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Michael Gottesman3923bec2013-08-12 21:02:02 +00001//===-- SelectionDAGBuilder.h - Selection-DAG building --------*- C++ -*---===//
Dan Gohman575fad32008-09-03 16:12:24 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This implements routines for translating from LLVM IR into SelectionDAG IR.
11//
12//===----------------------------------------------------------------------===//
13
Benjamin Kramera7c40ef2014-08-13 16:26:38 +000014#ifndef LLVM_LIB_CODEGEN_SELECTIONDAG_SELECTIONDAGBUILDER_H
15#define LLVM_LIB_CODEGEN_SELECTIONDAG_SELECTIONDAGBUILDER_H
Dan Gohman575fad32008-09-03 16:12:24 +000016
Chandler Carruthd9903882015-01-14 11:23:27 +000017#include "StatepointLowering.h"
Dan Gohman575fad32008-09-03 16:12:24 +000018#include "llvm/ADT/APInt.h"
19#include "llvm/ADT/DenseMap.h"
Chandler Carruth7b560d42015-09-09 17:55:00 +000020#include "llvm/Analysis/AliasAnalysis.h"
Sanjoy Das3936a972015-05-05 23:06:54 +000021#include "llvm/CodeGen/Analysis.h"
Chandler Carruth802d7552012-12-04 07:12:27 +000022#include "llvm/CodeGen/SelectionDAG.h"
Dan Gohman575fad32008-09-03 16:12:24 +000023#include "llvm/CodeGen/SelectionDAGNodes.h"
Chandler Carruth219b89b2014-03-04 11:01:28 +000024#include "llvm/IR/CallSite.h"
Igor Laevsky7fc58a42015-02-20 15:28:35 +000025#include "llvm/IR/Statepoint.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000026#include "llvm/IR/Constants.h"
Torok Edwin56d06592009-07-11 20:10:48 +000027#include "llvm/Support/ErrorHandling.h"
Juergen Ributzkafd4633e2014-10-16 21:26:35 +000028#include "llvm/Target/TargetLowering.h"
Dan Gohman575fad32008-09-03 16:12:24 +000029#include <vector>
Dan Gohman575fad32008-09-03 16:12:24 +000030
31namespace llvm {
32
Matt Arsenaultb03bd4d2013-11-15 01:34:59 +000033class AddrSpaceCastInst;
Dan Gohman575fad32008-09-03 16:12:24 +000034class AllocaInst;
35class BasicBlock;
36class BitCastInst;
37class BranchInst;
38class CallInst;
Devang Patelb12ff592010-08-26 23:35:15 +000039class DbgValueInst;
Dan Gohman575fad32008-09-03 16:12:24 +000040class ExtractElementInst;
41class ExtractValueInst;
42class FCmpInst;
43class FPExtInst;
44class FPToSIInst;
45class FPToUIInst;
46class FPTruncInst;
Dan Gohman575fad32008-09-03 16:12:24 +000047class Function;
Dan Gohmana3624b62009-11-23 17:16:22 +000048class FunctionLoweringInfo;
Dan Gohman575fad32008-09-03 16:12:24 +000049class GetElementPtrInst;
50class GCFunctionInfo;
51class ICmpInst;
52class IntToPtrInst;
Chris Lattnerd04cb6d2009-10-28 00:19:10 +000053class IndirectBrInst;
Dan Gohman575fad32008-09-03 16:12:24 +000054class InvokeInst;
55class InsertElementInst;
56class InsertValueInst;
57class Instruction;
58class LoadInst;
59class MachineBasicBlock;
Dan Gohman575fad32008-09-03 16:12:24 +000060class MachineInstr;
Dan Gohman575fad32008-09-03 16:12:24 +000061class MachineRegisterInfo;
Evan Cheng6e822452010-04-28 23:08:54 +000062class MDNode;
Patrik Hagglund1da35122014-03-12 08:00:24 +000063class MVT;
Dan Gohman575fad32008-09-03 16:12:24 +000064class PHINode;
65class PtrToIntInst;
66class ReturnInst;
Dale Johannesenbfd4fd72010-07-16 00:02:08 +000067class SDDbgValue;
Dan Gohman575fad32008-09-03 16:12:24 +000068class SExtInst;
69class SelectInst;
70class ShuffleVectorInst;
71class SIToFPInst;
72class StoreInst;
73class SwitchInst;
Micah Villmowcdfe20b2012-10-08 16:38:25 +000074class DataLayout;
Owen Andersonbb15fec2011-12-08 22:15:21 +000075class TargetLibraryInfo;
Dan Gohman575fad32008-09-03 16:12:24 +000076class TargetLowering;
77class TruncInst;
78class UIToFPInst;
79class UnreachableInst;
Dan Gohman575fad32008-09-03 16:12:24 +000080class VAArgInst;
81class ZExtInst;
82
Dan Gohman575fad32008-09-03 16:12:24 +000083//===----------------------------------------------------------------------===//
Dan Gohman1a6c47f2009-11-23 18:04:58 +000084/// SelectionDAGBuilder - This is the common target-independent lowering
Dan Gohman575fad32008-09-03 16:12:24 +000085/// implementation that is parameterized by a TargetLowering object.
Dan Gohman575fad32008-09-03 16:12:24 +000086///
Benjamin Kramer079b96e2013-09-11 18:05:11 +000087class SelectionDAGBuilder {
Andrew Trick175143b2013-05-25 02:20:36 +000088 /// CurInst - The current instruction being visited
89 const Instruction *CurInst;
Dale Johannesendb7c5f62009-01-31 02:22:37 +000090
Dan Gohman575fad32008-09-03 16:12:24 +000091 DenseMap<const Value*, SDValue> NodeMap;
Andrew Trickd4d1d9c2013-10-31 17:18:07 +000092
Devang Patelb0c76392010-06-01 19:59:01 +000093 /// UnusedArgNodeMap - Maps argument value for unused arguments. This is used
94 /// to preserve debug information for incoming arguments.
95 DenseMap<const Value*, SDValue> UnusedArgNodeMap;
Dan Gohman575fad32008-09-03 16:12:24 +000096
Dale Johannesenbfd4fd72010-07-16 00:02:08 +000097 /// DanglingDebugInfo - Helper type for DanglingDebugInfoMap.
98 class DanglingDebugInfo {
Devang Patelb12ff592010-08-26 23:35:15 +000099 const DbgValueInst* DI;
Dale Johannesenbfd4fd72010-07-16 00:02:08 +0000100 DebugLoc dl;
101 unsigned SDNodeOrder;
102 public:
Craig Topperada08572014-04-16 04:21:27 +0000103 DanglingDebugInfo() : DI(nullptr), dl(DebugLoc()), SDNodeOrder(0) { }
Devang Patelb12ff592010-08-26 23:35:15 +0000104 DanglingDebugInfo(const DbgValueInst *di, DebugLoc DL, unsigned SDNO) :
Dale Johannesenbfd4fd72010-07-16 00:02:08 +0000105 DI(di), dl(DL), SDNodeOrder(SDNO) { }
Devang Patelb12ff592010-08-26 23:35:15 +0000106 const DbgValueInst* getDI() { return DI; }
Dale Johannesenbfd4fd72010-07-16 00:02:08 +0000107 DebugLoc getdl() { return dl; }
108 unsigned getSDNodeOrder() { return SDNodeOrder; }
109 };
110
111 /// DanglingDebugInfoMap - Keeps track of dbg_values for which we have not
112 /// yet seen the referent. We defer handling these until we do see it.
113 DenseMap<const Value*, DanglingDebugInfo> DanglingDebugInfoMap;
114
Chris Lattner1a32ede2009-12-24 00:37:38 +0000115public:
Dan Gohman575fad32008-09-03 16:12:24 +0000116 /// PendingLoads - Loads are not emitted to the program immediately. We bunch
117 /// them up and then emit token factor nodes when possible. This allows us to
118 /// get simple disambiguation between loads without worrying about alias
119 /// analysis.
120 SmallVector<SDValue, 8> PendingLoads;
Philip Reames1a1bdb22014-12-02 18:50:36 +0000121
122 /// State used while lowering a statepoint sequence (gc_statepoint,
123 /// gc_relocate, and gc_result). See StatepointLowering.hpp/cpp for details.
