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Evan Chenga9c20912006-01-21 02:32:06 +00001//===---- ScheduleDAG.cpp - Implement the ScheduleDAG class ---------------===//
Chris Lattnerd32b2362005-08-18 18:45:24 +00002//
3// The LLVM Compiler Infrastructure
4//
Jim Laskey5a608dd2005-10-31 12:49:09 +00005// This file was developed by James M. Laskey and is distributed under the
Chris Lattnerd32b2362005-08-18 18:45:24 +00006// University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Jim Laskeye6b90fb2005-09-26 21:57:04 +000010// This implements a simple two pass scheduler. The first pass attempts to push
11// backward any lengthy instructions and critical paths. The second pass packs
12// instructions into semi-optimal time slots.
Chris Lattnerd32b2362005-08-18 18:45:24 +000013//
14//===----------------------------------------------------------------------===//
15
Evan Chenge165a782006-05-11 23:55:42 +000016#define DEBUG_TYPE "sched"
Chris Lattnerb0d21ef2006-03-08 04:25:59 +000017#include "llvm/CodeGen/ScheduleDAG.h"
Chris Lattner5839bf22005-08-26 17:15:30 +000018#include "llvm/CodeGen/MachineConstantPool.h"
Chris Lattner4ccd4062005-08-19 20:45:43 +000019#include "llvm/CodeGen/MachineFunction.h"
Chris Lattner4ccd4062005-08-19 20:45:43 +000020#include "llvm/CodeGen/SSARegMap.h"
Owen Anderson07000c62006-05-12 06:33:49 +000021#include "llvm/Target/TargetData.h"
Chris Lattner2d973e42005-08-18 20:07:59 +000022#include "llvm/Target/TargetMachine.h"
23#include "llvm/Target/TargetInstrInfo.h"
Chris Lattner025c39b2005-08-26 20:54:47 +000024#include "llvm/Target/TargetLowering.h"
Evan Chenge165a782006-05-11 23:55:42 +000025#include "llvm/Support/Debug.h"
Chris Lattner54a30b92006-03-20 01:51:46 +000026#include "llvm/Support/MathExtras.h"
Evan Chenge165a782006-05-11 23:55:42 +000027#include <iostream>
Chris Lattnerd32b2362005-08-18 18:45:24 +000028using namespace llvm;
29
Jim Laskeye6b90fb2005-09-26 21:57:04 +000030
Evan Chenge165a782006-05-11 23:55:42 +000031/// BuildSchedUnits - Build SUnits from the selection dag that we are input.
32/// This SUnit graph is similar to the SelectionDAG, but represents flagged
33/// together nodes with a single SUnit.
34void ScheduleDAG::BuildSchedUnits() {
35 // Reserve entries in the vector for each of the SUnits we are creating. This
36 // ensure that reallocation of the vector won't happen, so SUnit*'s won't get
37 // invalidated.
38 SUnits.reserve(std::distance(DAG.allnodes_begin(), DAG.allnodes_end()));
39
40 const InstrItineraryData &InstrItins = TM.getInstrItineraryData();
41
42 for (SelectionDAG::allnodes_iterator NI = DAG.allnodes_begin(),
43 E = DAG.allnodes_end(); NI != E; ++NI) {
44 if (isPassiveNode(NI)) // Leaf node, e.g. a TargetImmediate.
45 continue;
46
47 // If this node has already been processed, stop now.
48 if (SUnitMap[NI]) continue;
49
50 SUnit *NodeSUnit = NewSUnit(NI);
51
52 // See if anything is flagged to this node, if so, add them to flagged
53 // nodes. Nodes can have at most one flag input and one flag output. Flags
54 // are required the be the last operand and result of a node.
55
56 // Scan up, adding flagged preds to FlaggedNodes.
57 SDNode *N = NI;
58 while (N->getNumOperands() &&
59 N->getOperand(N->getNumOperands()-1).getValueType() == MVT::Flag) {
60 N = N->getOperand(N->getNumOperands()-1).Val;
61 NodeSUnit->FlaggedNodes.push_back(N);
62 SUnitMap[N] = NodeSUnit;
63 }
64
65 // Scan down, adding this node and any flagged succs to FlaggedNodes if they
66 // have a user of the flag operand.
67 N = NI;
68 while (N->getValueType(N->getNumValues()-1) == MVT::Flag) {
69 SDOperand FlagVal(N, N->getNumValues()-1);
70
71 // There are either zero or one users of the Flag result.
72 bool HasFlagUse = false;
73 for (SDNode::use_iterator UI = N->use_begin(), E = N->use_end();
74 UI != E; ++UI)
75 if (FlagVal.isOperand(*UI)) {
76 HasFlagUse = true;
77 NodeSUnit->FlaggedNodes.push_back(N);
78 SUnitMap[N] = NodeSUnit;
79 N = *UI;
80 break;
81 }
82 if (!HasFlagUse) break;
83 }
84
85 // Now all flagged nodes are in FlaggedNodes and N is the bottom-most node.
