mirror of https://github.com/acidanthera/audk.git
616 lines
27 KiB
Plaintext
616 lines
27 KiB
Plaintext
Intel(R) Platform Innovation Framework for EFI
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EFI Development Kit II (EDK II)
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Root Package 1.00
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2006-07-18
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Intel is a trademark or registered trademark of Intel Corporation or its
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subsidiaries in the United States and other countries.
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* Other names and brands may be claimed as the property of others.
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Copyright (c) 2006, Intel Corporation
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This document provides updates to documentation, along with a description on
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how to install and build the EDK II.
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Package Contents
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----------------
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ReleaseNote.txt- These release notes for the package.
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MdePkg - Industry-standard headers and libraries
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Tools - Build -specific tools that are designed to help the
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developer create and modify drivers and libraries
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EdkModulePkg - Reference drivers
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EdkFatBinPkg - Binary DXE drivers for the Fat 32 file system
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EdkShellBinPkg - Binary Shell applications and commands
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EdkNt32Pkg - NT32 Emulation platform reference
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Note: MDE and MDK that appear in other documentation refer to the MdePkg and
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Tools packages, respectively. While, these two packages are the minimum
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requirement for developing EDK II Packageswe recommend that you download all
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of the top-level files listed above.
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The following package is available as a separate project, under a separate
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license, on the TianoCore.org website: https://fat-driver2.tianocore.org
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EdkFatPkg - A package containing source DXE drivers for the Fat 32 file
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system
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Documents have the following filenames (to download these documents, see “Notes
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on Documentation” later in these Release Notes):
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EDK II Module Development Environment Library Specification, v0.58
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(MDE_Library_Spec_0_58.rtf)
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EDK II Build and Packaging Architecture Specification, v0.53
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(Build_Packaging_Spec_0_53.rtf)
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EDK II Platform Configuration Database Infrastructure Description, v0.54
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(PCD_Infrastructure_0_54.rtf)
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EDK II Module Surface Area Specification, v0.51
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(Module_Surface_Area_0_50.rtf)
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EDK II Module Development Environment Package Specification, v0.51
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(MDE_Package_Spec_0_51.rtf)
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EDK II C Coding Standards Specification v0.51
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(C_Coding_Standards_Specification_ 0_51.rtf)
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EDK II Subversion Setup Guide
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(edk2-subversion-setup.rtf)
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Pre-Requisites
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--------------
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The following list of tools must be installed on the development workstation
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prior to using the EDK II.
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Compiler Tool Chain
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Microsoft* Visual Studio .NET 2003* (http://www.microsoft.com)
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or
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A special GCC version 4.x or later (http://gcc.gnu.org). See below.
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Assembler Tool Chain
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Microsoft Macro Assembler, version 6.15 or later
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or
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GNU binutils 2.16.1 or later
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Java Development Kit ( Java 5.0 or later)
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Sun* jdk-1.5.0_06 or later (http://java.sun.com)
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or
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Bea Systems* jrockit-25.2.0-jdk1.5.0_03 or later (http://www.bea.com)
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Java Tools
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Apache-ANT, version 1.6.5 or later (http://ant.apache.org)
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Ant-contrib, version 1.0b2 or later
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(http://prdownloads.sourceforge.net/ant-contrib/ant-contrib-1.0b2-bin.zip?download)
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Saxon8, version 8.1.1
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(http://prdownloads.sourceforge.net/saxon/saxonb8-1-1.zip?download)
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XMLBeans, version 2.1.0 (http://xmlbeans.apache.org)
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DO NOT download the latest XMLBeans, version 2.2.0. It is not compatible
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with Saxon8, version 8.1.1.
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Other Tools
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TortoiseSVN version 1.3.3. (http://tortoisesvn.tigris.org/)
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Optional Tools
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--------------
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Compiler Tool Chains:
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Intel(R) C++ Compiler for Windows*, ver. 9.0 or later (http://www.intel.com)
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Intel(R) C Compiler for EFI Byte Code, ver. 1.2 or later
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(http://www.intel.com/cd/software/products/asmo-na/eng/compilers/efibc/index.htm)
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Microsoft Driver Development Kit, version 3790.1830 or later
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(http://www.microsoft.com/whdc/devtools/ddk/orderddkcd.mspx)
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Microsoft ACPI Source Language Assembler, Version 1.0.13NT or later
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Intel ACPI Component Architecture, version 20060113
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-----------------------------------------------
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Notes on Required Tools (Source Control System)
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-----------------------------------------------
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The EDK II is being managed by the Subversion Source Control on Tianocore.org.
