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pytqt/doc/PyQt.sgml

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<!DOCTYPE Article PUBLIC "-//OASIS//DTD DocBook V3.1//EN">
<Article>
<ArtHeader>
<Title>Python Bindings for TQt (3.18.1)</Title>
<Author>
<FirstName>Phil</FirstName>
<Surname>Thompson</Surname>
</Author>
<Abstract>
<Para>
This document describes a set of Python bindings for the TQt widget set.
Contact the author at <Email>phil@riverbankcomputing.co.uk</Email>.
</Para>
</Abstract>
</ArtHeader>
<Sect1><Title>Introduction</Title>
<Para>
PyTQt is a set of Python bindings for the TQt toolkit and available for all
platforms supported by TQt, including Windows, Linux, UNIX, MacOS/X and embedded
systems such as the Sharp Zaurus and the Compaq iPAQ. They have been tested
against TQt versions 1.43 to 3.3.6, TQt Non-commercial, TQtopia 1.5.0, and Python
versions 1.5 to 2.4.2. TQt/Embedded v3 is not supported. TQt v4 is supported
by PyTQt v4.
</Para>
<Para>
PyTQt is available under the GPL license for use with the GPL version of TQt, a
a commercial license for use with the commercial version of TQt, a
non-commercial license for use with the non-commercial version of TQt v2, and an
educational license for use with the educational version of TQt.
</Para>
<Para>
There is also an evaluation version of PyTQt for Windows. This must be used
with the corresponding evaluation version of TQt.
</Para>
<Para>
PyTQt is built using SIP (a tool for generating Python extension modules for
C++ class libraries). SIP v4.6 or later must be installed in order to build
and run this version of PyTQt.
</Para>
<Para>
PyTQt for MacOS/X requires TQt v3.1.0 or later and Python v2.3 or later.
</Para>
<Para>
The bindings are implemented as a number of Python modules
</Para>
<ItemizedList>
<ListItem>
<Para>
<Literal>qt</Literal> is the main module and contains the core classes and most
user interface widgets.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>qtaxcontainer</Literal> contains a sub-set of the classes implemented
in TQt's TQAxContainer module, part of TQt's ActiveTQt framework.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>qtcanvas</Literal> contains the classes implemented in TQt's Canvas
module.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>qtgl</Literal> contains the classes implemented in TQt's OpenGL module.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>qtnetwork</Literal> contains the classes implemented in TQt's Network
module.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>qtpe</Literal> contains the classes implemented in TQtopia (originally
called the TQt Palmtop Environment). It is only supported with TQt/Embedded.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>qtsql</Literal> contains the classes implemented in TQt's SQL module.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>qttable</Literal> contains the classes implemented in TQt's Table
module.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>qtui</Literal> contains the classes implemented in TQt's tqui library.
These allow GUIs to be created directly from TQt Designer's
<Literal>.ui</Literal> files.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>qtxml</Literal> contains the classes implemented in TQt's XML module.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>qtext</Literal> contains useful third-party classes that are not part
of TQt. At the moment it contains bindings for TQScintilla, the port to TQt of
the Scintilla programmer's editor class.
</Para>
</ListItem>
</ItemizedList>
<Para>
PyTQt also includes the <Literal>pyuic</Literal> and
<Literal>pylupdate</Literal> utilities which correspond to the TQt
<Literal>uic</Literal> and <Literal>lupdate</Literal> utilities.
<Literal>pyuic</Literal> converts the GUI designs created with TQt Designer to
executable Python code. <Literal>pylupdate</Literal> scans Python code,
extracts all strings that are candidates for internationalisation, and creates
an XML file for use by TQt Linguist.
</Para>
<Sect2><Title>Changes</Title>
<Para>
The changes visible to the Python programmer in this release are as follows.
</Para>
<ItemizedList>
<ListItem>
<Para>
This version requires SIP v4.4 (or later).
</Para>
</ListItem>
<ListItem>
<Para>
Concatenating Python strings and <Literal>TQString</Literal>s is now supported.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>TQString</Literal> now supports the <Literal>*</Literal> and
<Literal>*=</Literal> operators that behave as they do for Python strings.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>TQString</Literal> is more interoperable with Python string and unicode
objects. For example they can be passed as arguments to
<Literal>open()</Literal> and to most (but not all) string methods.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>TQPopupMenu</Literal> (and sub-classes) instances now transfer
ownership of the menu to Python in the call to <Literal>exec_loop()</Literal>.
This means the menu's resources are all released when the Python wrapper is
garbage collected without needing to call
<Literal>TQObject.deleteLater()</Literal>.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>TQObject.sender()</Literal> now handles Python signals.
</Para>
</ListItem>
<ListItem>
<Para>
The missing <Literal>MacintoshVersion</Literal> enum has been added.
</Para>
</ListItem>
<ListItem>
<Para>
<Literal>PYQT_BUILD</Literal> has been removed.
</Para>
</ListItem>
<ListItem>
<Para>
The convention for converting between a C/C++ null pointer and Python's
<Literal>None</Literal> object has now been universally applied. In previous
versions a null pointer to, for example, a TQt list container would often be
converted to an empty list rather than <Literal>None</Literal>.
</Para>
</ListItem>
</ItemizedList>
</Sect2>
</Sect1>
<Sect1><Title>Other PyTQt Goodies</Title>
<Sect2><Title>Using TQt Designer</Title>
<Para>
TQt Designer is a GPL'ed GUI design editor provided by Trolltech as part of TQt.
It generates an XML description of a GUI design. TQt includes
<Literal>uic</Literal> which generates C++ code from that XML.
</Para>
<Para>
PyTQt includes <Literal>pyuic</Literal> which generates Python code from the
same XML. The Python code is self contained and can be executed immediately.
</Para>
<Para>
It is sometimes useful to be able to include some specific Python code in the
output generated by <Literal>pyuic</Literal>. For example, if you are using
custom widgets, <Literal>pyuic</Literal> has no way of knowing the name of the
Python module containing the widget and so cannot generate the required
<Literal>import</Literal> statement. To help get around this,
<Literal>pyuic</Literal> will extract any lines entered in the
<Literal>Comment</Literal> field of TQt Designer's
<Literal>Form Settings</Literal> dialog that begin with
<Literal>Python:</Literal> and copies them to the generated output.
</Para>
<Para>
Here's a simple example showing the contents of the <Literal>Comment</Literal>
field.
</Para>
<ProgramListing>
This comment will be ignored by pyuic.
Python:
Python:# Import our custom widget.
Python:from foo import bar
</ProgramListing>
<Para>
Here's the corresponding output from <Literal>pyuic</Literal>.
</Para>
<ProgramListing>
from qt import *
# Import our custom widget.
from foo import bar
</ProgramListing>
<Para>
Thanks to Christian Bird, <Literal>pyuic</Literal> will extract Python code
entered using TQt Designer to implement slots. In TQt Designer, when you need to
edit a slot and the source editor appears, enter Python code between the curly
braces. Don't worry about the correct starting indent level, each line is
prepended with a correct indentation.
</Para>
<Para>
Make sure that the <Literal>ui.h</Literal> file is in the same directory as the
<Literal>.ui</Literal> file when using <Literal>pyuic</Literal>. The
<Literal>.ui</Literal> file implies the name of the <Literal>.ui.h</Literal>
file so there is no need to specify it on the command line.
</Para>
<Para>
Here's an example of a simple slot.
</Para>
<ProgramListing>
void DebMainWindowFrm::browsePushButtonClicked()
{
if self.debugging:
TQMessageBox.critical(self, "Event", "browse pushbutton was clicked!")
}
</ProgramListing>
<Para>
Here is the resulting code when <Literal>pyuic</Literal> is run.
</Para>
<ProgramListing>
class DebMainWindowFrm(TQMainWindow):
...stuff...
def browsePushButtonClicked(self):
if self.debugging:
TQMessageBox.critical(self, "Event", "browse pushbutton was clicked!")
</ProgramListing>
<Para>
Note that indenting is as normal and that <Literal>self</Literal> and all other
parameters passed to the slot are available.
</Para>
<Para>
If you use this, you will need to turn off all of the fancy options for the C++
editor in Designer as it tries to force C++ syntax and that's naturally
annoying when trying to code in Python.
</Para>
</Sect2>
<Sect2><Title>Using TQt Linguist</Title>
<Para>
TQt includes the <Literal>lupdate</Literal> program which parses C++ source
files converting calls to the <Literal>QT_TR_NOOP()</Literal> and
<Literal>QT_TRANSLATE_NOOP()</Literal> macros to <Literal>.ts</Literal>
language source files. The <Literal>lrelease</Literal> program is then used to
generate <Literal>.qm</Literal> binary language files that are distributed with
your application.
</Para>
<Para>
Thanks to Detlev Offenbach, PyTQt includes the <Literal>pylupdate</Literal>
program. This generates the same <Literal>.ts</Literal> language source files
from your PyTQt source files.
</Para>
</Sect2>
</Sect1>
<Sect1><Title>Deploying Commercial PyTQt Applications</Title>
<Para>
When deploying commercial PyTQt applications it is necessary to discourage users
from accessing the underlying PyTQt modules for themselves. A user that used
the modules shipped with your application to develop new applications would
themselves be considered a developer and would need their own commercial TQt and
PyTQt licenses.
</Para>
<Para>
One solution to this problem is the
<ULink url="http://www.riverbankcomputing.co.uk/vendorid/">VendorID</ULink>
package. This allows you to build Python extension modules that can only be
imported by a digitally signed custom interpreter. The package enables you to
create such an interpreter with your application embedded within it. The
result is an interpreter that can only run your application, and PyTQt modules
that can only be imported by that interpreter. You can use the package to
similarly restrict access to any extension module.
</Para>
<Para>
In order to build PyTQt with support for the VendorID package, pass the
<Literal>-i</Literal> command line flag to <Literal>configure.py</Literal>.
</Para>
</Sect1>
<Sect1><Title><Literal>pyqtconfig</Literal> and Build System Support</Title>
<Para>
The SIP build system (ie. the <Literal>sipconfig</Literal> module) is described
in the SIP documentation. PyTQt includes the <Literal>pyqtconfig</Literal>
module that can be used by configuration scripts of other bindings that are
built on top of PyTQt.
</Para>
<Para>
The <Literal>pyqtconfig</Literal> module contains the following classes:
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>Configuration(sipconfig.Configuration)</Literal></Term>
<ListItem>
<Para>
This class encapsulates additional configuration values, specific to PyTQt, that
can be accessed as instance variables.
</Para>
<Para>
The following configuration values are provided (in addition to those provided
by the <Literal>sipconfig.Configuration</Literal> class):
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>pyqt_bin_dir</Literal></Term>
<ListItem>
<Para>
The name of the directory containing the <Literal>pyuic</Literal> and
<Literal>pylupdate</Literal> executables.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_config_args</Literal></Term>
<ListItem>
<Para>
The command line passed to <Literal>configure.py</Literal> when PyTQt was
configured.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_mod_dir</Literal></Term>
<ListItem>
<Para>
The name of the directory containing the PyTQt modules.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_modules</Literal></Term>
<ListItem>
<Para>
A string containing the names of the PyTQt modules that were installed.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_qt_sip_flags</Literal></Term>
<ListItem>
<Para>
A string of the SIP flags used to generate the code for the
<Literal>qt</Literal> module and which should be added to those needed by any
module that imports the <Literal>qt</Literal> module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_qtaxcontainer_sip_flags</Literal></Term>
<ListItem>
<Para>
A string of the SIP flags used to generate the code for the
<Literal>qtaxcontainer</Literal> module and which should be added to those
needed by any module that imports the <Literal>qtaxcontainer</Literal> module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_qtcanvas_sip_flags</Literal></Term>
<ListItem>
<Para>
A string of the SIP flags used to generate the code for the
<Literal>qtcanvas</Literal> module and which should be added to those needed by
any module that imports the <Literal>qtcanvas</Literal> module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_qtext_sip_flags</Literal></Term>
<ListItem>
<Para>
A string of the SIP flags used to generate the code for the
<Literal>qtext</Literal> module and which should be added to those needed by
any module that imports the <Literal>qtext</Literal> module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_qtgl_sip_flags</Literal></Term>
<ListItem>
<Para>
A string of the SIP flags used to generate the code for the
<Literal>qtgl</Literal> module and which should be added to those needed by any
module that imports the <Literal>qtgl</Literal> module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_qtnetwork_sip_flags</Literal></Term>
<ListItem>
<Para>
A string of the SIP flags used to generate the code for the
<Literal>qtnetwork</Literal> module and which should be added to those needed
by any module that imports the <Literal>qtnetwork</Literal> module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_qtsql_sip_flags</Literal></Term>
<ListItem>
<Para>
A string of the SIP flags used to generate the code for the
<Literal>qtsql</Literal> module and which should be added to those needed by
any module that imports the <Literal>qtsql</Literal> module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_qttable_sip_flags</Literal></Term>
<ListItem>
<Para>
A string of the SIP flags used to generate the code for the
<Literal>qttable</Literal> module and which should be added to those needed by
any module that imports the <Literal>qttable</Literal> module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_qtui_sip_flags</Literal></Term>
<ListItem>
<Para>
A string of the SIP flags used to generate the code for the
<Literal>qtui</Literal> module and which should be added to those needed by any
module that imports the <Literal>qtui</Literal> module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_qtxml_sip_flags</Literal></Term>
<ListItem>
<Para>
A string of the SIP flags used to generate the code for the
<Literal>qtxml</Literal> module and which should be added to those needed by
any module that imports the <Literal>qtxml</Literal> module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_sip_dir</Literal></Term>
<ListItem>
<Para>
The name of the base directory where the <Literal>.sip</Literal> files for each
of the PyTQt modules is installed. A sub-directory exists with the same name as
the module.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_version</Literal></Term>
<ListItem>
<Para>
The PyTQt version as a 3 part hexadecimal number (eg. v3.10 is represented as
<Literal>0x030a00</Literal>).
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>pyqt_version_str</Literal></Term>
<ListItem>
<Para>
The PyTQt version as a string. For development snapshots it will start with
<Literal>snapshot-</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>TQtModuleMakefile(sipconfig.SIPModuleMakefile)</Literal></Term>
<ListItem>
<Para>
The Makefile class for modules that import the <Literal>qt</Literal> module.
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>finalise(self)</Literal></Term>
<ListItem>
<Para>
This is a reimplementation of <Literal>sipconfig.Makefile.finalise()</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>TQtAxContainerModuleMakefile(TQtModuleMakefile)</Literal></Term>
<ListItem>
<Para>
The Makefile class for modules that import the <Literal>qtaxcontainer</Literal>
module.
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>finalise(self)</Literal></Term>
<ListItem>
<Para>
This is a reimplementation of <Literal>sipconfig.Makefile.finalise()</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>TQtCanvasModuleMakefile(TQtModuleMakefile)</Literal></Term>
<ListItem>
<Para>
The Makefile class for modules that import the <Literal>qtcanvas</Literal>
module.
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>finalise(self)</Literal></Term>
<ListItem>
<Para>
This is a reimplementation of <Literal>sipconfig.Makefile.finalise()</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>TQtExtModuleMakefile(TQtModuleMakefile)</Literal></Term>
<ListItem>
<Para>
The Makefile class for modules that import the <Literal>qtext</Literal> module.
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>finalise(self)</Literal></Term>
<ListItem>
<Para>
This is a reimplementation of <Literal>sipconfig.Makefile.finalise()</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>TQtGLModuleMakefile(TQtModuleMakefile)</Literal></Term>
<ListItem>
<Para>
The Makefile class for modules that import the <Literal>qtgl</Literal> module.
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>finalise(self)</Literal></Term>
<ListItem>
<Para>
This is a reimplementation of <Literal>sipconfig.Makefile.finalise()</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>TQtNetworkModuleMakefile(TQtModuleMakefile)</Literal></Term>
<ListItem>
<Para>
The Makefile class for modules that import the <Literal>qtnetwork</Literal>
module.
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>finalise(self)</Literal></Term>
<ListItem>
<Para>
This is a reimplementation of <Literal>sipconfig.Makefile.finalise()</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>TQtTableModuleMakefile(TQtModuleMakefile)</Literal></Term>
<ListItem>
<Para>
The Makefile class for modules that import the <Literal>qttable</Literal>
module.
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>finalise(self)</Literal></Term>
<ListItem>
<Para>
This is a reimplementation of <Literal>sipconfig.Makefile.finalise()</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>TQtSQLModuleMakefile(TQtTableModuleMakefile)</Literal></Term>
<ListItem>
<Para>
The Makefile class for modules that import the <Literal>qtsql</Literal> module.
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>finalise(self)</Literal></Term>
<ListItem>
<Para>
This is a reimplementation of <Literal>sipconfig.Makefile.finalise()</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>TQtUIModuleMakefile(TQtModuleMakefile)</Literal></Term>
<ListItem>
<Para>
The Makefile class for modules that import the <Literal>qtui</Literal> module.
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>finalise(self)</Literal></Term>
<ListItem>
<Para>
This is a reimplementation of <Literal>sipconfig.Makefile.finalise()</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
<VarListEntry>
<Term><Literal>TQtXMLModuleMakefile(TQtModuleMakefile)</Literal></Term>
<ListItem>
<Para>
The Makefile class for modules that import the <Literal>qtxml</Literal> module.
</Para>
<VariableList>
<VarListEntry>
<Term><Literal>finalise(self)</Literal></Term>
<ListItem>
<Para>
This is a reimplementation of <Literal>sipconfig.Makefile.finalise()</Literal>.
</Para>
<Para></Para><Para></Para>
</ListItem>
</VarListEntry>
</VariableList>
</ListItem>
</VarListEntry>
</VariableList>
</Sect1>
<Sect1><Title>Things to be Aware Of</Title>
<Sect2><Title>super and Wrapped Classes</Title>
<Para>
Internally PyTQt implements a lazy technique for attribute lookup where
attributes are only placed in type and instance dictionaries when they are
first referenced. This technique is needed to reduce the time taken to import
large modules such as PyTQt.
