cmake-buildsystem.7.rst 31 KB

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  1. .. cmake-manual-description: CMake Buildsystem Reference
  2. cmake-buildsystem(7)
  3. ********************
  4. .. only:: html or latex
  5. .. contents::
  6. Introduction
  7. ============
  8. A CMake-based buildsystem is organized as a set of high-level logical
  9. targets. Each target corresponds to an executable or library, or
  10. is a custom target containing custom commands. Dependencies between the
  11. targets are expressed in the buildsystem to determine the build order
  12. and the rules for regeneration in response to change.
  13. Binary Targets
  14. ==============
  15. Executables and libraries are defined using the :command:`add_library`
  16. and :command:`add_executable` commands. The resulting binary files have
  17. appropriate prefixes, suffixes and extensions for the platform targeted.
  18. Dependencies between binary targets are expressed using the
  19. :command:`target_link_libraries` command:
  20. .. code-block:: cmake
  21. add_library(archive archive.cpp zip.cpp lzma.cpp)
  22. add_executable(zipapp zipapp.cpp)
  23. target_link_libraries(zipapp archive)
  24. ``archive`` is defined as a static library -- an archive containing objects
  25. compiled from ``archive.cpp``, ``zip.cpp``, and ``lzma.cpp``. ``zipapp``
  26. is defined as an executable formed by compiling and linking ``zipapp.cpp``.
  27. When linking the ``zipapp`` executable, the ``archive`` static library is
  28. linked in.
  29. Binary Library Types
  30. --------------------
  31. By default, the :command:`add_library` command defines a static library,
  32. unless a type is specified. A type may be specified when using the command:
  33. .. code-block:: cmake
  34. add_library(archive SHARED archive.cpp zip.cpp lzma.cpp)
  35. .. code-block:: cmake
  36. add_library(archive STATIC archive.cpp zip.cpp lzma.cpp)
  37. The :variable:`BUILD_SHARED_LIBS` variable may be enabled to change the
  38. behavior of :command:`add_library` to build shared libraries by default.
  39. In the context of the buildsystem definition as a whole, it is largely
  40. irrelevant whether particular libraries are ``SHARED`` or ``STATIC`` --
  41. the commands, dependency specifications and other APIs work similarly
  42. regardless of the library type. The ``MODULE`` library type is
  43. dissimilar in that it is generally not linked to -- it is not used in
  44. the right-hand-side of the :command:`target_link_libraries` command.
  45. It is a type which is loaded as a plugin using runtime techniques.
  46. .. code-block:: cmake
  47. add_library(archive MODULE 7z.cpp)
  48. The ``OBJECT`` library type is also not linked to. It defines a non-archival
  49. collection of object files resulting from compiling the given source files.
  50. The object files collection can be used as source inputs to other targets:
  51. .. code-block:: cmake
  52. add_library(archive OBJECT archive.cpp zip.cpp lzma.cpp)
  53. add_library(archiveExtras STATIC $<TARGET_OBJECTS:archive> extras.cpp)
  54. add_executable(test_exe $<TARGET_OBJECTS:archive> test.cpp)
  55. ``OBJECT`` libraries may only be used locally as sources in a buildsystem --
  56. they may not be installed, exported, or used in the right hand side of
  57. :command:`target_link_libraries`. They also may not be used as the ``TARGET``
  58. in a use of the :command:`add_custom_command(TARGET)` command signature.
  59. Commands such as :command:`add_custom_command`, which generates rules to be
  60. run at build time can transparently use an :prop_tgt:`EXECUTABLE <TYPE>`
  61. target as a ``COMMAND`` executable. The buildsystem rules will ensure that
  62. the executable is built before attempting to run the command.
  63. Build Specification and Usage Requirements
  64. ==========================================
  65. The :command:`target_include_directories`, :command:`target_compile_definitions`
  66. and :command:`target_compile_options` commands specify the build specifications
  67. and the usage requirements of binary targets. The commands populate the
  68. :prop_tgt:`INCLUDE_DIRECTORIES`, :prop_tgt:`COMPILE_DEFINITIONS` and
  69. :prop_tgt:`COMPILE_OPTIONS` target properties respectively, and/or the
  70. :prop_tgt:`INTERFACE_INCLUDE_DIRECTORIES`, :prop_tgt:`INTERFACE_COMPILE_DEFINITIONS`
  71. and :prop_tgt:`INTERFACE_COMPILE_OPTIONS` target properties.
  72. Each of the commands has a ``PRIVATE``, ``PUBLIC`` and ``INTERFACE`` mode. The
  73. ``PRIVATE`` mode populates only the non-``INTERFACE_`` variant of the target
  74. property and the ``INTERFACE`` mode populates only the ``INTERFACE_`` variants.
