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|
--!A cross-platform build utility based on Lua
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
--
-- Copyright (C) 2015-present, Xmake Open Source Community.
--
-- @author ruki
-- @file cmake.lua
--
-- imports
import("core.base.option")
import("core.base.semver")
import("core.base.hashset")
import("core.tool.toolchain")
import("core.project.config")
import("core.project.project")
import("lib.detect.find_file")
import("lib.detect.find_tool")
import("package.tools.ninja")
import("package.tools.msbuild")
import("detect.sdks.find_emsdk")
import("private.utils.toolchain", {alias = "toolchain_utils"})
-- get the number of parallel jobs
function _get_parallel_njobs(opt)
return opt.jobs or option.get("jobs") or tostring(os.default_njob())
end
-- translate paths
function _translate_paths(paths)
if is_host("windows") then
if type(paths) == "string" then
return (paths:gsub("\\", "/"))
elseif type(paths) == "table" then
local result = {}
for _, p in ipairs(paths) do
table.insert(result, (p:gsub("\\", "/")))
end
return result
end
end
return paths
end
-- translate bin path
function _translate_bin_path(bin_path)
if is_host("windows") and bin_path then
bin_path = bin_path:gsub("\\", "/")
if not os.isfile(bin_path) and
not bin_path:find(string.ipattern("%.exe$")) and
not bin_path:find(string.ipattern("%.cmd$")) and
not bin_path:find(string.ipattern("%.bat$")) then
bin_path = bin_path .. ".exe"
end
end
return bin_path
end
-- get pkg-config, we need force to find it, because package install environments will be changed
function _get_pkgconfig(package)
-- meson need fullpath pkgconfig
-- @see https://github.com/xmake-io/xmake/issues/5474
local dep = package:dep("pkgconf") or package:dep("pkg-config")
if dep then
local suffix = dep:is_plat("windows", "mingw") and ".exe" or ""
local pkgconf = path.join(dep:installdir("bin"), "pkgconf" .. suffix)
if os.isfile(pkgconf) then
return pkgconf
end
local pkgconfig = path.join(dep:installdir("bin"), "pkg-config" .. suffix)
if os.isfile(pkgconfig) then
return pkgconfig
end
end
if package:is_plat("windows") then
local pkgconf = find_tool("pkgconf", {force = true})
if pkgconf then
return pkgconf.program
end
end
local pkgconfig = find_tool("pkg-config", {force = true})
if pkgconfig then
return pkgconfig.program
end
end
-- is the toolchain compatible with the host?
function _is_toolchain_compatible_with_host(package)
for _, name in ipairs(package:config("toolchains")) do
if toolchain_utils.is_compatible_with_host(name) then
return true
end
end
end
-- get msvc
function _get_msvc(package)
local msvc = package:toolchain("msvc")
assert(msvc:check(), "vs not found!") -- we need to check vs envs if it has been not checked yet
return msvc
end
-- get msvc run environments
function _get_msvc_runenvs(package)
return os.joinenvs(_get_msvc(package):runenvs())
end
-- get cflags from package deps
function _get_cflags_from_packagedeps(package, opt)
local values
for _, depname in ipairs(opt.packagedeps) do
local dep = type(depname) ~= "string" and depname or package:librarydep(depname)
if dep then
local fetchinfo = dep:fetch()
if fetchinfo then
if values then
values = values .. fetchinfo
else
values = fetchinfo
end
end
end
end
-- @see https://github.com/xmake-io/xmake-repo/pull/4973#issuecomment-2295890196
local result = {}
if values then
if values.defines then
table.join2(result, toolchain_utils.map_compflags_for_package(package, "cxx", "define", values.defines))
end
if values.includedirs then
table.join2(result, _translate_paths(toolchain_utils.map_compflags_for_package(package, "cxx", "includedir", values.includedirs)))
end
if values.sysincludedirs then
table.join2(result, _translate_paths(toolchain_utils.map_compflags_for_package(package, "cxx", "sysincludedir", values.sysincludedirs)))
end
end
return result
end
-- get ldflags from package deps
function _get_ldflags_from_packagedeps(package, opt)
local values
for _, depname in ipairs(opt.packagedeps) do
local dep = type(depname) ~= "string" and depname or package:librarydep(depname)
if dep then
local fetchinfo = dep:fetch()
if fetchinfo then
if values then
values = values .. fetchinfo
else
values = fetchinfo
end
end
end
end
local result = {}
if values then
if values.linkdirs then
table.join2(result, _translate_paths(toolchain_utils.map_linkflags_for_package(package, "binary", {"cxx"}, "linkdir", values.linkdirs)))
end
if values.links then
table.join2(result, toolchain_utils.map_linkflags_for_package(package, "binary", {"cxx"}, "link", values.links))
end
if values.syslinks then
table.join2(result, _translate_paths(toolchain_utils.map_linkflags_for_package(package, "binary", {"cxx"}, "syslink", values.syslinks)))
end
if values.frameworks then
table.join2(result, toolchain_utils.map_linkflags_for_package(package, "binary", {"cxx"}, "framework", values.frameworks))
end
end
return result
end
-- get cflags
function _get_cflags(package, opt)
opt = opt or {}
local result = {}
if opt.cross then
table.join2(result, package:build_getenv("cflags"))
table.join2(result, package:build_getenv("cxflags"))
table.join2(result, toolchain_utils.map_compflags_for_package(package, "c", "define", package:build_getenv("defines")))
table.join2(result, toolchain_utils.map_compflags_for_package(package, "c", "includedir", package:build_getenv("includedirs")))
table.join2(result, toolchain_utils.map_compflags_for_package(package, "c", "sysincludedir", package:build_getenv("sysincludedirs")))
end
table.join2(result, package:config("cflags"))
table.join2(result, package:config("cxflags"))
if opt.cflags then
table.join2(result, opt.cflags)
end
if opt.cxflags then
table.join2(result, opt.cxflags)
end
if package:config("lto") then
table.join2(result, package:_generate_lto_configs("cc").cflags)
end
if package:config("asan") then
table.join2(result, package:_generate_sanitizer_configs("address", "cc").cflags)
end
table.join2(result, _get_cflags_from_packagedeps(package, opt))
if #result > 0 then
return os.args(_translate_paths(result))
end
end
-- get cxxflags
function _get_cxxflags(package, opt)
opt = opt or {}
local result = {}
if opt.cross then
table.join2(result, package:build_getenv("cxxflags"))
table.join2(result, package:build_getenv("cxflags"))
table.join2(result, toolchain_utils.map_compflags_for_package(package, "cxx", "define", package:build_getenv("defines")))
table.join2(result, toolchain_utils.map_compflags_for_package(package, "cxx", "includedir", package:build_getenv("includedirs")))
table.join2(result, toolchain_utils.map_compflags_for_package(package, "cxx", "sysincludedir", package:build_getenv("sysincludedirs")))
