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1 //===-- llvm-config.cpp - LLVM project configuration utility --------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This tool encapsulates information about an LLVM project configuration for
11 // use by other project's build environments (to determine installed path,
12 // available features, required libraries, etc.).
13 //
14 // Note that although this tool *may* be used by some parts of LLVM's build
15 // itself (i.e., the Makefiles use it to compute required libraries when linking
16 // tools), this tool is primarily designed to support external projects.
17 //
18 //===----------------------------------------------------------------------===//
19 
20 #include "llvm/ADT/STLExtras.h"
21 #include "llvm/ADT/StringMap.h"
22 #include "llvm/ADT/StringRef.h"
23 #include "llvm/ADT/Twine.h"
24 #include "llvm/Config/config.h"
25 #include "llvm/Config/llvm-config.h"
26 #include "llvm/Support/FileSystem.h"
27 #include "llvm/Support/Path.h"
28 #include "llvm/Support/raw_ostream.h"
29 #include <cstdlib>
30 #include <set>
31 #include <vector>
32 
33 using namespace llvm;
34 
35 // Include the build time variables we can report to the user. This is generated
36 // at build time from the BuildVariables.inc.in file by the build system.
37 #include "BuildVariables.inc"
38 
39 // Include the component table. This creates an array of struct
40 // AvailableComponent entries, which record the component name, library name,
41 // and required components for all of the available libraries.
42 //
43 // Not all components define a library, we also use "library groups" as a way to
44 // create entries for pseudo groups like x86 or all-targets.
45 #include "LibraryDependencies.inc"
46 
47 /// \brief Traverse a single component adding to the topological ordering in
48 /// \arg RequiredLibs.
49 ///
50 /// \param Name - The component to traverse.
51 /// \param ComponentMap - A prebuilt map of component names to descriptors.
52 /// \param VisitedComponents [in] [out] - The set of already visited components.
53 /// \param RequiredLibs [out] - The ordered list of required libraries.
VisitComponent(StringRef Name,const StringMap<AvailableComponent * > & ComponentMap,std::set<AvailableComponent * > & VisitedComponents,std::vector<StringRef> & RequiredLibs,bool IncludeNonInstalled)54 static void VisitComponent(StringRef Name,
55                            const StringMap<AvailableComponent*> &ComponentMap,
56                            std::set<AvailableComponent*> &VisitedComponents,
57                            std::vector<StringRef> &RequiredLibs,
58                            bool IncludeNonInstalled) {
59   // Lookup the component.
60   AvailableComponent *AC = ComponentMap.lookup(Name);
61   assert(AC && "Invalid component name!");
62 
63   // Add to the visited table.
64   if (!VisitedComponents.insert(AC).second) {
65     // We are done if the component has already been visited.
66     return;
67   }
68 
69   // Only include non-installed components if requested.
70   if (!AC->IsInstalled && !IncludeNonInstalled)
71     return;
72 
73   // Otherwise, visit all the dependencies.
74   for (unsigned i = 0; AC->RequiredLibraries[i]; ++i) {
75     VisitComponent(AC->RequiredLibraries[i], ComponentMap, VisitedComponents,
76                    RequiredLibs, IncludeNonInstalled);
77   }
78 
79   // Add to the required library list.
80   if (AC->Library)
81     RequiredLibs.push_back(AC->Library);
82 }
83 
84 /// \brief Compute the list of required libraries for a given list of
85 /// components, in an order suitable for passing to a linker (that is, libraries
86 /// appear prior to their dependencies).
87 ///
88 /// \param Components - The names of the components to find libraries for.
89 /// \param RequiredLibs [out] - On return, the ordered list of libraries that
90 /// are required to link the given components.
91 /// \param IncludeNonInstalled - Whether non-installed components should be
92 /// reported.
ComputeLibsForComponents(const std::vector<StringRef> & Components,std::vector<StringRef> & RequiredLibs,bool IncludeNonInstalled)93 void ComputeLibsForComponents(const std::vector<StringRef> &Components,
94                               std::vector<StringRef> &RequiredLibs,
95                               bool IncludeNonInstalled) {
96   std::set<AvailableComponent*> VisitedComponents;
97 
98   // Build a map of component names to information.