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Subversion provides speed, security, and additional features. The
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recommended client is TortoiseSVN version 1.3.3.
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(Available at http://tortoisesvn.tigris.org/)
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The checkout procedures on the Tianocore.org Web site include
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instructions for the use of Subversion Source Control.
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The URL of the EDK II repository is:
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https://edk2.tianocore.org/svn/edk2/trunk/edk2
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--------------------------------------------------------------------
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Notes On Required Tools (With examples for Windows, OS X, and Linux*)
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--------------------------------------------------------------------
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Software Installation Order:
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After installing the compiler tools and your Subversion client, install the
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following required tools in this order:
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1. Java JDK
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2. Apache-Ant
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3. ant-contrib
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4. xmlbeans
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5. saxon8
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Java Development Kit:
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The Java Environment Variable must be set before attempting to build.
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For Sun JDK (see note below†):
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set JAVA_HOME=c:\Java\jdk1.5.0_06 (Windows example)
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export JAVA_HOME=/Library/Java/Home/ (OS X example)
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export JAVA_HOME=/usr/lib/j2sdk1.5-sun/ (Linux example)
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For Bea Systems:
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set JAVA_HOME=c:\Java\jrockit-R26.0.0-jdk1.5.0_04
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† When using the Sun JDK5.0:
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During installation, you should specify the install directory as C:\Java
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instead of C:\Program Files\(or some other drive letter.) While installing
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to this non-standard location is not required, in practice, it seems to work
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more reliably.
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For the JDK, the install path is C:\Java\jdk1.5.0_06
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For the JRE, the install path is C:\Java\jre1.5.0_06
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Alternatively, you can specify C:\sunjavajdk and C:\sunjavajre.
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NOTE: You cannot combine the location for the JDK and the JRE, because the
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JRE install removes most of the binaries and libraries installed by the JDK
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install.
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Java Tools:
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The Apache-ANT requires the ANT_HOME environment variable to be set before
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attempting to build:
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set ANT_HOME=c:\<full path to where ant was installed>
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export ANT_HOME=~/ExternalTools/apache-ant (OS X and Linux example)
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The ant-contrib.jar file should be installed in the %ANT_HOME%\lib
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directory.
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XMLBeans, requires the XMLBEANS_HOME environment variable to be set
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before attempting to build:
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set XMLBEANS_HOME=C:\<full path to where xmlbeans was installed>
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export XMLBEANS_HOME=~/ExternalTools/xmlbeans (OS X and Linux example)
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Copy the saxon8.jar file to the %XMLBEANS_HOME%\lib directory.
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The Ant and XMLBean tools must be in the path.
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MS system example:
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set PATH=%PATH%;%ANT_HOME%\bin;%XMLBEANS_HOME%\bin
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Linux/OS X bash shell example:
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export PATH=$PATH:${ANT_HOME}/bin:${XMLBEANS_HOME}/bin
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--------------------
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A Word on Apache-ANT
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--------------------
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The Apache-ANT program is a build tool that uses XML-based project files.
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Similar to Makefiles, these project files may contain multiple targets. Most
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build.xml files in EDK II are auto-generated; any edits performed on the
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build.xml files will be overwritten by the next build.
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Pre-defined targets in the build.xml file include:
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all - This target builds binaries for defined architectures.
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clean - This target removes object files generated by commands.
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cleanall - This target removes all generated files and directories.
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----------------------------
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A Word on the GCC Tool Chain
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----------------------------
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EDK II will not compile with a standard Linux gcc tool chain. While Linux
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distributions are usually based on ELF, EDK II requires a version of gcc
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that is configured to produce PE-COFF images. You will find a script in
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edk2/Tools/gcc that will download, configure, compile, and install a gcc
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4.X cross-compile tool chain for EDK II development. This custom tool chain
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supports the IA-32 architecture. It can be built and run on Cygwin, Linux, and
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many other POSIX-compliant host operating environments. To compile the custom
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gcc tool chain, you need the following tools on your host computer: bash, gcc,
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gmake, curl (or wget).