end
table.join2(result, package:config("cxxflags"))
table.join2(result, package:config("cxflags"))
if opt.cxxflags then
table.join2(result, opt.cxxflags)
end
if opt.cxflags then
table.join2(result, opt.cxflags)
end
if package:config("lto") then
table.join2(result, package:_generate_lto_configs("cxx").cxxflags)
end
if package:config("asan") then
table.join2(result, package:_generate_sanitizer_configs("address", "cxx").cxxflags)
end
table.join2(result, _get_cflags_from_packagedeps(package, opt))
if #result > 0 then
return os.args(_translate_paths(result))
end
end
-- get asflags
function _get_asflags(package, opt)
opt = opt or {}
local result = {}
if opt.cross then
table.join2(result, package:build_getenv("asflags"))
table.join2(result, toolchain_utils.map_compflags_for_package(package, "as", "define", package:build_getenv("defines")))
table.join2(result, toolchain_utils.map_compflags_for_package(package, "as", "includedir", package:build_getenv("includedirs")))
table.join2(result, toolchain_utils.map_compflags_for_package(package, "as", "sysincludedir", package:build_getenv("sysincludedirs")))
end
table.join2(result, package:config("asflags"))
if opt.asflags then
table.join2(result, opt.asflags)
end
if #result > 0 then
return os.args(_translate_paths(result))
end
end
-- get ldflags
function _get_ldflags(package, opt)
opt = opt or {}
local result = {}
if opt.cross then
table.join2(result, package:build_getenv("ldflags"))
table.join2(result, toolchain_utils.map_linkflags_for_package(package, "binary", {"cxx"}, "link", package:build_getenv("links")))
table.join2(result, toolchain_utils.map_linkflags_for_package(package, "binary", {"cxx"}, "syslink", package:build_getenv("syslinks")))
table.join2(result, toolchain_utils.map_linkflags_for_package(package, "binary", {"cxx"}, "linkdir", package:build_getenv("linkdirs")))
end
table.join2(result, package:config("ldflags"))
if package:config("lto") then
table.join2(result, package:_generate_lto_configs().ldflags)
end
if package:config("asan") then
table.join2(result, package:_generate_sanitizer_configs("address").ldflags)
end
table.join2(result, _get_ldflags_from_packagedeps(package, opt))
if opt.ldflags then
table.join2(result, opt.ldflags)
end
if #result > 0 then
return os.args(_translate_paths(result))
end
end
-- get shflags
function _get_shflags(package, opt)
opt = opt or {}
local result = {}
if opt.cross then
table.join2(result, package:build_getenv("shflags"))
table.join2(result, toolchain_utils.map_linkflags_for_package(package, "shared", {"cxx"}, "link", package:build_getenv("links")))
table.join2(result, toolchain_utils.map_linkflags_for_package(package, "shared", {"cxx"}, "syslink", package:build_getenv("syslinks")))
table.join2(result, toolchain_utils.map_linkflags_for_package(package, "shared", {"cxx"}, "linkdir", package:build_getenv("linkdirs")))
end
table.join2(result, package:config("shflags"))
if package:config("lto") then
table.join2(result, package:_generate_lto_configs().shflags)
end
if package:config("asan") then
table.join2(result, package:_generate_sanitizer_configs("address").shflags)
end
table.join2(result, _get_ldflags_from_packagedeps(package, opt))
if opt.shflags then
table.join2(result, opt.shflags)
end
if #result > 0 then
return os.args(_translate_paths(result))
end
end
-- get arflags
function _get_arflags(package, opt)
local result = table.wrap(package:build_getenv("arflags"))
if #result > 0 then
return os.args(_translate_paths(result))
end
end
-- get cmake version
function _get_cmake_version()
local cmake_version = _g.cmake_version
if not cmake_version then
local cmake = find_tool("cmake", {version = true})
if cmake and cmake.version then
cmake_version = semver.new(cmake.version)
end
_g.cmake_version = cmake_version
end
return cmake_version
end
function _get_cmake_system_processor(package)
-- on Windows, CMAKE_SYSTEM_PROCESSOR comes from PROCESSOR_ARCHITECTURE
-- on other systems it's the output of uname -m
if package:is_plat("windows") then
local archs = {
x86 = "x86",
x64 = "AMD64",
x86_64 = "AMD64",
arm = "ARM",
arm64 = "ARM64",
arm64ec = "ARM64EC"
}
return archs[package:arch()] or package:arch()
end
return package:arch()
end
-- get mingw32 make
function _get_mingw32_make(package)
local mingw = package:build_getenv("mingw") or package:build_getenv("sdk")
if mingw then
local mingw_make = _translate_bin_path(path.join(mingw, "bin", "mingw32-make.exe"))
if os.isfile(mingw_make) then
return mingw_make
end
end
end
-- get ninja
function _get_ninja(package)
local ninja = find_tool("ninja")
if ninja then
return ninja.program
end
end
-- https://github.com/xmake-io/xmake-repo/pull/1096
function _fix_cxx_compiler_cmake(package, envs)
local cxx = envs.CMAKE_CXX_COMPILER
if cxx and package:has_tool("cxx", "clang", "gcc") then
local dir = path.directory(cxx)
local name = path.filename(cxx)
name = name:gsub("clang$", "clang++")
name = name:gsub("clang%-", "clang++-")
name = name:gsub("clang%.", "clang++.")
name = name:gsub("gcc$", "g++")
name = name:gsub("gcc%-", "g++-")
name = name:gsub("gcc%.", "g++.")
if dir and dir ~= "." then
cxx = path.join(dir, name)
else
cxx = name
end
envs.CMAKE_CXX_COMPILER = _translate_bin_path(cxx)
end
end
-- @see https://github.com/ziglang/zig/issues/22213
function _fix_zigcc_linker_cmake(package, envs)
if package:has_tool("cc", "zig_cc") then
envs.CMAKE_C_LINKER_DEPFILE_SUPPORTED = "FALSE"
envs.CMAKE_CXX_LINKER_DEPFILE_SUPPORTED = "FALSE"
end
end
-- insert configs from envs
function _insert_configs_from_envs(configs, envs, opt)
opt = opt or {}
local configs_str = opt._configs_str
for k, v in pairs(envs) do
if configs_str and configs_str:find("-D" .. k .. "=", 1, true) then
-- use user custom configuration
else
table.insert(configs, "-D" .. k .. "=" .. v)
end
end
end
-- get configs for generic
function _get_configs_for_generic(package, configs, opt)
local envs = {}
if not package:is_plat("windows", "mingw") and package:config("pic") ~= false then
envs.CMAKE_POSITION_INDEPENDENT_CODE = "ON"
end
if not package:use_external_includes() then
envs.CMAKE_NO_SYSTEM_FROM_IMPORTED = "ON"
end
envs.CMAKE_BUILD_TYPE = package:is_debug() and "Debug" or "Release"
if package:is_library() then
envs.BUILD_SHARED_LIBS = package:config("shared") and "ON" or "OFF"
end
if package:has_source() then
envs.CMAKE_EXPORT_COMPILE_COMMANDS = "ON"
end
-- https://cmake.org/cmake/help/latest/variable/CMAKE_LINKER_TYPE.html
if package:has_tool("ld", "link") then
envs.CMAKE_LINKER_TYPE = "MSVC"
end
_fix_zigcc_linker_cmake(package, envs)