  75. The ``PUBLIC`` mode populates both variants of the repective target property.
  76. Each command may be invoked with multiple uses of each keyword:
  77. .. code-block:: cmake
  78. target_compile_definitions(archive
  79. PRIVATE BUILDING_WITH_LZMA
  80. INTERFACE USING_ARCHIVE_LIB
  81. )
  82. Target Properties
  83. -----------------
  84. The contents of the :prop_tgt:`INCLUDE_DIRECTORIES`,
  85. :prop_tgt:`COMPILE_DEFINITIONS` and :prop_tgt:`COMPILE_OPTIONS` target
  86. properties are used appropriately when compiling the source files of a
  87. binary target.
  88. Entries in the :prop_tgt:`INCLUDE_DIRECTORIES` are added to the compile line
  89. with ``-I`` or ``-isystem`` prefixes and in the order of appearance in the
  90. property value.
  91. Entries in the :prop_tgt:`COMPILE_DEFINITIONS` are prefixed with ``-D`` or
  92. ``/D`` and added to the compile line in an unspecified order. The
  93. :prop_tgt:`DEFINE_SYMBOL` target property is also added as a compile
  94. definition as a special convenience case for ``SHARED`` and ``MODULE``
  95. library targets.
  96. Entries in the :prop_tgt:`COMPILE_OPTIONS` are escaped for the shell and added
  97. in the order of appearance in the property value. Several compile options have
  98. special separate handling, such as :prop_tgt:`POSITION_INDEPENDENT_CODE`.
  99. The contents of the :prop_tgt:`INTERFACE_INCLUDE_DIRECTORIES`,
  100. :prop_tgt:`INTERFACE_COMPILE_DEFINITIONS` and
  101. :prop_tgt:`INTERFACE_COMPILE_OPTIONS` target properties are
  102. *Usage Requirements* -- they specify content which consumers
  103. must use to correctly compile and link with the target they appear on.
  104. For any binary target, the contents of each ``INTERFACE_`` property on
  105. each target specified in a :command:`target_link_libraries` command is
  106. consumed:
  107. .. code-block:: cmake
  108. set(srcs archive.cpp zip.cpp)
  109. if (LZMA_FOUND)
  110. list(APPEND srcs lzma.cpp)
  111. endif()
  112. add_library(archive SHARED ${srcs})
  113. if (LZMA_FOUND)
  114. # The archive library sources are compiled with -DBUILDING_WITH_LZMA
  115. target_compile_definitions(archive PRIVATE BUILDING_WITH_LZMA)
  116. endif()
  117. target_compile_definitions(archive INTERFACE USING_ARCHIVE_LIB)
  118. add_executable(consumer)
  119. # Link consumer to archive and consume its usage requirements. The consumer
  120. # executable sources are compiled with -DUSING_ARCHIVE_LIB.
  121. target_link_libraries(consumer archive)
  122. Because it is common to require that the source directory and corresponding
  123. build directory are added to the :prop_tgt:`INCLUDE_DIRECTORIES`, the
  124. :variable:`CMAKE_INCLUDE_CURRENT_DIR` variable can be enabled to conveniently
  125. add the corresponding directories to the :prop_tgt:`INCLUDE_DIRECTORIES` of
  126. all targets. The variable :variable:`CMAKE_INCLUDE_CURRENT_DIR_IN_INTERFACE`
  127. can be enabled to add the corresponding directories to the
  128. :prop_tgt:`INTERFACE_INCLUDE_DIRECTORIES` of all targets. This makes use of
  129. targets in multiple different directories convenient through use of the
  130. :command:`target_link_libraries` command.
  131. Transitive Usage Requirements
  132. -----------------------------
  133. The usage requirements of a target can transitively propagate to dependents.
  134. The :command:`target_link_libraries` command also has ``PRIVATE``,
  135. ``INTERFACE`` and ``PUBLIC`` keywords to control the propagation.
  136. .. code-block:: cmake
  137. add_library(archive archive.cpp)
  138. target_compile_definitions(archive INTERFACE USING_ARCHIVE_LIB)
  139. add_library(serialization serialization.cpp)
  140. target_compile_definitions(serialization INTERFACE USING_SERIALIZATION_LIB)
  141. add_library(archiveExtras extras.cpp)
  142. target_link_libraries(archiveExtras PUBLIC archive)
  143. target_link_libraries(archiveExtras PRIVATE serialization)
  144. # archiveExtras is compiled with -DUSING_ARCHIVE_LIB
  145. # and -DUSING_SERIALIZATION_LIB
  146. add_executable(consumer consumer.cpp)
  147. # consumer is compiled with -DUSING_ARCHIVE_LIB
  148. target_link_libraries(consumer archiveExtras)
  149. Because ``archive`` is a ``PUBLIC`` dependency of ``archiveExtras``, the
  150. usage requirements of it are propagated to ``consumer`` too. Because
  151. ``serialization`` is a ``PRIVATE`` dependency of ``archive``, the usage
  152. requirements of it are not propagated to ``consumer``.