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Only the MdePkg and EdkModulePkg are currently supported by gcc builds. Other
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builds, such as the EdkNt32Pkg, will not compile with gcc. By default, the edk2
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will try to build the NT32.fpd, which is not supported by gcc. So, you need to
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change the Tools/Conf/target.txt.
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The platform to be built is identified by the Tools/Conf/target.txt file:
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#
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# PROPERTY Type Use Description
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# ---------------- -------- -------- -----------------------------------------------------------
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# ACTIVE_PLATFORM Filename Recommended Specify the WORKSPACE relative Path and Filename
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# of the platform FPD file that will be used for the build
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# This line is required if and only if the current working
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# directory does not contain one or more FPD files.
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ACTIVE_PLATFORM =
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You can leave it black, as above, or set it to any .fpd file in the workspace.
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If you leave it blank, then you just cd to the dir that contains the .fpd that
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you would like to build (MdePkg/ or EdkModulePkg/) and then type build.
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----------------------------
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A Word on compiling on Linux
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----------------------------
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In order to compile on Linux, you will need to have the e2fsprogs-dev package
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installed. Check your distribution for the rpm, deb or other package format.
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This package contains the uuid library and header that are used by some of the
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host tools.
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If you are running on x86_64 Linux, then you should install a 64 bit version of
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the Java JDK. The version that was used was jdk-1_5_0_07-linux-amd64-rpm.bin.
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It may be downloaded from sun.com.
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-----------------------------------------
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A Word on compiling under Cygwin with gcc
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-----------------------------------------
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Cygwin is a POSIX style operating environment for Windows. It is possible to
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compile the EDK 2 using gcc and cygwin. There are a few extra steps necessary
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to make this happen. There is a JNI (Java Native Interface) library in the
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Tools. In order to compile this under Cygwin, the 'linux' java headers must be
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installed to the $JAVA_HOME dir on the windows system. To accomplish this, you
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must install the JDK on a linux system, and then copy
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linux:$JAVA_HOME/include/linux/ to windows:$JAVA_HOME/include. These are really
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typedefs needed by gcc.
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Compiling under cygwin is slow, because the underlying file accesses are slow
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in cygwin. For this reason, we do not encourage the use of cygwin. A true unix
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system will be a superior choice for those wishing to compile with gcc.
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Make sure that you select the e2fsprogs development package when you install
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cygwin. It is necessary for the GenFvImage tool.
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-----------------------
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Notes on Documentation
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-----------------------
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The documents are being managed by the Subversion Source Control on
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Tianocore.org. The document repository is "docs" and must be checked out
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separately from the EDK II source tree. Refer to the checkout procedures on
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the Tianocore.org Web site for EDK II.
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The URL of the document repository is:
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https://edk2.tianocore.org/svn/edk2/trunk/docs
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-------------------------------------------------------------------------------
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Quick Start
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-----------
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(assumes Microsoft Tools and OS environment, for GCC Tools or Linux, see
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"Detailed Starting Instructions" below)
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Follow the instructions at https://edk2.tianocore.org/servlets/ProjectSource to
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check out the entire EDK II source tree.
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In a command window, change to the top-level directory of the EDK II source.
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To test your tool chain setup and to build the supplied tools, execute:
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c:\MyWork\edkii\> edksetup ForceRebuild
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(The edksetup script is referred to as the setup command throughout the
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rest of this document.)
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NOTE: You should run the setup command at the start of every session.
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This configures the environment to include the TianoTools and the
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Java applications and libraries.
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You will need to set the WORKSPACE environment variable, or run the edksetup
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script (without any arguments), any time you want to build.
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Set the WORKSPACE environment variable, e.g.:
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c:\> set WORKSPACE=C:\MyWork\edkii
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You may need to edit the text files Tools/Conf/target.txt and
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Tools/Conf/tools_def.txt (created by edksetup) using your favorite
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text editor to ensure that the paths to the tools you want to use
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to build EDK II binaries are correct. These files contain the default
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paths (as per the default installation of the tools), so a customized
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install may require this manual process.
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Once this is completed, you are ready to test the build, by executing:
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c:\MyWork\edkii\> build
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This command builds the active platform specified in text file target.txt. If
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the active platform is not specified target.txt, you must execute the build
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command from the sub-directory that contains FPD files. For more information
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about the active platform policy, see the “EDK II Build and Packaging
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Architecture Specification.”
