testautomation_surface.c 79 KB

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  1. /**
  2. * Original code: automated SDL surface test written by Edgar Simo "bobbens"
  3. * Adapted/rewritten for test lib by Andreas Schiffler
  4. */
  5. /* Suppress C4996 VS compiler warnings for unlink() */
  6. #if defined(_MSC_VER) && !defined(_CRT_SECURE_NO_DEPRECATE)
  7. #define _CRT_SECURE_NO_DEPRECATE
  8. #endif
  9. #if defined(_MSC_VER) && !defined(_CRT_NONSTDC_NO_DEPRECATE)
  10. #define _CRT_NONSTDC_NO_DEPRECATE
  11. #endif
  12. #include <stdio.h>
  13. #ifndef _MSC_VER
  14. #include <unistd.h>
  15. #endif
  16. #include <sys/stat.h>
  17. #include <SDL3/SDL.h>
  18. #include <SDL3/SDL_test.h>
  19. #include "testautomation_suites.h"
  20. #include "testautomation_images.h"
  21. #define CHECK_FUNC(FUNC, PARAMS) \
  22. { \
  23. bool result = FUNC PARAMS; \
  24. if (!result) { \
  25. SDLTest_AssertCheck(result, "Validate result from %s, expected: true, got: false, %s", #FUNC, SDL_GetError()); \
  26. } \
  27. }
  28. /* ================= Test Case Implementation ================== */
  29. /* Shared test surface */
  30. static SDL_Surface *referenceSurface = NULL;
  31. static SDL_Surface *testSurface = NULL;
  32. /* Fixture */
  33. /* Create a 32-bit writable surface for blitting tests */
  34. static void SDLCALL surfaceSetUp(void **arg)
  35. {
  36. int result;
  37. SDL_BlendMode blendMode = SDL_BLENDMODE_NONE;
  38. SDL_BlendMode currentBlendMode;
  39. referenceSurface = SDLTest_ImageBlit(); /* For size info */
  40. testSurface = SDL_CreateSurface(referenceSurface->w, referenceSurface->h, SDL_PIXELFORMAT_RGBA32);
  41. SDLTest_AssertCheck(testSurface != NULL, "Check that testSurface is not NULL");
  42. if (testSurface != NULL) {
  43. /* Disable blend mode for target surface */
  44. result = SDL_SetSurfaceBlendMode(testSurface, blendMode);
  45. SDLTest_AssertCheck(result == true, "Validate result from SDL_SetSurfaceBlendMode, expected: true, got: %i", result);
  46. result = SDL_GetSurfaceBlendMode(testSurface, &currentBlendMode);
  47. SDLTest_AssertCheck(result == true, "Validate result from SDL_GetSurfaceBlendMode, expected: true, got: %i", result);
  48. SDLTest_AssertCheck(currentBlendMode == blendMode, "Validate blendMode, expected: %" SDL_PRIu32 ", got: %" SDL_PRIu32, blendMode, currentBlendMode);
  49. /* Clear the target surface */
  50. result = SDL_FillSurfaceRect(testSurface, NULL, SDL_MapSurfaceRGBA(testSurface, 0, 0, 0, 255));
  51. SDLTest_AssertCheck(result == true, "Validate result from SDL_FillSurfaceRect, expected: true, got: %i", result);
  52. }
  53. }
  54. static void SDLCALL surfaceTearDown(void *arg)
  55. {
  56. SDL_DestroySurface(referenceSurface);
  57. referenceSurface = NULL;
  58. SDL_DestroySurface(testSurface);
  59. testSurface = NULL;
  60. }
  61. static void DitherPalette(SDL_Palette *palette)
  62. {
  63. int i;
  64. for (i = 0; i < palette->ncolors; i++) {
  65. int r, g, b;
  66. /* map each bit field to the full [0, 255] interval,
  67. so 0 is mapped to (0, 0, 0) and 255 to (255, 255, 255) */
  68. r = i & 0xe0;
  69. r |= r >> 3 | r >> 6;
  70. palette->colors[i].r = (Uint8)r;
  71. g = (i << 3) & 0xe0;
  72. g |= g >> 3 | g >> 6;
  73. palette->colors[i].g = (Uint8)g;
  74. b = i & 0x3;
  75. b |= b << 2;
  76. b |= b << 4;
  77. palette->colors[i].b = (Uint8)b;
  78. palette->colors[i].a = SDL_ALPHA_OPAQUE;
  79. }
  80. }
  81. /**
  82. * Helper that blits in a specific blend mode, -1 for color mod, -2 for alpha mod
  83. */
  84. static void testBlitBlendModeWithFormats(int mode, SDL_PixelFormat src_format, SDL_PixelFormat dst_format)
  85. {
  86. /* Allow up to 1 delta from theoretical value to account for rounding error */
  87. const int MAXIMUM_ERROR = 1;
  88. int ret;
  89. SDL_Surface *src;
  90. SDL_Surface *dst;
  91. Uint32 color;
  92. Uint8 srcR = 10, srcG = 128, srcB = 240, srcA = 100;
  93. Uint8 dstR = 128, dstG = 128, dstB = 128, dstA = 128;
  94. Uint8 expectedR, expectedG, expectedB, expectedA;
  95. Uint8 actualR, actualG, actualB, actualA;
  96. int deltaR, deltaG, deltaB, deltaA;
  97. /* Create dst surface */
  98. dst = SDL_CreateSurface(9, 1, dst_format);
  99. SDLTest_AssertCheck(dst != NULL, "Verify dst surface is not NULL");
  100. if (dst == NULL) {
  101. return;
  102. }
  103. /* Clear surface. */
  104. if (SDL_ISPIXELFORMAT_INDEXED(dst_format)) {
  105. SDL_Palette *palette = SDL_CreateSurfacePalette(dst);
  106. DitherPalette(palette);
  107. palette->colors[0].r = dstR;
  108. palette->colors[0].g = dstG;
  109. palette->colors[0].b = dstB;
  110. palette->colors[0].a = dstA;
  111. color = 0;
  112. } else {
  113. color = SDL_MapSurfaceRGBA(dst, dstR, dstG, dstB, dstA);
  114. SDLTest_AssertPass("Call to SDL_MapSurfaceRGBA()");
  115. }
  116. ret = SDL_FillSurfaceRect(dst, NULL, color);
  117. SDLTest_AssertPass("Call to SDL_FillSurfaceRect()");
  118. SDLTest_AssertCheck(ret == true, "Verify result from SDL_FillSurfaceRect, expected: true, got: %i", ret);
  119. SDL_GetRGBA(color, SDL_GetPixelFormatDetails(dst->format), SDL_GetSurfacePalette(dst), &dstR, &dstG, &dstB, &dstA);
  120. /* Create src surface */
  121. src = SDL_CreateSurface(9, 1, src_format);
  122. SDLTest_AssertCheck(src != NULL, "Verify src surface is not NULL");
  123. if (src == NULL) {
  124. return;
  125. }
  126. if (SDL_ISPIXELFORMAT_INDEXED(src_format)) {
  127. SDL_Palette *palette = SDL_CreateSurfacePalette(src);
  128. palette->colors[0].r = srcR;
  129. palette->colors[0].g = srcG;
  130. palette->colors[0].b = srcB;
  131. palette->colors[0].a = srcA;
  132. }
  133. /* Reset alpha modulation */
  134. ret = SDL_SetSurfaceAlphaMod(src, 255);
  135. SDLTest_AssertPass("Call to SDL_SetSurfaceAlphaMod()");
  136. SDLTest_AssertCheck(ret == true, "Verify result from SDL_SetSurfaceAlphaMod(), expected: true, got: %i", ret);
  137. /* Reset color modulation */
  138. ret = SDL_SetSurfaceColorMod(src, 255, 255, 255);
  139. SDLTest_AssertPass("Call to SDL_SetSurfaceColorMod()");
  140. SDLTest_AssertCheck(ret == true, "Verify result from SDL_SetSurfaceColorMod(), expected: true, got: %i", ret);
  141. /* Reset color key */
  142. ret = SDL_SetSurfaceColorKey(src, false, 0);
  143. SDLTest_AssertPass("Call to SDL_SetSurfaceColorKey()");
  144. SDLTest_AssertCheck(ret == true, "Verify result from SDL_SetSurfaceColorKey(), expected: true, got: %i", ret);
  145. /* Clear surface. */
  146. color = SDL_MapSurfaceRGBA(src, srcR, srcG, srcB, srcA);
  147. SDLTest_AssertPass("Call to SDL_MapSurfaceRGBA()");
  148. ret = SDL_FillSurfaceRect(src, NULL, color);
  149. SDLTest_AssertPass("Call to SDL_FillSurfaceRect()");
  150. SDLTest_AssertCheck(ret == true, "Verify result from SDL_FillSurfaceRect, expected: true, got: %i", ret);
  151. SDL_GetRGBA(color, SDL_GetPixelFormatDetails(src->format), SDL_GetSurfacePalette(src), &srcR, &srcG, &srcB, &srcA);
  152. /* Set blend mode. */
  153. if (mode >= 0) {
  154. ret = SDL_SetSurfaceBlendMode(src, (SDL_BlendMode)mode);
  155. SDLTest_AssertPass("Call to SDL_SetSurfaceBlendMode()");
  156. SDLTest_AssertCheck(ret == true, "Verify result from SDL_SetSurfaceBlendMode(..., %i), expected: true, got: %i", mode, ret);
  157. } else {
  158. ret = SDL_SetSurfaceBlendMode(src, SDL_BLENDMODE_BLEND);
  159. SDLTest_AssertPass("Call to SDL_SetSurfaceBlendMode()");
  160. SDLTest_AssertCheck(ret == true, "Verify result from SDL_SetSurfaceBlendMode(..., %i), expected: true, got: %i", mode, ret);
  161. }
  162. /* Test blend mode. */
  163. #define FLOAT(X) ((float)X / 255.0f)
  164. switch (mode) {
  165. case -1:
  166. /* Set color mod. */
  167. ret = SDL_SetSurfaceColorMod(src, srcR, srcG, srcB);
  168. SDLTest_AssertCheck(ret == true, "Validate results from calls to SDL_SetSurfaceColorMod, expected: true, got: %i", ret);
  169. expectedR = (Uint8)SDL_roundf(SDL_clamp((FLOAT(srcR) * FLOAT(srcR)) * FLOAT(srcA) + FLOAT(dstR) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  170. expectedG = (Uint8)SDL_roundf(SDL_clamp((FLOAT(srcG) * FLOAT(srcG)) * FLOAT(srcA) + FLOAT(dstG) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  171. expectedB = (Uint8)SDL_roundf(SDL_clamp((FLOAT(srcB) * FLOAT(srcB)) * FLOAT(srcA) + FLOAT(dstB) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  172. expectedA = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcA) + FLOAT(dstA) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  173. break;
  174. case -2:
  175. /* Set alpha mod. */
  176. ret = SDL_SetSurfaceAlphaMod(src, srcA);
  177. SDLTest_AssertCheck(ret == true, "Validate results from calls to SDL_SetSurfaceAlphaMod, expected: true, got: %i", ret);
  178. expectedR = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcR) * (FLOAT(srcA) * FLOAT(srcA)) + FLOAT(dstR) * (1.0f - (FLOAT(srcA) * FLOAT(srcA))), 0.0f, 1.0f) * 255.0f);
  179. expectedG = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcG) * (FLOAT(srcA) * FLOAT(srcA)) + FLOAT(dstG) * (1.0f - (FLOAT(srcA) * FLOAT(srcA))), 0.0f, 1.0f) * 255.0f);
  180. expectedB = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcB) * (FLOAT(srcA) * FLOAT(srcA)) + FLOAT(dstB) * (1.0f - (FLOAT(srcA) * FLOAT(srcA))), 0.0f, 1.0f) * 255.0f);
  181. expectedA = (Uint8)SDL_roundf(SDL_clamp((FLOAT(srcA) * FLOAT(srcA)) + FLOAT(dstA) * (1.0f - (FLOAT(srcA) * FLOAT(srcA))), 0.0f, 1.0f) * 255.0f);
  182. break;
  183. case SDL_BLENDMODE_NONE:
  184. expectedR = srcR;
  185. expectedG = srcG;
  186. expectedB = srcB;
  187. expectedA = SDL_ISPIXELFORMAT_ALPHA(dst_format) ? srcA : 255;
  188. break;
  189. case SDL_BLENDMODE_BLEND:
  190. expectedR = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcR) * FLOAT(srcA) + FLOAT(dstR) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  191. expectedG = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcG) * FLOAT(srcA) + FLOAT(dstG) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  192. expectedB = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcB) * FLOAT(srcA) + FLOAT(dstB) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  193. expectedA = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcA) + FLOAT(dstA) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  194. break;
  195. case SDL_BLENDMODE_BLEND_PREMULTIPLIED:
  196. expectedR = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcR) + FLOAT(dstR) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  197. expectedG = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcG) + FLOAT(dstG) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  198. expectedB = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcB) + FLOAT(dstB) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  199. expectedA = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcA) + FLOAT(dstA) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  200. break;
  201. case SDL_BLENDMODE_ADD:
  202. expectedR = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcR) * FLOAT(srcA) + FLOAT(dstR), 0.0f, 1.0f) * 255.0f);
  203. expectedG = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcG) * FLOAT(srcA) + FLOAT(dstG), 0.0f, 1.0f) * 255.0f);
