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Jim Laskey8e8de8f2006-09-07 22:05:02 +00001//===-- X86TargetAsmInfo.cpp - X86 asm properties ---------------*- C++ -*-===//
2//
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.
Jim Laskey8e8de8f2006-09-07 22:05:02 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file contains the declarations of the X86TargetAsmInfo properties.
11//
12//===----------------------------------------------------------------------===//
13
14#include "X86TargetAsmInfo.h"
15#include "X86TargetMachine.h"
16#include "X86Subtarget.h"
Reid Spencer7aa8a452007-01-12 23:22:14 +000017#include "llvm/DerivedTypes.h"
Chris Lattner625bd052006-11-29 01:14:06 +000018#include "llvm/InlineAsm.h"
19#include "llvm/Instructions.h"
Chris Lattner3e9f1d02007-04-01 20:49:36 +000020#include "llvm/Intrinsics.h"
Chris Lattner625bd052006-11-29 01:14:06 +000021#include "llvm/Module.h"
22#include "llvm/ADT/StringExtras.h"
Anton Korobeynikovcee750f2008-02-27 23:33:50 +000023#include "llvm/Support/Dwarf.h"
24
Jim Laskey8e8de8f2006-09-07 22:05:02 +000025using namespace llvm;
Anton Korobeynikovcee750f2008-02-27 23:33:50 +000026using namespace llvm::dwarf;
Jim Laskey8e8de8f2006-09-07 22:05:02 +000027
Dan Gohmancfbb2f02008-03-25 21:45:14 +000028static const char *const x86_asm_table[] = {
29 "{si}", "S",
Andrew Lenharth6c0695f2006-11-28 19:52:49 +000030 "{di}", "D",
31 "{ax}", "a",
32 "{cx}", "c",
Andrew Lenharth6c0695f2006-11-28 19:52:49 +000033 "{memory}", "memory",
34 "{flags}", "",
35 "{dirflag}", "",
36 "{fpsr}", "",
37 "{cc}", "cc",
38 0,0};
39
Jim Laskey8e8de8f2006-09-07 22:05:02 +000040X86TargetAsmInfo::X86TargetAsmInfo(const X86TargetMachine &TM) {
41 const X86Subtarget *Subtarget = &TM.getSubtarget<X86Subtarget>();
Anton Korobeynikovcee750f2008-02-27 23:33:50 +000042 X86TM = &TM;
43
Andrew Lenharth6c0695f2006-11-28 19:52:49 +000044 AsmTransCBE = x86_asm_table;
Anton Korobeynikov82100452008-07-09 13:20:27 +000045
Bill Wendlingcb900992007-01-16 09:29:17 +000046 AssemblerDialect = Subtarget->getAsmFlavor();
Jim Laskey8e8de8f2006-09-07 22:05:02 +000047}
Chris Lattnerafbfded2006-10-05 02:43:52 +000048
Chris Lattner625bd052006-11-29 01:14:06 +000049bool X86TargetAsmInfo::LowerToBSwap(CallInst *CI) const {
50 // FIXME: this should verify that we are targetting a 486 or better. If not,
51 // we will turn this bswap into something that will be lowered to logical ops
52 // instead of emitting the bswap asm. For now, we don't support 486 or lower
53 // so don't worry about this.
Anton Korobeynikov82100452008-07-09 13:20:27 +000054
Chris Lattner625bd052006-11-29 01:14:06 +000055 // Verify this is a simple bswap.
56 if (CI->getNumOperands() != 2 ||
57 CI->getType() != CI->getOperand(1)->getType() ||
Chris Lattner42a75512007-01-15 02:27:26 +000058 !CI->getType()->isInteger())
Chris Lattner625bd052006-11-29 01:14:06 +000059 return false;
Anton Korobeynikov82100452008-07-09 13:20:27 +000060
Chris Lattner3e9f1d02007-04-01 20:49:36 +000061 const IntegerType *Ty = dyn_cast<IntegerType>(CI->getType());
62 if (!Ty || Ty->getBitWidth() % 16 != 0)
Reid Spencera54b7cb2007-01-12 07:05:14 +000063 return false;
Anton Korobeynikov82100452008-07-09 13:20:27 +000064
Chris Lattner625bd052006-11-29 01:14:06 +000065 // Okay, we can do this xform, do so now.
