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1 //===--- ToolChains.cpp - ToolChain Implementations -----------------------===//
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 #include "ToolChains.h"
11 
12 #include "clang/Driver/Arg.h"
13 #include "clang/Driver/ArgList.h"
14 #include "clang/Driver/Compilation.h"
15 #include "clang/Driver/Driver.h"
16 #include "clang/Driver/DriverDiagnostic.h"
17 #include "clang/Driver/OptTable.h"
18 #include "clang/Driver/Option.h"
19 #include "clang/Driver/Options.h"
20 #include "clang/Basic/ObjCRuntime.h"
21 #include "clang/Basic/Version.h"
22 
23 #include "llvm/ADT/SmallString.h"
24 #include "llvm/ADT/StringExtras.h"
25 #include "llvm/ADT/StringSwitch.h"
26 #include "llvm/ADT/STLExtras.h"
27 #include "llvm/Support/ErrorHandling.h"
28 #include "llvm/Support/FileSystem.h"
29 #include "llvm/Support/MemoryBuffer.h"
30 #include "llvm/Support/raw_ostream.h"
31 #include "llvm/Support/Path.h"
32 #include "llvm/Support/system_error.h"
33 
34 #include <cstdlib> // ::getenv
35 
36 #include "clang/Config/config.h" // for GCC_INSTALL_PREFIX
37 
38 using namespace clang::driver;
39 using namespace clang::driver::toolchains;
40 using namespace clang;
41 
42 /// Darwin - Darwin tool chain for i386 and x86_64.
43 
Darwin(const Driver & D,const llvm::Triple & Triple)44 Darwin::Darwin(const Driver &D, const llvm::Triple& Triple)
45   : ToolChain(D, Triple), TargetInitialized(false)
46 {
47   // Compute the initial Darwin version from the triple
48   unsigned Major, Minor, Micro;
49   if (!Triple.getMacOSXVersion(Major, Minor, Micro))
50     getDriver().Diag(diag::err_drv_invalid_darwin_version) <<
51       Triple.getOSName();
52   llvm::raw_string_ostream(MacosxVersionMin)
53     << Major << '.' << Minor << '.' << Micro;
54 
55   // FIXME: DarwinVersion is only used to find GCC's libexec directory.
56   // It should be removed when we stop supporting that.
57   DarwinVersion[0] = Minor + 4;
58   DarwinVersion[1] = Micro;
59   DarwinVersion[2] = 0;
60 
61   // Compute the initial iOS version from the triple
62   Triple.getiOSVersion(Major, Minor, Micro);
63   llvm::raw_string_ostream(iOSVersionMin)
64     << Major << '.' << Minor << '.' << Micro;
65 }
66 
LookupTypeForExtension(const char * Ext) const67 types::ID Darwin::LookupTypeForExtension(const char *Ext) const {
68   types::ID Ty = types::lookupTypeForExtension(Ext);
69 
70   // Darwin always preprocesses assembly files (unless -x is used explicitly).
71   if (Ty == types::TY_PP_Asm)
72     return types::TY_Asm;
73 
74   return Ty;
75 }
76 
HasNativeLLVMSupport() const77 bool Darwin::HasNativeLLVMSupport() const {
78   return true;
79 }
80 
81 /// Darwin provides an ARC runtime starting in MacOS X 10.7 and iOS 5.0.
getDefaultObjCRuntime(bool isNonFragile) const82 ObjCRuntime Darwin::getDefaultObjCRuntime(bool isNonFragile) const {
83   if (isTargetIPhoneOS()) {
84     return ObjCRuntime(ObjCRuntime::iOS, TargetVersion);
85   } else if (TargetSimulatorVersionFromDefines != VersionTuple()) {
86     return ObjCRuntime(ObjCRuntime::iOS, TargetSimulatorVersionFromDefines);
87   } else {
88     if (isNonFragile) {
89       return ObjCRuntime(ObjCRuntime::MacOSX, TargetVersion);
90     } else {
91       return ObjCRuntime(ObjCRuntime::FragileMacOSX, TargetVersion);
92     }
93   }
94 }
95 
96 /// Darwin provides a blocks runtime starting in MacOS X 10.6 and iOS 3.2.
hasBlocksRuntime() const97 bool Darwin::hasBlocksRuntime() const {
98   if (isTargetIPhoneOS())
99     return !isIPhoneOSVersionLT(3, 2);
100   else
101     return !isMacosxVersionLT(10, 6);
102 }
103 
GetArmArchForMArch(StringRef Value)104 static const char *GetArmArchForMArch(StringRef Value) {
105   return llvm::StringSwitch<const char*>(Value)
106     .Case("armv6k", "armv6")
107     .Case("armv5tej", "armv5")
108     .Case("xscale", "xscale")
109     .Case("armv4t", "armv4t")
110     .Case("armv7", "armv7")
111     .Cases("armv7a", "armv7-a", "armv7")
112     .Cases("armv7r", "armv7-r", "armv7")
113     .Cases("armv7m", "armv7-m", "armv7")
114     .Default(0);
115 }
116 
GetArmArchForMCpu(StringRef Value)117 static const char *GetArmArchForMCpu(StringRef Value) {
118   return llvm::StringSwitch<const char *>(Value)
119     .Cases("arm9e", "arm946e-s", "arm966e-s", "arm968e-s", "arm926ej-s","armv5")
120     .Cases("arm10e", "arm10tdmi", "armv5")
121     .Cases("arm1020t", "arm1020e", "arm1022e", "arm1026ej-s", "armv5")
122     .Case("xscale", "xscale")
123     .Cases("arm1136j-s", "arm1136jf-s", "arm1176jz-s",
124            "arm1176jzf-s", "cortex-m0", "armv6")
125     .Cases("cortex-a8", "cortex-r4", "cortex-m3", "cortex-a9", "armv7")
126     .Default(0);
127 }
128 
getDarwinArchName(const ArgList & Args) const129 StringRef Darwin::getDarwinArchName(const ArgList &Args) const {
130   switch (getTriple().getArch()) {
131   default:
132     return getArchName();
133 
134   case llvm::Triple::thumb:
135   case llvm::Triple::arm: {
136     if (const Arg *A = Args.getLastArg(options::OPT_march_EQ))
137       if (const char *Arch = GetArmArchForMArch(A->getValue(Args)))
138         return Arch;
139 
140     if (const Arg *A = Args.getLastArg(options::OPT_mcpu_EQ))
141       if (const char *Arch = GetArmArchForMCpu(A->getValue(Args)))
142         return Arch;
143 
144     return "arm";
145   }
146   }
147 }
148 
~Darwin()149 Darwin::~Darwin() {
150   // Free tool implementations.
151   for (llvm::DenseMap<unsigned, Tool*>::iterator
152          it = Tools.begin(), ie = Tools.end(); it != ie; ++it)
153     delete it->second;
154 }
155 
ComputeEffectiveClangTriple(const ArgList & Args,types::ID InputType) const156 std::string Darwin::ComputeEffectiveClangTriple(const ArgList &Args,
157                                                 types::ID InputType) const {
158   llvm::Triple Triple(ComputeLLVMTriple(Args, InputType));
159 
160   // If the target isn't initialized (e.g., an unknown Darwin platform, return
161   // the default triple).
162   if (!isTargetInitialized())
163     return Triple.getTriple();
164 
165   SmallString<16> Str;
166   Str += isTargetIPhoneOS() ? "ios" : "macosx";
167   Str += getTargetVersion().getAsString();
168   Triple.setOSName(Str);
169 
170   return Triple.getTriple();
171 }
172 
anchor()173 void Generic_ELF::anchor() {}
174 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const175 Tool &Darwin::SelectTool(const Compilation &C, const JobAction &JA,
176                          const ActionList &Inputs) const {
177   Action::ActionClass Key = JA.getKind();
178   bool useClang = false;
179 
180   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple())) {
181     useClang = true;
182     // Fallback to llvm-gcc for i386 kext compiles, we don't support that ABI.
183     if (!getDriver().shouldForceClangUse() &&
184         Inputs.size() == 1 &&
185         types::isCXX(Inputs[0]->getType()) &&
186         getTriple().isOSDarwin() &&
187         getTriple().getArch() == llvm::Triple::x86 &&
188         (C.getArgs().getLastArg(options::OPT_fapple_kext) ||
189          C.getArgs().getLastArg(options::OPT_mkernel)))
190       useClang = false;
191   }
192 
193   // FIXME: This seems like a hacky way to choose clang frontend.
194   if (useClang)
195     Key = Action::AnalyzeJobClass;
196 
197   bool UseIntegratedAs = C.getArgs().hasFlag(options::OPT_integrated_as,
198                                              options::OPT_no_integrated_as,
199                                              IsIntegratedAssemblerDefault());
200 
201   Tool *&T = Tools[Key];
202   if (!T) {
203     switch (Key) {
204     case Action::InputClass:
205     case Action::BindArchClass:
206       llvm_unreachable("Invalid tool kind.");
207     case Action::PreprocessJobClass:
208       T = new tools::darwin::Preprocess(*this); break;
209     case Action::AnalyzeJobClass:
210     case Action::MigrateJobClass:
211       T = new tools::Clang(*this); break;
212     case Action::PrecompileJobClass:
213     case Action::CompileJobClass:
214       T = new tools::darwin::Compile(*this); break;
215     case Action::AssembleJobClass: {
216       if (UseIntegratedAs)
217         T = new tools::ClangAs(*this);
218       else
219         T = new tools::darwin::Assemble(*this);
220       break;
221     }
222     case Action::LinkJobClass:
223       T = new tools::darwin::Link(*this); break;
224     case Action::LipoJobClass:
225       T = new tools::darwin::Lipo(*this); break;
226     case Action::DsymutilJobClass:
227       T = new tools::darwin::Dsymutil(*this); break;
228     case Action::VerifyJobClass:
229       T = new tools::darwin::VerifyDebug(*this); break;
230     }
231   }
232 
233   return *T;
234 }
235 
236 
DarwinClang(const Driver & D,const llvm::Triple & Triple)237 DarwinClang::DarwinClang(const Driver &D, const llvm::Triple& Triple)
238   : Darwin(D, Triple)
239 {
240   getProgramPaths().push_back(getDriver().getInstalledDir());
241   if (getDriver().getInstalledDir() != getDriver().Dir)
242     getProgramPaths().push_back(getDriver().Dir);
243 
244   // We expect 'as', 'ld', etc. to be adjacent to our install dir.
245   getProgramPaths().push_back(getDriver().getInstalledDir());
246   if (getDriver().getInstalledDir() != getDriver().Dir)
247     getProgramPaths().push_back(getDriver().Dir);
248 
249   // For fallback, we need to know how to find the GCC cc1 executables, so we
250   // also add the GCC libexec paths. This is legacy code that can be removed
251   // once fallback is no longer useful.
252   AddGCCLibexecPath(DarwinVersion[0]);
253   AddGCCLibexecPath(DarwinVersion[0] - 2);
254   AddGCCLibexecPath(DarwinVersion[0] - 1);
255   AddGCCLibexecPath(DarwinVersion[0] + 1);
256   AddGCCLibexecPath(DarwinVersion[0] + 2);
257 }
258 
AddGCCLibexecPath(unsigned darwinVersion)259 void DarwinClang::AddGCCLibexecPath(unsigned darwinVersion) {
260   std::string ToolChainDir = "i686-apple-darwin";
261   ToolChainDir += llvm::utostr(darwinVersion);
262   ToolChainDir += "/4.2.1";
263 
264   std::string Path = getDriver().Dir;
265   Path += "/../llvm-gcc-4.2/libexec/gcc/";
266   Path += ToolChainDir;
267   getProgramPaths().push_back(Path);
268 
269   Path = "/usr/llvm-gcc-4.2/libexec/gcc/";
270   Path += ToolChainDir;
271   getProgramPaths().push_back(Path);
272 }
273 
AddLinkARCArgs(const ArgList & Args,ArgStringList & CmdArgs) const274 void DarwinClang::AddLinkARCArgs(const ArgList &Args,
275                                  ArgStringList &CmdArgs) const {
276 
277   CmdArgs.push_back("-force_load");
278   llvm::sys::Path P(getDriver().ClangExecutable);
279   P.eraseComponent(); // 'clang'
280   P.eraseComponent(); // 'bin'
281   P.appendComponent("lib");
282   P.appendComponent("arc");
283   P.appendComponent("libarclite_");
284   std::string s = P.str();
285   // Mash in the platform.
286   if (isTargetIOSSimulator())
287     s += "iphonesimulator";
288   else if (isTargetIPhoneOS())
289     s += "iphoneos";
290   // FIXME: Remove this once we depend fully on -mios-simulator-version-min.
291   else if (TargetSimulatorVersionFromDefines != VersionTuple())
292     s += "iphonesimulator";
293   else
294     s += "macosx";
295   s += ".a";
296 
297   CmdArgs.push_back(Args.MakeArgString(s));
298 }
299 
AddLinkRuntimeLib(const ArgList & Args,ArgStringList & CmdArgs,const char * DarwinStaticLib) const300 void DarwinClang::AddLinkRuntimeLib(const ArgList &Args,
301                                     ArgStringList &CmdArgs,
302                                     const char *DarwinStaticLib) const {
303   llvm::sys::Path P(getDriver().ResourceDir);
304   P.appendComponent("lib");
305   P.appendComponent("darwin");
306   P.appendComponent(DarwinStaticLib);
307 
308   // For now, allow missing resource libraries to support developers who may
309   // not have compiler-rt checked out or integrated into their build.
310   bool Exists;
311   if (!llvm::sys::fs::exists(P.str(), Exists) && Exists)
312     CmdArgs.push_back(Args.MakeArgString(P.str()));
313 }
314 
AddLinkRuntimeLibArgs(const ArgList & Args,ArgStringList & CmdArgs) const315 void DarwinClang::AddLinkRuntimeLibArgs(const ArgList &Args,
316                                         ArgStringList &CmdArgs) const {
317   // Darwin only supports the compiler-rt based runtime libraries.
