80_linalg.py 14 KB

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  1. from linalg import mat3x3, vec2, vec3, vec4
  2. import random
  3. import sys
  4. import math
  5. assert repr(math) == "<module 'math'>"
  6. # 出于对精度转换的考虑,在本测试中具体将采用str(floating_num)[:6]来比较两个浮点数是否相等
  7. # test vec2--------------------------------------------------------------------
  8. def rotated_vec2(vec_2, radians: float):
  9. cos_theta = math.cos(radians)
  10. sin_theta = math.sin(radians)
  11. new_x = vec_2.x * cos_theta - vec_2.y * sin_theta
  12. new_y = vec_2.x * sin_theta + vec_2.y * cos_theta
  13. return vec2(new_x, new_y)
  14. # 生成随机测试目标
  15. min_num = -10.0
  16. max_num = 10.0
  17. test_vec2 = vec2(*tuple([random.uniform(min_num, max_num) for _ in range(2)]))
  18. test_vec2_2 = vec2(*tuple([random.uniform(min_num, max_num) for _ in range(2)]))
  19. static_test_vec2_float = vec2(3.18, -1.09)
  20. static_test_vec2_int = vec2(278, -1391)
  21. # test __repr__
  22. assert str(static_test_vec2_float).startswith('vec2(')
  23. assert str(static_test_vec2_int).startswith('vec2(')
  24. # test copy
  25. element_name_list = [e for e in dir(test_vec2) if e in 'x,y,z,w']
  26. element_value_list = [getattr(test_vec2, attr) for attr in element_name_list]
  27. copy_element_value_list = [getattr(test_vec2.copy(), attr) for attr in element_name_list]
  28. assert element_value_list == copy_element_value_list
  29. # test rotate
  30. test_vec2_copy = test_vec2.copy()
  31. radians = random.uniform(-10*math.pi, 10*math.pi)
  32. test_vec2_copy = rotated_vec2(test_vec2_copy, radians)
  33. assert test_vec2.rotate(radians).__dict__ == test_vec2_copy.__dict__
  34. # test smooth_damp
  35. vel = vec2(0, 0)
  36. ret = vec2.smooth_damp(vec2(1, 2), vec2(3, 4), vel, 7, 8, 9)
  37. assert isinstance(ret, vec2)
  38. assert vel.length() > 0
  39. # test vec3--------------------------------------------------------------------
  40. # 生成随机测试目标
  41. min_num = -10.0
  42. max_num = 10.0
  43. test_vec3 = vec3(*tuple([random.uniform(min_num, max_num) for _ in range(3)]))
  44. static_test_vec3_float = vec3(3.1886954323, -1098399.59932453432, 9.00000000000002765)
  45. static_test_vec3_int = vec3(278, -13919730938747, 1364223456756456)
  46. # test __repr__
  47. assert str(static_test_vec3_float).startswith('vec3(')
  48. assert str(static_test_vec3_int).startswith('vec3(')
  49. # test copy
  50. element_name_list = ['x', 'y', 'z']
  51. element_value_list = [getattr(test_vec3, attr) for attr in element_name_list]
  52. copy_element_value_list = [getattr(test_vec3.copy(), attr) for attr in element_name_list]
  53. assert element_value_list == copy_element_value_list
  54. # test vec4--------------------------------------------------------------------
  55. # 生成随机测试目标
  56. min_num = -10.0
  57. max_num = 10.0
  58. test_vec4 = vec4(*tuple([random.uniform(min_num, max_num) for _ in range(4)]))
  59. static_test_vec4_float = vec4(3.1886954323, -1098399.59932453432, 9.00000000000002765, 4565400000000.0000000045)
  60. static_test_vec4_int = vec4(278, -13919730938747, 1364223456756456, -37)
  61. # test __repr__