86 // Update the SUnit
87 NodeSUnit->Node = N;
88 SUnitMap[N] = NodeSUnit;
89
90 // Compute the latency for the node. We use the sum of the latencies for
91 // all nodes flagged together into this SUnit.
92 if (InstrItins.isEmpty()) {
93 // No latency information.
94 NodeSUnit->Latency = 1;
95 } else {
96 NodeSUnit->Latency = 0;
97 if (N->isTargetOpcode()) {
98 unsigned SchedClass = TII->getSchedClass(N->getTargetOpcode());
99 InstrStage *S = InstrItins.begin(SchedClass);
100 InstrStage *E = InstrItins.end(SchedClass);
101 for (; S != E; ++S)
102 NodeSUnit->Latency += S->Cycles;
103 }
104 for (unsigned i = 0, e = NodeSUnit->FlaggedNodes.size(); i != e; ++i) {
105 SDNode *FNode = NodeSUnit->FlaggedNodes[i];
106 if (FNode->isTargetOpcode()) {
107 unsigned SchedClass = TII->getSchedClass(FNode->getTargetOpcode());
108 InstrStage *S = InstrItins.begin(SchedClass);
109 InstrStage *E = InstrItins.end(SchedClass);
110 for (; S != E; ++S)
111 NodeSUnit->Latency += S->Cycles;
112 }
113 }
114 }
115 }
116
117 // Pass 2: add the preds, succs, etc.
118 for (unsigned su = 0, e = SUnits.size(); su != e; ++su) {
119 SUnit *SU = &SUnits[su];
120 SDNode *MainNode = SU->Node;
121
122 if (MainNode->isTargetOpcode()) {
123 unsigned Opc = MainNode->getTargetOpcode();
Evan Cheng13d41b92006-05-12 01:58:24 +0000124 if (TII->isTwoAddrInstr(Opc))
Evan Chenge165a782006-05-11 23:55:42 +0000125 SU->isTwoAddress = true;
Evan Cheng13d41b92006-05-12 01:58:24 +0000126 if (TII->isCommutableInstr(Opc))
127 SU->isCommutable = true;
Evan Chenge165a782006-05-11 23:55:42 +0000128 }
129
130 // Find all predecessors and successors of the group.
131 // Temporarily add N to make code simpler.
132 SU->FlaggedNodes.push_back(MainNode);
133
134 for (unsigned n = 0, e = SU->FlaggedNodes.size(); n != e; ++n) {
135 SDNode *N = SU->FlaggedNodes[n];
136
137 for (unsigned i = 0, e = N->getNumOperands(); i != e; ++i) {
138 SDNode *OpN = N->getOperand(i).Val;
139 if (isPassiveNode(OpN)) continue; // Not scheduled.
140 SUnit *OpSU = SUnitMap[OpN];
141 assert(OpSU && "Node has no SUnit!");
142 if (OpSU == SU) continue; // In the same group.
143
144 MVT::ValueType OpVT = N->getOperand(i).getValueType();
145 assert(OpVT != MVT::Flag && "Flagged nodes should be in same sunit!");
146 bool isChain = OpVT == MVT::Other;
147
148 if (SU->Preds.insert(std::make_pair(OpSU, isChain)).second) {
149 if (!isChain) {
150 SU->NumPreds++;
151 SU->NumPredsLeft++;
152 } else {
153 SU->NumChainPredsLeft++;
154 }
155 }
156 if (OpSU->Succs.insert(std::make_pair(SU, isChain)).second) {
157 if (!isChain) {
158 OpSU->NumSuccs++;
159 OpSU->NumSuccsLeft++;
160 } else {
161 OpSU->NumChainSuccsLeft++;
162 }
163 }
164 }
165 }
166
167 // Remove MainNode from FlaggedNodes again.
