1==================================== 2Getting Started with the LLVM System 3==================================== 4 5.. contents:: 6 :local: 7 8Overview 9======== 10 11Welcome to the LLVM project! In order to get started, you first need to know 12some basic information. 13 14First, the LLVM project has multiple components. The core of the project is 15itself called "LLVM". This contains all of the tools, libraries, and header 16files needed to process an intermediate representation and convert it into 17object files. It contains an assembler, disassembler, bitcode analyzer and 18bitcode optimizer. It also contains basic regression tests. 19 20Another piece is the `Clang <http://clang.llvm.org/>`_ front end. This 21component compiles C, C++, Objective C, and Objective C++ code into LLVM bitcode 22-- and from there into object files, using LLVM. 23 24There are other components as well: 25the `libc++ C++ standard library <https://libcxx.llvm.org>`_, 26the `LLD linker <https://lld.llvm.org>`_, and more. 27 28Getting Started Quickly (A Summary) 29=================================== 30 31The LLVM Getting Started documentation may be out of date. So, the `Clang 32Getting Started <http://clang.llvm.org/get_started.html>`_ page might also be a 33good place to start. 34 35Here's the short story for getting up and running quickly with LLVM: 36 37#. Read the documentation. 38#. Read the documentation. 39#. Remember that you were warned twice about reading the documentation. 40 41#. Checkout LLVM (including related subprojects like Clang): 42 43 * ``git clone https://github.com/llvm/llvm-project.git`` 44 * Or, on windows, ``git clone --config core.autocrlf=false 45 https://github.com/llvm/llvm-project.git`` 46 47#. Configure and build LLVM and Clang:. 48 49 * ``cd llvm-project`` 50 * ``mkdir build`` 51 * ``cd build`` 52 * ``cmake -G <generator> [options] ../llvm`` 53 54 Some common generators are: 55 56 * ``Ninja`` --- for generating `Ninja <https://ninja-build.org>`_ 57 build files. Most llvm developers use Ninja. 58 * ``Unix Makefiles`` --- for generating make-compatible parallel makefiles. 59 * ``Visual Studio`` --- for generating Visual Studio projects and 60 solutions. 61 * ``Xcode`` --- for generating Xcode projects. 62 63 Some Common options: 64 65 * ``-DLLVM_ENABLE_PROJECTS='...'`` --- semicolon-separated list of the LLVM 66 subprojects you'd like to additionally build. Can include any of: clang, 67 clang-tools-extra, libcxx, libcxxabi, libunwind, lldb, compiler-rt, lld, 68 polly, or debuginfo-tests. 69 70 For example, to build LLVM, Clang, libcxx, and libcxxabi, use 71 ``-DLLVM_ENABLE_PROJECTS="clang;libcxx;libcxxabi"``. 72 73 * ``-DCMAKE_INSTALL_PREFIX=directory`` --- Specify for *directory* the full 74 pathname of where you want the LLVM tools and libraries to be installed 75 (default ``/usr/local``). 76 77 * ``-DCMAKE_BUILD_TYPE=type`` --- Valid options for *type* are Debug, 78 Release, RelWithDebInfo, and MinSizeRel. Default is Debug. 79 80 * ``-DLLVM_ENABLE_ASSERTIONS=On`` --- Compile with assertion checks enabled 81 (default is Yes for Debug builds, No for all other build types). 82 83 * Run your build tool of choice! 84 85 * The default target (i.e. ``ninja`` or ``make``) will build all of LLVM. 86 87 * The ``check-all`` target (i.e. ``ninja check-all``) will run the 88 regression tests to ensure everything is in working order. 89 90 * CMake will generate build targets for each tool and library, and most 91 LLVM sub-projects generate their own ``check-<project>`` target. 92 93 * Running a serial build will be *slow*. Make sure you run a parallel 94 build. That's already done by default in Ninja; for ``make``, use 95 ``make -j NNN`` (with an appropriate value of NNN, e.g. number of CPUs 96 you have.) 97 98 * For more information see `CMake <CMake.html>`_ 99 100 * If you get an "internal compiler error (ICE)" or test failures, see 101 `below`_. 102 103Consult the `Getting Started with LLVM`_ section for detailed information on 104configuring and compiling LLVM. Go to `Directory Layout`_ to learn about the 105layout of the source code tree. 106 107Requirements 108============ 109 110Before you begin to use the LLVM system, review the requirements given below. 111This may save you some trouble by knowing ahead of time what hardware and 112software you will need. 113 114Hardware 115-------- 116 117LLVM is known to work on the following host platforms: 118 119================== ===================== ============= 120OS Arch Compilers 121================== ===================== ============= 122Linux x86\ :sup:`1` GCC, Clang 123Linux amd64 GCC, Clang 124Linux ARM GCC, Clang 125Linux PowerPC GCC, Clang 126Solaris V9 (Ultrasparc) GCC 127FreeBSD x86\ :sup:`1` GCC, Clang 128FreeBSD amd64 GCC, Clang 129NetBSD x86\ :sup:`1` GCC, Clang 130NetBSD amd64 GCC, Clang 131macOS\ :sup:`2` PowerPC GCC 132macOS x86 GCC, Clang 133Cygwin/Win32 x86\ :sup:`1, 3` GCC 134Windows x86\ :sup:`1` Visual Studio 135Windows x64 x86-64 Visual Studio 136================== ===================== ============= 137 138.. note:: 139 140 #. Code generation supported for Pentium processors and up 141 #. Code generation supported for 32-bit ABI only 142 #. To use LLVM modules on Win32-based system, you may configure LLVM 143 with ``-DBUILD_SHARED_LIBS=On``. 144 145Note that Debug builds require a lot of time and disk space. An LLVM-only build 146will need about 1-3 GB of space. A full build of LLVM and Clang will need around 14715-20 GB of disk space. The exact space requirements will vary by system. (It 148is so large because of all the debugging information and the fact that the 149libraries are statically linked into multiple tools). 