The flag was added in 8ef48d07efa3 to suppress build warning and is no longer needed. It adds "no-builtins" attribute, which prevents libclc functions from being inlined into caller that don't have the attribute. The flag is meant to prevent folding standard library calls into optimized implementations. For libclc device targets, however, such target‑driven folding is desirable. llvm-diff shows no change to amdgcn--amdhsa.bc and nvptx--nvidiacl.bc. Co-authored-by: Mészáros Gergely <gergely.meszaros@intel.com>
609 lines
21 KiB
CMake
609 lines
21 KiB
CMake
# Compiles an OpenCL C - or assembles an LL file - to bytecode
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#
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# Arguments:
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# * TRIPLE <string>
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# Target triple for which to compile the bytecode file.
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# * INPUT <string>
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# File to compile/assemble to bytecode
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# * OUTPUT <string>
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# Bytecode file to generate
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# * EXTRA_OPTS <string> ...
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# List of compiler options to use. Note that some are added by default.
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# * DEPENDENCIES <string> ...
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# List of extra dependencies to inject
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#
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# Depends on the clang, llvm-as, and llvm-link targets for compiling,
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# assembling, and linking, respectively.
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function(compile_to_bc)
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cmake_parse_arguments(ARG
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""
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"TRIPLE;INPUT;OUTPUT"
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"EXTRA_OPTS;DEPENDENCIES"
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${ARGN}
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)
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# If this is an LLVM IR file (identified solely by its file suffix),
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# pre-process it with clang to a temp file, then assemble that to bytecode.
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set( TMP_SUFFIX )
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get_filename_component( FILE_EXT ${ARG_INPUT} EXT )
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if( NOT ${FILE_EXT} STREQUAL ".ll" )
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# Pass '-c' when not running the preprocessor
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set( PP_OPTS -c )
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else()
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set( PP_OPTS -E;-P )
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set( TMP_SUFFIX .tmp )
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endif()
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set( TARGET_ARG )
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if( ARG_TRIPLE )
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set( TARGET_ARG "-target" ${ARG_TRIPLE} )
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endif()
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# Ensure the directory we are told to output to exists
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get_filename_component( ARG_OUTPUT_DIR ${ARG_OUTPUT} DIRECTORY )
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file( MAKE_DIRECTORY ${ARG_OUTPUT_DIR} )
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add_custom_command(
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OUTPUT ${ARG_OUTPUT}${TMP_SUFFIX}
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COMMAND ${clang_exe}
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${TARGET_ARG}
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${PP_OPTS}
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${ARG_EXTRA_OPTS}
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-MD -MF ${ARG_OUTPUT}.d -MT ${ARG_OUTPUT}${TMP_SUFFIX}
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# LLVM 13 enables standard includes by default - we don't want
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# those when pre-processing IR. We disable it unconditionally.
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$<$<VERSION_GREATER_EQUAL:${LLVM_PACKAGE_VERSION},13.0.0>:-cl-no-stdinc>
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-emit-llvm
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-o ${ARG_OUTPUT}${TMP_SUFFIX}
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-x cl
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${ARG_INPUT}
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DEPENDS
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${clang_target}
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${ARG_INPUT}
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${ARG_DEPENDENCIES}
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DEPFILE ${ARG_OUTPUT}.d
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)
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if( ${FILE_EXT} STREQUAL ".ll" )
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add_custom_command(
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OUTPUT ${ARG_OUTPUT}
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COMMAND ${llvm-as_exe} -o ${ARG_OUTPUT} ${ARG_OUTPUT}${TMP_SUFFIX}
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DEPENDS ${llvm-as_target} ${ARG_OUTPUT}${TMP_SUFFIX}
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)
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endif()
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endfunction()
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# Links together one or more bytecode files
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#
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# Arguments:
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# * INTERNALIZE
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# Set if -internalize flag should be passed when linking
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# * TARGET <string>
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# Custom target to create
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# * INPUT <string> ...
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# List of bytecode files to link together
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# * DEPENDENCIES <string> ...
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# List of extra dependencies to inject
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function(link_bc)
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cmake_parse_arguments(ARG
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"INTERNALIZE"
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"TARGET"
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"INPUTS;DEPENDENCIES"
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${ARGN}
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)
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if( ARG_INTERNALIZE )
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set( inputs_with_flag ${ARG_INPUTS} )
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else()
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# Add the --override flag for non-generic bitcode files so that their
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# symbols can override definitions in generic bitcode files.
