1 /*M/////////////////////////////////////////////////////////////////////////////////////// 2 // 3 // IMPORTANT: READ BEFORE DOWNLOADING, COPYING, INSTALLING OR USING. 4 // 5 // By downloading, copying, installing or using the software you agree to this license. 6 // If you do not agree to this license, do not download, install, 7 // copy or use the software. 8 // 9 // 10 // License Agreement 11 // For Open Source Computer Vision Library 12 // 13 // Copyright (C) 2000-2008, Intel Corporation, all rights reserved. 14 // Copyright (C) 2009, Willow Garage Inc., all rights reserved. 15 // Third party copyrights are property of their respective owners. 16 // 17 // Redistribution and use in source and binary forms, with or without modification, 18 // are permitted provided that the following conditions are met: 19 // 20 // * Redistribution's of source code must retain the above copyright notice, 21 // this list of conditions and the following disclaimer. 22 // 23 // * Redistribution's in binary form must reproduce the above copyright notice, 24 // this list of conditions and the following disclaimer in the documentation 25 // and/or other materials provided with the distribution. 26 // 27 // * The name of the copyright holders may not be used to endorse or promote products 28 // derived from this software without specific prior written permission. 29 // 30 // This software is provided by the copyright holders and contributors "as is" and 31 // any express or implied warranties, including, but not limited to, the implied 32 // warranties of merchantability and fitness for a particular purpose are disclaimed. 33 // In no event shall the Intel Corporation or contributors be liable for any direct, 34 // indirect, incidental, special, exemplary, or consequential damages 35 // (including, but not limited to, procurement of substitute goods or services; 36 // loss of use, data, or profits; or business interruption) however caused 37 // and on any theory of liability, whether in contract, strict liability, 38 // or tort (including negligence or otherwise) arising in any way out of 39 // the use of this software, even if advised of the possibility of such damage. 40 // 41 //M*/ 42 43 #include "test_precomp.hpp" 44 45 #if defined _MSC_VER && _MSC_VER >= 1200 46 # pragma warning (disable : 4408 4201 4100) 47 #endif 48 49 static std::string path; 50 51 namespace { 52 53 template <class T_in, class T_out> 54 void generateIntegralTests(NCVAutoTestLister &testLister, 55 NCVTestSourceProvider<T_in> &src, 56 Ncv32u maxWidth, Ncv32u maxHeight) 57 { 58 for (Ncv32f _i=1.0; _i<maxWidth; _i*=1.2f) 59 { 60 Ncv32u i = (Ncv32u)_i; 61 char testName[80]; 62 sprintf(testName, "LinIntImgW%dH%d", i, 2); 63 testLister.add(new TestIntegralImage<T_in, T_out>(testName, src, i, 2)); 64 } 65 for (Ncv32f _i=1.0; _i<maxHeight; _i*=1.2f) 66 { 67 Ncv32u i = (Ncv32u)_i; 68 char testName[80]; 69 sprintf(testName, "LinIntImgW%dH%d", 2, i); 70 testLister.add(new TestIntegralImage<T_in, T_out>(testName, src, 2, i)); 71 } 72 73 testLister.add(new TestIntegralImage<T_in, T_out>("LinIntImg_VGA", src, 640, 480)); 74 } 75 76 void generateSquaredIntegralTests(NCVAutoTestLister &testLister, NCVTestSourceProvider<Ncv8u> &src, 77 Ncv32u maxWidth, Ncv32u maxHeight) 78 { 79 for (Ncv32f _i=1.0; _i<maxWidth; _i*=1.2f) 80 { 81 Ncv32u i = (Ncv32u)_i; 82 char testName[80]; 83 sprintf(testName, "SqIntImgW%dH%d", i, 