  204. expectedB = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcB) * FLOAT(srcA) + FLOAT(dstB), 0.0f, 1.0f) * 255.0f);
  205. expectedA = dstA;
  206. break;
  207. case SDL_BLENDMODE_ADD_PREMULTIPLIED:
  208. expectedR = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcR) + FLOAT(dstR), 0.0f, 1.0f) * 255.0f);
  209. expectedG = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcG) + FLOAT(dstG), 0.0f, 1.0f) * 255.0f);
  210. expectedB = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcB) + FLOAT(dstB), 0.0f, 1.0f) * 255.0f);
  211. expectedA = dstA;
  212. break;
  213. case SDL_BLENDMODE_MOD:
  214. expectedR = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcR) * FLOAT(dstR), 0.0f, 1.0f) * 255.0f);
  215. expectedG = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcG) * FLOAT(dstG), 0.0f, 1.0f) * 255.0f);
  216. expectedB = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcB) * FLOAT(dstB), 0.0f, 1.0f) * 255.0f);
  217. expectedA = dstA;
  218. break;
  219. case SDL_BLENDMODE_MUL:
  220. expectedR = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcR) * FLOAT(dstR) + FLOAT(dstR) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  221. expectedG = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcG) * FLOAT(dstG) + FLOAT(dstG) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  222. expectedB = (Uint8)SDL_roundf(SDL_clamp(FLOAT(srcB) * FLOAT(dstB) + FLOAT(dstB) * (1.0f - FLOAT(srcA)), 0.0f, 1.0f) * 255.0f);
  223. expectedA = dstA;
  224. break;
  225. default:
  226. SDLTest_LogError("Invalid blending mode: %d", mode);
  227. return;
  228. }
  229. if (SDL_ISPIXELFORMAT_INDEXED(dst_format)) {
  230. SDL_Palette *palette = SDL_GetSurfacePalette(dst);
  231. palette->colors[1].r = expectedR;
  232. palette->colors[1].g = expectedG;
  233. palette->colors[1].b = expectedB;
  234. palette->colors[1].a = expectedA;
  235. }
  236. /* Blitting. */
  237. ret = SDL_BlitSurface(src, NULL, dst, NULL);
  238. SDLTest_AssertCheck(ret == true, "Validate results from calls to SDL_BlitSurface, expected: true, got: %i: %s", ret, !ret ? SDL_GetError() : "success");
  239. if (ret) {
  240. SDL_ReadSurfacePixel(dst, 0, 0, &actualR, &actualG, &actualB, &actualA);
  241. deltaR = SDL_abs((int)actualR - expectedR);
  242. deltaG = SDL_abs((int)actualG - expectedG);
  243. deltaB = SDL_abs((int)actualB - expectedB);
  244. deltaA = SDL_abs((int)actualA - expectedA);
  245. SDLTest_AssertCheck(
  246. deltaR <= MAXIMUM_ERROR &&
  247. deltaG <= MAXIMUM_ERROR &&
  248. deltaB <= MAXIMUM_ERROR &&
  249. deltaA <= MAXIMUM_ERROR,
  250. "Checking %s -> %s blit results, expected %d,%d,%d,%d, got %d,%d,%d,%d",
  251. SDL_GetPixelFormatName(src_format),
  252. SDL_GetPixelFormatName(dst_format),
  253. expectedR, expectedG, expectedB, expectedA, actualR, actualG, actualB, actualA);
  254. }
  255. /* Clean up */
  256. SDL_DestroySurface(src);
  257. SDL_DestroySurface(dst);
  258. }
  259. static void testBlitBlendMode(int mode)
  260. {
  261. const SDL_PixelFormat src_formats[] = {
  262. SDL_PIXELFORMAT_INDEX8, SDL_PIXELFORMAT_XRGB8888, SDL_PIXELFORMAT_ARGB8888
  263. };
  264. const SDL_PixelFormat dst_formats[] = {
  265. SDL_PIXELFORMAT_XRGB8888, SDL_PIXELFORMAT_ARGB8888
  266. };
  267. int i, j;
  268. for (i = 0; i < SDL_arraysize(src_formats); ++i) {
  269. for (j = 0; j < SDL_arraysize(dst_formats); ++j) {
  270. testBlitBlendModeWithFormats(mode, src_formats[i], dst_formats[j]);
  271. }
  272. }
  273. }
  274. /* Helper to check that a file exists */
  275. static void AssertFileExist(const char *filename)
  276. {
  277. struct stat st;
  278. int ret = stat(filename, &st);
  279. SDLTest_AssertCheck(ret == 0, "Verify file '%s' exists", filename);
  280. }
  281. /* Test case functions */
  282. /**
  283. * Tests creating surface with invalid format
  284. */
  285. static int SDLCALL surface_testInvalidFormat(void *arg)
  286. {
  287. SDL_Surface *surface;
  288. surface = SDL_CreateSurface(32, 32, SDL_PIXELFORMAT_UNKNOWN);
  289. SDLTest_AssertCheck(surface == NULL, "Verify SDL_CreateSurface(SDL_PIXELFORMAT_UNKNOWN) returned NULL");
  290. SDL_DestroySurface(surface);
  291. surface = SDL_CreateSurfaceFrom(32, 32, SDL_PIXELFORMAT_UNKNOWN, NULL, 0);
  292. SDLTest_AssertCheck(surface == NULL, "Verify SDL_CreateSurfaceFrom(SDL_PIXELFORMAT_UNKNOWN) returned NULL");
  293. SDL_DestroySurface(surface);
  294. return TEST_COMPLETED;
  295. }
  296. /**
  297. * Tests sprite saving and loading
  298. */
  299. static int SDLCALL surface_testSaveLoadBitmap(void *arg)
  300. {
  301. int ret;
  302. const char *sampleFilename = "testSaveLoadBitmap.bmp";
  303. SDL_Surface *face;
  304. SDL_Surface *rface;
  305. /* Create sample surface */
  306. face = SDLTest_ImageFace();
  307. SDLTest_AssertCheck(face != NULL, "Verify face surface is not NULL");
  308. if (face == NULL) {
  309. return TEST_ABORTED;
  310. }
  311. /* Delete test file; ignore errors */
  312. unlink(sampleFilename);
  313. /* Save a surface */
  314. ret = SDL_SaveBMP(face, sampleFilename);
  315. SDLTest_AssertPass("Call to SDL_SaveBMP()");
  316. SDLTest_AssertCheck(ret == true, "Verify result from SDL_SaveBMP, expected: true, got: %i", ret);
  317. AssertFileExist(sampleFilename);
  318. /* Load a surface */
  319. rface = SDL_LoadBMP(sampleFilename);
  320. SDLTest_AssertPass("Call to SDL_LoadBMP()");
  321. SDLTest_AssertCheck(rface != NULL, "Verify result from SDL_LoadBMP is not NULL");
  322. if (rface != NULL) {
  323. SDLTest_AssertCheck(face->w == rface->w, "Verify width of loaded surface, expected: %i, got: %i", face->w, rface->w);
  324. SDLTest_AssertCheck(face->h == rface->h, "Verify height of loaded surface, expected: %i, got: %i", face->h, rface->h);
  325. }
  326. /* Delete test file; ignore errors */
  327. unlink(sampleFilename);
  328. /* Clean up */
  329. SDL_DestroySurface(face);
  330. face = NULL;
  331. SDL_DestroySurface(rface);
  332. rface = NULL;
  333. return TEST_COMPLETED;
  334. }
  335. /**
  336. * Tests tiled blitting.
  337. */
  338. static int SDLCALL surface_testBlitTiled(void *arg)
  339. {
  340. SDL_Surface *face = NULL;
  341. SDL_Surface *testSurface2x = NULL;
  342. SDL_Surface *referenceSurface2x = NULL;
  343. int ret = 0;
  344. /* Create sample surface */
  345. face = SDLTest_ImageFace();
  346. SDLTest_AssertCheck(face != NULL, "Verify face surface is not NULL");
  347. if (face == NULL) {
  348. return TEST_ABORTED;
  349. }
  350. /* Tiled blit - 1.0 scale */
  351. {
  352. ret = SDL_BlitSurfaceTiled(face, NULL, testSurface, NULL);
  353. SDLTest_AssertCheck(ret == true, "Verify result from SDL_BlitSurfaceTiled expected: true, got: %i", ret);
  354. /* See if it's the same */
  355. SDL_DestroySurface(referenceSurface);
  356. referenceSurface = SDLTest_ImageBlitTiled();
  357. ret = SDLTest_CompareSurfaces(testSurface, referenceSurface, 0);
  358. SDLTest_AssertCheck(ret == 0, "Validate result from SDLTest_CompareSurfaces, expected: 0, got: %i", ret);
  359. }
  360. /* Tiled blit - 2.0 scale */
  361. {
  362. testSurface2x = SDL_CreateSurface(testSurface->w * 2, testSurface->h * 2, testSurface->format);
  363. SDLTest_AssertCheck(testSurface != NULL, "Check that testSurface2x is not NULL");
  364. ret = SDL_FillSurfaceRect(testSurface2x, NULL, SDL_MapSurfaceRGBA(testSurface2x, 0, 0, 0, 255));
  365. SDLTest_AssertCheck(ret == true, "Validate result from SDL_FillSurfaceRect, expected: true, got: %i", ret);
  366. ret = SDL_BlitSurfaceTiledWithScale(face, NULL, 2.0f, SDL_SCALEMODE_NEAREST, testSurface2x, NULL);
  367. SDLTest_AssertCheck(ret == true, "Validate results from call to SDL_BlitSurfaceTiledWithScale, expected: true, got: %i", ret);
  368. /* See if it's the same */
  369. referenceSurface2x = SDL_CreateSurface(referenceSurface->w * 2, referenceSurface->h * 2, referenceSurface->format);
  370. SDL_BlitSurfaceScaled(referenceSurface, NULL, referenceSurface2x, NULL, SDL_SCALEMODE_NEAREST);
  371. SDLTest_AssertCheck(ret == true, "Validate results from call to SDL_BlitSurfaceScaled, expected: true, got: %i", ret);
  372. ret = SDLTest_CompareSurfaces(testSurface2x, referenceSurface2x, 0);
  373. SDLTest_AssertCheck(ret == 0, "Validate result from SDLTest_CompareSurfaces, expected: 0, got: %i", ret);
  374. }
  375. /* Clean up. */
  376. SDL_DestroySurface(face);
  377. SDL_DestroySurface(testSurface2x);
  378. SDL_DestroySurface(referenceSurface2x);
  379. return TEST_COMPLETED;
  380. }
  381. static const Uint8 COLOR_SEPARATION = 85;
  382. static void Fill9GridReferenceSurface(SDL_Surface *surface, int left_width, int right_width, int top_height, int bottom_height)
  383. {
  384. SDL_Rect rect;
  385. // Upper left
  386. rect.x = 0;
  387. rect.y = 0;
  388. rect.w = left_width;
  389. rect.h = top_height;
  390. SDL_FillSurfaceRect(surface, &rect, SDL_MapSurfaceRGB(surface, 1 * COLOR_SEPARATION, 1 * COLOR_SEPARATION, 0));
  391. // Top
  392. rect.x = left_width;
  393. rect.y = 0;
  394. rect.w = surface->w - left_width - right_width;
  395. rect.h = top_height;
  396. SDL_FillSurfaceRect(surface, &rect, SDL_MapSurfaceRGB(surface, 2 * COLOR_SEPARATION, 1 * COLOR_SEPARATION, 0));
  397. // Upper right
  398. rect.x = surface->w - right_width;
  399. rect.y = 0;
  400. rect.w = right_width;
  401. rect.h = top_height;
  402. SDL_FillSurfaceRect(surface, &rect, SDL_MapSurfaceRGB(surface, 3 * COLOR_SEPARATION, 1 * COLOR_SEPARATION, 0));
  403. // Left
  404. rect.x = 0;
  405. rect.y = top_height;
  406. rect.w = left_width;
  407. rect.h = surface->h - top_height - bottom_height;
  408. SDL_FillSurfaceRect(surface, &rect, SDL_MapSurfaceRGB(surface, 1 * COLOR_SEPARATION, 2 * COLOR_SEPARATION, 0));
  409. // Center
  410. rect.x = left_width;
  411. rect.y = top_height;
  412. rect.w = surface->w - right_width - left_width;
  413. rect.h = surface->h - top_height - bottom_height;
  414. SDL_FillSurfaceRect(surface, &rect, SDL_MapSurfaceRGB(surface, 2 * COLOR_SEPARATION, 2 * COLOR_SEPARATION, 0));
  415. // Right
  416. rect.x = surface->w - right_width;
  417. rect.y = top_height;
  418. rect.w = right_width;
  419. rect.h = surface->h - top_height - bottom_height;
  420. SDL_FillSurfaceRect(surface, &rect, SDL_MapSurfaceRGB(surface, 3 * COLOR_SEPARATION, 2 * COLOR_SEPARATION, 0));
  421. // Lower left
  422. rect.x = 0;
  423. rect.y = surface->h - bottom_height;
  424. rect.w = left_width;
  425. rect.h = bottom_height;
  426. SDL_FillSurfaceRect(surface, &rect, SDL_MapSurfaceRGB(surface, 1 * COLOR_SEPARATION, 3 * COLOR_SEPARATION, 0));
  427. // Bottom
  428. rect.x = left_width;
  429. rect.y = surface->h - bottom_height;
  430. rect.w = surface->w - left_width - right_width;
  431. rect.h = bottom_height;
  432. SDL_FillSurfaceRect(surface, &rect, SDL_MapSurfaceRGB(surface, 2 * COLOR_SEPARATION, 3 * COLOR_SEPARATION, 0));
  433. // Lower right
  434. rect.x = surface->w - right_width;
  435. rect.y = surface->h - bottom_height;
  436. rect.w = right_width;
  437. rect.h = bottom_height;
  438. SDL_FillSurfaceRect(surface, &rect, SDL_MapSurfaceRGB(surface, 3 * COLOR_SEPARATION, 3 * COLOR_SEPARATION, 0));
  439. }
  440. /**
  441. * Tests 9-grid blitting.
