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			288 lines
		
	
	
		
			8.9 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			288 lines
		
	
	
		
			8.9 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| //===- MCExpr.cpp - Assembly Level Expression Implementation --------------===//
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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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| #include "llvm/MC/MCExpr.h"
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| #include "llvm/MC/MCContext.h"
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| #include "llvm/MC/MCSymbol.h"
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| #include "llvm/MC/MCValue.h"
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| #include "llvm/Support/raw_ostream.h"
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| using namespace llvm;
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| 
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| void MCExpr::print(raw_ostream &OS, const MCAsmInfo *MAI) const {
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|   switch (getKind()) {
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|   case MCExpr::Constant:
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|     OS << cast<MCConstantExpr>(*this).getValue();
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|     return;
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| 
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|   case MCExpr::SymbolRef: {
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|     const MCSymbol &Sym = cast<MCSymbolRefExpr>(*this).getSymbol();
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|     
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|     // Parenthesize names that start with $ so that they don't look like
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|     // absolute names.
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|     if (Sym.getName()[0] == '$') {
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|       OS << '(';
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|       Sym.print(OS, MAI);
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|       OS << ')';
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|     } else {
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|       Sym.print(OS, MAI);
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|     }
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|     return;
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|   }
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| 
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|   case MCExpr::Unary: {
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|     const MCUnaryExpr &UE = cast<MCUnaryExpr>(*this);
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|     switch (UE.getOpcode()) {
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|     default: assert(0 && "Invalid opcode!");
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|     case MCUnaryExpr::LNot:  OS << '!'; break;
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|     case MCUnaryExpr::Minus: OS << '-'; break;
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|     case MCUnaryExpr::Not:   OS << '~'; break;
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|     case MCUnaryExpr::Plus:  OS << '+'; break;
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|     }
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|     UE.getSubExpr()->print(OS, MAI);
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|     return;
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|   }
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| 
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|   case MCExpr::Binary: {
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|     const MCBinaryExpr &BE = cast<MCBinaryExpr>(*this);
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|     
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|     // Only print parens around the LHS if it is non-trivial.
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|     if (isa<MCConstantExpr>(BE.getLHS()) || isa<MCSymbolRefExpr>(BE.getLHS())) {
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|       BE.getLHS()->print(OS, MAI);
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|     } else {
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|       OS << '(';
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|       BE.getLHS()->print(OS, MAI);
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|       OS << ')';
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|     }
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|     
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|     switch (BE.getOpcode()) {
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|     default: assert(0 && "Invalid opcode!");
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|     case MCBinaryExpr::Add:
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|       // Print "X-42" instead of "X+-42".
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|       if (const MCConstantExpr *RHSC = dyn_cast<MCConstantExpr>(BE.getRHS())) {
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|         if (RHSC->getValue() < 0) {
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|           OS << RHSC->getValue();
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|           return;
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|         }
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|       }
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|         
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|       OS <<  '+';
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|       break;
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|     case MCBinaryExpr::And:  OS <<  '&'; break;
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|     case MCBinaryExpr::Div:  OS <<  '/'; break;
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|     case MCBinaryExpr::EQ:   OS << "=="; break;
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|     case MCBinaryExpr::GT:   OS <<  '>'; break;
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|     case MCBinaryExpr::GTE:  OS << ">="; break;
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|     case MCBinaryExpr::LAnd: OS << "&&"; break;
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|     case MCBinaryExpr::LOr:  OS << "||"; break;
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|     case MCBinaryExpr::LT:   OS <<  '<'; break;
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|     case MCBinaryExpr::LTE:  OS << "<="; break;
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|     case MCBinaryExpr::Mod:  OS <<  '%'; break;
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|     case MCBinaryExpr::Mul:  OS <<  '*'; break;
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|     case MCBinaryExpr::NE:   OS << "!="; break;
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|     case MCBinaryExpr::Or:   OS <<  '|'; break;
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|     case MCBinaryExpr::Shl:  OS << "<<"; break;
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|     case MCBinaryExpr::Shr:  OS << ">>"; break;
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|     case MCBinaryExpr::Sub:  OS <<  '-'; break;
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|     case MCBinaryExpr::Xor:  OS <<  '^'; break;
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|     }
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|     
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|     // Only print parens around the LHS if it is non-trivial.
