1clang - the Clang C, C++, and Objective-C compiler 2================================================== 3 4SYNOPSIS 5-------- 6 7:program:`clang` [*options*] *filename ...* 8 9DESCRIPTION 10----------- 11 12:program:`clang` is a C, C++, and Objective-C compiler which encompasses 13preprocessing, parsing, optimization, code generation, assembly, and linking. 14Depending on which high-level mode setting is passed, Clang will stop before 15doing a full link. While Clang is highly integrated, it is important to 16understand the stages of compilation, to understand how to invoke it. These 17stages are: 18 19Driver 20 The clang executable is actually a small driver which controls the overall 21 execution of other tools such as the compiler, assembler and linker. 22 Typically you do not need to interact with the driver, but you 23 transparently use it to run the other tools. 24 25Preprocessing 26 This stage handles tokenization of the input source file, macro expansion, 27 #include expansion and handling of other preprocessor directives. The 28 output of this stage is typically called a ".i" (for C), ".ii" (for C++), 29 ".mi" (for Objective-C), or ".mii" (for Objective-C++) file. 30 31Parsing and Semantic Analysis 32 This stage parses the input file, translating preprocessor tokens into a 33 parse tree. Once in the form of a parse tree, it applies semantic 34 analysis to compute types for expressions as well and determine whether 35 the code is well formed. This stage is responsible for generating most of 36 the compiler warnings as well as parse errors. The output of this stage is 37 an "Abstract Syntax Tree" (AST). 38 39Code Generation and Optimization 40 This stage translates an AST into low-level intermediate code (known as 41 "LLVM IR") and ultimately to machine code. This phase is responsible for 42 optimizing the generated code and handling target-specific code generation. 43 The output of this stage is typically called a ".s" file or "assembly" file. 44 45 Clang also supports the use of an integrated assembler, in which the code 46 generator produces object files directly. This avoids the overhead of 47 generating the ".s" file and of calling the target assembler. 48 49Assembler 50 This stage runs the target assembler to translate the output of the 51 compiler into a target object file. The output of this stage is typically 52 called a ".o" file or "object" file. 53 54Linker 55 This stage runs the target linker to merge multiple object files into an 56 executable or dynamic library. The output of this stage is typically called 57 an "a.out", ".dylib" or ".so" file. 58 59:program:`Clang Static Analyzer` 60 61The Clang Static Analyzer is a tool that scans source code to try to find bugs 62through code analysis. This tool uses many parts of Clang and is built into 63the same driver. Please see <https://clang-analyzer.llvm.org> for more details 64on how to use the static analyzer. 65 66OPTIONS 67------- 68 69Stage Selection Options 70~~~~~~~~~~~~~~~~~~~~~~~ 71 72.. option:: -E 73 74 Run the preprocessor stage. 75 76.. option:: -fsyntax-only 77 78 Run the preprocessor, parser and type checking stages. 79 80.. option:: -S 81 82 Run the previous stages as well as LLVM generation and optimization stages 83 and target-specific code generation, producing an assembly file. 84 85.. option:: -c 86 87 Run all of the above, plus the assembler, generating a target ".o" object file. 88 89.. option:: no stage selection option 90 91 If no stage selection option is specified, all stages above are run, and the 92 linker is run to combine the results into an executable or shared library. 93 94Language Selection and Mode Options 95~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ 96 97.. option:: -x <language> 98 99 Treat subsequent input files as having type language. 100 101.. option:: -std=<standard> 102 103 Specify the language standard to compile for. 104 105 Supported values for the C language are: 106 107 | ``c89`` 108 | ``c90`` 109 | ``iso9899:1990`` 110 111 ISO C 1990 112 113 | ``iso9899:199409`` 114 115 ISO C 1990 with amendment 1 116 117 | ``gnu89`` 118 | ``gnu90`` 119 120 ISO C 1990 with GNU extensions 121 122 | ``c99`` 123 | ``iso9899:1999`` 124 125 ISO C 1999 126 127 | ``gnu99`` 128 129 ISO C 1999 with GNU extensions 130 131 | ``c11`` 132 | ``iso9899:2011`` 133 134 ISO C 2011 135 136 | ``gnu11`` 137 138 ISO C 2011 with GNU extensions 139 140 | ``c17`` 141 | ``iso9899:2017`` 142 143 ISO C 2017 144 145 | ``gnu17`` 146 147 ISO C 2017 with GNU extensions 148 149 The default C language standard is ``gnu17``, except on PS4, where it is 150 ``gnu99``. 