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iccery-v2-mac/Tests/ICCeryCoreTests/TargetCanvasGeometryTests.swift
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fix(print): anchor raster at page top in bottom-up canvas space (#211)
226e7b2 un-flipped the canvas but left destinationRect anchored at
pageRect.minY — the page's BOTTOM edge in bottom-up space — so
sub-page targets printed at the foot of the sheet and oversize
targets clipped their top rows. Anchor at pageRect.maxY - height,
restoring the spec'd top-left anchor (docs/14 §6, D9).

Adds the missing regression coverage: the geometry test now asserts
the top anchor with a sub-page raster, and the PDF harness gains a
banded (red-over-blue) fixture that fails on either a mirrored draw
or a bottom anchor — solid fills could catch neither.
2026-09-17 21:53:17 +01:00

188 lines
6.8 KiB
Swift

import AppKit
import CoreGraphics
import Foundation
import XCTest
@testable import ICCery
/// Issue #201 Phase 3 — `TargetPageCanvasView` bottom-up page stacking,
/// snapped top-left anchoring, and the draw-time interpolation /
/// antialias contract asserted via `drawProbe`.
@MainActor
final class TargetCanvasGeometryTests: XCTestCase {
/// A4-ish paper, points.
private let paperSize = NSSize(width: 595.28, height: 841.89)
private func raster(
pixelWidth: Int = 2480,
pixelHeight: Int = 3508,
dpi: Double = 300
) -> TargetPageRaster {
let image = TargetTestFixtures.makeImage(
px: CGSize(width: 8, height: 8),
components: 3, bitsPerComponent: 8)!
return TargetPageRaster(
sourceURL: URL(fileURLWithPath: "/fixture.tiff"),
cgImage: image,
pixelWidth: pixelWidth,
pixelHeight: pixelHeight,
dpiX: dpi, dpiY: dpi,
componentCount: 3,
bitsPerComponent: 8,
expectedWidthMm: nil,
expectedHeightMm: nil)
}
// MARK: - Page stacking
/// Bottom-up space: page 1 is the BOTTOM band of the frame — the
/// non-flipped pagination convention (#211).
func testRectForPageStacksBottomUp() {
let view = TargetPageCanvasView(
pages: [raster(), raster(), raster()],
paperSize: paperSize)
XCTAssertFalse(view.isFlipped)
let page1 = view.rectForPage(1)
let page3 = view.rectForPage(3)
XCTAssertEqual(page1.minY, 0, accuracy: 0.001)
XCTAssertEqual(page3.minY, 2 * paperSize.height, accuracy: 0.001)
XCTAssertEqual(page1.size, paperSize)
XCTAssertEqual(page3.size, paperSize)
}
func testKnowsPageRangeAndFrame() {
let view = TargetPageCanvasView(
pages: [raster(), raster()],
paperSize: paperSize)
var range = NSRange()
XCTAssertTrue(view.knowsPageRange(&range))
XCTAssertEqual(range, NSRange(location: 1, length: 2))
XCTAssertEqual(
view.frame.height, 2 * paperSize.height, accuracy: 0.001)
XCTAssertEqual(view.frame.width, paperSize.width, accuracy: 0.001)
}
// MARK: - Destination rect
func testDestinationRectAnchorsTopLeftAndSnaps() {
let view = TargetPageCanvasView(
pages: [raster(), raster()],
paperSize: paperSize)
// Near-full-page raster: in bottom-up space the page's top
// edge is `maxY`, so the top-anchored origin is ~0.03 pt
// negative — the overflow clips at the BOTTOM of the sheet.
let first = view.destinationRect(forPage: 1)
XCTAssertEqual(first.origin.x, 0, accuracy: 0.001)