150 151If you are space-constrained, you can build only selected tools or only 152selected targets. The Release build requires considerably less space. 153 154The LLVM suite *may* compile on other platforms, but it is not guaranteed to do 155so. If compilation is successful, the LLVM utilities should be able to 156assemble, disassemble, analyze, and optimize LLVM bitcode. Code generation 157should work as well, although the generated native code may not work on your 158platform. 159 160Software 161-------- 162 163Compiling LLVM requires that you have several software packages installed. The 164table below lists those required packages. The Package column is the usual name 165for the software package that LLVM depends on. The Version column provides 166"known to work" versions of the package. The Notes column describes how LLVM 167uses the package and provides other details. 168 169=========================================================== ============ ========================================== 170Package Version Notes 171=========================================================== ============ ========================================== 172`GNU Make <http://savannah.gnu.org/projects/make>`_ 3.79, 3.79.1 Makefile/build processor 173`GCC <http://gcc.gnu.org/>`_ >=5.1.0 C/C++ compiler\ :sup:`1` 174`python <http://www.python.org/>`_ >=2.7 Automated test suite\ :sup:`2` 175`zlib <http://zlib.net>`_ >=1.2.3.4 Compression library\ :sup:`3` 176=========================================================== ============ ========================================== 177 178.. note:: 179 180 #. Only the C and C++ languages are needed so there's no need to build the 181 other languages for LLVM's purposes. See `below` for specific version 182 info. 183 #. Only needed if you want to run the automated test suite in the 184 ``llvm/test`` directory. 185 #. Optional, adds compression / uncompression capabilities to selected LLVM 186 tools. 187 188Additionally, your compilation host is expected to have the usual plethora of 189Unix utilities. Specifically: 190 191* **ar** --- archive library builder 192* **bzip2** --- bzip2 command for distribution generation 193* **bunzip2** --- bunzip2 command for distribution checking 194* **chmod** --- change permissions on a file 195* **cat** --- output concatenation utility 196* **cp** --- copy files 197* **date** --- print the current date/time 198* **echo** --- print to standard output 199* **egrep** --- extended regular expression search utility 200* **find** --- find files/dirs in a file system 201* **grep** --- regular expression search utility 202* **gzip** --- gzip command for distribution generation 203* **gunzip** --- gunzip command for distribution checking 204* **install** --- install directories/files 205* **mkdir** --- create a directory 206* **mv** --- move (rename) files 207* **ranlib** --- symbol table builder for archive libraries 208* **rm** --- remove (delete) files and directories 209* **sed** --- stream editor for transforming output 210* **sh** --- Bourne shell for make build scripts 211* **tar** --- tape archive for distribution generation 212* **test** --- test things in file system 213* **unzip** --- unzip command for distribution checking 214* **zip** --- zip command for distribution generation 215 216.. _below: 217.. _check here: 218 219Host C++ Toolchain, both Compiler and Standard Library 220------------------------------------------------------ 221 222LLVM is very demanding of the host C++ compiler, and as such tends to expose 223bugs in the compiler. We also attempt to follow improvements and developments in 224the C++ language and library reasonably closely. As such, we require a modern 225host C++ toolchain, both compiler and standard library, in order to build LLVM. 226 227LLVM is written using the subset of C++ documented in :doc:`coding 228standards<CodingStandards>`. To enforce this language version, we check the most 229popular host toolchains for specific minimum versions in our build systems: 230 231* Clang 3.5 232* Apple Clang 6.0 233* GCC 5.1 234* Visual Studio 2017 235 236The below versions currently soft-error as we transition to the new compiler 237versions listed above. The LLVM codebase is currently known to compile correctly 238with the following compilers, though this will change in the near future: 239 240* Clang 3.1 241* Apple Clang 3.1 242* GCC 4.8 243* Visual Studio 2015 (Update 3) 244 245Anything older than these toolchains *may* work, but will require forcing the 246build system with a special option and is not really a supported host platform. 247Also note that older versions of these compilers have often crashed or 248miscompiled LLVM. 249 250For less widely used host toolchains such as ICC or xlC, be aware that a very 251recent version may be required to support all of the C++ features used in LLVM. 252 253We track certain versions of software that are *known* to fail when used as 254part of the host toolchain. These even include linkers at times. 255 256**GNU ld 2.16.X**. Some 2.16.X versions of the ld linker will produce very long 257warning messages complaining that some "``.gnu.linkonce.t.*``" symbol was 258defined in a discarded section. You can safely ignore these messages as they are 259erroneous and the linkage is correct. These messages disappear using ld 2.17. 260 261**GNU binutils 2.17**: Binutils 2.17 contains `a bug 262<http://sourceware.org/bugzilla/show_bug.cgi?id=3111>`__ which causes huge link 263times (minutes instead of seconds) when building LLVM. We recommend upgrading 264to a newer version (2.17.50.0.4 or later). 