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Brian Gaeke92bdfe62003-07-23 18:37:06 +00001//===-- X86/Printer.cpp - Convert X86 LLVM code to Intel assembly ---------===//
Chris Lattner72614082002-10-25 22:55:53 +00002//
Brian Gaeke92bdfe62003-07-23 18:37:06 +00003// This file contains a printer that converts from our internal
4// representation of machine-dependent LLVM code to Intel-format
5// assembly language. This printer is the output mechanism used
6// by `llc' and `lli -printmachineinstrs' on X86.
Chris Lattner72614082002-10-25 22:55:53 +00007//
8//===----------------------------------------------------------------------===//
9
10#include "X86.h"
Brian Gaeke6559bb92002-11-14 22:32:30 +000011#include "X86InstrInfo.h"
Chris Lattnere0121322003-08-03 23:37:09 +000012#include "llvm/Module.h"
13#include "llvm/Type.h"
14#include "llvm/Constants.h"
15#include "llvm/DerivedTypes.h"
Brian Gaeke6559bb92002-11-14 22:32:30 +000016#include "llvm/Target/TargetMachine.h"
Chris Lattner0285a332002-12-28 20:25:38 +000017#include "llvm/CodeGen/MachineFunctionPass.h"
Chris Lattnerb7089442003-01-13 00:35:03 +000018#include "llvm/CodeGen/MachineConstantPool.h"
Chris Lattnerdbb61c62002-11-17 22:53:13 +000019#include "llvm/CodeGen/MachineInstr.h"
Brian Gaeke01d79ff2003-06-25 18:01:07 +000020#include "llvm/Assembly/Writer.h"
Brian Gaeked9fb37a2003-07-24 20:20:44 +000021#include "llvm/Support/Mangler.h"
Chris Lattnere0121322003-08-03 23:37:09 +000022#include "Support/StringExtras.h"
Chris Lattner72614082002-10-25 22:55:53 +000023
Chris Lattnerb4f68ed2002-10-29 22:37:54 +000024namespace {
Chris Lattner0285a332002-12-28 20:25:38 +000025 struct Printer : public MachineFunctionPass {
Brian Gaekede420ae2003-07-23 20:25:08 +000026 /// Output stream on which we're printing assembly code.
Brian Gaeke92bdfe62003-07-23 18:37:06 +000027 ///
Chris Lattnerb4f68ed2002-10-29 22:37:54 +000028 std::ostream &O;
Brian Gaekede420ae2003-07-23 20:25:08 +000029
30 /// Target machine description which we query for reg. names, data
31 /// layout, etc.
32 ///
33 TargetMachine &TM;
34
Brian Gaeked9fb37a2003-07-24 20:20:44 +000035 /// Name-mangler for global names.
36 ///
37 Mangler *Mang;
38
Brian Gaekede420ae2003-07-23 20:25:08 +000039 Printer(std::ostream &o, TargetMachine &tm) : O(o), TM(tm) { }
Brian Gaeke92bdfe62003-07-23 18:37:06 +000040
41 /// We name each basic block in a Function with a unique number, so
42 /// that we can consistently refer to them later. This is cleared
43 /// at the beginning of each call to runOnMachineFunction().
44 ///
Brian Gaeked7908f62003-06-27 00:00:48 +000045 typedef std::map<const Value *, unsigned> ValueMapTy;
46 ValueMapTy NumberForBB;
Brian Gaeke92bdfe62003-07-23 18:37:06 +000047
48 /// Cache of mangled name for current function. This is
49 /// recalculated at the beginning of each call to
50 /// runOnMachineFunction().
51 ///
Brian Gaeked7908f62003-06-27 00:00:48 +000052 std::string CurrentFnName;
Brian Gaeke92bdfe62003-07-23 18:37:06 +000053
Chris Lattnerf0eb7be2002-12-15 21:13:40 +000054 virtual const char *getPassName() const {
55 return "X86 Assembly Printer";
56 }
57
Brian Gaeked9fb37a2003-07-24 20:20:44 +000058 void printMachineInstruction(const MachineInstr *MI);
Brian Gaeke92bdfe62003-07-23 18:37:06 +000059 void printOp(const MachineOperand &MO,
Brian Gaeked9fb37a2003-07-24 20:20:44 +000060 bool elideOffsetKeyword = false);
61 void printMemReference(const MachineInstr *MI, unsigned Op);
62 void printConstantPool(MachineConstantPool *MCP);
Brian Gaeke01d79ff2003-06-25 18:01:07 +000063 bool runOnMachineFunction(MachineFunction &F);
Brian Gaeked9fb37a2003-07-24 20:20:44 +000064 std::string ConstantExprToString(const ConstantExpr* CE);
65 std::string valToExprString(const Value* V);
Brian Gaeke9e474c42003-06-19 19:32:32 +000066 bool doInitialization(Module &M);
67 bool doFinalization(Module &M);
Brian Gaeked9fb37a2003-07-24 20:20:44 +000068 void printConstantValueOnly(const Constant* CV, int numPadBytesAfter = 0);
69 void printSingleConstantValue(const Constant* CV);
Chris Lattnerb4f68ed2002-10-29 22:37:54 +000070 };
Brian Gaeked7908f62003-06-27 00:00:48 +000071} // end of anonymous namespace
Chris Lattnerb4f68ed2002-10-29 22:37:54 +000072
Brian Gaeke92bdfe62003-07-23 18:37:06 +000073/// createX86CodePrinterPass - Returns a pass that prints the X86
Brian Gaekede420ae2003-07-23 20:25:08 +000074/// assembly code for a MachineFunction to the given output stream,
75/// using the given target machine description. This should work
76/// regardless of whether the function is in SSA form.
Chris Lattnerdbb61c62002-11-17 22:53:13 +000077///
Brian Gaekede420ae2003-07-23 20:25:08 +000078Pass *createX86CodePrinterPass(std::ostream &o, TargetMachine &tm) {
79 return new Printer(o, tm);
Chris Lattnerdbb61c62002-11-17 22:53:13 +000080}
81
Brian Gaeke92bdfe62003-07-23 18:37:06 +000082/// valToExprString - Helper function for ConstantExprToString().
83/// Appends result to argument string S.
84///
Brian Gaeked9fb37a2003-07-24 20:20:44 +000085std::string Printer::valToExprString(const Value* V) {
Brian Gaeke01d79ff2003-06-25 18:01:07 +000086 std::string S;
87 bool failed = false;
88 if (const Constant* CV = dyn_cast<Constant>(V)) { // symbolic or known
89 if (const ConstantBool *CB = dyn_cast<ConstantBool>(CV))
90 S += std::string(CB == ConstantBool::True ? "1" : "0");
91 else if (const ConstantSInt *CI = dyn_cast<ConstantSInt>(CV))
92 S += itostr(CI->getValue());
93 else if (const ConstantUInt *CI = dyn_cast<ConstantUInt>(CV))
94 S += utostr(CI->getValue());
95 else if (const ConstantFP *CFP = dyn_cast<ConstantFP>(CV))
96 S += ftostr(CFP->getValue());
97 else if (isa<ConstantPointerNull>(CV))
98 S += "0";
99 else if (const ConstantPointerRef *CPR = dyn_cast<ConstantPointerRef>(CV))
100 S += valToExprString(CPR->getValue());
101 else if (const ConstantExpr *CE = dyn_cast<ConstantExpr>(CV))
102 S += ConstantExprToString(CE);
103 else
104 failed = true;
105 } else if (const GlobalValue* GV = dyn_cast<GlobalValue>(V)) {
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000106 S += Mang->getValueName(GV);
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000107 }
108 else
109 failed = true;
110
111 if (failed) {
112 assert(0 && "Cannot convert value to string");
113 S += "<illegal-value>";
114 }
115 return S;
116}
117
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000118/// ConstantExprToString - Convert a ConstantExpr to an asm expression
119/// and return this as a string.
