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Chris Lattner7a60d912005-01-07 07:47:53 +00001//===-- SelectionDAGISel.cpp - Implement the SelectionDAGISel class -------===//
Misha Brukman835702a2005-04-21 22:36:52 +00002//
Chris Lattner7a60d912005-01-07 07:47:53 +00003// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
Misha Brukman835702a2005-04-21 22:36:52 +00007//
Chris Lattner7a60d912005-01-07 07:47:53 +00008//===----------------------------------------------------------------------===//
9//
10// This implements the SelectionDAGISel class.
11//
12//===----------------------------------------------------------------------===//
13
14#define DEBUG_TYPE "isel"
Anton Korobeynikov915e6172007-04-04 21:14:49 +000015#include "llvm/ADT/BitVector.h"
Jim Laskeydcb2b832006-10-16 20:52:31 +000016#include "llvm/Analysis/AliasAnalysis.h"
Chris Lattner7a60d912005-01-07 07:47:53 +000017#include "llvm/CodeGen/SelectionDAGISel.h"
Evan Cheng739a6a42006-01-21 02:32:06 +000018#include "llvm/CodeGen/ScheduleDAG.h"
Anton Korobeynikov915e6172007-04-04 21:14:49 +000019#include "llvm/Constants.h"
Chris Lattner2e77db62005-05-13 18:50:42 +000020#include "llvm/CallingConv.h"
Chris Lattner7a60d912005-01-07 07:47:53 +000021#include "llvm/DerivedTypes.h"
22#include "llvm/Function.h"
Chris Lattner435b4022005-11-29 06:21:05 +000023#include "llvm/GlobalVariable.h"
Chris Lattner476e67b2006-01-26 22:24:51 +000024#include "llvm/InlineAsm.h"
Chris Lattner7a60d912005-01-07 07:47:53 +000025#include "llvm/Instructions.h"
26#include "llvm/Intrinsics.h"
Jim Laskeya8bdac82006-03-23 18:06:46 +000027#include "llvm/IntrinsicInst.h"
Reid Spencer71b79e32007-04-09 06:17:21 +000028#include "llvm/ParameterAttributes.h"
Jim Laskeyc56315c2007-01-26 21:22:28 +000029#include "llvm/CodeGen/MachineModuleInfo.h"
Chris Lattner7a60d912005-01-07 07:47:53 +000030#include "llvm/CodeGen/MachineFunction.h"
31#include "llvm/CodeGen/MachineFrameInfo.h"
Nate Begeman4ca2ea52006-04-22 18:53:45 +000032#include "llvm/CodeGen/MachineJumpTableInfo.h"
Chris Lattner7a60d912005-01-07 07:47:53 +000033#include "llvm/CodeGen/MachineInstrBuilder.h"
Jim Laskey29e635d2006-08-02 12:30:23 +000034#include "llvm/CodeGen/SchedulerRegistry.h"
Chris Lattner7a60d912005-01-07 07:47:53 +000035#include "llvm/CodeGen/SelectionDAG.h"
36#include "llvm/CodeGen/SSARegMap.h"
Chris Lattnerd4382f02005-09-13 19:30:54 +000037#include "llvm/Target/MRegisterInfo.h"
Chris Lattner7a60d912005-01-07 07:47:53 +000038#include "llvm/Target/TargetData.h"
39#include "llvm/Target/TargetFrameInfo.h"
40#include "llvm/Target/TargetInstrInfo.h"
41#include "llvm/Target/TargetLowering.h"
42#include "llvm/Target/TargetMachine.h"
Vladimir Prusdf1d4392006-05-23 13:43:15 +000043#include "llvm/Target/TargetOptions.h"
Chris Lattner43535a12005-11-09 04:45:33 +000044#include "llvm/Support/MathExtras.h"
Chris Lattner7a60d912005-01-07 07:47:53 +000045#include "llvm/Support/Debug.h"
Chris Lattner3d27be12006-08-27 12:54:02 +000046#include "llvm/Support/Compiler.h"
Jeff Cohen83c22e02006-02-24 02:52:40 +000047#include <algorithm>
Chris Lattner7a60d912005-01-07 07:47:53 +000048using namespace llvm;
49
Chris Lattner975f5c92005-09-01 18:44:10 +000050#ifndef NDEBUG
Chris Lattnere05a4612005-01-12 03:41:21 +000051static cl::opt<bool>
Evan Cheng739a6a42006-01-21 02:32:06 +000052ViewISelDAGs("view-isel-dags", cl::Hidden,
53 cl::desc("Pop up a window to show isel dags as they are selected"));
54static cl::opt<bool>
55ViewSchedDAGs("view-sched-dags", cl::Hidden,
56 cl::desc("Pop up a window to show sched dags as they are processed"));
Chris Lattnere05a4612005-01-12 03:41:21 +000057#else
Chris Lattneref598052006-04-02 03:07:27 +000058static const bool ViewISelDAGs = 0, ViewSchedDAGs = 0;
Chris Lattnere05a4612005-01-12 03:41:21 +000059#endif
60
Jim Laskey29e635d2006-08-02 12:30:23 +000061//===---------------------------------------------------------------------===//
62///
63/// RegisterScheduler class - Track the registration of instruction schedulers.
64///
65//===---------------------------------------------------------------------===//
66MachinePassRegistry RegisterScheduler::Registry;
67
68//===---------------------------------------------------------------------===//
69///
70/// ISHeuristic command line option for instruction schedulers.
71///
72//===---------------------------------------------------------------------===//
Evan Chengc1e1d972006-01-23 07:01:07 +000073namespace {
Jim Laskey29e635d2006-08-02 12:30:23 +000074 cl::opt<RegisterScheduler::FunctionPassCtor, false,
75 RegisterPassParser<RegisterScheduler> >
Jim Laskey95eda5b2006-08-01 14:21:23 +000076 ISHeuristic("sched",
Chris Lattner524c1a22006-08-03 00:18:59 +000077 cl::init(&createDefaultScheduler),
Jim Laskey95eda5b2006-08-01 14:21:23 +000078 cl::desc("Instruction schedulers available:"));
79
Jim Laskey03593f72006-08-01 18:29:48 +000080 static RegisterScheduler
Jim Laskey17c67ef2006-08-01 19:14:14 +000081 defaultListDAGScheduler("default", " Best scheduler for the target",
82 createDefaultScheduler);
Evan Chengc1e1d972006-01-23 07:01:07 +000083} // namespace
84
Chris Lattner4333f8b2007-04-30 17:29:31 +000085namespace { struct AsmOperandInfo; }
86
Chris Lattner6f87d182006-02-22 22:37:12 +000087namespace {
88 /// RegsForValue - This struct represents the physical registers that a
89 /// particular value is assigned and the type information about the value.
90 /// This is needed because values can be promoted into larger registers and
91 /// expanded into multiple smaller registers than the value.
Chris Lattner996795b2006-06-28 23:17:24 +000092 struct VISIBILITY_HIDDEN RegsForValue {
Dan Gohman78677932007-06-28 23:29:44 +000093 /// Regs - This list holds the register (for legal and promoted values)
Chris Lattner6f87d182006-02-22 22:37:12 +000094 /// or register set (for expanded values) that the value should be assigned
95 /// to.
96 std::vector<unsigned> Regs;
97
98 /// RegVT - The value type of each register.
99 ///
100 MVT::ValueType RegVT;
101
102 /// ValueVT - The value type of the LLVM value, which may be promoted from
103 /// RegVT or made from merging the two expanded parts.
104 MVT::ValueType ValueVT;
105
106 RegsForValue() : RegVT(MVT::Other), ValueVT(MVT::Other) {}
107
108 RegsForValue(unsigned Reg, MVT::ValueType regvt, MVT::ValueType valuevt)
109 : RegVT(regvt), ValueVT(valuevt) {
110 Regs.push_back(Reg);
111 }
112 RegsForValue(const std::vector<unsigned> &regs,
113 MVT::ValueType regvt, MVT::ValueType valuevt)
114 : Regs(regs), RegVT(regvt), ValueVT(valuevt) {
115 }
116
117 /// getCopyFromRegs - Emit a series of CopyFromReg nodes that copies from
118 /// this value and returns the result as a ValueVT value. This uses
119 /// Chain/Flag as the input and updates them for the output Chain/Flag.
Dan Gohman78677932007-06-28 23:29:44 +0000120 /// If the Flag pointer is NULL, no flag is used.
Chris Lattner6f87d182006-02-22 22:37:12 +0000121 SDOperand getCopyFromRegs(SelectionDAG &DAG,
Dan Gohman78677932007-06-28 23:29:44 +0000122 SDOperand &Chain, SDOperand *Flag) const;
Chris Lattner571d9642006-02-23 19:21:04 +0000123
124 /// getCopyToRegs - Emit a series of CopyToReg nodes that copies the
125 /// specified value into the registers specified by this object. This uses
126 /// Chain/Flag as the input and updates them for the output Chain/Flag.
Dan Gohman78677932007-06-28 23:29:44 +0000127 /// If the Flag pointer is NULL, no flag is used.
Chris Lattner571d9642006-02-23 19:21:04 +0000128 void getCopyToRegs(SDOperand Val, SelectionDAG &DAG,
Dan Gohman78677932007-06-28 23:29:44 +0000129 SDOperand &Chain, SDOperand *Flag) const;
Chris Lattner571d9642006-02-23 19:21:04 +0000130
131 /// AddInlineAsmOperands - Add this value to the specified inlineasm node
132 /// operand list. This adds the code marker and includes the number of
133 /// values added into it.
134 void AddInlineAsmOperands(unsigned Code, SelectionDAG &DAG,
Chris Lattnere7c0ffb2006-02-23 20:06:57 +0000135 std::vector<SDOperand> &Ops) const;
Chris Lattner6f87d182006-02-22 22:37:12 +0000136 };
137}
Evan Chengc1e1d972006-01-23 07:01:07 +0000138
Chris Lattner7a60d912005-01-07 07:47:53 +0000139namespace llvm {
140 //===--------------------------------------------------------------------===//
Jim Laskey17c67ef2006-08-01 19:14:14 +0000141 /// createDefaultScheduler - This creates an instruction scheduler appropriate
142 /// for the target.
143 ScheduleDAG* createDefaultScheduler(SelectionDAGISel *IS,
144 SelectionDAG *DAG,
145 MachineBasicBlock *BB) {
146 TargetLowering &TLI = IS->getTargetLowering();
147
148 if (TLI.getSchedulingPreference() == TargetLowering::SchedulingForLatency) {
149 return createTDListDAGScheduler(IS, DAG, BB);
150 } else {
151 assert(TLI.getSchedulingPreference() ==
152 TargetLowering::SchedulingForRegPressure && "Unknown sched type!");
153 return createBURRListDAGScheduler(IS, DAG, BB);
154 }
155 }
156
157
158 //===--------------------------------------------------------------------===//
Chris Lattner7a60d912005-01-07 07:47:53 +0000159 /// FunctionLoweringInfo - This contains information that is global to a
160 /// function that is used when lowering a region of the function.
Chris Lattnerd0061952005-01-08 19:52:31 +0000161 class FunctionLoweringInfo {
162 public:
Chris Lattner7a60d912005-01-07 07:47:53 +0000163 TargetLowering &TLI;
164 Function &Fn;
165 MachineFunction &MF;
166 SSARegMap *RegMap;
167
168 FunctionLoweringInfo(TargetLowering &TLI, Function &Fn,MachineFunction &MF);
169
170 /// MBBMap - A mapping from LLVM basic blocks to their machine code entry.
171 std::map<const BasicBlock*, MachineBasicBlock *> MBBMap;
172
173 /// ValueMap - Since we emit code for the function a basic block at a time,
174 /// we must remember which virtual registers hold the values for
175 /// cross-basic-block values.
Chris Lattner289aa442007-02-04 01:35:11 +0000176 DenseMap<const Value*, unsigned> ValueMap;
Chris Lattner7a60d912005-01-07 07:47:53 +0000177
178 /// StaticAllocaMap - Keep track of frame indices for fixed sized allocas in
179 /// the entry block. This allows the allocas to be efficiently referenced
180 /// anywhere in the function.
181 std::map<const AllocaInst*, int> StaticAllocaMap;
182
Duncan Sands92bf2c62007-06-15 19:04:19 +0000183#ifndef NDEBUG
184 SmallSet<Instruction*, 8> CatchInfoLost;
185 SmallSet<Instruction*, 8> CatchInfoFound;
186#endif
187
Chris Lattner7a60d912005-01-07 07:47:53 +0000188 unsigned MakeReg(MVT::ValueType VT) {
189 return RegMap->createVirtualRegister(TLI.getRegClassFor(VT));
190 }
Chris Lattnered0110b2006-10-27 21:36:01 +0000191
192 /// isExportedInst - Return true if the specified value is an instruction
193 /// exported from its block.
194 bool isExportedInst(const Value *V) {
195 return ValueMap.count(V);
196 }
Misha Brukman835702a2005-04-21 22:36:52 +0000197
Chris Lattner49409cb2006-03-16 19:51:18 +0000198 unsigned CreateRegForValue(const Value *V);
199
Chris Lattner7a60d912005-01-07 07:47:53 +0000200 unsigned InitializeRegForValue(const Value *V) {
201 unsigned &R = ValueMap[V];
202 assert(R == 0 && "Already initialized this value register!");
203 return R = CreateRegForValue(V);
204 }
205 };
206}
207
Duncan Sandsfe806382007-07-04 20:52:51 +0000208/// isSelector - Return true if this instruction is a call to the
209/// eh.selector intrinsic.
210static bool isSelector(Instruction *I) {
Duncan Sands92bf2c62007-06-15 19:04:19 +0000211 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(I))
Duncan Sandsfe806382007-07-04 20:52:51 +0000212 return II->getIntrinsicID() == Intrinsic::eh_selector;
Duncan Sands92bf2c62007-06-15 19:04:19 +0000213 return false;
214}
215
Chris Lattner7a60d912005-01-07 07:47:53 +0000216/// isUsedOutsideOfDefiningBlock - Return true if this instruction is used by
Nate Begemaned728c12006-03-27 01:32:24 +0000217/// PHI nodes or outside of the basic block that defines it, or used by a
218/// switch instruction, which may expand to multiple basic blocks.
Chris Lattner7a60d912005-01-07 07:47:53 +0000219static bool isUsedOutsideOfDefiningBlock(Instruction *I) {
220 if (isa<PHINode>(I)) return true;
221 BasicBlock *BB = I->getParent();
222 for (Value::use_iterator UI = I->use_begin(), E = I->use_end(); UI != E; ++UI)
Nate Begemaned728c12006-03-27 01:32:24 +0000223 if (cast<Instruction>(*UI)->getParent() != BB || isa<PHINode>(*UI) ||
Chris Lattnered0110b2006-10-27 21:36:01 +0000224 // FIXME: Remove switchinst special case.
Nate Begemaned728c12006-03-27 01:32:24 +0000225 isa<SwitchInst>(*UI))
Chris Lattner7a60d912005-01-07 07:47:53 +0000226 return true;
227 return false;
228}
229
Chris Lattner6871b232005-10-30 19:42:35 +0000230/// isOnlyUsedInEntryBlock - If the specified argument is only used in the
Nate Begemaned728c12006-03-27 01:32:24 +0000231/// entry block, return true. This includes arguments used by switches, since
232/// the switch may expand into multiple basic blocks.
Chris Lattner6871b232005-10-30 19:42:35 +0000233static bool isOnlyUsedInEntryBlock(Argument *A) {
234 BasicBlock *Entry = A->getParent()->begin();
235 for (Value::use_iterator UI = A->use_begin(), E = A->use_end(); UI != E; ++UI)
Nate Begemaned728c12006-03-27 01:32:24 +0000236 if (cast<Instruction>(*UI)->getParent() != Entry || isa<SwitchInst>(*UI))
Chris Lattner6871b232005-10-30 19:42:35 +0000237 return false; // Use not in entry block.
238 return true;
239}
240
Chris Lattner7a60d912005-01-07 07:47:53 +0000241FunctionLoweringInfo::FunctionLoweringInfo(TargetLowering &tli,
Misha Brukman835702a2005-04-21 22:36:52 +0000242 Function &fn, MachineFunction &mf)
Chris Lattner7a60d912005-01-07 07:47:53 +0000243 : TLI(tli), Fn(fn), MF(mf), RegMap(MF.getSSARegMap()) {
244
Chris Lattner6871b232005-10-30 19:42:35 +0000245 // Create a vreg for each argument register that is not dead and is used
246 // outside of the entry block for the function.
247 for (Function::arg_iterator AI = Fn.arg_begin(), E = Fn.arg_end();
248 AI != E; ++AI)
249 if (!isOnlyUsedInEntryBlock(AI))
250 InitializeRegForValue(AI);
251
Chris Lattner7a60d912005-01-07 07:47:53 +0000252 // Initialize the mapping of values to registers. This is only set up for
253 // instruction values that are used outside of the block that defines
254 // them.
Jeff Cohenf8a5e5ae2005-10-01 03:57:14 +0000255 Function::iterator BB = Fn.begin(), EB = Fn.end();
Chris Lattner7a60d912005-01-07 07:47:53 +0000256 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I)
257 if (AllocaInst *AI = dyn_cast<AllocaInst>(I))
Reid Spencere0fc4df2006-10-20 07:07:24 +0000258 if (ConstantInt *CUI = dyn_cast<ConstantInt>(AI->getArraySize())) {
Chris Lattner7a60d912005-01-07 07:47:53 +0000259 const Type *Ty = AI->getAllocatedType();
Owen Anderson20a631f2006-05-03 01:29:57 +0000260 uint64_t TySize = TLI.getTargetData()->getTypeSize(Ty);
Nate Begeman3ee3e692005-11-06 09:00:38 +0000261 unsigned Align =
Chris Lattner945e4372007-02-14 05:52:17 +0000262 std::max((unsigned)TLI.getTargetData()->getPrefTypeAlignment(Ty),
Nate Begeman3ee3e692005-11-06 09:00:38 +0000263 AI->getAlignment());
Chris Lattnercbefe722005-05-13 23:14:17 +0000264
Reid Spencere0fc4df2006-10-20 07:07:24 +0000265 TySize *= CUI->getZExtValue(); // Get total allocated size.
Chris Lattner0a71a9a2005-10-18 22:14:06 +0000266 if (TySize == 0) TySize = 1; // Don't create zero-sized stack objects.
Chris Lattner7a60d912005-01-07 07:47:53 +0000267 StaticAllocaMap[AI] =
Chris Lattnercb0ed0c2007-04-25 04:08:28 +0000268 MF.getFrameInfo()->CreateStackObject(TySize, Align);
Chris Lattner7a60d912005-01-07 07:47:53 +0000269 }
270
Jeff Cohenf8a5e5ae2005-10-01 03:57:14 +0000271 for (; BB != EB; ++BB)
272 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I)
Chris Lattner7a60d912005-01-07 07:47:53 +0000273 if (!I->use_empty() && isUsedOutsideOfDefiningBlock(I))
274 if (!isa<AllocaInst>(I) ||
275 !StaticAllocaMap.count(cast<AllocaInst>(I)))
276 InitializeRegForValue(I);
277
278 // Create an initial MachineBasicBlock for each LLVM BasicBlock in F. This
279 // also creates the initial PHI MachineInstrs, though none of the input
280 // operands are populated.
Jeff Cohenf8a5e5ae2005-10-01 03:57:14 +0000281 for (BB = Fn.begin(), EB = Fn.end(); BB != EB; ++BB) {
Chris Lattner7a60d912005-01-07 07:47:53 +0000282 MachineBasicBlock *MBB = new MachineBasicBlock(BB);
283 MBBMap[BB] = MBB;
284 MF.getBasicBlockList().push_back(MBB);
285
286 // Create Machine PHI nodes for LLVM PHI nodes, lowering them as
287 // appropriate.
288 PHINode *PN;
Chris Lattner84a03502006-10-27 23:50:33 +0000289 for (BasicBlock::iterator I = BB->begin();(PN = dyn_cast<PHINode>(I)); ++I){
290 if (PN->use_empty()) continue;
291
292 MVT::ValueType VT = TLI.getValueType(PN->getType());
Dan Gohmana8665142007-06-25 16:23:39 +0000293 unsigned NumRegisters = TLI.getNumRegisters(VT);
Chris Lattner84a03502006-10-27 23:50:33 +0000294 unsigned PHIReg = ValueMap[PN];
295 assert(PHIReg && "PHI node does not have an assigned virtual register!");
Evan Cheng20350c42006-11-27 23:37:22 +0000296 const TargetInstrInfo *TII = TLI.getTargetMachine().getInstrInfo();
Dan Gohman04deef32007-06-21 14:42:22 +0000297 for (unsigned i = 0; i != NumRegisters; ++i)
Evan Cheng20350c42006-11-27 23:37:22 +0000298 BuildMI(MBB, TII->get(TargetInstrInfo::PHI), PHIReg+i);
Chris Lattner84a03502006-10-27 23:50:33 +0000299 }
Chris Lattner7a60d912005-01-07 07:47:53 +0000300 }
301}
302
Chris Lattner49409cb2006-03-16 19:51:18 +0000303/// CreateRegForValue - Allocate the appropriate number of virtual registers of
304/// the correctly promoted or expanded types. Assign these registers
305/// consecutive vreg numbers and return the first assigned number.
306unsigned FunctionLoweringInfo::CreateRegForValue(const Value *V) {
307 MVT::ValueType VT = TLI.getValueType(V->getType());
308
Dan Gohman78677932007-06-28 23:29:44 +0000309 unsigned NumRegisters = TLI.getNumRegisters(VT);
310 MVT::ValueType RegisterVT = TLI.getRegisterType(VT);
Bill Wendling47917b62007-04-24 21:13:23 +0000311
Dan Gohman7139a482007-06-27 14:34:07 +0000312 unsigned R = MakeReg(RegisterVT);
313 for (unsigned i = 1; i != NumRegisters; ++i)
314 MakeReg(RegisterVT);
315
Chris Lattner49409cb2006-03-16 19:51:18 +0000316 return R;
317}
Chris Lattner7a60d912005-01-07 07:47:53 +0000318
319//===----------------------------------------------------------------------===//
320/// SelectionDAGLowering - This is the common target-independent lowering
321/// implementation that is parameterized by a TargetLowering object.
322/// Also, targets can overload any lowering method.
323///
324namespace llvm {
325class SelectionDAGLowering {
326 MachineBasicBlock *CurMBB;
327
Chris Lattner79084302007-02-04 01:31:47 +0000328 DenseMap<const Value*, SDOperand> NodeMap;
Chris Lattner7a60d912005-01-07 07:47:53 +0000329
Chris Lattner4d9651c2005-01-17 22:19:26 +0000330 /// PendingLoads - Loads are not emitted to the program immediately. We bunch
331 /// them up and then emit token factor nodes when possible. This allows us to
332 /// get simple disambiguation between loads without worrying about alias
333 /// analysis.
334 std::vector<SDOperand> PendingLoads;
335
Anton Korobeynikov915e6172007-04-04 21:14:49 +0000336 /// Case - A struct to record the Value for a switch case, and the
337 /// case's target basic block.
338 struct Case {
339 Constant* Low;
340 Constant* High;
341 MachineBasicBlock* BB;
342
343 Case() : Low(0), High(0), BB(0) { }
344 Case(Constant* low, Constant* high, MachineBasicBlock* bb) :
345 Low(low), High(high), BB(bb) { }
346 uint64_t size() const {
347 uint64_t rHigh = cast<ConstantInt>(High)->getSExtValue();
348 uint64_t rLow = cast<ConstantInt>(Low)->getSExtValue();
349 return (rHigh - rLow + 1ULL);
350 }
351 };
352
Anton Korobeynikov506eaf72007-04-09 12:31:58 +0000353 struct CaseBits {
354 uint64_t Mask;
355 MachineBasicBlock* BB;
356 unsigned Bits;
357
358 CaseBits(uint64_t mask, MachineBasicBlock* bb, unsigned bits):
359 Mask(mask), BB(bb), Bits(bits) { }
360 };
361
Anton Korobeynikov915e6172007-04-04 21:14:49 +0000362 typedef std::vector<Case> CaseVector;
Anton Korobeynikov506eaf72007-04-09 12:31:58 +0000363 typedef std::vector<CaseBits> CaseBitsVector;
Anton Korobeynikov915e6172007-04-04 21:14:49 +0000364 typedef CaseVector::iterator CaseItr;
365 typedef std::pair<CaseItr, CaseItr> CaseRange;
Nate Begemaned728c12006-03-27 01:32:24 +0000366
367 /// CaseRec - A struct with ctor used in lowering switches to a binary tree
368 /// of conditional branches.
369 struct CaseRec {
370 CaseRec(MachineBasicBlock *bb, Constant *lt, Constant *ge, CaseRange r) :
371 CaseBB(bb), LT(lt), GE(ge), Range(r) {}
372
373 /// CaseBB - The MBB in which to emit the compare and branch
374 MachineBasicBlock *CaseBB;
375 /// LT, GE - If nonzero, we know the current case value must be less-than or
376 /// greater-than-or-equal-to these Constants.
377 Constant *LT;
378 Constant *GE;
379 /// Range - A pair of iterators representing the range of case values to be
380 /// processed at this point in the binary search tree.
381 CaseRange Range;
382 };
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +0000383
384 typedef std::vector<CaseRec> CaseRecVector;
Anton Korobeynikov915e6172007-04-04 21:14:49 +0000385
386 /// The comparison function for sorting the switch case values in the vector.
387 /// WARNING: Case ranges should be disjoint!
Nate Begemaned728c12006-03-27 01:32:24 +0000388 struct CaseCmp {
Anton Korobeynikov506eaf72007-04-09 12:31:58 +0000389 bool operator () (const Case& C1, const Case& C2) {
Anton Korobeynikov915e6172007-04-04 21:14:49 +0000390 assert(isa<ConstantInt>(C1.Low) && isa<ConstantInt>(C2.High));
391 const ConstantInt* CI1 = cast<const ConstantInt>(C1.Low);
392 const ConstantInt* CI2 = cast<const ConstantInt>(C2.High);
393 return CI1->getValue().slt(CI2->getValue());
Nate Begemaned728c12006-03-27 01:32:24 +0000394 }
395 };
Anton Korobeynikov915e6172007-04-04 21:14:49 +0000396
Anton Korobeynikov506eaf72007-04-09 12:31:58 +0000397 struct CaseBitsCmp {
398 bool operator () (const CaseBits& C1, const CaseBits& C2) {
399 return C1.Bits > C2.Bits;
400 }
401 };
402
Anton Korobeynikov915e6172007-04-04 21:14:49 +0000403 unsigned Clusterify(CaseVector& Cases, const SwitchInst &SI);
Nate Begemaned728c12006-03-27 01:32:24 +0000404
Chris Lattner7a60d912005-01-07 07:47:53 +0000405public:
406 // TLI - This is information that describes the available target features we
407 // need for lowering. This indicates when operations are unavailable,
408 // implemented with a libcall, etc.
409 TargetLowering &TLI;
410 SelectionDAG &DAG;
Owen Anderson20a631f2006-05-03 01:29:57 +0000411 const TargetData *TD;
Chris Lattner7a60d912005-01-07 07:47:53 +0000412
Nate Begemaned728c12006-03-27 01:32:24 +0000413 /// SwitchCases - Vector of CaseBlock structures used to communicate
414 /// SwitchInst code generation information.
415 std::vector<SelectionDAGISel::CaseBlock> SwitchCases;
Anton Korobeynikov70378262007-03-25 15:07:15 +0000416 /// JTCases - Vector of JumpTable structures used to communicate
417 /// SwitchInst code generation information.
418 std::vector<SelectionDAGISel::JumpTableBlock> JTCases;
Anton Korobeynikov506eaf72007-04-09 12:31:58 +0000419 std::vector<SelectionDAGISel::BitTestBlock> BitTestCases;
Nate Begemaned728c12006-03-27 01:32:24 +0000420
Chris Lattner7a60d912005-01-07 07:47:53 +0000421 /// FuncInfo - Information about the function as a whole.
422 ///
423 FunctionLoweringInfo &FuncInfo;
424
425 SelectionDAGLowering(SelectionDAG &dag, TargetLowering &tli,
Misha Brukman835702a2005-04-21 22:36:52 +0000426 FunctionLoweringInfo &funcinfo)
Chris Lattner7a60d912005-01-07 07:47:53 +0000427 : TLI(tli), DAG(dag), TD(DAG.getTarget().getTargetData()),
Anton Korobeynikov70378262007-03-25 15:07:15 +0000428 FuncInfo(funcinfo) {
Chris Lattner7a60d912005-01-07 07:47:53 +0000429 }
430
Chris Lattner4108bb02005-01-17 19:43:36 +0000431 /// getRoot - Return the current virtual root of the Selection DAG.
432 ///
433 SDOperand getRoot() {
Chris Lattner4d9651c2005-01-17 22:19:26 +0000434 if (PendingLoads.empty())
435 return DAG.getRoot();
Misha Brukman835702a2005-04-21 22:36:52 +0000436
Chris Lattner4d9651c2005-01-17 22:19:26 +0000437 if (PendingLoads.size() == 1) {
438 SDOperand Root = PendingLoads[0];
439 DAG.setRoot(Root);
440 PendingLoads.clear();
441 return Root;
442 }
443
444 // Otherwise, we have to make a token factor node.
Chris Lattnerc24a1d32006-08-08 02:23:42 +0000445 SDOperand Root = DAG.getNode(ISD::TokenFactor, MVT::Other,
446 &PendingLoads[0], PendingLoads.size());
Chris Lattner4d9651c2005-01-17 22:19:26 +0000447 PendingLoads.clear();
448 DAG.setRoot(Root);
449 return Root;
Chris Lattner4108bb02005-01-17 19:43:36 +0000450 }
451
Chris Lattnered0110b2006-10-27 21:36:01 +0000452 SDOperand CopyValueToVirtualRegister(Value *V, unsigned Reg);
453
Chris Lattner7a60d912005-01-07 07:47:53 +0000454 void visit(Instruction &I) { visit(I.getOpcode(), I); }
455
456 void visit(unsigned Opcode, User &I) {
Chris Lattnerd5e604d2006-11-10 04:41:34 +0000457 // Note: this doesn't use InstVisitor, because it has to work with
458 // ConstantExpr's in addition to instructions.
Chris Lattner7a60d912005-01-07 07:47:53 +0000459 switch (Opcode) {
460 default: assert(0 && "Unknown instruction type encountered!");
461 abort();
462 // Build the switch statement using the Instruction.def file.
463#define HANDLE_INST(NUM, OPCODE, CLASS) \
464 case Instruction::OPCODE:return visit##OPCODE((CLASS&)I);
465#include "llvm/Instruction.def"
466 }
467 }
468
469 void setCurrentBasicBlock(MachineBasicBlock *MBB) { CurMBB = MBB; }
470
Chris Lattner4024c002006-03-15 22:19:46 +0000471 SDOperand getLoadFrom(const Type *Ty, SDOperand Ptr,
Evan Chenge71fe34d2006-10-09 20:57:25 +0000472 const Value *SV, SDOperand Root,
Christopher Lamb8af6d582007-04-22 23:15:30 +0000473 bool isVolatile, unsigned Alignment);
Chris Lattner7a60d912005-01-07 07:47:53 +0000474
475 SDOperand getIntPtrConstant(uint64_t Val) {
476 return DAG.getConstant(Val, TLI.getPointerTy());
477 }
478
Chris Lattner8471b152006-03-16 19:57:50 +0000479 SDOperand getValue(const Value *V);
Chris Lattner7a60d912005-01-07 07:47:53 +0000480
Chris Lattner79084302007-02-04 01:31:47 +0000481 void setValue(const Value *V, SDOperand NewN) {
Chris Lattner7a60d912005-01-07 07:47:53 +0000482 SDOperand &N = NodeMap[V];
483 assert(N.Val == 0 && "Already set a value for this node!");
Chris Lattner79084302007-02-04 01:31:47 +0000484 N = NewN;
Chris Lattner7a60d912005-01-07 07:47:53 +0000485 }
Chris Lattner1558fc62006-02-01 18:59:47 +0000486
Chris Lattner8cfd33b2007-04-30 21:11:17 +0000487 void GetRegistersForValue(AsmOperandInfo &OpInfo, bool HasEarlyClobber,
488 std::set<unsigned> &OutputRegs,
489 std::set<unsigned> &InputRegs);
Nate Begemaned728c12006-03-27 01:32:24 +0000490
Chris Lattnered0110b2006-10-27 21:36:01 +0000491 void FindMergedConditions(Value *Cond, MachineBasicBlock *TBB,
492 MachineBasicBlock *FBB, MachineBasicBlock *CurBB,
493 unsigned Opc);
Chris Lattner84a03502006-10-27 23:50:33 +0000494 bool isExportableFromCurrentBlock(Value *V, const BasicBlock *FromBB);
Chris Lattnered0110b2006-10-27 21:36:01 +0000495 void ExportFromCurrentBlock(Value *V);
Jim Laskey31fef782007-02-23 21:45:01 +0000496 void LowerCallTo(Instruction &I,
497 const Type *CalledValueTy, unsigned CallingConv,
Anton Korobeynikov3b327822007-05-23 11:08:31 +0000498 bool IsTailCall, SDOperand Callee, unsigned OpIdx,
499 MachineBasicBlock *LandingPad = NULL);
500
Chris Lattner7a60d912005-01-07 07:47:53 +0000501 // Terminator instructions.
502 void visitRet(ReturnInst &I);
503 void visitBr(BranchInst &I);
Nate Begemaned728c12006-03-27 01:32:24 +0000504 void visitSwitch(SwitchInst &I);
Chris Lattner7a60d912005-01-07 07:47:53 +0000505 void visitUnreachable(UnreachableInst &I) { /* noop */ }
506
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +0000507 // Helpers for visitSwitch
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +0000508 bool handleSmallSwitchRange(CaseRec& CR,
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +0000509 CaseRecVector& WorkList,
510 Value* SV,
511 MachineBasicBlock* Default);
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +0000512 bool handleJTSwitchCase(CaseRec& CR,
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +0000513 CaseRecVector& WorkList,
514 Value* SV,
515 MachineBasicBlock* Default);
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +0000516 bool handleBTSplitSwitchCase(CaseRec& CR,
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +0000517 CaseRecVector& WorkList,
518 Value* SV,
519 MachineBasicBlock* Default);
Anton Korobeynikov506eaf72007-04-09 12:31:58 +0000520 bool handleBitTestsSwitchCase(CaseRec& CR,
521 CaseRecVector& WorkList,
522 Value* SV,
523 MachineBasicBlock* Default);
Nate Begemaned728c12006-03-27 01:32:24 +0000524 void visitSwitchCase(SelectionDAGISel::CaseBlock &CB);
Anton Korobeynikov506eaf72007-04-09 12:31:58 +0000525 void visitBitTestHeader(SelectionDAGISel::BitTestBlock &B);
526 void visitBitTestCase(MachineBasicBlock* NextMBB,
527 unsigned Reg,
528 SelectionDAGISel::BitTestCase &B);
Nate Begeman4ca2ea52006-04-22 18:53:45 +0000529 void visitJumpTable(SelectionDAGISel::JumpTable &JT);
Anton Korobeynikov70378262007-03-25 15:07:15 +0000530 void visitJumpTableHeader(SelectionDAGISel::JumpTable &JT,
531 SelectionDAGISel::JumpTableHeader &JTH);
Nate Begemaned728c12006-03-27 01:32:24 +0000532
Chris Lattner7a60d912005-01-07 07:47:53 +0000533 // These all get lowered before this pass.
Jim Laskey4b37a4c2007-02-21 22:53:45 +0000534 void visitInvoke(InvokeInst &I);
535 void visitUnwind(UnwindInst &I);
Chris Lattner7a60d912005-01-07 07:47:53 +0000536
Dan Gohmana8665142007-06-25 16:23:39 +0000537 void visitBinary(User &I, unsigned OpCode);
Nate Begeman127321b2005-11-18 07:42:56 +0000538 void visitShift(User &I, unsigned Opcode);
Nate Begemanb2e089c2005-11-19 00:36:38 +0000539 void visitAdd(User &I) {
Dan Gohmana8665142007-06-25 16:23:39 +0000540 if (I.getType()->isFPOrFPVector())
541 visitBinary(I, ISD::FADD);
Reid Spencer7e80b0b2006-10-26 06:15:43 +0000542 else
Dan Gohmana8665142007-06-25 16:23:39 +0000543 visitBinary(I, ISD::ADD);
Chris Lattner6f3b5772005-09-28 22:28:18 +0000544 }
Chris Lattnerf68fd0b2005-04-02 05:04:50 +0000545 void visitSub(User &I);
Reid Spencer7e80b0b2006-10-26 06:15:43 +0000546 void visitMul(User &I) {
Dan Gohmana8665142007-06-25 16:23:39 +0000547 if (I.getType()->isFPOrFPVector())
548 visitBinary(I, ISD::FMUL);
Reid Spencer7e80b0b2006-10-26 06:15:43 +0000549 else
Dan Gohmana8665142007-06-25 16:23:39 +0000550 visitBinary(I, ISD::MUL);
Chris Lattner6f3b5772005-09-28 22:28:18 +0000551 }
Dan Gohmana8665142007-06-25 16:23:39 +0000552 void visitURem(User &I) { visitBinary(I, ISD::UREM); }
553 void visitSRem(User &I) { visitBinary(I, ISD::SREM); }
554 void visitFRem(User &I) { visitBinary(I, ISD::FREM); }
555 void visitUDiv(User &I) { visitBinary(I, ISD::UDIV); }
556 void visitSDiv(User &I) { visitBinary(I, ISD::SDIV); }
557 void visitFDiv(User &I) { visitBinary(I, ISD::FDIV); }
558 void visitAnd (User &I) { visitBinary(I, ISD::AND); }
559 void visitOr (User &I) { visitBinary(I, ISD::OR); }
560 void visitXor (User &I) { visitBinary(I, ISD::XOR); }
Reid Spencer2eadb532007-01-21 00:29:26 +0000561 void visitShl (User &I) { visitShift(I, ISD::SHL); }
Reid Spencerfdff9382006-11-08 06:47:33 +0000562 void visitLShr(User &I) { visitShift(I, ISD::SRL); }
563 void visitAShr(User &I) { visitShift(I, ISD::SRA); }
Reid Spencerd9436b62006-11-20 01:22:35 +0000564 void visitICmp(User &I);
565 void visitFCmp(User &I);
Reid Spencer6c38f0b2006-11-27 01:05:10 +0000566 // Visit the conversion instructions
567 void visitTrunc(User &I);
568 void visitZExt(User &I);
569 void visitSExt(User &I);
570 void visitFPTrunc(User &I);
571 void visitFPExt(User &I);
572 void visitFPToUI(User &I);
573 void visitFPToSI(User &I);
574 void visitUIToFP(User &I);
575 void visitSIToFP(User &I);
576 void visitPtrToInt(User &I);
577 void visitIntToPtr(User &I);
578 void visitBitCast(User &I);
Chris Lattner7a60d912005-01-07 07:47:53 +0000579
Chris Lattner67271862006-03-29 00:11:43 +0000580 void visitExtractElement(User &I);
581 void visitInsertElement(User &I);
Chris Lattner098c01e2006-04-08 04:15:24 +0000582 void visitShuffleVector(User &I);
Chris Lattner32206f52006-03-18 01:44:44 +0000583
Chris Lattner7a60d912005-01-07 07:47:53 +0000584 void visitGetElementPtr(User &I);
Chris Lattner7a60d912005-01-07 07:47:53 +0000585 void visitSelect(User &I);
Chris Lattner7a60d912005-01-07 07:47:53 +0000586
587 void visitMalloc(MallocInst &I);
588 void visitFree(FreeInst &I);
589 void visitAlloca(AllocaInst &I);
590 void visitLoad(LoadInst &I);
591 void visitStore(StoreInst &I);
592 void visitPHI(PHINode &I) { } // PHI nodes are handled specially.
