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Nate Begeman21e463b2005-10-16 05:39:50 +00001//===-- PPCISelDAGToDAG.cpp - PPC --pattern matching inst selector --------===//
Chris Lattnera5a91b12005-08-17 19:33:03 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by Chris Lattner and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Nate Begeman21e463b2005-10-16 05:39:50 +000010// This file defines a pattern matching instruction selector for PowerPC,
Chris Lattnera5a91b12005-08-17 19:33:03 +000011// converting from a legalized dag to a PPC dag.
12//
13//===----------------------------------------------------------------------===//
14
Chris Lattner26689592005-10-14 23:51:18 +000015#include "PPC.h"
Chris Lattner16e71f22005-10-14 23:59:06 +000016#include "PPCTargetMachine.h"
17#include "PPCISelLowering.h"
Chris Lattner4416f1a2005-08-19 22:38:53 +000018#include "llvm/CodeGen/MachineInstrBuilder.h"
19#include "llvm/CodeGen/MachineFunction.h"
20#include "llvm/CodeGen/SSARegMap.h"
Chris Lattnera5a91b12005-08-17 19:33:03 +000021#include "llvm/CodeGen/SelectionDAG.h"
22#include "llvm/CodeGen/SelectionDAGISel.h"
23#include "llvm/Target/TargetOptions.h"
24#include "llvm/ADT/Statistic.h"
Chris Lattner2fe76e52005-08-25 04:47:18 +000025#include "llvm/Constants.h"
Chris Lattner4416f1a2005-08-19 22:38:53 +000026#include "llvm/GlobalValue.h"
Chris Lattnera5a91b12005-08-17 19:33:03 +000027#include "llvm/Support/Debug.h"
28#include "llvm/Support/MathExtras.h"
29using namespace llvm;
30
31namespace {
Chris Lattnera5a91b12005-08-17 19:33:03 +000032 Statistic<> FusedFP ("ppc-codegen", "Number of fused fp operations");
33 Statistic<> FrameOff("ppc-codegen", "Number of frame idx offsets collapsed");
34
35 //===--------------------------------------------------------------------===//
Nate Begeman1d9d7422005-10-18 00:28:58 +000036 /// PPCDAGToDAGISel - PPC specific code to select PPC machine
Chris Lattnera5a91b12005-08-17 19:33:03 +000037 /// instructions for SelectionDAG operations.
38 ///
Nate Begeman1d9d7422005-10-18 00:28:58 +000039 class PPCDAGToDAGISel : public SelectionDAGISel {
Nate Begeman21e463b2005-10-16 05:39:50 +000040 PPCTargetLowering PPCLowering;
Chris Lattner4416f1a2005-08-19 22:38:53 +000041 unsigned GlobalBaseReg;
Chris Lattnera5a91b12005-08-17 19:33:03 +000042 public:
Nate Begeman1d9d7422005-10-18 00:28:58 +000043 PPCDAGToDAGISel(TargetMachine &TM)
Nate Begeman21e463b2005-10-16 05:39:50 +000044 : SelectionDAGISel(PPCLowering), PPCLowering(TM) {}
Chris Lattnera5a91b12005-08-17 19:33:03 +000045
Chris Lattner4416f1a2005-08-19 22:38:53 +000046 virtual bool runOnFunction(Function &Fn) {
47 // Make sure we re-emit a set of the global base reg if necessary
48 GlobalBaseReg = 0;
49 return SelectionDAGISel::runOnFunction(Fn);
50 }
51
Chris Lattnera5a91b12005-08-17 19:33:03 +000052 /// getI32Imm - Return a target constant with the specified value, of type
53 /// i32.
54 inline SDOperand getI32Imm(unsigned Imm) {
55 return CurDAG->getTargetConstant(Imm, MVT::i32);
56 }
Chris Lattner4416f1a2005-08-19 22:38:53 +000057
58 /// getGlobalBaseReg - insert code into the entry mbb to materialize the PIC
59 /// base register. Return the virtual register that holds this value.
Chris Lattner9944b762005-08-21 22:31:09 +000060 SDOperand getGlobalBaseReg();
Chris Lattnera5a91b12005-08-17 19:33:03 +000061
62 // Select - Convert the specified operand from a target-independent to a
63 // target-specific node if it hasn't already been changed.
64 SDOperand Select(SDOperand Op);
65
Nate Begeman02b88a42005-08-19 00:38:14 +000066 SDNode *SelectBitfieldInsert(SDNode *N);
67
Chris Lattner2fbb4572005-08-21 18:50:37 +000068 /// SelectCC - Select a comparison of the specified values with the
69 /// specified condition code, returning the CR# of the expression.
70 SDOperand SelectCC(SDOperand LHS, SDOperand RHS, ISD::CondCode CC);
71
Chris Lattner9944b762005-08-21 22:31:09 +000072 /// SelectAddr - Given the specified address, return the two operands for a
73 /// load/store instruction, and return true if it should be an indexed [r+r]
74 /// operation.
75 bool SelectAddr(SDOperand Addr, SDOperand &Op1, SDOperand &Op2);
76
Chris Lattner047b9522005-08-25 22:04:30 +000077 SDOperand BuildSDIVSequence(SDNode *N);
78 SDOperand BuildUDIVSequence(SDNode *N);
79
Chris Lattnera5a91b12005-08-17 19:33:03 +000080 /// InstructionSelectBasicBlock - This callback is invoked by
81 /// SelectionDAGISel when it has created a SelectionDAG for us to codegen.
Chris Lattnerbd937b92005-10-06 18:45:51 +000082 virtual void InstructionSelectBasicBlock(SelectionDAG &DAG);
83
Chris Lattnera5a91b12005-08-17 19:33:03 +000084 virtual const char *getPassName() const {
85 return "PowerPC DAG->DAG Pattern Instruction Selection";
86 }
Chris Lattneraf165382005-09-13 22:03:06 +000087
88// Include the pieces autogenerated from the target description.
Chris Lattner4c7b43b2005-10-14 23:37:35 +000089#include "PPCGenDAGISel.inc"
Chris Lattnerbd937b92005-10-06 18:45:51 +000090
91private:
Chris Lattner222adac2005-10-06 19:03:35 +000092 SDOperand SelectDYNAMIC_STACKALLOC(SDOperand Op);
93 SDOperand SelectADD_PARTS(SDOperand Op);
94 SDOperand SelectSUB_PARTS(SDOperand Op);
95 SDOperand SelectSETCC(SDOperand Op);
Chris Lattner6a16f6a2005-10-06 19:07:45 +000096 SDOperand SelectCALL(SDOperand Op);
Chris Lattnera5a91b12005-08-17 19:33:03 +000097 };
98}
99
Chris Lattnerbd937b92005-10-06 18:45:51 +0000100/// InstructionSelectBasicBlock - This callback is invoked by
101/// SelectionDAGISel when it has created a SelectionDAG for us to codegen.
Nate Begeman1d9d7422005-10-18 00:28:58 +0000102void PPCDAGToDAGISel::InstructionSelectBasicBlock(SelectionDAG &DAG) {
Chris Lattnerbd937b92005-10-06 18:45:51 +0000103 DEBUG(BB->dump());
104
105 // The selection process is inherently a bottom-up recursive process (users
106 // select their uses before themselves). Given infinite stack space, we
107 // could just start selecting on the root and traverse the whole graph. In
108 // practice however, this causes us to run out of stack space on large basic
109 // blocks. To avoid this problem, select the entry node, then all its uses,
110 // iteratively instead of recursively.
111 std::vector<SDOperand> Worklist;
112 Worklist.push_back(DAG.getEntryNode());
113
114 // Note that we can do this in the PPC target (scanning forward across token
115 // chain edges) because no nodes ever get folded across these edges. On a
116 // target like X86 which supports load/modify/store operations, this would
117 // have to be more careful.
118 while (!Worklist.empty()) {
119 SDOperand Node = Worklist.back();
120 Worklist.pop_back();
121
Chris Lattnercf01a702005-10-07 22:10:27 +0000122 // Chose from the least deep of the top two nodes.
123 if (!Worklist.empty() &&
124 Worklist.back().Val->getNodeDepth() < Node.Val->getNodeDepth())
125 std::swap(Worklist.back(), Node);
126
Chris Lattnerbd937b92005-10-06 18:45:51 +0000127 if ((Node.Val->getOpcode() >= ISD::BUILTIN_OP_END &&
128 Node.Val->getOpcode() < PPCISD::FIRST_NUMBER) ||
129 CodeGenMap.count(Node)) continue;
130
131 for (SDNode::use_iterator UI = Node.Val->use_begin(),
132 E = Node.Val->use_end(); UI != E; ++UI) {
133 // Scan the values. If this use has a value that is a token chain, add it
134 // to the worklist.
135 SDNode *User = *UI;
136 for (unsigned i = 0, e = User->getNumValues(); i != e; ++i)
137 if (User->getValueType(i) == MVT::Other) {
138 Worklist.push_back(SDOperand(User, i));
139 break;
140 }
141 }
142
143 // Finally, legalize this node.
144 Select(Node);
145 }
Chris Lattnercf01a702005-10-07 22:10:27 +0000146
Chris Lattnerbd937b92005-10-06 18:45:51 +0000147 // Select target instructions for the DAG.
148 DAG.setRoot(Select(DAG.getRoot()));
149 CodeGenMap.clear();
150 DAG.RemoveDeadNodes();
151
152 // Emit machine code to BB.
153 ScheduleAndEmitDAG(DAG);
154}
Chris Lattner6cd40d52005-09-03 01:17:22 +0000155
Chris Lattner4416f1a2005-08-19 22:38:53 +0000156/// getGlobalBaseReg - Output the instructions required to put the
157/// base address to use for accessing globals into a register.
158///
Nate Begeman1d9d7422005-10-18 00:28:58 +0000159SDOperand PPCDAGToDAGISel::getGlobalBaseReg() {
Chris Lattner4416f1a2005-08-19 22:38:53 +0000160 if (!GlobalBaseReg) {
161 // Insert the set of GlobalBaseReg into the first MBB of the function
162 MachineBasicBlock &FirstMBB = BB->getParent()->front();
163 MachineBasicBlock::iterator MBBI = FirstMBB.begin();
164 SSARegMap *RegMap = BB->getParent()->getSSARegMap();
Nate Begeman1d9d7422005-10-18 00:28:58 +0000165 // FIXME: when we get to LP64, we will need to create the appropriate
166 // type of register here.
