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Chris Lattner0dc32ea2009-09-20 07:41:30 +00001//===-- X86AsmPrinter.cpp - Convert X86 LLVM code to AT&T assembly --------===//
Misha Brukman0e0a7a452005-04-21 23:38:14 +00002//
John Criswellb576c942003-10-20 19:43:21 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukman0e0a7a452005-04-21 23:38:14 +00007//
John Criswellb576c942003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattner72614082002-10-25 22:55:53 +00009//
Chris Lattner0dc32ea2009-09-20 07:41:30 +000010// This file contains a printer that converts from our internal representation
Chris Lattner14c38ec2010-01-28 01:02:27 +000011// of machine-dependent LLVM code to X86 machine code.
Chris Lattner72614082002-10-25 22:55:53 +000012//
13//===----------------------------------------------------------------------===//
14
Chris Lattner0dc32ea2009-09-20 07:41:30 +000015#include "X86AsmPrinter.h"
16#include "X86ATTInstPrinter.h"
17#include "X86IntelInstPrinter.h"
18#include "X86MCInstLower.h"
19#include "X86.h"
20#include "X86COFF.h"
21#include "X86COFFMachineModuleInfo.h"
22#include "X86MachineFunctionInfo.h"
23#include "X86TargetMachine.h"
24#include "llvm/CallingConv.h"
25#include "llvm/DerivedTypes.h"
26#include "llvm/Module.h"
27#include "llvm/Type.h"
28#include "llvm/Assembly/Writer.h"
Bill Wendlingbecd83e2010-03-09 00:40:17 +000029#include "llvm/MC/MCAsmInfo.h"
Chris Lattner0dc32ea2009-09-20 07:41:30 +000030#include "llvm/MC/MCContext.h"
Chris Lattnerbeb42692010-02-03 06:42:38 +000031#include "llvm/MC/MCExpr.h"
Chris Lattner0dc32ea2009-09-20 07:41:30 +000032#include "llvm/MC/MCSectionMachO.h"
33#include "llvm/MC/MCStreamer.h"
34#include "llvm/MC/MCSymbol.h"
35#include "llvm/CodeGen/MachineJumpTableInfo.h"
36#include "llvm/CodeGen/MachineModuleInfoImpls.h"
Anton Korobeynikov362dd0b2010-02-15 22:37:53 +000037#include "llvm/CodeGen/TargetLoweringObjectFileImpl.h"
Chris Lattner0dc32ea2009-09-20 07:41:30 +000038#include "llvm/Support/ErrorHandling.h"
39#include "llvm/Support/FormattedStream.h"
Anton Korobeynikov4dd162f2010-02-12 15:28:40 +000040#include "llvm/Target/Mangler.h"
Chris Lattner0dc32ea2009-09-20 07:41:30 +000041#include "llvm/Target/TargetOptions.h"
42#include "llvm/Target/TargetRegistry.h"
43#include "llvm/ADT/SmallString.h"
Chris Lattner0dc32ea2009-09-20 07:41:30 +000044using namespace llvm;
45
Chris Lattner0dc32ea2009-09-20 07:41:30 +000046//===----------------------------------------------------------------------===//
47// Primitive Helper Functions.
48//===----------------------------------------------------------------------===//
49
Chris Lattner0dc32ea2009-09-20 07:41:30 +000050void X86AsmPrinter::PrintPICBaseSymbol() const {
Chris Lattner589c6f62010-01-26 06:28:43 +000051 const TargetLowering *TLI = TM.getTargetLowering();
52 O << *static_cast<const X86TargetLowering*>(TLI)->getPICBaseSymbol(MF,
53 OutContext);
Chris Lattner0dc32ea2009-09-20 07:41:30 +000054}
55
Anton Korobeynikov4dd162f2010-02-12 15:28:40 +000056MCSymbol *X86AsmPrinter::GetGlobalValueSymbol(const GlobalValue *GV) const {
57 SmallString<60> NameStr;
58 Mang->getNameWithPrefix(NameStr, GV, false);
Chris Lattner98cdab52010-03-10 02:25:11 +000059 MCSymbol *Symb;
60 if (GV->hasPrivateLinkage())
61 Symb = OutContext.GetOrCreateTemporarySymbol(NameStr.str());
62 else
63 Symb = OutContext.GetOrCreateSymbol(NameStr.str());
Anton Korobeynikov4dd162f2010-02-12 15:28:40 +000064
65 if (Subtarget->isTargetCygMing()) {
66 X86COFFMachineModuleInfo &COFFMMI =
67 MMI->getObjFileInfo<X86COFFMachineModuleInfo>();
68 COFFMMI.DecorateCygMingName(Symb, OutContext, GV, *TM.getTargetData());
69
70 // Save function name for later type emission.
