Files
build_soong/cc/config/arm64_device.go
Stephen Crane b3c2154f2a Pass correct emulation string to gold
Gold recognizes a different set of emulation strings to specify targets
than the bfd linker accepts. Clang only passes bfd emulations to the
linker, so we need to override these with the versions accepted by gold
when using gold.

Gold normally picks up the correct target from the first ELF input file
if it cannot parse the emulation parameter. However when using LTO, all
objects may be bitcode files, which causes gold to rely on the passed
--oformat or -m parameter to determine the proper target. If gold cannot
parse the emulation string passed by clang, it fails to link.

Test: build LTO version of libc

Change-Id: I38e78bb912fd3cc5fb7b4a762284f50ddd4f3998
2017-08-15 12:54:12 -07:00

248 lines
6.5 KiB
Go

// Copyright 2015 Google Inc. All rights reserved.
//
// 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.
package config
import (
"fmt"
"strings"
"android/soong/android"
)
var (
arm64Cflags = []string{
"-fno-exceptions", // from build/core/combo/select.mk
"-Wno-multichar", // from build/core/combo/select.mk
"-fno-strict-aliasing",
"-fstack-protector-strong",
"-ffunction-sections",
"-fdata-sections",
"-funwind-tables",
"-Wa,--noexecstack",
"-Werror=format-security",
"-D_FORTIFY_SOURCE=2",
"-fno-short-enums",
"-no-canonical-prefixes",
"-fno-canonical-system-headers",
// Help catch common 32/64-bit errors.
"-Werror=pointer-to-int-cast",
"-Werror=int-to-pointer-cast",
"-Werror=implicit-function-declaration",
"-fno-strict-volatile-bitfields",
// TARGET_RELEASE_CFLAGS
"-DNDEBUG",
"-O2 -g",
"-Wstrict-aliasing=2",
"-fgcse-after-reload",
"-frerun-cse-after-loop",
"-frename-registers",
}
arm64Ldflags = []string{
"-Wl,-z,noexecstack",
"-Wl,-z,relro",
"-Wl,-z,now",
"-Wl,--build-id=md5",
"-Wl,--warn-shared-textrel",
"-Wl,--fatal-warnings",
"-Wl,-m,aarch64_elf64_le_vec",
"-Wl,--hash-style=gnu",
"-Wl,--fix-cortex-a53-843419",
"-fuse-ld=gold",
"-Wl,--icf=safe",
"-Wl,--no-undefined-version",
}
arm64Cppflags = []string{
"-fvisibility-inlines-hidden",
}
arm64CpuVariantCflags = map[string][]string{
"cortex-a53": []string{
"-mcpu=cortex-a53",
},
"kryo": []string{
// Use the cortex-a57 cpu since some compilers
// don't support a Kryo specific target yet.
"-mcpu=cortex-a57",
},
"exynos-m1": []string{
"-mcpu=exynos-m1",
},
"exynos-m2": []string{
"-mcpu=exynos-m2",
},
}
arm64ClangCpuVariantCflags = copyVariantFlags(arm64CpuVariantCflags)
)
const (
arm64GccVersion = "4.9"
)
func init() {
android.RegisterArchVariants(android.Arm64,
"armv8_a",
"cortex-a53",
"cortex-a73",
"kryo",
"exynos-m1",
"exynos-m2",
"denver64")
// Clang supports specific Kryo targeting
replaceFirst(arm64ClangCpuVariantCflags["kryo"], "-mcpu=cortex-a57", "-mcpu=kryo")
pctx.StaticVariable("arm64GccVersion", arm64GccVersion)
pctx.SourcePathVariable("Arm64GccRoot",
"prebuilts/gcc/${HostPrebuiltTag}/aarch64/aarch64-linux-android-${arm64GccVersion}")
pctx.StaticVariable("Arm64Cflags", strings.Join(arm64Cflags, " "))
pctx.StaticVariable("Arm64Ldflags", strings.Join(arm64Ldflags, " "))
pctx.StaticVariable("Arm64Cppflags", strings.Join(arm64Cppflags, " "))
pctx.StaticVariable("Arm64IncludeFlags", bionicHeaders("arm64", "arm64"))
pctx.StaticVariable("Arm64ClangCflags", strings.Join(ClangFilterUnknownCflags(arm64Cflags), " "))