_insert_configs_from_envs(configs, envs, opt)
end
-- get configs for windows
function _get_configs_for_windows(package, configs, opt)
local envs = {}
local cmake_generator = opt.cmake_generator
if not cmake_generator or cmake_generator:find("Visual Studio", 1, true) then
table.insert(configs, "-A")
if package:is_arch("x86", "i386") then
table.insert(configs, "Win32")
elseif package:is_arch("arm64") then
table.insert(configs, "ARM64")
elseif package:is_arch("arm64ec") then
table.insert(configs, "ARM64EC")
elseif package:is_arch("arm.*") then
table.insert(configs, "ARM")
else
table.insert(configs, "x64")
end
local vs_toolset = toolchain_utils.get_vs_toolset_ver(_get_msvc(package):config("vs_toolset") or config.get("vs_toolset"))
if vs_toolset then
envs.CMAKE_GENERATOR_TOOLSET = vs_toolset
end
end
-- use clang-cl or clang, and we need pass --target=xxx flags
if package:has_tool("cc", "clang", "clang_cl") then
envs.CMAKE_C_COMPILER = _translate_bin_path(package:build_getenv("cc"))
end
if package:has_tool("cxx", "clang", "clang_cl") then
envs.CMAKE_CXX_COMPILER = _translate_bin_path(package:build_getenv("cxx"))
end
-- we maybe need patch `cmake_policy(SET CMP0091 NEW)` to enable this argument for some packages
-- @see https://cmake.org/cmake/help/latest/policy/CMP0091.html#policy:CMP0091
-- https://github.com/xmake-io/xmake-repo/pull/303
if package:has_runtime("MT") then
envs.CMAKE_MSVC_RUNTIME_LIBRARY = "MultiThreaded"
elseif package:has_runtime("MTd") then
envs.CMAKE_MSVC_RUNTIME_LIBRARY = "MultiThreadedDebug"
elseif package:has_runtime("MD") then
envs.CMAKE_MSVC_RUNTIME_LIBRARY = "MultiThreadedDLL"
elseif package:has_runtime("MDd") then
envs.CMAKE_MSVC_RUNTIME_LIBRARY = "MultiThreadedDebugDLL"
end
local pdb_dir = path.unix(path.join(os.curdir(), "pdb"))
envs.CMAKE_COMPILE_PDB_OUTPUT_DIRECTORY = pdb_dir
envs.CMAKE_PDB_OUTPUT_DIRECTORY = pdb_dir
_insert_configs_from_envs(configs, envs, opt)
if package:is_cross() then
_get_configs_for_cross(package, configs, opt)
end
end
-- get configs for android
-- https://developer.android.google.cn/ndk/guides/cmake
function _get_configs_for_android(package, configs, opt)
opt = opt or {}
local ndk = get_config("ndk")
if ndk and os.isdir(ndk) then
local ndk_sdkver = get_config("ndk_sdkver")
table.insert(configs, "-DCMAKE_TOOLCHAIN_FILE=" .. path.join(ndk, "build/cmake/android.toolchain.cmake"))
table.insert(configs, "-DANDROID_USE_LEGACY_TOOLCHAIN_FILE=OFF")
table.insert(configs, "-DANDROID_ABI=" .. package:arch())
if ndk_sdkver then
table.insert(configs, "-DANDROID_PLATFORM=android-" .. ndk_sdkver)
table.insert(configs, "-DANDROID_NATIVE_API_LEVEL=" .. ndk_sdkver)
end
-- https://cmake.org/cmake/help/latest/variable/CMAKE_ANDROID_STL_TYPE.html
local runtime = package:runtimes()
if runtime then
table.insert(configs, "-DCMAKE_ANDROID_STL_TYPE=" .. runtime)
end
if is_host("windows") and opt.cmake_generator ~= "Ninja" then
local make = path.join(ndk, "prebuilt", "windows-x86_64", "bin", "make.exe")
if os.isfile(make) then
table.insert(configs, "-DCMAKE_MAKE_PROGRAM=" .. make)
end
end
-- avoid find and add system include/library path
-- @see https://github.com/xmake-io/xmake/issues/2037
table.insert(configs, "-DCMAKE_FIND_ROOT_PATH_MODE_PACKAGE=BOTH")
table.insert(configs, "-DCMAKE_FIND_ROOT_PATH_MODE_LIBRARY=BOTH")
table.insert(configs, "-DCMAKE_FIND_ROOT_PATH_MODE_INCLUDE=BOTH")
table.insert(configs, "-DCMAKE_FIND_ROOT_PATH_MODE_PROGRAM=NEVER")
end
end
-- get configs for appleos
function _get_configs_for_appleos(package, configs, opt)
opt = opt or {}
local envs = {}
opt.cross = true
-- https://cmake.org/cmake/help/v3.17/manual/cmake-toolchains.7.html#id25
if package:is_plat("watchos") then
envs.CMAKE_SYSTEM_NAME = "watchOS"
if package:is_arch("x86_64", "i386") then
envs.CMAKE_OSX_SYSROOT = "watchsimulator"
end
elseif package:is_plat("iphoneos") then
envs.CMAKE_SYSTEM_NAME = "iOS"
if package:is_arch("x86_64", "i386") then
envs.CMAKE_OSX_SYSROOT = "iphonesimulator"
end
elseif package:is_cross() then
envs.CMAKE_SYSTEM_NAME = "Darwin"
envs.CMAKE_SYSTEM_PROCESSOR = _get_cmake_system_processor(package)
end
envs.CMAKE_OSX_ARCHITECTURES = package:arch()
envs.CMAKE_FIND_ROOT_PATH_MODE_PACKAGE = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_LIBRARY = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_INCLUDE = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_FRAMEWORK = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_PROGRAM = "NEVER"
-- avoid install bundle targets
envs.CMAKE_MACOSX_BUNDLE = "NO"
_insert_configs_from_envs(configs, envs, opt)
end
-- get configs for mingw
function _get_configs_for_mingw(package, configs, opt)
opt = opt or {}
opt.cross = true
local envs = {}
local sdkdir = package:build_getenv("mingw") or package:build_getenv("sdk")
envs.CMAKE_C_COMPILER = _translate_bin_path(package:build_getenv("cc"))
envs.CMAKE_CXX_COMPILER = _translate_bin_path(package:build_getenv("cxx"))
envs.CMAKE_ASM_COMPILER = _translate_bin_path(package:build_getenv("as"))
envs.CMAKE_AR = _translate_bin_path(package:build_getenv("ar"))
envs.CMAKE_RANLIB = _translate_bin_path(package:build_getenv("ranlib"))
envs.CMAKE_RC_COMPILER = _translate_bin_path(package:build_getenv("mrc"))
-- @see https://cmake.org/cmake/help/latest/variable/CMAKE_CROSSCOMPILING.html
-- https://github.com/xmake-io/xmake/pull/5888
if not is_host("windows") then
envs.CMAKE_SYSTEM_NAME = "Windows"
end
envs.CMAKE_SYSTEM_PROCESSOR = _get_cmake_system_processor(package)
-- avoid find and add system include/library path
-- @see https://github.com/xmake-io/xmake/issues/2037
-- https://github.com/xmake-io/xmake/issues/6660
if sdkdir and sdkdir ~= "/usr" then
envs.CMAKE_FIND_ROOT_PATH = sdkdir
end
envs.CMAKE_FIND_ROOT_PATH_MODE_PACKAGE = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_LIBRARY = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_INCLUDE = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_PROGRAM = "NEVER"
-- avoid add -isysroot on macOS
envs.CMAKE_OSX_SYSROOT = ""
-- Avoid cmake to add the flags -search_paths_first and -headerpad_max_install_names on macOS
envs.HAVE_FLAG_SEARCH_PATHS_FIRST = "0"
-- CMAKE_MAKE_PROGRAM may be required for some CMakeLists.txt (libcurl)
if is_subhost("windows") and opt.cmake_generator ~= "Ninja" then
envs.CMAKE_MAKE_PROGRAM = _get_mingw32_make(package)
end
_fix_cxx_compiler_cmake(package, envs)
_insert_configs_from_envs(configs, envs, opt)
end
-- get configs for wasm
function _get_configs_for_wasm(package, configs, opt)
opt = opt or {}
local envs = {}
local emsdk = find_emsdk()
assert(emsdk and emsdk.emscripten, "emscripten not found!")