168 SU->FlaggedNodes.pop_back();
169 }
170
171 return;
172}
173
Evan Cheng8820ad52006-05-13 08:22:24 +0000174static void CalculateDepths(SUnit *SU, unsigned Depth) {
175 if (SU->Depth == 0 || Depth > SU->Depth) {
Evan Cheng626da3d2006-05-12 06:05:18 +0000176 SU->Depth = Depth;
177 for (std::set<std::pair<SUnit*, bool> >::iterator I = SU->Succs.begin(),
178 E = SU->Succs.end(); I != E; ++I)
Evan Cheng8820ad52006-05-13 08:22:24 +0000179 CalculateDepths(I->first, Depth+1);
Evan Cheng626da3d2006-05-12 06:05:18 +0000180 }
Evan Chenge165a782006-05-11 23:55:42 +0000181}
182
183void ScheduleDAG::CalculateDepths() {
184 SUnit *Entry = SUnitMap[DAG.getEntryNode().Val];
Evan Cheng8820ad52006-05-13 08:22:24 +0000185 ::CalculateDepths(Entry, 0U);
Evan Chenge165a782006-05-11 23:55:42 +0000186 for (unsigned i = 0, e = SUnits.size(); i != e; ++i)
187 if (SUnits[i].Preds.size() == 0 && &SUnits[i] != Entry) {
Evan Cheng8820ad52006-05-13 08:22:24 +0000188 ::CalculateDepths(&SUnits[i], 0U);
Evan Chenge165a782006-05-11 23:55:42 +0000189 }
190}
191
192static void CalculateHeights(SUnit *SU, unsigned Height) {
Evan Cheng8820ad52006-05-13 08:22:24 +0000193 if (SU->Height == 0 || Height > SU->Height) {
Evan Cheng626da3d2006-05-12 06:05:18 +0000194 SU->Height = Height;
195 for (std::set<std::pair<SUnit*, bool> >::iterator I = SU->Preds.begin(),
196 E = SU->Preds.end(); I != E; ++I)
197 CalculateHeights(I->first, Height+1);
198 }
Evan Chenge165a782006-05-11 23:55:42 +0000199}
200void ScheduleDAG::CalculateHeights() {
201 SUnit *Root = SUnitMap[DAG.getRoot().Val];
202 ::CalculateHeights(Root, 0U);
203}
204
Jim Laskeye6b90fb2005-09-26 21:57:04 +0000205/// CountResults - The results of target nodes have register or immediate
206/// operands first, then an optional chain, and optional flag operands (which do
207/// not go into the machine instrs.)
Evan Chenga9c20912006-01-21 02:32:06 +0000208static unsigned CountResults(SDNode *Node) {
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000209 unsigned N = Node->getNumValues();
210 while (N && Node->getValueType(N - 1) == MVT::Flag)
Jim Laskeye6b90fb2005-09-26 21:57:04 +0000211 --N;
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000212 if (N && Node->getValueType(N - 1) == MVT::Other)
Jim Laskeye6b90fb2005-09-26 21:57:04 +0000213 --N; // Skip over chain result.
214 return N;
215}
216
217/// CountOperands The inputs to target nodes have any actual inputs first,
218/// followed by an optional chain operand, then flag operands. Compute the
219/// number of actual operands that will go into the machine instr.
Evan Chenga9c20912006-01-21 02:32:06 +0000220static unsigned CountOperands(SDNode *Node) {
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000221 unsigned N = Node->getNumOperands();
222 while (N && Node->getOperand(N - 1).getValueType() == MVT::Flag)
Jim Laskeye6b90fb2005-09-26 21:57:04 +0000223 --N;
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000224 if (N && Node->getOperand(N - 1).getValueType() == MVT::Other)
Jim Laskeye6b90fb2005-09-26 21:57:04 +0000225 --N; // Ignore chain if it exists.
226 return N;
227}
228
Evan Cheng4ef10862006-01-23 07:01:07 +0000229static unsigned CreateVirtualRegisters(MachineInstr *MI,
230 unsigned NumResults,
231 SSARegMap *RegMap,
Evan Cheng21d03f22006-05-18 20:42:07 +0000232 const TargetInstrInfo *TII,
Evan Cheng4ef10862006-01-23 07:01:07 +0000233 const TargetInstrDescriptor &II) {
Jim Laskeye6b90fb2005-09-26 21:57:04 +0000234 // Create the result registers for this node and add the result regs to
235 // the machine instruction.
Evan Cheng21d03f22006-05-18 20:42:07 +0000236 unsigned ResultReg =
237 RegMap->createVirtualRegister(TII->getInstrOperandRegClass(&II, 0));
Jim Laskeye6b90fb2005-09-26 21:57:04 +0000238 MI->addRegOperand(ResultReg, MachineOperand::Def);
239 for (unsigned i = 1; i != NumResults; ++i) {
Evan Cheng21d03f22006-05-18 20:42:07 +0000240 const TargetRegisterClass *RC = TII->getInstrOperandRegClass(&II, i);
241 assert(RC && "Isn't a register operand!");
242 MI->addRegOperand(RegMap->createVirtualRegister(RC), MachineOperand::Def);
Jim Laskeye6b90fb2005-09-26 21:57:04 +0000243 }
244 return ResultReg;
245}
246
Chris Lattnerdf375062006-03-10 07:25:12 +0000247/// getVR - Return the virtual register corresponding to the specified result
248/// of the specified node.
249static unsigned getVR(SDOperand Op, std::map<SDNode*, unsigned> &VRBaseMap) {
250 std::map<SDNode*, unsigned>::iterator I = VRBaseMap.find(Op.Val);
251 assert(I != VRBaseMap.end() && "Node emitted out of order - late");
252 return I->second + Op.ResNo;
253}
254
255
Chris Lattnered18b682006-02-24 18:54:03 +0000256/// AddOperand - Add the specified operand to the specified machine instr. II
257/// specifies the instruction information for the node, and IIOpNum is the
258/// operand number (in the II) that we are adding. IIOpNum and II are used for
259/// assertions only.
