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Chris Lattner1c08c712005-01-07 07:47:53 +00001//===-- SelectionDAGISel.cpp - Implement the SelectionDAGISel class -------===//
Misha Brukmanedf128a2005-04-21 22:36:52 +00002//
Chris Lattner1c08c712005-01-07 07:47:53 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukmanedf128a2005-04-21 22:36:52 +00007//
Chris Lattner1c08c712005-01-07 07:47:53 +00008//===----------------------------------------------------------------------===//
9//
10// This implements the SelectionDAGISel class.
11//
12//===----------------------------------------------------------------------===//
13
14#define DEBUG_TYPE "isel"
Dan Gohman84fbac52009-02-06 17:22:58 +000015#include "ScheduleDAGSDNodes.h"
Dan Gohman2048b852009-11-23 18:04:58 +000016#include "SelectionDAGBuilder.h"
Dan Gohman4c3fd9f2010-07-07 16:01:37 +000017#include "llvm/CodeGen/FunctionLoweringInfo.h"
Dan Gohman84fbac52009-02-06 17:22:58 +000018#include "llvm/CodeGen/SelectionDAGISel.h"
Jim Laskeyc7c3f112006-10-16 20:52:31 +000019#include "llvm/Analysis/AliasAnalysis.h"
Devang Patel713f0432009-09-16 21:09:07 +000020#include "llvm/Analysis/DebugInfo.h"
Anton Korobeynikov5502bf62007-04-04 21:14:49 +000021#include "llvm/Constants.h"
Chris Lattner1c08c712005-01-07 07:47:53 +000022#include "llvm/Function.h"
Chris Lattnerce7518c2006-01-26 22:24:51 +000023#include "llvm/InlineAsm.h"
Chris Lattner1c08c712005-01-07 07:47:53 +000024#include "llvm/Instructions.h"
25#include "llvm/Intrinsics.h"
Jim Laskey43970fe2006-03-23 18:06:46 +000026#include "llvm/IntrinsicInst.h"
Chris Lattner75c478a2009-10-27 17:02:08 +000027#include "llvm/LLVMContext.h"
Bill Wendling9af7e9a2010-05-26 19:46:12 +000028#include "llvm/Module.h"
Dan Gohman78eca172008-08-19 22:33:34 +000029#include "llvm/CodeGen/FastISel.h"
Gordon Henriksen5a29c9e2008-08-17 12:56:54 +000030#include "llvm/CodeGen/GCStrategy.h"
Gordon Henriksen5eca0752008-08-17 18:44:35 +000031#include "llvm/CodeGen/GCMetadata.h"
Bill Wendlingb92187a2010-05-14 21:14:32 +000032#include "llvm/CodeGen/MachineFrameInfo.h"
Chris Lattner1c08c712005-01-07 07:47:53 +000033#include "llvm/CodeGen/MachineFunction.h"
Chris Lattner1c08c712005-01-07 07:47:53 +000034#include "llvm/CodeGen/MachineInstrBuilder.h"
Chris Lattner84bc5422007-12-31 04:13:23 +000035#include "llvm/CodeGen/MachineModuleInfo.h"
36#include "llvm/CodeGen/MachineRegisterInfo.h"
Dan Gohmanfc54c552009-01-15 22:18:12 +000037#include "llvm/CodeGen/ScheduleHazardRecognizer.h"
Jim Laskeyeb577ba2006-08-02 12:30:23 +000038#include "llvm/CodeGen/SchedulerRegistry.h"
Chris Lattner1c08c712005-01-07 07:47:53 +000039#include "llvm/CodeGen/SelectionDAG.h"
Dan Gohman6f0d0242008-02-10 18:45:23 +000040#include "llvm/Target/TargetRegisterInfo.h"
Dan Gohmane1f188f2009-10-29 22:30:23 +000041#include "llvm/Target/TargetIntrinsicInfo.h"
Chris Lattner1c08c712005-01-07 07:47:53 +000042#include "llvm/Target/TargetInstrInfo.h"
43#include "llvm/Target/TargetLowering.h"
44#include "llvm/Target/TargetMachine.h"
Vladimir Prus12472912006-05-23 13:43:15 +000045#include "llvm/Target/TargetOptions.h"
Chris Lattnera4f0b3a2006-08-27 12:54:02 +000046#include "llvm/Support/Compiler.h"
Evan Chengdb8d56b2008-06-30 20:45:06 +000047#include "llvm/Support/Debug.h"
Torok Edwin7d696d82009-07-11 13:10:19 +000048#include "llvm/Support/ErrorHandling.h"
Evan Chengdb8d56b2008-06-30 20:45:06 +000049#include "llvm/Support/Timer.h"
Daniel Dunbarce63ffb2009-07-25 00:23:56 +000050#include "llvm/Support/raw_ostream.h"
Chris Lattnerc19ae9d2010-03-04 19:46:56 +000051#include "llvm/ADT/Statistic.h"
Jeff Cohen7e881032006-02-24 02:52:40 +000052#include <algorithm>
Chris Lattner1c08c712005-01-07 07:47:53 +000053using namespace llvm;
54
Chris Lattnerc19ae9d2010-03-04 19:46:56 +000055STATISTIC(NumFastIselFailures, "Number of instructions fast isel failed on");
Chris Lattnerbed993d2010-03-28 19:46:56 +000056STATISTIC(NumDAGIselRetries,"Number of times dag isel has to try another path");
Chris Lattnerc19ae9d2010-03-04 19:46:56 +000057
Chris Lattneread0d882008-06-17 06:09:18 +000058static cl::opt<bool>
Dan Gohman293d5f82008-09-09 22:06:46 +000059EnableFastISelVerbose("fast-isel-verbose", cl::Hidden,
Dan Gohmand659d502008-10-20 21:30:12 +000060 cl::desc("Enable verbose messages in the \"fast\" "
Dan Gohman293d5f82008-09-09 22:06:46 +000061 "instruction selector"));
62static cl::opt<bool>
Dan Gohman4344a5d2008-09-09 23:05:00 +000063EnableFastISelAbort("fast-isel-abort", cl::Hidden,
64 cl::desc("Enable abort calls when \"fast\" instruction fails"));
Chris Lattneread0d882008-06-17 06:09:18 +000065
Chris Lattnerda8abb02005-09-01 18:44:10 +000066#ifndef NDEBUG
Chris Lattner7944d9d2005-01-12 03:41:21 +000067static cl::opt<bool>
Dan Gohman462dc7f2008-07-21 20:00:07 +000068ViewDAGCombine1("view-dag-combine1-dags", cl::Hidden,
69 cl::desc("Pop up a window to show dags before the first "
70 "dag combine pass"));
71static cl::opt<bool>
72ViewLegalizeTypesDAGs("view-legalize-types-dags", cl::Hidden,
73 cl::desc("Pop up a window to show dags before legalize types"));
74static cl::opt<bool>
75ViewLegalizeDAGs("view-legalize-dags", cl::Hidden,
76 cl::desc("Pop up a window to show dags before legalize"));
77static cl::opt<bool>
78ViewDAGCombine2("view-dag-combine2-dags", cl::Hidden,
79 cl::desc("Pop up a window to show dags before the second "
80 "dag combine pass"));
81static cl::opt<bool>
Duncan Sands25cf2272008-11-24 14:53:14 +000082ViewDAGCombineLT("view-dag-combine-lt-dags", cl::Hidden,
83 cl::desc("Pop up a window to show dags before the post legalize types"
84 " dag combine pass"));
85static cl::opt<bool>
Evan Chenga9c20912006-01-21 02:32:06 +000086ViewISelDAGs("view-isel-dags", cl::Hidden,
87 cl::desc("Pop up a window to show isel dags as they are selected"));
88static cl::opt<bool>
89ViewSchedDAGs("view-sched-dags", cl::Hidden,
90 cl::desc("Pop up a window to show sched dags as they are processed"));
Dan Gohman3e1a7ae2007-08-28 20:32:58 +000091static cl::opt<bool>
92ViewSUnitDAGs("view-sunit-dags", cl::Hidden,
Chris Lattner5bab7852008-01-25 17:24:52 +000093 cl::desc("Pop up a window to show SUnit dags after they are processed"));
Chris Lattner7944d9d2005-01-12 03:41:21 +000094#else
Dan Gohman462dc7f2008-07-21 20:00:07 +000095static const bool ViewDAGCombine1 = false,
96 ViewLegalizeTypesDAGs = false, ViewLegalizeDAGs = false,
97 ViewDAGCombine2 = false,
Duncan Sands25cf2272008-11-24 14:53:14 +000098 ViewDAGCombineLT = false,
Dan Gohman462dc7f2008-07-21 20:00:07 +000099 ViewISelDAGs = false, ViewSchedDAGs = false,
100 ViewSUnitDAGs = false;
Chris Lattner7944d9d2005-01-12 03:41:21 +0000101#endif
102
Jim Laskeyeb577ba2006-08-02 12:30:23 +0000103//===---------------------------------------------------------------------===//
104///
105/// RegisterScheduler class - Track the registration of instruction schedulers.
106///
107//===---------------------------------------------------------------------===//
108MachinePassRegistry RegisterScheduler::Registry;
109
110//===---------------------------------------------------------------------===//
111///
112/// ISHeuristic command line option for instruction schedulers.
113///
114//===---------------------------------------------------------------------===//
Dan Gohman844731a2008-05-13 00:00:25 +0000115static cl::opt<RegisterScheduler::FunctionPassCtor, false,
116 RegisterPassParser<RegisterScheduler> >
117ISHeuristic("pre-RA-sched",
118 cl::init(&createDefaultScheduler),
119 cl::desc("Instruction schedulers available (before register"
120 " allocation):"));
Jim Laskey13ec7022006-08-01 14:21:23 +0000121
Dan Gohman844731a2008-05-13 00:00:25 +0000122static RegisterScheduler
Dan Gohmanb8cab922008-10-14 20:25:08 +0000123defaultListDAGScheduler("default", "Best scheduler for the target",
Dan Gohman844731a2008-05-13 00:00:25 +0000124 createDefaultScheduler);
Evan Cheng4ef10862006-01-23 07:01:07 +0000125
Chris Lattner1c08c712005-01-07 07:47:53 +0000126namespace llvm {
127 //===--------------------------------------------------------------------===//
Jim Laskey9373beb2006-08-01 19:14:14 +0000128 /// createDefaultScheduler - This creates an instruction scheduler appropriate
129 /// for the target.
Dan Gohman47ac0f02009-02-11 04:27:20 +0000130 ScheduleDAGSDNodes* createDefaultScheduler(SelectionDAGISel *IS,
Bill Wendling98a366d2009-04-29 23:29:43 +0000131 CodeGenOpt::Level OptLevel) {
Dan Gohmane9530ec2009-01-15 16:58:17 +0000132 const TargetLowering &TLI = IS->getTargetLowering();
133
Bill Wendling98a366d2009-04-29 23:29:43 +0000134 if (OptLevel == CodeGenOpt::None)
Dan Gohmane667e012010-07-16 02:01:19 +0000135 return createSourceListDAGScheduler(IS, OptLevel);
Evan Cheng211ffa12010-05-19 20:19:50 +0000136 if (TLI.getSchedulingPreference() == Sched::Latency)
Bill Wendlingbe8cc2a2009-04-29 00:15:41 +0000137 return createTDListDAGScheduler(IS, OptLevel);
Evan Cheng15a16de2010-05-20 06:13:19 +0000138 if (TLI.getSchedulingPreference() == Sched::RegPressure)
139 return createBURRListDAGScheduler(IS, OptLevel);
Evan Cheng70017e42010-07-24 00:39:05 +0000140 if (TLI.getSchedulingPreference() == Sched::Hybrid)
141 return createHybridListDAGScheduler(IS, OptLevel);
142 assert(TLI.getSchedulingPreference() == Sched::ILP &&
Evan Cheng211ffa12010-05-19 20:19:50 +0000143 "Unknown sched type!");
Evan Cheng70017e42010-07-24 00:39:05 +0000144 return createILPListDAGScheduler(IS, OptLevel);
Jim Laskey9373beb2006-08-01 19:14:14 +0000145 }
Chris Lattner1c08c712005-01-07 07:47:53 +0000146}
147
Evan Chengff9b3732008-01-30 18:18:23 +0000148// EmitInstrWithCustomInserter - This method should be implemented by targets
Dan Gohman533297b2009-10-29 18:10:34 +0000149// that mark instructions with the 'usesCustomInserter' flag. These
Chris Lattner025c39b2005-08-26 20:54:47 +0000150// instructions are special in various ways, which require special support to
151// insert. The specified MachineInstr is created but not inserted into any
Dan Gohman533297b2009-10-29 18:10:34 +0000152// basic blocks, and this method is called to expand it into a sequence of
153// instructions, potentially also creating new basic blocks and control flow.
154// When new basic blocks are inserted and the edges from MBB to its successors
155// are modified, the method should insert pairs of <OldSucc, NewSucc> into the
156// DenseMap.
Dan Gohmanaf1d8ca2010-05-01 00:01:06 +0000157MachineBasicBlock *
158TargetLowering::EmitInstrWithCustomInserter(MachineInstr *MI,
159 MachineBasicBlock *MBB) const {
Torok Edwinf3689232009-07-12 20:07:01 +0000160#ifndef NDEBUG
David Greene1a053232010-01-05 01:26:11 +0000161 dbgs() << "If a target marks an instruction with "
Dan Gohman533297b2009-10-29 18:10:34 +0000162 "'usesCustomInserter', it must implement "
Torok Edwinf3689232009-07-12 20:07:01 +0000163 "TargetLowering::EmitInstrWithCustomInserter!";
164#endif
Torok Edwinc23197a2009-07-14 16:55:14 +0000165 llvm_unreachable(0);
Daniel Dunbara279bc32009-09-20 02:20:51 +0000166 return 0;
Chris Lattner025c39b2005-08-26 20:54:47 +0000167}
168
Chris Lattner7041ee32005-01-11 05:56:49 +0000169//===----------------------------------------------------------------------===//
170// SelectionDAGISel code
171//===----------------------------------------------------------------------===//
Chris Lattner1c08c712005-01-07 07:47:53 +0000172
Dan Gohmanf0757b02010-04-21 01:34:56 +0000173SelectionDAGISel::SelectionDAGISel(const TargetMachine &tm, CodeGenOpt::Level OL) :
Owen Anderson90c579d2010-08-06 18:33:48 +0000174 MachineFunctionPass(ID), TM(tm), TLI(*tm.getTargetLowering()),
Dan Gohman7c3234c2008-08-27 23:52:12 +0000175 FuncInfo(new FunctionLoweringInfo(TLI)),
Dan Gohman7451d3e2010-05-29 17:03:36 +0000176 CurDAG(new SelectionDAG(tm)),
Dan Gohman55e59c12010-04-19 19:05:59 +0000177 SDB(new SelectionDAGBuilder(*CurDAG, *FuncInfo, OL)),
Dan Gohman7c3234c2008-08-27 23:52:12 +0000178 GFI(),
Bill Wendlingbe8cc2a2009-04-29 00:15:41 +0000179 OptLevel(OL),
Owen Anderson081c34b2010-10-19 17:21:58 +0000180 DAGSize(0) {
181 initializeGCModuleInfoPass(*PassRegistry::getPassRegistry());
182 initializeAliasAnalysisAnalysisGroup(*PassRegistry::getPassRegistry());
183 }
Dan Gohman7c3234c2008-08-27 23:52:12 +0000184
185SelectionDAGISel::~SelectionDAGISel() {
Dan Gohman2048b852009-11-23 18:04:58 +0000186 delete SDB;
Dan Gohman7c3234c2008-08-27 23:52:12 +0000187 delete CurDAG;
188 delete FuncInfo;
189}
190
Chris Lattner495a0b52005-08-17 06:37:43 +0000191void SelectionDAGISel::getAnalysisUsage(AnalysisUsage &AU) const {
Jim Laskeyc7c3f112006-10-16 20:52:31 +0000192 AU.addRequired<AliasAnalysis>();
Dan Gohmana3477fe2009-07-31 23:36:22 +0000193 AU.addPreserved<AliasAnalysis>();
Gordon Henriksen5eca0752008-08-17 18:44:35 +0000194 AU.addRequired<GCModuleInfo>();
Dan Gohmana3477fe2009-07-31 23:36:22 +0000195 AU.addPreserved<GCModuleInfo>();
Dan Gohmanad2afc22009-07-31 18:16:33 +0000196 MachineFunctionPass::getAnalysisUsage(AU);
Chris Lattner495a0b52005-08-17 06:37:43 +0000197}
Chris Lattner1c08c712005-01-07 07:47:53 +0000198
Bill Wendling9af7e9a2010-05-26 19:46:12 +0000199/// FunctionCallsSetJmp - Return true if the function has a call to setjmp or
Bill Wendling8d717c72010-05-26 20:39:00 +0000200/// other function that gcc recognizes as "returning twice". This is used to
201/// limit code-gen optimizations on the machine function.
Bill Wendling804a2312010-05-26 21:53:50 +0000202///
203/// FIXME: Remove after <rdar://problem/8031714> is fixed.
Bill Wendling9af7e9a2010-05-26 19:46:12 +0000204static bool FunctionCallsSetJmp(const Function *F) {
205 const Module *M = F->getParent();
Bill Wendling8d717c72010-05-26 20:39:00 +0000206 static const char *ReturnsTwiceFns[] = {
207 "setjmp",
208 "sigsetjmp",
209 "setjmp_syscall",
210 "savectx",
211 "qsetjmp",
212 "vfork",
213 "getcontext"
214 };
215#define NUM_RETURNS_TWICE_FNS sizeof(ReturnsTwiceFns) / sizeof(const char *)
Bill Wendling9af7e9a2010-05-26 19:46:12 +0000216
Bill Wendling8d717c72010-05-26 20:39:00 +0000217 for (unsigned I = 0; I < NUM_RETURNS_TWICE_FNS; ++I)
218 if (const Function *Callee = M->getFunction(ReturnsTwiceFns[I])) {
219 if (!Callee->use_empty())
220 for (Value::const_use_iterator
221 I = Callee->use_begin(), E = Callee->use_end();
222 I != E; ++I)
Gabor Greif96f1d8e2010-07-22 13:36:47 +0000223 if (const CallInst *CI = dyn_cast<CallInst>(*I))
Bill Wendling8d717c72010-05-26 20:39:00 +0000224 if (CI->getParent()->getParent() == F)
225 return true;
226 }
Bill Wendling9af7e9a2010-05-26 19:46:12 +0000227
228 return false;
Bill Wendling8d717c72010-05-26 20:39:00 +0000229#undef NUM_RETURNS_TWICE_FNS
Bill Wendling9af7e9a2010-05-26 19:46:12 +0000230}
231
Dan Gohmanad2afc22009-07-31 18:16:33 +0000232bool SelectionDAGISel::runOnMachineFunction(MachineFunction &mf) {
Dan Gohman4344a5d2008-09-09 23:05:00 +0000233 // Do some sanity-checking on the command-line options.
234 assert((!EnableFastISelVerbose || EnableFastISel) &&
235 "-fast-isel-verbose requires -fast-isel");
236 assert((!EnableFastISelAbort || EnableFastISel) &&
237 "-fast-isel-abort requires -fast-isel");
238
Dan Gohmanae541aa2010-04-15 04:33:49 +0000239 const Function &Fn = *mf.getFunction();
Dan Gohman8a110532008-09-05 22:59:21 +0000240 const TargetInstrInfo &TII = *TM.getInstrInfo();
241 const TargetRegisterInfo &TRI = *TM.getRegisterInfo();
242
Dan Gohmanc0fb65d2010-04-14 17:02:07 +0000243 MF = &mf;
Dan Gohman79ce2762009-01-15 19:20:50 +0000244 RegInfo = &MF->getRegInfo();
Dan Gohmanc0fb65d2010-04-14 17:02:07 +0000245 AA = &getAnalysis<AliasAnalysis>();
246 GFI = Fn.hasGC() ? &getAnalysis<GCModuleInfo>().getFunctionInfo(Fn) : 0;
247
David Greene1a053232010-01-05 01:26:11 +0000248 DEBUG(dbgs() << "\n\n\n=== " << Fn.getName() << "\n");
Chris Lattner1c08c712005-01-07 07:47:53 +0000249
Chris Lattnerde6e7832010-04-05 06:10:13 +0000250 CurDAG->init(*MF);
Dan Gohman7451d3e2010-05-29 17:03:36 +0000251 FuncInfo->set(Fn, *MF);
Dan Gohman2048b852009-11-23 18:04:58 +0000252 SDB->init(GFI, *AA);
Chris Lattner1c08c712005-01-07 07:47:53 +0000253
Dan Gohman6a732b52010-04-14 20:05:00 +0000254 SelectAllBasicBlocks(Fn);
Misha Brukmanedf128a2005-04-21 22:36:52 +0000255
Dan Gohman1b79a2f2010-05-01 00:33:28 +0000256 // If the first basic block in the function has live ins that need to be
Dan Gohman8a110532008-09-05 22:59:21 +0000257 // copied into vregs, emit the copies into the top of the block before
258 // emitting the code for the block.
Evan Cheng2ad0fcf2010-04-28 23:08:54 +0000259 MachineBasicBlock *EntryMBB = MF->begin();
260 RegInfo->EmitLiveInCopies(EntryMBB, TRI, TII);
261
Devang Patel394427b2010-05-26 20:18:50 +0000262 DenseMap<unsigned, unsigned> LiveInMap;
263 if (!FuncInfo->ArgDbgValues.empty())
264 for (MachineRegisterInfo::livein_iterator LI = RegInfo->livein_begin(),
265 E = RegInfo->livein_end(); LI != E; ++LI)
266 if (LI->second)
267 LiveInMap.insert(std::make_pair(LI->first, LI->second));
268
Evan Cheng2ad0fcf2010-04-28 23:08:54 +0000269 // Insert DBG_VALUE instructions for function arguments to the entry block.
