zig/CMakeLists.txt

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cmake_minimum_required(VERSION 2.8.12)
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# Use ccache if possible
FIND_PROGRAM(CCACHE_PROGRAM ccache)
IF(CCACHE_PROGRAM)
MESSAGE(STATUS "Found ccache ${CCACHE_PROGRAM}")
ENDIF()
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if(NOT CMAKE_BUILD_TYPE)
set(CMAKE_BUILD_TYPE "Debug" CACHE STRING
"Choose the type of build, options are: None Debug Release RelWithDebInfo MinSizeRel." FORCE)
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endif()
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if(NOT CMAKE_INSTALL_PREFIX)
set(CMAKE_INSTALL_PREFIX "${CMAKE_BINARY_DIR}" CACHE STRING
"Directory to install zig to" FORCE)
endif()
set(CMAKE_USER_MAKE_RULES_OVERRIDE
${CMAKE_CURRENT_SOURCE_DIR}/cmake/c_flag_overrides.cmake)
set(CMAKE_USER_MAKE_RULES_OVERRIDE_CXX
${CMAKE_CURRENT_SOURCE_DIR}/cmake/cxx_flag_overrides.cmake)
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project(zig C CXX)
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set(CMAKE_MODULE_PATH ${CMAKE_SOURCE_DIR}/cmake ${CMAKE_MODULE_PATH})
set(ZIG_VERSION_MAJOR 0)
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set(ZIG_VERSION_MINOR 9)
set(ZIG_VERSION_PATCH 0)
set(ZIG_VERSION "" CACHE STRING "Override Zig version string. Default is to find out with git.")
if("${ZIG_VERSION}" STREQUAL "")
set(ZIG_VERSION "${ZIG_VERSION_MAJOR}.${ZIG_VERSION_MINOR}.${ZIG_VERSION_PATCH}")
find_program(GIT_EXE NAMES git)
if(GIT_EXE)
execute_process(
COMMAND ${GIT_EXE} -C ${CMAKE_SOURCE_DIR} describe --match *.*.* --tags
RESULT_VARIABLE EXIT_STATUS
OUTPUT_VARIABLE GIT_DESCRIBE
OUTPUT_STRIP_TRAILING_WHITESPACE
ERROR_QUIET)
if(EXIT_STATUS EQUAL "0")
if(GIT_DESCRIBE MATCHES "^v?([0-9]+\\.[0-9]+\\.[0-9]+)$")
# Tagged release version.
set(GIT_TAG ${CMAKE_MATCH_1})
if(NOT GIT_TAG VERSION_EQUAL ZIG_VERSION)
message(SEND_ERROR "Zig version (${ZIG_VERSION}) does not match Git tag (${GIT_TAG}).")
endif()
elseif(GIT_DESCRIBE MATCHES "^v?([0-9]+\\.[0-9]+\\.[0-9]+)-([0-9]+)-g(.+)$")
# Untagged pre-release. The Zig version is updated to include the number of commits
# since the last tagged version and the commit hash. The version is formatted in
# accordance with the https://semver.org specification.
set(GIT_TAG ${CMAKE_MATCH_1})
set(GIT_COMMITS_AFTER_TAG ${CMAKE_MATCH_2})
set(GIT_COMMIT ${CMAKE_MATCH_3})
if(NOT ZIG_VERSION VERSION_GREATER GIT_TAG)
message(SEND_ERROR "Zig version (${ZIG_VERSION}) must be greater than tagged ancestor (${GIT_TAG}).")
endif()
set(ZIG_VERSION "${ZIG_VERSION}-dev.${GIT_COMMITS_AFTER_TAG}+${GIT_COMMIT}")
else()
message(WARNING "Failed to parse version from output of `git describe`.")
endif()
endif()
endif()
endif()
message("Configuring zig version ${ZIG_VERSION}")
set(ZIG_STATIC off CACHE BOOL "Attempt to build a static zig executable (not compatible with glibc)")
set(ZIG_STATIC_LLVM off CACHE BOOL "Prefer linking against static LLVM libraries")
set(ZIG_STATIC_ZLIB off CACHE BOOL "Prefer linking against static zlib")
set(ZIG_PREFER_CLANG_CPP_DYLIB off CACHE BOOL "Try to link against -lclang-cpp")
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set(ZIG_USE_CCACHE off CACHE BOOL "Use ccache if available")
if(CCACHE_PROGRAM AND ZIG_USE_CCACHE)
SET_PROPERTY(GLOBAL PROPERTY RULE_LAUNCH_COMPILE "${CCACHE_PROGRAM}")
endif()
if(ZIG_STATIC)
set(ZIG_STATIC_LLVM ON)
set(ZIG_STATIC_ZLIB ON)
endif()
string(REGEX REPLACE "\\\\" "\\\\\\\\" ZIG_LIBC_LIB_DIR_ESCAPED "${ZIG_LIBC_LIB_DIR}")
string(REGEX REPLACE "\\\\" "\\\\\\\\" ZIG_LIBC_STATIC_LIB_DIR_ESCAPED "${ZIG_LIBC_STATIC_LIB_DIR}")
string(REGEX REPLACE "\\\\" "\\\\\\\\" ZIG_LIBC_INCLUDE_DIR_ESCAPED "${ZIG_LIBC_INCLUDE_DIR}")
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option(ZIG_TEST_COVERAGE "Build Zig with test coverage instrumentation" OFF)
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set(ZIG_TARGET_TRIPLE "native" CACHE STRING "arch-os-abi to output binaries for")
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set(ZIG_TARGET_MCPU "baseline" CACHE STRING "-mcpu parameter to output binaries for")
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set(ZIG_EXECUTABLE "" CACHE STRING "(when cross compiling) path to already-built zig binary")
set(ZIG_SINGLE_THREADED off CACHE BOOL "limit the zig compiler to use only 1 thread")
set(ZIG_OMIT_STAGE2 off CACHE BOOL "omit the stage2 backend from stage1")
if("${CMAKE_BUILD_TYPE}" STREQUAL "Debug")
set(ZIG_ENABLE_LOGGING ON CACHE BOOL "enable logging")
else()
set(ZIG_ENABLE_LOGGING OFF CACHE BOOL "enable logging")
endif()
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if("${ZIG_TARGET_TRIPLE}" STREQUAL "native")
set(ZIG_USE_LLVM_CONFIG ON CACHE BOOL "use llvm-config to find LLVM libraries")
else()
set(ZIG_USE_LLVM_CONFIG OFF CACHE BOOL "use llvm-config to find LLVM libraries")
endif()
find_package(llvm 13)
find_package(clang 13)
find_package(lld 13)
if(ZIG_STATIC_ZLIB)
list(REMOVE_ITEM LLVM_LIBRARIES "-lz")
find_library(ZLIB NAMES libz.a libzlibstatic.a z zlib libz)
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list(APPEND LLVM_LIBRARIES "${ZLIB}")
endif()
if(APPLE AND ZIG_STATIC)
list(REMOVE_ITEM LLVM_LIBRARIES "-lcurses")
find_library(CURSES NAMES libcurses.a curses libcurses libncurses.a ncurses libncurses)
list(APPEND LLVM_LIBRARIES "${CURSES}")
endif()
set(ZIG_CPP_LIB_DIR "${CMAKE_BINARY_DIR}/zigcpp")
