Don't analyze block if it's not considered for ifcvt anymore.
[llvm/stm8.git] / lib / Transforms / IPO / LowerSetJmp.cpp
blob52ecf17b8f9b66f5170afb0bf2f5dacedfb08b61
1 //===- LowerSetJmp.cpp - Code pertaining to lowering set/long jumps -------===//
2 //
3 // The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file implements the lowering of setjmp and longjmp to use the
11 // LLVM invoke and unwind instructions as necessary.
13 // Lowering of longjmp is fairly trivial. We replace the call with a
14 // call to the LLVM library function "__llvm_sjljeh_throw_longjmp()".
15 // This unwinds the stack for us calling all of the destructors for
16 // objects allocated on the stack.
18 // At a setjmp call, the basic block is split and the setjmp removed.
19 // The calls in a function that have a setjmp are converted to invoke
20 // where the except part checks to see if it's a longjmp exception and,
21 // if so, if it's handled in the function. If it is, then it gets the
22 // value returned by the longjmp and goes to where the basic block was
23 // split. Invoke instructions are handled in a similar fashion with the
24 // original except block being executed if it isn't a longjmp except
25 // that is handled by that function.
27 //===----------------------------------------------------------------------===//
29 //===----------------------------------------------------------------------===//
30 // FIXME: This pass doesn't deal with PHI statements just yet. That is,
31 // we expect this to occur before SSAification is done. This would seem
32 // to make sense, but in general, it might be a good idea to make this
33 // pass invokable via the "opt" command at will.
34 //===----------------------------------------------------------------------===//
36 #define DEBUG_TYPE "lowersetjmp"
37 #include "llvm/Transforms/IPO.h"
38 #include "llvm/Constants.h"
39 #include "llvm/DerivedTypes.h"
40 #include "llvm/Instructions.h"
41 #include "llvm/Intrinsics.h"
42 #include "llvm/LLVMContext.h"
43 #include "llvm/Module.h"
44 #include "llvm/Pass.h"
45 #include "llvm/Support/CallSite.h"
46 #include "llvm/Support/CFG.h"
47 #include "llvm/Support/InstVisitor.h"
48 #include "llvm/Transforms/Utils/Local.h"
49 #include "llvm/ADT/DepthFirstIterator.h"
50 #include "llvm/ADT/Statistic.h"
51 #include <map>
52 using namespace llvm;
54 STATISTIC(LongJmpsTransformed, "Number of longjmps transformed");
55 STATISTIC(SetJmpsTransformed , "Number of setjmps transformed");
56 STATISTIC(CallsTransformed , "Number of calls invokified");
57 STATISTIC(InvokesTransformed , "Number of invokes modified");
59 namespace {
60 //===--------------------------------------------------------------------===//
61 // LowerSetJmp pass implementation.
62 class LowerSetJmp : public ModulePass, public InstVisitor<LowerSetJmp> {
63 // LLVM library functions...
64 Constant *InitSJMap; // __llvm_sjljeh_init_setjmpmap
65 Constant *DestroySJMap; // __llvm_sjljeh_destroy_setjmpmap
66 Constant *AddSJToMap; // __llvm_sjljeh_add_setjmp_to_map
67 Constant *ThrowLongJmp; // __llvm_sjljeh_throw_longjmp
68 Constant *TryCatchLJ; // __llvm_sjljeh_try_catching_longjmp_exception
69 Constant *IsLJException; // __llvm_sjljeh_is_longjmp_exception
70 Constant *GetLJValue; // __llvm_sjljeh_get_longjmp_value
72 typedef std::pair<SwitchInst*, CallInst*> SwitchValuePair;
74 // Keep track of those basic blocks reachable via a depth-first search of
75 // the CFG from a setjmp call. We only need to transform those "call" and
76 // "invoke" instructions that are reachable from the setjmp call site.
77 std::set<BasicBlock*> DFSBlocks;
79 // The setjmp map is going to hold information about which setjmps
80 // were called (each setjmp gets its own number) and with which
81 // buffer it was called.
82 std::map<Function*, AllocaInst*> SJMap;
84 // The rethrow basic block map holds the basic block to branch to if
85 // the exception isn't handled in the current function and needs to
86 // be rethrown.
