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
get(LLVMContext & Context,Attribute::AttrKind Kind,uint64_t Val)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 if (!Val)
47 PA = new EnumAttributeImpl(Kind);
48 else
49 PA = new AlignAttributeImpl(Kind, Val);
50 pImpl->AttrsSet.InsertNode(PA, InsertPoint);
51 }
52
53 // Return the Attribute that we found or created.
54 return Attribute(PA);
55 }
56
get(LLVMContext & Context,StringRef Kind,StringRef Val)57 Attribute Attribute::get(LLVMContext &Context, StringRef Kind, StringRef Val) {
58 LLVMContextImpl *pImpl = Context.pImpl;
59 FoldingSetNodeID ID;
60 ID.AddString(Kind);
61 if (!Val.empty()) ID.AddString(Val);
62
63 void *InsertPoint;
64 AttributeImpl *PA = pImpl->AttrsSet.FindNodeOrInsertPos(ID, InsertPoint);
65
66 if (!PA) {
67 // If we didn't find any existing attributes of the same shape then create a
68 // new one and insert it.
69 PA = new StringAttributeImpl(Kind, Val);
70 pImpl->AttrsSet.InsertNode(PA, InsertPoint);
71 }
72
73 // Return the Attribute that we found or created.
74 return Attribute(PA);
75 }
76
getWithAlignment(LLVMContext & Context,uint64_t Align)77 Attribute Attribute::getWithAlignment(LLVMContext &Context, uint64_t Align) {
78 assert(isPowerOf2_32(Align) && "Alignment must be a power of two.");
79 assert(Align <= 0x40000000 && "Alignment too large.");
80 return get(Context, Alignment, Align);
81 }
82
getWithStackAlignment(LLVMContext & Context,uint64_t Align)83 Attribute Attribute::getWithStackAlignment(LLVMContext &Context,
84 uint64_t Align) {
85 assert(isPowerOf2_32(Align) && "Alignment must be a power of two.");
86 assert(Align <= 0x100 && "Alignment too large.");
87 return get(Context, StackAlignment, Align);
88 }
89
90 //===----------------------------------------------------------------------===//
91 // Attribute Accessor Methods
92 //===----------------------------------------------------------------------===//
93
isEnumAttribute() const94 bool Attribute::isEnumAttribute() const {
95 return pImpl && pImpl->isEnumAttribute();
96 }
97
isAlignAttribute() const98 bool Attribute::isAlignAttribute() const {
99 return pImpl && pImpl->isAlignAttribute();
100 }
101
isStringAttribute() const102 bool Attribute::isStringAttribute() const {
103 return pImpl && pImpl->isStringAttribute();
104 }
105
getKindAsEnum() const106 Attribute::AttrKind Attribute::getKindAsEnum() const {
107 if (!pImpl) return None;
108 assert((isEnumAttribute() || isAlignAttribute()) &&
109 "Invalid attribute type to get the kind as an enum!");
110 return pImpl ? pImpl->getKindAsEnum() : None;
111 }
112
getValueAsInt() const113 uint64_t Attribute::getValueAsInt() const {
114 if (!pImpl) return 0;
115 assert(isAlignAttribute() &&
116 "Expected the attribute to be an alignment attribute!");
117 return pImpl ? pImpl->getValueAsInt() : 0;
118 }
119
getKindAsString() const120 StringRef Attribute::getKindAsString() const {
121 if (!pImpl) return StringRef();
122 assert(isStringAttribute() &&
123 "Invalid attribute type to get the kind as a string!");
124 return pImpl ? pImpl->getKindAsString() : StringRef();
125 }
126
getValueAsString() const127 StringRef Attribute::getValueAsString() const {
128 if (!pImpl) return StringRef();
129 assert(isStringAttribute() &&
130 "Invalid attribute type to get the value as a string!");
131 return pImpl ? pImpl->getValueAsString() : StringRef();
132 }
133
hasAttribute(AttrKind Kind) const134 bool Attribute::hasAttribute(AttrKind Kind) const {
135 return (pImpl && pImpl->hasAttribute(Kind)) || (!pImpl && Kind == None);
136 }
137
hasAttribute(StringRef Kind) const138 bool Attribute::hasAttribute(StringRef Kind) const {
139 if (!isStringAttribute()) return false;
140 return pImpl && pImpl->hasAttribute(Kind);
141 }
142
143 /// This returns the alignment field of an attribute as a byte alignment value.
getAlignment() const144 unsigned Attribute::getAlignment() const {
145 assert(hasAttribute(Attribute::Alignment) &&
146 "Trying to get alignment from non-alignment attribute!");
147 return pImpl->getValueAsInt();
148 }
149
150 /// This returns the stack alignment field of an attribute as a byte alignment
151 /// value.
