For PR950:
[oota-llvm.git] / lib / CodeGen / IntrinsicLowering.cpp
1 //===-- IntrinsicLowering.cpp - Intrinsic Lowering default implementation -===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file was developed by the LLVM research group and is distributed under
6 // the University of Illinois Open Source License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file implements the default intrinsic lowering implementation.
11 //
12 //===----------------------------------------------------------------------===//
13
14 #include "llvm/CodeGen/IntrinsicLowering.h"
15 #include "llvm/Constants.h"
16 #include "llvm/DerivedTypes.h"
17 #include "llvm/Module.h"
18 #include "llvm/Instructions.h"
19 #include "llvm/Type.h"
20 #include <iostream>
21
22 using namespace llvm;
23
24 template <class ArgIt>
25 static Function *EnsureFunctionExists(Module &M, const char *Name,
26                                       ArgIt ArgBegin, ArgIt ArgEnd,
27                                       const Type *RetTy) {
28   if (Function *F = M.getNamedFunction(Name)) return F;
29   // It doesn't already exist in the program, insert a new definition now.
30   std::vector<const Type *> ParamTys;
31   for (ArgIt I = ArgBegin; I != ArgEnd; ++I)
32     ParamTys.push_back(I->getType());
33   return M.getOrInsertFunction(Name, FunctionType::get(RetTy, ParamTys, false));
34 }
35
36 /// ReplaceCallWith - This function is used when we want to lower an intrinsic
37 /// call to a call of an external function.  This handles hard cases such as
38 /// when there was already a prototype for the external function, and if that
39 /// prototype doesn't match the arguments we expect to pass in.
40 template <class ArgIt>
41 static CallInst *ReplaceCallWith(const char *NewFn, CallInst *CI,
42                                  ArgIt ArgBegin, ArgIt ArgEnd,
43                                  const Type *RetTy, Function *&FCache) {
44   if (!FCache) {
45     // If we haven't already looked up this function, check to see if the
46     // program already contains a function with this name.
47     Module *M = CI->getParent()->getParent()->getParent();
48     FCache = M->getNamedFunction(NewFn);
49     if (!FCache) {
50       // It doesn't already exist in the program, insert a new definition now.
51       std::vector<const Type *> ParamTys;
52       for (ArgIt I = ArgBegin; I != ArgEnd; ++I)
53         ParamTys.push_back((*I)->getType());
54       FCache = M->getOrInsertFunction(NewFn,
55                                      FunctionType::get(RetTy, ParamTys, false));
56     }
57    }
58
59   const FunctionType *FT = FCache->getFunctionType();
60   std::vector<Value*> Operands;
61   unsigned ArgNo = 0;
62   for (ArgIt I = ArgBegin; I != ArgEnd && ArgNo != FT->getNumParams();
63        ++I, ++ArgNo) {
64     Value *Arg = *I;
65     if (Arg->getType() != FT->getParamType(ArgNo))
66       Arg = new CastInst(Arg, FT->getParamType(ArgNo), Arg->getName(), CI);
67     Operands.push_back(Arg);
68   }
69   // Pass nulls into any additional arguments...
