540 lines
21 KiB
Go
540 lines
21 KiB
Go
// Copyright 2016 Google Inc. All rights reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package cc
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import (
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"android/soong/android"
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"android/soong/cc/config"
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"fmt"
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"strconv"
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"github.com/google/blueprint"
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"github.com/google/blueprint/proptools"
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)
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// This file contains the basic functionality for linking against static libraries and shared
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// libraries. Final linking into libraries or executables is handled in library.go, binary.go, etc.
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type BaseLinkerProperties struct {
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// list of modules whose object files should be linked into this module
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// in their entirety. For static library modules, all of the .o files from the intermediate
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// directory of the dependency will be linked into this modules .a file. For a shared library,
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// the dependency's .a file will be linked into this module using -Wl,--whole-archive.
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Whole_static_libs []string `android:"arch_variant,variant_prepend"`
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// list of modules that should be statically linked into this module.
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Static_libs []string `android:"arch_variant,variant_prepend"`
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// list of modules that should be dynamically linked into this module.
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Shared_libs []string `android:"arch_variant"`
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// list of modules that should only provide headers for this module.
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Header_libs []string `android:"arch_variant,variant_prepend"`
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// list of module-specific flags that will be used for all link steps
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Ldflags []string `android:"arch_variant"`
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// list of system libraries that will be dynamically linked to
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// shared library and executable modules. If unset, generally defaults to libc,
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// libm, and libdl. Set to [] to prevent linking against the defaults.
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System_shared_libs []string `android:"arch_variant"`
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// allow the module to contain undefined symbols. By default,
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// modules cannot contain undefined symbols that are not satisified by their immediate
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// dependencies. Set this flag to true to remove --no-undefined from the linker flags.
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// This flag should only be necessary for compiling low-level libraries like libc.
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Allow_undefined_symbols *bool `android:"arch_variant"`
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// don't link in libclang_rt.builtins-*.a
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No_libcrt *bool `android:"arch_variant"`
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// Use clang lld instead of gnu ld.
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Use_clang_lld *bool `android:"arch_variant"`
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// -l arguments to pass to linker for host-provided shared libraries
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Host_ldlibs []string `android:"arch_variant"`
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// list of shared libraries to re-export include directories from. Entries must be
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// present in shared_libs.
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Export_shared_lib_headers []string `android:"arch_variant"`
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// list of static libraries to re-export include directories from. Entries must be
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// present in static_libs.
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Export_static_lib_headers []string `android:"arch_variant"`
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// list of header libraries to re-export include directories from. Entries must be
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// present in header_libs.
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Export_header_lib_headers []string `android:"arch_variant"`
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// list of generated headers to re-export include directories from. Entries must be
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// present in generated_headers.
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Export_generated_headers []string `android:"arch_variant"`
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// don't link in crt_begin and crt_end. This flag should only be necessary for
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// compiling crt or libc.
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Nocrt *bool `android:"arch_variant"`
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// group static libraries. This can resolve missing symbols issues with interdependencies
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// between static libraries, but it is generally better to order them correctly instead.
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Group_static_libs *bool `android:"arch_variant"`
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// list of modules that should be installed with this module. This is similar to 'required'
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// but '.vendor' suffix will be appended to the module names if the shared libraries have
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// vendor variants and this module uses VNDK.
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Runtime_libs []string `android:"arch_variant"`
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Target struct {
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Vendor struct {
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// list of shared libs that only should be used to build the vendor
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// variant of the C/C++ module.
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Shared_libs []string
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// list of shared libs that should not be used to build the vendor variant
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// of the C/C++ module.
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Exclude_shared_libs []string
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// list of static libs that should not be used to build the vendor variant
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// of the C/C++ module.
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Exclude_static_libs []string
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// list of header libs that should not be used to build the vendor variant
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// of the C/C++ module.
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Exclude_header_libs []string
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// list of runtime libs that should not be installed along with the vendor
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// variant of the C/C++ module.
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Exclude_runtime_libs []string
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// version script for this vendor variant
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Version_script *string `android:"arch_variant"`
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}
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Recovery struct {
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// list of shared libs that only should be used to build the recovery
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// variant of the C/C++ module.
