ImageProcessor.swift 23 KB

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  1. //
  2. // ImageProcessor.swift
  3. // Kingfisher
  4. //
  5. // Created by Wei Wang on 2016/08/26.
  6. //
  7. // Copyright (c) 2017 Wei Wang <onevcat@gmail.com>
  8. //
  9. // Permission is hereby granted, free of charge, to any person obtaining a copy
  10. // of this software and associated documentation files (the "Software"), to deal
  11. // in the Software without restriction, including without limitation the rights
  12. // to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  13. // copies of the Software, and to permit persons to whom the Software is
  14. // furnished to do so, subject to the following conditions:
  15. //
  16. // The above copyright notice and this permission notice shall be included in
  17. // all copies or substantial portions of the Software.
  18. //
  19. // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  20. // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  21. // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  22. // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  23. // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  24. // OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
  25. // THE SOFTWARE.
  26. import Foundation
  27. import CoreGraphics
  28. /// The item which could be processed by an `ImageProcessor`
  29. ///
  30. /// - image: Input image
  31. /// - data: Input data
  32. public enum ImageProcessItem {
  33. case image(Image)
  34. case data(Data)
  35. }
  36. /// An `ImageProcessor` would be used to convert some downloaded data to an image.
  37. public protocol ImageProcessor {
  38. /// Identifier of the processor. It will be used to identify the processor when
  39. /// caching and retriving an image. You might want to make sure that processors with
  40. /// same properties/functionality have the same identifiers, so correct processed images
  41. /// could be retrived with proper key.
  42. ///
  43. /// - Note: Do not supply an empty string for a customized processor, which is already taken by
  44. /// the `DefaultImageProcessor`. It is recommended to use a reverse domain name notation
  45. /// string of your own for the identifier.
  46. var identifier: String { get }
  47. /// Process an input `ImageProcessItem` item to an image for this processor.
  48. ///
  49. /// - parameter item: Input item which will be processed by `self`
  50. /// - parameter options: Options when processing the item.
  51. ///
  52. /// - returns: The processed image.
  53. ///
  54. /// - Note: The return value will be `nil` if processing failed while converting data to image.
  55. /// If input item is already an image and there is any errors in processing, the input
  56. /// image itself will be returned.
  57. /// - Note: Most processor only supports CG-based images.
  58. /// watchOS is not supported for processers containing filter, the input image will be returned directly on watchOS.
  59. func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image?
  60. }
  61. typealias ProcessorImp = ((ImageProcessItem, KingfisherOptionsInfo) -> Image?)
  62. public extension ImageProcessor {
  63. /// Append an `ImageProcessor` to another. The identifier of the new `ImageProcessor`
  64. /// will be "\(self.identifier)|>\(another.identifier)".
  65. ///
  66. /// - parameter another: An `ImageProcessor` you want to append to `self`.
  67. ///
  68. /// - returns: The new `ImageProcessor` will process the image in the order
  69. /// of the two processors concatenated.
  70. public func append(another: ImageProcessor) -> ImageProcessor {
  71. let newIdentifier = identifier.appending("|>\(another.identifier)")
  72. return GeneralProcessor(identifier: newIdentifier) {
  73. item, options in
  74. if let image = self.process(item: item, options: options) {
  75. return another.process(item: .image(image), options: options)
  76. } else {
  77. return nil
  78. }
  79. }
  80. }
  81. }
  82. func ==(left: ImageProcessor, right: ImageProcessor) -> Bool {
  83. return left.identifier == right.identifier
  84. }
  85. func !=(left: ImageProcessor, right: ImageProcessor) -> Bool {
  86. return !(left == right)
  87. }
  88. fileprivate struct GeneralProcessor: ImageProcessor {
  89. let identifier: String
  90. let p: ProcessorImp
  91. func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image? {
  92. return p(item, options)
  93. }
  94. }
  95. /// The default processor. It convert the input data to a valid image.