Chandler Carruth69940402007-08-04 01:51:18 +000066 const Type *Tys[] = { Ty };
Chris Lattner625bd052006-11-29 01:14:06 +000067 Module *M = CI->getParent()->getParent()->getParent();
Chandler Carruth69940402007-08-04 01:51:18 +000068 Constant *Int = Intrinsic::getDeclaration(M, Intrinsic::bswap, Tys, 1);
Anton Korobeynikov82100452008-07-09 13:20:27 +000069
Chris Lattner625bd052006-11-29 01:14:06 +000070 Value *Op = CI->getOperand(1);
Gabor Greif051a9502008-04-06 20:25:17 +000071 Op = CallInst::Create(Int, Op, CI->getName(), CI);
Anton Korobeynikov82100452008-07-09 13:20:27 +000072
Chris Lattner625bd052006-11-29 01:14:06 +000073 CI->replaceAllUsesWith(Op);
74 CI->eraseFromParent();
75 return true;
76}
77
78
79bool X86TargetAsmInfo::ExpandInlineAsm(CallInst *CI) const {
80 InlineAsm *IA = cast<InlineAsm>(CI->getCalledValue());
Chris Lattner5d521352006-11-29 01:48:01 +000081 std::vector<InlineAsm::ConstraintInfo> Constraints = IA->ParseConstraints();
Anton Korobeynikov82100452008-07-09 13:20:27 +000082
Chris Lattner625bd052006-11-29 01:14:06 +000083 std::string AsmStr = IA->getAsmString();
Anton Korobeynikov82100452008-07-09 13:20:27 +000084
Chris Lattner625bd052006-11-29 01:14:06 +000085 // TODO: should remove alternatives from the asmstring: "foo {a|b}" -> "foo a"
86 std::vector<std::string> AsmPieces;
87 SplitString(AsmStr, AsmPieces, "\n"); // ; as separator?
Anton Korobeynikov82100452008-07-09 13:20:27 +000088
Chris Lattner625bd052006-11-29 01:14:06 +000089 switch (AsmPieces.size()) {
Anton Korobeynikov82100452008-07-09 13:20:27 +000090 default: return false;
Chris Lattner625bd052006-11-29 01:14:06 +000091 case 1:
92 AsmStr = AsmPieces[0];
93 AsmPieces.clear();
94 SplitString(AsmStr, AsmPieces, " \t"); // Split with whitespace.
Anton Korobeynikov82100452008-07-09 13:20:27 +000095
Chris Lattner5d521352006-11-29 01:48:01 +000096 // bswap $0
Anton Korobeynikov82100452008-07-09 13:20:27 +000097 if (AsmPieces.size() == 2 &&
Chris Lattner625bd052006-11-29 01:14:06 +000098 AsmPieces[0] == "bswap" && AsmPieces[1] == "$0") {
99 // No need to check constraints, nothing other than the equivalent of
100 // "=r,0" would be valid here.
101 return LowerToBSwap(CI);
102 }
103 break;
Chris Lattner5d521352006-11-29 01:48:01 +0000104 case 3:
Reid Spencer47857812006-12-31 05:55:36 +0000105 if (CI->getType() == Type::Int64Ty && Constraints.size() >= 2 &&
Chris Lattner5d521352006-11-29 01:48:01 +0000106 Constraints[0].Codes.size() == 1 && Constraints[0].Codes[0] == "A" &&
107 Constraints[1].Codes.size() == 1 && Constraints[1].Codes[0] == "0") {
108 // bswap %eax / bswap %edx / xchgl %eax, %edx -> llvm.bswap.i64
109 std::vector<std::string> Words;
110 SplitString(AsmPieces[0], Words, " \t");
111 if (Words.size() == 2 && Words[0] == "bswap" && Words[1] == "%eax") {
112 Words.clear();
113 SplitString(AsmPieces[1], Words, " \t");
114 if (Words.size() == 2 && Words[0] == "bswap" && Words[1] == "%edx") {
115 Words.clear();
116 SplitString(AsmPieces[2], Words, " \t,");
117 if (Words.size() == 3 && Words[0] == "xchgl" && Words[1] == "%eax" &&
118 Words[2] == "%edx") {
119 return LowerToBSwap(CI);
120 }
121 }
122 }
123 }
124 break;
Chris Lattner625bd052006-11-29 01:14:06 +0000125 }
126 return false;
127}
Anton Korobeynikovcee750f2008-02-27 23:33:50 +0000128
Anton Korobeynikov4468b7a2008-07-09 13:20:48 +0000129X86DarwinTargetAsmInfo::X86DarwinTargetAsmInfo(const X86TargetMachine &TM):
130 X86TargetAsmInfo(TM) {
131 bool is64Bit = X86TM->getSubtarget<X86Subtarget>().is64Bit();
132
133 AlignmentIsInBytes = false;
134 TextAlignFillValue = 0x90;
135 GlobalPrefix = "_";
136 if (!is64Bit)
137 Data64bitsDirective = 0; // we can't emit a 64-bit unit
138 ZeroDirective = "\t.space\t"; // ".space N" emits N zeros.
139 PrivateGlobalPrefix = "L"; // Marker for constant pool idxs
140 BSSSection = 0; // no BSS section.
141 ZeroFillDirective = "\t.zerofill\t"; // Uses .zerofill
142 ConstantPoolSection = "\t.const\n";
143 JumpTableDataSection = "\t.const\n";
144 CStringSection = "\t.cstring";
145 FourByteConstantSection = "\t.literal4\n";
146 EightByteConstantSection = "\t.literal8\n";
147 // FIXME: Why don't always use this section?
