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259 lines
11 KiB
HTML
259 lines
11 KiB
HTML
<HTML>
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<HEAD>
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<!-- This HTML file has been created by texi2html 1.54
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from gettext.texi on 25 January 1999 -->
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<TITLE>GNU gettext utilities - Producing Binary MO Files</TITLE>
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<link href="gettext_7.html" rel=Next>
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<link href="gettext_5.html" rel=Previous>
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<link href="gettext_toc.html" rel=ToC>
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</HEAD>
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<BODY>
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<p>Go to the <A HREF="gettext_1.html">first</A>, <A HREF="gettext_5.html">previous</A>, <A HREF="gettext_7.html">next</A>, <A HREF="gettext_12.html">last</A> section, <A HREF="gettext_toc.html">table of contents</A>.
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<P><HR><P>
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<H1><A NAME="SEC32" HREF="gettext_toc.html#TOC32">Producing Binary MO Files</A></H1>
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<H2><A NAME="SEC33" HREF="gettext_toc.html#TOC33">Invoking the <CODE>msgfmt</CODE> Program</A></H2>
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<PRE>
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Usage: msgfmt [<VAR>option</VAR>] <VAR>filename</VAR>.po ...
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</PRE>
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<DL COMPACT>
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<DT><SAMP>`-a <VAR>number</VAR>'</SAMP>
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<DD>
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<DT><SAMP>`--alignment=<VAR>number</VAR>'</SAMP>
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<DD>
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Align strings to <VAR>number</VAR> bytes (default: 1).
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<DT><SAMP>`-h'</SAMP>
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<DD>
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<DT><SAMP>`--help'</SAMP>
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<DD>
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Display this help and exit.
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<DT><SAMP>`--no-hash'</SAMP>
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<DD>
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Binary file will not include the hash table.
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<DT><SAMP>`-o <VAR>file</VAR>'</SAMP>
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<DD>
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<DT><SAMP>`--output-file=<VAR>file</VAR>'</SAMP>
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<DD>
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Specify output file name as <VAR>file</VAR>.
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<DT><SAMP>`--strict'</SAMP>
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<DD>
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Direct the program to work strictly following the Uniforum/Sun
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implementation. Currently this only affects the naming of the output
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file. If this option is not given the name of the output file is the
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same as the domain name. If the strict Uniforum mode is enable the
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suffix <TT>`.mo'</TT> is added to the file name if it is not already
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present.
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We find this behaviour of Sun's implementation rather silly and so by
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default this mode is <EM>not</EM> selected.
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<DT><SAMP>`-v'</SAMP>
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<DD>
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<DT><SAMP>`--verbose'</SAMP>
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<DD>
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Detect and diagnose input file anomalies which might represent
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translation errors. The <CODE>msgid</CODE> and <CODE>msgstr</CODE> strings are
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studied and compared. It is considered abnormal that one string
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starts or ends with a newline while the other does not.
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Also, if the string represents a format string used in a
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<CODE>printf</CODE>-like function both strings should have the same number of
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<SAMP>`%'</SAMP> format specifiers, with matching types. If the flag
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<CODE>c-format</CODE> or <CODE>possible-c-format</CODE> appears in the special
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comment <KBD>#,</KBD> for this entry a check is performed. For example, the
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check will diagnose using <SAMP>`%.*s'</SAMP> against <SAMP>`%s'</SAMP>, or <SAMP>`%d'</SAMP>
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against <SAMP>`%s'</SAMP>, or <SAMP>`%d'</SAMP> against <SAMP>`%x'</SAMP>. It can even handle
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positional parameters.
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Normally the <CODE>xgettext</CODE> program automatically decides whether a
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string is a format string or not. This algorithm is not perfect,
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though. It might regard a string as a format string though it is not
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used in a <CODE>printf</CODE>-like function and so <CODE>msgfmt</CODE> might report
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errors where there are none. Or the other way round: a string is not
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regarded as a format string but it is used in a <CODE>printf</CODE>-like
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function.
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So solve this problem the programmer can dictate the decision to the
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<CODE>xgettext</CODE> program (see section <A HREF="gettext_3.html#SEC17">Special Comments preceding Keywords</A>). The translator should not
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consider removing the flag from the <KBD>#,</KBD> line. This "fix" would be
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reversed again as soon as <CODE>msgmerge</CODE> is called the next time.
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<DT><SAMP>`-V'</SAMP>
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<DD>
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<DT><SAMP>`--version'</SAMP>
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<DD>
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Output version information and exit.
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</DL>
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<P>
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If input file is <SAMP>`-'</SAMP>, standard input is read. If output file
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is <SAMP>`-'</SAMP>, output is written to standard output.
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</P>
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<H2><A NAME="SEC34" HREF="gettext_toc.html#TOC34">The Format of GNU MO Files</A></H2>
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<P>
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The format of the generated MO files is best described by a picture,
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which appears below.
