1 //===-- Attributes.cpp - Implement AttributesList -------------------------===// 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 // \file 11 // \brief This file implements the Attribute, AttributeImpl, AttrBuilder, 12 // AttributeSetImpl, and AttributeSet classes. 13 // 14 //===----------------------------------------------------------------------===// 15 16 #include "llvm/IR/Attributes.h" 17 #include "AttributeImpl.h" 18 #include "LLVMContextImpl.h" 19 #include "llvm/ADT/StringExtras.h" 20 #include "llvm/IR/Type.h" 21 #include "llvm/Support/Atomic.h" 22 #include "llvm/Support/Debug.h" 23 #include "llvm/Support/ManagedStatic.h" 24 #include "llvm/Support/Mutex.h" 25 #include "llvm/Support/raw_ostream.h" 26 #include <algorithm> 27 using namespace llvm; 28 29 //===----------------------------------------------------------------------===// 30 // Attribute Construction Methods 31 //===----------------------------------------------------------------------===// 32 33 Attribute Attribute::get(LLVMContext &Context, Attribute::AttrKind Kind, 34 uint64_t Val) { 35 LLVMContextImpl *pImpl = Context.pImpl; 36 FoldingSetNodeID ID; 37 ID.AddInteger(Kind); 38 if (Val) ID.AddInteger(Val); 39 40 void *InsertPoint; 41 AttributeImpl *PA = pImpl->AttrsSet.FindNodeOrInsertPos(ID, InsertPoint); 42 43 if (!PA) { 44 // If we didn't find any existing attributes of the same shape then create a 45 // new one and insert it. 46 PA = !Val ? 47 new AttributeImpl(Context, Kind) : 48 new AttributeImpl(Context, Kind, Val); 49 pImpl->AttrsSet.InsertNode(PA, InsertPoint); 50 } 51 52 // Return the Attribute that we found or created. 53 return Attribute(PA); 54 } 55 56 Attribute Attribute::get(LLVMContext &Context, StringRef Kind, StringRef Val) { 57 LLVMContextImpl *pImpl = Context.pImpl; 58 FoldingSetNodeID ID; 59 ID.AddString(Kind); 60 if (!Val.empty()) ID.AddString(Val); 61 62 void *InsertPoint; 63 AttributeImpl *PA = pImpl->AttrsSet.FindNodeOrInsertPos(ID, InsertPoint); 64 65 if (!PA) { 66 // If we didn't find any existing attributes of the same shape then create a 67 // new one and insert it. 68 PA = new AttributeImpl(Context, Kind, Val); 69 pImpl->AttrsSet.InsertNode(PA, InsertPoint); 70 } 71 72 // Return the Attribute that we found or created. 73 return Attribute(PA); 74 } 75 76 Attribute Attribute::getWithAlignment(LLVMContext &Context, uint64_t Align) { 77 assert(isPowerOf2_32(Align) && "Alignment must be a power of two."); 78 assert(Align <= 0x40000000 && "Alignment too large."); 79 return get(Context, Alignment, Align); 80 } 81 82 Attribute Attribute::getWithStackAlignment(LLVMContext &Context, 83 uint64_t Align) { 84 assert(isPowerOf2_32(Align) && "Alignment must be a power of two."); 85 assert(Align <= 0x100 && "Alignment too large."); 86 return get(Context, StackAlignment, Align); 87 } 88 89 //===----------------------------------------------------------------------===// 90 // Attribute Accessor Methods 91 //===----------------------------------------------------------------------===// 92 93 bool Attribute::isEnumAttribute() const { 94 return pImpl && pImpl->isEnumAttribute(); 95 } 96 97 bool Attribute::isAlignAttribute() const { 98 return pImpl && pImpl->isAlignAttribute(); 99 } 100 101 bool Attribute::isStringAttribute() const { 102 return pImpl && pImpl->isStringAttribute(); 103 } 104 105 Attribute::AttrKind Attribute::getKindAsEnum() const { 106 assert((isEnumAttribute() || isAlignAttribute()) && 107 "Invalid attribute type to get the kind as an enum!"); 108 return pImpl ? pImpl->getKindAsEnum() : None; 109 } 110 111 uint64_t Attribute::getValueAsInt() const { 112 assert(isAlignAttribute() && 113 "Expected the attribute to be an alignment attribute!"); 114 return pImpl ? pImpl->getValueAsInt() : 0; 115 } 116 117 StringRef Attribute::getKindAsString() const { 118 assert(isStringAttribute() && 119 "Invalid attribute type to get the kind as a string!"); 120 return pImpl ? pImpl->getKindAsString() : StringRef(); 121 } 122 123 StringRef Attribute::getValueAsString() const { 124 assert(isStringAttribute() && 125 "Invalid attribute type to get the value as a string!"); 126 return pImpl ? pImpl->getValueAsString() : StringRef(); 127 } 128 129 bool Attribute::hasAttribute(AttrKind Kind) const { 130 return (pImpl && pImpl->hasAttribute(Kind)) || (!pImpl && Kind == None); 131 } 132 133 bool Attribute::hasAttribute(StringRef Kind) const { 134 if (!isStringAttribute()) return false; 135 return pImpl && pImpl->hasAttribute(Kind); 136 } 137 138 /// This returns the alignment field of an attribute as a byte alignment value. 139 unsigned Attribute::getAlignment() const { 140 assert(hasAttribute(Attribute::Alignment) && 141 "Trying to get alignment from non-alignment attribute!"); 142 return pImpl->getValueAsInt(); 143 } 144 145 /// This returns the stack alignment field of an attribute as a byte alignment 146 /// value. 