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set( inputs_with_flag )
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foreach( file IN LISTS ARG_INPUTS )
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string( FIND ${file} "/generic/" is_generic )
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if( is_generic LESS 0 )
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list( APPEND inputs_with_flag "--override" )
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endif()
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list( APPEND inputs_with_flag ${file} )
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endforeach()
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endif()
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if( WIN32 OR CYGWIN )
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# Create a response file in case the number of inputs exceeds command-line
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# character limits on certain platforms.
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file( TO_CMAKE_PATH ${LIBCLC_ARCH_OBJFILE_DIR}/${ARG_TARGET}.rsp RSP_FILE )
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# Turn it into a space-separate list of input files
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list( JOIN inputs_with_flag " " RSP_INPUT )
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file( GENERATE OUTPUT ${RSP_FILE} CONTENT ${RSP_INPUT} )
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# Ensure that if this file is removed, we re-run CMake
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set_property( DIRECTORY APPEND PROPERTY CMAKE_CONFIGURE_DEPENDS
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${RSP_FILE}
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)
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set( LINK_INPUT_ARG "@${RSP_FILE}" )
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else()
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set( LINK_INPUT_ARG ${inputs_with_flag} )
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endif()
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if( ARG_INTERNALIZE )
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set( link_flags --internalize --only-needed )
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endif()
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add_custom_command(
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OUTPUT ${LIBCLC_ARCH_OBJFILE_DIR}/${ARG_TARGET}.bc
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COMMAND ${llvm-link_exe} ${link_flags} -o ${LIBCLC_ARCH_OBJFILE_DIR}/${ARG_TARGET}.bc ${LINK_INPUT_ARG}
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DEPENDS ${llvm-link_target} ${ARG_DEPENDENCIES} ${ARG_INPUTS} ${RSP_FILE}
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)
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add_custom_target( ${ARG_TARGET} ALL DEPENDS ${LIBCLC_ARCH_OBJFILE_DIR}/${ARG_TARGET}.bc )
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set_target_properties( ${ARG_TARGET} PROPERTIES
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TARGET_FILE ${LIBCLC_ARCH_OBJFILE_DIR}/${ARG_TARGET}.bc
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FOLDER "libclc/Device IR/Linking"
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)
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endfunction()
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# Create a custom target for each bitcode file, which is the output of a custom
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# command. This is required for parallel compilation of the custom commands that
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# generate the bitcode files when using the CMake MSVC generator on Windows.
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#
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# Arguments:
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# * compile_tgts
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# Output list of compile targets
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# * ARCH_SUFFIX <string>
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# libclc architecture/triple suffix
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# * FILES <string> ...
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# List of bitcode files
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function(create_compile_targets compile_tgts)
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cmake_parse_arguments( ARG "" "ARCH_SUFFIX" "FILES" ${ARGN} )
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if( NOT ARG_ARCH_SUFFIX OR NOT ARG_FILES )
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message( FATAL_ERROR "Must provide ARCH_SUFFIX, and FILES" )
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endif()
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set( tgts )
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foreach( file IN LISTS ARG_FILES )
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cmake_path( GET file STEM stem )
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cmake_path( GET file PARENT_PATH parent_path )
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cmake_path( GET parent_path STEM parent_path_stem )
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set( tgt compile-${ARG_ARCH_SUFFIX}-${parent_path_stem}-${stem} )
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add_custom_target( ${tgt} DEPENDS ${file} )
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list( APPEND tgts ${tgt} )
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endforeach()
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set( compile_tgts ${tgts} PARENT_SCOPE )
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endfunction()
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# Decomposes and returns variables based on a libclc triple and architecture
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# combination. Returns data via one or more optional output variables.
