xref: /llvm-project/llvm/lib/Support/CachePruning.cpp (revision 2ec8b1506ad6953e6388e434d97df8754416320e)
1 //===-CachePruning.cpp - LLVM Cache Directory Pruning ---------------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 // This file implements the pruning of a directory based on least recently used.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "llvm/Support/CachePruning.h"
15 
16 #include "llvm/Support/Debug.h"
17 #include "llvm/Support/Errc.h"
18 #include "llvm/Support/FileSystem.h"
19 #include "llvm/Support/Path.h"
20 #include "llvm/Support/raw_ostream.h"
21 
22 #define DEBUG_TYPE "cache-pruning"
23 
24 #include <set>
25 #include <system_error>
26 
27 using namespace llvm;
28 
29 /// Write a new timestamp file with the given path. This is used for the pruning
30 /// interval option.
31 static void writeTimestampFile(StringRef TimestampFile) {
32   std::error_code EC;
33   raw_fd_ostream Out(TimestampFile.str(), EC, sys::fs::F_None);
34 }
35 
36 /// Prune the cache of files that haven't been accessed in a long time.
37 bool CachePruning::prune() {
38   if (Path.empty())
39     return false;
40 
41   bool isPathDir;
42   if (sys::fs::is_directory(Path, isPathDir))
43     return false;
44 
45   if (!isPathDir)
46     return false;
47 
48   if (Expiration == 0 && PercentageOfAvailableSpace == 0) {
49     DEBUG(dbgs() << "No pruning settings set, exit early\n");
50     // Nothing will be pruned, early exit
51     return false;
52   }
53 
54   // Try to stat() the timestamp file.
55   SmallString<128> TimestampFile(Path);
56   sys::path::append(TimestampFile, "llvmcache.timestamp");
57   sys::fs::file_status FileStatus;
58   sys::TimeValue CurrentTime = sys::TimeValue::now();
59   if (auto EC = sys::fs::status(TimestampFile, FileStatus)) {
60     if (EC == errc::no_such_file_or_directory) {
61       // If the timestamp file wasn't there, create one now.
62       writeTimestampFile(TimestampFile);
63     } else {
64       // Unknown error?
65       return false;
66     }
67   } else {
68     if (Interval) {
69       // Check whether the time stamp is older than our pruning interval.
70       // If not, do nothing.
71       sys::TimeValue TimeStampModTime = FileStatus.getLastModificationTime();
72       auto TimeInterval = sys::TimeValue(sys::TimeValue::SecondsType(Interval));
73       auto TimeStampAge = CurrentTime - TimeStampModTime;
74       if (TimeStampAge <= TimeInterval) {
75         DEBUG(dbgs() << "Timestamp file too recent (" << TimeStampAge.seconds()
76                      << "s old), do not prune.\n");
77         return false;
78       }
79     }
80     // Write a new timestamp file so that nobody else attempts to prune.
81     // There is a benign race condition here, if two processes happen to
82     // notice at the same time that the timestamp is out-of-date.
83     writeTimestampFile(TimestampFile);
84   }
85 
86   bool ShouldComputeSize = (PercentageOfAvailableSpace > 0);
87 
88   // Keep track of space
89   std::set<std::pair<uint64_t, std::string>> FileSizes;
90   uint64_t TotalSize = 0;
91   // Helper to add a path to the set of files to consider for size-based
92   // pruning, sorted by size.
93   auto AddToFileListForSizePruning =
94       [&](StringRef Path) {
95         if (!ShouldComputeSize)
96           return;
97         TotalSize += FileStatus.getSize();
98         FileSizes.insert(
99             std::make_pair(FileStatus.getSize(), std::string(Path)));
100       };
101 
102   // Walk the entire directory cache, looking for unused files.
103   std::error_code EC;
104   SmallString<128> CachePathNative;
105   sys::path::native(Path, CachePathNative);
106   auto TimeExpiration = sys::TimeValue(sys::TimeValue::SecondsType(Expiration));
107   // Walk all of the files within this directory.
108   for (sys::fs::directory_iterator File(CachePathNative, EC), FileEnd;
109        File != FileEnd && !EC; File.increment(EC)) {
110     // Do not touch the timestamp.
111     if (File->path() == TimestampFile)
112       continue;
113 
114     // Look at this file. If we can't stat it, there's nothing interesting
115     // there.
116     if (sys::fs::status(File->path(), FileStatus)) {
117       DEBUG(dbgs() << "Ignore " << File->path() << " (can't stat)\n");
118       continue;
119     }
120 
121     // If the file hasn't been used recently enough, delete it
122     sys::TimeValue FileAccessTime = FileStatus.getLastAccessedTime();
123     auto FileAge = CurrentTime - FileAccessTime;
124     if (FileAge > TimeExpiration) {
125       DEBUG(dbgs() << "Remove " << File->path() << " (" << FileAge.seconds()
126                    << "s old)\n");
127       sys::fs::remove(File->path());
128       continue;
129     }
130 
131     // Leave it here for now, but add it to the list of size-based pruning.
132     AddToFileListForSizePruning(File->path());
133   }
134 
135   // Prune for size now if needed
136   if (ShouldComputeSize) {
137     auto ErrOrSpaceInfo = sys::fs::disk_space(Path);
138     if (!ErrOrSpaceInfo) {
139       report_fatal_error("Can't get available size");
140     }
141     sys::fs::space_info SpaceInfo = ErrOrSpaceInfo.get();
142     auto AvailableSpace = TotalSize + SpaceInfo.free;
143     auto FileAndSize = FileSizes.rbegin();
144     DEBUG(dbgs() << "Occupancy: " << ((100 * TotalSize) / AvailableSpace)
145                  << "% target is: " << PercentageOfAvailableSpace << "\n");
146     // Remove the oldest accessed files first, till we get below the threshold
147     while (((100 * TotalSize) / AvailableSpace) > PercentageOfAvailableSpace &&
148            FileAndSize != FileSizes.rend()) {
149       // Remove the file.
150       sys::fs::remove(FileAndSize->second);
151       // Update size
152       TotalSize -= FileAndSize->first;
153       DEBUG(dbgs() << " - Remove " << FileAndSize->second << " (size "
154                    << FileAndSize->first << "), new occupancy is " << TotalSize
155                    << "%\n");
156       ++FileAndSize;
157     }
158   }
159   return true;
160 }
161