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-------------------------------------------------------------------------------
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Detailed Starting Instructions
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------------------------------
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Follow the instructions at https://edk2.tianocore.org/servlets/ProjectSource to
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check out the entire EDK II source tree.
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In a command window, change to the top-level directory of the EDK II source.
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If the active compiler tool chain is GCC, you must set the
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environment variable, TOOL_CHAIN to "gcc" before running the
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edksetup script. Example: export TOOL_CHAIN=gcc
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To test your tool chain setup and to build the supplied tools, execute:
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c:\MyWork\edkii\> edksetup ForceRebuild
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On Linux systems, you must source the edksetup.sh file to load the correct
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settings into your shell.
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. edksetup.sh # Note the dot.
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If you have recently updated your code from subversion, the tools will need to
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be rebuilt if there were any code changes made to them. You can request that
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the tools get rebuilt by typing:
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. edksetup.sh Rebuild # Unix-like systems
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edksetup.bat Rebuild # Windows
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The edksetup script is referred to as the setup command throughout the
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rest of this document.
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NOTE: You should run the setup command at the start of every session.
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This configures the environment to include the TianoTools and the
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Java applications and libraries.
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Any changes to the tool source code or XML Schema documents require that
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you execute the following:
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c:\MyWork\edkii\> edksetup ForceRebuild
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You must set the WORKSPACE environment variable, or run the edksetup
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script (without any arguments), any time you want to build.
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Set the WORKSPACE environment variable, e.g.:
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c:\> set WORKSPACE=C:\MyWork\edkii
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You may need to edit the text files Tools/Conf/target.txt and
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Tools/Conf/tools_def.txt (created by edksetup) using your favorite
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text editor to ensure that the paths to the tools you want to use
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to build EDK II binaries are correct. These files contain the default
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paths (as per the default installation of the tools), so a customized
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tool installation may require this manual process.
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Once this is completed, you are ready to test the build, by executing:
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c:\MyWork\edkii\> build
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This command builds the active platform specified in text file target.txt. If
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the active platform is not specified, go to the sub-directory that contains FPD
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files and execute the build command. For more information about the active
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platform policy, see the “EDK II Build and Packaging Architecture
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Specification.”
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--------------------------
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Individual Platform Builds
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--------------------------
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After running the setup command, you can build individual platforms.
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In the command window:
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Set the active platform in target.txt, and execute this command:
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c:\<directory>\> build
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or
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cd to the platform (FPD file) that you want to build and execute this command:
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c:\MyWork\edkii\EdkNt32Pkg\> build
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Note that the active platform specified in target.txt overrides the platform
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specified by any FPD file in the current directory. For more information
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about active platform policy, see the “EDK II Build and Packaging Architecture
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Specification.”
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To run the Nt32 emulation platform under Microsoft Windows, go to
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<full build path>\DEBUG\MSFT\IA32 and execute SecMain.exe
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To exit the Nt32 emulation platform, type “reset” at the EFI Shell>
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command prompt. Alternatively, from the graphical interface, select the Boot
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Maintenance Manager's “Reset System” command.
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NOTE: When creating a new platform, the Platform Name is restricted
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to a single word containing alphanumeric characters, underscore, dash,
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and period. The space character and other special characters are
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not allowed.
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-----------------------
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Notes on Symbolic Debug
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-----------------------
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To enable EFI Symbolic Debugging, make sure the target output is set to DEBUG
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in the text file Tools/Conf/target.txt and then modify the FPD <BuildOptions>
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<Options><Option BuildTargets="DEBUG" ToolCode="CC"> and append the following
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compiler options to the string:
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"/D EFI_GENERATE_SYM_FILE", "/D EFI_SYMBOLIC_DEBUG"
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(If the Option line does not contain "/D EFI_DEBUG", you must add that
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option as well.)
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------------------------
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Individual Module Builds
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------------------------
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After running the setup command, you can build individual modules.
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In the command window, cd to the module that you want to build, and
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execute the build command:
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c:\MyWork\edkii\MdePkg\Library\BaseLib\> build
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You must set the active platform in target.txt for individual module builds.