87 std::map<const Function*, BasicBlock*> RethrowBBMap;
89 // The preliminary basic block map holds a basic block that grabs the
90 // exception and determines if it's handled by the current function.
91 std::map<const Function*, BasicBlock*> PrelimBBMap;
93 // The switch/value map holds a switch inst/call inst pair. The
94 // switch inst controls which handler (if any) gets called and the
95 // value is the value returned to that handler by the call to
96 // __llvm_sjljeh_get_longjmp_value.
97 std::map<const Function*, SwitchValuePair> SwitchValMap;
99 // A map of which setjmps we've seen so far in a function.
100 std::map<const Function*, unsigned> SetJmpIDMap;
102 AllocaInst* GetSetJmpMap(Function* Func);
103 BasicBlock* GetRethrowBB(Function* Func);
104 SwitchValuePair GetSJSwitch(Function* Func, BasicBlock* Rethrow);
106 void TransformLongJmpCall(CallInst* Inst);
107 void TransformSetJmpCall(CallInst* Inst);
109 bool IsTransformableFunction(StringRef Name);
110 public:
111 static char ID; // Pass identification, replacement for typeid
112 LowerSetJmp() : ModulePass(ID) {
113 initializeLowerSetJmpPass(*PassRegistry::getPassRegistry());
116 void visitCallInst(CallInst& CI);
117 void visitInvokeInst(InvokeInst& II);
118 void visitReturnInst(ReturnInst& RI);
119 void visitUnwindInst(UnwindInst& UI);
121 bool runOnModule(Module& M);
122 bool doInitialization(Module& M);
124 } // end anonymous namespace
126 char LowerSetJmp::ID = 0;
127 INITIALIZE_PASS(LowerSetJmp, "lowersetjmp", "Lower Set Jump", false, false)
129 // run - Run the transformation on the program. We grab the function
130 // prototypes for longjmp and setjmp. If they are used in the program,
131 // then we can go directly to the places they're at and transform them.
132 bool LowerSetJmp::runOnModule(Module& M) {
133 bool Changed = false;
135 // These are what the functions are called.
136 Function* SetJmp = M.getFunction("llvm.setjmp");
137 Function* LongJmp = M.getFunction("llvm.longjmp");
139 // This program doesn't have longjmp and setjmp calls.
140 if ((!LongJmp || LongJmp->use_empty()) &&
141 (!SetJmp || SetJmp->use_empty())) return false;
143 // Initialize some values and functions we'll need to transform the
144 // setjmp/longjmp functions.
145 doInitialization(M);
147 if (SetJmp) {
148 for (Value::use_iterator B = SetJmp->use_begin(), E = SetJmp->use_end();
149 B != E; ++B) {
150 BasicBlock* BB = cast<Instruction>(*B)->getParent();
151 for (df_ext_iterator<BasicBlock*> I = df_ext_begin(BB, DFSBlocks),
152 E = df_ext_end(BB, DFSBlocks); I != E; ++I)
153 /* empty */;
156 while (!SetJmp->use_empty()) {
157 assert(isa<CallInst>(SetJmp->use_back()) &&
158 "User of setjmp intrinsic not a call?");
159 TransformSetJmpCall(cast<CallInst>(SetJmp->use_back()));
160 Changed = true;
164 if (LongJmp)
165 while (!LongJmp->use_empty()) {
166 assert(isa<CallInst>(LongJmp->use_back()) &&
167 "User of longjmp intrinsic not a call?");
168 TransformLongJmpCall(cast<CallInst>(LongJmp->use_back()));
169 Changed = true;
172 // Now go through the affected functions and convert calls and invokes
173 // to new invokes...
174 for (std::map<Function*, AllocaInst*>::iterator
175 B = SJMap.begin(), E = SJMap.end(); B != E; ++B) {
176 Function* F = B->first;
177 for (Function::iterator BB = F->begin(), BE = F->end(); BB != BE; ++BB)
178 for (BasicBlock::iterator IB = BB->begin(), IE = BB->end(); IB != IE; ) {
179 visit(*IB++);
180 if (IB != BB->end() && IB->getParent() != BB)
181 break; // The next instruction got moved to a different block!
