blob: 6d4d6e2298156b9105c319a1adc1f164429effa1 [file]
//===-- MSP430Subtarget.cpp - MSP430 Subtarget Information ----------------===//
//
// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
// See https://llvm.org/LICENSE.txt for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
//
//===----------------------------------------------------------------------===//
//
// This file implements the MSP430 specific subclass of TargetSubtargetInfo.
//
//===----------------------------------------------------------------------===//
#include "MSP430Subtarget.h"
#include "MSP430SelectionDAGInfo.h"
#include "llvm/MC/TargetRegistry.h"
using namespace llvm;
#define DEBUG_TYPE "msp430-subtarget"
static cl::opt<MSP430Subtarget::HWMultEnum>
HWMultModeOption("mhwmult", cl::Hidden,
cl::desc("Hardware multiplier use mode for MSP430"),
cl::init(MSP430Subtarget::NoHWMult),
cl::values(
clEnumValN(MSP430Subtarget::NoHWMult, "none",
"Do not use hardware multiplier"),
clEnumValN(MSP430Subtarget::HWMult16, "16bit",
"Use 16-bit hardware multiplier"),
clEnumValN(MSP430Subtarget::HWMult32, "32bit",
"Use 32-bit hardware multiplier"),
clEnumValN(MSP430Subtarget::HWMultF5, "f5series",
"Use F5 series hardware multiplier")));
#define GET_SUBTARGETINFO_TARGET_DESC
#define GET_SUBTARGETINFO_CTOR
#include "MSP430GenSubtargetInfo.inc"
void MSP430Subtarget::anchor() { }
MSP430Subtarget &
MSP430Subtarget::initializeSubtargetDependencies(StringRef CPU, StringRef FS) {
ExtendedInsts = false;
HWMultMode = NoHWMult;
StringRef CPUName = CPU;
if (CPUName.empty())
CPUName = "msp430";
ParseSubtargetFeatures(CPUName, /*TuneCPU*/ CPUName, FS);
if (HWMultModeOption != NoHWMult)
HWMultMode = HWMultModeOption;
return *this;
}
MSP430Subtarget::MSP430Subtarget(const Triple &TT, const std::string &CPU,
const std::string &FS, const TargetMachine &TM)
: MSP430GenSubtargetInfo(TT, CPU, /*TuneCPU*/ CPU, FS),
InstrInfo(initializeSubtargetDependencies(CPU, FS)), TLInfo(TM, *this),
FrameLowering(*this) {
TSInfo = std::make_unique<MSP430SelectionDAGInfo>();
}
MSP430Subtarget::~MSP430Subtarget() = default;
const SelectionDAGTargetInfo *MSP430Subtarget::getSelectionDAGInfo() const {
return TSInfo.get();
}
void MSP430Subtarget::initLibcallLoweringInfo(LibcallLoweringInfo &Info) const {
if (hasHWMult16()) {
const struct {
const RTLIB::Libcall Op;
const RTLIB::LibcallImpl Impl;
} LibraryCalls[] = {
// Integer Multiply - EABI Table 9
{RTLIB::MUL_I16, RTLIB::impl___mspabi_mpyi_hw},
{RTLIB::MUL_I32, RTLIB::impl___mspabi_mpyl_hw},
{RTLIB::MUL_I64, RTLIB::impl___mspabi_mpyll_hw},
// TODO The __mspabi_mpysl*_hw functions ARE implemented in libgcc
// TODO The __mspabi_mpyul*_hw functions ARE implemented in libgcc
};
for (const auto &LC : LibraryCalls) {
Info.setLibcallImpl(LC.Op, LC.Impl);
}
} else if (hasHWMult32()) {
const struct {
const RTLIB::Libcall Op;
const RTLIB::LibcallImpl Impl;
} LibraryCalls[] = {
