1 //===--- DebugInfo.cpp - Debug Information Helper Classes -----------------===// 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 helper classes used to build and interpret debug 11 // information in LLVM IR form. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #include "llvm/IR/DebugInfo.h" 16 #include "LLVMContextImpl.h" 17 #include "llvm/ADT/STLExtras.h" 18 #include "llvm/ADT/SmallPtrSet.h" 19 #include "llvm/ADT/SmallString.h" 20 #include "llvm/Analysis/ValueTracking.h" 21 #include "llvm/IR/Constants.h" 22 #include "llvm/IR/DIBuilder.h" 23 #include "llvm/IR/DerivedTypes.h" 24 #include "llvm/IR/Instructions.h" 25 #include "llvm/IR/IntrinsicInst.h" 26 #include "llvm/IR/Intrinsics.h" 27 #include "llvm/IR/Module.h" 28 #include "llvm/IR/ValueHandle.h" 29 #include "llvm/Support/Debug.h" 30 #include "llvm/Support/Dwarf.h" 31 #include "llvm/Support/raw_ostream.h" 32 using namespace llvm; 33 using namespace llvm::dwarf; 34 35 //===----------------------------------------------------------------------===// 36 // DIDescriptor 37 //===----------------------------------------------------------------------===// 38 39 bool DIDescriptor::Verify() const { 40 return DbgNode && 41 (DIDerivedType(DbgNode).Verify() || 42 DICompositeType(DbgNode).Verify() || DIBasicType(DbgNode).Verify() || 43 DIVariable(DbgNode).Verify() || DISubprogram(DbgNode).Verify() || 44 DIGlobalVariable(DbgNode).Verify() || DIFile(DbgNode).Verify() || 45 DICompileUnit(DbgNode).Verify() || DINameSpace(DbgNode).Verify() || 46 DILexicalBlock(DbgNode).Verify() || 47 DILexicalBlockFile(DbgNode).Verify() || 48 DISubrange(DbgNode).Verify() || DIEnumerator(DbgNode).Verify() || 49 DIObjCProperty(DbgNode).Verify() || 50 DITemplateTypeParameter(DbgNode).Verify() || 51 DITemplateValueParameter(DbgNode).Verify() || 52 DIImportedEntity(DbgNode).Verify() || DIExpression(DbgNode).Verify()); 53 } 54 55 static Metadata *getField(const MDNode *DbgNode, unsigned Elt) { 56 if (!DbgNode || Elt >= DbgNode->getNumOperands()) 57 return nullptr; 58 return DbgNode->getOperand(Elt); 59 } 60 61 static MDNode *getNodeField(const MDNode *DbgNode, unsigned Elt) { 62 return dyn_cast_or_null<MDNode>(getField(DbgNode, Elt)); 63 } 64 65 static StringRef getStringField(const MDNode *DbgNode, unsigned Elt) { 66 if (MDString *MDS = dyn_cast_or_null<MDString>(getField(DbgNode, Elt))) 67 return MDS->getString(); 68 return StringRef(); 69 } 70 71 StringRef DIDescriptor::getStringField(unsigned Elt) const { 72 return ::getStringField(DbgNode, Elt); 73 } 74 75 uint64_t DIDescriptor::getUInt64Field(unsigned Elt) const { 76 if (auto *C = getConstantField(Elt)) 77 if (ConstantInt *CI = dyn_cast<ConstantInt>(C)) 78 return CI->getZExtValue(); 79 80 return 0; 81 } 82 83 int64_t DIDescriptor::getInt64Field(unsigned Elt) const { 84 if (auto *C = getConstantField(Elt)) 85 if (ConstantInt *CI = dyn_cast<ConstantInt>(C)) 86 return CI->getZExtValue(); 87 88 return 0; 89 } 90 91 DIDescriptor DIDescriptor::getDescriptorField(unsigned Elt) const { 92 MDNode *Field = getNodeField(DbgNode, Elt); 93 return DIDescriptor(Field); 94 } 95 96 GlobalVariable *DIDescriptor::getGlobalVariableField(unsigned Elt) const { 97 return dyn_cast_or_null<GlobalVariable>(getConstantField(Elt)); 98 } 99 100 Constant *DIDescriptor::getConstantField(unsigned Elt) const { 101 if (!DbgNode) 102 return nullptr; 103 104 if (Elt < DbgNode->getNumOperands()) 105 if (auto *C = 106 dyn_cast_or_null<ConstantAsMetadata>(DbgNode->getOperand(Elt))) 107 return C->getValue(); 108 return nullptr; 109 } 110 111 Function *DIDescriptor::getFunctionField(unsigned Elt) const { 112 return dyn_cast_or_null<Function>(getConstantField(Elt)); 113 } 114 115 void DIDescriptor::replaceFunctionField(unsigned Elt, Function *F) { 116 if (!DbgNode) 117 return; 118 119 if (Elt < DbgNode->getNumOperands()) { 120 MDNode *Node = const_cast<MDNode *>(DbgNode); 121 Node->replaceOperandWith(Elt, F ? ConstantAsMetadata::get(F) : nullptr); 122 } 123 } 124 125 static unsigned DIVariableInlinedAtIndex = 4; 126 MDNode *DIVariable::getInlinedAt() const { 127 return getNodeField(DbgNode, DIVariableInlinedAtIndex); 128 } 129 130 /// \brief Return the size reported by the variable's type. 131 unsigned DIVariable::getSizeInBits(const DITypeIdentifierMap &Map) { 132 DIType Ty = getType().resolve(Map); 133 // Follow derived types until we reach a type that 134 // reports back a size. 135 while (Ty.isDerivedType() && !Ty.getSizeInBits()) { 136 DIDerivedType DT(&*Ty); 137 Ty = DT.getTypeDerivedFrom().resolve(Map); 138 } 139 assert(Ty.getSizeInBits() && "type with size 0"); 140 return Ty.getSizeInBits(); 141 } 142 143 uint64_t DIExpression::getElement(unsigned Idx) const { 144 unsigned I = Idx + 1; 145 assert(I < getNumHeaderFields() && 146 "non-existing complex address element requested"); 147 return getHeaderFieldAs<int64_t>(I); 148 } 149 150 bool DIExpression::isBitPiece() const { 151 unsigned N = getNumElements(); 152 return N >=3 && getElement(N-3) == dwarf::DW_OP_bit_piece; 153 } 154 155 uint64_t DIExpression::getBitPieceOffset() const { 156 assert(isBitPiece() && "not a piece"); 157 return getElement(getNumElements()-2); 158 } 159 160 uint64_t DIExpression::getBitPieceSize() const { 161 assert(isBitPiece() && "not a piece"); 162 return getElement(getNumElements()-1); 163 } 164 165 DIExpression::iterator DIExpression::begin() const { 166 return DIExpression::iterator(*this); 167 } 168 169 DIExpression::iterator DIExpression::end() const { 170 return DIExpression::iterator(); 171 } 172 173 DIExpression::Operand DIExpression::Operand::getNext() const { 174 iterator it(I); 175 return *(++it); 176 } 177 178 //===----------------------------------------------------------------------===// 179 // Predicates 180 //===----------------------------------------------------------------------===// 181 182 bool DIDescriptor::isSubroutineType() const { 183 return DbgNode && getTag() == dwarf::DW_TAG_subroutine_type; 184 } 185 186 bool DIDescriptor::isBasicType() const { 187 if (!DbgNode) 188 return false; 189 switch (getTag()) { 190 case dwarf::DW_TAG_base_type: 191 case dwarf::DW_TAG_unspecified_type: 192 return true; 193 default: 194 return false; 195 } 196 } 197 198 bool DIDescriptor::isDerivedType() const { 199 if (!DbgNode) 200 return false; 201 switch (getTag()) { 202 case dwarf::DW_TAG_typedef: 203 case dwarf::DW_TAG_pointer_type: 204 case dwarf::DW_TAG_ptr_to_member_type: 205 case dwarf::DW_TAG_reference_type: 206 case dwarf::DW_TAG_rvalue_reference_type: 207 case dwarf::DW_TAG_const_type: 208 case dwarf::DW_TAG_volatile_type: 209 case dwarf::DW_TAG_restrict_type: 210 case dwarf::DW_TAG_member: 211 case dwarf::DW_TAG_inheritance: 212 case dwarf::DW_TAG_friend: 213 return true; 214 default: 215 // CompositeTypes are currently modelled as DerivedTypes. 