forked from minhngoc25a/freetype2
360 lines
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HTML
360 lines
13 KiB
HTML
<!doctype html public "-//w3c//dtd html 4.0 transitional//en">
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<html>
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<head>
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<meta http-equiv="Content-Type" content="text/html; charset=iso-8859-1">
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<meta name="Author" content="David Turner">
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<meta name="GENERATOR" content="Mozilla/4.5 [fr] (Win98; I) [Netscape]">
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<title>FreeType 2 Internals - I/O Frames</title>
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</head>
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<body>
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<body text="#000000"
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bgcolor="#FFFFFF"
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link="#0000EF"
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vlink="#51188E"
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alink="#FF0000">
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<center>
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<h1>
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FreeType 2.0 Build System</h1></center>
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<center>
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<h3>
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© 2000 David Turner (<a href="fichier :///david@freetype.org">david@freetype.org</a>)<br>
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© 2000 The FreeType Development Team
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(<a href="mailto:devel@freetype.org">devel@freetype.org</a>)
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</h3></center>
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<p><br>
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<hr WIDTH="100%">
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<br>
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<h2>Introduction:</h2>
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<ul>
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This document describes the new build system that was introduced
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with FreeType 2.
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</ul>
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<p><hr><p>
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<h2>I. Features and Background:</h2>
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<ul>
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The FreeType 2 build system is a set of Makefiles and sub-Makefiles that
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are used to build the library on a very large variety of systems. To
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understand it properly, it must be noticed that:<p>
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<ul>
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<li>The build system is made of a <em>single Makefile</em>,
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dispatched over several directories with the help of the
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<tt>include</tt> directive. Technically speaking, it is
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composed of the top-level "<tt>freetype2/Makefile</tt>"
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which includes several other sub-Makefiles, whose extension
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is always "<tt>.mk</tt>". Examples are:<p>
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<ul>
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<tt>freetype2/config/freetype.mk</tt><br>
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<tt>freetype2/config/<em>system</em>/detect.mk</tt><br>
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<tt>freetype2/src/<em>module</em>/rules.mk</tt><br>
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etc..
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</ul>
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<p>
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<font size="+2" color="red">
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We <em>strongly</em> recommend the following article:<p>
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<center>
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<a href="http://www.pcug.org.au/~millerp/rmch/recu-make-cons-harm.html">
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Recursive Make Considered Dangerous
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</a>
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</center>
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</font>
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<p>
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To understand why such a layout was chosen.
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<p>
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<li>The build system works <em>exclusively</em> with
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<b>GNU Make</b>. Reason is that it is the only make utility
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that has all the features required to implement the build
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system as described below. Moreover, it is already ported
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to hundreds of various distinct platforms and is widely and
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freely available.
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<p>
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<em>You don't need a Unix-like shell on your platform</em>.
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For example, FreeType 2 already compiles on Unix, Dos, Windows
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and OS/2 right "out of the box" (assuming you have GNU Make
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installed).
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<p>
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Note that we have <em>no plans</em> to support a different
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make tool, as you'll rapidly understand by reading this
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document or looking at the Makefiles themselves.
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<p>
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</ul>
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<p>
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The build system features some important points, which are all detailed
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in the following sections:<p>
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<ul>
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<li><b>Automatic host platform detection</b><br>
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The first time the top <tt>Makefile</tt> is invoked, it will
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run a series of rules to detect your platform. It will then
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create a system-specific configuration sub-Makefile in the
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current directory, called <b><tt>config.mk</tt></b>. You can now
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invoke the top <tt>Makefile</tt> a second time to compile the
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library directly.
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<p>
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The configuration sub-makefile can be regenerated any time
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by invoking "<tt>make setup</tt>", which will re-run the
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detection rules even if a <tt>config.mk</tt> is already present.
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<p>
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<li><b>User-selectable builds</b><br>
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The system-specific <b><tt>config.mk</tt></b> created when
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running <tt>make</tt> for the first time contains various
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definitions, including compiler, compiler flags, object files
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directories, etc.. However, a given platform has often several
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compilers available, each with a different name and flags to be
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used. Rather than trying to detect the compiler in the build
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system, users can also specify which compiler they use when
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running <tt>make</tt>.
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<p>
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For example, on Win32 platforms:<p>
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<ul>
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<table>
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<tr valign="top">
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<td><b><tt>make setup</tt></b>
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<td>Will generate a <tt>config.mk</tt> that
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can be used to compile the library with
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<b><tt>gcc</tt></b> (<em>which is the default
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compiler for most supported platforms</em>).