185 DFSBlocks.clear();
186 SJMap.clear();
187 RethrowBBMap.clear();
188 PrelimBBMap.clear();
189 SwitchValMap.clear();
190 SetJmpIDMap.clear();
192 return Changed;
195 // doInitialization - For the lower long/setjmp pass, this ensures that a
196 // module contains a declaration for the intrisic functions we are going
197 // to call to convert longjmp and setjmp calls.
199 // This function is always successful, unless it isn't.
200 bool LowerSetJmp::doInitialization(Module& M)
202 const Type *SBPTy = Type::getInt8PtrTy(M.getContext());
203 const Type *SBPPTy = PointerType::getUnqual(SBPTy);
205 // N.B. See llvm/runtime/GCCLibraries/libexception/SJLJ-Exception.h for
206 // a description of the following library functions.
208 // void __llvm_sjljeh_init_setjmpmap(void**)
209 InitSJMap = M.getOrInsertFunction("__llvm_sjljeh_init_setjmpmap",
210 Type::getVoidTy(M.getContext()),
211 SBPPTy, (Type *)0);
212 // void __llvm_sjljeh_destroy_setjmpmap(void**)
213 DestroySJMap = M.getOrInsertFunction("__llvm_sjljeh_destroy_setjmpmap",
214 Type::getVoidTy(M.getContext()),
215 SBPPTy, (Type *)0);
217 // void __llvm_sjljeh_add_setjmp_to_map(void**, void*, unsigned)
218 AddSJToMap = M.getOrInsertFunction("__llvm_sjljeh_add_setjmp_to_map",
219 Type::getVoidTy(M.getContext()),
220 SBPPTy, SBPTy,
221 Type::getInt32Ty(M.getContext()),
222 (Type *)0);
224 // void __llvm_sjljeh_throw_longjmp(int*, int)
225 ThrowLongJmp = M.getOrInsertFunction("__llvm_sjljeh_throw_longjmp",
226 Type::getVoidTy(M.getContext()), SBPTy,
227 Type::getInt32Ty(M.getContext()),
228 (Type *)0);
230 // unsigned __llvm_sjljeh_try_catching_longjmp_exception(void **)
231 TryCatchLJ =
232 M.getOrInsertFunction("__llvm_sjljeh_try_catching_longjmp_exception",
233 Type::getInt32Ty(M.getContext()), SBPPTy, (Type *)0);
235 // bool __llvm_sjljeh_is_longjmp_exception()
236 IsLJException = M.getOrInsertFunction("__llvm_sjljeh_is_longjmp_exception",
237 Type::getInt1Ty(M.getContext()),
238 (Type *)0);
240 // int __llvm_sjljeh_get_longjmp_value()
241 GetLJValue = M.getOrInsertFunction("__llvm_sjljeh_get_longjmp_value",
242 Type::getInt32Ty(M.getContext()),
243 (Type *)0);
244 return true;
247 // IsTransformableFunction - Return true if the function name isn't one
248 // of the ones we don't want transformed. Currently, don't transform any
249 // "llvm.{setjmp,longjmp}" functions and none of the setjmp/longjmp error
250 // handling functions (beginning with __llvm_sjljeh_...they don't throw
251 // exceptions).
252 bool LowerSetJmp::IsTransformableFunction(StringRef Name) {
253 return !Name.startswith("__llvm_sjljeh_");
256 // TransformLongJmpCall - Transform a longjmp call into a call to the
257 // internal __llvm_sjljeh_throw_longjmp function. It then takes care of
258 // throwing the exception for us.
259 void LowerSetJmp::TransformLongJmpCall(CallInst* Inst)
261 const Type* SBPTy = Type::getInt8PtrTy(Inst->getContext());
263 // Create the call to "__llvm_sjljeh_throw_longjmp". This takes the
264 // same parameters as "longjmp", except that the buffer is cast to a
265 // char*. It returns "void", so it doesn't need to replace any of
266 // Inst's uses and doesn't get a name.