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|     if (isa<MCConstantExpr>(BE.getRHS()) || isa<MCSymbolRefExpr>(BE.getRHS())) {
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|       BE.getRHS()->print(OS, MAI);
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|     } else {
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|       OS << '(';
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|       BE.getRHS()->print(OS, MAI);
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|       OS << ')';
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|     }
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|     return;
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|   }
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|   }
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| 
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|   assert(0 && "Invalid expression kind!");
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| }
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| 
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| void MCExpr::dump() const {
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|   print(errs(), 0);
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|   errs() << '\n';
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| }
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| 
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| /* *** */
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| 
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| const MCBinaryExpr *MCBinaryExpr::Create(Opcode Opc, const MCExpr *LHS,
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|                                          const MCExpr *RHS, MCContext &Ctx) {
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|   return new (Ctx) MCBinaryExpr(Opc, LHS, RHS);
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| }
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| 
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| const MCUnaryExpr *MCUnaryExpr::Create(Opcode Opc, const MCExpr *Expr,
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|                                        MCContext &Ctx) {
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|   return new (Ctx) MCUnaryExpr(Opc, Expr);
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| }
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| 
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| const MCConstantExpr *MCConstantExpr::Create(int64_t Value, MCContext &Ctx) {
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|   return new (Ctx) MCConstantExpr(Value);
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| }
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| 
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| const MCSymbolRefExpr *MCSymbolRefExpr::Create(const MCSymbol *Sym,
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|                                                MCContext &Ctx) {
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|   return new (Ctx) MCSymbolRefExpr(Sym);
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| }
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| 
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| const MCSymbolRefExpr *MCSymbolRefExpr::Create(StringRef Name, MCContext &Ctx) {
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|   return Create(Ctx.GetOrCreateSymbol(Name), Ctx);
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| }
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| 
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| 
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| /* *** */
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| 
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| bool MCExpr::EvaluateAsAbsolute(int64_t &Res) const {
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|   MCValue Value;
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|   
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|   if (!EvaluateAsRelocatable(Value) || !Value.isAbsolute())
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|     return false;
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| 
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|   Res = Value.getConstant();
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|   return true;
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| }
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| 
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| static bool EvaluateSymbolicAdd(const MCValue &LHS, const MCSymbol *RHS_A, 
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|                                 const MCSymbol *RHS_B, int64_t RHS_Cst,
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|                                 MCValue &Res) {
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|   // We can't add or subtract two symbols.
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|   if ((LHS.getSymA() && RHS_A) ||
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|       (LHS.getSymB() && RHS_B))
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|     return false;
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| 
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|   const MCSymbol *A = LHS.getSymA() ? LHS.getSymA() : RHS_A;
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|   const MCSymbol *B = LHS.getSymB() ? LHS.getSymB() : RHS_B;
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|   if (B) {
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|     // If we have a negated symbol, then we must have also have a non-negated
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|     // symbol in order to encode the expression. We can do this check later to
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|     // permit expressions which eventually fold to a representable form -- such
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|     // as (a + (0 - b)) -- if necessary.
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|     if (!A)
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|       return false;
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|   }
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|   Res = MCValue::get(A, B, LHS.getConstant() + RHS_Cst);
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|   return true;
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| }
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| 
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| bool MCExpr::EvaluateAsRelocatable(MCValue &Res) const {
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|   switch (getKind()) {
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|   case Constant:
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|     Res = MCValue::get(cast<MCConstantExpr>(this)->getValue());
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|     return true;
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| 
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|   case SymbolRef: {
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|     const MCSymbol &Sym = cast<MCSymbolRefExpr>(this)->getSymbol();
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| 
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|     // Evaluate recursively if this is a variable.