147 unsigned Attribute::getStackAlignment() const { 148 assert(hasAttribute(Attribute::StackAlignment) && 149 "Trying to get alignment from non-alignment attribute!"); 150 return pImpl->getValueAsInt(); 151 } 152 153 std::string Attribute::getAsString(bool InAttrGrp) const { 154 if (!pImpl) return ""; 155 156 if (hasAttribute(Attribute::SanitizeAddress)) 157 return "sanitize_address"; 158 if (hasAttribute(Attribute::AlwaysInline)) 159 return "alwaysinline"; 160 if (hasAttribute(Attribute::ByVal)) 161 return "byval"; 162 if (hasAttribute(Attribute::InlineHint)) 163 return "inlinehint"; 164 if (hasAttribute(Attribute::InReg)) 165 return "inreg"; 166 if (hasAttribute(Attribute::MinSize)) 167 return "minsize"; 168 if (hasAttribute(Attribute::Naked)) 169 return "naked"; 170 if (hasAttribute(Attribute::Nest)) 171 return "nest"; 172 if (hasAttribute(Attribute::NoAlias)) 173 return "noalias"; 174 if (hasAttribute(Attribute::NoBuiltin)) 175 return "nobuiltin"; 176 if (hasAttribute(Attribute::NoCapture)) 177 return "nocapture"; 178 if (hasAttribute(Attribute::NoDuplicate)) 179 return "noduplicate"; 180 if (hasAttribute(Attribute::NoImplicitFloat)) 181 return "noimplicitfloat"; 182 if (hasAttribute(Attribute::NoInline)) 183 return "noinline"; 184 if (hasAttribute(Attribute::NonLazyBind)) 185 return "nonlazybind"; 186 if (hasAttribute(Attribute::NoRedZone)) 187 return "noredzone"; 188 if (hasAttribute(Attribute::NoReturn)) 189 return "noreturn"; 190 if (hasAttribute(Attribute::NoUnwind)) 191 return "nounwind"; 192 if (hasAttribute(Attribute::OptimizeForSize)) 193 return "optsize"; 194 if (hasAttribute(Attribute::ReadNone)) 195 return "readnone"; 196 if (hasAttribute(Attribute::ReadOnly)) 197 return "readonly"; 198 if (hasAttribute(Attribute::Returned)) 199 return "returned"; 200 if (hasAttribute(Attribute::ReturnsTwice)) 201 return "returns_twice"; 202 if (hasAttribute(Attribute::SExt)) 203 return "signext"; 204 if (hasAttribute(Attribute::StackProtect)) 205 return "ssp"; 206 if (hasAttribute(Attribute::StackProtectReq)) 207 return "sspreq"; 208 if (hasAttribute(Attribute::StackProtectStrong)) 209 return "sspstrong"; 210 if (hasAttribute(Attribute::StructRet)) 211 return "sret"; 212 if (hasAttribute(Attribute::SanitizeThread)) 213 return "sanitize_thread"; 214 if (hasAttribute(Attribute::SanitizeMemory)) 215 return "sanitize_memory"; 216 if (hasAttribute(Attribute::UWTable)) 217 return "uwtable"; 218 if (hasAttribute(Attribute::ZExt)) 219 return "zeroext"; 220 if (hasAttribute(Attribute::Cold)) 221 return "cold"; 222 223 // FIXME: These should be output like this: 224 // 225 // align=4 226 // alignstack=8 227 // 228 if (hasAttribute(Attribute::Alignment)) { 229 std::string Result; 230 Result += "align"; 231 Result += (InAttrGrp) ? "=" : " "; 232 Result += utostr(getValueAsInt()); 233 return Result; 234 } 235 236 if (hasAttribute(Attribute::StackAlignment)) { 237 std::string Result; 238 Result += "alignstack"; 239 if (InAttrGrp) { 240 Result += "="; 241 Result += utostr(getValueAsInt()); 242 } else { 243 Result += "("; 244 Result += utostr(getValueAsInt()); 245 Result += ")"; 246 } 247 return Result; 248 } 249 250 // Convert target-dependent attributes to strings of the form: 251 // 252 // "kind" 253 // "kind" = "value" 254 // 255 if (isStringAttribute()) { 256 std::string Result; 257 Result += '\"' + getKindAsString().str() + '"'; 258 259 StringRef Val = pImpl->getValueAsString(); 260 if (Val.empty()) return Result; 261 262 Result += "=\"" + Val.str() + '"'; 263 return Result; 264 } 265 266 llvm_unreachable("Unknown attribute"); 267 } 268 269 bool Attribute::operator<(Attribute A) const { 270 if (!pImpl && !A.pImpl) return false; 271 if (!pImpl) return true; 272 if (!A.pImpl) return false; 273 return *pImpl < *A.pImpl; 274 } 275 276 //===----------------------------------------------------------------------===// 277 // AttributeImpl Definition 278 //===----------------------------------------------------------------------===// 279 280 AttributeImpl::AttributeImpl(LLVMContext &C, Attribute::AttrKind Kind) 281 : Context(C), Entry(new EnumAttributeEntry(Kind)) {} 282 283 AttributeImpl::AttributeImpl(LLVMContext &C, Attribute::AttrKind Kind, 284 unsigned Align) 285 : Context(C) { 286 assert((Kind == Attribute::Alignment || Kind == Attribute::StackAlignment) && 287 "Wrong kind for alignment attribute!"); 288 Entry = new AlignAttributeEntry(Kind, Align); 289 } 290 291 AttributeImpl::AttributeImpl(LLVMContext &C, StringRef Kind, StringRef Val) 292 : Context(C), Entry(new StringAttributeEntry(Kind, Val)) {} 293 294 AttributeImpl::~AttributeImpl() { 295 delete Entry; 296 } 297 298 bool AttributeImpl::isEnumAttribute() const { 299 return isa<EnumAttributeEntry>(Entry); 300 } 301 302 bool AttributeImpl::isAlignAttribute() const { 303 