99   StringMap<AvailableComponent*> ComponentMap;
100   for (unsigned i = 0; i != array_lengthof(AvailableComponents); ++i) {
101     AvailableComponent *AC = &AvailableComponents[i];
102     ComponentMap[AC->Name] = AC;
103   }
104 
105   // Visit the components.
106   for (unsigned i = 0, e = Components.size(); i != e; ++i) {
107     // Users are allowed to provide mixed case component names.
108     std::string ComponentLower = Components[i].lower();
109 
110     // Validate that the user supplied a valid component name.
111     if (!ComponentMap.count(ComponentLower)) {
112       llvm::errs() << "llvm-config: unknown component name: " << Components[i]
113                    << "\n";
114       exit(1);
115     }
116 
117     VisitComponent(ComponentLower, ComponentMap, VisitedComponents,
118                    RequiredLibs, IncludeNonInstalled);
119   }
120 
121   // The list is now ordered with leafs first, we want the libraries to printed
122   // in the reverse order of dependency.
123   std::reverse(RequiredLibs.begin(), RequiredLibs.end());
124 }
125 
126 /* *** */
127 
usage()128 void usage() {
129   errs() << "\
130 usage: llvm-config <OPTION>... [<COMPONENT>...]\n\
131 \n\
132 Get various configuration information needed to compile programs which use\n\
133 LLVM.  Typically called from 'configure' scripts.  Examples:\n\
134   llvm-config --cxxflags\n\
135   llvm-config --ldflags\n\
136   llvm-config --libs engine bcreader scalaropts\n\
137 \n\
138 Options:\n\
139   --version         Print LLVM version.\n\
140   --prefix          Print the installation prefix.\n\
141   --src-root        Print the source root LLVM was built from.\n\
142   --obj-root        Print the object root used to build LLVM.\n\
143   --bindir          Directory containing LLVM executables.\n\
144   --includedir      Directory containing LLVM headers.\n\
145   --libdir          Directory containing LLVM libraries.\n\
146   --cppflags        C preprocessor flags for files that include LLVM headers.\n\
147   --cflags          C compiler flags for files that include LLVM headers.\n\
148   --cxxflags        C++ compiler flags for files that include LLVM headers.\n\
149   --ldflags         Print Linker flags.\n\
150   --libs            Libraries needed to link against LLVM components.\n\
151   --libnames        Bare library names for in-tree builds.\n\
152   --libfiles        Fully qualified library filenames for makefile depends.\n\
153   --components      List of all possible components.\n\
154   --targets-built   List of all targets currently built.\n\
155   --host-target     Target triple used to configure LLVM.\n\
156   --build-mode      Print build mode of LLVM tree (e.g. Debug or Release).\n\
157 Typical components:\n\
158   all               All LLVM libraries (default).\n\
159   engine            Either a native JIT or a bitcode interpreter.\n";
160   exit(1);
161 }
162 
163 /// \brief Compute the path to the main executable.
GetExecutablePath(const char * Argv0)164 llvm::sys::Path GetExecutablePath(const char *Argv0) {
165   // This just needs to be some symbol in the binary; C++ doesn't
166   // allow taking the address of ::main however.
167   void *P = (void*) (intptr_t) GetExecutablePath;
168   return llvm::sys::Path::GetMainExecutable(Argv0, P);
169 }
170 
main(int argc,char ** argv)171 int main(int argc, char **argv) {
172   std::vector<StringRef> Components;
173   bool PrintLibs = false, PrintLibNames = false, PrintLibFiles = false;
174   bool HasAnyOption = false;
175 
176   // llvm-config is designed to support being run both from a development tree
177   // and from an installed path. We try and auto-detect which case we are in so
178   // that we can report the correct information when run from a development
179   // tree.
