forked from OSchip/llvm-project
416 lines
14 KiB
C++
416 lines
14 KiB
C++
//===-- SelectionDAGPrinter.cpp - Implement SelectionDAG::viewGraph() -----===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This implements the SelectionDAG::viewGraph method.
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//
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//===----------------------------------------------------------------------===//
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#include "ScheduleDAGSDNodes.h"
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#include "llvm/Constants.h"
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#include "llvm/Function.h"
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#include "llvm/Assembly/Writer.h"
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#include "llvm/CodeGen/SelectionDAG.h"
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#include "llvm/CodeGen/MachineConstantPool.h"
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#include "llvm/CodeGen/MachineFunction.h"
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#include "llvm/CodeGen/MachineModuleInfo.h"
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#include "llvm/CodeGen/PseudoSourceValue.h"
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#include "llvm/Analysis/DebugInfo.h"
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#include "llvm/Target/TargetRegisterInfo.h"
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#include "llvm/Target/TargetMachine.h"
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#include "llvm/Support/Debug.h"
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#include "llvm/Support/GraphWriter.h"
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#include "llvm/Support/raw_ostream.h"
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#include "llvm/ADT/DenseSet.h"
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#include "llvm/ADT/StringExtras.h"
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#include "llvm/Config/config.h"
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#include <fstream>
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using namespace llvm;
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namespace llvm {
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template<>
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struct DOTGraphTraits<SelectionDAG*> : public DefaultDOTGraphTraits {
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static bool hasEdgeDestLabels() {
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return true;
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}
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static unsigned numEdgeDestLabels(const void *Node) {
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return ((const SDNode *) Node)->getNumValues();
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}
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static std::string getEdgeDestLabel(const void *Node, unsigned i) {
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return ((const SDNode *) Node)->getValueType(i).getMVTString();
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}
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/// edgeTargetsEdgeSource - This method returns true if this outgoing edge
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/// should actually target another edge source, not a node. If this method is
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/// implemented, getEdgeTarget should be implemented.
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template<typename EdgeIter>
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static bool edgeTargetsEdgeSource(const void *Node, EdgeIter I) {
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return true;
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}
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/// getEdgeTarget - If edgeTargetsEdgeSource returns true, this method is
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/// called to determine which outgoing edge of Node is the target of this
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/// edge.
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template<typename EdgeIter>
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static EdgeIter getEdgeTarget(const void *Node, EdgeIter I) {
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SDNode *TargetNode = *I;
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SDNodeIterator NI = SDNodeIterator::begin(TargetNode);
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std::advance(NI, I.getNode()->getOperand(I.getOperand()).getResNo());
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return NI;
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}
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static std::string getGraphName(const SelectionDAG *G) {
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return G->getMachineFunction().getFunction()->getName();
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}
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static bool renderGraphFromBottomUp() {
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return true;
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}
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static bool hasNodeAddressLabel(const SDNode *Node,
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const SelectionDAG *Graph) {
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return true;
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}
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/// If you want to override the dot attributes printed for a particular
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/// edge, override this method.
