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https://github.com/revng/revng
synced 2026-06-21 14:07:57 +00:00
f68b7866b3
This commit introduces `BasicBlockID` as the unique identifier for a `efa::BasicBlock` into the CFG. A `BasicBlockID` is defined by a `MetaAddress` plus an incremental integer. This enables us to have multiple instances of the same block in a single function, which is particularly useful when inlining multiple times the same function. Apart from this, the commit also does the following: * It drops representing `MetaAddress`es a `structs` in the IR. This created several issues related to ABI. We now represent them as strings. * It defines more functions in `support.h`, instead of defining prototypes by hand in `CodeGenerator.cpp` and the like. Specifically, `unknownPC` and `raise_exception_helper`. We also introduce a C "constructor" for `PlainMetaAddress`. * It significantly reduces the API of `GeneratedCodeBasicInfo`, which was supposed to be put on a diet since a long time. Specifically, many jump target related methods have been moved to free functions in `IRHelpers.h`. Also `GCBI::getSuccessors` has been pushed into its only user, `PruneRetSuccessors`, to prevent further usage of a deprecated API. In the future, it would be nice to drop it entirely. * It introduces `efa::BasicBlock::InlinedFrom`. * Introduce an enum to represent named argument indices for `newpc`. This enables us to more effectively manipulate its argument list. * It improves the verification and error reporting for `efa::FunctionMetadata`. * Update tests. This commit is preliminary to another piece of work to improve the generality of inlining beyond the simple "fake function" scenario, for which the feature was originally conceived.
136 lines
4.5 KiB
C++
136 lines
4.5 KiB
C++
/// \file Plain.cpp
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/// \brief
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//
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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/Support/FormatVariadic.h"
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#include "revng/Model/Binary.h"
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#include "revng/Yield/ControlFlow/FallthroughDetection.h"
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#include "revng/Yield/Function.h"
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#include "revng/Yield/Plain.h"
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static std::string linkAddress(const BasicBlockID &Address) {
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std::string Result = Address.toString();
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constexpr std::array ForbiddenCharacters = { ' ', ':', '!', '#', '?',
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'<', '>', '/', '\\', '{',
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'}', '[', ']' };
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for (char &Character : Result)
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if (llvm::find(ForbiddenCharacters, Character) != ForbiddenCharacters.end())
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Character = '_';
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return Result;
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}
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static std::string deduceName(const BasicBlockID &Target,
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const yield::Function &Function,
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const model::Binary &Binary) {
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if (auto *F = yield::tryGetFunction(Binary, Target)) {
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// The target is a function
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return F->name().str().str();
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} else if (auto Iterator = Function.ControlFlowGraph().find(Target);
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Iterator != Function.ControlFlowGraph().end()) {
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// The target is a basic block
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// TODO: maybe there's something better than the address to put here.
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return "basic_block_at_" + linkAddress(Target);
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} else if (Target.isValid()) {
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// The target is an instruction
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return "instruction_at_" + linkAddress(Target);
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} else {
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// The target is impossible to deduce, it's an indirect call or the like.
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return "(error)";
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}
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}
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static std::string label(const yield::BasicBlock &BasicBlock,
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const yield::Function &Function,
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const model::Binary &Binary) {
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std::string Result = deduceName(BasicBlock.ID(), Function, Binary);
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namespace Arch = model::Architecture;
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auto LabelIndicator = Arch::getAssemblyLabelIndicator(Binary.Architecture());
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return (Result += LabelIndicator) += "\n";
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}
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static std::string instruction(const yield::Instruction &Instruction,
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const yield::BasicBlock &BasicBlock,
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const model::Binary &Binary) {
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std::string Result = Instruction.Disassembled();
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namespace A = model::Architecture;
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auto CommentIndicator = A::getAssemblyCommentIndicator(Binary.Architecture());
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if (!Instruction.Error().empty()) {
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Result += ' ';
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Result += CommentIndicator;
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Result += " Error: ";
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Result += Instruction.Error();
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} else if (!Instruction.Comment().empty()) {
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Result += ' ';
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Result += CommentIndicator;
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Result += ' ';
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Result += Instruction.Comment();
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}
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return Result;
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}
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static std::string basicBlock(const yield::BasicBlock &BasicBlock,
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const yield::Function &Function,
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const model::Binary &Binary) {
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std::string Result;
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for (const auto &Instruction : BasicBlock.Instructions())
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Result += instruction(Instruction, BasicBlock, Binary);
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return Result;
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}
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template<bool ShouldMergeFallthroughTargets>
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static std::string labeledBlock(const yield::BasicBlock &FirstBlock,
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const yield::Function &Function,
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const model::Binary &Binary) {
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std::string Result;
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Result += label(FirstBlock, Function, Binary);
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if constexpr (ShouldMergeFallthroughTargets == false) {
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Result += basicBlock(FirstBlock, Function, Binary);
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} else {
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auto BasicBlocks = yield::cfg::labeledBlock(FirstBlock, Function, Binary);
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if (BasicBlocks.empty())
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return "";
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for (auto BasicBlock : BasicBlocks)
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Result += basicBlock(*BasicBlock, Function, Binary);
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}
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return Result;
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}
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std::string yield::plain::functionAssembly(const yield::Function &Function,
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const model::Binary &Binary) {
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std::string Result;
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for (const auto &BasicBlock : Function.ControlFlowGraph())
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Result += labeledBlock<true>(BasicBlock, Function, Binary);
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return Result;
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}
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std::string yield::plain::controlFlowNode(const BasicBlockID &Address,
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const yield::Function &Function,
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const model::Binary &Binary) {
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auto Iterator = Function.ControlFlowGraph().find(Address);
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revng_assert(Iterator != Function.ControlFlowGraph().end());
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auto Result = labeledBlock<false>(*Iterator, Function, Binary);
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revng_assert(!Result.empty());
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return Result;
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}
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