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Shared_libs []string
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// list of static libs that only should be used to build the recovery
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// variant of the C/C++ module.
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Static_libs []string
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// list of shared libs that should not be used to build
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// the recovery variant of the C/C++ module.
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Exclude_shared_libs []string
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// list of static libs that should not be used to build
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// the recovery variant of the C/C++ module.
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Exclude_static_libs []string
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// list of header libs that should not be used to build the recovery variant
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// of the C/C++ module.
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Exclude_header_libs []string
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}
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Ramdisk struct {
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// list of static libs that only should be used to build the recovery
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// variant of the C/C++ module.
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Static_libs []string
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// list of shared libs that should not be used to build
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// the ramdisk variant of the C/C++ module.
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Exclude_shared_libs []string
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// list of static libs that should not be used to build
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// the ramdisk variant of the C/C++ module.
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Exclude_static_libs []string
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}
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}
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// make android::build:GetBuildNumber() available containing the build ID.
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Use_version_lib *bool `android:"arch_variant"`
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// Generate compact dynamic relocation table, default true.
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Pack_relocations *bool `android:"arch_variant"`
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// local file name to pass to the linker as --version_script
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Version_script *string `android:"path,arch_variant"`
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// list of static libs that should not be used to build this module
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Exclude_static_libs []string
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}
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func NewBaseLinker(sanitize *sanitize) *baseLinker {
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return &baseLinker{sanitize: sanitize}
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}
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// baseLinker provides support for shared_libs, static_libs, and whole_static_libs properties
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type baseLinker struct {
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Properties BaseLinkerProperties
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dynamicProperties struct {
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RunPaths []string `blueprint:"mutated"`
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BuildStubs bool `blueprint:"mutated"`
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}
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sanitize *sanitize
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}
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func (linker *baseLinker) appendLdflags(flags []string) {
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linker.Properties.Ldflags = append(linker.Properties.Ldflags, flags...)
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}
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func (linker *baseLinker) linkerInit(ctx BaseModuleContext) {
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if ctx.toolchain().Is64Bit() {
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linker.dynamicProperties.RunPaths = append(linker.dynamicProperties.RunPaths, "../lib64", "lib64")
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} else {
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linker.dynamicProperties.RunPaths = append(linker.dynamicProperties.RunPaths, "../lib", "lib")
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}
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}
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func (linker *baseLinker) linkerProps() []interface{} {
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return []interface{}{&linker.Properties, &linker.dynamicProperties}
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}
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func (linker *baseLinker) linkerDeps(ctx DepsContext, deps Deps) Deps {
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deps.WholeStaticLibs = append(deps.WholeStaticLibs, linker.Properties.Whole_static_libs...)
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deps.HeaderLibs = append(deps.HeaderLibs, linker.Properties.Header_libs...)
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deps.StaticLibs = append(deps.StaticLibs, linker.Properties.Static_libs...)
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deps.SharedLibs = append(deps.SharedLibs, linker.Properties.Shared_libs...)
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deps.RuntimeLibs = append(deps.RuntimeLibs, linker.Properties.Runtime_libs...)
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deps.ReexportHeaderLibHeaders = append(deps.ReexportHeaderLibHeaders, linker.Properties.Export_header_lib_headers...)
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deps.ReexportStaticLibHeaders = append(deps.ReexportStaticLibHeaders, linker.Properties.Export_static_lib_headers...)
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deps.ReexportSharedLibHeaders = append(deps.ReexportSharedLibHeaders, linker.Properties.Export_shared_lib_headers...)
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deps.ReexportGeneratedHeaders = append(deps.ReexportGeneratedHeaders, linker.Properties.Export_generated_headers...)
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deps.WholeStaticLibs = removeListFromList(deps.WholeStaticLibs, linker.Properties.Exclude_static_libs)
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if Bool(linker.Properties.Use_version_lib) {
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deps.WholeStaticLibs = append(deps.WholeStaticLibs, "libbuildversion")
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}
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if ctx.useVndk() {
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deps.SharedLibs = append(deps.SharedLibs, linker.Properties.Target.Vendor.Shared_libs...)