593 void visitCall(CallInst &I);
Chris Lattner476e67b2006-01-26 22:24:51 +0000594 void visitInlineAsm(CallInst &I);
Chris Lattnercd6f0f42005-11-09 19:44:01 +0000595 const char *visitIntrinsicCall(CallInst &I, unsigned Intrinsic);
Chris Lattnerd96b09a2006-03-24 02:22:33 +0000596 void visitTargetIntrinsic(CallInst &I, unsigned Intrinsic);
Chris Lattner7a60d912005-01-07 07:47:53 +0000597
Chris Lattner7a60d912005-01-07 07:47:53 +0000598 void visitVAStart(CallInst &I);
Chris Lattner7a60d912005-01-07 07:47:53 +0000599 void visitVAArg(VAArgInst &I);
600 void visitVAEnd(CallInst &I);
601 void visitVACopy(CallInst &I);
Chris Lattner7a60d912005-01-07 07:47:53 +0000602
Chris Lattner875def92005-01-11 05:56:49 +0000603 void visitMemIntrinsic(CallInst &I, unsigned Op);
Chris Lattner7a60d912005-01-07 07:47:53 +0000604
605 void visitUserOp1(Instruction &I) {
606 assert(0 && "UserOp1 should not exist at instruction selection time!");
607 abort();
608 }
609 void visitUserOp2(Instruction &I) {
610 assert(0 && "UserOp2 should not exist at instruction selection time!");
611 abort();
612 }
613};
614} // end namespace llvm
615
Dan Gohmand258e802007-07-05 20:12:34 +0000616
617/// getCopyFromParts - Create a value that contains the
618/// specified legal parts combined into the value they represent.
619static SDOperand getCopyFromParts(SelectionDAG &DAG,
620 const SDOperand *Parts,
621 unsigned NumParts,
622 MVT::ValueType PartVT,
623 MVT::ValueType ValueVT,
624 bool EndianOrder,
625 ISD::NodeType AssertOp = ISD::DELETED_NODE) {
626 if (!MVT::isVector(ValueVT) || NumParts == 1) {
627 SDOperand Val = Parts[0];
628
629 // If the value was expanded, copy from the top part.
630 if (NumParts > 1) {
631 assert(NumParts == 2 &&
632 "Cannot expand to more than 2 elts yet!");
633 SDOperand Hi = Parts[1];
634 if (EndianOrder && !DAG.getTargetLoweringInfo().isLittleEndian())
635 std::swap(Val, Hi);
636 return DAG.getNode(ISD::BUILD_PAIR, ValueVT, Val, Hi);
637 }
638
639 // Otherwise, if the value was promoted or extended, truncate it to the
640 // appropriate type.
641 if (PartVT == ValueVT)
642 return Val;
643
644 if (MVT::isVector(PartVT)) {
645 assert(MVT::isVector(ValueVT) && "Unknown vector conversion!");
646 return DAG.getNode(ISD::BIT_CONVERT, PartVT, Val);
647 }
648
649 if (MVT::isInteger(PartVT) &&
650 MVT::isInteger(ValueVT)) {
651 if (ValueVT < PartVT) {
652 // For a truncate, see if we have any information to
653 // indicate whether the truncated bits will always be
654 // zero or sign-extension.
655 if (AssertOp != ISD::DELETED_NODE)
656 Val = DAG.getNode(AssertOp, PartVT, Val,
657 DAG.getValueType(ValueVT));
658 return DAG.getNode(ISD::TRUNCATE, ValueVT, Val);
659 } else {
660 return DAG.getNode(ISD::ANY_EXTEND, ValueVT, Val);
661 }
662 }
663
664 if (MVT::isFloatingPoint(PartVT) &&
665 MVT::isFloatingPoint(ValueVT))
666 return DAG.getNode(ISD::FP_ROUND, ValueVT, Val);
667
668 if (MVT::getSizeInBits(PartVT) ==
669 MVT::getSizeInBits(ValueVT))
670 return DAG.getNode(ISD::BIT_CONVERT, ValueVT, Val);
671
672 assert(0 && "Unknown mismatch!");
673 }
674
675 // Handle a multi-element vector.
676 MVT::ValueType IntermediateVT, RegisterVT;
677 unsigned NumIntermediates;
678 unsigned NumRegs =
679 DAG.getTargetLoweringInfo()
680 .getVectorTypeBreakdown(ValueVT, IntermediateVT, NumIntermediates,
681 RegisterVT);
682
683 assert(NumRegs == NumParts && "Part count doesn't match vector breakdown!");
684 assert(RegisterVT == PartVT && "Part type doesn't match vector breakdown!");
685 assert(RegisterVT == Parts[0].getValueType() &&
686 "Part type doesn't match part!");
687
688 // Assemble the parts into intermediate operands.
689 SmallVector<SDOperand, 8> Ops(NumIntermediates);
690 if (NumIntermediates == NumParts) {
691 // If the register was not expanded, truncate or copy the value,
692 // as appropriate.
693 for (unsigned i = 0; i != NumParts; ++i)
694 Ops[i] = getCopyFromParts(DAG, &Parts[i], 1,
695 PartVT, IntermediateVT, EndianOrder);
696 } else if (NumParts > 0) {
697 // If the intermediate type was expanded, build the intermediate operands
698 // from the parts.
699 assert(NumIntermediates % NumParts == 0 &&
700 "Must expand into a divisible number of parts!");
701 unsigned Factor = NumIntermediates / NumParts;
702 for (unsigned i = 0; i != NumIntermediates; ++i)
703 Ops[i] = getCopyFromParts(DAG, &Parts[i * Factor], Factor,
704 PartVT, IntermediateVT, EndianOrder);
705 }
706
707 // Build a vector with BUILD_VECTOR or CONCAT_VECTORS from the intermediate
708 // operands.
709 return DAG.getNode(MVT::isVector(IntermediateVT) ?
710 ISD::CONCAT_VECTORS :
711 ISD::BUILD_VECTOR,
712 ValueVT, &Ops[0], NumParts);
713}
714
715/// getCopyToParts - Create a series of nodes that contain the
716/// specified value split into legal parts.
717static void getCopyToParts(SelectionDAG &DAG,
718 SDOperand Val,
719 SDOperand *Parts,
720 unsigned NumParts,
721 MVT::ValueType PartVT,
722 bool EndianOrder) {
723 MVT::ValueType ValueVT = Val.getValueType();
724
725 if (!MVT::isVector(ValueVT) || NumParts == 1) {
726 // If the value was expanded, copy from the parts.
727 if (NumParts > 1) {
728 for (unsigned i = 0; i != NumParts; ++i)
729 Parts[i] = DAG.getNode(ISD::EXTRACT_ELEMENT, PartVT, Val,
730 DAG.getConstant(i, MVT::i32));
731 if (EndianOrder && !DAG.getTargetLoweringInfo().isLittleEndian())
732 std::reverse(Parts, Parts + NumParts);
733 return;
734 }
735
736 // If there is a single part and the types differ, this must be
737 // a promotion.
738 if (PartVT != ValueVT) {
739 if (MVT::isVector(PartVT)) {
740 assert(MVT::isVector(ValueVT) &&
741 "Not a vector-vector cast?");
742 Val = DAG.getNode(ISD::BIT_CONVERT, PartVT, Val);
743 } else if (MVT::isInteger(PartVT) && MVT::isInteger(ValueVT)) {
744 if (PartVT < ValueVT)
745 Val = DAG.getNode(ISD::TRUNCATE, PartVT, Val);
746 else
747 Val = DAG.getNode(ISD::ANY_EXTEND, PartVT, Val);
748 } else if (MVT::isFloatingPoint(PartVT) &&
749 MVT::isFloatingPoint(ValueVT)) {
750 Val = DAG.getNode(ISD::FP_EXTEND, PartVT, Val);
751 } else if (MVT::getSizeInBits(PartVT) ==
752 MVT::getSizeInBits(ValueVT)) {
753 Val = DAG.getNode(ISD::BIT_CONVERT, PartVT, Val);
754 } else {
755 assert(0 && "Unknown mismatch!");
756 }
757 }
758 Parts[0] = Val;
759 return;
760 }
761
762 // Handle a multi-element vector.
763 MVT::ValueType IntermediateVT, RegisterVT;
764 unsigned NumIntermediates;
765 unsigned NumRegs =
766 DAG.getTargetLoweringInfo()
767 .getVectorTypeBreakdown(ValueVT, IntermediateVT, NumIntermediates,
768 RegisterVT);
769 unsigned NumElements = MVT::getVectorNumElements(ValueVT);
770
771 assert(NumRegs == NumParts && "Part count doesn't match vector breakdown!");
772 assert(RegisterVT == PartVT && "Part type doesn't match vector breakdown!");
773
774 // Split the vector into intermediate operands.
775 SmallVector<SDOperand, 8> Ops(NumIntermediates);
776 for (unsigned i = 0; i != NumIntermediates; ++i)
777 if (MVT::isVector(IntermediateVT))
778 Ops[i] = DAG.getNode(ISD::EXTRACT_SUBVECTOR,
779 IntermediateVT, Val,
780 DAG.getConstant(i * (NumElements / NumIntermediates),
781 MVT::i32));
782 else
783 Ops[i] = DAG.getNode(ISD::EXTRACT_VECTOR_ELT,
784 IntermediateVT, Val,
785 DAG.getConstant(i, MVT::i32));
786
787 // Split the intermediate operands into legal parts.
788 if (NumParts == NumIntermediates) {
789 // If the register was not expanded, promote or copy the value,
790 // as appropriate.
791 for (unsigned i = 0; i != NumParts; ++i)
792 getCopyToParts(DAG, Ops[i], &Parts[i], 1, PartVT, EndianOrder);
793 } else if (NumParts > 0) {
794 // If the intermediate type was expanded, split each the value into
795 // legal parts.
796 assert(NumParts % NumIntermediates == 0 &&
797 "Must expand into a divisible number of parts!");
798 unsigned Factor = NumParts / NumIntermediates;
799 for (unsigned i = 0; i != NumIntermediates; ++i)
800 getCopyToParts(DAG, Ops[i], &Parts[i * Factor], Factor, PartVT, EndianOrder);
801 }
802}
803
804
Chris Lattner8471b152006-03-16 19:57:50 +0000805SDOperand SelectionDAGLowering::getValue(const Value *V) {
806 SDOperand &N = NodeMap[V];
807 if (N.Val) return N;
808
809 const Type *VTy = V->getType();
810 MVT::ValueType VT = TLI.getValueType(VTy);
811 if (Constant *C = const_cast<Constant*>(dyn_cast<Constant>(V))) {
812 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(C)) {
813 visit(CE->getOpcode(), *CE);
Chris Lattner79084302007-02-04 01:31:47 +0000814 SDOperand N1 = NodeMap[V];
815 assert(N1.Val && "visit didn't populate the ValueMap!");
816 return N1;
Chris Lattner8471b152006-03-16 19:57:50 +0000817 } else if (GlobalValue *GV = dyn_cast<GlobalValue>(C)) {
818 return N = DAG.getGlobalAddress(GV, VT);
819 } else if (isa<ConstantPointerNull>(C)) {
820 return N = DAG.getConstant(0, TLI.getPointerTy());
821 } else if (isa<UndefValue>(C)) {
Reid Spencerd84d35b2007-02-15 02:26:10 +0000822 if (!isa<VectorType>(VTy))
Chris Lattnerc16b05e2006-03-19 00:20:20 +0000823 return N = DAG.getNode(ISD::UNDEF, VT);
824
Dan Gohmana8665142007-06-25 16:23:39 +0000825 // Create a BUILD_VECTOR of undef nodes.
Reid Spencerd84d35b2007-02-15 02:26:10 +0000826 const VectorType *PTy = cast<VectorType>(VTy);
Chris Lattnerc16b05e2006-03-19 00:20:20 +0000827 unsigned NumElements = PTy->getNumElements();
828 MVT::ValueType PVT = TLI.getValueType(PTy->getElementType());
829
Chris Lattnerc24a1d32006-08-08 02:23:42 +0000830 SmallVector<SDOperand, 8> Ops;
Chris Lattnerc16b05e2006-03-19 00:20:20 +0000831 Ops.assign(NumElements, DAG.getNode(ISD::UNDEF, PVT));
832
833 // Create a VConstant node with generic Vector type.
Dan Gohmana8665142007-06-25 16:23:39 +0000834 MVT::ValueType VT = MVT::getVectorType(PVT, NumElements);
835 return N = DAG.getNode(ISD::BUILD_VECTOR, VT,
Chris Lattnerc24a1d32006-08-08 02:23:42 +0000836 &Ops[0], Ops.size());
Chris Lattner8471b152006-03-16 19:57:50 +0000837 } else if (ConstantFP *CFP = dyn_cast<ConstantFP>(C)) {
838 return N = DAG.getConstantFP(CFP->getValue(), VT);
Reid Spencerd84d35b2007-02-15 02:26:10 +0000839 } else if (const VectorType *PTy = dyn_cast<VectorType>(VTy)) {
Chris Lattner8471b152006-03-16 19:57:50 +0000840 unsigned NumElements = PTy->getNumElements();
841 MVT::ValueType PVT = TLI.getValueType(PTy->getElementType());
Chris Lattner8471b152006-03-16 19:57:50 +0000842
843 // Now that we know the number and type of the elements, push a
844 // Constant or ConstantFP node onto the ops list for each element of
845 // the packed constant.
Chris Lattnerc24a1d32006-08-08 02:23:42 +0000846 SmallVector<SDOperand, 8> Ops;
Reid Spencerd84d35b2007-02-15 02:26:10 +0000847 if (ConstantVector *CP = dyn_cast<ConstantVector>(C)) {
Chris Lattner67271862006-03-29 00:11:43 +0000848 for (unsigned i = 0; i != NumElements; ++i)
849 Ops.push_back(getValue(CP->getOperand(i)));
Chris Lattner8471b152006-03-16 19:57:50 +0000850 } else {
851 assert(isa<ConstantAggregateZero>(C) && "Unknown packed constant!");
852 SDOperand Op;
853 if (MVT::isFloatingPoint(PVT))
854 Op = DAG.getConstantFP(0, PVT);
855 else
856 Op = DAG.getConstant(0, PVT);
857 Ops.assign(NumElements, Op);
858 }
859
Dan Gohmana8665142007-06-25 16:23:39 +0000860 // Create a BUILD_VECTOR node.
861 MVT::ValueType VT = MVT::getVectorType(PVT, NumElements);
862 return NodeMap[V] = DAG.getNode(ISD::BUILD_VECTOR, VT, &Ops[0],
Chris Lattner79084302007-02-04 01:31:47 +0000863 Ops.size());
Chris Lattner8471b152006-03-16 19:57:50 +0000864 } else {
865 // Canonicalize all constant ints to be unsigned.
Zhou Sheng75b871f2007-01-11 12:24:14 +0000866 return N = DAG.getConstant(cast<ConstantInt>(C)->getZExtValue(),VT);
Chris Lattner8471b152006-03-16 19:57:50 +0000867 }
868 }
869
870 if (const AllocaInst *AI = dyn_cast<AllocaInst>(V)) {
871 std::map<const AllocaInst*, int>::iterator SI =
872 FuncInfo.StaticAllocaMap.find(AI);
873 if (SI != FuncInfo.StaticAllocaMap.end())
874 return DAG.getFrameIndex(SI->second, TLI.getPointerTy());
875 }
876
Chris Lattner8c504cf2007-02-25 18:40:32 +0000877 unsigned InReg = FuncInfo.ValueMap[V];
878 assert(InReg && "Value not in map!");
Chris Lattner8471b152006-03-16 19:57:50 +0000879
Dan Gohman78677932007-06-28 23:29:44 +0000880 MVT::ValueType RegisterVT = TLI.getRegisterType(VT);
881 unsigned NumRegs = TLI.getNumRegisters(VT);
Chris Lattner5fe1f542006-03-31 02:06:56 +0000882
Dan Gohman78677932007-06-28 23:29:44 +0000883 std::vector<unsigned> Regs(NumRegs);
884 for (unsigned i = 0; i != NumRegs; ++i)
885 Regs[i] = InReg + i;
886
887 RegsForValue RFV(Regs, RegisterVT, VT);
888 SDOperand Chain = DAG.getEntryNode();
889
890 return RFV.getCopyFromRegs(DAG, Chain, NULL);
Chris Lattner8471b152006-03-16 19:57:50 +0000891}
892
893
Chris Lattner7a60d912005-01-07 07:47:53 +0000894void SelectionDAGLowering::visitRet(ReturnInst &I) {
895 if (I.getNumOperands() == 0) {
Chris Lattner4108bb02005-01-17 19:43:36 +0000896 DAG.setRoot(DAG.getNode(ISD::RET, MVT::Other, getRoot()));
Chris Lattner7a60d912005-01-07 07:47:53 +0000897 return;
898 }
Chris Lattnerc24a1d32006-08-08 02:23:42 +0000899 SmallVector<SDOperand, 8> NewValues;
Nate Begeman8c47c3a2006-01-27 21:09:22 +0000900 NewValues.push_back(getRoot());
901 for (unsigned i = 0, e = I.getNumOperands(); i != e; ++i) {
902 SDOperand RetOp = getValue(I.getOperand(i));
903
904 // If this is an integer return value, we need to promote it ourselves to
Dan Gohmand258e802007-07-05 20:12:34 +0000905 // the full width of a register, since getCopyToParts and Legalize will use
906 // ANY_EXTEND rather than sign/zero.
Evan Chenga2e99532006-05-26 23:09:09 +0000907 // FIXME: C calling convention requires the return type to be promoted to
908 // at least 32-bit. But this is not necessary for non-C calling conventions.
Nate Begeman8c47c3a2006-01-27 21:09:22 +0000909 if (MVT::isInteger(RetOp.getValueType()) &&
910 RetOp.getValueType() < MVT::i64) {
911 MVT::ValueType TmpVT;
912 if (TLI.getTypeAction(MVT::i32) == TargetLowering::Promote)
913 TmpVT = TLI.getTypeToTransformTo(MVT::i32);
914 else
915 TmpVT = MVT::i32;
Reid Spencere63b6512006-12-31 05:55:36 +0000916 const FunctionType *FTy = I.getParent()->getParent()->getFunctionType();
Reid Spencer71b79e32007-04-09 06:17:21 +0000917 const ParamAttrsList *Attrs = FTy->getParamAttrs();
Reid Spencere6f81872007-01-03 16:49:33 +0000918 ISD::NodeType ExtendKind = ISD::ANY_EXTEND;
Reid Spencera472f662007-04-11 02:44:20 +0000919 if (Attrs && Attrs->paramHasAttr(0, ParamAttr::SExt))
Reid Spencer0917adf2007-01-03 04:25:33 +0000920 ExtendKind = ISD::SIGN_EXTEND;
Reid Spencera472f662007-04-11 02:44:20 +0000921 if (Attrs && Attrs->paramHasAttr(0, ParamAttr::ZExt))
Reid Spencere63b6512006-12-31 05:55:36 +0000922 ExtendKind = ISD::ZERO_EXTEND;
Reid Spencer2a34b912007-01-03 05:03:05 +0000923 RetOp = DAG.getNode(ExtendKind, TmpVT, RetOp);
Dan Gohmand258e802007-07-05 20:12:34 +0000924 NewValues.push_back(RetOp);
925 NewValues.push_back(DAG.getConstant(false, MVT::i32));
926 } else {
927 MVT::ValueType VT = RetOp.getValueType();
928 unsigned NumParts = TLI.getNumRegisters(VT);
929 MVT::ValueType PartVT = TLI.getRegisterType(VT);
930 SmallVector<SDOperand, 4> Parts(NumParts);
931 getCopyToParts(DAG, RetOp, &Parts[0], NumParts, PartVT, true);
932 for (unsigned i = 0; i < NumParts; ++i) {
933 NewValues.push_back(Parts[i]);
934 NewValues.push_back(DAG.getConstant(false, MVT::i32));
935 }
Nate Begeman8c47c3a2006-01-27 21:09:22 +0000936 }
Chris Lattner7a60d912005-01-07 07:47:53 +0000937 }
Chris Lattnerc24a1d32006-08-08 02:23:42 +0000938 DAG.setRoot(DAG.getNode(ISD::RET, MVT::Other,
939 &NewValues[0], NewValues.size()));
Chris Lattner7a60d912005-01-07 07:47:53 +0000940}
941
Chris Lattnered0110b2006-10-27 21:36:01 +0000942/// ExportFromCurrentBlock - If this condition isn't known to be exported from
943/// the current basic block, add it to ValueMap now so that we'll get a
944/// CopyTo/FromReg.
945void SelectionDAGLowering::ExportFromCurrentBlock(Value *V) {
946 // No need to export constants.
947 if (!isa<Instruction>(V) && !isa<Argument>(V)) return;
948
949 // Already exported?
950 if (FuncInfo.isExportedInst(V)) return;
951
952 unsigned Reg = FuncInfo.InitializeRegForValue(V);
953 PendingLoads.push_back(CopyValueToVirtualRegister(V, Reg));
954}
955
Chris Lattner84a03502006-10-27 23:50:33 +0000956bool SelectionDAGLowering::isExportableFromCurrentBlock(Value *V,
957 const BasicBlock *FromBB) {
958 // The operands of the setcc have to be in this block. We don't know
959 // how to export them from some other block.
960 if (Instruction *VI = dyn_cast<Instruction>(V)) {
961 // Can export from current BB.
962 if (VI->getParent() == FromBB)
963 return true;
964
965 // Is already exported, noop.
966 return FuncInfo.isExportedInst(V);
967 }
968
969 // If this is an argument, we can export it if the BB is the entry block or
970 // if it is already exported.
971 if (isa<Argument>(V)) {
972 if (FromBB == &FromBB->getParent()->getEntryBlock())
973 return true;
974
975 // Otherwise, can only export this if it is already exported.
976 return FuncInfo.isExportedInst(V);
977 }
978
979 // Otherwise, constants can always be exported.
980 return true;
981}
982
Chris Lattnere60ae822006-10-29 21:01:20 +0000983static bool InBlock(const Value *V, const BasicBlock *BB) {
984 if (const Instruction *I = dyn_cast<Instruction>(V))
985 return I->getParent() == BB;
986 return true;
987}
988
Chris Lattnered0110b2006-10-27 21:36:01 +0000989/// FindMergedConditions - If Cond is an expression like
990void SelectionDAGLowering::FindMergedConditions(Value *Cond,
991 MachineBasicBlock *TBB,
992 MachineBasicBlock *FBB,
993 MachineBasicBlock *CurBB,
994 unsigned Opc) {
Chris Lattnered0110b2006-10-27 21:36:01 +0000995 // If this node is not part of the or/and tree, emit it as a branch.
Reid Spencer266e42b2006-12-23 06:05:41 +0000996 Instruction *BOp = dyn_cast<Instruction>(Cond);
Chris Lattnered0110b2006-10-27 21:36:01 +0000997
Reid Spencer266e42b2006-12-23 06:05:41 +0000998 if (!BOp || !(isa<BinaryOperator>(BOp) || isa<CmpInst>(BOp)) ||
999 (unsigned)BOp->getOpcode() != Opc || !BOp->hasOneUse() ||
Chris Lattnere60ae822006-10-29 21:01:20 +00001000 BOp->getParent() != CurBB->getBasicBlock() ||
1001 !InBlock(BOp->getOperand(0), CurBB->getBasicBlock()) ||
1002 !InBlock(BOp->getOperand(1), CurBB->getBasicBlock())) {
Chris Lattnered0110b2006-10-27 21:36:01 +00001003 const BasicBlock *BB = CurBB->getBasicBlock();
1004
Reid Spencer266e42b2006-12-23 06:05:41 +00001005 // If the leaf of the tree is a comparison, merge the condition into
1006 // the caseblock.
1007 if ((isa<ICmpInst>(Cond) || isa<FCmpInst>(Cond)) &&
1008 // The operands of the cmp have to be in this block. We don't know
Chris Lattnerf31b9ef2006-10-29 18:23:37 +00001009 // how to export them from some other block. If this is the first block
1010 // of the sequence, no exporting is needed.
1011 (CurBB == CurMBB ||
1012 (isExportableFromCurrentBlock(BOp->getOperand(0), BB) &&
1013 isExportableFromCurrentBlock(BOp->getOperand(1), BB)))) {
Reid Spencer266e42b2006-12-23 06:05:41 +00001014 BOp = cast<Instruction>(Cond);
1015 ISD::CondCode Condition;
1016 if (ICmpInst *IC = dyn_cast<ICmpInst>(Cond)) {
1017 switch (IC->getPredicate()) {
1018 default: assert(0 && "Unknown icmp predicate opcode!");
1019 case ICmpInst::ICMP_EQ: Condition = ISD::SETEQ; break;
1020 case ICmpInst::ICMP_NE: Condition = ISD::SETNE; break;
1021 case ICmpInst::ICMP_SLE: Condition = ISD::SETLE; break;
1022 case ICmpInst::ICMP_ULE: Condition = ISD::SETULE; break;
1023 case ICmpInst::ICMP_SGE: Condition = ISD::SETGE; break;
1024 case ICmpInst::ICMP_UGE: Condition = ISD::SETUGE; break;
1025 case ICmpInst::ICMP_SLT: Condition = ISD::SETLT; break;
1026 case ICmpInst::ICMP_ULT: Condition = ISD::SETULT; break;
1027 case ICmpInst::ICMP_SGT: Condition = ISD::SETGT; break;
1028 case ICmpInst::ICMP_UGT: Condition = ISD::SETUGT; break;
1029 }
1030 } else if (FCmpInst *FC = dyn_cast<FCmpInst>(Cond)) {
1031 ISD::CondCode FPC, FOC;
1032 switch (FC->getPredicate()) {
1033 default: assert(0 && "Unknown fcmp predicate opcode!");
1034 case FCmpInst::FCMP_FALSE: FOC = FPC = ISD::SETFALSE; break;
1035 case FCmpInst::FCMP_OEQ: FOC = ISD::SETEQ; FPC = ISD::SETOEQ; break;
1036 case FCmpInst::FCMP_OGT: FOC = ISD::SETGT; FPC = ISD::SETOGT; break;
1037 case FCmpInst::FCMP_OGE: FOC = ISD::SETGE; FPC = ISD::SETOGE; break;
1038 case FCmpInst::FCMP_OLT: FOC = ISD::SETLT; FPC = ISD::SETOLT; break;
1039 case FCmpInst::FCMP_OLE: FOC = ISD::SETLE; FPC = ISD::SETOLE; break;
1040 case FCmpInst::FCMP_ONE: FOC = ISD::SETNE; FPC = ISD::SETONE; break;
1041 case FCmpInst::FCMP_ORD: FOC = ISD::SETEQ; FPC = ISD::SETO; break;
1042 case FCmpInst::FCMP_UNO: FOC = ISD::SETNE; FPC = ISD::SETUO; break;
1043 case FCmpInst::FCMP_UEQ: FOC = ISD::SETEQ; FPC = ISD::SETUEQ; break;
1044 case FCmpInst::FCMP_UGT: FOC = ISD::SETGT; FPC = ISD::SETUGT; break;
1045 case FCmpInst::FCMP_UGE: FOC = ISD::SETGE; FPC = ISD::SETUGE; break;
1046 case FCmpInst::FCMP_ULT: FOC = ISD::SETLT; FPC = ISD::SETULT; break;
1047 case FCmpInst::FCMP_ULE: FOC = ISD::SETLE; FPC = ISD::SETULE; break;
1048 case FCmpInst::FCMP_UNE: FOC = ISD::SETNE; FPC = ISD::SETUNE; break;
1049 case FCmpInst::FCMP_TRUE: FOC = FPC = ISD::SETTRUE; break;
1050 }
1051 if (FiniteOnlyFPMath())
1052 Condition = FOC;
1053 else
1054 Condition = FPC;
1055 } else {
Chris Lattner79084302007-02-04 01:31:47 +00001056 Condition = ISD::SETEQ; // silence warning.
Reid Spencer266e42b2006-12-23 06:05:41 +00001057 assert(0 && "Unknown compare instruction");
Chris Lattnered0110b2006-10-27 21:36:01 +00001058 }
1059
Chris Lattnered0110b2006-10-27 21:36:01 +00001060 SelectionDAGISel::CaseBlock CB(Condition, BOp->getOperand(0),
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001061 BOp->getOperand(1), NULL, TBB, FBB, CurBB);
Chris Lattnered0110b2006-10-27 21:36:01 +00001062 SwitchCases.push_back(CB);
1063 return;
1064 }
1065
1066 // Create a CaseBlock record representing this branch.
Zhou Sheng75b871f2007-01-11 12:24:14 +00001067 SelectionDAGISel::CaseBlock CB(ISD::SETEQ, Cond, ConstantInt::getTrue(),
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001068 NULL, TBB, FBB, CurBB);
Chris Lattnered0110b2006-10-27 21:36:01 +00001069 SwitchCases.push_back(CB);
Chris Lattnered0110b2006-10-27 21:36:01 +00001070 return;
1071 }
1072
Chris Lattnerf1b54fd2006-10-27 21:54:23 +00001073
1074 // Create TmpBB after CurBB.
Chris Lattnered0110b2006-10-27 21:36:01 +00001075 MachineFunction::iterator BBI = CurBB;
1076 MachineBasicBlock *TmpBB = new MachineBasicBlock(CurBB->getBasicBlock());
1077 CurBB->getParent()->getBasicBlockList().insert(++BBI, TmpBB);
1078
Chris Lattnerf1b54fd2006-10-27 21:54:23 +00001079 if (Opc == Instruction::Or) {
1080 // Codegen X | Y as:
1081 // jmp_if_X TBB
1082 // jmp TmpBB
1083 // TmpBB:
1084 // jmp_if_Y TBB
1085 // jmp FBB
1086 //
Chris Lattnered0110b2006-10-27 21:36:01 +00001087
Chris Lattnerf1b54fd2006-10-27 21:54:23 +00001088 // Emit the LHS condition.
1089 FindMergedConditions(BOp->getOperand(0), TBB, TmpBB, CurBB, Opc);
1090
1091 // Emit the RHS condition into TmpBB.
1092 FindMergedConditions(BOp->getOperand(1), TBB, FBB, TmpBB, Opc);
1093 } else {
1094 assert(Opc == Instruction::And && "Unknown merge op!");
1095 // Codegen X & Y as:
1096 // jmp_if_X TmpBB
1097 // jmp FBB
1098 // TmpBB:
1099 // jmp_if_Y TBB
1100 // jmp FBB
1101 //
1102 // This requires creation of TmpBB after CurBB.
1103
1104 // Emit the LHS condition.
1105 FindMergedConditions(BOp->getOperand(0), TmpBB, FBB, CurBB, Opc);
1106
1107 // Emit the RHS condition into TmpBB.
1108 FindMergedConditions(BOp->getOperand(1), TBB, FBB, TmpBB, Opc);
1109 }
Chris Lattnered0110b2006-10-27 21:36:01 +00001110}
1111
Chris Lattner427301f2006-10-31 22:37:42 +00001112/// If the set of cases should be emitted as a series of branches, return true.
1113/// If we should emit this as a bunch of and/or'd together conditions, return
1114/// false.
1115static bool
1116ShouldEmitAsBranches(const std::vector<SelectionDAGISel::CaseBlock> &Cases) {
1117 if (Cases.size() != 2) return true;
1118
Chris Lattnerfe43bef2006-10-31 23:06:00 +00001119 // If this is two comparisons of the same values or'd or and'd together, they
1120 // will get folded into a single comparison, so don't emit two blocks.
1121 if ((Cases[0].CmpLHS == Cases[1].CmpLHS &&
1122 Cases[0].CmpRHS == Cases[1].CmpRHS) ||
1123 (Cases[0].CmpRHS == Cases[1].CmpLHS &&
1124 Cases[0].CmpLHS == Cases[1].CmpRHS)) {
1125 return false;
1126 }
1127
Chris Lattner427301f2006-10-31 22:37:42 +00001128 return true;
1129}
1130
Chris Lattner7a60d912005-01-07 07:47:53 +00001131void SelectionDAGLowering::visitBr(BranchInst &I) {
1132 // Update machine-CFG edges.
1133 MachineBasicBlock *Succ0MBB = FuncInfo.MBBMap[I.getSuccessor(0)];
Chris Lattner7a60d912005-01-07 07:47:53 +00001134
1135 // Figure out which block is immediately after the current one.
1136 MachineBasicBlock *NextBlock = 0;
1137 MachineFunction::iterator BBI = CurMBB;
1138 if (++BBI != CurMBB->getParent()->end())
1139 NextBlock = BBI;
1140
1141 if (I.isUnconditional()) {
1142 // If this is not a fall-through branch, emit the branch.
1143 if (Succ0MBB != NextBlock)
Chris Lattner4108bb02005-01-17 19:43:36 +00001144 DAG.setRoot(DAG.getNode(ISD::BR, MVT::Other, getRoot(),
Misha Brukman77451162005-04-22 04:01:18 +00001145 DAG.getBasicBlock(Succ0MBB)));
Chris Lattner7a60d912005-01-07 07:47:53 +00001146
Chris Lattner963ddad2006-10-24 17:57:59 +00001147 // Update machine-CFG edges.
1148 CurMBB->addSuccessor(Succ0MBB);
1149
1150 return;
1151 }
1152
1153 // If this condition is one of the special cases we handle, do special stuff
1154 // now.
1155 Value *CondVal = I.getCondition();
Chris Lattner963ddad2006-10-24 17:57:59 +00001156 MachineBasicBlock *Succ1MBB = FuncInfo.MBBMap[I.getSuccessor(1)];
Chris Lattnered0110b2006-10-27 21:36:01 +00001157
1158 // If this is a series of conditions that are or'd or and'd together, emit
1159 // this as a sequence of branches instead of setcc's with and/or operations.
1160 // For example, instead of something like:
1161 // cmp A, B
1162 // C = seteq
1163 // cmp D, E
1164 // F = setle
1165 // or C, F
1166 // jnz foo
1167 // Emit:
1168 // cmp A, B
1169 // je foo
1170 // cmp D, E
1171 // jle foo
1172 //
1173 if (BinaryOperator *BOp = dyn_cast<BinaryOperator>(CondVal)) {
1174 if (BOp->hasOneUse() &&
Chris Lattnerf1b54fd2006-10-27 21:54:23 +00001175 (BOp->getOpcode() == Instruction::And ||
Chris Lattnered0110b2006-10-27 21:36:01 +00001176 BOp->getOpcode() == Instruction::Or)) {
1177 FindMergedConditions(BOp, Succ0MBB, Succ1MBB, CurMBB, BOp->getOpcode());
Chris Lattnerfe43bef2006-10-31 23:06:00 +00001178 // If the compares in later blocks need to use values not currently
1179 // exported from this block, export them now. This block should always
1180 // be the first entry.
1181 assert(SwitchCases[0].ThisBB == CurMBB && "Unexpected lowering!");
1182
Chris Lattner427301f2006-10-31 22:37:42 +00001183 // Allow some cases to be rejected.
1184 if (ShouldEmitAsBranches(SwitchCases)) {
Chris Lattner427301f2006-10-31 22:37:42 +00001185 for (unsigned i = 1, e = SwitchCases.size(); i != e; ++i) {
1186 ExportFromCurrentBlock(SwitchCases[i].CmpLHS);
1187 ExportFromCurrentBlock(SwitchCases[i].CmpRHS);
1188 }
1189
1190 // Emit the branch for this block.
1191 visitSwitchCase(SwitchCases[0]);
1192 SwitchCases.erase(SwitchCases.begin());
1193 return;
Chris Lattnerf31b9ef2006-10-29 18:23:37 +00001194 }
1195
Chris Lattnerfe43bef2006-10-31 23:06:00 +00001196 // Okay, we decided not to do this, remove any inserted MBB's and clear
1197 // SwitchCases.
1198 for (unsigned i = 1, e = SwitchCases.size(); i != e; ++i)
1199 CurMBB->getParent()->getBasicBlockList().erase(SwitchCases[i].ThisBB);
1200
Chris Lattner427301f2006-10-31 22:37:42 +00001201 SwitchCases.clear();
Chris Lattnered0110b2006-10-27 21:36:01 +00001202 }
1203 }
Chris Lattner61bcf912006-10-24 18:07:37 +00001204
1205 // Create a CaseBlock record representing this branch.
Zhou Sheng75b871f2007-01-11 12:24:14 +00001206 SelectionDAGISel::CaseBlock CB(ISD::SETEQ, CondVal, ConstantInt::getTrue(),
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001207 NULL, Succ0MBB, Succ1MBB, CurMBB);
Chris Lattner61bcf912006-10-24 18:07:37 +00001208 // Use visitSwitchCase to actually insert the fast branch sequence for this
1209 // cond branch.
1210 visitSwitchCase(CB);
Chris Lattner7a60d912005-01-07 07:47:53 +00001211}
1212
Nate Begemaned728c12006-03-27 01:32:24 +00001213/// visitSwitchCase - Emits the necessary code to represent a single node in
1214/// the binary search tree resulting from lowering a switch instruction.
1215void SelectionDAGLowering::visitSwitchCase(SelectionDAGISel::CaseBlock &CB) {
Chris Lattner963ddad2006-10-24 17:57:59 +00001216 SDOperand Cond;
1217 SDOperand CondLHS = getValue(CB.CmpLHS);
1218
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001219 // Build the setcc now.
1220 if (CB.CmpMHS == NULL) {
1221 // Fold "(X == true)" to X and "(X == false)" to !X to
1222 // handle common cases produced by branch lowering.
1223 if (CB.CmpRHS == ConstantInt::getTrue() && CB.CC == ISD::SETEQ)
1224 Cond = CondLHS;
1225 else if (CB.CmpRHS == ConstantInt::getFalse() && CB.CC == ISD::SETEQ) {
1226 SDOperand True = DAG.getConstant(1, CondLHS.getValueType());
1227 Cond = DAG.getNode(ISD::XOR, CondLHS.getValueType(), CondLHS, True);
1228 } else
1229 Cond = DAG.getSetCC(MVT::i1, CondLHS, getValue(CB.CmpRHS), CB.CC);
1230 } else {
1231 assert(CB.CC == ISD::SETLE && "Can handle only LE ranges now");
Anton Korobeynikov70378262007-03-25 15:07:15 +00001232
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001233 uint64_t Low = cast<ConstantInt>(CB.CmpLHS)->getSExtValue();
1234 uint64_t High = cast<ConstantInt>(CB.CmpRHS)->getSExtValue();
1235
1236 SDOperand CmpOp = getValue(CB.CmpMHS);
1237 MVT::ValueType VT = CmpOp.getValueType();
1238
1239 if (cast<ConstantInt>(CB.CmpLHS)->isMinValue(true)) {
1240 Cond = DAG.getSetCC(MVT::i1, CmpOp, DAG.getConstant(High, VT), ISD::SETLE);
1241 } else {
1242 SDOperand SUB = DAG.getNode(ISD::SUB, VT, CmpOp, DAG.getConstant(Low, VT));
1243 Cond = DAG.getSetCC(MVT::i1, SUB,
1244 DAG.getConstant(High-Low, VT), ISD::SETULE);
1245 }
1246
1247 }
1248
Nate Begemaned728c12006-03-27 01:32:24 +00001249 // Set NextBlock to be the MBB immediately after the current one, if any.