148 if (is64Bit)
149 SixteenByteConstantSection = "\t.literal16\n";
150 ReadOnlySection = "\t.const\n";
151 LCOMMDirective = "\t.lcomm\t";
152 SwitchToSectionDirective = "\t.section ";
153 StringConstantPrefix = "\1LC";
154 COMMDirectiveTakesAlignment = false;
155 HasDotTypeDotSizeDirective = false;
156 if (TM.getRelocationModel() == Reloc::Static) {
157 StaticCtorsSection = ".constructor";
158 StaticDtorsSection = ".destructor";
159 } else {
160 StaticCtorsSection = ".mod_init_func";
161 StaticDtorsSection = ".mod_term_func";
162 }
163 if (is64Bit) {
164 PersonalityPrefix = "";
165 PersonalitySuffix = "+4@GOTPCREL";
166 } else {
167 PersonalityPrefix = "L";
168 PersonalitySuffix = "$non_lazy_ptr";
169 }
170 NeedsIndirectEncoding = true;
171 InlineAsmStart = "## InlineAsm Start";
172 InlineAsmEnd = "## InlineAsm End";
173 CommentString = "##";
174 SetDirective = "\t.set";
175 PCSymbol = ".";
176 UsedDirective = "\t.no_dead_strip\t";
177 WeakDefDirective = "\t.weak_definition ";
178 WeakRefDirective = "\t.weak_reference ";
179 HiddenDirective = "\t.private_extern ";
180 ProtectedDirective = "\t.globl\t";
181
182 // In non-PIC modes, emit a special label before jump tables so that the
183 // linker can perform more accurate dead code stripping.
184 if (TM.getRelocationModel() != Reloc::PIC_) {
185 // Emit a local label that is preserved until the linker runs.
186 JumpTableSpecialLabelPrefix = "l";
187 }
188
189 SupportsDebugInformation = true;
190 NeedsSet = true;
191 DwarfAbbrevSection = ".section __DWARF,__debug_abbrev,regular,debug";
192 DwarfInfoSection = ".section __DWARF,__debug_info,regular,debug";
193 DwarfLineSection = ".section __DWARF,__debug_line,regular,debug";
194 DwarfFrameSection = ".section __DWARF,__debug_frame,regular,debug";
195 DwarfPubNamesSection = ".section __DWARF,__debug_pubnames,regular,debug";
196 DwarfPubTypesSection = ".section __DWARF,__debug_pubtypes,regular,debug";
197 DwarfStrSection = ".section __DWARF,__debug_str,regular,debug";
198 DwarfLocSection = ".section __DWARF,__debug_loc,regular,debug";
199 DwarfARangesSection = ".section __DWARF,__debug_aranges,regular,debug";
200 DwarfRangesSection = ".section __DWARF,__debug_ranges,regular,debug";
201 DwarfMacInfoSection = ".section __DWARF,__debug_macinfo,regular,debug";
202
203 // Exceptions handling
204 SupportsExceptionHandling = true;
205 GlobalEHDirective = "\t.globl\t";
206 SupportsWeakOmittedEHFrame = false;
207 AbsoluteEHSectionOffsets = false;
208 DwarfEHFrameSection =
209 ".section __TEXT,__eh_frame,coalesced,no_toc+strip_static_syms+live_support";
210 DwarfExceptionSection = ".section __DATA,__gcc_except_tab";
211}
212
Anton Korobeynikovb9e58ef2008-07-09 13:21:08 +0000213unsigned
214X86DarwinTargetAsmInfo::PreferredEHDataFormat(DwarfEncoding::Target Reason,
215 bool Global) const {
216 if (Reason == DwarfEncoding::Functions && Global)
217 return (DW_EH_PE_pcrel | DW_EH_PE_indirect | DW_EH_PE_sdata4);
218 else if (Reason == DwarfEncoding::CodeLabels || !Global)
219 return DW_EH_PE_pcrel;
220 else
221 return DW_EH_PE_absptr;
222}
223
Anton Korobeynikovb9a02fc2008-07-09 13:21:29 +0000224std::string
Anton Korobeynikov4039e682008-07-09 13:23:57 +0000225X86DarwinTargetAsmInfo::SelectSectionForGlobal(const GlobalValue *GV) const {
226 SectionKind::Kind Kind = SectionKindForGlobal(GV);
227 bool isWeak = GV->hasWeakLinkage() ||
228 GV->hasCommonLinkage() ||
229 GV->hasLinkOnceLinkage();
230
231 switch (Kind) {
232 case SectionKind::Text:
233 if (isWeak)
234 return ".section __TEXT,__textcoal_nt,coalesced,pure_instructions";
235 else
236 return getTextSection();
