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Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001//===-- WinEHPrepare - Prepare exception handling for code generation ---===//
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 pass lowers LLVM IR exception handling into something closer to what the
11// backend wants. It snifs the personality function to see which kind of
12// preparation is necessary. If the personality function uses the Itanium LSDA,
13// this pass delegates to the DWARF EH preparation pass.
14//
15//===----------------------------------------------------------------------===//
16
17#include "llvm/CodeGen/Passes.h"
18#include "llvm/ADT/MapVector.h"
Andrew Kaylor6b67d422015-03-11 23:22:06 +000019#include "llvm/ADT/STLExtras.h"
Benjamin Kramera8d61b12015-03-23 18:57:17 +000020#include "llvm/ADT/SmallSet.h"
Reid Klecknerfd7df282015-04-22 21:05:21 +000021#include "llvm/ADT/SetVector.h"
Andrew Kaylor1476e6d2015-02-24 20:49:35 +000022#include "llvm/ADT/TinyPtrVector.h"
23#include "llvm/Analysis/LibCallSemantics.h"
David Majnemercde33032015-03-30 22:58:10 +000024#include "llvm/CodeGen/WinEHFuncInfo.h"
Andrew Kaylor64622aa2015-04-01 17:21:25 +000025#include "llvm/IR/Dominators.h"
Andrew Kaylor1476e6d2015-02-24 20:49:35 +000026#include "llvm/IR/Function.h"
27#include "llvm/IR/IRBuilder.h"
28#include "llvm/IR/Instructions.h"
29#include "llvm/IR/IntrinsicInst.h"
30#include "llvm/IR/Module.h"
31#include "llvm/IR/PatternMatch.h"
32#include "llvm/Pass.h"
Reid Kleckner0f9e27a2015-03-18 20:26:53 +000033#include "llvm/Support/CommandLine.h"
Andrew Kaylor6b67d422015-03-11 23:22:06 +000034#include "llvm/Support/Debug.h"
Benjamin Kramera8d61b12015-03-23 18:57:17 +000035#include "llvm/Support/raw_ostream.h"
Andrew Kaylor6b67d422015-03-11 23:22:06 +000036#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Andrew Kaylor1476e6d2015-02-24 20:49:35 +000037#include "llvm/Transforms/Utils/Cloning.h"
38#include "llvm/Transforms/Utils/Local.h"
Andrew Kaylor64622aa2015-04-01 17:21:25 +000039#include "llvm/Transforms/Utils/PromoteMemToReg.h"
Andrew Kaylor1476e6d2015-02-24 20:49:35 +000040#include <memory>
41
42using namespace llvm;
43using namespace llvm::PatternMatch;
44
45#define DEBUG_TYPE "winehprepare"
46
47namespace {
48
Andrew Kaylor1476e6d2015-02-24 20:49:35 +000049// This map is used to model frame variable usage during outlining, to
50// construct a structure type to hold the frame variables in a frame
51// allocation block, and to remap the frame variable allocas (including
52// spill locations as needed) to GEPs that get the variable from the
53// frame allocation structure.
Reid Klecknercfb9ce52015-03-05 18:26:34 +000054typedef MapVector<Value *, TinyPtrVector<AllocaInst *>> FrameVarInfoMap;
Andrew Kaylor1476e6d2015-02-24 20:49:35 +000055
Reid Kleckner3567d272015-04-02 21:13:31 +000056// TinyPtrVector cannot hold nullptr, so we need our own sentinel that isn't
57// quite null.
58AllocaInst *getCatchObjectSentinel() {
59 return static_cast<AllocaInst *>(nullptr) + 1;
60}
61
Andrew Kaylor6b67d422015-03-11 23:22:06 +000062typedef SmallSet<BasicBlock *, 4> VisitedBlockSet;
63
Andrew Kaylor6b67d422015-03-11 23:22:06 +000064class LandingPadActions;
Andrew Kaylor6b67d422015-03-11 23:22:06 +000065class LandingPadMap;
66
67typedef DenseMap<const BasicBlock *, CatchHandler *> CatchHandlerMapTy;
68typedef DenseMap<const BasicBlock *, CleanupHandler *> CleanupHandlerMapTy;
69
Andrew Kaylor1476e6d2015-02-24 20:49:35 +000070class WinEHPrepare : public FunctionPass {
Andrew Kaylor1476e6d2015-02-24 20:49:35 +000071public:
72 static char ID; // Pass identification, replacement for typeid.
73 WinEHPrepare(const TargetMachine *TM = nullptr)
Andrew Kaylor64622aa2015-04-01 17:21:25 +000074 : FunctionPass(ID), DT(nullptr) {}
Andrew Kaylor1476e6d2015-02-24 20:49:35 +000075
76 bool runOnFunction(Function &Fn) override;
77
78 bool doFinalization(Module &M) override;
79
80 void getAnalysisUsage(AnalysisUsage &AU) const override;
81
82 const char *getPassName() const override {
83 return "Windows exception handling preparation";
84 }
85
86private:
Reid Kleckner0f9e27a2015-03-18 20:26:53 +000087 bool prepareExceptionHandlers(Function &F,
88 SmallVectorImpl<LandingPadInst *> &LPads);
Andrew Kaylor64622aa2015-04-01 17:21:25 +000089 void promoteLandingPadValues(LandingPadInst *LPad);
Reid Klecknerfd7df282015-04-22 21:05:21 +000090 void demoteValuesLiveAcrossHandlers(Function &F,
91 SmallVectorImpl<LandingPadInst *> &LPads);
Andrew Kayloraa92ab02015-04-03 19:37:50 +000092 void completeNestedLandingPad(Function *ParentFn,
93 LandingPadInst *OutlinedLPad,
94 const LandingPadInst *OriginalLPad,
95 FrameVarInfoMap &VarInfo);
Andrew Kaylor6b67d422015-03-11 23:22:06 +000096 bool outlineHandler(ActionHandler *Action, Function *SrcFn,
97 LandingPadInst *LPad, BasicBlock *StartBB,
Reid Klecknercfb9ce52015-03-05 18:26:34 +000098 FrameVarInfoMap &VarInfo);
Andrew Kaylorbb111322015-04-07 21:30:23 +000099 void addStubInvokeToHandlerIfNeeded(Function *Handler, Value *PersonalityFn);
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000100
101 void mapLandingPadBlocks(LandingPadInst *LPad, LandingPadActions &Actions);
102 CatchHandler *findCatchHandler(BasicBlock *BB, BasicBlock *&NextBB,
103 VisitedBlockSet &VisitedBlocks);
Reid Kleckner9405ef02015-04-10 23:12:29 +0000104 void findCleanupHandlers(LandingPadActions &Actions, BasicBlock *StartBB,
105 BasicBlock *EndBB);
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000106
Reid Kleckner0f9e27a2015-03-18 20:26:53 +0000107 void processSEHCatchHandler(CatchHandler *Handler, BasicBlock *StartBB);
108
109 // All fields are reset by runOnFunction.
Andrew Kaylor64622aa2015-04-01 17:21:25 +0000110 DominatorTree *DT;
Reid Kleckner0f9e27a2015-03-18 20:26:53 +0000111 EHPersonality Personality;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000112 CatchHandlerMapTy CatchHandlerMap;
113 CleanupHandlerMapTy CleanupHandlerMap;
Andrew Kaylor64622aa2015-04-01 17:21:25 +0000114 DenseMap<const LandingPadInst *, LandingPadMap> LPadMaps;
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000115
116 // This maps landing pad instructions found in outlined handlers to
117 // the landing pad instruction in the parent function from which they
118 // were cloned. The cloned/nested landing pad is used as the key
119 // because the landing pad may be cloned into multiple handlers.
120 // This map will be used to add the llvm.eh.actions call to the nested
121 // landing pads after all handlers have been outlined.
122 DenseMap<LandingPadInst *, const LandingPadInst *> NestedLPtoOriginalLP;
123
124 // This maps blocks in the parent function which are destinations of
125 // catch handlers to cloned blocks in (other) outlined handlers. This
126 // handles the case where a nested landing pads has a catch handler that
127 // returns to a handler function rather than the parent function.
128 // The original block is used as the key here because there should only
129 // ever be one handler function from which the cloned block is not pruned.
130 // The original block will be pruned from the parent function after all
131 // handlers have been outlined. This map will be used to adjust the
132 // return instructions of handlers which return to the block that was
133 // outlined into a handler. This is done after all handlers have been
134 // outlined but before the outlined code is pruned from the parent function.
135 DenseMap<const BasicBlock *, BasicBlock *> LPadTargetBlocks;
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000136};
137
138class WinEHFrameVariableMaterializer : public ValueMaterializer {
139public:
140 WinEHFrameVariableMaterializer(Function *OutlinedFn,
141 FrameVarInfoMap &FrameVarInfo);
Alexander Kornienkof817c1c2015-04-11 02:11:45 +0000142 ~WinEHFrameVariableMaterializer() override {}
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000143
Alexander Kornienkof817c1c2015-04-11 02:11:45 +0000144 Value *materializeValueFor(Value *V) override;
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000145
Reid Kleckner3567d272015-04-02 21:13:31 +0000146 void escapeCatchObject(Value *V);
147
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000148private:
149 FrameVarInfoMap &FrameVarInfo;
150 IRBuilder<> Builder;
151};
152
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000153class LandingPadMap {
154public:
155 LandingPadMap() : OriginLPad(nullptr) {}
156 void mapLandingPad(const LandingPadInst *LPad);
157
158 bool isInitialized() { return OriginLPad != nullptr; }
159
Andrew Kaylorf7118ae2015-03-27 22:31:12 +0000160 bool isOriginLandingPadBlock(const BasicBlock *BB) const;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000161 bool isLandingPadSpecificInst(const Instruction *Inst) const;
162
Andrew Kaylor64622aa2015-04-01 17:21:25 +0000163 void remapEHValues(ValueToValueMapTy &VMap, Value *EHPtrValue,
164 Value *SelectorValue) const;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000165
166private:
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000167 const LandingPadInst *OriginLPad;
168 // We will normally only see one of each of these instructions, but
169 // if more than one occurs for some reason we can handle that.
170 TinyPtrVector<const ExtractValueInst *> ExtractedEHPtrs;
171 TinyPtrVector<const ExtractValueInst *> ExtractedSelectors;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000172};
173
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000174class WinEHCloningDirectorBase : public CloningDirector {
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000175public:
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000176 WinEHCloningDirectorBase(Function *HandlerFn, FrameVarInfoMap &VarInfo,
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000177 LandingPadMap &LPadMap)
178 : Materializer(HandlerFn, VarInfo),
179 SelectorIDType(Type::getInt32Ty(HandlerFn->getContext())),
180 Int8PtrType(Type::getInt8PtrTy(HandlerFn->getContext())),
Reid Klecknerf14787d2015-04-22 00:07:52 +0000181 LPadMap(LPadMap) {
182 auto AI = HandlerFn->getArgumentList().begin();
183 ++AI;
184 EstablisherFrame = AI;
185 }
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000186
187 CloningAction handleInstruction(ValueToValueMapTy &VMap,
188 const Instruction *Inst,
189 BasicBlock *NewBB) override;
190
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000191 virtual CloningAction handleBeginCatch(ValueToValueMapTy &VMap,
192 const Instruction *Inst,
193 BasicBlock *NewBB) = 0;
194 virtual CloningAction handleEndCatch(ValueToValueMapTy &VMap,
195 const Instruction *Inst,
196 BasicBlock *NewBB) = 0;
197 virtual CloningAction handleTypeIdFor(ValueToValueMapTy &VMap,
198 const Instruction *Inst,
199 BasicBlock *NewBB) = 0;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000200 virtual CloningAction handleInvoke(ValueToValueMapTy &VMap,
201 const InvokeInst *Invoke,
202 BasicBlock *NewBB) = 0;
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000203 virtual CloningAction handleResume(ValueToValueMapTy &VMap,
204 const ResumeInst *Resume,
205 BasicBlock *NewBB) = 0;
Andrew Kaylorea8df612015-04-17 23:05:43 +0000206 virtual CloningAction handleCompare(ValueToValueMapTy &VMap,
207 const CmpInst *Compare,
208 BasicBlock *NewBB) = 0;
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000209 virtual CloningAction handleLandingPad(ValueToValueMapTy &VMap,
210 const LandingPadInst *LPad,
211 BasicBlock *NewBB) = 0;
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000212
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000213 ValueMaterializer *getValueMaterializer() override { return &Materializer; }
214
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000215protected:
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000216 WinEHFrameVariableMaterializer Materializer;
217 Type *SelectorIDType;
218 Type *Int8PtrType;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000219 LandingPadMap &LPadMap;
Reid Klecknerf14787d2015-04-22 00:07:52 +0000220
221 /// The value representing the parent frame pointer.
222 Value *EstablisherFrame;
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000223};
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000224
225class WinEHCatchDirector : public WinEHCloningDirectorBase {
226public:
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000227 WinEHCatchDirector(
228 Function *CatchFn, Value *Selector, FrameVarInfoMap &VarInfo,
229 LandingPadMap &LPadMap,
230 DenseMap<LandingPadInst *, const LandingPadInst *> &NestedLPads)
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000231 : WinEHCloningDirectorBase(CatchFn, VarInfo, LPadMap),
232 CurrentSelector(Selector->stripPointerCasts()),
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000233 ExceptionObjectVar(nullptr), NestedLPtoOriginalLP(NestedLPads) {}
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000234
235 CloningAction handleBeginCatch(ValueToValueMapTy &VMap,
236 const Instruction *Inst,
237 BasicBlock *NewBB) override;
238 CloningAction handleEndCatch(ValueToValueMapTy &VMap, const Instruction *Inst,
239 BasicBlock *NewBB) override;
240 CloningAction handleTypeIdFor(ValueToValueMapTy &VMap,
241 const Instruction *Inst,
242 BasicBlock *NewBB) override;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000243 CloningAction handleInvoke(ValueToValueMapTy &VMap, const InvokeInst *Invoke,
244 BasicBlock *NewBB) override;
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000245 CloningAction handleResume(ValueToValueMapTy &VMap, const ResumeInst *Resume,
246 BasicBlock *NewBB) override;
Andrew Kaylorea8df612015-04-17 23:05:43 +0000247 CloningAction handleCompare(ValueToValueMapTy &VMap,
248 const CmpInst *Compare, BasicBlock *NewBB) override;
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000249 CloningAction handleLandingPad(ValueToValueMapTy &VMap,
250 const LandingPadInst *LPad,
251 BasicBlock *NewBB) override;
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000252
Reid Kleckner3567d272015-04-02 21:13:31 +0000253 Value *getExceptionVar() { return ExceptionObjectVar; }
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000254 TinyPtrVector<BasicBlock *> &getReturnTargets() { return ReturnTargets; }
255
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000256private:
257 Value *CurrentSelector;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000258
Reid Kleckner3567d272015-04-02 21:13:31 +0000259 Value *ExceptionObjectVar;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000260 TinyPtrVector<BasicBlock *> ReturnTargets;
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000261
262 // This will be a reference to the field of the same name in the WinEHPrepare
263 // object which instantiates this WinEHCatchDirector object.
