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Nate Begeman1d9d7422005-10-18 00:28:58 +00001//===-- PPCISelLowering.cpp - PPC DAG Lowering Implementation -------------===//
Chris Lattner7c5a3d32005-08-16 17:14:42 +00002//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner7c5a3d32005-08-16 17:14:42 +00007//
8//===----------------------------------------------------------------------===//
9//
Nate Begeman21e463b2005-10-16 05:39:50 +000010// This file implements the PPCISelLowering class.
Chris Lattner7c5a3d32005-08-16 17:14:42 +000011//
12//===----------------------------------------------------------------------===//
13
Chris Lattner16e71f22005-10-14 23:59:06 +000014#include "PPCISelLowering.h"
Jim Laskey2f616bf2006-11-16 22:43:37 +000015#include "PPCMachineFunctionInfo.h"
Chris Lattnerdf4ed632006-11-17 22:10:59 +000016#include "PPCPredicates.h"
Chris Lattner16e71f22005-10-14 23:59:06 +000017#include "PPCTargetMachine.h"
Chris Lattner59138102006-04-17 05:28:54 +000018#include "PPCPerfectShuffle.h"
Owen Anderson718cb662007-09-07 04:06:50 +000019#include "llvm/ADT/STLExtras.h"
Nate Begeman750ac1b2006-02-01 07:19:44 +000020#include "llvm/ADT/VectorExtras.h"
Evan Chengc4c62572006-03-13 23:20:37 +000021#include "llvm/Analysis/ScalarEvolutionExpressions.h"
Chris Lattnerb9a7bea2007-03-06 00:59:59 +000022#include "llvm/CodeGen/CallingConvLower.h"
Chris Lattner7c5a3d32005-08-16 17:14:42 +000023#include "llvm/CodeGen/MachineFrameInfo.h"
24#include "llvm/CodeGen/MachineFunction.h"
Chris Lattner8a2d3ca2005-08-26 21:23:58 +000025#include "llvm/CodeGen/MachineInstrBuilder.h"
Chris Lattner84bc5422007-12-31 04:13:23 +000026#include "llvm/CodeGen/MachineRegisterInfo.h"
Dan Gohman69de1932008-02-06 22:27:42 +000027#include "llvm/CodeGen/PseudoSourceValue.h"
Chris Lattner7c5a3d32005-08-16 17:14:42 +000028#include "llvm/CodeGen/SelectionDAG.h"
Chris Lattner0b1e4e52005-08-26 17:36:52 +000029#include "llvm/Constants.h"
Chris Lattner7c5a3d32005-08-16 17:14:42 +000030#include "llvm/Function.h"
Chris Lattner6d92cad2006-03-26 10:06:40 +000031#include "llvm/Intrinsics.h"
Nate Begeman750ac1b2006-02-01 07:19:44 +000032#include "llvm/Support/MathExtras.h"
Evan Chengd2ee2182006-02-18 00:08:58 +000033#include "llvm/Target/TargetOptions.h"
Chris Lattner4eab7142006-11-10 02:08:47 +000034#include "llvm/Support/CommandLine.h"
Chris Lattner7c5a3d32005-08-16 17:14:42 +000035using namespace llvm;
36
Chris Lattner3ee77402007-06-19 05:46:06 +000037static cl::opt<bool> EnablePPCPreinc("enable-ppc-preinc",
38cl::desc("enable preincrement load/store generation on PPC (experimental)"),
39 cl::Hidden);
Chris Lattner4eab7142006-11-10 02:08:47 +000040
Chris Lattner331d1bc2006-11-02 01:44:04 +000041PPCTargetLowering::PPCTargetLowering(PPCTargetMachine &TM)
42 : TargetLowering(TM), PPCSubTarget(*TM.getSubtargetImpl()) {
Chris Lattner7c5a3d32005-08-16 17:14:42 +000043
Nate Begeman405e3ec2005-10-21 00:02:42 +000044 setPow2DivIsCheap();
Chris Lattner7c5a3d32005-08-16 17:14:42 +000045
Chris Lattnerd145a612005-09-27 22:18:25 +000046 // Use _setjmp/_longjmp instead of setjmp/longjmp.
Anton Korobeynikovd27a2582006-12-10 23:12:42 +000047 setUseUnderscoreSetJmp(true);
48 setUseUnderscoreLongJmp(true);
Chris Lattnerd145a612005-09-27 22:18:25 +000049
Chris Lattner7c5a3d32005-08-16 17:14:42 +000050 // Set up the register classes.
Nate Begeman1d9d7422005-10-18 00:28:58 +000051 addRegisterClass(MVT::i32, PPC::GPRCRegisterClass);
52 addRegisterClass(MVT::f32, PPC::F4RCRegisterClass);
53 addRegisterClass(MVT::f64, PPC::F8RCRegisterClass);
Chris Lattner7c5a3d32005-08-16 17:14:42 +000054
Evan Chengc5484282006-10-04 00:56:09 +000055 // PowerPC has an i16 but no i8 (or i1) SEXTLOAD
Duncan Sandsf9c98e62008-01-23 20:39:46 +000056 setLoadXAction(ISD::SEXTLOAD, MVT::i1, Promote);
Evan Chengc5484282006-10-04 00:56:09 +000057 setLoadXAction(ISD::SEXTLOAD, MVT::i8, Expand);
Duncan Sandsf9c98e62008-01-23 20:39:46 +000058
Chris Lattnerddf89562008-01-17 19:59:44 +000059 setTruncStoreAction(MVT::f64, MVT::f32, Expand);
60
Chris Lattner94e509c2006-11-10 23:58:45 +000061 // PowerPC has pre-inc load and store's.
62 setIndexedLoadAction(ISD::PRE_INC, MVT::i1, Legal);
63 setIndexedLoadAction(ISD::PRE_INC, MVT::i8, Legal);
64 setIndexedLoadAction(ISD::PRE_INC, MVT::i16, Legal);
Evan Chengcd633192006-11-09 19:11:50 +000065 setIndexedLoadAction(ISD::PRE_INC, MVT::i32, Legal);
66 setIndexedLoadAction(ISD::PRE_INC, MVT::i64, Legal);
Chris Lattner94e509c2006-11-10 23:58:45 +000067 setIndexedStoreAction(ISD::PRE_INC, MVT::i1, Legal);
68 setIndexedStoreAction(ISD::PRE_INC, MVT::i8, Legal);
69 setIndexedStoreAction(ISD::PRE_INC, MVT::i16, Legal);
Evan Chengcd633192006-11-09 19:11:50 +000070 setIndexedStoreAction(ISD::PRE_INC, MVT::i32, Legal);
71 setIndexedStoreAction(ISD::PRE_INC, MVT::i64, Legal);
72
Dale Johannesen638ccd52007-10-06 01:24:11 +000073 // Shortening conversions involving ppcf128 get expanded (2 regs -> 1 reg)
74 setConvertAction(MVT::ppcf128, MVT::f64, Expand);
75 setConvertAction(MVT::ppcf128, MVT::f32, Expand);
Dale Johannesen6eaeff22007-10-10 01:01:31 +000076 // This is used in the ppcf128->int sequence. Note it has different semantics
77 // from FP_ROUND: that rounds to nearest, this rounds to zero.
78 setOperationAction(ISD::FP_ROUND_INREG, MVT::ppcf128, Custom);
Dale Johannesen638ccd52007-10-06 01:24:11 +000079
Chris Lattner7c5a3d32005-08-16 17:14:42 +000080 // PowerPC has no intrinsics for these particular operations
81 setOperationAction(ISD::MEMMOVE, MVT::Other, Expand);
82 setOperationAction(ISD::MEMSET, MVT::Other, Expand);
83 setOperationAction(ISD::MEMCPY, MVT::Other, Expand);
Andrew Lenharthd497d9f2008-02-16 14:46:26 +000084 setOperationAction(ISD::MEMBARRIER, MVT::Other, Expand);
Evan Cheng27b7db52008-03-08 00:58:38 +000085 setOperationAction(ISD::PREFETCH, MVT::Other, Expand);
Andrew Lenharthd497d9f2008-02-16 14:46:26 +000086
Chris Lattner7c5a3d32005-08-16 17:14:42 +000087 // PowerPC has no SREM/UREM instructions
88 setOperationAction(ISD::SREM, MVT::i32, Expand);
89 setOperationAction(ISD::UREM, MVT::i32, Expand);
Chris Lattner563ecfb2006-06-27 18:18:41 +000090 setOperationAction(ISD::SREM, MVT::i64, Expand);
91 setOperationAction(ISD::UREM, MVT::i64, Expand);
Dan Gohman3ce990d2007-10-08 17:28:24 +000092
93 // Don't use SMUL_LOHI/UMUL_LOHI or SDIVREM/UDIVREM to lower SREM/UREM.
94 setOperationAction(ISD::UMUL_LOHI, MVT::i32, Expand);
95 setOperationAction(ISD::SMUL_LOHI, MVT::i32, Expand);
96 setOperationAction(ISD::UMUL_LOHI, MVT::i64, Expand);
97 setOperationAction(ISD::SMUL_LOHI, MVT::i64, Expand);
98 setOperationAction(ISD::UDIVREM, MVT::i32, Expand);
99 setOperationAction(ISD::SDIVREM, MVT::i32, Expand);
100 setOperationAction(ISD::UDIVREM, MVT::i64, Expand);
101 setOperationAction(ISD::SDIVREM, MVT::i64, Expand);
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000102
Dan Gohmanf96e4de2007-10-11 23:21:31 +0000103 // We don't support sin/cos/sqrt/fmod/pow
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000104 setOperationAction(ISD::FSIN , MVT::f64, Expand);
105 setOperationAction(ISD::FCOS , MVT::f64, Expand);
Chris Lattner615c2d02005-09-28 22:29:58 +0000106 setOperationAction(ISD::FREM , MVT::f64, Expand);
Dan Gohmanf96e4de2007-10-11 23:21:31 +0000107 setOperationAction(ISD::FPOW , MVT::f64, Expand);
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000108 setOperationAction(ISD::FSIN , MVT::f32, Expand);
109 setOperationAction(ISD::FCOS , MVT::f32, Expand);
Chris Lattner615c2d02005-09-28 22:29:58 +0000110 setOperationAction(ISD::FREM , MVT::f32, Expand);
Dan Gohmanf96e4de2007-10-11 23:21:31 +0000111 setOperationAction(ISD::FPOW , MVT::f32, Expand);
Dale Johannesen5c5eb802008-01-18 19:55:37 +0000112
Dan Gohman1a024862008-01-31 00:41:03 +0000113 setOperationAction(ISD::FLT_ROUNDS_, MVT::i32, Custom);
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000114
115 // If we're enabling GP optimizations, use hardware square root
Chris Lattner1e9de3e2005-09-02 18:33:05 +0000116 if (!TM.getSubtarget<PPCSubtarget>().hasFSQRT()) {
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000117 setOperationAction(ISD::FSQRT, MVT::f64, Expand);
118 setOperationAction(ISD::FSQRT, MVT::f32, Expand);
119 }
120
Chris Lattner9601a862006-03-05 05:08:37 +0000121 setOperationAction(ISD::FCOPYSIGN, MVT::f64, Expand);
122 setOperationAction(ISD::FCOPYSIGN, MVT::f32, Expand);
123
Nate Begemand88fc032006-01-14 03:14:10 +0000124 // PowerPC does not have BSWAP, CTPOP or CTTZ
125 setOperationAction(ISD::BSWAP, MVT::i32 , Expand);
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000126 setOperationAction(ISD::CTPOP, MVT::i32 , Expand);
127 setOperationAction(ISD::CTTZ , MVT::i32 , Expand);
Chris Lattnerf89437d2006-06-27 20:14:52 +0000128 setOperationAction(ISD::BSWAP, MVT::i64 , Expand);
129 setOperationAction(ISD::CTPOP, MVT::i64 , Expand);
130 setOperationAction(ISD::CTTZ , MVT::i64 , Expand);
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000131
Nate Begeman35ef9132006-01-11 21:21:00 +0000132 // PowerPC does not have ROTR
133 setOperationAction(ISD::ROTR, MVT::i32 , Expand);
134
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000135 // PowerPC does not have Select
136 setOperationAction(ISD::SELECT, MVT::i32, Expand);
Chris Lattnerf89437d2006-06-27 20:14:52 +0000137 setOperationAction(ISD::SELECT, MVT::i64, Expand);
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000138 setOperationAction(ISD::SELECT, MVT::f32, Expand);
139 setOperationAction(ISD::SELECT, MVT::f64, Expand);
Chris Lattnere4bc9ea2005-08-26 00:52:45 +0000140
Chris Lattner0b1e4e52005-08-26 17:36:52 +0000141 // PowerPC wants to turn select_cc of FP into fsel when possible.
142 setOperationAction(ISD::SELECT_CC, MVT::f32, Custom);
143 setOperationAction(ISD::SELECT_CC, MVT::f64, Custom);
Nate Begeman44775902006-01-31 08:17:29 +0000144
Nate Begeman750ac1b2006-02-01 07:19:44 +0000145 // PowerPC wants to optimize integer setcc a bit
Nate Begeman44775902006-01-31 08:17:29 +0000146 setOperationAction(ISD::SETCC, MVT::i32, Custom);
Chris Lattnereb9b62e2005-08-31 19:09:57 +0000147
Nate Begeman81e80972006-03-17 01:40:33 +0000148 // PowerPC does not have BRCOND which requires SetCC
149 setOperationAction(ISD::BRCOND, MVT::Other, Expand);
Evan Chengc35497f2006-10-30 08:02:39 +0000150
151 setOperationAction(ISD::BR_JT, MVT::Other, Expand);
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000152
Chris Lattnerf7605322005-08-31 21:09:52 +0000153 // PowerPC turns FP_TO_SINT into FCTIWZ and some load/stores.
154 setOperationAction(ISD::FP_TO_SINT, MVT::i32, Custom);
Nate Begemanc09eeec2005-09-06 22:03:27 +0000155
Jim Laskeyad23c9d2005-08-17 00:40:22 +0000156 // PowerPC does not have [U|S]INT_TO_FP
157 setOperationAction(ISD::SINT_TO_FP, MVT::i32, Expand);
158 setOperationAction(ISD::UINT_TO_FP, MVT::i32, Expand);
159
Chris Lattner53e88452005-12-23 05:13:35 +0000160 setOperationAction(ISD::BIT_CONVERT, MVT::f32, Expand);
161 setOperationAction(ISD::BIT_CONVERT, MVT::i32, Expand);
Chris Lattner5f9faea2006-06-27 18:40:08 +0000162 setOperationAction(ISD::BIT_CONVERT, MVT::i64, Expand);
163 setOperationAction(ISD::BIT_CONVERT, MVT::f64, Expand);
Chris Lattner53e88452005-12-23 05:13:35 +0000164
Chris Lattner25b8b8c2006-04-28 21:56:10 +0000165 // We cannot sextinreg(i1). Expand to shifts.
166 setOperationAction(ISD::SIGN_EXTEND_INREG, MVT::i1, Expand);
Jim Laskey2ad9f172007-02-22 14:56:36 +0000167
Jim Laskeyabf6d172006-01-05 01:25:28 +0000168 // Support label based line numbers.
Chris Lattnerf73bae12005-11-29 06:16:21 +0000169 setOperationAction(ISD::LOCATION, MVT::Other, Expand);
Jim Laskeye0bce712006-01-05 01:47:43 +0000170 setOperationAction(ISD::DEBUG_LOC, MVT::Other, Expand);
Nicolas Geoffray616585b2007-12-21 12:19:44 +0000171
172 setOperationAction(ISD::EXCEPTIONADDR, MVT::i64, Expand);
173 setOperationAction(ISD::EHSELECTION, MVT::i64, Expand);
174 setOperationAction(ISD::EXCEPTIONADDR, MVT::i32, Expand);
175 setOperationAction(ISD::EHSELECTION, MVT::i32, Expand);
176
Chris Lattnere6ec9f22005-09-10 00:21:06 +0000177
Nate Begeman28a6b022005-12-10 02:36:00 +0000178 // We want to legalize GlobalAddress and ConstantPool nodes into the
179 // appropriate instructions to materialize the address.
Chris Lattner3eef4e32005-11-17 18:26:56 +0000180 setOperationAction(ISD::GlobalAddress, MVT::i32, Custom);
Lauro Ramos Venancio75ce0102007-07-11 17:19:51 +0000181 setOperationAction(ISD::GlobalTLSAddress, MVT::i32, Custom);
Nate Begeman28a6b022005-12-10 02:36:00 +0000182 setOperationAction(ISD::ConstantPool, MVT::i32, Custom);
Nate Begeman37efe672006-04-22 18:53:45 +0000183 setOperationAction(ISD::JumpTable, MVT::i32, Custom);
Chris Lattner059ca0f2006-06-16 21:01:35 +0000184 setOperationAction(ISD::GlobalAddress, MVT::i64, Custom);
Lauro Ramos Venancio75ce0102007-07-11 17:19:51 +0000185 setOperationAction(ISD::GlobalTLSAddress, MVT::i64, Custom);
Chris Lattner059ca0f2006-06-16 21:01:35 +0000186 setOperationAction(ISD::ConstantPool, MVT::i64, Custom);
187 setOperationAction(ISD::JumpTable, MVT::i64, Custom);
188
Nate Begemanee625572006-01-27 21:09:22 +0000189 // RET must be custom lowered, to meet ABI requirements
190 setOperationAction(ISD::RET , MVT::Other, Custom);
Duncan Sands36397f52007-07-27 12:58:54 +0000191
Nate Begemanacc398c2006-01-25 18:21:52 +0000192 // VASTART needs to be custom lowered to use the VarArgsFrameIndex
193 setOperationAction(ISD::VASTART , MVT::Other, Custom);
194
Nicolas Geoffray01119992007-04-03 13:59:52 +0000195 // VAARG is custom lowered with ELF 32 ABI
196 if (TM.getSubtarget<PPCSubtarget>().isELF32_ABI())
197 setOperationAction(ISD::VAARG, MVT::Other, Custom);
198 else
199 setOperationAction(ISD::VAARG, MVT::Other, Expand);
200
Chris Lattnerb22c08b2006-01-15 09:02:48 +0000201 // Use the default implementation.
Nate Begemanacc398c2006-01-25 18:21:52 +0000202 setOperationAction(ISD::VACOPY , MVT::Other, Expand);
203 setOperationAction(ISD::VAEND , MVT::Other, Expand);
Chris Lattnerb22c08b2006-01-15 09:02:48 +0000204 setOperationAction(ISD::STACKSAVE , MVT::Other, Expand);
Jim Laskeyefc7e522006-12-04 22:04:42 +0000205 setOperationAction(ISD::STACKRESTORE , MVT::Other, Custom);
Jim Laskey2f616bf2006-11-16 22:43:37 +0000206 setOperationAction(ISD::DYNAMIC_STACKALLOC, MVT::i32 , Custom);
207 setOperationAction(ISD::DYNAMIC_STACKALLOC, MVT::i64 , Custom);
Chris Lattner56a752e2006-10-18 01:18:48 +0000208
Chris Lattner6d92cad2006-03-26 10:06:40 +0000209 // We want to custom lower some of our intrinsics.
Chris Lattner48b61a72006-03-28 00:40:33 +0000210 setOperationAction(ISD::INTRINSIC_WO_CHAIN, MVT::Other, Custom);
Chris Lattner6d92cad2006-03-26 10:06:40 +0000211
Chris Lattnera7a58542006-06-16 17:34:12 +0000212 if (TM.getSubtarget<PPCSubtarget>().has64BitSupport()) {
Nate Begeman1d9d7422005-10-18 00:28:58 +0000213 // They also have instructions for converting between i64 and fp.
Nate Begemanc09eeec2005-09-06 22:03:27 +0000214 setOperationAction(ISD::FP_TO_SINT, MVT::i64, Custom);
Jim Laskeyca367b42006-12-15 14:32:57 +0000215 setOperationAction(ISD::FP_TO_UINT, MVT::i64, Expand);
Nate Begemanc09eeec2005-09-06 22:03:27 +0000216 setOperationAction(ISD::SINT_TO_FP, MVT::i64, Custom);
Chris Lattner85c671b2006-12-07 01:24:16 +0000217 setOperationAction(ISD::UINT_TO_FP, MVT::i64, Expand);
Jim Laskeyca367b42006-12-15 14:32:57 +0000218 setOperationAction(ISD::FP_TO_UINT, MVT::i32, Expand);
219
Chris Lattner7fbcef72006-03-24 07:53:47 +0000220 // FIXME: disable this lowered code. This generates 64-bit register values,
221 // and we don't model the fact that the top part is clobbered by calls. We
222 // need to flag these together so that the value isn't live across a call.
223 //setOperationAction(ISD::SINT_TO_FP, MVT::i32, Custom);
224
Nate Begemanae749a92005-10-25 23:48:36 +0000225 // To take advantage of the above i64 FP_TO_SINT, promote i32 FP_TO_UINT
226 setOperationAction(ISD::FP_TO_UINT, MVT::i32, Promote);
227 } else {
Chris Lattner860e8862005-11-17 07:30:41 +0000228 // PowerPC does not have FP_TO_UINT on 32-bit implementations.
Nate Begemanae749a92005-10-25 23:48:36 +0000229 setOperationAction(ISD::FP_TO_UINT, MVT::i32, Expand);
Nate Begeman9d2b8172005-10-18 00:56:42 +0000230 }
231
Chris Lattnera7a58542006-06-16 17:34:12 +0000232 if (TM.getSubtarget<PPCSubtarget>().use64BitRegs()) {
Chris Lattner26cb2862007-10-19 04:08:28 +0000233 // 64-bit PowerPC implementations can support i64 types directly
Nate Begeman9d2b8172005-10-18 00:56:42 +0000234 addRegisterClass(MVT::i64, PPC::G8RCRegisterClass);
Nate Begeman1d9d7422005-10-18 00:28:58 +0000235 // BUILD_PAIR can't be handled natively, and should be expanded to shl/or
236 setOperationAction(ISD::BUILD_PAIR, MVT::i64, Expand);
Dan Gohman9ed06db2008-03-07 20:36:53 +0000237 // 64-bit PowerPC wants to expand i128 shifts itself.
238 setOperationAction(ISD::SHL_PARTS, MVT::i64, Custom);
239 setOperationAction(ISD::SRA_PARTS, MVT::i64, Custom);
240 setOperationAction(ISD::SRL_PARTS, MVT::i64, Custom);
Nate Begeman1d9d7422005-10-18 00:28:58 +0000241 } else {
Chris Lattner26cb2862007-10-19 04:08:28 +0000242 // 32-bit PowerPC wants to expand i64 shifts itself.
Chris Lattner3fe6c1d2006-09-20 03:47:40 +0000243 setOperationAction(ISD::SHL_PARTS, MVT::i32, Custom);
244 setOperationAction(ISD::SRA_PARTS, MVT::i32, Custom);
245 setOperationAction(ISD::SRL_PARTS, MVT::i32, Custom);
Nate Begemanc09eeec2005-09-06 22:03:27 +0000246 }
Evan Chengd30bf012006-03-01 01:11:20 +0000247
Nate Begeman425a9692005-11-29 08:17:20 +0000248 if (TM.getSubtarget<PPCSubtarget>().hasAltivec()) {
Chris Lattnere3fea5a2006-03-31 19:52:36 +0000249 // First set operation action for all vector types to expand. Then we
250 // will selectively turn on ones that can be effectively codegen'd.
251 for (unsigned VT = (unsigned)MVT::FIRST_VECTOR_VALUETYPE;
Dan Gohmanf5135be2007-05-18 23:21:46 +0000252 VT <= (unsigned)MVT::LAST_VECTOR_VALUETYPE; ++VT) {
Chris Lattnerf3f69de2006-04-16 01:37:57 +0000253 // add/sub are legal for all supported vector VT's.
Chris Lattnere3fea5a2006-03-31 19:52:36 +0000254 setOperationAction(ISD::ADD , (MVT::ValueType)VT, Legal);
255 setOperationAction(ISD::SUB , (MVT::ValueType)VT, Legal);
Chris Lattnere3fea5a2006-03-31 19:52:36 +0000256
Chris Lattner7ff7e672006-04-04 17:25:31 +0000257 // We promote all shuffles to v16i8.
258 setOperationAction(ISD::VECTOR_SHUFFLE, (MVT::ValueType)VT, Promote);
Chris Lattnerf3f69de2006-04-16 01:37:57 +0000259 AddPromotedToType (ISD::VECTOR_SHUFFLE, (MVT::ValueType)VT, MVT::v16i8);
260
261 // We promote all non-typed operations to v4i32.
262 setOperationAction(ISD::AND , (MVT::ValueType)VT, Promote);
263 AddPromotedToType (ISD::AND , (MVT::ValueType)VT, MVT::v4i32);
264 setOperationAction(ISD::OR , (MVT::ValueType)VT, Promote);
265 AddPromotedToType (ISD::OR , (MVT::ValueType)VT, MVT::v4i32);
266 setOperationAction(ISD::XOR , (MVT::ValueType)VT, Promote);
267 AddPromotedToType (ISD::XOR , (MVT::ValueType)VT, MVT::v4i32);
268 setOperationAction(ISD::LOAD , (MVT::ValueType)VT, Promote);
269 AddPromotedToType (ISD::LOAD , (MVT::ValueType)VT, MVT::v4i32);
270 setOperationAction(ISD::SELECT, (MVT::ValueType)VT, Promote);
271 AddPromotedToType (ISD::SELECT, (MVT::ValueType)VT, MVT::v4i32);
272 setOperationAction(ISD::STORE, (MVT::ValueType)VT, Promote);
273 AddPromotedToType (ISD::STORE, (MVT::ValueType)VT, MVT::v4i32);
Chris Lattnere3fea5a2006-03-31 19:52:36 +0000274
Chris Lattnerf3f69de2006-04-16 01:37:57 +0000275 // No other operations are legal.
Chris Lattnere3fea5a2006-03-31 19:52:36 +0000276 setOperationAction(ISD::MUL , (MVT::ValueType)VT, Expand);
277 setOperationAction(ISD::SDIV, (MVT::ValueType)VT, Expand);
278 setOperationAction(ISD::SREM, (MVT::ValueType)VT, Expand);
279 setOperationAction(ISD::UDIV, (MVT::ValueType)VT, Expand);
280 setOperationAction(ISD::UREM, (MVT::ValueType)VT, Expand);
Chris Lattner2ef5e892006-05-24 00:15:25 +0000281 setOperationAction(ISD::FDIV, (MVT::ValueType)VT, Expand);
Evan Cheng66ffe6b2007-07-30 07:51:22 +0000282 setOperationAction(ISD::FNEG, (MVT::ValueType)VT, Expand);
Chris Lattnere3fea5a2006-03-31 19:52:36 +0000283 setOperationAction(ISD::EXTRACT_VECTOR_ELT, (MVT::ValueType)VT, Expand);
284 setOperationAction(ISD::INSERT_VECTOR_ELT, (MVT::ValueType)VT, Expand);
285 setOperationAction(ISD::BUILD_VECTOR, (MVT::ValueType)VT, Expand);
Dan Gohman3ce990d2007-10-08 17:28:24 +0000286 setOperationAction(ISD::UMUL_LOHI, (MVT::ValueType)VT, Expand);
287 setOperationAction(ISD::SMUL_LOHI, (MVT::ValueType)VT, Expand);
288 setOperationAction(ISD::UDIVREM, (MVT::ValueType)VT, Expand);
289 setOperationAction(ISD::SDIVREM, (MVT::ValueType)VT, Expand);
Chris Lattner01cae072006-04-03 23:55:43 +0000290 setOperationAction(ISD::SCALAR_TO_VECTOR, (MVT::ValueType)VT, Expand);
Dan Gohmana3f269f2007-10-12 14:08:57 +0000291 setOperationAction(ISD::FPOW, (MVT::ValueType)VT, Expand);
292 setOperationAction(ISD::CTPOP, (MVT::ValueType)VT, Expand);
293 setOperationAction(ISD::CTLZ, (MVT::ValueType)VT, Expand);
294 setOperationAction(ISD::CTTZ, (MVT::ValueType)VT, Expand);
Chris Lattnere3fea5a2006-03-31 19:52:36 +0000295 }
296
Chris Lattner7ff7e672006-04-04 17:25:31 +0000297 // We can custom expand all VECTOR_SHUFFLEs to VPERM, others we can handle
298 // with merges, splats, etc.
299 setOperationAction(ISD::VECTOR_SHUFFLE, MVT::v16i8, Custom);
300
Chris Lattnerf3f69de2006-04-16 01:37:57 +0000301 setOperationAction(ISD::AND , MVT::v4i32, Legal);
302 setOperationAction(ISD::OR , MVT::v4i32, Legal);
303 setOperationAction(ISD::XOR , MVT::v4i32, Legal);
304 setOperationAction(ISD::LOAD , MVT::v4i32, Legal);
305 setOperationAction(ISD::SELECT, MVT::v4i32, Expand);
306 setOperationAction(ISD::STORE , MVT::v4i32, Legal);
307
Nate Begeman425a9692005-11-29 08:17:20 +0000308 addRegisterClass(MVT::v4f32, PPC::VRRCRegisterClass);
Nate Begeman7fd1edd2005-12-19 23:25:09 +0000309 addRegisterClass(MVT::v4i32, PPC::VRRCRegisterClass);
Chris Lattner8d052bc2006-03-25 07:39:07 +0000310 addRegisterClass(MVT::v8i16, PPC::VRRCRegisterClass);
311 addRegisterClass(MVT::v16i8, PPC::VRRCRegisterClass);
Chris Lattnerec4a0c72006-01-29 06:32:58 +0000312
Chris Lattnere3fea5a2006-03-31 19:52:36 +0000313 setOperationAction(ISD::MUL, MVT::v4f32, Legal);
Chris Lattnere7c768e2006-04-18 03:24:30 +0000314 setOperationAction(ISD::MUL, MVT::v4i32, Custom);
Chris Lattner72dd9bd2006-04-18 03:43:48 +0000315 setOperationAction(ISD::MUL, MVT::v8i16, Custom);
Chris Lattner19a81522006-04-18 03:57:35 +0000316 setOperationAction(ISD::MUL, MVT::v16i8, Custom);
Chris Lattnerf1d0b2b2006-03-20 01:53:53 +0000317
Chris Lattnerb2177b92006-03-19 06:55:52 +0000318 setOperationAction(ISD::SCALAR_TO_VECTOR, MVT::v4f32, Custom);
319 setOperationAction(ISD::SCALAR_TO_VECTOR, MVT::v4i32, Custom);
Chris Lattner64b3a082006-03-24 07:48:08 +0000320
Chris Lattner541f91b2006-04-02 00:43:36 +0000321 setOperationAction(ISD::BUILD_VECTOR, MVT::v16i8, Custom);
322 setOperationAction(ISD::BUILD_VECTOR, MVT::v8i16, Custom);
Chris Lattner64b3a082006-03-24 07:48:08 +0000323 setOperationAction(ISD::BUILD_VECTOR, MVT::v4i32, Custom);
324 setOperationAction(ISD::BUILD_VECTOR, MVT::v4f32, Custom);
Nate Begeman425a9692005-11-29 08:17:20 +0000325 }
326
Chris Lattnerc08f9022006-06-27 00:04:13 +0000327 setSetCCResultType(MVT::i32);
Chris Lattner7b0c58c2006-06-27 17:34:57 +0000328 setShiftAmountType(MVT::i32);
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000329 setSetCCResultContents(ZeroOrOneSetCCResult);
Chris Lattner10da9572006-10-18 01:20:43 +0000330
Jim Laskey2ad9f172007-02-22 14:56:36 +0000331 if (TM.getSubtarget<PPCSubtarget>().isPPC64()) {
Chris Lattner10da9572006-10-18 01:20:43 +0000332 setStackPointerRegisterToSaveRestore(PPC::X1);
Jim Laskey2ad9f172007-02-22 14:56:36 +0000333 setExceptionPointerRegister(PPC::X3);
334 setExceptionSelectorRegister(PPC::X4);
335 } else {
Chris Lattner10da9572006-10-18 01:20:43 +0000336 setStackPointerRegisterToSaveRestore(PPC::R1);
Jim Laskey2ad9f172007-02-22 14:56:36 +0000337 setExceptionPointerRegister(PPC::R3);
338 setExceptionSelectorRegister(PPC::R4);
339 }
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000340
Chris Lattner8c13d0a2006-03-01 04:57:39 +0000341 // We have target-specific dag combine patterns for the following nodes:
342 setTargetDAGCombine(ISD::SINT_TO_FP);
Chris Lattner51269842006-03-01 05:50:56 +0000343 setTargetDAGCombine(ISD::STORE);
Chris Lattner90564f22006-04-18 17:59:36 +0000344 setTargetDAGCombine(ISD::BR_CC);
Chris Lattnerd9989382006-07-10 20:56:58 +0000345 setTargetDAGCombine(ISD::BSWAP);
Chris Lattner8c13d0a2006-03-01 04:57:39 +0000346
Dale Johannesenfabd32d2007-10-19 00:59:18 +0000347 // Darwin long double math library functions have $LDBL128 appended.
348 if (TM.getSubtarget<PPCSubtarget>().isDarwin()) {
Duncan Sands007f9842008-01-10 10:28:30 +0000349 setLibcallName(RTLIB::COS_PPCF128, "cosl$LDBL128");
Dale Johannesenfabd32d2007-10-19 00:59:18 +0000350 setLibcallName(RTLIB::POW_PPCF128, "powl$LDBL128");
351 setLibcallName(RTLIB::REM_PPCF128, "fmodl$LDBL128");
Duncan Sands007f9842008-01-10 10:28:30 +0000352 setLibcallName(RTLIB::SIN_PPCF128, "sinl$LDBL128");
353 setLibcallName(RTLIB::SQRT_PPCF128, "sqrtl$LDBL128");
Dale Johannesenfabd32d2007-10-19 00:59:18 +0000354 }
355
Chris Lattner7c5a3d32005-08-16 17:14:42 +0000356 computeRegisterProperties();
357}
358
Dale Johannesen28d08fd2008-02-28 22:31:51 +0000359/// getByValTypeAlignment - Return the desired alignment for ByVal aggregate
360/// function arguments in the caller parameter area.
361unsigned PPCTargetLowering::getByValTypeAlignment(const Type *Ty) const {
362 TargetMachine &TM = getTargetMachine();
363 // Darwin passes everything on 4 byte boundary.