// Integer Multiply - EABI Table 9
{RTLIB::MUL_I16, RTLIB::impl___mspabi_mpyi_hw},
{RTLIB::MUL_I32, RTLIB::impl___mspabi_mpyl_hw32},
{RTLIB::MUL_I64, RTLIB::impl___mspabi_mpyll_hw32},
// TODO The __mspabi_mpysl*_hw32 functions ARE implemented in libgcc
// TODO The __mspabi_mpyul*_hw32 functions ARE implemented in libgcc
};
for (const auto &LC : LibraryCalls) {
Info.setLibcallImpl(LC.Op, LC.Impl);
}
} else if (hasHWMultF5()) {
const struct {
const RTLIB::Libcall Op;
const RTLIB::LibcallImpl Impl;
} LibraryCalls[] = {
// Integer Multiply - EABI Table 9
{RTLIB::MUL_I16, RTLIB::impl___mspabi_mpyi_f5hw},
{RTLIB::MUL_I32, RTLIB::impl___mspabi_mpyl_f5hw},
{RTLIB::MUL_I64, RTLIB::impl___mspabi_mpyll_f5hw},
// TODO The __mspabi_mpysl*_f5hw functions ARE implemented in libgcc
// TODO The __mspabi_mpyul*_f5hw functions ARE implemented in libgcc
};
for (const auto &LC : LibraryCalls) {
Info.setLibcallImpl(LC.Op, LC.Impl);
}
} else { // NoHWMult
const struct {
const RTLIB::Libcall Op;
const RTLIB::LibcallImpl Impl;
} LibraryCalls[] = {
// Integer Multiply - EABI Table 9
{RTLIB::MUL_I16, RTLIB::impl___mspabi_mpyi},
{RTLIB::MUL_I32, RTLIB::impl___mspabi_mpyl},
{RTLIB::MUL_I64, RTLIB::impl___mspabi_mpyll},
// The __mspabi_mpysl* functions are NOT implemented in libgcc
// The __mspabi_mpyul* functions are NOT implemented in libgcc
};
for (const auto &LC : LibraryCalls) {
Info.setLibcallImpl(LC.Op, LC.Impl);
}
}
// The generic soft-float/integer helper routines (__addsf3, __divli, ...)
// exist in msp430 libgcc alongside the __mspabi_* variants, so both are
// available. The __mspabi_* variants are the one that should be used.
static const struct {
const RTLIB::Libcall Op;
const RTLIB::LibcallImpl Impl;
} EABISelected[] = {
// Floating point conversions - EABI Table 6.
{RTLIB::FPROUND_F64_F32, RTLIB::impl___mspabi_cvtdf},
{RTLIB::FPEXT_F32_F64, RTLIB::impl___mspabi_cvtfd},
{RTLIB::FPTOSINT_F64_I32, RTLIB::impl___mspabi_fixdli},
{RTLIB::FPTOSINT_F64_I64, RTLIB::impl___mspabi_fixdlli},
{RTLIB::FPTOUINT_F64_I32, RTLIB::impl___mspabi_fixdul},
{RTLIB::FPTOUINT_F64_I64, RTLIB::impl___mspabi_fixdull},
{RTLIB::FPTOSINT_F32_I32, RTLIB::impl___mspabi_fixfli},
{RTLIB::FPTOSINT_F32_I64, RTLIB::impl___mspabi_fixflli},
{RTLIB::FPTOUINT_F32_I32, RTLIB::impl___mspabi_fixful},
{RTLIB::FPTOUINT_F32_I64, RTLIB::impl___mspabi_fixfull},
{RTLIB::SINTTOFP_I32_F64, RTLIB::impl___mspabi_fltlid},
{RTLIB::SINTTOFP_I64_F64, RTLIB::impl___mspabi_fltllid},
{RTLIB::UINTTOFP_I32_F64, RTLIB::impl___mspabi_fltuld},
{RTLIB::UINTTOFP_I64_F64, RTLIB::impl___mspabi_fltulld},
{RTLIB::SINTTOFP_I32_F32, RTLIB::impl___mspabi_fltlif},
{RTLIB::SINTTOFP_I64_F32, RTLIB::impl___mspabi_fltllif},
{RTLIB::UINTTOFP_I32_F32, RTLIB::impl___mspabi_fltulf},
{RTLIB::UINTTOFP_I64_F32, RTLIB::impl___mspabi_fltullf},
// Floating point comparisons - EABI Table 7. A single three-way compare
// symbol serves every predicate.