</Para>
<Para>
In most circumstances this technique is transparent to an application. The
exception is when <Literal>super</Literal> is used with a PyTQt class. The way
that <Literal>super</Literal> is currently implemented means that the lazy
lookup is bypassed resulting in <Literal>AttributeError</Literal> exceptions
unless the attribute has been previously referenced.
</Para>
<Para>
Note that this restriction applies to any class wrapped by SIP and not just
PyTQt.
</Para>
</Sect2>
<Sect2><Title>Python Strings, TQt Strings and Unicode</Title>
<Para>
Unicode support was added to TQt in v2.0 and to Python in v1.6. In TQt, Unicode
support is implemented using the <Literal>TQString</Literal> class. It is
important to understand that <Literal>TQString</Literal>s, Python string objects
and Python Unicode objects are all different but conversions between them are
automatic in almost all cases and easy to achieve manually when needed.
</Para>
<Para>
Whenever PyTQt expects a <Literal>TQString</Literal> as a function argument, a
Python string object or a Python Unicode object can be provided instead, and
PyTQt will do the necessary conversion automatically.
</Para>
<Para>
You may also manually convert Python string and Unicode objects to
<Literal>TQString</Literal>s by using the <Literal>TQString</Literal> constructor
as demonstrated in the following code fragment.
</Para>
<ProgramListing>
qs1 = TQString('Converted Python string object')
qs2 = TQString(u'Converted Python Unicode object')
</ProgramListing>
<Para>
In order to convert a <Literal>TQString</Literal> to a Python string object use
the Python <Literal>str()</Literal> function. Applying
<Literal>str()</Literal> to a null <Literal>TQString</Literal> and an empty
<Literal>TQString</Literal> both result in an empty Python string object.
</Para>
<Para>
In order to convert a <Literal>TQString</Literal> to a Python Unicode object use
the Python <Literal>unicode()</Literal> function. Applying
<Literal>unicode()</Literal> to a null <Literal>TQString</Literal> and an empty
<Literal>TQString</Literal> both result in an empty Python Unicode object.
</Para>
</Sect2>
<Sect2><Title>Access to Protected Member Functions</Title>
<Para>
When an instance of a C++ class is not created from Python it is not possible
to access the protected member functions, or emit the signals, of that
instance. Attempts to do so will raise a Python exception. Also, any Python
methods corresponding to the instance's virtual member functions will never be
called.
</Para>
</Sect2>
<Sect2><Title><Literal>None</Literal> and <Literal>NULL</Literal></Title>
<Para>
Throughout the bindings, the <Literal>None</Literal> value can be specified
wherever <Literal>NULL</Literal> is acceptable to the underlying C++ code.
</Para>
<Para>
Equally, <Literal>NULL</Literal> is converted to <Literal>None</Literal>
whenever it is returned by the underlying C++ code.
</Para>
</Sect2>
<Sect2><Title>Support for C++ <Literal>void *</Literal> Data Types</Title>
<Para>
PyTQt represents <Literal>void *</Literal> values as objects of type
<Literal>sip.voidptr</Literal>. Such values are often used to pass the
addresses of external objects between different Python modules. To make this
easier, a Python integer (or anything that Python can convert to an integer)
can be used whenever a <Literal>sip.voidptr</Literal> is expected.
</Para>
<Para>
A <Literal>sip.voidptr</Literal> may be converted to a Python integer by using
the <Literal>int()</Literal> builtin function.
</Para>
<Para>
A <Literal>sip.voidptr</Literal> may be converted to a Python string by using
its <Literal>asstring()</Literal> method. The <Literal>asstring()</Literal>
method takes an integer argument which is the length of the data in bytes.
</Para>
</Sect2>
<Sect2><Title>Support for Threads</Title>
<Para>
PyTQt implements the full set of TQt's thread classes. Python, of course, also
has its own thread extension modules. If you are using SIP v4 (or later) and
Python v2.3.5 (or later) then PyTQt does not impose any additional restrictions.
(Read the relevant part of the TQt documentation to understand the restrictions
imposed by the TQt API.)
</Para>
<Para>
If you are using earlier versions of either SIP or Python then it is possible
to use either of the APIs so long as you follow some simple rules.
</Para>
<ItemizedList>
<ListItem>
<Para>
If you use the TQt API then the very first <Literal>import</Literal> of one of
the PyTQt modules must be done from the main thread.
</Para>
</ListItem>
<ListItem>
<Para>
If you use the Python API then all calls to PyTQt (including any
<Literal>import</Literal>s) must be done from one thread only. Therefore, if
you want to make calls to PyTQt from several threads then you must use the TQt
API.
</Para>
</ListItem>
<ListItem>
<Para>
If you want to use both APIs in the same application then all calls to PyTQt
must be done from threads created using the TQt API.
</Para>
</ListItem>
</ItemizedList>
<Para>
The above comments actually apply to any SIP generated module, not just PyTQt.
</Para>
</Sect2>
<Sect2><Title>Garbage Collection</Title>
<Para>
C++ does not garbage collect unreferenced class instances, whereas Python does.
In the following C++ fragment both colours exist even though the first can no
longer be referenced from within the program:
</Para>
<ProgramListing>
c = new TQColor();
c = new TQColor();
</ProgramListing>
<Para>
In the corresponding Python fragment, the first colour is destroyed when
the second is assigned to <Literal>c</Literal>:
</Para>
<ProgramListing>
c = TQColor()
c = TQColor()
</ProgramListing>
<Para>
In Python, each colour must be assigned to different names. Typically this
is done within class definitions, so the code fragment would be something like:
</Para>
<ProgramListing>
self.c1 = TQColor()
self.c2 = TQColor()
</ProgramListing>
<Para>
Sometimes a TQt class instance will maintain a pointer to another instance and
will eventually call the destructor of that second instance. The most common
example is that a <Literal>TQObject</Literal> (and any of its sub-classes) keeps
pointers to its children and will automatically call their destructors. In
these cases, the corresponding Python object will also keep a reference to the
corresponding child objects.
</Para>
<Para>
So, in the following Python fragment, the first <Literal>TQLabel</Literal> is
not destroyed when the second is assigned to <Literal>l</Literal> because the
parent <Literal>TQWidget</Literal> still has a reference to it.
</Para>
<ProgramListing>
p = TQWidget()
l = TQLabel('First label',p)
l = TQLabel('Second label',p)
</ProgramListing>
</Sect2>
<Sect2><Title>C++ Variables</Title>
<Para>
Access to C++ variables is supported. They are accessed as Python instance
variables. For example:
</Para>
<ProgramListing>
tab = TQTab()
tab.label = "First Tab"
tab.r = TQRect(10,10,75,30)
</ProgramListing>
<Para>
Global variables and static class variables are effectively read-only. They
can be assigned to, but the underlying C++ variable will not be changed. This
may change in the future.
</Para>
<Para>
Access to protected C++ class variables is not supported. This may change in
the future.
</Para>
</Sect2>
<Sect2><Title>Multiple Inheritance</Title>
<Para>
It is not possible to define a new Python class that sub-classes from more than
one TQt class.
</Para>
</Sect2>
<Sect2><Title>i18n Support</Title>
<Para>
TQt implements i18n support through the TQt Linguist application, the
<Literal>TQTranslator</Literal> class, and the
<Literal>TQApplication::translate()</Literal>, <Literal>TQObject::tr()</Literal>
and <Literal>TQObject::trUtf8()</Literal> methods. Usually the
<Literal>tr()</Literal> method is used to obtain the correct translation of a
message. The translation process uses a message context to allow the same
message to be translated differently. <Literal>tr()</Literal> is actually
generated by <Literal>moc</Literal> and uses the hardcoded class name as the
context. On the other hand, <Literal>TQApplication::translate()</Literal>
allows to context to be explicitly stated.
</Para>
<Para>
Unfortunately, because of the way TQt implents <Literal>tr()</Literal> (and
<Literal>trUtf8()</Literal>) it is not possible for PyTQt to exactly reproduce
its behavour. The PyTQt implementation of <Literal>tr()</Literal> (and
<Literal>trUtf8()</Literal>) uses the class name of the instance as the
context. The key difference, and the source of potential problems, is that the
context is determined dynamically in PyTQt, but is hardcoded in TQt. In other
words, the context of a translation may change depending on an instance's class
hierarchy.
</Para>
<ProgramListing>
class A(TQObject):
def __init__(self):
TQObject.__init__(self)
def hello(self):
return self.tr("Hello")
class B(A):
def __init__(self):
A.__init__(self)
a = A()
a.hello()
b = B()
b.hello()
</ProgramListing>
<Para>
In the above the message is translated by <Literal>a.hello()</Literal> using a
context of <Literal>A</Literal>, and by <Literal>b.hello()</Literal> using a
context of <Literal>B</Literal>. In the equivalent C++ version the context
would be <Literal>A</Literal> in both cases.
</Para>
<Para>
The PyTQt behaviour is unsatisfactory and may be changed in the future. It is
recommended that <Literal>TQApplication.translate()</Literal> be used in
preference to <Literal>tr()</Literal> (and <Literal>trUtf8()</Literal>). This
is guaranteed to work with current and future versions of PyTQt and makes it
much easier to share message files between Python and C++ code. Below is the
alternative implementation of <Literal>A</Literal> that uses
<Literal>TQApplication.translate()</Literal>.
</Para>
<ProgramListing>
class A(TQObject):
def __init__(self):
TQObject.__init__(self)
def hello(self):
return tqApp.translate("A","Hello")
</ProgramListing>
<Para>
Note that the code generated by <Literal>pyuic</Literal> uses
<Literal>TQApplication.translate()</Literal>.
</Para>
</Sect2>
</Sect1>
<Sect1><Title>Signal and Slot Support</Title>
<Para>
A signal may be either a TQt signal (specified using
<Literal>SIGNAL()</Literal>) or a Python signal (specified using
<Literal>PYSIGNAL()</Literal>).
</Para>
<Para>
A slot can be either a Python callable object, a TQt signal (specified using
<Literal>SIGNAL()</Literal>), a Python signal (specified using
<Literal>PYSIGNAL()</Literal>), or a TQt slot (specified using
<Literal>SLOT()</Literal>).
</Para>
<Para>
You connect signals to slots (and other signals) as you would from C++. For
example:
</Para>
<ProgramListing>
TQObject.connect(a,SIGNAL("TQtSig()"),pyFunction)
TQObject.connect(a,SIGNAL("TQtSig()"),pyClass.pyMethod)
TQObject.connect(a,SIGNAL("TQtSig()"),PYSIGNAL("PySig"))
TQObject.connect(a,SIGNAL("TQtSig()"),SLOT("TQtSlot()"))
TQObject.connect(a,PYSIGNAL("PySig"),pyFunction)
TQObject.connect(a,PYSIGNAL("PySig"),pyClass.pyMethod)
TQObject.connect(a,PYSIGNAL("PySig"),SIGNAL("TQtSig()"))
TQObject.connect(a,PYSIGNAL("PySig"),SLOT("TQtSlot()"))
</ProgramListing>
<Para>
When a slot is a Python method that corresponds to a TQt slot then a signal can
be connected to either the Python method or the TQt slot. The following
connections achieve the same effect.
</Para>
<ProgramListing>
sbar = TQScrollBar()
lcd = TQLCDNumber()
TQObject.connect(sbar,SIGNAL("valueChanged(int)"),lcd.display)
TQObject.connect(sbar,SIGNAL("valueChanged(int)"),lcd,SLOT("display(int)"))
</ProgramListing>
<Para>
The difference is that the second connection is made at the C++ level and is
more efficient.
</Para>
<Para>
Disconnecting signals works in exactly the same way.
</Para>
<Para>
Any instance of a class that is derived from the <Literal>TQObject</Literal>
class can emit a signal using the <Literal>emit</Literal> method. This takes
two arguments. The first is the Python or TQt signal, the second is a Python
tuple which are the arguments to the signal. For example:
</Para>
<ProgramListing>
a.emit(SIGNAL("clicked()"),())
a.emit(PYSIGNAL("pySig"),("Hello","World"))
</ProgramListing>
<Para>
Note that when a slot is a Python callable object its reference count is not
increased. This means that a class instance can be deleted without having to
explicitly disconnect any signals connected to its methods. However, it also
means that using lambda expressions as slots will not work unless you keep a
separate reference to the expression to prevent it from being immediately
garbage collected.
</Para>
<Para>
TQt allows a signal to be connected to a slot that requires fewer arguments than
the signal passes. The extra arguments are tquietly discarded. Python slots
can be used in the same way.
</Para>
</Sect1>
<Sect1><Title>Static Member Functions</Title>
<Para>
Static member functions are implemented as Python class functions.
For example the C++ static member function
<Literal>TQObject::connect()</Literal> is called from Python as
<Literal>TQObject.connect()</Literal> or <Literal>self.connect()</Literal> if
called from a sub-class of <Literal>TQObject</Literal>.
</Para>
</Sect1>
<Sect1><Title>Enumerated Types</Title>
<Para>
Enumerated types are implemented as a set of simple variables corresponding to
the separate enumerated values.
</Para>
<Para>
When using an enumerated value the name of the class (or a sub-class) in which
the enumerated type was defined in must be included. For example:
</Para>
<ProgramListing>
TQt.SolidPattern
TQWidget.TabFocus
TQFrame.TabFocus
</ProgramListing>
</Sect1>
<Sect1><Title>Module Reference Documentation</Title>
<Para>
The following sections should be used in conjunction with the normal class
documentation - only the differences specific to the Python bindings are
documented here.
</Para>
<Para>
In these sections, <Emphasis>Not yet implemented</Emphasis>
implies that the feature can be easily implemented if needed. <Emphasis>Not
implemented</Emphasis> implies that the feature will not be implemented, either
because it cannot be or because it is not appropriate.
</Para>
<Para>
If a class is described as being <Emphasis>fully implemented</Emphasis> then
all non-private member functions and all public class variables have been
implemented.
</Para>
<Para>
If an operator has been implemented then it is stated explicitly.
</Para>
<Para>
Classes that are not mentioned have not yet been implemented.
</Para>
</Sect1>
<Sect1><Title><Literal>qt</Literal> Module Reference</Title>
<Sect2><Title>TQt Constants</Title>
<Para>
All constant values defined by TQt have equivalent constants defined to Python.
</Para>
</Sect2>
<Sect2><Title>TQt (TQt v2+)</Title>
<Para>
<Literal>TQt</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQAccel</Title>
<Para>
<Literal>TQAccel</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQAction (TQt v2.2+)</Title>
<Para>
<Literal>TQAction</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQActionGroup (TQt v2.2+)</Title>
<Para>
<Literal>TQActionGroup</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQApplication</Title>
<FuncSynopsis>
<FuncDef><Function>TQApplication</Function></FuncDef>
<ParamDef>int &amp;<Parameter>argc</Parameter></ParamDef>
<ParamDef>char **<Parameter>argv</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes one parameter which is a list of argument strings. Arguments
used by TQt are removed from the list.
</Para>
<FuncSynopsis>
<FuncDef><Function>TQApplication</Function></FuncDef>
<ParamDef>int &amp;<Parameter>argc</Parameter></ParamDef>
<ParamDef>char **<Parameter>argv</Parameter></ParamDef>
<ParamDef>bool <Parameter>GUIenabled</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes two parameters, the first of which is a list of argument strings.
Arguments used by TQt are removed from the list.
</Para>
<FuncSynopsis>
<FuncDef><Function>TQApplication</Function></FuncDef>
<ParamDef>int &amp;<Parameter>argc</Parameter></ParamDef>
<ParamDef>char **<Parameter>argv</Parameter></ParamDef>
<ParamDef>Type <Parameter>type</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes two parameters, the first of which is a list of argument strings.
Arguments used by TQt are removed from the list. (TQt v2.2+)
</Para>
<FuncSynopsis>
<FuncDef>int <Function>exec</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed to <Literal>exec_loop</Literal> in Python.
</Para>
</Sect2>
<Sect2><Title>TQAssistantClient (TQt v3.1+)</Title>
<Para>
<Literal>TQAssistantClient</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQBitmap</Title>
<Para>
<Literal>TQBitmap</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQBrush</Title>
<Para>
<Literal>TQBrush</Literal> is fully implemented, including the Python
<Literal>==</Literal> and <Literal>!=</Literal> operators.
</Para>
</Sect2>
<Sect2><Title>TQButton</Title>
<Para>
<Literal>TQButton</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQButtonGroup</Title>
<Para>
<Literal>TQButtonGroup</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQByteArray</Title>
<Para>
A Python string can be used whenever a <Literal>TQByteArray</Literal> can be
used. A <Literal>TQByteArray</Literal> can be converted to a Python string
using the Python <Literal>str()</Literal> function.
</Para>
<FuncSynopsis>
<FuncDef>TQByteArray &<Function>assign</Function></FuncDef>
<ParamDef>const char *<Parameter>data</Parameter></ParamDef>
<ParamDef>uint <Parameter>size</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>char &<Function>at</Function></FuncDef>
<ParamDef>uint <Parameter>i</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>int <Function>contains</Function></FuncDef>
<ParamDef>const char &<Parameter>d</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>fill</Function></FuncDef>
<ParamDef>const char &<Parameter>d</Parameter></ParamDef>
<ParamDef>int <Parameter>size</Parameter> = -1</ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>int <Function>find</Function></FuncDef>
<ParamDef>const char &<Parameter>d</Parameter></ParamDef>
<ParamDef>uint <Parameter>i</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>resetRawData</Function></FuncDef>
<ParamDef>const char *<Parameter>data</Parameter></ParamDef>
<ParamDef>uint<Parameter>size</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQByteArray &<Function>setRawData</Function></FuncDef>
<ParamDef>const char *<Parameter>data</Parameter></ParamDef>
<ParamDef>uint<Parameter>size</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQCDEStyle (TQt v2+)</Title>
<Para>
<Literal>TQCDEStyle</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCheckBox</Title>
<Para>
<Literal>TQCheckBox</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQClipboard</Title>
<FuncSynopsis>
<FuncDef>void *<Function>data</Function> const</FuncDef>
<ParamDef>const char *<Parameter>format</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented (TQt v1.x).