local emscripten_cmakefile = find_file("Emscripten.cmake", path.join(emsdk.emscripten, "cmake/Modules/Platform"))
assert(emscripten_cmakefile, "Emscripten.cmake not found!")
table.insert(configs, "-DCMAKE_TOOLCHAIN_FILE=" .. emscripten_cmakefile)
if is_subhost("windows") then
if opt.cmake_generator ~= "Ninja" then
local mingw_make = _get_mingw32_make(package)
if mingw_make then
table.insert(configs, "-DCMAKE_MAKE_PROGRAM=" .. mingw_make)
end
end
end
-- avoid find and add system include/library path
-- @see https://github.com/xmake-io/xmake/issues/5577
-- https://github.com/emscripten-core/emscripten/issues/13310
envs.CMAKE_FIND_ROOT_PATH_MODE_PACKAGE = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_LIBRARY = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_INCLUDE = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_PROGRAM = "NEVER"
_insert_configs_from_envs(configs, envs, opt)
end
-- get configs for cross
function _get_configs_for_cross(package, configs, opt)
opt = opt or {}
opt.cross = true
local envs = {}
local sdkdir = _translate_paths(package:build_getenv("sdk"))
envs.CMAKE_C_COMPILER = _translate_bin_path(package:build_getenv("cc"))
envs.CMAKE_CXX_COMPILER = _translate_bin_path(package:build_getenv("cxx"))
envs.CMAKE_ASM_COMPILER = _translate_bin_path(package:build_getenv("as"))
envs.CMAKE_AR = _translate_bin_path(package:build_getenv("ar"))
if package:is_plat("windows") then
envs.CMAKE_RC_COMPILER = _translate_bin_path(package:build_getenv("mrc"))
if package:has_tool("cxx", "cl") then
envs.CMAKE_AR = path.join(path.directory(envs.CMAKE_CXX_COMPILER), "lib.exe")
end
end
_fix_cxx_compiler_cmake(package, envs)
-- @note The link command line is set in Modules/CMake{C,CXX,Fortran}Information.cmake and defaults to using the compiler, not CMAKE_LINKER,
-- so we need to set CMAKE_CXX_LINK_EXECUTABLE to use CMAKE_LINKER as linker.
--
-- https://github.com/xmake-io/xmake-repo/pull/1039
-- https://stackoverflow.com/questions/1867745/cmake-use-a-custom-linker/25274328#25274328
-- https://github.com/xmake-io/xmake-repo/pull/2134#issuecomment-1573195810
local ld = _translate_bin_path(package:build_getenv("ld"))
if package:has_tool("ld", "gxx", "clangxx") then
envs.CMAKE_CXX_LINK_EXECUTABLE = ld .. " <FLAGS> <CMAKE_CXX_LINK_FLAGS> <LINK_FLAGS> <OBJECTS> -o <TARGET> <LINK_LIBRARIES>"
end
envs.CMAKE_RANLIB = _translate_bin_path(package:build_getenv("ranlib"))
-- we don't need to set it as cross compilation if we just pass toolchain
-- https://github.com/xmake-io/xmake/issues/2170
if package:is_cross() then
local system_name = package:targetos() or "Linux"
if system_name == "linux" then
system_name = "Linux"
elseif system_name == "windows" then
system_name = "Windows"
end
envs.CMAKE_SYSTEM_NAME = system_name
envs.CMAKE_SYSTEM_PROCESSOR = _get_cmake_system_processor(package)
end
-- avoid find and add system include/library path
-- @see https://github.com/xmake-io/xmake/issues/2037
-- https://github.com/xmake-io/xmake/issues/6660
if sdkdir and sdkdir ~= "/usr" then
envs.CMAKE_FIND_ROOT_PATH = sdkdir
end
envs.CMAKE_FIND_ROOT_PATH_MODE_PACKAGE = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_LIBRARY = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_INCLUDE = "BOTH"
envs.CMAKE_FIND_ROOT_PATH_MODE_PROGRAM = "NEVER"
-- avoid add -isysroot on macOS
envs.CMAKE_OSX_SYSROOT = ""
-- avoid cmake to add the flags -search_paths_first and -headerpad_max_install_names on macOS
envs.HAVE_FLAG_SEARCH_PATHS_FIRST = "0"
-- avoids finding host include/library path
envs.CMAKE_FIND_USE_CMAKE_SYSTEM_PATH = "0"
envs.CMAKE_FIND_USE_INSTALL_PREFIX = "0"
_insert_configs_from_envs(configs, envs, opt)
end
-- get configs for host toolchain
function _get_configs_for_host_toolchain(package, configs, opt)
opt = opt or {}
opt.cross = true
local envs = {}
envs.CMAKE_C_COMPILER = _translate_bin_path(package:build_getenv("cc"))
envs.CMAKE_CXX_COMPILER = _translate_bin_path(package:build_getenv("cxx"))
envs.CMAKE_ASM_COMPILER = _translate_bin_path(package:build_getenv("as"))
envs.CMAKE_RC_COMPILER = _translate_bin_path(package:build_getenv("mrc"))
envs.CMAKE_AR = _translate_bin_path(package:build_getenv("ar"))
_fix_cxx_compiler_cmake(package, envs)
-- @note The link command line is set in Modules/CMake{C,CXX,Fortran}Information.cmake and defaults to using the compiler, not CMAKE_LINKER,
-- so we need set CMAKE_CXX_LINK_EXECUTABLE to use CMAKE_LINKER as linker.