70   for (; ArgNo != FT->getNumParams(); ++ArgNo)
71     Operands.push_back(Constant::getNullValue(FT->getParamType(ArgNo)));
72
73   std::string Name = CI->getName(); CI->setName("");
74   if (FT->getReturnType() == Type::VoidTy) Name.clear();
75   CallInst *NewCI = new CallInst(FCache, Operands, Name, CI);
76   if (!CI->use_empty()) {
77     Value *V = NewCI;
78     if (CI->getType() != NewCI->getType())
79       V = new CastInst(NewCI, CI->getType(), Name, CI);
80     CI->replaceAllUsesWith(V);
81   }
82   return NewCI;
83 }
84
85 void DefaultIntrinsicLowering::AddPrototypes(Module &M) {
86   for (Module::iterator I = M.begin(), E = M.end(); I != E; ++I)
87     if (I->isExternal() && !I->use_empty())
88       switch (I->getIntrinsicID()) {
89       default: break;
90       case Intrinsic::setjmp:
91         EnsureFunctionExists(M, "setjmp", I->arg_begin(), I->arg_end(),
92                              Type::IntTy);
93         break;
94       case Intrinsic::longjmp:
95         EnsureFunctionExists(M, "longjmp", I->arg_begin(), I->arg_end(),
96                              Type::VoidTy);
97         break;
98       case Intrinsic::siglongjmp:
99         EnsureFunctionExists(M, "abort", I->arg_end(), I->arg_end(),
100                              Type::VoidTy);
101         break;
102       case Intrinsic::memcpy_i32:
103       case Intrinsic::memcpy_i64:
104         EnsureFunctionExists(M, "memcpy", I->arg_begin(), --I->arg_end(),
105                              I->arg_begin()->getType());
106         break;
107       case Intrinsic::memmove_i32:
108       case Intrinsic::memmove_i64:
109         EnsureFunctionExists(M, "memmove", I->arg_begin(), --I->arg_end(),
110                              I->arg_begin()->getType());
111         break;
112       case Intrinsic::memset_i32:
113       case Intrinsic::memset_i64:
114         M.getOrInsertFunction("memset", PointerType::get(Type::SByteTy),
115                               PointerType::get(Type::SByteTy),
116                               Type::IntTy, (--(--I->arg_end()))->getType(),
117                               (Type *)0);
118         break;
119       case Intrinsic::isunordered_f32:
120       case Intrinsic::isunordered_f64:
121         EnsureFunctionExists(M, "isunordered", I->arg_begin(), I->arg_end(),
122                              Type::BoolTy);
123         break;
124       case Intrinsic::sqrt_f32:
125       case Intrinsic::sqrt_f64:
126         if(I->arg_begin()->getType() == Type::FloatTy)
127           EnsureFunctionExists(M, "sqrtf", I->arg_begin(), I->arg_end(),
128                                Type::FloatTy);
129         else
130           EnsureFunctionExists(M, "sqrt", I->arg_begin(), I->arg_end(),
131                                Type::DoubleTy);
132         break;
133       }
134 }
135
136 /// LowerBSWAP - Emit the code to lower bswap of V before the specified
137 /// instruction IP.
138 static Value *LowerBSWAP(Value *V, Instruction *IP) {
139   assert(V->getType()->isInteger() && "Can't bswap a non-integer type!");
140
141   const Type *DestTy = V->getType();
142   
143   // Force to unsigned so that the shift rights are logical.
144   if (DestTy->isSigned())
145     V = new CastInst(V, DestTy->getUnsignedVersion(), V->getName(), IP);
146
147   unsigned BitSize = V->getType()->getPrimitiveSizeInBits();
148   
149   switch(BitSize) {
150   default: assert(0 && "Unhandled type size of value to byteswap!");
151   case 16: {
152     Value *Tmp1 = new ShiftInst(Instruction::Shl, V,
153                                 ConstantInt::get(Type::UByteTy,8),"bswap.2",IP);
154     Value *Tmp2 = new ShiftInst(Instruction::Shr, V,
155                                 ConstantInt::get(Type::UByteTy,8),"bswap.1",IP);
156     V = BinaryOperator::createOr(Tmp1, Tmp2, "bswap.i16", IP);
157     break;
158   }
159   case 32: {
160     Value *Tmp4 = new ShiftInst(Instruction::Shl, V,
161                               ConstantInt::get(Type::UByteTy,24),"bswap.4", IP);
