(/n-up/i);
await expect(pdfcpuNup("/fake.pdf", 7 as never, "/out.pdf")).rejects.toThrow(/n-up/i);
});
it("rejects invalid booklet value", async () => {
await expect(pdfcpuBooklet("/fake.pdf", 3 as never, "/out.pdf")).rejects.toThrow(/booklet/i);
await expect(pdfcpuBooklet("/fake.pdf", 5 as never, "/out.pdf")).rejects.toThrow(/booklet/i);
});
});