1 //===-- AsmPrinterInlineAsm.cpp - AsmPrinter Inline Asm Handling ----------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This file implements the inline assembler pieces of the AsmPrinter class. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #define DEBUG_TYPE "asm-printer" 15 #include "llvm/CodeGen/AsmPrinter.h" 16 #include "llvm/ADT/OwningPtr.h" 17 #include "llvm/ADT/SmallString.h" 18 #include "llvm/ADT/Twine.h" 19 #include "llvm/CodeGen/MachineBasicBlock.h" 20 #include "llvm/CodeGen/MachineModuleInfo.h" 21 #include "llvm/IR/Constants.h" 22 #include "llvm/IR/DataLayout.h" 23 #include "llvm/IR/InlineAsm.h" 24 #include "llvm/IR/LLVMContext.h" 25 #include "llvm/IR/Module.h" 26 #include "llvm/MC/MCAsmInfo.h" 27 #include "llvm/MC/MCStreamer.h" 28 #include "llvm/MC/MCSubtargetInfo.h" 29 #include "llvm/MC/MCSymbol.h" 30 #include "llvm/MC/MCTargetAsmParser.h" 31 #include "llvm/Support/ErrorHandling.h" 32 #include "llvm/Support/MemoryBuffer.h" 33 #include "llvm/Support/SourceMgr.h" 34 #include "llvm/Support/TargetRegistry.h" 35 #include "llvm/Support/raw_ostream.h" 36 #include "llvm/Target/TargetMachine.h" 37 #include "llvm/Target/TargetSubtargetInfo.h" 38 using namespace llvm; 39 40 namespace { 41 struct SrcMgrDiagInfo { 42 const MDNode *LocInfo; 43 LLVMContext::InlineAsmDiagHandlerTy DiagHandler; 44 void *DiagContext; 45 }; 46 } 47 48 /// srcMgrDiagHandler - This callback is invoked when the SourceMgr for an 49 /// inline asm has an error in it. diagInfo is a pointer to the SrcMgrDiagInfo 50 /// struct above. 51 static void srcMgrDiagHandler(const SMDiagnostic &Diag, void *diagInfo) { 52 SrcMgrDiagInfo *DiagInfo = static_cast<SrcMgrDiagInfo *>(diagInfo); 53 assert(DiagInfo && "Diagnostic context not passed down?"); 54 55 // If the inline asm had metadata associated with it, pull out a location 56 // cookie corresponding to which line the error occurred on. 57 unsigned LocCookie = 0; 58 if (const MDNode *LocInfo = DiagInfo->LocInfo) { 59 unsigned ErrorLine = Diag.getLineNo()-1; 60 if (ErrorLine >= LocInfo->getNumOperands()) 61 ErrorLine = 0; 62 63 if (LocInfo->getNumOperands() != 0) 64 if (const ConstantInt *CI = 65 dyn_cast<ConstantInt>(LocInfo->getOperand(ErrorLine))) 66 LocCookie = CI->getZExtValue(); 67 } 68 69 DiagInfo->DiagHandler(Diag, DiagInfo->DiagContext, LocCookie); 70 } 71 72 /// EmitInlineAsm - Emit a blob of inline asm to the output streamer. 73 void AsmPrinter::EmitInlineAsm(StringRef Str, const MDNode *LocMDNode, 74 InlineAsm::AsmDialect Dialect) const { 75 assert(!Str.empty() && "Can't emit empty inline asm block"); 76 77 // Remember if the buffer is nul terminated or not so we can avoid a copy. 78 bool isNullTerminated = Str.back() == 0; 79 if (isNullTerminated) 80 Str = Str.substr(0, Str.size()-1); 81 82 // If the output streamer is actually a .s file, just emit the blob textually. 83 // This is useful in case the asm parser doesn't handle something but the 84 // system assembler does. 85 if (OutStreamer.hasRawTextSupport()) { 86 OutStreamer.EmitRawText(Str); 87 emitInlineAsmEnd(TM.getSubtarget<MCSubtargetInfo>(), 0); 88 return; 89 } 90 91 SourceMgr SrcMgr; 92 SrcMgrDiagInfo DiagInfo; 93 94 // If the current LLVMContext has an inline asm handler, set it in SourceMgr. 