264 DenseMap<LandingPadInst *, const LandingPadInst *> &NestedLPtoOriginalLP;
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000265};
266
267class WinEHCleanupDirector : public WinEHCloningDirectorBase {
268public:
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000269 WinEHCleanupDirector(Function *CleanupFn, FrameVarInfoMap &VarInfo,
270 LandingPadMap &LPadMap)
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000271 : WinEHCloningDirectorBase(CleanupFn, VarInfo, LPadMap) {}
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000272
273 CloningAction handleBeginCatch(ValueToValueMapTy &VMap,
274 const Instruction *Inst,
275 BasicBlock *NewBB) override;
276 CloningAction handleEndCatch(ValueToValueMapTy &VMap, const Instruction *Inst,
277 BasicBlock *NewBB) override;
278 CloningAction handleTypeIdFor(ValueToValueMapTy &VMap,
279 const Instruction *Inst,
280 BasicBlock *NewBB) override;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000281 CloningAction handleInvoke(ValueToValueMapTy &VMap, const InvokeInst *Invoke,
282 BasicBlock *NewBB) override;
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000283 CloningAction handleResume(ValueToValueMapTy &VMap, const ResumeInst *Resume,
284 BasicBlock *NewBB) override;
Andrew Kaylorea8df612015-04-17 23:05:43 +0000285 CloningAction handleCompare(ValueToValueMapTy &VMap,
286 const CmpInst *Compare, BasicBlock *NewBB) override;
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000287 CloningAction handleLandingPad(ValueToValueMapTy &VMap,
288 const LandingPadInst *LPad,
289 BasicBlock *NewBB) override;
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000290};
291
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000292class LandingPadActions {
293public:
294 LandingPadActions() : HasCleanupHandlers(false) {}
295
296 void insertCatchHandler(CatchHandler *Action) { Actions.push_back(Action); }
297 void insertCleanupHandler(CleanupHandler *Action) {
298 Actions.push_back(Action);
299 HasCleanupHandlers = true;
300 }
301
302 bool includesCleanup() const { return HasCleanupHandlers; }
303
David Majnemercde33032015-03-30 22:58:10 +0000304 SmallVectorImpl<ActionHandler *> &actions() { return Actions; }
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000305 SmallVectorImpl<ActionHandler *>::iterator begin() { return Actions.begin(); }
306 SmallVectorImpl<ActionHandler *>::iterator end() { return Actions.end(); }
307
308private:
309 // Note that this class does not own the ActionHandler objects in this vector.
310 // The ActionHandlers are owned by the CatchHandlerMap and CleanupHandlerMap
311 // in the WinEHPrepare class.
312 SmallVector<ActionHandler *, 4> Actions;
313 bool HasCleanupHandlers;
314};
315
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000316} // end anonymous namespace
317
318char WinEHPrepare::ID = 0;
Reid Kleckner47c8e7a2015-03-12 00:36:20 +0000319INITIALIZE_TM_PASS(WinEHPrepare, "winehprepare", "Prepare Windows exceptions",
320 false, false)
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000321
322FunctionPass *llvm::createWinEHPass(const TargetMachine *TM) {
323 return new WinEHPrepare(TM);
324}
325
Reid Kleckner909ea7e2015-04-23 18:34:01 +0000326// FIXME: Remove this once the backend can handle the prepared IR.
327static cl::opt<bool>
328 SEHPrepare("sehprepare", cl::Hidden,
329 cl::desc("Prepare functions with SEH personalities"));
330
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000331bool WinEHPrepare::runOnFunction(Function &Fn) {
Reid Klecknerfd7df282015-04-22 21:05:21 +0000332 // No need to prepare outlined handlers.
333 if (Fn.hasFnAttribute("wineh-parent"))
334 return false;
335
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000336 SmallVector<LandingPadInst *, 4> LPads;
337 SmallVector<ResumeInst *, 4> Resumes;
338 for (BasicBlock &BB : Fn) {
339 if (auto *LP = BB.getLandingPadInst())
340 LPads.push_back(LP);
341 if (auto *Resume = dyn_cast<ResumeInst>(BB.getTerminator()))
342 Resumes.push_back(Resume);
343 }
344
345 // No need to prepare functions that lack landing pads.
346 if (LPads.empty())
347 return false;
348
349 // Classify the personality to see what kind of preparation we need.
Reid Kleckner0f9e27a2015-03-18 20:26:53 +0000350 Personality = classifyEHPersonality(LPads.back()->getPersonalityFn());
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000351
Reid Kleckner47c8e7a2015-03-12 00:36:20 +0000352 // Do nothing if this is not an MSVC personality.
Reid Kleckner0f9e27a2015-03-18 20:26:53 +0000353 if (!isMSVCEHPersonality(Personality))
Reid Kleckner47c8e7a2015-03-12 00:36:20 +0000354 return false;
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000355
Andrew Kaylor64622aa2015-04-01 17:21:25 +0000356 DT = &getAnalysis<DominatorTreeWrapperPass>().getDomTree();
357
Reid Kleckner909ea7e2015-04-23 18:34:01 +0000358 if (isAsynchronousEHPersonality(Personality) && !SEHPrepare) {
359 // Replace all resume instructions with unreachable.
360 // FIXME: Remove this once the backend can handle the prepared IR.
361 for (ResumeInst *Resume : Resumes) {
362 IRBuilder<>(Resume).CreateUnreachable();
363 Resume->eraseFromParent();
364 }
365 return true;
366 }
367
Reid Kleckner0f9e27a2015-03-18 20:26:53 +0000368 // If there were any landing pads, prepareExceptionHandlers will make changes.
369 prepareExceptionHandlers(Fn, LPads);
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000370 return true;
371}
372
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000373bool WinEHPrepare::doFinalization(Module &M) { return false; }
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000374
Andrew Kaylor64622aa2015-04-01 17:21:25 +0000375void WinEHPrepare::getAnalysisUsage(AnalysisUsage &AU) const {
376 AU.addRequired<DominatorTreeWrapperPass>();
377}
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000378
Reid Klecknerfd7df282015-04-22 21:05:21 +0000379static bool isSelectorDispatch(BasicBlock *BB, BasicBlock *&CatchHandler,
380 Constant *&Selector, BasicBlock *&NextBB);
381
382// Finds blocks reachable from the starting set Worklist. Does not follow unwind
383// edges or blocks listed in StopPoints.
384static void findReachableBlocks(SmallPtrSetImpl<BasicBlock *> &ReachableBBs,
385 SetVector<BasicBlock *> &Worklist,
386 const SetVector<BasicBlock *> *StopPoints) {
387 while (!Worklist.empty()) {
388 BasicBlock *BB = Worklist.pop_back_val();
389
390 // Don't cross blocks that we should stop at.
391 if (StopPoints && StopPoints->count(BB))
392 continue;
393
394 if (!ReachableBBs.insert(BB).second)
395 continue; // Already visited.
396
397 // Don't follow unwind edges of invokes.
398 if (auto *II = dyn_cast<InvokeInst>(BB->getTerminator())) {
399 Worklist.insert(II->getNormalDest());
400 continue;
401 }
402
403 // Otherwise, follow all successors.
404 Worklist.insert(succ_begin(BB), succ_end(BB));
405 }
406}
407
408/// Find all points where exceptional control rejoins normal control flow via
409/// llvm.eh.endcatch. Add them to the normal bb reachability worklist.
410static void findCXXEHReturnPoints(Function &F,
411 SetVector<BasicBlock *> &EHReturnBlocks) {
412 for (auto BBI = F.begin(), BBE = F.end(); BBI != BBE; ++BBI) {
413 BasicBlock *BB = BBI;
414 for (Instruction &I : *BB) {
415 if (match(&I, m_Intrinsic<Intrinsic::eh_endcatch>())) {
416 // Split the block after the call to llvm.eh.endcatch if there is
417 // anything other than an unconditional branch, or if the successor
418 // starts with a phi.
419 auto *Br = dyn_cast<BranchInst>(I.getNextNode());
420 if (!Br || !Br->isUnconditional() ||
421 isa<PHINode>(Br->getSuccessor(0)->begin())) {
422 DEBUG(dbgs() << "splitting block " << BB->getName()
423 << " with llvm.eh.endcatch\n");
424 BBI = BB->splitBasicBlock(I.getNextNode(), "ehreturn");
425 }
426 // The next BB is normal control flow.
427 EHReturnBlocks.insert(BB->getTerminator()->getSuccessor(0));
428 break;
429 }
430 }
431 }
432}
433
434static bool isCatchAllLandingPad(const BasicBlock *BB) {
435 const LandingPadInst *LP = BB->getLandingPadInst();
436 if (!LP)
437 return false;
438 unsigned N = LP->getNumClauses();
439 return (N > 0 && LP->isCatch(N - 1) &&
440 isa<ConstantPointerNull>(LP->getClause(N - 1)));
441}
442
443/// Find all points where exceptions control rejoins normal control flow via
444/// selector dispatch.
445static void findSEHEHReturnPoints(Function &F,
446 SetVector<BasicBlock *> &EHReturnBlocks) {
447 for (auto BBI = F.begin(), BBE = F.end(); BBI != BBE; ++BBI) {
448 BasicBlock *BB = BBI;
449 // If the landingpad is a catch-all, treat the whole lpad as if it is
450 // reachable from normal control flow.
451 // FIXME: This is imprecise. We need a better way of identifying where a
452 // catch-all starts and cleanups stop. As far as LLVM is concerned, there
453 // is no difference.
454 if (isCatchAllLandingPad(BB)) {
455 EHReturnBlocks.insert(BB);
456 continue;
457 }
458
459 BasicBlock *CatchHandler;
460 BasicBlock *NextBB;
461 Constant *Selector;
462 if (isSelectorDispatch(BB, CatchHandler, Selector, NextBB)) {
463 // Split the edge if there is a phi node. Returning from EH to a phi node
464 // is just as impossible as having a phi after an indirectbr.
465 if (isa<PHINode>(CatchHandler->begin())) {
466 DEBUG(dbgs() << "splitting EH return edge from " << BB->getName()
467 << " to " << CatchHandler->getName() << '\n');
468 BBI = CatchHandler = SplitCriticalEdge(
469 BB, std::find(succ_begin(BB), succ_end(BB), CatchHandler));
470 }
471 EHReturnBlocks.insert(CatchHandler);
472 }
473 }
474}
475
476/// Ensure that all values live into and out of exception handlers are stored
477/// in memory.
478/// FIXME: This falls down when values are defined in one handler and live into
479/// another handler. For example, a cleanup defines a value used only by a
480/// catch handler.
481void WinEHPrepare::demoteValuesLiveAcrossHandlers(
482 Function &F, SmallVectorImpl<LandingPadInst *> &LPads) {
483 DEBUG(dbgs() << "Demoting values live across exception handlers in function "
484 << F.getName() << '\n');
485
486 // Build a set of all non-exceptional blocks and exceptional blocks.
487 // - Non-exceptional blocks are blocks reachable from the entry block while
488 // not following invoke unwind edges.
489 // - Exceptional blocks are blocks reachable from landingpads. Analysis does
490 // not follow llvm.eh.endcatch blocks, which mark a transition from
491 // exceptional to normal control.
492 SmallPtrSet<BasicBlock *, 4> NormalBlocks;
493 SmallPtrSet<BasicBlock *, 4> EHBlocks;
494 SetVector<BasicBlock *> EHReturnBlocks;
495 SetVector<BasicBlock *> Worklist;
496
497 if (Personality == EHPersonality::MSVC_CXX)
498 findCXXEHReturnPoints(F, EHReturnBlocks);
499 else
500 findSEHEHReturnPoints(F, EHReturnBlocks);
501
502 DEBUG({
503 dbgs() << "identified the following blocks as EH return points:\n";
504 for (BasicBlock *BB : EHReturnBlocks)
505 dbgs() << " " << BB->getName() << '\n';
506 });
507
508 // Join points should not have phis at this point, unless they are a
509 // landingpad, in which case we will demote their phis later.
510#ifndef NDEBUG
511 for (BasicBlock *BB : EHReturnBlocks)
512 assert((BB->isLandingPad() || !isa<PHINode>(BB->begin())) &&
513 "non-lpad EH return block has phi");
514#endif
515
516 // Normal blocks are the blocks reachable from the entry block and all EH
517 // return points.
518 Worklist = EHReturnBlocks;
519 Worklist.insert(&F.getEntryBlock());
520 findReachableBlocks(NormalBlocks, Worklist, nullptr);
521 DEBUG({
522 dbgs() << "marked the following blocks as normal:\n";
523 for (BasicBlock *BB : NormalBlocks)
524 dbgs() << " " << BB->getName() << '\n';
525 });
526
527 // Exceptional blocks are the blocks reachable from landingpads that don't
528 // cross EH return points.
529 Worklist.clear();
530 for (auto *LPI : LPads)
531 Worklist.insert(LPI->getParent());
532 findReachableBlocks(EHBlocks, Worklist, &EHReturnBlocks);
533 DEBUG({
534 dbgs() << "marked the following blocks as exceptional:\n";
535 for (BasicBlock *BB : EHBlocks)
536 dbgs() << " " << BB->getName() << '\n';
537 });
538
539 SetVector<Argument *> ArgsToDemote;
540 SetVector<Instruction *> InstrsToDemote;
541 for (BasicBlock &BB : F) {
542 bool IsNormalBB = NormalBlocks.count(&BB);
543 bool IsEHBB = EHBlocks.count(&BB);
544 if (!IsNormalBB && !IsEHBB)
545 continue; // Blocks that are neither normal nor EH are unreachable.
546 for (Instruction &I : BB) {
547 for (Value *Op : I.operands()) {
548 // Don't demote static allocas, constants, and labels.