71 if (const Function *F = dyn_cast<Function>(GV))
72 if (F->isDeclaration())
73 COFFMMI.addExternalFunction(Symb->getName());
74
75 }
76
77 return Symb;
78}
79
Chris Lattner14c38ec2010-01-28 01:02:27 +000080/// runOnMachineFunction - Emit the function body.
Chris Lattner0dc32ea2009-09-20 07:41:30 +000081///
82bool X86AsmPrinter::runOnMachineFunction(MachineFunction &MF) {
Chris Lattner0dc32ea2009-09-20 07:41:30 +000083 SetupMachineFunction(MF);
Chris Lattner0dc32ea2009-09-20 07:41:30 +000084
Anton Korobeynikov4dd162f2010-02-12 15:28:40 +000085 if (Subtarget->isTargetCOFF()) {
Chris Lattnerb11caed2010-01-26 23:18:44 +000086 const Function *F = MF.getFunction();
Anton Korobeynikov4dd162f2010-02-12 15:28:40 +000087 O << "\t.def\t " << *CurrentFnSym << ";\t.scl\t" <<
Chris Lattnerb11caed2010-01-26 23:18:44 +000088 (F->hasInternalLinkage() ? COFF::C_STAT : COFF::C_EXT)
89 << ";\t.type\t" << (COFF::DT_FCN << COFF::N_BTSHFT)
90 << ";\t.endef\n";
91 }
Anton Korobeynikov4dd162f2010-02-12 15:28:40 +000092
Chris Lattnerb11caed2010-01-26 23:18:44 +000093 // Have common code print out the function header with linkage info etc.
94 EmitFunctionHeader();
Anton Korobeynikov4dd162f2010-02-12 15:28:40 +000095
Chris Lattner14c38ec2010-01-28 01:02:27 +000096 // Emit the rest of the function body.
97 EmitFunctionBody();
Chris Lattner0dc32ea2009-09-20 07:41:30 +000098
99 // We didn't modify anything.
100 return false;
101}
102
103/// printSymbolOperand - Print a raw symbol reference operand. This handles
104/// jump tables, constant pools, global address and external symbols, all of
105/// which print to a label with various suffixes for relocation types etc.
106void X86AsmPrinter::printSymbolOperand(const MachineOperand &MO) {
107 switch (MO.getType()) {
108 default: llvm_unreachable("unknown symbol type!");
109 case MachineOperand::MO_JumpTableIndex:
Chris Lattner64c2b242010-01-23 05:26:25 +0000110 O << *GetJTISymbol(MO.getIndex());
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000111 break;
112 case MachineOperand::MO_ConstantPoolIndex:
Chris Lattner64c2b242010-01-23 05:26:25 +0000113 O << *GetCPISymbol(MO.getIndex());
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000114 printOffset(MO.getOffset());
115 break;
116 case MachineOperand::MO_GlobalAddress: {
117 const GlobalValue *GV = MO.getGlobal();
118
Chris Lattner5957c842010-01-18 00:59:24 +0000119 MCSymbol *GVSym;
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000120 if (MO.getTargetFlags() == X86II::MO_DARWIN_STUB)
Chris Lattner7a2ba942010-01-16 18:37:32 +0000121 GVSym = GetSymbolWithGlobalValueBase(GV, "$stub");
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000122 else if (MO.getTargetFlags() == X86II::MO_DARWIN_NONLAZY ||
123 MO.getTargetFlags() == X86II::MO_DARWIN_NONLAZY_PIC_BASE ||
124 MO.getTargetFlags() == X86II::MO_DARWIN_HIDDEN_NONLAZY_PIC_BASE)
Chris Lattner7a2ba942010-01-16 18:37:32 +0000125 GVSym = GetSymbolWithGlobalValueBase(GV, "$non_lazy_ptr");
Chris Lattner4fb69f42010-01-16 00:51:39 +0000126 else
127 GVSym = GetGlobalValueSymbol(GV);
128
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000129 // Handle dllimport linkage.
