blob: ab5c6926a7a5bcbae62d46c137f9b28922143e82 [file] [log] [blame]
// Copyright 2014 the V8 project authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "src/register-configuration.h"
#include "src/globals.h"
#include "src/macro-assembler.h"
namespace v8 {
namespace internal {
namespace {
#define REGISTER_COUNT(R) 1 +
static const int kMaxAllocatableGeneralRegisterCount =
ALLOCATABLE_GENERAL_REGISTERS(REGISTER_COUNT)0;
static const int kMaxAllocatableDoubleRegisterCount =
ALLOCATABLE_DOUBLE_REGISTERS(REGISTER_COUNT)0;
static const int kAllocatableGeneralCodes[] = {
#define REGISTER_CODE(R) Register::kCode_##R,
ALLOCATABLE_GENERAL_REGISTERS(REGISTER_CODE)};
#undef REGISTER_CODE
static const int kAllocatableDoubleCodes[] = {
#define REGISTER_CODE(R) DoubleRegister::kCode_##R,
ALLOCATABLE_DOUBLE_REGISTERS(REGISTER_CODE)};
#undef REGISTER_CODE
static const char* const kGeneralRegisterNames[] = {
#define REGISTER_NAME(R) #R,
GENERAL_REGISTERS(REGISTER_NAME)
#undef REGISTER_NAME
};
static const char* const kDoubleRegisterNames[] = {
#define REGISTER_NAME(R) #R,
DOUBLE_REGISTERS(REGISTER_NAME)
#undef REGISTER_NAME
};
STATIC_ASSERT(RegisterConfiguration::kMaxGeneralRegisters >=
Register::kNumRegisters);
STATIC_ASSERT(RegisterConfiguration::kMaxFPRegisters >=
DoubleRegister::kMaxNumRegisters);
class ArchDefaultRegisterConfiguration : public RegisterConfiguration {
public:
explicit ArchDefaultRegisterConfiguration(CompilerSelector compiler)
: RegisterConfiguration(Register::kNumRegisters,
DoubleRegister::kMaxNumRegisters,
#if V8_TARGET_ARCH_IA32
kMaxAllocatableGeneralRegisterCount,
kMaxAllocatableDoubleRegisterCount,
kMaxAllocatableDoubleRegisterCount,
#elif V8_TARGET_ARCH_X87
kMaxAllocatableGeneralRegisterCount,
compiler == TURBOFAN
? 1
: kMaxAllocatableDoubleRegisterCount,
compiler == TURBOFAN
? 1
: kMaxAllocatableDoubleRegisterCount,
#elif V8_TARGET_ARCH_X64
kMaxAllocatableGeneralRegisterCount,
kMaxAllocatableDoubleRegisterCount,
kMaxAllocatableDoubleRegisterCount,
#elif V8_TARGET_ARCH_ARM
FLAG_enable_embedded_constant_pool
? (kMaxAllocatableGeneralRegisterCount - 1)
: kMaxAllocatableGeneralRegisterCount,
CpuFeatures::IsSupported(VFP32DREGS)
? kMaxAllocatableDoubleRegisterCount
: (ALLOCATABLE_NO_VFP32_DOUBLE_REGISTERS(
REGISTER_COUNT)0),
ALLOCATABLE_NO_VFP32_DOUBLE_REGISTERS(
REGISTER_COUNT)0,
#elif V8_TARGET_ARCH_ARM64
kMaxAllocatableGeneralRegisterCount,
kMaxAllocatableDoubleRegisterCount,
kMaxAllocatableDoubleRegisterCount,
#elif V8_TARGET_ARCH_MIPS
kMaxAllocatableGeneralRegisterCount,
kMaxAllocatableDoubleRegisterCount,
kMaxAllocatableDoubleRegisterCount,
#elif V8_TARGET_ARCH_MIPS64
kMaxAllocatableGeneralRegisterCount,
kMaxAllocatableDoubleRegisterCount,
kMaxAllocatableDoubleRegisterCount,
#elif V8_TARGET_ARCH_PPC
kMaxAllocatableGeneralRegisterCount,
kMaxAllocatableDoubleRegisterCount,
kMaxAllocatableDoubleRegisterCount,
#elif V8_TARGET_ARCH_S390
kMaxAllocatableGeneralRegisterCount,
kMaxAllocatableDoubleRegisterCount,
kMaxAllocatableDoubleRegisterCount,
#else
#error Unsupported target architecture.
#endif
kAllocatableGeneralCodes, kAllocatableDoubleCodes,
kGeneralRegisterNames, kDoubleRegisterNames) {
}
};
template <RegisterConfiguration::CompilerSelector compiler>
struct RegisterConfigurationInitializer {
static void Construct(ArchDefaultRegisterConfiguration* config) {
new (config) ArchDefaultRegisterConfiguration(compiler);
}
};
static base::LazyInstance<
ArchDefaultRegisterConfiguration,
RegisterConfigurationInitializer<RegisterConfiguration::CRANKSHAFT>>::type
kDefaultRegisterConfigurationForCrankshaft = LAZY_INSTANCE_INITIALIZER;
static base::LazyInstance<
ArchDefaultRegisterConfiguration,
RegisterConfigurationInitializer<RegisterConfiguration::TURBOFAN>>::type
kDefaultRegisterConfigurationForTurboFan = LAZY_INSTANCE_INITIALIZER;
} // namespace
const RegisterConfiguration* RegisterConfiguration::ArchDefault(
CompilerSelector compiler) {
return compiler == TURBOFAN
? &kDefaultRegisterConfigurationForTurboFan.Get()
: &kDefaultRegisterConfigurationForCrankshaft.Get();
}
RegisterConfiguration::RegisterConfiguration(
int num_general_registers, int num_double_registers,
int num_allocatable_general_registers, int num_allocatable_double_registers,
int num_allocatable_aliased_double_registers,
const int* allocatable_general_codes, const int* allocatable_double_codes,
const char* const* general_register_names,
const char* const* double_register_names)
: num_general_registers_(num_general_registers),
num_double_registers_(num_double_registers),
num_allocatable_general_registers_(num_allocatable_general_registers),
num_allocatable_double_registers_(num_allocatable_double_registers),
num_allocatable_aliased_double_registers_(
num_allocatable_aliased_double_registers),
allocatable_general_codes_mask_(0),
allocatable_double_codes_mask_(0),
allocatable_general_codes_(allocatable_general_codes),
allocatable_double_codes_(allocatable_double_codes),
general_register_names_(general_register_names),
double_register_names_(double_register_names) {
DCHECK(num_general_registers_ <= RegisterConfiguration::kMaxGeneralRegisters);
DCHECK(num_double_registers_ <= RegisterConfiguration::kMaxFPRegisters);
for (int i = 0; i < num_allocatable_general_registers_; ++i) {
allocatable_general_codes_mask_ |= (1 << allocatable_general_codes_[i]);
}
for (int i = 0; i < num_allocatable_double_registers_; ++i) {
allocatable_double_codes_mask_ |= (1 << allocatable_double_codes_[i]);
}
}
#undef REGISTER_COUNT
} // namespace internal
} // namespace v8