
This patch is the third step to extend the current multilib system to support the selection of library variants which do not correspond to existing command-line options. Proposal can be found in https://discourse.llvm.org/t/rfc-multilib-custom-flags/81058 The multilib mechanism supports libraries that target code generation or language options such as --target, -mcpu, -mfpu, -mbranch-protection. However, some library variants are particular to features that do not correspond to any command-line options. Examples include variants for multithreading and semihosting. This work introduces a way to instruct the multilib system to consider these features in library selection. This particular patch is comprised of the core processing of these flags. - Custom flags in the command-line are read and forwarded to the multilib system. If multiple flag values are present for the same flag declaration, the last one wins. Default flag values are inserted for flag declarations for which no value was given. - Feed `MacroDefines` back into the driver. Each item `<string>` in the `MacroDefines` list is formatted as `-D<string>`. Library variants should list their requirement on one or more custom flags like they do for any other flag. The new command-line option is passed as-is to the multilib system, therefore it should be listed in the format `-fmultilib-flag=<str>`. Moreover, a variant that does not specify a requirement on any particular flag can be matched against any value of that flag. If the user specifies `-fmultilib-flag=<name>` with a name that is invalid, but close enough to any valid flag value name in terms of edit distance, a suggesting error is shown: ``` error: unsupported option '-fmultilib-flag=invalidname'; did you mean '-fmultilib-flag=validname'? ``` The candidate with the smallest edit distance is chosen for the suggestion, up to a certain maximum value (implementation detail), after which a non-suggesting error is shown instead: ``` error: unsupported option '-fmultilib-flag=invalidname' ```
564 lines
20 KiB
C++
564 lines
20 KiB
C++
//===- Multilib.cpp - Multilib Implementation -----------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "clang/Driver/Multilib.h"
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#include "clang/Basic/LLVM.h"
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#include "clang/Driver/Driver.h"
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#include "llvm/ADT/DenseSet.h"
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#include "llvm/ADT/SmallSet.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/Support/Compiler.h"
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#include "llvm/Support/ErrorHandling.h"
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#include "llvm/Support/Regex.h"
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#include "llvm/Support/VersionTuple.h"
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#include "llvm/Support/YAMLParser.h"
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#include "llvm/Support/YAMLTraits.h"
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#include "llvm/Support/raw_ostream.h"
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#include <algorithm>
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#include <cassert>
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#include <string>
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using namespace clang;
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using namespace driver;
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using namespace llvm::sys;
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Multilib::Multilib(StringRef GCCSuffix, StringRef OSSuffix,
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StringRef IncludeSuffix, const flags_list &Flags,
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StringRef ExclusiveGroup, std::optional<StringRef> Error)
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: GCCSuffix(GCCSuffix), OSSuffix(OSSuffix), IncludeSuffix(IncludeSuffix),
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Flags(Flags), ExclusiveGroup(ExclusiveGroup), Error(Error) {
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assert(GCCSuffix.empty() ||
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(StringRef(GCCSuffix).front() == '/' && GCCSuffix.size() > 1));
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assert(OSSuffix.empty() ||
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(StringRef(OSSuffix).front() == '/' && OSSuffix.size() > 1));
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assert(IncludeSuffix.empty() ||
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(StringRef(IncludeSuffix).front() == '/' && IncludeSuffix.size() > 1));
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}
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LLVM_DUMP_METHOD void Multilib::dump() const {
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print(llvm::errs());
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}
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void Multilib::print(raw_ostream &OS) const {
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if (GCCSuffix.empty())
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OS << ".";
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else {
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OS << StringRef(GCCSuffix).drop_front();
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}
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OS << ";";
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for (StringRef Flag : Flags) {
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if (Flag.front() == '-')
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OS << "@" << Flag.substr(1);
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}
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}
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bool Multilib::operator==(const Multilib &Other) const {
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// Check whether the flags sets match
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// allowing for the match to be order invariant
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llvm::StringSet<> MyFlags;
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for (const auto &Flag : Flags)
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MyFlags.insert(Flag);
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for (const auto &Flag : Other.Flags)
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if (!MyFlags.contains(Flag))
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return false;
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if (osSuffix() != Other.osSuffix())
