blob: d0fd6b4f64c033c1521d3f6f60c9658032f5eb8e [file] [log] [blame]
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001//===-- SelectionDAGBuild.cpp - Selection-DAG building --------------------===//
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 implements routines for translating from LLVM IR into SelectionDAG IR.
11//
12//===----------------------------------------------------------------------===//
13
14#define DEBUG_TYPE "isel"
15#include "SelectionDAGBuild.h"
16#include "llvm/ADT/BitVector.h"
Dan Gohman5b229802008-09-04 20:49:27 +000017#include "llvm/ADT/SmallSet.h"
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000018#include "llvm/Analysis/AliasAnalysis.h"
19#include "llvm/Constants.h"
20#include "llvm/CallingConv.h"
21#include "llvm/DerivedTypes.h"
22#include "llvm/Function.h"
23#include "llvm/GlobalVariable.h"
24#include "llvm/InlineAsm.h"
25#include "llvm/Instructions.h"
26#include "llvm/Intrinsics.h"
27#include "llvm/IntrinsicInst.h"
Bill Wendlingb2a42982008-11-06 02:29:10 +000028#include "llvm/Module.h"
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000029#include "llvm/CodeGen/FastISel.h"
30#include "llvm/CodeGen/GCStrategy.h"
31#include "llvm/CodeGen/GCMetadata.h"
32#include "llvm/CodeGen/MachineFunction.h"
33#include "llvm/CodeGen/MachineFrameInfo.h"
34#include "llvm/CodeGen/MachineInstrBuilder.h"
35#include "llvm/CodeGen/MachineJumpTableInfo.h"
36#include "llvm/CodeGen/MachineModuleInfo.h"
37#include "llvm/CodeGen/MachineRegisterInfo.h"
Bill Wendlingb2a42982008-11-06 02:29:10 +000038#include "llvm/CodeGen/PseudoSourceValue.h"
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000039#include "llvm/CodeGen/SelectionDAG.h"
Devang Patel83489bb2009-01-13 00:35:13 +000040#include "llvm/CodeGen/DwarfWriter.h"
41#include "llvm/Analysis/DebugInfo.h"
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000042#include "llvm/Target/TargetRegisterInfo.h"
43#include "llvm/Target/TargetData.h"
44#include "llvm/Target/TargetFrameInfo.h"
45#include "llvm/Target/TargetInstrInfo.h"
Dale Johannesen49de9822009-02-05 01:49:45 +000046#include "llvm/Target/TargetIntrinsicInfo.h"
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000047#include "llvm/Target/TargetLowering.h"
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000048#include "llvm/Target/TargetOptions.h"
49#include "llvm/Support/Compiler.h"
Mikhail Glushenkov2388a582009-01-16 07:02:28 +000050#include "llvm/Support/CommandLine.h"
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000051#include "llvm/Support/Debug.h"
52#include "llvm/Support/MathExtras.h"
Anton Korobeynikov56d245b2008-12-23 22:26:18 +000053#include "llvm/Support/raw_ostream.h"
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000054#include <algorithm>
55using namespace llvm;
56
Dale Johannesen601d3c02008-09-05 01:48:15 +000057/// LimitFloatPrecision - Generate low-precision inline sequences for
58/// some float libcalls (6, 8 or 12 bits).
59static unsigned LimitFloatPrecision;
60
61static cl::opt<unsigned, true>
62LimitFPPrecision("limit-float-precision",
63 cl::desc("Generate low-precision inline sequences "
64 "for some float libcalls"),
65 cl::location(LimitFloatPrecision),
66 cl::init(0));
67
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000068/// ComputeLinearIndex - Given an LLVM IR aggregate type and a sequence
Dan Gohman2c91d102009-01-06 22:53:52 +000069/// of insertvalue or extractvalue indices that identify a member, return
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000070/// the linearized index of the start of the member.
71///
72static unsigned ComputeLinearIndex(const TargetLowering &TLI, const Type *Ty,
73 const unsigned *Indices,
74 const unsigned *IndicesEnd,
75 unsigned CurIndex = 0) {
76 // Base case: We're done.
77 if (Indices && Indices == IndicesEnd)
78 return CurIndex;
79
80 // Given a struct type, recursively traverse the elements.
81 if (const StructType *STy = dyn_cast<StructType>(Ty)) {
82 for (StructType::element_iterator EB = STy->element_begin(),
83 EI = EB,
84 EE = STy->element_end();
85 EI != EE; ++EI) {
86 if (Indices && *Indices == unsigned(EI - EB))
87 return ComputeLinearIndex(TLI, *EI, Indices+1, IndicesEnd, CurIndex);
88 CurIndex = ComputeLinearIndex(TLI, *EI, 0, 0, CurIndex);
89 }
Dan Gohman2c91d102009-01-06 22:53:52 +000090 return CurIndex;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +000091 }
92 // Given an array type, recursively traverse the elements.
93 else if (const ArrayType *ATy = dyn_cast<ArrayType>(Ty)) {
94 const Type *EltTy = ATy->getElementType();
95 for (unsigned i = 0, e = ATy->getNumElements(); i != e; ++i) {
96 if (Indices && *Indices == i)
97 return ComputeLinearIndex(TLI, EltTy, Indices+1, IndicesEnd, CurIndex);
98 CurIndex = ComputeLinearIndex(TLI, EltTy, 0, 0, CurIndex);
99 }
Dan Gohman2c91d102009-01-06 22:53:52 +0000100 return CurIndex;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000101 }
102 // We haven't found the type we're looking for, so keep searching.
103 return CurIndex + 1;
104}
105
106/// ComputeValueVTs - Given an LLVM IR type, compute a sequence of
107/// MVTs that represent all the individual underlying
108/// non-aggregate types that comprise it.
109///
110/// If Offsets is non-null, it points to a vector to be filled in
111/// with the in-memory offsets of each of the individual values.
112///
113static void ComputeValueVTs(const TargetLowering &TLI, const Type *Ty,
114 SmallVectorImpl<MVT> &ValueVTs,
115 SmallVectorImpl<uint64_t> *Offsets = 0,
116 uint64_t StartingOffset = 0) {
117 // Given a struct type, recursively traverse the elements.
118 if (const StructType *STy = dyn_cast<StructType>(Ty)) {
119 const StructLayout *SL = TLI.getTargetData()->getStructLayout(STy);
120 for (StructType::element_iterator EB = STy->element_begin(),
121 EI = EB,
122 EE = STy->element_end();
123 EI != EE; ++EI)
124 ComputeValueVTs(TLI, *EI, ValueVTs, Offsets,
125 StartingOffset + SL->getElementOffset(EI - EB));
126 return;
127 }
128 // Given an array type, recursively traverse the elements.
129 if (const ArrayType *ATy = dyn_cast<ArrayType>(Ty)) {
130 const Type *EltTy = ATy->getElementType();
Duncan Sandsceb4d1a2009-01-12 20:38:59 +0000131 uint64_t EltSize = TLI.getTargetData()->getTypePaddedSize(EltTy);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000132 for (unsigned i = 0, e = ATy->getNumElements(); i != e; ++i)
133 ComputeValueVTs(TLI, EltTy, ValueVTs, Offsets,
134 StartingOffset + i * EltSize);
135 return;
136 }
Dan Gohman5e5558b2009-04-23 22:50:03 +0000137 // Interpret void as zero return values.
138 if (Ty == Type::VoidTy)
139 return;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000140 // Base case: we can get an MVT for this LLVM IR type.
141 ValueVTs.push_back(TLI.getValueType(Ty));
142 if (Offsets)
143 Offsets->push_back(StartingOffset);
144}
145
Dan Gohman2a7c6712008-09-03 23:18:39 +0000146namespace llvm {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000147 /// RegsForValue - This struct represents the registers (physical or virtual)
148 /// that a particular set of values is assigned, and the type information about
149 /// the value. The most common situation is to represent one value at a time,
150 /// but struct or array values are handled element-wise as multiple values.
151 /// The splitting of aggregates is performed recursively, so that we never
152 /// have aggregate-typed registers. The values at this point do not necessarily
153 /// have legal types, so each value may require one or more registers of some
154 /// legal type.
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000155 ///
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000156 struct VISIBILITY_HIDDEN RegsForValue {
157 /// TLI - The TargetLowering object.
158 ///
159 const TargetLowering *TLI;
160
161 /// ValueVTs - The value types of the values, which may not be legal, and
162 /// may need be promoted or synthesized from one or more registers.
163 ///
164 SmallVector<MVT, 4> ValueVTs;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000165
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000166 /// RegVTs - The value types of the registers. This is the same size as
167 /// ValueVTs and it records, for each value, what the type of the assigned
168 /// register or registers are. (Individual values are never synthesized
169 /// from more than one type of register.)
170 ///
171 /// With virtual registers, the contents of RegVTs is redundant with TLI's
172 /// getRegisterType member function, however when with physical registers
173 /// it is necessary to have a separate record of the types.
174 ///
175 SmallVector<MVT, 4> RegVTs;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000176
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000177 /// Regs - This list holds the registers assigned to the values.
178 /// Each legal or promoted value requires one register, and each
179 /// expanded value requires multiple registers.
180 ///
181 SmallVector<unsigned, 4> Regs;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000182
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000183 RegsForValue() : TLI(0) {}
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000184
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000185 RegsForValue(const TargetLowering &tli,
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000186 const SmallVector<unsigned, 4> &regs,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000187 MVT regvt, MVT valuevt)
188 : TLI(&tli), ValueVTs(1, valuevt), RegVTs(1, regvt), Regs(regs) {}
189 RegsForValue(const TargetLowering &tli,
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000190 const SmallVector<unsigned, 4> &regs,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000191 const SmallVector<MVT, 4> &regvts,
192 const SmallVector<MVT, 4> &valuevts)
193 : TLI(&tli), ValueVTs(valuevts), RegVTs(regvts), Regs(regs) {}
194 RegsForValue(const TargetLowering &tli,
195 unsigned Reg, const Type *Ty) : TLI(&tli) {
196 ComputeValueVTs(tli, Ty, ValueVTs);
197
198 for (unsigned Value = 0, e = ValueVTs.size(); Value != e; ++Value) {
199 MVT ValueVT = ValueVTs[Value];
200 unsigned NumRegs = TLI->getNumRegisters(ValueVT);
201 MVT RegisterVT = TLI->getRegisterType(ValueVT);
202 for (unsigned i = 0; i != NumRegs; ++i)
203 Regs.push_back(Reg + i);
204 RegVTs.push_back(RegisterVT);
205 Reg += NumRegs;
206 }
207 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000208
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000209 /// append - Add the specified values to this one.
210 void append(const RegsForValue &RHS) {
211 TLI = RHS.TLI;
212 ValueVTs.append(RHS.ValueVTs.begin(), RHS.ValueVTs.end());
213 RegVTs.append(RHS.RegVTs.begin(), RHS.RegVTs.end());
214 Regs.append(RHS.Regs.begin(), RHS.Regs.end());
215 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000216
217
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000218 /// getCopyFromRegs - Emit a series of CopyFromReg nodes that copies from
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000219 /// this value and returns the result as a ValueVTs value. This uses
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000220 /// Chain/Flag as the input and updates them for the output Chain/Flag.
221 /// If the Flag pointer is NULL, no flag is used.
Dale Johannesen66978ee2009-01-31 02:22:37 +0000222 SDValue getCopyFromRegs(SelectionDAG &DAG, DebugLoc dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000223 SDValue &Chain, SDValue *Flag) const;
224
225 /// getCopyToRegs - Emit a series of CopyToReg nodes that copies the
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000226 /// specified value into the registers specified by this object. This uses
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000227 /// Chain/Flag as the input and updates them for the output Chain/Flag.
228 /// If the Flag pointer is NULL, no flag is used.
Dale Johannesen66978ee2009-01-31 02:22:37 +0000229 void getCopyToRegs(SDValue Val, SelectionDAG &DAG, DebugLoc dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000230 SDValue &Chain, SDValue *Flag) const;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000231
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000232 /// AddInlineAsmOperands - Add this value to the specified inlineasm node
Evan Cheng697cbbf2009-03-20 18:03:34 +0000233 /// operand list. This adds the code marker, matching input operand index
234 /// (if applicable), and includes the number of values added into it.
235 void AddInlineAsmOperands(unsigned Code,
236 bool HasMatching, unsigned MatchingIdx,
237 SelectionDAG &DAG, std::vector<SDValue> &Ops) const;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000238 };
239}
240
241/// isUsedOutsideOfDefiningBlock - Return true if this instruction is used by
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000242/// PHI nodes or outside of the basic block that defines it, or used by a
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000243/// switch or atomic instruction, which may expand to multiple basic blocks.
244static bool isUsedOutsideOfDefiningBlock(Instruction *I) {
245 if (isa<PHINode>(I)) return true;
246 BasicBlock *BB = I->getParent();
247 for (Value::use_iterator UI = I->use_begin(), E = I->use_end(); UI != E; ++UI)
Dan Gohman8e5c0da2009-04-09 02:33:36 +0000248 if (cast<Instruction>(*UI)->getParent() != BB || isa<PHINode>(*UI))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000249 return true;
250 return false;
251}
252
253/// isOnlyUsedInEntryBlock - If the specified argument is only used in the
254/// entry block, return true. This includes arguments used by switches, since
255/// the switch may expand into multiple basic blocks.
256static bool isOnlyUsedInEntryBlock(Argument *A, bool EnableFastISel) {
257 // With FastISel active, we may be splitting blocks, so force creation
258 // of virtual registers for all non-dead arguments.
Dan Gohman33134c42008-09-25 17:05:24 +0000259 // Don't force virtual registers for byval arguments though, because
260 // fast-isel can't handle those in all cases.
261 if (EnableFastISel && !A->hasByValAttr())
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000262 return A->use_empty();
263
264 BasicBlock *Entry = A->getParent()->begin();
265 for (Value::use_iterator UI = A->use_begin(), E = A->use_end(); UI != E; ++UI)
266 if (cast<Instruction>(*UI)->getParent() != Entry || isa<SwitchInst>(*UI))
267 return false; // Use not in entry block.
268 return true;
269}
270
271FunctionLoweringInfo::FunctionLoweringInfo(TargetLowering &tli)
272 : TLI(tli) {
273}
274
275void FunctionLoweringInfo::set(Function &fn, MachineFunction &mf,
Bill Wendling6a8a0d72009-02-03 02:20:52 +0000276 SelectionDAG &DAG,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000277 bool EnableFastISel) {
278 Fn = &fn;
279 MF = &mf;
280 RegInfo = &MF->getRegInfo();
281
282 // Create a vreg for each argument register that is not dead and is used
283 // outside of the entry block for the function.
284 for (Function::arg_iterator AI = Fn->arg_begin(), E = Fn->arg_end();
285 AI != E; ++AI)
286 if (!isOnlyUsedInEntryBlock(AI, EnableFastISel))
287 InitializeRegForValue(AI);
288
289 // Initialize the mapping of values to registers. This is only set up for
290 // instruction values that are used outside of the block that defines
291 // them.
292 Function::iterator BB = Fn->begin(), EB = Fn->end();
293 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I)
294 if (AllocaInst *AI = dyn_cast<AllocaInst>(I))
295 if (ConstantInt *CUI = dyn_cast<ConstantInt>(AI->getArraySize())) {
296 const Type *Ty = AI->getAllocatedType();
Duncan Sandsceb4d1a2009-01-12 20:38:59 +0000297 uint64_t TySize = TLI.getTargetData()->getTypePaddedSize(Ty);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000298 unsigned Align =
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000299 std::max((unsigned)TLI.getTargetData()->getPrefTypeAlignment(Ty),
300 AI->getAlignment());
301
302 TySize *= CUI->getZExtValue(); // Get total allocated size.
303 if (TySize == 0) TySize = 1; // Don't create zero-sized stack objects.
304 StaticAllocaMap[AI] =
305 MF->getFrameInfo()->CreateStackObject(TySize, Align);
306 }
307
308 for (; BB != EB; ++BB)
309 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I)
310 if (!I->use_empty() && isUsedOutsideOfDefiningBlock(I))
311 if (!isa<AllocaInst>(I) ||
312 !StaticAllocaMap.count(cast<AllocaInst>(I)))
313 InitializeRegForValue(I);
314
315 // Create an initial MachineBasicBlock for each LLVM BasicBlock in F. This
316 // also creates the initial PHI MachineInstrs, though none of the input
317 // operands are populated.
318 for (BB = Fn->begin(), EB = Fn->end(); BB != EB; ++BB) {
319 MachineBasicBlock *MBB = mf.CreateMachineBasicBlock(BB);
320 MBBMap[BB] = MBB;
321 MF->push_back(MBB);
322
323 // Create Machine PHI nodes for LLVM PHI nodes, lowering them as
324 // appropriate.
325 PHINode *PN;
Bill Wendling6a8a0d72009-02-03 02:20:52 +0000326 DebugLoc DL;
327 for (BasicBlock::iterator
328 I = BB->begin(), E = BB->end(); I != E; ++I) {
329 if (CallInst *CI = dyn_cast<CallInst>(I)) {
330 if (Function *F = CI->getCalledFunction()) {
331 switch (F->getIntrinsicID()) {
332 default: break;
333 case Intrinsic::dbg_stoppoint: {
Bill Wendling6a8a0d72009-02-03 02:20:52 +0000334 DbgStopPointInst *SPI = cast<DbgStopPointInst>(I);
335
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +0000336 if (DIDescriptor::ValidDebugInfo(SPI->getContext(),
337 CodeGenOpt::Default)) {
Bill Wendling6a8a0d72009-02-03 02:20:52 +0000338 DICompileUnit CU(cast<GlobalVariable>(SPI->getContext()));
Argyrios Kyrtzidisa26eae62009-04-30 23:22:31 +0000339 unsigned idx = MF->getOrCreateDebugLocID(CU.getGV(),
Scott Michelfdc40a02009-02-17 22:15:04 +0000340 SPI->getLine(),
Bill Wendling6a8a0d72009-02-03 02:20:52 +0000341 SPI->getColumn());
342 DL = DebugLoc::get(idx);
343 }
344
345 break;
346 }
347 case Intrinsic::dbg_func_start: {
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +0000348 DbgFuncStartInst *FSI = cast<DbgFuncStartInst>(I);
349 Value *SP = FSI->getSubprogram();
Bill Wendling6a8a0d72009-02-03 02:20:52 +0000350
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +0000351 if (DIDescriptor::ValidDebugInfo(SP, CodeGenOpt::Default)) {
352 DISubprogram Subprogram(cast<GlobalVariable>(SP));
353 DICompileUnit CU(Subprogram.getCompileUnit());
354 unsigned Line = Subprogram.getLineNumber();
355 DL = DebugLoc::get(MF->getOrCreateDebugLocID(CU.getGV(),
356 Line, 0));
Bill Wendling6a8a0d72009-02-03 02:20:52 +0000357 }
Scott Michelfdc40a02009-02-17 22:15:04 +0000358
Bill Wendling6a8a0d72009-02-03 02:20:52 +0000359 break;
360 }
361 }
362 }
363 }
364
365 PN = dyn_cast<PHINode>(I);
366 if (!PN || PN->use_empty()) continue;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000367
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000368 unsigned PHIReg = ValueMap[PN];
369 assert(PHIReg && "PHI node does not have an assigned virtual register!");
370
371 SmallVector<MVT, 4> ValueVTs;
372 ComputeValueVTs(TLI, PN->getType(), ValueVTs);
373 for (unsigned vti = 0, vte = ValueVTs.size(); vti != vte; ++vti) {
374 MVT VT = ValueVTs[vti];
375 unsigned NumRegisters = TLI.getNumRegisters(VT);
Dan Gohman6448d912008-09-04 15:39:15 +0000376 const TargetInstrInfo *TII = MF->getTarget().getInstrInfo();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000377 for (unsigned i = 0; i != NumRegisters; ++i)
Bill Wendling6a8a0d72009-02-03 02:20:52 +0000378 BuildMI(MBB, DL, TII->get(TargetInstrInfo::PHI), PHIReg + i);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000379 PHIReg += NumRegisters;
380 }
381 }
382 }
383}
384
385unsigned FunctionLoweringInfo::MakeReg(MVT VT) {
386 return RegInfo->createVirtualRegister(TLI.getRegClassFor(VT));
387}
388
389/// CreateRegForValue - Allocate the appropriate number of virtual registers of
390/// the correctly promoted or expanded types. Assign these registers
391/// consecutive vreg numbers and return the first assigned number.
392///
393/// In the case that the given value has struct or array type, this function
394/// will assign registers for each member or element.
395///
396unsigned FunctionLoweringInfo::CreateRegForValue(const Value *V) {
397 SmallVector<MVT, 4> ValueVTs;
398 ComputeValueVTs(TLI, V->getType(), ValueVTs);
399
400 unsigned FirstReg = 0;
401 for (unsigned Value = 0, e = ValueVTs.size(); Value != e; ++Value) {
402 MVT ValueVT = ValueVTs[Value];
403 MVT RegisterVT = TLI.getRegisterType(ValueVT);
404
405 unsigned NumRegs = TLI.getNumRegisters(ValueVT);
406 for (unsigned i = 0; i != NumRegs; ++i) {
407 unsigned R = MakeReg(RegisterVT);
408 if (!FirstReg) FirstReg = R;
409 }
410 }
411 return FirstReg;
412}
413
414/// getCopyFromParts - Create a value that contains the specified legal parts
415/// combined into the value they represent. If the parts combine to a type
416/// larger then ValueVT then AssertOp can be used to specify whether the extra
417/// bits are known to be zero (ISD::AssertZext) or sign extended from ValueVT
418/// (ISD::AssertSext).
Dale Johannesen66978ee2009-01-31 02:22:37 +0000419static SDValue getCopyFromParts(SelectionDAG &DAG, DebugLoc dl,
420 const SDValue *Parts,
Duncan Sands0b3aa262009-01-28 14:42:54 +0000421 unsigned NumParts, MVT PartVT, MVT ValueVT,
422 ISD::NodeType AssertOp = ISD::DELETED_NODE) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000423 assert(NumParts > 0 && "No parts to assemble!");
Dan Gohmane9530ec2009-01-15 16:58:17 +0000424 const TargetLowering &TLI = DAG.getTargetLoweringInfo();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000425 SDValue Val = Parts[0];
426
427 if (NumParts > 1) {
428 // Assemble the value from multiple parts.
429 if (!ValueVT.isVector()) {
430 unsigned PartBits = PartVT.getSizeInBits();
431 unsigned ValueBits = ValueVT.getSizeInBits();
432
433 // Assemble the power of 2 part.
434 unsigned RoundParts = NumParts & (NumParts - 1) ?
435 1 << Log2_32(NumParts) : NumParts;
436 unsigned RoundBits = PartBits * RoundParts;
437 MVT RoundVT = RoundBits == ValueBits ?
438 ValueVT : MVT::getIntegerVT(RoundBits);
439 SDValue Lo, Hi;
440
Duncan Sandsd22ec5f2008-10-29 14:22:20 +0000441 MVT HalfVT = ValueVT.isInteger() ?
442 MVT::getIntegerVT(RoundBits/2) :
443 MVT::getFloatingPointVT(RoundBits/2);
444
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000445 if (RoundParts > 2) {
Dale Johannesen66978ee2009-01-31 02:22:37 +0000446 Lo = getCopyFromParts(DAG, dl, Parts, RoundParts/2, PartVT, HalfVT);
447 Hi = getCopyFromParts(DAG, dl, Parts+RoundParts/2, RoundParts/2,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000448 PartVT, HalfVT);
449 } else {
Dale Johannesen66978ee2009-01-31 02:22:37 +0000450 Lo = DAG.getNode(ISD::BIT_CONVERT, dl, HalfVT, Parts[0]);
451 Hi = DAG.getNode(ISD::BIT_CONVERT, dl, HalfVT, Parts[1]);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000452 }
453 if (TLI.isBigEndian())
454 std::swap(Lo, Hi);
Dale Johannesen66978ee2009-01-31 02:22:37 +0000455 Val = DAG.getNode(ISD::BUILD_PAIR, dl, RoundVT, Lo, Hi);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000456
457 if (RoundParts < NumParts) {
458 // Assemble the trailing non-power-of-2 part.
459 unsigned OddParts = NumParts - RoundParts;
460 MVT OddVT = MVT::getIntegerVT(OddParts * PartBits);
Scott Michelfdc40a02009-02-17 22:15:04 +0000461 Hi = getCopyFromParts(DAG, dl,
Dale Johannesen66978ee2009-01-31 02:22:37 +0000462 Parts+RoundParts, OddParts, PartVT, OddVT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000463
464 // Combine the round and odd parts.
465 Lo = Val;
466 if (TLI.isBigEndian())
467 std::swap(Lo, Hi);
468 MVT TotalVT = MVT::getIntegerVT(NumParts * PartBits);
Dale Johannesen66978ee2009-01-31 02:22:37 +0000469 Hi = DAG.getNode(ISD::ANY_EXTEND, dl, TotalVT, Hi);
470 Hi = DAG.getNode(ISD::SHL, dl, TotalVT, Hi,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000471 DAG.getConstant(Lo.getValueType().getSizeInBits(),
Duncan Sands92abc622009-01-31 15:50:11 +0000472 TLI.getPointerTy()));
Dale Johannesen66978ee2009-01-31 02:22:37 +0000473 Lo = DAG.getNode(ISD::ZERO_EXTEND, dl, TotalVT, Lo);
474 Val = DAG.getNode(ISD::OR, dl, TotalVT, Lo, Hi);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000475 }
476 } else {
477 // Handle a multi-element vector.
478 MVT IntermediateVT, RegisterVT;
479 unsigned NumIntermediates;
480 unsigned NumRegs =
481 TLI.getVectorTypeBreakdown(ValueVT, IntermediateVT, NumIntermediates,
482 RegisterVT);
483 assert(NumRegs == NumParts && "Part count doesn't match vector breakdown!");
484 NumParts = NumRegs; // Silence a compiler warning.
485 assert(RegisterVT == PartVT && "Part type doesn't match vector breakdown!");
486 assert(RegisterVT == Parts[0].getValueType() &&
487 "Part type doesn't match part!");
488
489 // Assemble the parts into intermediate operands.
490 SmallVector<SDValue, 8> Ops(NumIntermediates);
491 if (NumIntermediates == NumParts) {
492 // If the register was not expanded, truncate or copy the value,
493 // as appropriate.
494 for (unsigned i = 0; i != NumParts; ++i)
Dale Johannesen66978ee2009-01-31 02:22:37 +0000495 Ops[i] = getCopyFromParts(DAG, dl, &Parts[i], 1,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000496 PartVT, IntermediateVT);
497 } else if (NumParts > 0) {
498 // If the intermediate type was expanded, build the intermediate operands
499 // from the parts.
500 assert(NumParts % NumIntermediates == 0 &&
501 "Must expand into a divisible number of parts!");
502 unsigned Factor = NumParts / NumIntermediates;
503 for (unsigned i = 0; i != NumIntermediates; ++i)
Dale Johannesen66978ee2009-01-31 02:22:37 +0000504 Ops[i] = getCopyFromParts(DAG, dl, &Parts[i * Factor], Factor,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000505 PartVT, IntermediateVT);
506 }
507
508 // Build a vector with BUILD_VECTOR or CONCAT_VECTORS from the intermediate
509 // operands.
510 Val = DAG.getNode(IntermediateVT.isVector() ?
Dale Johannesen66978ee2009-01-31 02:22:37 +0000511 ISD::CONCAT_VECTORS : ISD::BUILD_VECTOR, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000512 ValueVT, &Ops[0], NumIntermediates);
513 }
514 }
515
516 // There is now one part, held in Val. Correct it to match ValueVT.
517 PartVT = Val.getValueType();
518
519 if (PartVT == ValueVT)
520 return Val;
521
522 if (PartVT.isVector()) {
523 assert(ValueVT.isVector() && "Unknown vector conversion!");
Dale Johannesen66978ee2009-01-31 02:22:37 +0000524 return DAG.getNode(ISD::BIT_CONVERT, dl, ValueVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000525 }
526
527 if (ValueVT.isVector()) {
528 assert(ValueVT.getVectorElementType() == PartVT &&
529 ValueVT.getVectorNumElements() == 1 &&
530 "Only trivial scalar-to-vector conversions should get here!");
Evan Chenga87008d2009-02-25 22:49:59 +0000531 return DAG.getNode(ISD::BUILD_VECTOR, dl, ValueVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000532 }
533
534 if (PartVT.isInteger() &&
535 ValueVT.isInteger()) {
536 if (ValueVT.bitsLT(PartVT)) {
537 // For a truncate, see if we have any information to
538 // indicate whether the truncated bits will always be
539 // zero or sign-extension.
540 if (AssertOp != ISD::DELETED_NODE)
Dale Johannesen66978ee2009-01-31 02:22:37 +0000541 Val = DAG.getNode(AssertOp, dl, PartVT, Val,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000542 DAG.getValueType(ValueVT));
Dale Johannesen66978ee2009-01-31 02:22:37 +0000543 return DAG.getNode(ISD::TRUNCATE, dl, ValueVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000544 } else {
Dale Johannesen66978ee2009-01-31 02:22:37 +0000545 return DAG.getNode(ISD::ANY_EXTEND, dl, ValueVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000546 }
547 }
548
549 if (PartVT.isFloatingPoint() && ValueVT.isFloatingPoint()) {
550 if (ValueVT.bitsLT(Val.getValueType()))
551 // FP_ROUND's are always exact here.
Dale Johannesen66978ee2009-01-31 02:22:37 +0000552 return DAG.getNode(ISD::FP_ROUND, dl, ValueVT, Val,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000553 DAG.getIntPtrConstant(1));
Dale Johannesen66978ee2009-01-31 02:22:37 +0000554 return DAG.getNode(ISD::FP_EXTEND, dl, ValueVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000555 }
556
557 if (PartVT.getSizeInBits() == ValueVT.getSizeInBits())
Dale Johannesen66978ee2009-01-31 02:22:37 +0000558 return DAG.getNode(ISD::BIT_CONVERT, dl, ValueVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000559
560 assert(0 && "Unknown mismatch!");
561 return SDValue();
562}
563
564/// getCopyToParts - Create a series of nodes that contain the specified value
565/// split into legal parts. If the parts contain more bits than Val, then, for
566/// integers, ExtendKind can be used to specify how to generate the extra bits.
Dale Johannesen66978ee2009-01-31 02:22:37 +0000567static void getCopyToParts(SelectionDAG &DAG, DebugLoc dl, SDValue Val,
Chris Lattner01426e12008-10-21 00:45:36 +0000568 SDValue *Parts, unsigned NumParts, MVT PartVT,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000569 ISD::NodeType ExtendKind = ISD::ANY_EXTEND) {
Dan Gohmane9530ec2009-01-15 16:58:17 +0000570 const TargetLowering &TLI = DAG.getTargetLoweringInfo();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000571 MVT PtrVT = TLI.getPointerTy();
572 MVT ValueVT = Val.getValueType();
573 unsigned PartBits = PartVT.getSizeInBits();
Dale Johannesen8a36f502009-02-25 22:39:13 +0000574 unsigned OrigNumParts = NumParts;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000575 assert(TLI.isTypeLegal(PartVT) && "Copying to an illegal type!");
576
577 if (!NumParts)
578 return;
579
580 if (!ValueVT.isVector()) {
581 if (PartVT == ValueVT) {
582 assert(NumParts == 1 && "No-op copy with multiple parts!");
583 Parts[0] = Val;
584 return;
585 }
586
587 if (NumParts * PartBits > ValueVT.getSizeInBits()) {
588 // If the parts cover more bits than the value has, promote the value.
589 if (PartVT.isFloatingPoint() && ValueVT.isFloatingPoint()) {
590 assert(NumParts == 1 && "Do not know what to promote to!");
Dale Johannesen66978ee2009-01-31 02:22:37 +0000591 Val = DAG.getNode(ISD::FP_EXTEND, dl, PartVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000592 } else if (PartVT.isInteger() && ValueVT.isInteger()) {
593 ValueVT = MVT::getIntegerVT(NumParts * PartBits);
Dale Johannesen66978ee2009-01-31 02:22:37 +0000594 Val = DAG.getNode(ExtendKind, dl, ValueVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000595 } else {
596 assert(0 && "Unknown mismatch!");
597 }
598 } else if (PartBits == ValueVT.getSizeInBits()) {
599 // Different types of the same size.
600 assert(NumParts == 1 && PartVT != ValueVT);
Dale Johannesen66978ee2009-01-31 02:22:37 +0000601 Val = DAG.getNode(ISD::BIT_CONVERT, dl, PartVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000602 } else if (NumParts * PartBits < ValueVT.getSizeInBits()) {
603 // If the parts cover less bits than value has, truncate the value.
604 if (PartVT.isInteger() && ValueVT.isInteger()) {
605 ValueVT = MVT::getIntegerVT(NumParts * PartBits);
Dale Johannesen66978ee2009-01-31 02:22:37 +0000606 Val = DAG.getNode(ISD::TRUNCATE, dl, ValueVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000607 } else {
608 assert(0 && "Unknown mismatch!");
609 }
610 }
611
612 // The value may have changed - recompute ValueVT.
613 ValueVT = Val.getValueType();
614 assert(NumParts * PartBits == ValueVT.getSizeInBits() &&
615 "Failed to tile the value with PartVT!");
616
617 if (NumParts == 1) {
618 assert(PartVT == ValueVT && "Type conversion failed!");
619 Parts[0] = Val;
620 return;
621 }
622
623 // Expand the value into multiple parts.
624 if (NumParts & (NumParts - 1)) {
625 // The number of parts is not a power of 2. Split off and copy the tail.
626 assert(PartVT.isInteger() && ValueVT.isInteger() &&
627 "Do not know what to expand to!");
628 unsigned RoundParts = 1 << Log2_32(NumParts);
629 unsigned RoundBits = RoundParts * PartBits;
630 unsigned OddParts = NumParts - RoundParts;
Dale Johannesen66978ee2009-01-31 02:22:37 +0000631 SDValue OddVal = DAG.getNode(ISD::SRL, dl, ValueVT, Val,
Duncan Sands0b3aa262009-01-28 14:42:54 +0000632 DAG.getConstant(RoundBits,
Duncan Sands92abc622009-01-31 15:50:11 +0000633 TLI.getPointerTy()));
Dale Johannesen66978ee2009-01-31 02:22:37 +0000634 getCopyToParts(DAG, dl, OddVal, Parts + RoundParts, OddParts, PartVT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000635 if (TLI.isBigEndian())
636 // The odd parts were reversed by getCopyToParts - unreverse them.
637 std::reverse(Parts + RoundParts, Parts + NumParts);
638 NumParts = RoundParts;
639 ValueVT = MVT::getIntegerVT(NumParts * PartBits);
Dale Johannesen66978ee2009-01-31 02:22:37 +0000640 Val = DAG.getNode(ISD::TRUNCATE, dl, ValueVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000641 }
642
643 // The number of parts is a power of 2. Repeatedly bisect the value using
644 // EXTRACT_ELEMENT.
Scott Michelfdc40a02009-02-17 22:15:04 +0000645 Parts[0] = DAG.getNode(ISD::BIT_CONVERT, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000646 MVT::getIntegerVT(ValueVT.getSizeInBits()),
647 Val);
648 for (unsigned StepSize = NumParts; StepSize > 1; StepSize /= 2) {
649 for (unsigned i = 0; i < NumParts; i += StepSize) {
650 unsigned ThisBits = StepSize * PartBits / 2;
651 MVT ThisVT = MVT::getIntegerVT (ThisBits);
652 SDValue &Part0 = Parts[i];
653 SDValue &Part1 = Parts[i+StepSize/2];
654
Scott Michelfdc40a02009-02-17 22:15:04 +0000655 Part1 = DAG.getNode(ISD::EXTRACT_ELEMENT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +0000656 ThisVT, Part0,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000657 DAG.getConstant(1, PtrVT));
Scott Michelfdc40a02009-02-17 22:15:04 +0000658 Part0 = DAG.getNode(ISD::EXTRACT_ELEMENT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +0000659 ThisVT, Part0,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000660 DAG.getConstant(0, PtrVT));
661
662 if (ThisBits == PartBits && ThisVT != PartVT) {
Scott Michelfdc40a02009-02-17 22:15:04 +0000663 Part0 = DAG.getNode(ISD::BIT_CONVERT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +0000664 PartVT, Part0);
Scott Michelfdc40a02009-02-17 22:15:04 +0000665 Part1 = DAG.getNode(ISD::BIT_CONVERT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +0000666 PartVT, Part1);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000667 }
668 }
669 }
670
671 if (TLI.isBigEndian())
Dale Johannesen8a36f502009-02-25 22:39:13 +0000672 std::reverse(Parts, Parts + OrigNumParts);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000673
674 return;
675 }
676
677 // Vector ValueVT.
678 if (NumParts == 1) {
679 if (PartVT != ValueVT) {
680 if (PartVT.isVector()) {
Dale Johannesen66978ee2009-01-31 02:22:37 +0000681 Val = DAG.getNode(ISD::BIT_CONVERT, dl, PartVT, Val);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000682 } else {
683 assert(ValueVT.getVectorElementType() == PartVT &&
684 ValueVT.getVectorNumElements() == 1 &&
685 "Only trivial vector-to-scalar conversions should get here!");
Scott Michelfdc40a02009-02-17 22:15:04 +0000686 Val = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +0000687 PartVT, Val,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000688 DAG.getConstant(0, PtrVT));
689 }
690 }
691
692 Parts[0] = Val;
693 return;
694 }
695
696 // Handle a multi-element vector.
697 MVT IntermediateVT, RegisterVT;
698 unsigned NumIntermediates;
Dan Gohmane9530ec2009-01-15 16:58:17 +0000699 unsigned NumRegs = TLI
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000700 .getVectorTypeBreakdown(ValueVT, IntermediateVT, NumIntermediates,
701 RegisterVT);
702 unsigned NumElements = ValueVT.getVectorNumElements();
703
704 assert(NumRegs == NumParts && "Part count doesn't match vector breakdown!");
705 NumParts = NumRegs; // Silence a compiler warning.
706 assert(RegisterVT == PartVT && "Part type doesn't match vector breakdown!");
707
708 // Split the vector into intermediate operands.
709 SmallVector<SDValue, 8> Ops(NumIntermediates);
710 for (unsigned i = 0; i != NumIntermediates; ++i)
711 if (IntermediateVT.isVector())
Scott Michelfdc40a02009-02-17 22:15:04 +0000712 Ops[i] = DAG.getNode(ISD::EXTRACT_SUBVECTOR, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000713 IntermediateVT, Val,
714 DAG.getConstant(i * (NumElements / NumIntermediates),
715 PtrVT));
716 else
Scott Michelfdc40a02009-02-17 22:15:04 +0000717 Ops[i] = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl,
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000718 IntermediateVT, Val,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000719 DAG.getConstant(i, PtrVT));
720
721 // Split the intermediate operands into legal parts.
722 if (NumParts == NumIntermediates) {
723 // If the register was not expanded, promote or copy the value,
724 // as appropriate.
725 for (unsigned i = 0; i != NumParts; ++i)
Dale Johannesen66978ee2009-01-31 02:22:37 +0000726 getCopyToParts(DAG, dl, Ops[i], &Parts[i], 1, PartVT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000727 } else if (NumParts > 0) {
728 // If the intermediate type was expanded, split each the value into
729 // legal parts.
730 assert(NumParts % NumIntermediates == 0 &&
731 "Must expand into a divisible number of parts!");
732 unsigned Factor = NumParts / NumIntermediates;
733 for (unsigned i = 0; i != NumIntermediates; ++i)
Dale Johannesen66978ee2009-01-31 02:22:37 +0000734 getCopyToParts(DAG, dl, Ops[i], &Parts[i * Factor], Factor, PartVT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000735 }
736}
737
738
739void SelectionDAGLowering::init(GCFunctionInfo *gfi, AliasAnalysis &aa) {
740 AA = &aa;
741 GFI = gfi;
742 TD = DAG.getTarget().getTargetData();
743}
744
745/// clear - Clear out the curret SelectionDAG and the associated
746/// state and prepare this SelectionDAGLowering object to be used
747/// for a new block. This doesn't clear out information about
748/// additional blocks that are needed to complete switch lowering
749/// or PHI node updating; that information is cleared out as it is
750/// consumed.
751void SelectionDAGLowering::clear() {
752 NodeMap.clear();
753 PendingLoads.clear();
754 PendingExports.clear();
755 DAG.clear();
Bill Wendling8fcf1702009-02-06 21:36:23 +0000756 CurDebugLoc = DebugLoc::getUnknownLoc();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000757}
758
759/// getRoot - Return the current virtual root of the Selection DAG,
760/// flushing any PendingLoad items. This must be done before emitting
761/// a store or any other node that may need to be ordered after any
762/// prior load instructions.
763///
764SDValue SelectionDAGLowering::getRoot() {
765 if (PendingLoads.empty())
766 return DAG.getRoot();
767
768 if (PendingLoads.size() == 1) {
769 SDValue Root = PendingLoads[0];
770 DAG.setRoot(Root);
771 PendingLoads.clear();
772 return Root;
773 }
774
775 // Otherwise, we have to make a token factor node.
Dale Johannesen66978ee2009-01-31 02:22:37 +0000776 SDValue Root = DAG.getNode(ISD::TokenFactor, getCurDebugLoc(), MVT::Other,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000777 &PendingLoads[0], PendingLoads.size());
778 PendingLoads.clear();
779 DAG.setRoot(Root);
780 return Root;
781}
782
783/// getControlRoot - Similar to getRoot, but instead of flushing all the
784/// PendingLoad items, flush all the PendingExports items. It is necessary
785/// to do this before emitting a terminator instruction.
786///
787SDValue SelectionDAGLowering::getControlRoot() {
788 SDValue Root = DAG.getRoot();
789
790 if (PendingExports.empty())
791 return Root;
792
793 // Turn all of the CopyToReg chains into one factored node.
794 if (Root.getOpcode() != ISD::EntryToken) {
795 unsigned i = 0, e = PendingExports.size();
796 for (; i != e; ++i) {
797 assert(PendingExports[i].getNode()->getNumOperands() > 1);
798 if (PendingExports[i].getNode()->getOperand(0) == Root)
799 break; // Don't add the root if we already indirectly depend on it.
800 }
801
802 if (i == e)
803 PendingExports.push_back(Root);
804 }
805
Dale Johannesen66978ee2009-01-31 02:22:37 +0000806 Root = DAG.getNode(ISD::TokenFactor, getCurDebugLoc(), MVT::Other,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000807 &PendingExports[0],
808 PendingExports.size());
809 PendingExports.clear();
810 DAG.setRoot(Root);
811 return Root;
812}
813
814void SelectionDAGLowering::visit(Instruction &I) {
815 visit(I.getOpcode(), I);
816}
817
818void SelectionDAGLowering::visit(unsigned Opcode, User &I) {
819 // Note: this doesn't use InstVisitor, because it has to work with
820 // ConstantExpr's in addition to instructions.