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|     if (Sym.isVariable())
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|       return Sym.getValue()->EvaluateAsRelocatable(Res);
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| 
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|     Res = MCValue::get(&Sym, 0, 0);
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|     return true;
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|   }
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| 
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|   case Unary: {
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|     const MCUnaryExpr *AUE = cast<MCUnaryExpr>(this);
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|     MCValue Value;
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| 
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|     if (!AUE->getSubExpr()->EvaluateAsRelocatable(Value))
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|       return false;
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| 
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|     switch (AUE->getOpcode()) {
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|     case MCUnaryExpr::LNot:
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|       if (!Value.isAbsolute())
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|         return false;
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|       Res = MCValue::get(!Value.getConstant());
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|       break;
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|     case MCUnaryExpr::Minus:
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|       /// -(a - b + const) ==> (b - a - const)
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|       if (Value.getSymA() && !Value.getSymB())
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|         return false;
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|       Res = MCValue::get(Value.getSymB(), Value.getSymA(), 
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|                          -Value.getConstant()); 
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|       break;
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|     case MCUnaryExpr::Not:
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|       if (!Value.isAbsolute())
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|         return false;
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|       Res = MCValue::get(~Value.getConstant()); 
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|       break;
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|     case MCUnaryExpr::Plus:
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|       Res = Value;
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|       break;
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|     }
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| 
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|     return true;
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|   }
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| 
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|   case Binary: {
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|     const MCBinaryExpr *ABE = cast<MCBinaryExpr>(this);
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|     MCValue LHSValue, RHSValue;
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|     
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|     if (!ABE->getLHS()->EvaluateAsRelocatable(LHSValue) ||
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|         !ABE->getRHS()->EvaluateAsRelocatable(RHSValue))
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|       return false;
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| 
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|     // We only support a few operations on non-constant expressions, handle
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|     // those first.
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|     if (!LHSValue.isAbsolute() || !RHSValue.isAbsolute()) {
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|       switch (ABE->getOpcode()) {
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|       default:
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|         return false;
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|       case MCBinaryExpr::Sub:
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|         // Negate RHS and add.
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|         return EvaluateSymbolicAdd(LHSValue,
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|                                    RHSValue.getSymB(), RHSValue.getSymA(),
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|                                    -RHSValue.getConstant(),
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|                                    Res);
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| 
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|       case MCBinaryExpr::Add:
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|         return EvaluateSymbolicAdd(LHSValue,
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|                                    RHSValue.getSymA(), RHSValue.getSymB(),
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|                                    RHSValue.getConstant(),
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|                                    Res);
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|       }
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|     }
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| 
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|     // FIXME: We need target hooks for the evaluation. It may be limited in
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|     // width, and gas defines the result of comparisons differently from Apple
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|     // as (the result is sign extended).
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|     int64_t LHS = LHSValue.getConstant(), RHS = RHSValue.getConstant();
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|     int64_t Result = 0;
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|     switch (ABE->getOpcode()) {
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|     case MCBinaryExpr::Add:  Result = LHS + RHS; break;
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|     case MCBinaryExpr::And:  Result = LHS & RHS; break;
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|     case MCBinaryExpr::Div:  Result = LHS / RHS; break;
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|     case MCBinaryExpr::EQ:   Result = LHS == RHS; break;
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|     case MCBinaryExpr::GT:   Result = LHS > RHS; break;
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|     case MCBinaryExpr::GTE:  Result = LHS >= RHS; break;
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|     case MCBinaryExpr::LAnd: Result = LHS && RHS; break;
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|     case MCBinaryExpr::LOr:  Result = LHS || RHS; break;
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|     case MCBinaryExpr::LT:   Result = LHS < RHS; break;
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|     case MCBinaryExpr::LTE:  Result = LHS <= RHS; break;
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|     case MCBinaryExpr::Mod:  Result = LHS % RHS; break;
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|     case MCBinaryExpr::Mul:  Result = LHS * RHS; break;
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|     case MCBinaryExpr::NE:   Result = LHS != RHS; break;
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|     case MCBinaryExpr::Or:   Result = LHS | RHS; break;
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|     case MCBinaryExpr::Shl:  Result = LHS << RHS; break;
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|     case MCBinaryExpr::Shr:  Result = LHS >> RHS; break;
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|     case MCBinaryExpr::Sub:  Result = LHS - RHS; break;
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|     case MCBinaryExpr::Xor:  Result = LHS ^ RHS; break;
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|     }
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| 
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|     Res = MCValue::get(Result);
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|     return true;
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|   }
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|   }
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| 
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|   assert(0 && "Invalid assembly expression kind!");
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|   return false;
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| }
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