318   switch (GetRuntimeLibType(Args)) {
319   case ToolChain::RLT_CompilerRT:
320     break;
321   default:
322     getDriver().Diag(diag::err_drv_unsupported_rtlib_for_platform)
323       << Args.getLastArg(options::OPT_rtlib_EQ)->getValue(Args) << "darwin";
324     return;
325   }
326 
327   // Darwin doesn't support real static executables, don't link any runtime
328   // libraries with -static.
329   if (Args.hasArg(options::OPT_static))
330     return;
331 
332   // Reject -static-libgcc for now, we can deal with this when and if someone
333   // cares. This is useful in situations where someone wants to statically link
334   // something like libstdc++, and needs its runtime support routines.
335   if (const Arg *A = Args.getLastArg(options::OPT_static_libgcc)) {
336     getDriver().Diag(diag::err_drv_unsupported_opt)
337       << A->getAsString(Args);
338     return;
339   }
340 
341   // If we are building profile support, link that library in.
342   if (Args.hasArg(options::OPT_fprofile_arcs) ||
343       Args.hasArg(options::OPT_fprofile_generate) ||
344       Args.hasArg(options::OPT_fcreate_profile) ||
345       Args.hasArg(options::OPT_coverage)) {
346     // Select the appropriate runtime library for the target.
347     if (isTargetIPhoneOS()) {
348       AddLinkRuntimeLib(Args, CmdArgs, "libclang_rt.profile_ios.a");
349     } else {
350       AddLinkRuntimeLib(Args, CmdArgs, "libclang_rt.profile_osx.a");
351     }
352   }
353 
354   // Add ASAN runtime library, if required. Dynamic libraries and bundles
355   // should not be linked with the runtime library.
356   if (Args.hasFlag(options::OPT_faddress_sanitizer,
357                    options::OPT_fno_address_sanitizer, false)) {
358     if (Args.hasArg(options::OPT_dynamiclib) ||
359         Args.hasArg(options::OPT_bundle)) return;
360     if (isTargetIPhoneOS()) {
361       getDriver().Diag(diag::err_drv_clang_unsupported_per_platform)
362         << "-faddress-sanitizer";
363     } else {
364       AddLinkRuntimeLib(Args, CmdArgs, "libclang_rt.asan_osx.a");
365 
366       // The ASAN runtime library requires C++ and CoreFoundation.
367       AddCXXStdlibLibArgs(Args, CmdArgs);
368       CmdArgs.push_back("-framework");
369       CmdArgs.push_back("CoreFoundation");
370     }
371   }
372 
373   // Otherwise link libSystem, then the dynamic runtime library, and finally any
374   // target specific static runtime library.
375   CmdArgs.push_back("-lSystem");
376 
377   // Select the dynamic runtime library and the target specific static library.
378   if (isTargetIPhoneOS()) {
379     // If we are compiling as iOS / simulator, don't attempt to link libgcc_s.1,
380     // it never went into the SDK.
381     // Linking against libgcc_s.1 isn't needed for iOS 5.0+
382     if (isIPhoneOSVersionLT(5, 0) && !isTargetIOSSimulator())
383       CmdArgs.push_back("-lgcc_s.1");
384 
385     // We currently always need a static runtime library for iOS.
386     AddLinkRuntimeLib(Args, CmdArgs, "libclang_rt.ios.a");
387   } else {
388     // The dynamic runtime library was merged with libSystem for 10.6 and
389     // beyond; only 10.4 and 10.5 need an additional runtime library.
390     if (isMacosxVersionLT(10, 5))
391       CmdArgs.push_back("-lgcc_s.10.4");
392     else if (isMacosxVersionLT(10, 6))
393       CmdArgs.push_back("-lgcc_s.10.5");
394 
395     // For OS X, we thought we would only need a static runtime library when
396     // targeting 10.4, to provide versions of the static functions which were
397     // omitted from 10.4.dylib.
398     //
399     // Unfortunately, that turned out to not be true, because Darwin system
400     // headers can still use eprintf on i386, and it is not exported from
401     // libSystem. Therefore, we still must provide a runtime library just for
402     // the tiny tiny handful of projects that *might* use that symbol.
403     if (isMacosxVersionLT(10, 5)) {
404       AddLinkRuntimeLib(Args, CmdArgs, "libclang_rt.10.4.a");
405     } else {
406       if (getTriple().getArch() == llvm::Triple::x86)
407         AddLinkRuntimeLib(Args, CmdArgs, "libclang_rt.eprintf.a");
408       AddLinkRuntimeLib(Args, CmdArgs, "libclang_rt.osx.a");
409     }
410   }
411 }
412 
SimulatorVersionDefineName()413 static inline StringRef SimulatorVersionDefineName() {
414   return "__IPHONE_OS_VERSION_MIN_REQUIRED";
415 }
416 
417 /// \brief Parse the simulator version define:
418 /// __IPHONE_OS_VERSION_MIN_REQUIRED=([0-9])([0-9][0-9])([0-9][0-9])
419 // and return the grouped values as integers, e.g:
420 //   __IPHONE_OS_VERSION_MIN_REQUIRED=40201
421 // will return Major=4, Minor=2, Micro=1.
GetVersionFromSimulatorDefine(StringRef define,unsigned & Major,unsigned & Minor,unsigned & Micro)422 static bool GetVersionFromSimulatorDefine(StringRef define,
423                                           unsigned &Major, unsigned &Minor,
424                                           unsigned &Micro) {
425   assert(define.startswith(SimulatorVersionDefineName()));
426   StringRef name, version;
427   llvm::tie(name, version) = define.split('=');
428   if (version.empty())
429     return false;
430   std::string verstr = version.str();
431   char *end;
432   unsigned num = (unsigned) strtol(verstr.c_str(), &end, 10);
433   if (*end != '\0')
434     return false;
435   Major = num / 10000;
436   num = num % 10000;
437   Minor = num / 100;
438   Micro = num % 100;
439   return true;
440 }
441 
AddDeploymentTarget(DerivedArgList & Args) const442 void Darwin::AddDeploymentTarget(DerivedArgList &Args) const {
443   const OptTable &Opts = getDriver().getOpts();
444 
445   // Support allowing the SDKROOT environment variable used by xcrun and other
446   // Xcode tools to define the default sysroot, by making it the default for
447   // isysroot.
448   if (!Args.hasArg(options::OPT_isysroot)) {
449     if (char *env = ::getenv("SDKROOT")) {
450       // We only use this value as the default if it is an absolute path and
451       // exists.
452       if (llvm::sys::path::is_absolute(env) && llvm::sys::fs::exists(env)) {
453         Args.append(Args.MakeSeparateArg(
454                       0, Opts.getOption(options::OPT_isysroot), env));
455       }
456     }
457   }
458 
459   Arg *OSXVersion = Args.getLastArg(options::OPT_mmacosx_version_min_EQ);
460   Arg *iOSVersion = Args.getLastArg(options::OPT_miphoneos_version_min_EQ);
461   Arg *iOSSimVersion = Args.getLastArg(
462     options::OPT_mios_simulator_version_min_EQ);
463 
464   // FIXME: HACK! When compiling for the simulator we don't get a
465   // '-miphoneos-version-min' to help us know whether there is an ARC runtime
466   // or not; try to parse a __IPHONE_OS_VERSION_MIN_REQUIRED
467   // define passed in command-line.
468   if (!iOSVersion && !iOSSimVersion) {
469     for (arg_iterator it = Args.filtered_begin(options::OPT_D),
470            ie = Args.filtered_end(); it != ie; ++it) {
471       StringRef define = (*it)->getValue(Args);
472       if (define.startswith(SimulatorVersionDefineName())) {
473         unsigned Major = 0, Minor = 0, Micro = 0;
474         if (GetVersionFromSimulatorDefine(define, Major, Minor, Micro) &&
475             Major < 10 && Minor < 100 && Micro < 100) {
476           TargetSimulatorVersionFromDefines = VersionTuple(Major, Minor, Micro);
477         }
478         // When using the define to indicate the simulator, we force
479         // 10.6 macosx target.
480         const Option *O = Opts.getOption(options::OPT_mmacosx_version_min_EQ);
481         OSXVersion = Args.MakeJoinedArg(0, O, "10.6");
482         Args.append(OSXVersion);
483         break;
484       }
485     }
486   }
487 
488   if (OSXVersion && (iOSVersion || iOSSimVersion)) {
489     getDriver().Diag(diag::err_drv_argument_not_allowed_with)
490           << OSXVersion->getAsString(Args)
491           << (iOSVersion ? iOSVersion : iOSSimVersion)->getAsString(Args);
492     iOSVersion = iOSSimVersion = 0;
493   } else if (iOSVersion && iOSSimVersion) {
494     getDriver().Diag(diag::err_drv_argument_not_allowed_with)
495           << iOSVersion->getAsString(Args)
496           << iOSSimVersion->getAsString(Args);
497     iOSSimVersion = 0;
498   } else if (!OSXVersion && !iOSVersion && !iOSSimVersion) {
499     // If no deployment target was specified on the command line, check for
500     // environment defines.
501     StringRef OSXTarget;
502     StringRef iOSTarget;
503     StringRef iOSSimTarget;
504     if (char *env = ::getenv("MACOSX_DEPLOYMENT_TARGET"))
505       OSXTarget = env;
506     if (char *env = ::getenv("IPHONEOS_DEPLOYMENT_TARGET"))
507       iOSTarget = env;
508     if (char *env = ::getenv("IOS_SIMULATOR_DEPLOYMENT_TARGET"))
509       iOSSimTarget = env;
510 
511     // If no '-miphoneos-version-min' specified on the command line and
512     // IPHONEOS_DEPLOYMENT_TARGET is not defined, see if we can set the default
513     // based on -isysroot.
514     if (iOSTarget.empty()) {
515       if (const Arg *A = Args.getLastArg(options::OPT_isysroot)) {
516         StringRef first, second;
517         StringRef isysroot = A->getValue(Args);
518         llvm::tie(first, second) = isysroot.split(StringRef("SDKs/iPhoneOS"));
519         if (second != "")
520           iOSTarget = second.substr(0,3);
521       }
522     }
523 
524     // If no OSX or iOS target has been specified and we're compiling for armv7,
525     // go ahead as assume we're targeting iOS.
526     if (OSXTarget.empty() && iOSTarget.empty() &&
527         getDarwinArchName(Args) == "armv7")
528         iOSTarget = iOSVersionMin;
529 
530     // Handle conflicting deployment targets
531     //
532     // FIXME: Don't hardcode default here.
533 
534     // Do not allow conflicts with the iOS simulator target.
535     if (!iOSSimTarget.empty() && (!OSXTarget.empty() || !iOSTarget.empty())) {
536       getDriver().Diag(diag::err_drv_conflicting_deployment_targets)
537         << "IOS_SIMULATOR_DEPLOYMENT_TARGET"
538         << (!OSXTarget.empty() ? "MACOSX_DEPLOYMENT_TARGET" :
539             "IPHONEOS_DEPLOYMENT_TARGET");
540     }
541 
542     // Allow conflicts among OSX and iOS for historical reasons, but choose the
543     // default platform.
544     if (!OSXTarget.empty() && !iOSTarget.empty()) {
545       if (getTriple().getArch() == llvm::Triple::arm ||
546           getTriple().getArch() == llvm::Triple::thumb)
547         OSXTarget = "";
548       else
549         iOSTarget = "";
550     }
551 
552     if (!OSXTarget.empty()) {
553       const Option *O = Opts.getOption(options::OPT_mmacosx_version_min_EQ);
554       OSXVersion = Args.MakeJoinedArg(0, O, OSXTarget);
555       Args.append(OSXVersion);
556     } else if (!iOSTarget.empty()) {
557       const Option *O = Opts.getOption(options::OPT_miphoneos_version_min_EQ);
558       iOSVersion = Args.MakeJoinedArg(0, O, iOSTarget);
559       Args.append(iOSVersion);
560     } else if (!iOSSimTarget.empty()) {
561       const Option *O = Opts.getOption(
562         options::OPT_mios_simulator_version_min_EQ);
563       iOSSimVersion = Args.MakeJoinedArg(0, O, iOSSimTarget);
564       Args.append(iOSSimVersion);
565     } else {
566       // Otherwise, assume we are targeting OS X.
567       const Option *O = Opts.getOption(options::OPT_mmacosx_version_min_EQ);
568       OSXVersion = Args.MakeJoinedArg(0, O, MacosxVersionMin);
569       Args.append(OSXVersion);
570     }
571   }
572 
573   // Reject invalid architecture combinations.
574   if (iOSSimVersion && (getTriple().getArch() != llvm::Triple::x86 &&
575                         getTriple().getArch() != llvm::Triple::x86_64)) {
576     getDriver().Diag(diag::err_drv_invalid_arch_for_deployment_target)
577       << getTriple().getArchName() << iOSSimVersion->getAsString(Args);
578   }
579 
580   // Set the tool chain target information.
581   unsigned Major, Minor, Micro;
582   bool HadExtra;
583   if (OSXVersion) {
584     assert((!iOSVersion && !iOSSimVersion) && "Unknown target platform!");
585     if (!Driver::GetReleaseVersion(OSXVersion->getValue(Args), Major, Minor,
586                                    Micro, HadExtra) || HadExtra ||
587         Major != 10 || Minor >= 100 || Micro >= 100)
588       getDriver().Diag(diag::err_drv_invalid_version_number)
589         << OSXVersion->getAsString(Args);
590   } else {
591     const Arg *Version = iOSVersion ? iOSVersion : iOSSimVersion;
592     assert(Version && "Unknown target platform!");
593     if (!Driver::GetReleaseVersion(Version->getValue(Args), Major, Minor,
594                                    Micro, HadExtra) || HadExtra ||
595         Major >= 10 || Minor >= 100 || Micro >= 100)
596       getDriver().Diag(diag::err_drv_invalid_version_number)
597         << Version->getAsString(Args);
598   }
599 
600   bool IsIOSSim = bool(iOSSimVersion);
601 
602   // In GCC, the simulator historically was treated as being OS X in some
603   // contexts, like determining the link logic, despite generally being called
604   // with an iOS deployment target. For compatibility, we detect the
605   // simulator as iOS + x86, and treat it differently in a few contexts.
