test_npr.cpp 5.2 KB

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  1. /*M///////////////////////////////////////////////////////////////////////////////////////
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  11. // For Open Source Computer Vision Library
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  16. // Redistribution and use in source and binary forms, with or without modification,
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  40. //M*/
  41. #include "test_precomp.hpp"
  42. namespace opencv_test { namespace {
  43. static const double numerical_precision = 100.;
  44. TEST(Photo_NPR_EdgePreserveSmoothing_RecursiveFilter, regression)
  45. {
  46. string folder = string(cvtest::TS::ptr()->get_data_path()) + "npr/";
  47. string original_path = folder + "test1.png";
  48. Mat source = imread(original_path, IMREAD_COLOR);
  49. ASSERT_FALSE(source.empty()) << "Could not load input image " << original_path;
  50. Mat result;
  51. edgePreservingFilter(source,result,1);
  52. Mat reference = imread(folder + "smoothened_RF_reference.png");
  53. double psnr = cvtest::PSNR(reference, result);
  54. EXPECT_GT(psnr, 60.0);
  55. }
  56. TEST(Photo_NPR_EdgePreserveSmoothing_NormConvFilter, regression)
  57. {
  58. string folder = string(cvtest::TS::ptr()->get_data_path()) + "npr/";
  59. string original_path = folder + "test1.png";
  60. Mat source = imread(original_path, IMREAD_COLOR);
  61. ASSERT_FALSE(source.empty()) << "Could not load input image " << original_path;
  62. Mat result;
  63. edgePreservingFilter(source,result,2);
  64. Mat reference = imread(folder + "smoothened_NCF_reference.png");
  65. double psnr = cvtest::PSNR(reference, result);
  66. EXPECT_GT(psnr, 60.0);
  67. }
  68. TEST(Photo_NPR_DetailEnhance, regression)
  69. {
  70. string folder = string(cvtest::TS::ptr()->get_data_path()) + "npr/";
  71. string original_path = folder + "test1.png";
  72. Mat source = imread(original_path, IMREAD_COLOR);
  73. ASSERT_FALSE(source.empty()) << "Could not load input image " << original_path;
  74. Mat result;
  75. detailEnhance(source,result);
  76. Mat reference = imread(folder + "detail_enhanced_reference.png");
  77. double psnr = cvtest::PSNR(reference, result);
  78. EXPECT_GT(psnr, 60.0);
  79. }
  80. TEST(Photo_NPR_PencilSketch, regression)
  81. {
  82. string folder = string(cvtest::TS::ptr()->get_data_path()) + "npr/";
  83. string original_path = folder + "test1.png";
  84. Mat source = imread(original_path, IMREAD_COLOR);
  85. ASSERT_FALSE(source.empty()) << "Could not load input image " << original_path;
  86. Mat pencil_result, color_pencil_result;
  87. pencilSketch(source,pencil_result, color_pencil_result, 10, 0.1f, 0.03f);
  88. Mat pencil_reference = imread(folder + "pencil_sketch_reference.png", 0 /* == grayscale*/);
  89. double pencil_error = cvtest::norm(pencil_reference, pencil_result, NORM_L1);
  90. EXPECT_LE(pencil_error, numerical_precision);
  91. Mat color_pencil_reference = imread(folder + "color_pencil_sketch_reference.png");
  92. double color_pencil_error = cvtest::norm(color_pencil_reference, color_pencil_result, NORM_L1);
  93. EXPECT_LE(color_pencil_error, numerical_precision);
  94. }
  95. TEST(Photo_NPR_Stylization, regression)
  96. {
  97. string folder = string(cvtest::TS::ptr()->get_data_path()) + "npr/";
  98. string original_path = folder + "test1.png";
  99. Mat source = imread(original_path, IMREAD_COLOR);
  100. ASSERT_FALSE(source.empty()) << "Could not load input image " << original_path;
  101. Mat result;
  102. stylization(source,result);
  103. Mat stylized_reference = imread(folder + "stylized_reference.png");
  104. double stylized_error = cvtest::norm(stylized_reference, result, NORM_L1);
  105. EXPECT_LE(stylized_error, numerical_precision);
  106. }
  107. }} // namespace