  62. assert str(static_test_vec4_float).startswith('vec4(')
  63. assert str(static_test_vec4_int).startswith('vec4(')
  64. # test copy
  65. element_name_list = ['x', 'y', 'z', 'w']
  66. element_value_list = [getattr(test_vec4, attr) for attr in element_name_list]
  67. copy_element_value_list = [getattr(test_vec4.copy(), attr) for attr in element_name_list]
  68. assert element_value_list == copy_element_value_list
  69. # test mat3x3--------------------------------------------------------------------
  70. def mat_to_str_list(mat):
  71. ret = [[0,0,0], [0,0,0], [0,0,0]]
  72. for i in range(3):
  73. for j in range(3):
  74. ret[i][j] = str(round(mat[i, j], 2))[:6]
  75. return ret
  76. def mat_list_to_str_list(mat_list):
  77. ret = [[0,0,0], [0,0,0], [0,0,0]]
  78. for i in range(3):
  79. for j in range(3):
  80. ret[i][j] = str(round(mat_list[i][j], 2))[:6]
  81. return ret
  82. def mat_to_list(mat):
  83. ret = [[0,0,0], [0,0,0], [0,0,0]]
  84. for i in range(3):
  85. for j in range(3):
  86. ret[i][j] = mat[i, j]
  87. return ret
  88. def mat_round(mat, pos):
  89. '''
  90. 对mat的副本的每一个元素执行round(element, pos),返回副本
  91. 用于校对元素是浮点数的矩阵
  92. '''
  93. ret = mat.copy()
  94. for i, row in enumerate(ret):
  95. for j, element in enumerate(row):
  96. row[j] = round(element, pos)
  97. ret[i] = row
  98. return ret
  99. def get_row(mat, row_index):
  100. '''
  101. 返回mat的row_index行元素构成的列表
  102. '''
  103. ret = []
  104. for i in range(3):
  105. ret.append(mat[row_index, i])
  106. return ret
  107. def get_col(mat, col_index):
  108. '''
  109. 返回mat的col_index列元素构成的列表
  110. '''
  111. ret = []
  112. for i in range(3):
  113. ret.append(mat[i, col_index])
  114. return ret
  115. def calculate_inverse(matrix):
  116. '''
  117. 返回逆矩阵
  118. '''
  119. # 获取矩阵的行数和列数
  120. rows = len(matrix)
  121. cols = len(matrix[0])
  122. # 确保矩阵是方阵
  123. if rows != cols:
  124. raise ValueError("输入矩阵必须是方阵")
  125. # 构建单位矩阵
  126. identity = [[1 if i == j else 0 for j in range(cols)] for i in range(rows)]
  127. # 将单位矩阵与输入矩阵进行初等行变换
  128. augmented_matrix = [row + identity[i] for i, row in enumerate(matrix)]
  129. # 初等行变换,将输入矩阵转化为单位矩阵,同时在另一边进行相同的行变换
  130. for i in range(cols):
  131. pivot = augmented_matrix[i][i]
  132. if pivot == 0:
  133. raise ValueError("输入矩阵不可逆")
  134. scale_row(augmented_matrix, i, 1/pivot)
  135. for j in range(cols):
  136. if j != i:
  137. scale = augmented_matrix[j][i]
  138. row_operation(augmented_matrix, j, i, -scale)
  139. # 提取逆矩阵
  140. inverse_matrix = [row[cols:] for row in augmented_matrix]
  141. return inverse_matrix
  142. def scale_row(matrix, row, scale):
  143. matrix[row] = [element * scale for element in matrix[row]]
  144. def row_operation(matrix, target_row, source_row, scale):
  145. matrix[target_row] = [target_element + scale * source_element for target_element, source_element in zip(matrix[target_row], matrix[source_row])]
  146. # 生成随机测试目标
  147. min_num = -10.0
  148. max_num = 10.0
  149. test_mat = mat3x3([random.uniform(min_num, max_num) for _ in range(9)])
  150. static_test_mat_float= mat3x3(
  151. 7.264189733952545, -5.432187523625671, 1.8765304152872613,
