pass machinemoduleinfo down into getSymbolForDwarfGlobalReference,
[llvm/avr.git] / lib / Target / Blackfin / BlackfinISelLowering.cpp
blob7c36b01b16703b46adc93573dc4c71dc04c7b407
1 //===- BlackfinISelLowering.cpp - Blackfin DAG Lowering Implementation ----===//
2 //
3 // The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file implements the interfaces that Blackfin uses to lower LLVM code
11 // into a selection DAG.
13 //===----------------------------------------------------------------------===//
15 #include "BlackfinISelLowering.h"
16 #include "BlackfinTargetMachine.h"
17 #include "llvm/Function.h"
18 #include "llvm/CodeGen/CallingConvLower.h"
19 #include "llvm/CodeGen/MachineFrameInfo.h"
20 #include "llvm/CodeGen/MachineFunction.h"
21 #include "llvm/CodeGen/MachineInstrBuilder.h"
22 #include "llvm/CodeGen/MachineRegisterInfo.h"
23 #include "llvm/CodeGen/PseudoSourceValue.h"
24 #include "llvm/CodeGen/SelectionDAG.h"
25 #include "llvm/Target/TargetLoweringObjectFile.h"
26 #include "llvm/ADT/VectorExtras.h"
27 #include "llvm/Support/Debug.h"
29 using namespace llvm;
31 //===----------------------------------------------------------------------===//
32 // Calling Convention Implementation
33 //===----------------------------------------------------------------------===//
35 #include "BlackfinGenCallingConv.inc"
37 //===----------------------------------------------------------------------===//
38 // TargetLowering Implementation
39 //===----------------------------------------------------------------------===//
41 BlackfinTargetLowering::BlackfinTargetLowering(TargetMachine &TM)
42 : TargetLowering(TM, new TargetLoweringObjectFileELF()) {
43 setShiftAmountType(MVT::i16);
44 setBooleanContents(ZeroOrOneBooleanContent);
45 setStackPointerRegisterToSaveRestore(BF::SP);
46 setIntDivIsCheap(false);
48 // Set up the legal register classes.
49 addRegisterClass(MVT::i32, BF::DRegisterClass);
50 addRegisterClass(MVT::i16, BF::D16RegisterClass);
52 computeRegisterProperties();
54 // Blackfin doesn't have i1 loads or stores
55 setLoadExtAction(ISD::EXTLOAD, MVT::i1, Promote);
56 setLoadExtAction(ISD::ZEXTLOAD, MVT::i1, Promote);
57 setLoadExtAction(ISD::SEXTLOAD, MVT::i1, Promote);
59 setOperationAction(ISD::GlobalAddress, MVT::i32, Custom);
60 setOperationAction(ISD::JumpTable, MVT::i32, Custom);
62 setOperationAction(ISD::SELECT_CC, MVT::Other, Expand);
63 setOperationAction(ISD::BR_JT, MVT::Other, Expand);
64 setOperationAction(ISD::BR_CC, MVT::Other, Expand);
66 // i16 registers don't do much
67 setOperationAction(ISD::AND, MVT::i16, Promote);
68 setOperationAction(ISD::OR, MVT::i16, Promote);
69 setOperationAction(ISD::XOR, MVT::i16, Promote);
70 setOperationAction(ISD::CTPOP, MVT::i16, Promote);
71 // The expansion of CTLZ/CTTZ uses AND/OR, so we might as well promote
72 // immediately.
73 setOperationAction(ISD::CTLZ, MVT::i16, Promote);
74 setOperationAction(ISD::CTTZ, MVT::i16, Promote);
75 setOperationAction(ISD::SETCC, MVT::i16, Promote);
77 // Blackfin has no division
78 setOperationAction(ISD::SDIV, MVT::i16, Expand);
79 setOperationAction(ISD::SDIV, MVT::i32, Expand);
80 setOperationAction(ISD::SDIVREM, MVT::i16, Expand);
81 setOperationAction(ISD::SDIVREM, MVT::i32, Expand);
82 setOperationAction(ISD::SREM, MVT::i16, Expand);
83 setOperationAction(ISD::SREM, MVT::i32, Expand);
84 setOperationAction(ISD::UDIV, MVT::i16, Expand);
85 setOperationAction(ISD::UDIV, MVT::i32, Expand);
86 setOperationAction(ISD::UDIVREM, MVT::i16, Expand);
87 setOperationAction(ISD::UDIVREM, MVT::i32, Expand);
88 setOperationAction(ISD::UREM, MVT::i16, Expand);
89 setOperationAction(ISD::UREM, MVT::i32, Expand);
91 setOperationAction(ISD::SMUL_LOHI, MVT::i32, Expand);
92 setOperationAction(ISD::UMUL_LOHI, MVT::i32, Expand);
93 setOperationAction(ISD::MULHU, MVT::i32, Expand);
94 setOperationAction(ISD::MULHS, MVT::i32, Expand);
96 // No carry-in operations.