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#
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# Arguments:
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# * TRIPLE <string>
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# libclc target triple to query
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# * DEVICE <string>
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# libclc device to query
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#
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# Optional Arguments:
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# * CPU <var>
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# Variable name to be set to the target CPU
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# * ARCH_SUFFIX <var>
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# Variable name to be set to the triple/architecture suffix
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# * CLANG_TRIPLE <var>
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# Variable name to be set to the normalized clang triple
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function(get_libclc_device_info)
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cmake_parse_arguments(ARG
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""
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"TRIPLE;DEVICE;CPU;ARCH_SUFFIX;CLANG_TRIPLE"
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""
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${ARGN}
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)
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if( NOT ARG_TRIPLE OR NOT ARG_DEVICE )
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message( FATAL_ERROR "Must provide both TRIPLE and DEVICE" )
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endif()
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string( REPLACE "-" ";" TRIPLE ${ARG_TRIPLE} )
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list( GET TRIPLE 0 ARCH )
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# Some targets don't have a specific device architecture to target
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if( ARG_DEVICE STREQUAL none
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OR ((ARCH STREQUAL spirv OR ARCH STREQUAL spirv64)
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AND NOT LIBCLC_USE_SPIRV_BACKEND) )
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set( cpu )
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set( arch_suffix "${ARG_TRIPLE}" )
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else()
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set( cpu "${ARG_DEVICE}" )
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set( arch_suffix "${ARG_DEVICE}-${ARG_TRIPLE}" )
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endif()
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if( ARG_CPU )
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set( ${ARG_CPU} ${cpu} PARENT_SCOPE )
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endif()
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if( ARG_ARCH_SUFFIX )
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set( ${ARG_ARCH_SUFFIX} ${arch_suffix} PARENT_SCOPE )
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endif()
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# Some libclc targets are not real clang triples: return their canonical
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# triples.
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if( ARCH STREQUAL spirv AND LIBCLC_USE_SPIRV_BACKEND )
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set( ARG_TRIPLE "spirv32--" )
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elseif( ARCH STREQUAL spirv64 AND LIBCLC_USE_SPIRV_BACKEND )
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set( ARG_TRIPLE "spirv64--" )
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elseif( ARCH STREQUAL spirv OR ARCH STREQUAL clspv )
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set( ARG_TRIPLE "spir--" )
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elseif( ARCH STREQUAL spirv64 OR ARCH STREQUAL clspv64 )
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set( ARG_TRIPLE "spir64--" )
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endif()
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if( ARG_CLANG_TRIPLE )
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set( ${ARG_CLANG_TRIPLE} ${ARG_TRIPLE} PARENT_SCOPE )
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endif()
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endfunction()
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# Install libclc artifacts.
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#
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# Arguments:
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# * FILES <string> ...
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# List of libclc artifact files to be installed.
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function(libclc_install)
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cmake_parse_arguments(ARG "" "" "FILES" ${ARGN})
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if( NOT ARG_FILES )
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message( FATAL_ERROR "Must provide FILES" )
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endif()
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if( NOT CMAKE_CFG_INTDIR STREQUAL "." )
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# Replace CMAKE_CFG_INTDIR with CMAKE_INSTALL_CONFIG_NAME for multiple-
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# configuration generators.
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string( REPLACE ${CMAKE_CFG_INTDIR} "\$\{CMAKE_INSTALL_CONFIG_NAME\}"
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files ${ARG_FILES} )
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else()
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set( files ${ARG_FILES} )
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endif()
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install(
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FILES ${files}
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DESTINATION "${CMAKE_INSTALL_DATADIR}/clc"
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)
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endfunction()
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# Compiles a list of library source files (provided by LIB_FILES/GEN_FILES) and
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# compiles them to LLVM bytecode (or SPIR-V), links them together and optimizes
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# them.
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#
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# For bytecode libraries, a list of ALIASES may optionally be provided to
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# produce additional symlinks.
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#
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# Arguments:
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# * ARCH <string>
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# libclc architecture being built
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# * ARCH_SUFFIX <string>
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# libclc architecture/triple suffix
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# * TRIPLE <string>
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# Triple used to compile
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# * PARENT_TARGET <string>
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# Target into which to group the target builtins
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#
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# Optional Arguments:
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# * CLC_INTERNAL
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# Pass if compiling the internal CLC builtin libraries, which are not
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# optimized and do not have aliases created.
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# * LIB_FILES <string> ...
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# List of files that should be built for this library
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# * GEN_FILES <string> ...
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# List of generated files (in build dir) that should be built for this library
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# * COMPILE_FLAGS <string> ...
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# Compilation options (for clang)
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# * OPT_FLAGS <string> ...
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# Optimization options (for opt)
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# * ALIASES <string> ...