162     Value *Tmp3 = new ShiftInst(Instruction::Shl, V,
163                                 ConstantInt::get(Type::UByteTy,8),"bswap.3",IP);
164     Value *Tmp2 = new ShiftInst(Instruction::Shr, V,
165                                 ConstantInt::get(Type::UByteTy,8),"bswap.2",IP);
166     Value *Tmp1 = new ShiftInst(Instruction::Shr, V,
167                               ConstantInt::get(Type::UByteTy,24),"bswap.1", IP);
168     Tmp3 = BinaryOperator::createAnd(Tmp3, 
169                                      ConstantInt::get(Type::UIntTy, 0xFF0000),
170                                      "bswap.and3", IP);
171     Tmp2 = BinaryOperator::createAnd(Tmp2, 
172                                      ConstantInt::get(Type::UIntTy, 0xFF00),
173                                      "bswap.and2", IP);
174     Tmp4 = BinaryOperator::createOr(Tmp4, Tmp3, "bswap.or1", IP);
175     Tmp2 = BinaryOperator::createOr(Tmp2, Tmp1, "bswap.or2", IP);
176     V = BinaryOperator::createOr(Tmp4, Tmp3, "bswap.i32", IP);
177     break;
178   }
179   case 64: {
180     Value *Tmp8 = new ShiftInst(Instruction::Shl, V,
181                               ConstantInt::get(Type::UByteTy,56),"bswap.8", IP);
182     Value *Tmp7 = new ShiftInst(Instruction::Shl, V,
183                               ConstantInt::get(Type::UByteTy,40),"bswap.7", IP);
184     Value *Tmp6 = new ShiftInst(Instruction::Shl, V,
185                               ConstantInt::get(Type::UByteTy,24),"bswap.6", IP);
186     Value *Tmp5 = new ShiftInst(Instruction::Shl, V,
187                                 ConstantInt::get(Type::UByteTy,8),"bswap.5",IP);
188     Value *Tmp4 = new ShiftInst(Instruction::Shr, V,
189                                 ConstantInt::get(Type::UByteTy,8),"bswap.4",IP);
190     Value *Tmp3 = new ShiftInst(Instruction::Shr, V,
191                               ConstantInt::get(Type::UByteTy,24),"bswap.3", IP);
192     Value *Tmp2 = new ShiftInst(Instruction::Shr, V,
193                               ConstantInt::get(Type::UByteTy,40),"bswap.2", IP);
194     Value *Tmp1 = new ShiftInst(Instruction::Shr, V,
195                               ConstantInt::get(Type::UByteTy,56),"bswap.1", IP);
196     Tmp7 = BinaryOperator::createAnd(Tmp7,
197                              ConstantInt::get(Type::ULongTy, 
198                                0xFF000000000000ULL),
199                              "bswap.and7", IP);
200     Tmp6 = BinaryOperator::createAnd(Tmp6,
201                              ConstantInt::get(Type::ULongTy, 0xFF0000000000ULL),
202                              "bswap.and6", IP);
203     Tmp5 = BinaryOperator::createAnd(Tmp5,
204                              ConstantInt::get(Type::ULongTy, 0xFF00000000ULL),
205                              "bswap.and5", IP);
206     Tmp4 = BinaryOperator::createAnd(Tmp4,
207                              ConstantInt::get(Type::ULongTy, 0xFF000000ULL),
208                              "bswap.and4", IP);
209     Tmp3 = BinaryOperator::createAnd(Tmp3,
210                              ConstantInt::get(Type::ULongTy, 0xFF0000ULL),
211                              "bswap.and3", IP);
212     Tmp2 = BinaryOperator::createAnd(Tmp2,
213                              ConstantInt::get(Type::ULongTy, 0xFF00ULL),
214                              "bswap.and2", IP);
215     Tmp8 = BinaryOperator::createOr(Tmp8, Tmp7, "bswap.or1", IP);
216     Tmp6 = BinaryOperator::createOr(Tmp6, Tmp5, "bswap.or2", IP);
217     Tmp4 = BinaryOperator::createOr(Tmp4, Tmp3, "bswap.or3", IP);
218     Tmp2 = BinaryOperator::createOr(Tmp2, Tmp1, "bswap.or4", IP);
219     Tmp8 = BinaryOperator::createOr(Tmp8, Tmp6, "bswap.or5", IP);
220     Tmp4 = BinaryOperator::createOr(Tmp4, Tmp2, "bswap.or6", IP);
221     V = BinaryOperator::createOr(Tmp8, Tmp4, "bswap.i64", IP);
222     break;
223   }
224   }
225   
226   if (V->getType() != DestTy)
227     V = new CastInst(V, DestTy, V->getName(), IP);
228   return V;
229 }
230
231 /// LowerCTPOP - Emit the code to lower ctpop of V before the specified
232 /// instruction IP.