32); 84 testLister.add(new TestIntegralImageSquared(testName, src, i, 32)); 85 } 86 for (Ncv32f _i=1.0; _i<maxHeight; _i*=1.2f) 87 { 88 Ncv32u i = (Ncv32u)_i; 89 char testName[80]; 90 sprintf(testName, "SqIntImgW%dH%d", 32, i); 91 testLister.add(new TestIntegralImageSquared(testName, src, 32, i)); 92 } 93 94 testLister.add(new TestIntegralImageSquared("SqLinIntImg_VGA", src, 640, 480)); 95 } 96 97 void generateRectStdDevTests(NCVAutoTestLister &testLister, NCVTestSourceProvider<Ncv8u> &src, 98 Ncv32u maxWidth, Ncv32u maxHeight) 99 { 100 NcvRect32u rect(1,1,18,18); 101 102 for (Ncv32f _i=32; _i<maxHeight/2 && _i < maxWidth/2; _i*=1.2f) 103 { 104 Ncv32u i = (Ncv32u)_i; 105 char testName[80]; 106 sprintf(testName, "RectStdDevW%dH%d", i*2, i); 107 testLister.add(new TestRectStdDev(testName, src, i*2, i, rect, 1, true)); 108 testLister.add(new TestRectStdDev(testName, src, i*2, i, rect, 1.5, false)); 109 testLister.add(new TestRectStdDev(testName, src, i-1, i*2-1, rect, 1, false)); 110 testLister.add(new TestRectStdDev(testName, src, i-1, i*2-1, rect, 2.5, true)); 111 } 112 113 testLister.add(new TestRectStdDev("RectStdDev_VGA", src, 640, 480, rect, 1, true)); 114 } 115 116 template <class T> 117 void generateResizeTests(NCVAutoTestLister &testLister, NCVTestSourceProvider<T> &src) 118 { 119 for (Ncv32u i=2; i<10; ++i) 120 { 121 char testName[80]; 122 sprintf(testName, "TestResize_VGA_s%d", i); 123 testLister.add(new TestResize<T>(testName, src, 640, 480, i, true)); 124 testLister.add(new TestResize<T>(testName, src, 640, 480, i, false)); 125 } 126 127 for (Ncv32u i=2; i<10; ++i) 128 { 129 char testName[80]; 130 sprintf(testName, "TestResize_1080_s%d", i); 131 testLister.add(new TestResize<T>(testName, src, 1920, 1080, i, true)); 132 testLister.add(new TestResize<T>(testName, src, 1920, 1080, i, false)); 133 } 134 } 135 136 void generateNPPSTVectorTests(NCVAutoTestLister &testLister, NCVTestSourceProvider<Ncv32u> &src, Ncv32u maxLength) 137 { 138 //compaction 139 for (Ncv32f _i=256.0; _i<maxLength; _i*=1.5f) 140 { 141 Ncv32u i = (Ncv32u)_i; 142 char testName[80]; 143 sprintf(testName, "Compaction%d", i); 144 testLister.add(new TestCompact(testName, src, i, 0xFFFFFFFF, 30)); 145 } 146 for (Ncv32u i=1; i<260; i++) 147 { 148 char testName[80]; 149 sprintf(testName, "Compaction%d", i); 150 testLister.add(new TestCompact(testName, src, i, 0xC001C0DE, 70)); 151 testLister.add(new TestCompact(testName, src, i, 0xC001C0DE, 0)); 152 testLister.add(new TestCompact(testName, src, i, 0xC001C0DE, 100)); 153 } 154 for (Ncv32u i=256*256-10; i<256*256+10; i++) 155 { 156 char testName[80]; 157 sprintf(testName, "Compaction%d", i); 158 testLister.add(new TestCompact(testName, src, i, 0xFFFFFFFF, 40)); 159 } 160 for (Ncv32u i=256*256*256-2; i<256*256*256+2; i++) 161 { 162 char testName[80]; 163 sprintf(testName, "Compaction%d", i); 164 testLister.add(new TestCompact(testName, src, i, 0x00000000, 2)); 165 } 166 } 167 168 169 template <class T> 170 void generateTransposeTests(NCVAutoTestLister &testLister, NCVTestSourceProvider<T> &src) 171 { 172 for (int i=2; i<64; i+=4) 173 { 174 for (int j=2; j<64; j+=4) 175 { 176 char testName[80]; 177 sprintf(testName, "TestTranspose_%dx%d", i, j); 178 testLister.add(new TestTranspose<T>(testName, src, i, j)); 179 } 180 } 181 182 for (int i=1; i<128; i+=1) 183 { 184 for (int j=1; j<2; j+=1) 185 { 186 char