120///
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000121std::string Printer::ConstantExprToString(const ConstantExpr* CE) {
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000122 std::string S;
Brian Gaekede420ae2003-07-23 20:25:08 +0000123 const TargetData &TD = TM.getTargetData();
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000124 switch(CE->getOpcode()) {
125 case Instruction::GetElementPtr:
126 { // generate a symbolic expression for the byte address
127 const Value* ptrVal = CE->getOperand(0);
128 std::vector<Value*> idxVec(CE->op_begin()+1, CE->op_end());
129 S += "(" + valToExprString(ptrVal) + ") + ("
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000130 + utostr(TD.getIndexedOffset(ptrVal->getType(),idxVec)) + ")";
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000131 break;
132 }
133
134 case Instruction::Cast:
Brian Gaekeb3011a02003-07-24 17:30:45 +0000135 // Support only non-converting or widening casts for now, that is,
136 // ones that do not involve a change in value. This assertion is
137 // not a complete check.
138 {
139 Constant *Op = CE->getOperand(0);
140 const Type *OpTy = Op->getType(), *Ty = CE->getType();
141 assert(((isa<PointerType>(OpTy)
142 && (Ty == Type::LongTy || Ty == Type::ULongTy))
143 || (isa<PointerType>(Ty)
144 && (OpTy == Type::LongTy || OpTy == Type::ULongTy)))
145 || (((TD.getTypeSize(Ty) >= TD.getTypeSize(OpTy))
146 && (OpTy-> isLosslesslyConvertibleTo(Ty))))
147 && "FIXME: Don't yet support this kind of constant cast expr");
148 S += "(" + valToExprString(Op) + ")";
149 }
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000150 break;
151
152 case Instruction::Add:
153 S += "(" + valToExprString(CE->getOperand(0)) + ") + ("
154 + valToExprString(CE->getOperand(1)) + ")";
155 break;
156
157 default:
158 assert(0 && "Unsupported operator in ConstantExprToString()");
159 break;
160 }
161
162 return S;
163}
164
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000165/// printSingleConstantValue - Print a single constant value.
166///
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000167void
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000168Printer::printSingleConstantValue(const Constant* CV)
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000169{
170 assert(CV->getType() != Type::VoidTy &&
171 CV->getType() != Type::TypeTy &&
172 CV->getType() != Type::LabelTy &&
173 "Unexpected type for Constant");
174
175 assert((!isa<ConstantArray>(CV) && ! isa<ConstantStruct>(CV))
176 && "Aggregate types should be handled outside this function");
177
178 const Type *type = CV->getType();
179 O << "\t";
180 switch(type->getPrimitiveID())
181 {
182 case Type::BoolTyID: case Type::UByteTyID: case Type::SByteTyID:
183 O << ".byte";
184 break;
185 case Type::UShortTyID: case Type::ShortTyID:
186 O << ".word";
187 break;
188 case Type::UIntTyID: case Type::IntTyID: case Type::PointerTyID:
189 O << ".long";
190 break;
191 case Type::ULongTyID: case Type::LongTyID:
192 O << ".quad";
193 break;
194 case Type::FloatTyID:
195 O << ".long";
196 break;
197 case Type::DoubleTyID:
198 O << ".quad";
199 break;
200 case Type::ArrayTyID:
201 if ((cast<ArrayType>(type)->getElementType() == Type::UByteTy) ||
202 (cast<ArrayType>(type)->getElementType() == Type::SByteTy))
203 O << ".string";
204 else
205 assert (0 && "Can't handle printing this type of array");
206 break;
207 default:
208 assert (0 && "Can't handle printing this type of thing");
209 break;
210 }
211 O << "\t";
212
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000213 if (const ConstantExpr* CE = dyn_cast<ConstantExpr>(CV))
214 {
215 // Constant expression built from operators, constants, and
216 // symbolic addrs
217 O << ConstantExprToString(CE) << "\n";
218 }
219 else if (type->isPrimitiveType())
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000220 {
221 if (type->isFloatingPoint()) {
222 // FP Constants are printed as integer constants to avoid losing
223 // precision...
224 double Val = cast<ConstantFP>(CV)->getValue();
225 if (type == Type::FloatTy) {
226 float FVal = (float)Val;
227 char *ProxyPtr = (char*)&FVal; // Abide by C TBAA rules
228 O << *(unsigned int*)ProxyPtr;
229 } else if (type == Type::DoubleTy) {
230 char *ProxyPtr = (char*)&Val; // Abide by C TBAA rules
231 O << *(uint64_t*)ProxyPtr;
232 } else {
233 assert(0 && "Unknown floating point type!");
234 }
235
236 O << "\t# " << type->getDescription() << " value: " << Val << "\n";
237 } else {
238 WriteAsOperand(O, CV, false, false) << "\n";
239 }
240 }
241 else if (const ConstantPointerRef* CPR = dyn_cast<ConstantPointerRef>(CV))
242 {
243 // This is a constant address for a global variable or method.
244 // Use the name of the variable or method as the address value.
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000245 O << Mang->getValueName(CPR->getValue()) << "\n";
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000246 }
247 else if (isa<ConstantPointerNull>(CV))
248 {
249 // Null pointer value
250 O << "0\n";
251 }
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000252 else
253 {
254 assert(0 && "Unknown elementary type for constant");
255 }
256}
257
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000258/// isStringCompatible - Can we treat the specified array as a string?
259/// Only if it is an array of ubytes or non-negative sbytes.
260///
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000261static bool isStringCompatible(const ConstantArray *CVA) {
262 const Type *ETy = cast<ArrayType>(CVA->getType())->getElementType();
263 if (ETy == Type::UByteTy) return true;
264 if (ETy != Type::SByteTy) return false;
265
266 for (unsigned i = 0; i < CVA->getNumOperands(); ++i)
267 if (cast<ConstantSInt>(CVA->getOperand(i))->getValue() < 0)
268 return false;
269
270 return true;
271}
272
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000273/// toOctal - Convert the low order bits of X into an octal digit.
274///
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000275static inline char toOctal(int X) {
276 return (X&7)+'0';
277}
278
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000279/// getAsCString - Return the specified array as a C compatible
280/// string, only if the predicate isStringCompatible is true.
281///
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000282static std::string getAsCString(const ConstantArray *CVA) {
283 assert(isStringCompatible(CVA) && "Array is not string compatible!");
284
285 std::string Result;
286 const Type *ETy = cast<ArrayType>(CVA->getType())->getElementType();
287 Result = "\"";
288 for (unsigned i = 0; i < CVA->getNumOperands(); ++i) {
Chris Lattnerc07736a2003-07-23 15:22:26 +0000289 unsigned char C = cast<ConstantInt>(CVA->getOperand(i))->getRawValue();
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000290
291 if (C == '"') {
292 Result += "\\\"";
293 } else if (C == '\\') {
294 Result += "\\\\";
295 } else if (isprint(C)) {
296 Result += C;
297 } else {
298 switch(C) {
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000299 case '\b': Result += "\\b"; break;
300 case '\f': Result += "\\f"; break;
301 case '\n': Result += "\\n"; break;
302 case '\r': Result += "\\r"; break;
303 case '\t': Result += "\\t"; break;
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000304 default:
305 Result += '\\';
306 Result += toOctal(C >> 6);
307 Result += toOctal(C >> 3);
308 Result += toOctal(C >> 0);
309 break;
310 }
311 }
312 }
313 Result += "\"";
314 return Result;
315}
316
317// Print a constant value or values (it may be an aggregate).