167 GlobalBaseReg = RegMap->createVirtualRegister(PPC::GPRCRegisterClass);
Chris Lattner4416f1a2005-08-19 22:38:53 +0000168 BuildMI(FirstMBB, MBBI, PPC::MovePCtoLR, 0, PPC::LR);
169 BuildMI(FirstMBB, MBBI, PPC::MFLR, 1, GlobalBaseReg);
170 }
Chris Lattner9944b762005-08-21 22:31:09 +0000171 return CurDAG->getRegister(GlobalBaseReg, MVT::i32);
Chris Lattner4416f1a2005-08-19 22:38:53 +0000172}
173
174
Nate Begeman0f3257a2005-08-18 05:00:13 +0000175// isIntImmediate - This method tests to see if a constant operand.
176// If so Imm will receive the 32 bit value.
177static bool isIntImmediate(SDNode *N, unsigned& Imm) {
178 if (N->getOpcode() == ISD::Constant) {
179 Imm = cast<ConstantSDNode>(N)->getValue();
180 return true;
181 }
182 return false;
183}
184
Nate Begemancffc32b2005-08-18 07:30:46 +0000185// isOprShiftImm - Returns true if the specified operand is a shift opcode with
186// a immediate shift count less than 32.
187static bool isOprShiftImm(SDNode *N, unsigned& Opc, unsigned& SH) {
188 Opc = N->getOpcode();
189 return (Opc == ISD::SHL || Opc == ISD::SRL || Opc == ISD::SRA) &&
190 isIntImmediate(N->getOperand(1).Val, SH) && SH < 32;
191}
192
193// isRunOfOnes - Returns true iff Val consists of one contiguous run of 1s with
194// any number of 0s on either side. The 1s are allowed to wrap from LSB to
195// MSB, so 0x000FFF0, 0x0000FFFF, and 0xFF0000FF are all runs. 0x0F0F0000 is
196// not, since all 1s are not contiguous.
197static bool isRunOfOnes(unsigned Val, unsigned &MB, unsigned &ME) {
198 if (isShiftedMask_32(Val)) {
199 // look for the first non-zero bit
200 MB = CountLeadingZeros_32(Val);
201 // look for the first zero bit after the run of ones
202 ME = CountLeadingZeros_32((Val - 1) ^ Val);
203 return true;
Chris Lattner2fe76e52005-08-25 04:47:18 +0000204 } else {
205 Val = ~Val; // invert mask
206 if (isShiftedMask_32(Val)) {
207 // effectively look for the first zero bit
208 ME = CountLeadingZeros_32(Val) - 1;
209 // effectively look for the first one bit after the run of zeros
210 MB = CountLeadingZeros_32((Val - 1) ^ Val) + 1;
211 return true;
212 }
Nate Begemancffc32b2005-08-18 07:30:46 +0000213 }
214 // no run present
215 return false;
216}
217
Chris Lattner65a419a2005-10-09 05:36:17 +0000218// isRotateAndMask - Returns true if Mask and Shift can be folded into a rotate
Nate Begemancffc32b2005-08-18 07:30:46 +0000219// and mask opcode and mask operation.
220static bool isRotateAndMask(SDNode *N, unsigned Mask, bool IsShiftMask,
221 unsigned &SH, unsigned &MB, unsigned &ME) {
Nate Begemanda32c9e2005-10-19 00:05:37 +0000222 // Don't even go down this path for i64, since different logic will be
223 // necessary for rldicl/rldicr/rldimi.
224 if (N->getValueType(0) != MVT::i32)
225 return false;
226
Nate Begemancffc32b2005-08-18 07:30:46 +0000227 unsigned Shift = 32;
228 unsigned Indeterminant = ~0; // bit mask marking indeterminant results
229 unsigned Opcode = N->getOpcode();
Chris Lattner15055732005-08-30 00:59:16 +0000230 if (N->getNumOperands() != 2 ||
231 !isIntImmediate(N->getOperand(1).Val, Shift) || (Shift > 31))
Nate Begemancffc32b2005-08-18 07:30:46 +0000232 return false;
233
234 if (Opcode == ISD::SHL) {
235 // apply shift left to mask if it comes first
236 if (IsShiftMask) Mask = Mask << Shift;
237 // determine which bits are made indeterminant by shift
238 Indeterminant = ~(0xFFFFFFFFu << Shift);
Chris Lattner651dea72005-10-15 21:40:12 +0000239 } else if (Opcode == ISD::SRL) {
Nate Begemancffc32b2005-08-18 07:30:46 +0000240 // apply shift right to mask if it comes first
241 if (IsShiftMask) Mask = Mask >> Shift;
242 // determine which bits are made indeterminant by shift
243 Indeterminant = ~(0xFFFFFFFFu >> Shift);
244 // adjust for the left rotate
245 Shift = 32 - Shift;
246 } else {
247 return false;
248 }
249
250 // if the mask doesn't intersect any Indeterminant bits
251 if (Mask && !(Mask & Indeterminant)) {
252 SH = Shift;
253 // make sure the mask is still a mask (wrap arounds may not be)
254 return isRunOfOnes(Mask, MB, ME);
255 }
256 return false;
257}
258
Nate Begeman0f3257a2005-08-18 05:00:13 +0000259// isOpcWithIntImmediate - This method tests to see if the node is a specific
260// opcode and that it has a immediate integer right operand.
261// If so Imm will receive the 32 bit value.
262static bool isOpcWithIntImmediate(SDNode *N, unsigned Opc, unsigned& Imm) {
263 return N->getOpcode() == Opc && isIntImmediate(N->getOperand(1).Val, Imm);
264}
265
266// isOprNot - Returns true if the specified operand is an xor with immediate -1.
267static bool isOprNot(SDNode *N) {
268 unsigned Imm;
269 return isOpcWithIntImmediate(N, ISD::XOR, Imm) && (signed)Imm == -1;
270}
271
Chris Lattnera5a91b12005-08-17 19:33:03 +0000272// Immediate constant composers.
273// Lo16 - grabs the lo 16 bits from a 32 bit constant.
274// Hi16 - grabs the hi 16 bits from a 32 bit constant.
275// HA16 - computes the hi bits required if the lo bits are add/subtracted in
276// arithmethically.
277static unsigned Lo16(unsigned x) { return x & 0x0000FFFF; }
278static unsigned Hi16(unsigned x) { return Lo16(x >> 16); }
279static unsigned HA16(unsigned x) { return Hi16((signed)x - (signed short)x); }
280
281// isIntImmediate - This method tests to see if a constant operand.
282// If so Imm will receive the 32 bit value.
283static bool isIntImmediate(SDOperand N, unsigned& Imm) {
284 if (ConstantSDNode *CN = dyn_cast<ConstantSDNode>(N)) {
285 Imm = (unsigned)CN->getSignExtended();
286 return true;
287 }
288 return false;
289}
290
Nate Begeman02b88a42005-08-19 00:38:14 +0000291/// SelectBitfieldInsert - turn an or of two masked values into
292/// the rotate left word immediate then mask insert (rlwimi) instruction.
293/// Returns true on success, false if the caller still needs to select OR.
294///
295/// Patterns matched:
296/// 1. or shl, and 5. or and, and
297/// 2. or and, shl 6. or shl, shr
298/// 3. or shr, and 7. or shr, shl
299/// 4. or and, shr
Nate Begeman1d9d7422005-10-18 00:28:58 +0000300SDNode *PPCDAGToDAGISel::SelectBitfieldInsert(SDNode *N) {
Nate Begeman02b88a42005-08-19 00:38:14 +0000301 bool IsRotate = false;
302 unsigned TgtMask = 0xFFFFFFFF, InsMask = 0xFFFFFFFF, SH = 0;
303 unsigned Value;
304
305 SDOperand Op0 = N->getOperand(0);
306 SDOperand Op1 = N->getOperand(1);
307
308 unsigned Op0Opc = Op0.getOpcode();
309 unsigned Op1Opc = Op1.getOpcode();
310
311 // Verify that we have the correct opcodes
312 if (ISD::SHL != Op0Opc && ISD::SRL != Op0Opc && ISD::AND != Op0Opc)
313 return false;
314 if (ISD::SHL != Op1Opc && ISD::SRL != Op1Opc && ISD::AND != Op1Opc)
315 return false;
316
317 // Generate Mask value for Target
318 if (isIntImmediate(Op0.getOperand(1), Value)) {
319 switch(Op0Opc) {
Chris Lattner13687212005-08-30 18:37:48 +0000320 case ISD::SHL: TgtMask <<= Value; break;
321 case ISD::SRL: TgtMask >>= Value; break;
322 case ISD::AND: TgtMask &= Value; break;
Nate Begeman02b88a42005-08-19 00:38:14 +0000323 }
324 } else {
325 return 0;
326 }
327
328 // Generate Mask value for Insert
Chris Lattner13687212005-08-30 18:37:48 +0000329 if (!isIntImmediate(Op1.getOperand(1), Value))
Nate Begeman02b88a42005-08-19 00:38:14 +0000330 return 0;
Chris Lattner13687212005-08-30 18:37:48 +0000331
332 switch(Op1Opc) {
333 case ISD::SHL:
334 SH = Value;
335 InsMask <<= SH;
336 if (Op0Opc == ISD::SRL) IsRotate = true;
337 break;
338 case ISD::SRL:
339 SH = Value;
340 InsMask >>= SH;
341 SH = 32-SH;
342 if (Op0Opc == ISD::SHL) IsRotate = true;
343 break;
344 case ISD::AND:
345 InsMask &= Value;
346 break;
Nate Begeman02b88a42005-08-19 00:38:14 +0000347 }
348
349 // If both of the inputs are ANDs and one of them has a logical shift by
350 // constant as its input, make that AND the inserted value so that we can
351 // combine the shift into the rotate part of the rlwimi instruction
352 bool IsAndWithShiftOp = false;
353 if (Op0Opc == ISD::AND && Op1Opc == ISD::AND) {
354 if (Op1.getOperand(0).getOpcode() == ISD::SHL ||
355 Op1.getOperand(0).getOpcode() == ISD::SRL) {
356 if (isIntImmediate(Op1.getOperand(0).getOperand(1), Value)) {
357 SH = Op1.getOperand(0).getOpcode() == ISD::SHL ? Value : 32 - Value;
358 IsAndWithShiftOp = true;
359 }
360 } else if (Op0.getOperand(0).getOpcode() == ISD::SHL ||
361 Op0.getOperand(0).getOpcode() == ISD::SRL) {
362 if (isIntImmediate(Op0.getOperand(0).getOperand(1), Value)) {
363 std::swap(Op0, Op1);
364 std::swap(TgtMask, InsMask);
365 SH = Op1.getOperand(0).getOpcode() == ISD::SHL ? Value : 32 - Value;
366 IsAndWithShiftOp = true;
367 }
368 }
369 }
370
371 // Verify that the Target mask and Insert mask together form a full word mask
372 // and that the Insert mask is a run of set bits (which implies both are runs
373 // of set bits). Given that, Select the arguments and generate the rlwimi
374 // instruction.