364 if (TM.getSubtarget<PPCSubtarget>().isDarwin())
365 return 4;
366 // FIXME Elf TBD
367 return 4;
368}
369
Chris Lattnerda6d20f2006-01-09 23:52:17 +0000370const char *PPCTargetLowering::getTargetNodeName(unsigned Opcode) const {
371 switch (Opcode) {
372 default: return 0;
373 case PPCISD::FSEL: return "PPCISD::FSEL";
374 case PPCISD::FCFID: return "PPCISD::FCFID";
375 case PPCISD::FCTIDZ: return "PPCISD::FCTIDZ";
376 case PPCISD::FCTIWZ: return "PPCISD::FCTIWZ";
Chris Lattner51269842006-03-01 05:50:56 +0000377 case PPCISD::STFIWX: return "PPCISD::STFIWX";
Chris Lattnerda6d20f2006-01-09 23:52:17 +0000378 case PPCISD::VMADDFP: return "PPCISD::VMADDFP";
379 case PPCISD::VNMSUBFP: return "PPCISD::VNMSUBFP";
Chris Lattnerf1d0b2b2006-03-20 01:53:53 +0000380 case PPCISD::VPERM: return "PPCISD::VPERM";
Chris Lattnerda6d20f2006-01-09 23:52:17 +0000381 case PPCISD::Hi: return "PPCISD::Hi";
382 case PPCISD::Lo: return "PPCISD::Lo";
Jim Laskey2060a822006-12-11 18:45:56 +0000383 case PPCISD::DYNALLOC: return "PPCISD::DYNALLOC";
Chris Lattnerda6d20f2006-01-09 23:52:17 +0000384 case PPCISD::GlobalBaseReg: return "PPCISD::GlobalBaseReg";
385 case PPCISD::SRL: return "PPCISD::SRL";
386 case PPCISD::SRA: return "PPCISD::SRA";
387 case PPCISD::SHL: return "PPCISD::SHL";
Chris Lattnerecfe55e2006-03-22 05:30:33 +0000388 case PPCISD::EXTSW_32: return "PPCISD::EXTSW_32";
389 case PPCISD::STD_32: return "PPCISD::STD_32";
Nicolas Geoffray63f8fb12007-02-27 13:01:19 +0000390 case PPCISD::CALL_ELF: return "PPCISD::CALL_ELF";
391 case PPCISD::CALL_Macho: return "PPCISD::CALL_Macho";
Chris Lattnerc703a8f2006-05-17 19:00:46 +0000392 case PPCISD::MTCTR: return "PPCISD::MTCTR";
Chris Lattner9f0bc652007-02-25 05:34:32 +0000393 case PPCISD::BCTRL_Macho: return "PPCISD::BCTRL_Macho";
394 case PPCISD::BCTRL_ELF: return "PPCISD::BCTRL_ELF";
Chris Lattnerda6d20f2006-01-09 23:52:17 +0000395 case PPCISD::RET_FLAG: return "PPCISD::RET_FLAG";
Chris Lattner6d92cad2006-03-26 10:06:40 +0000396 case PPCISD::MFCR: return "PPCISD::MFCR";
Chris Lattnera17b1552006-03-31 05:13:27 +0000397 case PPCISD::VCMP: return "PPCISD::VCMP";
Chris Lattner6d92cad2006-03-26 10:06:40 +0000398 case PPCISD::VCMPo: return "PPCISD::VCMPo";
Chris Lattnerd9989382006-07-10 20:56:58 +0000399 case PPCISD::LBRX: return "PPCISD::LBRX";
400 case PPCISD::STBRX: return "PPCISD::STBRX";
Chris Lattnerf70f8d92006-04-18 18:05:58 +0000401 case PPCISD::COND_BRANCH: return "PPCISD::COND_BRANCH";
Chris Lattneref97c672008-01-18 18:51:16 +0000402 case PPCISD::MFFS: return "PPCISD::MFFS";
403 case PPCISD::MTFSB0: return "PPCISD::MTFSB0";
404 case PPCISD::MTFSB1: return "PPCISD::MTFSB1";
405 case PPCISD::FADDRTZ: return "PPCISD::FADDRTZ";
406 case PPCISD::MTFSF: return "PPCISD::MTFSF";
Chris Lattnerda6d20f2006-01-09 23:52:17 +0000407 }
408}
409
Chris Lattner1a635d62006-04-14 06:01:58 +0000410//===----------------------------------------------------------------------===//
411// Node matching predicates, for use by the tblgen matching code.
412//===----------------------------------------------------------------------===//
413
Chris Lattner0b1e4e52005-08-26 17:36:52 +0000414/// isFloatingPointZero - Return true if this is 0.0 or -0.0.
415static bool isFloatingPointZero(SDOperand Op) {
416 if (ConstantFPSDNode *CFP = dyn_cast<ConstantFPSDNode>(Op))
Dale Johanneseneaf08942007-08-31 04:03:46 +0000417 return CFP->getValueAPF().isZero();
Evan Cheng466685d2006-10-09 20:57:25 +0000418 else if (ISD::isEXTLoad(Op.Val) || ISD::isNON_EXTLoad(Op.Val)) {
Chris Lattner0b1e4e52005-08-26 17:36:52 +0000419 // Maybe this has already been legalized into the constant pool?
420 if (ConstantPoolSDNode *CP = dyn_cast<ConstantPoolSDNode>(Op.getOperand(1)))
Evan Chengc356a572006-09-12 21:04:05 +0000421 if (ConstantFP *CFP = dyn_cast<ConstantFP>(CP->getConstVal()))
Dale Johanneseneaf08942007-08-31 04:03:46 +0000422 return CFP->getValueAPF().isZero();
Chris Lattner0b1e4e52005-08-26 17:36:52 +0000423 }
424 return false;
425}
426
Chris Lattnerddb739e2006-04-06 17:23:16 +0000427/// isConstantOrUndef - Op is either an undef node or a ConstantSDNode. Return
428/// true if Op is undef or if it matches the specified value.
429static bool isConstantOrUndef(SDOperand Op, unsigned Val) {
430 return Op.getOpcode() == ISD::UNDEF ||
431 cast<ConstantSDNode>(Op)->getValue() == Val;
432}
433
434/// isVPKUHUMShuffleMask - Return true if this is the shuffle mask for a
435/// VPKUHUM instruction.
Chris Lattnerf24380e2006-04-06 22:28:36 +0000436bool PPC::isVPKUHUMShuffleMask(SDNode *N, bool isUnary) {
437 if (!isUnary) {
438 for (unsigned i = 0; i != 16; ++i)
439 if (!isConstantOrUndef(N->getOperand(i), i*2+1))
440 return false;
441 } else {
442 for (unsigned i = 0; i != 8; ++i)
443 if (!isConstantOrUndef(N->getOperand(i), i*2+1) ||
444 !isConstantOrUndef(N->getOperand(i+8), i*2+1))
445 return false;
446 }
Chris Lattnerd0608e12006-04-06 18:26:28 +0000447 return true;
Chris Lattnerddb739e2006-04-06 17:23:16 +0000448}
449
450/// isVPKUWUMShuffleMask - Return true if this is the shuffle mask for a
451/// VPKUWUM instruction.
Chris Lattnerf24380e2006-04-06 22:28:36 +0000452bool PPC::isVPKUWUMShuffleMask(SDNode *N, bool isUnary) {
453 if (!isUnary) {
454 for (unsigned i = 0; i != 16; i += 2)
455 if (!isConstantOrUndef(N->getOperand(i ), i*2+2) ||
456 !isConstantOrUndef(N->getOperand(i+1), i*2+3))
457 return false;
458 } else {
459 for (unsigned i = 0; i != 8; i += 2)
460 if (!isConstantOrUndef(N->getOperand(i ), i*2+2) ||
461 !isConstantOrUndef(N->getOperand(i+1), i*2+3) ||
462 !isConstantOrUndef(N->getOperand(i+8), i*2+2) ||
463 !isConstantOrUndef(N->getOperand(i+9), i*2+3))
464 return false;
465 }
Chris Lattnerd0608e12006-04-06 18:26:28 +0000466 return true;
Chris Lattnerddb739e2006-04-06 17:23:16 +0000467}
468
Chris Lattnercaad1632006-04-06 22:02:42 +0000469/// isVMerge - Common function, used to match vmrg* shuffles.
470///
471static bool isVMerge(SDNode *N, unsigned UnitSize,
472 unsigned LHSStart, unsigned RHSStart) {
Chris Lattner116cc482006-04-06 21:11:54 +0000473 assert(N->getOpcode() == ISD::BUILD_VECTOR &&
474 N->getNumOperands() == 16 && "PPC only supports shuffles by bytes!");
475 assert((UnitSize == 1 || UnitSize == 2 || UnitSize == 4) &&
476 "Unsupported merge size!");
477
478 for (unsigned i = 0; i != 8/UnitSize; ++i) // Step over units
479 for (unsigned j = 0; j != UnitSize; ++j) { // Step over bytes within unit
480 if (!isConstantOrUndef(N->getOperand(i*UnitSize*2+j),
Chris Lattnercaad1632006-04-06 22:02:42 +0000481 LHSStart+j+i*UnitSize) ||
Chris Lattner116cc482006-04-06 21:11:54 +0000482 !isConstantOrUndef(N->getOperand(i*UnitSize*2+UnitSize+j),
Chris Lattnercaad1632006-04-06 22:02:42 +0000483 RHSStart+j+i*UnitSize))
Chris Lattner116cc482006-04-06 21:11:54 +0000484 return false;
485 }
Chris Lattnercaad1632006-04-06 22:02:42 +0000486 return true;
487}
488
489/// isVMRGLShuffleMask - Return true if this is a shuffle mask suitable for
490/// a VRGL* instruction with the specified unit size (1,2 or 4 bytes).
491bool PPC::isVMRGLShuffleMask(SDNode *N, unsigned UnitSize, bool isUnary) {
492 if (!isUnary)
493 return isVMerge(N, UnitSize, 8, 24);
494 return isVMerge(N, UnitSize, 8, 8);
Chris Lattner116cc482006-04-06 21:11:54 +0000495}
496
497/// isVMRGHShuffleMask - Return true if this is a shuffle mask suitable for
498/// a VRGH* instruction with the specified unit size (1,2 or 4 bytes).
Chris Lattnercaad1632006-04-06 22:02:42 +0000499bool PPC::isVMRGHShuffleMask(SDNode *N, unsigned UnitSize, bool isUnary) {
500 if (!isUnary)
501 return isVMerge(N, UnitSize, 0, 16);
502 return isVMerge(N, UnitSize, 0, 0);
Chris Lattner116cc482006-04-06 21:11:54 +0000503}
504
505
Chris Lattnerd0608e12006-04-06 18:26:28 +0000506/// isVSLDOIShuffleMask - If this is a vsldoi shuffle mask, return the shift
507/// amount, otherwise return -1.
Chris Lattnerf24380e2006-04-06 22:28:36 +0000508int PPC::isVSLDOIShuffleMask(SDNode *N, bool isUnary) {
Chris Lattner116cc482006-04-06 21:11:54 +0000509 assert(N->getOpcode() == ISD::BUILD_VECTOR &&
510 N->getNumOperands() == 16 && "PPC only supports shuffles by bytes!");
Chris Lattnerd0608e12006-04-06 18:26:28 +0000511 // Find the first non-undef value in the shuffle mask.
512 unsigned i;
513 for (i = 0; i != 16 && N->getOperand(i).getOpcode() == ISD::UNDEF; ++i)
514 /*search*/;
515
516 if (i == 16) return -1; // all undef.
517
518 // Otherwise, check to see if the rest of the elements are consequtively
519 // numbered from this value.
520 unsigned ShiftAmt = cast<ConstantSDNode>(N->getOperand(i))->getValue();
521 if (ShiftAmt < i) return -1;
522 ShiftAmt -= i;
Chris Lattnerddb739e2006-04-06 17:23:16 +0000523
Chris Lattnerf24380e2006-04-06 22:28:36 +0000524 if (!isUnary) {
525 // Check the rest of the elements to see if they are consequtive.
526 for (++i; i != 16; ++i)
527 if (!isConstantOrUndef(N->getOperand(i), ShiftAmt+i))
528 return -1;
529 } else {
530 // Check the rest of the elements to see if they are consequtive.
531 for (++i; i != 16; ++i)
532 if (!isConstantOrUndef(N->getOperand(i), (ShiftAmt+i) & 15))
533 return -1;
534 }
Chris Lattnerd0608e12006-04-06 18:26:28 +0000535
536 return ShiftAmt;
537}
Chris Lattneref819f82006-03-20 06:33:01 +0000538
539/// isSplatShuffleMask - Return true if the specified VECTOR_SHUFFLE operand
540/// specifies a splat of a single element that is suitable for input to
541/// VSPLTB/VSPLTH/VSPLTW.
Chris Lattner7ff7e672006-04-04 17:25:31 +0000542bool PPC::isSplatShuffleMask(SDNode *N, unsigned EltSize) {
543 assert(N->getOpcode() == ISD::BUILD_VECTOR &&
544 N->getNumOperands() == 16 &&
545 (EltSize == 1 || EltSize == 2 || EltSize == 4));
Chris Lattnerdd4d2d02006-03-20 06:51:10 +0000546
Chris Lattner88a99ef2006-03-20 06:37:44 +0000547 // This is a splat operation if each element of the permute is the same, and
548 // if the value doesn't reference the second vector.
Chris Lattner7ff7e672006-04-04 17:25:31 +0000549 unsigned ElementBase = 0;
Chris Lattner88a99ef2006-03-20 06:37:44 +0000550 SDOperand Elt = N->getOperand(0);
Chris Lattner7ff7e672006-04-04 17:25:31 +0000551 if (ConstantSDNode *EltV = dyn_cast<ConstantSDNode>(Elt))
552 ElementBase = EltV->getValue();
553 else
554 return false; // FIXME: Handle UNDEF elements too!
555
556 if (cast<ConstantSDNode>(Elt)->getValue() >= 16)
557 return false;
558
559 // Check that they are consequtive.
560 for (unsigned i = 1; i != EltSize; ++i) {
561 if (!isa<ConstantSDNode>(N->getOperand(i)) ||
562 cast<ConstantSDNode>(N->getOperand(i))->getValue() != i+ElementBase)
563 return false;
564 }
565
Chris Lattner88a99ef2006-03-20 06:37:44 +0000566 assert(isa<ConstantSDNode>(Elt) && "Invalid VECTOR_SHUFFLE mask!");
Chris Lattner7ff7e672006-04-04 17:25:31 +0000567 for (unsigned i = EltSize, e = 16; i != e; i += EltSize) {
Chris Lattnerb097aa92006-04-14 23:19:08 +0000568 if (N->getOperand(i).getOpcode() == ISD::UNDEF) continue;
Chris Lattner88a99ef2006-03-20 06:37:44 +0000569 assert(isa<ConstantSDNode>(N->getOperand(i)) &&
570 "Invalid VECTOR_SHUFFLE mask!");
Chris Lattner7ff7e672006-04-04 17:25:31 +0000571 for (unsigned j = 0; j != EltSize; ++j)
572 if (N->getOperand(i+j) != N->getOperand(j))
573 return false;
Chris Lattner88a99ef2006-03-20 06:37:44 +0000574 }
575
Chris Lattner7ff7e672006-04-04 17:25:31 +0000576 return true;
Chris Lattneref819f82006-03-20 06:33:01 +0000577}
578
Evan Cheng66ffe6b2007-07-30 07:51:22 +0000579/// isAllNegativeZeroVector - Returns true if all elements of build_vector
580/// are -0.0.
581bool PPC::isAllNegativeZeroVector(SDNode *N) {
582 assert(N->getOpcode() == ISD::BUILD_VECTOR);
583 if (PPC::isSplatShuffleMask(N, N->getNumOperands()))
584 if (ConstantFPSDNode *CFP = dyn_cast<ConstantFPSDNode>(N))
Dale Johanneseneaf08942007-08-31 04:03:46 +0000585 return CFP->getValueAPF().isNegZero();
Evan Cheng66ffe6b2007-07-30 07:51:22 +0000586 return false;
587}
588
Chris Lattneref819f82006-03-20 06:33:01 +0000589/// getVSPLTImmediate - Return the appropriate VSPLT* immediate to splat the
590/// specified isSplatShuffleMask VECTOR_SHUFFLE mask.
Chris Lattner7ff7e672006-04-04 17:25:31 +0000591unsigned PPC::getVSPLTImmediate(SDNode *N, unsigned EltSize) {
592 assert(isSplatShuffleMask(N, EltSize));
593 return cast<ConstantSDNode>(N->getOperand(0))->getValue() / EltSize;
Chris Lattneref819f82006-03-20 06:33:01 +0000594}
595
Chris Lattnere87192a2006-04-12 17:37:20 +0000596/// get_VSPLTI_elt - If this is a build_vector of constants which can be formed
Chris Lattner140a58f2006-04-08 06:46:53 +0000597/// by using a vspltis[bhw] instruction of the specified element size, return
598/// the constant being splatted. The ByteSize field indicates the number of
599/// bytes of each element [124] -> [bhw].
Chris Lattnere87192a2006-04-12 17:37:20 +0000600SDOperand PPC::get_VSPLTI_elt(SDNode *N, unsigned ByteSize, SelectionDAG &DAG) {
Chris Lattner9c61dcf2006-03-25 06:12:06 +0000601 SDOperand OpVal(0, 0);
Chris Lattner79d9a882006-04-08 07:14:26 +0000602
603 // If ByteSize of the splat is bigger than the element size of the
604 // build_vector, then we have a case where we are checking for a splat where
605 // multiple elements of the buildvector are folded together into a single
606 // logical element of the splat (e.g. "vsplish 1" to splat {0,1}*8).
607 unsigned EltSize = 16/N->getNumOperands();
608 if (EltSize < ByteSize) {
609 unsigned Multiple = ByteSize/EltSize; // Number of BV entries per spltval.
610 SDOperand UniquedVals[4];
611 assert(Multiple > 1 && Multiple <= 4 && "How can this happen?");
612
613 // See if all of the elements in the buildvector agree across.
614 for (unsigned i = 0, e = N->getNumOperands(); i != e; ++i) {
615 if (N->getOperand(i).getOpcode() == ISD::UNDEF) continue;
616 // If the element isn't a constant, bail fully out.
617 if (!isa<ConstantSDNode>(N->getOperand(i))) return SDOperand();
618
619
620 if (UniquedVals[i&(Multiple-1)].Val == 0)
621 UniquedVals[i&(Multiple-1)] = N->getOperand(i);
622 else if (UniquedVals[i&(Multiple-1)] != N->getOperand(i))
623 return SDOperand(); // no match.
624 }
625
626 // Okay, if we reached this point, UniquedVals[0..Multiple-1] contains
627 // either constant or undef values that are identical for each chunk. See
628 // if these chunks can form into a larger vspltis*.
629
630 // Check to see if all of the leading entries are either 0 or -1. If
631 // neither, then this won't fit into the immediate field.
632 bool LeadingZero = true;
633 bool LeadingOnes = true;
634 for (unsigned i = 0; i != Multiple-1; ++i) {
635 if (UniquedVals[i].Val == 0) continue; // Must have been undefs.
636
637 LeadingZero &= cast<ConstantSDNode>(UniquedVals[i])->isNullValue();
638 LeadingOnes &= cast<ConstantSDNode>(UniquedVals[i])->isAllOnesValue();
639 }
640 // Finally, check the least significant entry.
641 if (LeadingZero) {
642 if (UniquedVals[Multiple-1].Val == 0)
643 return DAG.getTargetConstant(0, MVT::i32); // 0,0,0,undef
644 int Val = cast<ConstantSDNode>(UniquedVals[Multiple-1])->getValue();
645 if (Val < 16)
646 return DAG.getTargetConstant(Val, MVT::i32); // 0,0,0,4 -> vspltisw(4)
647 }
648 if (LeadingOnes) {
649 if (UniquedVals[Multiple-1].Val == 0)
650 return DAG.getTargetConstant(~0U, MVT::i32); // -1,-1,-1,undef
651 int Val =cast<ConstantSDNode>(UniquedVals[Multiple-1])->getSignExtended();
652 if (Val >= -16) // -1,-1,-1,-2 -> vspltisw(-2)
653 return DAG.getTargetConstant(Val, MVT::i32);
654 }
655
656 return SDOperand();
657 }
658
Chris Lattner9c61dcf2006-03-25 06:12:06 +0000659 // Check to see if this buildvec has a single non-undef value in its elements.
660 for (unsigned i = 0, e = N->getNumOperands(); i != e; ++i) {
661 if (N->getOperand(i).getOpcode() == ISD::UNDEF) continue;
662 if (OpVal.Val == 0)
663 OpVal = N->getOperand(i);
664 else if (OpVal != N->getOperand(i))
Chris Lattner140a58f2006-04-08 06:46:53 +0000665 return SDOperand();
Chris Lattner9c61dcf2006-03-25 06:12:06 +0000666 }
667
Chris Lattner140a58f2006-04-08 06:46:53 +0000668 if (OpVal.Val == 0) return SDOperand(); // All UNDEF: use implicit def.
Chris Lattner9c61dcf2006-03-25 06:12:06 +0000669
Nate Begeman98e70cc2006-03-28 04:15:58 +0000670 unsigned ValSizeInBytes = 0;
671 uint64_t Value = 0;
Chris Lattner9c61dcf2006-03-25 06:12:06 +0000672 if (ConstantSDNode *CN = dyn_cast<ConstantSDNode>(OpVal)) {
673 Value = CN->getValue();
674 ValSizeInBytes = MVT::getSizeInBits(CN->getValueType(0))/8;
675 } else if (ConstantFPSDNode *CN = dyn_cast<ConstantFPSDNode>(OpVal)) {
676 assert(CN->getValueType(0) == MVT::f32 && "Only one legal FP vector type!");
Dale Johanneseneaf08942007-08-31 04:03:46 +0000677 Value = FloatToBits(CN->getValueAPF().convertToFloat());
Chris Lattner9c61dcf2006-03-25 06:12:06 +0000678 ValSizeInBytes = 4;
679 }
680
681 // If the splat value is larger than the element value, then we can never do
682 // this splat. The only case that we could fit the replicated bits into our
683 // immediate field for would be zero, and we prefer to use vxor for it.
Chris Lattner140a58f2006-04-08 06:46:53 +0000684 if (ValSizeInBytes < ByteSize) return SDOperand();
Chris Lattner9c61dcf2006-03-25 06:12:06 +0000685
686 // If the element value is larger than the splat value, cut it in half and
687 // check to see if the two halves are equal. Continue doing this until we
688 // get to ByteSize. This allows us to handle 0x01010101 as 0x01.
689 while (ValSizeInBytes > ByteSize) {
690 ValSizeInBytes >>= 1;
691
692 // If the top half equals the bottom half, we're still ok.
Chris Lattner9b42bdd2006-04-05 17:39:25 +0000693 if (((Value >> (ValSizeInBytes*8)) & ((1 << (8*ValSizeInBytes))-1)) !=
694 (Value & ((1 << (8*ValSizeInBytes))-1)))
Chris Lattner140a58f2006-04-08 06:46:53 +0000695 return SDOperand();
Chris Lattner9c61dcf2006-03-25 06:12:06 +0000696 }
697
698 // Properly sign extend the value.
699 int ShAmt = (4-ByteSize)*8;
700 int MaskVal = ((int)Value << ShAmt) >> ShAmt;
701
Evan Cheng5b6a01b2006-03-26 09:52:32 +0000702 // If this is zero, don't match, zero matches ISD::isBuildVectorAllZeros.
Chris Lattner140a58f2006-04-08 06:46:53 +0000703 if (MaskVal == 0) return SDOperand();
Chris Lattner9c61dcf2006-03-25 06:12:06 +0000704
Chris Lattner140a58f2006-04-08 06:46:53 +0000705 // Finally, if this value fits in a 5 bit sext field, return it
706 if (((MaskVal << (32-5)) >> (32-5)) == MaskVal)
707 return DAG.getTargetConstant(MaskVal, MVT::i32);
708 return SDOperand();
Chris Lattner9c61dcf2006-03-25 06:12:06 +0000709}
710
Chris Lattner1a635d62006-04-14 06:01:58 +0000711//===----------------------------------------------------------------------===//
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000712// Addressing Mode Selection
713//===----------------------------------------------------------------------===//
714
715/// isIntS16Immediate - This method tests to see if the node is either a 32-bit
716/// or 64-bit immediate, and if the value can be accurately represented as a
717/// sign extension from a 16-bit value. If so, this returns true and the
718/// immediate.
719static bool isIntS16Immediate(SDNode *N, short &Imm) {
720 if (N->getOpcode() != ISD::Constant)
721 return false;
722
723 Imm = (short)cast<ConstantSDNode>(N)->getValue();
724 if (N->getValueType(0) == MVT::i32)
725 return Imm == (int32_t)cast<ConstantSDNode>(N)->getValue();
726 else
727 return Imm == (int64_t)cast<ConstantSDNode>(N)->getValue();
728}
729static bool isIntS16Immediate(SDOperand Op, short &Imm) {
730 return isIntS16Immediate(Op.Val, Imm);
731}
732
733
734/// SelectAddressRegReg - Given the specified addressed, check to see if it
735/// can be represented as an indexed [r+r] operation. Returns false if it
736/// can be more efficiently represented with [r+imm].
737bool PPCTargetLowering::SelectAddressRegReg(SDOperand N, SDOperand &Base,
738 SDOperand &Index,
739 SelectionDAG &DAG) {
740 short imm = 0;
741 if (N.getOpcode() == ISD::ADD) {
742 if (isIntS16Immediate(N.getOperand(1), imm))
743 return false; // r+i
744 if (N.getOperand(1).getOpcode() == PPCISD::Lo)
745 return false; // r+i
746
747 Base = N.getOperand(0);
748 Index = N.getOperand(1);
749 return true;
750 } else if (N.getOpcode() == ISD::OR) {
751 if (isIntS16Immediate(N.getOperand(1), imm))
752 return false; // r+i can fold it if we can.
753
754 // If this is an or of disjoint bitfields, we can codegen this as an add
755 // (for better address arithmetic) if the LHS and RHS of the OR are provably
756 // disjoint.
Dan Gohmanb3564aa2008-02-27 01:23:58 +0000757 APInt LHSKnownZero, LHSKnownOne;
758 APInt RHSKnownZero, RHSKnownOne;
759 DAG.ComputeMaskedBits(N.getOperand(0),
Dan Gohmanec59b952008-02-27 21:12:32 +0000760 APInt::getAllOnesValue(N.getOperand(0)
761 .getValueSizeInBits()),
Dan Gohmanb3564aa2008-02-27 01:23:58 +0000762 LHSKnownZero, LHSKnownOne);
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000763
Dan Gohmanb3564aa2008-02-27 01:23:58 +0000764 if (LHSKnownZero.getBoolValue()) {
765 DAG.ComputeMaskedBits(N.getOperand(1),
Dan Gohmanec59b952008-02-27 21:12:32 +0000766 APInt::getAllOnesValue(N.getOperand(1)
767 .getValueSizeInBits()),
Dan Gohmanb3564aa2008-02-27 01:23:58 +0000768 RHSKnownZero, RHSKnownOne);
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000769 // If all of the bits are known zero on the LHS or RHS, the add won't
770 // carry.
Dan Gohmanec59b952008-02-27 21:12:32 +0000771 if (~(LHSKnownZero | RHSKnownZero) == 0) {
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000772 Base = N.getOperand(0);
773 Index = N.getOperand(1);
774 return true;
775 }
776 }
777 }
778
779 return false;
780}
781
782/// Returns true if the address N can be represented by a base register plus
783/// a signed 16-bit displacement [r+imm], and if it is not better
784/// represented as reg+reg.
785bool PPCTargetLowering::SelectAddressRegImm(SDOperand N, SDOperand &Disp,
786 SDOperand &Base, SelectionDAG &DAG){
787 // If this can be more profitably realized as r+r, fail.
788 if (SelectAddressRegReg(N, Disp, Base, DAG))
789 return false;
790
791 if (N.getOpcode() == ISD::ADD) {
792 short imm = 0;
793 if (isIntS16Immediate(N.getOperand(1), imm)) {
794 Disp = DAG.getTargetConstant((int)imm & 0xFFFF, MVT::i32);
795 if (FrameIndexSDNode *FI = dyn_cast<FrameIndexSDNode>(N.getOperand(0))) {
796 Base = DAG.getTargetFrameIndex(FI->getIndex(), N.getValueType());
797 } else {
798 Base = N.getOperand(0);
799 }
800 return true; // [r+i]
801 } else if (N.getOperand(1).getOpcode() == PPCISD::Lo) {
802 // Match LOAD (ADD (X, Lo(G))).
803 assert(!cast<ConstantSDNode>(N.getOperand(1).getOperand(1))->getValue()
804 && "Cannot handle constant offsets yet!");
805 Disp = N.getOperand(1).getOperand(0); // The global address.
806 assert(Disp.getOpcode() == ISD::TargetGlobalAddress ||
807 Disp.getOpcode() == ISD::TargetConstantPool ||
808 Disp.getOpcode() == ISD::TargetJumpTable);
809 Base = N.getOperand(0);
810 return true; // [&g+r]
811 }
812 } else if (N.getOpcode() == ISD::OR) {
813 short imm = 0;
814 if (isIntS16Immediate(N.getOperand(1), imm)) {
815 // If this is an or of disjoint bitfields, we can codegen this as an add
816 // (for better address arithmetic) if the LHS and RHS of the OR are
817 // provably disjoint.
Dan Gohmanb3564aa2008-02-27 01:23:58 +0000818 APInt LHSKnownZero, LHSKnownOne;
819 DAG.ComputeMaskedBits(N.getOperand(0),
820 APInt::getAllOnesValue(32),
821 LHSKnownZero, LHSKnownOne);
822 if ((LHSKnownZero.getZExtValue()|~(uint64_t)imm) == ~0ULL) {
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000823 // If all of the bits are known zero on the LHS or RHS, the add won't
824 // carry.
825 Base = N.getOperand(0);
826 Disp = DAG.getTargetConstant((int)imm & 0xFFFF, MVT::i32);
827 return true;
828 }
829 }
830 } else if (ConstantSDNode *CN = dyn_cast<ConstantSDNode>(N)) {
831 // Loading from a constant address.
832
833 // If this address fits entirely in a 16-bit sext immediate field, codegen
834 // this as "d, 0"
835 short Imm;
836 if (isIntS16Immediate(CN, Imm)) {
837 Disp = DAG.getTargetConstant(Imm, CN->getValueType(0));
838 Base = DAG.getRegister(PPC::R0, CN->getValueType(0));
839 return true;
840 }
Chris Lattnerbc681d62007-02-17 06:44:03 +0000841
842 // Handle 32-bit sext immediates with LIS + addr mode.
843 if (CN->getValueType(0) == MVT::i32 ||
844 (int64_t)CN->getValue() == (int)CN->getValue()) {
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000845 int Addr = (int)CN->getValue();
846
847 // Otherwise, break this down into an LIS + disp.
Chris Lattnerbc681d62007-02-17 06:44:03 +0000848 Disp = DAG.getTargetConstant((short)Addr, MVT::i32);
849
850 Base = DAG.getTargetConstant((Addr - (signed short)Addr) >> 16, MVT::i32);
851 unsigned Opc = CN->getValueType(0) == MVT::i32 ? PPC::LIS : PPC::LIS8;
852 Base = SDOperand(DAG.getTargetNode(Opc, CN->getValueType(0), Base), 0);
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000853 return true;
854 }
855 }
856
857 Disp = DAG.getTargetConstant(0, getPointerTy());
858 if (FrameIndexSDNode *FI = dyn_cast<FrameIndexSDNode>(N))
859 Base = DAG.getTargetFrameIndex(FI->getIndex(), N.getValueType());
860 else
861 Base = N;
862 return true; // [r+0]
863}
864
865/// SelectAddressRegRegOnly - Given the specified addressed, force it to be
866/// represented as an indexed [r+r] operation.
867bool PPCTargetLowering::SelectAddressRegRegOnly(SDOperand N, SDOperand &Base,
868 SDOperand &Index,
869 SelectionDAG &DAG) {
870 // Check to see if we can easily represent this as an [r+r] address. This
871 // will fail if it thinks that the address is more profitably represented as
872 // reg+imm, e.g. where imm = 0.
873 if (SelectAddressRegReg(N, Base, Index, DAG))
874 return true;
875
876 // If the operand is an addition, always emit this as [r+r], since this is
877 // better (for code size, and execution, as the memop does the add for free)
878 // than emitting an explicit add.
879 if (N.getOpcode() == ISD::ADD) {
880 Base = N.getOperand(0);
881 Index = N.getOperand(1);
882 return true;
883 }
884
885 // Otherwise, do it the hard way, using R0 as the base register.
886 Base = DAG.getRegister(PPC::R0, N.getValueType());
887 Index = N;
888 return true;
889}
890
891/// SelectAddressRegImmShift - Returns true if the address N can be
892/// represented by a base register plus a signed 14-bit displacement
893/// [r+imm*4]. Suitable for use by STD and friends.
894bool PPCTargetLowering::SelectAddressRegImmShift(SDOperand N, SDOperand &Disp,
895 SDOperand &Base,
896 SelectionDAG &DAG) {
897 // If this can be more profitably realized as r+r, fail.
898 if (SelectAddressRegReg(N, Disp, Base, DAG))
899 return false;
900
901 if (N.getOpcode() == ISD::ADD) {
902 short imm = 0;
903 if (isIntS16Immediate(N.getOperand(1), imm) && (imm & 3) == 0) {
904 Disp = DAG.getTargetConstant(((int)imm & 0xFFFF) >> 2, MVT::i32);
905 if (FrameIndexSDNode *FI = dyn_cast<FrameIndexSDNode>(N.getOperand(0))) {
906 Base = DAG.getTargetFrameIndex(FI->getIndex(), N.getValueType());
907 } else {
908 Base = N.getOperand(0);
909 }
910 return true; // [r+i]
911 } else if (N.getOperand(1).getOpcode() == PPCISD::Lo) {
912 // Match LOAD (ADD (X, Lo(G))).
913 assert(!cast<ConstantSDNode>(N.getOperand(1).getOperand(1))->getValue()
914 && "Cannot handle constant offsets yet!");
915 Disp = N.getOperand(1).getOperand(0); // The global address.
916 assert(Disp.getOpcode() == ISD::TargetGlobalAddress ||
917 Disp.getOpcode() == ISD::TargetConstantPool ||
918 Disp.getOpcode() == ISD::TargetJumpTable);
919 Base = N.getOperand(0);
920 return true; // [&g+r]
921 }
922 } else if (N.getOpcode() == ISD::OR) {
923 short imm = 0;
924 if (isIntS16Immediate(N.getOperand(1), imm) && (imm & 3) == 0) {
925 // If this is an or of disjoint bitfields, we can codegen this as an add
926 // (for better address arithmetic) if the LHS and RHS of the OR are
927 // provably disjoint.
