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https://github.com/RPCS3/llvm-mirror.git
synced 2024-11-22 18:54:02 +01:00
Move to raw_ostream.
llvm-svn: 76963
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parent
e3fea713f1
commit
1df20e31e5
@ -18,10 +18,11 @@
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#include <cassert>
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#include <climits>
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#include <cstring>
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#include "llvm/Support/DataTypes.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/Support/MathExtras.h"
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#include "llvm/ADT/ilist.h"
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#include "llvm/Support/DataTypes.h"
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#include "llvm/Support/MathExtras.h"
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#include "llvm/Support/raw_ostream.h"
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namespace llvm {
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@ -887,7 +888,7 @@ operator-(const SparseBitVector<ElementSize> &LHS,
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// Dump a SparseBitVector to a stream
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template <unsigned ElementSize>
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void dump(const SparseBitVector<ElementSize> &LHS, llvm::OStream &out) {
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void dump(const SparseBitVector<ElementSize> &LHS, raw_ostream &out) {
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out << "[ ";
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typename SparseBitVector<ElementSize>::iterator bi;
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@ -826,7 +826,7 @@ unsigned Andersens::getNodeForConstantPointer(Constant *C) {
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case Instruction::BitCast:
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return getNodeForConstantPointer(CE->getOperand(0));
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default:
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cerr << "Constant Expr not yet handled: " << *CE << "\n";
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errs() << "Constant Expr not yet handled: " << *CE << "\n";
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llvm_unreachable(0);
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}
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} else {
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@ -853,7 +853,7 @@ unsigned Andersens::getNodeForConstantPointerTarget(Constant *C) {
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case Instruction::BitCast:
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return getNodeForConstantPointerTarget(CE->getOperand(0));
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default:
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cerr << "Constant Expr not yet handled: " << *CE << "\n";
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errs() << "Constant Expr not yet handled: " << *CE << "\n";
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llvm_unreachable(0);
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}
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} else {
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@ -1153,7 +1153,7 @@ void Andersens::visitInstruction(Instruction &I) {
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return;
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default:
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// Is this something we aren't handling yet?
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cerr << "Unknown instruction: " << I;
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errs() << "Unknown instruction: " << I;
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llvm_unreachable(0);
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}
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}
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@ -1398,7 +1398,8 @@ bool Andersens::Node::intersectsIgnoring(Node *N, unsigned Ignoring) const {
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void dumpToDOUT(SparseBitVector<> *bitmap) {
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#ifndef NDEBUG
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dump(*bitmap, DOUT);
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raw_os_ostream OS(*DOUT);
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dump(*bitmap, OS);
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#endif
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}
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@ -2778,17 +2779,17 @@ unsigned Andersens::FindNode(unsigned NodeIndex) const {
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void Andersens::PrintNode(const Node *N) const {
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if (N == &GraphNodes[UniversalSet]) {
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cerr << "<universal>";
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errs() << "<universal>";
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return;
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} else if (N == &GraphNodes[NullPtr]) {
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cerr << "<nullptr>";
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errs() << "<nullptr>";
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return;
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} else if (N == &GraphNodes[NullObject]) {
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cerr << "<null>";
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errs() << "<null>";
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return;
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}
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if (!N->getValue()) {
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cerr << "artificial" << (intptr_t) N;
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errs() << "artificial" << (intptr_t) N;
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return;
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}
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@ -2797,85 +2798,85 @@ void Andersens::PrintNode(const Node *N) const {
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if (Function *F = dyn_cast<Function>(V)) {
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if (isa<PointerType>(F->getFunctionType()->getReturnType()) &&
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N == &GraphNodes[getReturnNode(F)]) {
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cerr << F->getName() << ":retval";
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errs() << F->getName() << ":retval";
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return;
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} else if (F->getFunctionType()->isVarArg() &&
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N == &GraphNodes[getVarargNode(F)]) {
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cerr << F->getName() << ":vararg";
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errs() << F->getName() << ":vararg";
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return;
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}
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}
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if (Instruction *I = dyn_cast<Instruction>(V))
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cerr << I->getParent()->getParent()->getName() << ":";
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errs() << I->getParent()->getParent()->getName() << ":";
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else if (Argument *Arg = dyn_cast<Argument>(V))
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cerr << Arg->getParent()->getName() << ":";
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errs() << Arg->getParent()->getName() << ":";
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if (V->hasName())
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cerr << V->getName();
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errs() << V->getName();
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else
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cerr << "(unnamed)";