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# List of aliases
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# * INTERNAL_LINK_DEPENDENCIES <target> ...
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# A list of extra bytecode file's targets. The bitcode files will be linked
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# into the builtin library. Symbols from these link dependencies will be
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# internalized during linking.
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function(add_libclc_builtin_set)
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cmake_parse_arguments(ARG
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"CLC_INTERNAL"
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"ARCH;TRIPLE;ARCH_SUFFIX;PARENT_TARGET"
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"LIB_FILES;GEN_FILES;COMPILE_FLAGS;OPT_FLAGS;ALIASES;INTERNAL_LINK_DEPENDENCIES"
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${ARGN}
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)
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if( NOT ARG_ARCH OR NOT ARG_ARCH_SUFFIX OR NOT ARG_TRIPLE )
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message( FATAL_ERROR "Must provide ARCH, ARCH_SUFFIX, and TRIPLE" )
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endif()
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set( bytecode_files )
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set( bytecode_ir_files )
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foreach( file IN LISTS ARG_GEN_FILES ARG_LIB_FILES )
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# We need to take each file and produce an absolute input file, as well
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# as a unique architecture-specific output file. We deal with a mix of
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# different input files, which makes this trickier.
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set( input_file_dep )
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if( ${file} IN_LIST ARG_GEN_FILES )
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# Generated files are given just as file names, which we must make
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# absolute to the binary directory.
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set( input_file ${CMAKE_CURRENT_BINARY_DIR}/${file} )
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set( output_file "${LIBCLC_ARCH_OBJFILE_DIR}/${file}.bc" )
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# If a target exists that generates this file, add that as a dependency
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# of the custom command.
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if( TARGET generate-${file} )
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set( input_file_dep generate-${file} )
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endif()
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else()
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# Other files are originally relative to each SOURCE file, which are
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# then make relative to the libclc root directory. We must normalize
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# the path (e.g., ironing out any ".."), then make it relative to the
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# root directory again, and use that relative path component for the
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# binary path.
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get_filename_component( abs_path ${file} ABSOLUTE BASE_DIR ${CMAKE_CURRENT_SOURCE_DIR} )
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file( RELATIVE_PATH root_rel_path ${CMAKE_CURRENT_SOURCE_DIR} ${abs_path} )
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set( input_file ${CMAKE_CURRENT_SOURCE_DIR}/${file} )
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set( output_file "${LIBCLC_ARCH_OBJFILE_DIR}/${root_rel_path}.bc" )
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endif()
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get_filename_component( file_dir ${file} DIRECTORY )
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set( file_specific_compile_options )
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get_source_file_property( compile_opts ${file} COMPILE_OPTIONS)
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if( compile_opts )
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set( file_specific_compile_options "${compile_opts}" )
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endif()
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compile_to_bc(
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TRIPLE ${ARG_TRIPLE}
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INPUT ${input_file}
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OUTPUT ${output_file}
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EXTRA_OPTS -nostdlib "${ARG_COMPILE_FLAGS}"
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"${file_specific_compile_options}"
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-I${CMAKE_CURRENT_SOURCE_DIR}/${file_dir}
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DEPENDENCIES ${input_file_dep}
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)
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# Collect all files originating in LLVM IR separately
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get_filename_component( file_ext ${file} EXT )
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if( ${file_ext} STREQUAL ".ll" )
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list( APPEND bytecode_ir_files ${output_file} )
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else()
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list( APPEND bytecode_files ${output_file} )
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endif()
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endforeach()
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set( builtins_comp_lib_tgt builtins.comp.${ARG_ARCH_SUFFIX} )
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if ( CMAKE_GENERATOR MATCHES "Visual Studio" )
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# Don't put commands in one custom target to avoid serialized compilation.
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create_compile_targets( compile_tgts
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ARCH_SUFFIX ${ARG_ARCH_SUFFIX}
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FILES ${bytecode_files}
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)
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add_custom_target( ${builtins_comp_lib_tgt} DEPENDS ${bytecode_ir_files} )
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add_dependencies( ${builtins_comp_lib_tgt} ${compile_tgts} )
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else()
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add_custom_target( ${builtins_comp_lib_tgt}
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DEPENDS ${bytecode_files} ${bytecode_ir_files}
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)
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endif()
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set_target_properties( ${builtins_comp_lib_tgt} PROPERTIES FOLDER "libclc/Device IR/Comp" )
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# Prepend all LLVM IR files to the list so they are linked into the final
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# bytecode modules first. This helps to suppress unnecessary warnings
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# regarding different data layouts while linking. Any LLVM IR files without a
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# data layout will (silently) be given the first data layout the linking
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# process comes across.
