blob: 8ff8ec32c84b47d37c43af529ffc40b2c59e7c04 [file] [log] [blame]
Justin Holewinskiae556d32012-05-04 20:18:50 +00001//
2// The LLVM Compiler Infrastructure
3//
4// This file is distributed under the University of Illinois Open Source
5// License. See LICENSE.TXT for details.
6//
7//===----------------------------------------------------------------------===//
8//
9// This file defines the interfaces that NVPTX uses to lower LLVM code into a
10// selection DAG.
11//
12//===----------------------------------------------------------------------===//
13
Justin Holewinskiae556d32012-05-04 20:18:50 +000014#include "NVPTXISelLowering.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000015#include "NVPTX.h"
Justin Holewinskiae556d32012-05-04 20:18:50 +000016#include "NVPTXTargetMachine.h"
17#include "NVPTXTargetObjectFile.h"
18#include "NVPTXUtilities.h"
Justin Holewinskiae556d32012-05-04 20:18:50 +000019#include "llvm/CodeGen/Analysis.h"
20#include "llvm/CodeGen/MachineFrameInfo.h"
21#include "llvm/CodeGen/MachineFunction.h"
22#include "llvm/CodeGen/MachineInstrBuilder.h"
23#include "llvm/CodeGen/MachineRegisterInfo.h"
Justin Holewinskiae556d32012-05-04 20:18:50 +000024#include "llvm/CodeGen/TargetLoweringObjectFileImpl.h"
Chandler Carruth219b89b2014-03-04 11:01:28 +000025#include "llvm/IR/CallSite.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000026#include "llvm/IR/DerivedTypes.h"
27#include "llvm/IR/Function.h"
28#include "llvm/IR/GlobalValue.h"
29#include "llvm/IR/IntrinsicInst.h"
30#include "llvm/IR/Intrinsics.h"
31#include "llvm/IR/Module.h"
Justin Holewinskiae556d32012-05-04 20:18:50 +000032#include "llvm/MC/MCSectionELF.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000033#include "llvm/Support/CommandLine.h"
34#include "llvm/Support/Debug.h"
35#include "llvm/Support/ErrorHandling.h"
Justin Holewinski9982f062014-06-27 19:36:25 +000036#include "llvm/Support/MathExtras.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000037#include "llvm/Support/raw_ostream.h"
Justin Holewinskiae556d32012-05-04 20:18:50 +000038#include <sstream>
39
40#undef DEBUG_TYPE
41#define DEBUG_TYPE "nvptx-lower"
42
43using namespace llvm;
44
45static unsigned int uniqueCallSite = 0;
46
Justin Holewinski0497ab12013-03-30 14:29:21 +000047static cl::opt<bool> sched4reg(
48 "nvptx-sched4reg",
49 cl::desc("NVPTX Specific: schedule for register pressue"), cl::init(false));
Justin Holewinskiae556d32012-05-04 20:18:50 +000050
Justin Holewinski428cf0e2014-07-17 18:10:09 +000051static cl::opt<unsigned>
52FMAContractLevelOpt("nvptx-fma-level", cl::ZeroOrMore, cl::Hidden,
53 cl::desc("NVPTX Specific: FMA contraction (0: don't do it"
54 " 1: do it 2: do it aggressively"),
55 cl::init(2));
56
Justin Holewinskibe8dc642013-02-12 14:18:49 +000057static bool IsPTXVectorType(MVT VT) {
58 switch (VT.SimpleTy) {
Justin Holewinski0497ab12013-03-30 14:29:21 +000059 default:
60 return false;
Justin Holewinskif8f70912013-06-28 17:57:59 +000061 case MVT::v2i1:
62 case MVT::v4i1:
Justin Holewinskibe8dc642013-02-12 14:18:49 +000063 case MVT::v2i8:
64 case MVT::v4i8:
65 case MVT::v2i16:
66 case MVT::v4i16:
67 case MVT::v2i32:
68 case MVT::v4i32:
69 case MVT::v2i64:
70 case MVT::v2f32:
71 case MVT::v4f32:
72 case MVT::v2f64:
Justin Holewinski0497ab12013-03-30 14:29:21 +000073 return true;
Justin Holewinskibe8dc642013-02-12 14:18:49 +000074 }
75}
76
Justin Holewinskif8f70912013-06-28 17:57:59 +000077/// ComputePTXValueVTs - For the given Type \p Ty, returns the set of primitive
78/// EVTs that compose it. Unlike ComputeValueVTs, this will break apart vectors
79/// into their primitive components.
80/// NOTE: This is a band-aid for code that expects ComputeValueVTs to return the
81/// same number of types as the Ins/Outs arrays in LowerFormalArguments,
82/// LowerCall, and LowerReturn.
Mehdi Amini56228da2015-07-09 01:57:34 +000083static void ComputePTXValueVTs(const TargetLowering &TLI, const DataLayout &DL,
84 Type *Ty, SmallVectorImpl<EVT> &ValueVTs,
Craig Topper062a2ba2014-04-25 05:30:21 +000085 SmallVectorImpl<uint64_t> *Offsets = nullptr,
Justin Holewinskif8f70912013-06-28 17:57:59 +000086 uint64_t StartingOffset = 0) {
87 SmallVector<EVT, 16> TempVTs;
88 SmallVector<uint64_t, 16> TempOffsets;
89
Mehdi Amini56228da2015-07-09 01:57:34 +000090 ComputeValueVTs(TLI, DL, Ty, TempVTs, &TempOffsets, StartingOffset);
Justin Holewinskif8f70912013-06-28 17:57:59 +000091 for (unsigned i = 0, e = TempVTs.size(); i != e; ++i) {
92 EVT VT = TempVTs[i];
93 uint64_t Off = TempOffsets[i];
94 if (VT.isVector())
95 for (unsigned j = 0, je = VT.getVectorNumElements(); j != je; ++j) {
96 ValueVTs.push_back(VT.getVectorElementType());
97 if (Offsets)
98 Offsets->push_back(Off+j*VT.getVectorElementType().getStoreSize());
99 }
100 else {
101 ValueVTs.push_back(VT);
102 if (Offsets)
103 Offsets->push_back(Off);
104 }
105 }
106}
107
Justin Holewinskiae556d32012-05-04 20:18:50 +0000108// NVPTXTargetLowering Constructor.
Eric Christopherbef0a372015-01-30 01:50:07 +0000109NVPTXTargetLowering::NVPTXTargetLowering(const NVPTXTargetMachine &TM,
110 const NVPTXSubtarget &STI)
111 : TargetLowering(TM), nvTM(&TM), STI(STI) {
Justin Holewinskiae556d32012-05-04 20:18:50 +0000112
113 // always lower memset, memcpy, and memmove intrinsics to load/store
114 // instructions, rather
115 // then generating calls to memset, mempcy or memmove.
Justin Holewinski0497ab12013-03-30 14:29:21 +0000116 MaxStoresPerMemset = (unsigned) 0xFFFFFFFF;
117 MaxStoresPerMemcpy = (unsigned) 0xFFFFFFFF;
118 MaxStoresPerMemmove = (unsigned) 0xFFFFFFFF;
Justin Holewinskiae556d32012-05-04 20:18:50 +0000119
120 setBooleanContents(ZeroOrNegativeOneBooleanContent);
Justin Holewinskid7d8fe02014-06-27 18:35:42 +0000121 setBooleanVectorContents(ZeroOrNegativeOneBooleanContent);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000122
123 // Jump is Expensive. Don't create extra control flow for 'and', 'or'
124 // condition branches.
125 setJumpIsExpensive(true);
126
Mark Heffernan438ffe52015-08-11 22:16:34 +0000127 // Wide divides are _very_ slow. Try to reduce the width of the divide if
128 // possible.
129 addBypassSlowDiv(64, 32);
130
Justin Holewinskiae556d32012-05-04 20:18:50 +0000131 // By default, use the Source scheduling
132 if (sched4reg)
133 setSchedulingPreference(Sched::RegPressure);
134 else
135 setSchedulingPreference(Sched::Source);
136
137 addRegisterClass(MVT::i1, &NVPTX::Int1RegsRegClass);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000138 addRegisterClass(MVT::i16, &NVPTX::Int16RegsRegClass);
139 addRegisterClass(MVT::i32, &NVPTX::Int32RegsRegClass);
140 addRegisterClass(MVT::i64, &NVPTX::Int64RegsRegClass);
141 addRegisterClass(MVT::f32, &NVPTX::Float32RegsRegClass);
142 addRegisterClass(MVT::f64, &NVPTX::Float64RegsRegClass);
143
Justin Holewinskiae556d32012-05-04 20:18:50 +0000144 // Operations not directly supported by NVPTX.
Tom Stellard3787b122014-06-10 16:01:29 +0000145 setOperationAction(ISD::SELECT_CC, MVT::f32, Expand);
146 setOperationAction(ISD::SELECT_CC, MVT::f64, Expand);
147 setOperationAction(ISD::SELECT_CC, MVT::i1, Expand);
148 setOperationAction(ISD::SELECT_CC, MVT::i8, Expand);
149 setOperationAction(ISD::SELECT_CC, MVT::i16, Expand);
150 setOperationAction(ISD::SELECT_CC, MVT::i32, Expand);
151 setOperationAction(ISD::SELECT_CC, MVT::i64, Expand);
Justin Holewinski0497ab12013-03-30 14:29:21 +0000152 setOperationAction(ISD::BR_CC, MVT::f32, Expand);
153 setOperationAction(ISD::BR_CC, MVT::f64, Expand);
154 setOperationAction(ISD::BR_CC, MVT::i1, Expand);
155 setOperationAction(ISD::BR_CC, MVT::i8, Expand);
156 setOperationAction(ISD::BR_CC, MVT::i16, Expand);
157 setOperationAction(ISD::BR_CC, MVT::i32, Expand);
158 setOperationAction(ISD::BR_CC, MVT::i64, Expand);
Justin Holewinski318c6252013-07-01 12:58:56 +0000159 // Some SIGN_EXTEND_INREG can be done using cvt instruction.
160 // For others we will expand to a SHL/SRA pair.
161 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i64, Legal);
162 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i32, Legal);
163 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i16, Legal);
164 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i8 , Legal);
Justin Holewinski0497ab12013-03-30 14:29:21 +0000165 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i1, Expand);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000166
Justin Holewinski360a5cf2014-06-27 18:35:40 +0000167 setOperationAction(ISD::SHL_PARTS, MVT::i32 , Custom);
168 setOperationAction(ISD::SRA_PARTS, MVT::i32 , Custom);
169 setOperationAction(ISD::SRL_PARTS, MVT::i32 , Custom);
170 setOperationAction(ISD::SHL_PARTS, MVT::i64 , Custom);
171 setOperationAction(ISD::SRA_PARTS, MVT::i64 , Custom);
172 setOperationAction(ISD::SRL_PARTS, MVT::i64 , Custom);
173
Eric Christopherbef0a372015-01-30 01:50:07 +0000174 if (STI.hasROT64()) {
Justin Holewinski0497ab12013-03-30 14:29:21 +0000175 setOperationAction(ISD::ROTL, MVT::i64, Legal);
176 setOperationAction(ISD::ROTR, MVT::i64, Legal);
177 } else {
178 setOperationAction(ISD::ROTL, MVT::i64, Expand);
179 setOperationAction(ISD::ROTR, MVT::i64, Expand);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000180 }
Eric Christopherbef0a372015-01-30 01:50:07 +0000181 if (STI.hasROT32()) {
Justin Holewinski0497ab12013-03-30 14:29:21 +0000182 setOperationAction(ISD::ROTL, MVT::i32, Legal);
183 setOperationAction(ISD::ROTR, MVT::i32, Legal);
184 } else {
185 setOperationAction(ISD::ROTL, MVT::i32, Expand);
186 setOperationAction(ISD::ROTR, MVT::i32, Expand);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000187 }
188
Justin Holewinski0497ab12013-03-30 14:29:21 +0000189 setOperationAction(ISD::ROTL, MVT::i16, Expand);
190 setOperationAction(ISD::ROTR, MVT::i16, Expand);
191 setOperationAction(ISD::ROTL, MVT::i8, Expand);
192 setOperationAction(ISD::ROTR, MVT::i8, Expand);
193 setOperationAction(ISD::BSWAP, MVT::i16, Expand);
194 setOperationAction(ISD::BSWAP, MVT::i32, Expand);
195 setOperationAction(ISD::BSWAP, MVT::i64, Expand);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000196
197 // Indirect branch is not supported.
198 // This also disables Jump Table creation.
Justin Holewinski0497ab12013-03-30 14:29:21 +0000199 setOperationAction(ISD::BR_JT, MVT::Other, Expand);
200 setOperationAction(ISD::BRIND, MVT::Other, Expand);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000201
Justin Holewinski0497ab12013-03-30 14:29:21 +0000202 setOperationAction(ISD::GlobalAddress, MVT::i32, Custom);
203 setOperationAction(ISD::GlobalAddress, MVT::i64, Custom);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000204
205 // We want to legalize constant related memmove and memcopy
206 // intrinsics.
207 setOperationAction(ISD::INTRINSIC_W_CHAIN, MVT::Other, Custom);
208
209 // Turn FP extload into load/fextend
Ahmed Bougacha2b6917b2015-01-08 00:51:32 +0000210 setLoadExtAction(ISD::EXTLOAD, MVT::f32, MVT::f16, Expand);
211 setLoadExtAction(ISD::EXTLOAD, MVT::f64, MVT::f16, Expand);
212 setLoadExtAction(ISD::EXTLOAD, MVT::f64, MVT::f32, Expand);
Jingyue Wua0a56602015-07-01 21:32:42 +0000213 setLoadExtAction(ISD::EXTLOAD, MVT::v2f32, MVT::v2f16, Expand);
214 setLoadExtAction(ISD::EXTLOAD, MVT::v2f64, MVT::v2f16, Expand);
215 setLoadExtAction(ISD::EXTLOAD, MVT::v2f64, MVT::v2f32, Expand);
216 setLoadExtAction(ISD::EXTLOAD, MVT::v4f32, MVT::v4f16, Expand);
217 setLoadExtAction(ISD::EXTLOAD, MVT::v4f64, MVT::v4f16, Expand);
218 setLoadExtAction(ISD::EXTLOAD, MVT::v4f64, MVT::v4f32, Expand);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000219 // Turn FP truncstore into trunc + store.
Jingyue Wua0a56602015-07-01 21:32:42 +0000220 // FIXME: vector types should also be expanded
Tim Northover9e108a02014-07-18 13:01:43 +0000221 setTruncStoreAction(MVT::f32, MVT::f16, Expand);
222 setTruncStoreAction(MVT::f64, MVT::f16, Expand);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000223 setTruncStoreAction(MVT::f64, MVT::f32, Expand);
224
225 // PTX does not support load / store predicate registers
Justin Holewinskic6462aa2012-11-14 19:19:16 +0000226 setOperationAction(ISD::LOAD, MVT::i1, Custom);
227 setOperationAction(ISD::STORE, MVT::i1, Custom);
228
Ahmed Bougacha2b6917b2015-01-08 00:51:32 +0000229 for (MVT VT : MVT::integer_valuetypes()) {
230 setLoadExtAction(ISD::SEXTLOAD, VT, MVT::i1, Promote);
231 setLoadExtAction(ISD::ZEXTLOAD, VT, MVT::i1, Promote);
232 setTruncStoreAction(VT, MVT::i1, Expand);
233 }
Justin Holewinskiae556d32012-05-04 20:18:50 +0000234
235 // This is legal in NVPTX
Justin Holewinski0497ab12013-03-30 14:29:21 +0000236 setOperationAction(ISD::ConstantFP, MVT::f64, Legal);
237 setOperationAction(ISD::ConstantFP, MVT::f32, Legal);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000238
239 // TRAP can be lowered to PTX trap
Justin Holewinski0497ab12013-03-30 14:29:21 +0000240 setOperationAction(ISD::TRAP, MVT::Other, Legal);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000241
Justin Holewinski51cb1342013-07-01 12:59:04 +0000242 setOperationAction(ISD::ADDC, MVT::i64, Expand);
243 setOperationAction(ISD::ADDE, MVT::i64, Expand);
244
Justin Holewinskibe8dc642013-02-12 14:18:49 +0000245 // Register custom handling for vector loads/stores
Ahmed Bougacha67dd2d22015-01-07 21:27:10 +0000246 for (MVT VT : MVT::vector_valuetypes()) {
Justin Holewinskibe8dc642013-02-12 14:18:49 +0000247 if (IsPTXVectorType(VT)) {
248 setOperationAction(ISD::LOAD, VT, Custom);
249 setOperationAction(ISD::STORE, VT, Custom);
250 setOperationAction(ISD::INTRINSIC_W_CHAIN, VT, Custom);
251 }
252 }
Justin Holewinskiae556d32012-05-04 20:18:50 +0000253
Justin Holewinskif8f70912013-06-28 17:57:59 +0000254 // Custom handling for i8 intrinsics
255 setOperationAction(ISD::INTRINSIC_W_CHAIN, MVT::i8, Custom);
256
Justin Holewinskidc372df2013-06-28 17:58:07 +0000257 setOperationAction(ISD::CTLZ, MVT::i16, Legal);
258 setOperationAction(ISD::CTLZ, MVT::i32, Legal);
259 setOperationAction(ISD::CTLZ, MVT::i64, Legal);
260 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i16, Legal);
261 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i32, Legal);
262 setOperationAction(ISD::CTLZ_ZERO_UNDEF, MVT::i64, Legal);
263 setOperationAction(ISD::CTTZ, MVT::i16, Expand);
264 setOperationAction(ISD::CTTZ, MVT::i32, Expand);
265 setOperationAction(ISD::CTTZ, MVT::i64, Expand);
266 setOperationAction(ISD::CTTZ_ZERO_UNDEF, MVT::i16, Expand);
267 setOperationAction(ISD::CTTZ_ZERO_UNDEF, MVT::i32, Expand);
268 setOperationAction(ISD::CTTZ_ZERO_UNDEF, MVT::i64, Expand);
269 setOperationAction(ISD::CTPOP, MVT::i16, Legal);
270 setOperationAction(ISD::CTPOP, MVT::i32, Legal);
271 setOperationAction(ISD::CTPOP, MVT::i64, Legal);
272
Justin Holewinskid4d2e9b2015-01-26 19:52:20 +0000273 // PTX does not directly support SELP of i1, so promote to i32 first
274 setOperationAction(ISD::SELECT, MVT::i1, Custom);
275
Jingyue Wu585ec862016-01-22 19:47:26 +0000276 // PTX cannot multiply two i64s in a single instruction.
277 setOperationAction(ISD::SMUL_LOHI, MVT::i64, Expand);
278 setOperationAction(ISD::UMUL_LOHI, MVT::i64, Expand);
279
Justin Holewinskieafe26d2014-06-27 18:35:37 +0000280 // We have some custom DAG combine patterns for these nodes
281 setTargetDAGCombine(ISD::ADD);
282 setTargetDAGCombine(ISD::AND);
283 setTargetDAGCombine(ISD::FADD);
284 setTargetDAGCombine(ISD::MUL);
285 setTargetDAGCombine(ISD::SHL);
Bjarke Hammersholt Roune6c647382015-08-26 23:22:02 +0000286 setTargetDAGCombine(ISD::SELECT);
Justin Holewinskieafe26d2014-06-27 18:35:37 +0000287
Justin Holewinskiae556d32012-05-04 20:18:50 +0000288 // Now deduce the information based on the above mentioned
289 // actions
Eric Christopher23a3a7c2015-02-26 00:00:24 +0000290 computeRegisterProperties(STI.getRegisterInfo());
Justin Holewinskiae556d32012-05-04 20:18:50 +0000291}
292
Justin Holewinskiae556d32012-05-04 20:18:50 +0000293const char *NVPTXTargetLowering::getTargetNodeName(unsigned Opcode) const {
Matthias Braund04893f2015-05-07 21:33:59 +0000294 switch ((NVPTXISD::NodeType)Opcode) {
295 case NVPTXISD::FIRST_NUMBER:
296 break;
Justin Holewinski0497ab12013-03-30 14:29:21 +0000297 case NVPTXISD::CALL:
298 return "NVPTXISD::CALL";
299 case NVPTXISD::RET_FLAG:
300 return "NVPTXISD::RET_FLAG";
Matthias Braund04893f2015-05-07 21:33:59 +0000301 case NVPTXISD::LOAD_PARAM:
302 return "NVPTXISD::LOAD_PARAM";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000303 case NVPTXISD::Wrapper:
304 return "NVPTXISD::Wrapper";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000305 case NVPTXISD::DeclareParam:
306 return "NVPTXISD::DeclareParam";
Justin Holewinskiae556d32012-05-04 20:18:50 +0000307 case NVPTXISD::DeclareScalarParam:
308 return "NVPTXISD::DeclareScalarParam";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000309 case NVPTXISD::DeclareRet:
310 return "NVPTXISD::DeclareRet";
Matthias Braund04893f2015-05-07 21:33:59 +0000311 case NVPTXISD::DeclareScalarRet:
312 return "NVPTXISD::DeclareScalarRet";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000313 case NVPTXISD::DeclareRetParam:
314 return "NVPTXISD::DeclareRetParam";
315 case NVPTXISD::PrintCall:
316 return "NVPTXISD::PrintCall";
Justin Lebarb5ca00a2016-03-01 19:24:03 +0000317 case NVPTXISD::PrintConvergentCall:
318 return "NVPTXISD::PrintConvergentCall";
Matthias Braund04893f2015-05-07 21:33:59 +0000319 case NVPTXISD::PrintCallUni:
320 return "NVPTXISD::PrintCallUni";
Justin Lebarb5ca00a2016-03-01 19:24:03 +0000321 case NVPTXISD::PrintConvergentCallUni:
322 return "NVPTXISD::PrintConvergentCallUni";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000323 case NVPTXISD::LoadParam:
324 return "NVPTXISD::LoadParam";
Justin Holewinskife44314f2013-06-28 17:57:51 +0000325 case NVPTXISD::LoadParamV2:
326 return "NVPTXISD::LoadParamV2";
327 case NVPTXISD::LoadParamV4:
328 return "NVPTXISD::LoadParamV4";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000329 case NVPTXISD::StoreParam:
330 return "NVPTXISD::StoreParam";
Justin Holewinskife44314f2013-06-28 17:57:51 +0000331 case NVPTXISD::StoreParamV2:
332 return "NVPTXISD::StoreParamV2";
333 case NVPTXISD::StoreParamV4:
334 return "NVPTXISD::StoreParamV4";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000335 case NVPTXISD::StoreParamS32:
336 return "NVPTXISD::StoreParamS32";
337 case NVPTXISD::StoreParamU32:
338 return "NVPTXISD::StoreParamU32";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000339 case NVPTXISD::CallArgBegin:
340 return "NVPTXISD::CallArgBegin";
341 case NVPTXISD::CallArg:
342 return "NVPTXISD::CallArg";
343 case NVPTXISD::LastCallArg:
344 return "NVPTXISD::LastCallArg";
345 case NVPTXISD::CallArgEnd:
346 return "NVPTXISD::CallArgEnd";
347 case NVPTXISD::CallVoid:
348 return "NVPTXISD::CallVoid";
349 case NVPTXISD::CallVal:
350 return "NVPTXISD::CallVal";
351 case NVPTXISD::CallSymbol:
352 return "NVPTXISD::CallSymbol";
353 case NVPTXISD::Prototype:
354 return "NVPTXISD::Prototype";
355 case NVPTXISD::MoveParam:
356 return "NVPTXISD::MoveParam";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000357 case NVPTXISD::StoreRetval:
358 return "NVPTXISD::StoreRetval";
Justin Holewinskife44314f2013-06-28 17:57:51 +0000359 case NVPTXISD::StoreRetvalV2:
360 return "NVPTXISD::StoreRetvalV2";
361 case NVPTXISD::StoreRetvalV4:
362 return "NVPTXISD::StoreRetvalV4";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000363 case NVPTXISD::PseudoUseParam:
364 return "NVPTXISD::PseudoUseParam";
365 case NVPTXISD::RETURN:
366 return "NVPTXISD::RETURN";
367 case NVPTXISD::CallSeqBegin:
368 return "NVPTXISD::CallSeqBegin";
369 case NVPTXISD::CallSeqEnd:
370 return "NVPTXISD::CallSeqEnd";
Justin Holewinski3d49e5c2013-11-15 12:30:04 +0000371 case NVPTXISD::CallPrototype:
372 return "NVPTXISD::CallPrototype";
Justin Holewinski0497ab12013-03-30 14:29:21 +0000373 case NVPTXISD::LoadV2:
374 return "NVPTXISD::LoadV2";
375 case NVPTXISD::LoadV4:
376 return "NVPTXISD::LoadV4";
377 case NVPTXISD::LDGV2:
378 return "NVPTXISD::LDGV2";
379 case NVPTXISD::LDGV4:
380 return "NVPTXISD::LDGV4";
381 case NVPTXISD::LDUV2:
382 return "NVPTXISD::LDUV2";
383 case NVPTXISD::LDUV4:
384 return "NVPTXISD::LDUV4";
385 case NVPTXISD::StoreV2:
386 return "NVPTXISD::StoreV2";
387 case NVPTXISD::StoreV4:
388 return "NVPTXISD::StoreV4";
Justin Holewinskieafe26d2014-06-27 18:35:37 +0000389 case NVPTXISD::FUN_SHFL_CLAMP:
390 return "NVPTXISD::FUN_SHFL_CLAMP";
391 case NVPTXISD::FUN_SHFR_CLAMP:
392 return "NVPTXISD::FUN_SHFR_CLAMP";
Justin Holewinski360a5cf2014-06-27 18:35:40 +0000393 case NVPTXISD::IMAD:
394 return "NVPTXISD::IMAD";
Matthias Braund04893f2015-05-07 21:33:59 +0000395 case NVPTXISD::Dummy:
396 return "NVPTXISD::Dummy";
Justin Holewinski360a5cf2014-06-27 18:35:40 +0000397 case NVPTXISD::MUL_WIDE_SIGNED:
398 return "NVPTXISD::MUL_WIDE_SIGNED";
399 case NVPTXISD::MUL_WIDE_UNSIGNED:
400 return "NVPTXISD::MUL_WIDE_UNSIGNED";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000401 case NVPTXISD::Tex1DFloatS32: return "NVPTXISD::Tex1DFloatS32";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000402 case NVPTXISD::Tex1DFloatFloat: return "NVPTXISD::Tex1DFloatFloat";
403 case NVPTXISD::Tex1DFloatFloatLevel:
404 return "NVPTXISD::Tex1DFloatFloatLevel";
405 case NVPTXISD::Tex1DFloatFloatGrad:
406 return "NVPTXISD::Tex1DFloatFloatGrad";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000407 case NVPTXISD::Tex1DS32S32: return "NVPTXISD::Tex1DS32S32";
408 case NVPTXISD::Tex1DS32Float: return "NVPTXISD::Tex1DS32Float";
409 case NVPTXISD::Tex1DS32FloatLevel:
410 return "NVPTXISD::Tex1DS32FloatLevel";
411 case NVPTXISD::Tex1DS32FloatGrad:
412 return "NVPTXISD::Tex1DS32FloatGrad";
413 case NVPTXISD::Tex1DU32S32: return "NVPTXISD::Tex1DU32S32";
414 case NVPTXISD::Tex1DU32Float: return "NVPTXISD::Tex1DU32Float";
415 case NVPTXISD::Tex1DU32FloatLevel:
416 return "NVPTXISD::Tex1DU32FloatLevel";
417 case NVPTXISD::Tex1DU32FloatGrad:
418 return "NVPTXISD::Tex1DU32FloatGrad";
419 case NVPTXISD::Tex1DArrayFloatS32: return "NVPTXISD::Tex1DArrayFloatS32";
420 case NVPTXISD::Tex1DArrayFloatFloat: return "NVPTXISD::Tex1DArrayFloatFloat";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000421 case NVPTXISD::Tex1DArrayFloatFloatLevel:
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000422 return "NVPTXISD::Tex1DArrayFloatFloatLevel";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000423 case NVPTXISD::Tex1DArrayFloatFloatGrad:
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000424 return "NVPTXISD::Tex1DArrayFloatFloatGrad";
425 case NVPTXISD::Tex1DArrayS32S32: return "NVPTXISD::Tex1DArrayS32S32";
426 case NVPTXISD::Tex1DArrayS32Float: return "NVPTXISD::Tex1DArrayS32Float";
427 case NVPTXISD::Tex1DArrayS32FloatLevel:
428 return "NVPTXISD::Tex1DArrayS32FloatLevel";
429 case NVPTXISD::Tex1DArrayS32FloatGrad:
430 return "NVPTXISD::Tex1DArrayS32FloatGrad";
431 case NVPTXISD::Tex1DArrayU32S32: return "NVPTXISD::Tex1DArrayU32S32";
432 case NVPTXISD::Tex1DArrayU32Float: return "NVPTXISD::Tex1DArrayU32Float";
433 case NVPTXISD::Tex1DArrayU32FloatLevel:
434 return "NVPTXISD::Tex1DArrayU32FloatLevel";
435 case NVPTXISD::Tex1DArrayU32FloatGrad:
436 return "NVPTXISD::Tex1DArrayU32FloatGrad";
437 case NVPTXISD::Tex2DFloatS32: return "NVPTXISD::Tex2DFloatS32";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000438 case NVPTXISD::Tex2DFloatFloat: return "NVPTXISD::Tex2DFloatFloat";
439 case NVPTXISD::Tex2DFloatFloatLevel:
440 return "NVPTXISD::Tex2DFloatFloatLevel";
441 case NVPTXISD::Tex2DFloatFloatGrad:
442 return "NVPTXISD::Tex2DFloatFloatGrad";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000443 case NVPTXISD::Tex2DS32S32: return "NVPTXISD::Tex2DS32S32";
444 case NVPTXISD::Tex2DS32Float: return "NVPTXISD::Tex2DS32Float";
445 case NVPTXISD::Tex2DS32FloatLevel:
446 return "NVPTXISD::Tex2DS32FloatLevel";
447 case NVPTXISD::Tex2DS32FloatGrad:
448 return "NVPTXISD::Tex2DS32FloatGrad";
449 case NVPTXISD::Tex2DU32S32: return "NVPTXISD::Tex2DU32S32";
450 case NVPTXISD::Tex2DU32Float: return "NVPTXISD::Tex2DU32Float";
451 case NVPTXISD::Tex2DU32FloatLevel:
452 return "NVPTXISD::Tex2DU32FloatLevel";
453 case NVPTXISD::Tex2DU32FloatGrad:
454 return "NVPTXISD::Tex2DU32FloatGrad";
455 case NVPTXISD::Tex2DArrayFloatS32: return "NVPTXISD::Tex2DArrayFloatS32";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000456 case NVPTXISD::Tex2DArrayFloatFloat: return "NVPTXISD::Tex2DArrayFloatFloat";
457 case NVPTXISD::Tex2DArrayFloatFloatLevel:
458 return "NVPTXISD::Tex2DArrayFloatFloatLevel";
459 case NVPTXISD::Tex2DArrayFloatFloatGrad:
460 return "NVPTXISD::Tex2DArrayFloatFloatGrad";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000461 case NVPTXISD::Tex2DArrayS32S32: return "NVPTXISD::Tex2DArrayS32S32";
462 case NVPTXISD::Tex2DArrayS32Float: return "NVPTXISD::Tex2DArrayS32Float";
463 case NVPTXISD::Tex2DArrayS32FloatLevel:
464 return "NVPTXISD::Tex2DArrayS32FloatLevel";
465 case NVPTXISD::Tex2DArrayS32FloatGrad:
466 return "NVPTXISD::Tex2DArrayS32FloatGrad";
467 case NVPTXISD::Tex2DArrayU32S32: return "NVPTXISD::Tex2DArrayU32S32";
468 case NVPTXISD::Tex2DArrayU32Float: return "NVPTXISD::Tex2DArrayU32Float";
469 case NVPTXISD::Tex2DArrayU32FloatLevel:
470 return "NVPTXISD::Tex2DArrayU32FloatLevel";
471 case NVPTXISD::Tex2DArrayU32FloatGrad:
472 return "NVPTXISD::Tex2DArrayU32FloatGrad";
473 case NVPTXISD::Tex3DFloatS32: return "NVPTXISD::Tex3DFloatS32";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000474 case NVPTXISD::Tex3DFloatFloat: return "NVPTXISD::Tex3DFloatFloat";
475 case NVPTXISD::Tex3DFloatFloatLevel:
476 return "NVPTXISD::Tex3DFloatFloatLevel";
477 case NVPTXISD::Tex3DFloatFloatGrad:
478 return "NVPTXISD::Tex3DFloatFloatGrad";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000479 case NVPTXISD::Tex3DS32S32: return "NVPTXISD::Tex3DS32S32";
480 case NVPTXISD::Tex3DS32Float: return "NVPTXISD::Tex3DS32Float";
481 case NVPTXISD::Tex3DS32FloatLevel:
482 return "NVPTXISD::Tex3DS32FloatLevel";
483 case NVPTXISD::Tex3DS32FloatGrad:
484 return "NVPTXISD::Tex3DS32FloatGrad";
485 case NVPTXISD::Tex3DU32S32: return "NVPTXISD::Tex3DU32S32";
486 case NVPTXISD::Tex3DU32Float: return "NVPTXISD::Tex3DU32Float";
487 case NVPTXISD::Tex3DU32FloatLevel:
488 return "NVPTXISD::Tex3DU32FloatLevel";
489 case NVPTXISD::Tex3DU32FloatGrad:
490 return "NVPTXISD::Tex3DU32FloatGrad";
491 case NVPTXISD::TexCubeFloatFloat: return "NVPTXISD::TexCubeFloatFloat";
492 case NVPTXISD::TexCubeFloatFloatLevel:
493 return "NVPTXISD::TexCubeFloatFloatLevel";
494 case NVPTXISD::TexCubeS32Float: return "NVPTXISD::TexCubeS32Float";
495 case NVPTXISD::TexCubeS32FloatLevel:
496 return "NVPTXISD::TexCubeS32FloatLevel";
497 case NVPTXISD::TexCubeU32Float: return "NVPTXISD::TexCubeU32Float";
498 case NVPTXISD::TexCubeU32FloatLevel:
499 return "NVPTXISD::TexCubeU32FloatLevel";
500 case NVPTXISD::TexCubeArrayFloatFloat:
501 return "NVPTXISD::TexCubeArrayFloatFloat";
502 case NVPTXISD::TexCubeArrayFloatFloatLevel:
503 return "NVPTXISD::TexCubeArrayFloatFloatLevel";
504 case NVPTXISD::TexCubeArrayS32Float:
505 return "NVPTXISD::TexCubeArrayS32Float";
506 case NVPTXISD::TexCubeArrayS32FloatLevel:
507 return "NVPTXISD::TexCubeArrayS32FloatLevel";
508 case NVPTXISD::TexCubeArrayU32Float:
509 return "NVPTXISD::TexCubeArrayU32Float";
510 case NVPTXISD::TexCubeArrayU32FloatLevel:
511 return "NVPTXISD::TexCubeArrayU32FloatLevel";
512 case NVPTXISD::Tld4R2DFloatFloat:
513 return "NVPTXISD::Tld4R2DFloatFloat";
514 case NVPTXISD::Tld4G2DFloatFloat:
515 return "NVPTXISD::Tld4G2DFloatFloat";
516 case NVPTXISD::Tld4B2DFloatFloat:
517 return "NVPTXISD::Tld4B2DFloatFloat";
518 case NVPTXISD::Tld4A2DFloatFloat:
519 return "NVPTXISD::Tld4A2DFloatFloat";
520 case NVPTXISD::Tld4R2DS64Float:
521 return "NVPTXISD::Tld4R2DS64Float";
522 case NVPTXISD::Tld4G2DS64Float:
523 return "NVPTXISD::Tld4G2DS64Float";
524 case NVPTXISD::Tld4B2DS64Float:
525 return "NVPTXISD::Tld4B2DS64Float";
526 case NVPTXISD::Tld4A2DS64Float:
527 return "NVPTXISD::Tld4A2DS64Float";
528 case NVPTXISD::Tld4R2DU64Float:
529 return "NVPTXISD::Tld4R2DU64Float";
530 case NVPTXISD::Tld4G2DU64Float:
531 return "NVPTXISD::Tld4G2DU64Float";
532 case NVPTXISD::Tld4B2DU64Float:
533 return "NVPTXISD::Tld4B2DU64Float";
534 case NVPTXISD::Tld4A2DU64Float:
535 return "NVPTXISD::Tld4A2DU64Float";
536
537 case NVPTXISD::TexUnified1DFloatS32:
538 return "NVPTXISD::TexUnified1DFloatS32";
539 case NVPTXISD::TexUnified1DFloatFloat:
540 return "NVPTXISD::TexUnified1DFloatFloat";
541 case NVPTXISD::TexUnified1DFloatFloatLevel:
542 return "NVPTXISD::TexUnified1DFloatFloatLevel";
543 case NVPTXISD::TexUnified1DFloatFloatGrad:
544 return "NVPTXISD::TexUnified1DFloatFloatGrad";
545 case NVPTXISD::TexUnified1DS32S32:
546 return "NVPTXISD::TexUnified1DS32S32";
547 case NVPTXISD::TexUnified1DS32Float:
548 return "NVPTXISD::TexUnified1DS32Float";
549 case NVPTXISD::TexUnified1DS32FloatLevel:
550 return "NVPTXISD::TexUnified1DS32FloatLevel";
551 case NVPTXISD::TexUnified1DS32FloatGrad:
552 return "NVPTXISD::TexUnified1DS32FloatGrad";
553 case NVPTXISD::TexUnified1DU32S32:
554 return "NVPTXISD::TexUnified1DU32S32";
555 case NVPTXISD::TexUnified1DU32Float:
556 return "NVPTXISD::TexUnified1DU32Float";
557 case NVPTXISD::TexUnified1DU32FloatLevel:
558 return "NVPTXISD::TexUnified1DU32FloatLevel";
559 case NVPTXISD::TexUnified1DU32FloatGrad:
560 return "NVPTXISD::TexUnified1DU32FloatGrad";
561 case NVPTXISD::TexUnified1DArrayFloatS32:
562 return "NVPTXISD::TexUnified1DArrayFloatS32";
563 case NVPTXISD::TexUnified1DArrayFloatFloat:
564 return "NVPTXISD::TexUnified1DArrayFloatFloat";
565 case NVPTXISD::TexUnified1DArrayFloatFloatLevel:
566 return "NVPTXISD::TexUnified1DArrayFloatFloatLevel";
567 case NVPTXISD::TexUnified1DArrayFloatFloatGrad:
568 return "NVPTXISD::TexUnified1DArrayFloatFloatGrad";
569 case NVPTXISD::TexUnified1DArrayS32S32:
570 return "NVPTXISD::TexUnified1DArrayS32S32";
571 case NVPTXISD::TexUnified1DArrayS32Float:
572 return "NVPTXISD::TexUnified1DArrayS32Float";
573 case NVPTXISD::TexUnified1DArrayS32FloatLevel:
574 return "NVPTXISD::TexUnified1DArrayS32FloatLevel";
575 case NVPTXISD::TexUnified1DArrayS32FloatGrad:
576 return "NVPTXISD::TexUnified1DArrayS32FloatGrad";
577 case NVPTXISD::TexUnified1DArrayU32S32:
578 return "NVPTXISD::TexUnified1DArrayU32S32";
579 case NVPTXISD::TexUnified1DArrayU32Float:
580 return "NVPTXISD::TexUnified1DArrayU32Float";
581 case NVPTXISD::TexUnified1DArrayU32FloatLevel:
582 return "NVPTXISD::TexUnified1DArrayU32FloatLevel";
583 case NVPTXISD::TexUnified1DArrayU32FloatGrad:
584 return "NVPTXISD::TexUnified1DArrayU32FloatGrad";
585 case NVPTXISD::TexUnified2DFloatS32:
586 return "NVPTXISD::TexUnified2DFloatS32";
587 case NVPTXISD::TexUnified2DFloatFloat:
588 return "NVPTXISD::TexUnified2DFloatFloat";
589 case NVPTXISD::TexUnified2DFloatFloatLevel:
590 return "NVPTXISD::TexUnified2DFloatFloatLevel";
591 case NVPTXISD::TexUnified2DFloatFloatGrad:
592 return "NVPTXISD::TexUnified2DFloatFloatGrad";
593 case NVPTXISD::TexUnified2DS32S32:
594 return "NVPTXISD::TexUnified2DS32S32";
595 case NVPTXISD::TexUnified2DS32Float:
596 return "NVPTXISD::TexUnified2DS32Float";
597 case NVPTXISD::TexUnified2DS32FloatLevel:
598 return "NVPTXISD::TexUnified2DS32FloatLevel";
599 case NVPTXISD::TexUnified2DS32FloatGrad:
600 return "NVPTXISD::TexUnified2DS32FloatGrad";
601 case NVPTXISD::TexUnified2DU32S32:
602 return "NVPTXISD::TexUnified2DU32S32";
603 case NVPTXISD::TexUnified2DU32Float:
604 return "NVPTXISD::TexUnified2DU32Float";
605 case NVPTXISD::TexUnified2DU32FloatLevel:
606 return "NVPTXISD::TexUnified2DU32FloatLevel";
607 case NVPTXISD::TexUnified2DU32FloatGrad:
608 return "NVPTXISD::TexUnified2DU32FloatGrad";
609 case NVPTXISD::TexUnified2DArrayFloatS32:
610 return "NVPTXISD::TexUnified2DArrayFloatS32";
611 case NVPTXISD::TexUnified2DArrayFloatFloat:
612 return "NVPTXISD::TexUnified2DArrayFloatFloat";
613 case NVPTXISD::TexUnified2DArrayFloatFloatLevel:
614 return "NVPTXISD::TexUnified2DArrayFloatFloatLevel";
615 case NVPTXISD::TexUnified2DArrayFloatFloatGrad:
616 return "NVPTXISD::TexUnified2DArrayFloatFloatGrad";
617 case NVPTXISD::TexUnified2DArrayS32S32:
618 return "NVPTXISD::TexUnified2DArrayS32S32";
619 case NVPTXISD::TexUnified2DArrayS32Float:
620 return "NVPTXISD::TexUnified2DArrayS32Float";
621 case NVPTXISD::TexUnified2DArrayS32FloatLevel:
622 return "NVPTXISD::TexUnified2DArrayS32FloatLevel";
623 case NVPTXISD::TexUnified2DArrayS32FloatGrad:
624 return "NVPTXISD::TexUnified2DArrayS32FloatGrad";
625 case NVPTXISD::TexUnified2DArrayU32S32:
626 return "NVPTXISD::TexUnified2DArrayU32S32";
627 case NVPTXISD::TexUnified2DArrayU32Float:
628 return "NVPTXISD::TexUnified2DArrayU32Float";
629 case NVPTXISD::TexUnified2DArrayU32FloatLevel:
630 return "NVPTXISD::TexUnified2DArrayU32FloatLevel";
631 case NVPTXISD::TexUnified2DArrayU32FloatGrad:
632 return "NVPTXISD::TexUnified2DArrayU32FloatGrad";
633 case NVPTXISD::TexUnified3DFloatS32:
634 return "NVPTXISD::TexUnified3DFloatS32";
635 case NVPTXISD::TexUnified3DFloatFloat:
636 return "NVPTXISD::TexUnified3DFloatFloat";
637 case NVPTXISD::TexUnified3DFloatFloatLevel:
638 return "NVPTXISD::TexUnified3DFloatFloatLevel";
639 case NVPTXISD::TexUnified3DFloatFloatGrad:
640 return "NVPTXISD::TexUnified3DFloatFloatGrad";
641 case NVPTXISD::TexUnified3DS32S32:
642 return "NVPTXISD::TexUnified3DS32S32";
643 case NVPTXISD::TexUnified3DS32Float:
644 return "NVPTXISD::TexUnified3DS32Float";
645 case NVPTXISD::TexUnified3DS32FloatLevel:
646 return "NVPTXISD::TexUnified3DS32FloatLevel";
647 case NVPTXISD::TexUnified3DS32FloatGrad:
648 return "NVPTXISD::TexUnified3DS32FloatGrad";
649 case NVPTXISD::TexUnified3DU32S32:
650 return "NVPTXISD::TexUnified3DU32S32";
651 case NVPTXISD::TexUnified3DU32Float:
652 return "NVPTXISD::TexUnified3DU32Float";
653 case NVPTXISD::TexUnified3DU32FloatLevel:
654 return "NVPTXISD::TexUnified3DU32FloatLevel";
655 case NVPTXISD::TexUnified3DU32FloatGrad:
656 return "NVPTXISD::TexUnified3DU32FloatGrad";
657 case NVPTXISD::TexUnifiedCubeFloatFloat:
658 return "NVPTXISD::TexUnifiedCubeFloatFloat";
659 case NVPTXISD::TexUnifiedCubeFloatFloatLevel:
660 return "NVPTXISD::TexUnifiedCubeFloatFloatLevel";
661 case NVPTXISD::TexUnifiedCubeS32Float:
662 return "NVPTXISD::TexUnifiedCubeS32Float";
663 case NVPTXISD::TexUnifiedCubeS32FloatLevel:
664 return "NVPTXISD::TexUnifiedCubeS32FloatLevel";
665 case NVPTXISD::TexUnifiedCubeU32Float:
666 return "NVPTXISD::TexUnifiedCubeU32Float";
667 case NVPTXISD::TexUnifiedCubeU32FloatLevel:
668 return "NVPTXISD::TexUnifiedCubeU32FloatLevel";
669 case NVPTXISD::TexUnifiedCubeArrayFloatFloat:
670 return "NVPTXISD::TexUnifiedCubeArrayFloatFloat";
671 case NVPTXISD::TexUnifiedCubeArrayFloatFloatLevel:
672 return "NVPTXISD::TexUnifiedCubeArrayFloatFloatLevel";
673 case NVPTXISD::TexUnifiedCubeArrayS32Float:
674 return "NVPTXISD::TexUnifiedCubeArrayS32Float";
675 case NVPTXISD::TexUnifiedCubeArrayS32FloatLevel:
676 return "NVPTXISD::TexUnifiedCubeArrayS32FloatLevel";
677 case NVPTXISD::TexUnifiedCubeArrayU32Float:
678 return "NVPTXISD::TexUnifiedCubeArrayU32Float";
679 case NVPTXISD::TexUnifiedCubeArrayU32FloatLevel:
680 return "NVPTXISD::TexUnifiedCubeArrayU32FloatLevel";
681 case NVPTXISD::Tld4UnifiedR2DFloatFloat:
682 return "NVPTXISD::Tld4UnifiedR2DFloatFloat";
683 case NVPTXISD::Tld4UnifiedG2DFloatFloat:
684 return "NVPTXISD::Tld4UnifiedG2DFloatFloat";
685 case NVPTXISD::Tld4UnifiedB2DFloatFloat:
686 return "NVPTXISD::Tld4UnifiedB2DFloatFloat";
687 case NVPTXISD::Tld4UnifiedA2DFloatFloat:
688 return "NVPTXISD::Tld4UnifiedA2DFloatFloat";
689 case NVPTXISD::Tld4UnifiedR2DS64Float:
690 return "NVPTXISD::Tld4UnifiedR2DS64Float";
691 case NVPTXISD::Tld4UnifiedG2DS64Float:
692 return "NVPTXISD::Tld4UnifiedG2DS64Float";
693 case NVPTXISD::Tld4UnifiedB2DS64Float:
694 return "NVPTXISD::Tld4UnifiedB2DS64Float";
695 case NVPTXISD::Tld4UnifiedA2DS64Float:
696 return "NVPTXISD::Tld4UnifiedA2DS64Float";
697 case NVPTXISD::Tld4UnifiedR2DU64Float:
698 return "NVPTXISD::Tld4UnifiedR2DU64Float";
699 case NVPTXISD::Tld4UnifiedG2DU64Float:
700 return "NVPTXISD::Tld4UnifiedG2DU64Float";
701 case NVPTXISD::Tld4UnifiedB2DU64Float:
702 return "NVPTXISD::Tld4UnifiedB2DU64Float";
703 case NVPTXISD::Tld4UnifiedA2DU64Float:
704 return "NVPTXISD::Tld4UnifiedA2DU64Float";
705
706 case NVPTXISD::Suld1DI8Clamp: return "NVPTXISD::Suld1DI8Clamp";
707 case NVPTXISD::Suld1DI16Clamp: return "NVPTXISD::Suld1DI16Clamp";
708 case NVPTXISD::Suld1DI32Clamp: return "NVPTXISD::Suld1DI32Clamp";
709 case NVPTXISD::Suld1DI64Clamp: return "NVPTXISD::Suld1DI64Clamp";
710 case NVPTXISD::Suld1DV2I8Clamp: return "NVPTXISD::Suld1DV2I8Clamp";
711 case NVPTXISD::Suld1DV2I16Clamp: return "NVPTXISD::Suld1DV2I16Clamp";
712 case NVPTXISD::Suld1DV2I32Clamp: return "NVPTXISD::Suld1DV2I32Clamp";
713 case NVPTXISD::Suld1DV2I64Clamp: return "NVPTXISD::Suld1DV2I64Clamp";
714 case NVPTXISD::Suld1DV4I8Clamp: return "NVPTXISD::Suld1DV4I8Clamp";
715 case NVPTXISD::Suld1DV4I16Clamp: return "NVPTXISD::Suld1DV4I16Clamp";
716 case NVPTXISD::Suld1DV4I32Clamp: return "NVPTXISD::Suld1DV4I32Clamp";
717
718 case NVPTXISD::Suld1DArrayI8Clamp: return "NVPTXISD::Suld1DArrayI8Clamp";
719 case NVPTXISD::Suld1DArrayI16Clamp: return "NVPTXISD::Suld1DArrayI16Clamp";
720 case NVPTXISD::Suld1DArrayI32Clamp: return "NVPTXISD::Suld1DArrayI32Clamp";
721 case NVPTXISD::Suld1DArrayI64Clamp: return "NVPTXISD::Suld1DArrayI64Clamp";
722 case NVPTXISD::Suld1DArrayV2I8Clamp: return "NVPTXISD::Suld1DArrayV2I8Clamp";
723 case NVPTXISD::Suld1DArrayV2I16Clamp:return "NVPTXISD::Suld1DArrayV2I16Clamp";
724 case NVPTXISD::Suld1DArrayV2I32Clamp:return "NVPTXISD::Suld1DArrayV2I32Clamp";
725 case NVPTXISD::Suld1DArrayV2I64Clamp:return "NVPTXISD::Suld1DArrayV2I64Clamp";
726 case NVPTXISD::Suld1DArrayV4I8Clamp: return "NVPTXISD::Suld1DArrayV4I8Clamp";
727 case NVPTXISD::Suld1DArrayV4I16Clamp:return "NVPTXISD::Suld1DArrayV4I16Clamp";
728 case NVPTXISD::Suld1DArrayV4I32Clamp:return "NVPTXISD::Suld1DArrayV4I32Clamp";
729
730 case NVPTXISD::Suld2DI8Clamp: return "NVPTXISD::Suld2DI8Clamp";
731 case NVPTXISD::Suld2DI16Clamp: return "NVPTXISD::Suld2DI16Clamp";
732 case NVPTXISD::Suld2DI32Clamp: return "NVPTXISD::Suld2DI32Clamp";
733 case NVPTXISD::Suld2DI64Clamp: return "NVPTXISD::Suld2DI64Clamp";
734 case NVPTXISD::Suld2DV2I8Clamp: return "NVPTXISD::Suld2DV2I8Clamp";
735 case NVPTXISD::Suld2DV2I16Clamp: return "NVPTXISD::Suld2DV2I16Clamp";
736 case NVPTXISD::Suld2DV2I32Clamp: return "NVPTXISD::Suld2DV2I32Clamp";
737 case NVPTXISD::Suld2DV2I64Clamp: return "NVPTXISD::Suld2DV2I64Clamp";
738 case NVPTXISD::Suld2DV4I8Clamp: return "NVPTXISD::Suld2DV4I8Clamp";
739 case NVPTXISD::Suld2DV4I16Clamp: return "NVPTXISD::Suld2DV4I16Clamp";
740 case NVPTXISD::Suld2DV4I32Clamp: return "NVPTXISD::Suld2DV4I32Clamp";
741
742 case NVPTXISD::Suld2DArrayI8Clamp: return "NVPTXISD::Suld2DArrayI8Clamp";
743 case NVPTXISD::Suld2DArrayI16Clamp: return "NVPTXISD::Suld2DArrayI16Clamp";
744 case NVPTXISD::Suld2DArrayI32Clamp: return "NVPTXISD::Suld2DArrayI32Clamp";
745 case NVPTXISD::Suld2DArrayI64Clamp: return "NVPTXISD::Suld2DArrayI64Clamp";
746 case NVPTXISD::Suld2DArrayV2I8Clamp: return "NVPTXISD::Suld2DArrayV2I8Clamp";
747 case NVPTXISD::Suld2DArrayV2I16Clamp:return "NVPTXISD::Suld2DArrayV2I16Clamp";
748 case NVPTXISD::Suld2DArrayV2I32Clamp:return "NVPTXISD::Suld2DArrayV2I32Clamp";
749 case NVPTXISD::Suld2DArrayV2I64Clamp:return "NVPTXISD::Suld2DArrayV2I64Clamp";
750 case NVPTXISD::Suld2DArrayV4I8Clamp: return "NVPTXISD::Suld2DArrayV4I8Clamp";
751 case NVPTXISD::Suld2DArrayV4I16Clamp:return "NVPTXISD::Suld2DArrayV4I16Clamp";
752 case NVPTXISD::Suld2DArrayV4I32Clamp:return "NVPTXISD::Suld2DArrayV4I32Clamp";
753
754 case NVPTXISD::Suld3DI8Clamp: return "NVPTXISD::Suld3DI8Clamp";
755 case NVPTXISD::Suld3DI16Clamp: return "NVPTXISD::Suld3DI16Clamp";
756 case NVPTXISD::Suld3DI32Clamp: return "NVPTXISD::Suld3DI32Clamp";
757 case NVPTXISD::Suld3DI64Clamp: return "NVPTXISD::Suld3DI64Clamp";
758 case NVPTXISD::Suld3DV2I8Clamp: return "NVPTXISD::Suld3DV2I8Clamp";
759 case NVPTXISD::Suld3DV2I16Clamp: return "NVPTXISD::Suld3DV2I16Clamp";
760 case NVPTXISD::Suld3DV2I32Clamp: return "NVPTXISD::Suld3DV2I32Clamp";
761 case NVPTXISD::Suld3DV2I64Clamp: return "NVPTXISD::Suld3DV2I64Clamp";
762 case NVPTXISD::Suld3DV4I8Clamp: return "NVPTXISD::Suld3DV4I8Clamp";
763 case NVPTXISD::Suld3DV4I16Clamp: return "NVPTXISD::Suld3DV4I16Clamp";
764 case NVPTXISD::Suld3DV4I32Clamp: return "NVPTXISD::Suld3DV4I32Clamp";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000765
766 case NVPTXISD::Suld1DI8Trap: return "NVPTXISD::Suld1DI8Trap";
767 case NVPTXISD::Suld1DI16Trap: return "NVPTXISD::Suld1DI16Trap";
768 case NVPTXISD::Suld1DI32Trap: return "NVPTXISD::Suld1DI32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000769 case NVPTXISD::Suld1DI64Trap: return "NVPTXISD::Suld1DI64Trap";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000770 case NVPTXISD::Suld1DV2I8Trap: return "NVPTXISD::Suld1DV2I8Trap";
771 case NVPTXISD::Suld1DV2I16Trap: return "NVPTXISD::Suld1DV2I16Trap";
772 case NVPTXISD::Suld1DV2I32Trap: return "NVPTXISD::Suld1DV2I32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000773 case NVPTXISD::Suld1DV2I64Trap: return "NVPTXISD::Suld1DV2I64Trap";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000774 case NVPTXISD::Suld1DV4I8Trap: return "NVPTXISD::Suld1DV4I8Trap";
775 case NVPTXISD::Suld1DV4I16Trap: return "NVPTXISD::Suld1DV4I16Trap";
776 case NVPTXISD::Suld1DV4I32Trap: return "NVPTXISD::Suld1DV4I32Trap";
777
778 case NVPTXISD::Suld1DArrayI8Trap: return "NVPTXISD::Suld1DArrayI8Trap";
779 case NVPTXISD::Suld1DArrayI16Trap: return "NVPTXISD::Suld1DArrayI16Trap";
780 case NVPTXISD::Suld1DArrayI32Trap: return "NVPTXISD::Suld1DArrayI32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000781 case NVPTXISD::Suld1DArrayI64Trap: return "NVPTXISD::Suld1DArrayI64Trap";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000782 case NVPTXISD::Suld1DArrayV2I8Trap: return "NVPTXISD::Suld1DArrayV2I8Trap";
783 case NVPTXISD::Suld1DArrayV2I16Trap: return "NVPTXISD::Suld1DArrayV2I16Trap";
784 case NVPTXISD::Suld1DArrayV2I32Trap: return "NVPTXISD::Suld1DArrayV2I32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000785 case NVPTXISD::Suld1DArrayV2I64Trap: return "NVPTXISD::Suld1DArrayV2I64Trap";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000786 case NVPTXISD::Suld1DArrayV4I8Trap: return "NVPTXISD::Suld1DArrayV4I8Trap";
787 case NVPTXISD::Suld1DArrayV4I16Trap: return "NVPTXISD::Suld1DArrayV4I16Trap";
788 case NVPTXISD::Suld1DArrayV4I32Trap: return "NVPTXISD::Suld1DArrayV4I32Trap";
789
790 case NVPTXISD::Suld2DI8Trap: return "NVPTXISD::Suld2DI8Trap";
791 case NVPTXISD::Suld2DI16Trap: return "NVPTXISD::Suld2DI16Trap";
792 case NVPTXISD::Suld2DI32Trap: return "NVPTXISD::Suld2DI32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000793 case NVPTXISD::Suld2DI64Trap: return "NVPTXISD::Suld2DI64Trap";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000794 case NVPTXISD::Suld2DV2I8Trap: return "NVPTXISD::Suld2DV2I8Trap";
795 case NVPTXISD::Suld2DV2I16Trap: return "NVPTXISD::Suld2DV2I16Trap";
796 case NVPTXISD::Suld2DV2I32Trap: return "NVPTXISD::Suld2DV2I32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000797 case NVPTXISD::Suld2DV2I64Trap: return "NVPTXISD::Suld2DV2I64Trap";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000798 case NVPTXISD::Suld2DV4I8Trap: return "NVPTXISD::Suld2DV4I8Trap";
799 case NVPTXISD::Suld2DV4I16Trap: return "NVPTXISD::Suld2DV4I16Trap";
800 case NVPTXISD::Suld2DV4I32Trap: return "NVPTXISD::Suld2DV4I32Trap";
801
802 case NVPTXISD::Suld2DArrayI8Trap: return "NVPTXISD::Suld2DArrayI8Trap";
803 case NVPTXISD::Suld2DArrayI16Trap: return "NVPTXISD::Suld2DArrayI16Trap";
804 case NVPTXISD::Suld2DArrayI32Trap: return "NVPTXISD::Suld2DArrayI32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000805 case NVPTXISD::Suld2DArrayI64Trap: return "NVPTXISD::Suld2DArrayI64Trap";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000806 case NVPTXISD::Suld2DArrayV2I8Trap: return "NVPTXISD::Suld2DArrayV2I8Trap";
807 case NVPTXISD::Suld2DArrayV2I16Trap: return "NVPTXISD::Suld2DArrayV2I16Trap";
808 case NVPTXISD::Suld2DArrayV2I32Trap: return "NVPTXISD::Suld2DArrayV2I32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000809 case NVPTXISD::Suld2DArrayV2I64Trap: return "NVPTXISD::Suld2DArrayV2I64Trap";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000810 case NVPTXISD::Suld2DArrayV4I8Trap: return "NVPTXISD::Suld2DArrayV4I8Trap";
811 case NVPTXISD::Suld2DArrayV4I16Trap: return "NVPTXISD::Suld2DArrayV4I16Trap";
812 case NVPTXISD::Suld2DArrayV4I32Trap: return "NVPTXISD::Suld2DArrayV4I32Trap";
813
814 case NVPTXISD::Suld3DI8Trap: return "NVPTXISD::Suld3DI8Trap";
815 case NVPTXISD::Suld3DI16Trap: return "NVPTXISD::Suld3DI16Trap";
816 case NVPTXISD::Suld3DI32Trap: return "NVPTXISD::Suld3DI32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000817 case NVPTXISD::Suld3DI64Trap: return "NVPTXISD::Suld3DI64Trap";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000818 case NVPTXISD::Suld3DV2I8Trap: return "NVPTXISD::Suld3DV2I8Trap";
819 case NVPTXISD::Suld3DV2I16Trap: return "NVPTXISD::Suld3DV2I16Trap";
820 case NVPTXISD::Suld3DV2I32Trap: return "NVPTXISD::Suld3DV2I32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000821 case NVPTXISD::Suld3DV2I64Trap: return "NVPTXISD::Suld3DV2I64Trap";
Justin Holewinski30d56a72014-04-09 15:39:15 +0000822 case NVPTXISD::Suld3DV4I8Trap: return "NVPTXISD::Suld3DV4I8Trap";
823 case NVPTXISD::Suld3DV4I16Trap: return "NVPTXISD::Suld3DV4I16Trap";
824 case NVPTXISD::Suld3DV4I32Trap: return "NVPTXISD::Suld3DV4I32Trap";
Justin Holewinski9a2350e2014-07-17 11:59:04 +0000825
826 case NVPTXISD::Suld1DI8Zero: return "NVPTXISD::Suld1DI8Zero";
827 case NVPTXISD::Suld1DI16Zero: return "NVPTXISD::Suld1DI16Zero";
828 case NVPTXISD::Suld1DI32Zero: return "NVPTXISD::Suld1DI32Zero";
829 case NVPTXISD::Suld1DI64Zero: return "NVPTXISD::Suld1DI64Zero";
830 case NVPTXISD::Suld1DV2I8Zero: return "NVPTXISD::Suld1DV2I8Zero";
831 case NVPTXISD::Suld1DV2I16Zero: return "NVPTXISD::Suld1DV2I16Zero";
832 case NVPTXISD::Suld1DV2I32Zero: return "NVPTXISD::Suld1DV2I32Zero";
833 case NVPTXISD::Suld1DV2I64Zero: return "NVPTXISD::Suld1DV2I64Zero";
834 case NVPTXISD::Suld1DV4I8Zero: return "NVPTXISD::Suld1DV4I8Zero";
835 case NVPTXISD::Suld1DV4I16Zero: return "NVPTXISD::Suld1DV4I16Zero";
836 case NVPTXISD::Suld1DV4I32Zero: return "NVPTXISD::Suld1DV4I32Zero";
837
838 case NVPTXISD::Suld1DArrayI8Zero: return "NVPTXISD::Suld1DArrayI8Zero";
839 case NVPTXISD::Suld1DArrayI16Zero: return "NVPTXISD::Suld1DArrayI16Zero";
840 case NVPTXISD::Suld1DArrayI32Zero: return "NVPTXISD::Suld1DArrayI32Zero";
841 case NVPTXISD::Suld1DArrayI64Zero: return "NVPTXISD::Suld1DArrayI64Zero";
842 case NVPTXISD::Suld1DArrayV2I8Zero: return "NVPTXISD::Suld1DArrayV2I8Zero";
843 case NVPTXISD::Suld1DArrayV2I16Zero: return "NVPTXISD::Suld1DArrayV2I16Zero";
844 case NVPTXISD::Suld1DArrayV2I32Zero: return "NVPTXISD::Suld1DArrayV2I32Zero";
845 case NVPTXISD::Suld1DArrayV2I64Zero: return "NVPTXISD::Suld1DArrayV2I64Zero";
846 case NVPTXISD::Suld1DArrayV4I8Zero: return "NVPTXISD::Suld1DArrayV4I8Zero";
847 case NVPTXISD::Suld1DArrayV4I16Zero: return "NVPTXISD::Suld1DArrayV4I16Zero";
848 case NVPTXISD::Suld1DArrayV4I32Zero: return "NVPTXISD::Suld1DArrayV4I32Zero";
849
850 case NVPTXISD::Suld2DI8Zero: return "NVPTXISD::Suld2DI8Zero";
851 case NVPTXISD::Suld2DI16Zero: return "NVPTXISD::Suld2DI16Zero";
852 case NVPTXISD::Suld2DI32Zero: return "NVPTXISD::Suld2DI32Zero";
853 case NVPTXISD::Suld2DI64Zero: return "NVPTXISD::Suld2DI64Zero";
854 case NVPTXISD::Suld2DV2I8Zero: return "NVPTXISD::Suld2DV2I8Zero";
855 case NVPTXISD::Suld2DV2I16Zero: return "NVPTXISD::Suld2DV2I16Zero";
856 case NVPTXISD::Suld2DV2I32Zero: return "NVPTXISD::Suld2DV2I32Zero";
857 case NVPTXISD::Suld2DV2I64Zero: return "NVPTXISD::Suld2DV2I64Zero";
858 case NVPTXISD::Suld2DV4I8Zero: return "NVPTXISD::Suld2DV4I8Zero";
859 case NVPTXISD::Suld2DV4I16Zero: return "NVPTXISD::Suld2DV4I16Zero";
860 case NVPTXISD::Suld2DV4I32Zero: return "NVPTXISD::Suld2DV4I32Zero";
861
862 case NVPTXISD::Suld2DArrayI8Zero: return "NVPTXISD::Suld2DArrayI8Zero";
863 case NVPTXISD::Suld2DArrayI16Zero: return "NVPTXISD::Suld2DArrayI16Zero";
864 case NVPTXISD::Suld2DArrayI32Zero: return "NVPTXISD::Suld2DArrayI32Zero";
865 case NVPTXISD::Suld2DArrayI64Zero: return "NVPTXISD::Suld2DArrayI64Zero";
866 case NVPTXISD::Suld2DArrayV2I8Zero: return "NVPTXISD::Suld2DArrayV2I8Zero";
867 case NVPTXISD::Suld2DArrayV2I16Zero: return "NVPTXISD::Suld2DArrayV2I16Zero";
868 case NVPTXISD::Suld2DArrayV2I32Zero: return "NVPTXISD::Suld2DArrayV2I32Zero";
869 case NVPTXISD::Suld2DArrayV2I64Zero: return "NVPTXISD::Suld2DArrayV2I64Zero";
870 case NVPTXISD::Suld2DArrayV4I8Zero: return "NVPTXISD::Suld2DArrayV4I8Zero";
871 case NVPTXISD::Suld2DArrayV4I16Zero: return "NVPTXISD::Suld2DArrayV4I16Zero";
872 case NVPTXISD::Suld2DArrayV4I32Zero: return "NVPTXISD::Suld2DArrayV4I32Zero";
873
874 case NVPTXISD::Suld3DI8Zero: return "NVPTXISD::Suld3DI8Zero";
875 case NVPTXISD::Suld3DI16Zero: return "NVPTXISD::Suld3DI16Zero";
876 case NVPTXISD::Suld3DI32Zero: return "NVPTXISD::Suld3DI32Zero";
877 case NVPTXISD::Suld3DI64Zero: return "NVPTXISD::Suld3DI64Zero";
878 case NVPTXISD::Suld3DV2I8Zero: return "NVPTXISD::Suld3DV2I8Zero";
879 case NVPTXISD::Suld3DV2I16Zero: return "NVPTXISD::Suld3DV2I16Zero";
880 case NVPTXISD::Suld3DV2I32Zero: return "NVPTXISD::Suld3DV2I32Zero";
881 case NVPTXISD::Suld3DV2I64Zero: return "NVPTXISD::Suld3DV2I64Zero";
882 case NVPTXISD::Suld3DV4I8Zero: return "NVPTXISD::Suld3DV4I8Zero";
883 case NVPTXISD::Suld3DV4I16Zero: return "NVPTXISD::Suld3DV4I16Zero";
884 case NVPTXISD::Suld3DV4I32Zero: return "NVPTXISD::Suld3DV4I32Zero";
Justin Holewinskiae556d32012-05-04 20:18:50 +0000885 }
Matthias Braund04893f2015-05-07 21:33:59 +0000886 return nullptr;
Justin Holewinskiae556d32012-05-04 20:18:50 +0000887}
888
Chandler Carruth9d010ff2014-07-03 00:23:43 +0000889TargetLoweringBase::LegalizeTypeAction
890NVPTXTargetLowering::getPreferredVectorAction(EVT VT) const {
891 if (VT.getVectorNumElements() != 1 && VT.getScalarType() == MVT::i1)
892 return TypeSplitVector;
893
894 return TargetLoweringBase::getPreferredVectorAction(VT);
Justin Holewinskibc451192012-11-29 14:26:24 +0000895}
Justin Holewinskiae556d32012-05-04 20:18:50 +0000896
897SDValue
898NVPTXTargetLowering::LowerGlobalAddress(SDValue Op, SelectionDAG &DAG) const {
Andrew Trickef9de2a2013-05-25 02:42:55 +0000899 SDLoc dl(Op);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000900 const GlobalValue *GV = cast<GlobalAddressSDNode>(Op)->getGlobal();
Mehdi Amini44ede332015-07-09 02:09:04 +0000901 auto PtrVT = getPointerTy(DAG.getDataLayout());
902 Op = DAG.getTargetGlobalAddress(GV, dl, PtrVT);
903 return DAG.getNode(NVPTXISD::Wrapper, dl, PtrVT, Op);
Justin Holewinskiae556d32012-05-04 20:18:50 +0000904}
905
Mehdi Aminia749f2a2015-07-09 02:09:52 +0000906std::string NVPTXTargetLowering::getPrototype(
907 const DataLayout &DL, Type *retTy, const ArgListTy &Args,
908 const SmallVectorImpl<ISD::OutputArg> &Outs, unsigned retAlignment,
909 const ImmutableCallSite *CS) const {
910 auto PtrVT = getPointerTy(DL);
911
Eric Christopherbef0a372015-01-30 01:50:07 +0000912 bool isABI = (STI.getSmVersion() >= 20);
Justin Holewinskif8f70912013-06-28 17:57:59 +0000913 assert(isABI && "Non-ABI compilation is not supported");
914 if (!isABI)
915 return "";
916
917 std::stringstream O;
918 O << "prototype_" << uniqueCallSite << " : .callprototype ";
919
920 if (retTy->getTypeID() == Type::VoidTyID) {
921 O << "()";
922 } else {
923 O << "(";
Rafael Espindola08013342013-12-07 19:34:20 +0000924 if (retTy->isFloatingPointTy() || retTy->isIntegerTy()) {
Justin Holewinskif8f70912013-06-28 17:57:59 +0000925 unsigned size = 0;
Craig Toppere3dcce92015-08-01 22:20:21 +0000926 if (auto *ITy = dyn_cast<IntegerType>(retTy)) {
Justin Holewinskif8f70912013-06-28 17:57:59 +0000927 size = ITy->getBitWidth();
928 if (size < 32)
929 size = 32;
930 } else {
931 assert(retTy->isFloatingPointTy() &&
932 "Floating point type expected here");
933 size = retTy->getPrimitiveSizeInBits();
934 }
935
936 O << ".param .b" << size << " _";
937 } else if (isa<PointerType>(retTy)) {
Mehdi Amini44ede332015-07-09 02:09:04 +0000938 O << ".param .b" << PtrVT.getSizeInBits() << " _";
Craig Topperd3c02f12015-01-05 10:15:49 +0000939 } else if ((retTy->getTypeID() == Type::StructTyID) ||
940 isa<VectorType>(retTy)) {
Mehdi Aminia749f2a2015-07-09 02:09:52 +0000941 auto &DL = CS->getCalledFunction()->getParent()->getDataLayout();
942 O << ".param .align " << retAlignment << " .b8 _["
943 << DL.getTypeAllocSize(retTy) << "]";
Justin Holewinskif8f70912013-06-28 17:57:59 +0000944 } else {
Craig Topperd3c02f12015-01-05 10:15:49 +0000945 llvm_unreachable("Unknown return type");
Justin Holewinskif8f70912013-06-28 17:57:59 +0000946 }
947 O << ") ";
948 }
949 O << "_ (";
950
951 bool first = true;
Justin Holewinskif8f70912013-06-28 17:57:59 +0000952
953 unsigned OIdx = 0;
954 for (unsigned i = 0, e = Args.size(); i != e; ++i, ++OIdx) {
955 Type *Ty = Args[i].Ty;
956 if (!first) {
957 O << ", ";
958 }
959 first = false;
960
Eli Bendersky3e840192015-03-23 16:26:23 +0000961 if (!Outs[OIdx].Flags.isByVal()) {
Justin Holewinskif8f70912013-06-28 17:57:59 +0000962 if (Ty->isAggregateType() || Ty->isVectorTy()) {
963 unsigned align = 0;
964 const CallInst *CallI = cast<CallInst>(CS->getInstruction());
Justin Holewinskif8f70912013-06-28 17:57:59 +0000965 // +1 because index 0 is reserved for return type alignment
966 if (!llvm::getAlign(*CallI, i + 1, align))
Mehdi Aminia749f2a2015-07-09 02:09:52 +0000967 align = DL.getABITypeAlignment(Ty);
968 unsigned sz = DL.getTypeAllocSize(Ty);
Justin Holewinskif8f70912013-06-28 17:57:59 +0000969 O << ".param .align " << align << " .b8 ";
970 O << "_";
971 O << "[" << sz << "]";
972 // update the index for Outs
973 SmallVector<EVT, 16> vtparts;
Mehdi Aminia749f2a2015-07-09 02:09:52 +0000974 ComputeValueVTs(*this, DL, Ty, vtparts);
Justin Holewinskif8f70912013-06-28 17:57:59 +0000975 if (unsigned len = vtparts.size())
976 OIdx += len - 1;
977 continue;
978 }
Justin Holewinskidff28d22013-07-01 12:59:01 +0000979 // i8 types in IR will be i16 types in SDAG
Mehdi Aminia749f2a2015-07-09 02:09:52 +0000980 assert((getValueType(DL, Ty) == Outs[OIdx].VT ||
981 (getValueType(DL, Ty) == MVT::i8 && Outs[OIdx].VT == MVT::i16)) &&
982 "type mismatch between callee prototype and arguments");
Justin Holewinskif8f70912013-06-28 17:57:59 +0000983 // scalar type
984 unsigned sz = 0;
985 if (isa<IntegerType>(Ty)) {
986 sz = cast<IntegerType>(Ty)->getBitWidth();
987 if (sz < 32)
988 sz = 32;
989 } else if (isa<PointerType>(Ty))
Mehdi Amini44ede332015-07-09 02:09:04 +0000990 sz = PtrVT.getSizeInBits();
Justin Holewinskif8f70912013-06-28 17:57:59 +0000991 else
992 sz = Ty->getPrimitiveSizeInBits();
993 O << ".param .b" << sz << " ";
994 O << "_";
995 continue;
996 }
Craig Toppere3dcce92015-08-01 22:20:21 +0000997 auto *PTy = dyn_cast<PointerType>(Ty);
Justin Holewinskif8f70912013-06-28 17:57:59 +0000998 assert(PTy && "Param with byval attribute should be a pointer type");
999 Type *ETy = PTy->getElementType();
1000
1001 unsigned align = Outs[OIdx].Flags.getByValAlign();
Mehdi Aminia749f2a2015-07-09 02:09:52 +00001002 unsigned sz = DL.getTypeAllocSize(ETy);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001003 O << ".param .align " << align << " .b8 ";
1004 O << "_";
1005 O << "[" << sz << "]";
1006 }
1007 O << ");";
1008 return O.str();
1009}
1010
1011unsigned
1012NVPTXTargetLowering::getArgumentAlignment(SDValue Callee,
1013 const ImmutableCallSite *CS,
1014 Type *Ty,
1015 unsigned Idx) const {
Justin Holewinski124e93d2013-11-11 19:28:19 +00001016 unsigned Align = 0;
1017 const Value *DirectCallee = CS->getCalledFunction();
Justin Holewinskif8f70912013-06-28 17:57:59 +00001018
Justin Holewinski124e93d2013-11-11 19:28:19 +00001019 if (!DirectCallee) {
1020 // We don't have a direct function symbol, but that may be because of
1021 // constant cast instructions in the call.
