blob: 890d33e0659e0d0b9ed1bf41b5e572979742b177 [file] [log] [blame]
# Copyright (c) 2013 The Chromium Authors. All rights reserved.
# Use of this source code is governed by a BSD-style license that can be
# found in the LICENSE file.
# =============================================================================
# BUILD FLAGS
# =============================================================================
#
# This block lists input arguments to the build, along with their default
# values. GN requires listing them explicitly so it can validate input and have
# a central place to manage the build flags.
#
# If a value is specified on the command line, it will overwrite the defaults
# given here, otherwise the default will be injected into the root scope.
#
# KEEP IN ALPHABETICAL ORDER and write a good description for everything.
# Use "is_*" names for intrinsic platform descriptions and build modes, and
# "use_*" names for optional features libraries, and configurations.
declare_args() {
# How many symbols to include in the build. This affects the performance of
# the build since the symbols are large and dealing with them is slow.
# 2 means regular build with symbols.
# 1 means minimal symbols, usually enough for backtraces only.
# 0 means no symbols.
# -1 means auto-set (off in release, regular in debug).
symbol_level = -1
# Component build.
is_component_build = false
# Debug build.
is_debug = true
# Set to true when compiling with the Clang compiler. Typically this is used
# to configure warnings.
is_clang = (os == "mac" || os == "ios" || os == "linux")
# Forces a 64-bit build on Windows. Does nothing on other platforms. Normally
# we build 32-bit on Windows regardless of the current host OS bit depth.
# Setting this flag will override this logic and generate 64-bit toolchains.
#
# Normally this would get set automatically when you specify a target using
# the 64-bit toolchain. You can also set this on the command line to convert
# the default toolchain to 64-bit.
force_win64 = false
# Selects the desired build flavor. Official builds get additional
# processing to prepare for release. Normally you will want to develop and
# test with this flag off.
is_official_build = false
# Select the desired branding flavor. False means normal Chromium branding,
# true means official Google Chrome branding (requires extra Google-internal
# resources).
is_chrome_branded = false
# Compile for Address Sanitizer to find memory bugs.
is_asan = false
# Compile for Leak Sanitizer to find leaks.
is_lsan = false
# Compile for Memory Sanitizer to find uninitialized reads.
is_msan = false
# Compile for Thread Sanitizer to find threading bugs.
is_tsan = false
if (os == "chromeos") {
# Allows the target toolchain to be injected as arguments. This is needed
# to support the CrOS build system which supports per-build-configuration
# toolchains.
cros_use_custom_toolchain = false
}
# TODO(cjhopman): Make target_arch work for all platforms.
# Architecture of the target device. For Android builds, this will be equal to
# the cpu_arch of the default toolchain. When checking the CPU architecture
# for source files and build dependencies you should almost alway use cpu_arch
# instead. cpu_arch is the architecture of the current toolchain and allows
# cross-compiles (compiling the same target for multiple toolchains in the
# same build) to work.
target_arch = "arm"