95 LLVMContext &LLVMCtx = MMI->getModule()->getContext(); 96 bool HasDiagHandler = false; 97 if (LLVMCtx.getInlineAsmDiagnosticHandler() != 0) { 98 // If the source manager has an issue, we arrange for srcMgrDiagHandler 99 // to be invoked, getting DiagInfo passed into it. 100 DiagInfo.LocInfo = LocMDNode; 101 DiagInfo.DiagHandler = LLVMCtx.getInlineAsmDiagnosticHandler(); 102 DiagInfo.DiagContext = LLVMCtx.getInlineAsmDiagnosticContext(); 103 SrcMgr.setDiagHandler(srcMgrDiagHandler, &DiagInfo); 104 HasDiagHandler = true; 105 } 106 107 MemoryBuffer *Buffer; 108 if (isNullTerminated) 109 Buffer = MemoryBuffer::getMemBuffer(Str, "<inline asm>"); 110 else 111 Buffer = MemoryBuffer::getMemBufferCopy(Str, "<inline asm>"); 112 113 // Tell SrcMgr about this buffer, it takes ownership of the buffer. 114 SrcMgr.AddNewSourceBuffer(Buffer, SMLoc()); 115 116 OwningPtr<MCAsmParser> Parser(createMCAsmParser(SrcMgr, 117 OutContext, OutStreamer, 118 *MAI)); 119 120 // Reuse the existing Subtarget, because the AsmParser may need to 121 // modify it. For example, when switching between ARM and 122 // Thumb mode. 123 MCSubtargetInfo* STI = 124 const_cast<MCSubtargetInfo*>(&TM.getSubtarget<MCSubtargetInfo>()); 125 126 // Preserve a copy of the original STI because the parser may modify it. 127 // The target can restore the original state in emitInlineAsmEnd(). 128 MCSubtargetInfo STIOrig = *STI; 129 130 OwningPtr<MCTargetAsmParser> 131 TAP(TM.getTarget().createMCAsmParser(*STI, *Parser, *MII)); 132 if (!TAP) 133 report_fatal_error("Inline asm not supported by this streamer because" 134 " we don't have an asm parser for this target\n"); 135 Parser->setAssemblerDialect(Dialect); 136 Parser->setTargetParser(*TAP.get()); 137 138 // Don't implicitly switch to the text section before the asm. 139 int Res = Parser->Run(/*NoInitialTextSection*/ true, 140 /*NoFinalize*/ true); 141 emitInlineAsmEnd(STIOrig, STI); 142 if (Res && !HasDiagHandler) 143 report_fatal_error("Error parsing inline asm\n"); 144 } 145 146 static void EmitMSInlineAsmStr(const char *AsmStr, const MachineInstr *MI, 147 MachineModuleInfo *MMI, int InlineAsmVariant, 148 AsmPrinter *AP, unsigned LocCookie, 149 raw_ostream &OS) { 150 // Switch to the inline assembly variant. 151 OS << "\t.intel_syntax\n\t"; 152 153 const char *LastEmitted = AsmStr; // One past the last character emitted. 154 unsigned NumOperands = MI->getNumOperands(); 155 156 while (*LastEmitted) { 157 switch (*LastEmitted) { 158 default: { 159 // Not a special case, emit the string section literally. 160 const char *LiteralEnd = LastEmitted+1; 161 while (*LiteralEnd && *LiteralEnd != '{' && *LiteralEnd != '|' && 162 *LiteralEnd != '}' && *LiteralEnd != '$' && *LiteralEnd != '\n') 163 ++LiteralEnd; 164 165 OS.write(LastEmitted, LiteralEnd-LastEmitted); 166 LastEmitted = LiteralEnd; 167 break; 168 } 169 case '\n': 170 ++LastEmitted; // Consume newline character. 171 OS << '\n'; // Indent code with newline. 172 break; 173 case '$': { 174 ++LastEmitted; // Consume '$' character. 175 bool Done = true; 176 177 // Handle escapes. 178 switch (*LastEmitted) { 179 default: Done = false; break; 180 case '$': 181 ++LastEmitted; // Consume second '$' character. 