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deps.SharedLibs = removeListFromList(deps.SharedLibs, linker.Properties.Target.Vendor.Exclude_shared_libs)
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deps.ReexportSharedLibHeaders = removeListFromList(deps.ReexportSharedLibHeaders, linker.Properties.Target.Vendor.Exclude_shared_libs)
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deps.StaticLibs = removeListFromList(deps.StaticLibs, linker.Properties.Target.Vendor.Exclude_static_libs)
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deps.HeaderLibs = removeListFromList(deps.HeaderLibs, linker.Properties.Target.Vendor.Exclude_header_libs)
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deps.ReexportStaticLibHeaders = removeListFromList(deps.ReexportStaticLibHeaders, linker.Properties.Target.Vendor.Exclude_static_libs)
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deps.WholeStaticLibs = removeListFromList(deps.WholeStaticLibs, linker.Properties.Target.Vendor.Exclude_static_libs)
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deps.RuntimeLibs = removeListFromList(deps.RuntimeLibs, linker.Properties.Target.Vendor.Exclude_runtime_libs)
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}
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if ctx.inRecovery() {
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deps.SharedLibs = append(deps.SharedLibs, linker.Properties.Target.Recovery.Shared_libs...)
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deps.SharedLibs = removeListFromList(deps.SharedLibs, linker.Properties.Target.Recovery.Exclude_shared_libs)
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deps.ReexportSharedLibHeaders = removeListFromList(deps.ReexportSharedLibHeaders, linker.Properties.Target.Recovery.Exclude_shared_libs)
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deps.StaticLibs = append(deps.StaticLibs, linker.Properties.Target.Recovery.Static_libs...)
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deps.StaticLibs = removeListFromList(deps.StaticLibs, linker.Properties.Target.Recovery.Exclude_static_libs)
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deps.HeaderLibs = removeListFromList(deps.HeaderLibs, linker.Properties.Target.Recovery.Exclude_header_libs)
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deps.ReexportHeaderLibHeaders = removeListFromList(deps.ReexportHeaderLibHeaders, linker.Properties.Target.Recovery.Exclude_header_libs)
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deps.ReexportStaticLibHeaders = removeListFromList(deps.ReexportStaticLibHeaders, linker.Properties.Target.Recovery.Exclude_static_libs)
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deps.WholeStaticLibs = removeListFromList(deps.WholeStaticLibs, linker.Properties.Target.Recovery.Exclude_static_libs)
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}
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if ctx.inRamdisk() {
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deps.SharedLibs = removeListFromList(deps.SharedLibs, linker.Properties.Target.Recovery.Exclude_shared_libs)
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deps.ReexportSharedLibHeaders = removeListFromList(deps.ReexportSharedLibHeaders, linker.Properties.Target.Recovery.Exclude_shared_libs)
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deps.StaticLibs = append(deps.StaticLibs, linker.Properties.Target.Recovery.Static_libs...)
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deps.StaticLibs = removeListFromList(deps.StaticLibs, linker.Properties.Target.Recovery.Exclude_static_libs)
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deps.ReexportStaticLibHeaders = removeListFromList(deps.ReexportStaticLibHeaders, linker.Properties.Target.Recovery.Exclude_static_libs)
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deps.WholeStaticLibs = removeListFromList(deps.WholeStaticLibs, linker.Properties.Target.Recovery.Exclude_static_libs)
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}
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if ctx.toolchain().Bionic() {
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// libclang_rt.builtins and libatomic have to be last on the command line
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if !Bool(linker.Properties.No_libcrt) {
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deps.LateStaticLibs = append(deps.LateStaticLibs, config.BuiltinsRuntimeLibrary(ctx.toolchain()))
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deps.LateStaticLibs = append(deps.LateStaticLibs, "libatomic")
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}
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systemSharedLibs := linker.Properties.System_shared_libs
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if systemSharedLibs == nil {
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// Provide a default system_shared_libs if it is unspecified. Note: If an
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// empty list [] is specified, it implies that the module declines the
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// default system_shared_libs.
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systemSharedLibs = []string{"libc", "libm", "libdl"}
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}
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if inList("libdl", deps.SharedLibs) {
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// If system_shared_libs has libc but not libdl, make sure shared_libs does not
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// have libdl to avoid loading libdl before libc.