1250 // This is used to avoid emitting unnecessary branches to the next block.
1251 MachineBasicBlock *NextBlock = 0;
1252 MachineFunction::iterator BBI = CurMBB;
1253 if (++BBI != CurMBB->getParent()->end())
1254 NextBlock = BBI;
1255
1256 // If the lhs block is the next block, invert the condition so that we can
1257 // fall through to the lhs instead of the rhs block.
Chris Lattner963ddad2006-10-24 17:57:59 +00001258 if (CB.TrueBB == NextBlock) {
1259 std::swap(CB.TrueBB, CB.FalseBB);
Nate Begemaned728c12006-03-27 01:32:24 +00001260 SDOperand True = DAG.getConstant(1, Cond.getValueType());
1261 Cond = DAG.getNode(ISD::XOR, Cond.getValueType(), Cond, True);
1262 }
1263 SDOperand BrCond = DAG.getNode(ISD::BRCOND, MVT::Other, getRoot(), Cond,
Chris Lattner963ddad2006-10-24 17:57:59 +00001264 DAG.getBasicBlock(CB.TrueBB));
1265 if (CB.FalseBB == NextBlock)
Nate Begemaned728c12006-03-27 01:32:24 +00001266 DAG.setRoot(BrCond);
1267 else
1268 DAG.setRoot(DAG.getNode(ISD::BR, MVT::Other, BrCond,
Chris Lattner963ddad2006-10-24 17:57:59 +00001269 DAG.getBasicBlock(CB.FalseBB)));
Nate Begemaned728c12006-03-27 01:32:24 +00001270 // Update successor info
Chris Lattner963ddad2006-10-24 17:57:59 +00001271 CurMBB->addSuccessor(CB.TrueBB);
1272 CurMBB->addSuccessor(CB.FalseBB);
Nate Begemaned728c12006-03-27 01:32:24 +00001273}
1274
Anton Korobeynikov70378262007-03-25 15:07:15 +00001275/// visitJumpTable - Emit JumpTable node in the current MBB
Nate Begeman4ca2ea52006-04-22 18:53:45 +00001276void SelectionDAGLowering::visitJumpTable(SelectionDAGISel::JumpTable &JT) {
Nate Begeman4ca2ea52006-04-22 18:53:45 +00001277 // Emit the code for the jump table
Scott Michel4cfa6162007-04-24 01:24:20 +00001278 assert(JT.Reg != -1U && "Should lower JT Header first!");
Nate Begeman4ca2ea52006-04-22 18:53:45 +00001279 MVT::ValueType PTy = TLI.getPointerTy();
Evan Cheng84a28d42006-10-30 08:00:44 +00001280 SDOperand Index = DAG.getCopyFromReg(getRoot(), JT.Reg, PTy);
1281 SDOperand Table = DAG.getJumpTable(JT.JTI, PTy);
1282 DAG.setRoot(DAG.getNode(ISD::BR_JT, MVT::Other, Index.getValue(1),
1283 Table, Index));
1284 return;
Nate Begeman4ca2ea52006-04-22 18:53:45 +00001285}
1286
Anton Korobeynikov70378262007-03-25 15:07:15 +00001287/// visitJumpTableHeader - This function emits necessary code to produce index
1288/// in the JumpTable from switch case.
1289void SelectionDAGLowering::visitJumpTableHeader(SelectionDAGISel::JumpTable &JT,
1290 SelectionDAGISel::JumpTableHeader &JTH) {
1291 // Subtract the lowest switch case value from the value being switched on
1292 // and conditional branch to default mbb if the result is greater than the
1293 // difference between smallest and largest cases.
1294 SDOperand SwitchOp = getValue(JTH.SValue);
1295 MVT::ValueType VT = SwitchOp.getValueType();
1296 SDOperand SUB = DAG.getNode(ISD::SUB, VT, SwitchOp,
1297 DAG.getConstant(JTH.First, VT));
1298
1299 // The SDNode we just created, which holds the value being switched on
1300 // minus the the smallest case value, needs to be copied to a virtual
1301 // register so it can be used as an index into the jump table in a
1302 // subsequent basic block. This value may be smaller or larger than the
1303 // target's pointer type, and therefore require extension or truncating.
Dan Gohmana8665142007-06-25 16:23:39 +00001304 if (MVT::getSizeInBits(VT) > MVT::getSizeInBits(TLI.getPointerTy()))
Anton Korobeynikov70378262007-03-25 15:07:15 +00001305 SwitchOp = DAG.getNode(ISD::TRUNCATE, TLI.getPointerTy(), SUB);
1306 else
1307 SwitchOp = DAG.getNode(ISD::ZERO_EXTEND, TLI.getPointerTy(), SUB);
1308
1309 unsigned JumpTableReg = FuncInfo.MakeReg(TLI.getPointerTy());
1310 SDOperand CopyTo = DAG.getCopyToReg(getRoot(), JumpTableReg, SwitchOp);
1311 JT.Reg = JumpTableReg;
1312
1313 // Emit the range check for the jump table, and branch to the default
1314 // block for the switch statement if the value being switched on exceeds
1315 // the largest case in the switch.
1316 SDOperand CMP = DAG.getSetCC(TLI.getSetCCResultTy(), SUB,
1317 DAG.getConstant(JTH.Last-JTH.First,VT),
1318 ISD::SETUGT);
1319
1320 // Set NextBlock to be the MBB immediately after the current one, if any.
1321 // This is used to avoid emitting unnecessary branches to the next block.
1322 MachineBasicBlock *NextBlock = 0;
1323 MachineFunction::iterator BBI = CurMBB;
1324 if (++BBI != CurMBB->getParent()->end())
1325 NextBlock = BBI;
1326
1327 SDOperand BrCond = DAG.getNode(ISD::BRCOND, MVT::Other, CopyTo, CMP,
1328 DAG.getBasicBlock(JT.Default));
1329
1330 if (JT.MBB == NextBlock)
1331 DAG.setRoot(BrCond);
1332 else
1333 DAG.setRoot(DAG.getNode(ISD::BR, MVT::Other, BrCond,
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001334 DAG.getBasicBlock(JT.MBB)));
1335
1336 return;
Anton Korobeynikov70378262007-03-25 15:07:15 +00001337}
1338
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001339/// visitBitTestHeader - This function emits necessary code to produce value
1340/// suitable for "bit tests"
1341void SelectionDAGLowering::visitBitTestHeader(SelectionDAGISel::BitTestBlock &B) {
1342 // Subtract the minimum value
1343 SDOperand SwitchOp = getValue(B.SValue);
1344 MVT::ValueType VT = SwitchOp.getValueType();
1345 SDOperand SUB = DAG.getNode(ISD::SUB, VT, SwitchOp,
1346 DAG.getConstant(B.First, VT));
1347
1348 // Check range
1349 SDOperand RangeCmp = DAG.getSetCC(TLI.getSetCCResultTy(), SUB,
1350 DAG.getConstant(B.Range, VT),
1351 ISD::SETUGT);
1352
1353 SDOperand ShiftOp;
Dan Gohmana8665142007-06-25 16:23:39 +00001354 if (MVT::getSizeInBits(VT) > MVT::getSizeInBits(TLI.getShiftAmountTy()))
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001355 ShiftOp = DAG.getNode(ISD::TRUNCATE, TLI.getShiftAmountTy(), SUB);
1356 else
1357 ShiftOp = DAG.getNode(ISD::ZERO_EXTEND, TLI.getShiftAmountTy(), SUB);
1358
1359 // Make desired shift
1360 SDOperand SwitchVal = DAG.getNode(ISD::SHL, TLI.getPointerTy(),
1361 DAG.getConstant(1, TLI.getPointerTy()),
1362 ShiftOp);
1363
1364 unsigned SwitchReg = FuncInfo.MakeReg(TLI.getPointerTy());
1365 SDOperand CopyTo = DAG.getCopyToReg(getRoot(), SwitchReg, SwitchVal);
1366 B.Reg = SwitchReg;
1367
1368 SDOperand BrRange = DAG.getNode(ISD::BRCOND, MVT::Other, CopyTo, RangeCmp,
1369 DAG.getBasicBlock(B.Default));
1370
1371 // Set NextBlock to be the MBB immediately after the current one, if any.
1372 // This is used to avoid emitting unnecessary branches to the next block.
1373 MachineBasicBlock *NextBlock = 0;
1374 MachineFunction::iterator BBI = CurMBB;
1375 if (++BBI != CurMBB->getParent()->end())
1376 NextBlock = BBI;
1377
1378 MachineBasicBlock* MBB = B.Cases[0].ThisBB;
1379 if (MBB == NextBlock)
1380 DAG.setRoot(BrRange);
1381 else
1382 DAG.setRoot(DAG.getNode(ISD::BR, MVT::Other, CopyTo,
1383 DAG.getBasicBlock(MBB)));
1384
1385 CurMBB->addSuccessor(B.Default);
1386 CurMBB->addSuccessor(MBB);
1387
1388 return;
1389}
1390
1391/// visitBitTestCase - this function produces one "bit test"
1392void SelectionDAGLowering::visitBitTestCase(MachineBasicBlock* NextMBB,
1393 unsigned Reg,
1394 SelectionDAGISel::BitTestCase &B) {
1395 // Emit bit tests and jumps
1396 SDOperand SwitchVal = DAG.getCopyFromReg(getRoot(), Reg, TLI.getPointerTy());
1397
1398 SDOperand AndOp = DAG.getNode(ISD::AND, TLI.getPointerTy(),
1399 SwitchVal,
1400 DAG.getConstant(B.Mask,
1401 TLI.getPointerTy()));
1402 SDOperand AndCmp = DAG.getSetCC(TLI.getSetCCResultTy(), AndOp,
1403 DAG.getConstant(0, TLI.getPointerTy()),
1404 ISD::SETNE);
1405 SDOperand BrAnd = DAG.getNode(ISD::BRCOND, MVT::Other, getRoot(),
1406 AndCmp, DAG.getBasicBlock(B.TargetBB));
1407
1408 // Set NextBlock to be the MBB immediately after the current one, if any.
1409 // This is used to avoid emitting unnecessary branches to the next block.
1410 MachineBasicBlock *NextBlock = 0;
1411 MachineFunction::iterator BBI = CurMBB;
1412 if (++BBI != CurMBB->getParent()->end())
1413 NextBlock = BBI;
1414
1415 if (NextMBB == NextBlock)
1416 DAG.setRoot(BrAnd);
1417 else
1418 DAG.setRoot(DAG.getNode(ISD::BR, MVT::Other, BrAnd,
1419 DAG.getBasicBlock(NextMBB)));
1420
1421 CurMBB->addSuccessor(B.TargetBB);
1422 CurMBB->addSuccessor(NextMBB);
1423
1424 return;
1425}
Anton Korobeynikov70378262007-03-25 15:07:15 +00001426
Jim Laskey4b37a4c2007-02-21 22:53:45 +00001427void SelectionDAGLowering::visitInvoke(InvokeInst &I) {
1428 // Retrieve successors.
1429 MachineBasicBlock *Return = FuncInfo.MBBMap[I.getSuccessor(0)];
Duncan Sands97f72362007-06-13 05:51:31 +00001430 MachineBasicBlock *LandingPad = FuncInfo.MBBMap[I.getSuccessor(1)];
Duncan Sands61166502007-06-06 10:05:18 +00001431
Duncan Sands97f72362007-06-13 05:51:31 +00001432 LowerCallTo(I, I.getCalledValue()->getType(),
1433 I.getCallingConv(),
1434 false,
1435 getValue(I.getOperand(0)),
1436 3, LandingPad);
Duncan Sands61166502007-06-06 10:05:18 +00001437
Duncan Sands97f72362007-06-13 05:51:31 +00001438 // If the value of the invoke is used outside of its defining block, make it
1439 // available as a virtual register.
1440 if (!I.use_empty()) {
1441 DenseMap<const Value*, unsigned>::iterator VMI = FuncInfo.ValueMap.find(&I);
1442 if (VMI != FuncInfo.ValueMap.end())
1443 DAG.setRoot(CopyValueToVirtualRegister(&I, VMI->second));
Jim Laskey14059d92007-02-25 21:43:59 +00001444 }
Duncan Sands97f72362007-06-13 05:51:31 +00001445
1446 // Drop into normal successor.
1447 DAG.setRoot(DAG.getNode(ISD::BR, MVT::Other, getRoot(),
1448 DAG.getBasicBlock(Return)));
1449
1450 // Update successor info
1451 CurMBB->addSuccessor(Return);
1452 CurMBB->addSuccessor(LandingPad);
Jim Laskey4b37a4c2007-02-21 22:53:45 +00001453}
1454
1455void SelectionDAGLowering::visitUnwind(UnwindInst &I) {
1456}
1457
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001458/// handleSmallSwitchCaseRange - Emit a series of specific tests (suitable for
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001459/// small case ranges).
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001460bool SelectionDAGLowering::handleSmallSwitchRange(CaseRec& CR,
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001461 CaseRecVector& WorkList,
1462 Value* SV,
1463 MachineBasicBlock* Default) {
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001464 Case& BackCase = *(CR.Range.second-1);
1465
1466 // Size is the number of Cases represented by this range.
1467 unsigned Size = CR.Range.second - CR.Range.first;
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001468 if (Size > 3)
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001469 return false;
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001470
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001471 // Get the MachineFunction which holds the current MBB. This is used when
1472 // inserting any additional MBBs necessary to represent the switch.
1473 MachineFunction *CurMF = CurMBB->getParent();
1474
1475 // Figure out which block is immediately after the current one.
1476 MachineBasicBlock *NextBlock = 0;
1477 MachineFunction::iterator BBI = CR.CaseBB;
1478
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001479 if (++BBI != CurMBB->getParent()->end())
1480 NextBlock = BBI;
1481
1482 // TODO: If any two of the cases has the same destination, and if one value
1483 // is the same as the other, but has one bit unset that the other has set,
1484 // use bit manipulation to do two compares at once. For example:
1485 // "if (X == 6 || X == 4)" -> "if ((X|2) == 6)"
1486
1487 // Rearrange the case blocks so that the last one falls through if possible.
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001488 if (NextBlock && Default != NextBlock && BackCase.BB != NextBlock) {
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001489 // The last case block won't fall through into 'NextBlock' if we emit the
1490 // branches in this order. See if rearranging a case value would help.
1491 for (CaseItr I = CR.Range.first, E = CR.Range.second-1; I != E; ++I) {
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001492 if (I->BB == NextBlock) {
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001493 std::swap(*I, BackCase);
1494 break;
1495 }
1496 }
1497 }
1498
1499 // Create a CaseBlock record representing a conditional branch to
1500 // the Case's target mbb if the value being switched on SV is equal
1501 // to C.
1502 MachineBasicBlock *CurBlock = CR.CaseBB;
1503 for (CaseItr I = CR.Range.first, E = CR.Range.second; I != E; ++I) {
1504 MachineBasicBlock *FallThrough;
1505 if (I != E-1) {
1506 FallThrough = new MachineBasicBlock(CurBlock->getBasicBlock());
1507 CurMF->getBasicBlockList().insert(BBI, FallThrough);
1508 } else {
1509 // If the last case doesn't match, go to the default block.
1510 FallThrough = Default;
1511 }
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001512
1513 Value *RHS, *LHS, *MHS;
1514 ISD::CondCode CC;
1515 if (I->High == I->Low) {
1516 // This is just small small case range :) containing exactly 1 case
1517 CC = ISD::SETEQ;
1518 LHS = SV; RHS = I->High; MHS = NULL;
1519 } else {
1520 CC = ISD::SETLE;
1521 LHS = I->Low; MHS = SV; RHS = I->High;
1522 }
1523 SelectionDAGISel::CaseBlock CB(CC, LHS, RHS, MHS,
1524 I->BB, FallThrough, CurBlock);
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001525
1526 // If emitting the first comparison, just call visitSwitchCase to emit the
1527 // code into the current block. Otherwise, push the CaseBlock onto the
1528 // vector to be later processed by SDISel, and insert the node's MBB
1529 // before the next MBB.
1530 if (CurBlock == CurMBB)
1531 visitSwitchCase(CB);
1532 else
1533 SwitchCases.push_back(CB);
1534
1535 CurBlock = FallThrough;
1536 }
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001537
1538 return true;
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001539}
1540
Anton Korobeynikov192d09c2007-05-09 20:07:08 +00001541static inline bool areJTsAllowed(const TargetLowering &TLI) {
1542 return (TLI.isOperationLegal(ISD::BR_JT, MVT::Other) ||
1543 TLI.isOperationLegal(ISD::BRIND, MVT::Other));
1544}
1545
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001546/// handleJTSwitchCase - Emit jumptable for current switch case range
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001547bool SelectionDAGLowering::handleJTSwitchCase(CaseRec& CR,
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001548 CaseRecVector& WorkList,
1549 Value* SV,
1550 MachineBasicBlock* Default) {
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001551 Case& FrontCase = *CR.Range.first;
1552 Case& BackCase = *(CR.Range.second-1);
1553
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001554 int64_t First = cast<ConstantInt>(FrontCase.Low)->getSExtValue();
1555 int64_t Last = cast<ConstantInt>(BackCase.High)->getSExtValue();
1556
1557 uint64_t TSize = 0;
1558 for (CaseItr I = CR.Range.first, E = CR.Range.second;
1559 I!=E; ++I)
1560 TSize += I->size();
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001561
Anton Korobeynikov192d09c2007-05-09 20:07:08 +00001562 if (!areJTsAllowed(TLI) || TSize <= 3)
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001563 return false;
1564
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001565 double Density = (double)TSize / (double)((Last - First) + 1ULL);
1566 if (Density < 0.4)
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001567 return false;
1568
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001569 DOUT << "Lowering jump table\n"
1570 << "First entry: " << First << ". Last entry: " << Last << "\n"
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001571 << "Size: " << TSize << ". Density: " << Density << "\n\n";
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001572
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001573 // Get the MachineFunction which holds the current MBB. This is used when
1574 // inserting any additional MBBs necessary to represent the switch.
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001575 MachineFunction *CurMF = CurMBB->getParent();
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001576
1577 // Figure out which block is immediately after the current one.
1578 MachineBasicBlock *NextBlock = 0;
1579 MachineFunction::iterator BBI = CR.CaseBB;
1580
1581 if (++BBI != CurMBB->getParent()->end())
1582 NextBlock = BBI;
1583
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001584 const BasicBlock *LLVMBB = CR.CaseBB->getBasicBlock();
1585
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001586 // Create a new basic block to hold the code for loading the address
1587 // of the jump table, and jumping to it. Update successor information;
1588 // we will either branch to the default case for the switch, or the jump
1589 // table.
1590 MachineBasicBlock *JumpTableBB = new MachineBasicBlock(LLVMBB);
1591 CurMF->getBasicBlockList().insert(BBI, JumpTableBB);
1592 CR.CaseBB->addSuccessor(Default);
1593 CR.CaseBB->addSuccessor(JumpTableBB);
1594
1595 // Build a vector of destination BBs, corresponding to each target
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001596 // of the jump table. If the value of the jump table slot corresponds to
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001597 // a case statement, push the case's BB onto the vector, otherwise, push
1598 // the default BB.
1599 std::vector<MachineBasicBlock*> DestBBs;
1600 int64_t TEI = First;
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001601 for (CaseItr I = CR.Range.first, E = CR.Range.second; I != E; ++TEI) {
1602 int64_t Low = cast<ConstantInt>(I->Low)->getSExtValue();
1603 int64_t High = cast<ConstantInt>(I->High)->getSExtValue();
1604
1605 if ((Low <= TEI) && (TEI <= High)) {
1606 DestBBs.push_back(I->BB);
1607 if (TEI==High)
1608 ++I;
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001609 } else {
1610 DestBBs.push_back(Default);
1611 }
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001612 }
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001613
1614 // Update successor info. Add one edge to each unique successor.
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001615 BitVector SuccsHandled(CR.CaseBB->getParent()->getNumBlockIDs());
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001616 for (std::vector<MachineBasicBlock*>::iterator I = DestBBs.begin(),
1617 E = DestBBs.end(); I != E; ++I) {
1618 if (!SuccsHandled[(*I)->getNumber()]) {
1619 SuccsHandled[(*I)->getNumber()] = true;
1620 JumpTableBB->addSuccessor(*I);
1621 }
1622 }
1623
1624 // Create a jump table index for this jump table, or return an existing
1625 // one.
1626 unsigned JTI = CurMF->getJumpTableInfo()->getJumpTableIndex(DestBBs);
1627
1628 // Set the jump table information so that we can codegen it as a second
1629 // MachineBasicBlock
Scott Michel4cfa6162007-04-24 01:24:20 +00001630 SelectionDAGISel::JumpTable JT(-1U, JTI, JumpTableBB, Default);
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001631 SelectionDAGISel::JumpTableHeader JTH(First, Last, SV, CR.CaseBB,
1632 (CR.CaseBB == CurMBB));
1633 if (CR.CaseBB == CurMBB)
1634 visitJumpTableHeader(JT, JTH);
1635
1636 JTCases.push_back(SelectionDAGISel::JumpTableBlock(JTH, JT));
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001637
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001638 return true;
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001639}
1640
1641/// handleBTSplitSwitchCase - emit comparison and split binary search tree into
1642/// 2 subtrees.
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001643bool SelectionDAGLowering::handleBTSplitSwitchCase(CaseRec& CR,
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001644 CaseRecVector& WorkList,
1645 Value* SV,
1646 MachineBasicBlock* Default) {
1647 // Get the MachineFunction which holds the current MBB. This is used when
1648 // inserting any additional MBBs necessary to represent the switch.
1649 MachineFunction *CurMF = CurMBB->getParent();
1650
1651 // Figure out which block is immediately after the current one.
1652 MachineBasicBlock *NextBlock = 0;
1653 MachineFunction::iterator BBI = CR.CaseBB;
1654
1655 if (++BBI != CurMBB->getParent()->end())
1656 NextBlock = BBI;
1657
1658 Case& FrontCase = *CR.Range.first;
1659 Case& BackCase = *(CR.Range.second-1);
1660 const BasicBlock *LLVMBB = CR.CaseBB->getBasicBlock();
1661
1662 // Size is the number of Cases represented by this range.
1663 unsigned Size = CR.Range.second - CR.Range.first;
1664
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001665 int64_t First = cast<ConstantInt>(FrontCase.Low)->getSExtValue();
1666 int64_t Last = cast<ConstantInt>(BackCase.High)->getSExtValue();
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001667 double FMetric = 0;
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001668 CaseItr Pivot = CR.Range.first + Size/2;
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001669
1670 // Select optimal pivot, maximizing sum density of LHS and RHS. This will
1671 // (heuristically) allow us to emit JumpTable's later.
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001672 uint64_t TSize = 0;
1673 for (CaseItr I = CR.Range.first, E = CR.Range.second;
1674 I!=E; ++I)
1675 TSize += I->size();
1676
1677 uint64_t LSize = FrontCase.size();
1678 uint64_t RSize = TSize-LSize;
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001679 DOUT << "Selecting best pivot: \n"
1680 << "First: " << First << ", Last: " << Last <<"\n"
1681 << "LSize: " << LSize << ", RSize: " << RSize << "\n";
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001682 for (CaseItr I = CR.Range.first, J=I+1, E = CR.Range.second;
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001683 J!=E; ++I, ++J) {
1684 int64_t LEnd = cast<ConstantInt>(I->High)->getSExtValue();
1685 int64_t RBegin = cast<ConstantInt>(J->Low)->getSExtValue();
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001686 assert((RBegin-LEnd>=1) && "Invalid case distance");
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001687 double LDensity = (double)LSize / (double)((LEnd - First) + 1ULL);
1688 double RDensity = (double)RSize / (double)((Last - RBegin) + 1ULL);
Anton Korobeynikovda964a22007-04-09 21:57:03 +00001689 double Metric = Log2_64(RBegin-LEnd)*(LDensity+RDensity);
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001690 // Should always split in some non-trivial place
1691 DOUT <<"=>Step\n"
1692 << "LEnd: " << LEnd << ", RBegin: " << RBegin << "\n"
1693 << "LDensity: " << LDensity << ", RDensity: " << RDensity << "\n"
1694 << "Metric: " << Metric << "\n";
1695 if (FMetric < Metric) {
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001696 Pivot = J;
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001697 FMetric = Metric;
1698 DOUT << "Current metric set to: " << FMetric << "\n";
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001699 }
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001700
1701 LSize += J->size();
1702 RSize -= J->size();
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001703 }
Anton Korobeynikov192d09c2007-05-09 20:07:08 +00001704 if (areJTsAllowed(TLI)) {
1705 // If our case is dense we *really* should handle it earlier!
1706 assert((FMetric > 0) && "Should handle dense range earlier!");
1707 } else {
1708 Pivot = CR.Range.first + Size/2;
1709 }
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001710
1711 CaseRange LHSR(CR.Range.first, Pivot);
1712 CaseRange RHSR(Pivot, CR.Range.second);
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001713 Constant *C = Pivot->Low;
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001714 MachineBasicBlock *FalseBB = 0, *TrueBB = 0;
1715
1716 // We know that we branch to the LHS if the Value being switched on is
1717 // less than the Pivot value, C. We use this to optimize our binary
1718 // tree a bit, by recognizing that if SV is greater than or equal to the
1719 // LHS's Case Value, and that Case Value is exactly one less than the
1720 // Pivot's Value, then we can branch directly to the LHS's Target,
1721 // rather than creating a leaf node for it.
1722 if ((LHSR.second - LHSR.first) == 1 &&
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001723 LHSR.first->High == CR.GE &&
1724 cast<ConstantInt>(C)->getSExtValue() ==
1725 (cast<ConstantInt>(CR.GE)->getSExtValue() + 1LL)) {
1726 TrueBB = LHSR.first->BB;
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001727 } else {
1728 TrueBB = new MachineBasicBlock(LLVMBB);
1729 CurMF->getBasicBlockList().insert(BBI, TrueBB);
1730 WorkList.push_back(CaseRec(TrueBB, C, CR.GE, LHSR));
1731 }
1732
1733 // Similar to the optimization above, if the Value being switched on is
1734 // known to be less than the Constant CR.LT, and the current Case Value
1735 // is CR.LT - 1, then we can branch directly to the target block for
1736 // the current Case Value, rather than emitting a RHS leaf node for it.
1737 if ((RHSR.second - RHSR.first) == 1 && CR.LT &&
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001738 cast<ConstantInt>(RHSR.first->Low)->getSExtValue() ==
1739 (cast<ConstantInt>(CR.LT)->getSExtValue() - 1LL)) {
1740 FalseBB = RHSR.first->BB;
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001741 } else {
1742 FalseBB = new MachineBasicBlock(LLVMBB);
1743 CurMF->getBasicBlockList().insert(BBI, FalseBB);
1744 WorkList.push_back(CaseRec(FalseBB,CR.LT,C,RHSR));
1745 }
1746
1747 // Create a CaseBlock record representing a conditional branch to
1748 // the LHS node if the value being switched on SV is less than C.
1749 // Otherwise, branch to LHS.
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001750 SelectionDAGISel::CaseBlock CB(ISD::SETLT, SV, C, NULL,
1751 TrueBB, FalseBB, CR.CaseBB);
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001752
1753 if (CR.CaseBB == CurMBB)
1754 visitSwitchCase(CB);
1755 else
1756 SwitchCases.push_back(CB);
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001757
1758 return true;
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001759}
1760
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001761/// handleBitTestsSwitchCase - if current case range has few destination and
1762/// range span less, than machine word bitwidth, encode case range into series
1763/// of masks and emit bit tests with these masks.
1764bool SelectionDAGLowering::handleBitTestsSwitchCase(CaseRec& CR,
1765 CaseRecVector& WorkList,
1766 Value* SV,
Chris Lattner7196f092007-04-14 02:26:56 +00001767 MachineBasicBlock* Default){
Dan Gohman1796f1f2007-05-18 17:52:13 +00001768 unsigned IntPtrBits = MVT::getSizeInBits(TLI.getPointerTy());
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001769
1770 Case& FrontCase = *CR.Range.first;
1771 Case& BackCase = *(CR.Range.second-1);
1772
1773 // Get the MachineFunction which holds the current MBB. This is used when
1774 // inserting any additional MBBs necessary to represent the switch.
1775 MachineFunction *CurMF = CurMBB->getParent();
1776
1777 unsigned numCmps = 0;
1778 for (CaseItr I = CR.Range.first, E = CR.Range.second;
1779 I!=E; ++I) {
1780 // Single case counts one, case range - two.
1781 if (I->Low == I->High)
1782 numCmps +=1;
1783 else
1784 numCmps +=2;
1785 }
1786
1787 // Count unique destinations
1788 SmallSet<MachineBasicBlock*, 4> Dests;
1789 for (CaseItr I = CR.Range.first, E = CR.Range.second; I!=E; ++I) {
1790 Dests.insert(I->BB);
1791 if (Dests.size() > 3)
1792 // Don't bother the code below, if there are too much unique destinations
1793 return false;
1794 }
1795 DOUT << "Total number of unique destinations: " << Dests.size() << "\n"
1796 << "Total number of comparisons: " << numCmps << "\n";
1797
1798 // Compute span of values.
1799 Constant* minValue = FrontCase.Low;
1800 Constant* maxValue = BackCase.High;
1801 uint64_t range = cast<ConstantInt>(maxValue)->getSExtValue() -
1802 cast<ConstantInt>(minValue)->getSExtValue();
1803 DOUT << "Compare range: " << range << "\n"
1804 << "Low bound: " << cast<ConstantInt>(minValue)->getSExtValue() << "\n"
1805 << "High bound: " << cast<ConstantInt>(maxValue)->getSExtValue() << "\n";
1806
Anton Korobeynikovd7ae7f12007-04-26 20:44:04 +00001807 if (range>=IntPtrBits ||
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001808 (!(Dests.size() == 1 && numCmps >= 3) &&
1809 !(Dests.size() == 2 && numCmps >= 5) &&
1810 !(Dests.size() >= 3 && numCmps >= 6)))
1811 return false;
1812
1813 DOUT << "Emitting bit tests\n";
1814 int64_t lowBound = 0;
1815
1816 // Optimize the case where all the case values fit in a
1817 // word without having to subtract minValue. In this case,
1818 // we can optimize away the subtraction.
1819 if (cast<ConstantInt>(minValue)->getSExtValue() >= 0 &&
Anton Korobeynikov8a1a84f2007-04-14 13:25:55 +00001820 cast<ConstantInt>(maxValue)->getSExtValue() < IntPtrBits) {
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001821 range = cast<ConstantInt>(maxValue)->getSExtValue();
1822 } else {
1823 lowBound = cast<ConstantInt>(minValue)->getSExtValue();
1824 }
1825
1826 CaseBitsVector CasesBits;
1827 unsigned i, count = 0;
1828
1829 for (CaseItr I = CR.Range.first, E = CR.Range.second; I!=E; ++I) {
1830 MachineBasicBlock* Dest = I->BB;
1831 for (i = 0; i < count; ++i)
1832 if (Dest == CasesBits[i].BB)
1833 break;
1834
1835 if (i == count) {
1836 assert((count < 3) && "Too much destinations to test!");
1837 CasesBits.push_back(CaseBits(0, Dest, 0));
1838 count++;
1839 }
1840
1841 uint64_t lo = cast<ConstantInt>(I->Low)->getSExtValue() - lowBound;
1842 uint64_t hi = cast<ConstantInt>(I->High)->getSExtValue() - lowBound;
1843
1844 for (uint64_t j = lo; j <= hi; j++) {
Anton Korobeynikov8a1a84f2007-04-14 13:25:55 +00001845 CasesBits[i].Mask |= 1ULL << j;
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001846 CasesBits[i].Bits++;
1847 }
1848
1849 }
1850 std::sort(CasesBits.begin(), CasesBits.end(), CaseBitsCmp());
1851
1852 SelectionDAGISel::BitTestInfo BTC;
1853
1854 // Figure out which block is immediately after the current one.
1855 MachineFunction::iterator BBI = CR.CaseBB;
1856 ++BBI;
1857
1858 const BasicBlock *LLVMBB = CR.CaseBB->getBasicBlock();
1859
1860 DOUT << "Cases:\n";
1861 for (unsigned i = 0, e = CasesBits.size(); i!=e; ++i) {
1862 DOUT << "Mask: " << CasesBits[i].Mask << ", Bits: " << CasesBits[i].Bits
1863 << ", BB: " << CasesBits[i].BB << "\n";
1864
1865 MachineBasicBlock *CaseBB = new MachineBasicBlock(LLVMBB);
1866 CurMF->getBasicBlockList().insert(BBI, CaseBB);
1867 BTC.push_back(SelectionDAGISel::BitTestCase(CasesBits[i].Mask,
1868 CaseBB,
1869 CasesBits[i].BB));
1870 }
1871
1872 SelectionDAGISel::BitTestBlock BTB(lowBound, range, SV,
Jeff Cohen0475f3b2007-04-09 14:32:59 +00001873 -1U, (CR.CaseBB == CurMBB),
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001874 CR.CaseBB, Default, BTC);
1875
1876 if (CR.CaseBB == CurMBB)
1877 visitBitTestHeader(BTB);
1878
1879 BitTestCases.push_back(BTB);
1880
1881 return true;
1882}
1883
1884
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001885// Clusterify - Transform simple list of Cases into list of CaseRange's
1886unsigned SelectionDAGLowering::Clusterify(CaseVector& Cases,
1887 const SwitchInst& SI) {
1888 unsigned numCmps = 0;
1889
1890 // Start with "simple" cases
1891 for (unsigned i = 1; i < SI.getNumSuccessors(); ++i) {
1892 MachineBasicBlock *SMBB = FuncInfo.MBBMap[SI.getSuccessor(i)];
1893 Cases.push_back(Case(SI.getSuccessorValue(i),
1894 SI.getSuccessorValue(i),
1895 SMBB));
1896 }
1897 sort(Cases.begin(), Cases.end(), CaseCmp());
1898
1899 // Merge case into clusters
1900 if (Cases.size()>=2)
David Greene4c1e6f32007-06-29 03:42:23 +00001901 // Must recompute end() each iteration because it may be
1902 // invalidated by erase if we hold on to it
David Greene9468bfd2007-06-29 02:49:11 +00001903 for (CaseItr I=Cases.begin(), J=++(Cases.begin()); J!=Cases.end(); ) {
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001904 int64_t nextValue = cast<ConstantInt>(J->Low)->getSExtValue();
1905 int64_t currentValue = cast<ConstantInt>(I->High)->getSExtValue();
1906 MachineBasicBlock* nextBB = J->BB;
1907 MachineBasicBlock* currentBB = I->BB;
1908
1909 // If the two neighboring cases go to the same destination, merge them
1910 // into a single case.
1911 if ((nextValue-currentValue==1) && (currentBB == nextBB)) {
1912 I->High = J->High;
1913 J = Cases.erase(J);
1914 } else {
1915 I = J++;
1916 }
1917 }
1918
1919 for (CaseItr I=Cases.begin(), E=Cases.end(); I!=E; ++I, ++numCmps) {
1920 if (I->Low != I->High)
1921 // A range counts double, since it requires two compares.
1922 ++numCmps;
1923 }
1924
1925 return numCmps;
1926}
1927
1928void SelectionDAGLowering::visitSwitch(SwitchInst &SI) {
Nate Begemaned728c12006-03-27 01:32:24 +00001929 // Figure out which block is immediately after the current one.
1930 MachineBasicBlock *NextBlock = 0;
1931 MachineFunction::iterator BBI = CurMBB;
Bill Wendlingbe96e1c2006-10-19 21:46:38 +00001932
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001933 MachineBasicBlock *Default = FuncInfo.MBBMap[SI.getDefaultDest()];
Chris Lattner6d6fc262006-10-22 21:36:53 +00001934
Nate Begemaned728c12006-03-27 01:32:24 +00001935 // If there is only the default destination, branch to it if it is not the
1936 // next basic block. Otherwise, just fall through.
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001937 if (SI.getNumOperands() == 2) {
Nate Begemaned728c12006-03-27 01:32:24 +00001938 // Update machine-CFG edges.
Bill Wendlingbe96e1c2006-10-19 21:46:38 +00001939
Nate Begemaned728c12006-03-27 01:32:24 +00001940 // If this is not a fall-through branch, emit the branch.
Chris Lattner6d6fc262006-10-22 21:36:53 +00001941 if (Default != NextBlock)
Nate Begemaned728c12006-03-27 01:32:24 +00001942 DAG.setRoot(DAG.getNode(ISD::BR, MVT::Other, getRoot(),
Chris Lattner6d6fc262006-10-22 21:36:53 +00001943 DAG.getBasicBlock(Default)));
Bill Wendlingbe96e1c2006-10-19 21:46:38 +00001944
Chris Lattner6d6fc262006-10-22 21:36:53 +00001945 CurMBB->addSuccessor(Default);
Nate Begemaned728c12006-03-27 01:32:24 +00001946 return;
1947 }
1948
1949 // If there are any non-default case statements, create a vector of Cases
1950 // representing each one, and sort the vector so that we can efficiently
1951 // create a binary search tree from them.
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001952 CaseVector Cases;
1953 unsigned numCmps = Clusterify(Cases, SI);
1954 DOUT << "Clusterify finished. Total clusters: " << Cases.size()
1955 << ". Total compares: " << numCmps << "\n";
Bill Wendlingbe96e1c2006-10-19 21:46:38 +00001956
Nate Begemaned728c12006-03-27 01:32:24 +00001957 // Get the Value to be switched on and default basic blocks, which will be
1958 // inserted into CaseBlock records, representing basic blocks in the binary
1959 // search tree.
Anton Korobeynikov915e6172007-04-04 21:14:49 +00001960 Value *SV = SI.getOperand(0);
Nate Begeman4ca2ea52006-04-22 18:53:45 +00001961
Nate Begemaned728c12006-03-27 01:32:24 +00001962 // Push the initial CaseRec onto the worklist
Anton Korobeynikov3a9d6812007-03-27 11:29:11 +00001963 CaseRecVector WorkList;
Anton Korobeynikov70378262007-03-25 15:07:15 +00001964 WorkList.push_back(CaseRec(CurMBB,0,0,CaseRange(Cases.begin(),Cases.end())));
1965
1966 while (!WorkList.empty()) {
Nate Begemaned728c12006-03-27 01:32:24 +00001967 // Grab a record representing a case range to process off the worklist
Anton Korobeynikov70378262007-03-25 15:07:15 +00001968 CaseRec CR = WorkList.back();
1969 WorkList.pop_back();
Anton Korobeynikov70378262007-03-25 15:07:15 +00001970
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001971 if (handleBitTestsSwitchCase(CR, WorkList, SV, Default))
1972 continue;
1973
Anton Korobeynikov70378262007-03-25 15:07:15 +00001974 // If the range has few cases (two or less) emit a series of specific
1975 // tests.
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001976 if (handleSmallSwitchRange(CR, WorkList, SV, Default))
1977 continue;
1978
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00001979 // If the switch has more than 5 blocks, and at least 40% dense, and the
Anton Korobeynikov70378262007-03-25 15:07:15 +00001980 // target supports indirect branches, then emit a jump table rather than
1981 // lowering the switch to a binary tree of conditional branches.
Anton Korobeynikov37a0bfe2007-03-27 12:05:48 +00001982 if (handleJTSwitchCase(CR, WorkList, SV, Default))
1983 continue;
1984
1985 // Emit binary tree. We need to pick a pivot, and push left and right ranges
1986 // onto the worklist. Leafs are handled via handleSmallSwitchRange() call.