151 152 Supported values for the C++ language are: 153 154 | ``c++98`` 155 | ``c++03`` 156 157 ISO C++ 1998 with amendments 158 159 | ``gnu++98`` 160 | ``gnu++03`` 161 162 ISO C++ 1998 with amendments and GNU extensions 163 164 | ``c++11`` 165 166 ISO C++ 2011 with amendments 167 168 | ``gnu++11`` 169 170 ISO C++ 2011 with amendments and GNU extensions 171 172 | ``c++14`` 173 174 ISO C++ 2014 with amendments 175 176 | ``gnu++14`` 177 178 ISO C++ 2014 with amendments and GNU extensions 179 180 | ``c++17`` 181 182 ISO C++ 2017 with amendments 183 184 | ``gnu++17`` 185 186 ISO C++ 2017 with amendments and GNU extensions 187 188 | ``c++2a`` 189 190 Working draft for ISO C++ 2020 191 192 | ``gnu++2a`` 193 194 Working draft for ISO C++ 2020 with GNU extensions 195 196 The default C++ language standard is ``gnu++14``. 197 198 Supported values for the OpenCL language are: 199 200 | ``cl1.0`` 201 202 OpenCL 1.0 203 204 | ``cl1.1`` 205 206 OpenCL 1.1 207 208 | ``cl1.2`` 209 210 OpenCL 1.2 211 212 | ``cl2.0`` 213 214 OpenCL 2.0 215 216 The default OpenCL language standard is ``cl1.0``. 217 218 Supported values for the CUDA language are: 219 220 | ``cuda`` 221 222 NVIDIA CUDA(tm) 223 224.. option:: -stdlib=<library> 225 226 Specify the C++ standard library to use; supported options are libstdc++ and 227 libc++. If not specified, platform default will be used. 228 229.. option:: -rtlib=<library> 230 231 Specify the compiler runtime library to use; supported options are libgcc and 232 compiler-rt. If not specified, platform default will be used. 233 234.. option:: -ansi 235 236 Same as -std=c89. 237 238.. option:: -ObjC, -ObjC++ 239 240 Treat source input files as Objective-C and Object-C++ inputs respectively. 241 242.. option:: -trigraphs 243 244 Enable trigraphs. 245 246.. option:: -ffreestanding 247 248 Indicate that the file should be compiled for a freestanding, not a hosted, 249 environment. Note that it is assumed that a freestanding environment will 250 additionally provide `memcpy`, `memmove`, `memset` and `memcmp` 251 implementations, as these are needed for efficient codegen for many programs. 252 253.. option:: -fno-builtin 254 255 Disable special handling and optimizations of well-known library functions, 256 like :c:func:`strlen` and :c:func:`malloc`. 257 258.. option:: -fno-builtin-<function> 259 260 Disable special handling and optimizations for the specific library function. 261 For example, ``-fno-builtin-strlen`` removes any special handling for the 262 :c:func:`strlen` library function. 263 264.. option:: -fno-builtin-std-<function> 265 266 Disable special handling and optimizations for the specific C++ standard 267 library function in namespace ``std``. For example, 268 ``-fno-builtin-std-move_if_noexcept`` removes any special handling for the 269 :cpp:func:`std::move_if_noexcept` library function. 270 271 For C standard library functions that the C++ standard library also provides 272 in namespace ``std``, use :option:`-fno-builtin-\<function\>` instead. 273 274.. option:: -fmath-errno 275 276 Indicate that math functions should be treated as updating :c:data:`errno`. 277 278.. option:: -fpascal-strings 279 280 Enable support for Pascal-style strings with "\\pfoo". 281 282.. option:: -fms-extensions 283 284 Enable support for Microsoft extensions. 285 286.. option:: -fmsc-version= 287 288 Set _MSC_VER. Defaults to 1300 on Windows. Not set otherwise. 289 290.. option:: -fborland-extensions 291 292 Enable support for Borland extensions. 293 294.. option:: -fwritable-strings 295 296 Make all string literals default to writable. This disables uniquing of 297 strings and other optimizations. 298 299.. option:: -flax-vector-conversions, -flax-vector-conversions=<kind>, -fno-lax-vector-conversions 300 301 Allow loose type checking rules for implicit vector conversions. 302 Possible values of <kind>: 303 304 - ``none``: allow no implicit conversions between vectors 305 - ``integer``: allow implicit bitcasts between integer vectors of the same 306 overall bit-width 307 - ``all``: allow implicit bitcasts between any vectors of the same 308 overall bit-width 309 310 <kind> defaults to ``integer`` if unspecified. 311 312.. option:: -fblocks 313 314 Enable the "Blocks" language feature. 