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 using namespace std::chrono; 39 40 if (Path.empty()) 41 return false; 42 43 bool isPathDir; 44 if (sys::fs::is_directory(Path, isPathDir)) 45 return false; 46 47 if (!isPathDir) 48 return false; 49 50 if (Expiration == seconds(0) && PercentageOfAvailableSpace == 0) { 51 DEBUG(dbgs() << "No pruning settings set, exit early\n"); 52 // Nothing will be pruned, early exit 53 return false; 54 } 55 56 // Try to stat() the timestamp file. 57 SmallString<128> TimestampFile(Path); 58 sys::path::append(TimestampFile, "llvmcache.timestamp"); 59 sys::fs::file_status FileStatus; 60 const auto CurrentTime = system_clock::now(); 61 if (auto EC = sys::fs::status(TimestampFile, FileStatus)) { 62 if (EC == errc::no_such_file_or_directory) { 63 // If the timestamp file wasn't there, create one now. 64 writeTimestampFile(TimestampFile); 65 } else { 66 // Unknown error? 67 return false; 68 } 69 } else { 70 if (Interval == seconds(0)) { 71 // Check whether the time stamp is older than our pruning interval. 72 // If not, do nothing. 73 const auto TimeStampModTime = FileStatus.getLastModificationTime(); 74 auto TimeStampAge = CurrentTime - TimeStampModTime; 75 if (TimeStampAge <= Interval) { 76 DEBUG(dbgs() << "Timestamp file too recent (" 77 << duration_cast<seconds>(TimeStampAge).count() 78 << "s old), do not prune.\n"); 79 return false; 80 } 81 } 82 // Write a new timestamp file so that nobody else attempts to prune. 83 // There is a benign race condition here, if two processes happen to 84 // notice at the same time that the timestamp is out-of-date. 85 writeTimestampFile(TimestampFile); 86 } 87 88 bool ShouldComputeSize = (PercentageOfAvailableSpace > 0); 89 90 // Keep track of space 91 std::set<std::pair<uint64_t, std::string>> FileSizes; 92 uint64_t TotalSize = 0; 93 // Helper to add a path to the set of files to consider for size-based 94 // pruning, sorted by size. 95 auto AddToFileListForSizePruning = 96 [&](StringRef Path) { 97 if (!ShouldComputeSize) 98 return; 99 TotalSize += FileStatus.getSize(); 100 FileSizes.insert( 101 std::make_pair(FileStatus.getSize(), std::string(Path))); 102 }; 103 104 // Walk the entire directory cache, looking for unused files. 105 std::error_code EC; 106 SmallString<128> CachePathNative; 107 sys::path::native(Path, CachePathNative); 108 // Walk all of the files within this directory. 109 for (sys::fs::directory_iterator File(CachePathNative, EC), FileEnd; 110 File != FileEnd && !EC; File.increment(EC)) { 111 // Do not touch the timestamp. 112 if (File->path() == TimestampFile) 113 continue; 114 115 // Look at this file. If we can't stat it, there's nothing interesting 116 // there. 117 if (sys::fs::status(File->path(), FileStatus)) { 118 DEBUG(dbgs() << "Ignore " << File->path() << " (can't stat)\n"); 119 continue; 120 } 121 122 // If the file hasn't been used recently enough, delete it 123 const auto FileAccessTime = FileStatus.getLastAccessedTime(); 124 auto FileAge = CurrentTime - FileAccessTime; 125 if (FileAge > Expiration) { 126 DEBUG(dbgs() << "Remove " << File->path() << " (" 127 << duration_cast<seconds>(FileAge).count() << "s old)\n"); 128 sys::fs::remove(File->path()); 129 continue; 130 } 131 132 // Leave it here for now, but add it to the list of size-based pruning. 133 AddToFileListForSizePruning(File->path()); 134 } 135 136 // Prune for size now if needed 137 if (ShouldComputeSize) { 138 auto ErrOrSpaceInfo = sys::fs::disk_space(Path); 139 if (!ErrOrSpaceInfo) { 140 report_fatal_error("Can't get available size"); 141 } 142 sys::fs::space_info SpaceInfo = ErrOrSpaceInfo.get(); 143 auto AvailableSpace = TotalSize + SpaceInfo.free; 144 auto FileAndSize = FileSizes.rbegin(); 145 DEBUG(dbgs() << "Occupancy: " << ((100 * TotalSize) / AvailableSpace) 146 << "% target is: " << PercentageOfAvailableSpace << "\n"); 147 // Remove the oldest accessed files first, till we get below the threshold 148 while (((100 * TotalSize) / AvailableSpace) > PercentageOfAvailableSpace && 149 FileAndSize != FileSizes.rend()) { 150 // Remove the file. 151 sys::fs::remove(FileAndSize->second); 152 // Update size 153 TotalSize -= FileAndSize->first; 154 DEBUG(dbgs() << " - Remove " << FileAndSize->second << " (size " 155 << FileAndSize->first << "), new occupancy is " << TotalSize 156 << "%\n"); 157 ++FileAndSize; 158 } 159 } 160 return true; 161 } 162