# Handle multi-config builds and place each into a common lib. The VS generator
# for example will append a Debug folder by default if not explicitly specified.
set(CMAKE_ARCHIVE_OUTPUT_DIRECTORY ${ZIG_CPP_LIB_DIR})
set(CMAKE_LIBRARY_OUTPUT_DIRECTORY ${ZIG_CPP_LIB_DIR})
foreach(CONFIG_TYPE ${CMAKE_CONFIGURATION_TYPES})
string(TOUPPER ${CONFIG_TYPE} CONFIG_TYPE)
set(CMAKE_ARCHIVE_OUTPUT_DIRECTORY_${CONFIG_TYPE} ${ZIG_CPP_LIB_DIR})
set(CMAKE_LIBRARY_OUTPUT_DIRECTORY_${CONFIG_TYPE} ${ZIG_CPP_LIB_DIR})
endforeach(CONFIG_TYPE CMAKE_CONFIGURATION_TYPES)
include_directories(${LLVM_INCLUDE_DIRS})
include_directories(${LLD_INCLUDE_DIRS})
include_directories(${CLANG_INCLUDE_DIRS})
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# No patches have been applied to SoftFloat-3e
set(EMBEDDED_SOFTFLOAT_SOURCES
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"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/f128M_isSignalingNaN.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/s_commonNaNToF128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/s_commonNaNToF16UI.c"
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"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/s_commonNaNToF32UI.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/s_commonNaNToF64UI.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/s_f128MToCommonNaN.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/s_f16UIToCommonNaN.c"
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"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/s_f32UIToCommonNaN.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/s_f64UIToCommonNaN.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/s_propagateNaNF128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/s_propagateNaNF16UI.c"
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"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086/softfloat_raiseFlags.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_add.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_div.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_eq.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_eq_signaling.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_le.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_le_quiet.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_lt.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_lt_quiet.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_mul.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_mulAdd.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_rem.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_roundToInt.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_sqrt.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_sub.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_f16.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_f32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_f64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_i32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_i32_r_minMag.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_i64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_i64_r_minMag.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_ui32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_ui32_r_minMag.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_ui64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_to_ui64_r_minMag.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_add.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_div.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_eq.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_isSignalingNaN.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_lt.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_mul.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_rem.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_roundToInt.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_sqrt.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_sub.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_to_f128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_to_f64.c"
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"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f32_to_f128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f64_to_f128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f64_to_f16.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/i32_to_f128M.c"
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"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_add256M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_addCarryM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_addComplCarryM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_addF128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_addM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_addMagsF16.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_addMagsF32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_addMagsF64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_approxRecip32_1.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_approxRecipSqrt32_1.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_approxRecipSqrt_1Ks.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_approxRecip_1Ks.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_compare128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_compare96M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_countLeadingZeros16.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_countLeadingZeros32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_countLeadingZeros64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_countLeadingZeros8.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_eq128.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_invalidF128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_isNaNF128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_le128.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_lt128.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_mul128MTo256M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_mul64To128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_mulAddF128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_mulAddF16.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_mulAddF32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_mulAddF64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_negXM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_normRoundPackMToF128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_normRoundPackToF16.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_normRoundPackToF32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_normRoundPackToF64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_normSubnormalF128SigM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_normSubnormalF16Sig.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_normSubnormalF32Sig.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_normSubnormalF64Sig.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_remStepMBy32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_roundMToI64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_roundMToUI64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_roundPackMToF128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_roundPackToF16.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_roundPackToF32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_roundPackToF64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_roundToI32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_roundToI64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_roundToUI32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_roundToUI64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shiftLeftM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shiftNormSigF128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shiftRightJam256M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shiftRightJam32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shiftRightJam64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shiftRightJamM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shiftRightM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shortShiftLeft64To96M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shortShiftLeftM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shortShiftRightExtendM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shortShiftRightJam64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shortShiftRightJamM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_shortShiftRightM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_sub1XM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_sub256M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_subM.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_subMagsF16.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_subMagsF32.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_subMagsF64.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/s_tryPropagateNaNF128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f16_mulAdd.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/f128M_mulAdd.c"
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"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/softfloat_state.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/ui32_to_f128M.c"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/ui64_to_f128M.c"
)
add_library(embedded_softfloat STATIC ${EMBEDDED_SOFTFLOAT_SOURCES})
if(MSVC)
set_target_properties(embedded_softfloat PROPERTIES
COMPILE_FLAGS "/w /O2"
)
else()
set_target_properties(embedded_softfloat PROPERTIES
COMPILE_FLAGS "-std=c99 -O3"
)
endif()
target_include_directories(embedded_softfloat PUBLIC
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"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e-prebuilt"
"${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/8086"
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)
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include_directories("${CMAKE_SOURCE_DIR}/deps/SoftFloat-3e/source/include")
set(SOFTFLOAT_LIBRARIES embedded_softfloat)
find_package(Threads)
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set(ZIG_LIB_DIR "lib/zig")
set(C_HEADERS_DEST "${ZIG_LIB_DIR}/include")
set(LIBC_FILES_DEST "${ZIG_LIB_DIR}/libc")
set(LIBUNWIND_FILES_DEST "${ZIG_LIB_DIR}/libunwind")
set(LIBCXX_FILES_DEST "${ZIG_LIB_DIR}/libcxx")
set(ZIG_STD_DEST "${ZIG_LIB_DIR}/std")
set(ZIG_CONFIG_H_OUT "${CMAKE_BINARY_DIR}/config.h")
set(ZIG_CONFIG_ZIG_OUT "${CMAKE_BINARY_DIR}/config.zig")
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
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# This is our shim which will be replaced by stage1.zig.