216 return isCompositeType(); 217 } 218 } 219 220 bool DIDescriptor::isCompositeType() const { 221 if (!DbgNode) 222 return false; 223 switch (getTag()) { 224 case dwarf::DW_TAG_array_type: 225 case dwarf::DW_TAG_structure_type: 226 case dwarf::DW_TAG_union_type: 227 case dwarf::DW_TAG_enumeration_type: 228 case dwarf::DW_TAG_subroutine_type: 229 case dwarf::DW_TAG_class_type: 230 return true; 231 default: 232 return false; 233 } 234 } 235 236 bool DIDescriptor::isVariable() const { 237 if (!DbgNode) 238 return false; 239 switch (getTag()) { 240 case dwarf::DW_TAG_auto_variable: 241 case dwarf::DW_TAG_arg_variable: 242 return true; 243 default: 244 return false; 245 } 246 } 247 248 bool DIDescriptor::isType() const { 249 return isBasicType() || isCompositeType() || isDerivedType(); 250 } 251 252 bool DIDescriptor::isSubprogram() const { 253 return DbgNode && getTag() == dwarf::DW_TAG_subprogram; 254 } 255 256 bool DIDescriptor::isGlobalVariable() const { 257 return DbgNode && getTag() == dwarf::DW_TAG_variable; 258 } 259 260 bool DIDescriptor::isScope() const { 261 if (!DbgNode) 262 return false; 263 switch (getTag()) { 264 case dwarf::DW_TAG_compile_unit: 265 case dwarf::DW_TAG_lexical_block: 266 case dwarf::DW_TAG_subprogram: 267 case dwarf::DW_TAG_namespace: 268 case dwarf::DW_TAG_file_type: 269 return true; 270 default: 271 break; 272 } 273 return isType(); 274 } 275 276 bool DIDescriptor::isTemplateTypeParameter() const { 277 return DbgNode && getTag() == dwarf::DW_TAG_template_type_parameter; 278 } 279 280 bool DIDescriptor::isTemplateValueParameter() const { 281 return DbgNode && (getTag() == dwarf::DW_TAG_template_value_parameter || 282 getTag() == dwarf::DW_TAG_GNU_template_template_param || 283 getTag() == dwarf::DW_TAG_GNU_template_parameter_pack); 284 } 285 286 bool DIDescriptor::isCompileUnit() const { 287 return DbgNode && getTag() == dwarf::DW_TAG_compile_unit; 288 } 289 290 bool DIDescriptor::isFile() const { 291 return DbgNode && getTag() == dwarf::DW_TAG_file_type; 292 } 293 294 bool DIDescriptor::isNameSpace() const { 295 return DbgNode && getTag() == dwarf::DW_TAG_namespace; 296 } 297 298 bool DIDescriptor::isLexicalBlockFile() const { 299 return DbgNode && getTag() == dwarf::DW_TAG_lexical_block && 300 DbgNode->getNumOperands() == 3 && getNumHeaderFields() == 2; 301 } 302 303 bool DIDescriptor::isLexicalBlock() const { 304 // FIXME: There are always exactly 4 header fields in DILexicalBlock, but 305 // something relies on this returning true for DILexicalBlockFile. 306 return DbgNode && getTag() == dwarf::DW_TAG_lexical_block && 307 DbgNode->getNumOperands() == 3 && 308 (getNumHeaderFields() == 2 || getNumHeaderFields() == 4); 309 } 310 311 bool DIDescriptor::isSubrange() const { 312 return DbgNode && getTag() == dwarf::DW_TAG_subrange_type; 313 } 314 315 bool DIDescriptor::isEnumerator() const { 316 return DbgNode && getTag() == dwarf::DW_TAG_enumerator; 317 } 318 319 bool DIDescriptor::isObjCProperty() const { 320 return DbgNode && getTag() == dwarf::DW_TAG_APPLE_property; 321 } 322 323 bool DIDescriptor::isImportedEntity() const { 324 return DbgNode && (getTag() == dwarf::DW_TAG_imported_module || 325 getTag() == dwarf::DW_TAG_imported_declaration); 326 } 327 328 bool DIDescriptor::isExpression() const { 329 return DbgNode && (getTag() == dwarf::DW_TAG_expression); 330 } 331 332 //===----------------------------------------------------------------------===// 333 // Simple Descriptor Constructors and other Methods 334 //===----------------------------------------------------------------------===// 335 336 void DIDescriptor::replaceAllUsesWith(LLVMContext &VMContext, DIDescriptor D) { 337 338 assert(DbgNode && "Trying to replace an unverified type!"); 339 340 // Since we use a TrackingVH for the node, its easy for clients to manufacture 341 // legitimate situations where they want to replaceAllUsesWith() on something 342 // which, due to uniquing, has merged with the source. We shield clients from 343 // this detail by allowing a value to be replaced with replaceAllUsesWith() 344 // itself. 345 const MDNode *DN = D; 346 if (DbgNode == DN) { 347 SmallVector<Metadata *, 10> Ops(DbgNode->getNumOperands()); 348 for (size_t i = 0; i != Ops.size(); ++i) 349 Ops[i] = DbgNode->getOperand(i); 350 DN = MDNode::get(VMContext, Ops); 351 } 352 353 assert(DbgNode->isTemporary() && "Expected temporary node"); 354 auto *Node = const_cast<MDNode *>(DbgNode); 355 Node->replaceAllUsesWith(const_cast<MDNode *>(DN)); 356 MDNode::deleteTemporary(Node); 357 DbgNode = DN; 358 } 359 360 void DIDescriptor::replaceAllUsesWith(MDNode *D) { 361 assert(DbgNode && "Trying to replace an unverified type!"); 362 assert(DbgNode != D && "This replacement should always happen"); 363 assert(DbgNode->isTemporary() && "Expected temporary node"); 364 auto *Node = const_cast<MDNode *>(DbgNode); 365 Node->replaceAllUsesWith(D); 366 MDNode::deleteTemporary(Node); 367 } 368 369 bool DICompileUnit::Verify() const { 370 if (!isCompileUnit()) 371 return false; 372 373 // Don't bother verifying the compilation directory or producer string 374 // as those could be empty. 375 if (getFilename().empty()) 376 return false; 377 378 return DbgNode->getNumOperands() == 7 && getNumHeaderFields() == 8; 379 } 380 381 bool DIObjCProperty::Verify() const { 382 if (!isObjCProperty()) 383 return false; 384 385 // Don't worry about the rest of the strings for now. 386 return DbgNode->getNumOperands() == 3 && getNumHeaderFields() == 6; 387 } 388 389 /// \brief Check if a field at position Elt of a MDNode is a MDNode. 