return isa<AlignAttributeEntry>(Entry); 304 } 305 306 bool AttributeImpl::isStringAttribute() const { 307 return isa<StringAttributeEntry>(Entry); 308 } 309 310 bool AttributeImpl::hasAttribute(Attribute::AttrKind A) const { 311 if (isStringAttribute()) return false; 312 return getKindAsEnum() == A; 313 } 314 315 bool AttributeImpl::hasAttribute(StringRef Kind) const { 316 if (!isStringAttribute()) return false; 317 return getKindAsString() == Kind; 318 } 319 320 Attribute::AttrKind AttributeImpl::getKindAsEnum() const { 321 if (EnumAttributeEntry *E = dyn_cast<EnumAttributeEntry>(Entry)) 322 return E->getEnumKind(); 323 return cast<AlignAttributeEntry>(Entry)->getEnumKind(); 324 } 325 326 uint64_t AttributeImpl::getValueAsInt() const { 327 return cast<AlignAttributeEntry>(Entry)->getAlignment(); 328 } 329 330 StringRef AttributeImpl::getKindAsString() const { 331 return cast<StringAttributeEntry>(Entry)->getStringKind(); 332 } 333 334 StringRef AttributeImpl::getValueAsString() const { 335 return cast<StringAttributeEntry>(Entry)->getStringValue(); 336 } 337 338 bool AttributeImpl::operator<(const AttributeImpl &AI) const { 339 // This sorts the attributes with Attribute::AttrKinds coming first (sorted 340 // relative to their enum value) and then strings. 341 if (isEnumAttribute()) { 342 if (AI.isEnumAttribute()) return getKindAsEnum() < AI.getKindAsEnum(); 343 if (AI.isAlignAttribute()) return true; 344 if (AI.isStringAttribute()) return true; 345 } 346 347 if (isAlignAttribute()) { 348 if (AI.isEnumAttribute()) return false; 349 if (AI.isAlignAttribute()) return getValueAsInt() < AI.getValueAsInt(); 350 if (AI.isStringAttribute()) return true; 351 } 352 353 if (AI.isEnumAttribute()) return false; 354 if (AI.isAlignAttribute()) return false; 355 if (getKindAsString() == AI.getKindAsString()) 356 return getValueAsString() < AI.getValueAsString(); 357 return getKindAsString() < AI.getKindAsString(); 358 } 359 360 uint64_t AttributeImpl::getAttrMask(Attribute::AttrKind Val) { 361 // FIXME: Remove this. 362 switch (Val) { 363 case Attribute::EndAttrKinds: 364 llvm_unreachable("Synthetic enumerators which should never get here"); 365 366 case Attribute::None: return 0; 367 case Attribute::ZExt: return 1 << 0; 368 case Attribute::SExt: return 1 << 1; 369 case Attribute::NoReturn: return 1 << 2; 370 case Attribute::InReg: return 1 << 3; 371 case Attribute::StructRet: return 1 << 4; 372 case Attribute::NoUnwind: return 1 << 5; 373 case Attribute::NoAlias: return 1 << 6; 374 case Attribute::ByVal: return 1 << 7; 375 case Attribute::Nest: return 1 << 8; 376 case Attribute::ReadNone: return 1 << 9; 377 case Attribute::ReadOnly: return 1 << 10; 378 case Attribute::NoInline: return 1 << 11; 379 case Attribute::AlwaysInline: return 1 << 12; 380 case Attribute::OptimizeForSize: return 1 << 13; 381 case Attribute::StackProtect: return 1 << 14; 382 case Attribute::StackProtectReq: return 1 << 15; 383 case Attribute::Alignment: return 31 << 16; 384 case Attribute::NoCapture: return 1 << 21; 385 case Attribute::NoRedZone: return 1 << 22; 386 case Attribute::NoImplicitFloat: return 1 << 23; 387 case Attribute::Naked: return 1 << 24; 388 case Attribute::InlineHint: return 1 << 25; 389 case Attribute::StackAlignment: return 7 << 26; 390 case Attribute::ReturnsTwice: return 1 << 29; 391 case Attribute::UWTable: return 1 << 30; 392 case Attribute::NonLazyBind: return 1U << 31; 393 case Attribute::SanitizeAddress: return 1ULL << 32; 394 case Attribute::MinSize: return 1ULL << 33; 395 case Attribute::NoDuplicate: return 1ULL << 34; 396 case Attribute::StackProtectStrong: return 1ULL << 35; 397 case Attribute::SanitizeThread: return 1ULL << 36; 398 case Attribute::SanitizeMemory: return 1ULL << 37; 399 case Attribute::NoBuiltin: return 1ULL << 38; 400 case Attribute::Returned: return 1ULL << 39; 401 case Attribute::Cold: return 1ULL << 40; 402 } 403 llvm_unreachable("Unsupported attribute type"); 404 } 405 406 //===----------------------------------------------------------------------===// 407 // AttributeSetNode Definition 408 //===----------------------------------------------------------------------===// 409 410 AttributeSetNode *AttributeSetNode::get(LLVMContext &C, 411 ArrayRef<Attribute> Attrs) { 412 if (Attrs.empty()) 413 return 0; 414 415 // Otherwise, build a key to look up the existing attributes. 416 LLVMContextImpl *pImpl = C.pImpl; 417 FoldingSetNodeID ID; 418 419 SmallVector<Attribute, 8> SortedAttrs(Attrs.begin(), Attrs.end()); 420 array_pod_sort(SortedAttrs.begin(), SortedAttrs.end()); 421 422 for (SmallVectorImpl<Attribute>::iterator I = SortedAttrs.begin(), 423 E = SortedAttrs.end(); I != E; ++I) 424 I->Profile(ID); 425 426 void *InsertPoint; 427 AttributeSetNode *PA = 428 pImpl->AttrsSetNodes.FindNodeOrInsertPos(ID, InsertPoint); 429 430 // If we didn't find any existing attributes of the same shape then create a 431 // new one and insert it. 432 if (!PA) { 433 PA = new AttributeSetNode(SortedAttrs); 434 pImpl->AttrsSetNodes.InsertNode(PA, InsertPoint); 435 } 436 437 // Return the AttributesListNode that we found or created. 