}
# =============================================================================
# OS DEFINITIONS
# =============================================================================
#
# We set these various is_FOO booleans for convenience in writing OS-based
# conditions.
#
# - is_android, is_chromeos, is_ios, and is_win should be obvious.
# - is_mac is set only for desktop Mac. It is not set on iOS.
# - is_posix is true for mac and any Unix-like system (basically everything
# except Windows).
# - is_linux is true for desktop Linux and ChromeOS, but not Android (which is
# generally too different despite being based on the Linux kernel).
#
# Do not add more is_* variants here for random lesser-used Unix systems like
# aix or one of the BSDs. If you need to check these, just check the os value
# directly.
if (os == "win") {
is_android = false
is_chromeos = false
is_ios = false
is_linux = false
is_mac = false
is_nacl = false
is_posix = false
is_win = true
} else if (os == "mac") {
is_android = false
is_chromeos = false
is_ios = false
is_linux = false
is_mac = true
is_nacl = false
is_posix = true
is_win = false
} else if (os == "android") {
is_android = true
is_chromeos = false
is_ios = false
is_linux = false
is_mac = false
is_nacl = false
is_posix = true
is_win = false
} else if (os == "chromeos") {
is_android = false
is_chromeos = true
is_ios = false
is_linux = true
is_mac = false
is_nacl = false
is_posix = true
is_win = false
} else if (os == "nacl") {
# os == "nacl" will be passed by the nacl toolchain definition. It is not
# set by default or on the command line. We treat is as a Posix variant.
is_android = false
is_chromeos = false
is_ios = false
is_linux = false
is_mac = false
is_nacl = true
is_posix = true
is_win = false
} else if (os == "ios") {
is_android = false
is_chromeos = false
is_ios = true
is_linux = false
is_mac = false
is_nacl = false
is_posix = true
is_win = false
} else if (os == "linux") {
is_android = false
is_chromeos = false
is_ios = false
is_linux = true
is_mac = false
is_nacl = false
is_posix = true
is_win = false
}
is_desktop_linux = is_linux && !is_chromeos
# =============================================================================
# CPU ARCHITECTURE
# =============================================================================
if (is_win) {
# Always use 32-bit on Windows, even when compiling on a 64-bit host OS,
# unless the override flag is specified.
if (force_win64) {
cpu_arch = "x64"
} else {
cpu_arch = "x86"
}
}
if (is_android) {
# TODO(cjhopman): enable this assert once bots are updated to not set
# cpu_arch.
#assert(cpu_arch == build_cpu_arch, "Android device target architecture should
# be set with 'target_arch', not 'cpu_arch'")
cpu_arch = target_arch
}
# =============================================================================
# SOURCES FILTERS
# =============================================================================
#
# These patterns filter out platform-specific files when assigning to the
# sources variable. The magic variable |sources_assignment_filter| is applied
# to each assignment or appending to the sources variable and matches are
# automatcally removed.
#
# Note that the patterns are NOT regular expressions. Only "*" and "\b" (path
# boundary = end of string or slash) are supported, and the entire string
# muct match the pattern (so you need "*.cc" to match all .cc files, for
# example).
# DO NOT ADD MORE PATTERNS TO THIS LIST, see set_sources_assignment_filter call
# below.
sources_assignment_filter = []
if (!is_posix) {
sources_assignment_filter += [
"*_posix.h",
"*_posix.cc",
"*_posix_unittest.h",
"*_posix_unittest.cc",
"*\bposix/*",
]
}
if (!is_win) {
sources_assignment_filter += [
"*_win.cc",
"*_win.h",
"*_win_unittest.cc",
"*\bwin/*",
"*.rc",
]
}
if (!is_mac) {
sources_assignment_filter += [
"*_mac.h",
"*_mac.cc",
"*_mac.mm",
"*_mac_unittest.h",
"*_mac_unittest.cc",
"*_mac_unittest.mm",
"*\bmac/*",
"*_cocoa.h",
"*_cocoa.cc",
"*_cocoa.mm",
"*_cocoa_unittest.h",
"*_cocoa_unittest.cc",
"*_cocoa_unittest.mm",
"*\bcocoa/*",
]
}
if (!is_ios) {
sources_assignment_filter += [
"*_ios.h",
"*_ios.cc",
"*_ios.mm",
"*_ios_unittest.h",
"*_ios_unittest.cc",
"*_ios_unittest.mm",
"*\bios/*",
]
}
if (!is_mac && !is_ios) {
sources_assignment_filter += [
"*.mm",
]
}
if (!is_linux) {
sources_assignment_filter += [
"*_linux.h",
"*_linux.cc",
"*_linux_unittest.h",
"*_linux_unittest.cc",
"*\blinux/*",
]
}
if (!is_android) {
sources_assignment_filter += [
"*_android.h",
"*_android.cc",
"*_android_unittest.h",
"*_android_unittest.cc",
"*\bandroid/*",
]
}
if (!is_chromeos) {
sources_assignment_filter += [
"*_chromeos.h",
"*_chromeos.cc",
"*_chromeos_unittest.h",
"*_chromeos_unittest.cc",
"*\bchromeos/*",
]