390 /// 391 /// We currently allow an empty string and an integer. 392 /// But we don't allow a non-empty string in a MDNode field. 393 static bool fieldIsMDNode(const MDNode *DbgNode, unsigned Elt) { 394 // FIXME: This function should return true, if the field is null or the field 395 // is indeed a MDNode: return !Fld || isa<MDNode>(Fld). 396 Metadata *Fld = getField(DbgNode, Elt); 397 if (Fld && isa<MDString>(Fld) && !cast<MDString>(Fld)->getString().empty()) 398 return false; 399 return true; 400 } 401 402 /// \brief Check if a field at position Elt of a MDNode is a MDString. 403 static bool fieldIsMDString(const MDNode *DbgNode, unsigned Elt) { 404 Metadata *Fld = getField(DbgNode, Elt); 405 return !Fld || isa<MDString>(Fld); 406 } 407 408 /// \brief Check if a value can be a reference to a type. 409 static bool isTypeRef(const Metadata *MD) { 410 if (!MD) 411 return true; 412 if (auto *S = dyn_cast<MDString>(MD)) 413 return !S->getString().empty(); 414 if (auto *N = dyn_cast<MDNode>(MD)) 415 return DIType(N).isType(); 416 return false; 417 } 418 419 /// \brief Check if referenced field might be a type. 420 static bool fieldIsTypeRef(const MDNode *DbgNode, unsigned Elt) { 421 return isTypeRef(dyn_cast_or_null<Metadata>(getField(DbgNode, Elt))); 422 } 423 424 /// \brief Check if a value can be a ScopeRef. 425 static bool isScopeRef(const Metadata *MD) { 426 if (!MD) 427 return true; 428 if (auto *S = dyn_cast<MDString>(MD)) 429 return !S->getString().empty(); 430 return isa<MDNode>(MD); 431 } 432 433 /// \brief Check if a field at position Elt of a MDNode can be a ScopeRef. 434 static bool fieldIsScopeRef(const MDNode *DbgNode, unsigned Elt) { 435 return isScopeRef(dyn_cast_or_null<Metadata>(getField(DbgNode, Elt))); 436 } 437 438 bool DIType::Verify() const { 439 if (!isType()) 440 return false; 441 // Make sure Context @ field 2 is MDNode. 442 if (!fieldIsScopeRef(DbgNode, 2)) 443 return false; 444 445 // FIXME: Sink this into the various subclass verifies. 446 uint16_t Tag = getTag(); 447 if (!isBasicType() && Tag != dwarf::DW_TAG_const_type && 448 Tag != dwarf::DW_TAG_volatile_type && Tag != dwarf::DW_TAG_pointer_type && 449 Tag != dwarf::DW_TAG_ptr_to_member_type && 450 Tag != dwarf::DW_TAG_reference_type && 451 Tag != dwarf::DW_TAG_rvalue_reference_type && 452 Tag != dwarf::DW_TAG_restrict_type && Tag != dwarf::DW_TAG_array_type && 453 Tag != dwarf::DW_TAG_enumeration_type && 454 Tag != dwarf::DW_TAG_subroutine_type && 455 Tag != dwarf::DW_TAG_inheritance && Tag != dwarf::DW_TAG_friend && 456 getFilename().empty()) 457 return false; 458 459 // DIType is abstract, it should be a BasicType, a DerivedType or 460 // a CompositeType. 461 if (isBasicType()) 462 return DIBasicType(DbgNode).Verify(); 463 else if (isCompositeType()) 464 return DICompositeType(DbgNode).Verify(); 465 else if (isDerivedType()) 466 return DIDerivedType(DbgNode).Verify(); 467 else 468 return false; 469 } 470 471 bool DIBasicType::Verify() const { 472 return isBasicType() && DbgNode->getNumOperands() == 3 && 473 getNumHeaderFields() == 8; 474 } 475 476 bool DIDerivedType::Verify() const { 477 // Make sure DerivedFrom @ field 3 is TypeRef. 478 if (!fieldIsTypeRef(DbgNode, 3)) 479 return false; 480 if (getTag() == dwarf::DW_TAG_ptr_to_member_type) 481 // Make sure ClassType @ field 4 is a TypeRef. 482 if (!fieldIsTypeRef(DbgNode, 4)) 483 return false; 484 485 return isDerivedType() && DbgNode->getNumOperands() >= 4 && 486 DbgNode->getNumOperands() <= 8 && getNumHeaderFields() >= 7 && 487 getNumHeaderFields() <= 8; 488 } 489 490 bool DICompositeType::Verify() const { 491 if (!isCompositeType()) 492 return false; 493 494 // Make sure DerivedFrom @ field 3 and ContainingType @ field 5 are TypeRef. 495 if (!fieldIsTypeRef(DbgNode, 3)) 496 return false; 497 if (!fieldIsTypeRef(DbgNode, 5)) 498 return false; 499 500 // Make sure the type identifier at field 7 is MDString, it can be null. 501 if (!fieldIsMDString(DbgNode, 7)) 502 return false; 503 504 // A subroutine type can't be both & and &&. 505 if (isLValueReference() && isRValueReference()) 506 return false; 507 508 return DbgNode->getNumOperands() == 8 && getNumHeaderFields() == 8; 509 } 510 511 bool DISubprogram::Verify() const { 512 if (!isSubprogram()) 513 return false; 514 515 // Make sure context @ field 2 is a ScopeRef and type @ field 3 is a MDNode. 516 if (!fieldIsScopeRef(DbgNode, 2)) 517 return false; 518 if (!fieldIsMDNode(DbgNode, 3)) 519 return false; 520 // Containing type @ field 4. 521 if (!fieldIsTypeRef(DbgNode, 4)) 522 return false; 523 524 // A subprogram can't be both & and &&. 525 if (isLValueReference() && isRValueReference()) 526 return false; 527 528 // If a DISubprogram has an llvm::Function*, then scope chains from all 529 // instructions within the function should lead to this DISubprogram. 530 if (auto *F = getFunction()) { 531 for (auto &BB : *F) { 532 for (auto &I : BB) { 533 DebugLoc DL = I.getDebugLoc(); 534 if (DL.isUnknown()) 535 continue; 536 537 MDNode *Scope = nullptr; 538 MDNode *IA = nullptr; 539 // walk the inlined-at scopes 540 while ((IA = DL.getInlinedAt())) 541 DL = DebugLoc::getFromDILocation(IA); 542 DL.getScopeAndInlinedAt(Scope, IA); 543 if (!Scope) 544 return false; 545 assert(!IA); 546 while (!DIDescriptor(Scope).isSubprogram()) { 547 DILexicalBlockFile D(Scope); 548 Scope = D.isLexicalBlockFile() 549 ? D.getScope() 550 : DebugLoc::getFromDILexicalBlock(Scope).getScope(); 551 if (!Scope) 552 return false; 553 } 554 if (!DISubprogram(Scope).describes(F)) 555 return false; 556 } 557 } 558 } 559 return DbgNode->getNumOperands() == 9 && getNumHeaderFields() == 12; 560 } 561 562 bool DIGlobalVariable::Verify() const { 563 if (!isGlobalVariable()) 564 return false; 565 566 if (getDisplayName().empty()) 567 return false; 568 // Make sure context @ field 1 is an MDNode. 569 if (!fieldIsMDNode(DbgNode, 1)) 570 return false; 571 // Make sure that type @ field 3 is a DITypeRef. 