Targets.cpp revision a9668e0b4c451a1021fe650c451b54dc98c2d18d
1//===--- Targets.cpp - Implement -arch option and targets -----------------===//
2//
3//                     The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements construction of a TargetInfo object from a
11// target triple.
12//
13//===----------------------------------------------------------------------===//
14
15// FIXME: Layering violation
16#include "clang/AST/Builtins.h"
17#include "clang/AST/TargetBuiltins.h"
18#include "clang/Basic/TargetInfo.h"
19#include "clang/Basic/LangOptions.h"
20#include "llvm/ADT/STLExtras.h"
21#include "llvm/ADT/APFloat.h"
22#include "llvm/ADT/SmallString.h"
23using namespace clang;
24
25//===----------------------------------------------------------------------===//
26//  Common code shared among targets.
27//===----------------------------------------------------------------------===//
28
29static void Define(std::vector<char> &Buf, const char *Macro,
30                   const char *Val = "1") {
31  const char *Def = "#define ";
32  Buf.insert(Buf.end(), Def, Def+strlen(Def));
33  Buf.insert(Buf.end(), Macro, Macro+strlen(Macro));
34  Buf.push_back(' ');
35  Buf.insert(Buf.end(), Val, Val+strlen(Val));
36  Buf.push_back('\n');
37}
38
39/// DefineStd - Define a macro name and standard variants.  For example if
40/// MacroName is "unix", then this will define "__unix", "__unix__", and "unix"
41/// when in GNU mode.
42static void DefineStd(std::vector<char> &Buf, const char *MacroName,
43                      const LangOptions &Opts) {
44  assert(MacroName[0] != '_' && "Identifier should be in the user's namespace");
45
46  // If in GNU mode (e.g. -std=gnu99 but not -std=c99) define the raw identifier
47  // in the user's namespace.
48  if (Opts.GNUMode)
49    Define(Buf, MacroName);
50
51  // Define __unix.
52  llvm::SmallString<20> TmpStr;
53  TmpStr = "__";
54  TmpStr += MacroName;
55  Define(Buf, TmpStr.c_str());
56
57  // Define __unix__.
58  TmpStr += "__";
59  Define(Buf, TmpStr.c_str());
60}
61
62//===----------------------------------------------------------------------===//
63// Defines specific to certain operating systems.
64//===----------------------------------------------------------------------===//
65
66static void getSolarisDefines(std::vector<char> &Defs) {
67  Define(Defs, "__SUN__");
68  Define(Defs, "__SOLARIS__");
69}
70
71static void getFreeBSDDefines(const LangOptions &Opts, bool is64Bit,
72                              const char *Triple, std::vector<char> &Defs) {
73  // FreeBSD defines; list based off of gcc output
74
75  const char *FreeBSD = strstr(Triple, "-freebsd");
76  FreeBSD += strlen("-freebsd");
77  char release[] = "X";
78  release[0] = FreeBSD[0];
79  char version[] = "X00001";
80  version[0] = FreeBSD[0];
81
82  Define(Defs, "__FreeBSD__", release);
83  Define(Defs, "__FreeBSD_cc_version", version);
84  Define(Defs, "__KPRINTF_ATTRIBUTE__");
85  DefineStd(Defs, "unix", Opts);
86  Define(Defs, "__ELF__", "1");
87  if (is64Bit) {
88    Define(Defs, "__LP64__");
89  }
90}
91
92static void getDragonFlyDefines(const LangOptions &Opts,
93                                std::vector<char> &Defs) {
94  // DragonFly defines; list based off of gcc output
95  Define(Defs, "__DragonFly__");
96  Define(Defs, "__DragonFly_cc_version", "100001");
97  Define(Defs, "__ELF__");
98  Define(Defs, "__KPRINTF_ATTRIBUTE__");
99  Define(Defs, "__tune_i386__");
100  DefineStd(Defs, "unix", Opts);
101}
102
103static void getLinuxDefines(const LangOptions &Opts, std::vector<char> &Defs) {
104  // Linux defines; list based off of gcc output
105  DefineStd(Defs, "unix", Opts);
106  DefineStd(Defs, "linux", Opts);
107  Define(Defs, "__gnu_linux__");
108  Define(Defs, "__ELF__", "1");
109}
110
111/// getDarwinNumber - Parse the 'darwin number' out of the specific targe
112/// triple.  For example, if we have darwin8.5 return 8,5,4.  If any entry is
113/// not defined, return 0's.  Return true if we have -darwin in the string or
114/// false otherwise.
115static bool getDarwinNumber(const char *Triple, unsigned &Maj, unsigned &Min) {
116  Maj = Min = 0;
117  const char *Darwin = strstr(Triple, "-darwin");
118  if (Darwin == 0) return false;
119
120  Darwin += strlen("-darwin");
121  if (Darwin[0] < '0' || Darwin[0] > '9')
122    return true;
123
124  Maj = Darwin[0]-'0';
125  ++Darwin;
126
127  // Handle "darwin11".
128  if (Maj == 1 && Darwin[0] >= '0' && Darwin[0] <= '9') {
129    Maj = 10+Darwin[0]-'0';
130    ++Darwin;
131  }
132
133  // Handle minor version: 10.4.9 -> darwin8.9 -> "1049"
134  if (Darwin[0] == '.' && Darwin[1] >= '0' && Darwin[1] <= '9' &&
135      Darwin[2] == '\0')
136    Min = Darwin[1]-'0';
137
138  return true;
139}
140
141static void getDarwinDefines(std::vector<char> &Defs, const char *Triple) {
142  Define(Defs, "__APPLE__");
143  Define(Defs, "__MACH__");
144  Define(Defs, "OBJC_NEW_PROPERTIES");
145
146  // FIXME: OBJC_ZEROCOST_EXCEPTIONS when using zero cost eh.
147
148  // Figure out which "darwin number" the target triple is.  "darwin9" -> 10.5.
149  unsigned Maj, Min;
150  if (getDarwinNumber(Triple, Maj, Min)) {
151    char DarwinStr[] = "1000";
152    if (Maj >= 4 && Maj <= 13) { // 10.0-10.9
153      // darwin7 -> 1030, darwin8 -> 1040, darwin9 -> 1050, etc.