  442. */
  443. static int SDLCALL surface_testBlit9Grid(void *arg)
  444. {
  445. SDL_Surface *source = NULL;
  446. int x, y;
  447. int ret = 0;
  448. /* Create source surface */
  449. source = SDL_CreateSurface(3, 3, SDL_PIXELFORMAT_RGBA32);
  450. SDLTest_AssertCheck(source != NULL, "Verify source surface is not NULL");
  451. for (y = 0; y < 3; ++y) {
  452. for (x = 0; x < 3; ++x) {
  453. SDL_WriteSurfacePixel(source, x, y, (Uint8)((1 + x) * COLOR_SEPARATION), (Uint8)((1 + y) * COLOR_SEPARATION), 0, 255);
  454. }
  455. }
  456. /* 9-grid blit - 1.0 scale */
  457. {
  458. /* Create reference surface */
  459. SDL_DestroySurface(referenceSurface);
  460. referenceSurface = SDL_CreateSurface(testSurface->w, testSurface->h, testSurface->format);
  461. SDLTest_AssertCheck(referenceSurface != NULL, "Verify reference surface is not NULL");
  462. Fill9GridReferenceSurface(referenceSurface, 1, 1, 1, 1);
  463. ret = SDL_BlitSurface9Grid(source, NULL, 1, 1, 1, 1, 0.0f, SDL_SCALEMODE_NEAREST, testSurface, NULL);
  464. SDLTest_AssertCheck(ret == true, "Validate result from SDL_BlitSurface9Grid, expected: true, got: %i", ret);
  465. ret = SDLTest_CompareSurfaces(testSurface, referenceSurface, 0);
  466. SDLTest_AssertCheck(ret == 0, "Validate result from SDLTest_CompareSurfaces, expected: 0, got: %i", ret);
  467. }
  468. /* 9-grid blit - 2.0 scale */
  469. {
  470. /* Create reference surface */
  471. SDL_DestroySurface(referenceSurface);
  472. referenceSurface = SDL_CreateSurface(testSurface->w, testSurface->h, testSurface->format);
  473. SDLTest_AssertCheck(referenceSurface != NULL, "Verify reference surface is not NULL");
  474. Fill9GridReferenceSurface(referenceSurface, 2, 2, 2, 2);
  475. ret = SDL_BlitSurface9Grid(source, NULL, 1, 1, 1, 1, 2.0f, SDL_SCALEMODE_NEAREST, testSurface, NULL);
  476. SDLTest_AssertCheck(ret == true, "Validate result from SDL_BlitSurface9Grid, expected: true, got: %i", ret);
  477. ret = SDLTest_CompareSurfaces(testSurface, referenceSurface, 0);
  478. SDLTest_AssertCheck(ret == 0, "Validate result from SDLTest_CompareSurfaces, expected: 0, got: %i", ret);
  479. }
  480. /* Clean up. */
  481. SDL_DestroySurface(source);
  482. /* Create complex source surface */
  483. source = SDL_CreateSurface(5, 5, SDL_PIXELFORMAT_RGBA32);
  484. SDLTest_AssertCheck(source != NULL, "Verify source surface is not NULL");
  485. SDL_WriteSurfacePixel(source, 0, 0, (Uint8)((1) * COLOR_SEPARATION), (Uint8)((1) * COLOR_SEPARATION), 0, 255);
  486. SDL_WriteSurfacePixel(source, 1, 0, (Uint8)((2) * COLOR_SEPARATION), (Uint8)((1) * COLOR_SEPARATION), 0, 255);
  487. SDL_WriteSurfacePixel(source, 2, 0, (Uint8)((2) * COLOR_SEPARATION), (Uint8)((1) * COLOR_SEPARATION), 0, 255);
  488. SDL_WriteSurfacePixel(source, 3, 0, (Uint8)((3) * COLOR_SEPARATION), (Uint8)((1) * COLOR_SEPARATION), 0, 255);
  489. SDL_WriteSurfacePixel(source, 4, 0, (Uint8)((3) * COLOR_SEPARATION), (Uint8)((1) * COLOR_SEPARATION), 0, 255);
  490. SDL_WriteSurfacePixel(source, 0, 1, (Uint8)((1) * COLOR_SEPARATION), (Uint8)((2) * COLOR_SEPARATION), 0, 255);
  491. SDL_WriteSurfacePixel(source, 1, 1, (Uint8)((2) * COLOR_SEPARATION), (Uint8)((2) * COLOR_SEPARATION), 0, 255);
  492. SDL_WriteSurfacePixel(source, 2, 1, (Uint8)((2) * COLOR_SEPARATION), (Uint8)((2) * COLOR_SEPARATION), 0, 255);
  493. SDL_WriteSurfacePixel(source, 3, 1, (Uint8)((3) * COLOR_SEPARATION), (Uint8)((2) * COLOR_SEPARATION), 0, 255);
  494. SDL_WriteSurfacePixel(source, 4, 1, (Uint8)((3) * COLOR_SEPARATION), (Uint8)((2) * COLOR_SEPARATION), 0, 255);
  495. SDL_WriteSurfacePixel(source, 0, 2, (Uint8)((1) * COLOR_SEPARATION), (Uint8)((2) * COLOR_SEPARATION), 0, 255);
  496. SDL_WriteSurfacePixel(source, 1, 2, (Uint8)((2) * COLOR_SEPARATION), (Uint8)((2) * COLOR_SEPARATION), 0, 255);
  497. SDL_WriteSurfacePixel(source, 2, 2, (Uint8)((2) * COLOR_SEPARATION), (Uint8)((2) * COLOR_SEPARATION), 0, 255);
  498. SDL_WriteSurfacePixel(source, 3, 2, (Uint8)((3) * COLOR_SEPARATION), (Uint8)((2) * COLOR_SEPARATION), 0, 255);
  499. SDL_WriteSurfacePixel(source, 4, 2, (Uint8)((3) * COLOR_SEPARATION), (Uint8)((2) * COLOR_SEPARATION), 0, 255);
  500. SDL_WriteSurfacePixel(source, 0, 3, (Uint8)((1) * COLOR_SEPARATION), (Uint8)((3) * COLOR_SEPARATION), 0, 255);
  501. SDL_WriteSurfacePixel(source, 1, 3, (Uint8)((2) * COLOR_SEPARATION), (Uint8)((3) * COLOR_SEPARATION), 0, 255);
  502. SDL_WriteSurfacePixel(source, 2, 3, (Uint8)((2) * COLOR_SEPARATION), (Uint8)((3) * COLOR_SEPARATION), 0, 255);
  503. SDL_WriteSurfacePixel(source, 3, 3, (Uint8)((3) * COLOR_SEPARATION), (Uint8)((3) * COLOR_SEPARATION), 0, 255);
  504. SDL_WriteSurfacePixel(source, 4, 3, (Uint8)((3) * COLOR_SEPARATION), (Uint8)((3) * COLOR_SEPARATION), 0, 255);
  505. SDL_WriteSurfacePixel(source, 0, 4, (Uint8)((1) * COLOR_SEPARATION), (Uint8)((3) * COLOR_SEPARATION), 0, 255);
  506. SDL_WriteSurfacePixel(source, 1, 4, (Uint8)((2) * COLOR_SEPARATION), (Uint8)((3) * COLOR_SEPARATION), 0, 255);
  507. SDL_WriteSurfacePixel(source, 2, 4, (Uint8)((2) * COLOR_SEPARATION), (Uint8)((3) * COLOR_SEPARATION), 0, 255);
  508. SDL_WriteSurfacePixel(source, 3, 4, (Uint8)((3) * COLOR_SEPARATION), (Uint8)((3) * COLOR_SEPARATION), 0, 255);
  509. SDL_WriteSurfacePixel(source, 4, 4, (Uint8)((3) * COLOR_SEPARATION), (Uint8)((3) * COLOR_SEPARATION), 0, 255);
  510. /* complex 9-grid blit - 1.0 scale */
  511. {
  512. SDLTest_Log("complex 9-grid blit - 1.0 scale");
  513. /* Create reference surface */
  514. SDL_DestroySurface(referenceSurface);
  515. referenceSurface = SDL_CreateSurface(testSurface->w, testSurface->h, testSurface->format);
  516. SDLTest_AssertCheck(referenceSurface != NULL, "Verify reference surface is not NULL");
  517. Fill9GridReferenceSurface(referenceSurface, 1, 2, 1, 2);
  518. ret = SDL_BlitSurface9Grid(source, NULL, 1, 2, 1, 2, 0.0f, SDL_SCALEMODE_NEAREST, testSurface, NULL);
  519. SDLTest_AssertCheck(ret == true, "Validate result from SDL_BlitSurface9Grid, expected: true, got: %i", ret);
  520. ret = SDLTest_CompareSurfaces(testSurface, referenceSurface, 0);
  521. SDLTest_AssertCheck(ret == 0, "Validate result from SDLTest_CompareSurfaces, expected: 0, got: %i", ret);
  522. }
  523. /* complex 9-grid blit - 2.0 scale */
  524. {
  525. SDLTest_Log("complex 9-grid blit - 2.0 scale");
  526. /* Create reference surface */
  527. SDL_DestroySurface(referenceSurface);
  528. referenceSurface = SDL_CreateSurface(testSurface->w, testSurface->h, testSurface->format);
  529. SDLTest_AssertCheck(referenceSurface != NULL, "Verify reference surface is not NULL");
  530. Fill9GridReferenceSurface(referenceSurface, 2, 4, 2, 4);
  531. ret = SDL_BlitSurface9Grid(source, NULL, 1, 2, 1, 2, 2.0f, SDL_SCALEMODE_NEAREST, testSurface, NULL);
  532. SDLTest_AssertCheck(ret == true, "Validate result from SDL_BlitSurface9Grid, expected: true, got: %i", ret);
  533. ret = SDLTest_CompareSurfaces(testSurface, referenceSurface, 0);
  534. SDLTest_AssertCheck(ret == 0, "Validate result from SDLTest_CompareSurfaces, expected: 0, got: %i", ret);
  535. }
  536. /* Clean up. */
  537. SDL_DestroySurface(source);
  538. return TEST_COMPLETED;
  539. }
  540. /**
  541. * Tests blitting between multiple surfaces of the same format
  542. */
  543. static int SDLCALL surface_testBlitMultiple(void *arg)
  544. {
  545. SDL_Surface *source, *surface;
  546. SDL_Palette *palette;
  547. Uint8 *pixels;
  548. palette = SDL_CreatePalette(2);
  549. SDLTest_AssertCheck(palette != NULL, "SDL_CreatePalette()");
  550. palette->colors[0].r = 0;
  551. palette->colors[0].g = 0;
  552. palette->colors[0].b = 0;
  553. palette->colors[1].r = 0xFF;
  554. palette->colors[1].g = 0;
  555. palette->colors[1].b = 0;
  556. source = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_INDEX8);
  557. SDLTest_AssertCheck(source != NULL, "SDL_CreateSurface()");
  558. SDL_SetSurfacePalette(source, palette);
  559. *(Uint8 *)source->pixels = 1;
  560. /* Set up a blit to a surface using the palette */
  561. surface = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_INDEX8);
  562. SDLTest_AssertCheck(surface != NULL, "SDL_CreateSurface()");
  563. SDL_SetSurfacePalette(surface, palette);
  564. pixels = (Uint8 *)surface->pixels;
  565. *pixels = 0;
  566. SDL_BlitSurface(source, NULL, surface, NULL);
  567. SDLTest_AssertCheck(*pixels == 1, "Expected *pixels == 1 got %u", *pixels);
  568. /* Set up a blit to another surface using the same palette */
  569. SDL_DestroySurface(surface);
  570. surface = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_INDEX8);
  571. SDLTest_AssertCheck(surface != NULL, "SDL_CreateSurface()");
  572. SDL_SetSurfacePalette(surface, palette);
  573. pixels = (Uint8 *)surface->pixels;
  574. *pixels = 0;
  575. SDL_BlitSurface(source, NULL, surface, NULL);
  576. SDLTest_AssertCheck(*pixels == 1, "Expected *pixels == 1 got %u", *pixels);
  577. /* Set up a blit to new surface with a different format */
  578. SDL_DestroySurface(surface);
  579. surface = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_RGBA32);
  580. SDLTest_AssertCheck(surface != NULL, "SDL_CreateSurface()");
  581. pixels = (Uint8 *)surface->pixels;
  582. SDL_BlitSurface(source, NULL, surface, NULL);
  583. SDLTest_AssertCheck(*pixels == 0xFF, "Expected *pixels == 0xFF got 0x%.2X", *pixels);
  584. /* Set up a blit to another surface with the same format */
  585. SDL_DestroySurface(surface);
  586. surface = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_RGBA32);
  587. SDLTest_AssertCheck(surface != NULL, "SDL_CreateSurface()");
  588. pixels = (Uint8 *)surface->pixels;
  589. SDL_BlitSurface(source, NULL, surface, NULL);
  590. SDLTest_AssertCheck(*pixels == 0xFF, "Expected *pixels == 0xFF got 0x%.2X", *pixels);
  591. SDL_DestroyPalette(palette);
  592. SDL_DestroySurface(source);
  593. SDL_DestroySurface(surface);
  594. return TEST_COMPLETED;
  595. }
  596. /**
  597. * Tests surface conversion.