572 if (!fieldIsTypeRef(DbgNode, 3)) 573 return false; 574 // Make sure StaticDataMemberDeclaration @ field 5 is MDNode. 575 if (!fieldIsMDNode(DbgNode, 5)) 576 return false; 577 578 return DbgNode->getNumOperands() == 6 && getNumHeaderFields() == 7; 579 } 580 581 bool DIVariable::Verify() const { 582 if (!isVariable()) 583 return false; 584 585 // Make sure context @ field 1 is an MDNode. 586 if (!fieldIsMDNode(DbgNode, 1)) 587 return false; 588 // Make sure that type @ field 3 is a DITypeRef. 589 if (!fieldIsTypeRef(DbgNode, 3)) 590 return false; 591 592 // Check the number of header fields, which is common between complex and 593 // simple variables. 594 if (getNumHeaderFields() != 4) 595 return false; 596 597 // Variable without an inline location. 598 if (DbgNode->getNumOperands() == 4) 599 return true; 600 601 // Variable with an inline location. 602 return getInlinedAt() != nullptr && DbgNode->getNumOperands() == 5; 603 } 604 605 bool DIExpression::Verify() const { 606 // Empty DIExpressions may be represented as a nullptr. 607 if (!DbgNode) 608 return true; 609 610 if (!(isExpression() && DbgNode->getNumOperands() == 1)) 611 return false; 612 613 for (auto Op : *this) 614 switch (Op) { 615 case DW_OP_bit_piece: 616 // Must be the last element of the expression. 617 return std::distance(Op.getBase(), DIHeaderFieldIterator()) == 3; 618 case DW_OP_plus: 619 if (std::distance(Op.getBase(), DIHeaderFieldIterator()) < 2) 620 return false; 621 break; 622 case DW_OP_deref: 623 break; 624 default: 625 // Other operators are not yet supported by the backend. 626 return false; 627 } 628 return true; 629 } 630 631 bool DILocation::Verify() const { 632 return DbgNode && isa<MDLocation>(DbgNode); 633 } 634 635 bool DINameSpace::Verify() const { 636 if (!isNameSpace()) 637 return false; 638 return DbgNode->getNumOperands() == 3 && getNumHeaderFields() == 3; 639 } 640 641 MDNode *DIFile::getFileNode() const { return getNodeField(DbgNode, 1); } 642 643 bool DIFile::Verify() const { 644 return isFile() && DbgNode->getNumOperands() == 2; 645 } 646 647 bool DIEnumerator::Verify() const { 648 return isEnumerator() && DbgNode->getNumOperands() == 1 && 649 getNumHeaderFields() == 3; 650 } 651 652 bool DISubrange::Verify() const { 653 return isSubrange() && DbgNode->getNumOperands() == 1 && 654 getNumHeaderFields() == 3; 655 } 656 657 bool DILexicalBlock::Verify() const { 658 return isLexicalBlock() && DbgNode->getNumOperands() == 3 && 659 getNumHeaderFields() == 4; 660 } 661 662 bool DILexicalBlockFile::Verify() const { 663 return isLexicalBlockFile() && DbgNode->getNumOperands() == 3 && 664 getNumHeaderFields() == 2; 665 } 666 667 bool DITemplateTypeParameter::Verify() const { 668 return isTemplateTypeParameter() && DbgNode->getNumOperands() == 4 && 669 getNumHeaderFields() == 4; 670 } 671 672 bool DITemplateValueParameter::Verify() const { 673 return isTemplateValueParameter() && DbgNode->getNumOperands() == 5 && 674 getNumHeaderFields() == 4; 675 } 676 677 bool DIImportedEntity::Verify() const { 678 return isImportedEntity() && DbgNode->getNumOperands() == 3 && 679 getNumHeaderFields() == 3; 680 } 681 682 MDNode *DIDerivedType::getObjCProperty() const { 683 return getNodeField(DbgNode, 4); 684 } 685 686 MDString *DICompositeType::getIdentifier() const { 687 return cast_or_null<MDString>(getField(DbgNode, 7)); 688 } 689 690 #ifndef NDEBUG 691 static void VerifySubsetOf(const MDNode *LHS, const MDNode *RHS) { 692 for (unsigned i = 0; i != LHS->getNumOperands(); ++i) { 693 // Skip the 'empty' list (that's a single i32 0, rather than truly empty). 694 if (i == 0 && mdconst::hasa<ConstantInt>(LHS->getOperand(i))) 695 continue; 696 const MDNode *E = cast<MDNode>(LHS->getOperand(i)); 697 bool found = false; 698 for (unsigned j = 0; !found && j != RHS->getNumOperands(); ++j) 699 found = (E == cast<MDNode>(RHS->getOperand(j))); 700 assert(found && "Losing a member during member list replacement"); 701 } 702 } 703 #endif 704 705 void DICompositeType::setArraysHelper(MDNode *Elements, MDNode *TParams) { 706 TrackingMDNodeRef N(*this); 707 if (Elements) { 708 #ifndef NDEBUG 709 // Check that the new list of members contains all the old members as well. 710 if (const MDNode *El = cast_or_null<MDNode>(N->getOperand(4))) 711 VerifySubsetOf(El, Elements); 712 #endif 713 N->replaceOperandWith(4, Elements); 714 } 715 if (TParams) 716 N->replaceOperandWith(6, TParams); 717 DbgNode = N; 718 } 719 720 DIScopeRef DIScope::getRef() const { 721 if (!isCompositeType()) 722 return DIScopeRef(*this); 723 DICompositeType DTy(DbgNode); 724 if (!DTy.getIdentifier()) 725 return DIScopeRef(*this); 726 return DIScopeRef(DTy.getIdentifier()); 727 } 728 729 void DICompositeType::setContainingType(DICompositeType ContainingType) { 730 TrackingMDNodeRef N(*this); 731 N->replaceOperandWith(5, ContainingType.getRef()); 732 DbgNode = N; 733 } 734 735 bool DIVariable::isInlinedFnArgument(const Function *CurFn) { 736 assert(CurFn && "Invalid function"); 737 if (!getContext().isSubprogram()) 738 return false; 739 // This variable is not inlined function argument if its scope 740 // does not describe current function. 741 return !DISubprogram(getContext()).describes(CurFn); 742 } 743 744 bool DISubprogram::describes(const Function *F) { 745 assert(F && "Invalid function"); 746 if (F == getFunction()) 747 return true; 748 StringRef Name = getLinkageName(); 749 if (Name.empty()) 750 Name = getName(); 751 if (F->getName() == Name) 752 return true; 753 return false; 754 } 755 756 MDNode *DISubprogram::getVariablesNodes() const { 757 return getNodeField(DbgNode, 8); 758 } 759 760 DIArray DISubprogram::getVariables() const { 761 return DIArray(getNodeField(DbgNode, 8)); 762 } 763 764 Metadata *DITemplateValueParameter::getValue() const { 765 return DbgNode->getOperand(3); 766 } 767 768 DIScopeRef DIScope::getContext() const { 769 770 if (isType()) 771 return DIType(DbgNode).getContext(); 772 773 if (isSubprogram()) 774 return DIScopeRef(DISubprogram(DbgNode).getContext()); 775 776 if (isLexicalBlock()) 777 return DIScopeRef(DILexicalBlock(DbgNode).getContext()); 