set(ZIG0_SOURCES
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"${CMAKE_SOURCE_DIR}/src/stage1/zig0.cpp"
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
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)
set(STAGE1_SOURCES
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"${CMAKE_SOURCE_DIR}/src/stage1/analyze.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/astgen.cpp"
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"${CMAKE_SOURCE_DIR}/src/stage1/bigfloat.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/bigint.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/buffer.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/codegen.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/dump_analysis.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/errmsg.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/error.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/heap.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/ir.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/ir_print.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/mem.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/os.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/parser.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/range_set.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/softfloat_ext.cpp"
2020-09-22 01:38:55 +00:00
"${CMAKE_SOURCE_DIR}/src/stage1/stage1.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/target.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/tokenizer.cpp"
"${CMAKE_SOURCE_DIR}/src/stage1/util.cpp"
)
set(OPTIMIZED_C_SOURCES
2020-09-22 01:38:55 +00:00
"${CMAKE_SOURCE_DIR}/src/stage1/parse_f128.c"
)
set(ZIG_CPP_SOURCES
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
2020-09-18 01:29:38 +00:00
# These are planned to stay even when we are self-hosted.
"${CMAKE_SOURCE_DIR}/src/zig_llvm.cpp"
"${CMAKE_SOURCE_DIR}/src/zig_llvm-ar.cpp"
"${CMAKE_SOURCE_DIR}/src/zig_clang.cpp"
"${CMAKE_SOURCE_DIR}/src/zig_clang_driver.cpp"
"${CMAKE_SOURCE_DIR}/src/zig_clang_cc1_main.cpp"
"${CMAKE_SOURCE_DIR}/src/zig_clang_cc1as_main.cpp"
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
2020-09-18 01:29:38 +00:00
# https://github.com/ziglang/zig/issues/6363
"${CMAKE_SOURCE_DIR}/src/windows_sdk.cpp"
2015-08-05 22:23:15 +00:00
)
# Needed because we use cmake, not the zig build system, to build zig1.o.
# This list is generated by building zig and then clearing the zig-cache directory,
# then manually running the build-obj command (see BUILD_ZIG1_ARGS), and then looking
# in the zig-cache directory for the compiler-generated list of zig file dependencies.
set(ZIG_STAGE2_SOURCES
"${ZIG_CONFIG_ZIG_OUT}"
"${CMAKE_SOURCE_DIR}/lib/std/array_hash_map.zig"
"${CMAKE_SOURCE_DIR}/lib/std/array_list.zig"
"${CMAKE_SOURCE_DIR}/lib/std/ascii.zig"
"${CMAKE_SOURCE_DIR}/lib/std/atomic.zig"
"${CMAKE_SOURCE_DIR}/lib/std/atomic/Atomic.zig"
"${CMAKE_SOURCE_DIR}/lib/std/atomic/queue.zig"
"${CMAKE_SOURCE_DIR}/lib/std/atomic/stack.zig"
"${CMAKE_SOURCE_DIR}/lib/std/base64.zig"
"${CMAKE_SOURCE_DIR}/lib/std/buf_map.zig"
"${CMAKE_SOURCE_DIR}/lib/std/builtin.zig"
"${CMAKE_SOURCE_DIR}/lib/std/c.zig"
"${CMAKE_SOURCE_DIR}/lib/std/c/linux.zig"
"${CMAKE_SOURCE_DIR}/lib/std/c/tokenizer.zig"
"${CMAKE_SOURCE_DIR}/lib/std/child_process.zig"
"${CMAKE_SOURCE_DIR}/lib/std/coff.zig"
"${CMAKE_SOURCE_DIR}/lib/std/comptime_string_map.zig"
"${CMAKE_SOURCE_DIR}/lib/std/crypto.zig"
"${CMAKE_SOURCE_DIR}/lib/std/crypto/blake3.zig"
"${CMAKE_SOURCE_DIR}/lib/std/crypto/siphash.zig"
"${CMAKE_SOURCE_DIR}/lib/std/debug.zig"
"${CMAKE_SOURCE_DIR}/lib/std/dwarf.zig"
"${CMAKE_SOURCE_DIR}/lib/std/dwarf/AT.zig"
"${CMAKE_SOURCE_DIR}/lib/std/dwarf/OP.zig"
"${CMAKE_SOURCE_DIR}/lib/std/dwarf/TAG.zig"
"${CMAKE_SOURCE_DIR}/lib/std/elf.zig"
"${CMAKE_SOURCE_DIR}/lib/std/event.zig"
"${CMAKE_SOURCE_DIR}/lib/std/event/batch.zig"
"${CMAKE_SOURCE_DIR}/lib/std/event/loop.zig"
"${CMAKE_SOURCE_DIR}/lib/std/fifo.zig"
"${CMAKE_SOURCE_DIR}/lib/std/fmt.zig"
"${CMAKE_SOURCE_DIR}/lib/std/fmt/errol.zig"
"${CMAKE_SOURCE_DIR}/lib/std/fmt/errol/enum3.zig"
"${CMAKE_SOURCE_DIR}/lib/std/fmt/errol/lookup.zig"
"${CMAKE_SOURCE_DIR}/lib/std/fmt/parse_float.zig"
"${CMAKE_SOURCE_DIR}/lib/std/fs.zig"
"${CMAKE_SOURCE_DIR}/lib/std/fs/file.zig"
"${CMAKE_SOURCE_DIR}/lib/std/fs/get_app_data_dir.zig"
"${CMAKE_SOURCE_DIR}/lib/std/fs/path.zig"
"${CMAKE_SOURCE_DIR}/lib/std/hash.zig"
"${CMAKE_SOURCE_DIR}/lib/std/hash/auto_hash.zig"
"${CMAKE_SOURCE_DIR}/lib/std/hash/wyhash.zig"
"${CMAKE_SOURCE_DIR}/lib/std/hash_map.zig"
"${CMAKE_SOURCE_DIR}/lib/std/heap.zig"
"${CMAKE_SOURCE_DIR}/lib/std/heap/arena_allocator.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io/buffered_atomic_file.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io/buffered_writer.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io/change_detection_stream.zig"
2020-12-22 14:30:48 +00:00
"${CMAKE_SOURCE_DIR}/lib/std/io/counting_reader.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io/counting_writer.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io/find_byte_writer.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io/fixed_buffer_stream.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io/limited_reader.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io/reader.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io/seekable_stream.zig"
"${CMAKE_SOURCE_DIR}/lib/std/io/writer.zig"
"${CMAKE_SOURCE_DIR}/lib/std/json.zig"
"${CMAKE_SOURCE_DIR}/lib/std/json/write_stream.zig"
"${CMAKE_SOURCE_DIR}/lib/std/leb128.zig"
"${CMAKE_SOURCE_DIR}/lib/std/linked_list.zig"
"${CMAKE_SOURCE_DIR}/lib/std/log.zig"
"${CMAKE_SOURCE_DIR}/lib/std/macho.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/big.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/big/int.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/floor.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/frexp.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/inf.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/isinf.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/isnan.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/ln.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/log.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/log10.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/log2.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/nan.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/signbit.zig"
