blob: d9defe232414acc26dda9f4cef68fd4835fc9cd3 [file] [log] [blame]
Nate Begeman21e463b2005-10-16 05:39:50 +00001//===-- PPCISelLowering.h - PPC32 DAG Lowering Interface --------*- C++ -*-===//
Chris Lattner7c5a3d32005-08-16 17:14:42 +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//
10// This file defines the interfaces that PPC uses to lower LLVM code into a
11// selection DAG.
12//
13//===----------------------------------------------------------------------===//
14
15#ifndef LLVM_TARGET_POWERPC_PPC32ISELLOWERING_H
16#define LLVM_TARGET_POWERPC_PPC32ISELLOWERING_H
17
18#include "llvm/Target/TargetLowering.h"
Chris Lattner0bbea952005-08-26 20:25:03 +000019#include "llvm/CodeGen/SelectionDAG.h"
Chris Lattner26689592005-10-14 23:51:18 +000020#include "PPC.h"
Chris Lattner7c5a3d32005-08-16 17:14:42 +000021
22namespace llvm {
Chris Lattner0bbea952005-08-26 20:25:03 +000023 namespace PPCISD {
24 enum NodeType {
25 // Start the numbering where the builting ops and target ops leave off.
26 FIRST_NUMBER = ISD::BUILTIN_OP_END+PPC::INSTRUCTION_LIST_END,
27
28 /// FSEL - Traditional three-operand fsel node.
29 ///
30 FSEL,
Chris Lattnerf7605322005-08-31 21:09:52 +000031
Nate Begemanc09eeec2005-09-06 22:03:27 +000032 /// FCFID - The FCFID instruction, taking an f64 operand and producing
33 /// and f64 value containing the FP representation of the integer that
34 /// was temporarily in the f64 operand.
35 FCFID,
36
37 /// FCTI[D,W]Z - The FCTIDZ and FCTIWZ instructions, taking an f32 or f64
38 /// operand, producing an f64 value containing the integer representation
39 /// of that FP value.
40 FCTIDZ, FCTIWZ,
Chris Lattner860e8862005-11-17 07:30:41 +000041
Chris Lattner51269842006-03-01 05:50:56 +000042 /// STFIWX - The STFIWX instruction. The first operand is an input token
43 /// chain, then an f64 value to store, then an address to store it to,
44 /// then a SRCVALUE for the address.
45 STFIWX,
46
Nate Begeman993aeb22005-12-13 22:55:22 +000047 // VMADDFP, VNMSUBFP - The VMADDFP and VNMSUBFP instructions, taking
48 // three v4f32 operands and producing a v4f32 result.
49 VMADDFP, VNMSUBFP,
50
Chris Lattnerf1d0b2b2006-03-20 01:53:53 +000051 /// VPERM - The PPC VPERM Instruction.
52 ///
53 VPERM,
54
Chris Lattner860e8862005-11-17 07:30:41 +000055 /// Hi/Lo - These represent the high and low 16-bit parts of a global
56 /// address respectively. These nodes have two operands, the first of
57 /// which must be a TargetGlobalAddress, and the second of which must be a
58 /// Constant. Selected naively, these turn into 'lis G+C' and 'li G+C',
59 /// though these are usually folded into other nodes.
60 Hi, Lo,
61
62 /// GlobalBaseReg - On Darwin, this node represents the result of the mflr
63 /// at function entry, used for PIC code.
64 GlobalBaseReg,
Chris Lattner4172b102005-12-06 02:10:38 +000065
Chris Lattner4172b102005-12-06 02:10:38 +000066 /// These nodes represent the 32-bit PPC shifts that operate on 6-bit
67 /// shift amounts. These nodes are generated by the multi-precision shift
68 /// code.
69 SRL, SRA, SHL,
Chris Lattnerecfe55e2006-03-22 05:30:33 +000070
71 /// EXTSW_32 - This is the EXTSW instruction for use with "32-bit"
72 /// registers.
73 EXTSW_32,
Nate Begeman9e4dd9d2005-12-20 00:26:01 +000074
Chris Lattnerecfe55e2006-03-22 05:30:33 +000075 /// STD_32 - This is the STD instruction for use with "32-bit" registers.
76 STD_32,
77
Chris Lattnerc703a8f2006-05-17 19:00:46 +000078 /// CALL - A direct function call.
Chris Lattner281b55e2006-01-27 23:34:02 +000079 CALL,
80
Chris Lattnerc703a8f2006-05-17 19:00:46 +000081 /// CHAIN,FLAG = MTCTR(VAL, CHAIN[, INFLAG]) - Directly corresponds to a
82 /// MTCTR instruction.