778 779 if (isLexicalBlockFile()) 780 return DIScopeRef(DILexicalBlockFile(DbgNode).getContext()); 781 782 if (isNameSpace()) 783 return DIScopeRef(DINameSpace(DbgNode).getContext()); 784 785 assert((isFile() || isCompileUnit()) && "Unhandled type of scope."); 786 return DIScopeRef(nullptr); 787 } 788 789 StringRef DIScope::getName() const { 790 if (isType()) 791 return DIType(DbgNode).getName(); 792 if (isSubprogram()) 793 return DISubprogram(DbgNode).getName(); 794 if (isNameSpace()) 795 return DINameSpace(DbgNode).getName(); 796 assert((isLexicalBlock() || isLexicalBlockFile() || isFile() || 797 isCompileUnit()) && 798 "Unhandled type of scope."); 799 return StringRef(); 800 } 801 802 StringRef DIScope::getFilename() const { 803 if (!DbgNode) 804 return StringRef(); 805 return ::getStringField(getNodeField(DbgNode, 1), 0); 806 } 807 808 StringRef DIScope::getDirectory() const { 809 if (!DbgNode) 810 return StringRef(); 811 return ::getStringField(getNodeField(DbgNode, 1), 1); 812 } 813 814 DIArray DICompileUnit::getEnumTypes() const { 815 if (!DbgNode || DbgNode->getNumOperands() < 7) 816 return DIArray(); 817 818 return DIArray(getNodeField(DbgNode, 2)); 819 } 820 821 DIArray DICompileUnit::getRetainedTypes() const { 822 if (!DbgNode || DbgNode->getNumOperands() < 7) 823 return DIArray(); 824 825 return DIArray(getNodeField(DbgNode, 3)); 826 } 827 828 DIArray DICompileUnit::getSubprograms() const { 829 if (!DbgNode || DbgNode->getNumOperands() < 7) 830 return DIArray(); 831 832 return DIArray(getNodeField(DbgNode, 4)); 833 } 834 835 DIArray DICompileUnit::getGlobalVariables() const { 836 if (!DbgNode || DbgNode->getNumOperands() < 7) 837 return DIArray(); 838 839 return DIArray(getNodeField(DbgNode, 5)); 840 } 841 842 DIArray DICompileUnit::getImportedEntities() const { 843 if (!DbgNode || DbgNode->getNumOperands() < 7) 844 return DIArray(); 845 846 return DIArray(getNodeField(DbgNode, 6)); 847 } 848 849 void DICompileUnit::replaceSubprograms(DIArray Subprograms) { 850 assert(Verify() && "Expected compile unit"); 851 if (Subprograms == getSubprograms()) 852 return; 853 854 const_cast<MDNode *>(DbgNode)->replaceOperandWith(4, Subprograms); 855 } 856 857 void DICompileUnit::replaceGlobalVariables(DIArray GlobalVariables) { 858 assert(Verify() && "Expected compile unit"); 859 if (GlobalVariables == getGlobalVariables()) 860 return; 861 862 const_cast<MDNode *>(DbgNode)->replaceOperandWith(5, GlobalVariables); 863 } 864 865 DILocation DILocation::copyWithNewScope(LLVMContext &Ctx, 866 DILexicalBlockFile NewScope) { 867 assert(Verify()); 868 assert(NewScope && "Expected valid scope"); 869 870 const auto *Old = cast<MDLocation>(DbgNode); 871 return DILocation(MDLocation::get(Ctx, Old->getLine(), Old->getColumn(), 872 NewScope, Old->getInlinedAt())); 873 } 874 875 unsigned DILocation::computeNewDiscriminator(LLVMContext &Ctx) { 876 std::pair<const char *, unsigned> Key(getFilename().data(), getLineNumber()); 877 return ++Ctx.pImpl->DiscriminatorTable[Key]; 878 } 879 880 DIVariable llvm::createInlinedVariable(MDNode *DV, MDNode *InlinedScope, 881 LLVMContext &VMContext) { 882 assert(DIVariable(DV).Verify() && "Expected a DIVariable"); 883 if (!InlinedScope) 884 return cleanseInlinedVariable(DV, VMContext); 885 886 // Insert inlined scope. 887 SmallVector<Metadata *, 8> Elts; 888 for (unsigned I = 0, E = DIVariableInlinedAtIndex; I != E; ++I) 889 Elts.push_back(DV->getOperand(I)); 890 Elts.push_back(InlinedScope); 891 892 DIVariable Inlined(MDNode::get(VMContext, Elts)); 893 assert(Inlined.Verify() && "Expected to create a DIVariable"); 894 return Inlined; 895 } 896 897 DIVariable llvm::cleanseInlinedVariable(MDNode *DV, LLVMContext &VMContext) { 898 assert(DIVariable(DV).Verify() && "Expected a DIVariable"); 899 if (!DIVariable(DV).getInlinedAt()) 900 return DIVariable(DV); 901 902 // Remove inlined scope. 903 SmallVector<Metadata *, 8> Elts; 904 for (unsigned I = 0, E = DIVariableInlinedAtIndex; I != E; ++I) 905 Elts.push_back(DV->getOperand(I)); 906 907 DIVariable Cleansed(MDNode::get(VMContext, Elts)); 908 assert(Cleansed.Verify() && "Expected to create a DIVariable"); 909 return Cleansed; 910 } 911 912 DISubprogram llvm::getDISubprogram(const MDNode *Scope) { 913 DIDescriptor D(Scope); 914 if (D.isSubprogram()) 915 return DISubprogram(Scope); 916 917 if (D.isLexicalBlockFile()) 918 return getDISubprogram(DILexicalBlockFile(Scope).getContext()); 919 920 if (D.isLexicalBlock()) 921 return getDISubprogram(DILexicalBlock(Scope).getContext()); 922 923 return DISubprogram(); 924 } 925 926 DISubprogram llvm::getDISubprogram(const Function *F) { 927 // We look for the first instr that has a debug annotation leading back to F. 928 for (auto &BB : *F) { 929 auto Inst = std::find_if(BB.begin(), BB.end(), [](const Instruction &Inst) { 930 return !Inst.getDebugLoc().isUnknown(); 931 }); 932 if (Inst == BB.end()) 933 continue; 934 DebugLoc DLoc = Inst->getDebugLoc(); 935 const MDNode *Scope = DLoc.getScopeNode(); 936 DISubprogram Subprogram = getDISubprogram(Scope); 937 return Subprogram.describes(F) ? Subprogram : DISubprogram(); 938 } 939 940 return DISubprogram(); 941 } 942 943 DICompositeType llvm::getDICompositeType(DIType T) { 944 if (T.isCompositeType()) 945 return DICompositeType(T); 946 947 if (T.isDerivedType()) { 948 // This function is currently used by dragonegg and dragonegg does 949 // not generate identifier for types, so using an empty map to resolve 950 // DerivedFrom should be fine. 951 DITypeIdentifierMap EmptyMap; 952 return getDICompositeType( 953 DIDerivedType(T).getTypeDerivedFrom().resolve(EmptyMap)); 954 } 955 956 return DICompositeType(); 957 } 958 959 DITypeIdentifierMap 960 llvm::generateDITypeIdentifierMap(const NamedMDNode *CU_Nodes) { 961 DITypeIdentifierMap Map; 962 for (unsigned CUi = 0, CUe = CU_Nodes->getNumOperands(); CUi != CUe; ++CUi) { 963 DICompileUnit CU(CU_Nodes->getOperand(CUi)); 964 DIArray Retain = CU.getRetainedTypes(); 965 for (unsigned Ti = 0, Te = Retain.getNumElements(); Ti != Te; ++Ti) { 966 if (!Retain.getElement(Ti).isCompositeType()) 967 continue; 968 DICompositeType Ty(Retain.getElement(Ti)); 969 if (MDString *TypeId = Ty.getIdentifier()) { 970 // Definition has priority over declaration. 