Files
clang-p2996/libc/utils/LibcTableGenUtil/APIIndexer.cpp
Siva Chandra Reddy a32af8252f [libc] Add a tool called WrapperGen.
This tool will be used to generate C wrappers for the C++ LLVM libc
implementations. This change does not hook this tool up to anything yet.
However, it can be useful for cases where one does not want to run the
objcopy step (to insert the C symbol in the object file) but can make use
of LTO to eliminate the cost of the additional wrapper call. This can be
relevant for certain downstream platforms. If this tool can benefit other
libc platforms in general, then it can be integrated into the build system
with options to use or not use the wrappers. An example of such a
platform is CUDA.

Reviewed By: abrachet

Differential Revision: https://reviews.llvm.org/D84848
2020-07-30 16:07:26 -07:00

163 lines
6.0 KiB
C++

//===-- Implementation of APIIndexer class --------------------------------===//
//
// 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
//
//===----------------------------------------------------------------------===//
#include "APIIndexer.h"
#include "llvm/ADT/StringExtras.h"
#include "llvm/ADT/StringRef.h"
#include "llvm/TableGen/Error.h"
#include "llvm/TableGen/Record.h"
namespace llvm_libc {
static const char NamedTypeClassName[] = "NamedType";
static const char PtrTypeClassName[] = "PtrType";
static const char RestrictedPtrTypeClassName[] = "RestrictedPtrType";
static const char ConstTypeClassName[] = "ConstType";
static const char StructTypeClassName[] = "Struct";
static const char StandardSpecClassName[] = "StandardSpec";
static const char PublicAPIClassName[] = "PublicAPI";
static bool isa(llvm::Record *Def, llvm::Record *TypeClass) {
llvm::RecordRecTy *RecordType = Def->getType();
llvm::ArrayRef<llvm::Record *> Classes = RecordType->getClasses();
// We want exact types. That is, we don't want the classes listed in
// spec.td to be subclassed. Hence, we do not want the record |Def|
// to be of more than one class type..
if (Classes.size() != 1)
return false;
return Classes[0] == TypeClass;
}
bool APIIndexer::isaNamedType(llvm::Record *Def) {
return isa(Def, NamedTypeClass);
}
bool APIIndexer::isaStructType(llvm::Record *Def) {
return isa(Def, StructClass);
}
bool APIIndexer::isaPtrType(llvm::Record *Def) {
return isa(Def, PtrTypeClass);
}
bool APIIndexer::isaConstType(llvm::Record *Def) {
return isa(Def, ConstTypeClass);
}
bool APIIndexer::isaRestrictedPtrType(llvm::Record *Def) {
return isa(Def, RestrictedPtrTypeClass);
}
bool APIIndexer::isaStandardSpec(llvm::Record *Def) {
return isa(Def, StandardSpecClass);
}
bool APIIndexer::isaPublicAPI(llvm::Record *Def) {
return isa(Def, PublicAPIClass);
}
std::string APIIndexer::getTypeAsString(llvm::Record *TypeRecord) {
if (isaNamedType(TypeRecord) || isaStructType(TypeRecord)) {
return std::string(TypeRecord->getValueAsString("Name"));
} else if (isaPtrType(TypeRecord)) {
return getTypeAsString(TypeRecord->getValueAsDef("PointeeType")) + " *";
} else if (isaConstType(TypeRecord)) {
return std::string("const ") +
getTypeAsString(TypeRecord->getValueAsDef("UnqualifiedType"));
} else if (isaRestrictedPtrType(TypeRecord)) {
return getTypeAsString(TypeRecord->getValueAsDef("PointeeType")) +
" *__restrict";
} else {
llvm::PrintFatalError(TypeRecord->getLoc(), "Invalid type.\n");
}
}
void APIIndexer::indexStandardSpecDef(llvm::Record *StandardSpec) {
auto HeaderSpecList = StandardSpec->getValueAsListOfDefs("Headers");
for (llvm::Record *HeaderSpec : HeaderSpecList) {
llvm::StringRef Header = HeaderSpec->getValueAsString("Name");
if (!StdHeader.hasValue() || Header == StdHeader) {
PublicHeaders.emplace(Header);
auto MacroSpecList = HeaderSpec->getValueAsListOfDefs("Macros");
// TODO: Trigger a fatal error on duplicate specs.
for (llvm::Record *MacroSpec : MacroSpecList)
MacroSpecMap[std::string(MacroSpec->getValueAsString("Name"))] =
MacroSpec;
auto TypeSpecList = HeaderSpec->getValueAsListOfDefs("Types");
for (llvm::Record *TypeSpec : TypeSpecList)
TypeSpecMap[std::string(TypeSpec->getValueAsString("Name"))] = TypeSpec;
auto FunctionSpecList = HeaderSpec->getValueAsListOfDefs("Functions");
for (llvm::Record *FunctionSpec : FunctionSpecList) {
auto FunctionName = std::string(FunctionSpec->getValueAsString("Name"));
FunctionSpecMap[FunctionName] = FunctionSpec;
FunctionToHeaderMap[FunctionName] = std::string(Header);
}
auto EnumerationSpecList =
HeaderSpec->getValueAsListOfDefs("Enumerations");
for (llvm::Record *EnumerationSpec : EnumerationSpecList) {
EnumerationSpecMap[std::string(
EnumerationSpec->getValueAsString("Name"))] = EnumerationSpec;
}
}
}
}
void APIIndexer::indexPublicAPIDef(llvm::Record *PublicAPI) {
// While indexing the public API, we do not check if any of the entities
// requested is from an included standard. Such a check is done while
// generating the API.
auto MacroDefList = PublicAPI->getValueAsListOfDefs("Macros");
for (llvm::Record *MacroDef : MacroDefList)
MacroDefsMap[std::string(MacroDef->getValueAsString("Name"))] = MacroDef;
auto TypeDeclList = PublicAPI->getValueAsListOfDefs("TypeDeclarations");
for (llvm::Record *TypeDecl : TypeDeclList)
TypeDeclsMap[std::string(TypeDecl->getValueAsString("Name"))] = TypeDecl;
auto StructList = PublicAPI->getValueAsListOfStrings("Structs");
for (llvm::StringRef StructName : StructList)
Structs.insert(std::string(StructName));
auto FunctionList = PublicAPI->getValueAsListOfStrings("Functions");
for (llvm::StringRef FunctionName : FunctionList)
Functions.insert(std::string(FunctionName));
auto EnumerationList = PublicAPI->getValueAsListOfStrings("Enumerations");
for (llvm::StringRef EnumerationName : EnumerationList)
Enumerations.insert(std::string(EnumerationName));
}
void APIIndexer::index(llvm::RecordKeeper &Records) {
NamedTypeClass = Records.getClass(NamedTypeClassName);
PtrTypeClass = Records.getClass(PtrTypeClassName);
RestrictedPtrTypeClass = Records.getClass(RestrictedPtrTypeClassName);
StructClass = Records.getClass(StructTypeClassName);
ConstTypeClass = Records.getClass(ConstTypeClassName);
StandardSpecClass = Records.getClass(StandardSpecClassName);
PublicAPIClass = Records.getClass(PublicAPIClassName);
const auto &DefsMap = Records.getDefs();
for (auto &Pair : DefsMap) {
llvm::Record *Def = Pair.second.get();
if (isaStandardSpec(Def))
indexStandardSpecDef(Def);
if (isaPublicAPI(Def)) {
if (!StdHeader.hasValue() ||
Def->getValueAsString("HeaderName") == StdHeader)
indexPublicAPIDef(Def);
}
}
}
} // namespace llvm_libc