318// Uses printSingleConstantValue() to print each individual value.
319void
320Printer::printConstantValueOnly(const Constant* CV,
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000321 int numPadBytesAfter /* = 0 */)
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000322{
323 const ConstantArray *CVA = dyn_cast<ConstantArray>(CV);
Brian Gaekede420ae2003-07-23 20:25:08 +0000324 const TargetData &TD = TM.getTargetData();
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000325
326 if (CVA && isStringCompatible(CVA))
327 { // print the string alone and return
Chris Lattnere0121322003-08-03 23:37:09 +0000328 O << "\t.string\t" << getAsCString(CVA) << "\n";
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000329 }
330 else if (CVA)
331 { // Not a string. Print the values in successive locations
332 const std::vector<Use> &constValues = CVA->getValues();
333 for (unsigned i=0; i < constValues.size(); i++)
334 printConstantValueOnly(cast<Constant>(constValues[i].get()));
335 }
336 else if (const ConstantStruct *CVS = dyn_cast<ConstantStruct>(CV))
337 { // Print the fields in successive locations. Pad to align if needed!
338 const StructLayout *cvsLayout =
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000339 TD.getStructLayout(CVS->getType());
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000340 const std::vector<Use>& constValues = CVS->getValues();
341 unsigned sizeSoFar = 0;
342 for (unsigned i=0, N = constValues.size(); i < N; i++)
343 {
344 const Constant* field = cast<Constant>(constValues[i].get());
345
346 // Check if padding is needed and insert one or more 0s.
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000347 unsigned fieldSize = TD.getTypeSize(field->getType());
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000348 int padSize = ((i == N-1? cvsLayout->StructSize
349 : cvsLayout->MemberOffsets[i+1])
350 - cvsLayout->MemberOffsets[i]) - fieldSize;
351 sizeSoFar += (fieldSize + padSize);
352
353 // Now print the actual field value
354 printConstantValueOnly(field, padSize);
355 }
356 assert(sizeSoFar == cvsLayout->StructSize &&
357 "Layout of constant struct may be incorrect!");
358 }
359 else
360 printSingleConstantValue(CV);
361
Chris Lattnere0121322003-08-03 23:37:09 +0000362 if (numPadBytesAfter) O << "\t.zero\t " << numPadBytesAfter << "\n";
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000363}
Chris Lattnerdbb61c62002-11-17 22:53:13 +0000364
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000365/// printConstantPool - Print to the current output stream assembly
366/// representations of the constants in the constant pool MCP. This is
367/// used to print out constants which have been "spilled to memory" by
368/// the code generator.
369///
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000370void Printer::printConstantPool(MachineConstantPool *MCP) {
Chris Lattnerb7089442003-01-13 00:35:03 +0000371 const std::vector<Constant*> &CP = MCP->getConstants();
Brian Gaekede420ae2003-07-23 20:25:08 +0000372 const TargetData &TD = TM.getTargetData();
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000373
Chris Lattnerb7089442003-01-13 00:35:03 +0000374 if (CP.empty()) return;
375
376 for (unsigned i = 0, e = CP.size(); i != e; ++i) {
377 O << "\t.section .rodata\n";
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000378 O << "\t.align " << (unsigned)TD.getTypeAlignment(CP[i]->getType())
Brian Gaeke5e001572003-06-26 18:02:30 +0000379 << "\n";
Brian Gaeked7908f62003-06-27 00:00:48 +0000380 O << ".CPI" << CurrentFnName << "_" << i << ":\t\t\t\t\t#"
381 << *CP[i] << "\n";
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000382 printConstantValueOnly (CP[i]);
Chris Lattnerb7089442003-01-13 00:35:03 +0000383 }
Chris Lattnerb7089442003-01-13 00:35:03 +0000384}
385
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000386/// runOnMachineFunction - This uses the printMachineInstruction()
387/// method to print assembly for each instruction.
388///
Chris Lattner0285a332002-12-28 20:25:38 +0000389bool Printer::runOnMachineFunction(MachineFunction &MF) {
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000390 // BBNumber is used here so that a given Printer will never give two
391 // BBs the same name. (If you have a better way, please let me know!)
Chris Lattner0285a332002-12-28 20:25:38 +0000392 static unsigned BBNumber = 0;
Brian Gaeke6559bb92002-11-14 22:32:30 +0000393
Chris Lattnere0121322003-08-03 23:37:09 +0000394 O << "\n\n";
Brian Gaeked7908f62003-06-27 00:00:48 +0000395 // What's my mangled name?
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000396 CurrentFnName = Mang->getValueName(MF.getFunction());
Brian Gaeked7908f62003-06-27 00:00:48 +0000397
Chris Lattnerb7089442003-01-13 00:35:03 +0000398 // Print out constants referenced by the function
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000399 printConstantPool(MF.getConstantPool());
Chris Lattnerb7089442003-01-13 00:35:03 +0000400
Brian Gaeke6559bb92002-11-14 22:32:30 +0000401 // Print out labels for the function.
Chris Lattnerb7089442003-01-13 00:35:03 +0000402 O << "\t.text\n";
403 O << "\t.align 16\n";
Brian Gaeked7908f62003-06-27 00:00:48 +0000404 O << "\t.globl\t" << CurrentFnName << "\n";
405 O << "\t.type\t" << CurrentFnName << ", @function\n";
406 O << CurrentFnName << ":\n";
Brian Gaeke6559bb92002-11-14 22:32:30 +0000407
Brian Gaeked7908f62003-06-27 00:00:48 +0000408 // Number each basic block so that we can consistently refer to them
409 // in PC-relative references.
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000410 NumberForBB.clear();
411 for (MachineFunction::const_iterator I = MF.begin(), E = MF.end();
412 I != E; ++I) {
413 NumberForBB[I->getBasicBlock()] = BBNumber++;
414 }
415
Brian Gaeke6559bb92002-11-14 22:32:30 +0000416 // Print out code for the function.
Chris Lattner0285a332002-12-28 20:25:38 +0000417 for (MachineFunction::const_iterator I = MF.begin(), E = MF.end();
418 I != E; ++I) {
419 // Print a label for the basic block.
Brian Gaeke002a50a2003-07-31 17:38:52 +0000420 O << ".LBB" << NumberForBB[I->getBasicBlock()] << ":\t# "
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000421 << I->getBasicBlock()->getName() << "\n";
Chris Lattner0285a332002-12-28 20:25:38 +0000422 for (MachineBasicBlock::const_iterator II = I->begin(), E = I->end();
423 II != E; ++II) {
424 // Print the assembly for the instruction.