Dan Gohmanb3564aa2008-02-27 01:23:58 +0000928 APInt LHSKnownZero, LHSKnownOne;
929 DAG.ComputeMaskedBits(N.getOperand(0),
930 APInt::getAllOnesValue(32),
931 LHSKnownZero, LHSKnownOne);
932 if ((LHSKnownZero.getZExtValue()|~(uint64_t)imm) == ~0ULL) {
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000933 // If all of the bits are known zero on the LHS or RHS, the add won't
934 // carry.
935 Base = N.getOperand(0);
936 Disp = DAG.getTargetConstant(((int)imm & 0xFFFF) >> 2, MVT::i32);
937 return true;
938 }
939 }
940 } else if (ConstantSDNode *CN = dyn_cast<ConstantSDNode>(N)) {
Chris Lattnerdee5a5a2007-02-17 06:57:26 +0000941 // Loading from a constant address. Verify low two bits are clear.
942 if ((CN->getValue() & 3) == 0) {
943 // If this address fits entirely in a 14-bit sext immediate field, codegen
944 // this as "d, 0"
945 short Imm;
946 if (isIntS16Immediate(CN, Imm)) {
947 Disp = DAG.getTargetConstant((unsigned short)Imm >> 2, getPointerTy());
948 Base = DAG.getRegister(PPC::R0, CN->getValueType(0));
949 return true;
950 }
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000951
Chris Lattnerdee5a5a2007-02-17 06:57:26 +0000952 // Fold the low-part of 32-bit absolute addresses into addr mode.
953 if (CN->getValueType(0) == MVT::i32 ||
954 (int64_t)CN->getValue() == (int)CN->getValue()) {
955 int Addr = (int)CN->getValue();
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000956
Chris Lattnerdee5a5a2007-02-17 06:57:26 +0000957 // Otherwise, break this down into an LIS + disp.
958 Disp = DAG.getTargetConstant((short)Addr >> 2, MVT::i32);
959
960 Base = DAG.getTargetConstant((Addr-(signed short)Addr) >> 16, MVT::i32);
961 unsigned Opc = CN->getValueType(0) == MVT::i32 ? PPC::LIS : PPC::LIS8;
962 Base = SDOperand(DAG.getTargetNode(Opc, CN->getValueType(0), Base), 0);
963 return true;
964 }
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000965 }
966 }
967
968 Disp = DAG.getTargetConstant(0, getPointerTy());
969 if (FrameIndexSDNode *FI = dyn_cast<FrameIndexSDNode>(N))
970 Base = DAG.getTargetFrameIndex(FI->getIndex(), N.getValueType());
971 else
972 Base = N;
973 return true; // [r+0]
974}
975
976
977/// getPreIndexedAddressParts - returns true by value, base pointer and
978/// offset pointer and addressing mode by reference if the node's address
979/// can be legally represented as pre-indexed load / store address.
980bool PPCTargetLowering::getPreIndexedAddressParts(SDNode *N, SDOperand &Base,
981 SDOperand &Offset,
Evan Cheng144d8f02006-11-09 17:55:04 +0000982 ISD::MemIndexedMode &AM,
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000983 SelectionDAG &DAG) {
Chris Lattner4eab7142006-11-10 02:08:47 +0000984 // Disabled by default for now.
985 if (!EnablePPCPreinc) return false;
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000986
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000987 SDOperand Ptr;
Chris Lattner2fe4bf42006-11-14 01:38:31 +0000988 MVT::ValueType VT;
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000989 if (LoadSDNode *LD = dyn_cast<LoadSDNode>(N)) {
990 Ptr = LD->getBasePtr();
Dan Gohmanb625f2f2008-01-30 00:15:11 +0000991 VT = LD->getMemoryVT();
Chris Lattner0851b4f2006-11-15 19:55:13 +0000992
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000993 } else if (StoreSDNode *ST = dyn_cast<StoreSDNode>(N)) {
Chris Lattner4eab7142006-11-10 02:08:47 +0000994 ST = ST;
Chris Lattner2fe4bf42006-11-14 01:38:31 +0000995 Ptr = ST->getBasePtr();
Dan Gohmanb625f2f2008-01-30 00:15:11 +0000996 VT = ST->getMemoryVT();
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +0000997 } else
998 return false;
999
Chris Lattner2fe4bf42006-11-14 01:38:31 +00001000 // PowerPC doesn't have preinc load/store instructions for vectors.
1001 if (MVT::isVector(VT))
1002 return false;
1003
Chris Lattner0851b4f2006-11-15 19:55:13 +00001004 // TODO: Check reg+reg first.
1005
1006 // LDU/STU use reg+imm*4, others use reg+imm.
1007 if (VT != MVT::i64) {
1008 // reg + imm
1009 if (!SelectAddressRegImm(Ptr, Offset, Base, DAG))
1010 return false;
1011 } else {
1012 // reg + imm * 4.
1013 if (!SelectAddressRegImmShift(Ptr, Offset, Base, DAG))
1014 return false;
1015 }
Chris Lattnerf6edf4d2006-11-11 00:08:42 +00001016
Chris Lattnerf6edf4d2006-11-11 00:08:42 +00001017 if (LoadSDNode *LD = dyn_cast<LoadSDNode>(N)) {
Chris Lattner0851b4f2006-11-15 19:55:13 +00001018 // PPC64 doesn't have lwau, but it does have lwaux. Reject preinc load of
1019 // sext i32 to i64 when addr mode is r+i.
Dan Gohmanb625f2f2008-01-30 00:15:11 +00001020 if (LD->getValueType(0) == MVT::i64 && LD->getMemoryVT() == MVT::i32 &&
Chris Lattnerf6edf4d2006-11-11 00:08:42 +00001021 LD->getExtensionType() == ISD::SEXTLOAD &&
1022 isa<ConstantSDNode>(Offset))
1023 return false;
Chris Lattner0851b4f2006-11-15 19:55:13 +00001024 }
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +00001025
Chris Lattner4eab7142006-11-10 02:08:47 +00001026 AM = ISD::PRE_INC;
1027 return true;
Chris Lattnerfc5b1ab2006-11-08 02:15:41 +00001028}
1029
1030//===----------------------------------------------------------------------===//
Chris Lattner1a635d62006-04-14 06:01:58 +00001031// LowerOperation implementation
1032//===----------------------------------------------------------------------===//
1033
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001034SDOperand PPCTargetLowering::LowerConstantPool(SDOperand Op,
1035 SelectionDAG &DAG) {
Chris Lattner059ca0f2006-06-16 21:01:35 +00001036 MVT::ValueType PtrVT = Op.getValueType();
Chris Lattner1a635d62006-04-14 06:01:58 +00001037 ConstantPoolSDNode *CP = cast<ConstantPoolSDNode>(Op);
Evan Chengc356a572006-09-12 21:04:05 +00001038 Constant *C = CP->getConstVal();
Chris Lattner059ca0f2006-06-16 21:01:35 +00001039 SDOperand CPI = DAG.getTargetConstantPool(C, PtrVT, CP->getAlignment());
1040 SDOperand Zero = DAG.getConstant(0, PtrVT);
Chris Lattner1a635d62006-04-14 06:01:58 +00001041
1042 const TargetMachine &TM = DAG.getTarget();
1043
Chris Lattner059ca0f2006-06-16 21:01:35 +00001044 SDOperand Hi = DAG.getNode(PPCISD::Hi, PtrVT, CPI, Zero);
1045 SDOperand Lo = DAG.getNode(PPCISD::Lo, PtrVT, CPI, Zero);
1046
Chris Lattner1a635d62006-04-14 06:01:58 +00001047 // If this is a non-darwin platform, we don't support non-static relo models
1048 // yet.
1049 if (TM.getRelocationModel() == Reloc::Static ||
1050 !TM.getSubtarget<PPCSubtarget>().isDarwin()) {
1051 // Generate non-pic code that has direct accesses to the constant pool.
1052 // The address of the global is just (hi(&g)+lo(&g)).
Chris Lattner059ca0f2006-06-16 21:01:35 +00001053 return DAG.getNode(ISD::ADD, PtrVT, Hi, Lo);
Chris Lattner1a635d62006-04-14 06:01:58 +00001054 }
1055
Chris Lattner35d86fe2006-07-26 21:12:04 +00001056 if (TM.getRelocationModel() == Reloc::PIC_) {
Chris Lattner1a635d62006-04-14 06:01:58 +00001057 // With PIC, the first instruction is actually "GR+hi(&G)".
Chris Lattner059ca0f2006-06-16 21:01:35 +00001058 Hi = DAG.getNode(ISD::ADD, PtrVT,
1059 DAG.getNode(PPCISD::GlobalBaseReg, PtrVT), Hi);
Chris Lattner1a635d62006-04-14 06:01:58 +00001060 }
1061
Chris Lattner059ca0f2006-06-16 21:01:35 +00001062 Lo = DAG.getNode(ISD::ADD, PtrVT, Hi, Lo);
Chris Lattner1a635d62006-04-14 06:01:58 +00001063 return Lo;
1064}
1065
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001066SDOperand PPCTargetLowering::LowerJumpTable(SDOperand Op, SelectionDAG &DAG) {
Chris Lattner059ca0f2006-06-16 21:01:35 +00001067 MVT::ValueType PtrVT = Op.getValueType();
Nate Begeman37efe672006-04-22 18:53:45 +00001068 JumpTableSDNode *JT = cast<JumpTableSDNode>(Op);
Chris Lattner059ca0f2006-06-16 21:01:35 +00001069 SDOperand JTI = DAG.getTargetJumpTable(JT->getIndex(), PtrVT);
1070 SDOperand Zero = DAG.getConstant(0, PtrVT);
Nate Begeman37efe672006-04-22 18:53:45 +00001071
1072 const TargetMachine &TM = DAG.getTarget();
Chris Lattner059ca0f2006-06-16 21:01:35 +00001073
1074 SDOperand Hi = DAG.getNode(PPCISD::Hi, PtrVT, JTI, Zero);
1075 SDOperand Lo = DAG.getNode(PPCISD::Lo, PtrVT, JTI, Zero);
1076
Nate Begeman37efe672006-04-22 18:53:45 +00001077 // If this is a non-darwin platform, we don't support non-static relo models
1078 // yet.
1079 if (TM.getRelocationModel() == Reloc::Static ||
1080 !TM.getSubtarget<PPCSubtarget>().isDarwin()) {
1081 // Generate non-pic code that has direct accesses to the constant pool.
1082 // The address of the global is just (hi(&g)+lo(&g)).
Chris Lattner059ca0f2006-06-16 21:01:35 +00001083 return DAG.getNode(ISD::ADD, PtrVT, Hi, Lo);
Nate Begeman37efe672006-04-22 18:53:45 +00001084 }
1085
Chris Lattner35d86fe2006-07-26 21:12:04 +00001086 if (TM.getRelocationModel() == Reloc::PIC_) {
Nate Begeman37efe672006-04-22 18:53:45 +00001087 // With PIC, the first instruction is actually "GR+hi(&G)".
Chris Lattner059ca0f2006-06-16 21:01:35 +00001088 Hi = DAG.getNode(ISD::ADD, PtrVT,
Chris Lattner0d72a202006-07-28 16:45:47 +00001089 DAG.getNode(PPCISD::GlobalBaseReg, PtrVT), Hi);
Nate Begeman37efe672006-04-22 18:53:45 +00001090 }
1091
Chris Lattner059ca0f2006-06-16 21:01:35 +00001092 Lo = DAG.getNode(ISD::ADD, PtrVT, Hi, Lo);
Nate Begeman37efe672006-04-22 18:53:45 +00001093 return Lo;
1094}
1095
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001096SDOperand PPCTargetLowering::LowerGlobalTLSAddress(SDOperand Op,
1097 SelectionDAG &DAG) {
Lauro Ramos Venancio75ce0102007-07-11 17:19:51 +00001098 assert(0 && "TLS not implemented for PPC.");
1099}
1100
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001101SDOperand PPCTargetLowering::LowerGlobalAddress(SDOperand Op,
1102 SelectionDAG &DAG) {
Chris Lattner059ca0f2006-06-16 21:01:35 +00001103 MVT::ValueType PtrVT = Op.getValueType();
Chris Lattner1a635d62006-04-14 06:01:58 +00001104 GlobalAddressSDNode *GSDN = cast<GlobalAddressSDNode>(Op);
1105 GlobalValue *GV = GSDN->getGlobal();
Chris Lattner059ca0f2006-06-16 21:01:35 +00001106 SDOperand GA = DAG.getTargetGlobalAddress(GV, PtrVT, GSDN->getOffset());
Evan Chengfcf5d4f2008-02-02 05:06:29 +00001107 // If it's a debug information descriptor, don't mess with it.
1108 if (DAG.isVerifiedDebugInfoDesc(Op))
1109 return GA;
Chris Lattner059ca0f2006-06-16 21:01:35 +00001110 SDOperand Zero = DAG.getConstant(0, PtrVT);
Chris Lattner1a635d62006-04-14 06:01:58 +00001111
1112 const TargetMachine &TM = DAG.getTarget();
1113
Chris Lattner059ca0f2006-06-16 21:01:35 +00001114 SDOperand Hi = DAG.getNode(PPCISD::Hi, PtrVT, GA, Zero);
1115 SDOperand Lo = DAG.getNode(PPCISD::Lo, PtrVT, GA, Zero);
1116
Chris Lattner1a635d62006-04-14 06:01:58 +00001117 // If this is a non-darwin platform, we don't support non-static relo models
1118 // yet.
1119 if (TM.getRelocationModel() == Reloc::Static ||
1120 !TM.getSubtarget<PPCSubtarget>().isDarwin()) {
1121 // Generate non-pic code that has direct accesses to globals.
1122 // The address of the global is just (hi(&g)+lo(&g)).
Chris Lattner059ca0f2006-06-16 21:01:35 +00001123 return DAG.getNode(ISD::ADD, PtrVT, Hi, Lo);
Chris Lattner1a635d62006-04-14 06:01:58 +00001124 }
1125
Chris Lattner35d86fe2006-07-26 21:12:04 +00001126 if (TM.getRelocationModel() == Reloc::PIC_) {
Chris Lattner1a635d62006-04-14 06:01:58 +00001127 // With PIC, the first instruction is actually "GR+hi(&G)".
Chris Lattner059ca0f2006-06-16 21:01:35 +00001128 Hi = DAG.getNode(ISD::ADD, PtrVT,
1129 DAG.getNode(PPCISD::GlobalBaseReg, PtrVT), Hi);
Chris Lattner1a635d62006-04-14 06:01:58 +00001130 }
1131
Chris Lattner059ca0f2006-06-16 21:01:35 +00001132 Lo = DAG.getNode(ISD::ADD, PtrVT, Hi, Lo);
Chris Lattner1a635d62006-04-14 06:01:58 +00001133
Chris Lattner57fc62c2006-12-11 23:22:45 +00001134 if (!TM.getSubtarget<PPCSubtarget>().hasLazyResolverStub(GV))
Chris Lattner1a635d62006-04-14 06:01:58 +00001135 return Lo;
1136
1137 // If the global is weak or external, we have to go through the lazy
1138 // resolution stub.
Evan Cheng466685d2006-10-09 20:57:25 +00001139 return DAG.getLoad(PtrVT, DAG.getEntryNode(), Lo, NULL, 0);
Chris Lattner1a635d62006-04-14 06:01:58 +00001140}
1141
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001142SDOperand PPCTargetLowering::LowerSETCC(SDOperand Op, SelectionDAG &DAG) {
Chris Lattner1a635d62006-04-14 06:01:58 +00001143 ISD::CondCode CC = cast<CondCodeSDNode>(Op.getOperand(2))->get();
1144
1145 // If we're comparing for equality to zero, expose the fact that this is
1146 // implented as a ctlz/srl pair on ppc, so that the dag combiner can
1147 // fold the new nodes.
1148 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op.getOperand(1))) {
1149 if (C->isNullValue() && CC == ISD::SETEQ) {
1150 MVT::ValueType VT = Op.getOperand(0).getValueType();
1151 SDOperand Zext = Op.getOperand(0);
1152 if (VT < MVT::i32) {
1153 VT = MVT::i32;
1154 Zext = DAG.getNode(ISD::ZERO_EXTEND, VT, Op.getOperand(0));
1155 }
1156 unsigned Log2b = Log2_32(MVT::getSizeInBits(VT));
1157 SDOperand Clz = DAG.getNode(ISD::CTLZ, VT, Zext);
1158 SDOperand Scc = DAG.getNode(ISD::SRL, VT, Clz,
1159 DAG.getConstant(Log2b, MVT::i32));
1160 return DAG.getNode(ISD::TRUNCATE, MVT::i32, Scc);
1161 }
1162 // Leave comparisons against 0 and -1 alone for now, since they're usually
1163 // optimized. FIXME: revisit this when we can custom lower all setcc
1164 // optimizations.
1165 if (C->isAllOnesValue() || C->isNullValue())
1166 return SDOperand();
1167 }
1168
1169 // If we have an integer seteq/setne, turn it into a compare against zero
Chris Lattnerac011bc2006-11-14 05:28:08 +00001170 // by xor'ing the rhs with the lhs, which is faster than setting a
1171 // condition register, reading it back out, and masking the correct bit. The
1172 // normal approach here uses sub to do this instead of xor. Using xor exposes
1173 // the result to other bit-twiddling opportunities.
Chris Lattner1a635d62006-04-14 06:01:58 +00001174 MVT::ValueType LHSVT = Op.getOperand(0).getValueType();
1175 if (MVT::isInteger(LHSVT) && (CC == ISD::SETEQ || CC == ISD::SETNE)) {
1176 MVT::ValueType VT = Op.getValueType();
Chris Lattnerac011bc2006-11-14 05:28:08 +00001177 SDOperand Sub = DAG.getNode(ISD::XOR, LHSVT, Op.getOperand(0),
Chris Lattner1a635d62006-04-14 06:01:58 +00001178 Op.getOperand(1));
1179 return DAG.getSetCC(VT, Sub, DAG.getConstant(0, LHSVT), CC);
1180 }
1181 return SDOperand();
1182}
1183
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001184SDOperand PPCTargetLowering::LowerVAARG(SDOperand Op, SelectionDAG &DAG,
Nicolas Geoffray01119992007-04-03 13:59:52 +00001185 int VarArgsFrameIndex,
1186 int VarArgsStackOffset,
1187 unsigned VarArgsNumGPR,
1188 unsigned VarArgsNumFPR,
1189 const PPCSubtarget &Subtarget) {
1190
1191 assert(0 && "VAARG in ELF32 ABI not implemented yet!");
1192}
1193
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001194SDOperand PPCTargetLowering::LowerVASTART(SDOperand Op, SelectionDAG &DAG,
Nicolas Geoffray01119992007-04-03 13:59:52 +00001195 int VarArgsFrameIndex,
1196 int VarArgsStackOffset,
1197 unsigned VarArgsNumGPR,
1198 unsigned VarArgsNumFPR,
1199 const PPCSubtarget &Subtarget) {
1200
1201 if (Subtarget.isMachoABI()) {
1202 // vastart just stores the address of the VarArgsFrameIndex slot into the
1203 // memory location argument.
1204 MVT::ValueType PtrVT = DAG.getTargetLoweringInfo().getPointerTy();
1205 SDOperand FR = DAG.getFrameIndex(VarArgsFrameIndex, PtrVT);
Dan Gohman69de1932008-02-06 22:27:42 +00001206 const Value *SV = cast<SrcValueSDNode>(Op.getOperand(2))->getValue();
1207 return DAG.getStore(Op.getOperand(0), FR, Op.getOperand(1), SV, 0);
Nicolas Geoffray01119992007-04-03 13:59:52 +00001208 }
1209
1210 // For ELF 32 ABI we follow the layout of the va_list struct.
1211 // We suppose the given va_list is already allocated.
1212 //
1213 // typedef struct {
1214 // char gpr; /* index into the array of 8 GPRs
1215 // * stored in the register save area
1216 // * gpr=0 corresponds to r3,
1217 // * gpr=1 to r4, etc.
1218 // */
1219 // char fpr; /* index into the array of 8 FPRs
1220 // * stored in the register save area
1221 // * fpr=0 corresponds to f1,
1222 // * fpr=1 to f2, etc.
1223 // */
1224 // char *overflow_arg_area;
1225 // /* location on stack that holds
1226 // * the next overflow argument
1227 // */
1228 // char *reg_save_area;
1229 // /* where r3:r10 and f1:f8 (if saved)
1230 // * are stored
1231 // */
1232 // } va_list[1];
1233
1234
1235 SDOperand ArgGPR = DAG.getConstant(VarArgsNumGPR, MVT::i8);
1236 SDOperand ArgFPR = DAG.getConstant(VarArgsNumFPR, MVT::i8);
1237
1238
Chris Lattner0d72a202006-07-28 16:45:47 +00001239 MVT::ValueType PtrVT = DAG.getTargetLoweringInfo().getPointerTy();
Nicolas Geoffray01119992007-04-03 13:59:52 +00001240
Dan Gohman69de1932008-02-06 22:27:42 +00001241 SDOperand StackOffsetFI = DAG.getFrameIndex(VarArgsStackOffset, PtrVT);
Chris Lattner0d72a202006-07-28 16:45:47 +00001242 SDOperand FR = DAG.getFrameIndex(VarArgsFrameIndex, PtrVT);
Nicolas Geoffray01119992007-04-03 13:59:52 +00001243
Dan Gohman69de1932008-02-06 22:27:42 +00001244 uint64_t FrameOffset = MVT::getSizeInBits(PtrVT)/8;
1245 SDOperand ConstFrameOffset = DAG.getConstant(FrameOffset, PtrVT);
1246
1247 uint64_t StackOffset = MVT::getSizeInBits(PtrVT)/8 - 1;
1248 SDOperand ConstStackOffset = DAG.getConstant(StackOffset, PtrVT);
1249
1250 uint64_t FPROffset = 1;
1251 SDOperand ConstFPROffset = DAG.getConstant(FPROffset, PtrVT);
Nicolas Geoffray01119992007-04-03 13:59:52 +00001252
Dan Gohman69de1932008-02-06 22:27:42 +00001253 const Value *SV = cast<SrcValueSDNode>(Op.getOperand(2))->getValue();
Nicolas Geoffray01119992007-04-03 13:59:52 +00001254
1255 // Store first byte : number of int regs
1256 SDOperand firstStore = DAG.getStore(Op.getOperand(0), ArgGPR,
Dan Gohman69de1932008-02-06 22:27:42 +00001257 Op.getOperand(1), SV, 0);
1258 uint64_t nextOffset = FPROffset;
Nicolas Geoffray01119992007-04-03 13:59:52 +00001259 SDOperand nextPtr = DAG.getNode(ISD::ADD, PtrVT, Op.getOperand(1),
1260 ConstFPROffset);
1261
1262 // Store second byte : number of float regs
Dan Gohman69de1932008-02-06 22:27:42 +00001263 SDOperand secondStore =
1264 DAG.getStore(firstStore, ArgFPR, nextPtr, SV, nextOffset);
1265 nextOffset += StackOffset;
Nicolas Geoffray01119992007-04-03 13:59:52 +00001266 nextPtr = DAG.getNode(ISD::ADD, PtrVT, nextPtr, ConstStackOffset);
1267
1268 // Store second word : arguments given on stack
Dan Gohman69de1932008-02-06 22:27:42 +00001269 SDOperand thirdStore =
1270 DAG.getStore(secondStore, StackOffsetFI, nextPtr, SV, nextOffset);
1271 nextOffset += FrameOffset;
Nicolas Geoffray01119992007-04-03 13:59:52 +00001272 nextPtr = DAG.getNode(ISD::ADD, PtrVT, nextPtr, ConstFrameOffset);
1273
1274 // Store third word : arguments given in registers
Dan Gohman69de1932008-02-06 22:27:42 +00001275 return DAG.getStore(thirdStore, FR, nextPtr, SV, nextOffset);
Nicolas Geoffray01119992007-04-03 13:59:52 +00001276
Chris Lattner1a635d62006-04-14 06:01:58 +00001277}
1278
Chris Lattnerb9a7bea2007-03-06 00:59:59 +00001279#include "PPCGenCallingConv.inc"
1280
Chris Lattner9f0bc652007-02-25 05:34:32 +00001281/// GetFPR - Get the set of FP registers that should be allocated for arguments,
1282/// depending on which subtarget is selected.
1283static const unsigned *GetFPR(const PPCSubtarget &Subtarget) {
1284 if (Subtarget.isMachoABI()) {
1285 static const unsigned FPR[] = {
1286 PPC::F1, PPC::F2, PPC::F3, PPC::F4, PPC::F5, PPC::F6, PPC::F7,
1287 PPC::F8, PPC::F9, PPC::F10, PPC::F11, PPC::F12, PPC::F13
1288 };
1289 return FPR;
1290 }
1291
1292
1293 static const unsigned FPR[] = {
1294 PPC::F1, PPC::F2, PPC::F3, PPC::F4, PPC::F5, PPC::F6, PPC::F7,
Nicolas Geoffrayef3c0302007-04-03 10:27:07 +00001295 PPC::F8
Chris Lattner9f0bc652007-02-25 05:34:32 +00001296 };
1297 return FPR;
1298}
1299
Bill Wendling5f5bf3a2008-03-07 20:49:02 +00001300SDOperand
1301PPCTargetLowering::LowerFORMAL_ARGUMENTS(SDOperand Op,
1302 SelectionDAG &DAG,
1303 int &VarArgsFrameIndex,
1304 int &VarArgsStackOffset,
1305 unsigned &VarArgsNumGPR,
1306 unsigned &VarArgsNumFPR,
1307 const PPCSubtarget &Subtarget) {
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001308 // TODO: add description of PPC stack frame format, or at least some docs.
1309 //
1310 MachineFunction &MF = DAG.getMachineFunction();
1311 MachineFrameInfo *MFI = MF.getFrameInfo();
Chris Lattner84bc5422007-12-31 04:13:23 +00001312 MachineRegisterInfo &RegInfo = MF.getRegInfo();
Chris Lattner79e490a2006-08-11 17:18:05 +00001313 SmallVector<SDOperand, 8> ArgValues;
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001314 SDOperand Root = Op.getOperand(0);
1315
Jim Laskey2f616bf2006-11-16 22:43:37 +00001316 MVT::ValueType PtrVT = DAG.getTargetLoweringInfo().getPointerTy();
1317 bool isPPC64 = PtrVT == MVT::i64;
Chris Lattner9f0bc652007-02-25 05:34:32 +00001318 bool isMachoABI = Subtarget.isMachoABI();
Nicolas Geoffrayec58d9f2007-04-03 12:35:28 +00001319 bool isELF32_ABI = Subtarget.isELF32_ABI();
Jim Laskeye9bd7b22006-11-28 14:53:52 +00001320 unsigned PtrByteSize = isPPC64 ? 8 : 4;
Jim Laskey2f616bf2006-11-16 22:43:37 +00001321
Chris Lattner9f0bc652007-02-25 05:34:32 +00001322 unsigned ArgOffset = PPCFrameInfo::getLinkageSize(isPPC64, isMachoABI);
Chris Lattnerc91a4752006-06-26 22:48:35 +00001323
1324 static const unsigned GPR_32[] = { // 32-bit registers.
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001325 PPC::R3, PPC::R4, PPC::R5, PPC::R6,
1326 PPC::R7, PPC::R8, PPC::R9, PPC::R10,
1327 };
Chris Lattnerc91a4752006-06-26 22:48:35 +00001328 static const unsigned GPR_64[] = { // 64-bit registers.
1329 PPC::X3, PPC::X4, PPC::X5, PPC::X6,
1330 PPC::X7, PPC::X8, PPC::X9, PPC::X10,
1331 };
Chris Lattner9f0bc652007-02-25 05:34:32 +00001332
1333 static const unsigned *FPR = GetFPR(Subtarget);
1334
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001335 static const unsigned VR[] = {
1336 PPC::V2, PPC::V3, PPC::V4, PPC::V5, PPC::V6, PPC::V7, PPC::V8,
1337 PPC::V9, PPC::V10, PPC::V11, PPC::V12, PPC::V13
1338 };
Chris Lattnerc91a4752006-06-26 22:48:35 +00001339
Owen Anderson718cb662007-09-07 04:06:50 +00001340 const unsigned Num_GPR_Regs = array_lengthof(GPR_32);
Nicolas Geoffrayef3c0302007-04-03 10:27:07 +00001341 const unsigned Num_FPR_Regs = isMachoABI ? 13 : 8;
Owen Anderson718cb662007-09-07 04:06:50 +00001342 const unsigned Num_VR_Regs = array_lengthof( VR);
Jim Laskey2f616bf2006-11-16 22:43:37 +00001343
1344 unsigned GPR_idx = 0, FPR_idx = 0, VR_idx = 0;
1345
Chris Lattnerc91a4752006-06-26 22:48:35 +00001346 const unsigned *GPR = isPPC64 ? GPR_64 : GPR_32;
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001347
1348 // Add DAG nodes to load the arguments or copy them out of registers. On
Jim Laskey2f616bf2006-11-16 22:43:37 +00001349 // entry to a function on PPC, the arguments start after the linkage area,
1350 // although the first ones are often in registers.
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001351 //
Nicolas Geoffrayec58d9f2007-04-03 12:35:28 +00001352 // In the ELF 32 ABI, GPRs and stack are double word align: an argument
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001353 // represented with two words (long long or double) must be copied to an
1354 // even GPR_idx value or to an even ArgOffset value.
1355
Dale Johannesen8419dd62008-03-07 20:27:40 +00001356 SmallVector<SDOperand, 8> MemOps;
1357
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001358 for (unsigned ArgNo = 0, e = Op.Val->getNumValues()-1; ArgNo != e; ++ArgNo) {
1359 SDOperand ArgVal;
1360 bool needsLoad = false;
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001361 MVT::ValueType ObjectVT = Op.getValue(ArgNo).getValueType();
1362 unsigned ObjSize = MVT::getSizeInBits(ObjectVT)/8;
Jim Laskey619965d2006-11-29 13:37:09 +00001363 unsigned ArgSize = ObjSize;
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001364 unsigned Flags = cast<ConstantSDNode>(Op.getOperand(ArgNo+3))->getValue();
1365 unsigned AlignFlag = 1 << ISD::ParamFlags::OrigAlignmentOffs;
Dale Johannesen8419dd62008-03-07 20:27:40 +00001366 unsigned isByVal = Flags & ISD::ParamFlags::ByVal;
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001367 // See if next argument requires stack alignment in ELF
1368 bool Expand = (ObjectVT == MVT::f64) || ((ArgNo + 1 < e) &&
1369 (cast<ConstantSDNode>(Op.getOperand(ArgNo+4))->getValue() & AlignFlag) &&
1370 (!(Flags & AlignFlag)));
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001371
Chris Lattnerbe4849a2006-05-16 18:51:52 +00001372 unsigned CurArgOffset = ArgOffset;
Dale Johannesen8419dd62008-03-07 20:27:40 +00001373
1374 // FIXME alignment for ELF may not be right
1375 // FIXME the codegen can be much improved in some cases.
1376 // We do not have to keep everything in memory.
1377 if (isByVal) {
Dale Johannesen8419dd62008-03-07 20:27:40 +00001378 // ObjSize is the true size, ArgSize rounded up to multiple of registers.
1379 ObjSize = (Flags & ISD::ParamFlags::ByValSize) >>
1380 ISD::ParamFlags::ByValSizeOffs;
1381 ArgSize = ((ObjSize + PtrByteSize - 1)/PtrByteSize) * PtrByteSize;
Dale Johannesen7f96f392008-03-08 01:41:42 +00001382 // Double word align in ELF
1383 if (Expand && isELF32_ABI) GPR_idx += (GPR_idx % 2);
1384 // Objects of size 1 and 2 are right justified, everything else is
1385 // left justified. This means the memory address is adjusted forwards.
1386 if (ObjSize==1 || ObjSize==2) {
1387 CurArgOffset = CurArgOffset + (4 - ObjSize);
1388 }
Dale Johannesen8419dd62008-03-07 20:27:40 +00001389 // The value of the object is its address.
1390 int FI = MFI->CreateFixedObject(ObjSize, CurArgOffset);
1391 SDOperand FIN = DAG.getFrameIndex(FI, PtrVT);
1392 ArgValues.push_back(FIN);
Dale Johannesen7f96f392008-03-08 01:41:42 +00001393 if (ObjSize==1 || ObjSize==2) {
1394 if (GPR_idx != Num_GPR_Regs) {
1395 unsigned VReg = RegInfo.createVirtualRegister(&PPC::GPRCRegClass);
1396 RegInfo.addLiveIn(GPR[GPR_idx], VReg);
1397 SDOperand Val = DAG.getCopyFromReg(Root, VReg, PtrVT);
1398 SDOperand Store = DAG.getTruncStore(Val.getValue(1), Val, FIN,
1399 NULL, 0, ObjSize==1 ? MVT::i8 : MVT::i16 );
1400 MemOps.push_back(Store);
1401 ++GPR_idx;
1402 if (isMachoABI) ArgOffset += PtrByteSize;
1403 } else {
1404 ArgOffset += PtrByteSize;
1405 }
1406 continue;
1407 }
Dale Johannesen8419dd62008-03-07 20:27:40 +00001408 for (unsigned j = 0; j < ArgSize; j += PtrByteSize) {
1409 // Store whatever pieces of the object are in registers
1410 // to memory. ArgVal will be address of the beginning of
1411 // the object.