  598. */
  599. static int SDLCALL surface_testSurfaceConversion(void *arg)
  600. {
  601. SDL_Surface *rface = NULL, *face = NULL;
  602. int ret = 0;
  603. /* Create sample surface */
  604. face = SDLTest_ImageFace();
  605. SDLTest_AssertCheck(face != NULL, "Verify face surface is not NULL");
  606. if (face == NULL) {
  607. return TEST_ABORTED;
  608. }
  609. /* Set transparent pixel as the pixel at (0,0) */
  610. if (SDL_GetSurfacePalette(face)) {
  611. ret = SDL_SetSurfaceColorKey(face, true, *(Uint8 *)face->pixels);
  612. SDLTest_AssertPass("Call to SDL_SetSurfaceColorKey()");
  613. SDLTest_AssertCheck(ret == true, "Verify result from SDL_SetSurfaceColorKey, expected: true, got: %i", ret);
  614. }
  615. /* Convert to 32 bit to compare. */
  616. rface = SDL_ConvertSurface(face, testSurface->format);
  617. SDLTest_AssertPass("Call to SDL_ConvertSurface()");
  618. SDLTest_AssertCheck(rface != NULL, "Verify result from SDL_ConvertSurface is not NULL");
  619. /* Compare surface. */
  620. ret = SDLTest_CompareSurfaces(rface, face, 0);
  621. SDLTest_AssertCheck(ret == 0, "Validate result from SDLTest_CompareSurfaces, expected: 0, got: %i", ret);
  622. /* Clean up. */
  623. SDL_DestroySurface(face);
  624. face = NULL;
  625. SDL_DestroySurface(rface);
  626. rface = NULL;
  627. return TEST_COMPLETED;
  628. }
  629. /**
  630. * Tests surface conversion across all pixel formats.
  631. */
  632. static int SDLCALL surface_testCompleteSurfaceConversion(void *arg)
  633. {
  634. Uint32 pixel_formats[] = {
  635. SDL_PIXELFORMAT_INDEX8,
  636. SDL_PIXELFORMAT_RGB332,
  637. SDL_PIXELFORMAT_XRGB4444,
  638. SDL_PIXELFORMAT_XBGR4444,
  639. SDL_PIXELFORMAT_XRGB1555,
  640. SDL_PIXELFORMAT_XBGR1555,
  641. SDL_PIXELFORMAT_ARGB4444,
  642. SDL_PIXELFORMAT_RGBA4444,
  643. SDL_PIXELFORMAT_ABGR4444,
  644. SDL_PIXELFORMAT_BGRA4444,
  645. SDL_PIXELFORMAT_ARGB1555,
  646. SDL_PIXELFORMAT_RGBA5551,
  647. SDL_PIXELFORMAT_ABGR1555,
  648. SDL_PIXELFORMAT_BGRA5551,
  649. SDL_PIXELFORMAT_RGB565,
  650. SDL_PIXELFORMAT_BGR565,
  651. SDL_PIXELFORMAT_RGB24,
  652. SDL_PIXELFORMAT_BGR24,
  653. SDL_PIXELFORMAT_XRGB8888,
  654. SDL_PIXELFORMAT_RGBX8888,
  655. SDL_PIXELFORMAT_XBGR8888,
  656. SDL_PIXELFORMAT_BGRX8888,
  657. SDL_PIXELFORMAT_ARGB8888,
  658. SDL_PIXELFORMAT_RGBA8888,
  659. SDL_PIXELFORMAT_ABGR8888,
  660. SDL_PIXELFORMAT_BGRA8888,
  661. #if 0 /* We aren't testing HDR10 colorspace conversion */
  662. SDL_PIXELFORMAT_XRGB2101010,
  663. SDL_PIXELFORMAT_XBGR2101010,
  664. SDL_PIXELFORMAT_ARGB2101010,
  665. SDL_PIXELFORMAT_ABGR2101010,
  666. #endif
  667. };
  668. SDL_Surface *face = NULL, *cvt1, *cvt2, *final;
  669. const SDL_PixelFormatDetails *fmt1, *fmt2;
  670. int i, j, ret = 0;
  671. /* Create sample surface */
  672. face = SDLTest_ImageFace();
  673. SDLTest_AssertCheck(face != NULL, "Verify face surface is not NULL");
  674. if (face == NULL) {
  675. return TEST_ABORTED;
  676. }
  677. /* Set transparent pixel as the pixel at (0,0) */
  678. if (SDL_GetSurfacePalette(face)) {
  679. ret = SDL_SetSurfaceColorKey(face, true, *(Uint8 *)face->pixels);
  680. SDLTest_AssertPass("Call to SDL_SetSurfaceColorKey()");
  681. SDLTest_AssertCheck(ret == true, "Verify result from SDL_SetSurfaceColorKey, expected: true, got: %i", ret);
  682. }
  683. for (i = 0; i < SDL_arraysize(pixel_formats); ++i) {
  684. for (j = 0; j < SDL_arraysize(pixel_formats); ++j) {
  685. fmt1 = SDL_GetPixelFormatDetails(pixel_formats[i]);
  686. SDLTest_AssertCheck(fmt1 != NULL, "SDL_GetPixelFormatDetails(%s[0x%08" SDL_PRIx32 "]) should return a non-null pixel format",
  687. SDL_GetPixelFormatName(pixel_formats[i]), pixel_formats[i]);
  688. cvt1 = SDL_ConvertSurface(face, fmt1->format);
  689. SDLTest_AssertCheck(cvt1 != NULL, "SDL_ConvertSurface(..., %s[0x%08" SDL_PRIx32 "]) should return a non-null surface",
  690. SDL_GetPixelFormatName(pixel_formats[i]), pixel_formats[i]);
  691. fmt2 = SDL_GetPixelFormatDetails(pixel_formats[j]);
  692. SDLTest_AssertCheck(fmt2 != NULL, "SDL_GetPixelFormatDetails(%s[0x%08" SDL_PRIx32 "]) should return a non-null pixel format",
  693. SDL_GetPixelFormatName(pixel_formats[i]), pixel_formats[i]);
  694. cvt2 = SDL_ConvertSurface(cvt1, fmt2->format);
  695. SDLTest_AssertCheck(cvt2 != NULL, "SDL_ConvertSurface(..., %s[0x%08" SDL_PRIx32 "]) should return a non-null surface",
  696. SDL_GetPixelFormatName(pixel_formats[i]), pixel_formats[i]);
  697. if (fmt1 && fmt2 &&
  698. fmt1->bytes_per_pixel == SDL_BYTESPERPIXEL(face->format) &&
  699. fmt2->bytes_per_pixel == SDL_BYTESPERPIXEL(face->format) &&
  700. SDL_ISPIXELFORMAT_ALPHA(fmt1->format) == SDL_ISPIXELFORMAT_ALPHA(face->format) &&
  701. SDL_ISPIXELFORMAT_ALPHA(fmt2->format) == SDL_ISPIXELFORMAT_ALPHA(face->format)) {
  702. final = SDL_ConvertSurface(cvt2, face->format);
  703. SDL_assert(final != NULL);
  704. /* Compare surface. */
  705. ret = SDLTest_CompareSurfaces(face, final, 0);
  706. SDLTest_AssertCheck(ret == 0, "Validate result from SDLTest_CompareSurfaces, expected: 0, got: %i", ret);
  707. SDL_DestroySurface(final);
  708. }
  709. SDL_DestroySurface(cvt1);
  710. SDL_DestroySurface(cvt2);
  711. }
  712. }
  713. /* Clean up. */
  714. SDL_DestroySurface(face);
  715. return TEST_COMPLETED;
  716. }
  717. /**
  718. * Tests sprite loading. A failure case.
  719. */
  720. static int SDLCALL surface_testLoadFailure(void *arg)
  721. {
  722. SDL_Surface *face = SDL_LoadBMP("nonexistant.bmp");
  723. SDLTest_AssertCheck(face == NULL, "SDL_CreateLoadBmp");
  724. return TEST_COMPLETED;
  725. }
  726. /**
  727. * Tests blitting from a zero sized source rectangle
  728. */
  729. static int SDLCALL surface_testBlitZeroSource(void *arg)
  730. {
  731. SDL_Surface *src = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_RGBA8888);
  732. SDL_Surface *dst = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_RGBA8888);
  733. SDL_Rect srcrect = { 0, 0, 0, 0 };
  734. int ret;
  735. SDLTest_AssertPass("Call to SDL_BlitSurfaceScaled() with zero sized source rectangle");
  736. SDL_FillSurfaceRect(src, NULL, SDL_MapSurfaceRGB(src, 255, 255, 255));
  737. SDL_BlitSurfaceScaled(src, &srcrect, dst, NULL, SDL_SCALEMODE_NEAREST);
  738. ret = SDLTest_CompareSurfaces(dst, src, 0);
  739. SDLTest_AssertCheck(ret == 0, "Validate result from SDLTest_CompareSurfaces, expected: 0, got: %i", ret);
  740. SDL_DestroySurface(src);
  741. SDL_DestroySurface(dst);
  742. return TEST_COMPLETED;
  743. }
  744. /**
  745. * Tests some blitting routines.
  746. */
  747. static int SDLCALL surface_testBlit(void *arg)
  748. {
  749. /* Basic blitting */
  750. testBlitBlendMode(SDL_BLENDMODE_NONE);
  751. return TEST_COMPLETED;
  752. }
  753. /**
  754. * Tests some blitting routines with color mod
  755. */
  756. static int SDLCALL surface_testBlitColorMod(void *arg)
  757. {
  758. /* Basic blitting with color mod */
  759. testBlitBlendMode(-1);
  760. return TEST_COMPLETED;
  761. }
  762. /**
  763. * Tests some blitting routines with alpha mod
  764. */
  765. static int SDLCALL surface_testBlitAlphaMod(void *arg)
  766. {
  767. /* Basic blitting with alpha mod */
  768. testBlitBlendMode(-2);
  769. return TEST_COMPLETED;
  770. }
  771. /**
  772. * Tests some more blitting routines.
  773. */
  774. static int SDLCALL surface_testBlitBlendBlend(void *arg)
  775. {
  776. /* Blend blitting */
  777. testBlitBlendMode(SDL_BLENDMODE_BLEND);
  778. return TEST_COMPLETED;
  779. }
  780. /**
  781. * @brief Tests some more blitting routines.
  782. */
  783. static int SDLCALL surface_testBlitBlendPremultiplied(void *arg)
  784. {
  785. /* Blend premultiplied blitting */
  786. testBlitBlendMode(SDL_BLENDMODE_BLEND_PREMULTIPLIED);
  787. return TEST_COMPLETED;
  788. }
  789. /**
  790. * Tests some more blitting routines.
  791. */
  792. static int SDLCALL surface_testBlitBlendAdd(void *arg)
  793. {
  794. /* Add blitting */
  795. testBlitBlendMode(SDL_BLENDMODE_ADD);
  796. return TEST_COMPLETED;
  797. }
  798. /**
  799. * Tests some more blitting routines.
  800. */
  801. static int SDLCALL surface_testBlitBlendAddPremultiplied(void *arg)
  802. {
  803. /* Add premultiplied blitting */
  804. testBlitBlendMode(SDL_BLENDMODE_ADD_PREMULTIPLIED);
  805. return TEST_COMPLETED;
  806. }
  807. /**
  808. * Tests some more blitting routines.
  809. */
  810. static int SDLCALL surface_testBlitBlendMod(void *arg)
  811. {
  812. /* Mod blitting */
  813. testBlitBlendMode(SDL_BLENDMODE_MOD);
  814. return TEST_COMPLETED;
  815. }
  816. /**
  817. * Tests some more blitting routines.