375 unsigned MB, ME;
376 if (((TgtMask & InsMask) == 0) && isRunOfOnes(InsMask, MB, ME)) {
377 bool fullMask = (TgtMask ^ InsMask) == 0xFFFFFFFF;
378 bool Op0IsAND = Op0Opc == ISD::AND;
379 // Check for rotlwi / rotrwi here, a special case of bitfield insert
380 // where both bitfield halves are sourced from the same value.
381 if (IsRotate && fullMask &&
382 N->getOperand(0).getOperand(0) == N->getOperand(1).getOperand(0)) {
383 Op0 = CurDAG->getTargetNode(PPC::RLWINM, MVT::i32,
384 Select(N->getOperand(0).getOperand(0)),
385 getI32Imm(SH), getI32Imm(0), getI32Imm(31));
386 return Op0.Val;
387 }
388 SDOperand Tmp1 = (Op0IsAND && fullMask) ? Select(Op0.getOperand(0))
389 : Select(Op0);
390 SDOperand Tmp2 = IsAndWithShiftOp ? Select(Op1.getOperand(0).getOperand(0))
391 : Select(Op1.getOperand(0));
392 Op0 = CurDAG->getTargetNode(PPC::RLWIMI, MVT::i32, Tmp1, Tmp2,
393 getI32Imm(SH), getI32Imm(MB), getI32Imm(ME));
394 return Op0.Val;
395 }
396 return 0;
397}
398
Chris Lattner9944b762005-08-21 22:31:09 +0000399/// SelectAddr - Given the specified address, return the two operands for a
400/// load/store instruction, and return true if it should be an indexed [r+r]
401/// operation.
Nate Begeman1d9d7422005-10-18 00:28:58 +0000402bool PPCDAGToDAGISel::SelectAddr(SDOperand Addr, SDOperand &Op1,
403 SDOperand &Op2) {
Chris Lattner9944b762005-08-21 22:31:09 +0000404 unsigned imm = 0;
405 if (Addr.getOpcode() == ISD::ADD) {
406 if (isIntImmediate(Addr.getOperand(1), imm) && isInt16(imm)) {
407 Op1 = getI32Imm(Lo16(imm));
Chris Lattnere28e40a2005-08-25 00:45:43 +0000408 if (FrameIndexSDNode *FI =
409 dyn_cast<FrameIndexSDNode>(Addr.getOperand(0))) {
Chris Lattner9944b762005-08-21 22:31:09 +0000410 ++FrameOff;
Chris Lattnere28e40a2005-08-25 00:45:43 +0000411 Op2 = CurDAG->getTargetFrameIndex(FI->getIndex(), MVT::i32);
Chris Lattner9944b762005-08-21 22:31:09 +0000412 } else {
413 Op2 = Select(Addr.getOperand(0));
414 }
415 return false;
416 } else {
417 Op1 = Select(Addr.getOperand(0));
418 Op2 = Select(Addr.getOperand(1));
419 return true; // [r+r]
420 }
421 }
422
423 // Now check if we're dealing with a global, and whether or not we should emit
424 // an optimized load or store for statics.
425 if (GlobalAddressSDNode *GN = dyn_cast<GlobalAddressSDNode>(Addr)) {
426 GlobalValue *GV = GN->getGlobal();
427 if (!GV->hasWeakLinkage() && !GV->isExternal()) {
428 Op1 = CurDAG->getTargetGlobalAddress(GV, MVT::i32);
429 if (PICEnabled)
430 Op2 = CurDAG->getTargetNode(PPC::ADDIS, MVT::i32, getGlobalBaseReg(),
431 Op1);
432 else
433 Op2 = CurDAG->getTargetNode(PPC::LIS, MVT::i32, Op1);
434 return false;
435 }
Chris Lattnere28e40a2005-08-25 00:45:43 +0000436 } else if (FrameIndexSDNode *FI = dyn_cast<FrameIndexSDNode>(Addr)) {
Chris Lattner9944b762005-08-21 22:31:09 +0000437 Op1 = getI32Imm(0);
Chris Lattnere28e40a2005-08-25 00:45:43 +0000438 Op2 = CurDAG->getTargetFrameIndex(FI->getIndex(), MVT::i32);
Chris Lattner9944b762005-08-21 22:31:09 +0000439 return false;
440 } else if (ConstantPoolSDNode *CP = dyn_cast<ConstantPoolSDNode>(Addr)) {
441 Op1 = Addr;
442 if (PICEnabled)
443 Op2 = CurDAG->getTargetNode(PPC::ADDIS, MVT::i32, getGlobalBaseReg(),Op1);
444 else
445 Op2 = CurDAG->getTargetNode(PPC::LIS, MVT::i32, Op1);
446 return false;
447 }
448 Op1 = getI32Imm(0);
449 Op2 = Select(Addr);
450 return false;
451}
Chris Lattnera5a91b12005-08-17 19:33:03 +0000452
Chris Lattner2fbb4572005-08-21 18:50:37 +0000453/// SelectCC - Select a comparison of the specified values with the specified
454/// condition code, returning the CR# of the expression.
Nate Begeman1d9d7422005-10-18 00:28:58 +0000455SDOperand PPCDAGToDAGISel::SelectCC(SDOperand LHS, SDOperand RHS,
456 ISD::CondCode CC) {
Chris Lattner2fbb4572005-08-21 18:50:37 +0000457 // Always select the LHS.
458 LHS = Select(LHS);
459
460 // Use U to determine whether the SETCC immediate range is signed or not.
461 if (MVT::isInteger(LHS.getValueType())) {
462 bool U = ISD::isUnsignedIntSetCC(CC);
463 unsigned Imm;
464 if (isIntImmediate(RHS, Imm) &&
465 ((U && isUInt16(Imm)) || (!U && isInt16(Imm))))
466 return CurDAG->getTargetNode(U ? PPC::CMPLWI : PPC::CMPWI, MVT::i32,
467 LHS, getI32Imm(Lo16(Imm)));
468 return CurDAG->getTargetNode(U ? PPC::CMPLW : PPC::CMPW, MVT::i32,
469 LHS, Select(RHS));
Chris Lattner919c0322005-10-01 01:35:02 +0000470 } else if (LHS.getValueType() == MVT::f32) {
471 return CurDAG->getTargetNode(PPC::FCMPUS, MVT::i32, LHS, Select(RHS));
Chris Lattner2fbb4572005-08-21 18:50:37 +0000472 } else {
Chris Lattner919c0322005-10-01 01:35:02 +0000473 return CurDAG->getTargetNode(PPC::FCMPUD, MVT::i32, LHS, Select(RHS));
Chris Lattner2fbb4572005-08-21 18:50:37 +0000474 }
475}
476
477/// getBCCForSetCC - Returns the PowerPC condition branch mnemonic corresponding
478/// to Condition.
479static unsigned getBCCForSetCC(ISD::CondCode CC) {
480 switch (CC) {
481 default: assert(0 && "Unknown condition!"); abort();
Chris Lattnered048c02005-10-28 20:49:47 +0000482 case ISD::SETOEQ: // FIXME: This is incorrect see PR642.
Chris Lattner2fbb4572005-08-21 18:50:37 +0000483 case ISD::SETEQ: return PPC::BEQ;
Chris Lattnered048c02005-10-28 20:49:47 +0000484 case ISD::SETONE: // FIXME: This is incorrect see PR642.
Chris Lattner2fbb4572005-08-21 18:50:37 +0000485 case ISD::SETNE: return PPC::BNE;
Chris Lattnered048c02005-10-28 20:49:47 +0000486 case ISD::SETOLT: // FIXME: This is incorrect see PR642.
Chris Lattner2fbb4572005-08-21 18:50:37 +0000487 case ISD::SETULT:
488 case ISD::SETLT: return PPC::BLT;
Chris Lattnered048c02005-10-28 20:49:47 +0000489 case ISD::SETOLE: // FIXME: This is incorrect see PR642.
Chris Lattner2fbb4572005-08-21 18:50:37 +0000490 case ISD::SETULE:
491 case ISD::SETLE: return PPC::BLE;
Chris Lattnered048c02005-10-28 20:49:47 +0000492 case ISD::SETOGT: // FIXME: This is incorrect see PR642.
Chris Lattner2fbb4572005-08-21 18:50:37 +0000493 case ISD::SETUGT:
494 case ISD::SETGT: return PPC::BGT;
Chris Lattnered048c02005-10-28 20:49:47 +0000495 case ISD::SETOGE: // FIXME: This is incorrect see PR642.
Chris Lattner2fbb4572005-08-21 18:50:37 +0000496 case ISD::SETUGE:
497 case ISD::SETGE: return PPC::BGE;
Chris Lattner6df25072005-10-28 20:32:44 +0000498
499 case ISD::SETO: return PPC::BUN;
500 case ISD::SETUO: return PPC::BNU;
Chris Lattner2fbb4572005-08-21 18:50:37 +0000501 }
502 return 0;
503}
504
Chris Lattner64906a02005-08-25 20:08:18 +0000505/// getCRIdxForSetCC - Return the index of the condition register field
506/// associated with the SetCC condition, and whether or not the field is
507/// treated as inverted. That is, lt = 0; ge = 0 inverted.
508static unsigned getCRIdxForSetCC(ISD::CondCode CC, bool& Inv) {
509 switch (CC) {
510 default: assert(0 && "Unknown condition!"); abort();
Chris Lattnered048c02005-10-28 20:49:47 +0000511 case ISD::SETOLT: // FIXME: This is incorrect see PR642.
Chris Lattner64906a02005-08-25 20:08:18 +0000512 case ISD::SETULT:
513 case ISD::SETLT: Inv = false; return 0;
Chris Lattnered048c02005-10-28 20:49:47 +0000514 case ISD::SETOGE: // FIXME: This is incorrect see PR642.
Chris Lattner64906a02005-08-25 20:08:18 +0000515 case ISD::SETUGE:
516 case ISD::SETGE: Inv = true; return 0;
Chris Lattnered048c02005-10-28 20:49:47 +0000517 case ISD::SETOGT: // FIXME: This is incorrect see PR642.
Chris Lattner64906a02005-08-25 20:08:18 +0000518 case ISD::SETUGT:
519 case ISD::SETGT: Inv = false; return 1;
Chris Lattnered048c02005-10-28 20:49:47 +0000520 case ISD::SETOLE: // FIXME: This is incorrect see PR642.
Chris Lattner64906a02005-08-25 20:08:18 +0000521 case ISD::SETULE:
522 case ISD::SETLE: Inv = true; return 1;
Chris Lattnered048c02005-10-28 20:49:47 +0000523 case ISD::SETOEQ: // FIXME: This is incorrect see PR642.
Chris Lattner64906a02005-08-25 20:08:18 +0000524 case ISD::SETEQ: Inv = false; return 2;
Chris Lattnered048c02005-10-28 20:49:47 +0000525 case ISD::SETONE: // FIXME: This is incorrect see PR642.