265 266**GNU Binutils 2.19.1 Gold**: This version of Gold contained `a bug 267<http://sourceware.org/bugzilla/show_bug.cgi?id=9836>`__ which causes 268intermittent failures when building LLVM with position independent code. The 269symptom is an error about cyclic dependencies. We recommend upgrading to a 270newer version of Gold. 271 272Getting a Modern Host C++ Toolchain 273^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ 274 275This section mostly applies to Linux and older BSDs. On macOS, you should 276have a sufficiently modern Xcode, or you will likely need to upgrade until you 277do. Windows does not have a "system compiler", so you must install either Visual 278Studio 2015 or a recent version of mingw64. FreeBSD 10.0 and newer have a modern 279Clang as the system compiler. 280 281However, some Linux distributions and some other or older BSDs sometimes have 282extremely old versions of GCC. These steps attempt to help you upgrade you 283compiler even on such a system. However, if at all possible, we encourage you 284to use a recent version of a distribution with a modern system compiler that 285meets these requirements. Note that it is tempting to install a prior 286version of Clang and libc++ to be the host compiler, however libc++ was not 287well tested or set up to build on Linux until relatively recently. As 288a consequence, this guide suggests just using libstdc++ and a modern GCC as the 289initial host in a bootstrap, and then using Clang (and potentially libc++). 290 291The first step is to get a recent GCC toolchain installed. The most common 292distribution on which users have struggled with the version requirements is 293Ubuntu Precise, 12.04 LTS. For this distribution, one easy option is to install 294the `toolchain testing PPA`_ and use it to install a modern GCC. There is 295a really nice discussions of this on the `ask ubuntu stack exchange`_ and a 296`github gist`_ with updated commands. However, not all users can use PPAs and 297there are many other distributions, so it may be necessary (or just useful, if 298you're here you *are* doing compiler development after all) to build and install 299GCC from source. It is also quite easy to do these days. 300 301.. _toolchain testing PPA: 302 https://launchpad.net/~ubuntu-toolchain-r/+archive/test 303.. _ask ubuntu stack exchange: 304 https://askubuntu.com/questions/466651/how-do-i-use-the-latest-gcc-on-ubuntu/581497#58149 305.. _github gist: 306 https://gist.github.com/application2000/73fd6f4bf1be6600a2cf9f56315a2d91 307 308Easy steps for installing GCC 5.1.0: 309 310.. code-block:: console 311 312 % gcc_version=5.1.0 313 % wget https://ftp.gnu.org/gnu/gcc/gcc-${gcc_version}/gcc-${gcc_version}.tar.bz2 314 % wget https://ftp.gnu.org/gnu/gcc/gcc-${gcc_version}/gcc-${gcc_version}.tar.bz2.sig 315 % wget https://ftp.gnu.org/gnu/gnu-keyring.gpg 316 % signature_invalid=`gpg --verify --no-default-keyring --keyring ./gnu-keyring.gpg gcc-${gcc_version}.tar.bz2.sig` 317 % if [ $signature_invalid ]; then echo "Invalid signature" ; exit 1 ; fi 318 % tar -xvjf gcc-${gcc_version}.tar.bz2 319 % cd gcc-${gcc_version} 320 % ./contrib/download_prerequisites 321 % cd .. 322 % mkdir gcc-${gcc_version}-build 323 % cd gcc-${gcc_version}-build 324 % $PWD/../gcc-${gcc_version}/configure --prefix=$HOME/toolchains --enable-languages=c,c++ 325 % make -j$(nproc) 326 % make install 327 328For more details, check out the excellent `GCC wiki entry`_, where I got most 329of this information from. 330 331.. _GCC wiki entry: 332 https://gcc.gnu.org/wiki/InstallingGCC 333 334Once you have a GCC toolchain, configure your build of LLVM to use the new 335toolchain for your host compiler and C++ standard library. Because the new 336version of libstdc++ is not on the system library search path, you need to pass 337extra linker flags so that it can be found at link time (``-L``) and at runtime 338(``-rpath``). If you are using CMake, this invocation should produce working 339binaries: 340 341.. code-block:: console 342 343 % mkdir build 344 % cd build 345 % CC=$HOME/toolchains/bin/gcc CXX=$HOME/toolchains/bin/g++ \ 346 cmake .. -DCMAKE_CXX_LINK_FLAGS="-Wl,-rpath,$HOME/toolchains/lib64 -L$HOME/toolchains/lib64" 347 348If you fail to set rpath, most LLVM binaries will fail on startup with a message 349from the loader similar to ``libstdc++.so.6: version `GLIBCXX_3.4.20' not 350found``. This means you need to tweak the -rpath linker flag. 351 352When you build Clang, you will need to give *it* access to modern C++ 353standard library in order to use it as your new host in part of a bootstrap. 354There are two easy ways to do this, either build (and install) libc++ along 355with Clang and then use it with the ``-stdlib=libc++`` compile and link flag, 356or install Clang into the same prefix (``$HOME/toolchains`` above) as GCC. 357Clang will look within its own prefix for libstdc++ and use it if found. You 358can also add an explicit prefix for Clang to look in for a GCC toolchain with 359the ``--gcc-toolchain=/opt/my/gcc/prefix`` flag, passing it to both compile and 360link commands when using your just-built-Clang to bootstrap. 361 362.. _Getting Started with LLVM: 363 364Getting Started with LLVM 365========================= 366 367The remainder of this guide is meant to get you up and running with LLVM and to 368give you some basic information about the LLVM environment. 