1412 if (GPR_idx != Num_GPR_Regs) {
1413 unsigned VReg = RegInfo.createVirtualRegister(&PPC::GPRCRegClass);
1414 RegInfo.addLiveIn(GPR[GPR_idx], VReg);
1415 int FI = MFI->CreateFixedObject(PtrByteSize, ArgOffset);
1416 SDOperand FIN = DAG.getFrameIndex(FI, PtrVT);
1417 SDOperand Val = DAG.getCopyFromReg(Root, VReg, PtrVT);
1418 SDOperand Store = DAG.getStore(Val.getValue(1), Val, FIN, NULL, 0);
1419 MemOps.push_back(Store);
1420 ++GPR_idx;
1421 if (isMachoABI) ArgOffset += PtrByteSize;
1422 } else {
1423 ArgOffset += ArgSize - (ArgOffset-CurArgOffset);
1424 break;
1425 }
1426 }
1427 continue;
1428 }
1429
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001430 switch (ObjectVT) {
1431 default: assert(0 && "Unhandled argument type!");
1432 case MVT::i32:
Bill Wendling5f5bf3a2008-03-07 20:49:02 +00001433 if (!isPPC64) {
1434 // Double word align in ELF
1435 if (Expand && isELF32_ABI) GPR_idx += (GPR_idx % 2);
1436
1437 if (GPR_idx != Num_GPR_Regs) {
1438 unsigned VReg = RegInfo.createVirtualRegister(&PPC::GPRCRegClass);
1439 RegInfo.addLiveIn(GPR[GPR_idx], VReg);
1440 ArgVal = DAG.getCopyFromReg(Root, VReg, MVT::i32);
1441 ++GPR_idx;
1442 } else {
1443 needsLoad = true;
1444 ArgSize = PtrByteSize;
1445 }
1446 // Stack align in ELF
1447 if (needsLoad && Expand && isELF32_ABI)
1448 ArgOffset += ((ArgOffset/4) % 2) * PtrByteSize;
1449 // All int arguments reserve stack space in Macho ABI.
1450 if (isMachoABI || needsLoad) ArgOffset += PtrByteSize;
1451 break;
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001452 }
Bill Wendling5f5bf3a2008-03-07 20:49:02 +00001453 // FALLTHROUGH
Chris Lattner9f0bc652007-02-25 05:34:32 +00001454 case MVT::i64: // PPC64
Chris Lattnerc91a4752006-06-26 22:48:35 +00001455 if (GPR_idx != Num_GPR_Regs) {
Chris Lattner84bc5422007-12-31 04:13:23 +00001456 unsigned VReg = RegInfo.createVirtualRegister(&PPC::G8RCRegClass);
1457 RegInfo.addLiveIn(GPR[GPR_idx], VReg);
Chris Lattnerc91a4752006-06-26 22:48:35 +00001458 ArgVal = DAG.getCopyFromReg(Root, VReg, MVT::i64);
Bill Wendling5f5bf3a2008-03-07 20:49:02 +00001459
1460 if (ObjectVT == MVT::i32) {
1461 // PPC64 passes i8, i16, and i32 values in i64 registers. Promote
1462 // value to MVT::i64 and then truncate to the correct register size.
1463 if (Flags & ISD::ParamFlags::SExt)
1464 ArgVal = DAG.getNode(ISD::AssertSext, MVT::i64, ArgVal,
1465 DAG.getValueType(ObjectVT));
1466 else if (Flags & ISD::ParamFlags::ZExt)
1467 ArgVal = DAG.getNode(ISD::AssertZext, MVT::i64, ArgVal,
1468 DAG.getValueType(ObjectVT));
1469
1470 ArgVal = DAG.getNode(ISD::TRUNCATE, MVT::i32, ArgVal);
1471 }
1472
Chris Lattnerc91a4752006-06-26 22:48:35 +00001473 ++GPR_idx;
1474 } else {
1475 needsLoad = true;
1476 }
Chris Lattner9f0bc652007-02-25 05:34:32 +00001477 // All int arguments reserve stack space in Macho ABI.
1478 if (isMachoABI || needsLoad) ArgOffset += 8;
Chris Lattnerc91a4752006-06-26 22:48:35 +00001479 break;
Chris Lattner9f0bc652007-02-25 05:34:32 +00001480
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001481 case MVT::f32:
1482 case MVT::f64:
Chris Lattnerbe4849a2006-05-16 18:51:52 +00001483 // Every 4 bytes of argument space consumes one of the GPRs available for
1484 // argument passing.
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001485 if (GPR_idx != Num_GPR_Regs && isMachoABI) {
Chris Lattneraf4ec0c2006-05-16 18:58:15 +00001486 ++GPR_idx;
Chris Lattnerb1eb9872006-11-18 01:57:19 +00001487 if (ObjSize == 8 && GPR_idx != Num_GPR_Regs && !isPPC64)
Chris Lattneraf4ec0c2006-05-16 18:58:15 +00001488 ++GPR_idx;
Chris Lattnerbe4849a2006-05-16 18:51:52 +00001489 }
Chris Lattneraf4ec0c2006-05-16 18:58:15 +00001490 if (FPR_idx != Num_FPR_Regs) {
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001491 unsigned VReg;
1492 if (ObjectVT == MVT::f32)
Chris Lattner84bc5422007-12-31 04:13:23 +00001493 VReg = RegInfo.createVirtualRegister(&PPC::F4RCRegClass);
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001494 else
Chris Lattner84bc5422007-12-31 04:13:23 +00001495 VReg = RegInfo.createVirtualRegister(&PPC::F8RCRegClass);
1496 RegInfo.addLiveIn(FPR[FPR_idx], VReg);
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001497 ArgVal = DAG.getCopyFromReg(Root, VReg, ObjectVT);
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001498 ++FPR_idx;
1499 } else {
1500 needsLoad = true;
1501 }
Chris Lattner9f0bc652007-02-25 05:34:32 +00001502
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001503 // Stack align in ELF
Nicolas Geoffrayec58d9f2007-04-03 12:35:28 +00001504 if (needsLoad && Expand && isELF32_ABI)
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001505 ArgOffset += ((ArgOffset/4) % 2) * PtrByteSize;
Chris Lattner9f0bc652007-02-25 05:34:32 +00001506 // All FP arguments reserve stack space in Macho ABI.
1507 if (isMachoABI || needsLoad) ArgOffset += isPPC64 ? 8 : ObjSize;
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001508 break;
1509 case MVT::v4f32:
1510 case MVT::v4i32:
1511 case MVT::v8i16:
1512 case MVT::v16i8:
Chris Lattnerbe4849a2006-05-16 18:51:52 +00001513 // Note that vector arguments in registers don't reserve stack space.
Chris Lattneraf4ec0c2006-05-16 18:58:15 +00001514 if (VR_idx != Num_VR_Regs) {
Chris Lattner84bc5422007-12-31 04:13:23 +00001515 unsigned VReg = RegInfo.createVirtualRegister(&PPC::VRRCRegClass);
1516 RegInfo.addLiveIn(VR[VR_idx], VReg);
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001517 ArgVal = DAG.getCopyFromReg(Root, VReg, ObjectVT);
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001518 ++VR_idx;
1519 } else {
1520 // This should be simple, but requires getting 16-byte aligned stack
1521 // values.
1522 assert(0 && "Loading VR argument not implemented yet!");
1523 needsLoad = true;
1524 }
1525 break;
1526 }
1527
1528 // We need to load the argument to a virtual register if we determined above
Chris Lattner9f72d1a2008-02-13 07:35:30 +00001529 // that we ran out of physical registers of the appropriate type.
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001530 if (needsLoad) {
Chris Lattner9f72d1a2008-02-13 07:35:30 +00001531 int FI = MFI->CreateFixedObject(ObjSize,
1532 CurArgOffset + (ArgSize - ObjSize));
1533 SDOperand FIN = DAG.getFrameIndex(FI, PtrVT);
1534 ArgVal = DAG.getLoad(ObjectVT, Root, FIN, NULL, 0);
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001535 }
1536
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001537 ArgValues.push_back(ArgVal);
1538 }
Dale Johannesen8419dd62008-03-07 20:27:40 +00001539
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001540 // If the function takes variable number of arguments, make a frame index for
1541 // the start of the first vararg value... for expansion of llvm.va_start.
1542 bool isVarArg = cast<ConstantSDNode>(Op.getOperand(2))->getValue() != 0;
1543 if (isVarArg) {
Nicolas Geoffray01119992007-04-03 13:59:52 +00001544
1545 int depth;
1546 if (isELF32_ABI) {
1547 VarArgsNumGPR = GPR_idx;
1548 VarArgsNumFPR = FPR_idx;
1549
1550 // Make room for Num_GPR_Regs, Num_FPR_Regs and for a possible frame
1551 // pointer.
1552 depth = -(Num_GPR_Regs * MVT::getSizeInBits(PtrVT)/8 +
1553 Num_FPR_Regs * MVT::getSizeInBits(MVT::f64)/8 +
1554 MVT::getSizeInBits(PtrVT)/8);
1555
1556 VarArgsStackOffset = MFI->CreateFixedObject(MVT::getSizeInBits(PtrVT)/8,
1557 ArgOffset);
1558
1559 }
1560 else
1561 depth = ArgOffset;
1562
Chris Lattnerc91a4752006-06-26 22:48:35 +00001563 VarArgsFrameIndex = MFI->CreateFixedObject(MVT::getSizeInBits(PtrVT)/8,
Nicolas Geoffray01119992007-04-03 13:59:52 +00001564 depth);
Chris Lattnerc91a4752006-06-26 22:48:35 +00001565 SDOperand FIN = DAG.getFrameIndex(VarArgsFrameIndex, PtrVT);
Nicolas Geoffray01119992007-04-03 13:59:52 +00001566
Nicolas Geoffray01119992007-04-03 13:59:52 +00001567 // In ELF 32 ABI, the fixed integer arguments of a variadic function are
1568 // stored to the VarArgsFrameIndex on the stack.
1569 if (isELF32_ABI) {
1570 for (GPR_idx = 0; GPR_idx != VarArgsNumGPR; ++GPR_idx) {
1571 SDOperand Val = DAG.getRegister(GPR[GPR_idx], PtrVT);
1572 SDOperand Store = DAG.getStore(Root, Val, FIN, NULL, 0);
1573 MemOps.push_back(Store);
1574 // Increment the address by four for the next argument to store
1575 SDOperand PtrOff = DAG.getConstant(MVT::getSizeInBits(PtrVT)/8, PtrVT);
1576 FIN = DAG.getNode(ISD::ADD, PtrOff.getValueType(), FIN, PtrOff);
1577 }
1578 }
1579
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001580 // If this function is vararg, store any remaining integer argument regs
1581 // to their spots on the stack so that they may be loaded by deferencing the
1582 // result of va_next.
Chris Lattneraf4ec0c2006-05-16 18:58:15 +00001583 for (; GPR_idx != Num_GPR_Regs; ++GPR_idx) {
Chris Lattnerb1eb9872006-11-18 01:57:19 +00001584 unsigned VReg;
1585 if (isPPC64)
Chris Lattner84bc5422007-12-31 04:13:23 +00001586 VReg = RegInfo.createVirtualRegister(&PPC::G8RCRegClass);
Chris Lattnerb1eb9872006-11-18 01:57:19 +00001587 else
Chris Lattner84bc5422007-12-31 04:13:23 +00001588 VReg = RegInfo.createVirtualRegister(&PPC::GPRCRegClass);
Chris Lattnerb1eb9872006-11-18 01:57:19 +00001589
Chris Lattner84bc5422007-12-31 04:13:23 +00001590 RegInfo.addLiveIn(GPR[GPR_idx], VReg);
Chris Lattnerc91a4752006-06-26 22:48:35 +00001591 SDOperand Val = DAG.getCopyFromReg(Root, VReg, PtrVT);
Evan Cheng8b2794a2006-10-13 21:14:26 +00001592 SDOperand Store = DAG.getStore(Val.getValue(1), Val, FIN, NULL, 0);
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001593 MemOps.push_back(Store);
1594 // Increment the address by four for the next argument to store
Chris Lattnerc91a4752006-06-26 22:48:35 +00001595 SDOperand PtrOff = DAG.getConstant(MVT::getSizeInBits(PtrVT)/8, PtrVT);
1596 FIN = DAG.getNode(ISD::ADD, PtrOff.getValueType(), FIN, PtrOff);
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001597 }
Nicolas Geoffray01119992007-04-03 13:59:52 +00001598
1599 // In ELF 32 ABI, the double arguments are stored to the VarArgsFrameIndex
1600 // on the stack.
1601 if (isELF32_ABI) {
1602 for (FPR_idx = 0; FPR_idx != VarArgsNumFPR; ++FPR_idx) {
1603 SDOperand Val = DAG.getRegister(FPR[FPR_idx], MVT::f64);
1604 SDOperand Store = DAG.getStore(Root, Val, FIN, NULL, 0);
1605 MemOps.push_back(Store);
1606 // Increment the address by eight for the next argument to store
1607 SDOperand PtrOff = DAG.getConstant(MVT::getSizeInBits(MVT::f64)/8,
1608 PtrVT);
1609 FIN = DAG.getNode(ISD::ADD, PtrOff.getValueType(), FIN, PtrOff);
1610 }
1611
1612 for (; FPR_idx != Num_FPR_Regs; ++FPR_idx) {
1613 unsigned VReg;
Chris Lattner84bc5422007-12-31 04:13:23 +00001614 VReg = RegInfo.createVirtualRegister(&PPC::F8RCRegClass);
Nicolas Geoffray01119992007-04-03 13:59:52 +00001615
Chris Lattner84bc5422007-12-31 04:13:23 +00001616 RegInfo.addLiveIn(FPR[FPR_idx], VReg);
Nicolas Geoffray01119992007-04-03 13:59:52 +00001617 SDOperand Val = DAG.getCopyFromReg(Root, VReg, MVT::f64);
1618 SDOperand Store = DAG.getStore(Val.getValue(1), Val, FIN, NULL, 0);
1619 MemOps.push_back(Store);
1620 // Increment the address by eight for the next argument to store
1621 SDOperand PtrOff = DAG.getConstant(MVT::getSizeInBits(MVT::f64)/8,
1622 PtrVT);
1623 FIN = DAG.getNode(ISD::ADD, PtrOff.getValueType(), FIN, PtrOff);
1624 }
1625 }
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001626 }
1627
Dale Johannesen8419dd62008-03-07 20:27:40 +00001628 if (!MemOps.empty())
1629 Root = DAG.getNode(ISD::TokenFactor, MVT::Other,&MemOps[0],MemOps.size());
1630
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001631 ArgValues.push_back(Root);
1632
1633 // Return the new list of results.
1634 std::vector<MVT::ValueType> RetVT(Op.Val->value_begin(),
1635 Op.Val->value_end());
Chris Lattner79e490a2006-08-11 17:18:05 +00001636 return DAG.getNode(ISD::MERGE_VALUES, RetVT, &ArgValues[0], ArgValues.size());
Chris Lattner8ab5fe52006-05-16 18:18:50 +00001637}
1638
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001639/// isCallCompatibleAddress - Return the immediate to use if the specified
1640/// 32-bit value is representable in the immediate field of a BxA instruction.
1641static SDNode *isBLACompatibleAddress(SDOperand Op, SelectionDAG &DAG) {
1642 ConstantSDNode *C = dyn_cast<ConstantSDNode>(Op);
1643 if (!C) return 0;
1644
1645 int Addr = C->getValue();
1646 if ((Addr & 3) != 0 || // Low 2 bits are implicitly zero.
1647 (Addr << 6 >> 6) != Addr)
1648 return 0; // Top 6 bits have to be sext of immediate.
1649
Evan Cheng33118762007-10-22 19:46:19 +00001650 return DAG.getConstant((int)C->getValue() >> 2,
1651 DAG.getTargetLoweringInfo().getPointerTy()).Val;
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001652}
1653
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001654/// CreateCopyOfByValArgument - Make a copy of an aggregate at address specified
1655/// by "Src" to address "Dst" of size "Size". Alignment information is
1656/// specified by the specific parameter attribute. The copy will be passed as
1657/// a byval function parameter.
1658/// Sometimes what we are copying is the end of a larger object, the part that
1659/// does not fit in registers.
1660static SDOperand
1661CreateCopyOfByValArgument(SDOperand Src, SDOperand Dst, SDOperand Chain,
Bill Wendling5f5bf3a2008-03-07 20:49:02 +00001662 unsigned Flags, SelectionDAG &DAG, unsigned Size) {
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001663 unsigned Align = 1 <<
1664 ((Flags & ISD::ParamFlags::ByValAlign) >> ISD::ParamFlags::ByValAlignOffs);
1665 SDOperand AlignNode = DAG.getConstant(Align, MVT::i32);
1666 SDOperand SizeNode = DAG.getConstant(Size, MVT::i32);
Dale Johannesen1f797a32008-03-05 23:31:27 +00001667 SDOperand AlwaysInline = DAG.getConstant(0, MVT::i32);
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001668 return DAG.getMemcpy(Chain, Dst, Src, SizeNode, AlignNode, AlwaysInline);
1669}
Chris Lattner9f0bc652007-02-25 05:34:32 +00001670
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001671SDOperand PPCTargetLowering::LowerCALL(SDOperand Op, SelectionDAG &DAG,
1672 const PPCSubtarget &Subtarget) {
Chris Lattner9f0bc652007-02-25 05:34:32 +00001673 SDOperand Chain = Op.getOperand(0);
1674 bool isVarArg = cast<ConstantSDNode>(Op.getOperand(2))->getValue() != 0;
1675 SDOperand Callee = Op.getOperand(4);
1676 unsigned NumOps = (Op.getNumOperands() - 5) / 2;
1677
1678 bool isMachoABI = Subtarget.isMachoABI();
Nicolas Geoffrayec58d9f2007-04-03 12:35:28 +00001679 bool isELF32_ABI = Subtarget.isELF32_ABI();
Evan Cheng4360bdc2006-05-25 00:57:32 +00001680
Chris Lattnerc91a4752006-06-26 22:48:35 +00001681 MVT::ValueType PtrVT = DAG.getTargetLoweringInfo().getPointerTy();
1682 bool isPPC64 = PtrVT == MVT::i64;
1683 unsigned PtrByteSize = isPPC64 ? 8 : 4;
Chris Lattnerc91a4752006-06-26 22:48:35 +00001684
Chris Lattnerabde4602006-05-16 22:56:08 +00001685 // args_to_use will accumulate outgoing args for the PPCISD::CALL case in
1686 // SelectExpr to use to put the arguments in the appropriate registers.
1687 std::vector<SDOperand> args_to_use;
1688
1689 // Count how many bytes are to be pushed on the stack, including the linkage
Chris Lattnerc91a4752006-06-26 22:48:35 +00001690 // area, and parameter passing area. We start with 24/48 bytes, which is
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001691 // prereserved space for [SP][CR][LR][3 x unused].
Chris Lattner9f0bc652007-02-25 05:34:32 +00001692 unsigned NumBytes = PPCFrameInfo::getLinkageSize(isPPC64, isMachoABI);
Chris Lattnerabde4602006-05-16 22:56:08 +00001693
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001694 // Add up all the space actually used.
Jim Laskeye9bd7b22006-11-28 14:53:52 +00001695 for (unsigned i = 0; i != NumOps; ++i) {
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001696 unsigned Flags = cast<ConstantSDNode>(Op.getOperand(5+2*i+1))->getValue();
Jim Laskeye9bd7b22006-11-28 14:53:52 +00001697 unsigned ArgSize =MVT::getSizeInBits(Op.getOperand(5+2*i).getValueType())/8;
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001698 if (Flags & ISD::ParamFlags::ByVal)
1699 ArgSize = (Flags & ISD::ParamFlags::ByValSize) >>
1700 ISD::ParamFlags::ByValSizeOffs;
Dale Johannesen7f96f392008-03-08 01:41:42 +00001701 ArgSize = ((ArgSize + PtrByteSize - 1)/PtrByteSize) * PtrByteSize;
Jim Laskeye9bd7b22006-11-28 14:53:52 +00001702 NumBytes += ArgSize;
1703 }
Chris Lattnerc04ba7a2006-05-16 23:54:25 +00001704
Chris Lattner7b053502006-05-30 21:21:04 +00001705 // The prolog code of the callee may store up to 8 GPR argument registers to
1706 // the stack, allowing va_start to index over them in memory if its varargs.
1707 // Because we cannot tell if this is needed on the caller side, we have to
1708 // conservatively assume that it is needed. As such, make sure we have at
1709 // least enough stack space for the caller to store the 8 GPRs.
Chris Lattner9f0bc652007-02-25 05:34:32 +00001710 NumBytes = std::max(NumBytes,
1711 PPCFrameInfo::getMinCallFrameSize(isPPC64, isMachoABI));
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001712
1713 // Adjust the stack pointer for the new arguments...
1714 // These operations are automatically eliminated by the prolog/epilog pass
1715 Chain = DAG.getCALLSEQ_START(Chain,
Chris Lattnerc91a4752006-06-26 22:48:35 +00001716 DAG.getConstant(NumBytes, PtrVT));
Dale Johannesen1f797a32008-03-05 23:31:27 +00001717 SDOperand CallSeqStart = Chain;
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001718
1719 // Set up a copy of the stack pointer for use loading and storing any
1720 // arguments that may not fit in the registers available for argument
1721 // passing.
Chris Lattnerc91a4752006-06-26 22:48:35 +00001722 SDOperand StackPtr;
1723 if (isPPC64)
1724 StackPtr = DAG.getRegister(PPC::X1, MVT::i64);
1725 else
1726 StackPtr = DAG.getRegister(PPC::R1, MVT::i32);
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001727
1728 // Figure out which arguments are going to go in registers, and which in
1729 // memory. Also, if this is a vararg function, floating point operations
1730 // must be stored to our stack, and loaded into integer regs as well, if
1731 // any integer regs are available for argument passing.
Chris Lattner9f0bc652007-02-25 05:34:32 +00001732 unsigned ArgOffset = PPCFrameInfo::getLinkageSize(isPPC64, isMachoABI);
Chris Lattner9a2a4972006-05-17 06:01:33 +00001733 unsigned GPR_idx = 0, FPR_idx = 0, VR_idx = 0;
Jim Laskey2f616bf2006-11-16 22:43:37 +00001734
Chris Lattnerc91a4752006-06-26 22:48:35 +00001735 static const unsigned GPR_32[] = { // 32-bit registers.
Chris Lattner9a2a4972006-05-17 06:01:33 +00001736 PPC::R3, PPC::R4, PPC::R5, PPC::R6,
1737 PPC::R7, PPC::R8, PPC::R9, PPC::R10,
1738 };
Chris Lattnerc91a4752006-06-26 22:48:35 +00001739 static const unsigned GPR_64[] = { // 64-bit registers.
1740 PPC::X3, PPC::X4, PPC::X5, PPC::X6,
1741 PPC::X7, PPC::X8, PPC::X9, PPC::X10,
1742 };
Chris Lattner9f0bc652007-02-25 05:34:32 +00001743 static const unsigned *FPR = GetFPR(Subtarget);
1744
Chris Lattner9a2a4972006-05-17 06:01:33 +00001745 static const unsigned VR[] = {
1746 PPC::V2, PPC::V3, PPC::V4, PPC::V5, PPC::V6, PPC::V7, PPC::V8,
1747 PPC::V9, PPC::V10, PPC::V11, PPC::V12, PPC::V13
1748 };
Owen Anderson718cb662007-09-07 04:06:50 +00001749 const unsigned NumGPRs = array_lengthof(GPR_32);
Nicolas Geoffrayef3c0302007-04-03 10:27:07 +00001750 const unsigned NumFPRs = isMachoABI ? 13 : 8;
Owen Anderson718cb662007-09-07 04:06:50 +00001751 const unsigned NumVRs = array_lengthof( VR);
Chris Lattner9a2a4972006-05-17 06:01:33 +00001752
Chris Lattnerc91a4752006-06-26 22:48:35 +00001753 const unsigned *GPR = isPPC64 ? GPR_64 : GPR_32;
1754
Chris Lattner9a2a4972006-05-17 06:01:33 +00001755 std::vector<std::pair<unsigned, SDOperand> > RegsToPass;
Chris Lattnere2199452006-08-11 17:38:39 +00001756 SmallVector<SDOperand, 8> MemOpChains;
Evan Cheng4360bdc2006-05-25 00:57:32 +00001757 for (unsigned i = 0; i != NumOps; ++i) {
Chris Lattner9f0bc652007-02-25 05:34:32 +00001758 bool inMem = false;
Evan Cheng4360bdc2006-05-25 00:57:32 +00001759 SDOperand Arg = Op.getOperand(5+2*i);
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001760 unsigned Flags = cast<ConstantSDNode>(Op.getOperand(5+2*i+1))->getValue();
1761 unsigned AlignFlag = 1 << ISD::ParamFlags::OrigAlignmentOffs;
1762 // See if next argument requires stack alignment in ELF
1763 unsigned next = 5+2*(i+1)+1;
1764 bool Expand = (Arg.getValueType() == MVT::f64) || ((i + 1 < NumOps) &&
1765 (cast<ConstantSDNode>(Op.getOperand(next))->getValue() & AlignFlag) &&
1766 (!(Flags & AlignFlag)));
1767
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001768 // PtrOff will be used to store the current argument to the stack if a
1769 // register cannot be found for it.
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001770 SDOperand PtrOff;
1771
Nicolas Geoffrayec58d9f2007-04-03 12:35:28 +00001772 // Stack align in ELF 32
1773 if (isELF32_ABI && Expand)
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001774 PtrOff = DAG.getConstant(ArgOffset + ((ArgOffset/4) % 2) * PtrByteSize,
1775 StackPtr.getValueType());
1776 else
1777 PtrOff = DAG.getConstant(ArgOffset, StackPtr.getValueType());
1778
Chris Lattnerc91a4752006-06-26 22:48:35 +00001779 PtrOff = DAG.getNode(ISD::ADD, PtrVT, StackPtr, PtrOff);
1780
1781 // On PPC64, promote integers to 64-bit values.
1782 if (isPPC64 && Arg.getValueType() == MVT::i32) {
Anton Korobeynikovb10308e2007-01-28 13:31:35 +00001783 unsigned ExtOp = (Flags & 1) ? ISD::SIGN_EXTEND : ISD::ZERO_EXTEND;
Chris Lattnerc91a4752006-06-26 22:48:35 +00001784 Arg = DAG.getNode(ExtOp, MVT::i64, Arg);
1785 }
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001786
1787 // FIXME Elf untested, what are alignment rules?
Dale Johannesen8419dd62008-03-07 20:27:40 +00001788 // FIXME memcpy is used way more than necessary. Correctness first.
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001789 if (Flags & ISD::ParamFlags::ByVal) {
1790 unsigned Size = (Flags & ISD::ParamFlags::ByValSize) >>
1791 ISD::ParamFlags::ByValSizeOffs;
1792 if (isELF32_ABI && Expand) GPR_idx += (GPR_idx % 2);
Dale Johannesen8419dd62008-03-07 20:27:40 +00001793 if (Size==1 || Size==2) {
1794 // Very small objects are passed right-justified.
1795 // Everything else is passed left-justified.
1796 MVT::ValueType VT = (Size==1) ? MVT::i8 : MVT::i16;
1797 if (GPR_idx != NumGPRs) {
1798 SDOperand Load = DAG.getExtLoad(ISD::EXTLOAD, PtrVT, Chain, Arg,
1799 NULL, 0, VT);
1800 MemOpChains.push_back(Load.getValue(1));
1801 RegsToPass.push_back(std::make_pair(GPR[GPR_idx++], Load));
1802 if (isMachoABI)
1803 ArgOffset += PtrByteSize;
1804 } else {
1805 SDOperand Const = DAG.getConstant(4 - Size, PtrOff.getValueType());
1806 SDOperand AddPtr = DAG.getNode(ISD::ADD, PtrVT, PtrOff, Const);
1807 SDOperand MemcpyCall = CreateCopyOfByValArgument(Arg, AddPtr,
1808 CallSeqStart.Val->getOperand(0),
1809 Flags, DAG, Size);
1810 // This must go outside the CALLSEQ_START..END.
1811 SDOperand NewCallSeqStart = DAG.getCALLSEQ_START(MemcpyCall,
1812 CallSeqStart.Val->getOperand(1));
1813 DAG.ReplaceAllUsesWith(CallSeqStart.Val, NewCallSeqStart.Val);
1814 Chain = CallSeqStart = NewCallSeqStart;
1815 ArgOffset += PtrByteSize;
1816 }
1817 continue;
1818 }
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001819 for (unsigned j=0; j<Size; j+=PtrByteSize) {
1820 SDOperand Const = DAG.getConstant(j, PtrOff.getValueType());
1821 SDOperand AddArg = DAG.getNode(ISD::ADD, PtrVT, Arg, Const);
1822 if (GPR_idx != NumGPRs) {
1823 SDOperand Load = DAG.getLoad(PtrVT, Chain, AddArg, NULL, 0);
Dale Johannesen1f797a32008-03-05 23:31:27 +00001824 MemOpChains.push_back(Load.getValue(1));
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001825 RegsToPass.push_back(std::make_pair(GPR[GPR_idx++], Load));
1826 if (isMachoABI)
1827 ArgOffset += PtrByteSize;
1828 } else {
1829 SDOperand AddPtr = DAG.getNode(ISD::ADD, PtrVT, PtrOff, Const);
Dale Johannesen1f797a32008-03-05 23:31:27 +00001830 SDOperand MemcpyCall = CreateCopyOfByValArgument(AddArg, AddPtr,
1831 CallSeqStart.Val->getOperand(0),
1832 Flags, DAG, Size - j);
1833 // This must go outside the CALLSEQ_START..END.
1834 SDOperand NewCallSeqStart = DAG.getCALLSEQ_START(MemcpyCall,
1835 CallSeqStart.Val->getOperand(1));
1836 DAG.ReplaceAllUsesWith(CallSeqStart.Val, NewCallSeqStart.Val);
Dale Johannesen8419dd62008-03-07 20:27:40 +00001837 Chain = CallSeqStart = NewCallSeqStart;
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001838 ArgOffset += ((Size - j + 3)/4)*4;
Dale Johannesen8419dd62008-03-07 20:27:40 +00001839 break;
Dale Johannesen5b3b6952008-03-04 23:17:14 +00001840 }
1841 }
1842 continue;
1843 }
1844
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001845 switch (Arg.getValueType()) {
1846 default: assert(0 && "Unexpected ValueType for argument!");
1847 case MVT::i32:
Chris Lattnerc91a4752006-06-26 22:48:35 +00001848 case MVT::i64:
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001849 // Double word align in ELF
Nicolas Geoffrayec58d9f2007-04-03 12:35:28 +00001850 if (isELF32_ABI && Expand) GPR_idx += (GPR_idx % 2);
Chris Lattner9a2a4972006-05-17 06:01:33 +00001851 if (GPR_idx != NumGPRs) {
1852 RegsToPass.push_back(std::make_pair(GPR[GPR_idx++], Arg));
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001853 } else {
Evan Cheng8b2794a2006-10-13 21:14:26 +00001854 MemOpChains.push_back(DAG.getStore(Chain, Arg, PtrOff, NULL, 0));
Chris Lattner9f0bc652007-02-25 05:34:32 +00001855 inMem = true;
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001856 }
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001857 if (inMem || isMachoABI) {
1858 // Stack align in ELF
Nicolas Geoffrayec58d9f2007-04-03 12:35:28 +00001859 if (isELF32_ABI && Expand)
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001860 ArgOffset += ((ArgOffset/4) % 2) * PtrByteSize;
1861
1862 ArgOffset += PtrByteSize;
1863 }
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001864 break;
1865 case MVT::f32:
1866 case MVT::f64:
Chris Lattner4ddf7a42007-02-25 20:01:40 +00001867 if (isVarArg) {
Jim Laskeyfbb74e62006-12-01 16:30:47 +00001868 // Float varargs need to be promoted to double.
1869 if (Arg.getValueType() == MVT::f32)
1870 Arg = DAG.getNode(ISD::FP_EXTEND, MVT::f64, Arg);
1871 }
1872
Chris Lattner9a2a4972006-05-17 06:01:33 +00001873 if (FPR_idx != NumFPRs) {
1874 RegsToPass.push_back(std::make_pair(FPR[FPR_idx++], Arg));
1875
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001876 if (isVarArg) {
Evan Cheng8b2794a2006-10-13 21:14:26 +00001877 SDOperand Store = DAG.getStore(Chain, Arg, PtrOff, NULL, 0);
Chris Lattner9a2a4972006-05-17 06:01:33 +00001878 MemOpChains.push_back(Store);
1879
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001880 // Float varargs are always shadowed in available integer registers
Chris Lattner9a2a4972006-05-17 06:01:33 +00001881 if (GPR_idx != NumGPRs) {
Evan Cheng466685d2006-10-09 20:57:25 +00001882 SDOperand Load = DAG.getLoad(PtrVT, Store, PtrOff, NULL, 0);
Chris Lattner9a2a4972006-05-17 06:01:33 +00001883 MemOpChains.push_back(Load.getValue(1));
Chris Lattner9f0bc652007-02-25 05:34:32 +00001884 if (isMachoABI) RegsToPass.push_back(std::make_pair(GPR[GPR_idx++],
1885 Load));
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001886 }
Jim Laskeyfbb74e62006-12-01 16:30:47 +00001887 if (GPR_idx != NumGPRs && Arg.getValueType() == MVT::f64 && !isPPC64){
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001888 SDOperand ConstFour = DAG.getConstant(4, PtrOff.getValueType());
Chris Lattnerc91a4752006-06-26 22:48:35 +00001889 PtrOff = DAG.getNode(ISD::ADD, PtrVT, PtrOff, ConstFour);
Evan Cheng466685d2006-10-09 20:57:25 +00001890 SDOperand Load = DAG.getLoad(PtrVT, Store, PtrOff, NULL, 0);
Chris Lattner9a2a4972006-05-17 06:01:33 +00001891 MemOpChains.push_back(Load.getValue(1));
Chris Lattner9f0bc652007-02-25 05:34:32 +00001892 if (isMachoABI) RegsToPass.push_back(std::make_pair(GPR[GPR_idx++],
1893 Load));
Chris Lattnerabde4602006-05-16 22:56:08 +00001894 }
1895 } else {
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001896 // If we have any FPRs remaining, we may also have GPRs remaining.
1897 // Args passed in FPRs consume either 1 (f32) or 2 (f64) available
1898 // GPRs.