315 316.. option:: -fobjc-abi-version=version 317 318 Select the Objective-C ABI version to use. Available versions are 1 (legacy 319 "fragile" ABI), 2 (non-fragile ABI 1), and 3 (non-fragile ABI 2). 320 321.. option:: -fobjc-nonfragile-abi-version=<version> 322 323 Select the Objective-C non-fragile ABI version to use by default. This will 324 only be used as the Objective-C ABI when the non-fragile ABI is enabled 325 (either via :option:`-fobjc-nonfragile-abi`, or because it is the platform 326 default). 327 328.. option:: -fobjc-nonfragile-abi, -fno-objc-nonfragile-abi 329 330 Enable use of the Objective-C non-fragile ABI. On platforms for which this is 331 the default ABI, it can be disabled with :option:`-fno-objc-nonfragile-abi`. 332 333Target Selection Options 334~~~~~~~~~~~~~~~~~~~~~~~~ 335 336Clang fully supports cross compilation as an inherent part of its design. 337Depending on how your version of Clang is configured, it may have support for a 338number of cross compilers, or may only support a native target. 339 340.. option:: -arch <architecture> 341 342 Specify the architecture to build for (Mac OS X specific). 343 344.. option:: -target <architecture> 345 346 Specify the architecture to build for (all platforms). 347 348.. option:: -mmacosx-version-min=<version> 349 350 When building for macOS, specify the minimum version supported by your 351 application. 352 353.. option:: -miphoneos-version-min 354 355 When building for iPhone OS, specify the minimum version supported by your 356 application. 357 358.. option:: --print-supported-cpus 359 360 Print out a list of supported processors for the given target (specified 361 through ``--target=<architecture>`` or :option:`-arch` ``<architecture>``). If no 362 target is specified, the system default target will be used. 363 364.. option:: -mcpu=?, -mtune=? 365 366 Acts as an alias for :option:`--print-supported-cpus`. 367 368.. option:: -march=<cpu> 369 370 Specify that Clang should generate code for a specific processor family 371 member and later. For example, if you specify -march=i486, the compiler is 372 allowed to generate instructions that are valid on i486 and later processors, 373 but which may not exist on earlier ones. 374 375 376Code Generation Options 377~~~~~~~~~~~~~~~~~~~~~~~ 378 379.. option:: -O0, -O1, -O2, -O3, -Ofast, -Os, -Oz, -Og, -O, -O4 380 381 Specify which optimization level to use: 382 383 :option:`-O0` Means "no optimization": this level compiles the fastest and 384 generates the most debuggable code. 385 386 :option:`-O1` Somewhere between :option:`-O0` and :option:`-O2`. 387 388 :option:`-O2` Moderate level of optimization which enables most 389 optimizations. 390 391 :option:`-O3` Like :option:`-O2`, except that it enables optimizations that 392 take longer to perform or that may generate larger code (in an attempt to 393 make the program run faster). 394 395 :option:`-Ofast` Enables all the optimizations from :option:`-O3` along 396 with other aggressive optimizations that may violate strict compliance with 397 language standards. 398 399 :option:`-Os` Like :option:`-O2` with extra optimizations to reduce code 400 size. 401 402 :option:`-Oz` Like :option:`-Os` (and thus :option:`-O2`), but reduces code 403 size further. 404 405 :option:`-Og` Like :option:`-O1`. In future versions, this option might 406 disable different optimizations in order to improve debuggability. 407 408 :option:`-O` Equivalent to :option:`-O1`. 409 410 :option:`-O4` and higher 411 412 Currently equivalent to :option:`-O3` 413 414.. option:: -g, -gline-tables-only, -gmodules 415 416 Control debug information output. Note that Clang debug information works 417 best at :option:`-O0`. When more than one option starting with `-g` is 418 specified, the last one wins: 419 420 :option:`-g` Generate debug information. 421 422 :option:`-gline-tables-only` Generate only line table debug information. This 423 allows for symbolicated backtraces with inlining information, but does not 424 include any information about variables, their locations or types. 425 426 :option:`-gmodules` Generate debug information that contains external 427 references to types defined in Clang modules or precompiled headers instead 428 of emitting redundant debug type information into every object file. This 429 option transparently switches the Clang module format to object file 430 containers that hold the Clang module together with the debug information. 431 When compiling a program that uses Clang modules or precompiled headers, 432 this option produces complete debug information with faster compile 433 times and much smaller object files. 