}
# DO NOT ADD MORE PATTERNS TO THIS LIST, see set_sources_assignment_filter call
# below.
# Actually save this list.
#
# These patterns are executed for every file in the source tree of every run.
# Therefore, adding more patterns slows down the build for everybody. We should
# only add automatic patterns for configurations affecting hundreds of files
# across many projects in the tree.
#
# Therefore, we only add rules to this list corresponding to platforms on the
# Chromium waterfall. This is not for non-officially-supported platforms
# (FreeBSD, etc.) toolkits, (X11, GTK, etc.), or features. For these cases,
# write a conditional in the target to remove the file(s) from the list when
# your platform/toolkit/feature doesn't apply.
set_sources_assignment_filter(sources_assignment_filter)
# =============================================================================
# BUILD OPTIONS
# =============================================================================
# These Sanitizers all imply using the Clang compiler. On Windows they either
# don't work or work differently.
if (!is_clang && (is_asan || is_lsan || is_tsan || is_msan)) {
is_clang = true
}
# =============================================================================
# TARGET DEFAULTS
# =============================================================================
#
# Set up the default configuration for every build target of the given type.
# The values configured here will be automatically set on the scope of the
# corresponding target. Target definitions can add or remove to the settings
# here as needed.
# Holds all configs used for making native executables and libraries, to avoid
# duplication in each target below.
_native_compiler_configs = [
"//build/config:feature_flags",
"//build/config/compiler:compiler",
"//build/config/compiler:compiler_arm_fpu",
"//build/config/compiler:chromium_code",
"//build/config/compiler:default_include_dirs",
"//build/config/compiler:default_warnings",
"//build/config/compiler:no_rtti",
"//build/config/compiler:runtime_library",
]
if (is_win) {
_native_compiler_configs += [
"//build/config/win:lean_and_mean",
"//build/config/win:nominmax",
"//build/config/win:sdk",
"//build/config/win:unicode",
"//build/config/win:winver",
]
}
if (is_posix) {
_native_compiler_configs += [
"//build/config/gcc:no_exceptions",
"//build/config/gcc:symbol_visibility_hidden",
]
}
if (is_linux) {
_native_compiler_configs += [ "//build/config/linux:sdk", ]
} else if (is_mac) {
_native_compiler_configs += [ "//build/config/mac:sdk", ]
} else if (is_ios) {
_native_compiler_configs += [ "//build/config/ios:sdk", ]
} else if (is_android) {
_native_compiler_configs += [ "//build/config/android:sdk", ]
}
if (is_clang) {
_native_compiler_configs += [
"//build/config/clang:find_bad_constructs",
"//build/config/clang:extra_warnings",
]
}
# Optimizations and debug checking.
if (is_debug) {
_native_compiler_configs += [ "//build/config:debug" ]
_default_optimization_config = "//build/config/compiler:no_optimize"
} else {
_native_compiler_configs += [ "//build/config:release" ]
_default_optimization_config = "//build/config/compiler:optimize"
}
_native_compiler_configs += [ _default_optimization_config ]
# If it wasn't manually set, set to an appropriate default.
if (symbol_level == -1) {
# Linux is slowed by having symbols as part of the target binary, whereas
# Mac and Windows have them separate, so in Release Linux, default them off.
if (is_debug || !is_linux) {
symbol_level = 2
} else {
symbol_level = 0
}
}
# Symbol setup.
if (symbol_level == 2) {
_default_symbols_config = "//build/config/compiler:symbols"
} else if (symbol_level == 1) {
_default_symbols_config = "//build/config/compiler:minimal_symbols"
} else if (symbol_level == 0) {
_default_symbols_config = "//build/config/compiler:no_symbols"
} else {
assert(false, "Bad value for symbol_level.")
}
_native_compiler_configs += [ _default_symbols_config ]
# Windows linker setup for EXEs and DLLs.
if (is_win) {
if (is_debug) {
_default_incremental_linking_config =
"//build/config/win:incremental_linking"
} else {
_default_incremental_linking_config =
"//build/config/win:no_incremental_linking"
}
_windows_linker_configs = [
_default_incremental_linking_config,
"//build/config/win:sdk_link",
"//build/config/win:common_linker_setup",
# Default to console-mode apps. Most of our targets are tests and such
# that shouldn't use the windows subsystem.
"//build/config/win:console",
]
}
# Executable defaults.
_executable_configs = _native_compiler_configs + [
"//build/config:default_libs",
]
if (is_win) {
_executable_configs += _windows_linker_configs
} else if (is_mac) {
_executable_configs += [
"//build/config/mac:mac_dynamic_flags",
"//build/config/mac:mac_executable_flags" ]
} else if (is_linux || is_android) {
_executable_configs += [ "//build/config/gcc:executable_ldconfig" ]
