    

 ## On this page

  

 

 # Example 20 - Python 

 Last update: 17.07.2025 

# <a class="anchor" id="ex20_s5"></a>Python

import clr, os, winreg

from itertools import islice

 

class PythonStandaloneApplication(object):

 class LicenseException(Exception):

 pass

 class ConnectionException(Exception):

 pass

 class InitializationException(Exception):

 pass

 class SystemNotPresentException(Exception):

 pass

 

 def __init__(self, path=None):

 \# determine location of ZOSAPI\_NetHelper.dll &amp; add as reference

 aKey = winreg.OpenKey(winreg.ConnectRegistry(None, winreg.HKEY_CURRENT_USER), r"Software\\Zemax", 0, winreg.KEY_READ)

 zemaxData = winreg.QueryValueEx(aKey, 'ZemaxRoot')

 NetHelper = os.path.join(os.sep, zemaxData[0], r'ZOS-API\\Libraries\\ZOSAPI\_NetHelper.dll')

 winreg.CloseKey(aKey)

 clr.AddReference(NetHelper)

 import ZOSAPI_NetHelper

 

 \# Find the installed version of OpticStudio

 if path is None:

 isInitialized = ZOSAPI_NetHelper.ZOSAPI_Initializer.Initialize()

 else:

 \# Note -- uncomment the following line to use a custom initialization path

 isInitialized = ZOSAPI_NetHelper.ZOSAPI_Initializer.Initialize(path)

 

 \# determine the ZOS root directory

 if isInitialized:

 dir = ZOSAPI_NetHelper.ZOSAPI_Initializer.GetZemaxDirectory()

 else:

 raise PythonStandaloneApplication.InitializationException("Unable to locate Zemax OpticStudio. Try using a hard-coded path.")

 

 \# add ZOS-API referencecs

 clr.AddReference(os.path.join(os.sep, dir, "ZOSAPI.dll"))

 clr.AddReference(os.path.join(os.sep, dir, "ZOSAPI\_Interfaces.dll"))

 import ZOSAPI

 

 \# create a reference to the API namespace

 self.ZOSAPI = ZOSAPI

 

 \# create a reference to the API namespace

 self.ZOSAPI = ZOSAPI

 

 \# Create the initial connection class

 self.TheConnection = [ZOSAPI.ZOSAPI\_Connection](class_z_o_s_a_p_i_1_1_z_o_s_a_p_i___connection.xhtml)()

 

 if self.TheConnection is None:

 raise PythonStandaloneApplication.ConnectionException("Unable to initialize .NET connection to ZOSAPI")

 

 self.TheApplication = self.TheConnection.CreateNewApplication()

 if self.TheApplication is None:

 raise PythonStandaloneApplication.InitializationException("Unable to acquire ZOSAPI application")

 

 if self.TheApplication.IsValidLicenseForAPI == False:

 raise PythonStandaloneApplication.LicenseException("License is not valid for ZOSAPI use")

 

 self.TheSystem = self.TheApplication.PrimarySystem

 if self.TheSystem is None:

 raise PythonStandaloneApplication.SystemNotPresentException("Unable to acquire Primary system")

 

 def __del__(self):

 if self.TheApplication is not None:

 self.TheApplication.CloseApplication()

 self.TheApplication = None

 

 self.TheConnection = None

 

 def OpenFile(self, filepath, saveIfNeeded):

 if self.TheSystem is None:

 raise PythonStandaloneApplication.SystemNotPresentException("Unable to acquire Primary system")

 self.TheSystem.LoadFile(filepath, saveIfNeeded)

 

 def CloseFile(self, save):

 if self.TheSystem is None:

 raise PythonStandaloneApplication.SystemNotPresentException("Unable to acquire Primary system")

 self.TheSystem.Close(save)

 

 def SamplesDir(self):

 if self.TheApplication is None:

 raise PythonStandaloneApplication.InitializationException("Unable to acquire ZOSAPI application")

 

 return self.TheApplication.SamplesDir

 

 def ExampleConstants(self):

 if self.TheApplication.LicenseStatus == self.ZOSAPI.LicenseStatusType.PremiumEdition:

 return "Premium"

 elif self.TheApplication.LicenseStatus == self.ZOSAPI.LicenseStatusTypeProfessionalEdition:

 return "Professional"

 elif self.TheApplication.LicenseStatus == self.ZOSAPI.LicenseStatusTypeStandardEdition:

 return "Standard"

 else:

 return "Invalid"

 

 def reshape(self, data, x, y, transpose = False):

 """Converts a System.Double\[,\] to a 2D list for plotting or post processing

 

 Parameters

 ----------

 data : System.Double\[,\] data directly from ZOS-API 

 x : x width of new 2D list [use var.GetLength(0) for dimension]

 y : y width of new 2D list [use var.GetLength(1) for dimension]

 transpose : transposes data; needed for some multi-dimensional line series data

 

 Returns

 -------

 res : 2D list; can be directly used with Matplotlib or converted to

 a numpy array using numpy.asarray(res)

 """

 if type(data) is not list:

 data = list(data)

 var_lst = [y] * x;

 it = iter(data)

 res = [list(islice(it, i)) for i in var_lst]

 if transpose:

 return self.transpose(res);

 return res

 

 def transpose(self, data):

 """Transposes a 2D list (Python3.x or greater). 