425 O << "\t";
Brian Gaekede420ae2003-07-23 20:25:08 +0000426 printMachineInstruction(*II);
Brian Gaeke6559bb92002-11-14 22:32:30 +0000427 }
Chris Lattner0285a332002-12-28 20:25:38 +0000428 }
Brian Gaeke6559bb92002-11-14 22:32:30 +0000429
430 // We didn't modify anything.
Chris Lattnerb4f68ed2002-10-29 22:37:54 +0000431 return false;
432}
433
Chris Lattner3d3067b2002-11-21 20:44:15 +0000434static bool isScale(const MachineOperand &MO) {
Chris Lattnerd9096832002-12-15 08:01:39 +0000435 return MO.isImmediate() &&
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000436 (MO.getImmedValue() == 1 || MO.getImmedValue() == 2 ||
437 MO.getImmedValue() == 4 || MO.getImmedValue() == 8);
Chris Lattner3d3067b2002-11-21 20:44:15 +0000438}
439
440static bool isMem(const MachineInstr *MI, unsigned Op) {
Chris Lattnerb7089442003-01-13 00:35:03 +0000441 if (MI->getOperand(Op).isFrameIndex()) return true;
442 if (MI->getOperand(Op).isConstantPoolIndex()) return true;
Chris Lattner3d3067b2002-11-21 20:44:15 +0000443 return Op+4 <= MI->getNumOperands() &&
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000444 MI->getOperand(Op ).isRegister() &&isScale(MI->getOperand(Op+1)) &&
445 MI->getOperand(Op+2).isRegister() &&MI->getOperand(Op+3).isImmediate();
Chris Lattner3d3067b2002-11-21 20:44:15 +0000446}
447
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000448void Printer::printOp(const MachineOperand &MO,
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000449 bool elideOffsetKeyword /* = false */) {
Brian Gaekede420ae2003-07-23 20:25:08 +0000450 const MRegisterInfo &RI = *TM.getRegisterInfo();
Chris Lattnerf9f60882002-11-18 06:56:51 +0000451 switch (MO.getType()) {
452 case MachineOperand::MO_VirtualRegister:
Chris Lattnerac573f62002-12-04 17:32:52 +0000453 if (Value *V = MO.getVRegValueOrNull()) {
Chris Lattnerdbf30f72002-12-04 06:45:19 +0000454 O << "<" << V->getName() << ">";
455 return;
456 }
Chris Lattnerb7089442003-01-13 00:35:03 +0000457 // FALLTHROUGH
Misha Brukmane1f0d812002-11-20 18:56:41 +0000458 case MachineOperand::MO_MachineRegister:
Chris Lattnerf9f60882002-11-18 06:56:51 +0000459 if (MO.getReg() < MRegisterInfo::FirstVirtualRegister)
460 O << RI.get(MO.getReg()).Name;
461 else
462 O << "%reg" << MO.getReg();
463 return;
Chris Lattner77875d82002-11-21 02:00:20 +0000464
465 case MachineOperand::MO_SignExtendedImmed:
466 case MachineOperand::MO_UnextendedImmed:
467 O << (int)MO.getImmedValue();
468 return;
Chris Lattnerf8bafe82002-12-01 23:25:59 +0000469 case MachineOperand::MO_PCRelativeDisp:
Brian Gaeked7908f62003-06-27 00:00:48 +0000470 {
471 ValueMapTy::const_iterator i = NumberForBB.find(MO.getVRegValue());
472 assert (i != NumberForBB.end()
473 && "Could not find a BB I previously put in the NumberForBB map!");
Brian Gaeke002a50a2003-07-31 17:38:52 +0000474 O << ".LBB" << i->second << " # PC rel: " << MO.getVRegValue()->getName();
Brian Gaeked7908f62003-06-27 00:00:48 +0000475 }
Chris Lattnerf8bafe82002-12-01 23:25:59 +0000476 return;
Chris Lattnerb7089442003-01-13 00:35:03 +0000477 case MachineOperand::MO_GlobalAddress:
Brian Gaeke002a50a2003-07-31 17:38:52 +0000478 if (!elideOffsetKeyword)
479 O << "OFFSET ";
480 O << Mang->getValueName(MO.getGlobal());
Chris Lattnerb7089442003-01-13 00:35:03 +0000481 return;
482 case MachineOperand::MO_ExternalSymbol:
Brian Gaeke9e474c42003-06-19 19:32:32 +0000483 O << MO.getSymbolName();
Chris Lattnerb7089442003-01-13 00:35:03 +0000484 return;
Chris Lattnerf9f60882002-11-18 06:56:51 +0000485 default:
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000486 O << "<unknown operand type>"; return;
Chris Lattnerf9f60882002-11-18 06:56:51 +0000487 }
488}
489
Chris Lattner3501fea2003-01-14 22:00:31 +0000490static const std::string sizePtr(const TargetInstrDescriptor &Desc) {
Chris Lattnera0f38c82002-12-13 03:51:55 +0000491 switch (Desc.TSFlags & X86II::ArgMask) {
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000492 default: assert(0 && "Unknown arg size!");
493 case X86II::Arg8: return "BYTE PTR";
494 case X86II::Arg16: return "WORD PTR";
495 case X86II::Arg32: return "DWORD PTR";
496 case X86II::Arg64: return "QWORD PTR";
497 case X86II::ArgF32: return "DWORD PTR";
498 case X86II::ArgF64: return "QWORD PTR";
499 case X86II::ArgF80: return "XWORD PTR";
Brian Gaeke86764d72002-12-05 08:30:40 +0000500 }
501}
502
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000503void Printer::printMemReference(const MachineInstr *MI, unsigned Op) {
Brian Gaekede420ae2003-07-23 20:25:08 +0000504 const MRegisterInfo &RI = *TM.getRegisterInfo();
Chris Lattner3d3067b2002-11-21 20:44:15 +0000505 assert(isMem(MI, Op) && "Invalid memory reference!");
Chris Lattnerb7089442003-01-13 00:35:03 +0000506
507 if (MI->getOperand(Op).isFrameIndex()) {
508 O << "[frame slot #" << MI->getOperand(Op).getFrameIndex();
509 if (MI->getOperand(Op+3).getImmedValue())
510 O << " + " << MI->getOperand(Op+3).getImmedValue();
511 O << "]";
512 return;
513 } else if (MI->getOperand(Op).isConstantPoolIndex()) {
Brian Gaeked7908f62003-06-27 00:00:48 +0000514 O << "[.CPI" << CurrentFnName << "_"
Brian Gaeke5e001572003-06-26 18:02:30 +0000515 << MI->getOperand(Op).getConstantPoolIndex();
Chris Lattnerb7089442003-01-13 00:35:03 +0000516 if (MI->getOperand(Op+3).getImmedValue())
517 O << " + " << MI->getOperand(Op+3).getImmedValue();
518 O << "]";
519 return;
520 }
521
Chris Lattner3d3067b2002-11-21 20:44:15 +0000522 const MachineOperand &BaseReg = MI->getOperand(Op);
Chris Lattner0285a332002-12-28 20:25:38 +0000523 int ScaleVal = MI->getOperand(Op+1).getImmedValue();
Chris Lattner3d3067b2002-11-21 20:44:15 +0000524 const MachineOperand &IndexReg = MI->getOperand(Op+2);
Chris Lattner0285a332002-12-28 20:25:38 +0000525 int DispVal = MI->getOperand(Op+3).getImmedValue();
Chris Lattner3d3067b2002-11-21 20:44:15 +0000526
527 O << "[";
528 bool NeedPlus = false;
529 if (BaseReg.getReg()) {
Brian Gaekede420ae2003-07-23 20:25:08 +0000530 printOp(BaseReg);
Chris Lattner3d3067b2002-11-21 20:44:15 +0000531 NeedPlus = true;
532 }
533
534 if (IndexReg.getReg()) {
535 if (NeedPlus) O << " + ";
Chris Lattner0285a332002-12-28 20:25:38 +0000536 if (ScaleVal != 1)
537 O << ScaleVal << "*";
Brian Gaekede420ae2003-07-23 20:25:08 +0000538 printOp(IndexReg);
Chris Lattner3d3067b2002-11-21 20:44:15 +0000539 NeedPlus = true;
540 }
541
Chris Lattner0285a332002-12-28 20:25:38 +0000542 if (DispVal) {
543 if (NeedPlus)
544 if (DispVal > 0)
545 O << " + ";
546 else {
547 O << " - ";
548 DispVal = -DispVal;
549 }
550 O << DispVal;
Chris Lattner3d3067b2002-11-21 20:44:15 +0000551 }
552 O << "]";
553}
554
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000555/// printMachineInstruction -- Print out a single X86 LLVM instruction
Brian Gaekede420ae2003-07-23 20:25:08 +0000556/// MI in Intel syntax to the current output stream.