260void ScheduleDAG::AddOperand(MachineInstr *MI, SDOperand Op,
261 unsigned IIOpNum,
Chris Lattnerdf375062006-03-10 07:25:12 +0000262 const TargetInstrDescriptor *II,
263 std::map<SDNode*, unsigned> &VRBaseMap) {
Chris Lattnered18b682006-02-24 18:54:03 +0000264 if (Op.isTargetOpcode()) {
265 // Note that this case is redundant with the final else block, but we
266 // include it because it is the most common and it makes the logic
267 // simpler here.
268 assert(Op.getValueType() != MVT::Other &&
269 Op.getValueType() != MVT::Flag &&
270 "Chain and flag operands should occur at end of operand list!");
271
272 // Get/emit the operand.
Chris Lattnerdf375062006-03-10 07:25:12 +0000273 unsigned VReg = getVR(Op, VRBaseMap);
Chris Lattnered18b682006-02-24 18:54:03 +0000274 MI->addRegOperand(VReg, MachineOperand::Use);
275
276 // Verify that it is right.
277 assert(MRegisterInfo::isVirtualRegister(VReg) && "Not a vreg?");
278 if (II) {
Evan Cheng21d03f22006-05-18 20:42:07 +0000279 const TargetRegisterClass *RC = TII->getInstrOperandRegClass(II, IIOpNum);
280 assert(RC && "Don't have operand info for this instruction!");
281 assert(RegMap->getRegClass(VReg) == RC &&
Chris Lattnered18b682006-02-24 18:54:03 +0000282 "Register class of operand and regclass of use don't agree!");
283 }
284 } else if (ConstantSDNode *C =
285 dyn_cast<ConstantSDNode>(Op)) {
Chris Lattner2d90ac72006-05-04 18:05:43 +0000286 MI->addImmOperand(C->getValue());
Chris Lattnered18b682006-02-24 18:54:03 +0000287 } else if (RegisterSDNode*R =
288 dyn_cast<RegisterSDNode>(Op)) {
289 MI->addRegOperand(R->getReg(), MachineOperand::Use);
290 } else if (GlobalAddressSDNode *TGA =
291 dyn_cast<GlobalAddressSDNode>(Op)) {
Chris Lattnerea50fab2006-05-04 01:15:02 +0000292 MI->addGlobalAddressOperand(TGA->getGlobal(), TGA->getOffset());
Chris Lattnered18b682006-02-24 18:54:03 +0000293 } else if (BasicBlockSDNode *BB =
294 dyn_cast<BasicBlockSDNode>(Op)) {
295 MI->addMachineBasicBlockOperand(BB->getBasicBlock());
296 } else if (FrameIndexSDNode *FI =
297 dyn_cast<FrameIndexSDNode>(Op)) {
298 MI->addFrameIndexOperand(FI->getIndex());
Nate Begeman37efe672006-04-22 18:53:45 +0000299 } else if (JumpTableSDNode *JT =
300 dyn_cast<JumpTableSDNode>(Op)) {
301 MI->addJumpTableIndexOperand(JT->getIndex());
Chris Lattnered18b682006-02-24 18:54:03 +0000302 } else if (ConstantPoolSDNode *CP =
303 dyn_cast<ConstantPoolSDNode>(Op)) {
Evan Cheng404cb4f2006-02-25 09:54:52 +0000304 int Offset = CP->getOffset();
Chris Lattnered18b682006-02-24 18:54:03 +0000305 unsigned Align = CP->getAlignment();
306 // MachineConstantPool wants an explicit alignment.
307 if (Align == 0) {
308 if (CP->get()->getType() == Type::DoubleTy)
309 Align = 3; // always 8-byte align doubles.
Chris Lattner54a30b92006-03-20 01:51:46 +0000310 else {
Chris Lattnered18b682006-02-24 18:54:03 +0000311 Align = TM.getTargetData()
Owen Andersona69571c2006-05-03 01:29:57 +0000312 ->getTypeAlignmentShift(CP->get()->getType());
Chris Lattner54a30b92006-03-20 01:51:46 +0000313 if (Align == 0) {
314 // Alignment of packed types. FIXME!