154      DarwinStr[2] = '0' + Maj-4;
155    }
156
157    // Handle minor version: 10.4.9 -> darwin8.9 -> "1049"
158    DarwinStr[3] = Min+'0';
159    Define(Defs, "__ENVIRONMENT_MAC_OS_X_VERSION_MIN_REQUIRED__", DarwinStr);
160  }
161}
162
163/// GetDarwinLanguageOptions - Set the default language options for darwin.
164static void GetDarwinLanguageOptions(LangOptions &Opts,
165                                     const char *Triple) {
166  Opts.NeXTRuntime = true;
167
168  unsigned Maj, Min;
169  if (!getDarwinNumber(Triple, Maj, Min))
170    return;
171
172  // Blocks default to on for 10.6 (darwin10) and beyond.
173  // As does nonfragile-abi for 64bit mode
174  if (Maj > 9)
175    Opts.Blocks = 1;
176
177  if (Maj >= 9 && Opts.ObjC1 && !strncmp(Triple, "x86_64", 6))
178    Opts.ObjCNonFragileABI = 1;
179}
180
181
182//===----------------------------------------------------------------------===//
183// Specific target implementations.
184//===----------------------------------------------------------------------===//
185
186namespace {
187// PPC abstract base class
188class PPCTargetInfo : public TargetInfo {
189  static const Builtin::Info BuiltinInfo[];
190  static const char * const GCCRegNames[];
191  static const TargetInfo::GCCRegAlias GCCRegAliases[];
192
193public:
194  PPCTargetInfo(const std::string& triple) : TargetInfo(triple) {
195    CharIsSigned = false;
196  }
197  virtual void getTargetBuiltins(const Builtin::Info *&Records,
198                                 unsigned &NumRecords) const {
199    Records = BuiltinInfo;
200    NumRecords = clang::PPC::LastTSBuiltin-Builtin::FirstTSBuiltin;
201  }
202
203  virtual void getTargetDefines(const LangOptions &Opts,
204                                std::vector<char> &Defines) const;
205
206  virtual const char *getVAListDeclaration() const {
207    return "typedef char* __builtin_va_list;";
208    // This is the right definition for ABI/V4: System V.4/eabi.
209    /*return "typedef struct __va_list_tag {"
210           "  unsigned char gpr;"
211           "  unsigned char fpr;"
212           "  unsigned short reserved;"
213           "  void* overflow_arg_area;"
214           "  void* reg_save_area;"
215           "} __builtin_va_list[1];";*/
216  }
217  virtual const char *getTargetPrefix() const {
218    return "ppc";
219  }
220  virtual void getGCCRegNames(const char * const *&Names,
221                              unsigned &NumNames) const;
222  virtual void getGCCRegAliases(const GCCRegAlias *&Aliases,
223                                unsigned &NumAliases) const;
224  virtual bool validateAsmConstraint(const char *&Name,
225                                     TargetInfo::ConstraintInfo &info) const {
226    switch (*Name) {
227    default: return false;
228    case 'O': // Zero
229      return true;
230    case 'b': // Base register
231    case 'f': // Floating point register
232      info = (TargetInfo::ConstraintInfo)(info|TargetInfo::CI_AllowsRegister);
233      return true;
234    }
235  }
236  virtual const char *getClobbers() const {
237    return "";
238  }
239};
240
241const Builtin::Info PPCTargetInfo::BuiltinInfo[] = {
242#define BUILTIN(ID, TYPE, ATTRS) { #ID, TYPE, ATTRS, 0, false },
243#define LIBBUILTIN(ID, TYPE, ATTRS, HEADER) { #ID, TYPE, ATTRS, HEADER, false },
244#include "clang/AST/PPCBuiltins.def"
245};
246
247
248/// PPCTargetInfo::getTargetDefines - Return a set of the PowerPC-specific
249/// #defines that are not tied to a specific subtarget.
250void PPCTargetInfo::getTargetDefines(const LangOptions &Opts,
251                                     std::vector<char> &Defs) const {
252  // Target identification.
253  Define(Defs, "__ppc__");
254  Define(Defs, "_ARCH_PPC");
255  Define(Defs, "__POWERPC__");
256  if (PointerWidth == 64) {
257    Define(Defs, "_ARCH_PPC64");
258    Define(Defs, "_LP64");
259    Define(Defs, "__LP64__");
260    Define(Defs, "__ppc64__");
261  } else {
262    Define(Defs, "__ppc__");
263  }
264
265  // Target properties.
266  Define(Defs, "_BIG_ENDIAN");
267  Define(Defs, "__BIG_ENDIAN__");
268
269  // Subtarget options.
270  Define(Defs, "__NATURAL_ALIGNMENT__");
271  Define(Defs, "__REGISTER_PREFIX__", "");
272
273  // FIXME: Should be controlled by command line option.
274  Define(Defs, "__LONG_DOUBLE_128__");
275}
276
277
278const char * const PPCTargetInfo::GCCRegNames[] = {
279  "0", "1", "2", "3", "4", "5", "6", "7",
280  "8", "9", "10", "11", "12", "13", "14", "15",
281  "16", "17", "18", "19", "20", "21", "22", "23",
282  "24", "25", "26", "27", "28", "29", "30", "31",
283  "0", "1", "2", "3", "4", "5", "6", "7",
284  "8", "9", "10", "11", "12", "13", "14", "15",
285  "16", "17", "18", "19", "20", "21", "22", "23",
286  "24", "25", "26", "27", "28", "29", "30", "31",
287  "mq", "lr", "ctr", "ap",
288  "0", "1", "2", "3", "4", "5", "6", "7",
289  "xer",
290  "0", "1", "2", "3", "4", "5", "6", "7",
291  "8", "9", "10", "11", "12", "13", "14", "15",
292  "16", "17", "18", "19", "20", "21", "22", "23",
293  "24", "25", "26", "27", "28", "29", "30", "31",
294  "vrsave", "vscr",
295  "spe_acc", "spefscr",
296  "sfp"
297};
298
299void PPCTargetInfo::getGCCRegNames(const char * const *&Names,
300                                   unsigned &NumNames) const {
301  Names = GCCRegNames;
302  NumNames = llvm::array_lengthof(GCCRegNames);
303}
304
305const TargetInfo::GCCRegAlias PPCTargetInfo::GCCRegAliases[] = {
306  // While some of these aliases do map to different registers
307  // they still share the same register name.