438 return PA; 439 } 440 441 bool AttributeSetNode::hasAttribute(Attribute::AttrKind Kind) const { 442 for (SmallVectorImpl<Attribute>::const_iterator I = AttrList.begin(), 443 E = AttrList.end(); I != E; ++I) 444 if (I->hasAttribute(Kind)) 445 return true; 446 return false; 447 } 448 449 bool AttributeSetNode::hasAttribute(StringRef Kind) const { 450 for (SmallVectorImpl<Attribute>::const_iterator I = AttrList.begin(), 451 E = AttrList.end(); I != E; ++I) 452 if (I->hasAttribute(Kind)) 453 return true; 454 return false; 455 } 456 457 Attribute AttributeSetNode::getAttribute(Attribute::AttrKind Kind) const { 458 for (SmallVectorImpl<Attribute>::const_iterator I = AttrList.begin(), 459 E = AttrList.end(); I != E; ++I) 460 if (I->hasAttribute(Kind)) 461 return *I; 462 return Attribute(); 463 } 464 465 Attribute AttributeSetNode::getAttribute(StringRef Kind) const { 466 for (SmallVectorImpl<Attribute>::const_iterator I = AttrList.begin(), 467 E = AttrList.end(); I != E; ++I) 468 if (I->hasAttribute(Kind)) 469 return *I; 470 return Attribute(); 471 } 472 473 unsigned AttributeSetNode::getAlignment() const { 474 for (SmallVectorImpl<Attribute>::const_iterator I = AttrList.begin(), 475 E = AttrList.end(); I != E; ++I) 476 if (I->hasAttribute(Attribute::Alignment)) 477 return I->getAlignment(); 478 return 0; 479 } 480 481 unsigned AttributeSetNode::getStackAlignment() const { 482 for (SmallVectorImpl<Attribute>::const_iterator I = AttrList.begin(), 483 E = AttrList.end(); I != E; ++I) 484 if (I->hasAttribute(Attribute::StackAlignment)) 485 return I->getStackAlignment(); 486 return 0; 487 } 488 489 std::string AttributeSetNode::getAsString(bool InAttrGrp) const { 490 std::string Str; 491 for (SmallVectorImpl<Attribute>::const_iterator I = AttrList.begin(), 492 E = AttrList.end(); I != E; ++I) { 493 if (I != AttrList.begin()) 494 Str += ' '; 495 Str += I->getAsString(InAttrGrp); 496 } 497 return Str; 498 } 499 500 //===----------------------------------------------------------------------===// 501 // AttributeSetImpl Definition 502 //===----------------------------------------------------------------------===// 503 504 uint64_t AttributeSetImpl::Raw(unsigned Index) const { 505 for (unsigned I = 0, E = getNumAttributes(); I != E; ++I) { 506 if (getSlotIndex(I) != Index) continue; 507 const AttributeSetNode *ASN = AttrNodes[I].second; 508 uint64_t Mask = 0; 509 510 for (AttributeSetNode::const_iterator II = ASN->begin(), 511 IE = ASN->end(); II != IE; ++II) { 512 Attribute Attr = *II; 513 514 // This cannot handle string attributes. 515 if (Attr.isStringAttribute()) continue; 516 517 Attribute::AttrKind Kind = Attr.getKindAsEnum(); 518 519 if (Kind == Attribute::Alignment) 520 Mask |= (Log2_32(ASN->getAlignment()) + 1) << 16; 521 else if (Kind == Attribute::StackAlignment) 522 Mask |= (Log2_32(ASN->getStackAlignment()) + 1) << 26; 523 else 524 Mask |= AttributeImpl::getAttrMask(Kind); 525 } 526 527 return Mask; 528 } 529 530 return 0; 531 } 532 533 //===----------------------------------------------------------------------===// 534 // AttributeSet Construction and Mutation Methods 535 //===----------------------------------------------------------------------===// 536 537 AttributeSet 538 AttributeSet::getImpl(LLVMContext &C, 539 ArrayRef<std::pair<unsigned, AttributeSetNode*> > Attrs) { 540 LLVMContextImpl *pImpl = C.pImpl; 541 FoldingSetNodeID ID; 542 AttributeSetImpl::Profile(ID, Attrs); 543 544 void *InsertPoint; 545 AttributeSetImpl *PA = pImpl->AttrsLists.FindNodeOrInsertPos(ID, InsertPoint); 546 547 // If we didn't find any existing attributes of the same shape then 548 // create a new one and insert it. 549 if (!PA) { 550 PA = new AttributeSetImpl(C, Attrs); 551 pImpl->AttrsLists.InsertNode(PA, InsertPoint); 552 } 553 554 // Return the AttributesList that we found or created. 555 return AttributeSet(PA); 556 } 557 558 AttributeSet AttributeSet::get(LLVMContext &C, 559 ArrayRef<std::pair<unsigned, Attribute> > Attrs){ 560 // If there are no attributes then return a null AttributesList pointer. 