testName[80]; 187 sprintf(testName, "TestTranspose_%dx%d", i, j); 188 testLister.add(new TestTranspose<T>(testName, src, i, j)); 189 } 190 } 191 192 testLister.add(new TestTranspose<T>("TestTranspose_VGA", src, 640, 480)); 193 testLister.add(new TestTranspose<T>("TestTranspose_HD1080", src, 1920, 1080)); 194 195 //regression tests 196 testLister.add(new TestTranspose<T>("TestTranspose_reg_0", src, 1072, 375)); 197 } 198 199 template <class T> 200 void generateDrawRectsTests(NCVAutoTestLister &testLister, 201 NCVTestSourceProvider<T> &src, 202 NCVTestSourceProvider<Ncv32u> &src32u, 203 Ncv32u maxWidth, Ncv32u maxHeight) 204 { 205 for (Ncv32f _i=16.0; _i<maxWidth; _i*=1.1f) 206 { 207 Ncv32u i = (Ncv32u)_i; 208 Ncv32u j = maxHeight * i / maxWidth; 209 if (!j) continue; 210 char testName[80]; 211 sprintf(testName, "DrawRectsW%dH%d", i, j); 212 213 if (sizeof(T) == sizeof(Ncv32u)) 214 { 215 testLister.add(new TestDrawRects<T>(testName, src, src32u, i, j, i*j/1000+1, (T)0xFFFFFFFF)); 216 } 217 else if (sizeof(T) == sizeof(Ncv8u)) 218 { 219 testLister.add(new TestDrawRects<T>(testName, src, src32u, i, j, i*j/1000+1, (T)0xFF)); 220 } 221 else 222 { 223 ncvAssertPrintCheck(false, "Attempted to instantiate non-existing DrawRects test suite"); 224 } 225 } 226 227 //test VGA 228 testLister.add(new TestDrawRects<T>("DrawRects_VGA", src, src32u, 640, 480, 640*480/1000, (T)0xFF)); 229 } 230 231 void generateVectorTests(NCVAutoTestLister &testLister, NCVTestSourceProvider<Ncv32u> &src, Ncv32u maxLength) 232 { 233 //growth 234 for (Ncv32f _i=10.0; _i<maxLength; _i*=1.5f) 235 { 236 Ncv32u i = (Ncv32u)_i; 237 char testName[80]; 238 sprintf(testName, "VectorGrow%d", i); 239 testLister.add(new TestHypothesesGrow(testName, src, 20, 20, 2.2f, i, i/2, i, i/4)); 240 testLister.add(new TestHypothesesGrow(testName, src, 10, 42, 1.2f, i, i, i, 0)); 241 } 242 testLister.add(new TestHypothesesGrow("VectorGrow01b", src, 10, 42, 1.2f, 10, 0, 10, 1)); 243 testLister.add(new TestHypothesesGrow("VectorGrow11b", src, 10, 42, 1.2f, 10, 1, 10, 1)); 244 testLister.add(new TestHypothesesGrow("VectorGrow10b", src, 10, 42, 1.2f, 10, 1, 10, 0)); 245 testLister.add(new TestHypothesesGrow("VectorGrow00b", src, 10, 42, 1.2f, 10, 0, 10, 0)); 246 } 247 248 void generateHypothesesFiltrationTests(NCVAutoTestLister &testLister, NCVTestSourceProvider<Ncv32u> &src, Ncv32u maxLength) 249 { 250 for (Ncv32f _i=1.0; _i<maxLength; _i*=1.1f) 251 { 252 Ncv32u i = (Ncv32u)_i; 253 char testName[80]; 254 sprintf(testName, "HypFilter%d", i); 255 testLister.add(new TestHypothesesFilter(testName, src, i, 3, 0.2f)); 256 testLister.add(new TestHypothesesFilter(testName, src, i, 0, 0.2f)); 257 testLister.add(new TestHypothesesFilter(testName, src, i, 1, 0.1f)); 258 } 259 } 260 261 262 void generateHaarLoaderTests(NCVAutoTestLister &testLister) 263 { 264 testLister.add(new TestHaarCascadeLoader("haarcascade_eye.xml", path + "haarcascade_eye.xml")); 265 testLister.add(new TestHaarCascadeLoader("haarcascade_frontalface_alt.xml", path + "haarcascade_frontalface_alt.xml")); 266 testLister.add(new TestHaarCascadeLoader("haarcascade_frontalface_alt2.xml", path + "haarcascade_frontalface_alt2.xml")); 267 testLister.add(new TestHaarCascadeLoader("haarcascade_frontalface_alt_tree.xml", path + "haarcascade_frontalface_alt_tree.xml")); 268 testLister.add(new TestHaarCascadeLoader("haarcascade_eye_tree_eyeglasses.xml", path + "haarcascade_eye_tree_eyeglasses.xml")); 269 } 270 271 void generateHaarApplicationTests(NCVAutoTestLister &testLister, NCVTestSourceProvider<Ncv8u> &src, 272 Ncv32u maxWidth, Ncv32u maxHeight) 273 { 274 (void)maxHeight; 275 for (Ncv32u i=100; i<512; i+=41) 276 { 277 for (Ncv32u j=100; j<128; j+=25) 278 { 279 char testName[80]; 280 sprintf(testName, "HaarAppl%d_%d", i, j); 281 testLister.add(new TestHaarCascadeApplication(testName, src, path + "haarcascade_frontalface_alt.xml", j, i)); 282 } 283 } 284 for (Ncv32f _i=20.0; _i<maxWidth; _i*=1.5f) 285 { 286 Ncv32u i = (Ncv32u)_i; 287 char testName[80]; 288 sprintf(testName, "HaarAppl%d", i); 289 testLister.add(new TestHaarCascadeApplication(testName, src, path + "haarcascade_frontalface_alt.xml", i, i)); 290 } 291 } 292 293 static void devNullOutput(const cv::String& msg) 294 { 295 (void)msg; 296 } 297 298 } 299 300 bool nvidia_NPPST_Integral_Image(const std::string& test_data_path, OutputLevel outputLevel) 301 { 302 path = test_data_path.c_str(); 303 ncvSetDebugOutputHandler(devNullOutput); 304 305 NCVAutoTestLister testListerII("NPPST Integral Image", outputLevel); 306 307 NCVTestSourceProvider<Ncv8u> testSrcRandom_8u(2010, 0, 255, 2048, 2048); 308 NCVTestSourceProvider<Ncv32f> testSrcRandom_32f(2010, -1.0f, 1.0f, 2048, 2048); 309 310 generateIntegralTests<Ncv8u, Ncv32u>(testListerII, testSrcRandom_8u, 2048, 2048); 311 generateIntegralTests<Ncv32f, Ncv32f>(testListerII, testSrcRandom_32f, 2048, 2048); 312 313 return testListerII.invoke(); 314 } 315 316 bool nvidia_NPPST_Squared_Integral_Image(const std::string& test_data_path, OutputLevel outputLevel) 317 { 318 path = test_data_path; 319 ncvSetDebugOutputHandler(devNullOutput); 320 321 NCVAutoTestLister testListerSII("NPPST Squared Integral Image", outputLevel); 322 323 NCVTestSourceProvider<Ncv8u> testSrcRandom_8u(2010, 0, 255, 2048, 2048); 324 325 generateSquaredIntegralTests(testListerSII, testSrcRandom_8u, 2048, 2048); 326 327 return testListerSII.invoke(); 328 } 329 330 bool nvidia_NPPST_RectStdDev(const std::string& test_data_path, OutputLevel outputLevel) 331 { 332 path = test_data_path; 333 ncvSetDebugOutputHandler(devNullOutput); 334 335 NCVAutoTestLister testListerRStdDev("NPPST RectStdDev", outputLevel); 336 337 NCVTestSourceProvider<Ncv8u> testSrcRandom_8u(2010, 0, 255, 2048, 2048); 338 339 generateRectStdDevTests(testListerRStdDev, testSrcRandom_8u, 2048, 2048); 340 341 return testListerRStdDev.invoke(); 342 } 343 344 bool nvidia_NPPST_Resize(const std::string& test_data_path, OutputLevel outputLevel) 345 { 346 path = test_data_path; 347 ncvSetDebugOutputHandler(devNullOutput); 348 349 NCVAutoTestLister testListerResize("NPPST Resize", outputLevel); 350 351 NCVTestSourceProvider<Ncv32u> testSrcRandom_32u(2010, 0, 0xFFFFFFFF, 2048, 2048); 352 NCVTestSourceProvider<Ncv64u> testSrcRandom_64u(2010, 0, (Ncv64u) -1, 2048, 2048); 353 354 generateResizeTests(testListerResize, testSrcRandom_32u); 355 generateResizeTests(testListerResize, testSrcRandom_64u); 356 357 return testListerResize.invoke(); 358 } 359 360 bool nvidia_NPPST_Vector_Operations(const std::string& test_data_path, OutputLevel outputLevel) 361 { 362 path = test_data_path; 363 ncvSetDebugOutputHandler(devNullOutput); 364 365 NCVAutoTestLister testListerNPPSTVectorOperations("NPPST Vector Operations", outputLevel); 366 367 NCVTestSourceProvider<Ncv32u> testSrcRandom_32u(2010, 