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-------------------------------------------------------------------------------
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General Information:
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===============================================================
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Mechanisms
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----------
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A brief overview:
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A) The Surface Area Package Description (SPD) file contains information about
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the modules that the package contains, including the location of all MSA files,
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and public library names and headers that might be provided by a module in the
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package. Packages are defined by SPD files. (Found in the root of the Package
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subdirectory (i.e. EdkNt32Pkg).) The SPD file is further explained in “EDK II
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Build and Packaging Architecture Specification.”
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B) Module Surface Area Definition (MSA) files. A description of a module's
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surface area, with all module specific default flags and features specified.
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For additional details, see the "EDK II Module Surface Area Specification" and
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the "EDK II Build and Packaging Architecture Specification."
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C) Framework Platform Description (FPD) files. A description of a platform's
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surface are, including a list of modules that are needed by the platform. To
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support individual module builds, developers are not required to provide
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information about specific flash devices, nor flash device layout.
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Specific sections in the FPD file control aspects of the build, such
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as the Supported Architectures and Build Targets, as well as the tool flags
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that are used to create the binary files. A valid platform file can specify
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zero or more modules, so individual modules can be compiled within the context
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of a platform (FPD) definition.
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D) Platform Configuration Database (PCD). A platform database that contains a
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variety of current platform settings or directives that can be accessed by a
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driver or application. The PCD is defined by the PCD_Protocol (This is
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further explained in the "EDK II Platform Configuration Database Infrastructure
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Description."
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E) Library Class. A library class is a logical grouping of similar functions.
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When developing components, the module surface area declares the class of
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libraries that can be used by the component. The MSA and SPD files can specify
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a recommended instance of the library that a platform integrator (PI) may
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select, however this is only a recommendation. The PI may choose to select a
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different library instance to be used during compilation and linking. All
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library type modules must include header files in their distribution package,
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as well as their MSA files. Components, on the other hand, need provide only an
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MSA file and either source or binary files when distributing packages. The
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Library Classes are further explained in the "EDK II Build and Packaging
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Architecture Specification."
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=========================================================================
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The common operations by developers of new modules are:
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-----------------------------------------------
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1) Manually creating a new module in a package:
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- The module source code must first be created in an appropriate directory
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(under the package the module is to be a part of.)
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- An MSA file must be created, spelling out all aspects of the module.
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- The MSA must be added to the SPD for the package to include the module.
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-----------------------------------------------------
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2) Adding and Removing modules to and from a package:
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- Set up environment as Build
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- Adding a module to a package:
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- Generate the MSA file
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- Add a new <Filename> element under <MsaFiles> into
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<PackageDir>\<PackageName>.spd, using arelative path to the package
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- Add a new <ModuleSA> entry under each <FrameworkModules> into the
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<PackageDir>\<PackageName>.fpd file if necessary.
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- Removing a module from a package:
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- Comment out or remove the corresponding <Filename> element under
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<MsaFiles> from <PackageDir>\<PackageName>.spd
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- Comment out or remove the corresponding <ModuleSA> entry under each
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<FrameworkModules> from <PackageDir>\<PackageName>.fpd if necessary.
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-------------------------------
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3) Manually creating a package:
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- Identify the modules that are to be members of the project.
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- Identify the Variables and Guids required in and of the Package (including
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consumption and production information).
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- Create an SPD file defining these modules and calling out their MSA files.
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- Add a new <Filename> element under <PackageList> into
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Tools\Conf\FrameworkDatabase.db, using the relative path to the workspace.
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-----------------------------------------
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4) Declaring a new Protocol in a package:
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- This release requires manual editing of the SPD file, adding the protocol
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to the ProtocolDeclarations section of the file.
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- Add the Protocol .h file to the Include\Protocol directory.
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- Add an <Entry> to the <ProtocolDeclarations> element in the
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<PackageName>.spd file
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- Each line contains Protocol base name, followed by the global variable
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name, and the hex value of the Protocol GUID.