561 if (Attrs.empty()) 562 return AttributeSet(); 563 564 #ifndef NDEBUG 565 for (unsigned i = 0, e = Attrs.size(); i != e; ++i) { 566 assert((!i || Attrs[i-1].first <= Attrs[i].first) && 567 "Misordered Attributes list!"); 568 assert(!Attrs[i].second.hasAttribute(Attribute::None) && 569 "Pointless attribute!"); 570 } 571 #endif 572 573 // Create a vector if (unsigned, AttributeSetNode*) pairs from the attributes 574 // list. 575 SmallVector<std::pair<unsigned, AttributeSetNode*>, 8> AttrPairVec; 576 for (ArrayRef<std::pair<unsigned, Attribute> >::iterator I = Attrs.begin(), 577 E = Attrs.end(); I != E; ) { 578 unsigned Index = I->first; 579 SmallVector<Attribute, 4> AttrVec; 580 while (I != E && I->first == Index) { 581 AttrVec.push_back(I->second); 582 ++I; 583 } 584 585 AttrPairVec.push_back(std::make_pair(Index, 586 AttributeSetNode::get(C, AttrVec))); 587 } 588 589 return getImpl(C, AttrPairVec); 590 } 591 592 AttributeSet AttributeSet::get(LLVMContext &C, 593 ArrayRef<std::pair<unsigned, 594 AttributeSetNode*> > Attrs) { 595 // If there are no attributes then return a null AttributesList pointer. 596 if (Attrs.empty()) 597 return AttributeSet(); 598 599 return getImpl(C, Attrs); 600 } 601 602 AttributeSet AttributeSet::get(LLVMContext &C, unsigned Index, AttrBuilder &B) { 603 if (!B.hasAttributes()) 604 return AttributeSet(); 605 606 // Add target-independent attributes. 607 SmallVector<std::pair<unsigned, Attribute>, 8> Attrs; 608 for (Attribute::AttrKind Kind = Attribute::None; 609 Kind != Attribute::EndAttrKinds; Kind = Attribute::AttrKind(Kind + 1)) { 610 if (!B.contains(Kind)) 611 continue; 612 613 if (Kind == Attribute::Alignment) 614 Attrs.push_back(std::make_pair(Index, Attribute:: 615 getWithAlignment(C, B.getAlignment()))); 616 else if (Kind == Attribute::StackAlignment) 617 Attrs.push_back(std::make_pair(Index, Attribute:: 618 getWithStackAlignment(C, B.getStackAlignment()))); 619 else 620 Attrs.push_back(std::make_pair(Index, Attribute::get(C, Kind))); 621 } 622 623 // Add target-dependent (string) attributes. 624 for (AttrBuilder::td_iterator I = B.td_begin(), E = B.td_end(); 625 I != E; ++I) 626 Attrs.push_back(std::make_pair(Index, Attribute::get(C, I->first,I->second))); 627 628 return get(C, Attrs); 629 } 630 631 AttributeSet AttributeSet::get(LLVMContext &C, unsigned Index, 632 ArrayRef<Attribute::AttrKind> Kind) { 633 SmallVector<std::pair<unsigned, Attribute>, 8> Attrs; 634 for (ArrayRef<Attribute::AttrKind>::iterator I = Kind.begin(), 635 E = Kind.end(); I != E; ++I) 636 Attrs.push_back(std::make_pair(Index, Attribute::get(C, *I))); 637 return get(C, Attrs); 638 } 639 640 AttributeSet AttributeSet::get(LLVMContext &C, ArrayRef<AttributeSet> Attrs) { 641 if (Attrs.empty()) return AttributeSet(); 642 643 SmallVector<std::pair<unsigned, AttributeSetNode*>, 8> AttrNodeVec; 644 for (unsigned I = 0, E = Attrs.size(); I != E; ++I) { 645 AttributeSet AS = Attrs[I]; 646 if (!AS.pImpl) continue; 647 AttrNodeVec.append(AS.pImpl->AttrNodes.begin(), AS.pImpl->AttrNodes.end()); 648 } 649 650 return getImpl(C, AttrNodeVec); 651 } 652 653 AttributeSet AttributeSet::addAttribute(LLVMContext &C, unsigned Index, 654 Attribute::AttrKind Attr) const { 655 if (hasAttribute(Index, Attr)) return *this; 656 return addAttributes(C, Index, AttributeSet::get(C, Index, Attr)); 657 } 658 659 AttributeSet AttributeSet::addAttribute(LLVMContext &C, unsigned Index, 660 StringRef Kind) const { 661 llvm::AttrBuilder B; 662 B.addAttribute(Kind); 663 return addAttributes(C, Index, AttributeSet::get(C, Index, B)); 664 } 665 666 AttributeSet AttributeSet::addAttributes(LLVMContext &C, unsigned Index, 667 AttributeSet Attrs) const { 668 if (!pImpl) return Attrs; 669 if (!Attrs.pImpl) return *this; 670 671 #ifndef NDEBUG 672 // FIXME it is not obvious how this should work for alignment. For now, say 673 // we can't change a known alignment. 674 unsigned OldAlign = getParamAlignment(Index); 675 unsigned NewAlign = Attrs.getParamAlignment(Index); 676 assert((!OldAlign || !NewAlign || OldAlign == NewAlign) && 677 "Attempt to change alignment!"); 678 #endif 679 680 // Add the attribute slots before the one we're trying to add. 681 SmallVector<AttributeSet, 4> AttrSet; 682 uint64_t NumAttrs = pImpl->getNumAttributes(); 683 AttributeSet AS; 684 uint64_t LastIndex = 0; 685 for (unsigned I = 0, E = NumAttrs; I != E; ++I) { 686 if (getSlotIndex(I) >= Index) { 687 if (getSlotIndex(I) == Index) AS = getSlotAttributes(LastIndex++); 688 break; 689 } 690 LastIndex = I + 1; 691 AttrSet.push_back(getSlotAttributes(I)); 692 } 693 694 // Now add the attribute into the correct slot. There may already be an 695 // AttributeSet there. 696 AttrBuilder B(AS, Index); 697 698 for (unsigned I = 0, E = Attrs.pImpl->getNumAttributes(); I != E; ++I) 699 if (Attrs.getSlotIndex(I) == Index) { 700 for (AttributeSetImpl::const_iterator II = Attrs.pImpl->begin(I), 701 IE = Attrs.pImpl->end(I); II != IE; ++II) 702 B.addAttribute(*II); 703 break; 704 } 705 706 AttrSet.push_back(AttributeSet::get(C, Index, B)); 707 708 // Add the remaining attribute slots. 