</Para>
<FuncSynopsis>
<FuncDef>void <Function>setData</Function></FuncDef>
<ParamDef>const char *<Parameter>format</Parameter></ParamDef>
<ParamDef>void *<Parameter></Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented (TQt v1.x).
</Para>
</Sect2>
<Sect2><Title>TQColor</Title>
<Para>
The Python <Literal>==</Literal> and <Literal>!=</Literal> operators are
supported.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>getHsv</Function></FuncDef>
<ParamDef>int *<Parameter>h</Parameter></ParamDef>
<ParamDef>int *<Parameter>s</Parameter></ParamDef>
<ParamDef>int *<Parameter>v</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns the <Literal>h</Literal>,
<Literal>s</Literal> and <Literal>v</Literal> values as a tuple.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>getRgb</Function></FuncDef>
<ParamDef>int *<Parameter>r</Parameter></ParamDef>
<ParamDef>int *<Parameter>g</Parameter></ParamDef>
<ParamDef>int *<Parameter>b</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns the <Literal>r</Literal>,
<Literal>g</Literal> and <Literal>b</Literal> values as a tuple.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>hsv</Function></FuncDef>
<ParamDef>int *<Parameter>h</Parameter></ParamDef>
<ParamDef>int *<Parameter>s</Parameter></ParamDef>
<ParamDef>int *<Parameter>v</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns the <Literal>h</Literal>,
<Literal>s</Literal> and <Literal>v</Literal> values as a tuple.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>rgb</Function></FuncDef>
<ParamDef>int *<Parameter>r</Parameter></ParamDef>
<ParamDef>int *<Parameter>g</Parameter></ParamDef>
<ParamDef>int *<Parameter>b</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns the <Literal>r</Literal>,
<Literal>g</Literal> and <Literal>b</Literal> values as a tuple.
</Para>
</Sect2>
<Sect2><Title>TQColorDialog (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>static TQRgb <Function>getRgba</Function></FuncDef>
<ParamDef>TQRgb <Parameter>initial</Parameter></ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter></ParamDef>
<ParamDef>TQWidget *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>initial</Literal>, <Literal>parent</Literal> and
<Literal>name</Literal> parameters and returns a tuple containing the
<Literal>TQRgb</Literal> result and the <Literal>ok</Literal> value.
</Para>
</Sect2>
<Sect2><Title>TQColorGroup</Title>
<Para>
<Literal>TQColorGroup</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQComboBox</Title>
<Para>
<Literal>TQComboBox</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCommonStyle (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>virtual void <Function>getButtonShift</Function></FuncDef>
<ParamDef>int &amp;<Parameter>x</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>y</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the <Literal>x</Literal> and
<Literal>y</Literal> values. (TQt v2)
</Para>
<FuncSynopsis>
<FuncDef>virtual void <Function>tabbarMetrics</Function></FuncDef>
<ParamDef>const TQTabBar *<Parameter>t</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>hframe</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>vframe</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>overlap</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>t</Literal> parameter and returns a tuple of the
<Literal>hframe</Literal>, <Literal>vframe</Literal> and
<Literal>overlap</Literal> values. (TQt v2)
</Para>
</Sect2>
<Sect2><Title>TQCString (TQt v2+)</Title>
<Para>
A Python string can be used whenever a <Literal>TQCString</Literal> can be used.
A <Literal>TQCString</Literal> can be converted to a Python string using the
Python <Literal>str()</Literal> function.
</Para>
<FuncSynopsis>
<FuncDef>TQCString &amp;<Function>sprintf</Function></FuncDef>
<ParamDef>const char *<Parameter>format</Parameter></ParamDef>
<ParamDef>...</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>short <Function>toShort</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>short</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>ushort <Function>toUShort</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>ushort</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>int <Function>toInt</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>int</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>uint <Function>toUInt</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>uint</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>long <Function>toLong</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>long</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>ulong <Function>toULong</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>ulong</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>float <Function>toFloat</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>float</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>double <Function>toDouble</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>double</Literal> result and the
<Literal>ok</Literal> value.
</Para>
</Sect2>
<Sect2><Title>TQCursor</Title>
<Para>
<Literal>TQCursor</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDataStream</Title>
<FuncSynopsis>
<FuncDef>TQDataStream &amp;<Function>readBytes</Function></FuncDef>
<ParamDef>const char *&amp;<Parameter>s</Parameter></ParamDef>
<ParamDef>uint &amp;<Parameter>l</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters. The <Literal>TQDataStream</Literal> result and the
data read are returned as a tuple.
</Para>
<FuncSynopsis>
<FuncDef>TQDataStream &amp;<Function>readRawBytes</Function></FuncDef>
<ParamDef>const char *<Parameter>s</Parameter></ParamDef>
<ParamDef>uint <Parameter>l</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>l</Literal> parameter. The
<Literal>TQDataStream</Literal> result and the data read are returned as a
tuple.
</Para>
<FuncSynopsis>
<FuncDef>TQDataStream &amp;<Function>writeBytes</Function></FuncDef>
<ParamDef>const char *<Parameter>s</Parameter></ParamDef>
<ParamDef>uint <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
<Literal>len</Literal> is derived from <Literal>s</Literal> and not passed as a
parameter.
</Para>
<FuncSynopsis>
<FuncDef>TQDataStream &amp;<Function>writeRawBytes</Function></FuncDef>
<ParamDef>const char *<Parameter>s</Parameter></ParamDef>
<ParamDef>uint <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
<Literal>len</Literal> is derived from <Literal>s</Literal> and not passed as a
parameter.
</Para>
</Sect2>
<Sect2><Title>TQDate</Title>
<Para>
The Python
<Literal>==</Literal>, <Literal>!=</Literal>,
<Literal>&lt;</Literal>, <Literal>&lt;=</Literal>,
<Literal>&gt;</Literal>, <Literal>&gt;=</Literal>
and <Literal>__nonzero__</Literal>
operators are supported.
</Para>
<FuncSynopsis>
<FuncDef>int <Function>weekNumber</Function></FuncDef>
<ParamDef>int *<Parameter>yearNum</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns the week number and the year number as a
tuple. (TQt v3.1+)
</Para>
</Sect2>
<Sect2><Title>TQDateTime</Title>
<Para>
<Literal>TQDateTime</Literal> is fully implemented, including the Python
<Literal>==</Literal>, <Literal>!=</Literal>,
<Literal>&lt;</Literal>, <Literal>&lt;=</Literal>,
<Literal>&gt;</Literal>, <Literal>&gt;=</Literal>
and <Literal>__nonzero__</Literal>
operators.
</Para>
</Sect2>
<Sect2><Title>TQTime</Title>
<Para>
<Literal>TQTime</Literal> is fully implemented, including the Python
<Literal>==</Literal>, <Literal>!=</Literal>,
<Literal>&lt;</Literal>, <Literal>&lt;=</Literal>,
<Literal>&gt;</Literal>, <Literal>&gt;=</Literal>
and <Literal>__nonzero__</Literal>
operators.
</Para>
</Sect2>
<Sect2><Title>TQDateEdit (TQt v3+)</Title>
<Para>
<Literal>TQDateEdit</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTimeEdit (TQt v3+)</Title>
<Para>
<Literal>TQTimeEdit</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDateTimeEdit (TQt v3+)</Title>
<Para>
<Literal>TQDateTimeEdit</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDesktopWidget (TQt v3+)</Title>
<Para>
<Literal>TQDesktopWidget</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDial (TQt v2.2+)</Title>
<Para>
<Literal>TQDial</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDialog</Title>
<FuncSynopsis>
<FuncDef>int <Function>exec</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed to <Literal>exec_loop</Literal> in Python.
</Para>
<Para>
This method also causes ownership of the underlying C++ dialog to be transfered
to Python. This means that the C++ dialog will be deleted when the Python
wrapper is garbage collected. Although this is a little inconsistent, it
ensures that the dialog is deleted without having to explicity code it using
<Literal>TQObject.deleteLater()</Literal> or other techniques.
</Para>
</Sect2>
<Sect2><Title>TQDir</Title>
<Para>
<Literal>TQDir</Literal> is fully implemented, including the Python
<Literal>len</Literal>, <Literal>[]</Literal> (for reading slices and
individual elements), <Literal>==</Literal>, <Literal>!=</Literal> and
<Literal>in</Literal> operators
</Para>
</Sect2>
<Sect2><Title>TQFileInfoList</Title>
<Para>
This class isn't implemented. Whenever a <Literal>TQFileInfoList</Literal> is
the return type of a function or the type of an argument, a Python list of
<Literal>TQFileInfo</Literal> instances is used instead.
</Para>
</Sect2>
<Sect2><Title>TQDockArea (TQt v3+)</Title>
<FuncSynopsis>
<FuncDef>bool <Function>hasDockWindow</Function> const</FuncDef>
<ParamDef>TQDockWindow *<Parameter>w</Parameter></ParamDef>
<ParamDef>int *<Parameter>index</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>w</Literal> parameter and returns the index of the
TQDockWIndow or -1 if the TQDockArea does not contain the TQDockWindow.
</Para>
</Sect2>
<Sect2><Title>TQDockWindow (TQt v3+)</Title>
<Para>
<Literal>TQDockWindow</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQColorDrag (TQt v2.1+)</Title>
<Para>
<Literal>TQColorDrag</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDragObject</Title>
<Para>
<Literal>TQDragObject</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQImageDrag</Title>
<Para>
<Literal>TQImageDrag</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQStoredDrag</Title>
<Para>
<Literal>TQStoredDrag</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTextDrag</Title>
<Para>
<Literal>TQTextDrag</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQUriDrag (TQt v2+)</Title>
<Para>
<Literal>TQUriDrag</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQUrlDrag (TQt v1.x)</Title>
<Para>
<Literal>TQUrlDrag</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDropSite</Title>
<Para>
<Literal>TQDropSite</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQErrorMessage (TQt v3+)</Title>
<Para>
<Literal>TQErrorMessage</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQEvent</Title>
<Para>
<Literal>TQEvent</Literal> is fully implemented.
</Para>
<Para>
Instances of <Literal>TQEvent</Literal>s are automatically converted to the
correct sub-class.
</Para>
</Sect2>
<Sect2><Title>TQChildEvent</Title>
<Para>
<Literal>TQChildEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCloseEvent</Title>
<Para>
<Literal>TQCloseEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQIconDragEvent (TQt v3.3+)</Title>
<Para>
<Literal>TQIconDragEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQContextMenuEvent (TQt v3+)</Title>
<Para>
<Literal>TQContextMenuEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCustomEvent</Title>
<Para>
<Literal>TQCustomEvent</Literal> is fully implemented. Any Python object can be
passed as the event data and its reference count is increased.
</Para>
</Sect2>
<Sect2><Title>TQDragEnterEvent</Title>
<Para>
<Literal>TQDragEnterEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDragLeaveEvent</Title>
<Para>
<Literal>TQDragLeaveEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDragMoveEvent</Title>
<Para>
<Literal>TQDragMoveEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDropEvent</Title>
<Para>
<Literal>TQDropEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQFocusEvent</Title>
<Para>
<Literal>TQFocusEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQHideEvent</Title>
<Para>
<Literal>TQHideEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQIMComposeEvent (TQt v3.1+)</Title>
<Para>
<Literal>TQIMComposeEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQIMEvent (TQt v3+)</Title>
<Para>
<Literal>TQIMEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQKeyEvent</Title>
<Para>
<Literal>TQKeyEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQMouseEvent</Title>
<Para>
<Literal>TQMouseEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQMoveEvent</Title>
<Para>
<Literal>TQMoveEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQPaintEvent</Title>
<Para>
<Literal>TQPaintEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQResizeEvent</Title>
<Para>
<Literal>TQResizeEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQShowEvent</Title>
<Para>
<Literal>TQShowEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTabletEvent (TQt v3+)</Title>
<Para>
<Literal>TQTabletEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTimerEvent</Title>
<Para>
<Literal>TQTimerEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQWheelEvent (TQt v2+)</Title>
<Para>
<Literal>TQWheelEvent</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQEventLoop (TQt v3.1+)</Title>
<FuncSynopsis>
<FuncDef>virtual int <Function>exec</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed to <Literal>exec_loop</Literal> in Python.
</Para>
</Sect2>
<Sect2><Title>TQFile</Title>
<FuncSynopsis>
<FuncDef>bool <Function>open</Function></FuncDef>
<ParamDef>int <Parameter>m</Parameter></ParamDef>
<ParamDef>FILE *<Parameter>f</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>readBlock</Function></FuncDef>
<ParamDef>char *<Parameter>data</Parameter></ParamDef>
<ParamDef>Q_ULONG <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes a single <Literal>len</Literal> parameter. The
<Literal>data</Literal> is returned if there was no error, otherwise
<Literal>None</Literal> is returned.
</Para>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>readLine</Function></FuncDef>
<ParamDef>char *<Parameter>data</Parameter></ParamDef>
<ParamDef>Q_ULONG <Parameter>maxlen</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes a single <Literal>maxlen</Literal> parameter. The
<Literal>data</Literal> is returned if there was no error, otherwise
<Literal>None</Literal> is returned.
</Para>
<FuncSynopsis>
<FuncDef>static void <Function>setDecodingFunction</Function></FuncDef>
<ParamDef>EncoderFn <Parameter>f</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v2+)
</Para>
<FuncSynopsis>
<FuncDef>static void <Function>setEncodingFunction</Function></FuncDef>
<ParamDef>EncoderFn <Parameter>f</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v2+)
</Para>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>writeBlock</Function></FuncDef>
<ParamDef>const char *<Parameter>data</Parameter></ParamDef>
<ParamDef>Q_ULONG <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
<Literal>len</Literal> is derived from <Literal>data</Literal> and not passed
as a parameter.
</Para>
</Sect2>
<Sect2><Title>TQFileDialog</Title>
<Para>
<Literal>TQFileDialog</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQFileIconProvider</Title>
<Para>
<Literal>TQFileIconProvider</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQFilePreview</Title>
<Para>
<Literal>TQFilePreview</Literal> is fully implemented. However it cannot be
used from Python in the same way as it is used from C++ because PyTQt does not
support multiple inheritance involving more than one wrapped class. A trick
that seems to work is to use composition rather than inheritance as in the
following code fragment.
</Para>
<ProgramListing>
class FilePreview(TQFilePreview):
pass
class Preview(TQLabel):
def __init__(self, parent=None):
TQLabel.__init__(self, parent)
self.preview = FilePreview()
self.preview.previewUrl = self.previewUrl
</ProgramListing>
<Para>
Note that TQFilePreview cannot be instantiated directly because it is abstract.
Thanks to Hans-Peter Jansen for this trick.
</Para>
</Sect2>
<Sect2><Title>TQFileInfo</Title>
<Para>
<Literal>TQFileInfo</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQFont</Title>
<Para>
<Literal>TQFont</Literal> is fully implemented, including the Python
<Literal>==</Literal> and <Literal>!=</Literal> operators.
</Para>
</Sect2>
<Sect2><Title>TQFontDatabase (TQt v2.1+)</Title>
<Para>
<Literal>TQFontDatabase</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQFontDialog (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>static TQFont <Function>getFont</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter></ParamDef>
<ParamDef>const TQFont &<Parameter>def</Parameter></ParamDef>
<ParamDef>TQWidget *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>def</Literal>, <Literal>parent</Literal> and
<Literal>name</Literal> parameters and returns a tuple containing the
<Literal>TQFont</Literal> result and the <Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>static TQFont <Function>getFont</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter></ParamDef>
<ParamDef>TQWidget *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>parent</Literal> and <Literal>name</Literal> parameters
and returns a tuple containing the <Literal>TQFont</Literal> result and the
<Literal>ok</Literal> value.
</Para>
</Sect2>
<Sect2><Title>TQFontInfo</Title>
<Para>
<Literal>TQFontInfo</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQFontMetrics</Title>
<FuncSynopsis>
<FuncDef>TQRect <Function>boundingRect</Function></FuncDef>
<ParamDef>int <Parameter>x</Parameter></ParamDef>
<ParamDef>int <Parameter>y</Parameter></ParamDef>
<ParamDef>int <Parameter>w</Parameter></ParamDef>
<ParamDef>int <Parameter>h</Parameter></ParamDef>
<ParamDef>int <Parameter>flags</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>str</Parameter></ParamDef>
<ParamDef>int <Parameter>len</Parameter> = -1</ParamDef>
<ParamDef>int <Parameter>tabstops</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>tabarray</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>tabarray</Literal> parameter is a Python list of integers.
</Para>
<FuncSynopsis>
<FuncDef>TQSize <Function>size</Function></FuncDef>
<ParamDef>int <Parameter>flags</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>str</Parameter></ParamDef>
<ParamDef>int <Parameter>len</Parameter> = -1</ParamDef>
<ParamDef>int <Parameter>tabstops</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>tabarray</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>tabarray</Literal> parameter is a Python list of integers.
</Para>
</Sect2>
<Sect2><Title>TQFrame</Title>
<Para>
<Literal>TQFrame</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQGManager (TQt v1.x)</Title>
<Para>
<Literal>TQGManager</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQChain (TQt v1.x)</Title>
<Para>
<Literal>TQChain</Literal> is implemented as an opaque class.
</Para>
</Sect2>
<Sect2><Title>TQGrid (TQt v2+)</Title>
<Para>
<Literal>TQGrid</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQGridView (TQt v3+)</Title>
<Para>
<Literal>TQGridView</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQGroupBox</Title>
<Para>
<Literal>TQGroupBox</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQHBox (TQt v2+)</Title>
<Para>
<Literal>TQHBox</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQHButtonGroup (TQt v2+)</Title>
<Para>
<Literal>TQHButtonGroup</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQHeader</Title>
<Para>
<Literal>TQHeader</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQHGroupBox (TQt v2+)</Title>
<Para>
<Literal>TQHGroupBox</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQIconSet</Title>
<Para>
<Literal>TQIconSet</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQIconFactory (TQt v3.1+)</Title>
<Para>
<Literal>TQIconFactory</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQIconView (TQt v2.1+)</Title>
<FuncSynopsis>
<FuncDef>TQIconViewItem *<Function>makeRowLayout</Function></FuncDef>
<ParamDef>TQIconViewItem *<Parameter>begin</Parameter></ParamDef>
<ParamDef>int &<Parameter>y</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
</Sect2>
<Sect2><Title>TQIconViewItem (TQt v2.1+)</Title>
<Para>
<Literal>TQIconViewItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQIconDrag (TQt v2.1+)</Title>
<Para>
<Literal>TQIconDrag</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQIconDragItem (TQt v2.1+)</Title>
<Para>
<Literal>TQIconDragItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQImage</Title>
<Para>
The Python <Literal>==</Literal> and <Literal>!=</Literal> operators are
supported.