124 StatepointLoweringState StatepointLowering;
Chris Lattner1a32ede2009-12-24 00:37:38 +0000125private:
Dan Gohman575fad32008-09-03 16:12:24 +0000126
127 /// PendingExports - CopyToReg nodes that copy values to virtual registers
128 /// for export to other blocks need to be emitted before any terminator
129 /// instruction, but they have no other ordering requirements. We bunch them
130 /// up and the emit a single tokenfactor for them just before terminator
131 /// instructions.
132 SmallVector<SDValue, 8> PendingExports;
133
Bill Wendling022d18f2009-12-18 23:32:53 +0000134 /// SDNodeOrder - A unique monotonically increasing number used to order the
135 /// SDNodes we create.
136 unsigned SDNodeOrder;
137
Hans Wennborg0867b152015-04-23 16:45:24 +0000138 enum CaseClusterKind {
139 /// A cluster of adjacent case labels with the same destination, or just one
140 /// case.
141 CC_Range,
142 /// A cluster of cases suitable for jump table lowering.
143 CC_JumpTable,
144 /// A cluster of cases suitable for bit test lowering.
145 CC_BitTests
146 };
Dan Gohman575fad32008-09-03 16:12:24 +0000147
Hans Wennborg0867b152015-04-23 16:45:24 +0000148 /// A cluster of case labels.
149 struct CaseCluster {
150 CaseClusterKind Kind;
151 const ConstantInt *Low, *High;
152 union {
153 MachineBasicBlock *MBB;
154 unsigned JTCasesIndex;
155 unsigned BTCasesIndex;
156 };
Cong Hou1938f2e2015-11-24 08:51:23 +0000157 BranchProbability Prob;
Jakub Staszak0480a8f2011-07-29 22:25:21 +0000158
Hans Wennborg0867b152015-04-23 16:45:24 +0000159 static CaseCluster range(const ConstantInt *Low, const ConstantInt *High,
Cong Hou1938f2e2015-11-24 08:51:23 +0000160 MachineBasicBlock *MBB, BranchProbability Prob) {
Hans Wennborg0867b152015-04-23 16:45:24 +0000161 CaseCluster C;
162 C.Kind = CC_Range;
163 C.Low = Low;
164 C.High = High;
165 C.MBB = MBB;
Cong Hou1938f2e2015-11-24 08:51:23 +0000166 C.Prob = Prob;
Hans Wennborg0867b152015-04-23 16:45:24 +0000167 return C;
168 }
169
170 static CaseCluster jumpTable(const ConstantInt *Low,
171 const ConstantInt *High, unsigned JTCasesIndex,
Cong Hou1938f2e2015-11-24 08:51:23 +0000172 BranchProbability Prob) {
Hans Wennborg0867b152015-04-23 16:45:24 +0000173 CaseCluster C;
174 C.Kind = CC_JumpTable;
175 C.Low = Low;
176 C.High = High;
177 C.JTCasesIndex = JTCasesIndex;
Cong Hou1938f2e2015-11-24 08:51:23 +0000178 C.Prob = Prob;
Hans Wennborg0867b152015-04-23 16:45:24 +0000179 return C;
180 }
181
182 static CaseCluster bitTests(const ConstantInt *Low, const ConstantInt *High,
Cong Hou1938f2e2015-11-24 08:51:23 +0000183 unsigned BTCasesIndex, BranchProbability Prob) {
Hans Wennborg0867b152015-04-23 16:45:24 +0000184 CaseCluster C;
185 C.Kind = CC_BitTests;
186 C.Low = Low;
187 C.High = High;
188 C.BTCasesIndex = BTCasesIndex;
Cong Hou1938f2e2015-11-24 08:51:23 +0000189 C.Prob = Prob;
Hans Wennborg0867b152015-04-23 16:45:24 +0000190 return C;
Dan Gohman575fad32008-09-03 16:12:24 +0000191 }
192 };
193
Hans Wennborg0867b152015-04-23 16:45:24 +0000194 typedef std::vector<CaseCluster> CaseClusterVector;
195 typedef CaseClusterVector::iterator CaseClusterIt;
196
Dan Gohman575fad32008-09-03 16:12:24 +0000197 struct CaseBits {
198 uint64_t Mask;
199 MachineBasicBlock* BB;
200 unsigned Bits;
Cong Hou1938f2e2015-11-24 08:51:23 +0000201 BranchProbability ExtraProb;
Dan Gohman575fad32008-09-03 16:12:24 +0000202
Manman Rencf104462012-08-24 18:14:27 +0000203 CaseBits(uint64_t mask, MachineBasicBlock* bb, unsigned bits,
Cong Hou1938f2e2015-11-24 08:51:23 +0000204 BranchProbability Prob):
205 Mask(mask), BB(bb), Bits(bits), ExtraProb(Prob) { }
Hans Wennborg0867b152015-04-23 16:45:24 +0000206
Cong Hou1938f2e2015-11-24 08:51:23 +0000207 CaseBits() : Mask(0), BB(nullptr), Bits(0) {}
Dan Gohman575fad32008-09-03 16:12:24 +0000208 };
209
Hans Wennborg0867b152015-04-23 16:45:24 +0000210 typedef std::vector<CaseBits> CaseBitsVector;
Dan Gohman575fad32008-09-03 16:12:24 +0000211
Hans Wennborg0867b152015-04-23 16:45:24 +0000212 /// Sort Clusters and merge adjacent cases.
213 void sortAndRangeify(CaseClusterVector &Clusters);
Anton Korobeynikov6f219132008-12-23 22:25:27 +0000214
Dan Gohman1a6c47f2009-11-23 18:04:58 +0000215 /// CaseBlock - This structure is used to communicate between
216 /// SelectionDAGBuilder and SDISel for the code generation of additional basic
217 /// blocks needed by multi-case switch statements.
Dan Gohman575fad32008-09-03 16:12:24 +0000218 struct CaseBlock {
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000219 CaseBlock(ISD::CondCode cc, const Value *cmplhs, const Value *cmprhs,
Cong Hou1938f2e2015-11-24 08:51:23 +0000220 const Value *cmpmiddle, MachineBasicBlock *truebb,
221 MachineBasicBlock *falsebb, MachineBasicBlock *me,
222 BranchProbability trueprob = BranchProbability::getUnknown(),
223 BranchProbability falseprob = BranchProbability::getUnknown())
224 : CC(cc), CmpLHS(cmplhs), CmpMHS(cmpmiddle), CmpRHS(cmprhs),
225 TrueBB(truebb), FalseBB(falsebb), ThisBB(me), TrueProb(trueprob),
226 FalseProb(falseprob) {}
Jakub Staszak0480a8f2011-07-29 22:25:21 +0000227
Dan Gohman575fad32008-09-03 16:12:24 +0000228 // CC - the condition code to use for the case block's setcc node
229 ISD::CondCode CC;
Jakub Staszak0480a8f2011-07-29 22:25:21 +0000230
Dan Gohman575fad32008-09-03 16:12:24 +0000231 // CmpLHS/CmpRHS/CmpMHS - The LHS/MHS/RHS of the comparison to emit.
232 // Emit by default LHS op RHS. MHS is used for range comparisons:
233 // If MHS is not null: (LHS <= MHS) and (MHS <= RHS).
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000234 const Value *CmpLHS, *CmpMHS, *CmpRHS;
Jakub Staszak0480a8f2011-07-29 22:25:21 +0000235
Dan Gohman575fad32008-09-03 16:12:24 +0000236 // TrueBB/FalseBB - the block to branch to if the setcc is true/false.
237 MachineBasicBlock *TrueBB, *FalseBB;
Jakub Staszak0480a8f2011-07-29 22:25:21 +0000238
Dan Gohman575fad32008-09-03 16:12:24 +0000239 // ThisBB - the block into which to emit the code for the setcc and branches
240 MachineBasicBlock *ThisBB;
Jakub Staszak0480a8f2011-07-29 22:25:21 +0000241
Cong Hou1938f2e2015-11-24 08:51:23 +0000242 // TrueProb/FalseProb - branch weights.