369 370The later sections of this guide describe the `general layout`_ of the LLVM 371source tree, a `simple example`_ using the LLVM tool chain, and `links`_ to find 372more information about LLVM or to get help via e-mail. 373 374Terminology and Notation 375------------------------ 376 377Throughout this manual, the following names are used to denote paths specific to 378the local system and working environment. *These are not environment variables 379you need to set but just strings used in the rest of this document below*. In 380any of the examples below, simply replace each of these names with the 381appropriate pathname on your local system. All these paths are absolute: 382 383``SRC_ROOT`` 384 385 This is the top level directory of the LLVM source tree. 386 387``OBJ_ROOT`` 388 389 This is the top level directory of the LLVM object tree (i.e. the tree where 390 object files and compiled programs will be placed. It can be the same as 391 SRC_ROOT). 392 393Unpacking the LLVM Archives 394--------------------------- 395 396If you have the LLVM distribution, you will need to unpack it before you can 397begin to compile it. LLVM is distributed as a number of different 398subprojects. Each one has its own download which is a TAR archive that is 399compressed with the gzip program. 400 401The files are as follows, with *x.y* marking the version number: 402 403``llvm-x.y.tar.gz`` 404 405 Source release for the LLVM libraries and tools. 406 407``cfe-x.y.tar.gz`` 408 409 Source release for the Clang frontend. 410 411.. _checkout: 412 413Checkout LLVM from Git 414---------------------- 415 416You can also checkout the source code for LLVM from Git. While the LLVM 417project's official source-code repository is Subversion, we are in the process 418of migrating to git. We currently recommend that all developers use Git for 419day-to-day development. 420 421.. note:: 422 423 Passing ``--config core.autocrlf=false`` should not be required in 424 the future after we adjust the .gitattribute settings correctly, but 425 is required for Windows users at the time of this writing. 426 427Simply run: 428 429.. code-block:: console 430 431 % git clone https://github.com/llvm/llvm-project.git 432 433or on Windows, 434 435.. code-block:: console 436 437 % git clone --config core.autocrlf=false https://github.com/llvm/llvm-project.git 438 439This will create an '``llvm-project``' directory in the current directory and 440fully populate it with all of the source code, test directories, and local 441copies of documentation files for LLVM and all the related subprojects. Note 442that unlike the tarballs, which contain each subproject in a separate file, the 443git repository contains all of the projects together. 444 445If you want to get a specific release (as opposed to the most recent revision), 446you can check out a tag after cloning the repository. E.g., `git checkout 447llvmorg-6.0.1` inside the ``llvm-project`` directory created by the above 448command. Use `git tag -l` to list all of them. 449 450Sending patches 451^^^^^^^^^^^^^^^ 452 453Please read `Developer Policy <DeveloperPolicy.html#one-off-patches>`_, too. 454 455We don't currently accept github pull requests, so you'll need to send patches 456either via emailing to llvm-commits, or, preferably, via :ref:`Phabricator 457<phabricator-reviews>`. 458 459You'll generally want to make sure your branch has a single commit, 460corresponding to the review you wish to send, up-to-date with the upstream 461``origin/master`` branch, and doesn't contain merges. Once you have that, you 462can use ``git show`` or ``git format-patch`` to output the diff, and attach it 463to a Phabricator review (or to an email message). 464 465However, using the "Arcanist" tool is often easier. After `installing 466arcanist`_, you can upload the latest commit using: 467 468.. code-block:: console 469 470 % arc diff HEAD~1 471 472Additionally, before sending a patch for review, please also try to ensure it's 473formatted properly. We use ``clang-format`` for this, which has git integration 474through the ``git-clang-format`` script. On some systems, it may already be 475installed (or be installable via your package manager). If so, you can simply 476run it -- the following command will format only the code changed in the most 477recent commit: 478 479.. code-block:: console 480 481 % git clang-format HEAD~1 482 483Note that this modifies the files, but doesn't commit them -- you'll likely want 484to run 485 486.. code-block:: console 487 488 % git commit --amend -a 489 490in order to update the last commit with all pending changes. 491 492.. note:: 493 If you don't already have ``clang-format`` or ``git clang-format`` installed 494 on your system, the ``clang-format`` binary will be built alongside clang, and 495 the git integration can be run from 496 ``clang/tools/clang-format/git-clang-format``. 497 498 499.. _commit_from_git: 500 501For developers to commit changes from Git 502^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ 503 504A helper script is provided in ``llvm/utils/git-svn/git-llvm``. After you add it 505to your path, you can push committed changes upstream with ``git llvm 506push``. While this creates a Subversion checkout and patches it under the hood, 507it does not require you to have interaction with it. 508 509.. code-block:: console 510 511 % export PATH=$PATH:$TOP_LEVEL_DIR/llvm-project/llvm/utils/git-svn/ 512 % git llvm push 513 514Within a couple minutes after pushing to subversion, the svn commit will have 515been converted back to a Git commit, and made its way into the official Git 516repository. At that point, ``git pull`` should get back the changes as they were 517committed. 518 519You'll likely want to ``git pull --rebase`` to get the official git commit 520downloaded back to your repository. The SVN revision numbers of each commit can 521be found at the end of the commit message, e.g. ``llvm-svn: 350914``. 