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1 //===--- LockFileManager.cpp - File-level Locking 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 #include "llvm/Support/LockFileManager.h"
10 #include "llvm/ADT/StringExtras.h"
11 #include "llvm/Support/Errc.h"
12 #include "llvm/Support/FileSystem.h"
13 #include "llvm/Support/MemoryBuffer.h"
14 #include "llvm/Support/raw_ostream.h"
15 #include "llvm/Support/Signals.h"
16 #include <sys/stat.h>
17 #include <sys/types.h>
18 #if LLVM_ON_WIN32
19 #include <windows.h>
20 #endif
21 #if LLVM_ON_UNIX
22 #include <unistd.h>
23 #endif
24 
25 #if defined(__APPLE__) && defined(__MAC_OS_X_VERSION_MIN_REQUIRED) && (__MAC_OS_X_VERSION_MIN_REQUIRED > 1050)
26 #define USE_OSX_GETHOSTUUID 1
27 #else
28 #define USE_OSX_GETHOSTUUID 0
29 #endif
30 
31 #if USE_OSX_GETHOSTUUID
32 #include <uuid/uuid.h>
33 #endif
34 using namespace llvm;
35 
36 /// \brief Attempt to read the lock file with the given name, if it exists.
37 ///
38 /// \param LockFileName The name of the lock file to read.
39 ///
40 /// \returns The process ID of the process that owns this lock file
41 Optional<std::pair<std::string, int> >
readLockFile(StringRef LockFileName)42 LockFileManager::readLockFile(StringRef LockFileName) {
43   // Read the owning host and PID out of the lock file. If it appears that the
44   // owning process is dead, the lock file is invalid.
45   ErrorOr<std::unique_ptr<MemoryBuffer>> MBOrErr =
46       MemoryBuffer::getFile(LockFileName);
47   if (!MBOrErr) {
48     sys::fs::remove(LockFileName);
49     return None;
50   }
51   MemoryBuffer &MB = *MBOrErr.get();
52 
53   StringRef Hostname;
54   StringRef PIDStr;
55   std::tie(Hostname, PIDStr) = getToken(MB.getBuffer(), " ");
56   PIDStr = PIDStr.substr(PIDStr.find_first_not_of(" "));
57   int PID;
58   if (!PIDStr.getAsInteger(10, PID)) {
59     auto Owner = std::make_pair(std::string(Hostname), PID);
60     if (processStillExecuting(Owner.first, Owner.second))
61       return Owner;
62   }
63 
64   // Delete the lock file. It's invalid anyway.
65   sys::fs::remove(LockFileName);
66   return None;
67 }
68 
getHostID(SmallVectorImpl<char> & HostID)69 static std::error_code getHostID(SmallVectorImpl<char> &HostID) {
70   HostID.clear();
71 
72 #if USE_OSX_GETHOSTUUID
73   // On OS X, use the more stable hardware UUID instead of hostname.
74   struct timespec wait = {1, 0}; // 1 second.
75   uuid_t uuid;
76   if (gethostuuid(uuid, &wait) != 0)
77     return std::error_code(errno, std::system_category());
78 
79   uuid_string_t UUIDStr;
80   uuid_unparse(uuid, UUIDStr);
81   StringRef UUIDRef(UUIDStr);
82   HostID.append(UUIDRef.begin(), UUIDRef.end());
83 
84 #elif LLVM_ON_UNIX
85   char HostName[256];
86   HostName[255] = 0;
87   HostName[0] = 0;
88   gethostname(HostName, 255);
89   StringRef HostNameRef(HostName);
90   HostID.append(HostNameRef.begin(), HostNameRef.end());
91 
92 #else
93   StringRef Dummy("localhost");
94   HostID.append(Dummy.begin(), Dummy.end());
95 #endif
96 
97   return std::error_code();
98 }
99 
processStillExecuting(StringRef HostID,int PID)100 bool LockFileManager::processStillExecuting(StringRef HostID, int PID) {
101 #if LLVM_ON_UNIX && !defined(__ANDROID__)
102   SmallString<256> StoredHostID;
103   if (getHostID(StoredHostID))
104     return true; // Conservatively assume it's executing on error.
105 
106   // Check whether the process is dead. If so, we're done.