"${CMAKE_SOURCE_DIR}/lib/std/math/sqrt.zig"
"${CMAKE_SOURCE_DIR}/lib/std/mem.zig"
"${CMAKE_SOURCE_DIR}/lib/std/mem/Allocator.zig"
"${CMAKE_SOURCE_DIR}/lib/std/meta.zig"
"${CMAKE_SOURCE_DIR}/lib/std/meta/trailer_flags.zig"
"${CMAKE_SOURCE_DIR}/lib/std/meta/trait.zig"
"${CMAKE_SOURCE_DIR}/lib/std/multi_array_list.zig"
"${CMAKE_SOURCE_DIR}/lib/std/os.zig"
"${CMAKE_SOURCE_DIR}/lib/std/os/linux.zig"
"${CMAKE_SOURCE_DIR}/lib/std/os/linux/errno/generic.zig"
"${CMAKE_SOURCE_DIR}/lib/std/os/linux/x86_64.zig"
"${CMAKE_SOURCE_DIR}/lib/std/os/linux.zig"
"${CMAKE_SOURCE_DIR}/lib/std/os/linux/io_uring.zig"
"${CMAKE_SOURCE_DIR}/lib/std/os/linux/x86_64.zig"
"${CMAKE_SOURCE_DIR}/lib/std/os/windows.zig"
"${CMAKE_SOURCE_DIR}/lib/std/os/windows/ntstatus.zig"
"${CMAKE_SOURCE_DIR}/lib/std/os/windows/win32error.zig"
"${CMAKE_SOURCE_DIR}/lib/std/Progress.zig"
"${CMAKE_SOURCE_DIR}/lib/std/pdb.zig"
"${CMAKE_SOURCE_DIR}/lib/std/process.zig"
"${CMAKE_SOURCE_DIR}/lib/std/rand.zig"
"${CMAKE_SOURCE_DIR}/lib/std/sort.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/addXf3.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/atomics.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/clear_cache.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/compareXf2.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/count0bits.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/divdf3.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/divsf3.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/divtf3.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/divti3.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/extendXfYf2.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixdfdi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixdfsi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixdfti.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixint.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixsfdi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixsfsi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixsfti.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixtfdi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixtfsi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixtfti.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixuint.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixunsdfdi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixunsdfsi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixunsdfti.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixunssfdi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixunssfsi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixunssfti.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixunstfdi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixunstfsi.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/fixunstfti.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/floatXisf.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/floatdidf.zig"
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"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/floattitf.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/floatundidf.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/floatundisf.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/floatunditf.zig"
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"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/int.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/modti3.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/mulXf3.zig"
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"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/popcountdi2.zig"
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"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/stack_probe.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/truncXfYf2.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/udivmod.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/udivmodti4.zig"
"${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt/udivti3.zig"
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"${CMAKE_SOURCE_DIR}/lib/std/target/amdgpu.zig"
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"${CMAKE_SOURCE_DIR}/lib/std/zig/render.zig"
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"${CMAKE_SOURCE_DIR}/lib/std/zig/system.zig"
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"${CMAKE_SOURCE_DIR}/lib/std/zig/tokenizer.zig"
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"${CMAKE_SOURCE_DIR}/src/Liveness.zig"
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"${CMAKE_SOURCE_DIR}/src/arch/x86_64/bits.zig"
Stage2: wasm - Implement the MIR pass (#10153) * wasm: Move wasm's codegen to arch/wasm/CodeGen.zig * wasm: Define Wasm's Mir This declares the initial most-used instructions for wasm as well as the data that represents them. TODO: Add binary operand opcodes. By re-using the wasm opcode values, we can emit each opcode very easily by simply using `@enumToInt()`. However, this poses a possible problem: If we use all of wasm's opcodes, it leaves us no room to use synthetic opcodes such as debugging instructions. We could use reserved opcodes, but the wasm spec may use them at some point. TODO: Check if we should perhaps use a 16bit tag where the highest bits are used for synthetic opcodes. * wasm: Define basic Emit structure * wasm: Implement corresponding Emit functions for MIR * wasm: Initial lowering to MIR - This implements lowering to MIR from AIR for storing and loading of locals as well as emitting immediates. - Relocating function indexes has been simplified a lot as well as we no longer need to patch offsets and we write a relocatable value instead. - Locals are now emitted at the beginning of the function section entry meaning all offsets we generate are stable. * wasm: Lower all AIR instructions to MIR * wasm: Implement remaining MIR instructions * wasm: Fix function relocations * wasm: Get all tests working * wasm: Make `Data` 4 bytes instead of 8. - 64bit immediates are now stored in 2 seperate u32's. - 64bit floats are now stored in 2 seperate u32's. - `mem_arg` is now stored as a seperate payload in extra.