  153. Generally, a dependency should be specified in a use of
  154. :command:`target_link_libraries` with the ``PRIVATE`` keyword if it is used by
  155. only the implementation of a library, and not in the header files. If a
  156. dependency is additionally used in the header files of a library (e.g. for
  157. class inheritance), then it should be specified as a ``PUBLIC`` dependency.
  158. A dependency which is not used by the implementation of a library, but only by
  159. its headers should be specified as an ``INTERFACE`` dependency. The
  160. :command:`target_link_libraries` command may be invoked with multiple uses of
  161. each keyword:
  162. .. code-block:: cmake
  163. target_link_libraries(archiveExtras
  164. PUBLIC archive
  165. PRIVATE serialization
  166. )
  167. Compatible Interface Properties
  168. -------------------------------
  169. Some target properties are required to be compatible between a target and
  170. the interface of each dependency. For example, the
  171. :prop_tgt:`POSITION_INDEPENDENT_CODE` target property may specify a
  172. boolean value of whether a target should be compiled as
  173. position-independent-code, which has platform-specific consequences.
  174. A target may also specify the usage requirement
  175. :prop_tgt:`INTERFACE_POSITION_INDEPENDENT_CODE` to communicate that
  176. consumers must be compiled as position-independent-code.
  177. .. code-block:: cmake
  178. add_executable(exe1 exe1.cpp)
  179. set_property(TARGET exe1 PROPERTY POSITION_INDEPENDENT_CODE ON)
  180. add_library(lib1 SHARED lib1.cpp)
  181. set_property(TARGET lib1 PROPERTY INTERFACE_POSITION_INDEPENDENT_CODE ON)
  182. add_executable(exe2 exe2.cpp)
  183. target_link_libraries(exe2 lib1)
  184. Here, both ``exe1`` and ``exe2`` will be compiled as position-independent-code.
  185. ``lib1`` will also be compiled as position-independent-code because that is the
  186. default setting for ``SHARED`` libraries. If dependencies have conflicting,
  187. non-compatible requirements :manual:`cmake(1)` issues a diagnostic:
  188. .. code-block:: cmake
  189. add_library(lib1 SHARED lib1.cpp)
  190. set_property(TARGET lib1 PROPERTY INTERFACE_POSITION_INDEPENDENT_CODE ON)
  191. add_library(lib2 SHARED lib2.cpp)
  192. set_property(TARGET lib2 PROPERTY INTERFACE_POSITION_INDEPENDENT_CODE OFF)
  193. add_executable(exe1 exe1.cpp)
  194. target_link_libraries(exe1 lib1)
  195. set_property(TARGET exe1 PROPERTY POSITION_INDEPENDENT_CODE OFF)
  196. add_executable(exe2 exe2.cpp)
  197. target_link_libraries(exe2 lib1 lib2)
  198. The ``lib1`` requirement ``INTERFACE_POSITION_INDEPENDENT_CODE`` is not
  199. "compatible" with the ``POSITION_INDEPENDENT_CODE`` property of the ``exe1``
  200. target. The library requires that consumers are built as
  201. position-independent-code, while the executable specifies to not built as
  202. position-independent-code, so a diagnostic is issued.
  203. The ``lib1`` and ``lib2`` requirements are not "compatible". One of them
  204. requires that consumers are built as position-independent-code, while
  205. the other requires that consumers are not built as position-independent-code.
  206. Because ``exe2`` links to both and they are in conflict, a diagnostic is
  207. issued.
  208. To be "compatible", the :prop_tgt:`POSITION_INDEPENDENT_CODE` property,
  209. if set must be either the same, in a boolean sense, as the
  210. :prop_tgt:`INTERFACE_POSITION_INDEPENDENT_CODE` property of all transitively
  211. specified dependencies on which that property is set.
