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[oota-llvm.git] / lib / Target / X86 / X86TargetAsmInfo.cpp
1 //===-- X86TargetAsmInfo.cpp - X86 asm properties ---------------*- C++ -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file was developed by James M. Laskey and is distributed under the
6 // University of Illinois Open Source License. See LICENSE.TXT for details.
7 //
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"
17 #include "llvm/DerivedTypes.h"
18 #include "llvm/InlineAsm.h"
19 #include "llvm/Instructions.h"
20 #include "llvm/Intrinsics.h"
21 #include "llvm/Module.h"
22 #include "llvm/ADT/StringExtras.h"
23 using namespace llvm;
24
25 static const char* x86_asm_table[] = {"{si}", "S",
26                                       "{di}", "D",
27                                       "{ax}", "a",
28                                       "{cx}", "c",
29                                       "{memory}", "memory",
30                                       "{flags}", "",
31                                       "{dirflag}", "",
32                                       "{fpsr}", "",
33                                       "{cc}", "cc",
34                                       0,0};
35
36 X86TargetAsmInfo::X86TargetAsmInfo(const X86TargetMachine &TM) {
37   const X86Subtarget *Subtarget = &TM.getSubtarget<X86Subtarget>();
38   
39   // FIXME - Should be simplified.
40
41   AsmTransCBE = x86_asm_table;
42   
43   switch (Subtarget->TargetType) {
44   case X86Subtarget::isDarwin:
45     AlignmentIsInBytes = false;
46     GlobalPrefix = "_";
47     if (!Subtarget->is64Bit())
48       Data64bitsDirective = 0;       // we can't emit a 64-bit unit
49     ZeroDirective = "\t.space\t";  // ".space N" emits N zeros.
50     PrivateGlobalPrefix = "L";     // Marker for constant pool idxs
51     BSSSection = 0;                       // no BSS section.
52     ZeroFillDirective = "\t.zerofill\t";  // Uses .zerofill
53     ConstantPoolSection = "\t.const\n";
54     JumpTableDataSection = "\t.const\n";
55     CStringSection = "\t.cstring";
56     FourByteConstantSection = "\t.literal4\n";
57     EightByteConstantSection = "\t.literal8\n";
58     if (Subtarget->is64Bit())
59       SixteenByteConstantSection = "\t.literal16\n";
60     ReadOnlySection = "\t.const\n";
61     LCOMMDirective = "\t.lcomm\t";
62     COMMDirectiveTakesAlignment = false;
63     HasDotTypeDotSizeDirective = false;
64     if (TM.getRelocationModel() == Reloc::Static) {
65       StaticCtorsSection = ".constructor";
66       StaticDtorsSection = ".destructor";
67     } else {
68       StaticCtorsSection = ".mod_init_func";
69       StaticDtorsSection = ".mod_term_func";
70     }
71     PersonalityPrefix = "L";
72     PersonalitySuffix = "$non_lazy_ptr";
73     NeedsIndirectEncoding = true;
74     InlineAsmStart = "# InlineAsm Start";
75     InlineAsmEnd = "# InlineAsm End";
76     SetDirective = "\t.set";
77     PCSymbol = ".";
78     UsedDirective = "\t.no_dead_strip\t";
79     WeakRefDirective = "\t.weak_reference\t";
80     HiddenDirective = "\t.private_extern\t";
81     
82     // In non-PIC modes, emit a special label before jump tables so that the
83     // linker can perform more accurate dead code stripping.
84     if (TM.getRelocationModel() != Reloc::PIC_) {
85       // Emit a local label that is preserved until the linker runs.