Chris Lattner9f0bc652007-02-25 05:34:32 +00001899 if (isMachoABI) {
1900 if (GPR_idx != NumGPRs)
1901 ++GPR_idx;
1902 if (GPR_idx != NumGPRs && Arg.getValueType() == MVT::f64 &&
1903 !isPPC64) // PPC64 has 64-bit GPR's obviously :)
1904 ++GPR_idx;
1905 }
Chris Lattnerabde4602006-05-16 22:56:08 +00001906 }
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001907 } else {
Evan Cheng8b2794a2006-10-13 21:14:26 +00001908 MemOpChains.push_back(DAG.getStore(Chain, Arg, PtrOff, NULL, 0));
Chris Lattner9f0bc652007-02-25 05:34:32 +00001909 inMem = true;
Chris Lattnerabde4602006-05-16 22:56:08 +00001910 }
Chris Lattner9f0bc652007-02-25 05:34:32 +00001911 if (inMem || isMachoABI) {
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001912 // Stack align in ELF
Nicolas Geoffrayec58d9f2007-04-03 12:35:28 +00001913 if (isELF32_ABI && Expand)
Nicolas Geoffrayb2ec1cc2007-03-13 15:02:46 +00001914 ArgOffset += ((ArgOffset/4) % 2) * PtrByteSize;
Chris Lattner9f0bc652007-02-25 05:34:32 +00001915 if (isPPC64)
1916 ArgOffset += 8;
1917 else
1918 ArgOffset += Arg.getValueType() == MVT::f32 ? 4 : 8;
1919 }
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001920 break;
1921 case MVT::v4f32:
1922 case MVT::v4i32:
1923 case MVT::v8i16:
1924 case MVT::v16i8:
1925 assert(!isVarArg && "Don't support passing vectors to varargs yet!");
Chris Lattner9a2a4972006-05-17 06:01:33 +00001926 assert(VR_idx != NumVRs &&
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001927 "Don't support passing more than 12 vector args yet!");
Chris Lattner9a2a4972006-05-17 06:01:33 +00001928 RegsToPass.push_back(std::make_pair(VR[VR_idx++], Arg));
Chris Lattnerc8b682c2006-05-17 00:15:40 +00001929 break;
Chris Lattnerabde4602006-05-16 22:56:08 +00001930 }
Chris Lattnerabde4602006-05-16 22:56:08 +00001931 }
Chris Lattner9a2a4972006-05-17 06:01:33 +00001932 if (!MemOpChains.empty())
Chris Lattnere2199452006-08-11 17:38:39 +00001933 Chain = DAG.getNode(ISD::TokenFactor, MVT::Other,
1934 &MemOpChains[0], MemOpChains.size());
Chris Lattnerabde4602006-05-16 22:56:08 +00001935
Chris Lattner9a2a4972006-05-17 06:01:33 +00001936 // Build a sequence of copy-to-reg nodes chained together with token chain
1937 // and flag operands which copy the outgoing args into the appropriate regs.
1938 SDOperand InFlag;
1939 for (unsigned i = 0, e = RegsToPass.size(); i != e; ++i) {
1940 Chain = DAG.getCopyToReg(Chain, RegsToPass[i].first, RegsToPass[i].second,
1941 InFlag);
1942 InFlag = Chain.getValue(1);
1943 }
Chris Lattner9f0bc652007-02-25 05:34:32 +00001944
Nicolas Geoffrayec58d9f2007-04-03 12:35:28 +00001945 // With the ELF 32 ABI, set CR6 to true if this is a vararg call.
1946 if (isVarArg && isELF32_ABI) {
Chris Lattner9f0bc652007-02-25 05:34:32 +00001947 SDOperand SetCR(DAG.getTargetNode(PPC::SETCR, MVT::i32), 0);
1948 Chain = DAG.getCopyToReg(Chain, PPC::CR6, SetCR, InFlag);
1949 InFlag = Chain.getValue(1);
1950 }
1951
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001952 std::vector<MVT::ValueType> NodeTys;
Chris Lattner4a45abf2006-06-10 01:14:28 +00001953 NodeTys.push_back(MVT::Other); // Returns a chain
1954 NodeTys.push_back(MVT::Flag); // Returns a flag for retval copy to use.
1955
Chris Lattner79e490a2006-08-11 17:18:05 +00001956 SmallVector<SDOperand, 8> Ops;
Nicolas Geoffray63f8fb12007-02-27 13:01:19 +00001957 unsigned CallOpc = isMachoABI? PPCISD::CALL_Macho : PPCISD::CALL_ELF;
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001958
1959 // If the callee is a GlobalAddress/ExternalSymbol node (quite common, every
1960 // direct call is) turn it into a TargetGlobalAddress/TargetExternalSymbol
1961 // node so that legalize doesn't hack it.
Nicolas Geoffray5a6c91a2007-12-21 12:22:29 +00001962 if (GlobalAddressSDNode *G = dyn_cast<GlobalAddressSDNode>(Callee))
1963 Callee = DAG.getTargetGlobalAddress(G->getGlobal(), Callee.getValueType());
1964 else if (ExternalSymbolSDNode *S = dyn_cast<ExternalSymbolSDNode>(Callee))
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001965 Callee = DAG.getTargetExternalSymbol(S->getSymbol(), Callee.getValueType());
1966 else if (SDNode *Dest = isBLACompatibleAddress(Callee, DAG))
1967 // If this is an absolute destination address, use the munged value.
1968 Callee = SDOperand(Dest, 0);
1969 else {
1970 // Otherwise, this is an indirect call. We have to use a MTCTR/BCTRL pair
1971 // to do the call, we can't use PPCISD::CALL.
Chris Lattner79e490a2006-08-11 17:18:05 +00001972 SDOperand MTCTROps[] = {Chain, Callee, InFlag};
1973 Chain = DAG.getNode(PPCISD::MTCTR, NodeTys, MTCTROps, 2+(InFlag.Val!=0));
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001974 InFlag = Chain.getValue(1);
1975
Chris Lattnerdc9971a2008-03-09 20:49:33 +00001976 // Copy the callee address into R12/X12 on darwin.
Chris Lattner9f0bc652007-02-25 05:34:32 +00001977 if (isMachoABI) {
Chris Lattnerdc9971a2008-03-09 20:49:33 +00001978 unsigned Reg = Callee.getValueType() == MVT::i32 ? PPC::R12 : PPC::X12;
1979 Chain = DAG.getCopyToReg(Chain, Reg, Callee, InFlag);
Chris Lattner9f0bc652007-02-25 05:34:32 +00001980 InFlag = Chain.getValue(1);
1981 }
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001982
1983 NodeTys.clear();
1984 NodeTys.push_back(MVT::Other);
1985 NodeTys.push_back(MVT::Flag);
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001986 Ops.push_back(Chain);
Chris Lattner9f0bc652007-02-25 05:34:32 +00001987 CallOpc = isMachoABI ? PPCISD::BCTRL_Macho : PPCISD::BCTRL_ELF;
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001988 Callee.Val = 0;
1989 }
Chris Lattner9a2a4972006-05-17 06:01:33 +00001990
Chris Lattner4a45abf2006-06-10 01:14:28 +00001991 // If this is a direct call, pass the chain and the callee.
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001992 if (Callee.Val) {
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001993 Ops.push_back(Chain);
1994 Ops.push_back(Callee);
Chris Lattnerc703a8f2006-05-17 19:00:46 +00001995 }
Chris Lattnerabde4602006-05-16 22:56:08 +00001996
Chris Lattner4a45abf2006-06-10 01:14:28 +00001997 // Add argument registers to the end of the list so that they are known live
1998 // into the call.
1999 for (unsigned i = 0, e = RegsToPass.size(); i != e; ++i)
2000 Ops.push_back(DAG.getRegister(RegsToPass[i].first,
2001 RegsToPass[i].second.getValueType()));
2002
2003 if (InFlag.Val)
2004 Ops.push_back(InFlag);
Chris Lattner79e490a2006-08-11 17:18:05 +00002005 Chain = DAG.getNode(CallOpc, NodeTys, &Ops[0], Ops.size());
Chris Lattner4a45abf2006-06-10 01:14:28 +00002006 InFlag = Chain.getValue(1);
2007
Bill Wendling0f8d9c02007-11-13 00:44:25 +00002008 Chain = DAG.getCALLSEQ_END(Chain,
2009 DAG.getConstant(NumBytes, PtrVT),
2010 DAG.getConstant(0, PtrVT),
2011 InFlag);
2012 if (Op.Val->getValueType(0) != MVT::Other)
2013 InFlag = Chain.getValue(1);
2014
Chris Lattner79e490a2006-08-11 17:18:05 +00002015 SDOperand ResultVals[3];
2016 unsigned NumResults = 0;
Chris Lattner9a2a4972006-05-17 06:01:33 +00002017 NodeTys.clear();
2018
2019 // If the call has results, copy the values out of the ret val registers.
2020 switch (Op.Val->getValueType(0)) {
2021 default: assert(0 && "Unexpected ret value!");
2022 case MVT::Other: break;
2023 case MVT::i32:
2024 if (Op.Val->getValueType(1) == MVT::i32) {
Dan Gohman532dc2e2007-07-09 20:59:04 +00002025 Chain = DAG.getCopyFromReg(Chain, PPC::R3, MVT::i32, InFlag).getValue(1);
Chris Lattner79e490a2006-08-11 17:18:05 +00002026 ResultVals[0] = Chain.getValue(0);
Dan Gohman532dc2e2007-07-09 20:59:04 +00002027 Chain = DAG.getCopyFromReg(Chain, PPC::R4, MVT::i32,
Chris Lattner9a2a4972006-05-17 06:01:33 +00002028 Chain.getValue(2)).getValue(1);
Chris Lattner79e490a2006-08-11 17:18:05 +00002029 ResultVals[1] = Chain.getValue(0);
2030 NumResults = 2;
Chris Lattner9a2a4972006-05-17 06:01:33 +00002031 NodeTys.push_back(MVT::i32);
2032 } else {
2033 Chain = DAG.getCopyFromReg(Chain, PPC::R3, MVT::i32, InFlag).getValue(1);
Chris Lattner79e490a2006-08-11 17:18:05 +00002034 ResultVals[0] = Chain.getValue(0);
2035 NumResults = 1;
Chris Lattner9a2a4972006-05-17 06:01:33 +00002036 }
2037 NodeTys.push_back(MVT::i32);
2038 break;
Chris Lattnerc91a4752006-06-26 22:48:35 +00002039 case MVT::i64:
Dan Gohmana2fcff42008-03-08 00:19:12 +00002040 if (Op.Val->getValueType(1) == MVT::i64) {
2041 Chain = DAG.getCopyFromReg(Chain, PPC::X3, MVT::i64, InFlag).getValue(1);
2042 ResultVals[0] = Chain.getValue(0);
2043 Chain = DAG.getCopyFromReg(Chain, PPC::X4, MVT::i64,
2044 Chain.getValue(2)).getValue(1);
2045 ResultVals[1] = Chain.getValue(0);
2046 NumResults = 2;
2047 NodeTys.push_back(MVT::i64);
2048 } else {
2049 Chain = DAG.getCopyFromReg(Chain, PPC::X3, MVT::i64, InFlag).getValue(1);
2050 ResultVals[0] = Chain.getValue(0);
2051 NumResults = 1;
2052 }
Chris Lattnerc91a4752006-06-26 22:48:35 +00002053 NodeTys.push_back(MVT::i64);
2054 break;
Chris Lattner9a2a4972006-05-17 06:01:33 +00002055 case MVT::f64:
Dale Johannesen161e8972007-10-05 20:04:43 +00002056 if (Op.Val->getValueType(1) == MVT::f64) {
2057 Chain = DAG.getCopyFromReg(Chain, PPC::F1, MVT::f64, InFlag).getValue(1);
2058 ResultVals[0] = Chain.getValue(0);
2059 Chain = DAG.getCopyFromReg(Chain, PPC::F2, MVT::f64,
2060 Chain.getValue(2)).getValue(1);
2061 ResultVals[1] = Chain.getValue(0);
2062 NumResults = 2;
2063 NodeTys.push_back(MVT::f64);
2064 NodeTys.push_back(MVT::f64);
2065 break;
2066 }
2067 // else fall through
2068 case MVT::f32:
Chris Lattner9a2a4972006-05-17 06:01:33 +00002069 Chain = DAG.getCopyFromReg(Chain, PPC::F1, Op.Val->getValueType(0),
2070 InFlag).getValue(1);
Chris Lattner79e490a2006-08-11 17:18:05 +00002071 ResultVals[0] = Chain.getValue(0);
2072 NumResults = 1;
Chris Lattner9a2a4972006-05-17 06:01:33 +00002073 NodeTys.push_back(Op.Val->getValueType(0));
2074 break;
2075 case MVT::v4f32:
2076 case MVT::v4i32:
2077 case MVT::v8i16:
2078 case MVT::v16i8:
2079 Chain = DAG.getCopyFromReg(Chain, PPC::V2, Op.Val->getValueType(0),
2080 InFlag).getValue(1);
Chris Lattner79e490a2006-08-11 17:18:05 +00002081 ResultVals[0] = Chain.getValue(0);
2082 NumResults = 1;
Chris Lattner9a2a4972006-05-17 06:01:33 +00002083 NodeTys.push_back(Op.Val->getValueType(0));
2084 break;
2085 }
2086
Chris Lattner9a2a4972006-05-17 06:01:33 +00002087 NodeTys.push_back(MVT::Other);
Chris Lattnerabde4602006-05-16 22:56:08 +00002088
Chris Lattnerc703a8f2006-05-17 19:00:46 +00002089 // If the function returns void, just return the chain.
Chris Lattnerf6e190f2006-08-12 07:20:05 +00002090 if (NumResults == 0)
Chris Lattnerc703a8f2006-05-17 19:00:46 +00002091 return Chain;
2092
2093 // Otherwise, merge everything together with a MERGE_VALUES node.
Chris Lattner79e490a2006-08-11 17:18:05 +00002094 ResultVals[NumResults++] = Chain;
2095 SDOperand Res = DAG.getNode(ISD::MERGE_VALUES, NodeTys,
2096 ResultVals, NumResults);
Chris Lattnerabde4602006-05-16 22:56:08 +00002097 return Res.getValue(Op.ResNo);
2098}
2099
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002100SDOperand PPCTargetLowering::LowerRET(SDOperand Op, SelectionDAG &DAG,
2101 TargetMachine &TM) {
Chris Lattnerb9a7bea2007-03-06 00:59:59 +00002102 SmallVector<CCValAssign, 16> RVLocs;
2103 unsigned CC = DAG.getMachineFunction().getFunction()->getCallingConv();
Chris Lattner52387be2007-06-19 00:13:10 +00002104 bool isVarArg = DAG.getMachineFunction().getFunction()->isVarArg();
2105 CCState CCInfo(CC, isVarArg, TM, RVLocs);
Chris Lattnerb9a7bea2007-03-06 00:59:59 +00002106 CCInfo.AnalyzeReturn(Op.Val, RetCC_PPC);
2107
2108 // If this is the first return lowered for this function, add the regs to the
2109 // liveout set for the function.
Chris Lattner84bc5422007-12-31 04:13:23 +00002110 if (DAG.getMachineFunction().getRegInfo().liveout_empty()) {
Chris Lattnerb9a7bea2007-03-06 00:59:59 +00002111 for (unsigned i = 0; i != RVLocs.size(); ++i)
Chris Lattner84bc5422007-12-31 04:13:23 +00002112 DAG.getMachineFunction().getRegInfo().addLiveOut(RVLocs[i].getLocReg());
Chris Lattnerb9a7bea2007-03-06 00:59:59 +00002113 }
2114
Chris Lattnercaddd442007-02-26 19:44:02 +00002115 SDOperand Chain = Op.getOperand(0);
Chris Lattnerb9a7bea2007-03-06 00:59:59 +00002116 SDOperand Flag;
2117
2118 // Copy the result values into the output registers.
2119 for (unsigned i = 0; i != RVLocs.size(); ++i) {
2120 CCValAssign &VA = RVLocs[i];
2121 assert(VA.isRegLoc() && "Can only return in registers!");
2122 Chain = DAG.getCopyToReg(Chain, VA.getLocReg(), Op.getOperand(i*2+1), Flag);
2123 Flag = Chain.getValue(1);
2124 }
2125
2126 if (Flag.Val)
2127 return DAG.getNode(PPCISD::RET_FLAG, MVT::Other, Chain, Flag);
2128 else
Chris Lattnercaddd442007-02-26 19:44:02 +00002129 return DAG.getNode(PPCISD::RET_FLAG, MVT::Other, Chain);
Chris Lattner1a635d62006-04-14 06:01:58 +00002130}
2131
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002132SDOperand PPCTargetLowering::LowerSTACKRESTORE(SDOperand Op, SelectionDAG &DAG,
Jim Laskeyefc7e522006-12-04 22:04:42 +00002133 const PPCSubtarget &Subtarget) {
2134 // When we pop the dynamic allocation we need to restore the SP link.
2135
2136 // Get the corect type for pointers.
2137 MVT::ValueType PtrVT = DAG.getTargetLoweringInfo().getPointerTy();
2138
2139 // Construct the stack pointer operand.
2140 bool IsPPC64 = Subtarget.isPPC64();
2141 unsigned SP = IsPPC64 ? PPC::X1 : PPC::R1;
2142 SDOperand StackPtr = DAG.getRegister(SP, PtrVT);
2143
2144 // Get the operands for the STACKRESTORE.
2145 SDOperand Chain = Op.getOperand(0);
2146 SDOperand SaveSP = Op.getOperand(1);
2147
2148 // Load the old link SP.
2149 SDOperand LoadLinkSP = DAG.getLoad(PtrVT, Chain, StackPtr, NULL, 0);
2150
2151 // Restore the stack pointer.
2152 Chain = DAG.getCopyToReg(LoadLinkSP.getValue(1), SP, SaveSP);
2153
2154 // Store the old link SP.
2155 return DAG.getStore(Chain, LoadLinkSP, StackPtr, NULL, 0);
2156}
2157
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002158SDOperand PPCTargetLowering::LowerDYNAMIC_STACKALLOC(SDOperand Op,
2159 SelectionDAG &DAG,
Jim Laskey2f616bf2006-11-16 22:43:37 +00002160 const PPCSubtarget &Subtarget) {
2161 MachineFunction &MF = DAG.getMachineFunction();
2162 bool IsPPC64 = Subtarget.isPPC64();
Chris Lattner9f0bc652007-02-25 05:34:32 +00002163 bool isMachoABI = Subtarget.isMachoABI();
Jim Laskey2f616bf2006-11-16 22:43:37 +00002164
2165 // Get current frame pointer save index. The users of this index will be
2166 // primarily DYNALLOC instructions.
2167 PPCFunctionInfo *FI = MF.getInfo<PPCFunctionInfo>();
2168 int FPSI = FI->getFramePointerSaveIndex();
Chris Lattner9f0bc652007-02-25 05:34:32 +00002169
Jim Laskey2f616bf2006-11-16 22:43:37 +00002170 // If the frame pointer save index hasn't been defined yet.
2171 if (!FPSI) {
2172 // Find out what the fix offset of the frame pointer save area.
Chris Lattner9f0bc652007-02-25 05:34:32 +00002173 int FPOffset = PPCFrameInfo::getFramePointerSaveOffset(IsPPC64, isMachoABI);
2174
Jim Laskey2f616bf2006-11-16 22:43:37 +00002175 // Allocate the frame index for frame pointer save area.
Chris Lattner9f0bc652007-02-25 05:34:32 +00002176 FPSI = MF.getFrameInfo()->CreateFixedObject(IsPPC64? 8 : 4, FPOffset);
Jim Laskey2f616bf2006-11-16 22:43:37 +00002177 // Save the result.
2178 FI->setFramePointerSaveIndex(FPSI);
2179 }
2180
2181 // Get the inputs.
2182 SDOperand Chain = Op.getOperand(0);
2183 SDOperand Size = Op.getOperand(1);
2184
2185 // Get the corect type for pointers.
2186 MVT::ValueType PtrVT = DAG.getTargetLoweringInfo().getPointerTy();
2187 // Negate the size.
2188 SDOperand NegSize = DAG.getNode(ISD::SUB, PtrVT,
2189 DAG.getConstant(0, PtrVT), Size);
2190 // Construct a node for the frame pointer save index.
2191 SDOperand FPSIdx = DAG.getFrameIndex(FPSI, PtrVT);
2192 // Build a DYNALLOC node.
2193 SDOperand Ops[3] = { Chain, NegSize, FPSIdx };
2194 SDVTList VTs = DAG.getVTList(PtrVT, MVT::Other);
2195 return DAG.getNode(PPCISD::DYNALLOC, VTs, Ops, 3);
2196}
2197
2198
Chris Lattner1a635d62006-04-14 06:01:58 +00002199/// LowerSELECT_CC - Lower floating point select_cc's into fsel instruction when
2200/// possible.
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002201SDOperand PPCTargetLowering::LowerSELECT_CC(SDOperand Op, SelectionDAG &DAG) {
Chris Lattner1a635d62006-04-14 06:01:58 +00002202 // Not FP? Not a fsel.
2203 if (!MVT::isFloatingPoint(Op.getOperand(0).getValueType()) ||
2204 !MVT::isFloatingPoint(Op.getOperand(2).getValueType()))
2205 return SDOperand();
2206
2207 ISD::CondCode CC = cast<CondCodeSDNode>(Op.getOperand(4))->get();
2208
2209 // Cannot handle SETEQ/SETNE.
2210 if (CC == ISD::SETEQ || CC == ISD::SETNE) return SDOperand();
2211
2212 MVT::ValueType ResVT = Op.getValueType();
2213 MVT::ValueType CmpVT = Op.getOperand(0).getValueType();
2214 SDOperand LHS = Op.getOperand(0), RHS = Op.getOperand(1);
2215 SDOperand TV = Op.getOperand(2), FV = Op.getOperand(3);
2216
2217 // If the RHS of the comparison is a 0.0, we don't need to do the
2218 // subtraction at all.
2219 if (isFloatingPointZero(RHS))
2220 switch (CC) {
2221 default: break; // SETUO etc aren't handled by fsel.
2222 case ISD::SETULT:
Chris Lattner57340122006-05-24 00:06:44 +00002223 case ISD::SETOLT:
Chris Lattner1a635d62006-04-14 06:01:58 +00002224 case ISD::SETLT:
2225 std::swap(TV, FV); // fsel is natively setge, swap operands for setlt
2226 case ISD::SETUGE:
Chris Lattner57340122006-05-24 00:06:44 +00002227 case ISD::SETOGE:
Chris Lattner1a635d62006-04-14 06:01:58 +00002228 case ISD::SETGE:
2229 if (LHS.getValueType() == MVT::f32) // Comparison is always 64-bits
2230 LHS = DAG.getNode(ISD::FP_EXTEND, MVT::f64, LHS);
2231 return DAG.getNode(PPCISD::FSEL, ResVT, LHS, TV, FV);
2232 case ISD::SETUGT:
Chris Lattner57340122006-05-24 00:06:44 +00002233 case ISD::SETOGT:
Chris Lattner1a635d62006-04-14 06:01:58 +00002234 case ISD::SETGT:
2235 std::swap(TV, FV); // fsel is natively setge, swap operands for setlt
2236 case ISD::SETULE:
Chris Lattner57340122006-05-24 00:06:44 +00002237 case ISD::SETOLE:
Chris Lattner1a635d62006-04-14 06:01:58 +00002238 case ISD::SETLE:
2239 if (LHS.getValueType() == MVT::f32) // Comparison is always 64-bits
2240 LHS = DAG.getNode(ISD::FP_EXTEND, MVT::f64, LHS);
2241 return DAG.getNode(PPCISD::FSEL, ResVT,
2242 DAG.getNode(ISD::FNEG, MVT::f64, LHS), TV, FV);
2243 }
2244
Chris Lattner1de7c1d2007-10-15 20:14:52 +00002245 SDOperand Cmp;
Chris Lattner1a635d62006-04-14 06:01:58 +00002246 switch (CC) {
2247 default: break; // SETUO etc aren't handled by fsel.
2248 case ISD::SETULT:
Chris Lattner57340122006-05-24 00:06:44 +00002249 case ISD::SETOLT:
Chris Lattner1a635d62006-04-14 06:01:58 +00002250 case ISD::SETLT:
2251 Cmp = DAG.getNode(ISD::FSUB, CmpVT, LHS, RHS);
2252 if (Cmp.getValueType() == MVT::f32) // Comparison is always 64-bits
2253 Cmp = DAG.getNode(ISD::FP_EXTEND, MVT::f64, Cmp);
2254 return DAG.getNode(PPCISD::FSEL, ResVT, Cmp, FV, TV);
2255 case ISD::SETUGE:
Chris Lattner57340122006-05-24 00:06:44 +00002256 case ISD::SETOGE:
Chris Lattner1a635d62006-04-14 06:01:58 +00002257 case ISD::SETGE:
2258 Cmp = DAG.getNode(ISD::FSUB, CmpVT, LHS, RHS);
2259 if (Cmp.getValueType() == MVT::f32) // Comparison is always 64-bits
2260 Cmp = DAG.getNode(ISD::FP_EXTEND, MVT::f64, Cmp);
2261 return DAG.getNode(PPCISD::FSEL, ResVT, Cmp, TV, FV);
2262 case ISD::SETUGT:
Chris Lattner57340122006-05-24 00:06:44 +00002263 case ISD::SETOGT:
Chris Lattner1a635d62006-04-14 06:01:58 +00002264 case ISD::SETGT:
2265 Cmp = DAG.getNode(ISD::FSUB, CmpVT, RHS, LHS);
2266 if (Cmp.getValueType() == MVT::f32) // Comparison is always 64-bits
2267 Cmp = DAG.getNode(ISD::FP_EXTEND, MVT::f64, Cmp);
2268 return DAG.getNode(PPCISD::FSEL, ResVT, Cmp, FV, TV);
2269 case ISD::SETULE:
Chris Lattner57340122006-05-24 00:06:44 +00002270 case ISD::SETOLE:
Chris Lattner1a635d62006-04-14 06:01:58 +00002271 case ISD::SETLE:
2272 Cmp = DAG.getNode(ISD::FSUB, CmpVT, RHS, LHS);
2273 if (Cmp.getValueType() == MVT::f32) // Comparison is always 64-bits
2274 Cmp = DAG.getNode(ISD::FP_EXTEND, MVT::f64, Cmp);
2275 return DAG.getNode(PPCISD::FSEL, ResVT, Cmp, TV, FV);
2276 }
2277 return SDOperand();
2278}
2279
Chris Lattner1f873002007-11-28 18:44:47 +00002280// FIXME: Split this code up when LegalizeDAGTypes lands.
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002281SDOperand PPCTargetLowering::LowerFP_TO_SINT(SDOperand Op, SelectionDAG &DAG) {
Chris Lattner1a635d62006-04-14 06:01:58 +00002282 assert(MVT::isFloatingPoint(Op.getOperand(0).getValueType()));
2283 SDOperand Src = Op.getOperand(0);
2284 if (Src.getValueType() == MVT::f32)
2285 Src = DAG.getNode(ISD::FP_EXTEND, MVT::f64, Src);
2286
2287 SDOperand Tmp;
2288 switch (Op.getValueType()) {
2289 default: assert(0 && "Unhandled FP_TO_SINT type in custom expander!");
2290 case MVT::i32:
2291 Tmp = DAG.getNode(PPCISD::FCTIWZ, MVT::f64, Src);
2292 break;
2293 case MVT::i64:
2294 Tmp = DAG.getNode(PPCISD::FCTIDZ, MVT::f64, Src);
2295 break;
2296 }
2297
2298 // Convert the FP value to an int value through memory.
Chris Lattner1de7c1d2007-10-15 20:14:52 +00002299 SDOperand FIPtr = DAG.CreateStackTemporary(MVT::f64);
2300
2301 // Emit a store to the stack slot.
2302 SDOperand Chain = DAG.getStore(DAG.getEntryNode(), Tmp, FIPtr, NULL, 0);
2303
2304 // Result is a load from the stack slot. If loading 4 bytes, make sure to
2305 // add in a bias.
Chris Lattner1a635d62006-04-14 06:01:58 +00002306 if (Op.getValueType() == MVT::i32)
Chris Lattner1de7c1d2007-10-15 20:14:52 +00002307 FIPtr = DAG.getNode(ISD::ADD, FIPtr.getValueType(), FIPtr,
2308 DAG.getConstant(4, FIPtr.getValueType()));
2309 return DAG.getLoad(Op.getValueType(), Chain, FIPtr, NULL, 0);
Chris Lattner1a635d62006-04-14 06:01:58 +00002310}
2311
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002312SDOperand PPCTargetLowering::LowerFP_ROUND_INREG(SDOperand Op,
2313 SelectionDAG &DAG) {
Dale Johannesen6eaeff22007-10-10 01:01:31 +00002314 assert(Op.getValueType() == MVT::ppcf128);
2315 SDNode *Node = Op.Val;
2316 assert(Node->getOperand(0).getValueType() == MVT::ppcf128);
Chris Lattner26cb2862007-10-19 04:08:28 +00002317 assert(Node->getOperand(0).Val->getOpcode() == ISD::BUILD_PAIR);
Dale Johannesen6eaeff22007-10-10 01:01:31 +00002318 SDOperand Lo = Node->getOperand(0).Val->getOperand(0);
2319 SDOperand Hi = Node->getOperand(0).Val->getOperand(1);
2320
2321 // This sequence changes FPSCR to do round-to-zero, adds the two halves
2322 // of the long double, and puts FPSCR back the way it was. We do not
2323 // actually model FPSCR.
2324 std::vector<MVT::ValueType> NodeTys;
2325 SDOperand Ops[4], Result, MFFSreg, InFlag, FPreg;
2326
2327 NodeTys.push_back(MVT::f64); // Return register
2328 NodeTys.push_back(MVT::Flag); // Returns a flag for later insns
2329 Result = DAG.getNode(PPCISD::MFFS, NodeTys, &InFlag, 0);
2330 MFFSreg = Result.getValue(0);
2331 InFlag = Result.getValue(1);
2332
2333 NodeTys.clear();
2334 NodeTys.push_back(MVT::Flag); // Returns a flag
2335 Ops[0] = DAG.getConstant(31, MVT::i32);
2336 Ops[1] = InFlag;
2337 Result = DAG.getNode(PPCISD::MTFSB1, NodeTys, Ops, 2);
2338 InFlag = Result.getValue(0);
2339
2340 NodeTys.clear();
2341 NodeTys.push_back(MVT::Flag); // Returns a flag
2342 Ops[0] = DAG.getConstant(30, MVT::i32);
2343 Ops[1] = InFlag;
2344 Result = DAG.getNode(PPCISD::MTFSB0, NodeTys, Ops, 2);
2345 InFlag = Result.getValue(0);
2346
2347 NodeTys.clear();
2348 NodeTys.push_back(MVT::f64); // result of add
2349 NodeTys.push_back(MVT::Flag); // Returns a flag
2350 Ops[0] = Lo;
2351 Ops[1] = Hi;
2352 Ops[2] = InFlag;
2353 Result = DAG.getNode(PPCISD::FADDRTZ, NodeTys, Ops, 3);
2354 FPreg = Result.getValue(0);
2355 InFlag = Result.getValue(1);
2356
2357 NodeTys.clear();
2358 NodeTys.push_back(MVT::f64);
2359 Ops[0] = DAG.getConstant(1, MVT::i32);
2360 Ops[1] = MFFSreg;
2361 Ops[2] = FPreg;
2362 Ops[3] = InFlag;
2363 Result = DAG.getNode(PPCISD::MTFSF, NodeTys, Ops, 4);
2364 FPreg = Result.getValue(0);
2365
2366 // We know the low half is about to be thrown away, so just use something
2367 // convenient.
2368 return DAG.getNode(ISD::BUILD_PAIR, Lo.getValueType(), FPreg, FPreg);
2369}
2370
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002371SDOperand PPCTargetLowering::LowerSINT_TO_FP(SDOperand Op, SelectionDAG &DAG) {
Chris Lattner1a635d62006-04-14 06:01:58 +00002372 if (Op.getOperand(0).getValueType() == MVT::i64) {
2373 SDOperand Bits = DAG.getNode(ISD::BIT_CONVERT, MVT::f64, Op.getOperand(0));
2374 SDOperand FP = DAG.getNode(PPCISD::FCFID, MVT::f64, Bits);
2375 if (Op.getValueType() == MVT::f32)
Chris Lattner0bd48932008-01-17 07:00:52 +00002376 FP = DAG.getNode(ISD::FP_ROUND, MVT::f32, FP, DAG.getIntPtrConstant(0));
Chris Lattner1a635d62006-04-14 06:01:58 +00002377 return FP;
2378 }
2379
2380 assert(Op.getOperand(0).getValueType() == MVT::i32 &&
2381 "Unhandled SINT_TO_FP type in custom expander!");
2382 // Since we only generate this in 64-bit mode, we can take advantage of
2383 // 64-bit registers. In particular, sign extend the input value into the
2384 // 64-bit register with extsw, store the WHOLE 64-bit value into the stack
2385 // then lfd it and fcfid it.
2386 MachineFrameInfo *FrameInfo = DAG.getMachineFunction().getFrameInfo();
2387 int FrameIdx = FrameInfo->CreateStackObject(8, 8);
Chris Lattner0d72a202006-07-28 16:45:47 +00002388 MVT::ValueType PtrVT = DAG.getTargetLoweringInfo().getPointerTy();
2389 SDOperand FIdx = DAG.getFrameIndex(FrameIdx, PtrVT);
Chris Lattner1a635d62006-04-14 06:01:58 +00002390
2391 SDOperand Ext64 = DAG.getNode(PPCISD::EXTSW_32, MVT::i32,
2392 Op.getOperand(0));
2393
2394 // STD the extended value into the stack slot.
Dan Gohman3069b872008-02-07 18:41:25 +00002395 MemOperand MO(PseudoSourceValue::getFixedStack(),
Dan Gohman69de1932008-02-06 22:27:42 +00002396 MemOperand::MOStore, FrameIdx, 8, 8);
Chris Lattner1a635d62006-04-14 06:01:58 +00002397 SDOperand Store = DAG.getNode(PPCISD::STD_32, MVT::Other,
2398 DAG.getEntryNode(), Ext64, FIdx,
Dan Gohman69de1932008-02-06 22:27:42 +00002399 DAG.getMemOperand(MO));
Chris Lattner1a635d62006-04-14 06:01:58 +00002400 // Load the value as a double.
Evan Cheng466685d2006-10-09 20:57:25 +00002401 SDOperand Ld = DAG.getLoad(MVT::f64, Store, FIdx, NULL, 0);
Chris Lattner1a635d62006-04-14 06:01:58 +00002402
2403 // FCFID it and return it.