97 setOperationAction(ISD::ADDE, MVT::i32, Custom);
98 setOperationAction(ISD::SUBE, MVT::i32, Custom);
100 // Blackfin has no intrinsics for these particular operations.
101 setOperationAction(ISD::MEMBARRIER, MVT::Other, Expand);
102 setOperationAction(ISD::BSWAP, MVT::i32, Expand);
104 setOperationAction(ISD::SHL_PARTS, MVT::i32, Expand);
105 setOperationAction(ISD::SRA_PARTS, MVT::i32, Expand);
106 setOperationAction(ISD::SRL_PARTS, MVT::i32, Expand);
108 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i1, Expand);
110 // i32 has native CTPOP, but not CTLZ/CTTZ
111 setOperationAction(ISD::CTLZ, MVT::i32, Expand);
112 setOperationAction(ISD::CTTZ, MVT::i32, Expand);
114 // READCYCLECOUNTER needs special type legalization.
115 setOperationAction(ISD::READCYCLECOUNTER, MVT::i64, Custom);
117 // We don't have line number support yet.
118 setOperationAction(ISD::DBG_STOPPOINT, MVT::Other, Expand);
119 setOperationAction(ISD::DEBUG_LOC, MVT::Other, Expand);
120 setOperationAction(ISD::DBG_LABEL, MVT::Other, Expand);
121 setOperationAction(ISD::EH_LABEL, MVT::Other, Expand);
123 // Use the default implementation.
124 setOperationAction(ISD::VACOPY, MVT::Other, Expand);
125 setOperationAction(ISD::VAEND, MVT::Other, Expand);
126 setOperationAction(ISD::STACKSAVE, MVT::Other, Expand);
127 setOperationAction(ISD::STACKRESTORE, MVT::Other, Expand);
130 const char *BlackfinTargetLowering::getTargetNodeName(unsigned Opcode) const {
131 switch (Opcode) {
132 default: return 0;
133 case BFISD::CALL: return "BFISD::CALL";
134 case BFISD::RET_FLAG: return "BFISD::RET_FLAG";
135 case BFISD::Wrapper: return "BFISD::Wrapper";
139 MVT::SimpleValueType BlackfinTargetLowering::getSetCCResultType(EVT VT) const {
140 // SETCC always sets the CC register. Technically that is an i1 register, but
141 // that type is not legal, so we treat it as an i32 register.
142 return MVT::i32;
145 SDValue BlackfinTargetLowering::LowerGlobalAddress(SDValue Op,
146 SelectionDAG &DAG) {
147 DebugLoc DL = Op.getDebugLoc();
148 GlobalValue *GV = cast<GlobalAddressSDNode>(Op)->getGlobal();
150 Op = DAG.getTargetGlobalAddress(GV, MVT::i32);
151 return DAG.getNode(BFISD::Wrapper, DL, MVT::i32, Op);
154 SDValue BlackfinTargetLowering::LowerJumpTable(SDValue Op, SelectionDAG &DAG) {
155 DebugLoc DL = Op.getDebugLoc();
156 int JTI = cast<JumpTableSDNode>(Op)->getIndex();
158 Op = DAG.getTargetJumpTable(JTI, MVT::i32);
159 return DAG.getNode(BFISD::Wrapper, DL, MVT::i32, Op);