2021-11-15 17:02:24 +00:00
"${CMAKE_SOURCE_DIR}/src/arch/wasm/CodeGen.zig"
"${CMAKE_SOURCE_DIR}/src/clang.zig"
"${CMAKE_SOURCE_DIR}/src/clang_options.zig"
"${CMAKE_SOURCE_DIR}/src/clang_options_data.zig"
"${CMAKE_SOURCE_DIR}/src/codegen.zig"
"${CMAKE_SOURCE_DIR}/src/codegen/c.zig"
"${CMAKE_SOURCE_DIR}/src/codegen/llvm.zig"
"${CMAKE_SOURCE_DIR}/src/codegen/llvm/bindings.zig"
"${CMAKE_SOURCE_DIR}/src/glibc.zig"
"${CMAKE_SOURCE_DIR}/src/introspect.zig"
"${CMAKE_SOURCE_DIR}/src/libc_installation.zig"
"${CMAKE_SOURCE_DIR}/src/libcxx.zig"
2020-12-22 05:18:19 +00:00
"${CMAKE_SOURCE_DIR}/src/libtsan.zig"
"${CMAKE_SOURCE_DIR}/src/libunwind.zig"
"${CMAKE_SOURCE_DIR}/src/link.zig"
"${CMAKE_SOURCE_DIR}/src/link/C.zig"
"${CMAKE_SOURCE_DIR}/src/link/C/zig.h"
"${CMAKE_SOURCE_DIR}/src/link/Coff.zig"
"${CMAKE_SOURCE_DIR}/src/link/Elf.zig"
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"${CMAKE_SOURCE_DIR}/src/link/MachO/Atom.zig"
"${CMAKE_SOURCE_DIR}/src/link/MachO/CodeSignature.zig"
"${CMAKE_SOURCE_DIR}/src/link/MachO/DebugSymbols.zig"
"${CMAKE_SOURCE_DIR}/src/link/MachO/Dylib.zig"
"${CMAKE_SOURCE_DIR}/src/link/MachO/Object.zig"
"${CMAKE_SOURCE_DIR}/src/link/MachO/Trie.zig"
"${CMAKE_SOURCE_DIR}/src/link/MachO/bind.zig"
"${CMAKE_SOURCE_DIR}/src/link/MachO/commands.zig"
"${CMAKE_SOURCE_DIR}/src/link/Plan9.zig"
"${CMAKE_SOURCE_DIR}/src/link/Plan9/aout.zig"
"${CMAKE_SOURCE_DIR}/src/link/Wasm.zig"
"${CMAKE_SOURCE_DIR}/src/link/msdos-stub.bin"
"${CMAKE_SOURCE_DIR}/src/link/tapi.zig"
"${CMAKE_SOURCE_DIR}/src/link/tapi/Tokenizer.zig"
"${CMAKE_SOURCE_DIR}/src/link/tapi/parse.zig"
"${CMAKE_SOURCE_DIR}/src/link/tapi/parse/test.zig"
"${CMAKE_SOURCE_DIR}/src/link/tapi/yaml.zig"
"${CMAKE_SOURCE_DIR}/src/main.zig"
"${CMAKE_SOURCE_DIR}/src/mingw.zig"
"${CMAKE_SOURCE_DIR}/src/musl.zig"
"${CMAKE_SOURCE_DIR}/src/print_air.zig"
"${CMAKE_SOURCE_DIR}/src/print_env.zig"
"${CMAKE_SOURCE_DIR}/src/print_targets.zig"
"${CMAKE_SOURCE_DIR}/src/print_zir.zig"
"${CMAKE_SOURCE_DIR}/src/stage1.zig"
"${CMAKE_SOURCE_DIR}/src/target.zig"
"${CMAKE_SOURCE_DIR}/src/tracy.zig"
"${CMAKE_SOURCE_DIR}/src/translate_c.zig"
"${CMAKE_SOURCE_DIR}/src/translate_c/ast.zig"
"${CMAKE_SOURCE_DIR}/src/type.zig"
"${CMAKE_SOURCE_DIR}/src/value.zig"
"${CMAKE_SOURCE_DIR}/src/wasi_libc.zig"
"${CMAKE_SOURCE_DIR}/src/windows_sdk.zig"
)
2015-08-05 22:23:15 +00:00
if(MSVC)
set(MSVC_DIA_SDK_DIR "$ENV{VSINSTALLDIR}DIA SDK")
if(IS_DIRECTORY ${MSVC_DIA_SDK_DIR})
set(ZIG_DIA_GUIDS_LIB "${MSVC_DIA_SDK_DIR}/lib/amd64/diaguids.lib")
string(REGEX REPLACE "\\\\" "\\\\\\\\" ZIG_DIA_GUIDS_LIB_ESCAPED "${ZIG_DIA_GUIDS_LIB}")
endif()
endif()
if(ZIG_OMIT_STAGE2)
set(ZIG_OMIT_STAGE2_BOOL "true")
else()
set(ZIG_OMIT_STAGE2_BOOL "false")
endif()
if(ZIG_ENABLE_LOGGING)
set(ZIG_ENABLE_LOGGING_BOOL "true")
else()
set(ZIG_ENABLE_LOGGING_BOOL "false")
endif()
configure_file (
"${CMAKE_SOURCE_DIR}/src/stage1/config.h.in"
"${ZIG_CONFIG_H_OUT}"
)
configure_file (
"${CMAKE_SOURCE_DIR}/src/config.zig.in"
"${ZIG_CONFIG_ZIG_OUT}"
)
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include_directories(
${CMAKE_SOURCE_DIR}
${CMAKE_BINARY_DIR}
"${CMAKE_SOURCE_DIR}/src"
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"${CMAKE_SOURCE_DIR}/src/stage1"
2015-11-26 08:29:52 +00:00
)
2018-09-05 16:10:53 +00:00
# These have to go before the -Wno- flags
if(MSVC)
set(EXE_CFLAGS "/std:c++14")
else(MSVC)
set(EXE_CFLAGS "-std=c++14")
endif(MSVC)
if(ZIG_STATIC)
set(EXE_CFLAGS "${EXE_CFLAGS} -DZIG_LINK_MODE=Static")
else()
set(EXE_CFLAGS "${EXE_CFLAGS} -DZIG_LINK_MODE=Dynamic")
endif()
if("${CMAKE_BUILD_TYPE}" STREQUAL "Debug")
if(MSVC)
set(EXE_CFLAGS "${EXE_CFLAGS} /w")
else()
2020-05-17 08:31:19 +00:00
set(EXE_CFLAGS "${EXE_CFLAGS} -Werror -Wall")
# fallthrough support was added in GCC 7.0
if(NOT CMAKE_CXX_COMPILER_ID STREQUAL "GNU" OR CMAKE_CXX_COMPILER_VERSION VERSION_GREATER_EQUAL 7.0)
2020-05-17 08:31:19 +00:00
set(EXE_CFLAGS "${EXE_CFLAGS} -Werror=implicit-fallthrough")
endif()
# GCC 9.2 and older are unable to detect valid variable initialization in some cases
if(CMAKE_CXX_COMPILER_ID STREQUAL "GNU" AND CMAKE_CXX_COMPILER_VERSION VERSION_LESS_EQUAL 9.2)
set(EXE_CFLAGS "${EXE_CFLAGS} -Wno-maybe-uninitialized")
endif()
endif()
endif()
if(MSVC)
set(EXE_CFLAGS "${EXE_CFLAGS}")
else()
set(EXE_CFLAGS "${EXE_CFLAGS} -D__STDC_CONSTANT_MACROS -D__STDC_FORMAT_MACROS -D__STDC_LIMIT_MACROS -D_GNU_SOURCE -fvisibility-inlines-hidden -fno-exceptions -fno-rtti -Werror=type-limits -Wno-missing-braces -Wno-comment")
if(MINGW)
set(EXE_CFLAGS "${EXE_CFLAGS} -Wno-format")
endif()
2017-09-10 20:05:18 +00:00
endif()
if(MSVC)
set(OPTIMIZED_C_FLAGS "/O2")
else(MSVC)
set(OPTIMIZED_C_FLAGS "-std=c99 -O3")
endif(MSVC)
2016-04-23 16:57:38 +00:00
set(EXE_LDFLAGS " ")
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if(MSVC)
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set(EXE_LDFLAGS "${EXE_LDFLAGS} /STACK:16777216")