606   if (iOSVersion && (getTriple().getArch() == llvm::Triple::x86 ||
607                      getTriple().getArch() == llvm::Triple::x86_64))
608     IsIOSSim = true;
609 
610   setTarget(/*IsIPhoneOS=*/ !OSXVersion, Major, Minor, Micro, IsIOSSim);
611 }
612 
AddCXXStdlibLibArgs(const ArgList & Args,ArgStringList & CmdArgs) const613 void DarwinClang::AddCXXStdlibLibArgs(const ArgList &Args,
614                                       ArgStringList &CmdArgs) const {
615   CXXStdlibType Type = GetCXXStdlibType(Args);
616 
617   switch (Type) {
618   case ToolChain::CST_Libcxx:
619     CmdArgs.push_back("-lc++");
620     break;
621 
622   case ToolChain::CST_Libstdcxx: {
623     // Unfortunately, -lstdc++ doesn't always exist in the standard search path;
624     // it was previously found in the gcc lib dir. However, for all the Darwin
625     // platforms we care about it was -lstdc++.6, so we search for that
626     // explicitly if we can't see an obvious -lstdc++ candidate.
627 
628     // Check in the sysroot first.
629     bool Exists;
630     if (const Arg *A = Args.getLastArg(options::OPT_isysroot)) {
631       llvm::sys::Path P(A->getValue(Args));
632       P.appendComponent("usr");
633       P.appendComponent("lib");
634       P.appendComponent("libstdc++.dylib");
635 
636       if (llvm::sys::fs::exists(P.str(), Exists) || !Exists) {
637         P.eraseComponent();
638         P.appendComponent("libstdc++.6.dylib");
639         if (!llvm::sys::fs::exists(P.str(), Exists) && Exists) {
640           CmdArgs.push_back(Args.MakeArgString(P.str()));
641           return;
642         }
643       }
644     }
645 
646     // Otherwise, look in the root.
647     // FIXME: This should be removed someday when we don't have to care about
648     // 10.6 and earlier, where /usr/lib/libstdc++.dylib does not exist.
649     if ((llvm::sys::fs::exists("/usr/lib/libstdc++.dylib", Exists) || !Exists)&&
650       (!llvm::sys::fs::exists("/usr/lib/libstdc++.6.dylib", Exists) && Exists)){
651       CmdArgs.push_back("/usr/lib/libstdc++.6.dylib");
652       return;
653     }
654 
655     // Otherwise, let the linker search.
656     CmdArgs.push_back("-lstdc++");
657     break;
658   }
659   }
660 }
661 
AddCCKextLibArgs(const ArgList & Args,ArgStringList & CmdArgs) const662 void DarwinClang::AddCCKextLibArgs(const ArgList &Args,
663                                    ArgStringList &CmdArgs) const {
664 
665   // For Darwin platforms, use the compiler-rt-based support library
666   // instead of the gcc-provided one (which is also incidentally
667   // only present in the gcc lib dir, which makes it hard to find).
668 
669   llvm::sys::Path P(getDriver().ResourceDir);
670   P.appendComponent("lib");
671   P.appendComponent("darwin");
672   P.appendComponent("libclang_rt.cc_kext.a");
673 
674   // For now, allow missing resource libraries to support developers who may
675   // not have compiler-rt checked out or integrated into their build.
676   bool Exists;
677   if (!llvm::sys::fs::exists(P.str(), Exists) && Exists)
678     CmdArgs.push_back(Args.MakeArgString(P.str()));
679 }
680 
TranslateArgs(const DerivedArgList & Args,const char * BoundArch) const681 DerivedArgList *Darwin::TranslateArgs(const DerivedArgList &Args,
682                                       const char *BoundArch) const {
683   DerivedArgList *DAL = new DerivedArgList(Args.getBaseArgs());
684   const OptTable &Opts = getDriver().getOpts();
685 
686   // FIXME: We really want to get out of the tool chain level argument
687   // translation business, as it makes the driver functionality much
688   // more opaque. For now, we follow gcc closely solely for the
689   // purpose of easily achieving feature parity & testability. Once we
690   // have something that works, we should reevaluate each translation
691   // and try to push it down into tool specific logic.
692 
693   for (ArgList::const_iterator it = Args.begin(),
694          ie = Args.end(); it != ie; ++it) {
695     Arg *A = *it;
696 
697     if (A->getOption().matches(options::OPT_Xarch__)) {
698       // Skip this argument unless the architecture matches either the toolchain
699       // triple arch, or the arch being bound.
700       //
701       // FIXME: Canonicalize name.
702       StringRef XarchArch = A->getValue(Args, 0);
703       if (!(XarchArch == getArchName()  ||
704             (BoundArch && XarchArch == BoundArch)))
705         continue;
706 
707       Arg *OriginalArg = A;
708       unsigned Index = Args.getBaseArgs().MakeIndex(A->getValue(Args, 1));
709       unsigned Prev = Index;
710       Arg *XarchArg = Opts.ParseOneArg(Args, Index);
711 
712       // If the argument parsing failed or more than one argument was
713       // consumed, the -Xarch_ argument's parameter tried to consume
714       // extra arguments. Emit an error and ignore.
715       //
716       // We also want to disallow any options which would alter the
717       // driver behavior; that isn't going to work in our model. We
718       // use isDriverOption() as an approximation, although things
719       // like -O4 are going to slip through.
720       if (!XarchArg || Index > Prev + 1) {
721         getDriver().Diag(diag::err_drv_invalid_Xarch_argument_with_args)
722           << A->getAsString(Args);
723         continue;
724       } else if (XarchArg->getOption().isDriverOption()) {
725         getDriver().Diag(diag::err_drv_invalid_Xarch_argument_isdriver)
726           << A->getAsString(Args);
727         continue;
728       }
729 
730       XarchArg->setBaseArg(A);
731       A = XarchArg;
732 
733       DAL->AddSynthesizedArg(A);
734 
735       // Linker input arguments require custom handling. The problem is that we
736       // have already constructed the phase actions, so we can not treat them as
737       // "input arguments".
738       if (A->getOption().isLinkerInput()) {
739         // Convert the argument into individual Zlinker_input_args.
740         for (unsigned i = 0, e = A->getNumValues(); i != e; ++i) {
741           DAL->AddSeparateArg(OriginalArg,
742                               Opts.getOption(options::OPT_Zlinker_input),
743                               A->getValue(Args, i));
744 
745         }
746         continue;
747       }
748     }
749 
750     // Sob. These is strictly gcc compatible for the time being. Apple
751     // gcc translates options twice, which means that self-expanding
752     // options add duplicates.
753     switch ((options::ID) A->getOption().getID()) {
754     default:
755       DAL->append(A);
756       break;
757 
758     case options::OPT_mkernel:
759     case options::OPT_fapple_kext:
760       DAL->append(A);
761       DAL->AddFlagArg(A, Opts.getOption(options::OPT_static));
762       break;
763 
764     case options::OPT_dependency_file:
765       DAL->AddSeparateArg(A, Opts.getOption(options::OPT_MF),
766                           A->getValue(Args));
767       break;
768 
769     case options::OPT_gfull:
770       DAL->AddFlagArg(A, Opts.getOption(options::OPT_g_Flag));
771       DAL->AddFlagArg(A,
772                Opts.getOption(options::OPT_fno_eliminate_unused_debug_symbols));
773       break;
774 
775     case options::OPT_gused:
776       DAL->AddFlagArg(A, Opts.getOption(options::OPT_g_Flag));
777       DAL->AddFlagArg(A,
778              Opts.getOption(options::OPT_feliminate_unused_debug_symbols));
779       break;
780 
781     case options::OPT_shared:
782       DAL->AddFlagArg(A, Opts.getOption(options::OPT_dynamiclib));
783       break;
784 
785     case options::OPT_fconstant_cfstrings:
786       DAL->AddFlagArg(A, Opts.getOption(options::OPT_mconstant_cfstrings));
787       break;
788 
789     case options::OPT_fno_constant_cfstrings:
790       DAL->AddFlagArg(A, Opts.getOption(options::OPT_mno_constant_cfstrings));
791       break;
792 
793     case options::OPT_Wnonportable_cfstrings:
794       DAL->AddFlagArg(A,
795                       Opts.getOption(options::OPT_mwarn_nonportable_cfstrings));
796       break;
797 
798     case options::OPT_Wno_nonportable_cfstrings:
799       DAL->AddFlagArg(A,
800                    Opts.getOption(options::OPT_mno_warn_nonportable_cfstrings));
801       break;
802 
803     case options::OPT_fpascal_strings:
804       DAL->AddFlagArg(A, Opts.getOption(options::OPT_mpascal_strings));
805       break;
806 
807     case options::OPT_fno_pascal_strings:
808       DAL->AddFlagArg(A, Opts.getOption(options::OPT_mno_pascal_strings));
809       break;
810     }
811   }
812 
813   if (getTriple().getArch() == llvm::Triple::x86 ||
814       getTriple().getArch() == llvm::Triple::x86_64)
815     if (!Args.hasArgNoClaim(options::OPT_mtune_EQ))
816       DAL->AddJoinedArg(0, Opts.getOption(options::OPT_mtune_EQ), "core2");
817 
818   // Add the arch options based on the particular spelling of -arch, to match
819   // how the driver driver works.
820   if (BoundArch) {
821     StringRef Name = BoundArch;
822     const Option *MCpu = Opts.getOption(options::OPT_mcpu_EQ);
823     const Option *MArch = Opts.getOption(options::OPT_march_EQ);
824 
825     // This code must be kept in sync with LLVM's getArchTypeForDarwinArch,
826     // which defines the list of which architectures we accept.
827     if (Name == "ppc")
828       ;
829     else if (Name == "ppc601")
830       DAL->AddJoinedArg(0, MCpu, "601");
831     else if (Name == "ppc603")
832       DAL->AddJoinedArg(0, MCpu, "603");
833     else if (Name == "ppc604")
834       DAL->AddJoinedArg(0, MCpu, "604");
835     else if (Name == "ppc604e")
836       DAL->AddJoinedArg(0, MCpu, "604e");
837     else if (Name == "ppc750")
838       DAL->AddJoinedArg(0, MCpu, "750");
839     else if (Name == "ppc7400")
840       DAL->AddJoinedArg(0, MCpu, "7400");
841     else if (Name == "ppc7450")
842       DAL->AddJoinedArg(0, MCpu, "7450");
843     else if (Name == "ppc970")
844       DAL->AddJoinedArg(0, MCpu, "970");
845 
846     else if (Name == "ppc64")
847       DAL->AddFlagArg(0, Opts.getOption(options::OPT_m64));
848 
849     else if (Name == "i386")
850       ;
851     else if (Name == "i486")
852       DAL->AddJoinedArg(0, MArch, "i486");
853     else if (Name == "i586")
854       DAL->AddJoinedArg(0, MArch, "i586");
855     else if (Name == "i686")
856       DAL->AddJoinedArg(0, MArch, "i686");
857     else if (Name == "pentium")
858       DAL->AddJoinedArg(0, MArch, "pentium");
859     else if (Name == "pentium2")
860       DAL->AddJoinedArg(0, MArch, "pentium2");
861     else if (Name == "pentpro")
862       DAL->AddJoinedArg(0, MArch, "pentiumpro");
863     else if (Name == "pentIIm3")
864       DAL->AddJoinedArg(0, MArch, "pentium2");
865 
866     else if (Name == "x86_64")
867       DAL->AddFlagArg(0, Opts.getOption(options::OPT_m64));
868 
869     else if (Name == "arm")
870       DAL->AddJoinedArg(0, MArch, "armv4t");
871     else if (Name == "armv4t")
872       DAL->AddJoinedArg(0, MArch, "armv4t");
873     else if (Name == "armv5")
874       DAL->AddJoinedArg(0, MArch, "armv5tej");
875     else if (Name == "xscale")
876       DAL->AddJoinedArg(0, MArch, "xscale");
877     else if (Name == "armv6")
878       DAL->AddJoinedArg(0, MArch, "armv6k");
879     else if (Name == "armv7")
880       DAL->AddJoinedArg(0, MArch, "armv7a");
881 
882     else
883       llvm_unreachable("invalid Darwin arch");
884   }
885 
886   // Add an explicit version min argument for the deployment target. We do this
887   // after argument translation because -Xarch_ arguments may add a version min
888   // argument.
889   if (BoundArch)
890     AddDeploymentTarget(*DAL);
891 
892   // Validate the C++ standard library choice.
893   CXXStdlibType Type = GetCXXStdlibType(*DAL);
894   if (Type == ToolChain::CST_Libcxx) {
895     // Check whether the target provides libc++.
896     StringRef where;
897 
898     // Complain about targetting iOS < 5.0 in any way.
899     if (TargetSimulatorVersionFromDefines != VersionTuple()) {
900       if (TargetSimulatorVersionFromDefines < VersionTuple(5, 0))
901         where = "iOS 5.0";
902     } else if (isTargetIPhoneOS()) {
903       if (isIPhoneOSVersionLT(5, 0))
904         where = "iOS 5.0";
905     }
906 
907     if (where != StringRef()) {
908       getDriver().Diag(clang::diag::err_drv_invalid_libcxx_deployment)
909         << where;
910     }
911   }
912 
913   return DAL;
914 }
915 
IsUnwindTablesDefault() const916 bool Darwin::IsUnwindTablesDefault() const {
917   // FIXME: Gross; we should probably have some separate target
918   // definition, possibly even reusing the one in clang.
919   return getArchName() == "x86_64";
920 }
921 
UseDwarfDebugFlags() const922 bool Darwin::UseDwarfDebugFlags() const {
923   if (const char *S = ::getenv("RC_DEBUG_OPTIONS"))
924     return S[0] != '\0';
925   return false;
926 }
927 
UseSjLjExceptions() const928 bool Darwin::UseSjLjExceptions() const {
929   // Darwin uses SjLj exceptions on ARM.
930   return (getTriple().getArch() == llvm::Triple::arm ||
931           getTriple().getArch() == llvm::Triple::thumb);
932 }
933 
GetDefaultRelocationModel() const934 const char *Darwin::GetDefaultRelocationModel() const {
935   return "pic";
936 }
937 
GetForcedPicModel() const938 const char *Darwin::GetForcedPicModel() const {
939   if (getArchName() == "x86_64")
940     return "pic";
941   return 0;
942 }
943 
SupportsProfiling() const944 bool Darwin::SupportsProfiling() const {
945   // Profiling instrumentation is only supported on x86.