821 switch (Opcode) {
822 default: assert(0 && "Unknown instruction type encountered!");
823 abort();
824 // Build the switch statement using the Instruction.def file.
825#define HANDLE_INST(NUM, OPCODE, CLASS) \
826 case Instruction::OPCODE:return visit##OPCODE((CLASS&)I);
827#include "llvm/Instruction.def"
828 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000829}
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000830
831void SelectionDAGLowering::visitAdd(User &I) {
832 if (I.getType()->isFPOrFPVector())
833 visitBinary(I, ISD::FADD);
834 else
835 visitBinary(I, ISD::ADD);
836}
837
838void SelectionDAGLowering::visitMul(User &I) {
839 if (I.getType()->isFPOrFPVector())
840 visitBinary(I, ISD::FMUL);
841 else
842 visitBinary(I, ISD::MUL);
843}
844
845SDValue SelectionDAGLowering::getValue(const Value *V) {
846 SDValue &N = NodeMap[V];
847 if (N.getNode()) return N;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000848
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000849 if (Constant *C = const_cast<Constant*>(dyn_cast<Constant>(V))) {
850 MVT VT = TLI.getValueType(V->getType(), true);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000851
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000852 if (ConstantInt *CI = dyn_cast<ConstantInt>(C))
Dan Gohman4fbd7962008-09-12 18:08:03 +0000853 return N = DAG.getConstant(*CI, VT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000854
855 if (GlobalValue *GV = dyn_cast<GlobalValue>(C))
856 return N = DAG.getGlobalAddress(GV, VT);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000857
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000858 if (isa<ConstantPointerNull>(C))
859 return N = DAG.getConstant(0, TLI.getPointerTy());
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000860
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000861 if (ConstantFP *CFP = dyn_cast<ConstantFP>(C))
Dan Gohman4fbd7962008-09-12 18:08:03 +0000862 return N = DAG.getConstantFP(*CFP, VT);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000863
Nate Begeman9008ca62009-04-27 18:41:29 +0000864 if (isa<UndefValue>(C) && !V->getType()->isAggregateType())
Dale Johannesene8d72302009-02-06 23:05:02 +0000865 return N = DAG.getUNDEF(VT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000866
867 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(C)) {
868 visit(CE->getOpcode(), *CE);
869 SDValue N1 = NodeMap[V];
870 assert(N1.getNode() && "visit didn't populate the ValueMap!");
871 return N1;
872 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000873
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000874 if (isa<ConstantStruct>(C) || isa<ConstantArray>(C)) {
875 SmallVector<SDValue, 4> Constants;
876 for (User::const_op_iterator OI = C->op_begin(), OE = C->op_end();
877 OI != OE; ++OI) {
878 SDNode *Val = getValue(*OI).getNode();
879 for (unsigned i = 0, e = Val->getNumValues(); i != e; ++i)
880 Constants.push_back(SDValue(Val, i));
881 }
Dale Johannesen4be0bdf2009-02-05 00:20:09 +0000882 return DAG.getMergeValues(&Constants[0], Constants.size(),
883 getCurDebugLoc());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000884 }
885
886 if (isa<StructType>(C->getType()) || isa<ArrayType>(C->getType())) {
887 assert((isa<ConstantAggregateZero>(C) || isa<UndefValue>(C)) &&
888 "Unknown struct or array constant!");
889
890 SmallVector<MVT, 4> ValueVTs;
891 ComputeValueVTs(TLI, C->getType(), ValueVTs);
892 unsigned NumElts = ValueVTs.size();
893 if (NumElts == 0)
894 return SDValue(); // empty struct
895 SmallVector<SDValue, 4> Constants(NumElts);
896 for (unsigned i = 0; i != NumElts; ++i) {
897 MVT EltVT = ValueVTs[i];
898 if (isa<UndefValue>(C))
Dale Johannesene8d72302009-02-06 23:05:02 +0000899 Constants[i] = DAG.getUNDEF(EltVT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000900 else if (EltVT.isFloatingPoint())
901 Constants[i] = DAG.getConstantFP(0, EltVT);
902 else
903 Constants[i] = DAG.getConstant(0, EltVT);
904 }
Dale Johannesen4be0bdf2009-02-05 00:20:09 +0000905 return DAG.getMergeValues(&Constants[0], NumElts, getCurDebugLoc());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000906 }
907
908 const VectorType *VecTy = cast<VectorType>(V->getType());
909 unsigned NumElements = VecTy->getNumElements();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000910
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000911 // Now that we know the number and type of the elements, get that number of
912 // elements into the Ops array based on what kind of constant it is.
913 SmallVector<SDValue, 16> Ops;
914 if (ConstantVector *CP = dyn_cast<ConstantVector>(C)) {
915 for (unsigned i = 0; i != NumElements; ++i)
916 Ops.push_back(getValue(CP->getOperand(i)));
917 } else {
Nate Begeman9008ca62009-04-27 18:41:29 +0000918 assert(isa<ConstantAggregateZero>(C) && "Unknown vector constant!");
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000919 MVT EltVT = TLI.getValueType(VecTy->getElementType());
920
921 SDValue Op;
Nate Begeman9008ca62009-04-27 18:41:29 +0000922 if (EltVT.isFloatingPoint())
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000923 Op = DAG.getConstantFP(0, EltVT);
924 else
925 Op = DAG.getConstant(0, EltVT);
926 Ops.assign(NumElements, Op);
927 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000928
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000929 // Create a BUILD_VECTOR node.
Evan Chenga87008d2009-02-25 22:49:59 +0000930 return NodeMap[V] = DAG.getNode(ISD::BUILD_VECTOR, getCurDebugLoc(),
931 VT, &Ops[0], Ops.size());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000932 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000933
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000934 // If this is a static alloca, generate it as the frameindex instead of
935 // computation.
936 if (const AllocaInst *AI = dyn_cast<AllocaInst>(V)) {
937 DenseMap<const AllocaInst*, int>::iterator SI =
938 FuncInfo.StaticAllocaMap.find(AI);
939 if (SI != FuncInfo.StaticAllocaMap.end())
940 return DAG.getFrameIndex(SI->second, TLI.getPointerTy());
941 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000942
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000943 unsigned InReg = FuncInfo.ValueMap[V];
944 assert(InReg && "Value not in map!");
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000945
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000946 RegsForValue RFV(TLI, InReg, V->getType());
947 SDValue Chain = DAG.getEntryNode();
Dale Johannesen66978ee2009-01-31 02:22:37 +0000948 return RFV.getCopyFromRegs(DAG, getCurDebugLoc(), Chain, NULL);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000949}
950
951
952void SelectionDAGLowering::visitRet(ReturnInst &I) {
953 if (I.getNumOperands() == 0) {
Scott Michelfdc40a02009-02-17 22:15:04 +0000954 DAG.setRoot(DAG.getNode(ISD::RET, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +0000955 MVT::Other, getControlRoot()));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000956 return;
957 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000958
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000959 SmallVector<SDValue, 8> NewValues;
960 NewValues.push_back(getControlRoot());
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000961 for (unsigned i = 0, e = I.getNumOperands(); i != e; ++i) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000962 SmallVector<MVT, 4> ValueVTs;
963 ComputeValueVTs(TLI, I.getOperand(i)->getType(), ValueVTs);
Dan Gohman7ea1ca62008-10-21 20:00:42 +0000964 unsigned NumValues = ValueVTs.size();
965 if (NumValues == 0) continue;
966
967 SDValue RetOp = getValue(I.getOperand(i));
968 for (unsigned j = 0, f = NumValues; j != f; ++j) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000969 MVT VT = ValueVTs[j];
970
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000971 ISD::NodeType ExtendKind = ISD::ANY_EXTEND;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +0000972
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000973 const Function *F = I.getParent()->getParent();
Devang Patel05988662008-09-25 21:00:45 +0000974 if (F->paramHasAttr(0, Attribute::SExt))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000975 ExtendKind = ISD::SIGN_EXTEND;
Devang Patel05988662008-09-25 21:00:45 +0000976 else if (F->paramHasAttr(0, Attribute::ZExt))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000977 ExtendKind = ISD::ZERO_EXTEND;
978
Evan Cheng3927f432009-03-25 20:20:11 +0000979 // FIXME: C calling convention requires the return type to be promoted to
980 // at least 32-bit. But this is not necessary for non-C calling
981 // conventions. The frontend should mark functions whose return values
982 // require promoting with signext or zeroext attributes.
983 if (ExtendKind != ISD::ANY_EXTEND && VT.isInteger()) {
984 MVT MinVT = TLI.getRegisterType(MVT::i32);
985 if (VT.bitsLT(MinVT))
986 VT = MinVT;
987 }
988
989 unsigned NumParts = TLI.getNumRegisters(VT);
990 MVT PartVT = TLI.getRegisterType(VT);
991 SmallVector<SDValue, 4> Parts(NumParts);
Dale Johannesen66978ee2009-01-31 02:22:37 +0000992 getCopyToParts(DAG, getCurDebugLoc(),
993 SDValue(RetOp.getNode(), RetOp.getResNo() + j),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +0000994 &Parts[0], NumParts, PartVT, ExtendKind);
995
Dale Johannesenc9c6da62008-09-25 20:47:45 +0000996 // 'inreg' on function refers to return value
997 ISD::ArgFlagsTy Flags = ISD::ArgFlagsTy();
Devang Patel05988662008-09-25 21:00:45 +0000998 if (F->paramHasAttr(0, Attribute::InReg))
Dale Johannesenc9c6da62008-09-25 20:47:45 +0000999 Flags.setInReg();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001000 for (unsigned i = 0; i < NumParts; ++i) {
1001 NewValues.push_back(Parts[i]);
Dale Johannesenc9c6da62008-09-25 20:47:45 +00001002 NewValues.push_back(DAG.getArgFlags(Flags));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001003 }
1004 }
1005 }
Dale Johannesen66978ee2009-01-31 02:22:37 +00001006 DAG.setRoot(DAG.getNode(ISD::RET, getCurDebugLoc(), MVT::Other,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001007 &NewValues[0], NewValues.size()));
1008}
1009
Dan Gohmanad62f532009-04-23 23:13:24 +00001010/// CopyToExportRegsIfNeeded - If the given value has virtual registers
1011/// created for it, emit nodes to copy the value into the virtual
1012/// registers.
1013void SelectionDAGLowering::CopyToExportRegsIfNeeded(Value *V) {
1014 if (!V->use_empty()) {
1015 DenseMap<const Value *, unsigned>::iterator VMI = FuncInfo.ValueMap.find(V);
1016 if (VMI != FuncInfo.ValueMap.end())
1017 CopyValueToVirtualRegister(V, VMI->second);
1018 }
1019}
1020
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001021/// ExportFromCurrentBlock - If this condition isn't known to be exported from
1022/// the current basic block, add it to ValueMap now so that we'll get a
1023/// CopyTo/FromReg.
1024void SelectionDAGLowering::ExportFromCurrentBlock(Value *V) {
1025 // No need to export constants.
1026 if (!isa<Instruction>(V) && !isa<Argument>(V)) return;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001027
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001028 // Already exported?
1029 if (FuncInfo.isExportedInst(V)) return;
1030
1031 unsigned Reg = FuncInfo.InitializeRegForValue(V);
1032 CopyValueToVirtualRegister(V, Reg);
1033}
1034
1035bool SelectionDAGLowering::isExportableFromCurrentBlock(Value *V,
1036 const BasicBlock *FromBB) {
1037 // The operands of the setcc have to be in this block. We don't know
1038 // how to export them from some other block.
1039 if (Instruction *VI = dyn_cast<Instruction>(V)) {
1040 // Can export from current BB.
1041 if (VI->getParent() == FromBB)
1042 return true;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001043
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001044 // Is already exported, noop.
1045 return FuncInfo.isExportedInst(V);
1046 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001047
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001048 // If this is an argument, we can export it if the BB is the entry block or
1049 // if it is already exported.
1050 if (isa<Argument>(V)) {
1051 if (FromBB == &FromBB->getParent()->getEntryBlock())
1052 return true;
1053
1054 // Otherwise, can only export this if it is already exported.
1055 return FuncInfo.isExportedInst(V);
1056 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001057
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001058 // Otherwise, constants can always be exported.
1059 return true;
1060}
1061
1062static bool InBlock(const Value *V, const BasicBlock *BB) {
1063 if (const Instruction *I = dyn_cast<Instruction>(V))
1064 return I->getParent() == BB;
1065 return true;
1066}
1067
Dan Gohman8c1a6ca2008-10-17 18:18:45 +00001068/// getFCmpCondCode - Return the ISD condition code corresponding to
1069/// the given LLVM IR floating-point condition code. This includes
1070/// consideration of global floating-point math flags.
1071///
1072static ISD::CondCode getFCmpCondCode(FCmpInst::Predicate Pred) {
1073 ISD::CondCode FPC, FOC;
1074 switch (Pred) {
1075 case FCmpInst::FCMP_FALSE: FOC = FPC = ISD::SETFALSE; break;
1076 case FCmpInst::FCMP_OEQ: FOC = ISD::SETEQ; FPC = ISD::SETOEQ; break;
1077 case FCmpInst::FCMP_OGT: FOC = ISD::SETGT; FPC = ISD::SETOGT; break;
1078 case FCmpInst::FCMP_OGE: FOC = ISD::SETGE; FPC = ISD::SETOGE; break;
1079 case FCmpInst::FCMP_OLT: FOC = ISD::SETLT; FPC = ISD::SETOLT; break;
1080 case FCmpInst::FCMP_OLE: FOC = ISD::SETLE; FPC = ISD::SETOLE; break;
1081 case FCmpInst::FCMP_ONE: FOC = ISD::SETNE; FPC = ISD::SETONE; break;
1082 case FCmpInst::FCMP_ORD: FOC = FPC = ISD::SETO; break;
1083 case FCmpInst::FCMP_UNO: FOC = FPC = ISD::SETUO; break;
1084 case FCmpInst::FCMP_UEQ: FOC = ISD::SETEQ; FPC = ISD::SETUEQ; break;
1085 case FCmpInst::FCMP_UGT: FOC = ISD::SETGT; FPC = ISD::SETUGT; break;
1086 case FCmpInst::FCMP_UGE: FOC = ISD::SETGE; FPC = ISD::SETUGE; break;
1087 case FCmpInst::FCMP_ULT: FOC = ISD::SETLT; FPC = ISD::SETULT; break;
1088 case FCmpInst::FCMP_ULE: FOC = ISD::SETLE; FPC = ISD::SETULE; break;
1089 case FCmpInst::FCMP_UNE: FOC = ISD::SETNE; FPC = ISD::SETUNE; break;
1090 case FCmpInst::FCMP_TRUE: FOC = FPC = ISD::SETTRUE; break;
1091 default:
1092 assert(0 && "Invalid FCmp predicate opcode!");
1093 FOC = FPC = ISD::SETFALSE;
1094 break;
1095 }
1096 if (FiniteOnlyFPMath())
1097 return FOC;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001098 else
Dan Gohman8c1a6ca2008-10-17 18:18:45 +00001099 return FPC;
1100}
1101
1102/// getICmpCondCode - Return the ISD condition code corresponding to
1103/// the given LLVM IR integer condition code.
1104///
1105static ISD::CondCode getICmpCondCode(ICmpInst::Predicate Pred) {
1106 switch (Pred) {
1107 case ICmpInst::ICMP_EQ: return ISD::SETEQ;
1108 case ICmpInst::ICMP_NE: return ISD::SETNE;
1109 case ICmpInst::ICMP_SLE: return ISD::SETLE;
1110 case ICmpInst::ICMP_ULE: return ISD::SETULE;
1111 case ICmpInst::ICMP_SGE: return ISD::SETGE;
1112 case ICmpInst::ICMP_UGE: return ISD::SETUGE;
1113 case ICmpInst::ICMP_SLT: return ISD::SETLT;
1114 case ICmpInst::ICMP_ULT: return ISD::SETULT;
1115 case ICmpInst::ICMP_SGT: return ISD::SETGT;
1116 case ICmpInst::ICMP_UGT: return ISD::SETUGT;
1117 default:
1118 assert(0 && "Invalid ICmp predicate opcode!");
1119 return ISD::SETNE;
1120 }
1121}
1122
Dan Gohmanc2277342008-10-17 21:16:08 +00001123/// EmitBranchForMergedCondition - Helper method for FindMergedConditions.
1124/// This function emits a branch and is used at the leaves of an OR or an
1125/// AND operator tree.
1126///
1127void
1128SelectionDAGLowering::EmitBranchForMergedCondition(Value *Cond,
1129 MachineBasicBlock *TBB,
1130 MachineBasicBlock *FBB,
1131 MachineBasicBlock *CurBB) {
1132 const BasicBlock *BB = CurBB->getBasicBlock();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001133
Dan Gohmanc2277342008-10-17 21:16:08 +00001134 // If the leaf of the tree is a comparison, merge the condition into
1135 // the caseblock.
1136 if (CmpInst *BOp = dyn_cast<CmpInst>(Cond)) {
1137 // The operands of the cmp have to be in this block. We don't know
1138 // how to export them from some other block. If this is the first block
1139 // of the sequence, no exporting is needed.
1140 if (CurBB == CurMBB ||
1141 (isExportableFromCurrentBlock(BOp->getOperand(0), BB) &&
1142 isExportableFromCurrentBlock(BOp->getOperand(1), BB))) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001143 ISD::CondCode Condition;
1144 if (ICmpInst *IC = dyn_cast<ICmpInst>(Cond)) {
Dan Gohman8c1a6ca2008-10-17 18:18:45 +00001145 Condition = getICmpCondCode(IC->getPredicate());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001146 } else if (FCmpInst *FC = dyn_cast<FCmpInst>(Cond)) {
Dan Gohman8c1a6ca2008-10-17 18:18:45 +00001147 Condition = getFCmpCondCode(FC->getPredicate());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001148 } else {
1149 Condition = ISD::SETEQ; // silence warning.
1150 assert(0 && "Unknown compare instruction");
1151 }
Dan Gohmanc2277342008-10-17 21:16:08 +00001152
1153 CaseBlock CB(Condition, BOp->getOperand(0),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001154 BOp->getOperand(1), NULL, TBB, FBB, CurBB);
1155 SwitchCases.push_back(CB);
1156 return;
1157 }
Dan Gohmanc2277342008-10-17 21:16:08 +00001158 }
1159
1160 // Create a CaseBlock record representing this branch.
1161 CaseBlock CB(ISD::SETEQ, Cond, ConstantInt::getTrue(),
1162 NULL, TBB, FBB, CurBB);
1163 SwitchCases.push_back(CB);
1164}
1165
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001166/// FindMergedConditions - If Cond is an expression like
Dan Gohmanc2277342008-10-17 21:16:08 +00001167void SelectionDAGLowering::FindMergedConditions(Value *Cond,
1168 MachineBasicBlock *TBB,
1169 MachineBasicBlock *FBB,
1170 MachineBasicBlock *CurBB,
1171 unsigned Opc) {
1172 // If this node is not part of the or/and tree, emit it as a branch.
1173 Instruction *BOp = dyn_cast<Instruction>(Cond);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001174 if (!BOp || !(isa<BinaryOperator>(BOp) || isa<CmpInst>(BOp)) ||
Dan Gohmanc2277342008-10-17 21:16:08 +00001175 (unsigned)BOp->getOpcode() != Opc || !BOp->hasOneUse() ||
1176 BOp->getParent() != CurBB->getBasicBlock() ||
1177 !InBlock(BOp->getOperand(0), CurBB->getBasicBlock()) ||
1178 !InBlock(BOp->getOperand(1), CurBB->getBasicBlock())) {
1179 EmitBranchForMergedCondition(Cond, TBB, FBB, CurBB);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001180 return;
1181 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001182
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001183 // Create TmpBB after CurBB.
1184 MachineFunction::iterator BBI = CurBB;
1185 MachineFunction &MF = DAG.getMachineFunction();
1186 MachineBasicBlock *TmpBB = MF.CreateMachineBasicBlock(CurBB->getBasicBlock());
1187 CurBB->getParent()->insert(++BBI, TmpBB);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001188
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001189 if (Opc == Instruction::Or) {
1190 // Codegen X | Y as:
1191 // jmp_if_X TBB
1192 // jmp TmpBB
1193 // TmpBB:
1194 // jmp_if_Y TBB
1195 // jmp FBB
1196 //
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001197
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001198 // Emit the LHS condition.
1199 FindMergedConditions(BOp->getOperand(0), TBB, TmpBB, CurBB, Opc);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001200
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001201 // Emit the RHS condition into TmpBB.
1202 FindMergedConditions(BOp->getOperand(1), TBB, FBB, TmpBB, Opc);
1203 } else {
1204 assert(Opc == Instruction::And && "Unknown merge op!");
1205 // Codegen X & Y as:
1206 // jmp_if_X TmpBB
1207 // jmp FBB
1208 // TmpBB:
1209 // jmp_if_Y TBB
1210 // jmp FBB
1211 //
1212 // This requires creation of TmpBB after CurBB.
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001213
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001214 // Emit the LHS condition.
1215 FindMergedConditions(BOp->getOperand(0), TmpBB, FBB, CurBB, Opc);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001216
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001217 // Emit the RHS condition into TmpBB.
1218 FindMergedConditions(BOp->getOperand(1), TBB, FBB, TmpBB, Opc);
1219 }
1220}
1221
1222/// If the set of cases should be emitted as a series of branches, return true.
1223/// If we should emit this as a bunch of and/or'd together conditions, return
1224/// false.
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001225bool
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001226SelectionDAGLowering::ShouldEmitAsBranches(const std::vector<CaseBlock> &Cases){
1227 if (Cases.size() != 2) return true;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001228
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001229 // If this is two comparisons of the same values or'd or and'd together, they
1230 // will get folded into a single comparison, so don't emit two blocks.
1231 if ((Cases[0].CmpLHS == Cases[1].CmpLHS &&
1232 Cases[0].CmpRHS == Cases[1].CmpRHS) ||
1233 (Cases[0].CmpRHS == Cases[1].CmpLHS &&
1234 Cases[0].CmpLHS == Cases[1].CmpRHS)) {
1235 return false;
1236 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001237
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001238 return true;
1239}
1240
1241void SelectionDAGLowering::visitBr(BranchInst &I) {
1242 // Update machine-CFG edges.
1243 MachineBasicBlock *Succ0MBB = FuncInfo.MBBMap[I.getSuccessor(0)];
1244
1245 // Figure out which block is immediately after the current one.
1246 MachineBasicBlock *NextBlock = 0;
1247 MachineFunction::iterator BBI = CurMBB;
1248 if (++BBI != CurMBB->getParent()->end())
1249 NextBlock = BBI;
1250
1251 if (I.isUnconditional()) {
1252 // Update machine-CFG edges.
1253 CurMBB->addSuccessor(Succ0MBB);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001254
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001255 // If this is not a fall-through branch, emit the branch.
1256 if (Succ0MBB != NextBlock)
Scott Michelfdc40a02009-02-17 22:15:04 +00001257 DAG.setRoot(DAG.getNode(ISD::BR, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001258 MVT::Other, getControlRoot(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001259 DAG.getBasicBlock(Succ0MBB)));
1260 return;
1261 }
1262
1263 // If this condition is one of the special cases we handle, do special stuff
1264 // now.
1265 Value *CondVal = I.getCondition();
1266 MachineBasicBlock *Succ1MBB = FuncInfo.MBBMap[I.getSuccessor(1)];
1267
1268 // If this is a series of conditions that are or'd or and'd together, emit
1269 // this as a sequence of branches instead of setcc's with and/or operations.
1270 // For example, instead of something like:
1271 // cmp A, B
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001272 // C = seteq
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001273 // cmp D, E
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001274 // F = setle
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001275 // or C, F
1276 // jnz foo
1277 // Emit:
1278 // cmp A, B
1279 // je foo
1280 // cmp D, E
1281 // jle foo
1282 //
1283 if (BinaryOperator *BOp = dyn_cast<BinaryOperator>(CondVal)) {
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001284 if (BOp->hasOneUse() &&
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001285 (BOp->getOpcode() == Instruction::And ||
1286 BOp->getOpcode() == Instruction::Or)) {
1287 FindMergedConditions(BOp, Succ0MBB, Succ1MBB, CurMBB, BOp->getOpcode());
1288 // If the compares in later blocks need to use values not currently
1289 // exported from this block, export them now. This block should always
1290 // be the first entry.
1291 assert(SwitchCases[0].ThisBB == CurMBB && "Unexpected lowering!");
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001292
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001293 // Allow some cases to be rejected.
1294 if (ShouldEmitAsBranches(SwitchCases)) {
1295 for (unsigned i = 1, e = SwitchCases.size(); i != e; ++i) {
1296 ExportFromCurrentBlock(SwitchCases[i].CmpLHS);
1297 ExportFromCurrentBlock(SwitchCases[i].CmpRHS);
1298 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001299
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001300 // Emit the branch for this block.
1301 visitSwitchCase(SwitchCases[0]);
1302 SwitchCases.erase(SwitchCases.begin());
1303 return;
1304 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001305
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001306 // Okay, we decided not to do this, remove any inserted MBB's and clear
1307 // SwitchCases.
1308 for (unsigned i = 1, e = SwitchCases.size(); i != e; ++i)
1309 CurMBB->getParent()->erase(SwitchCases[i].ThisBB);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001310
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001311 SwitchCases.clear();
1312 }
1313 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001314
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001315 // Create a CaseBlock record representing this branch.
1316 CaseBlock CB(ISD::SETEQ, CondVal, ConstantInt::getTrue(),
1317 NULL, Succ0MBB, Succ1MBB, CurMBB);
1318 // Use visitSwitchCase to actually insert the fast branch sequence for this
1319 // cond branch.
1320 visitSwitchCase(CB);
1321}
1322
1323/// visitSwitchCase - Emits the necessary code to represent a single node in
1324/// the binary search tree resulting from lowering a switch instruction.
1325void SelectionDAGLowering::visitSwitchCase(CaseBlock &CB) {
1326 SDValue Cond;
1327 SDValue CondLHS = getValue(CB.CmpLHS);
Dale Johannesenf5d97892009-02-04 01:48:28 +00001328 DebugLoc dl = getCurDebugLoc();
Anton Korobeynikov23218582008-12-23 22:25:27 +00001329
1330 // Build the setcc now.
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001331 if (CB.CmpMHS == NULL) {
1332 // Fold "(X == true)" to X and "(X == false)" to !X to
1333 // handle common cases produced by branch lowering.
1334 if (CB.CmpRHS == ConstantInt::getTrue() && CB.CC == ISD::SETEQ)
1335 Cond = CondLHS;
1336 else if (CB.CmpRHS == ConstantInt::getFalse() && CB.CC == ISD::SETEQ) {
1337 SDValue True = DAG.getConstant(1, CondLHS.getValueType());
Dale Johannesenf5d97892009-02-04 01:48:28 +00001338 Cond = DAG.getNode(ISD::XOR, dl, CondLHS.getValueType(), CondLHS, True);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001339 } else
Dale Johannesenf5d97892009-02-04 01:48:28 +00001340 Cond = DAG.getSetCC(dl, MVT::i1, CondLHS, getValue(CB.CmpRHS), CB.CC);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001341 } else {
1342 assert(CB.CC == ISD::SETLE && "Can handle only LE ranges now");
1343
Anton Korobeynikov23218582008-12-23 22:25:27 +00001344 const APInt& Low = cast<ConstantInt>(CB.CmpLHS)->getValue();
1345 const APInt& High = cast<ConstantInt>(CB.CmpRHS)->getValue();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001346
1347 SDValue CmpOp = getValue(CB.CmpMHS);
1348 MVT VT = CmpOp.getValueType();
1349
1350 if (cast<ConstantInt>(CB.CmpLHS)->isMinValue(true)) {
Scott Michelfdc40a02009-02-17 22:15:04 +00001351 Cond = DAG.getSetCC(dl, MVT::i1, CmpOp, DAG.getConstant(High, VT),
Dale Johannesenf5d97892009-02-04 01:48:28 +00001352 ISD::SETLE);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001353 } else {
Dale Johannesenf5d97892009-02-04 01:48:28 +00001354 SDValue SUB = DAG.getNode(ISD::SUB, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001355 VT, CmpOp, DAG.getConstant(Low, VT));
Dale Johannesenf5d97892009-02-04 01:48:28 +00001356 Cond = DAG.getSetCC(dl, MVT::i1, SUB,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001357 DAG.getConstant(High-Low, VT), ISD::SETULE);
1358 }
1359 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00001360
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001361 // Update successor info
1362 CurMBB->addSuccessor(CB.TrueBB);
1363 CurMBB->addSuccessor(CB.FalseBB);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001364
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001365 // Set NextBlock to be the MBB immediately after the current one, if any.
1366 // This is used to avoid emitting unnecessary branches to the next block.
1367 MachineBasicBlock *NextBlock = 0;
1368 MachineFunction::iterator BBI = CurMBB;
1369 if (++BBI != CurMBB->getParent()->end())
1370 NextBlock = BBI;
Anton Korobeynikov23218582008-12-23 22:25:27 +00001371
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001372 // If the lhs block is the next block, invert the condition so that we can
1373 // fall through to the lhs instead of the rhs block.
1374 if (CB.TrueBB == NextBlock) {
1375 std::swap(CB.TrueBB, CB.FalseBB);
1376 SDValue True = DAG.getConstant(1, Cond.getValueType());
Dale Johannesenf5d97892009-02-04 01:48:28 +00001377 Cond = DAG.getNode(ISD::XOR, dl, Cond.getValueType(), Cond, True);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001378 }
Dale Johannesenf5d97892009-02-04 01:48:28 +00001379 SDValue BrCond = DAG.getNode(ISD::BRCOND, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001380 MVT::Other, getControlRoot(), Cond,
1381 DAG.getBasicBlock(CB.TrueBB));
Anton Korobeynikov23218582008-12-23 22:25:27 +00001382
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001383 // If the branch was constant folded, fix up the CFG.
1384 if (BrCond.getOpcode() == ISD::BR) {
1385 CurMBB->removeSuccessor(CB.FalseBB);
1386 DAG.setRoot(BrCond);
1387 } else {
1388 // Otherwise, go ahead and insert the false branch.
Anton Korobeynikov23218582008-12-23 22:25:27 +00001389 if (BrCond == getControlRoot())
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001390 CurMBB->removeSuccessor(CB.TrueBB);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001391
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001392 if (CB.FalseBB == NextBlock)
1393 DAG.setRoot(BrCond);
1394 else
Dale Johannesenf5d97892009-02-04 01:48:28 +00001395 DAG.setRoot(DAG.getNode(ISD::BR, dl, MVT::Other, BrCond,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001396 DAG.getBasicBlock(CB.FalseBB)));
1397 }
1398}
1399
1400/// visitJumpTable - Emit JumpTable node in the current MBB
1401void SelectionDAGLowering::visitJumpTable(JumpTable &JT) {
1402 // Emit the code for the jump table
1403 assert(JT.Reg != -1U && "Should lower JT Header first!");
1404 MVT PTy = TLI.getPointerTy();
Dale Johannesena04b7572009-02-03 23:04:43 +00001405 SDValue Index = DAG.getCopyFromReg(getControlRoot(), getCurDebugLoc(),
1406 JT.Reg, PTy);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001407 SDValue Table = DAG.getJumpTable(JT.JTI, PTy);
Scott Michelfdc40a02009-02-17 22:15:04 +00001408 DAG.setRoot(DAG.getNode(ISD::BR_JT, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001409 MVT::Other, Index.getValue(1),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001410 Table, Index));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001411}
1412
1413/// visitJumpTableHeader - This function emits necessary code to produce index
1414/// in the JumpTable from switch case.
1415void SelectionDAGLowering::visitJumpTableHeader(JumpTable &JT,
1416 JumpTableHeader &JTH) {
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001417 // Subtract the lowest switch case value from the value being switched on and
1418 // conditional branch to default mbb if the result is greater than the
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001419 // difference between smallest and largest cases.
1420 SDValue SwitchOp = getValue(JTH.SValue);
1421 MVT VT = SwitchOp.getValueType();
Dale Johannesen66978ee2009-01-31 02:22:37 +00001422 SDValue SUB = DAG.getNode(ISD::SUB, getCurDebugLoc(), VT, SwitchOp,
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001423 DAG.getConstant(JTH.First, VT));
Anton Korobeynikov23218582008-12-23 22:25:27 +00001424
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001425 // The SDNode we just created, which holds the value being switched on minus
1426 // the the smallest case value, needs to be copied to a virtual register so it
1427 // can be used as an index into the jump table in a subsequent basic block.
1428 // This value may be smaller or larger than the target's pointer type, and
1429 // therefore require extension or truncating.
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001430 if (VT.bitsGT(TLI.getPointerTy()))
Scott Michelfdc40a02009-02-17 22:15:04 +00001431 SwitchOp = DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001432 TLI.getPointerTy(), SUB);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001433 else
Scott Michelfdc40a02009-02-17 22:15:04 +00001434 SwitchOp = DAG.getNode(ISD::ZERO_EXTEND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001435 TLI.getPointerTy(), SUB);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001436
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001437 unsigned JumpTableReg = FuncInfo.MakeReg(TLI.getPointerTy());
Dale Johannesena04b7572009-02-03 23:04:43 +00001438 SDValue CopyTo = DAG.getCopyToReg(getControlRoot(), getCurDebugLoc(),
1439 JumpTableReg, SwitchOp);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001440 JT.Reg = JumpTableReg;
1441
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001442 // Emit the range check for the jump table, and branch to the default block
1443 // for the switch statement if the value being switched on exceeds the largest
1444 // case in the switch.
Dale Johannesenf5d97892009-02-04 01:48:28 +00001445 SDValue CMP = DAG.getSetCC(getCurDebugLoc(),
1446 TLI.getSetCCResultType(SUB.getValueType()), SUB,
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001447 DAG.getConstant(JTH.Last-JTH.First,VT),
1448 ISD::SETUGT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001449
1450 // Set NextBlock to be the MBB immediately after the current one, if any.
1451 // This is used to avoid emitting unnecessary branches to the next block.
1452 MachineBasicBlock *NextBlock = 0;
1453 MachineFunction::iterator BBI = CurMBB;
1454 if (++BBI != CurMBB->getParent()->end())
1455 NextBlock = BBI;
1456
Dale Johannesen66978ee2009-01-31 02:22:37 +00001457 SDValue BrCond = DAG.getNode(ISD::BRCOND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001458 MVT::Other, CopyTo, CMP,
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001459 DAG.getBasicBlock(JT.Default));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001460
1461 if (JT.MBB == NextBlock)
1462 DAG.setRoot(BrCond);
1463 else
Dale Johannesen66978ee2009-01-31 02:22:37 +00001464 DAG.setRoot(DAG.getNode(ISD::BR, getCurDebugLoc(), MVT::Other, BrCond,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001465 DAG.getBasicBlock(JT.MBB)));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001466}
1467
1468/// visitBitTestHeader - This function emits necessary code to produce value
1469/// suitable for "bit tests"
1470void SelectionDAGLowering::visitBitTestHeader(BitTestBlock &B) {
1471 // Subtract the minimum value
1472 SDValue SwitchOp = getValue(B.SValue);
1473 MVT VT = SwitchOp.getValueType();
Dale Johannesen66978ee2009-01-31 02:22:37 +00001474 SDValue SUB = DAG.getNode(ISD::SUB, getCurDebugLoc(), VT, SwitchOp,
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001475 DAG.getConstant(B.First, VT));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001476
1477 // Check range
Dale Johannesenf5d97892009-02-04 01:48:28 +00001478 SDValue RangeCmp = DAG.getSetCC(getCurDebugLoc(),
1479 TLI.getSetCCResultType(SUB.getValueType()),
1480 SUB, DAG.getConstant(B.Range, VT),
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001481 ISD::SETUGT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001482
1483 SDValue ShiftOp;
Duncan Sands92abc622009-01-31 15:50:11 +00001484 if (VT.bitsGT(TLI.getPointerTy()))
Scott Michelfdc40a02009-02-17 22:15:04 +00001485 ShiftOp = DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(),
Duncan Sands92abc622009-01-31 15:50:11 +00001486 TLI.getPointerTy(), SUB);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001487 else
Scott Michelfdc40a02009-02-17 22:15:04 +00001488 ShiftOp = DAG.getNode(ISD::ZERO_EXTEND, getCurDebugLoc(),
Duncan Sands92abc622009-01-31 15:50:11 +00001489 TLI.getPointerTy(), SUB);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001490
Duncan Sands92abc622009-01-31 15:50:11 +00001491 B.Reg = FuncInfo.MakeReg(TLI.getPointerTy());
Dale Johannesena04b7572009-02-03 23:04:43 +00001492 SDValue CopyTo = DAG.getCopyToReg(getControlRoot(), getCurDebugLoc(),
1493 B.Reg, ShiftOp);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001494
1495 // Set NextBlock to be the MBB immediately after the current one, if any.
1496 // This is used to avoid emitting unnecessary branches to the next block.
1497 MachineBasicBlock *NextBlock = 0;
1498 MachineFunction::iterator BBI = CurMBB;
1499 if (++BBI != CurMBB->getParent()->end())
1500 NextBlock = BBI;
1501
1502 MachineBasicBlock* MBB = B.Cases[0].ThisBB;
1503
1504 CurMBB->addSuccessor(B.Default);
1505 CurMBB->addSuccessor(MBB);
1506
Dale Johannesen66978ee2009-01-31 02:22:37 +00001507 SDValue BrRange = DAG.getNode(ISD::BRCOND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001508 MVT::Other, CopyTo, RangeCmp,
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001509 DAG.getBasicBlock(B.Default));
Anton Korobeynikov23218582008-12-23 22:25:27 +00001510
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001511 if (MBB == NextBlock)
1512 DAG.setRoot(BrRange);
1513 else
Dale Johannesen66978ee2009-01-31 02:22:37 +00001514 DAG.setRoot(DAG.getNode(ISD::BR, getCurDebugLoc(), MVT::Other, CopyTo,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001515 DAG.getBasicBlock(MBB)));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001516}
1517
1518/// visitBitTestCase - this function produces one "bit test"
1519void SelectionDAGLowering::visitBitTestCase(MachineBasicBlock* NextMBB,
1520 unsigned Reg,
1521 BitTestCase &B) {
Anton Korobeynikov36c826a2009-01-26 19:26:01 +00001522 // Make desired shift
Dale Johannesena04b7572009-02-03 23:04:43 +00001523 SDValue ShiftOp = DAG.getCopyFromReg(getControlRoot(), getCurDebugLoc(), Reg,
Duncan Sands92abc622009-01-31 15:50:11 +00001524 TLI.getPointerTy());
Scott Michelfdc40a02009-02-17 22:15:04 +00001525 SDValue SwitchVal = DAG.getNode(ISD::SHL, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001526 TLI.getPointerTy(),
Anton Korobeynikov36c826a2009-01-26 19:26:01 +00001527 DAG.getConstant(1, TLI.getPointerTy()),
1528 ShiftOp);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001529
Anton Korobeynikov36c826a2009-01-26 19:26:01 +00001530 // Emit bit tests and jumps
Scott Michelfdc40a02009-02-17 22:15:04 +00001531 SDValue AndOp = DAG.getNode(ISD::AND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001532 TLI.getPointerTy(), SwitchVal,
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001533 DAG.getConstant(B.Mask, TLI.getPointerTy()));
Dale Johannesenf5d97892009-02-04 01:48:28 +00001534 SDValue AndCmp = DAG.getSetCC(getCurDebugLoc(),
1535 TLI.getSetCCResultType(AndOp.getValueType()),
Duncan Sands5480c042009-01-01 15:52:00 +00001536 AndOp, DAG.getConstant(0, TLI.getPointerTy()),
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001537 ISD::SETNE);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001538
1539 CurMBB->addSuccessor(B.TargetBB);
1540 CurMBB->addSuccessor(NextMBB);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001541
Dale Johannesen66978ee2009-01-31 02:22:37 +00001542 SDValue BrAnd = DAG.getNode(ISD::BRCOND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001543 MVT::Other, getControlRoot(),
Anton Korobeynikov1bfe2372008-12-23 22:25:45 +00001544 AndCmp, DAG.getBasicBlock(B.TargetBB));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001545
1546 // Set NextBlock to be the MBB immediately after the current one, if any.
1547 // This is used to avoid emitting unnecessary branches to the next block.
1548 MachineBasicBlock *NextBlock = 0;
1549 MachineFunction::iterator BBI = CurMBB;
1550 if (++BBI != CurMBB->getParent()->end())
1551 NextBlock = BBI;
1552
1553 if (NextMBB == NextBlock)
1554 DAG.setRoot(BrAnd);
1555 else
Dale Johannesen66978ee2009-01-31 02:22:37 +00001556 DAG.setRoot(DAG.getNode(ISD::BR, getCurDebugLoc(), MVT::Other, BrAnd,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001557 DAG.getBasicBlock(NextMBB)));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001558}
1559
1560void SelectionDAGLowering::visitInvoke(InvokeInst &I) {
1561 // Retrieve successors.
1562 MachineBasicBlock *Return = FuncInfo.MBBMap[I.getSuccessor(0)];
1563 MachineBasicBlock *LandingPad = FuncInfo.MBBMap[I.getSuccessor(1)];
1564
Gabor Greifb67e6b32009-01-15 11:10:44 +00001565 const Value *Callee(I.getCalledValue());
1566 if (isa<InlineAsm>(Callee))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001567 visitInlineAsm(&I);
1568 else
Gabor Greifb67e6b32009-01-15 11:10:44 +00001569 LowerCallTo(&I, getValue(Callee), false, LandingPad);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001570
1571 // If the value of the invoke is used outside of its defining block, make it
1572 // available as a virtual register.
Dan Gohmanad62f532009-04-23 23:13:24 +00001573 CopyToExportRegsIfNeeded(&I);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001574
1575 // Update successor info
1576 CurMBB->addSuccessor(Return);
1577 CurMBB->addSuccessor(LandingPad);
1578
1579 // Drop into normal successor.
Scott Michelfdc40a02009-02-17 22:15:04 +00001580 DAG.setRoot(DAG.getNode(ISD::BR, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00001581 MVT::Other, getControlRoot(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001582 DAG.getBasicBlock(Return)));
1583}
1584
1585void SelectionDAGLowering::visitUnwind(UnwindInst &I) {
1586}
1587
1588/// handleSmallSwitchCaseRange - Emit a series of specific tests (suitable for
1589/// small case ranges).