182 break; 183 } 184 if (Done) break; 185 186 const char *IDStart = LastEmitted; 187 const char *IDEnd = IDStart; 188 while (*IDEnd >= '0' && *IDEnd <= '9') ++IDEnd; 189 190 unsigned Val; 191 if (StringRef(IDStart, IDEnd-IDStart).getAsInteger(10, Val)) 192 report_fatal_error("Bad $ operand number in inline asm string: '" + 193 Twine(AsmStr) + "'"); 194 LastEmitted = IDEnd; 195 196 if (Val >= NumOperands-1) 197 report_fatal_error("Invalid $ operand number in inline asm string: '" + 198 Twine(AsmStr) + "'"); 199 200 // Okay, we finally have a value number. Ask the target to print this 201 // operand! 202 unsigned OpNo = InlineAsm::MIOp_FirstOperand; 203 204 bool Error = false; 205 206 // Scan to find the machine operand number for the operand. 207 for (; Val; --Val) { 208 if (OpNo >= MI->getNumOperands()) break; 209 unsigned OpFlags = MI->getOperand(OpNo).getImm(); 210 OpNo += InlineAsm::getNumOperandRegisters(OpFlags) + 1; 211 } 212 213 // We may have a location metadata attached to the end of the 214 // instruction, and at no point should see metadata at any 215 // other point while processing. It's an error if so. 216 if (OpNo >= MI->getNumOperands() || 217 MI->getOperand(OpNo).isMetadata()) { 218 Error = true; 219 } else { 220 unsigned OpFlags = MI->getOperand(OpNo).getImm(); 221 ++OpNo; // Skip over the ID number. 222 223 if (InlineAsm::isMemKind(OpFlags)) { 224 Error = AP->PrintAsmMemoryOperand(MI, OpNo, InlineAsmVariant, 225 /*Modifier*/ 0, OS); 226 } else { 227 Error = AP->PrintAsmOperand(MI, OpNo, InlineAsmVariant, 228 /*Modifier*/ 0, OS); 229 } 230 } 231 if (Error) { 232 std::string msg; 233 raw_string_ostream Msg(msg); 234 Msg << "invalid operand in inline asm: '" << AsmStr << "'"; 235 MMI->getModule()->getContext().emitError(LocCookie, Msg.str()); 236 } 237 break; 238 } 239 } 240 } 241 OS << "\n\t.att_syntax\n" << (char)0; // null terminate string. 242 } 243 244 static void EmitGCCInlineAsmStr(const char *AsmStr, const MachineInstr *MI, 245 MachineModuleInfo *MMI, int InlineAsmVariant, 246 int AsmPrinterVariant, AsmPrinter *AP, 247 unsigned LocCookie, raw_ostream &OS) { 248 int CurVariant = -1; // The number of the {.|.|.} region we are in. 249 const char *LastEmitted = AsmStr; // One past the last character emitted. 250 unsigned NumOperands = MI->getNumOperands(); 251 252 OS << '\t'; 253 254 while (*LastEmitted) { 255 switch (*LastEmitted) { 256 default: { 257 // Not a special case, emit the string section literally. 258 const char *LiteralEnd = LastEmitted+1; 259 while (*LiteralEnd && *LiteralEnd != '{' && *LiteralEnd != '|' && 260 *LiteralEnd != '}' && *LiteralEnd != '$' && *LiteralEnd != '\n') 261 ++LiteralEnd; 262 if (CurVariant == -1 || CurVariant == AsmPrinterVariant) 263 OS.write(LastEmitted, LiteralEnd-LastEmitted); 264 LastEmitted = LiteralEnd; 265 break; 266 } 267 case '\n': 268 ++LastEmitted; // Consume newline character. 269 OS << '\n'; // Indent code with newline. 270 break; 271 case '$': { 272 ++LastEmitted; // Consume '$' character. 273 bool Done = true; 274 275 // Handle escapes. 276 switch (*LastEmitted) { 277 default: Done = false; break; 278 case '$': // $$ -> $ 279 if (CurVariant == -1 || CurVariant == AsmPrinterVariant) 280 OS << '$'; 281 ++LastEmitted; // Consume second '$' character. 