946   return getArchName() == "i386" || getArchName() == "x86_64";
947 }
948 
SupportsObjCGC() const949 bool Darwin::SupportsObjCGC() const {
950   // Garbage collection is supported everywhere except on iPhone OS.
951   return !isTargetIPhoneOS();
952 }
953 
CheckObjCARC() const954 void Darwin::CheckObjCARC() const {
955   if (isTargetIPhoneOS() || !isMacosxVersionLT(10, 6))
956     return;
957   getDriver().Diag(diag::err_arc_unsupported_on_toolchain);
958 }
959 
960 std::string
ComputeEffectiveClangTriple(const ArgList & Args,types::ID InputType) const961 Darwin_Generic_GCC::ComputeEffectiveClangTriple(const ArgList &Args,
962                                                 types::ID InputType) const {
963   return ComputeLLVMTriple(Args, InputType);
964 }
965 
966 /// Generic_GCC - A tool chain using the 'gcc' command to perform
967 /// all subcommands; this relies on gcc translating the majority of
968 /// command line options.
969 
970 /// \brief Parse a GCCVersion object out of a string of text.
971 ///
972 /// This is the primary means of forming GCCVersion objects.
973 /*static*/
Parse(StringRef VersionText)974 Generic_GCC::GCCVersion Linux::GCCVersion::Parse(StringRef VersionText) {
975   const GCCVersion BadVersion = { VersionText.str(), -1, -1, -1, "" };
976   std::pair<StringRef, StringRef> First = VersionText.split('.');
977   std::pair<StringRef, StringRef> Second = First.second.split('.');
978 
979   GCCVersion GoodVersion = { VersionText.str(), -1, -1, -1, "" };
980   if (First.first.getAsInteger(10, GoodVersion.Major) ||
981       GoodVersion.Major < 0)
982     return BadVersion;
983   if (Second.first.getAsInteger(10, GoodVersion.Minor) ||
984       GoodVersion.Minor < 0)
985     return BadVersion;
986 
987   // First look for a number prefix and parse that if present. Otherwise just
988   // stash the entire patch string in the suffix, and leave the number
989   // unspecified. This covers versions strings such as:
990   //   4.4
991   //   4.4.0
992   //   4.4.x
993   //   4.4.2-rc4
994   //   4.4.x-patched
995   // And retains any patch number it finds.
996   StringRef PatchText = GoodVersion.PatchSuffix = Second.second.str();
997   if (!PatchText.empty()) {
998     if (unsigned EndNumber = PatchText.find_first_not_of("0123456789")) {
999       // Try to parse the number and any suffix.
1000       if (PatchText.slice(0, EndNumber).getAsInteger(10, GoodVersion.Patch) ||
1001           GoodVersion.Patch < 0)
1002         return BadVersion;
1003       GoodVersion.PatchSuffix = PatchText.substr(EndNumber).str();
1004     }
1005   }
1006 
1007   return GoodVersion;
1008 }
1009 
1010 /// \brief Less-than for GCCVersion, implementing a Strict Weak Ordering.
operator <(const GCCVersion & RHS) const1011 bool Generic_GCC::GCCVersion::operator<(const GCCVersion &RHS) const {
1012   if (Major < RHS.Major) return true; if (Major > RHS.Major) return false;
1013   if (Minor < RHS.Minor) return true; if (Minor > RHS.Minor) return false;
1014 
1015   // Note that we rank versions with *no* patch specified is better than ones
1016   // hard-coding a patch version. Thus if the RHS has no patch, it always
1017   // wins, and the LHS only wins if it has no patch and the RHS does have
1018   // a patch.
1019   if (RHS.Patch == -1) return true;   if (Patch == -1) return false;
1020   if (Patch < RHS.Patch) return true; if (Patch > RHS.Patch) return false;
1021   if (PatchSuffix == RHS.PatchSuffix) return false;
1022 
1023   // Finally, between completely tied version numbers, the version with the
1024   // suffix loses as we prefer full releases.
1025   if (RHS.PatchSuffix.empty()) return true;
1026   return false;
1027 }
1028 
getGCCToolchainDir(const ArgList & Args)1029 static StringRef getGCCToolchainDir(const ArgList &Args) {
1030   const Arg *A = Args.getLastArg(options::OPT_gcc_toolchain);
1031   if (A)
1032     return A->getValue(Args);
1033   return GCC_INSTALL_PREFIX;
1034 }
1035 
1036 /// \brief Construct a GCCInstallationDetector from the driver.
1037 ///
1038 /// This performs all of the autodetection and sets up the various paths.
1039 /// Once constructed, a GCCInstallationDetector is essentially immutable.
1040 ///
1041 /// FIXME: We shouldn't need an explicit TargetTriple parameter here, and
1042 /// should instead pull the target out of the driver. This is currently
1043 /// necessary because the driver doesn't store the final version of the target
1044 /// triple.
GCCInstallationDetector(const Driver & D,const llvm::Triple & TargetTriple,const ArgList & Args)1045 Generic_GCC::GCCInstallationDetector::GCCInstallationDetector(
1046     const Driver &D,
1047     const llvm::Triple &TargetTriple,
1048     const ArgList &Args)
1049     : IsValid(false) {
1050   llvm::Triple MultiarchTriple
1051     = TargetTriple.isArch32Bit() ? TargetTriple.get64BitArchVariant()
1052                                  : TargetTriple.get32BitArchVariant();
1053   llvm::Triple::ArchType TargetArch = TargetTriple.getArch();
1054   // The library directories which may contain GCC installations.
1055   SmallVector<StringRef, 4> CandidateLibDirs, CandidateMultiarchLibDirs;
1056   // The compatible GCC triples for this particular architecture.
1057   SmallVector<StringRef, 10> CandidateTripleAliases;
1058   SmallVector<StringRef, 10> CandidateMultiarchTripleAliases;
1059   CollectLibDirsAndTriples(TargetTriple, MultiarchTriple, CandidateLibDirs,
1060                            CandidateTripleAliases,
1061                            CandidateMultiarchLibDirs,
1062                            CandidateMultiarchTripleAliases);
1063 
1064   // Compute the set of prefixes for our search.
1065   SmallVector<std::string, 8> Prefixes(D.PrefixDirs.begin(),
1066                                        D.PrefixDirs.end());
1067 
1068   StringRef GCCToolchainDir = getGCCToolchainDir(Args);
1069   if (GCCToolchainDir != "") {
1070     if (GCCToolchainDir.back() == '/')
1071       GCCToolchainDir = GCCToolchainDir.drop_back(); // remove the /
1072 
1073     Prefixes.push_back(GCCToolchainDir);
1074   } else {
1075     Prefixes.push_back(D.SysRoot);
1076     Prefixes.push_back(D.SysRoot + "/usr");
1077     Prefixes.push_back(D.InstalledDir + "/..");
1078   }
1079 
1080   // Loop over the various components which exist and select the best GCC
1081   // installation available. GCC installs are ranked by version number.
1082   Version = GCCVersion::Parse("0.0.0");
1083   for (unsigned i = 0, ie = Prefixes.size(); i < ie; ++i) {
1084     if (!llvm::sys::fs::exists(Prefixes[i]))
1085       continue;
1086     for (unsigned j = 0, je = CandidateLibDirs.size(); j < je; ++j) {
1087       const std::string LibDir = Prefixes[i] + CandidateLibDirs[j].str();
1088       if (!llvm::sys::fs::exists(LibDir))
1089         continue;
1090       for (unsigned k = 0, ke = CandidateTripleAliases.size(); k < ke; ++k)
1091         ScanLibDirForGCCTriple(TargetArch, LibDir, CandidateTripleAliases[k]);
1092     }
1093     for (unsigned j = 0, je = CandidateMultiarchLibDirs.size(); j < je; ++j) {
1094       const std::string LibDir
1095         = Prefixes[i] + CandidateMultiarchLibDirs[j].str();
1096       if (!llvm::sys::fs::exists(LibDir))
1097         continue;
1098       for (unsigned k = 0, ke = CandidateMultiarchTripleAliases.size(); k < ke;
1099            ++k)
1100         ScanLibDirForGCCTriple(TargetArch, LibDir,
1101                                CandidateMultiarchTripleAliases[k],
1102                                /*NeedsMultiarchSuffix=*/true);
1103     }
1104   }
1105 }
1106 
CollectLibDirsAndTriples(const llvm::Triple & TargetTriple,const llvm::Triple & MultiarchTriple,SmallVectorImpl<StringRef> & LibDirs,SmallVectorImpl<StringRef> & TripleAliases,SmallVectorImpl<StringRef> & MultiarchLibDirs,SmallVectorImpl<StringRef> & MultiarchTripleAliases)1107 /*static*/ void Generic_GCC::GCCInstallationDetector::CollectLibDirsAndTriples(
1108     const llvm::Triple &TargetTriple,
1109     const llvm::Triple &MultiarchTriple,
1110     SmallVectorImpl<StringRef> &LibDirs,
1111     SmallVectorImpl<StringRef> &TripleAliases,
1112     SmallVectorImpl<StringRef> &MultiarchLibDirs,
1113     SmallVectorImpl<StringRef> &MultiarchTripleAliases) {
1114   // Declare a bunch of static data sets that we'll select between below. These
1115   // are specifically designed to always refer to string literals to avoid any
1116   // lifetime or initialization issues.
1117   static const char *const ARMLibDirs[] = { "/lib" };
1118   static const char *const ARMTriples[] = {
1119     "arm-linux-gnueabi",
1120     "arm-linux-androideabi"
1121   };
1122   static const char *const ARMHFTriples[] = {
1123     "arm-linux-gnueabihf",
1124   };
1125 
1126   static const char *const X86_64LibDirs[] = { "/lib64", "/lib" };
1127   static const char *const X86_64Triples[] = {
1128     "x86_64-linux-gnu",
1129     "x86_64-unknown-linux-gnu",
1130     "x86_64-pc-linux-gnu",
1131     "x86_64-redhat-linux6E",
1132     "x86_64-redhat-linux",
1133     "x86_64-suse-linux",
1134     "x86_64-manbo-linux-gnu",
1135     "x86_64-linux-gnu",
1136     "x86_64-slackware-linux"
1137   };
1138   static const char *const X86LibDirs[] = { "/lib32", "/lib" };
1139   static const char *const X86Triples[] = {
1140     "i686-linux-gnu",
1141     "i686-pc-linux-gnu",
1142     "i486-linux-gnu",
1143     "i386-linux-gnu",
1144     "i686-redhat-linux",
1145     "i586-redhat-linux",
1146     "i386-redhat-linux",
1147     "i586-suse-linux",
1148     "i486-slackware-linux",
1149     "i686-montavista-linux"
1150   };
1151 
1152   static const char *const MIPSLibDirs[] = { "/lib" };
1153   static const char *const MIPSTriples[] = { "mips-linux-gnu" };
1154   static const char *const MIPSELLibDirs[] = { "/lib" };
1155   static const char *const MIPSELTriples[] = { "mipsel-linux-gnu" };
1156 
1157   static const char *const MIPS64LibDirs[] = { "/lib64", "/lib" };
1158   static const char *const MIPS64Triples[] = { "mips64-linux-gnu" };
1159   static const char *const MIPS64ELLibDirs[] = { "/lib64", "/lib" };
1160   static const char *const MIPS64ELTriples[] = { "mips64el-linux-gnu" };
1161 
1162   static const char *const PPCLibDirs[] = { "/lib32", "/lib" };
1163   static const char *const PPCTriples[] = {
1164     "powerpc-linux-gnu",
1165     "powerpc-unknown-linux-gnu",
1166     "powerpc-suse-linux",
1167     "powerpc-montavista-linuxspe"
1168   };
1169   static const char *const PPC64LibDirs[] = { "/lib64", "/lib" };
1170   static const char *const PPC64Triples[] = {
1171     "powerpc64-linux-gnu",
1172     "powerpc64-unknown-linux-gnu",
1173     "powerpc64-suse-linux",
1174     "ppc64-redhat-linux"
1175   };
1176 
1177   switch (TargetTriple.getArch()) {
1178   case llvm::Triple::arm:
1179   case llvm::Triple::thumb:
1180     LibDirs.append(ARMLibDirs, ARMLibDirs + llvm::array_lengthof(ARMLibDirs));
1181     if (TargetTriple.getEnvironment() == llvm::Triple::GNUEABIHF) {
1182       TripleAliases.append(
1183         ARMHFTriples, ARMHFTriples + llvm::array_lengthof(ARMHFTriples));
1184     } else {
1185       TripleAliases.append(
1186         ARMTriples, ARMTriples + llvm::array_lengthof(ARMTriples));
1187     }
1188     break;
1189   case llvm::Triple::x86_64:
1190     LibDirs.append(
1191       X86_64LibDirs, X86_64LibDirs + llvm::array_lengthof(X86_64LibDirs));
1192     TripleAliases.append(
1193       X86_64Triples, X86_64Triples + llvm::array_lengthof(X86_64Triples));
1194     MultiarchLibDirs.append(
1195       X86LibDirs, X86LibDirs + llvm::array_lengthof(X86LibDirs));
1196     MultiarchTripleAliases.append(
1197       X86Triples, X86Triples + llvm::array_lengthof(X86Triples));
1198     break;
1199   case llvm::Triple::x86:
1200     LibDirs.append(X86LibDirs, X86LibDirs + llvm::array_lengthof(X86LibDirs));
1201     TripleAliases.append(
1202       X86Triples, X86Triples + llvm::array_lengthof(X86Triples));
1203     MultiarchLibDirs.append(
1204       X86_64LibDirs, X86_64LibDirs + llvm::array_lengthof(X86_64LibDirs));
1205     MultiarchTripleAliases.append(
1206       X86_64Triples, X86_64Triples + llvm::array_lengthof(X86_64Triples));
1207     break;
1208   case llvm::Triple::mips:
1209     LibDirs.append(
1210       MIPSLibDirs, MIPSLibDirs + llvm::array_lengthof(MIPSLibDirs));
1211     TripleAliases.append(
1212       MIPSTriples, MIPSTriples + llvm::array_lengthof(MIPSTriples));
1213     MultiarchLibDirs.append(
1214       MIPS64LibDirs, MIPS64LibDirs + llvm::array_lengthof(MIPS64LibDirs));
1215     MultiarchTripleAliases.append(
1216       MIPS64Triples, MIPS64Triples + llvm::array_lengthof(MIPS64Triples));
1217     break;
1218   case llvm::Triple::mipsel:
1219     LibDirs.append(
1220       MIPSELLibDirs, MIPSELLibDirs + llvm::array_lengthof(MIPSELLibDirs));
1221     TripleAliases.append(
1222       MIPSELTriples, MIPSELTriples + llvm::array_lengthof(MIPSELTriples));
1223     MultiarchLibDirs.append(
1224       MIPS64ELLibDirs, MIPS64ELLibDirs + llvm::array_lengthof(MIPS64ELLibDirs));
1225     MultiarchTripleAliases.append(
1226       MIPS64ELTriples, MIPS64ELTriples + llvm::array_lengthof(MIPS64ELTriples));
1227     break;
1228   case llvm::Triple::mips64:
1229     LibDirs.append(
1230       MIPS64LibDirs, MIPS64LibDirs + llvm::array_lengthof(MIPS64LibDirs));
1231     TripleAliases.append(
1232       MIPS64Triples, MIPS64Triples + llvm::array_lengthof(MIPS64Triples));
1233     MultiarchLibDirs.append(
1234       MIPSLibDirs, MIPSLibDirs + llvm::array_lengthof(MIPSLibDirs));
1235     MultiarchTripleAliases.append(
1236       MIPSTriples, MIPSTriples + llvm::array_lengthof(MIPSTriples));
1237     break;
1238   case llvm::Triple::mips64el:
1239     LibDirs.append(
1240       MIPS64ELLibDirs, MIPS64ELLibDirs + llvm::array_lengthof(MIPS64ELLibDirs));
1241     TripleAliases.append(
1242       MIPS64ELTriples, MIPS64ELTriples + llvm::array_lengthof(MIPS64ELTriples));
1243     MultiarchLibDirs.append(
1244       MIPSELLibDirs, MIPSELLibDirs + llvm::array_lengthof(MIPSELLibDirs));
1245     MultiarchTripleAliases.append(
1246       MIPSELTriples, MIPSELTriples + llvm::array_lengthof(MIPSELTriples));
1247     break;
1248   case llvm::Triple::ppc:
1249     LibDirs.append(PPCLibDirs, PPCLibDirs + llvm::array_lengthof(PPCLibDirs));
1250     TripleAliases.append(
1251       PPCTriples, PPCTriples + llvm::array_lengthof(PPCTriples));
1252     MultiarchLibDirs.append(
1253       PPC64LibDirs, PPC64LibDirs + llvm::array_lengthof(PPC64LibDirs));
1254     MultiarchTripleAliases.append(
1255       PPC64Triples, PPC64Triples + llvm::array_lengthof(PPC64Triples));
1256     break;
1257   case llvm::Triple::ppc64:
1258     LibDirs.append(
1259       PPC64LibDirs, PPC64LibDirs + llvm::array_lengthof(PPC64LibDirs));
1260     TripleAliases.append(
1261       PPC64Triples, PPC64Triples + llvm::array_lengthof(PPC64Triples));
1262     MultiarchLibDirs.append(
1263       PPCLibDirs, PPCLibDirs + llvm::array_lengthof(PPCLibDirs));
1264     MultiarchTripleAliases.append(
1265       PPCTriples, PPCTriples + llvm::array_lengthof(PPCTriples));
1266     break;
1267 
1268   default:
1269     // By default, just rely on the standard lib directories and the original
1270     // triple.