1590bool SelectionDAGLowering::handleSmallSwitchRange(CaseRec& CR,
1591 CaseRecVector& WorkList,
1592 Value* SV,
1593 MachineBasicBlock* Default) {
1594 Case& BackCase = *(CR.Range.second-1);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001595
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001596 // Size is the number of Cases represented by this range.
Anton Korobeynikov23218582008-12-23 22:25:27 +00001597 size_t Size = CR.Range.second - CR.Range.first;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001598 if (Size > 3)
Anton Korobeynikov23218582008-12-23 22:25:27 +00001599 return false;
1600
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001601 // Get the MachineFunction which holds the current MBB. This is used when
1602 // inserting any additional MBBs necessary to represent the switch.
Anton Korobeynikov23218582008-12-23 22:25:27 +00001603 MachineFunction *CurMF = CurMBB->getParent();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001604
1605 // Figure out which block is immediately after the current one.
1606 MachineBasicBlock *NextBlock = 0;
1607 MachineFunction::iterator BBI = CR.CaseBB;
1608
1609 if (++BBI != CurMBB->getParent()->end())
1610 NextBlock = BBI;
1611
1612 // TODO: If any two of the cases has the same destination, and if one value
1613 // is the same as the other, but has one bit unset that the other has set,
1614 // use bit manipulation to do two compares at once. For example:
1615 // "if (X == 6 || X == 4)" -> "if ((X|2) == 6)"
Anton Korobeynikov23218582008-12-23 22:25:27 +00001616
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001617 // Rearrange the case blocks so that the last one falls through if possible.
1618 if (NextBlock && Default != NextBlock && BackCase.BB != NextBlock) {
1619 // The last case block won't fall through into 'NextBlock' if we emit the
1620 // branches in this order. See if rearranging a case value would help.
1621 for (CaseItr I = CR.Range.first, E = CR.Range.second-1; I != E; ++I) {
1622 if (I->BB == NextBlock) {
1623 std::swap(*I, BackCase);
1624 break;
1625 }
1626 }
1627 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00001628
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001629 // Create a CaseBlock record representing a conditional branch to
1630 // the Case's target mbb if the value being switched on SV is equal
1631 // to C.
1632 MachineBasicBlock *CurBlock = CR.CaseBB;
1633 for (CaseItr I = CR.Range.first, E = CR.Range.second; I != E; ++I) {
1634 MachineBasicBlock *FallThrough;
1635 if (I != E-1) {
1636 FallThrough = CurMF->CreateMachineBasicBlock(CurBlock->getBasicBlock());
1637 CurMF->insert(BBI, FallThrough);
Dan Gohman8e5c0da2009-04-09 02:33:36 +00001638
1639 // Put SV in a virtual register to make it available from the new blocks.
1640 ExportFromCurrentBlock(SV);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001641 } else {
1642 // If the last case doesn't match, go to the default block.
1643 FallThrough = Default;
1644 }
1645
1646 Value *RHS, *LHS, *MHS;
1647 ISD::CondCode CC;
1648 if (I->High == I->Low) {
1649 // This is just small small case range :) containing exactly 1 case
1650 CC = ISD::SETEQ;
1651 LHS = SV; RHS = I->High; MHS = NULL;
1652 } else {
1653 CC = ISD::SETLE;
1654 LHS = I->Low; MHS = SV; RHS = I->High;
1655 }
1656 CaseBlock CB(CC, LHS, RHS, MHS, I->BB, FallThrough, CurBlock);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001657
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001658 // If emitting the first comparison, just call visitSwitchCase to emit the
1659 // code into the current block. Otherwise, push the CaseBlock onto the
1660 // vector to be later processed by SDISel, and insert the node's MBB
1661 // before the next MBB.
1662 if (CurBlock == CurMBB)
1663 visitSwitchCase(CB);
1664 else
1665 SwitchCases.push_back(CB);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001666
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001667 CurBlock = FallThrough;
1668 }
1669
1670 return true;
1671}
1672
1673static inline bool areJTsAllowed(const TargetLowering &TLI) {
1674 return !DisableJumpTables &&
Dan Gohmanf560ffa2009-01-28 17:46:25 +00001675 (TLI.isOperationLegalOrCustom(ISD::BR_JT, MVT::Other) ||
1676 TLI.isOperationLegalOrCustom(ISD::BRIND, MVT::Other));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001677}
Anton Korobeynikov23218582008-12-23 22:25:27 +00001678
Anton Korobeynikove2f95e92008-12-23 22:26:01 +00001679static APInt ComputeRange(const APInt &First, const APInt &Last) {
1680 APInt LastExt(Last), FirstExt(First);
1681 uint32_t BitWidth = std::max(Last.getBitWidth(), First.getBitWidth()) + 1;
1682 LastExt.sext(BitWidth); FirstExt.sext(BitWidth);
1683 return (LastExt - FirstExt + 1ULL);
1684}
1685
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001686/// handleJTSwitchCase - Emit jumptable for current switch case range
1687bool SelectionDAGLowering::handleJTSwitchCase(CaseRec& CR,
1688 CaseRecVector& WorkList,
1689 Value* SV,
1690 MachineBasicBlock* Default) {
1691 Case& FrontCase = *CR.Range.first;
1692 Case& BackCase = *(CR.Range.second-1);
1693
Anton Korobeynikov23218582008-12-23 22:25:27 +00001694 const APInt& First = cast<ConstantInt>(FrontCase.Low)->getValue();
1695 const APInt& Last = cast<ConstantInt>(BackCase.High)->getValue();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001696
Anton Korobeynikov23218582008-12-23 22:25:27 +00001697 size_t TSize = 0;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001698 for (CaseItr I = CR.Range.first, E = CR.Range.second;
1699 I!=E; ++I)
1700 TSize += I->size();
1701
1702 if (!areJTsAllowed(TLI) || TSize <= 3)
1703 return false;
Anton Korobeynikov23218582008-12-23 22:25:27 +00001704
Anton Korobeynikove2f95e92008-12-23 22:26:01 +00001705 APInt Range = ComputeRange(First, Last);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001706 double Density = (double)TSize / Range.roundToDouble();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001707 if (Density < 0.4)
1708 return false;
1709
Anton Korobeynikov56d245b2008-12-23 22:26:18 +00001710 DEBUG(errs() << "Lowering jump table\n"
1711 << "First entry: " << First << ". Last entry: " << Last << '\n'
1712 << "Range: " << Range
1713 << "Size: " << TSize << ". Density: " << Density << "\n\n");
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001714
1715 // Get the MachineFunction which holds the current MBB. This is used when
1716 // inserting any additional MBBs necessary to represent the switch.
1717 MachineFunction *CurMF = CurMBB->getParent();
1718
1719 // Figure out which block is immediately after the current one.
1720 MachineBasicBlock *NextBlock = 0;
1721 MachineFunction::iterator BBI = CR.CaseBB;
1722
1723 if (++BBI != CurMBB->getParent()->end())
1724 NextBlock = BBI;
1725
1726 const BasicBlock *LLVMBB = CR.CaseBB->getBasicBlock();
1727
1728 // Create a new basic block to hold the code for loading the address
1729 // of the jump table, and jumping to it. Update successor information;
1730 // we will either branch to the default case for the switch, or the jump
1731 // table.
1732 MachineBasicBlock *JumpTableBB = CurMF->CreateMachineBasicBlock(LLVMBB);
1733 CurMF->insert(BBI, JumpTableBB);
1734 CR.CaseBB->addSuccessor(Default);
1735 CR.CaseBB->addSuccessor(JumpTableBB);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001736
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001737 // Build a vector of destination BBs, corresponding to each target
1738 // of the jump table. If the value of the jump table slot corresponds to
1739 // a case statement, push the case's BB onto the vector, otherwise, push
1740 // the default BB.
1741 std::vector<MachineBasicBlock*> DestBBs;
Anton Korobeynikov23218582008-12-23 22:25:27 +00001742 APInt TEI = First;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001743 for (CaseItr I = CR.Range.first, E = CR.Range.second; I != E; ++TEI) {
Anton Korobeynikov23218582008-12-23 22:25:27 +00001744 const APInt& Low = cast<ConstantInt>(I->Low)->getValue();
1745 const APInt& High = cast<ConstantInt>(I->High)->getValue();
1746
1747 if (Low.sle(TEI) && TEI.sle(High)) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001748 DestBBs.push_back(I->BB);
1749 if (TEI==High)
1750 ++I;
1751 } else {
1752 DestBBs.push_back(Default);
1753 }
1754 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00001755
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001756 // Update successor info. Add one edge to each unique successor.
Anton Korobeynikov23218582008-12-23 22:25:27 +00001757 BitVector SuccsHandled(CR.CaseBB->getParent()->getNumBlockIDs());
1758 for (std::vector<MachineBasicBlock*>::iterator I = DestBBs.begin(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001759 E = DestBBs.end(); I != E; ++I) {
1760 if (!SuccsHandled[(*I)->getNumber()]) {
1761 SuccsHandled[(*I)->getNumber()] = true;
1762 JumpTableBB->addSuccessor(*I);
1763 }
1764 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00001765
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001766 // Create a jump table index for this jump table, or return an existing
1767 // one.
1768 unsigned JTI = CurMF->getJumpTableInfo()->getJumpTableIndex(DestBBs);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001769
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001770 // Set the jump table information so that we can codegen it as a second
1771 // MachineBasicBlock
1772 JumpTable JT(-1U, JTI, JumpTableBB, Default);
1773 JumpTableHeader JTH(First, Last, SV, CR.CaseBB, (CR.CaseBB == CurMBB));
1774 if (CR.CaseBB == CurMBB)
1775 visitJumpTableHeader(JT, JTH);
Anton Korobeynikov23218582008-12-23 22:25:27 +00001776
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001777 JTCases.push_back(JumpTableBlock(JTH, JT));
1778
1779 return true;
1780}
1781
1782/// handleBTSplitSwitchCase - emit comparison and split binary search tree into
1783/// 2 subtrees.
1784bool SelectionDAGLowering::handleBTSplitSwitchCase(CaseRec& CR,
1785 CaseRecVector& WorkList,
1786 Value* SV,
1787 MachineBasicBlock* Default) {
1788 // Get the MachineFunction which holds the current MBB. This is used when
1789 // inserting any additional MBBs necessary to represent the switch.
Anton Korobeynikov23218582008-12-23 22:25:27 +00001790 MachineFunction *CurMF = CurMBB->getParent();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001791
1792 // Figure out which block is immediately after the current one.
1793 MachineBasicBlock *NextBlock = 0;
1794 MachineFunction::iterator BBI = CR.CaseBB;
1795
1796 if (++BBI != CurMBB->getParent()->end())
1797 NextBlock = BBI;
1798
1799 Case& FrontCase = *CR.Range.first;
1800 Case& BackCase = *(CR.Range.second-1);
1801 const BasicBlock *LLVMBB = CR.CaseBB->getBasicBlock();
1802
1803 // Size is the number of Cases represented by this range.
1804 unsigned Size = CR.Range.second - CR.Range.first;
1805
Anton Korobeynikov23218582008-12-23 22:25:27 +00001806 const APInt& First = cast<ConstantInt>(FrontCase.Low)->getValue();
1807 const APInt& Last = cast<ConstantInt>(BackCase.High)->getValue();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001808 double FMetric = 0;
1809 CaseItr Pivot = CR.Range.first + Size/2;
1810
1811 // Select optimal pivot, maximizing sum density of LHS and RHS. This will
1812 // (heuristically) allow us to emit JumpTable's later.
Anton Korobeynikov23218582008-12-23 22:25:27 +00001813 size_t TSize = 0;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001814 for (CaseItr I = CR.Range.first, E = CR.Range.second;
1815 I!=E; ++I)
1816 TSize += I->size();
1817
Anton Korobeynikov23218582008-12-23 22:25:27 +00001818 size_t LSize = FrontCase.size();
1819 size_t RSize = TSize-LSize;
Anton Korobeynikov56d245b2008-12-23 22:26:18 +00001820 DEBUG(errs() << "Selecting best pivot: \n"
1821 << "First: " << First << ", Last: " << Last <<'\n'
1822 << "LSize: " << LSize << ", RSize: " << RSize << '\n');
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001823 for (CaseItr I = CR.Range.first, J=I+1, E = CR.Range.second;
1824 J!=E; ++I, ++J) {
Anton Korobeynikov23218582008-12-23 22:25:27 +00001825 const APInt& LEnd = cast<ConstantInt>(I->High)->getValue();
1826 const APInt& RBegin = cast<ConstantInt>(J->Low)->getValue();
Anton Korobeynikove2f95e92008-12-23 22:26:01 +00001827 APInt Range = ComputeRange(LEnd, RBegin);
1828 assert((Range - 2ULL).isNonNegative() &&
1829 "Invalid case distance");
Anton Korobeynikov23218582008-12-23 22:25:27 +00001830 double LDensity = (double)LSize / (LEnd - First + 1ULL).roundToDouble();
1831 double RDensity = (double)RSize / (Last - RBegin + 1ULL).roundToDouble();
Anton Korobeynikove2f95e92008-12-23 22:26:01 +00001832 double Metric = Range.logBase2()*(LDensity+RDensity);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001833 // Should always split in some non-trivial place
Anton Korobeynikov56d245b2008-12-23 22:26:18 +00001834 DEBUG(errs() <<"=>Step\n"
1835 << "LEnd: " << LEnd << ", RBegin: " << RBegin << '\n'
1836 << "LDensity: " << LDensity
1837 << ", RDensity: " << RDensity << '\n'
1838 << "Metric: " << Metric << '\n');
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001839 if (FMetric < Metric) {
1840 Pivot = J;
1841 FMetric = Metric;
Anton Korobeynikov56d245b2008-12-23 22:26:18 +00001842 DEBUG(errs() << "Current metric set to: " << FMetric << '\n');
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001843 }
1844
1845 LSize += J->size();
1846 RSize -= J->size();
1847 }
1848 if (areJTsAllowed(TLI)) {
1849 // If our case is dense we *really* should handle it earlier!
1850 assert((FMetric > 0) && "Should handle dense range earlier!");
1851 } else {
1852 Pivot = CR.Range.first + Size/2;
1853 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00001854
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001855 CaseRange LHSR(CR.Range.first, Pivot);
1856 CaseRange RHSR(Pivot, CR.Range.second);
1857 Constant *C = Pivot->Low;
1858 MachineBasicBlock *FalseBB = 0, *TrueBB = 0;
Anton Korobeynikov23218582008-12-23 22:25:27 +00001859
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001860 // We know that we branch to the LHS if the Value being switched on is
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001861 // less than the Pivot value, C. We use this to optimize our binary
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001862 // tree a bit, by recognizing that if SV is greater than or equal to the
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001863 // LHS's Case Value, and that Case Value is exactly one less than the
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001864 // Pivot's Value, then we can branch directly to the LHS's Target,
1865 // rather than creating a leaf node for it.
1866 if ((LHSR.second - LHSR.first) == 1 &&
1867 LHSR.first->High == CR.GE &&
Anton Korobeynikov23218582008-12-23 22:25:27 +00001868 cast<ConstantInt>(C)->getValue() ==
1869 (cast<ConstantInt>(CR.GE)->getValue() + 1LL)) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001870 TrueBB = LHSR.first->BB;
1871 } else {
1872 TrueBB = CurMF->CreateMachineBasicBlock(LLVMBB);
1873 CurMF->insert(BBI, TrueBB);
1874 WorkList.push_back(CaseRec(TrueBB, C, CR.GE, LHSR));
Dan Gohman8e5c0da2009-04-09 02:33:36 +00001875
1876 // Put SV in a virtual register to make it available from the new blocks.
1877 ExportFromCurrentBlock(SV);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001878 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00001879
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001880 // Similar to the optimization above, if the Value being switched on is
1881 // known to be less than the Constant CR.LT, and the current Case Value
1882 // is CR.LT - 1, then we can branch directly to the target block for
1883 // the current Case Value, rather than emitting a RHS leaf node for it.
1884 if ((RHSR.second - RHSR.first) == 1 && CR.LT &&
Anton Korobeynikov23218582008-12-23 22:25:27 +00001885 cast<ConstantInt>(RHSR.first->Low)->getValue() ==
1886 (cast<ConstantInt>(CR.LT)->getValue() - 1LL)) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001887 FalseBB = RHSR.first->BB;
1888 } else {
1889 FalseBB = CurMF->CreateMachineBasicBlock(LLVMBB);
1890 CurMF->insert(BBI, FalseBB);
1891 WorkList.push_back(CaseRec(FalseBB,CR.LT,C,RHSR));
Dan Gohman8e5c0da2009-04-09 02:33:36 +00001892
1893 // Put SV in a virtual register to make it available from the new blocks.
1894 ExportFromCurrentBlock(SV);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001895 }
1896
1897 // Create a CaseBlock record representing a conditional branch to
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00001898 // the LHS node if the value being switched on SV is less than C.
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001899 // Otherwise, branch to LHS.
1900 CaseBlock CB(ISD::SETLT, SV, C, NULL, TrueBB, FalseBB, CR.CaseBB);
1901
1902 if (CR.CaseBB == CurMBB)
1903 visitSwitchCase(CB);
1904 else
1905 SwitchCases.push_back(CB);
1906
1907 return true;
1908}
1909
1910/// handleBitTestsSwitchCase - if current case range has few destination and
1911/// range span less, than machine word bitwidth, encode case range into series
1912/// of masks and emit bit tests with these masks.
1913bool SelectionDAGLowering::handleBitTestsSwitchCase(CaseRec& CR,
1914 CaseRecVector& WorkList,
1915 Value* SV,
1916 MachineBasicBlock* Default){
1917 unsigned IntPtrBits = TLI.getPointerTy().getSizeInBits();
1918
1919 Case& FrontCase = *CR.Range.first;
1920 Case& BackCase = *(CR.Range.second-1);
1921
1922 // Get the MachineFunction which holds the current MBB. This is used when
1923 // inserting any additional MBBs necessary to represent the switch.
Anton Korobeynikov23218582008-12-23 22:25:27 +00001924 MachineFunction *CurMF = CurMBB->getParent();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001925
Anton Korobeynikovd34167a2009-05-08 18:51:34 +00001926 // If target does not have legal shift left, do not emit bit tests at all.
1927 if (!TLI.isOperationLegal(ISD::SHL, TLI.getPointerTy()))
1928 return false;
1929
Anton Korobeynikov23218582008-12-23 22:25:27 +00001930 size_t numCmps = 0;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001931 for (CaseItr I = CR.Range.first, E = CR.Range.second;
1932 I!=E; ++I) {
1933 // Single case counts one, case range - two.
Anton Korobeynikov23218582008-12-23 22:25:27 +00001934 numCmps += (I->Low == I->High ? 1 : 2);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001935 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00001936
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001937 // Count unique destinations
1938 SmallSet<MachineBasicBlock*, 4> Dests;
1939 for (CaseItr I = CR.Range.first, E = CR.Range.second; I!=E; ++I) {
1940 Dests.insert(I->BB);
1941 if (Dests.size() > 3)
1942 // Don't bother the code below, if there are too much unique destinations
1943 return false;
1944 }
Anton Korobeynikov56d245b2008-12-23 22:26:18 +00001945 DEBUG(errs() << "Total number of unique destinations: " << Dests.size() << '\n'
1946 << "Total number of comparisons: " << numCmps << '\n');
Anton Korobeynikov23218582008-12-23 22:25:27 +00001947
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001948 // Compute span of values.
Anton Korobeynikov23218582008-12-23 22:25:27 +00001949 const APInt& minValue = cast<ConstantInt>(FrontCase.Low)->getValue();
1950 const APInt& maxValue = cast<ConstantInt>(BackCase.High)->getValue();
Anton Korobeynikove2f95e92008-12-23 22:26:01 +00001951 APInt cmpRange = maxValue - minValue;
1952
Anton Korobeynikov56d245b2008-12-23 22:26:18 +00001953 DEBUG(errs() << "Compare range: " << cmpRange << '\n'
1954 << "Low bound: " << minValue << '\n'
1955 << "High bound: " << maxValue << '\n');
Anton Korobeynikov23218582008-12-23 22:25:27 +00001956
1957 if (cmpRange.uge(APInt(cmpRange.getBitWidth(), IntPtrBits)) ||
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001958 (!(Dests.size() == 1 && numCmps >= 3) &&
1959 !(Dests.size() == 2 && numCmps >= 5) &&
1960 !(Dests.size() >= 3 && numCmps >= 6)))
1961 return false;
Anton Korobeynikov23218582008-12-23 22:25:27 +00001962
Anton Korobeynikov56d245b2008-12-23 22:26:18 +00001963 DEBUG(errs() << "Emitting bit tests\n");
Anton Korobeynikov23218582008-12-23 22:25:27 +00001964 APInt lowBound = APInt::getNullValue(cmpRange.getBitWidth());
1965
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001966 // Optimize the case where all the case values fit in a
1967 // word without having to subtract minValue. In this case,
1968 // we can optimize away the subtraction.
Anton Korobeynikov23218582008-12-23 22:25:27 +00001969 if (minValue.isNonNegative() &&
1970 maxValue.slt(APInt(maxValue.getBitWidth(), IntPtrBits))) {
1971 cmpRange = maxValue;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001972 } else {
Anton Korobeynikov23218582008-12-23 22:25:27 +00001973 lowBound = minValue;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001974 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00001975
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001976 CaseBitsVector CasesBits;
1977 unsigned i, count = 0;
1978
1979 for (CaseItr I = CR.Range.first, E = CR.Range.second; I!=E; ++I) {
1980 MachineBasicBlock* Dest = I->BB;
1981 for (i = 0; i < count; ++i)
1982 if (Dest == CasesBits[i].BB)
1983 break;
Anton Korobeynikov23218582008-12-23 22:25:27 +00001984
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001985 if (i == count) {
1986 assert((count < 3) && "Too much destinations to test!");
1987 CasesBits.push_back(CaseBits(0, Dest, 0));
1988 count++;
1989 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00001990
1991 const APInt& lowValue = cast<ConstantInt>(I->Low)->getValue();
1992 const APInt& highValue = cast<ConstantInt>(I->High)->getValue();
1993
1994 uint64_t lo = (lowValue - lowBound).getZExtValue();
1995 uint64_t hi = (highValue - lowBound).getZExtValue();
1996
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00001997 for (uint64_t j = lo; j <= hi; j++) {
1998 CasesBits[i].Mask |= 1ULL << j;
1999 CasesBits[i].Bits++;
2000 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00002001
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002002 }
2003 std::sort(CasesBits.begin(), CasesBits.end(), CaseBitsCmp());
Anton Korobeynikov23218582008-12-23 22:25:27 +00002004
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002005 BitTestInfo BTC;
2006
2007 // Figure out which block is immediately after the current one.
2008 MachineFunction::iterator BBI = CR.CaseBB;
2009 ++BBI;
2010
2011 const BasicBlock *LLVMBB = CR.CaseBB->getBasicBlock();
2012
Anton Korobeynikov56d245b2008-12-23 22:26:18 +00002013 DEBUG(errs() << "Cases:\n");
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002014 for (unsigned i = 0, e = CasesBits.size(); i!=e; ++i) {
Anton Korobeynikov56d245b2008-12-23 22:26:18 +00002015 DEBUG(errs() << "Mask: " << CasesBits[i].Mask
2016 << ", Bits: " << CasesBits[i].Bits
2017 << ", BB: " << CasesBits[i].BB << '\n');
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002018
2019 MachineBasicBlock *CaseBB = CurMF->CreateMachineBasicBlock(LLVMBB);
2020 CurMF->insert(BBI, CaseBB);
2021 BTC.push_back(BitTestCase(CasesBits[i].Mask,
2022 CaseBB,
2023 CasesBits[i].BB));
Dan Gohman8e5c0da2009-04-09 02:33:36 +00002024
2025 // Put SV in a virtual register to make it available from the new blocks.
2026 ExportFromCurrentBlock(SV);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002027 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00002028
2029 BitTestBlock BTB(lowBound, cmpRange, SV,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002030 -1U, (CR.CaseBB == CurMBB),
2031 CR.CaseBB, Default, BTC);
2032
2033 if (CR.CaseBB == CurMBB)
2034 visitBitTestHeader(BTB);
Anton Korobeynikov23218582008-12-23 22:25:27 +00002035
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002036 BitTestCases.push_back(BTB);
2037
2038 return true;
2039}
2040
2041
2042/// Clusterify - Transform simple list of Cases into list of CaseRange's
Anton Korobeynikov23218582008-12-23 22:25:27 +00002043size_t SelectionDAGLowering::Clusterify(CaseVector& Cases,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002044 const SwitchInst& SI) {
Anton Korobeynikov23218582008-12-23 22:25:27 +00002045 size_t numCmps = 0;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002046
2047 // Start with "simple" cases
Anton Korobeynikov23218582008-12-23 22:25:27 +00002048 for (size_t i = 1; i < SI.getNumSuccessors(); ++i) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002049 MachineBasicBlock *SMBB = FuncInfo.MBBMap[SI.getSuccessor(i)];
2050 Cases.push_back(Case(SI.getSuccessorValue(i),
2051 SI.getSuccessorValue(i),
2052 SMBB));
2053 }
2054 std::sort(Cases.begin(), Cases.end(), CaseCmp());
2055
2056 // Merge case into clusters
Anton Korobeynikov23218582008-12-23 22:25:27 +00002057 if (Cases.size() >= 2)
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002058 // Must recompute end() each iteration because it may be
2059 // invalidated by erase if we hold on to it
Anton Korobeynikov23218582008-12-23 22:25:27 +00002060 for (CaseItr I = Cases.begin(), J = ++(Cases.begin()); J != Cases.end(); ) {
2061 const APInt& nextValue = cast<ConstantInt>(J->Low)->getValue();
2062 const APInt& currentValue = cast<ConstantInt>(I->High)->getValue();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002063 MachineBasicBlock* nextBB = J->BB;
2064 MachineBasicBlock* currentBB = I->BB;
2065
2066 // If the two neighboring cases go to the same destination, merge them
2067 // into a single case.
Anton Korobeynikov23218582008-12-23 22:25:27 +00002068 if ((nextValue - currentValue == 1) && (currentBB == nextBB)) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002069 I->High = J->High;
2070 J = Cases.erase(J);
2071 } else {
2072 I = J++;
2073 }
2074 }
2075
2076 for (CaseItr I=Cases.begin(), E=Cases.end(); I!=E; ++I, ++numCmps) {
2077 if (I->Low != I->High)
2078 // A range counts double, since it requires two compares.
2079 ++numCmps;
2080 }
2081
2082 return numCmps;
2083}
2084
Anton Korobeynikov23218582008-12-23 22:25:27 +00002085void SelectionDAGLowering::visitSwitch(SwitchInst &SI) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002086 // Figure out which block is immediately after the current one.
2087 MachineBasicBlock *NextBlock = 0;
2088 MachineFunction::iterator BBI = CurMBB;
2089
2090 MachineBasicBlock *Default = FuncInfo.MBBMap[SI.getDefaultDest()];
2091
2092 // If there is only the default destination, branch to it if it is not the
2093 // next basic block. Otherwise, just fall through.
2094 if (SI.getNumOperands() == 2) {
2095 // Update machine-CFG edges.
2096
2097 // If this is not a fall-through branch, emit the branch.
2098 CurMBB->addSuccessor(Default);
2099 if (Default != NextBlock)
Dale Johannesen66978ee2009-01-31 02:22:37 +00002100 DAG.setRoot(DAG.getNode(ISD::BR, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002101 MVT::Other, getControlRoot(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002102 DAG.getBasicBlock(Default)));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002103 return;
2104 }
Anton Korobeynikov23218582008-12-23 22:25:27 +00002105
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002106 // If there are any non-default case statements, create a vector of Cases
2107 // representing each one, and sort the vector so that we can efficiently
2108 // create a binary search tree from them.
2109 CaseVector Cases;
Anton Korobeynikov23218582008-12-23 22:25:27 +00002110 size_t numCmps = Clusterify(Cases, SI);
Anton Korobeynikov56d245b2008-12-23 22:26:18 +00002111 DEBUG(errs() << "Clusterify finished. Total clusters: " << Cases.size()
2112 << ". Total compares: " << numCmps << '\n');
Devang Patel8a84e442009-01-05 17:31:22 +00002113 numCmps = 0;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002114
2115 // Get the Value to be switched on and default basic blocks, which will be
2116 // inserted into CaseBlock records, representing basic blocks in the binary
2117 // search tree.
2118 Value *SV = SI.getOperand(0);
2119
2120 // Push the initial CaseRec onto the worklist
2121 CaseRecVector WorkList;
2122 WorkList.push_back(CaseRec(CurMBB,0,0,CaseRange(Cases.begin(),Cases.end())));
2123
2124 while (!WorkList.empty()) {
2125 // Grab a record representing a case range to process off the worklist
2126 CaseRec CR = WorkList.back();
2127 WorkList.pop_back();
2128
2129 if (handleBitTestsSwitchCase(CR, WorkList, SV, Default))
2130 continue;
Anton Korobeynikov23218582008-12-23 22:25:27 +00002131
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002132 // If the range has few cases (two or less) emit a series of specific
2133 // tests.
2134 if (handleSmallSwitchRange(CR, WorkList, SV, Default))
2135 continue;
Anton Korobeynikov23218582008-12-23 22:25:27 +00002136
Anton Korobeynikove2f95e92008-12-23 22:26:01 +00002137 // If the switch has more than 5 blocks, and at least 40% dense, and the
2138 // target supports indirect branches, then emit a jump table rather than
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002139 // lowering the switch to a binary tree of conditional branches.
2140 if (handleJTSwitchCase(CR, WorkList, SV, Default))
2141 continue;
Anton Korobeynikov23218582008-12-23 22:25:27 +00002142
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002143 // Emit binary tree. We need to pick a pivot, and push left and right ranges
2144 // onto the worklist. Leafs are handled via handleSmallSwitchRange() call.
2145 handleBTSplitSwitchCase(CR, WorkList, SV, Default);
2146 }
2147}
2148
2149
2150void SelectionDAGLowering::visitSub(User &I) {
2151 // -0.0 - X --> fneg
2152 const Type *Ty = I.getType();
2153 if (isa<VectorType>(Ty)) {
2154 if (ConstantVector *CV = dyn_cast<ConstantVector>(I.getOperand(0))) {
2155 const VectorType *DestTy = cast<VectorType>(I.getType());
2156 const Type *ElTy = DestTy->getElementType();
2157 if (ElTy->isFloatingPoint()) {
2158 unsigned VL = DestTy->getNumElements();
2159 std::vector<Constant*> NZ(VL, ConstantFP::getNegativeZero(ElTy));
2160 Constant *CNZ = ConstantVector::get(&NZ[0], NZ.size());
2161 if (CV == CNZ) {
2162 SDValue Op2 = getValue(I.getOperand(1));
Scott Michelfdc40a02009-02-17 22:15:04 +00002163 setValue(&I, DAG.getNode(ISD::FNEG, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002164 Op2.getValueType(), Op2));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002165 return;
2166 }
2167 }
2168 }
2169 }
2170 if (Ty->isFloatingPoint()) {
2171 if (ConstantFP *CFP = dyn_cast<ConstantFP>(I.getOperand(0)))
2172 if (CFP->isExactlyValue(ConstantFP::getNegativeZero(Ty)->getValueAPF())) {
2173 SDValue Op2 = getValue(I.getOperand(1));
Scott Michelfdc40a02009-02-17 22:15:04 +00002174 setValue(&I, DAG.getNode(ISD::FNEG, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002175 Op2.getValueType(), Op2));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002176 return;
2177 }
2178 }
2179
2180 visitBinary(I, Ty->isFPOrFPVector() ? ISD::FSUB : ISD::SUB);
2181}
2182
2183void SelectionDAGLowering::visitBinary(User &I, unsigned OpCode) {
2184 SDValue Op1 = getValue(I.getOperand(0));
2185 SDValue Op2 = getValue(I.getOperand(1));
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002186
Scott Michelfdc40a02009-02-17 22:15:04 +00002187 setValue(&I, DAG.getNode(OpCode, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002188 Op1.getValueType(), Op1, Op2));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002189}
2190
2191void SelectionDAGLowering::visitShift(User &I, unsigned Opcode) {
2192 SDValue Op1 = getValue(I.getOperand(0));
2193 SDValue Op2 = getValue(I.getOperand(1));
Dan Gohman57fc82d2009-04-09 03:51:29 +00002194 if (!isa<VectorType>(I.getType()) &&
2195 Op2.getValueType() != TLI.getShiftAmountTy()) {
2196 // If the operand is smaller than the shift count type, promote it.
2197 if (TLI.getShiftAmountTy().bitsGT(Op2.getValueType()))
2198 Op2 = DAG.getNode(ISD::ANY_EXTEND, getCurDebugLoc(),
2199 TLI.getShiftAmountTy(), Op2);
2200 // If the operand is larger than the shift count type but the shift
2201 // count type has enough bits to represent any shift value, truncate
2202 // it now. This is a common case and it exposes the truncate to
2203 // optimization early.
2204 else if (TLI.getShiftAmountTy().getSizeInBits() >=
2205 Log2_32_Ceil(Op2.getValueType().getSizeInBits()))
2206 Op2 = DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(),
2207 TLI.getShiftAmountTy(), Op2);
2208 // Otherwise we'll need to temporarily settle for some other
2209 // convenient type; type legalization will make adjustments as
2210 // needed.
2211 else if (TLI.getPointerTy().bitsLT(Op2.getValueType()))
Scott Michelfdc40a02009-02-17 22:15:04 +00002212 Op2 = DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(),
Duncan Sands92abc622009-01-31 15:50:11 +00002213 TLI.getPointerTy(), Op2);
2214 else if (TLI.getPointerTy().bitsGT(Op2.getValueType()))
Scott Michelfdc40a02009-02-17 22:15:04 +00002215 Op2 = DAG.getNode(ISD::ANY_EXTEND, getCurDebugLoc(),
Duncan Sands92abc622009-01-31 15:50:11 +00002216 TLI.getPointerTy(), Op2);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002217 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002218
Scott Michelfdc40a02009-02-17 22:15:04 +00002219 setValue(&I, DAG.getNode(Opcode, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002220 Op1.getValueType(), Op1, Op2));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002221}
2222
2223void SelectionDAGLowering::visitICmp(User &I) {
2224 ICmpInst::Predicate predicate = ICmpInst::BAD_ICMP_PREDICATE;
2225 if (ICmpInst *IC = dyn_cast<ICmpInst>(&I))
2226 predicate = IC->getPredicate();
2227 else if (ConstantExpr *IC = dyn_cast<ConstantExpr>(&I))
2228 predicate = ICmpInst::Predicate(IC->getPredicate());
2229 SDValue Op1 = getValue(I.getOperand(0));
2230 SDValue Op2 = getValue(I.getOperand(1));
Dan Gohman8c1a6ca2008-10-17 18:18:45 +00002231 ISD::CondCode Opcode = getICmpCondCode(predicate);
Dale Johannesenf5d97892009-02-04 01:48:28 +00002232 setValue(&I, DAG.getSetCC(getCurDebugLoc(),MVT::i1, Op1, Op2, Opcode));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002233}
2234
2235void SelectionDAGLowering::visitFCmp(User &I) {
2236 FCmpInst::Predicate predicate = FCmpInst::BAD_FCMP_PREDICATE;
2237 if (FCmpInst *FC = dyn_cast<FCmpInst>(&I))
2238 predicate = FC->getPredicate();
2239 else if (ConstantExpr *FC = dyn_cast<ConstantExpr>(&I))
2240 predicate = FCmpInst::Predicate(FC->getPredicate());
2241 SDValue Op1 = getValue(I.getOperand(0));
2242 SDValue Op2 = getValue(I.getOperand(1));
Dan Gohman8c1a6ca2008-10-17 18:18:45 +00002243 ISD::CondCode Condition = getFCmpCondCode(predicate);
Dale Johannesenf5d97892009-02-04 01:48:28 +00002244 setValue(&I, DAG.getSetCC(getCurDebugLoc(), MVT::i1, Op1, Op2, Condition));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002245}
2246
2247void SelectionDAGLowering::visitVICmp(User &I) {
2248 ICmpInst::Predicate predicate = ICmpInst::BAD_ICMP_PREDICATE;
2249 if (VICmpInst *IC = dyn_cast<VICmpInst>(&I))
2250 predicate = IC->getPredicate();
2251 else if (ConstantExpr *IC = dyn_cast<ConstantExpr>(&I))
2252 predicate = ICmpInst::Predicate(IC->getPredicate());
2253 SDValue Op1 = getValue(I.getOperand(0));
2254 SDValue Op2 = getValue(I.getOperand(1));
Dan Gohman8c1a6ca2008-10-17 18:18:45 +00002255 ISD::CondCode Opcode = getICmpCondCode(predicate);
Scott Michelfdc40a02009-02-17 22:15:04 +00002256 setValue(&I, DAG.getVSetCC(getCurDebugLoc(), Op1.getValueType(),
Dale Johannesenf5d97892009-02-04 01:48:28 +00002257 Op1, Op2, Opcode));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002258}
2259
2260void SelectionDAGLowering::visitVFCmp(User &I) {
2261 FCmpInst::Predicate predicate = FCmpInst::BAD_FCMP_PREDICATE;
2262 if (VFCmpInst *FC = dyn_cast<VFCmpInst>(&I))
2263 predicate = FC->getPredicate();
2264 else if (ConstantExpr *FC = dyn_cast<ConstantExpr>(&I))
2265 predicate = FCmpInst::Predicate(FC->getPredicate());
2266 SDValue Op1 = getValue(I.getOperand(0));
2267 SDValue Op2 = getValue(I.getOperand(1));
Dan Gohman8c1a6ca2008-10-17 18:18:45 +00002268 ISD::CondCode Condition = getFCmpCondCode(predicate);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002269 MVT DestVT = TLI.getValueType(I.getType());
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002270
Dale Johannesenf5d97892009-02-04 01:48:28 +00002271 setValue(&I, DAG.getVSetCC(getCurDebugLoc(), DestVT, Op1, Op2, Condition));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002272}
2273
2274void SelectionDAGLowering::visitSelect(User &I) {
Dan Gohman7ea1ca62008-10-21 20:00:42 +00002275 SmallVector<MVT, 4> ValueVTs;
2276 ComputeValueVTs(TLI, I.getType(), ValueVTs);
2277 unsigned NumValues = ValueVTs.size();
2278 if (NumValues != 0) {
2279 SmallVector<SDValue, 4> Values(NumValues);
2280 SDValue Cond = getValue(I.getOperand(0));
2281 SDValue TrueVal = getValue(I.getOperand(1));
2282 SDValue FalseVal = getValue(I.getOperand(2));
2283
2284 for (unsigned i = 0; i != NumValues; ++i)
Scott Michelfdc40a02009-02-17 22:15:04 +00002285 Values[i] = DAG.getNode(ISD::SELECT, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002286 TrueVal.getValueType(), Cond,
Dan Gohman7ea1ca62008-10-21 20:00:42 +00002287 SDValue(TrueVal.getNode(), TrueVal.getResNo() + i),
2288 SDValue(FalseVal.getNode(), FalseVal.getResNo() + i));
2289
Scott Michelfdc40a02009-02-17 22:15:04 +00002290 setValue(&I, DAG.getNode(ISD::MERGE_VALUES, getCurDebugLoc(),
Duncan Sandsaaffa052008-12-01 11:41:29 +00002291 DAG.getVTList(&ValueVTs[0], NumValues),
2292 &Values[0], NumValues));
Dan Gohman7ea1ca62008-10-21 20:00:42 +00002293 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002294}
2295
2296
2297void SelectionDAGLowering::visitTrunc(User &I) {
2298 // TruncInst cannot be a no-op cast because sizeof(src) > sizeof(dest).
2299 SDValue N = getValue(I.getOperand(0));
2300 MVT DestVT = TLI.getValueType(I.getType());
Dale Johannesen66978ee2009-01-31 02:22:37 +00002301 setValue(&I, DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(), DestVT, N));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002302}
2303
2304void SelectionDAGLowering::visitZExt(User &I) {
2305 // ZExt cannot be a no-op cast because sizeof(src) < sizeof(dest).
2306 // ZExt also can't be a cast to bool for same reason. So, nothing much to do
2307 SDValue N = getValue(I.getOperand(0));
2308 MVT DestVT = TLI.getValueType(I.getType());
Dale Johannesen66978ee2009-01-31 02:22:37 +00002309 setValue(&I, DAG.getNode(ISD::ZERO_EXTEND, getCurDebugLoc(), DestVT, N));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002310}
2311
2312void SelectionDAGLowering::visitSExt(User &I) {
2313 // SExt cannot be a no-op cast because sizeof(src) < sizeof(dest).
2314 // SExt also can't be a cast to bool for same reason. So, nothing much to do
2315 SDValue N = getValue(I.getOperand(0));
2316 MVT DestVT = TLI.getValueType(I.getType());
Dale Johannesen66978ee2009-01-31 02:22:37 +00002317 setValue(&I, DAG.getNode(ISD::SIGN_EXTEND, getCurDebugLoc(), DestVT, N));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002318}
2319
2320void SelectionDAGLowering::visitFPTrunc(User &I) {
2321 // FPTrunc is never a no-op cast, no need to check
2322 SDValue N = getValue(I.getOperand(0));
2323 MVT DestVT = TLI.getValueType(I.getType());
Scott Michelfdc40a02009-02-17 22:15:04 +00002324 setValue(&I, DAG.getNode(ISD::FP_ROUND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002325 DestVT, N, DAG.getIntPtrConstant(0)));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002326}
2327
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002328void SelectionDAGLowering::visitFPExt(User &I){
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002329 // FPTrunc is never a no-op cast, no need to check
2330 SDValue N = getValue(I.getOperand(0));
2331 MVT DestVT = TLI.getValueType(I.getType());
Dale Johannesen66978ee2009-01-31 02:22:37 +00002332 setValue(&I, DAG.getNode(ISD::FP_EXTEND, getCurDebugLoc(), DestVT, N));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002333}
2334
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002335void SelectionDAGLowering::visitFPToUI(User &I) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002336 // FPToUI is never a no-op cast, no need to check
2337 SDValue N = getValue(I.getOperand(0));
2338 MVT DestVT = TLI.getValueType(I.getType());
Dale Johannesen66978ee2009-01-31 02:22:37 +00002339 setValue(&I, DAG.getNode(ISD::FP_TO_UINT, getCurDebugLoc(), DestVT, N));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002340}
2341
2342void SelectionDAGLowering::visitFPToSI(User &I) {
2343 // FPToSI is never a no-op cast, no need to check
2344 SDValue N = getValue(I.getOperand(0));
2345 MVT DestVT = TLI.getValueType(I.getType());
Dale Johannesen66978ee2009-01-31 02:22:37 +00002346 setValue(&I, DAG.getNode(ISD::FP_TO_SINT, getCurDebugLoc(), DestVT, N));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002347}
2348
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002349void SelectionDAGLowering::visitUIToFP(User &I) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002350 // UIToFP is never a no-op cast, no need to check
2351 SDValue N = getValue(I.getOperand(0));
2352 MVT DestVT = TLI.getValueType(I.getType());
Dale Johannesen66978ee2009-01-31 02:22:37 +00002353 setValue(&I, DAG.getNode(ISD::UINT_TO_FP, getCurDebugLoc(), DestVT, N));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002354}
2355
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002356void SelectionDAGLowering::visitSIToFP(User &I){
Bill Wendling181b6272008-10-19 20:34:04 +00002357 // SIToFP is never a no-op cast, no need to check
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002358 SDValue N = getValue(I.getOperand(0));
2359 MVT DestVT = TLI.getValueType(I.getType());
Dale Johannesen66978ee2009-01-31 02:22:37 +00002360 setValue(&I, DAG.getNode(ISD::SINT_TO_FP, getCurDebugLoc(), DestVT, N));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002361}
2362
2363void SelectionDAGLowering::visitPtrToInt(User &I) {
2364 // What to do depends on the size of the integer and the size of the pointer.