if(NOT "${CMAKE_BUILD_TYPE}" STREQUAL "Release" AND NOT "${CMAKE_BUILD_TYPE}" STREQUAL "MinSizeRel")
set(EXE_LDFLAGS "${EXE_LDFLAGS} /debug:fastlink")
endif()
2020-03-28 03:43:21 +00:00
elseif(MINGW)
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set(EXE_LDFLAGS "${EXE_LDFLAGS} -Wl,--stack,16777216")
endif()
if(ZIG_STATIC)
if(APPLE)
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set(EXE_LDFLAGS "${EXE_LDFLAGS} -static-libgcc -static-libstdc++")
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elseif(MINGW)
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set(EXE_LDFLAGS "${EXE_LDFLAGS} -static-libgcc -static-libstdc++ -Wl,-Bstatic, -lwinpthread -lz3 -lz -lgomp")
elseif(NOT MSVC)
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set(EXE_LDFLAGS "${EXE_LDFLAGS} -static")
endif()
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else()
if(MINGW)
set(EXE_LDFLAGS "${EXE_LDFLAGS}")
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endif()
endif()
2019-06-23 06:15:04 +00:00
2016-04-23 16:57:38 +00:00
if(ZIG_TEST_COVERAGE)
set(EXE_CFLAGS "${EXE_CFLAGS} -fprofile-arcs -ftest-coverage")
set(EXE_LDFLAGS "${EXE_LDFLAGS} -fprofile-arcs -ftest-coverage")
2016-04-23 16:57:38 +00:00
endif()
2015-08-05 22:23:15 +00:00
add_library(zigcpp STATIC ${ZIG_CPP_SOURCES})
set_target_properties(zigcpp PROPERTIES
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COMPILE_FLAGS ${EXE_CFLAGS}
)
target_link_libraries(zigcpp LINK_PUBLIC
${CLANG_LIBRARIES}
${LLD_LIBRARIES}
${LLVM_LIBRARIES}
2020-09-18 08:33:32 +00:00
${CMAKE_THREAD_LIBS_INIT}
)
add_library(opt_c_util STATIC ${OPTIMIZED_C_SOURCES})
set_target_properties(opt_c_util PROPERTIES
COMPILE_FLAGS "${OPTIMIZED_C_FLAGS}"
)
add_library(zigstage1 STATIC ${STAGE1_SOURCES})
set_target_properties(zigstage1 PROPERTIES
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COMPILE_FLAGS ${EXE_CFLAGS}
LINK_FLAGS ${EXE_LDFLAGS}
)
target_link_libraries(zigstage1 LINK_PUBLIC
opt_c_util
${SOFTFLOAT_LIBRARIES}
zigcpp
2015-08-05 22:23:15 +00:00
)
if(NOT MSVC)
target_link_libraries(zigstage1 LINK_PUBLIC ${LIBXML2})
endif()
if(ZIG_DIA_GUIDS_LIB)
target_link_libraries(zigstage1 LINK_PUBLIC ${ZIG_DIA_GUIDS_LIB})
endif()
if(MSVC OR MINGW)
target_link_libraries(zigstage1 LINK_PUBLIC version)
stage1 is now a hybrid of C++ and Zig This modifies the build process of Zig to put all of the source files into libcompiler.a, except main.cpp and userland.cpp. Next, the build process links main.cpp, userland.cpp, and libcompiler.a into zig1. userland.cpp is a shim for functions that will later be replaced with self-hosted implementations. Next, the build process uses zig1 to build src-self-hosted/stage1.zig into libuserland.a, which does not depend on any of the things that are shimmed in userland.cpp, such as translate-c. Finally, the build process re-links main.cpp and libcompiler.a, except with libuserland.a instead of userland.cpp. Now the shims are replaced with .zig code. This provides all of the Zig standard library to the stage1 C++ compiler, and enables us to move certain things to userland, such as translate-c. As a proof of concept I have made the `zig zen` command use text defined in userland. I added `zig translate-c-2` which is a work-in-progress reimplementation of translate-c in userland, which currently calls `std.debug.panic("unimplemented")` and you can see the stack trace makes it all the way back into the C++ main() function (Thanks LemonBoy for improving that!). This could potentially let us move other things into userland, such as hashing algorithms, the entire cache system, .d file parsing, pretty much anything that libuserland.a itself doesn't need to depend on. This can also let us have `zig fmt` in stage1 without the overhead of child process execution, and without the initial compilation delay before it gets cached. See #1964
2019-04-16 20:47:47 +00:00
endif()
if("${ZIG_EXECUTABLE}" STREQUAL "")
add_executable(zig0 ${ZIG0_SOURCES})
set_target_properties(zig0 PROPERTIES
COMPILE_FLAGS ${EXE_CFLAGS}
LINK_FLAGS ${EXE_LDFLAGS}
)
target_link_libraries(zig0 zigstage1)
endif()
stage1 is now a hybrid of C++ and Zig This modifies the build process of Zig to put all of the source files into libcompiler.a, except main.cpp and userland.cpp. Next, the build process links main.cpp, userland.cpp, and libcompiler.a into zig1. userland.cpp is a shim for functions that will later be replaced with self-hosted implementations. Next, the build process uses zig1 to build src-self-hosted/stage1.zig into libuserland.a, which does not depend on any of the things that are shimmed in userland.cpp, such as translate-c. Finally, the build process re-links main.cpp and libcompiler.a, except with libuserland.a instead of userland.cpp. Now the shims are replaced with .zig code. This provides all of the Zig standard library to the stage1 C++ compiler, and enables us to move