0, 0xFFFFFFFF, 2048, 2048); 368 369 generateNPPSTVectorTests(testListerNPPSTVectorOperations, testSrcRandom_32u, 2048*2048); 370 371 return testListerNPPSTVectorOperations.invoke(); 372 } 373 374 bool nvidia_NPPST_Transpose(const std::string& test_data_path, OutputLevel outputLevel) 375 { 376 path = test_data_path; 377 ncvSetDebugOutputHandler(devNullOutput); 378 379 NCVAutoTestLister testListerTranspose("NPPST Transpose", outputLevel); 380 381 NCVTestSourceProvider<Ncv32u> testSrcRandom_32u(2010, 0, 0xFFFFFFFF, 2048, 2048); 382 NCVTestSourceProvider<Ncv64u> testSrcRandom_64u(2010, 0, (Ncv64u) -1, 2048, 2048); 383 384 generateTransposeTests(testListerTranspose, testSrcRandom_32u); 385 generateTransposeTests(testListerTranspose, testSrcRandom_64u); 386 387 return testListerTranspose.invoke(); 388 } 389 390 bool nvidia_NCV_Vector_Operations(const std::string& test_data_path, OutputLevel outputLevel) 391 { 392 path = test_data_path; 393 ncvSetDebugOutputHandler(devNullOutput); 394 395 NCVAutoTestLister testListerVectorOperations("Vector Operations", outputLevel); 396 397 NCVTestSourceProvider<Ncv32u> testSrcRandom_32u(2010, 0, 0xFFFFFFFF, 2048, 2048); 398 399 generateVectorTests(testListerVectorOperations, testSrcRandom_32u, 2048*2048); 400 401 return testListerVectorOperations.invoke(); 402 403 } 404 405 bool nvidia_NCV_Haar_Cascade_Loader(const std::string& test_data_path, OutputLevel outputLevel) 406 { 407 path = test_data_path; 408 ncvSetDebugOutputHandler(devNullOutput); 409 410 NCVAutoTestLister testListerHaarLoader("Haar Cascade Loader", outputLevel); 411 412 generateHaarLoaderTests(testListerHaarLoader); 413 414 return testListerHaarLoader.invoke(); 415 } 416 417 bool nvidia_NCV_Haar_Cascade_Application(const std::string& test_data_path, OutputLevel outputLevel) 418 { 419 path = test_data_path; 420 ncvSetDebugOutputHandler(devNullOutput); 421 422 NCVAutoTestLister testListerHaarAppl("Haar Cascade Application", outputLevel); 423 424 NCVTestSourceProvider<Ncv8u> testSrcFacesVGA_8u(path + "group_1_640x480_VGA.pgm"); 425 426 generateHaarApplicationTests(testListerHaarAppl, testSrcFacesVGA_8u, 640, 480); 427 428 return testListerHaarAppl.invoke(); 429 } 430 431 bool nvidia_NCV_Hypotheses_Filtration(const std::string& test_data_path, OutputLevel outputLevel) 432 { 433 path = test_data_path; 434 ncvSetDebugOutputHandler(devNullOutput); 435 436 NCVAutoTestLister testListerHypFiltration("Hypotheses Filtration", outputLevel); 437 438 NCVTestSourceProvider<Ncv32u> testSrcRandom_32u(2010, 0, 0xFFFFFFFF, 2048, 2048); 439 440 generateHypothesesFiltrationTests(testListerHypFiltration, testSrcRandom_32u, 512); 441 442 return testListerHypFiltration.invoke(); 443 } 444 445 bool nvidia_NCV_Visualization(const std::string& test_data_path, OutputLevel outputLevel) 446 { 447 path = test_data_path; 448 ncvSetDebugOutputHandler(devNullOutput); 449 450 NCVAutoTestLister testListerVisualize("Visualization", outputLevel); 451 452 NCVTestSourceProvider<Ncv8u> testSrcRandom_8u(2010, 0, 255, 2048, 2048); 453 NCVTestSourceProvider<Ncv32u> testSrcRandom_32u(2010, 0, RAND_MAX, 2048, 2048); 454 455 generateDrawRectsTests(testListerVisualize, testSrcRandom_8u, testSrcRandom_32u, 2048, 2048); 456 generateDrawRectsTests(testListerVisualize, testSrcRandom_32u, testSrcRandom_32u, 2048, 2048); 457 458 return testListerVisualize.invoke(); 459 } 460