130 if (MO.getTargetFlags() == X86II::MO_DLLIMPORT)
Chris Lattner4fb69f42010-01-16 00:51:39 +0000131 GVSym = OutContext.GetOrCreateSymbol(Twine("__imp_") + GVSym->getName());
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000132
133 if (MO.getTargetFlags() == X86II::MO_DARWIN_NONLAZY ||
134 MO.getTargetFlags() == X86II::MO_DARWIN_NONLAZY_PIC_BASE) {
Chris Lattner7a2ba942010-01-16 18:37:32 +0000135 MCSymbol *Sym = GetSymbolWithGlobalValueBase(GV, "$non_lazy_ptr");
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000136
Chris Lattnerd269a6e2010-02-03 06:18:30 +0000137 MCSymbol *&StubSym =
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000138 MMI->getObjFileInfo<MachineModuleInfoMachO>().getGVStubEntry(Sym);
Chris Lattner8570f592010-01-16 01:00:27 +0000139 if (StubSym == 0)
140 StubSym = GetGlobalValueSymbol(GV);
141
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000142 } else if (MO.getTargetFlags() == X86II::MO_DARWIN_HIDDEN_NONLAZY_PIC_BASE){
Chris Lattner7a2ba942010-01-16 18:37:32 +0000143 MCSymbol *Sym = GetSymbolWithGlobalValueBase(GV, "$non_lazy_ptr");
Chris Lattnerd269a6e2010-02-03 06:18:30 +0000144 MCSymbol *&StubSym =
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000145 MMI->getObjFileInfo<MachineModuleInfoMachO>().getHiddenGVStubEntry(Sym);
Chris Lattner8570f592010-01-16 01:00:27 +0000146 if (StubSym == 0)
147 StubSym = GetGlobalValueSymbol(GV);
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000148 } else if (MO.getTargetFlags() == X86II::MO_DARWIN_STUB) {
Chris Lattner7a2ba942010-01-16 18:37:32 +0000149 MCSymbol *Sym = GetSymbolWithGlobalValueBase(GV, "$stub");
Chris Lattnerd269a6e2010-02-03 06:18:30 +0000150 MCSymbol *&StubSym =
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000151 MMI->getObjFileInfo<MachineModuleInfoMachO>().getFnStubEntry(Sym);
Chris Lattner8570f592010-01-16 01:00:27 +0000152 if (StubSym == 0)
153 StubSym = GetGlobalValueSymbol(GV);
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000154 }
155
156 // If the name begins with a dollar-sign, enclose it in parens. We do this
157 // to avoid having it look like an integer immediate to the assembler.
Chris Lattner4fb69f42010-01-16 00:51:39 +0000158 if (GVSym->getName()[0] != '$')
Chris Lattner10b318b2010-01-17 21:43:43 +0000159 O << *GVSym;
160 else
161 O << '(' << *GVSym << ')';
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000162 printOffset(MO.getOffset());
163 break;
164 }
165 case MachineOperand::MO_ExternalSymbol: {
Chris Lattneree9250b2010-01-13 07:56:59 +0000166 const MCSymbol *SymToPrint;
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000167 if (MO.getTargetFlags() == X86II::MO_DARWIN_STUB) {
Chris Lattner8570f592010-01-16 01:00:27 +0000168 SmallString<128> TempNameStr;
169 TempNameStr += StringRef(MO.getSymbolName());
170 TempNameStr += StringRef("$stub");
171
Chris Lattnerd269a6e2010-02-03 06:18:30 +0000172 MCSymbol *Sym = GetExternalSymbolSymbol(TempNameStr.str());
173 MCSymbol *&StubSym =
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000174 MMI->getObjFileInfo<MachineModuleInfoMachO>().getFnStubEntry(Sym);
175 if (StubSym == 0) {
Chris Lattner48130352010-01-13 06:38:18 +0000176 TempNameStr.erase(TempNameStr.end()-5, TempNameStr.end());
177 StubSym = OutContext.GetOrCreateSymbol(TempNameStr.str());
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000178 }
Chris Lattneree9250b2010-01-13 07:56:59 +0000179 SymToPrint = StubSym;
180 } else {
Chris Lattner8570f592010-01-16 01:00:27 +0000181 SymToPrint = GetExternalSymbolSymbol(MO.getSymbolName());
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000182 }
183
184 // If the name begins with a dollar-sign, enclose it in parens. We do this
185 // to avoid having it look like an integer immediate to the assembler.