2365 // We can either truncate, zero extend, or no-op, accordingly.
2366 SDValue N = getValue(I.getOperand(0));
2367 MVT SrcVT = N.getValueType();
2368 MVT DestVT = TLI.getValueType(I.getType());
2369 SDValue Result;
2370 if (DestVT.bitsLT(SrcVT))
Dale Johannesen66978ee2009-01-31 02:22:37 +00002371 Result = DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(), DestVT, N);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002372 else
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002373 // Note: ZERO_EXTEND can handle cases where the sizes are equal too
Dale Johannesen66978ee2009-01-31 02:22:37 +00002374 Result = DAG.getNode(ISD::ZERO_EXTEND, getCurDebugLoc(), DestVT, N);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002375 setValue(&I, Result);
2376}
2377
2378void SelectionDAGLowering::visitIntToPtr(User &I) {
2379 // What to do depends on the size of the integer and the size of the pointer.
2380 // We can either truncate, zero extend, or no-op, accordingly.
2381 SDValue N = getValue(I.getOperand(0));
2382 MVT SrcVT = N.getValueType();
2383 MVT DestVT = TLI.getValueType(I.getType());
2384 if (DestVT.bitsLT(SrcVT))
Dale Johannesen66978ee2009-01-31 02:22:37 +00002385 setValue(&I, DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(), DestVT, N));
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002386 else
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002387 // Note: ZERO_EXTEND can handle cases where the sizes are equal too
Scott Michelfdc40a02009-02-17 22:15:04 +00002388 setValue(&I, DAG.getNode(ISD::ZERO_EXTEND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002389 DestVT, N));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002390}
2391
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002392void SelectionDAGLowering::visitBitCast(User &I) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002393 SDValue N = getValue(I.getOperand(0));
2394 MVT DestVT = TLI.getValueType(I.getType());
2395
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002396 // BitCast assures us that source and destination are the same size so this
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002397 // is either a BIT_CONVERT or a no-op.
2398 if (DestVT != N.getValueType())
Scott Michelfdc40a02009-02-17 22:15:04 +00002399 setValue(&I, DAG.getNode(ISD::BIT_CONVERT, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002400 DestVT, N)); // convert types
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002401 else
2402 setValue(&I, N); // noop cast.
2403}
2404
2405void SelectionDAGLowering::visitInsertElement(User &I) {
2406 SDValue InVec = getValue(I.getOperand(0));
2407 SDValue InVal = getValue(I.getOperand(1));
Scott Michelfdc40a02009-02-17 22:15:04 +00002408 SDValue InIdx = DAG.getNode(ISD::ZERO_EXTEND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002409 TLI.getPointerTy(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002410 getValue(I.getOperand(2)));
2411
Scott Michelfdc40a02009-02-17 22:15:04 +00002412 setValue(&I, DAG.getNode(ISD::INSERT_VECTOR_ELT, getCurDebugLoc(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002413 TLI.getValueType(I.getType()),
2414 InVec, InVal, InIdx));
2415}
2416
2417void SelectionDAGLowering::visitExtractElement(User &I) {
2418 SDValue InVec = getValue(I.getOperand(0));
Scott Michelfdc40a02009-02-17 22:15:04 +00002419 SDValue InIdx = DAG.getNode(ISD::ZERO_EXTEND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002420 TLI.getPointerTy(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002421 getValue(I.getOperand(1)));
Dale Johannesen66978ee2009-01-31 02:22:37 +00002422 setValue(&I, DAG.getNode(ISD::EXTRACT_VECTOR_ELT, getCurDebugLoc(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002423 TLI.getValueType(I.getType()), InVec, InIdx));
2424}
2425
Mon P Wangaeb06d22008-11-10 04:46:22 +00002426
2427// Utility for visitShuffleVector - Returns true if the mask is mask starting
2428// from SIndx and increasing to the element length (undefs are allowed).
Nate Begeman5a5ca152009-04-29 05:20:52 +00002429static bool SequentialMask(SmallVectorImpl<int> &Mask, unsigned SIndx) {
2430 unsigned MaskNumElts = Mask.size();
2431 for (unsigned i = 0; i != MaskNumElts; ++i)
2432 if ((Mask[i] >= 0) && (Mask[i] != (int)(i + SIndx)))
Nate Begeman9008ca62009-04-27 18:41:29 +00002433 return false;
Mon P Wangaeb06d22008-11-10 04:46:22 +00002434 return true;
2435}
2436
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002437void SelectionDAGLowering::visitShuffleVector(User &I) {
Nate Begeman9008ca62009-04-27 18:41:29 +00002438 SmallVector<int, 8> Mask;
Mon P Wang230e4fa2008-11-21 04:25:21 +00002439 SDValue Src1 = getValue(I.getOperand(0));
2440 SDValue Src2 = getValue(I.getOperand(1));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002441
Nate Begeman9008ca62009-04-27 18:41:29 +00002442 // Convert the ConstantVector mask operand into an array of ints, with -1
2443 // representing undef values.
2444 SmallVector<Constant*, 8> MaskElts;
2445 cast<Constant>(I.getOperand(2))->getVectorElements(MaskElts);
Nate Begeman5a5ca152009-04-29 05:20:52 +00002446 unsigned MaskNumElts = MaskElts.size();
2447 for (unsigned i = 0; i != MaskNumElts; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00002448 if (isa<UndefValue>(MaskElts[i]))
2449 Mask.push_back(-1);
2450 else
2451 Mask.push_back(cast<ConstantInt>(MaskElts[i])->getSExtValue());
2452 }
2453
Mon P Wangaeb06d22008-11-10 04:46:22 +00002454 MVT VT = TLI.getValueType(I.getType());
Mon P Wang230e4fa2008-11-21 04:25:21 +00002455 MVT SrcVT = Src1.getValueType();
Nate Begeman5a5ca152009-04-29 05:20:52 +00002456 unsigned SrcNumElts = SrcVT.getVectorNumElements();
Mon P Wangaeb06d22008-11-10 04:46:22 +00002457
Mon P Wangc7849c22008-11-16 05:06:27 +00002458 if (SrcNumElts == MaskNumElts) {
Nate Begeman9008ca62009-04-27 18:41:29 +00002459 setValue(&I, DAG.getVectorShuffle(VT, getCurDebugLoc(), Src1, Src2,
2460 &Mask[0]));
Mon P Wangaeb06d22008-11-10 04:46:22 +00002461 return;
2462 }
2463
2464 // Normalize the shuffle vector since mask and vector length don't match.
Mon P Wangc7849c22008-11-16 05:06:27 +00002465 if (SrcNumElts < MaskNumElts && MaskNumElts % SrcNumElts == 0) {
2466 // Mask is longer than the source vectors and is a multiple of the source
2467 // vectors. We can use concatenate vector to make the mask and vectors
Mon P Wang230e4fa2008-11-21 04:25:21 +00002468 // lengths match.
Mon P Wangc7849c22008-11-16 05:06:27 +00002469 if (SrcNumElts*2 == MaskNumElts && SequentialMask(Mask, 0)) {
2470 // The shuffle is concatenating two vectors together.
Scott Michelfdc40a02009-02-17 22:15:04 +00002471 setValue(&I, DAG.getNode(ISD::CONCAT_VECTORS, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002472 VT, Src1, Src2));
Mon P Wangaeb06d22008-11-10 04:46:22 +00002473 return;
2474 }
2475
Mon P Wangc7849c22008-11-16 05:06:27 +00002476 // Pad both vectors with undefs to make them the same length as the mask.
2477 unsigned NumConcat = MaskNumElts / SrcNumElts;
Nate Begeman9008ca62009-04-27 18:41:29 +00002478 bool Src1U = Src1.getOpcode() == ISD::UNDEF;
2479 bool Src2U = Src2.getOpcode() == ISD::UNDEF;
Dale Johannesene8d72302009-02-06 23:05:02 +00002480 SDValue UndefVal = DAG.getUNDEF(SrcVT);
Mon P Wangaeb06d22008-11-10 04:46:22 +00002481
Nate Begeman9008ca62009-04-27 18:41:29 +00002482 SmallVector<SDValue, 8> MOps1(NumConcat, UndefVal);
2483 SmallVector<SDValue, 8> MOps2(NumConcat, UndefVal);
Mon P Wang230e4fa2008-11-21 04:25:21 +00002484 MOps1[0] = Src1;
2485 MOps2[0] = Src2;
Nate Begeman9008ca62009-04-27 18:41:29 +00002486
2487 Src1 = Src1U ? DAG.getUNDEF(VT) : DAG.getNode(ISD::CONCAT_VECTORS,
2488 getCurDebugLoc(), VT,
2489 &MOps1[0], NumConcat);
2490 Src2 = Src2U ? DAG.getUNDEF(VT) : DAG.getNode(ISD::CONCAT_VECTORS,
2491 getCurDebugLoc(), VT,
2492 &MOps2[0], NumConcat);
Mon P Wang230e4fa2008-11-21 04:25:21 +00002493
Mon P Wangaeb06d22008-11-10 04:46:22 +00002494 // Readjust mask for new input vector length.
Nate Begeman9008ca62009-04-27 18:41:29 +00002495 SmallVector<int, 8> MappedOps;
Nate Begeman5a5ca152009-04-29 05:20:52 +00002496 for (unsigned i = 0; i != MaskNumElts; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00002497 int Idx = Mask[i];
Nate Begeman5a5ca152009-04-29 05:20:52 +00002498 if (Idx < (int)SrcNumElts)
Nate Begeman9008ca62009-04-27 18:41:29 +00002499 MappedOps.push_back(Idx);
2500 else
2501 MappedOps.push_back(Idx + MaskNumElts - SrcNumElts);
Mon P Wangaeb06d22008-11-10 04:46:22 +00002502 }
Nate Begeman9008ca62009-04-27 18:41:29 +00002503 setValue(&I, DAG.getVectorShuffle(VT, getCurDebugLoc(), Src1, Src2,
2504 &MappedOps[0]));
Mon P Wangaeb06d22008-11-10 04:46:22 +00002505 return;
2506 }
2507
Mon P Wangc7849c22008-11-16 05:06:27 +00002508 if (SrcNumElts > MaskNumElts) {
Mon P Wangc7849c22008-11-16 05:06:27 +00002509 // Analyze the access pattern of the vector to see if we can extract
2510 // two subvectors and do the shuffle. The analysis is done by calculating
2511 // the range of elements the mask access on both vectors.
2512 int MinRange[2] = { SrcNumElts+1, SrcNumElts+1};
2513 int MaxRange[2] = {-1, -1};
2514
Nate Begeman5a5ca152009-04-29 05:20:52 +00002515 for (unsigned i = 0; i != MaskNumElts; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00002516 int Idx = Mask[i];
2517 int Input = 0;
2518 if (Idx < 0)
2519 continue;
2520
Nate Begeman5a5ca152009-04-29 05:20:52 +00002521 if (Idx >= (int)SrcNumElts) {
Nate Begeman9008ca62009-04-27 18:41:29 +00002522 Input = 1;
2523 Idx -= SrcNumElts;
Mon P Wangaeb06d22008-11-10 04:46:22 +00002524 }
Nate Begeman9008ca62009-04-27 18:41:29 +00002525 if (Idx > MaxRange[Input])
2526 MaxRange[Input] = Idx;
2527 if (Idx < MinRange[Input])
2528 MinRange[Input] = Idx;
Mon P Wangaeb06d22008-11-10 04:46:22 +00002529 }
Mon P Wangaeb06d22008-11-10 04:46:22 +00002530
Mon P Wangc7849c22008-11-16 05:06:27 +00002531 // Check if the access is smaller than the vector size and can we find
2532 // a reasonable extract index.
Mon P Wang230e4fa2008-11-21 04:25:21 +00002533 int RangeUse[2] = { 2, 2 }; // 0 = Unused, 1 = Extract, 2 = Can not Extract.
Mon P Wangc7849c22008-11-16 05:06:27 +00002534 int StartIdx[2]; // StartIdx to extract from
2535 for (int Input=0; Input < 2; ++Input) {
Nate Begeman5a5ca152009-04-29 05:20:52 +00002536 if (MinRange[Input] == (int)(SrcNumElts+1) && MaxRange[Input] == -1) {
Mon P Wangc7849c22008-11-16 05:06:27 +00002537 RangeUse[Input] = 0; // Unused
2538 StartIdx[Input] = 0;
Nate Begeman5a5ca152009-04-29 05:20:52 +00002539 } else if (MaxRange[Input] - MinRange[Input] < (int)MaskNumElts) {
Mon P Wangc7849c22008-11-16 05:06:27 +00002540 // Fits within range but we should see if we can find a good
Mon P Wang230e4fa2008-11-21 04:25:21 +00002541 // start index that is a multiple of the mask length.
Nate Begeman5a5ca152009-04-29 05:20:52 +00002542 if (MaxRange[Input] < (int)MaskNumElts) {
Mon P Wangc7849c22008-11-16 05:06:27 +00002543 RangeUse[Input] = 1; // Extract from beginning of the vector
2544 StartIdx[Input] = 0;
2545 } else {
2546 StartIdx[Input] = (MinRange[Input]/MaskNumElts)*MaskNumElts;
Nate Begeman5a5ca152009-04-29 05:20:52 +00002547 if (MaxRange[Input] - StartIdx[Input] < (int)MaskNumElts &&
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002548 StartIdx[Input] + MaskNumElts < SrcNumElts)
Mon P Wangc7849c22008-11-16 05:06:27 +00002549 RangeUse[Input] = 1; // Extract from a multiple of the mask length.
Mon P Wangc7849c22008-11-16 05:06:27 +00002550 }
Mon P Wang230e4fa2008-11-21 04:25:21 +00002551 }
Mon P Wangc7849c22008-11-16 05:06:27 +00002552 }
2553
2554 if (RangeUse[0] == 0 && RangeUse[0] == 0) {
Dale Johannesene8d72302009-02-06 23:05:02 +00002555 setValue(&I, DAG.getUNDEF(VT)); // Vectors are not used.
Mon P Wangc7849c22008-11-16 05:06:27 +00002556 return;
2557 }
2558 else if (RangeUse[0] < 2 && RangeUse[1] < 2) {
2559 // Extract appropriate subvector and generate a vector shuffle
2560 for (int Input=0; Input < 2; ++Input) {
Mon P Wang230e4fa2008-11-21 04:25:21 +00002561 SDValue& Src = Input == 0 ? Src1 : Src2;
Mon P Wangc7849c22008-11-16 05:06:27 +00002562 if (RangeUse[Input] == 0) {
Dale Johannesene8d72302009-02-06 23:05:02 +00002563 Src = DAG.getUNDEF(VT);
Mon P Wangc7849c22008-11-16 05:06:27 +00002564 } else {
Dale Johannesen66978ee2009-01-31 02:22:37 +00002565 Src = DAG.getNode(ISD::EXTRACT_SUBVECTOR, getCurDebugLoc(), VT,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002566 Src, DAG.getIntPtrConstant(StartIdx[Input]));
Mon P Wangc7849c22008-11-16 05:06:27 +00002567 }
Mon P Wangaeb06d22008-11-10 04:46:22 +00002568 }
Mon P Wangc7849c22008-11-16 05:06:27 +00002569 // Calculate new mask.
Nate Begeman9008ca62009-04-27 18:41:29 +00002570 SmallVector<int, 8> MappedOps;
Nate Begeman5a5ca152009-04-29 05:20:52 +00002571 for (unsigned i = 0; i != MaskNumElts; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00002572 int Idx = Mask[i];
2573 if (Idx < 0)
2574 MappedOps.push_back(Idx);
Nate Begeman5a5ca152009-04-29 05:20:52 +00002575 else if (Idx < (int)SrcNumElts)
Nate Begeman9008ca62009-04-27 18:41:29 +00002576 MappedOps.push_back(Idx - StartIdx[0]);
2577 else
2578 MappedOps.push_back(Idx - SrcNumElts - StartIdx[1] + MaskNumElts);
Mon P Wangc7849c22008-11-16 05:06:27 +00002579 }
Nate Begeman9008ca62009-04-27 18:41:29 +00002580 setValue(&I, DAG.getVectorShuffle(VT, getCurDebugLoc(), Src1, Src2,
2581 &MappedOps[0]));
Mon P Wangc7849c22008-11-16 05:06:27 +00002582 return;
Mon P Wangaeb06d22008-11-10 04:46:22 +00002583 }
2584 }
2585
Mon P Wangc7849c22008-11-16 05:06:27 +00002586 // We can't use either concat vectors or extract subvectors so fall back to
2587 // replacing the shuffle with extract and build vector.
2588 // to insert and build vector.
Mon P Wangaeb06d22008-11-10 04:46:22 +00002589 MVT EltVT = VT.getVectorElementType();
2590 MVT PtrVT = TLI.getPointerTy();
2591 SmallVector<SDValue,8> Ops;
Nate Begeman5a5ca152009-04-29 05:20:52 +00002592 for (unsigned i = 0; i != MaskNumElts; ++i) {
Nate Begeman9008ca62009-04-27 18:41:29 +00002593 if (Mask[i] < 0) {
Dale Johannesene8d72302009-02-06 23:05:02 +00002594 Ops.push_back(DAG.getUNDEF(EltVT));
Mon P Wangaeb06d22008-11-10 04:46:22 +00002595 } else {
Nate Begeman9008ca62009-04-27 18:41:29 +00002596 int Idx = Mask[i];
Nate Begeman5a5ca152009-04-29 05:20:52 +00002597 if (Idx < (int)SrcNumElts)
Dale Johannesen66978ee2009-01-31 02:22:37 +00002598 Ops.push_back(DAG.getNode(ISD::EXTRACT_VECTOR_ELT, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002599 EltVT, Src1, DAG.getConstant(Idx, PtrVT)));
Mon P Wangaeb06d22008-11-10 04:46:22 +00002600 else
Dale Johannesen66978ee2009-01-31 02:22:37 +00002601 Ops.push_back(DAG.getNode(ISD::EXTRACT_VECTOR_ELT, getCurDebugLoc(),
Scott Michelfdc40a02009-02-17 22:15:04 +00002602 EltVT, Src2,
Mon P Wangc7849c22008-11-16 05:06:27 +00002603 DAG.getConstant(Idx - SrcNumElts, PtrVT)));
Mon P Wangaeb06d22008-11-10 04:46:22 +00002604 }
2605 }
Evan Chenga87008d2009-02-25 22:49:59 +00002606 setValue(&I, DAG.getNode(ISD::BUILD_VECTOR, getCurDebugLoc(),
2607 VT, &Ops[0], Ops.size()));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002608}
2609
2610void SelectionDAGLowering::visitInsertValue(InsertValueInst &I) {
2611 const Value *Op0 = I.getOperand(0);
2612 const Value *Op1 = I.getOperand(1);
2613 const Type *AggTy = I.getType();
2614 const Type *ValTy = Op1->getType();
2615 bool IntoUndef = isa<UndefValue>(Op0);
2616 bool FromUndef = isa<UndefValue>(Op1);
2617
2618 unsigned LinearIndex = ComputeLinearIndex(TLI, AggTy,
2619 I.idx_begin(), I.idx_end());
2620
2621 SmallVector<MVT, 4> AggValueVTs;
2622 ComputeValueVTs(TLI, AggTy, AggValueVTs);
2623 SmallVector<MVT, 4> ValValueVTs;
2624 ComputeValueVTs(TLI, ValTy, ValValueVTs);
2625
2626 unsigned NumAggValues = AggValueVTs.size();
2627 unsigned NumValValues = ValValueVTs.size();
2628 SmallVector<SDValue, 4> Values(NumAggValues);
2629
2630 SDValue Agg = getValue(Op0);
2631 SDValue Val = getValue(Op1);
2632 unsigned i = 0;
2633 // Copy the beginning value(s) from the original aggregate.
2634 for (; i != LinearIndex; ++i)
Dale Johannesene8d72302009-02-06 23:05:02 +00002635 Values[i] = IntoUndef ? DAG.getUNDEF(AggValueVTs[i]) :
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002636 SDValue(Agg.getNode(), Agg.getResNo() + i);
2637 // Copy values from the inserted value(s).
2638 for (; i != LinearIndex + NumValValues; ++i)
Dale Johannesene8d72302009-02-06 23:05:02 +00002639 Values[i] = FromUndef ? DAG.getUNDEF(AggValueVTs[i]) :
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002640 SDValue(Val.getNode(), Val.getResNo() + i - LinearIndex);
2641 // Copy remaining value(s) from the original aggregate.
2642 for (; i != NumAggValues; ++i)
Dale Johannesene8d72302009-02-06 23:05:02 +00002643 Values[i] = IntoUndef ? DAG.getUNDEF(AggValueVTs[i]) :
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002644 SDValue(Agg.getNode(), Agg.getResNo() + i);
2645
Scott Michelfdc40a02009-02-17 22:15:04 +00002646 setValue(&I, DAG.getNode(ISD::MERGE_VALUES, getCurDebugLoc(),
Duncan Sandsaaffa052008-12-01 11:41:29 +00002647 DAG.getVTList(&AggValueVTs[0], NumAggValues),
2648 &Values[0], NumAggValues));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002649}
2650
2651void SelectionDAGLowering::visitExtractValue(ExtractValueInst &I) {
2652 const Value *Op0 = I.getOperand(0);
2653 const Type *AggTy = Op0->getType();
2654 const Type *ValTy = I.getType();
2655 bool OutOfUndef = isa<UndefValue>(Op0);
2656
2657 unsigned LinearIndex = ComputeLinearIndex(TLI, AggTy,
2658 I.idx_begin(), I.idx_end());
2659
2660 SmallVector<MVT, 4> ValValueVTs;
2661 ComputeValueVTs(TLI, ValTy, ValValueVTs);
2662
2663 unsigned NumValValues = ValValueVTs.size();
2664 SmallVector<SDValue, 4> Values(NumValValues);
2665
2666 SDValue Agg = getValue(Op0);
2667 // Copy out the selected value(s).
2668 for (unsigned i = LinearIndex; i != LinearIndex + NumValValues; ++i)
2669 Values[i - LinearIndex] =
Bill Wendlingf0a2d0c2008-11-20 07:24:30 +00002670 OutOfUndef ?
Dale Johannesene8d72302009-02-06 23:05:02 +00002671 DAG.getUNDEF(Agg.getNode()->getValueType(Agg.getResNo() + i)) :
Bill Wendlingf0a2d0c2008-11-20 07:24:30 +00002672 SDValue(Agg.getNode(), Agg.getResNo() + i);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002673
Scott Michelfdc40a02009-02-17 22:15:04 +00002674 setValue(&I, DAG.getNode(ISD::MERGE_VALUES, getCurDebugLoc(),
Duncan Sandsaaffa052008-12-01 11:41:29 +00002675 DAG.getVTList(&ValValueVTs[0], NumValValues),
2676 &Values[0], NumValValues));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002677}
2678
2679
2680void SelectionDAGLowering::visitGetElementPtr(User &I) {
2681 SDValue N = getValue(I.getOperand(0));
2682 const Type *Ty = I.getOperand(0)->getType();
2683
2684 for (GetElementPtrInst::op_iterator OI = I.op_begin()+1, E = I.op_end();
2685 OI != E; ++OI) {
2686 Value *Idx = *OI;
2687 if (const StructType *StTy = dyn_cast<StructType>(Ty)) {
2688 unsigned Field = cast<ConstantInt>(Idx)->getZExtValue();
2689 if (Field) {
2690 // N = N + Offset
2691 uint64_t Offset = TD->getStructLayout(StTy)->getElementOffset(Field);
Dale Johannesen66978ee2009-01-31 02:22:37 +00002692 N = DAG.getNode(ISD::ADD, getCurDebugLoc(), N.getValueType(), N,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002693 DAG.getIntPtrConstant(Offset));
2694 }
2695 Ty = StTy->getElementType(Field);
2696 } else {
2697 Ty = cast<SequentialType>(Ty)->getElementType();
2698
2699 // If this is a constant subscript, handle it quickly.
2700 if (ConstantInt *CI = dyn_cast<ConstantInt>(Idx)) {
2701 if (CI->getZExtValue() == 0) continue;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002702 uint64_t Offs =
Duncan Sandsceb4d1a2009-01-12 20:38:59 +00002703 TD->getTypePaddedSize(Ty)*cast<ConstantInt>(CI)->getSExtValue();
Evan Cheng65b52df2009-02-09 21:01:06 +00002704 SDValue OffsVal;
Evan Chengb1032a82009-02-09 20:54:38 +00002705 unsigned PtrBits = TLI.getPointerTy().getSizeInBits();
Evan Cheng65b52df2009-02-09 21:01:06 +00002706 if (PtrBits < 64) {
2707 OffsVal = DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(),
2708 TLI.getPointerTy(),
2709 DAG.getConstant(Offs, MVT::i64));
2710 } else
Evan Chengb1032a82009-02-09 20:54:38 +00002711 OffsVal = DAG.getIntPtrConstant(Offs);
Dale Johannesen66978ee2009-01-31 02:22:37 +00002712 N = DAG.getNode(ISD::ADD, getCurDebugLoc(), N.getValueType(), N,
Evan Chengb1032a82009-02-09 20:54:38 +00002713 OffsVal);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002714 continue;
2715 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002716
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002717 // N = N + Idx * ElementSize;
Duncan Sandsceb4d1a2009-01-12 20:38:59 +00002718 uint64_t ElementSize = TD->getTypePaddedSize(Ty);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002719 SDValue IdxN = getValue(Idx);
2720
2721 // If the index is smaller or larger than intptr_t, truncate or extend
2722 // it.
2723 if (IdxN.getValueType().bitsLT(N.getValueType()))
Scott Michelfdc40a02009-02-17 22:15:04 +00002724 IdxN = DAG.getNode(ISD::SIGN_EXTEND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002725 N.getValueType(), IdxN);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002726 else if (IdxN.getValueType().bitsGT(N.getValueType()))
Scott Michelfdc40a02009-02-17 22:15:04 +00002727 IdxN = DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002728 N.getValueType(), IdxN);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002729
2730 // If this is a multiply by a power of two, turn it into a shl
2731 // immediately. This is a very common case.
2732 if (ElementSize != 1) {
2733 if (isPowerOf2_64(ElementSize)) {
2734 unsigned Amt = Log2_64(ElementSize);
Scott Michelfdc40a02009-02-17 22:15:04 +00002735 IdxN = DAG.getNode(ISD::SHL, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002736 N.getValueType(), IdxN,
Duncan Sands92abc622009-01-31 15:50:11 +00002737 DAG.getConstant(Amt, TLI.getPointerTy()));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002738 } else {
2739 SDValue Scale = DAG.getIntPtrConstant(ElementSize);
Scott Michelfdc40a02009-02-17 22:15:04 +00002740 IdxN = DAG.getNode(ISD::MUL, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002741 N.getValueType(), IdxN, Scale);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002742 }
2743 }
2744
Scott Michelfdc40a02009-02-17 22:15:04 +00002745 N = DAG.getNode(ISD::ADD, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002746 N.getValueType(), N, IdxN);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002747 }
2748 }
2749 setValue(&I, N);
2750}
2751
2752void SelectionDAGLowering::visitAlloca(AllocaInst &I) {
2753 // If this is a fixed sized alloca in the entry block of the function,
2754 // allocate it statically on the stack.
2755 if (FuncInfo.StaticAllocaMap.count(&I))
2756 return; // getValue will auto-populate this.
2757
2758 const Type *Ty = I.getAllocatedType();
Duncan Sandsceb4d1a2009-01-12 20:38:59 +00002759 uint64_t TySize = TLI.getTargetData()->getTypePaddedSize(Ty);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002760 unsigned Align =
2761 std::max((unsigned)TLI.getTargetData()->getPrefTypeAlignment(Ty),
2762 I.getAlignment());
2763
2764 SDValue AllocSize = getValue(I.getArraySize());
Chris Lattner0b18e592009-03-17 19:36:00 +00002765
2766 AllocSize = DAG.getNode(ISD::MUL, getCurDebugLoc(), AllocSize.getValueType(),
2767 AllocSize,
2768 DAG.getConstant(TySize, AllocSize.getValueType()));
2769
2770
2771
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002772 MVT IntPtr = TLI.getPointerTy();
2773 if (IntPtr.bitsLT(AllocSize.getValueType()))
Scott Michelfdc40a02009-02-17 22:15:04 +00002774 AllocSize = DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002775 IntPtr, AllocSize);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002776 else if (IntPtr.bitsGT(AllocSize.getValueType()))
Scott Michelfdc40a02009-02-17 22:15:04 +00002777 AllocSize = DAG.getNode(ISD::ZERO_EXTEND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002778 IntPtr, AllocSize);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002779
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002780 // Handle alignment. If the requested alignment is less than or equal to
2781 // the stack alignment, ignore it. If the size is greater than or equal to
2782 // the stack alignment, we note this in the DYNAMIC_STACKALLOC node.
2783 unsigned StackAlign =
2784 TLI.getTargetMachine().getFrameInfo()->getStackAlignment();
2785 if (Align <= StackAlign)
2786 Align = 0;
2787
2788 // Round the size of the allocation up to the stack alignment size
2789 // by add SA-1 to the size.
Scott Michelfdc40a02009-02-17 22:15:04 +00002790 AllocSize = DAG.getNode(ISD::ADD, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002791 AllocSize.getValueType(), AllocSize,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002792 DAG.getIntPtrConstant(StackAlign-1));
2793 // Mask out the low bits for alignment purposes.
Scott Michelfdc40a02009-02-17 22:15:04 +00002794 AllocSize = DAG.getNode(ISD::AND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002795 AllocSize.getValueType(), AllocSize,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002796 DAG.getIntPtrConstant(~(uint64_t)(StackAlign-1)));
2797
2798 SDValue Ops[] = { getRoot(), AllocSize, DAG.getIntPtrConstant(Align) };
Dan Gohmanfc166572009-04-09 23:54:40 +00002799 SDVTList VTs = DAG.getVTList(AllocSize.getValueType(), MVT::Other);
Scott Michelfdc40a02009-02-17 22:15:04 +00002800 SDValue DSA = DAG.getNode(ISD::DYNAMIC_STACKALLOC, getCurDebugLoc(),
Dan Gohmanfc166572009-04-09 23:54:40 +00002801 VTs, Ops, 3);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002802 setValue(&I, DSA);
2803 DAG.setRoot(DSA.getValue(1));
2804
2805 // Inform the Frame Information that we have just allocated a variable-sized
2806 // object.
2807 CurMBB->getParent()->getFrameInfo()->CreateVariableSizedObject();
2808}
2809
2810void SelectionDAGLowering::visitLoad(LoadInst &I) {
2811 const Value *SV = I.getOperand(0);
2812 SDValue Ptr = getValue(SV);
2813
2814 const Type *Ty = I.getType();
2815 bool isVolatile = I.isVolatile();
2816 unsigned Alignment = I.getAlignment();
2817
2818 SmallVector<MVT, 4> ValueVTs;
2819 SmallVector<uint64_t, 4> Offsets;
2820 ComputeValueVTs(TLI, Ty, ValueVTs, &Offsets);
2821 unsigned NumValues = ValueVTs.size();
2822 if (NumValues == 0)
2823 return;
2824
2825 SDValue Root;
2826 bool ConstantMemory = false;
2827 if (I.isVolatile())
2828 // Serialize volatile loads with other side effects.
2829 Root = getRoot();
2830 else if (AA->pointsToConstantMemory(SV)) {
2831 // Do not serialize (non-volatile) loads of constant memory with anything.
2832 Root = DAG.getEntryNode();
2833 ConstantMemory = true;
2834 } else {
2835 // Do not serialize non-volatile loads against each other.
2836 Root = DAG.getRoot();
2837 }
2838
2839 SmallVector<SDValue, 4> Values(NumValues);
2840 SmallVector<SDValue, 4> Chains(NumValues);
2841 MVT PtrVT = Ptr.getValueType();
2842 for (unsigned i = 0; i != NumValues; ++i) {
Dale Johannesen66978ee2009-01-31 02:22:37 +00002843 SDValue L = DAG.getLoad(ValueVTs[i], getCurDebugLoc(), Root,
Scott Michelfdc40a02009-02-17 22:15:04 +00002844 DAG.getNode(ISD::ADD, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002845 PtrVT, Ptr,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002846 DAG.getConstant(Offsets[i], PtrVT)),
2847 SV, Offsets[i],
2848 isVolatile, Alignment);
2849 Values[i] = L;
2850 Chains[i] = L.getValue(1);
2851 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002852
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002853 if (!ConstantMemory) {
Scott Michelfdc40a02009-02-17 22:15:04 +00002854 SDValue Chain = DAG.getNode(ISD::TokenFactor, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002855 MVT::Other,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002856 &Chains[0], NumValues);
2857 if (isVolatile)
2858 DAG.setRoot(Chain);
2859 else
2860 PendingLoads.push_back(Chain);
2861 }
2862
Scott Michelfdc40a02009-02-17 22:15:04 +00002863 setValue(&I, DAG.getNode(ISD::MERGE_VALUES, getCurDebugLoc(),
Duncan Sandsaaffa052008-12-01 11:41:29 +00002864 DAG.getVTList(&ValueVTs[0], NumValues),
2865 &Values[0], NumValues));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002866}
2867
2868
2869void SelectionDAGLowering::visitStore(StoreInst &I) {
2870 Value *SrcV = I.getOperand(0);
2871 Value *PtrV = I.getOperand(1);
2872
2873 SmallVector<MVT, 4> ValueVTs;
2874 SmallVector<uint64_t, 4> Offsets;
2875 ComputeValueVTs(TLI, SrcV->getType(), ValueVTs, &Offsets);
2876 unsigned NumValues = ValueVTs.size();
2877 if (NumValues == 0)
2878 return;
2879
2880 // Get the lowered operands. Note that we do this after
2881 // checking if NumResults is zero, because with zero results
2882 // the operands won't have values in the map.
2883 SDValue Src = getValue(SrcV);
2884 SDValue Ptr = getValue(PtrV);
2885
2886 SDValue Root = getRoot();
2887 SmallVector<SDValue, 4> Chains(NumValues);
2888 MVT PtrVT = Ptr.getValueType();
2889 bool isVolatile = I.isVolatile();
2890 unsigned Alignment = I.getAlignment();
2891 for (unsigned i = 0; i != NumValues; ++i)
Dale Johannesen66978ee2009-01-31 02:22:37 +00002892 Chains[i] = DAG.getStore(Root, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002893 SDValue(Src.getNode(), Src.getResNo() + i),
Scott Michelfdc40a02009-02-17 22:15:04 +00002894 DAG.getNode(ISD::ADD, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002895 PtrVT, Ptr,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002896 DAG.getConstant(Offsets[i], PtrVT)),
2897 PtrV, Offsets[i],
2898 isVolatile, Alignment);
2899
Scott Michelfdc40a02009-02-17 22:15:04 +00002900 DAG.setRoot(DAG.getNode(ISD::TokenFactor, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00002901 MVT::Other, &Chains[0], NumValues));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002902}
2903
2904/// visitTargetIntrinsic - Lower a call of a target intrinsic to an INTRINSIC
2905/// node.
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002906void SelectionDAGLowering::visitTargetIntrinsic(CallInst &I,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002907 unsigned Intrinsic) {
2908 bool HasChain = !I.doesNotAccessMemory();
2909 bool OnlyLoad = HasChain && I.onlyReadsMemory();
2910
2911 // Build the operand list.
2912 SmallVector<SDValue, 8> Ops;
2913 if (HasChain) { // If this intrinsic has side-effects, chainify it.
2914 if (OnlyLoad) {
2915 // We don't need to serialize loads against other loads.
2916 Ops.push_back(DAG.getRoot());
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002917 } else {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002918 Ops.push_back(getRoot());
2919 }
2920 }
Mon P Wang3efcd4a2008-11-01 20:24:53 +00002921
2922 // Info is set by getTgtMemInstrinsic
2923 TargetLowering::IntrinsicInfo Info;
2924 bool IsTgtIntrinsic = TLI.getTgtMemIntrinsic(Info, I, Intrinsic);
2925
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002926 // Add the intrinsic ID as an integer operand if it's not a target intrinsic.
Mon P Wang3efcd4a2008-11-01 20:24:53 +00002927 if (!IsTgtIntrinsic)
2928 Ops.push_back(DAG.getConstant(Intrinsic, TLI.getPointerTy()));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002929
2930 // Add all operands of the call to the operand list.
2931 for (unsigned i = 1, e = I.getNumOperands(); i != e; ++i) {
2932 SDValue Op = getValue(I.getOperand(i));
2933 assert(TLI.isTypeLegal(Op.getValueType()) &&
2934 "Intrinsic uses a non-legal type?");
2935 Ops.push_back(Op);
2936 }
2937
Dan Gohmanfc166572009-04-09 23:54:40 +00002938 std::vector<MVT> VTArray;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002939 if (I.getType() != Type::VoidTy) {
2940 MVT VT = TLI.getValueType(I.getType());
2941 if (VT.isVector()) {
2942 const VectorType *DestTy = cast<VectorType>(I.getType());
2943 MVT EltVT = TLI.getValueType(DestTy->getElementType());
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002944
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002945 VT = MVT::getVectorVT(EltVT, DestTy->getNumElements());
2946 assert(VT != MVT::Other && "Intrinsic uses a non-legal type?");
2947 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002948
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002949 assert(TLI.isTypeLegal(VT) && "Intrinsic uses a non-legal type?");
Dan Gohmanfc166572009-04-09 23:54:40 +00002950 VTArray.push_back(VT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002951 }
2952 if (HasChain)
Dan Gohmanfc166572009-04-09 23:54:40 +00002953 VTArray.push_back(MVT::Other);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002954
Dan Gohmanfc166572009-04-09 23:54:40 +00002955 SDVTList VTs = DAG.getVTList(&VTArray[0], VTArray.size());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002956
2957 // Create the node.
2958 SDValue Result;
Mon P Wang3efcd4a2008-11-01 20:24:53 +00002959 if (IsTgtIntrinsic) {
2960 // This is target intrinsic that touches memory
Dale Johannesen66978ee2009-01-31 02:22:37 +00002961 Result = DAG.getMemIntrinsicNode(Info.opc, getCurDebugLoc(),
Dan Gohmanfc166572009-04-09 23:54:40 +00002962 VTs, &Ops[0], Ops.size(),
Mon P Wang3efcd4a2008-11-01 20:24:53 +00002963 Info.memVT, Info.ptrVal, Info.offset,
2964 Info.align, Info.vol,
2965 Info.readMem, Info.writeMem);
2966 }
2967 else if (!HasChain)
Scott Michelfdc40a02009-02-17 22:15:04 +00002968 Result = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, getCurDebugLoc(),
Dan Gohmanfc166572009-04-09 23:54:40 +00002969 VTs, &Ops[0], Ops.size());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002970 else if (I.getType() != Type::VoidTy)
Scott Michelfdc40a02009-02-17 22:15:04 +00002971 Result = DAG.getNode(ISD::INTRINSIC_W_CHAIN, getCurDebugLoc(),
Dan Gohmanfc166572009-04-09 23:54:40 +00002972 VTs, &Ops[0], Ops.size());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002973 else
Scott Michelfdc40a02009-02-17 22:15:04 +00002974 Result = DAG.getNode(ISD::INTRINSIC_VOID, getCurDebugLoc(),
Dan Gohmanfc166572009-04-09 23:54:40 +00002975 VTs, &Ops[0], Ops.size());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002976
2977 if (HasChain) {
2978 SDValue Chain = Result.getValue(Result.getNode()->getNumValues()-1);
2979 if (OnlyLoad)
2980 PendingLoads.push_back(Chain);
2981 else
2982 DAG.setRoot(Chain);
2983 }
2984 if (I.getType() != Type::VoidTy) {
2985 if (const VectorType *PTy = dyn_cast<VectorType>(I.getType())) {
2986 MVT VT = TLI.getValueType(PTy);
Dale Johannesen66978ee2009-01-31 02:22:37 +00002987 Result = DAG.getNode(ISD::BIT_CONVERT, getCurDebugLoc(), VT, Result);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00002988 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00002989 setValue(&I, Result);
2990 }
2991}
2992
2993/// ExtractTypeInfo - Returns the type info, possibly bitcast, encoded in V.
2994static GlobalVariable *ExtractTypeInfo(Value *V) {
2995 V = V->stripPointerCasts();
2996 GlobalVariable *GV = dyn_cast<GlobalVariable>(V);
2997 assert ((GV || isa<ConstantPointerNull>(V)) &&
2998 "TypeInfo must be a global variable or NULL");
2999 return GV;
3000}
3001
3002namespace llvm {
3003
3004/// AddCatchInfo - Extract the personality and type infos from an eh.selector
3005/// call, and add them to the specified machine basic block.
3006void AddCatchInfo(CallInst &I, MachineModuleInfo *MMI,
3007 MachineBasicBlock *MBB) {
3008 // Inform the MachineModuleInfo of the personality for this landing pad.
3009 ConstantExpr *CE = cast<ConstantExpr>(I.getOperand(2));
3010 assert(CE->getOpcode() == Instruction::BitCast &&
3011 isa<Function>(CE->getOperand(0)) &&
3012 "Personality should be a function");
3013 MMI->addPersonality(MBB, cast<Function>(CE->getOperand(0)));
3014
3015 // Gather all the type infos for this landing pad and pass them along to
3016 // MachineModuleInfo.