233 static Value *LowerCTPOP(Value *V, Instruction *IP) {
234   assert(V->getType()->isInteger() && "Can't ctpop a non-integer type!");
235
236   static const uint64_t MaskValues[6] = {
237     0x5555555555555555ULL, 0x3333333333333333ULL,
238     0x0F0F0F0F0F0F0F0FULL, 0x00FF00FF00FF00FFULL,
239     0x0000FFFF0000FFFFULL, 0x00000000FFFFFFFFULL
240   };
241
242   const Type *DestTy = V->getType();
243
244   // Force to unsigned so that the shift rights are logical.
245   if (DestTy->isSigned())
246     V = new CastInst(V, DestTy->getUnsignedVersion(), V->getName(), IP);
247
248   unsigned BitSize = V->getType()->getPrimitiveSizeInBits();
249   for (unsigned i = 1, ct = 0; i != BitSize; i <<= 1, ++ct) {
250     Value *MaskCst =
251       ConstantExpr::getCast(ConstantInt::get(Type::ULongTy, MaskValues[ct]),
252                                              V->getType());
253     Value *LHS = BinaryOperator::createAnd(V, MaskCst, "cppop.and1", IP);
254     Value *VShift = new ShiftInst(Instruction::Shr, V,
255                       ConstantInt::get(Type::UByteTy, i), "ctpop.sh", IP);
256     Value *RHS = BinaryOperator::createAnd(VShift, MaskCst, "cppop.and2", IP);
257     V = BinaryOperator::createAdd(LHS, RHS, "ctpop.step", IP);
258   }
259
260   if (V->getType() != DestTy)
261     V = new CastInst(V, DestTy, V->getName(), IP);
262   return V;
263 }
264
265 /// LowerCTLZ - Emit the code to lower ctlz of V before the specified
266 /// instruction IP.
267 static Value *LowerCTLZ(Value *V, Instruction *IP) {
268   const Type *DestTy = V->getType();
269
270   // Force to unsigned so that the shift rights are logical.
271   if (DestTy->isSigned())
272     V = new CastInst(V, DestTy->getUnsignedVersion(), V->getName(), IP);
273
274   unsigned BitSize = V->getType()->getPrimitiveSizeInBits();
275   for (unsigned i = 1; i != BitSize; i <<= 1) {
276     Value *ShVal = ConstantInt::get(Type::UByteTy, i);
277     ShVal = new ShiftInst(Instruction::Shr, V, ShVal, "ctlz.sh", IP);
278     V = BinaryOperator::createOr(V, ShVal, "ctlz.step", IP);
279   }
280
281   if (V->getType() != DestTy)
282     V = new CastInst(V, DestTy, V->getName(), IP);
283
284   V = BinaryOperator::createNot(V, "", IP);
285   return LowerCTPOP(V, IP);
286 }
287
288
289
290 void DefaultIntrinsicLowering::LowerIntrinsicCall(CallInst *CI) {
291   Function *Callee = CI->getCalledFunction();
292   assert(Callee && "Cannot lower an indirect call!");
293
294   switch (Callee->getIntrinsicID()) {
295   case Intrinsic::not_intrinsic:
296     std::cerr << "Cannot lower a call to a non-intrinsic function '"
297               << Callee->getName() << "'!\n";
298     abort();
299   default:
300     std::cerr << "Error: Code generator does not support intrinsic function '"
301               << Callee->getName() << "'!\n";
302     abort();
303
304     // The setjmp/longjmp intrinsics should only exist in the code if it was
305     // never optimized (ie, right out of the CFE), or if it has been hacked on
306     // by the lowerinvoke pass.  In both cases, the right thing to do is to
307     // convert the call to an explicit setjmp or longjmp call.