522 523You may also find the ``-n`` flag useful, like ``git llvm push -n``. This runs 524through all the steps of committing _without_ actually doing the commit, and 525tell you what it would have done. That can be useful if you're unsure whether 526the right thing will happen. 527 528Reverting a change when using Git 529^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ 530 531If you're using Git and need to revert a patch, Git needs to be supplied a 532commit hash, not an svn revision. To make things easier, you can use 533``git llvm revert`` to revert with either an SVN revision or a Git hash instead. 534 535Additionally, you can first run with ``git llvm revert -n`` to print which Git 536commands will run, without doing anything. 537 538Running ``git llvm revert`` will only revert things in your local repository. To 539push the revert upstream, you still need to run ``git llvm push`` as described 540earlier. 541 542.. code-block:: console 543 544 % git llvm revert rNNNNNN # Revert by SVN id 545 % git llvm revert abcdef123456 # Revert by Git commit hash 546 % git llvm revert -n rNNNNNN # Print the commands without doing anything 547 548Checkout via SVN (deprecated) 549^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ 550 551Until we have fully migrated to Git, you may also get a fresh copy of 552the code from the official Subversion repository. 553 554* ``cd where-you-want-llvm-to-live`` 555* Read-Only: ``svn co http://llvm.org/svn/llvm-project/llvm/trunk llvm`` 556* Read-Write: ``svn co https://[email protected]/svn/llvm-project/llvm/trunk llvm`` 557 558This will create an '``llvm``' directory in the current directory and fully 559populate it with the LLVM source code, Makefiles, test directories, and local 560copies of documentation files. 561 562If you want to get a specific release (as opposed to the most recent revision), 563you can check it out from the '``tags``' directory (instead of '``trunk``'). The 564following releases are located in the following subdirectories of the '``tags``' 565directory: 566 567* Release 3.5.0 and later: **RELEASE_350/final** and so on 568* Release 2.9 through 3.4: **RELEASE_29/final** and so on 569* Release 1.1 through 2.8: **RELEASE_11** and so on 570* Release 1.0: **RELEASE_1** 571 572Local LLVM Configuration 573------------------------ 574 575Once checked out repository, the LLVM suite source code must be configured 576before being built. This process uses CMake. Unlinke the normal ``configure`` 577script, CMake generates the build files in whatever format you request as well 578as various ``*.inc`` files, and ``llvm/include/Config/config.h``. 579 580Variables are passed to ``cmake`` on the command line using the format 581``-D<variable name>=<value>``. The following variables are some common options 582used by people developing LLVM. 583 584+-------------------------+----------------------------------------------------+ 585| Variable | Purpose | 586+=========================+====================================================+ 587| CMAKE_C_COMPILER | Tells ``cmake`` which C compiler to use. By | 588| | default, this will be /usr/bin/cc. | 589+-------------------------+----------------------------------------------------+ 590| CMAKE_CXX_COMPILER | Tells ``cmake`` which C++ compiler to use. By | 591| | default, this will be /usr/bin/c++. | 592+-------------------------+----------------------------------------------------+ 593| CMAKE_BUILD_TYPE | Tells ``cmake`` what type of build you are trying | 594| | to generate files for. Valid options are Debug, | 595| | Release, RelWithDebInfo, and MinSizeRel. Default | 596| | is Debug. | 597+-------------------------+----------------------------------------------------+ 598| CMAKE_INSTALL_PREFIX | Specifies the install directory to target when | 599| | running the install action of the build files. | 600+-------------------------+----------------------------------------------------+ 601| LLVM_TARGETS_TO_BUILD | A semicolon delimited list controlling which | 602| | targets will be built and linked into llvm. | 603| | The default list is defined as | 604| | ``LLVM_ALL_TARGETS``, and can be set to include | 605| | out-of-tree targets. The default value includes: | 606| | ``AArch64, AMDGPU, ARM, BPF, Hexagon, Mips, | 607| | MSP430, NVPTX, PowerPC, Sparc, SystemZ, X86, | 608| | XCore``. | 609| | | 610+-------------------------+----------------------------------------------------+ 611| LLVM_ENABLE_DOXYGEN | Build doxygen-based documentation from the source | 612| | code This is disabled by default because it is | 613| | slow and generates a lot of output. | 614+-------------------------+----------------------------------------------------+ 615| LLVM_ENABLE_PROJECTS | A semicolon-delimited list selecting which of the | 616| | other LLVM subprojects to additionally build. (Only| 617| | effective when using a side-by-side project layout | 618| | e.g. via git). The default list is empty. Can | 619| | include: clang, libcxx, libcxxabi, libunwind, lldb,| 620| | compiler-rt, lld, polly, or debuginfo-tests. | 621+-------------------------+----------------------------------------------------+ 622| LLVM_ENABLE_SPHINX | Build sphinx-based documentation from the source | 623| | code. This is disabled by default because it is | 624| | slow and generates a lot of output. Sphinx version | 625| | 1.5 or later recommended. | 626+-------------------------+----------------------------------------------------+ 627| LLVM_BUILD_LLVM_DYLIB | Generate libLLVM.so. This library contains a | 628| | default set of LLVM components that can be | 629| | overridden with ``LLVM_DYLIB_COMPONENTS``. The | 630| | default contains most of LLVM and is defined in | 