308  { { "cc", "cr0", "fr0", "r0", "v0"}, "0" },
309  { { "cr1", "fr1", "r1", "sp", "v1"}, "1" },
310  { { "cr2", "fr2", "r2", "toc", "v2"}, "2" },
311  { { "cr3", "fr3", "r3", "v3"}, "3" },
312  { { "cr4", "fr4", "r4", "v4"}, "4" },
313  { { "cr5", "fr5", "r5", "v5"}, "5" },
314  { { "cr6", "fr6", "r6", "v6"}, "6" },
315  { { "cr7", "fr7", "r7", "v7"}, "7" },
316  { { "fr8", "r8", "v8"}, "8" },
317  { { "fr9", "r9", "v9"}, "9" },
318  { { "fr10", "r10", "v10"}, "10" },
319  { { "fr11", "r11", "v11"}, "11" },
320  { { "fr12", "r12", "v12"}, "12" },
321  { { "fr13", "r13", "v13"}, "13" },
322  { { "fr14", "r14", "v14"}, "14" },
323  { { "fr15", "r15", "v15"}, "15" },
324  { { "fr16", "r16", "v16"}, "16" },
325  { { "fr17", "r17", "v17"}, "17" },
326  { { "fr18", "r18", "v18"}, "18" },
327  { { "fr19", "r19", "v19"}, "19" },
328  { { "fr20", "r20", "v20"}, "20" },
329  { { "fr21", "r21", "v21"}, "21" },
330  { { "fr22", "r22", "v22"}, "22" },
331  { { "fr23", "r23", "v23"}, "23" },
332  { { "fr24", "r24", "v24"}, "24" },
333  { { "fr25", "r25", "v25"}, "25" },
334  { { "fr26", "r26", "v26"}, "26" },
335  { { "fr27", "r27", "v27"}, "27" },
336  { { "fr28", "r28", "v28"}, "28" },
337  { { "fr29", "r29", "v29"}, "29" },
338  { { "fr30", "r30", "v30"}, "30" },
339  { { "fr31", "r31", "v31"}, "31" },
340};
341
342void PPCTargetInfo::getGCCRegAliases(const GCCRegAlias *&Aliases,
343                                     unsigned &NumAliases) const {
344  Aliases = GCCRegAliases;
345  NumAliases = llvm::array_lengthof(GCCRegAliases);
346}
347} // end anonymous namespace.
348
349namespace {
350class PPC32TargetInfo : public PPCTargetInfo {
351public:
352  PPC32TargetInfo(const std::string& triple) : PPCTargetInfo(triple) {
353    DescriptionString = "E-p:32:32:32-i1:8:8-i8:8:8-i16:16:16-i32:32:32-"
354                        "i64:64:64-f32:32:32-f64:64:64-v128:128:128";
355  }
356};
357} // end anonymous namespace.
358
359namespace {
360class PPC64TargetInfo : public PPCTargetInfo {
361public:
362  PPC64TargetInfo(const std::string& triple) : PPCTargetInfo(triple) {
363    LongWidth = LongAlign = PointerWidth = PointerAlign = 64;
364    DescriptionString = "E-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-"
365                        "i64:64:64-f32:32:32-f64:64:64-v128:128:128";
366  }
367};
368} // end anonymous namespace.
369
370
371namespace {
372class DarwinPPCTargetInfo : public PPC32TargetInfo {
373public:
374  DarwinPPCTargetInfo(const std::string& triple) : PPC32TargetInfo(triple) {}
375  virtual void getTargetDefines(const LangOptions &Opts,
376                                std::vector<char> &Defines) const {
377    PPC32TargetInfo::getTargetDefines(Opts, Defines);
378    getDarwinDefines(Defines, getTargetTriple());
379  }
380
381  /// getDefaultLangOptions - Allow the target to specify default settings for
382  /// various language options.  These may be overridden by command line
383  /// options.
384  virtual void getDefaultLangOptions(LangOptions &Opts) {
385    GetDarwinLanguageOptions(Opts, getTargetTriple());
386  }
387};
388} // end anonymous namespace.
389
390namespace {
391class DarwinPPC64TargetInfo : public PPC64TargetInfo {
392public:
393  DarwinPPC64TargetInfo(const std::string& triple) : PPC64TargetInfo(triple) {}
394  virtual void getTargetDefines(const LangOptions &Opts,
395                                std::vector<char> &Defines) const {
396    PPC64TargetInfo::getTargetDefines(Opts, Defines);
397    getDarwinDefines(Defines, getTargetTriple());
398  }
399
400  /// getDefaultLangOptions - Allow the target to specify default settings for
401  /// various language options.  These may be overridden by command line
402  /// options.
403  virtual void getDefaultLangOptions(LangOptions &Opts) {
404    GetDarwinLanguageOptions(Opts, getTargetTriple());
405  }
406};
407} // end anonymous namespace.
408
409namespace {
410// Namespace for x86 abstract base class
411const Builtin::Info BuiltinInfo[] = {
412#define BUILTIN(ID, TYPE, ATTRS) { #ID, TYPE, ATTRS, 0, false },
413#define LIBBUILTIN(ID, TYPE, ATTRS, HEADER) { #ID, TYPE, ATTRS, HEADER, false },
414#include "clang/AST/X86Builtins.def"
415};
416
417const char *GCCRegNames[] = {
418  "ax", "dx", "cx", "bx", "si", "di", "bp", "sp",
419  "st", "st(1)", "st(2)", "st(3)", "st(4)", "st(5)", "st(6)", "st(7)",
420  "argp", "flags", "fspr", "dirflag", "frame",
421  "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7",
422  "mm0", "mm1", "mm2", "mm3", "mm4", "mm5", "mm6", "mm7",
423  "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15",
424  "xmm8", "xmm9", "xmm10", "xmm11", "xmm12", "xmm13", "xmm14", "xmm15"
425};
426
427const TargetInfo::GCCRegAlias GCCRegAliases[] = {
428  { { "al", "ah", "eax", "rax" }, "ax" },
429  { { "bl", "bh", "ebx", "rbx" }, "bx" },
430  { { "cl", "ch", "ecx", "rcx" }, "cx" },
431  { { "dl", "dh", "edx", "rdx" }, "dx" },
432  { { "esi", "rsi" }, "si" },
433  { { "edi", "rdi" }, "di" },
434  { { "esp", "rsp" }, "sp" },
435  { { "ebp", "rbp" }, "bp" },
436};
437
438// X86 target abstract base class; x86-32 and x86-64 are very close, so
439// most of the implementation can be shared.