  152. -2.4910524352374734, 8.989660807513068, -0.7168824333280513,
  153. 9.558042327611506, -3.336280256662496, 4.951381528057387
  154. )
  155. static_test_mat_float_inv = mat3x3( 0.32265243, 0.15808159, -0.09939472,
  156. 0.04199553, 0.13813096, 0.00408326,
  157. -0.59454451, -0.21208362, 0.39658464)
  158. static_test_mat_int = mat3x3([
  159. 1, 2, 3,
  160. 4, 5, 6,
  161. 7, 8, 9]
  162. )
  163. # test incorrect number of parameters is passed
  164. for i in range(20):
  165. if i in [0, 9]:
  166. continue
  167. try:
  168. test_mat_copy = mat3x3(*tuple([e+0.1 for e in range(i)]))
  169. # 既然参数数量不是合法的0个或9个,并且这里也没有触发TypeError,那么引发测试失败
  170. print(f'When there are {i} arguments, no TypeError is triggered')
  171. exit(1)
  172. except TypeError:
  173. pass
  174. # test 9 floating parameters is passed
  175. test_mat_copy = test_mat.copy()
  176. element_name_list = []
  177. for i in range(3):
  178. for j in range(3):
  179. element_name_list.append(f'_{i+1}{j+1}')
  180. element_value_list = [getattr(test_mat, attr) for attr in element_name_list]
  181. assert mat3x3(*tuple(element_value_list)) == test_mat
  182. # test copy
  183. test_mat_copy = test_mat.copy()
  184. assert test_mat is not test_mat_copy
  185. assert test_mat == test_mat_copy
  186. # test setzeros
  187. test_mat_copy = test_mat.copy()
  188. test_mat_copy.set_zeros()
  189. assert test_mat_copy == mat3x3.zeros()
  190. # test set_ones
  191. test_mat_copy = test_mat.copy()
  192. test_mat_copy.set_ones()
  193. assert test_mat_copy == mat3x3.ones()
  194. # test set_identity
  195. test_mat_copy = test_mat.copy()
  196. test_mat_copy.set_identity()
  197. assert test_mat_copy == mat3x3([1, 0, 0,
  198. 0, 1, 0,
  199. 0, 0, 1])
  200. # test __getitem__
  201. for i, element in enumerate([getattr(test_mat, e) for e in element_name_list]):
  202. assert test_mat[int(i/3), i%3] == element
  203. try:
  204. test_mat[1,2,3]
  205. raise Exception('未能触发错误拦截, 此处应当报错 IndexError("index out of range")')
  206. except:
  207. pass
  208. try:
  209. test_mat[-1][4]
  210. raise Exception('未能触发错误拦截, 此处应当报错 IndexError("index out of range")')
  211. except:
  212. pass
  213. # test __setitem__
  214. test_mat_copy = test_mat.copy()
  215. for i, element in enumerate([getattr(test_mat_copy, e) for e in element_name_list]):
  216. test_mat_copy[int(i/3), i%3] = list(range(9))[i]
  217. assert test_mat_copy == mat3x3([0,1,2,
  218. 3,4,5,
  219. 6,7,8])
  220. try:
  221. test_mat[1,2,3] = 1
  222. raise Exception('未能触发错误拦截, 此处应当报错 TypeError("Mat3x3.__setitem__ takes a tuple of 2 integers")')
  223. except:
  224. pass
  225. try:
  226. test_mat[-1][4] = 1
  227. raise Exception('未能触发错误拦截, 此处应当报错 IndexError("index out of range")')
  228. except:
  229. pass
  230. # test __add__
  231. test_mat_copy = test_mat.copy()
  232. ones = mat3x3()
  233. ones.set_ones()
  234. result_mat = test_mat_copy.__add__(ones)
  235. correct_result_mat = test_mat_copy.copy()
  236. for i in range(3):
  237. for j in range(3):
  238. correct_result_mat[i, j] += 1
  239. assert result_mat == correct_result_mat