1022 const Instruction *CalleeI = CS->getInstruction();
1023 assert(CalleeI && "Call target is not a function or derived value?");
1024
1025 // With bitcast'd call targets, the instruction will be the call
1026 if (isa<CallInst>(CalleeI)) {
1027 // Check if we have call alignment metadata
1028 if (llvm::getAlign(*cast<CallInst>(CalleeI), Idx, Align))
1029 return Align;
1030
1031 const Value *CalleeV = cast<CallInst>(CalleeI)->getCalledValue();
1032 // Ignore any bitcast instructions
1033 while(isa<ConstantExpr>(CalleeV)) {
1034 const ConstantExpr *CE = cast<ConstantExpr>(CalleeV);
1035 if (!CE->isCast())
1036 break;
1037 // Look through the bitcast
1038 CalleeV = cast<ConstantExpr>(CalleeV)->getOperand(0);
1039 }
1040
1041 // We have now looked past all of the bitcasts. Do we finally have a
1042 // Function?
1043 if (isa<Function>(CalleeV))
1044 DirectCallee = CalleeV;
1045 }
Justin Holewinskif8f70912013-06-28 17:57:59 +00001046 }
1047
Justin Holewinski124e93d2013-11-11 19:28:19 +00001048 // Check for function alignment information if we found that the
1049 // ultimate target is a Function
1050 if (DirectCallee)
1051 if (llvm::getAlign(*cast<Function>(DirectCallee), Idx, Align))
1052 return Align;
1053
1054 // Call is indirect or alignment information is not available, fall back to
1055 // the ABI type alignment
Mehdi Aminia749f2a2015-07-09 02:09:52 +00001056 auto &DL = CS->getCaller()->getParent()->getDataLayout();
1057 return DL.getABITypeAlignment(Ty);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001058}
1059
Justin Holewinski0497ab12013-03-30 14:29:21 +00001060SDValue NVPTXTargetLowering::LowerCall(TargetLowering::CallLoweringInfo &CLI,
1061 SmallVectorImpl<SDValue> &InVals) const {
1062 SelectionDAG &DAG = CLI.DAG;
Andrew Trickef9de2a2013-05-25 02:42:55 +00001063 SDLoc dl = CLI.DL;
Craig Topperb94011f2013-07-14 04:42:23 +00001064 SmallVectorImpl<ISD::OutputArg> &Outs = CLI.Outs;
1065 SmallVectorImpl<SDValue> &OutVals = CLI.OutVals;
1066 SmallVectorImpl<ISD::InputArg> &Ins = CLI.Ins;
Justin Holewinski0497ab12013-03-30 14:29:21 +00001067 SDValue Chain = CLI.Chain;
1068 SDValue Callee = CLI.Callee;
1069 bool &isTailCall = CLI.IsTailCall;
Saleem Abdulrasool9f664c12014-05-17 21:50:01 +00001070 ArgListTy &Args = CLI.getArgs();
Justin Holewinski0497ab12013-03-30 14:29:21 +00001071 Type *retTy = CLI.RetTy;
1072 ImmutableCallSite *CS = CLI.CS;
Justin Holewinskiaa583972012-05-25 16:35:28 +00001073
Eric Christopherbef0a372015-01-30 01:50:07 +00001074 bool isABI = (STI.getSmVersion() >= 20);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001075 assert(isABI && "Non-ABI compilation is not supported");
1076 if (!isABI)
1077 return Chain;
Justin Holewinskif8f70912013-06-28 17:57:59 +00001078 MachineFunction &MF = DAG.getMachineFunction();
1079 const Function *F = MF.getFunction();
Mehdi Amini56228da2015-07-09 01:57:34 +00001080 auto &DL = MF.getDataLayout();
Justin Holewinskiae556d32012-05-04 20:18:50 +00001081
1082 SDValue tempChain = Chain;
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001083 Chain = DAG.getCALLSEQ_START(Chain,
1084 DAG.getIntPtrConstant(uniqueCallSite, dl, true),
1085 dl);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001086 SDValue InFlag = Chain.getValue(1);
1087
Justin Holewinskiae556d32012-05-04 20:18:50 +00001088 unsigned paramCount = 0;
Justin Holewinskif8f70912013-06-28 17:57:59 +00001089 // Args.size() and Outs.size() need not match.
1090 // Outs.size() will be larger
1091 // * if there is an aggregate argument with multiple fields (each field
1092 // showing up separately in Outs)
1093 // * if there is a vector argument with more than typical vector-length
1094 // elements (generally if more than 4) where each vector element is
1095 // individually present in Outs.
1096 // So a different index should be used for indexing into Outs/OutVals.
1097 // See similar issue in LowerFormalArguments.
1098 unsigned OIdx = 0;
Justin Holewinskiae556d32012-05-04 20:18:50 +00001099 // Declare the .params or .reg need to pass values
1100 // to the function
Justin Holewinskif8f70912013-06-28 17:57:59 +00001101 for (unsigned i = 0, e = Args.size(); i != e; ++i, ++OIdx) {
1102 EVT VT = Outs[OIdx].VT;
1103 Type *Ty = Args[i].Ty;
Justin Holewinskiae556d32012-05-04 20:18:50 +00001104
Eli Bendersky3e840192015-03-23 16:26:23 +00001105 if (!Outs[OIdx].Flags.isByVal()) {
Justin Holewinskif8f70912013-06-28 17:57:59 +00001106 if (Ty->isAggregateType()) {
1107 // aggregate
1108 SmallVector<EVT, 16> vtparts;
Justin Holewinski6e40f632014-06-27 18:35:44 +00001109 SmallVector<uint64_t, 16> Offsets;
Mehdi Aminia749f2a2015-07-09 02:09:52 +00001110 ComputePTXValueVTs(*this, DAG.getDataLayout(), Ty, vtparts, &Offsets,
1111 0);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001112
1113 unsigned align = getArgumentAlignment(Callee, CS, Ty, paramCount + 1);
1114 // declare .param .align <align> .b8 .param<n>[<size>];
Mehdi Amini56228da2015-07-09 01:57:34 +00001115 unsigned sz = DL.getTypeAllocSize(Ty);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001116 SDVTList DeclareParamVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001117 SDValue DeclareParamOps[] = { Chain, DAG.getConstant(align, dl,
1118 MVT::i32),
1119 DAG.getConstant(paramCount, dl, MVT::i32),
1120 DAG.getConstant(sz, dl, MVT::i32),
1121 InFlag };
Justin Holewinskif8f70912013-06-28 17:57:59 +00001122 Chain = DAG.getNode(NVPTXISD::DeclareParam, dl, DeclareParamVTs,
Craig Topper48d114b2014-04-26 18:35:24 +00001123 DeclareParamOps);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001124 InFlag = Chain.getValue(1);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001125 for (unsigned j = 0, je = vtparts.size(); j != je; ++j) {
Justin Holewinskif8f70912013-06-28 17:57:59 +00001126 EVT elemtype = vtparts[j];
Justin Holewinski9982f062014-06-27 19:36:25 +00001127 unsigned ArgAlign = GreatestCommonDivisor64(align, Offsets[j]);
Justin Holewinski6e40f632014-06-27 18:35:44 +00001128 if (elemtype.isInteger() && (sz < 8))
1129 sz = 8;
1130 SDValue StVal = OutVals[OIdx];
1131 if (elemtype.getSizeInBits() < 16) {
1132 StVal = DAG.getNode(ISD::ANY_EXTEND, dl, MVT::i16, StVal);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001133 }
Justin Holewinski6e40f632014-06-27 18:35:44 +00001134 SDVTList CopyParamVTs = DAG.getVTList(MVT::Other, MVT::Glue);
1135 SDValue CopyParamOps[] = { Chain,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001136 DAG.getConstant(paramCount, dl, MVT::i32),
1137 DAG.getConstant(Offsets[j], dl, MVT::i32),
Justin Holewinski6e40f632014-06-27 18:35:44 +00001138 StVal, InFlag };
1139 Chain = DAG.getMemIntrinsicNode(NVPTXISD::StoreParam, dl,
1140 CopyParamVTs, CopyParamOps,
1141 elemtype, MachinePointerInfo(),
1142 ArgAlign);
1143 InFlag = Chain.getValue(1);
1144 ++OIdx;
Justin Holewinskif8f70912013-06-28 17:57:59 +00001145 }
1146 if (vtparts.size() > 0)
1147 --OIdx;
1148 ++paramCount;
1149 continue;
1150 }
1151 if (Ty->isVectorTy()) {
Mehdi Amini44ede332015-07-09 02:09:04 +00001152 EVT ObjectVT = getValueType(DL, Ty);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001153 unsigned align = getArgumentAlignment(Callee, CS, Ty, paramCount + 1);
1154 // declare .param .align <align> .b8 .param<n>[<size>];
Mehdi Amini56228da2015-07-09 01:57:34 +00001155 unsigned sz = DL.getTypeAllocSize(Ty);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001156 SDVTList DeclareParamVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001157 SDValue DeclareParamOps[] = { Chain,
1158 DAG.getConstant(align, dl, MVT::i32),
1159 DAG.getConstant(paramCount, dl, MVT::i32),
1160 DAG.getConstant(sz, dl, MVT::i32),
1161 InFlag };
Justin Holewinskif8f70912013-06-28 17:57:59 +00001162 Chain = DAG.getNode(NVPTXISD::DeclareParam, dl, DeclareParamVTs,
Craig Topper48d114b2014-04-26 18:35:24 +00001163 DeclareParamOps);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001164 InFlag = Chain.getValue(1);
1165 unsigned NumElts = ObjectVT.getVectorNumElements();
1166 EVT EltVT = ObjectVT.getVectorElementType();
1167 EVT MemVT = EltVT;
1168 bool NeedExtend = false;
1169 if (EltVT.getSizeInBits() < 16) {
1170 NeedExtend = true;
1171 EltVT = MVT::i16;
1172 }
1173
1174 // V1 store
1175 if (NumElts == 1) {
1176 SDValue Elt = OutVals[OIdx++];
1177 if (NeedExtend)
1178 Elt = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, Elt);
1179
1180 SDVTList CopyParamVTs = DAG.getVTList(MVT::Other, MVT::Glue);
1181 SDValue CopyParamOps[] = { Chain,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001182 DAG.getConstant(paramCount, dl, MVT::i32),
1183 DAG.getConstant(0, dl, MVT::i32), Elt,
Justin Holewinskif8f70912013-06-28 17:57:59 +00001184 InFlag };
1185 Chain = DAG.getMemIntrinsicNode(NVPTXISD::StoreParam, dl,
Craig Topper206fcd42014-04-26 19:29:41 +00001186 CopyParamVTs, CopyParamOps,
Justin Holewinskif8f70912013-06-28 17:57:59 +00001187 MemVT, MachinePointerInfo());
1188 InFlag = Chain.getValue(1);
1189 } else if (NumElts == 2) {
1190 SDValue Elt0 = OutVals[OIdx++];
1191 SDValue Elt1 = OutVals[OIdx++];
1192 if (NeedExtend) {
1193 Elt0 = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, Elt0);
1194 Elt1 = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, Elt1);
1195 }
1196
1197 SDVTList CopyParamVTs = DAG.getVTList(MVT::Other, MVT::Glue);
1198 SDValue CopyParamOps[] = { Chain,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001199 DAG.getConstant(paramCount, dl, MVT::i32),
1200 DAG.getConstant(0, dl, MVT::i32), Elt0,
1201 Elt1, InFlag };
Justin Holewinskif8f70912013-06-28 17:57:59 +00001202 Chain = DAG.getMemIntrinsicNode(NVPTXISD::StoreParamV2, dl,
Craig Topper206fcd42014-04-26 19:29:41 +00001203 CopyParamVTs, CopyParamOps,
Justin Holewinskif8f70912013-06-28 17:57:59 +00001204 MemVT, MachinePointerInfo());
1205 InFlag = Chain.getValue(1);
1206 } else {
1207 unsigned curOffset = 0;
1208 // V4 stores
1209 // We have at least 4 elements (<3 x Ty> expands to 4 elements) and
1210 // the
1211 // vector will be expanded to a power of 2 elements, so we know we can
1212 // always round up to the next multiple of 4 when creating the vector
1213 // stores.
1214 // e.g. 4 elem => 1 st.v4
1215 // 6 elem => 2 st.v4
1216 // 8 elem => 2 st.v4
1217 // 11 elem => 3 st.v4
1218 unsigned VecSize = 4;
1219 if (EltVT.getSizeInBits() == 64)
1220 VecSize = 2;
1221
1222 // This is potentially only part of a vector, so assume all elements
1223 // are packed together.
1224 unsigned PerStoreOffset = MemVT.getStoreSizeInBits() / 8 * VecSize;
1225
1226 for (unsigned i = 0; i < NumElts; i += VecSize) {
1227 // Get values
1228 SDValue StoreVal;
1229 SmallVector<SDValue, 8> Ops;
1230 Ops.push_back(Chain);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001231 Ops.push_back(DAG.getConstant(paramCount, dl, MVT::i32));
1232 Ops.push_back(DAG.getConstant(curOffset, dl, MVT::i32));
Justin Holewinskif8f70912013-06-28 17:57:59 +00001233
1234 unsigned Opc = NVPTXISD::StoreParamV2;
1235
1236 StoreVal = OutVals[OIdx++];
1237 if (NeedExtend)
1238 StoreVal = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, StoreVal);
1239 Ops.push_back(StoreVal);
1240
1241 if (i + 1 < NumElts) {
1242 StoreVal = OutVals[OIdx++];
1243 if (NeedExtend)
1244 StoreVal =
1245 DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, StoreVal);
1246 } else {
1247 StoreVal = DAG.getUNDEF(EltVT);
1248 }
1249 Ops.push_back(StoreVal);
1250
1251 if (VecSize == 4) {
1252 Opc = NVPTXISD::StoreParamV4;
1253 if (i + 2 < NumElts) {
1254 StoreVal = OutVals[OIdx++];
1255 if (NeedExtend)
1256 StoreVal =
1257 DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, StoreVal);
1258 } else {
1259 StoreVal = DAG.getUNDEF(EltVT);
1260 }
1261 Ops.push_back(StoreVal);
1262
1263 if (i + 3 < NumElts) {
1264 StoreVal = OutVals[OIdx++];
1265 if (NeedExtend)
1266 StoreVal =
1267 DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, StoreVal);
1268 } else {
1269 StoreVal = DAG.getUNDEF(EltVT);
1270 }
1271 Ops.push_back(StoreVal);
1272 }
1273
Justin Holewinskidff28d22013-07-01 12:59:01 +00001274 Ops.push_back(InFlag);
1275
Justin Holewinskif8f70912013-06-28 17:57:59 +00001276 SDVTList CopyParamVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Craig Topper206fcd42014-04-26 19:29:41 +00001277 Chain = DAG.getMemIntrinsicNode(Opc, dl, CopyParamVTs, Ops,
1278 MemVT, MachinePointerInfo());
Justin Holewinskif8f70912013-06-28 17:57:59 +00001279 InFlag = Chain.getValue(1);
1280 curOffset += PerStoreOffset;
1281 }
1282 }
1283 ++paramCount;
1284 --OIdx;
1285 continue;
1286 }
Justin Holewinskiae556d32012-05-04 20:18:50 +00001287 // Plain scalar
1288 // for ABI, declare .param .b<size> .param<n>;
Justin Holewinskiae556d32012-05-04 20:18:50 +00001289 unsigned sz = VT.getSizeInBits();
Justin Holewinskif8f70912013-06-28 17:57:59 +00001290 bool needExtend = false;
1291 if (VT.isInteger()) {
1292 if (sz < 16)
1293 needExtend = true;
1294 if (sz < 32)
1295 sz = 32;
1296 }
Justin Holewinskiae556d32012-05-04 20:18:50 +00001297 SDVTList DeclareParamVTs = DAG.getVTList(MVT::Other, MVT::Glue);
1298 SDValue DeclareParamOps[] = { Chain,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001299 DAG.getConstant(paramCount, dl, MVT::i32),
1300 DAG.getConstant(sz, dl, MVT::i32),
1301 DAG.getConstant(0, dl, MVT::i32), InFlag };
Justin Holewinskiae556d32012-05-04 20:18:50 +00001302 Chain = DAG.getNode(NVPTXISD::DeclareScalarParam, dl, DeclareParamVTs,
Craig Topper48d114b2014-04-26 18:35:24 +00001303 DeclareParamOps);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001304 InFlag = Chain.getValue(1);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001305 SDValue OutV = OutVals[OIdx];
1306 if (needExtend) {
1307 // zext/sext i1 to i16
1308 unsigned opc = ISD::ZERO_EXTEND;
1309 if (Outs[OIdx].Flags.isSExt())
1310 opc = ISD::SIGN_EXTEND;
1311 OutV = DAG.getNode(opc, dl, MVT::i16, OutV);
1312 }
Justin Holewinskiae556d32012-05-04 20:18:50 +00001313 SDVTList CopyParamVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001314 SDValue CopyParamOps[] = { Chain,
1315 DAG.getConstant(paramCount, dl, MVT::i32),
1316 DAG.getConstant(0, dl, MVT::i32), OutV,
1317 InFlag };
Justin Holewinskiae556d32012-05-04 20:18:50 +00001318
1319 unsigned opcode = NVPTXISD::StoreParam;
Justin Holewinskif8f70912013-06-28 17:57:59 +00001320 if (Outs[OIdx].Flags.isZExt())
1321 opcode = NVPTXISD::StoreParamU32;
1322 else if (Outs[OIdx].Flags.isSExt())
1323 opcode = NVPTXISD::StoreParamS32;
Craig Topper206fcd42014-04-26 19:29:41 +00001324 Chain = DAG.getMemIntrinsicNode(opcode, dl, CopyParamVTs, CopyParamOps,
Justin Holewinskif8f70912013-06-28 17:57:59 +00001325 VT, MachinePointerInfo());
Justin Holewinskiae556d32012-05-04 20:18:50 +00001326
1327 InFlag = Chain.getValue(1);
1328 ++paramCount;
1329 continue;
1330 }
1331 // struct or vector
1332 SmallVector<EVT, 16> vtparts;
Justin Holewinski6e40f632014-06-27 18:35:44 +00001333 SmallVector<uint64_t, 16> Offsets;
Craig Toppere3dcce92015-08-01 22:20:21 +00001334 auto *PTy = dyn_cast<PointerType>(Args[i].Ty);
Justin Holewinski0497ab12013-03-30 14:29:21 +00001335 assert(PTy && "Type of a byval parameter should be pointer");
Mehdi Aminia749f2a2015-07-09 02:09:52 +00001336 ComputePTXValueVTs(*this, DAG.getDataLayout(), PTy->getElementType(),
1337 vtparts, &Offsets, 0);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001338
Justin Holewinskif8f70912013-06-28 17:57:59 +00001339 // declare .param .align <align> .b8 .param<n>[<size>];
1340 unsigned sz = Outs[OIdx].Flags.getByValSize();
1341 SDVTList DeclareParamVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Justin Holewinski6e40f632014-06-27 18:35:44 +00001342 unsigned ArgAlign = Outs[OIdx].Flags.getByValAlign();
Justin Holewinskif8f70912013-06-28 17:57:59 +00001343 // The ByValAlign in the Outs[OIdx].Flags is alway set at this point,
1344 // so we don't need to worry about natural alignment or not.
1345 // See TargetLowering::LowerCallTo().
1346 SDValue DeclareParamOps[] = {
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001347 Chain, DAG.getConstant(Outs[OIdx].Flags.getByValAlign(), dl, MVT::i32),
1348 DAG.getConstant(paramCount, dl, MVT::i32),
1349 DAG.getConstant(sz, dl, MVT::i32), InFlag
Justin Holewinskif8f70912013-06-28 17:57:59 +00001350 };
1351 Chain = DAG.getNode(NVPTXISD::DeclareParam, dl, DeclareParamVTs,
Craig Topper48d114b2014-04-26 18:35:24 +00001352 DeclareParamOps);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001353 InFlag = Chain.getValue(1);
Justin Holewinski0497ab12013-03-30 14:29:21 +00001354 for (unsigned j = 0, je = vtparts.size(); j != je; ++j) {
Justin Holewinskiae556d32012-05-04 20:18:50 +00001355 EVT elemtype = vtparts[j];
Justin Holewinski6e40f632014-06-27 18:35:44 +00001356 int curOffset = Offsets[j];
Justin Holewinski9982f062014-06-27 19:36:25 +00001357 unsigned PartAlign = GreatestCommonDivisor64(ArgAlign, curOffset);
Mehdi Amini44ede332015-07-09 02:09:04 +00001358 auto PtrVT = getPointerTy(DAG.getDataLayout());
1359 SDValue srcAddr = DAG.getNode(ISD::ADD, dl, PtrVT, OutVals[OIdx],
1360 DAG.getConstant(curOffset, dl, PtrVT));
Justin Holewinski6e40f632014-06-27 18:35:44 +00001361 SDValue theVal = DAG.getLoad(elemtype, dl, tempChain, srcAddr,
1362 MachinePointerInfo(), false, false, false,
1363 PartAlign);
1364 if (elemtype.getSizeInBits() < 16) {
1365 theVal = DAG.getNode(ISD::ANY_EXTEND, dl, MVT::i16, theVal);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001366 }
Justin Holewinski6e40f632014-06-27 18:35:44 +00001367 SDVTList CopyParamVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001368 SDValue CopyParamOps[] = { Chain,
1369 DAG.getConstant(paramCount, dl, MVT::i32),
1370 DAG.getConstant(curOffset, dl, MVT::i32),
1371 theVal, InFlag };
Justin Holewinski6e40f632014-06-27 18:35:44 +00001372 Chain = DAG.getMemIntrinsicNode(NVPTXISD::StoreParam, dl, CopyParamVTs,
1373 CopyParamOps, elemtype,
1374 MachinePointerInfo());
Justin Holewinskif8f70912013-06-28 17:57:59 +00001375
Justin Holewinski6e40f632014-06-27 18:35:44 +00001376 InFlag = Chain.getValue(1);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001377 }
Justin Holewinskif8f70912013-06-28 17:57:59 +00001378 ++paramCount;
Justin Holewinskiae556d32012-05-04 20:18:50 +00001379 }
1380
1381 GlobalAddressSDNode *Func = dyn_cast<GlobalAddressSDNode>(Callee.getNode());
1382 unsigned retAlignment = 0;
1383
1384 // Handle Result
Justin Holewinskiae556d32012-05-04 20:18:50 +00001385 if (Ins.size() > 0) {
1386 SmallVector<EVT, 16> resvtparts;
Mehdi Amini56228da2015-07-09 01:57:34 +00001387 ComputeValueVTs(*this, DL, retTy, resvtparts);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001388
Justin Holewinskif8f70912013-06-28 17:57:59 +00001389 // Declare
1390 // .param .align 16 .b8 retval0[<size-in-bytes>], or
1391 // .param .b<size-in-bits> retval0
Mehdi Amini56228da2015-07-09 01:57:34 +00001392 unsigned resultsz = DL.getTypeAllocSizeInBits(retTy);
Jingyue Wuea511612014-10-25 03:46:16 +00001393 // Emit ".param .b<size-in-bits> retval0" instead of byte arrays only for
1394 // these three types to match the logic in
1395 // NVPTXAsmPrinter::printReturnValStr and NVPTXTargetLowering::getPrototype.
1396 // Plus, this behavior is consistent with nvcc's.
1397 if (retTy->isFloatingPointTy() || retTy->isIntegerTy() ||
1398 retTy->isPointerTy()) {
Justin Holewinskif8f70912013-06-28 17:57:59 +00001399 // Scalar needs to be at least 32bit wide
1400 if (resultsz < 32)
1401 resultsz = 32;
1402 SDVTList DeclareRetVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001403 SDValue DeclareRetOps[] = { Chain, DAG.getConstant(1, dl, MVT::i32),
1404 DAG.getConstant(resultsz, dl, MVT::i32),
1405 DAG.getConstant(0, dl, MVT::i32), InFlag };
Justin Holewinskif8f70912013-06-28 17:57:59 +00001406 Chain = DAG.getNode(NVPTXISD::DeclareRet, dl, DeclareRetVTs,
Craig Topper48d114b2014-04-26 18:35:24 +00001407 DeclareRetOps);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001408 InFlag = Chain.getValue(1);
1409 } else {
1410 retAlignment = getArgumentAlignment(Callee, CS, retTy, 0);
1411 SDVTList DeclareRetVTs = DAG.getVTList(MVT::Other, MVT::Glue);
1412 SDValue DeclareRetOps[] = { Chain,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001413 DAG.getConstant(retAlignment, dl, MVT::i32),
1414 DAG.getConstant(resultsz / 8, dl, MVT::i32),
1415 DAG.getConstant(0, dl, MVT::i32), InFlag };
Justin Holewinskif8f70912013-06-28 17:57:59 +00001416 Chain = DAG.getNode(NVPTXISD::DeclareRetParam, dl, DeclareRetVTs,
Craig Topper48d114b2014-04-26 18:35:24 +00001417 DeclareRetOps);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001418 InFlag = Chain.getValue(1);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001419 }
1420 }
1421
1422 if (!Func) {
1423 // This is indirect function call case : PTX requires a prototype of the
1424 // form
1425 // proto_0 : .callprototype(.param .b32 _) _ (.param .b32 _);
1426 // to be emitted, and the label has to used as the last arg of call
1427 // instruction.
Justin Holewinski3d49e5c2013-11-15 12:30:04 +00001428 // The prototype is embedded in a string and put as the operand for a
1429 // CallPrototype SDNode which will print out to the value of the string.
1430 SDVTList ProtoVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Mehdi Aminia749f2a2015-07-09 02:09:52 +00001431 std::string Proto =
1432 getPrototype(DAG.getDataLayout(), retTy, Args, Outs, retAlignment, CS);
Justin Holewinski3d49e5c2013-11-15 12:30:04 +00001433 const char *ProtoStr =
1434 nvTM->getManagedStrPool()->getManagedString(Proto.c_str())->c_str();
1435 SDValue ProtoOps[] = {
1436 Chain, DAG.getTargetExternalSymbol(ProtoStr, MVT::i32), InFlag,
Justin Holewinski0497ab12013-03-30 14:29:21 +00001437 };
Craig Topper48d114b2014-04-26 18:35:24 +00001438 Chain = DAG.getNode(NVPTXISD::CallPrototype, dl, ProtoVTs, ProtoOps);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001439 InFlag = Chain.getValue(1);
1440 }
1441 // Op to just print "call"
1442 SDVTList PrintCallVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Justin Holewinski0497ab12013-03-30 14:29:21 +00001443 SDValue PrintCallOps[] = {
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001444 Chain, DAG.getConstant((Ins.size() == 0) ? 0 : 1, dl, MVT::i32), InFlag
Justin Holewinski0497ab12013-03-30 14:29:21 +00001445 };
Justin Lebarb5ca00a2016-03-01 19:24:03 +00001446 // We model convergent calls as separate opcodes.
1447 unsigned Opcode = Func ? NVPTXISD::PrintCallUni : NVPTXISD::PrintCall;
1448 if (CLI.IsConvergent)
1449 Opcode = Opcode == NVPTXISD::PrintCallUni ? NVPTXISD::PrintConvergentCallUni
1450 : NVPTXISD::PrintConvergentCall;
1451 Chain = DAG.getNode(Opcode, dl, PrintCallVTs, PrintCallOps);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001452 InFlag = Chain.getValue(1);
1453
1454 // Ops to print out the function name
1455 SDVTList CallVoidVTs = DAG.getVTList(MVT::Other, MVT::Glue);
1456 SDValue CallVoidOps[] = { Chain, Callee, InFlag };
Craig Topper48d114b2014-04-26 18:35:24 +00001457 Chain = DAG.getNode(NVPTXISD::CallVoid, dl, CallVoidVTs, CallVoidOps);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001458 InFlag = Chain.getValue(1);
1459
1460 // Ops to print out the param list
1461 SDVTList CallArgBeginVTs = DAG.getVTList(MVT::Other, MVT::Glue);
1462 SDValue CallArgBeginOps[] = { Chain, InFlag };
1463 Chain = DAG.getNode(NVPTXISD::CallArgBegin, dl, CallArgBeginVTs,
Craig Topper48d114b2014-04-26 18:35:24 +00001464 CallArgBeginOps);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001465 InFlag = Chain.getValue(1);
1466
Justin Holewinski0497ab12013-03-30 14:29:21 +00001467 for (unsigned i = 0, e = paramCount; i != e; ++i) {
Justin Holewinskiae556d32012-05-04 20:18:50 +00001468 unsigned opcode;
Justin Holewinski0497ab12013-03-30 14:29:21 +00001469 if (i == (e - 1))
Justin Holewinskiae556d32012-05-04 20:18:50 +00001470 opcode = NVPTXISD::LastCallArg;
1471 else
1472 opcode = NVPTXISD::CallArg;
1473 SDVTList CallArgVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001474 SDValue CallArgOps[] = { Chain, DAG.getConstant(1, dl, MVT::i32),
1475 DAG.getConstant(i, dl, MVT::i32), InFlag };
Craig Topper48d114b2014-04-26 18:35:24 +00001476 Chain = DAG.getNode(opcode, dl, CallArgVTs, CallArgOps);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001477 InFlag = Chain.getValue(1);
1478 }
1479 SDVTList CallArgEndVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001480 SDValue CallArgEndOps[] = { Chain,
1481 DAG.getConstant(Func ? 1 : 0, dl, MVT::i32),
Justin Holewinskiae556d32012-05-04 20:18:50 +00001482 InFlag };
Craig Topper48d114b2014-04-26 18:35:24 +00001483 Chain = DAG.getNode(NVPTXISD::CallArgEnd, dl, CallArgEndVTs, CallArgEndOps);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001484 InFlag = Chain.getValue(1);
1485
1486 if (!Func) {
1487 SDVTList PrototypeVTs = DAG.getVTList(MVT::Other, MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001488 SDValue PrototypeOps[] = { Chain,
1489 DAG.getConstant(uniqueCallSite, dl, MVT::i32),
Justin Holewinskiae556d32012-05-04 20:18:50 +00001490 InFlag };
Craig Topper48d114b2014-04-26 18:35:24 +00001491 Chain = DAG.getNode(NVPTXISD::Prototype, dl, PrototypeVTs, PrototypeOps);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001492 InFlag = Chain.getValue(1);
1493 }
1494
1495 // Generate loads from param memory/moves from registers for result
1496 if (Ins.size() > 0) {
Justin Holewinskif8f70912013-06-28 17:57:59 +00001497 if (retTy && retTy->isVectorTy()) {
Mehdi Amini44ede332015-07-09 02:09:04 +00001498 EVT ObjectVT = getValueType(DL, retTy);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001499 unsigned NumElts = ObjectVT.getVectorNumElements();
1500 EVT EltVT = ObjectVT.getVectorElementType();
Eric Christopherbef0a372015-01-30 01:50:07 +00001501 assert(STI.getTargetLowering()->getNumRegisters(F->getContext(),
1502 ObjectVT) == NumElts &&
Justin Holewinskif8f70912013-06-28 17:57:59 +00001503 "Vector was not scalarized");
1504 unsigned sz = EltVT.getSizeInBits();
Eli Bendersky3e840192015-03-23 16:26:23 +00001505 bool needTruncate = sz < 8;
Justin Holewinskif8f70912013-06-28 17:57:59 +00001506
1507 if (NumElts == 1) {
1508 // Just a simple load
Craig Topper59f626d2014-04-26 19:29:47 +00001509 SmallVector<EVT, 4> LoadRetVTs;
Justin Holewinski6e40f632014-06-27 18:35:44 +00001510 if (EltVT == MVT::i1 || EltVT == MVT::i8) {
1511 // If loading i1/i8 result, generate
1512 // load.b8 i16
1513 // if i1
Justin Holewinskif8f70912013-06-28 17:57:59 +00001514 // trunc i16 to i1
1515 LoadRetVTs.push_back(MVT::i16);
1516 } else
1517 LoadRetVTs.push_back(EltVT);
1518 LoadRetVTs.push_back(MVT::Other);
1519 LoadRetVTs.push_back(MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001520 SDValue LoadRetOps[] = {Chain, DAG.getConstant(1, dl, MVT::i32),
1521 DAG.getConstant(0, dl, MVT::i32), InFlag};
Justin Holewinskif8f70912013-06-28 17:57:59 +00001522 SDValue retval = DAG.getMemIntrinsicNode(
1523 NVPTXISD::LoadParam, dl,
Craig Topper206fcd42014-04-26 19:29:41 +00001524 DAG.getVTList(LoadRetVTs), LoadRetOps, EltVT, MachinePointerInfo());
Justin Holewinskiae556d32012-05-04 20:18:50 +00001525 Chain = retval.getValue(1);
1526 InFlag = retval.getValue(2);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001527 SDValue Ret0 = retval;
1528 if (needTruncate)
1529 Ret0 = DAG.getNode(ISD::TRUNCATE, dl, EltVT, Ret0);
1530 InVals.push_back(Ret0);
1531 } else if (NumElts == 2) {
1532 // LoadV2
Craig Topper59f626d2014-04-26 19:29:47 +00001533 SmallVector<EVT, 4> LoadRetVTs;
Justin Holewinski6e40f632014-06-27 18:35:44 +00001534 if (EltVT == MVT::i1 || EltVT == MVT::i8) {
1535 // If loading i1/i8 result, generate
1536 // load.b8 i16
1537 // if i1
Justin Holewinskif8f70912013-06-28 17:57:59 +00001538 // trunc i16 to i1
1539 LoadRetVTs.push_back(MVT::i16);
1540 LoadRetVTs.push_back(MVT::i16);
1541 } else {
1542 LoadRetVTs.push_back(EltVT);
1543 LoadRetVTs.push_back(EltVT);
1544 }
1545 LoadRetVTs.push_back(MVT::Other);
1546 LoadRetVTs.push_back(MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001547 SDValue LoadRetOps[] = {Chain, DAG.getConstant(1, dl, MVT::i32),
1548 DAG.getConstant(0, dl, MVT::i32), InFlag};
Justin Holewinskif8f70912013-06-28 17:57:59 +00001549 SDValue retval = DAG.getMemIntrinsicNode(
1550 NVPTXISD::LoadParamV2, dl,
Craig Topper206fcd42014-04-26 19:29:41 +00001551 DAG.getVTList(LoadRetVTs), LoadRetOps, EltVT, MachinePointerInfo());
Justin Holewinskif8f70912013-06-28 17:57:59 +00001552 Chain = retval.getValue(2);
1553 InFlag = retval.getValue(3);
1554 SDValue Ret0 = retval.getValue(0);
1555 SDValue Ret1 = retval.getValue(1);
1556 if (needTruncate) {
1557 Ret0 = DAG.getNode(ISD::TRUNCATE, dl, MVT::i1, Ret0);
1558 InVals.push_back(Ret0);
1559 Ret1 = DAG.getNode(ISD::TRUNCATE, dl, MVT::i1, Ret1);
1560 InVals.push_back(Ret1);
1561 } else {
1562 InVals.push_back(Ret0);
1563 InVals.push_back(Ret1);
1564 }
1565 } else {
1566 // Split into N LoadV4
1567 unsigned Ofst = 0;
1568 unsigned VecSize = 4;
1569 unsigned Opc = NVPTXISD::LoadParamV4;
1570 if (EltVT.getSizeInBits() == 64) {
1571 VecSize = 2;
1572 Opc = NVPTXISD::LoadParamV2;
1573 }
1574 EVT VecVT = EVT::getVectorVT(F->getContext(), EltVT, VecSize);
1575 for (unsigned i = 0; i < NumElts; i += VecSize) {
1576 SmallVector<EVT, 8> LoadRetVTs;
Justin Holewinski6e40f632014-06-27 18:35:44 +00001577 if (EltVT == MVT::i1 || EltVT == MVT::i8) {
1578 // If loading i1/i8 result, generate
1579 // load.b8 i16
1580 // if i1
Justin Holewinskif8f70912013-06-28 17:57:59 +00001581 // trunc i16 to i1
1582 for (unsigned j = 0; j < VecSize; ++j)
1583 LoadRetVTs.push_back(MVT::i16);
1584 } else {
1585 for (unsigned j = 0; j < VecSize; ++j)
1586 LoadRetVTs.push_back(EltVT);
1587 }
1588 LoadRetVTs.push_back(MVT::Other);
1589 LoadRetVTs.push_back(MVT::Glue);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001590 SDValue LoadRetOps[] = {Chain, DAG.getConstant(1, dl, MVT::i32),
1591 DAG.getConstant(Ofst, dl, MVT::i32), InFlag};
Justin Holewinskif8f70912013-06-28 17:57:59 +00001592 SDValue retval = DAG.getMemIntrinsicNode(
Craig Topperabb4ac72014-04-16 06:10:51 +00001593 Opc, dl, DAG.getVTList(LoadRetVTs),
Craig Topper206fcd42014-04-26 19:29:41 +00001594 LoadRetOps, EltVT, MachinePointerInfo());
Justin Holewinskif8f70912013-06-28 17:57:59 +00001595 if (VecSize == 2) {
1596 Chain = retval.getValue(2);
1597 InFlag = retval.getValue(3);
1598 } else {
1599 Chain = retval.getValue(4);
1600 InFlag = retval.getValue(5);
1601 }
1602
1603 for (unsigned j = 0; j < VecSize; ++j) {
1604 if (i + j >= NumElts)
1605 break;
1606 SDValue Elt = retval.getValue(j);
1607 if (needTruncate)
1608 Elt = DAG.getNode(ISD::TRUNCATE, dl, EltVT, Elt);
1609 InVals.push_back(Elt);
1610 }
Mehdi Amini56228da2015-07-09 01:57:34 +00001611 Ofst += DL.getTypeAllocSize(VecVT.getTypeForEVT(F->getContext()));
Justin Holewinskif8f70912013-06-28 17:57:59 +00001612 }
Justin Holewinskiae556d32012-05-04 20:18:50 +00001613 }
Justin Holewinski0497ab12013-03-30 14:29:21 +00001614 } else {
Justin Holewinskif8f70912013-06-28 17:57:59 +00001615 SmallVector<EVT, 16> VTs;
Justin Holewinski6e40f632014-06-27 18:35:44 +00001616 SmallVector<uint64_t, 16> Offsets;
Mehdi Aminia749f2a2015-07-09 02:09:52 +00001617 ComputePTXValueVTs(*this, DAG.getDataLayout(), retTy, VTs, &Offsets, 0);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001618 assert(VTs.size() == Ins.size() && "Bad value decomposition");
Justin Holewinski6e40f632014-06-27 18:35:44 +00001619 unsigned RetAlign = getArgumentAlignment(Callee, CS, retTy, 0);
Justin Holewinski0497ab12013-03-30 14:29:21 +00001620 for (unsigned i = 0, e = Ins.size(); i != e; ++i) {
Justin Holewinskif8f70912013-06-28 17:57:59 +00001621 unsigned sz = VTs[i].getSizeInBits();
Justin Holewinski9982f062014-06-27 19:36:25 +00001622 unsigned AlignI = GreatestCommonDivisor64(RetAlign, Offsets[i]);
Justin Lebar96418482016-04-01 01:09:10 +00001623 bool needTruncate = false;
1624 if (VTs[i].isInteger() && sz < 8) {
Justin Holewinskif8f70912013-06-28 17:57:59 +00001625 sz = 8;
Justin Lebar96418482016-04-01 01:09:10 +00001626 needTruncate = true;
1627 }
Justin Holewinskif8f70912013-06-28 17:57:59 +00001628
1629 SmallVector<EVT, 4> LoadRetVTs;
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00001630 EVT TheLoadType = VTs[i];
Mehdi Amini56228da2015-07-09 01:57:34 +00001631 if (retTy->isIntegerTy() && DL.getTypeAllocSizeInBits(retTy) < 32) {
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00001632 // This is for integer types only, and specifically not for
1633 // aggregates.
