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https://github.com/revng/revng
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249 lines
9.1 KiB
C++
249 lines
9.1 KiB
C++
/// \file NodeSizeCalculation.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 "revng/EarlyFunctionAnalysis/ControlFlowGraph.h"
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#include "revng/Model/Binary.h"
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#include "revng/Yield/ControlFlow/Configuration.h"
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#include "revng/Yield/ControlFlow/FallthroughDetection.h"
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#include "revng/Yield/ControlFlow/NodeSizeCalculation.h"
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#include "revng/Yield/Function.h"
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#include "revng/Yield/Graph.h"
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static yield::Graph::Size
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operator+(const yield::Graph::Size &LHS, const yield::Graph::Size &RHS) {
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return yield::Graph::Size(LHS.W + RHS.W, LHS.H + RHS.H);
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}
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constexpr static yield::Graph::Size textSize(std::string_view Text) {
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size_t LineCount = 0;
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size_t MaximumLineLength = 0;
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size_t PreviousPosition = 0;
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size_t CurrentPosition = Text.find('\n');
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while (CurrentPosition != std::string_view::npos) {
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size_t CurrentLineLength = CurrentPosition - PreviousPosition;
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if (CurrentLineLength > MaximumLineLength)
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MaximumLineLength = CurrentLineLength;
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++LineCount;
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PreviousPosition = CurrentPosition;
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CurrentPosition = Text.find('\n', CurrentPosition + 1);
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}
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size_t LastLineLength = Text.size() - PreviousPosition;
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if (LastLineLength > MaximumLineLength)
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MaximumLineLength = LastLineLength;
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if (LastLineLength != 0)
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++LineCount;
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return yield::Graph::Size(MaximumLineLength, LineCount);
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}
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constexpr static size_t firstLineSize(std::string_view Text) {
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size_t FirstLineEnd = Text.find('\n');
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if (FirstLineEnd == std::string_view::npos)
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return Text.size();
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else
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return Text.size() - FirstLineEnd;
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}
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static yield::Graph::Size
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fontSize(yield::Graph::Size &&Input,
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yield::Graph::Dimension FontSize,
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const yield::cfg::Configuration &Configuration) {
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Input.W *= FontSize * Configuration.HorizontalFontFactor;
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Input.H *= FontSize * Configuration.VerticalFontFactor;
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return std::move(Input);
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}
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static yield::Graph::Size
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fontSize(yield::Graph::Size &&Input,
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yield::Graph::Dimension HorizontalFontSize,
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yield::Graph::Dimension VerticalFontSize,
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const yield::cfg::Configuration &Configuration) {
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Input.W *= HorizontalFontSize * Configuration.HorizontalFontFactor;
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Input.H *= VerticalFontSize * Configuration.VerticalFontFactor;
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return std::move(Input);
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}
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static yield::Graph::Size
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singleLineSize(std::string_view Text,
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float FontSize,
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const yield::cfg::Configuration &Configuration) {
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yield::Graph::Size Result = fontSize(textSize(Text), FontSize, Configuration);
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Result.W += Configuration.HorizontalInstructionMarginSize * 2;
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Result.H += Configuration.VerticalInstructionMarginSize * 2;
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return Result;
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}
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static yield::Graph::Size
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linkSize(const MetaAddress &Address,
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const yield::Function &Function,
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const model::Binary &Binary,
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size_t IndicatorSize = 0,
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const MetaAddress &NextAddress = MetaAddress::invalid()) {
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yield::Graph::Size Indicator(IndicatorSize, 0);
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if (Address.isInvalid())
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return Indicator + textSize("an unknown location");
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if (auto Iterator = Binary.Functions.find(Address);
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Iterator != Binary.Functions.end()) {
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return Indicator + textSize(Iterator->name().str().str());
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} else if (NextAddress == Address) {
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return Indicator + textSize("the next instruction");
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} else if (auto Iterator = Function.ControlFlowGraph.find(Address);
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Iterator != Function.ControlFlowGraph.end()) {
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return Indicator + textSize("basic_block_at_" + Address.toString());
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} else {
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return Indicator + textSize("instruction_at_" + Address.toString());
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}
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}
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static yield::Graph::Size &
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appendSize(yield::Graph::Size &Original, const yield::Graph::Size &AddOn) {
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if (AddOn.W > Original.W)
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Original.W = AddOn.W;
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Original.H += AddOn.H;
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return Original;
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}
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static yield::Graph::Size
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instructionSize(const yield::Instruction &Instruction,
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const yield::cfg::Configuration &Configuration,
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size_t CommentIndicatorSize,
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bool IsInDelayedSlot = false) {
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// Instruction body.