certain things to userland, such as translate-c. As a proof of concept I have made the `zig zen` command use text defined in userland. I added `zig translate-c-2` which is a work-in-progress reimplementation of translate-c in userland, which currently calls `std.debug.panic("unimplemented")` and you can see the stack trace makes it all the way back into the C++ main() function (Thanks LemonBoy for improving that!). This could potentially let us move other things into userland, such as hashing algorithms, the entire cache system, .d file parsing, pretty much anything that libuserland.a itself doesn't need to depend on. This can also let us have `zig fmt` in stage1 without the overhead of child process execution, and without the initial compilation delay before it gets cached. See #1964
2019-04-16 20:47:47 +00:00
2019-07-12 23:28:28 +00:00
if(MSVC)
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
2020-09-18 01:29:38 +00:00
set(ZIG1_OBJECT "${CMAKE_BINARY_DIR}/zig1.obj")
stage1 is now a hybrid of C++ and Zig This modifies the build process of Zig to put all of the source files into libcompiler.a, except main.cpp and userland.cpp. Next, the build process links main.cpp, userland.cpp, and libcompiler.a into zig1. userland.cpp is a shim for functions that will later be replaced with self-hosted implementations. Next, the build process uses zig1 to build src-self-hosted/stage1.zig into libuserland.a, which does not depend on any of the things that are shimmed in userland.cpp, such as translate-c. Finally, the build process re-links main.cpp and libcompiler.a, except with libuserland.a instead of userland.cpp. Now the shims are replaced with .zig code. This provides all of the Zig standard library to the stage1 C++ compiler, and enables us to move certain things to userland, such as translate-c. As a proof of concept I have made the `zig zen` command use text defined in userland. I added `zig translate-c-2` which is a work-in-progress reimplementation of translate-c in userland, which currently calls `std.debug.panic("unimplemented")` and you can see the stack trace makes it all the way back into the C++ main() function (Thanks LemonBoy for improving that!). This could potentially let us move other things into userland, such as hashing algorithms, the entire cache system, .d file parsing, pretty much anything that libuserland.a itself doesn't need to depend on. This can also let us have `zig fmt` in stage1 without the overhead of child process execution, and without the initial compilation delay before it gets cached. See #1964
2019-04-16 20:47:47 +00:00
else()
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
2020-09-18 01:29:38 +00:00
set(ZIG1_OBJECT "${CMAKE_BINARY_DIR}/zig1.o")
2017-09-10 20:05:18 +00:00
endif()
if("${CMAKE_BUILD_TYPE}" STREQUAL "Debug")
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
2020-09-18 01:29:38 +00:00
set(ZIG1_RELEASE_ARG "")
else()
set(ZIG1_RELEASE_ARG -OReleaseFast --strip)
endif()
if(ZIG_SINGLE_THREADED)
set(ZIG1_SINGLE_THREADED_ARG "--single-threaded")
else()
set(ZIG1_SINGLE_THREADED_ARG "")
endif()
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
2020-09-18 01:29:38 +00:00
set(BUILD_ZIG1_ARGS
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"src/stage1.zig"
2020-03-28 03:43:21 +00:00
-target "${ZIG_TARGET_TRIPLE}"
2020-04-08 21:41:51 +00:00
"-mcpu=${ZIG_TARGET_MCPU}"
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
2020-09-18 01:29:38 +00:00
--name zig1
--zig-lib-dir "${CMAKE_SOURCE_DIR}/lib"
"-femit-bin=${ZIG1_OBJECT}"
-fcompiler-rt
"${ZIG1_RELEASE_ARG}"
"${ZIG1_SINGLE_THREADED_ARG}"
-lc
--pkg-begin build_options "${ZIG_CONFIG_ZIG_OUT}"
--pkg-end
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
2020-09-18 01:29:38 +00:00
--pkg-begin compiler_rt "${CMAKE_SOURCE_DIR}/lib/std/special/compiler_rt.zig"
--pkg-end
)
if("${ZIG_EXECUTABLE}" STREQUAL "")
add_custom_command(
OUTPUT "${ZIG1_OBJECT}"
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
2020-09-18 01:29:38 +00:00
COMMAND zig0 ${BUILD_ZIG1_ARGS}
DEPENDS zig0 "${ZIG_STAGE2_SOURCES}"
COMMENT STATUS "Building self-hosted component ${ZIG1_OBJECT}"
2020-03-28 03:43:21 +00:00
WORKING_DIRECTORY "${CMAKE_SOURCE_DIR}"
)
set(ZIG_EXECUTABLE "${zig_BINARY_DIR}/zig")
2020-04-11 20:18:54 +00:00
if (WIN32)
set(ZIG_EXECUTABLE "${ZIG_EXECUTABLE}.exe")
endif()
2020-03-28 03:43:21 +00:00
else()
add_custom_command(
OUTPUT "${ZIG1_OBJECT}"
COMMAND "${ZIG_EXECUTABLE}" "build-obj" ${BUILD_ZIG1_ARGS}
DEPENDS ${ZIG_STAGE2_SOURCES}
COMMENT STATUS "Building self-hosted component ${ZIG1_OBJECT}"
2020-03-28 03:43:21 +00:00
WORKING_DIRECTORY "${CMAKE_SOURCE_DIR}"
)
endif()