Chris Lattner64906a02005-08-25 20:08:18 +0000526 case ISD::SETNE: Inv = true; return 2;
Chris Lattner6df25072005-10-28 20:32:44 +0000527 case ISD::SETO: Inv = true; return 3;
528 case ISD::SETUO: Inv = false; return 3;
Chris Lattner64906a02005-08-25 20:08:18 +0000529 }
530 return 0;
531}
Chris Lattner9944b762005-08-21 22:31:09 +0000532
Nate Begeman1d9d7422005-10-18 00:28:58 +0000533SDOperand PPCDAGToDAGISel::SelectDYNAMIC_STACKALLOC(SDOperand Op) {
Chris Lattnerbd937b92005-10-06 18:45:51 +0000534 SDNode *N = Op.Val;
535
536 // FIXME: We are currently ignoring the requested alignment for handling
537 // greater than the stack alignment. This will need to be revisited at some
538 // point. Align = N.getOperand(2);
539 if (!isa<ConstantSDNode>(N->getOperand(2)) ||
540 cast<ConstantSDNode>(N->getOperand(2))->getValue() != 0) {
541 std::cerr << "Cannot allocate stack object with greater alignment than"
542 << " the stack alignment yet!";
543 abort();
544 }
545 SDOperand Chain = Select(N->getOperand(0));
546 SDOperand Amt = Select(N->getOperand(1));
547
548 SDOperand R1Reg = CurDAG->getRegister(PPC::R1, MVT::i32);
549
550 SDOperand R1Val = CurDAG->getCopyFromReg(Chain, PPC::R1, MVT::i32);
551 Chain = R1Val.getValue(1);
552
553 // Subtract the amount (guaranteed to be a multiple of the stack alignment)
554 // from the stack pointer, giving us the result pointer.
555 SDOperand Result = CurDAG->getTargetNode(PPC::SUBF, MVT::i32, Amt, R1Val);
556
557 // Copy this result back into R1.
558 Chain = CurDAG->getNode(ISD::CopyToReg, MVT::Other, Chain, R1Reg, Result);
559
560 // Copy this result back out of R1 to make sure we're not using the stack
561 // space without decrementing the stack pointer.
562 Result = CurDAG->getCopyFromReg(Chain, PPC::R1, MVT::i32);
563
564 // Finally, replace the DYNAMIC_STACKALLOC with the copyfromreg.
565 CodeGenMap[Op.getValue(0)] = Result;
566 CodeGenMap[Op.getValue(1)] = Result.getValue(1);
567 return SDOperand(Result.Val, Op.ResNo);
568}
569
Nate Begeman1d9d7422005-10-18 00:28:58 +0000570SDOperand PPCDAGToDAGISel::SelectADD_PARTS(SDOperand Op) {
Chris Lattner2b63e4c2005-10-06 18:56:10 +0000571 SDNode *N = Op.Val;
572 SDOperand LHSL = Select(N->getOperand(0));
573 SDOperand LHSH = Select(N->getOperand(1));
574
575 unsigned Imm;
576 bool ME = false, ZE = false;
577 if (isIntImmediate(N->getOperand(3), Imm)) {
578 ME = (signed)Imm == -1;
579 ZE = Imm == 0;
580 }
581
582 std::vector<SDOperand> Result;
583 SDOperand CarryFromLo;
584 if (isIntImmediate(N->getOperand(2), Imm) &&
585 ((signed)Imm >= -32768 || (signed)Imm < 32768)) {
586 // Codegen the low 32 bits of the add. Interestingly, there is no
587 // shifted form of add immediate carrying.
588 CarryFromLo = CurDAG->getTargetNode(PPC::ADDIC, MVT::i32, MVT::Flag,
589 LHSL, getI32Imm(Imm));
590 } else {
591 CarryFromLo = CurDAG->getTargetNode(PPC::ADDC, MVT::i32, MVT::Flag,
592 LHSL, Select(N->getOperand(2)));
593 }
594 CarryFromLo = CarryFromLo.getValue(1);
595
596 // Codegen the high 32 bits, adding zero, minus one, or the full value
597 // along with the carry flag produced by addc/addic.
598 SDOperand ResultHi;
599 if (ZE)
600 ResultHi = CurDAG->getTargetNode(PPC::ADDZE, MVT::i32, LHSH, CarryFromLo);
601 else if (ME)
602 ResultHi = CurDAG->getTargetNode(PPC::ADDME, MVT::i32, LHSH, CarryFromLo);
603 else
604 ResultHi = CurDAG->getTargetNode(PPC::ADDE, MVT::i32, LHSH,
605 Select(N->getOperand(3)), CarryFromLo);
606 Result.push_back(CarryFromLo.getValue(0));
607 Result.push_back(ResultHi);
608
609 CodeGenMap[Op.getValue(0)] = Result[0];
610 CodeGenMap[Op.getValue(1)] = Result[1];
611 return Result[Op.ResNo];
612}
Nate Begeman1d9d7422005-10-18 00:28:58 +0000613SDOperand PPCDAGToDAGISel::SelectSUB_PARTS(SDOperand Op) {
Chris Lattner2b63e4c2005-10-06 18:56:10 +0000614 SDNode *N = Op.Val;
615 SDOperand LHSL = Select(N->getOperand(0));
616 SDOperand LHSH = Select(N->getOperand(1));
617 SDOperand RHSL = Select(N->getOperand(2));
618 SDOperand RHSH = Select(N->getOperand(3));
619
620 std::vector<SDOperand> Result;
621 Result.push_back(CurDAG->getTargetNode(PPC::SUBFC, MVT::i32, MVT::Flag,
622 RHSL, LHSL));
623 Result.push_back(CurDAG->getTargetNode(PPC::SUBFE, MVT::i32, RHSH, LHSH,
624 Result[0].getValue(1)));
625 CodeGenMap[Op.getValue(0)] = Result[0];
626 CodeGenMap[Op.getValue(1)] = Result[1];
627 return Result[Op.ResNo];
628}
629
Nate Begeman1d9d7422005-10-18 00:28:58 +0000630SDOperand PPCDAGToDAGISel::SelectSETCC(SDOperand Op) {
Chris Lattner222adac2005-10-06 19:03:35 +0000631 SDNode *N = Op.Val;
632 unsigned Imm;
633 ISD::CondCode CC = cast<CondCodeSDNode>(N->getOperand(2))->get();
634 if (isIntImmediate(N->getOperand(1), Imm)) {
635 // We can codegen setcc op, imm very efficiently compared to a brcond.
636 // Check for those cases here.
637 // setcc op, 0
638 if (Imm == 0) {
639 SDOperand Op = Select(N->getOperand(0));
640 switch (CC) {
Chris Lattnerdabb8292005-10-21 21:17:10 +0000641 default: break;
642 case ISD::SETEQ:
643 Op = CurDAG->getTargetNode(PPC::CNTLZW, MVT::i32, Op);
644 CurDAG->SelectNodeTo(N, PPC::RLWINM, MVT::i32, Op, getI32Imm(27),
645 getI32Imm(5), getI32Imm(31));
646 return SDOperand(N, 0);
647 case ISD::SETNE: {
648 SDOperand AD = CurDAG->getTargetNode(PPC::ADDIC, MVT::i32, MVT::Flag,
649 Op, getI32Imm(~0U));
650 CurDAG->SelectNodeTo(N, PPC::SUBFE, MVT::i32, AD, Op, AD.getValue(1));
651 return SDOperand(N, 0);
Chris Lattner222adac2005-10-06 19:03:35 +0000652 }
Chris Lattnerdabb8292005-10-21 21:17:10 +0000653 case ISD::SETLT:
654 CurDAG->SelectNodeTo(N, PPC::RLWINM, MVT::i32, Op, getI32Imm(1),
655 getI32Imm(31), getI32Imm(31));
656 return SDOperand(N, 0);
657 case ISD::SETGT: {
658 SDOperand T = CurDAG->getTargetNode(PPC::NEG, MVT::i32, Op);
659 T = CurDAG->getTargetNode(PPC::ANDC, MVT::i32, T, Op);;
660 CurDAG->SelectNodeTo(N, PPC::RLWINM, MVT::i32, T, getI32Imm(1),
661 getI32Imm(31), getI32Imm(31));
662 return SDOperand(N, 0);
663 }
664 }
Chris Lattner222adac2005-10-06 19:03:35 +0000665 } else if (Imm == ~0U) { // setcc op, -1
666 SDOperand Op = Select(N->getOperand(0));
667 switch (CC) {
Chris Lattnerdabb8292005-10-21 21:17:10 +0000668 default: break;
669 case ISD::SETEQ:
670 Op = CurDAG->getTargetNode(PPC::ADDIC, MVT::i32, MVT::Flag,
671 Op, getI32Imm(1));
672 CurDAG->SelectNodeTo(N, PPC::ADDZE, MVT::i32,
673 CurDAG->getTargetNode(PPC::LI, MVT::i32,
674 getI32Imm(0)),
675 Op.getValue(1));
676 return SDOperand(N, 0);
677 case ISD::SETNE: {
678 Op = CurDAG->getTargetNode(PPC::NOR, MVT::i32, Op, Op);
679 SDOperand AD = CurDAG->getTargetNode(PPC::ADDIC, MVT::i32, MVT::Flag,
680 Op, getI32Imm(~0U));
681 CurDAG->SelectNodeTo(N, PPC::SUBFE, MVT::i32, AD, Op, AD.getValue(1));
682 return SDOperand(N, 0);
Chris Lattner222adac2005-10-06 19:03:35 +0000683 }
Chris Lattnerdabb8292005-10-21 21:17:10 +0000684 case ISD::SETLT: {
685 SDOperand AD = CurDAG->getTargetNode(PPC::ADDI, MVT::i32, Op,
686 getI32Imm(1));
687 SDOperand AN = CurDAG->getTargetNode(PPC::AND, MVT::i32, AD, Op);
688 CurDAG->SelectNodeTo(N, PPC::RLWINM, MVT::i32, AN, getI32Imm(1),
689 getI32Imm(31), getI32Imm(31));
690 return SDOperand(N, 0);
691 }
692 case ISD::SETGT:
693 Op = CurDAG->getTargetNode(PPC::RLWINM, MVT::i32, Op, getI32Imm(1),
694 getI32Imm(31), getI32Imm(31));
695 CurDAG->SelectNodeTo(N, PPC::XORI, MVT::i32, Op, getI32Imm(1));
696 return SDOperand(N, 0);
697 }
Chris Lattner222adac2005-10-06 19:03:35 +0000698 }
699 }
700
701 bool Inv;
702 unsigned Idx = getCRIdxForSetCC(CC, Inv);
703 SDOperand CCReg = SelectCC(N->getOperand(0), N->getOperand(1), CC);
704 SDOperand IntCR;
705
706 // Force the ccreg into CR7.