</Para>
<FuncSynopsis>
<FuncDef><Function>TQImage</Function></FuncDef>
<ParamDef>const char *<Parameter>xpm</Parameter>[]</ParamDef>
</FuncSynopsis>
<Para>
This takes a list of strings as its parameter.
</Para>
<FuncSynopsis>
<FuncDef><Function>TQImage</Function></FuncDef>
<ParamDef>uchar *<Parameter>data</Parameter></ParamDef>
<ParamDef>int <Parameter>w</Parameter></ParamDef>
<ParamDef>int <Parameter>h</Parameter></ParamDef>
<ParamDef>int <Parameter>depth</Parameter></ParamDef>
<ParamDef>TQRgb *<Parameter>colorTable</Parameter></ParamDef>
<ParamDef>int <Parameter>numColors</Parameter></ParamDef>
<ParamDef>Endian <Parameter>bitOrder</Parameter></ParamDef>
</FuncSynopsis>
<Para>
The <Literal>colorTable</Literal> parameter is a list of TQRgb instances or
None. (TQt v2.1+)
</Para>
<FuncSynopsis>
<FuncDef>uchar *<Function>bits</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
The return value is a <Literal>sip.voidptr</Literal> object which is only
useful if passed to another Python module.
</Para>
<FuncSynopsis>
<FuncDef>TQRgb *<Function>colorTable</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
The return value is a <Literal>sip.voidptr</Literal> object which is only
useful if passed to another Python module.
</Para>
<FuncSynopsis>
<FuncDef>TQImage <Function>convertDepthWithPalette</Function></FuncDef>
<ParamDef>int</ParamDef>
<ParamDef>TQRgb *<Parameter>p</Parameter></ParamDef>
<ParamDef>int <Parameter>pc</Parameter></ParamDef>
<ParamDef>int <Parameter>cf</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>uchar **<Function>jumpTable</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
The return value is a <Literal>sip.voidptr</Literal> object which is only
useful if passed to another Python module.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>loadFromData</Function></FuncDef>
<ParamDef>const uchar *<Parameter>buf</Parameter></ParamDef>
<ParamDef>uint <Parameter>len</Parameter></ParamDef>
<ParamDef>const char *<Parameter>format</Parameter> = 0</ParamDef>
<ParamDef>ColorMode <Parameter>mode</Parameter> = Auto</ParamDef>
</FuncSynopsis>
<Para>
<Literal>len</Literal> is derived from <Literal>buf</Literal> and not passed as
a parameter.
</Para>
<FuncSynopsis>
<FuncDef>uchar *<Function>scanLine</Function></FuncDef>
<ParamDef>int <Parameter>i</Parameter></ParamDef>
</FuncSynopsis>
<Para>
The return value is a <Literal>sip.voidptr</Literal> object which is only
useful if passed to another Python module.
</Para>
</Sect2>
<Sect2><Title>TQImageIO</Title>
<FuncSynopsis>
<FuncDef>static void <Function>defineIOHandler</Function></FuncDef>
<ParamDef>const char *<Parameter>format</Parameter></ParamDef>
<ParamDef>const char *<Parameter>header</Parameter></ParamDef>
<ParamDef>const char *<Parameter>flags</Parameter></ParamDef>
<ParamDef>image_io_handler <Parameter>read_image</Parameter></ParamDef>
<ParamDef>image_io_handler <Parameter>write_image</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQImageTextKeyLang</Title>
<Para>
<Literal>TQImageTextKeyLang</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQInputDialog (TQt v2.1+)</Title>
<FuncSynopsis>
<FuncDef>static TQString <Function>getText</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>caption</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>label</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>text</Parameter> = TQString::null</ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
<ParamDef>TQWidget *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>TQString</Literal> result and the <Literal>ok</Literal> flag.
(TQt v2.1 - v2.3.1)
</Para>
<FuncSynopsis>
<FuncDef>static TQString <Function>getText</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>caption</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>label</Parameter></ParamDef>
<ParamDef>TQLineEdit::EchoMode<Parameter>echo</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>text</Parameter> = TQString::null</ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
<ParamDef>TQWidget *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>TQString</Literal> result and the <Literal>ok</Literal> flag.
(TQt v2.2 - v2.3.1)
</Para>
<FuncSynopsis>
<FuncDef>static TQString <Function>getText</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>caption</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>label</Parameter></ParamDef>
<ParamDef>TQLineEdit::EchoMode<Parameter>echo</Parameter> = TQLineEdit::Normal</ParamDef>
<ParamDef>const TQString &amp;<Parameter>text</Parameter> = TQString::null</ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
<ParamDef>TQWidget *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>TQString</Literal> result and the <Literal>ok</Literal> flag.
(TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>static int <Function>getInteger</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>caption</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>label</Parameter></ParamDef>
<ParamDef>int <Parameter>num</Parameter> = 0</ParamDef>
<ParamDef>int <Parameter>from</Parameter> = -2147483647</ParamDef>
<ParamDef>int <Parameter>to</Parameter> = 2147483647</ParamDef>
<ParamDef>int <Parameter>step</Parameter> = 1</ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
<ParamDef>TQWidget *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>int</Literal> result and the <Literal>ok</Literal> flag.
</Para>
<FuncSynopsis>
<FuncDef>static double <Function>getDouble</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>caption</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>label</Parameter></ParamDef>
<ParamDef>double <Parameter>num</Parameter> = 0</ParamDef>
<ParamDef>double <Parameter>from</Parameter> = -2147483647</ParamDef>
<ParamDef>double <Parameter>to</Parameter> = 2147483647</ParamDef>
<ParamDef>int <Parameter>step</Parameter> = 1</ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
<ParamDef>TQWidget *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>double</Literal> result and the <Literal>ok</Literal> flag.
</Para>
<FuncSynopsis>
<FuncDef>static TQString <Function>getItem</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>caption</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>label</Parameter></ParamDef>
<ParamDef>const TQStringList &<Parameter>list</Parameter></ParamDef>
<ParamDef>int <Parameter>current</Parameter> = 0</ParamDef>
<ParamDef>bool <Parameter>editable</Parameter> = TRUE</ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
<ParamDef>TQWidget *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>TQString</Literal> result and the <Literal>ok</Literal> flag.
</Para>
</Sect2>
<Sect2><Title>TQInterlaceStyle (TQt v2.3.1+)</Title>
<FuncSynopsis>
<FuncDef>void <Function>scrollBarMetrics</Function></FuncDef>
<ParamDef>const TQTabBar *<Parameter>sb</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderMin</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderMax</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderLength</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>buttonDim</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>sb</Literal> parameter and returns a tuple of the
<Literal>sliderMin</Literal>, <Literal>sliderMax</Literal>,
<Literal>sliderLength</Literal> and <Literal>buttonDim</Literal> values.
</Para>
</Sect2>
<Sect2><Title>TQIODevice</Title>
<Para>
<Literal>TQIODevice</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQKeySequence (TQt v3+)</Title>
<Para>
<Literal>TQKeySequence</Literal> is fully implemented including the operators
<Literal>==</Literal>, <Literal>!=</Literal>, <Literal>TQString()</Literal> and
<Literal>int()</Literal>. A <Literal>TQString</Literal> instance or a Python
integer may be used whenever a <Literal>TQKeySequence</Literal> can be used.
</Para>
</Sect2>
<Sect2><Title>TQLabel</Title>
<Para>
<Literal>TQLabel</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQLayout</Title>
<Para>
<Literal>TQLayout</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQBoxLayout</Title>
<Para>
<Literal>TQBoxLayout</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQGLayoutIterator (TQt v2+)</Title>
<Para>
<Literal>TQGLayoutIterator</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQGridLayout</Title>
<FuncSynopsis>
<FuncDef>bool <Function>findWidget</Function></FuncDef>
<ParamDef>TQWidget *<Parameter>w</Parameter></ParamDef>
<ParamDef>int *<Parameter>row</Parameter></ParamDef>
<ParamDef>int *<Parameter>col</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>w</Literal> parameter and returns a tuple containing
the <Literal>bool</Literal> result, <Literal>row</Literal> and
<Literal>col</Literal>. (TQt v2+)
</Para>
</Sect2>
<Sect2><Title>TQHBoxLayout</Title>
<Para>
<Literal>TQHBoxLayout</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQLayoutItem (TQt v2+)</Title>
<Para>
<Literal>TQLayoutItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQLayoutIterator (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>TQLayoutItem *<Function>next</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This is a wrapper around the <Literal>TQLayoutIterator</Literal>
<Literal>++</Literal> operator.
</Para>
</Sect2>
<Sect2><Title>TQSpacerItem (TQt v2+)</Title>
<Para>
<Literal>TQSpacerItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQVBoxLayout</Title>
<Para>
<Literal>TQVBoxLayout</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQWidgetItem (TQt v2+)</Title>
<Para>
<Literal>TQWidgetItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQLCDNumber</Title>
<Para>
<Literal>TQLCDNumber</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQLibrary (TQt v3+)</Title>
<Para>
<Literal>TQLibrary</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQLineEdit</Title>
<FuncSynopsis>
<FuncDef>int <Function>characterAt</Function></FuncDef>
<ParamDef>int <Parameter>xpos</Parameter></ParamDef>
<ParamDef>TQChar *<Parameter>chr</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>xpos</Literal> parameter and returns the int
result and the <Literal>chr</Literal> value as a tuple. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>void <Function>del</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>delChar</Literal> in Python. (TQt v2+)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>getSelection</Function></FuncDef>
<ParamDef>int *<Parameter>start</Parameter></ParamDef>
<ParamDef>int *<Parameter>end</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns the bool result and the
<Literal>start</Literal> and <Literal>end</Literal> values as a tuple.
(TQt v3+)
</Para>
</Sect2>
<Sect2><Title>TQList&lt;type&gt; (TQt v2)</Title>
<Para>
Types based on the <Literal>TQList</Literal> template are automatically
converted to and from Python lists of the type.
</Para>
</Sect2>
<Sect2><Title>TQListBox</Title>
<FuncSynopsis>
<FuncDef>bool <Function>itemYPos</Function></FuncDef>
<ParamDef>int <Parameter>index</Parameter></ParamDef>
<ParamDef>int *<Parameter>yPos</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>index</Literal> parameter and returns a tuple
containing the <Literal>bool</Literal> result and <Literal>yPos</Literal>.
(TQt v1.x)
</Para>
</Sect2>
<Sect2><Title>TQListBoxItem</Title>
<Para>
<Literal>TQListBoxItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQListBoxPixmap</Title>
<Para>
<Literal>TQListBoxPixmap</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQListBoxText</Title>
<Para>
<Literal>TQListBoxText</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQListView</Title>
<Para>
<Literal>TQListView</Literal> is fully implemented.
</Para>
<Para>
Note that to remove a child <Literal>TQListViewItem</Literal> you must first
call <Literal>takeItem()</Literal> and then <Literal>del()</Literal>.
</Para>
</Sect2>
<Sect2><Title>TQListViewItem</Title>
<Para>
<Literal>TQListViewItem</Literal> is fully implemented.
</Para>
<Para>
Note that to remove a child <Literal>TQListViewItem</Literal> you must first
call <Literal>takeItem()</Literal> and then <Literal>del()</Literal>.
</Para>
</Sect2>
<Sect2><Title>TQCheckListItem</Title>
<Para>
<Literal>TQCheckListItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQListViewItemIterator (TQt v2+)</Title>
<Para>
<Literal>TQListViewItemIterator</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQLocale (TQt v3.3+)</Title>
<FuncSynopsis>
<FuncDef>short <Function>toShort</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>short</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>ushort <Function>toUShort</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>ushort</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>int <Function>toInt</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>int</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>uint <Function>toUInt</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>uint</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>toLong</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>long</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>Q_ULONG <Function>toULong</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>ulong</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>float <Function>toFloat</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>float</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>double <Function>toDouble</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>double</Literal> result and the
<Literal>ok</Literal> value.
</Para>
</Sect2>
<Sect2><Title>TQMainWindow</Title>
<FuncSynopsis>
<FuncDef>TQTextStream &amp;<Function>operator&lt&lt;</Function></FuncDef>
<ParamDef>TQTextStream &amp;<Parameter></Parameter></ParamDef>
<ParamDef>const TQMainWindow &amp;<Parameter></Parameter></ParamDef>
</FuncSynopsis>
<Para>
This operator is fully implemented. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>TQTextStream &amp;<Function>operator&gt&gt;</Function></FuncDef>
<ParamDef>TQTextStream &amp;<Parameter></Parameter></ParamDef>
<ParamDef>TQMainWindow &amp;<Parameter></Parameter></ParamDef>
</FuncSynopsis>
<Para>
This operator is fully implemented. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>getLocation</Function></FuncDef>
<ParamDef>TQToolBar *<Parameter>tb</Parameter></ParamDef>
<ParamDef>ToolBarDock &amp;<Parameter>dock</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>index</Parameter></ParamDef>
<ParamDef>bool &amp;<Parameter>nl</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>extraOffset</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>tb</Literal> parameter and returns a tuple of the
result, <Literal>dock</Literal>, <Literal>index</Literal>,
<Literal>nl</Literal> and <Literal>extraOffset</Literal> values. (TQt v2.1.0+)
</Para>
<FuncSynopsis>
<FuncDef>TQList&lt;TQToolBar&gt; <Function>toolBars</Function></FuncDef>
<ParamDef>ToolBarDock <Parameter>dock</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This returns a list of <Literal>TQToolBar</Literal> instances. (TQt v2.1.0+)
</Para>
</Sect2>
<Sect2><Title>TQMemArray&lt;type&gt; (TQt v3+)</Title>
<Para>
Types based on the <Literal>TQMemArray</Literal> template are automatically
converted to and from Python lists of the type.
</Para>
</Sect2>
<Sect2><Title>TQMenuBar</Title>
<Para>
<Literal>TQMenuBar</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQMenuData</Title>
<FuncSynopsis>
<FuncDef>TQMenuItem *<Function>findItem</Function></FuncDef>
<ParamDef>int <Parameter>id</Parameter></ParamDef>
<ParamDef>TQMenuData **<Parameter>parent</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQCustomMenuItem (TQt v2.1+)</Title>
<Para>
<Literal>TQCustomMenuItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQMenuItem</Title>
<Para>
<Literal>TQMenuItem</Literal> is an internal TQt class.
</Para>
</Sect2>
<Sect2><Title>TQMessageBox</Title>
<Para>
<Literal>TQMessageBox</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQMetaObject</Title>
<FuncSynopsis>
<FuncDef>int <Function>numClassInfo</Function> const</FuncDef>
<ParamDef>bool <Parameter>super</Parameter> = FALSE</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>const TQClassInfo *<Function>classInfo</Function> const</FuncDef>
<ParamDef>bool <Parameter>super</Parameter> = FALSE</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQMetaProperty</Title>
<Para>
<Literal>TQMetaProperty</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQMimeSource (TQt v2+)</Title>
<Para>
<Literal>TQMimeSource</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQMimeSourceFactory (TQt v2+)</Title>
<Para>
<Literal>TQMimeSourceFactory</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQWindowsMime (TQt v3+)</Title>
<Para>
<Literal>TQWindowsMime</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQMotifPlusStyle (TQt v2.2+)</Title>
<FuncSynopsis>
<FuncDef>void <Function>getButtonShift</Function></FuncDef>
<ParamDef>int &amp;<Parameter>x</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>y</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the <Literal>x</Literal> and
<Literal>y</Literal> values. (TQt v2)
</Para>
<FuncSynopsis>
<FuncDef>void <Function>scrollBarMetrics</Function></FuncDef>
<ParamDef>const TQScrollBar *<Parameter>sb</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderMin</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderMax</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderLength</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>buttonDim</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>sb</Literal> parameter and returns a tuple of the
<Literal>sliderMin</Literal>, <Literal>sliderMax</Literal>,
<Literal>sliderLength</Literal> and <Literal>buttonDim</Literal> values.
(TQt v2)
</Para>
</Sect2>
<Sect2><Title>TQMotifStyle (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>void <Function>scrollBarMetrics</Function></FuncDef>
<ParamDef>const TQTabBar *<Parameter>sb</Parameter></ParamDef>
<ParamDef>int &<Parameter>sliderMin</Parameter></ParamDef>
<ParamDef>int &<Parameter>sliderMax</Parameter></ParamDef>
<ParamDef>int &<Parameter>sliderLength</Parameter></ParamDef>
<ParamDef>int &<Parameter>buttonDim</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>sb</Literal> parameter and returns a tuple of the
<Literal>sliderMin</Literal>, <Literal>sliderMax</Literal>,
<Literal>sliderLength</Literal> and <Literal>buttonDim</Literal> values.