549 if (isa<Constant>(Op) || isa<BasicBlock>(Op) || isa<InlineAsm>(Op))
550 continue;
551 auto *AI = dyn_cast<AllocaInst>(Op);
552 if (AI && AI->isStaticAlloca())
553 continue;
554
555 if (auto *Arg = dyn_cast<Argument>(Op)) {
556 if (IsEHBB) {
557 DEBUG(dbgs() << "Demoting argument " << *Arg
558 << " used by EH instr: " << I << "\n");
559 ArgsToDemote.insert(Arg);
560 }
561 continue;
562 }
563
564 auto *OpI = cast<Instruction>(Op);
565 BasicBlock *OpBB = OpI->getParent();
566 // If a value is produced and consumed in the same BB, we don't need to
567 // demote it.
568 if (OpBB == &BB)
569 continue;
570 bool IsOpNormalBB = NormalBlocks.count(OpBB);
571 bool IsOpEHBB = EHBlocks.count(OpBB);
572 if (IsNormalBB != IsOpNormalBB || IsEHBB != IsOpEHBB) {
573 DEBUG({
574 dbgs() << "Demoting instruction live in-out from EH:\n";
575 dbgs() << "Instr: " << *OpI << '\n';
576 dbgs() << "User: " << I << '\n';
577 });
578 InstrsToDemote.insert(OpI);
579 }
580 }
581 }
582 }
583
584 // Demote values live into and out of handlers.
585 // FIXME: This demotion is inefficient. We should insert spills at the point
586 // of definition, insert one reload in each handler that uses the value, and
587 // insert reloads in the BB used to rejoin normal control flow.
588 Instruction *AllocaInsertPt = F.getEntryBlock().getFirstInsertionPt();
589 for (Instruction *I : InstrsToDemote)
590 DemoteRegToStack(*I, false, AllocaInsertPt);
591
592 // Demote arguments separately, and only for uses in EH blocks.
593 for (Argument *Arg : ArgsToDemote) {
594 auto *Slot = new AllocaInst(Arg->getType(), nullptr,
595 Arg->getName() + ".reg2mem", AllocaInsertPt);
596 SmallVector<User *, 4> Users(Arg->user_begin(), Arg->user_end());
597 for (User *U : Users) {
598 auto *I = dyn_cast<Instruction>(U);
599 if (I && EHBlocks.count(I->getParent())) {
600 auto *Reload = new LoadInst(Slot, Arg->getName() + ".reload", false, I);
601 U->replaceUsesOfWith(Arg, Reload);
602 }
603 }
604 new StoreInst(Arg, Slot, AllocaInsertPt);
605 }
606
607 // Demote landingpad phis, as the landingpad will be removed from the machine
608 // CFG.
609 for (LandingPadInst *LPI : LPads) {
610 BasicBlock *BB = LPI->getParent();
611 while (auto *Phi = dyn_cast<PHINode>(BB->begin()))
612 DemotePHIToStack(Phi, AllocaInsertPt);
613 }
614
615 DEBUG(dbgs() << "Demoted " << InstrsToDemote.size() << " instructions and "
616 << ArgsToDemote.size() << " arguments for WinEHPrepare\n\n");
617}
618
Reid Kleckner0f9e27a2015-03-18 20:26:53 +0000619bool WinEHPrepare::prepareExceptionHandlers(
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000620 Function &F, SmallVectorImpl<LandingPadInst *> &LPads) {
Reid Klecknerfd7df282015-04-22 21:05:21 +0000621 // Don't run on functions that are already prepared.
622 for (LandingPadInst *LPad : LPads) {
623 BasicBlock *LPadBB = LPad->getParent();
624 for (Instruction &Inst : *LPadBB)
625 if (match(&Inst, m_Intrinsic<Intrinsic::eh_actions>()))
626 return false;
627 }
628
629 demoteValuesLiveAcrossHandlers(F, LPads);
630
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000631 // These containers are used to re-map frame variables that are used in
632 // outlined catch and cleanup handlers. They will be populated as the
633 // handlers are outlined.
634 FrameVarInfoMap FrameVarInfo;
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000635
636 bool HandlersOutlined = false;
637
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000638 Module *M = F.getParent();
639 LLVMContext &Context = M->getContext();
640
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000641 // Create a new function to receive the handler contents.
642 PointerType *Int8PtrType = Type::getInt8PtrTy(Context);
643 Type *Int32Type = Type::getInt32Ty(Context);
Reid Kleckner52b07792015-03-12 01:45:37 +0000644 Function *ActionIntrin = Intrinsic::getDeclaration(M, Intrinsic::eh_actions);
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000645
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000646 for (LandingPadInst *LPad : LPads) {
647 // Look for evidence that this landingpad has already been processed.
648 bool LPadHasActionList = false;
649 BasicBlock *LPadBB = LPad->getParent();
Reid Klecknerc759fe92015-03-19 22:31:02 +0000650 for (Instruction &Inst : *LPadBB) {
Reid Klecknerfd7df282015-04-22 21:05:21 +0000651 if (match(&Inst, m_Intrinsic<Intrinsic::eh_actions>())) {
652 LPadHasActionList = true;
653 break;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000654 }
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000655 }
656
657 // If we've already outlined the handlers for this landingpad,
658 // there's nothing more to do here.
659 if (LPadHasActionList)
660 continue;
661
Andrew Kaylor64622aa2015-04-01 17:21:25 +0000662 // If either of the values in the aggregate returned by the landing pad is
663 // extracted and stored to memory, promote the stored value to a register.
664 promoteLandingPadValues(LPad);
665
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000666 LandingPadActions Actions;
667 mapLandingPadBlocks(LPad, Actions);
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000668
Reid Kleckner9405ef02015-04-10 23:12:29 +0000669 HandlersOutlined |= !Actions.actions().empty();
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000670 for (ActionHandler *Action : Actions) {
Reid Kleckner0f9e27a2015-03-18 20:26:53 +0000671 if (Action->hasBeenProcessed())
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000672 continue;
673 BasicBlock *StartBB = Action->getStartBlock();
Reid Kleckner0f9e27a2015-03-18 20:26:53 +0000674
675 // SEH doesn't do any outlining for catches. Instead, pass the handler
676 // basic block addr to llvm.eh.actions and list the block as a return
677 // target.
678 if (isAsynchronousEHPersonality(Personality)) {
679 if (auto *CatchAction = dyn_cast<CatchHandler>(Action)) {
680 processSEHCatchHandler(CatchAction, StartBB);
Reid Kleckner0f9e27a2015-03-18 20:26:53 +0000681 continue;
682 }
683 }
684
Reid Kleckner9405ef02015-04-10 23:12:29 +0000685 outlineHandler(Action, &F, LPad, StartBB, FrameVarInfo);
686 }
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000687
688 // Replace the landing pad with a new llvm.eh.action based landing pad.
689 BasicBlock *NewLPadBB = BasicBlock::Create(Context, "lpad", &F, LPadBB);
690 assert(!isa<PHINode>(LPadBB->begin()));
David Majnemercde33032015-03-30 22:58:10 +0000691 auto *NewLPad = cast<LandingPadInst>(LPad->clone());
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000692 NewLPadBB->getInstList().push_back(NewLPad);
693 while (!pred_empty(LPadBB)) {
694 auto *pred = *pred_begin(LPadBB);
695 InvokeInst *Invoke = cast<InvokeInst>(pred->getTerminator());
696 Invoke->setUnwindDest(NewLPadBB);
697 }
698
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000699 // Replace the mapping of any nested landing pad that previously mapped
700 // to this landing pad with a referenced to the cloned version.
701 for (auto &LPadPair : NestedLPtoOriginalLP) {
702 const LandingPadInst *OriginalLPad = LPadPair.second;
703 if (OriginalLPad == LPad) {
704 LPadPair.second = NewLPad;
705 }
706 }
707
Reid Klecknere3af86e2015-04-23 21:22:30 +0000708 // Replace all extracted values with undef and ultimately replace the
709 // landingpad with undef.
710 // FIXME: This doesn't handle SEH GetExceptionCode(). For now, we just give
711 // out undef until we figure out the codegen support.
712 SmallVector<Instruction *, 4> Extracts;
713 for (User *U : LPad->users()) {
714 auto *E = dyn_cast<ExtractValueInst>(U);
715 if (!E)
716 continue;
717 assert(E->getNumIndices() == 1 &&
718 "Unexpected operation: extracting both landing pad values");
Reid Klecknere3af86e2015-04-23 21:22:30 +0000719 Extracts.push_back(E);
720 }
721 for (Instruction *E : Extracts) {
722 E->replaceAllUsesWith(UndefValue::get(E->getType()));
723 E->eraseFromParent();
724 }
725 LPad->replaceAllUsesWith(UndefValue::get(LPad->getType()));
Reid Kleckner0f9e27a2015-03-18 20:26:53 +0000726
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000727 // Add a call to describe the actions for this landing pad.
728 std::vector<Value *> ActionArgs;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000729 for (ActionHandler *Action : Actions) {
Reid Klecknerc759fe92015-03-19 22:31:02 +0000730 // Action codes from docs are: 0 cleanup, 1 catch.
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000731 if (auto *CatchAction = dyn_cast<CatchHandler>(Action)) {
Reid Klecknerc759fe92015-03-19 22:31:02 +0000732 ActionArgs.push_back(ConstantInt::get(Int32Type, 1));
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000733 ActionArgs.push_back(CatchAction->getSelector());
Reid Kleckner3567d272015-04-02 21:13:31 +0000734 // Find the frame escape index of the exception object alloca in the
735 // parent.
736 int FrameEscapeIdx = -1;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000737 Value *EHObj = const_cast<Value *>(CatchAction->getExceptionVar());
Reid Kleckner3567d272015-04-02 21:13:31 +0000738 if (EHObj && !isa<ConstantPointerNull>(EHObj)) {
739 auto I = FrameVarInfo.find(EHObj);
740 assert(I != FrameVarInfo.end() &&
741 "failed to map llvm.eh.begincatch var");
742 FrameEscapeIdx = std::distance(FrameVarInfo.begin(), I);
743 }
744 ActionArgs.push_back(ConstantInt::get(Int32Type, FrameEscapeIdx));
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000745 } else {
Reid Klecknerc759fe92015-03-19 22:31:02 +0000746 ActionArgs.push_back(ConstantInt::get(Int32Type, 0));
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000747 }
Reid Klecknerc759fe92015-03-19 22:31:02 +0000748 ActionArgs.push_back(Action->getHandlerBlockOrFunc());
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000749 }
750 CallInst *Recover =
751 CallInst::Create(ActionIntrin, ActionArgs, "recover", NewLPadBB);
752
753 // Add an indirect branch listing possible successors of the catch handlers.
Reid Klecknerfd7df282015-04-22 21:05:21 +0000754 SetVector<BasicBlock *> ReturnTargets;
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000755 for (ActionHandler *Action : Actions) {
756 if (auto *CatchAction = dyn_cast<CatchHandler>(Action)) {
Reid Klecknerfd7df282015-04-22 21:05:21 +0000757 const auto &CatchTargets = CatchAction->getReturnTargets();
758 ReturnTargets.insert(CatchTargets.begin(), CatchTargets.end());
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000759 }
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000760 }
Reid Klecknerfd7df282015-04-22 21:05:21 +0000761 IndirectBrInst *Branch =
762 IndirectBrInst::Create(Recover, ReturnTargets.size(), NewLPadBB);
763 for (BasicBlock *Target : ReturnTargets)
764 Branch->addDestination(Target);
Andrew Kaylorf0f5e462015-03-03 20:00:16 +0000765 } // End for each landingpad
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000766
767 // If nothing got outlined, there is no more processing to be done.
768 if (!HandlersOutlined)
769 return false;
770
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000771 // Replace any nested landing pad stubs with the correct action handler.
772 // This must be done before we remove unreachable blocks because it
773 // cleans up references to outlined blocks that will be deleted.
774 for (auto &LPadPair : NestedLPtoOriginalLP)
775 completeNestedLandingPad(&F, LPadPair.first, LPadPair.second, FrameVarInfo);
Andrew Kaylor67d3c032015-04-08 20:57:22 +0000776 NestedLPtoOriginalLP.clear();
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000777
David Majnemercde33032015-03-30 22:58:10 +0000778 F.addFnAttr("wineh-parent", F.getName());
779
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000780 // Delete any blocks that were only used by handlers that were outlined above.
781 removeUnreachableBlocks(F);
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000782
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000783 BasicBlock *Entry = &F.getEntryBlock();
Reid Klecknercfb9ce52015-03-05 18:26:34 +0000784 IRBuilder<> Builder(F.getParent()->getContext());
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000785 Builder.SetInsertPoint(Entry->getFirstInsertionPt());
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000786
Reid Klecknercfb9ce52015-03-05 18:26:34 +0000787 Function *FrameEscapeFn =
788 Intrinsic::getDeclaration(M, Intrinsic::frameescape);
789 Function *RecoverFrameFn =
790 Intrinsic::getDeclaration(M, Intrinsic::framerecover);
Reid Klecknerf14787d2015-04-22 00:07:52 +0000791 SmallVector<Value *, 8> AllocasToEscape;
792
793 // Scan the entry block for an existing call to llvm.frameescape. We need to
794 // keep escaping those objects.
795 for (Instruction &I : F.front()) {
796 auto *II = dyn_cast<IntrinsicInst>(&I);
797 if (II && II->getIntrinsicID() == Intrinsic::frameescape) {
798 auto Args = II->arg_operands();
799 AllocasToEscape.append(Args.begin(), Args.end());
800 II->eraseFromParent();
801 break;
802 }
803 }
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000804
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000805 // Finally, replace all of the temporary allocas for frame variables used in
Reid Klecknercfb9ce52015-03-05 18:26:34 +0000806 // the outlined handlers with calls to llvm.framerecover.
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000807 for (auto &VarInfoEntry : FrameVarInfo) {
Andrew Kaylor72029c62015-03-03 00:41:03 +0000808 Value *ParentVal = VarInfoEntry.first;
Reid Klecknercfb9ce52015-03-05 18:26:34 +0000809 TinyPtrVector<AllocaInst *> &Allocas = VarInfoEntry.second;
Reid Klecknerfd7df282015-04-22 21:05:21 +0000810 AllocaInst *ParentAlloca = cast<AllocaInst>(ParentVal);
Andrew Kaylor72029c62015-03-03 00:41:03 +0000811
Reid Klecknerb4019412015-04-06 18:50:38 +0000812 // FIXME: We should try to sink unescaped allocas from the parent frame into
813 // the child frame. If the alloca is escaped, we have to use the lifetime
814 // markers to ensure that the alloca is only live within the child frame.
