/*
* Copyright (C) 2011 The Android Open Source Project
*
* 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.
*/
#include "instruction_set_features.h"
#include "android-base/strings.h"
#include "base/casts.h"
#include "utils.h"
#include "arm/instruction_set_features_arm.h"
#include "arm64/instruction_set_features_arm64.h"
#include "mips/instruction_set_features_mips.h"
#include "mips64/instruction_set_features_mips64.h"
#include "x86/instruction_set_features_x86.h"
#include "x86_64/instruction_set_features_x86_64.h"
namespace art {
std::unique_ptr<const InstructionSetFeatures> InstructionSetFeatures::FromVariant(
InstructionSet isa, const std::string& variant, std::string* error_msg) {
std::unique_ptr<const InstructionSetFeatures> result;
switch (isa) {
case kArm:
case kThumb2:
result.reset(ArmInstructionSetFeatures::FromVariant(variant, error_msg).release());
break;
case kArm64:
result.reset(Arm64InstructionSetFeatures::FromVariant(variant, error_msg).release());
break;
case kMips:
result.reset(MipsInstructionSetFeatures::FromVariant(variant, error_msg).release());
break;
case kMips64:
result = Mips64InstructionSetFeatures::FromVariant(variant, error_msg);
break;
case kX86:
result.reset(X86InstructionSetFeatures::FromVariant(variant, error_msg).release());
break;
case kX86_64:
result.reset(X86_64InstructionSetFeatures::FromVariant(variant, error_msg).release());
break;
default:
UNIMPLEMENTED(FATAL) << isa;
UNREACHABLE();
}
CHECK_EQ(result == nullptr, error_msg->size() != 0);
return result;
}
std::unique_ptr<const InstructionSetFeatures> InstructionSetFeatures::FromBitmap(InstructionSet isa,
uint32_t bitmap) {
std::unique_ptr<const InstructionSetFeatures> result;
switch (isa) {
case kArm:
case kThumb2:
result.reset(ArmInstructionSetFeatures::FromBitmap(bitmap).release());
break;
case kArm64:
result.reset(Arm64InstructionSetFeatures::FromBitmap(bitmap).release());
break;
case kMips:
result.reset(MipsInstructionSetFeatures::FromBitmap(bitmap).release());
break;
case kMips64:
result = Mips64InstructionSetFeatures::FromBitmap(bitmap);
break;
case kX86:
result.reset(X86InstructionSetFeatures::FromBitmap(bitmap).release());
break;
case kX86_64:
result.reset(X86_64InstructionSetFeatures::FromBitmap(bitmap).release());
break;
default:
UNIMPLEMENTED(FATAL) << isa;
UNREACHABLE();
}
CHECK_EQ(bitmap, result->AsBitmap());
return result;
}
std::unique_ptr<const InstructionSetFeatures> InstructionSetFeatures::FromCppDefines() {
std::unique_ptr<const InstructionSetFeatures> result;
switch (kRuntimeISA) {
case kArm:
case kThumb2:
result.reset(ArmInstructionSetFeatures::FromCppDefines().release());
break;
case kArm64:
result.reset(Arm64InstructionSetFeatures::FromCppDefines().release());
break;
case kMips:
result.reset(MipsInstructionSetFeatures::FromCppDefines().release());
break;
case kMips64:
result = Mips64InstructionSetFeatures::FromCppDefines();
break;
case kX86:
result.reset(X86InstructionSetFeatures::FromCppDefines().release());
break;
case kX86_64:
result.reset(X86_64InstructionSetFeatures::FromCppDefines().release());
break;
default:
UNIMPLEMENTED(FATAL) << kRuntimeISA;
UNREACHABLE();
}
return result;
}
std::unique_ptr<const InstructionSetFeatures> InstructionSetFeatures::FromCpuInfo() {
std::unique_ptr<const InstructionSetFeatures> result;
switch (kRuntimeISA) {
case kArm:
case kThumb2:
result.reset(ArmInstructionSetFeatures::FromCpuInfo().release());
break;
case kArm64:
result.reset(Arm64InstructionSetFeatures::FromCpuInfo().release());
break;
case kMips:
result.reset(MipsInstructionSetFeatures::FromCpuInfo().release());
break;
case kMips64:
result = Mips64InstructionSetFeatures::FromCpuInfo();
break;
case kX86:
result.reset(X86InstructionSetFeatures::FromCpuInfo().release());
break;
case kX86_64:
result.reset(X86_64InstructionSetFeatures::FromCpuInfo().release());
break;
default:
UNIMPLEMENTED(FATAL) << kRuntimeISA;
UNREACHABLE();
}
return result;
}
std::unique_ptr<const InstructionSetFeatures> InstructionSetFeatures::FromHwcap() {
std::unique_ptr<const InstructionSetFeatures> result;
switch (kRuntimeISA) {
case kArm:
case kThumb2:
result.reset(ArmInstructionSetFeatures::FromHwcap().release());
break;
case kArm64:
result.reset(Arm64InstructionSetFeatures::FromHwcap().release());
