Npackd\Uninstall.bat: rmdir /s /q "%allusersprofile%\Npackd\Config\" Npackd\Output.txtįor %%g in (txt log ini h hpp hxx c cpp cxx cc m java cs pas inc html htm php phtml properties js jsp asp css xml sh bsh nsi nsh lua pl pm py as mx vb vbs f for f90 f95 f2k tex sql nfo mak hgignore) do reg add HKLM\SOFTWARE\Classes\.%%g\OpenWithList\%key% /f >. Reg add HKLM\SOFTWARE\Classes\Applications\%KEY%\shell\open\command /d "%c%" /f >. Reg add HKLM\SOFTWARE\Classes\Applications\%KEY%\shell\open /v FriendlyAppName /d "Notepad++ (%version%)" /f >. If %errorlevel% neq 0 exit /b %errorlevel% ![]() Npackd\Output.txtįor /f "delims=" %%x in ('dir /b *.exe') do set setup=%%x Mu has a “Mode” button which can be used to write Python, MicroPython and CircuitPython.Npackd\Install.bat: xcopy "%allusersprofile%\Npackd\Config\". Mu has one feature that elevates it above other beginner editors. If you are starting out with Python, Mu is an excellent choice to introduce the language. Modules are libraries of code that can be used to add new features, for example RPi.GPIO and GPIO Zero are modules that enable Python to talk to the Raspberry Pi GPIO. This is where the ease of Mu works against it, as there is no means to install Python modules. The default is to write Python 3 code, to be run on our machine. It can output the results of our code and it can be used to access the REPL. A builtin checker and tidy application will check and format your code using Python style guidelines. We can zoom in and out of the code, useful when presenting to large groups. A plotter can be used to visualize data via a graph. ![]() The Python Shell (REPL, Read, Eval, Print, Loop) is available to test ideas. ![]() Large icons and clear text identify the function of each button.
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