709 for (unsigned I = LastIndex, E = NumAttrs; I < E; ++I) 710 AttrSet.push_back(getSlotAttributes(I)); 711 712 return get(C, AttrSet); 713 } 714 715 AttributeSet AttributeSet::removeAttribute(LLVMContext &C, unsigned Index, 716 Attribute::AttrKind Attr) const { 717 if (!hasAttribute(Index, Attr)) return *this; 718 return removeAttributes(C, Index, AttributeSet::get(C, Index, Attr)); 719 } 720 721 AttributeSet AttributeSet::removeAttributes(LLVMContext &C, unsigned Index, 722 AttributeSet Attrs) const { 723 if (!pImpl) return AttributeSet(); 724 if (!Attrs.pImpl) return *this; 725 726 #ifndef NDEBUG 727 // FIXME it is not obvious how this should work for alignment. 728 // For now, say we can't pass in alignment, which no current use does. 729 assert(!Attrs.hasAttribute(Index, Attribute::Alignment) && 730 "Attempt to change alignment!"); 731 #endif 732 733 // Add the attribute slots before the one we're trying to add. 734 SmallVector<AttributeSet, 4> AttrSet; 735 uint64_t NumAttrs = pImpl->getNumAttributes(); 736 AttributeSet AS; 737 uint64_t LastIndex = 0; 738 for (unsigned I = 0, E = NumAttrs; I != E; ++I) { 739 if (getSlotIndex(I) >= Index) { 740 if (getSlotIndex(I) == Index) AS = getSlotAttributes(LastIndex++); 741 break; 742 } 743 LastIndex = I + 1; 744 AttrSet.push_back(getSlotAttributes(I)); 745 } 746 747 // Now remove the attribute from the correct slot. There may already be an 748 // AttributeSet there. 749 AttrBuilder B(AS, Index); 750 751 for (unsigned I = 0, E = Attrs.pImpl->getNumAttributes(); I != E; ++I) 752 if (Attrs.getSlotIndex(I) == Index) { 753 B.removeAttributes(Attrs.pImpl->getSlotAttributes(I), Index); 754 break; 755 } 756 757 AttrSet.push_back(AttributeSet::get(C, Index, B)); 758 759 // Add the remaining attribute slots. 760 for (unsigned I = LastIndex, E = NumAttrs; I < E; ++I) 761 AttrSet.push_back(getSlotAttributes(I)); 762 763 return get(C, AttrSet); 764 } 765 766 //===----------------------------------------------------------------------===// 767 // AttributeSet Accessor Methods 768 //===----------------------------------------------------------------------===// 769 770 LLVMContext &AttributeSet::getContext() const { 771 return pImpl->getContext(); 772 } 773 774 AttributeSet AttributeSet::getParamAttributes(unsigned Index) const { 775 return pImpl && hasAttributes(Index) ? 776 AttributeSet::get(pImpl->getContext(), 777 ArrayRef<std::pair<unsigned, AttributeSetNode*> >( 778 std::make_pair(Index, getAttributes(Index)))) : 779 AttributeSet(); 780 } 781 782 AttributeSet AttributeSet::getRetAttributes() const { 783 return pImpl && hasAttributes(ReturnIndex) ? 784 AttributeSet::get(pImpl->getContext(), 785 ArrayRef<std::pair<unsigned, AttributeSetNode*> >( 786 std::make_pair(ReturnIndex, 787 getAttributes(ReturnIndex)))) : 788 AttributeSet(); 789 } 790 791 AttributeSet AttributeSet::getFnAttributes() const { 792 return pImpl && hasAttributes(FunctionIndex) ? 793 AttributeSet::get(pImpl->getContext(), 794 ArrayRef<std::pair<unsigned, AttributeSetNode*> >( 795 std::make_pair(FunctionIndex, 796 getAttributes(FunctionIndex)))) : 797 AttributeSet(); 798 } 799 800 bool AttributeSet::hasAttribute(unsigned Index, Attribute::AttrKind Kind) const{ 801 AttributeSetNode *ASN = getAttributes(Index); 802 return ASN ? ASN->hasAttribute(Kind) : false; 803 } 804 805 bool AttributeSet::hasAttribute(unsigned Index, StringRef Kind) const { 806 AttributeSetNode *ASN = getAttributes(Index); 807 return ASN ? ASN->hasAttribute(Kind) : false; 808 } 809 810 bool AttributeSet::hasAttributes(unsigned Index) const { 811 AttributeSetNode *ASN = getAttributes(Index); 812 return ASN ? ASN->hasAttributes() : false; 813 } 814 815 /// \brief Return true if the specified attribute is set for at least one 816 /// parameter or for the return value. 817 bool AttributeSet::hasAttrSomewhere(Attribute::AttrKind Attr) const { 818 if (pImpl == 0) return false; 819 820 for (unsigned I = 0, E = pImpl->getNumAttributes(); I != E; ++I) 821 for (AttributeSetImpl::const_iterator II = pImpl->begin(I), 822 IE = pImpl->end(I); II != IE; ++II) 823 if (II->hasAttribute(Attr)) 824 return true; 825 826 return false; 827 } 828 829 Attribute AttributeSet::getAttribute(unsigned Index, 830 Attribute::AttrKind Kind) const { 831 AttributeSetNode *ASN = getAttributes(Index); 832 return ASN ? ASN->getAttribute(Kind) : Attribute(); 833 } 834 835 Attribute AttributeSet::getAttribute(unsigned Index, 836 StringRef Kind) const { 837 AttributeSetNode *ASN = getAttributes(Index); 838 return ASN ? ASN->getAttribute(Kind) : Attribute(); 839 } 840 841 unsigned AttributeSet::getParamAlignment(unsigned Index) const { 842 AttributeSetNode *ASN = getAttributes(Index); 843 return ASN ? ASN->getAlignment() : 0; 844 } 845 846 unsigned AttributeSet::getStackAlignment(unsigned Index) const { 847 AttributeSetNode *ASN = getAttributes(Index); 848 return ASN ? ASN->getStackAlignment() : 0; 849 } 850 851 std::string AttributeSet::getAsString(unsigned Index, 852 bool InAttrGrp) const { 853 AttributeSetNode *ASN = getAttributes(Index); 854 return ASN ? ASN->getAsString(InAttrGrp) : std::string(""); 855 } 856 857 /// \brief The attributes for the specified index are returned. 