  96. /// Images of .PNG, .JPEG and .GIF format are supported.
  97. /// If an image is given, `DefaultImageProcessor` will do nothing on it and just return that image.
  98. public struct DefaultImageProcessor: ImageProcessor {
  99. /// A default `DefaultImageProcessor` could be used across.
  100. public static let `default` = DefaultImageProcessor()
  101. /// Identifier of the processor.
  102. /// - Note: See documentation of `ImageProcessor` protocol for more.
  103. public let identifier = ""
  104. /// Initialize a `DefaultImageProcessor`
  105. public init() {}
  106. /// Process an input `ImageProcessItem` item to an image for this processor.
  107. ///
  108. /// - parameter item: Input item which will be processed by `self`
  109. /// - parameter options: Options when processing the item.
  110. ///
  111. /// - returns: The processed image.
  112. ///
  113. /// - Note: See documentation of `ImageProcessor` protocol for more.
  114. public func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image? {
  115. switch item {
  116. case .image(let image):
  117. return image
  118. case .data(let data):
  119. return Kingfisher<Image>.image(
  120. data: data,
  121. scale: options.scaleFactor,
  122. preloadAllAnimationData: options.preloadAllAnimationData,
  123. onlyFirstFrame: options.onlyLoadFirstFrame)
  124. }
  125. }
  126. }
  127. public struct RectCorner: OptionSet {
  128. public let rawValue: Int
  129. public static let topLeft = RectCorner(rawValue: 1 << 0)
  130. public static let topRight = RectCorner(rawValue: 1 << 1)
  131. public static let bottomLeft = RectCorner(rawValue: 1 << 2)
  132. public static let bottomRight = RectCorner(rawValue: 1 << 3)
  133. public static let all: RectCorner = [.topLeft, .topRight, .bottomLeft, .bottomRight]
  134. public init(rawValue: Int) {
  135. self.rawValue = rawValue
  136. }
  137. var cornerIdentifier: String {
  138. if self == .all {
  139. return ""
  140. }
  141. return "_corner(\(rawValue))"
  142. }
  143. }
  144. /// Processor for making round corner images. Only CG-based images are supported in macOS,
  145. /// if a non-CG image passed in, the processor will do nothing.
  146. public struct RoundCornerImageProcessor: ImageProcessor {
  147. /// Identifier of the processor.
  148. /// - Note: See documentation of `ImageProcessor` protocol for more.
  149. public let identifier: String
  150. /// Corner radius will be applied in processing.
  151. public let cornerRadius: CGFloat
  152. /// The target corners which will be applied rounding.
  153. public let roundingCorners: RectCorner
  154. /// Target size of output image should be. If `nil`, the image will keep its original size after processing.
  155. public let targetSize: CGSize?
  156. /// Background color of the output image. If `nil`, it will stay transparent.
  157. public let backgroundColor: Color?
  158. /// Initialize a `RoundCornerImageProcessor`
  159. ///
  160. /// - parameter cornerRadius: Corner radius will be applied in processing.
  161. /// - parameter targetSize: Target size of output image should be. If `nil`,
  162. /// the image will keep its original size after processing.
  163. /// Default is `nil`.
  164. /// - parameter corners: The target corners which will be applied rounding. Default is `.all`.
  165. /// - parameter backgroundColor: Backgroud color to apply for the output image. Default is `nil`.
  166. public init(cornerRadius: CGFloat, targetSize: CGSize? = nil, roundingCorners corners: RectCorner = .all, backgroundColor: Color? = nil) {
  167. self.cornerRadius = cornerRadius
  168. self.targetSize = targetSize
  169. self.roundingCorners = corners
  170. self.backgroundColor = backgroundColor
  171. self.identifier = {
  172. var identifier = ""
  173. if let size = targetSize {
  174. identifier = "com.onevcat.Kingfisher.RoundCornerImageProcessor(\(cornerRadius)_\(size)\(corners.cornerIdentifier))"
  175. } else {
  176. identifier = "com.onevcat.Kingfisher.RoundCornerImageProcessor(\(cornerRadius)\(corners.cornerIdentifier))"
  177. }
  178. if let backgroundColor = backgroundColor {
  179. identifier += "_\(backgroundColor)"
  180. }
  181. return identifier
  182. }()
  183. }
  184. /// Process an input `ImageProcessItem` item to an image for this processor.