getStackAlignment() const152 unsigned Attribute::getStackAlignment() const {
153 assert(hasAttribute(Attribute::StackAlignment) &&
154 "Trying to get alignment from non-alignment attribute!");
155 return pImpl->getValueAsInt();
156 }
157
getAsString(bool InAttrGrp) const158 std::string Attribute::getAsString(bool InAttrGrp) const {
159 if (!pImpl) return "";
160
161 if (hasAttribute(Attribute::SanitizeAddress))
162 return "sanitize_address";
163 if (hasAttribute(Attribute::AlwaysInline))
164 return "alwaysinline";
165 if (hasAttribute(Attribute::Builtin))
166 return "builtin";
167 if (hasAttribute(Attribute::ByVal))
168 return "byval";
169 if (hasAttribute(Attribute::InlineHint))
170 return "inlinehint";
171 if (hasAttribute(Attribute::InReg))
172 return "inreg";
173 if (hasAttribute(Attribute::MinSize))
174 return "minsize";
175 if (hasAttribute(Attribute::Naked))
176 return "naked";
177 if (hasAttribute(Attribute::Nest))
178 return "nest";
179 if (hasAttribute(Attribute::NoAlias))
180 return "noalias";
181 if (hasAttribute(Attribute::NoBuiltin))
182 return "nobuiltin";
183 if (hasAttribute(Attribute::NoCapture))
184 return "nocapture";
185 if (hasAttribute(Attribute::NoDuplicate))
186 return "noduplicate";
187 if (hasAttribute(Attribute::NoImplicitFloat))
188 return "noimplicitfloat";
189 if (hasAttribute(Attribute::NoInline))
190 return "noinline";
191 if (hasAttribute(Attribute::NonLazyBind))
192 return "nonlazybind";
193 if (hasAttribute(Attribute::NoRedZone))
194 return "noredzone";
195 if (hasAttribute(Attribute::NoReturn))
196 return "noreturn";
197 if (hasAttribute(Attribute::NoUnwind))
198 return "nounwind";
199 if (hasAttribute(Attribute::OptimizeForSize))
200 return "optsize";
201 if (hasAttribute(Attribute::ReadNone))
202 return "readnone";
203 if (hasAttribute(Attribute::ReadOnly))
204 return "readonly";
205 if (hasAttribute(Attribute::Returned))
206 return "returned";
207 if (hasAttribute(Attribute::ReturnsTwice))
208 return "returns_twice";
209 if (hasAttribute(Attribute::SExt))
210 return "signext";
211 if (hasAttribute(Attribute::StackProtect))
212 return "ssp";
213 if (hasAttribute(Attribute::StackProtectReq))
214 return "sspreq";
215 if (hasAttribute(Attribute::StackProtectStrong))
216 return "sspstrong";
217 if (hasAttribute(Attribute::StructRet))
218 return "sret";
219 if (hasAttribute(Attribute::SanitizeThread))
220 return "sanitize_thread";
221 if (hasAttribute(Attribute::SanitizeMemory))
222 return "sanitize_memory";
223 if (hasAttribute(Attribute::UWTable))
224 return "uwtable";
225 if (hasAttribute(Attribute::ZExt))
226 return "zeroext";
227 if (hasAttribute(Attribute::Cold))
228 return "cold";
229
230 // FIXME: These should be output like this:
231 //
232 // align=4
233 // alignstack=8
234 //
235 if (hasAttribute(Attribute::Alignment)) {
236 std::string Result;
237 Result += "align";
238 Result += (InAttrGrp) ? "=" : " ";
239 Result += utostr(getValueAsInt());
240 return Result;
241 }
242
243 if (hasAttribute(Attribute::StackAlignment)) {
244 std::string Result;
245 Result += "alignstack";
246 if (InAttrGrp) {
247 Result += "=";
248 Result += utostr(getValueAsInt());
249 } else {
250 Result += "(";
251 Result += utostr(getValueAsInt());
252 Result += ")";
253 }
254 return Result;
255 }
256
257 // Convert target-dependent attributes to strings of the form:
258 //
259 // "kind"
260 // "kind" = "value"
261 //
262 if (isStringAttribute()) {
263 std::string Result;
264 Result += '\"' + getKindAsString().str() + '"';
265
266 StringRef Val = pImpl->getValueAsString();
267 if (Val.empty()) return Result;
268
269 Result += "=\"" + Val.str() + '"';
270 return Result;
271 }
272
273 llvm_unreachable("Unknown attribute");
274 }
275
operator <(Attribute A) const276 bool Attribute::operator<(Attribute A) const {
277 if (!pImpl && !A.pImpl) return false;
278 if (!pImpl) return true;
279 if (!A.pImpl) return false;
280 return *pImpl < *A.pImpl;
281 }
282
283 //===----------------------------------------------------------------------===//
284 // AttributeImpl Definition
285 //===----------------------------------------------------------------------===//
286
~AttributeImpl()287 AttributeImpl::~AttributeImpl() {}
288
hasAttribute(Attribute::AttrKind A) const289 bool AttributeImpl::hasAttribute(Attribute::AttrKind A) const {
290 if (isStringAttribute()) return false;
291 return getKindAsEnum() == A;
292 }
293
hasAttribute(StringRef Kind) const294 bool AttributeImpl::hasAttribute(StringRef Kind) const {
295 if (!isStringAttribute()) return false;
296 return getKindAsString() == Kind;
297 }
298
getKindAsEnum() const299 Attribute::AttrKind AttributeImpl::getKindAsEnum() const {
300 assert(isEnumAttribute() || isAlignAttribute());
301 return static_cast<const EnumAttributeImpl *>(this)->getEnumKind();
302 }
303
getValueAsInt() const304 uint64_t AttributeImpl::getValueAsInt() const {
305 assert(isAlignAttribute());
306 return static_cast<const AlignAttributeImpl *>(this)->getAlignment();
307 }
308
getKindAsString() const309 StringRef AttributeImpl::getKindAsString() const {
310 assert(isStringAttribute());
311 return static_cast<const StringAttributeImpl *>(this)->getStringKind();
312 }
313
getValueAsString() const314 StringRef AttributeImpl::getValueAsString() const {
315 assert(isStringAttribute());
316 return static_cast<const StringAttributeImpl *>(this)->getStringValue();
317 }
318
operator <(const AttributeImpl & AI) const319 bool AttributeImpl::operator<(const AttributeImpl &AI) const {
320 // This sorts the attributes with Attribute::AttrKinds coming first (sorted
321 // relative to their enum value) and then strings.
322 if (isEnumAttribute()) {
323 if (AI.isEnumAttribute()) return getKindAsEnum() < AI.getKindAsEnum();
324 if (AI.isAlignAttribute()) return true;
325 if (AI.isStringAttribute()) return true;
326 }
327
328 if (isAlignAttribute()) {
329 if (AI.isEnumAttribute()) return false;
330 if (AI.isAlignAttribute()) return getValueAsInt() < AI.getValueAsInt();
331 if (AI.isStringAttribute()) return true;
332 }
333
334 if (AI.isEnumAttribute()) return false;
335 if (AI.isAlignAttribute()) return false;
336 if (getKindAsString() == AI.getKindAsString())
337 return getValueAsString() < AI.getValueAsString();
338 return getKindAsString() < AI.getKindAsString();
339 }
340
getAttrMask(Attribute::AttrKind Val)341 uint64_t AttributeImpl::getAttrMask(Attribute::AttrKind Val) {
342 // FIXME: Remove this.