270 for (unsigned i = 0, e = FuncInfo->ArgDbgValues.size(); i != e; ++i) {
271 MachineInstr *MI = FuncInfo->ArgDbgValues[e-i-1];
272 unsigned Reg = MI->getOperand(0).getReg();
273 if (TargetRegisterInfo::isPhysicalRegister(Reg))
274 EntryMBB->insert(EntryMBB->begin(), MI);
275 else {
276 MachineInstr *Def = RegInfo->getVRegDef(Reg);
277 MachineBasicBlock::iterator InsertPos = Def;
Evan Chengf1ced252010-05-04 00:58:39 +0000278 // FIXME: VR def may not be in entry block.
279 Def->getParent()->insert(llvm::next(InsertPos), MI);
Evan Cheng2ad0fcf2010-04-28 23:08:54 +0000280 }
Devang Patel394427b2010-05-26 20:18:50 +0000281
282 // If Reg is live-in then update debug info to track its copy in a vreg.
283 DenseMap<unsigned, unsigned>::iterator LDI = LiveInMap.find(Reg);
284 if (LDI != LiveInMap.end()) {
285 MachineInstr *Def = RegInfo->getVRegDef(LDI->second);
286 MachineBasicBlock::iterator InsertPos = Def;
287 const MDNode *Variable =
288 MI->getOperand(MI->getNumOperands()-1).getMetadata();
289 unsigned Offset = MI->getOperand(1).getImm();
290 // Def is never a terminator here, so it is ok to increment InsertPos.
291 BuildMI(*EntryMBB, ++InsertPos, MI->getDebugLoc(),
292 TII.get(TargetOpcode::DBG_VALUE))
293 .addReg(LDI->second, RegState::Debug)
294 .addImm(Offset).addMetadata(Variable);
Devang Patel44cfe142010-09-21 20:56:33 +0000295
296 // If this vreg is directly copied into an exported register then
297 // that COPY instructions also need DBG_VALUE, if it is the only
298 // user of LDI->second.
299 MachineInstr *CopyUseMI = NULL;
300 for (MachineRegisterInfo::use_iterator
301 UI = RegInfo->use_begin(LDI->second);
302 MachineInstr *UseMI = UI.skipInstruction();) {
303 if (UseMI->isDebugValue()) continue;
304 if (UseMI->isCopy() && !CopyUseMI && UseMI->getParent() == EntryMBB) {
305 CopyUseMI = UseMI; continue;
306 }
307 // Otherwise this is another use or second copy use.
308 CopyUseMI = NULL; break;
309 }
310 if (CopyUseMI) {
311 MachineInstr *NewMI =
312 BuildMI(*MF, CopyUseMI->getDebugLoc(),
313 TII.get(TargetOpcode::DBG_VALUE))
314 .addReg(CopyUseMI->getOperand(0).getReg(), RegState::Debug)
315 .addImm(Offset).addMetadata(Variable);
316 EntryMBB->insertAfter(CopyUseMI, NewMI);
317 }
Devang Patel394427b2010-05-26 20:18:50 +0000318 }
Evan Cheng2ad0fcf2010-04-28 23:08:54 +0000319 }
320
Bill Wendling53f76022010-05-17 23:09:50 +0000321 // Determine if there are any calls in this machine function.
322 MachineFrameInfo *MFI = MF->getFrameInfo();
323 if (!MFI->hasCalls()) {
324 for (MachineFunction::const_iterator
325 I = MF->begin(), E = MF->end(); I != E; ++I) {
326 const MachineBasicBlock *MBB = I;
327 for (MachineBasicBlock::const_iterator
328 II = MBB->begin(), IE = MBB->end(); II != IE; ++II) {
329 const TargetInstrDesc &TID = TM.getInstrInfo()->get(II->getOpcode());
Bill Wendling8886c492010-07-09 19:44:12 +0000330
331 // Operand 1 of an inline asm instruction indicates whether the asm
332 // needs stack or not.
Bill Wendlingc930cbc2010-07-08 22:38:02 +0000333 if ((II->isInlineAsm() && II->getOperand(1).getImm()) ||
334 (TID.isCall() && !TID.isReturn())) {
Bill Wendling53f76022010-05-17 23:09:50 +0000335 MFI->setHasCalls(true);
336 goto done;
337 }
338 }
339 }
340 done:;
341 }
342
Bill Wendling9af7e9a2010-05-26 19:46:12 +0000343 // Determine if there is a call to setjmp in the machine function.
344 MF->setCallsSetJmp(FunctionCallsSetJmp(&Fn));
345
Dan Gohman84023e02010-07-10 09:00:22 +0000346 // Replace forward-declared registers with the registers containing
347 // the desired value.
348 MachineRegisterInfo &MRI = MF->getRegInfo();
349 for (DenseMap<unsigned, unsigned>::iterator
350 I = FuncInfo->RegFixups.begin(), E = FuncInfo->RegFixups.end();
351 I != E; ++I) {
352 unsigned From = I->first;
353 unsigned To = I->second;
354 // If To is also scheduled to be replaced, find what its ultimate
355 // replacement is.
356 for (;;) {
357 DenseMap<unsigned, unsigned>::iterator J =
358 FuncInfo->RegFixups.find(To);
359 if (J == E) break;
360 To = J->second;
361 }
362 // Replace it.
363 MRI.replaceRegWith(From, To);
364 }
365
Evan Cheng2ad0fcf2010-04-28 23:08:54 +0000366 // Release function-specific state. SDB and CurDAG are already cleared
367 // at this point.
368 FuncInfo->clear();
Dan Gohman8a110532008-09-05 22:59:21 +0000369
Chris Lattner1c08c712005-01-07 07:47:53 +0000370 return true;
371}
372
Dan Gohman84023e02010-07-10 09:00:22 +0000373void
374SelectionDAGISel::SelectBasicBlock(BasicBlock::const_iterator Begin,
Dan Gohmana9a33212010-04-20 00:29:35 +0000375 BasicBlock::const_iterator End,
376 bool &HadTailCall) {
Dan Gohman98ca4f22009-08-05 01:29:28 +0000377 // Lower all of the non-terminator instructions. If a call is emitted
Dan Gohmanf89d1dc2010-04-16 05:06:56 +0000378 // as a tail call, cease emitting nodes for this block. Terminators
379 // are handled below.
Dan Gohmanc105a2b2010-04-22 20:55:53 +0000380 for (BasicBlock::const_iterator I = Begin; I != End && !SDB->HasTailCall; ++I)
Dan Gohmanf89d1dc2010-04-16 05:06:56 +0000381 SDB->visit(*I);
Dan Gohmanf350b272008-08-23 02:25:05 +0000382
Chris Lattnera651cf62005-01-17 19:43:36 +0000383 // Make sure the root of the DAG is up-to-date.
Dan Gohman2048b852009-11-23 18:04:58 +0000384 CurDAG->setRoot(SDB->getControlRoot());
Dan Gohman2048b852009-11-23 18:04:58 +0000385 HadTailCall = SDB->HasTailCall;
386 SDB->clear();
Dan Gohman95140a42010-05-01 00:25:44 +0000387
388 // Final step, emit the lowered DAG as machine code.
Dan Gohman84023e02010-07-10 09:00:22 +0000389 CodeGenAndEmitDAG();
Chris Lattner1c08c712005-01-07 07:47:53 +0000390}
391
Dan Gohmanf350b272008-08-23 02:25:05 +0000392void SelectionDAGISel::ComputeLiveOutVRegInfo() {
Chris Lattneread0d882008-06-17 06:09:18 +0000393 SmallPtrSet<SDNode*, 128> VisitedNodes;
394 SmallVector<SDNode*, 128> Worklist;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000395
Gabor Greifba36cb52008-08-28 21:40:38 +0000396 Worklist.push_back(CurDAG->getRoot().getNode());
Daniel Dunbara279bc32009-09-20 02:20:51 +0000397
Chris Lattneread0d882008-06-17 06:09:18 +0000398 APInt Mask;
399 APInt KnownZero;
400 APInt KnownOne;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000401
Benjamin Kramer7b1e2a52010-01-07 17:27:56 +0000402 do {
403 SDNode *N = Worklist.pop_back_val();
Daniel Dunbara279bc32009-09-20 02:20:51 +0000404
Chris Lattneread0d882008-06-17 06:09:18 +0000405 // If we've already seen this node, ignore it.
406 if (!VisitedNodes.insert(N))
407 continue;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000408
Chris Lattneread0d882008-06-17 06:09:18 +0000409 // Otherwise, add all chain operands to the worklist.
410 for (unsigned i = 0, e = N->getNumOperands(); i != e; ++i)
Owen Anderson825b72b2009-08-11 20:47:22 +0000411 if (N->getOperand(i).getValueType() == MVT::Other)
Gabor Greifba36cb52008-08-28 21:40:38 +0000412 Worklist.push_back(N->getOperand(i).getNode());
Daniel Dunbara279bc32009-09-20 02:20:51 +0000413
Chris Lattneread0d882008-06-17 06:09:18 +0000414 // If this is a CopyToReg with a vreg dest, process it.
415 if (N->getOpcode() != ISD::CopyToReg)
416 continue;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000417
Chris Lattneread0d882008-06-17 06:09:18 +0000418 unsigned DestReg = cast<RegisterSDNode>(N->getOperand(1))->getReg();
419 if (!TargetRegisterInfo::isVirtualRegister(DestReg))
420 continue;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000421
Chris Lattneread0d882008-06-17 06:09:18 +0000422 // Ignore non-scalar or non-integer values.
Dan Gohman475871a2008-07-27 21:46:04 +0000423 SDValue Src = N->getOperand(2);
Owen Andersone50ed302009-08-10 22:56:29 +0000424 EVT SrcVT = Src.getValueType();
Chris Lattneread0d882008-06-17 06:09:18 +0000425 if (!SrcVT.isInteger() || SrcVT.isVector())
426 continue;
Daniel Dunbara279bc32009-09-20 02:20:51 +0000427
Dan Gohmanf350b272008-08-23 02:25:05 +0000428 unsigned NumSignBits = CurDAG->ComputeNumSignBits(Src);
Chris Lattneread0d882008-06-17 06:09:18 +0000429 Mask = APInt::getAllOnesValue(SrcVT.getSizeInBits());
Dan Gohmanf350b272008-08-23 02:25:05 +0000430 CurDAG->ComputeMaskedBits(Src, Mask, KnownZero, KnownOne);
Daniel Dunbara279bc32009-09-20 02:20:51 +0000431
Chris Lattneread0d882008-06-17 06:09:18 +0000432 // Only install this information if it tells us something.
433 if (NumSignBits != 1 || KnownZero != 0 || KnownOne != 0) {
434 DestReg -= TargetRegisterInfo::FirstVirtualRegister;
Dan Gohmanf7d6cd42009-08-01 03:51:09 +0000435 if (DestReg >= FuncInfo->LiveOutRegInfo.size())
436 FuncInfo->LiveOutRegInfo.resize(DestReg+1);
437 FunctionLoweringInfo::LiveOutInfo &LOI =
438 FuncInfo->LiveOutRegInfo[DestReg];
Chris Lattneread0d882008-06-17 06:09:18 +0000439 LOI.NumSignBits = NumSignBits;
Dan Gohmana80efce2009-03-27 23:55:04 +0000440 LOI.KnownOne = KnownOne;
441 LOI.KnownZero = KnownZero;
Chris Lattneread0d882008-06-17 06:09:18 +0000442 }
Benjamin Kramer7b1e2a52010-01-07 17:27:56 +0000443 } while (!Worklist.empty());
Chris Lattneread0d882008-06-17 06:09:18 +0000444}
445
Dan Gohman84023e02010-07-10 09:00:22 +0000446void SelectionDAGISel::CodeGenAndEmitDAG() {
Dan Gohman462dc7f2008-07-21 20:00:07 +0000447 std::string GroupName;
448 if (TimePassesIsEnabled)
449 GroupName = "Instruction Selection and Scheduling";
450 std::string BlockName;
451 if (ViewDAGCombine1 || ViewLegalizeTypesDAGs || ViewLegalizeDAGs ||
Duncan Sands25cf2272008-11-24 14:53:14 +0000452 ViewDAGCombine2 || ViewDAGCombineLT || ViewISelDAGs || ViewSchedDAGs ||
453 ViewSUnitDAGs)
Dan Gohmanf7d6cd42009-08-01 03:51:09 +0000454 BlockName = MF->getFunction()->getNameStr() + ":" +
Dan Gohman84023e02010-07-10 09:00:22 +0000455 FuncInfo->MBB->getBasicBlock()->getNameStr();
Dan Gohman462dc7f2008-07-21 20:00:07 +0000456
Dan Gohman927f8662010-06-18 16:00:29 +0000457 DEBUG(dbgs() << "Initial selection DAG:\n"; CurDAG->dump());
Dan Gohman462dc7f2008-07-21 20:00:07 +0000458
Dan Gohmanf350b272008-08-23 02:25:05 +0000459 if (ViewDAGCombine1) CurDAG->viewGraph("dag-combine1 input for " + BlockName);
Dan Gohman417e11b2007-10-08 15:12:17 +0000460
Chris Lattneraf21d552005-10-10 16:47:10 +0000461 // Run the DAG combiner in pre-legalize mode.
Dan Gohman03c3dc72010-06-18 15:56:31 +0000462 {
463 NamedRegionTimer T("DAG Combining 1", GroupName, TimePassesIsEnabled);
Bill Wendlingbe8cc2a2009-04-29 00:15:41 +0000464 CurDAG->Combine(Unrestricted, *AA, OptLevel);
Evan Chengebffb662008-07-01 17:59:20 +0000465 }
Daniel Dunbara279bc32009-09-20 02:20:51 +0000466
Dan Gohman927f8662010-06-18 16:00:29 +0000467 DEBUG(dbgs() << "Optimized lowered selection DAG:\n"; CurDAG->dump());
Daniel Dunbara279bc32009-09-20 02:20:51 +0000468
Chris Lattner1c08c712005-01-07 07:47:53 +0000469 // Second step, hack on the DAG until it only uses operations and types that
470 // the target supports.
Dan Gohman714efc62009-12-05 17:51:33 +0000471 if (ViewLegalizeTypesDAGs) CurDAG->viewGraph("legalize-types input for " +
472 BlockName);
Dan Gohman462dc7f2008-07-21 20:00:07 +0000473
Dan Gohman714efc62009-12-05 17:51:33 +0000474 bool Changed;
Dan Gohman03c3dc72010-06-18 15:56:31 +0000475 {
476 NamedRegionTimer T("Type Legalization", GroupName, TimePassesIsEnabled);
Dan Gohman714efc62009-12-05 17:51:33 +0000477 Changed = CurDAG->LegalizeTypes();
478 }
479
Dan Gohman927f8662010-06-18 16:00:29 +0000480 DEBUG(dbgs() << "Type-legalized selection DAG:\n"; CurDAG->dump());
Dan Gohman714efc62009-12-05 17:51:33 +0000481
482 if (Changed) {
483 if (ViewDAGCombineLT)
484 CurDAG->viewGraph("dag-combine-lt input for " + BlockName);
485
486 // Run the DAG combiner in post-type-legalize mode.
Dan Gohman03c3dc72010-06-18 15:56:31 +0000487 {
488 NamedRegionTimer T("DAG Combining after legalize types", GroupName,
489 TimePassesIsEnabled);
Dan Gohman714efc62009-12-05 17:51:33 +0000490 CurDAG->Combine(NoIllegalTypes, *AA, OptLevel);
Dan Gohman462dc7f2008-07-21 20:00:07 +0000491 }
492
Dan Gohman927f8662010-06-18 16:00:29 +0000493 DEBUG(dbgs() << "Optimized type-legalized selection DAG:\n";
494 CurDAG->dump());
Dan Gohman714efc62009-12-05 17:51:33 +0000495 }
Dan Gohman462dc7f2008-07-21 20:00:07 +0000496
Dan Gohman03c3dc72010-06-18 15:56:31 +0000497 {
498 NamedRegionTimer T("Vector Legalization", GroupName, TimePassesIsEnabled);
Dan Gohman714efc62009-12-05 17:51:33 +0000499 Changed = CurDAG->LegalizeVectors();
500 }
Duncan Sands25cf2272008-11-24 14:53:14 +0000501
Dan Gohman714efc62009-12-05 17:51:33 +0000502 if (Changed) {
Dan Gohman03c3dc72010-06-18 15:56:31 +0000503 {
504 NamedRegionTimer T("Type Legalization 2", GroupName, TimePassesIsEnabled);
Bill Wendling98820072009-12-28 01:51:30 +0000505 CurDAG->LegalizeTypes();
Eli Friedman5c22c802009-05-23 12:35:30 +0000506 }
507
Dan Gohman714efc62009-12-05 17:51:33 +0000508 if (ViewDAGCombineLT)
509 CurDAG->viewGraph("dag-combine-lv input for " + BlockName);
Eli Friedman5c22c802009-05-23 12:35:30 +0000510
Dan Gohman714efc62009-12-05 17:51:33 +0000511 // Run the DAG combiner in post-type-legalize mode.
Dan Gohman03c3dc72010-06-18 15:56:31 +0000512 {
513 NamedRegionTimer T("DAG Combining after legalize vectors", GroupName,
514 TimePassesIsEnabled);
Dan Gohman714efc62009-12-05 17:51:33 +0000515 CurDAG->Combine(NoIllegalOperations, *AA, OptLevel);
Eli Friedman5c22c802009-05-23 12:35:30 +0000516 }
Dan Gohman714efc62009-12-05 17:51:33 +0000517
Dan Gohman927f8662010-06-18 16:00:29 +0000518 DEBUG(dbgs() << "Optimized vector-legalized selection DAG:\n";
519 CurDAG->dump());
Chris Lattner70587ea2008-07-10 23:37:50 +0000520 }
Daniel Dunbara279bc32009-09-20 02:20:51 +0000521
Dan Gohmanf350b272008-08-23 02:25:05 +0000522 if (ViewLegalizeDAGs) CurDAG->viewGraph("legalize input for " + BlockName);
Dan Gohman462dc7f2008-07-21 20:00:07 +0000523
Dan Gohman03c3dc72010-06-18 15:56:31 +0000524 {
525 NamedRegionTimer T("DAG Legalization", GroupName, TimePassesIsEnabled);
Dan Gohman714efc62009-12-05 17:51:33 +0000526 CurDAG->Legalize(OptLevel);
Evan Chengebffb662008-07-01 17:59:20 +0000527 }
Daniel Dunbara279bc32009-09-20 02:20:51 +0000528
Dan Gohman927f8662010-06-18 16:00:29 +0000529 DEBUG(dbgs() << "Legalized selection DAG:\n"; CurDAG->dump());
Daniel Dunbara279bc32009-09-20 02:20:51 +0000530
Dan Gohmanf350b272008-08-23 02:25:05 +0000531 if (ViewDAGCombine2) CurDAG->viewGraph("dag-combine2 input for " + BlockName);
Dan Gohman462dc7f2008-07-21 20:00:07 +0000532
Chris Lattneraf21d552005-10-10 16:47:10 +0000533 // Run the DAG combiner in post-legalize mode.
Dan Gohman03c3dc72010-06-18 15:56:31 +0000534 {
535 NamedRegionTimer T("DAG Combining 2", GroupName, TimePassesIsEnabled);
Bill Wendlingbe8cc2a2009-04-29 00:15:41 +0000536 CurDAG->Combine(NoIllegalOperations, *AA, OptLevel);
Evan Chengebffb662008-07-01 17:59:20 +0000537 }
Daniel Dunbara279bc32009-09-20 02:20:51 +0000538
Dan Gohman927f8662010-06-18 16:00:29 +0000539 DEBUG(dbgs() << "Optimized legalized selection DAG:\n"; CurDAG->dump());
Dan Gohman417e11b2007-10-08 15:12:17 +0000540
Dan Gohman4e39e9d2010-06-24 14:30:44 +0000541 if (OptLevel != CodeGenOpt::None)
Dan Gohmanf350b272008-08-23 02:25:05 +0000542 ComputeLiveOutVRegInfo();
Evan Cheng552c4a82006-04-28 02:09:19 +0000543
Chris Lattner552186d2010-03-14 19:27:55 +0000544 if (ViewISelDAGs) CurDAG->viewGraph("isel input for " + BlockName);
545
Chris Lattnera33ef482005-03-30 01:10:47 +0000546 // Third, instruction select all of the operations to machine code, adding the
547 // code to the MachineBasicBlock.
Dan Gohman03c3dc72010-06-18 15:56:31 +0000548 {
549 NamedRegionTimer T("Instruction Selection", GroupName, TimePassesIsEnabled);
Chris Lattner7c306da2010-03-02 06:34:30 +0000550 DoInstructionSelection();
Evan Chengebffb662008-07-01 17:59:20 +0000551 }
Evan Chengdb8d56b2008-06-30 20:45:06 +0000552
Dan Gohman927f8662010-06-18 16:00:29 +0000553 DEBUG(dbgs() << "Selected selection DAG:\n"; CurDAG->dump());
Dan Gohman462dc7f2008-07-21 20:00:07 +0000554
Dan Gohmanf350b272008-08-23 02:25:05 +0000555 if (ViewSchedDAGs) CurDAG->viewGraph("scheduler input for " + BlockName);
Dan Gohman462dc7f2008-07-21 20:00:07 +0000556
Dan Gohman5e843682008-07-14 18:19:29 +0000557 // Schedule machine code.
Dan Gohman47ac0f02009-02-11 04:27:20 +0000558 ScheduleDAGSDNodes *Scheduler = CreateScheduler();
Dan Gohman03c3dc72010-06-18 15:56:31 +0000559 {
560 NamedRegionTimer T("Instruction Scheduling", GroupName,
561 TimePassesIsEnabled);
Dan Gohman84023e02010-07-10 09:00:22 +0000562 Scheduler->Run(CurDAG, FuncInfo->MBB, FuncInfo->InsertPt);
Dan Gohman5e843682008-07-14 18:19:29 +0000563 }
564
Dan Gohman462dc7f2008-07-21 20:00:07 +0000565 if (ViewSUnitDAGs) Scheduler->viewGraph();
566
Daniel Dunbara279bc32009-09-20 02:20:51 +0000567 // Emit machine code to BB. This can change 'BB' to the last block being
Evan Chengdb8d56b2008-06-30 20:45:06 +0000568 // inserted into.