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list( PREPEND bytecode_files ${bytecode_ir_files} )
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if( NOT bytecode_files )
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message(FATAL_ERROR "Cannot create an empty builtins library")
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endif()
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set( builtins_link_lib_tgt builtins.link.${ARG_ARCH_SUFFIX} )
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if( NOT ARG_INTERNAL_LINK_DEPENDENCIES )
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link_bc(
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TARGET ${builtins_link_lib_tgt}
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INPUTS ${bytecode_files}
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DEPENDENCIES ${builtins_comp_lib_tgt}
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)
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else()
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# If we have libraries to link while internalizing their symbols, we need
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# two separate link steps; the --internalize flag applies to all link
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# inputs but the first.
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set( builtins_link_lib_tmp_tgt builtins.link.pre-deps.${ARG_ARCH_SUFFIX} )
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link_bc(
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TARGET ${builtins_link_lib_tmp_tgt}
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INPUTS ${bytecode_files}
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DEPENDENCIES ${builtins_comp_lib_tgt}
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)
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set( internal_link_depend_files )
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foreach( tgt ${ARG_INTERNAL_LINK_DEPENDENCIES} )
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list( APPEND internal_link_depend_files $<TARGET_PROPERTY:${tgt},TARGET_FILE> )
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endforeach()
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link_bc(
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INTERNALIZE
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TARGET ${builtins_link_lib_tgt}
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INPUTS $<TARGET_PROPERTY:${builtins_link_lib_tmp_tgt},TARGET_FILE>
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${internal_link_depend_files}
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DEPENDENCIES ${builtins_link_lib_tmp_tgt} ${ARG_INTERNAL_LINK_DEPENDENCIES}
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)
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endif()
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# For the CLC internal builtins, exit here - we only optimize the targets'
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# entry points once we've linked the CLC buitins into them
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if( ARG_CLC_INTERNAL )
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return()
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endif()
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set( builtins_link_lib $<TARGET_PROPERTY:${builtins_link_lib_tgt},TARGET_FILE> )
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# For SPIR-V targets we diverage at this point and generate SPIR-V using the
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# llvm-spirv tool.
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if( ARG_ARCH STREQUAL spirv OR ARG_ARCH STREQUAL spirv64 )
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set( obj_suffix ${ARG_ARCH_SUFFIX}.spv )
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set( libclc_builtins_lib ${LIBCLC_OUTPUT_LIBRARY_DIR}/${obj_suffix} )
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if ( LIBCLC_USE_SPIRV_BACKEND )
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add_custom_command( OUTPUT ${libclc_builtins_lib}
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COMMAND ${clang_exe} --target=${ARG_TRIPLE} -x ir -o ${libclc_builtins_lib} ${builtins_link_lib}
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DEPENDS ${clang_target} ${builtins_link_lib} ${builtins_link_lib_tgt}