434 435 This option should not be used when building static libraries for 436 distribution to other machines because the debug info will contain 437 references to the module cache on the machine the object files in the 438 library were built on. 439 440.. option:: -fstandalone-debug -fno-standalone-debug 441 442 Clang supports a number of optimizations to reduce the size of debug 443 information in the binary. They work based on the assumption that the 444 debug type information can be spread out over multiple compilation units. 445 For instance, Clang will not emit type definitions for types that are not 446 needed by a module and could be replaced with a forward declaration. 447 Further, Clang will only emit type info for a dynamic C++ class in the 448 module that contains the vtable for the class. 449 450 The :option:`-fstandalone-debug` option turns off these optimizations. 451 This is useful when working with 3rd-party libraries that don't come with 452 debug information. This is the default on Darwin. Note that Clang will 453 never emit type information for types that are not referenced at all by the 454 program. 455 456.. option:: -feliminate-unused-debug-types 457 458 By default, Clang does not emit type information for types that are defined 459 but not used in a program. To retain the debug info for these unused types, 460 the negation **-fno-eliminate-unused-debug-types** can be used. 461 462.. option:: -fexceptions 463 464 Enable generation of unwind information. This allows exceptions to be thrown 465 through Clang compiled stack frames. This is on by default in x86-64. 466 467.. option:: -ftrapv 468 469 Generate code to catch integer overflow errors. Signed integer overflow is 470 undefined in C. With this flag, extra code is generated to detect this and 471 abort when it happens. 472 473.. option:: -fvisibility 474 475 This flag sets the default visibility level. 476 477.. option:: -fcommon, -fno-common 478 479 This flag specifies that variables without initializers get common linkage. 480 It can be disabled with :option:`-fno-common`. 481 482.. option:: -ftls-model=<model> 483 484 Set the default thread-local storage (TLS) model to use for thread-local 485 variables. Valid values are: "global-dynamic", "local-dynamic", 486 "initial-exec" and "local-exec". The default is "global-dynamic". The default 487 model can be overridden with the tls_model attribute. The compiler will try 488 to choose a more efficient model if possible. 489 490.. option:: -flto, -flto=full, -flto=thin, -emit-llvm 491 492 Generate output files in LLVM formats, suitable for link time optimization. 493 When used with :option:`-S` this generates LLVM intermediate language 494 assembly files, otherwise this generates LLVM bitcode format object files 495 (which may be passed to the linker depending on the stage selection options). 496 497 The default for :option:`-flto` is "full", in which the 498 LLVM bitcode is suitable for monolithic Link Time Optimization (LTO), where 499 the linker merges all such modules into a single combined module for 500 optimization. With "thin", :doc:`ThinLTO <../ThinLTO>` 501 compilation is invoked instead. 502 503 .. note:: 504 505 On Darwin, when using :option:`-flto` along with :option:`-g` and 506 compiling and linking in separate steps, you also need to pass 507 ``-Wl,-object_path_lto,<lto-filename>.o`` at the linking step to instruct the 508 ld64 linker not to delete the temporary object file generated during Link 509 Time Optimization (this flag is automatically passed to the linker by Clang 510 if compilation and linking are done in a single step). This allows debugging 511 the executable as well as generating the ``.dSYM`` bundle using :manpage:`dsymutil(1)`. 512 513Driver Options 514~~~~~~~~~~~~~~ 515 516.. option:: -### 517 518 Print (but do not run) the commands to run for this compilation. 519 520.. option:: --help 521 522 Display available options. 523 524.. option:: -Qunused-arguments 525 526 Do not emit any warnings for unused driver arguments. 527 528.. option:: -Wa,<args> 529 530 Pass the comma separated arguments in args to the assembler. 531 532.. option:: -Wl,<args> 533 534 Pass the comma separated arguments in args to the linker. 535 536.. option:: -Wp,<args> 537 538 Pass the comma separated arguments in args to the preprocessor. 539 540.. option:: -Xanalyzer <arg> 541 542 Pass arg to the static analyzer. 