  212. This property of "compatible interface requirement" may be extended to other
  213. properties by specifying the property in the content of the
  214. :prop_tgt:`COMPATIBLE_INTERFACE_BOOL` target property. Each specified property
  215. must be compatible between the consuming target and the corresponding property
  216. with an ``INTERFACE_`` prefix from each dependency:
  217. .. code-block:: cmake
  218. add_library(lib1Version2 SHARED lib1_v2.cpp)
  219. set_property(TARGET lib1Version2 PROPERTY INTERFACE_CUSTOM_PROP ON)
  220. set_property(TARGET lib1Version2 APPEND PROPERTY
  221. COMPATIBLE_INTERFACE_BOOL CUSTOM_PROP
  222. )
  223. add_library(lib1Version3 SHARED lib1_v3.cpp)
  224. set_property(TARGET lib1Version3 PROPERTY INTERFACE_CUSTOM_PROP OFF)
  225. add_executable(exe1 exe1.cpp)
  226. target_link_libraries(exe1 lib1Version2) # CUSTOM_PROP will be ON
  227. add_executable(exe2 exe2.cpp)
  228. target_link_libraries(exe2 lib1Version2 lib1Version3) # Diagnostic
  229. Non-boolean properties may also participate in "compatible interface"
  230. computations. Properties specified in the
  231. :prop_tgt:`COMPATIBLE_INTERFACE_STRING`
  232. property must be either unspecified or compare to the same string among
  233. all transitively specified dependencies. This can be useful to ensure
  234. that multiple incompatible versions of a library are not linked together
  235. through transitive requirements of a target:
  236. .. code-block:: cmake
  237. add_library(lib1Version2 SHARED lib1_v2.cpp)
  238. set_property(TARGET lib1Version2 PROPERTY INTERFACE_LIB_VERSION 2)
  239. set_property(TARGET lib1Version2 APPEND PROPERTY
  240. COMPATIBLE_INTERFACE_STRING LIB_VERSION
  241. )
  242. add_library(lib1Version3 SHARED lib1_v3.cpp)
  243. set_property(TARGET lib1Version3 PROPERTY INTERFACE_LIB_VERSION 3)
  244. add_executable(exe1 exe1.cpp)
  245. target_link_libraries(exe1 lib1Version2) # LIB_VERSION will be "2"
  246. add_executable(exe2 exe2.cpp)
  247. target_link_libraries(exe2 lib1Version2 lib1Version3) # Diagnostic
  248. The :prop_tgt:`COMPATIBLE_INTERFACE_NUMBER_MAX` target property specifies
  249. that content will be evaluated numerically and the maximum number among all
  250. specified will be calculated:
  251. .. code-block:: cmake
  252. add_library(lib1Version2 SHARED lib1_v2.cpp)
  253. set_property(TARGET lib1Version2 PROPERTY INTERFACE_CONTAINER_SIZE_REQUIRED 200)
  254. set_property(TARGET lib1Version2 APPEND PROPERTY
  255. COMPATIBLE_INTERFACE_NUMBER_MAX CONTAINER_SIZE_REQUIRED
  256. )
  257. add_library(lib1Version3 SHARED lib1_v3.cpp)
  258. set_property(TARGET lib1Version2 PROPERTY INTERFACE_CONTAINER_SIZE_REQUIRED 1000)
  259. add_executable(exe1 exe1.cpp)
  260. # CONTAINER_SIZE_REQUIRED will be "200"
  261. target_link_libraries(exe1 lib1Version2)
  262. add_executable(exe2 exe2.cpp)
  263. # CONTAINER_SIZE_REQUIRED will be "1000"
  264. target_link_libraries(exe2 lib1Version2 lib1Version3)
  265. Similarly, the :prop_tgt:`COMPATIBLE_INTERFACE_NUMBER_MIN` may be used to
  266. calculate the numeric minimum value for a property from dependencies.
  267. Each calculated "compatible" property value may be read in the consumer at
  268. generate-time using generator expressions.
  269. Property Origin Debugging
  270. -------------------------
  271. Because build specifications can be determined by dependencies, the lack of
  272. locality of code which creates a target and code which is responsible for
  273. setting build specifications may make the code more difficult to reason about.
  274. :manual:`cmake(1)` provides a debugging facility to print the origin of the
  275. contents of properties which may be determined by dependencies. The properties
  276. which can be debugged are :prop_tgt:`INCLUDE_DIRECTORIES`,
  277. :prop_tgt:`COMPILE_DEFINITIONS`, :prop_tgt:`COMPILE_OPTIONS`,
  278. :prop_tgt:`AUTOUIC_OPTIONS`, and all properties listed in a
  279. ``COMPATIBLE_INTERFACE_*`` target property:
  280. .. code-block:: cmake
  281. set(CMAKE_DEBUG_TARGET_PROPERTIES
  282. INCLUDE_DIRECTORIES
  283. COMPILE_DEFINITIONS
  284. POSITION_INDEPENDENT_CODE
  285. CONTAINER_SIZE_REQUIRED
  286. LIB_VERSION
  287. )
  288. add_executable(exe1 exe1.cpp)
  289. In the case of properties listed in :prop_tgt:`COMPATIBLE_INTERFACE_BOOL` or
  290. :prop_tgt:`COMPATIBLE_INTERFACE_STRING`, the debug output shows which target
  291. was responsible for setting the property, and which other dependencies also
  292. defined the property. In the case of
  293. :prop_tgt:`COMPATIBLE_INTERFACE_NUMBER_MAX` and
  294. :prop_tgt:`COMPATIBLE_INTERFACE_NUMBER_MIN`, the debug output shows the
  295. value of the property from each dependency, and whether the value determines
  296. the new extreme.