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if inList("libc", systemSharedLibs) {
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if !inList("libdl", systemSharedLibs) {
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ctx.PropertyErrorf("shared_libs",
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"libdl must be in system_shared_libs, not shared_libs")
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}
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_, deps.SharedLibs = removeFromList("libdl", deps.SharedLibs)
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}
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}
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if inList("libc_scudo", deps.SharedLibs) {
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// libc_scudo is an alternate implementation of all
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// allocation functions (malloc, free), that uses
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// the scudo allocator instead of the default native
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// allocator. If this library is in the list, make
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// sure it's first so it properly overrides the
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// allocation functions of all other shared libraries.
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_, deps.SharedLibs = removeFromList("libc_scudo", deps.SharedLibs)
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deps.SharedLibs = append([]string{"libc_scudo"}, deps.SharedLibs...)
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}
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// If libc and libdl are both in system_shared_libs make sure libdl comes after libc
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// to avoid loading libdl before libc.
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if inList("libdl", systemSharedLibs) && inList("libc", systemSharedLibs) &&
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indexList("libdl", systemSharedLibs) < indexList("libc", systemSharedLibs) {
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ctx.PropertyErrorf("system_shared_libs", "libdl must be after libc")
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}
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deps.LateSharedLibs = append(deps.LateSharedLibs, systemSharedLibs...)
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}
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if ctx.Fuchsia() {
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if ctx.ModuleName() != "libbioniccompat" &&
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ctx.ModuleName() != "libcompiler_rt-extras" &&
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ctx.ModuleName() != "libcompiler_rt" {
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deps.StaticLibs = append(deps.StaticLibs, "libbioniccompat")
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}
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if ctx.ModuleName() != "libcompiler_rt" && ctx.ModuleName() != "libcompiler_rt-extras" {
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deps.LateStaticLibs = append(deps.LateStaticLibs, "libcompiler_rt")
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}
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}
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if ctx.Windows() {
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deps.LateStaticLibs = append(deps.LateStaticLibs, "libwinpthread")
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}
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return deps
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}
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func (linker *baseLinker) useClangLld(ctx ModuleContext) bool {
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// Clang lld is not ready for for Darwin host executables yet.
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// See https://lld.llvm.org/AtomLLD.html for status of lld for Mach-O.
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if ctx.Darwin() {
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return false
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}
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if linker.Properties.Use_clang_lld != nil {
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return Bool(linker.Properties.Use_clang_lld)
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}
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return true
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}
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// Check whether the SDK version is not older than the specific one
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func CheckSdkVersionAtLeast(ctx ModuleContext, SdkVersion int) bool {
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if ctx.sdkVersion() == "current" {
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return true
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}
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parsedSdkVersion, err := strconv.Atoi(ctx.sdkVersion())
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if err != nil {
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ctx.PropertyErrorf("sdk_version",
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"Invalid sdk_version value (must be int or current): %q",
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ctx.sdkVersion())
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}
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if parsedSdkVersion < SdkVersion {
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return false
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}
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return true
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}
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// ModuleContext extends BaseModuleContext
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// BaseModuleContext should know if LLD is used?
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func (linker *baseLinker) linkerFlags(ctx ModuleContext, flags Flags) Flags {
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toolchain := ctx.toolchain()
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hod := "Host"
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if ctx.Os().Class == android.Device {
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hod = "Device"
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}
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if linker.useClangLld(ctx) {
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flags.Global.LdFlags = append(flags.Global.LdFlags, fmt.Sprintf("${config.%sGlobalLldflags}", hod))
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if !BoolDefault(linker.Properties.Pack_relocations, true) {
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flags.Global.LdFlags = append(flags.Global.LdFlags, "-Wl,--pack-dyn-relocs=none")
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} else if ctx.Device() {
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// The SHT_RELR relocations is only supported by API level >= 28.
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// Do not turn this on if older version NDK is used.