308   case Intrinsic::setjmp: {
309     static Function *SetjmpFCache = 0;
310     Value *V = ReplaceCallWith("setjmp", CI, CI->op_begin()+1, CI->op_end(),
311                                Type::IntTy, SetjmpFCache);
312     if (CI->getType() != Type::VoidTy)
313       CI->replaceAllUsesWith(V);
314     break;
315   }
316   case Intrinsic::sigsetjmp:
317      if (CI->getType() != Type::VoidTy)
318        CI->replaceAllUsesWith(Constant::getNullValue(CI->getType()));
319      break;
320
321   case Intrinsic::longjmp: {
322     static Function *LongjmpFCache = 0;
323     ReplaceCallWith("longjmp", CI, CI->op_begin()+1, CI->op_end(),
324                     Type::VoidTy, LongjmpFCache);
325     break;
326   }
327
328   case Intrinsic::siglongjmp: {
329     // Insert the call to abort
330     static Function *AbortFCache = 0;
331     ReplaceCallWith("abort", CI, CI->op_end(), CI->op_end(), Type::VoidTy,
332                     AbortFCache);
333     break;
334   }
335   case Intrinsic::ctpop_i8:
336   case Intrinsic::ctpop_i16:
337   case Intrinsic::ctpop_i32:
338   case Intrinsic::ctpop_i64:
339     CI->replaceAllUsesWith(LowerCTPOP(CI->getOperand(1), CI));
340     break;
341
342   case Intrinsic::bswap_i16:
343   case Intrinsic::bswap_i32:
344   case Intrinsic::bswap_i64:
345     CI->replaceAllUsesWith(LowerBSWAP(CI->getOperand(1), CI));
346     break;
347     
348   case Intrinsic::ctlz_i8:
349   case Intrinsic::ctlz_i16:
350   case Intrinsic::ctlz_i32:
351   case Intrinsic::ctlz_i64:
352     CI->replaceAllUsesWith(LowerCTLZ(CI->getOperand(1), CI));
353     break;
354
355   case Intrinsic::cttz_i8:
356   case Intrinsic::cttz_i16:
357   case Intrinsic::cttz_i32:
358   case Intrinsic::cttz_i64: {
359     // cttz(x) -> ctpop(~X & (X-1))
360     Value *Src = CI->getOperand(1);
361     Value *NotSrc = BinaryOperator::createNot(Src, Src->getName()+".not", CI);
362     Value *SrcM1  = ConstantInt::get(Src->getType(), 1);
363     SrcM1 = BinaryOperator::createSub(Src, SrcM1, "", CI);
364     Src = LowerCTPOP(BinaryOperator::createAnd(NotSrc, SrcM1, "", CI), CI);
365     CI->replaceAllUsesWith(Src);
366     break;
367   }
368
369   case Intrinsic::stacksave:
370   case Intrinsic::stackrestore: {
371     static bool Warned = false;
372     if (!Warned)
373       std::cerr << "WARNING: this target does not support the llvm.stack"
374        << (Callee->getIntrinsicID() == Intrinsic::stacksave ?
375            "save" : "restore") << " intrinsic.\n";
376     Warned = true;
377     if (Callee->getIntrinsicID() == Intrinsic::stacksave)
378       CI->replaceAllUsesWith(Constant::getNullValue(CI->getType()));
379     break;
380   }
381     
382   case Intrinsic::returnaddress:
383   case Intrinsic::frameaddress:
384     std::cerr << "WARNING: this target does not support the llvm."