(TQt v2)
</Para>
<FuncSynopsis>
<FuncDef>void <Function>tabbarMetrics</Function></FuncDef>
<ParamDef>const TQTabBar *<Parameter>t</Parameter></ParamDef>
<ParamDef>int &<Parameter>hframe</Parameter></ParamDef>
<ParamDef>int &<Parameter>vframe</Parameter></ParamDef>
<ParamDef>int &<Parameter>overlap</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>t</Literal> parameter and returns a tuple of the
<Literal>hframe</Literal>, <Literal>vframe</Literal> and
<Literal>overlap</Literal> values. (TQt v2)
</Para>
</Sect2>
<Sect2><Title>TQMovie</Title>
<FuncSynopsis>
<FuncDef><Function>TQMovie</Function></FuncDef>
<ParamDef>TQDataSource *<Parameter>src</Parameter></ParamDef>
<ParamDef>int <Parameter>bufsize</Parameter> = 1024</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>pushData</Function></FuncDef>
<ParamDef>const uchar *<Parameter>data</Parameter></ParamDef>
<ParamDef>int <Parameter>length</Parameter></ParamDef>
</FuncSynopsis>
<Para>
<Literal>length</Literal> is derived from <Literal>data</Literal> and not
passed as a parameter. (TQt v2.2.0+)
</Para>
</Sect2>
<Sect2><Title>TQMultiLineEdit</Title>
<FuncSynopsis>
<FuncDef>void <Function>cursorPosition</Function> const</FuncDef>
<ParamDef>int *<Parameter>line</Parameter></ParamDef>
<ParamDef>int *<Parameter>col</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the <Literal>line</Literal> and
<Literal>col</Literal> values. (TQt v1.x, TQt v2.x)
</Para>
<FuncSynopsis>
<FuncDef>virtual void <Function>del</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>delChar</Literal> in Python. (TQt v1.x, TQt v2.x)
</Para>
<FuncSynopsis>
<FuncDef>void <Function>getCursorPosition</Function> const</FuncDef>
<ParamDef>int *<Parameter>line</Parameter></ParamDef>
<ParamDef>int *<Parameter>col</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the <Literal>line</Literal> and
<Literal>col</Literal> values. (TQt v1.x, TQt v2.x)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>getMarkedRegion</Function></FuncDef>
<ParamDef>int *<Parameter>line1</Parameter></ParamDef>
<ParamDef>int *<Parameter>col1</Parameter></ParamDef>
<ParamDef>int *<Parameter>line2</Parameter></ParamDef>
<ParamDef>int *<Parameter>col2</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the bool result and the
<Literal>line1</Literal>, <Literal>col1</Literal>, <Literal>line2</Literal> and
<Literal>col2</Literal> values.
</Para>
</Sect2>
<Sect2><Title>TQMutex (TQt v2.2+)</Title>
<Para>
<Literal>TQMutex</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQMutexLocker (TQt v3.1+)</Title>
<Para>
<Literal>TQMutexLocker</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQNetworkOperation (TQt v2.1+)</Title>
<Para>
<Literal>TQNetworkOperation</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQNetworkProtocol (TQt v2.1+)</Title>
<Para>
<Literal>TQNetworkProtocol</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQNetworkProtocolFactoryBase (TQt v2.1+)</Title>
<Para>
<Literal>TQNetworkProtocolFactoryBase</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQObject</Title>
<FuncSynopsis>
<FuncDef>bool <Function>disconnect</Function></FuncDef>
<ParamDef>const TQObject *<Parameter>receiver</Parameter></ParamDef>
<ParamDef>const char *<Parameter>member</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>disconnect</Function></FuncDef>
<ParamDef>const char *<Parameter>signal</Parameter> = 0</ParamDef>
<ParamDef>const TQObject *<Parameter>receiver</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>member</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>static bool <Function>disconnect</Function></FuncDef>
<ParamDef>const TQObject *<Parameter>sender</Parameter></ParamDef>
<ParamDef>const char *<Parameter>signal</Parameter></ParamDef>
<ParamDef>const TQObject *<Parameter>receiver</Parameter></ParamDef>
<ParamDef>const char *<Parameter>member</Parameter></ParamDef>
</FuncSynopsis>
<Para>
At the moment PyTQt does not support the full behaviour of the corresponding TQt
method. In particular, specifying None (ie. 0 in C++) for the
<Literal>signal</Literal> and <Literal>receiver</Literal> parameters is not yet
supported.
</Para>
</Sect2>
<Sect2><Title>TQObjectCleanupHandler (TQt v3+)</Title>
<Para>
<Literal>TQObjectCleanupHandler</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQObjectList</Title>
<Para>
This class isn't implemented. Whenever a <Literal>TQObjectList</Literal> is the
return type of a function or the type of an argument, a Python list of
<Literal>TQObject</Literal> instances is used instead.
</Para>
</Sect2>
<Sect2><Title>TQPaintDeviceMetrics</Title>
<Para>
<Literal>TQPaintDeviceMetrics</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQPaintDevice</Title>
<FuncSynopsis>
<FuncDef>virtual bool <Function>cmd</Function></FuncDef>
<ParamDef>int</ParamDef>
<ParamDef>TQPainter *</ParamDef>
<ParamDef>TQPDevCmdParam *</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQPainter</Title>
<FuncSynopsis>
<FuncDef>TQRect <Function>boundingRect</Function></FuncDef>
<ParamDef>int <Parameter>x</Parameter></ParamDef>
<ParamDef>int <Parameter>y</Parameter></ParamDef>
<ParamDef>int <Parameter>w</Parameter></ParamDef>
<ParamDef>int <Parameter>h</Parameter></ParamDef>
<ParamDef>int <Parameter>flags</Parameter></ParamDef>
<ParamDef>const char *<Parameter>str</Parameter></ParamDef>
<ParamDef>int <Parameter>len</Parameter> = -1</ParamDef>
<ParamDef>char **<Parameter>intern</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>intern</Literal> parameter is not supported.
</Para>
<FuncSynopsis>
<FuncDef>TQRect <Function>boundingRect</Function></FuncDef>
<ParamDef>const TQRect&</ParamDef>
<ParamDef>int <Parameter>flags</Parameter></ParamDef>
<ParamDef>const char *<Parameter>str</Parameter></ParamDef>
<ParamDef>int <Parameter>len</Parameter> = -1</ParamDef>
<ParamDef>char **<Parameter>intern</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>intern</Literal> parameter is not supported.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>drawText</Function></FuncDef>
<ParamDef>int <Parameter>x</Parameter></ParamDef>
<ParamDef>int <Parameter>y</Parameter></ParamDef>
<ParamDef>int <Parameter>w</Parameter></ParamDef>
<ParamDef>int <Parameter>h</Parameter></ParamDef>
<ParamDef>int <Parameter>flags</Parameter></ParamDef>
<ParamDef>const char *<Parameter>str</Parameter></ParamDef>
<ParamDef>int <Parameter>len</Parameter> = -1</ParamDef>
<ParamDef>TQRect *<Parameter>br</Parameter> = 0</ParamDef>
<ParamDef>char **<Parameter>intern</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>intern</Literal> parameter is not supported.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>drawText</Function></FuncDef>
<ParamDef>const TQRect&</ParamDef>
<ParamDef>int <Parameter>flags</Parameter></ParamDef>
<ParamDef>const char *<Parameter>str</Parameter></ParamDef>
<ParamDef>int <Parameter>len</Parameter> = -1</ParamDef>
<ParamDef>TQRect *<Parameter>br</Parameter> = 0</ParamDef>
<ParamDef>char **<Parameter>intern</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>intern</Literal> parameter is not supported.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>setTabArray</Function></FuncDef>
<ParamDef>int *<Parameter>ta</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes a single parameter which is a list of tab stops.
</Para>
<FuncSynopsis>
<FuncDef>int *<Function>tabArray</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This returns a list of tab stops.
</Para>
</Sect2>
<Sect2><Title>TQPalette</Title>
<Para>
<Literal>TQPalette</Literal> is fully implemented, including the Python
<Literal>==</Literal> and <Literal>!=</Literal> operators.
</Para>
</Sect2>
<Sect2><Title>TQPixmap</Title>
<FuncSynopsis>
<FuncDef><Function>TQPixmap</Function></FuncDef>
<ParamDef>const char *<Parameter>xpm</Parameter>[]</ParamDef>
</FuncSynopsis>
<Para>
This takes a list of strings as its parameter.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>loadFromData</Function></FuncDef>
<ParamDef>const uchar *<Parameter>buf</Parameter></ParamDef>
<ParamDef>uint <Parameter>len</Parameter></ParamDef>
<ParamDef>const char *<Parameter>format</Parameter> = 0</ParamDef>
<ParamDef>ColorMode <Parameter>mode</Parameter> = Auto</ParamDef>
</FuncSynopsis>
<Para>
<Literal>len</Literal> is derived from <Literal>buf</Literal> and not passed as
a parameter.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>loadFromData</Function></FuncDef>
<ParamDef>const uchar *<Parameter>buf</Parameter></ParamDef>
<ParamDef>uint <Parameter>len</Parameter></ParamDef>
<ParamDef>const char *<Parameter>format</Parameter></ParamDef>
<ParamDef>int <Parameter>conversion_flags</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQPixmapCache (TQt v3+)</Title>
<Para>
<Literal>TQPixmapCache</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQPair&lt;type,type&gt; (TQt v3+)</Title>
<Para>
Types based on the <Literal>TQPair</Literal> template are automatically
converted to and from Python tuples of two elements.
</Para>
</Sect2>
<Sect2><Title>TQPen</Title>
<Para>
<Literal>TQPen</Literal> is fully implemented, including the Python
<Literal>==</Literal> and <Literal>!=</Literal> operators.
</Para>
</Sect2>
<Sect2><Title>TQPicture</Title>
<FuncSynopsis>
<FuncDef>const char *<Function>data</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>setData</Function></FuncDef>
<ParamDef>const char *<Parameter>data</Parameter></ParamDef>
<ParamDef>uint <Parameter>size</Parameter></ParamDef>
</FuncSynopsis>
<Para>
<Literal>size</Literal> is derived from <Literal>data</Literal> and not passed
as a parameter.
</Para>
</Sect2>
<Sect2><Title>TQPlatinumStyle (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>void <Function>scrollBarMetrics</Function></FuncDef>
<ParamDef>const TQTabBar *<Parameter>sb</Parameter></ParamDef>
<ParamDef>int &<Parameter>sliderMin</Parameter></ParamDef>
<ParamDef>int &<Parameter>sliderMax</Parameter></ParamDef>
<ParamDef>int &<Parameter>sliderLength</Parameter></ParamDef>
<ParamDef>int &<Parameter>buttonDim</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>sb</Literal> parameter and returns a tuple of the
<Literal>sliderMin</Literal>, <Literal>sliderMax</Literal>,
<Literal>sliderLength</Literal> and <Literal>buttonDim</Literal> values.
(TQt v2)
</Para>
</Sect2>
<Sect2><Title>TQPoint</Title>
<Para>
The Python
<Literal>+</Literal>, <Literal>+=</Literal>,
<Literal>-</Literal>, <Literal>-=</Literal>, unary <Literal>-</Literal>,
<Literal>*</Literal>, <Literal>*=</Literal>,
<Literal>/</Literal>, <Literal>/=</Literal>,
<Literal>==</Literal>, <Literal>!=</Literal> and <Literal>__nonzero__</Literal>
operators are supported.
</Para>
<FuncSynopsis>
<FuncDef>TQCOORD &amp;<Function>rx</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQCOORD &amp;<Function>ry</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQPointArray</Title>
<FuncSynopsis>
<FuncDef><Function>TQPointArray</Function></FuncDef>
<ParamDef>int <Parameter>nPoints</Parameter></ParamDef>
<ParamDef>const TQCOORD *<Parameter>points</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes a single parameter which is a list of points.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>point</Function></FuncDef>
<ParamDef>uint <Parameter>i</Parameter></ParamDef>
<ParamDef>int *<Parameter>x</Parameter></ParamDef>
<ParamDef>int *<Parameter>y</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the single parameter <Literal>i</Literal> and returns the
<Literal>x</Literal> and <Literal>y</Literal> values as a tuple.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>putPoints</Function></FuncDef>
<ParamDef>int <Parameter>index</Parameter></ParamDef>
<ParamDef>int <Parameter>nPoints</Parameter></ParamDef>
<ParamDef>const TQCOORD *<Parameter>points</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes two parameters, <Literal>index</Literal> and a list of points.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>putPoints</Function></FuncDef>
<ParamDef>int <Parameter>index</Parameter></ParamDef>
<ParamDef>int <Parameter>nPoints</Parameter></ParamDef>
<ParamDef>int <Parameter>firstx</Parameter></ParamDef>
<ParamDef>int <Parameter>firsty</Parameter></ParamDef>
<ParamDef>...</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>setPoints</Function></FuncDef>
<ParamDef>int <Parameter>nPoints</Parameter></ParamDef>
<ParamDef>const TQCOORD *<Parameter>points</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes a single parameter which is a list of points.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>setPoints</Function></FuncDef>
<ParamDef>int <Parameter>nPoints</Parameter></ParamDef>
<ParamDef>int <Parameter>firstx</Parameter></ParamDef>
<ParamDef>int <Parameter>firsty</Parameter></ParamDef>
<ParamDef>...</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQPopupMenu</Title>
<FuncSynopsis>
<FuncDef>int <Function>exec</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>exec_loop</Literal> in Python.
</Para>
<Para>
This method also causes ownership of the underlying C++ menu to be transfered
to Python. This means that the C++ menu will be deleted when the Python
wrapper is garbage collected. Although this is a little inconsistent, it
ensures that the menu is deleted without having to explicity code it using
<Literal>TQObject.deleteLater()</Literal> or other techniques.
</Para>
<FuncSynopsis>
<FuncDef>int <Function>exec</Function></FuncDef>
<ParamDef>const TQPoint &<Parameter>pos</Parameter></ParamDef>
<ParamDef>int <Parameter>indexAtPoint</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>exec_loop</Literal> in Python.
</Para>
<Para>
This method also causes ownership of the underlying C++ menu to be transfered
to Python. This means that the C++ menu will be deleted when the Python
wrapper is garbage collected. Although this is a little inconsistent, it
ensures that the menu is deleted without having to explicity code it using
<Literal>TQObject.deleteLater()</Literal> or other techniques.
</Para>
</Sect2>
<Sect2><Title>TQPrintDialog (X11)</Title>
<Para>
<Literal>TQPrintDialog</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQPrinter</Title>
<Para>
<Literal>TQPrinter</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQProcess (TQt v3+)</Title>
<Para>
<Literal>TQProcess</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQProgressBar</Title>
<Para>
<Literal>TQProgressBar</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQProgressDialog</Title>
<Para>
<Literal>TQProgressDialog</Literal> is fully implemented.
value.
</Para>
</Sect2>
<Sect2><Title>TQPtrList&lt;type&gt; (TQt v2+)</Title>
<Para>
Types based on the <Literal>TQPtrList</Literal> template are automatically
converted to and from Python lists of the type.
</Para>
</Sect2>
<Sect2><Title>TQPushButton</Title>
<Para>
<Literal>TQPushButton</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQRadioButton</Title>
<Para>
<Literal>TQRadioButton</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQRangeControl</Title>
<Para>
<Literal>TQRangeControl</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQRect</Title>
<Para>
The Python
<Literal>&amp;</Literal>, <Literal>&amp;=</Literal>,
<Literal>|</Literal>, <Literal>|=</Literal>,
<Literal>==</Literal>, <Literal>!=</Literal>, <Literal>in</Literal> and
<Literal>__nonzero__</Literal> operators are supported.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>coords</Function></FuncDef>
<ParamDef>int *<Parameter>x1</Parameter></ParamDef>
<ParamDef>int *<Parameter>y1</Parameter></ParamDef>
<ParamDef>int *<Parameter>x2</Parameter></ParamDef>
<ParamDef>int *<Parameter>y2</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple containing the four values.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>rect</Function></FuncDef>
<ParamDef>int *<Parameter>x</Parameter></ParamDef>
<ParamDef>int *<Parameter>y</Parameter></ParamDef>
<ParamDef>int *<Parameter>w</Parameter></ParamDef>
<ParamDef>int *<Parameter>h</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple containing the four values.
</Para>
<FuncSynopsis>
<FuncDef>TQCOORD &amp;<Function>rBottom</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented. (TQt v2+)
</Para>
<FuncSynopsis>
<FuncDef>TQCOORD &amp;<Function>rLeft</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented. (TQt v2+)
</Para>
<FuncSynopsis>
<FuncDef>TQCOORD &amp;<Function>rRight</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented. (TQt v2+)
</Para>
<FuncSynopsis>
<FuncDef>TQCOORD &amp;<Function>rTop</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented. (TQt v2+)
</Para>
</Sect2>
<Sect2><Title>TQRegExp</Title>
<Para>
The Python <Literal>==</Literal> and <Literal>!=</Literal> operators are
supported.
</Para>
<FuncSynopsis>
<FuncDef>int <Function>match</Function></FuncDef>
<ParamDef>const char *<Parameter>str</Parameter></ParamDef>
<ParamDef>int <Parameter>index</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>len</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes <Literal>str</Literal> and <Literal>index</Literal> parameters and
returns a tuple of the <Literal>int</Literal> result and the
<Literal>len</Literal> value. (TQt v1.x)
</Para>
<FuncSynopsis>
<FuncDef>int <Function>match</Function></FuncDef>
<ParamDef>const TQString &<Parameter>str</Parameter></ParamDef>
<ParamDef>int <Parameter>index</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>len</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes <Literal>str</Literal> and <Literal>index</Literal> parameters and
returns a tuple of the <Literal>int</Literal> result and the
<Literal>len</Literal> value. (TQt v2+)
</Para>
</Sect2>
<Sect2><Title>TQRegion</Title>
<Para>
The Python
<Literal>|</Literal>, <Literal>|=</Literal>,
<Literal>+</Literal>, <Literal>+=</Literal>,
<Literal>&amp;</Literal>, <Literal>&amp;=</Literal>,
<Literal>-</Literal>, <Literal>-=</Literal>,
<Literal>^</Literal>, <Literal>^=</Literal>,
<Literal>==</Literal>, <Literal>!=</Literal>, <Literal>in</Literal> and
<Literal>__nonzero__</Literal> operators are supported.