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000815
Reid Klecknercfb9ce52015-03-05 18:26:34 +0000816 // Add this alloca to the list of things to escape.
817 AllocasToEscape.push_back(ParentAlloca);
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000818
Reid Klecknercfb9ce52015-03-05 18:26:34 +0000819 // Next replace all outlined allocas that are mapped to it.
820 for (AllocaInst *TempAlloca : Allocas) {
Reid Kleckner3567d272015-04-02 21:13:31 +0000821 if (TempAlloca == getCatchObjectSentinel())
822 continue; // Skip catch parameter sentinels.
Reid Klecknercfb9ce52015-03-05 18:26:34 +0000823 Function *HandlerFn = TempAlloca->getParent()->getParent();
824 // FIXME: Sink this GEP into the blocks where it is used.
825 Builder.SetInsertPoint(TempAlloca);
826 Builder.SetCurrentDebugLocation(TempAlloca->getDebugLoc());
827 Value *RecoverArgs[] = {
828 Builder.CreateBitCast(&F, Int8PtrType, ""),
829 &(HandlerFn->getArgumentList().back()),
830 llvm::ConstantInt::get(Int32Type, AllocasToEscape.size() - 1)};
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000831 Value *RecoveredAlloca = Builder.CreateCall(RecoverFrameFn, RecoverArgs);
Reid Klecknercfb9ce52015-03-05 18:26:34 +0000832 // Add a pointer bitcast if the alloca wasn't an i8.
833 if (RecoveredAlloca->getType() != TempAlloca->getType()) {
834 RecoveredAlloca->setName(Twine(TempAlloca->getName()) + ".i8");
835 RecoveredAlloca =
836 Builder.CreateBitCast(RecoveredAlloca, TempAlloca->getType());
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000837 }
Reid Klecknercfb9ce52015-03-05 18:26:34 +0000838 TempAlloca->replaceAllUsesWith(RecoveredAlloca);
839 TempAlloca->removeFromParent();
840 RecoveredAlloca->takeName(TempAlloca);
841 delete TempAlloca;
842 }
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000843 } // End for each FrameVarInfo entry.
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000844
Reid Klecknercfb9ce52015-03-05 18:26:34 +0000845 // Insert 'call void (...)* @llvm.frameescape(...)' at the end of the entry
846 // block.
847 Builder.SetInsertPoint(&F.getEntryBlock().back());
848 Builder.CreateCall(FrameEscapeFn, AllocasToEscape);
849
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000850 // Clean up the handler action maps we created for this function
851 DeleteContainerSeconds(CatchHandlerMap);
852 CatchHandlerMap.clear();
853 DeleteContainerSeconds(CleanupHandlerMap);
854 CleanupHandlerMap.clear();
855
Andrew Kaylor1476e6d2015-02-24 20:49:35 +0000856 return HandlersOutlined;
857}
858
Andrew Kaylor64622aa2015-04-01 17:21:25 +0000859void WinEHPrepare::promoteLandingPadValues(LandingPadInst *LPad) {
860 // If the return values of the landing pad instruction are extracted and
861 // stored to memory, we want to promote the store locations to reg values.
862 SmallVector<AllocaInst *, 2> EHAllocas;
863
864 // The landingpad instruction returns an aggregate value. Typically, its
865 // value will be passed to a pair of extract value instructions and the
866 // results of those extracts are often passed to store instructions.
867 // In unoptimized code the stored value will often be loaded and then stored
868 // again.
869 for (auto *U : LPad->users()) {
870 ExtractValueInst *Extract = dyn_cast<ExtractValueInst>(U);
871 if (!Extract)
872 continue;
873
874 for (auto *EU : Extract->users()) {
875 if (auto *Store = dyn_cast<StoreInst>(EU)) {
876 auto *AV = cast<AllocaInst>(Store->getPointerOperand());
877 EHAllocas.push_back(AV);
878 }
879 }
880 }
881
882 // We can't do this without a dominator tree.
883 assert(DT);
884
885 if (!EHAllocas.empty()) {
886 PromoteMemToReg(EHAllocas, *DT);
887 EHAllocas.clear();
888 }
Reid Kleckner86762142015-04-16 00:02:04 +0000889
890 // After promotion, some extracts may be trivially dead. Remove them.
891 SmallVector<Value *, 4> Users(LPad->user_begin(), LPad->user_end());
892 for (auto *U : Users)
893 RecursivelyDeleteTriviallyDeadInstructions(U);
Andrew Kaylor64622aa2015-04-01 17:21:25 +0000894}
895
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000896void WinEHPrepare::completeNestedLandingPad(Function *ParentFn,
897 LandingPadInst *OutlinedLPad,
898 const LandingPadInst *OriginalLPad,
899 FrameVarInfoMap &FrameVarInfo) {
900 // Get the nested block and erase the unreachable instruction that was
901 // temporarily inserted as its terminator.
902 LLVMContext &Context = ParentFn->getContext();
903 BasicBlock *OutlinedBB = OutlinedLPad->getParent();
904 assert(isa<UnreachableInst>(OutlinedBB->getTerminator()));
905 OutlinedBB->getTerminator()->eraseFromParent();
906 // That should leave OutlinedLPad as the last instruction in its block.
907 assert(&OutlinedBB->back() == OutlinedLPad);
908
909 // The original landing pad will have already had its action intrinsic
910 // built by the outlining loop. We need to clone that into the outlined
911 // location. It may also be necessary to add references to the exception
912 // variables to the outlined handler in which this landing pad is nested
913 // and remap return instructions in the nested handlers that should return
914 // to an address in the outlined handler.
915 Function *OutlinedHandlerFn = OutlinedBB->getParent();
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000916 BasicBlock::const_iterator II = OriginalLPad;
917 ++II;
918 // The instruction after the landing pad should now be a call to eh.actions.
919 const Instruction *Recover = II;
920 assert(match(Recover, m_Intrinsic<Intrinsic::eh_actions>()));
921 IntrinsicInst *EHActions = cast<IntrinsicInst>(Recover->clone());
922
923 // Remap the exception variables into the outlined function.
924 WinEHFrameVariableMaterializer Materializer(OutlinedHandlerFn, FrameVarInfo);
925 SmallVector<BlockAddress *, 4> ActionTargets;
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000926 SmallVector<ActionHandler *, 4> ActionList;
927 parseEHActions(EHActions, ActionList);
928 for (auto *Action : ActionList) {
929 auto *Catch = dyn_cast<CatchHandler>(Action);
930 if (!Catch)
931 continue;
932 // The dyn_cast to function here selects C++ catch handlers and skips
933 // SEH catch handlers.
934 auto *Handler = dyn_cast<Function>(Catch->getHandlerBlockOrFunc());
935 if (!Handler)
936 continue;
937 // Visit all the return instructions, looking for places that return
938 // to a location within OutlinedHandlerFn.
939 for (BasicBlock &NestedHandlerBB : *Handler) {
940 auto *Ret = dyn_cast<ReturnInst>(NestedHandlerBB.getTerminator());
941 if (!Ret)
942 continue;
943
944 // Handler functions must always return a block address.
945 BlockAddress *BA = cast<BlockAddress>(Ret->getReturnValue());
946 // The original target will have been in the main parent function,
947 // but if it is the address of a block that has been outlined, it
948 // should be a block that was outlined into OutlinedHandlerFn.
949 assert(BA->getFunction() == ParentFn);
950
951 // Ignore targets that aren't part of OutlinedHandlerFn.
952 if (!LPadTargetBlocks.count(BA->getBasicBlock()))
953 continue;
954
955 // If the return value is the address ofF a block that we
956 // previously outlined into the parent handler function, replace
957 // the return instruction and add the mapped target to the list
958 // of possible return addresses.
959 BasicBlock *MappedBB = LPadTargetBlocks[BA->getBasicBlock()];
960 assert(MappedBB->getParent() == OutlinedHandlerFn);
961 BlockAddress *NewBA = BlockAddress::get(OutlinedHandlerFn, MappedBB);
962 Ret->eraseFromParent();
963 ReturnInst::Create(Context, NewBA, &NestedHandlerBB);
964 ActionTargets.push_back(NewBA);
965 }
966 }
Andrew Kaylor7a0cec32015-04-03 21:44:17 +0000967 DeleteContainerPointers(ActionList);
968 ActionList.clear();
Andrew Kayloraa92ab02015-04-03 19:37:50 +0000969 OutlinedBB->getInstList().push_back(EHActions);
970
971 // Insert an indirect branch into the outlined landing pad BB.
972 IndirectBrInst *IBr = IndirectBrInst::Create(EHActions, 0, OutlinedBB);
973 // Add the previously collected action targets.
974 for (auto *Target : ActionTargets)
975 IBr->addDestination(Target->getBasicBlock());
976}
977
Andrew Kaylor6b67d422015-03-11 23:22:06 +0000978// This function examines a block to determine whether the block ends with a
979// conditional branch to a catch handler based on a selector comparison.
980// This function is used both by the WinEHPrepare::findSelectorComparison() and
981// WinEHCleanupDirector::handleTypeIdFor().
982static bool isSelectorDispatch(BasicBlock *BB, BasicBlock *&CatchHandler,
983 Constant *&Selector, BasicBlock *&NextBB) {
984 ICmpInst::Predicate Pred;
985 BasicBlock *TBB, *FBB;
986 Value *LHS, *RHS;
987
988 if (!match(BB->getTerminator(),
989 m_Br(m_ICmp(Pred, m_Value(LHS), m_Value(RHS)), TBB, FBB)))
990 return false;
991
992 if (!match(LHS,
993 m_Intrinsic<Intrinsic::eh_typeid_for>(m_Constant(Selector))) &&
994 !match(RHS, m_Intrinsic<Intrinsic::eh_typeid_for>(m_Constant(Selector))))
995 return false;
996
997 if (Pred == CmpInst::ICMP_EQ) {
998 CatchHandler = TBB;
999 NextBB = FBB;
1000 return true;
1001 }
1002
1003 if (Pred == CmpInst::ICMP_NE) {
1004 CatchHandler = FBB;
1005 NextBB = TBB;
1006 return true;
1007 }
1008
1009 return false;
1010}
1011
Andrew Kaylor41758512015-04-20 22:04:09 +00001012static bool isCatchBlock(BasicBlock *BB) {
1013 for (BasicBlock::iterator II = BB->getFirstNonPHIOrDbg(), IE = BB->end();
1014 II != IE; ++II) {
1015 if (match(cast<Value>(II), m_Intrinsic<Intrinsic::eh_begincatch>()))
1016 return true;
1017 }
1018 return false;
1019}
1020
Andrew Kaylorbb111322015-04-07 21:30:23 +00001021static BasicBlock *createStubLandingPad(Function *Handler,
1022 Value *PersonalityFn) {
1023 // FIXME: Finish this!
1024 LLVMContext &Context = Handler->getContext();
1025 BasicBlock *StubBB = BasicBlock::Create(Context, "stub");
1026 Handler->getBasicBlockList().push_back(StubBB);
1027 IRBuilder<> Builder(StubBB);
1028 LandingPadInst *LPad = Builder.CreateLandingPad(
1029 llvm::StructType::get(Type::getInt8PtrTy(Context),
1030 Type::getInt32Ty(Context), nullptr),
1031 PersonalityFn, 0);
Andrew Kaylor43e1d762015-04-23 00:20:44 +00001032 // Insert a call to llvm.eh.actions so that we don't try to outline this lpad.
1033 Function *ActionIntrin = Intrinsic::getDeclaration(Handler->getParent(),
1034 Intrinsic::eh_actions);
1035 Builder.CreateCall(ActionIntrin, "recover");
Andrew Kaylorbb111322015-04-07 21:30:23 +00001036 LPad->setCleanup(true);
1037 Builder.CreateUnreachable();
1038 return StubBB;
1039}
1040
1041// Cycles through the blocks in an outlined handler function looking for an
1042// invoke instruction and inserts an invoke of llvm.donothing with an empty
1043// landing pad if none is found. The code that generates the .xdata tables for
1044// the handler needs at least one landing pad to identify the parent function's
1045// personality.
1046void WinEHPrepare::addStubInvokeToHandlerIfNeeded(Function *Handler,
1047 Value *PersonalityFn) {
1048 ReturnInst *Ret = nullptr;
Andrew Kaylor5f715522015-04-23 18:37:39 +00001049 UnreachableInst *Unreached = nullptr;
Andrew Kaylorbb111322015-04-07 21:30:23 +00001050 for (BasicBlock &BB : *Handler) {
1051 TerminatorInst *Terminator = BB.getTerminator();
1052 // If we find an invoke, there is nothing to be done.
1053 auto *II = dyn_cast<InvokeInst>(Terminator);
1054 if (II)
1055 return;
1056 // If we've already recorded a return instruction, keep looking for invokes.
Andrew Kaylor5f715522015-04-23 18:37:39 +00001057 if (!Ret)
1058 Ret = dyn_cast<ReturnInst>(Terminator);
1059 // If we haven't recorded an unreachable instruction, try this terminator.
1060 if (!Unreached)
1061 Unreached = dyn_cast<UnreachableInst>(Terminator);
Andrew Kaylorbb111322015-04-07 21:30:23 +00001062 }
1063
1064 // If we got this far, the handler contains no invokes. We should have seen
Andrew Kaylor5f715522015-04-23 18:37:39 +00001065 // at least one return or unreachable instruction. We'll insert an invoke of
1066 // llvm.donothing ahead of that instruction.
1067 assert(Ret || Unreached);
1068 TerminatorInst *Term;
1069 if (Ret)
1070 Term = Ret;
1071 else
1072 Term = Unreached;
1073 BasicBlock *OldRetBB = Term->getParent();
1074 BasicBlock *NewRetBB = SplitBlock(OldRetBB, Term);
Andrew Kaylorbb111322015-04-07 21:30:23 +00001075 // SplitBlock adds an unconditional branch instruction at the end of the
1076 // parent block. We want to replace that with an invoke call, so we can
1077 // erase it now.
1078 OldRetBB->getTerminator()->eraseFromParent();
1079 BasicBlock *StubLandingPad = createStubLandingPad(Handler, PersonalityFn);
1080 Function *F =
1081 Intrinsic::getDeclaration(Handler->getParent(), Intrinsic::donothing);
1082 InvokeInst::Create(F, NewRetBB, StubLandingPad, None, "", OldRetBB);
1083}
1084
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001085bool WinEHPrepare::outlineHandler(ActionHandler *Action, Function *SrcFn,
1086 LandingPadInst *LPad, BasicBlock *StartBB,
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001087 FrameVarInfoMap &VarInfo) {
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001088 Module *M = SrcFn->getParent();
1089 LLVMContext &Context = M->getContext();
1090
1091 // Create a new function to receive the handler contents.