107   if (StoredHostID == HostID && getsid(PID) == -1 && errno == ESRCH)
108     return false;
109 #endif
110 
111   return true;
112 }
113 
114 namespace {
115 /// An RAII helper object ensure that the unique lock file is removed.
116 ///
117 /// Ensures that if there is an error or a signal before we finish acquiring the
118 /// lock, the unique file will be removed. And if we successfully take the lock,
119 /// the signal handler is left in place so that signals while the lock is held
120 /// will remove the unique lock file. The caller should ensure there is a
121 /// matching call to sys::DontRemoveFileOnSignal when the lock is released.
122 class RemoveUniqueLockFileOnSignal {
123   StringRef Filename;
124   bool RemoveImmediately;
125 public:
RemoveUniqueLockFileOnSignal(StringRef Name)126   RemoveUniqueLockFileOnSignal(StringRef Name)
127   : Filename(Name), RemoveImmediately(true) {
128     sys::RemoveFileOnSignal(Filename, nullptr);
129   }
~RemoveUniqueLockFileOnSignal()130   ~RemoveUniqueLockFileOnSignal() {
131     if (!RemoveImmediately) {
132       // Leave the signal handler enabled. It will be removed when the lock is
133       // released.
134       return;
135     }
136     sys::fs::remove(Filename);
137     sys::DontRemoveFileOnSignal(Filename);
138   }
lockAcquired()139   void lockAcquired() { RemoveImmediately = false; }
140 };
141 } // end anonymous namespace
142 
LockFileManager(StringRef FileName)143 LockFileManager::LockFileManager(StringRef FileName)
144 {
145   this->FileName = FileName;
146   if (std::error_code EC = sys::fs::make_absolute(this->FileName)) {
147     std::string S("failed to obtain absolute path for ");
148     S.append(this->FileName.str());
149     setError(EC, S);
150     return;
151   }
152   LockFileName = this->FileName;
153   LockFileName += ".lock";
154 
155   // If the lock file already exists, don't bother to try to create our own
156   // lock file; it won't work anyway. Just figure out who owns this lock file.
157   if ((Owner = readLockFile(LockFileName)))
158     return;
159 
160   // Create a lock file that is unique to this instance.
161   UniqueLockFileName = LockFileName;
162   UniqueLockFileName += "-%%%%%%%%";
163   int UniqueLockFileID;
164   if (std::error_code EC = sys::fs::createUniqueFile(
165           UniqueLockFileName, UniqueLockFileID, UniqueLockFileName)) {
166     std::string S("failed to create unique file ");
167     S.append(UniqueLockFileName.str());
168     setError(EC, S);
169     return;
170   }
171 
172   // Write our process ID to our unique lock file.
173   {
174     SmallString<256> HostID;
175     if (auto EC = getHostID(HostID)) {
176       setError(EC, "failed to get host id");
177       return;
178     }
179 
180     raw_fd_ostream Out(UniqueLockFileID, /*shouldClose=*/true);
181     Out << HostID << ' ';
182 #if LLVM_ON_UNIX
183     Out << getpid();
184 #else
185     Out << "1";
186 #endif
187     Out.close();
188 
189     if (Out.has_error()) {
190       // We failed to write out PID, so make up an excuse, remove the
191       // unique lock file, and fail.
192       auto EC = make_error_code(errc::no_space_on_device);
193       std::string S("failed to write to ");
194       S.append(UniqueLockFileName.str());
195       setError(EC, S);
196       sys::fs::remove(UniqueLockFileName);
197       return;
198     }
199   }
200 
201   // Clean up the unique file on signal, which also releases the lock if it is
202   // held since the .lock symlink will point to a nonexistent file.
203   RemoveUniqueLockFileOnSignal RemoveUniqueFile(UniqueLockFileName);
204 
205   while (1) {
206     // Create a link from the lock file name. If this succeeds, we're done.
207     std::error_code EC =
208         sys::fs::create_link(UniqueLockFileName, LockFileName);
209     if (!EC) {
210       RemoveUniqueFile.lockAcquired();
211       return;
212     }
213 
214     if (EC != errc::file_exists) {
215       std::string S("failed to create link ");
216       raw_string_ostream OSS(S);
217       OSS << LockFileName.str() << " to " << UniqueLockFileName.str();
218       setError(EC, OSS.str());
219       return;
220     }
221 
222     // Someone else managed to create the lock file first. Read the process ID
223     // from the lock file.
