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138 lines
4.1 KiB
138 lines
4.1 KiB
# -*- encoding: utf-8 -*-
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"""
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@Author: packy945
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@FileName: function.py
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@DateTime: 2023/6/6 14:45
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@SoftWare: PyCharm
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"""
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import numpy as np
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import math
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import data
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import pandas as pd
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from pandas import DataFrame
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# 函数库
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Show = []
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Fun = []
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Fit_type_library = {}
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class Function:
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def __init__(self, no, name, v, fun, complete='', demo=''):
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# 函数名称
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self.name = name
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# 变量个数
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self.variable = v
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self.function = fun
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# 函数编号
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self.no = no
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# 是否显示
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self.show = 0
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# 完整函数
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self.complete = complete
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# self.print = ''
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self.demo = demo
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def get_fun(self):
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if self.variable == 2:
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return self.fun2
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elif self.variable == 3:
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return self.fun3
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elif self.variable == 4:
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return self.fun4
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elif self.variable == 5:
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return self.fun5
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elif self.variable == 6:
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return self.fun6
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def fun2(self, x, a0, a1):
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return eval(self.function)
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def fun3(self, x, a0, a1, a2):
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return eval(self.function)
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def fun4(self, x, a0, a1, a2, a3):
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return eval(self.function)
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def fun5(self, x, a0, a1, a2, a3, a4):
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return eval(self.function)
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def fun6(self, x, a0, a1, a2, a3, a4, a5):
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return eval(self.function)
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def print_f(self, a):
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# print('self.show='+self.complete)
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exec('self.show='+self.complete)
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# print(self.show)
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return self.show
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def f_init():
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cur = 0 # 函数编号
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# 一次函数
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newfun = Function(cur, '一次函数', 2, 'a0*x+a1', "f'{a[0]}x+{a[1]}'", 'ax+b')
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newfun.show = 1
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Fun.append(newfun)
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cur += 1
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# 二次函数
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newfun = Function(cur, '二次函数', 3, 'a0*x*x+a1*x+a2', "f'{a[0]}x^2+{a[1]}x+{a[2]}'", 'ax^2+bx+c')
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newfun.show = 1
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Fun.append(newfun)
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cur += 1
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# 三次函数
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newfun = Function(cur, '三次函数', 4, 'a0*x*x*x+a1*x*x+a2*x+a3', "f'{a[0]}x^3+{a[1]}x^2+{a[2]}x+{a[3]}'", 'ax^3+bx^2+cx+d')
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newfun.show = 0
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Fun.append(newfun)
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cur += 1
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# 四次函数
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newfun = Function(cur, '四次函数', 5, 'a0*x*x*x*x+a1*x*x*x+a2*x*x+a3*x+a4'
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, "f'{a[0]}x^4+{a[1]}x^3+{a[2]}x^2+{a[3]}x+{a[4]}'", 'ax^4+bx^3+cx^2+dx+e')
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newfun.show = 0
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Fun.append(newfun)
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cur += 1
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# 指数函数
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newfun = Function(cur, '指数函数', 2, 'a0*np.exp(0.01*x)+a1', "f'{a[0]}e^(0.01x)+{a[1]}'", 'a*e^(0.01x)+b')
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newfun.show = 0
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Fun.append(newfun)
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cur += 1
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# 对数函数
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newfun = Function(cur, '对数函数', 3, 'a0*(np.log(x) + 1e-5) / (np.log(a1) + 1e-5) + a2',
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"f'{a[0]}log(x,{a[1]})+{a[2]}'", 'alog(x,b)+c')
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newfun.show = 0
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Fun.append(newfun)
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cur += 1
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# 高斯函数
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# F_init()
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def write():
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file_path = 'functions.xlsx'#设置路径
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df = pd.read_excel(io=file_path, header=1)#设置表格
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print(df)
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df.columns = ['no', 'name', 'variable', 'function', 'complete', 'demo', 'show']#设置表格标题
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cur = 0#重置计数
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for f in Fun:#遍历函数类型
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df.loc[cur] = [cur, f.name, f.variable, f.function, f.complete, f.demo, f.show]#写进表格
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cur += 1#计数加一
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DataFrame(df).to_excel(file_path, sheet_name='Sheet1', index=False, header=True)#保存xlsx
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def f_read():
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file_path = 'functions.xlsx'#设置路径
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df = pd.read_excel(io=file_path, header=0)#设置表格
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cur = 0
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for i in range(len(df)):#逐行读取excel
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newfun = Function(df.loc[i][0], df.loc[i][1], df.loc[i][2], df.loc[i][3], df.loc[i][4], df.loc[i][5])
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newfun.show = df.loc[i][6]
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Show.append(df.loc[i][6])#读取函数显示信息
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Fun.append(newfun)#读取函数信息并添加
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cur += 1
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for f in Fun:#建立简表fit_type_library
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Fit_type_library[f.name] = [f.no, f.demo, f.name]
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if __name__ == '__main__':
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f_read()
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# for f in fun:
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# print([f.no, f.demo, f.name])
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for f in Fun:
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Fit_type_library[f.name] = [f.no, f.demo, f.name]
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print(Fit_type_library)
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a = [1,2,3,4,5]
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x = 2
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pass
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