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This is a list of notable library packages implementing a graphical user interface (GUI) platform-independent GUI library (PIGUI). These can be used to develop software that can be ported to multiple computing platforms with no change to its source code.
PySide, open source is a Python binding of the cross-platform GUI toolkit Qt developed by The Qt Company, as part of the Qt for Python project. PyQt, open source (GPL and commercial) is another Python binding of the cross-platform GUI toolkit Qt developed by Riverbank Computing.
Qt Creator is a cross-platform C++, JavaScript, Python and QML integrated development environment (IDE) which simplifies GUI application development. It is part of the SDK for the Qt GUI application development framework and uses the Qt API, which encapsulates host OS GUI function calls. [3]
wxWidgets (formerly wxWindows) is a widget toolkit and tools library for creating graphical user interfaces (GUIs) for cross-platform applications. wxWidgets enables a program's GUI code to compile and run on several computer platforms with no significant code changes.
GUI builder Integrated toolchain Profiler Code coverage Autocomplete Static code analysis GUI-based design Class browser Latest stable release C compiler C++ compiler Refactoring; Anjuta (abandoned) GPL: No Yes No FreeBSD: C: Yes Yes Yes Yes No Yes No Yes Yes 2016-03 Yes Yes No AppCode (IntelliJ IDEA) Proprietary: No No Yes Java: Yes Yes No Yes ...
An IDE with a GUI designer; Extensive use of RAII and auto pointers-like mechanisms to avoid manual memory management and limit the use of pointers in the code [4] Can emulate [5] native widgets look and feel. On X11 systems, Ultimate++ supports GTK+ widgets look and feel. The standard distribution comes with U++ sources included.
Tk is a cross-platform widget toolkit that provides a library of basic elements of GUI widgets for building a graphical user interface (GUI) in many programming languages. It is free and open-source software released under a BSD-style software license.
This allows rapid, zero-compile prototyping and refinement of deployable GUI applications. IUP's purpose is to allow programs user interface to run in different systems in unmodified form. [2] It provides this ability by binding Lua with its C/C++ code, or simply writing C to the application programming interface (API).