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errs() << "(unnamed)";
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if (isa<GlobalValue>(V) || isa<AllocationInst>(V))
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if (N == &GraphNodes[getObject(V)])
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cerr << "<mem>";
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errs() << "<mem>";
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}
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void Andersens::PrintConstraint(const Constraint &C) const {
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if (C.Type == Constraint::Store) {
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cerr << "*";
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errs() << "*";
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if (C.Offset != 0)
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cerr << "(";
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errs() << "(";
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}
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PrintNode(&GraphNodes[C.Dest]);
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if (C.Type == Constraint::Store && C.Offset != 0)
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cerr << " + " << C.Offset << ")";
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cerr << " = ";
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errs() << " + " << C.Offset << ")";
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errs() << " = ";
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if (C.Type == Constraint::Load) {
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cerr << "*";
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errs() << "*";
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if (C.Offset != 0)
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cerr << "(";
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errs() << "(";
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}
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else if (C.Type == Constraint::AddressOf)
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cerr << "&";
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errs() << "&";
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PrintNode(&GraphNodes[C.Src]);
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if (C.Offset != 0 && C.Type != Constraint::Store)
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cerr << " + " << C.Offset;
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errs() << " + " << C.Offset;
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if (C.Type == Constraint::Load && C.Offset != 0)
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cerr << ")";
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cerr << "\n";
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errs() << ")";
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errs() << "\n";
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}
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void Andersens::PrintConstraints() const {
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cerr << "Constraints:\n";
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errs() << "Constraints:\n";
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for (unsigned i = 0, e = Constraints.size(); i != e; ++i)
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PrintConstraint(Constraints[i]);
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}
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void Andersens::PrintPointsToGraph() const {
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cerr << "Points-to graph:\n";
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errs() << "Points-to graph:\n";
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for (unsigned i = 0, e = GraphNodes.size(); i != e; ++i) {
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const Node *N = &GraphNodes[i];
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if (FindNode(i) != i) {
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PrintNode(N);
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cerr << "\t--> same as ";
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errs() << "\t--> same as ";
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PrintNode(&GraphNodes[FindNode(i)]);
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cerr << "\n";
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errs() << "\n";
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} else {
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cerr << "[" << (N->PointsTo->count()) << "] ";
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errs() << "[" << (N->PointsTo->count()) << "] ";
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PrintNode(N);
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cerr << "\t--> ";
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errs() << "\t--> ";
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bool first = true;
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for (SparseBitVector<>::iterator bi = N->PointsTo->begin();
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bi != N->PointsTo->end();
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++bi) {
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if (!first)
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cerr << ", ";
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errs() << ", ";
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PrintNode(&GraphNodes[*bi]);
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first = false;
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}
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cerr << "\n";
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errs() << "\n";
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}
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}
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}
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@ -594,9 +594,9 @@ bool LiveIntervals::conflictsWithPhysRegRef(LiveInterval &li,
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void LiveIntervals::printRegName(unsigned reg) const {
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if (TargetRegisterInfo::isPhysicalRegister(reg))
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cerr << tri_->getName(reg);
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errs() << tri_->getName(reg);
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else
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cerr << "%reg" << reg;
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errs() << "%reg" << reg;
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}
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void LiveIntervals::handleVirtualRegisterDef(MachineBasicBlock *mbb,
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@ -19,6 +19,7 @@
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#include "llvm/Target/TargetInstrInfo.h"
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#include "llvm/Target/TargetRegisterInfo.h"
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#include "llvm/Support/Debug.h"
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#include "llvm/Support/raw_ostream.h"
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#include <climits>
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using namespace llvm;
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@ -40,7 +41,7 @@ void ScheduleDAG::dumpSchedule() const {
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if (SUnit *SU = Sequence[i])
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SU->dump(this);
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else
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cerr << "**** NOOP ****\n";
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errs() << "**** NOOP ****\n";
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}
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}
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@ -256,56 +257,56 @@ void SUnit::ComputeHeight() {
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/// SUnit - Scheduling unit. It's an wrapper around either a single SDNode or
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/// a group of nodes flagged together.