707 SDOperand CR7Reg = CurDAG->getRegister(PPC::CR7, MVT::i32);
708
709 std::vector<MVT::ValueType> VTs;
710 VTs.push_back(MVT::Other);
711 VTs.push_back(MVT::Flag); // NONSTANDARD CopyToReg node: defines a flag
712 std::vector<SDOperand> Ops;
713 Ops.push_back(CurDAG->getEntryNode());
714 Ops.push_back(CR7Reg);
715 Ops.push_back(CCReg);
716 CCReg = CurDAG->getNode(ISD::CopyToReg, VTs, Ops).getValue(1);
717
718 if (TLI.getTargetMachine().getSubtarget<PPCSubtarget>().isGigaProcessor())
719 IntCR = CurDAG->getTargetNode(PPC::MFOCRF, MVT::i32, CR7Reg, CCReg);
720 else
721 IntCR = CurDAG->getTargetNode(PPC::MFCR, MVT::i32, CCReg);
722
723 if (!Inv) {
724 CurDAG->SelectNodeTo(N, PPC::RLWINM, MVT::i32, IntCR,
725 getI32Imm(32-(3-Idx)), getI32Imm(31), getI32Imm(31));
726 } else {
727 SDOperand Tmp =
728 CurDAG->getTargetNode(PPC::RLWINM, MVT::i32, IntCR,
729 getI32Imm(32-(3-Idx)), getI32Imm(31),getI32Imm(31));
730 CurDAG->SelectNodeTo(N, PPC::XORI, MVT::i32, Tmp, getI32Imm(1));
731 }
732
733 return SDOperand(N, 0);
734}
Chris Lattner2b63e4c2005-10-06 18:56:10 +0000735
Nate Begeman1d9d7422005-10-18 00:28:58 +0000736SDOperand PPCDAGToDAGISel::SelectCALL(SDOperand Op) {
Chris Lattner6a16f6a2005-10-06 19:07:45 +0000737 SDNode *N = Op.Val;
738 SDOperand Chain = Select(N->getOperand(0));
739
740 unsigned CallOpcode;
741 std::vector<SDOperand> CallOperands;
742
743 if (GlobalAddressSDNode *GASD =
744 dyn_cast<GlobalAddressSDNode>(N->getOperand(1))) {
745 CallOpcode = PPC::CALLpcrel;
746 CallOperands.push_back(CurDAG->getTargetGlobalAddress(GASD->getGlobal(),
747 MVT::i32));
748 } else if (ExternalSymbolSDNode *ESSDN =
749 dyn_cast<ExternalSymbolSDNode>(N->getOperand(1))) {
750 CallOpcode = PPC::CALLpcrel;
751 CallOperands.push_back(N->getOperand(1));
752 } else {
753 // Copy the callee address into the CTR register.
754 SDOperand Callee = Select(N->getOperand(1));
755 Chain = CurDAG->getTargetNode(PPC::MTCTR, MVT::Other, Callee, Chain);
756
757 // Copy the callee address into R12 on darwin.
758 SDOperand R12 = CurDAG->getRegister(PPC::R12, MVT::i32);
759 Chain = CurDAG->getNode(ISD::CopyToReg, MVT::Other, Chain, R12, Callee);
760
761 CallOperands.push_back(getI32Imm(20)); // Information to encode indcall
762 CallOperands.push_back(getI32Imm(0)); // Information to encode indcall
763 CallOperands.push_back(R12);
764 CallOpcode = PPC::CALLindirect;
765 }
766
767 unsigned GPR_idx = 0, FPR_idx = 0;
768 static const unsigned GPR[] = {
769 PPC::R3, PPC::R4, PPC::R5, PPC::R6,
770 PPC::R7, PPC::R8, PPC::R9, PPC::R10,
771 };
772 static const unsigned FPR[] = {
773 PPC::F1, PPC::F2, PPC::F3, PPC::F4, PPC::F5, PPC::F6, PPC::F7,
774 PPC::F8, PPC::F9, PPC::F10, PPC::F11, PPC::F12, PPC::F13
775 };
776
777 SDOperand InFlag; // Null incoming flag value.
778
779 for (unsigned i = 2, e = N->getNumOperands(); i != e; ++i) {
780 unsigned DestReg = 0;
781 MVT::ValueType RegTy = N->getOperand(i).getValueType();
782 if (RegTy == MVT::i32) {
783 assert(GPR_idx < 8 && "Too many int args");
784 DestReg = GPR[GPR_idx++];
785 } else {
786 assert(MVT::isFloatingPoint(N->getOperand(i).getValueType()) &&
787 "Unpromoted integer arg?");
788 assert(FPR_idx < 13 && "Too many fp args");
789 DestReg = FPR[FPR_idx++];
790 }
791
792 if (N->getOperand(i).getOpcode() != ISD::UNDEF) {
793 SDOperand Val = Select(N->getOperand(i));
794 Chain = CurDAG->getCopyToReg(Chain, DestReg, Val, InFlag);
795 InFlag = Chain.getValue(1);
796 CallOperands.push_back(CurDAG->getRegister(DestReg, RegTy));
797 }
798 }
799
800 // Finally, once everything is in registers to pass to the call, emit the
801 // call itself.
802 if (InFlag.Val)
803 CallOperands.push_back(InFlag); // Strong dep on register copies.
804 else
805 CallOperands.push_back(Chain); // Weak dep on whatever occurs before
806 Chain = CurDAG->getTargetNode(CallOpcode, MVT::Other, MVT::Flag,
807 CallOperands);
808
809 std::vector<SDOperand> CallResults;
810
811 // If the call has results, copy the values out of the ret val registers.
812 switch (N->getValueType(0)) {
813 default: assert(0 && "Unexpected ret value!");
814 case MVT::Other: break;
815 case MVT::i32:
816 if (N->getValueType(1) == MVT::i32) {
817 Chain = CurDAG->getCopyFromReg(Chain, PPC::R4, MVT::i32,
818 Chain.getValue(1)).getValue(1);
819 CallResults.push_back(Chain.getValue(0));
820 Chain = CurDAG->getCopyFromReg(Chain, PPC::R3, MVT::i32,
821 Chain.getValue(2)).getValue(1);
822 CallResults.push_back(Chain.getValue(0));
823 } else {
824 Chain = CurDAG->getCopyFromReg(Chain, PPC::R3, MVT::i32,
825 Chain.getValue(1)).getValue(1);
826 CallResults.push_back(Chain.getValue(0));
827 }
828 break;
829 case MVT::f32:
830 case MVT::f64:
831 Chain = CurDAG->getCopyFromReg(Chain, PPC::F1, N->getValueType(0),
832 Chain.getValue(1)).getValue(1);
833 CallResults.push_back(Chain.getValue(0));
834 break;
835 }
836
837 CallResults.push_back(Chain);
838 for (unsigned i = 0, e = CallResults.size(); i != e; ++i)
839 CodeGenMap[Op.getValue(i)] = CallResults[i];
840 return CallResults[Op.ResNo];
841}
842
Chris Lattnera5a91b12005-08-17 19:33:03 +0000843// Select - Convert the specified operand from a target-independent to a
844// target-specific node if it hasn't already been changed.
Nate Begeman1d9d7422005-10-18 00:28:58 +0000845SDOperand PPCDAGToDAGISel::Select(SDOperand Op) {
Chris Lattnera5a91b12005-08-17 19:33:03 +0000846 SDNode *N = Op.Val;
Chris Lattner0bbea952005-08-26 20:25:03 +0000847 if (N->getOpcode() >= ISD::BUILTIN_OP_END &&
848 N->getOpcode() < PPCISD::FIRST_NUMBER)
Chris Lattnera5a91b12005-08-17 19:33:03 +0000849 return Op; // Already selected.
Chris Lattnerd3d2cf52005-09-29 00:59:32 +0000850
851 // If this has already been converted, use it.