162 SDValue
163 BlackfinTargetLowering::LowerFormalArguments(SDValue Chain,
164 CallingConv::ID CallConv, bool isVarArg,
165 const SmallVectorImpl<ISD::InputArg>
166 &Ins,
167 DebugLoc dl, SelectionDAG &DAG,
168 SmallVectorImpl<SDValue> &InVals) {
170 MachineFunction &MF = DAG.getMachineFunction();
171 MachineFrameInfo *MFI = MF.getFrameInfo();
173 SmallVector<CCValAssign, 16> ArgLocs;
174 CCState CCInfo(CallConv, isVarArg, getTargetMachine(),
175 ArgLocs, *DAG.getContext());
176 CCInfo.AllocateStack(12, 4); // ABI requires 12 bytes stack space
177 CCInfo.AnalyzeFormalArguments(Ins, CC_Blackfin);
179 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
180 CCValAssign &VA = ArgLocs[i];
182 if (VA.isRegLoc()) {
183 EVT RegVT = VA.getLocVT();
184 TargetRegisterClass *RC = VA.getLocReg() == BF::P0 ?
185 BF::PRegisterClass : BF::DRegisterClass;
186 assert(RC->contains(VA.getLocReg()) && "Unexpected regclass in CCState");
187 assert(RC->hasType(RegVT) && "Unexpected regclass in CCState");
189 unsigned Reg = MF.getRegInfo().createVirtualRegister(RC);
190 MF.getRegInfo().addLiveIn(VA.getLocReg(), Reg);
191 SDValue ArgValue = DAG.getCopyFromReg(Chain, dl, Reg, RegVT);
193 // If this is an 8 or 16-bit value, it is really passed promoted to 32
194 // bits. Insert an assert[sz]ext to capture this, then truncate to the
195 // right size.
196 if (VA.getLocInfo() == CCValAssign::SExt)
197 ArgValue = DAG.getNode(ISD::AssertSext, dl, RegVT, ArgValue,
198 DAG.getValueType(VA.getValVT()));
199 else if (VA.getLocInfo() == CCValAssign::ZExt)
200 ArgValue = DAG.getNode(ISD::AssertZext, dl, RegVT, ArgValue,
201 DAG.getValueType(VA.getValVT()));
203 if (VA.getLocInfo() != CCValAssign::Full)
204 ArgValue = DAG.getNode(ISD::TRUNCATE, dl, VA.getValVT(), ArgValue);
206 InVals.push_back(ArgValue);
207 } else {
208 assert(VA.isMemLoc() && "CCValAssign must be RegLoc or MemLoc");
209 unsigned ObjSize = VA.getLocVT().getStoreSizeInBits()/8;
210 int FI = MFI->CreateFixedObject(ObjSize, VA.getLocMemOffset());
211 SDValue FIN = DAG.getFrameIndex(FI, MVT::i32);
212 InVals.push_back(DAG.getLoad(VA.getValVT(), dl, Chain, FIN, NULL, 0));
216 return Chain;
219 SDValue
220 BlackfinTargetLowering::LowerReturn(SDValue Chain,
221 CallingConv::ID CallConv, bool isVarArg,
222 const SmallVectorImpl<ISD::OutputArg> &Outs,
223 DebugLoc dl, SelectionDAG &DAG) {
225 // CCValAssign - represent the assignment of the return value to locations.
226 SmallVector<CCValAssign, 16> RVLocs;
228 // CCState - Info about the registers and stack slot.
229 CCState CCInfo(CallConv, isVarArg, DAG.getTarget(),
230 RVLocs, *DAG.getContext());
232 // Analize return values.
233 CCInfo.AnalyzeReturn(Outs, RetCC_Blackfin);
235 // If this is the first return lowered for this function, add the regs to the
236 // liveout set for the function.
237 if (DAG.getMachineFunction().getRegInfo().liveout_empty()) {
238 for (unsigned i = 0; i != RVLocs.size(); ++i)
239 DAG.getMachineFunction().getRegInfo().addLiveOut(RVLocs[i].getLocReg());
242 SDValue Flag;
244 // Copy the result values into the output registers.