Chris Lattneree9250b2010-01-13 07:56:59 +0000186 if (SymToPrint->getName()[0] != '$')
Chris Lattner10b318b2010-01-17 21:43:43 +0000187 O << *SymToPrint;
188 else
189 O << '(' << *SymToPrint << '(';
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000190 break;
191 }
192 }
193
194 switch (MO.getTargetFlags()) {
195 default:
196 llvm_unreachable("Unknown target flag on GV operand");
197 case X86II::MO_NO_FLAG: // No flag.
198 break;
199 case X86II::MO_DARWIN_NONLAZY:
200 case X86II::MO_DLLIMPORT:
201 case X86II::MO_DARWIN_STUB:
202 // These affect the name of the symbol, not any suffix.
203 break;
204 case X86II::MO_GOT_ABSOLUTE_ADDRESS:
205 O << " + [.-";
206 PrintPICBaseSymbol();
207 O << ']';
208 break;
209 case X86II::MO_PIC_BASE_OFFSET:
210 case X86II::MO_DARWIN_NONLAZY_PIC_BASE:
211 case X86II::MO_DARWIN_HIDDEN_NONLAZY_PIC_BASE:
212 O << '-';
213 PrintPICBaseSymbol();
214 break;
215 case X86II::MO_TLSGD: O << "@TLSGD"; break;
216 case X86II::MO_GOTTPOFF: O << "@GOTTPOFF"; break;
217 case X86II::MO_INDNTPOFF: O << "@INDNTPOFF"; break;
218 case X86II::MO_TPOFF: O << "@TPOFF"; break;
219 case X86II::MO_NTPOFF: O << "@NTPOFF"; break;
220 case X86II::MO_GOTPCREL: O << "@GOTPCREL"; break;
221 case X86II::MO_GOT: O << "@GOT"; break;
222 case X86II::MO_GOTOFF: O << "@GOTOFF"; break;
223 case X86II::MO_PLT: O << "@PLT"; break;
224 }
225}
226
227/// print_pcrel_imm - This is used to print an immediate value that ends up
228/// being encoded as a pc-relative value. These print slightly differently, for
229/// example, a $ is not emitted.
230void X86AsmPrinter::print_pcrel_imm(const MachineInstr *MI, unsigned OpNo) {
231 const MachineOperand &MO = MI->getOperand(OpNo);
232 switch (MO.getType()) {
233 default: llvm_unreachable("Unknown pcrel immediate operand");
234 case MachineOperand::MO_Immediate:
235 O << MO.getImm();
236 return;
237 case MachineOperand::MO_MachineBasicBlock:
Chris Lattnerf71cb012010-01-26 04:55:51 +0000238 O << *MO.getMBB()->getSymbol(OutContext);
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000239 return;
240 case MachineOperand::MO_GlobalAddress:
241 case MachineOperand::MO_ExternalSymbol:
242 printSymbolOperand(MO);
243 return;
244 }
245}
246
247
248void X86AsmPrinter::printOperand(const MachineInstr *MI, unsigned OpNo,
Chris Lattner5957c842010-01-18 00:59:24 +0000249 const char *Modifier) {
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000250 const MachineOperand &MO = MI->getOperand(OpNo);
251 switch (MO.getType()) {
252 default: llvm_unreachable("unknown operand type!");
253 case MachineOperand::MO_Register: {
254 O << '%';
255 unsigned Reg = MO.getReg();