--
-- https://github.com/xmake-io/xmake-repo/pull/1039
-- https://stackoverflow.com/questions/1867745/cmake-use-a-custom-linker/25274328#25274328
-- https://github.com/xmake-io/xmake-repo/pull/2134#issuecomment-1573195810
local ld = _translate_bin_path(package:build_getenv("ld"))
if package:has_tool("ld", "gxx", "clangxx") then
envs.CMAKE_CXX_LINK_EXECUTABLE = ld .. " <FLAGS> <CMAKE_CXX_LINK_FLAGS> <LINK_FLAGS> <OBJECTS> -o <TARGET> <LINK_LIBRARIES>"
end
envs.CMAKE_RANLIB = _translate_bin_path(package:build_getenv("ranlib"))
-- we don't need to set it as cross compilation if we just pass toolchain
-- https://github.com/xmake-io/xmake/issues/2170
if package:is_cross() then
envs.CMAKE_SYSTEM_NAME = "Linux"
end
_insert_configs_from_envs(configs, envs, opt)
end
-- get cmake generator for msvc
function _get_cmake_generator_for_msvc(package)
local vs = _get_msvc(package):config("vs") or config.get("vs")
return "Visual Studio " .. toolchain_utils.get_vsver(vs) .. " " .. vs
end
-- get configs for cmake generator
function _get_configs_for_generator(package, configs, opt)
opt = opt or {}
configs = configs or {}
local cmake_generator = opt.cmake_generator
if cmake_generator then
if cmake_generator:find("Visual Studio", 1, true) then
cmake_generator = _get_cmake_generator_for_msvc(package)
end
table.insert(configs, "-G")
table.insert(configs, cmake_generator)
if cmake_generator:find("Ninja", 1, true) then
local jobs = _get_parallel_njobs(opt)
local linkjobs = opt.linkjobs or option.get("linkjobs")
if linkjobs then
table.insert(configs, "-DCMAKE_JOB_POOL_COMPILE:STRING=compile")
table.insert(configs, "-DCMAKE_JOB_POOL_LINK:STRING=link")
table.insert(configs, ("-DCMAKE_JOB_POOLS:STRING=compile=%s;link=%s"):format(jobs, linkjobs))
end
local ninja = _get_ninja(package)
if ninja then
table.insert(configs, "-DCMAKE_MAKE_PROGRAM=" .. ninja)
end
end
elseif package:is_plat("mingw") and is_subhost("msys") then
table.insert(configs, "-G")
table.insert(configs, "MSYS Makefiles")
elseif package:is_plat("mingw") and is_subhost("windows") then
table.insert(configs, "-G")
table.insert(configs, "MinGW Makefiles")
elseif package:is_plat("windows") then
table.insert(configs, "-G")
table.insert(configs, _get_cmake_generator_for_msvc(package))
elseif package:is_plat("wasm") and is_subhost("windows") then
table.insert(configs, "-G")
table.insert(configs, "MinGW Makefiles")
else
table.insert(configs, "-G")
table.insert(configs, "Unix Makefiles")
end
end
-- get configs for installation
function _get_configs_for_install(package, configs, opt)
-- @see https://cmake.org/cmake/help/v3.14/module/GNUInstallDirs.html
-- LIBDIR: object code libraries (lib or lib64 or lib/<multiarch-tuple> on Debian)
--
table.insert(configs, "-DCMAKE_INSTALL_PREFIX=" .. package:installdir())
if not opt._configs_str:find("CMAKE_INSTALL_LIBDIR") then
table.insert(configs, "-DCMAKE_INSTALL_LIBDIR:PATH=lib")
end
end
function _get_default_flags(package, configs, buildtype, opt)
-- The default flags are different for different platforms
-- @see https://github.com/xmake-io/xmake-repo/pull/4038#issuecomment-2116489448
local cc = package:build_getenv("cc")
local cxx = package:build_getenv("cxx")
local cachekey = buildtype .. package:plat() .. package:arch() .. (cc or "") .. (cxx or "")
local cmake_default_flags = _g.cmake_default_flags and _g.cmake_default_flags[cachekey]
if not cmake_default_flags then
local tmpdir = path.join(os.tmpfile() .. ".dir", package:displayname(), package:mode())
local dummy_cmakelist = path.join(tmpdir, "CMakeLists.txt")
local cflags
if cc then
cflags = "-DCMAKE_C_COMPILER=" .. _translate_bin_path(cc)
end
local cxxflags
if cxx then
cxxflags = "-DCMAKE_CXX_COMPILER=" .. _translate_bin_path(cxx)
end
-- About the minimum cmake version requirement
-- @see https://github.com/xmake-io/xmake/pull/6032
io.writefile(dummy_cmakelist, format([[
cmake_minimum_required(VERSION 3.15)
project(XMakeDummyProject)
message(STATUS "CMAKE_C_FLAGS is ${CMAKE_C_FLAGS}")
message(STATUS "CMAKE_C_FLAGS_%s is ${CMAKE_C_FLAGS_%s}")
message(STATUS "CMAKE_CXX_FLAGS is ${CMAKE_CXX_FLAGS}")
message(STATUS "CMAKE_CXX_FLAGS_%s is ${CMAKE_CXX_FLAGS_%s}")
message(STATUS "CMAKE_EXE_LINKER_FLAGS is ${CMAKE_EXE_LINKER_FLAGS}")
message(STATUS "CMAKE_EXE_LINKER_FLAGS_%s is ${CMAKE_EXE_LINKER_FLAGS_%s}")
message(STATUS "CMAKE_SHARED_LINKER_FLAGS is ${CMAKE_SHARED_LINKER_FLAGS}")
message(STATUS "CMAKE_SHARED_LINKER_FLAGS_%s is ${CMAKE_SHARED_LINKER_FLAGS_%s}")
message(STATUS "CMAKE_STATIC_LINKER_FLAGS is ${CMAKE_STATIC_LINKER_FLAGS}")
message(STATUS "CMAKE_STATIC_LINKER_FLAGS_%s is ${CMAKE_STATIC_LINKER_FLAGS_%s}")
]], buildtype, buildtype, buildtype, buildtype, buildtype, buildtype, buildtype, buildtype, buildtype, buildtype))
local runenvs = opt.envs or buildenvs(package)
local cmake = find_tool("cmake")
local _configs = table.join(configs, "-S", path.directory(dummy_cmakelist), "-B", tmpdir, cflags or {}, cxxflags)
local outdata = try{ function() return os.iorunv(cmake.program, _configs, {envs = runenvs}) end}
if outdata and outdata ~= "" then
cmake_default_flags = {}
cmake_default_flags.CMAKE_C_FLAGS = outdata:match("CMAKE_C_FLAGS is (.-)\n")
cmake_default_flags["CMAKE_C_FLAGS_" .. buildtype] = outdata:match(format("CMAKE_C_FLAGS_%s is (.-)\n", buildtype))
cmake_default_flags.CMAKE_CXX_FLAGS = outdata:match("CMAKE_CXX_FLAGS is (.-)\n")
cmake_default_flags["CMAKE_CXX_FLAGS_" .. buildtype] = outdata:match(format("CMAKE_CXX_FLAGS_%s is (.-)\n", buildtype))
cmake_default_flags.CMAKE_CXX_FLAGS = outdata:match("CMAKE_CXX_FLAGS is (.-)\n")
cmake_default_flags["CMAKE_EXE_LINKER_FLAGS_" .. buildtype] = outdata:match(format("CMAKE_EXE_LINKER_FLAGS_%s is (.-)\n", buildtype))