3017 std::vector<GlobalVariable *> TyInfo;
3018 unsigned N = I.getNumOperands();
3019
3020 for (unsigned i = N - 1; i > 2; --i) {
3021 if (ConstantInt *CI = dyn_cast<ConstantInt>(I.getOperand(i))) {
3022 unsigned FilterLength = CI->getZExtValue();
3023 unsigned FirstCatch = i + FilterLength + !FilterLength;
3024 assert (FirstCatch <= N && "Invalid filter length");
3025
3026 if (FirstCatch < N) {
3027 TyInfo.reserve(N - FirstCatch);
3028 for (unsigned j = FirstCatch; j < N; ++j)
3029 TyInfo.push_back(ExtractTypeInfo(I.getOperand(j)));
3030 MMI->addCatchTypeInfo(MBB, TyInfo);
3031 TyInfo.clear();
3032 }
3033
3034 if (!FilterLength) {
3035 // Cleanup.
3036 MMI->addCleanup(MBB);
3037 } else {
3038 // Filter.
3039 TyInfo.reserve(FilterLength - 1);
3040 for (unsigned j = i + 1; j < FirstCatch; ++j)
3041 TyInfo.push_back(ExtractTypeInfo(I.getOperand(j)));
3042 MMI->addFilterTypeInfo(MBB, TyInfo);
3043 TyInfo.clear();
3044 }
3045
3046 N = i;
3047 }
3048 }
3049
3050 if (N > 3) {
3051 TyInfo.reserve(N - 3);
3052 for (unsigned j = 3; j < N; ++j)
3053 TyInfo.push_back(ExtractTypeInfo(I.getOperand(j)));
3054 MMI->addCatchTypeInfo(MBB, TyInfo);
3055 }
3056}
3057
3058}
3059
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003060/// GetSignificand - Get the significand and build it into a floating-point
3061/// number with exponent of 1:
3062///
3063/// Op = (Op & 0x007fffff) | 0x3f800000;
3064///
3065/// where Op is the hexidecimal representation of floating point value.
Bill Wendling39150252008-09-09 20:39:27 +00003066static SDValue
Dale Johannesen66978ee2009-01-31 02:22:37 +00003067GetSignificand(SelectionDAG &DAG, SDValue Op, DebugLoc dl) {
3068 SDValue t1 = DAG.getNode(ISD::AND, dl, MVT::i32, Op,
Bill Wendlinge9a72862009-01-20 21:17:57 +00003069 DAG.getConstant(0x007fffff, MVT::i32));
Dale Johannesen66978ee2009-01-31 02:22:37 +00003070 SDValue t2 = DAG.getNode(ISD::OR, dl, MVT::i32, t1,
Bill Wendlinge9a72862009-01-20 21:17:57 +00003071 DAG.getConstant(0x3f800000, MVT::i32));
Dale Johannesen66978ee2009-01-31 02:22:37 +00003072 return DAG.getNode(ISD::BIT_CONVERT, dl, MVT::f32, t2);
Bill Wendling39150252008-09-09 20:39:27 +00003073}
3074
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003075/// GetExponent - Get the exponent:
3076///
Bill Wendlinge9a72862009-01-20 21:17:57 +00003077/// (float)(int)(((Op & 0x7f800000) >> 23) - 127);
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003078///
3079/// where Op is the hexidecimal representation of floating point value.
Bill Wendling39150252008-09-09 20:39:27 +00003080static SDValue
Dale Johannesen66978ee2009-01-31 02:22:37 +00003081GetExponent(SelectionDAG &DAG, SDValue Op, const TargetLowering &TLI,
3082 DebugLoc dl) {
3083 SDValue t0 = DAG.getNode(ISD::AND, dl, MVT::i32, Op,
Bill Wendlinge9a72862009-01-20 21:17:57 +00003084 DAG.getConstant(0x7f800000, MVT::i32));
Dale Johannesen66978ee2009-01-31 02:22:37 +00003085 SDValue t1 = DAG.getNode(ISD::SRL, dl, MVT::i32, t0,
Duncan Sands92abc622009-01-31 15:50:11 +00003086 DAG.getConstant(23, TLI.getPointerTy()));
Dale Johannesen66978ee2009-01-31 02:22:37 +00003087 SDValue t2 = DAG.getNode(ISD::SUB, dl, MVT::i32, t1,
Bill Wendlinge9a72862009-01-20 21:17:57 +00003088 DAG.getConstant(127, MVT::i32));
Dale Johannesen66978ee2009-01-31 02:22:37 +00003089 return DAG.getNode(ISD::SINT_TO_FP, dl, MVT::f32, t2);
Bill Wendling39150252008-09-09 20:39:27 +00003090}
3091
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003092/// getF32Constant - Get 32-bit floating point constant.
3093static SDValue
3094getF32Constant(SelectionDAG &DAG, unsigned Flt) {
3095 return DAG.getConstantFP(APFloat(APInt(32, Flt)), MVT::f32);
3096}
3097
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00003098/// Inlined utility function to implement binary input atomic intrinsics for
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003099/// visitIntrinsicCall: I is a call instruction
3100/// Op is the associated NodeType for I
3101const char *
3102SelectionDAGLowering::implVisitBinaryAtomic(CallInst& I, ISD::NodeType Op) {
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00003103 SDValue Root = getRoot();
Dan Gohman0b1d4a72008-12-23 21:37:04 +00003104 SDValue L =
Dale Johannesen66978ee2009-01-31 02:22:37 +00003105 DAG.getAtomic(Op, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003106 getValue(I.getOperand(2)).getValueType().getSimpleVT(),
Dan Gohman0b1d4a72008-12-23 21:37:04 +00003107 Root,
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00003108 getValue(I.getOperand(1)),
Dan Gohman0b1d4a72008-12-23 21:37:04 +00003109 getValue(I.getOperand(2)),
3110 I.getOperand(1));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003111 setValue(&I, L);
3112 DAG.setRoot(L.getValue(1));
3113 return 0;
3114}
3115
Bill Wendling2ce4e5c2008-12-10 00:28:22 +00003116// implVisitAluOverflow - Lower arithmetic overflow instrinsics.
Bill Wendling74c37652008-12-09 22:08:41 +00003117const char *
3118SelectionDAGLowering::implVisitAluOverflow(CallInst &I, ISD::NodeType Op) {
Bill Wendling2ce4e5c2008-12-10 00:28:22 +00003119 SDValue Op1 = getValue(I.getOperand(1));
3120 SDValue Op2 = getValue(I.getOperand(2));
Bill Wendling74c37652008-12-09 22:08:41 +00003121
Dan Gohmanfc166572009-04-09 23:54:40 +00003122 SDVTList VTs = DAG.getVTList(Op1.getValueType(), MVT::i1);
3123 SDValue Result = DAG.getNode(Op, getCurDebugLoc(), VTs, Op1, Op2);
Bill Wendling74c37652008-12-09 22:08:41 +00003124
Bill Wendling2ce4e5c2008-12-10 00:28:22 +00003125 setValue(&I, Result);
3126 return 0;
3127}
Bill Wendling74c37652008-12-09 22:08:41 +00003128
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003129/// visitExp - Lower an exp intrinsic. Handles the special sequences for
3130/// limited-precision mode.
Dale Johannesen59e577f2008-09-05 18:38:42 +00003131void
3132SelectionDAGLowering::visitExp(CallInst &I) {
3133 SDValue result;
Dale Johannesen66978ee2009-01-31 02:22:37 +00003134 DebugLoc dl = getCurDebugLoc();
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003135
3136 if (getValue(I.getOperand(1)).getValueType() == MVT::f32 &&
3137 LimitFloatPrecision > 0 && LimitFloatPrecision <= 18) {
3138 SDValue Op = getValue(I.getOperand(1));
3139
3140 // Put the exponent in the right bit position for later addition to the
3141 // final result:
3142 //
3143 // #define LOG2OFe 1.4426950f
3144 // IntegerPartOfX = ((int32_t)(X * LOG2OFe));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003145 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, Op,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003146 getF32Constant(DAG, 0x3fb8aa3b));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003147 SDValue IntegerPartOfX = DAG.getNode(ISD::FP_TO_SINT, dl, MVT::i32, t0);
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003148
3149 // FractionalPartOfX = (X * LOG2OFe) - (float)IntegerPartOfX;
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003150 SDValue t1 = DAG.getNode(ISD::SINT_TO_FP, dl, MVT::f32, IntegerPartOfX);
3151 SDValue X = DAG.getNode(ISD::FSUB, dl, MVT::f32, t0, t1);
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003152
3153 // IntegerPartOfX <<= 23;
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003154 IntegerPartOfX = DAG.getNode(ISD::SHL, dl, MVT::i32, IntegerPartOfX,
Duncan Sands92abc622009-01-31 15:50:11 +00003155 DAG.getConstant(23, TLI.getPointerTy()));
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003156
3157 if (LimitFloatPrecision <= 6) {
3158 // For floating-point precision of 6:
3159 //
3160 // TwoToFractionalPartOfX =
3161 // 0.997535578f +
3162 // (0.735607626f + 0.252464424f * x) * x;
3163 //
3164 // error 0.0144103317, which is 6 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003165 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003166 getF32Constant(DAG, 0x3e814304));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003167 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003168 getF32Constant(DAG, 0x3f3c50c8));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003169 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3170 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003171 getF32Constant(DAG, 0x3f7f5e7e));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003172 SDValue TwoToFracPartOfX = DAG.getNode(ISD::BIT_CONVERT, dl,MVT::i32, t5);
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003173
3174 // Add the exponent into the result in integer domain.
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003175 SDValue t6 = DAG.getNode(ISD::ADD, dl, MVT::i32,
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003176 TwoToFracPartOfX, IntegerPartOfX);
3177
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003178 result = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::f32, t6);
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003179 } else if (LimitFloatPrecision > 6 && LimitFloatPrecision <= 12) {
3180 // For floating-point precision of 12:
3181 //
3182 // TwoToFractionalPartOfX =
3183 // 0.999892986f +
3184 // (0.696457318f +
3185 // (0.224338339f + 0.792043434e-1f * x) * x) * x;
3186 //
3187 // 0.000107046256 error, which is 13 to 14 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003188 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003189 getF32Constant(DAG, 0x3da235e3));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003190 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003191 getF32Constant(DAG, 0x3e65b8f3));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003192 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3193 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003194 getF32Constant(DAG, 0x3f324b07));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003195 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3196 SDValue t7 = DAG.getNode(ISD::FADD, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003197 getF32Constant(DAG, 0x3f7ff8fd));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003198 SDValue TwoToFracPartOfX = DAG.getNode(ISD::BIT_CONVERT, dl,MVT::i32, t7);
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003199
3200 // Add the exponent into the result in integer domain.
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003201 SDValue t8 = DAG.getNode(ISD::ADD, dl, MVT::i32,
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003202 TwoToFracPartOfX, IntegerPartOfX);
3203
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003204 result = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::f32, t8);
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003205 } else { // LimitFloatPrecision > 12 && LimitFloatPrecision <= 18
3206 // For floating-point precision of 18:
3207 //
3208 // TwoToFractionalPartOfX =
3209 // 0.999999982f +
3210 // (0.693148872f +
3211 // (0.240227044f +
3212 // (0.554906021e-1f +
3213 // (0.961591928e-2f +
3214 // (0.136028312e-2f + 0.157059148e-3f *x)*x)*x)*x)*x)*x;
3215 //
3216 // error 2.47208000*10^(-7), which is better than 18 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003217 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003218 getF32Constant(DAG, 0x3924b03e));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003219 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003220 getF32Constant(DAG, 0x3ab24b87));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003221 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3222 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003223 getF32Constant(DAG, 0x3c1d8c17));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003224 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3225 SDValue t7 = DAG.getNode(ISD::FADD, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003226 getF32Constant(DAG, 0x3d634a1d));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003227 SDValue t8 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t7, X);
3228 SDValue t9 = DAG.getNode(ISD::FADD, dl, MVT::f32, t8,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003229 getF32Constant(DAG, 0x3e75fe14));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003230 SDValue t10 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t9, X);
3231 SDValue t11 = DAG.getNode(ISD::FADD, dl, MVT::f32, t10,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003232 getF32Constant(DAG, 0x3f317234));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003233 SDValue t12 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t11, X);
3234 SDValue t13 = DAG.getNode(ISD::FADD, dl, MVT::f32, t12,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003235 getF32Constant(DAG, 0x3f800000));
Scott Michelfdc40a02009-02-17 22:15:04 +00003236 SDValue TwoToFracPartOfX = DAG.getNode(ISD::BIT_CONVERT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003237 MVT::i32, t13);
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003238
3239 // Add the exponent into the result in integer domain.
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003240 SDValue t14 = DAG.getNode(ISD::ADD, dl, MVT::i32,
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003241 TwoToFracPartOfX, IntegerPartOfX);
3242
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003243 result = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::f32, t14);
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003244 }
3245 } else {
3246 // No special expansion.
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003247 result = DAG.getNode(ISD::FEXP, dl,
Bill Wendlingb4ec2832008-09-09 22:13:54 +00003248 getValue(I.getOperand(1)).getValueType(),
3249 getValue(I.getOperand(1)));
3250 }
3251
Dale Johannesen59e577f2008-09-05 18:38:42 +00003252 setValue(&I, result);
3253}
3254
Bill Wendling39150252008-09-09 20:39:27 +00003255/// visitLog - Lower a log intrinsic. Handles the special sequences for
3256/// limited-precision mode.
Dale Johannesen59e577f2008-09-05 18:38:42 +00003257void
3258SelectionDAGLowering::visitLog(CallInst &I) {
3259 SDValue result;
Dale Johannesen66978ee2009-01-31 02:22:37 +00003260 DebugLoc dl = getCurDebugLoc();
Bill Wendling39150252008-09-09 20:39:27 +00003261
3262 if (getValue(I.getOperand(1)).getValueType() == MVT::f32 &&
3263 LimitFloatPrecision > 0 && LimitFloatPrecision <= 18) {
3264 SDValue Op = getValue(I.getOperand(1));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003265 SDValue Op1 = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::i32, Op);
Bill Wendling39150252008-09-09 20:39:27 +00003266
3267 // Scale the exponent by log(2) [0.69314718f].
Dale Johannesen66978ee2009-01-31 02:22:37 +00003268 SDValue Exp = GetExponent(DAG, Op1, TLI, dl);
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003269 SDValue LogOfExponent = DAG.getNode(ISD::FMUL, dl, MVT::f32, Exp,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003270 getF32Constant(DAG, 0x3f317218));
Bill Wendling39150252008-09-09 20:39:27 +00003271
3272 // Get the significand and build it into a floating-point number with
3273 // exponent of 1.
Dale Johannesen66978ee2009-01-31 02:22:37 +00003274 SDValue X = GetSignificand(DAG, Op1, dl);
Bill Wendling39150252008-09-09 20:39:27 +00003275
3276 if (LimitFloatPrecision <= 6) {
3277 // For floating-point precision of 6:
3278 //
3279 // LogofMantissa =
3280 // -1.1609546f +
3281 // (1.4034025f - 0.23903021f * x) * x;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00003282 //
Bill Wendling39150252008-09-09 20:39:27 +00003283 // error 0.0034276066, which is better than 8 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003284 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003285 getF32Constant(DAG, 0xbe74c456));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003286 SDValue t1 = DAG.getNode(ISD::FADD, dl, MVT::f32, t0,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003287 getF32Constant(DAG, 0x3fb3a2b1));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003288 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t1, X);
3289 SDValue LogOfMantissa = DAG.getNode(ISD::FSUB, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003290 getF32Constant(DAG, 0x3f949a29));
Bill Wendling39150252008-09-09 20:39:27 +00003291
Scott Michelfdc40a02009-02-17 22:15:04 +00003292 result = DAG.getNode(ISD::FADD, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003293 MVT::f32, LogOfExponent, LogOfMantissa);
Bill Wendling39150252008-09-09 20:39:27 +00003294 } else if (LimitFloatPrecision > 6 && LimitFloatPrecision <= 12) {
3295 // For floating-point precision of 12:
3296 //
3297 // LogOfMantissa =
3298 // -1.7417939f +
3299 // (2.8212026f +
3300 // (-1.4699568f +
3301 // (0.44717955f - 0.56570851e-1f * x) * x) * x) * x;
3302 //
3303 // error 0.000061011436, which is 14 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003304 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003305 getF32Constant(DAG, 0xbd67b6d6));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003306 SDValue t1 = DAG.getNode(ISD::FADD, dl, MVT::f32, t0,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003307 getF32Constant(DAG, 0x3ee4f4b8));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003308 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t1, X);
3309 SDValue t3 = DAG.getNode(ISD::FSUB, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003310 getF32Constant(DAG, 0x3fbc278b));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003311 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3312 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003313 getF32Constant(DAG, 0x40348e95));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003314 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3315 SDValue LogOfMantissa = DAG.getNode(ISD::FSUB, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003316 getF32Constant(DAG, 0x3fdef31a));
Bill Wendling39150252008-09-09 20:39:27 +00003317
Scott Michelfdc40a02009-02-17 22:15:04 +00003318 result = DAG.getNode(ISD::FADD, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003319 MVT::f32, LogOfExponent, LogOfMantissa);
Bill Wendling39150252008-09-09 20:39:27 +00003320 } else { // LimitFloatPrecision > 12 && LimitFloatPrecision <= 18
3321 // For floating-point precision of 18:
3322 //
3323 // LogOfMantissa =
3324 // -2.1072184f +
3325 // (4.2372794f +
3326 // (-3.7029485f +
3327 // (2.2781945f +
3328 // (-0.87823314f +
3329 // (0.19073739f - 0.17809712e-1f * x) * x) * x) * x) * x)*x;
3330 //
3331 // error 0.0000023660568, which is better than 18 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003332 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003333 getF32Constant(DAG, 0xbc91e5ac));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003334 SDValue t1 = DAG.getNode(ISD::FADD, dl, MVT::f32, t0,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003335 getF32Constant(DAG, 0x3e4350aa));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003336 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t1, X);
3337 SDValue t3 = DAG.getNode(ISD::FSUB, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003338 getF32Constant(DAG, 0x3f60d3e3));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003339 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3340 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003341 getF32Constant(DAG, 0x4011cdf0));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003342 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3343 SDValue t7 = DAG.getNode(ISD::FSUB, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003344 getF32Constant(DAG, 0x406cfd1c));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003345 SDValue t8 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t7, X);
3346 SDValue t9 = DAG.getNode(ISD::FADD, dl, MVT::f32, t8,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003347 getF32Constant(DAG, 0x408797cb));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003348 SDValue t10 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t9, X);
3349 SDValue LogOfMantissa = DAG.getNode(ISD::FSUB, dl, MVT::f32, t10,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003350 getF32Constant(DAG, 0x4006dcab));
Bill Wendling39150252008-09-09 20:39:27 +00003351
Scott Michelfdc40a02009-02-17 22:15:04 +00003352 result = DAG.getNode(ISD::FADD, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003353 MVT::f32, LogOfExponent, LogOfMantissa);
Bill Wendling39150252008-09-09 20:39:27 +00003354 }
3355 } else {
3356 // No special expansion.
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003357 result = DAG.getNode(ISD::FLOG, dl,
Bill Wendling39150252008-09-09 20:39:27 +00003358 getValue(I.getOperand(1)).getValueType(),
3359 getValue(I.getOperand(1)));
3360 }
3361
Dale Johannesen59e577f2008-09-05 18:38:42 +00003362 setValue(&I, result);
3363}
3364
Bill Wendling3eb59402008-09-09 00:28:24 +00003365/// visitLog2 - Lower a log2 intrinsic. Handles the special sequences for
3366/// limited-precision mode.
Dale Johannesen59e577f2008-09-05 18:38:42 +00003367void
3368SelectionDAGLowering::visitLog2(CallInst &I) {
3369 SDValue result;
Dale Johannesen66978ee2009-01-31 02:22:37 +00003370 DebugLoc dl = getCurDebugLoc();
Bill Wendling3eb59402008-09-09 00:28:24 +00003371
Dale Johannesen853244f2008-09-05 23:49:37 +00003372 if (getValue(I.getOperand(1)).getValueType() == MVT::f32 &&
Bill Wendling3eb59402008-09-09 00:28:24 +00003373 LimitFloatPrecision > 0 && LimitFloatPrecision <= 18) {
3374 SDValue Op = getValue(I.getOperand(1));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003375 SDValue Op1 = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::i32, Op);
Bill Wendling3eb59402008-09-09 00:28:24 +00003376
Bill Wendling39150252008-09-09 20:39:27 +00003377 // Get the exponent.
Dale Johannesen66978ee2009-01-31 02:22:37 +00003378 SDValue LogOfExponent = GetExponent(DAG, Op1, TLI, dl);
Bill Wendling3eb59402008-09-09 00:28:24 +00003379
3380 // Get the significand and build it into a floating-point number with
Bill Wendling39150252008-09-09 20:39:27 +00003381 // exponent of 1.
Dale Johannesen66978ee2009-01-31 02:22:37 +00003382 SDValue X = GetSignificand(DAG, Op1, dl);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00003383
Bill Wendling3eb59402008-09-09 00:28:24 +00003384 // Different possible minimax approximations of significand in
3385 // floating-point for various degrees of accuracy over [1,2].
3386 if (LimitFloatPrecision <= 6) {
3387 // For floating-point precision of 6:
3388 //
3389 // Log2ofMantissa = -1.6749035f + (2.0246817f - .34484768f * x) * x;
3390 //
3391 // error 0.0049451742, which is more than 7 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003392 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003393 getF32Constant(DAG, 0xbeb08fe0));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003394 SDValue t1 = DAG.getNode(ISD::FADD, dl, MVT::f32, t0,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003395 getF32Constant(DAG, 0x40019463));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003396 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t1, X);
3397 SDValue Log2ofMantissa = DAG.getNode(ISD::FSUB, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003398 getF32Constant(DAG, 0x3fd6633d));
Bill Wendling3eb59402008-09-09 00:28:24 +00003399
Scott Michelfdc40a02009-02-17 22:15:04 +00003400 result = DAG.getNode(ISD::FADD, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003401 MVT::f32, LogOfExponent, Log2ofMantissa);
Bill Wendling3eb59402008-09-09 00:28:24 +00003402 } else if (LimitFloatPrecision > 6 && LimitFloatPrecision <= 12) {
3403 // For floating-point precision of 12:
3404 //
3405 // Log2ofMantissa =
3406 // -2.51285454f +
3407 // (4.07009056f +
3408 // (-2.12067489f +
3409 // (.645142248f - 0.816157886e-1f * x) * x) * x) * x;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00003410 //
Bill Wendling3eb59402008-09-09 00:28:24 +00003411 // error 0.0000876136000, which is better than 13 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003412 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003413 getF32Constant(DAG, 0xbda7262e));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003414 SDValue t1 = DAG.getNode(ISD::FADD, dl, MVT::f32, t0,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003415 getF32Constant(DAG, 0x3f25280b));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003416 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t1, X);
3417 SDValue t3 = DAG.getNode(ISD::FSUB, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003418 getF32Constant(DAG, 0x4007b923));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003419 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3420 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003421 getF32Constant(DAG, 0x40823e2f));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003422 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3423 SDValue Log2ofMantissa = DAG.getNode(ISD::FSUB, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003424 getF32Constant(DAG, 0x4020d29c));
Bill Wendling3eb59402008-09-09 00:28:24 +00003425
Scott Michelfdc40a02009-02-17 22:15:04 +00003426 result = DAG.getNode(ISD::FADD, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003427 MVT::f32, LogOfExponent, Log2ofMantissa);
Bill Wendling3eb59402008-09-09 00:28:24 +00003428 } else { // LimitFloatPrecision > 12 && LimitFloatPrecision <= 18
3429 // For floating-point precision of 18:
3430 //
3431 // Log2ofMantissa =
3432 // -3.0400495f +
3433 // (6.1129976f +
3434 // (-5.3420409f +
3435 // (3.2865683f +
3436 // (-1.2669343f +
3437 // (0.27515199f -
3438 // 0.25691327e-1f * x) * x) * x) * x) * x) * x;
3439 //
3440 // error 0.0000018516, which is better than 18 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003441 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003442 getF32Constant(DAG, 0xbcd2769e));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003443 SDValue t1 = DAG.getNode(ISD::FADD, dl, MVT::f32, t0,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003444 getF32Constant(DAG, 0x3e8ce0b9));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003445 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t1, X);
3446 SDValue t3 = DAG.getNode(ISD::FSUB, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003447 getF32Constant(DAG, 0x3fa22ae7));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003448 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3449 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003450 getF32Constant(DAG, 0x40525723));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003451 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3452 SDValue t7 = DAG.getNode(ISD::FSUB, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003453 getF32Constant(DAG, 0x40aaf200));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003454 SDValue t8 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t7, X);
3455 SDValue t9 = DAG.getNode(ISD::FADD, dl, MVT::f32, t8,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003456 getF32Constant(DAG, 0x40c39dad));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003457 SDValue t10 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t9, X);
3458 SDValue Log2ofMantissa = DAG.getNode(ISD::FSUB, dl, MVT::f32, t10,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003459 getF32Constant(DAG, 0x4042902c));
Bill Wendling3eb59402008-09-09 00:28:24 +00003460
Scott Michelfdc40a02009-02-17 22:15:04 +00003461 result = DAG.getNode(ISD::FADD, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003462 MVT::f32, LogOfExponent, Log2ofMantissa);
Bill Wendling3eb59402008-09-09 00:28:24 +00003463 }
Dale Johannesen853244f2008-09-05 23:49:37 +00003464 } else {
Bill Wendling3eb59402008-09-09 00:28:24 +00003465 // No special expansion.
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003466 result = DAG.getNode(ISD::FLOG2, dl,
Dale Johannesen853244f2008-09-05 23:49:37 +00003467 getValue(I.getOperand(1)).getValueType(),
3468 getValue(I.getOperand(1)));
3469 }
Bill Wendling3eb59402008-09-09 00:28:24 +00003470
Dale Johannesen59e577f2008-09-05 18:38:42 +00003471 setValue(&I, result);
3472}
3473
Bill Wendling3eb59402008-09-09 00:28:24 +00003474/// visitLog10 - Lower a log10 intrinsic. Handles the special sequences for
3475/// limited-precision mode.
Dale Johannesen59e577f2008-09-05 18:38:42 +00003476void
3477SelectionDAGLowering::visitLog10(CallInst &I) {
3478 SDValue result;
Dale Johannesen66978ee2009-01-31 02:22:37 +00003479 DebugLoc dl = getCurDebugLoc();
Bill Wendling181b6272008-10-19 20:34:04 +00003480
Dale Johannesen852680a2008-09-05 21:27:19 +00003481 if (getValue(I.getOperand(1)).getValueType() == MVT::f32 &&
Bill Wendling3eb59402008-09-09 00:28:24 +00003482 LimitFloatPrecision > 0 && LimitFloatPrecision <= 18) {
3483 SDValue Op = getValue(I.getOperand(1));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003484 SDValue Op1 = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::i32, Op);
Bill Wendling3eb59402008-09-09 00:28:24 +00003485
Bill Wendling39150252008-09-09 20:39:27 +00003486 // Scale the exponent by log10(2) [0.30102999f].
Dale Johannesen66978ee2009-01-31 02:22:37 +00003487 SDValue Exp = GetExponent(DAG, Op1, TLI, dl);
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003488 SDValue LogOfExponent = DAG.getNode(ISD::FMUL, dl, MVT::f32, Exp,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003489 getF32Constant(DAG, 0x3e9a209a));
Bill Wendling3eb59402008-09-09 00:28:24 +00003490
3491 // Get the significand and build it into a floating-point number with
Bill Wendling39150252008-09-09 20:39:27 +00003492 // exponent of 1.
Dale Johannesen66978ee2009-01-31 02:22:37 +00003493 SDValue X = GetSignificand(DAG, Op1, dl);
Bill Wendling3eb59402008-09-09 00:28:24 +00003494
3495 if (LimitFloatPrecision <= 6) {
Bill Wendlingbd297bc2008-09-09 18:42:23 +00003496 // For floating-point precision of 6:
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00003497 //
Bill Wendlingbd297bc2008-09-09 18:42:23 +00003498 // Log10ofMantissa =
3499 // -0.50419619f +
3500 // (0.60948995f - 0.10380950f * x) * x;
3501 //
3502 // error 0.0014886165, which is 6 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003503 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003504 getF32Constant(DAG, 0xbdd49a13));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003505 SDValue t1 = DAG.getNode(ISD::FADD, dl, MVT::f32, t0,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003506 getF32Constant(DAG, 0x3f1c0789));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003507 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t1, X);
3508 SDValue Log10ofMantissa = DAG.getNode(ISD::FSUB, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003509 getF32Constant(DAG, 0x3f011300));
Bill Wendlingbd297bc2008-09-09 18:42:23 +00003510
Scott Michelfdc40a02009-02-17 22:15:04 +00003511 result = DAG.getNode(ISD::FADD, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003512 MVT::f32, LogOfExponent, Log10ofMantissa);
Bill Wendling3eb59402008-09-09 00:28:24 +00003513 } else if (LimitFloatPrecision > 6 && LimitFloatPrecision <= 12) {
3514 // For floating-point precision of 12:
3515 //
3516 // Log10ofMantissa =
3517 // -0.64831180f +
3518 // (0.91751397f +
3519 // (-0.31664806f + 0.47637168e-1f * x) * x) * x;
3520 //
3521 // error 0.00019228036, which is better than 12 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003522 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003523 getF32Constant(DAG, 0x3d431f31));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003524 SDValue t1 = DAG.getNode(ISD::FSUB, dl, MVT::f32, t0,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003525 getF32Constant(DAG, 0x3ea21fb2));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003526 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t1, X);
3527 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003528 getF32Constant(DAG, 0x3f6ae232));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003529 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3530 SDValue Log10ofMantissa = DAG.getNode(ISD::FSUB, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003531 getF32Constant(DAG, 0x3f25f7c3));
Bill Wendling3eb59402008-09-09 00:28:24 +00003532
Scott Michelfdc40a02009-02-17 22:15:04 +00003533 result = DAG.getNode(ISD::FADD, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003534 MVT::f32, LogOfExponent, Log10ofMantissa);
Bill Wendling3eb59402008-09-09 00:28:24 +00003535 } else { // LimitFloatPrecision > 12 && LimitFloatPrecision <= 18
Bill Wendlingbd297bc2008-09-09 18:42:23 +00003536 // For floating-point precision of 18:
3537 //
3538 // Log10ofMantissa =
3539 // -0.84299375f +
3540 // (1.5327582f +
3541 // (-1.0688956f +
3542 // (0.49102474f +
3543 // (-0.12539807f + 0.13508273e-1f * x) * x) * x) * x) * x;
3544 //
3545 // error 0.0000037995730, which is better than 18 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003546 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003547 getF32Constant(DAG, 0x3c5d51ce));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003548 SDValue t1 = DAG.getNode(ISD::FSUB, dl, MVT::f32, t0,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003549 getF32Constant(DAG, 0x3e00685a));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003550 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t1, X);
3551 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003552 getF32Constant(DAG, 0x3efb6798));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003553 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3554 SDValue t5 = DAG.getNode(ISD::FSUB, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003555 getF32Constant(DAG, 0x3f88d192));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003556 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3557 SDValue t7 = DAG.getNode(ISD::FADD, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003558 getF32Constant(DAG, 0x3fc4316c));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003559 SDValue t8 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t7, X);
3560 SDValue Log10ofMantissa = DAG.getNode(ISD::FSUB, dl, MVT::f32, t8,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003561 getF32Constant(DAG, 0x3f57ce70));
Bill Wendlingbd297bc2008-09-09 18:42:23 +00003562
Scott Michelfdc40a02009-02-17 22:15:04 +00003563 result = DAG.getNode(ISD::FADD, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003564 MVT::f32, LogOfExponent, Log10ofMantissa);
Bill Wendling3eb59402008-09-09 00:28:24 +00003565 }
Dale Johannesen852680a2008-09-05 21:27:19 +00003566 } else {
Bill Wendling3eb59402008-09-09 00:28:24 +00003567 // No special expansion.
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003568 result = DAG.getNode(ISD::FLOG10, dl,
Dale Johannesen852680a2008-09-05 21:27:19 +00003569 getValue(I.getOperand(1)).getValueType(),
3570 getValue(I.getOperand(1)));
3571 }
Bill Wendling3eb59402008-09-09 00:28:24 +00003572
Dale Johannesen59e577f2008-09-05 18:38:42 +00003573 setValue(&I, result);
3574}
3575
Bill Wendlinge10c8142008-09-09 22:39:21 +00003576/// visitExp2 - Lower an exp2 intrinsic. Handles the special sequences for
3577/// limited-precision mode.
Dale Johannesen601d3c02008-09-05 01:48:15 +00003578void
3579SelectionDAGLowering::visitExp2(CallInst &I) {
3580 SDValue result;
Dale Johannesen66978ee2009-01-31 02:22:37 +00003581 DebugLoc dl = getCurDebugLoc();
Bill Wendlinge10c8142008-09-09 22:39:21 +00003582
Dale Johannesen601d3c02008-09-05 01:48:15 +00003583 if (getValue(I.getOperand(1)).getValueType() == MVT::f32 &&
Bill Wendlinge10c8142008-09-09 22:39:21 +00003584 LimitFloatPrecision > 0 && LimitFloatPrecision <= 18) {
3585 SDValue Op = getValue(I.getOperand(1));
3586
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003587 SDValue IntegerPartOfX = DAG.getNode(ISD::FP_TO_SINT, dl, MVT::i32, Op);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003588
3589 // FractionalPartOfX = x - (float)IntegerPartOfX;
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003590 SDValue t1 = DAG.getNode(ISD::SINT_TO_FP, dl, MVT::f32, IntegerPartOfX);
3591 SDValue X = DAG.getNode(ISD::FSUB, dl, MVT::f32, Op, t1);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003592
3593 // IntegerPartOfX <<= 23;
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003594 IntegerPartOfX = DAG.getNode(ISD::SHL, dl, MVT::i32, IntegerPartOfX,
Duncan Sands92abc622009-01-31 15:50:11 +00003595 DAG.getConstant(23, TLI.getPointerTy()));
Bill Wendlinge10c8142008-09-09 22:39:21 +00003596
3597 if (LimitFloatPrecision <= 6) {
3598 // For floating-point precision of 6:
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00003599 //
Bill Wendlinge10c8142008-09-09 22:39:21 +00003600 // TwoToFractionalPartOfX =
3601 // 0.997535578f +
3602 // (0.735607626f + 0.252464424f * x) * x;
3603 //
3604 // error 0.0144103317, which is 6 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003605 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003606 getF32Constant(DAG, 0x3e814304));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003607 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003608 getF32Constant(DAG, 0x3f3c50c8));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003609 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3610 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003611 getF32Constant(DAG, 0x3f7f5e7e));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003612 SDValue t6 = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::i32, t5);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003613 SDValue TwoToFractionalPartOfX =
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003614 DAG.getNode(ISD::ADD, dl, MVT::i32, t6, IntegerPartOfX);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003615
Scott Michelfdc40a02009-02-17 22:15:04 +00003616 result = DAG.getNode(ISD::BIT_CONVERT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003617 MVT::f32, TwoToFractionalPartOfX);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003618 } else if (LimitFloatPrecision > 6 && LimitFloatPrecision <= 12) {
3619 // For floating-point precision of 12:
3620 //
3621 // TwoToFractionalPartOfX =
3622 // 0.999892986f +
3623 // (0.696457318f +
3624 // (0.224338339f + 0.792043434e-1f * x) * x) * x;
3625 //
3626 // error 0.000107046256, which is 13 to 14 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003627 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003628 getF32Constant(DAG, 0x3da235e3));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003629 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003630 getF32Constant(DAG, 0x3e65b8f3));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003631 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3632 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003633 getF32Constant(DAG, 0x3f324b07));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003634 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3635 SDValue t7 = DAG.getNode(ISD::FADD, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003636 getF32Constant(DAG, 0x3f7ff8fd));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003637 SDValue t8 = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::i32, t7);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003638 SDValue TwoToFractionalPartOfX =
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003639 DAG.getNode(ISD::ADD, dl, MVT::i32, t8, IntegerPartOfX);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003640
Scott Michelfdc40a02009-02-17 22:15:04 +00003641 result = DAG.getNode(ISD::BIT_CONVERT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003642 MVT::f32, TwoToFractionalPartOfX);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003643 } else { // LimitFloatPrecision > 12 && LimitFloatPrecision <= 18
3644 // For floating-point precision of 18:
3645 //
3646 // TwoToFractionalPartOfX =
3647 // 0.999999982f +
3648 // (0.693148872f +
3649 // (0.240227044f +
3650 // (0.554906021e-1f +
3651 // (0.961591928e-2f +
3652 // (0.136028312e-2f + 0.157059148e-3f *x)*x)*x)*x)*x)*x;
3653 // error 2.47208000*10^(-7), which is better than 18 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003654 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003655 getF32Constant(DAG, 0x3924b03e));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003656 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003657 getF32Constant(DAG, 0x3ab24b87));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003658 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3659 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003660 getF32Constant(DAG, 0x3c1d8c17));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003661 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3662 SDValue t7 = DAG.getNode(ISD::FADD, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003663 getF32Constant(DAG, 0x3d634a1d));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003664 SDValue t8 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t7, X);
3665 SDValue t9 = DAG.getNode(ISD::FADD, dl, MVT::f32, t8,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003666 getF32Constant(DAG, 0x3e75fe14));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003667 SDValue t10 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t9, X);
3668 SDValue t11 = DAG.getNode(ISD::FADD, dl, MVT::f32, t10,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003669 getF32Constant(DAG, 0x3f317234));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003670 SDValue t12 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t11, X);
3671 SDValue t13 = DAG.getNode(ISD::FADD, dl, MVT::f32, t12,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003672 getF32Constant(DAG, 0x3f800000));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003673 SDValue t14 = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::i32, t13);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003674 SDValue TwoToFractionalPartOfX =
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003675 DAG.getNode(ISD::ADD, dl, MVT::i32, t14, IntegerPartOfX);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003676
Scott Michelfdc40a02009-02-17 22:15:04 +00003677 result = DAG.getNode(ISD::BIT_CONVERT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003678 MVT::f32, TwoToFractionalPartOfX);
Bill Wendlinge10c8142008-09-09 22:39:21 +00003679 }
Dale Johannesen601d3c02008-09-05 01:48:15 +00003680 } else {
Bill Wendling3eb59402008-09-09 00:28:24 +00003681 // No special expansion.
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003682 result = DAG.getNode(ISD::FEXP2, dl,
Dale Johannesen601d3c02008-09-05 01:48:15 +00003683 getValue(I.getOperand(1)).getValueType(),
3684 getValue(I.getOperand(1)));
3685 }
Bill Wendlinge10c8142008-09-09 22:39:21 +00003686
Dale Johannesen601d3c02008-09-05 01:48:15 +00003687 setValue(&I, result);
3688}
3689
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003690/// visitPow - Lower a pow intrinsic. Handles the special sequences for
3691/// limited-precision mode with x == 10.0f.
3692void
3693SelectionDAGLowering::visitPow(CallInst &I) {
3694 SDValue result;
3695 Value *Val = I.getOperand(1);
Dale Johannesen66978ee2009-01-31 02:22:37 +00003696 DebugLoc dl = getCurDebugLoc();
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003697 bool IsExp10 = false;
3698
3699 if (getValue(Val).getValueType() == MVT::f32 &&
Bill Wendling277fc242008-09-10 00:24:59 +00003700 getValue(I.getOperand(2)).getValueType() == MVT::f32 &&
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003701 LimitFloatPrecision > 0 && LimitFloatPrecision <= 18) {
3702 if (Constant *C = const_cast<Constant*>(dyn_cast<Constant>(Val))) {
3703 if (ConstantFP *CFP = dyn_cast<ConstantFP>(C)) {
3704 APFloat Ten(10.0f);
3705 IsExp10 = CFP->getValueAPF().bitwiseIsEqual(Ten);
3706 }
3707 }
3708 }
3709
3710 if (IsExp10 && LimitFloatPrecision > 0 && LimitFloatPrecision <= 18) {
3711 SDValue Op = getValue(I.getOperand(2));
3712
3713 // Put the exponent in the right bit position for later addition to the
3714 // final result:
3715 //
3716 // #define LOG2OF10 3.3219281f
3717 // IntegerPartOfX = (int32_t)(x * LOG2OF10);
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003718 SDValue t0 = DAG.getNode(ISD::FMUL, dl, MVT::f32, Op,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003719 getF32Constant(DAG, 0x40549a78));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003720 SDValue IntegerPartOfX = DAG.getNode(ISD::FP_TO_SINT, dl, MVT::i32, t0);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003721
3722 // FractionalPartOfX = x - (float)IntegerPartOfX;
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003723 SDValue t1 = DAG.getNode(ISD::SINT_TO_FP, dl, MVT::f32, IntegerPartOfX);
3724 SDValue X = DAG.getNode(ISD::FSUB, dl, MVT::f32, t0, t1);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003725
3726 // IntegerPartOfX <<= 23;
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003727 IntegerPartOfX = DAG.getNode(ISD::SHL, dl, MVT::i32, IntegerPartOfX,
Duncan Sands92abc622009-01-31 15:50:11 +00003728 DAG.getConstant(23, TLI.getPointerTy()));
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003729
3730 if (LimitFloatPrecision <= 6) {
3731 // For floating-point precision of 6:
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00003732 //
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003733 // twoToFractionalPartOfX =
3734 // 0.997535578f +
3735 // (0.735607626f + 0.252464424f * x) * x;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00003736 //
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003737 // error 0.0144103317, which is 6 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003738 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003739 getF32Constant(DAG, 0x3e814304));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003740 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003741 getF32Constant(DAG, 0x3f3c50c8));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003742 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3743 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003744 getF32Constant(DAG, 0x3f7f5e7e));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003745 SDValue t6 = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::i32, t5);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003746 SDValue TwoToFractionalPartOfX =
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003747 DAG.getNode(ISD::ADD, dl, MVT::i32, t6, IntegerPartOfX);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003748
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003749 result = DAG.getNode(ISD::BIT_CONVERT, dl,
3750 MVT::f32, TwoToFractionalPartOfX);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003751 } else if (LimitFloatPrecision > 6 && LimitFloatPrecision <= 12) {
3752 // For floating-point precision of 12:
3753 //
3754 // TwoToFractionalPartOfX =
3755 // 0.999892986f +
3756 // (0.696457318f +
3757 // (0.224338339f + 0.792043434e-1f * x) * x) * x;
3758 //
3759 // error 0.000107046256, which is 13 to 14 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003760 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003761 getF32Constant(DAG, 0x3da235e3));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003762 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003763 getF32Constant(DAG, 0x3e65b8f3));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003764 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3765 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003766 getF32Constant(DAG, 0x3f324b07));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003767 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3768 SDValue t7 = DAG.getNode(ISD::FADD, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003769 getF32Constant(DAG, 0x3f7ff8fd));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003770 SDValue t8 = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::i32, t7);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003771 SDValue TwoToFractionalPartOfX =
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003772 DAG.getNode(ISD::ADD, dl, MVT::i32, t8, IntegerPartOfX);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003773
Scott Michelfdc40a02009-02-17 22:15:04 +00003774 result = DAG.getNode(ISD::BIT_CONVERT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003775 MVT::f32, TwoToFractionalPartOfX);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003776 } else { // LimitFloatPrecision > 12 && LimitFloatPrecision <= 18
3777 // For floating-point precision of 18:
3778 //
3779 // TwoToFractionalPartOfX =
3780 // 0.999999982f +
3781 // (0.693148872f +
3782 // (0.240227044f +
3783 // (0.554906021e-1f +
3784 // (0.961591928e-2f +
3785 // (0.136028312e-2f + 0.157059148e-3f *x)*x)*x)*x)*x)*x;
3786 // error 2.47208000*10^(-7), which is better than 18 bits
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003787 SDValue t2 = DAG.getNode(ISD::FMUL, dl, MVT::f32, X,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003788 getF32Constant(DAG, 0x3924b03e));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003789 SDValue t3 = DAG.getNode(ISD::FADD, dl, MVT::f32, t2,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003790 getF32Constant(DAG, 0x3ab24b87));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003791 SDValue t4 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t3, X);
3792 SDValue t5 = DAG.getNode(ISD::FADD, dl, MVT::f32, t4,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003793 getF32Constant(DAG, 0x3c1d8c17));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003794 SDValue t6 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t5, X);
3795 SDValue t7 = DAG.getNode(ISD::FADD, dl, MVT::f32, t6,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003796 getF32Constant(DAG, 0x3d634a1d));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003797 SDValue t8 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t7, X);
3798 SDValue t9 = DAG.getNode(ISD::FADD, dl, MVT::f32, t8,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003799 getF32Constant(DAG, 0x3e75fe14));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003800 SDValue t10 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t9, X);
3801 SDValue t11 = DAG.getNode(ISD::FADD, dl, MVT::f32, t10,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003802 getF32Constant(DAG, 0x3f317234));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003803 SDValue t12 = DAG.getNode(ISD::FMUL, dl, MVT::f32, t11, X);
3804 SDValue t13 = DAG.getNode(ISD::FADD, dl, MVT::f32, t12,
Bill Wendlingcd4c73a2008-09-22 00:44:35 +00003805 getF32Constant(DAG, 0x3f800000));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003806 SDValue t14 = DAG.getNode(ISD::BIT_CONVERT, dl, MVT::i32, t13);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003807 SDValue TwoToFractionalPartOfX =
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003808 DAG.getNode(ISD::ADD, dl, MVT::i32, t14, IntegerPartOfX);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003809
Scott Michelfdc40a02009-02-17 22:15:04 +00003810 result = DAG.getNode(ISD::BIT_CONVERT, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003811 MVT::f32, TwoToFractionalPartOfX);
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003812 }
3813 } else {
3814 // No special expansion.