Brian Gaeked7908f62003-06-27 00:00:48 +0000557///
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000558void Printer::printMachineInstruction(const MachineInstr *MI) {
Chris Lattnerf9f60882002-11-18 06:56:51 +0000559 unsigned Opcode = MI->getOpcode();
Brian Gaeked7908f62003-06-27 00:00:48 +0000560 const TargetInstrInfo &TII = TM.getInstrInfo();
561 const TargetInstrDescriptor &Desc = TII.get(Opcode);
562 const MRegisterInfo &RI = *TM.getRegisterInfo();
Chris Lattnerf9f60882002-11-18 06:56:51 +0000563
Chris Lattnereca1f632002-12-25 05:09:01 +0000564 switch (Desc.TSFlags & X86II::FormMask) {
565 case X86II::Pseudo:
Brian Gaeke9e474c42003-06-19 19:32:32 +0000566 // Print pseudo-instructions as comments; either they should have been
567 // turned into real instructions by now, or they don't need to be
568 // seen by the assembler (e.g., IMPLICIT_USEs.)
569 O << "# ";
Chris Lattnereca1f632002-12-25 05:09:01 +0000570 if (Opcode == X86::PHI) {
Brian Gaekede420ae2003-07-23 20:25:08 +0000571 printOp(MI->getOperand(0));
Chris Lattnereca1f632002-12-25 05:09:01 +0000572 O << " = phi ";
573 for (unsigned i = 1, e = MI->getNumOperands(); i != e; i+=2) {
574 if (i != 1) O << ", ";
575 O << "[";
Brian Gaekede420ae2003-07-23 20:25:08 +0000576 printOp(MI->getOperand(i));
Chris Lattnereca1f632002-12-25 05:09:01 +0000577 O << ", ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000578 printOp(MI->getOperand(i+1));
Chris Lattnereca1f632002-12-25 05:09:01 +0000579 O << "]";
580 }
581 } else {
582 unsigned i = 0;
Vikram S. Adve49cab032003-05-27 00:03:17 +0000583 if (MI->getNumOperands() && (MI->getOperand(0).opIsDefOnly() ||
584 MI->getOperand(0).opIsDefAndUse())) {
Brian Gaekede420ae2003-07-23 20:25:08 +0000585 printOp(MI->getOperand(0));
Chris Lattnereca1f632002-12-25 05:09:01 +0000586 O << " = ";
587 ++i;
588 }
Brian Gaeked7908f62003-06-27 00:00:48 +0000589 O << TII.getName(MI->getOpcode());
Chris Lattnereca1f632002-12-25 05:09:01 +0000590
591 for (unsigned e = MI->getNumOperands(); i != e; ++i) {
592 O << " ";
Vikram S. Adve49cab032003-05-27 00:03:17 +0000593 if (MI->getOperand(i).opIsDefOnly() ||
594 MI->getOperand(i).opIsDefAndUse()) O << "*";
Brian Gaekede420ae2003-07-23 20:25:08 +0000595 printOp(MI->getOperand(i));
Vikram S. Adve49cab032003-05-27 00:03:17 +0000596 if (MI->getOperand(i).opIsDefOnly() ||
597 MI->getOperand(i).opIsDefAndUse()) O << "*";
Chris Lattnereca1f632002-12-25 05:09:01 +0000598 }
Chris Lattner3faae2d2002-12-13 09:59:26 +0000599 }
600 O << "\n";
601 return;
Chris Lattner3faae2d2002-12-13 09:59:26 +0000602
Chris Lattnerf9f60882002-11-18 06:56:51 +0000603 case X86II::RawFrm:
Chris Lattnerf8bafe82002-12-01 23:25:59 +0000604 // The accepted forms of Raw instructions are:
605 // 1. nop - No operand required
606 // 2. jmp foo - PC relative displacement operand
Chris Lattnerb7089442003-01-13 00:35:03 +0000607 // 3. call bar - GlobalAddress Operand or External Symbol Operand
Chris Lattnerf8bafe82002-12-01 23:25:59 +0000608 //
609 assert(MI->getNumOperands() == 0 ||
Chris Lattnerb7089442003-01-13 00:35:03 +0000610 (MI->getNumOperands() == 1 &&
611 (MI->getOperand(0).isPCRelativeDisp() ||
612 MI->getOperand(0).isGlobalAddress() ||
613 MI->getOperand(0).isExternalSymbol())) &&
Chris Lattnerf8bafe82002-12-01 23:25:59 +0000614 "Illegal raw instruction!");
Brian Gaeked7908f62003-06-27 00:00:48 +0000615 O << TII.getName(MI->getOpcode()) << " ";
Chris Lattnerf9f60882002-11-18 06:56:51 +0000616
Chris Lattnerf8bafe82002-12-01 23:25:59 +0000617 if (MI->getNumOperands() == 1) {
Brian Gaekede420ae2003-07-23 20:25:08 +0000618 printOp(MI->getOperand(0), true); // Don't print "OFFSET"...
Chris Lattnerf9f60882002-11-18 06:56:51 +0000619 }
620 O << "\n";
621 return;
622
Chris Lattner77875d82002-11-21 02:00:20 +0000623 case X86II::AddRegFrm: {
624 // There are currently two forms of acceptable AddRegFrm instructions.