237 case SectionKind::Data:
238 case SectionKind::ThreadData:
239 case SectionKind::BSS:
240 case SectionKind::ThreadBSS:
241 if (cast<GlobalVariable>(GV)->isConstant()) {
242 if (isWeak)
243 return ".section __DATA,__const_coal,coalesced";
244 else
245 return ".const_data";
246 } else {
247 if (isWeak)
248 return ".section __DATA,__datacoal_nt,coalesced";
249 else
250 return getDataSection();
251 }
252 case SectionKind::ROData:
253 if (isWeak)
254 return ".section __DATA,__const_coal,coalesced";
255 else
256 return getReadOnlySection();
257 case SectionKind::RODataMergeStr:
258 return MergeableStringSection(cast<GlobalVariable>(GV));
259 case SectionKind::RODataMergeConst:
260 return MergeableConstSection(cast<GlobalVariable>(GV));
261 default:
262 assert(0 && "Unsuported section kind for global");
263 }
264
265 // FIXME: Do we have any extra special weird cases?
266}
267
268std::string
269X86DarwinTargetAsmInfo::MergeableStringSection(const GlobalVariable *GV) const {
270 unsigned Flags = SectionFlagsForGlobal(GV, GV->getSection().c_str());
271 unsigned Size = SectionFlags::getEntitySize(Flags);
272
273 if (Size) {
274 const TargetData *TD = X86TM->getTargetData();
275 unsigned Align = TD->getPreferredAlignment(GV);
276 if (Align <= 32)
277 return getCStringSection();
278 }
279
280 return getReadOnlySection();
281}
282
283std::string
284X86DarwinTargetAsmInfo::MergeableConstSection(const GlobalVariable *GV) const {
285 unsigned Flags = SectionFlagsForGlobal(GV, GV->getSection().c_str());
286 unsigned Size = SectionFlags::getEntitySize(Flags);
287
288 if (Size == 4)
289 return FourByteConstantSection;
290 else if (Size == 8)
291 return EightByteConstantSection;
292 else if (Size == 16 && X86TM->getSubtarget<X86Subtarget>().is64Bit())
293 return SixteenByteConstantSection;
294
295 return getReadOnlySection();
296}
297
298std::string
Anton Korobeynikovb9a02fc2008-07-09 13:21:29 +0000299X86DarwinTargetAsmInfo::UniqueSectionForGlobal(const GlobalValue* GV,
300 SectionKind::Kind kind) const {
Anton Korobeynikov4039e682008-07-09 13:23:57 +0000301 assert(0 && "Darwin does not use unique sections");
302 return "";
303}
304
305unsigned
306X86DarwinTargetAsmInfo::SectionFlagsForGlobal(const GlobalValue *GV,
307 const char* name) const {
308 unsigned Flags =
309 TargetAsmInfo::SectionFlagsForGlobal(GV,
310 GV->getSection().c_str());
311
312 // If there was decision to put stuff into mergeable section - calculate
313 // entity size
314 if (Flags & SectionFlags::Mergeable) {
315 const TargetData *TD = X86TM->getTargetData();
316 Constant *C = cast<GlobalVariable>(GV)->getInitializer();
317 const Type *Type;
318
319 if (Flags & SectionFlags::Strings) {
320 const ConstantArray *CVA = cast<ConstantArray>(C);
321 Type = CVA->getType()->getElementType();
322 } else
323 Type = C->getType();
324
325 unsigned Size = TD->getABITypeSize(Type);
326 if (Size > 16)
327 Size = 0;
328 Flags = SectionFlags::setEntitySize(Flags, Size);
329 }
330
331 return Flags;
Anton Korobeynikovb9a02fc2008-07-09 13:21:29 +0000332}
333
Anton Korobeynikov4468b7a2008-07-09 13:20:48 +0000334X86ELFTargetAsmInfo::X86ELFTargetAsmInfo(const X86TargetMachine &TM):
335 X86TargetAsmInfo(TM) {
336 bool is64Bit = X86TM->getSubtarget<X86Subtarget>().is64Bit();
337
Anton Korobeynikovb20015b2008-07-09 13:25:26 +0000338 ReadOnlySection = ".rodata";
Anton Korobeynikov2a889172008-07-09 13:25:46 +0000339 FourByteConstantSection = "\t.section\t.rodata.cst4,\"aM\",@progbits,4";
340 EightByteConstantSection = "\t.section\t.rodata.cst8,\"aM\",@progbits,8";