852 std::map<SDOperand, SDOperand>::iterator CGMI = CodeGenMap.find(Op);
853 if (CGMI != CodeGenMap.end()) return CGMI->second;
Chris Lattnera5a91b12005-08-17 19:33:03 +0000854
855 switch (N->getOpcode()) {
Chris Lattner19c09072005-09-07 23:45:15 +0000856 default: break;
Chris Lattner222adac2005-10-06 19:03:35 +0000857 case ISD::DYNAMIC_STACKALLOC: return SelectDYNAMIC_STACKALLOC(Op);
858 case ISD::ADD_PARTS: return SelectADD_PARTS(Op);
859 case ISD::SUB_PARTS: return SelectSUB_PARTS(Op);
860 case ISD::SETCC: return SelectSETCC(Op);
Chris Lattner6a16f6a2005-10-06 19:07:45 +0000861 case ISD::CALL: return SelectCALL(Op);
862 case ISD::TAILCALL: return SelectCALL(Op);
863
Chris Lattnere28e40a2005-08-25 00:45:43 +0000864 case ISD::FrameIndex: {
865 int FI = cast<FrameIndexSDNode>(N)->getIndex();
Chris Lattner99ea9da2005-10-25 20:26:41 +0000866 if (N->hasOneUse()) {
867 CurDAG->SelectNodeTo(N, PPC::ADDI, MVT::i32,
868 CurDAG->getTargetFrameIndex(FI, MVT::i32),
869 getI32Imm(0));
870 return SDOperand(N, 0);
871 }
872 return CurDAG->getTargetNode(PPC::ADDI, MVT::i32,
873 CurDAG->getTargetFrameIndex(FI, MVT::i32),
874 getI32Imm(0));
Chris Lattnere28e40a2005-08-25 00:45:43 +0000875 }
Chris Lattner34e17052005-08-25 05:04:11 +0000876 case ISD::ConstantPool: {
Chris Lattner5839bf22005-08-26 17:15:30 +0000877 Constant *C = cast<ConstantPoolSDNode>(N)->get();
878 SDOperand Tmp, CPI = CurDAG->getTargetConstantPool(C, MVT::i32);
Chris Lattner34e17052005-08-25 05:04:11 +0000879 if (PICEnabled)
880 Tmp = CurDAG->getTargetNode(PPC::ADDIS, MVT::i32, getGlobalBaseReg(),CPI);
881 else
882 Tmp = CurDAG->getTargetNode(PPC::LIS, MVT::i32, CPI);
Chris Lattner3393e802005-10-25 19:32:37 +0000883 if (N->hasOneUse()) {
884 CurDAG->SelectNodeTo(N, PPC::LA, MVT::i32, Tmp, CPI);
885 return SDOperand(N, 0);
886 }
887 return CurDAG->getTargetNode(PPC::LA, MVT::i32, Tmp, CPI);
Chris Lattner34e17052005-08-25 05:04:11 +0000888 }
Chris Lattner4416f1a2005-08-19 22:38:53 +0000889 case ISD::GlobalAddress: {
890 GlobalValue *GV = cast<GlobalAddressSDNode>(N)->getGlobal();
891 SDOperand Tmp;
892 SDOperand GA = CurDAG->getTargetGlobalAddress(GV, MVT::i32);
Chris Lattner9944b762005-08-21 22:31:09 +0000893 if (PICEnabled)
894 Tmp = CurDAG->getTargetNode(PPC::ADDIS, MVT::i32, getGlobalBaseReg(), GA);
895 else
Chris Lattner4416f1a2005-08-19 22:38:53 +0000896 Tmp = CurDAG->getTargetNode(PPC::LIS, MVT::i32, GA);
Chris Lattner9944b762005-08-21 22:31:09 +0000897
Chris Lattner4416f1a2005-08-19 22:38:53 +0000898 if (GV->hasWeakLinkage() || GV->isExternal())
Chris Lattner99ea9da2005-10-25 20:26:41 +0000899 return CurDAG->getTargetNode(PPC::LWZ, MVT::i32, GA, Tmp);
Chris Lattner4416f1a2005-08-19 22:38:53 +0000900 else
Chris Lattner99ea9da2005-10-25 20:26:41 +0000901 return CurDAG->getTargetNode(PPC::LA, MVT::i32, Tmp, GA);
Chris Lattner4416f1a2005-08-19 22:38:53 +0000902 }
Chris Lattner615c2d02005-09-28 22:29:58 +0000903 case ISD::FADD: {
904 MVT::ValueType Ty = N->getValueType(0);
Chris Lattnera5a91b12005-08-17 19:33:03 +0000905 if (!NoExcessFPPrecision) { // Match FMA ops
Chris Lattner615c2d02005-09-28 22:29:58 +0000906 if (N->getOperand(0).getOpcode() == ISD::FMUL &&
Chris Lattnera5a91b12005-08-17 19:33:03 +0000907 N->getOperand(0).Val->hasOneUse()) {
908 ++FusedFP; // Statistic
Chris Lattner2bb06cd2005-08-26 16:36:26 +0000909 CurDAG->SelectNodeTo(N, Ty == MVT::f64 ? PPC::FMADD : PPC::FMADDS, Ty,
Chris Lattnera5a91b12005-08-17 19:33:03 +0000910 Select(N->getOperand(0).getOperand(0)),
911 Select(N->getOperand(0).getOperand(1)),
912 Select(N->getOperand(1)));
Chris Lattner25dae722005-09-03 00:53:47 +0000913 return SDOperand(N, 0);
Chris Lattner615c2d02005-09-28 22:29:58 +0000914 } else if (N->getOperand(1).getOpcode() == ISD::FMUL &&
Chris Lattnera5a91b12005-08-17 19:33:03 +0000915 N->getOperand(1).hasOneUse()) {
916 ++FusedFP; // Statistic
Chris Lattner2bb06cd2005-08-26 16:36:26 +0000917 CurDAG->SelectNodeTo(N, Ty == MVT::f64 ? PPC::FMADD : PPC::FMADDS, Ty,
Chris Lattnera5a91b12005-08-17 19:33:03 +0000918 Select(N->getOperand(1).getOperand(0)),
919 Select(N->getOperand(1).getOperand(1)),
920 Select(N->getOperand(0)));
Chris Lattner25dae722005-09-03 00:53:47 +0000921 return SDOperand(N, 0);
Chris Lattnera5a91b12005-08-17 19:33:03 +0000922 }
923 }
924
Chris Lattner2bb06cd2005-08-26 16:36:26 +0000925 CurDAG->SelectNodeTo(N, Ty == MVT::f64 ? PPC::FADD : PPC::FADDS, Ty,
Chris Lattnera5a91b12005-08-17 19:33:03 +0000926 Select(N->getOperand(0)), Select(N->getOperand(1)));
Chris Lattner25dae722005-09-03 00:53:47 +0000927 return SDOperand(N, 0);
Chris Lattnera5a91b12005-08-17 19:33:03 +0000928 }
Chris Lattner615c2d02005-09-28 22:29:58 +0000929 case ISD::FSUB: {
930 MVT::ValueType Ty = N->getValueType(0);
Chris Lattnera5a91b12005-08-17 19:33:03 +0000931
932 if (!NoExcessFPPrecision) { // Match FMA ops
Chris Lattner615c2d02005-09-28 22:29:58 +0000933 if (N->getOperand(0).getOpcode() == ISD::FMUL &&
Chris Lattnera5a91b12005-08-17 19:33:03 +0000934 N->getOperand(0).Val->hasOneUse()) {
935 ++FusedFP; // Statistic
Chris Lattner2bb06cd2005-08-26 16:36:26 +0000936 CurDAG->SelectNodeTo(N, Ty == MVT::f64 ? PPC::FMSUB : PPC::FMSUBS, Ty,
Chris Lattnera5a91b12005-08-17 19:33:03 +0000937 Select(N->getOperand(0).getOperand(0)),
938 Select(N->getOperand(0).getOperand(1)),
939 Select(N->getOperand(1)));
Chris Lattner25dae722005-09-03 00:53:47 +0000940 return SDOperand(N, 0);
Chris Lattner615c2d02005-09-28 22:29:58 +0000941 } else if (N->getOperand(1).getOpcode() == ISD::FMUL &&
Chris Lattnera5a91b12005-08-17 19:33:03 +0000942 N->getOperand(1).Val->hasOneUse()) {
943 ++FusedFP; // Statistic
Chris Lattner2bb06cd2005-08-26 16:36:26 +0000944 CurDAG->SelectNodeTo(N, Ty == MVT::f64 ? PPC::FNMSUB : PPC::FNMSUBS, Ty,
Chris Lattnera5a91b12005-08-17 19:33:03 +0000945 Select(N->getOperand(1).getOperand(0)),
946 Select(N->getOperand(1).getOperand(1)),
947 Select(N->getOperand(0)));
Chris Lattner25dae722005-09-03 00:53:47 +0000948 return SDOperand(N, 0);
Chris Lattnera5a91b12005-08-17 19:33:03 +0000949 }
950 }
Chris Lattner2bb06cd2005-08-26 16:36:26 +0000951 CurDAG->SelectNodeTo(N, Ty == MVT::f64 ? PPC::FSUB : PPC::FSUBS, Ty,
Chris Lattnera5a91b12005-08-17 19:33:03 +0000952 Select(N->getOperand(0)),
953 Select(N->getOperand(1)));
Chris Lattner25dae722005-09-03 00:53:47 +0000954 return SDOperand(N, 0);
Nate Begeman26653502005-08-17 23:46:35 +0000955 }
Chris Lattner88add102005-09-28 22:50:24 +0000956 case ISD::SDIV: {
Nate Begeman405e3ec2005-10-21 00:02:42 +0000957 // FIXME: since this depends on the setting of the carry flag from the srawi
958 // we should really be making notes about that for the scheduler.
959 // FIXME: It sure would be nice if we could cheaply recognize the
960 // srl/add/sra pattern the dag combiner will generate for this as
961 // sra/addze rather than having to handle sdiv ourselves. oh well.
Chris Lattner8784a232005-08-25 17:50:06 +0000962 unsigned Imm;
963 if (isIntImmediate(N->getOperand(1), Imm)) {
964 if ((signed)Imm > 0 && isPowerOf2_32(Imm)) {
965 SDOperand Op =
966 CurDAG->getTargetNode(PPC::SRAWI, MVT::i32, MVT::Flag,
967 Select(N->getOperand(0)),
968 getI32Imm(Log2_32(Imm)));
Chris Lattner2bb06cd2005-08-26 16:36:26 +0000969 CurDAG->SelectNodeTo(N, PPC::ADDZE, MVT::i32,
Chris Lattner8784a232005-08-25 17:50:06 +0000970 Op.getValue(0), Op.getValue(1));
Chris Lattner25dae722005-09-03 00:53:47 +0000971 return SDOperand(N, 0);
Chris Lattner8784a232005-08-25 17:50:06 +0000972 } else if ((signed)Imm < 0 && isPowerOf2_32(-Imm)) {
973 SDOperand Op =
Chris Lattner2501d5e2005-08-30 17:13:58 +0000974 CurDAG->getTargetNode(PPC::SRAWI, MVT::i32, MVT::Flag,
Chris Lattner8784a232005-08-25 17:50:06 +0000975 Select(N->getOperand(0)),
976 getI32Imm(Log2_32(-Imm)));
977 SDOperand PT =
Chris Lattner2501d5e2005-08-30 17:13:58 +0000978 CurDAG->getTargetNode(PPC::ADDZE, MVT::i32, Op.getValue(0),
979 Op.getValue(1));
Chris Lattner2bb06cd2005-08-26 16:36:26 +0000980 CurDAG->SelectNodeTo(N, PPC::NEG, MVT::i32, PT);
Chris Lattner25dae722005-09-03 00:53:47 +0000981 return SDOperand(N, 0);
Chris Lattner8784a232005-08-25 17:50:06 +0000982 }
983 }
Chris Lattner047b9522005-08-25 22:04:30 +0000984
Chris Lattner237733e2005-09-29 23:33:31 +0000985 // Other cases are autogenerated.
986 break;
Chris Lattner047b9522005-08-25 22:04:30 +0000987 }
Nate Begemancffc32b2005-08-18 07:30:46 +0000988 case ISD::AND: {
Nate Begemana6940472005-08-18 18:01:39 +0000989 unsigned Imm;
Nate Begemancffc32b2005-08-18 07:30:46 +0000990 // If this is an and of a value rotated between 0 and 31 bits and then and'd
991 // with a mask, emit rlwinm
992 if (isIntImmediate(N->getOperand(1), Imm) && (isShiftedMask_32(Imm) ||
993 isShiftedMask_32(~Imm))) {
994 SDOperand Val;
Nate Begemana6940472005-08-18 18:01:39 +0000995 unsigned SH, MB, ME;
Nate Begemancffc32b2005-08-18 07:30:46 +0000996 if (isRotateAndMask(N->getOperand(0).Val, Imm, false, SH, MB, ME)) {
997 Val = Select(N->getOperand(0).getOperand(0));
Chris Lattner3393e802005-10-25 19:32:37 +0000998 } else if (Imm == 0) {
999 // AND X, 0 -> 0, not "rlwinm 32".
1000 return Select(N->getOperand(1));
1001 } else {
Nate Begemancffc32b2005-08-18 07:30:46 +00001002 Val = Select(N->getOperand(0));
1003 isRunOfOnes(Imm, MB, ME);
1004 SH = 0;
1005 }
Chris Lattner2bb06cd2005-08-26 16:36:26 +00001006 CurDAG->SelectNodeTo(N, PPC::RLWINM, MVT::i32, Val, getI32Imm(SH),
Nate Begemancffc32b2005-08-18 07:30:46 +00001007 getI32Imm(MB), getI32Imm(ME));
Chris Lattner25dae722005-09-03 00:53:47 +00001008 return SDOperand(N, 0);
Nate Begemancffc32b2005-08-18 07:30:46 +00001009 }
Chris Lattner237733e2005-09-29 23:33:31 +00001010
1011 // Other cases are autogenerated.