}
set_defaults("executable") {
configs = _executable_configs
}
# Static library defaults.
set_defaults("static_library") {
configs = _native_compiler_configs
}
# Shared library defaults (also for components in component mode).
_shared_library_configs = _native_compiler_configs + [
"//build/config:default_libs",
]
if (is_win) {
_shared_library_configs += _windows_linker_configs
} else if (is_mac) {
_shared_library_configs += [ "//build/config/mac:mac_dynamic_flags" ]
}
set_defaults("shared_library") {
configs = _shared_library_configs
}
if (is_component_build) {
set_defaults("component") {
configs = _shared_library_configs
}
}
# Source set defaults (also for components in non-component mode).
set_defaults("source_set") {
configs = _native_compiler_configs
}
if (!is_component_build) {
set_defaults("component") {
configs = _native_compiler_configs
}
}
# Test defaults.
set_defaults("test") {
if (is_android) {
configs = _shared_library_configs
} else {
configs = _executable_configs
}
}
# ==============================================================================
# TOOLCHAIN SETUP
# ==============================================================================
#
# Here we set the default toolchain, as well as the variable host_toolchain
# which will identify the toolchain corresponding to the local system when
# doing cross-compiles. When not cross-compiling, this will be the same as the
# default toolchain.
if (is_win) {
# TODO(brettw) name the toolchains the same as cpu_arch as with Linux below
# to eliminate these conditionals.
if (build_cpu_arch == "x64") {
host_toolchain = "//build/toolchain/win:64"
} else if (build_cpu_arch == "x86") {
host_toolchain = "//build/toolchain/win:32"
}
if (cpu_arch == "x64") {
set_default_toolchain("//build/toolchain/win:64")
} else if (cpu_arch == "x86") {
set_default_toolchain("//build/toolchain/win:32")
}
} else if (is_android) {
# Use clang for the x86/64 Linux host builds.
if (build_cpu_arch == "x86" || build_cpu_arch == "x64") {
host_toolchain = "//build/toolchain/linux:clang_$build_cpu_arch"
} else {
host_toolchain = "//build/toolchain/linux:$build_cpu_arch"
}
set_default_toolchain("//build/toolchain/android:$cpu_arch")
} else if (is_linux) {
if (is_clang) {
host_toolchain = "//build/toolchain/linux:clang_$build_cpu_arch"
set_default_toolchain("//build/toolchain/linux:clang_$cpu_arch")
} else {
host_toolchain = "//build/toolchain/linux:$build_cpu_arch"
set_default_toolchain("//build/toolchain/linux:$cpu_arch")
}
if (is_chromeos && cros_use_custom_toolchain) {
set_default_toolchain("//build/toolchain/cros:target")
}
} else if (is_mac) {
host_toolchain = "//build/toolchain/mac:clang"
set_default_toolchain(host_toolchain)
} else if (is_ios) {
host_toolchain = "//build/toolchain/mac:host_clang"
set_default_toolchain("//build/toolchain/mac:clang")
}
# ==============================================================================
# COMPONENT SETUP
# ==============================================================================
# TODO(brettw) erase this once the built-in "component" function is removed.
if (is_component_build) {
component_mode = "shared_library"
} else {
component_mode = "source_set"
}
template("component") {
if (is_component_build) {
shared_library(target_name) {
# Configs will always be defined since we set_defaults for a component
# above. We want to use those rather than whatever came with the nested
# shared/static library inside the component.
configs = [] # Prevent list overwriting warning.