1092 Type *Int8PtrType = Type::getInt8PtrTy(Context);
1093 std::vector<Type *> ArgTys;
1094 ArgTys.push_back(Int8PtrType);
1095 ArgTys.push_back(Int8PtrType);
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001096 Function *Handler;
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001097 if (Action->getType() == Catch) {
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001098 FunctionType *FnType = FunctionType::get(Int8PtrType, ArgTys, false);
1099 Handler = Function::Create(FnType, GlobalVariable::InternalLinkage,
1100 SrcFn->getName() + ".catch", M);
1101 } else {
1102 FunctionType *FnType =
1103 FunctionType::get(Type::getVoidTy(Context), ArgTys, false);
1104 Handler = Function::Create(FnType, GlobalVariable::InternalLinkage,
1105 SrcFn->getName() + ".cleanup", M);
1106 }
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001107
David Majnemercde33032015-03-30 22:58:10 +00001108 Handler->addFnAttr("wineh-parent", SrcFn->getName());
1109
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001110 // Generate a standard prolog to setup the frame recovery structure.
1111 IRBuilder<> Builder(Context);
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001112 BasicBlock *Entry = BasicBlock::Create(Context, "entry");
1113 Handler->getBasicBlockList().push_front(Entry);
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001114 Builder.SetInsertPoint(Entry);
1115 Builder.SetCurrentDebugLocation(LPad->getDebugLoc());
1116
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001117 std::unique_ptr<WinEHCloningDirectorBase> Director;
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001118
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001119 ValueToValueMapTy VMap;
1120
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001121 LandingPadMap &LPadMap = LPadMaps[LPad];
1122 if (!LPadMap.isInitialized())
1123 LPadMap.mapLandingPad(LPad);
Reid Kleckner0f9e27a2015-03-18 20:26:53 +00001124 if (auto *CatchAction = dyn_cast<CatchHandler>(Action)) {
1125 Constant *Sel = CatchAction->getSelector();
Andrew Kayloraa92ab02015-04-03 19:37:50 +00001126 Director.reset(new WinEHCatchDirector(Handler, Sel, VarInfo, LPadMap,
1127 NestedLPtoOriginalLP));
Andrew Kaylor64622aa2015-04-01 17:21:25 +00001128 LPadMap.remapEHValues(VMap, UndefValue::get(Int8PtrType),
1129 ConstantInt::get(Type::getInt32Ty(Context), 1));
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001130 } else {
1131 Director.reset(new WinEHCleanupDirector(Handler, VarInfo, LPadMap));
Andrew Kaylor64622aa2015-04-01 17:21:25 +00001132 LPadMap.remapEHValues(VMap, UndefValue::get(Int8PtrType),
1133 UndefValue::get(Type::getInt32Ty(Context)));
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001134 }
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001135
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001136 SmallVector<ReturnInst *, 8> Returns;
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001137 ClonedCodeInfo OutlinedFunctionInfo;
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001138
Andrew Kaylor3170e562015-03-20 21:42:54 +00001139 // If the start block contains PHI nodes, we need to map them.
1140 BasicBlock::iterator II = StartBB->begin();
1141 while (auto *PN = dyn_cast<PHINode>(II)) {
1142 bool Mapped = false;
1143 // Look for PHI values that we have already mapped (such as the selector).
1144 for (Value *Val : PN->incoming_values()) {
1145 if (VMap.count(Val)) {
1146 VMap[PN] = VMap[Val];
1147 Mapped = true;
1148 }
1149 }
1150 // If we didn't find a match for this value, map it as an undef.
1151 if (!Mapped) {
1152 VMap[PN] = UndefValue::get(PN->getType());
1153 }
1154 ++II;
1155 }
1156
Andrew Kaylor00e5d9e2015-04-20 22:53:42 +00001157 // The landing pad value may be used by PHI nodes. It will ultimately be
1158 // eliminated, but we need it in the map for intermediate handling.
1159 VMap[LPad] = UndefValue::get(LPad->getType());
1160
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001161 // Skip over PHIs and, if applicable, landingpad instructions.
Andrew Kaylor3170e562015-03-20 21:42:54 +00001162 II = StartBB->getFirstInsertionPt();
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001163
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001164 CloneAndPruneIntoFromInst(Handler, SrcFn, II, VMap,
Mehdi Aminia28d91d2015-03-10 02:37:25 +00001165 /*ModuleLevelChanges=*/false, Returns, "",
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001166 &OutlinedFunctionInfo, Director.get());
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001167
1168 // Move all the instructions in the first cloned block into our entry block.
1169 BasicBlock *FirstClonedBB = std::next(Function::iterator(Entry));
1170 Entry->getInstList().splice(Entry->end(), FirstClonedBB->getInstList());
1171 FirstClonedBB->eraseFromParent();
1172
Andrew Kaylorbb111322015-04-07 21:30:23 +00001173 // Make sure we can identify the handler's personality later.
1174 addStubInvokeToHandlerIfNeeded(Handler, LPad->getPersonalityFn());
1175
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001176 if (auto *CatchAction = dyn_cast<CatchHandler>(Action)) {
1177 WinEHCatchDirector *CatchDirector =
1178 reinterpret_cast<WinEHCatchDirector *>(Director.get());
1179 CatchAction->setExceptionVar(CatchDirector->getExceptionVar());
1180 CatchAction->setReturnTargets(CatchDirector->getReturnTargets());
Andrew Kayloraa92ab02015-04-03 19:37:50 +00001181
1182 // Look for blocks that are not part of the landing pad that we just
1183 // outlined but terminate with a call to llvm.eh.endcatch and a
1184 // branch to a block that is in the handler we just outlined.
1185 // These blocks will be part of a nested landing pad that intends to
1186 // return to an address in this handler. This case is best handled
1187 // after both landing pads have been outlined, so for now we'll just
1188 // save the association of the blocks in LPadTargetBlocks. The
1189 // return instructions which are created from these branches will be
1190 // replaced after all landing pads have been outlined.
Richard Trieu6b1aa5f2015-04-15 01:21:15 +00001191 for (const auto MapEntry : VMap) {
Andrew Kayloraa92ab02015-04-03 19:37:50 +00001192 // VMap maps all values and blocks that were just cloned, but dead
1193 // blocks which were pruned will map to nullptr.
1194 if (!isa<BasicBlock>(MapEntry.first) || MapEntry.second == nullptr)
1195 continue;
1196 const BasicBlock *MappedBB = cast<BasicBlock>(MapEntry.first);
1197 for (auto *Pred : predecessors(const_cast<BasicBlock *>(MappedBB))) {
1198 auto *Branch = dyn_cast<BranchInst>(Pred->getTerminator());
1199 if (!Branch || !Branch->isUnconditional() || Pred->size() <= 1)
1200 continue;
1201 BasicBlock::iterator II = const_cast<BranchInst *>(Branch);
1202 --II;
1203 if (match(cast<Value>(II), m_Intrinsic<Intrinsic::eh_endcatch>())) {
1204 // This would indicate that a nested landing pad wants to return
1205 // to a block that is outlined into two different handlers.
1206 assert(!LPadTargetBlocks.count(MappedBB));
1207 LPadTargetBlocks[MappedBB] = cast<BasicBlock>(MapEntry.second);
1208 }
1209 }
1210 }
1211 } // End if (CatchAction)
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001212
Reid Kleckner0f9e27a2015-03-18 20:26:53 +00001213 Action->setHandlerBlockOrFunc(Handler);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001214
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001215 return true;
1216}
1217
Reid Kleckner0f9e27a2015-03-18 20:26:53 +00001218/// This BB must end in a selector dispatch. All we need to do is pass the
1219/// handler block to llvm.eh.actions and list it as a possible indirectbr
1220/// target.
1221void WinEHPrepare::processSEHCatchHandler(CatchHandler *CatchAction,
1222 BasicBlock *StartBB) {
1223 BasicBlock *HandlerBB;
1224 BasicBlock *NextBB;
1225 Constant *Selector;
1226 bool Res = isSelectorDispatch(StartBB, HandlerBB, Selector, NextBB);
1227 if (Res) {
1228 // If this was EH dispatch, this must be a conditional branch to the handler
1229 // block.
1230 // FIXME: Handle instructions in the dispatch block. Currently we drop them,
1231 // leading to crashes if some optimization hoists stuff here.
1232 assert(CatchAction->getSelector() && HandlerBB &&
1233 "expected catch EH dispatch");
1234 } else {
1235 // This must be a catch-all. Split the block after the landingpad.
1236 assert(CatchAction->getSelector()->isNullValue() && "expected catch-all");
1237 HandlerBB =
1238 StartBB->splitBasicBlock(StartBB->getFirstInsertionPt(), "catch.all");
1239 }
1240 CatchAction->setHandlerBlockOrFunc(BlockAddress::get(HandlerBB));
1241 TinyPtrVector<BasicBlock *> Targets(HandlerBB);
1242 CatchAction->setReturnTargets(Targets);
1243}
1244
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001245void LandingPadMap::mapLandingPad(const LandingPadInst *LPad) {
1246 // Each instance of this class should only ever be used to map a single
1247 // landing pad.
1248 assert(OriginLPad == nullptr || OriginLPad == LPad);
1249
1250 // If the landing pad has already been mapped, there's nothing more to do.
1251 if (OriginLPad == LPad)
1252 return;
1253
1254 OriginLPad = LPad;
1255
1256 // The landingpad instruction returns an aggregate value. Typically, its
1257 // value will be passed to a pair of extract value instructions and the
Andrew Kaylor64622aa2015-04-01 17:21:25 +00001258 // results of those extracts will have been promoted to reg values before
1259 // this routine is called.
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001260 for (auto *U : LPad->users()) {
1261 const ExtractValueInst *Extract = dyn_cast<ExtractValueInst>(U);
1262 if (!Extract)
1263 continue;
1264 assert(Extract->getNumIndices() == 1 &&
1265 "Unexpected operation: extracting both landing pad values");
1266 unsigned int Idx = *(Extract->idx_begin());
1267 assert((Idx == 0 || Idx == 1) &&
1268 "Unexpected operation: extracting an unknown landing pad element");
1269 if (Idx == 0) {
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001270 ExtractedEHPtrs.push_back(Extract);
1271 } else if (Idx == 1) {
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001272 ExtractedSelectors.push_back(Extract);
1273 }
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001274 }
1275}
1276
Andrew Kaylorf7118ae2015-03-27 22:31:12 +00001277bool LandingPadMap::isOriginLandingPadBlock(const BasicBlock *BB) const {
1278 return BB->getLandingPadInst() == OriginLPad;
1279}
1280
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001281bool LandingPadMap::isLandingPadSpecificInst(const Instruction *Inst) const {
1282 if (Inst == OriginLPad)
1283 return true;
1284 for (auto *Extract : ExtractedEHPtrs) {
1285 if (Inst == Extract)
1286 return true;
1287 }
1288 for (auto *Extract : ExtractedSelectors) {
1289 if (Inst == Extract)
1290 return true;
1291 }
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001292 return false;
1293}
1294
Andrew Kaylor64622aa2015-04-01 17:21:25 +00001295void LandingPadMap::remapEHValues(ValueToValueMapTy &VMap, Value *EHPtrValue,
1296 Value *SelectorValue) const {
1297 // Remap all landing pad extract instructions to the specified values.
1298 for (auto *Extract : ExtractedEHPtrs)
1299 VMap[Extract] = EHPtrValue;
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001300 for (auto *Extract : ExtractedSelectors)
Andrew Kaylor64622aa2015-04-01 17:21:25 +00001301 VMap[Extract] = SelectorValue;
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001302}
1303
Reid Klecknerf14787d2015-04-22 00:07:52 +00001304static bool isFrameAddressCall(const Value *V) {
1305 return match(const_cast<Value *>(V),
1306 m_Intrinsic<Intrinsic::frameaddress>(m_SpecificInt(0)));
1307}
1308
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001309CloningDirector::CloningAction WinEHCloningDirectorBase::handleInstruction(
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001310 ValueToValueMapTy &VMap, const Instruction *Inst, BasicBlock *NewBB) {
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001311 // If this is one of the boilerplate landing pad instructions, skip it.
1312 // The instruction will have already been remapped in VMap.
1313 if (LPadMap.isLandingPadSpecificInst(Inst))
1314 return CloningDirector::SkipInstruction;
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001315
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001316 // Nested landing pads will be cloned as stubs, with just the
1317 // landingpad instruction and an unreachable instruction. When
1318 // all landingpads have been outlined, we'll replace this with the
1319 // llvm.eh.actions call and indirect branch created when the
1320 // landing pad was outlined.
Andrew Kayloraa92ab02015-04-03 19:37:50 +00001321 if (auto *LPad = dyn_cast<LandingPadInst>(Inst)) {
1322 return handleLandingPad(VMap, LPad, NewBB);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001323 }
1324
1325 if (auto *Invoke = dyn_cast<InvokeInst>(Inst))
1326 return handleInvoke(VMap, Invoke, NewBB);
1327
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001328 if (auto *Resume = dyn_cast<ResumeInst>(Inst))
1329 return handleResume(VMap, Resume, NewBB);
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001330
Andrew Kaylorea8df612015-04-17 23:05:43 +00001331 if (auto *Cmp = dyn_cast<CmpInst>(Inst))
1332 return handleCompare(VMap, Cmp, NewBB);
1333
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001334 if (match(Inst, m_Intrinsic<Intrinsic::eh_begincatch>()))
1335 return handleBeginCatch(VMap, Inst, NewBB);
1336 if (match(Inst, m_Intrinsic<Intrinsic::eh_endcatch>()))
1337 return handleEndCatch(VMap, Inst, NewBB);
1338 if (match(Inst, m_Intrinsic<Intrinsic::eh_typeid_for>()))
1339 return handleTypeIdFor(VMap, Inst, NewBB);
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001340
Reid Klecknerf14787d2015-04-22 00:07:52 +00001341 // When outlining llvm.frameaddress(i32 0), remap that to the second argument,
1342 // which is the FP of the parent.
1343 if (isFrameAddressCall(Inst)) {
1344 VMap[Inst] = EstablisherFrame;
1345 return CloningDirector::SkipInstruction;
1346 }
1347
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001348 // Continue with the default cloning behavior.