  818. */
  819. static int SDLCALL surface_testBlitBlendMul(void *arg)
  820. {
  821. /* Mod blitting */
  822. testBlitBlendMode(SDL_BLENDMODE_MUL);
  823. return TEST_COMPLETED;
  824. }
  825. /**
  826. * Tests blitting bitmaps
  827. */
  828. static int SDLCALL surface_testBlitBitmap(void *arg)
  829. {
  830. const SDL_PixelFormat formats[] = {
  831. SDL_PIXELFORMAT_INDEX1LSB,
  832. SDL_PIXELFORMAT_INDEX1MSB,
  833. SDL_PIXELFORMAT_INDEX2LSB,
  834. SDL_PIXELFORMAT_INDEX2MSB,
  835. SDL_PIXELFORMAT_INDEX4LSB,
  836. SDL_PIXELFORMAT_INDEX4MSB
  837. };
  838. Uint8 pixel;
  839. int i, j;
  840. bool result;
  841. SDL_Surface *dst = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_ARGB8888);
  842. SDL_Color colors[] = {
  843. { 0x00, 0x00, 0x00, 0xFF },
  844. { 0xFF, 0xFF, 0xFF, 0xFF }
  845. };
  846. SDL_Palette *palette;
  847. Uint32 value, expected = 0xFFFFFFFF;
  848. palette = SDL_CreatePalette(SDL_arraysize(colors));
  849. SDLTest_AssertCheck(palette != NULL, "SDL_CreatePalette() != NULL, result = %p", palette);
  850. result = SDL_SetPaletteColors(palette, colors, 0, SDL_arraysize(colors));
  851. SDLTest_AssertCheck(result, "SDL_SetPaletteColors, result = %s", result ? "true" : "false");
  852. for (i = 0; i < SDL_arraysize(formats); ++i) {
  853. SDL_PixelFormat format = formats[i];
  854. int bpp = SDL_BITSPERPIXEL(format);
  855. int width = (8 / bpp);
  856. if (SDL_PIXELORDER(format) == SDL_BITMAPORDER_1234) {
  857. switch (bpp) {
  858. case 1:
  859. pixel = 0x80;
  860. break;
  861. case 2:
  862. pixel = 0x40;
  863. break;
  864. case 4:
  865. pixel = 0x10;
  866. break;
  867. default:
  868. SDL_assert(!"Unexpected bpp");
  869. break;
  870. }
  871. } else {
  872. pixel = 0x01;
  873. }
  874. for (j = 0; j < width; ++j) {
  875. SDL_Rect rect = { j, 0, 1, 1 };
  876. SDL_Surface *src = SDL_CreateSurfaceFrom(width, 1, format, &pixel, 1);
  877. SDL_SetSurfacePalette(src, palette);
  878. *(Uint32 *)dst->pixels = 0;
  879. result = SDL_BlitSurface(src, &rect, dst, NULL);
  880. SDLTest_AssertCheck(result, "SDL_BlitSurface(%s pixel %d), result = %s", SDL_GetPixelFormatName(format), j, result ? "true" : "false");
  881. value = *(Uint32 *)dst->pixels;
  882. SDLTest_AssertCheck(value == expected, "Expected value == 0x%" SDL_PRIx32 ", actually = 0x%" SDL_PRIx32, expected, value);
  883. SDL_DestroySurface(src);
  884. if (SDL_PIXELORDER(format) == SDL_BITMAPORDER_1234) {
  885. pixel >>= bpp;
  886. } else {
  887. pixel <<= bpp;
  888. }
  889. }
  890. }
  891. SDL_DestroyPalette(palette);
  892. SDL_DestroySurface(dst);
  893. return TEST_COMPLETED;
  894. }
  895. /**
  896. * Tests blitting invalid surfaces.
  897. */
  898. static int SDLCALL surface_testBlitInvalid(void *arg)
  899. {
  900. SDL_Surface *valid, *invalid;
  901. bool result;
  902. valid = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_RGBA8888);
  903. SDLTest_AssertCheck(valid != NULL, "Check surface creation");
  904. invalid = SDL_CreateSurface(0, 0, SDL_PIXELFORMAT_RGBA8888);
  905. SDLTest_AssertCheck(invalid != NULL, "Check surface creation");
  906. SDLTest_AssertCheck(invalid->pixels == NULL, "Check surface pixels are NULL");
  907. result = SDL_BlitSurface(invalid, NULL, valid, NULL);
  908. SDLTest_AssertCheck(result == true, "SDL_BlitSurface(invalid, NULL, valid, NULL), result = %s", result ? "true" : "false");
  909. result = SDL_BlitSurface(valid, NULL, invalid, NULL);
  910. SDLTest_AssertCheck(result == true, "SDL_BlitSurface(valid, NULL, invalid, NULL), result = %s", result ? "true" : "false");
  911. result = SDL_BlitSurfaceScaled(invalid, NULL, valid, NULL, SDL_SCALEMODE_NEAREST);
  912. SDLTest_AssertCheck(result == false, "SDL_BlitSurfaceScaled(invalid, NULL, valid, NULL, SDL_SCALEMODE_NEAREST), result = %s", result ? "true" : "false");
  913. result = SDL_BlitSurfaceScaled(valid, NULL, invalid, NULL, SDL_SCALEMODE_NEAREST);
  914. SDLTest_AssertCheck(result == false, "SDL_BlitSurfaceScaled(valid, NULL, invalid, NULL, SDL_SCALEMODE_NEAREST), result = %s", result ? "true" : "false");
  915. SDL_DestroySurface(valid);
  916. SDL_DestroySurface(invalid);
  917. return TEST_COMPLETED;
  918. }
  919. static int SDLCALL surface_testBlitsWithBadCoordinates(void *arg)
  920. {
  921. const SDL_Rect rect[8] = {
  922. { SDL_MAX_SINT32, 0, 2, 2 },
  923. { 0, SDL_MAX_SINT32, 2, 2 },
  924. { 0, 0, SDL_MAX_SINT32, 2 },
  925. { 0, 0, 2, SDL_MAX_SINT32 },
  926. { SDL_MIN_SINT32, 0, 2, 2 },
  927. { 0, SDL_MIN_SINT32, 2, 2 },
  928. { 0, 0, SDL_MIN_SINT32, 2 },
  929. { 0, 0, 2, SDL_MIN_SINT32 }
  930. };
  931. SDL_Surface *s;
  932. bool result;
  933. int i;
  934. s = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_RGBA8888);
  935. SDLTest_AssertCheck(s != NULL, "Check surface creation");
  936. for (i = 0; i < 8; i++) {
  937. result = SDL_BlitSurface(s, NULL, s, &rect[i]);
  938. SDLTest_AssertCheck(result == true, "SDL_BlitSurface(valid, NULL, valid, &rect), result = %s", result ? "true" : "false");
  939. result = SDL_BlitSurface(s, &rect[i], s, NULL);
  940. SDLTest_AssertCheck(result == true, "SDL_BlitSurface(valid, &rect, valid, NULL), result = %s", result ? "true" : "false");
  941. result = SDL_BlitSurfaceScaled(s, NULL, s, &rect[i], SDL_SCALEMODE_NEAREST);
  942. SDLTest_AssertCheck(result == true, "SDL_BlitSurfaceScaled(valid, NULL, valid, &rect, SDL_SCALEMODE_NEAREST), result = %s", result ? "true" : "false");
  943. result = SDL_BlitSurfaceScaled(s, &rect[i], s, NULL, SDL_SCALEMODE_NEAREST);
  944. SDLTest_AssertCheck(result == true, "SDL_BlitSurfaceScaled(valid, &rect, valid, NULL, SDL_SCALEMODE_NEAREST), result = %s", result ? "true" : "false");
  945. }
  946. SDL_DestroySurface(s);
  947. return TEST_COMPLETED;
  948. }
  949. static int SDLCALL surface_testOverflow(void *arg)
  950. {
  951. char buf[1024];
  952. const char *expectedError;
  953. SDL_Surface *surface;
  954. SDL_memset(buf, '\0', sizeof(buf));
  955. expectedError = "Parameter 'width' is invalid";
  956. surface = SDL_CreateSurface(-3, 100, SDL_PIXELFORMAT_INDEX8);
  957. SDLTest_AssertCheck(surface == NULL, "Should detect negative width");
  958. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  959. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  960. surface = SDL_CreateSurfaceFrom(-1, 1, SDL_PIXELFORMAT_INDEX8, buf, 4);
  961. SDLTest_AssertCheck(surface == NULL, "Should detect negative width");
  962. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  963. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  964. surface = SDL_CreateSurfaceFrom(-1, 1, SDL_PIXELFORMAT_RGBA8888, buf, 4);
  965. SDLTest_AssertCheck(surface == NULL, "Should detect negative width");
  966. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  967. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  968. expectedError = "Parameter 'height' is invalid";
  969. surface = SDL_CreateSurface(100, -3, SDL_PIXELFORMAT_INDEX8);
  970. SDLTest_AssertCheck(surface == NULL, "Should detect negative height");
  971. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  972. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  973. surface = SDL_CreateSurfaceFrom(1, -1, SDL_PIXELFORMAT_INDEX8, buf, 4);
  974. SDLTest_AssertCheck(surface == NULL, "Should detect negative height");
  975. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  976. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  977. surface = SDL_CreateSurfaceFrom(1, -1, SDL_PIXELFORMAT_RGBA8888, buf, 4);
  978. SDLTest_AssertCheck(surface == NULL, "Should detect negative height");
  979. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  980. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  981. expectedError = "Parameter 'pitch' is invalid";
  982. surface = SDL_CreateSurfaceFrom(4, 1, SDL_PIXELFORMAT_INDEX8, buf, -1);
  983. SDLTest_AssertCheck(surface == NULL, "Should detect negative pitch");
  984. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  985. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  986. surface = SDL_CreateSurfaceFrom(1, 1, SDL_PIXELFORMAT_RGBA8888, buf, -1);
  987. SDLTest_AssertCheck(surface == NULL, "Should detect negative pitch");
  988. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  989. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  990. surface = SDL_CreateSurfaceFrom(1, 1, SDL_PIXELFORMAT_RGBA8888, buf, 0);
  991. SDLTest_AssertCheck(surface == NULL, "Should detect zero pitch");
  992. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  993. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  994. surface = SDL_CreateSurfaceFrom(1, 1, SDL_PIXELFORMAT_RGBA8888, NULL, 0);
  995. SDLTest_AssertCheck(surface != NULL, "Allow zero pitch for partially set up surfaces: %s",
  996. surface != NULL ? "(success)" : SDL_GetError());
  997. SDL_DestroySurface(surface);
  998. /* Less than 1 byte per pixel: the pitch can legitimately be less than
  999. * the width, but it must be enough to hold the appropriate number of
  1000. * bits per pixel. SDL_PIXELFORMAT_INDEX4* needs 1 byte per 2 pixels. */
  1001. surface = SDL_CreateSurfaceFrom(6, 1, SDL_PIXELFORMAT_INDEX4LSB, buf, 3);
  1002. SDLTest_AssertCheck(surface != NULL, "6px * 4 bits per px fits in 3 bytes: %s",
  1003. surface != NULL ? "(success)" : SDL_GetError());
  1004. SDL_DestroySurface(surface);
  1005. surface = SDL_CreateSurfaceFrom(6, 1, SDL_PIXELFORMAT_INDEX4MSB, buf, 3);
  1006. SDLTest_AssertCheck(surface != NULL, "6px * 4 bits per px fits in 3 bytes: %s",
  1007. surface != NULL ? "(success)" : SDL_GetError());
  1008. SDL_DestroySurface(surface);
  1009. surface = SDL_CreateSurfaceFrom(7, 1, SDL_PIXELFORMAT_INDEX4LSB, buf, 3);
  1010. SDLTest_AssertCheck(surface == NULL, "Should detect pitch < width * bpp");
  1011. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1012. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1013. surface = SDL_CreateSurfaceFrom(7, 1, SDL_PIXELFORMAT_INDEX4MSB, buf, 3);
  1014. SDLTest_AssertCheck(surface == NULL, "Should detect pitch < width * bpp");
  1015. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1016. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1017. surface = SDL_CreateSurfaceFrom(7, 1, SDL_PIXELFORMAT_INDEX4LSB, buf, 4);
  1018. SDLTest_AssertCheck(surface != NULL, "7px * 4 bits per px fits in 4 bytes: %s",
  1019. surface != NULL ? "(success)" : SDL_GetError());
  1020. SDL_DestroySurface(surface);
  1021. surface = SDL_CreateSurfaceFrom(7, 1, SDL_PIXELFORMAT_INDEX4MSB, buf, 4);
  1022. SDLTest_AssertCheck(surface != NULL, "7px * 4 bits per px fits in 4 bytes: %s",
  1023. surface != NULL ? "(success)" : SDL_GetError());