1012 break;
Nate Begemancffc32b2005-08-18 07:30:46 +00001013 }
Nate Begeman02b88a42005-08-19 00:38:14 +00001014 case ISD::OR:
Chris Lattnerd3d2cf52005-09-29 00:59:32 +00001015 if (SDNode *I = SelectBitfieldInsert(N))
1016 return CodeGenMap[Op] = SDOperand(I, 0);
Chris Lattnerd3d2cf52005-09-29 00:59:32 +00001017
Chris Lattner237733e2005-09-29 23:33:31 +00001018 // Other cases are autogenerated.
1019 break;
Nate Begemanc15ed442005-08-18 23:38:00 +00001020 case ISD::SHL: {
1021 unsigned Imm, SH, MB, ME;
1022 if (isOpcWithIntImmediate(N->getOperand(0).Val, ISD::AND, Imm) &&
Nate Begeman2d5aff72005-10-19 18:42:01 +00001023 isRotateAndMask(N, Imm, true, SH, MB, ME)) {
Chris Lattner2bb06cd2005-08-26 16:36:26 +00001024 CurDAG->SelectNodeTo(N, PPC::RLWINM, MVT::i32,
Nate Begemanc15ed442005-08-18 23:38:00 +00001025 Select(N->getOperand(0).getOperand(0)),
1026 getI32Imm(SH), getI32Imm(MB), getI32Imm(ME));
Nate Begeman2d5aff72005-10-19 18:42:01 +00001027 return SDOperand(N, 0);
Nate Begeman8d948322005-10-19 01:12:32 +00001028 }
Nate Begeman2d5aff72005-10-19 18:42:01 +00001029
1030 // Other cases are autogenerated.
1031 break;
Nate Begemanc15ed442005-08-18 23:38:00 +00001032 }
1033 case ISD::SRL: {
1034 unsigned Imm, SH, MB, ME;
1035 if (isOpcWithIntImmediate(N->getOperand(0).Val, ISD::AND, Imm) &&
Nate Begeman2d5aff72005-10-19 18:42:01 +00001036 isRotateAndMask(N, Imm, true, SH, MB, ME)) {
Chris Lattner2bb06cd2005-08-26 16:36:26 +00001037 CurDAG->SelectNodeTo(N, PPC::RLWINM, MVT::i32,
Nate Begemanc15ed442005-08-18 23:38:00 +00001038 Select(N->getOperand(0).getOperand(0)),
Nate Begemanc09eeec2005-09-06 22:03:27 +00001039 getI32Imm(SH & 0x1F), getI32Imm(MB), getI32Imm(ME));
Nate Begeman2d5aff72005-10-19 18:42:01 +00001040 return SDOperand(N, 0);
Nate Begeman8d948322005-10-19 01:12:32 +00001041 }
Nate Begeman2d5aff72005-10-19 18:42:01 +00001042
1043 // Other cases are autogenerated.
1044 break;
Nate Begemanc15ed442005-08-18 23:38:00 +00001045 }
Nate Begeman26653502005-08-17 23:46:35 +00001046 case ISD::FNEG: {
1047 SDOperand Val = Select(N->getOperand(0));
1048 MVT::ValueType Ty = N->getValueType(0);
Chris Lattner4cb5a1b2005-10-15 22:06:18 +00001049 if (N->getOperand(0).Val->hasOneUse()) {
Nate Begeman26653502005-08-17 23:46:35 +00001050 unsigned Opc;
Chris Lattner528f58e2005-08-28 23:39:22 +00001051 switch (Val.isTargetOpcode() ? Val.getTargetOpcode() : 0) {
Nate Begeman26653502005-08-17 23:46:35 +00001052 default: Opc = 0; break;
Chris Lattner919c0322005-10-01 01:35:02 +00001053 case PPC::FABSS: Opc = PPC::FNABSS; break;
1054 case PPC::FABSD: Opc = PPC::FNABSD; break;
Nate Begeman26653502005-08-17 23:46:35 +00001055 case PPC::FMADD: Opc = PPC::FNMADD; break;
1056 case PPC::FMADDS: Opc = PPC::FNMADDS; break;
1057 case PPC::FMSUB: Opc = PPC::FNMSUB; break;
1058 case PPC::FMSUBS: Opc = PPC::FNMSUBS; break;
1059 }
1060 // If we inverted the opcode, then emit the new instruction with the
1061 // inverted opcode and the original instruction's operands. Otherwise,
1062 // fall through and generate a fneg instruction.
1063 if (Opc) {
Chris Lattner919c0322005-10-01 01:35:02 +00001064 if (Opc == PPC::FNABSS || Opc == PPC::FNABSD)
Chris Lattner2bb06cd2005-08-26 16:36:26 +00001065 CurDAG->SelectNodeTo(N, Opc, Ty, Val.getOperand(0));
Nate Begeman26653502005-08-17 23:46:35 +00001066 else
Chris Lattner2bb06cd2005-08-26 16:36:26 +00001067 CurDAG->SelectNodeTo(N, Opc, Ty, Val.getOperand(0),
Nate Begeman26653502005-08-17 23:46:35 +00001068 Val.getOperand(1), Val.getOperand(2));
Chris Lattner25dae722005-09-03 00:53:47 +00001069 return SDOperand(N, 0);
Nate Begeman26653502005-08-17 23:46:35 +00001070 }
1071 }
Chris Lattner919c0322005-10-01 01:35:02 +00001072 if (Ty == MVT::f32)
1073 CurDAG->SelectNodeTo(N, PPC::FNEGS, MVT::f32, Val);
1074 else
Chris Lattner2c1760f2005-10-01 02:51:36 +00001075 CurDAG->SelectNodeTo(N, PPC::FNEGD, MVT::f64, Val);
Chris Lattner25dae722005-09-03 00:53:47 +00001076 return SDOperand(N, 0);
Nate Begeman26653502005-08-17 23:46:35 +00001077 }
Chris Lattner9944b762005-08-21 22:31:09 +00001078 case ISD::LOAD:
1079 case ISD::EXTLOAD:
1080 case ISD::ZEXTLOAD:
1081 case ISD::SEXTLOAD: {
1082 SDOperand Op1, Op2;
1083 bool isIdx = SelectAddr(N->getOperand(1), Op1, Op2);
1084
1085 MVT::ValueType TypeBeingLoaded = (N->getOpcode() == ISD::LOAD) ?
1086 N->getValueType(0) : cast<VTSDNode>(N->getOperand(3))->getVT();
1087 unsigned Opc;
1088 switch (TypeBeingLoaded) {
1089 default: N->dump(); assert(0 && "Cannot load this type!");
1090 case MVT::i1:
1091 case MVT::i8: Opc = isIdx ? PPC::LBZX : PPC::LBZ; break;
1092 case MVT::i16:
1093 if (N->getOpcode() == ISD::SEXTLOAD) { // SEXT load?
1094 Opc = isIdx ? PPC::LHAX : PPC::LHA;
1095 } else {
1096 Opc = isIdx ? PPC::LHZX : PPC::LHZ;
1097 }
1098 break;
1099 case MVT::i32: Opc = isIdx ? PPC::LWZX : PPC::LWZ; break;
1100 case MVT::f32: Opc = isIdx ? PPC::LFSX : PPC::LFS; break;
1101 case MVT::f64: Opc = isIdx ? PPC::LFDX : PPC::LFD; break;
1102 }
1103
Chris Lattner919c0322005-10-01 01:35:02 +00001104 // If this is an f32 -> f64 load, emit the f32 load, then use an 'extending
1105 // copy'.