282 break; 283 case '(': // $( -> same as GCC's { character. 284 ++LastEmitted; // Consume '(' character. 285 if (CurVariant != -1) 286 report_fatal_error("Nested variants found in inline asm string: '" + 287 Twine(AsmStr) + "'"); 288 CurVariant = 0; // We're in the first variant now. 289 break; 290 case '|': 291 ++LastEmitted; // consume '|' character. 292 if (CurVariant == -1) 293 OS << '|'; // this is gcc's behavior for | outside a variant 294 else 295 ++CurVariant; // We're in the next variant. 296 break; 297 case ')': // $) -> same as GCC's } char. 298 ++LastEmitted; // consume ')' character. 299 if (CurVariant == -1) 300 OS << '}'; // this is gcc's behavior for } outside a variant 301 else 302 CurVariant = -1; 303 break; 304 } 305 if (Done) break; 306 307 bool HasCurlyBraces = false; 308 if (*LastEmitted == '{') { // ${variable} 309 ++LastEmitted; // Consume '{' character. 310 HasCurlyBraces = true; 311 } 312 313 // If we have ${:foo}, then this is not a real operand reference, it is a 314 // "magic" string reference, just like in .td files. Arrange to call 315 // PrintSpecial. 316 if (HasCurlyBraces && *LastEmitted == ':') { 317 ++LastEmitted; 318 const char *StrStart = LastEmitted; 319 const char *StrEnd = strchr(StrStart, '}'); 320 if (StrEnd == 0) 321 report_fatal_error("Unterminated ${:foo} operand in inline asm" 322 " string: '" + Twine(AsmStr) + "'"); 323 324 std::string Val(StrStart, StrEnd); 325 AP->PrintSpecial(MI, OS, Val.c_str()); 326 LastEmitted = StrEnd+1; 327 break; 328 } 329 330 const char *IDStart = LastEmitted; 331 const char *IDEnd = IDStart; 332 while (*IDEnd >= '0' && *IDEnd <= '9') ++IDEnd; 333 334 unsigned Val; 335 if (StringRef(IDStart, IDEnd-IDStart).getAsInteger(10, Val)) 336 report_fatal_error("Bad $ operand number in inline asm string: '" + 337 Twine(AsmStr) + "'"); 338 LastEmitted = IDEnd; 339 340 char Modifier[2] = { 0, 0 }; 341 342 if (HasCurlyBraces) { 343 // If we have curly braces, check for a modifier character. This 344 // supports syntax like ${0:u}, which correspond to "%u0" in GCC asm. 345 if (*LastEmitted == ':') { 346 ++LastEmitted; // Consume ':' character. 347 if (*LastEmitted == 0) 348 report_fatal_error("Bad ${:} expression in inline asm string: '" + 349 Twine(AsmStr) + "'"); 350 351 Modifier[0] = *LastEmitted; 352 ++LastEmitted; // Consume modifier character. 353 } 354 355 if (*LastEmitted != '}') 356 report_fatal_error("Bad ${} expression in inline asm string: '" + 357 Twine(AsmStr) + "'"); 358 ++LastEmitted; // Consume '}' character. 359 } 360 361 if (Val >= NumOperands-1) 362 report_fatal_error("Invalid $ operand number in inline asm string: '" + 363 Twine(AsmStr) + "'"); 364 365 // Okay, we finally have a value number. Ask the target to print this 366 // operand! 367 if (CurVariant == -1 || CurVariant == AsmPrinterVariant) { 368 unsigned OpNo = InlineAsm::MIOp_FirstOperand; 369 370 bool Error = false; 371 372 // Scan to find the machine operand number for the operand. 