1271     break;
1272   }
1273 
1274   // Always append the drivers target triple to the end, in case it doesn't
1275   // match any of our aliases.
1276   TripleAliases.push_back(TargetTriple.str());
1277 
1278   // Also include the multiarch variant if it's different.
1279   if (TargetTriple.str() != MultiarchTriple.str())
1280     MultiarchTripleAliases.push_back(MultiarchTriple.str());
1281 }
1282 
ScanLibDirForGCCTriple(llvm::Triple::ArchType TargetArch,const std::string & LibDir,StringRef CandidateTriple,bool NeedsMultiarchSuffix)1283 void Generic_GCC::GCCInstallationDetector::ScanLibDirForGCCTriple(
1284     llvm::Triple::ArchType TargetArch, const std::string &LibDir,
1285     StringRef CandidateTriple, bool NeedsMultiarchSuffix) {
1286   // There are various different suffixes involving the triple we
1287   // check for. We also record what is necessary to walk from each back
1288   // up to the lib directory.
1289   const std::string LibSuffixes[] = {
1290     "/gcc/" + CandidateTriple.str(),
1291     "/" + CandidateTriple.str() + "/gcc/" + CandidateTriple.str(),
1292 
1293     // Ubuntu has a strange mis-matched pair of triples that this happens to
1294     // match.
1295     // FIXME: It may be worthwhile to generalize this and look for a second
1296     // triple.
1297     "/i386-linux-gnu/gcc/" + CandidateTriple.str()
1298   };
1299   const std::string InstallSuffixes[] = {
1300     "/../../..",
1301     "/../../../..",
1302     "/../../../.."
1303   };
1304   // Only look at the final, weird Ubuntu suffix for i386-linux-gnu.
1305   const unsigned NumLibSuffixes = (llvm::array_lengthof(LibSuffixes) -
1306                                    (TargetArch != llvm::Triple::x86));
1307   for (unsigned i = 0; i < NumLibSuffixes; ++i) {
1308     StringRef LibSuffix = LibSuffixes[i];
1309     llvm::error_code EC;
1310     for (llvm::sys::fs::directory_iterator LI(LibDir + LibSuffix, EC), LE;
1311          !EC && LI != LE; LI = LI.increment(EC)) {
1312       StringRef VersionText = llvm::sys::path::filename(LI->path());
1313       GCCVersion CandidateVersion = GCCVersion::Parse(VersionText);
1314       static const GCCVersion MinVersion = { "4.1.1", 4, 1, 1, "" };
1315       if (CandidateVersion < MinVersion)
1316         continue;
1317       if (CandidateVersion <= Version)
1318         continue;
1319 
1320       // Some versions of SUSE and Fedora on ppc64 put 32-bit libs
1321       // in what would normally be GCCInstallPath and put the 64-bit
1322       // libs in a subdirectory named 64. The simple logic we follow is that
1323       // *if* there is a subdirectory of the right name with crtbegin.o in it,
1324       // we use that. If not, and if not a multiarch triple, we look for
1325       // crtbegin.o without the subdirectory.
1326       StringRef MultiarchSuffix
1327         = (TargetArch == llvm::Triple::x86_64 ||
1328            TargetArch == llvm::Triple::ppc64 ||
1329            TargetArch == llvm::Triple::mips64 ||
1330            TargetArch == llvm::Triple::mips64el) ? "/64" : "/32";
1331       if (llvm::sys::fs::exists(LI->path() + MultiarchSuffix + "/crtbegin.o")) {
1332         GCCMultiarchSuffix = MultiarchSuffix.str();
1333       } else {
1334         if (NeedsMultiarchSuffix ||
1335             !llvm::sys::fs::exists(LI->path() + "/crtbegin.o"))
1336           continue;
1337         GCCMultiarchSuffix.clear();
1338       }
1339 
1340       Version = CandidateVersion;
1341       GCCTriple.setTriple(CandidateTriple);
1342       // FIXME: We hack together the directory name here instead of
1343       // using LI to ensure stable path separators across Windows and
1344       // Linux.
1345       GCCInstallPath = LibDir + LibSuffixes[i] + "/" + VersionText.str();
1346       GCCParentLibPath = GCCInstallPath + InstallSuffixes[i];
1347       IsValid = true;
1348     }
1349   }
1350 }
1351 
Generic_GCC(const Driver & D,const llvm::Triple & Triple,const ArgList & Args)1352 Generic_GCC::Generic_GCC(const Driver &D, const llvm::Triple& Triple,
1353                          const ArgList &Args)
1354   : ToolChain(D, Triple), GCCInstallation(getDriver(), Triple, Args) {
1355   getProgramPaths().push_back(getDriver().getInstalledDir());
1356   if (getDriver().getInstalledDir() != getDriver().Dir)
1357     getProgramPaths().push_back(getDriver().Dir);
1358 }
1359 
~Generic_GCC()1360 Generic_GCC::~Generic_GCC() {
1361   // Free tool implementations.
1362   for (llvm::DenseMap<unsigned, Tool*>::iterator
1363          it = Tools.begin(), ie = Tools.end(); it != ie; ++it)
1364     delete it->second;
1365 }
1366 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const1367 Tool &Generic_GCC::SelectTool(const Compilation &C,
1368                               const JobAction &JA,
1369                               const ActionList &Inputs) const {
1370   Action::ActionClass Key;
1371   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
1372     Key = Action::AnalyzeJobClass;
1373   else
1374     Key = JA.getKind();
1375 
1376   Tool *&T = Tools[Key];
1377   if (!T) {
1378     switch (Key) {
1379     case Action::InputClass:
1380     case Action::BindArchClass:
1381       llvm_unreachable("Invalid tool kind.");
1382     case Action::PreprocessJobClass:
1383       T = new tools::gcc::Preprocess(*this); break;
1384     case Action::PrecompileJobClass:
1385       T = new tools::gcc::Precompile(*this); break;
1386     case Action::AnalyzeJobClass:
1387     case Action::MigrateJobClass:
1388       T = new tools::Clang(*this); break;
1389     case Action::CompileJobClass:
1390       T = new tools::gcc::Compile(*this); break;
1391     case Action::AssembleJobClass:
1392       T = new tools::gcc::Assemble(*this); break;
1393     case Action::LinkJobClass:
1394       T = new tools::gcc::Link(*this); break;
1395 
1396       // This is a bit ungeneric, but the only platform using a driver
1397       // driver is Darwin.
1398     case Action::LipoJobClass:
1399       T = new tools::darwin::Lipo(*this); break;
1400     case Action::DsymutilJobClass:
1401       T = new tools::darwin::Dsymutil(*this); break;
1402     case Action::VerifyJobClass:
1403       T = new tools::darwin::VerifyDebug(*this); break;
1404     }
1405   }
1406 
1407   return *T;
1408 }
1409 
IsUnwindTablesDefault() const1410 bool Generic_GCC::IsUnwindTablesDefault() const {
1411   // FIXME: Gross; we should probably have some separate target
1412   // definition, possibly even reusing the one in clang.
1413   return getArchName() == "x86_64";
1414 }
1415 
GetDefaultRelocationModel() const1416 const char *Generic_GCC::GetDefaultRelocationModel() const {
1417   return "static";
1418 }
1419 
GetForcedPicModel() const1420 const char *Generic_GCC::GetForcedPicModel() const {
1421   return 0;
1422 }
1423 /// Hexagon Toolchain
1424 
Hexagon_TC(const Driver & D,const llvm::Triple & Triple)1425 Hexagon_TC::Hexagon_TC(const Driver &D, const llvm::Triple& Triple)
1426   : ToolChain(D, Triple) {
1427   getProgramPaths().push_back(getDriver().getInstalledDir());
1428   if (getDriver().getInstalledDir() != getDriver().Dir.c_str())
1429     getProgramPaths().push_back(getDriver().Dir);
1430 }
1431 
~Hexagon_TC()1432 Hexagon_TC::~Hexagon_TC() {
1433   // Free tool implementations.
1434   for (llvm::DenseMap<unsigned, Tool*>::iterator
1435          it = Tools.begin(), ie = Tools.end(); it != ie; ++it)
1436     delete it->second;
1437 }
1438 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const1439 Tool &Hexagon_TC::SelectTool(const Compilation &C,
1440                              const JobAction &JA,
1441                              const ActionList &Inputs) const {
1442   Action::ActionClass Key;
1443   //   if (JA.getKind () == Action::CompileJobClass)
1444   //     Key = JA.getKind ();
1445   //     else
1446 
1447   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
1448     Key = Action::AnalyzeJobClass;
1449   else
1450     Key = JA.getKind();
1451   //   if ((JA.getKind () == Action::CompileJobClass)
1452   //     && (JA.getType () != types::TY_LTO_BC)) {
1453   //     Key = JA.getKind ();
1454   //   }
1455 
1456   Tool *&T = Tools[Key];
1457   if (!T) {
1458     switch (Key) {
1459     case Action::InputClass:
1460     case Action::BindArchClass:
1461       assert(0 && "Invalid tool kind.");
1462     case Action::AnalyzeJobClass:
1463       T = new tools::Clang(*this); break;
1464     case Action::AssembleJobClass:
1465       T = new tools::hexagon::Assemble(*this); break;
1466     case Action::LinkJobClass:
1467       T = new tools::hexagon::Link(*this); break;
1468     default:
1469       assert(false && "Unsupported action for Hexagon target.");
1470     }
1471   }
1472 
1473   return *T;
1474 }
1475 
IsUnwindTablesDefault() const1476 bool Hexagon_TC::IsUnwindTablesDefault() const {
1477   // FIXME: Gross; we should probably have some separate target
1478   // definition, possibly even reusing the one in clang.
1479   return getArchName() == "x86_64";
1480 }
1481 
GetDefaultRelocationModel() const1482 const char *Hexagon_TC::GetDefaultRelocationModel() const {
1483   return "static";
1484 }
1485 
GetForcedPicModel() const1486 const char *Hexagon_TC::GetForcedPicModel() const {
1487   return 0;
1488 } // End Hexagon
1489 
1490 
1491 /// TCEToolChain - A tool chain using the llvm bitcode tools to perform
1492 /// all subcommands. See http://tce.cs.tut.fi for our peculiar target.
1493 /// Currently does not support anything else but compilation.