341 SixteenByteConstantSection = "\t.section\t.rodata.cst16,\"aM\",@progbits,16";
Anton Korobeynikovb20015b2008-07-09 13:25:26 +0000342 CStringSection = ".rodata.str";
Anton Korobeynikov4468b7a2008-07-09 13:20:48 +0000343 PrivateGlobalPrefix = ".L";
344 WeakRefDirective = "\t.weak\t";
345 SetDirective = "\t.set\t";
346 PCSymbol = ".";
347
348 // Set up DWARF directives
349 HasLEB128 = true; // Target asm supports leb128 directives (little-endian)
350
351 // Debug Information
352 AbsoluteDebugSectionOffsets = true;
353 SupportsDebugInformation = true;
354 DwarfAbbrevSection = "\t.section\t.debug_abbrev,\"\",@progbits";
355 DwarfInfoSection = "\t.section\t.debug_info,\"\",@progbits";
356 DwarfLineSection = "\t.section\t.debug_line,\"\",@progbits";
357 DwarfFrameSection = "\t.section\t.debug_frame,\"\",@progbits";
358 DwarfPubNamesSection ="\t.section\t.debug_pubnames,\"\",@progbits";
359 DwarfPubTypesSection ="\t.section\t.debug_pubtypes,\"\",@progbits";
360 DwarfStrSection = "\t.section\t.debug_str,\"\",@progbits";
361 DwarfLocSection = "\t.section\t.debug_loc,\"\",@progbits";
362 DwarfARangesSection = "\t.section\t.debug_aranges,\"\",@progbits";
363 DwarfRangesSection = "\t.section\t.debug_ranges,\"\",@progbits";
364 DwarfMacInfoSection = "\t.section\t.debug_macinfo,\"\",@progbits";
365
366 // Exceptions handling
367 if (!is64Bit)
368 SupportsExceptionHandling = true;
369 AbsoluteEHSectionOffsets = false;
370 DwarfEHFrameSection = "\t.section\t.eh_frame,\"aw\",@progbits";
371 DwarfExceptionSection = "\t.section\t.gcc_except_table,\"a\",@progbits";
372
373 // On Linux we must declare when we can use a non-executable stack.
374 if (X86TM->getSubtarget<X86Subtarget>().isLinux())
375 NonexecutableStackDirective = "\t.section\t.note.GNU-stack,\"\",@progbits";
376}
377
Anton Korobeynikovb9e58ef2008-07-09 13:21:08 +0000378unsigned
379X86ELFTargetAsmInfo::PreferredEHDataFormat(DwarfEncoding::Target Reason,
380 bool Global) const {
381 CodeModel::Model CM = X86TM->getCodeModel();
382 bool is64Bit = X86TM->getSubtarget<X86Subtarget>().is64Bit();
383
384 if (X86TM->getRelocationModel() == Reloc::PIC_) {
385 unsigned Format = 0;
386
387 if (!is64Bit)
388 // 32 bit targets always encode pointers as 4 bytes
389 Format = DW_EH_PE_sdata4;
390 else {
391 // 64 bit targets encode pointers in 4 bytes iff:
392 // - code model is small OR
393 // - code model is medium and we're emitting externally visible symbols
394 // or any code symbols
395 if (CM == CodeModel::Small ||
396 (CM == CodeModel::Medium && (Global ||
397 Reason != DwarfEncoding::Data)))
398 Format = DW_EH_PE_sdata4;
399 else
400 Format = DW_EH_PE_sdata8;
401 }
402
403 if (Global)
404 Format |= DW_EH_PE_indirect;
405
406 return (Format | DW_EH_PE_pcrel);
407 } else {
408 if (is64Bit &&
409 (CM == CodeModel::Small ||
410 (CM == CodeModel::Medium && Reason != DwarfEncoding::Data)))
411 return DW_EH_PE_udata4;
412 else
413 return DW_EH_PE_absptr;
414 }
415}
416
Anton Korobeynikov4260ad32008-07-09 13:23:08 +0000417std::string
418X86ELFTargetAsmInfo::SelectSectionForGlobal(const GlobalValue *GV) const {
419 SectionKind::Kind kind = SectionKindForGlobal(GV);
420
421 if (const Function *F = dyn_cast<Function>(GV)) {
422 switch (F->getLinkage()) {
423 default: assert(0 && "Unknown linkage type!");
424 case Function::InternalLinkage:
425 case Function::DLLExportLinkage:
426 case Function::ExternalLinkage:
427 return getTextSection();
428 case Function::WeakLinkage:
429 case Function::LinkOnceLinkage:
430 return UniqueSectionForGlobal(F, kind);
431 }
432 } else if (const GlobalVariable *GVar = dyn_cast<GlobalVariable>(GV)) {