243 BranchProbability TrueProb, FalseProb;
Dan Gohman575fad32008-09-03 16:12:24 +0000244 };
Jakub Staszak0480a8f2011-07-29 22:25:21 +0000245
Dan Gohman575fad32008-09-03 16:12:24 +0000246 struct JumpTable {
247 JumpTable(unsigned R, unsigned J, MachineBasicBlock *M,
248 MachineBasicBlock *D): Reg(R), JTI(J), MBB(M), Default(D) {}
Andrew Trickd4d1d9c2013-10-31 17:18:07 +0000249
Dan Gohman575fad32008-09-03 16:12:24 +0000250 /// Reg - the virtual register containing the index of the jump table entry
251 //. to jump to.
252 unsigned Reg;
253 /// JTI - the JumpTableIndex for this jump table in the function.
254 unsigned JTI;
255 /// MBB - the MBB into which to emit the code for the indirect jump.
256 MachineBasicBlock *MBB;
257 /// Default - the MBB of the default bb, which is a successor of the range
258 /// check MBB. This is when updating PHI nodes in successors.
259 MachineBasicBlock *Default;
260 };
261 struct JumpTableHeader {
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000262 JumpTableHeader(APInt F, APInt L, const Value *SV, MachineBasicBlock *H,
Dan Gohman575fad32008-09-03 16:12:24 +0000263 bool E = false):
264 First(F), Last(L), SValue(SV), HeaderBB(H), Emitted(E) {}
Anton Korobeynikov6f219132008-12-23 22:25:27 +0000265 APInt First;
266 APInt Last;
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000267 const Value *SValue;
Dan Gohman575fad32008-09-03 16:12:24 +0000268 MachineBasicBlock *HeaderBB;
269 bool Emitted;
270 };
271 typedef std::pair<JumpTableHeader, JumpTable> JumpTableBlock;
272
273 struct BitTestCase {
Manman Rencf104462012-08-24 18:14:27 +0000274 BitTestCase(uint64_t M, MachineBasicBlock* T, MachineBasicBlock* Tr,
Cong Hou1938f2e2015-11-24 08:51:23 +0000275 BranchProbability Prob):
276 Mask(M), ThisBB(T), TargetBB(Tr), ExtraProb(Prob) { }
Dan Gohman575fad32008-09-03 16:12:24 +0000277 uint64_t Mask;
Chris Lattner24576a52010-01-01 23:37:34 +0000278 MachineBasicBlock *ThisBB;
279 MachineBasicBlock *TargetBB;
Cong Hou1938f2e2015-11-24 08:51:23 +0000280 BranchProbability ExtraProb;
Dan Gohman575fad32008-09-03 16:12:24 +0000281 };
282
283 typedef SmallVector<BitTestCase, 3> BitTestInfo;
284
285 struct BitTestBlock {
Cong Hou03127702015-08-26 23:15:32 +0000286 BitTestBlock(APInt F, APInt R, const Value *SV, unsigned Rg, MVT RgVT,
287 bool E, bool CR, MachineBasicBlock *P, MachineBasicBlock *D,
Cong Hou1938f2e2015-11-24 08:51:23 +0000288 BitTestInfo C, BranchProbability Pr)
Cong Hou03127702015-08-26 23:15:32 +0000289 : First(F), Range(R), SValue(SV), Reg(Rg), RegVT(RgVT), Emitted(E),
290 ContiguousRange(CR), Parent(P), Default(D), Cases(std::move(C)),
Cong Hou1938f2e2015-11-24 08:51:23 +0000291 Prob(Pr) {}
Anton Korobeynikov6f219132008-12-23 22:25:27 +0000292 APInt First;
293 APInt Range;
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000294 const Value *SValue;
Dan Gohman575fad32008-09-03 16:12:24 +0000295 unsigned Reg;
Patrik Hagglund4e0f8282012-12-19 12:23:01 +0000296 MVT RegVT;
Dan Gohman575fad32008-09-03 16:12:24 +0000297 bool Emitted;
Cong Houcd595912015-08-25 21:34:38 +0000298 bool ContiguousRange;
Dan Gohman575fad32008-09-03 16:12:24 +0000299 MachineBasicBlock *Parent;
300 MachineBasicBlock *Default;
301 BitTestInfo Cases;
Cong Hou1938f2e2015-11-24 08:51:23 +0000302 BranchProbability Prob;
303 BranchProbability DefaultProb;
Dan Gohman575fad32008-09-03 16:12:24 +0000304 };
305
Hans Wennborg0867b152015-04-23 16:45:24 +0000306 /// Minimum jump table density, in percent.
307 enum { MinJumpTableDensity = 40 };
308
309 /// Check whether a range of clusters is dense enough for a jump table.
310 bool isDense(const CaseClusterVector &Clusters, unsigned *TotalCases,
311 unsigned First, unsigned Last);
312
313 /// Build a jump table cluster from Clusters[First..Last]. Returns false if it
314 /// decides it's not a good idea.
315 bool buildJumpTable(CaseClusterVector &Clusters, unsigned First,
316 unsigned Last, const SwitchInst *SI,
317 MachineBasicBlock *DefaultMBB, CaseCluster &JTCluster);
318
319 /// Find clusters of cases suitable for jump table lowering.
320 void findJumpTables(CaseClusterVector &Clusters, const SwitchInst *SI,
321 MachineBasicBlock *DefaultMBB);
322
323 /// Check whether the range [Low,High] fits in a machine word.
324 bool rangeFitsInWord(const APInt &Low, const APInt &High);
325
326 /// Check whether these clusters are suitable for lowering with bit tests based
327 /// on the number of destinations, comparison metric, and range.
328 bool isSuitableForBitTests(unsigned NumDests, unsigned NumCmps,
329 const APInt &Low, const APInt &High);
330
331 /// Build a bit test cluster from Clusters[First..Last]. Returns false if it
332 /// decides it's not a good idea.
333 bool buildBitTests(CaseClusterVector &Clusters, unsigned First, unsigned Last,
334 const SwitchInst *SI, CaseCluster &BTCluster);
335
336 /// Find clusters of cases suitable for bit test lowering.
337 void findBitTestClusters(CaseClusterVector &Clusters, const SwitchInst *SI);
338
339 struct SwitchWorkListItem {
340 MachineBasicBlock *MBB;
341 CaseClusterIt FirstCluster;
342 CaseClusterIt LastCluster;
343 const ConstantInt *GE;
344 const ConstantInt *LT;
Cong Hou1938f2e2015-11-24 08:51:23 +0000345 BranchProbability DefaultProb;
Hans Wennborg0867b152015-04-23 16:45:24 +0000346 };
347 typedef SmallVector<SwitchWorkListItem, 4> SwitchWorkList;
348
Hans Wennborg6ed81cb2015-06-20 17:14:07 +0000349 /// Determine the rank by weight of CC in [First,Last]. If CC has more weight
350 /// than each cluster in the range, its rank is 0.
351 static unsigned caseClusterRank(const CaseCluster &CC, CaseClusterIt First,
352 CaseClusterIt Last);
353
Hans Wennborg0867b152015-04-23 16:45:24 +0000354 /// Emit comparison and split W into two subtrees.
355 void splitWorkItem(SwitchWorkList &WorkList, const SwitchWorkListItem &W,
356 Value *Cond, MachineBasicBlock *SwitchMBB);
357
358 /// Lower W.
359 void lowerWorkItem(SwitchWorkListItem W, Value *Cond,
360 MachineBasicBlock *SwitchMBB,
361 MachineBasicBlock *DefaultMBB);
362
363
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000364 /// A class which encapsulates all of the information needed to generate a
365 /// stack protector check and signals to isel via its state being initialized
366 /// that a stack protector needs to be generated.
367 ///
368 /// *NOTE* The following is a high level documentation of SelectionDAG Stack
369 /// Protector Generation. The reason that it is placed here is for a lack of
370 /// other good places to stick it.