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003815 result = DAG.getNode(ISD::FPOW, dl,
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00003816 getValue(I.getOperand(1)).getValueType(),
3817 getValue(I.getOperand(1)),
3818 getValue(I.getOperand(2)));
3819 }
3820
3821 setValue(&I, result);
3822}
3823
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003824/// visitIntrinsicCall - Lower the call to the specified intrinsic function. If
3825/// we want to emit this as a call to a named external function, return the name
3826/// otherwise lower it and return null.
3827const char *
3828SelectionDAGLowering::visitIntrinsicCall(CallInst &I, unsigned Intrinsic) {
Dale Johannesen66978ee2009-01-31 02:22:37 +00003829 DebugLoc dl = getCurDebugLoc();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003830 switch (Intrinsic) {
3831 default:
3832 // By default, turn this into a target intrinsic node.
3833 visitTargetIntrinsic(I, Intrinsic);
3834 return 0;
3835 case Intrinsic::vastart: visitVAStart(I); return 0;
3836 case Intrinsic::vaend: visitVAEnd(I); return 0;
3837 case Intrinsic::vacopy: visitVACopy(I); return 0;
3838 case Intrinsic::returnaddress:
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003839 setValue(&I, DAG.getNode(ISD::RETURNADDR, dl, TLI.getPointerTy(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003840 getValue(I.getOperand(1))));
3841 return 0;
Bill Wendlingd5d81912008-09-26 22:10:44 +00003842 case Intrinsic::frameaddress:
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003843 setValue(&I, DAG.getNode(ISD::FRAMEADDR, dl, TLI.getPointerTy(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003844 getValue(I.getOperand(1))));
3845 return 0;
3846 case Intrinsic::setjmp:
3847 return "_setjmp"+!TLI.usesUnderscoreSetJmp();
3848 break;
3849 case Intrinsic::longjmp:
3850 return "_longjmp"+!TLI.usesUnderscoreLongJmp();
3851 break;
Chris Lattner824b9582008-11-21 16:42:48 +00003852 case Intrinsic::memcpy: {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003853 SDValue Op1 = getValue(I.getOperand(1));
3854 SDValue Op2 = getValue(I.getOperand(2));
3855 SDValue Op3 = getValue(I.getOperand(3));
3856 unsigned Align = cast<ConstantInt>(I.getOperand(4))->getZExtValue();
Dale Johannesena04b7572009-02-03 23:04:43 +00003857 DAG.setRoot(DAG.getMemcpy(getRoot(), dl, Op1, Op2, Op3, Align, false,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003858 I.getOperand(1), 0, I.getOperand(2), 0));
3859 return 0;
3860 }
Chris Lattner824b9582008-11-21 16:42:48 +00003861 case Intrinsic::memset: {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003862 SDValue Op1 = getValue(I.getOperand(1));
3863 SDValue Op2 = getValue(I.getOperand(2));
3864 SDValue Op3 = getValue(I.getOperand(3));
3865 unsigned Align = cast<ConstantInt>(I.getOperand(4))->getZExtValue();
Dale Johannesena04b7572009-02-03 23:04:43 +00003866 DAG.setRoot(DAG.getMemset(getRoot(), dl, Op1, Op2, Op3, Align,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003867 I.getOperand(1), 0));
3868 return 0;
3869 }
Chris Lattner824b9582008-11-21 16:42:48 +00003870 case Intrinsic::memmove: {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003871 SDValue Op1 = getValue(I.getOperand(1));
3872 SDValue Op2 = getValue(I.getOperand(2));
3873 SDValue Op3 = getValue(I.getOperand(3));
3874 unsigned Align = cast<ConstantInt>(I.getOperand(4))->getZExtValue();
3875
3876 // If the source and destination are known to not be aliases, we can
3877 // lower memmove as memcpy.
3878 uint64_t Size = -1ULL;
3879 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op3))
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00003880 Size = C->getZExtValue();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003881 if (AA->alias(I.getOperand(1), Size, I.getOperand(2), Size) ==
3882 AliasAnalysis::NoAlias) {
Dale Johannesena04b7572009-02-03 23:04:43 +00003883 DAG.setRoot(DAG.getMemcpy(getRoot(), dl, Op1, Op2, Op3, Align, false,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003884 I.getOperand(1), 0, I.getOperand(2), 0));
3885 return 0;
3886 }
3887
Dale Johannesena04b7572009-02-03 23:04:43 +00003888 DAG.setRoot(DAG.getMemmove(getRoot(), dl, Op1, Op2, Op3, Align,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003889 I.getOperand(1), 0, I.getOperand(2), 0));
3890 return 0;
3891 }
3892 case Intrinsic::dbg_stoppoint: {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003893 DbgStopPointInst &SPI = cast<DbgStopPointInst>(I);
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +00003894 if (DIDescriptor::ValidDebugInfo(SPI.getContext(), OptLevel)) {
Evan Chenge3d42322009-02-25 07:04:34 +00003895 MachineFunction &MF = DAG.getMachineFunction();
Chris Lattneraf29a522009-05-04 22:10:05 +00003896 DICompileUnit CU(cast<GlobalVariable>(SPI.getContext()));
3897 DebugLoc Loc = DebugLoc::get(MF.getOrCreateDebugLocID(CU.getGV(),
3898 SPI.getLine(), SPI.getColumn()));
3899 setCurDebugLoc(Loc);
3900
Bill Wendling98a366d2009-04-29 23:29:43 +00003901 if (OptLevel == CodeGenOpt::None)
Chris Lattneraf29a522009-05-04 22:10:05 +00003902 DAG.setRoot(DAG.getDbgStopPoint(Loc, getRoot(),
Dale Johannesenbeaec4c2009-03-25 17:36:08 +00003903 SPI.getLine(),
3904 SPI.getColumn(),
3905 SPI.getContext()));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00003906 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003907 return 0;
3908 }
3909 case Intrinsic::dbg_region_start: {
Devang Patel83489bb2009-01-13 00:35:13 +00003910 DwarfWriter *DW = DAG.getDwarfWriter();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003911 DbgRegionStartInst &RSI = cast<DbgRegionStartInst>(I);
Bill Wendlingbe8cc2a2009-04-29 00:15:41 +00003912
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +00003913 if (DIDescriptor::ValidDebugInfo(RSI.getContext(), OptLevel) &&
3914 DW && DW->ShouldEmitDwarfDebug()) {
Bill Wendling92c1e122009-02-13 02:16:35 +00003915 unsigned LabelID =
3916 DW->RecordRegionStart(cast<GlobalVariable>(RSI.getContext()));
Devang Patel48c7fa22009-04-13 18:13:16 +00003917 DAG.setRoot(DAG.getLabel(ISD::DBG_LABEL, getCurDebugLoc(),
3918 getRoot(), LabelID));
Bill Wendling92c1e122009-02-13 02:16:35 +00003919 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003920
3921 return 0;
3922 }
3923 case Intrinsic::dbg_region_end: {
Devang Patel83489bb2009-01-13 00:35:13 +00003924 DwarfWriter *DW = DAG.getDwarfWriter();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003925 DbgRegionEndInst &REI = cast<DbgRegionEndInst>(I);
Devang Patel0f7fef32009-04-13 17:02:03 +00003926
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +00003927 if (DIDescriptor::ValidDebugInfo(REI.getContext(), OptLevel) &&
3928 DW && DW->ShouldEmitDwarfDebug()) {
Devang Patel0f7fef32009-04-13 17:02:03 +00003929 MachineFunction &MF = DAG.getMachineFunction();
3930 DISubprogram Subprogram(cast<GlobalVariable>(REI.getContext()));
3931 std::string SPName;
3932 Subprogram.getLinkageName(SPName);
3933 if (!SPName.empty()
3934 && strcmp(SPName.c_str(), MF.getFunction()->getNameStart())) {
Devang Patel16f2ffd2009-04-16 02:33:41 +00003935 // This is end of inlined function. Debugging information for
3936 // inlined function is not handled yet (only supported by FastISel).
Bill Wendling98a366d2009-04-29 23:29:43 +00003937 if (OptLevel == CodeGenOpt::None) {
Devang Patel16f2ffd2009-04-16 02:33:41 +00003938 unsigned ID = DW->RecordInlinedFnEnd(Subprogram);
3939 if (ID != 0)
Devang Patel02f8c412009-04-16 17:55:30 +00003940 // Returned ID is 0 if this is unbalanced "end of inlined
3941 // scope". This could happen if optimizer eats dbg intrinsics
3942 // or "beginning of inlined scope" is not recoginized due to
3943 // missing location info. In such cases, do ignore this region.end.
Devang Patel16f2ffd2009-04-16 02:33:41 +00003944 DAG.setRoot(DAG.getLabel(ISD::DBG_LABEL, getCurDebugLoc(),
3945 getRoot(), ID));
3946 }
Devang Patel0f7fef32009-04-13 17:02:03 +00003947 return 0;
3948 }
3949
Bill Wendling92c1e122009-02-13 02:16:35 +00003950 unsigned LabelID =
Dan Gohman9a38e3e2009-05-07 19:46:24 +00003951 DW->RecordRegionEnd(cast<GlobalVariable>(REI.getContext()));
Devang Patel48c7fa22009-04-13 18:13:16 +00003952 DAG.setRoot(DAG.getLabel(ISD::DBG_LABEL, getCurDebugLoc(),
3953 getRoot(), LabelID));
Bill Wendling92c1e122009-02-13 02:16:35 +00003954 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003955
3956 return 0;
3957 }
3958 case Intrinsic::dbg_func_start: {
Devang Patel83489bb2009-01-13 00:35:13 +00003959 DwarfWriter *DW = DAG.getDwarfWriter();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00003960 DbgFuncStartInst &FSI = cast<DbgFuncStartInst>(I);
3961 Value *SP = FSI.getSubprogram();
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +00003962 if (!DIDescriptor::ValidDebugInfo(SP, OptLevel))
3963 return 0;
Devang Patel16f2ffd2009-04-16 02:33:41 +00003964
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +00003965 MachineFunction &MF = DAG.getMachineFunction();
3966 if (OptLevel == CodeGenOpt::None) {
3967 // llvm.dbg.func.start implicitly defines a dbg_stoppoint which is what
3968 // (most?) gdb expects.
3969 DebugLoc PrevLoc = CurDebugLoc;
3970 DISubprogram Subprogram(cast<GlobalVariable>(SP));
3971 DICompileUnit CompileUnit = Subprogram.getCompileUnit();
Devang Patel02f8c412009-04-16 17:55:30 +00003972
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +00003973 if (!Subprogram.describes(MF.getFunction())) {
3974 // This is a beginning of an inlined function.
3975
3976 // If llvm.dbg.func.start is seen in a new block before any
3977 // llvm.dbg.stoppoint intrinsic then the location info is unknown.
3978 // FIXME : Why DebugLoc is reset at the beginning of each block ?
3979 if (PrevLoc.isUnknown())
3980 return 0;
3981
3982 // Record the source line.
3983 unsigned Line = Subprogram.getLineNumber();
3984 setCurDebugLoc(DebugLoc::get(
3985 MF.getOrCreateDebugLocID(CompileUnit.getGV(), Line, 0)));
3986
3987 if (DW && DW->ShouldEmitDwarfDebug()) {
Argyrios Kyrtzidis116b2742009-05-07 00:16:31 +00003988 DebugLocTuple PrevLocTpl = MF.getDebugLocTuple(PrevLoc);
3989 unsigned LabelID = DW->RecordInlinedFnStart(Subprogram,
3990 DICompileUnit(PrevLocTpl.CompileUnit),
3991 PrevLocTpl.Line,
3992 PrevLocTpl.Col);
Bill Wendling86e6cb92009-02-17 01:04:54 +00003993 DAG.setRoot(DAG.getLabel(ISD::DBG_LABEL, getCurDebugLoc(),
3994 getRoot(), LabelID));
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +00003995 }
3996 } else {
3997 // Record the source line.
3998 unsigned Line = Subprogram.getLineNumber();
Mike Stumpfe095f32009-05-04 18:40:41 +00003999 MF.setDefaultDebugLoc(DebugLoc::get(
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +00004000 MF.getOrCreateDebugLocID(CompileUnit.getGV(), Line, 0)));
4001 if (DW && DW->ShouldEmitDwarfDebug()) {
Devang Patel16f2ffd2009-04-16 02:33:41 +00004002 // llvm.dbg.func_start also defines beginning of function scope.
4003 DW->RecordRegionStart(cast<GlobalVariable>(FSI.getSubprogram()));
4004 }
Devang Patel16f2ffd2009-04-16 02:33:41 +00004005 }
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +00004006 } else {
4007 DISubprogram Subprogram(cast<GlobalVariable>(SP));
4008
4009 std::string SPName;
4010 Subprogram.getLinkageName(SPName);
4011 if (!SPName.empty()
4012 && strcmp(SPName.c_str(), MF.getFunction()->getNameStart())) {
4013 // This is beginning of inlined function. Debugging information for
4014 // inlined function is not handled yet (only supported by FastISel).
4015 return 0;
4016 }
4017
4018 // llvm.dbg.func.start implicitly defines a dbg_stoppoint which is
4019 // what (most?) gdb expects.
4020 DICompileUnit CompileUnit = Subprogram.getCompileUnit();
4021
4022 // Record the source line but does not create a label for the normal
4023 // function start. It will be emitted at asm emission time. However,
4024 // create a label if this is a beginning of inlined function.
4025 unsigned Line = Subprogram.getLineNumber();
4026 setCurDebugLoc(DebugLoc::get(
4027 MF.getOrCreateDebugLocID(CompileUnit.getGV(), Line, 0)));
4028 // FIXME - Start new region because llvm.dbg.func_start also defines
4029 // beginning of function scope.
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004030 }
4031
4032 return 0;
4033 }
Bill Wendling92c1e122009-02-13 02:16:35 +00004034 case Intrinsic::dbg_declare: {
Bill Wendling98a366d2009-04-29 23:29:43 +00004035 if (OptLevel == CodeGenOpt::None) {
Bill Wendling86e6cb92009-02-17 01:04:54 +00004036 DbgDeclareInst &DI = cast<DbgDeclareInst>(I);
4037 Value *Variable = DI.getVariable();
Argyrios Kyrtzidis77eaa682009-05-03 08:50:41 +00004038 if (DIDescriptor::ValidDebugInfo(Variable, OptLevel))
Bill Wendling86e6cb92009-02-17 01:04:54 +00004039 DAG.setRoot(DAG.getNode(ISD::DECLARE, dl, MVT::Other, getRoot(),
4040 getValue(DI.getAddress()), getValue(Variable)));
4041 } else {
4042 // FIXME: Do something sensible here when we support debug declare.
4043 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004044 return 0;
Bill Wendling92c1e122009-02-13 02:16:35 +00004045 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004046 case Intrinsic::eh_exception: {
4047 if (!CurMBB->isLandingPad()) {
4048 // FIXME: Mark exception register as live in. Hack for PR1508.
4049 unsigned Reg = TLI.getExceptionAddressRegister();
4050 if (Reg) CurMBB->addLiveIn(Reg);
4051 }
4052 // Insert the EXCEPTIONADDR instruction.
4053 SDVTList VTs = DAG.getVTList(TLI.getPointerTy(), MVT::Other);
4054 SDValue Ops[1];
4055 Ops[0] = DAG.getRoot();
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004056 SDValue Op = DAG.getNode(ISD::EXCEPTIONADDR, dl, VTs, Ops, 1);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004057 setValue(&I, Op);
4058 DAG.setRoot(Op.getValue(1));
4059 return 0;
4060 }
4061
4062 case Intrinsic::eh_selector_i32:
4063 case Intrinsic::eh_selector_i64: {
4064 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
4065 MVT VT = (Intrinsic == Intrinsic::eh_selector_i32 ?
4066 MVT::i32 : MVT::i64);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004067
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004068 if (MMI) {
4069 if (CurMBB->isLandingPad())
4070 AddCatchInfo(I, MMI, CurMBB);
4071 else {
4072#ifndef NDEBUG
4073 FuncInfo.CatchInfoLost.insert(&I);
4074#endif
4075 // FIXME: Mark exception selector register as live in. Hack for PR1508.
4076 unsigned Reg = TLI.getExceptionSelectorRegister();
4077 if (Reg) CurMBB->addLiveIn(Reg);
4078 }
4079
4080 // Insert the EHSELECTION instruction.
4081 SDVTList VTs = DAG.getVTList(VT, MVT::Other);
4082 SDValue Ops[2];
4083 Ops[0] = getValue(I.getOperand(1));
4084 Ops[1] = getRoot();
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004085 SDValue Op = DAG.getNode(ISD::EHSELECTION, dl, VTs, Ops, 2);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004086 setValue(&I, Op);
4087 DAG.setRoot(Op.getValue(1));
4088 } else {
4089 setValue(&I, DAG.getConstant(0, VT));
4090 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004091
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004092 return 0;
4093 }
4094
4095 case Intrinsic::eh_typeid_for_i32:
4096 case Intrinsic::eh_typeid_for_i64: {
4097 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
4098 MVT VT = (Intrinsic == Intrinsic::eh_typeid_for_i32 ?
4099 MVT::i32 : MVT::i64);
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004100
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004101 if (MMI) {
4102 // Find the type id for the given typeinfo.
4103 GlobalVariable *GV = ExtractTypeInfo(I.getOperand(1));
4104
4105 unsigned TypeID = MMI->getTypeIDFor(GV);
4106 setValue(&I, DAG.getConstant(TypeID, VT));
4107 } else {
4108 // Return something different to eh_selector.
4109 setValue(&I, DAG.getConstant(1, VT));
4110 }
4111
4112 return 0;
4113 }
4114
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004115 case Intrinsic::eh_return_i32:
4116 case Intrinsic::eh_return_i64:
4117 if (MachineModuleInfo *MMI = DAG.getMachineModuleInfo()) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004118 MMI->setCallsEHReturn(true);
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004119 DAG.setRoot(DAG.getNode(ISD::EH_RETURN, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004120 MVT::Other,
4121 getControlRoot(),
4122 getValue(I.getOperand(1)),
4123 getValue(I.getOperand(2))));
4124 } else {
4125 setValue(&I, DAG.getConstant(0, TLI.getPointerTy()));
4126 }
4127
4128 return 0;
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004129 case Intrinsic::eh_unwind_init:
4130 if (MachineModuleInfo *MMI = DAG.getMachineModuleInfo()) {
4131 MMI->setCallsUnwindInit(true);
4132 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004133
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004134 return 0;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004135
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004136 case Intrinsic::eh_dwarf_cfa: {
4137 MVT VT = getValue(I.getOperand(1)).getValueType();
4138 SDValue CfaArg;
4139 if (VT.bitsGT(TLI.getPointerTy()))
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004140 CfaArg = DAG.getNode(ISD::TRUNCATE, dl,
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004141 TLI.getPointerTy(), getValue(I.getOperand(1)));
4142 else
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004143 CfaArg = DAG.getNode(ISD::SIGN_EXTEND, dl,
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004144 TLI.getPointerTy(), getValue(I.getOperand(1)));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004145
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004146 SDValue Offset = DAG.getNode(ISD::ADD, dl,
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004147 TLI.getPointerTy(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004148 DAG.getNode(ISD::FRAME_TO_ARGS_OFFSET, dl,
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004149 TLI.getPointerTy()),
4150 CfaArg);
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004151 setValue(&I, DAG.getNode(ISD::ADD, dl,
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004152 TLI.getPointerTy(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004153 DAG.getNode(ISD::FRAMEADDR, dl,
Anton Korobeynikova0e8a1e2008-09-08 21:13:56 +00004154 TLI.getPointerTy(),
4155 DAG.getConstant(0,
4156 TLI.getPointerTy())),
4157 Offset));
4158 return 0;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004159 }
4160
Mon P Wang77cdf302008-11-10 20:54:11 +00004161 case Intrinsic::convertff:
4162 case Intrinsic::convertfsi:
4163 case Intrinsic::convertfui:
4164 case Intrinsic::convertsif:
4165 case Intrinsic::convertuif:
4166 case Intrinsic::convertss:
4167 case Intrinsic::convertsu:
4168 case Intrinsic::convertus:
4169 case Intrinsic::convertuu: {
4170 ISD::CvtCode Code = ISD::CVT_INVALID;
4171 switch (Intrinsic) {
4172 case Intrinsic::convertff: Code = ISD::CVT_FF; break;
4173 case Intrinsic::convertfsi: Code = ISD::CVT_FS; break;
4174 case Intrinsic::convertfui: Code = ISD::CVT_FU; break;
4175 case Intrinsic::convertsif: Code = ISD::CVT_SF; break;
4176 case Intrinsic::convertuif: Code = ISD::CVT_UF; break;
4177 case Intrinsic::convertss: Code = ISD::CVT_SS; break;
4178 case Intrinsic::convertsu: Code = ISD::CVT_SU; break;
4179 case Intrinsic::convertus: Code = ISD::CVT_US; break;
4180 case Intrinsic::convertuu: Code = ISD::CVT_UU; break;
4181 }
4182 MVT DestVT = TLI.getValueType(I.getType());
4183 Value* Op1 = I.getOperand(1);
Dale Johannesena04b7572009-02-03 23:04:43 +00004184 setValue(&I, DAG.getConvertRndSat(DestVT, getCurDebugLoc(), getValue(Op1),
Mon P Wang77cdf302008-11-10 20:54:11 +00004185 DAG.getValueType(DestVT),
4186 DAG.getValueType(getValue(Op1).getValueType()),
4187 getValue(I.getOperand(2)),
4188 getValue(I.getOperand(3)),
4189 Code));
4190 return 0;
4191 }
4192
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004193 case Intrinsic::sqrt:
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004194 setValue(&I, DAG.getNode(ISD::FSQRT, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004195 getValue(I.getOperand(1)).getValueType(),
4196 getValue(I.getOperand(1))));
4197 return 0;
4198 case Intrinsic::powi:
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004199 setValue(&I, DAG.getNode(ISD::FPOWI, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004200 getValue(I.getOperand(1)).getValueType(),
4201 getValue(I.getOperand(1)),
4202 getValue(I.getOperand(2))));
4203 return 0;
4204 case Intrinsic::sin:
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004205 setValue(&I, DAG.getNode(ISD::FSIN, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004206 getValue(I.getOperand(1)).getValueType(),
4207 getValue(I.getOperand(1))));
4208 return 0;
4209 case Intrinsic::cos:
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004210 setValue(&I, DAG.getNode(ISD::FCOS, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004211 getValue(I.getOperand(1)).getValueType(),
4212 getValue(I.getOperand(1))));
4213 return 0;
Dale Johannesen7794f2a2008-09-04 00:47:13 +00004214 case Intrinsic::log:
Dale Johannesen59e577f2008-09-05 18:38:42 +00004215 visitLog(I);
Dale Johannesen7794f2a2008-09-04 00:47:13 +00004216 return 0;
4217 case Intrinsic::log2:
Dale Johannesen59e577f2008-09-05 18:38:42 +00004218 visitLog2(I);
Dale Johannesen7794f2a2008-09-04 00:47:13 +00004219 return 0;
4220 case Intrinsic::log10:
Dale Johannesen59e577f2008-09-05 18:38:42 +00004221 visitLog10(I);
Dale Johannesen7794f2a2008-09-04 00:47:13 +00004222 return 0;
4223 case Intrinsic::exp:
Dale Johannesen59e577f2008-09-05 18:38:42 +00004224 visitExp(I);
Dale Johannesen7794f2a2008-09-04 00:47:13 +00004225 return 0;
4226 case Intrinsic::exp2:
Dale Johannesen601d3c02008-09-05 01:48:15 +00004227 visitExp2(I);
Dale Johannesen7794f2a2008-09-04 00:47:13 +00004228 return 0;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004229 case Intrinsic::pow:
Bill Wendlingaeb5c7b2008-09-10 00:20:20 +00004230 visitPow(I);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004231 return 0;
4232 case Intrinsic::pcmarker: {
4233 SDValue Tmp = getValue(I.getOperand(1));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004234 DAG.setRoot(DAG.getNode(ISD::PCMARKER, dl, MVT::Other, getRoot(), Tmp));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004235 return 0;
4236 }
4237 case Intrinsic::readcyclecounter: {
4238 SDValue Op = getRoot();
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004239 SDValue Tmp = DAG.getNode(ISD::READCYCLECOUNTER, dl,
Dan Gohmanfc166572009-04-09 23:54:40 +00004240 DAG.getVTList(MVT::i64, MVT::Other),
4241 &Op, 1);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004242 setValue(&I, Tmp);
4243 DAG.setRoot(Tmp.getValue(1));
4244 return 0;
4245 }
4246 case Intrinsic::part_select: {
4247 // Currently not implemented: just abort
4248 assert(0 && "part_select intrinsic not implemented");
4249 abort();
4250 }
4251 case Intrinsic::part_set: {
4252 // Currently not implemented: just abort
4253 assert(0 && "part_set intrinsic not implemented");
4254 abort();
4255 }
4256 case Intrinsic::bswap:
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004257 setValue(&I, DAG.getNode(ISD::BSWAP, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004258 getValue(I.getOperand(1)).getValueType(),
4259 getValue(I.getOperand(1))));
4260 return 0;
4261 case Intrinsic::cttz: {
4262 SDValue Arg = getValue(I.getOperand(1));
4263 MVT Ty = Arg.getValueType();
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004264 SDValue result = DAG.getNode(ISD::CTTZ, dl, Ty, Arg);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004265 setValue(&I, result);
4266 return 0;
4267 }
4268 case Intrinsic::ctlz: {
4269 SDValue Arg = getValue(I.getOperand(1));
4270 MVT Ty = Arg.getValueType();
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004271 SDValue result = DAG.getNode(ISD::CTLZ, dl, Ty, Arg);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004272 setValue(&I, result);
4273 return 0;
4274 }
4275 case Intrinsic::ctpop: {
4276 SDValue Arg = getValue(I.getOperand(1));
4277 MVT Ty = Arg.getValueType();
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004278 SDValue result = DAG.getNode(ISD::CTPOP, dl, Ty, Arg);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004279 setValue(&I, result);
4280 return 0;
4281 }
4282 case Intrinsic::stacksave: {
4283 SDValue Op = getRoot();
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004284 SDValue Tmp = DAG.getNode(ISD::STACKSAVE, dl,
Dan Gohmanfc166572009-04-09 23:54:40 +00004285 DAG.getVTList(TLI.getPointerTy(), MVT::Other), &Op, 1);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004286 setValue(&I, Tmp);
4287 DAG.setRoot(Tmp.getValue(1));
4288 return 0;
4289 }
4290 case Intrinsic::stackrestore: {
4291 SDValue Tmp = getValue(I.getOperand(1));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004292 DAG.setRoot(DAG.getNode(ISD::STACKRESTORE, dl, MVT::Other, getRoot(), Tmp));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004293 return 0;
4294 }
Bill Wendling57344502008-11-18 11:01:33 +00004295 case Intrinsic::stackprotector: {
Bill Wendlingb2a42982008-11-06 02:29:10 +00004296 // Emit code into the DAG to store the stack guard onto the stack.
4297 MachineFunction &MF = DAG.getMachineFunction();
4298 MachineFrameInfo *MFI = MF.getFrameInfo();
4299 MVT PtrTy = TLI.getPointerTy();
4300
Bill Wendlingb7c6ebc2008-11-07 01:23:58 +00004301 SDValue Src = getValue(I.getOperand(1)); // The guard's value.
4302 AllocaInst *Slot = cast<AllocaInst>(I.getOperand(2));
Bill Wendlingb2a42982008-11-06 02:29:10 +00004303
Bill Wendlingb7c6ebc2008-11-07 01:23:58 +00004304 int FI = FuncInfo.StaticAllocaMap[Slot];
Bill Wendlingb2a42982008-11-06 02:29:10 +00004305 MFI->setStackProtectorIndex(FI);
4306
4307 SDValue FIN = DAG.getFrameIndex(FI, PtrTy);
4308
4309 // Store the stack protector onto the stack.
Dale Johannesen66978ee2009-01-31 02:22:37 +00004310 SDValue Result = DAG.getStore(getRoot(), getCurDebugLoc(), Src, FIN,
Bill Wendlingb2a42982008-11-06 02:29:10 +00004311 PseudoSourceValue::getFixedStack(FI),
4312 0, true);
4313 setValue(&I, Result);
4314 DAG.setRoot(Result);
4315 return 0;
4316 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004317 case Intrinsic::var_annotation:
4318 // Discard annotate attributes
4319 return 0;
4320
4321 case Intrinsic::init_trampoline: {
4322 const Function *F = cast<Function>(I.getOperand(2)->stripPointerCasts());
4323
4324 SDValue Ops[6];
4325 Ops[0] = getRoot();
4326 Ops[1] = getValue(I.getOperand(1));
4327 Ops[2] = getValue(I.getOperand(2));
4328 Ops[3] = getValue(I.getOperand(3));
4329 Ops[4] = DAG.getSrcValue(I.getOperand(1));
4330 Ops[5] = DAG.getSrcValue(F);
4331
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004332 SDValue Tmp = DAG.getNode(ISD::TRAMPOLINE, dl,
Dan Gohmanfc166572009-04-09 23:54:40 +00004333 DAG.getVTList(TLI.getPointerTy(), MVT::Other),
4334 Ops, 6);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004335
4336 setValue(&I, Tmp);
4337 DAG.setRoot(Tmp.getValue(1));
4338 return 0;
4339 }
4340
4341 case Intrinsic::gcroot:
4342 if (GFI) {
4343 Value *Alloca = I.getOperand(1);
4344 Constant *TypeMap = cast<Constant>(I.getOperand(2));
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004345
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004346 FrameIndexSDNode *FI = cast<FrameIndexSDNode>(getValue(Alloca).getNode());
4347 GFI->addStackRoot(FI->getIndex(), TypeMap);
4348 }
4349 return 0;
4350
4351 case Intrinsic::gcread:
4352 case Intrinsic::gcwrite:
4353 assert(0 && "GC failed to lower gcread/gcwrite intrinsics!");
4354 return 0;
4355
4356 case Intrinsic::flt_rounds: {
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004357 setValue(&I, DAG.getNode(ISD::FLT_ROUNDS_, dl, MVT::i32));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004358 return 0;
4359 }
4360
4361 case Intrinsic::trap: {
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004362 DAG.setRoot(DAG.getNode(ISD::TRAP, dl,MVT::Other, getRoot()));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004363 return 0;
4364 }
Bill Wendling7cdc3c82008-11-21 02:03:52 +00004365
Bill Wendlingef375462008-11-21 02:38:44 +00004366 case Intrinsic::uadd_with_overflow:
Bill Wendling74c37652008-12-09 22:08:41 +00004367 return implVisitAluOverflow(I, ISD::UADDO);
4368 case Intrinsic::sadd_with_overflow:
4369 return implVisitAluOverflow(I, ISD::SADDO);
4370 case Intrinsic::usub_with_overflow:
4371 return implVisitAluOverflow(I, ISD::USUBO);
4372 case Intrinsic::ssub_with_overflow:
4373 return implVisitAluOverflow(I, ISD::SSUBO);
4374 case Intrinsic::umul_with_overflow:
4375 return implVisitAluOverflow(I, ISD::UMULO);
4376 case Intrinsic::smul_with_overflow:
4377 return implVisitAluOverflow(I, ISD::SMULO);
Bill Wendling7cdc3c82008-11-21 02:03:52 +00004378
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004379 case Intrinsic::prefetch: {
4380 SDValue Ops[4];
4381 Ops[0] = getRoot();
4382 Ops[1] = getValue(I.getOperand(1));
4383 Ops[2] = getValue(I.getOperand(2));
4384 Ops[3] = getValue(I.getOperand(3));
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004385 DAG.setRoot(DAG.getNode(ISD::PREFETCH, dl, MVT::Other, &Ops[0], 4));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004386 return 0;
4387 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004388
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004389 case Intrinsic::memory_barrier: {
4390 SDValue Ops[6];
4391 Ops[0] = getRoot();
4392 for (int x = 1; x < 6; ++x)
4393 Ops[x] = getValue(I.getOperand(x));
4394
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004395 DAG.setRoot(DAG.getNode(ISD::MEMBARRIER, dl, MVT::Other, &Ops[0], 6));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004396 return 0;
4397 }
4398 case Intrinsic::atomic_cmp_swap: {
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004399 SDValue Root = getRoot();
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004400 SDValue L =
Dale Johannesen66978ee2009-01-31 02:22:37 +00004401 DAG.getAtomic(ISD::ATOMIC_CMP_SWAP, getCurDebugLoc(),
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004402 getValue(I.getOperand(2)).getValueType().getSimpleVT(),
4403 Root,
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004404 getValue(I.getOperand(1)),
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004405 getValue(I.getOperand(2)),
4406 getValue(I.getOperand(3)),
4407 I.getOperand(1));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004408 setValue(&I, L);
4409 DAG.setRoot(L.getValue(1));
4410 return 0;
4411 }
4412 case Intrinsic::atomic_load_add:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004413 return implVisitBinaryAtomic(I, ISD::ATOMIC_LOAD_ADD);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004414 case Intrinsic::atomic_load_sub:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004415 return implVisitBinaryAtomic(I, ISD::ATOMIC_LOAD_SUB);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004416 case Intrinsic::atomic_load_or:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004417 return implVisitBinaryAtomic(I, ISD::ATOMIC_LOAD_OR);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004418 case Intrinsic::atomic_load_xor:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004419 return implVisitBinaryAtomic(I, ISD::ATOMIC_LOAD_XOR);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004420 case Intrinsic::atomic_load_and:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004421 return implVisitBinaryAtomic(I, ISD::ATOMIC_LOAD_AND);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004422 case Intrinsic::atomic_load_nand:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004423 return implVisitBinaryAtomic(I, ISD::ATOMIC_LOAD_NAND);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004424 case Intrinsic::atomic_load_max:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004425 return implVisitBinaryAtomic(I, ISD::ATOMIC_LOAD_MAX);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004426 case Intrinsic::atomic_load_min:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004427 return implVisitBinaryAtomic(I, ISD::ATOMIC_LOAD_MIN);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004428 case Intrinsic::atomic_load_umin:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004429 return implVisitBinaryAtomic(I, ISD::ATOMIC_LOAD_UMIN);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004430 case Intrinsic::atomic_load_umax:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004431 return implVisitBinaryAtomic(I, ISD::ATOMIC_LOAD_UMAX);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004432 case Intrinsic::atomic_swap:
Dan Gohman0b1d4a72008-12-23 21:37:04 +00004433 return implVisitBinaryAtomic(I, ISD::ATOMIC_SWAP);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004434 }
4435}
4436
4437
4438void SelectionDAGLowering::LowerCallTo(CallSite CS, SDValue Callee,
4439 bool IsTailCall,
4440 MachineBasicBlock *LandingPad) {
4441 const PointerType *PT = cast<PointerType>(CS.getCalledValue()->getType());
4442 const FunctionType *FTy = cast<FunctionType>(PT->getElementType());
4443 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
4444 unsigned BeginLabel = 0, EndLabel = 0;
4445
4446 TargetLowering::ArgListTy Args;
4447 TargetLowering::ArgListEntry Entry;
4448 Args.reserve(CS.arg_size());
4449 for (CallSite::arg_iterator i = CS.arg_begin(), e = CS.arg_end();
4450 i != e; ++i) {
4451 SDValue ArgNode = getValue(*i);
4452 Entry.Node = ArgNode; Entry.Ty = (*i)->getType();
4453
4454 unsigned attrInd = i - CS.arg_begin() + 1;
Devang Patel05988662008-09-25 21:00:45 +00004455 Entry.isSExt = CS.paramHasAttr(attrInd, Attribute::SExt);
4456 Entry.isZExt = CS.paramHasAttr(attrInd, Attribute::ZExt);
4457 Entry.isInReg = CS.paramHasAttr(attrInd, Attribute::InReg);
4458 Entry.isSRet = CS.paramHasAttr(attrInd, Attribute::StructRet);
4459 Entry.isNest = CS.paramHasAttr(attrInd, Attribute::Nest);
4460 Entry.isByVal = CS.paramHasAttr(attrInd, Attribute::ByVal);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004461 Entry.Alignment = CS.getParamAlignment(attrInd);
4462 Args.push_back(Entry);
4463 }
4464
4465 if (LandingPad && MMI) {
4466 // Insert a label before the invoke call to mark the try range. This can be
4467 // used to detect deletion of the invoke via the MachineModuleInfo.
4468 BeginLabel = MMI->NextLabelID();
4469 // Both PendingLoads and PendingExports must be flushed here;
4470 // this call might not return.
4471 (void)getRoot();
Dale Johannesen8ad9b432009-02-04 01:17:06 +00004472 DAG.setRoot(DAG.getLabel(ISD::EH_LABEL, getCurDebugLoc(),
4473 getControlRoot(), BeginLabel));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004474 }
4475
4476 std::pair<SDValue,SDValue> Result =
4477 TLI.LowerCallTo(getRoot(), CS.getType(),
Devang Patel05988662008-09-25 21:00:45 +00004478 CS.paramHasAttr(0, Attribute::SExt),
Dale Johannesen86098bd2008-09-26 19:31:26 +00004479 CS.paramHasAttr(0, Attribute::ZExt), FTy->isVarArg(),
4480 CS.paramHasAttr(0, Attribute::InReg),
4481 CS.getCallingConv(),
Dan Gohman1937e2f2008-09-16 01:42:28 +00004482 IsTailCall && PerformTailCallOpt,
Dale Johannesen66978ee2009-01-31 02:22:37 +00004483 Callee, Args, DAG, getCurDebugLoc());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004484 if (CS.getType() != Type::VoidTy)
4485 setValue(CS.getInstruction(), Result.first);
4486 DAG.setRoot(Result.second);
4487
4488 if (LandingPad && MMI) {
4489 // Insert a label at the end of the invoke call to mark the try range. This
4490 // can be used to detect deletion of the invoke via the MachineModuleInfo.
4491 EndLabel = MMI->NextLabelID();
Dale Johannesen8ad9b432009-02-04 01:17:06 +00004492 DAG.setRoot(DAG.getLabel(ISD::EH_LABEL, getCurDebugLoc(),
4493 getRoot(), EndLabel));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004494
4495 // Inform MachineModuleInfo of range.
4496 MMI->addInvoke(LandingPad, BeginLabel, EndLabel);
4497 }
4498}
4499
4500
4501void SelectionDAGLowering::visitCall(CallInst &I) {
4502 const char *RenameFn = 0;
4503 if (Function *F = I.getCalledFunction()) {
4504 if (F->isDeclaration()) {
Dale Johannesen49de9822009-02-05 01:49:45 +00004505 const TargetIntrinsicInfo *II = TLI.getTargetMachine().getIntrinsicInfo();
4506 if (II) {
4507 if (unsigned IID = II->getIntrinsicID(F)) {
4508 RenameFn = visitIntrinsicCall(I, IID);
4509 if (!RenameFn)
4510 return;
4511 }
4512 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004513 if (unsigned IID = F->getIntrinsicID()) {
4514 RenameFn = visitIntrinsicCall(I, IID);
4515 if (!RenameFn)
4516 return;
4517 }
4518 }
4519
4520 // Check for well-known libc/libm calls. If the function is internal, it
4521 // can't be a library call.
4522 unsigned NameLen = F->getNameLen();
Rafael Espindolabb46f522009-01-15 20:18:42 +00004523 if (!F->hasLocalLinkage() && NameLen) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004524 const char *NameStr = F->getNameStart();
4525 if (NameStr[0] == 'c' &&
4526 ((NameLen == 8 && !strcmp(NameStr, "copysign")) ||
4527 (NameLen == 9 && !strcmp(NameStr, "copysignf")))) {
4528 if (I.getNumOperands() == 3 && // Basic sanity checks.