1634 LoadRetVTs.push_back(MVT::i32);
1635 TheLoadType = MVT::i32;
Justin Lebar96418482016-04-01 01:09:10 +00001636 needTruncate = true;
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00001637 } else if (sz < 16) {
Justin Holewinskif8f70912013-06-28 17:57:59 +00001638 // If loading i1/i8 result, generate
1639 // load i8 (-> i16)
1640 // trunc i16 to i1/i8
Justin Lebar96418482016-04-01 01:09:10 +00001641
1642 // FIXME: Do we need to set needTruncate to true here, too? We could
1643 // not figure out what this branch is for in D17872, so we left it
1644 // alone. The comment above about loading i1/i8 may be wrong, as the
1645 // branch above seems to cover integers of size < 32.
Justin Holewinskif8f70912013-06-28 17:57:59 +00001646 LoadRetVTs.push_back(MVT::i16);
1647 } else
1648 LoadRetVTs.push_back(Ins[i].VT);
1649 LoadRetVTs.push_back(MVT::Other);
1650 LoadRetVTs.push_back(MVT::Glue);
1651
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001652 SDValue LoadRetOps[] = {Chain, DAG.getConstant(1, dl, MVT::i32),
1653 DAG.getConstant(Offsets[i], dl, MVT::i32),
1654 InFlag};
Justin Holewinskif8f70912013-06-28 17:57:59 +00001655 SDValue retval = DAG.getMemIntrinsicNode(
1656 NVPTXISD::LoadParam, dl,
Craig Topper206fcd42014-04-26 19:29:41 +00001657 DAG.getVTList(LoadRetVTs), LoadRetOps,
Justin Holewinski6e40f632014-06-27 18:35:44 +00001658 TheLoadType, MachinePointerInfo(), AlignI);
Justin Holewinskif8f70912013-06-28 17:57:59 +00001659 Chain = retval.getValue(1);
1660 InFlag = retval.getValue(2);
1661 SDValue Ret0 = retval.getValue(0);
1662 if (needTruncate)
1663 Ret0 = DAG.getNode(ISD::TRUNCATE, dl, Ins[i].VT, Ret0);
1664 InVals.push_back(Ret0);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001665 }
1666 }
1667 }
Justin Holewinskif8f70912013-06-28 17:57:59 +00001668
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001669 Chain = DAG.getCALLSEQ_END(Chain,
1670 DAG.getIntPtrConstant(uniqueCallSite, dl, true),
1671 DAG.getIntPtrConstant(uniqueCallSite + 1, dl,
1672 true),
Andrew Trickad6d08a2013-05-29 22:03:55 +00001673 InFlag, dl);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001674 uniqueCallSite++;
1675
1676 // set isTailCall to false for now, until we figure out how to express
1677 // tail call optimization in PTX
1678 isTailCall = false;
1679 return Chain;
1680}
Justin Holewinskiae556d32012-05-04 20:18:50 +00001681
1682// By default CONCAT_VECTORS is lowered by ExpandVectorBuildThroughStack()
1683// (see LegalizeDAG.cpp). This is slow and uses local memory.
1684// We use extract/insert/build vector just as what LegalizeOp() does in llvm 2.5
Justin Holewinski0497ab12013-03-30 14:29:21 +00001685SDValue
1686NVPTXTargetLowering::LowerCONCAT_VECTORS(SDValue Op, SelectionDAG &DAG) const {
Justin Holewinskiae556d32012-05-04 20:18:50 +00001687 SDNode *Node = Op.getNode();
Andrew Trickef9de2a2013-05-25 02:42:55 +00001688 SDLoc dl(Node);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001689 SmallVector<SDValue, 8> Ops;
1690 unsigned NumOperands = Node->getNumOperands();
Justin Holewinski0497ab12013-03-30 14:29:21 +00001691 for (unsigned i = 0; i < NumOperands; ++i) {
Justin Holewinskiae556d32012-05-04 20:18:50 +00001692 SDValue SubOp = Node->getOperand(i);
1693 EVT VVT = SubOp.getNode()->getValueType(0);
1694 EVT EltVT = VVT.getVectorElementType();
1695 unsigned NumSubElem = VVT.getVectorNumElements();
Justin Holewinski0497ab12013-03-30 14:29:21 +00001696 for (unsigned j = 0; j < NumSubElem; ++j) {
Justin Holewinskiae556d32012-05-04 20:18:50 +00001697 Ops.push_back(DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, EltVT, SubOp,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001698 DAG.getIntPtrConstant(j, dl)));
Justin Holewinskiae556d32012-05-04 20:18:50 +00001699 }
1700 }
Craig Topper48d114b2014-04-26 18:35:24 +00001701 return DAG.getNode(ISD::BUILD_VECTOR, dl, Node->getValueType(0), Ops);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001702}
1703
Justin Holewinski360a5cf2014-06-27 18:35:40 +00001704/// LowerShiftRightParts - Lower SRL_PARTS, SRA_PARTS, which
1705/// 1) returns two i32 values and take a 2 x i32 value to shift plus a shift
1706/// amount, or
1707/// 2) returns two i64 values and take a 2 x i64 value to shift plus a shift
1708/// amount.
1709SDValue NVPTXTargetLowering::LowerShiftRightParts(SDValue Op,
1710 SelectionDAG &DAG) const {
1711 assert(Op.getNumOperands() == 3 && "Not a double-shift!");
1712 assert(Op.getOpcode() == ISD::SRA_PARTS || Op.getOpcode() == ISD::SRL_PARTS);
1713
1714 EVT VT = Op.getValueType();
1715 unsigned VTBits = VT.getSizeInBits();
1716 SDLoc dl(Op);
1717 SDValue ShOpLo = Op.getOperand(0);
1718 SDValue ShOpHi = Op.getOperand(1);
1719 SDValue ShAmt = Op.getOperand(2);
1720 unsigned Opc = (Op.getOpcode() == ISD::SRA_PARTS) ? ISD::SRA : ISD::SRL;
1721
Eric Christopherbef0a372015-01-30 01:50:07 +00001722 if (VTBits == 32 && STI.getSmVersion() >= 35) {
Justin Holewinski360a5cf2014-06-27 18:35:40 +00001723
1724 // For 32bit and sm35, we can use the funnel shift 'shf' instruction.
1725 // {dHi, dLo} = {aHi, aLo} >> Amt
1726 // dHi = aHi >> Amt
1727 // dLo = shf.r.clamp aLo, aHi, Amt
1728
1729 SDValue Hi = DAG.getNode(Opc, dl, VT, ShOpHi, ShAmt);
1730 SDValue Lo = DAG.getNode(NVPTXISD::FUN_SHFR_CLAMP, dl, VT, ShOpLo, ShOpHi,
1731 ShAmt);
1732
1733 SDValue Ops[2] = { Lo, Hi };
1734 return DAG.getMergeValues(Ops, dl);
1735 }
1736 else {
1737
1738 // {dHi, dLo} = {aHi, aLo} >> Amt
1739 // - if (Amt>=size) then
1740 // dLo = aHi >> (Amt-size)
1741 // dHi = aHi >> Amt (this is either all 0 or all 1)
1742 // else
1743 // dLo = (aLo >>logic Amt) | (aHi << (size-Amt))
1744 // dHi = aHi >> Amt
1745
1746 SDValue RevShAmt = DAG.getNode(ISD::SUB, dl, MVT::i32,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001747 DAG.getConstant(VTBits, dl, MVT::i32),
1748 ShAmt);
Justin Holewinski360a5cf2014-06-27 18:35:40 +00001749 SDValue Tmp1 = DAG.getNode(ISD::SRL, dl, VT, ShOpLo, ShAmt);
1750 SDValue ExtraShAmt = DAG.getNode(ISD::SUB, dl, MVT::i32, ShAmt,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001751 DAG.getConstant(VTBits, dl, MVT::i32));
Justin Holewinski360a5cf2014-06-27 18:35:40 +00001752 SDValue Tmp2 = DAG.getNode(ISD::SHL, dl, VT, ShOpHi, RevShAmt);
1753 SDValue FalseVal = DAG.getNode(ISD::OR, dl, VT, Tmp1, Tmp2);
1754 SDValue TrueVal = DAG.getNode(Opc, dl, VT, ShOpHi, ExtraShAmt);
1755
1756 SDValue Cmp = DAG.getSetCC(dl, MVT::i1, ShAmt,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001757 DAG.getConstant(VTBits, dl, MVT::i32),
1758 ISD::SETGE);
Justin Holewinski360a5cf2014-06-27 18:35:40 +00001759 SDValue Hi = DAG.getNode(Opc, dl, VT, ShOpHi, ShAmt);
1760 SDValue Lo = DAG.getNode(ISD::SELECT, dl, VT, Cmp, TrueVal, FalseVal);
1761
1762 SDValue Ops[2] = { Lo, Hi };
1763 return DAG.getMergeValues(Ops, dl);
1764 }
1765}
1766
1767/// LowerShiftLeftParts - Lower SHL_PARTS, which
1768/// 1) returns two i32 values and take a 2 x i32 value to shift plus a shift
1769/// amount, or
1770/// 2) returns two i64 values and take a 2 x i64 value to shift plus a shift
1771/// amount.
1772SDValue NVPTXTargetLowering::LowerShiftLeftParts(SDValue Op,
1773 SelectionDAG &DAG) const {
1774 assert(Op.getNumOperands() == 3 && "Not a double-shift!");
1775 assert(Op.getOpcode() == ISD::SHL_PARTS);
1776
1777 EVT VT = Op.getValueType();
1778 unsigned VTBits = VT.getSizeInBits();
1779 SDLoc dl(Op);
1780 SDValue ShOpLo = Op.getOperand(0);
1781 SDValue ShOpHi = Op.getOperand(1);
1782 SDValue ShAmt = Op.getOperand(2);
1783
Eric Christopherbef0a372015-01-30 01:50:07 +00001784 if (VTBits == 32 && STI.getSmVersion() >= 35) {
Justin Holewinski360a5cf2014-06-27 18:35:40 +00001785
1786 // For 32bit and sm35, we can use the funnel shift 'shf' instruction.
1787 // {dHi, dLo} = {aHi, aLo} << Amt
1788 // dHi = shf.l.clamp aLo, aHi, Amt
1789 // dLo = aLo << Amt
1790
1791 SDValue Hi = DAG.getNode(NVPTXISD::FUN_SHFL_CLAMP, dl, VT, ShOpLo, ShOpHi,
1792 ShAmt);
1793 SDValue Lo = DAG.getNode(ISD::SHL, dl, VT, ShOpLo, ShAmt);
1794
1795 SDValue Ops[2] = { Lo, Hi };
1796 return DAG.getMergeValues(Ops, dl);
1797 }
1798 else {
1799
1800 // {dHi, dLo} = {aHi, aLo} << Amt
1801 // - if (Amt>=size) then
1802 // dLo = aLo << Amt (all 0)
1803 // dLo = aLo << (Amt-size)
1804 // else
1805 // dLo = aLo << Amt
1806 // dHi = (aHi << Amt) | (aLo >> (size-Amt))
1807
1808 SDValue RevShAmt = DAG.getNode(ISD::SUB, dl, MVT::i32,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001809 DAG.getConstant(VTBits, dl, MVT::i32),
1810 ShAmt);
Justin Holewinski360a5cf2014-06-27 18:35:40 +00001811 SDValue Tmp1 = DAG.getNode(ISD::SHL, dl, VT, ShOpHi, ShAmt);
1812 SDValue ExtraShAmt = DAG.getNode(ISD::SUB, dl, MVT::i32, ShAmt,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001813 DAG.getConstant(VTBits, dl, MVT::i32));
Justin Holewinski360a5cf2014-06-27 18:35:40 +00001814 SDValue Tmp2 = DAG.getNode(ISD::SRL, dl, VT, ShOpLo, RevShAmt);
1815 SDValue FalseVal = DAG.getNode(ISD::OR, dl, VT, Tmp1, Tmp2);
1816 SDValue TrueVal = DAG.getNode(ISD::SHL, dl, VT, ShOpLo, ExtraShAmt);
1817
1818 SDValue Cmp = DAG.getSetCC(dl, MVT::i1, ShAmt,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001819 DAG.getConstant(VTBits, dl, MVT::i32),
1820 ISD::SETGE);
Justin Holewinski360a5cf2014-06-27 18:35:40 +00001821 SDValue Lo = DAG.getNode(ISD::SHL, dl, VT, ShOpLo, ShAmt);
1822 SDValue Hi = DAG.getNode(ISD::SELECT, dl, VT, Cmp, TrueVal, FalseVal);
1823
1824 SDValue Ops[2] = { Lo, Hi };
1825 return DAG.getMergeValues(Ops, dl);
1826 }
1827}
1828
Justin Holewinski0497ab12013-03-30 14:29:21 +00001829SDValue
1830NVPTXTargetLowering::LowerOperation(SDValue Op, SelectionDAG &DAG) const {
Justin Holewinskiae556d32012-05-04 20:18:50 +00001831 switch (Op.getOpcode()) {
Justin Holewinski0497ab12013-03-30 14:29:21 +00001832 case ISD::RETURNADDR:
1833 return SDValue();
1834 case ISD::FRAMEADDR:
1835 return SDValue();
1836 case ISD::GlobalAddress:
1837 return LowerGlobalAddress(Op, DAG);
1838 case ISD::INTRINSIC_W_CHAIN:
1839 return Op;
Justin Holewinskiae556d32012-05-04 20:18:50 +00001840 case ISD::BUILD_VECTOR:
1841 case ISD::EXTRACT_SUBVECTOR:
1842 return Op;
Justin Holewinski0497ab12013-03-30 14:29:21 +00001843 case ISD::CONCAT_VECTORS:
1844 return LowerCONCAT_VECTORS(Op, DAG);
1845 case ISD::STORE:
1846 return LowerSTORE(Op, DAG);
1847 case ISD::LOAD:
1848 return LowerLOAD(Op, DAG);
Justin Holewinski360a5cf2014-06-27 18:35:40 +00001849 case ISD::SHL_PARTS:
1850 return LowerShiftLeftParts(Op, DAG);
1851 case ISD::SRA_PARTS:
1852 case ISD::SRL_PARTS:
1853 return LowerShiftRightParts(Op, DAG);
Justin Holewinskid4d2e9b2015-01-26 19:52:20 +00001854 case ISD::SELECT:
1855 return LowerSelect(Op, DAG);
Justin Holewinskiae556d32012-05-04 20:18:50 +00001856 default:
David Blaikie891d0a32012-05-04 22:34:16 +00001857 llvm_unreachable("Custom lowering not defined for operation");
Justin Holewinskiae556d32012-05-04 20:18:50 +00001858 }
1859}
1860
Justin Holewinskid4d2e9b2015-01-26 19:52:20 +00001861SDValue NVPTXTargetLowering::LowerSelect(SDValue Op, SelectionDAG &DAG) const {
1862 SDValue Op0 = Op->getOperand(0);
1863 SDValue Op1 = Op->getOperand(1);
1864 SDValue Op2 = Op->getOperand(2);
1865 SDLoc DL(Op.getNode());
1866
1867 assert(Op.getValueType() == MVT::i1 && "Custom lowering enabled only for i1");
1868
1869 Op1 = DAG.getNode(ISD::ANY_EXTEND, DL, MVT::i32, Op1);
1870 Op2 = DAG.getNode(ISD::ANY_EXTEND, DL, MVT::i32, Op2);
1871 SDValue Select = DAG.getNode(ISD::SELECT, DL, MVT::i32, Op0, Op1, Op2);
1872 SDValue Trunc = DAG.getNode(ISD::TRUNCATE, DL, MVT::i1, Select);
1873
1874 return Trunc;
1875}
1876
Justin Holewinskibe8dc642013-02-12 14:18:49 +00001877SDValue NVPTXTargetLowering::LowerLOAD(SDValue Op, SelectionDAG &DAG) const {
1878 if (Op.getValueType() == MVT::i1)
1879 return LowerLOADi1(Op, DAG);
1880 else
1881 return SDValue();
1882}
1883
Justin Holewinskic6462aa2012-11-14 19:19:16 +00001884// v = ld i1* addr
1885// =>
Justin Holewinskif8f70912013-06-28 17:57:59 +00001886// v1 = ld i8* addr (-> i16)
1887// v = trunc i16 to i1
Justin Holewinski0497ab12013-03-30 14:29:21 +00001888SDValue NVPTXTargetLowering::LowerLOADi1(SDValue Op, SelectionDAG &DAG) const {
Justin Holewinskic6462aa2012-11-14 19:19:16 +00001889 SDNode *Node = Op.getNode();
1890 LoadSDNode *LD = cast<LoadSDNode>(Node);
Andrew Trickef9de2a2013-05-25 02:42:55 +00001891 SDLoc dl(Node);
Justin Holewinski0497ab12013-03-30 14:29:21 +00001892 assert(LD->getExtensionType() == ISD::NON_EXTLOAD);
NAKAMURA Takumi5bbe0e12012-11-14 23:46:15 +00001893 assert(Node->getValueType(0) == MVT::i1 &&
1894 "Custom lowering for i1 load only");
Justin Holewinski0497ab12013-03-30 14:29:21 +00001895 SDValue newLD =
Justin Holewinskif8f70912013-06-28 17:57:59 +00001896 DAG.getLoad(MVT::i16, dl, LD->getChain(), LD->getBasePtr(),
Justin Holewinski0497ab12013-03-30 14:29:21 +00001897 LD->getPointerInfo(), LD->isVolatile(), LD->isNonTemporal(),
1898 LD->isInvariant(), LD->getAlignment());
Justin Holewinskic6462aa2012-11-14 19:19:16 +00001899 SDValue result = DAG.getNode(ISD::TRUNCATE, dl, MVT::i1, newLD);
1900 // The legalizer (the caller) is expecting two values from the legalized
1901 // load, so we build a MergeValues node for it. See ExpandUnalignedLoad()
1902 // in LegalizeDAG.cpp which also uses MergeValues.
Justin Holewinski0497ab12013-03-30 14:29:21 +00001903 SDValue Ops[] = { result, LD->getChain() };
Craig Topper64941d92014-04-27 19:20:57 +00001904 return DAG.getMergeValues(Ops, dl);
Justin Holewinskic6462aa2012-11-14 19:19:16 +00001905}
1906
Justin Holewinskibe8dc642013-02-12 14:18:49 +00001907SDValue NVPTXTargetLowering::LowerSTORE(SDValue Op, SelectionDAG &DAG) const {
1908 EVT ValVT = Op.getOperand(1).getValueType();
1909 if (ValVT == MVT::i1)
1910 return LowerSTOREi1(Op, DAG);
1911 else if (ValVT.isVector())
1912 return LowerSTOREVector(Op, DAG);
1913 else
1914 return SDValue();
1915}
1916
1917SDValue
1918NVPTXTargetLowering::LowerSTOREVector(SDValue Op, SelectionDAG &DAG) const {
1919 SDNode *N = Op.getNode();
1920 SDValue Val = N->getOperand(1);
Andrew Trickef9de2a2013-05-25 02:42:55 +00001921 SDLoc DL(N);
Justin Holewinskibe8dc642013-02-12 14:18:49 +00001922 EVT ValVT = Val.getValueType();
1923
1924 if (ValVT.isVector()) {
1925 // We only handle "native" vector sizes for now, e.g. <4 x double> is not
1926 // legal. We can (and should) split that into 2 stores of <2 x double> here
1927 // but I'm leaving that as a TODO for now.
1928 if (!ValVT.isSimple())
1929 return SDValue();
1930 switch (ValVT.getSimpleVT().SimpleTy) {
Justin Holewinski0497ab12013-03-30 14:29:21 +00001931 default:
1932 return SDValue();
Justin Holewinskibe8dc642013-02-12 14:18:49 +00001933 case MVT::v2i8:
1934 case MVT::v2i16:
1935 case MVT::v2i32:
1936 case MVT::v2i64:
1937 case MVT::v2f32:
1938 case MVT::v2f64:
1939 case MVT::v4i8:
1940 case MVT::v4i16:
1941 case MVT::v4i32:
1942 case MVT::v4f32:
1943 // This is a "native" vector type
1944 break;
1945 }
1946
Justin Holewinskiac451062014-07-16 19:45:35 +00001947 MemSDNode *MemSD = cast<MemSDNode>(N);
Mehdi Aminia749f2a2015-07-09 02:09:52 +00001948 const DataLayout &TD = DAG.getDataLayout();
Justin Holewinskiac451062014-07-16 19:45:35 +00001949
1950 unsigned Align = MemSD->getAlignment();
1951 unsigned PrefAlign =
Mehdi Aminia749f2a2015-07-09 02:09:52 +00001952 TD.getPrefTypeAlignment(ValVT.getTypeForEVT(*DAG.getContext()));
Justin Holewinskiac451062014-07-16 19:45:35 +00001953 if (Align < PrefAlign) {
1954 // This store is not sufficiently aligned, so bail out and let this vector
1955 // store be scalarized. Note that we may still be able to emit smaller
1956 // vector stores. For example, if we are storing a <4 x float> with an
1957 // alignment of 8, this check will fail but the legalizer will try again
1958 // with 2 x <2 x float>, which will succeed with an alignment of 8.
1959 return SDValue();
1960 }
1961
Justin Holewinskibe8dc642013-02-12 14:18:49 +00001962 unsigned Opcode = 0;
1963 EVT EltVT = ValVT.getVectorElementType();
1964 unsigned NumElts = ValVT.getVectorNumElements();
1965
1966 // Since StoreV2 is a target node, we cannot rely on DAG type legalization.
1967 // Therefore, we must ensure the type is legal. For i1 and i8, we set the
Alp Tokercb402912014-01-24 17:20:08 +00001968 // stored type to i16 and propagate the "real" type as the memory type.
Justin Holewinskia2911282013-07-01 12:58:58 +00001969 bool NeedExt = false;
Justin Holewinskibe8dc642013-02-12 14:18:49 +00001970 if (EltVT.getSizeInBits() < 16)
Justin Holewinskia2911282013-07-01 12:58:58 +00001971 NeedExt = true;
Justin Holewinskibe8dc642013-02-12 14:18:49 +00001972
1973 switch (NumElts) {
Justin Holewinski0497ab12013-03-30 14:29:21 +00001974 default:
1975 return SDValue();
Justin Holewinskibe8dc642013-02-12 14:18:49 +00001976 case 2:
1977 Opcode = NVPTXISD::StoreV2;
1978 break;
1979 case 4: {
1980 Opcode = NVPTXISD::StoreV4;
1981 break;
1982 }
1983 }
1984
1985 SmallVector<SDValue, 8> Ops;
1986
1987 // First is the chain
1988 Ops.push_back(N->getOperand(0));
1989
1990 // Then the split values
1991 for (unsigned i = 0; i < NumElts; ++i) {
1992 SDValue ExtVal = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, DL, EltVT, Val,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00001993 DAG.getIntPtrConstant(i, DL));
Justin Holewinskia2911282013-07-01 12:58:58 +00001994 if (NeedExt)
1995 ExtVal = DAG.getNode(ISD::ANY_EXTEND, DL, MVT::i16, ExtVal);
Justin Holewinskibe8dc642013-02-12 14:18:49 +00001996 Ops.push_back(ExtVal);
1997 }
1998
1999 // Then any remaining arguments
Benjamin Kramer5fbfe2f2015-02-28 13:20:15 +00002000 Ops.append(N->op_begin() + 2, N->op_end());
Justin Holewinskibe8dc642013-02-12 14:18:49 +00002001
Justin Holewinski0497ab12013-03-30 14:29:21 +00002002 SDValue NewSt = DAG.getMemIntrinsicNode(
Craig Topper206fcd42014-04-26 19:29:41 +00002003 Opcode, DL, DAG.getVTList(MVT::Other), Ops,
Justin Holewinski0497ab12013-03-30 14:29:21 +00002004 MemSD->getMemoryVT(), MemSD->getMemOperand());
Justin Holewinskibe8dc642013-02-12 14:18:49 +00002005
2006 //return DCI.CombineTo(N, NewSt, true);
2007 return NewSt;
2008 }
2009
2010 return SDValue();
2011}
2012
Justin Holewinskic6462aa2012-11-14 19:19:16 +00002013// st i1 v, addr
2014// =>
Justin Holewinskif8f70912013-06-28 17:57:59 +00002015// v1 = zxt v to i16
2016// st.u8 i16, addr
Justin Holewinski0497ab12013-03-30 14:29:21 +00002017SDValue NVPTXTargetLowering::LowerSTOREi1(SDValue Op, SelectionDAG &DAG) const {
Justin Holewinskic6462aa2012-11-14 19:19:16 +00002018 SDNode *Node = Op.getNode();
Andrew Trickef9de2a2013-05-25 02:42:55 +00002019 SDLoc dl(Node);
Justin Holewinskic6462aa2012-11-14 19:19:16 +00002020 StoreSDNode *ST = cast<StoreSDNode>(Node);
2021 SDValue Tmp1 = ST->getChain();
2022 SDValue Tmp2 = ST->getBasePtr();
2023 SDValue Tmp3 = ST->getValue();
NAKAMURA Takumi5bbe0e12012-11-14 23:46:15 +00002024 assert(Tmp3.getValueType() == MVT::i1 && "Custom lowering for i1 store only");
Justin Holewinskic6462aa2012-11-14 19:19:16 +00002025 unsigned Alignment = ST->getAlignment();
2026 bool isVolatile = ST->isVolatile();
2027 bool isNonTemporal = ST->isNonTemporal();
Justin Holewinskif8f70912013-06-28 17:57:59 +00002028 Tmp3 = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, Tmp3);
2029 SDValue Result = DAG.getTruncStore(Tmp1, dl, Tmp3, Tmp2,
2030 ST->getPointerInfo(), MVT::i8, isNonTemporal,
2031 isVolatile, Alignment);
Justin Holewinskic6462aa2012-11-14 19:19:16 +00002032 return Result;
2033}
2034
Justin Holewinskiae556d32012-05-04 20:18:50 +00002035SDValue
2036NVPTXTargetLowering::getParamSymbol(SelectionDAG &DAG, int idx, EVT v) const {
Justin Holewinskia2a63d22013-08-06 14:13:27 +00002037 std::string ParamSym;
2038 raw_string_ostream ParamStr(ParamSym);
2039
2040 ParamStr << DAG.getMachineFunction().getName() << "_param_" << idx;
2041 ParamStr.flush();
2042
2043 std::string *SavedStr =
2044 nvTM->getManagedStrPool()->getManagedString(ParamSym.c_str());
2045 return DAG.getTargetExternalSymbol(SavedStr->c_str(), v);
Justin Holewinskiae556d32012-05-04 20:18:50 +00002046}
2047
Justin Holewinskiae556d32012-05-04 20:18:50 +00002048// Check to see if the kernel argument is image*_t or sampler_t
2049
Benjamin Kramer9415e062016-03-30 12:31:51 +00002050static bool isImageOrSamplerVal(const Value *arg, const Module *context) {
Justin Holewinski0497ab12013-03-30 14:29:21 +00002051 static const char *const specialTypes[] = { "struct._image2d_t",
2052 "struct._image3d_t",
2053 "struct._sampler_t" };
Justin Holewinskiae556d32012-05-04 20:18:50 +00002054
Craig Toppere3dcce92015-08-01 22:20:21 +00002055 Type *Ty = arg->getType();
2056 auto *PTy = dyn_cast<PointerType>(Ty);
Justin Holewinskiae556d32012-05-04 20:18:50 +00002057
2058 if (!PTy)
2059 return false;
2060
2061 if (!context)
2062 return false;
2063
Craig Toppere3dcce92015-08-01 22:20:21 +00002064 auto *STy = dyn_cast<StructType>(PTy->getElementType());
Benjamin Kramer9415e062016-03-30 12:31:51 +00002065 if (!STy || STy->isLiteral())
2066 return false;
Justin Holewinskiae556d32012-05-04 20:18:50 +00002067
Craig Topperec15ea12015-10-17 21:32:28 +00002068 return std::find(std::begin(specialTypes), std::end(specialTypes),
Benjamin Kramer9415e062016-03-30 12:31:51 +00002069 STy->getName()) != std::end(specialTypes);
Justin Holewinskiae556d32012-05-04 20:18:50 +00002070}
2071
Justin Holewinski0497ab12013-03-30 14:29:21 +00002072SDValue NVPTXTargetLowering::LowerFormalArguments(
2073 SDValue Chain, CallingConv::ID CallConv, bool isVarArg,
Andrew Trickef9de2a2013-05-25 02:42:55 +00002074 const SmallVectorImpl<ISD::InputArg> &Ins, SDLoc dl, SelectionDAG &DAG,
Justin Holewinski0497ab12013-03-30 14:29:21 +00002075 SmallVectorImpl<SDValue> &InVals) const {
Justin Holewinskiae556d32012-05-04 20:18:50 +00002076 MachineFunction &MF = DAG.getMachineFunction();
Mehdi Aminia749f2a2015-07-09 02:09:52 +00002077 const DataLayout &DL = DAG.getDataLayout();
2078 auto PtrVT = getPointerTy(DAG.getDataLayout());
Justin Holewinskiae556d32012-05-04 20:18:50 +00002079
2080 const Function *F = MF.getFunction();
Bill Wendlinge94d8432012-12-07 23:16:57 +00002081 const AttributeSet &PAL = F->getAttributes();
Eric Christopherbef0a372015-01-30 01:50:07 +00002082 const TargetLowering *TLI = STI.getTargetLowering();
Justin Holewinskiae556d32012-05-04 20:18:50 +00002083
2084 SDValue Root = DAG.getRoot();
2085 std::vector<SDValue> OutChains;
2086
2087 bool isKernel = llvm::isKernelFunction(*F);
Eric Christopherbef0a372015-01-30 01:50:07 +00002088 bool isABI = (STI.getSmVersion() >= 20);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002089 assert(isABI && "Non-ABI compilation is not supported");
2090 if (!isABI)
2091 return Chain;
Justin Holewinskiae556d32012-05-04 20:18:50 +00002092
2093 std::vector<Type *> argTypes;
2094 std::vector<const Argument *> theArgs;
Duncan P. N. Exon Smith61149b82015-10-20 00:54:09 +00002095 for (const Argument &I : F->args()) {
2096 theArgs.push_back(&I);
2097 argTypes.push_back(I.getType());
Justin Holewinskiae556d32012-05-04 20:18:50 +00002098 }
Justin Holewinski44f5c602013-06-28 17:57:53 +00002099 // argTypes.size() (or theArgs.size()) and Ins.size() need not match.
2100 // Ins.size() will be larger
2101 // * if there is an aggregate argument with multiple fields (each field
2102 // showing up separately in Ins)
2103 // * if there is a vector argument with more than typical vector-length
2104 // elements (generally if more than 4) where each vector element is
2105 // individually present in Ins.
2106 // So a different index should be used for indexing into Ins.
2107 // See similar issue in LowerCall.
2108 unsigned InsIdx = 0;
Justin Holewinskiae556d32012-05-04 20:18:50 +00002109
2110 int idx = 0;
Justin Holewinski44f5c602013-06-28 17:57:53 +00002111 for (unsigned i = 0, e = theArgs.size(); i != e; ++i, ++idx, ++InsIdx) {
Justin Holewinskiae556d32012-05-04 20:18:50 +00002112 Type *Ty = argTypes[i];
Justin Holewinskiae556d32012-05-04 20:18:50 +00002113
2114 // If the kernel argument is image*_t or sampler_t, convert it to
2115 // a i32 constant holding the parameter position. This can later
2116 // matched in the AsmPrinter to output the correct mangled name.
Justin Holewinski0497ab12013-03-30 14:29:21 +00002117 if (isImageOrSamplerVal(
2118 theArgs[i],
2119 (theArgs[i]->getParent() ? theArgs[i]->getParent()->getParent()
Craig Topper062a2ba2014-04-25 05:30:21 +00002120 : nullptr))) {
Justin Holewinskiae556d32012-05-04 20:18:50 +00002121 assert(isKernel && "Only kernels can have image/sampler params");
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00002122 InVals.push_back(DAG.getConstant(i + 1, dl, MVT::i32));
Justin Holewinskiae556d32012-05-04 20:18:50 +00002123 continue;
2124 }
2125
2126 if (theArgs[i]->use_empty()) {
2127 // argument is dead
Justin Holewinski44f5c602013-06-28 17:57:53 +00002128 if (Ty->isAggregateType()) {
2129 SmallVector<EVT, 16> vtparts;
2130
Mehdi Aminia749f2a2015-07-09 02:09:52 +00002131 ComputePTXValueVTs(*this, DAG.getDataLayout(), Ty, vtparts);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002132 assert(vtparts.size() > 0 && "empty aggregate type not expected");
2133 for (unsigned parti = 0, parte = vtparts.size(); parti != parte;
2134 ++parti) {
Justin Holewinskib5db95e2014-06-27 18:36:04 +00002135 InVals.push_back(DAG.getNode(ISD::UNDEF, dl, Ins[InsIdx].VT));
Justin Holewinski44f5c602013-06-28 17:57:53 +00002136 ++InsIdx;
Justin Holewinskie9884092013-03-24 21:17:47 +00002137 }
Justin Holewinski44f5c602013-06-28 17:57:53 +00002138 if (vtparts.size() > 0)
2139 --InsIdx;
2140 continue;
Justin Holewinskie9884092013-03-24 21:17:47 +00002141 }
Justin Holewinski44f5c602013-06-28 17:57:53 +00002142 if (Ty->isVectorTy()) {
Mehdi Amini44ede332015-07-09 02:09:04 +00002143 EVT ObjectVT = getValueType(DL, Ty);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002144 unsigned NumRegs = TLI->getNumRegisters(F->getContext(), ObjectVT);
2145 for (unsigned parti = 0; parti < NumRegs; ++parti) {
2146 InVals.push_back(DAG.getNode(ISD::UNDEF, dl, Ins[InsIdx].VT));
2147 ++InsIdx;
2148 }
2149 if (NumRegs > 0)
2150 --InsIdx;
2151 continue;
2152 }
2153 InVals.push_back(DAG.getNode(ISD::UNDEF, dl, Ins[InsIdx].VT));
Justin Holewinskiae556d32012-05-04 20:18:50 +00002154 continue;
2155 }
2156
2157 // In the following cases, assign a node order of "idx+1"
Justin Holewinski44f5c602013-06-28 17:57:53 +00002158 // to newly created nodes. The SDNodes for params have to
Justin Holewinskiae556d32012-05-04 20:18:50 +00002159 // appear in the same order as their order of appearance
2160 // in the original function. "idx+1" holds that order.
Eli Bendersky3e840192015-03-23 16:26:23 +00002161 if (!PAL.hasAttribute(i + 1, Attribute::ByVal)) {
Justin Holewinski44f5c602013-06-28 17:57:53 +00002162 if (Ty->isAggregateType()) {
2163 SmallVector<EVT, 16> vtparts;
2164 SmallVector<uint64_t, 16> offsets;
2165
Justin Holewinskif8f70912013-06-28 17:57:59 +00002166 // NOTE: Here, we lose the ability to issue vector loads for vectors
2167 // that are a part of a struct. This should be investigated in the
2168 // future.