371 ///
372 /// High Level Overview of SelectionDAG Stack Protector Generation:
373 ///
374 /// Previously, generation of stack protectors was done exclusively in the
375 /// pre-SelectionDAG Codegen LLVM IR Pass "Stack Protector". This necessitated
376 /// splitting basic blocks at the IR level to create the success/failure basic
377 /// blocks in the tail of the basic block in question. As a result of this,
378 /// calls that would have qualified for the sibling call optimization were no
379 /// longer eligible for optimization since said calls were no longer right in
380 /// the "tail position" (i.e. the immediate predecessor of a ReturnInst
381 /// instruction).
382 ///
383 /// Then it was noticed that since the sibling call optimization causes the
384 /// callee to reuse the caller's stack, if we could delay the generation of
385 /// the stack protector check until later in CodeGen after the sibling call
386 /// decision was made, we get both the tail call optimization and the stack
387 /// protector check!
388 ///
389 /// A few goals in solving this problem were:
390 ///
391 /// 1. Preserve the architecture independence of stack protector generation.
392 ///
393 /// 2. Preserve the normal IR level stack protector check for platforms like
Alp Tokercf218752014-06-30 18:57:16 +0000394 /// OpenBSD for which we support platform-specific stack protector
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000395 /// generation.
396 ///
397 /// The main problem that guided the present solution is that one can not
398 /// solve this problem in an architecture independent manner at the IR level
399 /// only. This is because:
400 ///
401 /// 1. The decision on whether or not to perform a sibling call on certain
402 /// platforms (for instance i386) requires lower level information
403 /// related to available registers that can not be known at the IR level.
404 ///
405 /// 2. Even if the previous point were not true, the decision on whether to
406 /// perform a tail call is done in LowerCallTo in SelectionDAG which
407 /// occurs after the Stack Protector Pass. As a result, one would need to
408 /// put the relevant callinst into the stack protector check success
409 /// basic block (where the return inst is placed) and then move it back
410 /// later at SelectionDAG/MI time before the stack protector check if the
411 /// tail call optimization failed. The MI level option was nixed
Alp Tokercf218752014-06-30 18:57:16 +0000412 /// immediately since it would require platform-specific pattern
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000413 /// matching. The SelectionDAG level option was nixed because
414 /// SelectionDAG only processes one IR level basic block at a time
415 /// implying one could not create a DAG Combine to move the callinst.
416 ///
417 /// To get around this problem a few things were realized:
418 ///
419 /// 1. While one can not handle multiple IR level basic blocks at the
420 /// SelectionDAG Level, one can generate multiple machine basic blocks
421 /// for one IR level basic block. This is how we handle bit tests and
422 /// switches.
423 ///
424 /// 2. At the MI level, tail calls are represented via a special return
425 /// MIInst called "tcreturn". Thus if we know the basic block in which we
426 /// wish to insert the stack protector check, we get the correct behavior
427 /// by always inserting the stack protector check right before the return
428 /// statement. This is a "magical transformation" since no matter where
429 /// the stack protector check intrinsic is, we always insert the stack
430 /// protector check code at the end of the BB.
431 ///
432 /// Given the aforementioned constraints, the following solution was devised:
433 ///
434 /// 1. On platforms that do not support SelectionDAG stack protector check
435 /// generation, allow for the normal IR level stack protector check
436 /// generation to continue.
437 ///
438 /// 2. On platforms that do support SelectionDAG stack protector check
439 /// generation:
440 ///
441 /// a. Use the IR level stack protector pass to decide if a stack
442 /// protector is required/which BB we insert the stack protector check
443 /// in by reusing the logic already therein. If we wish to generate a
444 /// stack protector check in a basic block, we place a special IR
445 /// intrinsic called llvm.stackprotectorcheck right before the BB's
446 /// returninst or if there is a callinst that could potentially be
447 /// sibling call optimized, before the call inst.
448 ///
449 /// b. Then when a BB with said intrinsic is processed, we codegen the BB
450 /// normally via SelectBasicBlock. In said process, when we visit the
451 /// stack protector check, we do not actually emit anything into the
452 /// BB. Instead, we just initialize the stack protector descriptor
453 /// class (which involves stashing information/creating the success
454 /// mbbb and the failure mbb if we have not created one for this
455 /// function yet) and export the guard variable that we are going to
456 /// compare.
457 ///
458 /// c. After we finish selecting the basic block, in FinishBasicBlock if
459 /// the StackProtectorDescriptor attached to the SelectionDAGBuilder is
460 /// initialized, we first find a splice point in the parent basic block
461 /// before the terminator and then splice the terminator of said basic
462 /// block into the success basic block. Then we code-gen a new tail for
463 /// the parent basic block consisting of the two loads, the comparison,
464 /// and finally two branches to the success/failure basic blocks. We
465 /// conclude by code-gening the failure basic block if we have not
466 /// code-gened it already (all stack protector checks we generate in
467 /// the same function, use the same failure basic block).
468 class StackProtectorDescriptor {
469 public:
Craig Topperada08572014-04-16 04:21:27 +0000470 StackProtectorDescriptor() : ParentMBB(nullptr), SuccessMBB(nullptr),
Akira Hatanakae5b6e0d2014-07-25 19:31:34 +0000471 FailureMBB(nullptr), Guard(nullptr),
472 GuardReg(0) { }
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000473
474 /// Returns true if all fields of the stack protector descriptor are
475 /// initialized implying that we should/are ready to emit a stack protector.
476 bool shouldEmitStackProtector() const {
477 return ParentMBB && SuccessMBB && FailureMBB && Guard;
478 }
479
480 /// Initialize the stack protector descriptor structure for a new basic
481 /// block.
482 void initialize(const BasicBlock *BB,
483 MachineBasicBlock *MBB,
484 const CallInst &StackProtCheckCall) {
485 // Make sure we are not initialized yet.
486 assert(!shouldEmitStackProtector() && "Stack Protector Descriptor is "
487 "already initialized!");
488 ParentMBB = MBB;
Akira Hatanakab9991a22014-12-01 04:27:03 +0000489 SuccessMBB = AddSuccessorMBB(BB, MBB, /* IsLikely */ true);
490 FailureMBB = AddSuccessorMBB(BB, MBB, /* IsLikely */ false, FailureMBB);
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000491 if (!Guard)
492 Guard = StackProtCheckCall.getArgOperand(0);
493 }
494
495 /// Reset state that changes when we handle different basic blocks.
496 ///
497 /// This currently includes:
498 ///
499 /// 1. The specific basic block we are generating a
500 /// stack protector for (ParentMBB).
501 ///
502 /// 2. The successor machine basic block that will contain the tail of
503 /// parent mbb after we create the stack protector check (SuccessMBB). This
504 /// BB is visited only on stack protector check success.
505 void resetPerBBState() {
Craig Topperada08572014-04-16 04:21:27 +0000506 ParentMBB = nullptr;
507 SuccessMBB = nullptr;
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000508 }
509
510 /// Reset state that only changes when we switch functions.
511 ///
512 /// This currently includes:
513 ///
514 /// 1. FailureMBB since we reuse the failure code path for all stack
515 /// protector checks created in an individual function.
516 ///
517 /// 2.The guard variable since the guard variable we are checking against is
518 /// always the same.
519 void resetPerFunctionState() {
Craig Topperada08572014-04-16 04:21:27 +0000520 FailureMBB = nullptr;
521 Guard = nullptr;
Matthias Braun4e7ded82015-08-26 20:46:52 +0000522 GuardReg = 0;
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000523 }
524
525 MachineBasicBlock *getParentMBB() { return ParentMBB; }
526 MachineBasicBlock *getSuccessMBB() { return SuccessMBB; }
527 MachineBasicBlock *getFailureMBB() { return FailureMBB; }
528 const Value *getGuard() { return Guard; }
529
Akira Hatanakae5b6e0d2014-07-25 19:31:34 +0000530 unsigned getGuardReg() const { return GuardReg; }
531 void setGuardReg(unsigned R) { GuardReg = R; }
532
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000533 private:
534 /// The basic block for which we are generating the stack protector.
535 ///
536 /// As a result of stack protector generation, we will splice the
537 /// terminators of this basic block into the successor mbb SuccessMBB and
538 /// replace it with a compare/branch to the successor mbbs
539 /// SuccessMBB/FailureMBB depending on whether or not the stack protector
540 /// was violated.