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return false;
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if (gccSuffix() != Other.gccSuffix())
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return false;
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if (includeSuffix() != Other.includeSuffix())
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return false;
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return true;
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}
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raw_ostream &clang::driver::operator<<(raw_ostream &OS, const Multilib &M) {
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M.print(OS);
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return OS;
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}
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MultilibSet &MultilibSet::FilterOut(FilterCallback F) {
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llvm::erase_if(Multilibs, F);
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return *this;
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}
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void MultilibSet::push_back(const Multilib &M) { Multilibs.push_back(M); }
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static void DiagnoseUnclaimedMultilibCustomFlags(
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const Driver &D, const SmallVector<StringRef> &UnclaimedCustomFlagValues,
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const SmallVector<custom_flag::Declaration> &CustomFlagDecls) {
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struct EditDistanceInfo {
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StringRef FlagValue;
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unsigned EditDistance;
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};
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const unsigned MaxEditDistance = 5;
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for (StringRef Unclaimed : UnclaimedCustomFlagValues) {
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std::optional<EditDistanceInfo> BestCandidate;
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for (const auto &Decl : CustomFlagDecls) {
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for (const auto &Value : Decl.ValueList) {
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const std::string &FlagValueName = Value.Name;
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unsigned EditDistance =
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Unclaimed.edit_distance(FlagValueName, /*AllowReplacements=*/true,
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/*MaxEditDistance=*/MaxEditDistance);
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if (!BestCandidate || (EditDistance <= MaxEditDistance &&
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EditDistance < BestCandidate->EditDistance)) {
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BestCandidate = {FlagValueName, EditDistance};
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}
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}
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}
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if (!BestCandidate)
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D.Diag(clang::diag::err_drv_unsupported_opt)
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<< (custom_flag::Prefix + Unclaimed).str();
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else
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D.Diag(clang::diag::err_drv_unsupported_opt_with_suggestion)
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<< (custom_flag::Prefix + Unclaimed).str()
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<< (custom_flag::Prefix + BestCandidate->FlagValue).str();
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}
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}
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namespace clang::driver::custom_flag {
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// Map implemented using linear searches as the expected size is too small for
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// the overhead of a search tree or a hash table.
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class ValueNameToDetailMap {
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SmallVector<std::pair<StringRef, const ValueDetail *>> Mapping;
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public:
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template <typename It>
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ValueNameToDetailMap(It FlagDeclsBegin, It FlagDeclsEnd) {
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for (auto DeclIt = FlagDeclsBegin; DeclIt != FlagDeclsEnd; ++DeclIt) {
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const Declaration &Decl = *DeclIt;
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for (const auto &Value : Decl.ValueList)
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Mapping.emplace_back(Value.Name, &Value);
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}
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}
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const ValueDetail *get(StringRef Key) const {
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auto Iter = llvm::find_if(
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Mapping, [&](const auto &Pair) { return Pair.first == Key; });
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return Iter != Mapping.end() ? Iter->second : nullptr;
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}
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};
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} // namespace clang::driver::custom_flag
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std::pair<Multilib::flags_list, SmallVector<StringRef>>
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MultilibSet::processCustomFlags(const Driver &D,
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const Multilib::flags_list &Flags) const {
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Multilib::flags_list Result;
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SmallVector<StringRef> MacroDefines;
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// Custom flag values detected in the flags list
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SmallVector<const custom_flag::ValueDetail *> ClaimedCustomFlagValues;
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// Arguments to -fmultilib-flag=<arg> that don't correspond to any valid
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// custom flag value. An error will be printed out for each of these.