1349 return CloningDirector::CloneInstruction;
1350}
1351
Andrew Kayloraa92ab02015-04-03 19:37:50 +00001352CloningDirector::CloningAction WinEHCatchDirector::handleLandingPad(
1353 ValueToValueMapTy &VMap, const LandingPadInst *LPad, BasicBlock *NewBB) {
1354 Instruction *NewInst = LPad->clone();
1355 if (LPad->hasName())
1356 NewInst->setName(LPad->getName());
1357 // Save this correlation for later processing.
1358 NestedLPtoOriginalLP[cast<LandingPadInst>(NewInst)] = LPad;
1359 VMap[LPad] = NewInst;
1360 BasicBlock::InstListType &InstList = NewBB->getInstList();
1361 InstList.push_back(NewInst);
1362 InstList.push_back(new UnreachableInst(NewBB->getContext()));
1363 return CloningDirector::StopCloningBB;
1364}
1365
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001366CloningDirector::CloningAction WinEHCatchDirector::handleBeginCatch(
1367 ValueToValueMapTy &VMap, const Instruction *Inst, BasicBlock *NewBB) {
1368 // The argument to the call is some form of the first element of the
1369 // landingpad aggregate value, but that doesn't matter. It isn't used
1370 // here.
Reid Kleckner42366532015-03-03 23:20:30 +00001371 // The second argument is an outparameter where the exception object will be
1372 // stored. Typically the exception object is a scalar, but it can be an
1373 // aggregate when catching by value.
1374 // FIXME: Leave something behind to indicate where the exception object lives
1375 // for this handler. Should it be part of llvm.eh.actions?
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001376 assert(ExceptionObjectVar == nullptr && "Multiple calls to "
1377 "llvm.eh.begincatch found while "
1378 "outlining catch handler.");
1379 ExceptionObjectVar = Inst->getOperand(1)->stripPointerCasts();
Reid Kleckner3567d272015-04-02 21:13:31 +00001380 if (isa<ConstantPointerNull>(ExceptionObjectVar))
1381 return CloningDirector::SkipInstruction;
Reid Kleckneraab30e12015-04-03 18:18:06 +00001382 assert(cast<AllocaInst>(ExceptionObjectVar)->isStaticAlloca() &&
1383 "catch parameter is not static alloca");
Reid Kleckner3567d272015-04-02 21:13:31 +00001384 Materializer.escapeCatchObject(ExceptionObjectVar);
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001385 return CloningDirector::SkipInstruction;
1386}
1387
1388CloningDirector::CloningAction
1389WinEHCatchDirector::handleEndCatch(ValueToValueMapTy &VMap,
1390 const Instruction *Inst, BasicBlock *NewBB) {
1391 auto *IntrinCall = dyn_cast<IntrinsicInst>(Inst);
1392 // It might be interesting to track whether or not we are inside a catch
1393 // function, but that might make the algorithm more brittle than it needs
1394 // to be.
1395
1396 // The end catch call can occur in one of two places: either in a
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001397 // landingpad block that is part of the catch handlers exception mechanism,
Andrew Kaylorf7118ae2015-03-27 22:31:12 +00001398 // or at the end of the catch block. However, a catch-all handler may call
1399 // end catch from the original landing pad. If the call occurs in a nested
1400 // landing pad block, we must skip it and continue so that the landing pad
1401 // gets cloned.
1402 auto *ParentBB = IntrinCall->getParent();
1403 if (ParentBB->isLandingPad() && !LPadMap.isOriginLandingPadBlock(ParentBB))
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001404 return CloningDirector::SkipInstruction;
1405
Andrew Kaylor64622aa2015-04-01 17:21:25 +00001406 // If an end catch occurs anywhere else we want to terminate the handler
1407 // with a return to the code that follows the endcatch call. If the
1408 // next instruction is not an unconditional branch, we need to split the
1409 // block to provide a clear target for the return instruction.
1410 BasicBlock *ContinueBB;
1411 auto Next = std::next(BasicBlock::const_iterator(IntrinCall));
1412 const BranchInst *Branch = dyn_cast<BranchInst>(Next);
1413 if (!Branch || !Branch->isUnconditional()) {
1414 // We're interrupting the cloning process at this location, so the
1415 // const_cast we're doing here will not cause a problem.
1416 ContinueBB = SplitBlock(const_cast<BasicBlock *>(ParentBB),
1417 const_cast<Instruction *>(cast<Instruction>(Next)));
1418 } else {
1419 ContinueBB = Branch->getSuccessor(0);
1420 }
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001421
Andrew Kaylor64622aa2015-04-01 17:21:25 +00001422 ReturnInst::Create(NewBB->getContext(), BlockAddress::get(ContinueBB), NewBB);
1423 ReturnTargets.push_back(ContinueBB);
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001424
1425 // We just added a terminator to the cloned block.
1426 // Tell the caller to stop processing the current basic block so that
1427 // the branch instruction will be skipped.
1428 return CloningDirector::StopCloningBB;
1429}
1430
1431CloningDirector::CloningAction WinEHCatchDirector::handleTypeIdFor(
1432 ValueToValueMapTy &VMap, const Instruction *Inst, BasicBlock *NewBB) {
1433 auto *IntrinCall = dyn_cast<IntrinsicInst>(Inst);
1434 Value *Selector = IntrinCall->getArgOperand(0)->stripPointerCasts();
1435 // This causes a replacement that will collapse the landing pad CFG based
1436 // on the filter function we intend to match.
1437 if (Selector == CurrentSelector)
1438 VMap[Inst] = ConstantInt::get(SelectorIDType, 1);
1439 else
1440 VMap[Inst] = ConstantInt::get(SelectorIDType, 0);
1441 // Tell the caller not to clone this instruction.
1442 return CloningDirector::SkipInstruction;
1443}
1444
1445CloningDirector::CloningAction
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001446WinEHCatchDirector::handleInvoke(ValueToValueMapTy &VMap,
1447 const InvokeInst *Invoke, BasicBlock *NewBB) {
1448 return CloningDirector::CloneInstruction;
1449}
1450
1451CloningDirector::CloningAction
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001452WinEHCatchDirector::handleResume(ValueToValueMapTy &VMap,
1453 const ResumeInst *Resume, BasicBlock *NewBB) {
1454 // Resume instructions shouldn't be reachable from catch handlers.
1455 // We still need to handle it, but it will be pruned.
1456 BasicBlock::InstListType &InstList = NewBB->getInstList();
1457 InstList.push_back(new UnreachableInst(NewBB->getContext()));
1458 return CloningDirector::StopCloningBB;
1459}
1460
Andrew Kaylorea8df612015-04-17 23:05:43 +00001461CloningDirector::CloningAction
1462WinEHCatchDirector::handleCompare(ValueToValueMapTy &VMap,
1463 const CmpInst *Compare, BasicBlock *NewBB) {
1464 const IntrinsicInst *IntrinCall = nullptr;
1465 if (match(Compare->getOperand(0), m_Intrinsic<Intrinsic::eh_typeid_for>())) {
1466 IntrinCall = dyn_cast<IntrinsicInst>(Compare->getOperand(0));
1467 } else if (match(Compare->getOperand(1), m_Intrinsic<Intrinsic::eh_typeid_for>())) {
1468 IntrinCall = dyn_cast<IntrinsicInst>(Compare->getOperand(1));
1469 }
1470 if (IntrinCall) {
1471 Value *Selector = IntrinCall->getArgOperand(0)->stripPointerCasts();
1472 // This causes a replacement that will collapse the landing pad CFG based
1473 // on the filter function we intend to match.
1474 if (Selector == CurrentSelector->stripPointerCasts()) {
1475 VMap[Compare] = ConstantInt::get(SelectorIDType, 1);
1476 }
1477 else {
1478 VMap[Compare] = ConstantInt::get(SelectorIDType, 0);
1479 }
1480 return CloningDirector::SkipInstruction;
1481 }
1482 return CloningDirector::CloneInstruction;
1483}
1484
Andrew Kayloraa92ab02015-04-03 19:37:50 +00001485CloningDirector::CloningAction WinEHCleanupDirector::handleLandingPad(
1486 ValueToValueMapTy &VMap, const LandingPadInst *LPad, BasicBlock *NewBB) {
1487 // The MS runtime will terminate the process if an exception occurs in a
1488 // cleanup handler, so we shouldn't encounter landing pads in the actual
1489 // cleanup code, but they may appear in catch blocks. Depending on where
1490 // we started cloning we may see one, but it will get dropped during dead
1491 // block pruning.
1492 Instruction *NewInst = new UnreachableInst(NewBB->getContext());
1493 VMap[LPad] = NewInst;
1494 BasicBlock::InstListType &InstList = NewBB->getInstList();
1495 InstList.push_back(NewInst);
1496 return CloningDirector::StopCloningBB;
1497}
1498
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001499CloningDirector::CloningAction WinEHCleanupDirector::handleBeginCatch(
1500 ValueToValueMapTy &VMap, const Instruction *Inst, BasicBlock *NewBB) {
Andrew Kaylorea8df612015-04-17 23:05:43 +00001501 // Cleanup code may flow into catch blocks or the catch block may be part
1502 // of a branch that will be optimized away. We'll insert a return
1503 // instruction now, but it may be pruned before the cloning process is
1504 // complete.
1505 ReturnInst::Create(NewBB->getContext(), nullptr, NewBB);
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001506 return CloningDirector::StopCloningBB;
1507}
1508
1509CloningDirector::CloningAction WinEHCleanupDirector::handleEndCatch(
1510 ValueToValueMapTy &VMap, const Instruction *Inst, BasicBlock *NewBB) {
Andrew Kaylorbb111322015-04-07 21:30:23 +00001511 // Cleanup handlers nested within catch handlers may begin with a call to
1512 // eh.endcatch. We can just ignore that instruction.
1513 return CloningDirector::SkipInstruction;
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001514}
1515
1516CloningDirector::CloningAction WinEHCleanupDirector::handleTypeIdFor(
1517 ValueToValueMapTy &VMap, const Instruction *Inst, BasicBlock *NewBB) {
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001518 // If we encounter a selector comparison while cloning a cleanup handler,
1519 // we want to stop cloning immediately. Anything after the dispatch
1520 // will be outlined into a different handler.
1521 BasicBlock *CatchHandler;
1522 Constant *Selector;
1523 BasicBlock *NextBB;
1524 if (isSelectorDispatch(const_cast<BasicBlock *>(Inst->getParent()),
1525 CatchHandler, Selector, NextBB)) {
1526 ReturnInst::Create(NewBB->getContext(), nullptr, NewBB);
1527 return CloningDirector::StopCloningBB;
1528 }
1529 // If eg.typeid.for is called for any other reason, it can be ignored.
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001530 VMap[Inst] = ConstantInt::get(SelectorIDType, 0);
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001531 return CloningDirector::SkipInstruction;
1532}
1533
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001534CloningDirector::CloningAction WinEHCleanupDirector::handleInvoke(
1535 ValueToValueMapTy &VMap, const InvokeInst *Invoke, BasicBlock *NewBB) {
1536 // All invokes in cleanup handlers can be replaced with calls.
1537 SmallVector<Value *, 16> CallArgs(Invoke->op_begin(), Invoke->op_end() - 3);
1538 // Insert a normal call instruction...
1539 CallInst *NewCall =
1540 CallInst::Create(const_cast<Value *>(Invoke->getCalledValue()), CallArgs,
1541 Invoke->getName(), NewBB);
1542 NewCall->setCallingConv(Invoke->getCallingConv());
1543 NewCall->setAttributes(Invoke->getAttributes());
1544 NewCall->setDebugLoc(Invoke->getDebugLoc());
1545 VMap[Invoke] = NewCall;
1546
Reid Kleckner6e48a822015-04-10 16:26:42 +00001547 // Remap the operands.
1548 llvm::RemapInstruction(NewCall, VMap, RF_None, nullptr, &Materializer);
1549
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001550 // Insert an unconditional branch to the normal destination.
1551 BranchInst::Create(Invoke->getNormalDest(), NewBB);
1552
1553 // The unwind destination won't be cloned into the new function, so
1554 // we don't need to clean up its phi nodes.
1555
1556 // We just added a terminator to the cloned block.
1557 // Tell the caller to stop processing the current basic block.
Reid Kleckner6e48a822015-04-10 16:26:42 +00001558 return CloningDirector::CloneSuccessors;
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001559}
1560
Andrew Kaylorf0f5e462015-03-03 20:00:16 +00001561CloningDirector::CloningAction WinEHCleanupDirector::handleResume(
1562 ValueToValueMapTy &VMap, const ResumeInst *Resume, BasicBlock *NewBB) {
1563 ReturnInst::Create(NewBB->getContext(), nullptr, NewBB);
1564
1565 // We just added a terminator to the cloned block.
1566 // Tell the caller to stop processing the current basic block so that
1567 // the branch instruction will be skipped.
1568 return CloningDirector::StopCloningBB;
1569}
1570
Andrew Kaylorea8df612015-04-17 23:05:43 +00001571CloningDirector::CloningAction
1572WinEHCleanupDirector::handleCompare(ValueToValueMapTy &VMap,
1573 const CmpInst *Compare, BasicBlock *NewBB) {
Andrew Kaylorea8df612015-04-17 23:05:43 +00001574 if (match(Compare->getOperand(0), m_Intrinsic<Intrinsic::eh_typeid_for>()) ||
1575 match(Compare->getOperand(1), m_Intrinsic<Intrinsic::eh_typeid_for>())) {
1576 VMap[Compare] = ConstantInt::get(SelectorIDType, 1);
1577 return CloningDirector::SkipInstruction;
1578 }
1579 return CloningDirector::CloneInstruction;
1580
1581}
1582
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001583WinEHFrameVariableMaterializer::WinEHFrameVariableMaterializer(
1584 Function *OutlinedFn, FrameVarInfoMap &FrameVarInfo)
1585 : FrameVarInfo(FrameVarInfo), Builder(OutlinedFn->getContext()) {
Andrew Kayloraa92ab02015-04-03 19:37:50 +00001586 BasicBlock *EntryBB = &OutlinedFn->getEntryBlock();
1587 Builder.SetInsertPoint(EntryBB, EntryBB->getFirstInsertionPt());
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001588}
1589
1590Value *WinEHFrameVariableMaterializer::materializeValueFor(Value *V) {
Reid Klecknerfd7df282015-04-22 21:05:21 +00001591 // If we're asked to materialize a static alloca, we temporarily create an
1592 // alloca in the outlined function and add this to the FrameVarInfo map. When
1593 // all the outlining is complete, we'll replace these temporary allocas with
1594 // calls to llvm.framerecover.