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</P>
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<P>
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The first two words serve the identification of the file. The magic
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number will always signal GNU MO files. The number is stored in the
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byte order of the generating machine, so the magic number really is
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two numbers: <CODE>0x950412de</CODE> and <CODE>0xde120495</CODE>. The second
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word describes the current revision of the file format. For now the
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revision is 0. This might change in future versions, and ensures
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that the readers of MO files can distinguish new formats from old
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ones, so that both can be handled correctly. The version is kept
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separate from the magic number, instead of using different magic
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numbers for different formats, mainly because <TT>`/etc/magic'</TT> is
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not updated often. It might be better to have magic separated from
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internal format version identification.
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</P>
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<P>
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Follow a number of pointers to later tables in the file, allowing
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for the extension of the prefix part of MO files without having to
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recompile programs reading them. This might become useful for later
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inserting a few flag bits, indication about the charset used, new
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tables, or other things.
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</P>
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<P>
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Then, at offset <VAR>O</VAR> and offset <VAR>T</VAR> in the picture, two tables
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of string descriptors can be found. In both tables, each string
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descriptor uses two 32 bits integers, one for the string length,
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another for the offset of the string in the MO file, counting in bytes
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from the start of the file. The first table contains descriptors
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for the original strings, and is sorted so the original strings
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are in increasing lexicographical order. The second table contains
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descriptors for the translated strings, and is parallel to the first
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table: to find the corresponding translation one has to access the
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array slot in the second array with the same index.
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</P>
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<P>
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Having the original strings sorted enables the use of simple binary
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search, for when the MO file does not contain an hashing table, or
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for when it is not practical to use the hashing table provided in
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the MO file. This also has another advantage, as the empty string
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in a PO file GNU <CODE>gettext</CODE> is usually <EM>translated</EM> into
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some system information attached to that particular MO file, and the
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empty string necessarily becomes the first in both the original and
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translated tables, making the system information very easy to find.
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</P>
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<P>
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The size <VAR>S</VAR> of the hash table can be zero. In this case, the
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hash table itself is not contained in the MO file. Some people might
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prefer this because a precomputed hashing table takes disk space, and
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does not win <EM>that</EM> much speed. The hash table contains indices
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to the sorted array of strings in the MO file. Conflict resolution is
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done by double hashing. The precise hashing algorithm used is fairly
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dependent of GNU <CODE>gettext</CODE> code, and is not documented here.
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</P>
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<P>
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As for the strings themselves, they follow the hash file, and each
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is terminated with a <KBD>NUL</KBD>, and this <KBD>NUL</KBD> is not counted in
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the length which appears in the string descriptor. The <CODE>msgfmt</CODE>
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program has an option selecting the alignment for MO file strings.
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With this option, each string is separately aligned so it starts at
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an offset which is a multiple of the alignment value. On some RISC
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machines, a correct alignment will speed things up.
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</P>
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<P>
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Nothing prevents a MO file from having embedded <KBD>NUL</KBD>s in strings.
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However, the program interface currently used already presumes
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that strings are <KBD>NUL</KBD> terminated, so embedded <KBD>NUL</KBD>s are
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somewhat useless. But MO file format is general enough so other
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interfaces would be later possible, if for example, we ever want to
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implement wide characters right in MO files, where <KBD>NUL</KBD> bytes may
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accidently appear.
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</P>
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<P>
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This particular issue has been strongly debated in the GNU
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<CODE>gettext</CODE> development forum, and it is expectable that MO file
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format will evolve or change over time. It is even possible that many
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formats may later be supported concurrently. But surely, we have to
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start somewhere, and the MO file format described here is a good start.
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Nothing is cast in concrete, and the format may later evolve fairly
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easily, so we should feel comfortable with the current approach.
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</P>
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<PRE>
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byte
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+------------------------------------------+
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0 | magic number = 0x950412de |
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4 | file format revision = 0 |
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8 | number of strings | == N
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12 | offset of table with original strings | == O
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16 | offset of table with translation strings | == T
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20 | size of hashing table | == S
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24 | offset of hashing table | == H
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. .
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. (possibly more entries later) .
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. .
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O | length & offset 0th string ----------------.
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O + 8 | length & offset 1st string ------------------.
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... ... | |
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O + ((N-1)*8)| length & offset (N-1)th string | | |
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T | length & offset 0th translation ---------------.
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T + 8 | length & offset 1st translation -----------------.
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... ... | | | |
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T + ((N-1)*8)| length & offset (N-1)th translation | | | | |
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H | start hash table | | | | |
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... ... | | | |
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H + S * 4 | end hash table | | | | |
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| NUL terminated 0th string <----------------' | | |
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| NUL terminated 1st string <------------------' | |
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... ... | |
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| NUL terminated 0th translation <---------------' |
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| NUL terminated 1st translation <-----------------'
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... ...
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+------------------------------------------+
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</PRE>
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<P><HR><P>
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<p>Go to the <A HREF="gettext_1.html">first</A>, <A HREF="gettext_5.html">previous</A>, <A HREF="gettext_7.html">next</A>, <A HREF="gettext_12.html">last</A> section, <A HREF="gettext_toc.html">table of contents</A>.
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</HTML>
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