images_test.go 8.8 KB

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  1. package imageproc
  2. import (
  3. "bytes"
  4. "image"
  5. "image/png"
  6. "reflect"
  7. "testing"
  8. )
  9. func testEq(a, b any) bool {
  10. va := reflect.ValueOf(a)
  11. vb := reflect.ValueOf(b)
  12. if va.Kind() != reflect.Slice || vb.Kind() != reflect.Slice {
  13. return false
  14. }
  15. if va.Len() != vb.Len() {
  16. return false
  17. }
  18. for i := range va.Len() {
  19. if !reflect.DeepEqual(va.Index(i).Interface(), vb.Index(i).Interface()) {
  20. return false
  21. }
  22. }
  23. return true
  24. }
  25. func TestAspectRatios(t *testing.T) {
  26. type aspectCase struct {
  27. MaxTiles int
  28. Expected []image.Point
  29. }
  30. cases := []aspectCase{
  31. {
  32. MaxTiles: 1,
  33. Expected: []image.Point{{1, 1}},
  34. },
  35. {
  36. MaxTiles: 2,
  37. Expected: []image.Point{{1, 1}, {1, 2}, {2, 1}},
  38. },
  39. {
  40. MaxTiles: 3,
  41. Expected: []image.Point{{1, 1}, {1, 2}, {1, 3}, {2, 1}, {3, 1}},
  42. },
  43. {
  44. MaxTiles: 4,
  45. Expected: []image.Point{{1, 1}, {1, 2}, {1, 3}, {1, 4}, {2, 1}, {2, 2}, {3, 1}, {4, 1}},
  46. },
  47. }
  48. for _, c := range cases {
  49. actual := GetSupportedAspectRatios(c.MaxTiles)
  50. if !testEq(actual, c.Expected) {
  51. t.Errorf("incorrect aspect ratio: '%#v'. expected: '%#v'", actual, c.Expected)
  52. }
  53. }
  54. }
  55. func TestGetImageSizeFitToCanvas(t *testing.T) {
  56. type imageSizeCase struct {
  57. ImageRect image.Point
  58. CanvasRect image.Point
  59. TileSize int
  60. Expected image.Point
  61. }
  62. cases := []imageSizeCase{
  63. {
  64. ImageRect: image.Point{400, 400},
  65. CanvasRect: image.Point{640, 480},
  66. TileSize: 200,
  67. Expected: image.Point{400, 400},
  68. },
  69. {
  70. ImageRect: image.Point{1024, 768},
  71. CanvasRect: image.Point{640, 480},
  72. TileSize: 200,
  73. Expected: image.Point{640, 480},
  74. },
  75. {
  76. ImageRect: image.Point{500, 500},
  77. CanvasRect: image.Point{1000, 1000},
  78. TileSize: 750,
  79. Expected: image.Point{750, 750},
  80. },
  81. {
  82. ImageRect: image.Point{500, 1000},
  83. CanvasRect: image.Point{2000, 2000},
  84. TileSize: 2000,
  85. Expected: image.Point{1000, 2000},
  86. },
  87. {
  88. ImageRect: image.Point{4000, 3000},
  89. CanvasRect: image.Point{2000, 1000},
  90. TileSize: 1000,
  91. Expected: image.Point{1333, 1000},
  92. },
  93. {
  94. ImageRect: image.Point{667, 1000},
  95. CanvasRect: image.Point{1000, 1000},
  96. TileSize: 560,
  97. Expected: image.Point{667, 1000},
  98. },
  99. }
  100. for _, c := range cases {
  101. actual := getImageSizeFitToCanvas(c.ImageRect, c.CanvasRect, c.TileSize)
  102. if actual != c.Expected {
  103. t.Errorf("incorrect image rect: '%#v'. expected: '%#v'", actual, c.Expected)
  104. }
  105. }
  106. }
  107. func TestGetOptimalTiledCanvas(t *testing.T) {
  108. type tiledCanvasSizeCase struct {
  109. ImageSize image.Point
  110. MaxImageTiles int
  111. TileSize int
  112. Expected image.Point
  113. }
  114. cases := []tiledCanvasSizeCase{
  115. {
  116. ImageSize: image.Point{1024, 768},
  117. MaxImageTiles: 4,
  118. TileSize: 1000,
  119. Expected: image.Point{2000, 1000},
  120. },
  121. {
  122. ImageSize: image.Point{1024, 768},
  123. MaxImageTiles: 4,
  124. TileSize: 560,