delete all stage1 c++ code not directly related to compiling stage2 Deleted 16,000+ lines of c++ code, including: * an implementation of blake hashing * the cache hash system * compiler.cpp * all the linking code, and everything having to do with building glibc, musl, and mingw-w64 * much of the stage1 compiler internals got slimmed down since it now assumes it is always outputting an object file. More stuff: * stage1 is now built with a different strategy: we have a tiny zig0.cpp which is a slimmed down version of what stage1 main.cpp used to be. Its only purpose is to build stage2 zig code into an object file, which is then linked by the host build system (cmake) into stage1. zig0.cpp uses the same C API that stage2 now has access to, so that stage2 zig code can call into stage1 c++ code. - stage1.h is - stage2.h is - stage1.zig is the main entry point for the Zig/C++ hybrid compiler. It has the functions exported from Zig, called in C++, and bindings for the functions exported from C++, called from Zig. * removed the memory profiling instrumentation from stage1. Abandon ship! * Re-added the sections to the README about how to build stage2 and stage3. * stage2 now knows as a comptime boolean whether it is being compiled as part of stage1 or as stage2. - TODO use this flag to call into stage1 for compiling zig code. * introduce -fdll-export-fns and -fno-dll-export-fns and clarify its relationship to link_mode (static/dynamic) * implement depending on LLVM to detect native target cpu features when LLVM extensions are enabled and zig lacks CPU feature detection for that target architecture. * C importing is broken, will need some stage2 support to function again.
2020-09-18 01:29:38 +00:00
# cmake won't let us configure an executable without C sources.
add_executable(zig "${CMAKE_SOURCE_DIR}/src/stage1/empty.cpp" "${ZIG1_OBJECT}")
2019-07-12 23:28:28 +00:00
stage1 is now a hybrid of C++ and Zig This modifies the build process of Zig to put all of the source files into libcompiler.a, except main.cpp and userland.cpp. Next, the build process links main.cpp, userland.cpp, and libcompiler.a into zig1. userland.cpp is a shim for functions that will later be replaced with self-hosted implementations. Next, the build process uses zig1 to build src-self-hosted/stage1.zig into libuserland.a, which does not depend on any of the things that are shimmed in userland.cpp, such as translate-c. Finally, the build process re-links main.cpp and libcompiler.a, except with libuserland.a instead of userland.cpp. Now the shims are replaced with .zig code. This provides all of the Zig standard library to the stage1 C++ compiler, and enables us to move certain things to userland, such as translate-c. As a proof of concept I have made the `zig zen` command use text defined in userland. I added `zig translate-c-2` which is a work-in-progress reimplementation of translate-c in userland, which currently calls `std.debug.panic("unimplemented")` and you can see the stack trace makes it all the way back into the C++ main() function (Thanks LemonBoy for improving that!). This could potentially let us move other things into userland, such as hashing algorithms, the entire cache system, .d file parsing, pretty much anything that libuserland.a itself doesn't need to depend on. This can also let us have `zig fmt` in stage1 without the overhead of child process execution, and without the initial compilation delay before it gets cached. See #1964
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set_target_properties(zig PROPERTIES
COMPILE_FLAGS ${EXE_CFLAGS}
LINK_FLAGS ${EXE_LDFLAGS}
)
target_link_libraries(zig zigstage1)
if(MSVC)
target_link_libraries(zig ntdll.lib)
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elseif(MINGW)
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target_link_libraries(zig ntdll)
endif()
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install(TARGETS zig DESTINATION bin)
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set(ZIG_SKIP_INSTALL_LIB_FILES off CACHE BOOL
"Disable copying lib/ files to install prefix during the build phase")
if(NOT ZIG_SKIP_INSTALL_LIB_FILES)
set(ZIG_INSTALL_ARGS "build"
--zig-lib-dir "${CMAKE_SOURCE_DIR}/lib"
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"-Dlib-files-only"
--prefix "${CMAKE_INSTALL_PREFIX}"
"-Dconfig_h=${ZIG_CONFIG_H_OUT}"
install
)
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# CODE has no effect with Visual Studio build system generator, therefore
# when using Visual Studio build system generator we resort to running
# `zig build install` during the build phase.
if(MSVC)
add_custom_target(zig_install_lib_files ALL
COMMAND zig ${ZIG_INSTALL_ARGS}
DEPENDS zig
WORKING_DIRECTORY "${CMAKE_SOURCE_DIR}"
)
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else()
get_target_property(zig_BINARY_DIR zig BINARY_DIR)
install(CODE "set(zig_EXE \"${ZIG_EXECUTABLE}\")")
install(CODE "set(ZIG_INSTALL_ARGS \"${ZIG_INSTALL_ARGS}\")")
install(CODE "set(CMAKE_SOURCE_DIR \"${CMAKE_SOURCE_DIR}\")")
install(SCRIPT ${CMAKE_CURRENT_SOURCE_DIR}/cmake/install.cmake)
endif()
endif()