Jakob Stoklund Olesen2622f462010-09-30 19:44:31 +0000569 MachineBasicBlock *FirstMBB = FuncInfo->MBB, *LastMBB;
Dan Gohman03c3dc72010-06-18 15:56:31 +0000570 {
571 NamedRegionTimer T("Instruction Creation", GroupName, TimePassesIsEnabled);
Dan Gohman84023e02010-07-10 09:00:22 +0000572
Jakob Stoklund Olesen2622f462010-09-30 19:44:31 +0000573 LastMBB = FuncInfo->MBB = Scheduler->EmitSchedule();
Dan Gohman84023e02010-07-10 09:00:22 +0000574 FuncInfo->InsertPt = Scheduler->InsertPos;
Dan Gohman5e843682008-07-14 18:19:29 +0000575 }
576
Jakob Stoklund Olesen2622f462010-09-30 19:44:31 +0000577 // If the block was split, make sure we update any references that are used to
578 // update PHI nodes later on.
579 if (FirstMBB != LastMBB)
580 SDB->UpdateSplitBlock(FirstMBB, LastMBB);
581
Dan Gohman5e843682008-07-14 18:19:29 +0000582 // Free the scheduler state.
Dan Gohman03c3dc72010-06-18 15:56:31 +0000583 {
584 NamedRegionTimer T("Instruction Scheduling Cleanup", GroupName,
585 TimePassesIsEnabled);
Dan Gohman5e843682008-07-14 18:19:29 +0000586 delete Scheduler;
Evan Chengebffb662008-07-01 17:59:20 +0000587 }
Evan Chengdb8d56b2008-06-30 20:45:06 +0000588
Dan Gohman95140a42010-05-01 00:25:44 +0000589 // Free the SelectionDAG state, now that we're finished with it.
590 CurDAG->clear();
Daniel Dunbara279bc32009-09-20 02:20:51 +0000591}
Chris Lattner1c08c712005-01-07 07:47:53 +0000592
Chris Lattner7c306da2010-03-02 06:34:30 +0000593void SelectionDAGISel::DoInstructionSelection() {
594 DEBUG(errs() << "===== Instruction selection begins:\n");
595
596 PreprocessISelDAG();
597
598 // Select target instructions for the DAG.
599 {
600 // Number all nodes with a topological order and set DAGSize.
601 DAGSize = CurDAG->AssignTopologicalOrder();
602
603 // Create a dummy node (which is not added to allnodes), that adds
604 // a reference to the root node, preventing it from being deleted,
605 // and tracking any changes of the root.
606 HandleSDNode Dummy(CurDAG->getRoot());
607 ISelPosition = SelectionDAG::allnodes_iterator(CurDAG->getRoot().getNode());
608 ++ISelPosition;
609
610 // The AllNodes list is now topological-sorted. Visit the
611 // nodes by starting at the end of the list (the root of the
612 // graph) and preceding back toward the beginning (the entry
613 // node).
614 while (ISelPosition != CurDAG->allnodes_begin()) {
615 SDNode *Node = --ISelPosition;
616 // Skip dead nodes. DAGCombiner is expected to eliminate all dead nodes,
617 // but there are currently some corner cases that it misses. Also, this
618 // makes it theoretically possible to disable the DAGCombiner.
619 if (Node->use_empty())
620 continue;
621
622 SDNode *ResNode = Select(Node);
623
Chris Lattner82dd3d32010-03-02 07:50:03 +0000624 // FIXME: This is pretty gross. 'Select' should be changed to not return
625 // anything at all and this code should be nuked with a tactical strike.
626
Chris Lattner7c306da2010-03-02 06:34:30 +0000627 // If node should not be replaced, continue with the next one.
Chris Lattner82dd3d32010-03-02 07:50:03 +0000628 if (ResNode == Node || Node->getOpcode() == ISD::DELETED_NODE)
Chris Lattner7c306da2010-03-02 06:34:30 +0000629 continue;
630 // Replace node.
631 if (ResNode)
632 ReplaceUses(Node, ResNode);
633
634 // If after the replacement this node is not used any more,
635 // remove this dead node.
636 if (Node->use_empty()) { // Don't delete EntryToken, etc.
637 ISelUpdater ISU(ISelPosition);
638 CurDAG->RemoveDeadNode(Node, &ISU);
639 }
640 }
641
642 CurDAG->setRoot(Dummy.getValue());
643 }
Bill Wendling53f76022010-05-17 23:09:50 +0000644
Chris Lattner7c306da2010-03-02 06:34:30 +0000645 DEBUG(errs() << "===== Instruction selection ends:\n");
646
647 PostprocessISelDAG();
Chris Lattner7c306da2010-03-02 06:34:30 +0000648}
649
Dan Gohman25208642010-04-14 19:53:31 +0000650/// PrepareEHLandingPad - Emit an EH_LABEL, set up live-in registers, and
651/// do other setup for EH landing-pad blocks.
Dan Gohman84023e02010-07-10 09:00:22 +0000652void SelectionDAGISel::PrepareEHLandingPad() {
Dan Gohman25208642010-04-14 19:53:31 +0000653 // Add a label to mark the beginning of the landing pad. Deletion of the
654 // landing pad can thus be detected via the MachineModuleInfo.
Dan Gohman84023e02010-07-10 09:00:22 +0000655 MCSymbol *Label = MF->getMMI().addLandingPad(FuncInfo->MBB);
Dan Gohman25208642010-04-14 19:53:31 +0000656
Dan Gohman55e59c12010-04-19 19:05:59 +0000657 const TargetInstrDesc &II = TM.getInstrInfo()->get(TargetOpcode::EH_LABEL);
Dan Gohman84023e02010-07-10 09:00:22 +0000658 BuildMI(*FuncInfo->MBB, FuncInfo->InsertPt, SDB->getCurDebugLoc(), II)
659 .addSym(Label);
Dan Gohman25208642010-04-14 19:53:31 +0000660
661 // Mark exception register as live in.
662 unsigned Reg = TLI.getExceptionAddressRegister();
Dan Gohman84023e02010-07-10 09:00:22 +0000663 if (Reg) FuncInfo->MBB->addLiveIn(Reg);
Dan Gohman25208642010-04-14 19:53:31 +0000664
665 // Mark exception selector register as live in.
666 Reg = TLI.getExceptionSelectorRegister();
Dan Gohman84023e02010-07-10 09:00:22 +0000667 if (Reg) FuncInfo->MBB->addLiveIn(Reg);
Dan Gohman25208642010-04-14 19:53:31 +0000668
669 // FIXME: Hack around an exception handling flaw (PR1508): the personality
670 // function and list of typeids logically belong to the invoke (or, if you
671 // like, the basic block containing the invoke), and need to be associated
672 // with it in the dwarf exception handling tables. Currently however the
673 // information is provided by an intrinsic (eh.selector) that can be moved
674 // to unexpected places by the optimizers: if the unwind edge is critical,
675 // then breaking it can result in the intrinsics being in the successor of
676 // the landing pad, not the landing pad itself. This results
677 // in exceptions not being caught because no typeids are associated with
678 // the invoke. This may not be the only way things can go wrong, but it
679 // is the only way we try to work around for the moment.
Dan Gohman84023e02010-07-10 09:00:22 +0000680 const BasicBlock *LLVMBB = FuncInfo->MBB->getBasicBlock();
Dan Gohman25208642010-04-14 19:53:31 +0000681 const BranchInst *Br = dyn_cast<BranchInst>(LLVMBB->getTerminator());
682
683 if (Br && Br->isUnconditional()) { // Critical edge?
684 BasicBlock::const_iterator I, E;
685 for (I = LLVMBB->begin(), E = --LLVMBB->end(); I != E; ++I)
686 if (isa<EHSelectorInst>(I))
687 break;
688
689 if (I == E)
690 // No catch info found - try to extract some from the successor.
691 CopyCatchInfo(Br->getSuccessor(0), LLVMBB, &MF->getMMI(), *FuncInfo);
692 }
693}
Chris Lattner7c306da2010-03-02 06:34:30 +0000694
Chris Lattnerbeac75d2010-09-05 02:18:34 +0000695
696
697
698bool SelectionDAGISel::TryToFoldFastISelLoad(const LoadInst *LI,
699 FastISel *FastIS) {
700 // Don't try to fold volatile loads. Target has to deal with alignment
701 // constraints.
702 if (LI->isVolatile()) return false;
703
704 // Figure out which vreg this is going into.
705 unsigned LoadReg = FastIS->getRegForValue(LI);
706 assert(LoadReg && "Load isn't already assigned a vreg? ");
707
708 // Check to see what the uses of this vreg are. If it has no uses, or more
709 // than one use (at the machine instr level) then we can't fold it.
710 MachineRegisterInfo::reg_iterator RI = RegInfo->reg_begin(LoadReg);
711 if (RI == RegInfo->reg_end())
712 return false;
713
714 // See if there is exactly one use of the vreg. If there are multiple uses,
715 // then the instruction got lowered to multiple machine instructions or the
716 // use of the loaded value ended up being multiple operands of the result, in
717 // either case, we can't fold this.
718 MachineRegisterInfo::reg_iterator PostRI = RI; ++PostRI;
719 if (PostRI != RegInfo->reg_end())
720 return false;
721
722 assert(RI.getOperand().isUse() &&
723 "The only use of the vreg must be a use, we haven't emitted the def!");
724
725 // Ask the target to try folding the load.
726 return FastIS->TryToFoldLoad(&*RI, RI.getOperandNo(), LI);
727}
728
729
730
731
Dan Gohman46510a72010-04-15 01:51:59 +0000732void SelectionDAGISel::SelectAllBasicBlocks(const Function &Fn) {
Dan Gohmana43abd12008-09-29 21:55:50 +0000733 // Initialize the Fast-ISel state, if needed.
734 FastISel *FastIS = 0;
735 if (EnableFastISel)
Dan Gohmana4160c32010-07-07 16:29:44 +0000736 FastIS = TLI.createFastISel(*FuncInfo);
Dan Gohmana43abd12008-09-29 21:55:50 +0000737
738 // Iterate over all basic blocks in the function.
Dan Gohman46510a72010-04-15 01:51:59 +0000739 for (Function::const_iterator I = Fn.begin(), E = Fn.end(); I != E; ++I) {
740 const BasicBlock *LLVMBB = &*I;
Dan Gohman84023e02010-07-10 09:00:22 +0000741 FuncInfo->MBB = FuncInfo->MBBMap[LLVMBB];
742 FuncInfo->InsertPt = FuncInfo->MBB->getFirstNonPHI();
Dan Gohmanf350b272008-08-23 02:25:05 +0000743
Dan Gohmanba5be5c2010-04-20 15:00:41 +0000744 BasicBlock::const_iterator const Begin = LLVMBB->getFirstNonPHI();
Dan Gohman46510a72010-04-15 01:51:59 +0000745 BasicBlock::const_iterator const End = LLVMBB->end();
Dan Gohman84023e02010-07-10 09:00:22 +0000746 BasicBlock::const_iterator BI = End;
Dan Gohman5edd3612008-08-28 20:28:56 +0000747
Dan Gohman84023e02010-07-10 09:00:22 +0000748 FuncInfo->InsertPt = FuncInfo->MBB->getFirstNonPHI();
749
750 // Setup an EH landing-pad block.
751 if (FuncInfo->MBB->isLandingPad())
752 PrepareEHLandingPad();
753
Dan Gohmanf5951412010-07-08 01:00:56 +0000754 // Lower any arguments needed in this block if this is the entry block.
755 if (LLVMBB == &Fn.getEntryBlock())
756 LowerArguments(LLVMBB);
757
Dan Gohmanf350b272008-08-23 02:25:05 +0000758 // Before doing SelectionDAG ISel, see if FastISel has been requested.
Dan Gohmand725f042010-05-01 02:44:23 +0000759 if (FastIS) {
Dan Gohman84023e02010-07-10 09:00:22 +0000760 FastIS->startNewBlock();
761
Dan Gohmanf5951412010-07-08 01:00:56 +0000762 // Emit code for any incoming arguments. This must happen before
763 // beginning FastISel on the entry block.
764 if (LLVMBB == &Fn.getEntryBlock()) {
765 CurDAG->setRoot(SDB->getControlRoot());
766 SDB->clear();
Dan Gohman84023e02010-07-10 09:00:22 +0000767 CodeGenAndEmitDAG();
768
769 // If we inserted any instructions at the beginning, make a note of
770 // where they are, so we can be sure to emit subsequent instructions
771 // after them.
772 if (FuncInfo->InsertPt != FuncInfo->MBB->begin())
773 FastIS->setLastLocalValue(llvm::prior(FuncInfo->InsertPt));
774 else
775 FastIS->setLastLocalValue(0);
Dan Gohmanf5951412010-07-08 01:00:56 +0000776 }
Dan Gohman84023e02010-07-10 09:00:22 +0000777
Dan Gohmana43abd12008-09-29 21:55:50 +0000778 // Do FastISel on as many instructions as possible.
Dan Gohman84023e02010-07-10 09:00:22 +0000779 for (; BI != Begin; --BI) {
780 const Instruction *Inst = llvm::prior(BI);
781
782 // If we no longer require this instruction, skip it.
783 if (!Inst->mayWriteToMemory() &&
784 !isa<TerminatorInst>(Inst) &&
785 !isa<DbgInfoIntrinsic>(Inst) &&
786 !FuncInfo->isExportedInst(Inst))
Dan Gohman20d4be12010-07-01 02:58:57 +0000787 continue;
Dan Gohman84023e02010-07-10 09:00:22 +0000788
789 // Bottom-up: reset the insert pos at the top, after any local-value
790 // instructions.
791 FastIS->recomputeInsertPt();
Dan Gohman20d4be12010-07-01 02:58:57 +0000792
Dan Gohman21c14e32010-01-12 04:32:35 +0000793 // Try to select the instruction with FastISel.
Chris Lattnerbeac75d2010-09-05 02:18:34 +0000794 if (FastIS->SelectInstruction(Inst)) {
795 // If fast isel succeeded, check to see if there is a single-use
796 // non-volatile load right before the selected instruction, and see if
797 // the load is used by the instruction. If so, try to fold it.
798 const Instruction *BeforeInst = 0;
799 if (Inst != Begin)
800 BeforeInst = llvm::prior(llvm::prior(BI));
801 if (BeforeInst && isa<LoadInst>(BeforeInst) &&
802 BeforeInst->hasOneUse() && *BeforeInst->use_begin() == Inst &&
803 TryToFoldFastISelLoad(cast<LoadInst>(BeforeInst), FastIS)) {
804 // If we succeeded, don't re-select the load.
805 --BI;
806 }
Dan Gohmana43abd12008-09-29 21:55:50 +0000807 continue;
Chris Lattnerbeac75d2010-09-05 02:18:34 +0000808 }
Dan Gohmana43abd12008-09-29 21:55:50 +0000809
810 // Then handle certain instructions as single-LLVM-Instruction blocks.
Dan Gohman84023e02010-07-10 09:00:22 +0000811 if (isa<CallInst>(Inst)) {
Chris Lattnerc19ae9d2010-03-04 19:46:56 +0000812 ++NumFastIselFailures;
Dan Gohmana43abd12008-09-29 21:55:50 +0000813 if (EnableFastISelVerbose || EnableFastISelAbort) {
David Greene1a053232010-01-05 01:26:11 +0000814 dbgs() << "FastISel missed call: ";
Dan Gohman84023e02010-07-10 09:00:22 +0000815 Inst->dump();
Dan Gohmana43abd12008-09-29 21:55:50 +0000816 }
817
Dan Gohman84023e02010-07-10 09:00:22 +0000818 if (!Inst->getType()->isVoidTy() && !Inst->use_empty()) {
819 unsigned &R = FuncInfo->ValueMap[Inst];
Dan Gohmana43abd12008-09-29 21:55:50 +0000820 if (!R)
Dan Gohman84023e02010-07-10 09:00:22 +0000821 R = FuncInfo->CreateRegs(Inst->getType());
Dan Gohmana43abd12008-09-29 21:55:50 +0000822 }
823
Dan Gohmanb4afb132009-11-20 02:51:26 +0000824 bool HadTailCall = false;
Dan Gohman84023e02010-07-10 09:00:22 +0000825 SelectBasicBlock(Inst, BI, HadTailCall);
Dan Gohmanb4afb132009-11-20 02:51:26 +0000826
827 // If the call was emitted as a tail call, we're done with the block.
828 if (HadTailCall) {
Dan Gohman84023e02010-07-10 09:00:22 +0000829 --BI;
Dan Gohmanb4afb132009-11-20 02:51:26 +0000830 break;
831 }
832
Dan Gohmana43abd12008-09-29 21:55:50 +0000833 continue;
Dan Gohmanf350b272008-08-23 02:25:05 +0000834 }
Dan Gohmana43abd12008-09-29 21:55:50 +0000835
836 // Otherwise, give up on FastISel for the rest of the block.
837 // For now, be a little lenient about non-branch terminators.
Dan Gohman84023e02010-07-10 09:00:22 +0000838 if (!isa<TerminatorInst>(Inst) || isa<BranchInst>(Inst)) {
Chris Lattnerc19ae9d2010-03-04 19:46:56 +0000839 ++NumFastIselFailures;
Dan Gohmana43abd12008-09-29 21:55:50 +0000840 if (EnableFastISelVerbose || EnableFastISelAbort) {
David Greene1a053232010-01-05 01:26:11 +0000841 dbgs() << "FastISel miss: ";
Dan Gohman84023e02010-07-10 09:00:22 +0000842 Inst->dump();
Dan Gohmana43abd12008-09-29 21:55:50 +0000843 }
844 if (EnableFastISelAbort)
845 // The "fast" selector couldn't handle something and bailed.
846 // For the purpose of debugging, just abort.
Torok Edwinc23197a2009-07-14 16:55:14 +0000847 llvm_unreachable("FastISel didn't select the entire block");
Dan Gohmana43abd12008-09-29 21:55:50 +0000848 }
849 break;
Dan Gohmanf350b272008-08-23 02:25:05 +0000850 }
Dan Gohman84023e02010-07-10 09:00:22 +0000851
852 FastIS->recomputeInsertPt();
Dan Gohmanf350b272008-08-23 02:25:05 +0000853 }
854
Dan Gohmand2ff6472008-09-02 20:17:56 +0000855 // Run SelectionDAG instruction selection on the remainder of the block
856 // not handled by FastISel. If FastISel is not run, this is the entire
Dan Gohman3df24e62008-09-03 23:12:08 +0000857 // block.
Dan Gohman84023e02010-07-10 09:00:22 +0000858 bool HadTailCall;
859 SelectBasicBlock(Begin, BI, HadTailCall);
Dan Gohmanf350b272008-08-23 02:25:05 +0000860
Dan Gohman84023e02010-07-10 09:00:22 +0000861 FinishBasicBlock();
Dan Gohman620427d2010-04-22 19:55:20 +0000862 FuncInfo->PHINodesToUpdate.clear();
Evan Cheng39fd6e82008-08-07 00:43:25 +0000863 }
Dan Gohmana43abd12008-09-29 21:55:50 +0000864
865 delete FastIS;
Dan Gohman0e5f1302008-07-07 23:02:41 +0000866}
867
Dan Gohmanfed90b62008-07-28 21:51:04 +0000868void
Dan Gohman84023e02010-07-10 09:00:22 +0000869SelectionDAGISel::FinishBasicBlock() {
Dan Gohmanf350b272008-08-23 02:25:05 +0000870
David Greene1a053232010-01-05 01:26:11 +0000871 DEBUG(dbgs() << "Total amount of phi nodes to update: "
Dan Gohman927f8662010-06-18 16:00:29 +0000872 << FuncInfo->PHINodesToUpdate.size() << "\n";
873 for (unsigned i = 0, e = FuncInfo->PHINodesToUpdate.size(); i != e; ++i)
David Greene1a053232010-01-05 01:26:11 +0000874 dbgs() << "Node " << i << " : ("
Dan Gohman620427d2010-04-22 19:55:20 +0000875 << FuncInfo->PHINodesToUpdate[i].first
876 << ", " << FuncInfo->PHINodesToUpdate[i].second << ")\n");
Daniel Dunbara279bc32009-09-20 02:20:51 +0000877
Chris Lattnera33ef482005-03-30 01:10:47 +0000878 // Next, now that we know what the last MBB the LLVM BB expanded is, update
Chris Lattner1c08c712005-01-07 07:47:53 +0000879 // PHI nodes in successors.