configs = invoker.configs
# The sources assignment filter will have already been applied when the
# code was originally executed. We don't want to apply it again, since
# the original target may have override it for some assignments.
set_sources_assignment_filter([])
if (defined(invoker.all_dependent_configs)) { all_dependent_configs = invoker.all_dependent_configs }
if (defined(invoker.allow_circular_includes_from)) { allow_circular_includes_from = invoker.allow_circular_includes_from }
if (defined(invoker.cflags)) { cflags = invoker.cflags }
if (defined(invoker.cflags_c)) { cflags_c = invoker.cflags_c }
if (defined(invoker.cflags_cc)) { cflags_cc = invoker.cflags_cc }
if (defined(invoker.cflags_objc)) { cflags_objc = invoker.cflags_objc }
if (defined(invoker.cflags_objcc)) { cflags_objcc = invoker.cflags_objcc }
if (defined(invoker.check_includes)) { check_includes = invoker.check_includes }
if (defined(invoker.data)) { data = invoker.data }
if (defined(invoker.datadeps)) { datadeps = invoker.datadeps }
if (defined(invoker.defines)) { defines = invoker.defines }
if (defined(invoker.deps)) { deps = invoker.deps }
if (defined(invoker.direct_dependent_configs)) { direct_dependent_configs = invoker.direct_dependent_configs }
if (defined(invoker.forward_dependent_configs_from)) { forward_dependent_configs_from = invoker.forward_dependent_configs_from }
if (defined(invoker.include_dirs)) { include_dirs = invoker.include_dirs }
if (defined(invoker.ldflags)) { ldflags = invoker.ldflags }
if (defined(invoker.lib_dirs)) { lib_dirs = invoker.lib_dirs }
if (defined(invoker.libs)) { libs = invoker.libs }
if (defined(invoker.output_extension)) { output_extension = invoker.output_extension }
if (defined(invoker.output_name)) { output_name = invoker.output_name }
if (defined(invoker.public)) { public = invoker.public }
if (defined(invoker.public_configs)) { public_configs = invoker.public_configs }
if (defined(invoker.public_deps)) { public_deps = invoker.public_deps }
if (defined(invoker.sources)) { sources = invoker.sources }
if (defined(invoker.testonly)) { testonly = invoker.testonly }
if (defined(invoker.visibility)) { visibility = invoker.visibility }
}
} else {
source_set(target_name) {
# See above.
configs = [] # Prevent list overwriting warning.
configs = invoker.configs
# See above call.
set_sources_assignment_filter([])
if (defined(invoker.all_dependent_configs)) { all_dependent_configs = invoker.all_dependent_configs }
if (defined(invoker.allow_circular_includes_from)) { allow_circular_includes_from = invoker.allow_circular_includes_from }
if (defined(invoker.cflags)) { cflags = invoker.cflags }
if (defined(invoker.cflags_c)) { cflags_c = invoker.cflags_c }
if (defined(invoker.cflags_cc)) { cflags_cc = invoker.cflags_cc }
if (defined(invoker.cflags_objc)) { cflags_objc = invoker.cflags_objc }
if (defined(invoker.cflags_objcc)) { cflags_objcc = invoker.cflags_objcc }
if (defined(invoker.check_includes)) { check_includes = invoker.check_includes }
if (defined(invoker.data)) { data = invoker.data }
if (defined(invoker.datadeps)) { datadeps = invoker.datadeps }
if (defined(invoker.defines)) { defines = invoker.defines }
if (defined(invoker.deps)) { deps = invoker.deps }
if (defined(invoker.direct_dependent_configs)) { direct_dependent_configs = invoker.direct_dependent_configs }
if (defined(invoker.forward_dependent_configs_from)) { forward_dependent_configs_from = invoker.forward_dependent_configs_from }
if (defined(invoker.include_dirs)) { include_dirs = invoker.include_dirs }
if (defined(invoker.ldflags)) { ldflags = invoker.ldflags }
if (defined(invoker.lib_dirs)) { lib_dirs = invoker.lib_dirs }
if (defined(invoker.libs)) { libs = invoker.libs }
if (defined(invoker.output_extension)) { output_extension = invoker.output_extension }
if (defined(invoker.output_name)) { output_name = invoker.output_name }
if (defined(invoker.public)) { public = invoker.public }
if (defined(invoker.public_configs)) { public_configs = invoker.public_configs }
if (defined(invoker.public_deps)) { public_deps = invoker.public_deps }
if (defined(invoker.sources)) { sources = invoker.sources }
if (defined(invoker.testonly)) { testonly = invoker.testonly }
if (defined(invoker.visibility)) { visibility = invoker.visibility }
}
}
}
# ==============================================================================
# TEST SETUP
# ==============================================================================
# Define a test as an executable (or shared_library on Android) with the
# "testonly" flag set.
template("test") {
if (is_android) {
shared_library(target_name) {
# Configs will always be defined since we set_defaults for a component
# above. We want to use those rather than whatever came with the nested
# shared/static library inside the component.
configs = [] # Prevent list overwriting warning.
