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gronod a2f994821f
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feat(print): 1:1 TIFF raster loader and headless page canvas (#201 Phase 3)
TargetRasterLoader decodes printtarg TIFFs via ImageIO and re-tags
into DeviceGray/DeviceRGB/DeviceCMYK around the decoder's own
dataProvider — no resample, no bit-depth change (D10). Skip-only
alpha padding (noneSkipLast/First, which ImageIO emits for opaque
RGB TIFFs) is accepted; real coverage alpha, indexed, float and
non-1/3/4-component layouts are rejected as unsupportedLayout.
DPI metadata drives pointSize (px/dpi*72) with a 72 dpi fallback +
warn; manifestDrift reports >0.5 mm disagreement with the printtarg
manifest (D9).

TargetPageCanvasView is the headless flipped canvas NSPrintOperation
paginates: rectForPage stacks pages top-down, destinationRect anchors
1:1 at the page's top-left snapped to 0.001 pt, and draw() forces
interpolation/antialias/font-smoothing off per page with a drawProbe
seam for tests.

PDF harness (NativeSpoolPDFTests, skippable via ICCERY_SKIP_PRINT_PDF=1)
ran on this host: run() -> true, 2 pages at A4 media box, and the
fixture's 72 pt patch verified 1:1 at the painted top-left (printer
unprintable-margin offset tolerated per R10).
2026-09-17 14:57:24 +01:00