Dan Gohman2048b852009-11-23 18:04:58 +0000880 if (SDB->SwitchCases.empty() &&
881 SDB->JTCases.empty() &&
882 SDB->BitTestCases.empty()) {
Dan Gohman620427d2010-04-22 19:55:20 +0000883 for (unsigned i = 0, e = FuncInfo->PHINodesToUpdate.size(); i != e; ++i) {
884 MachineInstr *PHI = FuncInfo->PHINodesToUpdate[i].first;
Chris Lattner518bb532010-02-09 19:54:29 +0000885 assert(PHI->isPHI() &&
Nate Begemanf15485a2006-03-27 01:32:24 +0000886 "This is not a machine PHI node that we are updating!");
Dan Gohman84023e02010-07-10 09:00:22 +0000887 if (!FuncInfo->MBB->isSuccessor(PHI->getParent()))
Jakob Stoklund Olesen580bba22010-03-05 21:49:10 +0000888 continue;
Dan Gohman620427d2010-04-22 19:55:20 +0000889 PHI->addOperand(
890 MachineOperand::CreateReg(FuncInfo->PHINodesToUpdate[i].second, false));
Dan Gohman84023e02010-07-10 09:00:22 +0000891 PHI->addOperand(MachineOperand::CreateMBB(FuncInfo->MBB));
Nate Begemanf15485a2006-03-27 01:32:24 +0000892 }
893 return;
Chris Lattner1c08c712005-01-07 07:47:53 +0000894 }
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000895
Dan Gohman2048b852009-11-23 18:04:58 +0000896 for (unsigned i = 0, e = SDB->BitTestCases.size(); i != e; ++i) {
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000897 // Lower header first, if it wasn't already lowered
Dan Gohman2048b852009-11-23 18:04:58 +0000898 if (!SDB->BitTestCases[i].Emitted) {
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000899 // Set the current basic block to the mbb we wish to insert the code into
Dan Gohman84023e02010-07-10 09:00:22 +0000900 FuncInfo->MBB = SDB->BitTestCases[i].Parent;
901 FuncInfo->InsertPt = FuncInfo->MBB->end();
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000902 // Emit the code
Dan Gohman84023e02010-07-10 09:00:22 +0000903 SDB->visitBitTestHeader(SDB->BitTestCases[i], FuncInfo->MBB);
Dan Gohman2048b852009-11-23 18:04:58 +0000904 CurDAG->setRoot(SDB->getRoot());
Dan Gohman2048b852009-11-23 18:04:58 +0000905 SDB->clear();
Dan Gohman84023e02010-07-10 09:00:22 +0000906 CodeGenAndEmitDAG();
Daniel Dunbara279bc32009-09-20 02:20:51 +0000907 }
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000908
Dan Gohman2048b852009-11-23 18:04:58 +0000909 for (unsigned j = 0, ej = SDB->BitTestCases[i].Cases.size(); j != ej; ++j) {
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000910 // Set the current basic block to the mbb we wish to insert the code into
Dan Gohman84023e02010-07-10 09:00:22 +0000911 FuncInfo->MBB = SDB->BitTestCases[i].Cases[j].ThisBB;
912 FuncInfo->InsertPt = FuncInfo->MBB->end();
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000913 // Emit the code
914 if (j+1 != ej)
Dan Gohman2048b852009-11-23 18:04:58 +0000915 SDB->visitBitTestCase(SDB->BitTestCases[i].Cases[j+1].ThisBB,
916 SDB->BitTestCases[i].Reg,
Dan Gohman99be8ae2010-04-19 22:41:47 +0000917 SDB->BitTestCases[i].Cases[j],
Dan Gohman84023e02010-07-10 09:00:22 +0000918 FuncInfo->MBB);
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000919 else
Dan Gohman2048b852009-11-23 18:04:58 +0000920 SDB->visitBitTestCase(SDB->BitTestCases[i].Default,
921 SDB->BitTestCases[i].Reg,
Dan Gohman99be8ae2010-04-19 22:41:47 +0000922 SDB->BitTestCases[i].Cases[j],
Dan Gohman84023e02010-07-10 09:00:22 +0000923 FuncInfo->MBB);
Daniel Dunbara279bc32009-09-20 02:20:51 +0000924
925
Dan Gohman2048b852009-11-23 18:04:58 +0000926 CurDAG->setRoot(SDB->getRoot());
Dan Gohman2048b852009-11-23 18:04:58 +0000927 SDB->clear();
Dan Gohman84023e02010-07-10 09:00:22 +0000928 CodeGenAndEmitDAG();
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000929 }
930
931 // Update PHI Nodes
Dan Gohman620427d2010-04-22 19:55:20 +0000932 for (unsigned pi = 0, pe = FuncInfo->PHINodesToUpdate.size();
933 pi != pe; ++pi) {
934 MachineInstr *PHI = FuncInfo->PHINodesToUpdate[pi].first;
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000935 MachineBasicBlock *PHIBB = PHI->getParent();
Chris Lattner518bb532010-02-09 19:54:29 +0000936 assert(PHI->isPHI() &&
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000937 "This is not a machine PHI node that we are updating!");
938 // This is "default" BB. We have two jumps to it. From "header" BB and
939 // from last "case" BB.
Dan Gohman2048b852009-11-23 18:04:58 +0000940 if (PHIBB == SDB->BitTestCases[i].Default) {
Jim Grosbachf4549b02010-01-15 00:36:15 +0000941 PHI->addOperand(MachineOperand::
Dan Gohman620427d2010-04-22 19:55:20 +0000942 CreateReg(FuncInfo->PHINodesToUpdate[pi].second,
943 false));
Dan Gohman2048b852009-11-23 18:04:58 +0000944 PHI->addOperand(MachineOperand::CreateMBB(SDB->BitTestCases[i].Parent));
Jim Grosbachf4549b02010-01-15 00:36:15 +0000945 PHI->addOperand(MachineOperand::
Dan Gohman620427d2010-04-22 19:55:20 +0000946 CreateReg(FuncInfo->PHINodesToUpdate[pi].second,
947 false));
Dan Gohman2048b852009-11-23 18:04:58 +0000948 PHI->addOperand(MachineOperand::CreateMBB(SDB->BitTestCases[i].Cases.
Chris Lattner9ce2e9d2007-12-30 00:57:42 +0000949 back().ThisBB));
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000950 }
951 // One of "cases" BB.
Dan Gohman2048b852009-11-23 18:04:58 +0000952 for (unsigned j = 0, ej = SDB->BitTestCases[i].Cases.size();
Dan Gohman7c3234c2008-08-27 23:52:12 +0000953 j != ej; ++j) {
Dan Gohman2048b852009-11-23 18:04:58 +0000954 MachineBasicBlock* cBB = SDB->BitTestCases[i].Cases[j].ThisBB;
Jakob Stoklund Olesendd437ba2010-01-11 21:02:33 +0000955 if (cBB->isSuccessor(PHIBB)) {
Jim Grosbachf4549b02010-01-15 00:36:15 +0000956 PHI->addOperand(MachineOperand::
Dan Gohman620427d2010-04-22 19:55:20 +0000957 CreateReg(FuncInfo->PHINodesToUpdate[pi].second,
958 false));
Chris Lattner9ce2e9d2007-12-30 00:57:42 +0000959 PHI->addOperand(MachineOperand::CreateMBB(cBB));
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000960 }
961 }
962 }
963 }
Dan Gohman2048b852009-11-23 18:04:58 +0000964 SDB->BitTestCases.clear();
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000965
Nate Begeman9453eea2006-04-23 06:26:20 +0000966 // If the JumpTable record is filled in, then we need to emit a jump table.
967 // Updating the PHI nodes is tricky in this case, since we need to determine
968 // whether the PHI is a successor of the range check MBB or the jump table MBB
Dan Gohman2048b852009-11-23 18:04:58 +0000969 for (unsigned i = 0, e = SDB->JTCases.size(); i != e; ++i) {
Anton Korobeynikov3a84b9b2007-03-25 15:07:15 +0000970 // Lower header first, if it wasn't already lowered
Dan Gohman2048b852009-11-23 18:04:58 +0000971 if (!SDB->JTCases[i].first.Emitted) {
Anton Korobeynikov3a84b9b2007-03-25 15:07:15 +0000972 // Set the current basic block to the mbb we wish to insert the code into
Dan Gohman84023e02010-07-10 09:00:22 +0000973 FuncInfo->MBB = SDB->JTCases[i].first.HeaderBB;
974 FuncInfo->InsertPt = FuncInfo->MBB->end();
Anton Korobeynikov3a84b9b2007-03-25 15:07:15 +0000975 // Emit the code
Dan Gohman99be8ae2010-04-19 22:41:47 +0000976 SDB->visitJumpTableHeader(SDB->JTCases[i].second, SDB->JTCases[i].first,
Dan Gohman84023e02010-07-10 09:00:22 +0000977 FuncInfo->MBB);
Dan Gohman2048b852009-11-23 18:04:58 +0000978 CurDAG->setRoot(SDB->getRoot());
Dan Gohman2048b852009-11-23 18:04:58 +0000979 SDB->clear();
Dan Gohman84023e02010-07-10 09:00:22 +0000980 CodeGenAndEmitDAG();
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000981 }
Daniel Dunbara279bc32009-09-20 02:20:51 +0000982
Nate Begeman37efe672006-04-22 18:53:45 +0000983 // Set the current basic block to the mbb we wish to insert the code into
Dan Gohman84023e02010-07-10 09:00:22 +0000984 FuncInfo->MBB = SDB->JTCases[i].second.MBB;
985 FuncInfo->InsertPt = FuncInfo->MBB->end();
Nate Begeman37efe672006-04-22 18:53:45 +0000986 // Emit the code
Dan Gohman2048b852009-11-23 18:04:58 +0000987 SDB->visitJumpTable(SDB->JTCases[i].second);
988 CurDAG->setRoot(SDB->getRoot());
Dan Gohman2048b852009-11-23 18:04:58 +0000989 SDB->clear();
Dan Gohman84023e02010-07-10 09:00:22 +0000990 CodeGenAndEmitDAG();
Daniel Dunbara279bc32009-09-20 02:20:51 +0000991
Nate Begeman37efe672006-04-22 18:53:45 +0000992 // Update PHI Nodes
Dan Gohman620427d2010-04-22 19:55:20 +0000993 for (unsigned pi = 0, pe = FuncInfo->PHINodesToUpdate.size();
994 pi != pe; ++pi) {
995 MachineInstr *PHI = FuncInfo->PHINodesToUpdate[pi].first;
Nate Begeman37efe672006-04-22 18:53:45 +0000996 MachineBasicBlock *PHIBB = PHI->getParent();
Chris Lattner518bb532010-02-09 19:54:29 +0000997 assert(PHI->isPHI() &&
Nate Begeman37efe672006-04-22 18:53:45 +0000998 "This is not a machine PHI node that we are updating!");
Anton Korobeynikov4198c582007-04-09 12:31:58 +0000999 // "default" BB. We can go there only from header BB.
Dan Gohman2048b852009-11-23 18:04:58 +00001000 if (PHIBB == SDB->JTCases[i].second.Default) {
Evan Chengce319102009-09-19 09:51:03 +00001001 PHI->addOperand
Dan Gohman620427d2010-04-22 19:55:20 +00001002 (MachineOperand::CreateReg(FuncInfo->PHINodesToUpdate[pi].second,
1003 false));
Evan Chengce319102009-09-19 09:51:03 +00001004 PHI->addOperand
Dan Gohman2048b852009-11-23 18:04:58 +00001005 (MachineOperand::CreateMBB(SDB->JTCases[i].first.HeaderBB));
Nate Begemanf4360a42006-05-03 03:48:02 +00001006 }
Anton Korobeynikov4198c582007-04-09 12:31:58 +00001007 // JT BB. Just iterate over successors here
Dan Gohman84023e02010-07-10 09:00:22 +00001008 if (FuncInfo->MBB->isSuccessor(PHIBB)) {
Evan Chengce319102009-09-19 09:51:03 +00001009 PHI->addOperand
Dan Gohman620427d2010-04-22 19:55:20 +00001010 (MachineOperand::CreateReg(FuncInfo->PHINodesToUpdate[pi].second,
1011 false));
Dan Gohman84023e02010-07-10 09:00:22 +00001012 PHI->addOperand(MachineOperand::CreateMBB(FuncInfo->MBB));
Nate Begeman37efe672006-04-22 18:53:45 +00001013 }
1014 }
Nate Begeman37efe672006-04-22 18:53:45 +00001015 }
Dan Gohman2048b852009-11-23 18:04:58 +00001016 SDB->JTCases.clear();
Daniel Dunbara279bc32009-09-20 02:20:51 +00001017
Chris Lattnerb2e806e2006-10-22 23:00:53 +00001018 // If the switch block involved a branch to one of the actual successors, we
1019 // need to update PHI nodes in that block.
Dan Gohman620427d2010-04-22 19:55:20 +00001020 for (unsigned i = 0, e = FuncInfo->PHINodesToUpdate.size(); i != e; ++i) {
1021 MachineInstr *PHI = FuncInfo->PHINodesToUpdate[i].first;
Chris Lattner518bb532010-02-09 19:54:29 +00001022 assert(PHI->isPHI() &&
Chris Lattnerb2e806e2006-10-22 23:00:53 +00001023 "This is not a machine PHI node that we are updating!");
Dan Gohman84023e02010-07-10 09:00:22 +00001024 if (FuncInfo->MBB->isSuccessor(PHI->getParent())) {
Dan Gohman620427d2010-04-22 19:55:20 +00001025 PHI->addOperand(
1026 MachineOperand::CreateReg(FuncInfo->PHINodesToUpdate[i].second, false));
Dan Gohman84023e02010-07-10 09:00:22 +00001027 PHI->addOperand(MachineOperand::CreateMBB(FuncInfo->MBB));
Chris Lattnerb2e806e2006-10-22 23:00:53 +00001028 }
1029 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001030
Nate Begemanf15485a2006-03-27 01:32:24 +00001031 // If we generated any switch lowering information, build and codegen any
1032 // additional DAGs necessary.
Dan Gohman2048b852009-11-23 18:04:58 +00001033 for (unsigned i = 0, e = SDB->SwitchCases.size(); i != e; ++i) {
Nate Begemanf15485a2006-03-27 01:32:24 +00001034 // Set the current basic block to the mbb we wish to insert the code into
Dan Gohman84023e02010-07-10 09:00:22 +00001035 MachineBasicBlock *ThisBB = FuncInfo->MBB = SDB->SwitchCases[i].ThisBB;
1036 FuncInfo->InsertPt = FuncInfo->MBB->end();
Daniel Dunbara279bc32009-09-20 02:20:51 +00001037
Dan Gohman95140a42010-05-01 00:25:44 +00001038 // Determine the unique successors.
1039 SmallVector<MachineBasicBlock *, 2> Succs;
1040 Succs.push_back(SDB->SwitchCases[i].TrueBB);
1041 if (SDB->SwitchCases[i].TrueBB != SDB->SwitchCases[i].FalseBB)
1042 Succs.push_back(SDB->SwitchCases[i].FalseBB);
1043
1044 // Emit the code. Note that this could result in ThisBB being split, so
1045 // we need to check for updates.
Dan Gohman84023e02010-07-10 09:00:22 +00001046 SDB->visitSwitchCase(SDB->SwitchCases[i], FuncInfo->MBB);
Dan Gohman2048b852009-11-23 18:04:58 +00001047 CurDAG->setRoot(SDB->getRoot());
Dan Gohman95140a42010-05-01 00:25:44 +00001048 SDB->clear();
Dan Gohman84023e02010-07-10 09:00:22 +00001049 CodeGenAndEmitDAG();
1050 ThisBB = FuncInfo->MBB;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001051
Chris Lattnerd5e93c02006-09-07 01:59:34 +00001052 // Handle any PHI nodes in successors of this chunk, as if we were coming
1053 // from the original BB before switch expansion. Note that PHI nodes can
1054 // occur multiple times in PHINodesToUpdate. We have to be very careful to
1055 // handle them the right number of times.
Dan Gohman95140a42010-05-01 00:25:44 +00001056 for (unsigned i = 0, e = Succs.size(); i != e; ++i) {
Dan Gohman84023e02010-07-10 09:00:22 +00001057 FuncInfo->MBB = Succs[i];
1058 FuncInfo->InsertPt = FuncInfo->MBB->end();
1059 // FuncInfo->MBB may have been removed from the CFG if a branch was
1060 // constant folded.
1061 if (ThisBB->isSuccessor(FuncInfo->MBB)) {
1062 for (MachineBasicBlock::iterator Phi = FuncInfo->MBB->begin();
1063 Phi != FuncInfo->MBB->end() && Phi->isPHI();
Jakob Stoklund Olesendd437ba2010-01-11 21:02:33 +00001064 ++Phi) {
1065 // This value for this PHI node is recorded in PHINodesToUpdate.
1066 for (unsigned pn = 0; ; ++pn) {
Dan Gohman620427d2010-04-22 19:55:20 +00001067 assert(pn != FuncInfo->PHINodesToUpdate.size() &&
Jakob Stoklund Olesendd437ba2010-01-11 21:02:33 +00001068 "Didn't find PHI entry!");
Dan Gohman620427d2010-04-22 19:55:20 +00001069 if (FuncInfo->PHINodesToUpdate[pn].first == Phi) {
Jakob Stoklund Olesendd437ba2010-01-11 21:02:33 +00001070 Phi->addOperand(MachineOperand::
Dan Gohman620427d2010-04-22 19:55:20 +00001071 CreateReg(FuncInfo->PHINodesToUpdate[pn].second,
Jakob Stoklund Olesendd437ba2010-01-11 21:02:33 +00001072 false));
1073 Phi->addOperand(MachineOperand::CreateMBB(ThisBB));
1074 break;
1075 }
Evan Cheng8be58a12009-09-18 08:26:06 +00001076 }
Chris Lattnerd5e93c02006-09-07 01:59:34 +00001077 }
Nate Begemanf15485a2006-03-27 01:32:24 +00001078 }
1079 }
Chris Lattnera33ef482005-03-30 01:10:47 +00001080 }
Dan Gohman2048b852009-11-23 18:04:58 +00001081 SDB->SwitchCases.clear();
Chris Lattner1c08c712005-01-07 07:47:53 +00001082}
Evan Chenga9c20912006-01-21 02:32:06 +00001083
Jim Laskey13ec7022006-08-01 14:21:23 +00001084
Dan Gohman0a3776d2009-02-06 18:26:51 +00001085/// Create the scheduler. If a specific scheduler was specified
1086/// via the SchedulerRegistry, use it, otherwise select the
1087/// one preferred by the target.
Dan Gohman5e843682008-07-14 18:19:29 +00001088///
Dan Gohman47ac0f02009-02-11 04:27:20 +00001089ScheduleDAGSDNodes *SelectionDAGISel::CreateScheduler() {
Jim Laskeyeb577ba2006-08-02 12:30:23 +00001090 RegisterScheduler::FunctionPassCtor Ctor = RegisterScheduler::getDefault();
Daniel Dunbara279bc32009-09-20 02:20:51 +00001091
Jim Laskey13ec7022006-08-01 14:21:23 +00001092 if (!Ctor) {
Jim Laskeyeb577ba2006-08-02 12:30:23 +00001093 Ctor = ISHeuristic;
Jim Laskey9373beb2006-08-01 19:14:14 +00001094 RegisterScheduler::setDefault(Ctor);
Evan Cheng4ef10862006-01-23 07:01:07 +00001095 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001096
Bill Wendlingbe8cc2a2009-04-29 00:15:41 +00001097 return Ctor(this, OptLevel);
Evan Chenga9c20912006-01-21 02:32:06 +00001098}
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001099
Dan Gohmanfc54c552009-01-15 22:18:12 +00001100ScheduleHazardRecognizer *SelectionDAGISel::CreateTargetHazardRecognizer() {
1101 return new ScheduleHazardRecognizer();
Jim Laskey9ff542f2006-08-01 18:29:48 +00001102}
1103
Chris Lattner75548062006-10-11 03:58:02 +00001104//===----------------------------------------------------------------------===//
1105// Helper functions used by the generated instruction selector.
1106//===----------------------------------------------------------------------===//
1107// Calls to these methods are generated by tblgen.
1108
1109/// CheckAndMask - The isel is trying to match something like (and X, 255). If
1110/// the dag combiner simplified the 255, we still want to match. RHS is the
1111/// actual value in the DAG on the RHS of an AND, and DesiredMaskS is the value
1112/// specified in the .td file (e.g. 255).
Daniel Dunbara279bc32009-09-20 02:20:51 +00001113bool SelectionDAGISel::CheckAndMask(SDValue LHS, ConstantSDNode *RHS,
Dan Gohmandc9b3d02007-07-24 23:00:27 +00001114 int64_t DesiredMaskS) const {
Dan Gohman2e68b6f2008-02-25 21:11:39 +00001115 const APInt &ActualMask = RHS->getAPIntValue();
1116 const APInt &DesiredMask = APInt(LHS.getValueSizeInBits(), DesiredMaskS);
Daniel Dunbara279bc32009-09-20 02:20:51 +00001117
Chris Lattner75548062006-10-11 03:58:02 +00001118 // If the actual mask exactly matches, success!
1119 if (ActualMask == DesiredMask)
1120 return true;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001121
Chris Lattner75548062006-10-11 03:58:02 +00001122 // If the actual AND mask is allowing unallowed bits, this doesn't match.
Dan Gohman2e68b6f2008-02-25 21:11:39 +00001123 if (ActualMask.intersects(~DesiredMask))
Chris Lattner75548062006-10-11 03:58:02 +00001124 return false;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001125
Chris Lattner75548062006-10-11 03:58:02 +00001126 // Otherwise, the DAG Combiner may have proven that the value coming in is
1127 // either already zero or is not demanded. Check for known zero input bits.
Dan Gohman2e68b6f2008-02-25 21:11:39 +00001128 APInt NeededMask = DesiredMask & ~ActualMask;
Dan Gohmanea859be2007-06-22 14:59:07 +00001129 if (CurDAG->MaskedValueIsZero(LHS, NeededMask))
Chris Lattner75548062006-10-11 03:58:02 +00001130 return true;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001131
Chris Lattner75548062006-10-11 03:58:02 +00001132 // TODO: check to see if missing bits are just not demanded.
1133
1134 // Otherwise, this pattern doesn't match.
1135 return false;
1136}
1137
1138/// CheckOrMask - The isel is trying to match something like (or X, 255). If
1139/// the dag combiner simplified the 255, we still want to match. RHS is the
1140/// actual value in the DAG on the RHS of an OR, and DesiredMaskS is the value
1141/// specified in the .td file (e.g. 255).
Daniel Dunbara279bc32009-09-20 02:20:51 +00001142bool SelectionDAGISel::CheckOrMask(SDValue LHS, ConstantSDNode *RHS,
Dan Gohman2e68b6f2008-02-25 21:11:39 +00001143 int64_t DesiredMaskS) const {
1144 const APInt &ActualMask = RHS->getAPIntValue();
1145 const APInt &DesiredMask = APInt(LHS.getValueSizeInBits(), DesiredMaskS);
Daniel Dunbara279bc32009-09-20 02:20:51 +00001146
Chris Lattner75548062006-10-11 03:58:02 +00001147 // If the actual mask exactly matches, success!
