add new functions of executing the simulation according to the data from the front
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@ -59,6 +59,10 @@ app.py ----服务器的主程序
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## 更新日志
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## 更新日志
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* 2021年3月17号,后端更新
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* 新增:根据前端传入的电路数据和仿真参数,进行参数转换,调用pyspice执行电路仿真
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* 待解决:仿真结果传递回前端,进行可视化展示
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* 2021年3月16号,前端+后端更新
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* 2021年3月16号,前端+后端更新
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* 新增:成功将spice网表和simulation设置参数传入后端
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* 新增:成功将spice网表和simulation设置参数传入后端
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@ -1,4 +1,6 @@
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import re
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#----调用PySpice包----
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#----调用PySpice包----
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from PySpice.Doc.ExampleTools import find_libraries
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from PySpice.Doc.ExampleTools import find_libraries
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from PySpice.Probe.Plot import plot
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from PySpice.Probe.Plot import plot
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@ -19,21 +21,26 @@ class Simulator_CZ :
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self.circuit = Circuit(title)
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self.circuit = Circuit(title)
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def Get_Spice( spice ):
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def Get_Spice(self, spice ):
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self.circuit.raw_spice += ".include D:\\Project_2020\\SPICE\\PySpice\\libraries\cmos\\180nm_cmos.mod"
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the_circuit = ".include D:\\Project_2020\\SPICE\\PySpice\\libraries\cmos\\180nm_cmos.mod \n"
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self.circuit.raw_spice += spice
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the_circuit += spice
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self.circuit.raw_spice = the_circuit
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def Sim(sim_type,properties):
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def Sim(self, sim_type,properties):
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parameter = self.Properties_Parse(sim_type,properties)
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parameter = self.Properties_Parse(sim_type,properties)
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print("parameter:\n",parameter)
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self.simulator = self.circuit.simulator(temperature=25, nominal_temperature=25)
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self.simulator = self.circuit.simulator(temperature=25, nominal_temperature=25)
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# print('simulator:\n',self.simulator)
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if(sim_type == 'transient'):
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if(sim_type == 'transient'):
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self.analysis = self.simulator.transient(step_time = parameter['step_time'],
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self.analysis = self.simulator.transient(step_time = parameter['step_time'],
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end_time = parameter['end_time'],
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end_time = parameter['end_time'],
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start_time = parameter['start_time'],
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start_time = parameter['start_time'],
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max_time = parameter['max_time'],
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max_time = parameter['max_time'],
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use_initial_condition = parameter['use_initial_condition'])
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use_initial_condition = parameter['use_initial_condition'])
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pass
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print(self.analysis)
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return self.analysis
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elif(sim_type == 'dc' ):
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elif(sim_type == 'dc' ):
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pass
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pass
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elif(sim_type == 'ac' ):
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elif(sim_type == 'ac' ):
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@ -41,13 +48,74 @@ class Simulator_CZ :
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else:
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else:
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pass
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pass
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def Properties_Parse(sim_type,properties):
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# 属性解析
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def Properties_Parse(self, sim_type,properties):
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parameter = {}
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parameter = {}
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if(sim_type == 'transient'):
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if(sim_type == 'transient'):
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parameter["step_time"] = 0
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parameter["step_time"] = self.unit_tran(properties["step_time"])
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parameter["end_time"] = self.unit_tran(properties["end_time"])
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parameter["start_time"] = self.unit_tran(properties["start_time"])
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parameter["max_time"] = self.unit_tran(properties["max_time"])
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parameter["use_initial_condition"] = self.unit_tran(properties["use_initial_condition"])
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elif(sim_type == 'dc' ):
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pass
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elif(sim_type == 'ac' ):
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pass
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pass
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def unit_transform(value_raw):
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return parameter
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# 单位转换函数
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def unit_tran(self , value_raw):
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# 匹配数字的正则表达式
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regInt = '\d+'
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regFloat = '^\d+\.\d+'
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regNumber = regFloat + '|' + regInt
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pattern_number = re.compile(regNumber)
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# 匹配字符的正则表达式
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regChars = '([a-z]+)'
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pattern_char = re.compile(regChars, re.I)
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# 进行数字和单位的提取
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unit_chars = pattern_char.findall(value_raw)
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unit_num = pattern_number.findall(value_raw)
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# 进行格式转换
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# 有单位时的情况
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if(unit_chars != []):
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the_unit = unit_chars[0]
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if the_unit in ['true','TRUE','True']:
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return True
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elif the_unit in ['false','FALSE','False']:
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return False
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elif the_unit in ['none','NONE','None']:
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return None
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elif the_unit in ['us','US','uS','Us']:
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if(unit_num != []):
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the_num = float(unit_num[0])
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else:
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the_num = float(0)
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return u_us(the_num)
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elif the_unit in ['ms','MS','mS','Ms']:
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if(unit_num != []):
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the_num = float(unit_num[0])
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else:
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the_num = float(0)
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return u_us(the_num)
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# 无单位时的情况
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else:
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if(unit_num != []):
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the_num = float(unit_num[0])
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else:
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the_num = float(0)
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return the_num
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pass
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pass
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@ -29,18 +29,19 @@ class SimulationHandler(AuthBaseHandler):
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properties = properties_transform(properties_str)
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properties = properties_transform(properties_str)
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print("sim type:",sim_type)
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# print("sim type:",sim_type)
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print("property:",properties_str)
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# print("property:",properties_str)
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print("spice :",spice)
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# print("spice :\n",spice)
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# simulator = Simulator_CZ()
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simulator = Simulator_CZ()
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# simulator.Get_Spice(spice)
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simulator.Get_Spice(spice)
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analysis = simulator.Sim(sim_type,properties)
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print('simulation finished !')
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self.write("success")
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self.write("success")
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def properties_transform(properties_str):
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def properties_transform(properties_str):
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properties = {}
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properties = {}
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attributes = properties_str.split(";")
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attributes = properties_str.split(";")
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