267 CastInst* CI =
268 new BitCastInst(Inst->getArgOperand(0), SBPTy, "LJBuf", Inst);
269 Value *Args[] = { CI, Inst->getArgOperand(1) };
270 CallInst::Create(ThrowLongJmp, Args, Args + 2, "", Inst);
272 SwitchValuePair& SVP = SwitchValMap[Inst->getParent()->getParent()];
274 // If the function has a setjmp call in it (they are transformed first)
275 // we should branch to the basic block that determines if this longjmp
276 // is applicable here. Otherwise, issue an unwind.
277 if (SVP.first)
278 BranchInst::Create(SVP.first->getParent(), Inst);
279 else
280 new UnwindInst(Inst->getContext(), Inst);
282 // Remove all insts after the branch/unwind inst. Go from back to front to
283 // avoid replaceAllUsesWith if possible.
284 BasicBlock *BB = Inst->getParent();
285 Instruction *Removed;
286 do {
287 Removed = &BB->back();
288 // If the removed instructions have any users, replace them now.
289 if (!Removed->use_empty())
290 Removed->replaceAllUsesWith(UndefValue::get(Removed->getType()));
291 Removed->eraseFromParent();
292 } while (Removed != Inst);
294 ++LongJmpsTransformed;
297 // GetSetJmpMap - Retrieve (create and initialize, if necessary) the
298 // setjmp map. This map is going to hold information about which setjmps
299 // were called (each setjmp gets its own number) and with which buffer it
300 // was called. There can be only one!
301 AllocaInst* LowerSetJmp::GetSetJmpMap(Function* Func)
303 if (SJMap[Func]) return SJMap[Func];
305 // Insert the setjmp map initialization before the first instruction in
306 // the function.
307 Instruction* Inst = Func->getEntryBlock().begin();
308 assert(Inst && "Couldn't find even ONE instruction in entry block!");
310 // Fill in the alloca and call to initialize the SJ map.
311 const Type *SBPTy =
312 Type::getInt8PtrTy(Func->getContext());
313 AllocaInst* Map = new AllocaInst(SBPTy, 0, "SJMap", Inst);
314 CallInst::Create(InitSJMap, Map, "", Inst);
315 return SJMap[Func] = Map;
318 // GetRethrowBB - Only one rethrow basic block is needed per function.
319 // If this is a longjmp exception but not handled in this block, this BB
320 // performs the rethrow.
321 BasicBlock* LowerSetJmp::GetRethrowBB(Function* Func)
323 if (RethrowBBMap[Func]) return RethrowBBMap[Func];
325 // The basic block we're going to jump to if we need to rethrow the
326 // exception.
327 BasicBlock* Rethrow =
328 BasicBlock::Create(Func->getContext(), "RethrowExcept", Func);
330 // Fill in the "Rethrow" BB with a call to rethrow the exception. This
331 // is the last instruction in the BB since at this point the runtime
332 // should exit this function and go to the next function.
333 new UnwindInst(Func->getContext(), Rethrow);
334 return RethrowBBMap[Func] = Rethrow;
337 // GetSJSwitch - Return the switch statement that controls which handler
338 // (if any) gets called and the value returned to that handler.
339 LowerSetJmp::SwitchValuePair LowerSetJmp::GetSJSwitch(Function* Func,
340 BasicBlock* Rethrow)
342 if (SwitchValMap[Func].first) return SwitchValMap[Func];
344 BasicBlock* LongJmpPre =
345 BasicBlock::Create(Func->getContext(), "LongJmpBlkPre", Func);
347 // Keep track of the preliminary basic block for some of the other
348 // transformations.
349 PrelimBBMap[Func] = LongJmpPre;
351 // Grab the exception.
352 CallInst* Cond = CallInst::Create(IsLJException, "IsLJExcept", LongJmpPre);
354 // The "decision basic block" gets the number associated with the
355 // setjmp call returning to switch on and the value returned by
356 // longjmp.
357 BasicBlock* DecisionBB =
358 BasicBlock::Create(Func->getContext(), "LJDecisionBB", Func);
360 BranchInst::Create(DecisionBB, Rethrow, Cond, LongJmpPre);
362 // Fill in the "decision" basic block.