245 for (unsigned i = 0; i != RVLocs.size(); ++i) {
246 CCValAssign &VA = RVLocs[i];
247 assert(VA.isRegLoc() && "Can only return in registers!");
248 SDValue Opi = Outs[i].Val;
250 // Expand to i32 if necessary
251 switch (VA.getLocInfo()) {
252 default: llvm_unreachable("Unknown loc info!");
253 case CCValAssign::Full: break;
254 case CCValAssign::SExt:
255 Opi = DAG.getNode(ISD::SIGN_EXTEND, dl, VA.getLocVT(), Opi);
256 break;
257 case CCValAssign::ZExt:
258 Opi = DAG.getNode(ISD::ZERO_EXTEND, dl, VA.getLocVT(), Opi);
259 break;
260 case CCValAssign::AExt:
261 Opi = DAG.getNode(ISD::ANY_EXTEND, dl, VA.getLocVT(), Opi);
262 break;
264 Chain = DAG.getCopyToReg(Chain, dl, VA.getLocReg(), Opi, SDValue());
265 // Guarantee that all emitted copies are stuck together with flags.
266 Flag = Chain.getValue(1);
269 if (Flag.getNode()) {
270 return DAG.getNode(BFISD::RET_FLAG, dl, MVT::Other, Chain, Flag);
271 } else {
272 return DAG.getNode(BFISD::RET_FLAG, dl, MVT::Other, Chain);
276 SDValue
277 BlackfinTargetLowering::LowerCall(SDValue Chain, SDValue Callee,
278 CallingConv::ID CallConv, bool isVarArg,
279 bool isTailCall,
280 const SmallVectorImpl<ISD::OutputArg> &Outs,
281 const SmallVectorImpl<ISD::InputArg> &Ins,
282 DebugLoc dl, SelectionDAG &DAG,
283 SmallVectorImpl<SDValue> &InVals) {
285 // Analyze operands of the call, assigning locations to each operand.
286 SmallVector<CCValAssign, 16> ArgLocs;
287 CCState CCInfo(CallConv, isVarArg, DAG.getTarget(), ArgLocs,
288 *DAG.getContext());
289 CCInfo.AllocateStack(12, 4); // ABI requires 12 bytes stack space
290 CCInfo.AnalyzeCallOperands(Outs, CC_Blackfin);
292 // Get the size of the outgoing arguments stack space requirement.
293 unsigned ArgsSize = CCInfo.getNextStackOffset();
295 Chain = DAG.getCALLSEQ_START(Chain, DAG.getIntPtrConstant(ArgsSize, true));
296 SmallVector<std::pair<unsigned, SDValue>, 8> RegsToPass;
297 SmallVector<SDValue, 8> MemOpChains;
299 // Walk the register/memloc assignments, inserting copies/loads.
300 for (unsigned i = 0, e = ArgLocs.size(); i != e; ++i) {
301 CCValAssign &VA = ArgLocs[i];
302 SDValue Arg = Outs[i].Val;
304 // Promote the value if needed.
305 switch (VA.getLocInfo()) {
306 default: llvm_unreachable("Unknown loc info!");
307 case CCValAssign::Full: break;
308 case CCValAssign::SExt:
309 Arg = DAG.getNode(ISD::SIGN_EXTEND, dl, VA.getLocVT(), Arg);
310 break;
311 case CCValAssign::ZExt:
312 Arg = DAG.getNode(ISD::ZERO_EXTEND, dl, VA.getLocVT(), Arg);
313 break;
314 case CCValAssign::AExt:
315 Arg = DAG.getNode(ISD::ANY_EXTEND, dl, VA.getLocVT(), Arg);
316 break;
319 // Arguments that can be passed on register must be kept at
320 // RegsToPass vector
321 if (VA.isRegLoc()) {
322 RegsToPass.push_back(std::make_pair(VA.getLocReg(), Arg));
323 } else {
324 assert(VA.isMemLoc() && "CCValAssign must be RegLoc or MemLoc");
325 int Offset = VA.getLocMemOffset();
326 assert(Offset%4 == 0 && "Unaligned LocMemOffset");
327 assert(VA.getLocVT()==MVT::i32 && "Illegal CCValAssign type");
328 SDValue SPN = DAG.getCopyFromReg(Chain, dl, BF::SP, MVT::i32);
329 SDValue OffsetN = DAG.getIntPtrConstant(Offset);
330 OffsetN = DAG.getNode(ISD::ADD, dl, MVT::i32, SPN, OffsetN);
331 MemOpChains.push_back(DAG.getStore(Chain, dl, Arg, OffsetN,
332 PseudoSourceValue::getStack(),
333 Offset));
337 // Transform all store nodes into one single node because
338 // all store nodes are independent of each other.