256 if (Modifier && strncmp(Modifier, "subreg", strlen("subreg")) == 0) {
257 EVT VT = (strcmp(Modifier+6,"64") == 0) ?
258 MVT::i64 : ((strcmp(Modifier+6, "32") == 0) ? MVT::i32 :
259 ((strcmp(Modifier+6,"16") == 0) ? MVT::i16 : MVT::i8));
260 Reg = getX86SubSuperRegister(Reg, VT);
261 }
262 O << X86ATTInstPrinter::getRegisterName(Reg);
263 return;
264 }
265
266 case MachineOperand::MO_Immediate:
267 O << '$' << MO.getImm();
268 return;
269
270 case MachineOperand::MO_JumpTableIndex:
271 case MachineOperand::MO_ConstantPoolIndex:
272 case MachineOperand::MO_GlobalAddress:
273 case MachineOperand::MO_ExternalSymbol: {
274 O << '$';
275 printSymbolOperand(MO);
276 break;
277 }
278 }
279}
280
281void X86AsmPrinter::printSSECC(const MachineInstr *MI, unsigned Op) {
282 unsigned char value = MI->getOperand(Op).getImm();
283 assert(value <= 7 && "Invalid ssecc argument!");
284 switch (value) {
285 case 0: O << "eq"; break;
286 case 1: O << "lt"; break;
287 case 2: O << "le"; break;
288 case 3: O << "unord"; break;
289 case 4: O << "neq"; break;
290 case 5: O << "nlt"; break;
291 case 6: O << "nle"; break;
292 case 7: O << "ord"; break;
293 }
294}
295
296void X86AsmPrinter::printLeaMemReference(const MachineInstr *MI, unsigned Op,
297 const char *Modifier) {
298 const MachineOperand &BaseReg = MI->getOperand(Op);
299 const MachineOperand &IndexReg = MI->getOperand(Op+2);
300 const MachineOperand &DispSpec = MI->getOperand(Op+3);
301
302 // If we really don't want to print out (rip), don't.
303 bool HasBaseReg = BaseReg.getReg() != 0;
304 if (HasBaseReg && Modifier && !strcmp(Modifier, "no-rip") &&
305 BaseReg.getReg() == X86::RIP)
306 HasBaseReg = false;
307
308 // HasParenPart - True if we will print out the () part of the mem ref.
309 bool HasParenPart = IndexReg.getReg() || HasBaseReg;
310
311 if (DispSpec.isImm()) {
312 int DispVal = DispSpec.getImm();
313 if (DispVal || !HasParenPart)
314 O << DispVal;
315 } else {
316 assert(DispSpec.isGlobal() || DispSpec.isCPI() ||
317 DispSpec.isJTI() || DispSpec.isSymbol());
318 printSymbolOperand(MI->getOperand(Op+3));
319 }
320
321 if (HasParenPart) {
322 assert(IndexReg.getReg() != X86::ESP &&
323 "X86 doesn't allow scaling by ESP");
324
325 O << '(';
326 if (HasBaseReg)
327 printOperand(MI, Op, Modifier);
328
329 if (IndexReg.getReg()) {
330 O << ',';
331 printOperand(MI, Op+2, Modifier);
332 unsigned ScaleVal = MI->getOperand(Op+1).getImm();
333 if (ScaleVal != 1)
334 O << ',' << ScaleVal;
335 }
336 O << ')';
337 }
338}
339
340void X86AsmPrinter::printMemReference(const MachineInstr *MI, unsigned Op,
341 const char *Modifier) {
342 assert(isMem(MI, Op) && "Invalid memory reference!");
343 const MachineOperand &Segment = MI->getOperand(Op+4);
344 if (Segment.getReg()) {
345 printOperand(MI, Op+4, Modifier);
346 O << ':';
347 }
348 printLeaMemReference(MI, Op, Modifier);
349}
350
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000351void X86AsmPrinter::printPICLabel(const MachineInstr *MI, unsigned Op) {
352 PrintPICBaseSymbol();
353 O << '\n';
354 PrintPICBaseSymbol();
355 O << ':';
356}
357
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000358bool X86AsmPrinter::printAsmMRegister(const MachineOperand &MO, char Mode) {
359 unsigned Reg = MO.getReg();
360 switch (Mode) {
361 default: return true; // Unknown mode.
362 case 'b': // Print QImode register
363 Reg = getX86SubSuperRegister(Reg, MVT::i8);
364 break;
365 case 'h': // Print QImode high register
366 Reg = getX86SubSuperRegister(Reg, MVT::i8, true);
367 break;
368 case 'w': // Print HImode register
369 Reg = getX86SubSuperRegister(Reg, MVT::i16);
370 break;
371 case 'k': // Print SImode register
372 Reg = getX86SubSuperRegister(Reg, MVT::i32);
373 break;
374 case 'q': // Print DImode register
375 Reg = getX86SubSuperRegister(Reg, MVT::i64);
376 break;
377 }
378
379 O << '%' << X86ATTInstPrinter::getRegisterName(Reg);
380 return false;
381}
382
383/// PrintAsmOperand - Print out an operand for an inline asm expression.
384///
385bool X86AsmPrinter::PrintAsmOperand(const MachineInstr *MI, unsigned OpNo,
386 unsigned AsmVariant,
387 const char *ExtraCode) {
388 // Does this asm operand have a single letter operand modifier?
389 if (ExtraCode && ExtraCode[0]) {
390 if (ExtraCode[1] != 0) return true; // Unknown modifier.