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SmallVector<StringRef> UnclaimedCustomFlagValueStrs;
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const auto ValueNameToValueDetail = custom_flag::ValueNameToDetailMap(
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CustomFlagDecls.begin(), CustomFlagDecls.end());
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for (StringRef Flag : Flags) {
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if (!Flag.starts_with(custom_flag::Prefix)) {
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Result.push_back(Flag.str());
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continue;
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}
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StringRef CustomFlagValueStr = Flag.substr(custom_flag::Prefix.size());
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const custom_flag::ValueDetail *Detail =
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ValueNameToValueDetail.get(CustomFlagValueStr);
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if (Detail)
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ClaimedCustomFlagValues.push_back(Detail);
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else
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UnclaimedCustomFlagValueStrs.push_back(CustomFlagValueStr);
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}
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// Set of custom flag declarations for which a value was passed in the flags
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// list. This is used to, firstly, detect multiple values for the same flag
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// declaration (in this case, the last one wins), and secondly, to detect
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// which declarations had no value passed in (in this case, the default value
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// is selected).
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llvm::SmallPtrSet<custom_flag::Declaration *, 32> TriggeredCustomFlagDecls;
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// Detect multiple values for the same flag declaration. Last one wins.
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for (auto *CustomFlagValue : llvm::reverse(ClaimedCustomFlagValues)) {
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if (!TriggeredCustomFlagDecls.insert(CustomFlagValue->Decl).second)
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continue;
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Result.push_back(std::string(custom_flag::Prefix) + CustomFlagValue->Name);
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if (CustomFlagValue->MacroDefines)
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MacroDefines.append(CustomFlagValue->MacroDefines->begin(),
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CustomFlagValue->MacroDefines->end());
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}
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// Detect flag declarations with no value passed in. Select default value.
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for (const auto &Decl : CustomFlagDecls) {
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if (TriggeredCustomFlagDecls.contains(&Decl))
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continue;
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const custom_flag::ValueDetail &CustomFlagValue =
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Decl.ValueList[*Decl.DefaultValueIdx];
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Result.push_back(std::string(custom_flag::Prefix) + CustomFlagValue.Name);
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if (CustomFlagValue.MacroDefines)
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MacroDefines.append(CustomFlagValue.MacroDefines->begin(),
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CustomFlagValue.MacroDefines->end());
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}
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DiagnoseUnclaimedMultilibCustomFlags(D, UnclaimedCustomFlagValueStrs,
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CustomFlagDecls);
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return {Result, MacroDefines};
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}
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bool MultilibSet::select(
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const Driver &D, const Multilib::flags_list &Flags,
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llvm::SmallVectorImpl<Multilib> &Selected,
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llvm::SmallVector<StringRef> *CustomFlagMacroDefines) const {
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auto [FlagsWithCustom, CFMacroDefines] = processCustomFlags(D, Flags);
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llvm::StringSet<> FlagSet(expandFlags(FlagsWithCustom));
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Selected.clear();
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bool AnyErrors = false;
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// Determining the list of macro defines depends only on the custom flags
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// passed in. The library variants actually selected are not relevant in
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// this. Therefore this assignment can take place before the selection
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// happens.
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if (CustomFlagMacroDefines)
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*CustomFlagMacroDefines = std::move(CFMacroDefines);
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// Decide which multilibs we're going to select at all.
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llvm::DenseSet<StringRef> ExclusiveGroupsSelected;
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for (const Multilib &M : llvm::reverse(Multilibs)) {
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// If this multilib doesn't match all our flags, don't select it.
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if (!llvm::all_of(M.flags(), [&FlagSet](const std::string &F) {
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return FlagSet.contains(F);
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}))
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continue;
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const std::string &group = M.exclusiveGroup();
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if (!group.empty()) {
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// If this multilib has the same ExclusiveGroup as one we've already
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// selected, skip it. We're iterating in reverse order, so the group
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// member we've selected already is preferred.
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//
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// Otherwise, add the group name to the set of groups we've already
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// selected a member of.
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auto [It, Inserted] = ExclusiveGroupsSelected.insert(group);
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if (!Inserted)
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continue;
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}
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// If this multilib is actually a placeholder containing an error message
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// written by the multilib.yaml author, then set a flag that will cause a
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// failure return. Our caller will display the error message.
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if (M.isError())
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AnyErrors = true;
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// Select this multilib.
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Selected.push_back(M);
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}
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// We iterated in reverse order, so now put Selected back the right way
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// round.