86       JumpTableSpecialLabelPrefix = "l";
87     }
88
89     SupportsDebugInformation = true;
90     NeedsSet = true;
91     DwarfAbbrevSection = ".section __DWARF,__debug_abbrev,regular,debug";
92     DwarfInfoSection = ".section __DWARF,__debug_info,regular,debug";
93     DwarfLineSection = ".section __DWARF,__debug_line,regular,debug";
94     DwarfFrameSection = ".section __DWARF,__debug_frame,regular,debug";
95     DwarfPubNamesSection = ".section __DWARF,__debug_pubnames,regular,debug";
96     DwarfPubTypesSection = ".section __DWARF,__debug_pubtypes,regular,debug";
97     DwarfStrSection = ".section __DWARF,__debug_str,regular,debug";
98     DwarfLocSection = ".section __DWARF,__debug_loc,regular,debug";
99     DwarfARangesSection = ".section __DWARF,__debug_aranges,regular,debug";
100     DwarfRangesSection = ".section __DWARF,__debug_ranges,regular,debug";
101     DwarfMacInfoSection = ".section __DWARF,__debug_macinfo,regular,debug";
102
103     // Exceptions handling
104     if (!Subtarget->is64Bit())
105       SupportsExceptionHandling = true;
106     AbsoluteEHSectionOffsets = false;
107     DwarfEHFrameSection =
108     ".section __TEXT,__eh_frame,coalesced,no_toc+strip_static_syms+live_support";
109     DwarfExceptionSection = ".section __DATA,__gcc_except_tab";
110     break;
111
112   case X86Subtarget::isELF:
113     ReadOnlySection = "\t.section\t.rodata";
114     FourByteConstantSection = "\t.section\t.rodata.cst4,\"aM\",@progbits,4";
115     EightByteConstantSection = "\t.section\t.rodata.cst8,\"aM\",@progbits,8";
116     SixteenByteConstantSection = "\t.section\t.rodata.cst16,\"aM\",@progbits,16";
117     CStringSection = "\t.section\t.rodata.str1.1,\"aMS\",@progbits,1";
118     PrivateGlobalPrefix = ".L";
119     WeakRefDirective = "\t.weak\t";
120     SetDirective = "\t.set\t";
121     PCSymbol = ".";
122
123     // Set up DWARF directives
124     HasLEB128 = true;  // Target asm supports leb128 directives (little-endian)
125
126     // Debug Information
127     AbsoluteDebugSectionOffsets = true;
128     SupportsDebugInformation = true;
129     DwarfAbbrevSection =  "\t.section\t.debug_abbrev,\"\",@progbits";
130     DwarfInfoSection =    "\t.section\t.debug_info,\"\",@progbits";
131     DwarfLineSection =    "\t.section\t.debug_line,\"\",@progbits";
132     DwarfFrameSection =   "\t.section\t.debug_frame,\"\",@progbits";
133     DwarfPubNamesSection ="\t.section\t.debug_pubnames,\"\",@progbits";
134     DwarfPubTypesSection ="\t.section\t.debug_pubtypes,\"\",@progbits";
135     DwarfStrSection =     "\t.section\t.debug_str,\"\",@progbits";
136     DwarfLocSection =     "\t.section\t.debug_loc,\"\",@progbits";
137     DwarfARangesSection = "\t.section\t.debug_aranges,\"\",@progbits";
138     DwarfRangesSection =  "\t.section\t.debug_ranges,\"\",@progbits";
139     DwarfMacInfoSection = "\t.section\t.debug_macinfo,\"\",@progbits";
140
141     // Exceptions handling
142     if (!Subtarget->is64Bit())
143       SupportsExceptionHandling = true;
144     AbsoluteEHSectionOffsets = false;
145     DwarfEHFrameSection = "\t.section\t.eh_frame,\"aw\",@progbits";
146     DwarfExceptionSection = "\t.section\t.gcc_except_table,\"a\",@progbits";
147     break;
148
149   case X86Subtarget::isCygwin:
150   case X86Subtarget::isMingw:
151     GlobalPrefix = "_";
152     LCOMMDirective = "\t.lcomm\t";
153     COMMDirectiveTakesAlignment = false;
154     HasDotTypeDotSizeDirective = false;
155     StaticCtorsSection = "\t.section .ctors,\"aw\"";
156     StaticDtorsSection = "\t.section .dtors,\"aw\"";
157     HiddenDirective = NULL;
158     PrivateGlobalPrefix = "L";  // Prefix for private global symbols
159     WeakRefDirective = "\t.weak\t";
160     SetDirective = "\t.set\t";
161
162     // Set up DWARF directives
163     HasLEB128 = true;  // Target asm supports leb128 directives (little-endian)
164     AbsoluteDebugSectionOffsets = true;
165     AbsoluteEHSectionOffsets = false;
166     SupportsDebugInformation = true;
167     DwarfSectionOffsetDirective = "\t.secrel32\t";
168     DwarfAbbrevSection =  "\t.section\t.debug_abbrev,\"dr\"";
169     DwarfInfoSection =    "\t.section\t.debug_info,\"dr\"";
170     DwarfLineSection =    "\t.section\t.debug_line,\"dr\"";
171     DwarfFrameSection =   "\t.section\t.debug_frame,\"dr\"";
172     DwarfPubNamesSection ="\t.section\t.debug_pubnames,\"dr\"";
173     DwarfPubTypesSection ="\t.section\t.debug_pubtypes,\"dr\"";
174     DwarfStrSection =     "\t.section\t.debug_str,\"dr\"";