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void SUnit::dump(const ScheduleDAG *G) const {
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cerr << "SU(" << NodeNum << "): ";
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errs() << "SU(" << NodeNum << "): ";
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G->dumpNode(this);
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}
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void SUnit::dumpAll(const ScheduleDAG *G) const {
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dump(G);
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cerr << " # preds left : " << NumPredsLeft << "\n";
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cerr << " # succs left : " << NumSuccsLeft << "\n";
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cerr << " Latency : " << Latency << "\n";
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cerr << " Depth : " << Depth << "\n";
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cerr << " Height : " << Height << "\n";
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errs() << " # preds left : " << NumPredsLeft << "\n";
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errs() << " # succs left : " << NumSuccsLeft << "\n";
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errs() << " Latency : " << Latency << "\n";
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errs() << " Depth : " << Depth << "\n";
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errs() << " Height : " << Height << "\n";
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if (Preds.size() != 0) {
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cerr << " Predecessors:\n";
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errs() << " Predecessors:\n";
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for (SUnit::const_succ_iterator I = Preds.begin(), E = Preds.end();
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I != E; ++I) {
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cerr << " ";
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errs() << " ";
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switch (I->getKind()) {
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case SDep::Data: cerr << "val "; break;
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case SDep::Anti: cerr << "anti"; break;
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case SDep::Output: cerr << "out "; break;
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case SDep::Order: cerr << "ch "; break;
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case SDep::Data: errs() << "val "; break;
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case SDep::Anti: errs() << "anti"; break;
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case SDep::Output: errs() << "out "; break;
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case SDep::Order: errs() << "ch "; break;
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}
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cerr << "#";
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cerr << I->getSUnit() << " - SU(" << I->getSUnit()->NodeNum << ")";
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errs() << "#";
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errs() << I->getSUnit() << " - SU(" << I->getSUnit()->NodeNum << ")";
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if (I->isArtificial())
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cerr << " *";
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cerr << "\n";
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errs() << " *";
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errs() << "\n";
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}
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}
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if (Succs.size() != 0) {
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cerr << " Successors:\n";
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errs() << " Successors:\n";
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for (SUnit::const_succ_iterator I = Succs.begin(), E = Succs.end();
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I != E; ++I) {
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cerr << " ";
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errs() << " ";
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switch (I->getKind()) {
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case SDep::Data: cerr << "val "; break;
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case SDep::Anti: cerr << "anti"; break;
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case SDep::Output: cerr << "out "; break;
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case SDep::Order: cerr << "ch "; break;
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case SDep::Data: errs() << "val "; break;
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case SDep::Anti: errs() << "anti"; break;
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case SDep::Output: errs() << "out "; break;
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case SDep::Order: errs() << "ch "; break;
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}
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cerr << "#";
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cerr << I->getSUnit() << " - SU(" << I->getSUnit()->NodeNum << ")";
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errs() << "#";
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errs() << I->getSUnit() << " - SU(" << I->getSUnit()->NodeNum << ")";
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if (I->isArtificial())
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cerr << " *";
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cerr << "\n";
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errs() << " *";
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errs() << "\n";
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}
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}
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cerr << "\n";
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errs() << "\n";
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}
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#ifndef NDEBUG
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@ -323,35 +324,35 @@ void ScheduleDAG::VerifySchedule(bool isBottomUp) {
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continue;
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}
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if (!AnyNotSched)
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cerr << "*** Scheduling failed! ***\n";
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errs() << "*** Scheduling failed! ***\n";
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SUnits[i].dump(this);
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cerr << "has not been scheduled!\n";
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errs() << "has not been scheduled!\n";
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AnyNotSched = true;
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}
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if (SUnits[i].isScheduled &&
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(isBottomUp ? SUnits[i].getHeight() : SUnits[i].getHeight()) >
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unsigned(INT_MAX)) {
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if (!AnyNotSched)
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cerr << "*** Scheduling failed! ***\n";
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errs() << "*** Scheduling failed! ***\n";
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SUnits[i].dump(this);
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cerr << "has an unexpected "
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errs() << "has an unexpected "
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<< (isBottomUp ? "Height" : "Depth") << " value!\n";
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AnyNotSched = true;
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}
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if (isBottomUp) {
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if (SUnits[i].NumSuccsLeft != 0) {
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if (!AnyNotSched)
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cerr << "*** Scheduling failed! ***\n";
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errs() << "*** Scheduling failed! ***\n";
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SUnits[i].dump(this);
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cerr << "has successors left!\n";
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errs() << "has successors left!\n";
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AnyNotSched = true;
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}
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} else {
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if (SUnits[i].NumPredsLeft != 0) {
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if (!AnyNotSched)
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cerr << "*** Scheduling failed! ***\n";
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errs() << "*** Scheduling failed! ***\n";
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SUnits[i].dump(this);
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cerr << "has predecessors left!\n";
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errs() << "has predecessors left!\n";
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AnyNotSched = true;
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}
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}
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