433 if (GVar->hasCommonLinkage() ||
434 GVar->hasLinkOnceLinkage() ||
435 GVar->hasWeakLinkage())
436 return UniqueSectionForGlobal(GVar, kind);
437 else {
438 switch (kind) {
439 case SectionKind::Data:
440 return getDataSection();
441 case SectionKind::BSS:
442 // ELF targets usually have BSS sections
443 return getBSSSection();
444 case SectionKind::ROData:
Anton Korobeynikov4260ad32008-07-09 13:23:08 +0000445 return getReadOnlySection();
Anton Korobeynikov01b0e242008-07-09 13:23:37 +0000446 case SectionKind::RODataMergeStr:
447 return MergeableStringSection(GVar);
448 case SectionKind::RODataMergeConst:
449 return MergeableConstSection(GVar);
Anton Korobeynikov4260ad32008-07-09 13:23:08 +0000450 case SectionKind::ThreadData:
451 // ELF targets usually support TLS stuff
452 return getTLSDataSection();
453 case SectionKind::ThreadBSS:
454 return getTLSBSSSection();
455 default:
456 assert(0 && "Unsuported section kind for global");
457 }
458 }
459 } else
460 assert(0 && "Unsupported global");
461}
462
Anton Korobeynikov01b0e242008-07-09 13:23:37 +0000463std::string
464X86ELFTargetAsmInfo::MergeableConstSection(const GlobalVariable *GV) const {
465 unsigned Flags = SectionFlagsForGlobal(GV, GV->getSection().c_str());
466 unsigned Size = SectionFlags::getEntitySize(Flags);
467
468 // FIXME: string here is temporary, until stuff will fully land in.
Anton Korobeynikov2a889172008-07-09 13:25:46 +0000469 // We cannot use {Four,Eight,Sixteen}ByteConstantSection here, since it's
470 // currently directly used by asmprinter.
471 if (Size == 4 || Size == 8 || Size == 16)
472 return ".rodata.cst" + utostr(Size);
Anton Korobeynikov4039e682008-07-09 13:23:57 +0000473
474 return getReadOnlySection();
Anton Korobeynikov01b0e242008-07-09 13:23:37 +0000475}
476
477std::string
478X86ELFTargetAsmInfo::MergeableStringSection(const GlobalVariable *GV) const {
479 unsigned Flags = SectionFlagsForGlobal(GV, GV->getSection().c_str());
480 unsigned Size = SectionFlags::getEntitySize(Flags);
481
482 if (Size) {
483 // We also need alignment here
484 const TargetData *TD = X86TM->getTargetData();
485 unsigned Align = TD->getPreferredAlignment(GV);
486 if (Align < Size)
487 Align = Size;
488
Anton Korobeynikov4039e682008-07-09 13:23:57 +0000489 return getCStringSection() + utostr(Size) + ',' + utostr(Align);
490 }
491
492 return getReadOnlySection();
Anton Korobeynikov01b0e242008-07-09 13:23:37 +0000493}
494
495unsigned
496X86ELFTargetAsmInfo::SectionFlagsForGlobal(const GlobalValue *GV,
497 const char* name) const {
498 unsigned Flags =
499 TargetAsmInfo::SectionFlagsForGlobal(GV,
500 GV->getSection().c_str());
501
502 // If there was decision to put stuff into mergeable section - calculate
503 // entity size
504 if (Flags & SectionFlags::Mergeable) {
505 const TargetData *TD = X86TM->getTargetData();
506 Constant *C = cast<GlobalVariable>(GV)->getInitializer();
507 const Type *Type;
508
509 if (Flags & SectionFlags::Strings) {
510 const ConstantArray *CVA = cast<ConstantArray>(C);
511 Type = CVA->getType()->getElementType();
512 } else
513 Type = C->getType();
514
515 unsigned Size = TD->getABITypeSize(Type);
Anton Korobeynikov4039e682008-07-09 13:23:57 +0000516 if (Size > 16)
Anton Korobeynikov01b0e242008-07-09 13:23:37 +0000517 Size = 0;
518 Flags = SectionFlags::setEntitySize(Flags, Size);
519 }
520
Anton Korobeynikovb20015b2008-07-09 13:25:26 +0000521 // FIXME: This is hacky and will be removed when switching from std::string
522 // sections into 'general' ones
523
524 // Mark section as named, when needed (so, we we will need .section directive
525 // to switch into it).