1987 handleBTSplitSwitchCase(CR, WorkList, SV, Default);
Nate Begemaned728c12006-03-27 01:32:24 +00001988 }
1989}
1990
Anton Korobeynikov70378262007-03-25 15:07:15 +00001991
Chris Lattnerf68fd0b2005-04-02 05:04:50 +00001992void SelectionDAGLowering::visitSub(User &I) {
1993 // -0.0 - X --> fneg
Reid Spencer2eadb532007-01-21 00:29:26 +00001994 const Type *Ty = I.getType();
Reid Spencerd84d35b2007-02-15 02:26:10 +00001995 if (isa<VectorType>(Ty)) {
Dan Gohmana8665142007-06-25 16:23:39 +00001996 if (ConstantVector *CV = dyn_cast<ConstantVector>(I.getOperand(0))) {
1997 const VectorType *DestTy = cast<VectorType>(I.getType());
1998 const Type *ElTy = DestTy->getElementType();
Evan Chengfa68d062007-06-29 21:44:35 +00001999 if (ElTy->isFloatingPoint()) {
2000 unsigned VL = DestTy->getNumElements();
2001 std::vector<Constant*> NZ(VL, ConstantFP::get(ElTy, -0.0));
2002 Constant *CNZ = ConstantVector::get(&NZ[0], NZ.size());
2003 if (CV == CNZ) {
2004 SDOperand Op2 = getValue(I.getOperand(1));
2005 setValue(&I, DAG.getNode(ISD::FNEG, Op2.getValueType(), Op2));
2006 return;
2007 }
Dan Gohmana8665142007-06-25 16:23:39 +00002008 }
2009 }
2010 }
2011 if (Ty->isFloatingPoint()) {
Chris Lattner6f3b5772005-09-28 22:28:18 +00002012 if (ConstantFP *CFP = dyn_cast<ConstantFP>(I.getOperand(0)))
2013 if (CFP->isExactlyValue(-0.0)) {
2014 SDOperand Op2 = getValue(I.getOperand(1));
2015 setValue(&I, DAG.getNode(ISD::FNEG, Op2.getValueType(), Op2));
2016 return;
2017 }
Dan Gohmana8665142007-06-25 16:23:39 +00002018 }
2019
2020 visitBinary(I, Ty->isFPOrFPVector() ? ISD::FSUB : ISD::SUB);
Chris Lattnerf68fd0b2005-04-02 05:04:50 +00002021}
2022
Dan Gohmana8665142007-06-25 16:23:39 +00002023void SelectionDAGLowering::visitBinary(User &I, unsigned OpCode) {
Chris Lattner7a60d912005-01-07 07:47:53 +00002024 SDOperand Op1 = getValue(I.getOperand(0));
2025 SDOperand Op2 = getValue(I.getOperand(1));
Reid Spencer2eadb532007-01-21 00:29:26 +00002026
2027 setValue(&I, DAG.getNode(OpCode, Op1.getValueType(), Op1, Op2));
Reid Spencer7e80b0b2006-10-26 06:15:43 +00002028}
2029
Nate Begeman127321b2005-11-18 07:42:56 +00002030void SelectionDAGLowering::visitShift(User &I, unsigned Opcode) {
2031 SDOperand Op1 = getValue(I.getOperand(0));
2032 SDOperand Op2 = getValue(I.getOperand(1));
2033
Dan Gohmana8665142007-06-25 16:23:39 +00002034 if (MVT::getSizeInBits(TLI.getShiftAmountTy()) <
2035 MVT::getSizeInBits(Op2.getValueType()))
Reid Spencer2341c222007-02-02 02:16:23 +00002036 Op2 = DAG.getNode(ISD::TRUNCATE, TLI.getShiftAmountTy(), Op2);
2037 else if (TLI.getShiftAmountTy() > Op2.getValueType())
2038 Op2 = DAG.getNode(ISD::ANY_EXTEND, TLI.getShiftAmountTy(), Op2);
Nate Begeman127321b2005-11-18 07:42:56 +00002039
Chris Lattner7a60d912005-01-07 07:47:53 +00002040 setValue(&I, DAG.getNode(Opcode, Op1.getValueType(), Op1, Op2));
2041}
2042
Reid Spencerd9436b62006-11-20 01:22:35 +00002043void SelectionDAGLowering::visitICmp(User &I) {
Reid Spencer266e42b2006-12-23 06:05:41 +00002044 ICmpInst::Predicate predicate = ICmpInst::BAD_ICMP_PREDICATE;
2045 if (ICmpInst *IC = dyn_cast<ICmpInst>(&I))
2046 predicate = IC->getPredicate();
2047 else if (ConstantExpr *IC = dyn_cast<ConstantExpr>(&I))
2048 predicate = ICmpInst::Predicate(IC->getPredicate());
2049 SDOperand Op1 = getValue(I.getOperand(0));
2050 SDOperand Op2 = getValue(I.getOperand(1));
Reid Spencerd9436b62006-11-20 01:22:35 +00002051 ISD::CondCode Opcode;
Reid Spencer266e42b2006-12-23 06:05:41 +00002052 switch (predicate) {
Reid Spencerd9436b62006-11-20 01:22:35 +00002053 case ICmpInst::ICMP_EQ : Opcode = ISD::SETEQ; break;
2054 case ICmpInst::ICMP_NE : Opcode = ISD::SETNE; break;
2055 case ICmpInst::ICMP_UGT : Opcode = ISD::SETUGT; break;
2056 case ICmpInst::ICMP_UGE : Opcode = ISD::SETUGE; break;
2057 case ICmpInst::ICMP_ULT : Opcode = ISD::SETULT; break;
2058 case ICmpInst::ICMP_ULE : Opcode = ISD::SETULE; break;
2059 case ICmpInst::ICMP_SGT : Opcode = ISD::SETGT; break;
2060 case ICmpInst::ICMP_SGE : Opcode = ISD::SETGE; break;
2061 case ICmpInst::ICMP_SLT : Opcode = ISD::SETLT; break;
2062 case ICmpInst::ICMP_SLE : Opcode = ISD::SETLE; break;
2063 default:
2064 assert(!"Invalid ICmp predicate value");
2065 Opcode = ISD::SETEQ;
2066 break;
2067 }
2068 setValue(&I, DAG.getSetCC(MVT::i1, Op1, Op2, Opcode));
2069}
2070
2071void SelectionDAGLowering::visitFCmp(User &I) {
Reid Spencer266e42b2006-12-23 06:05:41 +00002072 FCmpInst::Predicate predicate = FCmpInst::BAD_FCMP_PREDICATE;
2073 if (FCmpInst *FC = dyn_cast<FCmpInst>(&I))
2074 predicate = FC->getPredicate();
2075 else if (ConstantExpr *FC = dyn_cast<ConstantExpr>(&I))
2076 predicate = FCmpInst::Predicate(FC->getPredicate());
Chris Lattner7a60d912005-01-07 07:47:53 +00002077 SDOperand Op1 = getValue(I.getOperand(0));
2078 SDOperand Op2 = getValue(I.getOperand(1));
Reid Spencer266e42b2006-12-23 06:05:41 +00002079 ISD::CondCode Condition, FOC, FPC;
2080 switch (predicate) {
2081 case FCmpInst::FCMP_FALSE: FOC = FPC = ISD::SETFALSE; break;
2082 case FCmpInst::FCMP_OEQ: FOC = ISD::SETEQ; FPC = ISD::SETOEQ; break;
2083 case FCmpInst::FCMP_OGT: FOC = ISD::SETGT; FPC = ISD::SETOGT; break;
2084 case FCmpInst::FCMP_OGE: FOC = ISD::SETGE; FPC = ISD::SETOGE; break;
2085 case FCmpInst::FCMP_OLT: FOC = ISD::SETLT; FPC = ISD::SETOLT; break;
2086 case FCmpInst::FCMP_OLE: FOC = ISD::SETLE; FPC = ISD::SETOLE; break;
2087 case FCmpInst::FCMP_ONE: FOC = ISD::SETNE; FPC = ISD::SETONE; break;
2088 case FCmpInst::FCMP_ORD: FOC = ISD::SETEQ; FPC = ISD::SETO; break;
2089 case FCmpInst::FCMP_UNO: FOC = ISD::SETNE; FPC = ISD::SETUO; break;
2090 case FCmpInst::FCMP_UEQ: FOC = ISD::SETEQ; FPC = ISD::SETUEQ; break;
2091 case FCmpInst::FCMP_UGT: FOC = ISD::SETGT; FPC = ISD::SETUGT; break;
2092 case FCmpInst::FCMP_UGE: FOC = ISD::SETGE; FPC = ISD::SETUGE; break;
2093 case FCmpInst::FCMP_ULT: FOC = ISD::SETLT; FPC = ISD::SETULT; break;
2094 case FCmpInst::FCMP_ULE: FOC = ISD::SETLE; FPC = ISD::SETULE; break;
2095 case FCmpInst::FCMP_UNE: FOC = ISD::SETNE; FPC = ISD::SETUNE; break;
2096 case FCmpInst::FCMP_TRUE: FOC = FPC = ISD::SETTRUE; break;
2097 default:
2098 assert(!"Invalid FCmp predicate value");
2099 FOC = FPC = ISD::SETFALSE;
2100 break;
2101 }
2102 if (FiniteOnlyFPMath())
2103 Condition = FOC;
2104 else
2105 Condition = FPC;
2106 setValue(&I, DAG.getSetCC(MVT::i1, Op1, Op2, Condition));
Chris Lattner7a60d912005-01-07 07:47:53 +00002107}
2108
2109void SelectionDAGLowering::visitSelect(User &I) {
2110 SDOperand Cond = getValue(I.getOperand(0));
2111 SDOperand TrueVal = getValue(I.getOperand(1));
2112 SDOperand FalseVal = getValue(I.getOperand(2));
Dan Gohmana8665142007-06-25 16:23:39 +00002113 setValue(&I, DAG.getNode(ISD::SELECT, TrueVal.getValueType(), Cond,
2114 TrueVal, FalseVal));
Chris Lattner7a60d912005-01-07 07:47:53 +00002115}
2116
Reid Spencer6c38f0b2006-11-27 01:05:10 +00002117
2118void SelectionDAGLowering::visitTrunc(User &I) {
2119 // TruncInst cannot be a no-op cast because sizeof(src) > sizeof(dest).
2120 SDOperand N = getValue(I.getOperand(0));
2121 MVT::ValueType DestVT = TLI.getValueType(I.getType());
2122 setValue(&I, DAG.getNode(ISD::TRUNCATE, DestVT, N));
2123}
2124
2125void SelectionDAGLowering::visitZExt(User &I) {
2126 // ZExt cannot be a no-op cast because sizeof(src) < sizeof(dest).
2127 // ZExt also can't be a cast to bool for same reason. So, nothing much to do
2128 SDOperand N = getValue(I.getOperand(0));
2129 MVT::ValueType DestVT = TLI.getValueType(I.getType());
2130 setValue(&I, DAG.getNode(ISD::ZERO_EXTEND, DestVT, N));
2131}
2132
2133void SelectionDAGLowering::visitSExt(User &I) {
2134 // SExt cannot be a no-op cast because sizeof(src) < sizeof(dest).
2135 // SExt also can't be a cast to bool for same reason. So, nothing much to do
2136 SDOperand N = getValue(I.getOperand(0));
2137 MVT::ValueType DestVT = TLI.getValueType(I.getType());
2138 setValue(&I, DAG.getNode(ISD::SIGN_EXTEND, DestVT, N));
2139}
2140
2141void SelectionDAGLowering::visitFPTrunc(User &I) {
2142 // FPTrunc is never a no-op cast, no need to check
2143 SDOperand N = getValue(I.getOperand(0));
2144 MVT::ValueType DestVT = TLI.getValueType(I.getType());
2145 setValue(&I, DAG.getNode(ISD::FP_ROUND, DestVT, N));
2146}
2147
2148void SelectionDAGLowering::visitFPExt(User &I){
2149 // FPTrunc is never a no-op cast, no need to check
2150 SDOperand N = getValue(I.getOperand(0));
2151 MVT::ValueType DestVT = TLI.getValueType(I.getType());
2152 setValue(&I, DAG.getNode(ISD::FP_EXTEND, DestVT, N));
2153}
2154
2155void SelectionDAGLowering::visitFPToUI(User &I) {
2156 // FPToUI is never a no-op cast, no need to check
2157 SDOperand N = getValue(I.getOperand(0));
2158 MVT::ValueType DestVT = TLI.getValueType(I.getType());
2159 setValue(&I, DAG.getNode(ISD::FP_TO_UINT, DestVT, N));
2160}
2161
2162void SelectionDAGLowering::visitFPToSI(User &I) {
2163 // FPToSI is never a no-op cast, no need to check
2164 SDOperand N = getValue(I.getOperand(0));
2165 MVT::ValueType DestVT = TLI.getValueType(I.getType());
2166 setValue(&I, DAG.getNode(ISD::FP_TO_SINT, DestVT, N));
2167}
2168
2169void SelectionDAGLowering::visitUIToFP(User &I) {
2170 // UIToFP is never a no-op cast, no need to check
2171 SDOperand N = getValue(I.getOperand(0));
2172 MVT::ValueType DestVT = TLI.getValueType(I.getType());
2173 setValue(&I, DAG.getNode(ISD::UINT_TO_FP, DestVT, N));
2174}
2175
2176void SelectionDAGLowering::visitSIToFP(User &I){
2177 // UIToFP is never a no-op cast, no need to check
2178 SDOperand N = getValue(I.getOperand(0));
2179 MVT::ValueType DestVT = TLI.getValueType(I.getType());
2180 setValue(&I, DAG.getNode(ISD::SINT_TO_FP, DestVT, N));
2181}
2182
2183void SelectionDAGLowering::visitPtrToInt(User &I) {
2184 // What to do depends on the size of the integer and the size of the pointer.
2185 // We can either truncate, zero extend, or no-op, accordingly.
Chris Lattner7a60d912005-01-07 07:47:53 +00002186 SDOperand N = getValue(I.getOperand(0));
Chris Lattner2f4119a2006-03-22 20:09:35 +00002187 MVT::ValueType SrcVT = N.getValueType();
Chris Lattner4024c002006-03-15 22:19:46 +00002188 MVT::ValueType DestVT = TLI.getValueType(I.getType());
Reid Spencer6c38f0b2006-11-27 01:05:10 +00002189 SDOperand Result;
2190 if (MVT::getSizeInBits(DestVT) < MVT::getSizeInBits(SrcVT))
2191 Result = DAG.getNode(ISD::TRUNCATE, DestVT, N);
2192 else
2193 // Note: ZERO_EXTEND can handle cases where the sizes are equal too
2194 Result = DAG.getNode(ISD::ZERO_EXTEND, DestVT, N);
2195 setValue(&I, Result);
2196}
Chris Lattner7a60d912005-01-07 07:47:53 +00002197
Reid Spencer6c38f0b2006-11-27 01:05:10 +00002198void SelectionDAGLowering::visitIntToPtr(User &I) {
2199 // What to do depends on the size of the integer and the size of the pointer.
2200 // We can either truncate, zero extend, or no-op, accordingly.
2201 SDOperand N = getValue(I.getOperand(0));
2202 MVT::ValueType SrcVT = N.getValueType();
2203 MVT::ValueType DestVT = TLI.getValueType(I.getType());
2204 if (MVT::getSizeInBits(DestVT) < MVT::getSizeInBits(SrcVT))
2205 setValue(&I, DAG.getNode(ISD::TRUNCATE, DestVT, N));
2206 else
2207 // Note: ZERO_EXTEND can handle cases where the sizes are equal too
2208 setValue(&I, DAG.getNode(ISD::ZERO_EXTEND, DestVT, N));
2209}
2210
2211void SelectionDAGLowering::visitBitCast(User &I) {
2212 SDOperand N = getValue(I.getOperand(0));
2213 MVT::ValueType DestVT = TLI.getValueType(I.getType());
Reid Spencer6c38f0b2006-11-27 01:05:10 +00002214
2215 // BitCast assures us that source and destination are the same size so this
2216 // is either a BIT_CONVERT or a no-op.
2217 if (DestVT != N.getValueType())
2218 setValue(&I, DAG.getNode(ISD::BIT_CONVERT, DestVT, N)); // convert types
2219 else
2220 setValue(&I, N); // noop cast.
Chris Lattner7a60d912005-01-07 07:47:53 +00002221}
2222
Chris Lattner67271862006-03-29 00:11:43 +00002223void SelectionDAGLowering::visitInsertElement(User &I) {
Chris Lattner32206f52006-03-18 01:44:44 +00002224 SDOperand InVec = getValue(I.getOperand(0));
2225 SDOperand InVal = getValue(I.getOperand(1));
2226 SDOperand InIdx = DAG.getNode(ISD::ZERO_EXTEND, TLI.getPointerTy(),
2227 getValue(I.getOperand(2)));
2228
Dan Gohmana8665142007-06-25 16:23:39 +00002229 setValue(&I, DAG.getNode(ISD::INSERT_VECTOR_ELT,
2230 TLI.getValueType(I.getType()),
2231 InVec, InVal, InIdx));
Chris Lattner32206f52006-03-18 01:44:44 +00002232}
2233
Chris Lattner67271862006-03-29 00:11:43 +00002234void SelectionDAGLowering::visitExtractElement(User &I) {
Chris Lattner7c0cd8c2006-03-21 20:44:12 +00002235 SDOperand InVec = getValue(I.getOperand(0));
2236 SDOperand InIdx = DAG.getNode(ISD::ZERO_EXTEND, TLI.getPointerTy(),
2237 getValue(I.getOperand(1)));
Dan Gohmana8665142007-06-25 16:23:39 +00002238 setValue(&I, DAG.getNode(ISD::EXTRACT_VECTOR_ELT,
Chris Lattner7c0cd8c2006-03-21 20:44:12 +00002239 TLI.getValueType(I.getType()), InVec, InIdx));
2240}
Chris Lattner32206f52006-03-18 01:44:44 +00002241
Chris Lattner098c01e2006-04-08 04:15:24 +00002242void SelectionDAGLowering::visitShuffleVector(User &I) {
2243 SDOperand V1 = getValue(I.getOperand(0));
2244 SDOperand V2 = getValue(I.getOperand(1));
2245 SDOperand Mask = getValue(I.getOperand(2));
2246
Dan Gohmana8665142007-06-25 16:23:39 +00002247 setValue(&I, DAG.getNode(ISD::VECTOR_SHUFFLE,
2248 TLI.getValueType(I.getType()),
2249 V1, V2, Mask));
Chris Lattner098c01e2006-04-08 04:15:24 +00002250}
2251
2252
Chris Lattner7a60d912005-01-07 07:47:53 +00002253void SelectionDAGLowering::visitGetElementPtr(User &I) {
2254 SDOperand N = getValue(I.getOperand(0));
2255 const Type *Ty = I.getOperand(0)->getType();
Chris Lattner7a60d912005-01-07 07:47:53 +00002256
2257 for (GetElementPtrInst::op_iterator OI = I.op_begin()+1, E = I.op_end();
2258 OI != E; ++OI) {
2259 Value *Idx = *OI;
Chris Lattner35397782005-12-05 07:10:48 +00002260 if (const StructType *StTy = dyn_cast<StructType>(Ty)) {
Reid Spencere0fc4df2006-10-20 07:07:24 +00002261 unsigned Field = cast<ConstantInt>(Idx)->getZExtValue();
Chris Lattner7a60d912005-01-07 07:47:53 +00002262 if (Field) {
2263 // N = N + Offset
Chris Lattnerc473d8e2007-02-10 19:55:17 +00002264 uint64_t Offset = TD->getStructLayout(StTy)->getElementOffset(Field);
Chris Lattner7a60d912005-01-07 07:47:53 +00002265 N = DAG.getNode(ISD::ADD, N.getValueType(), N,
Misha Brukman77451162005-04-22 04:01:18 +00002266 getIntPtrConstant(Offset));
Chris Lattner7a60d912005-01-07 07:47:53 +00002267 }
2268 Ty = StTy->getElementType(Field);
2269 } else {
2270 Ty = cast<SequentialType>(Ty)->getElementType();
Chris Lattner19a83992005-01-07 21:56:57 +00002271
Chris Lattner43535a12005-11-09 04:45:33 +00002272 // If this is a constant subscript, handle it quickly.
2273 if (ConstantInt *CI = dyn_cast<ConstantInt>(Idx)) {
Reid Spencere0fc4df2006-10-20 07:07:24 +00002274 if (CI->getZExtValue() == 0) continue;
Reid Spencere63b6512006-12-31 05:55:36 +00002275 uint64_t Offs =
Evan Cheng8ec52832007-01-05 01:46:20 +00002276 TD->getTypeSize(Ty)*cast<ConstantInt>(CI)->getSExtValue();
Chris Lattner43535a12005-11-09 04:45:33 +00002277 N = DAG.getNode(ISD::ADD, N.getValueType(), N, getIntPtrConstant(Offs));
2278 continue;
Chris Lattner7a60d912005-01-07 07:47:53 +00002279 }
Chris Lattner43535a12005-11-09 04:45:33 +00002280
2281 // N = N + Idx * ElementSize;
Owen Anderson20a631f2006-05-03 01:29:57 +00002282 uint64_t ElementSize = TD->getTypeSize(Ty);
Chris Lattner43535a12005-11-09 04:45:33 +00002283 SDOperand IdxN = getValue(Idx);
2284
2285 // If the index is smaller or larger than intptr_t, truncate or extend
2286 // it.
2287 if (IdxN.getValueType() < N.getValueType()) {
Reid Spencere63b6512006-12-31 05:55:36 +00002288 IdxN = DAG.getNode(ISD::SIGN_EXTEND, N.getValueType(), IdxN);
Chris Lattner43535a12005-11-09 04:45:33 +00002289 } else if (IdxN.getValueType() > N.getValueType())
2290 IdxN = DAG.getNode(ISD::TRUNCATE, N.getValueType(), IdxN);
2291
2292 // If this is a multiply by a power of two, turn it into a shl
2293 // immediately. This is a very common case.
2294 if (isPowerOf2_64(ElementSize)) {
2295 unsigned Amt = Log2_64(ElementSize);
2296 IdxN = DAG.getNode(ISD::SHL, N.getValueType(), IdxN,
Chris Lattner41fd6d52005-11-09 16:50:40 +00002297 DAG.getConstant(Amt, TLI.getShiftAmountTy()));
Chris Lattner43535a12005-11-09 04:45:33 +00002298 N = DAG.getNode(ISD::ADD, N.getValueType(), N, IdxN);
2299 continue;
2300 }
2301
2302 SDOperand Scale = getIntPtrConstant(ElementSize);
2303 IdxN = DAG.getNode(ISD::MUL, N.getValueType(), IdxN, Scale);
2304 N = DAG.getNode(ISD::ADD, N.getValueType(), N, IdxN);
Chris Lattner7a60d912005-01-07 07:47:53 +00002305 }
2306 }
2307 setValue(&I, N);
2308}
2309
2310void SelectionDAGLowering::visitAlloca(AllocaInst &I) {
2311 // If this is a fixed sized alloca in the entry block of the function,
2312 // allocate it statically on the stack.
2313 if (FuncInfo.StaticAllocaMap.count(&I))
2314 return; // getValue will auto-populate this.
2315
2316 const Type *Ty = I.getAllocatedType();
Owen Anderson20a631f2006-05-03 01:29:57 +00002317 uint64_t TySize = TLI.getTargetData()->getTypeSize(Ty);
Chris Lattner50ee0e42007-01-20 22:35:55 +00002318 unsigned Align =
Chris Lattner945e4372007-02-14 05:52:17 +00002319 std::max((unsigned)TLI.getTargetData()->getPrefTypeAlignment(Ty),
Chris Lattner50ee0e42007-01-20 22:35:55 +00002320 I.getAlignment());
Chris Lattner7a60d912005-01-07 07:47:53 +00002321
2322 SDOperand AllocSize = getValue(I.getArraySize());
Chris Lattnereccb73d2005-01-22 23:04:37 +00002323 MVT::ValueType IntPtr = TLI.getPointerTy();
2324 if (IntPtr < AllocSize.getValueType())
2325 AllocSize = DAG.getNode(ISD::TRUNCATE, IntPtr, AllocSize);
2326 else if (IntPtr > AllocSize.getValueType())
2327 AllocSize = DAG.getNode(ISD::ZERO_EXTEND, IntPtr, AllocSize);
Chris Lattner7a60d912005-01-07 07:47:53 +00002328
Chris Lattnereccb73d2005-01-22 23:04:37 +00002329 AllocSize = DAG.getNode(ISD::MUL, IntPtr, AllocSize,
Chris Lattner7a60d912005-01-07 07:47:53 +00002330 getIntPtrConstant(TySize));
2331
2332 // Handle alignment. If the requested alignment is less than or equal to the
2333 // stack alignment, ignore it and round the size of the allocation up to the
2334 // stack alignment size. If the size is greater than the stack alignment, we
2335 // note this in the DYNAMIC_STACKALLOC node.
2336 unsigned StackAlign =
2337 TLI.getTargetMachine().getFrameInfo()->getStackAlignment();
2338 if (Align <= StackAlign) {
2339 Align = 0;
2340 // Add SA-1 to the size.
2341 AllocSize = DAG.getNode(ISD::ADD, AllocSize.getValueType(), AllocSize,
2342 getIntPtrConstant(StackAlign-1));
2343 // Mask out the low bits for alignment purposes.
2344 AllocSize = DAG.getNode(ISD::AND, AllocSize.getValueType(), AllocSize,
2345 getIntPtrConstant(~(uint64_t)(StackAlign-1)));
2346 }
2347
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002348 SDOperand Ops[] = { getRoot(), AllocSize, getIntPtrConstant(Align) };
Chris Lattnerbd887772006-08-14 23:53:35 +00002349 const MVT::ValueType *VTs = DAG.getNodeValueTypes(AllocSize.getValueType(),
2350 MVT::Other);
2351 SDOperand DSA = DAG.getNode(ISD::DYNAMIC_STACKALLOC, VTs, 2, Ops, 3);
Chris Lattner79084302007-02-04 01:31:47 +00002352 setValue(&I, DSA);
2353 DAG.setRoot(DSA.getValue(1));
Chris Lattner7a60d912005-01-07 07:47:53 +00002354
2355 // Inform the Frame Information that we have just allocated a variable-sized
2356 // object.
2357 CurMBB->getParent()->getFrameInfo()->CreateVariableSizedObject();
2358}
2359
Chris Lattner7a60d912005-01-07 07:47:53 +00002360void SelectionDAGLowering::visitLoad(LoadInst &I) {
2361 SDOperand Ptr = getValue(I.getOperand(0));
Misha Brukman835702a2005-04-21 22:36:52 +00002362
Chris Lattner4d9651c2005-01-17 22:19:26 +00002363 SDOperand Root;
2364 if (I.isVolatile())
2365 Root = getRoot();
2366 else {
2367 // Do not serialize non-volatile loads against each other.
2368 Root = DAG.getRoot();
2369 }
Chris Lattner4024c002006-03-15 22:19:46 +00002370
Evan Chenge71fe34d2006-10-09 20:57:25 +00002371 setValue(&I, getLoadFrom(I.getType(), Ptr, I.getOperand(0),
Christopher Lamb8af6d582007-04-22 23:15:30 +00002372 Root, I.isVolatile(), I.getAlignment()));
Chris Lattner4024c002006-03-15 22:19:46 +00002373}
2374
2375SDOperand SelectionDAGLowering::getLoadFrom(const Type *Ty, SDOperand Ptr,
Evan Chenge71fe34d2006-10-09 20:57:25 +00002376 const Value *SV, SDOperand Root,
Christopher Lamb8af6d582007-04-22 23:15:30 +00002377 bool isVolatile,
2378 unsigned Alignment) {
Dan Gohmana8665142007-06-25 16:23:39 +00002379 SDOperand L =
2380 DAG.getLoad(TLI.getValueType(Ty), Root, Ptr, SV, 0,
2381 isVolatile, Alignment);
Chris Lattner4d9651c2005-01-17 22:19:26 +00002382
Chris Lattner4024c002006-03-15 22:19:46 +00002383 if (isVolatile)
Chris Lattner4d9651c2005-01-17 22:19:26 +00002384 DAG.setRoot(L.getValue(1));
2385 else
2386 PendingLoads.push_back(L.getValue(1));
Chris Lattner4024c002006-03-15 22:19:46 +00002387
2388 return L;
Chris Lattner7a60d912005-01-07 07:47:53 +00002389}
2390
2391
2392void SelectionDAGLowering::visitStore(StoreInst &I) {
2393 Value *SrcV = I.getOperand(0);
2394 SDOperand Src = getValue(SrcV);
2395 SDOperand Ptr = getValue(I.getOperand(1));
Evan Cheng258657e2006-12-20 01:27:29 +00002396 DAG.setRoot(DAG.getStore(getRoot(), Src, Ptr, I.getOperand(1), 0,
Christopher Lamb8af6d582007-04-22 23:15:30 +00002397 I.isVolatile(), I.getAlignment()));
Chris Lattner7a60d912005-01-07 07:47:53 +00002398}
2399
Chris Lattnerd96b09a2006-03-24 02:22:33 +00002400/// IntrinsicCannotAccessMemory - Return true if the specified intrinsic cannot
2401/// access memory and has no other side effects at all.
2402static bool IntrinsicCannotAccessMemory(unsigned IntrinsicID) {
2403#define GET_NO_MEMORY_INTRINSICS
2404#include "llvm/Intrinsics.gen"
2405#undef GET_NO_MEMORY_INTRINSICS
2406 return false;
2407}
2408
Chris Lattnera9c59156b2006-04-02 03:41:14 +00002409// IntrinsicOnlyReadsMemory - Return true if the specified intrinsic doesn't
2410// have any side-effects or if it only reads memory.
2411static bool IntrinsicOnlyReadsMemory(unsigned IntrinsicID) {
2412#define GET_SIDE_EFFECT_INFO
2413#include "llvm/Intrinsics.gen"
2414#undef GET_SIDE_EFFECT_INFO
2415 return false;
2416}
2417
Chris Lattnerd96b09a2006-03-24 02:22:33 +00002418/// visitTargetIntrinsic - Lower a call of a target intrinsic to an INTRINSIC
2419/// node.
2420void SelectionDAGLowering::visitTargetIntrinsic(CallInst &I,
2421 unsigned Intrinsic) {
Chris Lattner313229c2006-03-24 22:49:42 +00002422 bool HasChain = !IntrinsicCannotAccessMemory(Intrinsic);
Chris Lattnera9c59156b2006-04-02 03:41:14 +00002423 bool OnlyLoad = HasChain && IntrinsicOnlyReadsMemory(Intrinsic);
Chris Lattnerd96b09a2006-03-24 02:22:33 +00002424
2425 // Build the operand list.
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002426 SmallVector<SDOperand, 8> Ops;
Chris Lattnera9c59156b2006-04-02 03:41:14 +00002427 if (HasChain) { // If this intrinsic has side-effects, chainify it.
2428 if (OnlyLoad) {
2429 // We don't need to serialize loads against other loads.
2430 Ops.push_back(DAG.getRoot());
2431 } else {
2432 Ops.push_back(getRoot());
2433 }
2434 }
Chris Lattnerd96b09a2006-03-24 02:22:33 +00002435
2436 // Add the intrinsic ID as an integer operand.
2437 Ops.push_back(DAG.getConstant(Intrinsic, TLI.getPointerTy()));
2438
2439 // Add all operands of the call to the operand list.
2440 for (unsigned i = 1, e = I.getNumOperands(); i != e; ++i) {
2441 SDOperand Op = getValue(I.getOperand(i));
Chris Lattnerd96b09a2006-03-24 02:22:33 +00002442 assert(TLI.isTypeLegal(Op.getValueType()) &&
2443 "Intrinsic uses a non-legal type?");
2444 Ops.push_back(Op);
2445 }
2446
2447 std::vector<MVT::ValueType> VTs;
2448 if (I.getType() != Type::VoidTy) {
2449 MVT::ValueType VT = TLI.getValueType(I.getType());
Dan Gohmana8665142007-06-25 16:23:39 +00002450 if (MVT::isVector(VT)) {
Reid Spencerd84d35b2007-02-15 02:26:10 +00002451 const VectorType *DestTy = cast<VectorType>(I.getType());
Chris Lattnerd96b09a2006-03-24 02:22:33 +00002452 MVT::ValueType EltVT = TLI.getValueType(DestTy->getElementType());
2453
2454 VT = MVT::getVectorType(EltVT, DestTy->getNumElements());
2455 assert(VT != MVT::Other && "Intrinsic uses a non-legal type?");
2456 }
2457
2458 assert(TLI.isTypeLegal(VT) && "Intrinsic uses a non-legal type?");
2459 VTs.push_back(VT);
2460 }
2461 if (HasChain)
2462 VTs.push_back(MVT::Other);
2463
Chris Lattnerbd887772006-08-14 23:53:35 +00002464 const MVT::ValueType *VTList = DAG.getNodeValueTypes(VTs);
2465
Chris Lattnerd96b09a2006-03-24 02:22:33 +00002466 // Create the node.
Chris Lattnere55d1712006-03-28 00:40:33 +00002467 SDOperand Result;
2468 if (!HasChain)
Chris Lattnerbd887772006-08-14 23:53:35 +00002469 Result = DAG.getNode(ISD::INTRINSIC_WO_CHAIN, VTList, VTs.size(),
2470 &Ops[0], Ops.size());
Chris Lattnere55d1712006-03-28 00:40:33 +00002471 else if (I.getType() != Type::VoidTy)
Chris Lattnerbd887772006-08-14 23:53:35 +00002472 Result = DAG.getNode(ISD::INTRINSIC_W_CHAIN, VTList, VTs.size(),
2473 &Ops[0], Ops.size());
Chris Lattnere55d1712006-03-28 00:40:33 +00002474 else
Chris Lattnerbd887772006-08-14 23:53:35 +00002475 Result = DAG.getNode(ISD::INTRINSIC_VOID, VTList, VTs.size(),
2476 &Ops[0], Ops.size());
Chris Lattnere55d1712006-03-28 00:40:33 +00002477
Chris Lattnera9c59156b2006-04-02 03:41:14 +00002478 if (HasChain) {
2479 SDOperand Chain = Result.getValue(Result.Val->getNumValues()-1);
2480 if (OnlyLoad)
2481 PendingLoads.push_back(Chain);
2482 else
2483 DAG.setRoot(Chain);
2484 }
Chris Lattnerd96b09a2006-03-24 02:22:33 +00002485 if (I.getType() != Type::VoidTy) {
Reid Spencerd84d35b2007-02-15 02:26:10 +00002486 if (const VectorType *PTy = dyn_cast<VectorType>(I.getType())) {
Dan Gohmana8665142007-06-25 16:23:39 +00002487 MVT::ValueType VT = TLI.getValueType(PTy);
2488 Result = DAG.getNode(ISD::BIT_CONVERT, VT, Result);
Chris Lattnerd96b09a2006-03-24 02:22:33 +00002489 }
2490 setValue(&I, Result);
2491 }
2492}
2493
Duncan Sandsfe806382007-07-04 20:52:51 +00002494/// ExtractGlobalVariable - If V is a global variable, or a bitcast of one
Duncan Sands4cb9eb82007-05-04 17:12:26 +00002495/// (possibly constant folded), return it. Otherwise return NULL.
Duncan Sandsfe806382007-07-04 20:52:51 +00002496static GlobalVariable *ExtractGlobalVariable (Value *V) {
2497 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(V))
Duncan Sands4cb9eb82007-05-04 17:12:26 +00002498 return GV;
Duncan Sandsfe806382007-07-04 20:52:51 +00002499 else if (ConstantExpr *CE = dyn_cast<ConstantExpr>(V)) {
Duncan Sands4cb9eb82007-05-04 17:12:26 +00002500 if (CE->getOpcode() == Instruction::BitCast)
2501 return dyn_cast<GlobalVariable>(CE->getOperand(0));
2502 else if (CE->getOpcode() == Instruction::GetElementPtr) {
2503 for (unsigned i = 1, e = CE->getNumOperands(); i != e; ++i)
2504 if (!CE->getOperand(i)->isNullValue())
2505 return NULL;
2506 return dyn_cast<GlobalVariable>(CE->getOperand(0));
2507 }
2508 }
2509 return NULL;
2510}
2511
Duncan Sandsfe806382007-07-04 20:52:51 +00002512/// ExtractTypeInfo - Extracts the type info from a value.
2513static GlobalVariable *ExtractTypeInfo (Value *V) {
2514 GlobalVariable *GV = ExtractGlobalVariable(V);
2515 assert (GV || isa<ConstantPointerNull>(V) &&
2516 "TypeInfo must be a global variable or NULL");
2517 return GV;
2518}
2519
Duncan Sands92bf2c62007-06-15 19:04:19 +00002520/// addCatchInfo - Extract the personality and type infos from an eh.selector
Duncan Sandsfe806382007-07-04 20:52:51 +00002521/// call, and add them to the specified machine basic block.
Duncan Sands92bf2c62007-06-15 19:04:19 +00002522static void addCatchInfo(CallInst &I, MachineModuleInfo *MMI,
2523 MachineBasicBlock *MBB) {
2524 // Inform the MachineModuleInfo of the personality for this landing pad.
2525 ConstantExpr *CE = cast<ConstantExpr>(I.getOperand(2));
2526 assert(CE->getOpcode() == Instruction::BitCast &&
2527 isa<Function>(CE->getOperand(0)) &&
2528 "Personality should be a function");
2529 MMI->addPersonality(MBB, cast<Function>(CE->getOperand(0)));
2530
2531 // Gather all the type infos for this landing pad and pass them along to
2532 // MachineModuleInfo.
2533 std::vector<GlobalVariable *> TyInfo;
Duncan Sandsfe806382007-07-04 20:52:51 +00002534 unsigned N = I.getNumOperands();
2535
2536 for (unsigned i = N - 1; i > 2; --i) {
2537 if (ConstantInt *CI = dyn_cast<ConstantInt>(I.getOperand(i))) {
2538 unsigned FilterLength = CI->getZExtValue();
2539 unsigned FirstCatch = i + FilterLength + 1;
2540 assert (FirstCatch <= N && "Invalid filter length");
2541
2542 if (FirstCatch < N) {
2543 TyInfo.reserve(N - FirstCatch);
2544 for (unsigned j = FirstCatch; j < N; ++j)
2545 TyInfo.push_back(ExtractTypeInfo(I.getOperand(j)));
2546 MMI->addCatchTypeInfo(MBB, TyInfo);
2547 TyInfo.clear();
2548 }
2549
2550 TyInfo.reserve(FilterLength);
2551 for (unsigned j = i + 1; j < FirstCatch; ++j)
2552 TyInfo.push_back(ExtractTypeInfo(I.getOperand(j)));
2553 MMI->addFilterTypeInfo(MBB, TyInfo);
2554 TyInfo.clear();
2555
2556 N = i;
2557 }
Duncan Sands92bf2c62007-06-15 19:04:19 +00002558 }
Duncan Sandsfe806382007-07-04 20:52:51 +00002559
2560 if (N > 3) {
2561 TyInfo.reserve(N - 3);
2562 for (unsigned j = 3; j < N; ++j)
2563 TyInfo.push_back(ExtractTypeInfo(I.getOperand(j)));
Duncan Sands92bf2c62007-06-15 19:04:19 +00002564 MMI->addCatchTypeInfo(MBB, TyInfo);
Duncan Sandsfe806382007-07-04 20:52:51 +00002565 }
Duncan Sands92bf2c62007-06-15 19:04:19 +00002566}
2567
Evan Cheng77f541d2007-06-27 18:45:32 +00002568/// propagateEHRegister - The specified EH register is required in a successor
2569/// of the EH landing pad. Propagate it (by adding it to livein) to all the
2570/// blocks in the paths between the landing pad and the specified block.