625 // Either the instruction JUST takes a single register (like inc, dec, etc),
626 // or it takes a register and an immediate of the same size as the register
Chris Lattnerdbf30f72002-12-04 06:45:19 +0000627 // (move immediate f.e.). Note that this immediate value might be stored as
628 // an LLVM value, to represent, for example, loading the address of a global
Chris Lattnerfacc9fb2002-12-23 23:46:00 +0000629 // into a register. The initial register might be duplicated if this is a
630 // M_2_ADDR_REG instruction
Chris Lattner77875d82002-11-21 02:00:20 +0000631 //
Chris Lattnerd9096832002-12-15 08:01:39 +0000632 assert(MI->getOperand(0).isRegister() &&
Chris Lattner77875d82002-11-21 02:00:20 +0000633 (MI->getNumOperands() == 1 ||
Chris Lattnerdbf30f72002-12-04 06:45:19 +0000634 (MI->getNumOperands() == 2 &&
Chris Lattner6d669442002-12-04 17:28:40 +0000635 (MI->getOperand(1).getVRegValueOrNull() ||
Chris Lattnerfacc9fb2002-12-23 23:46:00 +0000636 MI->getOperand(1).isImmediate() ||
Chris Lattnerb7089442003-01-13 00:35:03 +0000637 MI->getOperand(1).isRegister() ||
638 MI->getOperand(1).isGlobalAddress() ||
639 MI->getOperand(1).isExternalSymbol()))) &&
Chris Lattner77875d82002-11-21 02:00:20 +0000640 "Illegal form for AddRegFrm instruction!");
Chris Lattnerf9f60882002-11-18 06:56:51 +0000641
Chris Lattner77875d82002-11-21 02:00:20 +0000642 unsigned Reg = MI->getOperand(0).getReg();
Chris Lattner77875d82002-11-21 02:00:20 +0000643
Brian Gaeked7908f62003-06-27 00:00:48 +0000644 O << TII.getName(MI->getOpCode()) << " ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000645 printOp(MI->getOperand(0));
Chris Lattnerb7089442003-01-13 00:35:03 +0000646 if (MI->getNumOperands() == 2 &&
647 (!MI->getOperand(1).isRegister() ||
648 MI->getOperand(1).getVRegValueOrNull() ||
649 MI->getOperand(1).isGlobalAddress() ||
650 MI->getOperand(1).isExternalSymbol())) {
Chris Lattner77875d82002-11-21 02:00:20 +0000651 O << ", ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000652 printOp(MI->getOperand(1));
Chris Lattner77875d82002-11-21 02:00:20 +0000653 }
Brian Gaeke1aa476e2003-07-11 18:18:35 +0000654 if (Desc.TSFlags & X86II::PrintImplUses) {
655 for (const unsigned *p = Desc.ImplicitUses; *p; ++p) {
656 O << ", " << RI.get(*p).Name;
657 }
658 }
Chris Lattner77875d82002-11-21 02:00:20 +0000659 O << "\n";
660 return;
661 }
Chris Lattner233ad712002-11-21 01:33:44 +0000662 case X86II::MRMDestReg: {
Chris Lattnerb7089442003-01-13 00:35:03 +0000663 // There are two acceptable forms of MRMDestReg instructions, those with 2,
664 // 3 and 4 operands:
665 //
666 // 2 Operands: this is for things like mov that do not read a second input
Chris Lattnerf9f60882002-11-18 06:56:51 +0000667 //
668 // 3 Operands: in this form, the first two registers (the destination, and
669 // the first operand) should be the same, post register allocation. The 3rd
670 // operand is an additional input. This should be for things like add
671 // instructions.
672 //
Chris Lattnerb7089442003-01-13 00:35:03 +0000673 // 4 Operands: This form is for instructions which are 3 operands forms, but
674 // have a constant argument as well.
Chris Lattnerf9f60882002-11-18 06:56:51 +0000675 //
Brian Gaeked7908f62003-06-27 00:00:48 +0000676 bool isTwoAddr = TII.isTwoAddrInstr(Opcode);
Chris Lattnerd9096832002-12-15 08:01:39 +0000677 assert(MI->getOperand(0).isRegister() &&
Chris Lattnerb7089442003-01-13 00:35:03 +0000678 (MI->getNumOperands() == 2 ||
679 (isTwoAddr && MI->getOperand(1).isRegister() &&
680 MI->getOperand(0).getReg() == MI->getOperand(1).getReg() &&
681 (MI->getNumOperands() == 3 ||
682 (MI->getNumOperands() == 4 && MI->getOperand(3).isImmediate()))))
Misha Brukmane1f0d812002-11-20 18:56:41 +0000683 && "Bad format for MRMDestReg!");
Chris Lattnerf9f60882002-11-18 06:56:51 +0000684
Brian Gaeked7908f62003-06-27 00:00:48 +0000685 O << TII.getName(MI->getOpCode()) << " ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000686 printOp(MI->getOperand(0));
Chris Lattnerf9f60882002-11-18 06:56:51 +0000687 O << ", ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000688 printOp(MI->getOperand(1+isTwoAddr));
Chris Lattnerb7089442003-01-13 00:35:03 +0000689 if (MI->getNumOperands() == 4) {
690 O << ", ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000691 printOp(MI->getOperand(3));
Chris Lattnerb7089442003-01-13 00:35:03 +0000692 }
Chris Lattnerf9f60882002-11-18 06:56:51 +0000693 O << "\n";
694 return;
Chris Lattner233ad712002-11-21 01:33:44 +0000695 }
Chris Lattner18042332002-11-21 21:03:39 +0000696
697 case X86II::MRMDestMem: {
698 // These instructions are the same as MRMDestReg, but instead of having a
699 // register reference for the mod/rm field, it's a memory reference.
700 //
701 assert(isMem(MI, 0) && MI->getNumOperands() == 4+1 &&
Chris Lattnerd9096832002-12-15 08:01:39 +0000702 MI->getOperand(4).isRegister() && "Bad format for MRMDestMem!");
Chris Lattner18042332002-11-21 21:03:39 +0000703
Brian Gaeked7908f62003-06-27 00:00:48 +0000704 O << TII.getName(MI->getOpCode()) << " " << sizePtr(Desc) << " ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000705 printMemReference(MI, 0);
Chris Lattner18042332002-11-21 21:03:39 +0000706 O << ", ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000707 printOp(MI->getOperand(4));
Chris Lattner18042332002-11-21 21:03:39 +0000708 O << "\n";
709 return;
710 }
711
Chris Lattner233ad712002-11-21 01:33:44 +0000712 case X86II::MRMSrcReg: {
Chris Lattner644e1ab2002-11-21 00:30:01 +0000713 // There is a two forms that are acceptable for MRMSrcReg instructions,
714 // those with 3 and 2 operands:
715 //
716 // 3 Operands: in this form, the last register (the second input) is the
717 // ModR/M input. The first two operands should be the same, post register
718 // allocation. This is for things like: add r32, r/m32
719 //
720 // 2 Operands: this is for things like mov that do not read a second input
721 //
Chris Lattnerd9096832002-12-15 08:01:39 +0000722 assert(MI->getOperand(0).isRegister() &&
723 MI->getOperand(1).isRegister() &&
Chris Lattner644e1ab2002-11-21 00:30:01 +0000724 (MI->getNumOperands() == 2 ||
Chris Lattnerd9096832002-12-15 08:01:39 +0000725 (MI->getNumOperands() == 3 && MI->getOperand(2).isRegister()))
Chris Lattnerb7089442003-01-13 00:35:03 +0000726 && "Bad format for MRMSrcReg!");
Chris Lattner644e1ab2002-11-21 00:30:01 +0000727 if (MI->getNumOperands() == 3 &&
728 MI->getOperand(0).getReg() != MI->getOperand(1).getReg())
729 O << "**";
730
Brian Gaeked7908f62003-06-27 00:00:48 +0000731 O << TII.getName(MI->getOpCode()) << " ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000732 printOp(MI->getOperand(0));
Chris Lattner644e1ab2002-11-21 00:30:01 +0000733 O << ", ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000734 printOp(MI->getOperand(MI->getNumOperands()-1));
Chris Lattner644e1ab2002-11-21 00:30:01 +0000735 O << "\n";
736 return;
Chris Lattner233ad712002-11-21 01:33:44 +0000737 }
Chris Lattner675dd2c2002-11-21 17:09:01 +0000738
Chris Lattner3d3067b2002-11-21 20:44:15 +0000739 case X86II::MRMSrcMem: {
740 // These instructions are the same as MRMSrcReg, but instead of having a
741 // register reference for the mod/rm field, it's a memory reference.