XCTAssertEqual(first.origin.y, -0.03, accuracy: 0.001)
XCTAssertEqual(first.width, 595.2, accuracy: 0.01)
XCTAssertEqual(first.height, 841.92, accuracy: 0.01)
let second = view.destinationRect(forPage: 2)
XCTAssertEqual(
second.origin.y,
2 * paperSize.height - first.height, accuracy: 0.001)
XCTAssertEqual(second.size, first.size)
// A raster smaller than the paper hangs from the page's TOP
// edge — minY would anchor it at the bottom (#211 follow-up).
let small = TargetPageCanvasView(
pages: [raster(pixelWidth: 72, pixelHeight: 72, dpi: 72)],
paperSize: paperSize)
let smallRect = small.destinationRect(forPage: 1)
XCTAssertEqual(smallRect.origin.x, 0, accuracy: 0.001)
XCTAssertEqual(
smallRect.origin.y, paperSize.height - 72, accuracy: 0.001)
XCTAssertEqual(smallRect.size, CGSize(width: 72, height: 72))
for rect in [first, second, smallRect] {
XCTAssertEqual(
rect.origin.x * 1000,
(rect.origin.x * 1000).rounded(),
accuracy: 1e-9)
XCTAssertEqual(
rect.origin.y * 1000,
(rect.origin.y * 1000).rounded(),
accuracy: 1e-9)
}
}
// MARK: - Draw flags
/// Render the canvas into an offscreen bitmap context and assert —
/// from inside `drawProbe` — that interpolation and antialiasing
/// are off and the drawn rect is `destinationRect(forPage:)`.
func testDrawDisablesInterpolationAndAntialias() throws {
let pages = [raster(), raster()]
let view = TargetPageCanvasView(
pages: pages, paperSize: paperSize)
let rep = try XCTUnwrap(NSBitmapImageRep(
bitmapDataPlanes: nil,
pixelsWide: Int(ceil(view.frame.width)),
pixelsHigh: Int(ceil(view.frame.height)),
bitsPerSample: 8,
samplesPerPixel: 4,
hasAlpha: true,
isPlanar: false,
colorSpaceName: .deviceRGB,
bytesPerRow: 0,
bitsPerPixel: 0))
let context = try XCTUnwrap(
NSGraphicsContext(bitmapImageRep: rep))
var probed: [(page: Int, rect: NSRect)] = []
view.drawProbe = { ctx, page, rect in
XCTAssertEqual(ctx.imageInterpolation, .none,
"page \(page): interpolation not .none")
XCTAssertFalse(ctx.shouldAntialias,
"page \(page): antialiasing still on")
probed.append((page, rect))
}
NSGraphicsContext.saveGraphicsState()
NSGraphicsContext.current = context
view.draw(view.bounds)
NSGraphicsContext.restoreGraphicsState()
XCTAssertEqual(probed.count, pages.count)
for (page, rect) in probed {
XCTAssertEqual(
rect, view.destinationRect(forPage: page),
"page \(page): probe rect mismatch")
}
}
/// A dirty rect covering only page 2's band must draw only page 2.
func testDrawSkipsPagesOutsideDirtyRect() throws {
let view = TargetPageCanvasView(
pages: [raster(), raster(), raster()],
paperSize: paperSize)
let rep = try XCTUnwrap(NSBitmapImageRep(
bitmapDataPlanes: nil,
pixelsWide: Int(ceil(view.frame.width)),
pixelsHigh: Int(ceil(view.frame.height)),
bitsPerSample: 8,
samplesPerPixel: 4,
hasAlpha: true,
isPlanar: false,
colorSpaceName: .deviceRGB,
bytesPerRow: 0,
bitsPerPixel: 0))
let context = try XCTUnwrap(
NSGraphicsContext(bitmapImageRep: rep))
var probedPages: [Int] = []
view.drawProbe = { _, page, _ in probedPages.append(page) }
NSGraphicsContext.saveGraphicsState()
NSGraphicsContext.current = context
view.draw(view.rectForPage(2))
NSGraphicsContext.restoreGraphicsState()
XCTAssertEqual(probedPages, [2])
}
}