2571static void propagateEHRegister(MachineBasicBlock *MBB, unsigned EHReg,
2572 SmallPtrSet<MachineBasicBlock*, 8> Visited) {
2573 if (MBB->isLandingPad() || !Visited.insert(MBB))
2574 return;
2575
2576 MBB->addLiveIn(EHReg);
2577 for (MachineBasicBlock::pred_iterator PI = MBB->pred_begin(),
2578 E = MBB->pred_end(); PI != E; ++PI)
2579 propagateEHRegister(*PI, EHReg, Visited);
2580}
2581
2582static void propagateEHRegister(MachineBasicBlock *MBB, unsigned EHReg) {
2583 SmallPtrSet<MachineBasicBlock*, 8> Visited;
2584 propagateEHRegister(MBB, EHReg, Visited);
2585}
2586
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002587/// visitIntrinsicCall - Lower the call to the specified intrinsic function. If
2588/// we want to emit this as a call to a named external function, return the name
2589/// otherwise lower it and return null.
2590const char *
2591SelectionDAGLowering::visitIntrinsicCall(CallInst &I, unsigned Intrinsic) {
2592 switch (Intrinsic) {
Chris Lattnerd96b09a2006-03-24 02:22:33 +00002593 default:
2594 // By default, turn this into a target intrinsic node.
2595 visitTargetIntrinsic(I, Intrinsic);
2596 return 0;
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002597 case Intrinsic::vastart: visitVAStart(I); return 0;
2598 case Intrinsic::vaend: visitVAEnd(I); return 0;
2599 case Intrinsic::vacopy: visitVACopy(I); return 0;
Nate Begemaneda59972007-01-29 22:58:52 +00002600 case Intrinsic::returnaddress:
2601 setValue(&I, DAG.getNode(ISD::RETURNADDR, TLI.getPointerTy(),
2602 getValue(I.getOperand(1))));
2603 return 0;
2604 case Intrinsic::frameaddress:
2605 setValue(&I, DAG.getNode(ISD::FRAMEADDR, TLI.getPointerTy(),
2606 getValue(I.getOperand(1))));
2607 return 0;
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002608 case Intrinsic::setjmp:
Anton Korobeynikov3b7c2572006-12-10 23:12:42 +00002609 return "_setjmp"+!TLI.usesUnderscoreSetJmp();
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002610 break;
2611 case Intrinsic::longjmp:
Anton Korobeynikov3b7c2572006-12-10 23:12:42 +00002612 return "_longjmp"+!TLI.usesUnderscoreLongJmp();
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002613 break;
Chris Lattner093c1592006-03-03 00:00:25 +00002614 case Intrinsic::memcpy_i32:
2615 case Intrinsic::memcpy_i64:
2616 visitMemIntrinsic(I, ISD::MEMCPY);
2617 return 0;
2618 case Intrinsic::memset_i32:
2619 case Intrinsic::memset_i64:
2620 visitMemIntrinsic(I, ISD::MEMSET);
2621 return 0;
2622 case Intrinsic::memmove_i32:
2623 case Intrinsic::memmove_i64:
2624 visitMemIntrinsic(I, ISD::MEMMOVE);
2625 return 0;
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002626
Chris Lattner5d4e61d2005-12-13 17:40:33 +00002627 case Intrinsic::dbg_stoppoint: {
Jim Laskeyc56315c2007-01-26 21:22:28 +00002628 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
Jim Laskeya8bdac82006-03-23 18:06:46 +00002629 DbgStopPointInst &SPI = cast<DbgStopPointInst>(I);
Jim Laskeyc56315c2007-01-26 21:22:28 +00002630 if (MMI && SPI.getContext() && MMI->Verify(SPI.getContext())) {
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002631 SDOperand Ops[5];
Chris Lattner435b4022005-11-29 06:21:05 +00002632
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002633 Ops[0] = getRoot();
2634 Ops[1] = getValue(SPI.getLineValue());
2635 Ops[2] = getValue(SPI.getColumnValue());
Chris Lattner435b4022005-11-29 06:21:05 +00002636
Jim Laskeyc56315c2007-01-26 21:22:28 +00002637 DebugInfoDesc *DD = MMI->getDescFor(SPI.getContext());
Jim Laskey5995d012006-02-11 01:01:30 +00002638 assert(DD && "Not a debug information descriptor");
Jim Laskeya8bdac82006-03-23 18:06:46 +00002639 CompileUnitDesc *CompileUnit = cast<CompileUnitDesc>(DD);
2640
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002641 Ops[3] = DAG.getString(CompileUnit->getFileName());
2642 Ops[4] = DAG.getString(CompileUnit->getDirectory());
Jim Laskey5995d012006-02-11 01:01:30 +00002643
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002644 DAG.setRoot(DAG.getNode(ISD::LOCATION, MVT::Other, Ops, 5));
Chris Lattner5d4e61d2005-12-13 17:40:33 +00002645 }
Jim Laskeya8bdac82006-03-23 18:06:46 +00002646
Chris Lattnerf2b62f32005-11-16 07:22:30 +00002647 return 0;
Chris Lattner435b4022005-11-29 06:21:05 +00002648 }
Jim Laskeya8bdac82006-03-23 18:06:46 +00002649 case Intrinsic::dbg_region_start: {
Jim Laskeyc56315c2007-01-26 21:22:28 +00002650 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
Jim Laskeya8bdac82006-03-23 18:06:46 +00002651 DbgRegionStartInst &RSI = cast<DbgRegionStartInst>(I);
Jim Laskeyc56315c2007-01-26 21:22:28 +00002652 if (MMI && RSI.getContext() && MMI->Verify(RSI.getContext())) {
2653 unsigned LabelID = MMI->RecordRegionStart(RSI.getContext());
Jim Laskeyf9e54452007-01-26 14:34:52 +00002654 DAG.setRoot(DAG.getNode(ISD::LABEL, MVT::Other, getRoot(),
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002655 DAG.getConstant(LabelID, MVT::i32)));
Jim Laskeya8bdac82006-03-23 18:06:46 +00002656 }
2657
Chris Lattnerf2b62f32005-11-16 07:22:30 +00002658 return 0;
Jim Laskeya8bdac82006-03-23 18:06:46 +00002659 }
2660 case Intrinsic::dbg_region_end: {
Jim Laskeyc56315c2007-01-26 21:22:28 +00002661 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
Jim Laskeya8bdac82006-03-23 18:06:46 +00002662 DbgRegionEndInst &REI = cast<DbgRegionEndInst>(I);
Jim Laskeyc56315c2007-01-26 21:22:28 +00002663 if (MMI && REI.getContext() && MMI->Verify(REI.getContext())) {
2664 unsigned LabelID = MMI->RecordRegionEnd(REI.getContext());
Jim Laskeyf9e54452007-01-26 14:34:52 +00002665 DAG.setRoot(DAG.getNode(ISD::LABEL, MVT::Other,
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002666 getRoot(), DAG.getConstant(LabelID, MVT::i32)));
Jim Laskeya8bdac82006-03-23 18:06:46 +00002667 }
2668
Chris Lattnerf2b62f32005-11-16 07:22:30 +00002669 return 0;
Jim Laskeya8bdac82006-03-23 18:06:46 +00002670 }
2671 case Intrinsic::dbg_func_start: {
Jim Laskeyc56315c2007-01-26 21:22:28 +00002672 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
Jim Laskeya8bdac82006-03-23 18:06:46 +00002673 DbgFuncStartInst &FSI = cast<DbgFuncStartInst>(I);
Jim Laskeyc56315c2007-01-26 21:22:28 +00002674 if (MMI && FSI.getSubprogram() &&
2675 MMI->Verify(FSI.getSubprogram())) {
2676 unsigned LabelID = MMI->RecordRegionStart(FSI.getSubprogram());
Jim Laskeyf9e54452007-01-26 14:34:52 +00002677 DAG.setRoot(DAG.getNode(ISD::LABEL, MVT::Other,
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002678 getRoot(), DAG.getConstant(LabelID, MVT::i32)));
Jim Laskeya8bdac82006-03-23 18:06:46 +00002679 }
2680
Chris Lattnerf2b62f32005-11-16 07:22:30 +00002681 return 0;
Jim Laskeya8bdac82006-03-23 18:06:46 +00002682 }
2683 case Intrinsic::dbg_declare: {
Jim Laskeyc56315c2007-01-26 21:22:28 +00002684 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
Jim Laskeya8bdac82006-03-23 18:06:46 +00002685 DbgDeclareInst &DI = cast<DbgDeclareInst>(I);
Jim Laskeyc56315c2007-01-26 21:22:28 +00002686 if (MMI && DI.getVariable() && MMI->Verify(DI.getVariable())) {
Jim Laskey53f1ecc2006-03-24 09:50:27 +00002687 SDOperand AddressOp = getValue(DI.getAddress());
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002688 if (FrameIndexSDNode *FI = dyn_cast<FrameIndexSDNode>(AddressOp))
Jim Laskeyc56315c2007-01-26 21:22:28 +00002689 MMI->RecordVariable(DI.getVariable(), FI->getIndex());
Jim Laskeya8bdac82006-03-23 18:06:46 +00002690 }
2691
2692 return 0;
2693 }
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002694
Jim Laskey4b37a4c2007-02-21 22:53:45 +00002695 case Intrinsic::eh_exception: {
Evan Cheng77f541d2007-06-27 18:45:32 +00002696 if (ExceptionHandling) {
2697 if (!CurMBB->isLandingPad() && TLI.getExceptionAddressRegister())
2698 propagateEHRegister(CurMBB, TLI.getExceptionAddressRegister());
Duncan Sands61166502007-06-06 10:05:18 +00002699
Jim Laskey504e9942007-02-22 15:38:06 +00002700 // Insert the EXCEPTIONADDR instruction.
2701 SDVTList VTs = DAG.getVTList(TLI.getPointerTy(), MVT::Other);
2702 SDOperand Ops[1];
2703 Ops[0] = DAG.getRoot();
2704 SDOperand Op = DAG.getNode(ISD::EXCEPTIONADDR, VTs, Ops, 1);
2705 setValue(&I, Op);
2706 DAG.setRoot(Op.getValue(1));
Jim Laskeye1d1c052007-02-24 09:45:44 +00002707 } else {
Jim Laskeycf465fc2007-02-28 18:37:04 +00002708 setValue(&I, DAG.getConstant(0, TLI.getPointerTy()));
Jim Laskey504e9942007-02-22 15:38:06 +00002709 }
Jim Laskey4b37a4c2007-02-21 22:53:45 +00002710 return 0;
2711 }
2712
Duncan Sandsfe806382007-07-04 20:52:51 +00002713 case Intrinsic::eh_selector:{
Jim Laskey4b37a4c2007-02-21 22:53:45 +00002714 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
Jim Laskey4b37a4c2007-02-21 22:53:45 +00002715
Duncan Sands92bf2c62007-06-15 19:04:19 +00002716 if (ExceptionHandling && MMI) {
2717 if (CurMBB->isLandingPad())
2718 addCatchInfo(I, MMI, CurMBB);
Evan Cheng77f541d2007-06-27 18:45:32 +00002719 else {
Duncan Sands92bf2c62007-06-15 19:04:19 +00002720#ifndef NDEBUG
Duncan Sands92bf2c62007-06-15 19:04:19 +00002721 FuncInfo.CatchInfoLost.insert(&I);
2722#endif
Evan Cheng77f541d2007-06-27 18:45:32 +00002723 if (TLI.getExceptionSelectorRegister())
2724 propagateEHRegister(CurMBB, TLI.getExceptionSelectorRegister());
2725 }
Jim Laskey504e9942007-02-22 15:38:06 +00002726
2727 // Insert the EHSELECTION instruction.
Anton Korobeynikov11940fb2007-05-02 22:15:48 +00002728 SDVTList VTs = DAG.getVTList(TLI.getPointerTy(), MVT::Other);
Jim Laskey504e9942007-02-22 15:38:06 +00002729 SDOperand Ops[2];
2730 Ops[0] = getValue(I.getOperand(1));
2731 Ops[1] = getRoot();
2732 SDOperand Op = DAG.getNode(ISD::EHSELECTION, VTs, Ops, 2);
2733 setValue(&I, Op);
2734 DAG.setRoot(Op.getValue(1));
Jim Laskeye1d1c052007-02-24 09:45:44 +00002735 } else {
Anton Korobeynikov11940fb2007-05-02 22:15:48 +00002736 setValue(&I, DAG.getConstant(0, TLI.getPointerTy()));
Jim Laskey504e9942007-02-22 15:38:06 +00002737 }
Jim Laskey4b37a4c2007-02-21 22:53:45 +00002738
2739 return 0;
2740 }
2741
2742 case Intrinsic::eh_typeid_for: {
Jim Laskey4b37a4c2007-02-21 22:53:45 +00002743 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
Jim Laskey4b37a4c2007-02-21 22:53:45 +00002744
Jim Laskey504e9942007-02-22 15:38:06 +00002745 if (MMI) {
2746 // Find the type id for the given typeinfo.
Duncan Sandsfe806382007-07-04 20:52:51 +00002747 GlobalVariable *GV = ExtractTypeInfo(I.getOperand(1));
Duncan Sands4cb9eb82007-05-04 17:12:26 +00002748
Jim Laskey504e9942007-02-22 15:38:06 +00002749 unsigned TypeID = MMI->getTypeIDFor(GV);
2750 setValue(&I, DAG.getConstant(TypeID, MVT::i32));
Jim Laskeye1d1c052007-02-24 09:45:44 +00002751 } else {
2752 setValue(&I, DAG.getConstant(0, MVT::i32));
Jim Laskey504e9942007-02-22 15:38:06 +00002753 }
Jim Laskey4b37a4c2007-02-21 22:53:45 +00002754
2755 return 0;
2756 }
2757
Reid Spencerb4f9a6f2006-01-16 21:12:35 +00002758 case Intrinsic::sqrt_f32:
2759 case Intrinsic::sqrt_f64:
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002760 setValue(&I, DAG.getNode(ISD::FSQRT,
2761 getValue(I.getOperand(1)).getValueType(),
2762 getValue(I.getOperand(1))));
2763 return 0;
Chris Lattnerf0359b32006-09-09 06:03:30 +00002764 case Intrinsic::powi_f32:
2765 case Intrinsic::powi_f64:
2766 setValue(&I, DAG.getNode(ISD::FPOWI,
2767 getValue(I.getOperand(1)).getValueType(),
2768 getValue(I.getOperand(1)),
2769 getValue(I.getOperand(2))));
2770 return 0;
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002771 case Intrinsic::pcmarker: {
2772 SDOperand Tmp = getValue(I.getOperand(1));
2773 DAG.setRoot(DAG.getNode(ISD::PCMARKER, MVT::Other, getRoot(), Tmp));
2774 return 0;
2775 }
Andrew Lenharthde1b5d62005-11-11 22:48:54 +00002776 case Intrinsic::readcyclecounter: {
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002777 SDOperand Op = getRoot();
Chris Lattnerbd887772006-08-14 23:53:35 +00002778 SDOperand Tmp = DAG.getNode(ISD::READCYCLECOUNTER,
2779 DAG.getNodeValueTypes(MVT::i64, MVT::Other), 2,
2780 &Op, 1);
Andrew Lenharthde1b5d62005-11-11 22:48:54 +00002781 setValue(&I, Tmp);
2782 DAG.setRoot(Tmp.getValue(1));
Andrew Lenharth01aa5632005-11-11 16:47:30 +00002783 return 0;
Andrew Lenharthde1b5d62005-11-11 22:48:54 +00002784 }
Chris Lattnerf269d842007-04-10 03:20:39 +00002785 case Intrinsic::part_select: {
Reid Spencer85460ac2007-04-05 01:20:18 +00002786 // Currently not implemented: just abort
Reid Spencerc6251a72007-04-12 02:48:46 +00002787 assert(0 && "part_select intrinsic not implemented");
2788 abort();
2789 }
2790 case Intrinsic::part_set: {
2791 // Currently not implemented: just abort
2792 assert(0 && "part_set intrinsic not implemented");
Reid Spencer85460ac2007-04-05 01:20:18 +00002793 abort();
Reid Spencercce90f52007-04-04 23:48:25 +00002794 }
Reid Spencer3a0843e2007-04-01 07:34:11 +00002795 case Intrinsic::bswap:
Nate Begeman2fba8a32006-01-14 03:14:10 +00002796 setValue(&I, DAG.getNode(ISD::BSWAP,
2797 getValue(I.getOperand(1)).getValueType(),
2798 getValue(I.getOperand(1))));
2799 return 0;
Reid Spencer3a0843e2007-04-01 07:34:11 +00002800 case Intrinsic::cttz: {
2801 SDOperand Arg = getValue(I.getOperand(1));
2802 MVT::ValueType Ty = Arg.getValueType();
2803 SDOperand result = DAG.getNode(ISD::CTTZ, Ty, Arg);
2804 if (Ty < MVT::i32)
2805 result = DAG.getNode(ISD::ZERO_EXTEND, MVT::i32, result);
2806 else if (Ty > MVT::i32)
2807 result = DAG.getNode(ISD::TRUNCATE, MVT::i32, result);
2808 setValue(&I, result);
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002809 return 0;
Reid Spencer3a0843e2007-04-01 07:34:11 +00002810 }
2811 case Intrinsic::ctlz: {
2812 SDOperand Arg = getValue(I.getOperand(1));
2813 MVT::ValueType Ty = Arg.getValueType();
2814 SDOperand result = DAG.getNode(ISD::CTLZ, Ty, Arg);
2815 if (Ty < MVT::i32)
2816 result = DAG.getNode(ISD::ZERO_EXTEND, MVT::i32, result);
2817 else if (Ty > MVT::i32)
2818 result = DAG.getNode(ISD::TRUNCATE, MVT::i32, result);
2819 setValue(&I, result);
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002820 return 0;
Reid Spencer3a0843e2007-04-01 07:34:11 +00002821 }
2822 case Intrinsic::ctpop: {
2823 SDOperand Arg = getValue(I.getOperand(1));
2824 MVT::ValueType Ty = Arg.getValueType();
2825 SDOperand result = DAG.getNode(ISD::CTPOP, Ty, Arg);
2826 if (Ty < MVT::i32)
2827 result = DAG.getNode(ISD::ZERO_EXTEND, MVT::i32, result);
2828 else if (Ty > MVT::i32)
2829 result = DAG.getNode(ISD::TRUNCATE, MVT::i32, result);
2830 setValue(&I, result);
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002831 return 0;
Reid Spencer3a0843e2007-04-01 07:34:11 +00002832 }
Chris Lattnerb3266452006-01-13 02:50:02 +00002833 case Intrinsic::stacksave: {
Chris Lattnerc24a1d32006-08-08 02:23:42 +00002834 SDOperand Op = getRoot();
Chris Lattnerbd887772006-08-14 23:53:35 +00002835 SDOperand Tmp = DAG.getNode(ISD::STACKSAVE,
2836 DAG.getNodeValueTypes(TLI.getPointerTy(), MVT::Other), 2, &Op, 1);
Chris Lattnerb3266452006-01-13 02:50:02 +00002837 setValue(&I, Tmp);
2838 DAG.setRoot(Tmp.getValue(1));
2839 return 0;
2840 }
Chris Lattnerdeda32a2006-01-23 05:22:07 +00002841 case Intrinsic::stackrestore: {
2842 SDOperand Tmp = getValue(I.getOperand(1));
2843 DAG.setRoot(DAG.getNode(ISD::STACKRESTORE, MVT::Other, getRoot(), Tmp));
Chris Lattnerb3266452006-01-13 02:50:02 +00002844 return 0;
Chris Lattnerdeda32a2006-01-23 05:22:07 +00002845 }
Chris Lattner9e8b6332005-12-12 22:51:16 +00002846 case Intrinsic::prefetch:
2847 // FIXME: Currently discarding prefetches.
2848 return 0;
Tanya Lattnere199f972007-06-15 22:26:58 +00002849
2850 case Intrinsic::var_annotation:
2851 // Discard annotate attributes
2852 return 0;
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002853 }
2854}
2855
2856
Jim Laskey31fef782007-02-23 21:45:01 +00002857void SelectionDAGLowering::LowerCallTo(Instruction &I,
2858 const Type *CalledValueTy,
2859 unsigned CallingConv,
2860 bool IsTailCall,
Anton Korobeynikov3b327822007-05-23 11:08:31 +00002861 SDOperand Callee, unsigned OpIdx,
2862 MachineBasicBlock *LandingPad) {
Jim Laskey31fef782007-02-23 21:45:01 +00002863 const PointerType *PT = cast<PointerType>(CalledValueTy);
Jim Laskey504e9942007-02-22 15:38:06 +00002864 const FunctionType *FTy = cast<FunctionType>(PT->getElementType());
Reid Spencer71b79e32007-04-09 06:17:21 +00002865 const ParamAttrsList *Attrs = FTy->getParamAttrs();
Anton Korobeynikov3b327822007-05-23 11:08:31 +00002866 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
2867 unsigned BeginLabel = 0, EndLabel = 0;
2868
Jim Laskey504e9942007-02-22 15:38:06 +00002869 TargetLowering::ArgListTy Args;
2870 TargetLowering::ArgListEntry Entry;
2871 Args.reserve(I.getNumOperands());
2872 for (unsigned i = OpIdx, e = I.getNumOperands(); i != e; ++i) {
2873 Value *Arg = I.getOperand(i);
2874 SDOperand ArgNode = getValue(Arg);
2875 Entry.Node = ArgNode; Entry.Ty = Arg->getType();
Duncan Sands671e8c42007-05-07 20:49:28 +00002876
2877 unsigned attrInd = i - OpIdx + 1;
2878 Entry.isSExt = Attrs && Attrs->paramHasAttr(attrInd, ParamAttr::SExt);
2879 Entry.isZExt = Attrs && Attrs->paramHasAttr(attrInd, ParamAttr::ZExt);
2880 Entry.isInReg = Attrs && Attrs->paramHasAttr(attrInd, ParamAttr::InReg);
2881 Entry.isSRet = Attrs && Attrs->paramHasAttr(attrInd, ParamAttr::StructRet);
Jim Laskey504e9942007-02-22 15:38:06 +00002882 Args.push_back(Entry);
2883 }
2884
Duncan Sands61166502007-06-06 10:05:18 +00002885 if (ExceptionHandling && MMI) {
Anton Korobeynikov3b327822007-05-23 11:08:31 +00002886 // Insert a label before the invoke call to mark the try range. This can be
2887 // used to detect deletion of the invoke via the MachineModuleInfo.
2888 BeginLabel = MMI->NextLabelID();
2889 DAG.setRoot(DAG.getNode(ISD::LABEL, MVT::Other, getRoot(),
2890 DAG.getConstant(BeginLabel, MVT::i32)));
2891 }
2892
Jim Laskey504e9942007-02-22 15:38:06 +00002893 std::pair<SDOperand,SDOperand> Result =
2894 TLI.LowerCallTo(getRoot(), I.getType(),
Reid Spencera472f662007-04-11 02:44:20 +00002895 Attrs && Attrs->paramHasAttr(0, ParamAttr::SExt),
Jim Laskey31fef782007-02-23 21:45:01 +00002896 FTy->isVarArg(), CallingConv, IsTailCall,
Jim Laskey504e9942007-02-22 15:38:06 +00002897 Callee, Args, DAG);
2898 if (I.getType() != Type::VoidTy)
2899 setValue(&I, Result.first);
2900 DAG.setRoot(Result.second);
Anton Korobeynikov3b327822007-05-23 11:08:31 +00002901
Duncan Sands61166502007-06-06 10:05:18 +00002902 if (ExceptionHandling && MMI) {
Anton Korobeynikov3b327822007-05-23 11:08:31 +00002903 // Insert a label at the end of the invoke call to mark the try range. This
2904 // can be used to detect deletion of the invoke via the MachineModuleInfo.
2905 EndLabel = MMI->NextLabelID();
2906 DAG.setRoot(DAG.getNode(ISD::LABEL, MVT::Other, getRoot(),
2907 DAG.getConstant(EndLabel, MVT::i32)));
2908
2909 // Inform MachineModuleInfo of range.
2910 MMI->addInvoke(LandingPad, BeginLabel, EndLabel);
2911 }
Jim Laskey504e9942007-02-22 15:38:06 +00002912}
2913
2914
Chris Lattner7a60d912005-01-07 07:47:53 +00002915void SelectionDAGLowering::visitCall(CallInst &I) {
Chris Lattner18d2b342005-01-08 22:48:57 +00002916 const char *RenameFn = 0;
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002917 if (Function *F = I.getCalledFunction()) {
Reid Spencer5301e7c2007-01-30 20:08:39 +00002918 if (F->isDeclaration())
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002919 if (unsigned IID = F->getIntrinsicID()) {
2920 RenameFn = visitIntrinsicCall(I, IID);
2921 if (!RenameFn)
2922 return;
2923 } else { // Not an LLVM intrinsic.
2924 const std::string &Name = F->getName();
Chris Lattner5c1ba2a2006-03-05 05:09:38 +00002925 if (Name[0] == 'c' && (Name == "copysign" || Name == "copysignf")) {
2926 if (I.getNumOperands() == 3 && // Basic sanity checks.
2927 I.getOperand(1)->getType()->isFloatingPoint() &&
2928 I.getType() == I.getOperand(1)->getType() &&
2929 I.getType() == I.getOperand(2)->getType()) {
2930 SDOperand LHS = getValue(I.getOperand(1));
2931 SDOperand RHS = getValue(I.getOperand(2));
2932 setValue(&I, DAG.getNode(ISD::FCOPYSIGN, LHS.getValueType(),
2933 LHS, RHS));
2934 return;
2935 }
2936 } else if (Name[0] == 'f' && (Name == "fabs" || Name == "fabsf")) {
Chris Lattner0c140002005-04-02 05:26:53 +00002937 if (I.getNumOperands() == 2 && // Basic sanity checks.
2938 I.getOperand(1)->getType()->isFloatingPoint() &&
2939 I.getType() == I.getOperand(1)->getType()) {
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002940 SDOperand Tmp = getValue(I.getOperand(1));
Chris Lattner0c140002005-04-02 05:26:53 +00002941 setValue(&I, DAG.getNode(ISD::FABS, Tmp.getValueType(), Tmp));
2942 return;
2943 }
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002944 } else if (Name[0] == 's' && (Name == "sin" || Name == "sinf")) {
Chris Lattner80026402005-04-30 04:43:14 +00002945 if (I.getNumOperands() == 2 && // Basic sanity checks.
2946 I.getOperand(1)->getType()->isFloatingPoint() &&
Chris Lattner1784a9d22006-02-14 05:39:35 +00002947 I.getType() == I.getOperand(1)->getType()) {
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002948 SDOperand Tmp = getValue(I.getOperand(1));
Chris Lattner80026402005-04-30 04:43:14 +00002949 setValue(&I, DAG.getNode(ISD::FSIN, Tmp.getValueType(), Tmp));
2950 return;
2951 }
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002952 } else if (Name[0] == 'c' && (Name == "cos" || Name == "cosf")) {
Chris Lattner80026402005-04-30 04:43:14 +00002953 if (I.getNumOperands() == 2 && // Basic sanity checks.
2954 I.getOperand(1)->getType()->isFloatingPoint() &&
Chris Lattner1784a9d22006-02-14 05:39:35 +00002955 I.getType() == I.getOperand(1)->getType()) {
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002956 SDOperand Tmp = getValue(I.getOperand(1));
Chris Lattner80026402005-04-30 04:43:14 +00002957 setValue(&I, DAG.getNode(ISD::FCOS, Tmp.getValueType(), Tmp));
2958 return;
2959 }
2960 }
Chris Lattnere4f71d02005-05-14 13:56:55 +00002961 }
Chris Lattner476e67b2006-01-26 22:24:51 +00002962 } else if (isa<InlineAsm>(I.getOperand(0))) {
2963 visitInlineAsm(I);
2964 return;
Chris Lattnercd6f0f42005-11-09 19:44:01 +00002965 }
Misha Brukman835702a2005-04-21 22:36:52 +00002966
Chris Lattner18d2b342005-01-08 22:48:57 +00002967 SDOperand Callee;
2968 if (!RenameFn)
2969 Callee = getValue(I.getOperand(0));
2970 else
2971 Callee = DAG.getExternalSymbol(RenameFn, TLI.getPointerTy());
Anton Korobeynikov3b327822007-05-23 11:08:31 +00002972
Jim Laskey31fef782007-02-23 21:45:01 +00002973 LowerCallTo(I, I.getCalledValue()->getType(),
Anton Korobeynikov3b327822007-05-23 11:08:31 +00002974 I.getCallingConv(),
2975 I.isTailCall(),
2976 Callee,
2977 1);
Chris Lattner7a60d912005-01-07 07:47:53 +00002978}
2979
Jim Laskey504e9942007-02-22 15:38:06 +00002980
Dan Gohman78677932007-06-28 23:29:44 +00002981/// getCopyFromRegs - Emit a series of CopyFromReg nodes that copies from
2982/// this value and returns the result as a ValueVT value. This uses
2983/// Chain/Flag as the input and updates them for the output Chain/Flag.
2984/// If the Flag pointer is NULL, no flag is used.
2985SDOperand RegsForValue::getCopyFromRegs(SelectionDAG &DAG,
2986 SDOperand &Chain, SDOperand *Flag)const{
Dan Gohmand258e802007-07-05 20:12:34 +00002987 // Get the list of registers.
Dan Gohman78677932007-06-28 23:29:44 +00002988 std::vector<unsigned> R(Regs);
Dan Gohman78677932007-06-28 23:29:44 +00002989
2990 // Copy the legal parts from the registers.
2991 unsigned NumParts = Regs.size();
2992 SmallVector<SDOperand, 8> Parts(NumParts);
Dan Gohman533dd162007-07-02 16:18:06 +00002993 for (unsigned i = 0; i != NumParts; ++i) {
Dan Gohman78677932007-06-28 23:29:44 +00002994 SDOperand Part = Flag ?
2995 DAG.getCopyFromReg(Chain, Regs[i], RegVT, *Flag) :
2996 DAG.getCopyFromReg(Chain, Regs[i], RegVT);
2997 Chain = Part.getValue(1);
2998 if (Flag)
2999 *Flag = Part.getValue(2);
3000 Parts[i] = Part;
Chris Lattner705948d2006-06-08 18:22:48 +00003001 }
Chris Lattner77f04792007-03-25 05:00:54 +00003002
Dan Gohman78677932007-06-28 23:29:44 +00003003 // Assemble the legal parts into the final value.
Dan Gohmand258e802007-07-05 20:12:34 +00003004 return getCopyFromParts(DAG, &Parts[0], NumParts, RegVT, ValueVT, true);
Chris Lattner6f87d182006-02-22 22:37:12 +00003005}
3006
Chris Lattner571d9642006-02-23 19:21:04 +00003007/// getCopyToRegs - Emit a series of CopyToReg nodes that copies the
3008/// specified value into the registers specified by this object. This uses
3009/// Chain/Flag as the input and updates them for the output Chain/Flag.
Dan Gohman78677932007-06-28 23:29:44 +00003010/// If the Flag pointer is NULL, no flag is used.
Chris Lattner571d9642006-02-23 19:21:04 +00003011void RegsForValue::getCopyToRegs(SDOperand Val, SelectionDAG &DAG,
Dan Gohman78677932007-06-28 23:29:44 +00003012 SDOperand &Chain, SDOperand *Flag) const {
Dan Gohmand258e802007-07-05 20:12:34 +00003013 // Get the list of registers.
Dan Gohman78677932007-06-28 23:29:44 +00003014 std::vector<unsigned> R(Regs);
Dan Gohman78677932007-06-28 23:29:44 +00003015
3016 // Get the list of the values's legal parts.
3017 unsigned NumParts = Regs.size();
3018 SmallVector<SDOperand, 8> Parts(NumParts);
Dan Gohmand258e802007-07-05 20:12:34 +00003019 getCopyToParts(DAG, Val, &Parts[0], NumParts, RegVT, true);
Dan Gohman78677932007-06-28 23:29:44 +00003020
3021 // Copy the parts into the registers.
Dan Gohman533dd162007-07-02 16:18:06 +00003022 for (unsigned i = 0; i != NumParts; ++i) {
Dan Gohman78677932007-06-28 23:29:44 +00003023 SDOperand Part = Flag ?
3024 DAG.getCopyToReg(Chain, R[i], Parts[i], *Flag) :
3025 DAG.getCopyToReg(Chain, R[i], Parts[i]);
3026 Chain = Part.getValue(0);
3027 if (Flag)
3028 *Flag = Part.getValue(1);
Chris Lattner571d9642006-02-23 19:21:04 +00003029 }
3030}
Chris Lattner6f87d182006-02-22 22:37:12 +00003031
Chris Lattner571d9642006-02-23 19:21:04 +00003032/// AddInlineAsmOperands - Add this value to the specified inlineasm node
3033/// operand list. This adds the code marker and includes the number of
3034/// values added into it.
3035void RegsForValue::AddInlineAsmOperands(unsigned Code, SelectionDAG &DAG,
Chris Lattnere7c0ffb2006-02-23 20:06:57 +00003036 std::vector<SDOperand> &Ops) const {
Chris Lattnerb49917d2007-04-09 00:33:58 +00003037 MVT::ValueType IntPtrTy = DAG.getTargetLoweringInfo().getPointerTy();
3038 Ops.push_back(DAG.getTargetConstant(Code | (Regs.size() << 3), IntPtrTy));
Chris Lattner571d9642006-02-23 19:21:04 +00003039 for (unsigned i = 0, e = Regs.size(); i != e; ++i)
3040 Ops.push_back(DAG.getRegister(Regs[i], RegVT));
3041}
Chris Lattner6f87d182006-02-22 22:37:12 +00003042
3043/// isAllocatableRegister - If the specified register is safe to allocate,
3044/// i.e. it isn't a stack pointer or some other special register, return the
3045/// register class for the register. Otherwise, return null.
3046static const TargetRegisterClass *
Chris Lattnerb1124f32006-02-22 23:09:03 +00003047isAllocatableRegister(unsigned Reg, MachineFunction &MF,
3048 const TargetLowering &TLI, const MRegisterInfo *MRI) {
Chris Lattnerbec582f2006-04-02 00:24:45 +00003049 MVT::ValueType FoundVT = MVT::Other;
3050 const TargetRegisterClass *FoundRC = 0;
Chris Lattnerb1124f32006-02-22 23:09:03 +00003051 for (MRegisterInfo::regclass_iterator RCI = MRI->regclass_begin(),
3052 E = MRI->regclass_end(); RCI != E; ++RCI) {
Chris Lattnerbec582f2006-04-02 00:24:45 +00003053 MVT::ValueType ThisVT = MVT::Other;
3054
Chris Lattnerb1124f32006-02-22 23:09:03 +00003055 const TargetRegisterClass *RC = *RCI;
3056 // If none of the the value types for this register class are valid, we
3057 // can't use it. For example, 64-bit reg classes on 32-bit targets.
Chris Lattnerb1124f32006-02-22 23:09:03 +00003058 for (TargetRegisterClass::vt_iterator I = RC->vt_begin(), E = RC->vt_end();
3059 I != E; ++I) {
3060 if (TLI.isTypeLegal(*I)) {
Chris Lattnerbec582f2006-04-02 00:24:45 +00003061 // If we have already found this register in a different register class,
3062 // choose the one with the largest VT specified. For example, on
3063 // PowerPC, we favor f64 register classes over f32.
3064 if (FoundVT == MVT::Other ||
3065 MVT::getSizeInBits(FoundVT) < MVT::getSizeInBits(*I)) {
3066 ThisVT = *I;
3067 break;
3068 }
Chris Lattnerb1124f32006-02-22 23:09:03 +00003069 }
3070 }
3071
Chris Lattnerbec582f2006-04-02 00:24:45 +00003072 if (ThisVT == MVT::Other) continue;
Chris Lattnerb1124f32006-02-22 23:09:03 +00003073
Chris Lattner6f87d182006-02-22 22:37:12 +00003074 // NOTE: This isn't ideal. In particular, this might allocate the
3075 // frame pointer in functions that need it (due to them not being taken
3076 // out of allocation, because a variable sized allocation hasn't been seen
3077 // yet). This is a slight code pessimization, but should still work.
Chris Lattnerb1124f32006-02-22 23:09:03 +00003078 for (TargetRegisterClass::iterator I = RC->allocation_order_begin(MF),
3079 E = RC->allocation_order_end(MF); I != E; ++I)
Chris Lattnerbec582f2006-04-02 00:24:45 +00003080 if (*I == Reg) {
3081 // We found a matching register class. Keep looking at others in case
3082 // we find one with larger registers that this physreg is also in.
3083 FoundRC = RC;
3084 FoundVT = ThisVT;
3085 break;
3086 }
Chris Lattner1558fc62006-02-01 18:59:47 +00003087 }
Chris Lattnerbec582f2006-04-02 00:24:45 +00003088 return FoundRC;
Chris Lattner6f87d182006-02-22 22:37:12 +00003089}
3090
Chris Lattner1558fc62006-02-01 18:59:47 +00003091
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003092namespace {
3093/// AsmOperandInfo - This contains information for each constraint that we are
3094/// lowering.
3095struct AsmOperandInfo : public InlineAsm::ConstraintInfo {
3096 /// ConstraintCode - This contains the actual string for the code, like "m".
3097 std::string ConstraintCode;
Chris Lattnerb2e55562007-04-28 21:01:43 +00003098
3099 /// ConstraintType - Information about the constraint code, e.g. Register,
3100 /// RegisterClass, Memory, Other, Unknown.
3101 TargetLowering::ConstraintType ConstraintType;
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003102
3103 /// CallOperand/CallOperandval - If this is the result output operand or a
3104 /// clobber, this is null, otherwise it is the incoming operand to the
3105 /// CallInst. This gets modified as the asm is processed.
3106 SDOperand CallOperand;
3107 Value *CallOperandVal;
3108
3109 /// ConstraintVT - The ValueType for the operand value.
3110 MVT::ValueType ConstraintVT;
3111
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003112 /// AssignedRegs - If this is a register or register class operand, this
3113 /// contains the set of register corresponding to the operand.
3114 RegsForValue AssignedRegs;
3115
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003116 AsmOperandInfo(const InlineAsm::ConstraintInfo &info)
Chris Lattnerb2e55562007-04-28 21:01:43 +00003117 : InlineAsm::ConstraintInfo(info),
3118 ConstraintType(TargetLowering::C_Unknown),
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003119 CallOperand(0,0), CallOperandVal(0), ConstraintVT(MVT::Other) {
3120 }
Chris Lattneref073322007-04-30 17:16:27 +00003121
3122 void ComputeConstraintToUse(const TargetLowering &TLI);
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003123
3124 /// MarkAllocatedRegs - Once AssignedRegs is set, mark the assigned registers
3125 /// busy in OutputRegs/InputRegs.
3126 void MarkAllocatedRegs(bool isOutReg, bool isInReg,
3127 std::set<unsigned> &OutputRegs,
3128 std::set<unsigned> &InputRegs) const {
3129 if (isOutReg)
3130 OutputRegs.insert(AssignedRegs.Regs.begin(), AssignedRegs.Regs.end());
3131 if (isInReg)
3132 InputRegs.insert(AssignedRegs.Regs.begin(), AssignedRegs.Regs.end());
3133 }
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003134};
3135} // end anon namespace.
Chris Lattner6f87d182006-02-22 22:37:12 +00003136
Chris Lattneref073322007-04-30 17:16:27 +00003137/// getConstraintGenerality - Return an integer indicating how general CT is.