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template<typename EdgeIter>
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static std::string getEdgeAttributes(const void *Node, EdgeIter EI) {
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SDValue Op = EI.getNode()->getOperand(EI.getOperand());
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MVT VT = Op.getValueType();
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if (VT == MVT::Flag)
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return "color=red,style=bold";
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else if (VT == MVT::Other)
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return "color=blue,style=dashed";
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return "";
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}
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static std::string getNodeLabel(const SDNode *Node,
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const SelectionDAG *Graph);
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static std::string getNodeAttributes(const SDNode *N,
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const SelectionDAG *Graph) {
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#ifndef NDEBUG
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const std::string &Attrs = Graph->getGraphAttrs(N);
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if (!Attrs.empty()) {
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if (Attrs.find("shape=") == std::string::npos)
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return std::string("shape=Mrecord,") + Attrs;
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else
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return Attrs;
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}
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#endif
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return "shape=Mrecord";
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}
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static void addCustomGraphFeatures(SelectionDAG *G,
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GraphWriter<SelectionDAG*> &GW) {
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GW.emitSimpleNode(0, "plaintext=circle", "GraphRoot");
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if (G->getRoot().getNode())
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GW.emitEdge(0, -1, G->getRoot().getNode(), G->getRoot().getResNo(),
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"color=blue,style=dashed");
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}
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};
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}
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std::string DOTGraphTraits<SelectionDAG*>::getNodeLabel(const SDNode *Node,
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const SelectionDAG *G) {
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std::string Op = Node->getOperationName(G);
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if (const ConstantSDNode *CSDN = dyn_cast<ConstantSDNode>(Node)) {
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Op += ": " + utostr(CSDN->getZExtValue());
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} else if (const ConstantFPSDNode *CSDN = dyn_cast<ConstantFPSDNode>(Node)) {
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Op += ": " + ftostr(CSDN->getValueAPF());
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} else if (const GlobalAddressSDNode *GADN =
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dyn_cast<GlobalAddressSDNode>(Node)) {
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Op += ": " + GADN->getGlobal()->getName();
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if (int64_t Offset = GADN->getOffset()) {
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if (Offset > 0)
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Op += "+" + itostr(Offset);
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else
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Op += itostr(Offset);
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}
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} else if (const FrameIndexSDNode *FIDN = dyn_cast<FrameIndexSDNode>(Node)) {
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Op += " " + itostr(FIDN->getIndex());
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} else if (const JumpTableSDNode *JTDN = dyn_cast<JumpTableSDNode>(Node)) {
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Op += " " + itostr(JTDN->getIndex());
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} else if (const ConstantPoolSDNode *CP = dyn_cast<ConstantPoolSDNode>(Node)){
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if (CP->isMachineConstantPoolEntry()) {
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Op += '<';
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{
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raw_string_ostream OSS(Op);
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OSS << *CP->getMachineCPVal();
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}
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Op += '>';
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} else {
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if (ConstantFP *CFP = dyn_cast<ConstantFP>(CP->getConstVal()))
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Op += "<" + ftostr(CFP->getValueAPF()) + ">";
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else if (ConstantInt *CI = dyn_cast<ConstantInt>(CP->getConstVal()))
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Op += "<" + utostr(CI->getZExtValue()) + ">";
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else {
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Op += '<';
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{
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raw_string_ostream OSS(Op);
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WriteAsOperand(OSS, CP->getConstVal(), false);
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}
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Op += '>';
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}
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}
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Op += " A=" + itostr(1 << CP->getAlignment());
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} else if (const BasicBlockSDNode *BBDN = dyn_cast<BasicBlockSDNode>(Node)) {
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Op = "BB: ";
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const Value *LBB = (const Value*)BBDN->getBasicBlock()->getBasicBlock();
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if (LBB)
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Op += LBB->getName();
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//Op += " " + (const void*)BBDN->getBasicBlock();
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} else if (const RegisterSDNode *R = dyn_cast<RegisterSDNode>(Node)) {
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if (G && R->getReg() != 0 &&
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TargetRegisterInfo::isPhysicalRegister(R->getReg())) {
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Op = Op + " " +
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G->getTarget().getRegisterInfo()->getName(R->getReg());
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} else {
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Op += " #" + utostr(R->getReg());
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}
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} else if (const DbgStopPointSDNode *D = dyn_cast<DbgStopPointSDNode>(Node)) {
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DICompileUnit CU(cast<GlobalVariable>(D->getCompileUnit()));
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Op += ": " + CU.getFilename();
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Op += ":" + utostr(D->getLine());
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if (D->getColumn() != 0)
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Op += ":" + utostr(D->getColumn());
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} else if (const LabelSDNode *L = dyn_cast<LabelSDNode>(Node)) {
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Op += ": LabelID=" + utostr(L->getLabelID());
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} else if (const CallSDNode *C = dyn_cast<CallSDNode>(Node)) {
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Op += ": CallingConv=" + utostr(C->getCallingConv());
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if (C->isVarArg())
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Op += ", isVarArg";
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if (C->isTailCall())
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Op += ", isTailCall";
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} else if (const ExternalSymbolSDNode *ES =
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dyn_cast<ExternalSymbolSDNode>(Node)) {
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Op += "'" + std::string(ES->getSymbol()) + "'";
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} else if (const SrcValueSDNode *M = dyn_cast<SrcValueSDNode>(Node)) {
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if (M->getValue())
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Op += "<" + M->getValue()->getName() + ">";
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else
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Op += "<null>";
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} else if (const MemOperandSDNode *M = dyn_cast<MemOperandSDNode>(Node)) {
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const Value *V = M->MO.getValue();
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Op += '<';
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if (!V) {
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Op += "(unknown)";
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} else if (const PseudoSourceValue *PSV = dyn_cast<PseudoSourceValue>(V)) {
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// PseudoSourceValues don't have names, so use their print method.