385               << (Callee->getIntrinsicID() == Intrinsic::returnaddress ?
386                   "return" : "frame") << "address intrinsic.\n";
387     CI->replaceAllUsesWith(ConstantPointerNull::get(
388                                             cast<PointerType>(CI->getType())));
389     break;
390
391   case Intrinsic::prefetch:
392     break;    // Simply strip out prefetches on unsupported architectures
393
394   case Intrinsic::pcmarker:
395     break;    // Simply strip out pcmarker on unsupported architectures
396   case Intrinsic::readcyclecounter: {
397     std::cerr << "WARNING: this target does not support the llvm.readcyclecoun"
398               << "ter intrinsic.  It is being lowered to a constant 0\n";
399     CI->replaceAllUsesWith(ConstantInt::get(Type::ULongTy, 0));
400     break;
401   }
402
403   case Intrinsic::dbg_stoppoint:
404   case Intrinsic::dbg_region_start:
405   case Intrinsic::dbg_region_end:
406   case Intrinsic::dbg_func_start:
407   case Intrinsic::dbg_declare:
408     break;    // Simply strip out debugging intrinsics
409
410   case Intrinsic::memcpy_i32:
411   case Intrinsic::memcpy_i64: {
412     // The memcpy intrinsic take an extra alignment argument that the memcpy
413     // libc function does not.
414     static Function *MemcpyFCache = 0;
415     ReplaceCallWith("memcpy", CI, CI->op_begin()+1, CI->op_end()-1,
416                     (*(CI->op_begin()+1))->getType(), MemcpyFCache);
417     break;
418   }
419   case Intrinsic::memmove_i32: 
420   case Intrinsic::memmove_i64: {
421     // The memmove intrinsic take an extra alignment argument that the memmove
422     // libc function does not.
423     static Function *MemmoveFCache = 0;
424     ReplaceCallWith("memmove", CI, CI->op_begin()+1, CI->op_end()-1,
425                     (*(CI->op_begin()+1))->getType(), MemmoveFCache);
426     break;
427   }
428   case Intrinsic::memset_i32:
429   case Intrinsic::memset_i64: {
430     // The memset intrinsic take an extra alignment argument that the memset
431     // libc function does not.
432     static Function *MemsetFCache = 0;
433     ReplaceCallWith("memset", CI, CI->op_begin()+1, CI->op_end()-1,
434                     (*(CI->op_begin()+1))->getType(), MemsetFCache);
435     break;
436   }
437   case Intrinsic::isunordered_f32:
438   case Intrinsic::isunordered_f64: {
439     Value *L = CI->getOperand(1);
440     Value *R = CI->getOperand(2);
441
442     Value *LIsNan = new SetCondInst(Instruction::SetNE, L, L, "LIsNan", CI);
443     Value *RIsNan = new SetCondInst(Instruction::SetNE, R, R, "RIsNan", CI);
444     CI->replaceAllUsesWith(
445       BinaryOperator::create(Instruction::Or, LIsNan, RIsNan,
446                              "isunordered", CI));
447     break;
448   }
449   case Intrinsic::sqrt_f32:
450   case Intrinsic::sqrt_f64: {
451     static Function *sqrtFCache = 0;
452     static Function *sqrtfFCache = 0;
453     if(CI->getType() == Type::FloatTy)
454       ReplaceCallWith("sqrtf", CI, CI->op_begin()+1, CI->op_end(),
455                       Type::FloatTy, sqrtfFCache);
456     else
457       ReplaceCallWith("sqrt", CI, CI->op_begin()+1, CI->op_end(),
458                       Type::DoubleTy, sqrtFCache);
459     break;
460   }
461   }
462
463   assert(CI->use_empty() &&
464          "Lowering should have eliminated any uses of the intrinsic call!");
465   CI->eraseFromParent();
466 }