  125. Expected: image.Point{1120, 1120},
  126. },
  127. }
  128. for _, c := range cases {
  129. actual := getOptimalTiledCanvas(c.ImageSize, c.MaxImageTiles, c.TileSize)
  130. if actual != c.Expected {
  131. t.Errorf("incorrect tiled canvas: '%#v'. expected: '%#v'", actual, c.Expected)
  132. }
  133. }
  134. }
  135. func TestSplitToTiles(t *testing.T) {
  136. type splitCase struct {
  137. TestImage image.Image
  138. NumTilesSize image.Point
  139. Expected []image.Image
  140. }
  141. cases := []splitCase{
  142. {
  143. TestImage: image.NewRGBA(image.Rect(0, 0, 1024, 768)),
  144. NumTilesSize: image.Point{1, 1},
  145. Expected: []image.Image{image.NewRGBA(image.Rect(0, 0, 1024, 768))},
  146. },
  147. {
  148. TestImage: image.NewRGBA(image.Rect(0, 0, 1000, 500)),
  149. NumTilesSize: image.Point{2, 1},
  150. Expected: []image.Image{
  151. image.NewRGBA(image.Rect(0, 0, 500, 500)),
  152. image.NewRGBA(image.Rect(500, 0, 1000, 500)),
  153. },
  154. },
  155. {
  156. TestImage: image.NewRGBA(image.Rect(0, 0, 1000, 1000)),
  157. NumTilesSize: image.Point{2, 2},
  158. Expected: []image.Image{
  159. image.NewRGBA(image.Rect(0, 0, 500, 500)),
  160. image.NewRGBA(image.Rect(500, 0, 1000, 500)),
  161. image.NewRGBA(image.Rect(0, 500, 500, 1000)),
  162. image.NewRGBA(image.Rect(500, 500, 1000, 1000)),
  163. },
  164. },
  165. }
  166. for _, c := range cases {
  167. actual := splitToTiles(c.TestImage, c.NumTilesSize)
  168. if len(actual) != len(c.Expected) {
  169. t.Errorf("incorrect number of images '%d': expected: '%d'", len(actual), len(c.Expected))
  170. }
  171. for i := range actual {
  172. if actual[i].Bounds() != c.Expected[i].Bounds() {
  173. t.Errorf("image size incorrect: '%#v': expected: '%#v'", actual[i].Bounds(), c.Expected[i].Bounds())
  174. }
  175. }
  176. }
  177. }
  178. func TestResize(t *testing.T) {
  179. type resizeCase struct {
  180. TestImage image.Image
  181. OutputSize image.Point
  182. MaxImageTiles int
  183. ExpectedImage image.Image
  184. ExpectedAspectRatio image.Point
  185. }
  186. cases := []resizeCase{
  187. {
  188. TestImage: image.NewRGBA(image.Rect(0, 0, 200, 200)),
  189. OutputSize: image.Point{100, 100},
  190. MaxImageTiles: 1,
  191. ExpectedImage: image.NewRGBA(image.Rect(0, 0, 100, 100)),
  192. ExpectedAspectRatio: image.Point{1, 1},
  193. },
  194. {
  195. TestImage: image.NewRGBA(image.Rect(0, 0, 200, 200)),
  196. OutputSize: image.Point{100, 100},
  197. MaxImageTiles: 2,
  198. ExpectedImage: image.NewRGBA(image.Rect(0, 0, 100, 100)),
  199. ExpectedAspectRatio: image.Point{1, 1},
  200. },
  201. {
  202. TestImage: image.NewRGBA(image.Rect(0, 0, 10, 10)),
  203. OutputSize: image.Point{560, 560},
  204. MaxImageTiles: 4,
  205. ExpectedImage: image.NewRGBA(image.Rect(0, 0, 560, 560)),
  206. ExpectedAspectRatio: image.Point{1, 1},
  207. },
  208. {
  209. TestImage: image.NewRGBA(image.Rect(0, 0, 2560, 1920)),
  210. OutputSize: image.Point{560, 560},
  211. MaxImageTiles: 4,
  212. ExpectedImage: image.NewRGBA(image.Rect(0, 0, 1120, 840)),
  213. ExpectedAspectRatio: image.Point{2, 2},
  214. },
  215. {
  216. TestImage: image.NewRGBA(image.Rect(0, 0, 1024, 768)),
  217. OutputSize: image.Point{560, 560},
  218. MaxImageTiles: 4,
  219. ExpectedImage: image.NewRGBA(image.Rect(0, 0, 1024, 768)),
  220. ExpectedAspectRatio: image.Point{2, 2},
  221. },