83 MTCTR,
84
85 /// CHAIN,FLAG = BCTRL(CHAIN, INFLAG) - Directly corresponds to a
86 /// BCTRL instruction.
87 BCTRL,
88
Nate Begeman9e4dd9d2005-12-20 00:26:01 +000089 /// Return with a flag operand, matched by 'blr'
90 RET_FLAG,
Chris Lattner6d92cad2006-03-26 10:06:40 +000091
92 /// R32 = MFCR(CRREG, INFLAG) - Represents the MFCR/MFOCRF instructions.
93 /// This copies the bits corresponding to the specified CRREG into the
94 /// resultant GPR. Bits corresponding to other CR regs are undefined.
95 MFCR,
Chris Lattnera17b1552006-03-31 05:13:27 +000096
97 /// RESVEC = VCMP(LHS, RHS, OPC) - Represents one of the altivec VCMP*
98 /// instructions. For lack of better number, we use the opcode number
99 /// encoding for the OPC field to identify the compare. For example, 838
100 /// is VCMPGTSH.
101 VCMP,
Chris Lattner6d92cad2006-03-26 10:06:40 +0000102
103 /// RESVEC, OUTFLAG = VCMPo(LHS, RHS, OPC) - Represents one of the
104 /// altivec VCMP*o instructions. For lack of better number, we use the
105 /// opcode number encoding for the OPC field to identify the compare. For
106 /// example, 838 is VCMPGTSH.
Chris Lattner90564f22006-04-18 17:59:36 +0000107 VCMPo,
108
109 /// CHAIN = COND_BRANCH CHAIN, CRRC, OPC, DESTBB [, INFLAG] - This
110 /// corresponds to the COND_BRANCH pseudo instruction. CRRC is the
111 /// condition register to branch on, OPC is the branch opcode to use (e.g.
112 /// PPC::BLE), DESTBB is the destination block to branch to, and INFLAG is
113 /// an optional input flag argument.
Chris Lattnerd9989382006-07-10 20:56:58 +0000114 COND_BRANCH,
115
116 /// CHAIN = STBRX CHAIN, GPRC, Ptr, SRCVALUE, Type - This is a
117 /// byte-swapping store instruction. It byte-swaps the low "Type" bits of
118 /// the GPRC input, then stores it through Ptr. Type can be either i16 or
119 /// i32.
120 STBRX,
121
122 /// GPRC, CHAIN = LBRX CHAIN, Ptr, SRCVALUE, Type - This is a
123 /// byte-swapping load instruction. It loads "Type" bits, byte swaps it,
124 /// then puts it in the bottom bits of the GPRC. TYPE can be either i16
125 /// or i32.
126 LBRX
Chris Lattner281b55e2006-01-27 23:34:02 +0000127 };
Chris Lattner3c0f9cc2006-03-20 06:15:45 +0000128 }
129
130 /// Define some predicates that are used for node matching.
131 namespace PPC {
Chris Lattnerddb739e2006-04-06 17:23:16 +0000132 /// isVPKUHUMShuffleMask - Return true if this is the shuffle mask for a
133 /// VPKUHUM instruction.
Chris Lattnerf24380e2006-04-06 22:28:36 +0000134 bool isVPKUHUMShuffleMask(SDNode *N, bool isUnary);
Chris Lattnerddb739e2006-04-06 17:23:16 +0000135
136 /// isVPKUWUMShuffleMask - Return true if this is the shuffle mask for a
137 /// VPKUWUM instruction.
Chris Lattnerf24380e2006-04-06 22:28:36 +0000138 bool isVPKUWUMShuffleMask(SDNode *N, bool isUnary);
Chris Lattner116cc482006-04-06 21:11:54 +0000139
140 /// isVMRGLShuffleMask - Return true if this is a shuffle mask suitable for
141 /// a VRGL* instruction with the specified unit size (1,2 or 4 bytes).
Chris Lattnercaad1632006-04-06 22:02:42 +0000142 bool isVMRGLShuffleMask(SDNode *N, unsigned UnitSize, bool isUnary);
Chris Lattner116cc482006-04-06 21:11:54 +0000143
144 /// isVMRGHShuffleMask - Return true if this is a shuffle mask suitable for
145 /// a VRGH* instruction with the specified unit size (1,2 or 4 bytes).
Chris Lattnercaad1632006-04-06 22:02:42 +0000146 bool isVMRGHShuffleMask(SDNode *N, unsigned UnitSize, bool isUnary);
Chris Lattnerddb739e2006-04-06 17:23:16 +0000147
Chris Lattnerd0608e12006-04-06 18:26:28 +0000148 /// isVSLDOIShuffleMask - If this is a vsldoi shuffle mask, return the shift
149 /// amount, otherwise return -1.