543 544.. option:: -Xassembler <arg> 545 546 Pass arg to the assembler. 547 548.. option:: -Xlinker <arg> 549 550 Pass arg to the linker. 551 552.. option:: -Xpreprocessor <arg> 553 554 Pass arg to the preprocessor. 555 556.. option:: -o <file> 557 558 Write output to file. 559 560.. option:: -print-file-name=<file> 561 562 Print the full library path of file. 563 564.. option:: -print-libgcc-file-name 565 566 Print the library path for the currently used compiler runtime library 567 ("libgcc.a" or "libclang_rt.builtins.*.a"). 568 569.. option:: -print-prog-name=<name> 570 571 Print the full program path of name. 572 573.. option:: -print-search-dirs 574 575 Print the paths used for finding libraries and programs. 576 577.. option:: -save-temps 578 579 Save intermediate compilation results. 580 581.. option:: -save-stats, -save-stats=cwd, -save-stats=obj 582 583 Save internal code generation (LLVM) statistics to a file in the current 584 directory (:option:`-save-stats`/"-save-stats=cwd") or the directory 585 of the output file ("-save-state=obj"). 586 587.. option:: -integrated-as, -no-integrated-as 588 589 Used to enable and disable, respectively, the use of the integrated 590 assembler. Whether the integrated assembler is on by default is target 591 dependent. 592 593.. option:: -time 594 595 Time individual commands. 596 597.. option:: -ftime-report 598 599 Print timing summary of each stage of compilation. 600 601.. option:: -v 602 603 Show commands to run and use verbose output. 604 605 606Diagnostics Options 607~~~~~~~~~~~~~~~~~~~ 608 609.. option:: -fshow-column, -fshow-source-location, -fcaret-diagnostics, -fdiagnostics-fixit-info, -fdiagnostics-parseable-fixits, -fdiagnostics-print-source-range-info, -fprint-source-range-info, -fdiagnostics-show-option, -fmessage-length 610 611 These options control how Clang prints out information about diagnostics 612 (errors and warnings). Please see the Clang User's Manual for more information. 613 614Preprocessor Options 615~~~~~~~~~~~~~~~~~~~~ 616 617.. option:: -D<macroname>=<value> 618 619 Adds an implicit #define into the predefines buffer which is read before the 620 source file is preprocessed. 621 622.. option:: -U<macroname> 623 624 Adds an implicit #undef into the predefines buffer which is read before the 625 source file is preprocessed. 626 627.. option:: -include <filename> 628 629 Adds an implicit #include into the predefines buffer which is read before the 630 source file is preprocessed. 631 632.. option:: -I<directory> 633 634 Add the specified directory to the search path for include files. 635 636.. option:: -F<directory> 637 638 Add the specified directory to the search path for framework include files. 639 640.. option:: -nostdinc 641 642 Do not search the standard system directories or compiler builtin directories 643 for include files. 644 645.. option:: -nostdlibinc 646 647 Do not search the standard system directories for include files, but do 648 search compiler builtin include directories. 649 650.. option:: -nobuiltininc 651 652 Do not search clang's builtin directory for include files. 653 654 655ENVIRONMENT 656----------- 657 658.. envvar:: TMPDIR, TEMP, TMP 659 660 These environment variables are checked, in order, for the location to write 661 temporary files used during the compilation process. 662 663.. envvar:: CPATH 664 665 If this environment variable is present, it is treated as a delimited list of 666 paths to be added to the default system include path list. The delimiter is 667 the platform dependent delimiter, as used in the PATH environment variable. 668 669 Empty components in the environment variable are ignored. 670 671.. envvar:: C_INCLUDE_PATH, OBJC_INCLUDE_PATH, CPLUS_INCLUDE_PATH, OBJCPLUS_INCLUDE_PATH 672 673 These environment variables specify additional paths, as for :envvar:`CPATH`, which are 674 only used when processing the appropriate language. 675 676.. envvar:: MACOSX_DEPLOYMENT_TARGET 677 678 If :option:`-mmacosx-version-min` is unspecified, the default deployment 679 target is read from this environment variable. This option only affects 680 Darwin targets. 681 682BUGS 683---- 684 685To report bugs, please visit <https://github.com/llvm/llvm-project/issues/>. Most bug reports should 686include preprocessed source files (use the :option:`-E` option) and the full 687output of the compiler, along with information to reproduce. 688 689SEE ALSO 690-------- 691 692:manpage:`as(1)`, :manpage:`ld(1)` 693