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Create 80_linalg.py
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tests/80_linalg.py
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130
tests/80_linalg.py
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from linalg import mat3x3, vec2
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import random
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import sys
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def mat_round(mat, pos):
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'''
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对mat的副本的每一个元素执行round(element, pos),返回副本
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用于校对元素是浮点数的矩阵
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'''
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ret = mat.copy()
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for i, row in enumerate(ret):
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for j, element in enumerate(row):
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row[j] = round(element, pos)
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ret[i] = row
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return ret
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def get_row(mat, row_index):
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'''
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返回mat的row_index行元素构成的列表
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'''
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ret = []
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for i in range(3):
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ret.append(mat[row_index, i])
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return ret
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def get_col(mat, col_index):
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'''
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返回mat的col_index列元素构成的列表
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'''
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ret = []
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for i in range(3):
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ret.append(mat[i, col_index])
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return ret
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# 生成随机测试目标
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min_num = -10.0
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max_num = 10.0
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test_mat = mat3x3([[random.uniform(min_num, max_num) for _ in range(3)] for _ in range(3)])
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# test_mat = mat3x3([
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# [1, 2, 3],
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# [4, 5, 6],
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# [7, 8, 9]]
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# )
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# test copy
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test_mat_copy = test_mat.copy()
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assert test_mat is not test_mat_copy
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element_name_list = [e for e in dir(test_mat_copy) if e[:2] != '__' and e[0] == '_']
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for i, element in enumerate([getattr(test_mat_copy, e) for e in element_name_list]):
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assert [getattr(test_mat, e) for e in element_name_list][i] == element
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# test setzeros
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test_mat_copy = test_mat.copy()
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test_mat_copy.set_zeros()
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assert test_mat_copy == mat3x3([[0,0,0],[0,0,0],[0,0,0]])
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# test set_ones
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test_mat_copy = test_mat.copy()
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test_mat_copy.set_ones()
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assert test_mat_copy == mat3x3([[1,1,1],[1,1,1],[1,1,1]])
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# test set_identity
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test_mat_copy = test_mat.copy()
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test_mat_copy.set_identity()
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assert test_mat_copy == mat3x3([[1, 0, 0],[0, 1, 0],[0, 0, 1]])
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# test __getitem__
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element_name_list = [e for e in dir(test_mat) if e[:2] != '__' and e[0] == '_']
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for i, element in enumerate([getattr(test_mat, e) for e in element_name_list]):
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assert test_mat.__getitem__((int(i/3), i%3)) == element
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# test __setitem__
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test_mat_copy = test_mat.copy()
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element_name_list = [e for e in dir(test_mat_copy) if e[:2] != '__' and e[0] == '_']
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for i, element in enumerate([getattr(test_mat_copy, e) for e in element_name_list]):
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test_mat_copy.__setitem__((int(i/3), i%3), list(range(9))[i])
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assert test_mat_copy == mat3x3([[0,1,2], [3,4,5], [6,7,8]])
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# test __add__
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test_mat_copy = test_mat.copy()
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ones = mat3x3()
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ones.set_ones()
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result_mat = test_mat_copy.__add__(ones)
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correct_result_mat = test_mat_copy.copy()
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for i in range(3):
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for j in range(3):
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correct_result_mat[i, j] += 1
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assert result_mat == correct_result_mat
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# test __sub__
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test_mat_copy = test_mat.copy()
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ones = mat3x3()
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ones.set_ones()
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result_mat = test_mat_copy.__sub__(ones)
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correct_result_mat = test_mat_copy.copy()
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for i in range(3):
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for j in range(3):
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correct_result_mat[i, j] -= 1
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assert result_mat == correct_result_mat
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# test __mul__
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test_mat_copy = test_mat.copy()
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result_mat = test_mat_copy.__mul__(12.345)
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correct_result_mat = test_mat_copy.copy()
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for i in range(3):
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for j in range(3):
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correct_result_mat[i, j] *= 12.345
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# print(result_mat)
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# print(correct_result_mat)
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assert result_mat == correct_result_mat
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# test matmul
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test_mat_copy = test_mat.copy()
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test_mat_copy_2 = test_mat.copy()
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result_mat = test_mat_copy.matmul(test_mat_copy_2)
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correct_result_mat = mat3x3()
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for i in range(3):
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for j in range(3):
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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))])
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assert result_mat == correct_result_mat
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# test determinant
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test_mat_copy = test_mat.copy()
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for i in range(3):
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for j in range(3):
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test_mat_copy[i, j] = test_mat[j, i]
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