440class X86TargetInfo : public TargetInfo {
441  enum X86SSEEnum {
442    NoMMXSSE, MMX, SSE1, SSE2, SSE3, SSSE3, SSE41, SSE42
443  } SSELevel;
444public:
445  X86TargetInfo(const std::string& triple)
446    : TargetInfo(triple),
447      // FIXME: hard coding to SSE2 for now.  This should change to NoMMXSSE so
448      // that the driver controls this.
449      SSELevel(SSE2) {
450    LongDoubleFormat = &llvm::APFloat::x87DoubleExtended;
451  }
452  virtual void getTargetBuiltins(const Builtin::Info *&Records,
453                                 unsigned &NumRecords) const {
454    Records = BuiltinInfo;
455    NumRecords = clang::X86::LastTSBuiltin-Builtin::FirstTSBuiltin;
456  }
457  virtual const char *getTargetPrefix() const {
458    return "x86";
459  }
460  virtual void getGCCRegNames(const char * const *&Names,
461                              unsigned &NumNames) const {
462    Names = GCCRegNames;
463    NumNames = llvm::array_lengthof(GCCRegNames);
464  }
465  virtual void getGCCRegAliases(const GCCRegAlias *&Aliases,
466                                unsigned &NumAliases) const {
467    Aliases = GCCRegAliases;
468    NumAliases = llvm::array_lengthof(GCCRegAliases);
469  }
470  virtual bool validateAsmConstraint(const char *&Name,
471                                     TargetInfo::ConstraintInfo &info) const;
472  virtual std::string convertConstraint(const char Constraint) const;
473  virtual const char *getClobbers() const {
474    return "~{dirflag},~{fpsr},~{flags}";
475  }
476  virtual void getTargetDefines(const LangOptions &Opts,
477                                std::vector<char> &Defines) const;
478
479  virtual int HandleTargetFeatures(std::string *StrArray, unsigned NumStrs,
480                                   std::string &ErrorReason);
481};
482
483/// HandleTargetOptions - Handle target-specific options like -msse2 and
484/// friends.  An array of arguments is passed in: if they are all valid, this
485/// should handle them and return -1.  If there is an error, the index of the
486/// invalid argument should be returned along with an optional error string.
487int X86TargetInfo::HandleTargetFeatures(std::string *StrArray, unsigned NumStrs,
488                                        std::string &ErrorReason) {
489  for (unsigned i = 0; i != NumStrs; ++i) {
490    const std::string &Feature = StrArray[i];
491    if (Feature.size() < 2) return i;
492    // Ignore explicitly disabled features.
493    if (Feature[0] == '-') continue;
494
495    // Feature strings are of the form "+feature".
496    if (Feature[0] != '+') return i;
497
498    // The set of supported subtarget features is defined in
499    // lib/Target/X86/X86.td.  Here we recognize and map onto our internal
500    // state.
501    if (Feature == "+mmx")
502      SSELevel = std::max(SSELevel, MMX);
503    else if (Feature == "+sse")
504      SSELevel = std::max(SSELevel, SSE1);
505    else if (Feature == "+sse2")
506      SSELevel = std::max(SSELevel, SSE2);
507    else if (Feature == "+sse3")
508      SSELevel = std::max(SSELevel, SSE3);
509    else if (Feature == "+ssse3")
510      SSELevel = std::max(SSELevel, SSSE3);
511    else if (Feature == "+sse41")
512      SSELevel = std::max(SSELevel, SSE41);
513    else if (Feature == "+sse42")
514      SSELevel = std::max(SSELevel, SSE42);
515    else if (Feature == "+64bit" || Feature == "+slow-bt-mem")
516      // Ignore these features.
517      continue;
518    else
519      return i;
520  }
521  return -1;
522}
523
524/// X86TargetInfo::getTargetDefines - Return a set of the X86-specific #defines
525/// that are not tied to a specific subtarget.
526void X86TargetInfo::getTargetDefines(const LangOptions &Opts,
527                                     std::vector<char> &Defs) const {
528  // Target identification.
529  if (PointerWidth == 64) {
530    Define(Defs, "_LP64");
531    Define(Defs, "__LP64__");
532    Define(Defs, "__amd64__");
533    Define(Defs, "__amd64");
534    Define(Defs, "__x86_64");
535    Define(Defs, "__x86_64__");
536    Define(Defs, "__SSE3__");
537  } else {
538    DefineStd(Defs, "i386", Opts);
539  }
540
541  // Target properties.
542  Define(Defs, "__LITTLE_ENDIAN__");
543
544  // Subtarget options.
545  Define(Defs, "__nocona");
546  Define(Defs, "__nocona__");
547  Define(Defs, "__tune_nocona__");
548  Define(Defs, "__REGISTER_PREFIX__", "");
549
550  // Each case falls through to the previous one here.
551  switch (SSELevel) {
552  case SSE42:
553    Define(Defs, "__SSE4_2__");
554  case SSE41:
555    Define(Defs, "__SSE4_1__");
556  case SSSE3:
557    Define(Defs, "__SSSE3__");
558  case SSE3:
559    Define(Defs, "__SSE3__");
560  case SSE2:
561    Define(Defs, "__SSE2__");
562    Define(Defs, "__SSE2_MATH__");  // -mfp-math=sse always implied.
563  case SSE1:
564    Define(Defs, "__SSE__");
565    Define(Defs, "__SSE_MATH__");   // -mfp-math=sse always implied.
566  case MMX:
567    Define(Defs, "__MMX__");
568  case NoMMXSSE:
569    break;
570  }
571}
572
573
574bool
575X86TargetInfo::validateAsmConstraint(const char *&Name,
576                                     TargetInfo::ConstraintInfo &info) const {
577  switch (*Name) {
578  default: return false;
579  case 'a': // eax.