  297. Build Specification with Generator Expressions
  298. ----------------------------------------------
  299. Build specifications may use
  300. :manual:`generator expressions <cmake-generator-expressions(7)>` containing
  301. content which may be conditional or known only at generate-time. For example,
  302. the calculated "compatible" value of a property may be read with the
  303. ``TARGET_PROPERTY`` expression:
  304. .. code-block:: cmake
  305. add_library(lib1Version2 SHARED lib1_v2.cpp)
  306. set_property(TARGET lib1Version2 PROPERTY
  307. INTERFACE_CONTAINER_SIZE_REQUIRED 200)
  308. set_property(TARGET lib1Version2 APPEND PROPERTY
  309. COMPATIBLE_INTERFACE_NUMBER_MAX CONTAINER_SIZE_REQUIRED
  310. )
  311. add_executable(exe1 exe1.cpp)
  312. target_link_libraries(exe1 lib1Version2)
  313. target_compile_definitions(exe1 PRIVATE
  314. CONTAINER_SIZE=$<TARGET_PROPERTY:CONTAINER_SIZE_REQUIRED>
  315. )
  316. In this case, the ``exe1`` source files will be compiled with
  317. ``-DCONTAINER_SIZE=200``.
  318. Configuration determined build specifications may be conveniently set using
  319. the ``CONFIG`` generator expression.
  320. .. code-block:: cmake
  321. target_compile_definitions(exe1 PRIVATE
  322. $<$<CONFIG:Debug>:DEBUG_BUILD>
  323. )
  324. The ``CONFIG`` parameter is compared case-insensitively with the configuration
  325. being built. In the presence of :prop_tgt:`IMPORTED` targets, the content of
  326. :prop_tgt:`MAP_IMPORTED_CONFIG_DEBUG <MAP_IMPORTED_CONFIG_CONFIG>` is also
  327. accounted for by this expression.
  328. Some buildsystems generated by :manual:`cmake(1)` have a predetermined
  329. build-configuration set in the :variable:`CMAKE_BUILD_TYPE` variable. The
  330. buildsystem for the IDEs such as Visual Studio and Xcode are generated
  331. independent of the build-configuration, and the actual build configuration
  332. is not known until build-time. Therefore, code such as
  333. .. code-block:: cmake
  334. string(TOLOWER ${CMAKE_BUILD_TYPE} _type)
  335. if (_type STREQUAL debug)
  336. target_compile_definitions(exe1 PRIVATE DEBUG_BUILD)
  337. endif()
  338. may appear to work for ``Makefile`` based and ``Ninja`` generators, but is not
  339. portable to IDE generators. Additionally, the :prop_tgt:`IMPORTED`
  340. configuration-mappings are not accounted for with code like this, so it should
  341. be avoided.
  342. The unary ``TARGET_PROPERTY`` generator expression and the ``TARGET_POLICY``
  343. generator expression are evaluated with the consuming target context. This
  344. means that a usage requirement specification may be evaluated differently based
  345. on the consumer:
  346. .. code-block:: cmake
  347. add_library(lib1 lib1.cpp)
  348. target_compile_definitions(lib1 INTERFACE
  349. $<$<STREQUAL:$<TARGET_PROPERTY:TYPE>,EXECUTABLE>:LIB1_WITH_EXE>
  350. $<$<STREQUAL:$<TARGET_PROPERTY:TYPE>,SHARED_LIBRARY>:LIB1_WITH_SHARED_LIB>
  351. $<$<TARGET_POLICY:CMP0041>:CONSUMER_CMP0041_NEW>
  352. )
  353. add_executable(exe1 exe1.cpp)
  354. target_link_libraries(exe1 lib1)
  355. cmake_policy(SET CMP0041 NEW)
  356. add_library(shared_lib shared_lib.cpp)
  357. target_link_libraries(shared_lib lib1)
  358. The ``exe1`` executable will be compiled with ``-DLIB1_WITH_EXE``, while the
  359. ``shared_lib`` shared library will be compiled with ``-DLIB1_WITH_SHARED_LIB``
  360. and ``-DCONSUMER_CMP0041_NEW``, because policy :policy:`CMP0041` is
  361. ``NEW`` at the point where the ``shared_lib`` target is created.