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std::reverse(Selected.begin(), Selected.end());
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return !AnyErrors && !Selected.empty();
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}
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llvm::StringSet<>
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MultilibSet::expandFlags(const Multilib::flags_list &InFlags) const {
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llvm::StringSet<> Result;
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for (const auto &F : InFlags)
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Result.insert(F);
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for (const FlagMatcher &M : FlagMatchers) {
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std::string RegexString(M.Match);
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// Make the regular expression match the whole string.
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if (!StringRef(M.Match).starts_with("^"))
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RegexString.insert(RegexString.begin(), '^');
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if (!StringRef(M.Match).ends_with("$"))
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RegexString.push_back('$');
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const llvm::Regex Regex(RegexString);
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assert(Regex.isValid());
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if (llvm::any_of(InFlags,
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[&Regex](StringRef F) { return Regex.match(F); })) {
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Result.insert(M.Flags.begin(), M.Flags.end());
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}
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}
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return Result;
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}
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namespace {
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// When updating this also update MULTILIB_VERSION in MultilibTest.cpp
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static const VersionTuple MultilibVersionCurrent(1, 0);
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struct MultilibSerialization {
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std::string Dir; // if this record successfully selects a library dir
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std::string Error; // if this record reports a fatal error message
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std::vector<std::string> Flags;
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std::string Group;
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};
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enum class MultilibGroupType {
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/*
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* The only group type currently supported is 'Exclusive', which indicates a
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* group of multilibs of which at most one may be selected.
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*/
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Exclusive,
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/*
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* Future possibility: a second group type indicating a set of library
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* directories that are mutually _dependent_ rather than mutually exclusive:
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* if you include one you must include them all.
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*
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* It might also be useful to allow groups to be members of other groups, so
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* that a mutually exclusive group could contain a mutually dependent set of
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* library directories, or vice versa.
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*
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* These additional features would need changes in the implementation, but
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* the YAML schema is set up so they can be added without requiring changes
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* in existing users' multilib.yaml files.
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*/
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};
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struct MultilibGroupSerialization {
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std::string Name;
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MultilibGroupType Type;
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};
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struct MultilibSetSerialization {
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llvm::VersionTuple MultilibVersion;
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SmallVector<MultilibGroupSerialization> Groups;
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SmallVector<MultilibSerialization> Multilibs;
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SmallVector<MultilibSet::FlagMatcher> FlagMatchers;
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SmallVector<custom_flag::Declaration> CustomFlagDeclarations;
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};
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} // end anonymous namespace
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LLVM_YAML_IS_SEQUENCE_VECTOR(MultilibSerialization)
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LLVM_YAML_IS_SEQUENCE_VECTOR(MultilibGroupSerialization)
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LLVM_YAML_IS_SEQUENCE_VECTOR(MultilibSet::FlagMatcher)
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LLVM_YAML_IS_SEQUENCE_VECTOR(custom_flag::ValueDetail)
