mirror of
https://github.com/revng/revng
synced 2026-06-21 14:07:57 +00:00
145 lines
4.3 KiB
C++
145 lines
4.3 KiB
C++
//
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// This file is distributed under the MIT License. See LICENSE.md for details.
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//
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#include "llvm/IR/Constants.h"
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#include "llvm/IR/Module.h"
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#include "llvm/Support/Casting.h"
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#include "llvm/Support/raw_ostream.h"
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#include "revng/Support/IRBuilder.h"
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#include "revng/Support/IRHelpers.h"
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#include "revng/Support/MetaAddress.h"
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using namespace llvm;
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Constant *MetaAddress::toValue(llvm::Module *M) const {
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return getUniqueString(M, toString());
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}
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MetaAddress MetaAddress::fromValue(Value *V) {
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return MetaAddress::fromString(extractFromConstantStringPtr(V));
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}
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Instruction *MetaAddress::composeIntegerPC(revng::IRBuilder &B,
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Value *AddressValue,
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Value *EpochValue,
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Value *AddressSpaceValue,
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Value *TypeValue) {
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llvm::Type *Int128 = B.getInt128Ty();
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auto Load128 = [&B, Int128](Value *V) { return B.CreateZExt(V, Int128); };
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auto *Epoch = B.CreateShl(Load128(EpochValue), 64);
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auto *AddressSpace = B.CreateShl(Load128(AddressSpaceValue), 64 + 32);
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auto *Type = B.CreateShl(Load128(TypeValue), 64 + 32 + 16);
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auto *Composed = B.CreateAdd(Load128(AddressValue),
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B.CreateAdd(Epoch,
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B.CreateAdd(AddressSpace, Type)));
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return cast<Instruction>(Composed);
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}
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MetaAddress MetaAddress::decomposeIntegerPC(ConstantInt *Value) {
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return decomposeIntegerPC(Value->getValue());
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}
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MetaAddress MetaAddress::decomposeIntegerPC(const APInt &Value) {
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revng_assert(Value.getBitWidth() == 128);
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uint64_t Lower = (Value & UINT64_MAX).getLimitedValue();
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uint64_t Upper = Value.lshr(64).getLimitedValue();
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MetaAddress Result;
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Result.Address = Lower;
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Result.Epoch = Upper & 0xFFFFFFFF;
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Result.AddressSpace = (Upper >> 32) & 0xFFFF;
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Result.Type = static_cast<MetaAddressType::Values>(Upper >> (32 + 16));
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Result.validate();
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return Result;
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}
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static std::string toStringImpl(const MetaAddress &Address,
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model::Architecture::Values Architecture,
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llvm::StringRef Separator) {
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if (Address.isInvalid())
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return Separator.str() += "Invalid";
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bool ShouldPrintTheType = true;
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if (Architecture != model::Architecture::Invalid) {
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// Assert if `Arch` is not supported.
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static_cast<void>(MetaAddressType::genericFromArch(Architecture));
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if (Address.arch() != model::Architecture::Invalid
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and Address.arch() == Architecture)
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ShouldPrintTheType = false;
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}
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std::string Result;
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{
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raw_string_ostream Stream(Result);
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Stream << "0x" << Twine::utohexstr(Address.address());
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if (ShouldPrintTheType)
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Stream << Separator << MetaAddressType::toString(Address.type());
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if (not Address.isDefaultEpoch())
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Stream << Separator << Address.epoch();
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if (not Address.isDefaultAddressSpace())
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Stream << Separator << Address.addressSpace();
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}
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return Result;
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}
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std::string
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MetaAddress::toString(model::Architecture::Values Architecture) const {
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return toStringImpl(*this, Architecture, Separator);
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}
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std::string
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MetaAddress::toIdentifier(model::Architecture::Values Architecture) const {
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return toStringImpl(*this, Architecture, "_");
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}
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MetaAddress MetaAddress::fromString(StringRef Text) {
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revng_assert(Text.size() > Separator.size());
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if (Text.take_front(Separator.size()) == Separator)
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if (Text.drop_front(Separator.size()) == "Invalid")
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return MetaAddress::invalid();
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MetaAddress Result;
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SmallVector<StringRef, 4> Parts;
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Text.split(Parts, Separator);
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if (Parts.size() < 2 or Parts.size() > 4)
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return MetaAddress::invalid();
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bool Error;
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uint64_t Value;
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Error = Parts[0].getAsInteger(0, Result.Address);
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if (Error)
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return MetaAddress::invalid();
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Result.Type = MetaAddressType::fromString(Parts[1]);
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if (Result.type() == MetaAddressType::Invalid)
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return MetaAddress::invalid();
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Result.Epoch = 0;
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if (Parts.size() >= 3 and Parts[2].size() > 0) {
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Error = Parts[2].getAsInteger(0, Result.Epoch);
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if (Error)
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return MetaAddress::invalid();
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}
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Result.AddressSpace = 0;
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if (Parts.size() == 4 and Parts[3].size() > 0) {
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Error = Parts[3].getAsInteger(0, Result.AddressSpace);
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if (Error)
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return MetaAddress::invalid();
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}
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Result.validate();
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return Result;
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}
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