631| | ``tools/llvm-shlib/CMakelists.txt``. | 632+-------------------------+----------------------------------------------------+ 633| LLVM_OPTIMIZED_TABLEGEN | Builds a release tablegen that gets used during | 634| | the LLVM build. This can dramatically speed up | 635| | debug builds. | 636+-------------------------+----------------------------------------------------+ 637 638To configure LLVM, follow these steps: 639 640#. Change directory into the object root directory: 641 642 .. code-block:: console 643 644 % cd OBJ_ROOT 645 646#. Run the ``cmake``: 647 648 .. code-block:: console 649 650 % cmake -G "Unix Makefiles" -DCMAKE_INSTALL_PREFIX=/install/path 651 [other options] SRC_ROOT 652 653Compiling the LLVM Suite Source Code 654------------------------------------ 655 656Unlike with autotools, with CMake your build type is defined at configuration. 657If you want to change your build type, you can re-run cmake with the following 658invocation: 659 660 .. code-block:: console 661 662 % cmake -G "Unix Makefiles" -DCMAKE_BUILD_TYPE=type SRC_ROOT 663 664Between runs, CMake preserves the values set for all options. CMake has the 665following build types defined: 666 667Debug 668 669 These builds are the default. The build system will compile the tools and 670 libraries unoptimized, with debugging information, and asserts enabled. 671 672Release 673 674 For these builds, the build system will compile the tools and libraries 675 with optimizations enabled and not generate debug info. CMakes default 676 optimization level is -O3. This can be configured by setting the 677 ``CMAKE_CXX_FLAGS_RELEASE`` variable on the CMake command line. 678 679RelWithDebInfo 680 681 These builds are useful when debugging. They generate optimized binaries with 682 debug information. CMakes default optimization level is -O2. This can be 683 configured by setting the ``CMAKE_CXX_FLAGS_RELWITHDEBINFO`` variable on the 684 CMake command line. 685 686Once you have LLVM configured, you can build it by entering the *OBJ_ROOT* 687directory and issuing the following command: 688 689.. code-block:: console 690 691 % make 692 693If the build fails, please `check here`_ to see if you are using a version of 694GCC that is known not to compile LLVM. 695 696If you have multiple processors in your machine, you may wish to use some of the 697parallel build options provided by GNU Make. For example, you could use the 698command: 699 700.. code-block:: console 701 702 % make -j2 703 704There are several special targets which are useful when working with the LLVM 705source code: 706 707``make clean`` 708 709 Removes all files generated by the build. This includes object files, 710 generated C/C++ files, libraries, and executables. 711 712``make install`` 713 714 Installs LLVM header files, libraries, tools, and documentation in a hierarchy 715 under ``$PREFIX``, specified with ``CMAKE_INSTALL_PREFIX``, which 716 defaults to ``/usr/local``. 717 718``make docs-llvm-html`` 719 720 If configured with ``-DLLVM_ENABLE_SPHINX=On``, this will generate a directory 721 at ``OBJ_ROOT/docs/html`` which contains the HTML formatted documentation. 722 723Cross-Compiling LLVM 724-------------------- 725 726It is possible to cross-compile LLVM itself. That is, you can create LLVM 727executables and libraries to be hosted on a platform different from the platform 728where they are built (a Canadian Cross build). To generate build files for 729cross-compiling CMake provides a variable ``CMAKE_TOOLCHAIN_FILE`` which can 730define compiler flags and variables used during the CMake test operations. 731 732The result of such a build is executables that are not runnable on the build 733host but can be executed on the target. As an example the following CMake 734invocation can generate build files targeting iOS. This will work on macOS 735with the latest Xcode: 736 737.. code-block:: console 738 739 % cmake -G "Ninja" -DCMAKE_OSX_ARCHITECTURES="armv7;armv7s;arm64" 740 -DCMAKE_TOOLCHAIN_FILE=<PATH_TO_LLVM>/cmake/platforms/iOS.cmake 741 -DCMAKE_BUILD_TYPE=Release -DLLVM_BUILD_RUNTIME=Off -DLLVM_INCLUDE_TESTS=Off 742 -DLLVM_INCLUDE_EXAMPLES=Off -DLLVM_ENABLE_BACKTRACES=Off [options] 743 <PATH_TO_LLVM> 744 745Note: There are some additional flags that need to be passed when building for 746iOS due to limitations in the iOS SDK. 747 748Check :doc:`HowToCrossCompileLLVM` and `Clang docs on how to cross-compile in general 749<http://clang.llvm.org/docs/CrossCompilation.html>`_ for more information 750about cross-compiling. 751 752The Location of LLVM Object Files 753--------------------------------- 754 755The LLVM build system is capable of sharing a single LLVM source tree among 756several LLVM builds. Hence, it is possible to build LLVM for several different 757platforms or configurations using the same source tree. 758 759* Change directory to where the LLVM object files should live: 760 761 .. code-block:: console 762 763 % cd OBJ_ROOT 764 765* Run ``cmake``: 766 767 .. code-block:: console 768 769 % cmake -G "Unix Makefiles" SRC_ROOT 770 771The LLVM build will create a structure underneath *OBJ_ROOT* that matches the 772LLVM source tree. At each level where source files are present in the source 773tree there will be a corresponding ``CMakeFiles`` directory in the *OBJ_ROOT*. 774Underneath that directory there is another directory with a name ending in 775``.dir`` under which you'll find object files for each source. 