Chris Lattner18042332002-11-21 21:03:39 +0000742 //
Chris Lattnerd9096832002-12-15 08:01:39 +0000743 assert(MI->getOperand(0).isRegister() &&
Chris Lattner3d3067b2002-11-21 20:44:15 +0000744 (MI->getNumOperands() == 1+4 && isMem(MI, 1)) ||
Chris Lattnerd9096832002-12-15 08:01:39 +0000745 (MI->getNumOperands() == 2+4 && MI->getOperand(1).isRegister() &&
Chris Lattner3d3067b2002-11-21 20:44:15 +0000746 isMem(MI, 2))
747 && "Bad format for MRMDestReg!");
748 if (MI->getNumOperands() == 2+4 &&
749 MI->getOperand(0).getReg() != MI->getOperand(1).getReg())
750 O << "**";
751
Brian Gaeked7908f62003-06-27 00:00:48 +0000752 O << TII.getName(MI->getOpCode()) << " ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000753 printOp(MI->getOperand(0));
Chris Lattnerb7089442003-01-13 00:35:03 +0000754 O << ", " << sizePtr(Desc) << " ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000755 printMemReference(MI, MI->getNumOperands()-4);
Chris Lattner3d3067b2002-11-21 20:44:15 +0000756 O << "\n";
757 return;
758 }
759
Chris Lattner675dd2c2002-11-21 17:09:01 +0000760 case X86II::MRMS0r: case X86II::MRMS1r:
761 case X86II::MRMS2r: case X86II::MRMS3r:
762 case X86II::MRMS4r: case X86II::MRMS5r:
763 case X86II::MRMS6r: case X86II::MRMS7r: {
Chris Lattner675dd2c2002-11-21 17:09:01 +0000764 // In this form, the following are valid formats:
765 // 1. sete r
Chris Lattner1d53ce42002-11-21 23:30:00 +0000766 // 2. cmp reg, immediate
Chris Lattner675dd2c2002-11-21 17:09:01 +0000767 // 2. shl rdest, rinput <implicit CL or 1>
768 // 3. sbb rdest, rinput, immediate [rdest = rinput]
769 //
770 assert(MI->getNumOperands() > 0 && MI->getNumOperands() < 4 &&
Chris Lattnerd9096832002-12-15 08:01:39 +0000771 MI->getOperand(0).isRegister() && "Bad MRMSxR format!");
Chris Lattner1d53ce42002-11-21 23:30:00 +0000772 assert((MI->getNumOperands() != 2 ||
Chris Lattnerd9096832002-12-15 08:01:39 +0000773 MI->getOperand(1).isRegister() || MI->getOperand(1).isImmediate())&&
Chris Lattner675dd2c2002-11-21 17:09:01 +0000774 "Bad MRMSxR format!");
Chris Lattner1d53ce42002-11-21 23:30:00 +0000775 assert((MI->getNumOperands() < 3 ||
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000776 (MI->getOperand(1).isRegister() && MI->getOperand(2).isImmediate())) &&
Chris Lattner675dd2c2002-11-21 17:09:01 +0000777 "Bad MRMSxR format!");
778
Chris Lattnerd9096832002-12-15 08:01:39 +0000779 if (MI->getNumOperands() > 1 && MI->getOperand(1).isRegister() &&
Chris Lattner675dd2c2002-11-21 17:09:01 +0000780 MI->getOperand(0).getReg() != MI->getOperand(1).getReg())
781 O << "**";
782
Brian Gaeked7908f62003-06-27 00:00:48 +0000783 O << TII.getName(MI->getOpCode()) << " ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000784 printOp(MI->getOperand(0));
Chris Lattnerd9096832002-12-15 08:01:39 +0000785 if (MI->getOperand(MI->getNumOperands()-1).isImmediate()) {
Chris Lattner675dd2c2002-11-21 17:09:01 +0000786 O << ", ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000787 printOp(MI->getOperand(MI->getNumOperands()-1));
Chris Lattner675dd2c2002-11-21 17:09:01 +0000788 }
Brian Gaeked7908f62003-06-27 00:00:48 +0000789 if (Desc.TSFlags & X86II::PrintImplUses) {
790 for (const unsigned *p = Desc.ImplicitUses; *p; ++p) {
791 O << ", " << RI.get(*p).Name;
792 }
793 }
Chris Lattner675dd2c2002-11-21 17:09:01 +0000794 O << "\n";
795
796 return;
797 }
798
Chris Lattnerb7089442003-01-13 00:35:03 +0000799 case X86II::MRMS0m: case X86II::MRMS1m:
800 case X86II::MRMS2m: case X86II::MRMS3m:
801 case X86II::MRMS4m: case X86II::MRMS5m:
802 case X86II::MRMS6m: case X86II::MRMS7m: {
803 // In this form, the following are valid formats:
804 // 1. sete [m]
805 // 2. cmp [m], immediate
806 // 2. shl [m], rinput <implicit CL or 1>
807 // 3. sbb [m], immediate
808 //
809 assert(MI->getNumOperands() >= 4 && MI->getNumOperands() <= 5 &&
810 isMem(MI, 0) && "Bad MRMSxM format!");
811 assert((MI->getNumOperands() != 5 || MI->getOperand(4).isImmediate()) &&
812 "Bad MRMSxM format!");
Brian Gaeke1aa476e2003-07-11 18:18:35 +0000813 // Bug: The 80-bit FP store-pop instruction "fstp XWORD PTR [...]"
814 // is misassembled by gas in intel_syntax mode as its 32-bit
815 // equivalent "fstp DWORD PTR [...]". Workaround: Output the raw
816 // opcode bytes instead of the instruction.
Brian Gaekeb44210d2003-07-07 18:34:20 +0000817 if (MI->getOpCode() == X86::FSTPr80) {
818 if ((MI->getOperand(0).getReg() == X86::ESP)
819 && (MI->getOperand(1).getImmedValue() == 1)) {
820 int DispVal = MI->getOperand(3).getImmedValue();
821 if ((DispVal < -128) || (DispVal > 127)) { // 4 byte disp.
822 unsigned int val = (unsigned int) DispVal;
823 O << ".byte 0xdb, 0xbc, 0x24\n\t";
824 O << ".long 0x" << std::hex << (unsigned) val << std::dec << "\t# ";
825 } else { // 1 byte disp.
826 unsigned char val = (unsigned char) DispVal;
827 O << ".byte 0xdb, 0x7c, 0x24, 0x" << std::hex << (unsigned) val
828 << std::dec << "\t# ";
829 }
830 }
Brian Gaeke1aa476e2003-07-11 18:18:35 +0000831 }
832 // Bug: The 80-bit FP load instruction "fld XWORD PTR [...]" is
833 // misassembled by gas in intel_syntax mode as its 32-bit
834 // equivalent "fld DWORD PTR [...]". Workaround: Output the raw
835 // opcode bytes instead of the instruction.