580  case 'b': // ebx.
581  case 'c': // ecx.
582  case 'd': // edx.
583  case 'S': // esi.
584  case 'D': // edi.
585  case 'A': // edx:eax.
586  case 't': // top of floating point stack.
587  case 'u': // second from top of floating point stack.
588  case 'q': // Any register accessible as [r]l: a, b, c, and d.
589  case 'y': // Any MMX register.
590  case 'x': // Any SSE register.
591  case 'Q': // Any register accessible as [r]h: a, b, c, and d.
592  case 'e': // 32-bit signed integer constant for use with zero-extending
593            // x86_64 instructions.
594  case 'Z': // 32-bit unsigned integer constant for use with zero-extending
595            // x86_64 instructions.
596  case 'N': // unsigned 8-bit integer constant for use with in and out
597            // instructions.
598    info = (TargetInfo::ConstraintInfo)(info|TargetInfo::CI_AllowsRegister);
599    return true;
600  }
601}
602
603std::string
604X86TargetInfo::convertConstraint(const char Constraint) const {
605  switch (Constraint) {
606  case 'a': return std::string("{ax}");
607  case 'b': return std::string("{bx}");
608  case 'c': return std::string("{cx}");
609  case 'd': return std::string("{dx}");
610  case 'S': return std::string("{si}");
611  case 'D': return std::string("{di}");
612  case 't': // top of floating point stack.
613    return std::string("{st}");
614  case 'u': // second from top of floating point stack.
615    return std::string("{st(1)}"); // second from top of floating point stack.
616  default:
617    return std::string(1, Constraint);
618  }
619}
620} // end anonymous namespace
621
622namespace {
623// X86-32 generic target
624class X86_32TargetInfo : public X86TargetInfo {
625public:
626  X86_32TargetInfo(const std::string& triple) : X86TargetInfo(triple) {
627    DoubleAlign = LongLongAlign = 32;
628    LongDoubleWidth = 96;
629    LongDoubleAlign = 32;
630    DescriptionString = "e-p:32:32:32-i1:8:8-i8:8:8-i16:16:16-i32:32:32-"
631                        "i64:32:64-f32:32:32-f64:32:64-v64:64:64-v128:128:128-"
632                        "a0:0:64-f80:32:32";
633    SizeType = UnsignedInt;
634    PtrDiffType = SignedInt;
635    IntPtrType = SignedInt;
636  }
637  virtual const char *getVAListDeclaration() const {
638    return "typedef char* __builtin_va_list;";
639  }
640};
641} // end anonymous namespace
642
643namespace {
644// x86-32 Darwin (OS X) target
645class DarwinI386TargetInfo : public X86_32TargetInfo {
646public:
647  DarwinI386TargetInfo(const std::string& triple) : X86_32TargetInfo(triple) {
648    LongDoubleWidth = 128;
649    LongDoubleAlign = 128;
650    SizeType = UnsignedLong;
651    IntPtrType = SignedLong;
652    DescriptionString = "e-p:32:32:32-i1:8:8-i8:8:8-i16:16:16-i32:32:32-"
653                        "i64:32:64-f32:32:32-f64:32:64-v64:64:64-v128:128:128-"
654                        "a0:0:64-f80:128:128";
655  }
656
657  virtual const char *getStringSymbolPrefix(bool IsConstant) const {
658    return IsConstant ? "\01LC" : "\01lC";
659  }
660
661  virtual const char *getUnicodeStringSymbolPrefix() const {
662    return "__utf16_string_";
663  }
664
665  virtual const char *getUnicodeStringSection() const {
666    return "__TEXT,__ustring";
667  }
668
669  virtual const char *getCFStringSymbolPrefix() const {
670    return "\01LC";
671  }
672
673  virtual void getTargetDefines(const LangOptions &Opts,
674                                std::vector<char> &Defines) const {
675    X86_32TargetInfo::getTargetDefines(Opts, Defines);
676    getDarwinDefines(Defines, getTargetTriple());
677  }
678
679  /// getDefaultLangOptions - Allow the target to specify default settings for
680  /// various language options.  These may be overridden by command line
681  /// options.
682  virtual void getDefaultLangOptions(LangOptions &Opts) {
683    GetDarwinLanguageOptions(Opts, getTargetTriple());
684  }
685};
686} // end anonymous namespace
687
688namespace {
689// x86-32 FreeBSD target
690class FreeBSDX86_32TargetInfo : public X86_32TargetInfo {
691public:
692  FreeBSDX86_32TargetInfo(const std::string& triple) :
693      X86_32TargetInfo(triple) { }
694  virtual void getTargetDefines(const LangOptions &Opts,
695                                std::vector<char> &Defines) const {
696    X86_32TargetInfo::getTargetDefines(Opts, Defines);
697    getFreeBSDDefines(Opts, 0, getTargetTriple(), Defines);
698  }
699};
700} // end anonymous namespace
701
702namespace {
703// x86-32 DragonFly target
704class DragonFlyX86_32TargetInfo : public X86_32TargetInfo {
705public:
706  DragonFlyX86_32TargetInfo(const std::string& triple) :
707      X86_32TargetInfo(triple) { }
708  virtual void getTargetDefines(const LangOptions &Opts,
709                                std::vector<char> &Defines) const {
710    X86_32TargetInfo::getTargetDefines(Opts, Defines);
711    getDragonFlyDefines(Opts, Defines);
712  }
713};
714} // end anonymous namespace
715
716namespace {
717// x86-32 Linux target
718class LinuxX86_32TargetInfo : public X86_32TargetInfo {
719public:
720  LinuxX86_32TargetInfo(const std::string& triple) : X86_32TargetInfo(triple) {
721    UserLabelPrefix = "";
722  }
723  virtual void getTargetDefines(const LangOptions &Opts,
724                                std::vector<char> &Defines) const {
725    X86_32TargetInfo::getTargetDefines(Opts, Defines);
726    getLinuxDefines(Opts, Defines);
727  }
728};
729} // end anonymous namespace
730
731namespace {
732// x86-32 Windows target
733class WindowsX86_32TargetInfo : public X86_32TargetInfo {
734public:
735  WindowsX86_32TargetInfo(const std::string& triple)
736    : X86_32TargetInfo(triple) {
737    // FIXME: Fix wchar_t.