  362. The ``BUILD_INTERFACE`` expression wraps requirements which are only used when
  363. consumed from a target in the same buildsystem, or when consumed from a target
  364. exported to the build directory using the :command:`export` command. The
  365. ``INSTALL_INTERFACE`` expression wraps requirements which are only used when
  366. consumed from a target which has been installed and exported with the
  367. :command:`install(EXPORT)` command:
  368. .. code-block:: cmake
  369. add_library(ClimbingStats climbingstats.cpp)
  370. target_compile_definitions(ClimbingStats INTERFACE
  371. $<BUILD_INTERFACE:ClimbingStats_FROM_BUILD_LOCATION>
  372. $<INSTALL_INTERFACE:ClimbingStats_FROM_INSTALLED_LOCATION>
  373. )
  374. install(TARGETS ClimbingStats EXPORT libExport ${InstallArgs})
  375. install(EXPORT libExport NAMESPACE Upstream::
  376. DESTINATION lib/cmake/ClimbingStats)
  377. export(EXPORT libExport NAMESPACE Upstream::)
  378. add_executable(exe1 exe1.cpp)
  379. target_link_libraries(exe1 ClimbingStats)
  380. In this case, the ``exe1`` executable will be compiled with
  381. ``-DClimbingStats_FROM_BUILD_LOCATION``. The exporting commands generate
  382. :prop_tgt:`IMPORTED` targets with either the ``INSTALL_INTERFACE`` or the
  383. ``BUILD_INTERFACE`` omitted, and the ``*_INTERFACE`` marker stripped away.
  384. A separate project consuming the ``ClimbingStats`` package would contain:
  385. .. code-block:: cmake
  386. find_package(ClimbingStats REQUIRED)
  387. add_executable(Downstream main.cpp)
  388. target_link_libraries(Downstream Upstream::ClimbingStats)
  389. Depending on whether the ``ClimbingStats`` package was used from the build
  390. location or the install location, the ``Downstream`` target would be compiled
  391. with either ``-DClimbingStats_FROM_BUILD_LOCATION`` or
  392. ``-DClimbingStats_FROM_INSTALL_LOCATION``. For more about packages and
  393. exporting see the :manual:`cmake-packages(7)` manual.
  394. Include Directories and Usage Requirements
  395. ''''''''''''''''''''''''''''''''''''''''''
  396. Include directories require some special consideration when specified as usage
  397. requirements and when used with generator expressions. The
  398. :command:`target_include_directories` command accepts both relative and
  399. absolute include directories:
  400. .. code-block:: cmake
  401. add_library(lib1 lib1.cpp)
  402. target_include_directories(lib1 PRIVATE
  403. /absolute/path
  404. relative/path
  405. )
  406. Relative paths are interpreted relative to the source directory where the
  407. command appears. Relative paths are not allowed in the
  408. :prop_tgt:`INTERFACE_INCLUDE_DIRECTORIES` of :prop_tgt:`IMPORTED` targets.
  409. In cases where a non-trivial generator expression is used, the
  410. ``INSTALL_PREFIX`` expression may be used within the argument of an
  411. ``INSTALL_INTERFACE`` expression. It is a replacement marker which
  412. expands to the installation prefix when imported by a consuming project.
  413. Include directories usage requirements commonly differ between the build-tree
  414. and the install-tree. The ``BUILD_INTERFACE`` and ``INSTALL_INTERFACE``
  415. generator expressions can be used to describe separate usage requirements
  416. based on the usage location. Relative paths are allowed within these
  417. expressions, and are interpreted relative to the current source directory
  418. or the installation prefix, as appropriate.
  419. Two convenience APIs are provided relating to include directories usage
  420. requirements. The :variable:`CMAKE_INCLUDE_CURRENT_DIR_IN_INTERFACE` variable
  421. may be enabled, with an equivalent effect to:
  422. .. code-block:: cmake
  423. set_property(TARGET tgt APPEND PROPERTY
  424. $<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR};${CMAKE_CURRENT_BINARY_DIR}>
  425. )
  426. for each target affected. The convenience for installed targets is
  427. an ``INCLUDES DESTINATION`` component with the :command:`install(TARGETS)`
  428. command:
  429. .. code-block:: cmake
  430. install(TARGETS foo bar bat EXPORT tgts ${dest_args}
  431. INCLUDES DESTINATION include
  432. )
  433. install(EXPORT tgts ${other_args})
  434. install(FILES ${headers} DESTINATION include)
  435. This is equivalent to appending ``${CMAKE_INSTALL_PREFIX}/include`` to the
  436. :prop_tgt:`INTERFACE_INCLUDE_DIRECTORIES` of each of the installed
  437. :prop_tgt:`IMPORTED` targets when generated by :command:`install(EXPORT)`.
  438. If a binary target is linked transitively to a Mac OX framework, the
  439. ``Headers`` directory of the framework is also treated as a usage requirement.
  440. This has the same effect as passing the framework directory as an include
  441. directory.