343 switch (Val) {
344 case Attribute::EndAttrKinds:
345 llvm_unreachable("Synthetic enumerators which should never get here");
346
347 case Attribute::None: return 0;
348 case Attribute::ZExt: return 1 << 0;
349 case Attribute::SExt: return 1 << 1;
350 case Attribute::NoReturn: return 1 << 2;
351 case Attribute::InReg: return 1 << 3;
352 case Attribute::StructRet: return 1 << 4;
353 case Attribute::NoUnwind: return 1 << 5;
354 case Attribute::NoAlias: return 1 << 6;
355 case Attribute::ByVal: return 1 << 7;
356 case Attribute::Nest: return 1 << 8;
357 case Attribute::ReadNone: return 1 << 9;
358 case Attribute::ReadOnly: return 1 << 10;
359 case Attribute::NoInline: return 1 << 11;
360 case Attribute::AlwaysInline: return 1 << 12;
361 case Attribute::OptimizeForSize: return 1 << 13;
362 case Attribute::StackProtect: return 1 << 14;
363 case Attribute::StackProtectReq: return 1 << 15;
364 case Attribute::Alignment: return 31 << 16;
365 case Attribute::NoCapture: return 1 << 21;
366 case Attribute::NoRedZone: return 1 << 22;
367 case Attribute::NoImplicitFloat: return 1 << 23;
368 case Attribute::Naked: return 1 << 24;
369 case Attribute::InlineHint: return 1 << 25;
370 case Attribute::StackAlignment: return 7 << 26;
371 case Attribute::ReturnsTwice: return 1 << 29;
372 case Attribute::UWTable: return 1 << 30;
373 case Attribute::NonLazyBind: return 1U << 31;
374 case Attribute::SanitizeAddress: return 1ULL << 32;
375 case Attribute::MinSize: return 1ULL << 33;
376 case Attribute::NoDuplicate: return 1ULL << 34;
377 case Attribute::StackProtectStrong: return 1ULL << 35;
378 case Attribute::SanitizeThread: return 1ULL << 36;
379 case Attribute::SanitizeMemory: return 1ULL << 37;
380 case Attribute::NoBuiltin: return 1ULL << 38;
381 case Attribute::Returned: return 1ULL << 39;
382 case Attribute::Cold: return 1ULL << 40;
383 case Attribute::Builtin: return 1ULL << 41;
384 }
385 llvm_unreachable("Unsupported attribute type");
386 }
387
388 //===----------------------------------------------------------------------===//
389 // AttributeSetNode Definition
390 //===----------------------------------------------------------------------===//
391
get(LLVMContext & C,ArrayRef<Attribute> Attrs)392 AttributeSetNode *AttributeSetNode::get(LLVMContext &C,
393 ArrayRef<Attribute> Attrs) {
394 if (Attrs.empty())
395 return 0;
396
397 // Otherwise, build a key to look up the existing attributes.
398 LLVMContextImpl *pImpl = C.pImpl;
399 FoldingSetNodeID ID;
400
401 SmallVector<Attribute, 8> SortedAttrs(Attrs.begin(), Attrs.end());
402 array_pod_sort(SortedAttrs.begin(), SortedAttrs.end());
403
404 for (SmallVectorImpl<Attribute>::iterator I = SortedAttrs.begin(),
405 E = SortedAttrs.end(); I != E; ++I)
406 I->Profile(ID);
407
408 void *InsertPoint;
409 AttributeSetNode *PA =
410 pImpl->AttrsSetNodes.FindNodeOrInsertPos(ID, InsertPoint);
411
412 // If we didn't find any existing attributes of the same shape then create a
413 // new one and insert it.
414 if (!PA) {
415 // Coallocate entries after the AttributeSetNode itself.
416 void *Mem = ::operator new(sizeof(AttributeSetNode) +
417 sizeof(Attribute) * SortedAttrs.size());
418 PA = new (Mem) AttributeSetNode(SortedAttrs);
419 pImpl->AttrsSetNodes.InsertNode(PA, InsertPoint);
420 }
421
422 // Return the AttributesListNode that we found or created.
423 return PA;
424 }
425
hasAttribute(Attribute::AttrKind Kind) const426 bool AttributeSetNode::hasAttribute(Attribute::AttrKind Kind) const {
427 for (iterator I = begin(), E = end(); I != E; ++I)
428 if (I->hasAttribute(Kind))
429 return true;
430 return false;
431 }
432
hasAttribute(StringRef Kind) const433 bool AttributeSetNode::hasAttribute(StringRef Kind) const {
434 for (iterator I = begin(), E = end(); I != E; ++I)
435 if (I->hasAttribute(Kind))
436 return true;
437 return false;
438 }
439
getAttribute(Attribute::AttrKind Kind) const440 Attribute AttributeSetNode::getAttribute(Attribute::AttrKind Kind) const {
441 for (iterator I = begin(), E = end(); I != E; ++I)
442 if (I->hasAttribute(Kind))
443 return *I;
444 return Attribute();
445 }
446
getAttribute(StringRef Kind) const447 Attribute AttributeSetNode::getAttribute(StringRef Kind) const {
448 for (iterator I = begin(), E = end(); I != E; ++I)
449 if (I->hasAttribute(Kind))
450 return *I;
451 return Attribute();
452 }
453
getAlignment() const454 unsigned AttributeSetNode::getAlignment() const {
455 for (iterator I = begin(), E = end(); I != E; ++I)
456 if (I->hasAttribute(Attribute::Alignment))
457 return I->getAlignment();
458 return 0;
459 }
460
getStackAlignment() const461 unsigned AttributeSetNode::getStackAlignment() const {
462 for (iterator I = begin(), E = end(); I != E; ++I)
463 if (I->hasAttribute(Attribute::StackAlignment))
464 return I->getStackAlignment();
465 return 0;
466 }
467
getAsString(bool InAttrGrp) const468 std::string AttributeSetNode::getAsString(bool InAttrGrp) const {
469 std::string Str;
470 for (iterator I = begin(), E = end(); I != E; ++I) {
471 if (I != begin())
472 Str += ' ';
473 Str += I->getAsString(InAttrGrp);
474 }
475 return Str;
476 }
477
478 //===----------------------------------------------------------------------===//
479 // AttributeSetImpl Definition
480 //===----------------------------------------------------------------------===//
481
Raw(unsigned Index) const482 uint64_t AttributeSetImpl::Raw(unsigned Index) const {
483 for (unsigned I = 0, E = getNumAttributes(); I != E; ++I) {
484 if (getSlotIndex(I) != Index) continue;
485 const AttributeSetNode *ASN = getSlotNode(I);
486 uint64_t Mask = 0;
487
488 for (AttributeSetNode::iterator II = ASN->begin(),
489 IE = ASN->end(); II != IE; ++II) {
490 Attribute Attr = *II;
491
492 // This cannot handle string attributes.