1148 if (ActualMask == DesiredMask)
1149 return true;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001150
Chris Lattner75548062006-10-11 03:58:02 +00001151 // If the actual AND mask is allowing unallowed bits, this doesn't match.
Dan Gohman2e68b6f2008-02-25 21:11:39 +00001152 if (ActualMask.intersects(~DesiredMask))
Chris Lattner75548062006-10-11 03:58:02 +00001153 return false;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001154
Chris Lattner75548062006-10-11 03:58:02 +00001155 // Otherwise, the DAG Combiner may have proven that the value coming in is
1156 // either already zero or is not demanded. Check for known zero input bits.
Dan Gohman2e68b6f2008-02-25 21:11:39 +00001157 APInt NeededMask = DesiredMask & ~ActualMask;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001158
Dan Gohman2e68b6f2008-02-25 21:11:39 +00001159 APInt KnownZero, KnownOne;
Dan Gohmanea859be2007-06-22 14:59:07 +00001160 CurDAG->ComputeMaskedBits(LHS, NeededMask, KnownZero, KnownOne);
Daniel Dunbara279bc32009-09-20 02:20:51 +00001161
Chris Lattner75548062006-10-11 03:58:02 +00001162 // If all the missing bits in the or are already known to be set, match!
1163 if ((NeededMask & KnownOne) == NeededMask)
1164 return true;
Daniel Dunbara279bc32009-09-20 02:20:51 +00001165
Chris Lattner75548062006-10-11 03:58:02 +00001166 // TODO: check to see if missing bits are just not demanded.
Daniel Dunbara279bc32009-09-20 02:20:51 +00001167
Chris Lattner75548062006-10-11 03:58:02 +00001168 // Otherwise, this pattern doesn't match.
1169 return false;
1170}
1171
Jim Laskey9ff542f2006-08-01 18:29:48 +00001172
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001173/// SelectInlineAsmMemoryOperands - Calls to this are automatically generated
1174/// by tblgen. Others should not call it.
1175void SelectionDAGISel::
Dan Gohmanf350b272008-08-23 02:25:05 +00001176SelectInlineAsmMemoryOperands(std::vector<SDValue> &Ops) {
Dan Gohman475871a2008-07-27 21:46:04 +00001177 std::vector<SDValue> InOps;
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001178 std::swap(InOps, Ops);
1179
Chris Lattnerdecc2672010-04-07 05:20:54 +00001180 Ops.push_back(InOps[InlineAsm::Op_InputChain]); // 0
1181 Ops.push_back(InOps[InlineAsm::Op_AsmString]); // 1
1182 Ops.push_back(InOps[InlineAsm::Op_MDNode]); // 2, !srcloc
Dale Johannesenf1e309e2010-07-02 20:16:09 +00001183 Ops.push_back(InOps[InlineAsm::Op_IsAlignStack]); // 3
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001184
Chris Lattnerdecc2672010-04-07 05:20:54 +00001185 unsigned i = InlineAsm::Op_FirstOperand, e = InOps.size();
Owen Anderson825b72b2009-08-11 20:47:22 +00001186 if (InOps[e-1].getValueType() == MVT::Flag)
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001187 --e; // Don't process a flag operand if it is here.
Daniel Dunbara279bc32009-09-20 02:20:51 +00001188
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001189 while (i != e) {
Dan Gohmanf5aeb1a2008-09-12 16:56:44 +00001190 unsigned Flags = cast<ConstantSDNode>(InOps[i])->getZExtValue();
Chris Lattnerdecc2672010-04-07 05:20:54 +00001191 if (!InlineAsm::isMemKind(Flags)) {
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001192 // Just skip over this operand, copying the operands verbatim.
Evan Cheng697cbbf2009-03-20 18:03:34 +00001193 Ops.insert(Ops.end(), InOps.begin()+i,
1194 InOps.begin()+i+InlineAsm::getNumOperandRegisters(Flags) + 1);
1195 i += InlineAsm::getNumOperandRegisters(Flags) + 1;
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001196 } else {
Evan Cheng697cbbf2009-03-20 18:03:34 +00001197 assert(InlineAsm::getNumOperandRegisters(Flags) == 1 &&
1198 "Memory operand with multiple values?");
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001199 // Otherwise, this is a memory operand. Ask the target to select it.
Dan Gohman475871a2008-07-27 21:46:04 +00001200 std::vector<SDValue> SelOps;
Chris Lattnerdecc2672010-04-07 05:20:54 +00001201 if (SelectInlineAsmMemoryOperand(InOps[i+1], 'm', SelOps))
Chris Lattner75361b62010-04-07 22:58:41 +00001202 report_fatal_error("Could not match memory address. Inline asm"
Chris Lattner87d677c2010-04-07 23:50:38 +00001203 " failure!");
Daniel Dunbara279bc32009-09-20 02:20:51 +00001204
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001205 // Add this to the output node.
Chris Lattnerdecc2672010-04-07 05:20:54 +00001206 unsigned NewFlags =
1207 InlineAsm::getFlagWord(InlineAsm::Kind_Mem, SelOps.size());
1208 Ops.push_back(CurDAG->getTargetConstant(NewFlags, MVT::i32));
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001209 Ops.insert(Ops.end(), SelOps.begin(), SelOps.end());
1210 i += 2;
1211 }
1212 }
Daniel Dunbara279bc32009-09-20 02:20:51 +00001213
Chris Lattner0e43f2b2006-02-24 02:13:54 +00001214 // Add the flag input back if present.
1215 if (e != InOps.size())
1216 Ops.push_back(InOps.back());
1217}
Devang Patel794fd752007-05-01 21:15:47 +00001218
Owen Andersone50ed302009-08-10 22:56:29 +00001219/// findFlagUse - Return use of EVT::Flag value produced by the specified
Anton Korobeynikovc1c6ef82009-05-08 18:51:58 +00001220/// SDNode.
1221///
1222static SDNode *findFlagUse(SDNode *N) {
1223 unsigned FlagResNo = N->getNumValues()-1;
1224 for (SDNode::use_iterator I = N->use_begin(), E = N->use_end(); I != E; ++I) {
1225 SDUse &Use = I.getUse();
1226 if (Use.getResNo() == FlagResNo)
1227 return Use.getUser();
1228 }
1229 return NULL;
1230}
1231
1232/// findNonImmUse - Return true if "Use" is a non-immediate use of "Def".
1233/// This function recursively traverses up the operand chain, ignoring
1234/// certain nodes.
1235static bool findNonImmUse(SDNode *Use, SDNode* Def, SDNode *ImmedUse,
Chris Lattnerd1b73822010-03-02 22:20:06 +00001236 SDNode *Root, SmallPtrSet<SDNode*, 16> &Visited,
1237 bool IgnoreChains) {
Chris Lattnerda244a02010-02-23 19:32:27 +00001238 // The NodeID's are given uniques ID's where a node ID is guaranteed to be
1239 // greater than all of its (recursive) operands. If we scan to a point where
1240 // 'use' is smaller than the node we're scanning for, then we know we will
1241 // never find it.
1242 //
1243 // The Use may be -1 (unassigned) if it is a newly allocated node. This can
1244 // happen because we scan down to newly selected nodes in the case of flag
1245 // uses.
1246 if ((Use->getNodeId() < Def->getNodeId() && Use->getNodeId() != -1))
1247 return false;
1248
1249 // Don't revisit nodes if we already scanned it and didn't fail, we know we
1250 // won't fail if we scan it again.
1251 if (!Visited.insert(Use))
Anton Korobeynikovc1c6ef82009-05-08 18:51:58 +00001252 return false;
1253
1254 for (unsigned i = 0, e = Use->getNumOperands(); i != e; ++i) {
Chris Lattnerd1b73822010-03-02 22:20:06 +00001255 // Ignore chain uses, they are validated by HandleMergeInputChains.
1256 if (Use->getOperand(i).getValueType() == MVT::Other && IgnoreChains)
1257 continue;
1258
Anton Korobeynikovc1c6ef82009-05-08 18:51:58 +00001259 SDNode *N = Use->getOperand(i).getNode();
1260 if (N == Def) {
1261 if (Use == ImmedUse || Use == Root)
1262 continue; // We are not looking for immediate use.
1263 assert(N != Root);
1264 return true;
1265 }
1266
1267 // Traverse up the operand chain.
Chris Lattnerd1b73822010-03-02 22:20:06 +00001268 if (findNonImmUse(N, Def, ImmedUse, Root, Visited, IgnoreChains))
Anton Korobeynikovc1c6ef82009-05-08 18:51:58 +00001269 return true;
1270 }
1271 return false;
1272}
1273
Evan Cheng014bf212010-02-15 19:41:07 +00001274/// IsProfitableToFold - Returns true if it's profitable to fold the specific
1275/// operand node N of U during instruction selection that starts at Root.
1276bool SelectionDAGISel::IsProfitableToFold(SDValue N, SDNode *U,
1277 SDNode *Root) const {
1278 if (OptLevel == CodeGenOpt::None) return false;
1279 return N.hasOneUse();
1280}
1281
1282/// IsLegalToFold - Returns true if the specific operand node N of
1283/// U can be folded during instruction selection that starts at Root.
Chris Lattnerd1b73822010-03-02 22:20:06 +00001284bool SelectionDAGISel::IsLegalToFold(SDValue N, SDNode *U, SDNode *Root,
Dan Gohmand858e902010-04-17 15:26:15 +00001285 CodeGenOpt::Level OptLevel,
1286 bool IgnoreChains) {
Anton Korobeynikovc1c6ef82009-05-08 18:51:58 +00001287 if (OptLevel == CodeGenOpt::None) return false;
1288
1289 // If Root use can somehow reach N through a path that that doesn't contain
1290 // U then folding N would create a cycle. e.g. In the following
1291 // diagram, Root can reach N through X. If N is folded into into Root, then
1292 // X is both a predecessor and a successor of U.
1293 //
1294 // [N*] //
1295 // ^ ^ //
1296 // / \ //
1297 // [U*] [X]? //
1298 // ^ ^ //
1299 // \ / //
1300 // \ / //
1301 // [Root*] //
1302 //
1303 // * indicates nodes to be folded together.
1304 //
1305 // If Root produces a flag, then it gets (even more) interesting. Since it
1306 // will be "glued" together with its flag use in the scheduler, we need to
1307 // check if it might reach N.
1308 //
1309 // [N*] //
1310 // ^ ^ //
1311 // / \ //
1312 // [U*] [X]? //
1313 // ^ ^ //
1314 // \ \ //
1315 // \ | //
1316 // [Root*] | //
1317 // ^ | //
1318 // f | //
1319 // | / //
1320 // [Y] / //
1321 // ^ / //
1322 // f / //
1323 // | / //
1324 // [FU] //
1325 //
1326 // If FU (flag use) indirectly reaches N (the load), and Root folds N
1327 // (call it Fold), then X is a predecessor of FU and a successor of
1328 // Fold. But since Fold and FU are flagged together, this will create
1329 // a cycle in the scheduling graph.
1330
Chris Lattner9bbcd5e2010-03-05 05:49:45 +00001331 // If the node has flags, walk down the graph to the "lowest" node in the
1332 // flagged set.
Owen Andersone50ed302009-08-10 22:56:29 +00001333 EVT VT = Root->getValueType(Root->getNumValues()-1);
Owen Anderson825b72b2009-08-11 20:47:22 +00001334 while (VT == MVT::Flag) {
Anton Korobeynikovc1c6ef82009-05-08 18:51:58 +00001335 SDNode *FU = findFlagUse(Root);
1336 if (FU == NULL)
1337 break;
1338 Root = FU;
1339 VT = Root->getValueType(Root->getNumValues()-1);
Chris Lattner18fdaba2010-03-05 06:19:13 +00001340
1341 // If our query node has a flag result with a use, we've walked up it. If
1342 // the user (which has already been selected) has a chain or indirectly uses
1343 // the chain, our WalkChainUsers predicate will not consider it. Because of
1344 // this, we cannot ignore chains in this predicate.
1345 IgnoreChains = false;
Anton Korobeynikovc1c6ef82009-05-08 18:51:58 +00001346 }
Chris Lattner18fdaba2010-03-05 06:19:13 +00001347
Anton Korobeynikovc1c6ef82009-05-08 18:51:58 +00001348
Chris Lattner9bbcd5e2010-03-05 05:49:45 +00001349 SmallPtrSet<SDNode*, 16> Visited;
1350 return !findNonImmUse(Root, N.getNode(), U, Root, Visited, IgnoreChains);
Anton Korobeynikovc1c6ef82009-05-08 18:51:58 +00001351}
1352
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001353SDNode *SelectionDAGISel::Select_INLINEASM(SDNode *N) {
1354 std::vector<SDValue> Ops(N->op_begin(), N->op_end());
Dan Gohmane1f188f2009-10-29 22:30:23 +00001355 SelectInlineAsmMemoryOperands(Ops);
1356
1357 std::vector<EVT> VTs;
1358 VTs.push_back(MVT::Other);
1359 VTs.push_back(MVT::Flag);
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001360 SDValue New = CurDAG->getNode(ISD::INLINEASM, N->getDebugLoc(),
Dan Gohmane1f188f2009-10-29 22:30:23 +00001361 VTs, &Ops[0], Ops.size());
Chris Lattnerd1b73822010-03-02 22:20:06 +00001362 New->setNodeId(-1);
Dan Gohmane1f188f2009-10-29 22:30:23 +00001363 return New.getNode();
1364}
1365
Dan Gohmaneeb3a002010-01-05 01:24:18 +00001366SDNode *SelectionDAGISel::Select_UNDEF(SDNode *N) {
Chris Lattner518bb532010-02-09 19:54:29 +00001367 return CurDAG->SelectNodeTo(N, TargetOpcode::IMPLICIT_DEF,N->getValueType(0));
Dan Gohmane1f188f2009-10-29 22:30:23 +00001368}
1369
Chris Lattner2a49d572010-02-28 22:37:22 +00001370/// GetVBR - decode a vbr encoding whose top bit is set.
Chandler Carruth19e57022010-10-23 08:40:19 +00001371LLVM_ATTRIBUTE_ALWAYS_INLINE static uint64_t
Chris Lattner2a49d572010-02-28 22:37:22 +00001372GetVBR(uint64_t Val, const unsigned char *MatcherTable, unsigned &Idx) {
1373 assert(Val >= 128 && "Not a VBR");
1374 Val &= 127; // Remove first vbr bit.
1375
1376 unsigned Shift = 7;
1377 uint64_t NextBits;
1378 do {
Chris Lattner14df8dc2010-02-28 22:38:43 +00001379 NextBits = MatcherTable[Idx++];
Chris Lattner2a49d572010-02-28 22:37:22 +00001380 Val |= (NextBits&127) << Shift;
1381 Shift += 7;
1382 } while (NextBits & 128);
1383
1384 return Val;
1385}
1386
Chris Lattner2a49d572010-02-28 22:37:22 +00001387
1388/// UpdateChainsAndFlags - When a match is complete, this method updates uses of
1389/// interior flag and chain results to use the new flag and chain results.
Chris Lattner82dd3d32010-03-02 07:50:03 +00001390void SelectionDAGISel::
1391UpdateChainsAndFlags(SDNode *NodeToMatch, SDValue InputChain,
1392 const SmallVectorImpl<SDNode*> &ChainNodesMatched,
1393 SDValue InputFlag,
1394 const SmallVectorImpl<SDNode*> &FlagResultNodesMatched,
1395 bool isMorphNodeTo) {
1396 SmallVector<SDNode*, 4> NowDeadNodes;
1397
1398 ISelUpdater ISU(ISelPosition);
1399
Chris Lattner2a49d572010-02-28 22:37:22 +00001400 // Now that all the normal results are replaced, we replace the chain and
1401 // flag results if present.
1402 if (!ChainNodesMatched.empty()) {
1403 assert(InputChain.getNode() != 0 &&
1404 "Matched input chains but didn't produce a chain");
1405 // Loop over all of the nodes we matched that produced a chain result.
1406 // Replace all the chain results with the final chain we ended up with.
1407 for (unsigned i = 0, e = ChainNodesMatched.size(); i != e; ++i) {
1408 SDNode *ChainNode = ChainNodesMatched[i];
1409
Chris Lattner82dd3d32010-03-02 07:50:03 +00001410 // If this node was already deleted, don't look at it.
1411 if (ChainNode->getOpcode() == ISD::DELETED_NODE)
1412 continue;
1413
Chris Lattner2a49d572010-02-28 22:37:22 +00001414 // Don't replace the results of the root node if we're doing a
1415 // MorphNodeTo.
1416 if (ChainNode == NodeToMatch && isMorphNodeTo)
1417 continue;
1418
1419 SDValue ChainVal = SDValue(ChainNode, ChainNode->getNumValues()-1);
1420 if (ChainVal.getValueType() == MVT::Flag)
1421 ChainVal = ChainVal.getValue(ChainVal->getNumValues()-2);
1422 assert(ChainVal.getValueType() == MVT::Other && "Not a chain?");
Chris Lattner82dd3d32010-03-02 07:50:03 +00001423 CurDAG->ReplaceAllUsesOfValueWith(ChainVal, InputChain, &ISU);
1424
Chris Lattner856fb392010-03-28 05:28:31 +00001425 // If the node became dead and we haven't already seen it, delete it.
1426 if (ChainNode->use_empty() &&
1427 !std::count(NowDeadNodes.begin(), NowDeadNodes.end(), ChainNode))
Chris Lattner82dd3d32010-03-02 07:50:03 +00001428 NowDeadNodes.push_back(ChainNode);
Chris Lattner2a49d572010-02-28 22:37:22 +00001429 }
1430 }
1431
1432 // If the result produces a flag, update any flag results in the matched
1433 // pattern with the flag result.
1434 if (InputFlag.getNode() != 0) {
1435 // Handle any interior nodes explicitly marked.
1436 for (unsigned i = 0, e = FlagResultNodesMatched.size(); i != e; ++i) {
1437 SDNode *FRN = FlagResultNodesMatched[i];
Chris Lattner82dd3d32010-03-02 07:50:03 +00001438
1439 // If this node was already deleted, don't look at it.
1440 if (FRN->getOpcode() == ISD::DELETED_NODE)
1441 continue;
1442
Chris Lattner2a49d572010-02-28 22:37:22 +00001443 assert(FRN->getValueType(FRN->getNumValues()-1) == MVT::Flag &&
1444 "Doesn't have a flag result");
1445 CurDAG->ReplaceAllUsesOfValueWith(SDValue(FRN, FRN->getNumValues()-1),
Chris Lattner82dd3d32010-03-02 07:50:03 +00001446 InputFlag, &ISU);
1447
Chris Lattner19e37cb2010-03-28 04:54:33 +00001448 // If the node became dead and we haven't already seen it, delete it.
1449 if (FRN->use_empty() &&
1450 !std::count(NowDeadNodes.begin(), NowDeadNodes.end(), FRN))
Chris Lattner82dd3d32010-03-02 07:50:03 +00001451 NowDeadNodes.push_back(FRN);
Chris Lattner2a49d572010-02-28 22:37:22 +00001452 }
1453 }
1454
Chris Lattner82dd3d32010-03-02 07:50:03 +00001455 if (!NowDeadNodes.empty())
1456 CurDAG->RemoveDeadNodes(NowDeadNodes, &ISU);
1457
Chris Lattner2a49d572010-02-28 22:37:22 +00001458 DEBUG(errs() << "ISEL: Match complete!\n");
1459}
1460
Chris Lattnerc6d7ad32010-03-02 02:22:10 +00001461enum ChainResult {
1462 CR_Simple,
1463 CR_InducesCycle,
1464 CR_LeadsToInteriorNode
1465};
1466
1467/// WalkChainUsers - Walk down the users of the specified chained node that is
1468/// part of the pattern we're matching, looking at all of the users we find.
1469/// This determines whether something is an interior node, whether we have a
1470/// non-pattern node in between two pattern nodes (which prevent folding because
1471/// it would induce a cycle) and whether we have a TokenFactor node sandwiched
1472/// between pattern nodes (in which case the TF becomes part of the pattern).
1473///
1474/// The walk we do here is guaranteed to be small because we quickly get down to
1475/// already selected nodes "below" us.
1476static ChainResult
1477WalkChainUsers(SDNode *ChainedNode,
1478 SmallVectorImpl<SDNode*> &ChainedNodesInPattern,
1479 SmallVectorImpl<SDNode*> &InteriorChainedNodes) {
1480 ChainResult Result = CR_Simple;
1481
1482 for (SDNode::use_iterator UI = ChainedNode->use_begin(),
1483 E = ChainedNode->use_end(); UI != E; ++UI) {
1484 // Make sure the use is of the chain, not some other value we produce.
1485 if (UI.getUse().getValueType() != MVT::Other) continue;
1486
1487 SDNode *User = *UI;
1488
1489 // If we see an already-selected machine node, then we've gone beyond the
1490 // pattern that we're selecting down into the already selected chunk of the
1491 // DAG.
1492 if (User->isMachineOpcode() ||
Chris Lattnerc6d7ad32010-03-02 02:22:10 +00001493 User->getOpcode() == ISD::HANDLENODE) // Root of the graph.
1494 continue;
Chris Lattnerd1b73822010-03-02 22:20:06 +00001495
1496 if (User->getOpcode() == ISD::CopyToReg ||
1497 User->getOpcode() == ISD::CopyFromReg ||
Chris Lattner7561d482010-03-14 02:33:54 +00001498 User->getOpcode() == ISD::INLINEASM ||
1499 User->getOpcode() == ISD::EH_LABEL) {
Chris Lattnerd1b73822010-03-02 22:20:06 +00001500 // If their node ID got reset to -1 then they've already been selected.
1501 // Treat them like a MachineOpcode.