180   bool IsInDevelopmentTree;
181   enum { MakefileStyle, CMakeStyle, CMakeBuildModeStyle } DevelopmentTreeLayout;
182   llvm::SmallString<256> CurrentPath(GetExecutablePath(argv[0]).str());
183   std::string CurrentExecPrefix;
184   std::string ActiveObjRoot;
185 
186   // Create an absolute path, and pop up one directory (we expect to be inside a
187   // bin dir).
188   sys::fs::make_absolute(CurrentPath);
189   CurrentExecPrefix = sys::path::parent_path(
190     sys::path::parent_path(CurrentPath)).str();
191 
192   // Check to see if we are inside a development tree by comparing to possible
193   // locations (prefix style or CMake style).
194   if (sys::fs::equivalent(CurrentExecPrefix,
195                           Twine(LLVM_OBJ_ROOT) + "/" + LLVM_BUILDMODE)) {
196     IsInDevelopmentTree = true;
197     DevelopmentTreeLayout = MakefileStyle;
198 
199     // If we are in a development tree, then check if we are in a BuildTools
200     // directory. This indicates we are built for the build triple, but we
201     // always want to provide information for the host triple.
202     if (sys::path::filename(LLVM_OBJ_ROOT) == "BuildTools") {
203       ActiveObjRoot = sys::path::parent_path(LLVM_OBJ_ROOT);
204     } else {
205       ActiveObjRoot = LLVM_OBJ_ROOT;
206     }
207   } else if (sys::fs::equivalent(CurrentExecPrefix, LLVM_OBJ_ROOT)) {
208     IsInDevelopmentTree = true;
209     DevelopmentTreeLayout = CMakeStyle;
210     ActiveObjRoot = LLVM_OBJ_ROOT;
211   } else if (sys::fs::equivalent(CurrentExecPrefix,
212                                  Twine(LLVM_OBJ_ROOT) + "/bin")) {
213     IsInDevelopmentTree = true;
214     DevelopmentTreeLayout = CMakeBuildModeStyle;
215     ActiveObjRoot = LLVM_OBJ_ROOT;
216   } else {
217     IsInDevelopmentTree = false;
218     DevelopmentTreeLayout = MakefileStyle; // Initialized to avoid warnings.
219   }
220 
221   // Compute various directory locations based on the derived location
222   // information.
223   std::string ActivePrefix, ActiveBinDir, ActiveIncludeDir, ActiveLibDir;
224   std::string ActiveIncludeOption;
225   if (IsInDevelopmentTree) {
226     ActiveIncludeDir = std::string(LLVM_SRC_ROOT) + "/include";
227     ActivePrefix = CurrentExecPrefix;
228 
229     // CMake organizes the products differently than a normal prefix style
230     // layout.
231     switch (DevelopmentTreeLayout) {
232     case MakefileStyle:
233       ActiveBinDir = ActiveObjRoot + "/" + LLVM_BUILDMODE + "/bin";
234       ActiveLibDir = ActiveObjRoot + "/" + LLVM_BUILDMODE + "/lib";
235       break;
236     case CMakeStyle:
237       ActiveBinDir = ActiveObjRoot + "/bin";
238       ActiveLibDir = ActiveObjRoot + "/lib";
239       break;
240     case CMakeBuildModeStyle:
241       ActiveBinDir = ActiveObjRoot + "/bin/" + LLVM_BUILDMODE;
242       ActiveLibDir = ActiveObjRoot + "/lib/" + LLVM_BUILDMODE;
243       break;
244     }
245 
246     // We need to include files from both the source and object trees.