493 if (Attr.isStringAttribute()) continue;
494
495 Attribute::AttrKind Kind = Attr.getKindAsEnum();
496
497 if (Kind == Attribute::Alignment)
498 Mask |= (Log2_32(ASN->getAlignment()) + 1) << 16;
499 else if (Kind == Attribute::StackAlignment)
500 Mask |= (Log2_32(ASN->getStackAlignment()) + 1) << 26;
501 else
502 Mask |= AttributeImpl::getAttrMask(Kind);
503 }
504
505 return Mask;
506 }
507
508 return 0;
509 }
510
dump() const511 void AttributeSetImpl::dump() const {
512 AttributeSet(const_cast<AttributeSetImpl *>(this)).dump();
513 }
514
515 //===----------------------------------------------------------------------===//
516 // AttributeSet Construction and Mutation Methods
517 //===----------------------------------------------------------------------===//
518
519 AttributeSet
getImpl(LLVMContext & C,ArrayRef<std::pair<unsigned,AttributeSetNode * >> Attrs)520 AttributeSet::getImpl(LLVMContext &C,
521 ArrayRef<std::pair<unsigned, AttributeSetNode*> > Attrs) {
522 LLVMContextImpl *pImpl = C.pImpl;
523 FoldingSetNodeID ID;
524 AttributeSetImpl::Profile(ID, Attrs);
525
526 void *InsertPoint;
527 AttributeSetImpl *PA = pImpl->AttrsLists.FindNodeOrInsertPos(ID, InsertPoint);
528
529 // If we didn't find any existing attributes of the same shape then
530 // create a new one and insert it.
531 if (!PA) {
532 // Coallocate entries after the AttributeSetImpl itself.
533 void *Mem = ::operator new(sizeof(AttributeSetImpl) +
534 sizeof(std::pair<unsigned, AttributeSetNode *>) *
535 Attrs.size());
536 PA = new (Mem) AttributeSetImpl(C, Attrs);
537 pImpl->AttrsLists.InsertNode(PA, InsertPoint);
538 }
539
540 // Return the AttributesList that we found or created.
541 return AttributeSet(PA);
542 }
543
get(LLVMContext & C,ArrayRef<std::pair<unsigned,Attribute>> Attrs)544 AttributeSet AttributeSet::get(LLVMContext &C,
545 ArrayRef<std::pair<unsigned, Attribute> > Attrs){
546 // If there are no attributes then return a null AttributesList pointer.
547 if (Attrs.empty())
548 return AttributeSet();
549
550 #ifndef NDEBUG
551 for (unsigned i = 0, e = Attrs.size(); i != e; ++i) {
552 assert((!i || Attrs[i-1].first <= Attrs[i].first) &&
553 "Misordered Attributes list!");
554 assert(!Attrs[i].second.hasAttribute(Attribute::None) &&
555 "Pointless attribute!");
556 }
557 #endif
558
559 // Create a vector if (unsigned, AttributeSetNode*) pairs from the attributes
560 // list.
561 SmallVector<std::pair<unsigned, AttributeSetNode*>, 8> AttrPairVec;
562 for (ArrayRef<std::pair<unsigned, Attribute> >::iterator I = Attrs.begin(),
563 E = Attrs.end(); I != E; ) {
564 unsigned Index = I->first;
565 SmallVector<Attribute, 4> AttrVec;
566 while (I != E && I->first == Index) {
567 AttrVec.push_back(I->second);
568 ++I;
569 }
570
571 AttrPairVec.push_back(std::make_pair(Index,
572 AttributeSetNode::get(C, AttrVec)));
573 }
574
575 return getImpl(C, AttrPairVec);
576 }
577
get(LLVMContext & C,ArrayRef<std::pair<unsigned,AttributeSetNode * >> Attrs)578 AttributeSet AttributeSet::get(LLVMContext &C,
579 ArrayRef<std::pair<unsigned,
580 AttributeSetNode*> > Attrs) {
581 // If there are no attributes then return a null AttributesList pointer.
582 if (Attrs.empty())
583 return AttributeSet();
584
585 return getImpl(C, Attrs);
586 }
587
get(LLVMContext & C,unsigned Index,AttrBuilder & B)588 AttributeSet AttributeSet::get(LLVMContext &C, unsigned Index, AttrBuilder &B) {
589 if (!B.hasAttributes())
590 return AttributeSet();
591
592 // Add target-independent attributes.
593 SmallVector<std::pair<unsigned, Attribute>, 8> Attrs;
594 for (Attribute::AttrKind Kind = Attribute::None;
595 Kind != Attribute::EndAttrKinds; Kind = Attribute::AttrKind(Kind + 1)) {
596 if (!B.contains(Kind))
597 continue;
598
599 if (Kind == Attribute::Alignment)
600 Attrs.push_back(std::make_pair(Index, Attribute::
601 getWithAlignment(C, B.getAlignment())));
602 else if (Kind == Attribute::StackAlignment)
603 Attrs.push_back(std::make_pair(Index, Attribute::
604 getWithStackAlignment(C, B.getStackAlignment())));
605 else
606 Attrs.push_back(std::make_pair(Index, Attribute::get(C, Kind)));
607 }
608
609 // Add target-dependent (string) attributes.