Owen Andersona69571c2006-05-03 01:29:57 +0000315 Align = TM.getTargetData()->getTypeSize(CP->get()->getType());
Chris Lattner54a30b92006-03-20 01:51:46 +0000316 Align = Log2_64(Align);
317 }
318 }
Chris Lattnered18b682006-02-24 18:54:03 +0000319 }
320
321 unsigned Idx = ConstPool->getConstantPoolIndex(CP->get(), Align);
Evan Cheng404cb4f2006-02-25 09:54:52 +0000322 MI->addConstantPoolIndexOperand(Idx, Offset);
Chris Lattnered18b682006-02-24 18:54:03 +0000323 } else if (ExternalSymbolSDNode *ES =
324 dyn_cast<ExternalSymbolSDNode>(Op)) {
Chris Lattnerea50fab2006-05-04 01:15:02 +0000325 MI->addExternalSymbolOperand(ES->getSymbol());
Chris Lattnered18b682006-02-24 18:54:03 +0000326 } else {
327 assert(Op.getValueType() != MVT::Other &&
328 Op.getValueType() != MVT::Flag &&
329 "Chain and flag operands should occur at end of operand list!");
Chris Lattnerdf375062006-03-10 07:25:12 +0000330 unsigned VReg = getVR(Op, VRBaseMap);
Chris Lattnered18b682006-02-24 18:54:03 +0000331 MI->addRegOperand(VReg, MachineOperand::Use);
332
333 // Verify that it is right.
334 assert(MRegisterInfo::isVirtualRegister(VReg) && "Not a vreg?");
335 if (II) {
Evan Cheng21d03f22006-05-18 20:42:07 +0000336 const TargetRegisterClass *RC = TII->getInstrOperandRegClass(II, IIOpNum);
337 assert(RC && "Don't have operand info for this instruction!");
338 assert(RegMap->getRegClass(VReg) == RC &&
Chris Lattnered18b682006-02-24 18:54:03 +0000339 "Register class of operand and regclass of use don't agree!");
340 }
341 }
342
343}
344
345
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000346/// EmitNode - Generate machine code for an node and needed dependencies.
Jim Laskeye6b90fb2005-09-26 21:57:04 +0000347///
Chris Lattner8c7ef052006-03-10 07:28:36 +0000348void ScheduleDAG::EmitNode(SDNode *Node,
Chris Lattnerdf375062006-03-10 07:25:12 +0000349 std::map<SDNode*, unsigned> &VRBaseMap) {
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000350 unsigned VRBase = 0; // First virtual register for node
Chris Lattner2d973e42005-08-18 20:07:59 +0000351
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000352 // If machine instruction
353 if (Node->isTargetOpcode()) {
354 unsigned Opc = Node->getTargetOpcode();
Evan Chenga9c20912006-01-21 02:32:06 +0000355 const TargetInstrDescriptor &II = TII->get(Opc);
Chris Lattner2d973e42005-08-18 20:07:59 +0000356
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000357 unsigned NumResults = CountResults(Node);
358 unsigned NodeOperands = CountOperands(Node);
Jim Laskeye6b90fb2005-09-26 21:57:04 +0000359 unsigned NumMIOperands = NodeOperands + NumResults;
Chris Lattnerda8abb02005-09-01 18:44:10 +0000360#ifndef NDEBUG
Evan Cheng8d3af5e2006-06-15 07:22:16 +0000361 assert((unsigned(II.numOperands) == NumMIOperands ||
362 (II.Flags & M_VARIABLE_OPS)) &&
Chris Lattner2d973e42005-08-18 20:07:59 +0000363 "#operands for dag node doesn't match .td file!");
Chris Lattnerca6aa2f2005-08-19 01:01:34 +0000364#endif
Chris Lattner2d973e42005-08-18 20:07:59 +0000365
366 // Create the new machine instruction.
Chris Lattner8b915b42006-05-04 18:16:01 +0000367 MachineInstr *MI = new MachineInstr(Opc, NumMIOperands);
Chris Lattner2d973e42005-08-18 20:07:59 +0000368
369 // Add result register values for things that are defined by this
370 // instruction.
Chris Lattnera4176522005-10-30 18:54:27 +0000371
372 // If the node is only used by a CopyToReg and the dest reg is a vreg, use
373 // the CopyToReg'd destination register instead of creating a new vreg.
374 if (NumResults == 1) {
375 for (SDNode::use_iterator UI = Node->use_begin(), E = Node->use_end();
376 UI != E; ++UI) {
377 SDNode *Use = *UI;
378 if (Use->getOpcode() == ISD::CopyToReg &&
379 Use->getOperand(2).Val == Node) {
380 unsigned Reg = cast<RegisterSDNode>(Use->getOperand(1))->getReg();
381 if (MRegisterInfo::isVirtualRegister(Reg)) {
382 VRBase = Reg;
383 MI->addRegOperand(Reg, MachineOperand::Def);
384 break;
385 }
386 }
387 }
388 }
389
390 // Otherwise, create new virtual registers.
391 if (NumResults && VRBase == 0)
Evan Cheng21d03f22006-05-18 20:42:07 +0000392 VRBase = CreateVirtualRegisters(MI, NumResults, RegMap, TII, II);
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000393
394 // Emit all of the actual operands of this instruction, adding them to the
395 // instruction as appropriate.