  185. ///
  186. /// - parameter item: Input item which will be processed by `self`
  187. /// - parameter options: Options when processing the item.
  188. ///
  189. /// - returns: The processed image.
  190. ///
  191. /// - Note: See documentation of `ImageProcessor` protocol for more.
  192. public func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image? {
  193. switch item {
  194. case .image(let image):
  195. let size = targetSize ?? image.kf.size
  196. return image.kf.image(withRoundRadius: cornerRadius, fit: size, roundingCorners: roundingCorners, backgroundColor: backgroundColor)
  197. case .data(_):
  198. return (DefaultImageProcessor.default >> self).process(item: item, options: options)
  199. }
  200. }
  201. }
  202. /// Specify how a size adjusts itself to fit a target size.
  203. ///
  204. /// - none: Not scale the content.
  205. /// - aspectFit: Scale the content to fit the size of the view by maintaining the aspect ratio.
  206. /// - aspectFill: Scale the content to fill the size of the view
  207. public enum ContentMode {
  208. case none
  209. case aspectFit
  210. case aspectFill
  211. }
  212. /// Processor for resizing images. Only CG-based images are supported in macOS.
  213. public struct ResizingImageProcessor: ImageProcessor {
  214. /// Identifier of the processor.
  215. /// - Note: See documentation of `ImageProcessor` protocol for more.
  216. public let identifier: String
  217. /// The reference size for resizing operation.
  218. public let referenceSize: CGSize
  219. /// Target content mode of output image should be.
  220. /// Default to ContentMode.none
  221. public let targetContentMode: ContentMode
  222. /// Initialize a `ResizingImageProcessor`.
  223. ///
  224. /// - Parameters:
  225. /// - referenceSize: The reference size for resizing operation.
  226. /// - mode: Target content mode of output image should be.
  227. ///
  228. /// - Note:
  229. /// The instance of `ResizingImageProcessor` will follow its `mode` property
  230. /// and try to resizing the input images to fit or fill the `referenceSize`.
  231. /// That means if you are using a `mode` besides of `.none`, you may get an
  232. /// image with its size not be the same as the `referenceSize`.
  233. ///
  234. /// **Example**: With input image size: {100, 200},
  235. /// `referenceSize`: {100, 100}, `mode`: `.aspectFit`,
  236. /// you will get an output image with size of {50, 100}, which "fit"s
  237. /// the `referenceSize`.
  238. ///
  239. /// If you need an output image exactly to be a specified size, append or use
  240. /// a `CroppingImageProcessor`.
  241. public init(referenceSize: CGSize, mode: ContentMode = .none) {
  242. self.referenceSize = referenceSize
  243. self.targetContentMode = mode
  244. if mode == .none {
  245. self.identifier = "com.onevcat.Kingfisher.ResizingImageProcessor(\(referenceSize))"
  246. } else {
  247. self.identifier = "com.onevcat.Kingfisher.ResizingImageProcessor(\(referenceSize), \(mode))"
  248. }
  249. }
  250. /// Process an input `ImageProcessItem` item to an image for this processor.
  251. ///
  252. /// - parameter item: Input item which will be processed by `self`
  253. /// - parameter options: Options when processing the item.
  254. ///
  255. /// - returns: The processed image.
  256. ///
  257. /// - Note: See documentation of `ImageProcessor` protocol for more.