610 for (AttrBuilder::td_iterator I = B.td_begin(), E = B.td_end();
611 I != E; ++I)
612 Attrs.push_back(std::make_pair(Index, Attribute::get(C, I->first,I->second)));
613
614 return get(C, Attrs);
615 }
616
get(LLVMContext & C,unsigned Index,ArrayRef<Attribute::AttrKind> Kind)617 AttributeSet AttributeSet::get(LLVMContext &C, unsigned Index,
618 ArrayRef<Attribute::AttrKind> Kind) {
619 SmallVector<std::pair<unsigned, Attribute>, 8> Attrs;
620 for (ArrayRef<Attribute::AttrKind>::iterator I = Kind.begin(),
621 E = Kind.end(); I != E; ++I)
622 Attrs.push_back(std::make_pair(Index, Attribute::get(C, *I)));
623 return get(C, Attrs);
624 }
625
get(LLVMContext & C,ArrayRef<AttributeSet> Attrs)626 AttributeSet AttributeSet::get(LLVMContext &C, ArrayRef<AttributeSet> Attrs) {
627 if (Attrs.empty()) return AttributeSet();
628 if (Attrs.size() == 1) return Attrs[0];
629
630 SmallVector<std::pair<unsigned, AttributeSetNode*>, 8> AttrNodeVec;
631 AttributeSetImpl *A0 = Attrs[0].pImpl;
632 if (A0)
633 AttrNodeVec.append(A0->getNode(0), A0->getNode(A0->getNumAttributes()));
634 // Copy all attributes from Attrs into AttrNodeVec while keeping AttrNodeVec
635 // ordered by index. Because we know that each list in Attrs is ordered by
636 // index we only need to merge each successive list in rather than doing a
637 // full sort.
638 for (unsigned I = 1, E = Attrs.size(); I != E; ++I) {
639 AttributeSetImpl *AS = Attrs[I].pImpl;
640 if (!AS) continue;
641 SmallVector<std::pair<unsigned, AttributeSetNode *>, 8>::iterator
642 ANVI = AttrNodeVec.begin(), ANVE;
643 for (const AttributeSetImpl::IndexAttrPair
644 *AI = AS->getNode(0),
645 *AE = AS->getNode(AS->getNumAttributes());
646 AI != AE; ++AI) {
647 ANVE = AttrNodeVec.end();
648 while (ANVI != ANVE && ANVI->first <= AI->first)
649 ++ANVI;
650 ANVI = AttrNodeVec.insert(ANVI, *AI) + 1;
651 }
652 }
653
654 return getImpl(C, AttrNodeVec);
655 }
656
addAttribute(LLVMContext & C,unsigned Index,Attribute::AttrKind Attr) const657 AttributeSet AttributeSet::addAttribute(LLVMContext &C, unsigned Index,
658 Attribute::AttrKind Attr) const {
659 if (hasAttribute(Index, Attr)) return *this;
660 return addAttributes(C, Index, AttributeSet::get(C, Index, Attr));
661 }
662
addAttribute(LLVMContext & C,unsigned Index,StringRef Kind) const663 AttributeSet AttributeSet::addAttribute(LLVMContext &C, unsigned Index,
664 StringRef Kind) const {
665 llvm::AttrBuilder B;
666 B.addAttribute(Kind);
667 return addAttributes(C, Index, AttributeSet::get(C, Index, B));
668 }
669
addAttribute(LLVMContext & C,unsigned Index,StringRef Kind,StringRef Value) const670 AttributeSet AttributeSet::addAttribute(LLVMContext &C, unsigned Index,
671 StringRef Kind, StringRef Value) const {
672 llvm::AttrBuilder B;
673 B.addAttribute(Kind, Value);
674 return addAttributes(C, Index, AttributeSet::get(C, Index, B));
675 }
676
addAttributes(LLVMContext & C,unsigned Index,AttributeSet Attrs) const677 AttributeSet AttributeSet::addAttributes(LLVMContext &C, unsigned Index,
678 AttributeSet Attrs) const {
679 if (!pImpl) return Attrs;
680 if (!Attrs.pImpl) return *this;
681
682 #ifndef NDEBUG
683 // FIXME it is not obvious how this should work for alignment. For now, say
684 // we can't change a known alignment.
685 unsigned OldAlign = getParamAlignment(Index);
686 unsigned NewAlign = Attrs.getParamAlignment(Index);
687 assert((!OldAlign || !NewAlign || OldAlign == NewAlign) &&
688 "Attempt to change alignment!");
689 #endif
690
691 // Add the attribute slots before the one we're trying to add.
692 SmallVector<AttributeSet, 4> AttrSet;
693 uint64_t NumAttrs = pImpl->getNumAttributes();
694 AttributeSet AS;
695 uint64_t LastIndex = 0;
696 for (unsigned I = 0, E = NumAttrs; I != E; ++I) {
697 if (getSlotIndex(I) >= Index) {
698 if (getSlotIndex(I) == Index) AS = getSlotAttributes(LastIndex++);
699 break;
700 }
701 LastIndex = I + 1;
702 AttrSet.push_back(getSlotAttributes(I));
703 }
704
705 // Now add the attribute into the correct slot. There may already be an
706 // AttributeSet there.
707 AttrBuilder B(AS, Index);
708
709 for (unsigned I = 0, E = Attrs.pImpl->getNumAttributes(); I != E; ++I)
710 if (Attrs.getSlotIndex(I) == Index) {
711 for (AttributeSetImpl::iterator II = Attrs.pImpl->begin(I),
712 IE = Attrs.pImpl->end(I); II != IE; ++II)
713 B.addAttribute(*II);
714 break;
715 }
716
717 AttrSet.push_back(AttributeSet::get(C, Index, B));
718
719 // Add the remaining attribute slots.
720 for (unsigned I = LastIndex, E = NumAttrs; I < E; ++I)
721 AttrSet.push_back(getSlotAttributes(I));
722
723 return get(C, AttrSet);
724 }
725
removeAttribute(LLVMContext & C,unsigned Index,Attribute::AttrKind Attr) const726 AttributeSet AttributeSet::removeAttribute(LLVMContext &C, unsigned Index,
727 Attribute::AttrKind Attr) const {
728 if (!hasAttribute(Index, Attr)) return *this;
729 return removeAttributes(C, Index, AttributeSet::get(C, Index, Attr));
730 }
731
removeAttributes(LLVMContext & C,unsigned Index,AttributeSet Attrs) const732 AttributeSet AttributeSet::removeAttributes(LLVMContext &C, unsigned Index,
733 AttributeSet Attrs) const {
734 if (!pImpl) return AttributeSet();
735 if (!Attrs.pImpl) return *this;
736
737 #ifndef NDEBUG
738 // FIXME it is not obvious how this should work for alignment.
739 // For now, say we can't pass in alignment, which no current use does.
740 assert(!Attrs.hasAttribute(Index, Attribute::Alignment) &&
741 "Attempt to change alignment!");
742 #endif
743
744 // Add the attribute slots before the one we're trying to add.