Mehdi Aminia749f2a2015-07-09 02:09:52 +00002169 ComputePTXValueVTs(*this, DAG.getDataLayout(), Ty, vtparts, &offsets,
2170 0);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002171 assert(vtparts.size() > 0 && "empty aggregate type not expected");
2172 bool aggregateIsPacked = false;
2173 if (StructType *STy = llvm::dyn_cast<StructType>(Ty))
2174 aggregateIsPacked = STy->isPacked();
2175
Mehdi Amini44ede332015-07-09 02:09:04 +00002176 SDValue Arg = getParamSymbol(DAG, idx, PtrVT);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002177 for (unsigned parti = 0, parte = vtparts.size(); parti != parte;
2178 ++parti) {
2179 EVT partVT = vtparts[parti];
2180 Value *srcValue = Constant::getNullValue(
2181 PointerType::get(partVT.getTypeForEVT(F->getContext()),
2182 llvm::ADDRESS_SPACE_PARAM));
2183 SDValue srcAddr =
Mehdi Amini44ede332015-07-09 02:09:04 +00002184 DAG.getNode(ISD::ADD, dl, PtrVT, Arg,
2185 DAG.getConstant(offsets[parti], dl, PtrVT));
Mehdi Amini56228da2015-07-09 01:57:34 +00002186 unsigned partAlign = aggregateIsPacked
2187 ? 1
2188 : DL.getABITypeAlignment(
2189 partVT.getTypeForEVT(F->getContext()));
Justin Holewinskia2911282013-07-01 12:58:58 +00002190 SDValue p;
2191 if (Ins[InsIdx].VT.getSizeInBits() > partVT.getSizeInBits()) {
2192 ISD::LoadExtType ExtOp = Ins[InsIdx].Flags.isSExt() ?
2193 ISD::SEXTLOAD : ISD::ZEXTLOAD;
2194 p = DAG.getExtLoad(ExtOp, dl, Ins[InsIdx].VT, Root, srcAddr,
Justin Holewinskif8f70912013-06-28 17:57:59 +00002195 MachinePointerInfo(srcValue), partVT, false,
Louis Gerbarg67474e32014-07-31 21:45:05 +00002196 false, false, partAlign);
Justin Holewinskia2911282013-07-01 12:58:58 +00002197 } else {
Justin Holewinskif8f70912013-06-28 17:57:59 +00002198 p = DAG.getLoad(partVT, dl, Root, srcAddr,
2199 MachinePointerInfo(srcValue), false, false, false,
2200 partAlign);
Justin Holewinskia2911282013-07-01 12:58:58 +00002201 }
Justin Holewinski44f5c602013-06-28 17:57:53 +00002202 if (p.getNode())
2203 p.getNode()->setIROrder(idx + 1);
2204 InVals.push_back(p);
2205 ++InsIdx;
Justin Holewinskie9884092013-03-24 21:17:47 +00002206 }
Justin Holewinski44f5c602013-06-28 17:57:53 +00002207 if (vtparts.size() > 0)
2208 --InsIdx;
Justin Holewinskie9884092013-03-24 21:17:47 +00002209 continue;
2210 }
Justin Holewinski44f5c602013-06-28 17:57:53 +00002211 if (Ty->isVectorTy()) {
Mehdi Amini44ede332015-07-09 02:09:04 +00002212 EVT ObjectVT = getValueType(DL, Ty);
2213 SDValue Arg = getParamSymbol(DAG, idx, PtrVT);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002214 unsigned NumElts = ObjectVT.getVectorNumElements();
2215 assert(TLI->getNumRegisters(F->getContext(), ObjectVT) == NumElts &&
2216 "Vector was not scalarized");
Justin Holewinski44f5c602013-06-28 17:57:53 +00002217 EVT EltVT = ObjectVT.getVectorElementType();
2218
2219 // V1 load
2220 // f32 = load ...
2221 if (NumElts == 1) {
2222 // We only have one element, so just directly load it
2223 Value *SrcValue = Constant::getNullValue(PointerType::get(
2224 EltVT.getTypeForEVT(F->getContext()), llvm::ADDRESS_SPACE_PARAM));
Justin Holewinski44f5c602013-06-28 17:57:53 +00002225 SDValue P = DAG.getLoad(
Mehdi Amini56228da2015-07-09 01:57:34 +00002226 EltVT, dl, Root, Arg, MachinePointerInfo(SrcValue), false, false,
2227 true,
2228 DL.getABITypeAlignment(EltVT.getTypeForEVT(F->getContext())));
Justin Holewinski44f5c602013-06-28 17:57:53 +00002229 if (P.getNode())
2230 P.getNode()->setIROrder(idx + 1);
2231
Justin Holewinskif8f70912013-06-28 17:57:59 +00002232 if (Ins[InsIdx].VT.getSizeInBits() > EltVT.getSizeInBits())
Justin Holewinskia2911282013-07-01 12:58:58 +00002233 P = DAG.getNode(ISD::ANY_EXTEND, dl, Ins[InsIdx].VT, P);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002234 InVals.push_back(P);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002235 ++InsIdx;
2236 } else if (NumElts == 2) {
2237 // V2 load
2238 // f32,f32 = load ...
2239 EVT VecVT = EVT::getVectorVT(F->getContext(), EltVT, 2);
2240 Value *SrcValue = Constant::getNullValue(PointerType::get(
2241 VecVT.getTypeForEVT(F->getContext()), llvm::ADDRESS_SPACE_PARAM));
Justin Holewinski44f5c602013-06-28 17:57:53 +00002242 SDValue P = DAG.getLoad(
Mehdi Amini56228da2015-07-09 01:57:34 +00002243 VecVT, dl, Root, Arg, MachinePointerInfo(SrcValue), false, false,
2244 true,
2245 DL.getABITypeAlignment(VecVT.getTypeForEVT(F->getContext())));
Justin Holewinski44f5c602013-06-28 17:57:53 +00002246 if (P.getNode())
2247 P.getNode()->setIROrder(idx + 1);
2248
2249 SDValue Elt0 = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, EltVT, P,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00002250 DAG.getIntPtrConstant(0, dl));
Justin Holewinski44f5c602013-06-28 17:57:53 +00002251 SDValue Elt1 = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, EltVT, P,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00002252 DAG.getIntPtrConstant(1, dl));
Justin Holewinskif8f70912013-06-28 17:57:59 +00002253
2254 if (Ins[InsIdx].VT.getSizeInBits() > EltVT.getSizeInBits()) {
Justin Holewinskia2911282013-07-01 12:58:58 +00002255 Elt0 = DAG.getNode(ISD::ANY_EXTEND, dl, Ins[InsIdx].VT, Elt0);
2256 Elt1 = DAG.getNode(ISD::ANY_EXTEND, dl, Ins[InsIdx].VT, Elt1);
Justin Holewinskif8f70912013-06-28 17:57:59 +00002257 }
2258
Justin Holewinski44f5c602013-06-28 17:57:53 +00002259 InVals.push_back(Elt0);
2260 InVals.push_back(Elt1);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002261 InsIdx += 2;
2262 } else {
2263 // V4 loads
2264 // We have at least 4 elements (<3 x Ty> expands to 4 elements) and
2265 // the
2266 // vector will be expanded to a power of 2 elements, so we know we can
2267 // always round up to the next multiple of 4 when creating the vector
2268 // loads.
2269 // e.g. 4 elem => 1 ld.v4
2270 // 6 elem => 2 ld.v4
2271 // 8 elem => 2 ld.v4
2272 // 11 elem => 3 ld.v4
2273 unsigned VecSize = 4;
2274 if (EltVT.getSizeInBits() == 64) {
2275 VecSize = 2;
2276 }
2277 EVT VecVT = EVT::getVectorVT(F->getContext(), EltVT, VecSize);
Tilmann Scheller383b4ff2014-10-02 15:12:48 +00002278 unsigned Ofst = 0;
Justin Holewinski44f5c602013-06-28 17:57:53 +00002279 for (unsigned i = 0; i < NumElts; i += VecSize) {
2280 Value *SrcValue = Constant::getNullValue(
2281 PointerType::get(VecVT.getTypeForEVT(F->getContext()),
2282 llvm::ADDRESS_SPACE_PARAM));
Mehdi Amini44ede332015-07-09 02:09:04 +00002283 SDValue SrcAddr = DAG.getNode(ISD::ADD, dl, PtrVT, Arg,
2284 DAG.getConstant(Ofst, dl, PtrVT));
Justin Holewinski44f5c602013-06-28 17:57:53 +00002285 SDValue P = DAG.getLoad(
2286 VecVT, dl, Root, SrcAddr, MachinePointerInfo(SrcValue), false,
2287 false, true,
Mehdi Amini56228da2015-07-09 01:57:34 +00002288 DL.getABITypeAlignment(VecVT.getTypeForEVT(F->getContext())));
Justin Holewinski44f5c602013-06-28 17:57:53 +00002289 if (P.getNode())
2290 P.getNode()->setIROrder(idx + 1);
2291
2292 for (unsigned j = 0; j < VecSize; ++j) {
2293 if (i + j >= NumElts)
2294 break;
2295 SDValue Elt = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl, EltVT, P,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00002296 DAG.getIntPtrConstant(j, dl));
Justin Holewinskif8f70912013-06-28 17:57:59 +00002297 if (Ins[InsIdx].VT.getSizeInBits() > EltVT.getSizeInBits())
Justin Holewinskia2911282013-07-01 12:58:58 +00002298 Elt = DAG.getNode(ISD::ANY_EXTEND, dl, Ins[InsIdx].VT, Elt);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002299 InVals.push_back(Elt);
2300 }
Mehdi Amini56228da2015-07-09 01:57:34 +00002301 Ofst += DL.getTypeAllocSize(VecVT.getTypeForEVT(F->getContext()));
Justin Holewinski44f5c602013-06-28 17:57:53 +00002302 }
Justin Holewinski4f5bc9b2013-11-11 19:28:16 +00002303 InsIdx += NumElts;
Justin Holewinski44f5c602013-06-28 17:57:53 +00002304 }
2305
2306 if (NumElts > 0)
2307 --InsIdx;
2308 continue;
Justin Holewinskiae556d32012-05-04 20:18:50 +00002309 }
Justin Holewinski44f5c602013-06-28 17:57:53 +00002310 // A plain scalar.
Mehdi Amini44ede332015-07-09 02:09:04 +00002311 EVT ObjectVT = getValueType(DL, Ty);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002312 // If ABI, load from the param symbol
Mehdi Amini44ede332015-07-09 02:09:04 +00002313 SDValue Arg = getParamSymbol(DAG, idx, PtrVT);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002314 Value *srcValue = Constant::getNullValue(PointerType::get(
2315 ObjectVT.getTypeForEVT(F->getContext()), llvm::ADDRESS_SPACE_PARAM));
Justin Holewinskif8f70912013-06-28 17:57:59 +00002316 SDValue p;
Justin Holewinskia2911282013-07-01 12:58:58 +00002317 if (ObjectVT.getSizeInBits() < Ins[InsIdx].VT.getSizeInBits()) {
2318 ISD::LoadExtType ExtOp = Ins[InsIdx].Flags.isSExt() ?
2319 ISD::SEXTLOAD : ISD::ZEXTLOAD;
Mehdi Amini56228da2015-07-09 01:57:34 +00002320 p = DAG.getExtLoad(
2321 ExtOp, dl, Ins[InsIdx].VT, Root, Arg, MachinePointerInfo(srcValue),
2322 ObjectVT, false, false, false,
2323 DL.getABITypeAlignment(ObjectVT.getTypeForEVT(F->getContext())));
Justin Holewinskia2911282013-07-01 12:58:58 +00002324 } else {
Mehdi Amini56228da2015-07-09 01:57:34 +00002325 p = DAG.getLoad(
2326 Ins[InsIdx].VT, dl, Root, Arg, MachinePointerInfo(srcValue), false,
2327 false, false,
2328 DL.getABITypeAlignment(ObjectVT.getTypeForEVT(F->getContext())));
Justin Holewinskia2911282013-07-01 12:58:58 +00002329 }
Justin Holewinski44f5c602013-06-28 17:57:53 +00002330 if (p.getNode())
2331 p.getNode()->setIROrder(idx + 1);
2332 InVals.push_back(p);
Justin Holewinskiae556d32012-05-04 20:18:50 +00002333 continue;
2334 }
2335
2336 // Param has ByVal attribute
Justin Holewinski44f5c602013-06-28 17:57:53 +00002337 // Return MoveParam(param symbol).
2338 // Ideally, the param symbol can be returned directly,
2339 // but when SDNode builder decides to use it in a CopyToReg(),
2340 // machine instruction fails because TargetExternalSymbol
2341 // (not lowered) is target dependent, and CopyToReg assumes
2342 // the source is lowered.
Mehdi Amini44ede332015-07-09 02:09:04 +00002343 EVT ObjectVT = getValueType(DL, Ty);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002344 assert(ObjectVT == Ins[InsIdx].VT &&
2345 "Ins type did not match function type");
Mehdi Amini44ede332015-07-09 02:09:04 +00002346 SDValue Arg = getParamSymbol(DAG, idx, PtrVT);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002347 SDValue p = DAG.getNode(NVPTXISD::MoveParam, dl, ObjectVT, Arg);
2348 if (p.getNode())
2349 p.getNode()->setIROrder(idx + 1);
2350 if (isKernel)
2351 InVals.push_back(p);
2352 else {
2353 SDValue p2 = DAG.getNode(
2354 ISD::INTRINSIC_WO_CHAIN, dl, ObjectVT,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00002355 DAG.getConstant(Intrinsic::nvvm_ptr_local_to_gen, dl, MVT::i32), p);
Justin Holewinski44f5c602013-06-28 17:57:53 +00002356 InVals.push_back(p2);
Justin Holewinskiae556d32012-05-04 20:18:50 +00002357 }
2358 }
2359
2360 // Clang will check explicit VarArg and issue error if any. However, Clang
2361 // will let code with
Justin Holewinski44f5c602013-06-28 17:57:53 +00002362 // implicit var arg like f() pass. See bug 617733.
Justin Holewinskiae556d32012-05-04 20:18:50 +00002363 // We treat this case as if the arg list is empty.
Justin Holewinski44f5c602013-06-28 17:57:53 +00002364 // if (F.isVarArg()) {
Justin Holewinskiae556d32012-05-04 20:18:50 +00002365 // assert(0 && "VarArg not supported yet!");
2366 //}
2367
2368 if (!OutChains.empty())
Craig Topper48d114b2014-04-26 18:35:24 +00002369 DAG.setRoot(DAG.getNode(ISD::TokenFactor, dl, MVT::Other, OutChains));
Justin Holewinskiae556d32012-05-04 20:18:50 +00002370
2371 return Chain;
2372}
2373
Justin Holewinski44f5c602013-06-28 17:57:53 +00002374
Justin Holewinski120baee2013-06-28 17:57:55 +00002375SDValue
2376NVPTXTargetLowering::LowerReturn(SDValue Chain, CallingConv::ID CallConv,
2377 bool isVarArg,
2378 const SmallVectorImpl<ISD::OutputArg> &Outs,
2379 const SmallVectorImpl<SDValue> &OutVals,
2380 SDLoc dl, SelectionDAG &DAG) const {
2381 MachineFunction &MF = DAG.getMachineFunction();
2382 const Function *F = MF.getFunction();
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00002383 Type *RetTy = F->getReturnType();
Mehdi Amini44ede332015-07-09 02:09:04 +00002384 const DataLayout &TD = DAG.getDataLayout();
Justin Holewinskiae556d32012-05-04 20:18:50 +00002385
Eric Christopherbef0a372015-01-30 01:50:07 +00002386 bool isABI = (STI.getSmVersion() >= 20);
Justin Holewinski120baee2013-06-28 17:57:55 +00002387 assert(isABI && "Non-ABI compilation is not supported");
2388 if (!isABI)
2389 return Chain;
Justin Holewinskiae556d32012-05-04 20:18:50 +00002390
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00002391 if (VectorType *VTy = dyn_cast<VectorType>(RetTy)) {
Justin Holewinski120baee2013-06-28 17:57:55 +00002392 // If we have a vector type, the OutVals array will be the scalarized
2393 // components and we have combine them into 1 or more vector stores.
2394 unsigned NumElts = VTy->getNumElements();
2395 assert(NumElts == Outs.size() && "Bad scalarization of return value");
2396
Justin Holewinskif8f70912013-06-28 17:57:59 +00002397 // const_cast can be removed in later LLVM versions
Mehdi Amini44ede332015-07-09 02:09:04 +00002398 EVT EltVT = getValueType(TD, RetTy).getVectorElementType();
Justin Holewinskif8f70912013-06-28 17:57:59 +00002399 bool NeedExtend = false;
2400 if (EltVT.getSizeInBits() < 16)
2401 NeedExtend = true;
2402
Justin Holewinski120baee2013-06-28 17:57:55 +00002403 // V1 store
2404 if (NumElts == 1) {
2405 SDValue StoreVal = OutVals[0];
2406 // We only have one element, so just directly store it
Justin Holewinskif8f70912013-06-28 17:57:59 +00002407 if (NeedExtend)
2408 StoreVal = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, StoreVal);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00002409 SDValue Ops[] = { Chain, DAG.getConstant(0, dl, MVT::i32), StoreVal };
Justin Holewinskif8f70912013-06-28 17:57:59 +00002410 Chain = DAG.getMemIntrinsicNode(NVPTXISD::StoreRetval, dl,
Craig Topper206fcd42014-04-26 19:29:41 +00002411 DAG.getVTList(MVT::Other), Ops,
Justin Holewinskif8f70912013-06-28 17:57:59 +00002412 EltVT, MachinePointerInfo());
2413
Justin Holewinski120baee2013-06-28 17:57:55 +00002414 } else if (NumElts == 2) {
2415 // V2 store
2416 SDValue StoreVal0 = OutVals[0];
2417 SDValue StoreVal1 = OutVals[1];
2418
Justin Holewinskif8f70912013-06-28 17:57:59 +00002419 if (NeedExtend) {
2420 StoreVal0 = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, StoreVal0);
2421 StoreVal1 = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i16, StoreVal1);
Justin Holewinski120baee2013-06-28 17:57:55 +00002422 }
2423
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00002424 SDValue Ops[] = { Chain, DAG.getConstant(0, dl, MVT::i32), StoreVal0,
Justin Holewinskif8f70912013-06-28 17:57:59 +00002425 StoreVal1 };
2426 Chain = DAG.getMemIntrinsicNode(NVPTXISD::StoreRetvalV2, dl,
Craig Topper206fcd42014-04-26 19:29:41 +00002427 DAG.getVTList(MVT::Other), Ops,
Justin Holewinskif8f70912013-06-28 17:57:59 +00002428 EltVT, MachinePointerInfo());
Justin Holewinski120baee2013-06-28 17:57:55 +00002429 } else {
2430 // V4 stores
2431 // We have at least 4 elements (<3 x Ty> expands to 4 elements) and the
2432 // vector will be expanded to a power of 2 elements, so we know we can
2433 // always round up to the next multiple of 4 when creating the vector
2434 // stores.
2435 // e.g. 4 elem => 1 st.v4
2436 // 6 elem => 2 st.v4
2437 // 8 elem => 2 st.v4
2438 // 11 elem => 3 st.v4
2439
2440 unsigned VecSize = 4;
2441 if (OutVals[0].getValueType().getSizeInBits() == 64)
2442 VecSize = 2;
2443
2444 unsigned Offset = 0;
2445
2446 EVT VecVT =
Justin Holewinskib5db95e2014-06-27 18:36:04 +00002447 EVT::getVectorVT(F->getContext(), EltVT, VecSize);
Justin Holewinski120baee2013-06-28 17:57:55 +00002448 unsigned PerStoreOffset =
Mehdi Amini44ede332015-07-09 02:09:04 +00002449 TD.getTypeAllocSize(VecVT.getTypeForEVT(F->getContext()));
Justin Holewinski120baee2013-06-28 17:57:55 +00002450
Justin Holewinski120baee2013-06-28 17:57:55 +00002451 for (unsigned i = 0; i < NumElts; i += VecSize) {
2452 // Get values
2453 SDValue StoreVal;
2454 SmallVector<SDValue, 8> Ops;
2455 Ops.push_back(Chain);
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00002456 Ops.push_back(DAG.getConstant(Offset, dl, MVT::i32));
Justin Holewinski120baee2013-06-28 17:57:55 +00002457 unsigned Opc = NVPTXISD::StoreRetvalV2;
Justin Holewinskif8f70912013-06-28 17:57:59 +00002458 EVT ExtendedVT = (NeedExtend) ? MVT::i16 : OutVals[0].getValueType();
Justin Holewinski120baee2013-06-28 17:57:55 +00002459
2460 StoreVal = OutVals[i];
Justin Holewinskif8f70912013-06-28 17:57:59 +00002461 if (NeedExtend)
2462 StoreVal = DAG.getNode(ISD::ZERO_EXTEND, dl, ExtendedVT, StoreVal);
Justin Holewinski120baee2013-06-28 17:57:55 +00002463 Ops.push_back(StoreVal);
2464
2465 if (i + 1 < NumElts) {
2466 StoreVal = OutVals[i + 1];
Justin Holewinskif8f70912013-06-28 17:57:59 +00002467 if (NeedExtend)
2468 StoreVal = DAG.getNode(ISD::ZERO_EXTEND, dl, ExtendedVT, StoreVal);
Justin Holewinski120baee2013-06-28 17:57:55 +00002469 } else {
2470 StoreVal = DAG.getUNDEF(ExtendedVT);
2471 }
2472 Ops.push_back(StoreVal);
2473
2474 if (VecSize == 4) {
2475 Opc = NVPTXISD::StoreRetvalV4;
2476 if (i + 2 < NumElts) {
2477 StoreVal = OutVals[i + 2];
Justin Holewinskif8f70912013-06-28 17:57:59 +00002478 if (NeedExtend)
2479 StoreVal =
2480 DAG.getNode(ISD::ZERO_EXTEND, dl, ExtendedVT, StoreVal);
Justin Holewinski120baee2013-06-28 17:57:55 +00002481 } else {
2482 StoreVal = DAG.getUNDEF(ExtendedVT);
2483 }
2484 Ops.push_back(StoreVal);
2485
2486 if (i + 3 < NumElts) {
2487 StoreVal = OutVals[i + 3];
Justin Holewinskif8f70912013-06-28 17:57:59 +00002488 if (NeedExtend)
2489 StoreVal =
2490 DAG.getNode(ISD::ZERO_EXTEND, dl, ExtendedVT, StoreVal);
Justin Holewinski120baee2013-06-28 17:57:55 +00002491 } else {
2492 StoreVal = DAG.getUNDEF(ExtendedVT);
2493 }
2494 Ops.push_back(StoreVal);
2495 }
2496
Justin Holewinskif8f70912013-06-28 17:57:59 +00002497 // Chain = DAG.getNode(Opc, dl, MVT::Other, &Ops[0], Ops.size());
2498 Chain =
Craig Topper206fcd42014-04-26 19:29:41 +00002499 DAG.getMemIntrinsicNode(Opc, dl, DAG.getVTList(MVT::Other), Ops,
2500 EltVT, MachinePointerInfo());
Justin Holewinski120baee2013-06-28 17:57:55 +00002501 Offset += PerStoreOffset;
2502 }
2503 }
2504 } else {
Justin Holewinskif8f70912013-06-28 17:57:59 +00002505 SmallVector<EVT, 16> ValVTs;
Justin Holewinskib5db95e2014-06-27 18:36:04 +00002506 SmallVector<uint64_t, 16> Offsets;
Mehdi Amini56228da2015-07-09 01:57:34 +00002507 ComputePTXValueVTs(*this, DAG.getDataLayout(), RetTy, ValVTs, &Offsets, 0);
Justin Holewinskif8f70912013-06-28 17:57:59 +00002508 assert(ValVTs.size() == OutVals.size() && "Bad return value decomposition");
2509
Justin Holewinski120baee2013-06-28 17:57:55 +00002510 for (unsigned i = 0, e = Outs.size(); i != e; ++i) {
2511 SDValue theVal = OutVals[i];
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00002512 EVT TheValType = theVal.getValueType();
Justin Holewinski120baee2013-06-28 17:57:55 +00002513 unsigned numElems = 1;
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00002514 if (TheValType.isVector())
2515 numElems = TheValType.getVectorNumElements();
Justin Holewinski120baee2013-06-28 17:57:55 +00002516 for (unsigned j = 0, je = numElems; j != je; ++j) {
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00002517 SDValue TmpVal = theVal;
2518 if (TheValType.isVector())
2519 TmpVal = DAG.getNode(ISD::EXTRACT_VECTOR_ELT, dl,
2520 TheValType.getVectorElementType(), TmpVal,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00002521 DAG.getIntPtrConstant(j, dl));
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00002522 EVT TheStoreType = ValVTs[i];
Mehdi Amini44ede332015-07-09 02:09:04 +00002523 if (RetTy->isIntegerTy() && TD.getTypeAllocSizeInBits(RetTy) < 32) {
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00002524 // The following zero-extension is for integer types only, and
2525 // specifically not for aggregates.
2526 TmpVal = DAG.getNode(ISD::ZERO_EXTEND, dl, MVT::i32, TmpVal);
2527 TheStoreType = MVT::i32;
2528 }
2529 else if (TmpVal.getValueType().getSizeInBits() < 16)
2530 TmpVal = DAG.getNode(ISD::ANY_EXTEND, dl, MVT::i16, TmpVal);
2531
Justin Holewinskib5db95e2014-06-27 18:36:04 +00002532 SDValue Ops[] = {
2533 Chain,
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00002534 DAG.getConstant(Offsets[i], dl, MVT::i32),
Justin Holewinskib5db95e2014-06-27 18:36:04 +00002535 TmpVal };
Justin Holewinskif8f70912013-06-28 17:57:59 +00002536 Chain = DAG.getMemIntrinsicNode(NVPTXISD::StoreRetval, dl,
Craig Topper206fcd42014-04-26 19:29:41 +00002537 DAG.getVTList(MVT::Other), Ops,
2538 TheStoreType,
Justin Holewinskie04e4bd2013-06-28 17:58:10 +00002539 MachinePointerInfo());
Justin Holewinski120baee2013-06-28 17:57:55 +00002540 }
Justin Holewinskiae556d32012-05-04 20:18:50 +00002541 }
2542 }
2543
2544 return DAG.getNode(NVPTXISD::RET_FLAG, dl, MVT::Other, Chain);
2545}
2546
Justin Holewinskif8f70912013-06-28 17:57:59 +00002547
Justin Holewinski0497ab12013-03-30 14:29:21 +00002548void NVPTXTargetLowering::LowerAsmOperandForConstraint(
2549 SDValue Op, std::string &Constraint, std::vector<SDValue> &Ops,
2550 SelectionDAG &DAG) const {
Justin Holewinskiae556d32012-05-04 20:18:50 +00002551 if (Constraint.length() > 1)
2552 return;
2553 else
2554 TargetLowering::LowerAsmOperandForConstraint(Op, Constraint, Ops, DAG);
2555}
2556
Justin Holewinski30d56a72014-04-09 15:39:15 +00002557static unsigned getOpcForTextureInstr(unsigned Intrinsic) {
2558 switch (Intrinsic) {
2559 default:
2560 return 0;
2561
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002562 case Intrinsic::nvvm_tex_1d_v4f32_s32:
2563 return NVPTXISD::Tex1DFloatS32;
Justin Holewinski30d56a72014-04-09 15:39:15 +00002564 case Intrinsic::nvvm_tex_1d_v4f32_f32:
2565 return NVPTXISD::Tex1DFloatFloat;
2566 case Intrinsic::nvvm_tex_1d_level_v4f32_f32:
2567 return NVPTXISD::Tex1DFloatFloatLevel;
2568 case Intrinsic::nvvm_tex_1d_grad_v4f32_f32:
2569 return NVPTXISD::Tex1DFloatFloatGrad;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002570 case Intrinsic::nvvm_tex_1d_v4s32_s32:
2571 return NVPTXISD::Tex1DS32S32;
2572 case Intrinsic::nvvm_tex_1d_v4s32_f32:
2573 return NVPTXISD::Tex1DS32Float;
2574 case Intrinsic::nvvm_tex_1d_level_v4s32_f32:
2575 return NVPTXISD::Tex1DS32FloatLevel;
2576 case Intrinsic::nvvm_tex_1d_grad_v4s32_f32:
2577 return NVPTXISD::Tex1DS32FloatGrad;
2578 case Intrinsic::nvvm_tex_1d_v4u32_s32:
2579 return NVPTXISD::Tex1DU32S32;
2580 case Intrinsic::nvvm_tex_1d_v4u32_f32:
2581 return NVPTXISD::Tex1DU32Float;
2582 case Intrinsic::nvvm_tex_1d_level_v4u32_f32:
2583 return NVPTXISD::Tex1DU32FloatLevel;
2584 case Intrinsic::nvvm_tex_1d_grad_v4u32_f32:
2585 return NVPTXISD::Tex1DU32FloatGrad;
Justin Holewinski30d56a72014-04-09 15:39:15 +00002586
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002587 case Intrinsic::nvvm_tex_1d_array_v4f32_s32:
2588 return NVPTXISD::Tex1DArrayFloatS32;
Justin Holewinski30d56a72014-04-09 15:39:15 +00002589 case Intrinsic::nvvm_tex_1d_array_v4f32_f32:
2590 return NVPTXISD::Tex1DArrayFloatFloat;
2591 case Intrinsic::nvvm_tex_1d_array_level_v4f32_f32:
2592 return NVPTXISD::Tex1DArrayFloatFloatLevel;
2593 case Intrinsic::nvvm_tex_1d_array_grad_v4f32_f32:
2594 return NVPTXISD::Tex1DArrayFloatFloatGrad;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002595 case Intrinsic::nvvm_tex_1d_array_v4s32_s32:
2596 return NVPTXISD::Tex1DArrayS32S32;
2597 case Intrinsic::nvvm_tex_1d_array_v4s32_f32:
2598 return NVPTXISD::Tex1DArrayS32Float;
2599 case Intrinsic::nvvm_tex_1d_array_level_v4s32_f32:
2600 return NVPTXISD::Tex1DArrayS32FloatLevel;
2601 case Intrinsic::nvvm_tex_1d_array_grad_v4s32_f32:
2602 return NVPTXISD::Tex1DArrayS32FloatGrad;
2603 case Intrinsic::nvvm_tex_1d_array_v4u32_s32:
2604 return NVPTXISD::Tex1DArrayU32S32;
2605 case Intrinsic::nvvm_tex_1d_array_v4u32_f32:
2606 return NVPTXISD::Tex1DArrayU32Float;
2607 case Intrinsic::nvvm_tex_1d_array_level_v4u32_f32:
2608 return NVPTXISD::Tex1DArrayU32FloatLevel;
2609 case Intrinsic::nvvm_tex_1d_array_grad_v4u32_f32:
2610 return NVPTXISD::Tex1DArrayU32FloatGrad;
Justin Holewinski30d56a72014-04-09 15:39:15 +00002611
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002612 case Intrinsic::nvvm_tex_2d_v4f32_s32:
2613 return NVPTXISD::Tex2DFloatS32;
Justin Holewinski30d56a72014-04-09 15:39:15 +00002614 case Intrinsic::nvvm_tex_2d_v4f32_f32:
2615 return NVPTXISD::Tex2DFloatFloat;
2616 case Intrinsic::nvvm_tex_2d_level_v4f32_f32:
2617 return NVPTXISD::Tex2DFloatFloatLevel;
2618 case Intrinsic::nvvm_tex_2d_grad_v4f32_f32:
2619 return NVPTXISD::Tex2DFloatFloatGrad;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002620 case Intrinsic::nvvm_tex_2d_v4s32_s32:
2621 return NVPTXISD::Tex2DS32S32;
2622 case Intrinsic::nvvm_tex_2d_v4s32_f32:
2623 return NVPTXISD::Tex2DS32Float;
2624 case Intrinsic::nvvm_tex_2d_level_v4s32_f32:
2625 return NVPTXISD::Tex2DS32FloatLevel;
2626 case Intrinsic::nvvm_tex_2d_grad_v4s32_f32:
2627 return NVPTXISD::Tex2DS32FloatGrad;
2628 case Intrinsic::nvvm_tex_2d_v4u32_s32:
2629 return NVPTXISD::Tex2DU32S32;
2630 case Intrinsic::nvvm_tex_2d_v4u32_f32:
2631 return NVPTXISD::Tex2DU32Float;
2632 case Intrinsic::nvvm_tex_2d_level_v4u32_f32:
2633 return NVPTXISD::Tex2DU32FloatLevel;
2634 case Intrinsic::nvvm_tex_2d_grad_v4u32_f32:
2635 return NVPTXISD::Tex2DU32FloatGrad;
Justin Holewinski30d56a72014-04-09 15:39:15 +00002636
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002637 case Intrinsic::nvvm_tex_2d_array_v4f32_s32:
2638 return NVPTXISD::Tex2DArrayFloatS32;
Justin Holewinski30d56a72014-04-09 15:39:15 +00002639 case Intrinsic::nvvm_tex_2d_array_v4f32_f32:
2640 return NVPTXISD::Tex2DArrayFloatFloat;
2641 case Intrinsic::nvvm_tex_2d_array_level_v4f32_f32:
2642 return NVPTXISD::Tex2DArrayFloatFloatLevel;
2643 case Intrinsic::nvvm_tex_2d_array_grad_v4f32_f32:
2644 return NVPTXISD::Tex2DArrayFloatFloatGrad;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002645 case Intrinsic::nvvm_tex_2d_array_v4s32_s32:
2646 return NVPTXISD::Tex2DArrayS32S32;
2647 case Intrinsic::nvvm_tex_2d_array_v4s32_f32:
2648 return NVPTXISD::Tex2DArrayS32Float;
2649 case Intrinsic::nvvm_tex_2d_array_level_v4s32_f32:
2650 return NVPTXISD::Tex2DArrayS32FloatLevel;
2651 case Intrinsic::nvvm_tex_2d_array_grad_v4s32_f32:
2652 return NVPTXISD::Tex2DArrayS32FloatGrad;
2653 case Intrinsic::nvvm_tex_2d_array_v4u32_s32:
2654 return NVPTXISD::Tex2DArrayU32S32;
2655 case Intrinsic::nvvm_tex_2d_array_v4u32_f32:
2656 return NVPTXISD::Tex2DArrayU32Float;
2657 case Intrinsic::nvvm_tex_2d_array_level_v4u32_f32:
2658 return NVPTXISD::Tex2DArrayU32FloatLevel;
2659 case Intrinsic::nvvm_tex_2d_array_grad_v4u32_f32:
2660 return NVPTXISD::Tex2DArrayU32FloatGrad;
Justin Holewinski30d56a72014-04-09 15:39:15 +00002661
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002662 case Intrinsic::nvvm_tex_3d_v4f32_s32:
2663 return NVPTXISD::Tex3DFloatS32;
Justin Holewinski30d56a72014-04-09 15:39:15 +00002664 case Intrinsic::nvvm_tex_3d_v4f32_f32:
2665 return NVPTXISD::Tex3DFloatFloat;
2666 case Intrinsic::nvvm_tex_3d_level_v4f32_f32:
2667 return NVPTXISD::Tex3DFloatFloatLevel;
2668 case Intrinsic::nvvm_tex_3d_grad_v4f32_f32:
2669 return NVPTXISD::Tex3DFloatFloatGrad;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002670 case Intrinsic::nvvm_tex_3d_v4s32_s32:
2671 return NVPTXISD::Tex3DS32S32;
2672 case Intrinsic::nvvm_tex_3d_v4s32_f32:
2673 return NVPTXISD::Tex3DS32Float;
2674 case Intrinsic::nvvm_tex_3d_level_v4s32_f32:
2675 return NVPTXISD::Tex3DS32FloatLevel;
2676 case Intrinsic::nvvm_tex_3d_grad_v4s32_f32:
2677 return NVPTXISD::Tex3DS32FloatGrad;
2678 case Intrinsic::nvvm_tex_3d_v4u32_s32:
2679 return NVPTXISD::Tex3DU32S32;
2680 case Intrinsic::nvvm_tex_3d_v4u32_f32:
2681 return NVPTXISD::Tex3DU32Float;
2682 case Intrinsic::nvvm_tex_3d_level_v4u32_f32:
2683 return NVPTXISD::Tex3DU32FloatLevel;
2684 case Intrinsic::nvvm_tex_3d_grad_v4u32_f32:
2685 return NVPTXISD::Tex3DU32FloatGrad;
2686
2687 case Intrinsic::nvvm_tex_cube_v4f32_f32:
2688 return NVPTXISD::TexCubeFloatFloat;
2689 case Intrinsic::nvvm_tex_cube_level_v4f32_f32:
2690 return NVPTXISD::TexCubeFloatFloatLevel;
2691 case Intrinsic::nvvm_tex_cube_v4s32_f32:
2692 return NVPTXISD::TexCubeS32Float;
2693 case Intrinsic::nvvm_tex_cube_level_v4s32_f32:
2694 return NVPTXISD::TexCubeS32FloatLevel;
2695 case Intrinsic::nvvm_tex_cube_v4u32_f32:
2696 return NVPTXISD::TexCubeU32Float;
2697 case Intrinsic::nvvm_tex_cube_level_v4u32_f32:
2698 return NVPTXISD::TexCubeU32FloatLevel;
2699
2700 case Intrinsic::nvvm_tex_cube_array_v4f32_f32:
2701 return NVPTXISD::TexCubeArrayFloatFloat;
2702 case Intrinsic::nvvm_tex_cube_array_level_v4f32_f32:
2703 return NVPTXISD::TexCubeArrayFloatFloatLevel;
2704 case Intrinsic::nvvm_tex_cube_array_v4s32_f32:
2705 return NVPTXISD::TexCubeArrayS32Float;
2706 case Intrinsic::nvvm_tex_cube_array_level_v4s32_f32:
2707 return NVPTXISD::TexCubeArrayS32FloatLevel;
2708 case Intrinsic::nvvm_tex_cube_array_v4u32_f32:
2709 return NVPTXISD::TexCubeArrayU32Float;
2710 case Intrinsic::nvvm_tex_cube_array_level_v4u32_f32:
2711 return NVPTXISD::TexCubeArrayU32FloatLevel;
2712
2713 case Intrinsic::nvvm_tld4_r_2d_v4f32_f32:
2714 return NVPTXISD::Tld4R2DFloatFloat;
2715 case Intrinsic::nvvm_tld4_g_2d_v4f32_f32:
2716 return NVPTXISD::Tld4G2DFloatFloat;
2717 case Intrinsic::nvvm_tld4_b_2d_v4f32_f32:
2718 return NVPTXISD::Tld4B2DFloatFloat;
2719 case Intrinsic::nvvm_tld4_a_2d_v4f32_f32:
2720 return NVPTXISD::Tld4A2DFloatFloat;
2721 case Intrinsic::nvvm_tld4_r_2d_v4s32_f32:
2722 return NVPTXISD::Tld4R2DS64Float;
2723 case Intrinsic::nvvm_tld4_g_2d_v4s32_f32:
2724 return NVPTXISD::Tld4G2DS64Float;
2725 case Intrinsic::nvvm_tld4_b_2d_v4s32_f32:
2726 return NVPTXISD::Tld4B2DS64Float;
2727 case Intrinsic::nvvm_tld4_a_2d_v4s32_f32:
2728 return NVPTXISD::Tld4A2DS64Float;
2729 case Intrinsic::nvvm_tld4_r_2d_v4u32_f32:
2730 return NVPTXISD::Tld4R2DU64Float;
2731 case Intrinsic::nvvm_tld4_g_2d_v4u32_f32:
2732 return NVPTXISD::Tld4G2DU64Float;
2733 case Intrinsic::nvvm_tld4_b_2d_v4u32_f32:
2734 return NVPTXISD::Tld4B2DU64Float;
2735 case Intrinsic::nvvm_tld4_a_2d_v4u32_f32:
2736 return NVPTXISD::Tld4A2DU64Float;
2737
2738 case Intrinsic::nvvm_tex_unified_1d_v4f32_s32:
2739 return NVPTXISD::TexUnified1DFloatS32;
2740 case Intrinsic::nvvm_tex_unified_1d_v4f32_f32:
2741 return NVPTXISD::TexUnified1DFloatFloat;
2742 case Intrinsic::nvvm_tex_unified_1d_level_v4f32_f32:
2743 return NVPTXISD::TexUnified1DFloatFloatLevel;
2744 case Intrinsic::nvvm_tex_unified_1d_grad_v4f32_f32:
2745 return NVPTXISD::TexUnified1DFloatFloatGrad;
2746 case Intrinsic::nvvm_tex_unified_1d_v4s32_s32:
2747 return NVPTXISD::TexUnified1DS32S32;
2748 case Intrinsic::nvvm_tex_unified_1d_v4s32_f32:
2749 return NVPTXISD::TexUnified1DS32Float;
2750 case Intrinsic::nvvm_tex_unified_1d_level_v4s32_f32:
2751 return NVPTXISD::TexUnified1DS32FloatLevel;
2752 case Intrinsic::nvvm_tex_unified_1d_grad_v4s32_f32:
2753 return NVPTXISD::TexUnified1DS32FloatGrad;
2754 case Intrinsic::nvvm_tex_unified_1d_v4u32_s32:
2755 return NVPTXISD::TexUnified1DU32S32;
2756 case Intrinsic::nvvm_tex_unified_1d_v4u32_f32:
2757 return NVPTXISD::TexUnified1DU32Float;
2758 case Intrinsic::nvvm_tex_unified_1d_level_v4u32_f32:
2759 return NVPTXISD::TexUnified1DU32FloatLevel;
2760 case Intrinsic::nvvm_tex_unified_1d_grad_v4u32_f32:
2761 return NVPTXISD::TexUnified1DU32FloatGrad;
2762
2763 case Intrinsic::nvvm_tex_unified_1d_array_v4f32_s32:
2764 return NVPTXISD::TexUnified1DArrayFloatS32;
2765 case Intrinsic::nvvm_tex_unified_1d_array_v4f32_f32:
2766 return NVPTXISD::TexUnified1DArrayFloatFloat;
2767 case Intrinsic::nvvm_tex_unified_1d_array_level_v4f32_f32:
2768 return NVPTXISD::TexUnified1DArrayFloatFloatLevel;
2769 case Intrinsic::nvvm_tex_unified_1d_array_grad_v4f32_f32:
2770 return NVPTXISD::TexUnified1DArrayFloatFloatGrad;
2771 case Intrinsic::nvvm_tex_unified_1d_array_v4s32_s32:
2772 return NVPTXISD::TexUnified1DArrayS32S32;
2773 case Intrinsic::nvvm_tex_unified_1d_array_v4s32_f32:
2774 return NVPTXISD::TexUnified1DArrayS32Float;
2775 case Intrinsic::nvvm_tex_unified_1d_array_level_v4s32_f32:
2776 return NVPTXISD::TexUnified1DArrayS32FloatLevel;
2777 case Intrinsic::nvvm_tex_unified_1d_array_grad_v4s32_f32:
2778 return NVPTXISD::TexUnified1DArrayS32FloatGrad;
2779 case Intrinsic::nvvm_tex_unified_1d_array_v4u32_s32:
2780 return NVPTXISD::TexUnified1DArrayU32S32;
2781 case Intrinsic::nvvm_tex_unified_1d_array_v4u32_f32:
2782 return NVPTXISD::TexUnified1DArrayU32Float;
2783 case Intrinsic::nvvm_tex_unified_1d_array_level_v4u32_f32:
2784 return NVPTXISD::TexUnified1DArrayU32FloatLevel;
2785 case Intrinsic::nvvm_tex_unified_1d_array_grad_v4u32_f32:
2786 return NVPTXISD::TexUnified1DArrayU32FloatGrad;
2787
2788 case Intrinsic::nvvm_tex_unified_2d_v4f32_s32:
2789 return NVPTXISD::TexUnified2DFloatS32;
2790 case Intrinsic::nvvm_tex_unified_2d_v4f32_f32:
2791 return NVPTXISD::TexUnified2DFloatFloat;
2792 case Intrinsic::nvvm_tex_unified_2d_level_v4f32_f32:
2793 return NVPTXISD::TexUnified2DFloatFloatLevel;
2794 case Intrinsic::nvvm_tex_unified_2d_grad_v4f32_f32:
2795 return NVPTXISD::TexUnified2DFloatFloatGrad;
2796 case Intrinsic::nvvm_tex_unified_2d_v4s32_s32:
2797 return NVPTXISD::TexUnified2DS32S32;
2798 case Intrinsic::nvvm_tex_unified_2d_v4s32_f32:
2799 return NVPTXISD::TexUnified2DS32Float;
2800 case Intrinsic::nvvm_tex_unified_2d_level_v4s32_f32:
2801 return NVPTXISD::TexUnified2DS32FloatLevel;
2802 case Intrinsic::nvvm_tex_unified_2d_grad_v4s32_f32:
2803 return NVPTXISD::TexUnified2DS32FloatGrad;
2804 case Intrinsic::nvvm_tex_unified_2d_v4u32_s32:
2805 return NVPTXISD::TexUnified2DU32S32;
2806 case Intrinsic::nvvm_tex_unified_2d_v4u32_f32:
2807 return NVPTXISD::TexUnified2DU32Float;
2808 case Intrinsic::nvvm_tex_unified_2d_level_v4u32_f32:
2809 return NVPTXISD::TexUnified2DU32FloatLevel;
2810 case Intrinsic::nvvm_tex_unified_2d_grad_v4u32_f32:
2811 return NVPTXISD::TexUnified2DU32FloatGrad;
2812
2813 case Intrinsic::nvvm_tex_unified_2d_array_v4f32_s32:
2814 return NVPTXISD::TexUnified2DArrayFloatS32;
2815 case Intrinsic::nvvm_tex_unified_2d_array_v4f32_f32:
2816 return NVPTXISD::TexUnified2DArrayFloatFloat;
2817 case Intrinsic::nvvm_tex_unified_2d_array_level_v4f32_f32:
2818 return NVPTXISD::TexUnified2DArrayFloatFloatLevel;
2819 case Intrinsic::nvvm_tex_unified_2d_array_grad_v4f32_f32:
2820 return NVPTXISD::TexUnified2DArrayFloatFloatGrad;
2821 case Intrinsic::nvvm_tex_unified_2d_array_v4s32_s32:
2822 return NVPTXISD::TexUnified2DArrayS32S32;
2823 case Intrinsic::nvvm_tex_unified_2d_array_v4s32_f32:
2824 return NVPTXISD::TexUnified2DArrayS32Float;
2825 case Intrinsic::nvvm_tex_unified_2d_array_level_v4s32_f32:
2826 return NVPTXISD::TexUnified2DArrayS32FloatLevel;
2827 case Intrinsic::nvvm_tex_unified_2d_array_grad_v4s32_f32:
2828 return NVPTXISD::TexUnified2DArrayS32FloatGrad;
2829 case Intrinsic::nvvm_tex_unified_2d_array_v4u32_s32:
2830 return NVPTXISD::TexUnified2DArrayU32S32;
2831 case Intrinsic::nvvm_tex_unified_2d_array_v4u32_f32:
2832 return NVPTXISD::TexUnified2DArrayU32Float;
2833 case Intrinsic::nvvm_tex_unified_2d_array_level_v4u32_f32:
2834 return NVPTXISD::TexUnified2DArrayU32FloatLevel;
2835 case Intrinsic::nvvm_tex_unified_2d_array_grad_v4u32_f32:
2836 return NVPTXISD::TexUnified2DArrayU32FloatGrad;
2837
2838 case Intrinsic::nvvm_tex_unified_3d_v4f32_s32:
2839 return NVPTXISD::TexUnified3DFloatS32;
2840 case Intrinsic::nvvm_tex_unified_3d_v4f32_f32:
2841 return NVPTXISD::TexUnified3DFloatFloat;
2842 case Intrinsic::nvvm_tex_unified_3d_level_v4f32_f32:
2843 return NVPTXISD::TexUnified3DFloatFloatLevel;
2844 case Intrinsic::nvvm_tex_unified_3d_grad_v4f32_f32:
2845 return NVPTXISD::TexUnified3DFloatFloatGrad;
2846 case Intrinsic::nvvm_tex_unified_3d_v4s32_s32:
2847 return NVPTXISD::TexUnified3DS32S32;
2848 case Intrinsic::nvvm_tex_unified_3d_v4s32_f32:
2849 return NVPTXISD::TexUnified3DS32Float;
2850 case Intrinsic::nvvm_tex_unified_3d_level_v4s32_f32:
2851 return NVPTXISD::TexUnified3DS32FloatLevel;
2852 case Intrinsic::nvvm_tex_unified_3d_grad_v4s32_f32:
2853 return NVPTXISD::TexUnified3DS32FloatGrad;
2854 case Intrinsic::nvvm_tex_unified_3d_v4u32_s32:
2855 return NVPTXISD::TexUnified3DU32S32;
2856 case Intrinsic::nvvm_tex_unified_3d_v4u32_f32:
2857 return NVPTXISD::TexUnified3DU32Float;
2858 case Intrinsic::nvvm_tex_unified_3d_level_v4u32_f32:
2859 return NVPTXISD::TexUnified3DU32FloatLevel;
2860 case Intrinsic::nvvm_tex_unified_3d_grad_v4u32_f32:
2861 return NVPTXISD::TexUnified3DU32FloatGrad;
2862
2863 case Intrinsic::nvvm_tex_unified_cube_v4f32_f32:
2864 return NVPTXISD::TexUnifiedCubeFloatFloat;
2865 case Intrinsic::nvvm_tex_unified_cube_level_v4f32_f32:
2866 return NVPTXISD::TexUnifiedCubeFloatFloatLevel;
2867 case Intrinsic::nvvm_tex_unified_cube_v4s32_f32:
2868 return NVPTXISD::TexUnifiedCubeS32Float;
2869 case Intrinsic::nvvm_tex_unified_cube_level_v4s32_f32:
2870 return NVPTXISD::TexUnifiedCubeS32FloatLevel;
2871 case Intrinsic::nvvm_tex_unified_cube_v4u32_f32:
2872 return NVPTXISD::TexUnifiedCubeU32Float;
2873 case Intrinsic::nvvm_tex_unified_cube_level_v4u32_f32:
2874 return NVPTXISD::TexUnifiedCubeU32FloatLevel;
2875
2876 case Intrinsic::nvvm_tex_unified_cube_array_v4f32_f32:
2877 return NVPTXISD::TexUnifiedCubeArrayFloatFloat;
2878 case Intrinsic::nvvm_tex_unified_cube_array_level_v4f32_f32:
2879 return NVPTXISD::TexUnifiedCubeArrayFloatFloatLevel;
2880 case Intrinsic::nvvm_tex_unified_cube_array_v4s32_f32:
2881 return NVPTXISD::TexUnifiedCubeArrayS32Float;
2882 case Intrinsic::nvvm_tex_unified_cube_array_level_v4s32_f32:
2883 return NVPTXISD::TexUnifiedCubeArrayS32FloatLevel;
2884 case Intrinsic::nvvm_tex_unified_cube_array_v4u32_f32:
2885 return NVPTXISD::TexUnifiedCubeArrayU32Float;
2886 case Intrinsic::nvvm_tex_unified_cube_array_level_v4u32_f32:
2887 return NVPTXISD::TexUnifiedCubeArrayU32FloatLevel;
2888
2889 case Intrinsic::nvvm_tld4_unified_r_2d_v4f32_f32:
2890 return NVPTXISD::Tld4UnifiedR2DFloatFloat;
2891 case Intrinsic::nvvm_tld4_unified_g_2d_v4f32_f32:
2892 return NVPTXISD::Tld4UnifiedG2DFloatFloat;
2893 case Intrinsic::nvvm_tld4_unified_b_2d_v4f32_f32:
2894 return NVPTXISD::Tld4UnifiedB2DFloatFloat;
2895 case Intrinsic::nvvm_tld4_unified_a_2d_v4f32_f32:
2896 return NVPTXISD::Tld4UnifiedA2DFloatFloat;
2897 case Intrinsic::nvvm_tld4_unified_r_2d_v4s32_f32:
2898 return NVPTXISD::Tld4UnifiedR2DS64Float;
2899 case Intrinsic::nvvm_tld4_unified_g_2d_v4s32_f32:
2900 return NVPTXISD::Tld4UnifiedG2DS64Float;
2901 case Intrinsic::nvvm_tld4_unified_b_2d_v4s32_f32:
2902 return NVPTXISD::Tld4UnifiedB2DS64Float;
2903 case Intrinsic::nvvm_tld4_unified_a_2d_v4s32_f32:
2904 return NVPTXISD::Tld4UnifiedA2DS64Float;
2905 case Intrinsic::nvvm_tld4_unified_r_2d_v4u32_f32:
2906 return NVPTXISD::Tld4UnifiedR2DU64Float;
2907 case Intrinsic::nvvm_tld4_unified_g_2d_v4u32_f32:
2908 return NVPTXISD::Tld4UnifiedG2DU64Float;
2909 case Intrinsic::nvvm_tld4_unified_b_2d_v4u32_f32:
2910 return NVPTXISD::Tld4UnifiedB2DU64Float;
2911 case Intrinsic::nvvm_tld4_unified_a_2d_v4u32_f32:
2912 return NVPTXISD::Tld4UnifiedA2DU64Float;
Justin Holewinski30d56a72014-04-09 15:39:15 +00002913 }
2914}
2915
2916static unsigned getOpcForSurfaceInstr(unsigned Intrinsic) {
2917 switch (Intrinsic) {
2918 default:
2919 return 0;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00002920 case Intrinsic::nvvm_suld_1d_i8_clamp:
2921 return NVPTXISD::Suld1DI8Clamp;
2922 case Intrinsic::nvvm_suld_1d_i16_clamp:
2923 return NVPTXISD::Suld1DI16Clamp;
2924 case Intrinsic::nvvm_suld_1d_i32_clamp:
2925 return NVPTXISD::Suld1DI32Clamp;
2926 case Intrinsic::nvvm_suld_1d_i64_clamp:
2927 return NVPTXISD::Suld1DI64Clamp;
2928 case Intrinsic::nvvm_suld_1d_v2i8_clamp:
2929 return NVPTXISD::Suld1DV2I8Clamp;
2930 case Intrinsic::nvvm_suld_1d_v2i16_clamp:
2931 return NVPTXISD::Suld1DV2I16Clamp;
2932 case Intrinsic::nvvm_suld_1d_v2i32_clamp:
2933 return NVPTXISD::Suld1DV2I32Clamp;
2934 case Intrinsic::nvvm_suld_1d_v2i64_clamp:
2935 return NVPTXISD::Suld1DV2I64Clamp;
2936 case Intrinsic::nvvm_suld_1d_v4i8_clamp:
2937 return NVPTXISD::Suld1DV4I8Clamp;
2938 case Intrinsic::nvvm_suld_1d_v4i16_clamp:
2939 return NVPTXISD::Suld1DV4I16Clamp;
2940 case Intrinsic::nvvm_suld_1d_v4i32_clamp:
2941 return NVPTXISD::Suld1DV4I32Clamp;
2942 case Intrinsic::nvvm_suld_1d_array_i8_clamp:
2943 return NVPTXISD::Suld1DArrayI8Clamp;
2944 case Intrinsic::nvvm_suld_1d_array_i16_clamp:
2945 return NVPTXISD::Suld1DArrayI16Clamp;
2946 case Intrinsic::nvvm_suld_1d_array_i32_clamp:
2947 return NVPTXISD::Suld1DArrayI32Clamp;
2948 case Intrinsic::nvvm_suld_1d_array_i64_clamp:
2949 return NVPTXISD::Suld1DArrayI64Clamp;
2950 case Intrinsic::nvvm_suld_1d_array_v2i8_clamp:
2951 return NVPTXISD::Suld1DArrayV2I8Clamp;
2952 case Intrinsic::nvvm_suld_1d_array_v2i16_clamp:
2953 return NVPTXISD::Suld1DArrayV2I16Clamp;
2954 case Intrinsic::nvvm_suld_1d_array_v2i32_clamp:
2955 return NVPTXISD::Suld1DArrayV2I32Clamp;
2956 case Intrinsic::nvvm_suld_1d_array_v2i64_clamp:
2957 return NVPTXISD::Suld1DArrayV2I64Clamp;
2958 case Intrinsic::nvvm_suld_1d_array_v4i8_clamp:
2959 return NVPTXISD::Suld1DArrayV4I8Clamp;
2960 case Intrinsic::nvvm_suld_1d_array_v4i16_clamp:
2961 return NVPTXISD::Suld1DArrayV4I16Clamp;
2962 case Intrinsic::nvvm_suld_1d_array_v4i32_clamp:
2963 return NVPTXISD::Suld1DArrayV4I32Clamp;
2964 case Intrinsic::nvvm_suld_2d_i8_clamp:
2965 return NVPTXISD::Suld2DI8Clamp;
2966 case Intrinsic::nvvm_suld_2d_i16_clamp:
2967 return NVPTXISD::Suld2DI16Clamp;
2968 case Intrinsic::nvvm_suld_2d_i32_clamp:
2969 return NVPTXISD::Suld2DI32Clamp;
2970 case Intrinsic::nvvm_suld_2d_i64_clamp:
2971 return NVPTXISD::Suld2DI64Clamp;
2972 case Intrinsic::nvvm_suld_2d_v2i8_clamp:
2973 return NVPTXISD::Suld2DV2I8Clamp;
2974 case Intrinsic::nvvm_suld_2d_v2i16_clamp:
2975 return NVPTXISD::Suld2DV2I16Clamp;
2976 case Intrinsic::nvvm_suld_2d_v2i32_clamp:
2977 return NVPTXISD::Suld2DV2I32Clamp;
2978 case Intrinsic::nvvm_suld_2d_v2i64_clamp:
2979 return NVPTXISD::Suld2DV2I64Clamp;
2980 case Intrinsic::nvvm_suld_2d_v4i8_clamp:
2981 return NVPTXISD::Suld2DV4I8Clamp;
2982 case Intrinsic::nvvm_suld_2d_v4i16_clamp:
2983 return NVPTXISD::Suld2DV4I16Clamp;
2984 case Intrinsic::nvvm_suld_2d_v4i32_clamp:
2985 return NVPTXISD::Suld2DV4I32Clamp;
2986 case Intrinsic::nvvm_suld_2d_array_i8_clamp:
2987 return NVPTXISD::Suld2DArrayI8Clamp;
2988 case Intrinsic::nvvm_suld_2d_array_i16_clamp:
2989 return NVPTXISD::Suld2DArrayI16Clamp;
2990 case Intrinsic::nvvm_suld_2d_array_i32_clamp:
2991 return NVPTXISD::Suld2DArrayI32Clamp;
2992 case Intrinsic::nvvm_suld_2d_array_i64_clamp:
2993 return NVPTXISD::Suld2DArrayI64Clamp;
2994 case Intrinsic::nvvm_suld_2d_array_v2i8_clamp:
2995 return NVPTXISD::Suld2DArrayV2I8Clamp;
2996 case Intrinsic::nvvm_suld_2d_array_v2i16_clamp:
2997 return NVPTXISD::Suld2DArrayV2I16Clamp;
2998 case Intrinsic::nvvm_suld_2d_array_v2i32_clamp:
2999 return NVPTXISD::Suld2DArrayV2I32Clamp;
3000 case Intrinsic::nvvm_suld_2d_array_v2i64_clamp:
3001 return NVPTXISD::Suld2DArrayV2I64Clamp;
3002 case Intrinsic::nvvm_suld_2d_array_v4i8_clamp:
3003 return NVPTXISD::Suld2DArrayV4I8Clamp;
3004 case Intrinsic::nvvm_suld_2d_array_v4i16_clamp:
3005 return NVPTXISD::Suld2DArrayV4I16Clamp;
3006 case Intrinsic::nvvm_suld_2d_array_v4i32_clamp:
3007 return NVPTXISD::Suld2DArrayV4I32Clamp;
3008 case Intrinsic::nvvm_suld_3d_i8_clamp:
3009 return NVPTXISD::Suld3DI8Clamp;
3010 case Intrinsic::nvvm_suld_3d_i16_clamp:
3011 return NVPTXISD::Suld3DI16Clamp;
3012 case Intrinsic::nvvm_suld_3d_i32_clamp:
3013 return NVPTXISD::Suld3DI32Clamp;
3014 case Intrinsic::nvvm_suld_3d_i64_clamp:
3015 return NVPTXISD::Suld3DI64Clamp;
3016 case Intrinsic::nvvm_suld_3d_v2i8_clamp:
3017 return NVPTXISD::Suld3DV2I8Clamp;
3018 case Intrinsic::nvvm_suld_3d_v2i16_clamp:
3019 return NVPTXISD::Suld3DV2I16Clamp;
3020 case Intrinsic::nvvm_suld_3d_v2i32_clamp:
3021 return NVPTXISD::Suld3DV2I32Clamp;
3022 case Intrinsic::nvvm_suld_3d_v2i64_clamp:
3023 return NVPTXISD::Suld3DV2I64Clamp;
3024 case Intrinsic::nvvm_suld_3d_v4i8_clamp:
3025 return NVPTXISD::Suld3DV4I8Clamp;
3026 case Intrinsic::nvvm_suld_3d_v4i16_clamp:
3027 return NVPTXISD::Suld3DV4I16Clamp;
3028 case Intrinsic::nvvm_suld_3d_v4i32_clamp:
3029 return NVPTXISD::Suld3DV4I32Clamp;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003030 case Intrinsic::nvvm_suld_1d_i8_trap:
3031 return NVPTXISD::Suld1DI8Trap;
3032 case Intrinsic::nvvm_suld_1d_i16_trap:
3033 return NVPTXISD::Suld1DI16Trap;
3034 case Intrinsic::nvvm_suld_1d_i32_trap:
3035 return NVPTXISD::Suld1DI32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003036 case Intrinsic::nvvm_suld_1d_i64_trap:
3037 return NVPTXISD::Suld1DI64Trap;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003038 case Intrinsic::nvvm_suld_1d_v2i8_trap:
3039 return NVPTXISD::Suld1DV2I8Trap;
3040 case Intrinsic::nvvm_suld_1d_v2i16_trap:
3041 return NVPTXISD::Suld1DV2I16Trap;
3042 case Intrinsic::nvvm_suld_1d_v2i32_trap:
3043 return NVPTXISD::Suld1DV2I32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003044 case Intrinsic::nvvm_suld_1d_v2i64_trap:
3045 return NVPTXISD::Suld1DV2I64Trap;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003046 case Intrinsic::nvvm_suld_1d_v4i8_trap:
3047 return NVPTXISD::Suld1DV4I8Trap;
3048 case Intrinsic::nvvm_suld_1d_v4i16_trap:
3049 return NVPTXISD::Suld1DV4I16Trap;
3050 case Intrinsic::nvvm_suld_1d_v4i32_trap:
3051 return NVPTXISD::Suld1DV4I32Trap;
3052 case Intrinsic::nvvm_suld_1d_array_i8_trap:
3053 return NVPTXISD::Suld1DArrayI8Trap;
3054 case Intrinsic::nvvm_suld_1d_array_i16_trap:
3055 return NVPTXISD::Suld1DArrayI16Trap;
3056 case Intrinsic::nvvm_suld_1d_array_i32_trap:
3057 return NVPTXISD::Suld1DArrayI32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003058 case Intrinsic::nvvm_suld_1d_array_i64_trap:
3059 return NVPTXISD::Suld1DArrayI64Trap;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003060 case Intrinsic::nvvm_suld_1d_array_v2i8_trap:
3061 return NVPTXISD::Suld1DArrayV2I8Trap;
3062 case Intrinsic::nvvm_suld_1d_array_v2i16_trap:
3063 return NVPTXISD::Suld1DArrayV2I16Trap;
3064 case Intrinsic::nvvm_suld_1d_array_v2i32_trap:
3065 return NVPTXISD::Suld1DArrayV2I32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003066 case Intrinsic::nvvm_suld_1d_array_v2i64_trap:
3067 return NVPTXISD::Suld1DArrayV2I64Trap;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003068 case Intrinsic::nvvm_suld_1d_array_v4i8_trap:
3069 return NVPTXISD::Suld1DArrayV4I8Trap;
3070 case Intrinsic::nvvm_suld_1d_array_v4i16_trap:
3071 return NVPTXISD::Suld1DArrayV4I16Trap;
3072 case Intrinsic::nvvm_suld_1d_array_v4i32_trap:
3073 return NVPTXISD::Suld1DArrayV4I32Trap;
3074 case Intrinsic::nvvm_suld_2d_i8_trap:
3075 return NVPTXISD::Suld2DI8Trap;
3076 case Intrinsic::nvvm_suld_2d_i16_trap:
3077 return NVPTXISD::Suld2DI16Trap;
3078 case Intrinsic::nvvm_suld_2d_i32_trap:
3079 return NVPTXISD::Suld2DI32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003080 case Intrinsic::nvvm_suld_2d_i64_trap:
3081 return NVPTXISD::Suld2DI64Trap;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003082 case Intrinsic::nvvm_suld_2d_v2i8_trap:
3083 return NVPTXISD::Suld2DV2I8Trap;
3084 case Intrinsic::nvvm_suld_2d_v2i16_trap:
3085 return NVPTXISD::Suld2DV2I16Trap;
3086 case Intrinsic::nvvm_suld_2d_v2i32_trap:
3087 return NVPTXISD::Suld2DV2I32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003088 case Intrinsic::nvvm_suld_2d_v2i64_trap:
3089 return NVPTXISD::Suld2DV2I64Trap;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003090 case Intrinsic::nvvm_suld_2d_v4i8_trap:
3091 return NVPTXISD::Suld2DV4I8Trap;
3092 case Intrinsic::nvvm_suld_2d_v4i16_trap:
3093 return NVPTXISD::Suld2DV4I16Trap;
3094 case Intrinsic::nvvm_suld_2d_v4i32_trap:
3095 return NVPTXISD::Suld2DV4I32Trap;
3096 case Intrinsic::nvvm_suld_2d_array_i8_trap:
3097 return NVPTXISD::Suld2DArrayI8Trap;
3098 case Intrinsic::nvvm_suld_2d_array_i16_trap:
3099 return NVPTXISD::Suld2DArrayI16Trap;
3100 case Intrinsic::nvvm_suld_2d_array_i32_trap:
3101 return NVPTXISD::Suld2DArrayI32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003102 case Intrinsic::nvvm_suld_2d_array_i64_trap:
3103 return NVPTXISD::Suld2DArrayI64Trap;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003104 case Intrinsic::nvvm_suld_2d_array_v2i8_trap:
3105 return NVPTXISD::Suld2DArrayV2I8Trap;
3106 case Intrinsic::nvvm_suld_2d_array_v2i16_trap:
3107 return NVPTXISD::Suld2DArrayV2I16Trap;
3108 case Intrinsic::nvvm_suld_2d_array_v2i32_trap:
3109 return NVPTXISD::Suld2DArrayV2I32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003110 case Intrinsic::nvvm_suld_2d_array_v2i64_trap:
3111 return NVPTXISD::Suld2DArrayV2I64Trap;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003112 case Intrinsic::nvvm_suld_2d_array_v4i8_trap:
3113 return NVPTXISD::Suld2DArrayV4I8Trap;
3114 case Intrinsic::nvvm_suld_2d_array_v4i16_trap:
3115 return NVPTXISD::Suld2DArrayV4I16Trap;
3116 case Intrinsic::nvvm_suld_2d_array_v4i32_trap:
3117 return NVPTXISD::Suld2DArrayV4I32Trap;
3118 case Intrinsic::nvvm_suld_3d_i8_trap:
3119 return NVPTXISD::Suld3DI8Trap;
3120 case Intrinsic::nvvm_suld_3d_i16_trap:
3121 return NVPTXISD::Suld3DI16Trap;
3122 case Intrinsic::nvvm_suld_3d_i32_trap:
3123 return NVPTXISD::Suld3DI32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003124 case Intrinsic::nvvm_suld_3d_i64_trap:
3125 return NVPTXISD::Suld3DI64Trap;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003126 case Intrinsic::nvvm_suld_3d_v2i8_trap:
3127 return NVPTXISD::Suld3DV2I8Trap;
3128 case Intrinsic::nvvm_suld_3d_v2i16_trap:
3129 return NVPTXISD::Suld3DV2I16Trap;
3130 case Intrinsic::nvvm_suld_3d_v2i32_trap:
3131 return NVPTXISD::Suld3DV2I32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003132 case Intrinsic::nvvm_suld_3d_v2i64_trap:
3133 return NVPTXISD::Suld3DV2I64Trap;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003134 case Intrinsic::nvvm_suld_3d_v4i8_trap:
3135 return NVPTXISD::Suld3DV4I8Trap;
3136 case Intrinsic::nvvm_suld_3d_v4i16_trap:
3137 return NVPTXISD::Suld3DV4I16Trap;
3138 case Intrinsic::nvvm_suld_3d_v4i32_trap:
3139 return NVPTXISD::Suld3DV4I32Trap;
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003140 case Intrinsic::nvvm_suld_1d_i8_zero:
3141 return NVPTXISD::Suld1DI8Zero;
3142 case Intrinsic::nvvm_suld_1d_i16_zero:
3143 return NVPTXISD::Suld1DI16Zero;
3144 case Intrinsic::nvvm_suld_1d_i32_zero:
3145 return NVPTXISD::Suld1DI32Zero;
3146 case Intrinsic::nvvm_suld_1d_i64_zero:
3147 return NVPTXISD::Suld1DI64Zero;
3148 case Intrinsic::nvvm_suld_1d_v2i8_zero:
3149 return NVPTXISD::Suld1DV2I8Zero;
3150 case Intrinsic::nvvm_suld_1d_v2i16_zero:
3151 return NVPTXISD::Suld1DV2I16Zero;
3152 case Intrinsic::nvvm_suld_1d_v2i32_zero:
3153 return NVPTXISD::Suld1DV2I32Zero;
3154 case Intrinsic::nvvm_suld_1d_v2i64_zero:
3155 return NVPTXISD::Suld1DV2I64Zero;
3156 case Intrinsic::nvvm_suld_1d_v4i8_zero:
3157 return NVPTXISD::Suld1DV4I8Zero;
3158 case Intrinsic::nvvm_suld_1d_v4i16_zero:
3159 return NVPTXISD::Suld1DV4I16Zero;
3160 case Intrinsic::nvvm_suld_1d_v4i32_zero:
3161 return NVPTXISD::Suld1DV4I32Zero;
3162 case Intrinsic::nvvm_suld_1d_array_i8_zero:
3163 return NVPTXISD::Suld1DArrayI8Zero;
3164 case Intrinsic::nvvm_suld_1d_array_i16_zero:
3165 return NVPTXISD::Suld1DArrayI16Zero;
3166 case Intrinsic::nvvm_suld_1d_array_i32_zero:
3167 return NVPTXISD::Suld1DArrayI32Zero;
3168 case Intrinsic::nvvm_suld_1d_array_i64_zero:
3169 return NVPTXISD::Suld1DArrayI64Zero;
3170 case Intrinsic::nvvm_suld_1d_array_v2i8_zero:
3171 return NVPTXISD::Suld1DArrayV2I8Zero;
3172 case Intrinsic::nvvm_suld_1d_array_v2i16_zero:
3173 return NVPTXISD::Suld1DArrayV2I16Zero;
3174 case Intrinsic::nvvm_suld_1d_array_v2i32_zero:
3175 return NVPTXISD::Suld1DArrayV2I32Zero;
3176 case Intrinsic::nvvm_suld_1d_array_v2i64_zero:
3177 return NVPTXISD::Suld1DArrayV2I64Zero;
3178 case Intrinsic::nvvm_suld_1d_array_v4i8_zero:
3179 return NVPTXISD::Suld1DArrayV4I8Zero;
3180 case Intrinsic::nvvm_suld_1d_array_v4i16_zero:
3181 return NVPTXISD::Suld1DArrayV4I16Zero;
3182 case Intrinsic::nvvm_suld_1d_array_v4i32_zero:
3183 return NVPTXISD::Suld1DArrayV4I32Zero;
3184 case Intrinsic::nvvm_suld_2d_i8_zero:
3185 return NVPTXISD::Suld2DI8Zero;
3186 case Intrinsic::nvvm_suld_2d_i16_zero:
3187 return NVPTXISD::Suld2DI16Zero;
3188 case Intrinsic::nvvm_suld_2d_i32_zero:
3189 return NVPTXISD::Suld2DI32Zero;
3190 case Intrinsic::nvvm_suld_2d_i64_zero:
3191 return NVPTXISD::Suld2DI64Zero;
3192 case Intrinsic::nvvm_suld_2d_v2i8_zero:
3193 return NVPTXISD::Suld2DV2I8Zero;
3194 case Intrinsic::nvvm_suld_2d_v2i16_zero:
3195 return NVPTXISD::Suld2DV2I16Zero;
3196 case Intrinsic::nvvm_suld_2d_v2i32_zero:
3197 return NVPTXISD::Suld2DV2I32Zero;
3198 case Intrinsic::nvvm_suld_2d_v2i64_zero:
3199 return NVPTXISD::Suld2DV2I64Zero;
3200 case Intrinsic::nvvm_suld_2d_v4i8_zero:
3201 return NVPTXISD::Suld2DV4I8Zero;
3202 case Intrinsic::nvvm_suld_2d_v4i16_zero:
3203 return NVPTXISD::Suld2DV4I16Zero;
3204 case Intrinsic::nvvm_suld_2d_v4i32_zero:
3205 return NVPTXISD::Suld2DV4I32Zero;
3206 case Intrinsic::nvvm_suld_2d_array_i8_zero:
3207 return NVPTXISD::Suld2DArrayI8Zero;
3208 case Intrinsic::nvvm_suld_2d_array_i16_zero:
3209 return NVPTXISD::Suld2DArrayI16Zero;
3210 case Intrinsic::nvvm_suld_2d_array_i32_zero:
3211 return NVPTXISD::Suld2DArrayI32Zero;
3212 case Intrinsic::nvvm_suld_2d_array_i64_zero:
3213 return NVPTXISD::Suld2DArrayI64Zero;
3214 case Intrinsic::nvvm_suld_2d_array_v2i8_zero:
3215 return NVPTXISD::Suld2DArrayV2I8Zero;
3216 case Intrinsic::nvvm_suld_2d_array_v2i16_zero:
3217 return NVPTXISD::Suld2DArrayV2I16Zero;
3218 case Intrinsic::nvvm_suld_2d_array_v2i32_zero:
3219 return NVPTXISD::Suld2DArrayV2I32Zero;
3220 case Intrinsic::nvvm_suld_2d_array_v2i64_zero:
3221 return NVPTXISD::Suld2DArrayV2I64Zero;
3222 case Intrinsic::nvvm_suld_2d_array_v4i8_zero:
3223 return NVPTXISD::Suld2DArrayV4I8Zero;
3224 case Intrinsic::nvvm_suld_2d_array_v4i16_zero:
3225 return NVPTXISD::Suld2DArrayV4I16Zero;
3226 case Intrinsic::nvvm_suld_2d_array_v4i32_zero:
3227 return NVPTXISD::Suld2DArrayV4I32Zero;
3228 case Intrinsic::nvvm_suld_3d_i8_zero:
3229 return NVPTXISD::Suld3DI8Zero;
3230 case Intrinsic::nvvm_suld_3d_i16_zero:
3231 return NVPTXISD::Suld3DI16Zero;
3232 case Intrinsic::nvvm_suld_3d_i32_zero:
3233 return NVPTXISD::Suld3DI32Zero;
3234 case Intrinsic::nvvm_suld_3d_i64_zero:
3235 return NVPTXISD::Suld3DI64Zero;
3236 case Intrinsic::nvvm_suld_3d_v2i8_zero:
3237 return NVPTXISD::Suld3DV2I8Zero;
3238 case Intrinsic::nvvm_suld_3d_v2i16_zero:
3239 return NVPTXISD::Suld3DV2I16Zero;
3240 case Intrinsic::nvvm_suld_3d_v2i32_zero:
3241 return NVPTXISD::Suld3DV2I32Zero;
3242 case Intrinsic::nvvm_suld_3d_v2i64_zero:
3243 return NVPTXISD::Suld3DV2I64Zero;
3244 case Intrinsic::nvvm_suld_3d_v4i8_zero:
3245 return NVPTXISD::Suld3DV4I8Zero;
3246 case Intrinsic::nvvm_suld_3d_v4i16_zero:
3247 return NVPTXISD::Suld3DV4I16Zero;
3248 case Intrinsic::nvvm_suld_3d_v4i32_zero:
3249 return NVPTXISD::Suld3DV4I32Zero;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003250 }
3251}
3252
Justin Holewinskiae556d32012-05-04 20:18:50 +00003253// llvm.ptx.memcpy.const and llvm.ptx.memmove.const need to be modeled as
3254// TgtMemIntrinsic
3255// because we need the information that is only available in the "Value" type
3256// of destination
3257// pointer. In particular, the address space information.