{RTLIB::FCMP3_PRED_OEQ_F64, RTLIB::impl___mspabi_cmpd},
{RTLIB::FCMP3_PRED_UNE_F64, RTLIB::impl___mspabi_cmpd},
{RTLIB::FCMP3_PRED_OGE_F64, RTLIB::impl___mspabi_cmpd},
{RTLIB::FCMP3_PRED_OLT_F64, RTLIB::impl___mspabi_cmpd},
{RTLIB::FCMP3_PRED_OLE_F64, RTLIB::impl___mspabi_cmpd},
{RTLIB::FCMP3_PRED_OGT_F64, RTLIB::impl___mspabi_cmpd},
{RTLIB::FCMP3_PRED_OEQ_F32, RTLIB::impl___mspabi_cmpf},
{RTLIB::FCMP3_PRED_UNE_F32, RTLIB::impl___mspabi_cmpf},
{RTLIB::FCMP3_PRED_OGE_F32, RTLIB::impl___mspabi_cmpf},
{RTLIB::FCMP3_PRED_OLT_F32, RTLIB::impl___mspabi_cmpf},
{RTLIB::FCMP3_PRED_OLE_F32, RTLIB::impl___mspabi_cmpf},
{RTLIB::FCMP3_PRED_OGT_F32, RTLIB::impl___mspabi_cmpf},
// Floating point arithmetic - EABI Table 8.
{RTLIB::ADD_F64, RTLIB::impl___mspabi_addd},
{RTLIB::SUB_F64, RTLIB::impl___mspabi_subd},
{RTLIB::MUL_F64, RTLIB::impl___mspabi_mpyd},
{RTLIB::DIV_F64, RTLIB::impl___mspabi_divd},
{RTLIB::ADD_F32, RTLIB::impl___mspabi_addf},
{RTLIB::SUB_F32, RTLIB::impl___mspabi_subf},
{RTLIB::MUL_F32, RTLIB::impl___mspabi_mpyf},
{RTLIB::DIV_F32, RTLIB::impl___mspabi_divf},
// Universal Integer Operations - EABI Table 9.
{RTLIB::SDIV_I16, RTLIB::impl___mspabi_divi},
{RTLIB::SDIV_I32, RTLIB::impl___mspabi_divli},
{RTLIB::SDIV_I64, RTLIB::impl___mspabi_divlli},
{RTLIB::UDIV_I16, RTLIB::impl___mspabi_divu},
{RTLIB::UDIV_I32, RTLIB::impl___mspabi_divul},
{RTLIB::UDIV_I64, RTLIB::impl___mspabi_divull},
{RTLIB::SREM_I16, RTLIB::impl___mspabi_remi},
{RTLIB::SREM_I32, RTLIB::impl___mspabi_remli},
{RTLIB::SREM_I64, RTLIB::impl___mspabi_remlli},
{RTLIB::UREM_I16, RTLIB::impl___mspabi_remu},
{RTLIB::UREM_I32, RTLIB::impl___mspabi_remul},
{RTLIB::UREM_I64, RTLIB::impl___mspabi_remull},
// Bitwise Operations - EABI Table 10.
{RTLIB::SHL_I32, RTLIB::impl___mspabi_slll},
{RTLIB::SRA_I32, RTLIB::impl___mspabi_sral},
};
for (const auto &LC : EABISelected)
Info.setLibcallImpl(LC.Op, LC.Impl);
}