  442. Link Libraries and Generator Expressions
  443. ----------------------------------------
  444. Like build specifications, :prop_tgt:`link libraries <LINK_LIBRARIES>` may be
  445. specified with generator expression conditions. However, as consumption of
  446. usage requirements is based on collection from linked dependencies, there is
  447. an additional limitation that the link dependencies must form a "directed
  448. acyclic graph". That is, if linking to a target is dependent on the value of
  449. a target property, that target property may not be dependent on the linked
  450. dependencies:
  451. .. code-block:: cmake
  452. add_library(lib1 lib1.cpp)
  453. add_library(lib2 lib2.cpp)
  454. target_link_libraries(lib1 PUBLIC
  455. $<$<TARGET_PROPERTY:POSITION_INDEPENDENT_CODE>:lib2>
  456. )
  457. add_library(lib3 lib3.cpp)
  458. set_property(TARGET lib3 PROPERTY INTERFACE_POSITION_INDEPENDENT_CODE ON)
  459. add_executable(exe1 exe1.cpp)
  460. target_link_libraries(exe1 lib1 lib3)
  461. As the value of the :prop_tgt:`POSITION_INDEPENDENT_CODE` property of
  462. the ``exe1`` target is dependent on the linked libraries (``lib3``), and the
  463. edge of linking ``exe1`` is determined by the same
  464. :prop_tgt:`POSITION_INDEPENDENT_CODE` property, the dependency graph above
  465. contains a cycle. :manual:`cmake(1)` issues a diagnostic in this case.
  466. Output Files
  467. ------------
  468. The buildsystem targets created by the :command:`add_library` and
  469. :command:`add_executable` commands create rules to create binary outputs.
  470. The exact output location of the binaries can only be determined at
  471. generate-time because it can depend on the build-configuration and the
  472. link-language of linked dependencies etc. ``TARGET_FILE``,
  473. ``TARGET_LINKER_FILE`` and related expressions can be used to access the
  474. name and location of generated binaries. These expressions do not work
  475. for ``OBJECT`` libraries however, as there is no single file generated
  476. by such libraries which is relevant to the expressions.
  477. Directory-Scoped Commands
  478. -------------------------
  479. The :command:`target_include_directories`,
  480. :command:`target_compile_definitions` and
  481. :command:`target_compile_options` commands have an effect on only one
  482. target at a time. The commands :command:`add_definitions`,
  483. :command:`add_compile_options` and :command:`include_directories` have
  484. a similar function, but operate at directory scope instead of target
  485. scope for convenience.
  486. Psuedo Targets
  487. ==============
  488. Some target types do not represent outputs of the buildsystem, but only inputs
  489. such as external dependencies, aliases or other non-build artifacts. Pseudo
  490. targets are not represented in the generated buildsystem.
  491. Imported Targets
  492. ----------------
  493. An :prop_tgt:`IMPORTED` target represents a pre-existing dependency. Usually
  494. such targets are defined by an upstream package and should be treated as
  495. immutable. It is not possible to use an :prop_tgt:`IMPORTED` target in the
  496. left-hand-side of the :command:`target_compile_definitions`,
  497. :command:`target_include_directories`, :command:`target_compile_options` or
  498. :command:`target_link_libraries` commands, as that would be an attempt to
  499. modify it. :prop_tgt:`IMPORTED` targets are designed to be used only in the
  500. right-hand-side of those commands.
  501. :prop_tgt:`IMPORTED` targets may have the same usage requirement properties
  502. populated as binary targets, such as
  503. :prop_tgt:`INTERFACE_INCLUDE_DIRECTORIES`,
  504. :prop_tgt:`INTERFACE_COMPILE_DEFINITIONS`,
  505. :prop_tgt:`INTERFACE_COMPILE_OPTIONS`,
  506. :prop_tgt:`INTERFACE_LINK_LIBRARIES`, and
  507. :prop_tgt:`INTERFACE_POSITION_INDEPENDENT_CODE`.
  508. The :prop_tgt:`LOCATION` may also be read from an IMPORTED target, though there
  509. is rarely reason to do so. Commands such as :command:`add_custom_command` can
  510. transparently use an :prop_tgt:`IMPORTED` :prop_tgt:`EXECUTABLE <TYPE>` target
  511. as a ``COMMAND`` executable.
  512. The scope of the definition of an :prop_tgt:`IMPORTED` target is the directory
  513. where it was defined. It may be accessed and used from subdirectories, but
  514. not from parent directories or sibling directories. The scope is similar to
  515. the scope of a cmake variable.
  516. It is also possible to define a ``GLOBAL`` :prop_tgt:`IMPORTED` target which is
  517. accessible globally in the buildsystem.
  518. See the :manual:`cmake-packages(7)` manual for more on creating packages
  519. with :prop_tgt:`IMPORTED` targets.
  520. Alias Targets
  521. -------------
  522. An ``ALIAS`` target is a name which may be used interchangably with
  523. a binary target name in read-only contexts. A primary use-case for ``ALIAS``
  524. targets is for example or unit test executables accompanying a library, which
  525. may be part of the same buildsystem or built separately based on user
  526. configuration.