776 777For example: 778 779 .. code-block:: console 780 781 % cd llvm_build_dir 782 % find lib/Support/ -name APFloat* 783 lib/Support/CMakeFiles/LLVMSupport.dir/APFloat.cpp.o 784 785Optional Configuration Items 786---------------------------- 787 788If you're running on a Linux system that supports the `binfmt_misc 789<http://en.wikipedia.org/wiki/binfmt_misc>`_ 790module, and you have root access on the system, you can set your system up to 791execute LLVM bitcode files directly. To do this, use commands like this (the 792first command may not be required if you are already using the module): 793 794.. code-block:: console 795 796 % mount -t binfmt_misc none /proc/sys/fs/binfmt_misc 797 % echo ':llvm:M::BC::/path/to/lli:' > /proc/sys/fs/binfmt_misc/register 798 % chmod u+x hello.bc (if needed) 799 % ./hello.bc 800 801This allows you to execute LLVM bitcode files directly. On Debian, you can also 802use this command instead of the 'echo' command above: 803 804.. code-block:: console 805 806 % sudo update-binfmts --install llvm /path/to/lli --magic 'BC' 807 808.. _Program Layout: 809.. _general layout: 810 811Directory Layout 812================ 813 814One useful source of information about the LLVM source base is the LLVM `doxygen 815<http://www.doxygen.org/>`_ documentation available at 816`<http://llvm.org/doxygen/>`_. The following is a brief introduction to code 817layout: 818 819``llvm/examples`` 820----------------- 821 822Simple examples using the LLVM IR and JIT. 823 824``llvm/include`` 825---------------- 826 827Public header files exported from the LLVM library. The three main subdirectories: 828 829``llvm/include/llvm`` 830 831 All LLVM-specific header files, and subdirectories for different portions of 832 LLVM: ``Analysis``, ``CodeGen``, ``Target``, ``Transforms``, etc... 833 834``llvm/include/llvm/Support`` 835 836 Generic support libraries provided with LLVM but not necessarily specific to 837 LLVM. For example, some C++ STL utilities and a Command Line option processing 838 library store header files here. 839 840``llvm/include/llvm/Config`` 841 842 Header files configured by ``cmake``. They wrap "standard" UNIX and 843 C header files. Source code can include these header files which 844 automatically take care of the conditional #includes that ``cmake`` 845 generates. 846 847``llvm/lib`` 848------------ 849 850Most source files are here. By putting code in libraries, LLVM makes it easy to 851share code among the `tools`_. 852 853``llvm/lib/IR/`` 854 855 Core LLVM source files that implement core classes like Instruction and 856 BasicBlock. 857 858``llvm/lib/AsmParser/`` 859 860 Source code for the LLVM assembly language parser library. 861 862``llvm/lib/Bitcode/`` 863 864 Code for reading and writing bitcode. 865 866``llvm/lib/Analysis/`` 867 868 A variety of program analyses, such as Call Graphs, Induction Variables, 869 Natural Loop Identification, etc. 870 871``llvm/lib/Transforms/`` 872 873 IR-to-IR program transformations, such as Aggressive Dead Code Elimination, 874 Sparse Conditional Constant Propagation, Inlining, Loop Invariant Code Motion, 875 Dead Global Elimination, and many others. 876 877``llvm/lib/Target/`` 878 879 Files describing target architectures for code generation. For example, 880 ``llvm/lib/Target/X86`` holds the X86 machine description. 881 882``llvm/lib/CodeGen/`` 883 884 The major parts of the code generator: Instruction Selector, Instruction 885 Scheduling, and Register Allocation. 886 887``llvm/lib/MC/`` 888 889 (FIXME: T.B.D.) ....? 890 891``llvm/lib/ExecutionEngine/`` 892 893 Libraries for directly executing bitcode at runtime in interpreted and 894 JIT-compiled scenarios. 895 896``llvm/lib/Support/`` 897 898 Source code that corresponding to the header files in ``llvm/include/ADT/`` 899 and ``llvm/include/Support/``. 900 901``llvm/projects`` 902----------------- 903 904Projects not strictly part of LLVM but shipped with LLVM. This is also the 905directory for creating your own LLVM-based projects which leverage the LLVM 906build system. 907 908``llvm/test`` 909------------- 910 911Feature and regression tests and other sanity checks on LLVM infrastructure. These 912are intended to run quickly and cover a lot of territory without being exhaustive. 913 914``test-suite`` 915-------------- 916 917A comprehensive correctness, performance, and benchmarking test suite 918for LLVM. This comes in a ``separate git repository 919<https://github.com/llvm/llvm-test-suite>``, because it contains a 920large amount of third-party code under a variety of licenses. For 921details see the :doc:`Testing Guide <TestingGuide>` document. 922 923.. _tools: 924 925``llvm/tools`` 926-------------- 927 928Executables built out of the libraries 929above, which form the main part of the user interface. You can always get help 930for a tool by typing ``tool_name -help``. The following is a brief introduction 931to the most important tools. More detailed information is in 932the `Command Guide <CommandGuide/index.html>`_. 933 934``bugpoint`` 935 936 ``bugpoint`` is used to debug optimization passes or code generation backends 937 by narrowing down the given test case to the minimum number of passes and/or 938 instructions that still cause a problem, whether it is a crash or 939 miscompilation. See `<HowToSubmitABug.html>`_ for more information on using 940 ``bugpoint``. 941 942``llvm-ar`` 943 944 The archiver produces an archive containing the given LLVM bitcode files, 945 optionally with an index for faster lookup. 946 947``llvm-as`` 948 949 The assembler transforms the human readable LLVM assembly to LLVM bitcode. 950 951``llvm-dis`` 952 953 The disassembler transforms the LLVM bitcode to human readable LLVM assembly. 954 955``llvm-link`` 956 957 ``llvm-link``, not surprisingly, links multiple LLVM modules into a single 958 program. 