  1024. SDL_DestroySurface(surface);
  1025. /* SDL_PIXELFORMAT_INDEX2* needs 1 byte per 4 pixels. */
  1026. surface = SDL_CreateSurfaceFrom(12, 1, SDL_PIXELFORMAT_INDEX2LSB, buf, 3);
  1027. SDLTest_AssertCheck(surface != NULL, "12px * 2 bits per px fits in 3 bytes: %s",
  1028. surface != NULL ? "(success)" : SDL_GetError());
  1029. SDL_DestroySurface(surface);
  1030. surface = SDL_CreateSurfaceFrom(12, 1, SDL_PIXELFORMAT_INDEX2MSB, buf, 3);
  1031. SDLTest_AssertCheck(surface != NULL, "12px * 2 bits per px fits in 3 bytes: %s",
  1032. surface != NULL ? "(success)" : SDL_GetError());
  1033. SDL_DestroySurface(surface);
  1034. surface = SDL_CreateSurfaceFrom(13, 1, SDL_PIXELFORMAT_INDEX2LSB, buf, 3);
  1035. SDLTest_AssertCheck(surface == NULL, "Should detect pitch < width * bpp (%d)", surface ? surface->pitch : 0);
  1036. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1037. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1038. surface = SDL_CreateSurfaceFrom(13, 1, SDL_PIXELFORMAT_INDEX2MSB, buf, 3);
  1039. SDLTest_AssertCheck(surface == NULL, "Should detect pitch < width * bpp");
  1040. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1041. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1042. surface = SDL_CreateSurfaceFrom(13, 1, SDL_PIXELFORMAT_INDEX2LSB, buf, 4);
  1043. SDLTest_AssertCheck(surface != NULL, "13px * 2 bits per px fits in 4 bytes: %s",
  1044. surface != NULL ? "(success)" : SDL_GetError());
  1045. SDL_DestroySurface(surface);
  1046. surface = SDL_CreateSurfaceFrom(13, 1, SDL_PIXELFORMAT_INDEX2MSB, buf, 4);
  1047. SDLTest_AssertCheck(surface != NULL, "13px * 2 bits per px fits in 4 bytes: %s",
  1048. surface != NULL ? "(success)" : SDL_GetError());
  1049. SDL_DestroySurface(surface);
  1050. /* SDL_PIXELFORMAT_INDEX1* needs 1 byte per 8 pixels. */
  1051. surface = SDL_CreateSurfaceFrom(16, 1, SDL_PIXELFORMAT_INDEX1LSB, buf, 2);
  1052. SDLTest_AssertCheck(surface != NULL, "16px * 1 bit per px fits in 2 bytes: %s",
  1053. surface != NULL ? "(success)" : SDL_GetError());
  1054. SDL_DestroySurface(surface);
  1055. surface = SDL_CreateSurfaceFrom(16, 1, SDL_PIXELFORMAT_INDEX1MSB, buf, 2);
  1056. SDLTest_AssertCheck(surface != NULL, "16px * 1 bit per px fits in 2 bytes: %s",
  1057. surface != NULL ? "(success)" : SDL_GetError());
  1058. SDL_DestroySurface(surface);
  1059. surface = SDL_CreateSurfaceFrom(17, 1, SDL_PIXELFORMAT_INDEX1LSB, buf, 2);
  1060. SDLTest_AssertCheck(surface == NULL, "Should detect pitch < width * bpp");
  1061. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1062. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1063. surface = SDL_CreateSurfaceFrom(17, 1, SDL_PIXELFORMAT_INDEX1MSB, buf, 2);
  1064. SDLTest_AssertCheck(surface == NULL, "Should detect pitch < width * bpp");
  1065. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1066. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1067. surface = SDL_CreateSurfaceFrom(17, 1, SDL_PIXELFORMAT_INDEX1LSB, buf, 3);
  1068. SDLTest_AssertCheck(surface != NULL, "17px * 1 bit per px fits in 3 bytes: %s",
  1069. surface != NULL ? "(success)" : SDL_GetError());
  1070. SDL_DestroySurface(surface);
  1071. surface = SDL_CreateSurfaceFrom(17, 1, SDL_PIXELFORMAT_INDEX1MSB, buf, 3);
  1072. SDLTest_AssertCheck(surface != NULL, "17px * 1 bit per px fits in 3 bytes: %s",
  1073. surface != NULL ? "(success)" : SDL_GetError());
  1074. SDL_DestroySurface(surface);
  1075. /* SDL_PIXELFORMAT_INDEX8 and SDL_PIXELFORMAT_RGB332 require 1 byte per pixel. */
  1076. surface = SDL_CreateSurfaceFrom(5, 1, SDL_PIXELFORMAT_RGB332, buf, 5);
  1077. SDLTest_AssertCheck(surface != NULL, "5px * 8 bits per px fits in 5 bytes: %s",
  1078. surface != NULL ? "(success)" : SDL_GetError());
  1079. SDL_DestroySurface(surface);
  1080. surface = SDL_CreateSurfaceFrom(5, 1, SDL_PIXELFORMAT_INDEX8, buf, 5);
  1081. SDLTest_AssertCheck(surface != NULL, "5px * 8 bits per px fits in 5 bytes: %s",
  1082. surface != NULL ? "(success)" : SDL_GetError());
  1083. SDL_DestroySurface(surface);
  1084. surface = SDL_CreateSurfaceFrom(6, 1, SDL_PIXELFORMAT_RGB332, buf, 5);
  1085. SDLTest_AssertCheck(surface == NULL, "Should detect pitch < width * bpp");
  1086. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1087. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1088. surface = SDL_CreateSurfaceFrom(6, 1, SDL_PIXELFORMAT_INDEX8, buf, 5);
  1089. SDLTest_AssertCheck(surface == NULL, "Should detect pitch < width * bpp");
  1090. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1091. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1092. /* Everything else requires more than 1 byte per pixel, and rounds up
  1093. * each pixel to an integer number of bytes (e.g. RGB555 is really
  1094. * XRGB1555, with 1 bit per pixel wasted). */
  1095. surface = SDL_CreateSurfaceFrom(3, 1, SDL_PIXELFORMAT_XRGB1555, buf, 6);
  1096. SDLTest_AssertCheck(surface != NULL, "3px * 15 (really 16) bits per px fits in 6 bytes: %s",
  1097. surface != NULL ? "(success)" : SDL_GetError());
  1098. SDL_DestroySurface(surface);
  1099. surface = SDL_CreateSurfaceFrom(3, 1, SDL_PIXELFORMAT_XRGB1555, buf, 6);
  1100. SDLTest_AssertCheck(surface != NULL, "5px * 15 (really 16) bits per px fits in 6 bytes: %s",
  1101. surface != NULL ? "(success)" : SDL_GetError());
  1102. SDL_DestroySurface(surface);
  1103. surface = SDL_CreateSurfaceFrom(4, 1, SDL_PIXELFORMAT_XRGB1555, buf, 6);
  1104. SDLTest_AssertCheck(surface == NULL, "4px * 15 (really 16) bits per px doesn't fit in 6 bytes");
  1105. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1106. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1107. surface = SDL_CreateSurfaceFrom(4, 1, SDL_PIXELFORMAT_XRGB1555, buf, 6);
  1108. SDLTest_AssertCheck(surface == NULL, "4px * 15 (really 16) bits per px doesn't fit in 6 bytes");
  1109. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1110. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1111. if (sizeof(size_t) == 4 && sizeof(int) >= 4) {
  1112. SDL_ClearError();
  1113. expectedError = "aligning pitch would overflow";
  1114. /* 0x5555'5555 * 3bpp = 0xffff'ffff which fits in size_t, but adding
  1115. * alignment padding makes it overflow */
  1116. surface = SDL_CreateSurface(0x55555555, 1, SDL_PIXELFORMAT_RGB24);
  1117. SDLTest_AssertCheck(surface == NULL, "Should detect overflow in pitch + alignment");
  1118. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1119. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1120. SDL_ClearError();
  1121. expectedError = "width * bpp would overflow";
  1122. /* 0x4000'0000 * 4bpp = 0x1'0000'0000 which (just) overflows */
  1123. surface = SDL_CreateSurface(0x40000000, 1, SDL_PIXELFORMAT_ARGB8888);
  1124. SDLTest_AssertCheck(surface == NULL, "Should detect overflow in width * bytes per pixel");
  1125. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1126. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1127. SDL_ClearError();
  1128. expectedError = "height * pitch would overflow";
  1129. surface = SDL_CreateSurface((1 << 29) - 1, (1 << 29) - 1, SDL_PIXELFORMAT_INDEX8);
  1130. SDLTest_AssertCheck(surface == NULL, "Should detect overflow in width * height");
  1131. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1132. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1133. SDL_ClearError();
  1134. expectedError = "height * pitch would overflow";
  1135. surface = SDL_CreateSurface((1 << 15) + 1, (1 << 15) + 1, SDL_PIXELFORMAT_ARGB8888);
  1136. SDLTest_AssertCheck(surface == NULL, "Should detect overflow in width * height * bytes per pixel");
  1137. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1138. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1139. } else {
  1140. SDLTest_Log("Can't easily overflow size_t on this platform");
  1141. }
  1142. return TEST_COMPLETED;
  1143. }
  1144. static int SDLCALL surface_testFlip(void *arg)
  1145. {
  1146. SDL_Surface *surface;
  1147. Uint8 *pixels;
  1148. int offset;
  1149. const char *expectedError;
  1150. surface = SDL_CreateSurface(3, 3, SDL_PIXELFORMAT_RGB24);
  1151. SDLTest_AssertCheck(surface != NULL, "SDL_CreateSurface()");
  1152. SDL_ClearError();
  1153. expectedError = "Parameter 'surface' is invalid";
  1154. SDL_FlipSurface(NULL, SDL_FLIP_HORIZONTAL);
  1155. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1156. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1157. SDL_ClearError();
  1158. expectedError = "Parameter 'flip' is invalid";
  1159. SDL_FlipSurface(surface, SDL_FLIP_NONE);
  1160. SDLTest_AssertCheck(SDL_strcmp(SDL_GetError(), expectedError) == 0,
  1161. "Expected \"%s\", got \"%s\"", expectedError, SDL_GetError());
  1162. pixels = (Uint8 *)surface->pixels;
  1163. *pixels = 0xFF;
  1164. offset = 0;
  1165. SDLTest_AssertPass("Call to SDL_FlipSurface(surface, SDL_FLIP_VERTICAL)");
  1166. CHECK_FUNC(SDL_FlipSurface, (surface, SDL_FLIP_VERTICAL));
  1167. SDLTest_AssertCheck(pixels[offset] == 0x00,
  1168. "Expected pixels[%d] == 0x00 got 0x%.2X", offset, pixels[offset]);
  1169. offset = 2 * surface->pitch;
  1170. SDLTest_AssertCheck(pixels[offset] == 0xFF,
  1171. "Expected pixels[%d] == 0xFF got 0x%.2X", offset, pixels[offset]);
  1172. SDLTest_AssertPass("Call to SDL_FlipSurface(surface, SDL_FLIP_HORIZONTAL)");
  1173. CHECK_FUNC(SDL_FlipSurface, (surface, SDL_FLIP_HORIZONTAL));
  1174. SDLTest_AssertCheck(pixels[offset] == 0x00,
  1175. "Expected pixels[%d] == 0x00 got 0x%.2X", offset, pixels[offset]);
  1176. offset += (surface->w - 1) * SDL_BYTESPERPIXEL(surface->format);
  1177. SDLTest_AssertCheck(pixels[offset] == 0xFF,
  1178. "Expected pixels[%d] == 0xFF got 0x%.2X", offset, pixels[offset]);
  1179. SDL_DestroySurface(surface);
  1180. return TEST_COMPLETED;
  1181. }
  1182. static int SDLCALL surface_testPalette(void *arg)
  1183. {
  1184. SDL_Surface *source, *surface, *output;
  1185. SDL_Palette *palette;
  1186. Uint8 *pixels;
  1187. palette = SDL_CreatePalette(2);
  1188. SDLTest_AssertCheck(palette != NULL, "SDL_CreatePalette()");
  1189. source = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_INDEX8);
  1190. SDLTest_AssertCheck(source != NULL, "SDL_CreateSurface()");
  1191. SDLTest_AssertCheck(SDL_GetSurfacePalette(source) == NULL, "SDL_GetSurfacePalette(source)");
  1192. surface = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_INDEX8);
  1193. SDLTest_AssertCheck(surface != NULL, "SDL_CreateSurface()");
  1194. SDLTest_AssertCheck(SDL_GetSurfacePalette(surface) == NULL, "SDL_GetSurfacePalette(surface)");
  1195. pixels = (Uint8 *)surface->pixels;
  1196. SDLTest_AssertCheck(*pixels == 0, "Expected *pixels == 0 got %u", *pixels);