  527. .. code-block:: cmake
  528. add_library(lib1 lib1.cpp)
  529. install(TARGETS lib1 EXPORT lib1Export ${dest_args})
  530. install(EXPORT lib1Export NAMESPACE Upstream:: ${other_args})
  531. add_library(Upstream::lib1 ALIAS lib1)
  532. In another directory, we can link unconditionally to the ``Upstream::lib1``
  533. target, which may be an :prop_tgt:`IMPORTED` target from a package, or an
  534. ``ALIAS`` target if built as part of the same buildsystem.
  535. .. code-block:: cmake
  536. if (NOT TARGET Upstream::lib1)
  537. find_package(lib1 REQUIRED)
  538. endif()
  539. add_executable(exe1 exe1.cpp)
  540. target_link_libraries(exe1 Upstream::lib1)
  541. ``ALIAS`` targets are not mutable, installable or exportable. They are
  542. entirely local to the buildsystem description. A name can be tested for
  543. whether it is an ``ALIAS`` name by reading the :prop_tgt:`ALIASED_TARGET`
  544. property from it:
  545. .. code-block:: cmake
  546. get_target_property(_aliased Upstream::lib1 ALIASED_TARGET)
  547. if(_aliased)
  548. message(STATUS "The name Upstream::lib1 is an ALIAS for ${_aliased}.")
  549. endif()
  550. Interface Libraries
  551. -------------------
  552. An ``INTERFACE`` target has no :prop_tgt:`LOCATION` and is mutable, but is
  553. otherwise similar to an :prop_tgt:`IMPORTED` target.
  554. It may specify usage requirements such as
  555. :prop_tgt:`INTERFACE_INCLUDE_DIRECTORIES`,
  556. :prop_tgt:`INTERFACE_COMPILE_DEFINITIONS`,
  557. :prop_tgt:`INTERFACE_COMPILE_OPTIONS`,
  558. :prop_tgt:`INTERFACE_LINK_LIBRARIES`, and
  559. :prop_tgt:`INTERFACE_POSITION_INDEPENDENT_CODE`.
  560. Only the ``INTERFACE`` modes of the :command:`target_include_directories`,
  561. :command:`target_compile_definitions`, :command:`target_compile_options`,
  562. and :command:`target_link_libraries` commands may be used with ``INTERFACE``
  563. libraries.
  564. A primary use-case for ``INTERFACE`` libraries is header-only libraries.
  565. .. code-block:: cmake
  566. add_library(Eigen INTERFACE)
  567. target_include_directories(Eigen INTERFACE
  568. $<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}/src>
  569. $<INSTALL_INTERFACE:include/Eigen>
  570. )
  571. add_executable(exe1 exe1.cpp)
  572. target_link_libraries(exe1 Eigen)
  573. Here, the usage requirements from the ``Eigen`` target are consumed and used
  574. when compiling, but it has no effect on linking.
  575. Another use-case is to employ an entirely target-focussed design for usage
  576. requirements:
  577. .. code-block:: cmake
  578. add_library(pic_on INTERFACE)
  579. set_property(TARGET pic_on PROPERTY INTERFACE_POSITION_INDEPENDENT_CODE ON)
  580. add_library(pic_off INTERFACE)
  581. set_property(TARGET pic_off PROPERTY INTERFACE_POSITION_INDEPENDENT_CODE OFF)
  582. add_library(enable_rtti INTERFACE)
  583. target_compile_options(enable_rtti INTERFACE
  584. $<$<OR:$<COMPILER_ID:GNU>,$<COMPILER_ID:Clang>>:-rtti>
  585. )
  586. add_executable(exe1 exe1.cpp)
  587. target_link_libraries(exe1 pic_on enable_rtti)
  588. This way, the build specification of ``exe1`` is expressed entirely as linked
  589. targets, and the complexity of compiler-specific flags is encapsulated in an
  590. ``INTERFACE`` library target.
  591. ``INTERFACE`` libraries may be installed and exported. Any content they refer
  592. to must be installed separately:
  593. .. code-block:: cmake
  594. add_library(Eigen INTERFACE)
  595. target_include_directories(Eigen INTERFACE
  596. $<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}/src>
  597. $<INSTALL_INTERFACE:include/Eigen>
  598. )
  599. install(TARGETS Eigen EXPORT eigenExport)
  600. install(EXPORT eigenExport NAMESPACE Upstream::
  601. DESTINATION lib/cmake/Eigen
  602. )
  603. install(FILES
  604. ${CMAKE_CURRENT_SOURCE_DIR}/src/eigen.h
  605. ${CMAKE_CURRENT_SOURCE_DIR}/src/vector.h
  606. ${CMAKE_CURRENT_SOURCE_DIR}/src/matrix.h
  607. DESTINATION include/Eigen
  608. )