4529 I.getOperand(1)->getType()->isFloatingPoint() &&
4530 I.getType() == I.getOperand(1)->getType() &&
4531 I.getType() == I.getOperand(2)->getType()) {
4532 SDValue LHS = getValue(I.getOperand(1));
4533 SDValue RHS = getValue(I.getOperand(2));
Scott Michelfdc40a02009-02-17 22:15:04 +00004534 setValue(&I, DAG.getNode(ISD::FCOPYSIGN, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004535 LHS.getValueType(), LHS, RHS));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004536 return;
4537 }
4538 } else if (NameStr[0] == 'f' &&
4539 ((NameLen == 4 && !strcmp(NameStr, "fabs")) ||
4540 (NameLen == 5 && !strcmp(NameStr, "fabsf")) ||
4541 (NameLen == 5 && !strcmp(NameStr, "fabsl")))) {
4542 if (I.getNumOperands() == 2 && // Basic sanity checks.
4543 I.getOperand(1)->getType()->isFloatingPoint() &&
4544 I.getType() == I.getOperand(1)->getType()) {
4545 SDValue Tmp = getValue(I.getOperand(1));
Scott Michelfdc40a02009-02-17 22:15:04 +00004546 setValue(&I, DAG.getNode(ISD::FABS, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004547 Tmp.getValueType(), Tmp));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004548 return;
4549 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004550 } else if (NameStr[0] == 's' &&
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004551 ((NameLen == 3 && !strcmp(NameStr, "sin")) ||
4552 (NameLen == 4 && !strcmp(NameStr, "sinf")) ||
4553 (NameLen == 4 && !strcmp(NameStr, "sinl")))) {
4554 if (I.getNumOperands() == 2 && // Basic sanity checks.
4555 I.getOperand(1)->getType()->isFloatingPoint() &&
4556 I.getType() == I.getOperand(1)->getType()) {
4557 SDValue Tmp = getValue(I.getOperand(1));
Scott Michelfdc40a02009-02-17 22:15:04 +00004558 setValue(&I, DAG.getNode(ISD::FSIN, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004559 Tmp.getValueType(), Tmp));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004560 return;
4561 }
4562 } else if (NameStr[0] == 'c' &&
4563 ((NameLen == 3 && !strcmp(NameStr, "cos")) ||
4564 (NameLen == 4 && !strcmp(NameStr, "cosf")) ||
4565 (NameLen == 4 && !strcmp(NameStr, "cosl")))) {
4566 if (I.getNumOperands() == 2 && // Basic sanity checks.
4567 I.getOperand(1)->getType()->isFloatingPoint() &&
4568 I.getType() == I.getOperand(1)->getType()) {
4569 SDValue Tmp = getValue(I.getOperand(1));
Scott Michelfdc40a02009-02-17 22:15:04 +00004570 setValue(&I, DAG.getNode(ISD::FCOS, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004571 Tmp.getValueType(), Tmp));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004572 return;
4573 }
4574 }
4575 }
4576 } else if (isa<InlineAsm>(I.getOperand(0))) {
4577 visitInlineAsm(&I);
4578 return;
4579 }
4580
4581 SDValue Callee;
4582 if (!RenameFn)
4583 Callee = getValue(I.getOperand(0));
4584 else
Bill Wendling056292f2008-09-16 21:48:12 +00004585 Callee = DAG.getExternalSymbol(RenameFn, TLI.getPointerTy());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004586
4587 LowerCallTo(&I, Callee, I.isTailCall());
4588}
4589
4590
4591/// getCopyFromRegs - Emit a series of CopyFromReg nodes that copies from
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004592/// this value and returns the result as a ValueVT value. This uses
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004593/// Chain/Flag as the input and updates them for the output Chain/Flag.
4594/// If the Flag pointer is NULL, no flag is used.
Dale Johannesen66978ee2009-01-31 02:22:37 +00004595SDValue RegsForValue::getCopyFromRegs(SelectionDAG &DAG, DebugLoc dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004596 SDValue &Chain,
4597 SDValue *Flag) const {
4598 // Assemble the legal parts into the final values.
4599 SmallVector<SDValue, 4> Values(ValueVTs.size());
4600 SmallVector<SDValue, 8> Parts;
4601 for (unsigned Value = 0, Part = 0, e = ValueVTs.size(); Value != e; ++Value) {
4602 // Copy the legal parts from the registers.
4603 MVT ValueVT = ValueVTs[Value];
4604 unsigned NumRegs = TLI->getNumRegisters(ValueVT);
4605 MVT RegisterVT = RegVTs[Value];
4606
4607 Parts.resize(NumRegs);
4608 for (unsigned i = 0; i != NumRegs; ++i) {
4609 SDValue P;
4610 if (Flag == 0)
Dale Johannesena04b7572009-02-03 23:04:43 +00004611 P = DAG.getCopyFromReg(Chain, dl, Regs[Part+i], RegisterVT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004612 else {
Dale Johannesena04b7572009-02-03 23:04:43 +00004613 P = DAG.getCopyFromReg(Chain, dl, Regs[Part+i], RegisterVT, *Flag);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004614 *Flag = P.getValue(2);
4615 }
4616 Chain = P.getValue(1);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004617
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004618 // If the source register was virtual and if we know something about it,
4619 // add an assert node.
4620 if (TargetRegisterInfo::isVirtualRegister(Regs[Part+i]) &&
4621 RegisterVT.isInteger() && !RegisterVT.isVector()) {
4622 unsigned SlotNo = Regs[Part+i]-TargetRegisterInfo::FirstVirtualRegister;
4623 FunctionLoweringInfo &FLI = DAG.getFunctionLoweringInfo();
4624 if (FLI.LiveOutRegInfo.size() > SlotNo) {
4625 FunctionLoweringInfo::LiveOutInfo &LOI = FLI.LiveOutRegInfo[SlotNo];
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004626
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004627 unsigned RegSize = RegisterVT.getSizeInBits();
4628 unsigned NumSignBits = LOI.NumSignBits;
4629 unsigned NumZeroBits = LOI.KnownZero.countLeadingOnes();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004630
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004631 // FIXME: We capture more information than the dag can represent. For
4632 // now, just use the tightest assertzext/assertsext possible.
4633 bool isSExt = true;
4634 MVT FromVT(MVT::Other);
4635 if (NumSignBits == RegSize)
4636 isSExt = true, FromVT = MVT::i1; // ASSERT SEXT 1
4637 else if (NumZeroBits >= RegSize-1)
4638 isSExt = false, FromVT = MVT::i1; // ASSERT ZEXT 1
4639 else if (NumSignBits > RegSize-8)
4640 isSExt = true, FromVT = MVT::i8; // ASSERT SEXT 8
Dan Gohman07c26ee2009-03-31 01:38:29 +00004641 else if (NumZeroBits >= RegSize-8)
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004642 isSExt = false, FromVT = MVT::i8; // ASSERT ZEXT 8
4643 else if (NumSignBits > RegSize-16)
Bill Wendling181b6272008-10-19 20:34:04 +00004644 isSExt = true, FromVT = MVT::i16; // ASSERT SEXT 16
Dan Gohman07c26ee2009-03-31 01:38:29 +00004645 else if (NumZeroBits >= RegSize-16)
Bill Wendling181b6272008-10-19 20:34:04 +00004646 isSExt = false, FromVT = MVT::i16; // ASSERT ZEXT 16
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004647 else if (NumSignBits > RegSize-32)
Bill Wendling181b6272008-10-19 20:34:04 +00004648 isSExt = true, FromVT = MVT::i32; // ASSERT SEXT 32
Dan Gohman07c26ee2009-03-31 01:38:29 +00004649 else if (NumZeroBits >= RegSize-32)
Bill Wendling181b6272008-10-19 20:34:04 +00004650 isSExt = false, FromVT = MVT::i32; // ASSERT ZEXT 32
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004651
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004652 if (FromVT != MVT::Other) {
Dale Johannesen66978ee2009-01-31 02:22:37 +00004653 P = DAG.getNode(isSExt ? ISD::AssertSext : ISD::AssertZext, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004654 RegisterVT, P, DAG.getValueType(FromVT));
4655
4656 }
4657 }
4658 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004659
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004660 Parts[i] = P;
4661 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004662
Scott Michelfdc40a02009-02-17 22:15:04 +00004663 Values[Value] = getCopyFromParts(DAG, dl, Parts.begin(),
Dale Johannesen66978ee2009-01-31 02:22:37 +00004664 NumRegs, RegisterVT, ValueVT);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004665 Part += NumRegs;
4666 Parts.clear();
4667 }
4668
Dale Johannesen66978ee2009-01-31 02:22:37 +00004669 return DAG.getNode(ISD::MERGE_VALUES, dl,
Duncan Sandsaaffa052008-12-01 11:41:29 +00004670 DAG.getVTList(&ValueVTs[0], ValueVTs.size()),
4671 &Values[0], ValueVTs.size());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004672}
4673
4674/// getCopyToRegs - Emit a series of CopyToReg nodes that copies the
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004675/// specified value into the registers specified by this object. This uses
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004676/// Chain/Flag as the input and updates them for the output Chain/Flag.
4677/// If the Flag pointer is NULL, no flag is used.
Dale Johannesen66978ee2009-01-31 02:22:37 +00004678void RegsForValue::getCopyToRegs(SDValue Val, SelectionDAG &DAG, DebugLoc dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004679 SDValue &Chain, SDValue *Flag) const {
4680 // Get the list of the values's legal parts.
4681 unsigned NumRegs = Regs.size();
4682 SmallVector<SDValue, 8> Parts(NumRegs);
4683 for (unsigned Value = 0, Part = 0, e = ValueVTs.size(); Value != e; ++Value) {
4684 MVT ValueVT = ValueVTs[Value];
4685 unsigned NumParts = TLI->getNumRegisters(ValueVT);
4686 MVT RegisterVT = RegVTs[Value];
4687
Dale Johannesen66978ee2009-01-31 02:22:37 +00004688 getCopyToParts(DAG, dl, Val.getValue(Val.getResNo() + Value),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004689 &Parts[Part], NumParts, RegisterVT);
4690 Part += NumParts;
4691 }
4692
4693 // Copy the parts into the registers.
4694 SmallVector<SDValue, 8> Chains(NumRegs);
4695 for (unsigned i = 0; i != NumRegs; ++i) {
4696 SDValue Part;
4697 if (Flag == 0)
Dale Johannesena04b7572009-02-03 23:04:43 +00004698 Part = DAG.getCopyToReg(Chain, dl, Regs[i], Parts[i]);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004699 else {
Dale Johannesena04b7572009-02-03 23:04:43 +00004700 Part = DAG.getCopyToReg(Chain, dl, Regs[i], Parts[i], *Flag);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004701 *Flag = Part.getValue(1);
4702 }
4703 Chains[i] = Part.getValue(0);
4704 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004705
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004706 if (NumRegs == 1 || Flag)
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004707 // If NumRegs > 1 && Flag is used then the use of the last CopyToReg is
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004708 // flagged to it. That is the CopyToReg nodes and the user are considered
4709 // a single scheduling unit. If we create a TokenFactor and return it as
4710 // chain, then the TokenFactor is both a predecessor (operand) of the
4711 // user as well as a successor (the TF operands are flagged to the user).
4712 // c1, f1 = CopyToReg
4713 // c2, f2 = CopyToReg
4714 // c3 = TokenFactor c1, c2
4715 // ...
4716 // = op c3, ..., f2
4717 Chain = Chains[NumRegs-1];
4718 else
Dale Johannesen66978ee2009-01-31 02:22:37 +00004719 Chain = DAG.getNode(ISD::TokenFactor, dl, MVT::Other, &Chains[0], NumRegs);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004720}
4721
4722/// AddInlineAsmOperands - Add this value to the specified inlineasm node
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004723/// operand list. This adds the code marker and includes the number of
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004724/// values added into it.
Evan Cheng697cbbf2009-03-20 18:03:34 +00004725void RegsForValue::AddInlineAsmOperands(unsigned Code,
4726 bool HasMatching,unsigned MatchingIdx,
4727 SelectionDAG &DAG,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004728 std::vector<SDValue> &Ops) const {
4729 MVT IntPtrTy = DAG.getTargetLoweringInfo().getPointerTy();
Evan Cheng697cbbf2009-03-20 18:03:34 +00004730 assert(Regs.size() < (1 << 13) && "Too many inline asm outputs!");
4731 unsigned Flag = Code | (Regs.size() << 3);
4732 if (HasMatching)
4733 Flag |= 0x80000000 | (MatchingIdx << 16);
4734 Ops.push_back(DAG.getTargetConstant(Flag, IntPtrTy));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004735 for (unsigned Value = 0, Reg = 0, e = ValueVTs.size(); Value != e; ++Value) {
4736 unsigned NumRegs = TLI->getNumRegisters(ValueVTs[Value]);
4737 MVT RegisterVT = RegVTs[Value];
Chris Lattner58f15c42008-10-17 16:21:11 +00004738 for (unsigned i = 0; i != NumRegs; ++i) {
4739 assert(Reg < Regs.size() && "Mismatch in # registers expected");
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004740 Ops.push_back(DAG.getRegister(Regs[Reg++], RegisterVT));
Chris Lattner58f15c42008-10-17 16:21:11 +00004741 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004742 }
4743}
4744
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004745/// isAllocatableRegister - If the specified register is safe to allocate,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004746/// i.e. it isn't a stack pointer or some other special register, return the
4747/// register class for the register. Otherwise, return null.
4748static const TargetRegisterClass *
4749isAllocatableRegister(unsigned Reg, MachineFunction &MF,
4750 const TargetLowering &TLI,
4751 const TargetRegisterInfo *TRI) {
4752 MVT FoundVT = MVT::Other;
4753 const TargetRegisterClass *FoundRC = 0;
4754 for (TargetRegisterInfo::regclass_iterator RCI = TRI->regclass_begin(),
4755 E = TRI->regclass_end(); RCI != E; ++RCI) {
4756 MVT ThisVT = MVT::Other;
4757
4758 const TargetRegisterClass *RC = *RCI;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004759 // If none of the the value types for this register class are valid, we
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004760 // can't use it. For example, 64-bit reg classes on 32-bit targets.
4761 for (TargetRegisterClass::vt_iterator I = RC->vt_begin(), E = RC->vt_end();
4762 I != E; ++I) {
4763 if (TLI.isTypeLegal(*I)) {
4764 // If we have already found this register in a different register class,
4765 // choose the one with the largest VT specified. For example, on
4766 // PowerPC, we favor f64 register classes over f32.
4767 if (FoundVT == MVT::Other || FoundVT.bitsLT(*I)) {
4768 ThisVT = *I;
4769 break;
4770 }
4771 }
4772 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004773
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004774 if (ThisVT == MVT::Other) continue;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004775
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004776 // NOTE: This isn't ideal. In particular, this might allocate the
4777 // frame pointer in functions that need it (due to them not being taken
4778 // out of allocation, because a variable sized allocation hasn't been seen
4779 // yet). This is a slight code pessimization, but should still work.
4780 for (TargetRegisterClass::iterator I = RC->allocation_order_begin(MF),
4781 E = RC->allocation_order_end(MF); I != E; ++I)
4782 if (*I == Reg) {
4783 // We found a matching register class. Keep looking at others in case
4784 // we find one with larger registers that this physreg is also in.
4785 FoundRC = RC;
4786 FoundVT = ThisVT;
4787 break;
4788 }
4789 }
4790 return FoundRC;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004791}
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004792
4793
4794namespace llvm {
4795/// AsmOperandInfo - This contains information for each constraint that we are
4796/// lowering.
Cedric Venetaff9c272009-02-14 16:06:42 +00004797class VISIBILITY_HIDDEN SDISelAsmOperandInfo :
Daniel Dunbarc0c3b9a2008-09-10 04:16:29 +00004798 public TargetLowering::AsmOperandInfo {
Cedric Venetaff9c272009-02-14 16:06:42 +00004799public:
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004800 /// CallOperand - If this is the result output operand or a clobber
4801 /// this is null, otherwise it is the incoming operand to the CallInst.
4802 /// This gets modified as the asm is processed.
4803 SDValue CallOperand;
4804
4805 /// AssignedRegs - If this is a register or register class operand, this
4806 /// contains the set of register corresponding to the operand.
4807 RegsForValue AssignedRegs;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004808
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004809 explicit SDISelAsmOperandInfo(const InlineAsm::ConstraintInfo &info)
4810 : TargetLowering::AsmOperandInfo(info), CallOperand(0,0) {
4811 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004812
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004813 /// MarkAllocatedRegs - Once AssignedRegs is set, mark the assigned registers
4814 /// busy in OutputRegs/InputRegs.
4815 void MarkAllocatedRegs(bool isOutReg, bool isInReg,
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004816 std::set<unsigned> &OutputRegs,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004817 std::set<unsigned> &InputRegs,
4818 const TargetRegisterInfo &TRI) const {
4819 if (isOutReg) {
4820 for (unsigned i = 0, e = AssignedRegs.Regs.size(); i != e; ++i)
4821 MarkRegAndAliases(AssignedRegs.Regs[i], OutputRegs, TRI);
4822 }
4823 if (isInReg) {
4824 for (unsigned i = 0, e = AssignedRegs.Regs.size(); i != e; ++i)
4825 MarkRegAndAliases(AssignedRegs.Regs[i], InputRegs, TRI);
4826 }
4827 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004828
Chris Lattner81249c92008-10-17 17:05:25 +00004829 /// getCallOperandValMVT - Return the MVT of the Value* that this operand
4830 /// corresponds to. If there is no Value* for this operand, it returns
4831 /// MVT::Other.
4832 MVT getCallOperandValMVT(const TargetLowering &TLI,
4833 const TargetData *TD) const {
4834 if (CallOperandVal == 0) return MVT::Other;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004835
Chris Lattner81249c92008-10-17 17:05:25 +00004836 if (isa<BasicBlock>(CallOperandVal))
4837 return TLI.getPointerTy();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004838
Chris Lattner81249c92008-10-17 17:05:25 +00004839 const llvm::Type *OpTy = CallOperandVal->getType();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004840
Chris Lattner81249c92008-10-17 17:05:25 +00004841 // If this is an indirect operand, the operand is a pointer to the
4842 // accessed type.
4843 if (isIndirect)
4844 OpTy = cast<PointerType>(OpTy)->getElementType();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004845
Chris Lattner81249c92008-10-17 17:05:25 +00004846 // If OpTy is not a single value, it may be a struct/union that we
4847 // can tile with integers.
4848 if (!OpTy->isSingleValueType() && OpTy->isSized()) {
4849 unsigned BitSize = TD->getTypeSizeInBits(OpTy);
4850 switch (BitSize) {
4851 default: break;
4852 case 1:
4853 case 8:
4854 case 16:
4855 case 32:
4856 case 64:
Chris Lattnercfc14c12008-10-17 19:59:51 +00004857 case 128:
Chris Lattner81249c92008-10-17 17:05:25 +00004858 OpTy = IntegerType::get(BitSize);
4859 break;
4860 }
4861 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004862
Chris Lattner81249c92008-10-17 17:05:25 +00004863 return TLI.getValueType(OpTy, true);
4864 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004865
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004866private:
4867 /// MarkRegAndAliases - Mark the specified register and all aliases in the
4868 /// specified set.
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004869 static void MarkRegAndAliases(unsigned Reg, std::set<unsigned> &Regs,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004870 const TargetRegisterInfo &TRI) {
4871 assert(TargetRegisterInfo::isPhysicalRegister(Reg) && "Isn't a physreg");
4872 Regs.insert(Reg);
4873 if (const unsigned *Aliases = TRI.getAliasSet(Reg))
4874 for (; *Aliases; ++Aliases)
4875 Regs.insert(*Aliases);
4876 }
4877};
4878} // end llvm namespace.
4879
4880
4881/// GetRegistersForValue - Assign registers (virtual or physical) for the
4882/// specified operand. We prefer to assign virtual registers, to allow the
4883/// register allocator handle the assignment process. However, if the asm uses
4884/// features that we can't model on machineinstrs, we have SDISel do the
4885/// allocation. This produces generally horrible, but correct, code.
4886///
4887/// OpInfo describes the operand.
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004888/// Input and OutputRegs are the set of already allocated physical registers.
4889///
4890void SelectionDAGLowering::
Dale Johannesen8e3455b2008-09-24 23:13:09 +00004891GetRegistersForValue(SDISelAsmOperandInfo &OpInfo,
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004892 std::set<unsigned> &OutputRegs,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004893 std::set<unsigned> &InputRegs) {
4894 // Compute whether this value requires an input register, an output register,
4895 // or both.
4896 bool isOutReg = false;
4897 bool isInReg = false;
4898 switch (OpInfo.Type) {
4899 case InlineAsm::isOutput:
4900 isOutReg = true;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004901
4902 // If there is an input constraint that matches this, we need to reserve
Dale Johannesen8e3455b2008-09-24 23:13:09 +00004903 // the input register so no other inputs allocate to it.
Chris Lattner6bdcda32008-10-17 16:47:46 +00004904 isInReg = OpInfo.hasMatchingInput();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004905 break;
4906 case InlineAsm::isInput:
4907 isInReg = true;
4908 isOutReg = false;
4909 break;
4910 case InlineAsm::isClobber:
4911 isOutReg = true;
4912 isInReg = true;
4913 break;
4914 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004915
4916
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004917 MachineFunction &MF = DAG.getMachineFunction();
4918 SmallVector<unsigned, 4> Regs;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004919
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004920 // If this is a constraint for a single physreg, or a constraint for a
4921 // register class, find it.
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004922 std::pair<unsigned, const TargetRegisterClass*> PhysReg =
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004923 TLI.getRegForInlineAsmConstraint(OpInfo.ConstraintCode,
4924 OpInfo.ConstraintVT);
4925
4926 unsigned NumRegs = 1;
Chris Lattner01426e12008-10-21 00:45:36 +00004927 if (OpInfo.ConstraintVT != MVT::Other) {
4928 // If this is a FP input in an integer register (or visa versa) insert a bit
4929 // cast of the input value. More generally, handle any case where the input
4930 // value disagrees with the register class we plan to stick this in.
4931 if (OpInfo.Type == InlineAsm::isInput &&
4932 PhysReg.second && !PhysReg.second->hasType(OpInfo.ConstraintVT)) {
4933 // Try to convert to the first MVT that the reg class contains. If the
4934 // types are identical size, use a bitcast to convert (e.g. two differing
4935 // vector types).
4936 MVT RegVT = *PhysReg.second->vt_begin();
4937 if (RegVT.getSizeInBits() == OpInfo.ConstraintVT.getSizeInBits()) {
Dale Johannesen66978ee2009-01-31 02:22:37 +00004938 OpInfo.CallOperand = DAG.getNode(ISD::BIT_CONVERT, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004939 RegVT, OpInfo.CallOperand);
Chris Lattner01426e12008-10-21 00:45:36 +00004940 OpInfo.ConstraintVT = RegVT;
4941 } else if (RegVT.isInteger() && OpInfo.ConstraintVT.isFloatingPoint()) {
4942 // If the input is a FP value and we want it in FP registers, do a
4943 // bitcast to the corresponding integer type. This turns an f64 value
4944 // into i64, which can be passed with two i32 values on a 32-bit
4945 // machine.
4946 RegVT = MVT::getIntegerVT(OpInfo.ConstraintVT.getSizeInBits());
Dale Johannesen66978ee2009-01-31 02:22:37 +00004947 OpInfo.CallOperand = DAG.getNode(ISD::BIT_CONVERT, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00004948 RegVT, OpInfo.CallOperand);
Chris Lattner01426e12008-10-21 00:45:36 +00004949 OpInfo.ConstraintVT = RegVT;
4950 }
4951 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004952
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004953 NumRegs = TLI.getNumRegisters(OpInfo.ConstraintVT);
Chris Lattner01426e12008-10-21 00:45:36 +00004954 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004955
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004956 MVT RegVT;
4957 MVT ValueVT = OpInfo.ConstraintVT;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004958
4959 // If this is a constraint for a specific physical register, like {r17},
4960 // assign it now.
Chris Lattnere2f7bf82009-03-24 15:27:37 +00004961 if (unsigned AssignedReg = PhysReg.first) {
4962 const TargetRegisterClass *RC = PhysReg.second;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004963 if (OpInfo.ConstraintVT == MVT::Other)
Chris Lattnere2f7bf82009-03-24 15:27:37 +00004964 ValueVT = *RC->vt_begin();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004965
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004966 // Get the actual register value type. This is important, because the user
4967 // may have asked for (e.g.) the AX register in i32 type. We need to
4968 // remember that AX is actually i16 to get the right extension.
Chris Lattnere2f7bf82009-03-24 15:27:37 +00004969 RegVT = *RC->vt_begin();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004970
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004971 // This is a explicit reference to a physical register.
Chris Lattnere2f7bf82009-03-24 15:27:37 +00004972 Regs.push_back(AssignedReg);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004973
4974 // If this is an expanded reference, add the rest of the regs to Regs.
4975 if (NumRegs != 1) {
Chris Lattnere2f7bf82009-03-24 15:27:37 +00004976 TargetRegisterClass::iterator I = RC->begin();
4977 for (; *I != AssignedReg; ++I)
4978 assert(I != RC->end() && "Didn't find reg!");
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004979
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004980 // Already added the first reg.
4981 --NumRegs; ++I;
4982 for (; NumRegs; --NumRegs, ++I) {
Chris Lattnere2f7bf82009-03-24 15:27:37 +00004983 assert(I != RC->end() && "Ran out of registers to allocate!");
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004984 Regs.push_back(*I);
4985 }
4986 }
4987 OpInfo.AssignedRegs = RegsForValue(TLI, Regs, RegVT, ValueVT);
4988 const TargetRegisterInfo *TRI = DAG.getTarget().getRegisterInfo();
4989 OpInfo.MarkAllocatedRegs(isOutReg, isInReg, OutputRegs, InputRegs, *TRI);
4990 return;
4991 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00004992
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004993 // Otherwise, if this was a reference to an LLVM register class, create vregs
4994 // for this reference.
Chris Lattnerb3b44842009-03-24 15:25:07 +00004995 if (const TargetRegisterClass *RC = PhysReg.second) {
4996 RegVT = *RC->vt_begin();
Evan Chengfb112882009-03-23 08:01:15 +00004997 if (OpInfo.ConstraintVT == MVT::Other)
4998 ValueVT = RegVT;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00004999
Evan Chengfb112882009-03-23 08:01:15 +00005000 // Create the appropriate number of virtual registers.
5001 MachineRegisterInfo &RegInfo = MF.getRegInfo();
5002 for (; NumRegs; --NumRegs)
Chris Lattnerb3b44842009-03-24 15:25:07 +00005003 Regs.push_back(RegInfo.createVirtualRegister(RC));
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005004
Evan Chengfb112882009-03-23 08:01:15 +00005005 OpInfo.AssignedRegs = RegsForValue(TLI, Regs, RegVT, ValueVT);
5006 return;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005007 }
Chris Lattnerfc9d1612009-03-24 15:22:11 +00005008
5009 // This is a reference to a register class that doesn't directly correspond
5010 // to an LLVM register class. Allocate NumRegs consecutive, available,
5011 // registers from the class.
5012 std::vector<unsigned> RegClassRegs
5013 = TLI.getRegClassForInlineAsmConstraint(OpInfo.ConstraintCode,
5014 OpInfo.ConstraintVT);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005015
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005016 const TargetRegisterInfo *TRI = DAG.getTarget().getRegisterInfo();
5017 unsigned NumAllocated = 0;
5018 for (unsigned i = 0, e = RegClassRegs.size(); i != e; ++i) {
5019 unsigned Reg = RegClassRegs[i];
5020 // See if this register is available.
5021 if ((isOutReg && OutputRegs.count(Reg)) || // Already used.
5022 (isInReg && InputRegs.count(Reg))) { // Already used.
5023 // Make sure we find consecutive registers.
5024 NumAllocated = 0;
5025 continue;
5026 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005027
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005028 // Check to see if this register is allocatable (i.e. don't give out the
5029 // stack pointer).
Chris Lattnerfc9d1612009-03-24 15:22:11 +00005030 const TargetRegisterClass *RC = isAllocatableRegister(Reg, MF, TLI, TRI);
5031 if (!RC) { // Couldn't allocate this register.
5032 // Reset NumAllocated to make sure we return consecutive registers.
5033 NumAllocated = 0;
5034 continue;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005035 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005036
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005037 // Okay, this register is good, we can use it.
5038 ++NumAllocated;
5039
5040 // If we allocated enough consecutive registers, succeed.
5041 if (NumAllocated == NumRegs) {
5042 unsigned RegStart = (i-NumAllocated)+1;
5043 unsigned RegEnd = i+1;
5044 // Mark all of the allocated registers used.
5045 for (unsigned i = RegStart; i != RegEnd; ++i)
5046 Regs.push_back(RegClassRegs[i]);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005047
5048 OpInfo.AssignedRegs = RegsForValue(TLI, Regs, *RC->vt_begin(),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005049 OpInfo.ConstraintVT);
5050 OpInfo.MarkAllocatedRegs(isOutReg, isInReg, OutputRegs, InputRegs, *TRI);
5051 return;
5052 }
5053 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005054
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005055 // Otherwise, we couldn't allocate enough registers for this.
5056}
5057
Evan Chengda43bcf2008-09-24 00:05:32 +00005058/// hasInlineAsmMemConstraint - Return true if the inline asm instruction being
5059/// processed uses a memory 'm' constraint.
5060static bool
5061hasInlineAsmMemConstraint(std::vector<InlineAsm::ConstraintInfo> &CInfos,
Dan Gohmane9530ec2009-01-15 16:58:17 +00005062 const TargetLowering &TLI) {
Evan Chengda43bcf2008-09-24 00:05:32 +00005063 for (unsigned i = 0, e = CInfos.size(); i != e; ++i) {
5064 InlineAsm::ConstraintInfo &CI = CInfos[i];
5065 for (unsigned j = 0, ee = CI.Codes.size(); j != ee; ++j) {
5066 TargetLowering::ConstraintType CType = TLI.getConstraintType(CI.Codes[j]);
5067 if (CType == TargetLowering::C_Memory)
5068 return true;
5069 }
Chris Lattner6c147292009-04-30 00:48:50 +00005070
5071 // Indirect operand accesses access memory.
5072 if (CI.isIndirect)
5073 return true;
Evan Chengda43bcf2008-09-24 00:05:32 +00005074 }
5075
5076 return false;
5077}
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005078
5079/// visitInlineAsm - Handle a call to an InlineAsm object.
5080///
5081void SelectionDAGLowering::visitInlineAsm(CallSite CS) {
5082 InlineAsm *IA = cast<InlineAsm>(CS.getCalledValue());
5083
5084 /// ConstraintOperands - Information about all of the constraints.
5085 std::vector<SDISelAsmOperandInfo> ConstraintOperands;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005086
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005087 std::set<unsigned> OutputRegs, InputRegs;
5088
5089 // Do a prepass over the constraints, canonicalizing them, and building up the
5090 // ConstraintOperands list.
5091 std::vector<InlineAsm::ConstraintInfo>
5092 ConstraintInfos = IA->ParseConstraints();
5093
Evan Chengda43bcf2008-09-24 00:05:32 +00005094 bool hasMemory = hasInlineAsmMemConstraint(ConstraintInfos, TLI);
Chris Lattner6c147292009-04-30 00:48:50 +00005095
5096 SDValue Chain, Flag;
5097
5098 // We won't need to flush pending loads if this asm doesn't touch
5099 // memory and is nonvolatile.
5100 if (hasMemory || IA->hasSideEffects())
Dale Johannesen97d14fc2009-04-18 00:09:40 +00005101 Chain = getRoot();
Chris Lattner6c147292009-04-30 00:48:50 +00005102 else
5103 Chain = DAG.getRoot();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005104
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005105 unsigned ArgNo = 0; // ArgNo - The argument of the CallInst.
5106 unsigned ResNo = 0; // ResNo - The result number of the next output.
5107 for (unsigned i = 0, e = ConstraintInfos.size(); i != e; ++i) {
5108 ConstraintOperands.push_back(SDISelAsmOperandInfo(ConstraintInfos[i]));
5109 SDISelAsmOperandInfo &OpInfo = ConstraintOperands.back();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005110
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005111 MVT OpVT = MVT::Other;
5112
5113 // Compute the value type for each operand.
5114 switch (OpInfo.Type) {
5115 case InlineAsm::isOutput:
5116 // Indirect outputs just consume an argument.
5117 if (OpInfo.isIndirect) {
5118 OpInfo.CallOperandVal = CS.getArgument(ArgNo++);
5119 break;
5120 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005121
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005122 // The return value of the call is this value. As such, there is no
5123 // corresponding argument.
5124 assert(CS.getType() != Type::VoidTy && "Bad inline asm!");
5125 if (const StructType *STy = dyn_cast<StructType>(CS.getType())) {
5126 OpVT = TLI.getValueType(STy->getElementType(ResNo));
5127 } else {
5128 assert(ResNo == 0 && "Asm only has one result!");
5129 OpVT = TLI.getValueType(CS.getType());
5130 }
5131 ++ResNo;
5132 break;
5133 case InlineAsm::isInput:
5134 OpInfo.CallOperandVal = CS.getArgument(ArgNo++);
5135 break;
5136 case InlineAsm::isClobber:
5137 // Nothing to do.
5138 break;
5139 }
5140
5141 // If this is an input or an indirect output, process the call argument.
5142 // BasicBlocks are labels, currently appearing only in asm's.
5143 if (OpInfo.CallOperandVal) {
Chris Lattner81249c92008-10-17 17:05:25 +00005144 if (BasicBlock *BB = dyn_cast<BasicBlock>(OpInfo.CallOperandVal)) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005145 OpInfo.CallOperand = DAG.getBasicBlock(FuncInfo.MBBMap[BB]);
Chris Lattner81249c92008-10-17 17:05:25 +00005146 } else {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005147 OpInfo.CallOperand = getValue(OpInfo.CallOperandVal);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005148 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005149
Chris Lattner81249c92008-10-17 17:05:25 +00005150 OpVT = OpInfo.getCallOperandValMVT(TLI, TD);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005151 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005152
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005153 OpInfo.ConstraintVT = OpVT;
Chris Lattner2a0b96c2008-10-18 18:49:30 +00005154 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005155
Chris Lattner2a0b96c2008-10-18 18:49:30 +00005156 // Second pass over the constraints: compute which constraint option to use
5157 // and assign registers to constraints that want a specific physreg.
5158 for (unsigned i = 0, e = ConstraintInfos.size(); i != e; ++i) {
5159 SDISelAsmOperandInfo &OpInfo = ConstraintOperands[i];
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005160
Chris Lattner2a0b96c2008-10-18 18:49:30 +00005161 // If this is an output operand with a matching input operand, look up the
Evan Cheng09dc9c02008-12-16 18:21:39 +00005162 // matching input. If their types mismatch, e.g. one is an integer, the
5163 // other is floating point, or their sizes are different, flag it as an
5164 // error.
Chris Lattner2a0b96c2008-10-18 18:49:30 +00005165 if (OpInfo.hasMatchingInput()) {
5166 SDISelAsmOperandInfo &Input = ConstraintOperands[OpInfo.MatchingInput];
5167 if (OpInfo.ConstraintVT != Input.ConstraintVT) {
Evan Cheng09dc9c02008-12-16 18:21:39 +00005168 if ((OpInfo.ConstraintVT.isInteger() !=
5169 Input.ConstraintVT.isInteger()) ||
5170 (OpInfo.ConstraintVT.getSizeInBits() !=
5171 Input.ConstraintVT.getSizeInBits())) {
Daniel Dunbar4cbb1732009-04-13 22:26:09 +00005172 cerr << "llvm: error: Unsupported asm: input constraint with a "
5173 << "matching output constraint of incompatible type!\n";
Evan Cheng09dc9c02008-12-16 18:21:39 +00005174 exit(1);
5175 }
5176 Input.ConstraintVT = OpInfo.ConstraintVT;
Chris Lattner2a0b96c2008-10-18 18:49:30 +00005177 }
5178 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005179
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005180 // Compute the constraint code and ConstraintType to use.
Evan Chengda43bcf2008-09-24 00:05:32 +00005181 TLI.ComputeConstraintToUse(OpInfo, OpInfo.CallOperand, hasMemory, &DAG);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005182
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005183 // If this is a memory input, and if the operand is not indirect, do what we
5184 // need to to provide an address for the memory input.
5185 if (OpInfo.ConstraintType == TargetLowering::C_Memory &&
5186 !OpInfo.isIndirect) {
5187 assert(OpInfo.Type == InlineAsm::isInput &&
5188 "Can only indirectify direct input operands!");
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005189
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005190 // Memory operands really want the address of the value. If we don't have
5191 // an indirect input, put it in the constpool if we can, otherwise spill
5192 // it to a stack slot.
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005193
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005194 // If the operand is a float, integer, or vector constant, spill to a
5195 // constant pool entry to get its address.
5196 Value *OpVal = OpInfo.CallOperandVal;
5197 if (isa<ConstantFP>(OpVal) || isa<ConstantInt>(OpVal) ||
5198 isa<ConstantVector>(OpVal)) {
5199 OpInfo.CallOperand = DAG.getConstantPool(cast<Constant>(OpVal),
5200 TLI.getPointerTy());
5201 } else {
5202 // Otherwise, create a stack slot and emit a store to it before the
5203 // asm.
5204 const Type *Ty = OpVal->getType();
Duncan Sandsceb4d1a2009-01-12 20:38:59 +00005205 uint64_t TySize = TLI.getTargetData()->getTypePaddedSize(Ty);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005206 unsigned Align = TLI.getTargetData()->getPrefTypeAlignment(Ty);
5207 MachineFunction &MF = DAG.getMachineFunction();
5208 int SSFI = MF.getFrameInfo()->CreateStackObject(TySize, Align);
5209 SDValue StackSlot = DAG.getFrameIndex(SSFI, TLI.getPointerTy());
Dale Johannesen66978ee2009-01-31 02:22:37 +00005210 Chain = DAG.getStore(Chain, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00005211 OpInfo.CallOperand, StackSlot, NULL, 0);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005212 OpInfo.CallOperand = StackSlot;
5213 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005214
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005215 // There is no longer a Value* corresponding to this operand.
5216 OpInfo.CallOperandVal = 0;
5217 // It is now an indirect operand.
5218 OpInfo.isIndirect = true;
5219 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005220
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005221 // If this constraint is for a specific register, allocate it before
5222 // anything else.
5223 if (OpInfo.ConstraintType == TargetLowering::C_Register)
Dale Johannesen8e3455b2008-09-24 23:13:09 +00005224 GetRegistersForValue(OpInfo, OutputRegs, InputRegs);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005225 }
5226 ConstraintInfos.clear();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005227
5228
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005229 // Second pass - Loop over all of the operands, assigning virtual or physregs
Chris Lattner58f15c42008-10-17 16:21:11 +00005230 // to register class operands.
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005231 for (unsigned i = 0, e = ConstraintOperands.size(); i != e; ++i) {
5232 SDISelAsmOperandInfo &OpInfo = ConstraintOperands[i];
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005233
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005234 // C_Register operands have already been allocated, Other/Memory don't need
5235 // to be.
5236 if (OpInfo.ConstraintType == TargetLowering::C_RegisterClass)
Dale Johannesen8e3455b2008-09-24 23:13:09 +00005237 GetRegistersForValue(OpInfo, OutputRegs, InputRegs);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005238 }
5239
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005240 // AsmNodeOperands - The operands for the ISD::INLINEASM node.
5241 std::vector<SDValue> AsmNodeOperands;
5242 AsmNodeOperands.push_back(SDValue()); // reserve space for input chain
5243 AsmNodeOperands.push_back(
Bill Wendling056292f2008-09-16 21:48:12 +00005244 DAG.getTargetExternalSymbol(IA->getAsmString().c_str(), MVT::Other));
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005245
5246
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005247 // Loop over all of the inputs, copying the operand values into the
5248 // appropriate registers and processing the output regs.
5249 RegsForValue RetValRegs;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005250
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005251 // IndirectStoresToEmit - The set of stores to emit after the inline asm node.
5252 std::vector<std::pair<RegsForValue, Value*> > IndirectStoresToEmit;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005253
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005254 for (unsigned i = 0, e = ConstraintOperands.size(); i != e; ++i) {
5255 SDISelAsmOperandInfo &OpInfo = ConstraintOperands[i];
5256
5257 switch (OpInfo.Type) {
5258 case InlineAsm::isOutput: {
5259 if (OpInfo.ConstraintType != TargetLowering::C_RegisterClass &&
5260 OpInfo.ConstraintType != TargetLowering::C_Register) {
5261 // Memory output, or 'other' output (e.g. 'X' constraint).
5262 assert(OpInfo.isIndirect && "Memory output must be indirect operand");
5263
5264 // Add information to the INLINEASM node to know about this output.
Dale Johannesen86b49f82008-09-24 01:07:17 +00005265 unsigned ResOpType = 4/*MEM*/ | (1<<3);
5266 AsmNodeOperands.push_back(DAG.getTargetConstant(ResOpType,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005267 TLI.getPointerTy()));
5268 AsmNodeOperands.push_back(OpInfo.CallOperand);
5269 break;
5270 }
5271
5272 // Otherwise, this is a register or register class output.
5273
5274 // Copy the output from the appropriate register. Find a register that
5275 // we can use.
5276 if (OpInfo.AssignedRegs.Regs.empty()) {
Daniel Dunbar4cbb1732009-04-13 22:26:09 +00005277 cerr << "llvm: error: Couldn't allocate output reg for constraint '"
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005278 << OpInfo.ConstraintCode << "'!\n";
5279 exit(1);
5280 }
5281
5282 // If this is an indirect operand, store through the pointer after the
5283 // asm.
5284 if (OpInfo.isIndirect) {
5285 IndirectStoresToEmit.push_back(std::make_pair(OpInfo.AssignedRegs,
5286 OpInfo.CallOperandVal));
5287 } else {
5288 // This is the result value of the call.
5289 assert(CS.getType() != Type::VoidTy && "Bad inline asm!");
5290 // Concatenate this output onto the outputs list.
5291 RetValRegs.append(OpInfo.AssignedRegs);
5292 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005293
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005294 // Add information to the INLINEASM node to know that this register is
5295 // set.
Dale Johannesen913d3df2008-09-12 17:49:03 +00005296 OpInfo.AssignedRegs.AddInlineAsmOperands(OpInfo.isEarlyClobber ?
5297 6 /* EARLYCLOBBER REGDEF */ :
5298 2 /* REGDEF */ ,
Evan Chengfb112882009-03-23 08:01:15 +00005299 false,
5300 0,
Dale Johannesen913d3df2008-09-12 17:49:03 +00005301 DAG, AsmNodeOperands);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005302 break;
5303 }
5304 case InlineAsm::isInput: {
5305 SDValue InOperandVal = OpInfo.CallOperand;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005306
Chris Lattner6bdcda32008-10-17 16:47:46 +00005307 if (OpInfo.isMatchingInputConstraint()) { // Matching constraint?