363 CallInst* LJVal = CallInst::Create(GetLJValue, "LJVal", DecisionBB);
364 CallInst* SJNum = CallInst::Create(TryCatchLJ, GetSetJmpMap(Func), "SJNum",
365 DecisionBB);
367 SwitchInst* SI = SwitchInst::Create(SJNum, Rethrow, 0, DecisionBB);
368 return SwitchValMap[Func] = SwitchValuePair(SI, LJVal);
371 // TransformSetJmpCall - The setjmp call is a bit trickier to transform.
372 // We're going to convert all setjmp calls to nops. Then all "call" and
373 // "invoke" instructions in the function are converted to "invoke" where
374 // the "except" branch is used when returning from a longjmp call.
375 void LowerSetJmp::TransformSetJmpCall(CallInst* Inst)
377 BasicBlock* ABlock = Inst->getParent();
378 Function* Func = ABlock->getParent();
380 // Add this setjmp to the setjmp map.
381 const Type* SBPTy =
382 Type::getInt8PtrTy(Inst->getContext());
383 CastInst* BufPtr =
384 new BitCastInst(Inst->getArgOperand(0), SBPTy, "SBJmpBuf", Inst);
385 Value *Args[] = {
386 GetSetJmpMap(Func), BufPtr,
387 ConstantInt::get(Type::getInt32Ty(Inst->getContext()), SetJmpIDMap[Func]++)
389 CallInst::Create(AddSJToMap, Args, Args + 3, "", Inst);
391 // We are guaranteed that there are no values live across basic blocks
392 // (because we are "not in SSA form" yet), but there can still be values live
393 // in basic blocks. Because of this, splitting the setjmp block can cause
394 // values above the setjmp to not dominate uses which are after the setjmp
395 // call. For all of these occasions, we must spill the value to the stack.
397 std::set<Instruction*> InstrsAfterCall;
399 // The call is probably very close to the end of the basic block, for the
400 // common usage pattern of: 'if (setjmp(...))', so keep track of the
401 // instructions after the call.
402 for (BasicBlock::iterator I = ++BasicBlock::iterator(Inst), E = ABlock->end();
403 I != E; ++I)
404 InstrsAfterCall.insert(I);
406 for (BasicBlock::iterator II = ABlock->begin();
407 II != BasicBlock::iterator(Inst); ++II)
408 // Loop over all of the uses of instruction. If any of them are after the
409 // call, "spill" the value to the stack.
410 for (Value::use_iterator UI = II->use_begin(), E = II->use_end();
411 UI != E; ++UI) {
412 User *U = *UI;
413 if (cast<Instruction>(U)->getParent() != ABlock ||
414 InstrsAfterCall.count(cast<Instruction>(U))) {
415 DemoteRegToStack(*II);
416 break;
419 InstrsAfterCall.clear();
421 // Change the setjmp call into a branch statement. We'll remove the
422 // setjmp call in a little bit. No worries.
423 BasicBlock* SetJmpContBlock = ABlock->splitBasicBlock(Inst);
424 assert(SetJmpContBlock && "Couldn't split setjmp BB!!");
426 SetJmpContBlock->setName(ABlock->getName()+"SetJmpCont");
428 // Add the SetJmpContBlock to the set of blocks reachable from a setjmp.
429 DFSBlocks.insert(SetJmpContBlock);
431 // This PHI node will be in the new block created from the
432 // splitBasicBlock call.
433 PHINode* PHI = PHINode::Create(Type::getInt32Ty(Inst->getContext()), 2,
434 "SetJmpReturn", Inst);
436 // Coming from a call to setjmp, the return is 0.
437 PHI->addIncoming(Constant::getNullValue(Type::getInt32Ty(Inst->getContext())),
438 ABlock);
440 // Add the case for this setjmp's number...
441 SwitchValuePair SVP = GetSJSwitch(Func, GetRethrowBB(Func));
442 SVP.first->addCase(ConstantInt::get(Type::getInt32Ty(Inst->getContext()),
443 SetJmpIDMap[Func] - 1),
444 SetJmpContBlock);
446 // Value coming from the handling of the exception.