745 SmallVector<AttributeSet, 4> AttrSet;
746 uint64_t NumAttrs = pImpl->getNumAttributes();
747 AttributeSet AS;
748 uint64_t LastIndex = 0;
749 for (unsigned I = 0, E = NumAttrs; I != E; ++I) {
750 if (getSlotIndex(I) >= Index) {
751 if (getSlotIndex(I) == Index) AS = getSlotAttributes(LastIndex++);
752 break;
753 }
754 LastIndex = I + 1;
755 AttrSet.push_back(getSlotAttributes(I));
756 }
757
758 // Now remove the attribute from the correct slot. There may already be an
759 // AttributeSet there.
760 AttrBuilder B(AS, Index);
761
762 for (unsigned I = 0, E = Attrs.pImpl->getNumAttributes(); I != E; ++I)
763 if (Attrs.getSlotIndex(I) == Index) {
764 B.removeAttributes(Attrs.pImpl->getSlotAttributes(I), Index);
765 break;
766 }
767
768 AttrSet.push_back(AttributeSet::get(C, Index, B));
769
770 // Add the remaining attribute slots.
771 for (unsigned I = LastIndex, E = NumAttrs; I < E; ++I)
772 AttrSet.push_back(getSlotAttributes(I));
773
774 return get(C, AttrSet);
775 }
776
777 //===----------------------------------------------------------------------===//
778 // AttributeSet Accessor Methods
779 //===----------------------------------------------------------------------===//
780
getContext() const781 LLVMContext &AttributeSet::getContext() const {
782 return pImpl->getContext();
783 }
784
getParamAttributes(unsigned Index) const785 AttributeSet AttributeSet::getParamAttributes(unsigned Index) const {
786 return pImpl && hasAttributes(Index) ?
787 AttributeSet::get(pImpl->getContext(),
788 ArrayRef<std::pair<unsigned, AttributeSetNode*> >(
789 std::make_pair(Index, getAttributes(Index)))) :
790 AttributeSet();
791 }
792
getRetAttributes() const793 AttributeSet AttributeSet::getRetAttributes() const {
794 return pImpl && hasAttributes(ReturnIndex) ?
795 AttributeSet::get(pImpl->getContext(),
796 ArrayRef<std::pair<unsigned, AttributeSetNode*> >(
797 std::make_pair(ReturnIndex,
798 getAttributes(ReturnIndex)))) :
799 AttributeSet();
800 }
801
getFnAttributes() const802 AttributeSet AttributeSet::getFnAttributes() const {
803 return pImpl && hasAttributes(FunctionIndex) ?
804 AttributeSet::get(pImpl->getContext(),
805 ArrayRef<std::pair<unsigned, AttributeSetNode*> >(
806 std::make_pair(FunctionIndex,
807 getAttributes(FunctionIndex)))) :
808 AttributeSet();
809 }
810
hasAttribute(unsigned Index,Attribute::AttrKind Kind) const811 bool AttributeSet::hasAttribute(unsigned Index, Attribute::AttrKind Kind) const{
812 AttributeSetNode *ASN = getAttributes(Index);
813 return ASN ? ASN->hasAttribute(Kind) : false;
814 }
815
hasAttribute(unsigned Index,StringRef Kind) const816 bool AttributeSet::hasAttribute(unsigned Index, StringRef Kind) const {
817 AttributeSetNode *ASN = getAttributes(Index);
818 return ASN ? ASN->hasAttribute(Kind) : false;
819 }
820
hasAttributes(unsigned Index) const821 bool AttributeSet::hasAttributes(unsigned Index) const {
822 AttributeSetNode *ASN = getAttributes(Index);
823 return ASN ? ASN->hasAttributes() : false;
824 }
825
826 /// \brief Return true if the specified attribute is set for at least one
827 /// parameter or for the return value.
hasAttrSomewhere(Attribute::AttrKind Attr) const828 bool AttributeSet::hasAttrSomewhere(Attribute::AttrKind Attr) const {
829 if (pImpl == 0) return false;
830
831 for (unsigned I = 0, E = pImpl->getNumAttributes(); I != E; ++I)
832 for (AttributeSetImpl::iterator II = pImpl->begin(I),
833 IE = pImpl->end(I); II != IE; ++II)
834 if (II->hasAttribute(Attr))
835 return true;
836
837 return false;
838 }
839
getAttribute(unsigned Index,Attribute::AttrKind Kind) const840 Attribute AttributeSet::getAttribute(unsigned Index,
841 Attribute::AttrKind Kind) const {
842 AttributeSetNode *ASN = getAttributes(Index);
843 return ASN ? ASN->getAttribute(Kind) : Attribute();
844 }
845
getAttribute(unsigned Index,StringRef Kind) const846 Attribute AttributeSet::getAttribute(unsigned Index,
847 StringRef Kind) const {
848 AttributeSetNode *ASN = getAttributes(Index);
849 return ASN ? ASN->getAttribute(Kind) : Attribute();
850 }
851
getParamAlignment(unsigned Index) const852 unsigned AttributeSet::getParamAlignment(unsigned Index) const {
853 AttributeSetNode *ASN = getAttributes(Index);
854 return ASN ? ASN->getAlignment() : 0;
855 }
856
getStackAlignment(unsigned Index) const857 unsigned AttributeSet::getStackAlignment(unsigned Index) const {
858 AttributeSetNode *ASN = getAttributes(Index);
859 return ASN ? ASN->getStackAlignment() : 0;
860 }
861
getAsString(unsigned Index,bool InAttrGrp) const862 std::string AttributeSet::getAsString(unsigned Index,
863 bool InAttrGrp) const {
864 AttributeSetNode *ASN = getAttributes(Index);
865 return ASN ? ASN->getAsString(InAttrGrp) : std::string("");
866 }
867
868 /// \brief The attributes for the specified index are returned.
getAttributes(unsigned Index) const869 AttributeSetNode *AttributeSet::getAttributes(unsigned Index) const {
870 if (!pImpl) return 0;
871
872 // Loop through to find the attribute node we want.