Chris Lattnered18b682006-02-24 18:54:03 +0000396 for (unsigned i = 0; i != NodeOperands; ++i)
Chris Lattnerdf375062006-03-10 07:25:12 +0000397 AddOperand(MI, Node->getOperand(i), i+NumResults, &II, VRBaseMap);
Evan Cheng13d41b92006-05-12 01:58:24 +0000398
399 // Commute node if it has been determined to be profitable.
400 if (CommuteSet.count(Node)) {
401 MachineInstr *NewMI = TII->commuteInstruction(MI);
402 if (NewMI == 0)
403 DEBUG(std::cerr << "Sched: COMMUTING FAILED!\n");
404 else {
405 DEBUG(std::cerr << "Sched: COMMUTED TO: " << *NewMI);
Evan Cheng4c6f2f92006-05-31 18:03:39 +0000406 if (MI != NewMI) {
407 delete MI;
408 MI = NewMI;
409 }
Evan Cheng13d41b92006-05-12 01:58:24 +0000410 }
411 }
412
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000413 // Now that we have emitted all operands, emit this instruction itself.
414 if ((II.Flags & M_USES_CUSTOM_DAG_SCHED_INSERTION) == 0) {
415 BB->insert(BB->end(), MI);
416 } else {
417 // Insert this instruction into the end of the basic block, potentially
418 // taking some custom action.
419 BB = DAG.getTargetLoweringInfo().InsertAtEndOfBasicBlock(MI, BB);
420 }
421 } else {
422 switch (Node->getOpcode()) {
423 default:
424 Node->dump();
425 assert(0 && "This target-independent node should have been selected!");
426 case ISD::EntryToken: // fall thru
427 case ISD::TokenFactor:
428 break;
429 case ISD::CopyToReg: {
Chris Lattnerdf375062006-03-10 07:25:12 +0000430 unsigned InReg = getVR(Node->getOperand(2), VRBaseMap);
Chris Lattnera4176522005-10-30 18:54:27 +0000431 unsigned DestReg = cast<RegisterSDNode>(Node->getOperand(1))->getReg();
Chris Lattner45053fc2006-03-24 07:15:07 +0000432 if (InReg != DestReg) // Coalesced away the copy?
Evan Chenga9c20912006-01-21 02:32:06 +0000433 MRI->copyRegToReg(*BB, BB->end(), DestReg, InReg,
434 RegMap->getRegClass(InReg));
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000435 break;
436 }
437 case ISD::CopyFromReg: {
438 unsigned SrcReg = cast<RegisterSDNode>(Node->getOperand(1))->getReg();
Chris Lattner089c25c2005-10-09 05:58:56 +0000439 if (MRegisterInfo::isVirtualRegister(SrcReg)) {
440 VRBase = SrcReg; // Just use the input register directly!
441 break;
442 }
443
Chris Lattnera4176522005-10-30 18:54:27 +0000444 // If the node is only used by a CopyToReg and the dest reg is a vreg, use
445 // the CopyToReg'd destination register instead of creating a new vreg.
446 for (SDNode::use_iterator UI = Node->use_begin(), E = Node->use_end();
447 UI != E; ++UI) {
448 SDNode *Use = *UI;
449 if (Use->getOpcode() == ISD::CopyToReg &&
450 Use->getOperand(2).Val == Node) {
451 unsigned DestReg = cast<RegisterSDNode>(Use->getOperand(1))->getReg();
452 if (MRegisterInfo::isVirtualRegister(DestReg)) {
453 VRBase = DestReg;
454 break;
455 }
456 }
457 }
458
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000459 // Figure out the register class to create for the destreg.
460 const TargetRegisterClass *TRC = 0;
Chris Lattnera4176522005-10-30 18:54:27 +0000461 if (VRBase) {
462 TRC = RegMap->getRegClass(VRBase);
463 } else {
Chris Lattner089c25c2005-10-09 05:58:56 +0000464
Chris Lattnera4176522005-10-30 18:54:27 +0000465 // Pick the register class of the right type that contains this physreg.
Evan Chenga9c20912006-01-21 02:32:06 +0000466 for (MRegisterInfo::regclass_iterator I = MRI->regclass_begin(),
467 E = MRI->regclass_end(); I != E; ++I)
Nate Begeman6510b222005-12-01 04:51:06 +0000468 if ((*I)->hasType(Node->getValueType(0)) &&
Chris Lattnera4176522005-10-30 18:54:27 +0000469 (*I)->contains(SrcReg)) {
470 TRC = *I;
471 break;
472 }
473 assert(TRC && "Couldn't find register class for reg copy!");
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000474
Chris Lattnera4176522005-10-30 18:54:27 +0000475 // Create the reg, emit the copy.
476 VRBase = RegMap->createVirtualRegister(TRC);
477 }
Evan Chenga9c20912006-01-21 02:32:06 +0000478 MRI->copyRegToReg(*BB, BB->end(), VRBase, SrcReg, TRC);
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000479 break;
480 }
Chris Lattneracc43bf2006-01-26 23:28:04 +0000481 case ISD::INLINEASM: {
482 unsigned NumOps = Node->getNumOperands();
483 if (Node->getOperand(NumOps-1).getValueType() == MVT::Flag)
484 --NumOps; // Ignore the flag operand.