  258. public func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image? {
  259. switch item {
  260. case .image(let image):
  261. return image.kf.resize(to: referenceSize, for: targetContentMode)
  262. case .data(_):
  263. return (DefaultImageProcessor.default >> self).process(item: item, options: options)
  264. }
  265. }
  266. }
  267. /// Processor for adding blur effect to images. `Accelerate.framework` is used underhood for
  268. /// a better performance. A simulated Gaussian blur with specified blur radius will be applied.
  269. public struct BlurImageProcessor: ImageProcessor {
  270. /// Identifier of the processor.
  271. /// - Note: See documentation of `ImageProcessor` protocol for more.
  272. public let identifier: String
  273. /// Blur radius for the simulated Gaussian blur.
  274. public let blurRadius: CGFloat
  275. /// Initialize a `BlurImageProcessor`
  276. ///
  277. /// - parameter blurRadius: Blur radius for the simulated Gaussian blur.
  278. public init(blurRadius: CGFloat) {
  279. self.blurRadius = blurRadius
  280. self.identifier = "com.onevcat.Kingfisher.BlurImageProcessor(\(blurRadius))"
  281. }
  282. /// Process an input `ImageProcessItem` item to an image for this processor.
  283. ///
  284. /// - parameter item: Input item which will be processed by `self`
  285. /// - parameter options: Options when processing the item.
  286. ///
  287. /// - returns: The processed image.
  288. ///
  289. /// - Note: See documentation of `ImageProcessor` protocol for more.
  290. public func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image? {
  291. switch item {
  292. case .image(let image):
  293. let radius = blurRadius * options.scaleFactor
  294. return image.kf.blurred(withRadius: radius)
  295. case .data(_):
  296. return (DefaultImageProcessor.default >> self).process(item: item, options: options)
  297. }
  298. }
  299. }
  300. /// Processor for adding an overlay to images. Only CG-based images are supported in macOS.
  301. public struct OverlayImageProcessor: ImageProcessor {
  302. /// Identifier of the processor.
  303. /// - Note: See documentation of `ImageProcessor` protocol for more.
  304. public let identifier: String
  305. /// Overlay color will be used to overlay the input image.
  306. public let overlay: Color
  307. /// Fraction will be used when overlay the color to image.
  308. public let fraction: CGFloat
  309. /// Initialize an `OverlayImageProcessor`
  310. ///
  311. /// - parameter overlay: Overlay color will be used to overlay the input image.
  312. /// - parameter fraction: Fraction will be used when overlay the color to image.
  313. /// From 0.0 to 1.0. 0.0 means solid color, 1.0 means transparent overlay.
  314. public init(overlay: Color, fraction: CGFloat = 0.5) {
  315. self.overlay = overlay
  316. self.fraction = fraction
  317. self.identifier = "com.onevcat.Kingfisher.OverlayImageProcessor(\(overlay.hex)_\(fraction))"
  318. }
  319. /// Process an input `ImageProcessItem` item to an image for this processor.
  320. ///
  321. /// - parameter item: Input item which will be processed by `self`
  322. /// - parameter options: Options when processing the item.
  323. ///
  324. /// - returns: The processed image.
  325. ///
  326. /// - Note: See documentation of `ImageProcessor` protocol for more.
  327. public func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image? {
  328. switch item {
  329. case .image(let image):
  330. return image.kf.overlaying(with: overlay, fraction: fraction)
  331. case .data(_):
  332. return (DefaultImageProcessor.default >> self).process(item: item, options: options)
  333. }
  334. }
  335. }
  336. /// Processor for tint images with color. Only CG-based images are supported.
  337. public struct TintImageProcessor: ImageProcessor {
  338. /// Identifier of the processor.
  339. /// - Note: See documentation of `ImageProcessor` protocol for more.
  340. public let identifier: String
  341. /// Tint color will be used to tint the input image.
  342. public let tint: Color
  343. /// Initialize a `TintImageProcessor`
  344. ///
  345. /// - parameter tint: Tint color will be used to tint the input image.