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yield::Graph::Size Result = fontSize(textSize(Instruction.Disassembled),
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Configuration.InstructionFontSize,
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Configuration);
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// Comment and delayed slot notice.
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yield::Graph::Size CommentSize;
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if (!Instruction.Comment.empty()) {
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CommentSize = textSize(Instruction.Comment);
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revng_assert(CommentSize.H == 1, "Multi line comments are not supported.");
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CommentSize.W += CommentIndicatorSize + 1;
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}
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if (IsInDelayedSlot) {
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auto DelayedSlotNoticeSize = textSize("delayed");
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DelayedSlotNoticeSize.W += CommentIndicatorSize + 1;
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appendSize(CommentSize, DelayedSlotNoticeSize);
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}
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auto CommentBlockSize = fontSize(yield::Graph::Size(CommentSize),
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Configuration.CommentFontSize,
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Configuration.InstructionFontSize,
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Configuration);
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if (CommentSize.H > 1) {
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Result.W = std::max(firstLineSize(Instruction.Comment) + Result.W
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+ CommentIndicatorSize + 1,
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CommentBlockSize.W);
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auto OneLine = fontSize(yield::Graph::Size(1, 1),
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Configuration.CommentFontSize,
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Configuration.InstructionFontSize,
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Configuration);
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Result.H += CommentBlockSize.H - OneLine.H;
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} else {
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Result.W += CommentBlockSize.W;
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}
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// Error.
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if (!Instruction.Error.empty())
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appendSize(Result,
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fontSize(textSize(Instruction.Error)
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+ yield::Graph::Size(CommentIndicatorSize + 1, 0),
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Configuration.CommentFontSize,
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Configuration));
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// Annotation.
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yield::Graph::Size RawBytesLengthWithOffsets{ 0, 0 };
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RawBytesLengthWithOffsets.W += Instruction.RawBytes.size() * 3;
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RawBytesLengthWithOffsets.W += CommentIndicatorSize + 5;
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appendSize(Result,
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fontSize(textSize(Instruction.Address.toString())
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+ RawBytesLengthWithOffsets,
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Configuration.AnnotationFontSize,
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Configuration));
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// Account for the padding.
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Result.W += Configuration.HorizontalInstructionMarginSize * 2;
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Result.H += Configuration.VerticalInstructionMarginSize * 2;
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return Result;
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}
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static yield::Graph::Size
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basicBlockSize(const yield::BasicBlock &BasicBlock,
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const yield::Function &Function,
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const model::Binary &Binary,
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const yield::cfg::Configuration &Configuration) {
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// Account for the size of the label
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namespace A = model::Architecture;
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auto LabelIndicator = A::getAssemblyLabelIndicator(Binary.Architecture);
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yield::Graph::Size Result = fontSize(linkSize(BasicBlock.Start,
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Function,
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Binary,
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LabelIndicator.size()),
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Configuration.LabelFontSize,
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Configuration);
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namespace A = model::Architecture;
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auto CommentIndicator = A::getAssemblyCommentIndicator(Binary.Architecture);
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// Account for the sizes of each instruction.
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auto FromIterator = BasicBlock.Instructions.begin();
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auto ToIterator = std::prev(BasicBlock.Instructions.end());
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for (auto Iterator = FromIterator; Iterator != ToIterator; ++Iterator) {
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appendSize(Result,
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instructionSize(*Iterator,
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Configuration,
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CommentIndicator.size()));
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}
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appendSize(Result,
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instructionSize(*ToIterator++,
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Configuration,
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CommentIndicator.size(),
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BasicBlock.HasDelaySlot));
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revng_assert(ToIterator == BasicBlock.Instructions.end());
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return Result;
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}
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void yield::cfg::calculateNodeSizes(Graph &Graph,
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const yield::Function &Function,
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const model::Binary &Binary,
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const Configuration &Configuration) {
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for (auto *Node : Graph.nodes()) {
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revng_assert(Node != nullptr);
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if (Node->Address.isValid()) {
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// A normal node.
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if (auto Iterator = Function.ControlFlowGraph.find(Node->Address);
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Iterator != Function.ControlFlowGraph.end()) {
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Node->Size = basicBlockSize(*Iterator, Function, Binary, Configuration);
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} else if (auto Iterator = Binary.Functions.find(Node->Address);
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Iterator != Binary.Functions.end()) {
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Node->Size = singleLineSize(Iterator->name().str(),
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Configuration.InstructionFontSize,
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Configuration);
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} else {
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revng_abort("The value of this node is not a known address");
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}
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} else {
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// An entry node.
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Node->Size = { 30, 30 };
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}
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Node->Size.W += Configuration.InternalNodeMarginSize * 2;
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Node->Size.H += Configuration.InternalNodeMarginSize * 2;
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}
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}
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