break;
case kMips:
result.reset(MipsInstructionSetFeatures::FromHwcap().release());
break;
case kMips64:
result = Mips64InstructionSetFeatures::FromHwcap();
break;
case kX86:
result.reset(X86InstructionSetFeatures::FromHwcap().release());
break;
case kX86_64:
result.reset(X86_64InstructionSetFeatures::FromHwcap().release());
break;
default:
UNIMPLEMENTED(FATAL) << kRuntimeISA;
UNREACHABLE();
}
return result;
}
std::unique_ptr<const InstructionSetFeatures> InstructionSetFeatures::FromAssembly() {
std::unique_ptr<const InstructionSetFeatures> result;
switch (kRuntimeISA) {
case kArm:
case kThumb2:
result.reset(ArmInstructionSetFeatures::FromAssembly().release());
break;
case kArm64:
result.reset(Arm64InstructionSetFeatures::FromAssembly().release());
break;
case kMips:
result.reset(MipsInstructionSetFeatures::FromAssembly().release());
break;
case kMips64:
result = Mips64InstructionSetFeatures::FromAssembly();
break;
case kX86:
result.reset(X86InstructionSetFeatures::FromAssembly().release());
break;
case kX86_64:
result.reset(X86_64InstructionSetFeatures::FromAssembly().release());
break;
default:
UNIMPLEMENTED(FATAL) << kRuntimeISA;
UNREACHABLE();
}
return result;
}
std::unique_ptr<const InstructionSetFeatures> InstructionSetFeatures::AddFeaturesFromString(
const std::string& feature_list, std::string* error_msg) const {
if (feature_list.empty()) {
*error_msg = "No instruction set features specified";
return std::unique_ptr<const InstructionSetFeatures>();
}
std::vector<std::string> features;
Split(feature_list, ',', &features);
bool use_default = false; // Have we seen the 'default' feature?
bool first = false; // Is this first feature?
for (auto it = features.begin(); it != features.end();) {
if (use_default) {
*error_msg = "Unexpected instruction set features after 'default'";
return std::unique_ptr<const InstructionSetFeatures>();
}
std::string feature = android::base::Trim(*it);
bool erase = false;
if (feature == "default") {
if (!first) {
use_default = true;
erase = true;
} else {
*error_msg = "Unexpected instruction set features before 'default'";
return std::unique_ptr<const InstructionSetFeatures>();
}
}
if (!erase) {
++it;
} else {
it = features.erase(it);
}
first = true;
}
// Expectation: "default" is standalone, no other flags. But an empty features vector after
// processing can also come along if the handled flags are the only ones in the list. So
// logically, we check "default -> features.empty."
DCHECK(!use_default || features.empty());
return AddFeaturesFromSplitString(features, error_msg);
}
const ArmInstructionSetFeatures* InstructionSetFeatures::AsArmInstructionSetFeatures() const {
DCHECK_EQ(kArm, GetInstructionSet());
return down_cast<const ArmInstructionSetFeatures*>(this);
}
const Arm64InstructionSetFeatures* InstructionSetFeatures::AsArm64InstructionSetFeatures() const {
DCHECK_EQ(kArm64, GetInstructionSet());
return down_cast<const Arm64InstructionSetFeatures*>(this);
}
const MipsInstructionSetFeatures* InstructionSetFeatures::AsMipsInstructionSetFeatures() const {
DCHECK_EQ(kMips, GetInstructionSet());
return down_cast<const MipsInstructionSetFeatures*>(this);
}
const Mips64InstructionSetFeatures* InstructionSetFeatures::AsMips64InstructionSetFeatures() const {
DCHECK_EQ(kMips64, GetInstructionSet());
return down_cast<const Mips64InstructionSetFeatures*>(this);
}
const X86InstructionSetFeatures* InstructionSetFeatures::AsX86InstructionSetFeatures() const {
DCHECK(kX86 == GetInstructionSet() || kX86_64 == GetInstructionSet());
return down_cast<const X86InstructionSetFeatures*>(this);
}
const X86_64InstructionSetFeatures* InstructionSetFeatures::AsX86_64InstructionSetFeatures() const {
DCHECK_EQ(kX86_64, GetInstructionSet());
return down_cast<const X86_64InstructionSetFeatures*>(this);
}
bool InstructionSetFeatures::FindVariantInArray(const char* const variants[], size_t num_variants,
const std::string& variant) {
const char* const * begin = variants;
const char* const * end = begin + num_variants;
return std::find(begin, end, variant) != end;
}
std::ostream& operator<<(std::ostream& os, const InstructionSetFeatures& rhs) {
os << "ISA: " << rhs.GetInstructionSet() << " Feature string: " << rhs.GetFeatureString();
return os;
}
} // namespace art