  1197. /* Identity copy between indexed surfaces without a palette */
  1198. *(Uint8 *)source->pixels = 1;
  1199. SDL_BlitSurface(source, NULL, surface, NULL);
  1200. SDLTest_AssertCheck(*pixels == 1, "Expected *pixels == 1 got %u", *pixels);
  1201. /* Identity copy between indexed surfaces where the source has a palette */
  1202. palette->colors[0].r = 0;
  1203. palette->colors[0].g = 0;
  1204. palette->colors[0].b = 0;
  1205. palette->colors[1].r = 0xFF;
  1206. palette->colors[1].g = 0;
  1207. palette->colors[1].b = 0;
  1208. SDL_SetSurfacePalette(source, palette);
  1209. *pixels = 0;
  1210. SDL_BlitSurface(source, NULL, surface, NULL);
  1211. SDLTest_AssertCheck(*pixels == 1, "Expected *pixels == 1 got %u", *pixels);
  1212. /* Identity copy between indexed surfaces where the destination has a palette */
  1213. palette->colors[0].r = 0;
  1214. palette->colors[0].g = 0;
  1215. palette->colors[0].b = 0;
  1216. palette->colors[1].r = 0xFF;
  1217. palette->colors[1].g = 0;
  1218. palette->colors[1].b = 0;
  1219. SDL_SetSurfacePalette(source, NULL);
  1220. SDL_SetSurfacePalette(surface, palette);
  1221. *pixels = 0;
  1222. SDL_BlitSurface(source, NULL, surface, NULL);
  1223. SDLTest_AssertCheck(*pixels == 1, "Expected *pixels == 1 got %u", *pixels);
  1224. /* Identity copy between indexed surfaces where the source and destination share a palette */
  1225. palette->colors[0].r = 0;
  1226. palette->colors[0].g = 0;
  1227. palette->colors[0].b = 0;
  1228. palette->colors[1].r = 0xFF;
  1229. palette->colors[1].g = 0;
  1230. palette->colors[1].b = 0;
  1231. SDL_SetSurfacePalette(source, palette);
  1232. SDL_SetSurfacePalette(surface, palette);
  1233. *pixels = 0;
  1234. SDL_BlitSurface(source, NULL, surface, NULL);
  1235. SDLTest_AssertCheck(*pixels == 1, "Expected *pixels == 1 got %u", *pixels);
  1236. output = SDL_CreateSurface(1, 1, SDL_PIXELFORMAT_RGBA32);
  1237. SDLTest_AssertCheck(output != NULL, "SDL_CreateSurface()");
  1238. pixels = (Uint8 *)output->pixels;
  1239. SDL_BlitSurface(surface, NULL, output, NULL);
  1240. SDLTest_AssertCheck(*pixels == 0xFF, "Expected *pixels == 0xFF got 0x%.2X", *pixels);
  1241. /* Set the palette color and blit again */
  1242. palette->colors[1].r = 0xAA;
  1243. SDL_SetSurfacePalette(surface, palette);
  1244. SDL_BlitSurface(surface, NULL, output, NULL);
  1245. SDLTest_AssertCheck(*pixels == 0xAA, "Expected *pixels == 0xAA got 0x%.2X", *pixels);
  1246. SDL_DestroyPalette(palette);
  1247. SDL_DestroySurface(source);
  1248. SDL_DestroySurface(surface);
  1249. SDL_DestroySurface(output);
  1250. return TEST_COMPLETED;
  1251. }
  1252. static int SDLCALL surface_testPalettization(void *arg)
  1253. {
  1254. const SDL_Color palette_colors[] = {
  1255. { 0x80, 0x00, 0x00, 0xff },
  1256. { 0x00, 0x80, 0x00, 0xff },
  1257. { 0x00, 0x00, 0x80, 0xff },
  1258. { 0x40, 0x00, 0x00, 0xff },
  1259. { 0x00, 0x40, 0x00, 0xff },
  1260. { 0x00, 0x00, 0x40, 0xff },
  1261. { 0x00, 0x00, 0x00, 0xff },
  1262. { 0xff, 0x00, 0x00, 0xff },
  1263. { 0x00, 0xff, 0x00, 0xff },
  1264. { 0x00, 0x00, 0xff, 0xff },
  1265. { 0xff, 0xff, 0x00, 0xff },
  1266. { 0x00, 0xff, 0xff, 0xff },
  1267. { 0xff, 0x00, 0xff, 0xff },
  1268. };
  1269. const struct {
  1270. SDL_Color c;
  1271. Uint8 e;
  1272. } colors[] = {
  1273. { { 0xff, 0x00, 0x00, 0xff }, 7 },
  1274. { { 0xfe, 0x00, 0x00, 0xff }, 7 },
  1275. { { 0xfd, 0x00, 0x00, 0xff }, 7 },
  1276. { { 0xf0, 0x00, 0x00, 0xff }, 7 },
  1277. { { 0xd0, 0x00, 0x00, 0xff }, 7 },
  1278. { { 0xb0, 0x00, 0x00, 0xff }, 0 },
  1279. { { 0xa0, 0x00, 0x00, 0xff }, 0 },
  1280. { { 0xff, 0x00, 0x00, 0x00 }, 7 },
  1281. { { 0x00, 0x10, 0x21, 0xff }, 5 },
  1282. { { 0x00, 0x10, 0x19, 0xff }, 6 },
  1283. { { 0x81, 0x00, 0x41, 0xff }, 0 },
  1284. { { 0x80, 0xf0, 0xf0, 0x7f }, 11 },
  1285. { { 0x00, 0x00, 0x00, 0xff }, 6 },
  1286. { { 0x00, 0x00, 0x00, 0x01 }, 6 },
  1287. };
  1288. int i;
  1289. int result;
  1290. SDL_Surface *source, *output;
  1291. SDL_Palette *palette;
  1292. Uint8 *pixels;
  1293. palette = SDL_CreatePalette(SDL_arraysize(palette_colors));
  1294. SDLTest_AssertCheck(palette != NULL, "SDL_CreatePalette()");
  1295. result = SDL_SetPaletteColors(palette, palette_colors, 0, SDL_arraysize(palette_colors));
  1296. SDLTest_AssertCheck(result, "SDL_SetPaletteColors()");
  1297. source = SDL_CreateSurface(SDL_arraysize(palette_colors) + SDL_arraysize(colors), 1, SDL_PIXELFORMAT_RGBA8888);
  1298. SDLTest_AssertCheck(source != NULL, "SDL_CreateSurface()");
  1299. SDLTest_AssertCheck(source->w == SDL_arraysize(palette_colors) + SDL_arraysize(colors), "Expected source->w == %d, got %d", (int)(SDL_arraysize(palette_colors) + SDL_arraysize(colors)), source->w);
  1300. SDLTest_AssertCheck(source->h == 1, "Expected source->h == %d, got %d", 1, source->h);
  1301. SDLTest_AssertCheck(source->format == SDL_PIXELFORMAT_RGBA8888, "Expected source->format == SDL_PIXELFORMAT_RGBA8888, got 0x%x (%s)", source->format, SDL_GetPixelFormatName(source->format));
  1302. for (i = 0; i < SDL_arraysize(colors); i++) {
  1303. result = SDL_WriteSurfacePixel(source, i, 0, colors[i].c.r, colors[i].c.g, colors[i].c.b, colors[i].c.a);
  1304. SDLTest_AssertCheck(result == true, "SDL_WriteSurfacePixel");
  1305. }
  1306. for (i = 0; i < SDL_arraysize(palette_colors); i++) {
  1307. result = SDL_WriteSurfacePixel(source, SDL_arraysize(colors) + i, 0, palette_colors[i].r, palette_colors[i].g, palette_colors[i].b, palette_colors[i].a);
  1308. SDLTest_AssertCheck(result == true, "SDL_WriteSurfacePixel");
  1309. }
  1310. output = SDL_ConvertSurfaceAndColorspace(source, SDL_PIXELFORMAT_INDEX8, palette, SDL_COLORSPACE_UNKNOWN, 0);
  1311. SDLTest_AssertCheck(output != NULL, "SDL_ConvertSurfaceAndColorspace()");
  1312. SDLTest_AssertCheck(output->w == source->w, "Expected output->w == %d, got %d", source->w, output->w);
  1313. SDLTest_AssertCheck(output->h == source->h, "Expected output->h == %d, got %d", source->h, output->h);
  1314. SDLTest_AssertCheck(output->format == SDL_PIXELFORMAT_INDEX8, "Expected output->format == SDL_PIXELFORMAT_INDEX8, got 0x%x (%s)", output->format, SDL_GetPixelFormatName(output->format));
  1315. pixels = output->pixels;
  1316. for (i = 0; i < SDL_arraysize(colors); i++) {
  1317. int idx = i;
  1318. Uint8 actual = pixels[idx];
  1319. Uint8 expected = colors[i].e;
  1320. SDLTest_AssertCheck(actual < SDL_arraysize(palette_colors), "output->pixels[%d] < %d", idx, (int)SDL_arraysize(palette_colors));
  1321. SDLTest_AssertCheck(actual == expected, "Expected output->pixels[%d] == %u, got %u", idx, expected, actual);
  1322. }
  1323. SDLTest_AssertPass("Check palette 1:1 mapping");
  1324. for (i = 0; i < SDL_arraysize(palette_colors); i++) {
  1325. int idx = SDL_arraysize(colors) + i;
  1326. Uint8 actual = pixels[idx];
  1327. Uint8 expected = i;
  1328. SDLTest_AssertCheck(actual < SDL_arraysize(palette_colors), "output->pixels[%d] < %d", idx, (int)SDL_arraysize(palette_colors));
  1329. SDLTest_AssertCheck(actual == expected, "Expected output->pixels[%d] == %u, got %u", idx, expected, actual);
  1330. }
  1331. SDL_DestroyPalette(palette);
  1332. SDL_DestroySurface(source);
  1333. SDL_DestroySurface(output);
  1334. return TEST_COMPLETED;
  1335. }
  1336. static int SDLCALL surface_testClearSurface(void *arg)
  1337. {
  1338. SDL_PixelFormat formats[] = {
  1339. SDL_PIXELFORMAT_ARGB8888, SDL_PIXELFORMAT_RGBA8888,
  1340. SDL_PIXELFORMAT_ARGB2101010, SDL_PIXELFORMAT_ABGR2101010,
  1341. SDL_PIXELFORMAT_ARGB64, SDL_PIXELFORMAT_RGBA64,
  1342. SDL_PIXELFORMAT_ARGB128_FLOAT, SDL_PIXELFORMAT_RGBA128_FLOAT,
  1343. SDL_PIXELFORMAT_YV12, SDL_PIXELFORMAT_UYVY, SDL_PIXELFORMAT_NV12
  1344. };
  1345. SDL_Surface *surface;
  1346. SDL_PixelFormat format;
  1347. const float MAXIMUM_ERROR_RGB = 0.0001f;
  1348. const float MAXIMUM_ERROR_YUV = 0.01f;
  1349. float srcR = 10 / 255.0f, srcG = 128 / 255.0f, srcB = 240 / 255.0f, srcA = 1.0f;
  1350. float actualR, actualG, actualB, actualA;
  1351. float deltaR, deltaG, deltaB, deltaA;
  1352. int i, ret;
  1353. for (i = 0; i < SDL_arraysize(formats); ++i) {
  1354. const float MAXIMUM_ERROR = SDL_ISPIXELFORMAT_FOURCC(formats[i]) ? MAXIMUM_ERROR_YUV : MAXIMUM_ERROR_RGB;
  1355. format = formats[i];
  1356. surface = SDL_CreateSurface(1, 1, format);
  1357. SDLTest_AssertCheck(surface != NULL, "SDL_CreateSurface()");
  1358. ret = SDL_ClearSurface(surface, srcR, srcG, srcB, srcA);
  1359. SDLTest_AssertCheck(ret == true, "SDL_ClearSurface()");
  1360. ret = SDL_ReadSurfacePixelFloat(surface, 0, 0, &actualR, &actualG, &actualB, &actualA);
  1361. SDLTest_AssertCheck(ret == true, "SDL_ReadSurfacePixelFloat()");
  1362. deltaR = SDL_fabsf(actualR - srcR);
  1363. deltaG = SDL_fabsf(actualG - srcG);
  1364. deltaB = SDL_fabsf(actualB - srcB);
  1365. deltaA = SDL_fabsf(actualA - srcA);
  1366. SDLTest_AssertCheck(
  1367. deltaR <= MAXIMUM_ERROR &&
  1368. deltaG <= MAXIMUM_ERROR &&
  1369. deltaB <= MAXIMUM_ERROR &&
  1370. deltaA <= MAXIMUM_ERROR,
  1371. "Checking %s surface clear results, expected %.4f,%.4f,%.4f,%.4f, got %.4f,%.4f,%.4f,%.4f",
  1372. SDL_GetPixelFormatName(format),
  1373. srcR, srcG, srcB, srcA, actualR, actualG, actualB, actualA);
  1374. SDL_DestroySurface(surface);
  1375. }
  1376. return TEST_COMPLETED;
  1377. }
  1378. static int SDLCALL surface_testPremultiplyAlpha(void *arg)
  1379. {
  1380. SDL_PixelFormat formats[] = {
  1381. SDL_PIXELFORMAT_ARGB8888, SDL_PIXELFORMAT_RGBA8888,
  1382. SDL_PIXELFORMAT_ARGB2101010, SDL_PIXELFORMAT_ABGR2101010,
  1383. SDL_PIXELFORMAT_ARGB64, SDL_PIXELFORMAT_RGBA64,
  1384. SDL_PIXELFORMAT_ARGB128_FLOAT, SDL_PIXELFORMAT_RGBA128_FLOAT,
  1385. };
  1386. SDL_Surface *surface;
  1387. SDL_PixelFormat format;
  1388. const float MAXIMUM_ERROR_LOW_PRECISION = 1 / 255.0f;
  1389. const float MAXIMUM_ERROR_HIGH_PRECISION = 0.0001f;
  1390. float srcR = 10 / 255.0f, srcG = 128 / 255.0f, srcB = 240 / 255.0f, srcA = 170 / 255.0f;
  1391. float expectedR = srcR * srcA;
  1392. float expectedG = srcG * srcA;
  1393. float expectedB = srcB * srcA;
  1394. float actualR, actualG, actualB;
  1395. float deltaR, deltaG, deltaB;
  1396. int i, ret;
  1397. for (i = 0; i < SDL_arraysize(formats); ++i) {
  1398. const float MAXIMUM_ERROR = (SDL_BITSPERPIXEL(formats[i]) > 32) ? MAXIMUM_ERROR_HIGH_PRECISION : MAXIMUM_ERROR_LOW_PRECISION;
  1399. format = formats[i];
  1400. surface = SDL_CreateSurface(1, 1, format);
  1401. SDLTest_AssertCheck(surface != NULL, "SDL_CreateSurface()");
  1402. ret = SDL_SetSurfaceColorspace(surface, SDL_COLORSPACE_SRGB);