</Para>
<FuncSynopsis>
<FuncDef>TQArray&lt;TQRect&gt; <Function>rects</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>setRects</Function></FuncDef>
<ParamDef>TQRect *<Parameter>rects</Parameter></ParamDef>
<ParamDef>int <Parameter>num</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v2.2+)
</Para>
</Sect2>
<Sect2><Title>TQScrollBar</Title>
<Para>
<Literal>TQScrollBar</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQScrollView</Title>
<FuncSynopsis>
<FuncDef>void <Function>contentsToViewport</Function></FuncDef>
<ParamDef>int <Parameter>x</Parameter></ParamDef>
<ParamDef>int <Parameter>y</Parameter></ParamDef>
<ParamDef>int &<Parameter>vx</Parameter></ParamDef>
<ParamDef>int &<Parameter>vy</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>x</Literal> and <Literal>y</Literal> parameters and
returns a tuple containing the <Literal>vx</Literal> and <Literal>vy</Literal>
values. (TQt v2+)
</Para>
<FuncSynopsis>
<FuncDef>void <Function>viewportToContents</Function></FuncDef>
<ParamDef>int <Parameter>vx</Parameter></ParamDef>
<ParamDef>int <Parameter>vy</Parameter></ParamDef>
<ParamDef>int &<Parameter>x</Parameter></ParamDef>
<ParamDef>int &<Parameter>y</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>vx</Literal> and <Literal>vy</Literal> parameters and
returns a tuple containing the <Literal>x</Literal> and <Literal>y</Literal>
values. (TQt v2+)
</Para>
</Sect2>
<Sect2><Title>TQSemaphore (TQt v2.2+)</Title>
<Para>
<Literal>TQSemaphore</Literal> is fully implemented. The <Literal>+=</Literal>
and <Literal>-=</Literal> operators have also been implemented, but require
Python v2.0 or later.
</Para>
</Sect2>
<Sect2><Title>TQSemiModal (TQt v1, v2)</Title>
<Para>
<Literal>TQSemiModal</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSessionManager (TQt v2+)</Title>
<Para>
<Literal>TQSessionManager</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSettings (TQt v3+)</Title>
<FuncSynopsis>
<FuncDef>bool <Function>readBoolEntry</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>key</Parameter></ParamDef>
<ParamDef>bool <Parameter>def</Parameter> = 0</ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>bool</Literal> result and the <Literal>ok</Literal> flag.
</Para>
<FuncSynopsis>
<FuncDef>double <Function>readDoubleEntry</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>key</Parameter></ParamDef>
<ParamDef>double <Parameter>def</Parameter> = 0</ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>double</Literal> result and the <Literal>ok</Literal> flag.
</Para>
<FuncSynopsis>
<FuncDef>TQString <Function>readEntry</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>key</Parameter></ParamDef>
<ParamDef>const TQString &amp;<Parameter>def</Parameter> = TQString::null</ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>TQString</Literal> result and the <Literal>ok</Literal> flag.
</Para>
<FuncSynopsis>
<FuncDef>TQStringList <Function>readListEntry</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>key</Parameter></ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>TQStringList</Literal> result and the <Literal>ok</Literal> flag.
</Para>
<FuncSynopsis>
<FuncDef>TQStringList <Function>readListEntry</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>key</Parameter></ParamDef>
<ParamDef>const TQChar &amp;<Parameter>separator</Parameter></ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>TQStringList</Literal> result and the <Literal>ok</Literal> flag.
</Para>
<FuncSynopsis>
<FuncDef>int <Function>readNumEntry</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>key</Parameter></ParamDef>
<ParamDef>int <Parameter>def</Parameter> = 0</ParamDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>ok</Literal> is not passed and the returned value is a tuple of
the <Literal>int</Literal> result and the <Literal>ok</Literal> flag.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>writeEntry</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>key</Parameter></ParamDef>
<ParamDef>bool <Parameter>value</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQSGIStyle (TQt v2.2+)</Title>
<FuncSynopsis>
<FuncDef>void <Function>scrollBarMetrics</Function></FuncDef>
<ParamDef>const TQScrollBar *<Parameter>sb</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderMin</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderMax</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderLength</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>buttonDim</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>sb</Literal> parameter and returns a tuple of the
<Literal>sliderMin</Literal>, <Literal>sliderMax</Literal>,
<Literal>sliderLength</Literal> and <Literal>buttonDim</Literal> values.
(TQt v2)
</Para>
</Sect2>
<Sect2><Title>TQSignalMapper</Title>
<Para>
<Literal>TQSignalMapper</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSimpleRichText (TQt v2+)</Title>
<Para>
<Literal>TQSimpleRichText</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSize</Title>
<Para>
The Python
<Literal>+</Literal>, <Literal>+=</Literal>,
<Literal>-</Literal>, <Literal>-=</Literal>,
<Literal>*</Literal>, <Literal>*=</Literal>,
<Literal>/</Literal>, <Literal>/=</Literal>,
<Literal>==</Literal>, <Literal>!=</Literal> and <Literal>__nonzero__</Literal>
operators are supported.
</Para>
<FuncSynopsis>
<FuncDef>TQCOORD &amp;<Function>rheight</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQCOORD &amp;<Function>rwidth</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQSizeGrip (TQt v2+)</Title>
<Para>
<Literal>TQSizeGrip</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSizePolicy (TQt v2+)</Title>
<Para>
<Literal>TQSizePolicy</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSlider</Title>
<Para>
<Literal>TQSlider</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSocketNotifier</Title>
<Para>
<Literal>TQSocketNotifier</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSound (TQt v2.2+)</Title>
<Para>
<Literal>TQSound</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSpinBox</Title>
<FuncSynopsis>
<FuncDef>virtual int <Function>mapTextToValue</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>int</Literal> result and the modified
<Literal>ok</Literal> value.
</Para>
</Sect2>
<Sect2><Title>TQSplashScreen (TQt v3.2.0+)</Title>
<Para>
<Literal>TQSplashScreen</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSplitter</Title>
<FuncSynopsis>
<FuncDef>void <Function>getRange</Function></FuncDef>
<ParamDef>int <Parameter>id</Parameter></ParamDef>
<ParamDef>int *<Parameter>min</Parameter></ParamDef>
<ParamDef>int *<Parameter>max</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>id</Literal> parameter and returns the
<Literal>min</Literal> and <Literal>max</Literal> values as a tuple. (TQt v2+)
</Para>
</Sect2>
<Sect2><Title>TQStatusBar</Title>
<Para>
<Literal>TQStatusBar</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQChar (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>uchar &<Function>cell</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>uchar &<Function>row</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQString</Title>
<Para>
A Python string object (or Unicode object) can be used whenever a
<Literal>TQString</Literal> can be used. A <Literal>TQString</Literal> can be
converted to a Python string object using the Python <Literal>str()</Literal>
function, and to a Python Unicode object using the Python
<Literal>unicode()</Literal> function.
</Para>
<Para>
The Python <Literal>+</Literal>, <Literal>+=</Literal>, <Literal>*</Literal>,
<Literal>*=</Literal>, <Literal>len</Literal>, <Literal>[]</Literal>
(for reading slices and individual characters), <Literal>in</Literal> and
comparison operators are supported.
</Para>
<FuncSynopsis>
<FuncDef>TQCharRef <Function>at</Function></FuncDef>
<ParamDef>uint <Parameter>i</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v2+)
</Para>
<FuncSynopsis>
<FuncDef>TQChar <Function>constref</Function> const</FuncDef>
<ParamDef>uint <Parameter>i</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v2+)
</Para>
<FuncSynopsis>
<FuncDef>TQChar &<Function>ref</Function></FuncDef>
<ParamDef>uint <Parameter>i</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v2+)
</Para>
<FuncSynopsis>
<FuncDef>TQString &<Function>setUnicodeCodes</Function></FuncDef>
<ParamDef>const ushort *<Parameter>unicode_as_shorts</Parameter></ParamDef>
<ParamDef>uint <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v2.1+)
</Para>
<FuncSynopsis>
<FuncDef>TQString &<Function>sprintf</Function></FuncDef>
<ParamDef>const char *<Parameter>format</Parameter></ParamDef>
<ParamDef>...</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>short <Function>toShort</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>short</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>ushort <Function>toUShort</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>ushort</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>int <Function>toInt</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>int</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>uint <Function>toUInt</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>uint</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>long <Function>toLong</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>long</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>ulong <Function>toULong</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>ulong</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>float <Function>toFloat</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>float</Literal> result and the
<Literal>ok</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>double <Function>toDouble</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>double</Literal> result and the
<Literal>ok</Literal> value.
</Para>
</Sect2>
<Sect2><Title>TQStringList (TQt v2+)</Title>
<Para>
The Python <Literal>len</Literal>, <Literal>[]</Literal> (for both reading and
writing slices and individual elements), <Literal>del</Literal> (for deleting
slices and individual elements), <Literal>+</Literal>, <Literal>+=</Literal>,
<Literal>*</Literal>, <Literal>*=</Literal>, <Literal>==</Literal>,
<Literal>!=</Literal> and <Literal>in</Literal> operators are supported.
</Para>
<FuncSynopsis>
<FuncDef>Iterator <Function>append</Function></FuncDef>
<ParamDef>const TQString &<Parameter>x</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This does not return a value.
</Para>
<FuncSynopsis>
<FuncDef>Iterator <Function>prepend</Function></FuncDef>
<ParamDef>const TQString &<Parameter>x</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This does not return a value.
</Para>
</Sect2>
<Sect2><Title>TQStrList</Title>
<Para>
This class isn't implemented. Whenever a <Literal>TQStrList</Literal> is the
return type of a function or the type of an argument, a Python list of strings
is used instead.
</Para>
</Sect2>
<Sect2><Title>TQStyle (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>virtual void <Function>getButtonShift</Function></FuncDef>
<ParamDef>int &amp;<Parameter>x</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>y</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the <Literal>x</Literal> and
<Literal>y</Literal> values. (TQt v2)
</Para>
<FuncSynopsis>
<FuncDef>virtual void <Function>scrollBarMetrics</Function></FuncDef>
<ParamDef>const TQScrollBar *<Parameter>b</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderMin</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderMax</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>sliderLength</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>buttonDim</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Thus takes only the <Literal>b</Literal> parameter and returns a tuple of the
<Literal>sliderMin</Literal>, <Literal>sliderMax</Literal>,
<Literal>sliderLength</Literal> and <Literal>buttonDim</Literal> values.
(TQt v2)
</Para>
<FuncSynopsis>
<FuncDef>virtual void <Function>tabbarMetrics</Function></FuncDef>
<ParamDef>const TQTabBar *<Parameter>t</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>hframe</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>vframe</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>overlap</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>t</Literal> parameter and returns a tuple of the
<Literal>hframe</Literal>, <Literal>vframe</Literal> and
<Literal>overlap</Literal> values. (TQt v2)
</Para>
</Sect2>
<Sect2><Title>TQStyleOption (TQt v3+)</Title>
<Para>
<Literal>TQStyleOption</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQStyleSheet (TQt v2+)</Title>
<Para>
<Literal>TQStyleSheet</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQStyleSheetItem (TQt v2+)</Title>
<Para>
<Literal>TQStyleSheetItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSyntaxHighlighter (TQt v3.1+)</Title>
<Para>
<Literal>TQSyntaxHighlighter</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTab</Title>
<Para>
<Literal>TQTab</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTabBar</Title>
<FuncSynopsis>
<FuncDef>TQList&lt;TQTab&gt; <Function>tabList</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This returns a list of <Literal>TQTab</Literal> instances.
</Para>
</Sect2>
<Sect2><Title>TQTabDialog</Title>
<Para>
<Literal>TQTabDialog</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTableView (TQt 1.x, TQt 2.x)</Title>
<FuncSynopsis>
<FuncDef>bool <Function>colXPos</Function></FuncDef>
<ParamDef>int <Parameter>col</Parameter></ParamDef>
<ParamDef>int *<Parameter>xPos</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>col</Literal> parameter and returns a tuple containing
the <Literal>bool</Literal> result and <Literal>xPos</Literal>.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>rowYPos</Function></FuncDef>
<ParamDef>int <Parameter>row</Parameter></ParamDef>
<ParamDef>int *<Parameter>yPos</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>row</Literal> parameter and returns a tuple containing
the <Literal>bool</Literal> result and <Literal>yPos</Literal>.
</Para>
</Sect2>
<Sect2><Title>TQTabWidget (TQt v2+)</Title>
<Para>
<Literal>TQTabWidget</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTextBrowser (TQt v2+)</Title>
<Para>
<Literal>TQTextBrowser</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTextCodec (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>virtual TQCString <Function>fromUnicode</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>uc</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>lenInOut</Parameter></ParamDef>
</FuncSynopsis>
<Para>
The returned value is a tuple of the <Literal>TQCString</Literal> result and the
updated <Literal>lenInOut</Literal>.
</Para>
</Sect2>
<Sect2><Title>TQTextDecoder (TQt v2+)</Title>
<Para>
<Literal>TQTextDecoder</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTextEncoder (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>virtual TQCString <Function>fromUnicode</Function> = 0</FuncDef>
<ParamDef>const TQString &amp;<Parameter>uc</Parameter></ParamDef>
<ParamDef>int &amp;<Parameter>lenInOut</Parameter></ParamDef>
</FuncSynopsis>
<Para>
The returned value is a tuple of the <Literal>TQCString</Literal> result and the
updated <Literal>lenInOut</Literal>.
</Para>
</Sect2>
<Sect2><Title>TQTextEdit (TQt v3+)</Title>
<FuncSynopsis>
<FuncDef>int <Function>charAt</Function></FuncDef>
<ParamDef>const TQPoint &amp;<Parameter>pos</Parameter></ParamDef>
<ParamDef>int *<Parameter>para</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>pos</Literal> parameter and returns a tuple of the
value returned via the <Literal>para</Literal> pointer and the int result.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>del</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>delChar</Literal> in Python.
</Para>
<FuncSynopsis>
<FuncDef>virtual bool <Function>find</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>expr</Parameter></ParamDef>
<ParamDef>bool <Parameter>cs</Parameter></ParamDef>
<ParamDef>bool <Parameter>wo</Parameter></ParamDef>
<ParamDef>bool <Parameter>forward</Parameter> = TRUE</ParamDef>
<ParamDef>int *<Parameter>para</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>index</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
If the <Literal>para</Literal> and <Literal>index</Literal> parameters are
omitted then the bool result is returned. If both are supplied (as integers)
then a tuple of the bool result and the modified values of
<Literal>para</Literal> and <Literal>index</Literal> is returned.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>getCursorPosition</Function></FuncDef>
<ParamDef>int *<Parameter>para</Parameter></ParamDef>
<ParamDef>int *<Parameter>index</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the values returned via the
<Literal>para</Literal> and <Literal>index</Literal> pointers.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>getSelection</Function></FuncDef>
<ParamDef>int *<Parameter>paraFrom</Parameter></ParamDef>
<ParamDef>int *<Parameter>indexFrom</Parameter></ParamDef>
<ParamDef>int *<Parameter>paraTo</Parameter></ParamDef>
<ParamDef>int *<Parameter>indexTo</Parameter></ParamDef>
<ParamDef>int <Parameter>selNum</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>selNum</Literal> parameter and returns a tuple of
the <Literal>paraFrom</Literal>, <Literal>indexFrom</Literal>,
<Literal>paraTo</Literal> and <Literal>indexTo</Literal> values.
</Para>
</Sect2>
<Sect2><Title>TQTextStream</Title>
<FuncSynopsis>
<FuncDef><Function>TQTextStream</Function></FuncDef>
<ParamDef>FILE *<Parameter>fp</Parameter></ParamDef>
<ParamDef>int <Parameter>mode</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQTextStream &<Function>readRawBytes</Function></FuncDef>
<ParamDef>char *<Parameter>buf</Parameter></ParamDef>
<ParamDef>uint <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQTextStream &<Function>writeRawBytes</Function></FuncDef>
<ParamDef>const char *<Parameter>buf</Parameter></ParamDef>
<ParamDef>uint <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
</Sect2>
<Sect2><Title>TQTextIStream (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef><Function>TQTextIStream</Function></FuncDef>
<ParamDef>FILE *<Parameter>fp</Parameter></ParamDef>
<ParamDef>int <Parameter>mode</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQTextOStream (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef><Function>TQTextOStream</Function></FuncDef>
<ParamDef>FILE *<Parameter>fp</Parameter></ParamDef>
<ParamDef>int <Parameter>mode</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQTextView (TQt v2+)</Title>
<Para>
<Literal>TQTextView</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQThread (TQt v2.2+)</Title>
<Para>
<Literal>TQThread</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTimer</Title>
<Para>
<Literal>TQTimer</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQToolBar</Title>
<Para>
<Literal>TQToolBar</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQToolBox (TQt v3.2.0+)</Title>
<Para>
<Literal>TQToolBox</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQToolButton</Title>
<Para>
<Literal>TQToolButton</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQToolTip</Title>
<Para>
<Literal>TQToolTip</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQToolTipGroup</Title>
<Para>
<Literal>TQToolTipGroup</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTranslator (TQt v2+)</Title>
<Para>
<Literal>TQTranslator</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTranslatorMessage (TQt v2.2+)</Title>
<Para>
<Literal>TQTranslatorMessage</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQUrl (TQt v2.1+)</Title>
<Para>
<Literal>TQUrl</Literal> is fully implemented, including the
<Literal>TQString()</Literal>, <Literal>==</Literal> and <Literal>!=</Literal>
operators.
</Para>
</Sect2>
<Sect2><Title>TQUrlInfo (TQt v2.1+)</Title>
<Para>
<Literal>TQUrlInfo</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQUrlOperator (TQt v2.1+)</Title>
<FuncSynopsis>
<FuncDef>virtual bool <Function>isDir</Function></FuncDef>
<ParamDef>bool *<Parameter>ok</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This returns a tuple of the <Literal>bool</Literal> result and the
<Literal>ok</Literal> value.
</Para>
</Sect2>
<Sect2><Title>TQUuid (TQt v3.0+)</Title>
<Para>
<Literal>TQUuid</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQValidator</Title>
<FuncSynopsis>
<FuncDef>virtual State <Function>validate</Function></FuncDef>
<ParamDef>TQString& <Parameter>input</Parameter></ParamDef>
<ParamDef>int& <Parameter>pos</Parameter></ParamDef>
</FuncSynopsis>
<Para>
The returned value is a tuple of the <Literal>State</Literal> result and the
updated <Literal>pos</Literal>.
