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test_convolutiondepthwise1d.cpp 8.4 kB

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  1. // Copyright 2019 Tencent
  2. // SPDX-License-Identifier: BSD-3-Clause
  3. #include "testutil.h"
  4. static int test_convolutiondepthwise1d(int w, int h, int outh, int kernel, int dilation, int stride, int pad, int bias, int group)
  5. {
  6. ncnn::Mat a = RandomMat(w, h);
  7. ncnn::ParamDict pd;
  8. pd.set(0, outh); // num_output
  9. pd.set(1, kernel); // kernel_w
  10. pd.set(2, dilation); // dilation_w
  11. pd.set(3, stride); // stride_w
  12. pd.set(4, pad); // pad_w
  13. pd.set(5, bias); // bias_term
  14. pd.set(6, outh / group * h / group * kernel * kernel * group);
  15. pd.set(7, group);
  16. int activation_type = RAND() % 7; // 0 1 2 3 4 5 6
  17. ncnn::Mat activation_params(2);
  18. activation_params[0] = (activation_type == 6) ? RandomFloat(0, 1) : RandomFloat(-1, 0); // alpha
  19. activation_params[1] = RandomFloat(0, 1); // beta
  20. pd.set(9, activation_type);
  21. pd.set(10, activation_params);
  22. std::vector<ncnn::Mat> weights(2);
  23. weights[0] = RandomMat(outh / group * h / group * kernel * kernel * group);
  24. weights[1] = RandomMat(outh);
  25. int ret = test_layer("ConvolutionDepthWise1D", pd, weights, a);
  26. if (ret != 0)
  27. {
  28. fprintf(stderr, "test_convolutiondepthwise1d failed w=%d h=%d outh=%d kernel=%d dilation=%d stride=%d pad=%d bias=%d group=%d act=%d actparams=[%f,%f]\n", w, h, outh, kernel, dilation, stride, pad, bias, group, activation_type, activation_params[0], activation_params[1]);
  29. }
  30. return ret;
  31. }
  32. static int test_convolutiondepthwise1d_0()
  33. {
  34. static const int kdsp[16][4] = {
  35. {1, 1, 1, 0},
  36. {1, 1, 2, 0},
  37. {2, 1, 1, 1},
  38. {2, 1, 2, -233},
  39. {3, 1, 1, 1},
  40. {3, 1, 2, 1},
  41. {3, 2, 1, 1},
  42. {4, 1, 1, 2},
  43. {4, 1, 2, -233},
  44. {4, 2, 1, -234},
  45. {5, 1, 1, -234},
  46. {5, 1, 2, 2},
  47. {5, 2, 2, 2},
  48. {7, 1, 1, 3},
  49. {7, 1, 2, 3},
  50. {7, 2, 1, -233},
  51. };
  52. for (int i = 0; i < 16; i++)
  53. {
  54. const int k = kdsp[i][0];
  55. const int d = kdsp[i][1];
  56. const int s = kdsp[i][2];
  57. const int p = kdsp[i][3];
  58. int ret = 0
  59. || test_convolutiondepthwise1d(15, 1, 1, k, d, s, p, 1, 1)
  60. || test_convolutiondepthwise1d(15, 2, 2, k, d, s, p, 0, 1)
  61. || test_convolutiondepthwise1d(15, 2, 2, k, d, s, p, 1, 2)
  62. || test_convolutiondepthwise1d(15, 3, 3, k, d, s, p, 0, 3)
  63. || test_convolutiondepthwise1d(15, 4, 2, k, d, s, p, 1, 2)
  64. || test_convolutiondepthwise1d(15, 4, 4, k, d, s, p, 0, 4)
  65. || test_convolutiondepthwise1d(15, 7, 7, k, d, s, p, 1, 7)
  66. || test_convolutiondepthwise1d(15, 8, 8, k, d, s, p, 0, 2)
  67. || test_convolutiondepthwise1d(15, 8, 8, k, d, s, p, 1, 8)
  68. || test_convolutiondepthwise1d(15, 12, 12, k, d, s, p, 0, 4)
  69. || test_convolutiondepthwise1d(15, 15, 15, k, d, s, p, 1, 15)
  70. || test_convolutiondepthwise1d(15, 16, 8, k, d, s, p, 0, 2)
  71. || test_convolutiondepthwise1d(15, 16, 16, k, d, s, p, 1, 16)
  72. || test_convolutiondepthwise1d(18, 1, 1, k, d, s, p, 1, 1)
  73. || test_convolutiondepthwise1d(18, 2, 2, k, d, s, p, 0, 1)
  74. || test_convolutiondepthwise1d(18, 2, 2, k, d, s, p, 1, 2)
  75. || test_convolutiondepthwise1d(18, 3, 3, k, d, s, p, 0, 3)
  76. || test_convolutiondepthwise1d(18, 4, 2, k, d, s, p, 1, 2)
  77. || test_convolutiondepthwise1d(18, 4, 4, k, d, s, p, 0, 4)
  78. || test_convolutiondepthwise1d(18, 7, 7, k, d, s, p, 1, 7)
  79. || test_convolutiondepthwise1d(18, 8, 8, k, d, s, p, 0, 2)
  80. || test_convolutiondepthwise1d(18, 8, 8, k, d, s, p, 1, 8)
  81. || test_convolutiondepthwise1d(18, 12, 12, k, d, s, p, 0, 4)
  82. || test_convolutiondepthwise1d(18, 15, 15, k, d, s, p, 1, 15)
  83. || test_convolutiondepthwise1d(18, 16, 8, k, d, s, p, 0, 2)
  84. || test_convolutiondepthwise1d(18, 16, 16, k, d, s, p, 1, 16)