2404 SDOperand FP = DAG.getNode(PPCISD::FCFID, MVT::f64, Ld);
2405 if (Op.getValueType() == MVT::f32)
Chris Lattner0bd48932008-01-17 07:00:52 +00002406 FP = DAG.getNode(ISD::FP_ROUND, MVT::f32, FP, DAG.getIntPtrConstant(0));
Chris Lattner1a635d62006-04-14 06:01:58 +00002407 return FP;
2408}
2409
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002410SDOperand PPCTargetLowering::LowerFLT_ROUNDS_(SDOperand Op, SelectionDAG &DAG) {
Dale Johannesen5c5eb802008-01-18 19:55:37 +00002411 /*
2412 The rounding mode is in bits 30:31 of FPSR, and has the following
2413 settings:
2414 00 Round to nearest
2415 01 Round to 0
2416 10 Round to +inf
2417 11 Round to -inf
2418
2419 FLT_ROUNDS, on the other hand, expects the following:
2420 -1 Undefined
2421 0 Round to 0
2422 1 Round to nearest
2423 2 Round to +inf
2424 3 Round to -inf
2425
2426 To perform the conversion, we do:
2427 ((FPSCR & 0x3) ^ ((~FPSCR & 0x3) >> 1))
2428 */
2429
2430 MachineFunction &MF = DAG.getMachineFunction();
2431 MVT::ValueType VT = Op.getValueType();
2432 MVT::ValueType PtrVT = DAG.getTargetLoweringInfo().getPointerTy();
2433 std::vector<MVT::ValueType> NodeTys;
2434 SDOperand MFFSreg, InFlag;
2435
2436 // Save FP Control Word to register
2437 NodeTys.push_back(MVT::f64); // return register
2438 NodeTys.push_back(MVT::Flag); // unused in this context
2439 SDOperand Chain = DAG.getNode(PPCISD::MFFS, NodeTys, &InFlag, 0);
2440
2441 // Save FP register to stack slot
2442 int SSFI = MF.getFrameInfo()->CreateStackObject(8, 8);
2443 SDOperand StackSlot = DAG.getFrameIndex(SSFI, PtrVT);
2444 SDOperand Store = DAG.getStore(DAG.getEntryNode(), Chain,
2445 StackSlot, NULL, 0);
2446
2447 // Load FP Control Word from low 32 bits of stack slot.
2448 SDOperand Four = DAG.getConstant(4, PtrVT);
2449 SDOperand Addr = DAG.getNode(ISD::ADD, PtrVT, StackSlot, Four);
2450 SDOperand CWD = DAG.getLoad(MVT::i32, Store, Addr, NULL, 0);
2451
2452 // Transform as necessary
2453 SDOperand CWD1 =
2454 DAG.getNode(ISD::AND, MVT::i32,
2455 CWD, DAG.getConstant(3, MVT::i32));
2456 SDOperand CWD2 =
2457 DAG.getNode(ISD::SRL, MVT::i32,
2458 DAG.getNode(ISD::AND, MVT::i32,
2459 DAG.getNode(ISD::XOR, MVT::i32,
2460 CWD, DAG.getConstant(3, MVT::i32)),
2461 DAG.getConstant(3, MVT::i32)),
2462 DAG.getConstant(1, MVT::i8));
2463
2464 SDOperand RetVal =
2465 DAG.getNode(ISD::XOR, MVT::i32, CWD1, CWD2);
2466
2467 return DAG.getNode((MVT::getSizeInBits(VT) < 16 ?
2468 ISD::TRUNCATE : ISD::ZERO_EXTEND), VT, RetVal);
2469}
2470
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002471SDOperand PPCTargetLowering::LowerSHL_PARTS(SDOperand Op, SelectionDAG &DAG) {
Dan Gohman9ed06db2008-03-07 20:36:53 +00002472 MVT::ValueType VT = Op.getValueType();
2473 unsigned BitWidth = MVT::getSizeInBits(VT);
2474 assert(Op.getNumOperands() == 3 &&
2475 VT == Op.getOperand(1).getValueType() &&
2476 "Unexpected SHL!");
Chris Lattner1a635d62006-04-14 06:01:58 +00002477
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00002478 // Expand into a bunch of logical ops. Note that these ops
Chris Lattner1a635d62006-04-14 06:01:58 +00002479 // depend on the PPC behavior for oversized shift amounts.
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00002480 SDOperand Lo = Op.getOperand(0);
2481 SDOperand Hi = Op.getOperand(1);
2482 SDOperand Amt = Op.getOperand(2);
Dan Gohman9ed06db2008-03-07 20:36:53 +00002483 MVT::ValueType AmtVT = Amt.getValueType();
Chris Lattner1a635d62006-04-14 06:01:58 +00002484
Dan Gohman9ed06db2008-03-07 20:36:53 +00002485 SDOperand Tmp1 = DAG.getNode(ISD::SUB, AmtVT,
2486 DAG.getConstant(BitWidth, AmtVT), Amt);
2487 SDOperand Tmp2 = DAG.getNode(PPCISD::SHL, VT, Hi, Amt);
2488 SDOperand Tmp3 = DAG.getNode(PPCISD::SRL, VT, Lo, Tmp1);
2489 SDOperand Tmp4 = DAG.getNode(ISD::OR , VT, Tmp2, Tmp3);
2490 SDOperand Tmp5 = DAG.getNode(ISD::ADD, AmtVT, Amt,
2491 DAG.getConstant(-BitWidth, AmtVT));
2492 SDOperand Tmp6 = DAG.getNode(PPCISD::SHL, VT, Lo, Tmp5);
2493 SDOperand OutHi = DAG.getNode(ISD::OR, VT, Tmp4, Tmp6);
2494 SDOperand OutLo = DAG.getNode(PPCISD::SHL, VT, Lo, Amt);
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00002495 SDOperand OutOps[] = { OutLo, OutHi };
Dan Gohman9ed06db2008-03-07 20:36:53 +00002496 return DAG.getNode(ISD::MERGE_VALUES, DAG.getVTList(VT, VT),
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00002497 OutOps, 2);
Chris Lattner1a635d62006-04-14 06:01:58 +00002498}
2499
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002500SDOperand PPCTargetLowering::LowerSRL_PARTS(SDOperand Op, SelectionDAG &DAG) {
Dan Gohman9ed06db2008-03-07 20:36:53 +00002501 MVT::ValueType VT = Op.getValueType();
2502 unsigned BitWidth = MVT::getSizeInBits(VT);
2503 assert(Op.getNumOperands() == 3 &&
2504 VT == Op.getOperand(1).getValueType() &&
2505 "Unexpected SRL!");
Chris Lattner1a635d62006-04-14 06:01:58 +00002506
Dan Gohman9ed06db2008-03-07 20:36:53 +00002507 // Expand into a bunch of logical ops. Note that these ops
Chris Lattner1a635d62006-04-14 06:01:58 +00002508 // depend on the PPC behavior for oversized shift amounts.
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00002509 SDOperand Lo = Op.getOperand(0);
2510 SDOperand Hi = Op.getOperand(1);
2511 SDOperand Amt = Op.getOperand(2);
Dan Gohman9ed06db2008-03-07 20:36:53 +00002512 MVT::ValueType AmtVT = Amt.getValueType();
Chris Lattner1a635d62006-04-14 06:01:58 +00002513
Dan Gohman9ed06db2008-03-07 20:36:53 +00002514 SDOperand Tmp1 = DAG.getNode(ISD::SUB, AmtVT,
2515 DAG.getConstant(BitWidth, AmtVT), Amt);
2516 SDOperand Tmp2 = DAG.getNode(PPCISD::SRL, VT, Lo, Amt);
2517 SDOperand Tmp3 = DAG.getNode(PPCISD::SHL, VT, Hi, Tmp1);
2518 SDOperand Tmp4 = DAG.getNode(ISD::OR , VT, Tmp2, Tmp3);
2519 SDOperand Tmp5 = DAG.getNode(ISD::ADD, AmtVT, Amt,
2520 DAG.getConstant(-BitWidth, AmtVT));
2521 SDOperand Tmp6 = DAG.getNode(PPCISD::SRL, VT, Hi, Tmp5);
2522 SDOperand OutLo = DAG.getNode(ISD::OR, VT, Tmp4, Tmp6);
2523 SDOperand OutHi = DAG.getNode(PPCISD::SRL, VT, Hi, Amt);
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00002524 SDOperand OutOps[] = { OutLo, OutHi };
Dan Gohman9ed06db2008-03-07 20:36:53 +00002525 return DAG.getNode(ISD::MERGE_VALUES, DAG.getVTList(VT, VT),
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00002526 OutOps, 2);
Chris Lattner1a635d62006-04-14 06:01:58 +00002527}
2528
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002529SDOperand PPCTargetLowering::LowerSRA_PARTS(SDOperand Op, SelectionDAG &DAG) {
Dan Gohman9ed06db2008-03-07 20:36:53 +00002530 MVT::ValueType VT = Op.getValueType();
2531 unsigned BitWidth = MVT::getSizeInBits(VT);
2532 assert(Op.getNumOperands() == 3 &&
2533 VT == Op.getOperand(1).getValueType() &&
2534 "Unexpected SRA!");
Chris Lattner1a635d62006-04-14 06:01:58 +00002535
Dan Gohman9ed06db2008-03-07 20:36:53 +00002536 // Expand into a bunch of logical ops, followed by a select_cc.
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00002537 SDOperand Lo = Op.getOperand(0);
2538 SDOperand Hi = Op.getOperand(1);
2539 SDOperand Amt = Op.getOperand(2);
Dan Gohman9ed06db2008-03-07 20:36:53 +00002540 MVT::ValueType AmtVT = Amt.getValueType();
Chris Lattner1a635d62006-04-14 06:01:58 +00002541
Dan Gohman9ed06db2008-03-07 20:36:53 +00002542 SDOperand Tmp1 = DAG.getNode(ISD::SUB, AmtVT,
2543 DAG.getConstant(BitWidth, AmtVT), Amt);
2544 SDOperand Tmp2 = DAG.getNode(PPCISD::SRL, VT, Lo, Amt);
2545 SDOperand Tmp3 = DAG.getNode(PPCISD::SHL, VT, Hi, Tmp1);
2546 SDOperand Tmp4 = DAG.getNode(ISD::OR , VT, Tmp2, Tmp3);
2547 SDOperand Tmp5 = DAG.getNode(ISD::ADD, AmtVT, Amt,
2548 DAG.getConstant(-BitWidth, AmtVT));
2549 SDOperand Tmp6 = DAG.getNode(PPCISD::SRA, VT, Hi, Tmp5);
2550 SDOperand OutHi = DAG.getNode(PPCISD::SRA, VT, Hi, Amt);
2551 SDOperand OutLo = DAG.getSelectCC(Tmp5, DAG.getConstant(0, AmtVT),
Chris Lattner1a635d62006-04-14 06:01:58 +00002552 Tmp4, Tmp6, ISD::SETLE);
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00002553 SDOperand OutOps[] = { OutLo, OutHi };
Dan Gohman9ed06db2008-03-07 20:36:53 +00002554 return DAG.getNode(ISD::MERGE_VALUES, DAG.getVTList(VT, VT),
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00002555 OutOps, 2);
Chris Lattner1a635d62006-04-14 06:01:58 +00002556}
2557
2558//===----------------------------------------------------------------------===//
2559// Vector related lowering.
2560//
2561
Chris Lattnerac225ca2006-04-12 19:07:14 +00002562// If this is a vector of constants or undefs, get the bits. A bit in
2563// UndefBits is set if the corresponding element of the vector is an
2564// ISD::UNDEF value. For undefs, the corresponding VectorBits values are
2565// zero. Return true if this is not an array of constants, false if it is.
2566//
Chris Lattnerac225ca2006-04-12 19:07:14 +00002567static bool GetConstantBuildVectorBits(SDNode *BV, uint64_t VectorBits[2],
2568 uint64_t UndefBits[2]) {
2569 // Start with zero'd results.
2570 VectorBits[0] = VectorBits[1] = UndefBits[0] = UndefBits[1] = 0;
2571
2572 unsigned EltBitSize = MVT::getSizeInBits(BV->getOperand(0).getValueType());
2573 for (unsigned i = 0, e = BV->getNumOperands(); i != e; ++i) {
2574 SDOperand OpVal = BV->getOperand(i);
2575
2576 unsigned PartNo = i >= e/2; // In the upper 128 bits?
Chris Lattnerb17f1672006-04-16 01:01:29 +00002577 unsigned SlotNo = e/2 - (i & (e/2-1))-1; // Which subpiece of the uint64_t.
Chris Lattnerac225ca2006-04-12 19:07:14 +00002578
2579 uint64_t EltBits = 0;
2580 if (OpVal.getOpcode() == ISD::UNDEF) {
2581 uint64_t EltUndefBits = ~0U >> (32-EltBitSize);
2582 UndefBits[PartNo] |= EltUndefBits << (SlotNo*EltBitSize);
2583 continue;
2584 } else if (ConstantSDNode *CN = dyn_cast<ConstantSDNode>(OpVal)) {
2585 EltBits = CN->getValue() & (~0U >> (32-EltBitSize));
2586 } else if (ConstantFPSDNode *CN = dyn_cast<ConstantFPSDNode>(OpVal)) {
2587 assert(CN->getValueType(0) == MVT::f32 &&
2588 "Only one legal FP vector type!");
Dale Johanneseneaf08942007-08-31 04:03:46 +00002589 EltBits = FloatToBits(CN->getValueAPF().convertToFloat());
Chris Lattnerac225ca2006-04-12 19:07:14 +00002590 } else {
2591 // Nonconstant element.
2592 return true;
2593 }
2594
2595 VectorBits[PartNo] |= EltBits << (SlotNo*EltBitSize);
2596 }
2597
2598 //printf("%llx %llx %llx %llx\n",
2599 // VectorBits[0], VectorBits[1], UndefBits[0], UndefBits[1]);
2600 return false;
2601}
Chris Lattneref819f82006-03-20 06:33:01 +00002602
Chris Lattnerb17f1672006-04-16 01:01:29 +00002603// If this is a splat (repetition) of a value across the whole vector, return
2604// the smallest size that splats it. For example, "0x01010101010101..." is a
2605// splat of 0x01, 0x0101, and 0x01010101. We return SplatBits = 0x01 and
2606// SplatSize = 1 byte.
2607static bool isConstantSplat(const uint64_t Bits128[2],
2608 const uint64_t Undef128[2],
2609 unsigned &SplatBits, unsigned &SplatUndef,
2610 unsigned &SplatSize) {
2611
2612 // Don't let undefs prevent splats from matching. See if the top 64-bits are
2613 // the same as the lower 64-bits, ignoring undefs.
2614 if ((Bits128[0] & ~Undef128[1]) != (Bits128[1] & ~Undef128[0]))
2615 return false; // Can't be a splat if two pieces don't match.
2616
2617 uint64_t Bits64 = Bits128[0] | Bits128[1];
2618 uint64_t Undef64 = Undef128[0] & Undef128[1];
2619
2620 // Check that the top 32-bits are the same as the lower 32-bits, ignoring
2621 // undefs.
2622 if ((Bits64 & (~Undef64 >> 32)) != ((Bits64 >> 32) & ~Undef64))
2623 return false; // Can't be a splat if two pieces don't match.
2624
2625 uint32_t Bits32 = uint32_t(Bits64) | uint32_t(Bits64 >> 32);
2626 uint32_t Undef32 = uint32_t(Undef64) & uint32_t(Undef64 >> 32);
2627
2628 // If the top 16-bits are different than the lower 16-bits, ignoring
2629 // undefs, we have an i32 splat.
2630 if ((Bits32 & (~Undef32 >> 16)) != ((Bits32 >> 16) & ~Undef32)) {
2631 SplatBits = Bits32;
2632 SplatUndef = Undef32;
2633 SplatSize = 4;
2634 return true;
2635 }
2636
2637 uint16_t Bits16 = uint16_t(Bits32) | uint16_t(Bits32 >> 16);
2638 uint16_t Undef16 = uint16_t(Undef32) & uint16_t(Undef32 >> 16);
2639
2640 // If the top 8-bits are different than the lower 8-bits, ignoring
2641 // undefs, we have an i16 splat.
2642 if ((Bits16 & (uint16_t(~Undef16) >> 8)) != ((Bits16 >> 8) & ~Undef16)) {
2643 SplatBits = Bits16;
2644 SplatUndef = Undef16;
2645 SplatSize = 2;
2646 return true;
2647 }
2648
2649 // Otherwise, we have an 8-bit splat.
2650 SplatBits = uint8_t(Bits16) | uint8_t(Bits16 >> 8);
2651 SplatUndef = uint8_t(Undef16) & uint8_t(Undef16 >> 8);
2652 SplatSize = 1;
2653 return true;
2654}
2655
Chris Lattner4a998b92006-04-17 06:00:21 +00002656/// BuildSplatI - Build a canonical splati of Val with an element size of
2657/// SplatSize. Cast the result to VT.
2658static SDOperand BuildSplatI(int Val, unsigned SplatSize, MVT::ValueType VT,
2659 SelectionDAG &DAG) {
2660 assert(Val >= -16 && Val <= 15 && "vsplti is out of range!");
Chris Lattner70fa4932006-12-01 01:45:39 +00002661
Chris Lattner4a998b92006-04-17 06:00:21 +00002662 static const MVT::ValueType VTys[] = { // canonical VT to use for each size.
2663 MVT::v16i8, MVT::v8i16, MVT::Other, MVT::v4i32
2664 };
Chris Lattner70fa4932006-12-01 01:45:39 +00002665
2666 MVT::ValueType ReqVT = VT != MVT::Other ? VT : VTys[SplatSize-1];
2667
2668 // Force vspltis[hw] -1 to vspltisb -1 to canonicalize.
2669 if (Val == -1)
2670 SplatSize = 1;
2671
Chris Lattner4a998b92006-04-17 06:00:21 +00002672 MVT::ValueType CanonicalVT = VTys[SplatSize-1];
2673
2674 // Build a canonical splat for this value.
Dan Gohman51eaa862007-06-14 22:58:02 +00002675 SDOperand Elt = DAG.getConstant(Val, MVT::getVectorElementType(CanonicalVT));
Chris Lattnere2199452006-08-11 17:38:39 +00002676 SmallVector<SDOperand, 8> Ops;
2677 Ops.assign(MVT::getVectorNumElements(CanonicalVT), Elt);
2678 SDOperand Res = DAG.getNode(ISD::BUILD_VECTOR, CanonicalVT,
2679 &Ops[0], Ops.size());
Chris Lattner70fa4932006-12-01 01:45:39 +00002680 return DAG.getNode(ISD::BIT_CONVERT, ReqVT, Res);
Chris Lattner4a998b92006-04-17 06:00:21 +00002681}
2682
Chris Lattnere7c768e2006-04-18 03:24:30 +00002683/// BuildIntrinsicOp - Return a binary operator intrinsic node with the
Chris Lattner6876e662006-04-17 06:58:41 +00002684/// specified intrinsic ID.
Chris Lattnere7c768e2006-04-18 03:24:30 +00002685static SDOperand BuildIntrinsicOp(unsigned IID, SDOperand LHS, SDOperand RHS,
2686 SelectionDAG &DAG,
2687 MVT::ValueType DestVT = MVT::Other) {
2688 if (DestVT == MVT::Other) DestVT = LHS.getValueType();
2689 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DestVT,
Chris Lattner6876e662006-04-17 06:58:41 +00002690 DAG.getConstant(IID, MVT::i32), LHS, RHS);
2691}
2692
Chris Lattnere7c768e2006-04-18 03:24:30 +00002693/// BuildIntrinsicOp - Return a ternary operator intrinsic node with the
2694/// specified intrinsic ID.
2695static SDOperand BuildIntrinsicOp(unsigned IID, SDOperand Op0, SDOperand Op1,
2696 SDOperand Op2, SelectionDAG &DAG,
2697 MVT::ValueType DestVT = MVT::Other) {
2698 if (DestVT == MVT::Other) DestVT = Op0.getValueType();
2699 return DAG.getNode(ISD::INTRINSIC_WO_CHAIN, DestVT,
2700 DAG.getConstant(IID, MVT::i32), Op0, Op1, Op2);
2701}
2702
2703
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002704/// BuildVSLDOI - Return a VECTOR_SHUFFLE that is a vsldoi of the specified
2705/// amount. The result has the specified value type.
2706static SDOperand BuildVSLDOI(SDOperand LHS, SDOperand RHS, unsigned Amt,
2707 MVT::ValueType VT, SelectionDAG &DAG) {
2708 // Force LHS/RHS to be the right type.
2709 LHS = DAG.getNode(ISD::BIT_CONVERT, MVT::v16i8, LHS);
2710 RHS = DAG.getNode(ISD::BIT_CONVERT, MVT::v16i8, RHS);
2711
Chris Lattnere2199452006-08-11 17:38:39 +00002712 SDOperand Ops[16];
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002713 for (unsigned i = 0; i != 16; ++i)
Chris Lattnere2199452006-08-11 17:38:39 +00002714 Ops[i] = DAG.getConstant(i+Amt, MVT::i32);
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002715 SDOperand T = DAG.getNode(ISD::VECTOR_SHUFFLE, MVT::v16i8, LHS, RHS,
Chris Lattnere2199452006-08-11 17:38:39 +00002716 DAG.getNode(ISD::BUILD_VECTOR, MVT::v16i8, Ops,16));
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002717 return DAG.getNode(ISD::BIT_CONVERT, VT, T);
2718}
2719
Chris Lattnerf1b47082006-04-14 05:19:18 +00002720// If this is a case we can't handle, return null and let the default
2721// expansion code take care of it. If we CAN select this case, and if it
2722// selects to a single instruction, return Op. Otherwise, if we can codegen
2723// this case more efficiently than a constant pool load, lower it to the
2724// sequence of ops that should be used.
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002725SDOperand PPCTargetLowering::LowerBUILD_VECTOR(SDOperand Op,
2726 SelectionDAG &DAG) {
Chris Lattnerf1b47082006-04-14 05:19:18 +00002727 // If this is a vector of constants or undefs, get the bits. A bit in
2728 // UndefBits is set if the corresponding element of the vector is an
2729 // ISD::UNDEF value. For undefs, the corresponding VectorBits values are
2730 // zero.
2731 uint64_t VectorBits[2];
2732 uint64_t UndefBits[2];
2733 if (GetConstantBuildVectorBits(Op.Val, VectorBits, UndefBits))
2734 return SDOperand(); // Not a constant vector.
2735
Chris Lattnerb17f1672006-04-16 01:01:29 +00002736 // If this is a splat (repetition) of a value across the whole vector, return
2737 // the smallest size that splats it. For example, "0x01010101010101..." is a
2738 // splat of 0x01, 0x0101, and 0x01010101. We return SplatBits = 0x01 and
2739 // SplatSize = 1 byte.
2740 unsigned SplatBits, SplatUndef, SplatSize;
2741 if (isConstantSplat(VectorBits, UndefBits, SplatBits, SplatUndef, SplatSize)){
2742 bool HasAnyUndefs = (UndefBits[0] | UndefBits[1]) != 0;
2743
2744 // First, handle single instruction cases.
2745
2746 // All zeros?
2747 if (SplatBits == 0) {
2748 // Canonicalize all zero vectors to be v4i32.
2749 if (Op.getValueType() != MVT::v4i32 || HasAnyUndefs) {
2750 SDOperand Z = DAG.getConstant(0, MVT::i32);
2751 Z = DAG.getNode(ISD::BUILD_VECTOR, MVT::v4i32, Z, Z, Z, Z);
2752 Op = DAG.getNode(ISD::BIT_CONVERT, Op.getValueType(), Z);
2753 }
2754 return Op;
Chris Lattnerf1b47082006-04-14 05:19:18 +00002755 }
Chris Lattnerb17f1672006-04-16 01:01:29 +00002756
2757 // If the sign extended value is in the range [-16,15], use VSPLTI[bhw].
2758 int32_t SextVal= int32_t(SplatBits << (32-8*SplatSize)) >> (32-8*SplatSize);
Chris Lattner4a998b92006-04-17 06:00:21 +00002759 if (SextVal >= -16 && SextVal <= 15)
2760 return BuildSplatI(SextVal, SplatSize, Op.getValueType(), DAG);
Chris Lattnerb17f1672006-04-16 01:01:29 +00002761
Chris Lattnerdbce85d2006-04-17 18:09:22 +00002762
2763 // Two instruction sequences.
2764
Chris Lattner4a998b92006-04-17 06:00:21 +00002765 // If this value is in the range [-32,30] and is even, use:
2766 // tmp = VSPLTI[bhw], result = add tmp, tmp
2767 if (SextVal >= -32 && SextVal <= 30 && (SextVal & 1) == 0) {
2768 Op = BuildSplatI(SextVal >> 1, SplatSize, Op.getValueType(), DAG);
2769 return DAG.getNode(ISD::ADD, Op.getValueType(), Op, Op);
2770 }
Chris Lattner6876e662006-04-17 06:58:41 +00002771
2772 // If this is 0x8000_0000 x 4, turn into vspltisw + vslw. If it is
2773 // 0x7FFF_FFFF x 4, turn it into not(0x8000_0000). This is important
2774 // for fneg/fabs.
2775 if (SplatSize == 4 && SplatBits == (0x7FFFFFFF&~SplatUndef)) {
2776 // Make -1 and vspltisw -1:
2777 SDOperand OnesV = BuildSplatI(-1, 4, MVT::v4i32, DAG);
2778
2779 // Make the VSLW intrinsic, computing 0x8000_0000.
Chris Lattnere7c768e2006-04-18 03:24:30 +00002780 SDOperand Res = BuildIntrinsicOp(Intrinsic::ppc_altivec_vslw, OnesV,
2781 OnesV, DAG);
Chris Lattner6876e662006-04-17 06:58:41 +00002782
2783 // xor by OnesV to invert it.
2784 Res = DAG.getNode(ISD::XOR, MVT::v4i32, Res, OnesV);
2785 return DAG.getNode(ISD::BIT_CONVERT, Op.getValueType(), Res);
2786 }
2787
2788 // Check to see if this is a wide variety of vsplti*, binop self cases.
2789 unsigned SplatBitSize = SplatSize*8;
Lauro Ramos Venancio1baa1972007-03-27 16:33:08 +00002790 static const signed char SplatCsts[] = {
Chris Lattner6876e662006-04-17 06:58:41 +00002791 -1, 1, -2, 2, -3, 3, -4, 4, -5, 5, -6, 6, -7, 7,
Chris Lattnerdbce85d2006-04-17 18:09:22 +00002792 -8, 8, -9, 9, -10, 10, -11, 11, -12, 12, -13, 13, 14, -14, 15, -15, -16
Chris Lattner6876e662006-04-17 06:58:41 +00002793 };
Chris Lattner15eb3292006-11-29 19:58:49 +00002794
Owen Anderson718cb662007-09-07 04:06:50 +00002795 for (unsigned idx = 0; idx < array_lengthof(SplatCsts); ++idx) {
Chris Lattner6876e662006-04-17 06:58:41 +00002796 // Indirect through the SplatCsts array so that we favor 'vsplti -1' for
2797 // cases which are ambiguous (e.g. formation of 0x8000_0000). 'vsplti -1'
2798 int i = SplatCsts[idx];
2799
2800 // Figure out what shift amount will be used by altivec if shifted by i in
2801 // this splat size.
2802 unsigned TypeShiftAmt = i & (SplatBitSize-1);
2803
2804 // vsplti + shl self.
2805 if (SextVal == (i << (int)TypeShiftAmt)) {
Chris Lattner15eb3292006-11-29 19:58:49 +00002806 SDOperand Res = BuildSplatI(i, SplatSize, MVT::Other, DAG);
Chris Lattner6876e662006-04-17 06:58:41 +00002807 static const unsigned IIDs[] = { // Intrinsic to use for each size.
2808 Intrinsic::ppc_altivec_vslb, Intrinsic::ppc_altivec_vslh, 0,
2809 Intrinsic::ppc_altivec_vslw
2810 };
Chris Lattner15eb3292006-11-29 19:58:49 +00002811 Res = BuildIntrinsicOp(IIDs[SplatSize-1], Res, Res, DAG);
2812 return DAG.getNode(ISD::BIT_CONVERT, Op.getValueType(), Res);
Chris Lattner6876e662006-04-17 06:58:41 +00002813 }
2814
2815 // vsplti + srl self.
2816 if (SextVal == (int)((unsigned)i >> TypeShiftAmt)) {
Chris Lattner15eb3292006-11-29 19:58:49 +00002817 SDOperand Res = BuildSplatI(i, SplatSize, MVT::Other, DAG);
Chris Lattner6876e662006-04-17 06:58:41 +00002818 static const unsigned IIDs[] = { // Intrinsic to use for each size.
2819 Intrinsic::ppc_altivec_vsrb, Intrinsic::ppc_altivec_vsrh, 0,
2820 Intrinsic::ppc_altivec_vsrw
2821 };
Chris Lattner15eb3292006-11-29 19:58:49 +00002822 Res = BuildIntrinsicOp(IIDs[SplatSize-1], Res, Res, DAG);
2823 return DAG.getNode(ISD::BIT_CONVERT, Op.getValueType(), Res);
Chris Lattner6876e662006-04-17 06:58:41 +00002824 }
2825
2826 // vsplti + sra self.
2827 if (SextVal == (int)((unsigned)i >> TypeShiftAmt)) {
Chris Lattner15eb3292006-11-29 19:58:49 +00002828 SDOperand Res = BuildSplatI(i, SplatSize, MVT::Other, DAG);
Chris Lattner6876e662006-04-17 06:58:41 +00002829 static const unsigned IIDs[] = { // Intrinsic to use for each size.
2830 Intrinsic::ppc_altivec_vsrab, Intrinsic::ppc_altivec_vsrah, 0,
2831 Intrinsic::ppc_altivec_vsraw
2832 };
Chris Lattner15eb3292006-11-29 19:58:49 +00002833 Res = BuildIntrinsicOp(IIDs[SplatSize-1], Res, Res, DAG);
2834 return DAG.getNode(ISD::BIT_CONVERT, Op.getValueType(), Res);
Chris Lattner6876e662006-04-17 06:58:41 +00002835 }
2836
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002837 // vsplti + rol self.
2838 if (SextVal == (int)(((unsigned)i << TypeShiftAmt) |
2839 ((unsigned)i >> (SplatBitSize-TypeShiftAmt)))) {
Chris Lattner15eb3292006-11-29 19:58:49 +00002840 SDOperand Res = BuildSplatI(i, SplatSize, MVT::Other, DAG);
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002841 static const unsigned IIDs[] = { // Intrinsic to use for each size.
2842 Intrinsic::ppc_altivec_vrlb, Intrinsic::ppc_altivec_vrlh, 0,
2843 Intrinsic::ppc_altivec_vrlw
2844 };
Chris Lattner15eb3292006-11-29 19:58:49 +00002845 Res = BuildIntrinsicOp(IIDs[SplatSize-1], Res, Res, DAG);
2846 return DAG.getNode(ISD::BIT_CONVERT, Op.getValueType(), Res);
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002847 }
2848
2849 // t = vsplti c, result = vsldoi t, t, 1
2850 if (SextVal == ((i << 8) | (i >> (TypeShiftAmt-8)))) {
2851 SDOperand T = BuildSplatI(i, SplatSize, MVT::v16i8, DAG);
2852 return BuildVSLDOI(T, T, 1, Op.getValueType(), DAG);
2853 }
2854 // t = vsplti c, result = vsldoi t, t, 2
2855 if (SextVal == ((i << 16) | (i >> (TypeShiftAmt-16)))) {
2856 SDOperand T = BuildSplatI(i, SplatSize, MVT::v16i8, DAG);
2857 return BuildVSLDOI(T, T, 2, Op.getValueType(), DAG);
2858 }
2859 // t = vsplti c, result = vsldoi t, t, 3
2860 if (SextVal == ((i << 24) | (i >> (TypeShiftAmt-24)))) {
2861 SDOperand T = BuildSplatI(i, SplatSize, MVT::v16i8, DAG);
2862 return BuildVSLDOI(T, T, 3, Op.getValueType(), DAG);
2863 }
Chris Lattner6876e662006-04-17 06:58:41 +00002864 }
2865
Chris Lattner6876e662006-04-17 06:58:41 +00002866 // Three instruction sequences.
2867
Chris Lattnerdbce85d2006-04-17 18:09:22 +00002868 // Odd, in range [17,31]: (vsplti C)-(vsplti -16).
2869 if (SextVal >= 0 && SextVal <= 31) {
Chris Lattner15eb3292006-11-29 19:58:49 +00002870 SDOperand LHS = BuildSplatI(SextVal-16, SplatSize, MVT::Other, DAG);
2871 SDOperand RHS = BuildSplatI(-16, SplatSize, MVT::Other, DAG);
Dale Johannesen296c1762007-10-14 01:58:32 +00002872 LHS = DAG.getNode(ISD::SUB, LHS.getValueType(), LHS, RHS);
Chris Lattner15eb3292006-11-29 19:58:49 +00002873 return DAG.getNode(ISD::BIT_CONVERT, Op.getValueType(), LHS);
Chris Lattnerdbce85d2006-04-17 18:09:22 +00002874 }
2875 // Odd, in range [-31,-17]: (vsplti C)+(vsplti -16).
2876 if (SextVal >= -31 && SextVal <= 0) {
Chris Lattner15eb3292006-11-29 19:58:49 +00002877 SDOperand LHS = BuildSplatI(SextVal+16, SplatSize, MVT::Other, DAG);
2878 SDOperand RHS = BuildSplatI(-16, SplatSize, MVT::Other, DAG);
Dale Johannesen296c1762007-10-14 01:58:32 +00002879 LHS = DAG.getNode(ISD::ADD, LHS.getValueType(), LHS, RHS);
Chris Lattner15eb3292006-11-29 19:58:49 +00002880 return DAG.getNode(ISD::BIT_CONVERT, Op.getValueType(), LHS);
Chris Lattnerf1b47082006-04-14 05:19:18 +00002881 }
2882 }
Chris Lattnerb17f1672006-04-16 01:01:29 +00002883
Chris Lattnerf1b47082006-04-14 05:19:18 +00002884 return SDOperand();
2885}
2886
Chris Lattner59138102006-04-17 05:28:54 +00002887/// GeneratePerfectShuffle - Given an entry in the perfect-shuffle table, emit
2888/// the specified operations to build the shuffle.