Chris Lattnerf24380e2006-04-06 22:28:36 +0000150 int isVSLDOIShuffleMask(SDNode *N, bool isUnary);
Chris Lattnerd0608e12006-04-06 18:26:28 +0000151
Chris Lattner3c0f9cc2006-03-20 06:15:45 +0000152 /// isSplatShuffleMask - Return true if the specified VECTOR_SHUFFLE operand
153 /// specifies a splat of a single element that is suitable for input to
154 /// VSPLTB/VSPLTH/VSPLTW.
Chris Lattner7ff7e672006-04-04 17:25:31 +0000155 bool isSplatShuffleMask(SDNode *N, unsigned EltSize);
Chris Lattner3c0f9cc2006-03-20 06:15:45 +0000156
157 /// getVSPLTImmediate - Return the appropriate VSPLT* immediate to splat the
158 /// specified isSplatShuffleMask VECTOR_SHUFFLE mask.
Chris Lattner7ff7e672006-04-04 17:25:31 +0000159 unsigned getVSPLTImmediate(SDNode *N, unsigned EltSize);
Chris Lattner64b3a082006-03-24 07:48:08 +0000160
Chris Lattnere87192a2006-04-12 17:37:20 +0000161 /// get_VSPLTI_elt - If this is a build_vector of constants which can be
Chris Lattner140a58f2006-04-08 06:46:53 +0000162 /// formed by using a vspltis[bhw] instruction of the specified element
163 /// size, return the constant being splatted. The ByteSize field indicates
164 /// the number of bytes of each element [124] -> [bhw].
Chris Lattnere87192a2006-04-12 17:37:20 +0000165 SDOperand get_VSPLTI_elt(SDNode *N, unsigned ByteSize, SelectionDAG &DAG);
Chris Lattner3c0f9cc2006-03-20 06:15:45 +0000166 }
Chris Lattner0bbea952005-08-26 20:25:03 +0000167
Nate Begeman21e463b2005-10-16 05:39:50 +0000168 class PPCTargetLowering : public TargetLowering {
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000169 int VarArgsFrameIndex; // FrameIndex for start of varargs area.
170 int ReturnAddrIndex; // FrameIndex for return slot.
171 public:
Nate Begeman21e463b2005-10-16 05:39:50 +0000172 PPCTargetLowering(TargetMachine &TM);
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000173
Chris Lattnerda6d20f2006-01-09 23:52:17 +0000174 /// getTargetNodeName() - This method returns the name of a target specific
175 /// DAG node.
176 virtual const char *getTargetNodeName(unsigned Opcode) const;
177
Chris Lattnere4bc9ea2005-08-26 00:52:45 +0000178 /// LowerOperation - Provide custom lowering hooks for some operations.
179 ///
180 virtual SDOperand LowerOperation(SDOperand Op, SelectionDAG &DAG);
181
Chris Lattner8c13d0a2006-03-01 04:57:39 +0000182 virtual SDOperand PerformDAGCombine(SDNode *N, DAGCombinerInfo &DCI) const;
183
Chris Lattnerbbe77de2006-04-02 06:26:07 +0000184 virtual void computeMaskedBitsForTargetNode(const SDOperand Op,
185 uint64_t Mask,
186 uint64_t &KnownZero,
187 uint64_t &KnownOne,
188 unsigned Depth = 0) const;
Nate Begeman4a959452005-10-18 23:23:37 +0000189
Chris Lattner8a2d3ca2005-08-26 21:23:58 +0000190 virtual MachineBasicBlock *InsertAtEndOfBasicBlock(MachineInstr *MI,
191 MachineBasicBlock *MBB);
Chris Lattnerddc787d2006-01-31 19:20:21 +0000192
Chris Lattnerad3bc8d2006-02-07 20:16:30 +0000193 ConstraintType getConstraintType(char ConstraintLetter) const;
Chris Lattnerddc787d2006-01-31 19:20:21 +0000194 std::vector<unsigned>
Chris Lattner1efa40f2006-02-22 00:56:39 +0000195 getRegClassForInlineAsmConstraint(const std::string &Constraint,
196 MVT::ValueType VT) const;
Chris Lattner763317d2006-02-07 00:47:13 +0000197 bool isOperandValidForConstraint(SDOperand Op, char ConstraintLetter);
Evan Chengc4c62572006-03-13 23:20:37 +0000198
199 /// isLegalAddressImmediate - Return true if the integer value can be used
200 /// as the offset of the target addressing mode.
201 virtual bool isLegalAddressImmediate(int64_t V) const;
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000202 };
203}
204
205#endif // LLVM_TARGET_POWERPC_PPC32ISELLOWERING_H