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raw_string_ostream OSS(Op);
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PSV->print(OSS);
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} else {
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Op += V->getName();
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}
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Op += '+' + itostr(M->MO.getOffset()) + '>';
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} else if (const ARG_FLAGSSDNode *N = dyn_cast<ARG_FLAGSSDNode>(Node)) {
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Op = Op + " AF=" + N->getArgFlags().getArgFlagsString();
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} else if (const VTSDNode *N = dyn_cast<VTSDNode>(Node)) {
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Op = Op + " VT=" + N->getVT().getMVTString();
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} else if (const LoadSDNode *LD = dyn_cast<LoadSDNode>(Node)) {
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bool doExt = true;
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switch (LD->getExtensionType()) {
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default: doExt = false; break;
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case ISD::EXTLOAD:
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Op = Op + "<anyext ";
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break;
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case ISD::SEXTLOAD:
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Op = Op + " <sext ";
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break;
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case ISD::ZEXTLOAD:
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Op = Op + " <zext ";
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break;
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}
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if (doExt)
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Op += LD->getMemoryVT().getMVTString() + ">";
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if (LD->isVolatile())
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Op += "<V>";
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Op += LD->getIndexedModeName(LD->getAddressingMode());
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if (LD->getAlignment() > 1)
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Op += " A=" + utostr(LD->getAlignment());
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} else if (const StoreSDNode *ST = dyn_cast<StoreSDNode>(Node)) {
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if (ST->isTruncatingStore())
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Op += "<trunc " + ST->getMemoryVT().getMVTString() + ">";
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if (ST->isVolatile())
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Op += "<V>";
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Op += ST->getIndexedModeName(ST->getAddressingMode());
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if (ST->getAlignment() > 1)
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Op += " A=" + utostr(ST->getAlignment());
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}
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#if 0
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Op += " Id=" + itostr(Node->getNodeId());
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#endif
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return Op;
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}
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/// viewGraph - Pop up a ghostview window with the reachable parts of the DAG
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/// rendered using 'dot'.
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///
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void SelectionDAG::viewGraph(const std::string &Title) {
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// This code is only for debugging!
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#ifndef NDEBUG
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ViewGraph(this, "dag." + getMachineFunction().getFunction()->getName(),
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Title);
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#else
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cerr << "SelectionDAG::viewGraph is only available in debug builds on "
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<< "systems with Graphviz or gv!\n";
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#endif // NDEBUG
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}
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// This overload is defined out-of-line here instead of just using a
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// default parameter because this is easiest for gdb to call.
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void SelectionDAG::viewGraph() {
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viewGraph("");
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}
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/// clearGraphAttrs - Clear all previously defined node graph attributes.
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/// Intended to be used from a debugging tool (eg. gdb).
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void SelectionDAG::clearGraphAttrs() {
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#ifndef NDEBUG
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NodeGraphAttrs.clear();
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#else
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cerr << "SelectionDAG::clearGraphAttrs is only available in debug builds"
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<< " on systems with Graphviz or gv!\n";
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#endif
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}
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/// setGraphAttrs - Set graph attributes for a node. (eg. "color=red".)
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///
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void SelectionDAG::setGraphAttrs(const SDNode *N, const char *Attrs) {
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#ifndef NDEBUG
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NodeGraphAttrs[N] = Attrs;
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#else
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cerr << "SelectionDAG::setGraphAttrs is only available in debug builds"
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<< " on systems with Graphviz or gv!\n";
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#endif
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}
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/// getGraphAttrs - Get graph attributes for a node. (eg. "color=red".)
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/// Used from getNodeAttributes.