222 lines
8.3 KiB
Swift

import CoreGraphics
import Foundation
import ICCeryCore
import ImageIO
/// One decoded target page ready to draw 1:1 (#201, docs/14 §6).
struct TargetPageRaster: Equatable {
let sourceURL: URL
/// Re-tagged into a **device** colour space — the image Quartz draws.
let cgImage: CGImage
let pixelWidth: Int
let pixelHeight: Int
let dpiX: Double
let dpiY: Double
let componentCount: Int
let bitsPerComponent: Int
/// Expected physical size from the printtarg manifest, when known.
let expectedWidthMm: Double?
let expectedHeightMm: Double?
/// `pixels / dpi * 72`. The ONLY size the canvas ever draws at.
/// 72 pt = 1 in. **Never** `backingScaleFactor` (docs/14 §6).
var pointSize: CGSize {
CGSize(width: Double(pixelWidth) / dpiX * 72,
height: Double(pixelHeight) / dpiY * 72)
}
/// `pixels / dpi * 25.4` — the physical size the DPI implies.
var physicalMm: CGSize {
CGSize(width: Double(pixelWidth) / dpiX * 25.4,
height: Double(pixelHeight) / dpiY * 25.4)
}
/// `nil` when within 0.5 mm of the manifest, else the drift
/// message (D9 — warn + spool, never rescale).
var manifestDrift: String? {
var parts: [String] = []
if let expectedWidthMm,
abs(physicalMm.width - expectedWidthMm) > 0.5 {
parts.append(String(
format: "width %.2f mm vs manifest %.2f mm",
physicalMm.width, expectedWidthMm))
}
if let expectedHeightMm,
abs(physicalMm.height - expectedHeightMm) > 0.5 {
parts.append(String(
format: "height %.2f mm vs manifest %.2f mm",
physicalMm.height, expectedHeightMm))
}
guard !parts.isEmpty else { return nil }
return "TIFF DPI disagrees with the printtarg manifest — "
+ parts.joined(separator: "; ")
}
static func == (lhs: TargetPageRaster, rhs: TargetPageRaster) -> Bool {
lhs.sourceURL == rhs.sourceURL
&& lhs.cgImage === rhs.cgImage
&& lhs.pixelWidth == rhs.pixelWidth
&& lhs.pixelHeight == rhs.pixelHeight
&& lhs.dpiX == rhs.dpiX
&& lhs.dpiY == rhs.dpiY
&& lhs.componentCount == rhs.componentCount
&& lhs.bitsPerComponent == rhs.bitsPerComponent
&& lhs.expectedWidthMm == rhs.expectedWidthMm
&& lhs.expectedHeightMm == rhs.expectedHeightMm
}
}
enum TargetRasterError: LocalizedError, Equatable {
case tiffMissing(String)
case undecodable(String)
case unsupportedLayout(path: String, components: Int,
bitsPerComponent: Int, hasAlpha: Bool)
var errorDescription: String? {
switch self {
case .tiffMissing(let path):
return "Target TIFF is missing: \(path)"
case .undecodable(let path):
return "Target TIFF could not be decoded: \(path)"
case .unsupportedLayout(let path, let components,
let bitsPerComponent, let hasAlpha):
return "Target TIFF has an unsupported layout "
+ "(\(components) components, \(bitsPerComponent) bpc"
+ "\(hasAlpha ? ", alpha" : "")): \(path)"
}
}
}
enum TargetRasterLoader {
/// Absent DPI metadata defaults to 72 (docs/14 §6) — and logs `warn`.
static let fallbackDPI: Double = 72
static func load(
tiff url: URL,
expectedWidthMm: Double? = nil,
expectedHeightMm: Double? = nil
) throws -> TargetPageRaster {
guard FileManager.default.fileExists(atPath: url.path) else {
throw TargetRasterError.tiffMissing(url.path)
}
guard let source = CGImageSourceCreateWithURL(url as CFURL, nil)
else {
throw TargetRasterError.undecodable(url.path)
}
let options: [CFString: Any] = [
kCGImageSourceShouldCache: true,
kCGImageSourceShouldAllowFloat: false,
]
guard let image = CGImageSourceCreateImageAtIndex(
source, 0, options as CFDictionary)
else {
throw TargetRasterError.undecodable(url.path)
}
// DPI lives in the container metadata, not the CGImage.
var dpiX = fallbackDPI
var dpiY = fallbackDPI
var foundX = false
var foundY = false
if let properties = CGImageSourceCopyPropertiesAtIndex(
source, 0, nil) as? [CFString: Any] {
if let x = (properties[kCGImagePropertyDPIWidth]
as? NSNumber)?.doubleValue, x > 0 {
dpiX = x
foundX = true
}
if let y = (properties[kCGImagePropertyDPIHeight]
as? NSNumber)?.doubleValue, y > 0 {
dpiY = y
foundY = true
}
}
if !foundX || !foundY {
AppLogger.shared.warn(
"TargetRaster: '\(url.lastPathComponent)' carries no "
+ "usable DPI metadata — assuming \(fallbackDPI) dpi")
}
let components = image.colorSpace?.numberOfComponents ?? 0
guard !Self.hasRealAlpha(image), let tagged = deviceTagged(image)
else {
throw TargetRasterError.unsupportedLayout(
path: url.path,
components: components,
bitsPerComponent: image.bitsPerComponent,
hasAlpha: Self.hasRealAlpha(image))
}
return TargetPageRaster(
sourceURL: url,
cgImage: tagged,
pixelWidth: image.width,
pixelHeight: image.height,
dpiX: dpiX,
dpiY: dpiY,
componentCount: components,
bitsPerComponent: image.bitsPerComponent,
expectedWidthMm: expectedWidthMm,
expectedHeightMm: expectedHeightMm)
}
/// Re-tag into `DeviceGray` (1 comp) / `DeviceRGB` (3) /
/// `DeviceCMYK` (4) by reusing the decoded image's own
/// `dataProvider`, `bitsPerComponent`, `bitsPerPixel`, `bytesPerRow`
/// and `bitmapInfo` — **no resample, no bit-depth change, no
/// `CGImageCreateCopyWithColorSpace` into a calibrated space**
/// (docs/14 §6.3). `shouldInterpolate: false`,
/// `intent: .defaultIntent`.
///
/// Returns `nil` (caller throws `.unsupportedLayout`) for alpha,
/// indexed, float, or >4-component images — a profiling target
/// never has those, and guessing would corrupt patches.
static func deviceTagged(_ image: CGImage) -> CGImage? {
guard !hasRealAlpha(image),
!image.bitmapInfo.contains(.floatComponents),
let colorSpace = image.colorSpace,
colorSpace.model != .indexed,
colorSpace.model != .pattern,
let space = deviceSpace(for: colorSpace.numberOfComponents),
let provider = image.dataProvider
else { return nil }
return CGImage(
width: image.width,
height: image.height,
bitsPerComponent: image.bitsPerComponent,
bitsPerPixel: image.bitsPerPixel,
bytesPerRow: image.bytesPerRow,
space: space,
bitmapInfo: image.bitmapInfo,
provider: provider,
decode: image.decode,
shouldInterpolate: false,
intent: .defaultIntent)
}
/// Skip-only padding (`noneSkipLast`/`noneSkipFirst`) is **not**
/// alpha — ImageIO pads opaque RGB TIFFs to 32 bpp that way, so
/// accepting it is required for real printtarg files. True coverage
/// alpha (`last`/`first`/`premultiplied*`/`only`) is rejected.
static func hasRealAlpha(_ image: CGImage) -> Bool {
switch image.alphaInfo {
case .none, .noneSkipLast, .noneSkipFirst:
return false
default:
return true
}
}
/// The device colour space for a component count — `nil` for
/// layouts a profiling target can never legally be (2 channels,
/// DeviceN, >4 components).
static func deviceSpace(for componentCount: Int) -> CGColorSpace? {
switch componentCount {
case 1: return CGColorSpaceCreateDeviceGray()
case 3: return CGColorSpaceCreateDeviceRGB()
case 4: return CGColorSpaceCreateDeviceCMYK()
default: return nil
}
}
}