  222. }
  223. for _, c := range cases {
  224. actualImage, actualAspectRatio := ResizeImage(c.TestImage, c.OutputSize, c.MaxImageTiles)
  225. if actualImage.Bounds() != c.ExpectedImage.Bounds() {
  226. t.Errorf("image size incorrect: '%#v': expected: '%#v'", actualImage.Bounds(), c.ExpectedImage.Bounds())
  227. }
  228. if actualAspectRatio != c.ExpectedAspectRatio {
  229. t.Errorf("aspect ratio incorrect: '%#v': expected: '%#v'", actualAspectRatio, c.ExpectedAspectRatio)
  230. }
  231. }
  232. }
  233. func TestPad(t *testing.T) {
  234. type padCase struct {
  235. TestImage image.Image
  236. OutputSize image.Point
  237. AspectRatio image.Point
  238. Expected image.Image
  239. }
  240. cases := []padCase{
  241. {
  242. TestImage: image.NewRGBA(image.Rect(0, 0, 1000, 667)),
  243. OutputSize: image.Point{560, 560},
  244. AspectRatio: image.Point{2, 2},
  245. Expected: image.NewRGBA(image.Rect(0, 0, 1120, 1120)),
  246. },
  247. }
  248. for _, c := range cases {
  249. actual := PadImage(c.TestImage, c.OutputSize, c.AspectRatio)
  250. if actual.Bounds() != c.Expected.Bounds() {
  251. t.Errorf("image size incorrect: '%#v': expected: '%#v'", actual.Bounds(), c.Expected.Bounds())
  252. }
  253. }
  254. }
  255. func TestPackImages(t *testing.T) {
  256. type packCase struct {
  257. TestImage image.Image
  258. AspectRatio image.Point
  259. ExpectedVals int
  260. }
  261. mean := [3]float32{0.48145466, 0.4578275, 0.40821073}
  262. std := [3]float32{0.26862954, 0.26130258, 0.27577711}
  263. cases := []packCase{
  264. {
  265. TestImage: image.NewRGBA(image.Rect(0, 0, 1120, 1120)),
  266. AspectRatio: image.Point{2, 2},
  267. ExpectedVals: 2 * 2 * 3 * 560 * 560,
  268. },
  269. {
  270. TestImage: image.NewRGBA(image.Rect(0, 0, 560, 560)),
  271. AspectRatio: image.Point{1, 1},
  272. ExpectedVals: 1 * 1 * 3 * 560 * 560,
  273. },
  274. {
  275. TestImage: image.NewRGBA(image.Rect(0, 0, 1120, 560)),
  276. AspectRatio: image.Point{1, 2},
  277. ExpectedVals: 1 * 2 * 3 * 560 * 560,
  278. },
  279. }
  280. for _, c := range cases {
  281. actualVals := PackImages(c.TestImage, c.AspectRatio, mean, std)
  282. if len(actualVals) != c.ExpectedVals {
  283. t.Errorf("packed image size incorrect: '%d': expected: '%d'", len(actualVals), c.ExpectedVals)
  284. }
  285. }
  286. }
  287. func TestPreprocess(t *testing.T) {
  288. type preprocessCase struct {
  289. TestImage image.Image
  290. ExpectedVals int
  291. ExpectedAspectRatioID int
  292. }
  293. cases := []preprocessCase{
  294. {
  295. TestImage: image.NewRGBA(image.Rect(0, 0, 10, 10)),
  296. ExpectedVals: 0,
  297. ExpectedAspectRatioID: 1,
  298. },
  299. {
  300. TestImage: image.NewRGBA(image.Rect(0, 0, 1024, 768)),
  301. ExpectedVals: 0,
  302. ExpectedAspectRatioID: 6,
  303. },
  304. }
  305. for _, c := range cases {
  306. var buf bytes.Buffer
  307. err := png.Encode(&buf, c.TestImage)
  308. if err != nil {
  309. t.Fatal(err)
  310. }
  311. imgData, aspectRatioID, err := Preprocess(buf.Bytes())
  312. if err != nil {
  313. t.Fatalf("error processing: %q", err)
  314. }
  315. if len(imgData) == 0 {
  316. t.Errorf("no image data returned")
  317. }
  318. if aspectRatioID != c.ExpectedAspectRatioID {
  319. t.Errorf("aspect ratio incorrect: '%d': expected: '%d'", aspectRatioID, c.ExpectedAspectRatioID)
  320. }
  321. }
  322. }