  346. public init(tint: Color) {
  347. self.tint = tint
  348. self.identifier = "com.onevcat.Kingfisher.TintImageProcessor(\(tint.hex))"
  349. }
  350. /// Process an input `ImageProcessItem` item to an image for this processor.
  351. ///
  352. /// - parameter item: Input item which will be processed by `self`
  353. /// - parameter options: Options when processing the item.
  354. ///
  355. /// - returns: The processed image.
  356. ///
  357. /// - Note: See documentation of `ImageProcessor` protocol for more.
  358. public func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image? {
  359. switch item {
  360. case .image(let image):
  361. return image.kf.tinted(with: tint)
  362. case .data(_):
  363. return (DefaultImageProcessor.default >> self).process(item: item, options: options)
  364. }
  365. }
  366. }
  367. /// Processor for applying some color control to images. Only CG-based images are supported.
  368. /// watchOS is not supported.
  369. public struct ColorControlsProcessor: ImageProcessor {
  370. /// Identifier of the processor.
  371. /// - Note: See documentation of `ImageProcessor` protocol for more.
  372. public let identifier: String
  373. /// Brightness changing to image.
  374. public let brightness: CGFloat
  375. /// Contrast changing to image.
  376. public let contrast: CGFloat
  377. /// Saturation changing to image.
  378. public let saturation: CGFloat
  379. /// InputEV changing to image.
  380. public let inputEV: CGFloat
  381. /// Initialize a `ColorControlsProcessor`
  382. ///
  383. /// - parameter brightness: Brightness changing to image.
  384. /// - parameter contrast: Contrast changing to image.
  385. /// - parameter saturation: Saturation changing to image.
  386. /// - parameter inputEV: InputEV changing to image.
  387. public init(brightness: CGFloat, contrast: CGFloat, saturation: CGFloat, inputEV: CGFloat) {
  388. self.brightness = brightness
  389. self.contrast = contrast
  390. self.saturation = saturation
  391. self.inputEV = inputEV
  392. self.identifier = "com.onevcat.Kingfisher.ColorControlsProcessor(\(brightness)_\(contrast)_\(saturation)_\(inputEV))"
  393. }
  394. /// Process an input `ImageProcessItem` item to an image for this processor.
  395. ///
  396. /// - parameter item: Input item which will be processed by `self`
  397. /// - parameter options: Options when processing the item.
  398. ///
  399. /// - returns: The processed image.
  400. ///
  401. /// - Note: See documentation of `ImageProcessor` protocol for more.
  402. public func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image? {
  403. switch item {
  404. case .image(let image):
  405. return image.kf.adjusted(brightness: brightness, contrast: contrast, saturation: saturation, inputEV: inputEV)
  406. case .data(_):
  407. return (DefaultImageProcessor.default >> self).process(item: item, options: options)
  408. }
  409. }
  410. }
  411. /// Processor for applying black and white effect to images. Only CG-based images are supported.
  412. /// watchOS is not supported.
  413. public struct BlackWhiteProcessor: ImageProcessor {
  414. /// Identifier of the processor.
  415. /// - Note: See documentation of `ImageProcessor` protocol for more.
  416. public let identifier = "com.onevcat.Kingfisher.BlackWhiteProcessor"
  417. /// Initialize a `BlackWhiteProcessor`
  418. public init() {}
  419. /// Process an input `ImageProcessItem` item to an image for this processor.
  420. ///
  421. /// - parameter item: Input item which will be processed by `self`
  422. /// - parameter options: Options when processing the item.
  423. ///
  424. /// - returns: The processed image.
  425. ///
  426. /// - Note: See documentation of `ImageProcessor` protocol for more.
  427. public func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image? {
  428. return ColorControlsProcessor(brightness: 0.0, contrast: 1.0, saturation: 0.0, inputEV: 0.7)
  429. .process(item: item, options: options)
  430. }
  431. }
  432. /// Processor for cropping an image. Only CG-based images are supported.
  433. /// watchOS is not supported.