1494 
TCEToolChain(const Driver & D,const llvm::Triple & Triple)1495 TCEToolChain::TCEToolChain(const Driver &D, const llvm::Triple& Triple)
1496   : ToolChain(D, Triple) {
1497   // Path mangling to find libexec
1498   std::string Path(getDriver().Dir);
1499 
1500   Path += "/../libexec";
1501   getProgramPaths().push_back(Path);
1502 }
1503 
~TCEToolChain()1504 TCEToolChain::~TCEToolChain() {
1505   for (llvm::DenseMap<unsigned, Tool*>::iterator
1506            it = Tools.begin(), ie = Tools.end(); it != ie; ++it)
1507       delete it->second;
1508 }
1509 
IsMathErrnoDefault() const1510 bool TCEToolChain::IsMathErrnoDefault() const {
1511   return true;
1512 }
1513 
IsUnwindTablesDefault() const1514 bool TCEToolChain::IsUnwindTablesDefault() const {
1515   return false;
1516 }
1517 
GetDefaultRelocationModel() const1518 const char *TCEToolChain::GetDefaultRelocationModel() const {
1519   return "static";
1520 }
1521 
GetForcedPicModel() const1522 const char *TCEToolChain::GetForcedPicModel() const {
1523   return 0;
1524 }
1525 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const1526 Tool &TCEToolChain::SelectTool(const Compilation &C,
1527                             const JobAction &JA,
1528                                const ActionList &Inputs) const {
1529   Action::ActionClass Key;
1530   Key = Action::AnalyzeJobClass;
1531 
1532   Tool *&T = Tools[Key];
1533   if (!T) {
1534     switch (Key) {
1535     case Action::PreprocessJobClass:
1536       T = new tools::gcc::Preprocess(*this); break;
1537     case Action::AnalyzeJobClass:
1538       T = new tools::Clang(*this); break;
1539     default:
1540      llvm_unreachable("Unsupported action for TCE target.");
1541     }
1542   }
1543   return *T;
1544 }
1545 
1546 /// OpenBSD - OpenBSD tool chain which can call as(1) and ld(1) directly.
1547 
OpenBSD(const Driver & D,const llvm::Triple & Triple,const ArgList & Args)1548 OpenBSD::OpenBSD(const Driver &D, const llvm::Triple& Triple, const ArgList &Args)
1549   : Generic_ELF(D, Triple, Args) {
1550   getFilePaths().push_back(getDriver().Dir + "/../lib");
1551   getFilePaths().push_back("/usr/lib");
1552 }
1553 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const1554 Tool &OpenBSD::SelectTool(const Compilation &C, const JobAction &JA,
1555                           const ActionList &Inputs) const {
1556   Action::ActionClass Key;
1557   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
1558     Key = Action::AnalyzeJobClass;
1559   else
1560     Key = JA.getKind();
1561 
1562   bool UseIntegratedAs = C.getArgs().hasFlag(options::OPT_integrated_as,
1563                                              options::OPT_no_integrated_as,
1564                                              IsIntegratedAssemblerDefault());
1565 
1566   Tool *&T = Tools[Key];
1567   if (!T) {
1568     switch (Key) {
1569     case Action::AssembleJobClass: {
1570       if (UseIntegratedAs)
1571         T = new tools::ClangAs(*this);
1572       else
1573         T = new tools::openbsd::Assemble(*this);
1574       break;
1575     }
1576     case Action::LinkJobClass:
1577       T = new tools::openbsd::Link(*this); break;
1578     default:
1579       T = &Generic_GCC::SelectTool(C, JA, Inputs);
1580     }
1581   }
1582 
1583   return *T;
1584 }
1585 
1586 /// Bitrig - Bitrig tool chain which can call as(1) and ld(1) directly.
1587 
Bitrig(const Driver & D,const llvm::Triple & Triple,const ArgList & Args)1588 Bitrig::Bitrig(const Driver &D, const llvm::Triple& Triple, const ArgList &Args)
1589   : Generic_ELF(D, Triple, Args) {
1590   getFilePaths().push_back(getDriver().Dir + "/../lib");
1591   getFilePaths().push_back("/usr/lib");
1592 }
1593 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const1594 Tool &Bitrig::SelectTool(const Compilation &C, const JobAction &JA,
1595                          const ActionList &Inputs) const {
1596   Action::ActionClass Key;
1597   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
1598     Key = Action::AnalyzeJobClass;
1599   else
1600     Key = JA.getKind();
1601 
1602   bool UseIntegratedAs = C.getArgs().hasFlag(options::OPT_integrated_as,
1603                                              options::OPT_no_integrated_as,
1604                                              IsIntegratedAssemblerDefault());
1605 
1606   Tool *&T = Tools[Key];
1607   if (!T) {
1608     switch (Key) {
1609     case Action::AssembleJobClass: {
1610       if (UseIntegratedAs)
1611         T = new tools::ClangAs(*this);
1612       else
1613         T = new tools::bitrig::Assemble(*this);
1614       break;
1615     }
1616     case Action::LinkJobClass:
1617       T = new tools::bitrig::Link(*this); break;
1618     default:
1619       T = &Generic_GCC::SelectTool(C, JA, Inputs);
1620     }
1621   }
1622 
1623   return *T;
1624 }
1625 
AddClangCXXStdlibIncludeArgs(const ArgList & DriverArgs,ArgStringList & CC1Args) const1626 void Bitrig::AddClangCXXStdlibIncludeArgs(const ArgList &DriverArgs,
1627                                           ArgStringList &CC1Args) const {
1628   if (DriverArgs.hasArg(options::OPT_nostdlibinc) ||
1629       DriverArgs.hasArg(options::OPT_nostdincxx))
1630     return;
1631 
1632   std::string Triple = getTriple().str();
1633   if (Triple.substr(0, 5) == "amd64")
1634     Triple.replace(0, 5, "x86_64");
1635 
1636   addSystemInclude(DriverArgs, CC1Args, "/usr/include/c++/4.6.2");
1637   addSystemInclude(DriverArgs, CC1Args, "/usr/include/c++/4.6.2/backward");
1638   addSystemInclude(DriverArgs, CC1Args, "/usr/include/c++/4.6.2/" + Triple);
1639 
1640 }
1641 
AddCXXStdlibLibArgs(const ArgList & Args,ArgStringList & CmdArgs) const1642 void Bitrig::AddCXXStdlibLibArgs(const ArgList &Args,
1643                                  ArgStringList &CmdArgs) const {
1644   CmdArgs.push_back("-lstdc++");
1645 }
1646 
1647 /// FreeBSD - FreeBSD tool chain which can call as(1) and ld(1) directly.
1648 
FreeBSD(const Driver & D,const llvm::Triple & Triple,const ArgList & Args)1649 FreeBSD::FreeBSD(const Driver &D, const llvm::Triple& Triple, const ArgList &Args)
1650   : Generic_ELF(D, Triple, Args) {
1651 
1652   // When targeting 32-bit platforms, look for '/usr/lib32/crt1.o' and fall
1653   // back to '/usr/lib' if it doesn't exist.
1654   if ((Triple.getArch() == llvm::Triple::x86 ||
1655        Triple.getArch() == llvm::Triple::ppc) &&
1656       llvm::sys::fs::exists(getDriver().SysRoot + "/usr/lib32/crt1.o"))
1657     getFilePaths().push_back(getDriver().SysRoot + "/usr/lib32");
1658   else
1659     getFilePaths().push_back(getDriver().SysRoot + "/usr/lib");
1660 }
1661 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const1662 Tool &FreeBSD::SelectTool(const Compilation &C, const JobAction &JA,
1663                           const ActionList &Inputs) const {
1664   Action::ActionClass Key;
1665   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
1666     Key = Action::AnalyzeJobClass;
1667   else
1668     Key = JA.getKind();
1669 
1670   bool UseIntegratedAs = C.getArgs().hasFlag(options::OPT_integrated_as,
1671                                              options::OPT_no_integrated_as,
1672                                              IsIntegratedAssemblerDefault());
1673 
1674   Tool *&T = Tools[Key];
1675   if (!T) {
1676     switch (Key) {
1677     case Action::AssembleJobClass:
1678       if (UseIntegratedAs)
1679         T = new tools::ClangAs(*this);
1680       else
1681         T = new tools::freebsd::Assemble(*this);
1682       break;
1683     case Action::LinkJobClass:
1684       T = new tools::freebsd::Link(*this); break;
1685     default:
1686       T = &Generic_GCC::SelectTool(C, JA, Inputs);
1687     }
1688   }
1689 
1690   return *T;
1691 }
1692 
1693 /// NetBSD - NetBSD tool chain which can call as(1) and ld(1) directly.
1694 
NetBSD(const Driver & D,const llvm::Triple & Triple,const ArgList & Args)1695 NetBSD::NetBSD(const Driver &D, const llvm::Triple& Triple, const ArgList &Args)
1696   : Generic_ELF(D, Triple, Args) {
1697 
1698   if (getDriver().UseStdLib) {
1699     // When targeting a 32-bit platform, try the special directory used on
1700     // 64-bit hosts, and only fall back to the main library directory if that
1701     // doesn't work.
1702     // FIXME: It'd be nicer to test if this directory exists, but I'm not sure
1703     // what all logic is needed to emulate the '=' prefix here.
1704     if (Triple.getArch() == llvm::Triple::x86)
1705       getFilePaths().push_back("=/usr/lib/i386");
1706 
1707     getFilePaths().push_back("=/usr/lib");
1708   }
1709 }
1710 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const1711 Tool &NetBSD::SelectTool(const Compilation &C, const JobAction &JA,
1712                          const ActionList &Inputs) const {
1713   Action::ActionClass Key;
1714   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
1715     Key = Action::AnalyzeJobClass;
1716   else
1717     Key = JA.getKind();
1718 
1719   bool UseIntegratedAs = C.getArgs().hasFlag(options::OPT_integrated_as,
1720                                              options::OPT_no_integrated_as,
1721                                              IsIntegratedAssemblerDefault());
1722 
1723   Tool *&T = Tools[Key];
1724   if (!T) {
1725     switch (Key) {
1726     case Action::AssembleJobClass:
1727       if (UseIntegratedAs)
1728         T = new tools::ClangAs(*this);
1729       else
1730         T = new tools::netbsd::Assemble(*this);
1731       break;
1732     case Action::LinkJobClass:
1733       T = new tools::netbsd::Link(*this);
1734       break;
1735     default:
1736       T = &Generic_GCC::SelectTool(C, JA, Inputs);
1737     }
1738   }
1739 
1740   return *T;
1741 }
1742 
1743 /// Minix - Minix tool chain which can call as(1) and ld(1) directly.
1744 
Minix(const Driver & D,const llvm::Triple & Triple,const ArgList & Args)1745 Minix::Minix(const Driver &D, const llvm::Triple& Triple, const ArgList &Args)
1746   : Generic_ELF(D, Triple, Args) {
1747   getFilePaths().push_back(getDriver().Dir + "/../lib");
1748   getFilePaths().push_back("/usr/lib");
1749 }
1750 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const1751 Tool &Minix::SelectTool(const Compilation &C, const JobAction &JA,
1752                         const ActionList &Inputs) const {
1753   Action::ActionClass Key;
1754   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
1755     Key = Action::AnalyzeJobClass;
1756   else
1757     Key = JA.getKind();
1758 
1759   Tool *&T = Tools[Key];
1760   if (!T) {
1761     switch (Key) {
1762     case Action::AssembleJobClass:
1763       T = new tools::minix::Assemble(*this); break;
1764     case Action::LinkJobClass:
1765       T = new tools::minix::Link(*this); break;
1766     default:
1767       T = &Generic_GCC::SelectTool(C, JA, Inputs);
1768     }
1769   }
1770 
1771   return *T;
1772 }
1773 
1774 /// AuroraUX - AuroraUX tool chain which can call as(1) and ld(1) directly.
1775 
AuroraUX(const Driver & D,const llvm::Triple & Triple,const ArgList & Args)1776 AuroraUX::AuroraUX(const Driver &D, const llvm::Triple& Triple,
1777                    const ArgList &Args)
1778   : Generic_GCC(D, Triple, Args) {
1779 
1780   getProgramPaths().push_back(getDriver().getInstalledDir());
1781   if (getDriver().getInstalledDir() != getDriver().Dir)
1782     getProgramPaths().push_back(getDriver().Dir);
1783 
1784   getFilePaths().push_back(getDriver().Dir + "/../lib");
1785   getFilePaths().push_back("/usr/lib");
1786   getFilePaths().push_back("/usr/sfw/lib");
1787   getFilePaths().push_back("/opt/gcc4/lib");
1788   getFilePaths().push_back("/opt/gcc4/lib/gcc/i386-pc-solaris2.11/4.2.4");
1789 
1790 }
1791 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const1792 Tool &AuroraUX::SelectTool(const Compilation &C, const JobAction &JA,
1793                            const ActionList &Inputs) const {
1794   Action::ActionClass Key;
1795   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
1796     Key = Action::AnalyzeJobClass;
1797   else
1798     Key = JA.getKind();
1799 
1800   Tool *&T = Tools[Key];
1801   if (!T) {
1802     switch (Key) {
1803     case Action::AssembleJobClass:
1804       T = new tools::auroraux::Assemble(*this); break;
1805     case Action::LinkJobClass:
1806       T = new tools::auroraux::Link(*this); break;
1807     default:
1808       T = &Generic_GCC::SelectTool(C, JA, Inputs);
1809     }
1810   }
1811 
1812   return *T;
1813 }
1814 
1815 /// Solaris - Solaris tool chain which can call as(1) and ld(1) directly.
1816 
Solaris(const Driver & D,const llvm::Triple & Triple,const ArgList & Args)1817 Solaris::Solaris(const Driver &D, const llvm::Triple& Triple,
1818                  const ArgList &Args)
1819   : Generic_GCC(D, Triple, Args) {
1820 
1821   getProgramPaths().push_back(getDriver().getInstalledDir());
1822   if (getDriver().getInstalledDir() != getDriver().Dir)
1823     getProgramPaths().push_back(getDriver().Dir);
1824 
1825   getFilePaths().push_back(getDriver().Dir + "/../lib");
1826   getFilePaths().push_back("/usr/lib");
1827 }
1828 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const1829 Tool &Solaris::SelectTool(const Compilation &C, const JobAction &JA,
1830                            const ActionList &Inputs) const {
1831   Action::ActionClass Key;
1832   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
1833     Key = Action::AnalyzeJobClass;
1834   else
1835     Key = JA.getKind();
1836 
1837   Tool *&T = Tools[Key];
1838   if (!T) {
1839     switch (Key) {
1840     case Action::AssembleJobClass:
1841       T = new tools::solaris::Assemble(*this); break;
1842     case Action::LinkJobClass:
1843       T = new tools::solaris::Link(*this); break;
1844     default:
1845       T = &Generic_GCC::SelectTool(C, JA, Inputs);
1846     }
1847   }
1848 
1849   return *T;
1850 }
1851 
1852 /// Linux toolchain (very bare-bones at the moment).