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)
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else()
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add_custom_command( OUTPUT ${libclc_builtins_lib}
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|
COMMAND ${llvm-spirv_exe} ${spvflags} -o ${libclc_builtins_lib} ${builtins_link_lib}
|
|
DEPENDS ${llvm-spirv_target} ${builtins_link_lib} ${builtins_link_lib_tgt}
|
|
)
|
|
endif()
|
|
else()
|
|
# Non-SPIR-V targets add an extra step to optimize the bytecode
|
|
set( builtins_opt_lib_tgt builtins.opt.${ARG_ARCH_SUFFIX} )
|
|
|
|
add_custom_command( OUTPUT ${LIBCLC_ARCH_OBJFILE_DIR}/${builtins_opt_lib_tgt}.bc
|
|
COMMAND ${opt_exe} ${ARG_OPT_FLAGS} -o ${LIBCLC_ARCH_OBJFILE_DIR}/${builtins_opt_lib_tgt}.bc
|
|
${builtins_link_lib}
|
|
DEPENDS ${opt_target} ${builtins_link_lib} ${builtins_link_lib_tgt}
|
|
)
|
|
add_custom_target( ${builtins_opt_lib_tgt}
|
|
ALL DEPENDS ${LIBCLC_ARCH_OBJFILE_DIR}/${builtins_opt_lib_tgt}.bc
|
|
)
|
|
set_target_properties( ${builtins_opt_lib_tgt} PROPERTIES
|
|
TARGET_FILE ${LIBCLC_ARCH_OBJFILE_DIR}/${builtins_opt_lib_tgt}.bc
|
|
FOLDER "libclc/Device IR/Opt"
|
|
)
|
|
|
|
set( builtins_opt_lib $<TARGET_PROPERTY:${builtins_opt_lib_tgt},TARGET_FILE> )
|
|
|
|
set( obj_suffix ${ARG_ARCH_SUFFIX}.bc )
|
|
set( libclc_builtins_lib ${LIBCLC_OUTPUT_LIBRARY_DIR}/${obj_suffix} )
|
|
add_custom_command( OUTPUT ${libclc_builtins_lib}
|
|
COMMAND ${prepare_builtins_exe} -o ${libclc_builtins_lib} ${builtins_opt_lib}
|
|
DEPENDS ${builtins_opt_lib} ${builtins_opt_lib_tgt} ${prepare_builtins_target}
|
|
)
|
|
endif()
|
|
|
|
# Add a 'prepare' target
|
|
add_custom_target( prepare-${obj_suffix} ALL DEPENDS ${libclc_builtins_lib} )
|
|
set_target_properties( "prepare-${obj_suffix}" PROPERTIES
|
|
TARGET_FILE ${libclc_builtins_lib}
|
|
FOLDER "libclc/Device IR/Prepare"
|
|
)
|
|
|
|
# Also add a 'prepare' target for the triple. Since a triple may have
|
|
# multiple devices, ensure we only try to create the triple target once. The
|
|
# triple's target will build all of the bytecode for its constituent devices.
|
|
if( NOT TARGET prepare-${ARG_TRIPLE} )
|
|
add_custom_target( prepare-${ARG_TRIPLE} ALL )
|
|
endif()
|
|
add_dependencies( prepare-${ARG_TRIPLE} prepare-${obj_suffix} )
|
|
# Add dependency to top-level pseudo target to ease making other
|
|
# targets dependent on libclc.
|
|
add_dependencies( ${ARG_PARENT_TARGET} prepare-${ARG_TRIPLE} )
|
|
|
|
libclc_install(FILES ${libclc_builtins_lib})
|
|
|
|
# SPIR-V targets can exit early here
|
|
if( ARG_ARCH STREQUAL spirv OR ARG_ARCH STREQUAL spirv64 )
|
|
return()
|
|
endif()
|
|
|
|
# Add a test for whether or not the libraries contain unresolved functions
|
|
# which would usually indicate a build problem. Note that we don't perform
|
|
# this test for all libclc targets:
|
|
# * nvptx-- targets don't include workitem builtins
|
|
# * clspv targets don't include all OpenCL builtins
|
|
if( NOT ARG_ARCH MATCHES "^(nvptx|clspv)(64)?$" )
|
|
add_test( NAME external-funcs-${obj_suffix}
|
|
COMMAND ./check_external_funcs.sh ${libclc_builtins_lib} ${LLVM_TOOLS_BINARY_DIR}
|
|
WORKING_DIRECTORY ${CMAKE_CURRENT_SOURCE_DIR} )
|
|
endif()
|
|
|
|
foreach( a IN LISTS ARG_ALIASES )
|
|
if(CMAKE_HOST_UNIX OR LLVM_USE_SYMLINKS)
|
|
cmake_path(RELATIVE_PATH libclc_builtins_lib
|
|
BASE_DIRECTORY ${LIBCLC_OUTPUT_LIBRARY_DIR}
|
|
OUTPUT_VARIABLE LIBCLC_LINK_OR_COPY_SOURCE)
|
|
set(LIBCLC_LINK_OR_COPY create_symlink)
|
|
else()
|
|
set(LIBCLC_LINK_OR_COPY_SOURCE ${libclc_builtins_lib})
|
|
set(LIBCLC_LINK_OR_COPY copy)
|
|
endif()
|
|
|
|
set( alias_suffix "${a}-${ARG_TRIPLE}.bc" )
|
|
add_custom_command(
|
|
OUTPUT ${LIBCLC_OUTPUT_LIBRARY_DIR}/${alias_suffix}
|
|
COMMAND ${CMAKE_COMMAND} -E ${LIBCLC_LINK_OR_COPY} ${LIBCLC_LINK_OR_COPY_SOURCE} ${LIBCLC_OUTPUT_LIBRARY_DIR}/${alias_suffix}
|
|
DEPENDS prepare-${obj_suffix}
|
|
)
|
|
add_custom_target( alias-${alias_suffix} ALL
|
|
DEPENDS ${LIBCLC_OUTPUT_LIBRARY_DIR}/${alias_suffix}
|
|
)
|
|
add_dependencies( ${ARG_PARENT_TARGET} alias-${alias_suffix} )
|
|
set_target_properties( alias-${alias_suffix}
|
|
PROPERTIES FOLDER "libclc/Device IR/Aliases"
|
|
)
|
|
libclc_install(FILES ${LIBCLC_OUTPUT_LIBRARY_DIR}/${alias_suffix})
|
|
endforeach( a )
|
|
endfunction(add_libclc_builtin_set)