  434. public struct CroppingImageProcessor: ImageProcessor {
  435. /// Identifier of the processor.
  436. /// - Note: See documentation of `ImageProcessor` protocol for more.
  437. public let identifier: String
  438. /// Target size of output image should be.
  439. public let size: CGSize
  440. /// Anchor point from which the output size should be calculate.
  441. /// The anchor point is consisted by two values between 0.0 and 1.0.
  442. /// It indicates a related point in current image.
  443. /// See `CroppingImageProcessor.init(size:anchor:)` for more.
  444. public let anchor: CGPoint
  445. /// Initialize a `CroppingImageProcessor`
  446. ///
  447. /// - Parameters:
  448. /// - size: Target size of output image should be.
  449. /// - anchor: The anchor point from which the size should be calculated.
  450. /// Default is `CGPoint(x: 0.5, y: 0.5)`, which means the center of input image.
  451. /// - Note:
  452. /// The anchor point is consisted by two values between 0.0 and 1.0.
  453. /// It indicates a related point in current image, eg: (0.0, 0.0) for top-left
  454. /// corner, (0.5, 0.5) for center and (1.0, 1.0) for bottom-right corner.
  455. /// The `size` property of `CroppingImageProcessor` will be used along with
  456. /// `anchor` to calculate a target rectange in the size of image.
  457. ///
  458. /// The target size will be automatically calculated with a reasonable behavior.
  459. /// For example, when you have an image size of `CGSize(width: 100, height: 100)`,
  460. /// and a target size of `CGSize(width: 20, height: 20)`:
  461. /// - with a (0.0, 0.0) anchor (top-left), the crop rect will be `{0, 0, 20, 20}`;
  462. /// - with a (0.5, 0.5) anchor (center), it will be `{40, 40, 20, 20}`
  463. /// - while with a (1.0, 1.0) anchor (bottom-right), it will be `{80, 80, 20, 20}`
  464. public init(size: CGSize, anchor: CGPoint = CGPoint(x: 0.5, y: 0.5)) {
  465. self.size = size
  466. self.anchor = anchor
  467. self.identifier = "com.onevcat.Kingfisher.CroppingImageProcessor(\(size)_\(anchor))"
  468. }
  469. /// Process an input `ImageProcessItem` item to an image for this processor.
  470. ///
  471. /// - parameter item: Input item which will be processed by `self`
  472. /// - parameter options: Options when processing the item.
  473. ///
  474. /// - returns: The processed image.
  475. ///
  476. /// - Note: See documentation of `ImageProcessor` protocol for more.
  477. public func process(item: ImageProcessItem, options: KingfisherOptionsInfo) -> Image? {
  478. switch item {
  479. case .image(let image):
  480. return image.kf.crop(to: size, anchorOn: anchor)
  481. case .data(_): return (DefaultImageProcessor.default >> self).process(item: item, options: options)
  482. }
  483. }
  484. }
  485. /// Concatenate two `ImageProcessor`s. `ImageProcessor.appen(another:)` is used internally.
  486. ///
  487. /// - parameter left: First processor.
  488. /// - parameter right: Second processor.
  489. ///
  490. /// - returns: The concatenated processor.
  491. public func >>(left: ImageProcessor, right: ImageProcessor) -> ImageProcessor {
  492. return left.append(another: right)
  493. }
  494. fileprivate extension Color {
  495. var hex: String {
  496. var r: CGFloat = 0
  497. var g: CGFloat = 0
  498. var b: CGFloat = 0
  499. var a: CGFloat = 0
  500. getRed(&r, green: &g, blue: &b, alpha: &a)
  501. let rInt = Int(r * 255) << 24
  502. let gInt = Int(g * 255) << 16
  503. let bInt = Int(b * 255) << 8
  504. let aInt = Int(a * 255)
  505. let rgba = rInt | gInt | bInt | aInt
  506. return String(format:"#%08x", rgba)
  507. }
  508. }