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<tr valign="top">
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<td><b><tt>make setup visualc</tt></b>
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<td>Will generate a different <tt>config.mk</tt>
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that can be used to compile the library
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with the Visual C++ command-line compiler.
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<tr valign="top">
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<td><b><tt>make setup lcc</tt></b>
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<td>Will generate a different <tt>config.mk</tt>
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that can be used to compile the library
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with the Win32-LCC compiler.
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</table>
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</ul>
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<p>
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<li><b>Automatic detection of font drivers</b><br>
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FreeType is made of a "base" layer that invokes several
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separately-compiled modules. Each module is a given
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font driver, in charge of supporting a given font format.
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<p>
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The list of font drivers is located in the file
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"<tt>freetype2/config/<em>system</em>/ftmodule.h</tt>", however
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it can be regenerated on-demand. Adding a new module to the
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FreeType source tree is thus as easy as:<p>
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<ul>
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<li>create a new directory in "<tt>freetype2/src</tt>" and
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put the new driver's source code and sub-makefiles there.
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<p>
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<li>invoke the top <tt>Makefile</tt> with target
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"<tt>modules</tt>" (as in "<tt>make modules</tt>"),
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as this will automatically regenerate the list of
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available drivers by detecting the new directory and
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its content.
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</ul>
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<p>
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</ul>
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</ul>
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<p><hr><p>
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<h2>II. Host Platform Detection</h2>
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<ul>
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When the top-level <tt>Makefile</tt> is invoked, it looks for a
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file named <tt>config.mk</tt> in the current directory. If this
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file is found, it is used to build the library
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(see <a href="library">Section III</a>).
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<p>
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Otherwise, the file <tt>freetype2/config/detect.mk</tt> is included
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and parsed. Its purpose is to:<p>
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<ul>
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<li>Define the <tt>PLATFORM</tt> variable, which indicates
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what is the currently detected platform. It is initially
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set to the default value "<tt>ansi</tt>".
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<p>
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<li>It searches for a <tt>detect.mk</tt> file in all
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subdirectories of <tt>freetype2/config</tt>. Each such
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file is included and parsed. Each of these files must
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try to detect if the host platform is a system it knows
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about. If so, it changes the value of the <tt>PLATFORM</tt>
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accordingly.
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</ul>
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<p>
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This is illustrated by the following graphics :<p>
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<center>
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<img src="platform-detection.png" border=0>
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</center>
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<p>
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Note that each system-specific <tt>detect.mk</tt> is in charge
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of copying a valid configuration makefile to the current directory
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(i.e. the one where <tt>make</tt> was invoked), depending on the
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current targets. For example, the Win32 <tt>detect.mk</tt> will
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be able to detect a "<tt>visualc</tt>" or "<tt>lcc</tt>" target,
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as described in section I. Similarly, the OS/2 <tt>detect.mk</tt>
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can detect targets like "<tt>borlandc</tt>", "<tt>watcom</tt>"
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or "<tt>visualage</tt>", etc..
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</ul>
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<p><hr><p>
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<h2>III. Building the library</h2>
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<ul>
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When the top-level <tt>Makefile</tt> is invoked and that it finds
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a <tt>config.mk</tt> file in the current directory, it defines
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the variable <tt>BUILD_FREETYPE</tt>, then includes and parses the
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configuration sub-makefile.
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<p>
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The latter defines a number of important variables that describe
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the compilation process to the build system. Among other things:<p>
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<ul>
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<li>the extension to be used for object files and library files
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(i.e. <tt>.o</tt> and <tt>.a</tt> on Unix, <tt>.obj</tt>
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and <tt>.lib</tt> on Dos-Windows-OS/2, etc..).
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<p>
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<li>the directory where all object files will be stored
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(usually <tt>freetype2/obj</tt>), as well as the one
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containing the library file (usually the same as for
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objects).
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<p>
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<li>the command line compiler, and its compilation flags for
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indicating a new include path (usually "<tt>-I</tt>"),
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a new macro declaration (usually "<tt>-D</tt>") or
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the target object file (usually "<tt>-o </tt>")
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</ul>
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<p>
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Once these variable are defined, <tt>config.mk</tt> test for the
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definition of the <tt>BUILD_FREETYPE</tt> variable. If it exists,
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the makefile then includes "<tt>freetype2/config/freetype.mk</tt>"
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which contains the rules required to compile the library.
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<p>
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Note that <tt>freetype.mk</tt> also scans the subdirectories of
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"<tt>freetype2/src</tt>" for a file called "<tt>rules.mk</tt>".
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Each <tt>rules.mk</tt> contains, as it names suggests, the rules
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required to compile a given font driver or module.