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001595 if (auto *AV = dyn_cast<AllocaInst>(V)) {
Reid Klecknerfd7df282015-04-22 21:05:21 +00001596 assert(AV->isStaticAlloca() &&
1597 "cannot materialize un-demoted dynamic alloca");
Andrew Kaylor72029c62015-03-03 00:41:03 +00001598 AllocaInst *NewAlloca = dyn_cast<AllocaInst>(AV->clone());
1599 Builder.Insert(NewAlloca, AV->getName());
Reid Klecknercfb9ce52015-03-05 18:26:34 +00001600 FrameVarInfo[AV].push_back(NewAlloca);
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001601 return NewAlloca;
1602 }
1603
Andrew Kaylor72029c62015-03-03 00:41:03 +00001604 if (isa<Instruction>(V) || isa<Argument>(V)) {
Reid Klecknerfd7df282015-04-22 21:05:21 +00001605 errs() << "Failed to demote instruction used in exception handler:\n";
1606 errs() << " " << *V << '\n';
1607 report_fatal_error("WinEHPrepare failed to demote instruction");
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001608 }
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001609
Andrew Kaylor72029c62015-03-03 00:41:03 +00001610 // Don't materialize other values.
Andrew Kaylor1476e6d2015-02-24 20:49:35 +00001611 return nullptr;
1612}
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001613
Reid Kleckner3567d272015-04-02 21:13:31 +00001614void WinEHFrameVariableMaterializer::escapeCatchObject(Value *V) {
1615 // Catch parameter objects have to live in the parent frame. When we see a use
1616 // of a catch parameter, add a sentinel to the multimap to indicate that it's
1617 // used from another handler. This will prevent us from trying to sink the
1618 // alloca into the handler and ensure that the catch parameter is present in
1619 // the call to llvm.frameescape.
1620 FrameVarInfo[V].push_back(getCatchObjectSentinel());
1621}
1622
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001623// This function maps the catch and cleanup handlers that are reachable from the
1624// specified landing pad. The landing pad sequence will have this basic shape:
1625//
1626// <cleanup handler>
1627// <selector comparison>
1628// <catch handler>
1629// <cleanup handler>
1630// <selector comparison>
1631// <catch handler>
1632// <cleanup handler>
1633// ...
1634//
1635// Any of the cleanup slots may be absent. The cleanup slots may be occupied by
1636// any arbitrary control flow, but all paths through the cleanup code must
1637// eventually reach the next selector comparison and no path can skip to a
1638// different selector comparisons, though some paths may terminate abnormally.
1639// Therefore, we will use a depth first search from the start of any given
1640// cleanup block and stop searching when we find the next selector comparison.
1641//
1642// If the landingpad instruction does not have a catch clause, we will assume
1643// that any instructions other than selector comparisons and catch handlers can
1644// be ignored. In practice, these will only be the boilerplate instructions.
1645//
1646// The catch handlers may also have any control structure, but we are only
1647// interested in the start of the catch handlers, so we don't need to actually
1648// follow the flow of the catch handlers. The start of the catch handlers can
1649// be located from the compare instructions, but they can be skipped in the
1650// flow by following the contrary branch.
1651void WinEHPrepare::mapLandingPadBlocks(LandingPadInst *LPad,
1652 LandingPadActions &Actions) {
1653 unsigned int NumClauses = LPad->getNumClauses();
1654 unsigned int HandlersFound = 0;
1655 BasicBlock *BB = LPad->getParent();
1656
1657 DEBUG(dbgs() << "Mapping landing pad: " << BB->getName() << "\n");
1658
1659 if (NumClauses == 0) {
Reid Kleckner9405ef02015-04-10 23:12:29 +00001660 findCleanupHandlers(Actions, BB, nullptr);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001661 return;
1662 }
1663
1664 VisitedBlockSet VisitedBlocks;
1665
1666 while (HandlersFound != NumClauses) {
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001667 BasicBlock *NextBB = nullptr;
1668
Andrew Kaylor20ae2a32015-04-23 22:38:36 +00001669 // Skip over filter clauses.
1670 if (LPad->isFilter(HandlersFound)) {
1671 ++HandlersFound;
1672 continue;
1673 }
1674
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001675 // See if the clause we're looking for is a catch-all.
1676 // If so, the catch begins immediately.
Andrew Kaylorea8df612015-04-17 23:05:43 +00001677 Constant *ExpectedSelector = LPad->getClause(HandlersFound)->stripPointerCasts();
1678 if (isa<ConstantPointerNull>(ExpectedSelector)) {
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001679 // The catch all must occur last.
1680 assert(HandlersFound == NumClauses - 1);
1681
Andrew Kaylorea8df612015-04-17 23:05:43 +00001682 // There can be additional selector dispatches in the call chain that we
1683 // need to ignore.
1684 BasicBlock *CatchBlock = nullptr;
1685 Constant *Selector;
1686 while (BB && isSelectorDispatch(BB, CatchBlock, Selector, NextBB)) {
1687 DEBUG(dbgs() << " Found extra catch dispatch in block "
1688 << CatchBlock->getName() << "\n");
1689 BB = NextBB;
1690 }
1691
Reid Kleckner0f9e27a2015-03-18 20:26:53 +00001692 // For C++ EH, check if there is any interesting cleanup code before we
1693 // begin the catch. This is important because cleanups cannot rethrow
1694 // exceptions but code called from catches can. For SEH, it isn't
1695 // important if some finally code before a catch-all is executed out of
1696 // line or after recovering from the exception.
Reid Kleckner9405ef02015-04-10 23:12:29 +00001697 if (Personality == EHPersonality::MSVC_CXX)
1698 findCleanupHandlers(Actions, BB, BB);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001699
1700 // Add the catch handler to the action list.
Andrew Kaylorf18771b2015-04-20 18:48:45 +00001701 CatchHandler *Action = nullptr;
1702 if (CatchHandlerMap.count(BB) && CatchHandlerMap[BB] != nullptr) {
1703 // If the CatchHandlerMap already has an entry for this BB, re-use it.
1704 Action = CatchHandlerMap[BB];
1705 assert(Action->getSelector() == ExpectedSelector);
1706 } else {
1707 // Since this is a catch-all handler, the selector won't actually appear
1708 // in the code anywhere. ExpectedSelector here is the constant null ptr
1709 // that we got from the landing pad instruction.
1710 Action = new CatchHandler(BB, ExpectedSelector, nullptr);
1711 CatchHandlerMap[BB] = Action;
1712 }
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001713 Actions.insertCatchHandler(Action);
1714 DEBUG(dbgs() << " Catch all handler at block " << BB->getName() << "\n");
1715 ++HandlersFound;
Reid Kleckner0f9e27a2015-03-18 20:26:53 +00001716
1717 // Once we reach a catch-all, don't expect to hit a resume instruction.
1718 BB = nullptr;
1719 break;
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001720 }
1721
1722 CatchHandler *CatchAction = findCatchHandler(BB, NextBB, VisitedBlocks);
Andrew Kaylor41758512015-04-20 22:04:09 +00001723 assert(CatchAction);
1724
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001725 // See if there is any interesting code executed before the dispatch.
Reid Kleckner9405ef02015-04-10 23:12:29 +00001726 findCleanupHandlers(Actions, BB, CatchAction->getStartBlock());
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001727
Andrew Kaylorea8df612015-04-17 23:05:43 +00001728 // When the source program contains multiple nested try blocks the catch
1729 // handlers can get strung together in such a way that we can encounter
1730 // a dispatch for a selector that we've already had a handler for.
1731 if (CatchAction->getSelector()->stripPointerCasts() == ExpectedSelector) {
1732 ++HandlersFound;
1733
1734 // Add the catch handler to the action list.
1735 DEBUG(dbgs() << " Found catch dispatch in block "
1736 << CatchAction->getStartBlock()->getName() << "\n");
1737 Actions.insertCatchHandler(CatchAction);
1738 } else {
Andrew Kaylor41758512015-04-20 22:04:09 +00001739 // Under some circumstances optimized IR will flow unconditionally into a
1740 // handler block without checking the selector. This can only happen if
1741 // the landing pad has a catch-all handler and the handler for the
1742 // preceeding catch clause is identical to the catch-call handler
1743 // (typically an empty catch). In this case, the handler must be shared
1744 // by all remaining clauses.
1745 if (isa<ConstantPointerNull>(
1746 CatchAction->getSelector()->stripPointerCasts())) {
1747 DEBUG(dbgs() << " Applying early catch-all handler in block "
1748 << CatchAction->getStartBlock()->getName()
1749 << " to all remaining clauses.\n");
1750 Actions.insertCatchHandler(CatchAction);
1751 return;
1752 }
1753
Andrew Kaylorea8df612015-04-17 23:05:43 +00001754 DEBUG(dbgs() << " Found extra catch dispatch in block "
1755 << CatchAction->getStartBlock()->getName() << "\n");
1756 }
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001757
1758 // Move on to the block after the catch handler.
1759 BB = NextBB;
1760 }
1761
Reid Kleckner0f9e27a2015-03-18 20:26:53 +00001762 // If we didn't wind up in a catch-all, see if there is any interesting code
1763 // executed before the resume.
Reid Kleckner9405ef02015-04-10 23:12:29 +00001764 findCleanupHandlers(Actions, BB, BB);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001765
1766 // It's possible that some optimization moved code into a landingpad that
1767 // wasn't
1768 // previously being used for cleanup. If that happens, we need to execute
1769 // that
1770 // extra code from a cleanup handler.
1771 if (Actions.includesCleanup() && !LPad->isCleanup())
1772 LPad->setCleanup(true);
1773}
1774
1775// This function searches starting with the input block for the next
1776// block that terminates with a branch whose condition is based on a selector
1777// comparison. This may be the input block. See the mapLandingPadBlocks
1778// comments for a discussion of control flow assumptions.
1779//
1780CatchHandler *WinEHPrepare::findCatchHandler(BasicBlock *BB,
1781 BasicBlock *&NextBB,
1782 VisitedBlockSet &VisitedBlocks) {
1783 // See if we've already found a catch handler use it.
1784 // Call count() first to avoid creating a null entry for blocks
1785 // we haven't seen before.
1786 if (CatchHandlerMap.count(BB) && CatchHandlerMap[BB] != nullptr) {
1787 CatchHandler *Action = cast<CatchHandler>(CatchHandlerMap[BB]);
1788 NextBB = Action->getNextBB();
1789 return Action;
1790 }
1791
1792 // VisitedBlocks applies only to the current search. We still
1793 // need to consider blocks that we've visited while mapping other
1794 // landing pads.
1795 VisitedBlocks.insert(BB);
1796
1797 BasicBlock *CatchBlock = nullptr;
1798 Constant *Selector = nullptr;
1799
1800 // If this is the first time we've visited this block from any landing pad
1801 // look to see if it is a selector dispatch block.
1802 if (!CatchHandlerMap.count(BB)) {
1803 if (isSelectorDispatch(BB, CatchBlock, Selector, NextBB)) {
1804 CatchHandler *Action = new CatchHandler(BB, Selector, NextBB);
1805 CatchHandlerMap[BB] = Action;
1806 return Action;
1807 }
Andrew Kaylor41758512015-04-20 22:04:09 +00001808 // If we encounter a block containing an llvm.eh.begincatch before we
1809 // find a selector dispatch block, the handler is assumed to be
1810 // reached unconditionally. This happens for catch-all blocks, but
1811 // it can also happen for other catch handlers that have been combined
1812 // with the catch-all handler during optimization.
1813 if (isCatchBlock(BB)) {
1814 PointerType *Int8PtrTy = Type::getInt8PtrTy(BB->getContext());
1815 Constant *NullSelector = ConstantPointerNull::get(Int8PtrTy);
1816 CatchHandler *Action = new CatchHandler(BB, NullSelector, nullptr);
1817 CatchHandlerMap[BB] = Action;
1818 return Action;
1819 }
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001820 }
1821
1822 // Visit each successor, looking for the dispatch.
1823 // FIXME: We expect to find the dispatch quickly, so this will probably
1824 // work better as a breadth first search.
1825 for (BasicBlock *Succ : successors(BB)) {
1826 if (VisitedBlocks.count(Succ))
1827 continue;
1828
1829 CatchHandler *Action = findCatchHandler(Succ, NextBB, VisitedBlocks);
1830 if (Action)
1831 return Action;
1832 }
1833 return nullptr;
1834}
1835
Reid Kleckner9405ef02015-04-10 23:12:29 +00001836// These are helper functions to combine repeated code from findCleanupHandlers.
1837static void createCleanupHandler(LandingPadActions &Actions,
1838 CleanupHandlerMapTy &CleanupHandlerMap,
1839 BasicBlock *BB) {
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001840 CleanupHandler *Action = new CleanupHandler(BB);
1841 CleanupHandlerMap[BB] = Action;
Reid Kleckner9405ef02015-04-10 23:12:29 +00001842 Actions.insertCleanupHandler(Action);
1843 DEBUG(dbgs() << " Found cleanup code in block "
1844 << Action->getStartBlock()->getName() << "\n");
1845}
1846
Reid Kleckner9405ef02015-04-10 23:12:29 +00001847static CallSite matchOutlinedFinallyCall(BasicBlock *BB,
1848 Instruction *MaybeCall) {
1849 // Look for finally blocks that Clang has already outlined for us.
1850 // %fp = call i8* @llvm.frameaddress(i32 0)
1851 // call void @"fin$parent"(iN 1, i8* %fp)
1852 if (isFrameAddressCall(MaybeCall) && MaybeCall != BB->getTerminator())
1853 MaybeCall = MaybeCall->getNextNode();
1854 CallSite FinallyCall(MaybeCall);
1855 if (!FinallyCall || FinallyCall.arg_size() != 2)
1856 return CallSite();
1857 if (!match(FinallyCall.getArgument(0), m_SpecificInt(1)))
1858 return CallSite();
1859 if (!isFrameAddressCall(FinallyCall.getArgument(1)))
1860 return CallSite();
1861 return FinallyCall;
1862}
1863
1864static BasicBlock *followSingleUnconditionalBranches(BasicBlock *BB) {
1865 // Skip single ubr blocks.