373 for (; Val; --Val) { 374 if (OpNo >= MI->getNumOperands()) break; 375 unsigned OpFlags = MI->getOperand(OpNo).getImm(); 376 OpNo += InlineAsm::getNumOperandRegisters(OpFlags) + 1; 377 } 378 379 // We may have a location metadata attached to the end of the 380 // instruction, and at no point should see metadata at any 381 // other point while processing. It's an error if so. 382 if (OpNo >= MI->getNumOperands() || 383 MI->getOperand(OpNo).isMetadata()) { 384 Error = true; 385 } else { 386 unsigned OpFlags = MI->getOperand(OpNo).getImm(); 387 ++OpNo; // Skip over the ID number. 388 389 if (Modifier[0] == 'l') // labels are target independent 390 // FIXME: What if the operand isn't an MBB, report error? 391 OS << *MI->getOperand(OpNo).getMBB()->getSymbol(); 392 else { 393 if (InlineAsm::isMemKind(OpFlags)) { 394 Error = AP->PrintAsmMemoryOperand(MI, OpNo, InlineAsmVariant, 395 Modifier[0] ? Modifier : 0, 396 OS); 397 } else { 398 Error = AP->PrintAsmOperand(MI, OpNo, InlineAsmVariant, 399 Modifier[0] ? Modifier : 0, OS); 400 } 401 } 402 } 403 if (Error) { 404 std::string msg; 405 raw_string_ostream Msg(msg); 406 Msg << "invalid operand in inline asm: '" << AsmStr << "'"; 407 MMI->getModule()->getContext().emitError(LocCookie, Msg.str()); 408 } 409 } 410 break; 411 } 412 } 413 } 414 OS << '\n' << (char)0; // null terminate string. 415 } 416 417 /// EmitInlineAsm - This method formats and emits the specified machine 418 /// instruction that is an inline asm. 419 void AsmPrinter::EmitInlineAsm(const MachineInstr *MI) const { 420 assert(MI->isInlineAsm() && "printInlineAsm only works on inline asms"); 421 422 // Count the number of register definitions to find the asm string. 423 unsigned NumDefs = 0; 424 for (; MI->getOperand(NumDefs).isReg() && MI->getOperand(NumDefs).isDef(); 425 ++NumDefs) 426 assert(NumDefs != MI->getNumOperands()-2 && "No asm string?"); 427 428 assert(MI->getOperand(NumDefs).isSymbol() && "No asm string?"); 429 430 // Disassemble the AsmStr, printing out the literal pieces, the operands, etc. 431 const char *AsmStr = MI->getOperand(NumDefs).getSymbolName(); 432 433 // If this asmstr is empty, just print the #APP/#NOAPP markers. 434 // These are useful to see where empty asm's wound up. 435 if (AsmStr[0] == 0) { 436 OutStreamer.emitRawComment(MAI->getInlineAsmStart()); 437 OutStreamer.emitRawComment(MAI->getInlineAsmEnd()); 438 return; 439 } 440 441 // Emit the #APP start marker. This has to happen even if verbose-asm isn't 442 // enabled, so we use emitRawComment. 443 OutStreamer.emitRawComment(MAI->getInlineAsmStart()); 444 445 // Get the !srcloc metadata node if we have it, and decode the loc cookie from 446 // it. 447 unsigned LocCookie = 0; 448 const MDNode *LocMD = 0; 449 for (unsigned i = MI->getNumOperands(); i != 0; --i) { 450 if (MI->getOperand(i-1).isMetadata() && 451 (LocMD = MI->getOperand(i-1).getMetadata()) && 452 LocMD->getNumOperands() != 0) { 453 if (const ConstantInt *CI = dyn_cast<ConstantInt>(LocMD->getOperand(0))) { 454 LocCookie = CI->getZExtValue(); 455 break; 456 } 457 } 458 } 459 460 // Emit the inline asm to a temporary string so we can emit it through 461 // EmitInlineAsm. 462 SmallString<256> StringData; 463 raw_svector_ostream OS(StringData); 464 465 // The variant of the current asmprinter. 