 

 Useful for converting mutli-dimensional line series (i.e. FFT PSF)

 

 Parameters

 ----------

 data : Python native list (if using System.Data[,] object reshape first) 

 

 Returns

 -------

 res : transposed 2D list

 """

 if type(data) is not list:

 data = list(data)

 return list(map(list, zip(*data)))

 

 

if __name__ == '\_\_main\_\_':

 zos = PythonStandaloneApplication()

 

 \# load local variables

 ZOSAPI = zos.ZOSAPI

 TheApplication = zos.TheApplication

 TheSystem = zos.TheSystem

 if not os.path.exists(TheApplication.SamplesDir + "\\\\API\\\\Python"):

 os.makedirs(TheApplication.SamplesDir + "\\\\API\\\\Python")

 

 \# Load a non-sequential file

 TheSystem.LoadFile(TheApplication.SamplesDir +'\\\\Non-Sequential\\\\Miscellaneous\\\\Digital\_projector\_flys\_eye\_homogenizer.zos', False)

 

 \#! \[e20s01\_py\]

 \# Get interface of IExportCAD

 ToolExportCAD = TheSystem.Tools.OpenExportCAD()

 \#! \[e20s01\_py\]

 

 \#! \[e20s02\_py\]

 \# default option settings

 ToolExportCAD.FirstObject = 1

 ToolExportCAD.LastObject = 8

 ToolExportCAD.RayLayer = 1

 ToolExportCAD.LensLayer = 0

 ToolExportCAD.DummyThickness = 1

 ToolExportCAD.SplineSegments = ZOSAPI.Tools.General.SplineSegmentsType.N_032

 ToolExportCAD.FileType = ZOSAPI.Tools.General.CADFileType.STEP

 ToolExportCAD.Tolerance = ZOSAPI.Tools.General.CADToleranceType.N_TenEMinus4

 ToolExportCAD.SetCurrentConfiguration()

 \# For other configuration choices, use following methods.

 \# ToolExportCAD.SetConfigurationAllAtOnce()

 \# ToolExportCAD.SetConfigurationAllByFile()

 \# ToolExportCAD.SetConfigurationAllByLayer()

 \# ToolExportCAD.SetSingleConfiguration(1)

 \#! \[e20s02\_py\]

 

 \#! \[e20s03\_py\]

 \# default check boxes settings

 ToolExportCAD.SurfacesAsSolids = True

 ToolExportCAD.ScatterNSCRays = False

 ToolExportCAD.ExportDummySurfaces = False

 ToolExportCAD.SplitNSCRays = False

 ToolExportCAD.UsePolarization = False

 \#! \[e20s03\_py\]

 

 \#! \[e20s04\_py\]

 \# set output file name

 ToolExportCAD.OutputFileName = TheApplication.ObjectsDir + '\\\\CAD Files\\\\API\_CADexport\_sample.step'

 \#! \[e20s04\_py\]

 

 \#! \[e20s05\_py\]

 \# Starting exporting

 \# Run with a 3 minites timeout

 print('Starting exporting...')

 

 ToolExportCAD.Run()

 runstatus = ToolExportCAD.WaitWithTimeout(float(3 * 60))

 

 \# Report the status

 if runstatus == ZOSAPI.Tools.RunStatus.Completed:

 print('Completed!')

 elif runstatus == ZOSAPI.Tools.RunStatus.FailedToStart:

 print('Failed To Start!')

 elif runstatus == ZOSAPI.Tools.RunStatus.InvalidTimeout:

 print('Invalid Timeout')

 else:

 print('Timed Out!')

 

 print('Progress: ', ToolExportCAD.Progress)

 

 \# If the exporting is not completed and can be cancelled, cancel the work

 if (runstatus != ZOSAPI.Tools.RunStatus.Completed and ToolExportCAD.CanCancel):

 ToolExportCAD.Cancel()

 

 \# Close the tool

 ToolExportCAD.Close()

 \#! \[e20s05\_py\]

 

 \# This will clean up the connection to OpticStudio.

 \# Note that it closes down the server instance of OpticStudio, so you for maximum performance do not do

 \# this until you need to.

 del zos

 zos = None

[ZOSAPI.ZOSAPI\_Connection](class_z_o_s_a_p_i_1_1_z_o_s_a_p_i___connection.xhtml)

**Definition:** ZemaxService.cs:198