  240. # test __sub__
  241. test_mat_copy = test_mat.copy()
  242. ones = mat3x3()
  243. ones.set_ones()
  244. result_mat = test_mat_copy.__sub__(ones)
  245. correct_result_mat = test_mat_copy.copy()
  246. for i in range(3):
  247. for j in range(3):
  248. correct_result_mat[i, j] -= 1
  249. assert result_mat == correct_result_mat
  250. # test __mul__
  251. test_mat_copy = test_mat.copy()
  252. result_mat = test_mat_copy.__mul__(12.345)
  253. correct_result_mat = test_mat_copy.copy()
  254. for i in range(3):
  255. for j in range(3):
  256. correct_result_mat[i, j] *= 12.345
  257. # print(result_mat)
  258. # print(correct_result_mat)
  259. assert result_mat == correct_result_mat
  260. # test matmul
  261. test_mat_copy = test_mat.copy()
  262. test_mat_copy_2 = test_mat.copy()
  263. result_mat = test_mat_copy @ test_mat_copy_2
  264. correct_result_mat = mat3x3()
  265. for i in range(3):
  266. for j in range(3):
  267. correct_result_mat[i, j] = sum([e1*e2 for e1, e2 in zip(get_row(test_mat_copy, i), get_col(test_mat_copy_2, j))])
  268. assert result_mat == correct_result_mat
  269. test_mat_copy.__imatmul__(test_mat_copy_2)
  270. assert test_mat_copy == correct_result_mat
  271. # test determinant
  272. test_mat_copy = test_mat.copy()
  273. test_mat_copy.determinant()
  274. # test __repr__
  275. assert str(static_test_mat_float)
  276. assert str(static_test_mat_int)
  277. # test __truediv__
  278. test_mat_copy = test_mat.copy()
  279. result_mat = test_mat_copy.__truediv__(12.345)
  280. correct_result_mat = test_mat_copy.copy()
  281. for i in range(3):
  282. for j in range(3):
  283. correct_result_mat[i, j] /= 12.345
  284. assert result_mat == correct_result_mat
  285. # test __rmul__
  286. test_mat_copy = test_mat.copy()
  287. result_mat = 12.345 * test_mat_copy
  288. correct_result_mat = test_mat_copy.copy()
  289. for i in range(3):
  290. for j in range(3):
  291. correct_result_mat[i, j] *= 12.345
  292. assert result_mat == correct_result_mat
  293. # 此处测试不完全, 未验证正确性
  294. # test interface of "@" "matmul" "__matmul__" with vec3 and error handling
  295. test_mat_copy = test_mat.copy()
  296. test_mat_copy @ vec3(83,-9.12, 0.2983)
  297. try:
  298. test_mat_copy @ 12345
  299. raise Exception('未能拦截错误 BinaryOptError("@") 在处理表达式 test_mat_copy @ 12345')
  300. except:
  301. pass
  302. # test transpose
  303. test_mat_copy = test_mat.copy()
  304. assert test_mat_copy.transpose() == test_mat_copy.transpose().transpose().transpose()
  305. # test inverse
  306. assert ~static_test_mat_float == static_test_mat_float_inv
  307. assert static_test_mat_float.invert_() is None
  308. assert static_test_mat_float == static_test_mat_float_inv
  309. try:
  310. ~mat3x3([1, 2, 3, 2, 4, 6, 3, 6, 9])
  311. raise Exception('未能拦截错误 ValueError("matrix is not invertible") 在 test_mat_copy 的行列式为0')
  312. except ValueError:
  313. pass
  314. # test zeros
  315. assert mat3x3([0 for _ in range(9)]) == mat3x3.zeros()
  316. # test ones
  317. assert mat3x3([1 for _ in range(9)]) == mat3x3.ones()
  318. # test identity
  319. assert mat3x3([1,0,0,0,1,0,0,0,1]) == mat3x3.identity()