|
|
|
|
# Produces a list of libclc source files by walking over SOURCES files in a
|
|
# given directory. Outputs the list of files in LIB_FILE_LIST.
|
|
#
|
|
# LIB_FILE_LIST may be pre-populated and is appended to.
|
|
#
|
|
# Arguments:
|
|
# * LIB_ROOT_DIR <string>
|
|
# Root directory containing target's lib files, relative to libclc root
|
|
# directory. If not provided, is set to '.'.
|
|
# * DIRS <string> ...
|
|
# List of directories under LIB_ROOT_DIR to walk over searching for SOURCES
|
|
# files. Directories earlier in the list have lower priority than
|
|
# subsequent ones.
|
|
function(libclc_configure_lib_source LIB_FILE_LIST)
|
|
cmake_parse_arguments(ARG
|
|
""
|
|
"LIB_ROOT_DIR"
|
|
"DIRS"
|
|
${ARGN}
|
|
)
|
|
|
|
if( NOT ARG_LIB_ROOT_DIR )
|
|
set(ARG_LIB_ROOT_DIR ".")
|
|
endif()
|
|
|
|
# Enumerate SOURCES* files
|
|
set( source_list )
|
|
foreach( l IN LISTS ARG_DIRS )
|
|
foreach( s "SOURCES" "SOURCES_${LLVM_VERSION_MAJOR}.${LLVM_VERSION_MINOR}" )
|
|
file( TO_CMAKE_PATH ${ARG_LIB_ROOT_DIR}/lib/${l}/${s} file_loc )
|
|
file( TO_CMAKE_PATH ${CMAKE_CURRENT_SOURCE_DIR}/${file_loc} loc )
|
|
# Prepend the location to give higher priority to the specialized
|
|
# implementation
|
|
if( EXISTS ${loc} )
|
|
list( PREPEND source_list ${file_loc} )
|
|
endif()
|
|
endforeach()
|
|
endforeach()
|
|
|
|
## Add the generated convert files here to prevent adding the ones listed in
|
|
## SOURCES
|
|
set( rel_files ${${LIB_FILE_LIST}} ) # Source directory input files, relative to the root dir
|
|
# A "set" of already-added input files
|
|
set( objects )
|
|
foreach( f ${${LIB_FILE_LIST}} )
|
|
get_filename_component( name ${f} NAME )
|
|
list( APPEND objects ${name} )
|
|
endforeach()
|
|
|
|
foreach( l ${source_list} )
|
|
file( READ ${l} file_list )
|
|
string( REPLACE "\n" ";" file_list ${file_list} )
|
|
get_filename_component( dir ${l} DIRECTORY )
|
|
foreach( f ${file_list} )
|
|
get_filename_component( name ${f} NAME )
|
|
# Only add each file once, so that targets can 'specialize' builtins
|
|
if( NOT ${name} IN_LIST objects )
|
|
list( APPEND objects ${name} )
|
|
list( APPEND rel_files ${dir}/${f} )
|
|
endif()
|
|
endforeach()
|
|
endforeach()
|
|
|
|
set( ${LIB_FILE_LIST} ${rel_files} PARENT_SCOPE )
|
|
endfunction(libclc_configure_lib_source LIB_FILE_LIST)
|