541 MachineBasicBlock *ParentMBB;
542
543 /// A basic block visited on stack protector check success that contains the
544 /// terminators of ParentMBB.
545 MachineBasicBlock *SuccessMBB;
546
547 /// This basic block visited on stack protector check failure that will
548 /// contain a call to __stack_chk_fail().
549 MachineBasicBlock *FailureMBB;
550
551 /// The guard variable which we will compare against the stored value in the
552 /// stack protector stack slot.
553 const Value *Guard;
554
Akira Hatanakae5b6e0d2014-07-25 19:31:34 +0000555 /// The virtual register holding the stack guard value.
556 unsigned GuardReg;
557
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000558 /// Add a successor machine basic block to ParentMBB. If the successor mbb
559 /// has not been created yet (i.e. if SuccMBB = 0), then the machine basic
Akira Hatanakab9991a22014-12-01 04:27:03 +0000560 /// block will be created. Assign a large weight if IsLikely is true.
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000561 MachineBasicBlock *AddSuccessorMBB(const BasicBlock *BB,
562 MachineBasicBlock *ParentMBB,
Akira Hatanakab9991a22014-12-01 04:27:03 +0000563 bool IsLikely,
Craig Topperada08572014-04-16 04:21:27 +0000564 MachineBasicBlock *SuccMBB = nullptr);
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000565 };
566
Bill Wendlinga3cd3502013-06-19 21:36:55 +0000567private:
Dan Gohmanc3349602010-04-19 19:05:59 +0000568 const TargetMachine &TM;
Bill Wendlinga3cd3502013-06-19 21:36:55 +0000569public:
Nico Rieckb5262d62014-01-12 14:09:17 +0000570 /// Lowest valid SDNodeOrder. The special case 0 is reserved for scheduling
571 /// nodes without a corresponding SDNode.
572 static const unsigned LowestSDNodeOrder = 1;
573
Dan Gohman575fad32008-09-03 16:12:24 +0000574 SelectionDAG &DAG;
Rafael Espindola5f57f462014-02-21 18:34:28 +0000575 const DataLayout *DL;
Dan Gohman575fad32008-09-03 16:12:24 +0000576 AliasAnalysis *AA;
Owen Andersonbb15fec2011-12-08 22:15:21 +0000577 const TargetLibraryInfo *LibInfo;
Dan Gohman575fad32008-09-03 16:12:24 +0000578
579 /// SwitchCases - Vector of CaseBlock structures used to communicate
580 /// SwitchInst code generation information.
581 std::vector<CaseBlock> SwitchCases;
582 /// JTCases - Vector of JumpTable structures used to communicate
583 /// SwitchInst code generation information.
584 std::vector<JumpTableBlock> JTCases;
585 /// BitTestCases - Vector of BitTestBlock structures used to communicate
586 /// SwitchInst code generation information.
587 std::vector<BitTestBlock> BitTestCases;
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000588 /// A StackProtectorDescriptor structure used to communicate stack protector
589 /// information in between SelectBasicBlock and FinishBasicBlock.
590 StackProtectorDescriptor SPDescriptor;
Evan Cheng270d0f92009-09-18 21:02:19 +0000591
Dan Gohman575fad32008-09-03 16:12:24 +0000592 // Emit PHI-node-operand constants only once even if used by multiple
593 // PHI nodes.
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000594 DenseMap<const Constant *, unsigned> ConstantsOut;
Dan Gohman575fad32008-09-03 16:12:24 +0000595
596 /// FuncInfo - Information about the function as a whole.
597 ///
598 FunctionLoweringInfo &FuncInfo;
Bill Wendling19e0a5b2009-02-19 21:12:54 +0000599
Dan Gohman575fad32008-09-03 16:12:24 +0000600 /// GFI - Garbage collection metadata for the function.
601 GCFunctionInfo *GFI;
602
Bill Wendling267f3232011-10-05 22:24:35 +0000603 /// LPadToCallSiteMap - Map a landing pad to the call site indexes.
604 DenseMap<MachineBasicBlock*, SmallVector<unsigned, 4> > LPadToCallSiteMap;
Bill Wendling3d11aa72011-10-04 22:00:35 +0000605
Dan Gohmanf9bbcd12009-08-05 01:29:28 +0000606 /// HasTailCall - This is set to true if a call in the current
607 /// block has been translated as a tail call. In this case,
608 /// no subsequent DAG nodes should be created.
609 ///
610 bool HasTailCall;
611
Owen Anderson53a52212009-07-13 04:09:18 +0000612 LLVMContext *Context;
613
Dan Gohmanc3349602010-04-19 19:05:59 +0000614 SelectionDAGBuilder(SelectionDAG &dag, FunctionLoweringInfo &funcinfo,
Dan Gohman1a6c47f2009-11-23 18:04:58 +0000615 CodeGenOpt::Level ol)
Craig Topperada08572014-04-16 04:21:27 +0000616 : CurInst(nullptr), SDNodeOrder(LowestSDNodeOrder), TM(dag.getTarget()),
Benjamin Kramerbacc7ba2015-10-15 17:54:06 +0000617 DAG(dag), FuncInfo(funcinfo),
Richard Smith3fb20472012-08-22 00:42:39 +0000618 HasTailCall(false) {
Dan Gohman575fad32008-09-03 16:12:24 +0000619 }
620
Owen Andersonbb15fec2011-12-08 22:15:21 +0000621 void init(GCFunctionInfo *gfi, AliasAnalysis &aa,
622 const TargetLibraryInfo *li);
Dan Gohman575fad32008-09-03 16:12:24 +0000623
Dan Gohmanf5cca352010-04-14 18:24:06 +0000624 /// clear - Clear out the current SelectionDAG and the associated
Dan Gohman1a6c47f2009-11-23 18:04:58 +0000625 /// state and prepare this SelectionDAGBuilder object to be used
Dan Gohman575fad32008-09-03 16:12:24 +0000626 /// for a new block. This doesn't clear out information about
627 /// additional blocks that are needed to complete switch lowering
628 /// or PHI node updating; that information is cleared out as it is
629 /// consumed.
630 void clear();
631
Devang Patel799288382011-05-23 17:44:13 +0000632 /// clearDanglingDebugInfo - Clear the dangling debug information
Benjamin Kramerbde91762012-06-02 10:20:22 +0000633 /// map. This function is separated from the clear so that debug
Devang Patel799288382011-05-23 17:44:13 +0000634 /// information that is dangling in a basic block can be properly
635 /// resolved in a different basic block. This allows the
636 /// SelectionDAG to resolve dangling debug information attached
637 /// to PHI nodes.
638 void clearDanglingDebugInfo();
639
Dan Gohman575fad32008-09-03 16:12:24 +0000640 /// getRoot - Return the current virtual root of the Selection DAG,
641 /// flushing any PendingLoad items. This must be done before emitting
642 /// a store or any other node that may need to be ordered after any
643 /// prior load instructions.
644 ///
645 SDValue getRoot();
646
647 /// getControlRoot - Similar to getRoot, but instead of flushing all the
648 /// PendingLoad items, flush all the PendingExports items. It is necessary
649 /// to do this before emitting a terminator instruction.
650 ///
651 SDValue getControlRoot();
652
Andrew Trick175143b2013-05-25 02:20:36 +0000653 SDLoc getCurSDLoc() const {
Andrew Trick175143b2013-05-25 02:20:36 +0000654 return SDLoc(CurInst, SDNodeOrder);
655 }
656
657 DebugLoc getCurDebugLoc() const {
658 return CurInst ? CurInst->getDebugLoc() : DebugLoc();
659 }
Devang Patelf3292b22011-02-21 23:21:26 +0000660
Bill Wendling919b7aa2009-12-22 02:10:19 +0000661 unsigned getSDNodeOrder() const { return SDNodeOrder; }
662
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000663 void CopyValueToVirtualRegister(const Value *V, unsigned Reg);
Dan Gohman575fad32008-09-03 16:12:24 +0000664
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000665 void visit(const Instruction &I);
Dan Gohman575fad32008-09-03 16:12:24 +0000666
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000667 void visit(unsigned Opcode, const User &I);
Dan Gohman575fad32008-09-03 16:12:24 +0000668
Igor Laevsky85f7f722015-03-10 16:26:48 +0000669 /// getCopyFromRegs - If there was virtual register allocated for the value V
670 /// emit CopyFromReg of the specified type Ty. Return empty SDValue() otherwise.