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005308 // If this is required to match an output register we have already set,
5309 // just use its register.
Chris Lattner58f15c42008-10-17 16:21:11 +00005310 unsigned OperandNo = OpInfo.getMatchedOperand();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005311
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005312 // Scan until we find the definition we already emitted of this operand.
5313 // When we find it, create a RegsForValue operand.
5314 unsigned CurOp = 2; // The first operand.
5315 for (; OperandNo; --OperandNo) {
5316 // Advance to the next operand.
Evan Cheng697cbbf2009-03-20 18:03:34 +00005317 unsigned OpFlag =
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00005318 cast<ConstantSDNode>(AsmNodeOperands[CurOp])->getZExtValue();
Evan Cheng697cbbf2009-03-20 18:03:34 +00005319 assert(((OpFlag & 7) == 2 /*REGDEF*/ ||
5320 (OpFlag & 7) == 6 /*EARLYCLOBBER REGDEF*/ ||
5321 (OpFlag & 7) == 4 /*MEM*/) &&
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005322 "Skipped past definitions?");
Evan Cheng697cbbf2009-03-20 18:03:34 +00005323 CurOp += InlineAsm::getNumOperandRegisters(OpFlag)+1;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005324 }
5325
Evan Cheng697cbbf2009-03-20 18:03:34 +00005326 unsigned OpFlag =
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00005327 cast<ConstantSDNode>(AsmNodeOperands[CurOp])->getZExtValue();
Evan Cheng697cbbf2009-03-20 18:03:34 +00005328 if ((OpFlag & 7) == 2 /*REGDEF*/
5329 || (OpFlag & 7) == 6 /* EARLYCLOBBER REGDEF */) {
5330 // Add (OpFlag&0xffff)>>3 registers to MatchedRegs.
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005331 RegsForValue MatchedRegs;
5332 MatchedRegs.TLI = &TLI;
5333 MatchedRegs.ValueVTs.push_back(InOperandVal.getValueType());
Evan Chengfb112882009-03-23 08:01:15 +00005334 MVT RegVT = AsmNodeOperands[CurOp+1].getValueType();
5335 MatchedRegs.RegVTs.push_back(RegVT);
5336 MachineRegisterInfo &RegInfo = DAG.getMachineFunction().getRegInfo();
Evan Cheng697cbbf2009-03-20 18:03:34 +00005337 for (unsigned i = 0, e = InlineAsm::getNumOperandRegisters(OpFlag);
Evan Chengfb112882009-03-23 08:01:15 +00005338 i != e; ++i)
5339 MatchedRegs.Regs.
5340 push_back(RegInfo.createVirtualRegister(TLI.getRegClassFor(RegVT)));
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005341
5342 // Use the produced MatchedRegs object to
Dale Johannesen66978ee2009-01-31 02:22:37 +00005343 MatchedRegs.getCopyToRegs(InOperandVal, DAG, getCurDebugLoc(),
5344 Chain, &Flag);
Evan Chengfb112882009-03-23 08:01:15 +00005345 MatchedRegs.AddInlineAsmOperands(1 /*REGUSE*/,
5346 true, OpInfo.getMatchedOperand(),
Evan Cheng697cbbf2009-03-20 18:03:34 +00005347 DAG, AsmNodeOperands);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005348 break;
5349 } else {
Evan Cheng697cbbf2009-03-20 18:03:34 +00005350 assert(((OpFlag & 7) == 4) && "Unknown matching constraint!");
5351 assert((InlineAsm::getNumOperandRegisters(OpFlag)) == 1 &&
5352 "Unexpected number of operands");
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005353 // Add information to the INLINEASM node to know about this input.
Evan Chengfb112882009-03-23 08:01:15 +00005354 // See InlineAsm.h isUseOperandTiedToDef.
5355 OpFlag |= 0x80000000 | (OpInfo.getMatchedOperand() << 16);
Evan Cheng697cbbf2009-03-20 18:03:34 +00005356 AsmNodeOperands.push_back(DAG.getTargetConstant(OpFlag,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005357 TLI.getPointerTy()));
5358 AsmNodeOperands.push_back(AsmNodeOperands[CurOp+1]);
5359 break;
5360 }
5361 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005362
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005363 if (OpInfo.ConstraintType == TargetLowering::C_Other) {
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005364 assert(!OpInfo.isIndirect &&
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005365 "Don't know how to handle indirect other inputs yet!");
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005366
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005367 std::vector<SDValue> Ops;
5368 TLI.LowerAsmOperandForConstraint(InOperandVal, OpInfo.ConstraintCode[0],
Evan Chengda43bcf2008-09-24 00:05:32 +00005369 hasMemory, Ops, DAG);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005370 if (Ops.empty()) {
Daniel Dunbar4cbb1732009-04-13 22:26:09 +00005371 cerr << "llvm: error: Invalid operand for inline asm constraint '"
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005372 << OpInfo.ConstraintCode << "'!\n";
5373 exit(1);
5374 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005375
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005376 // Add information to the INLINEASM node to know about this input.
5377 unsigned ResOpType = 3 /*IMM*/ | (Ops.size() << 3);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005378 AsmNodeOperands.push_back(DAG.getTargetConstant(ResOpType,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005379 TLI.getPointerTy()));
5380 AsmNodeOperands.insert(AsmNodeOperands.end(), Ops.begin(), Ops.end());
5381 break;
5382 } else if (OpInfo.ConstraintType == TargetLowering::C_Memory) {
5383 assert(OpInfo.isIndirect && "Operand must be indirect to be a mem!");
5384 assert(InOperandVal.getValueType() == TLI.getPointerTy() &&
5385 "Memory operands expect pointer values");
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005386
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005387 // Add information to the INLINEASM node to know about this input.
Dale Johannesen86b49f82008-09-24 01:07:17 +00005388 unsigned ResOpType = 4/*MEM*/ | (1<<3);
5389 AsmNodeOperands.push_back(DAG.getTargetConstant(ResOpType,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005390 TLI.getPointerTy()));
5391 AsmNodeOperands.push_back(InOperandVal);
5392 break;
5393 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005394
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005395 assert((OpInfo.ConstraintType == TargetLowering::C_RegisterClass ||
5396 OpInfo.ConstraintType == TargetLowering::C_Register) &&
5397 "Unknown constraint type!");
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005398 assert(!OpInfo.isIndirect &&
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005399 "Don't know how to handle indirect register inputs yet!");
5400
5401 // Copy the input into the appropriate registers.
Evan Chengaa765b82008-09-25 00:14:04 +00005402 if (OpInfo.AssignedRegs.Regs.empty()) {
Daniel Dunbar4cbb1732009-04-13 22:26:09 +00005403 cerr << "llvm: error: Couldn't allocate output reg for constraint '"
Evan Chengaa765b82008-09-25 00:14:04 +00005404 << OpInfo.ConstraintCode << "'!\n";
5405 exit(1);
5406 }
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005407
Dale Johannesen66978ee2009-01-31 02:22:37 +00005408 OpInfo.AssignedRegs.getCopyToRegs(InOperandVal, DAG, getCurDebugLoc(),
5409 Chain, &Flag);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005410
Evan Cheng697cbbf2009-03-20 18:03:34 +00005411 OpInfo.AssignedRegs.AddInlineAsmOperands(1/*REGUSE*/, false, 0,
Dale Johannesen86b49f82008-09-24 01:07:17 +00005412 DAG, AsmNodeOperands);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005413 break;
5414 }
5415 case InlineAsm::isClobber: {
5416 // Add the clobbered value to the operand list, so that the register
5417 // allocator is aware that the physreg got clobbered.
5418 if (!OpInfo.AssignedRegs.Regs.empty())
Dale Johannesen91aac102008-09-17 21:13:11 +00005419 OpInfo.AssignedRegs.AddInlineAsmOperands(6 /* EARLYCLOBBER REGDEF */,
Evan Cheng697cbbf2009-03-20 18:03:34 +00005420 false, 0, DAG,AsmNodeOperands);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005421 break;
5422 }
5423 }
5424 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005425
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005426 // Finish up input operands.
5427 AsmNodeOperands[0] = Chain;
5428 if (Flag.getNode()) AsmNodeOperands.push_back(Flag);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005429
Dale Johannesen66978ee2009-01-31 02:22:37 +00005430 Chain = DAG.getNode(ISD::INLINEASM, getCurDebugLoc(),
Dan Gohmanfc166572009-04-09 23:54:40 +00005431 DAG.getVTList(MVT::Other, MVT::Flag),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005432 &AsmNodeOperands[0], AsmNodeOperands.size());
5433 Flag = Chain.getValue(1);
5434
5435 // If this asm returns a register value, copy the result from that register
5436 // and set it as the value of the call.
5437 if (!RetValRegs.Regs.empty()) {
Scott Michelfdc40a02009-02-17 22:15:04 +00005438 SDValue Val = RetValRegs.getCopyFromRegs(DAG, getCurDebugLoc(),
Dale Johannesen66978ee2009-01-31 02:22:37 +00005439 Chain, &Flag);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005440
Chris Lattner2a0b96c2008-10-18 18:49:30 +00005441 // FIXME: Why don't we do this for inline asms with MRVs?
5442 if (CS.getType()->isSingleValueType() && CS.getType()->isSized()) {
5443 MVT ResultType = TLI.getValueType(CS.getType());
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005444
Chris Lattner2a0b96c2008-10-18 18:49:30 +00005445 // If any of the results of the inline asm is a vector, it may have the
5446 // wrong width/num elts. This can happen for register classes that can
5447 // contain multiple different value types. The preg or vreg allocated may
5448 // not have the same VT as was expected. Convert it to the right type
5449 // with bit_convert.
5450 if (ResultType != Val.getValueType() && Val.getValueType().isVector()) {
Dale Johannesen66978ee2009-01-31 02:22:37 +00005451 Val = DAG.getNode(ISD::BIT_CONVERT, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00005452 ResultType, Val);
Dan Gohman95915732008-10-18 01:03:45 +00005453
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005454 } else if (ResultType != Val.getValueType() &&
Chris Lattner2a0b96c2008-10-18 18:49:30 +00005455 ResultType.isInteger() && Val.getValueType().isInteger()) {
5456 // If a result value was tied to an input value, the computed result may
5457 // have a wider width than the expected result. Extract the relevant
5458 // portion.
Dale Johannesen66978ee2009-01-31 02:22:37 +00005459 Val = DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(), ResultType, Val);
Dan Gohman95915732008-10-18 01:03:45 +00005460 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005461
Chris Lattner2a0b96c2008-10-18 18:49:30 +00005462 assert(ResultType == Val.getValueType() && "Asm result value mismatch!");
Chris Lattner0c526442008-10-17 17:52:49 +00005463 }
Dan Gohman95915732008-10-18 01:03:45 +00005464
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005465 setValue(CS.getInstruction(), Val);
Dale Johannesenec65a7d2009-04-14 00:56:56 +00005466 // Don't need to use this as a chain in this case.
5467 if (!IA->hasSideEffects() && !hasMemory && IndirectStoresToEmit.empty())
5468 return;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005469 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005470
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005471 std::vector<std::pair<SDValue, Value*> > StoresToEmit;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005472
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005473 // Process indirect outputs, first output all of the flagged copies out of
5474 // physregs.
5475 for (unsigned i = 0, e = IndirectStoresToEmit.size(); i != e; ++i) {
5476 RegsForValue &OutRegs = IndirectStoresToEmit[i].first;
5477 Value *Ptr = IndirectStoresToEmit[i].second;
Dale Johannesen66978ee2009-01-31 02:22:37 +00005478 SDValue OutVal = OutRegs.getCopyFromRegs(DAG, getCurDebugLoc(),
5479 Chain, &Flag);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005480 StoresToEmit.push_back(std::make_pair(OutVal, Ptr));
Chris Lattner6c147292009-04-30 00:48:50 +00005481
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005482 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005483
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005484 // Emit the non-flagged stores from the physregs.
5485 SmallVector<SDValue, 8> OutChains;
5486 for (unsigned i = 0, e = StoresToEmit.size(); i != e; ++i)
Dale Johannesen66978ee2009-01-31 02:22:37 +00005487 OutChains.push_back(DAG.getStore(Chain, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00005488 StoresToEmit[i].first,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005489 getValue(StoresToEmit[i].second),
5490 StoresToEmit[i].second, 0));
5491 if (!OutChains.empty())
Dale Johannesen66978ee2009-01-31 02:22:37 +00005492 Chain = DAG.getNode(ISD::TokenFactor, getCurDebugLoc(), MVT::Other,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005493 &OutChains[0], OutChains.size());
5494 DAG.setRoot(Chain);
5495}
5496
5497
5498void SelectionDAGLowering::visitMalloc(MallocInst &I) {
5499 SDValue Src = getValue(I.getOperand(0));
5500
Chris Lattner0b18e592009-03-17 19:36:00 +00005501 // Scale up by the type size in the original i32 type width. Various
5502 // mid-level optimizers may make assumptions about demanded bits etc from the
5503 // i32-ness of the optimizer: we do not want to promote to i64 and then
5504 // multiply on 64-bit targets.
5505 // FIXME: Malloc inst should go away: PR715.
5506 uint64_t ElementSize = TD->getTypePaddedSize(I.getType()->getElementType());
5507 if (ElementSize != 1)
5508 Src = DAG.getNode(ISD::MUL, getCurDebugLoc(), Src.getValueType(),
5509 Src, DAG.getConstant(ElementSize, Src.getValueType()));
5510
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005511 MVT IntPtr = TLI.getPointerTy();
5512
5513 if (IntPtr.bitsLT(Src.getValueType()))
Dale Johannesen66978ee2009-01-31 02:22:37 +00005514 Src = DAG.getNode(ISD::TRUNCATE, getCurDebugLoc(), IntPtr, Src);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005515 else if (IntPtr.bitsGT(Src.getValueType()))
Dale Johannesen66978ee2009-01-31 02:22:37 +00005516 Src = DAG.getNode(ISD::ZERO_EXTEND, getCurDebugLoc(), IntPtr, Src);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005517
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005518 TargetLowering::ArgListTy Args;
5519 TargetLowering::ArgListEntry Entry;
5520 Entry.Node = Src;
5521 Entry.Ty = TLI.getTargetData()->getIntPtrType();
5522 Args.push_back(Entry);
5523
5524 std::pair<SDValue,SDValue> Result =
Dale Johannesen86098bd2008-09-26 19:31:26 +00005525 TLI.LowerCallTo(getRoot(), I.getType(), false, false, false, false,
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005526 CallingConv::C, PerformTailCallOpt,
Dale Johannesen86098bd2008-09-26 19:31:26 +00005527 DAG.getExternalSymbol("malloc", IntPtr),
Dale Johannesen66978ee2009-01-31 02:22:37 +00005528 Args, DAG, getCurDebugLoc());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005529 setValue(&I, Result.first); // Pointers always fit in registers
5530 DAG.setRoot(Result.second);
5531}
5532
5533void SelectionDAGLowering::visitFree(FreeInst &I) {
5534 TargetLowering::ArgListTy Args;
5535 TargetLowering::ArgListEntry Entry;
5536 Entry.Node = getValue(I.getOperand(0));
5537 Entry.Ty = TLI.getTargetData()->getIntPtrType();
5538 Args.push_back(Entry);
5539 MVT IntPtr = TLI.getPointerTy();
5540 std::pair<SDValue,SDValue> Result =
Dale Johannesen86098bd2008-09-26 19:31:26 +00005541 TLI.LowerCallTo(getRoot(), Type::VoidTy, false, false, false, false,
Dan Gohman1937e2f2008-09-16 01:42:28 +00005542 CallingConv::C, PerformTailCallOpt,
Dale Johannesen7d2ad622009-01-30 23:10:59 +00005543 DAG.getExternalSymbol("free", IntPtr), Args, DAG,
Dale Johannesen66978ee2009-01-31 02:22:37 +00005544 getCurDebugLoc());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005545 DAG.setRoot(Result.second);
5546}
5547
5548void SelectionDAGLowering::visitVAStart(CallInst &I) {
Dale Johannesen66978ee2009-01-31 02:22:37 +00005549 DAG.setRoot(DAG.getNode(ISD::VASTART, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00005550 MVT::Other, getRoot(),
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005551 getValue(I.getOperand(1)),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005552 DAG.getSrcValue(I.getOperand(1))));
5553}
5554
5555void SelectionDAGLowering::visitVAArg(VAArgInst &I) {
Dale Johannesena04b7572009-02-03 23:04:43 +00005556 SDValue V = DAG.getVAArg(TLI.getValueType(I.getType()), getCurDebugLoc(),
5557 getRoot(), getValue(I.getOperand(0)),
5558 DAG.getSrcValue(I.getOperand(0)));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005559 setValue(&I, V);
5560 DAG.setRoot(V.getValue(1));
5561}
5562
5563void SelectionDAGLowering::visitVAEnd(CallInst &I) {
Dale Johannesen66978ee2009-01-31 02:22:37 +00005564 DAG.setRoot(DAG.getNode(ISD::VAEND, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00005565 MVT::Other, getRoot(),
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005566 getValue(I.getOperand(1)),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005567 DAG.getSrcValue(I.getOperand(1))));
5568}
5569
5570void SelectionDAGLowering::visitVACopy(CallInst &I) {
Dale Johannesen66978ee2009-01-31 02:22:37 +00005571 DAG.setRoot(DAG.getNode(ISD::VACOPY, getCurDebugLoc(),
Dale Johannesenfa42dea2009-01-30 01:34:22 +00005572 MVT::Other, getRoot(),
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005573 getValue(I.getOperand(1)),
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005574 getValue(I.getOperand(2)),
5575 DAG.getSrcValue(I.getOperand(1)),
5576 DAG.getSrcValue(I.getOperand(2))));
5577}
5578
5579/// TargetLowering::LowerArguments - This is the default LowerArguments
5580/// implementation, which just inserts a FORMAL_ARGUMENTS node. FIXME: When all
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005581/// targets are migrated to using FORMAL_ARGUMENTS, this hook should be
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005582/// integrated into SDISel.
5583void TargetLowering::LowerArguments(Function &F, SelectionDAG &DAG,
Dale Johannesen7d2ad622009-01-30 23:10:59 +00005584 SmallVectorImpl<SDValue> &ArgValues,
5585 DebugLoc dl) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005586 // Add CC# and isVararg as operands to the FORMAL_ARGUMENTS node.
5587 SmallVector<SDValue, 3+16> Ops;
5588 Ops.push_back(DAG.getRoot());
5589 Ops.push_back(DAG.getConstant(F.getCallingConv(), getPointerTy()));
5590 Ops.push_back(DAG.getConstant(F.isVarArg(), getPointerTy()));
5591
5592 // Add one result value for each formal argument.
5593 SmallVector<MVT, 16> RetVals;
5594 unsigned j = 1;
5595 for (Function::arg_iterator I = F.arg_begin(), E = F.arg_end();
5596 I != E; ++I, ++j) {
5597 SmallVector<MVT, 4> ValueVTs;
5598 ComputeValueVTs(*this, I->getType(), ValueVTs);
5599 for (unsigned Value = 0, NumValues = ValueVTs.size();
5600 Value != NumValues; ++Value) {
5601 MVT VT = ValueVTs[Value];
5602 const Type *ArgTy = VT.getTypeForMVT();
5603 ISD::ArgFlagsTy Flags;
5604 unsigned OriginalAlignment =
5605 getTargetData()->getABITypeAlignment(ArgTy);
5606
Devang Patel05988662008-09-25 21:00:45 +00005607 if (F.paramHasAttr(j, Attribute::ZExt))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005608 Flags.setZExt();
Devang Patel05988662008-09-25 21:00:45 +00005609 if (F.paramHasAttr(j, Attribute::SExt))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005610 Flags.setSExt();
Devang Patel05988662008-09-25 21:00:45 +00005611 if (F.paramHasAttr(j, Attribute::InReg))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005612 Flags.setInReg();
Devang Patel05988662008-09-25 21:00:45 +00005613 if (F.paramHasAttr(j, Attribute::StructRet))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005614 Flags.setSRet();
Devang Patel05988662008-09-25 21:00:45 +00005615 if (F.paramHasAttr(j, Attribute::ByVal)) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005616 Flags.setByVal();
5617 const PointerType *Ty = cast<PointerType>(I->getType());
5618 const Type *ElementTy = Ty->getElementType();
5619 unsigned FrameAlign = getByValTypeAlignment(ElementTy);
Duncan Sandsceb4d1a2009-01-12 20:38:59 +00005620 unsigned FrameSize = getTargetData()->getTypePaddedSize(ElementTy);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005621 // For ByVal, alignment should be passed from FE. BE will guess if
5622 // this info is not there but there are cases it cannot get right.
5623 if (F.getParamAlignment(j))
5624 FrameAlign = F.getParamAlignment(j);
5625 Flags.setByValAlign(FrameAlign);
5626 Flags.setByValSize(FrameSize);
5627 }
Devang Patel05988662008-09-25 21:00:45 +00005628 if (F.paramHasAttr(j, Attribute::Nest))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005629 Flags.setNest();
5630 Flags.setOrigAlign(OriginalAlignment);
5631
5632 MVT RegisterVT = getRegisterType(VT);
5633 unsigned NumRegs = getNumRegisters(VT);
5634 for (unsigned i = 0; i != NumRegs; ++i) {
5635 RetVals.push_back(RegisterVT);
5636 ISD::ArgFlagsTy MyFlags = Flags;
5637 if (NumRegs > 1 && i == 0)
5638 MyFlags.setSplit();
5639 // if it isn't first piece, alignment must be 1
5640 else if (i > 0)
5641 MyFlags.setOrigAlign(1);
5642 Ops.push_back(DAG.getArgFlags(MyFlags));
5643 }
5644 }
5645 }
5646
5647 RetVals.push_back(MVT::Other);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005648
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005649 // Create the node.
Dale Johannesen7d2ad622009-01-30 23:10:59 +00005650 SDNode *Result = DAG.getNode(ISD::FORMAL_ARGUMENTS, dl,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005651 DAG.getVTList(&RetVals[0], RetVals.size()),
5652 &Ops[0], Ops.size()).getNode();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005653
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005654 // Prelower FORMAL_ARGUMENTS. This isn't required for functionality, but
5655 // allows exposing the loads that may be part of the argument access to the
5656 // first DAGCombiner pass.
5657 SDValue TmpRes = LowerOperation(SDValue(Result, 0), DAG);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005658
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005659 // The number of results should match up, except that the lowered one may have
5660 // an extra flag result.
5661 assert((Result->getNumValues() == TmpRes.getNode()->getNumValues() ||
5662 (Result->getNumValues()+1 == TmpRes.getNode()->getNumValues() &&
5663 TmpRes.getValue(Result->getNumValues()).getValueType() == MVT::Flag))
5664 && "Lowering produced unexpected number of results!");
5665
5666 // The FORMAL_ARGUMENTS node itself is likely no longer needed.
5667 if (Result != TmpRes.getNode() && Result->use_empty()) {
5668 HandleSDNode Dummy(DAG.getRoot());
5669 DAG.RemoveDeadNode(Result);
5670 }
5671
5672 Result = TmpRes.getNode();
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005673
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005674 unsigned NumArgRegs = Result->getNumValues() - 1;
5675 DAG.setRoot(SDValue(Result, NumArgRegs));
5676
5677 // Set up the return result vector.
5678 unsigned i = 0;
5679 unsigned Idx = 1;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005680 for (Function::arg_iterator I = F.arg_begin(), E = F.arg_end(); I != E;
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005681 ++I, ++Idx) {
5682 SmallVector<MVT, 4> ValueVTs;
5683 ComputeValueVTs(*this, I->getType(), ValueVTs);
5684 for (unsigned Value = 0, NumValues = ValueVTs.size();
5685 Value != NumValues; ++Value) {
5686 MVT VT = ValueVTs[Value];
5687 MVT PartVT = getRegisterType(VT);
5688
5689 unsigned NumParts = getNumRegisters(VT);
5690 SmallVector<SDValue, 4> Parts(NumParts);
5691 for (unsigned j = 0; j != NumParts; ++j)
5692 Parts[j] = SDValue(Result, i++);
5693
5694 ISD::NodeType AssertOp = ISD::DELETED_NODE;
Devang Patel05988662008-09-25 21:00:45 +00005695 if (F.paramHasAttr(Idx, Attribute::SExt))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005696 AssertOp = ISD::AssertSext;
Devang Patel05988662008-09-25 21:00:45 +00005697 else if (F.paramHasAttr(Idx, Attribute::ZExt))
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005698 AssertOp = ISD::AssertZext;
5699
Dale Johannesen66978ee2009-01-31 02:22:37 +00005700 ArgValues.push_back(getCopyFromParts(DAG, dl, &Parts[0], NumParts,
5701 PartVT, VT, AssertOp));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005702 }
5703 }
5704 assert(i == NumArgRegs && "Argument register count mismatch!");
5705}
5706
5707
5708/// TargetLowering::LowerCallTo - This is the default LowerCallTo
5709/// implementation, which just inserts an ISD::CALL node, which is later custom
5710/// lowered by the target to something concrete. FIXME: When all targets are
5711/// migrated to using ISD::CALL, this hook should be integrated into SDISel.
5712std::pair<SDValue, SDValue>
5713TargetLowering::LowerCallTo(SDValue Chain, const Type *RetTy,
5714 bool RetSExt, bool RetZExt, bool isVarArg,
Dale Johannesen86098bd2008-09-26 19:31:26 +00005715 bool isInreg,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005716 unsigned CallingConv, bool isTailCall,
5717 SDValue Callee,
Dale Johannesen7d2ad622009-01-30 23:10:59 +00005718 ArgListTy &Args, SelectionDAG &DAG, DebugLoc dl) {
Dan Gohman1937e2f2008-09-16 01:42:28 +00005719 assert((!isTailCall || PerformTailCallOpt) &&
5720 "isTailCall set when tail-call optimizations are disabled!");
5721
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005722 SmallVector<SDValue, 32> Ops;
5723 Ops.push_back(Chain); // Op#0 - Chain
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005724 Ops.push_back(Callee);
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005725
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005726 // Handle all of the outgoing arguments.
5727 for (unsigned i = 0, e = Args.size(); i != e; ++i) {
5728 SmallVector<MVT, 4> ValueVTs;
5729 ComputeValueVTs(*this, Args[i].Ty, ValueVTs);
5730 for (unsigned Value = 0, NumValues = ValueVTs.size();
5731 Value != NumValues; ++Value) {
5732 MVT VT = ValueVTs[Value];
5733 const Type *ArgTy = VT.getTypeForMVT();
Chris Lattner2a0b96c2008-10-18 18:49:30 +00005734 SDValue Op = SDValue(Args[i].Node.getNode(),
5735 Args[i].Node.getResNo() + Value);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005736 ISD::ArgFlagsTy Flags;
5737 unsigned OriginalAlignment =
5738 getTargetData()->getABITypeAlignment(ArgTy);
5739
5740 if (Args[i].isZExt)
5741 Flags.setZExt();
5742 if (Args[i].isSExt)
5743 Flags.setSExt();
5744 if (Args[i].isInReg)
5745 Flags.setInReg();
5746 if (Args[i].isSRet)
5747 Flags.setSRet();
5748 if (Args[i].isByVal) {
5749 Flags.setByVal();
5750 const PointerType *Ty = cast<PointerType>(Args[i].Ty);
5751 const Type *ElementTy = Ty->getElementType();
5752 unsigned FrameAlign = getByValTypeAlignment(ElementTy);
Duncan Sandsceb4d1a2009-01-12 20:38:59 +00005753 unsigned FrameSize = getTargetData()->getTypePaddedSize(ElementTy);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005754 // For ByVal, alignment should come from FE. BE will guess if this
5755 // info is not there but there are cases it cannot get right.
5756 if (Args[i].Alignment)
5757 FrameAlign = Args[i].Alignment;
5758 Flags.setByValAlign(FrameAlign);
5759 Flags.setByValSize(FrameSize);
5760 }
5761 if (Args[i].isNest)
5762 Flags.setNest();
5763 Flags.setOrigAlign(OriginalAlignment);
5764
5765 MVT PartVT = getRegisterType(VT);
5766 unsigned NumParts = getNumRegisters(VT);
5767 SmallVector<SDValue, 4> Parts(NumParts);
5768 ISD::NodeType ExtendKind = ISD::ANY_EXTEND;
5769
5770 if (Args[i].isSExt)
5771 ExtendKind = ISD::SIGN_EXTEND;
5772 else if (Args[i].isZExt)
5773 ExtendKind = ISD::ZERO_EXTEND;
5774
Dale Johannesen66978ee2009-01-31 02:22:37 +00005775 getCopyToParts(DAG, dl, Op, &Parts[0], NumParts, PartVT, ExtendKind);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005776
5777 for (unsigned i = 0; i != NumParts; ++i) {
5778 // if it isn't first piece, alignment must be 1
5779 ISD::ArgFlagsTy MyFlags = Flags;
5780 if (NumParts > 1 && i == 0)
5781 MyFlags.setSplit();
5782 else if (i != 0)
5783 MyFlags.setOrigAlign(1);
5784
5785 Ops.push_back(Parts[i]);
5786 Ops.push_back(DAG.getArgFlags(MyFlags));
5787 }
5788 }
5789 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005790
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005791 // Figure out the result value types. We start by making a list of
5792 // the potentially illegal return value types.
5793 SmallVector<MVT, 4> LoweredRetTys;
5794 SmallVector<MVT, 4> RetTys;
5795 ComputeValueVTs(*this, RetTy, RetTys);
5796
5797 // Then we translate that to a list of legal types.
5798 for (unsigned I = 0, E = RetTys.size(); I != E; ++I) {
5799 MVT VT = RetTys[I];
5800 MVT RegisterVT = getRegisterType(VT);
5801 unsigned NumRegs = getNumRegisters(VT);
5802 for (unsigned i = 0; i != NumRegs; ++i)
5803 LoweredRetTys.push_back(RegisterVT);
5804 }
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005805
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005806 LoweredRetTys.push_back(MVT::Other); // Always has a chain.
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005807
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005808 // Create the CALL node.
Dale Johannesen7d2ad622009-01-30 23:10:59 +00005809 SDValue Res = DAG.getCall(CallingConv, dl,
Dale Johannesenfa42dea2009-01-30 01:34:22 +00005810 isVarArg, isTailCall, isInreg,
Dan Gohman095cc292008-09-13 01:54:27 +00005811 DAG.getVTList(&LoweredRetTys[0],
5812 LoweredRetTys.size()),
Dale Johannesen86098bd2008-09-26 19:31:26 +00005813 &Ops[0], Ops.size()
5814 );
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005815 Chain = Res.getValue(LoweredRetTys.size() - 1);
5816
5817 // Gather up the call result into a single value.
Dan Gohmanb5cc34d2008-10-07 00:12:37 +00005818 if (RetTy != Type::VoidTy && !RetTys.empty()) {
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005819 ISD::NodeType AssertOp = ISD::DELETED_NODE;
5820
5821 if (RetSExt)
5822 AssertOp = ISD::AssertSext;
5823 else if (RetZExt)
5824 AssertOp = ISD::AssertZext;
5825
5826 SmallVector<SDValue, 4> ReturnValues;
5827 unsigned RegNo = 0;
5828 for (unsigned I = 0, E = RetTys.size(); I != E; ++I) {
5829 MVT VT = RetTys[I];
5830 MVT RegisterVT = getRegisterType(VT);
5831 unsigned NumRegs = getNumRegisters(VT);
5832 unsigned RegNoEnd = NumRegs + RegNo;
5833 SmallVector<SDValue, 4> Results;
5834 for (; RegNo != RegNoEnd; ++RegNo)
5835 Results.push_back(Res.getValue(RegNo));
5836 SDValue ReturnValue =
Dale Johannesen66978ee2009-01-31 02:22:37 +00005837 getCopyFromParts(DAG, dl, &Results[0], NumRegs, RegisterVT, VT,
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005838 AssertOp);
5839 ReturnValues.push_back(ReturnValue);
5840 }
Dale Johannesen7d2ad622009-01-30 23:10:59 +00005841 Res = DAG.getNode(ISD::MERGE_VALUES, dl,
Duncan Sandsaaffa052008-12-01 11:41:29 +00005842 DAG.getVTList(&RetTys[0], RetTys.size()),
5843 &ReturnValues[0], ReturnValues.size());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005844 }
5845
5846 return std::make_pair(Res, Chain);
5847}
5848
Duncan Sands9fbc7e22009-01-21 09:00:29 +00005849void TargetLowering::LowerOperationWrapper(SDNode *N,
5850 SmallVectorImpl<SDValue> &Results,
5851 SelectionDAG &DAG) {
5852 SDValue Res = LowerOperation(SDValue(N, 0), DAG);
Sanjiv Guptabb326bb2009-01-21 04:48:39 +00005853 if (Res.getNode())
5854 Results.push_back(Res);
5855}
5856
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005857SDValue TargetLowering::LowerOperation(SDValue Op, SelectionDAG &DAG) {
5858 assert(0 && "LowerOperation not implemented for this target!");
5859 abort();
5860 return SDValue();
5861}
5862
5863
5864void SelectionDAGLowering::CopyValueToVirtualRegister(Value *V, unsigned Reg) {
5865 SDValue Op = getValue(V);
5866 assert((Op.getOpcode() != ISD::CopyFromReg ||
5867 cast<RegisterSDNode>(Op.getOperand(1))->getReg() != Reg) &&
5868 "Copy from a reg to the same reg!");
5869 assert(!TargetRegisterInfo::isPhysicalRegister(Reg) && "Is a physreg");
5870
5871 RegsForValue RFV(TLI, Reg, V->getType());
5872 SDValue Chain = DAG.getEntryNode();
Dale Johannesen66978ee2009-01-31 02:22:37 +00005873 RFV.getCopyToRegs(Op, DAG, getCurDebugLoc(), Chain, 0);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005874 PendingExports.push_back(Chain);
5875}
5876
5877#include "llvm/CodeGen/SelectionDAGISel.h"
5878
5879void SelectionDAGISel::
5880LowerArguments(BasicBlock *LLVMBB) {
5881 // If this is the entry block, emit arguments.
5882 Function &F = *LLVMBB->getParent();
5883 SDValue OldRoot = SDL->DAG.getRoot();
5884 SmallVector<SDValue, 16> Args;
Dale Johannesen66978ee2009-01-31 02:22:37 +00005885 TLI.LowerArguments(F, SDL->DAG, Args, SDL->getCurDebugLoc());
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005886
5887 unsigned a = 0;
5888 for (Function::arg_iterator AI = F.arg_begin(), E = F.arg_end();
5889 AI != E; ++AI) {
5890 SmallVector<MVT, 4> ValueVTs;
5891 ComputeValueVTs(TLI, AI->getType(), ValueVTs);
5892 unsigned NumValues = ValueVTs.size();
5893 if (!AI->use_empty()) {
Scott Michelfdc40a02009-02-17 22:15:04 +00005894 SDL->setValue(AI, SDL->DAG.getMergeValues(&Args[a], NumValues,
Dale Johannesen4be0bdf2009-02-05 00:20:09 +00005895 SDL->getCurDebugLoc()));
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005896 // If this argument is live outside of the entry block, insert a copy from
5897 // whereever we got it to the vreg that other BB's will reference it as.
Dan Gohmanad62f532009-04-23 23:13:24 +00005898 SDL->CopyToExportRegsIfNeeded(AI);
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005899 }
5900 a += NumValues;
5901 }
5902
5903 // Finally, if the target has anything special to do, allow it to do so.
5904 // FIXME: this should insert code into the DAG!
5905 EmitFunctionEntryCode(F, SDL->DAG.getMachineFunction());
5906}
5907
5908/// Handle PHI nodes in successor blocks. Emit code into the SelectionDAG to
5909/// ensure constants are generated when needed. Remember the virtual registers
5910/// that need to be added to the Machine PHI nodes as input. We cannot just
5911/// directly add them, because expansion might result in multiple MBB's for one
5912/// BB. As such, the start of the BB might correspond to a different MBB than
5913/// the end.
5914///
5915void
5916SelectionDAGISel::HandlePHINodesInSuccessorBlocks(BasicBlock *LLVMBB) {
5917 TerminatorInst *TI = LLVMBB->getTerminator();
5918
5919 SmallPtrSet<MachineBasicBlock *, 4> SuccsHandled;
5920
5921 // Check successor nodes' PHI nodes that expect a constant to be available
5922 // from this block.
5923 for (unsigned succ = 0, e = TI->getNumSuccessors(); succ != e; ++succ) {
5924 BasicBlock *SuccBB = TI->getSuccessor(succ);
5925 if (!isa<PHINode>(SuccBB->begin())) continue;
5926 MachineBasicBlock *SuccMBB = FuncInfo->MBBMap[SuccBB];
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005927
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005928 // If this terminator has multiple identical successors (common for
5929 // switches), only handle each succ once.
5930 if (!SuccsHandled.insert(SuccMBB)) continue;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005931
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005932 MachineBasicBlock::iterator MBBI = SuccMBB->begin();
5933 PHINode *PN;
5934
5935 // At this point we know that there is a 1-1 correspondence between LLVM PHI
5936 // nodes and Machine PHI nodes, but the incoming operands have not been
5937 // emitted yet.
5938 for (BasicBlock::iterator I = SuccBB->begin();
5939 (PN = dyn_cast<PHINode>(I)); ++I) {
5940 // Ignore dead phi's.
5941 if (PN->use_empty()) continue;
5942
5943 unsigned Reg;
5944 Value *PHIOp = PN->getIncomingValueForBlock(LLVMBB);
5945
5946 if (Constant *C = dyn_cast<Constant>(PHIOp)) {
5947 unsigned &RegOut = SDL->ConstantsOut[C];
5948 if (RegOut == 0) {
5949 RegOut = FuncInfo->CreateRegForValue(C);
5950 SDL->CopyValueToVirtualRegister(C, RegOut);
5951 }
5952 Reg = RegOut;
5953 } else {
5954 Reg = FuncInfo->ValueMap[PHIOp];
5955 if (Reg == 0) {
5956 assert(isa<AllocaInst>(PHIOp) &&
5957 FuncInfo->StaticAllocaMap.count(cast<AllocaInst>(PHIOp)) &&
5958 "Didn't codegen value into a register!??");
5959 Reg = FuncInfo->CreateRegForValue(PHIOp);
5960 SDL->CopyValueToVirtualRegister(PHIOp, Reg);
5961 }
5962 }
5963
5964 // Remember that this register needs to added to the machine PHI node as
5965 // the input for this MBB.
5966 SmallVector<MVT, 4> ValueVTs;
5967 ComputeValueVTs(TLI, PN->getType(), ValueVTs);
5968 for (unsigned vti = 0, vte = ValueVTs.size(); vti != vte; ++vti) {
5969 MVT VT = ValueVTs[vti];
5970 unsigned NumRegisters = TLI.getNumRegisters(VT);
5971 for (unsigned i = 0, e = NumRegisters; i != e; ++i)
5972 SDL->PHINodesToUpdate.push_back(std::make_pair(MBBI++, Reg+i));
5973 Reg += NumRegisters;
5974 }
5975 }
5976 }
5977 SDL->ConstantsOut.clear();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005978}
5979
Dan Gohman3df24e62008-09-03 23:12:08 +00005980/// This is the Fast-ISel version of HandlePHINodesInSuccessorBlocks. It only
5981/// supports legal types, and it emits MachineInstrs directly instead of
5982/// creating SelectionDAG nodes.
5983///
5984bool
5985SelectionDAGISel::HandlePHINodesInSuccessorBlocksFast(BasicBlock *LLVMBB,
5986 FastISel *F) {
5987 TerminatorInst *TI = LLVMBB->getTerminator();
Dan Gohmanf0cbcd42008-09-03 16:12:24 +00005988
Dan Gohman3df24e62008-09-03 23:12:08 +00005989 SmallPtrSet<MachineBasicBlock *, 4> SuccsHandled;
5990 unsigned OrigNumPHINodesToUpdate = SDL->PHINodesToUpdate.size();
5991
5992 // Check successor nodes' PHI nodes that expect a constant to be available
5993 // from this block.
5994 for (unsigned succ = 0, e = TI->getNumSuccessors(); succ != e; ++succ) {
5995 BasicBlock *SuccBB = TI->getSuccessor(succ);
5996 if (!isa<PHINode>(SuccBB->begin())) continue;
5997 MachineBasicBlock *SuccMBB = FuncInfo->MBBMap[SuccBB];
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00005998
Dan Gohman3df24e62008-09-03 23:12:08 +00005999 // If this terminator has multiple identical successors (common for
6000 // switches), only handle each succ once.
6001 if (!SuccsHandled.insert(SuccMBB)) continue;
Mikhail Glushenkov5c1799b2009-01-16 06:53:46 +00006002
Dan Gohman3df24e62008-09-03 23:12:08 +00006003 MachineBasicBlock::iterator MBBI = SuccMBB->begin();
6004 PHINode *PN;
6005
6006 // At this point we know that there is a 1-1 correspondence between LLVM PHI
6007 // nodes and Machine PHI nodes, but the incoming operands have not been
6008 // emitted yet.
6009 for (BasicBlock::iterator I = SuccBB->begin();
6010 (PN = dyn_cast<PHINode>(I)); ++I) {
6011 // Ignore dead phi's.
6012 if (PN->use_empty()) continue;
6013
6014 // Only handle legal types. Two interesting things to note here. First,
6015 // by bailing out early, we may leave behind some dead instructions,
6016 // since SelectionDAG's HandlePHINodesInSuccessorBlocks will insert its
6017 // own moves. Second, this check is necessary becuase FastISel doesn't
6018 // use CreateRegForValue to create registers, so it always creates
6019 // exactly one register for each non-void instruction.
6020 MVT VT = TLI.getValueType(PN->getType(), /*AllowUnknown=*/true);
6021 if (VT == MVT::Other || !TLI.isTypeLegal(VT)) {
Dan Gohman74321ab2008-09-10 21:01:31 +00006022 // Promote MVT::i1.
6023 if (VT == MVT::i1)
6024 VT = TLI.getTypeToTransformTo(VT);
6025 else {
6026 SDL->PHINodesToUpdate.resize(OrigNumPHINodesToUpdate);
6027 return false;
6028 }
Dan Gohman3df24e62008-09-03 23:12:08 +00006029 }
6030
6031 Value *PHIOp = PN->getIncomingValueForBlock(LLVMBB);
6032
6033 unsigned Reg = F->getRegForValue(PHIOp);
6034 if (Reg == 0) {
6035 SDL->PHINodesToUpdate.resize(OrigNumPHINodesToUpdate);
6036 return false;
6037 }
6038 SDL->PHINodesToUpdate.push_back(std::make_pair(MBBI++, Reg));
6039 }
6040 }
6041
6042 return true;
6043}