738    // FIXME: We should probably enable -fms-extensions by default for
739    // this target.
740  }
741  virtual void getTargetDefines(const LangOptions &Opts,
742                                std::vector<char> &Defines) const {
743    X86_32TargetInfo::getTargetDefines(Opts, Defines);
744    // This list is based off of the the list of things MingW defines
745    Define(Defines, "_WIN32");
746    DefineStd(Defines, "WIN32", Opts);
747    DefineStd(Defines, "WINNT", Opts);
748    Define(Defines, "_X86_");
749    Define(Defines, "__MSVCRT__");
750  }
751};
752} // end anonymous namespace
753
754namespace {
755// x86-64 generic target
756class X86_64TargetInfo : public X86TargetInfo {
757public:
758  X86_64TargetInfo(const std::string &triple) : X86TargetInfo(triple) {
759    LongWidth = LongAlign = PointerWidth = PointerAlign = 64;
760    DoubleAlign = LongLongAlign = 64;
761    LongDoubleWidth = 128;
762    LongDoubleAlign = 128;
763    IntMaxType = SignedLong;
764    UIntMaxType = UnsignedLong;
765
766    DescriptionString = "e-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-"
767                        "i64:64:64-f32:32:32-f64:64:64-v64:64:64-v128:128:128-"
768                        "a0:0:64-f80:128:128";
769  }
770  virtual const char *getVAListDeclaration() const {
771    return "typedef struct __va_list_tag {"
772           "  unsigned gp_offset;"
773           "  unsigned fp_offset;"
774           "  void* overflow_arg_area;"
775           "  void* reg_save_area;"
776           "} __builtin_va_list[1];";
777  }
778};
779} // end anonymous namespace
780
781namespace {
782// x86-64 FreeBSD target
783class FreeBSDX86_64TargetInfo : public X86_64TargetInfo {
784public:
785  FreeBSDX86_64TargetInfo(const std::string &triple)
786    : X86_64TargetInfo(triple) {}
787  virtual void getTargetDefines(const LangOptions &Opts,
788                                std::vector<char> &Defines) const {
789    X86_64TargetInfo::getTargetDefines(Opts, Defines);
790    getFreeBSDDefines(Opts, 1, getTargetTriple(), Defines);
791  }
792};
793} // end anonymous namespace
794
795namespace {
796// x86-64 Linux target
797class LinuxX86_64TargetInfo : public X86_64TargetInfo {
798public:
799  LinuxX86_64TargetInfo(const std::string& triple) : X86_64TargetInfo(triple) {
800    UserLabelPrefix = "";
801  }
802  virtual void getTargetDefines(const LangOptions &Opts,
803                                std::vector<char> &Defines) const {
804    X86_64TargetInfo::getTargetDefines(Opts, Defines);
805    getLinuxDefines(Opts, Defines);
806  }
807};
808} // end anonymous namespace
809
810namespace {
811// x86-64 Darwin (OS X) target
812class DarwinX86_64TargetInfo : public X86_64TargetInfo {
813public:
814  DarwinX86_64TargetInfo(const std::string& triple) :
815    X86_64TargetInfo(triple) {}
816
817  virtual const char *getStringSymbolPrefix(bool IsConstant) const {
818    return IsConstant ? "\01LC" : "\01lC";
819  }
820
821  virtual const char *getUnicodeStringSymbolPrefix() const {
822    return "__utf16_string_";
823  }
824
825  virtual const char *getUnicodeStringSection() const {
826    return "__TEXT,__ustring";
827  }
828
829  virtual const char *getCFStringSymbolPrefix() const {
830    return "\01L_unnamed_cfstring_";
831  }
832
833  virtual void getTargetDefines(const LangOptions &Opts,
834                                std::vector<char> &Defines) const {
835    X86_64TargetInfo::getTargetDefines(Opts, Defines);
836    getDarwinDefines(Defines, getTargetTriple());
837  }
838
839  /// getDefaultLangOptions - Allow the target to specify default settings for
840  /// various language options.  These may be overridden by command line
841  /// options.
842  virtual void getDefaultLangOptions(LangOptions &Opts) {
843    GetDarwinLanguageOptions(Opts, getTargetTriple());
844  }
845};
846} // end anonymous namespace.
847
848namespace {
849class ARMTargetInfo : public TargetInfo {
850public:
851  ARMTargetInfo(const std::string& triple) : TargetInfo(triple) {
852    // FIXME: Are the defaults correct for ARM?
853    DescriptionString = "e-p:32:32:32-i1:8:8-i8:8:8-i16:16:16-i32:32:32-"
854                        "i64:64:64-f32:32:32-f64:64:64-v64:64:64-v128:64:64";
855  }
856  virtual void getTargetDefines(const LangOptions &Opts,
857                                std::vector<char> &Defs) const {
858    // Target identification.
859    Define(Defs, "__arm");
860    Define(Defs, "__arm__");
861
862    // Target properties.
863    Define(Defs, "__LITTLE_ENDIAN__");
864
865    // Subtarget options.  [hard coded to v6 for now]
866    Define(Defs, "__ARM_ARCH_6K__");
867    Define(Defs, "__ARMEL__");
868    Define(Defs, "__ENVIRONMENT_IPHONE_OS_VERSION_MIN_REQUIRED__", "20000");
869  }
870  virtual void getTargetBuiltins(const Builtin::Info *&Records,
871                                 unsigned &NumRecords) const {
872    // FIXME: Implement.
873    Records = 0;
874    NumRecords = 0;
875  }
876  virtual const char *getVAListDeclaration() const {
877    return "typedef char* __builtin_va_list;";
878  }
879  virtual const char *getTargetPrefix() const {
880    return "arm";
881  }
882  virtual void getGCCRegNames(const char * const *&Names,
883                              unsigned &NumNames) const {
884    // FIXME: Implement.