pctx.StaticVariable("Arm64ClangLdflags", strings.Join(ClangFilterUnknownCflags(arm64Ldflags), " "))
pctx.StaticVariable("Arm64ClangCppflags", strings.Join(ClangFilterUnknownCflags(arm64Cppflags), " "))
pctx.StaticVariable("Arm64CortexA53Cflags",
strings.Join(arm64CpuVariantCflags["cortex-a53"], " "))
pctx.StaticVariable("Arm64ClangCortexA53Cflags",
strings.Join(arm64ClangCpuVariantCflags["cortex-a53"], " "))
pctx.StaticVariable("Arm64KryoCflags",
strings.Join(arm64CpuVariantCflags["kryo"], " "))
pctx.StaticVariable("Arm64ClangKryoCflags",
strings.Join(arm64ClangCpuVariantCflags["kryo"], " "))
pctx.StaticVariable("Arm64ExynosM1Cflags",
strings.Join(arm64CpuVariantCflags["cortex-a53"], " "))
pctx.StaticVariable("Arm64ClangExynosM1Cflags",
strings.Join(arm64ClangCpuVariantCflags["exynos-m1"], " "))
pctx.StaticVariable("Arm64ExynosM2Cflags",
strings.Join(arm64CpuVariantCflags["cortex-a53"], " "))
pctx.StaticVariable("Arm64ClangExynosM2Cflags",
strings.Join(arm64ClangCpuVariantCflags["exynos-m2"], " "))
}
var (
arm64CpuVariantCflagsVar = map[string]string{
"": "",
"cortex-a53": "${config.Arm64CortexA53Cflags}",
"cortex-a73": "${config.Arm64CortexA53Cflags}",
"kryo": "${config.Arm64KryoCflags}",
"exynos-m1": "${config.Arm64ExynosM1Cflags}",
"exynos-m2": "${config.Arm64ExynosM2Cflags}",
}
arm64ClangCpuVariantCflagsVar = map[string]string{
"": "",
"cortex-a53": "${config.Arm64ClangCortexA53Cflags}",
"cortex-a73": "${config.Arm64ClangCortexA53Cflags}",
"kryo": "${config.Arm64ClangKryoCflags}",
"exynos-m1": "${config.Arm64ClangExynosM1Cflags}",
"exynos-m2": "${config.Arm64ClangExynosM2Cflags}",
}
)
type toolchainArm64 struct {
toolchain64Bit
toolchainCflags string
toolchainClangCflags string
}
func (t *toolchainArm64) Name() string {
return "arm64"
}
func (t *toolchainArm64) GccRoot() string {
return "${config.Arm64GccRoot}"
}
func (t *toolchainArm64) GccTriple() string {
return "aarch64-linux-android"
}
func (t *toolchainArm64) GccVersion() string {
return arm64GccVersion
}
func (t *toolchainArm64) ToolchainCflags() string {
return t.toolchainCflags
}
func (t *toolchainArm64) Cflags() string {
return "${config.Arm64Cflags}"
}
func (t *toolchainArm64) Cppflags() string {
return "${config.Arm64Cppflags}"
}
func (t *toolchainArm64) Ldflags() string {
return "${config.Arm64Ldflags}"
}
func (t *toolchainArm64) IncludeFlags() string {
return "${config.Arm64IncludeFlags}"
}
func (t *toolchainArm64) ClangTriple() string {
return t.GccTriple()
}
func (t *toolchainArm64) ClangCflags() string {
return "${config.Arm64ClangCflags}"
}
func (t *toolchainArm64) ClangCppflags() string {
return "${config.Arm64ClangCppflags}"
}
func (t *toolchainArm64) ClangLdflags() string {
return "${config.Arm64Ldflags}"
}
func (t *toolchainArm64) ToolchainClangCflags() string {
return t.toolchainClangCflags
}
func (toolchainArm64) SanitizerRuntimeLibraryArch() string {
return "aarch64"
}
func arm64ToolchainFactory(arch android.Arch) Toolchain {
if arch.ArchVariant != "armv8-a" {
panic(fmt.Sprintf("Unknown ARM architecture version: %q", arch.ArchVariant))
}
return &toolchainArm64{
toolchainCflags: variantOrDefault(arm64CpuVariantCflagsVar, arch.CpuVariant),
toolchainClangCflags: variantOrDefault(arm64ClangCpuVariantCflagsVar, arch.CpuVariant),
}
}
func init() {
registerToolchainFactory(android.Android, android.Arm64, arm64ToolchainFactory)
}