971 // Try to insert (TypeId, Ty) to Map. 972 std::pair<DITypeIdentifierMap::iterator, bool> P = 973 Map.insert(std::make_pair(TypeId, Ty)); 974 // If TypeId already exists in Map and this is a definition, replace 975 // whatever we had (declaration or definition) with the definition. 976 if (!P.second && !Ty.isForwardDecl()) 977 P.first->second = Ty; 978 } 979 } 980 } 981 return Map; 982 } 983 984 //===----------------------------------------------------------------------===// 985 // DebugInfoFinder implementations. 986 //===----------------------------------------------------------------------===// 987 988 void DebugInfoFinder::reset() { 989 CUs.clear(); 990 SPs.clear(); 991 GVs.clear(); 992 TYs.clear(); 993 Scopes.clear(); 994 NodesSeen.clear(); 995 TypeIdentifierMap.clear(); 996 TypeMapInitialized = false; 997 } 998 999 void DebugInfoFinder::InitializeTypeMap(const Module &M) { 1000 if (!TypeMapInitialized) 1001 if (NamedMDNode *CU_Nodes = M.getNamedMetadata("llvm.dbg.cu")) { 1002 TypeIdentifierMap = generateDITypeIdentifierMap(CU_Nodes); 1003 TypeMapInitialized = true; 1004 } 1005 } 1006 1007 void DebugInfoFinder::processModule(const Module &M) { 1008 InitializeTypeMap(M); 1009 if (NamedMDNode *CU_Nodes = M.getNamedMetadata("llvm.dbg.cu")) { 1010 for (unsigned i = 0, e = CU_Nodes->getNumOperands(); i != e; ++i) { 1011 DICompileUnit CU(CU_Nodes->getOperand(i)); 1012 addCompileUnit(CU); 1013 DIArray GVs = CU.getGlobalVariables(); 1014 for (unsigned i = 0, e = GVs.getNumElements(); i != e; ++i) { 1015 DIGlobalVariable DIG(GVs.getElement(i)); 1016 if (addGlobalVariable(DIG)) { 1017 processScope(DIG.getContext()); 1018 processType(DIG.getType().resolve(TypeIdentifierMap)); 1019 } 1020 } 1021 DIArray SPs = CU.getSubprograms(); 1022 for (unsigned i = 0, e = SPs.getNumElements(); i != e; ++i) 1023 processSubprogram(DISubprogram(SPs.getElement(i))); 1024 DIArray EnumTypes = CU.getEnumTypes(); 1025 for (unsigned i = 0, e = EnumTypes.getNumElements(); i != e; ++i) 1026 processType(DIType(EnumTypes.getElement(i))); 1027 DIArray RetainedTypes = CU.getRetainedTypes(); 1028 for (unsigned i = 0, e = RetainedTypes.getNumElements(); i != e; ++i) 1029 processType(DIType(RetainedTypes.getElement(i))); 1030 DIArray Imports = CU.getImportedEntities(); 1031 for (unsigned i = 0, e = Imports.getNumElements(); i != e; ++i) { 1032 DIImportedEntity Import = DIImportedEntity(Imports.getElement(i)); 1033 DIDescriptor Entity = Import.getEntity().resolve(TypeIdentifierMap); 1034 if (Entity.isType()) 1035 processType(DIType(Entity)); 1036 else if (Entity.isSubprogram()) 1037 processSubprogram(DISubprogram(Entity)); 1038 else if (Entity.isNameSpace()) 1039 processScope(DINameSpace(Entity).getContext()); 1040 } 1041 } 1042 } 1043 } 1044 1045 void DebugInfoFinder::processLocation(const Module &M, DILocation Loc) { 1046 if (!Loc) 1047 return; 1048 InitializeTypeMap(M); 1049 processScope(Loc.getScope()); 1050 processLocation(M, Loc.getOrigLocation()); 1051 } 1052 1053 void DebugInfoFinder::processType(DIType DT) { 1054 if (!addType(DT)) 1055 return; 1056 processScope(DT.getContext().resolve(TypeIdentifierMap)); 1057 if (DT.isCompositeType()) { 1058 DICompositeType DCT(DT); 1059 processType(DCT.getTypeDerivedFrom().resolve(TypeIdentifierMap)); 1060 if (DT.isSubroutineType()) { 1061 DITypeArray DTA = DISubroutineType(DT).getTypeArray(); 1062 for (unsigned i = 0, e = DTA.getNumElements(); i != e; ++i) 1063 processType(DTA.getElement(i).resolve(TypeIdentifierMap)); 1064 return; 1065 } 1066 DIArray DA = DCT.getElements(); 1067 for (unsigned i = 0, e = DA.getNumElements(); i != e; ++i) { 1068 DIDescriptor D = DA.getElement(i); 1069 if (D.isType()) 1070 processType(DIType(D)); 1071 else if (D.isSubprogram()) 1072 processSubprogram(DISubprogram(D)); 1073 } 1074 } else if (DT.isDerivedType()) { 1075 DIDerivedType DDT(DT); 1076 processType(DDT.getTypeDerivedFrom().resolve(TypeIdentifierMap)); 1077 } 1078 } 1079 1080 void DebugInfoFinder::processScope(DIScope Scope) { 1081 if (Scope.isType()) { 1082 DIType Ty(Scope); 1083 processType(Ty); 1084 return; 1085 } 1086 if (Scope.isCompileUnit()) { 1087 addCompileUnit(DICompileUnit(Scope)); 1088 return; 1089 } 1090 if (Scope.isSubprogram()) { 1091 processSubprogram(DISubprogram(Scope)); 1092 return; 1093 } 1094 if (!addScope(Scope)) 1095 return; 1096 if (Scope.isLexicalBlock()) { 1097 DILexicalBlock LB(Scope); 1098 processScope(LB.getContext()); 1099 } else if (Scope.isLexicalBlockFile()) { 1100 DILexicalBlockFile LBF = DILexicalBlockFile(Scope); 1101 processScope(LBF.getScope()); 1102 } else if (Scope.isNameSpace()) { 1103 DINameSpace NS(Scope); 1104 processScope(NS.getContext()); 1105 } 1106 } 1107 1108 void DebugInfoFinder::processSubprogram(DISubprogram SP) { 1109 if (!addSubprogram(SP)) 1110 return; 1111 processScope(SP.getContext().resolve(TypeIdentifierMap)); 1112 processType(SP.getType()); 1113 DIArray TParams = SP.getTemplateParams(); 1114 for (unsigned I = 0, E = TParams.getNumElements(); I != E; ++I) { 1115 DIDescriptor Element = TParams.getElement(I); 1116 if (Element.isTemplateTypeParameter()) { 1117 DITemplateTypeParameter TType(Element); 1118 processScope(TType.getContext().resolve(TypeIdentifierMap)); 1119 processType(TType.getType().resolve(TypeIdentifierMap)); 1120 } else if (Element.isTemplateValueParameter()) { 1121 DITemplateValueParameter TVal(Element); 1122 processScope(TVal.getContext().resolve(TypeIdentifierMap)); 1123 processType(TVal.getType().resolve(TypeIdentifierMap)); 1124 } 1125 } 1126 } 1127 1128 void DebugInfoFinder::processDeclare(const Module &M, 1129 const DbgDeclareInst *DDI) { 1130 MDNode *N = dyn_cast<MDNode>(DDI->getVariable()); 1131 if (!N) 1132 return; 1133 InitializeTypeMap(M); 1134 1135 DIDescriptor DV(N); 1136 if (!DV.isVariable()) 1137 return; 1138 1139 if (!NodesSeen.insert(DV).second) 1140 return; 1141 processScope(DIVariable(N).getContext()); 1142 processType(DIVariable(N).getType().resolve(TypeIdentifierMap)); 