1106 if (TypeBeingLoaded != MVT::f32 || N->getOpcode() == ISD::LOAD) {
1107 CurDAG->SelectNodeTo(N, Opc, N->getValueType(0), MVT::Other,
1108 Op1, Op2, Select(N->getOperand(0)));
1109 return SDOperand(N, Op.ResNo);
1110 } else {
1111 std::vector<SDOperand> Ops;
1112 Ops.push_back(Op1);
1113 Ops.push_back(Op2);
1114 Ops.push_back(Select(N->getOperand(0)));
1115 SDOperand Res = CurDAG->getTargetNode(Opc, MVT::f32, MVT::Other, Ops);
1116 SDOperand Ext = CurDAG->getTargetNode(PPC::FMRSD, MVT::f64, Res);
1117 CodeGenMap[Op.getValue(0)] = Ext;
1118 CodeGenMap[Op.getValue(1)] = Res.getValue(1);
1119 if (Op.ResNo)
1120 return Res.getValue(1);
1121 else
1122 return Ext;
1123 }
Chris Lattner9944b762005-08-21 22:31:09 +00001124 }
Chris Lattnerf7f22552005-08-22 01:27:59 +00001125 case ISD::TRUNCSTORE:
1126 case ISD::STORE: {
1127 SDOperand AddrOp1, AddrOp2;
1128 bool isIdx = SelectAddr(N->getOperand(2), AddrOp1, AddrOp2);
1129
1130 unsigned Opc;
1131 if (N->getOpcode() == ISD::STORE) {
1132 switch (N->getOperand(1).getValueType()) {
1133 default: assert(0 && "unknown Type in store");
1134 case MVT::i32: Opc = isIdx ? PPC::STWX : PPC::STW; break;
1135 case MVT::f64: Opc = isIdx ? PPC::STFDX : PPC::STFD; break;
1136 case MVT::f32: Opc = isIdx ? PPC::STFSX : PPC::STFS; break;
1137 }
1138 } else { //ISD::TRUNCSTORE
1139 switch(cast<VTSDNode>(N->getOperand(4))->getVT()) {
1140 default: assert(0 && "unknown Type in store");
Chris Lattnerf7f22552005-08-22 01:27:59 +00001141 case MVT::i8: Opc = isIdx ? PPC::STBX : PPC::STB; break;
1142 case MVT::i16: Opc = isIdx ? PPC::STHX : PPC::STH; break;
1143 }
1144 }
Chris Lattnerfb0c9642005-08-24 22:45:17 +00001145
Chris Lattner2bb06cd2005-08-26 16:36:26 +00001146 CurDAG->SelectNodeTo(N, Opc, MVT::Other, Select(N->getOperand(1)),
Chris Lattnerf7f22552005-08-22 01:27:59 +00001147 AddrOp1, AddrOp2, Select(N->getOperand(0)));
Chris Lattner25dae722005-09-03 00:53:47 +00001148 return SDOperand(N, 0);
Chris Lattnerf7f22552005-08-22 01:27:59 +00001149 }
Chris Lattner64906a02005-08-25 20:08:18 +00001150
Chris Lattner13794f52005-08-26 18:46:49 +00001151 case ISD::SELECT_CC: {
1152 ISD::CondCode CC = cast<CondCodeSDNode>(N->getOperand(4))->get();
1153
1154 // handle the setcc cases here. select_cc lhs, 0, 1, 0, cc
1155 if (ConstantSDNode *N1C = dyn_cast<ConstantSDNode>(N->getOperand(1)))
1156 if (ConstantSDNode *N2C = dyn_cast<ConstantSDNode>(N->getOperand(2)))
1157 if (ConstantSDNode *N3C = dyn_cast<ConstantSDNode>(N->getOperand(3)))
1158 if (N1C->isNullValue() && N3C->isNullValue() &&
1159 N2C->getValue() == 1ULL && CC == ISD::SETNE) {
1160 SDOperand LHS = Select(N->getOperand(0));
1161 SDOperand Tmp =
1162 CurDAG->getTargetNode(PPC::ADDIC, MVT::i32, MVT::Flag,
1163 LHS, getI32Imm(~0U));
1164 CurDAG->SelectNodeTo(N, PPC::SUBFE, MVT::i32, Tmp, LHS,
1165 Tmp.getValue(1));
Chris Lattner25dae722005-09-03 00:53:47 +00001166 return SDOperand(N, 0);
Chris Lattner13794f52005-08-26 18:46:49 +00001167 }
Chris Lattner8a2d3ca2005-08-26 21:23:58 +00001168
Chris Lattner50ff55c2005-09-01 19:20:44 +00001169 SDOperand CCReg = SelectCC(N->getOperand(0), N->getOperand(1), CC);
Chris Lattner8a2d3ca2005-08-26 21:23:58 +00001170 unsigned BROpc = getBCCForSetCC(CC);
1171
1172 bool isFP = MVT::isFloatingPoint(N->getValueType(0));
Chris Lattner919c0322005-10-01 01:35:02 +00001173 unsigned SelectCCOp;
1174 if (MVT::isInteger(N->getValueType(0)))
1175 SelectCCOp = PPC::SELECT_CC_Int;
1176 else if (N->getValueType(0) == MVT::f32)
1177 SelectCCOp = PPC::SELECT_CC_F4;
1178 else
1179 SelectCCOp = PPC::SELECT_CC_F8;
Chris Lattner8a2d3ca2005-08-26 21:23:58 +00001180 CurDAG->SelectNodeTo(N, SelectCCOp, N->getValueType(0), CCReg,
1181 Select(N->getOperand(2)), Select(N->getOperand(3)),
1182 getI32Imm(BROpc));
Chris Lattner25dae722005-09-03 00:53:47 +00001183 return SDOperand(N, 0);
Chris Lattner13794f52005-08-26 18:46:49 +00001184 }
1185
Chris Lattnera2590c52005-08-24 00:47:15 +00001186 case ISD::CALLSEQ_START:
1187 case ISD::CALLSEQ_END: {
1188 unsigned Amt = cast<ConstantSDNode>(N->getOperand(1))->getValue();
1189 unsigned Opc = N->getOpcode() == ISD::CALLSEQ_START ?
1190 PPC::ADJCALLSTACKDOWN : PPC::ADJCALLSTACKUP;
Chris Lattner2bb06cd2005-08-26 16:36:26 +00001191 CurDAG->SelectNodeTo(N, Opc, MVT::Other,
Chris Lattnerfb0c9642005-08-24 22:45:17 +00001192 getI32Imm(Amt), Select(N->getOperand(0)));
Chris Lattner25dae722005-09-03 00:53:47 +00001193 return SDOperand(N, 0);
Chris Lattnera2590c52005-08-24 00:47:15 +00001194 }
Chris Lattnera5a91b12005-08-17 19:33:03 +00001195 case ISD::RET: {
1196 SDOperand Chain = Select(N->getOperand(0)); // Token chain.
1197
Chris Lattner7a49fdc2005-08-31 01:34:29 +00001198 if (N->getNumOperands() == 2) {
Chris Lattnera5a91b12005-08-17 19:33:03 +00001199 SDOperand Val = Select(N->getOperand(1));
Chris Lattnereb80fe82005-08-30 22:59:48 +00001200 if (N->getOperand(1).getValueType() == MVT::i32) {
Chris Lattnera5a91b12005-08-17 19:33:03 +00001201 Chain = CurDAG->getCopyToReg(Chain, PPC::R3, Val);
Chris Lattnereb80fe82005-08-30 22:59:48 +00001202 } else {
1203 assert(MVT::isFloatingPoint(N->getOperand(1).getValueType()));
1204 Chain = CurDAG->getCopyToReg(Chain, PPC::F1, Val);
Chris Lattnera5a91b12005-08-17 19:33:03 +00001205 }
Chris Lattner7a49fdc2005-08-31 01:34:29 +00001206 } else if (N->getNumOperands() > 1) {
1207 assert(N->getOperand(1).getValueType() == MVT::i32 &&
1208 N->getOperand(2).getValueType() == MVT::i32 &&
1209 N->getNumOperands() == 3 && "Unknown two-register ret value!");
1210 Chain = CurDAG->getCopyToReg(Chain, PPC::R4, Select(N->getOperand(1)));
1211 Chain = CurDAG->getCopyToReg(Chain, PPC::R3, Select(N->getOperand(2)));
Chris Lattnera5a91b12005-08-17 19:33:03 +00001212 }
1213
1214 // Finally, select this to a blr (return) instruction.
Chris Lattner2bb06cd2005-08-26 16:36:26 +00001215 CurDAG->SelectNodeTo(N, PPC::BLR, MVT::Other, Chain);
Chris Lattner25dae722005-09-03 00:53:47 +00001216 return SDOperand(N, 0);
Chris Lattnera5a91b12005-08-17 19:33:03 +00001217 }
Chris Lattner89532c72005-08-25 00:29:58 +00001218 case ISD::BR:
Chris Lattner2bb06cd2005-08-26 16:36:26 +00001219 CurDAG->SelectNodeTo(N, PPC::B, MVT::Other, N->getOperand(1),
Chris Lattner89532c72005-08-25 00:29:58 +00001220 Select(N->getOperand(0)));
Chris Lattner25dae722005-09-03 00:53:47 +00001221 return SDOperand(N, 0);
Chris Lattner2fbb4572005-08-21 18:50:37 +00001222 case ISD::BR_CC:
1223 case ISD::BRTWOWAY_CC: {
1224 SDOperand Chain = Select(N->getOperand(0));
1225 MachineBasicBlock *Dest =
1226 cast<BasicBlockSDNode>(N->getOperand(4))->getBasicBlock();
1227 ISD::CondCode CC = cast<CondCodeSDNode>(N->getOperand(1))->get();
1228 SDOperand CondCode = SelectCC(N->getOperand(2), N->getOperand(3), CC);
Chris Lattner2fbb4572005-08-21 18:50:37 +00001229
1230 // If this is a two way branch, then grab the fallthrough basic block
1231 // argument and build a PowerPC branch pseudo-op, suitable for long branch
1232 // conversion if necessary by the branch selection pass. Otherwise, emit a
1233 // standard conditional branch.
1234 if (N->getOpcode() == ISD::BRTWOWAY_CC) {
Chris Lattnerca0a4772005-10-01 23:06:26 +00001235 SDOperand CondTrueBlock = N->getOperand(4);
1236 SDOperand CondFalseBlock = N->getOperand(5);
1237
1238 // If the false case is the current basic block, then this is a self loop.
1239 // We do not want to emit "Loop: ... brcond Out; br Loop", as it adds an
1240 // extra dispatch group to the loop. Instead, invert the condition and
1241 // emit "Loop: ... br!cond Loop; br Out
1242 if (cast<BasicBlockSDNode>(CondFalseBlock)->getBasicBlock() == BB) {
1243 std::swap(CondTrueBlock, CondFalseBlock);
1244 CC = getSetCCInverse(CC,
1245 MVT::isInteger(N->getOperand(2).getValueType()));
1246 }
1247
1248 unsigned Opc = getBCCForSetCC(CC);
Chris Lattner2fbb4572005-08-21 18:50:37 +00001249 SDOperand CB = CurDAG->getTargetNode(PPC::COND_BRANCH, MVT::Other,
1250 CondCode, getI32Imm(Opc),
Chris Lattnerca0a4772005-10-01 23:06:26 +00001251 CondTrueBlock, CondFalseBlock,
Chris Lattner2fbb4572005-08-21 18:50:37 +00001252 Chain);
Chris Lattnerca0a4772005-10-01 23:06:26 +00001253 CurDAG->SelectNodeTo(N, PPC::B, MVT::Other, CondFalseBlock, CB);
Chris Lattner2fbb4572005-08-21 18:50:37 +00001254 } else {
1255 // Iterate to the next basic block
1256 ilist<MachineBasicBlock>::iterator It = BB;
1257 ++It;
1258
1259 // If the fallthrough path is off the end of the function, which would be
1260 // undefined behavior, set it to be the same as the current block because
1261 // we have nothing better to set it to, and leaving it alone will cause
1262 // the PowerPC Branch Selection pass to crash.
1263 if (It == BB->getParent()->end()) It = Dest;
Chris Lattner2bb06cd2005-08-26 16:36:26 +00001264 CurDAG->SelectNodeTo(N, PPC::COND_BRANCH, MVT::Other, CondCode,
Chris Lattnerca0a4772005-10-01 23:06:26 +00001265 getI32Imm(getBCCForSetCC(CC)), N->getOperand(4),
Chris Lattner2fbb4572005-08-21 18:50:37 +00001266 CurDAG->getBasicBlock(It), Chain);
1267 }
Chris Lattner25dae722005-09-03 00:53:47 +00001268 return SDOperand(N, 0);
Chris Lattner2fbb4572005-08-21 18:50:37 +00001269 }
Chris Lattnera5a91b12005-08-17 19:33:03 +00001270 }
Chris Lattner25dae722005-09-03 00:53:47 +00001271
Chris Lattner19c09072005-09-07 23:45:15 +00001272 return SelectCode(Op);
Chris Lattnera5a91b12005-08-17 19:33:03 +00001273}
1274
1275
Nate Begeman1d9d7422005-10-18 00:28:58 +00001276/// createPPCISelDag - This pass converts a legalized DAG into a
Chris Lattnera5a91b12005-08-17 19:33:03 +00001277/// PowerPC-specific DAG, ready for instruction scheduling.
1278///
Nate Begeman1d9d7422005-10-18 00:28:58 +00001279FunctionPass *llvm::createPPCISelDag(TargetMachine &TM) {
1280 return new PPCDAGToDAGISel(TM);
Chris Lattnera5a91b12005-08-17 19:33:03 +00001281}
1282