</Para>
</Sect2>
<Sect2><Title>TQDoubleValidator</Title>
<FuncSynopsis>
<FuncDef>State <Function>validate</Function></FuncDef>
<ParamDef>TQString& <Parameter>input</Parameter></ParamDef>
<ParamDef>int& <Parameter>pos</Parameter></ParamDef>
</FuncSynopsis>
<Para>
The returned value is a tuple of the <Literal>State</Literal> result and the
updated <Literal>pos</Literal>.
</Para>
</Sect2>
<Sect2><Title>TQIntValidator</Title>
<FuncSynopsis>
<FuncDef>State <Function>validate</Function></FuncDef>
<ParamDef>TQString& <Parameter>input</Parameter></ParamDef>
<ParamDef>int& <Parameter>pos</Parameter></ParamDef>
</FuncSynopsis>
<Para>
The returned value is a tuple of the <Literal>State</Literal> result and the
updated <Literal>pos</Literal>.
</Para>
</Sect2>
<Sect2><Title>TQRegExpValidator (TQt v3+)</Title>
<FuncSynopsis>
<FuncDef>virtual State <Function>validate</Function></FuncDef>
<ParamDef>TQString& <Parameter>input</Parameter></ParamDef>
<ParamDef>int& <Parameter>pos</Parameter></ParamDef>
</FuncSynopsis>
<Para>
The returned value is a tuple of the <Literal>State</Literal> result and the
updated <Literal>pos</Literal>.
</Para>
</Sect2>
<Sect2><Title>TQValueList&lt;type&gt; (TQt v2+)</Title>
<Para>
Types based on the <Literal>TQValueList</Literal> template are automatically
converted to and from Python lists of the type.
</Para>
</Sect2>
<Sect2><Title>TQVariant (TQt v2.1+)</Title>
<FuncSynopsis>
<FuncDef><Function>TQVariant</Function></FuncDef>
<ParamDef>const char *<Parameter>val</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef><Function>TQVariant</Function></FuncDef>
<ParamDef>const TQBitArray &amp;<Parameter>val</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef><Function>TQVariant</Function></FuncDef>
<ParamDef>const TQValueList&lt;TQVariant&gt; &amp;<Parameter>val</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef><Function>TQVariant</Function></FuncDef>
<ParamDef>const TQMap&lt;TQString,TQVariant&gt; &amp;<Parameter>val</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQBitArray &amp;<Function>asBitArray</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>bool &amp;<Function>asBool</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>double &amp;<Function>asDouble</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>int &amp;<Function>asInt</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQValueList&lt;TQVariant&gt; &amp;<Function>asList</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQMap&lt;TQString,TQVariant&gt; &amp;<Function>asMap</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>uint &amp;<Function>asUInt</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQValueListConstIterator&lt;TQVariant&gt;<Function>listBegin</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQValueListConstIterator&lt;TQVariant&gt;<Function>listEnd</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQMapConstIterator&lt;TQString,TQVariant&gt;<Function>mapBegin</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQMapConstIterator&lt;TQString,TQVariant&gt;<Function>mapEnd</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQMapConstIterator&lt;TQString,TQVariant&gt;<Function>mapFind</Function> const</FuncDef>
<ParamDef>const TQString &<Parameter>key</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQValueListConstIterator&lt;TQString&gt;<Function>stringListBegin</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQValueListConstIterator&lt;TQString&gt;<Function>stringListEnd</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>const TQBitArray <Function>toBitArray</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>const TQValueList&lt;TQVariant&gt;<Function>toList</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>const TQMap&lt;TQString,TQVariant&gt;<Function>toMap</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
</Sect2>
<Sect2><Title>TQVBox (TQt v2+)</Title>
<Para>
<Literal>TQVBox</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQVButtonGroup (TQt v2+)</Title>
<Para>
<Literal>TQVButtonGroup</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQVGroupBox (TQt v2+)</Title>
<Para>
<Literal>TQVGroupBox</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQWaitCondition (TQt v2.2+)</Title>
<Para>
<Literal>TQWaitCondition</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQWhatsThis</Title>
<Para>
<Literal>TQWhatsThis</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQWidget</Title>
<FuncSynopsis>
<FuncDef>TQWExtra *<Function>extraData</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>TQFocusData *<Function>focusData</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>lower</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed to <Literal>lowerW</Literal> in Python.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>raise</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed to <Literal>raiseW</Literal> in Python.
</Para>
</Sect2>
<Sect2><Title>TQWidgetList</Title>
<Para>
This class isn't implemented. Whenever a <Literal>TQWidgetList</Literal> is the
return type of a function or the type of an argument, a Python list of
instances is used instead.
</Para>
</Sect2>
<Sect2><Title>TQWidgetStack</Title>
<Para>
<Literal>TQWidgetStack</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQWindow</Title>
<Para>
<Literal>TQWindow</Literal> is fully implemented (TQt v1.x).
</Para>
</Sect2>
<Sect2><Title>TQWindowsStyle (TQt v2+)</Title>
<FuncSynopsis>
<FuncDef>void <Function>getButtonShift</Function></FuncDef>
<ParamDef>int &<Parameter>x</Parameter></ParamDef>
<ParamDef>int &<Parameter>y</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the <Literal>x</Literal> and
<Literal>y</Literal> values. (TQt v2)
</Para>
<FuncSynopsis>
<FuncDef>void <Function>scrollBarMetrics</Function></FuncDef>
<ParamDef>const TQTabBar *<Parameter>sb</Parameter></ParamDef>
<ParamDef>int &<Parameter>sliderMin</Parameter></ParamDef>
<ParamDef>int &<Parameter>sliderMax</Parameter></ParamDef>
<ParamDef>int &<Parameter>sliderLength</Parameter></ParamDef>
<ParamDef>int &<Parameter>buttonDim</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>sb</Literal> parameter and returns a tuple of the
<Literal>sliderMin</Literal>, <Literal>sliderMax</Literal>,
<Literal>sliderLength</Literal> and <Literal>buttonDim</Literal> values.
(TQt v2)
</Para>
<FuncSynopsis>
<FuncDef>void <Function>tabbarMetrics</Function></FuncDef>
<ParamDef>const TQTabBar *<Parameter>t</Parameter></ParamDef>
<ParamDef>int &<Parameter>hframe</Parameter></ParamDef>
<ParamDef>int &<Parameter>vframe</Parameter></ParamDef>
<ParamDef>int &<Parameter>overlap</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes only the <Literal>t</Literal> parameter and returns a tuple of the
<Literal>hframe</Literal>, <Literal>vframe</Literal> and
<Literal>overlap</Literal> values. (TQt v2)
</Para>
</Sect2>
<Sect2><Title>TQWindowsXPStyle (TQt v3.0.1+, Windows)</Title>
<Para>
<Literal>TQWindowsXPStyle</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQWizard (TQt v2+)</Title>
<Para>
<Literal>TQWizard</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQWMatrix</Title>
<Para>
The Python <Literal>==</Literal>, <Literal>!=</Literal> and
<Literal>*=</Literal> operators are supported.
</Para>
<FuncSynopsis>
<FuncDef>TQWMatrix <Function>invert</Function> const</FuncDef>
<ParamDef>bool *<Parameter>invertible</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the <Literal>TQWMatrix</Literal>
result and the <Literal>invertible</Literal> value.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>map</Function> const</FuncDef>
<ParamDef>int <Parameter>x</Parameter></ParamDef>
<ParamDef>int <Parameter>y</Parameter></ParamDef>
<ParamDef>int *<Parameter>tx</Parameter></ParamDef>
<ParamDef>int *<Parameter>ty</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>x</Literal> and <Literal>y</Literal> parameters and
returns a tuple containing the <Literal>tx</Literal> and <Literal>ty</Literal>
values.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>map</Function> const</FuncDef>
<ParamDef>float <Parameter>x</Parameter></ParamDef>
<ParamDef>float <Parameter>y</Parameter></ParamDef>
<ParamDef>float *<Parameter>tx</Parameter></ParamDef>
<ParamDef>float *<Parameter>ty</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>x</Literal> and <Literal>y</Literal> parameters and
returns a tuple containing the <Literal>tx</Literal> and <Literal>ty</Literal>
values. (TQt v1.x)
</Para>
<FuncSynopsis>
<FuncDef>void <Function>map</Function> const</FuncDef>
<ParamDef>double <Parameter>x</Parameter></ParamDef>
<ParamDef>double <Parameter>y</Parameter></ParamDef>
<ParamDef>double *<Parameter>tx</Parameter></ParamDef>
<ParamDef>double *<Parameter>ty</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>x</Literal> and <Literal>y</Literal> parameters and
returns a tuple containing the <Literal>tx</Literal> and <Literal>ty</Literal>
values. (TQt v2+)
</Para>
</Sect2>
<Sect2><Title>TQWorkspace (TQt v2.1+)</Title>
<Para>
<Literal>TQWorkspace</Literal> is fully implemented.
</Para>
</Sect2>
</Sect1>
<Sect1><Title><Literal>qtaxcontainer</Literal> Module Reference</Title>
<Sect2><Title>TQAxBase (Windows, TQt v3+)</Title>
<FuncSynopsis>
<FuncDef><Function>TQAxObject</Function></FuncDef>
<ParamDef>IUnknown *<Parameter>iface</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>long <Function>queryInterface</Function></FuncDef>
<ParamDef>const TQUuid &amp;<Parameter>uuid</Parameter></ParamDef>
<ParamDef>void **<Parameter>iface</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>PropertyBag <Function>propertyBag</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>setPropertyBag</Function></FuncDef>
<ParamDef>const PropertyBag &amp;<Parameter>bag</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
<FuncSynopsis>
<FuncDef>unsigned long <Function>registerWeakActiveObject</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>guid</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This is a utility method provided by PyTQt to make it easier to use
Mark Hammond's <Literal>win32com</Literal> module to manipulate objects
created by the <Literal>qtaxcontainer</Literal> module.
</Para>
<Para>
The <Literal>RegisterActiveObject()</Literal> COM function is called to
register the <Literal>TQAxBase</Literal> instance as a weak object with the
<Literal>guid</Literal> GUID. The revoke handle is returned.
</Para>
<FuncSynopsis>
<FuncDef>static void <Function>revokeActiveObject</Function></FuncDef>
<ParamDef>unsigned long <Parameter>rhandle</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This is a wrapper around the <Literal>RevokeActiveObject()</Literal> COM
function and is called to revoke the object registered using
<Literal>registerWeakActiveObject()</Literal>. <Literal>rhandle</Literal> is
the revoke handle returned by <Literal>registerWeakActiveObject()</Literal>.
</Para>
</Sect2>
<Sect2><Title>TQAxObject (Windows, TQt v3+)</Title>
<FuncSynopsis>
<FuncDef><Function>TQAxObject</Function></FuncDef>
<ParamDef>IUnknown *<Parameter>iface</Parameter></ParamDef>
<ParamDef>TQObject *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>TQAxWidget (Windows, TQt v3+)</Title>
<FuncSynopsis>
<FuncDef><Function>TQAxWidget</Function></FuncDef>
<ParamDef>IUnknown *<Parameter>iface</Parameter></ParamDef>
<ParamDef>TQWidget *<Parameter>parent</Parameter> = 0</ParamDef>
<ParamDef>const char *<Parameter>name</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
</Sect1>
<Sect1><Title><Literal>qtcanvas</Literal> Module Reference</Title>
<Sect2><Title>TQCanvas (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvas</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasEllipse (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvasEllipse</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasItem (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvasItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasItemList (TQt v2.2+)</Title>
<Para>
This class isn't implemented. Whenever a <Literal>TQCanvasItemList</Literal> is
the return type of a function or the type of an argument, a Python list of
<Literal>TQCanvasItem</Literal> instances is used instead.
</Para>
</Sect2>
<Sect2><Title>TQCanvasLine (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvasLine</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasPixmap (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvasPixmap</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasPixmapArray (TQt v2.2+)</Title>
<FuncSynopsis>
<FuncDef><Function>TQPixmapArray</Function></FuncDef>
<ParamDef>TQList&lt;TQPixmap&gt; <Parameter>pixmaps</Parameter></ParamDef>
<ParamDef>TQList&lt;TQPoint&gt; <Parameter>hotspots</Parameter></ParamDef>
</FuncSynopsis>
<Para>
The <Literal>pixmaps</Literal> argument is a Python list of TQPixmap instances,
and the <Literal>hotspots</Literal> argument is a Python list of TQPoint
instances. (TQt v2.2.0 - TQt v2.3.1)
</Para>
<FuncSynopsis>
<FuncDef><Function>TQPixmapArray</Function></FuncDef>
<ParamDef>TQValueList&lt;TQPixmap&gt; <Parameter>pixmaps</Parameter></ParamDef>
<ParamDef>TQPointArray <Parameter>hotspots</Parameter> = TQPointArray()</ParamDef>
</FuncSynopsis>
<Para>
The <Literal>pixmaps</Literal> argument is a Python list of TQPixmap instances.
(TQt v3+)
</Para>
</Sect2>
<Sect2><Title>TQCanvasPolygon (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvasPolygon</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasPolygonalItem (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvasPolygonalItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasRectangle (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvasRectangle</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasSpline (TQt v3.0+)</Title>
<Para>
<Literal>TQCanvasSpline</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasSprite (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvasSprite</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasText (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvasText</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCanvasView (TQt v2.2+)</Title>
<Para>
<Literal>TQCanvasView</Literal> is fully implemented.
</Para>
</Sect2>
</Sect1>
<Sect1><Title><Literal>qtext</Literal> Module Reference</Title>
<Sect2><Title>QextScintilla</Title>
<FuncSynopsis>
<FuncDef>void <Function>getCursorPosition</Function></FuncDef>
<ParamDef>int *<Parameter>line</Parameter></ParamDef>
<ParamDef>int *<Parameter>index</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the values returned by the
<Literal>line</Literal> and <Literal>index</Literal> pointers.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>getSelection</Function></FuncDef>
<ParamDef>int *<Parameter>lineFrom</Parameter></ParamDef>
<ParamDef>int *<Parameter>indexFrom</Parameter></ParamDef>
<ParamDef>int *<Parameter>lineTo</Parameter></ParamDef>
<ParamDef>int *<Parameter>indexTo</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes no parameters and returns a tuple of the values returned by the
<Literal>lineFrom</Literal>, <Literal>indexFrom</Literal>,
<Literal>lineTo</Literal> and <Literal>indexTo</Literal> pointers.
</Para>
</Sect2>
<Sect2><Title>QextScintillaAPIs</Title>
<Para>
<Literal>QextScintillaAPIs</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaBase</Title>
<Para>
<Literal>QextScintillaBase</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaCommand</Title>
<Para>
<Literal>QextScintillaCommand</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaCommandSet</Title>
<Para>
<Literal>QextScintillaCommandSet</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaDocument</Title>
<Para>
<Literal>QextScintillaDocument</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexer</Title>
<Para>
<Literal>QextScintillaLexer</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerBash (TQScintilla v1.4+)</Title>
<Para>
<Literal>QextScintillaLexerBash</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerBatch (TQScintilla v1.6+)</Title>
<Para>
<Literal>QextScintillaLexerBatch</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerCPP</Title>
<Para>
<Literal>QextScintillaLexerCPP</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerCSharp</Title>
<Para>
<Literal>QextScintillaLexerCSharp</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerCSS (TQScintilla v1.6+)</Title>
<Para>
<Literal>QextScintillaLexerCSS</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerDiff (TQScintilla v1.6+)</Title>
<Para>
<Literal>QextScintillaLexerDiff</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerHTML (TQScintilla v1.1+)</Title>
<Para>
<Literal>QextScintillaLexerHTML</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerIDL</Title>
<Para>
<Literal>QextScintillaLexerIDL</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerJava</Title>
<Para>
<Literal>QextScintillaLexerJava</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerJavaScript</Title>
<Para>
<Literal>QextScintillaLexerJavaScript</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerLua (TQScintilla v1.5+)</Title>
<Para>
<Literal>QextScintillaLexerLua</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerMakefile (TQScintilla v1.6+)</Title>
<Para>
<Literal>QextScintillaLexerMakefile</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerPerl</Title>
<Para>
<Literal>QextScintillaLexerPerl</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerPOV (TQScintilla v1.6+)</Title>
<Para>
<Literal>QextScintillaLexerPOV</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerProperties (TQScintilla v1.6+)</Title>
<Para>
<Literal>QextScintillaLexerProperties</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerPython</Title>
<Para>
<Literal>QextScintillaLexerPython</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerRuby (TQScintilla v1.5+)</Title>
<Para>
<Literal>QextScintillaLexerRuby</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerSQL (TQScintilla v1.1+)</Title>
<Para>
<Literal>QextScintillaLexerSQL</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaLexerTeX (TQScintilla v1.6+)</Title>
<Para>
<Literal>QextScintillaLexerTeX</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaMacro</Title>
<Para>
<Literal>QextScintillaMacro</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>QextScintillaPrinter</Title>
<Para>
<Literal>QextScintillaPrinter</Literal> is fully implemented.
</Para>
</Sect2>
</Sect1>
<Sect1><Title><Literal>qtgl</Literal> Module Reference</Title>
<Sect2><Title>TQGL</Title>
<Para>
<Literal>TQGL</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQGLContext</Title>
<Para>
<Literal>TQGLContext</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQGLFormat</Title>
<Para>
<Literal>TQGLFormat</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQGLWidget</Title>
<Para>
<Literal>TQGLWidget</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQGLColormap (TQt v3.0+)</Title>
<FuncSynopsis>
<FuncDef>void <Function>setEntries</Function></FuncDef>
<ParamDef>int <Parameter>count</Parameter></ParamDef>
<ParamDef>const TQRgb *<Parameter>colors</Parameter></ParamDef>
<ParamDef>int <Parameter>base</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
</Sect2>
</Sect1>
<Sect1><Title><Literal>qtnetwork</Literal> Module Reference</Title>
<Sect2><Title>TQDns (TQt v2.2+)</Title>
<Para>
<Literal>TQDns</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQFtp (TQt v2.2+)</Title>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>readBlock</Function></FuncDef>
<ParamDef>char *<Parameter>data</Parameter></ParamDef>
<ParamDef>Q_ULONG <Parameter>maxlen</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes a single <Literal>maxlen</Literal> parameter. The
<Literal>data</Literal> is returned if there was no error, otherwise
<Literal>None</Literal> is returned.