2889static SDOperand GeneratePerfectShuffle(unsigned PFEntry, SDOperand LHS,
2890 SDOperand RHS, SelectionDAG &DAG) {
2891 unsigned OpNum = (PFEntry >> 26) & 0x0F;
2892 unsigned LHSID = (PFEntry >> 13) & ((1 << 13)-1);
2893 unsigned RHSID = (PFEntry >> 0) & ((1 << 13)-1);
2894
2895 enum {
Chris Lattner00402c72006-05-16 04:20:24 +00002896 OP_COPY = 0, // Copy, used for things like <u,u,u,3> to say it is <0,1,2,3>
Chris Lattner59138102006-04-17 05:28:54 +00002897 OP_VMRGHW,
2898 OP_VMRGLW,
2899 OP_VSPLTISW0,
2900 OP_VSPLTISW1,
2901 OP_VSPLTISW2,
2902 OP_VSPLTISW3,
2903 OP_VSLDOI4,
2904 OP_VSLDOI8,
Chris Lattnerd74ea2b2006-05-24 17:04:05 +00002905 OP_VSLDOI12
Chris Lattner59138102006-04-17 05:28:54 +00002906 };
2907
2908 if (OpNum == OP_COPY) {
2909 if (LHSID == (1*9+2)*9+3) return LHS;
2910 assert(LHSID == ((4*9+5)*9+6)*9+7 && "Illegal OP_COPY!");
2911 return RHS;
2912 }
2913
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002914 SDOperand OpLHS, OpRHS;
2915 OpLHS = GeneratePerfectShuffle(PerfectShuffleTable[LHSID], LHS, RHS, DAG);
2916 OpRHS = GeneratePerfectShuffle(PerfectShuffleTable[RHSID], LHS, RHS, DAG);
2917
Chris Lattner59138102006-04-17 05:28:54 +00002918 unsigned ShufIdxs[16];
2919 switch (OpNum) {
2920 default: assert(0 && "Unknown i32 permute!");
2921 case OP_VMRGHW:
2922 ShufIdxs[ 0] = 0; ShufIdxs[ 1] = 1; ShufIdxs[ 2] = 2; ShufIdxs[ 3] = 3;
2923 ShufIdxs[ 4] = 16; ShufIdxs[ 5] = 17; ShufIdxs[ 6] = 18; ShufIdxs[ 7] = 19;
2924 ShufIdxs[ 8] = 4; ShufIdxs[ 9] = 5; ShufIdxs[10] = 6; ShufIdxs[11] = 7;
2925 ShufIdxs[12] = 20; ShufIdxs[13] = 21; ShufIdxs[14] = 22; ShufIdxs[15] = 23;
2926 break;
2927 case OP_VMRGLW:
2928 ShufIdxs[ 0] = 8; ShufIdxs[ 1] = 9; ShufIdxs[ 2] = 10; ShufIdxs[ 3] = 11;
2929 ShufIdxs[ 4] = 24; ShufIdxs[ 5] = 25; ShufIdxs[ 6] = 26; ShufIdxs[ 7] = 27;
2930 ShufIdxs[ 8] = 12; ShufIdxs[ 9] = 13; ShufIdxs[10] = 14; ShufIdxs[11] = 15;
2931 ShufIdxs[12] = 28; ShufIdxs[13] = 29; ShufIdxs[14] = 30; ShufIdxs[15] = 31;
2932 break;
2933 case OP_VSPLTISW0:
2934 for (unsigned i = 0; i != 16; ++i)
2935 ShufIdxs[i] = (i&3)+0;
2936 break;
2937 case OP_VSPLTISW1:
2938 for (unsigned i = 0; i != 16; ++i)
2939 ShufIdxs[i] = (i&3)+4;
2940 break;
2941 case OP_VSPLTISW2:
2942 for (unsigned i = 0; i != 16; ++i)
2943 ShufIdxs[i] = (i&3)+8;
2944 break;
2945 case OP_VSPLTISW3:
2946 for (unsigned i = 0; i != 16; ++i)
2947 ShufIdxs[i] = (i&3)+12;
2948 break;
2949 case OP_VSLDOI4:
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002950 return BuildVSLDOI(OpLHS, OpRHS, 4, OpLHS.getValueType(), DAG);
Chris Lattner59138102006-04-17 05:28:54 +00002951 case OP_VSLDOI8:
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002952 return BuildVSLDOI(OpLHS, OpRHS, 8, OpLHS.getValueType(), DAG);
Chris Lattner59138102006-04-17 05:28:54 +00002953 case OP_VSLDOI12:
Chris Lattnerbdd558c2006-04-17 17:55:10 +00002954 return BuildVSLDOI(OpLHS, OpRHS, 12, OpLHS.getValueType(), DAG);
Chris Lattner59138102006-04-17 05:28:54 +00002955 }
Chris Lattnere2199452006-08-11 17:38:39 +00002956 SDOperand Ops[16];
Chris Lattner59138102006-04-17 05:28:54 +00002957 for (unsigned i = 0; i != 16; ++i)
Chris Lattnere2199452006-08-11 17:38:39 +00002958 Ops[i] = DAG.getConstant(ShufIdxs[i], MVT::i32);
Chris Lattner59138102006-04-17 05:28:54 +00002959
2960 return DAG.getNode(ISD::VECTOR_SHUFFLE, OpLHS.getValueType(), OpLHS, OpRHS,
Chris Lattnere2199452006-08-11 17:38:39 +00002961 DAG.getNode(ISD::BUILD_VECTOR, MVT::v16i8, Ops, 16));
Chris Lattner59138102006-04-17 05:28:54 +00002962}
2963
Chris Lattnerf1b47082006-04-14 05:19:18 +00002964/// LowerVECTOR_SHUFFLE - Return the code we lower for VECTOR_SHUFFLE. If this
2965/// is a shuffle we can handle in a single instruction, return it. Otherwise,
2966/// return the code it can be lowered into. Worst case, it can always be
2967/// lowered into a vperm.
Dale Johannesen5b3b6952008-03-04 23:17:14 +00002968SDOperand PPCTargetLowering::LowerVECTOR_SHUFFLE(SDOperand Op,
2969 SelectionDAG &DAG) {
Chris Lattnerf1b47082006-04-14 05:19:18 +00002970 SDOperand V1 = Op.getOperand(0);
2971 SDOperand V2 = Op.getOperand(1);
2972 SDOperand PermMask = Op.getOperand(2);
2973
2974 // Cases that are handled by instructions that take permute immediates
2975 // (such as vsplt*) should be left as VECTOR_SHUFFLE nodes so they can be
2976 // selected by the instruction selector.
2977 if (V2.getOpcode() == ISD::UNDEF) {
2978 if (PPC::isSplatShuffleMask(PermMask.Val, 1) ||
2979 PPC::isSplatShuffleMask(PermMask.Val, 2) ||
2980 PPC::isSplatShuffleMask(PermMask.Val, 4) ||
2981 PPC::isVPKUWUMShuffleMask(PermMask.Val, true) ||
2982 PPC::isVPKUHUMShuffleMask(PermMask.Val, true) ||
2983 PPC::isVSLDOIShuffleMask(PermMask.Val, true) != -1 ||
2984 PPC::isVMRGLShuffleMask(PermMask.Val, 1, true) ||
2985 PPC::isVMRGLShuffleMask(PermMask.Val, 2, true) ||
2986 PPC::isVMRGLShuffleMask(PermMask.Val, 4, true) ||
2987 PPC::isVMRGHShuffleMask(PermMask.Val, 1, true) ||
2988 PPC::isVMRGHShuffleMask(PermMask.Val, 2, true) ||
2989 PPC::isVMRGHShuffleMask(PermMask.Val, 4, true)) {
2990 return Op;
2991 }
2992 }
2993
2994 // Altivec has a variety of "shuffle immediates" that take two vector inputs
2995 // and produce a fixed permutation. If any of these match, do not lower to
2996 // VPERM.
2997 if (PPC::isVPKUWUMShuffleMask(PermMask.Val, false) ||
2998 PPC::isVPKUHUMShuffleMask(PermMask.Val, false) ||
2999 PPC::isVSLDOIShuffleMask(PermMask.Val, false) != -1 ||
3000 PPC::isVMRGLShuffleMask(PermMask.Val, 1, false) ||
3001 PPC::isVMRGLShuffleMask(PermMask.Val, 2, false) ||
3002 PPC::isVMRGLShuffleMask(PermMask.Val, 4, false) ||
3003 PPC::isVMRGHShuffleMask(PermMask.Val, 1, false) ||
3004 PPC::isVMRGHShuffleMask(PermMask.Val, 2, false) ||
3005 PPC::isVMRGHShuffleMask(PermMask.Val, 4, false))
3006 return Op;
3007
Chris Lattner59138102006-04-17 05:28:54 +00003008 // Check to see if this is a shuffle of 4-byte values. If so, we can use our
3009 // perfect shuffle table to emit an optimal matching sequence.
3010 unsigned PFIndexes[4];
3011 bool isFourElementShuffle = true;
3012 for (unsigned i = 0; i != 4 && isFourElementShuffle; ++i) { // Element number
3013 unsigned EltNo = 8; // Start out undef.
3014 for (unsigned j = 0; j != 4; ++j) { // Intra-element byte.
3015 if (PermMask.getOperand(i*4+j).getOpcode() == ISD::UNDEF)
3016 continue; // Undef, ignore it.
3017
3018 unsigned ByteSource =
3019 cast<ConstantSDNode>(PermMask.getOperand(i*4+j))->getValue();
3020 if ((ByteSource & 3) != j) {
3021 isFourElementShuffle = false;
3022 break;
3023 }
3024
3025 if (EltNo == 8) {
3026 EltNo = ByteSource/4;
3027 } else if (EltNo != ByteSource/4) {
3028 isFourElementShuffle = false;
3029 break;
3030 }
3031 }
3032 PFIndexes[i] = EltNo;
3033 }
3034
3035 // If this shuffle can be expressed as a shuffle of 4-byte elements, use the
3036 // perfect shuffle vector to determine if it is cost effective to do this as
3037 // discrete instructions, or whether we should use a vperm.
3038 if (isFourElementShuffle) {
3039 // Compute the index in the perfect shuffle table.
3040 unsigned PFTableIndex =
3041 PFIndexes[0]*9*9*9+PFIndexes[1]*9*9+PFIndexes[2]*9+PFIndexes[3];
3042
3043 unsigned PFEntry = PerfectShuffleTable[PFTableIndex];
3044 unsigned Cost = (PFEntry >> 30);
3045
3046 // Determining when to avoid vperm is tricky. Many things affect the cost
3047 // of vperm, particularly how many times the perm mask needs to be computed.
3048 // For example, if the perm mask can be hoisted out of a loop or is already
3049 // used (perhaps because there are multiple permutes with the same shuffle
3050 // mask?) the vperm has a cost of 1. OTOH, hoisting the permute mask out of
3051 // the loop requires an extra register.
3052 //
3053 // As a compromise, we only emit discrete instructions if the shuffle can be
3054 // generated in 3 or fewer operations. When we have loop information
3055 // available, if this block is within a loop, we should avoid using vperm
3056 // for 3-operation perms and use a constant pool load instead.
3057 if (Cost < 3)
3058 return GeneratePerfectShuffle(PFEntry, V1, V2, DAG);
3059 }
Chris Lattnerf1b47082006-04-14 05:19:18 +00003060
3061 // Lower this to a VPERM(V1, V2, V3) expression, where V3 is a constant
3062 // vector that will get spilled to the constant pool.
3063 if (V2.getOpcode() == ISD::UNDEF) V2 = V1;
3064
3065 // The SHUFFLE_VECTOR mask is almost exactly what we want for vperm, except
3066 // that it is in input element units, not in bytes. Convert now.
Dan Gohman51eaa862007-06-14 22:58:02 +00003067 MVT::ValueType EltVT = MVT::getVectorElementType(V1.getValueType());
Chris Lattnerf1b47082006-04-14 05:19:18 +00003068 unsigned BytesPerElement = MVT::getSizeInBits(EltVT)/8;
3069
Chris Lattnere2199452006-08-11 17:38:39 +00003070 SmallVector<SDOperand, 16> ResultMask;
Chris Lattnerf1b47082006-04-14 05:19:18 +00003071 for (unsigned i = 0, e = PermMask.getNumOperands(); i != e; ++i) {
Chris Lattner730b4562006-04-15 23:48:05 +00003072 unsigned SrcElt;
3073 if (PermMask.getOperand(i).getOpcode() == ISD::UNDEF)
3074 SrcElt = 0;
3075 else
3076 SrcElt = cast<ConstantSDNode>(PermMask.getOperand(i))->getValue();
Chris Lattnerf1b47082006-04-14 05:19:18 +00003077
3078 for (unsigned j = 0; j != BytesPerElement; ++j)
3079 ResultMask.push_back(DAG.getConstant(SrcElt*BytesPerElement+j,
3080 MVT::i8));
3081 }
3082
Chris Lattnere2199452006-08-11 17:38:39 +00003083 SDOperand VPermMask = DAG.getNode(ISD::BUILD_VECTOR, MVT::v16i8,
3084 &ResultMask[0], ResultMask.size());
Chris Lattnerf1b47082006-04-14 05:19:18 +00003085 return DAG.getNode(PPCISD::VPERM, V1.getValueType(), V1, V2, VPermMask);
3086}
3087
Chris Lattner90564f22006-04-18 17:59:36 +00003088/// getAltivecCompareInfo - Given an intrinsic, return false if it is not an
3089/// altivec comparison. If it is, return true and fill in Opc/isDot with
3090/// information about the intrinsic.
3091static bool getAltivecCompareInfo(SDOperand Intrin, int &CompareOpc,
3092 bool &isDot) {
3093 unsigned IntrinsicID = cast<ConstantSDNode>(Intrin.getOperand(0))->getValue();
3094 CompareOpc = -1;
3095 isDot = false;
3096 switch (IntrinsicID) {
3097 default: return false;
3098 // Comparison predicates.
Chris Lattner1a635d62006-04-14 06:01:58 +00003099 case Intrinsic::ppc_altivec_vcmpbfp_p: CompareOpc = 966; isDot = 1; break;
3100 case Intrinsic::ppc_altivec_vcmpeqfp_p: CompareOpc = 198; isDot = 1; break;
3101 case Intrinsic::ppc_altivec_vcmpequb_p: CompareOpc = 6; isDot = 1; break;
3102 case Intrinsic::ppc_altivec_vcmpequh_p: CompareOpc = 70; isDot = 1; break;
3103 case Intrinsic::ppc_altivec_vcmpequw_p: CompareOpc = 134; isDot = 1; break;
3104 case Intrinsic::ppc_altivec_vcmpgefp_p: CompareOpc = 454; isDot = 1; break;
3105 case Intrinsic::ppc_altivec_vcmpgtfp_p: CompareOpc = 710; isDot = 1; break;
3106 case Intrinsic::ppc_altivec_vcmpgtsb_p: CompareOpc = 774; isDot = 1; break;
3107 case Intrinsic::ppc_altivec_vcmpgtsh_p: CompareOpc = 838; isDot = 1; break;
3108 case Intrinsic::ppc_altivec_vcmpgtsw_p: CompareOpc = 902; isDot = 1; break;
3109 case Intrinsic::ppc_altivec_vcmpgtub_p: CompareOpc = 518; isDot = 1; break;
3110 case Intrinsic::ppc_altivec_vcmpgtuh_p: CompareOpc = 582; isDot = 1; break;
3111 case Intrinsic::ppc_altivec_vcmpgtuw_p: CompareOpc = 646; isDot = 1; break;
3112
3113 // Normal Comparisons.
3114 case Intrinsic::ppc_altivec_vcmpbfp: CompareOpc = 966; isDot = 0; break;
3115 case Intrinsic::ppc_altivec_vcmpeqfp: CompareOpc = 198; isDot = 0; break;
3116 case Intrinsic::ppc_altivec_vcmpequb: CompareOpc = 6; isDot = 0; break;
3117 case Intrinsic::ppc_altivec_vcmpequh: CompareOpc = 70; isDot = 0; break;
3118 case Intrinsic::ppc_altivec_vcmpequw: CompareOpc = 134; isDot = 0; break;
3119 case Intrinsic::ppc_altivec_vcmpgefp: CompareOpc = 454; isDot = 0; break;
3120 case Intrinsic::ppc_altivec_vcmpgtfp: CompareOpc = 710; isDot = 0; break;
3121 case Intrinsic::ppc_altivec_vcmpgtsb: CompareOpc = 774; isDot = 0; break;
3122 case Intrinsic::ppc_altivec_vcmpgtsh: CompareOpc = 838; isDot = 0; break;
3123 case Intrinsic::ppc_altivec_vcmpgtsw: CompareOpc = 902; isDot = 0; break;
3124 case Intrinsic::ppc_altivec_vcmpgtub: CompareOpc = 518; isDot = 0; break;
3125 case Intrinsic::ppc_altivec_vcmpgtuh: CompareOpc = 582; isDot = 0; break;
3126 case Intrinsic::ppc_altivec_vcmpgtuw: CompareOpc = 646; isDot = 0; break;
3127 }
Chris Lattner90564f22006-04-18 17:59:36 +00003128 return true;
3129}
3130
3131/// LowerINTRINSIC_WO_CHAIN - If this is an intrinsic that we want to custom
3132/// lower, do it, otherwise return null.
Dale Johannesen5b3b6952008-03-04 23:17:14 +00003133SDOperand PPCTargetLowering::LowerINTRINSIC_WO_CHAIN(SDOperand Op,
3134 SelectionDAG &DAG) {
Chris Lattner90564f22006-04-18 17:59:36 +00003135 // If this is a lowered altivec predicate compare, CompareOpc is set to the
3136 // opcode number of the comparison.
3137 int CompareOpc;
3138 bool isDot;
3139 if (!getAltivecCompareInfo(Op, CompareOpc, isDot))
3140 return SDOperand(); // Don't custom lower most intrinsics.
Chris Lattner1a635d62006-04-14 06:01:58 +00003141
Chris Lattner90564f22006-04-18 17:59:36 +00003142 // If this is a non-dot comparison, make the VCMP node and we are done.
Chris Lattner1a635d62006-04-14 06:01:58 +00003143 if (!isDot) {
3144 SDOperand Tmp = DAG.getNode(PPCISD::VCMP, Op.getOperand(2).getValueType(),
3145 Op.getOperand(1), Op.getOperand(2),
3146 DAG.getConstant(CompareOpc, MVT::i32));
3147 return DAG.getNode(ISD::BIT_CONVERT, Op.getValueType(), Tmp);
3148 }
3149
3150 // Create the PPCISD altivec 'dot' comparison node.
Chris Lattner79e490a2006-08-11 17:18:05 +00003151 SDOperand Ops[] = {
3152 Op.getOperand(2), // LHS
3153 Op.getOperand(3), // RHS
3154 DAG.getConstant(CompareOpc, MVT::i32)
3155 };
Chris Lattner1a635d62006-04-14 06:01:58 +00003156 std::vector<MVT::ValueType> VTs;
Chris Lattner1a635d62006-04-14 06:01:58 +00003157 VTs.push_back(Op.getOperand(2).getValueType());
3158 VTs.push_back(MVT::Flag);
Chris Lattner79e490a2006-08-11 17:18:05 +00003159 SDOperand CompNode = DAG.getNode(PPCISD::VCMPo, VTs, Ops, 3);
Chris Lattner1a635d62006-04-14 06:01:58 +00003160
3161 // Now that we have the comparison, emit a copy from the CR to a GPR.
3162 // This is flagged to the above dot comparison.
3163 SDOperand Flags = DAG.getNode(PPCISD::MFCR, MVT::i32,
3164 DAG.getRegister(PPC::CR6, MVT::i32),
3165 CompNode.getValue(1));
3166
3167 // Unpack the result based on how the target uses it.
3168 unsigned BitNo; // Bit # of CR6.
3169 bool InvertBit; // Invert result?
3170 switch (cast<ConstantSDNode>(Op.getOperand(1))->getValue()) {
3171 default: // Can't happen, don't crash on invalid number though.
3172 case 0: // Return the value of the EQ bit of CR6.
3173 BitNo = 0; InvertBit = false;
3174 break;
3175 case 1: // Return the inverted value of the EQ bit of CR6.
3176 BitNo = 0; InvertBit = true;
3177 break;
3178 case 2: // Return the value of the LT bit of CR6.
3179 BitNo = 2; InvertBit = false;
3180 break;
3181 case 3: // Return the inverted value of the LT bit of CR6.
3182 BitNo = 2; InvertBit = true;
3183 break;
3184 }
3185
3186 // Shift the bit into the low position.
3187 Flags = DAG.getNode(ISD::SRL, MVT::i32, Flags,
3188 DAG.getConstant(8-(3-BitNo), MVT::i32));
3189 // Isolate the bit.
3190 Flags = DAG.getNode(ISD::AND, MVT::i32, Flags,
3191 DAG.getConstant(1, MVT::i32));
3192
3193 // If we are supposed to, toggle the bit.
3194 if (InvertBit)
3195 Flags = DAG.getNode(ISD::XOR, MVT::i32, Flags,
3196 DAG.getConstant(1, MVT::i32));
3197 return Flags;
3198}
3199
Dale Johannesen5b3b6952008-03-04 23:17:14 +00003200SDOperand PPCTargetLowering::LowerSCALAR_TO_VECTOR(SDOperand Op,
3201 SelectionDAG &DAG) {
Chris Lattner1a635d62006-04-14 06:01:58 +00003202 // Create a stack slot that is 16-byte aligned.
3203 MachineFrameInfo *FrameInfo = DAG.getMachineFunction().getFrameInfo();
3204 int FrameIdx = FrameInfo->CreateStackObject(16, 16);
Chris Lattner0d72a202006-07-28 16:45:47 +00003205 MVT::ValueType PtrVT = DAG.getTargetLoweringInfo().getPointerTy();
3206 SDOperand FIdx = DAG.getFrameIndex(FrameIdx, PtrVT);
Chris Lattner1a635d62006-04-14 06:01:58 +00003207
3208 // Store the input value into Value#0 of the stack slot.
Evan Cheng786225a2006-10-05 23:01:46 +00003209 SDOperand Store = DAG.getStore(DAG.getEntryNode(),
Evan Cheng8b2794a2006-10-13 21:14:26 +00003210 Op.getOperand(0), FIdx, NULL, 0);
Chris Lattner1a635d62006-04-14 06:01:58 +00003211 // Load it out.
Evan Cheng466685d2006-10-09 20:57:25 +00003212 return DAG.getLoad(Op.getValueType(), Store, FIdx, NULL, 0);
Chris Lattner1a635d62006-04-14 06:01:58 +00003213}
3214
Dale Johannesen5b3b6952008-03-04 23:17:14 +00003215SDOperand PPCTargetLowering::LowerMUL(SDOperand Op, SelectionDAG &DAG) {
Chris Lattner72dd9bd2006-04-18 03:43:48 +00003216 if (Op.getValueType() == MVT::v4i32) {
3217 SDOperand LHS = Op.getOperand(0), RHS = Op.getOperand(1);
3218
3219 SDOperand Zero = BuildSplatI( 0, 1, MVT::v4i32, DAG);
3220 SDOperand Neg16 = BuildSplatI(-16, 4, MVT::v4i32, DAG); // +16 as shift amt.
3221
3222 SDOperand RHSSwap = // = vrlw RHS, 16
3223 BuildIntrinsicOp(Intrinsic::ppc_altivec_vrlw, RHS, Neg16, DAG);
3224
3225 // Shrinkify inputs to v8i16.
3226 LHS = DAG.getNode(ISD::BIT_CONVERT, MVT::v8i16, LHS);
3227 RHS = DAG.getNode(ISD::BIT_CONVERT, MVT::v8i16, RHS);
3228 RHSSwap = DAG.getNode(ISD::BIT_CONVERT, MVT::v8i16, RHSSwap);
3229
3230 // Low parts multiplied together, generating 32-bit results (we ignore the
3231 // top parts).
3232 SDOperand LoProd = BuildIntrinsicOp(Intrinsic::ppc_altivec_vmulouh,
3233 LHS, RHS, DAG, MVT::v4i32);
3234
3235 SDOperand HiProd = BuildIntrinsicOp(Intrinsic::ppc_altivec_vmsumuhm,
3236 LHS, RHSSwap, Zero, DAG, MVT::v4i32);
3237 // Shift the high parts up 16 bits.
3238 HiProd = BuildIntrinsicOp(Intrinsic::ppc_altivec_vslw, HiProd, Neg16, DAG);
3239 return DAG.getNode(ISD::ADD, MVT::v4i32, LoProd, HiProd);
3240 } else if (Op.getValueType() == MVT::v8i16) {
3241 SDOperand LHS = Op.getOperand(0), RHS = Op.getOperand(1);
3242
Chris Lattnercea2aa72006-04-18 04:28:57 +00003243 SDOperand Zero = BuildSplatI(0, 1, MVT::v8i16, DAG);
Chris Lattner72dd9bd2006-04-18 03:43:48 +00003244
Chris Lattnercea2aa72006-04-18 04:28:57 +00003245 return BuildIntrinsicOp(Intrinsic::ppc_altivec_vmladduhm,
3246 LHS, RHS, Zero, DAG);
Chris Lattner19a81522006-04-18 03:57:35 +00003247 } else if (Op.getValueType() == MVT::v16i8) {
3248 SDOperand LHS = Op.getOperand(0), RHS = Op.getOperand(1);
3249
3250 // Multiply the even 8-bit parts, producing 16-bit sums.
3251 SDOperand EvenParts = BuildIntrinsicOp(Intrinsic::ppc_altivec_vmuleub,
3252 LHS, RHS, DAG, MVT::v8i16);
3253 EvenParts = DAG.getNode(ISD::BIT_CONVERT, MVT::v16i8, EvenParts);
3254
3255 // Multiply the odd 8-bit parts, producing 16-bit sums.
3256 SDOperand OddParts = BuildIntrinsicOp(Intrinsic::ppc_altivec_vmuloub,
3257 LHS, RHS, DAG, MVT::v8i16);
3258 OddParts = DAG.getNode(ISD::BIT_CONVERT, MVT::v16i8, OddParts);
3259
3260 // Merge the results together.
Chris Lattnere2199452006-08-11 17:38:39 +00003261 SDOperand Ops[16];
Chris Lattner19a81522006-04-18 03:57:35 +00003262 for (unsigned i = 0; i != 8; ++i) {
Chris Lattnere2199452006-08-11 17:38:39 +00003263 Ops[i*2 ] = DAG.getConstant(2*i+1, MVT::i8);
3264 Ops[i*2+1] = DAG.getConstant(2*i+1+16, MVT::i8);
Chris Lattner19a81522006-04-18 03:57:35 +00003265 }
Chris Lattner19a81522006-04-18 03:57:35 +00003266 return DAG.getNode(ISD::VECTOR_SHUFFLE, MVT::v16i8, EvenParts, OddParts,
Chris Lattnere2199452006-08-11 17:38:39 +00003267 DAG.getNode(ISD::BUILD_VECTOR, MVT::v16i8, Ops, 16));
Chris Lattner72dd9bd2006-04-18 03:43:48 +00003268 } else {
3269 assert(0 && "Unknown mul to lower!");
3270 abort();
3271 }
Chris Lattnere7c768e2006-04-18 03:24:30 +00003272}
3273
Chris Lattnere4bc9ea2005-08-26 00:52:45 +00003274/// LowerOperation - Provide custom lowering hooks for some operations.
3275///
Nate Begeman21e463b2005-10-16 05:39:50 +00003276SDOperand PPCTargetLowering::LowerOperation(SDOperand Op, SelectionDAG &DAG) {
Chris Lattnere4bc9ea2005-08-26 00:52:45 +00003277 switch (Op.getOpcode()) {
3278 default: assert(0 && "Wasn't expecting to be able to lower this!");
Chris Lattner1a635d62006-04-14 06:01:58 +00003279 case ISD::ConstantPool: return LowerConstantPool(Op, DAG);
3280 case ISD::GlobalAddress: return LowerGlobalAddress(Op, DAG);
Lauro Ramos Venancio75ce0102007-07-11 17:19:51 +00003281 case ISD::GlobalTLSAddress: return LowerGlobalTLSAddress(Op, DAG);
Nate Begeman37efe672006-04-22 18:53:45 +00003282 case ISD::JumpTable: return LowerJumpTable(Op, DAG);
Chris Lattner1a635d62006-04-14 06:01:58 +00003283 case ISD::SETCC: return LowerSETCC(Op, DAG);
Nicolas Geoffray01119992007-04-03 13:59:52 +00003284 case ISD::VASTART:
3285 return LowerVASTART(Op, DAG, VarArgsFrameIndex, VarArgsStackOffset,
3286 VarArgsNumGPR, VarArgsNumFPR, PPCSubTarget);
3287
3288 case ISD::VAARG:
3289 return LowerVAARG(Op, DAG, VarArgsFrameIndex, VarArgsStackOffset,
3290 VarArgsNumGPR, VarArgsNumFPR, PPCSubTarget);
3291
Chris Lattneref957102006-06-21 00:34:03 +00003292 case ISD::FORMAL_ARGUMENTS:
Nicolas Geoffray01119992007-04-03 13:59:52 +00003293 return LowerFORMAL_ARGUMENTS(Op, DAG, VarArgsFrameIndex,
3294 VarArgsStackOffset, VarArgsNumGPR,
3295 VarArgsNumFPR, PPCSubTarget);
3296
Chris Lattner9f0bc652007-02-25 05:34:32 +00003297 case ISD::CALL: return LowerCALL(Op, DAG, PPCSubTarget);
Chris Lattnerb9a7bea2007-03-06 00:59:59 +00003298 case ISD::RET: return LowerRET(Op, DAG, getTargetMachine());
Jim Laskeyefc7e522006-12-04 22:04:42 +00003299 case ISD::STACKRESTORE: return LowerSTACKRESTORE(Op, DAG, PPCSubTarget);
Chris Lattner9f0bc652007-02-25 05:34:32 +00003300 case ISD::DYNAMIC_STACKALLOC:
3301 return LowerDYNAMIC_STACKALLOC(Op, DAG, PPCSubTarget);
Chris Lattner7c0d6642005-10-02 06:37:13 +00003302
Chris Lattner1a635d62006-04-14 06:01:58 +00003303 case ISD::SELECT_CC: return LowerSELECT_CC(Op, DAG);
3304 case ISD::FP_TO_SINT: return LowerFP_TO_SINT(Op, DAG);
3305 case ISD::SINT_TO_FP: return LowerSINT_TO_FP(Op, DAG);
Dale Johannesen6eaeff22007-10-10 01:01:31 +00003306 case ISD::FP_ROUND_INREG: return LowerFP_ROUND_INREG(Op, DAG);
Dan Gohman1a024862008-01-31 00:41:03 +00003307 case ISD::FLT_ROUNDS_: return LowerFLT_ROUNDS_(Op, DAG);
Chris Lattnerecfe55e2006-03-22 05:30:33 +00003308
Chris Lattner1a635d62006-04-14 06:01:58 +00003309 // Lower 64-bit shifts.
Chris Lattner3fe6c1d2006-09-20 03:47:40 +00003310 case ISD::SHL_PARTS: return LowerSHL_PARTS(Op, DAG);
3311 case ISD::SRL_PARTS: return LowerSRL_PARTS(Op, DAG);
3312 case ISD::SRA_PARTS: return LowerSRA_PARTS(Op, DAG);
Chris Lattnerecfe55e2006-03-22 05:30:33 +00003313
Chris Lattner1a635d62006-04-14 06:01:58 +00003314 // Vector-related lowering.
3315 case ISD::BUILD_VECTOR: return LowerBUILD_VECTOR(Op, DAG);
3316 case ISD::VECTOR_SHUFFLE: return LowerVECTOR_SHUFFLE(Op, DAG);
3317 case ISD::INTRINSIC_WO_CHAIN: return LowerINTRINSIC_WO_CHAIN(Op, DAG);
3318 case ISD::SCALAR_TO_VECTOR: return LowerSCALAR_TO_VECTOR(Op, DAG);
Chris Lattnere7c768e2006-04-18 03:24:30 +00003319 case ISD::MUL: return LowerMUL(Op, DAG);
Nate Begemanbcc5f362007-01-29 22:58:52 +00003320
Chris Lattner3fc027d2007-12-08 06:59:59 +00003321 // Frame & Return address.
3322 case ISD::RETURNADDR: return LowerRETURNADDR(Op, DAG);
Nicolas Geoffray43c6e7c2007-03-01 13:11:38 +00003323 case ISD::FRAMEADDR: return LowerFRAMEADDR(Op, DAG);
Chris Lattnerbc11c342005-08-31 20:23:54 +00003324 }
Chris Lattnere4bc9ea2005-08-26 00:52:45 +00003325 return SDOperand();
3326}
3327
Chris Lattner1f873002007-11-28 18:44:47 +00003328SDNode *PPCTargetLowering::ExpandOperationResult(SDNode *N, SelectionDAG &DAG) {
3329 switch (N->getOpcode()) {
3330 default: assert(0 && "Wasn't expecting to be able to lower this!");
3331 case ISD::FP_TO_SINT: return LowerFP_TO_SINT(SDOperand(N, 0), DAG).Val;
3332 }
3333}
3334
3335
Chris Lattner1a635d62006-04-14 06:01:58 +00003336//===----------------------------------------------------------------------===//
3337// Other Lowering Code
3338//===----------------------------------------------------------------------===//
3339
Chris Lattner8a2d3ca2005-08-26 21:23:58 +00003340MachineBasicBlock *
Evan Chengff9b3732008-01-30 18:18:23 +00003341PPCTargetLowering::EmitInstrWithCustomInserter(MachineInstr *MI,
3342 MachineBasicBlock *BB) {
Evan Chengc0f64ff2006-11-27 23:37:22 +00003343 const TargetInstrInfo *TII = getTargetMachine().getInstrInfo();
Chris Lattnerc08f9022006-06-27 00:04:13 +00003344 assert((MI->getOpcode() == PPC::SELECT_CC_I4 ||
3345 MI->getOpcode() == PPC::SELECT_CC_I8 ||
Chris Lattner919c0322005-10-01 01:35:02 +00003346 MI->getOpcode() == PPC::SELECT_CC_F4 ||
Chris Lattner710ff322006-04-08 22:45:08 +00003347 MI->getOpcode() == PPC::SELECT_CC_F8 ||
3348 MI->getOpcode() == PPC::SELECT_CC_VRRC) &&
Chris Lattner8a2d3ca2005-08-26 21:23:58 +00003349 "Unexpected instr type to insert");
3350
3351 // To "insert" a SELECT_CC instruction, we actually have to insert the diamond
3352 // control-flow pattern. The incoming instruction knows the destination vreg
3353 // to set, the condition code register to branch on, the true/false values to
3354 // select between, and a branch opcode to use.
3355 const BasicBlock *LLVM_BB = BB->getBasicBlock();
3356 ilist<MachineBasicBlock>::iterator It = BB;
3357 ++It;
3358
3359 // thisMBB:
3360 // ...
3361 // TrueVal = ...