3138static unsigned getConstraintGenerality(TargetLowering::ConstraintType CT) {
3139 switch (CT) {
3140 default: assert(0 && "Unknown constraint type!");
3141 case TargetLowering::C_Other:
3142 case TargetLowering::C_Unknown:
3143 return 0;
3144 case TargetLowering::C_Register:
3145 return 1;
3146 case TargetLowering::C_RegisterClass:
3147 return 2;
3148 case TargetLowering::C_Memory:
3149 return 3;
3150 }
3151}
3152
3153void AsmOperandInfo::ComputeConstraintToUse(const TargetLowering &TLI) {
3154 assert(!Codes.empty() && "Must have at least one constraint");
3155
3156 std::string *Current = &Codes[0];
3157 TargetLowering::ConstraintType CurType = TLI.getConstraintType(*Current);
3158 if (Codes.size() == 1) { // Single-letter constraints ('r') are very common.
3159 ConstraintCode = *Current;
3160 ConstraintType = CurType;
3161 return;
3162 }
3163
3164 unsigned CurGenerality = getConstraintGenerality(CurType);
3165
3166 // If we have multiple constraints, try to pick the most general one ahead
3167 // of time. This isn't a wonderful solution, but handles common cases.
3168 for (unsigned j = 1, e = Codes.size(); j != e; ++j) {
3169 TargetLowering::ConstraintType ThisType = TLI.getConstraintType(Codes[j]);
3170 unsigned ThisGenerality = getConstraintGenerality(ThisType);
3171 if (ThisGenerality > CurGenerality) {
3172 // This constraint letter is more general than the previous one,
3173 // use it.
3174 CurType = ThisType;
3175 Current = &Codes[j];
3176 CurGenerality = ThisGenerality;
3177 }
3178 }
3179
3180 ConstraintCode = *Current;
3181 ConstraintType = CurType;
3182}
3183
3184
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003185void SelectionDAGLowering::
3186GetRegistersForValue(AsmOperandInfo &OpInfo, bool HasEarlyClobber,
Chris Lattner4333f8b2007-04-30 17:29:31 +00003187 std::set<unsigned> &OutputRegs,
3188 std::set<unsigned> &InputRegs) {
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003189 // Compute whether this value requires an input register, an output register,
3190 // or both.
3191 bool isOutReg = false;
3192 bool isInReg = false;
3193 switch (OpInfo.Type) {
3194 case InlineAsm::isOutput:
3195 isOutReg = true;
3196
3197 // If this is an early-clobber output, or if there is an input
3198 // constraint that matches this, we need to reserve the input register
3199 // so no other inputs allocate to it.
3200 isInReg = OpInfo.isEarlyClobber || OpInfo.hasMatchingInput;
3201 break;
3202 case InlineAsm::isInput:
3203 isInReg = true;
3204 isOutReg = false;
3205 break;
3206 case InlineAsm::isClobber:
3207 isOutReg = true;
3208 isInReg = true;
3209 break;
3210 }
3211
3212
3213 MachineFunction &MF = DAG.getMachineFunction();
Chris Lattner4333f8b2007-04-30 17:29:31 +00003214 std::vector<unsigned> Regs;
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003215
3216 // If this is a constraint for a single physreg, or a constraint for a
3217 // register class, find it.
3218 std::pair<unsigned, const TargetRegisterClass*> PhysReg =
3219 TLI.getRegForInlineAsmConstraint(OpInfo.ConstraintCode,
3220 OpInfo.ConstraintVT);
Chris Lattner4333f8b2007-04-30 17:29:31 +00003221
3222 unsigned NumRegs = 1;
3223 if (OpInfo.ConstraintVT != MVT::Other)
Dan Gohman04deef32007-06-21 14:42:22 +00003224 NumRegs = TLI.getNumRegisters(OpInfo.ConstraintVT);
Chris Lattner4333f8b2007-04-30 17:29:31 +00003225 MVT::ValueType RegVT;
3226 MVT::ValueType ValueVT = OpInfo.ConstraintVT;
3227
Chris Lattner4333f8b2007-04-30 17:29:31 +00003228
3229 // If this is a constraint for a specific physical register, like {r17},
3230 // assign it now.
3231 if (PhysReg.first) {
3232 if (OpInfo.ConstraintVT == MVT::Other)
3233 ValueVT = *PhysReg.second->vt_begin();
3234
3235 // Get the actual register value type. This is important, because the user
3236 // may have asked for (e.g.) the AX register in i32 type. We need to
3237 // remember that AX is actually i16 to get the right extension.
3238 RegVT = *PhysReg.second->vt_begin();
3239
3240 // This is a explicit reference to a physical register.
3241 Regs.push_back(PhysReg.first);
3242
3243 // If this is an expanded reference, add the rest of the regs to Regs.
3244 if (NumRegs != 1) {
3245 TargetRegisterClass::iterator I = PhysReg.second->begin();
3246 TargetRegisterClass::iterator E = PhysReg.second->end();
3247 for (; *I != PhysReg.first; ++I)
3248 assert(I != E && "Didn't find reg!");
3249
3250 // Already added the first reg.
3251 --NumRegs; ++I;
3252 for (; NumRegs; --NumRegs, ++I) {
3253 assert(I != E && "Ran out of registers to allocate!");
3254 Regs.push_back(*I);
3255 }
3256 }
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003257 OpInfo.AssignedRegs = RegsForValue(Regs, RegVT, ValueVT);
3258 OpInfo.MarkAllocatedRegs(isOutReg, isInReg, OutputRegs, InputRegs);
3259 return;
Chris Lattner4333f8b2007-04-30 17:29:31 +00003260 }
3261
3262 // Otherwise, if this was a reference to an LLVM register class, create vregs
3263 // for this reference.
3264 std::vector<unsigned> RegClassRegs;
Chris Lattnerf852e332007-06-15 19:11:01 +00003265 const TargetRegisterClass *RC = PhysReg.second;
3266 if (RC) {
Chris Lattner4333f8b2007-04-30 17:29:31 +00003267 // If this is an early clobber or tied register, our regalloc doesn't know
3268 // how to maintain the constraint. If it isn't, go ahead and create vreg
3269 // and let the regalloc do the right thing.
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003270 if (!OpInfo.hasMatchingInput && !OpInfo.isEarlyClobber &&
3271 // If there is some other early clobber and this is an input register,
3272 // then we are forced to pre-allocate the input reg so it doesn't
3273 // conflict with the earlyclobber.
3274 !(OpInfo.Type == InlineAsm::isInput && HasEarlyClobber)) {
Chris Lattner4333f8b2007-04-30 17:29:31 +00003275 RegVT = *PhysReg.second->vt_begin();
3276
3277 if (OpInfo.ConstraintVT == MVT::Other)
3278 ValueVT = RegVT;
3279
3280 // Create the appropriate number of virtual registers.
3281 SSARegMap *RegMap = MF.getSSARegMap();
3282 for (; NumRegs; --NumRegs)
3283 Regs.push_back(RegMap->createVirtualRegister(PhysReg.second));
3284
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003285 OpInfo.AssignedRegs = RegsForValue(Regs, RegVT, ValueVT);
3286 OpInfo.MarkAllocatedRegs(isOutReg, isInReg, OutputRegs, InputRegs);
3287 return;
Chris Lattner4333f8b2007-04-30 17:29:31 +00003288 }
3289
3290 // Otherwise, we can't allocate it. Let the code below figure out how to
3291 // maintain these constraints.
3292 RegClassRegs.assign(PhysReg.second->begin(), PhysReg.second->end());
3293
3294 } else {
3295 // This is a reference to a register class that doesn't directly correspond
3296 // to an LLVM register class. Allocate NumRegs consecutive, available,
3297 // registers from the class.
3298 RegClassRegs = TLI.getRegClassForInlineAsmConstraint(OpInfo.ConstraintCode,
3299 OpInfo.ConstraintVT);
3300 }
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003301
Chris Lattner4333f8b2007-04-30 17:29:31 +00003302 const MRegisterInfo *MRI = DAG.getTarget().getRegisterInfo();
3303 unsigned NumAllocated = 0;
3304 for (unsigned i = 0, e = RegClassRegs.size(); i != e; ++i) {
3305 unsigned Reg = RegClassRegs[i];
3306 // See if this register is available.
3307 if ((isOutReg && OutputRegs.count(Reg)) || // Already used.
3308 (isInReg && InputRegs.count(Reg))) { // Already used.
3309 // Make sure we find consecutive registers.
3310 NumAllocated = 0;
3311 continue;
3312 }
3313
3314 // Check to see if this register is allocatable (i.e. don't give out the
3315 // stack pointer).
Chris Lattnerf852e332007-06-15 19:11:01 +00003316 if (RC == 0) {
3317 RC = isAllocatableRegister(Reg, MF, TLI, MRI);
3318 if (!RC) { // Couldn't allocate this register.
3319 // Reset NumAllocated to make sure we return consecutive registers.
3320 NumAllocated = 0;
3321 continue;
3322 }
Chris Lattner4333f8b2007-04-30 17:29:31 +00003323 }
3324
3325 // Okay, this register is good, we can use it.
3326 ++NumAllocated;
3327
3328 // If we allocated enough consecutive registers, succeed.
3329 if (NumAllocated == NumRegs) {
3330 unsigned RegStart = (i-NumAllocated)+1;
3331 unsigned RegEnd = i+1;
3332 // Mark all of the allocated registers used.
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003333 for (unsigned i = RegStart; i != RegEnd; ++i)
3334 Regs.push_back(RegClassRegs[i]);
Chris Lattner4333f8b2007-04-30 17:29:31 +00003335
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003336 OpInfo.AssignedRegs = RegsForValue(Regs, *RC->vt_begin(),
3337 OpInfo.ConstraintVT);
3338 OpInfo.MarkAllocatedRegs(isOutReg, isInReg, OutputRegs, InputRegs);
3339 return;
Chris Lattner4333f8b2007-04-30 17:29:31 +00003340 }
3341 }
3342
3343 // Otherwise, we couldn't allocate enough registers for this.
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003344 return;
Chris Lattner4333f8b2007-04-30 17:29:31 +00003345}
3346
3347
Chris Lattner476e67b2006-01-26 22:24:51 +00003348/// visitInlineAsm - Handle a call to an InlineAsm object.
3349///
3350void SelectionDAGLowering::visitInlineAsm(CallInst &I) {
3351 InlineAsm *IA = cast<InlineAsm>(I.getOperand(0));
Chris Lattner476e67b2006-01-26 22:24:51 +00003352
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003353 /// ConstraintOperands - Information about all of the constraints.
3354 std::vector<AsmOperandInfo> ConstraintOperands;
Chris Lattner476e67b2006-01-26 22:24:51 +00003355
3356 SDOperand Chain = getRoot();
3357 SDOperand Flag;
3358
Chris Lattner1558fc62006-02-01 18:59:47 +00003359 std::set<unsigned> OutputRegs, InputRegs;
Chris Lattner7ad77df2006-02-22 00:56:39 +00003360
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003361 // Do a prepass over the constraints, canonicalizing them, and building up the
3362 // ConstraintOperands list.
3363 std::vector<InlineAsm::ConstraintInfo>
3364 ConstraintInfos = IA->ParseConstraints();
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003365
3366 // SawEarlyClobber - Keep track of whether we saw an earlyclobber output
3367 // constraint. If so, we can't let the register allocator allocate any input
3368 // registers, because it will not know to avoid the earlyclobbered output reg.
3369 bool SawEarlyClobber = false;
3370
3371 unsigned OpNo = 1; // OpNo - The operand of the CallInst.
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003372 for (unsigned i = 0, e = ConstraintInfos.size(); i != e; ++i) {
3373 ConstraintOperands.push_back(AsmOperandInfo(ConstraintInfos[i]));
3374 AsmOperandInfo &OpInfo = ConstraintOperands.back();
3375
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003376 MVT::ValueType OpVT = MVT::Other;
3377
3378 // Compute the value type for each operand.
3379 switch (OpInfo.Type) {
Chris Lattner7ad77df2006-02-22 00:56:39 +00003380 case InlineAsm::isOutput:
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003381 if (!OpInfo.isIndirect) {
3382 // The return value of the call is this value. As such, there is no
3383 // corresponding argument.
Chris Lattner7ad77df2006-02-22 00:56:39 +00003384 assert(I.getType() != Type::VoidTy && "Bad inline asm!");
3385 OpVT = TLI.getValueType(I.getType());
3386 } else {
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003387 OpInfo.CallOperandVal = I.getOperand(OpNo++);
Chris Lattner7ad77df2006-02-22 00:56:39 +00003388 }
3389 break;
3390 case InlineAsm::isInput:
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003391 OpInfo.CallOperandVal = I.getOperand(OpNo++);
Chris Lattner7ad77df2006-02-22 00:56:39 +00003392 break;
3393 case InlineAsm::isClobber:
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003394 // Nothing to do.
Chris Lattner7ad77df2006-02-22 00:56:39 +00003395 break;
3396 }
Chris Lattner7ad77df2006-02-22 00:56:39 +00003397
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003398 // If this is an input or an indirect output, process the call argument.
3399 if (OpInfo.CallOperandVal) {
3400 OpInfo.CallOperand = getValue(OpInfo.CallOperandVal);
3401 const Type *OpTy = OpInfo.CallOperandVal->getType();
Chris Lattner412d61a2007-04-29 18:58:03 +00003402 // If this is an indirect operand, the operand is a pointer to the
3403 // accessed type.
3404 if (OpInfo.isIndirect)
3405 OpTy = cast<PointerType>(OpTy)->getElementType();
3406
3407 // If OpTy is not a first-class value, it may be a struct/union that we
3408 // can tile with integers.
3409 if (!OpTy->isFirstClassType() && OpTy->isSized()) {
3410 unsigned BitSize = TD->getTypeSizeInBits(OpTy);
3411 switch (BitSize) {
3412 default: break;
3413 case 1:
3414 case 8:
3415 case 16:
3416 case 32:
3417 case 64:
3418 OpTy = IntegerType::get(BitSize);
3419 break;
3420 }
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003421 }
Chris Lattner412d61a2007-04-29 18:58:03 +00003422
3423 OpVT = TLI.getValueType(OpTy, true);
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003424 }
3425
3426 OpInfo.ConstraintVT = OpVT;
Chris Lattnerb2e55562007-04-28 21:01:43 +00003427
Chris Lattneref073322007-04-30 17:16:27 +00003428 // Compute the constraint code and ConstraintType to use.
3429 OpInfo.ComputeConstraintToUse(TLI);
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003430
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003431 // Keep track of whether we see an earlyclobber.
3432 SawEarlyClobber |= OpInfo.isEarlyClobber;
Chris Lattner401d8db2007-04-28 21:12:06 +00003433
3434 // If this is a memory input, and if the operand is not indirect, do what we
3435 // need to to provide an address for the memory input.
3436 if (OpInfo.ConstraintType == TargetLowering::C_Memory &&
3437 !OpInfo.isIndirect) {
3438 assert(OpInfo.Type == InlineAsm::isInput &&
3439 "Can only indirectify direct input operands!");
3440
3441 // Memory operands really want the address of the value. If we don't have
3442 // an indirect input, put it in the constpool if we can, otherwise spill
3443 // it to a stack slot.
3444
3445 // If the operand is a float, integer, or vector constant, spill to a
3446 // constant pool entry to get its address.
3447 Value *OpVal = OpInfo.CallOperandVal;
3448 if (isa<ConstantFP>(OpVal) || isa<ConstantInt>(OpVal) ||
3449 isa<ConstantVector>(OpVal)) {
3450 OpInfo.CallOperand = DAG.getConstantPool(cast<Constant>(OpVal),
3451 TLI.getPointerTy());
3452 } else {
3453 // Otherwise, create a stack slot and emit a store to it before the
3454 // asm.
3455 const Type *Ty = OpVal->getType();
3456 uint64_t TySize = TLI.getTargetData()->getTypeSize(Ty);
3457 unsigned Align = TLI.getTargetData()->getPrefTypeAlignment(Ty);
3458 MachineFunction &MF = DAG.getMachineFunction();
3459 int SSFI = MF.getFrameInfo()->CreateStackObject(TySize, Align);
3460 SDOperand StackSlot = DAG.getFrameIndex(SSFI, TLI.getPointerTy());
3461 Chain = DAG.getStore(Chain, OpInfo.CallOperand, StackSlot, NULL, 0);
3462 OpInfo.CallOperand = StackSlot;
3463 }
3464
3465 // There is no longer a Value* corresponding to this operand.
3466 OpInfo.CallOperandVal = 0;
3467 // It is now an indirect operand.
3468 OpInfo.isIndirect = true;
3469 }
3470
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003471 // If this constraint is for a specific register, allocate it before
3472 // anything else.
3473 if (OpInfo.ConstraintType == TargetLowering::C_Register)
3474 GetRegistersForValue(OpInfo, SawEarlyClobber, OutputRegs, InputRegs);
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003475 }
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003476 ConstraintInfos.clear();
3477
3478
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003479 // Second pass - Loop over all of the operands, assigning virtual or physregs
3480 // to registerclass operands.
3481 for (unsigned i = 0, e = ConstraintOperands.size(); i != e; ++i) {
3482 AsmOperandInfo &OpInfo = ConstraintOperands[i];
3483
3484 // C_Register operands have already been allocated, Other/Memory don't need
3485 // to be.
3486 if (OpInfo.ConstraintType == TargetLowering::C_RegisterClass)
3487 GetRegistersForValue(OpInfo, SawEarlyClobber, OutputRegs, InputRegs);
3488 }
3489
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003490 // AsmNodeOperands - The operands for the ISD::INLINEASM node.
3491 std::vector<SDOperand> AsmNodeOperands;
3492 AsmNodeOperands.push_back(SDOperand()); // reserve space for input chain
3493 AsmNodeOperands.push_back(
3494 DAG.getTargetExternalSymbol(IA->getAsmString().c_str(), MVT::Other));
3495
Chris Lattner3a5ed552006-02-01 01:28:23 +00003496
Chris Lattner5c79f982006-02-21 23:12:12 +00003497 // Loop over all of the inputs, copying the operand values into the
3498 // appropriate registers and processing the output regs.
Chris Lattner6f87d182006-02-22 22:37:12 +00003499 RegsForValue RetValRegs;
Chris Lattner5c79f982006-02-21 23:12:12 +00003500
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003501 // IndirectStoresToEmit - The set of stores to emit after the inline asm node.
3502 std::vector<std::pair<RegsForValue, Value*> > IndirectStoresToEmit;
3503
3504 for (unsigned i = 0, e = ConstraintOperands.size(); i != e; ++i) {
3505 AsmOperandInfo &OpInfo = ConstraintOperands[i];
Chris Lattner7ad77df2006-02-22 00:56:39 +00003506
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003507 switch (OpInfo.Type) {
Chris Lattner3a5ed552006-02-01 01:28:23 +00003508 case InlineAsm::isOutput: {
Chris Lattnerde339fa2007-04-28 21:03:16 +00003509 if (OpInfo.ConstraintType != TargetLowering::C_RegisterClass &&
3510 OpInfo.ConstraintType != TargetLowering::C_Register) {
Chris Lattnerd102ed02007-04-28 06:08:13 +00003511 // Memory output, or 'other' output (e.g. 'X' constraint).
Chris Lattner401d8db2007-04-28 21:12:06 +00003512 assert(OpInfo.isIndirect && "Memory output must be indirect operand");
Chris Lattner9fed5b62006-02-27 23:45:39 +00003513
Chris Lattner9fed5b62006-02-27 23:45:39 +00003514 // Add information to the INLINEASM node to know about this output.
3515 unsigned ResOpType = 4/*MEM*/ | (1 << 3);
Chris Lattnerc7596ef2007-05-15 01:33:58 +00003516 AsmNodeOperands.push_back(DAG.getTargetConstant(ResOpType,
3517 TLI.getPointerTy()));
Chris Lattner401d8db2007-04-28 21:12:06 +00003518 AsmNodeOperands.push_back(OpInfo.CallOperand);
Chris Lattner9fed5b62006-02-27 23:45:39 +00003519 break;
3520 }
3521
Chris Lattnerb2e55562007-04-28 21:01:43 +00003522 // Otherwise, this is a register or register class output.
Chris Lattner9fed5b62006-02-27 23:45:39 +00003523
Chris Lattner6f87d182006-02-22 22:37:12 +00003524 // Copy the output from the appropriate register. Find a register that
Chris Lattner7ad77df2006-02-22 00:56:39 +00003525 // we can use.
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003526 if (OpInfo.AssignedRegs.Regs.empty()) {
Bill Wendling22e978a2006-12-07 20:04:42 +00003527 cerr << "Couldn't allocate output reg for contraint '"
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003528 << OpInfo.ConstraintCode << "'!\n";
Chris Lattner968f8032006-10-31 07:33:13 +00003529 exit(1);
3530 }
Chris Lattner7ad77df2006-02-22 00:56:39 +00003531
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003532 if (!OpInfo.isIndirect) {
3533 // This is the result value of the call.
Chris Lattner6f87d182006-02-22 22:37:12 +00003534 assert(RetValRegs.Regs.empty() &&
Chris Lattner3a5ed552006-02-01 01:28:23 +00003535 "Cannot have multiple output constraints yet!");
Chris Lattner3a5ed552006-02-01 01:28:23 +00003536 assert(I.getType() != Type::VoidTy && "Bad inline asm!");
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003537 RetValRegs = OpInfo.AssignedRegs;
Chris Lattner3a5ed552006-02-01 01:28:23 +00003538 } else {
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003539 IndirectStoresToEmit.push_back(std::make_pair(OpInfo.AssignedRegs,
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003540 OpInfo.CallOperandVal));
Chris Lattner3a5ed552006-02-01 01:28:23 +00003541 }
Chris Lattner2e56e892006-01-31 02:03:41 +00003542
3543 // Add information to the INLINEASM node to know that this register is
3544 // set.
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003545 OpInfo.AssignedRegs.AddInlineAsmOperands(2 /*REGDEF*/, DAG,
3546 AsmNodeOperands);
Chris Lattner2e56e892006-01-31 02:03:41 +00003547 break;
3548 }
3549 case InlineAsm::isInput: {
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003550 SDOperand InOperandVal = OpInfo.CallOperand;
Chris Lattner65ad53f2006-02-04 02:16:44 +00003551
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003552 if (isdigit(OpInfo.ConstraintCode[0])) { // Matching constraint?
Chris Lattner7f5880b2006-02-02 00:25:23 +00003553 // If this is required to match an output register we have already set,
3554 // just use its register.
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003555 unsigned OperandNo = atoi(OpInfo.ConstraintCode.c_str());
Chris Lattner65ad53f2006-02-04 02:16:44 +00003556
Chris Lattner571d9642006-02-23 19:21:04 +00003557 // Scan until we find the definition we already emitted of this operand.
3558 // When we find it, create a RegsForValue operand.
3559 unsigned CurOp = 2; // The first operand.
3560 for (; OperandNo; --OperandNo) {
3561 // Advance to the next operand.
3562 unsigned NumOps =
3563 cast<ConstantSDNode>(AsmNodeOperands[CurOp])->getValue();
Chris Lattnerb0305322006-07-20 19:02:21 +00003564 assert(((NumOps & 7) == 2 /*REGDEF*/ ||
3565 (NumOps & 7) == 4 /*MEM*/) &&
Chris Lattner571d9642006-02-23 19:21:04 +00003566 "Skipped past definitions?");
3567 CurOp += (NumOps>>3)+1;
3568 }
3569
3570 unsigned NumOps =
3571 cast<ConstantSDNode>(AsmNodeOperands[CurOp])->getValue();
Chris Lattnere3eeb242007-02-01 01:21:12 +00003572 if ((NumOps & 7) == 2 /*REGDEF*/) {
3573 // Add NumOps>>3 registers to MatchedRegs.
3574 RegsForValue MatchedRegs;
3575 MatchedRegs.ValueVT = InOperandVal.getValueType();
3576 MatchedRegs.RegVT = AsmNodeOperands[CurOp+1].getValueType();
3577 for (unsigned i = 0, e = NumOps>>3; i != e; ++i) {
3578 unsigned Reg =
3579 cast<RegisterSDNode>(AsmNodeOperands[++CurOp])->getReg();
3580 MatchedRegs.Regs.push_back(Reg);
3581 }
Chris Lattner571d9642006-02-23 19:21:04 +00003582
Chris Lattnere3eeb242007-02-01 01:21:12 +00003583 // Use the produced MatchedRegs object to
Dan Gohman78677932007-06-28 23:29:44 +00003584 MatchedRegs.getCopyToRegs(InOperandVal, DAG, Chain, &Flag);
Chris Lattnere3eeb242007-02-01 01:21:12 +00003585 MatchedRegs.AddInlineAsmOperands(1 /*REGUSE*/, DAG, AsmNodeOperands);
3586 break;
3587 } else {
3588 assert((NumOps & 7) == 4/*MEM*/ && "Unknown matching constraint!");
3589 assert(0 && "matching constraints for memory operands unimp");
Chris Lattner571d9642006-02-23 19:21:04 +00003590 }
Chris Lattner7f5880b2006-02-02 00:25:23 +00003591 }
Chris Lattner7ef7a642006-02-24 01:11:24 +00003592
Chris Lattnerb2e55562007-04-28 21:01:43 +00003593 if (OpInfo.ConstraintType == TargetLowering::C_Other) {
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003594 assert(!OpInfo.isIndirect &&
Chris Lattner1deacd62007-04-28 06:42:38 +00003595 "Don't know how to handle indirect other inputs yet!");
3596
Chris Lattner6f043b92006-10-31 19:41:18 +00003597 InOperandVal = TLI.isOperandValidForConstraint(InOperandVal,
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003598 OpInfo.ConstraintCode[0],
3599 DAG);
Chris Lattner6f043b92006-10-31 19:41:18 +00003600 if (!InOperandVal.Val) {
Bill Wendling22e978a2006-12-07 20:04:42 +00003601 cerr << "Invalid operand for inline asm constraint '"
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003602 << OpInfo.ConstraintCode << "'!\n";
Chris Lattner6f043b92006-10-31 19:41:18 +00003603 exit(1);
3604 }
Chris Lattner7ef7a642006-02-24 01:11:24 +00003605
3606 // Add information to the INLINEASM node to know about this input.
3607 unsigned ResOpType = 3 /*IMM*/ | (1 << 3);
Chris Lattnerc7596ef2007-05-15 01:33:58 +00003608 AsmNodeOperands.push_back(DAG.getTargetConstant(ResOpType,
3609 TLI.getPointerTy()));
Chris Lattner7ef7a642006-02-24 01:11:24 +00003610 AsmNodeOperands.push_back(InOperandVal);
3611 break;
Chris Lattnerb2e55562007-04-28 21:01:43 +00003612 } else if (OpInfo.ConstraintType == TargetLowering::C_Memory) {
Chris Lattner401d8db2007-04-28 21:12:06 +00003613 assert(OpInfo.isIndirect && "Operand must be indirect to be a mem!");
Chris Lattner1deacd62007-04-28 06:42:38 +00003614 assert(InOperandVal.getValueType() == TLI.getPointerTy() &&
3615 "Memory operands expect pointer values");
3616
Chris Lattner7ef7a642006-02-24 01:11:24 +00003617 // Add information to the INLINEASM node to know about this input.
3618 unsigned ResOpType = 4/*MEM*/ | (1 << 3);
Chris Lattnerc7596ef2007-05-15 01:33:58 +00003619 AsmNodeOperands.push_back(DAG.getTargetConstant(ResOpType,
3620 TLI.getPointerTy()));
Chris Lattner7ef7a642006-02-24 01:11:24 +00003621 AsmNodeOperands.push_back(InOperandVal);
3622 break;
3623 }
3624
Chris Lattnerb2e55562007-04-28 21:01:43 +00003625 assert((OpInfo.ConstraintType == TargetLowering::C_RegisterClass ||
3626 OpInfo.ConstraintType == TargetLowering::C_Register) &&
3627 "Unknown constraint type!");
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003628 assert(!OpInfo.isIndirect &&
Chris Lattner1deacd62007-04-28 06:42:38 +00003629 "Don't know how to handle indirect register inputs yet!");
Chris Lattner7ef7a642006-02-24 01:11:24 +00003630
3631 // Copy the input into the appropriate registers.
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003632 assert(!OpInfo.AssignedRegs.Regs.empty() &&
3633 "Couldn't allocate input reg!");
Chris Lattner7ef7a642006-02-24 01:11:24 +00003634
Dan Gohman78677932007-06-28 23:29:44 +00003635 OpInfo.AssignedRegs.getCopyToRegs(InOperandVal, DAG, Chain, &Flag);
Chris Lattner7ef7a642006-02-24 01:11:24 +00003636
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003637 OpInfo.AssignedRegs.AddInlineAsmOperands(1/*REGUSE*/, DAG,
3638 AsmNodeOperands);
Chris Lattner2e56e892006-01-31 02:03:41 +00003639 break;
3640 }
Chris Lattner571d9642006-02-23 19:21:04 +00003641 case InlineAsm::isClobber: {
Chris Lattner571d9642006-02-23 19:21:04 +00003642 // Add the clobbered value to the operand list, so that the register
3643 // allocator is aware that the physreg got clobbered.
Chris Lattner8cfd33b2007-04-30 21:11:17 +00003644 if (!OpInfo.AssignedRegs.Regs.empty())
3645 OpInfo.AssignedRegs.AddInlineAsmOperands(2/*REGDEF*/, DAG,
3646 AsmNodeOperands);
Chris Lattner2e56e892006-01-31 02:03:41 +00003647 break;
3648 }
Chris Lattner571d9642006-02-23 19:21:04 +00003649 }
Chris Lattner2e56e892006-01-31 02:03:41 +00003650 }
Chris Lattner476e67b2006-01-26 22:24:51 +00003651
3652 // Finish up input operands.
3653 AsmNodeOperands[0] = Chain;
3654 if (Flag.Val) AsmNodeOperands.push_back(Flag);
3655
Chris Lattnerbd887772006-08-14 23:53:35 +00003656 Chain = DAG.getNode(ISD::INLINEASM,
3657 DAG.getNodeValueTypes(MVT::Other, MVT::Flag), 2,
Chris Lattnerc24a1d32006-08-08 02:23:42 +00003658 &AsmNodeOperands[0], AsmNodeOperands.size());
Chris Lattner476e67b2006-01-26 22:24:51 +00003659 Flag = Chain.getValue(1);
3660
Chris Lattner2e56e892006-01-31 02:03:41 +00003661 // If this asm returns a register value, copy the result from that register
3662 // and set it as the value of the call.
Chris Lattner51114992007-04-12 06:00:20 +00003663 if (!RetValRegs.Regs.empty()) {
Dan Gohman78677932007-06-28 23:29:44 +00003664 SDOperand Val = RetValRegs.getCopyFromRegs(DAG, Chain, &Flag);
Chris Lattner51114992007-04-12 06:00:20 +00003665
3666 // If the result of the inline asm is a vector, it may have the wrong
3667 // width/num elts. Make sure to convert it to the right type with
Dan Gohmana8665142007-06-25 16:23:39 +00003668 // bit_convert.
3669 if (MVT::isVector(Val.getValueType())) {
Chris Lattner51114992007-04-12 06:00:20 +00003670 const VectorType *VTy = cast<VectorType>(I.getType());
Dan Gohmana8665142007-06-25 16:23:39 +00003671 MVT::ValueType DesiredVT = TLI.getValueType(VTy);
Chris Lattner51114992007-04-12 06:00:20 +00003672
Dan Gohmana8665142007-06-25 16:23:39 +00003673 Val = DAG.getNode(ISD::BIT_CONVERT, DesiredVT, Val);
Chris Lattner51114992007-04-12 06:00:20 +00003674 }
3675
3676 setValue(&I, Val);
3677 }
Chris Lattner476e67b2006-01-26 22:24:51 +00003678
Chris Lattner2e56e892006-01-31 02:03:41 +00003679 std::vector<std::pair<SDOperand, Value*> > StoresToEmit;
3680
3681 // Process indirect outputs, first output all of the flagged copies out of
3682 // physregs.
3683 for (unsigned i = 0, e = IndirectStoresToEmit.size(); i != e; ++i) {
Chris Lattner6f87d182006-02-22 22:37:12 +00003684 RegsForValue &OutRegs = IndirectStoresToEmit[i].first;
Chris Lattner2e56e892006-01-31 02:03:41 +00003685 Value *Ptr = IndirectStoresToEmit[i].second;
Dan Gohman78677932007-06-28 23:29:44 +00003686 SDOperand OutVal = OutRegs.getCopyFromRegs(DAG, Chain, &Flag);
Chris Lattner6f87d182006-02-22 22:37:12 +00003687 StoresToEmit.push_back(std::make_pair(OutVal, Ptr));
Chris Lattner2e56e892006-01-31 02:03:41 +00003688 }
3689
3690 // Emit the non-flagged stores from the physregs.
Chris Lattnerc24a1d32006-08-08 02:23:42 +00003691 SmallVector<SDOperand, 8> OutChains;
Chris Lattner2e56e892006-01-31 02:03:41 +00003692 for (unsigned i = 0, e = StoresToEmit.size(); i != e; ++i)
Chris Lattnerd7e3b6c2007-04-28 20:49:53 +00003693 OutChains.push_back(DAG.getStore(Chain, StoresToEmit[i].first,
Chris Lattner2e56e892006-01-31 02:03:41 +00003694 getValue(StoresToEmit[i].second),
Evan Chengab51cf22006-10-13 21:14:26 +00003695 StoresToEmit[i].second, 0));
Chris Lattner2e56e892006-01-31 02:03:41 +00003696 if (!OutChains.empty())
Chris Lattnerc24a1d32006-08-08 02:23:42 +00003697 Chain = DAG.getNode(ISD::TokenFactor, MVT::Other,
3698 &OutChains[0], OutChains.size());
Chris Lattner476e67b2006-01-26 22:24:51 +00003699 DAG.setRoot(Chain);
3700}
3701
3702
Chris Lattner7a60d912005-01-07 07:47:53 +00003703void SelectionDAGLowering::visitMalloc(MallocInst &I) {
3704 SDOperand Src = getValue(I.getOperand(0));
3705
3706 MVT::ValueType IntPtr = TLI.getPointerTy();
Chris Lattnereccb73d2005-01-22 23:04:37 +00003707
3708 if (IntPtr < Src.getValueType())
3709 Src = DAG.getNode(ISD::TRUNCATE, IntPtr, Src);
3710 else if (IntPtr > Src.getValueType())
3711 Src = DAG.getNode(ISD::ZERO_EXTEND, IntPtr, Src);
Chris Lattner7a60d912005-01-07 07:47:53 +00003712
3713 // Scale the source by the type size.
Owen Anderson20a631f2006-05-03 01:29:57 +00003714 uint64_t ElementSize = TD->getTypeSize(I.getType()->getElementType());
Chris Lattner7a60d912005-01-07 07:47:53 +00003715 Src = DAG.getNode(ISD::MUL, Src.getValueType(),
3716 Src, getIntPtrConstant(ElementSize));
3717
Reid Spencere63b6512006-12-31 05:55:36 +00003718 TargetLowering::ArgListTy Args;
3719 TargetLowering::ArgListEntry Entry;
3720 Entry.Node = Src;
3721 Entry.Ty = TLI.getTargetData()->getIntPtrType();
Reid Spencere63b6512006-12-31 05:55:36 +00003722 Args.push_back(Entry);
Chris Lattner1f45cd72005-01-08 19:26:18 +00003723
3724 std::pair<SDOperand,SDOperand> Result =
Reid Spencere63b6512006-12-31 05:55:36 +00003725 TLI.LowerCallTo(getRoot(), I.getType(), false, false, CallingConv::C, true,
Chris Lattner1f45cd72005-01-08 19:26:18 +00003726 DAG.getExternalSymbol("malloc", IntPtr),
3727 Args, DAG);
3728 setValue(&I, Result.first); // Pointers always fit in registers
3729 DAG.setRoot(Result.second);
Chris Lattner7a60d912005-01-07 07:47:53 +00003730}
3731
3732void SelectionDAGLowering::visitFree(FreeInst &I) {
Reid Spencere63b6512006-12-31 05:55:36 +00003733 TargetLowering::ArgListTy Args;
3734 TargetLowering::ArgListEntry Entry;
3735 Entry.Node = getValue(I.getOperand(0));
3736 Entry.Ty = TLI.getTargetData()->getIntPtrType();
Reid Spencere63b6512006-12-31 05:55:36 +00003737 Args.push_back(Entry);
Chris Lattner7a60d912005-01-07 07:47:53 +00003738 MVT::ValueType IntPtr = TLI.getPointerTy();
Chris Lattner1f45cd72005-01-08 19:26:18 +00003739 std::pair<SDOperand,SDOperand> Result =
Reid Spencere63b6512006-12-31 05:55:36 +00003740 TLI.LowerCallTo(getRoot(), Type::VoidTy, false, false, CallingConv::C, true,
Chris Lattner1f45cd72005-01-08 19:26:18 +00003741 DAG.getExternalSymbol("free", IntPtr), Args, DAG);
3742 DAG.setRoot(Result.second);
Chris Lattner7a60d912005-01-07 07:47:53 +00003743}
3744
Chris Lattner13d7c252005-08-26 20:54:47 +00003745// InsertAtEndOfBasicBlock - This method should be implemented by targets that
3746// mark instructions with the 'usesCustomDAGSchedInserter' flag. These
3747// instructions are special in various ways, which require special support to
3748// insert. The specified MachineInstr is created but not inserted into any
3749// basic blocks, and the scheduler passes ownership of it to this method.
3750MachineBasicBlock *TargetLowering::InsertAtEndOfBasicBlock(MachineInstr *MI,
3751 MachineBasicBlock *MBB) {
Bill Wendling22e978a2006-12-07 20:04:42 +00003752 cerr << "If a target marks an instruction with "
3753 << "'usesCustomDAGSchedInserter', it must implement "
3754 << "TargetLowering::InsertAtEndOfBasicBlock!\n";
Chris Lattner13d7c252005-08-26 20:54:47 +00003755 abort();
3756 return 0;
3757}
3758
Chris Lattner58cfd792005-01-09 00:00:49 +00003759void SelectionDAGLowering::visitVAStart(CallInst &I) {
Nate Begemane74795c2006-01-25 18:21:52 +00003760 DAG.setRoot(DAG.getNode(ISD::VASTART, MVT::Other, getRoot(),
3761 getValue(I.getOperand(1)),
3762 DAG.getSrcValue(I.getOperand(1))));
Chris Lattner58cfd792005-01-09 00:00:49 +00003763}
3764
3765void SelectionDAGLowering::visitVAArg(VAArgInst &I) {
Nate Begemane74795c2006-01-25 18:21:52 +00003766 SDOperand V = DAG.getVAArg(TLI.getValueType(I.getType()), getRoot(),
3767 getValue(I.getOperand(0)),
3768 DAG.getSrcValue(I.getOperand(0)));
3769 setValue(&I, V);
3770 DAG.setRoot(V.getValue(1));
Chris Lattner7a60d912005-01-07 07:47:53 +00003771}
3772
3773void SelectionDAGLowering::visitVAEnd(CallInst &I) {
Nate Begemane74795c2006-01-25 18:21:52 +00003774 DAG.setRoot(DAG.getNode(ISD::VAEND, MVT::Other, getRoot(),
3775 getValue(I.getOperand(1)),
3776 DAG.getSrcValue(I.getOperand(1))));
Chris Lattner7a60d912005-01-07 07:47:53 +00003777}
3778
3779void SelectionDAGLowering::visitVACopy(CallInst &I) {
Nate Begemane74795c2006-01-25 18:21:52 +00003780 DAG.setRoot(DAG.getNode(ISD::VACOPY, MVT::Other, getRoot(),
3781 getValue(I.getOperand(1)),
3782 getValue(I.getOperand(2)),
3783 DAG.getSrcValue(I.getOperand(1)),
3784 DAG.getSrcValue(I.getOperand(2))));
Chris Lattner7a60d912005-01-07 07:47:53 +00003785}
3786
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003787/// TargetLowering::LowerArguments - This is the default LowerArguments
3788/// implementation, which just inserts a FORMAL_ARGUMENTS node. FIXME: When all
Chris Lattneraaa23d92006-05-16 22:53:20 +00003789/// targets are migrated to using FORMAL_ARGUMENTS, this hook should be
3790/// integrated into SDISel.