485
486 // Create the inline asm machine instruction.
487 MachineInstr *MI =
488 new MachineInstr(BB, TargetInstrInfo::INLINEASM, (NumOps-2)/2+1);
489
490 // Add the asm string as an external symbol operand.
491 const char *AsmStr =
492 cast<ExternalSymbolSDNode>(Node->getOperand(1))->getSymbol();
Chris Lattnerea50fab2006-05-04 01:15:02 +0000493 MI->addExternalSymbolOperand(AsmStr);
Chris Lattneracc43bf2006-01-26 23:28:04 +0000494
495 // Add all of the operand registers to the instruction.
Chris Lattnerc3a9f8d2006-02-23 19:21:04 +0000496 for (unsigned i = 2; i != NumOps;) {
497 unsigned Flags = cast<ConstantSDNode>(Node->getOperand(i))->getValue();
Chris Lattnerfd6d2822006-02-24 19:18:20 +0000498 unsigned NumVals = Flags >> 3;
Chris Lattnerc3a9f8d2006-02-23 19:21:04 +0000499
Chris Lattner2d90ac72006-05-04 18:05:43 +0000500 MI->addImmOperand(Flags);
Chris Lattnerc3a9f8d2006-02-23 19:21:04 +0000501 ++i; // Skip the ID value.
502
503 switch (Flags & 7) {
Chris Lattneracc43bf2006-01-26 23:28:04 +0000504 default: assert(0 && "Bad flags!");
Chris Lattnerc3a9f8d2006-02-23 19:21:04 +0000505 case 1: // Use of register.
Chris Lattnerfd6d2822006-02-24 19:18:20 +0000506 for (; NumVals; --NumVals, ++i) {
Chris Lattnerc3a9f8d2006-02-23 19:21:04 +0000507 unsigned Reg = cast<RegisterSDNode>(Node->getOperand(i))->getReg();
Chris Lattnerea50fab2006-05-04 01:15:02 +0000508 MI->addRegOperand(Reg, MachineOperand::Use);
Chris Lattnerc3a9f8d2006-02-23 19:21:04 +0000509 }
Chris Lattnerdc19b702006-02-04 02:26:14 +0000510 break;
Chris Lattnerc3a9f8d2006-02-23 19:21:04 +0000511 case 2: // Def of register.
Chris Lattnerfd6d2822006-02-24 19:18:20 +0000512 for (; NumVals; --NumVals, ++i) {
Chris Lattnerc3a9f8d2006-02-23 19:21:04 +0000513 unsigned Reg = cast<RegisterSDNode>(Node->getOperand(i))->getReg();
Chris Lattnerea50fab2006-05-04 01:15:02 +0000514 MI->addRegOperand(Reg, MachineOperand::Def);
Chris Lattnerc3a9f8d2006-02-23 19:21:04 +0000515 }
Chris Lattnerdc19b702006-02-04 02:26:14 +0000516 break;
Chris Lattnerdc19b702006-02-04 02:26:14 +0000517 case 3: { // Immediate.
Chris Lattnerfd6d2822006-02-24 19:18:20 +0000518 assert(NumVals == 1 && "Unknown immediate value!");
Chris Lattnerdc19b702006-02-04 02:26:14 +0000519 uint64_t Val = cast<ConstantSDNode>(Node->getOperand(i))->getValue();
Chris Lattner2d90ac72006-05-04 18:05:43 +0000520 MI->addImmOperand(Val);
Chris Lattnerc3a9f8d2006-02-23 19:21:04 +0000521 ++i;
Chris Lattnerdc19b702006-02-04 02:26:14 +0000522 break;
523 }
Chris Lattnerfd6d2822006-02-24 19:18:20 +0000524 case 4: // Addressing mode.
525 // The addressing mode has been selected, just add all of the
526 // operands to the machine instruction.
527 for (; NumVals; --NumVals, ++i)
Chris Lattnerdf375062006-03-10 07:25:12 +0000528 AddOperand(MI, Node->getOperand(i), 0, 0, VRBaseMap);
Chris Lattnerfd6d2822006-02-24 19:18:20 +0000529 break;
Chris Lattnerdc19b702006-02-04 02:26:14 +0000530 }
Chris Lattneracc43bf2006-01-26 23:28:04 +0000531 }
532 break;
533 }
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000534 }
535 }
536
Chris Lattnerdf375062006-03-10 07:25:12 +0000537 assert(!VRBaseMap.count(Node) && "Node emitted out of order - early");
538 VRBaseMap[Node] = VRBase;
Jim Laskeyb6d4c2c2005-09-30 19:15:27 +0000539}
540
Chris Lattnera93dfcd2006-03-05 23:51:47 +0000541void ScheduleDAG::EmitNoop() {
542 TII->insertNoop(*BB, BB->end());
543}
544
Evan Chenge165a782006-05-11 23:55:42 +0000545/// EmitSchedule - Emit the machine code in scheduled order.