Justin Holewinski0497ab12013-03-30 14:29:21 +00003258bool NVPTXTargetLowering::getTgtMemIntrinsic(
3259 IntrinsicInfo &Info, const CallInst &I, unsigned Intrinsic) const {
Justin Holewinskiae556d32012-05-04 20:18:50 +00003260 switch (Intrinsic) {
3261 default:
3262 return false;
3263
3264 case Intrinsic::nvvm_atomic_load_add_f32:
3265 Info.opc = ISD::INTRINSIC_W_CHAIN;
3266 Info.memVT = MVT::f32;
3267 Info.ptrVal = I.getArgOperand(0);
3268 Info.offset = 0;
3269 Info.vol = 0;
3270 Info.readMem = true;
3271 Info.writeMem = true;
3272 Info.align = 0;
3273 return true;
3274
3275 case Intrinsic::nvvm_atomic_load_inc_32:
3276 case Intrinsic::nvvm_atomic_load_dec_32:
3277 Info.opc = ISD::INTRINSIC_W_CHAIN;
3278 Info.memVT = MVT::i32;
3279 Info.ptrVal = I.getArgOperand(0);
3280 Info.offset = 0;
3281 Info.vol = 0;
3282 Info.readMem = true;
3283 Info.writeMem = true;
3284 Info.align = 0;
3285 return true;
3286
3287 case Intrinsic::nvvm_ldu_global_i:
3288 case Intrinsic::nvvm_ldu_global_f:
Justin Holewinskib926d9d2014-06-27 18:35:51 +00003289 case Intrinsic::nvvm_ldu_global_p: {
Mehdi Amini44ede332015-07-09 02:09:04 +00003290 auto &DL = I.getModule()->getDataLayout();
Justin Holewinskiae556d32012-05-04 20:18:50 +00003291 Info.opc = ISD::INTRINSIC_W_CHAIN;
3292 if (Intrinsic == Intrinsic::nvvm_ldu_global_i)
Mehdi Amini44ede332015-07-09 02:09:04 +00003293 Info.memVT = getValueType(DL, I.getType());
Justin Holewinskib926d9d2014-06-27 18:35:51 +00003294 else if(Intrinsic == Intrinsic::nvvm_ldu_global_p)
Mehdi Amini44ede332015-07-09 02:09:04 +00003295 Info.memVT = getPointerTy(DL);
Justin Holewinskiae556d32012-05-04 20:18:50 +00003296 else
Mehdi Amini44ede332015-07-09 02:09:04 +00003297 Info.memVT = getValueType(DL, I.getType());
Justin Holewinskiae556d32012-05-04 20:18:50 +00003298 Info.ptrVal = I.getArgOperand(0);
3299 Info.offset = 0;
3300 Info.vol = 0;
3301 Info.readMem = true;
3302 Info.writeMem = false;
Jingyue Wucb83a152014-08-29 15:30:20 +00003303 Info.align = cast<ConstantInt>(I.getArgOperand(1))->getZExtValue();
Justin Holewinskib926d9d2014-06-27 18:35:51 +00003304
Justin Holewinskiae556d32012-05-04 20:18:50 +00003305 return true;
Justin Holewinskib926d9d2014-06-27 18:35:51 +00003306 }
3307 case Intrinsic::nvvm_ldg_global_i:
3308 case Intrinsic::nvvm_ldg_global_f:
3309 case Intrinsic::nvvm_ldg_global_p: {
Mehdi Amini44ede332015-07-09 02:09:04 +00003310 auto &DL = I.getModule()->getDataLayout();
Justin Holewinskib926d9d2014-06-27 18:35:51 +00003311
3312 Info.opc = ISD::INTRINSIC_W_CHAIN;
3313 if (Intrinsic == Intrinsic::nvvm_ldg_global_i)
Mehdi Amini44ede332015-07-09 02:09:04 +00003314 Info.memVT = getValueType(DL, I.getType());
Justin Holewinskib926d9d2014-06-27 18:35:51 +00003315 else if(Intrinsic == Intrinsic::nvvm_ldg_global_p)
Mehdi Amini44ede332015-07-09 02:09:04 +00003316 Info.memVT = getPointerTy(DL);
Justin Holewinskib926d9d2014-06-27 18:35:51 +00003317 else
Mehdi Amini44ede332015-07-09 02:09:04 +00003318 Info.memVT = getValueType(DL, I.getType());
Justin Holewinskib926d9d2014-06-27 18:35:51 +00003319 Info.ptrVal = I.getArgOperand(0);
3320 Info.offset = 0;
3321 Info.vol = 0;
3322 Info.readMem = true;
3323 Info.writeMem = false;
Jingyue Wucb83a152014-08-29 15:30:20 +00003324 Info.align = cast<ConstantInt>(I.getArgOperand(1))->getZExtValue();
Justin Holewinskib926d9d2014-06-27 18:35:51 +00003325
3326 return true;
3327 }
Justin Holewinskiae556d32012-05-04 20:18:50 +00003328
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003329 case Intrinsic::nvvm_tex_1d_v4f32_s32:
Justin Holewinski30d56a72014-04-09 15:39:15 +00003330 case Intrinsic::nvvm_tex_1d_v4f32_f32:
3331 case Intrinsic::nvvm_tex_1d_level_v4f32_f32:
3332 case Intrinsic::nvvm_tex_1d_grad_v4f32_f32:
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003333 case Intrinsic::nvvm_tex_1d_array_v4f32_s32:
Justin Holewinski30d56a72014-04-09 15:39:15 +00003334 case Intrinsic::nvvm_tex_1d_array_v4f32_f32:
3335 case Intrinsic::nvvm_tex_1d_array_level_v4f32_f32:
3336 case Intrinsic::nvvm_tex_1d_array_grad_v4f32_f32:
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003337 case Intrinsic::nvvm_tex_2d_v4f32_s32:
Justin Holewinski30d56a72014-04-09 15:39:15 +00003338 case Intrinsic::nvvm_tex_2d_v4f32_f32:
3339 case Intrinsic::nvvm_tex_2d_level_v4f32_f32:
3340 case Intrinsic::nvvm_tex_2d_grad_v4f32_f32:
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003341 case Intrinsic::nvvm_tex_2d_array_v4f32_s32:
Justin Holewinski30d56a72014-04-09 15:39:15 +00003342 case Intrinsic::nvvm_tex_2d_array_v4f32_f32:
3343 case Intrinsic::nvvm_tex_2d_array_level_v4f32_f32:
3344 case Intrinsic::nvvm_tex_2d_array_grad_v4f32_f32:
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003345 case Intrinsic::nvvm_tex_3d_v4f32_s32:
Justin Holewinski30d56a72014-04-09 15:39:15 +00003346 case Intrinsic::nvvm_tex_3d_v4f32_f32:
3347 case Intrinsic::nvvm_tex_3d_level_v4f32_f32:
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003348 case Intrinsic::nvvm_tex_3d_grad_v4f32_f32:
3349 case Intrinsic::nvvm_tex_cube_v4f32_f32:
3350 case Intrinsic::nvvm_tex_cube_level_v4f32_f32:
3351 case Intrinsic::nvvm_tex_cube_array_v4f32_f32:
3352 case Intrinsic::nvvm_tex_cube_array_level_v4f32_f32:
3353 case Intrinsic::nvvm_tld4_r_2d_v4f32_f32:
3354 case Intrinsic::nvvm_tld4_g_2d_v4f32_f32:
3355 case Intrinsic::nvvm_tld4_b_2d_v4f32_f32:
3356 case Intrinsic::nvvm_tld4_a_2d_v4f32_f32:
3357 case Intrinsic::nvvm_tex_unified_1d_v4f32_s32:
3358 case Intrinsic::nvvm_tex_unified_1d_v4f32_f32:
3359 case Intrinsic::nvvm_tex_unified_1d_level_v4f32_f32:
3360 case Intrinsic::nvvm_tex_unified_1d_grad_v4f32_f32:
3361 case Intrinsic::nvvm_tex_unified_1d_array_v4f32_s32:
3362 case Intrinsic::nvvm_tex_unified_1d_array_v4f32_f32:
3363 case Intrinsic::nvvm_tex_unified_1d_array_level_v4f32_f32:
3364 case Intrinsic::nvvm_tex_unified_1d_array_grad_v4f32_f32:
3365 case Intrinsic::nvvm_tex_unified_2d_v4f32_s32:
3366 case Intrinsic::nvvm_tex_unified_2d_v4f32_f32:
3367 case Intrinsic::nvvm_tex_unified_2d_level_v4f32_f32:
3368 case Intrinsic::nvvm_tex_unified_2d_grad_v4f32_f32:
3369 case Intrinsic::nvvm_tex_unified_2d_array_v4f32_s32:
3370 case Intrinsic::nvvm_tex_unified_2d_array_v4f32_f32:
3371 case Intrinsic::nvvm_tex_unified_2d_array_level_v4f32_f32:
3372 case Intrinsic::nvvm_tex_unified_2d_array_grad_v4f32_f32:
3373 case Intrinsic::nvvm_tex_unified_3d_v4f32_s32:
3374 case Intrinsic::nvvm_tex_unified_3d_v4f32_f32:
3375 case Intrinsic::nvvm_tex_unified_3d_level_v4f32_f32:
3376 case Intrinsic::nvvm_tex_unified_3d_grad_v4f32_f32:
3377 case Intrinsic::nvvm_tex_unified_cube_v4f32_f32:
3378 case Intrinsic::nvvm_tex_unified_cube_level_v4f32_f32:
3379 case Intrinsic::nvvm_tex_unified_cube_array_v4f32_f32:
3380 case Intrinsic::nvvm_tex_unified_cube_array_level_v4f32_f32:
3381 case Intrinsic::nvvm_tld4_unified_r_2d_v4f32_f32:
3382 case Intrinsic::nvvm_tld4_unified_g_2d_v4f32_f32:
3383 case Intrinsic::nvvm_tld4_unified_b_2d_v4f32_f32:
3384 case Intrinsic::nvvm_tld4_unified_a_2d_v4f32_f32: {
Justin Holewinski30d56a72014-04-09 15:39:15 +00003385 Info.opc = getOpcForTextureInstr(Intrinsic);
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003386 Info.memVT = MVT::v4f32;
Craig Topper062a2ba2014-04-25 05:30:21 +00003387 Info.ptrVal = nullptr;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003388 Info.offset = 0;
3389 Info.vol = 0;
3390 Info.readMem = true;
3391 Info.writeMem = false;
3392 Info.align = 16;
3393 return true;
3394 }
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003395 case Intrinsic::nvvm_tex_1d_v4s32_s32:
3396 case Intrinsic::nvvm_tex_1d_v4s32_f32:
3397 case Intrinsic::nvvm_tex_1d_level_v4s32_f32:
3398 case Intrinsic::nvvm_tex_1d_grad_v4s32_f32:
3399 case Intrinsic::nvvm_tex_1d_array_v4s32_s32:
3400 case Intrinsic::nvvm_tex_1d_array_v4s32_f32:
3401 case Intrinsic::nvvm_tex_1d_array_level_v4s32_f32:
3402 case Intrinsic::nvvm_tex_1d_array_grad_v4s32_f32:
3403 case Intrinsic::nvvm_tex_2d_v4s32_s32:
3404 case Intrinsic::nvvm_tex_2d_v4s32_f32:
3405 case Intrinsic::nvvm_tex_2d_level_v4s32_f32:
3406 case Intrinsic::nvvm_tex_2d_grad_v4s32_f32:
3407 case Intrinsic::nvvm_tex_2d_array_v4s32_s32:
3408 case Intrinsic::nvvm_tex_2d_array_v4s32_f32:
3409 case Intrinsic::nvvm_tex_2d_array_level_v4s32_f32:
3410 case Intrinsic::nvvm_tex_2d_array_grad_v4s32_f32:
3411 case Intrinsic::nvvm_tex_3d_v4s32_s32:
3412 case Intrinsic::nvvm_tex_3d_v4s32_f32:
3413 case Intrinsic::nvvm_tex_3d_level_v4s32_f32:
3414 case Intrinsic::nvvm_tex_3d_grad_v4s32_f32:
3415 case Intrinsic::nvvm_tex_cube_v4s32_f32:
3416 case Intrinsic::nvvm_tex_cube_level_v4s32_f32:
3417 case Intrinsic::nvvm_tex_cube_array_v4s32_f32:
3418 case Intrinsic::nvvm_tex_cube_array_level_v4s32_f32:
3419 case Intrinsic::nvvm_tex_cube_v4u32_f32:
3420 case Intrinsic::nvvm_tex_cube_level_v4u32_f32:
3421 case Intrinsic::nvvm_tex_cube_array_v4u32_f32:
3422 case Intrinsic::nvvm_tex_cube_array_level_v4u32_f32:
3423 case Intrinsic::nvvm_tex_1d_v4u32_s32:
3424 case Intrinsic::nvvm_tex_1d_v4u32_f32:
3425 case Intrinsic::nvvm_tex_1d_level_v4u32_f32:
3426 case Intrinsic::nvvm_tex_1d_grad_v4u32_f32:
3427 case Intrinsic::nvvm_tex_1d_array_v4u32_s32:
3428 case Intrinsic::nvvm_tex_1d_array_v4u32_f32:
3429 case Intrinsic::nvvm_tex_1d_array_level_v4u32_f32:
3430 case Intrinsic::nvvm_tex_1d_array_grad_v4u32_f32:
3431 case Intrinsic::nvvm_tex_2d_v4u32_s32:
3432 case Intrinsic::nvvm_tex_2d_v4u32_f32:
3433 case Intrinsic::nvvm_tex_2d_level_v4u32_f32:
3434 case Intrinsic::nvvm_tex_2d_grad_v4u32_f32:
3435 case Intrinsic::nvvm_tex_2d_array_v4u32_s32:
3436 case Intrinsic::nvvm_tex_2d_array_v4u32_f32:
3437 case Intrinsic::nvvm_tex_2d_array_level_v4u32_f32:
3438 case Intrinsic::nvvm_tex_2d_array_grad_v4u32_f32:
3439 case Intrinsic::nvvm_tex_3d_v4u32_s32:
3440 case Intrinsic::nvvm_tex_3d_v4u32_f32:
3441 case Intrinsic::nvvm_tex_3d_level_v4u32_f32:
3442 case Intrinsic::nvvm_tex_3d_grad_v4u32_f32:
3443 case Intrinsic::nvvm_tld4_r_2d_v4s32_f32:
3444 case Intrinsic::nvvm_tld4_g_2d_v4s32_f32:
3445 case Intrinsic::nvvm_tld4_b_2d_v4s32_f32:
3446 case Intrinsic::nvvm_tld4_a_2d_v4s32_f32:
3447 case Intrinsic::nvvm_tld4_r_2d_v4u32_f32:
3448 case Intrinsic::nvvm_tld4_g_2d_v4u32_f32:
3449 case Intrinsic::nvvm_tld4_b_2d_v4u32_f32:
3450 case Intrinsic::nvvm_tld4_a_2d_v4u32_f32:
3451 case Intrinsic::nvvm_tex_unified_1d_v4s32_s32:
3452 case Intrinsic::nvvm_tex_unified_1d_v4s32_f32:
3453 case Intrinsic::nvvm_tex_unified_1d_level_v4s32_f32:
3454 case Intrinsic::nvvm_tex_unified_1d_grad_v4s32_f32:
3455 case Intrinsic::nvvm_tex_unified_1d_array_v4s32_s32:
3456 case Intrinsic::nvvm_tex_unified_1d_array_v4s32_f32:
3457 case Intrinsic::nvvm_tex_unified_1d_array_level_v4s32_f32:
3458 case Intrinsic::nvvm_tex_unified_1d_array_grad_v4s32_f32:
3459 case Intrinsic::nvvm_tex_unified_2d_v4s32_s32:
3460 case Intrinsic::nvvm_tex_unified_2d_v4s32_f32:
3461 case Intrinsic::nvvm_tex_unified_2d_level_v4s32_f32:
3462 case Intrinsic::nvvm_tex_unified_2d_grad_v4s32_f32:
3463 case Intrinsic::nvvm_tex_unified_2d_array_v4s32_s32:
3464 case Intrinsic::nvvm_tex_unified_2d_array_v4s32_f32:
3465 case Intrinsic::nvvm_tex_unified_2d_array_level_v4s32_f32:
3466 case Intrinsic::nvvm_tex_unified_2d_array_grad_v4s32_f32:
3467 case Intrinsic::nvvm_tex_unified_3d_v4s32_s32:
3468 case Intrinsic::nvvm_tex_unified_3d_v4s32_f32:
3469 case Intrinsic::nvvm_tex_unified_3d_level_v4s32_f32:
3470 case Intrinsic::nvvm_tex_unified_3d_grad_v4s32_f32:
3471 case Intrinsic::nvvm_tex_unified_1d_v4u32_s32:
3472 case Intrinsic::nvvm_tex_unified_1d_v4u32_f32:
3473 case Intrinsic::nvvm_tex_unified_1d_level_v4u32_f32:
3474 case Intrinsic::nvvm_tex_unified_1d_grad_v4u32_f32:
3475 case Intrinsic::nvvm_tex_unified_1d_array_v4u32_s32:
3476 case Intrinsic::nvvm_tex_unified_1d_array_v4u32_f32:
3477 case Intrinsic::nvvm_tex_unified_1d_array_level_v4u32_f32:
3478 case Intrinsic::nvvm_tex_unified_1d_array_grad_v4u32_f32:
3479 case Intrinsic::nvvm_tex_unified_2d_v4u32_s32:
3480 case Intrinsic::nvvm_tex_unified_2d_v4u32_f32:
3481 case Intrinsic::nvvm_tex_unified_2d_level_v4u32_f32:
3482 case Intrinsic::nvvm_tex_unified_2d_grad_v4u32_f32:
3483 case Intrinsic::nvvm_tex_unified_2d_array_v4u32_s32:
3484 case Intrinsic::nvvm_tex_unified_2d_array_v4u32_f32:
3485 case Intrinsic::nvvm_tex_unified_2d_array_level_v4u32_f32:
3486 case Intrinsic::nvvm_tex_unified_2d_array_grad_v4u32_f32:
3487 case Intrinsic::nvvm_tex_unified_3d_v4u32_s32:
3488 case Intrinsic::nvvm_tex_unified_3d_v4u32_f32:
3489 case Intrinsic::nvvm_tex_unified_3d_level_v4u32_f32:
3490 case Intrinsic::nvvm_tex_unified_3d_grad_v4u32_f32:
3491 case Intrinsic::nvvm_tex_unified_cube_v4s32_f32:
3492 case Intrinsic::nvvm_tex_unified_cube_level_v4s32_f32:
3493 case Intrinsic::nvvm_tex_unified_cube_array_v4s32_f32:
3494 case Intrinsic::nvvm_tex_unified_cube_array_level_v4s32_f32:
3495 case Intrinsic::nvvm_tex_unified_cube_v4u32_f32:
3496 case Intrinsic::nvvm_tex_unified_cube_level_v4u32_f32:
3497 case Intrinsic::nvvm_tex_unified_cube_array_v4u32_f32:
3498 case Intrinsic::nvvm_tex_unified_cube_array_level_v4u32_f32:
3499 case Intrinsic::nvvm_tld4_unified_r_2d_v4s32_f32:
3500 case Intrinsic::nvvm_tld4_unified_g_2d_v4s32_f32:
3501 case Intrinsic::nvvm_tld4_unified_b_2d_v4s32_f32:
3502 case Intrinsic::nvvm_tld4_unified_a_2d_v4s32_f32:
3503 case Intrinsic::nvvm_tld4_unified_r_2d_v4u32_f32:
3504 case Intrinsic::nvvm_tld4_unified_g_2d_v4u32_f32:
3505 case Intrinsic::nvvm_tld4_unified_b_2d_v4u32_f32:
3506 case Intrinsic::nvvm_tld4_unified_a_2d_v4u32_f32: {
Justin Holewinski30d56a72014-04-09 15:39:15 +00003507 Info.opc = getOpcForTextureInstr(Intrinsic);
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003508 Info.memVT = MVT::v4i32;
Craig Topper062a2ba2014-04-25 05:30:21 +00003509 Info.ptrVal = nullptr;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003510 Info.offset = 0;
3511 Info.vol = 0;
3512 Info.readMem = true;
3513 Info.writeMem = false;
3514 Info.align = 16;
3515 return true;
3516 }
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003517 case Intrinsic::nvvm_suld_1d_i8_clamp:
3518 case Intrinsic::nvvm_suld_1d_v2i8_clamp:
3519 case Intrinsic::nvvm_suld_1d_v4i8_clamp:
3520 case Intrinsic::nvvm_suld_1d_array_i8_clamp:
3521 case Intrinsic::nvvm_suld_1d_array_v2i8_clamp:
3522 case Intrinsic::nvvm_suld_1d_array_v4i8_clamp:
3523 case Intrinsic::nvvm_suld_2d_i8_clamp:
3524 case Intrinsic::nvvm_suld_2d_v2i8_clamp:
3525 case Intrinsic::nvvm_suld_2d_v4i8_clamp:
3526 case Intrinsic::nvvm_suld_2d_array_i8_clamp:
3527 case Intrinsic::nvvm_suld_2d_array_v2i8_clamp:
3528 case Intrinsic::nvvm_suld_2d_array_v4i8_clamp:
3529 case Intrinsic::nvvm_suld_3d_i8_clamp:
3530 case Intrinsic::nvvm_suld_3d_v2i8_clamp:
3531 case Intrinsic::nvvm_suld_3d_v4i8_clamp:
Justin Holewinski30d56a72014-04-09 15:39:15 +00003532 case Intrinsic::nvvm_suld_1d_i8_trap:
3533 case Intrinsic::nvvm_suld_1d_v2i8_trap:
3534 case Intrinsic::nvvm_suld_1d_v4i8_trap:
3535 case Intrinsic::nvvm_suld_1d_array_i8_trap:
3536 case Intrinsic::nvvm_suld_1d_array_v2i8_trap:
3537 case Intrinsic::nvvm_suld_1d_array_v4i8_trap:
3538 case Intrinsic::nvvm_suld_2d_i8_trap:
3539 case Intrinsic::nvvm_suld_2d_v2i8_trap:
3540 case Intrinsic::nvvm_suld_2d_v4i8_trap:
3541 case Intrinsic::nvvm_suld_2d_array_i8_trap:
3542 case Intrinsic::nvvm_suld_2d_array_v2i8_trap:
3543 case Intrinsic::nvvm_suld_2d_array_v4i8_trap:
3544 case Intrinsic::nvvm_suld_3d_i8_trap:
3545 case Intrinsic::nvvm_suld_3d_v2i8_trap:
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003546 case Intrinsic::nvvm_suld_3d_v4i8_trap:
3547 case Intrinsic::nvvm_suld_1d_i8_zero:
3548 case Intrinsic::nvvm_suld_1d_v2i8_zero:
3549 case Intrinsic::nvvm_suld_1d_v4i8_zero:
3550 case Intrinsic::nvvm_suld_1d_array_i8_zero:
3551 case Intrinsic::nvvm_suld_1d_array_v2i8_zero:
3552 case Intrinsic::nvvm_suld_1d_array_v4i8_zero:
3553 case Intrinsic::nvvm_suld_2d_i8_zero:
3554 case Intrinsic::nvvm_suld_2d_v2i8_zero:
3555 case Intrinsic::nvvm_suld_2d_v4i8_zero:
3556 case Intrinsic::nvvm_suld_2d_array_i8_zero:
3557 case Intrinsic::nvvm_suld_2d_array_v2i8_zero:
3558 case Intrinsic::nvvm_suld_2d_array_v4i8_zero:
3559 case Intrinsic::nvvm_suld_3d_i8_zero:
3560 case Intrinsic::nvvm_suld_3d_v2i8_zero:
3561 case Intrinsic::nvvm_suld_3d_v4i8_zero: {
Justin Holewinski30d56a72014-04-09 15:39:15 +00003562 Info.opc = getOpcForSurfaceInstr(Intrinsic);
3563 Info.memVT = MVT::i8;
Craig Topper062a2ba2014-04-25 05:30:21 +00003564 Info.ptrVal = nullptr;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003565 Info.offset = 0;
3566 Info.vol = 0;
3567 Info.readMem = true;
3568 Info.writeMem = false;
3569 Info.align = 16;
3570 return true;
3571 }
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003572 case Intrinsic::nvvm_suld_1d_i16_clamp:
3573 case Intrinsic::nvvm_suld_1d_v2i16_clamp:
3574 case Intrinsic::nvvm_suld_1d_v4i16_clamp:
3575 case Intrinsic::nvvm_suld_1d_array_i16_clamp:
3576 case Intrinsic::nvvm_suld_1d_array_v2i16_clamp:
3577 case Intrinsic::nvvm_suld_1d_array_v4i16_clamp:
3578 case Intrinsic::nvvm_suld_2d_i16_clamp:
3579 case Intrinsic::nvvm_suld_2d_v2i16_clamp:
3580 case Intrinsic::nvvm_suld_2d_v4i16_clamp:
3581 case Intrinsic::nvvm_suld_2d_array_i16_clamp:
3582 case Intrinsic::nvvm_suld_2d_array_v2i16_clamp:
3583 case Intrinsic::nvvm_suld_2d_array_v4i16_clamp:
3584 case Intrinsic::nvvm_suld_3d_i16_clamp:
3585 case Intrinsic::nvvm_suld_3d_v2i16_clamp:
3586 case Intrinsic::nvvm_suld_3d_v4i16_clamp:
Justin Holewinski30d56a72014-04-09 15:39:15 +00003587 case Intrinsic::nvvm_suld_1d_i16_trap:
3588 case Intrinsic::nvvm_suld_1d_v2i16_trap:
3589 case Intrinsic::nvvm_suld_1d_v4i16_trap:
3590 case Intrinsic::nvvm_suld_1d_array_i16_trap:
3591 case Intrinsic::nvvm_suld_1d_array_v2i16_trap:
3592 case Intrinsic::nvvm_suld_1d_array_v4i16_trap:
3593 case Intrinsic::nvvm_suld_2d_i16_trap:
3594 case Intrinsic::nvvm_suld_2d_v2i16_trap:
3595 case Intrinsic::nvvm_suld_2d_v4i16_trap:
3596 case Intrinsic::nvvm_suld_2d_array_i16_trap:
3597 case Intrinsic::nvvm_suld_2d_array_v2i16_trap:
3598 case Intrinsic::nvvm_suld_2d_array_v4i16_trap:
3599 case Intrinsic::nvvm_suld_3d_i16_trap:
3600 case Intrinsic::nvvm_suld_3d_v2i16_trap:
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003601 case Intrinsic::nvvm_suld_3d_v4i16_trap:
3602 case Intrinsic::nvvm_suld_1d_i16_zero:
3603 case Intrinsic::nvvm_suld_1d_v2i16_zero:
3604 case Intrinsic::nvvm_suld_1d_v4i16_zero:
3605 case Intrinsic::nvvm_suld_1d_array_i16_zero:
3606 case Intrinsic::nvvm_suld_1d_array_v2i16_zero:
3607 case Intrinsic::nvvm_suld_1d_array_v4i16_zero:
3608 case Intrinsic::nvvm_suld_2d_i16_zero:
3609 case Intrinsic::nvvm_suld_2d_v2i16_zero:
3610 case Intrinsic::nvvm_suld_2d_v4i16_zero:
3611 case Intrinsic::nvvm_suld_2d_array_i16_zero:
3612 case Intrinsic::nvvm_suld_2d_array_v2i16_zero:
3613 case Intrinsic::nvvm_suld_2d_array_v4i16_zero:
3614 case Intrinsic::nvvm_suld_3d_i16_zero:
3615 case Intrinsic::nvvm_suld_3d_v2i16_zero:
3616 case Intrinsic::nvvm_suld_3d_v4i16_zero: {
Justin Holewinski30d56a72014-04-09 15:39:15 +00003617 Info.opc = getOpcForSurfaceInstr(Intrinsic);
3618 Info.memVT = MVT::i16;
Craig Topper062a2ba2014-04-25 05:30:21 +00003619 Info.ptrVal = nullptr;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003620 Info.offset = 0;
3621 Info.vol = 0;
3622 Info.readMem = true;
3623 Info.writeMem = false;
3624 Info.align = 16;
3625 return true;
3626 }
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003627 case Intrinsic::nvvm_suld_1d_i32_clamp:
3628 case Intrinsic::nvvm_suld_1d_v2i32_clamp:
3629 case Intrinsic::nvvm_suld_1d_v4i32_clamp:
3630 case Intrinsic::nvvm_suld_1d_array_i32_clamp:
3631 case Intrinsic::nvvm_suld_1d_array_v2i32_clamp:
3632 case Intrinsic::nvvm_suld_1d_array_v4i32_clamp:
3633 case Intrinsic::nvvm_suld_2d_i32_clamp:
3634 case Intrinsic::nvvm_suld_2d_v2i32_clamp:
3635 case Intrinsic::nvvm_suld_2d_v4i32_clamp:
3636 case Intrinsic::nvvm_suld_2d_array_i32_clamp:
3637 case Intrinsic::nvvm_suld_2d_array_v2i32_clamp:
3638 case Intrinsic::nvvm_suld_2d_array_v4i32_clamp:
3639 case Intrinsic::nvvm_suld_3d_i32_clamp:
3640 case Intrinsic::nvvm_suld_3d_v2i32_clamp:
3641 case Intrinsic::nvvm_suld_3d_v4i32_clamp:
Justin Holewinski30d56a72014-04-09 15:39:15 +00003642 case Intrinsic::nvvm_suld_1d_i32_trap:
3643 case Intrinsic::nvvm_suld_1d_v2i32_trap:
3644 case Intrinsic::nvvm_suld_1d_v4i32_trap:
3645 case Intrinsic::nvvm_suld_1d_array_i32_trap:
3646 case Intrinsic::nvvm_suld_1d_array_v2i32_trap:
3647 case Intrinsic::nvvm_suld_1d_array_v4i32_trap:
3648 case Intrinsic::nvvm_suld_2d_i32_trap:
3649 case Intrinsic::nvvm_suld_2d_v2i32_trap:
3650 case Intrinsic::nvvm_suld_2d_v4i32_trap:
3651 case Intrinsic::nvvm_suld_2d_array_i32_trap:
3652 case Intrinsic::nvvm_suld_2d_array_v2i32_trap:
3653 case Intrinsic::nvvm_suld_2d_array_v4i32_trap:
3654 case Intrinsic::nvvm_suld_3d_i32_trap:
3655 case Intrinsic::nvvm_suld_3d_v2i32_trap:
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003656 case Intrinsic::nvvm_suld_3d_v4i32_trap:
3657 case Intrinsic::nvvm_suld_1d_i32_zero:
3658 case Intrinsic::nvvm_suld_1d_v2i32_zero:
3659 case Intrinsic::nvvm_suld_1d_v4i32_zero:
3660 case Intrinsic::nvvm_suld_1d_array_i32_zero:
3661 case Intrinsic::nvvm_suld_1d_array_v2i32_zero:
3662 case Intrinsic::nvvm_suld_1d_array_v4i32_zero:
3663 case Intrinsic::nvvm_suld_2d_i32_zero:
3664 case Intrinsic::nvvm_suld_2d_v2i32_zero:
3665 case Intrinsic::nvvm_suld_2d_v4i32_zero:
3666 case Intrinsic::nvvm_suld_2d_array_i32_zero:
3667 case Intrinsic::nvvm_suld_2d_array_v2i32_zero:
3668 case Intrinsic::nvvm_suld_2d_array_v4i32_zero:
3669 case Intrinsic::nvvm_suld_3d_i32_zero:
3670 case Intrinsic::nvvm_suld_3d_v2i32_zero:
3671 case Intrinsic::nvvm_suld_3d_v4i32_zero: {
Justin Holewinski30d56a72014-04-09 15:39:15 +00003672 Info.opc = getOpcForSurfaceInstr(Intrinsic);
3673 Info.memVT = MVT::i32;
Craig Topper062a2ba2014-04-25 05:30:21 +00003674 Info.ptrVal = nullptr;
Justin Holewinski30d56a72014-04-09 15:39:15 +00003675 Info.offset = 0;
3676 Info.vol = 0;
3677 Info.readMem = true;
3678 Info.writeMem = false;
3679 Info.align = 16;
3680 return true;
3681 }
Justin Holewinski9a2350e2014-07-17 11:59:04 +00003682 case Intrinsic::nvvm_suld_1d_i64_clamp:
3683 case Intrinsic::nvvm_suld_1d_v2i64_clamp:
3684 case Intrinsic::nvvm_suld_1d_array_i64_clamp:
3685 case Intrinsic::nvvm_suld_1d_array_v2i64_clamp:
3686 case Intrinsic::nvvm_suld_2d_i64_clamp:
3687 case Intrinsic::nvvm_suld_2d_v2i64_clamp:
3688 case Intrinsic::nvvm_suld_2d_array_i64_clamp:
3689 case Intrinsic::nvvm_suld_2d_array_v2i64_clamp:
3690 case Intrinsic::nvvm_suld_3d_i64_clamp:
3691 case Intrinsic::nvvm_suld_3d_v2i64_clamp:
3692 case Intrinsic::nvvm_suld_1d_i64_trap:
3693 case Intrinsic::nvvm_suld_1d_v2i64_trap:
3694 case Intrinsic::nvvm_suld_1d_array_i64_trap:
3695 case Intrinsic::nvvm_suld_1d_array_v2i64_trap:
3696 case Intrinsic::nvvm_suld_2d_i64_trap:
3697 case Intrinsic::nvvm_suld_2d_v2i64_trap:
3698 case Intrinsic::nvvm_suld_2d_array_i64_trap:
3699 case Intrinsic::nvvm_suld_2d_array_v2i64_trap:
3700 case Intrinsic::nvvm_suld_3d_i64_trap:
3701 case Intrinsic::nvvm_suld_3d_v2i64_trap:
3702 case Intrinsic::nvvm_suld_1d_i64_zero:
3703 case Intrinsic::nvvm_suld_1d_v2i64_zero:
3704 case Intrinsic::nvvm_suld_1d_array_i64_zero:
3705 case Intrinsic::nvvm_suld_1d_array_v2i64_zero:
3706 case Intrinsic::nvvm_suld_2d_i64_zero:
3707 case Intrinsic::nvvm_suld_2d_v2i64_zero:
3708 case Intrinsic::nvvm_suld_2d_array_i64_zero:
3709 case Intrinsic::nvvm_suld_2d_array_v2i64_zero:
3710 case Intrinsic::nvvm_suld_3d_i64_zero:
3711 case Intrinsic::nvvm_suld_3d_v2i64_zero: {
3712 Info.opc = getOpcForSurfaceInstr(Intrinsic);
3713 Info.memVT = MVT::i64;
3714 Info.ptrVal = nullptr;
3715 Info.offset = 0;
3716 Info.vol = 0;
3717 Info.readMem = true;
3718 Info.writeMem = false;
3719 Info.align = 16;
3720 return true;
3721 }
Justin Holewinskiae556d32012-05-04 20:18:50 +00003722 }
3723 return false;
3724}
3725
3726/// isLegalAddressingMode - Return true if the addressing mode represented
3727/// by AM is legal for this target, for a load/store of the specified type.
3728/// Used to guide target specific optimizations, like loop strength reduction
3729/// (LoopStrengthReduce.cpp) and memory optimization for address mode
3730/// (CodeGenPrepare.cpp)
Mehdi Amini0cdec1e2015-07-09 02:09:40 +00003731bool NVPTXTargetLowering::isLegalAddressingMode(const DataLayout &DL,
3732 const AddrMode &AM, Type *Ty,
Matt Arsenaultbd7d80a2015-06-01 05:31:59 +00003733 unsigned AS) const {
Justin Holewinskiae556d32012-05-04 20:18:50 +00003734
3735 // AddrMode - This represents an addressing mode of:
3736 // BaseGV + BaseOffs + BaseReg + Scale*ScaleReg
3737 //
3738 // The legal address modes are
3739 // - [avar]
3740 // - [areg]
3741 // - [areg+immoff]
3742 // - [immAddr]
3743
3744 if (AM.BaseGV) {
Jingyue Wu4be014a2015-07-31 05:09:47 +00003745 return !AM.BaseOffs && !AM.HasBaseReg && !AM.Scale;
Justin Holewinskiae556d32012-05-04 20:18:50 +00003746 }
3747
3748 switch (AM.Scale) {
Justin Holewinski0497ab12013-03-30 14:29:21 +00003749 case 0: // "r", "r+i" or "i" is allowed
Justin Holewinskiae556d32012-05-04 20:18:50 +00003750 break;
3751 case 1:
Justin Holewinski0497ab12013-03-30 14:29:21 +00003752 if (AM.HasBaseReg) // "r+r+i" or "r+r" is not allowed.
Justin Holewinskiae556d32012-05-04 20:18:50 +00003753 return false;
3754 // Otherwise we have r+i.
3755 break;
3756 default:
3757 // No scale > 1 is allowed
3758 return false;
3759 }
3760 return true;
3761}
3762
3763//===----------------------------------------------------------------------===//
3764// NVPTX Inline Assembly Support
3765//===----------------------------------------------------------------------===//
3766
3767/// getConstraintType - Given a constraint letter, return the type of
3768/// constraint it is for this target.