  320. # test affine transformations-----------------------------------------------
  321. # test trs
  322. def trs(t, radian, s):
  323. cr = math.cos(radian)
  324. sr = math.sin(radian)
  325. elements = [[s[0] * cr, -s[1] * sr, t[0]],
  326. [s[0] * sr, s[1] * cr, t[1]],
  327. [0.0, 0.0, 1.0]]
  328. return elements
  329. test_vec2_copy = test_vec2.copy()
  330. test_vec2_2_copy = test_vec2_2.copy()
  331. test_vec2_list = [test_vec2_copy.x, test_vec2_copy.y]
  332. test_vec2_2_list = [test_vec2_2_copy.x, test_vec2_2_copy.y]
  333. radian = random.uniform(-10*math.pi, 10*math.pi)
  334. assert mat_to_str_list(mat3x3.trs(test_vec2_copy, radian, test_vec2_2_copy)) == mat_list_to_str_list(trs(test_vec2_list, radian, test_vec2_2_list))
  335. a = mat3x3.zeros()
  336. a.set_trs(test_vec2_copy, radian, test_vec2_2_copy)
  337. assert a == mat3x3.trs(test_vec2_copy, radian, test_vec2_2_copy)
  338. # test is_affine
  339. def mat_is_affine(mat_list):
  340. return mat_list[2][0] == 0 and mat_list[2][1] == 0 and mat_list[2][2] == 1
  341. # 通过random.unifrom的返回值不可能是整数0或1, 因此认为test_mat不可能is_affine
  342. test_mat_copy = test_mat.copy()
  343. assert test_mat_copy.is_affine() == mat_is_affine(mat_to_list(test_mat_copy))
  344. test_mat_copy[2,0] = 0
  345. test_mat_copy[2,1] = 0
  346. test_mat_copy[2,2] = 1
  347. assert test_mat_copy.is_affine() == mat_is_affine(mat_to_list(test_mat_copy))
  348. # test translation
  349. test_mat_copy = test_mat.copy()
  350. assert test_mat_copy._t() == vec2(test_mat_copy[0, 2], test_mat_copy[1, 2])
  351. # 该方法的测试未验证计算的准确性
  352. # test rotation
  353. test_mat_copy = test_mat.copy()
  354. assert type(test_mat_copy._r()) is float
  355. # test scale
  356. test_mat_copy = test_mat.copy()
  357. temp_vec2 = test_mat_copy._s()
  358. # test transform_point
  359. test_mat_copy = test_mat.copy()
  360. test_mat_copy = test_mat.copy()
  361. test_vec2_copy = test_vec2.copy()
  362. temp_vec2 = test_mat_copy.transform_point(test_vec2_copy)
  363. # test transform_vector
  364. test_mat_copy = test_mat.copy()
  365. test_mat_copy = test_mat.copy()
  366. test_vec2_copy = test_vec2.copy()
  367. temp_vec2 = test_mat_copy.transform_vector(test_vec2_copy)
  368. import c
  369. a = vec2(1, 2)
  370. b = a.to_struct()
  371. assert a.sizeof() == 8
  372. assert b.sizeof() == 8
  373. assert vec2.from_struct(b) == a
  374. val = vec2.angle(vec2(-1, 0), vec2(0, -1))
  375. assert 1.57 < val < 1.58
  376. # test about staticmethod
  377. class mymat3x3(mat3x3):
  378. def f(self):
  379. _0 = self.zeros()
  380. _1 = super().zeros()
  381. _2 = mat3x3.zeros()
  382. return _0 == _1 == _2
  383. assert mymat3x3().f()
  384. # test assign
  385. a = vec2(1, 2)
  386. assert a.assign(vec2(3, 4)) is None
  387. assert a == vec2(3, 4)
  388. b = vec3(1, 2, 3)
  389. assert b.assign(vec3(4, 5, 6)) is None
  390. assert b == vec3(4, 5, 6)
  391. c = vec4(1, 2, 3, 4)
  392. assert c.assign(vec4(5, 6, 7, 8)) is None
  393. assert c == vec4(5, 6, 7, 8)
  394. d = mat3x3.identity()
  395. assert d.assign(mat3x3.zeros()) is None
  396. assert d == mat3x3.zeros()