cmake_default_flags.CMAKE_SHARED_LINKER_FLAGS = outdata:match("CMAKE_SHARED_LINKER_FLAGS is (.-)\n")
cmake_default_flags["CMAKE_SHARED_LINKER_FLAGS_" .. buildtype] = outdata:match(format("CMAKE_SHARED_LINKER_FLAGS_%s is (.-)\n", buildtype))
cmake_default_flags.CMAKE_STATIC_LINKER_FLAGS = outdata:match("CMAKE_STATIC_LINKER_FLAGS is (.-)\n")
cmake_default_flags["CMAKE_STATIC_LINKER_FLAGS_" .. buildtype] = outdata:match(format("CMAKE_STATIC_LINKER_FLAGS_%s is (.-)\n", buildtype))
for k, v in ipairs(cmake_default_flags) do
cmake_default_flags[k] = v:replace("/M[DT]d", ""):replace("/M[DT]", "")
end
_g.cmake_default_flags = _g.cmake_default_flags or {}
_g.cmake_default_flags[cachekey] = cmake_default_flags
end
os.rm(tmpdir)
end
return cmake_default_flags
end
function _get_cmake_buildtype(package)
local cmake_buildtype_map = {
debug = "DEBUG",
release = "RELEASE",
releasedbg = "RELWITHDEBINFO"
}
local buildtype = package:mode()
return cmake_buildtype_map[buildtype] or "RELEASE"
end
function _get_envs_for_default_flags(package, configs, opt)
local buildtype = _get_cmake_buildtype(package)
return table.clone(_get_default_flags(package, configs, buildtype, opt)) or {}
end
function _get_envs_for_runtime_flags(package, opt)
local buildtype = _get_cmake_buildtype(package)
local envs = {}
local runtimes = package:runtimes()
if runtimes then
envs[format("CMAKE_C_FLAGS_%s", buildtype)] = toolchain_utils.map_compflags_for_package(package, "c", "runtime", runtimes)
envs[format("CMAKE_CXX_FLAGS_%s", buildtype)] = toolchain_utils.map_compflags_for_package(package, "cxx", "runtime", runtimes)
envs[format("CMAKE_EXE_LINKER_FLAGS_%s", buildtype)] = toolchain_utils.map_linkflags_for_package(package, "binary", {"cxx"}, "runtime", runtimes)
envs[format("CMAKE_STATIC_LINKER_FLAGS_%s", buildtype)] = toolchain_utils.map_linkflags_for_package(package, "static", {"cxx"}, "runtime", runtimes)
envs[format("CMAKE_SHARED_LINKER_FLAGS_%s", buildtype)] = toolchain_utils.map_linkflags_for_package(package, "shared", {"cxx"}, "runtime", runtimes)
envs[format("CMAKE_MODULE_LINKER_FLAGS_%s", buildtype)] = toolchain_utils.map_linkflags_for_package(package, "shared", {"cxx"}, "runtime", runtimes)
end
return envs
end
function _get_envs_for_flags(package, configs, opt)
-- get the default envs
local envs = _get_envs_for_default_flags(package, configs, opt)
local runtime_envs = _get_envs_for_runtime_flags(package, opt)
if runtime_envs then
for name, value in pairs(runtime_envs) do
envs[name] = (envs[name] or " ") .. " " .. table.concat(value, " ")
end
end
-- get the platform/toolchain envs
local platform_envs = {}
if package:is_plat("windows") then
-- use clang-cl or clang, and we need pass --target=xxx flags
if package:has_tool("cc", "clang", "clang_cl") then
-- @see https://github.com/xmake-io/xmake-repo/issues/7662
platform_envs.CMAKE_C_FLAGS = _get_cflags(package, table.join({cross = true}, opt))
end
if package:has_tool("cxx", "clang", "clang_cl") then
platform_envs.CMAKE_CXX_FLAGS = _get_cxxflags(package, table.join({cross = true}, opt))
end
elseif package:is_plat("wasm") then
-- pass toolchain flags cross-compilation
-- @see https://github.com/xmake-io/xmake/issues/6690
opt.cross = true
end
platform_envs.CMAKE_C_FLAGS = platform_envs.CMAKE_C_FLAGS or _get_cflags(package, opt)
platform_envs.CMAKE_CXX_FLAGS = platform_envs.CMAKE_CXX_FLAGS or _get_cxxflags(package, opt)
platform_envs.CMAKE_ASM_FLAGS = _get_asflags(package, opt)
platform_envs.CMAKE_EXE_LINKER_FLAGS = _get_ldflags(package, opt)
platform_envs.CMAKE_SHARED_LINKER_FLAGS = _get_shflags(package, opt)
platform_envs.CMAKE_MODULE_LINKER_FLAGS = _get_shflags(package, opt)
platform_envs.CMAKE_STATIC_LINKER_FLAGS = _get_arflags(package, opt)
for name, value in pairs(platform_envs) do
envs[name] = (envs[name] or " ") .. " " .. value
end
return envs
end
function _get_configs(package, configs, opt)
configs = configs or {}
opt._configs_str = string.serialize(configs, {indent = false, strip = true})
_get_configs_for_install(package, configs, opt)
_get_configs_for_generator(package, configs, opt)
_get_configs_for_generic(package, configs, opt)
if package:is_plat("windows") then
_get_configs_for_windows(package, configs, opt)
elseif package:is_plat("android") then
_get_configs_for_android(package, configs, opt)
elseif package:is_plat("iphoneos", "watchos") or
-- for cross-compilation on macOS, @see https://github.com/xmake-io/xmake/issues/2804
(package:is_plat("macosx") and (get_config("appledev") or not package:is_arch(os.subarch()))) then
_get_configs_for_appleos(package, configs, opt)
elseif package:is_plat("mingw") then
_get_configs_for_mingw(package, configs, opt)
elseif package:is_plat("wasm") then
_get_configs_for_wasm(package, configs, opt)
elseif package:is_cross() then
_get_configs_for_cross(package, configs, opt)
elseif package:config("toolchains") then
-- we still need find system libraries,
-- it just pass toolchain environments if the toolchain is compatible with host
if _is_toolchain_compatible_with_host(package) then
_get_configs_for_host_toolchain(package, configs, opt)
else
_get_configs_for_cross(package, configs, opt)
end
end
-- fix error for cmake 4.x
-- e.g. Compatibility with CMake < 3.5 has been removed from CMake.
if _get_cmake_version() and _get_cmake_version():ge("4.0") then
table.insert(configs, "-DCMAKE_POLICY_VERSION_MINIMUM=3.5")
end
-- insert flags to configs
--
-- @note We need to rely on configs to get the exact default flags
-- @see https://github.com/xmake-io/xmake/issues/6781
local envs = _get_envs_for_flags(package, configs, opt)
_insert_configs_from_envs(configs, envs, opt)
-- enable ccache?