1866 while (BB->getFirstNonPHIOrDbg() == BB->getTerminator()) {
1867 auto *Br = dyn_cast<BranchInst>(BB->getTerminator());
1868 if (Br && Br->isUnconditional())
1869 BB = Br->getSuccessor(0);
1870 else
1871 return BB;
1872 }
1873 return BB;
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001874}
1875
1876// This function searches starting with the input block for the next block that
1877// contains code that is not part of a catch handler and would not be eliminated
1878// during handler outlining.
1879//
Reid Kleckner9405ef02015-04-10 23:12:29 +00001880void WinEHPrepare::findCleanupHandlers(LandingPadActions &Actions,
1881 BasicBlock *StartBB, BasicBlock *EndBB) {
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001882 // Here we will skip over the following:
1883 //
1884 // landing pad prolog:
1885 //
1886 // Unconditional branches
1887 //
1888 // Selector dispatch
1889 //
1890 // Resume pattern
1891 //
1892 // Anything else marks the start of an interesting block
1893
1894 BasicBlock *BB = StartBB;
1895 // Anything other than an unconditional branch will kick us out of this loop
1896 // one way or another.
1897 while (BB) {
Reid Kleckner9405ef02015-04-10 23:12:29 +00001898 BB = followSingleUnconditionalBranches(BB);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001899 // If we've already scanned this block, don't scan it again. If it is
1900 // a cleanup block, there will be an action in the CleanupHandlerMap.
1901 // If we've scanned it and it is not a cleanup block, there will be a
1902 // nullptr in the CleanupHandlerMap. If we have not scanned it, there will
1903 // be no entry in the CleanupHandlerMap. We must call count() first to
1904 // avoid creating a null entry for blocks we haven't scanned.
1905 if (CleanupHandlerMap.count(BB)) {
1906 if (auto *Action = CleanupHandlerMap[BB]) {
Reid Kleckner9405ef02015-04-10 23:12:29 +00001907 Actions.insertCleanupHandler(Action);
1908 DEBUG(dbgs() << " Found cleanup code in block "
1909 << Action->getStartBlock()->getName() << "\n");
1910 // FIXME: This cleanup might chain into another, and we need to discover
1911 // that.
1912 return;
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001913 } else {
1914 // Here we handle the case where the cleanup handler map contains a
1915 // value for this block but the value is a nullptr. This means that
1916 // we have previously analyzed the block and determined that it did
1917 // not contain any cleanup code. Based on the earlier analysis, we
1918 // know the the block must end in either an unconditional branch, a
1919 // resume or a conditional branch that is predicated on a comparison
1920 // with a selector. Either the resume or the selector dispatch
1921 // would terminate the search for cleanup code, so the unconditional
1922 // branch is the only case for which we might need to continue
1923 // searching.
Reid Kleckner9405ef02015-04-10 23:12:29 +00001924 BasicBlock *SuccBB = followSingleUnconditionalBranches(BB);
1925 if (SuccBB == BB || SuccBB == EndBB)
1926 return;
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001927 BB = SuccBB;
1928 continue;
1929 }
1930 }
1931
1932 // Create an entry in the cleanup handler map for this block. Initially
1933 // we create an entry that says this isn't a cleanup block. If we find
1934 // cleanup code, the caller will replace this entry.
1935 CleanupHandlerMap[BB] = nullptr;
1936
1937 TerminatorInst *Terminator = BB->getTerminator();
1938
1939 // Landing pad blocks have extra instructions we need to accept.
1940 LandingPadMap *LPadMap = nullptr;
1941 if (BB->isLandingPad()) {
1942 LandingPadInst *LPad = BB->getLandingPadInst();
1943 LPadMap = &LPadMaps[LPad];
1944 if (!LPadMap->isInitialized())
1945 LPadMap->mapLandingPad(LPad);
1946 }
1947
1948 // Look for the bare resume pattern:
Andrew Kaylor64622aa2015-04-01 17:21:25 +00001949 // %lpad.val1 = insertvalue { i8*, i32 } undef, i8* %exn, 0
1950 // %lpad.val2 = insertvalue { i8*, i32 } %lpad.val1, i32 %sel, 1
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001951 // resume { i8*, i32 } %lpad.val2
1952 if (auto *Resume = dyn_cast<ResumeInst>(Terminator)) {
1953 InsertValueInst *Insert1 = nullptr;
1954 InsertValueInst *Insert2 = nullptr;
Reid Kleckner0f9e27a2015-03-18 20:26:53 +00001955 Value *ResumeVal = Resume->getOperand(0);
Reid Kleckner1c130bb2015-04-16 17:02:23 +00001956 // If the resume value isn't a phi or landingpad value, it should be a
1957 // series of insertions. Identify them so we can avoid them when scanning
1958 // for cleanups.
1959 if (!isa<PHINode>(ResumeVal) && !isa<LandingPadInst>(ResumeVal)) {
Reid Kleckner0f9e27a2015-03-18 20:26:53 +00001960 Insert2 = dyn_cast<InsertValueInst>(ResumeVal);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001961 if (!Insert2)
Reid Kleckner9405ef02015-04-10 23:12:29 +00001962 return createCleanupHandler(Actions, CleanupHandlerMap, BB);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001963 Insert1 = dyn_cast<InsertValueInst>(Insert2->getAggregateOperand());
1964 if (!Insert1)
Reid Kleckner9405ef02015-04-10 23:12:29 +00001965 return createCleanupHandler(Actions, CleanupHandlerMap, BB);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001966 }
1967 for (BasicBlock::iterator II = BB->getFirstNonPHIOrDbg(), IE = BB->end();
1968 II != IE; ++II) {
1969 Instruction *Inst = II;
1970 if (LPadMap && LPadMap->isLandingPadSpecificInst(Inst))
1971 continue;
1972 if (Inst == Insert1 || Inst == Insert2 || Inst == Resume)
1973 continue;
1974 if (!Inst->hasOneUse() ||
1975 (Inst->user_back() != Insert1 && Inst->user_back() != Insert2)) {
Reid Kleckner9405ef02015-04-10 23:12:29 +00001976 return createCleanupHandler(Actions, CleanupHandlerMap, BB);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001977 }
1978 }
Reid Kleckner9405ef02015-04-10 23:12:29 +00001979 return;
Andrew Kaylor6b67d422015-03-11 23:22:06 +00001980 }
1981
1982 BranchInst *Branch = dyn_cast<BranchInst>(Terminator);
Andrew Kaylor64622aa2015-04-01 17:21:25 +00001983 if (Branch && Branch->isConditional()) {
1984 // Look for the selector dispatch.
1985 // %2 = call i32 @llvm.eh.typeid.for(i8* bitcast (i8** @_ZTIf to i8*))
1986 // %matches = icmp eq i32 %sel, %2
1987 // br i1 %matches, label %catch14, label %eh.resume
1988 CmpInst *Compare = dyn_cast<CmpInst>(Branch->getCondition());
1989 if (!Compare || !Compare->isEquality())
Reid Kleckner9405ef02015-04-10 23:12:29 +00001990 return createCleanupHandler(Actions, CleanupHandlerMap, BB);
Andrew Kaylorbb111322015-04-07 21:30:23 +00001991 for (BasicBlock::iterator II = BB->getFirstNonPHIOrDbg(), IE = BB->end();
1992 II != IE; ++II) {
Andrew Kaylor64622aa2015-04-01 17:21:25 +00001993 Instruction *Inst = II;
1994 if (LPadMap && LPadMap->isLandingPadSpecificInst(Inst))
1995 continue;
1996 if (Inst == Compare || Inst == Branch)
1997 continue;
1998 if (match(Inst, m_Intrinsic<Intrinsic::eh_typeid_for>()))
1999 continue;
Reid Kleckner9405ef02015-04-10 23:12:29 +00002000 return createCleanupHandler(Actions, CleanupHandlerMap, BB);
Andrew Kaylor64622aa2015-04-01 17:21:25 +00002001 }
2002 // The selector dispatch block should always terminate our search.
2003 assert(BB == EndBB);
Reid Kleckner9405ef02015-04-10 23:12:29 +00002004 return;
2005 }
2006
2007 if (isAsynchronousEHPersonality(Personality)) {
2008 // If this is a landingpad block, split the block at the first non-landing
2009 // pad instruction.
2010 Instruction *MaybeCall = BB->getFirstNonPHIOrDbg();
2011 if (LPadMap) {
2012 while (MaybeCall != BB->getTerminator() &&
2013 LPadMap->isLandingPadSpecificInst(MaybeCall))
2014 MaybeCall = MaybeCall->getNextNode();
2015 }
2016
2017 // Look for outlined finally calls.
2018 if (CallSite FinallyCall = matchOutlinedFinallyCall(BB, MaybeCall)) {
2019 Function *Fin = FinallyCall.getCalledFunction();
2020 assert(Fin && "outlined finally call should be direct");
2021 auto *Action = new CleanupHandler(BB);
2022 Action->setHandlerBlockOrFunc(Fin);
2023 Actions.insertCleanupHandler(Action);
2024 CleanupHandlerMap[BB] = Action;
2025 DEBUG(dbgs() << " Found frontend-outlined finally call to "
2026 << Fin->getName() << " in block "
2027 << Action->getStartBlock()->getName() << "\n");
2028
2029 // Split the block if there were more interesting instructions and look
2030 // for finally calls in the normal successor block.
2031 BasicBlock *SuccBB = BB;
2032 if (FinallyCall.getInstruction() != BB->getTerminator() &&
2033 FinallyCall.getInstruction()->getNextNode() != BB->getTerminator()) {
2034 SuccBB = BB->splitBasicBlock(FinallyCall.getInstruction()->getNextNode());
2035 } else {
2036 if (FinallyCall.isInvoke()) {
2037 SuccBB = cast<InvokeInst>(FinallyCall.getInstruction())->getNormalDest();
2038 } else {
2039 SuccBB = BB->getUniqueSuccessor();
2040 assert(SuccBB && "splitOutlinedFinallyCalls didn't insert a branch");
2041 }
2042 }
2043 BB = SuccBB;
2044 if (BB == EndBB)
2045 return;
2046 continue;
2047 }
Andrew Kaylor64622aa2015-04-01 17:21:25 +00002048 }
Andrew Kaylor6b67d422015-03-11 23:22:06 +00002049
Andrew Kaylor64622aa2015-04-01 17:21:25 +00002050 // Anything else is either a catch block or interesting cleanup code.
Andrew Kaylorbb111322015-04-07 21:30:23 +00002051 for (BasicBlock::iterator II = BB->getFirstNonPHIOrDbg(), IE = BB->end();
2052 II != IE; ++II) {
Andrew Kaylor64622aa2015-04-01 17:21:25 +00002053 Instruction *Inst = II;
2054 if (LPadMap && LPadMap->isLandingPadSpecificInst(Inst))
2055 continue;
2056 // Unconditional branches fall through to this loop.
2057 if (Inst == Branch)
2058 continue;
2059 // If this is a catch block, there is no cleanup code to be found.
2060 if (match(Inst, m_Intrinsic<Intrinsic::eh_begincatch>()))
Reid Kleckner9405ef02015-04-10 23:12:29 +00002061 return;
Andrew Kayloraa92ab02015-04-03 19:37:50 +00002062 // If this a nested landing pad, it may contain an endcatch call.
2063 if (match(Inst, m_Intrinsic<Intrinsic::eh_endcatch>()))
Reid Kleckner9405ef02015-04-10 23:12:29 +00002064 return;
Andrew Kaylor64622aa2015-04-01 17:21:25 +00002065 // Anything else makes this interesting cleanup code.
Reid Kleckner9405ef02015-04-10 23:12:29 +00002066 return createCleanupHandler(Actions, CleanupHandlerMap, BB);
Andrew Kaylor64622aa2015-04-01 17:21:25 +00002067 }
2068
2069 // Only unconditional branches in empty blocks should get this far.
2070 assert(Branch && Branch->isUnconditional());
2071 if (BB == EndBB)
Reid Kleckner9405ef02015-04-10 23:12:29 +00002072 return;
Andrew Kaylor64622aa2015-04-01 17:21:25 +00002073 BB = Branch->getSuccessor(0);
Andrew Kaylor6b67d422015-03-11 23:22:06 +00002074 }
Andrew Kaylor6b67d422015-03-11 23:22:06 +00002075}
Andrew Kayloraa92ab02015-04-03 19:37:50 +00002076
2077// This is a public function, declared in WinEHFuncInfo.h and is also
2078// referenced by WinEHNumbering in FunctionLoweringInfo.cpp.
2079void llvm::parseEHActions(const IntrinsicInst *II,
David Majnemer69132a72015-04-03 22:49:05 +00002080 SmallVectorImpl<ActionHandler *> &Actions) {
Andrew Kayloraa92ab02015-04-03 19:37:50 +00002081 for (unsigned I = 0, E = II->getNumArgOperands(); I != E;) {
2082 uint64_t ActionKind =
Andrew Kaylorbb111322015-04-07 21:30:23 +00002083 cast<ConstantInt>(II->getArgOperand(I))->getZExtValue();
Andrew Kayloraa92ab02015-04-03 19:37:50 +00002084 if (ActionKind == /*catch=*/1) {
2085 auto *Selector = cast<Constant>(II->getArgOperand(I + 1));
2086 ConstantInt *EHObjIndex = cast<ConstantInt>(II->getArgOperand(I + 2));
2087 int64_t EHObjIndexVal = EHObjIndex->getSExtValue();
2088 Constant *Handler = cast<Constant>(II->getArgOperand(I + 3));
2089 I += 4;
2090 auto *CH = new CatchHandler(/*BB=*/nullptr, Selector, /*NextBB=*/nullptr);
2091 CH->setHandlerBlockOrFunc(Handler);
2092 CH->setExceptionVarIndex(EHObjIndexVal);
2093 Actions.push_back(CH);
David Majnemer69132a72015-04-03 22:49:05 +00002094 } else if (ActionKind == 0) {
Andrew Kayloraa92ab02015-04-03 19:37:50 +00002095 Constant *Handler = cast<Constant>(II->getArgOperand(I + 1));
2096 I += 2;
2097 auto *CH = new CleanupHandler(/*BB=*/nullptr);
2098 CH->setHandlerBlockOrFunc(Handler);
2099 Actions.push_back(CH);
David Majnemer69132a72015-04-03 22:49:05 +00002100 } else {
2101 llvm_unreachable("Expected either a catch or cleanup handler!");
Andrew Kayloraa92ab02015-04-03 19:37:50 +00002102 }
2103 }
2104 std::reverse(Actions.begin(), Actions.end());
2105}