885    Names = 0;
886    NumNames = 0;
887  }
888  virtual void getGCCRegAliases(const GCCRegAlias *&Aliases,
889                                unsigned &NumAliases) const {
890    // FIXME: Implement.
891    Aliases = 0;
892    NumAliases = 0;
893  }
894  virtual bool validateAsmConstraint(const char *&Name,
895                                     TargetInfo::ConstraintInfo &info) const {
896    // FIXME: Check if this is complete
897    switch (*Name) {
898    default:
899    case 'l': // r0-r7
900    case 'h': // r8-r15
901    case 'w': // VFP Floating point register single precision
902    case 'P': // VFP Floating point register double precision
903      info = (TargetInfo::ConstraintInfo)(info|TargetInfo::CI_AllowsRegister);
904      return true;
905    }
906    return false;
907  }
908  virtual const char *getClobbers() const {
909    // FIXME: Is this really right?
910    return "";
911  }
912};
913} // end anonymous namespace.
914
915
916namespace {
917class DarwinARMTargetInfo : public ARMTargetInfo {
918public:
919  DarwinARMTargetInfo(const std::string& triple) : ARMTargetInfo(triple) {}
920
921  virtual void getTargetDefines(const LangOptions &Opts,
922                                std::vector<char> &Defines) const {
923    ARMTargetInfo::getTargetDefines(Opts, Defines);
924    getDarwinDefines(Defines, getTargetTriple());
925  }
926};
927} // end anonymous namespace.
928
929namespace {
930// arm FreeBSD target
931class FreeBSDARMTargetInfo : public ARMTargetInfo {
932public:
933  FreeBSDARMTargetInfo(const std::string& triple) : ARMTargetInfo(triple) {}
934  virtual void getTargetDefines(const LangOptions &Opts,
935                                std::vector<char> &Defines) const {
936    ARMTargetInfo::getTargetDefines(Opts, Defines);
937    getFreeBSDDefines(Opts, 0, getTargetTriple(), Defines);
938  }
939};
940} // end anonymous namespace
941
942namespace {
943class SparcV8TargetInfo : public TargetInfo {
944  static const TargetInfo::GCCRegAlias GCCRegAliases[];
945  static const char * const GCCRegNames[];
946public:
947  SparcV8TargetInfo(const std::string& triple) : TargetInfo(triple) {
948    // FIXME: Support Sparc quad-precision long double?
949    DescriptionString = "e-p:32:32:32-i1:8:8-i8:8:8-i16:16:16-i32:32:32-"
950                        "i64:64:64-f32:32:32-f64:64:64-v64:64:64";
951  }
952  virtual void getTargetDefines(const LangOptions &Opts,
953                                std::vector<char> &Defines) const {
954    // FIXME: This is missing a lot of important defines; some of the
955    // missing stuff is likely to break system headers.
956    Define(Defines, "__sparc");
957    Define(Defines, "__sparc__");
958    Define(Defines, "__sparcv8");
959  }
960  virtual void getTargetBuiltins(const Builtin::Info *&Records,
961                                 unsigned &NumRecords) const {
962    // FIXME: Implement!
963  }
964  virtual const char *getVAListDeclaration() const {
965    return "typedef void* __builtin_va_list;";
966  }
967  virtual const char *getTargetPrefix() const {
968    return "sparc";
969  }
970  virtual void getGCCRegNames(const char * const *&Names,
971                              unsigned &NumNames) const;
972  virtual void getGCCRegAliases(const GCCRegAlias *&Aliases,
973                                unsigned &NumAliases) const;
974  virtual bool validateAsmConstraint(const char *&Name,
975                                     TargetInfo::ConstraintInfo &info) const {
976    // FIXME: Implement!
977    return false;
978  }
979  virtual const char *getClobbers() const {
980    // FIXME: Implement!
981    return "";
982  }
983};
984
985const char * const SparcV8TargetInfo::GCCRegNames[] = {
986  "r0", "r1", "r2", "r3", "r4", "r5", "r6", "r7",
987  "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15",
988  "r16", "r17", "r18", "r19", "r20", "r21", "r22", "r23",
989  "r24", "r25", "r26", "r27", "r28", "r29", "r30", "r31"
990};
991
992void SparcV8TargetInfo::getGCCRegNames(const char * const *&Names,
993                                       unsigned &NumNames) const {
994  Names = GCCRegNames;
995  NumNames = llvm::array_lengthof(GCCRegNames);
996}
997
998const TargetInfo::GCCRegAlias SparcV8TargetInfo::GCCRegAliases[] = {
999  { { "g0" }, "r0" },
1000  { { "g1" }, "r1" },
1001  { { "g2" }, "r2" },
1002  { { "g3" }, "r3" },
1003  { { "g4" }, "r4" },
1004  { { "g5" }, "r5" },
1005  { { "g6" }, "r6" },
1006  { { "g7" }, "r7" },
1007  { { "o0" }, "r8" },
1008  { { "o1" }, "r9" },
1009  { { "o2" }, "r10" },
1010  { { "o3" }, "r11" },
1011  { { "o4" }, "r12" },
1012  { { "o5" }, "r13" },
1013  { { "o6", "sp" }, "r14" },
1014  { { "o7" }, "r15" },
1015  { { "l0" }, "r16" },
1016  { { "l1" }, "r17" },
1017  { { "l2" }, "r18" },
1018  { { "l3" }, "r19" },
1019  { { "l4" }, "r20" },
1020  { { "l5" }, "r21" },
1021  { { "l6" }, "r22" },
1022  { { "l7" }, "r23" },
1023  { { "i0" }, "r24" },
1024  { { "i1" }, "r25" },
1025  { { "i2" }, "r26" },
1026  { { "i3" }, "r27" },
1027  { { "i4" }, "r28" },
1028  { { "i5" }, "r29" },
1029  { { "i6", "fp" }, "r30" },
1030  { { "i7" }, "r31" },
1031};
1032
1033void SparcV8TargetInfo::getGCCRegAliases(const GCCRegAlias *&Aliases,
1034                                         unsigned &NumAliases) const {
1035  Aliases = GCCRegAliases;
1036  NumAliases = llvm::array_lengthof(GCCRegAliases);
1037}
1038} // end anonymous namespace.