local ccache = package:data("ccache")
if ccache then
table.insert(configs, "-DCMAKE_C_COMPILER_LAUNCHER=" .. ccache)
table.insert(configs, "-DCMAKE_CXX_COMPILER_LAUNCHER=" .. ccache)
end
return configs
end
-- Fix pdb issue, if multiple CL.EXE write to the same .PDB file, please use /FS
-- @see https://github.com/xmake-io/xmake/issues/5353
function _fix_pdbdir_for_ninja(package)
if package:is_plat("windows") and package:has_tool("cxx", "cl") then
local pdbdir = "pdb"
if not os.isdir(pdbdir) then
os.mkdir(pdbdir)
end
end
end
-- enter build directory
function _enter_builddir(package, opt)
local builddir = opt.builddir or opt.buildir or package:builddir()
if opt.buildir then
wprint("{buildir = } has been deprecated, please use {builddir = } in cmake.install")
end
os.mkdir(path.join(builddir, "install"))
return os.cd(builddir)
end
-- get build environments
function buildenvs(package, opt)
-- we need to bind msvc environments manually
-- @see https://github.com/xmake-io/xmake/issues/1057
opt = opt or {}
local envs = {}
if package:is_plat("windows") then
envs = _get_msvc_runenvs(package)
end
-- we need to pass pkgconf for windows/mingw without msys2/cygwin
if package:is_plat("windows", "mingw") and is_subhost("windows") then
local pkgconf = _get_pkgconfig(package)
if pkgconf then
envs.PKG_CONFIG = pkgconf
end
end
-- add environments for cmake/find_packages
-- and we need also find them from private libraries,
-- @see https://github.com/xmake-io/xmake-repo/pull/2553
local CMAKE_LIBRARY_PATH = {}
local CMAKE_INCLUDE_PATH = {}
local CMAKE_PREFIX_PATH = {}
local PKG_CONFIG_PATH = {}
for _, dep in ipairs(package:librarydeps({private = true})) do
if dep:is_system() then
local fetchinfo = dep:fetch()
if fetchinfo then
table.join2(CMAKE_LIBRARY_PATH, fetchinfo.linkdirs)
table.join2(CMAKE_INCLUDE_PATH, fetchinfo.includedirs)
table.join2(CMAKE_INCLUDE_PATH, fetchinfo.sysincludedirs)
end
else
table.join2(CMAKE_PREFIX_PATH, dep:installdir())
local pkgconfig = path.join(dep:installdir(), "lib", "pkgconfig")
if os.isdir(pkgconfig) then
table.insert(PKG_CONFIG_PATH, pkgconfig)
end
pkgconfig = path.join(dep:installdir(), "share", "pkgconfig")
if os.isdir(pkgconfig) then
table.insert(PKG_CONFIG_PATH, pkgconfig)
end
end
end
envs.CMAKE_LIBRARY_PATH = path.joinenv(CMAKE_LIBRARY_PATH)
envs.CMAKE_INCLUDE_PATH = path.joinenv(CMAKE_INCLUDE_PATH)
envs.CMAKE_PREFIX_PATH = path.joinenv(CMAKE_PREFIX_PATH)
envs.PKG_CONFIG_PATH = path.joinenv(PKG_CONFIG_PATH)
return envs
end
-- do build for msvc
function _build_for_msvc(package, configs, opt)
local allbuild = os.isfile("ALL_BUILD.vcxproj") and "ALL_BUILD.vcxproj" or "ALL_BUILD.vcproj"
assert(os.isfile(allbuild), "ALL_BUILD project not found!")
msbuild.build(package, {allbuild, "-t:Rebuild"}, opt)
end
-- do build for make
function _build_for_make(package, configs, opt)
local argv = {}
local targets = table.wrap(opt.targets or opt.target)
if #targets ~= 0 then
table.join2(argv, targets)
end
local jobs = _get_parallel_njobs(opt)
table.insert(argv, "-j" .. jobs)
if option.get("diagnosis") then
table.insert(argv, "VERBOSE=1")
end
if is_host("bsd") then
os.vrunv("gmake", argv)
elseif is_subhost("windows") and package:is_plat("mingw") then
local mingw_make = assert(_get_mingw32_make(package), "mingw32-make.exe not found!")
os.vrunv(mingw_make, argv)
elseif package:is_plat("android") and is_host("windows") then
local make
local ndk = get_config("ndk")
if ndk then
make = path.join(ndk, "prebuilt", "windows-x86_64", "bin", "make.exe")
end
if not make or not os.isfile(make) then
make = "make"
end
os.vrunv(make, argv)
else
os.vrunv("make", argv)
end
end
-- do build for ninja
function _build_for_ninja(package, configs, opt)
opt = opt or {}
_fix_pdbdir_for_ninja(package)
ninja.build(package, {}, {envs = opt.envs or buildenvs(package, opt),
jobs = opt.jobs,
targets = opt.targets or opt.target})
end
-- do build for cmake/build
function _build_for_cmakebuild(package, configs, opt)
local cmake = assert(find_tool("cmake"), "cmake not found!")
local argv = {"--build", os.curdir()}
if opt.config then
table.insert(argv, "--config")
table.insert(argv, opt.config)
end
local targets = table.wrap(opt.targets or opt.target)
if #targets ~= 0 then
table.insert(argv, "--target")
if #targets > 1 then
-- https://stackoverflow.com/questions/47553569/how-can-i-build-multiple-targets-using-cmake-build
if _get_cmake_version() and _get_cmake_version():ge("3.15") then
table.join2(argv, targets)
else
raise("Build multiple targets need cmake >=3.15")
end
else
table.insert(argv, targets[1])
end
end
os.vrunv(cmake.program, argv, {envs = opt.envs or buildenvs(package)})
end
-- do install for msvc
function _install_for_msvc(package, configs, opt)
local allbuild = os.isfile("ALL_BUILD.vcxproj") and "ALL_BUILD.vcxproj" or "ALL_BUILD.vcproj"
assert(os.isfile(allbuild), "ALL_BUILD project not found!")
msbuild.build(package, {allbuild, "-t:Rebuild", "/nr:false"}, opt)
local projfile = os.isfile("INSTALL.vcxproj") and "INSTALL.vcxproj" or "INSTALL.vcproj"
if os.isfile(projfile) then
msbuild.build(package, {projfile}, opt)
os.trycp("install/bin", package:installdir())
os.trycp("install/lib", package:installdir()) -- perhaps only headers library
os.trycp("install/share", package:installdir())
os.trycp("install/include", package:installdir())
else
os.trycp("**.dll", package:installdir("bin"))
os.trycp("**.lib", package:installdir("lib"))
os.trycp("**.exp", package:installdir("lib"))
if package:config("shared") or not package:is_library() then
os.trycp("**.pdb", package:installdir("bin"))
else
os.trycp("**.pdb", package:installdir("lib"))
end
end
end
-- do install for make
function _install_for_make(package, configs, opt)
local jobs = _get_parallel_njobs(opt)
local argv = {"-j" .. jobs}
if option.get("diagnosis") then
table.insert(argv, "VERBOSE=1")
end
if is_host("bsd") then
os.vrunv("gmake", argv)
os.vrunv("gmake", {"install"})
elseif is_subhost("windows") and package:is_plat("mingw", "wasm") then
local mingw_make = assert(_get_mingw32_make(package), "mingw32-make.exe not found!")
os.vrunv(mingw_make, argv)
os.vrunv(mingw_make, {"install"})
elseif package:is_plat("android") and is_host("windows") then
local make
local ndk = get_config("ndk")
if ndk then
make = path.join(ndk, "prebuilt", "windows-x86_64", "bin", "make.exe")
end
if not make or not os.isfile(make) then
make = "make"
end
os.vrunv(make, argv)
os.vrunv(make, {"install"})
else
os.vrunv("make", argv)
os.vrunv("make", {"install"})
end
end
-- do install for ninja
function _install_for_ninja(package, configs, opt)
opt = opt or {}
_fix_pdbdir_for_ninja(package)
ninja.install(package, {}, {envs = opt.envs or buildenvs(package, opt),
jobs = opt.jobs,
targets = opt.targets or opt.target})
end
-- do install for cmake/build
function _install_for_cmakebuild(package, configs, opt)
opt = opt or {}
local cmake = assert(find_tool("cmake"), "cmake not found!")