546void ScheduleDAG::EmitSchedule() {
Chris Lattner96645412006-05-16 06:10:58 +0000547 // If this is the first basic block in the function, and if it has live ins
548 // that need to be copied into vregs, emit the copies into the top of the
549 // block before emitting the code for the block.
550 MachineFunction &MF = DAG.getMachineFunction();
551 if (&MF.front() == BB && MF.livein_begin() != MF.livein_end()) {
552 for (MachineFunction::livein_iterator LI = MF.livein_begin(),
553 E = MF.livein_end(); LI != E; ++LI)
554 if (LI->second)
555 MRI->copyRegToReg(*MF.begin(), MF.begin()->end(), LI->second,
556 LI->first, RegMap->getRegClass(LI->second));
557 }
558
559
560 // Finally, emit the code for all of the scheduled instructions.
Evan Chenge165a782006-05-11 23:55:42 +0000561 std::map<SDNode*, unsigned> VRBaseMap;
562 for (unsigned i = 0, e = Sequence.size(); i != e; i++) {
563 if (SUnit *SU = Sequence[i]) {
564 for (unsigned j = 0, ee = SU->FlaggedNodes.size(); j != ee; j++)
565 EmitNode(SU->FlaggedNodes[j], VRBaseMap);
566 EmitNode(SU->Node, VRBaseMap);
567 } else {
568 // Null SUnit* is a noop.
569 EmitNoop();
570 }
571 }
572}
573
574/// dump - dump the schedule.
575void ScheduleDAG::dumpSchedule() const {
576 for (unsigned i = 0, e = Sequence.size(); i != e; i++) {
577 if (SUnit *SU = Sequence[i])
578 SU->dump(&DAG);
579 else
580 std::cerr << "**** NOOP ****\n";
581 }
582}
583
584
Evan Chenga9c20912006-01-21 02:32:06 +0000585/// Run - perform scheduling.
586///
587MachineBasicBlock *ScheduleDAG::Run() {
588 TII = TM.getInstrInfo();
589 MRI = TM.getRegisterInfo();
590 RegMap = BB->getParent()->getSSARegMap();
591 ConstPool = BB->getParent()->getConstantPool();
Evan Cheng4ef10862006-01-23 07:01:07 +0000592
Evan Chenga9c20912006-01-21 02:32:06 +0000593 Schedule();
594 return BB;
Chris Lattnerd32b2362005-08-18 18:45:24 +0000595}
Evan Cheng4ef10862006-01-23 07:01:07 +0000596
Evan Chenge165a782006-05-11 23:55:42 +0000597/// SUnit - Scheduling unit. It's an wrapper around either a single SDNode or
598/// a group of nodes flagged together.
599void SUnit::dump(const SelectionDAG *G) const {
600 std::cerr << "SU(" << NodeNum << "): ";
601 Node->dump(G);
602 std::cerr << "\n";
603 if (FlaggedNodes.size() != 0) {
604 for (unsigned i = 0, e = FlaggedNodes.size(); i != e; i++) {
605 std::cerr << " ";
606 FlaggedNodes[i]->dump(G);
607 std::cerr << "\n";
608 }
609 }
610}
Evan Cheng4ef10862006-01-23 07:01:07 +0000611
Evan Chenge165a782006-05-11 23:55:42 +0000612void SUnit::dumpAll(const SelectionDAG *G) const {
613 dump(G);
614
615 std::cerr << " # preds left : " << NumPredsLeft << "\n";
616 std::cerr << " # succs left : " << NumSuccsLeft << "\n";
617 std::cerr << " # chain preds left : " << NumChainPredsLeft << "\n";
618 std::cerr << " # chain succs left : " << NumChainSuccsLeft << "\n";
619 std::cerr << " Latency : " << Latency << "\n";
620 std::cerr << " Depth : " << Depth << "\n";
621 std::cerr << " Height : " << Height << "\n";
622
623 if (Preds.size() != 0) {
624 std::cerr << " Predecessors:\n";
625 for (std::set<std::pair<SUnit*,bool> >::const_iterator I = Preds.begin(),
626 E = Preds.end(); I != E; ++I) {
627 if (I->second)
628 std::cerr << " ch ";
629 else
630 std::cerr << " val ";
631 I->first->dump(G);
632 }
633 }
634 if (Succs.size() != 0) {
635 std::cerr << " Successors:\n";
636 for (std::set<std::pair<SUnit*, bool> >::const_iterator I = Succs.begin(),
637 E = Succs.end(); I != E; ++I) {
638 if (I->second)
639 std::cerr << " ch ";
640 else
641 std::cerr << " val ";
642 I->first->dump(G);
643 }
644 }
645 std::cerr << "\n";
646}