391
392 const MachineOperand &MO = MI->getOperand(OpNo);
393
394 switch (ExtraCode[0]) {
395 default: return true; // Unknown modifier.
396 case 'a': // This is an address. Currently only 'i' and 'r' are expected.
397 if (MO.isImm()) {
398 O << MO.getImm();
399 return false;
400 }
401 if (MO.isGlobal() || MO.isCPI() || MO.isJTI() || MO.isSymbol()) {
402 printSymbolOperand(MO);
403 return false;
404 }
405 if (MO.isReg()) {
406 O << '(';
407 printOperand(MI, OpNo);
408 O << ')';
409 return false;
410 }
411 return true;
412
413 case 'c': // Don't print "$" before a global var name or constant.
414 if (MO.isImm())
415 O << MO.getImm();
416 else if (MO.isGlobal() || MO.isCPI() || MO.isJTI() || MO.isSymbol())
417 printSymbolOperand(MO);
418 else
419 printOperand(MI, OpNo);
420 return false;
421
422 case 'A': // Print '*' before a register (it must be a register)
423 if (MO.isReg()) {
424 O << '*';
425 printOperand(MI, OpNo);
426 return false;
427 }
428 return true;
429
430 case 'b': // Print QImode register
431 case 'h': // Print QImode high register
432 case 'w': // Print HImode register
433 case 'k': // Print SImode register
434 case 'q': // Print DImode register
435 if (MO.isReg())
436 return printAsmMRegister(MO, ExtraCode[0]);
437 printOperand(MI, OpNo);
438 return false;
439
440 case 'P': // This is the operand of a call, treat specially.
441 print_pcrel_imm(MI, OpNo);
442 return false;
443
444 case 'n': // Negate the immediate or print a '-' before the operand.
445 // Note: this is a temporary solution. It should be handled target
446 // independently as part of the 'MC' work.
447 if (MO.isImm()) {
448 O << -MO.getImm();
449 return false;
450 }
451 O << '-';
452 }
453 }
454
455 printOperand(MI, OpNo);
456 return false;
457}
458
459bool X86AsmPrinter::PrintAsmMemoryOperand(const MachineInstr *MI,
460 unsigned OpNo, unsigned AsmVariant,
461 const char *ExtraCode) {
462 if (ExtraCode && ExtraCode[0]) {
463 if (ExtraCode[1] != 0) return true; // Unknown modifier.
464
465 switch (ExtraCode[0]) {
466 default: return true; // Unknown modifier.
467 case 'b': // Print QImode register
468 case 'h': // Print QImode high register
469 case 'w': // Print HImode register
470 case 'k': // Print SImode register
471 case 'q': // Print SImode register
472 // These only apply to registers, ignore on mem.
473 break;
474 case 'P': // Don't print @PLT, but do print as memory.
475 printMemReference(MI, OpNo, "no-rip");
476 return false;
477 }
478 }
479 printMemReference(MI, OpNo);
480 return false;
481}
482
483
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000484void X86AsmPrinter::EmitEndOfAsmFile(Module &M) {
485 if (Subtarget->isTargetDarwin()) {
486 // All darwin targets use mach-o.
487 TargetLoweringObjectFileMachO &TLOFMacho =
488 static_cast<TargetLoweringObjectFileMachO &>(getObjFileLowering());
489
490 MachineModuleInfoMachO &MMIMacho =
491 MMI->getObjFileInfo<MachineModuleInfoMachO>();
492
493 // Output stubs for dynamically-linked functions.
494 MachineModuleInfoMachO::SymbolListTy Stubs;
495
496 Stubs = MMIMacho.GetFnStubList();
497 if (!Stubs.empty()) {
498 const MCSection *TheSection =
499 TLOFMacho.getMachOSection("__IMPORT", "__jump_table",
500 MCSectionMachO::S_SYMBOL_STUBS |
501 MCSectionMachO::S_ATTR_SELF_MODIFYING_CODE |
502 MCSectionMachO::S_ATTR_PURE_INSTRUCTIONS,
503 5, SectionKind::getMetadata());
504 OutStreamer.SwitchSection(TheSection);
505
506 for (unsigned i = 0, e = Stubs.size(); i != e; ++i) {
Chris Lattnerbeb42692010-02-03 06:42:38 +0000507 // L_foo$stub:
508 OutStreamer.EmitLabel(Stubs[i].first);
509 // .indirect_symbol _foo
510 OutStreamer.EmitSymbolAttribute(Stubs[i].second, MCSA_IndirectSymbol);
511 // hlt; hlt; hlt; hlt; hlt hlt = 0xf4 = -12.