1143 } 1144 1145 void DebugInfoFinder::processValue(const Module &M, const DbgValueInst *DVI) { 1146 MDNode *N = dyn_cast<MDNode>(DVI->getVariable()); 1147 if (!N) 1148 return; 1149 InitializeTypeMap(M); 1150 1151 DIDescriptor DV(N); 1152 if (!DV.isVariable()) 1153 return; 1154 1155 if (!NodesSeen.insert(DV).second) 1156 return; 1157 processScope(DIVariable(N).getContext()); 1158 processType(DIVariable(N).getType().resolve(TypeIdentifierMap)); 1159 } 1160 1161 bool DebugInfoFinder::addType(DIType DT) { 1162 if (!DT) 1163 return false; 1164 1165 if (!NodesSeen.insert(DT).second) 1166 return false; 1167 1168 TYs.push_back(DT); 1169 return true; 1170 } 1171 1172 bool DebugInfoFinder::addCompileUnit(DICompileUnit CU) { 1173 if (!CU) 1174 return false; 1175 if (!NodesSeen.insert(CU).second) 1176 return false; 1177 1178 CUs.push_back(CU); 1179 return true; 1180 } 1181 1182 bool DebugInfoFinder::addGlobalVariable(DIGlobalVariable DIG) { 1183 if (!DIG) 1184 return false; 1185 1186 if (!NodesSeen.insert(DIG).second) 1187 return false; 1188 1189 GVs.push_back(DIG); 1190 return true; 1191 } 1192 1193 bool DebugInfoFinder::addSubprogram(DISubprogram SP) { 1194 if (!SP) 1195 return false; 1196 1197 if (!NodesSeen.insert(SP).second) 1198 return false; 1199 1200 SPs.push_back(SP); 1201 return true; 1202 } 1203 1204 bool DebugInfoFinder::addScope(DIScope Scope) { 1205 if (!Scope) 1206 return false; 1207 // FIXME: Ocaml binding generates a scope with no content, we treat it 1208 // as null for now. 1209 if (Scope->getNumOperands() == 0) 1210 return false; 1211 if (!NodesSeen.insert(Scope).second) 1212 return false; 1213 Scopes.push_back(Scope); 1214 return true; 1215 } 1216 1217 //===----------------------------------------------------------------------===// 1218 // DIDescriptor: dump routines for all descriptors. 1219 //===----------------------------------------------------------------------===// 1220 1221 void DIDescriptor::dump() const { 1222 print(dbgs()); 1223 dbgs() << '\n'; 1224 } 1225 1226 void DIDescriptor::print(raw_ostream &OS) const { 1227 if (!DbgNode) 1228 return; 1229 1230 if (const char *Tag = dwarf::TagString(getTag())) 1231 OS << "[ " << Tag << " ]"; 1232 1233 if (this->isSubrange()) { 1234 DISubrange(DbgNode).printInternal(OS); 1235 } else if (this->isCompileUnit()) { 1236 DICompileUnit(DbgNode).printInternal(OS); 1237 } else if (this->isFile()) { 1238 DIFile(DbgNode).printInternal(OS); 1239 } else if (this->isEnumerator()) { 1240 DIEnumerator(DbgNode).printInternal(OS); 1241 } else if (this->isBasicType()) { 1242 DIType(DbgNode).printInternal(OS); 1243 } else if (this->isDerivedType()) { 1244 DIDerivedType(DbgNode).printInternal(OS); 1245 } else if (this->isCompositeType()) { 1246 DICompositeType(DbgNode).printInternal(OS); 1247 } else if (this->isSubprogram()) { 1248 DISubprogram(DbgNode).printInternal(OS); 1249 } else if (this->isGlobalVariable()) { 1250 DIGlobalVariable(DbgNode).printInternal(OS); 1251 } else if (this->isVariable()) { 1252 DIVariable(DbgNode).printInternal(OS); 1253 } else if (this->isObjCProperty()) { 1254 DIObjCProperty(DbgNode).printInternal(OS); 1255 } else if (this->isNameSpace()) { 1256 DINameSpace(DbgNode).printInternal(OS); 1257 } else if (this->isScope()) { 1258 DIScope(DbgNode).printInternal(OS); 1259 } else if (this->isExpression()) { 1260 DIExpression(DbgNode).printInternal(OS); 1261 } 1262 } 1263 1264 void DISubrange::printInternal(raw_ostream &OS) const { 1265 int64_t Count = getCount(); 1266 if (Count != -1) 1267 OS << " [" << getLo() << ", " << Count - 1 << ']'; 1268 else 1269 OS << " [unbounded]"; 1270 } 1271 1272 void DIScope::printInternal(raw_ostream &OS) const { 1273 OS << " [" << getDirectory() << "/" << getFilename() << ']'; 1274 } 1275 1276 void DICompileUnit::printInternal(raw_ostream &OS) const { 1277 DIScope::printInternal(OS); 1278 OS << " ["; 1279 unsigned Lang = getLanguage(); 1280 if (const char *LangStr = dwarf::LanguageString(Lang)) 1281 OS << LangStr; 1282 else 1283 (OS << "lang 0x").write_hex(Lang); 1284 OS << ']'; 1285 } 1286 1287 void DIEnumerator::printInternal(raw_ostream &OS) const { 1288 OS << " [" << getName() << " :: " << getEnumValue() << ']'; 1289 } 1290 1291 void DIType::printInternal(raw_ostream &OS) const { 1292 if (!DbgNode) 1293 return; 1294 1295 StringRef Res = getName(); 1296 if (!Res.empty()) 1297 OS << " [" << Res << "]"; 1298 1299 // TODO: Print context? 1300 1301 OS << " [line " << getLineNumber() << ", size " << getSizeInBits() 1302 << ", align " << getAlignInBits() << ", offset " << getOffsetInBits(); 1303 if (isBasicType()) 1304 if (const char *Enc = 1305 dwarf::AttributeEncodingString(DIBasicType(DbgNode).getEncoding())) 1306 OS << ", enc " << Enc; 1307 OS << "]"; 1308 1309 if (isPrivate()) 1310 OS << " [private]"; 1311 else if (isProtected()) 1312 OS << " [protected]"; 1313 else if (isPublic()) 1314 OS << " [public]"; 1315 1316 if (isArtificial()) 1317 OS << " [artificial]"; 1318 1319 if (isForwardDecl()) 1320 OS << " [decl]"; 1321 else if (getTag() == dwarf::DW_TAG_structure_type || 1322 getTag() == dwarf::DW_TAG_union_type || 1323 getTag() == dwarf::DW_TAG_enumeration_type || 1324 getTag() == dwarf::DW_TAG_class_type) 1325 OS << " [def]"; 1326 if (isVector()) 1327 OS << " [vector]"; 1328 if (isStaticMember()) 1329 OS << " [static]"; 1330 1331 if (isLValueReference()) 1332 OS << " [reference]"; 1333 1334 if (isRValueReference()) 1335 OS << " [rvalue reference]"; 1336 } 1337 1338 void DIDerivedType::printInternal(raw_ostream &OS) const { 1339 DIType::printInternal(OS); 1340 OS << " [from " << getTypeDerivedFrom().getName() << ']'; 1341 } 1342 1343 void DICompositeType::printInternal(raw_ostream &OS) const { 1344 DIType::printInternal(OS); 1345 DIArray A = getElements(); 1346 OS << " [" << A.getNumElements() << " elements]"; 1347 } 1348 1349 void DINameSpace::printInternal(raw_ostream &OS) const { 1350 StringRef Name = getName(); 1351 if (!Name.empty()) 1352 OS << " [" << Name << ']'; 1353 1354 OS << " [line " << getLineNumber() << ']'; 1355 } 1356 1357 void DISubprogram::printInternal(raw_ostream &OS) const { 1358 // TODO : Print context 1359 OS << " [line " << getLineNumber() << ']'; 1360 1361 if (isLocalToUnit()) 1362 OS << " [local]"; 1363 1364 if (isDefinition()) 1365 OS << " [def]"; 1366 1367 if (getScopeLineNumber() != getLineNumber()) 1368 OS << " [scope " << getScopeLineNumber() << "]"; 1369 1370 if (isPrivate()) 1371 OS << " [private]"; 1372 else if (isProtected()) 1373 OS << " [protected]"; 1374 else if (isPublic()) 1375 OS << " [public]"; 1376 1377 if (isLValueReference()) 1378 OS << " [reference]"; 1379 1380 if (isRValueReference()) 1381 OS << " [rvalue reference]"; 1382 1383 StringRef Res = getName(); 1384 if (!Res.empty()) 1385 OS << " [" << Res << ']'; 1386 } 1387 1388 void DIGlobalVariable::printInternal(raw_ostream &OS) const { 1389 StringRef Res = getName(); 1390 if (!Res.empty()) 1391 OS << " [" << Res << ']'; 1392 1393 OS << " [line " << getLineNumber() << ']'; 1394 1395 // TODO : Print context 1396 1397 if (isLocalToUnit()) 1398 OS << " [local]"; 1399 1400 if (isDefinition()) 1401 OS << " [def]"; 1402 } 1403 1404 void DIVariable::printInternal(raw_ostream &OS) const { 1405 StringRef Res = getName(); 1406 if (!Res.empty()) 1407 OS << " [" << Res << ']'; 1408 1409 OS << " [line " << getLineNumber() << ']'; 1410 } 1411 1412 void DIExpression::printInternal(raw_ostream &OS) const { 1413 for (auto Op : *this) { 1414 OS << " [" << OperationEncodingString(Op); 1415 switch (Op) { 1416 case DW_OP_plus: { 1417 OS << " " << Op.getArg(1); 1418 break; 1419 } 1420 case DW_OP_bit_piece: { 1421 OS << " offset=" << Op.getArg(1) << ", size=" << Op.getArg(2); 1422 break; 1423 } 1424 case DW_OP_deref: 1425 // No arguments. 1426 break; 1427 default: 1428 llvm_unreachable("unhandled operation"); 1429 } 1430 OS << "]"; 1431 } 1432 } 1433 1434 void DIObjCProperty::printInternal(raw_ostream &OS) const { 1435 StringRef Name = getObjCPropertyName(); 1436 if (!Name.empty()) 1437 OS << " [" << Name << ']'; 1438 1439 OS << " [line " << getLineNumber() << ", properties " << getUnsignedField(6) 1440 << ']'; 1441 } 1442 1443 static void printDebugLoc(DebugLoc DL, raw_ostream &CommentOS, 1444 const LLVMContext &Ctx) { 1445 if (!DL.isUnknown()) { // Print source line info. 1446 DIScope Scope(DL.getScope(Ctx)); 1447 assert(Scope.isScope() && "Scope of a DebugLoc should be a DIScope."); 1448 // Omit the directory, because it's likely to be long and uninteresting. 1449 CommentOS << Scope.getFilename(); 1450 CommentOS << ':' << DL.getLine(); 1451 if (DL.getCol() != 0) 1452 CommentOS << ':' << DL.getCol(); 1453 DebugLoc InlinedAtDL = DebugLoc::getFromDILocation(DL.getInlinedAt(Ctx)); 1454 if (!InlinedAtDL.isUnknown()) { 1455 CommentOS << " @[ "; 1456 printDebugLoc(InlinedAtDL, CommentOS, Ctx); 1457 CommentOS << " ]"; 1458 } 1459 } 1460 } 1461 1462 void DIVariable::printExtendedName(raw_ostream &OS) const { 1463 const LLVMContext &Ctx = DbgNode->getContext(); 1464 StringRef Res = getName(); 1465 if (!Res.empty()) 1466 OS << Res << "," << getLineNumber(); 1467 if (MDNode *InlinedAt = getInlinedAt()) { 1468 DebugLoc InlinedAtDL = DebugLoc::getFromDILocation(InlinedAt); 1469 if (!InlinedAtDL.isUnknown()) { 1470 OS << " @["; 1471 printDebugLoc(InlinedAtDL, OS, Ctx); 1472 OS << "]"; 1473 } 1474 } 1475 } 1476 1477 template <> DIRef<DIScope>::DIRef(const Metadata *V) : Val(V) { 1478 assert(isScopeRef(V) && "DIScopeRef should be a MDString or MDNode"); 1479 } 1480 template <> DIRef<DIType>::DIRef(const Metadata *V) : Val(V) { 1481 assert(isTypeRef(V) && "DITypeRef should be a MDString or MDNode"); 1482 } 1483 1484 template <> 1485 DIScopeRef DIDescriptor::getFieldAs<DIScopeRef>(unsigned Elt) const { 1486 return DIScopeRef(cast_or_null<Metadata>(getField(DbgNode, Elt))); 1487 } 1488 template <> DITypeRef DIDescriptor::getFieldAs<DITypeRef>(unsigned Elt) const { 1489 return DITypeRef(cast_or_null<Metadata>(getField(DbgNode, Elt))); 1490 } 1491 1492 bool llvm::StripDebugInfo(Module &M) { 1493 bool Changed = false; 1494 1495 // Remove all of the calls to the debugger intrinsics, and remove them from 1496 // the module. 1497 if (Function *Declare = M.getFunction("llvm.dbg.declare")) { 1498 while (!Declare->use_empty()) { 1499 CallInst *CI = cast<CallInst>(Declare->user_back()); 1500 CI->eraseFromParent(); 1501 } 1502 Declare->eraseFromParent(); 1503 Changed = true; 1504 } 1505 1506 if (Function *DbgVal = M.getFunction("llvm.dbg.value")) { 1507 while (!DbgVal->use_empty()) { 1508 CallInst *CI = cast<CallInst>(DbgVal->user_back()); 1509 CI->eraseFromParent(); 1510 } 1511 DbgVal->eraseFromParent(); 1512 Changed = true; 1513 } 1514 1515 for (Module::named_metadata_iterator NMI = M.named_metadata_begin(), 1516 NME = M.named_metadata_end(); NMI != NME;) { 1517 NamedMDNode *NMD = NMI; 1518 ++NMI; 1519 if (NMD->getName().startswith("llvm.dbg.")) { 1520 NMD->eraseFromParent(); 1521 Changed = true; 1522 } 1523 } 1524 1525 for (Module::iterator MI = M.begin(), ME = M.end(); MI != ME; ++MI) 1526 for (Function::iterator FI = MI->begin(), FE = MI->end(); FI != FE; 1527 ++FI) 1528 for (BasicBlock::iterator BI = FI->begin(), BE = FI->end(); BI != BE; 1529 ++BI) { 1530 if (!BI->getDebugLoc().isUnknown()) { 1531 Changed = true; 1532 BI->setDebugLoc(DebugLoc()); 1533 } 1534 } 1535 1536 return Changed; 1537 } 1538 1539 unsigned llvm::getDebugMetadataVersionFromModule(const Module &M) { 1540 if (auto *Val = mdconst::extract_or_null<ConstantInt>( 1541 M.getModuleFlag("Debug Info Version"))) 1542 return Val->getZExtValue(); 1543 return 0; 1544 } 1545 1546 llvm::DenseMap<const llvm::Function *, llvm::DISubprogram> 1547 llvm::makeSubprogramMap(const Module &M) { 1548 DenseMap<const Function *, DISubprogram> R; 1549 1550 NamedMDNode *CU_Nodes = M.getNamedMetadata("llvm.dbg.cu"); 1551 if (!CU_Nodes) 1552 return R; 1553 1554 for (MDNode *N : CU_Nodes->operands()) { 1555 DICompileUnit CUNode(N); 1556 DIArray SPs = CUNode.getSubprograms(); 1557 for (unsigned i = 0, e = SPs.getNumElements(); i != e; ++i) { 1558 DISubprogram SP(SPs.getElement(i)); 1559 if (Function *F = SP.getFunction()) 1560 R.insert(std::make_pair(F, SP)); 1561 } 1562 } 1563 return R; 1564 } 1565