  1403. SDLTest_AssertCheck(ret == true, "SDL_SetSurfaceColorspace()");
  1404. ret = SDL_ClearSurface(surface, srcR, srcG, srcB, srcA);
  1405. SDLTest_AssertCheck(ret == true, "SDL_ClearSurface()");
  1406. ret = SDL_PremultiplySurfaceAlpha(surface, false);
  1407. SDLTest_AssertCheck(ret == true, "SDL_PremultiplySurfaceAlpha()");
  1408. ret = SDL_ReadSurfacePixelFloat(surface, 0, 0, &actualR, &actualG, &actualB, NULL);
  1409. SDLTest_AssertCheck(ret == true, "SDL_ReadSurfacePixelFloat()");
  1410. deltaR = SDL_fabsf(actualR - expectedR);
  1411. deltaG = SDL_fabsf(actualG - expectedG);
  1412. deltaB = SDL_fabsf(actualB - expectedB);
  1413. SDLTest_AssertCheck(
  1414. deltaR <= MAXIMUM_ERROR &&
  1415. deltaG <= MAXIMUM_ERROR &&
  1416. deltaB <= MAXIMUM_ERROR,
  1417. "Checking %s alpha premultiply results, expected %.4f,%.4f,%.4f, got %.4f,%.4f,%.4f",
  1418. SDL_GetPixelFormatName(format),
  1419. expectedR, expectedG, expectedB, actualR, actualG, actualB);
  1420. SDL_DestroySurface(surface);
  1421. }
  1422. return TEST_COMPLETED;
  1423. }
  1424. static int SDLCALL surface_testScale(void *arg)
  1425. {
  1426. SDL_PixelFormat formats[] = {
  1427. SDL_PIXELFORMAT_ARGB8888, SDL_PIXELFORMAT_RGBA8888,
  1428. SDL_PIXELFORMAT_ARGB2101010, SDL_PIXELFORMAT_ABGR2101010,
  1429. SDL_PIXELFORMAT_ARGB64, SDL_PIXELFORMAT_RGBA64,
  1430. SDL_PIXELFORMAT_ARGB128_FLOAT, SDL_PIXELFORMAT_RGBA128_FLOAT,
  1431. };
  1432. SDL_ScaleMode modes[] = {
  1433. SDL_SCALEMODE_NEAREST, SDL_SCALEMODE_LINEAR
  1434. };
  1435. SDL_Surface *surface, *result;
  1436. SDL_PixelFormat format;
  1437. SDL_ScaleMode mode;
  1438. const float MAXIMUM_ERROR = 0.0001f;
  1439. float srcR = 10 / 255.0f, srcG = 128 / 255.0f, srcB = 240 / 255.0f, srcA = 170 / 255.0f;
  1440. float actualR, actualG, actualB, actualA;
  1441. float deltaR, deltaG, deltaB, deltaA;
  1442. int i, j, ret;
  1443. for (i = 0; i < SDL_arraysize(formats); ++i) {
  1444. for (j = 0; j < SDL_arraysize(modes); ++j) {
  1445. format = formats[i];
  1446. mode = modes[j];
  1447. surface = SDL_CreateSurface(1, 1, format);
  1448. SDLTest_AssertCheck(surface != NULL, "SDL_CreateSurface()");
  1449. ret = SDL_SetSurfaceColorspace(surface, SDL_COLORSPACE_SRGB);
  1450. SDLTest_AssertCheck(ret == true, "SDL_SetSurfaceColorspace()");
  1451. ret = SDL_ClearSurface(surface, srcR, srcG, srcB, srcA);
  1452. SDLTest_AssertCheck(ret == true, "SDL_ClearSurface()");
  1453. result = SDL_ScaleSurface(surface, 2, 2, mode);
  1454. SDLTest_AssertCheck(ret == true, "SDL_PremultiplySurfaceAlpha()");
  1455. ret = SDL_ReadSurfacePixelFloat(result, 1, 1, &actualR, &actualG, &actualB, &actualA);
  1456. SDLTest_AssertCheck(ret == true, "SDL_ReadSurfacePixelFloat()");
  1457. deltaR = SDL_fabsf(actualR - srcR);
  1458. deltaG = SDL_fabsf(actualG - srcG);
  1459. deltaB = SDL_fabsf(actualB - srcB);
  1460. deltaA = SDL_fabsf(actualA - srcA);
  1461. SDLTest_AssertCheck(
  1462. deltaR <= MAXIMUM_ERROR &&
  1463. deltaG <= MAXIMUM_ERROR &&
  1464. deltaB <= MAXIMUM_ERROR &&
  1465. deltaA <= MAXIMUM_ERROR,
  1466. "Checking %s %s scaling results, expected %.4f,%.4f,%.4f,%.4f got %.4f,%.4f,%.4f,%.4f",
  1467. SDL_GetPixelFormatName(format),
  1468. mode == SDL_SCALEMODE_NEAREST ? "nearest" : "linear",
  1469. srcR, srcG, srcB, srcA, actualR, actualG, actualB, actualA);
  1470. SDL_DestroySurface(surface);
  1471. SDL_DestroySurface(result);
  1472. }
  1473. }
  1474. return TEST_COMPLETED;
  1475. }
  1476. /* ================= Test References ================== */
  1477. /* Surface test cases */
  1478. static const SDLTest_TestCaseReference surfaceTestInvalidFormat = {
  1479. surface_testInvalidFormat, "surface_testInvalidFormat", "Tests creating surface with invalid format", TEST_ENABLED
  1480. };
  1481. static const SDLTest_TestCaseReference surfaceTestSaveLoadBitmap = {
  1482. surface_testSaveLoadBitmap, "surface_testSaveLoadBitmap", "Tests sprite saving and loading.", TEST_ENABLED
  1483. };
  1484. static const SDLTest_TestCaseReference surfaceTestBlitZeroSource = {
  1485. surface_testBlitZeroSource, "surface_testBlitZeroSource", "Tests blitting from a zero sized source rectangle", TEST_ENABLED
  1486. };
  1487. static const SDLTest_TestCaseReference surfaceTestBlit = {
  1488. surface_testBlit, "surface_testBlit", "Tests basic blitting.", TEST_ENABLED
  1489. };
  1490. static const SDLTest_TestCaseReference surfaceTestBlitTiled = {
  1491. surface_testBlitTiled, "surface_testBlitTiled", "Tests tiled blitting.", TEST_ENABLED
  1492. };
  1493. static const SDLTest_TestCaseReference surfaceTestBlit9Grid = {
  1494. surface_testBlit9Grid, "surface_testBlit9Grid", "Tests 9-grid blitting.", TEST_ENABLED
  1495. };
  1496. static const SDLTest_TestCaseReference surfaceTestBlitMultiple = {
  1497. surface_testBlitMultiple, "surface_testBlitMultiple", "Tests blitting between multiple surfaces of the same format.", TEST_ENABLED
  1498. };
  1499. static const SDLTest_TestCaseReference surfaceTestLoadFailure = {
  1500. surface_testLoadFailure, "surface_testLoadFailure", "Tests sprite loading. A failure case.", TEST_ENABLED
  1501. };
  1502. static const SDLTest_TestCaseReference surfaceTestSurfaceConversion = {
  1503. surface_testSurfaceConversion, "surface_testSurfaceConversion", "Tests surface conversion.", TEST_ENABLED
  1504. };
  1505. static const SDLTest_TestCaseReference surfaceTestCompleteSurfaceConversion = {
  1506. surface_testCompleteSurfaceConversion, "surface_testCompleteSurfaceConversion", "Tests surface conversion across all pixel formats", TEST_ENABLED
  1507. };
  1508. static const SDLTest_TestCaseReference surfaceTestBlitColorMod = {
  1509. surface_testBlitColorMod, "surface_testBlitColorMod", "Tests some blitting routines with color mod.", TEST_ENABLED
  1510. };
  1511. static const SDLTest_TestCaseReference surfaceTestBlitAlphaMod = {
  1512. surface_testBlitAlphaMod, "surface_testBlitAlphaMod", "Tests some blitting routines with alpha mod.", TEST_ENABLED
  1513. };
  1514. static const SDLTest_TestCaseReference surfaceTestBlitBlendBlend = {
  1515. surface_testBlitBlendBlend, "surface_testBlitBlendBlend", "Tests blitting routines with blend blending mode.", TEST_ENABLED
  1516. };
  1517. static const SDLTest_TestCaseReference surfaceTestBlitBlendPremultiplied = {
  1518. surface_testBlitBlendPremultiplied, "surface_testBlitBlendPremultiplied", "Tests blitting routines with premultiplied blending mode.", TEST_ENABLED
  1519. };
  1520. static const SDLTest_TestCaseReference surfaceTestBlitBlendAdd = {
  1521. surface_testBlitBlendAdd, "surface_testBlitBlendAdd", "Tests blitting routines with add blending mode.", TEST_ENABLED
  1522. };
  1523. static const SDLTest_TestCaseReference surfaceTestBlitBlendAddPremultiplied = {
  1524. surface_testBlitBlendAddPremultiplied, "surface_testBlitBlendAddPremultiplied", "Tests blitting routines with premultiplied add blending mode.", TEST_ENABLED
  1525. };
  1526. static const SDLTest_TestCaseReference surfaceTestBlitBlendMod = {
  1527. surface_testBlitBlendMod, "surface_testBlitBlendMod", "Tests blitting routines with mod blending mode.", TEST_ENABLED
  1528. };
  1529. static const SDLTest_TestCaseReference surfaceTestBlitBlendMul = {
  1530. surface_testBlitBlendMul, "surface_testBlitBlendMul", "Tests blitting routines with mul blending mode.", TEST_ENABLED
  1531. };
  1532. static const SDLTest_TestCaseReference surfaceTestBlitBitmap = {
  1533. surface_testBlitBitmap, "surface_testBlitBitmap", "Tests blitting routines with bitmap surfaces.", TEST_ENABLED
  1534. };
  1535. static const SDLTest_TestCaseReference surfaceTestBlitInvalid = {
  1536. surface_testBlitInvalid, "surface_testBlitInvalid", "Tests blitting routines with invalid surfaces.", TEST_ENABLED
  1537. };
  1538. static const SDLTest_TestCaseReference surfaceTestBlitsWithBadCoordinates = {
  1539. surface_testBlitsWithBadCoordinates, "surface_testBlitsWithBadCoordinates", "Test blitting routines with bad coordinates.", TEST_ENABLED
  1540. };
  1541. static const SDLTest_TestCaseReference surfaceTestOverflow = {
  1542. surface_testOverflow, "surface_testOverflow", "Test overflow detection.", TEST_ENABLED
  1543. };
  1544. static const SDLTest_TestCaseReference surfaceTestFlip = {
  1545. surface_testFlip, "surface_testFlip", "Test surface flipping.", TEST_ENABLED
  1546. };
  1547. static const SDLTest_TestCaseReference surfaceTestPalette = {
  1548. surface_testPalette, "surface_testPalette", "Test surface palette operations.", TEST_ENABLED
  1549. };
  1550. static const SDLTest_TestCaseReference surfaceTestPalettization = {
  1551. surface_testPalettization, "surface_testPalettization", "Test surface palettization.", TEST_ENABLED
  1552. };
  1553. static const SDLTest_TestCaseReference surfaceTestClearSurface = {
  1554. surface_testClearSurface, "surface_testClearSurface", "Test clear surface operations.", TEST_ENABLED
  1555. };
  1556. static const SDLTest_TestCaseReference surfaceTestPremultiplyAlpha = {
  1557. surface_testPremultiplyAlpha, "surface_testPremultiplyAlpha", "Test alpha premultiply operations.", TEST_ENABLED
  1558. };
  1559. static const SDLTest_TestCaseReference surfaceTestScale = {
  1560. surface_testScale, "surface_testScale", "Test scaling operations.", TEST_ENABLED
  1561. };
  1562. /* Sequence of Surface test cases */
  1563. static const SDLTest_TestCaseReference *surfaceTests[] = {
  1564. &surfaceTestInvalidFormat,
  1565. &surfaceTestSaveLoadBitmap,
  1566. &surfaceTestBlitZeroSource,
  1567. &surfaceTestBlit,
  1568. &surfaceTestBlitTiled,
  1569. &surfaceTestBlit9Grid,
  1570. &surfaceTestBlitMultiple,
  1571. &surfaceTestLoadFailure,
  1572. &surfaceTestSurfaceConversion,
  1573. &surfaceTestCompleteSurfaceConversion,
  1574. &surfaceTestBlitColorMod,
  1575. &surfaceTestBlitAlphaMod,
  1576. &surfaceTestBlitBlendBlend,
  1577. &surfaceTestBlitBlendPremultiplied,
  1578. &surfaceTestBlitBlendAdd,
  1579. &surfaceTestBlitBlendAddPremultiplied,
  1580. &surfaceTestBlitBlendMod,
  1581. &surfaceTestBlitBlendMul,
  1582. &surfaceTestBlitBitmap,
  1583. &surfaceTestBlitInvalid,
  1584. &surfaceTestBlitsWithBadCoordinates,
  1585. &surfaceTestOverflow,
  1586. &surfaceTestFlip,
  1587. &surfaceTestPalette,
  1588. &surfaceTestPalettization,
  1589. &surfaceTestClearSurface,
  1590. &surfaceTestPremultiplyAlpha,
  1591. &surfaceTestScale,
  1592. NULL
  1593. };
  1594. /* Surface test suite (global) */
  1595. SDLTest_TestSuiteReference surfaceTestSuite = {
  1596. "Surface",
  1597. surfaceSetUp,
  1598. surfaceTests,
  1599. surfaceTearDown
  1600. };