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Example Protocol Entries (NOTE: The Guid entry is a single line in the SPD
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file):
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<ProtocolDeclarations>
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<Entry Name="Bds">
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<C_Name>gEfiBdsArchProtocolGuid</C_Name>
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<GuidValue>665E3FF6-46CC-11D4-9A38-0090273FC14D</GuidValue>
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<HelpText/>
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</Entry>
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<Entry Name="Cpu">
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<C_Name>gEfiCpuArchProtocolGuid</C_Name>
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<GuidValue>26BACCB1-6F42-11D4-BCE7-0080C73C8881</GuidValue>
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<HelpText/>
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</Entry>
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</ProtocolDeclarations>
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------------------------------------
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5) Declaring a new PPI in a package:
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- This release requires manual editing of the SPD file
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- Add the PPI .h file to the Include\Ppi directory.
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- Add an <Entry> to the package <PpiDeclarations> element in the
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<PackageName>.spd file
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- Each line contains the PPI base name, followed by the global variable
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name and the hex value of the PPI GUID.
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Example Ppi Entries (NOTE: The Guid entry is a single line in the SPD file):
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<PpiDeclarations>
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<Entry Name="BootInRecoveryMode">
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<C_Name>gEfiPeiBootInRecoveryModePpiGuid</C_Name>
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<GuidValue>17EE496A-D8E4-4B9A-94D1-CE8272300850</GuidValue>
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<HelpText/>
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</Entry>
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<Entry Name="CpuIo">
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<C_Name>gEfiPeiCpuIoPpiInServiceTableGuid</C_Name>
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<GuidValue>E6AF1F7B-FC3F-46DA-A828-A3B457A44282</GuidValue>
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<HelpText/>
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</Entry>
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</PpiDeclarations>
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-------------------------------------
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6) Declaring a new GUID in a package:
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- This release requires manual editing of the SPD file to include the new
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Guid. This is identical to adding a ProtocolDeclaration or PpiDeclaration
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element, as described above.
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------------------------------------------
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7) Declaring a new PCD entry in a package:
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- This release requires manual editing of the SPD file to include the new
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PCD. New Pcd entries are added to the PcdDefinitions section of the
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<PackageName>.spd file using the following example for the format
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(NOTE: The hex <Token> value must be unique):
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<PcdDeclarations>
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<PcdEntry ItemType="FIXED_AT_BUILD">
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<C_Name>PcdMaximumUnicodeStringLength</C_Name>
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<Token>0x00000001</Token>
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<TokenSpaceGuidCName>gEfiMdePkgTokenSpaceGuid</TokenSpaceGuidCName>
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<DatumType>UINT32</DatumType>
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<ValidUsage>FIXED_AT_BUILD</ValidUsage>
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<DefaultValue>1000000</DefaultValue>
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<HelpText>The maximum lengh for unicode string.</HelpText>
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</PcdEntry>
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</PcdDeclarations>
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------------------------------
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8) Declaring a new Library Class:
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- This release requires manual editing of the SPD file to include the new
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Library Class. New Library Class entries are added to the
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LibraryClassDeclarations section of the <PackageName>.spd file using
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the following example for the format:
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<LibraryClassDeclarations>
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<LibraryClass Name="BaseLib">
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<IncludeHeader>Include/Library/BaseLib.h</IncludeHeader>
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<HelpText/>
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</LibraryClass>
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<LibraryClass Name="BaseMemoryLib">
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<IncludeHeader>Include/Library/BaseMemoryLib.h</IncludeHeader>
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<HelpText/>
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</LibraryClass>
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</LibraryClassDeclarations>
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=======================================================
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EDK II Changes Relative to the original EDK:
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--------------------------------------------
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The EDK II represents significant changes in the structure of the EDK.
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Therefore, it is very difficult to isolate all of the changes of this version of
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the EDK with the original EDK.
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Of particular note:
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1) EDK II contains new hardware feature support for the ICH SMBUS Libraries.
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These libraries are provided to make Memory Reference Code (MRC) development
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easier.
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2) The MDE libraries represent significant changes in source
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(with only limited changes in functionality.) These new libraries conform
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to the "EDK II Module Development Environment Library Specification.”
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3) The Fat Binary and the EDK Shell Binary Packages are functionally identical
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to the original EDK.
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4) The EDK tools directory has been expanded to include more tools and more
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tool functionality.
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5) The EDK NT32 section has been ported to the new build process, but
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functionally remains the same as the original EDK.
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6) The Application "HelloWorld" has been ported to EDK II as well.
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=======================================================
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Virus scanned by McAfee VirusScan Enterprise 8.0.0, Virus Definitions 4718, no
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virus detected.
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