512 const char HltInsts[] = { -12, -12, -12, -12, -12 };
513 OutStreamer.EmitBytes(StringRef(HltInsts, 5), 0/*addrspace*/);
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000514 }
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000515
516 Stubs.clear();
Chris Lattnerbeb42692010-02-03 06:42:38 +0000517 OutStreamer.AddBlankLine();
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000518 }
519
520 // Output stubs for external and common global variables.
521 Stubs = MMIMacho.GetGVStubList();
522 if (!Stubs.empty()) {
523 const MCSection *TheSection =
524 TLOFMacho.getMachOSection("__IMPORT", "__pointers",
525 MCSectionMachO::S_NON_LAZY_SYMBOL_POINTERS,
526 SectionKind::getMetadata());
527 OutStreamer.SwitchSection(TheSection);
528
529 for (unsigned i = 0, e = Stubs.size(); i != e; ++i) {
Chris Lattnerbeb42692010-02-03 06:42:38 +0000530 // L_foo$non_lazy_ptr:
531 OutStreamer.EmitLabel(Stubs[i].first);
532 // .indirect_symbol _foo
533 OutStreamer.EmitSymbolAttribute(Stubs[i].second, MCSA_IndirectSymbol);
534 // .long 0
535 OutStreamer.EmitIntValue(0, 4/*size*/, 0/*addrspace*/);
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000536 }
537 Stubs.clear();
Chris Lattnerbeb42692010-02-03 06:42:38 +0000538 OutStreamer.AddBlankLine();
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000539 }
540
541 Stubs = MMIMacho.GetHiddenGVStubList();
542 if (!Stubs.empty()) {
543 OutStreamer.SwitchSection(getObjFileLowering().getDataSection());
544 EmitAlignment(2);
545
546 for (unsigned i = 0, e = Stubs.size(); i != e; ++i) {
Chris Lattnerbeb42692010-02-03 06:42:38 +0000547 // L_foo$non_lazy_ptr:
548 OutStreamer.EmitLabel(Stubs[i].first);
549 // .long _foo
550 OutStreamer.EmitValue(MCSymbolRefExpr::Create(Stubs[i].second,
551 OutContext),
552 4/*size*/, 0/*addrspace*/);
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000553 }
554 Stubs.clear();
Chris Lattnerbeb42692010-02-03 06:42:38 +0000555 OutStreamer.AddBlankLine();
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000556 }
557
558 // Funny Darwin hack: This flag tells the linker that no global symbols
559 // contain code that falls through to other global symbols (e.g. the obvious
560 // implementation of multiple entry points). If this doesn't occur, the
561 // linker can safely perform dead code stripping. Since LLVM never
562 // generates code that does this, it is always safe to set.
Chris Lattnera5ad93a2010-01-23 06:39:22 +0000563 OutStreamer.EmitAssemblerFlag(MCAF_SubsectionsViaSymbols);
Anton Korobeynikov4fac9472009-10-15 22:36:18 +0000564 }
565
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000566 if (Subtarget->isTargetCOFF()) {
Anton Korobeynikov4fac9472009-10-15 22:36:18 +0000567 X86COFFMachineModuleInfo &COFFMMI =
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000568 MMI->getObjFileInfo<X86COFFMachineModuleInfo>();
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000569
Anton Korobeynikov4fac9472009-10-15 22:36:18 +0000570 // Emit type information for external functions
571 for (X86COFFMachineModuleInfo::stub_iterator I = COFFMMI.stub_begin(),
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000572 E = COFFMMI.stub_end(); I != E; ++I) {
Anton Korobeynikov4fac9472009-10-15 22:36:18 +0000573 O << "\t.def\t " << I->getKeyData()
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000574 << ";\t.scl\t" << COFF::C_EXT
575 << ";\t.type\t" << (COFF::DT_FCN << COFF::N_BTSHFT)
576 << ";\t.endef\n";
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000577 }
Anton Korobeynikov4fac9472009-10-15 22:36:18 +0000578
579 if (Subtarget->isTargetCygMing()) {
580 // Necessary for dllexport support
Chris Lattner4fb69f42010-01-16 00:51:39 +0000581 std::vector<const MCSymbol*> DLLExportedFns, DLLExportedGlobals;
Anton Korobeynikov4fac9472009-10-15 22:36:18 +0000582
583 TargetLoweringObjectFileCOFF &TLOFCOFF =
584 static_cast<TargetLoweringObjectFileCOFF&>(getObjFileLowering());
585
586 for (Module::const_iterator I = M.begin(), E = M.end(); I != E; ++I)
587 if (I->hasDLLExportLinkage()) {
Chris Lattner5957c842010-01-18 00:59:24 +0000588 MCSymbol *Sym = GetGlobalValueSymbol(I);
Chris Lattner4fb69f42010-01-16 00:51:39 +0000589 DLLExportedFns.push_back(Sym);
Anton Korobeynikov4fac9472009-10-15 22:36:18 +0000590 }
591
592 for (Module::const_global_iterator I = M.global_begin(),
593 E = M.global_end(); I != E; ++I)
Chris Lattner4fb69f42010-01-16 00:51:39 +0000594 if (I->hasDLLExportLinkage())
595 DLLExportedGlobals.push_back(GetGlobalValueSymbol(I));
Anton Korobeynikov4fac9472009-10-15 22:36:18 +0000596
597 // Output linker support code for dllexported globals on windows.