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if !ctx.useSdk() || CheckSdkVersionAtLeast(ctx, 28) {
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flags.Global.LdFlags = append(flags.Global.LdFlags,
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"-Wl,--pack-dyn-relocs=android+relr",
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"-Wl,--use-android-relr-tags")
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} else if CheckSdkVersionAtLeast(ctx, 23) {
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flags.Global.LdFlags = append(flags.Global.LdFlags, "-Wl,--pack-dyn-relocs=android")
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}
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}
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} else {
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flags.Global.LdFlags = append(flags.Global.LdFlags, fmt.Sprintf("${config.%sGlobalLdflags}", hod))
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}
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if Bool(linker.Properties.Allow_undefined_symbols) {
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if ctx.Darwin() {
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// darwin defaults to treating undefined symbols as errors
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flags.Global.LdFlags = append(flags.Global.LdFlags, "-Wl,-undefined,dynamic_lookup")
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}
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} else if !ctx.Darwin() && !ctx.Windows() {
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flags.Global.LdFlags = append(flags.Global.LdFlags, "-Wl,--no-undefined")
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}
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if linker.useClangLld(ctx) {
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flags.Global.LdFlags = append(flags.Global.LdFlags, toolchain.ClangLldflags())
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} else {
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flags.Global.LdFlags = append(flags.Global.LdFlags, toolchain.ClangLdflags())
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}
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if !ctx.toolchain().Bionic() && !ctx.Fuchsia() {
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CheckBadHostLdlibs(ctx, "host_ldlibs", linker.Properties.Host_ldlibs)
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flags.Local.LdFlags = append(flags.Local.LdFlags, linker.Properties.Host_ldlibs...)
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if !ctx.Windows() {
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// Add -ldl, -lpthread, -lm and -lrt to host builds to match the default behavior of device
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// builds
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flags.Global.LdFlags = append(flags.Global.LdFlags,
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"-ldl",
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"-lpthread",
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"-lm",
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)
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if !ctx.Darwin() {
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flags.Global.LdFlags = append(flags.Global.LdFlags, "-lrt")
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}
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}
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}
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if ctx.Fuchsia() {
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flags.Global.LdFlags = append(flags.Global.LdFlags, "-lfdio", "-lzircon")
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}
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if ctx.toolchain().LibclangRuntimeLibraryArch() != "" {
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flags.Global.LdFlags = append(flags.Global.LdFlags, "-Wl,--exclude-libs="+config.BuiltinsRuntimeLibrary(ctx.toolchain())+".a")
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}
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CheckBadLinkerFlags(ctx, "ldflags", linker.Properties.Ldflags)
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flags.Local.LdFlags = append(flags.Local.LdFlags, proptools.NinjaAndShellEscapeList(linker.Properties.Ldflags)...)
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if ctx.Host() && !ctx.Windows() {
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rpath_prefix := `\$$ORIGIN/`
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if ctx.Darwin() {
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rpath_prefix = "@loader_path/"
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}
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if !ctx.static() {
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for _, rpath := range linker.dynamicProperties.RunPaths {
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flags.Global.LdFlags = append(flags.Global.LdFlags, "-Wl,-rpath,"+rpath_prefix+rpath)
|
|
}
|
|
}
|
|
}
|
|
|
|
if ctx.useSdk() && (ctx.Arch().ArchType != android.Mips && ctx.Arch().ArchType != android.Mips64) {
|
|
// The bionic linker now has support gnu style hashes (which are much faster!), but shipping
|
|
// to older devices requires the old style hash. Fortunately, we can build with both and
|
|
// it'll work anywhere.
|
|
// This is not currently supported on MIPS architectures.
|
|
flags.Global.LdFlags = append(flags.Global.LdFlags, "-Wl,--hash-style=both")
|
|
}
|
|
|
|
flags.Global.LdFlags = append(flags.Global.LdFlags, toolchain.ToolchainClangLdflags())
|
|
|
|
if Bool(linker.Properties.Group_static_libs) {
|
|
flags.GroupStaticLibs = true
|
|
}
|
|
|
|
// Version_script is not needed when linking stubs lib where the version
|
|
// script is created from the symbol map file.