224     if ((Owner = readLockFile(LockFileName))) {
225       // Wipe out our unique lock file (it's useless now)
226       sys::fs::remove(UniqueLockFileName);
227       return;
228     }
229 
230     if (!sys::fs::exists(LockFileName)) {
231       // The previous owner released the lock file before we could read it.
232       // Try to get ownership again.
233       continue;
234     }
235 
236     // There is a lock file that nobody owns; try to clean it up and get
237     // ownership.
238     if ((EC = sys::fs::remove(LockFileName))) {
239       std::string S("failed to remove lockfile ");
240       S.append(UniqueLockFileName.str());
241       setError(EC, S);
242       return;
243     }
244   }
245 }
246 
getState() const247 LockFileManager::LockFileState LockFileManager::getState() const {
248   if (Owner)
249     return LFS_Shared;
250 
251   if (Error)
252     return LFS_Error;
253 
254   return LFS_Owned;
255 }
256 
getErrorMessage() const257 std::string LockFileManager::getErrorMessage() const {
258   if (Error) {
259     std::string Str(ErrorDiagMsg);
260     std::string ErrCodeMsg = Error->message();
261     raw_string_ostream OSS(Str);
262     if (!ErrCodeMsg.empty())
263       OSS << ": " << Error->message();
264     OSS.flush();
265     return Str;
266   }
267   return "";
268 }
269 
~LockFileManager()270 LockFileManager::~LockFileManager() {
271   if (getState() != LFS_Owned)
272     return;
273 
274   // Since we own the lock, remove the lock file and our own unique lock file.
275   sys::fs::remove(LockFileName);
276   sys::fs::remove(UniqueLockFileName);
277   // The unique file is now gone, so remove it from the signal handler. This
278   // matches a sys::RemoveFileOnSignal() in LockFileManager().
279   sys::DontRemoveFileOnSignal(UniqueLockFileName);
280 }
281 
waitForUnlock()282 LockFileManager::WaitForUnlockResult LockFileManager::waitForUnlock() {
283   if (getState() != LFS_Shared)
284     return Res_Success;
285 
286 #if LLVM_ON_WIN32
287   unsigned long Interval = 1;
288 #else
289   struct timespec Interval;
290   Interval.tv_sec = 0;
291   Interval.tv_nsec = 1000000;
292 #endif
293   // Don't wait more than five minutes per iteration. Total timeout for the file
294   // to appear is ~8.5 mins.
295   const unsigned MaxSeconds = 5*60;
296   do {
297     // Sleep for the designated interval, to allow the owning process time to
298     // finish up and remove the lock file.
299     // FIXME: Should we hook in to system APIs to get a notification when the
300     // lock file is deleted?
301 #if LLVM_ON_WIN32
302     Sleep(Interval);
303 #else
304     nanosleep(&Interval, nullptr);
305 #endif
306 
307     if (sys::fs::access(LockFileName.c_str(), sys::fs::AccessMode::Exist) ==
308         errc::no_such_file_or_directory) {
309       // If the original file wasn't created, somone thought the lock was dead.
310       if (!sys::fs::exists(FileName))
311         return Res_OwnerDied;
312       return Res_Success;
313     }
314 
315     // If the process owning the lock died without cleaning up, just bail out.
316     if (!processStillExecuting((*Owner).first, (*Owner).second))
317       return Res_OwnerDied;
318 
319     // Exponentially increase the time we wait for the lock to be removed.
320 #if LLVM_ON_WIN32
321     Interval *= 2;
322 #else
323     Interval.tv_sec *= 2;
324     Interval.tv_nsec *= 2;
325     if (Interval.tv_nsec >= 1000000000) {
326       ++Interval.tv_sec;
327       Interval.tv_nsec -= 1000000000;
328     }
329 #endif
330   } while (
331 #if LLVM_ON_WIN32
332            Interval < MaxSeconds * 1000
333 #else
334            Interval.tv_sec < (time_t)MaxSeconds
335 #endif
336            );
337 
338   // Give up.
339   return Res_Timeout;
340 }
341 
unsafeRemoveLockFile()342 std::error_code LockFileManager::unsafeRemoveLockFile() {
343   return sys::fs::remove(LockFileName);
344 }
345