959 960``lli`` 961 962 ``lli`` is the LLVM interpreter, which can directly execute LLVM bitcode 963 (although very slowly...). For architectures that support it (currently x86, 964 Sparc, and PowerPC), by default, ``lli`` will function as a Just-In-Time 965 compiler (if the functionality was compiled in), and will execute the code 966 *much* faster than the interpreter. 967 968``llc`` 969 970 ``llc`` is the LLVM backend compiler, which translates LLVM bitcode to a 971 native code assembly file. 972 973``opt`` 974 975 ``opt`` reads LLVM bitcode, applies a series of LLVM to LLVM transformations 976 (which are specified on the command line), and outputs the resultant 977 bitcode. '``opt -help``' is a good way to get a list of the 978 program transformations available in LLVM. 979 980 ``opt`` can also run a specific analysis on an input LLVM bitcode 981 file and print the results. Primarily useful for debugging 982 analyses, or familiarizing yourself with what an analysis does. 983 984``llvm/utils`` 985-------------- 986 987Utilities for working with LLVM source code; some are part of the build process 988because they are code generators for parts of the infrastructure. 989 990 991``codegen-diff`` 992 993 ``codegen-diff`` finds differences between code that LLC 994 generates and code that LLI generates. This is useful if you are 995 debugging one of them, assuming that the other generates correct output. For 996 the full user manual, run ```perldoc codegen-diff'``. 997 998``emacs/`` 999 1000 Emacs and XEmacs syntax highlighting for LLVM assembly files and TableGen 1001 description files. See the ``README`` for information on using them. 1002 1003``getsrcs.sh`` 1004 1005 Finds and outputs all non-generated source files, 1006 useful if one wishes to do a lot of development across directories 1007 and does not want to find each file. One way to use it is to run, 1008 for example: ``xemacs `utils/getsources.sh``` from the top of the LLVM source 1009 tree. 1010 1011``llvmgrep`` 1012 1013 Performs an ``egrep -H -n`` on each source file in LLVM and 1014 passes to it a regular expression provided on ``llvmgrep``'s command 1015 line. This is an efficient way of searching the source base for a 1016 particular regular expression. 1017 1018``TableGen/`` 1019 1020 Contains the tool used to generate register 1021 descriptions, instruction set descriptions, and even assemblers from common 1022 TableGen description files. 1023 1024``vim/`` 1025 1026 vim syntax-highlighting for LLVM assembly files 1027 and TableGen description files. See the ``README`` for how to use them. 1028 1029.. _simple example: 1030 1031An Example Using the LLVM Tool Chain 1032==================================== 1033 1034This section gives an example of using LLVM with the Clang front end. 1035 1036Example with clang 1037------------------ 1038 1039#. First, create a simple C file, name it 'hello.c': 1040 1041 .. code-block:: c 1042 1043 #include <stdio.h> 1044 1045 int main() { 1046 printf("hello world\n"); 1047 return 0; 1048 } 1049 1050#. Next, compile the C file into a native executable: 1051 1052 .. code-block:: console 1053 1054 % clang hello.c -o hello 1055 1056 .. note:: 1057 1058 Clang works just like GCC by default. The standard -S and -c arguments 1059 work as usual (producing a native .s or .o file, respectively). 1060 1061#. Next, compile the C file into an LLVM bitcode file: 1062 1063 .. code-block:: console 1064 1065 % clang -O3 -emit-llvm hello.c -c -o hello.bc 1066 1067 The -emit-llvm option can be used with the -S or -c options to emit an LLVM 1068 ``.ll`` or ``.bc`` file (respectively) for the code. This allows you to use 1069 the `standard LLVM tools <CommandGuide/index.html>`_ on the bitcode file. 1070 1071#. Run the program in both forms. To run the program, use: 1072 1073 .. code-block:: console 1074 1075 % ./hello 1076 1077 and 1078 1079 .. code-block:: console 1080 1081 % lli hello.bc 1082 1083 The second examples shows how to invoke the LLVM JIT, :doc:`lli 1084 <CommandGuide/lli>`. 1085 1086#. Use the ``llvm-dis`` utility to take a look at the LLVM assembly code: 1087 1088 .. code-block:: console 1089 1090 % llvm-dis < hello.bc | less 1091 1092#. Compile the program to native assembly using the LLC code generator: 1093 1094 .. code-block:: console 1095 1096 % llc hello.bc -o hello.s 1097 1098#. Assemble the native assembly language file into a program: 1099 1100 .. code-block:: console 1101 1102 % /opt/SUNWspro/bin/cc -xarch=v9 hello.s -o hello.native # On Solaris 1103 1104 % gcc hello.s -o hello.native # On others 1105 1106#. Execute the native code program: 1107 1108 .. code-block:: console 1109 1110 % ./hello.native 1111 1112 Note that using clang to compile directly to native code (i.e. when the 1113 ``-emit-llvm`` option is not present) does steps 6/7/8 for you. 1114 1115Common Problems 1116=============== 1117 1118If you are having problems building or using LLVM, or if you have any other 1119general questions about LLVM, please consult the `Frequently Asked 1120Questions <FAQ.html>`_ page. 1121 1122.. _links: 1123 1124Links 1125===== 1126 1127This document is just an **introduction** on how to use LLVM to do some simple 1128things... there are many more interesting and complicated things that you can do 1129that aren't documented here (but we'll gladly accept a patch if you want to 1130write something up!). For more information about LLVM, check out: 1131 1132* `LLVM Homepage <http://llvm.org/>`_ 1133* `LLVM Doxygen Tree <http://llvm.org/doxygen/>`_ 1134* `Starting a Project that Uses LLVM <http://llvm.org/docs/Projects.html>`_ 1135 1136.. _installing arcanist: https://secure.phabricator.com/book/phabricator/article/arcanist_quick_start/ 1137