466 int AsmPrinterVariant = MAI->getAssemblerDialect(); 467 InlineAsm::AsmDialect InlineAsmVariant = MI->getInlineAsmDialect(); 468 AsmPrinter *AP = const_cast<AsmPrinter*>(this); 469 if (InlineAsmVariant == InlineAsm::AD_ATT) 470 EmitGCCInlineAsmStr(AsmStr, MI, MMI, InlineAsmVariant, AsmPrinterVariant, 471 AP, LocCookie, OS); 472 else 473 EmitMSInlineAsmStr(AsmStr, MI, MMI, InlineAsmVariant, AP, LocCookie, OS); 474 475 EmitInlineAsm(OS.str(), LocMD, MI->getInlineAsmDialect()); 476 477 // Emit the #NOAPP end marker. This has to happen even if verbose-asm isn't 478 // enabled, so we use emitRawComment. 479 OutStreamer.emitRawComment(MAI->getInlineAsmEnd()); 480 } 481 482 483 /// PrintSpecial - Print information related to the specified machine instr 484 /// that is independent of the operand, and may be independent of the instr 485 /// itself. This can be useful for portably encoding the comment character 486 /// or other bits of target-specific knowledge into the asmstrings. The 487 /// syntax used is ${:comment}. Targets can override this to add support 488 /// for their own strange codes. 489 void AsmPrinter::PrintSpecial(const MachineInstr *MI, raw_ostream &OS, 490 const char *Code) const { 491 const DataLayout *DL = TM.getDataLayout(); 492 if (!strcmp(Code, "private")) { 493 OS << DL->getPrivateGlobalPrefix(); 494 } else if (!strcmp(Code, "comment")) { 495 OS << MAI->getCommentString(); 496 } else if (!strcmp(Code, "uid")) { 497 // Comparing the address of MI isn't sufficient, because machineinstrs may 498 // be allocated to the same address across functions. 499 500 // If this is a new LastFn instruction, bump the counter. 501 if (LastMI != MI || LastFn != getFunctionNumber()) { 502 ++Counter; 503 LastMI = MI; 504 LastFn = getFunctionNumber(); 505 } 506 OS << Counter; 507 } else { 508 std::string msg; 509 raw_string_ostream Msg(msg); 510 Msg << "Unknown special formatter '" << Code 511 << "' for machine instr: " << *MI; 512 report_fatal_error(Msg.str()); 513 } 514 } 515 516 /// PrintAsmOperand - Print the specified operand of MI, an INLINEASM 517 /// instruction, using the specified assembler variant. Targets should 518 /// override this to format as appropriate. 519 bool AsmPrinter::PrintAsmOperand(const MachineInstr *MI, unsigned OpNo, 520 unsigned AsmVariant, const char *ExtraCode, 521 raw_ostream &O) { 522 // Does this asm operand have a single letter operand modifier? 523 if (ExtraCode && ExtraCode[0]) { 524 if (ExtraCode[1] != 0) return true; // Unknown modifier. 525 526 const MachineOperand &MO = MI->getOperand(OpNo); 527 switch (ExtraCode[0]) { 528 default: 529 return true; // Unknown modifier. 530 case 'c': // Substitute immediate value without immediate syntax 531 if (MO.getType() != MachineOperand::MO_Immediate) 532 return true; 533 O << MO.getImm(); 534 return false; 535 case 'n': // Negate the immediate constant. 536 if (MO.getType() != MachineOperand::MO_Immediate) 537 return true; 538 O << -MO.getImm(); 539 return false; 540 } 541 } 542 return true; 543 } 544 545 bool AsmPrinter::PrintAsmMemoryOperand(const MachineInstr *MI, unsigned OpNo, 546 unsigned AsmVariant, 547 const char *ExtraCode, raw_ostream &O) { 548 // Target doesn't support this yet! 549 return true; 550 } 551 552 void AsmPrinter::emitInlineAsmEnd(const MCSubtargetInfo &StartInfo, 553 MCSubtargetInfo *EndInfo) const {} 554