605d715ddd
git-svn-id: https://svn.wxwidgets.org/svn/wx/wxWidgets/trunk@5109 c3d73ce0-8a6f-49c7-b76d-6d57e0e08775
184 lines
5.4 KiB
TeX
184 lines
5.4 KiB
TeX
% ----------------------------------------------------------------------------
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% wxDataInputStream
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% ----------------------------------------------------------------------------
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\section{\class{wxDataInputStream}}\label{wxdatainputstream}
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This class provides functions that read binary data types in a
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portable way. Data can be read in either big-endian or litte-endian
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format, little-endian being the default on all architectures.
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If you want to read data from text files (or streams) use
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\helpref{wxTextInputStream}{wxtextinputstream} instead.
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The >> operator is overloaded and you can use this class like a standard C++ iostream.
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Note, however, that the arguments are the fixed size types wxUint32, wxInt32 etc
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and on a typical 32-bit computer, none of these match to the "long" type (wxInt32
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is defined as signed int on 32-bit architectures) so that you cannot use long. To avoid
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problems (here and elsewhere), make use of the wxInt32, wxUint32, etc types.
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For example:
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\begin{verbatim}
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wxFileInputStream input( "mytext.dat" );
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wxDataInputStream store( input );
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wxUint8 i1;
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float f2;
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wxString line;
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store >> i1; // read a 8 bit integer.
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store >> i1 >> f2; // read a 8 bit integer followed by float.
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store >> line; // read a text line
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\end{verbatim}
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See also \helpref{wxDataOutputStream}{wxdataoutputstream}.
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\wxheading{Derived from}
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None
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\wxheading{Include files}
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<wx/datstrm.h>
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\latexignore{\rtfignore{\wxheading{Members}}}
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\membersection{wxDataInputStream::wxDataInputStream}\label{wxdatainputstreamconstr}
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\func{}{wxDataInputStream}{\param{wxInputStream\&}{ stream}}
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Constructs a datastream object from an input stream. Only read methods will
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be available.
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\wxheading{Parameters}
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\docparam{stream}{The input stream.}
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\membersection{wxDataInputStream::\destruct{wxDataInputStream}}
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\func{}{\destruct{wxDataInputStream}}{\void}
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Destroys the wxDataInputStream object.
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\membersection{wxDataInputStream::BigEndianOrdered}
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\func{void}{BigEndianOrdered}{\param{bool}{ be\_order}}
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If {\it be\_order} is TRUE, all data will be read in big-endian
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order, such as written by programs on a big endian architecture
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(e.g. Sparc) or written by Java-Streams (which always use
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big-endian order).
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\membersection{wxDataInputStream::Read8}
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\func{wxUint8}{Read8}{\void}
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Reads a single byte from the stream.
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\membersection{wxDataInputStream::Read16}
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\func{wxUint16}{Read16}{\void}
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Reads a 16 bit integer from the stream.
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\membersection{wxDataInputStream::Read32}
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\func{wxUint32}{Read32}{\void}
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Reads a 32 bit integer from the stream.
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\membersection{wxDataInputStream::ReadDouble}
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\func{double}{ReadDouble}{\void}
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Reads a double (IEEE encoded) from the stream.
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\membersection{wxDataInputStream::ReadString}
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\func{wxString}{wxDataInputStream::ReadString}{\void}
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Reads a string from a stream. Actually, this function first reads a long integer
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specifying the length of the string (without the last null character) and then
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reads the string.
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% ----------------------------------------------------------------------------
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% wxDataOutputStream
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% ----------------------------------------------------------------------------
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\section{\class{wxDataOutputStream}}\label{wxdataoutputstream}
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This class provides functions that write binary data types in a
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portable way. Data can be written in either big-endian or litte-endian
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format, little-endian being the default on all architectures.
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If you want to write data to text files (or streams) use
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\helpref{wxTextOutputStream}{wxtextoutputstream} instead.
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The << operator is overloaded and you can use this class like a standard
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C++ iostream. See \helpref{wxDataInputStream}{wxdatainputstream} for its
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usage and caveats.
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See also \helpref{wxDataInputStream}{wxdatainputstream}.
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\wxheading{Derived from}
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None
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\latexignore{\rtfignore{\wxheading{Members}}}
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\membersection{wxDataOutputStream::wxDataOutputStream}\label{wxdataoutputstreamconstr}
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\func{}{wxDataOutputStream}{\param{wxOutputStream\&}{ stream}}
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Constructs a datastream object from an output stream. Only write methods will
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be available.
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\wxheading{Parameters}
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\docparam{stream}{The output stream.}
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\membersection{wxDataOutputStream::\destruct{wxDataOutputStream}}
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\func{}{\destruct{wxDataOutputStream}}{\void}
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Destroys the wxDataOutputStream object.
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\membersection{wxDataOutputStream::BigEndianOrdered}
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\func{void}{BigEndianOrdered}{\param{bool}{ be\_order}}
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If {\it be\_order} is TRUE, all data will be written in big-endian
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order, e.g. for reading on a Sparc or from Java-Streams (which
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always use big-endian order), otherwise data will be written in
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little-endian order.
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\membersection{wxDataOutputStream::Write8}
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\func{void}{wxDataOutputStream::Write8}{{\param wxUint8 }{i8}}
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Writes the single byte {\it i8} to the stream.
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\membersection{wxDataOutputStream::Write16}
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\func{void}{wxDataOutputStream::Write16}{{\param wxUint16 }{i16}}
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Writes the 16 bit integer {\it i16} to the stream.
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\membersection{wxDataOutputStream::Write32}
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\func{void}{wxDataOutputStream::Write32}{{\param wxUint32 }{i32}}
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Writes the 32 bit integer {\it i32} to the stream.
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\membersection{wxDataOutputStream::WriteDouble}
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\func{void}{wxDataOutputStream::WriteDouble}{{\param double }{f}}
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Writes the double {\it f} to the stream using the IEEE format.
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\membersection{wxDataOutputStream::WriteString}
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\func{void}{wxDataOutputStream::WriteString}{{\param const wxString\& }{string}}
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Writes {\it string} to the stream. Actually, this method writes the size of
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the string before writing {\it string} itself.
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