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LLVM_YAML_IS_SEQUENCE_VECTOR(custom_flag::Declaration)
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template <> struct llvm::yaml::MappingTraits<MultilibSerialization> {
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static void mapping(llvm::yaml::IO &io, MultilibSerialization &V) {
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io.mapOptional("Dir", V.Dir);
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io.mapOptional("Error", V.Error);
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io.mapRequired("Flags", V.Flags);
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io.mapOptional("Group", V.Group);
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}
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static std::string validate(IO &io, MultilibSerialization &V) {
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if (V.Dir.empty() && V.Error.empty())
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return "one of the 'Dir' and 'Error' keys must be specified";
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if (!V.Dir.empty() && !V.Error.empty())
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return "the 'Dir' and 'Error' keys may not both be specified";
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if (StringRef(V.Dir).starts_with("/"))
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return "paths must be relative but \"" + V.Dir + "\" starts with \"/\"";
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return std::string{};
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}
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};
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template <> struct llvm::yaml::ScalarEnumerationTraits<MultilibGroupType> {
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static void enumeration(IO &io, MultilibGroupType &Val) {
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io.enumCase(Val, "Exclusive", MultilibGroupType::Exclusive);
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}
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};
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template <> struct llvm::yaml::MappingTraits<MultilibGroupSerialization> {
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static void mapping(llvm::yaml::IO &io, MultilibGroupSerialization &V) {
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io.mapRequired("Name", V.Name);
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io.mapRequired("Type", V.Type);
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}
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};
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template <> struct llvm::yaml::MappingTraits<MultilibSet::FlagMatcher> {
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static void mapping(llvm::yaml::IO &io, MultilibSet::FlagMatcher &M) {
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io.mapRequired("Match", M.Match);
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io.mapRequired("Flags", M.Flags);
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}
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static std::string validate(IO &io, MultilibSet::FlagMatcher &M) {
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llvm::Regex Regex(M.Match);
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std::string RegexError;
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if (!Regex.isValid(RegexError))
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return RegexError;
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if (M.Flags.empty())
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return "value required for 'Flags'";
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return std::string{};
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}
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};
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template <>
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struct llvm::yaml::MappingContextTraits<custom_flag::ValueDetail,
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llvm::SmallSet<std::string, 32>> {
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static void mapping(llvm::yaml::IO &io, custom_flag::ValueDetail &V,
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llvm::SmallSet<std::string, 32> &) {
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io.mapRequired("Name", V.Name);
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io.mapOptional("MacroDefines", V.MacroDefines);
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}
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static std::string validate(IO &io, custom_flag::ValueDetail &V,
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llvm::SmallSet<std::string, 32> &NameSet) {
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if (V.Name.empty())
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return "custom flag value requires a name";
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if (!NameSet.insert(V.Name).second)
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return "duplicate custom flag value name: \"" + V.Name + "\"";
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return {};
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}
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};
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template <>
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struct llvm::yaml::MappingContextTraits<custom_flag::Declaration,
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llvm::SmallSet<std::string, 32>> {
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static void mapping(llvm::yaml::IO &io, custom_flag::Declaration &V,
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llvm::SmallSet<std::string, 32> &NameSet) {
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io.mapRequired("Name", V.Name);
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io.mapRequired("Values", V.ValueList, NameSet);
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std::string DefaultValueName;