339 if (!MemOpChains.empty())
340 Chain = DAG.getNode(ISD::TokenFactor, dl, MVT::Other,
341 &MemOpChains[0], MemOpChains.size());
343 // Build a sequence of copy-to-reg nodes chained together with token
344 // chain and flag operands which copy the outgoing args into registers.
345 // The InFlag in necessary since all emited instructions must be
346 // stuck together.
347 SDValue InFlag;
348 for (unsigned i = 0, e = RegsToPass.size(); i != e; ++i) {
349 Chain = DAG.getCopyToReg(Chain, dl, RegsToPass[i].first,
350 RegsToPass[i].second, InFlag);
351 InFlag = Chain.getValue(1);
354 // If the callee is a GlobalAddress node (quite common, every direct call is)
355 // turn it into a TargetGlobalAddress node so that legalize doesn't hack it.
356 // Likewise ExternalSymbol -> TargetExternalSymbol.
357 if (GlobalAddressSDNode *G = dyn_cast<GlobalAddressSDNode>(Callee))
358 Callee = DAG.getTargetGlobalAddress(G->getGlobal(), MVT::i32);
359 else if (ExternalSymbolSDNode *E = dyn_cast<ExternalSymbolSDNode>(Callee))
360 Callee = DAG.getTargetExternalSymbol(E->getSymbol(), MVT::i32);
362 std::vector<EVT> NodeTys;
363 NodeTys.push_back(MVT::Other); // Returns a chain
364 NodeTys.push_back(MVT::Flag); // Returns a flag for retval copy to use.
365 SDValue Ops[] = { Chain, Callee, InFlag };
366 Chain = DAG.getNode(BFISD::CALL, dl, NodeTys, Ops,
367 InFlag.getNode() ? 3 : 2);
368 InFlag = Chain.getValue(1);
370 Chain = DAG.getCALLSEQ_END(Chain, DAG.getIntPtrConstant(ArgsSize, true),
371 DAG.getIntPtrConstant(0, true), InFlag);
372 InFlag = Chain.getValue(1);
374 // Assign locations to each value returned by this call.
375 SmallVector<CCValAssign, 16> RVLocs;
376 CCState RVInfo(CallConv, isVarArg, DAG.getTarget(), RVLocs,
377 *DAG.getContext());
379 RVInfo.AnalyzeCallResult(Ins, RetCC_Blackfin);
381 // Copy all of the result registers out of their specified physreg.
382 for (unsigned i = 0; i != RVLocs.size(); ++i) {
383 CCValAssign &RV = RVLocs[i];
384 unsigned Reg = RV.getLocReg();
386 Chain = DAG.getCopyFromReg(Chain, dl, Reg,
387 RVLocs[i].getLocVT(), InFlag);
388 SDValue Val = Chain.getValue(0);
389 InFlag = Chain.getValue(2);
390 Chain = Chain.getValue(1);
392 // Callee is responsible for extending any i16 return values.
393 switch (RV.getLocInfo()) {
394 case CCValAssign::SExt:
395 Val = DAG.getNode(ISD::AssertSext, dl, RV.getLocVT(), Val,
396 DAG.getValueType(RV.getValVT()));
397 break;
398 case CCValAssign::ZExt:
399 Val = DAG.getNode(ISD::AssertZext, dl, RV.getLocVT(), Val,
400 DAG.getValueType(RV.getValVT()));
401 break;
402 default:
403 break;
406 // Truncate to valtype
407 if (RV.getLocInfo() != CCValAssign::Full)
408 Val = DAG.getNode(ISD::TRUNCATE, dl, RV.getValVT(), Val);
409 InVals.push_back(Val);
412 return Chain;
415 // Expansion of ADDE / SUBE. This is a bit involved since blackfin doesn't have
416 // add-with-carry instructions.