  85. || test_convolutiondepthwise1d(25, 1, 1, k, d, s, p, 1, 1)
  86. || test_convolutiondepthwise1d(25, 2, 2, k, d, s, p, 0, 1)
  87. || test_convolutiondepthwise1d(25, 2, 2, k, d, s, p, 1, 2)
  88. || test_convolutiondepthwise1d(25, 3, 3, k, d, s, p, 0, 3)
  89. || test_convolutiondepthwise1d(25, 4, 2, k, d, s, p, 1, 2)
  90. || test_convolutiondepthwise1d(25, 4, 4, k, d, s, p, 0, 4)
  91. || test_convolutiondepthwise1d(25, 7, 7, k, d, s, p, 1, 7)
  92. || test_convolutiondepthwise1d(25, 8, 8, k, d, s, p, 0, 2)
  93. || test_convolutiondepthwise1d(25, 8, 8, k, d, s, p, 1, 8)
  94. || test_convolutiondepthwise1d(25, 12, 12, k, d, s, p, 0, 4)
  95. || test_convolutiondepthwise1d(25, 15, 15, k, d, s, p, 1, 15)
  96. || test_convolutiondepthwise1d(25, 16, 8, k, d, s, p, 0, 2)
  97. || test_convolutiondepthwise1d(25, 16, 16, k, d, s, p, 1, 16);
  98. if (ret != 0)
  99. return -1;
  100. }
  101. return 0;
  102. }
  103. static int test_convolutiondepthwise1d_dynamic(int w, int h, int outh, int kernel, int dilation, int stride, int pad, int bias, int group)
  104. {
  105. ncnn::Mat a = RandomMat(w, h);
  106. ncnn::ParamDict pd;
  107. pd.set(0, 0);
  108. pd.set(1, 0);
  109. pd.set(2, dilation);
  110. pd.set(3, stride);
  111. pd.set(4, pad);
  112. pd.set(5, bias);
  113. pd.set(6, 0);
  114. pd.set(7, group);
  115. pd.set(19, 1); // dynamic weight
  116. int activation_type = RAND() % 7; // 0 1 2 3 4 5 6
  117. ncnn::Mat activation_params(2);
  118. activation_params[0] = (activation_type == 6) ? RandomFloat(0, 1) : RandomFloat(-1, 0); // alpha
  119. activation_params[1] = RandomFloat(0, 1); // beta
  120. pd.set(9, activation_type);
  121. pd.set(10, activation_params);
  122. std::vector<ncnn::Mat> as(bias ? 3 : 2);
  123. as[0] = a;
  124. as[1] = RandomMat(kernel, h / group, outh);
  125. if (bias)
  126. as[2] = RandomMat(outh);
  127. std::vector<ncnn::Mat> weights(0);
  128. int ret = test_layer("ConvolutionDepthWise1D", pd, weights, as);
  129. if (ret != 0)
  130. {
  131. fprintf(stderr, "test_convolutiondepthwise1d_dynamic failed w=%d h=%d outh=%d kernel=%d dilation=%d stride=%d pad=%d bias=%d group=%d act=%d actparams=[%f,%f]\n", w, h, outh, kernel, dilation, stride, pad, bias, group, activation_type, activation_params[0], activation_params[1]);
  132. }
  133. return ret;
  134. }
  135. static int test_convolutiondepthwise1d_1()
  136. {
  137. static const int kdsp[7][4] = {
  138. {1, 1, 1, 0},
  139. {1, 1, 2, 0},
  140. {2, 1, 1, 1},
  141. {2, 1, 2, -233},
  142. {3, 1, 1, 1},
  143. {3, 1, 2, 1},
  144. {3, 2, 1, -234},
  145. };
  146. for (int i = 0; i < 7; i++)
  147. {
  148. const int k = kdsp[i][0];
  149. const int d = kdsp[i][1];
  150. const int s = kdsp[i][2];
  151. const int p = kdsp[i][3];
  152. int ret = 0
  153. || test_convolutiondepthwise1d_dynamic(11, 1, 1, k, d, s, p, 1, 1)
  154. || test_convolutiondepthwise1d_dynamic(11, 2, 2, k, d, s, p, 0, 1)
  155. || test_convolutiondepthwise1d_dynamic(11, 2, 2, k, d, s, p, 1, 2)
  156. || test_convolutiondepthwise1d_dynamic(11, 3, 3, k, d, s, p, 0, 3)
  157. || test_convolutiondepthwise1d_dynamic(11, 4, 2, k, d, s, p, 1, 2)
  158. || test_convolutiondepthwise1d_dynamic(11, 4, 4, k, d, s, p, 0, 4)
  159. || test_convolutiondepthwise1d_dynamic(11, 7, 7, k, d, s, p, 1, 7)
  160. || test_convolutiondepthwise1d_dynamic(11, 8, 8, k, d, s, p, 0, 2)
  161. || test_convolutiondepthwise1d_dynamic(11, 8, 8, k, d, s, p, 1, 8)
  162. || test_convolutiondepthwise1d_dynamic(11, 12, 12, k, d, s, p, 0, 4)
  163. || test_convolutiondepthwise1d_dynamic(11, 15, 15, k, d, s, p, 1, 15)
  164. || test_convolutiondepthwise1d_dynamic(11, 16, 8, k, d, s, p, 0, 2)
  165. || test_convolutiondepthwise1d_dynamic(11, 16, 16, k, d, s, p, 1, 16);
  166. if (ret != 0)
  167. return -1;
  168. }
  169. return 0;
  170. }
  171. int main()
  172. {
  173. SRAND(7767517);
  174. return test_convolutiondepthwise1d_0() || test_convolutiondepthwise1d_1();
  175. }