1853 
1854 enum LinuxDistro {
1855   ArchLinux,
1856   DebianLenny,
1857   DebianSqueeze,
1858   DebianWheezy,
1859   Exherbo,
1860   RHEL4,
1861   RHEL5,
1862   RHEL6,
1863   Fedora13,
1864   Fedora14,
1865   Fedora15,
1866   Fedora16,
1867   FedoraRawhide,
1868   OpenSuse11_3,
1869   OpenSuse11_4,
1870   OpenSuse12_1,
1871   OpenSuse12_2,
1872   UbuntuHardy,
1873   UbuntuIntrepid,
1874   UbuntuJaunty,
1875   UbuntuKarmic,
1876   UbuntuLucid,
1877   UbuntuMaverick,
1878   UbuntuNatty,
1879   UbuntuOneiric,
1880   UbuntuPrecise,
1881   UnknownDistro
1882 };
1883 
IsRedhat(enum LinuxDistro Distro)1884 static bool IsRedhat(enum LinuxDistro Distro) {
1885   return (Distro >= Fedora13 && Distro <= FedoraRawhide) ||
1886          (Distro >= RHEL4    && Distro <= RHEL6);
1887 }
1888 
IsOpenSuse(enum LinuxDistro Distro)1889 static bool IsOpenSuse(enum LinuxDistro Distro) {
1890   return Distro >= OpenSuse11_3 && Distro <= OpenSuse12_2;
1891 }
1892 
IsDebian(enum LinuxDistro Distro)1893 static bool IsDebian(enum LinuxDistro Distro) {
1894   return Distro >= DebianLenny && Distro <= DebianWheezy;
1895 }
1896 
IsUbuntu(enum LinuxDistro Distro)1897 static bool IsUbuntu(enum LinuxDistro Distro) {
1898   return Distro >= UbuntuHardy && Distro <= UbuntuPrecise;
1899 }
1900 
DetectLinuxDistro(llvm::Triple::ArchType Arch)1901 static LinuxDistro DetectLinuxDistro(llvm::Triple::ArchType Arch) {
1902   OwningPtr<llvm::MemoryBuffer> File;
1903   if (!llvm::MemoryBuffer::getFile("/etc/lsb-release", File)) {
1904     StringRef Data = File.get()->getBuffer();
1905     SmallVector<StringRef, 8> Lines;
1906     Data.split(Lines, "\n");
1907     LinuxDistro Version = UnknownDistro;
1908     for (unsigned i = 0, s = Lines.size(); i != s; ++i)
1909       if (Version == UnknownDistro && Lines[i].startswith("DISTRIB_CODENAME="))
1910         Version = llvm::StringSwitch<LinuxDistro>(Lines[i].substr(17))
1911           .Case("hardy", UbuntuHardy)
1912           .Case("intrepid", UbuntuIntrepid)
1913           .Case("jaunty", UbuntuJaunty)
1914           .Case("karmic", UbuntuKarmic)
1915           .Case("lucid", UbuntuLucid)
1916           .Case("maverick", UbuntuMaverick)
1917           .Case("natty", UbuntuNatty)
1918           .Case("oneiric", UbuntuOneiric)
1919           .Case("precise", UbuntuPrecise)
1920           .Default(UnknownDistro);
1921     return Version;
1922   }
1923 
1924   if (!llvm::MemoryBuffer::getFile("/etc/redhat-release", File)) {
1925     StringRef Data = File.get()->getBuffer();
1926     if (Data.startswith("Fedora release 16"))
1927       return Fedora16;
1928     else if (Data.startswith("Fedora release 15"))
1929       return Fedora15;
1930     else if (Data.startswith("Fedora release 14"))
1931       return Fedora14;
1932     else if (Data.startswith("Fedora release 13"))
1933       return Fedora13;
1934     else if (Data.startswith("Fedora release") &&
1935              Data.find("Rawhide") != StringRef::npos)
1936       return FedoraRawhide;
1937     else if (Data.startswith("Red Hat Enterprise Linux") &&
1938              Data.find("release 6") != StringRef::npos)
1939       return RHEL6;
1940     else if ((Data.startswith("Red Hat Enterprise Linux") ||
1941 	      Data.startswith("CentOS")) &&
1942              Data.find("release 5") != StringRef::npos)
1943       return RHEL5;
1944     else if ((Data.startswith("Red Hat Enterprise Linux") ||
1945 	      Data.startswith("CentOS")) &&
1946              Data.find("release 4") != StringRef::npos)
1947       return RHEL4;
1948     return UnknownDistro;
1949   }
1950 
1951   if (!llvm::MemoryBuffer::getFile("/etc/debian_version", File)) {
1952     StringRef Data = File.get()->getBuffer();
1953     if (Data[0] == '5')
1954       return DebianLenny;
1955     else if (Data.startswith("squeeze/sid") || Data[0] == '6')
1956       return DebianSqueeze;
1957     else if (Data.startswith("wheezy/sid")  || Data[0] == '7')
1958       return DebianWheezy;
1959     return UnknownDistro;
1960   }
1961 
1962   if (!llvm::MemoryBuffer::getFile("/etc/SuSE-release", File))
1963     return llvm::StringSwitch<LinuxDistro>(File.get()->getBuffer())
1964       .StartsWith("openSUSE 11.3", OpenSuse11_3)
1965       .StartsWith("openSUSE 11.4", OpenSuse11_4)
1966       .StartsWith("openSUSE 12.1", OpenSuse12_1)
1967       .StartsWith("openSUSE 12.2", OpenSuse12_2)
1968       .Default(UnknownDistro);
1969 
1970   bool Exists;
1971   if (!llvm::sys::fs::exists("/etc/exherbo-release", Exists) && Exists)
1972     return Exherbo;
1973 
1974   if (!llvm::sys::fs::exists("/etc/arch-release", Exists) && Exists)
1975     return ArchLinux;
1976 
1977   return UnknownDistro;
1978 }
1979 
1980 /// \brief Get our best guess at the multiarch triple for a target.
1981 ///
1982 /// Debian-based systems are starting to use a multiarch setup where they use
1983 /// a target-triple directory in the library and header search paths.
1984 /// Unfortunately, this triple does not align with the vanilla target triple,
1985 /// so we provide a rough mapping here.
getMultiarchTriple(const llvm::Triple TargetTriple,StringRef SysRoot)1986 static std::string getMultiarchTriple(const llvm::Triple TargetTriple,
1987                                       StringRef SysRoot) {
1988   // For most architectures, just use whatever we have rather than trying to be
1989   // clever.
1990   switch (TargetTriple.getArch()) {
1991   default:
1992     return TargetTriple.str();
1993 
1994     // We use the existence of '/lib/<triple>' as a directory to detect some
1995     // common linux triples that don't quite match the Clang triple for both
1996     // 32-bit and 64-bit targets. Multiarch fixes its install triples to these
1997     // regardless of what the actual target triple is.
1998   case llvm::Triple::arm:
1999   case llvm::Triple::thumb:
2000     if (TargetTriple.getEnvironment() == llvm::Triple::GNUEABIHF) {
2001       if (llvm::sys::fs::exists(SysRoot + "/lib/arm-linux-gnueabihf"))
2002         return "arm-linux-gnueabihf";
2003     } else {
2004       if (llvm::sys::fs::exists(SysRoot + "/lib/arm-linux-gnueabi"))
2005         return "arm-linux-gnueabi";
2006     }
2007     return TargetTriple.str();
2008   case llvm::Triple::x86:
2009     if (llvm::sys::fs::exists(SysRoot + "/lib/i386-linux-gnu"))
2010       return "i386-linux-gnu";
2011     return TargetTriple.str();
2012   case llvm::Triple::x86_64:
2013     if (llvm::sys::fs::exists(SysRoot + "/lib/x86_64-linux-gnu"))
2014       return "x86_64-linux-gnu";
2015     return TargetTriple.str();
2016   case llvm::Triple::mips:
2017     if (llvm::sys::fs::exists(SysRoot + "/lib/mips-linux-gnu"))
2018       return "mips-linux-gnu";
2019     return TargetTriple.str();
2020   case llvm::Triple::mipsel:
2021     if (llvm::sys::fs::exists(SysRoot + "/lib/mipsel-linux-gnu"))
2022       return "mipsel-linux-gnu";
2023     return TargetTriple.str();
2024   case llvm::Triple::ppc:
2025     if (llvm::sys::fs::exists(SysRoot + "/lib/powerpc-linux-gnu"))
2026       return "powerpc-linux-gnu";
2027     return TargetTriple.str();
2028   case llvm::Triple::ppc64:
2029     if (llvm::sys::fs::exists(SysRoot + "/lib/powerpc64-linux-gnu"))
2030       return "powerpc64-linux-gnu";
2031     return TargetTriple.str();
2032   }
2033 }
2034 
addPathIfExists(Twine Path,ToolChain::path_list & Paths)2035 static void addPathIfExists(Twine Path, ToolChain::path_list &Paths) {
2036   if (llvm::sys::fs::exists(Path)) Paths.push_back(Path.str());
2037 }
2038 
Linux(const Driver & D,const llvm::Triple & Triple,const ArgList & Args)2039 Linux::Linux(const Driver &D, const llvm::Triple &Triple, const ArgList &Args)
2040   : Generic_ELF(D, Triple, Args) {
2041   llvm::Triple::ArchType Arch = Triple.getArch();
2042   const std::string &SysRoot = getDriver().SysRoot;
2043 
2044   // OpenSuse stores the linker with the compiler, add that to the search
2045   // path.
2046   ToolChain::path_list &PPaths = getProgramPaths();
2047   PPaths.push_back(Twine(GCCInstallation.getParentLibPath() + "/../" +
2048                          GCCInstallation.getTriple().str() + "/bin").str());
2049 
2050   Linker = GetProgramPath("ld");
2051 
2052   LinuxDistro Distro = DetectLinuxDistro(Arch);
2053 
2054   if (IsOpenSuse(Distro) || IsUbuntu(Distro)) {
2055     ExtraOpts.push_back("-z");
2056     ExtraOpts.push_back("relro");
2057   }
2058 
2059   if (Arch == llvm::Triple::arm || Arch == llvm::Triple::thumb)
2060     ExtraOpts.push_back("-X");
2061 
2062   const bool IsMips = Arch == llvm::Triple::mips ||
2063                       Arch == llvm::Triple::mipsel ||
2064                       Arch == llvm::Triple::mips64 ||
2065                       Arch == llvm::Triple::mips64el;
2066 
2067   const bool IsAndroid = Triple.getEnvironment() == llvm::Triple::Android;
2068 
2069   // Do not use 'gnu' hash style for Mips targets because .gnu.hash
2070   // and the MIPS ABI require .dynsym to be sorted in different ways.
2071   // .gnu.hash needs symbols to be grouped by hash code whereas the MIPS
2072   // ABI requires a mapping between the GOT and the symbol table.
2073   // Android loader does not support .gnu.hash.
2074   if (!IsMips && !IsAndroid) {
2075     if (IsRedhat(Distro) || IsOpenSuse(Distro) ||
2076         (IsUbuntu(Distro) && Distro >= UbuntuMaverick))
2077       ExtraOpts.push_back("--hash-style=gnu");
2078 
2079     if (IsDebian(Distro) || IsOpenSuse(Distro) || Distro == UbuntuLucid ||
2080         Distro == UbuntuJaunty || Distro == UbuntuKarmic)
2081       ExtraOpts.push_back("--hash-style=both");
2082   }
2083 
2084   if (IsRedhat(Distro))
2085     ExtraOpts.push_back("--no-add-needed");
2086 
2087   if (Distro == DebianSqueeze || Distro == DebianWheezy ||
2088       IsOpenSuse(Distro) ||
2089       (IsRedhat(Distro) && Distro != RHEL4 && Distro != RHEL5) ||
2090       (IsUbuntu(Distro) && Distro >= UbuntuKarmic))
2091     ExtraOpts.push_back("--build-id");
2092 
2093   if (IsOpenSuse(Distro))
2094     ExtraOpts.push_back("--enable-new-dtags");
2095 
2096   // The selection of paths to try here is designed to match the patterns which
2097   // the GCC driver itself uses, as this is part of the GCC-compatible driver.
2098   // This was determined by running GCC in a fake filesystem, creating all
2099   // possible permutations of these directories, and seeing which ones it added
2100   // to the link paths.
2101   path_list &Paths = getFilePaths();
2102 
2103   const std::string Multilib = Triple.isArch32Bit() ? "lib32" : "lib64";
2104   const std::string MultiarchTriple = getMultiarchTriple(Triple, SysRoot);
2105 
2106   // Add the multilib suffixed paths where they are available.
2107   if (GCCInstallation.isValid()) {
2108     const llvm::Triple &GCCTriple = GCCInstallation.getTriple();
2109     const std::string &LibPath = GCCInstallation.getParentLibPath();
2110     addPathIfExists((GCCInstallation.getInstallPath() +
2111                      GCCInstallation.getMultiarchSuffix()),
2112                     Paths);
2113 
2114     // If the GCC installation we found is inside of the sysroot, we want to
2115     // prefer libraries installed in the parent prefix of the GCC installation.
2116     // It is important to *not* use these paths when the GCC installation is
2117     // outside of the system root as that can pick up unintended libraries.
2118     // This usually happens when there is an external cross compiler on the
2119     // host system, and a more minimal sysroot available that is the target of
2120     // the cross.
2121     if (StringRef(LibPath).startswith(SysRoot)) {
2122       addPathIfExists(LibPath + "/../" + GCCTriple.str() + "/lib/../" + Multilib,
2123                       Paths);
2124       addPathIfExists(LibPath + "/" + MultiarchTriple, Paths);
2125       addPathIfExists(LibPath + "/../" + Multilib, Paths);
2126     }
2127     // On Android, libraries in the parent prefix of the GCC installation are
2128     // preferred to the ones under sysroot.