247     ActiveIncludeOption = ("-I" + ActiveIncludeDir + " " +
248                            "-I" + ActiveObjRoot + "/include");
249   } else {
250     ActivePrefix = CurrentExecPrefix;
251     ActiveIncludeDir = ActivePrefix + "/include";
252     ActiveBinDir = ActivePrefix + "/bin";
253     ActiveLibDir = ActivePrefix + "/lib";
254     ActiveIncludeOption = "-I" + ActiveIncludeDir;
255   }
256 
257   raw_ostream &OS = outs();
258   for (int i = 1; i != argc; ++i) {
259     StringRef Arg = argv[i];
260 
261     if (Arg.startswith("-")) {
262       HasAnyOption = true;
263       if (Arg == "--version") {
264         OS << PACKAGE_VERSION << '\n';
265       } else if (Arg == "--prefix") {
266         OS << ActivePrefix << '\n';
267       } else if (Arg == "--bindir") {
268         OS << ActiveBinDir << '\n';
269       } else if (Arg == "--includedir") {
270         OS << ActiveIncludeDir << '\n';
271       } else if (Arg == "--libdir") {
272         OS << ActiveLibDir << '\n';
273       } else if (Arg == "--cppflags") {
274         OS << ActiveIncludeOption << ' ' << LLVM_CPPFLAGS << '\n';
275       } else if (Arg == "--cflags") {
276         OS << ActiveIncludeOption << ' ' << LLVM_CFLAGS << '\n';
277       } else if (Arg == "--cxxflags") {
278         OS << ActiveIncludeOption << ' ' << LLVM_CXXFLAGS << '\n';
279       } else if (Arg == "--ldflags") {
280         OS << "-L" << ActiveLibDir << ' ' << LLVM_LDFLAGS
281            << ' ' << LLVM_SYSTEM_LIBS << '\n';
282       } else if (Arg == "--libs") {
283         PrintLibs = true;
284       } else if (Arg == "--libnames") {
285         PrintLibNames = true;
286       } else if (Arg == "--libfiles") {
287         PrintLibFiles = true;
288       } else if (Arg == "--components") {
289         for (unsigned j = 0; j != array_lengthof(AvailableComponents); ++j) {
290           // Only include non-installed components when in a development tree.
291           if (!AvailableComponents[j].IsInstalled && !IsInDevelopmentTree)
292             continue;
293 
294           OS << ' ';
295           OS << AvailableComponents[j].Name;
296         }
297         OS << '\n';
298       } else if (Arg == "--targets-built") {
299         OS << LLVM_TARGETS_BUILT << '\n';
300       } else if (Arg == "--host-target") {
301         OS << LLVM_DEFAULT_TARGET_TRIPLE << '\n';
302       } else if (Arg == "--build-mode") {
303         OS << LLVM_BUILDMODE << '\n';
304       } else if (Arg == "--obj-root") {
305         OS << LLVM_OBJ_ROOT << '\n';
306       } else if (Arg == "--src-root") {
307         OS << LLVM_SRC_ROOT << '\n';
308       } else {
309         usage();
310       }
311     } else {
312       Components.push_back(Arg);
313     }
314   }
315 
316   if (!HasAnyOption)
317     usage();
318 
319   if (PrintLibs || PrintLibNames || PrintLibFiles) {
320     // If no components were specified, default to "all".
321     if (Components.empty())
322       Components.push_back("all");
323 
324     // Construct the list of all the required libraries.
325     std::vector<StringRef> RequiredLibs;
326     ComputeLibsForComponents(Components, RequiredLibs,
327                              /*IncludeNonInstalled=*/IsInDevelopmentTree);
328 
329     for (unsigned i = 0, e = RequiredLibs.size(); i != e; ++i) {
330       StringRef Lib = RequiredLibs[i];
331       if (i)
332         OS << ' ';
333 
334       if (PrintLibNames) {
335         OS << Lib;
336       } else if (PrintLibFiles) {
337         OS << ActiveLibDir << '/' << Lib;
338       } else if (PrintLibs) {
339         // If this is a typical library name, include it using -l.
340         if (Lib.startswith("lib") && Lib.endswith(".a")) {
341           OS << "-l" << Lib.slice(3, Lib.size()-2);
342           continue;
343         }
344 
345         // Otherwise, print the full path.
346         OS << ActiveLibDir << '/' << Lib;
347       }
348     }
349     OS << '\n';
350   } else if (!Components.empty()) {
351     errs() << "llvm-config: error: components given, but unused\n\n";
352     usage();
353   }
354 
355   return 0;
356 }
357