447 PHI->addIncoming(SVP.second, SVP.second->getParent());
449 // Replace all uses of this instruction with the PHI node created by
450 // the eradication of setjmp.
451 Inst->replaceAllUsesWith(PHI);
452 Inst->eraseFromParent();
454 ++SetJmpsTransformed;
457 // visitCallInst - This converts all LLVM call instructions into invoke
458 // instructions. The except part of the invoke goes to the "LongJmpBlkPre"
459 // that grabs the exception and proceeds to determine if it's a longjmp
460 // exception or not.
461 void LowerSetJmp::visitCallInst(CallInst& CI)
463 if (CI.getCalledFunction())
464 if (!IsTransformableFunction(CI.getCalledFunction()->getName()) ||
465 CI.getCalledFunction()->isIntrinsic()) return;
467 BasicBlock* OldBB = CI.getParent();
469 // If not reachable from a setjmp call, don't transform.
470 if (!DFSBlocks.count(OldBB)) return;
472 BasicBlock* NewBB = OldBB->splitBasicBlock(CI);
473 assert(NewBB && "Couldn't split BB of \"call\" instruction!!");
474 DFSBlocks.insert(NewBB);
475 NewBB->setName("Call2Invoke");
477 Function* Func = OldBB->getParent();
479 // Construct the new "invoke" instruction.
480 TerminatorInst* Term = OldBB->getTerminator();
481 CallSite CS(&CI);
482 std::vector<Value*> Params(CS.arg_begin(), CS.arg_end());
483 InvokeInst* II =
484 InvokeInst::Create(CI.getCalledValue(), NewBB, PrelimBBMap[Func],
485 Params.begin(), Params.end(), CI.getName(), Term);
486 II->setCallingConv(CI.getCallingConv());
487 II->setAttributes(CI.getAttributes());
489 // Replace the old call inst with the invoke inst and remove the call.
490 CI.replaceAllUsesWith(II);
491 CI.eraseFromParent();
493 // The old terminator is useless now that we have the invoke inst.
494 Term->eraseFromParent();
495 ++CallsTransformed;
498 // visitInvokeInst - Converting the "invoke" instruction is fairly
499 // straight-forward. The old exception part is replaced by a query asking
500 // if this is a longjmp exception. If it is, then it goes to the longjmp
501 // exception blocks. Otherwise, control is passed the old exception.
502 void LowerSetJmp::visitInvokeInst(InvokeInst& II)
504 if (II.getCalledFunction())
505 if (!IsTransformableFunction(II.getCalledFunction()->getName()) ||
506 II.getCalledFunction()->isIntrinsic()) return;
508 BasicBlock* BB = II.getParent();
510 // If not reachable from a setjmp call, don't transform.
511 if (!DFSBlocks.count(BB)) return;
513 BasicBlock* ExceptBB = II.getUnwindDest();
515 Function* Func = BB->getParent();
516 BasicBlock* NewExceptBB = BasicBlock::Create(II.getContext(),
517 "InvokeExcept", Func);
519 // If this is a longjmp exception, then branch to the preliminary BB of
520 // the longjmp exception handling. Otherwise, go to the old exception.
521 CallInst* IsLJExcept = CallInst::Create(IsLJException, "IsLJExcept",
522 NewExceptBB);
524 BranchInst::Create(PrelimBBMap[Func], ExceptBB, IsLJExcept, NewExceptBB);
526 II.setUnwindDest(NewExceptBB);
527 ++InvokesTransformed;
530 // visitReturnInst - We want to destroy the setjmp map upon exit from the
531 // function.
532 void LowerSetJmp::visitReturnInst(ReturnInst &RI) {
533 Function* Func = RI.getParent()->getParent();
534 CallInst::Create(DestroySJMap, GetSetJmpMap(Func), "", &RI);
537 // visitUnwindInst - We want to destroy the setjmp map upon exit from the
538 // function.
539 void LowerSetJmp::visitUnwindInst(UnwindInst &UI) {
540 Function* Func = UI.getParent()->getParent();
541 CallInst::Create(DestroySJMap, GetSetJmpMap(Func), "", &UI);
544 ModulePass *llvm::createLowerSetJmpPass() {
545 return new LowerSetJmp();