598 if (!DLLExportedGlobals.empty() || !DLLExportedFns.empty()) {
599 OutStreamer.SwitchSection(TLOFCOFF.getCOFFSection(".section .drectve",
600 true,
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000601 SectionKind::getMetadata()));
Chris Lattner10b318b2010-01-17 21:43:43 +0000602 for (unsigned i = 0, e = DLLExportedGlobals.size(); i != e; ++i)
603 O << "\t.ascii \" -export:" << *DLLExportedGlobals[i] << ",data\"\n";
Anton Korobeynikov4fac9472009-10-15 22:36:18 +0000604
Chris Lattner10b318b2010-01-17 21:43:43 +0000605 for (unsigned i = 0, e = DLLExportedFns.size(); i != e; ++i)
606 O << "\t.ascii \" -export:" << *DLLExportedFns[i] << "\"\n";
Anton Korobeynikov4fac9472009-10-15 22:36:18 +0000607 }
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000608 }
609 }
Anton Korobeynikov9184b252010-02-15 22:35:59 +0000610
611 if (Subtarget->isTargetELF()) {
612 TargetLoweringObjectFileELF &TLOFELF =
613 static_cast<TargetLoweringObjectFileELF &>(getObjFileLowering());
614
615 MachineModuleInfoELF &MMIELF = MMI->getObjFileInfo<MachineModuleInfoELF>();
616
617 // Output stubs for external and common global variables.
618 MachineModuleInfoELF::SymbolListTy Stubs = MMIELF.GetGVStubList();
619 if (!Stubs.empty()) {
620 OutStreamer.SwitchSection(TLOFELF.getDataRelSection());
621 const TargetData *TD = TM.getTargetData();
622
623 for (unsigned i = 0, e = Stubs.size(); i != e; ++i)
624 O << *Stubs[i].first << ":\n"
625 << (TD->getPointerSize() == 8 ?
626 MAI->getData64bitsDirective() : MAI->getData32bitsDirective())
627 << *Stubs[i].second << '\n';
628
629 Stubs.clear();
630 }
631 }
Chris Lattner0dc32ea2009-09-20 07:41:30 +0000632}
633
634
635//===----------------------------------------------------------------------===//
636// Target Registry Stuff
637//===----------------------------------------------------------------------===//
638
639static MCInstPrinter *createX86MCInstPrinter(const Target &T,
640 unsigned SyntaxVariant,
641 const MCAsmInfo &MAI,
642 raw_ostream &O) {
643 if (SyntaxVariant == 0)
644 return new X86ATTInstPrinter(O, MAI);
645 if (SyntaxVariant == 1)
646 return new X86IntelInstPrinter(O, MAI);
647 return 0;
648}
649
650// Force static initialization.
651extern "C" void LLVMInitializeX86AsmPrinter() {
652 RegisterAsmPrinter<X86AsmPrinter> X(TheX86_32Target);
653 RegisterAsmPrinter<X86AsmPrinter> Y(TheX86_64Target);
654
655 TargetRegistry::RegisterMCInstPrinter(TheX86_32Target,createX86MCInstPrinter);
656 TargetRegistry::RegisterMCInstPrinter(TheX86_64Target,createX86MCInstPrinter);
657}