3362 // cmpTY ccX, r1, r2
3363 // bCC copy1MBB
3364 // fallthrough --> copy0MBB
3365 MachineBasicBlock *thisMBB = BB;
3366 MachineBasicBlock *copy0MBB = new MachineBasicBlock(LLVM_BB);
3367 MachineBasicBlock *sinkMBB = new MachineBasicBlock(LLVM_BB);
Chris Lattnerdf4ed632006-11-17 22:10:59 +00003368 unsigned SelectPred = MI->getOperand(4).getImm();
Evan Chengc0f64ff2006-11-27 23:37:22 +00003369 BuildMI(BB, TII->get(PPC::BCC))
Chris Lattner18258c62006-11-17 22:37:34 +00003370 .addImm(SelectPred).addReg(MI->getOperand(1).getReg()).addMBB(sinkMBB);
Chris Lattner8a2d3ca2005-08-26 21:23:58 +00003371 MachineFunction *F = BB->getParent();
3372 F->getBasicBlockList().insert(It, copy0MBB);
3373 F->getBasicBlockList().insert(It, sinkMBB);
Nate Begemanf15485a2006-03-27 01:32:24 +00003374 // Update machine-CFG edges by first adding all successors of the current
3375 // block to the new block which will contain the Phi node for the select.
3376 for(MachineBasicBlock::succ_iterator i = BB->succ_begin(),
3377 e = BB->succ_end(); i != e; ++i)
3378 sinkMBB->addSuccessor(*i);
3379 // Next, remove all successors of the current block, and add the true
3380 // and fallthrough blocks as its successors.
3381 while(!BB->succ_empty())
3382 BB->removeSuccessor(BB->succ_begin());
Chris Lattner8a2d3ca2005-08-26 21:23:58 +00003383 BB->addSuccessor(copy0MBB);
3384 BB->addSuccessor(sinkMBB);
3385
3386 // copy0MBB:
3387 // %FalseValue = ...
3388 // # fallthrough to sinkMBB
3389 BB = copy0MBB;
3390
3391 // Update machine-CFG edges
3392 BB->addSuccessor(sinkMBB);
3393
3394 // sinkMBB:
3395 // %Result = phi [ %FalseValue, copy0MBB ], [ %TrueValue, thisMBB ]
3396 // ...
3397 BB = sinkMBB;
Evan Chengc0f64ff2006-11-27 23:37:22 +00003398 BuildMI(BB, TII->get(PPC::PHI), MI->getOperand(0).getReg())
Chris Lattner8a2d3ca2005-08-26 21:23:58 +00003399 .addReg(MI->getOperand(3).getReg()).addMBB(copy0MBB)
3400 .addReg(MI->getOperand(2).getReg()).addMBB(thisMBB);
3401
3402 delete MI; // The pseudo instruction is gone now.
3403 return BB;
3404}
3405
Chris Lattner1a635d62006-04-14 06:01:58 +00003406//===----------------------------------------------------------------------===//
3407// Target Optimization Hooks
3408//===----------------------------------------------------------------------===//
3409
Chris Lattner8c13d0a2006-03-01 04:57:39 +00003410SDOperand PPCTargetLowering::PerformDAGCombine(SDNode *N,
3411 DAGCombinerInfo &DCI) const {
3412 TargetMachine &TM = getTargetMachine();
3413 SelectionDAG &DAG = DCI.DAG;
3414 switch (N->getOpcode()) {
3415 default: break;
Chris Lattnercf9d0ac2006-09-19 05:22:59 +00003416 case PPCISD::SHL:
3417 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(N->getOperand(0))) {
3418 if (C->getValue() == 0) // 0 << V -> 0.
3419 return N->getOperand(0);
3420 }
3421 break;
3422 case PPCISD::SRL:
3423 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(N->getOperand(0))) {
3424 if (C->getValue() == 0) // 0 >>u V -> 0.
3425 return N->getOperand(0);
3426 }
3427 break;
3428 case PPCISD::SRA:
3429 if (ConstantSDNode *C = dyn_cast<ConstantSDNode>(N->getOperand(0))) {
3430 if (C->getValue() == 0 || // 0 >>s V -> 0.
3431 C->isAllOnesValue()) // -1 >>s V -> -1.
3432 return N->getOperand(0);
3433 }
3434 break;
3435
Chris Lattner8c13d0a2006-03-01 04:57:39 +00003436 case ISD::SINT_TO_FP:
Chris Lattnera7a58542006-06-16 17:34:12 +00003437 if (TM.getSubtarget<PPCSubtarget>().has64BitSupport()) {
Chris Lattnerecfe55e2006-03-22 05:30:33 +00003438 if (N->getOperand(0).getOpcode() == ISD::FP_TO_SINT) {
3439 // Turn (sint_to_fp (fp_to_sint X)) -> fctidz/fcfid without load/stores.
3440 // We allow the src/dst to be either f32/f64, but the intermediate
3441 // type must be i64.
Dale Johannesen79217062007-10-23 23:20:14 +00003442 if (N->getOperand(0).getValueType() == MVT::i64 &&
3443 N->getOperand(0).getOperand(0).getValueType() != MVT::ppcf128) {
Chris Lattnerecfe55e2006-03-22 05:30:33 +00003444 SDOperand Val = N->getOperand(0).getOperand(0);
3445 if (Val.getValueType() == MVT::f32) {
3446 Val = DAG.getNode(ISD::FP_EXTEND, MVT::f64, Val);
3447 DCI.AddToWorklist(Val.Val);
3448 }
3449
3450 Val = DAG.getNode(PPCISD::FCTIDZ, MVT::f64, Val);
Chris Lattner8c13d0a2006-03-01 04:57:39 +00003451 DCI.AddToWorklist(Val.Val);
Chris Lattnerecfe55e2006-03-22 05:30:33 +00003452 Val = DAG.getNode(PPCISD::FCFID, MVT::f64, Val);
Chris Lattner8c13d0a2006-03-01 04:57:39 +00003453 DCI.AddToWorklist(Val.Val);
Chris Lattnerecfe55e2006-03-22 05:30:33 +00003454 if (N->getValueType(0) == MVT::f32) {
Chris Lattner0bd48932008-01-17 07:00:52 +00003455 Val = DAG.getNode(ISD::FP_ROUND, MVT::f32, Val,
3456 DAG.getIntPtrConstant(0));
Chris Lattnerecfe55e2006-03-22 05:30:33 +00003457 DCI.AddToWorklist(Val.Val);
3458 }
3459 return Val;
3460 } else if (N->getOperand(0).getValueType() == MVT::i32) {
3461 // If the intermediate type is i32, we can avoid the load/store here
3462 // too.
Chris Lattner8c13d0a2006-03-01 04:57:39 +00003463 }
Chris Lattner8c13d0a2006-03-01 04:57:39 +00003464 }
3465 }
3466 break;
Chris Lattner51269842006-03-01 05:50:56 +00003467 case ISD::STORE:
3468 // Turn STORE (FP_TO_SINT F) -> STFIWX(FCTIWZ(F)).
3469 if (TM.getSubtarget<PPCSubtarget>().hasSTFIWX() &&
Chris Lattnera7a02fb2008-01-18 16:54:56 +00003470 !cast<StoreSDNode>(N)->isTruncatingStore() &&
Chris Lattner51269842006-03-01 05:50:56 +00003471 N->getOperand(1).getOpcode() == ISD::FP_TO_SINT &&
Dale Johannesen79217062007-10-23 23:20:14 +00003472 N->getOperand(1).getValueType() == MVT::i32 &&
3473 N->getOperand(1).getOperand(0).getValueType() != MVT::ppcf128) {
Chris Lattner51269842006-03-01 05:50:56 +00003474 SDOperand Val = N->getOperand(1).getOperand(0);
3475 if (Val.getValueType() == MVT::f32) {
3476 Val = DAG.getNode(ISD::FP_EXTEND, MVT::f64, Val);
3477 DCI.AddToWorklist(Val.Val);
3478 }
3479 Val = DAG.getNode(PPCISD::FCTIWZ, MVT::f64, Val);
3480 DCI.AddToWorklist(Val.Val);
3481
3482 Val = DAG.getNode(PPCISD::STFIWX, MVT::Other, N->getOperand(0), Val,
3483 N->getOperand(2), N->getOperand(3));
3484 DCI.AddToWorklist(Val.Val);
3485 return Val;
3486 }
Chris Lattnerd9989382006-07-10 20:56:58 +00003487
3488 // Turn STORE (BSWAP) -> sthbrx/stwbrx.
3489 if (N->getOperand(1).getOpcode() == ISD::BSWAP &&
3490 N->getOperand(1).Val->hasOneUse() &&
3491 (N->getOperand(1).getValueType() == MVT::i32 ||
3492 N->getOperand(1).getValueType() == MVT::i16)) {
3493 SDOperand BSwapOp = N->getOperand(1).getOperand(0);
3494 // Do an any-extend to 32-bits if this is a half-word input.
3495 if (BSwapOp.getValueType() == MVT::i16)
3496 BSwapOp = DAG.getNode(ISD::ANY_EXTEND, MVT::i32, BSwapOp);
3497
3498 return DAG.getNode(PPCISD::STBRX, MVT::Other, N->getOperand(0), BSwapOp,
3499 N->getOperand(2), N->getOperand(3),
3500 DAG.getValueType(N->getOperand(1).getValueType()));
3501 }
3502 break;
3503 case ISD::BSWAP:
3504 // Turn BSWAP (LOAD) -> lhbrx/lwbrx.
Evan Cheng466685d2006-10-09 20:57:25 +00003505 if (ISD::isNON_EXTLoad(N->getOperand(0).Val) &&
Chris Lattnerd9989382006-07-10 20:56:58 +00003506 N->getOperand(0).hasOneUse() &&
3507 (N->getValueType(0) == MVT::i32 || N->getValueType(0) == MVT::i16)) {
3508 SDOperand Load = N->getOperand(0);
Evan Cheng466685d2006-10-09 20:57:25 +00003509 LoadSDNode *LD = cast<LoadSDNode>(Load);
Chris Lattnerd9989382006-07-10 20:56:58 +00003510 // Create the byte-swapping load.
3511 std::vector<MVT::ValueType> VTs;
3512 VTs.push_back(MVT::i32);
3513 VTs.push_back(MVT::Other);
Dan Gohman69de1932008-02-06 22:27:42 +00003514 SDOperand MO = DAG.getMemOperand(LD->getMemOperand());
Chris Lattner79e490a2006-08-11 17:18:05 +00003515 SDOperand Ops[] = {
Evan Cheng466685d2006-10-09 20:57:25 +00003516 LD->getChain(), // Chain
3517 LD->getBasePtr(), // Ptr
Dan Gohman69de1932008-02-06 22:27:42 +00003518 MO, // MemOperand
Chris Lattner79e490a2006-08-11 17:18:05 +00003519 DAG.getValueType(N->getValueType(0)) // VT
3520 };
3521 SDOperand BSLoad = DAG.getNode(PPCISD::LBRX, VTs, Ops, 4);
Chris Lattnerd9989382006-07-10 20:56:58 +00003522
3523 // If this is an i16 load, insert the truncate.
3524 SDOperand ResVal = BSLoad;
3525 if (N->getValueType(0) == MVT::i16)
3526 ResVal = DAG.getNode(ISD::TRUNCATE, MVT::i16, BSLoad);
3527
3528 // First, combine the bswap away. This makes the value produced by the
3529 // load dead.
3530 DCI.CombineTo(N, ResVal);
3531
3532 // Next, combine the load away, we give it a bogus result value but a real
3533 // chain result. The result value is dead because the bswap is dead.
3534 DCI.CombineTo(Load.Val, ResVal, BSLoad.getValue(1));
3535
3536 // Return N so it doesn't get rechecked!
3537 return SDOperand(N, 0);
3538 }
3539
Chris Lattner51269842006-03-01 05:50:56 +00003540 break;
Chris Lattner4468c222006-03-31 06:02:07 +00003541 case PPCISD::VCMP: {
3542 // If a VCMPo node already exists with exactly the same operands as this
3543 // node, use its result instead of this node (VCMPo computes both a CR6 and
3544 // a normal output).
3545 //
3546 if (!N->getOperand(0).hasOneUse() &&
3547 !N->getOperand(1).hasOneUse() &&
3548 !N->getOperand(2).hasOneUse()) {
3549
3550 // Scan all of the users of the LHS, looking for VCMPo's that match.
3551 SDNode *VCMPoNode = 0;
3552
3553 SDNode *LHSN = N->getOperand(0).Val;
3554 for (SDNode::use_iterator UI = LHSN->use_begin(), E = LHSN->use_end();
3555 UI != E; ++UI)
3556 if ((*UI)->getOpcode() == PPCISD::VCMPo &&
3557 (*UI)->getOperand(1) == N->getOperand(1) &&
3558 (*UI)->getOperand(2) == N->getOperand(2) &&
3559 (*UI)->getOperand(0) == N->getOperand(0)) {
3560 VCMPoNode = *UI;
3561 break;
3562 }
3563
Chris Lattner00901202006-04-18 18:28:22 +00003564 // If there is no VCMPo node, or if the flag value has a single use, don't
3565 // transform this.
3566 if (!VCMPoNode || VCMPoNode->hasNUsesOfValue(0, 1))
3567 break;
3568
3569 // Look at the (necessarily single) use of the flag value. If it has a
3570 // chain, this transformation is more complex. Note that multiple things
3571 // could use the value result, which we should ignore.
3572 SDNode *FlagUser = 0;
3573 for (SDNode::use_iterator UI = VCMPoNode->use_begin();
3574 FlagUser == 0; ++UI) {
3575 assert(UI != VCMPoNode->use_end() && "Didn't find user!");
3576 SDNode *User = *UI;
3577 for (unsigned i = 0, e = User->getNumOperands(); i != e; ++i) {
3578 if (User->getOperand(i) == SDOperand(VCMPoNode, 1)) {
3579 FlagUser = User;
3580 break;
3581 }
3582 }
3583 }
3584
3585 // If the user is a MFCR instruction, we know this is safe. Otherwise we
3586 // give up for right now.
3587 if (FlagUser->getOpcode() == PPCISD::MFCR)
Chris Lattner4468c222006-03-31 06:02:07 +00003588 return SDOperand(VCMPoNode, 0);
3589 }
3590 break;
3591 }
Chris Lattner90564f22006-04-18 17:59:36 +00003592 case ISD::BR_CC: {
3593 // If this is a branch on an altivec predicate comparison, lower this so
3594 // that we don't have to do a MFCR: instead, branch directly on CR6. This
3595 // lowering is done pre-legalize, because the legalizer lowers the predicate
3596 // compare down to code that is difficult to reassemble.
3597 ISD::CondCode CC = cast<CondCodeSDNode>(N->getOperand(1))->get();
3598 SDOperand LHS = N->getOperand(2), RHS = N->getOperand(3);
3599 int CompareOpc;
3600 bool isDot;
3601
3602 if (LHS.getOpcode() == ISD::INTRINSIC_WO_CHAIN &&
3603 isa<ConstantSDNode>(RHS) && (CC == ISD::SETEQ || CC == ISD::SETNE) &&
3604 getAltivecCompareInfo(LHS, CompareOpc, isDot)) {
3605 assert(isDot && "Can't compare against a vector result!");
3606
3607 // If this is a comparison against something other than 0/1, then we know
3608 // that the condition is never/always true.
3609 unsigned Val = cast<ConstantSDNode>(RHS)->getValue();
3610 if (Val != 0 && Val != 1) {
3611 if (CC == ISD::SETEQ) // Cond never true, remove branch.
3612 return N->getOperand(0);
3613 // Always !=, turn it into an unconditional branch.
3614 return DAG.getNode(ISD::BR, MVT::Other,
3615 N->getOperand(0), N->getOperand(4));
3616 }
3617
3618 bool BranchOnWhenPredTrue = (CC == ISD::SETEQ) ^ (Val == 0);
3619
3620 // Create the PPCISD altivec 'dot' comparison node.
Chris Lattner90564f22006-04-18 17:59:36 +00003621 std::vector<MVT::ValueType> VTs;
Chris Lattner79e490a2006-08-11 17:18:05 +00003622 SDOperand Ops[] = {
3623 LHS.getOperand(2), // LHS of compare
3624 LHS.getOperand(3), // RHS of compare
3625 DAG.getConstant(CompareOpc, MVT::i32)
3626 };
Chris Lattner90564f22006-04-18 17:59:36 +00003627 VTs.push_back(LHS.getOperand(2).getValueType());
3628 VTs.push_back(MVT::Flag);
Chris Lattner79e490a2006-08-11 17:18:05 +00003629 SDOperand CompNode = DAG.getNode(PPCISD::VCMPo, VTs, Ops, 3);
Chris Lattner90564f22006-04-18 17:59:36 +00003630
3631 // Unpack the result based on how the target uses it.
Chris Lattnerdf4ed632006-11-17 22:10:59 +00003632 PPC::Predicate CompOpc;
Chris Lattner90564f22006-04-18 17:59:36 +00003633 switch (cast<ConstantSDNode>(LHS.getOperand(1))->getValue()) {
3634 default: // Can't happen, don't crash on invalid number though.
3635 case 0: // Branch on the value of the EQ bit of CR6.
Chris Lattnerdf4ed632006-11-17 22:10:59 +00003636 CompOpc = BranchOnWhenPredTrue ? PPC::PRED_EQ : PPC::PRED_NE;
Chris Lattner90564f22006-04-18 17:59:36 +00003637 break;
3638 case 1: // Branch on the inverted value of the EQ bit of CR6.
Chris Lattnerdf4ed632006-11-17 22:10:59 +00003639 CompOpc = BranchOnWhenPredTrue ? PPC::PRED_NE : PPC::PRED_EQ;
Chris Lattner90564f22006-04-18 17:59:36 +00003640 break;
3641 case 2: // Branch on the value of the LT bit of CR6.
Chris Lattnerdf4ed632006-11-17 22:10:59 +00003642 CompOpc = BranchOnWhenPredTrue ? PPC::PRED_LT : PPC::PRED_GE;
Chris Lattner90564f22006-04-18 17:59:36 +00003643 break;
3644 case 3: // Branch on the inverted value of the LT bit of CR6.
Chris Lattnerdf4ed632006-11-17 22:10:59 +00003645 CompOpc = BranchOnWhenPredTrue ? PPC::PRED_GE : PPC::PRED_LT;
Chris Lattner90564f22006-04-18 17:59:36 +00003646 break;
3647 }
3648
3649 return DAG.getNode(PPCISD::COND_BRANCH, MVT::Other, N->getOperand(0),
Chris Lattner90564f22006-04-18 17:59:36 +00003650 DAG.getConstant(CompOpc, MVT::i32),
Chris Lattner18258c62006-11-17 22:37:34 +00003651 DAG.getRegister(PPC::CR6, MVT::i32),
Chris Lattner90564f22006-04-18 17:59:36 +00003652 N->getOperand(4), CompNode.getValue(1));
3653 }
3654 break;
3655 }
Chris Lattner8c13d0a2006-03-01 04:57:39 +00003656 }
3657
3658 return SDOperand();
3659}
3660
Chris Lattner1a635d62006-04-14 06:01:58 +00003661//===----------------------------------------------------------------------===//
3662// Inline Assembly Support
3663//===----------------------------------------------------------------------===//
3664
Chris Lattnerbbe77de2006-04-02 06:26:07 +00003665void PPCTargetLowering::computeMaskedBitsForTargetNode(const SDOperand Op,
Dan Gohman977a76f2008-02-13 22:28:48 +00003666 const APInt &Mask,
Dan Gohmanfd29e0e2008-02-13 00:35:47 +00003667 APInt &KnownZero,
3668 APInt &KnownOne,
Dan Gohmanea859be2007-06-22 14:59:07 +00003669 const SelectionDAG &DAG,
Chris Lattnerbbe77de2006-04-02 06:26:07 +00003670 unsigned Depth) const {
Dan Gohmanfd29e0e2008-02-13 00:35:47 +00003671 KnownZero = KnownOne = APInt(Mask.getBitWidth(), 0);
Chris Lattnerbbe77de2006-04-02 06:26:07 +00003672 switch (Op.getOpcode()) {
3673 default: break;
Chris Lattnerd9989382006-07-10 20:56:58 +00003674 case PPCISD::LBRX: {
3675 // lhbrx is known to have the top bits cleared out.
3676 if (cast<VTSDNode>(Op.getOperand(3))->getVT() == MVT::i16)
3677 KnownZero = 0xFFFF0000;
3678 break;
3679 }
Chris Lattnerbbe77de2006-04-02 06:26:07 +00003680 case ISD::INTRINSIC_WO_CHAIN: {
3681 switch (cast<ConstantSDNode>(Op.getOperand(0))->getValue()) {
3682 default: break;
3683 case Intrinsic::ppc_altivec_vcmpbfp_p:
3684 case Intrinsic::ppc_altivec_vcmpeqfp_p:
3685 case Intrinsic::ppc_altivec_vcmpequb_p:
3686 case Intrinsic::ppc_altivec_vcmpequh_p:
3687 case Intrinsic::ppc_altivec_vcmpequw_p:
3688 case Intrinsic::ppc_altivec_vcmpgefp_p:
3689 case Intrinsic::ppc_altivec_vcmpgtfp_p:
3690 case Intrinsic::ppc_altivec_vcmpgtsb_p:
3691 case Intrinsic::ppc_altivec_vcmpgtsh_p:
3692 case Intrinsic::ppc_altivec_vcmpgtsw_p:
3693 case Intrinsic::ppc_altivec_vcmpgtub_p:
3694 case Intrinsic::ppc_altivec_vcmpgtuh_p:
3695 case Intrinsic::ppc_altivec_vcmpgtuw_p:
3696 KnownZero = ~1U; // All bits but the low one are known to be zero.
3697 break;
3698 }
3699 }
3700 }
3701}
3702
3703
Chris Lattner4234f572007-03-25 02:14:49 +00003704/// getConstraintType - Given a constraint, return the type of
Chris Lattnerad3bc8d2006-02-07 20:16:30 +00003705/// constraint it is for this target.
3706PPCTargetLowering::ConstraintType
Chris Lattner4234f572007-03-25 02:14:49 +00003707PPCTargetLowering::getConstraintType(const std::string &Constraint) const {
3708 if (Constraint.size() == 1) {
3709 switch (Constraint[0]) {
3710 default: break;
3711 case 'b':
3712 case 'r':
3713 case 'f':
3714 case 'v':
3715 case 'y':
3716 return C_RegisterClass;
3717 }
3718 }
3719 return TargetLowering::getConstraintType(Constraint);
Chris Lattnerad3bc8d2006-02-07 20:16:30 +00003720}
3721
Chris Lattner331d1bc2006-11-02 01:44:04 +00003722std::pair<unsigned, const TargetRegisterClass*>
3723PPCTargetLowering::getRegForInlineAsmConstraint(const std::string &Constraint,
3724 MVT::ValueType VT) const {
Chris Lattnerddc787d2006-01-31 19:20:21 +00003725 if (Constraint.size() == 1) {
Chris Lattner331d1bc2006-11-02 01:44:04 +00003726 // GCC RS6000 Constraint Letters
3727 switch (Constraint[0]) {
3728 case 'b': // R1-R31
3729 case 'r': // R0-R31
3730 if (VT == MVT::i64 && PPCSubTarget.isPPC64())
3731 return std::make_pair(0U, PPC::G8RCRegisterClass);
3732 return std::make_pair(0U, PPC::GPRCRegisterClass);
3733 case 'f':
3734 if (VT == MVT::f32)
3735 return std::make_pair(0U, PPC::F4RCRegisterClass);
3736 else if (VT == MVT::f64)
3737 return std::make_pair(0U, PPC::F8RCRegisterClass);
3738 break;
Chris Lattnerddc787d2006-01-31 19:20:21 +00003739 case 'v':
Chris Lattner331d1bc2006-11-02 01:44:04 +00003740 return std::make_pair(0U, PPC::VRRCRegisterClass);
3741 case 'y': // crrc
3742 return std::make_pair(0U, PPC::CRRCRegisterClass);
Chris Lattnerddc787d2006-01-31 19:20:21 +00003743 }
3744 }
3745
Chris Lattner331d1bc2006-11-02 01:44:04 +00003746 return TargetLowering::getRegForInlineAsmConstraint(Constraint, VT);
Chris Lattnerddc787d2006-01-31 19:20:21 +00003747}
Chris Lattner763317d2006-02-07 00:47:13 +00003748
Chris Lattner331d1bc2006-11-02 01:44:04 +00003749
Chris Lattner48884cd2007-08-25 00:47:38 +00003750/// LowerAsmOperandForConstraint - Lower the specified operand into the Ops
3751/// vector. If it is invalid, don't add anything to Ops.
3752void PPCTargetLowering::LowerAsmOperandForConstraint(SDOperand Op, char Letter,
3753 std::vector<SDOperand>&Ops,
3754 SelectionDAG &DAG) {
3755 SDOperand Result(0,0);
Chris Lattner763317d2006-02-07 00:47:13 +00003756 switch (Letter) {
3757 default: break;
3758 case 'I':
3759 case 'J':
3760 case 'K':
3761 case 'L':
3762 case 'M':
3763 case 'N':
3764 case 'O':
3765 case 'P': {
Chris Lattner9f5d5782007-05-15 01:31:05 +00003766 ConstantSDNode *CST = dyn_cast<ConstantSDNode>(Op);
Chris Lattner48884cd2007-08-25 00:47:38 +00003767 if (!CST) return; // Must be an immediate to match.
Chris Lattner9f5d5782007-05-15 01:31:05 +00003768 unsigned Value = CST->getValue();
Chris Lattner763317d2006-02-07 00:47:13 +00003769 switch (Letter) {
3770 default: assert(0 && "Unknown constraint letter!");
3771 case 'I': // "I" is a signed 16-bit constant.
Chris Lattner9f5d5782007-05-15 01:31:05 +00003772 if ((short)Value == (int)Value)
Chris Lattner48884cd2007-08-25 00:47:38 +00003773 Result = DAG.getTargetConstant(Value, Op.getValueType());
Chris Lattnerdba1aee2006-10-31 19:40:43 +00003774 break;
Chris Lattner763317d2006-02-07 00:47:13 +00003775 case 'J': // "J" is a constant with only the high-order 16 bits nonzero.
3776 case 'L': // "L" is a signed 16-bit constant shifted left 16 bits.
Chris Lattner9f5d5782007-05-15 01:31:05 +00003777 if ((short)Value == 0)
Chris Lattner48884cd2007-08-25 00:47:38 +00003778 Result = DAG.getTargetConstant(Value, Op.getValueType());
Chris Lattnerdba1aee2006-10-31 19:40:43 +00003779 break;
Chris Lattner763317d2006-02-07 00:47:13 +00003780 case 'K': // "K" is a constant with only the low-order 16 bits nonzero.
Chris Lattner9f5d5782007-05-15 01:31:05 +00003781 if ((Value >> 16) == 0)
Chris Lattner48884cd2007-08-25 00:47:38 +00003782 Result = DAG.getTargetConstant(Value, Op.getValueType());
Chris Lattnerdba1aee2006-10-31 19:40:43 +00003783 break;
Chris Lattner763317d2006-02-07 00:47:13 +00003784 case 'M': // "M" is a constant that is greater than 31.
Chris Lattner9f5d5782007-05-15 01:31:05 +00003785 if (Value > 31)
Chris Lattner48884cd2007-08-25 00:47:38 +00003786 Result = DAG.getTargetConstant(Value, Op.getValueType());
Chris Lattnerdba1aee2006-10-31 19:40:43 +00003787 break;
Chris Lattner763317d2006-02-07 00:47:13 +00003788 case 'N': // "N" is a positive constant that is an exact power of two.
Chris Lattner9f5d5782007-05-15 01:31:05 +00003789 if ((int)Value > 0 && isPowerOf2_32(Value))
Chris Lattner48884cd2007-08-25 00:47:38 +00003790 Result = DAG.getTargetConstant(Value, Op.getValueType());
Chris Lattnerdba1aee2006-10-31 19:40:43 +00003791 break;
Chris Lattner763317d2006-02-07 00:47:13 +00003792 case 'O': // "O" is the constant zero.
Chris Lattner9f5d5782007-05-15 01:31:05 +00003793 if (Value == 0)
Chris Lattner48884cd2007-08-25 00:47:38 +00003794 Result = DAG.getTargetConstant(Value, Op.getValueType());
Chris Lattnerdba1aee2006-10-31 19:40:43 +00003795 break;
Chris Lattner763317d2006-02-07 00:47:13 +00003796 case 'P': // "P" is a constant whose negation is a signed 16-bit constant.
Chris Lattner9f5d5782007-05-15 01:31:05 +00003797 if ((short)-Value == (int)-Value)
Chris Lattner48884cd2007-08-25 00:47:38 +00003798 Result = DAG.getTargetConstant(Value, Op.getValueType());
Chris Lattnerdba1aee2006-10-31 19:40:43 +00003799 break;
Chris Lattner763317d2006-02-07 00:47:13 +00003800 }
3801 break;
3802 }
3803 }
3804
Chris Lattner48884cd2007-08-25 00:47:38 +00003805 if (Result.Val) {
3806 Ops.push_back(Result);
3807 return;
3808 }
3809
Chris Lattner763317d2006-02-07 00:47:13 +00003810 // Handle standard constraint letters.
Chris Lattner48884cd2007-08-25 00:47:38 +00003811 TargetLowering::LowerAsmOperandForConstraint(Op, Letter, Ops, DAG);
Chris Lattner763317d2006-02-07 00:47:13 +00003812}
Evan Chengc4c62572006-03-13 23:20:37 +00003813
Chris Lattnerc9addb72007-03-30 23:15:24 +00003814// isLegalAddressingMode - Return true if the addressing mode represented
3815// by AM is legal for this target, for a load/store of the specified type.
3816bool PPCTargetLowering::isLegalAddressingMode(const AddrMode &AM,
3817 const Type *Ty) const {
3818 // FIXME: PPC does not allow r+i addressing modes for vectors!
3819
3820 // PPC allows a sign-extended 16-bit immediate field.
3821 if (AM.BaseOffs <= -(1LL << 16) || AM.BaseOffs >= (1LL << 16)-1)
3822 return false;
3823
3824 // No global is ever allowed as a base.
3825 if (AM.BaseGV)
3826 return false;
3827
3828 // PPC only support r+r,
3829 switch (AM.Scale) {
3830 case 0: // "r+i" or just "i", depending on HasBaseReg.
3831 break;
3832 case 1:
3833 if (AM.HasBaseReg && AM.BaseOffs) // "r+r+i" is not allowed.
3834 return false;
3835 // Otherwise we have r+r or r+i.
3836 break;
3837 case 2:
3838 if (AM.HasBaseReg || AM.BaseOffs) // 2*r+r or 2*r+i is not allowed.
3839 return false;
3840 // Allow 2*r as r+r.
3841 break;
Chris Lattner7c7ba9d2007-04-09 22:10:05 +00003842 default:
3843 // No other scales are supported.
3844 return false;
Chris Lattnerc9addb72007-03-30 23:15:24 +00003845 }
3846
3847 return true;
3848}
3849
Evan Chengc4c62572006-03-13 23:20:37 +00003850/// isLegalAddressImmediate - Return true if the integer value can be used
Evan Cheng86193912007-03-12 23:29:01 +00003851/// as the offset of the target addressing mode for load / store of the
3852/// given type.
3853bool PPCTargetLowering::isLegalAddressImmediate(int64_t V,const Type *Ty) const{
Evan Chengc4c62572006-03-13 23:20:37 +00003854 // PPC allows a sign-extended 16-bit immediate field.
3855 return (V > -(1 << 16) && V < (1 << 16)-1);
3856}
Reid Spencer3a9ec242006-08-28 01:02:49 +00003857
3858bool PPCTargetLowering::isLegalAddressImmediate(llvm::GlobalValue* GV) const {
Chris Lattnerc9addb72007-03-30 23:15:24 +00003859 return false;
Reid Spencer3a9ec242006-08-28 01:02:49 +00003860}
Nicolas Geoffray43c6e7c2007-03-01 13:11:38 +00003861
Chris Lattner3fc027d2007-12-08 06:59:59 +00003862SDOperand PPCTargetLowering::LowerRETURNADDR(SDOperand Op, SelectionDAG &DAG) {
3863 // Depths > 0 not supported yet!
3864 if (cast<ConstantSDNode>(Op.getOperand(0))->getValue() > 0)
3865 return SDOperand();
3866
3867 MachineFunction &MF = DAG.getMachineFunction();
3868 PPCFunctionInfo *FuncInfo = MF.getInfo<PPCFunctionInfo>();
3869 int RAIdx = FuncInfo->getReturnAddrSaveIndex();
3870 if (RAIdx == 0) {
3871 bool isPPC64 = PPCSubTarget.isPPC64();
3872 int Offset =
3873 PPCFrameInfo::getReturnSaveOffset(isPPC64, PPCSubTarget.isMachoABI());
3874
3875 // Set up a frame object for the return address.
3876 RAIdx = MF.getFrameInfo()->CreateFixedObject(isPPC64 ? 8 : 4, Offset);
3877
3878 // Remember it for next time.
3879 FuncInfo->setReturnAddrSaveIndex(RAIdx);
3880
3881 // Make sure the function really does not optimize away the store of the RA
3882 // to the stack.
3883 FuncInfo->setLRStoreRequired();
3884 }
3885
3886 // Just load the return address off the stack.
3887 SDOperand RetAddrFI = DAG.getFrameIndex(RAIdx, getPointerTy());
3888 return DAG.getLoad(getPointerTy(), DAG.getEntryNode(), RetAddrFI, NULL, 0);
3889}
3890
3891SDOperand PPCTargetLowering::LowerFRAMEADDR(SDOperand Op, SelectionDAG &DAG) {
Nicolas Geoffray43c6e7c2007-03-01 13:11:38 +00003892 // Depths > 0 not supported yet!
3893 if (cast<ConstantSDNode>(Op.getOperand(0))->getValue() > 0)
3894 return SDOperand();
3895
3896 MVT::ValueType PtrVT = DAG.getTargetLoweringInfo().getPointerTy();
3897 bool isPPC64 = PtrVT == MVT::i64;
3898
3899 MachineFunction &MF = DAG.getMachineFunction();
3900 MachineFrameInfo *MFI = MF.getFrameInfo();
3901 bool is31 = (NoFramePointerElim || MFI->hasVarSizedObjects())
3902 && MFI->getStackSize();
3903
3904 if (isPPC64)
3905 return DAG.getCopyFromReg(DAG.getEntryNode(), is31 ? PPC::X31 : PPC::X1,
Bill Wendlingb8a80f02007-08-30 00:59:19 +00003906 MVT::i64);
Nicolas Geoffray43c6e7c2007-03-01 13:11:38 +00003907 else
3908 return DAG.getCopyFromReg(DAG.getEntryNode(), is31 ? PPC::R31 : PPC::R1,
3909 MVT::i32);
3910}