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<p>
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Once all this parsing is done, the library can be compiled. Usually,
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each font driver is compiled as a standalone object file (e.g.
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<tt>sfnt.o</tt>, <tt>truetype.o</tt> and <tt>type1.o</tt>).
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<p>
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This process can be illustrated by the following graphics:<p>
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<center>
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<img src="library-compilation.png" border=0>
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</center>
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<p>
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</ul>
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<p><hr><p>
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<h2>IIV. Managing the list of modules</h2>
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<ul>
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The makefile <tt>freetype.mk</tt> only determines how to compile
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each one of the modules that are located in the sub-directories of
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<tt>freetype2/src</tt>.
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<p>
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However, when the function <tt>FT_Init_FreeType</tt> is invoked at
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the start of an application, it must create a new <tt>FT_Library</tt>
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object, and registers all <em>known</em> font drivers to it by
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repeatly calling <tt>FT_Add_Driver</tt>.
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<p>
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The list of <em>known</em> drivers is located in the file
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"<tt>freetype2/config/<em>system</em>/ftmodule.h</tt>", and is used
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exclusively by the internal function <tt>FT_Default_Drivers</tt>. The
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list in <tt>ftmodule.h</tt> must be re-generated each time you add
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or remove a module from <tt>freetype2/src</tt>.
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<p>
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This is normally performed by invoking the top-level <tt>Makefile</tt>
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with the <tt>modules</tt> target, as in:<p>
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<ul>
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<tt>make modules</tt>
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</ul>
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<p>
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This will trigger a special rule that will re-generate
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<tt>ftmodule.h</tt>. To do so, the Makefile will parse all module
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directories for a file called "<tt>module.mk</tt>". Each
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<tt>module.mk</tt> is a tiny sub-Makefile used to add a single
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module to the driver list.
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<p>
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This is illustrated by the following graphics:<p>
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<center>
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<img src="drivers-list.png" border=0>
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</center>
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<p>
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Note that the new list of modules is displayed in a very human-friendly
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way after a "<tt>make modules</tt>". Here's an example with the current
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source tree (on 11 Jan 2000):<p>
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<ul><pre>
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Regenerating the font drivers list in ./config/unix/ftmodule.h
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* driver: sfnt ( pseudo-driver for TrueType & OpenType formats )
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* driver: truetype ( Windows/Mac font files with extension *.ttf or *.ttc )
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* driver: type1 ( Postscript font files with extension *.pfa or *.pfb )
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-- done --
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</pre></ul>
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</ul>
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<p><hr><p>
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<h2>V. Building the demonstration programs</h2>
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<ul>
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Several demonstration programs are located in the
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"<tt>freetype2/demos</tt>" directory hierarchy. This directory also
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includes a tiny graphics sub-system that is able to blit glyphs to
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a great variety of surfaces, as well as display these in various
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graphics libraries or windowed environments.
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<p>
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This section describes how the demonstration programs are compiled,
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using the configuration <tt>freetype2/config.mk</tt> and their own
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<tt>freetype2/demos/Makefile</tt>.
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<p>
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To compile the demonstration programs, <em>after the library</em>,
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simply go to <tt>freetype2/demos</tt> then invoke GNU make with no
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arguments.
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<p>
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The top-level Makefile will detect the <tt>config.mk</tt> in the
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<em>upper</em> directory and include it. Because it doesn't define
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the <tt>BUILD_FREETYPE</tt> variable, this will not force the
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inclusion of <tt>freetype2/config/freetype.mk</tt> as described in
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the previous section.
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<p>
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the <tt>Makefile</tt> will then include the makefile called
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"<tt>freetype2/demos/graph/rules.mk</tt>". The graphics <tt>rules.mk</tt>
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defines the rules required to compile the graphics sub-system.
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<p>
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Because the graphics syb-system is also designed modularly, it is able
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to use any number of "modules" to display surfaces on the screen.
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The graphics modules are located in the subdirectories of
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<tt>freetype2/demos/config</tt>. Each such directory contains a file
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named <tt>rules.mk</tt> which is in charge of:<p>
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<ul>
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<li>detecting wether the corresponding graphics library is
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available at the time of compilation.
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<p>
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<li>if it is, alter the compilation rules to include the graphics
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module in the build of the <tt>graph</tt> library.
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</ul>
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<p>
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When the <tt>graph</tt> library is built in <tt>demos/obj</tt>, the
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demonstration programs executables are generated by the top-level
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Makefile.
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<p>
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This is illustrated by the following graphics:<p>
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<center>
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<img src="demo-programs.png" border="0">
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</center>
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</ul>
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<p><hr>
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