Anton Korobeynikov2a889172008-07-09 13:25:46 +0000526 if (Flags & (SectionFlags::Mergeable |
527 SectionFlags::TLS |
Anton Korobeynikovb20015b2008-07-09 13:25:26 +0000528 SectionFlags::Linkonce))
529 Flags |= SectionFlags::Named;
530
Anton Korobeynikov01b0e242008-07-09 13:23:37 +0000531 return Flags;
532}
533
534
Anton Korobeynikovf447e3d2008-07-09 13:21:49 +0000535std::string X86ELFTargetAsmInfo::PrintSectionFlags(unsigned flags) const {
536 std::string Flags = ",\"";
537
538 if (!(flags & SectionFlags::Debug))
539 Flags += 'a';
540 if (flags & SectionFlags::Code)
541 Flags += 'x';
542 if (flags & SectionFlags::Writeable)
543 Flags += 'w';
544 if (flags & SectionFlags::Mergeable)
545 Flags += 'M';
546 if (flags & SectionFlags::Strings)
547 Flags += 'S';
548 if (flags & SectionFlags::TLS)
549 Flags += 'T';
550
551 Flags += "\"";
552
553 // FIXME: There can be exceptions here
554 if (flags & SectionFlags::BSS)
555 Flags += ",@nobits";
556 else
557 Flags += ",@progbits";
558
Anton Korobeynikov6d829422008-07-09 13:22:17 +0000559 if (unsigned entitySize = SectionFlags::getEntitySize(flags))
560 Flags += "," + utostr(entitySize);
Anton Korobeynikovf447e3d2008-07-09 13:21:49 +0000561
562 return Flags;
563}
564
Anton Korobeynikov4468b7a2008-07-09 13:20:48 +0000565X86COFFTargetAsmInfo::X86COFFTargetAsmInfo(const X86TargetMachine &TM):
566 X86TargetAsmInfo(TM) {
567 GlobalPrefix = "_";
568 LCOMMDirective = "\t.lcomm\t";
569 COMMDirectiveTakesAlignment = false;
570 HasDotTypeDotSizeDirective = false;
571 StaticCtorsSection = "\t.section .ctors,\"aw\"";
572 StaticDtorsSection = "\t.section .dtors,\"aw\"";
573 HiddenDirective = NULL;
574 PrivateGlobalPrefix = "L"; // Prefix for private global symbols
575 WeakRefDirective = "\t.weak\t";
576 SetDirective = "\t.set\t";
577
578 // Set up DWARF directives
579 HasLEB128 = true; // Target asm supports leb128 directives (little-endian)
580 AbsoluteDebugSectionOffsets = true;
581 AbsoluteEHSectionOffsets = false;
582 SupportsDebugInformation = true;
583 DwarfSectionOffsetDirective = "\t.secrel32\t";
584 DwarfAbbrevSection = "\t.section\t.debug_abbrev,\"dr\"";
585 DwarfInfoSection = "\t.section\t.debug_info,\"dr\"";
586 DwarfLineSection = "\t.section\t.debug_line,\"dr\"";
587 DwarfFrameSection = "\t.section\t.debug_frame,\"dr\"";
588 DwarfPubNamesSection ="\t.section\t.debug_pubnames,\"dr\"";
589 DwarfPubTypesSection ="\t.section\t.debug_pubtypes,\"dr\"";
590 DwarfStrSection = "\t.section\t.debug_str,\"dr\"";
591 DwarfLocSection = "\t.section\t.debug_loc,\"dr\"";
592 DwarfARangesSection = "\t.section\t.debug_aranges,\"dr\"";
593 DwarfRangesSection = "\t.section\t.debug_ranges,\"dr\"";
594 DwarfMacInfoSection = "\t.section\t.debug_macinfo,\"dr\"";
595}
596
Anton Korobeynikovb9e58ef2008-07-09 13:21:08 +0000597unsigned
598X86COFFTargetAsmInfo::PreferredEHDataFormat(DwarfEncoding::Target Reason,
599 bool Global) const {
600 CodeModel::Model CM = X86TM->getCodeModel();
601 bool is64Bit = X86TM->getSubtarget<X86Subtarget>().is64Bit();
Anton Korobeynikovcee750f2008-02-27 23:33:50 +0000602
Anton Korobeynikovb9e58ef2008-07-09 13:21:08 +0000603 if (X86TM->getRelocationModel() == Reloc::PIC_) {
604 unsigned Format = 0;
Anton Korobeynikovcee750f2008-02-27 23:33:50 +0000605
Anton Korobeynikovb9e58ef2008-07-09 13:21:08 +0000606 if (!is64Bit)
607 // 32 bit targets always encode pointers as 4 bytes
608 Format = DW_EH_PE_sdata4;
609 else {
610 // 64 bit targets encode pointers in 4 bytes iff:
611 // - code model is small OR
612 // - code model is medium and we're emitting externally visible symbols
613 // or any code symbols
614 if (CM == CodeModel::Small ||
615 (CM == CodeModel::Medium && (Global ||
616 Reason != DwarfEncoding::Data)))
Anton Korobeynikovcee750f2008-02-27 23:33:50 +0000617 Format = DW_EH_PE_sdata4;
Anton Korobeynikovcee750f2008-02-27 23:33:50 +0000618 else
Anton Korobeynikovb9e58ef2008-07-09 13:21:08 +0000619 Format = DW_EH_PE_sdata8;
Anton Korobeynikovcee750f2008-02-27 23:33:50 +0000620 }
Anton Korobeynikovcee750f2008-02-27 23:33:50 +0000621
Anton Korobeynikovb9e58ef2008-07-09 13:21:08 +0000622 if (Global)
623 Format |= DW_EH_PE_indirect;
624
625 return (Format | DW_EH_PE_pcrel);
626 } else {
627 if (is64Bit &&
628 (CM == CodeModel::Small ||
629 (CM == CodeModel::Medium && Reason != DwarfEncoding::Data)))
630 return DW_EH_PE_udata4;
631 else
632 return DW_EH_PE_absptr;
Anton Korobeynikovcee750f2008-02-27 23:33:50 +0000633 }
634}
635
Anton Korobeynikovb9a02fc2008-07-09 13:21:29 +0000636std::string
637X86COFFTargetAsmInfo::UniqueSectionForGlobal(const GlobalValue* GV,
638 SectionKind::Kind kind) const {
639 switch (kind) {
640 case SectionKind::Text:
641 return ".text$linkonce" + GV->getName();
642 case SectionKind::Data:
643 case SectionKind::BSS:
644 case SectionKind::ThreadData:
645 case SectionKind::ThreadBSS:
646 return ".data$linkonce" + GV->getName();
647 case SectionKind::ROData:
648 case SectionKind::RODataMergeConst:
649 case SectionKind::RODataMergeStr:
650 return ".rdata$linkonce" + GV->getName();
Anton Korobeynikov29b03f72008-07-09 13:19:38 +0000651 default:
Anton Korobeynikovb9a02fc2008-07-09 13:21:29 +0000652 assert(0 && "Unknown section kind");
Anton Korobeynikov29b03f72008-07-09 13:19:38 +0000653 }
654}
655
Anton Korobeynikovb20015b2008-07-09 13:25:26 +0000656unsigned
657X86COFFTargetAsmInfo::SectionFlagsForGlobal(const GlobalValue *GV,
658 const char* name) const {
659 unsigned Flags =
660 TargetAsmInfo::SectionFlagsForGlobal(GV,
661 GV->getSection().c_str());
662
663 // Mark section as named, when needed (so, we we will need .section directive
664 // to switch into it).
665 if (Flags & (SectionFlags::Mergeable ||
666 SectionFlags::TLS ||
667 SectionFlags::Linkonce))
668 Flags |= SectionFlags::Named;
669
670 return Flags;
671}
672
Anton Korobeynikovf447e3d2008-07-09 13:21:49 +0000673std::string X86COFFTargetAsmInfo::PrintSectionFlags(unsigned flags) const {
674 std::string Flags = ",\"";
675
676 if (flags & SectionFlags::Code)
677 Flags += 'x';
678 if (flags & SectionFlags::Writeable)
679 Flags += 'w';
680
681 Flags += "\"";
682
683 return Flags;
684}
685
686X86WinTargetAsmInfo::X86WinTargetAsmInfo(const X86TargetMachine &TM):
687 X86TargetAsmInfo(TM) {
688 GlobalPrefix = "_";
689 CommentString = ";";
690
691 PrivateGlobalPrefix = "$";
692 AlignDirective = "\talign\t";
693 ZeroDirective = "\tdb\t";
694 ZeroDirectiveSuffix = " dup(0)";
695 AsciiDirective = "\tdb\t";
696 AscizDirective = 0;
697 Data8bitsDirective = "\tdb\t";
698 Data16bitsDirective = "\tdw\t";
699 Data32bitsDirective = "\tdd\t";
700 Data64bitsDirective = "\tdq\t";
701 HasDotTypeDotSizeDirective = false;
702
703 TextSection = "_text";
704 DataSection = "_data";
705 JumpTableDataSection = NULL;
706 SwitchToSectionDirective = "";
707 TextSectionStartSuffix = "\tsegment 'CODE'";
708 DataSectionStartSuffix = "\tsegment 'DATA'";
709 SectionEndDirectiveSuffix = "\tends\n";
710}