858 AttributeSetNode *AttributeSet::getAttributes(unsigned Index) const { 859 if (!pImpl) return 0; 860 861 // Loop through to find the attribute node we want. 862 for (unsigned I = 0, E = pImpl->getNumAttributes(); I != E; ++I) 863 if (pImpl->getSlotIndex(I) == Index) 864 return pImpl->getSlotNode(I); 865 866 return 0; 867 } 868 869 AttributeSet::iterator AttributeSet::begin(unsigned Slot) const { 870 if (!pImpl) 871 return ArrayRef<Attribute>().begin(); 872 return pImpl->begin(Slot); 873 } 874 875 AttributeSet::iterator AttributeSet::end(unsigned Slot) const { 876 if (!pImpl) 877 return ArrayRef<Attribute>().end(); 878 return pImpl->end(Slot); 879 } 880 881 //===----------------------------------------------------------------------===// 882 // AttributeSet Introspection Methods 883 //===----------------------------------------------------------------------===// 884 885 /// \brief Return the number of slots used in this attribute list. This is the 886 /// number of arguments that have an attribute set on them (including the 887 /// function itself). 888 unsigned AttributeSet::getNumSlots() const { 889 return pImpl ? pImpl->getNumAttributes() : 0; 890 } 891 892 unsigned AttributeSet::getSlotIndex(unsigned Slot) const { 893 assert(pImpl && Slot < pImpl->getNumAttributes() && 894 "Slot # out of range!"); 895 return pImpl->getSlotIndex(Slot); 896 } 897 898 AttributeSet AttributeSet::getSlotAttributes(unsigned Slot) const { 899 assert(pImpl && Slot < pImpl->getNumAttributes() && 900 "Slot # out of range!"); 901 return pImpl->getSlotAttributes(Slot); 902 } 903 904 uint64_t AttributeSet::Raw(unsigned Index) const { 905 // FIXME: Remove this. 906 return pImpl ? pImpl->Raw(Index) : 0; 907 } 908 909 void AttributeSet::dump() const { 910 dbgs() << "PAL[\n"; 911 912 for (unsigned i = 0, e = getNumSlots(); i < e; ++i) { 913 uint64_t Index = getSlotIndex(i); 914 dbgs() << " { "; 915 if (Index == ~0U) 916 dbgs() << "~0U"; 917 else 918 dbgs() << Index; 919 dbgs() << " => " << getAsString(Index) << " }\n"; 920 } 921 922 dbgs() << "]\n"; 923 } 924 925 //===----------------------------------------------------------------------===// 926 // AttrBuilder Method Implementations 927 //===----------------------------------------------------------------------===// 928 929 AttrBuilder::AttrBuilder(AttributeSet AS, unsigned Index) 930 : Attrs(0), Alignment(0), StackAlignment(0) { 931 AttributeSetImpl *pImpl = AS.pImpl; 932 if (!pImpl) return; 933 934 for (unsigned I = 0, E = pImpl->getNumAttributes(); I != E; ++I) { 935 if (pImpl->getSlotIndex(I) != Index) continue; 936 937 for (AttributeSetImpl::const_iterator II = pImpl->begin(I), 938 IE = pImpl->end(I); II != IE; ++II) 939 addAttribute(*II); 940 941 break; 942 } 943 } 944 945 void AttrBuilder::clear() { 946 Attrs.reset(); 947 Alignment = StackAlignment = 0; 948 } 949 950 AttrBuilder &AttrBuilder::addAttribute(Attribute::AttrKind Val) { 951 assert((unsigned)Val < Attribute::EndAttrKinds && "Attribute out of range!"); 952 assert(Val != Attribute::Alignment && Val != Attribute::StackAlignment && 953 "Adding alignment attribute without adding alignment value!"); 954 Attrs[Val] = true; 955 return *this; 956 } 957 958 AttrBuilder &AttrBuilder::addAttribute(Attribute Attr) { 959 if (Attr.isStringAttribute()) { 960 addAttribute(Attr.getKindAsString(), Attr.getValueAsString()); 961 return *this; 962 } 963 964 Attribute::AttrKind Kind = Attr.getKindAsEnum(); 965 Attrs[Kind] = true; 966 967 if (Kind == Attribute::Alignment) 968 Alignment = Attr.getAlignment(); 969 else if (Kind == Attribute::StackAlignment) 970 StackAlignment = Attr.getStackAlignment(); 971 return *this; 972 } 973 974 AttrBuilder &AttrBuilder::addAttribute(StringRef A, StringRef V) { 975 TargetDepAttrs[A] = V; 976 return *this; 977 } 978 979 AttrBuilder &AttrBuilder::removeAttribute(Attribute::AttrKind Val) { 980 assert((unsigned)Val < Attribute::EndAttrKinds && "Attribute out of range!"); 981 Attrs[Val] = false; 982 983 if (Val == Attribute::Alignment) 984 Alignment = 0; 985 else if (Val == Attribute::StackAlignment) 986 StackAlignment = 0; 987 988 return *this; 989 } 990 991 AttrBuilder &AttrBuilder::removeAttributes(AttributeSet A, uint64_t Index) { 992 unsigned Slot = ~0U; 993 for (unsigned I = 0, E = A.getNumSlots(); I != E; ++I) 994 if (A.getSlotIndex(I) == Index) { 995 Slot = I; 996 break; 997 } 998 999 assert(Slot != ~0U && "Couldn't find index in AttributeSet!"); 1000 1001 for (AttributeSet::iterator I = A.begin(Slot), E = A.end(Slot); I != E; ++I) { 1002 Attribute Attr = *I; 1003 if (Attr.isEnumAttribute() || Attr.isAlignAttribute()) { 1004 Attribute::AttrKind Kind = I->getKindAsEnum(); 1005 Attrs[Kind] = false; 1006 1007 if (Kind == Attribute::Alignment) 1008 Alignment = 0; 1009 else if (Kind == Attribute::StackAlignment) 1010 StackAlignment = 0; 1011 } else { 1012 assert(Attr.isStringAttribute() && "Invalid attribute type!"); 1013 std::map<std::string, std::string>::iterator 1014 Iter = TargetDepAttrs.find(Attr.getKindAsString()); 1015 if (Iter != TargetDepAttrs.end()) 1016 TargetDepAttrs.erase(Iter); 1017 } 1018 } 1019 1020 return *this; 1021 } 1022 1023 AttrBuilder &AttrBuilder::removeAttribute(StringRef A) { 1024 std::map<std::string, std::string>::iterator I = TargetDepAttrs.find(A); 1025 if (I != TargetDepAttrs.end()) 1026 TargetDepAttrs.erase(I); 1027 return *this; 1028 } 1029 1030 AttrBuilder &AttrBuilder::addAlignmentAttr(unsigned Align) { 1031 if (Align == 0) return *this; 1032 1033 assert(isPowerOf2_32(Align) && "Alignment must be a power of two."); 1034 assert(Align <= 0x40000000 && "Alignment too large."); 1035 1036 Attrs[Attribute::Alignment] = true; 1037 Alignment = Align; 1038 return *this; 1039 } 1040 1041 AttrBuilder &AttrBuilder::addStackAlignmentAttr(unsigned Align) { 1042 // Default alignment, allow the target to define how to align it. 1043 if (Align == 0) return *this; 1044 1045 assert(isPowerOf2_32(Align) && "Alignment must be a power of two."); 1046 assert(Align <= 0x100 && "Alignment too large."); 1047 1048 Attrs[Attribute::StackAlignment] = true; 1049 StackAlignment = Align; 1050 return *this; 1051 } 1052 1053 AttrBuilder &AttrBuilder::merge(const AttrBuilder &B) { 1054 // FIXME: What if both have alignments, but they don't match?! 1055 if (!Alignment) 1056 Alignment = B.Alignment; 1057 1058 if (!StackAlignment) 1059 StackAlignment = B.StackAlignment; 1060 1061 Attrs |= B.Attrs; 1062 1063 for (td_const_iterator I = B.TargetDepAttrs.begin(), 1064 E = B.TargetDepAttrs.end(); I != E; ++I) 1065 TargetDepAttrs[I->first] = I->second; 1066 1067 return *this; 1068 } 1069 1070 bool AttrBuilder::contains(StringRef A) const { 1071 return TargetDepAttrs.find(A) != TargetDepAttrs.end(); 1072 } 1073 1074 bool AttrBuilder::hasAttributes() const { 1075 return !Attrs.none() || !TargetDepAttrs.empty(); 1076 } 1077 1078 bool AttrBuilder::hasAttributes(AttributeSet A, uint64_t Index) const { 1079 unsigned Slot = ~0U; 1080 for (unsigned I = 0, E = A.getNumSlots(); I != E; ++I) 1081 if (A.getSlotIndex(I) == Index) { 1082 Slot = I; 1083 break; 1084 } 1085 1086 assert(Slot != ~0U && "Couldn't find the index!"); 1087 1088 for (AttributeSet::iterator I = A.begin(Slot), E = A.end(Slot); 1089 I != E; ++I) { 1090 Attribute Attr = *I; 1091 if (Attr.isEnumAttribute() || Attr.isAlignAttribute()) { 1092 if (Attrs[I->getKindAsEnum()]) 1093 return true; 1094 } else { 1095 assert(Attr.isStringAttribute() && "Invalid attribute kind!"); 1096 return TargetDepAttrs.find(Attr.getKindAsString())!=TargetDepAttrs.end(); 1097 } 1098 } 1099 1100 return false; 1101 } 1102 1103 bool AttrBuilder::hasAlignmentAttr() const { 1104 return Alignment != 0; 1105 } 1106 1107 bool AttrBuilder::operator==(const AttrBuilder &B) { 1108 if (Attrs != B.Attrs) 1109 return false; 1110 1111 for (td_const_iterator I = TargetDepAttrs.begin(), 1112 E = TargetDepAttrs.end(); I != E; ++I) 1113 if (B.TargetDepAttrs.find(I->first) == B.TargetDepAttrs.end()) 1114 return false; 1115 1116 return Alignment == B.Alignment && StackAlignment == B.StackAlignment; 1117 } 1118 1119 AttrBuilder &AttrBuilder::addRawValue(uint64_t Val) { 1120 // FIXME: Remove this in 4.0. 1121 if (!Val) return *this; 1122 1123 for (Attribute::AttrKind I = Attribute::None; I != Attribute::EndAttrKinds; 1124 I = Attribute::AttrKind(I + 1)) { 1125 if (uint64_t A = (Val & AttributeImpl::getAttrMask(I))) { 1126 Attrs[I] = true; 1127 1128 if (I == Attribute::Alignment) 1129 Alignment = 1ULL << ((A >> 16) - 1); 1130 else if (I == Attribute::StackAlignment) 1131 StackAlignment = 1ULL << ((A >> 26)-1); 1132 } 1133 } 1134 1135 return *this; 1136 } 1137 1138 //===----------------------------------------------------------------------===// 1139 // AttributeFuncs Function Defintions 1140 //===----------------------------------------------------------------------===// 1141 1142 /// \brief Which attributes cannot be applied to a type. 1143 AttributeSet AttributeFuncs::typeIncompatible(Type *Ty, uint64_t Index) { 1144 AttrBuilder Incompatible; 1145 1146 if (!Ty->isIntegerTy()) 1147 // Attribute that only apply to integers. 1148 Incompatible.addAttribute(Attribute::SExt) 1149 .addAttribute(Attribute::ZExt); 1150 1151 if (!Ty->isPointerTy()) 1152 // Attribute that only apply to pointers. 1153 Incompatible.addAttribute(Attribute::ByVal) 1154 .addAttribute(Attribute::Nest) 1155 .addAttribute(Attribute::NoAlias) 1156 .addAttribute(Attribute::NoCapture) 1157 .addAttribute(Attribute::StructRet); 1158 1159 return AttributeSet::get(Ty->getContext(), Index, Incompatible); 1160 } 1161