2129     if (IsAndroid) {
2130       addPathIfExists(LibPath + "/../" + GCCTriple.str() + "/lib", Paths);
2131     }
2132   }
2133   addPathIfExists(SysRoot + "/lib/" + MultiarchTriple, Paths);
2134   addPathIfExists(SysRoot + "/lib/../" + Multilib, Paths);
2135   addPathIfExists(SysRoot + "/usr/lib/" + MultiarchTriple, Paths);
2136   addPathIfExists(SysRoot + "/usr/lib/../" + Multilib, Paths);
2137 
2138   // Try walking via the GCC triple path in case of multiarch GCC
2139   // installations with strange symlinks.
2140   if (GCCInstallation.isValid())
2141     addPathIfExists(SysRoot + "/usr/lib/" + GCCInstallation.getTriple().str() +
2142                     "/../../" + Multilib, Paths);
2143 
2144   // Add the non-multilib suffixed paths (if potentially different).
2145   if (GCCInstallation.isValid()) {
2146     const std::string &LibPath = GCCInstallation.getParentLibPath();
2147     const llvm::Triple &GCCTriple = GCCInstallation.getTriple();
2148     if (!GCCInstallation.getMultiarchSuffix().empty())
2149       addPathIfExists(GCCInstallation.getInstallPath(), Paths);
2150 
2151     if (StringRef(LibPath).startswith(SysRoot)) {
2152       addPathIfExists(LibPath + "/../" + GCCTriple.str() + "/lib", Paths);
2153       addPathIfExists(LibPath, Paths);
2154     }
2155   }
2156   addPathIfExists(SysRoot + "/lib", Paths);
2157   addPathIfExists(SysRoot + "/usr/lib", Paths);
2158 }
2159 
HasNativeLLVMSupport() const2160 bool Linux::HasNativeLLVMSupport() const {
2161   return true;
2162 }
2163 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const2164 Tool &Linux::SelectTool(const Compilation &C, const JobAction &JA,
2165                         const ActionList &Inputs) const {
2166   Action::ActionClass Key;
2167   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
2168     Key = Action::AnalyzeJobClass;
2169   else
2170     Key = JA.getKind();
2171 
2172   bool UseIntegratedAs = C.getArgs().hasFlag(options::OPT_integrated_as,
2173                                              options::OPT_no_integrated_as,
2174                                              IsIntegratedAssemblerDefault());
2175 
2176   Tool *&T = Tools[Key];
2177   if (!T) {
2178     switch (Key) {
2179     case Action::AssembleJobClass:
2180       if (UseIntegratedAs)
2181         T = new tools::ClangAs(*this);
2182       else
2183         T = new tools::linuxtools::Assemble(*this);
2184       break;
2185     case Action::LinkJobClass:
2186       T = new tools::linuxtools::Link(*this); break;
2187     default:
2188       T = &Generic_GCC::SelectTool(C, JA, Inputs);
2189     }
2190   }
2191 
2192   return *T;
2193 }
2194 
addClangTargetOptions(ArgStringList & CC1Args) const2195 void Linux::addClangTargetOptions(ArgStringList &CC1Args) const {
2196   const Generic_GCC::GCCVersion &V = GCCInstallation.getVersion();
2197   if (V >= Generic_GCC::GCCVersion::Parse("4.7.0"))
2198     CC1Args.push_back("-fuse-init-array");
2199 }
2200 
AddClangSystemIncludeArgs(const ArgList & DriverArgs,ArgStringList & CC1Args) const2201 void Linux::AddClangSystemIncludeArgs(const ArgList &DriverArgs,
2202                                       ArgStringList &CC1Args) const {
2203   const Driver &D = getDriver();
2204 
2205   if (DriverArgs.hasArg(options::OPT_nostdinc))
2206     return;
2207 
2208   if (!DriverArgs.hasArg(options::OPT_nostdlibinc))
2209     addSystemInclude(DriverArgs, CC1Args, D.SysRoot + "/usr/local/include");
2210 
2211   if (!DriverArgs.hasArg(options::OPT_nobuiltininc)) {
2212     llvm::sys::Path P(D.ResourceDir);
2213     P.appendComponent("include");
2214     addSystemInclude(DriverArgs, CC1Args, P.str());
2215   }
2216 
2217   if (DriverArgs.hasArg(options::OPT_nostdlibinc))
2218     return;
2219 
2220   // Check for configure-time C include directories.
2221   StringRef CIncludeDirs(C_INCLUDE_DIRS);
2222   if (CIncludeDirs != "") {
2223     SmallVector<StringRef, 5> dirs;
2224     CIncludeDirs.split(dirs, ":");
2225     for (SmallVectorImpl<StringRef>::iterator I = dirs.begin(), E = dirs.end();
2226          I != E; ++I) {
2227       StringRef Prefix = llvm::sys::path::is_absolute(*I) ? D.SysRoot : "";
2228       addExternCSystemInclude(DriverArgs, CC1Args, Prefix + *I);
2229     }
2230     return;
2231   }
2232 
2233   // Lacking those, try to detect the correct set of system includes for the
2234   // target triple.
2235 
2236   // Implement generic Debian multiarch support.
2237   const StringRef X86_64MultiarchIncludeDirs[] = {
2238     "/usr/include/x86_64-linux-gnu",
2239 
2240     // FIXME: These are older forms of multiarch. It's not clear that they're
2241     // in use in any released version of Debian, so we should consider
2242     // removing them.
2243     "/usr/include/i686-linux-gnu/64",
2244     "/usr/include/i486-linux-gnu/64"
2245   };
2246   const StringRef X86MultiarchIncludeDirs[] = {
2247     "/usr/include/i386-linux-gnu",
2248 
2249     // FIXME: These are older forms of multiarch. It's not clear that they're
2250     // in use in any released version of Debian, so we should consider
2251     // removing them.
2252     "/usr/include/x86_64-linux-gnu/32",
2253     "/usr/include/i686-linux-gnu",
2254     "/usr/include/i486-linux-gnu"
2255   };
2256   const StringRef ARMMultiarchIncludeDirs[] = {
2257     "/usr/include/arm-linux-gnueabi"
2258   };
2259   const StringRef ARMHFMultiarchIncludeDirs[] = {
2260     "/usr/include/arm-linux-gnueabihf"
2261   };
2262   const StringRef MIPSMultiarchIncludeDirs[] = {
2263     "/usr/include/mips-linux-gnu"
2264   };
2265   const StringRef MIPSELMultiarchIncludeDirs[] = {
2266     "/usr/include/mipsel-linux-gnu"
2267   };
2268   const StringRef PPCMultiarchIncludeDirs[] = {
2269     "/usr/include/powerpc-linux-gnu"
2270   };
2271   const StringRef PPC64MultiarchIncludeDirs[] = {
2272     "/usr/include/powerpc64-linux-gnu"
2273   };
2274   ArrayRef<StringRef> MultiarchIncludeDirs;
2275   if (getTriple().getArch() == llvm::Triple::x86_64) {
2276     MultiarchIncludeDirs = X86_64MultiarchIncludeDirs;
2277   } else if (getTriple().getArch() == llvm::Triple::x86) {
2278     MultiarchIncludeDirs = X86MultiarchIncludeDirs;
2279   } else if (getTriple().getArch() == llvm::Triple::arm) {
2280     if (getTriple().getEnvironment() == llvm::Triple::GNUEABIHF)
2281       MultiarchIncludeDirs = ARMHFMultiarchIncludeDirs;
2282     else
2283       MultiarchIncludeDirs = ARMMultiarchIncludeDirs;
2284   } else if (getTriple().getArch() == llvm::Triple::mips) {
2285     MultiarchIncludeDirs = MIPSMultiarchIncludeDirs;
2286   } else if (getTriple().getArch() == llvm::Triple::mipsel) {
2287     MultiarchIncludeDirs = MIPSELMultiarchIncludeDirs;
2288   } else if (getTriple().getArch() == llvm::Triple::ppc) {
2289     MultiarchIncludeDirs = PPCMultiarchIncludeDirs;
2290   } else if (getTriple().getArch() == llvm::Triple::ppc64) {
2291     MultiarchIncludeDirs = PPC64MultiarchIncludeDirs;
2292   }
2293   for (ArrayRef<StringRef>::iterator I = MultiarchIncludeDirs.begin(),
2294                                      E = MultiarchIncludeDirs.end();
2295        I != E; ++I) {
2296     if (llvm::sys::fs::exists(D.SysRoot + *I)) {
2297       addExternCSystemInclude(DriverArgs, CC1Args, D.SysRoot + *I);
2298       break;
2299     }
2300   }
2301 
2302   if (getTriple().getOS() == llvm::Triple::RTEMS)
2303     return;
2304 
2305   // Add an include of '/include' directly. This isn't provided by default by
2306   // system GCCs, but is often used with cross-compiling GCCs, and harmless to
2307   // add even when Clang is acting as-if it were a system compiler.
2308   addExternCSystemInclude(DriverArgs, CC1Args, D.SysRoot + "/include");
2309 
2310   addExternCSystemInclude(DriverArgs, CC1Args, D.SysRoot + "/usr/include");
2311 }
2312 
2313 /// \brief Helper to add the thre variant paths for a libstdc++ installation.
addLibStdCXXIncludePaths(Twine Base,Twine TargetArchDir,const ArgList & DriverArgs,ArgStringList & CC1Args)2314 /*static*/ bool Linux::addLibStdCXXIncludePaths(Twine Base, Twine TargetArchDir,
2315                                                 const ArgList &DriverArgs,
2316                                                 ArgStringList &CC1Args) {
2317   if (!llvm::sys::fs::exists(Base))
2318     return false;
2319   addSystemInclude(DriverArgs, CC1Args, Base);
2320   addSystemInclude(DriverArgs, CC1Args, Base + "/" + TargetArchDir);
2321   addSystemInclude(DriverArgs, CC1Args, Base + "/backward");
2322   return true;
2323 }
2324 
AddClangCXXStdlibIncludeArgs(const ArgList & DriverArgs,ArgStringList & CC1Args) const2325 void Linux::AddClangCXXStdlibIncludeArgs(const ArgList &DriverArgs,
2326                                          ArgStringList &CC1Args) const {
2327   if (DriverArgs.hasArg(options::OPT_nostdlibinc) ||
2328       DriverArgs.hasArg(options::OPT_nostdincxx))
2329     return;
2330 
2331   // Check if libc++ has been enabled and provide its include paths if so.
2332   if (GetCXXStdlibType(DriverArgs) == ToolChain::CST_Libcxx) {
2333     // libc++ is always installed at a fixed path on Linux currently.
2334     addSystemInclude(DriverArgs, CC1Args,
2335                      getDriver().SysRoot + "/usr/include/c++/v1");
2336     return;
2337   }
2338 
2339   // We need a detected GCC installation on Linux to provide libstdc++'s
2340   // headers. We handled the libc++ case above.
2341   if (!GCCInstallation.isValid())
2342     return;
2343 
2344   // By default, look for the C++ headers in an include directory adjacent to
2345   // the lib directory of the GCC installation. Note that this is expect to be
2346   // equivalent to '/usr/include/c++/X.Y' in almost all cases.
2347   StringRef LibDir = GCCInstallation.getParentLibPath();
2348   StringRef InstallDir = GCCInstallation.getInstallPath();
2349   StringRef Version = GCCInstallation.getVersion().Text;
2350   StringRef TripleStr = GCCInstallation.getTriple().str();
2351 
2352   const std::string IncludePathCandidates[] = {
2353     LibDir.str() + "/../include/c++/" + Version.str(),
2354     // Gentoo is weird and places its headers inside the GCC install, so if the
2355     // first attempt to find the headers fails, try this pattern.
2356     InstallDir.str() + "/include/g++-v4",
2357     // Android standalone toolchain has C++ headers in yet another place.
2358     LibDir.str() + "/../" + TripleStr.str() + "/include/c++/" + Version.str(),
2359   };
2360 
2361   for (unsigned i = 0; i < llvm::array_lengthof(IncludePathCandidates); ++i) {
2362     if (addLibStdCXXIncludePaths(IncludePathCandidates[i], (TripleStr +
2363                 GCCInstallation.getMultiarchSuffix()),
2364             DriverArgs, CC1Args))
2365       break;
2366   }
2367 }
2368 
2369 /// DragonFly - DragonFly tool chain which can call as(1) and ld(1) directly.
2370 
DragonFly(const Driver & D,const llvm::Triple & Triple,const ArgList & Args)2371 DragonFly::DragonFly(const Driver &D, const llvm::Triple& Triple, const ArgList &Args)
2372   : Generic_ELF(D, Triple, Args) {
2373 
2374   // Path mangling to find libexec
2375   getProgramPaths().push_back(getDriver().getInstalledDir());
2376   if (getDriver().getInstalledDir() != getDriver().Dir)
2377     getProgramPaths().push_back(getDriver().Dir);
2378 
2379   getFilePaths().push_back(getDriver().Dir + "/../lib");
2380   getFilePaths().push_back("/usr/lib");
2381   getFilePaths().push_back("/usr/lib/gcc41");
2382 }
2383 
SelectTool(const Compilation & C,const JobAction & JA,const ActionList & Inputs) const2384 Tool &DragonFly::SelectTool(const Compilation &C, const JobAction &JA,
2385                             const ActionList &Inputs) const {
2386   Action::ActionClass Key;
2387   if (getDriver().ShouldUseClangCompiler(C, JA, getTriple()))
2388     Key = Action::AnalyzeJobClass;
2389   else
2390     Key = JA.getKind();
2391 
2392   Tool *&T = Tools[Key];
2393   if (!T) {
2394     switch (Key) {
2395     case Action::AssembleJobClass:
2396       T = new tools::dragonfly::Assemble(*this); break;
2397     case Action::LinkJobClass:
2398       T = new tools::dragonfly::Link(*this); break;
2399     default:
2400       T = &Generic_GCC::SelectTool(C, JA, Inputs);
2401     }
2402   }
2403 
2404   return *T;
2405 }
2406