671 SDValue getCopyFromRegs(const Value *V, Type *Ty);
672
Dale Johannesenbfd4fd72010-07-16 00:02:08 +0000673 // resolveDanglingDebugInfo - if we saw an earlier dbg_value referring to V,
674 // generate the debug data structures now that we've seen its definition.
675 void resolveDanglingDebugInfo(const Value *V, SDValue Val);
Dan Gohman575fad32008-09-03 16:12:24 +0000676 SDValue getValue(const Value *V);
Elena Demikhovsky584ce372015-04-28 07:57:37 +0000677 bool findValue(const Value *V) const;
678
Dan Gohmand4322232010-07-01 01:59:43 +0000679 SDValue getNonRegisterValue(const Value *V);
680 SDValue getValueImpl(const Value *V);
Dan Gohman575fad32008-09-03 16:12:24 +0000681
682 void setValue(const Value *V, SDValue NewN) {
683 SDValue &N = NodeMap[V];
Craig Topperada08572014-04-16 04:21:27 +0000684 assert(!N.getNode() && "Already set a value for this node!");
Dan Gohman575fad32008-09-03 16:12:24 +0000685 N = NewN;
686 }
Andrew Trickd4d1d9c2013-10-31 17:18:07 +0000687
Devang Patelb0c76392010-06-01 19:59:01 +0000688 void setUnusedArgValue(const Value *V, SDValue NewN) {
689 SDValue &N = UnusedArgNodeMap[V];
Craig Topperada08572014-04-16 04:21:27 +0000690 assert(!N.getNode() && "Already set a value for this node!");
Devang Patelb0c76392010-06-01 19:59:01 +0000691 N = NewN;
692 }
Dan Gohman575fad32008-09-03 16:12:24 +0000693
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000694 void FindMergedConditions(const Value *Cond, MachineBasicBlock *TBB,
Dan Gohman575fad32008-09-03 16:12:24 +0000695 MachineBasicBlock *FBB, MachineBasicBlock *CurBB,
Pete Cooper69234612015-07-15 01:31:26 +0000696 MachineBasicBlock *SwitchBB,
Cong Hou1938f2e2015-11-24 08:51:23 +0000697 Instruction::BinaryOps Opc, BranchProbability TW,
698 BranchProbability FW);
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000699 void EmitBranchForMergedCondition(const Value *Cond, MachineBasicBlock *TBB,
Dan Gohmand01ddb52008-10-17 21:16:08 +0000700 MachineBasicBlock *FBB,
Dan Gohman7c0303a2010-04-19 22:41:47 +0000701 MachineBasicBlock *CurBB,
Manman Ren4ece7452014-01-31 00:42:44 +0000702 MachineBasicBlock *SwitchBB,
Cong Hou1938f2e2015-11-24 08:51:23 +0000703 BranchProbability TW, BranchProbability FW);
Dan Gohman575fad32008-09-03 16:12:24 +0000704 bool ShouldEmitAsBranches(const std::vector<CaseBlock> &Cases);
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000705 bool isExportableFromCurrentBlock(const Value *V, const BasicBlock *FromBB);
706 void CopyToExportRegsIfNeeded(const Value *V);
707 void ExportFromCurrentBlock(const Value *V);
708 void LowerCallTo(ImmutableCallSite CS, SDValue Callee, bool IsTailCall,
Reid Kleckner51189f0a2015-09-08 23:28:38 +0000709 const BasicBlock *EHPadBB = nullptr);
Dan Gohman575fad32008-09-03 16:12:24 +0000710
Matt Arsenault2bba7792016-02-08 16:28:19 +0000711 // Lower range metadata from 0 to N to assert zext to an integer of nearest
712 // floor power of two.
713 SDValue lowerRangeToAssertZExt(SelectionDAG &DAG, const Instruction &I,
714 SDValue Op);
715
Sanjoy Das19c61592016-03-16 20:49:31 +0000716 void populateCallLoweringInfo(TargetLowering::CallLoweringInfo &CLI,
717 ImmutableCallSite CS, unsigned ArgIdx,
718 unsigned NumArgs, SDValue Callee,
719 Type *ReturnTy, bool IsPatchPoint);
720
721 std::pair<SDValue, SDValue>
722 lowerInvokable(TargetLowering::CallLoweringInfo &CLI,
723 const BasicBlock *EHPadBB = nullptr);
Andrew Trick74f4c742013-10-31 17:18:24 +0000724
Jakob Stoklund Olesen665aa6e2010-09-30 19:44:31 +0000725 /// UpdateSplitBlock - When an MBB was split during scheduling, update the
Alp Toker798060e2014-01-11 14:01:43 +0000726 /// references that need to refer to the last resulting block.
Jakob Stoklund Olesen665aa6e2010-09-30 19:44:31 +0000727 void UpdateSplitBlock(MachineBasicBlock *First, MachineBasicBlock *Last);
728
Sanjoy Das70697ff2016-03-16 23:08:00 +0000729 /// Describes a gc.statepoint or a gc.statepoint like thing for the purposes
730 /// of lowering into a STATEPOINT node. Right now it only abstracts an actual
731 /// gc.statepoint, but that will change in the future.
732 struct StatepointLoweringInfo {
733 /// Bases[i] is the base pointer for Ptrs[i]. Together they denote the set
734 /// of gc pointers this STATEPOINT has to relocate.
735 ArrayRef<const Value *> Bases;
736 ArrayRef<const Value *> Ptrs;
737
738 /// The set of gc.relocate calls associated with this gc.statepoint.
739 ArrayRef<const GCRelocateInst *> GCRelocates;
740
741 /// The full list of gc arguments to the gc.statepoint being lowered.
742 ArrayRef<const Use> GCArgs;
743
744 /// The gc.statepoint instruction.
745 const Instruction *StatepointInstr = nullptr;
746
747 /// The list of gc transition arguments present in the gc.statepoint being
748 /// lowered.
749 ArrayRef<const Use> GCTransitionArgs;
750
751 /// The ID that the resulting STATEPOINT instruction has to report.
752 unsigned ID = -1;
753
754 /// Information regarding the underlying call instruction.
755 TargetLowering::CallLoweringInfo CLI;
756
757 /// The deoptimization state associated with this gc.statepoint call, if
758 /// any.
759 ArrayRef<const Use> DeoptState;
760
761 /// Flags associated with the meta arguments being lowered.
762 uint64_t StatepointFlags = -1;
763
764 /// The number of patchable bytes the call needs to get lowered into.
765 unsigned NumPatchBytes = -1;
766
767 /// The exception handling unwind destination, in case this represents an
768 /// invoke of gc.statepoint.
769 const BasicBlock *EHPadBB = nullptr;
770
771 explicit StatepointLoweringInfo(SelectionDAG &DAG) : CLI(DAG) {}
772 };
773
774 /// Lower \p SLI into a STATEPOINT instruction.
775 SDValue LowerAsStatepoint(StatepointLoweringInfo &SLI);
776
Igor Laevsky7fc58a42015-02-20 15:28:35 +0000777 // This function is responsible for the whole statepoint lowering process.
Igor Laevsky85f7f722015-03-10 16:26:48 +0000778 // It uniformly handles invoke and call statepoints.
779 void LowerStatepoint(ImmutableStatepoint Statepoint,
Reid Kleckner51189f0a2015-09-08 23:28:38 +0000780 const BasicBlock *EHPadBB = nullptr);
Dan Gohman575fad32008-09-03 16:12:24 +0000781private:
782 // Terminator instructions.