873 for (unsigned I = 0, E = pImpl->getNumAttributes(); I != E; ++I)
874 if (pImpl->getSlotIndex(I) == Index)
875 return pImpl->getSlotNode(I);
876
877 return 0;
878 }
879
begin(unsigned Slot) const880 AttributeSet::iterator AttributeSet::begin(unsigned Slot) const {
881 if (!pImpl)
882 return ArrayRef<Attribute>().begin();
883 return pImpl->begin(Slot);
884 }
885
end(unsigned Slot) const886 AttributeSet::iterator AttributeSet::end(unsigned Slot) const {
887 if (!pImpl)
888 return ArrayRef<Attribute>().end();
889 return pImpl->end(Slot);
890 }
891
892 //===----------------------------------------------------------------------===//
893 // AttributeSet Introspection Methods
894 //===----------------------------------------------------------------------===//
895
896 /// \brief Return the number of slots used in this attribute list. This is the
897 /// number of arguments that have an attribute set on them (including the
898 /// function itself).
getNumSlots() const899 unsigned AttributeSet::getNumSlots() const {
900 return pImpl ? pImpl->getNumAttributes() : 0;
901 }
902
getSlotIndex(unsigned Slot) const903 unsigned AttributeSet::getSlotIndex(unsigned Slot) const {
904 assert(pImpl && Slot < pImpl->getNumAttributes() &&
905 "Slot # out of range!");
906 return pImpl->getSlotIndex(Slot);
907 }
908
getSlotAttributes(unsigned Slot) const909 AttributeSet AttributeSet::getSlotAttributes(unsigned Slot) const {
910 assert(pImpl && Slot < pImpl->getNumAttributes() &&
911 "Slot # out of range!");
912 return pImpl->getSlotAttributes(Slot);
913 }
914
Raw(unsigned Index) const915 uint64_t AttributeSet::Raw(unsigned Index) const {
916 // FIXME: Remove this.
917 return pImpl ? pImpl->Raw(Index) : 0;
918 }
919
dump() const920 void AttributeSet::dump() const {
921 dbgs() << "PAL[\n";
922
923 for (unsigned i = 0, e = getNumSlots(); i < e; ++i) {
924 uint64_t Index = getSlotIndex(i);
925 dbgs() << " { ";
926 if (Index == ~0U)
927 dbgs() << "~0U";
928 else
929 dbgs() << Index;
930 dbgs() << " => " << getAsString(Index) << " }\n";
931 }
932
933 dbgs() << "]\n";
934 }
935
936 //===----------------------------------------------------------------------===//
937 // AttrBuilder Method Implementations
938 //===----------------------------------------------------------------------===//
939
AttrBuilder(AttributeSet AS,unsigned Index)940 AttrBuilder::AttrBuilder(AttributeSet AS, unsigned Index)
941 : Attrs(0), Alignment(0), StackAlignment(0) {
942 AttributeSetImpl *pImpl = AS.pImpl;
943 if (!pImpl) return;
944
945 for (unsigned I = 0, E = pImpl->getNumAttributes(); I != E; ++I) {
946 if (pImpl->getSlotIndex(I) != Index) continue;
947
948 for (AttributeSetImpl::iterator II = pImpl->begin(I),
949 IE = pImpl->end(I); II != IE; ++II)
950 addAttribute(*II);
951
952 break;
953 }
954 }
955
clear()956 void AttrBuilder::clear() {
957 Attrs.reset();
958 Alignment = StackAlignment = 0;
959 }
960
addAttribute(Attribute::AttrKind Val)961 AttrBuilder &AttrBuilder::addAttribute(Attribute::AttrKind Val) {
962 assert((unsigned)Val < Attribute::EndAttrKinds && "Attribute out of range!");
963 assert(Val != Attribute::Alignment && Val != Attribute::StackAlignment &&
964 "Adding alignment attribute without adding alignment value!");
965 Attrs[Val] = true;
966 return *this;
967 }
968
addAttribute(Attribute Attr)969 AttrBuilder &AttrBuilder::addAttribute(Attribute Attr) {
970 if (Attr.isStringAttribute()) {
971 addAttribute(Attr.getKindAsString(), Attr.getValueAsString());
972 return *this;
973 }
974
975 Attribute::AttrKind Kind = Attr.getKindAsEnum();
976 Attrs[Kind] = true;
977
978 if (Kind == Attribute::Alignment)
979 Alignment = Attr.getAlignment();
980 else if (Kind == Attribute::StackAlignment)
981 StackAlignment = Attr.getStackAlignment();
982 return *this;
983 }
984
addAttribute(StringRef A,StringRef V)985 AttrBuilder &AttrBuilder::addAttribute(StringRef A, StringRef V) {
986 TargetDepAttrs[A] = V;
987 return *this;
988 }
989
removeAttribute(Attribute::AttrKind Val)990 AttrBuilder &AttrBuilder::removeAttribute(Attribute::AttrKind Val) {
991 assert((unsigned)Val < Attribute::EndAttrKinds && "Attribute out of range!");
992 Attrs[Val] = false;
993
994 if (Val == Attribute::Alignment)
995 Alignment = 0;
996 else if (Val == Attribute::StackAlignment)
997 StackAlignment = 0;
998
999 return *this;
1000 }
1001
removeAttributes(AttributeSet A,uint64_t Index)1002 AttrBuilder &AttrBuilder::removeAttributes(AttributeSet A, uint64_t Index) {
1003 unsigned Slot = ~0U;
1004 for (unsigned I = 0, E = A.getNumSlots(); I != E; ++I)
1005 if (A.getSlotIndex(I) == Index) {
1006 Slot = I;
1007 break;
1008 }
1009
1010 assert(Slot != ~0U && "Couldn't find index in AttributeSet!");
1011
1012 for (AttributeSet::iterator I = A.begin(Slot), E = A.end(Slot); I != E; ++I) {
1013 Attribute Attr = *I;
1014 if (Attr.isEnumAttribute() || Attr.isAlignAttribute()) {
1015 Attribute::AttrKind Kind = I->getKindAsEnum();
1016 Attrs[Kind] = false;
1017
1018 if (Kind == Attribute::Alignment)
1019 Alignment = 0;
1020 else if (Kind == Attribute::StackAlignment)
1021 StackAlignment = 0;
1022 } else {
1023 assert(Attr.isStringAttribute() && "Invalid attribute type!");
1024 std::map<std::string, std::string>::iterator
1025 Iter = TargetDepAttrs.find(Attr.getKindAsString());
1026 if (Iter != TargetDepAttrs.end())
1027 TargetDepAttrs.erase(Iter);
1028 }
1029 }
1030
1031 return *this;
1032 }
1033
removeAttribute(StringRef A)1034 AttrBuilder &AttrBuilder::removeAttribute(StringRef A) {
1035 std::map<std::string, std::string>::iterator I = TargetDepAttrs.find(A);
1036 if (I != TargetDepAttrs.end())
1037 TargetDepAttrs.erase(I);
1038 return *this;
1039 }
1040
addAlignmentAttr(unsigned Align)1041 AttrBuilder &AttrBuilder::addAlignmentAttr(unsigned Align) {
1042 if (Align == 0) return *this;
1043
1044 assert(isPowerOf2_32(Align) && "Alignment must be a power of two.");
1045 assert(Align <= 0x40000000 && "Alignment too large.");
1046
1047 Attrs[Attribute::Alignment] = true;
1048 Alignment = Align;
1049 return *this;
1050 }
1051
addStackAlignmentAttr(unsigned Align)1052 AttrBuilder &AttrBuilder::addStackAlignmentAttr(unsigned Align) {
1053 // Default alignment, allow the target to define how to align it.