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003791std::vector<SDOperand>
3792TargetLowering::LowerArguments(Function &F, SelectionDAG &DAG) {
Anton Korobeynikov037c8672007-01-28 13:31:35 +00003793 const FunctionType *FTy = F.getFunctionType();
Reid Spencer71b79e32007-04-09 06:17:21 +00003794 const ParamAttrsList *Attrs = FTy->getParamAttrs();
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003795 // Add CC# and isVararg as operands to the FORMAL_ARGUMENTS node.
3796 std::vector<SDOperand> Ops;
Chris Lattner3d826992006-05-16 06:45:34 +00003797 Ops.push_back(DAG.getRoot());
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003798 Ops.push_back(DAG.getConstant(F.getCallingConv(), getPointerTy()));
3799 Ops.push_back(DAG.getConstant(F.isVarArg(), getPointerTy()));
3800
3801 // Add one result value for each formal argument.
3802 std::vector<MVT::ValueType> RetVals;
Anton Korobeynikov06f7d4b2007-01-28 18:01:49 +00003803 unsigned j = 1;
Anton Korobeynikov9fa38392007-01-28 16:04:40 +00003804 for (Function::arg_iterator I = F.arg_begin(), E = F.arg_end();
3805 I != E; ++I, ++j) {
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003806 MVT::ValueType VT = getValueType(I->getType());
Anton Korobeynikoved4b3032007-03-07 16:25:09 +00003807 unsigned Flags = ISD::ParamFlags::NoFlagSet;
Lauro Ramos Venancio9956dcf2007-02-13 13:50:08 +00003808 unsigned OriginalAlignment =
Chris Lattner945e4372007-02-14 05:52:17 +00003809 getTargetData()->getABITypeAlignment(I->getType());
Lauro Ramos Venancio9956dcf2007-02-13 13:50:08 +00003810
Chris Lattnerab5d0ac2007-02-26 02:56:58 +00003811 // FIXME: Distinguish between a formal with no [sz]ext attribute from one
3812 // that is zero extended!
Reid Spencera472f662007-04-11 02:44:20 +00003813 if (Attrs && Attrs->paramHasAttr(j, ParamAttr::ZExt))
Anton Korobeynikoved4b3032007-03-07 16:25:09 +00003814 Flags &= ~(ISD::ParamFlags::SExt);
Reid Spencera472f662007-04-11 02:44:20 +00003815 if (Attrs && Attrs->paramHasAttr(j, ParamAttr::SExt))
Anton Korobeynikoved4b3032007-03-07 16:25:09 +00003816 Flags |= ISD::ParamFlags::SExt;
Reid Spencera472f662007-04-11 02:44:20 +00003817 if (Attrs && Attrs->paramHasAttr(j, ParamAttr::InReg))
Anton Korobeynikoved4b3032007-03-07 16:25:09 +00003818 Flags |= ISD::ParamFlags::InReg;
Reid Spencera472f662007-04-11 02:44:20 +00003819 if (Attrs && Attrs->paramHasAttr(j, ParamAttr::StructRet))
Anton Korobeynikoved4b3032007-03-07 16:25:09 +00003820 Flags |= ISD::ParamFlags::StructReturn;
3821 Flags |= (OriginalAlignment << ISD::ParamFlags::OrigAlignmentOffs);
Chris Lattnerab5d0ac2007-02-26 02:56:58 +00003822
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003823 switch (getTypeAction(VT)) {
3824 default: assert(0 && "Unknown type action!");
3825 case Legal:
3826 RetVals.push_back(VT);
Anton Korobeynikov037c8672007-01-28 13:31:35 +00003827 Ops.push_back(DAG.getConstant(Flags, MVT::i32));
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003828 break;
3829 case Promote:
3830 RetVals.push_back(getTypeToTransformTo(VT));
Anton Korobeynikov037c8672007-01-28 13:31:35 +00003831 Ops.push_back(DAG.getConstant(Flags, MVT::i32));
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003832 break;
Dan Gohman78677932007-06-28 23:29:44 +00003833 case Expand: {
3834 // If this is an illegal type, it needs to be broken up to fit into
3835 // registers.
3836 MVT::ValueType RegisterVT = getRegisterType(VT);
3837 unsigned NumRegs = getNumRegisters(VT);
3838 for (unsigned i = 0; i != NumRegs; ++i) {
3839 RetVals.push_back(RegisterVT);
3840 // if it isn't first piece, alignment must be 1
3841 if (i > 0)
3842 Flags = (Flags & (~ISD::ParamFlags::OrigAlignment)) |
3843 (1 << ISD::ParamFlags::OrigAlignmentOffs);
3844 Ops.push_back(DAG.getConstant(Flags, MVT::i32));
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003845 }
3846 break;
3847 }
Dan Gohman78677932007-06-28 23:29:44 +00003848 }
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003849 }
Evan Cheng9618df12006-04-25 23:03:35 +00003850
Chris Lattner3d826992006-05-16 06:45:34 +00003851 RetVals.push_back(MVT::Other);
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003852
3853 // Create the node.
Chris Lattnerbd887772006-08-14 23:53:35 +00003854 SDNode *Result = DAG.getNode(ISD::FORMAL_ARGUMENTS,
3855 DAG.getNodeValueTypes(RetVals), RetVals.size(),
Chris Lattnerc24a1d32006-08-08 02:23:42 +00003856 &Ops[0], Ops.size()).Val;
Dan Gohman533dd162007-07-02 16:18:06 +00003857 unsigned NumArgRegs = Result->getNumValues() - 1;
3858 DAG.setRoot(SDOperand(Result, NumArgRegs));
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003859
3860 // Set up the return result vector.
3861 Ops.clear();
3862 unsigned i = 0;
Reid Spencere63b6512006-12-31 05:55:36 +00003863 unsigned Idx = 1;
3864 for (Function::arg_iterator I = F.arg_begin(), E = F.arg_end(); I != E;
3865 ++I, ++Idx) {
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003866 MVT::ValueType VT = getValueType(I->getType());
3867
3868 switch (getTypeAction(VT)) {
3869 default: assert(0 && "Unknown type action!");
3870 case Legal:
3871 Ops.push_back(SDOperand(Result, i++));
3872 break;
3873 case Promote: {
3874 SDOperand Op(Result, i++);
3875 if (MVT::isInteger(VT)) {
Reid Spencera472f662007-04-11 02:44:20 +00003876 if (Attrs && Attrs->paramHasAttr(Idx, ParamAttr::SExt))
Chris Lattner96035be2007-01-04 22:22:37 +00003877 Op = DAG.getNode(ISD::AssertSext, Op.getValueType(), Op,
3878 DAG.getValueType(VT));
Reid Spencera472f662007-04-11 02:44:20 +00003879 else if (Attrs && Attrs->paramHasAttr(Idx, ParamAttr::ZExt))
Chris Lattner96035be2007-01-04 22:22:37 +00003880 Op = DAG.getNode(ISD::AssertZext, Op.getValueType(), Op,
3881 DAG.getValueType(VT));
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003882 Op = DAG.getNode(ISD::TRUNCATE, VT, Op);
3883 } else {
3884 assert(MVT::isFloatingPoint(VT) && "Not int or FP?");
3885 Op = DAG.getNode(ISD::FP_ROUND, VT, Op);
3886 }
3887 Ops.push_back(Op);
3888 break;
3889 }
Dan Gohman533dd162007-07-02 16:18:06 +00003890 case Expand: {
3891 MVT::ValueType PartVT = getRegisterType(VT);
3892 unsigned NumParts = getNumRegisters(VT);
3893 SmallVector<SDOperand, 4> Parts(NumParts);
3894 for (unsigned j = 0; j != NumParts; ++j)
3895 Parts[j] = SDOperand(Result, i++);
Dan Gohmand258e802007-07-05 20:12:34 +00003896 Ops.push_back(getCopyFromParts(DAG, &Parts[0], NumParts, PartVT, VT, true));
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003897 break;
3898 }
Dan Gohman533dd162007-07-02 16:18:06 +00003899 }
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003900 }
Dan Gohman533dd162007-07-02 16:18:06 +00003901 assert(i == NumArgRegs && "Argument register count mismatch!");
Chris Lattnerd3b504a2006-04-12 16:20:43 +00003902 return Ops;
3903}
3904
Chris Lattneraaa23d92006-05-16 22:53:20 +00003905
3906/// TargetLowering::LowerCallTo - This is the default LowerCallTo
3907/// implementation, which just inserts an ISD::CALL node, which is later custom
3908/// lowered by the target to something concrete. FIXME: When all targets are
3909/// migrated to using ISD::CALL, this hook should be integrated into SDISel.
3910std::pair<SDOperand, SDOperand>
Reid Spencere63b6512006-12-31 05:55:36 +00003911TargetLowering::LowerCallTo(SDOperand Chain, const Type *RetTy,
3912 bool RetTyIsSigned, bool isVarArg,
Chris Lattneraaa23d92006-05-16 22:53:20 +00003913 unsigned CallingConv, bool isTailCall,
3914 SDOperand Callee,
3915 ArgListTy &Args, SelectionDAG &DAG) {
Chris Lattner65879ca2006-08-16 22:57:46 +00003916 SmallVector<SDOperand, 32> Ops;
Chris Lattneraaa23d92006-05-16 22:53:20 +00003917 Ops.push_back(Chain); // Op#0 - Chain
3918 Ops.push_back(DAG.getConstant(CallingConv, getPointerTy())); // Op#1 - CC
3919 Ops.push_back(DAG.getConstant(isVarArg, getPointerTy())); // Op#2 - VarArg
3920 Ops.push_back(DAG.getConstant(isTailCall, getPointerTy())); // Op#3 - Tail
3921 Ops.push_back(Callee);
3922
3923 // Handle all of the outgoing arguments.
3924 for (unsigned i = 0, e = Args.size(); i != e; ++i) {
Reid Spencere63b6512006-12-31 05:55:36 +00003925 MVT::ValueType VT = getValueType(Args[i].Ty);
3926 SDOperand Op = Args[i].Node;
Anton Korobeynikoved4b3032007-03-07 16:25:09 +00003927 unsigned Flags = ISD::ParamFlags::NoFlagSet;
Lauro Ramos Venancio9956dcf2007-02-13 13:50:08 +00003928 unsigned OriginalAlignment =
Chris Lattner945e4372007-02-14 05:52:17 +00003929 getTargetData()->getABITypeAlignment(Args[i].Ty);
Anton Korobeynikovf0b93162007-03-06 06:10:33 +00003930
Anton Korobeynikoved4b3032007-03-07 16:25:09 +00003931 if (Args[i].isSExt)
3932 Flags |= ISD::ParamFlags::SExt;
3933 if (Args[i].isZExt)
3934 Flags |= ISD::ParamFlags::ZExt;
Anton Korobeynikovf0b93162007-03-06 06:10:33 +00003935 if (Args[i].isInReg)
Anton Korobeynikoved4b3032007-03-07 16:25:09 +00003936 Flags |= ISD::ParamFlags::InReg;
Anton Korobeynikovf0b93162007-03-06 06:10:33 +00003937 if (Args[i].isSRet)
Anton Korobeynikoved4b3032007-03-07 16:25:09 +00003938 Flags |= ISD::ParamFlags::StructReturn;
3939 Flags |= OriginalAlignment << ISD::ParamFlags::OrigAlignmentOffs;
Anton Korobeynikovf0b93162007-03-06 06:10:33 +00003940
Chris Lattneraaa23d92006-05-16 22:53:20 +00003941 switch (getTypeAction(VT)) {
3942 default: assert(0 && "Unknown type action!");
Lauro Ramos Venancio9956dcf2007-02-13 13:50:08 +00003943 case Legal:
Chris Lattneraaa23d92006-05-16 22:53:20 +00003944 Ops.push_back(Op);
Anton Korobeynikov037c8672007-01-28 13:31:35 +00003945 Ops.push_back(DAG.getConstant(Flags, MVT::i32));
Chris Lattneraaa23d92006-05-16 22:53:20 +00003946 break;
3947 case Promote:
3948 if (MVT::isInteger(VT)) {
Anton Korobeynikoved4b3032007-03-07 16:25:09 +00003949 unsigned ExtOp;
3950 if (Args[i].isSExt)
3951 ExtOp = ISD::SIGN_EXTEND;
3952 else if (Args[i].isZExt)
3953 ExtOp = ISD::ZERO_EXTEND;
3954 else
3955 ExtOp = ISD::ANY_EXTEND;
Chris Lattneraaa23d92006-05-16 22:53:20 +00003956 Op = DAG.getNode(ExtOp, getTypeToTransformTo(VT), Op);
3957 } else {
3958 assert(MVT::isFloatingPoint(VT) && "Not int or FP?");
Dale Johannesena2b3c172007-07-03 00:53:03 +00003959 Op = DAG.getNode(ISD::FP_EXTEND, getTypeToTransformTo(VT), Op);
Chris Lattneraaa23d92006-05-16 22:53:20 +00003960 }
3961 Ops.push_back(Op);
Anton Korobeynikov037c8672007-01-28 13:31:35 +00003962 Ops.push_back(DAG.getConstant(Flags, MVT::i32));
Chris Lattneraaa23d92006-05-16 22:53:20 +00003963 break;
Dan Gohman533dd162007-07-02 16:18:06 +00003964 case Expand: {
3965 MVT::ValueType PartVT = getRegisterType(VT);
3966 unsigned NumParts = getNumRegisters(VT);
3967 SmallVector<SDOperand, 4> Parts(NumParts);
Dan Gohmand258e802007-07-05 20:12:34 +00003968 getCopyToParts(DAG, Op, &Parts[0], NumParts, PartVT, true);
Dan Gohman533dd162007-07-02 16:18:06 +00003969 for (unsigned i = 0; i != NumParts; ++i) {
3970 // if it isn't first piece, alignment must be 1
3971 unsigned MyFlags = Flags;
3972 if (i != 0)
3973 MyFlags = (MyFlags & (~ISD::ParamFlags::OrigAlignment)) |
3974 (1 << ISD::ParamFlags::OrigAlignmentOffs);
3975
3976 Ops.push_back(Parts[i]);
3977 Ops.push_back(DAG.getConstant(MyFlags, MVT::i32));
Chris Lattneraaa23d92006-05-16 22:53:20 +00003978 }
3979 break;
3980 }
Dan Gohman533dd162007-07-02 16:18:06 +00003981 }
Chris Lattneraaa23d92006-05-16 22:53:20 +00003982 }
3983
3984 // Figure out the result value types.
Dan Gohman78677932007-06-28 23:29:44 +00003985 MVT::ValueType VT = getValueType(RetTy);
3986 MVT::ValueType RegisterVT = getRegisterType(VT);
3987 unsigned NumRegs = getNumRegisters(VT);
3988 SmallVector<MVT::ValueType, 4> RetTys(NumRegs);
3989 for (unsigned i = 0; i != NumRegs; ++i)
3990 RetTys[i] = RegisterVT;
Chris Lattneraaa23d92006-05-16 22:53:20 +00003991
3992 RetTys.push_back(MVT::Other); // Always has a chain.
3993
Dan Gohman78677932007-06-28 23:29:44 +00003994 // Create the CALL node.
Chris Lattner65879ca2006-08-16 22:57:46 +00003995 SDOperand Res = DAG.getNode(ISD::CALL,
Dan Gohman78677932007-06-28 23:29:44 +00003996 DAG.getVTList(&RetTys[0], NumRegs + 1),
Chris Lattner65879ca2006-08-16 22:57:46 +00003997 &Ops[0], Ops.size());
Dan Gohman78677932007-06-28 23:29:44 +00003998 SDOperand Chain = Res.getValue(NumRegs);
3999
4000 // Gather up the call result into a single value.
4001 if (RetTy != Type::VoidTy) {
4002 ISD::NodeType AssertOp = ISD::AssertSext;
4003 if (!RetTyIsSigned)
4004 AssertOp = ISD::AssertZext;
4005 SmallVector<SDOperand, 4> Results(NumRegs);
4006 for (unsigned i = 0; i != NumRegs; ++i)
4007 Results[i] = Res.getValue(i);
Dan Gohmand258e802007-07-05 20:12:34 +00004008 Res = getCopyFromParts(DAG, &Results[0], NumRegs, RegisterVT, VT, false, AssertOp);
Chris Lattneraaa23d92006-05-16 22:53:20 +00004009 }
Dan Gohman78677932007-06-28 23:29:44 +00004010
4011 return std::make_pair(Res, Chain);
Chris Lattneraaa23d92006-05-16 22:53:20 +00004012}
4013
Chris Lattner29dcc712005-05-14 05:50:48 +00004014SDOperand TargetLowering::LowerOperation(SDOperand Op, SelectionDAG &DAG) {
Chris Lattner897cd7d2005-01-16 07:28:41 +00004015 assert(0 && "LowerOperation not implemented for this target!");
4016 abort();
Misha Brukman73e929f2005-02-17 21:39:27 +00004017 return SDOperand();
Chris Lattner897cd7d2005-01-16 07:28:41 +00004018}
4019
Nate Begeman595ec732006-01-28 03:14:31 +00004020SDOperand TargetLowering::CustomPromoteOperation(SDOperand Op,
4021 SelectionDAG &DAG) {
4022 assert(0 && "CustomPromoteOperation not implemented for this target!");
4023 abort();
4024 return SDOperand();
4025}
4026
Evan Cheng6781b6e2006-02-15 21:59:04 +00004027/// getMemsetValue - Vectorized representation of the memset value
Evan Cheng81fcea82006-02-14 08:22:34 +00004028/// operand.
4029static SDOperand getMemsetValue(SDOperand Value, MVT::ValueType VT,
Evan Cheng93e48652006-02-15 22:12:35 +00004030 SelectionDAG &DAG) {
Evan Cheng81fcea82006-02-14 08:22:34 +00004031 MVT::ValueType CurVT = VT;
4032 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Value)) {
4033 uint64_t Val = C->getValue() & 255;
4034 unsigned Shift = 8;
4035 while (CurVT != MVT::i8) {
4036 Val = (Val << Shift) | Val;
4037 Shift <<= 1;
4038 CurVT = (MVT::ValueType)((unsigned)CurVT - 1);
Evan Cheng81fcea82006-02-14 08:22:34 +00004039 }
4040 return DAG.getConstant(Val, VT);
4041 } else {
4042 Value = DAG.getNode(ISD::ZERO_EXTEND, VT, Value);
4043 unsigned Shift = 8;
4044 while (CurVT != MVT::i8) {
4045 Value =
4046 DAG.getNode(ISD::OR, VT,
4047 DAG.getNode(ISD::SHL, VT, Value,
4048 DAG.getConstant(Shift, MVT::i8)), Value);
4049 Shift <<= 1;
4050 CurVT = (MVT::ValueType)((unsigned)CurVT - 1);
Evan Cheng81fcea82006-02-14 08:22:34 +00004051 }
4052
4053 return Value;
4054 }
4055}
4056
Evan Cheng6781b6e2006-02-15 21:59:04 +00004057/// getMemsetStringVal - Similar to getMemsetValue. Except this is only
4058/// used when a memcpy is turned into a memset when the source is a constant
4059/// string ptr.
4060static SDOperand getMemsetStringVal(MVT::ValueType VT,
4061 SelectionDAG &DAG, TargetLowering &TLI,
4062 std::string &Str, unsigned Offset) {
Evan Cheng6781b6e2006-02-15 21:59:04 +00004063 uint64_t Val = 0;
Dan Gohman1796f1f2007-05-18 17:52:13 +00004064 unsigned MSB = MVT::getSizeInBits(VT) / 8;
Evan Cheng6781b6e2006-02-15 21:59:04 +00004065 if (TLI.isLittleEndian())
4066 Offset = Offset + MSB - 1;
4067 for (unsigned i = 0; i != MSB; ++i) {
Evan Cheng6e12a052006-11-29 01:38:07 +00004068 Val = (Val << 8) | (unsigned char)Str[Offset];
Evan Cheng6781b6e2006-02-15 21:59:04 +00004069 Offset += TLI.isLittleEndian() ? -1 : 1;
4070 }
4071 return DAG.getConstant(Val, VT);
4072}
4073
Evan Cheng81fcea82006-02-14 08:22:34 +00004074/// getMemBasePlusOffset - Returns base and offset node for the
4075static SDOperand getMemBasePlusOffset(SDOperand Base, unsigned Offset,
4076 SelectionDAG &DAG, TargetLowering &TLI) {
4077 MVT::ValueType VT = Base.getValueType();
4078 return DAG.getNode(ISD::ADD, VT, Base, DAG.getConstant(Offset, VT));
4079}
4080
Evan Chengdb2a7a72006-02-14 20:12:38 +00004081/// MeetsMaxMemopRequirement - Determines if the number of memory ops required
Evan Chengd5026102006-02-14 09:11:59 +00004082/// to replace the memset / memcpy is below the threshold. It also returns the
4083/// types of the sequence of memory ops to perform memset / memcpy.
Evan Chengdb2a7a72006-02-14 20:12:38 +00004084static bool MeetsMaxMemopRequirement(std::vector<MVT::ValueType> &MemOps,
4085 unsigned Limit, uint64_t Size,
4086 unsigned Align, TargetLowering &TLI) {
Evan Cheng81fcea82006-02-14 08:22:34 +00004087 MVT::ValueType VT;
4088
4089 if (TLI.allowsUnalignedMemoryAccesses()) {
4090 VT = MVT::i64;
4091 } else {
4092 switch (Align & 7) {
4093 case 0:
4094 VT = MVT::i64;
4095 break;
4096 case 4:
4097 VT = MVT::i32;
4098 break;
4099 case 2:
4100 VT = MVT::i16;
4101 break;
4102 default:
4103 VT = MVT::i8;
4104 break;
4105 }
4106 }
4107
Evan Chengd5026102006-02-14 09:11:59 +00004108 MVT::ValueType LVT = MVT::i64;
4109 while (!TLI.isTypeLegal(LVT))
4110 LVT = (MVT::ValueType)((unsigned)LVT - 1);
4111 assert(MVT::isInteger(LVT));
Evan Cheng81fcea82006-02-14 08:22:34 +00004112
Evan Chengd5026102006-02-14 09:11:59 +00004113 if (VT > LVT)
4114 VT = LVT;
4115
Evan Cheng04514992006-02-14 23:05:54 +00004116 unsigned NumMemOps = 0;
Evan Cheng81fcea82006-02-14 08:22:34 +00004117 while (Size != 0) {
Dan Gohman1796f1f2007-05-18 17:52:13 +00004118 unsigned VTSize = MVT::getSizeInBits(VT) / 8;
Evan Cheng81fcea82006-02-14 08:22:34 +00004119 while (VTSize > Size) {
4120 VT = (MVT::ValueType)((unsigned)VT - 1);
Evan Cheng81fcea82006-02-14 08:22:34 +00004121 VTSize >>= 1;
4122 }
Evan Chengd5026102006-02-14 09:11:59 +00004123 assert(MVT::isInteger(VT));
4124
4125 if (++NumMemOps > Limit)
4126 return false;
Evan Cheng81fcea82006-02-14 08:22:34 +00004127 MemOps.push_back(VT);
4128 Size -= VTSize;
4129 }
Evan Chengd5026102006-02-14 09:11:59 +00004130
4131 return true;
Evan Cheng81fcea82006-02-14 08:22:34 +00004132}
4133
Chris Lattner875def92005-01-11 05:56:49 +00004134void SelectionDAGLowering::visitMemIntrinsic(CallInst &I, unsigned Op) {
Evan Cheng81fcea82006-02-14 08:22:34 +00004135 SDOperand Op1 = getValue(I.getOperand(1));
4136 SDOperand Op2 = getValue(I.getOperand(2));
4137 SDOperand Op3 = getValue(I.getOperand(3));
4138 SDOperand Op4 = getValue(I.getOperand(4));
4139 unsigned Align = (unsigned)cast<ConstantSDNode>(Op4)->getValue();
4140 if (Align == 0) Align = 1;
4141
4142 if (ConstantSDNode *Size = dyn_cast<ConstantSDNode>(Op3)) {
4143 std::vector<MVT::ValueType> MemOps;
Evan Cheng81fcea82006-02-14 08:22:34 +00004144
4145 // Expand memset / memcpy to a series of load / store ops
4146 // if the size operand falls below a certain threshold.
Chris Lattnerc24a1d32006-08-08 02:23:42 +00004147 SmallVector<SDOperand, 8> OutChains;
Evan Cheng81fcea82006-02-14 08:22:34 +00004148 switch (Op) {
Evan Cheng038521e2006-02-14 19:45:56 +00004149 default: break; // Do nothing for now.
Evan Cheng81fcea82006-02-14 08:22:34 +00004150 case ISD::MEMSET: {
Evan Chengdb2a7a72006-02-14 20:12:38 +00004151 if (MeetsMaxMemopRequirement(MemOps, TLI.getMaxStoresPerMemset(),
4152 Size->getValue(), Align, TLI)) {
Evan Chengd5026102006-02-14 09:11:59 +00004153 unsigned NumMemOps = MemOps.size();
Evan Cheng81fcea82006-02-14 08:22:34 +00004154 unsigned Offset = 0;
4155 for (unsigned i = 0; i < NumMemOps; i++) {
4156 MVT::ValueType VT = MemOps[i];
Dan Gohman1796f1f2007-05-18 17:52:13 +00004157 unsigned VTSize = MVT::getSizeInBits(VT) / 8;
Evan Cheng93e48652006-02-15 22:12:35 +00004158 SDOperand Value = getMemsetValue(Op2, VT, DAG);
Evan Chengdf9ac472006-10-05 23:01:46 +00004159 SDOperand Store = DAG.getStore(getRoot(), Value,
Chris Lattner6f87d182006-02-22 22:37:12 +00004160 getMemBasePlusOffset(Op1, Offset, DAG, TLI),
Evan Chengab51cf22006-10-13 21:14:26 +00004161 I.getOperand(1), Offset);
Evan Chenge2038bd2006-02-15 01:54:51 +00004162 OutChains.push_back(Store);
Evan Cheng81fcea82006-02-14 08:22:34 +00004163 Offset += VTSize;
4164 }
Evan Cheng81fcea82006-02-14 08:22:34 +00004165 }
Evan Chenge2038bd2006-02-15 01:54:51 +00004166 break;
Evan Cheng81fcea82006-02-14 08:22:34 +00004167 }
Evan Chenge2038bd2006-02-15 01:54:51 +00004168 case ISD::MEMCPY: {
4169 if (MeetsMaxMemopRequirement(MemOps, TLI.getMaxStoresPerMemcpy(),
4170 Size->getValue(), Align, TLI)) {
4171 unsigned NumMemOps = MemOps.size();
Evan Chengc3dcf5a2006-02-16 23:11:42 +00004172 unsigned SrcOff = 0, DstOff = 0, SrcDelta = 0;
Evan Cheng6781b6e2006-02-15 21:59:04 +00004173 GlobalAddressSDNode *G = NULL;
4174 std::string Str;
Evan Chengc3dcf5a2006-02-16 23:11:42 +00004175 bool CopyFromStr = false;
Evan Cheng6781b6e2006-02-15 21:59:04 +00004176
4177 if (Op2.getOpcode() == ISD::GlobalAddress)
4178 G = cast<GlobalAddressSDNode>(Op2);
4179 else if (Op2.getOpcode() == ISD::ADD &&
4180 Op2.getOperand(0).getOpcode() == ISD::GlobalAddress &&
4181 Op2.getOperand(1).getOpcode() == ISD::Constant) {
4182 G = cast<GlobalAddressSDNode>(Op2.getOperand(0));
Evan Chengc3dcf5a2006-02-16 23:11:42 +00004183 SrcDelta = cast<ConstantSDNode>(Op2.getOperand(1))->getValue();
Evan Cheng6781b6e2006-02-15 21:59:04 +00004184 }
4185 if (G) {
4186 GlobalVariable *GV = dyn_cast<GlobalVariable>(G->getGlobal());
Evan Chengfeba5072006-11-29 01:58:12 +00004187 if (GV && GV->isConstant()) {
Evan Cheng38280c02006-03-10 23:52:03 +00004188 Str = GV->getStringValue(false);
Evan Chengc3dcf5a2006-02-16 23:11:42 +00004189 if (!Str.empty()) {
4190 CopyFromStr = true;
4191 SrcOff += SrcDelta;
4192 }
4193 }
Evan Cheng6781b6e2006-02-15 21:59:04 +00004194 }
4195
Evan Chenge2038bd2006-02-15 01:54:51 +00004196 for (unsigned i = 0; i < NumMemOps; i++) {
4197 MVT::ValueType VT = MemOps[i];
Dan Gohman1796f1f2007-05-18 17:52:13 +00004198 unsigned VTSize = MVT::getSizeInBits(VT) / 8;
Evan Cheng6781b6e2006-02-15 21:59:04 +00004199 SDOperand Value, Chain, Store;
4200
Evan Chengc3dcf5a2006-02-16 23:11:42 +00004201 if (CopyFromStr) {
Evan Cheng6781b6e2006-02-15 21:59:04 +00004202 Value = getMemsetStringVal(VT, DAG, TLI, Str, SrcOff);
4203 Chain = getRoot();
4204 Store =
Evan Chengdf9ac472006-10-05 23:01:46 +00004205 DAG.getStore(Chain, Value,
4206 getMemBasePlusOffset(Op1, DstOff, DAG, TLI),
Evan Chengab51cf22006-10-13 21:14:26 +00004207 I.getOperand(1), DstOff);
Evan Cheng6781b6e2006-02-15 21:59:04 +00004208 } else {
4209 Value = DAG.getLoad(VT, getRoot(),
4210 getMemBasePlusOffset(Op2, SrcOff, DAG, TLI),
Evan Chenge71fe34d2006-10-09 20:57:25 +00004211 I.getOperand(2), SrcOff);
Evan Cheng6781b6e2006-02-15 21:59:04 +00004212 Chain = Value.getValue(1);
4213 Store =
Evan Chengdf9ac472006-10-05 23:01:46 +00004214 DAG.getStore(Chain, Value,
4215 getMemBasePlusOffset(Op1, DstOff, DAG, TLI),
Evan Chengab51cf22006-10-13 21:14:26 +00004216 I.getOperand(1), DstOff);
Evan Cheng6781b6e2006-02-15 21:59:04 +00004217 }
Evan Chenge2038bd2006-02-15 01:54:51 +00004218 OutChains.push_back(Store);
Evan Cheng6781b6e2006-02-15 21:59:04 +00004219 SrcOff += VTSize;
4220 DstOff += VTSize;
Evan Chenge2038bd2006-02-15 01:54:51 +00004221 }
4222 }
4223 break;
4224 }
4225 }
4226
4227 if (!OutChains.empty()) {
Chris Lattnerc24a1d32006-08-08 02:23:42 +00004228 DAG.setRoot(DAG.getNode(ISD::TokenFactor, MVT::Other,
4229 &OutChains[0], OutChains.size()));
Evan Chenge2038bd2006-02-15 01:54:51 +00004230 return;
Evan Cheng81fcea82006-02-14 08:22:34 +00004231 }
4232 }
4233
Chris Lattnerc24a1d32006-08-08 02:23:42 +00004234 DAG.setRoot(DAG.getNode(Op, MVT::Other, getRoot(), Op1, Op2, Op3, Op4));
Chris Lattner7a60d912005-01-07 07:47:53 +00004235}
4236
Chris Lattner875def92005-01-11 05:56:49 +00004237//===----------------------------------------------------------------------===//
4238// SelectionDAGISel code
4239//===----------------------------------------------------------------------===//
Chris Lattner7a60d912005-01-07 07:47:53 +00004240
4241unsigned SelectionDAGISel::MakeReg(MVT::ValueType VT) {
4242 return RegMap->createVirtualRegister(TLI.getRegClassFor(VT));
4243}
4244
Chris Lattnerc9950c12005-08-17 06:37:43 +00004245void SelectionDAGISel::getAnalysisUsage(AnalysisUsage &AU) const {
Jim Laskeydcb2b832006-10-16 20:52:31 +00004246 AU.addRequired<AliasAnalysis>();
Chris Lattnerf6a6d3c2007-03-31 04:18:03 +00004247 AU.setPreservesAll();
Chris Lattnerc9950c12005-08-17 06:37:43 +00004248}
Chris Lattner7a60d912005-01-07 07:47:53 +00004249
Chris Lattner35397782005-12-05 07:10:48 +00004250
Chris Lattnerbba52192006-10-28 19:22:10 +00004251
Chris Lattner7a60d912005-01-07 07:47:53 +00004252bool SelectionDAGISel::runOnFunction(Function &Fn) {
4253 MachineFunction &MF = MachineFunction::construct(&Fn, TLI.getTargetMachine());
4254 RegMap = MF.getSSARegMap();
Bill Wendling22e978a2006-12-07 20:04:42 +00004255 DOUT << "\n\n\n=== " << Fn.getName() << "\n";
Chris Lattner7a60d912005-01-07 07:47:53 +00004256
4257 FunctionLoweringInfo FuncInfo(TLI, Fn, MF);
4258
Duncan Sands74137362007-06-13 16:53:21 +00004259 if (ExceptionHandling)
4260 for (Function::iterator I = Fn.begin(), E = Fn.end(); I != E; ++I)
4261 if (InvokeInst *Invoke = dyn_cast<InvokeInst>(I->getTerminator()))
4262 // Mark landing pad.
4263 FuncInfo.MBBMap[Invoke->getSuccessor(1)]->setIsLandingPad();
Duncan Sands61166502007-06-06 10:05:18 +00004264
4265 for (Function::iterator I = Fn.begin(), E = Fn.end(); I != E; ++I)
Chris Lattner7a60d912005-01-07 07:47:53 +00004266 SelectBasicBlock(I, MF, FuncInfo);
Misha Brukman835702a2005-04-21 22:36:52 +00004267
Evan Cheng276b44b2007-02-10 02:43:39 +00004268 // Add function live-ins to entry block live-in set.
4269 BasicBlock *EntryBB = &Fn.getEntryBlock();
4270 BB = FuncInfo.MBBMap[EntryBB];
4271 if (!MF.livein_empty())
4272 for (MachineFunction::livein_iterator I = MF.livein_begin(),
4273 E = MF.livein_end(); I != E; ++I)
4274 BB->addLiveIn(I->first);
4275
Duncan Sands92bf2c62007-06-15 19:04:19 +00004276#ifndef NDEBUG
4277 assert(FuncInfo.CatchInfoFound.size() == FuncInfo.CatchInfoLost.size() &&
4278 "Not all catch info was assigned to a landing pad!");
4279#endif
4280
Chris Lattner7a60d912005-01-07 07:47:53 +00004281 return true;
4282}
4283
Chris Lattnered0110b2006-10-27 21:36:01 +00004284SDOperand SelectionDAGLowering::CopyValueToVirtualRegister(Value *V,
4285 unsigned Reg) {
4286 SDOperand Op = getValue(V);
Chris Lattnere727af02005-01-13 20:50:02 +00004287 assert((Op.getOpcode() != ISD::CopyFromReg ||
Chris Lattner33182322005-08-16 21:55:35 +00004288 cast<RegisterSDNode>(Op.getOperand(1))->getReg() != Reg) &&
Chris Lattnere727af02005-01-13 20:50:02 +00004289 "Copy from a reg to the same reg!");
Chris Lattner33182322005-08-16 21:55:35 +00004290
Chris Lattner33182322005-08-16 21:55:35 +00004291 MVT::ValueType SrcVT = Op.getValueType();
Dan Gohman78677932007-06-28 23:29:44 +00004292 MVT::ValueType RegisterVT = TLI.getRegisterType(SrcVT);
4293 unsigned NumRegs = TLI.getNumRegisters(SrcVT);
4294 SmallVector<SDOperand, 8> Regs(NumRegs);
4295 SmallVector<SDOperand, 8> Chains(NumRegs);
4296
4297 // Copy the value by legal parts into sequential virtual registers.
Dan Gohmand258e802007-07-05 20:12:34 +00004298 getCopyToParts(DAG, Op, &Regs[0], NumRegs, RegisterVT, false);
Dan Gohman533dd162007-07-02 16:18:06 +00004299 for (unsigned i = 0; i != NumRegs; ++i)
Dan Gohman78677932007-06-28 23:29:44 +00004300 Chains[i] = DAG.getCopyToReg(getRoot(), Reg + i, Regs[i]);
4301 return DAG.getNode(ISD::TokenFactor, MVT::Other, &Chains[0], NumRegs);
Chris Lattner7a60d912005-01-07 07:47:53 +00004302}
4303
Chris Lattner16f64df2005-01-17 17:15:02 +00004304void SelectionDAGISel::
Evan Chengde608342007-02-10 01:08:18 +00004305LowerArguments(BasicBlock *LLVMBB, SelectionDAGLowering &SDL,
Chris Lattner16f64df2005-01-17 17:15:02 +00004306 std::vector<SDOperand> &UnorderedChains) {
4307 // If this is the entry block, emit arguments.
Evan Chengde608342007-02-10 01:08:18 +00004308 Function &F = *LLVMBB->getParent();
Chris Lattnere3c2cf42005-01-17 17:55:19 +00004309 FunctionLoweringInfo &FuncInfo = SDL.FuncInfo;
Chris Lattner6871b232005-10-30 19:42:35 +00004310 SDOperand OldRoot = SDL.DAG.getRoot();
4311 std::vector<SDOperand> Args = TLI.LowerArguments(F, SDL.DAG);
Chris Lattner16f64df2005-01-17 17:15:02 +00004312
Chris Lattner6871b232005-10-30 19:42:35 +00004313 unsigned a = 0;
4314 for (Function::arg_iterator AI = F.arg_begin(), E = F.arg_end();
4315 AI != E; ++AI, ++a)
4316 if (!AI->use_empty()) {
4317 SDL.setValue(AI, Args[a]);
Evan Cheng3784f3c52006-04-27 08:29:42 +00004318
Chris Lattner6871b232005-10-30 19:42:35 +00004319 // If this argument is live outside of the entry block, insert a copy from
4320 // whereever we got it to the vreg that other BB's will reference it as.
Chris Lattner8c504cf2007-02-25 18:40:32 +00004321 DenseMap<const Value*, unsigned>::iterator VMI=FuncInfo.ValueMap.find(AI);
4322 if (VMI != FuncInfo.ValueMap.end()) {
4323 SDOperand Copy = SDL.CopyValueToVirtualRegister(AI, VMI->second);
Chris Lattner6871b232005-10-30 19:42:35 +00004324 UnorderedChains.push_back(Copy);
4325 }
Chris Lattnere3c2cf42005-01-17 17:55:19 +00004326 }
Chris Lattner6871b232005-10-30 19:42:35 +00004327
Chris Lattner6871b232005-10-30 19:42:35 +00004328 // Finally, if the target has anything special to do, allow it to do so.