configs = invoker.configs
# See above call.
set_sources_assignment_filter([])
testonly = true
if (defined(invoker.all_dependent_configs)) { all_dependent_configs = invoker.all_dependent_configs }
if (defined(invoker.allow_circular_includes_from)) { allow_circular_includes_from = invoker.allow_circular_includes_from }
if (defined(invoker.cflags)) { cflags = invoker.cflags }
if (defined(invoker.cflags_c)) { cflags_c = invoker.cflags_c }
if (defined(invoker.cflags_cc)) { cflags_cc = invoker.cflags_cc }
if (defined(invoker.cflags_objc)) { cflags_objc = invoker.cflags_objc }
if (defined(invoker.cflags_objcc)) { cflags_objcc = invoker.cflags_objcc }
if (defined(invoker.check_includes)) { check_includes = invoker.check_includes }
if (defined(invoker.data)) { data = invoker.data }
if (defined(invoker.datadeps)) { datadeps = invoker.datadeps }
if (defined(invoker.defines)) { defines = invoker.defines }
if (defined(invoker.deps)) { deps = invoker.deps }
if (defined(invoker.direct_dependent_configs)) { direct_dependent_configs = invoker.direct_dependent_configs }
if (defined(invoker.forward_dependent_configs_from)) { forward_dependent_configs_from = invoker.forward_dependent_configs_from }
if (defined(invoker.include_dirs)) { include_dirs = invoker.include_dirs }
if (defined(invoker.ldflags)) { ldflags = invoker.ldflags }
if (defined(invoker.lib_dirs)) { lib_dirs = invoker.lib_dirs }
if (defined(invoker.libs)) { libs = invoker.libs }
if (defined(invoker.output_extension)) { output_extension = invoker.output_extension }
if (defined(invoker.output_name)) { output_name = invoker.output_name }
if (defined(invoker.public)) { public = invoker.public }
if (defined(invoker.public_configs)) { public_configs = invoker.public_configs }
if (defined(invoker.public_deps)) { public_deps = invoker.public_deps }
if (defined(invoker.sources)) { sources = invoker.sources }
if (defined(invoker.visibility)) { visibility = invoker.visibility }
}
} else {
executable(target_name) {
# See above.
configs = [] # Prevent list overwriting warning.
configs = invoker.configs
# See above call.
set_sources_assignment_filter([])
testonly = true
if (defined(invoker.all_dependent_configs)) { all_dependent_configs = invoker.all_dependent_configs }
if (defined(invoker.allow_circular_includes_from)) { allow_circular_includes_from = invoker.allow_circular_includes_from }
if (defined(invoker.cflags)) { cflags = invoker.cflags }
if (defined(invoker.cflags_c)) { cflags_c = invoker.cflags_c }
if (defined(invoker.cflags_cc)) { cflags_cc = invoker.cflags_cc }
if (defined(invoker.cflags_objc)) { cflags_objc = invoker.cflags_objc }
if (defined(invoker.cflags_objcc)) { cflags_objcc = invoker.cflags_objcc }
if (defined(invoker.check_includes)) { check_includes = invoker.check_includes }
if (defined(invoker.data)) { data = invoker.data }
if (defined(invoker.datadeps)) { datadeps = invoker.datadeps }
if (defined(invoker.defines)) { defines = invoker.defines }
if (defined(invoker.deps)) { deps = invoker.deps }
if (defined(invoker.direct_dependent_configs)) { direct_dependent_configs = invoker.direct_dependent_configs }
if (defined(invoker.forward_dependent_configs_from)) { forward_dependent_configs_from = invoker.forward_dependent_configs_from }
if (defined(invoker.include_dirs)) { include_dirs = invoker.include_dirs }
if (defined(invoker.ldflags)) { ldflags = invoker.ldflags }
if (defined(invoker.lib_dirs)) { lib_dirs = invoker.lib_dirs }
if (defined(invoker.libs)) { libs = invoker.libs }
if (defined(invoker.output_extension)) { output_extension = invoker.output_extension }
if (defined(invoker.output_name)) { output_name = invoker.output_name }
if (defined(invoker.public)) { public = invoker.public }
if (defined(invoker.public_configs)) { public_configs = invoker.public_configs }
if (defined(invoker.public_deps)) { public_deps = invoker.public_deps }
if (defined(invoker.sources)) { sources = invoker.sources }
if (defined(invoker.visibility)) { visibility = invoker.visibility }
}
}
}