1054 if (Align == 0) return *this;
1055
1056 assert(isPowerOf2_32(Align) && "Alignment must be a power of two.");
1057 assert(Align <= 0x100 && "Alignment too large.");
1058
1059 Attrs[Attribute::StackAlignment] = true;
1060 StackAlignment = Align;
1061 return *this;
1062 }
1063
merge(const AttrBuilder & B)1064 AttrBuilder &AttrBuilder::merge(const AttrBuilder &B) {
1065 // FIXME: What if both have alignments, but they don't match?!
1066 if (!Alignment)
1067 Alignment = B.Alignment;
1068
1069 if (!StackAlignment)
1070 StackAlignment = B.StackAlignment;
1071
1072 Attrs |= B.Attrs;
1073
1074 for (td_const_iterator I = B.TargetDepAttrs.begin(),
1075 E = B.TargetDepAttrs.end(); I != E; ++I)
1076 TargetDepAttrs[I->first] = I->second;
1077
1078 return *this;
1079 }
1080
contains(StringRef A) const1081 bool AttrBuilder::contains(StringRef A) const {
1082 return TargetDepAttrs.find(A) != TargetDepAttrs.end();
1083 }
1084
hasAttributes() const1085 bool AttrBuilder::hasAttributes() const {
1086 return !Attrs.none() || !TargetDepAttrs.empty();
1087 }
1088
hasAttributes(AttributeSet A,uint64_t Index) const1089 bool AttrBuilder::hasAttributes(AttributeSet A, uint64_t Index) const {
1090 unsigned Slot = ~0U;
1091 for (unsigned I = 0, E = A.getNumSlots(); I != E; ++I)
1092 if (A.getSlotIndex(I) == Index) {
1093 Slot = I;
1094 break;
1095 }
1096
1097 assert(Slot != ~0U && "Couldn't find the index!");
1098
1099 for (AttributeSet::iterator I = A.begin(Slot), E = A.end(Slot);
1100 I != E; ++I) {
1101 Attribute Attr = *I;
1102 if (Attr.isEnumAttribute() || Attr.isAlignAttribute()) {
1103 if (Attrs[I->getKindAsEnum()])
1104 return true;
1105 } else {
1106 assert(Attr.isStringAttribute() && "Invalid attribute kind!");
1107 return TargetDepAttrs.find(Attr.getKindAsString())!=TargetDepAttrs.end();
1108 }
1109 }
1110
1111 return false;
1112 }
1113
hasAlignmentAttr() const1114 bool AttrBuilder::hasAlignmentAttr() const {
1115 return Alignment != 0;
1116 }
1117
operator ==(const AttrBuilder & B)1118 bool AttrBuilder::operator==(const AttrBuilder &B) {
1119 if (Attrs != B.Attrs)
1120 return false;
1121
1122 for (td_const_iterator I = TargetDepAttrs.begin(),
1123 E = TargetDepAttrs.end(); I != E; ++I)
1124 if (B.TargetDepAttrs.find(I->first) == B.TargetDepAttrs.end())
1125 return false;
1126
1127 return Alignment == B.Alignment && StackAlignment == B.StackAlignment;
1128 }
1129
addRawValue(uint64_t Val)1130 AttrBuilder &AttrBuilder::addRawValue(uint64_t Val) {
1131 // FIXME: Remove this in 4.0.
1132 if (!Val) return *this;
1133
1134 for (Attribute::AttrKind I = Attribute::None; I != Attribute::EndAttrKinds;
1135 I = Attribute::AttrKind(I + 1)) {
1136 if (uint64_t A = (Val & AttributeImpl::getAttrMask(I))) {
1137 Attrs[I] = true;
1138
1139 if (I == Attribute::Alignment)
1140 Alignment = 1ULL << ((A >> 16) - 1);
1141 else if (I == Attribute::StackAlignment)
1142 StackAlignment = 1ULL << ((A >> 26)-1);
1143 }
1144 }
1145
1146 return *this;
1147 }
1148
1149 //===----------------------------------------------------------------------===//
1150 // AttributeFuncs Function Defintions
1151 //===----------------------------------------------------------------------===//
1152
1153 /// \brief Which attributes cannot be applied to a type.
typeIncompatible(Type * Ty,uint64_t Index)1154 AttributeSet AttributeFuncs::typeIncompatible(Type *Ty, uint64_t Index) {
1155 AttrBuilder Incompatible;
1156
1157 if (!Ty->isIntegerTy())
1158 // Attribute that only apply to integers.
1159 Incompatible.addAttribute(Attribute::SExt)
1160 .addAttribute(Attribute::ZExt);
1161
1162 if (!Ty->isPointerTy())
1163 // Attribute that only apply to pointers.
1164 Incompatible.addAttribute(Attribute::ByVal)
1165 .addAttribute(Attribute::Nest)
1166 .addAttribute(Attribute::NoAlias)
1167 .addAttribute(Attribute::NoCapture)
1168 .addAttribute(Attribute::ReadNone)
1169 .addAttribute(Attribute::ReadOnly)
1170 .addAttribute(Attribute::StructRet);
1171
1172 return AttributeSet::get(Ty->getContext(), Index, Incompatible);
1173 }
1174