417 SDValue BlackfinTargetLowering::LowerADDE(SDValue Op, SelectionDAG &DAG) {
418 // Operands: lhs, rhs, carry-in (AC0 flag)
419 // Results: sum, carry-out (AC0 flag)
420 DebugLoc dl = Op.getDebugLoc();
422 unsigned Opcode = Op.getOpcode()==ISD::ADDE ? BF::ADD : BF::SUB;
424 // zext incoming carry flag in AC0 to 32 bits
425 SDNode* CarryIn = DAG.getTargetNode(BF::MOVE_cc_ac0, dl, MVT::i32,
426 /* flag= */ Op.getOperand(2));
427 CarryIn = DAG.getTargetNode(BF::MOVECC_zext, dl, MVT::i32,
428 SDValue(CarryIn, 0));
430 // Add operands, produce sum and carry flag
431 SDNode *Sum = DAG.getTargetNode(Opcode, dl, MVT::i32, MVT::Flag,
432 Op.getOperand(0), Op.getOperand(1));
434 // Store intermediate carry from Sum
435 SDNode* Carry1 = DAG.getTargetNode(BF::MOVE_cc_ac0, dl, MVT::i32,
436 /* flag= */ SDValue(Sum, 1));
438 // Add incoming carry, again producing an output flag
439 Sum = DAG.getTargetNode(Opcode, dl, MVT::i32, MVT::Flag,
440 SDValue(Sum, 0), SDValue(CarryIn, 0));
442 // Update AC0 with the intermediate carry, producing a flag.
443 SDNode *CarryOut = DAG.getTargetNode(BF::OR_ac0_cc, dl, MVT::Flag,
444 SDValue(Carry1, 0));
446 // Compose (i32, flag) pair
447 SDValue ops[2] = { SDValue(Sum, 0), SDValue(CarryOut, 0) };
448 return DAG.getMergeValues(ops, 2, dl);
451 SDValue BlackfinTargetLowering::LowerOperation(SDValue Op, SelectionDAG &DAG) {
452 switch (Op.getOpcode()) {
453 default:
454 Op.getNode()->dump();
455 llvm_unreachable("Should not custom lower this!");
456 case ISD::GlobalAddress: return LowerGlobalAddress(Op, DAG);
457 case ISD::GlobalTLSAddress:
458 llvm_unreachable("TLS not implemented for Blackfin.");
459 case ISD::JumpTable: return LowerJumpTable(Op, DAG);
460 // Frame & Return address. Currently unimplemented
461 case ISD::FRAMEADDR: return SDValue();
462 case ISD::RETURNADDR: return SDValue();
463 case ISD::ADDE:
464 case ISD::SUBE: return LowerADDE(Op, DAG);
468 void
469 BlackfinTargetLowering::ReplaceNodeResults(SDNode *N,
470 SmallVectorImpl<SDValue> &Results,
471 SelectionDAG &DAG) {
472 DebugLoc dl = N->getDebugLoc();
473 switch (N->getOpcode()) {
474 default:
475 llvm_unreachable("Do not know how to custom type legalize this operation!");
476 return;
477 case ISD::READCYCLECOUNTER: {
478 // The low part of the cycle counter is in CYCLES, the high part in
479 // CYCLES2. Reading CYCLES will latch the value of CYCLES2, so we must read
480 // CYCLES2 last.
481 SDValue TheChain = N->getOperand(0);
482 SDValue lo = DAG.getCopyFromReg(TheChain, dl, BF::CYCLES, MVT::i32);
483 SDValue hi = DAG.getCopyFromReg(lo.getValue(1), dl, BF::CYCLES2, MVT::i32);
484 // Use a buildpair to merge the two 32-bit values into a 64-bit one.
485 Results.push_back(DAG.getNode(ISD::BUILD_PAIR, dl, MVT::i64, lo, hi));
486 // Outgoing chain. If we were to use the chain from lo instead, it would be
487 // possible to entirely eliminate the CYCLES2 read in (i32 (trunc
488 // readcyclecounter)). Unfortunately this could possibly delay the CYCLES2
489 // read beyond the next CYCLES read, leading to invalid results.
490 Results.push_back(hi.getValue(1));
491 return;
496 /// getFunctionAlignment - Return the Log2 alignment of this function.
497 unsigned BlackfinTargetLowering::getFunctionAlignment(const Function *F) const {
498 return 2;
501 //===----------------------------------------------------------------------===//
502 // Blackfin Inline Assembly Support
503 //===----------------------------------------------------------------------===//
505 /// getConstraintType - Given a constraint letter, return the type of
506 /// constraint it is for this target.