Chris Lattner957cb672006-05-16 06:10:58 +00004329 // FIXME: this should insert code into the DAG!
Chris Lattner6871b232005-10-30 19:42:35 +00004330 EmitFunctionEntryCode(F, SDL.DAG.getMachineFunction());
Chris Lattner16f64df2005-01-17 17:15:02 +00004331}
4332
Duncan Sands92bf2c62007-06-15 19:04:19 +00004333static void copyCatchInfo(BasicBlock *SrcBB, BasicBlock *DestBB,
4334 MachineModuleInfo *MMI, FunctionLoweringInfo &FLI) {
4335 assert(!FLI.MBBMap[SrcBB]->isLandingPad() &&
4336 "Copying catch info out of a landing pad!");
4337 for (BasicBlock::iterator I = SrcBB->begin(), E = --SrcBB->end(); I != E; ++I)
Duncan Sandsfe806382007-07-04 20:52:51 +00004338 if (isSelector(I)) {
Duncan Sands92bf2c62007-06-15 19:04:19 +00004339 // Apply the catch info to DestBB.
4340 addCatchInfo(cast<CallInst>(*I), MMI, FLI.MBBMap[DestBB]);
4341#ifndef NDEBUG
4342 FLI.CatchInfoFound.insert(I);
4343#endif
4344 }
4345}
4346
Chris Lattner7a60d912005-01-07 07:47:53 +00004347void SelectionDAGISel::BuildSelectionDAG(SelectionDAG &DAG, BasicBlock *LLVMBB,
4348 std::vector<std::pair<MachineInstr*, unsigned> > &PHINodesToUpdate,
Nate Begemaned728c12006-03-27 01:32:24 +00004349 FunctionLoweringInfo &FuncInfo) {
Chris Lattner7a60d912005-01-07 07:47:53 +00004350 SelectionDAGLowering SDL(DAG, TLI, FuncInfo);
Chris Lattner718b5c22005-01-13 17:59:43 +00004351
4352 std::vector<SDOperand> UnorderedChains;
Misha Brukman835702a2005-04-21 22:36:52 +00004353
Chris Lattner6871b232005-10-30 19:42:35 +00004354 // Lower any arguments needed in this block if this is the entry block.
Dan Gohmandcb291f2007-03-22 16:38:57 +00004355 if (LLVMBB == &LLVMBB->getParent()->getEntryBlock())
Chris Lattner6871b232005-10-30 19:42:35 +00004356 LowerArguments(LLVMBB, SDL, UnorderedChains);
Chris Lattner7a60d912005-01-07 07:47:53 +00004357
4358 BB = FuncInfo.MBBMap[LLVMBB];
4359 SDL.setCurrentBasicBlock(BB);
4360
Duncan Sands92bf2c62007-06-15 19:04:19 +00004361 MachineModuleInfo *MMI = DAG.getMachineModuleInfo();
Duncan Sands61166502007-06-06 10:05:18 +00004362
Duncan Sands92bf2c62007-06-15 19:04:19 +00004363 if (ExceptionHandling && MMI && BB->isLandingPad()) {
4364 // Add a label to mark the beginning of the landing pad. Deletion of the
4365 // landing pad can thus be detected via the MachineModuleInfo.
4366 unsigned LabelID = MMI->addLandingPad(BB);
4367 DAG.setRoot(DAG.getNode(ISD::LABEL, MVT::Other, DAG.getEntryNode(),
4368 DAG.getConstant(LabelID, MVT::i32)));
4369
Evan Cheng77f541d2007-06-27 18:45:32 +00004370 // Mark exception register as live in.
4371 unsigned Reg = TLI.getExceptionAddressRegister();
4372 if (Reg) BB->addLiveIn(Reg);
4373
4374 // Mark exception selector register as live in.
4375 Reg = TLI.getExceptionSelectorRegister();
4376 if (Reg) BB->addLiveIn(Reg);
4377
Duncan Sands92bf2c62007-06-15 19:04:19 +00004378 // FIXME: Hack around an exception handling flaw (PR1508): the personality
4379 // function and list of typeids logically belong to the invoke (or, if you
4380 // like, the basic block containing the invoke), and need to be associated
4381 // with it in the dwarf exception handling tables. Currently however the
Duncan Sandsfe806382007-07-04 20:52:51 +00004382 // information is provided by an intrinsic (eh.selector) that can be moved
4383 // to unexpected places by the optimizers: if the unwind edge is critical,
4384 // then breaking it can result in the intrinsics being in the successor of
4385 // the landing pad, not the landing pad itself. This results in exceptions
4386 // not being caught because no typeids are associated with the invoke.
4387 // This may not be the only way things can go wrong, but it is the only way
4388 // we try to work around for the moment.
Duncan Sands92bf2c62007-06-15 19:04:19 +00004389 BranchInst *Br = dyn_cast<BranchInst>(LLVMBB->getTerminator());
4390
4391 if (Br && Br->isUnconditional()) { // Critical edge?
4392 BasicBlock::iterator I, E;
4393 for (I = LLVMBB->begin(), E = --LLVMBB->end(); I != E; ++I)
Duncan Sandsfe806382007-07-04 20:52:51 +00004394 if (isSelector(I))
Duncan Sands92bf2c62007-06-15 19:04:19 +00004395 break;
4396
4397 if (I == E)
4398 // No catch info found - try to extract some from the successor.
4399 copyCatchInfo(Br->getSuccessor(0), LLVMBB, MMI, FuncInfo);
Duncan Sands61166502007-06-06 10:05:18 +00004400 }
4401 }
4402
Chris Lattner7a60d912005-01-07 07:47:53 +00004403 // Lower all of the non-terminator instructions.
4404 for (BasicBlock::iterator I = LLVMBB->begin(), E = --LLVMBB->end();
4405 I != E; ++I)
4406 SDL.visit(*I);
Duncan Sands97f72362007-06-13 05:51:31 +00004407
Chris Lattner7a60d912005-01-07 07:47:53 +00004408 // Ensure that all instructions which are used outside of their defining
Duncan Sands97f72362007-06-13 05:51:31 +00004409 // blocks are available as virtual registers. Invoke is handled elsewhere.
Chris Lattner7a60d912005-01-07 07:47:53 +00004410 for (BasicBlock::iterator I = LLVMBB->begin(), E = LLVMBB->end(); I != E;++I)
Duncan Sands97f72362007-06-13 05:51:31 +00004411 if (!I->use_empty() && !isa<PHINode>(I) && !isa<InvokeInst>(I)) {
Chris Lattner289aa442007-02-04 01:35:11 +00004412 DenseMap<const Value*, unsigned>::iterator VMI =FuncInfo.ValueMap.find(I);
Chris Lattner7a60d912005-01-07 07:47:53 +00004413 if (VMI != FuncInfo.ValueMap.end())
Chris Lattner718b5c22005-01-13 17:59:43 +00004414 UnorderedChains.push_back(
Chris Lattnered0110b2006-10-27 21:36:01 +00004415 SDL.CopyValueToVirtualRegister(I, VMI->second));
Chris Lattner7a60d912005-01-07 07:47:53 +00004416 }
4417
4418 // Handle PHI nodes in successor blocks. Emit code into the SelectionDAG to
4419 // ensure constants are generated when needed. Remember the virtual registers
4420 // that need to be added to the Machine PHI nodes as input. We cannot just
4421 // directly add them, because expansion might result in multiple MBB's for one
4422 // BB. As such, the start of the BB might correspond to a different MBB than
4423 // the end.
Misha Brukman835702a2005-04-21 22:36:52 +00004424 //
Chris Lattner84a03502006-10-27 23:50:33 +00004425 TerminatorInst *TI = LLVMBB->getTerminator();
Chris Lattner7a60d912005-01-07 07:47:53 +00004426
4427 // Emit constants only once even if used by multiple PHI nodes.
4428 std::map<Constant*, unsigned> ConstantsOut;
Chris Lattner707339a52006-09-07 01:59:34 +00004429
Chris Lattner84a03502006-10-27 23:50:33 +00004430 // Vector bool would be better, but vector<bool> is really slow.
4431 std::vector<unsigned char> SuccsHandled;
4432 if (TI->getNumSuccessors())
4433 SuccsHandled.resize(BB->getParent()->getNumBlockIDs());
4434
Chris Lattner7a60d912005-01-07 07:47:53 +00004435 // Check successor nodes PHI nodes that expect a constant to be available from
4436 // this block.
Chris Lattner7a60d912005-01-07 07:47:53 +00004437 for (unsigned succ = 0, e = TI->getNumSuccessors(); succ != e; ++succ) {
4438 BasicBlock *SuccBB = TI->getSuccessor(succ);
Chris Lattner707339a52006-09-07 01:59:34 +00004439 if (!isa<PHINode>(SuccBB->begin())) continue;
Chris Lattner84a03502006-10-27 23:50:33 +00004440 MachineBasicBlock *SuccMBB = FuncInfo.MBBMap[SuccBB];
Chris Lattner707339a52006-09-07 01:59:34 +00004441
Chris Lattner84a03502006-10-27 23:50:33 +00004442 // If this terminator has multiple identical successors (common for
4443 // switches), only handle each succ once.
4444 unsigned SuccMBBNo = SuccMBB->getNumber();
4445 if (SuccsHandled[SuccMBBNo]) continue;
4446 SuccsHandled[SuccMBBNo] = true;
4447
4448 MachineBasicBlock::iterator MBBI = SuccMBB->begin();
Chris Lattner7a60d912005-01-07 07:47:53 +00004449 PHINode *PN;
4450
4451 // At this point we know that there is a 1-1 correspondence between LLVM PHI
4452 // nodes and Machine PHI nodes, but the incoming operands have not been
4453 // emitted yet.
4454 for (BasicBlock::iterator I = SuccBB->begin();
Chris Lattner84a03502006-10-27 23:50:33 +00004455 (PN = dyn_cast<PHINode>(I)); ++I) {
4456 // Ignore dead phi's.
4457 if (PN->use_empty()) continue;
4458
4459 unsigned Reg;
4460 Value *PHIOp = PN->getIncomingValueForBlock(LLVMBB);
Chris Lattner90f42382006-11-29 01:12:32 +00004461
Chris Lattner84a03502006-10-27 23:50:33 +00004462 if (Constant *C = dyn_cast<Constant>(PHIOp)) {
4463 unsigned &RegOut = ConstantsOut[C];
4464 if (RegOut == 0) {
4465 RegOut = FuncInfo.CreateRegForValue(C);
4466 UnorderedChains.push_back(
4467 SDL.CopyValueToVirtualRegister(C, RegOut));
Chris Lattner7a60d912005-01-07 07:47:53 +00004468 }
Chris Lattner84a03502006-10-27 23:50:33 +00004469 Reg = RegOut;
4470 } else {
4471 Reg = FuncInfo.ValueMap[PHIOp];
4472 if (Reg == 0) {
4473 assert(isa<AllocaInst>(PHIOp) &&
4474 FuncInfo.StaticAllocaMap.count(cast<AllocaInst>(PHIOp)) &&
4475 "Didn't codegen value into a register!??");
4476 Reg = FuncInfo.CreateRegForValue(PHIOp);
4477 UnorderedChains.push_back(
4478 SDL.CopyValueToVirtualRegister(PHIOp, Reg));
Chris Lattnerba380352006-03-31 02:12:18 +00004479 }
Chris Lattner7a60d912005-01-07 07:47:53 +00004480 }
Chris Lattner84a03502006-10-27 23:50:33 +00004481
4482 // Remember that this register needs to added to the machine PHI node as
4483 // the input for this MBB.
4484 MVT::ValueType VT = TLI.getValueType(PN->getType());
Dan Gohmana8665142007-06-25 16:23:39 +00004485 unsigned NumRegisters = TLI.getNumRegisters(VT);
Dan Gohman04deef32007-06-21 14:42:22 +00004486 for (unsigned i = 0, e = NumRegisters; i != e; ++i)
Chris Lattner84a03502006-10-27 23:50:33 +00004487 PHINodesToUpdate.push_back(std::make_pair(MBBI++, Reg+i));
4488 }
Chris Lattner7a60d912005-01-07 07:47:53 +00004489 }
4490 ConstantsOut.clear();
4491
Chris Lattner718b5c22005-01-13 17:59:43 +00004492 // Turn all of the unordered chains into one factored node.
Chris Lattner24516842005-01-13 19:53:14 +00004493 if (!UnorderedChains.empty()) {
Chris Lattnerb7cad902005-11-09 05:03:03 +00004494 SDOperand Root = SDL.getRoot();
4495 if (Root.getOpcode() != ISD::EntryToken) {
4496 unsigned i = 0, e = UnorderedChains.size();
4497 for (; i != e; ++i) {
4498 assert(UnorderedChains[i].Val->getNumOperands() > 1);
4499 if (UnorderedChains[i].Val->getOperand(0) == Root)
4500 break; // Don't add the root if we already indirectly depend on it.
4501 }
4502
4503 if (i == e)
4504 UnorderedChains.push_back(Root);
4505 }
Chris Lattnerc24a1d32006-08-08 02:23:42 +00004506 DAG.setRoot(DAG.getNode(ISD::TokenFactor, MVT::Other,
4507 &UnorderedChains[0], UnorderedChains.size()));
Chris Lattner718b5c22005-01-13 17:59:43 +00004508 }
4509
Chris Lattner7a60d912005-01-07 07:47:53 +00004510 // Lower the terminator after the copies are emitted.
Duncan Sands97f72362007-06-13 05:51:31 +00004511 SDL.visit(*LLVMBB->getTerminator());
Chris Lattner4108bb02005-01-17 19:43:36 +00004512
Nate Begemaned728c12006-03-27 01:32:24 +00004513 // Copy over any CaseBlock records that may now exist due to SwitchInst
Nate Begeman4ca2ea52006-04-22 18:53:45 +00004514 // lowering, as well as any jump table information.
Nate Begemaned728c12006-03-27 01:32:24 +00004515 SwitchCases.clear();
4516 SwitchCases = SDL.SwitchCases;
Anton Korobeynikov70378262007-03-25 15:07:15 +00004517 JTCases.clear();
4518 JTCases = SDL.JTCases;
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00004519 BitTestCases.clear();
4520 BitTestCases = SDL.BitTestCases;
4521
Chris Lattner4108bb02005-01-17 19:43:36 +00004522 // Make sure the root of the DAG is up-to-date.
4523 DAG.setRoot(SDL.getRoot());
Chris Lattner7a60d912005-01-07 07:47:53 +00004524}
4525
Nate Begemaned728c12006-03-27 01:32:24 +00004526void SelectionDAGISel::CodeGenAndEmitDAG(SelectionDAG &DAG) {
Jim Laskeydcb2b832006-10-16 20:52:31 +00004527 // Get alias analysis for load/store combining.
4528 AliasAnalysis &AA = getAnalysis<AliasAnalysis>();
4529
Chris Lattnerbcfebeb2005-10-10 16:47:10 +00004530 // Run the DAG combiner in pre-legalize mode.
Jim Laskeydcb2b832006-10-16 20:52:31 +00004531 DAG.Combine(false, AA);
Nate Begeman007c6502005-09-07 00:15:36 +00004532
Bill Wendling22e978a2006-12-07 20:04:42 +00004533 DOUT << "Lowered selection DAG:\n";
Chris Lattner7a60d912005-01-07 07:47:53 +00004534 DEBUG(DAG.dump());
Nate Begemaned728c12006-03-27 01:32:24 +00004535
Chris Lattner7a60d912005-01-07 07:47:53 +00004536 // Second step, hack on the DAG until it only uses operations and types that
4537 // the target supports.
Chris Lattnerffcb0ae2005-01-23 04:36:26 +00004538 DAG.Legalize();
Nate Begemaned728c12006-03-27 01:32:24 +00004539
Bill Wendling22e978a2006-12-07 20:04:42 +00004540 DOUT << "Legalized selection DAG:\n";
Chris Lattner7a60d912005-01-07 07:47:53 +00004541 DEBUG(DAG.dump());
Nate Begemaned728c12006-03-27 01:32:24 +00004542
Chris Lattnerbcfebeb2005-10-10 16:47:10 +00004543 // Run the DAG combiner in post-legalize mode.
Jim Laskeydcb2b832006-10-16 20:52:31 +00004544 DAG.Combine(true, AA);
Nate Begeman007c6502005-09-07 00:15:36 +00004545
Evan Cheng739a6a42006-01-21 02:32:06 +00004546 if (ViewISelDAGs) DAG.viewGraph();
Evan Cheng51ab4492006-04-28 02:09:19 +00004547
Chris Lattner5ca31d92005-03-30 01:10:47 +00004548 // Third, instruction select all of the operations to machine code, adding the
4549 // code to the MachineBasicBlock.
Chris Lattner7a60d912005-01-07 07:47:53 +00004550 InstructionSelectBasicBlock(DAG);
Nate Begemaned728c12006-03-27 01:32:24 +00004551
Bill Wendling22e978a2006-12-07 20:04:42 +00004552 DOUT << "Selected machine code:\n";
Chris Lattner7a60d912005-01-07 07:47:53 +00004553 DEBUG(BB->dump());
Nate Begemaned728c12006-03-27 01:32:24 +00004554}
Chris Lattner7a60d912005-01-07 07:47:53 +00004555
Nate Begemaned728c12006-03-27 01:32:24 +00004556void SelectionDAGISel::SelectBasicBlock(BasicBlock *LLVMBB, MachineFunction &MF,
4557 FunctionLoweringInfo &FuncInfo) {
4558 std::vector<std::pair<MachineInstr*, unsigned> > PHINodesToUpdate;
4559 {
Jim Laskeyc56315c2007-01-26 21:22:28 +00004560 SelectionDAG DAG(TLI, MF, getAnalysisToUpdate<MachineModuleInfo>());
Nate Begemaned728c12006-03-27 01:32:24 +00004561 CurDAG = &DAG;
4562
4563 // First step, lower LLVM code to some DAG. This DAG may use operations and
4564 // types that are not supported by the target.
4565 BuildSelectionDAG(DAG, LLVMBB, PHINodesToUpdate, FuncInfo);
4566
4567 // Second step, emit the lowered DAG as machine code.
4568 CodeGenAndEmitDAG(DAG);
4569 }
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00004570
4571 DOUT << "Total amount of phi nodes to update: "
4572 << PHINodesToUpdate.size() << "\n";
4573 DEBUG(for (unsigned i = 0, e = PHINodesToUpdate.size(); i != e; ++i)
4574 DOUT << "Node " << i << " : (" << PHINodesToUpdate[i].first
4575 << ", " << PHINodesToUpdate[i].second << ")\n";);
Nate Begemaned728c12006-03-27 01:32:24 +00004576
Chris Lattner5ca31d92005-03-30 01:10:47 +00004577 // Next, now that we know what the last MBB the LLVM BB expanded is, update
Chris Lattner7a60d912005-01-07 07:47:53 +00004578 // PHI nodes in successors.
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00004579 if (SwitchCases.empty() && JTCases.empty() && BitTestCases.empty()) {
Nate Begemaned728c12006-03-27 01:32:24 +00004580 for (unsigned i = 0, e = PHINodesToUpdate.size(); i != e; ++i) {
4581 MachineInstr *PHI = PHINodesToUpdate[i].first;
4582 assert(PHI->getOpcode() == TargetInstrInfo::PHI &&
4583 "This is not a machine PHI node that we are updating!");
Chris Lattneraf23f9b2006-09-05 02:31:13 +00004584 PHI->addRegOperand(PHINodesToUpdate[i].second, false);
Nate Begemaned728c12006-03-27 01:32:24 +00004585 PHI->addMachineBasicBlockOperand(BB);
4586 }
4587 return;
Chris Lattner7a60d912005-01-07 07:47:53 +00004588 }
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00004589
4590 for (unsigned i = 0, e = BitTestCases.size(); i != e; ++i) {
4591 // Lower header first, if it wasn't already lowered
4592 if (!BitTestCases[i].Emitted) {
4593 SelectionDAG HSDAG(TLI, MF, getAnalysisToUpdate<MachineModuleInfo>());
4594 CurDAG = &HSDAG;
4595 SelectionDAGLowering HSDL(HSDAG, TLI, FuncInfo);
4596 // Set the current basic block to the mbb we wish to insert the code into
4597 BB = BitTestCases[i].Parent;
4598 HSDL.setCurrentBasicBlock(BB);
4599 // Emit the code
4600 HSDL.visitBitTestHeader(BitTestCases[i]);
4601 HSDAG.setRoot(HSDL.getRoot());
4602 CodeGenAndEmitDAG(HSDAG);
4603 }
4604
4605 for (unsigned j = 0, ej = BitTestCases[i].Cases.size(); j != ej; ++j) {
4606 SelectionDAG BSDAG(TLI, MF, getAnalysisToUpdate<MachineModuleInfo>());
4607 CurDAG = &BSDAG;
4608 SelectionDAGLowering BSDL(BSDAG, TLI, FuncInfo);
4609 // Set the current basic block to the mbb we wish to insert the code into
4610 BB = BitTestCases[i].Cases[j].ThisBB;
4611 BSDL.setCurrentBasicBlock(BB);
4612 // Emit the code
4613 if (j+1 != ej)
4614 BSDL.visitBitTestCase(BitTestCases[i].Cases[j+1].ThisBB,
4615 BitTestCases[i].Reg,
4616 BitTestCases[i].Cases[j]);
4617 else
4618 BSDL.visitBitTestCase(BitTestCases[i].Default,
4619 BitTestCases[i].Reg,
4620 BitTestCases[i].Cases[j]);
4621
4622
4623 BSDAG.setRoot(BSDL.getRoot());
4624 CodeGenAndEmitDAG(BSDAG);
4625 }
4626
4627 // Update PHI Nodes
4628 for (unsigned pi = 0, pe = PHINodesToUpdate.size(); pi != pe; ++pi) {
4629 MachineInstr *PHI = PHINodesToUpdate[pi].first;
4630 MachineBasicBlock *PHIBB = PHI->getParent();
4631 assert(PHI->getOpcode() == TargetInstrInfo::PHI &&
4632 "This is not a machine PHI node that we are updating!");
4633 // This is "default" BB. We have two jumps to it. From "header" BB and
4634 // from last "case" BB.
4635 if (PHIBB == BitTestCases[i].Default) {
4636 PHI->addRegOperand(PHINodesToUpdate[pi].second, false);
4637 PHI->addMachineBasicBlockOperand(BitTestCases[i].Parent);
Anton Korobeynikove2880402007-04-13 06:53:51 +00004638 PHI->addRegOperand(PHINodesToUpdate[pi].second, false);
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00004639 PHI->addMachineBasicBlockOperand(BitTestCases[i].Cases.back().ThisBB);
4640 }
4641 // One of "cases" BB.
4642 for (unsigned j = 0, ej = BitTestCases[i].Cases.size(); j != ej; ++j) {
4643 MachineBasicBlock* cBB = BitTestCases[i].Cases[j].ThisBB;
4644 if (cBB->succ_end() !=
4645 std::find(cBB->succ_begin(),cBB->succ_end(), PHIBB)) {
4646 PHI->addRegOperand(PHINodesToUpdate[pi].second, false);
4647 PHI->addMachineBasicBlockOperand(cBB);
4648 }
4649 }
4650 }
4651 }
4652
Nate Begeman866b4b42006-04-23 06:26:20 +00004653 // If the JumpTable record is filled in, then we need to emit a jump table.
4654 // Updating the PHI nodes is tricky in this case, since we need to determine
4655 // whether the PHI is a successor of the range check MBB or the jump table MBB
Anton Korobeynikov70378262007-03-25 15:07:15 +00004656 for (unsigned i = 0, e = JTCases.size(); i != e; ++i) {
4657 // Lower header first, if it wasn't already lowered
4658 if (!JTCases[i].first.Emitted) {
4659 SelectionDAG HSDAG(TLI, MF, getAnalysisToUpdate<MachineModuleInfo>());
4660 CurDAG = &HSDAG;
4661 SelectionDAGLowering HSDL(HSDAG, TLI, FuncInfo);
4662 // Set the current basic block to the mbb we wish to insert the code into
4663 BB = JTCases[i].first.HeaderBB;
4664 HSDL.setCurrentBasicBlock(BB);
4665 // Emit the code
4666 HSDL.visitJumpTableHeader(JTCases[i].second, JTCases[i].first);
4667 HSDAG.setRoot(HSDL.getRoot());
4668 CodeGenAndEmitDAG(HSDAG);
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00004669 }
Anton Korobeynikov70378262007-03-25 15:07:15 +00004670
4671 SelectionDAG JSDAG(TLI, MF, getAnalysisToUpdate<MachineModuleInfo>());
4672 CurDAG = &JSDAG;
4673 SelectionDAGLowering JSDL(JSDAG, TLI, FuncInfo);
Nate Begeman4ca2ea52006-04-22 18:53:45 +00004674 // Set the current basic block to the mbb we wish to insert the code into
Anton Korobeynikov70378262007-03-25 15:07:15 +00004675 BB = JTCases[i].second.MBB;
4676 JSDL.setCurrentBasicBlock(BB);
Nate Begeman4ca2ea52006-04-22 18:53:45 +00004677 // Emit the code
Anton Korobeynikov70378262007-03-25 15:07:15 +00004678 JSDL.visitJumpTable(JTCases[i].second);
4679 JSDAG.setRoot(JSDL.getRoot());
4680 CodeGenAndEmitDAG(JSDAG);
4681
Nate Begeman4ca2ea52006-04-22 18:53:45 +00004682 // Update PHI Nodes
4683 for (unsigned pi = 0, pe = PHINodesToUpdate.size(); pi != pe; ++pi) {
4684 MachineInstr *PHI = PHINodesToUpdate[pi].first;
4685 MachineBasicBlock *PHIBB = PHI->getParent();
4686 assert(PHI->getOpcode() == TargetInstrInfo::PHI &&
4687 "This is not a machine PHI node that we are updating!");
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00004688 // "default" BB. We can go there only from header BB.
Anton Korobeynikov70378262007-03-25 15:07:15 +00004689 if (PHIBB == JTCases[i].second.Default) {
Chris Lattneraf23f9b2006-09-05 02:31:13 +00004690 PHI->addRegOperand(PHINodesToUpdate[pi].second, false);
Anton Korobeynikov70378262007-03-25 15:07:15 +00004691 PHI->addMachineBasicBlockOperand(JTCases[i].first.HeaderBB);
Nate Begemandf488392006-05-03 03:48:02 +00004692 }
Anton Korobeynikov506eaf72007-04-09 12:31:58 +00004693 // JT BB. Just iterate over successors here
Nate Begemandf488392006-05-03 03:48:02 +00004694 if (BB->succ_end() != std::find(BB->succ_begin(),BB->succ_end(), PHIBB)) {
Chris Lattneraf23f9b2006-09-05 02:31:13 +00004695 PHI->addRegOperand(PHINodesToUpdate[pi].second, false);
Nate Begemandf488392006-05-03 03:48:02 +00004696 PHI->addMachineBasicBlockOperand(BB);
Nate Begeman4ca2ea52006-04-22 18:53:45 +00004697 }
4698 }
Nate Begeman4ca2ea52006-04-22 18:53:45 +00004699 }
4700
Chris Lattner76a7bc82006-10-22 23:00:53 +00004701 // If the switch block involved a branch to one of the actual successors, we
4702 // need to update PHI nodes in that block.
4703 for (unsigned i = 0, e = PHINodesToUpdate.size(); i != e; ++i) {
4704 MachineInstr *PHI = PHINodesToUpdate[i].first;
4705 assert(PHI->getOpcode() == TargetInstrInfo::PHI &&
4706 "This is not a machine PHI node that we are updating!");
4707 if (BB->isSuccessor(PHI->getParent())) {
4708 PHI->addRegOperand(PHINodesToUpdate[i].second, false);
4709 PHI->addMachineBasicBlockOperand(BB);
4710 }
4711 }
4712
Nate Begemaned728c12006-03-27 01:32:24 +00004713 // If we generated any switch lowering information, build and codegen any
4714 // additional DAGs necessary.
Chris Lattner707339a52006-09-07 01:59:34 +00004715 for (unsigned i = 0, e = SwitchCases.size(); i != e; ++i) {
Jim Laskeyc56315c2007-01-26 21:22:28 +00004716 SelectionDAG SDAG(TLI, MF, getAnalysisToUpdate<MachineModuleInfo>());
Nate Begemaned728c12006-03-27 01:32:24 +00004717 CurDAG = &SDAG;
4718 SelectionDAGLowering SDL(SDAG, TLI, FuncInfo);
Chris Lattner707339a52006-09-07 01:59:34 +00004719
Nate Begemaned728c12006-03-27 01:32:24 +00004720 // Set the current basic block to the mbb we wish to insert the code into
4721 BB = SwitchCases[i].ThisBB;
4722 SDL.setCurrentBasicBlock(BB);
Chris Lattner707339a52006-09-07 01:59:34 +00004723
Nate Begemaned728c12006-03-27 01:32:24 +00004724 // Emit the code
4725 SDL.visitSwitchCase(SwitchCases[i]);
4726 SDAG.setRoot(SDL.getRoot());
4727 CodeGenAndEmitDAG(SDAG);
Chris Lattner707339a52006-09-07 01:59:34 +00004728
4729 // Handle any PHI nodes in successors of this chunk, as if we were coming
4730 // from the original BB before switch expansion. Note that PHI nodes can
4731 // occur multiple times in PHINodesToUpdate. We have to be very careful to
4732 // handle them the right number of times.
Chris Lattner963ddad2006-10-24 17:57:59 +00004733 while ((BB = SwitchCases[i].TrueBB)) { // Handle LHS and RHS.
Chris Lattner707339a52006-09-07 01:59:34 +00004734 for (MachineBasicBlock::iterator Phi = BB->begin();
4735 Phi != BB->end() && Phi->getOpcode() == TargetInstrInfo::PHI; ++Phi){
4736 // This value for this PHI node is recorded in PHINodesToUpdate, get it.
4737 for (unsigned pn = 0; ; ++pn) {
4738 assert(pn != PHINodesToUpdate.size() && "Didn't find PHI entry!");
4739 if (PHINodesToUpdate[pn].first == Phi) {
4740 Phi->addRegOperand(PHINodesToUpdate[pn].second, false);
4741 Phi->addMachineBasicBlockOperand(SwitchCases[i].ThisBB);
4742 break;
4743 }
4744 }
Nate Begemaned728c12006-03-27 01:32:24 +00004745 }
Chris Lattner707339a52006-09-07 01:59:34 +00004746
4747 // Don't process RHS if same block as LHS.
Chris Lattner963ddad2006-10-24 17:57:59 +00004748 if (BB == SwitchCases[i].FalseBB)
4749 SwitchCases[i].FalseBB = 0;
Chris Lattner707339a52006-09-07 01:59:34 +00004750
4751 // If we haven't handled the RHS, do so now. Otherwise, we're done.
Chris Lattner61bcf912006-10-24 18:07:37 +00004752 SwitchCases[i].TrueBB = SwitchCases[i].FalseBB;
Chris Lattner963ddad2006-10-24 17:57:59 +00004753 SwitchCases[i].FalseBB = 0;
Nate Begemaned728c12006-03-27 01:32:24 +00004754 }
Chris Lattner963ddad2006-10-24 17:57:59 +00004755 assert(SwitchCases[i].TrueBB == 0 && SwitchCases[i].FalseBB == 0);
Chris Lattner5ca31d92005-03-30 01:10:47 +00004756 }
Chris Lattner7a60d912005-01-07 07:47:53 +00004757}
Evan Cheng739a6a42006-01-21 02:32:06 +00004758
Jim Laskey95eda5b2006-08-01 14:21:23 +00004759
Evan Cheng739a6a42006-01-21 02:32:06 +00004760//===----------------------------------------------------------------------===//
4761/// ScheduleAndEmitDAG - Pick a safe ordering and emit instructions for each
4762/// target node in the graph.
4763void SelectionDAGISel::ScheduleAndEmitDAG(SelectionDAG &DAG) {
4764 if (ViewSchedDAGs) DAG.viewGraph();
Evan Chengc1e1d972006-01-23 07:01:07 +00004765
Jim Laskey29e635d2006-08-02 12:30:23 +00004766 RegisterScheduler::FunctionPassCtor Ctor = RegisterScheduler::getDefault();
Jim Laskey95eda5b2006-08-01 14:21:23 +00004767
4768 if (!Ctor) {
Jim Laskey29e635d2006-08-02 12:30:23 +00004769 Ctor = ISHeuristic;
Jim Laskey17c67ef2006-08-01 19:14:14 +00004770 RegisterScheduler::setDefault(Ctor);
Evan Chengc1e1d972006-01-23 07:01:07 +00004771 }
Jim Laskey95eda5b2006-08-01 14:21:23 +00004772
Jim Laskey03593f72006-08-01 18:29:48 +00004773 ScheduleDAG *SL = Ctor(this, &DAG, BB);
Chris Lattnere23928c2006-01-21 19:12:11 +00004774 BB = SL->Run();
Evan Chengf9adce92006-02-04 06:49:00 +00004775 delete SL;
Evan Cheng739a6a42006-01-21 02:32:06 +00004776}
Chris Lattnerdcf785b2006-02-24 02:13:54 +00004777
Chris Lattner47639db2006-03-06 00:22:00 +00004778
Jim Laskey03593f72006-08-01 18:29:48 +00004779HazardRecognizer *SelectionDAGISel::CreateTargetHazardRecognizer() {
4780 return new HazardRecognizer();
4781}
4782
Chris Lattner6df34962006-10-11 03:58:02 +00004783//===----------------------------------------------------------------------===//
4784// Helper functions used by the generated instruction selector.
4785//===----------------------------------------------------------------------===//
4786// Calls to these methods are generated by tblgen.
4787
4788/// CheckAndMask - The isel is trying to match something like (and X, 255). If
4789/// the dag combiner simplified the 255, we still want to match. RHS is the
4790/// actual value in the DAG on the RHS of an AND, and DesiredMaskS is the value
4791/// specified in the .td file (e.g. 255).
4792bool SelectionDAGISel::CheckAndMask(SDOperand LHS, ConstantSDNode *RHS,
4793 int64_t DesiredMaskS) {
4794 uint64_t ActualMask = RHS->getValue();
4795 uint64_t DesiredMask =DesiredMaskS & MVT::getIntVTBitMask(LHS.getValueType());
4796
4797 // If the actual mask exactly matches, success!
4798 if (ActualMask == DesiredMask)
4799 return true;
4800
4801 // If the actual AND mask is allowing unallowed bits, this doesn't match.
4802 if (ActualMask & ~DesiredMask)
4803 return false;
4804
4805 // Otherwise, the DAG Combiner may have proven that the value coming in is
4806 // either already zero or is not demanded. Check for known zero input bits.
4807 uint64_t NeededMask = DesiredMask & ~ActualMask;
Dan Gohman309d3d52007-06-22 14:59:07 +00004808 if (CurDAG->MaskedValueIsZero(LHS, NeededMask))
Chris Lattner6df34962006-10-11 03:58:02 +00004809 return true;
4810
4811 // TODO: check to see if missing bits are just not demanded.
4812
4813 // Otherwise, this pattern doesn't match.
4814 return false;
4815}
4816
4817/// CheckOrMask - The isel is trying to match something like (or X, 255). If
4818/// the dag combiner simplified the 255, we still want to match. RHS is the
4819/// actual value in the DAG on the RHS of an OR, and DesiredMaskS is the value
4820/// specified in the .td file (e.g. 255).
4821bool SelectionDAGISel::CheckOrMask(SDOperand LHS, ConstantSDNode *RHS,
4822 int64_t DesiredMaskS) {
4823 uint64_t ActualMask = RHS->getValue();
4824 uint64_t DesiredMask =DesiredMaskS & MVT::getIntVTBitMask(LHS.getValueType());
4825
4826 // If the actual mask exactly matches, success!
4827 if (ActualMask == DesiredMask)
4828 return true;
4829
4830 // If the actual AND mask is allowing unallowed bits, this doesn't match.
4831 if (ActualMask & ~DesiredMask)
4832 return false;
4833
4834 // Otherwise, the DAG Combiner may have proven that the value coming in is
4835 // either already zero or is not demanded. Check for known zero input bits.
4836 uint64_t NeededMask = DesiredMask & ~ActualMask;
4837
4838 uint64_t KnownZero, KnownOne;
Dan Gohman309d3d52007-06-22 14:59:07 +00004839 CurDAG->ComputeMaskedBits(LHS, NeededMask, KnownZero, KnownOne);
Chris Lattner6df34962006-10-11 03:58:02 +00004840
4841 // If all the missing bits in the or are already known to be set, match!
4842 if ((NeededMask & KnownOne) == NeededMask)
4843 return true;
4844
4845 // TODO: check to see if missing bits are just not demanded.
4846
4847 // Otherwise, this pattern doesn't match.
4848 return false;
4849}
4850
Jim Laskey03593f72006-08-01 18:29:48 +00004851
Chris Lattnerdcf785b2006-02-24 02:13:54 +00004852/// SelectInlineAsmMemoryOperands - Calls to this are automatically generated
4853/// by tblgen. Others should not call it.
4854void SelectionDAGISel::
4855SelectInlineAsmMemoryOperands(std::vector<SDOperand> &Ops, SelectionDAG &DAG) {
4856 std::vector<SDOperand> InOps;
4857 std::swap(InOps, Ops);
4858
4859 Ops.push_back(InOps[0]); // input chain.
4860 Ops.push_back(InOps[1]); // input asm string.
4861
Chris Lattnerdcf785b2006-02-24 02:13:54 +00004862 unsigned i = 2, e = InOps.size();
4863 if (InOps[e-1].getValueType() == MVT::Flag)
4864 --e; // Don't process a flag operand if it is here.
4865
4866 while (i != e) {
4867 unsigned Flags = cast<ConstantSDNode>(InOps[i])->getValue();
4868 if ((Flags & 7) != 4 /*MEM*/) {
4869 // Just skip over this operand, copying the operands verbatim.
4870 Ops.insert(Ops.end(), InOps.begin()+i, InOps.begin()+i+(Flags >> 3) + 1);
4871 i += (Flags >> 3) + 1;
4872 } else {
4873 assert((Flags >> 3) == 1 && "Memory operand with multiple values?");
4874 // Otherwise, this is a memory operand. Ask the target to select it.
4875 std::vector<SDOperand> SelOps;
4876 if (SelectInlineAsmMemoryOperand(InOps[i+1], 'm', SelOps, DAG)) {
Bill Wendling22e978a2006-12-07 20:04:42 +00004877 cerr << "Could not match memory address. Inline asm failure!\n";
Chris Lattnerdcf785b2006-02-24 02:13:54 +00004878 exit(1);
4879 }
4880
4881 // Add this to the output node.
Chris Lattnerb49917d2007-04-09 00:33:58 +00004882 MVT::ValueType IntPtrTy = DAG.getTargetLoweringInfo().getPointerTy();
Chris Lattner9bd5ed62006-12-16 21:14:48 +00004883 Ops.push_back(DAG.getTargetConstant(4/*MEM*/ | (SelOps.size() << 3),
Chris Lattnerb49917d2007-04-09 00:33:58 +00004884 IntPtrTy));
Chris Lattnerdcf785b2006-02-24 02:13:54 +00004885 Ops.insert(Ops.end(), SelOps.begin(), SelOps.end());
4886 i += 2;
4887 }
4888 }
4889
4890 // Add the flag input back if present.
4891 if (e != InOps.size())
4892 Ops.push_back(InOps.back());
4893}
Devang Patel09f162c2007-05-01 21:15:47 +00004894
Devang Patel8c78a0b2007-05-03 01:11:54 +00004895char SelectionDAGISel::ID = 0;