local argv = {"--build", os.curdir()}
local install_argv = {"--install", os.curdir()}
if opt.config then
table.insert(argv, "--config")
table.insert(argv, opt.config)
table.insert(install_argv, "--config")
table.insert(install_argv, opt.config)
end
os.vrunv(cmake.program, argv, {envs = opt.envs or buildenvs(package)})
os.vrunv(cmake.program, install_argv)
end
-- get cmake generator
function _get_cmake_generator(package, opt)
opt = opt or {}
local cmake_generator = opt.cmake_generator
if not cmake_generator then
local use_ninja = package:policy("package.cmake_generator.ninja")
if use_ninja == nil then
use_ninja = project.policy("package.cmake_generator.ninja")
end
if use_ninja then
cmake_generator = "Ninja"
end
if not cmake_generator then
if package:has_tool("cc", "clang_cl") or package:has_tool("cxx", "clang_cl") then
cmake_generator = "Ninja"
elseif (is_subhost("windows") and package:is_plat("mingw", "wasm"))
or (package:is_plat("windows") and is_host("linux")) then
local ninja = _get_ninja(package)
if ninja then
cmake_generator = "Ninja"
end
end
end
local cmake_generator_env = os.getenv("CMAKE_GENERATOR")
if not cmake_generator and cmake_generator_env then
cmake_generator = cmake_generator_env
end
if cmake_generator then
opt.cmake_generator = cmake_generator
end
end
return cmake_generator
end
-- shrink cmake arguments, fix too long arguments
-- @see https://github.com/xmake-io/xmake-repo/pull/5247#discussion_r1780302212
function _shrink_cmake_arguments(argv, oldir, opt)
local cmake_argv = {}
local long_options = hashset.of(
"CMAKE_C_FLAGS",
"CMAKE_CXX_FLAGS",
"CMAKE_ASM_FLAGS",
"CMAKE_EXE_LINKER_FLAGS",
"CMAKE_SHARED_LINKER_FLAGS",
"CMAKE_MODULE_LINKER_FLAGS",
"CMAKE_C_FLAGS_RELEASE",
"CMAKE_CXX_FLAGS_RELEASE",
"CMAKE_ASM_FLAGS_RELEASE",
"CMAKE_EXE_LINKER_FLAGS_RELEASE",
"CMAKE_SHARED_LINKER_FLAGS_RELEASE",
"CMAKE_MODULE_LINKER_FLAGS_RELEASE",
"CMAKE_C_FLAGS_DEBUG",
"CMAKE_CXX_FLAGS_DEBUG",
"CMAKE_ASM_FLAGS_DEBUG",
"CMAKE_EXE_LINKER_FLAGS_DEBUG",
"CMAKE_SHARED_LINKER_FLAGS_DEBUG",
"CMAKE_MODULE_LINKER_FLAGS_DEBUG")
local shrink = false
local add_compile_options = false
local add_link_options = false
if _get_cmake_version() and _get_cmake_version():ge("3.13") then
add_compile_options = true
add_link_options = true
end
local buildtypes_map = {
RELEASE = "Release",
DEBUG = "Debug",
RELWITHDEBINFO = "RelWithDebInfo"
}
table.remove_if(argv, function (idx, value)
local k, v = value:match("%-D(.*)=(.*)")
if k and v and long_options:has(k) then
local kind, mode = k:match("CMAKE_(.+)_FLAGS_(.+)")
if not kind then
kind = k:match("CMAKE_(.+)_FLAGS")
end
-- improve cmake flags
-- @see https://github.com/xmake-io/xmake/issues/5826
--[[
local build_type = mode and buildtypes_map[mode] or nil
if #v > 0 and add_compile_options and (kind == "C" or kind == "CXX" or kind == "ASM") then
if build_type then
table.insert(cmake_argv, ("if(CMAKE_BUILD_TYPE STREQUAL \"%s\")"):format(build_type))
end
local flags = v:replace("\"", "\\\"")
table.insert(cmake_argv, ("set(COMP_%s_FLAGS \"%s\")"):format(kind, flags))
table.insert(cmake_argv, ("add_compile_options($<$<COMPILE_LANGUAGE:%s>:${COMP_%s_FLAGS}>)"):format(kind, kind))
if build_type then
table.insert(cmake_argv, "endif()")
end
shrink = true
return true
end]]
-- shrink long arguments
if #v > 128 then
local flags = v:replace("\"", "\\\"")
table.insert(cmake_argv, ("set(%s \"%s\")"):format(k, flags))
shrink = true
return true
end
end
end)
if shrink then
local cmakefile = path.join(opt.curdir and opt.curdir or oldir, "CMakeLists.txt")
io.insert(cmakefile, 1, table.concat(cmake_argv, "\n"))
end
end
function configure(package, configs, opt)
opt = opt or {}
local oldir = _enter_builddir(package, opt)
-- pass configurations
local argv = {}
for name, value in pairs(_get_configs(package, configs, opt)) do
value = tostring(value):trim()
if type(name) == "number" then
if value ~= "" then
table.insert(argv, value)
end
else
table.insert(argv, "-D" .. name .. "=" .. value)
end
end
-- shrink cmake arguments, fix too long arguments
-- @see https://github.com/xmake-io/xmake-repo/pull/5247#discussion_r1780302212
_shrink_cmake_arguments(argv, oldir, opt)
table.insert(argv, oldir)
-- do configure
local cmake = assert(find_tool("cmake"), "cmake not found!")
os.vrunv(cmake.program, argv, {envs = opt.envs or buildenvs(package, opt)})
os.cd(oldir)
end
-- build package
function build(package, configs, opt)
opt = opt or {}
local cmake_generator = _get_cmake_generator(package, opt)
-- do configure
configure(package, configs, opt)
-- do build
local oldir = _enter_builddir(package, opt)
if opt.cmake_build then
_build_for_cmakebuild(package, configs, opt)
elseif cmake_generator then
if cmake_generator:find("Visual Studio", 1, true) then
_build_for_msvc(package, configs, opt)
elseif cmake_generator == "Ninja" then
_build_for_ninja(package, configs, opt)
elseif cmake_generator:find("Makefiles", 1, true) then
_build_for_make(package, configs, opt)
else
raise("unknown cmake generator(%s)!", cmake_generator)
end
else
if package:is_plat("windows") then
_build_for_msvc(package, configs, opt)
else
_build_for_make(package, configs, opt)
end
end
os.cd(oldir)
end
-- install package
function install(package, configs, opt)
opt = opt or {}
local cmake_generator = _get_cmake_generator(package, opt)
-- do configure
configure(package, configs, opt)
-- do build and install
local oldir = _enter_builddir(package, opt)
if opt.cmake_build then
_install_for_cmakebuild(package, configs, opt)
elseif cmake_generator then
if cmake_generator:find("Visual Studio", 1, true) then
_install_for_msvc(package, configs, opt)
elseif cmake_generator == "Ninja" then
_install_for_ninja(package, configs, opt)
elseif cmake_generator:find("Makefiles", 1, true) then
_install_for_make(package, configs, opt)
else
raise("unknown cmake generator(%s)!", cmake_generator)
end
else
if package:is_plat("windows") then
_install_for_msvc(package, configs, opt)
else
_install_for_make(package, configs, opt)
end
end
if package:is_plat("windows") and os.isdir("pdb") then
if package:config("shared") or not package:is_library() then
os.trycp("pdb/**.pdb", package:installdir("bin"))
else
os.trycp("pdb/**.pdb", package:installdir("lib"))
end
end
os.cd(oldir)
end
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