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000783 void visitRet(const ReturnInst &I);
784 void visitBr(const BranchInst &I);
785 void visitSwitch(const SwitchInst &I);
786 void visitIndirectBr(const IndirectBrInst &I);
Yaron Kerend7ba46b2014-04-19 13:47:43 +0000787 void visitUnreachable(const UnreachableInst &I);
David Majnemer654e1302015-07-31 17:58:14 +0000788 void visitCleanupRet(const CleanupReturnInst &I);
David Majnemer8a1c45d2015-12-12 05:38:55 +0000789 void visitCatchSwitch(const CatchSwitchInst &I);
David Majnemer654e1302015-07-31 17:58:14 +0000790 void visitCatchRet(const CatchReturnInst &I);
791 void visitCatchPad(const CatchPadInst &I);
David Majnemer654e1302015-07-31 17:58:14 +0000792 void visitCleanupPad(const CleanupPadInst &CPI);
Dan Gohman575fad32008-09-03 16:12:24 +0000793
Cong Hou1938f2e2015-11-24 08:51:23 +0000794 BranchProbability getEdgeProbability(const MachineBasicBlock *Src,
795 const MachineBasicBlock *Dst) const;
796 void addSuccessorWithProb(
797 MachineBasicBlock *Src, MachineBasicBlock *Dst,
798 BranchProbability Prob = BranchProbability::getUnknown());
799
Dan Gohman575fad32008-09-03 16:12:24 +0000800public:
Dan Gohman7c0303a2010-04-19 22:41:47 +0000801 void visitSwitchCase(CaseBlock &CB,
802 MachineBasicBlock *SwitchBB);
Michael Gottesmanb27f0f12013-08-20 07:00:16 +0000803 void visitSPDescriptorParent(StackProtectorDescriptor &SPD,
804 MachineBasicBlock *ParentBB);
805 void visitSPDescriptorFailure(StackProtectorDescriptor &SPD);
Dan Gohman7c0303a2010-04-19 22:41:47 +0000806 void visitBitTestHeader(BitTestBlock &B, MachineBasicBlock *SwitchBB);
Evan Chengac730dd2011-01-06 01:02:44 +0000807 void visitBitTestCase(BitTestBlock &BB,
808 MachineBasicBlock* NextMBB,
Cong Hou1938f2e2015-11-24 08:51:23 +0000809 BranchProbability BranchProbToNext,
Dan Gohman575fad32008-09-03 16:12:24 +0000810 unsigned Reg,
Dan Gohman7c0303a2010-04-19 22:41:47 +0000811 BitTestCase &B,
812 MachineBasicBlock *SwitchBB);
Dan Gohman575fad32008-09-03 16:12:24 +0000813 void visitJumpTable(JumpTable &JT);
Dan Gohman7c0303a2010-04-19 22:41:47 +0000814 void visitJumpTableHeader(JumpTable &JT, JumpTableHeader &JTH,
815 MachineBasicBlock *SwitchBB);
Andrew Trickd4d1d9c2013-10-31 17:18:07 +0000816
Dan Gohman575fad32008-09-03 16:12:24 +0000817private:
818 // These all get lowered before this pass.
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000819 void visitInvoke(const InvokeInst &I);
Bill Wendlingf891bf82011-07-31 06:30:59 +0000820 void visitResume(const ResumeInst &I);
Dan Gohman575fad32008-09-03 16:12:24 +0000821
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000822 void visitBinary(const User &I, unsigned OpCode);
823 void visitShift(const User &I, unsigned Opcode);
824 void visitAdd(const User &I) { visitBinary(I, ISD::ADD); }
825 void visitFAdd(const User &I) { visitBinary(I, ISD::FADD); }
826 void visitSub(const User &I) { visitBinary(I, ISD::SUB); }
827 void visitFSub(const User &I);
828 void visitMul(const User &I) { visitBinary(I, ISD::MUL); }
829 void visitFMul(const User &I) { visitBinary(I, ISD::FMUL); }
830 void visitURem(const User &I) { visitBinary(I, ISD::UREM); }
831 void visitSRem(const User &I) { visitBinary(I, ISD::SREM); }
832 void visitFRem(const User &I) { visitBinary(I, ISD::FREM); }
833 void visitUDiv(const User &I) { visitBinary(I, ISD::UDIV); }
Benjamin Kramer9960a252011-07-08 10:31:30 +0000834 void visitSDiv(const User &I);
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000835 void visitFDiv(const User &I) { visitBinary(I, ISD::FDIV); }
836 void visitAnd (const User &I) { visitBinary(I, ISD::AND); }
837 void visitOr (const User &I) { visitBinary(I, ISD::OR); }
838 void visitXor (const User &I) { visitBinary(I, ISD::XOR); }
839 void visitShl (const User &I) { visitShift(I, ISD::SHL); }
840 void visitLShr(const User &I) { visitShift(I, ISD::SRL); }
841 void visitAShr(const User &I) { visitShift(I, ISD::SRA); }
842 void visitICmp(const User &I);
843 void visitFCmp(const User &I);
Dan Gohman575fad32008-09-03 16:12:24 +0000844 // Visit the conversion instructions
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000845 void visitTrunc(const User &I);
846 void visitZExt(const User &I);
847 void visitSExt(const User &I);
848 void visitFPTrunc(const User &I);
849 void visitFPExt(const User &I);
850 void visitFPToUI(const User &I);
851 void visitFPToSI(const User &I);
852 void visitUIToFP(const User &I);
853 void visitSIToFP(const User &I);
854 void visitPtrToInt(const User &I);
855 void visitIntToPtr(const User &I);
856 void visitBitCast(const User &I);
Matt Arsenaultb03bd4d2013-11-15 01:34:59 +0000857 void visitAddrSpaceCast(const User &I);
Dan Gohman575fad32008-09-03 16:12:24 +0000858
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000859 void visitExtractElement(const User &I);
860 void visitInsertElement(const User &I);
861 void visitShuffleVector(const User &I);
Dan Gohman575fad32008-09-03 16:12:24 +0000862
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000863 void visitExtractValue(const ExtractValueInst &I);
864 void visitInsertValue(const InsertValueInst &I);
Bill Wendlingfae14752011-08-12 20:24:12 +0000865 void visitLandingPad(const LandingPadInst &I);
Dan Gohman575fad32008-09-03 16:12:24 +0000866
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000867 void visitGetElementPtr(const User &I);
868 void visitSelect(const User &I);
Dan Gohman575fad32008-09-03 16:12:24 +0000869
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000870 void visitAlloca(const AllocaInst &I);
871 void visitLoad(const LoadInst &I);
872 void visitStore(const StoreInst &I);
Elena Demikhovskyf1de34b2014-12-04 09:40:44 +0000873 void visitMaskedLoad(const CallInst &I);
874 void visitMaskedStore(const CallInst &I);
Elena Demikhovsky584ce372015-04-28 07:57:37 +0000875 void visitMaskedGather(const CallInst &I);
876 void visitMaskedScatter(const CallInst &I);
Eli Friedmanc9a551e2011-07-28 21:48:00 +0000877 void visitAtomicCmpXchg(const AtomicCmpXchgInst &I);
878 void visitAtomicRMW(const AtomicRMWInst &I);
Eli Friedmanfee02c62011-07-25 23:16:38 +0000879 void visitFence(const FenceInst &I);
Dan Gohmanf41ad472010-04-20 15:00:41 +0000880 void visitPHI(const PHINode &I);
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000881 void visitCall(const CallInst &I);
882 bool visitMemCmpCall(const CallInst &I);
Richard Sandiford6f6d5512013-08-20 09:38:48 +0000883 bool visitMemChrCall(const CallInst &I);
Richard Sandifordbb83a502013-08-16 11:29:37 +0000884 bool visitStrCpyCall(const CallInst &I, bool isStpcpy);
Richard Sandifordca232712013-08-16 11:21:54 +0000885 bool visitStrCmpCall(const CallInst &I);
Richard Sandiford0dec06a2013-08-16 11:41:43 +0000886 bool visitStrLenCall(const CallInst &I);
887 bool visitStrNLenCall(const CallInst &I);
Bob Wilson874886c2012-08-03 23:29:17 +0000888 bool visitUnaryFloatCall(const CallInst &I, unsigned Opcode);
Matt Arsenault7c936902014-10-21 23:01:01 +0000889 bool visitBinaryFloatCall(const CallInst &I, unsigned Opcode);
Eli Friedman342e8df2011-08-24 20:50:09 +0000890 void visitAtomicLoad(const LoadInst &I);