1039
1040namespace {
1041class SolarisSparcV8TargetInfo : public SparcV8TargetInfo {
1042public:
1043  SolarisSparcV8TargetInfo(const std::string& triple) :
1044      SparcV8TargetInfo(triple) {
1045    SizeType = UnsignedInt;
1046    PtrDiffType = SignedInt;
1047  }
1048
1049  virtual void getTargetDefines(const LangOptions &Opts,
1050                                std::vector<char> &Defines) const {
1051    SparcV8TargetInfo::getTargetDefines(Opts, Defines);
1052    getSolarisDefines(Defines);
1053  }
1054};
1055} // end anonymous namespace.
1056
1057namespace {
1058  class PIC16TargetInfo : public TargetInfo{
1059  public:
1060    PIC16TargetInfo(const std::string& triple) : TargetInfo(triple) {
1061      IntWidth = 16;
1062      LongWidth = LongLongWidth = 32;
1063      PointerWidth = 16;
1064      IntAlign = 8;
1065      LongAlign = LongLongAlign = 8;
1066      PointerAlign = 8;
1067      SizeType = UnsignedInt;
1068      IntMaxType = SignedLong;
1069      UIntMaxType = UnsignedLong;
1070      IntPtrType = SignedShort;
1071      PtrDiffType = SignedInt;
1072      DescriptionString = "e-p:16:8:8-i8:8:8-i16:8:8-i32:8:8";
1073    }
1074    virtual uint64_t getPointerWidthV(unsigned AddrSpace) const { return 16; }
1075    virtual uint64_t getPointerAlignV(unsigned AddrSpace) const { return 8; }
1076    virtual void getTargetDefines(const LangOptions &Opts,
1077                                  std::vector<char> &Defines) const {
1078      Define(Defines, "__pic16");
1079    }
1080    virtual void getTargetBuiltins(const Builtin::Info *&Records,
1081                                   unsigned &NumRecords) const {}
1082    virtual const char *getVAListDeclaration() const { return "";}
1083    virtual const char *getClobbers() const {return "";}
1084    virtual const char *getTargetPrefix() const {return "";}
1085    virtual void getGCCRegNames(const char * const *&Names,
1086                                unsigned &NumNames) const {}
1087    virtual bool validateAsmConstraint(const char *&Name,
1088                                       TargetInfo::ConstraintInfo &info) const {
1089      return true;
1090    }
1091    virtual void getGCCRegAliases(const GCCRegAlias *&Aliases,
1092                                  unsigned &NumAliases) const {}
1093    virtual bool useGlobalsForAutomaticVariables() const {return true;}
1094  };
1095}
1096
1097//===----------------------------------------------------------------------===//
1098// Driver code
1099//===----------------------------------------------------------------------===//
1100
1101static inline bool IsX86(const std::string& TT) {
1102  return (TT.size() >= 5 && TT[0] == 'i' && TT[2] == '8' && TT[3] == '6' &&
1103          TT[4] == '-' && TT[1] - '3' < 6);
1104}
1105
1106/// CreateTargetInfo - Return the target info object for the specified target
1107/// triple.
1108TargetInfo* TargetInfo::CreateTargetInfo(const std::string &T) {
1109  // OS detection; this isn't really anywhere near complete.
1110  // Additions and corrections are welcome.
1111  bool isDarwin = T.find("-darwin") != std::string::npos;
1112  bool isDragonFly = T.find("-dragonfly") != std::string::npos;
1113  bool isFreeBSD = T.find("-freebsd") != std::string::npos;
1114  bool isSolaris = T.find("-solaris") != std::string::npos;
1115  bool isLinux = T.find("-linux") != std::string::npos;
1116  bool isWindows = T.find("-windows") != std::string::npos ||
1117                   T.find("-win32") != std::string::npos ||
1118                   T.find("-mingw") != std::string::npos;
1119
1120  if (T.find("ppc-") == 0 || T.find("powerpc-") == 0) {
1121    if (isDarwin)
1122      return new DarwinPPCTargetInfo(T);
1123    return new PPC32TargetInfo(T);
1124  }
1125
1126  if (T.find("ppc64-") == 0 || T.find("powerpc64-") == 0) {
1127    if (isDarwin)
1128      return new DarwinPPC64TargetInfo(T);
1129    return new PPC64TargetInfo(T);
1130  }
1131
1132  if (T.find("armv6-") == 0 || T.find("arm-") == 0) {
1133    if (isDarwin)
1134      return new DarwinARMTargetInfo(T);
1135    if (isFreeBSD)
1136      return new FreeBSDARMTargetInfo(T);
1137    return new ARMTargetInfo(T);
1138  }
1139
1140  if (T.find("sparc-") == 0) {
1141    if (isSolaris)
1142      return new SolarisSparcV8TargetInfo(T);
1143    return new SparcV8TargetInfo(T);
1144  }
1145
1146  if (T.find("x86_64-") == 0 || T.find("amd64-") == 0) {
1147    if (isDarwin)
1148      return new DarwinX86_64TargetInfo(T);
1149    if (isLinux)
1150      return new LinuxX86_64TargetInfo(T);
1151    if (isFreeBSD)
1152      return new FreeBSDX86_64TargetInfo(T);
1153    return new X86_64TargetInfo(T);
1154  }
1155
1156  if (T.find("pic16-") == 0)
1157    return new PIC16TargetInfo(T);
1158
1159  if (IsX86(T)) {
1160    if (isDarwin)
1161      return new DarwinI386TargetInfo(T);
1162    if (isLinux)
1163      return new LinuxX86_32TargetInfo(T);
1164    if (isDragonFly)
1165      return new DragonFlyX86_32TargetInfo(T);
1166    if (isFreeBSD)
1167      return new FreeBSDX86_32TargetInfo(T);
1168    if (isWindows)
1169      return new WindowsX86_32TargetInfo(T);
1170    return new X86_32TargetInfo(T);
1171  }
1172
1173  return NULL;
1174}
1175
1176