1502 if (User->getNodeId() == -1)
1503 continue;
1504 }
Chris Lattnerc6d7ad32010-03-02 02:22:10 +00001505
1506 // If we have a TokenFactor, we handle it specially.
1507 if (User->getOpcode() != ISD::TokenFactor) {
1508 // If the node isn't a token factor and isn't part of our pattern, then it
1509 // must be a random chained node in between two nodes we're selecting.
1510 // This happens when we have something like:
1511 // x = load ptr
1512 // call
1513 // y = x+4
1514 // store y -> ptr
1515 // Because we structurally match the load/store as a read/modify/write,
1516 // but the call is chained between them. We cannot fold in this case
1517 // because it would induce a cycle in the graph.
1518 if (!std::count(ChainedNodesInPattern.begin(),
1519 ChainedNodesInPattern.end(), User))
1520 return CR_InducesCycle;
1521
1522 // Otherwise we found a node that is part of our pattern. For example in:
1523 // x = load ptr
1524 // y = x+4
1525 // store y -> ptr
1526 // This would happen when we're scanning down from the load and see the
1527 // store as a user. Record that there is a use of ChainedNode that is
1528 // part of the pattern and keep scanning uses.
1529 Result = CR_LeadsToInteriorNode;
1530 InteriorChainedNodes.push_back(User);
1531 continue;
1532 }
1533
1534 // If we found a TokenFactor, there are two cases to consider: first if the
1535 // TokenFactor is just hanging "below" the pattern we're matching (i.e. no
1536 // uses of the TF are in our pattern) we just want to ignore it. Second,
1537 // the TokenFactor can be sandwiched in between two chained nodes, like so:
1538 // [Load chain]
1539 // ^
1540 // |
1541 // [Load]
1542 // ^ ^
1543 // | \ DAG's like cheese
1544 // / \ do you?
1545 // / |
1546 // [TokenFactor] [Op]
1547 // ^ ^
1548 // | |
1549 // \ /
1550 // \ /
1551 // [Store]
1552 //
1553 // In this case, the TokenFactor becomes part of our match and we rewrite it
1554 // as a new TokenFactor.
1555 //
1556 // To distinguish these two cases, do a recursive walk down the uses.
1557 switch (WalkChainUsers(User, ChainedNodesInPattern, InteriorChainedNodes)) {
1558 case CR_Simple:
1559 // If the uses of the TokenFactor are just already-selected nodes, ignore
1560 // it, it is "below" our pattern.
1561 continue;
1562 case CR_InducesCycle:
1563 // If the uses of the TokenFactor lead to nodes that are not part of our
1564 // pattern that are not selected, folding would turn this into a cycle,
1565 // bail out now.
1566 return CR_InducesCycle;
1567 case CR_LeadsToInteriorNode:
1568 break; // Otherwise, keep processing.
1569 }
1570
1571 // Okay, we know we're in the interesting interior case. The TokenFactor
1572 // is now going to be considered part of the pattern so that we rewrite its
1573 // uses (it may have uses that are not part of the pattern) with the
1574 // ultimate chain result of the generated code. We will also add its chain
1575 // inputs as inputs to the ultimate TokenFactor we create.
1576 Result = CR_LeadsToInteriorNode;
1577 ChainedNodesInPattern.push_back(User);
1578 InteriorChainedNodes.push_back(User);
1579 continue;
1580 }
1581
1582 return Result;
1583}
1584
Chris Lattner6b307922010-03-02 00:00:03 +00001585/// HandleMergeInputChains - This implements the OPC_EmitMergeInputChains
Chris Lattner00592ec2010-03-02 19:34:59 +00001586/// operation for when the pattern matched at least one node with a chains. The
Chris Lattnerc6d7ad32010-03-02 02:22:10 +00001587/// input vector contains a list of all of the chained nodes that we match. We
1588/// must determine if this is a valid thing to cover (i.e. matching it won't
1589/// induce cycles in the DAG) and if so, creating a TokenFactor node. that will
1590/// be used as the input node chain for the generated nodes.
Chris Lattner6b307922010-03-02 00:00:03 +00001591static SDValue
Chris Lattnerc6d7ad32010-03-02 02:22:10 +00001592HandleMergeInputChains(SmallVectorImpl<SDNode*> &ChainNodesMatched,
Chris Lattner6b307922010-03-02 00:00:03 +00001593 SelectionDAG *CurDAG) {
Chris Lattnerc6d7ad32010-03-02 02:22:10 +00001594 // Walk all of the chained nodes we've matched, recursively scanning down the
1595 // users of the chain result. This adds any TokenFactor nodes that are caught
1596 // in between chained nodes to the chained and interior nodes list.
1597 SmallVector<SDNode*, 3> InteriorChainedNodes;
1598 for (unsigned i = 0, e = ChainNodesMatched.size(); i != e; ++i) {
1599 if (WalkChainUsers(ChainNodesMatched[i], ChainNodesMatched,
1600 InteriorChainedNodes) == CR_InducesCycle)
1601 return SDValue(); // Would induce a cycle.
1602 }
Chris Lattner6b307922010-03-02 00:00:03 +00001603
Chris Lattnerc6d7ad32010-03-02 02:22:10 +00001604 // Okay, we have walked all the matched nodes and collected TokenFactor nodes
1605 // that we are interested in. Form our input TokenFactor node.
Chris Lattner6b307922010-03-02 00:00:03 +00001606 SmallVector<SDValue, 3> InputChains;
1607 for (unsigned i = 0, e = ChainNodesMatched.size(); i != e; ++i) {
Chris Lattnerc6d7ad32010-03-02 02:22:10 +00001608 // Add the input chain of this node to the InputChains list (which will be
1609 // the operands of the generated TokenFactor) if it's not an interior node.
1610 SDNode *N = ChainNodesMatched[i];
1611 if (N->getOpcode() != ISD::TokenFactor) {
1612 if (std::count(InteriorChainedNodes.begin(),InteriorChainedNodes.end(),N))
1613 continue;
1614
1615 // Otherwise, add the input chain.
1616 SDValue InChain = ChainNodesMatched[i]->getOperand(0);
1617 assert(InChain.getValueType() == MVT::Other && "Not a chain");
Chris Lattner6b307922010-03-02 00:00:03 +00001618 InputChains.push_back(InChain);
Chris Lattnerc6d7ad32010-03-02 02:22:10 +00001619 continue;
1620 }
1621
1622 // If we have a token factor, we want to add all inputs of the token factor
1623 // that are not part of the pattern we're matching.
1624 for (unsigned op = 0, e = N->getNumOperands(); op != e; ++op) {
1625 if (!std::count(ChainNodesMatched.begin(), ChainNodesMatched.end(),
Chris Lattner6183fbd2010-03-02 02:37:23 +00001626 N->getOperand(op).getNode()))
1627 InputChains.push_back(N->getOperand(op));
Chris Lattnerc6d7ad32010-03-02 02:22:10 +00001628 }
Chris Lattner6b307922010-03-02 00:00:03 +00001629 }
1630
1631 SDValue Res;
1632 if (InputChains.size() == 1)
1633 return InputChains[0];
1634 return CurDAG->getNode(ISD::TokenFactor, ChainNodesMatched[0]->getDebugLoc(),
1635 MVT::Other, &InputChains[0], InputChains.size());
1636}
Chris Lattner2a49d572010-02-28 22:37:22 +00001637
Chris Lattner3ff1e4d2010-03-02 06:55:04 +00001638/// MorphNode - Handle morphing a node in place for the selector.
1639SDNode *SelectionDAGISel::
1640MorphNode(SDNode *Node, unsigned TargetOpc, SDVTList VTList,
1641 const SDValue *Ops, unsigned NumOps, unsigned EmitNodeInfo) {
1642 // It is possible we're using MorphNodeTo to replace a node with no
1643 // normal results with one that has a normal result (or we could be
1644 // adding a chain) and the input could have flags and chains as well.
Chris Lattnercaa88702010-03-28 08:43:23 +00001645 // In this case we need to shift the operands down.
Chris Lattner3ff1e4d2010-03-02 06:55:04 +00001646 // FIXME: This is a horrible hack and broken in obscure cases, no worse
Chris Lattnera6f86932010-03-27 18:54:50 +00001647 // than the old isel though.
Chris Lattner3ff1e4d2010-03-02 06:55:04 +00001648 int OldFlagResultNo = -1, OldChainResultNo = -1;
1649
1650 unsigned NTMNumResults = Node->getNumValues();
1651 if (Node->getValueType(NTMNumResults-1) == MVT::Flag) {
1652 OldFlagResultNo = NTMNumResults-1;
1653 if (NTMNumResults != 1 &&
1654 Node->getValueType(NTMNumResults-2) == MVT::Other)
1655 OldChainResultNo = NTMNumResults-2;
1656 } else if (Node->getValueType(NTMNumResults-1) == MVT::Other)
1657 OldChainResultNo = NTMNumResults-1;
1658
Chris Lattner61c97f62010-03-02 07:14:49 +00001659 // Call the underlying SelectionDAG routine to do the transmogrification. Note
1660 // that this deletes operands of the old node that become dead.
Chris Lattner3ff1e4d2010-03-02 06:55:04 +00001661 SDNode *Res = CurDAG->MorphNodeTo(Node, ~TargetOpc, VTList, Ops, NumOps);
1662
1663 // MorphNodeTo can operate in two ways: if an existing node with the
1664 // specified operands exists, it can just return it. Otherwise, it
1665 // updates the node in place to have the requested operands.
1666 if (Res == Node) {
1667 // If we updated the node in place, reset the node ID. To the isel,
1668 // this should be just like a newly allocated machine node.
1669 Res->setNodeId(-1);
1670 }
1671
1672 unsigned ResNumResults = Res->getNumValues();
1673 // Move the flag if needed.
1674 if ((EmitNodeInfo & OPFL_FlagOutput) && OldFlagResultNo != -1 &&
1675 (unsigned)OldFlagResultNo != ResNumResults-1)
1676 CurDAG->ReplaceAllUsesOfValueWith(SDValue(Node, OldFlagResultNo),
1677 SDValue(Res, ResNumResults-1));
1678
1679 if ((EmitNodeInfo & OPFL_FlagOutput) != 0)
Bill Wendlingd9cb7ca2010-07-04 08:58:43 +00001680 --ResNumResults;
Chris Lattner3ff1e4d2010-03-02 06:55:04 +00001681
1682 // Move the chain reference if needed.
1683 if ((EmitNodeInfo & OPFL_Chain) && OldChainResultNo != -1 &&
1684 (unsigned)OldChainResultNo != ResNumResults-1)
1685 CurDAG->ReplaceAllUsesOfValueWith(SDValue(Node, OldChainResultNo),
1686 SDValue(Res, ResNumResults-1));
1687
1688 // Otherwise, no replacement happened because the node already exists. Replace
1689 // Uses of the old node with the new one.
1690 if (Res != Node)
1691 CurDAG->ReplaceAllUsesWith(Node, Res);
1692
1693 return Res;
1694}
1695
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001696/// CheckPatternPredicate - Implements OP_CheckPatternPredicate.
Chandler Carruth19e57022010-10-23 08:40:19 +00001697LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerda828e32010-03-03 07:46:25 +00001698CheckSame(const unsigned char *MatcherTable, unsigned &MatcherIndex,
Chris Lattnerd847bc22010-09-21 22:00:25 +00001699 SDValue N,
1700 const SmallVectorImpl<std::pair<SDValue, SDNode*> > &RecordedNodes) {
Chris Lattnerda828e32010-03-03 07:46:25 +00001701 // Accept if it is exactly the same as a previously recorded node.
1702 unsigned RecNo = MatcherTable[MatcherIndex++];
1703 assert(RecNo < RecordedNodes.size() && "Invalid CheckSame");
Chris Lattnerd847bc22010-09-21 22:00:25 +00001704 return N == RecordedNodes[RecNo].first;
Chris Lattnerda828e32010-03-03 07:46:25 +00001705}
1706
1707/// CheckPatternPredicate - Implements OP_CheckPatternPredicate.
Chandler Carruth19e57022010-10-23 08:40:19 +00001708LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001709CheckPatternPredicate(const unsigned char *MatcherTable, unsigned &MatcherIndex,
1710 SelectionDAGISel &SDISel) {
1711 return SDISel.CheckPatternPredicate(MatcherTable[MatcherIndex++]);
1712}
1713
1714/// CheckNodePredicate - Implements OP_CheckNodePredicate.
Chandler Carruth19e57022010-10-23 08:40:19 +00001715LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001716CheckNodePredicate(const unsigned char *MatcherTable, unsigned &MatcherIndex,
1717 SelectionDAGISel &SDISel, SDNode *N) {
1718 return SDISel.CheckNodePredicate(N, MatcherTable[MatcherIndex++]);
1719}
1720
Chandler Carruth19e57022010-10-23 08:40:19 +00001721LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001722CheckOpcode(const unsigned char *MatcherTable, unsigned &MatcherIndex,
1723 SDNode *N) {
Chris Lattnerd5d5a3d2010-03-25 06:33:05 +00001724 uint16_t Opc = MatcherTable[MatcherIndex++];
1725 Opc |= (unsigned short)MatcherTable[MatcherIndex++] << 8;
1726 return N->getOpcode() == Opc;
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001727}
1728
Chandler Carruth19e57022010-10-23 08:40:19 +00001729LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001730CheckType(const unsigned char *MatcherTable, unsigned &MatcherIndex,
1731 SDValue N, const TargetLowering &TLI) {
1732 MVT::SimpleValueType VT = (MVT::SimpleValueType)MatcherTable[MatcherIndex++];
1733 if (N.getValueType() == VT) return true;
1734
1735 // Handle the case when VT is iPTR.
1736 return VT == MVT::iPTR && N.getValueType() == TLI.getPointerTy();
1737}
1738
Chandler Carruth19e57022010-10-23 08:40:19 +00001739LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerda828e32010-03-03 07:46:25 +00001740CheckChildType(const unsigned char *MatcherTable, unsigned &MatcherIndex,
1741 SDValue N, const TargetLowering &TLI,
1742 unsigned ChildNo) {
1743 if (ChildNo >= N.getNumOperands())
1744 return false; // Match fails if out of range child #.
1745 return ::CheckType(MatcherTable, MatcherIndex, N.getOperand(ChildNo), TLI);
1746}
1747
1748
Chandler Carruth19e57022010-10-23 08:40:19 +00001749LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerda828e32010-03-03 07:46:25 +00001750CheckCondCode(const unsigned char *MatcherTable, unsigned &MatcherIndex,
1751 SDValue N) {
1752 return cast<CondCodeSDNode>(N)->get() ==
1753 (ISD::CondCode)MatcherTable[MatcherIndex++];
1754}
1755
Chandler Carruth19e57022010-10-23 08:40:19 +00001756LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerda828e32010-03-03 07:46:25 +00001757CheckValueType(const unsigned char *MatcherTable, unsigned &MatcherIndex,
1758 SDValue N, const TargetLowering &TLI) {
1759 MVT::SimpleValueType VT = (MVT::SimpleValueType)MatcherTable[MatcherIndex++];
1760 if (cast<VTSDNode>(N)->getVT() == VT)
1761 return true;
1762
1763 // Handle the case when VT is iPTR.
1764 return VT == MVT::iPTR && cast<VTSDNode>(N)->getVT() == TLI.getPointerTy();
1765}
1766
Chandler Carruth19e57022010-10-23 08:40:19 +00001767LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001768CheckInteger(const unsigned char *MatcherTable, unsigned &MatcherIndex,
1769 SDValue N) {
1770 int64_t Val = MatcherTable[MatcherIndex++];
1771 if (Val & 128)
1772 Val = GetVBR(Val, MatcherTable, MatcherIndex);
1773
1774 ConstantSDNode *C = dyn_cast<ConstantSDNode>(N);
1775 return C != 0 && C->getSExtValue() == Val;
1776}
1777
Chandler Carruth19e57022010-10-23 08:40:19 +00001778LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerda828e32010-03-03 07:46:25 +00001779CheckAndImm(const unsigned char *MatcherTable, unsigned &MatcherIndex,
1780 SDValue N, SelectionDAGISel &SDISel) {
1781 int64_t Val = MatcherTable[MatcherIndex++];
1782 if (Val & 128)
1783 Val = GetVBR(Val, MatcherTable, MatcherIndex);
1784
1785 if (N->getOpcode() != ISD::AND) return false;
1786
1787 ConstantSDNode *C = dyn_cast<ConstantSDNode>(N->getOperand(1));
1788 return C != 0 && SDISel.CheckAndMask(N.getOperand(0), C, Val);
1789}
1790
Chandler Carruth19e57022010-10-23 08:40:19 +00001791LLVM_ATTRIBUTE_ALWAYS_INLINE static bool
Chris Lattnerda828e32010-03-03 07:46:25 +00001792CheckOrImm(const unsigned char *MatcherTable, unsigned &MatcherIndex,
1793 SDValue N, SelectionDAGISel &SDISel) {
1794 int64_t Val = MatcherTable[MatcherIndex++];
1795 if (Val & 128)
1796 Val = GetVBR(Val, MatcherTable, MatcherIndex);
1797
1798 if (N->getOpcode() != ISD::OR) return false;
1799
1800 ConstantSDNode *C = dyn_cast<ConstantSDNode>(N->getOperand(1));
1801 return C != 0 && SDISel.CheckOrMask(N.getOperand(0), C, Val);
1802}
1803
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001804/// IsPredicateKnownToFail - If we know how and can do so without pushing a
1805/// scope, evaluate the current node. If the current predicate is known to
1806/// fail, set Result=true and return anything. If the current predicate is
1807/// known to pass, set Result=false and return the MatcherIndex to continue
1808/// with. If the current predicate is unknown, set Result=false and return the
1809/// MatcherIndex to continue with.
1810static unsigned IsPredicateKnownToFail(const unsigned char *Table,
1811 unsigned Index, SDValue N,
Chris Lattnerda828e32010-03-03 07:46:25 +00001812 bool &Result, SelectionDAGISel &SDISel,
Chris Lattnerd847bc22010-09-21 22:00:25 +00001813 SmallVectorImpl<std::pair<SDValue, SDNode*> > &RecordedNodes) {
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001814 switch (Table[Index++]) {
1815 default:
1816 Result = false;
1817 return Index-1; // Could not evaluate this predicate.
Chris Lattnerda828e32010-03-03 07:46:25 +00001818 case SelectionDAGISel::OPC_CheckSame:
1819 Result = !::CheckSame(Table, Index, N, RecordedNodes);
1820 return Index;
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001821 case SelectionDAGISel::OPC_CheckPatternPredicate:
Chris Lattnerda828e32010-03-03 07:46:25 +00001822 Result = !::CheckPatternPredicate(Table, Index, SDISel);
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001823 return Index;
1824 case SelectionDAGISel::OPC_CheckPredicate:
Chris Lattnerda828e32010-03-03 07:46:25 +00001825 Result = !::CheckNodePredicate(Table, Index, SDISel, N.getNode());
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001826 return Index;
1827 case SelectionDAGISel::OPC_CheckOpcode:
1828 Result = !::CheckOpcode(Table, Index, N.getNode());
1829 return Index;
1830 case SelectionDAGISel::OPC_CheckType:
1831 Result = !::CheckType(Table, Index, N, SDISel.TLI);
1832 return Index;
1833 case SelectionDAGISel::OPC_CheckChild0Type:
1834 case SelectionDAGISel::OPC_CheckChild1Type:
1835 case SelectionDAGISel::OPC_CheckChild2Type:
1836 case SelectionDAGISel::OPC_CheckChild3Type:
1837 case SelectionDAGISel::OPC_CheckChild4Type:
1838 case SelectionDAGISel::OPC_CheckChild5Type:
1839 case SelectionDAGISel::OPC_CheckChild6Type:
Chris Lattnerda828e32010-03-03 07:46:25 +00001840 case SelectionDAGISel::OPC_CheckChild7Type:
1841 Result = !::CheckChildType(Table, Index, N, SDISel.TLI,
1842 Table[Index-1] - SelectionDAGISel::OPC_CheckChild0Type);
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001843 return Index;
Chris Lattnerda828e32010-03-03 07:46:25 +00001844 case SelectionDAGISel::OPC_CheckCondCode:
1845 Result = !::CheckCondCode(Table, Index, N);
1846 return Index;
1847 case SelectionDAGISel::OPC_CheckValueType:
1848 Result = !::CheckValueType(Table, Index, N, SDISel.TLI);
1849 return Index;
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001850 case SelectionDAGISel::OPC_CheckInteger:
1851 Result = !::CheckInteger(Table, Index, N);
1852 return Index;
Chris Lattnerda828e32010-03-03 07:46:25 +00001853 case SelectionDAGISel::OPC_CheckAndImm:
1854 Result = !::CheckAndImm(Table, Index, N, SDISel);
1855 return Index;
1856 case SelectionDAGISel::OPC_CheckOrImm:
1857 Result = !::CheckOrImm(Table, Index, N, SDISel);
1858 return Index;
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00001859 }
1860}
1861
Dan Gohmanb3579832010-04-15 17:08:50 +00001862namespace {
Chris Lattner3ff1e4d2010-03-02 06:55:04 +00001863
Chris Lattner2a49d572010-02-28 22:37:22 +00001864struct MatchScope {
1865 /// FailIndex - If this match fails, this is the index to continue with.
1866 unsigned FailIndex;
1867
1868 /// NodeStack - The node stack when the scope was formed.
1869 SmallVector<SDValue, 4> NodeStack;
1870
1871 /// NumRecordedNodes - The number of recorded nodes when the scope was formed.
1872 unsigned NumRecordedNodes;
1873
1874 /// NumMatchedMemRefs - The number of matched memref entries.
1875 unsigned NumMatchedMemRefs;
1876
1877 /// InputChain/InputFlag - The current chain/flag
1878 SDValue InputChain, InputFlag;
1879
1880 /// HasChainNodesMatched - True if the ChainNodesMatched list is non-empty.