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const std::string SelectionDAG::getGraphAttrs(const SDNode *N) const {
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#ifndef NDEBUG
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std::map<const SDNode *, std::string>::const_iterator I =
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NodeGraphAttrs.find(N);
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if (I != NodeGraphAttrs.end())
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return I->second;
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else
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return "";
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#else
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cerr << "SelectionDAG::getGraphAttrs is only available in debug builds"
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<< " on systems with Graphviz or gv!\n";
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return std::string("");
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#endif
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}
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/// setGraphColor - Convenience for setting node color attribute.
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///
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void SelectionDAG::setGraphColor(const SDNode *N, const char *Color) {
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#ifndef NDEBUG
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NodeGraphAttrs[N] = std::string("color=") + Color;
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#else
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cerr << "SelectionDAG::setGraphColor is only available in debug builds"
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<< " on systems with Graphviz or gv!\n";
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#endif
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}
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/// setSubgraphColorHelper - Implement setSubgraphColor. Return
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/// whether we truncated the search.
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///
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bool SelectionDAG::setSubgraphColorHelper(SDNode *N, const char *Color, DenseSet<SDNode *> &visited,
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int level, bool &printed) {
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bool hit_limit = false;
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#ifndef NDEBUG
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if (level >= 20) {
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if (!printed) {
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printed = true;
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DOUT << "setSubgraphColor hit max level\n";
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}
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return true;
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}
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unsigned oldSize = visited.size();
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visited.insert(N);
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if (visited.size() != oldSize) {
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setGraphColor(N, Color);
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for(SDNodeIterator i = SDNodeIterator::begin(N), iend = SDNodeIterator::end(N);
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i != iend;
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++i) {
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hit_limit = setSubgraphColorHelper(*i, Color, visited, level+1, printed) || hit_limit;
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}
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}
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#else
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cerr << "SelectionDAG::setSubgraphColor is only available in debug builds"
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<< " on systems with Graphviz or gv!\n";
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#endif
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return hit_limit;
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}
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/// setSubgraphColor - Convenience for setting subgraph color attribute.
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///
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void SelectionDAG::setSubgraphColor(SDNode *N, const char *Color) {
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#ifndef NDEBUG
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DenseSet<SDNode *> visited;
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bool printed = false;
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if (setSubgraphColorHelper(N, Color, visited, 0, printed)) {
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// Visually mark that we hit the limit
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if (strcmp(Color, "red") == 0) {
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setSubgraphColorHelper(N, "blue", visited, 0, printed);
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}
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else if (strcmp(Color, "yellow") == 0) {
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setSubgraphColorHelper(N, "green", visited, 0, printed);
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}
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}
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#else
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cerr << "SelectionDAG::setSubgraphColor is only available in debug builds"
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<< " on systems with Graphviz or gv!\n";
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#endif
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}
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std::string ScheduleDAGSDNodes::getGraphNodeLabel(const SUnit *SU) const {
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std::string s;
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raw_string_ostream O(s);
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O << "SU(" << SU->NodeNum << "): ";
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if (SU->getNode()) {
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SmallVector<SDNode *, 4> FlaggedNodes;
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for (SDNode *N = SU->getNode(); N; N = N->getFlaggedNode())
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FlaggedNodes.push_back(N);
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while (!FlaggedNodes.empty()) {
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O << DOTGraphTraits<SelectionDAG*>::getNodeLabel(FlaggedNodes.back(), DAG);
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FlaggedNodes.pop_back();
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if (!FlaggedNodes.empty())
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O << "\n ";
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}
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} else {
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O << "CROSS RC COPY";
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}
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return O.str();
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}
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void ScheduleDAGSDNodes::getCustomGraphFeatures(GraphWriter<ScheduleDAG*> &GW) const {
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if (DAG) {
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// Draw a special "GraphRoot" node to indicate the root of the graph.
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GW.emitSimpleNode(0, "plaintext=circle", "GraphRoot");
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const SDNode *N = DAG->getRoot().getNode();
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if (N && N->getNodeId() != -1)
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GW.emitEdge(0, -1, &SUnits[N->getNodeId()], -1,
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"color=blue,style=dashed");
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}
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}
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