175     DwarfLocSection =     "\t.section\t.debug_loc,\"dr\"";
176     DwarfARangesSection = "\t.section\t.debug_aranges,\"dr\"";
177     DwarfRangesSection =  "\t.section\t.debug_ranges,\"dr\"";
178     DwarfMacInfoSection = "\t.section\t.debug_macinfo,\"dr\"";
179     break;
180
181   case X86Subtarget::isWindows:
182     GlobalPrefix = "_";
183     HasDotTypeDotSizeDirective = false;
184     break;
185
186   default: break;
187   }
188   
189   if (Subtarget->isFlavorIntel()) {
190     GlobalPrefix = "_";
191     CommentString = ";";
192   
193     PrivateGlobalPrefix = "$";
194     AlignDirective = "\talign\t";
195     ZeroDirective = "\tdb\t";
196     ZeroDirectiveSuffix = " dup(0)";
197     AsciiDirective = "\tdb\t";
198     AscizDirective = 0;
199     Data8bitsDirective = "\tdb\t";
200     Data16bitsDirective = "\tdw\t";
201     Data32bitsDirective = "\tdd\t";
202     Data64bitsDirective = "\tdq\t";
203     HasDotTypeDotSizeDirective = false;
204     
205     TextSection = "_text";
206     DataSection = "_data";
207     JumpTableDataSection = NULL;
208     SwitchToSectionDirective = "";
209     TextSectionStartSuffix = "\tsegment 'CODE'";
210     DataSectionStartSuffix = "\tsegment 'DATA'";
211     SectionEndDirectiveSuffix = "\tends\n";
212   }
213
214   AssemblerDialect = Subtarget->getAsmFlavor();
215 }
216
217 bool X86TargetAsmInfo::LowerToBSwap(CallInst *CI) const {
218   // FIXME: this should verify that we are targetting a 486 or better.  If not,
219   // we will turn this bswap into something that will be lowered to logical ops
220   // instead of emitting the bswap asm.  For now, we don't support 486 or lower
221   // so don't worry about this.
222   
223   // Verify this is a simple bswap.
224   if (CI->getNumOperands() != 2 ||
225       CI->getType() != CI->getOperand(1)->getType() ||
226       !CI->getType()->isInteger())
227     return false;
228   
229   const IntegerType *Ty = dyn_cast<IntegerType>(CI->getType());
230   if (!Ty || Ty->getBitWidth() % 16 != 0)
231     return false;
232   
233   // Okay, we can do this xform, do so now.
234   const Type *Tys[] = { Ty };
235   Module *M = CI->getParent()->getParent()->getParent();
236   Constant *Int = Intrinsic::getDeclaration(M, Intrinsic::bswap, Tys, 1);
237   
238   Value *Op = CI->getOperand(1);
239   Op = new CallInst(Int, Op, CI->getName(), CI);
240   
241   CI->replaceAllUsesWith(Op);
242   CI->eraseFromParent();
243   return true;
244 }
245
246
247 bool X86TargetAsmInfo::ExpandInlineAsm(CallInst *CI) const {
248   InlineAsm *IA = cast<InlineAsm>(CI->getCalledValue());
249   std::vector<InlineAsm::ConstraintInfo> Constraints = IA->ParseConstraints();
250   
251   std::string AsmStr = IA->getAsmString();
252   
253   // TODO: should remove alternatives from the asmstring: "foo {a|b}" -> "foo a"
254   std::vector<std::string> AsmPieces;
255   SplitString(AsmStr, AsmPieces, "\n");  // ; as separator?
256   
257   switch (AsmPieces.size()) {
258   default: return false;    
259   case 1:
260     AsmStr = AsmPieces[0];
261     AsmPieces.clear();
262     SplitString(AsmStr, AsmPieces, " \t");  // Split with whitespace.
263     
264     // bswap $0
265     if (AsmPieces.size() == 2 && 
266         AsmPieces[0] == "bswap" && AsmPieces[1] == "$0") {
267       // No need to check constraints, nothing other than the equivalent of
268       // "=r,0" would be valid here.
269       return LowerToBSwap(CI);
270     }
271     break;
272   case 3:
273     if (CI->getType() == Type::Int64Ty && Constraints.size() >= 2 &&
274         Constraints[0].Codes.size() == 1 && Constraints[0].Codes[0] == "A" &&
275         Constraints[1].Codes.size() == 1 && Constraints[1].Codes[0] == "0") {
276       // bswap %eax / bswap %edx / xchgl %eax, %edx  -> llvm.bswap.i64
277       std::vector<std::string> Words;
278       SplitString(AsmPieces[0], Words, " \t");
279       if (Words.size() == 2 && Words[0] == "bswap" && Words[1] == "%eax") {
280         Words.clear();
281         SplitString(AsmPieces[1], Words, " \t");
282         if (Words.size() == 2 && Words[0] == "bswap" && Words[1] == "%edx") {
283           Words.clear();
284           SplitString(AsmPieces[2], Words, " \t,");
285           if (Words.size() == 3 && Words[0] == "xchgl" && Words[1] == "%eax" &&
286               Words[2] == "%edx") {
287             return LowerToBSwap(CI);
288           }
289         }
290       }
291     }
292     break;
293   }
294   return false;
295 }