</Para>
</Sect2>
<Sect2><Title>TQHostAddress (TQt v2.2+)</Title>
<FuncSynopsis>
<FuncDef><Function>TQHostAddress</Function></FuncDef>
<ParamDef>Q_UINT8 *<Parameter>ip6Addr</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef><Function>TQHostAddress</Function></FuncDef>
<ParamDef>const Q_IPV6ADDR &amp;<Parameter>ip6Addr</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>void <Function>setAddress</Function></FuncDef>
<ParamDef>Q_UINT8 *<Parameter>ip6Addr</Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
<FuncSynopsis>
<FuncDef>Q_IPV6ADDR <Function>toIPv6Address</Function> const</FuncDef>
<ParamDef><Parameter></Parameter></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented.
</Para>
</Sect2>
<Sect2><Title>TQHttp (TQt v3+)</Title>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>readBlock</Function></FuncDef>
<ParamDef>char *<Parameter>data</Parameter></ParamDef>
<ParamDef>Q_ULONG <Parameter>maxlen</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes a single <Literal>maxlen</Literal> parameter. The
<Literal>data</Literal> is returned if there was no error, otherwise
<Literal>None</Literal> is returned.
</Para>
</Sect2>
<Sect2><Title>TQHttpHeader (TQt v3.1+)</Title>
<Para>
<Literal>TQHttpHeader</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQHttpRequestHeader (TQt v3.1+)</Title>
<Para>
<Literal>TQHttpRequestHeader</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQHttpResponseHeader (TQt v3.1+)</Title>
<Para>
<Literal>TQHttpResponseHeader</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQLocalFs (TQt v2.1+)</Title>
<Para>
<Literal>TQLocalFs</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQServerSocket (TQt v2.2+)</Title>
<Para>
<Literal>TQServerSocket</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSocket (TQt v2.2+)</Title>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>readBlock</Function></FuncDef>
<ParamDef>char *<Parameter>data</Parameter></ParamDef>
<ParamDef>Q_ULONG <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes a single <Literal>len</Literal> parameter. The
<Literal>data</Literal> is returned if there was no error, otherwise
<Literal>Py_None</Literal> is returned.
</Para>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>readLine</Function></FuncDef>
<ParamDef>char *<Parameter>data</Parameter></ParamDef>
<ParamDef>Q_ULONG <Parameter>maxlen</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes a single <Literal>maxlen</Literal> parameter. The
<Literal>data</Literal> is returned if there was no error, otherwise
<Literal>Py_None</Literal> is returned.
</Para>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>writeBlock</Function></FuncDef>
<ParamDef>const char *<Parameter>data</Parameter></ParamDef>
<ParamDef>Q_ULONG <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
<Literal>len</Literal> is derived from <Literal>data</Literal> and not passed
as a parameter.
</Para>
</Sect2>
<Sect2><Title>TQSocketDevice (TQt v2.2+)</Title>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>readBlock</Function></FuncDef>
<ParamDef>char *<Parameter>data</Parameter></ParamDef>
<ParamDef>Q_ULONG <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes a single <Literal>len</Literal> parameter. The
<Literal>data</Literal> is returned if there was no error, otherwise
<Literal>None</Literal> is returned.
</Para>
<FuncSynopsis>
<FuncDef>Q_LONG <Function>writeBlock</Function></FuncDef>
<ParamDef>const char *<Parameter>data</Parameter></ParamDef>
<ParamDef>Q_ULONG <Parameter>len</Parameter></ParamDef>
</FuncSynopsis>
<Para>
<Literal>len</Literal> is derived from <Literal>data</Literal> and not passed
as a parameter.
</Para>
</Sect2>
</Sect1>
<Sect1><Title><Literal>qtpe</Literal> Module Reference</Title>
<Sect2><Title>TQPEApplication</Title>
<FuncSynopsis>
<FuncDef><Function>TQApplication</Function></FuncDef>
<ParamDef>int& <Parameter>argc</Parameter></ParamDef>
<ParamDef>char **<Parameter>argv</Parameter></ParamDef>
<ParamDef>Type <Parameter>type</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This takes two parameters, the first of which is a list of argument strings.
Arguments used by TQt are removed from the list.
</Para>
<FuncSynopsis>
<FuncDef>int <Function>exec</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed to <Literal>exec_loop</Literal> in Python.
</Para>
</Sect2>
<Sect2><Title>AppLnk</Title>
<FuncSynopsis>
<FuncDef>virtual TQString <Function>exec</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed to <Literal>exec_property</Literal> in Python.
</Para>
</Sect2>
<Sect2><Title>AppLnkSet</Title>
<Para>
<Literal>AppLnkSet</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>Config</Title>
<Para>
<Literal>Config</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>DateFormat</Title>
<Para>
<Literal>DateFormat</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>DocLnk</Title>
<FuncSynopsis>
<FuncDef>TQString <Function>exec</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed to <Literal>exec_property</Literal> in Python.
</Para>
</Sect2>
<Sect2><Title>DocLnkSet</Title>
<Para>
<Literal>DocLnkSet</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>FileManager</Title>
<Para>
<Literal>FileManager</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>FileSelector</Title>
<Para>
<Literal>FileSelector</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>FileSelectorItem</Title>
<Para>
<Literal>FileSelectorItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>FontDatabase</Title>
<Para>
<Literal>FontDatabase</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>Global</Title>
<FuncSynopsis>
<FuncDef>static void <Function>setBuiltinCommands</Function></FuncDef>
<ParamDef>Command *</ParamDef>
</FuncSynopsis>
<Para>
Not implemented.
</Para>
</Sect2>
<Sect2><Title>MenuButton</Title>
<Para>
<Literal>MenuButton</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCopEnvelope</Title>
<Para>
<Literal>TQCopEnvelope</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDawg</Title>
<Para>
<Literal>TQDawg</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQPEMenuBar</Title>
<Para>
<Literal>TQPEMenuBar</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQPEToolBar</Title>
<Para>
<Literal>TQPEToolBar</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>Resource</Title>
<Para>
<Literal>Resource</Literal> is fully implemented.
</Para>
</Sect2>
</Sect1>
<Sect1><Title><Literal>qtsql</Literal> Module Reference</Title>
<Sect2><Title>TQDataBrowser (TQt v3+)</Title>
<FuncSynopsis>
<FuncDef>virtual void <Function>del</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>delOnCursor</Literal> in Python.
</Para>
</Sect2>
<Sect2><Title>TQDataTable (TQt v3+)</Title>
<Para>
<Literal>TQDataTable</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDataView (TQt v3+)</Title>
<Para>
<Literal>TQDataView</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQEditorFactory (TQt v3+)</Title>
<Para>
<Literal>TQEditorFactory</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSql (TQt v3+)</Title>
<Para>
<Literal>TQSql</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSqlCursor (TQt v3+)</Title>
<FuncSynopsis>
<FuncDef>virtual int <Function>del</Function></FuncDef>
<ParamDef>bool <Parameter>invalidate</Parameter> = TRUE</ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>delRecords</Literal> in Python.
</Para>
<FuncSynopsis>
<FuncDef>virtual int <Function>del</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>filter</Parameter></ParamDef>
<ParamDef>bool <Parameter>invalidate</Parameter> = TRUE</ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>delRecords</Literal> in Python.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>exec</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>query</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>execQuery</Literal> in Python.
</Para>
</Sect2>
<Sect2><Title>TQSqlDatabase (TQt v3+)</Title>
<FuncSynopsis>
<FuncDef>TQSqlQuery <Function>exec</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>query</Parameter> = TQString::null</ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>execStatement</Literal> in Python.
</Para>
</Sect2>
<Sect2><Title>TQSqlDriver (TQt v3+)</Title>
<Para>
<Literal>TQSqlDriver</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSqlEditorFactory (TQt v3+)</Title>
<Para>
<Literal>TQSqlEditorFactory</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSqlError (TQt v3+)</Title>
<Para>
<Literal>TQSqlError</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSqlField (TQt v3+)</Title>
<Para>
<Literal>TQSqlField</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSqlFieldInfo (TQt v3+)</Title>
<Para>
<Literal>TQSqlFieldInfo</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSqlForm (TQt v3+)</Title>
<Para>
<Literal>TQSqlForm</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSqlIndex (TQt v3+)</Title>
<Para>
<Literal>TQSqlIndex</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSqlPropertyMap (TQt v3+)</Title>
<Para>
<Literal>TQSqlPropertyMap</Literal> is fully implemented. However, because PyTQt
does not allow new properties to be defined, it is not possible to implement
custom editor widgets in Python and add them to a property map. These will
simply be ignored.
</Para>
<Para>
This problem may be addressed in a future release of PyTQt.
</Para>
</Sect2>
<Sect2><Title>TQSqlQuery (TQt v3+)</Title>
<FuncSynopsis>
<FuncDef>TQMap&lt;TQString,TQVariant&gt; <Function>boundValues</Function> const</FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v3.2.0+)
</Para>
<FuncSynopsis>
<FuncDef>virtual bool <Function>exec</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>query</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>execQuery</Literal> in Python.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>exec</Function></FuncDef>
<ParamDef></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>execQuery</Literal> in Python. (TQt v3.1+)
</Para>
</Sect2>
<Sect2><Title>TQSqlRecord (TQt v3+)</Title>
<Para>
<Literal>TQSqlRecord</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSqlRecordInfo (TQt v3+)</Title>
<Para>
<Literal>TQSqlRecordInfo</Literal> is implemented as a Python list of
<Literal>TQSqlFieldInfo</Literal> instances.
</Para>
</Sect2>
<Sect2><Title>TQSqlResult (TQt v3+)</Title>
<Para>
<Literal>TQSqlResult</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQSqlSelectCursor (TQt v3.2.0+)</Title>
<FuncSynopsis>
<FuncDef>int <Function>del</Function></FuncDef>
<ParamDef>bool <Parameter>invalidate</Parameter> = TRUE</ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>delRecords</Literal> in Python.
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>exec</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>query</Parameter></ParamDef>
</FuncSynopsis>
<Para>
This has been renamed <Literal>execQuery</Literal> in Python.
</Para>
</Sect2>
</Sect1>
<Sect1><Title><Literal>qttable</Literal> Module Reference</Title>
<Sect2><Title>TQTable (TQt v2.2+)</Title>
<Para>
<Literal>TQTable</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTableItem (TQt v2.2+)</Title>
<Para>
<Literal>TQTableItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQCheckTableItem (TQt v3+)</Title>
<Para>
<Literal>TQCheckTableItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQComboTableItem (TQt v3+)</Title>
<Para>
<Literal>TQComboTableItem</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQTableSelection (TQt v2.2+)</Title>
<Para>
<Literal>TQTableSelection</Literal> is fully implemented.
</Para>
</Sect2>
</Sect1>
<Sect1><Title><Literal>qtui</Literal> Module Reference</Title>
<Sect2><Title>TQWidgetFactory (TQt v3+)</Title>
<Para>
<Literal>TQWidgetFactory</Literal> is fully implemented.
</Para>
</Sect2>
</Sect1>
<Sect1><Title><Literal>qtxml</Literal> Module Reference</Title>
<Sect2><Title>TQDomImplementation (TQt v2.2+)</Title>
<Para>
<Literal>TQDomImplementation</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomNode (TQt v2.2+)</Title>
<Para>
<Literal>TQDomNode</Literal> is fully implemented, including the Python
<Literal>==</Literal> and <Literal>!=</Literal> operators.
</Para>
</Sect2>
<Sect2><Title>TQDomNodeList (TQt v2.2+)</Title>
<Para>
<Literal>TQDomNodeList</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomDocument (TQt v2.2+)</Title>
<FuncSynopsis>
<FuncDef>bool <Function>setContent</Function></FuncDef>
<ParamDef>const TQCString &amp;<Parameter>buffer</Parameter></ParamDef>
<ParamDef>bool <Parameter>namespaceProcessing</Parameter></ParamDef>
<ParamDef>TQString *<Parameter>errorMsg</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorLine</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorColumn</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>buffer</Literal> and
<Literal>namespaceProcessing</Literal> parameters and returns a tuple
containing the <Literal>bool</Literal> result and the
<Literal>errorMsg</Literal>, <Literal>errorLine</Literal> and
<Literal>errorColumn</Literal> values. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>setContent</Function></FuncDef>
<ParamDef>const TQByteArray &amp;<Parameter>buffer</Parameter></ParamDef>
<ParamDef>bool <Parameter>namespaceProcessing</Parameter></ParamDef>
<ParamDef>TQString *<Parameter>errorMsg</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorLine</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorColumn</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>buffer</Literal> and
<Literal>namespaceProcessing</Literal> parameters and returns a tuple
containing the <Literal>bool</Literal> result and the
<Literal>errorMsg</Literal>, <Literal>errorLine</Literal> and
<Literal>errorColumn</Literal> values. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>setContent</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>text</Parameter></ParamDef>
<ParamDef>bool <Parameter>namespaceProcessing</Parameter></ParamDef>
<ParamDef>TQString *<Parameter>errorMsg</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorLine</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorColumn</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>text</Literal> and
<Literal>namespaceProcessing</Literal> parameters and returns a tuple
containing the <Literal>bool</Literal> result and the
<Literal>errorMsg</Literal>, <Literal>errorLine</Literal> and
<Literal>errorColumn</Literal> values. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>setContent</Function></FuncDef>
<ParamDef>const TQIODevice *<Parameter>dev</Parameter></ParamDef>
<ParamDef>bool <Parameter>namespaceProcessing</Parameter></ParamDef>
<ParamDef>TQString *<Parameter>errorMsg</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorLine</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorColumn</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>dev</Literal> and
<Literal>namespaceProcessing</Literal> parameters and returns a tuple
containing the <Literal>bool</Literal> result and the
<Literal>errorMsg</Literal>, <Literal>errorLine</Literal> and
<Literal>errorColumn</Literal> values. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>setContent</Function></FuncDef>
<ParamDef>const TQCString &amp;<Parameter>buffer</Parameter></ParamDef>
<ParamDef>TQString *<Parameter>errorMsg</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorLine</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorColumn</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>buffer</Literal> parameter only and returns a tuple
containing the <Literal>bool</Literal> result and the
<Literal>errorMsg</Literal>, <Literal>errorLine</Literal> and
<Literal>errorColumn</Literal> values. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>setContent</Function></FuncDef>
<ParamDef>const TQByteArray &amp;<Parameter>buffer</Parameter></ParamDef>
<ParamDef>TQString *<Parameter>errorMsg</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorLine</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorColumn</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>buffer</Literal> parameter only and returns a tuple
containing the <Literal>bool</Literal> result and the
<Literal>errorMsg</Literal>, <Literal>errorLine</Literal> and
<Literal>errorColumn</Literal> values. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>setContent</Function></FuncDef>
<ParamDef>const TQString &amp;<Parameter>text</Parameter></ParamDef>
<ParamDef>TQString *<Parameter>errorMsg</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorLine</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorColumn</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>text</Literal> parameter only and returns a tuple
containing the <Literal>bool</Literal> result and the
<Literal>errorMsg</Literal>, <Literal>errorLine</Literal> and
<Literal>errorColumn</Literal> values. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>setContent</Function></FuncDef>
<ParamDef>const TQIODevice *<Parameter>dev</Parameter></ParamDef>
<ParamDef>TQString *<Parameter>errorMsg</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorLine</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorColumn</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
This takes the <Literal>dev</Literal> parameter only and returns a tuple
containing the <Literal>bool</Literal> result and the
<Literal>errorMsg</Literal>, <Literal>errorLine</Literal> and
<Literal>errorColumn</Literal> values. (TQt v3+)
</Para>
<FuncSynopsis>
<FuncDef>bool <Function>setContent</Function></FuncDef>
<ParamDef>TQXmlInputSource *<Parameter>source</Parameter></ParamDef>
<ParamDef>TQXmlReader *<Parameter>reader</Parameter></ParamDef>
<ParamDef>TQString *<Parameter>errorMsg</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorLine</Parameter> = 0</ParamDef>
<ParamDef>int *<Parameter>errorColumn</Parameter> = 0</ParamDef>
</FuncSynopsis>
<Para>
Not yet implemented. (TQt v3.2.0+)
</Para>
</Sect2>
<Sect2><Title>TQDomDocumentFragment (TQt v2.2+)</Title>
<Para>
<Literal>TQDomDocumentFragment</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomDocumentType (TQt v2.2+)</Title>
<Para>
<Literal>TQDomDocumentType</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomNamedNodeMap (TQt v2.2+)</Title>
<Para>
<Literal>TQDomNamedNodeMap</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomCharacterData (TQt v2.2+)</Title>
<Para>
<Literal>TQDomCharacterData</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomAttr (TQt v2.2+)</Title>
<Para>
<Literal>TQDomAttr</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomElement (TQt v2.2+)</Title>
<Para>
<Literal>TQDomElement</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomText (TQt v2.2+)</Title>
<Para>
<Literal>TQDomText</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomComment (TQt v2.2+)</Title>
<Para>
<Literal>TQDomComment</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomCDATASection (TQt v2.2+)</Title>
<Para>
<Literal>TQDomCDATASection</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomNotation (TQt v2.2+)</Title>
<Para>
<Literal>TQDomNotation</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomEntity (TQt v2.2+)</Title>
<Para>
<Literal>TQDomEntity</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomEntityReference (TQt v2.2+)</Title>
<Para>
<Literal>TQDomEntityReference</Literal> is fully implemented.
</Para>
</Sect2>
<Sect2><Title>TQDomProcessingInstruction (TQt v2.2+)</Title>
<Para>
<Literal>TQDomProcessingInstruction</Literal> is fully implemented.
</Para>
</Sect2>
</Sect1>
</Article>