836 if (MI->getOpCode() == X86::FLDr80) {
Brian Gaekeb44210d2003-07-07 18:34:20 +0000837 if ((MI->getOperand(0).getReg() == X86::ESP)
838 && (MI->getOperand(1).getImmedValue() == 1)) {
839 int DispVal = MI->getOperand(3).getImmedValue();
840 if ((DispVal < -128) || (DispVal > 127)) { // 4 byte disp.
841 unsigned int val = (unsigned int) DispVal;
842 O << ".byte 0xdb, 0xac, 0x24\n\t";
843 O << ".long 0x" << std::hex << (unsigned) val << std::dec << "\t# ";
844 } else { // 1 byte disp.
845 unsigned char val = (unsigned char) DispVal;
846 O << ".byte 0xdb, 0x6c, 0x24, 0x" << std::hex << (unsigned) val
847 << std::dec << "\t# ";
848 }
849 }
850 }
Brian Gaeke1aa476e2003-07-11 18:18:35 +0000851 // Bug: gas intel_syntax mode treats "fild QWORD PTR [...]" as an
852 // invalid opcode, saying "64 bit operations are only supported in
853 // 64 bit modes." libopcodes disassembles it as "fild DWORD PTR
854 // [...]", which is wrong. Workaround: Output the raw opcode bytes
855 // instead of the instruction.
856 if (MI->getOpCode() == X86::FILDr64) {
857 if ((MI->getOperand(0).getReg() == X86::ESP)
858 && (MI->getOperand(1).getImmedValue() == 1)) {
859 int DispVal = MI->getOperand(3).getImmedValue();
860 if ((DispVal < -128) || (DispVal > 127)) { // 4 byte disp.
861 unsigned int val = (unsigned int) DispVal;
862 O << ".byte 0xdf, 0xac, 0x24\n\t";
863 O << ".long 0x" << std::hex << (unsigned) val << std::dec << "\t# ";
864 } else { // 1 byte disp.
865 unsigned char val = (unsigned char) DispVal;
866 O << ".byte 0xdf, 0x6c, 0x24, 0x" << std::hex << (unsigned) val
867 << std::dec << "\t# ";
868 }
869 }
870 }
871 // Bug: gas intel_syntax mode treats "fistp QWORD PTR [...]" as
872 // an invalid opcode, saying "64 bit operations are only
873 // supported in 64 bit modes." libopcodes disassembles it as
874 // "fistpll DWORD PTR [...]", which is wrong. Workaround: Output
875 // "fistpll DWORD PTR " instead, which is what libopcodes is
876 // expecting to see.
877 if (MI->getOpCode() == X86::FISTPr64) {
878 O << "fistpll DWORD PTR ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000879 printMemReference(MI, 0);
Brian Gaeke1aa476e2003-07-11 18:18:35 +0000880 if (MI->getNumOperands() == 5) {
881 O << ", ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000882 printOp(MI->getOperand(4));
Brian Gaeke1aa476e2003-07-11 18:18:35 +0000883 }
884 O << "\t# ";
885 }
886
Brian Gaeked7908f62003-06-27 00:00:48 +0000887 O << TII.getName(MI->getOpCode()) << " ";
Chris Lattnerb7089442003-01-13 00:35:03 +0000888 O << sizePtr(Desc) << " ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000889 printMemReference(MI, 0);
Chris Lattnerb7089442003-01-13 00:35:03 +0000890 if (MI->getNumOperands() == 5) {
891 O << ", ";
Brian Gaekede420ae2003-07-23 20:25:08 +0000892 printOp(MI->getOperand(4));
Chris Lattnerb7089442003-01-13 00:35:03 +0000893 }
894 O << "\n";
895 return;
896 }
897
Chris Lattnerf9f60882002-11-18 06:56:51 +0000898 default:
Chris Lattnerb7089442003-01-13 00:35:03 +0000899 O << "\tUNKNOWN FORM:\t\t-"; MI->print(O, TM); break;
Chris Lattnerf9f60882002-11-18 06:56:51 +0000900 }
Chris Lattner72614082002-10-25 22:55:53 +0000901}
Brian Gaeke9e474c42003-06-19 19:32:32 +0000902
903bool Printer::doInitialization(Module &M)
904{
905 // Tell gas we are outputting Intel syntax (not AT&T syntax) assembly,
906 // with no % decorations on register names.
907 O << "\t.intel_syntax noprefix\n";
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000908 Mang = new Mangler(M);
Brian Gaeke9e474c42003-06-19 19:32:32 +0000909 return false; // success
910}
911
Chris Lattnerc07736a2003-07-23 15:22:26 +0000912static const Function *isConstantFunctionPointerRef(const Constant *C) {
913 if (const ConstantPointerRef *R = dyn_cast<ConstantPointerRef>(C))
914 if (const Function *F = dyn_cast<Function>(R->getValue()))
Brian Gaeke0517c5a2003-07-11 21:57:01 +0000915 return F;
Chris Lattnerc07736a2003-07-23 15:22:26 +0000916 return 0;
Brian Gaeke0517c5a2003-07-11 21:57:01 +0000917}
918
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000919bool Printer::doFinalization(Module &M)
920{
Brian Gaekede420ae2003-07-23 20:25:08 +0000921 const TargetData &TD = TM.getTargetData();
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000922 // Print out module-level global variables here.
923 for (Module::const_giterator I = M.gbegin(), E = M.gend(); I != E; ++I) {
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000924 std::string name(Mang->getValueName(I));
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000925 if (I->hasInitializer()) {
926 Constant *C = I->getInitializer();
Chris Lattnere0121322003-08-03 23:37:09 +0000927 if (C->isNullValue()) {
928 O << "\n\n\t.comm " << name << "," << TD.getTypeSize(C->getType())
929 << "," << (unsigned)TD.getTypeAlignment(C->getType());
930 O << "\t\t# ";
931 WriteAsOperand(O, I, true, true, &M);
932 O << "\n";
Brian Gaeke0517c5a2003-07-11 21:57:01 +0000933 } else {
Chris Lattnere0121322003-08-03 23:37:09 +0000934 O << "\n\n\t.data\n";
935 O << "\t.globl " << name << "\n";
936 O << "\t.type " << name << ",@object\n";
937 O << "\t.size " << name << "," << TD.getTypeSize(C->getType()) << "\n";
938 O << "\t.align " << (unsigned)TD.getTypeAlignment(C->getType()) << "\n";
939 O << name << ":\t\t\t\t# ";
940 WriteAsOperand(O, I, true, true, &M);
941 O << " = ";
942 WriteAsOperand(O, C, false, false, &M);
943 O << "\n";
944 printConstantValueOnly(C);
Brian Gaeke0517c5a2003-07-11 21:57:01 +0000945 }
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000946 } else {
Brian Gaekebc601fe2003-06-25 22:00:39 +0000947 O << "\t.globl " << name << "\n";
948 O << "\t.comm " << name << ", "
Brian Gaeke92bdfe62003-07-23 18:37:06 +0000949 << (unsigned)TD.getTypeSize(I->getType()) << ", "
950 << (unsigned)TD.getTypeAlignment(I->getType()) << "\n";
Brian Gaeke01d79ff2003-06-25 18:01:07 +0000951 }
952 }
Brian Gaeked9fb37a2003-07-24 20:20:44 +0000953 delete Mang;
Brian Gaeke9e474c42003-06-19 19:32:32 +0000954 return false; // success
955}