1881 bool HasChainNodesMatched, HasFlagResultNodesMatched;
1882};
1883
Dan Gohmanb3579832010-04-15 17:08:50 +00001884}
1885
Chris Lattner2a49d572010-02-28 22:37:22 +00001886SDNode *SelectionDAGISel::
1887SelectCodeCommon(SDNode *NodeToMatch, const unsigned char *MatcherTable,
1888 unsigned TableSize) {
1889 // FIXME: Should these even be selected? Handle these cases in the caller?
1890 switch (NodeToMatch->getOpcode()) {
1891 default:
1892 break;
1893 case ISD::EntryToken: // These nodes remain the same.
1894 case ISD::BasicBlock:
1895 case ISD::Register:
Chris Lattner3b9d6212010-03-14 17:53:23 +00001896 //case ISD::VALUETYPE:
1897 //case ISD::CONDCODE:
Chris Lattner2a49d572010-02-28 22:37:22 +00001898 case ISD::HANDLENODE:
Chris Lattnerdecc2672010-04-07 05:20:54 +00001899 case ISD::MDNODE_SDNODE:
Chris Lattner2a49d572010-02-28 22:37:22 +00001900 case ISD::TargetConstant:
1901 case ISD::TargetConstantFP:
1902 case ISD::TargetConstantPool:
1903 case ISD::TargetFrameIndex:
1904 case ISD::TargetExternalSymbol:
1905 case ISD::TargetBlockAddress:
1906 case ISD::TargetJumpTable:
1907 case ISD::TargetGlobalTLSAddress:
1908 case ISD::TargetGlobalAddress:
1909 case ISD::TokenFactor:
1910 case ISD::CopyFromReg:
1911 case ISD::CopyToReg:
Chris Lattner7561d482010-03-14 02:33:54 +00001912 case ISD::EH_LABEL:
Chris Lattnerd1b73822010-03-02 22:20:06 +00001913 NodeToMatch->setNodeId(-1); // Mark selected.
Chris Lattner2a49d572010-02-28 22:37:22 +00001914 return 0;
1915 case ISD::AssertSext:
1916 case ISD::AssertZext:
1917 CurDAG->ReplaceAllUsesOfValueWith(SDValue(NodeToMatch, 0),
1918 NodeToMatch->getOperand(0));
1919 return 0;
1920 case ISD::INLINEASM: return Select_INLINEASM(NodeToMatch);
Chris Lattner2a49d572010-02-28 22:37:22 +00001921 case ISD::UNDEF: return Select_UNDEF(NodeToMatch);
1922 }
1923
1924 assert(!NodeToMatch->isMachineOpcode() && "Node already selected!");
1925
1926 // Set up the node stack with NodeToMatch as the only node on the stack.
1927 SmallVector<SDValue, 8> NodeStack;
1928 SDValue N = SDValue(NodeToMatch, 0);
1929 NodeStack.push_back(N);
1930
1931 // MatchScopes - Scopes used when matching, if a match failure happens, this
1932 // indicates where to continue checking.
1933 SmallVector<MatchScope, 8> MatchScopes;
1934
1935 // RecordedNodes - This is the set of nodes that have been recorded by the
Chris Lattnerd847bc22010-09-21 22:00:25 +00001936 // state machine. The second value is the parent of the node, or null if the
1937 // root is recorded.
1938 SmallVector<std::pair<SDValue, SDNode*>, 8> RecordedNodes;
Chris Lattner2a49d572010-02-28 22:37:22 +00001939
1940 // MatchedMemRefs - This is the set of MemRef's we've seen in the input
1941 // pattern.
1942 SmallVector<MachineMemOperand*, 2> MatchedMemRefs;
1943
1944 // These are the current input chain and flag for use when generating nodes.
1945 // Various Emit operations change these. For example, emitting a copytoreg
1946 // uses and updates these.
1947 SDValue InputChain, InputFlag;
1948
1949 // ChainNodesMatched - If a pattern matches nodes that have input/output
1950 // chains, the OPC_EmitMergeInputChains operation is emitted which indicates
1951 // which ones they are. The result is captured into this list so that we can
1952 // update the chain results when the pattern is complete.
1953 SmallVector<SDNode*, 3> ChainNodesMatched;
1954 SmallVector<SDNode*, 3> FlagResultNodesMatched;
1955
1956 DEBUG(errs() << "ISEL: Starting pattern match on root node: ";
1957 NodeToMatch->dump(CurDAG);
1958 errs() << '\n');
1959
Chris Lattner7390eeb2010-03-01 18:47:11 +00001960 // Determine where to start the interpreter. Normally we start at opcode #0,
1961 // but if the state machine starts with an OPC_SwitchOpcode, then we
1962 // accelerate the first lookup (which is guaranteed to be hot) with the
1963 // OpcodeOffset table.
Chris Lattner2a49d572010-02-28 22:37:22 +00001964 unsigned MatcherIndex = 0;
Chris Lattner7390eeb2010-03-01 18:47:11 +00001965
1966 if (!OpcodeOffset.empty()) {
1967 // Already computed the OpcodeOffset table, just index into it.
1968 if (N.getOpcode() < OpcodeOffset.size())
1969 MatcherIndex = OpcodeOffset[N.getOpcode()];
1970 DEBUG(errs() << " Initial Opcode index to " << MatcherIndex << "\n");
1971
1972 } else if (MatcherTable[0] == OPC_SwitchOpcode) {
1973 // Otherwise, the table isn't computed, but the state machine does start
1974 // with an OPC_SwitchOpcode instruction. Populate the table now, since this
1975 // is the first time we're selecting an instruction.
1976 unsigned Idx = 1;
1977 while (1) {
1978 // Get the size of this case.
1979 unsigned CaseSize = MatcherTable[Idx++];
1980 if (CaseSize & 128)
1981 CaseSize = GetVBR(CaseSize, MatcherTable, Idx);
1982 if (CaseSize == 0) break;
1983
1984 // Get the opcode, add the index to the table.
Chris Lattnerd5d5a3d2010-03-25 06:33:05 +00001985 uint16_t Opc = MatcherTable[Idx++];
1986 Opc |= (unsigned short)MatcherTable[Idx++] << 8;
Chris Lattner7390eeb2010-03-01 18:47:11 +00001987 if (Opc >= OpcodeOffset.size())
1988 OpcodeOffset.resize((Opc+1)*2);
1989 OpcodeOffset[Opc] = Idx;
1990 Idx += CaseSize;
1991 }
1992
1993 // Okay, do the lookup for the first opcode.
1994 if (N.getOpcode() < OpcodeOffset.size())
1995 MatcherIndex = OpcodeOffset[N.getOpcode()];
1996 }
1997
Chris Lattner2a49d572010-02-28 22:37:22 +00001998 while (1) {
1999 assert(MatcherIndex < TableSize && "Invalid index");
Dan Gohman19b38262010-03-09 02:15:05 +00002000#ifndef NDEBUG
2001 unsigned CurrentOpcodeIndex = MatcherIndex;
2002#endif
Chris Lattner2a49d572010-02-28 22:37:22 +00002003 BuiltinOpcodes Opcode = (BuiltinOpcodes)MatcherTable[MatcherIndex++];
2004 switch (Opcode) {
2005 case OPC_Scope: {
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00002006 // Okay, the semantics of this operation are that we should push a scope
2007 // then evaluate the first child. However, pushing a scope only to have
2008 // the first check fail (which then pops it) is inefficient. If we can
2009 // determine immediately that the first check (or first several) will
2010 // immediately fail, don't even bother pushing a scope for them.
2011 unsigned FailIndex;
2012
2013 while (1) {
2014 unsigned NumToSkip = MatcherTable[MatcherIndex++];
2015 if (NumToSkip & 128)
2016 NumToSkip = GetVBR(NumToSkip, MatcherTable, MatcherIndex);
2017 // Found the end of the scope with no match.
2018 if (NumToSkip == 0) {
2019 FailIndex = 0;
2020 break;
2021 }
2022
2023 FailIndex = MatcherIndex+NumToSkip;
2024
Chris Lattnera6f86932010-03-27 18:54:50 +00002025 unsigned MatcherIndexOfPredicate = MatcherIndex;
2026 (void)MatcherIndexOfPredicate; // silence warning.
2027
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00002028 // If we can't evaluate this predicate without pushing a scope (e.g. if
2029 // it is a 'MoveParent') or if the predicate succeeds on this node, we
2030 // push the scope and evaluate the full predicate chain.
2031 bool Result;
2032 MatcherIndex = IsPredicateKnownToFail(MatcherTable, MatcherIndex, N,
Chris Lattnerda828e32010-03-03 07:46:25 +00002033 Result, *this, RecordedNodes);
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00002034 if (!Result)
2035 break;
2036
Chris Lattnera6f86932010-03-27 18:54:50 +00002037 DEBUG(errs() << " Skipped scope entry (due to false predicate) at "
2038 << "index " << MatcherIndexOfPredicate
2039 << ", continuing at " << FailIndex << "\n");
Chris Lattnerbed993d2010-03-28 19:46:56 +00002040 ++NumDAGIselRetries;
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00002041
2042 // Otherwise, we know that this case of the Scope is guaranteed to fail,
2043 // move to the next case.
2044 MatcherIndex = FailIndex;
2045 }
2046
2047 // If the whole scope failed to match, bail.
2048 if (FailIndex == 0) break;
2049
Chris Lattner2a49d572010-02-28 22:37:22 +00002050 // Push a MatchScope which indicates where to go if the first child fails
2051 // to match.
2052 MatchScope NewEntry;
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00002053 NewEntry.FailIndex = FailIndex;
Chris Lattner2a49d572010-02-28 22:37:22 +00002054 NewEntry.NodeStack.append(NodeStack.begin(), NodeStack.end());
2055 NewEntry.NumRecordedNodes = RecordedNodes.size();
2056 NewEntry.NumMatchedMemRefs = MatchedMemRefs.size();
2057 NewEntry.InputChain = InputChain;
2058 NewEntry.InputFlag = InputFlag;
2059 NewEntry.HasChainNodesMatched = !ChainNodesMatched.empty();
2060 NewEntry.HasFlagResultNodesMatched = !FlagResultNodesMatched.empty();
2061 MatchScopes.push_back(NewEntry);
2062 continue;
2063 }
Chris Lattnerd847bc22010-09-21 22:00:25 +00002064 case OPC_RecordNode: {
Chris Lattner2a49d572010-02-28 22:37:22 +00002065 // Remember this node, it may end up being an operand in the pattern.
Chris Lattnerd847bc22010-09-21 22:00:25 +00002066 SDNode *Parent = 0;
2067 if (NodeStack.size() > 1)
2068 Parent = NodeStack[NodeStack.size()-2].getNode();
2069 RecordedNodes.push_back(std::make_pair(N, Parent));
Chris Lattner2a49d572010-02-28 22:37:22 +00002070 continue;
Chris Lattnerd847bc22010-09-21 22:00:25 +00002071 }
Chris Lattner2a49d572010-02-28 22:37:22 +00002072
2073 case OPC_RecordChild0: case OPC_RecordChild1:
2074 case OPC_RecordChild2: case OPC_RecordChild3:
2075 case OPC_RecordChild4: case OPC_RecordChild5:
2076 case OPC_RecordChild6: case OPC_RecordChild7: {
2077 unsigned ChildNo = Opcode-OPC_RecordChild0;
2078 if (ChildNo >= N.getNumOperands())
2079 break; // Match fails if out of range child #.
2080
Chris Lattnerd847bc22010-09-21 22:00:25 +00002081 RecordedNodes.push_back(std::make_pair(N->getOperand(ChildNo),
2082 N.getNode()));
Chris Lattner2a49d572010-02-28 22:37:22 +00002083 continue;
2084 }
2085 case OPC_RecordMemRef:
2086 MatchedMemRefs.push_back(cast<MemSDNode>(N)->getMemOperand());
2087 continue;
2088
2089 case OPC_CaptureFlagInput:
2090 // If the current node has an input flag, capture it in InputFlag.
2091 if (N->getNumOperands() != 0 &&
2092 N->getOperand(N->getNumOperands()-1).getValueType() == MVT::Flag)
2093 InputFlag = N->getOperand(N->getNumOperands()-1);
2094 continue;
2095
2096 case OPC_MoveChild: {
2097 unsigned ChildNo = MatcherTable[MatcherIndex++];
2098 if (ChildNo >= N.getNumOperands())
2099 break; // Match fails if out of range child #.
2100 N = N.getOperand(ChildNo);
2101 NodeStack.push_back(N);
2102 continue;
2103 }
2104
2105 case OPC_MoveParent:
2106 // Pop the current node off the NodeStack.
2107 NodeStack.pop_back();
2108 assert(!NodeStack.empty() && "Node stack imbalance!");
2109 N = NodeStack.back();
2110 continue;
2111
Chris Lattnerda828e32010-03-03 07:46:25 +00002112 case OPC_CheckSame:
2113 if (!::CheckSame(MatcherTable, MatcherIndex, N, RecordedNodes)) break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002114 continue;
Chris Lattner2a49d572010-02-28 22:37:22 +00002115 case OPC_CheckPatternPredicate:
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00002116 if (!::CheckPatternPredicate(MatcherTable, MatcherIndex, *this)) break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002117 continue;
2118 case OPC_CheckPredicate:
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00002119 if (!::CheckNodePredicate(MatcherTable, MatcherIndex, *this,
2120 N.getNode()))
2121 break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002122 continue;
Chris Lattner57bf8a42010-03-04 01:23:08 +00002123 case OPC_CheckComplexPat: {
2124 unsigned CPNum = MatcherTable[MatcherIndex++];
2125 unsigned RecNo = MatcherTable[MatcherIndex++];
2126 assert(RecNo < RecordedNodes.size() && "Invalid CheckComplexPat");
Chris Lattnerd847bc22010-09-21 22:00:25 +00002127 if (!CheckComplexPattern(NodeToMatch, RecordedNodes[RecNo].second,
2128 RecordedNodes[RecNo].first, CPNum,
Chris Lattner57bf8a42010-03-04 01:23:08 +00002129 RecordedNodes))
Chris Lattner2a49d572010-02-28 22:37:22 +00002130 break;
2131 continue;
Chris Lattner57bf8a42010-03-04 01:23:08 +00002132 }
Chris Lattner2a49d572010-02-28 22:37:22 +00002133 case OPC_CheckOpcode:
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00002134 if (!::CheckOpcode(MatcherTable, MatcherIndex, N.getNode())) break;
2135 continue;
2136
2137 case OPC_CheckType:
2138 if (!::CheckType(MatcherTable, MatcherIndex, N, TLI)) break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002139 continue;
2140
Chris Lattnereb669212010-03-01 06:59:22 +00002141 case OPC_SwitchOpcode: {
2142 unsigned CurNodeOpcode = N.getOpcode();
Chris Lattner7d892d62010-03-01 07:43:08 +00002143 unsigned SwitchStart = MatcherIndex-1; (void)SwitchStart;
Chris Lattnereb669212010-03-01 06:59:22 +00002144 unsigned CaseSize;
2145 while (1) {
2146 // Get the size of this case.
2147 CaseSize = MatcherTable[MatcherIndex++];
2148 if (CaseSize & 128)
2149 CaseSize = GetVBR(CaseSize, MatcherTable, MatcherIndex);
2150 if (CaseSize == 0) break;
2151
Chris Lattnerd5d5a3d2010-03-25 06:33:05 +00002152 uint16_t Opc = MatcherTable[MatcherIndex++];
2153 Opc |= (unsigned short)MatcherTable[MatcherIndex++] << 8;
2154
Chris Lattnereb669212010-03-01 06:59:22 +00002155 // If the opcode matches, then we will execute this case.
Chris Lattnerd5d5a3d2010-03-25 06:33:05 +00002156 if (CurNodeOpcode == Opc)
Chris Lattnereb669212010-03-01 06:59:22 +00002157 break;
2158
2159 // Otherwise, skip over this case.
2160 MatcherIndex += CaseSize;
2161 }
2162
Chris Lattnercfe2eab2010-03-03 06:28:15 +00002163 // If no cases matched, bail out.
Chris Lattnereb669212010-03-01 06:59:22 +00002164 if (CaseSize == 0) break;
2165
2166 // Otherwise, execute the case we found.
2167 DEBUG(errs() << " OpcodeSwitch from " << SwitchStart
2168 << " to " << MatcherIndex << "\n");
2169 continue;
2170 }
2171
Chris Lattnercfe2eab2010-03-03 06:28:15 +00002172 case OPC_SwitchType: {
2173 MVT::SimpleValueType CurNodeVT = N.getValueType().getSimpleVT().SimpleTy;
2174 unsigned SwitchStart = MatcherIndex-1; (void)SwitchStart;
2175 unsigned CaseSize;
2176 while (1) {
2177 // Get the size of this case.
2178 CaseSize = MatcherTable[MatcherIndex++];
2179 if (CaseSize & 128)
2180 CaseSize = GetVBR(CaseSize, MatcherTable, MatcherIndex);
2181 if (CaseSize == 0) break;
2182
2183 MVT::SimpleValueType CaseVT =
2184 (MVT::SimpleValueType)MatcherTable[MatcherIndex++];
2185 if (CaseVT == MVT::iPTR)
2186 CaseVT = TLI.getPointerTy().SimpleTy;
2187
2188 // If the VT matches, then we will execute this case.
2189 if (CurNodeVT == CaseVT)
2190 break;
2191
2192 // Otherwise, skip over this case.
2193 MatcherIndex += CaseSize;
2194 }
2195
2196 // If no cases matched, bail out.
2197 if (CaseSize == 0) break;
2198
2199 // Otherwise, execute the case we found.
2200 DEBUG(errs() << " TypeSwitch[" << EVT(CurNodeVT).getEVTString()
2201 << "] from " << SwitchStart << " to " << MatcherIndex<<'\n');
2202 continue;
2203 }
Chris Lattner2a49d572010-02-28 22:37:22 +00002204 case OPC_CheckChild0Type: case OPC_CheckChild1Type:
2205 case OPC_CheckChild2Type: case OPC_CheckChild3Type:
2206 case OPC_CheckChild4Type: case OPC_CheckChild5Type:
Chris Lattnerda828e32010-03-03 07:46:25 +00002207 case OPC_CheckChild6Type: case OPC_CheckChild7Type:
2208 if (!::CheckChildType(MatcherTable, MatcherIndex, N, TLI,
2209 Opcode-OPC_CheckChild0Type))
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00002210 break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002211 continue;
Chris Lattner2a49d572010-02-28 22:37:22 +00002212 case OPC_CheckCondCode:
Chris Lattnerda828e32010-03-03 07:46:25 +00002213 if (!::CheckCondCode(MatcherTable, MatcherIndex, N)) break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002214 continue;
Chris Lattnerda828e32010-03-03 07:46:25 +00002215 case OPC_CheckValueType:
2216 if (!::CheckValueType(MatcherTable, MatcherIndex, N, TLI)) break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002217 continue;
Chris Lattnerf1b7c7d2010-03-03 07:31:15 +00002218 case OPC_CheckInteger:
2219 if (!::CheckInteger(MatcherTable, MatcherIndex, N)) break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002220 continue;
Chris Lattnerda828e32010-03-03 07:46:25 +00002221 case OPC_CheckAndImm:
2222 if (!::CheckAndImm(MatcherTable, MatcherIndex, N, *this)) break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002223 continue;
Chris Lattnerda828e32010-03-03 07:46:25 +00002224 case OPC_CheckOrImm:
2225 if (!::CheckOrImm(MatcherTable, MatcherIndex, N, *this)) break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002226 continue;
Chris Lattner2a49d572010-02-28 22:37:22 +00002227
2228 case OPC_CheckFoldableChainNode: {
2229 assert(NodeStack.size() != 1 && "No parent node");
2230 // Verify that all intermediate nodes between the root and this one have
2231 // a single use.
2232 bool HasMultipleUses = false;
2233 for (unsigned i = 1, e = NodeStack.size()-1; i != e; ++i)
2234 if (!NodeStack[i].hasOneUse()) {
2235 HasMultipleUses = true;
2236 break;
2237 }
2238 if (HasMultipleUses) break;
2239
2240 // Check to see that the target thinks this is profitable to fold and that
2241 // we can fold it without inducing cycles in the graph.
2242 if (!IsProfitableToFold(N, NodeStack[NodeStack.size()-2].getNode(),
2243 NodeToMatch) ||
2244 !IsLegalToFold(N, NodeStack[NodeStack.size()-2].getNode(),
Dan Gohmand858e902010-04-17 15:26:15 +00002245 NodeToMatch, OptLevel,
2246 true/*We validate our own chains*/))
Chris Lattner2a49d572010-02-28 22:37:22 +00002247 break;
2248
2249 continue;
2250 }
Chris Lattner2a49d572010-02-28 22:37:22 +00002251 case OPC_EmitInteger: {
2252 MVT::SimpleValueType VT =
2253 (MVT::SimpleValueType)MatcherTable[MatcherIndex++];
2254 int64_t Val = MatcherTable[MatcherIndex++];
2255 if (Val & 128)
2256 Val = GetVBR(Val, MatcherTable, MatcherIndex);
Chris Lattnerd847bc22010-09-21 22:00:25 +00002257 RecordedNodes.push_back(std::pair<SDValue, SDNode*>(
Oscar Fuentesdf30bdb2010-09-23 16:59:36 +00002258 CurDAG->getTargetConstant(Val, VT), (SDNode*)0));
Chris Lattner2a49d572010-02-28 22:37:22 +00002259 continue;
2260 }
2261 case OPC_EmitRegister: {
2262 MVT::SimpleValueType VT =
2263 (MVT::SimpleValueType)MatcherTable[MatcherIndex++];
2264 unsigned RegNo = MatcherTable[MatcherIndex++];
Chris Lattnerd847bc22010-09-21 22:00:25 +00002265 RecordedNodes.push_back(std::pair<SDValue, SDNode*>(
Oscar Fuentesdf30bdb2010-09-23 16:59:36 +00002266 CurDAG->getRegister(RegNo, VT), (SDNode*)0));
Chris Lattner2a49d572010-02-28 22:37:22 +00002267 continue;
2268 }
2269
2270 case OPC_EmitConvertToTarget: {
2271 // Convert from IMM/FPIMM to target version.
