Qt Reference Documentation

Exception Safety

Preliminary warning: Exception safety is not feature complete! Common cases should work, but classes might still leak or even crash.

Qt itself will not throw exceptions. Instead, error codes are used. In addition, some classes have user visible error messages, for example QIODevice::errorString() or QSqlQuery::lastError(). This has historical and practical reasons - turning on exceptions can increase the library size by over 20%.

The following sections describe Qt's behavior if exception support is enabled at compile time.

Exception safe modules


Qt's container classes are generally exception neutral. They pass any exception that happens within their contained type T to the user while keeping their internal state valid.


 QList<QString> list;
 try {
 } catch (...) {
 // list is safe to use - the exception did not affect it.

Exceptions to that rule are containers for types that can throw during assignment or copy constructions. For those types, functions that modify the container as well as returning a value, are unsafe to use:

 MyType s = list.takeAt(2);

If an exception occurs during the assignment of s, the value at index 2 is already removed from the container, but hasn't been assigned to s yet. It is lost without chance of recovery.

The correct way to write it:

 MyType s = list.at(2);

If the assignment throws, the container still contains the value, no data loss occured.

Note that implicitly shared Qt classes will not throw in their assignment operators or copy constructors, so the limitation above does not apply.

Out of Memory Handling

Most desktop operating systems overcommit memory. This means that malloc() or operator new return a valid pointer, even though there is not enough memory available at allocation time. On such systems, no exception of type std::bad_alloc is thrown.

On all other operating systems, Qt will throw an exception of type std::bad_alloc if any allocation fails. Allocations can fail if the system runs out of memory or doesn't have enough continuous memory to allocate the requested size.

Exceptions to that rule are documented. As an example, QImage constructors will create a null image if not enough memory exists instead of throwing an exception.

Recovering from exceptions

Currently, the only supported use case for recovering from exceptions thrown within Qt (for example due to out of memory) is to exit the event loop and do some cleanup before exiting the application.

Typical use case:

 QApplication app(argc, argv);
 try {
 } catch (const std::bad_alloc &) {
     // clean up here, e.g. save the session
     // and close all config files.

     return 0; // exit the application

After an exception is thrown, the connection to the windowing server might already be closed. It is not safe to call a GUI related function after catching an exception.

Platform-Specific Exception Handling

The Symbian platform

The Symbian platform implements its own exception system that differs from the standard C++ mechanism. When using Qt for the Symbian platform, and especially when writing code to access Symbian functionality directly, it may be necessary to know about the underlying implementation and how it interacts with Qt.

The Exception Safety with Symbian document shows how to use the facilities provided by Qt to use exceptions as safely as possible.