891 void visitAtomicStore(const StoreInst &I);
892
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000893 void visitInlineAsm(ImmutableCallSite CS);
894 const char *visitIntrinsicCall(const CallInst &I, unsigned Intrinsic);
895 void visitTargetIntrinsic(const CallInst &I, unsigned Intrinsic);
Dan Gohman575fad32008-09-03 16:12:24 +0000896
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000897 void visitVAStart(const CallInst &I);
898 void visitVAArg(const VAArgInst &I);
899 void visitVAEnd(const CallInst &I);
900 void visitVACopy(const CallInst &I);
Andrew Trick74f4c742013-10-31 17:18:24 +0000901 void visitStackmap(const CallInst &I);
Juergen Ributzkaad2363f2014-10-17 17:39:00 +0000902 void visitPatchpoint(ImmutableCallSite CS,
Reid Kleckner51189f0a2015-09-08 23:28:38 +0000903 const BasicBlock *EHPadBB = nullptr);
Dan Gohman575fad32008-09-03 16:12:24 +0000904
Sanjoy Das3a020192016-03-17 00:47:14 +0000905 // These two are implemented in StatepointLowering.cpp
Manuel Jacob83eefa62016-01-05 04:03:00 +0000906 void visitGCRelocate(const GCRelocateInst &I);
Philip Reames1a1bdb22014-12-02 18:50:36 +0000907 void visitGCResult(const CallInst &I);
908
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000909 void visitUserOp1(const Instruction &I) {
Torok Edwinfbcc6632009-07-14 16:55:14 +0000910 llvm_unreachable("UserOp1 should not exist at instruction selection time!");
Dan Gohman575fad32008-09-03 16:12:24 +0000911 }
Dan Gohmanbcaf6812010-04-15 01:51:59 +0000912 void visitUserOp2(const Instruction &I) {
Torok Edwinfbcc6632009-07-14 16:55:14 +0000913 llvm_unreachable("UserOp2 should not exist at instruction selection time!");
Dan Gohman575fad32008-09-03 16:12:24 +0000914 }
Dan Gohman5b43aa02010-04-22 20:55:53 +0000915
Richard Sandiforde3827752013-08-16 10:55:47 +0000916 void processIntegerCallValue(const Instruction &I,
917 SDValue Value, bool IsSigned);
918
Dan Gohman5b43aa02010-04-22 20:55:53 +0000919 void HandlePHINodesInSuccessorBlocks(const BasicBlock *LLVMBB);
Evan Cheng6e822452010-04-28 23:08:54 +0000920
Devang Patel32a72ab2010-08-25 20:41:24 +0000921 /// EmitFuncArgumentDbgValue - If V is an function argument then create
Andrew Trickd4d1d9c2013-10-31 17:18:07 +0000922 /// corresponding DBG_VALUE machine instruction for it now. At the end of
Devang Patel32a72ab2010-08-25 20:41:24 +0000923 /// instruction selection, they will be inserted to the entry BB.
Duncan P. N. Exon Smitha9308c42015-04-29 16:38:44 +0000924 bool EmitFuncArgumentDbgValue(const Value *V, DILocalVariable *Variable,
925 DIExpression *Expr, DILocation *DL,
Duncan P. N. Exon Smith3bef6a32015-04-03 19:20:26 +0000926 int64_t Offset, bool IsIndirect,
927 const SDValue &N);
Hans Wennborgb4db1422015-03-19 20:41:48 +0000928
929 /// Return the next block after MBB, or nullptr if there is none.
930 MachineBasicBlock *NextBlock(MachineBasicBlock *MBB);
Krzysztof Parzyszeka46c36b2015-04-13 17:16:45 +0000931
932 /// Update the DAG and DAG builder with the relevant information after
933 /// a new root node has been created which could be a tail call.
934 void updateDAGForMaybeTailCall(SDValue MaybeTC);
Dan Gohman575fad32008-09-03 16:12:24 +0000935};
936
Sanjoy Das3936a972015-05-05 23:06:54 +0000937/// RegsForValue - This struct represents the registers (physical or virtual)
938/// that a particular set of values is assigned, and the type information about
939/// the value. The most common situation is to represent one value at a time,
940/// but struct or array values are handled element-wise as multiple values. The
941/// splitting of aggregates is performed recursively, so that we never have
942/// aggregate-typed registers. The values at this point do not necessarily have
943/// legal types, so each value may require one or more registers of some legal
944/// type.
945///
946struct RegsForValue {
947 /// ValueVTs - The value types of the values, which may not be legal, and
948 /// may need be promoted or synthesized from one or more registers.
949 ///
950 SmallVector<EVT, 4> ValueVTs;
951
952 /// RegVTs - The value types of the registers. This is the same size as
953 /// ValueVTs and it records, for each value, what the type of the assigned
954 /// register or registers are. (Individual values are never synthesized
955 /// from more than one type of register.)
956 ///
957 /// With virtual registers, the contents of RegVTs is redundant with TLI's
958 /// getRegisterType member function, however when with physical registers
959 /// it is necessary to have a separate record of the types.
960 ///
961 SmallVector<MVT, 4> RegVTs;
962
963 /// Regs - This list holds the registers assigned to the values.
964 /// Each legal or promoted value requires one register, and each
965 /// expanded value requires multiple registers.
966 ///
967 SmallVector<unsigned, 4> Regs;
968
969 RegsForValue();
970
971 RegsForValue(const SmallVector<unsigned, 4> &regs, MVT regvt, EVT valuevt);
972
Mehdi Amini56228da2015-07-09 01:57:34 +0000973 RegsForValue(LLVMContext &Context, const TargetLowering &TLI,
974 const DataLayout &DL, unsigned Reg, Type *Ty);
Sanjoy Das3936a972015-05-05 23:06:54 +0000975
976 /// append - Add the specified values to this one.
977 void append(const RegsForValue &RHS) {
978 ValueVTs.append(RHS.ValueVTs.begin(), RHS.ValueVTs.end());
979 RegVTs.append(RHS.RegVTs.begin(), RHS.RegVTs.end());
980 Regs.append(RHS.Regs.begin(), RHS.Regs.end());
981 }
982
983 /// getCopyFromRegs - Emit a series of CopyFromReg nodes that copies from
984 /// this value and returns the result as a ValueVTs value. This uses
985 /// Chain/Flag as the input and updates them for the output Chain/Flag.
986 /// If the Flag pointer is NULL, no flag is used.
987 SDValue getCopyFromRegs(SelectionDAG &DAG, FunctionLoweringInfo &FuncInfo,
988 SDLoc dl,
989 SDValue &Chain, SDValue *Flag,
990 const Value *V = nullptr) const;
991
Sanjoy Das1194d1e72015-05-05 23:06:57 +0000992 /// getCopyToRegs - Emit a series of CopyToReg nodes that copies the specified
993 /// value into the registers specified by this object. This uses Chain/Flag
994 /// as the input and updates them for the output Chain/Flag. If the Flag
995 /// pointer is nullptr, no flag is used. If V is not nullptr, then it is used
996 /// in printing better diagnostic messages on error.
Sanjoy Das3936a972015-05-05 23:06:54 +0000997 void
998 getCopyToRegs(SDValue Val, SelectionDAG &DAG, SDLoc dl, SDValue &Chain,
Sanjoy Das1194d1e72015-05-05 23:06:57 +0000999 SDValue *Flag, const Value *V = nullptr,
Sanjoy Das3936a972015-05-05 23:06:54 +00001000 ISD::NodeType PreferredExtendType = ISD::ANY_EXTEND) const;
1001
1002 /// AddInlineAsmOperands - Add this value to the specified inlineasm node
1003 /// operand list. This adds the code marker, matching input operand index
1004 /// (if applicable), and includes the number of values added into it.
1005 void AddInlineAsmOperands(unsigned Kind,
1006 bool HasMatching, unsigned MatchingIdx, SDLoc dl,
1007 SelectionDAG &DAG,
1008 std::vector<SDValue> &Ops) const;
1009};
1010
Dan Gohman575fad32008-09-03 16:12:24 +00001011} // end namespace llvm
1012
1013#endif