507 BlackfinTargetLowering::ConstraintType
508 BlackfinTargetLowering::getConstraintType(const std::string &Constraint) const {
509 if (Constraint.size() != 1)
510 return TargetLowering::getConstraintType(Constraint);
512 switch (Constraint[0]) {
513 // Standard constraints
514 case 'r':
515 return C_RegisterClass;
517 // Blackfin-specific constraints
518 case 'a':
519 case 'd':
520 case 'z':
521 case 'D':
522 case 'W':
523 case 'e':
524 case 'b':
525 case 'v':
526 case 'f':
527 case 'c':
528 case 't':
529 case 'u':
530 case 'k':
531 case 'x':
532 case 'y':
533 case 'w':
534 return C_RegisterClass;
535 case 'A':
536 case 'B':
537 case 'C':
538 case 'Z':
539 case 'Y':
540 return C_Register;
543 // Not implemented: q0-q7, qA. Use {R2} etc instead
545 return TargetLowering::getConstraintType(Constraint);
548 /// getRegForInlineAsmConstraint - Return register no and class for a C_Register
549 /// constraint.
550 std::pair<unsigned, const TargetRegisterClass*> BlackfinTargetLowering::
551 getRegForInlineAsmConstraint(const std::string &Constraint, EVT VT) const {
552 typedef std::pair<unsigned, const TargetRegisterClass*> Pair;
553 using namespace BF;
555 if (Constraint.size() != 1)
556 return TargetLowering::getRegForInlineAsmConstraint(Constraint, VT);
558 switch (Constraint[0]) {
559 // Standard constraints
560 case 'r':
561 return Pair(0U, VT == MVT::i16 ? D16RegisterClass : DPRegisterClass);
563 // Blackfin-specific constraints
564 case 'a': return Pair(0U, PRegisterClass);
565 case 'd': return Pair(0U, DRegisterClass);
566 case 'e': return Pair(0U, AccuRegisterClass);
567 case 'A': return Pair(A0, AccuRegisterClass);
568 case 'B': return Pair(A1, AccuRegisterClass);
569 case 'b': return Pair(0U, IRegisterClass);
570 case 'v': return Pair(0U, BRegisterClass);
571 case 'f': return Pair(0U, MRegisterClass);
572 case 'C': return Pair(CC, JustCCRegisterClass);
573 case 'x': return Pair(0U, GRRegisterClass);
574 case 'w': return Pair(0U, ALLRegisterClass);
575 case 'Z': return Pair(P3, PRegisterClass);
576 case 'Y': return Pair(P1, PRegisterClass);
579 // Not implemented: q0-q7, qA. Use {R2} etc instead.
580 // Constraints z, D, W, c, t, u, k, and y use non-existing classes, defer to
581 // getRegClassForInlineAsmConstraint()
583 return TargetLowering::getRegForInlineAsmConstraint(Constraint, VT);
586 std::vector<unsigned> BlackfinTargetLowering::
587 getRegClassForInlineAsmConstraint(const std::string &Constraint, EVT VT) const {
588 using namespace BF;
590 if (Constraint.size() != 1)
591 return std::vector<unsigned>();
593 switch (Constraint[0]) {
594 case 'z': return make_vector<unsigned>(P0, P1, P2, 0);
595 case 'D': return make_vector<unsigned>(R0, R2, R4, R6, 0);
596 case 'W': return make_vector<unsigned>(R1, R3, R5, R7, 0);
597 case 'c': return make_vector<unsigned>(I0, I1, I2, I3,
598 B0, B1, B2, B3,
599 L0, L1, L2, L3, 0);
600 case 't': return make_vector<unsigned>(LT0, LT1, 0);
601 case 'u': return make_vector<unsigned>(LB0, LB1, 0);
602 case 'k': return make_vector<unsigned>(LC0, LC1, 0);
603 case 'y': return make_vector<unsigned>(RETS, RETN, RETI, RETX, RETE,
604 ASTAT, SEQSTAT, USP, 0);
607 return std::vector<unsigned>();
610 bool BlackfinTargetLowering::
611 isOffsetFoldingLegal(const GlobalAddressSDNode *GA) const {
612 // The Blackfin target isn't yet aware of offsets.
613 return false;