2272 unsigned RecNo = MatcherTable[MatcherIndex++];
2273 assert(RecNo < RecordedNodes.size() && "Invalid CheckSame");
Chris Lattnerd847bc22010-09-21 22:00:25 +00002274 SDValue Imm = RecordedNodes[RecNo].first;
Chris Lattner2a49d572010-02-28 22:37:22 +00002275
2276 if (Imm->getOpcode() == ISD::Constant) {
2277 int64_t Val = cast<ConstantSDNode>(Imm)->getZExtValue();
2278 Imm = CurDAG->getTargetConstant(Val, Imm.getValueType());
2279 } else if (Imm->getOpcode() == ISD::ConstantFP) {
2280 const ConstantFP *Val=cast<ConstantFPSDNode>(Imm)->getConstantFPValue();
2281 Imm = CurDAG->getTargetConstantFP(*Val, Imm.getValueType());
2282 }
2283
Chris Lattnerd847bc22010-09-21 22:00:25 +00002284 RecordedNodes.push_back(std::make_pair(Imm, RecordedNodes[RecNo].second));
Chris Lattner2a49d572010-02-28 22:37:22 +00002285 continue;
2286 }
2287
Chris Lattneraa4e3392010-03-28 05:50:16 +00002288 case OPC_EmitMergeInputChains1_0: // OPC_EmitMergeInputChains, 1, 0
2289 case OPC_EmitMergeInputChains1_1: { // OPC_EmitMergeInputChains, 1, 1
2290 // These are space-optimized forms of OPC_EmitMergeInputChains.
2291 assert(InputChain.getNode() == 0 &&
2292 "EmitMergeInputChains should be the first chain producing node");
2293 assert(ChainNodesMatched.empty() &&
2294 "Should only have one EmitMergeInputChains per match");
2295
2296 // Read all of the chained nodes.
2297 unsigned RecNo = Opcode == OPC_EmitMergeInputChains1_1;
2298 assert(RecNo < RecordedNodes.size() && "Invalid CheckSame");
Chris Lattnerd847bc22010-09-21 22:00:25 +00002299 ChainNodesMatched.push_back(RecordedNodes[RecNo].first.getNode());
Chris Lattneraa4e3392010-03-28 05:50:16 +00002300
2301 // FIXME: What if other value results of the node have uses not matched
2302 // by this pattern?
2303 if (ChainNodesMatched.back() != NodeToMatch &&
Chris Lattnerd847bc22010-09-21 22:00:25 +00002304 !RecordedNodes[RecNo].first.hasOneUse()) {
Chris Lattneraa4e3392010-03-28 05:50:16 +00002305 ChainNodesMatched.clear();
2306 break;
2307 }
2308
2309 // Merge the input chains if they are not intra-pattern references.
2310 InputChain = HandleMergeInputChains(ChainNodesMatched, CurDAG);
2311
2312 if (InputChain.getNode() == 0)
2313 break; // Failed to merge.
2314 continue;
2315 }
2316
Chris Lattner2a49d572010-02-28 22:37:22 +00002317 case OPC_EmitMergeInputChains: {
2318 assert(InputChain.getNode() == 0 &&
2319 "EmitMergeInputChains should be the first chain producing node");
2320 // This node gets a list of nodes we matched in the input that have
2321 // chains. We want to token factor all of the input chains to these nodes
2322 // together. However, if any of the input chains is actually one of the
2323 // nodes matched in this pattern, then we have an intra-match reference.
2324 // Ignore these because the newly token factored chain should not refer to
2325 // the old nodes.
2326 unsigned NumChains = MatcherTable[MatcherIndex++];
2327 assert(NumChains != 0 && "Can't TF zero chains");
2328
2329 assert(ChainNodesMatched.empty() &&
2330 "Should only have one EmitMergeInputChains per match");
2331
Chris Lattner2a49d572010-02-28 22:37:22 +00002332 // Read all of the chained nodes.
Chris Lattner00592ec2010-03-02 19:34:59 +00002333 for (unsigned i = 0; i != NumChains; ++i) {
2334 unsigned RecNo = MatcherTable[MatcherIndex++];
Chris Lattner2a49d572010-02-28 22:37:22 +00002335 assert(RecNo < RecordedNodes.size() && "Invalid CheckSame");
Chris Lattnerd847bc22010-09-21 22:00:25 +00002336 ChainNodesMatched.push_back(RecordedNodes[RecNo].first.getNode());
Chris Lattner2a49d572010-02-28 22:37:22 +00002337
2338 // FIXME: What if other value results of the node have uses not matched
2339 // by this pattern?
2340 if (ChainNodesMatched.back() != NodeToMatch &&
Chris Lattnerd847bc22010-09-21 22:00:25 +00002341 !RecordedNodes[RecNo].first.hasOneUse()) {
Chris Lattner2a49d572010-02-28 22:37:22 +00002342 ChainNodesMatched.clear();
2343 break;
2344 }
2345 }
Chris Lattner6b307922010-03-02 00:00:03 +00002346
2347 // If the inner loop broke out, the match fails.
2348 if (ChainNodesMatched.empty())
2349 break;
Chris Lattner2a49d572010-02-28 22:37:22 +00002350
Chris Lattner6b307922010-03-02 00:00:03 +00002351 // Merge the input chains if they are not intra-pattern references.
2352 InputChain = HandleMergeInputChains(ChainNodesMatched, CurDAG);
2353
2354 if (InputChain.getNode() == 0)
2355 break; // Failed to merge.
Chris Lattner2a49d572010-02-28 22:37:22 +00002356
Chris Lattner2a49d572010-02-28 22:37:22 +00002357 continue;
2358 }
2359
2360 case OPC_EmitCopyToReg: {
2361 unsigned RecNo = MatcherTable[MatcherIndex++];
2362 assert(RecNo < RecordedNodes.size() && "Invalid CheckSame");
2363 unsigned DestPhysReg = MatcherTable[MatcherIndex++];
2364
2365 if (InputChain.getNode() == 0)
2366 InputChain = CurDAG->getEntryNode();
2367
2368 InputChain = CurDAG->getCopyToReg(InputChain, NodeToMatch->getDebugLoc(),
Chris Lattnerd847bc22010-09-21 22:00:25 +00002369 DestPhysReg, RecordedNodes[RecNo].first,
Chris Lattner2a49d572010-02-28 22:37:22 +00002370 InputFlag);
2371
2372 InputFlag = InputChain.getValue(1);
2373 continue;
2374 }
2375
2376 case OPC_EmitNodeXForm: {
2377 unsigned XFormNo = MatcherTable[MatcherIndex++];
2378 unsigned RecNo = MatcherTable[MatcherIndex++];
2379 assert(RecNo < RecordedNodes.size() && "Invalid CheckSame");
Chris Lattnerd847bc22010-09-21 22:00:25 +00002380 SDValue Res = RunSDNodeXForm(RecordedNodes[RecNo].first, XFormNo);
Oscar Fuentesdf30bdb2010-09-23 16:59:36 +00002381 RecordedNodes.push_back(std::pair<SDValue,SDNode*>(Res, (SDNode*) 0));
Chris Lattner2a49d572010-02-28 22:37:22 +00002382 continue;
2383 }
2384
2385 case OPC_EmitNode:
2386 case OPC_MorphNodeTo: {
Chris Lattner14df8dc2010-02-28 22:38:43 +00002387 uint16_t TargetOpc = MatcherTable[MatcherIndex++];
2388 TargetOpc |= (unsigned short)MatcherTable[MatcherIndex++] << 8;
Chris Lattner2a49d572010-02-28 22:37:22 +00002389 unsigned EmitNodeInfo = MatcherTable[MatcherIndex++];
2390 // Get the result VT list.
2391 unsigned NumVTs = MatcherTable[MatcherIndex++];
2392 SmallVector<EVT, 4> VTs;
2393 for (unsigned i = 0; i != NumVTs; ++i) {
2394 MVT::SimpleValueType VT =
2395 (MVT::SimpleValueType)MatcherTable[MatcherIndex++];
2396 if (VT == MVT::iPTR) VT = TLI.getPointerTy().SimpleTy;
2397 VTs.push_back(VT);
2398 }
2399
2400 if (EmitNodeInfo & OPFL_Chain)
2401 VTs.push_back(MVT::Other);
2402 if (EmitNodeInfo & OPFL_FlagOutput)
2403 VTs.push_back(MVT::Flag);
2404
Chris Lattner7d892d62010-03-01 07:43:08 +00002405 // This is hot code, so optimize the two most common cases of 1 and 2
2406 // results.
2407 SDVTList VTList;
2408 if (VTs.size() == 1)
2409 VTList = CurDAG->getVTList(VTs[0]);
2410 else if (VTs.size() == 2)
2411 VTList = CurDAG->getVTList(VTs[0], VTs[1]);
2412 else
2413 VTList = CurDAG->getVTList(VTs.data(), VTs.size());
Chris Lattner2a49d572010-02-28 22:37:22 +00002414
2415 // Get the operand list.
2416 unsigned NumOps = MatcherTable[MatcherIndex++];
2417 SmallVector<SDValue, 8> Ops;
2418 for (unsigned i = 0; i != NumOps; ++i) {
2419 unsigned RecNo = MatcherTable[MatcherIndex++];
2420 if (RecNo & 128)
2421 RecNo = GetVBR(RecNo, MatcherTable, MatcherIndex);
2422
2423 assert(RecNo < RecordedNodes.size() && "Invalid EmitNode");
Chris Lattnerd847bc22010-09-21 22:00:25 +00002424 Ops.push_back(RecordedNodes[RecNo].first);
Chris Lattner2a49d572010-02-28 22:37:22 +00002425 }
2426
2427 // If there are variadic operands to add, handle them now.
2428 if (EmitNodeInfo & OPFL_VariadicInfo) {
2429 // Determine the start index to copy from.
2430 unsigned FirstOpToCopy = getNumFixedFromVariadicInfo(EmitNodeInfo);
2431 FirstOpToCopy += (EmitNodeInfo & OPFL_Chain) ? 1 : 0;
2432 assert(NodeToMatch->getNumOperands() >= FirstOpToCopy &&
2433 "Invalid variadic node");
2434 // Copy all of the variadic operands, not including a potential flag
2435 // input.
2436 for (unsigned i = FirstOpToCopy, e = NodeToMatch->getNumOperands();
2437 i != e; ++i) {
2438 SDValue V = NodeToMatch->getOperand(i);
2439 if (V.getValueType() == MVT::Flag) break;
2440 Ops.push_back(V);
2441 }
2442 }
2443
2444 // If this has chain/flag inputs, add them.
2445 if (EmitNodeInfo & OPFL_Chain)
2446 Ops.push_back(InputChain);
2447 if ((EmitNodeInfo & OPFL_FlagInput) && InputFlag.getNode() != 0)
2448 Ops.push_back(InputFlag);
2449
2450 // Create the node.
2451 SDNode *Res = 0;
2452 if (Opcode != OPC_MorphNodeTo) {
2453 // If this is a normal EmitNode command, just create the new node and
2454 // add the results to the RecordedNodes list.
2455 Res = CurDAG->getMachineNode(TargetOpc, NodeToMatch->getDebugLoc(),
2456 VTList, Ops.data(), Ops.size());
2457
2458 // Add all the non-flag/non-chain results to the RecordedNodes list.
2459 for (unsigned i = 0, e = VTs.size(); i != e; ++i) {
2460 if (VTs[i] == MVT::Other || VTs[i] == MVT::Flag) break;
Chris Lattnerd847bc22010-09-21 22:00:25 +00002461 RecordedNodes.push_back(std::pair<SDValue,SDNode*>(SDValue(Res, i),
Oscar Fuentesdf30bdb2010-09-23 16:59:36 +00002462 (SDNode*) 0));
Chris Lattner2a49d572010-02-28 22:37:22 +00002463 }
2464
2465 } else {
Chris Lattner3ff1e4d2010-03-02 06:55:04 +00002466 Res = MorphNode(NodeToMatch, TargetOpc, VTList, Ops.data(), Ops.size(),
2467 EmitNodeInfo);
Chris Lattner2a49d572010-02-28 22:37:22 +00002468 }
2469
2470 // If the node had chain/flag results, update our notion of the current
2471 // chain and flag.
Chris Lattner82dd3d32010-03-02 07:50:03 +00002472 if (EmitNodeInfo & OPFL_FlagOutput) {
Chris Lattner2a49d572010-02-28 22:37:22 +00002473 InputFlag = SDValue(Res, VTs.size()-1);
2474 if (EmitNodeInfo & OPFL_Chain)
2475 InputChain = SDValue(Res, VTs.size()-2);
2476 } else if (EmitNodeInfo & OPFL_Chain)
2477 InputChain = SDValue(Res, VTs.size()-1);
2478
2479 // If the OPFL_MemRefs flag is set on this node, slap all of the
2480 // accumulated memrefs onto it.
2481 //
2482 // FIXME: This is vastly incorrect for patterns with multiple outputs
2483 // instructions that access memory and for ComplexPatterns that match
2484 // loads.
2485 if (EmitNodeInfo & OPFL_MemRefs) {
2486 MachineSDNode::mmo_iterator MemRefs =
2487 MF->allocateMemRefsArray(MatchedMemRefs.size());
2488 std::copy(MatchedMemRefs.begin(), MatchedMemRefs.end(), MemRefs);
2489 cast<MachineSDNode>(Res)
2490 ->setMemRefs(MemRefs, MemRefs + MatchedMemRefs.size());
2491 }
2492
2493 DEBUG(errs() << " "
2494 << (Opcode == OPC_MorphNodeTo ? "Morphed" : "Created")
2495 << " node: "; Res->dump(CurDAG); errs() << "\n");
2496
2497 // If this was a MorphNodeTo then we're completely done!
2498 if (Opcode == OPC_MorphNodeTo) {
2499 // Update chain and flag uses.
2500 UpdateChainsAndFlags(NodeToMatch, InputChain, ChainNodesMatched,
Chris Lattner82dd3d32010-03-02 07:50:03 +00002501 InputFlag, FlagResultNodesMatched, true);
2502 return Res;
Chris Lattner2a49d572010-02-28 22:37:22 +00002503 }
2504
2505 continue;
2506 }
2507
2508 case OPC_MarkFlagResults: {
2509 unsigned NumNodes = MatcherTable[MatcherIndex++];
2510
2511 // Read and remember all the flag-result nodes.
2512 for (unsigned i = 0; i != NumNodes; ++i) {
2513 unsigned RecNo = MatcherTable[MatcherIndex++];
2514 if (RecNo & 128)
2515 RecNo = GetVBR(RecNo, MatcherTable, MatcherIndex);
2516
2517 assert(RecNo < RecordedNodes.size() && "Invalid CheckSame");
Chris Lattnerd847bc22010-09-21 22:00:25 +00002518 FlagResultNodesMatched.push_back(RecordedNodes[RecNo].first.getNode());
Chris Lattner2a49d572010-02-28 22:37:22 +00002519 }
2520 continue;
2521 }
2522
2523 case OPC_CompleteMatch: {
2524 // The match has been completed, and any new nodes (if any) have been
2525 // created. Patch up references to the matched dag to use the newly
2526 // created nodes.
2527 unsigned NumResults = MatcherTable[MatcherIndex++];
2528
2529 for (unsigned i = 0; i != NumResults; ++i) {
2530 unsigned ResSlot = MatcherTable[MatcherIndex++];
2531 if (ResSlot & 128)
2532 ResSlot = GetVBR(ResSlot, MatcherTable, MatcherIndex);
2533
2534 assert(ResSlot < RecordedNodes.size() && "Invalid CheckSame");
Chris Lattnerd847bc22010-09-21 22:00:25 +00002535 SDValue Res = RecordedNodes[ResSlot].first;
Chris Lattner2a49d572010-02-28 22:37:22 +00002536
Chris Lattnerb0e483e2010-03-28 05:54:03 +00002537 assert(i < NodeToMatch->getNumValues() &&
2538 NodeToMatch->getValueType(i) != MVT::Other &&
2539 NodeToMatch->getValueType(i) != MVT::Flag &&
2540 "Invalid number of results to complete!");
Chris Lattner2a49d572010-02-28 22:37:22 +00002541 assert((NodeToMatch->getValueType(i) == Res.getValueType() ||
2542 NodeToMatch->getValueType(i) == MVT::iPTR ||
2543 Res.getValueType() == MVT::iPTR ||
2544 NodeToMatch->getValueType(i).getSizeInBits() ==
2545 Res.getValueType().getSizeInBits()) &&
2546 "invalid replacement");
2547 CurDAG->ReplaceAllUsesOfValueWith(SDValue(NodeToMatch, i), Res);
2548 }
2549
2550 // If the root node defines a flag, add it to the flag nodes to update
2551 // list.
2552 if (NodeToMatch->getValueType(NodeToMatch->getNumValues()-1) == MVT::Flag)
2553 FlagResultNodesMatched.push_back(NodeToMatch);
2554
2555 // Update chain and flag uses.
2556 UpdateChainsAndFlags(NodeToMatch, InputChain, ChainNodesMatched,
Chris Lattner82dd3d32010-03-02 07:50:03 +00002557 InputFlag, FlagResultNodesMatched, false);
Chris Lattner2a49d572010-02-28 22:37:22 +00002558
2559 assert(NodeToMatch->use_empty() &&
2560 "Didn't replace all uses of the node?");
2561
2562 // FIXME: We just return here, which interacts correctly with SelectRoot
2563 // above. We should fix this to not return an SDNode* anymore.
2564 return 0;
2565 }
2566 }
2567
2568 // If the code reached this point, then the match failed. See if there is
2569 // another child to try in the current 'Scope', otherwise pop it until we
2570 // find a case to check.
Dan Gohman19b38262010-03-09 02:15:05 +00002571 DEBUG(errs() << " Match failed at index " << CurrentOpcodeIndex << "\n");
Chris Lattnerbed993d2010-03-28 19:46:56 +00002572 ++NumDAGIselRetries;
Chris Lattner2a49d572010-02-28 22:37:22 +00002573 while (1) {
2574 if (MatchScopes.empty()) {
2575 CannotYetSelect(NodeToMatch);
2576 return 0;
2577 }
2578
2579 // Restore the interpreter state back to the point where the scope was
2580 // formed.
2581 MatchScope &LastScope = MatchScopes.back();
2582 RecordedNodes.resize(LastScope.NumRecordedNodes);
2583 NodeStack.clear();
2584 NodeStack.append(LastScope.NodeStack.begin(), LastScope.NodeStack.end());
2585 N = NodeStack.back();
2586
Chris Lattner2a49d572010-02-28 22:37:22 +00002587 if (LastScope.NumMatchedMemRefs != MatchedMemRefs.size())
2588 MatchedMemRefs.resize(LastScope.NumMatchedMemRefs);
2589 MatcherIndex = LastScope.FailIndex;
2590
Dan Gohman19b38262010-03-09 02:15:05 +00002591 DEBUG(errs() << " Continuing at " << MatcherIndex << "\n");
2592
Chris Lattner2a49d572010-02-28 22:37:22 +00002593 InputChain = LastScope.InputChain;
2594 InputFlag = LastScope.InputFlag;
2595 if (!LastScope.HasChainNodesMatched)
2596 ChainNodesMatched.clear();
2597 if (!LastScope.HasFlagResultNodesMatched)
2598 FlagResultNodesMatched.clear();
2599
2600 // Check to see what the offset is at the new MatcherIndex. If it is zero
2601 // we have reached the end of this scope, otherwise we have another child
2602 // in the current scope to try.
2603 unsigned NumToSkip = MatcherTable[MatcherIndex++];
2604 if (NumToSkip & 128)
2605 NumToSkip = GetVBR(NumToSkip, MatcherTable, MatcherIndex);
2606
2607 // If we have another child in this scope to match, update FailIndex and
2608 // try it.
2609 if (NumToSkip != 0) {
2610 LastScope.FailIndex = MatcherIndex+NumToSkip;
2611 break;
2612 }
2613
2614 // End of this scope, pop it and try the next child in the containing
2615 // scope.
2616 MatchScopes.pop_back();
2617 }
2618 }
2619}
2620
2621
2622
Dan Gohmaneeb3a002010-01-05 01:24:18 +00002623void SelectionDAGISel::CannotYetSelect(SDNode *N) {
Dan Gohmane1f188f2009-10-29 22:30:23 +00002624 std::string msg;
2625 raw_string_ostream Msg(msg);
2626 Msg << "Cannot yet select: ";
Chris Lattner2c4afd12010-03-04 00:21:16 +00002627
2628 if (N->getOpcode() != ISD::INTRINSIC_W_CHAIN &&
2629 N->getOpcode() != ISD::INTRINSIC_WO_CHAIN &&
2630 N->getOpcode() != ISD::INTRINSIC_VOID) {
2631 N->printrFull(Msg, CurDAG);
2632 } else {
2633 bool HasInputChain = N->getOperand(0).getValueType() == MVT::Other;
2634 unsigned iid =
2635 cast<ConstantSDNode>(N->getOperand(HasInputChain))->getZExtValue();
2636 if (iid < Intrinsic::num_intrinsics)
2637 Msg << "intrinsic %" << Intrinsic::getName((Intrinsic::ID)iid);
2638 else if (const TargetIntrinsicInfo *TII = TM.getIntrinsicInfo())
2639 Msg << "target intrinsic %" << TII->getName(iid);
2640 else
2641 Msg << "unknown intrinsic #" << iid;
2642 }
Chris Lattner75361b62010-04-07 22:58:41 +00002643 report_fatal_error(Msg.str());
Dan Gohmane1f188f2009-10-29 22:30:23 +00002644}
2645
Devang Patel19974732007-05-03 01:11:54 +00002646char SelectionDAGISel::ID = 0;