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io.mapRequired("Default", DefaultValueName);
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for (auto [Idx, Value] : llvm::enumerate(V.ValueList)) {
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Value.Decl = &V;
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if (Value.Name == DefaultValueName) {
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assert(!V.DefaultValueIdx);
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V.DefaultValueIdx = Idx;
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}
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}
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}
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static std::string validate(IO &io, custom_flag::Declaration &V,
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llvm::SmallSet<std::string, 32> &) {
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if (V.Name.empty())
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return "custom flag requires a name";
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if (V.ValueList.empty())
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return "custom flag must have at least one value";
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if (!V.DefaultValueIdx)
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return "custom flag must have a default value";
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return {};
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}
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};
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template <> struct llvm::yaml::MappingTraits<MultilibSetSerialization> {
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static void mapping(llvm::yaml::IO &io, MultilibSetSerialization &M) {
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io.mapRequired("MultilibVersion", M.MultilibVersion);
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io.mapRequired("Variants", M.Multilibs);
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io.mapOptional("Groups", M.Groups);
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llvm::SmallSet<std::string, 32> NameSet;
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io.mapOptionalWithContext("Flags", M.CustomFlagDeclarations, NameSet);
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io.mapOptional("Mappings", M.FlagMatchers);
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}
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static std::string validate(IO &io, MultilibSetSerialization &M) {
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if (M.MultilibVersion.empty())
|
|
return "missing required key 'MultilibVersion'";
|
|
if (M.MultilibVersion.getMajor() != MultilibVersionCurrent.getMajor())
|
|
return "multilib version " + M.MultilibVersion.getAsString() +
|
|
" is unsupported";
|
|
if (M.MultilibVersion.getMinor() > MultilibVersionCurrent.getMinor())
|
|
return "multilib version " + M.MultilibVersion.getAsString() +
|
|
" is unsupported";
|
|
for (const MultilibSerialization &Lib : M.Multilibs) {
|
|
if (!Lib.Group.empty()) {
|
|
bool Found = false;
|
|
for (const MultilibGroupSerialization &Group : M.Groups)
|
|
if (Group.Name == Lib.Group) {
|
|
Found = true;
|
|
break;
|
|
}
|
|
if (!Found)
|
|
return "multilib \"" + Lib.Dir +
|
|
"\" specifies undefined group name \"" + Lib.Group + "\"";
|
|
}
|
|
}
|
|
return std::string{};
|
|
}
|
|
};
|
|
|
|
llvm::ErrorOr<MultilibSet>
|
|
MultilibSet::parseYaml(llvm::MemoryBufferRef Input,
|
|
llvm::SourceMgr::DiagHandlerTy DiagHandler,
|
|
void *DiagHandlerCtxt) {
|
|
MultilibSetSerialization MS;
|
|
llvm::yaml::Input YamlInput(Input, nullptr, DiagHandler, DiagHandlerCtxt);
|
|
YamlInput >> MS;
|
|
if (YamlInput.error())
|
|
return YamlInput.error();
|
|
|
|
multilib_list Multilibs;
|
|
Multilibs.reserve(MS.Multilibs.size());
|
|
for (const auto &M : MS.Multilibs) {
|
|
if (!M.Error.empty()) {
|
|
Multilibs.emplace_back("", "", "", M.Flags, M.Group, M.Error);
|
|
} else {
|
|
std::string Dir;
|
|
if (M.Dir != ".")
|
|
Dir = "/" + M.Dir;
|
|
// We transfer M.Group straight into the ExclusiveGroup parameter for the
|
|
// Multilib constructor. If we later support more than one type of group,
|
|
// we'll have to look up the group name in MS.Groups, check its type, and
|
|
// decide what to do here.
|
|
Multilibs.emplace_back(Dir, Dir, Dir, M.Flags, M.Group);
|
|
}
|
|
}
|
|
|
|
return MultilibSet(std::move(Multilibs), std::move(MS.FlagMatchers),
|
|
std::move(MS.CustomFlagDeclarations));
|
|
}
|
|
|
|
LLVM_DUMP_METHOD void MultilibSet::dump() const {
|
|
print(llvm::errs());
|
|
}
|
|
|
|
void MultilibSet::print(raw_ostream &OS) const {
|
|
for (const auto &M : *this)
|
|
OS << M << "\n";
|
|
}
|
|
|
|
raw_ostream &clang::driver::operator<<(raw_ostream &OS, const MultilibSet &MS) {
|
|
MS.print(OS);
|
|
return OS;
|
|
}
|
|
|
|
namespace clang::driver::custom_flag {
|
|
Declaration::Declaration(const Declaration &Other)
|
|
: Name(Other.Name), ValueList(Other.ValueList),
|
|
DefaultValueIdx(Other.DefaultValueIdx) {
|
|
for (ValueDetail &Detail : ValueList)
|
|
Detail.Decl = this;
|
|
}
|
|
|
|
Declaration::Declaration(Declaration &&Other)
|
|
: Name(std::move(Other.Name)), ValueList(std::move(Other.ValueList)),
|
|
DefaultValueIdx(std::move(Other.DefaultValueIdx)) {
|
|
for (ValueDetail &Detail : ValueList)
|
|
Detail.Decl = this;
|
|
}
|
|
|
|
Declaration &Declaration::operator=(const Declaration &Other) {
|
|
if (this == &Other)
|
|
return *this;
|
|
Name = Other.Name;
|
|
ValueList = Other.ValueList;
|
|
DefaultValueIdx = Other.DefaultValueIdx;
|
|
for (ValueDetail &Detail : ValueList)
|
|
Detail.Decl = this;
|
|
return *this;
|
|
}
|
|
|
|
Declaration &Declaration::operator=(Declaration &&Other) {
|
|
if (this == &Other)
|
|
return *this;
|
|
Name = std::move(Other.Name);
|
|
ValueList = std::move(Other.ValueList);
|
|
DefaultValueIdx = std::move(Other.DefaultValueIdx);
|
|
for (ValueDetail &Detail : ValueList)
|
|
Detail.Decl = this;
|
|
return *this;
|
|
}
|
|
} // namespace clang::driver::custom_flag
|