3769NVPTXTargetLowering::ConstraintType
Benjamin Kramer9bfb6272015-07-05 19:29:18 +00003770NVPTXTargetLowering::getConstraintType(StringRef Constraint) const {
Justin Holewinskiae556d32012-05-04 20:18:50 +00003771 if (Constraint.size() == 1) {
3772 switch (Constraint[0]) {
3773 default:
3774 break;
Justin Holewinski2739c012014-06-27 18:36:06 +00003775 case 'b':
Justin Holewinskiae556d32012-05-04 20:18:50 +00003776 case 'r':
3777 case 'h':
3778 case 'c':
3779 case 'l':
3780 case 'f':
3781 case 'd':
3782 case '0':
3783 case 'N':
3784 return C_RegisterClass;
3785 }
3786 }
3787 return TargetLowering::getConstraintType(Constraint);
3788}
3789
Justin Holewinski0497ab12013-03-30 14:29:21 +00003790std::pair<unsigned, const TargetRegisterClass *>
Eric Christopher11e4df72015-02-26 22:38:43 +00003791NVPTXTargetLowering::getRegForInlineAsmConstraint(const TargetRegisterInfo *TRI,
Benjamin Kramer9bfb6272015-07-05 19:29:18 +00003792 StringRef Constraint,
Chad Rosier295bd432013-06-22 18:37:38 +00003793 MVT VT) const {
Justin Holewinskiae556d32012-05-04 20:18:50 +00003794 if (Constraint.size() == 1) {
3795 switch (Constraint[0]) {
Justin Holewinski2739c012014-06-27 18:36:06 +00003796 case 'b':
3797 return std::make_pair(0U, &NVPTX::Int1RegsRegClass);
Justin Holewinskiae556d32012-05-04 20:18:50 +00003798 case 'c':
Justin Holewinskif8f70912013-06-28 17:57:59 +00003799 return std::make_pair(0U, &NVPTX::Int16RegsRegClass);
Justin Holewinskiae556d32012-05-04 20:18:50 +00003800 case 'h':
3801 return std::make_pair(0U, &NVPTX::Int16RegsRegClass);
3802 case 'r':
3803 return std::make_pair(0U, &NVPTX::Int32RegsRegClass);
3804 case 'l':
3805 case 'N':
3806 return std::make_pair(0U, &NVPTX::Int64RegsRegClass);
3807 case 'f':
3808 return std::make_pair(0U, &NVPTX::Float32RegsRegClass);
3809 case 'd':
3810 return std::make_pair(0U, &NVPTX::Float64RegsRegClass);
3811 }
3812 }
Eric Christopher11e4df72015-02-26 22:38:43 +00003813 return TargetLowering::getRegForInlineAsmConstraint(TRI, Constraint, VT);
Justin Holewinskiae556d32012-05-04 20:18:50 +00003814}
3815
Justin Holewinskieafe26d2014-06-27 18:35:37 +00003816//===----------------------------------------------------------------------===//
3817// NVPTX DAG Combining
3818//===----------------------------------------------------------------------===//
3819
Justin Holewinski428cf0e2014-07-17 18:10:09 +00003820bool NVPTXTargetLowering::allowFMA(MachineFunction &MF,
3821 CodeGenOpt::Level OptLevel) const {
3822 const Function *F = MF.getFunction();
3823 const TargetOptions &TO = MF.getTarget().Options;
3824
3825 // Always honor command-line argument
3826 if (FMAContractLevelOpt.getNumOccurrences() > 0) {
3827 return FMAContractLevelOpt > 0;
3828 } else if (OptLevel == 0) {
3829 // Do not contract if we're not optimizing the code
3830 return false;
3831 } else if (TO.AllowFPOpFusion == FPOpFusion::Fast || TO.UnsafeFPMath) {
3832 // Honor TargetOptions flags that explicitly say fusion is okay
3833 return true;
3834 } else if (F->hasFnAttribute("unsafe-fp-math")) {
3835 // Check for unsafe-fp-math=true coming from Clang
3836 Attribute Attr = F->getFnAttribute("unsafe-fp-math");
3837 StringRef Val = Attr.getValueAsString();
3838 if (Val == "true")
3839 return true;
3840 }
3841
3842 // We did not have a clear indication that fusion is allowed, so assume not
3843 return false;
3844}
Justin Holewinskieafe26d2014-06-27 18:35:37 +00003845
3846/// PerformADDCombineWithOperands - Try DAG combinations for an ADD with
3847/// operands N0 and N1. This is a helper for PerformADDCombine that is
3848/// called with the default operands, and if that fails, with commuted
3849/// operands.
3850static SDValue PerformADDCombineWithOperands(SDNode *N, SDValue N0, SDValue N1,
3851 TargetLowering::DAGCombinerInfo &DCI,
3852 const NVPTXSubtarget &Subtarget,
3853 CodeGenOpt::Level OptLevel) {
3854 SelectionDAG &DAG = DCI.DAG;
3855 // Skip non-integer, non-scalar case
3856 EVT VT=N0.getValueType();
3857 if (VT.isVector())
3858 return SDValue();
3859
3860 // fold (add (mul a, b), c) -> (mad a, b, c)
3861 //
3862 if (N0.getOpcode() == ISD::MUL) {
3863 assert (VT.isInteger());
3864 // For integer:
3865 // Since integer multiply-add costs the same as integer multiply
3866 // but is more costly than integer add, do the fusion only when
3867 // the mul is only used in the add.
3868 if (OptLevel==CodeGenOpt::None || VT != MVT::i32 ||
3869 !N0.getNode()->hasOneUse())
3870 return SDValue();
3871
3872 // Do the folding
3873 return DAG.getNode(NVPTXISD::IMAD, SDLoc(N), VT,
3874 N0.getOperand(0), N0.getOperand(1), N1);
3875 }
3876 else if (N0.getOpcode() == ISD::FMUL) {
3877 if (VT == MVT::f32 || VT == MVT::f64) {
Aaron Ballman53201af2014-07-31 12:55:49 +00003878 const auto *TLI = static_cast<const NVPTXTargetLowering *>(
3879 &DAG.getTargetLoweringInfo());
Justin Holewinski428cf0e2014-07-17 18:10:09 +00003880 if (!TLI->allowFMA(DAG.getMachineFunction(), OptLevel))
Justin Holewinskieafe26d2014-06-27 18:35:37 +00003881 return SDValue();
3882
3883 // For floating point:
3884 // Do the fusion only when the mul has less than 5 uses and all
3885 // are add.
3886 // The heuristic is that if a use is not an add, then that use
3887 // cannot be fused into fma, therefore mul is still needed anyway.
3888 // If there are more than 4 uses, even if they are all add, fusing
3889 // them will increase register pressue.
3890 //
3891 int numUses = 0;
3892 int nonAddCount = 0;
3893 for (SDNode::use_iterator UI = N0.getNode()->use_begin(),
3894 UE = N0.getNode()->use_end();
3895 UI != UE; ++UI) {
3896 numUses++;
3897 SDNode *User = *UI;
3898 if (User->getOpcode() != ISD::FADD)
3899 ++nonAddCount;
3900 }
3901 if (numUses >= 5)
3902 return SDValue();
3903 if (nonAddCount) {
3904 int orderNo = N->getIROrder();
3905 int orderNo2 = N0.getNode()->getIROrder();
3906 // simple heuristics here for considering potential register
3907 // pressure, the logics here is that the differnce are used
3908 // to measure the distance between def and use, the longer distance
3909 // more likely cause register pressure.
3910 if (orderNo - orderNo2 < 500)
3911 return SDValue();
3912
3913 // Now, check if at least one of the FMUL's operands is live beyond the node N,
3914 // which guarantees that the FMA will not increase register pressure at node N.
3915 bool opIsLive = false;
3916 const SDNode *left = N0.getOperand(0).getNode();
3917 const SDNode *right = N0.getOperand(1).getNode();
3918
Benjamin Kramer619c4e52015-04-10 11:24:51 +00003919 if (isa<ConstantSDNode>(left) || isa<ConstantSDNode>(right))
Justin Holewinskieafe26d2014-06-27 18:35:37 +00003920 opIsLive = true;
3921
3922 if (!opIsLive)
3923 for (SDNode::use_iterator UI = left->use_begin(), UE = left->use_end(); UI != UE; ++UI) {
3924 SDNode *User = *UI;
3925 int orderNo3 = User->getIROrder();
3926 if (orderNo3 > orderNo) {
3927 opIsLive = true;
3928 break;
3929 }
3930 }
3931
3932 if (!opIsLive)
3933 for (SDNode::use_iterator UI = right->use_begin(), UE = right->use_end(); UI != UE; ++UI) {
3934 SDNode *User = *UI;
3935 int orderNo3 = User->getIROrder();
3936 if (orderNo3 > orderNo) {
3937 opIsLive = true;
3938 break;
3939 }
3940 }
3941
3942 if (!opIsLive)
3943 return SDValue();
3944 }
3945
3946 return DAG.getNode(ISD::FMA, SDLoc(N), VT,
3947 N0.getOperand(0), N0.getOperand(1), N1);
3948 }
3949 }
3950
3951 return SDValue();
3952}
3953
3954/// PerformADDCombine - Target-specific dag combine xforms for ISD::ADD.
3955///
3956static SDValue PerformADDCombine(SDNode *N,
3957 TargetLowering::DAGCombinerInfo &DCI,
3958 const NVPTXSubtarget &Subtarget,
3959 CodeGenOpt::Level OptLevel) {
3960 SDValue N0 = N->getOperand(0);
3961 SDValue N1 = N->getOperand(1);
3962
3963 // First try with the default operand order.
Ahmed Bougachaf8dfb472016-02-09 22:54:12 +00003964 if (SDValue Result =
3965 PerformADDCombineWithOperands(N, N0, N1, DCI, Subtarget, OptLevel))
Justin Holewinskieafe26d2014-06-27 18:35:37 +00003966 return Result;
3967
3968 // If that didn't work, try again with the operands commuted.
3969 return PerformADDCombineWithOperands(N, N1, N0, DCI, Subtarget, OptLevel);
3970}
3971
3972static SDValue PerformANDCombine(SDNode *N,
3973 TargetLowering::DAGCombinerInfo &DCI) {
3974 // The type legalizer turns a vector load of i8 values into a zextload to i16
3975 // registers, optionally ANY_EXTENDs it (if target type is integer),
3976 // and ANDs off the high 8 bits. Since we turn this load into a
3977 // target-specific DAG node, the DAG combiner fails to eliminate these AND
3978 // nodes. Do that here.
3979 SDValue Val = N->getOperand(0);
3980 SDValue Mask = N->getOperand(1);
3981
3982 if (isa<ConstantSDNode>(Val)) {
3983 std::swap(Val, Mask);
3984 }
3985
3986 SDValue AExt;
3987 // Generally, we will see zextload -> IMOV16rr -> ANY_EXTEND -> and
3988 if (Val.getOpcode() == ISD::ANY_EXTEND) {
3989 AExt = Val;
3990 Val = Val->getOperand(0);
3991 }
3992
3993 if (Val->isMachineOpcode() && Val->getMachineOpcode() == NVPTX::IMOV16rr) {
3994 Val = Val->getOperand(0);
3995 }
3996
3997 if (Val->getOpcode() == NVPTXISD::LoadV2 ||
3998 Val->getOpcode() == NVPTXISD::LoadV4) {
3999 ConstantSDNode *MaskCnst = dyn_cast<ConstantSDNode>(Mask);
4000 if (!MaskCnst) {
4001 // Not an AND with a constant
4002 return SDValue();
4003 }
4004
4005 uint64_t MaskVal = MaskCnst->getZExtValue();
4006 if (MaskVal != 0xff) {
4007 // Not an AND that chops off top 8 bits
4008 return SDValue();
4009 }
4010
4011 MemSDNode *Mem = dyn_cast<MemSDNode>(Val);
4012 if (!Mem) {
4013 // Not a MemSDNode?!?
4014 return SDValue();
4015 }
4016
4017 EVT MemVT = Mem->getMemoryVT();
4018 if (MemVT != MVT::v2i8 && MemVT != MVT::v4i8) {
4019 // We only handle the i8 case
4020 return SDValue();
4021 }
4022
4023 unsigned ExtType =
4024 cast<ConstantSDNode>(Val->getOperand(Val->getNumOperands()-1))->
4025 getZExtValue();
4026 if (ExtType == ISD::SEXTLOAD) {
4027 // If for some reason the load is a sextload, the and is needed to zero
4028 // out the high 8 bits
4029 return SDValue();
4030 }
4031
4032 bool AddTo = false;
4033 if (AExt.getNode() != 0) {
4034 // Re-insert the ext as a zext.
4035 Val = DCI.DAG.getNode(ISD::ZERO_EXTEND, SDLoc(N),
4036 AExt.getValueType(), Val);
4037 AddTo = true;
4038 }
4039
4040 // If we get here, the AND is unnecessary. Just replace it with the load
4041 DCI.CombineTo(N, Val, AddTo);
4042 }
4043
4044 return SDValue();
4045}
4046
Bjarke Hammersholt Roune6c647382015-08-26 23:22:02 +00004047static SDValue PerformSELECTCombine(SDNode *N,
4048 TargetLowering::DAGCombinerInfo &DCI) {
4049 // Currently this detects patterns for integer min and max and
4050 // lowers them to PTX-specific intrinsics that enable hardware
4051 // support.
4052
4053 const SDValue Cond = N->getOperand(0);
4054 if (Cond.getOpcode() != ISD::SETCC) return SDValue();
4055
4056 const SDValue LHS = Cond.getOperand(0);
4057 const SDValue RHS = Cond.getOperand(1);
4058 const SDValue True = N->getOperand(1);
4059 const SDValue False = N->getOperand(2);
4060 if (!(LHS == True && RHS == False) && !(LHS == False && RHS == True))
4061 return SDValue();
4062
4063 const EVT VT = N->getValueType(0);
4064 if (VT != MVT::i32 && VT != MVT::i64) return SDValue();
4065
4066 const ISD::CondCode CC = cast<CondCodeSDNode>(Cond.getOperand(2))->get();
4067 SDValue Larger; // The larger of LHS and RHS when condition is true.
4068 switch (CC) {
4069 case ISD::SETULT:
4070 case ISD::SETULE:
4071 case ISD::SETLT:
4072 case ISD::SETLE:
4073 Larger = RHS;
4074 break;
4075
4076 case ISD::SETGT:
4077 case ISD::SETGE:
4078 case ISD::SETUGT:
4079 case ISD::SETUGE:
4080 Larger = LHS;
4081 break;
4082
4083 default:
4084 return SDValue();
4085 }
4086 const bool IsMax = (Larger == True);
4087 const bool IsSigned = ISD::isSignedIntSetCC(CC);
4088
4089 unsigned IntrinsicId;
4090 if (VT == MVT::i32) {
4091 if (IsSigned)
4092 IntrinsicId = IsMax ? Intrinsic::nvvm_max_i : Intrinsic::nvvm_min_i;
4093 else
4094 IntrinsicId = IsMax ? Intrinsic::nvvm_max_ui : Intrinsic::nvvm_min_ui;
4095 } else {
4096 assert(VT == MVT::i64);
4097 if (IsSigned)
4098 IntrinsicId = IsMax ? Intrinsic::nvvm_max_ll : Intrinsic::nvvm_min_ll;
4099 else
4100 IntrinsicId = IsMax ? Intrinsic::nvvm_max_ull : Intrinsic::nvvm_min_ull;
4101 }
4102
4103 SDLoc DL(N);
4104 return DCI.DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DL, VT,
4105 DCI.DAG.getConstant(IntrinsicId, DL, VT), LHS, RHS);
4106}
4107
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004108enum OperandSignedness {
4109 Signed = 0,
4110 Unsigned,
4111 Unknown
4112};
4113
4114/// IsMulWideOperandDemotable - Checks if the provided DAG node is an operand
4115/// that can be demoted to \p OptSize bits without loss of information. The
4116/// signedness of the operand, if determinable, is placed in \p S.
4117static bool IsMulWideOperandDemotable(SDValue Op,
4118 unsigned OptSize,
4119 OperandSignedness &S) {
4120 S = Unknown;
4121
4122 if (Op.getOpcode() == ISD::SIGN_EXTEND ||
4123 Op.getOpcode() == ISD::SIGN_EXTEND_INREG) {
4124 EVT OrigVT = Op.getOperand(0).getValueType();
Justin Holewinskiecca7152014-07-23 18:46:03 +00004125 if (OrigVT.getSizeInBits() <= OptSize) {
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004126 S = Signed;
4127 return true;
4128 }
4129 } else if (Op.getOpcode() == ISD::ZERO_EXTEND) {
4130 EVT OrigVT = Op.getOperand(0).getValueType();
Justin Holewinskiecca7152014-07-23 18:46:03 +00004131 if (OrigVT.getSizeInBits() <= OptSize) {
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004132 S = Unsigned;
4133 return true;
4134 }
4135 }
4136
4137 return false;
4138}
4139
4140/// AreMulWideOperandsDemotable - Checks if the given LHS and RHS operands can
4141/// be demoted to \p OptSize bits without loss of information. If the operands
4142/// contain a constant, it should appear as the RHS operand. The signedness of
4143/// the operands is placed in \p IsSigned.
4144static bool AreMulWideOperandsDemotable(SDValue LHS, SDValue RHS,
4145 unsigned OptSize,
4146 bool &IsSigned) {
4147
4148 OperandSignedness LHSSign;
4149
4150 // The LHS operand must be a demotable op
4151 if (!IsMulWideOperandDemotable(LHS, OptSize, LHSSign))
4152 return false;
4153
4154 // We should have been able to determine the signedness from the LHS
4155 if (LHSSign == Unknown)
4156 return false;
4157
4158 IsSigned = (LHSSign == Signed);
4159
4160 // The RHS can be a demotable op or a constant
4161 if (ConstantSDNode *CI = dyn_cast<ConstantSDNode>(RHS)) {
4162 APInt Val = CI->getAPIntValue();
4163 if (LHSSign == Unsigned) {
Jingyue Wu4be014a2015-07-31 05:09:47 +00004164 return Val.isIntN(OptSize);
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004165 } else {
Jingyue Wu4be014a2015-07-31 05:09:47 +00004166 return Val.isSignedIntN(OptSize);
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004167 }
4168 } else {
4169 OperandSignedness RHSSign;
4170 if (!IsMulWideOperandDemotable(RHS, OptSize, RHSSign))
4171 return false;
4172
Jingyue Wu4be014a2015-07-31 05:09:47 +00004173 return LHSSign == RHSSign;
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004174 }
4175}
4176
4177/// TryMULWIDECombine - Attempt to replace a multiply of M bits with a multiply
4178/// of M/2 bits that produces an M-bit result (i.e. mul.wide). This transform
4179/// works on both multiply DAG nodes and SHL DAG nodes with a constant shift
4180/// amount.
4181static SDValue TryMULWIDECombine(SDNode *N,
4182 TargetLowering::DAGCombinerInfo &DCI) {
4183 EVT MulType = N->getValueType(0);
4184 if (MulType != MVT::i32 && MulType != MVT::i64) {
4185 return SDValue();
4186 }
4187
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00004188 SDLoc DL(N);
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004189 unsigned OptSize = MulType.getSizeInBits() >> 1;
4190 SDValue LHS = N->getOperand(0);
4191 SDValue RHS = N->getOperand(1);
4192
4193 // Canonicalize the multiply so the constant (if any) is on the right
4194 if (N->getOpcode() == ISD::MUL) {
4195 if (isa<ConstantSDNode>(LHS)) {
4196 std::swap(LHS, RHS);
4197 }
4198 }
4199
4200 // If we have a SHL, determine the actual multiply amount
4201 if (N->getOpcode() == ISD::SHL) {
4202 ConstantSDNode *ShlRHS = dyn_cast<ConstantSDNode>(RHS);
4203 if (!ShlRHS) {
4204 return SDValue();
4205 }
4206
4207 APInt ShiftAmt = ShlRHS->getAPIntValue();
4208 unsigned BitWidth = MulType.getSizeInBits();
4209 if (ShiftAmt.sge(0) && ShiftAmt.slt(BitWidth)) {
4210 APInt MulVal = APInt(BitWidth, 1) << ShiftAmt;
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00004211 RHS = DCI.DAG.getConstant(MulVal, DL, MulType);
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004212 } else {
4213 return SDValue();
4214 }
4215 }
4216
4217 bool Signed;
4218 // Verify that our operands are demotable
4219 if (!AreMulWideOperandsDemotable(LHS, RHS, OptSize, Signed)) {
4220 return SDValue();
4221 }
4222
4223 EVT DemotedVT;
4224 if (MulType == MVT::i32) {
4225 DemotedVT = MVT::i16;
4226 } else {
4227 DemotedVT = MVT::i32;
4228 }
4229
4230 // Truncate the operands to the correct size. Note that these are just for
4231 // type consistency and will (likely) be eliminated in later phases.
4232 SDValue TruncLHS =
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00004233 DCI.DAG.getNode(ISD::TRUNCATE, DL, DemotedVT, LHS);
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004234 SDValue TruncRHS =
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00004235 DCI.DAG.getNode(ISD::TRUNCATE, DL, DemotedVT, RHS);
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004236
4237 unsigned Opc;
4238 if (Signed) {
4239 Opc = NVPTXISD::MUL_WIDE_SIGNED;
4240 } else {
4241 Opc = NVPTXISD::MUL_WIDE_UNSIGNED;
4242 }
4243
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00004244 return DCI.DAG.getNode(Opc, DL, MulType, TruncLHS, TruncRHS);
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004245}
4246
4247/// PerformMULCombine - Runs PTX-specific DAG combine patterns on MUL nodes.
4248static SDValue PerformMULCombine(SDNode *N,
4249 TargetLowering::DAGCombinerInfo &DCI,
4250 CodeGenOpt::Level OptLevel) {
4251 if (OptLevel > 0) {
4252 // Try mul.wide combining at OptLevel > 0
Ahmed Bougachaf8dfb472016-02-09 22:54:12 +00004253 if (SDValue Ret = TryMULWIDECombine(N, DCI))
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004254 return Ret;
4255 }
4256
4257 return SDValue();
4258}
4259
4260/// PerformSHLCombine - Runs PTX-specific DAG combine patterns on SHL nodes.
4261static SDValue PerformSHLCombine(SDNode *N,
4262 TargetLowering::DAGCombinerInfo &DCI,
4263 CodeGenOpt::Level OptLevel) {
4264 if (OptLevel > 0) {
4265 // Try mul.wide combining at OptLevel > 0
Ahmed Bougachaf8dfb472016-02-09 22:54:12 +00004266 if (SDValue Ret = TryMULWIDECombine(N, DCI))
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004267 return Ret;
4268 }
4269
4270 return SDValue();
4271}
4272
4273SDValue NVPTXTargetLowering::PerformDAGCombine(SDNode *N,
4274 DAGCombinerInfo &DCI) const {
Justin Holewinski511664d2014-07-23 17:40:45 +00004275 CodeGenOpt::Level OptLevel = getTargetMachine().getOptLevel();
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004276 switch (N->getOpcode()) {
4277 default: break;
4278 case ISD::ADD:
4279 case ISD::FADD:
Eric Christopherbef0a372015-01-30 01:50:07 +00004280 return PerformADDCombine(N, DCI, STI, OptLevel);
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004281 case ISD::MUL:
4282 return PerformMULCombine(N, DCI, OptLevel);
4283 case ISD::SHL:
4284 return PerformSHLCombine(N, DCI, OptLevel);
4285 case ISD::AND:
4286 return PerformANDCombine(N, DCI);
Bjarke Hammersholt Roune6c647382015-08-26 23:22:02 +00004287 case ISD::SELECT:
4288 return PerformSELECTCombine(N, DCI);
Justin Holewinskieafe26d2014-06-27 18:35:37 +00004289 }
4290 return SDValue();
4291}
4292
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004293/// ReplaceVectorLoad - Convert vector loads into multi-output scalar loads.
4294static void ReplaceLoadVector(SDNode *N, SelectionDAG &DAG,
Justin Holewinski0497ab12013-03-30 14:29:21 +00004295 SmallVectorImpl<SDValue> &Results) {
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004296 EVT ResVT = N->getValueType(0);
Andrew Trickef9de2a2013-05-25 02:42:55 +00004297 SDLoc DL(N);
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004298
4299 assert(ResVT.isVector() && "Vector load must have vector type");
4300
4301 // We only handle "native" vector sizes for now, e.g. <4 x double> is not
4302 // legal. We can (and should) split that into 2 loads of <2 x double> here
4303 // but I'm leaving that as a TODO for now.
4304 assert(ResVT.isSimple() && "Can only handle simple types");
4305 switch (ResVT.getSimpleVT().SimpleTy) {
Justin Holewinski0497ab12013-03-30 14:29:21 +00004306 default:
4307 return;
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004308 case MVT::v2i8:
4309 case MVT::v2i16:
4310 case MVT::v2i32:
4311 case MVT::v2i64:
4312 case MVT::v2f32:
4313 case MVT::v2f64:
4314 case MVT::v4i8:
4315 case MVT::v4i16:
4316 case MVT::v4i32:
4317 case MVT::v4f32:
4318 // This is a "native" vector type
4319 break;
4320 }
4321
Justin Holewinskiac451062014-07-16 19:45:35 +00004322 LoadSDNode *LD = cast<LoadSDNode>(N);
4323
4324 unsigned Align = LD->getAlignment();
Mehdi Aminia749f2a2015-07-09 02:09:52 +00004325 auto &TD = DAG.getDataLayout();
Justin Holewinskiac451062014-07-16 19:45:35 +00004326 unsigned PrefAlign =
Mehdi Aminia749f2a2015-07-09 02:09:52 +00004327 TD.getPrefTypeAlignment(ResVT.getTypeForEVT(*DAG.getContext()));
Justin Holewinskiac451062014-07-16 19:45:35 +00004328 if (Align < PrefAlign) {
4329 // This load is not sufficiently aligned, so bail out and let this vector
4330 // load be scalarized. Note that we may still be able to emit smaller
4331 // vector loads. For example, if we are loading a <4 x float> with an
4332 // alignment of 8, this check will fail but the legalizer will try again
4333 // with 2 x <2 x float>, which will succeed with an alignment of 8.
4334 return;
4335 }
4336
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004337 EVT EltVT = ResVT.getVectorElementType();
4338 unsigned NumElts = ResVT.getVectorNumElements();
4339
4340 // Since LoadV2 is a target node, we cannot rely on DAG type legalization.
4341 // Therefore, we must ensure the type is legal. For i1 and i8, we set the
Alp Tokercb402912014-01-24 17:20:08 +00004342 // loaded type to i16 and propagate the "real" type as the memory type.
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004343 bool NeedTrunc = false;
4344 if (EltVT.getSizeInBits() < 16) {
4345 EltVT = MVT::i16;
4346 NeedTrunc = true;
4347 }
4348
4349 unsigned Opcode = 0;
4350 SDVTList LdResVTs;
4351
4352 switch (NumElts) {
Justin Holewinski0497ab12013-03-30 14:29:21 +00004353 default:
4354 return;
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004355 case 2:
4356 Opcode = NVPTXISD::LoadV2;
4357 LdResVTs = DAG.getVTList(EltVT, EltVT, MVT::Other);
4358 break;
4359 case 4: {
4360 Opcode = NVPTXISD::LoadV4;
4361 EVT ListVTs[] = { EltVT, EltVT, EltVT, EltVT, MVT::Other };
Craig Topperabb4ac72014-04-16 06:10:51 +00004362 LdResVTs = DAG.getVTList(ListVTs);
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004363 break;
4364 }
4365 }
4366
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004367 // Copy regular operands
Benjamin Kramerea68a942015-02-19 15:26:17 +00004368 SmallVector<SDValue, 8> OtherOps(N->op_begin(), N->op_end());
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004369
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004370 // The select routine does not have access to the LoadSDNode instance, so
4371 // pass along the extension information
Sergey Dmitrouk842a51b2015-04-28 14:05:47 +00004372 OtherOps.push_back(DAG.getIntPtrConstant(LD->getExtensionType(), DL));
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004373
Craig Topper206fcd42014-04-26 19:29:41 +00004374 SDValue NewLD = DAG.getMemIntrinsicNode(Opcode, DL, LdResVTs, OtherOps,
4375 LD->getMemoryVT(),
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004376 LD->getMemOperand());
4377
4378 SmallVector<SDValue, 4> ScalarRes;
4379
4380 for (unsigned i = 0; i < NumElts; ++i) {
4381 SDValue Res = NewLD.getValue(i);
4382 if (NeedTrunc)
4383 Res = DAG.getNode(ISD::TRUNCATE, DL, ResVT.getVectorElementType(), Res);
4384 ScalarRes.push_back(Res);
4385 }
4386
4387 SDValue LoadChain = NewLD.getValue(NumElts);
4388
Craig Topper48d114b2014-04-26 18:35:24 +00004389 SDValue BuildVec = DAG.getNode(ISD::BUILD_VECTOR, DL, ResVT, ScalarRes);
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004390
4391 Results.push_back(BuildVec);
4392 Results.push_back(LoadChain);
4393}
4394
Justin Holewinski0497ab12013-03-30 14:29:21 +00004395static void ReplaceINTRINSIC_W_CHAIN(SDNode *N, SelectionDAG &DAG,
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004396 SmallVectorImpl<SDValue> &Results) {
4397 SDValue Chain = N->getOperand(0);
4398 SDValue Intrin = N->getOperand(1);
Andrew Trickef9de2a2013-05-25 02:42:55 +00004399 SDLoc DL(N);
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004400
4401 // Get the intrinsic ID
4402 unsigned IntrinNo = cast<ConstantSDNode>(Intrin.getNode())->getZExtValue();
Justin Holewinski0497ab12013-03-30 14:29:21 +00004403 switch (IntrinNo) {
4404 default:
4405 return;
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004406 case Intrinsic::nvvm_ldg_global_i:
4407 case Intrinsic::nvvm_ldg_global_f:
4408 case Intrinsic::nvvm_ldg_global_p:
4409 case Intrinsic::nvvm_ldu_global_i:
4410 case Intrinsic::nvvm_ldu_global_f:
4411 case Intrinsic::nvvm_ldu_global_p: {
4412 EVT ResVT = N->getValueType(0);
4413
4414 if (ResVT.isVector()) {
4415 // Vector LDG/LDU
4416
4417 unsigned NumElts = ResVT.getVectorNumElements();
4418 EVT EltVT = ResVT.getVectorElementType();
4419
Justin Holewinskif8f70912013-06-28 17:57:59 +00004420 // Since LDU/LDG are target nodes, we cannot rely on DAG type
4421 // legalization.
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004422 // Therefore, we must ensure the type is legal. For i1 and i8, we set the
Alp Tokercb402912014-01-24 17:20:08 +00004423 // loaded type to i16 and propagate the "real" type as the memory type.
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004424 bool NeedTrunc = false;
4425 if (EltVT.getSizeInBits() < 16) {
4426 EltVT = MVT::i16;
4427 NeedTrunc = true;
4428 }
4429
4430 unsigned Opcode = 0;
4431 SDVTList LdResVTs;
4432
4433 switch (NumElts) {
Justin Holewinski0497ab12013-03-30 14:29:21 +00004434 default:
4435 return;
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004436 case 2:
Justin Holewinski0497ab12013-03-30 14:29:21 +00004437 switch (IntrinNo) {
4438 default:
4439 return;
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004440 case Intrinsic::nvvm_ldg_global_i:
4441 case Intrinsic::nvvm_ldg_global_f:
4442 case Intrinsic::nvvm_ldg_global_p:
4443 Opcode = NVPTXISD::LDGV2;
4444 break;
4445 case Intrinsic::nvvm_ldu_global_i:
4446 case Intrinsic::nvvm_ldu_global_f:
4447 case Intrinsic::nvvm_ldu_global_p:
4448 Opcode = NVPTXISD::LDUV2;
4449 break;
4450 }
4451 LdResVTs = DAG.getVTList(EltVT, EltVT, MVT::Other);
4452 break;
4453 case 4: {
Justin Holewinski0497ab12013-03-30 14:29:21 +00004454 switch (IntrinNo) {
4455 default:
4456 return;
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004457 case Intrinsic::nvvm_ldg_global_i:
4458 case Intrinsic::nvvm_ldg_global_f:
4459 case Intrinsic::nvvm_ldg_global_p:
4460 Opcode = NVPTXISD::LDGV4;
4461 break;
4462 case Intrinsic::nvvm_ldu_global_i:
4463 case Intrinsic::nvvm_ldu_global_f:
4464 case Intrinsic::nvvm_ldu_global_p:
4465 Opcode = NVPTXISD::LDUV4;
4466 break;
4467 }
4468 EVT ListVTs[] = { EltVT, EltVT, EltVT, EltVT, MVT::Other };
Craig Topperabb4ac72014-04-16 06:10:51 +00004469 LdResVTs = DAG.getVTList(ListVTs);
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004470 break;
4471 }
4472 }
4473
4474 SmallVector<SDValue, 8> OtherOps;
4475
4476 // Copy regular operands
4477
4478 OtherOps.push_back(Chain); // Chain
Justin Holewinski0497ab12013-03-30 14:29:21 +00004479 // Skip operand 1 (intrinsic ID)
Justin Holewinskif8f70912013-06-28 17:57:59 +00004480 // Others
Benjamin Kramerea68a942015-02-19 15:26:17 +00004481 OtherOps.append(N->op_begin() + 2, N->op_end());
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004482
4483 MemIntrinsicSDNode *MemSD = cast<MemIntrinsicSDNode>(N);
4484
Craig Topper206fcd42014-04-26 19:29:41 +00004485 SDValue NewLD = DAG.getMemIntrinsicNode(Opcode, DL, LdResVTs, OtherOps,
4486 MemSD->getMemoryVT(),
4487 MemSD->getMemOperand());
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004488
4489 SmallVector<SDValue, 4> ScalarRes;
4490
4491 for (unsigned i = 0; i < NumElts; ++i) {
4492 SDValue Res = NewLD.getValue(i);
4493 if (NeedTrunc)
Justin Holewinski0497ab12013-03-30 14:29:21 +00004494 Res =
4495 DAG.getNode(ISD::TRUNCATE, DL, ResVT.getVectorElementType(), Res);
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004496 ScalarRes.push_back(Res);
4497 }
4498
4499 SDValue LoadChain = NewLD.getValue(NumElts);
4500
Justin Holewinski0497ab12013-03-30 14:29:21 +00004501 SDValue BuildVec =
Craig Topper48d114b2014-04-26 18:35:24 +00004502 DAG.getNode(ISD::BUILD_VECTOR, DL, ResVT, ScalarRes);
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004503
4504 Results.push_back(BuildVec);
4505 Results.push_back(LoadChain);
4506 } else {
4507 // i8 LDG/LDU
4508 assert(ResVT.isSimple() && ResVT.getSimpleVT().SimpleTy == MVT::i8 &&
4509 "Custom handling of non-i8 ldu/ldg?");
4510
4511 // Just copy all operands as-is
Benjamin Kramerea68a942015-02-19 15:26:17 +00004512 SmallVector<SDValue, 4> Ops(N->op_begin(), N->op_end());
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004513
4514 // Force output to i16
4515 SDVTList LdResVTs = DAG.getVTList(MVT::i16, MVT::Other);
4516
4517 MemIntrinsicSDNode *MemSD = cast<MemIntrinsicSDNode>(N);
4518
4519 // We make sure the memory type is i8, which will be used during isel
4520 // to select the proper instruction.
Justin Holewinski0497ab12013-03-30 14:29:21 +00004521 SDValue NewLD =
Craig Topper206fcd42014-04-26 19:29:41 +00004522 DAG.getMemIntrinsicNode(ISD::INTRINSIC_W_CHAIN, DL, LdResVTs, Ops,
4523 MVT::i8, MemSD->getMemOperand());
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004524
Justin Holewinskie8c93e32013-07-01 12:58:48 +00004525 Results.push_back(DAG.getNode(ISD::TRUNCATE, DL, MVT::i8,
4526 NewLD.getValue(0)));
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004527 Results.push_back(NewLD.getValue(1));
4528 }
4529 }
4530 }
4531}
4532
Justin Holewinski0497ab12013-03-30 14:29:21 +00004533void NVPTXTargetLowering::ReplaceNodeResults(
4534 SDNode *N, SmallVectorImpl<SDValue> &Results, SelectionDAG &DAG) const {
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004535 switch (N->getOpcode()) {
Justin Holewinski0497ab12013-03-30 14:29:21 +00004536 default:
4537 report_fatal_error("Unhandled custom legalization");
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004538 case ISD::LOAD:
Mehdi Aminia749f2a2015-07-09 02:09:52 +00004539 ReplaceLoadVector(N, DAG, Results);
Justin Holewinskibe8dc642013-02-12 14:18:49 +00004540 return;
4541 case ISD::INTRINSIC_W_CHAIN:
4542 ReplaceINTRINSIC_W_CHAIN(N, DAG, Results);
4543 return;
4544 }
4545}
Juergen Ributzkad12ccbd2013-11-19 00:57:56 +00004546
4547// Pin NVPTXSection's and NVPTXTargetObjectFile's vtables to this file.
4548void NVPTXSection::anchor() {}
4549
4550NVPTXTargetObjectFile::~NVPTXTargetObjectFile() {
Rafael Espindola28409302015-10-07 20:32:24 +00004551 delete static_cast<NVPTXSection *>(TextSection);
4552 delete static_cast<NVPTXSection *>(DataSection);
4553 delete static_cast<NVPTXSection *>(BSSSection);
4554 delete static_cast<NVPTXSection *>(ReadOnlySection);
Juergen Ributzkad12ccbd2013-11-19 00:57:56 +00004555
Rafael Espindola28409302015-10-07 20:32:24 +00004556 delete static_cast<NVPTXSection *>(StaticCtorSection);
4557 delete static_cast<NVPTXSection *>(StaticDtorSection);
4558 delete static_cast<NVPTXSection *>(LSDASection);
4559 delete static_cast<NVPTXSection *>(EHFrameSection);
4560 delete static_cast<NVPTXSection *>(DwarfAbbrevSection);
4561 delete static_cast<NVPTXSection *>(DwarfInfoSection);
4562 delete static_cast<NVPTXSection *>(DwarfLineSection);
4563 delete static_cast<NVPTXSection *>(DwarfFrameSection);
4564 delete static_cast<NVPTXSection *>(DwarfPubTypesSection);
4565 delete static_cast<const NVPTXSection *>(DwarfDebugInlineSection);
4566 delete static_cast<NVPTXSection *>(DwarfStrSection);
4567 delete static_cast<NVPTXSection *>(DwarfLocSection);
4568 delete static_cast<NVPTXSection *>(DwarfARangesSection);
4569 delete static_cast<NVPTXSection *>(DwarfRangesSection);
Amjad Aboudd7cfb482016-01-07 14:28:20 +00004570 delete static_cast<NVPTXSection *>(DwarfMacinfoSection);
Juergen Ributzkad12ccbd2013-11-19 00:57:56 +00004571}
Rafael Espindola35a12a82014-11-12 01:27:22 +00004572
Rafael Espindola0709a7b2015-05-21 19:20:38 +00004573MCSection *
Rafael Espindola35a12a82014-11-12 01:27:22 +00004574NVPTXTargetObjectFile::SelectSectionForGlobal(const GlobalValue *GV,
4575 SectionKind Kind, Mangler &Mang,
4576 const TargetMachine &TM) const {
4577 return getDataSection();
4578}