|
|
if !linker.dynamicProperties.BuildStubs {
|
|
versionScript := ctx.ExpandOptionalSource(
|
|
linker.Properties.Version_script, "version_script")
|
|
|
|
if ctx.useVndk() && linker.Properties.Target.Vendor.Version_script != nil {
|
|
versionScript = ctx.ExpandOptionalSource(
|
|
linker.Properties.Target.Vendor.Version_script,
|
|
"target.vendor.version_script")
|
|
}
|
|
|
|
if versionScript.Valid() {
|
|
if ctx.Darwin() {
|
|
ctx.PropertyErrorf("version_script", "Not supported on Darwin")
|
|
} else {
|
|
flags.Local.LdFlags = append(flags.Local.LdFlags,
|
|
"-Wl,--version-script,"+versionScript.String())
|
|
flags.LdFlagsDeps = append(flags.LdFlagsDeps, versionScript.Path())
|
|
|
|
if linker.sanitize.isSanitizerEnabled(cfi) {
|
|
cfiExportsMap := android.PathForSource(ctx, cfiExportsMapPath)
|
|
flags.Local.LdFlags = append(flags.Local.LdFlags,
|
|
"-Wl,--version-script,"+cfiExportsMap.String())
|
|
flags.LdFlagsDeps = append(flags.LdFlagsDeps, cfiExportsMap)
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
return flags
|
|
}
|
|
|
|
func (linker *baseLinker) link(ctx ModuleContext,
|
|
flags Flags, deps PathDeps, objs Objects) android.Path {
|
|
panic(fmt.Errorf("baseLinker doesn't know how to link"))
|
|
}
|
|
|
|
// Injecting version symbols
|
|
// Some host modules want a version number, but we don't want to rebuild it every time. Optionally add a step
|
|
// after linking that injects a constant placeholder with the current version number.
|
|
|
|
func init() {
|
|
pctx.HostBinToolVariable("symbolInjectCmd", "symbol_inject")
|
|
}
|
|
|
|
var injectVersionSymbol = pctx.AndroidStaticRule("injectVersionSymbol",
|
|
blueprint.RuleParams{
|
|
Command: "$symbolInjectCmd -i $in -o $out -s soong_build_number " +
|
|
"-from 'SOONG BUILD NUMBER PLACEHOLDER' -v $buildNumberFromFile",
|
|
CommandDeps: []string{"$symbolInjectCmd"},
|
|
},
|
|
"buildNumberFromFile")
|
|
|
|
func (linker *baseLinker) injectVersionSymbol(ctx ModuleContext, in android.Path, out android.WritablePath) {
|
|
ctx.Build(pctx, android.BuildParams{
|
|
Rule: injectVersionSymbol,
|
|
Description: "inject version symbol",
|
|
Input: in,
|
|
Output: out,
|
|
Args: map[string]string{
|
|
"buildNumberFromFile": proptools.NinjaEscape(ctx.Config().BuildNumberFromFile()),
|
|
},
|
|
})
|
|
}
|
|
|
|
// Rule to generate .bss symbol ordering file.
|
|
|
|
var (
|
|
_ = pctx.SourcePathVariable("genSortedBssSymbolsPath", "build/soong/scripts/gen_sorted_bss_symbols.sh")
|
|
gen_sorted_bss_symbols = pctx.AndroidStaticRule("gen_sorted_bss_symbols",
|
|
blueprint.RuleParams{
|
|
Command: "CROSS_COMPILE=$crossCompile $genSortedBssSymbolsPath ${in} ${out}",
|
|
CommandDeps: []string{"$genSortedBssSymbolsPath", "${crossCompile}nm"},
|
|
},
|
|
"crossCompile")
|
|
)
|
|
|
|
func (linker *baseLinker) sortBssSymbolsBySize(ctx ModuleContext, in android.Path, symbolOrderingFile android.ModuleOutPath, flags builderFlags) string {
|
|
crossCompile := gccCmd(flags.toolchain, "")
|
|
ctx.Build(pctx, android.BuildParams{
|
|
Rule: gen_sorted_bss_symbols,
|
|
Description: "generate bss symbol order " + symbolOrderingFile.Base(),
|
|
Output: symbolOrderingFile,
|
|
Input: in,
|
|
Args: map[string]string{
|
|
"crossCompile": crossCompile,
|
|
},
|
|
})
|
|
return "-Wl,--symbol-ordering-file," + symbolOrderingFile.String()
|
|
}
|