mirror of
https://github.com/s3fs-fuse/s3fs-fuse.git
synced 2024-11-11 15:20:59 +00:00
cleanup cache directory when running out of disk space
This commit is contained in:
parent
43df94719b
commit
95578cad43
101
src/fdcache.cpp
101
src/fdcache.cpp
@ -31,6 +31,7 @@
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#include <errno.h>
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#include <string.h>
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#include <assert.h>
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#include <dirent.h>
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#include <curl/curl.h>
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#include <string>
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#include <iostream>
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@ -724,12 +725,15 @@ void FdEntity::Close(void)
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}
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}
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int FdEntity::Dup(void)
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int FdEntity::Dup(bool no_fd_lock_wait)
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{
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S3FS_PRN_DBG("[path=%s][fd=%d][refcnt=%d]", path.c_str(), fd, (-1 != fd ? refcnt + 1 : refcnt));
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if(-1 != fd){
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AutoLock auto_lock(&fdent_lock);
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AutoLock auto_lock(&fdent_lock, no_fd_lock_wait);
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if (!auto_lock.isLockAcquired()) {
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return -1;
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}
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refcnt++;
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}
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return fd;
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@ -781,13 +785,16 @@ int FdEntity::OpenMirrorFile(void)
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// This method does not lock fdent_lock, because FdManager::fd_manager_lock
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// is locked before calling.
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//
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int FdEntity::Open(headers_t* pmeta, ssize_t size, time_t time)
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int FdEntity::Open(headers_t* pmeta, ssize_t size, time_t time, bool no_fd_lock_wait)
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{
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S3FS_PRN_DBG("[path=%s][fd=%d][size=%jd][time=%jd]", path.c_str(), fd, (intmax_t)size, (intmax_t)time);
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if(-1 != fd){
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// already opened, needs to increment refcnt.
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Dup();
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if (fd != Dup(no_fd_lock_wait)) {
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// had to wait for fd lock, return
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return -EIO;
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}
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// check only file size(do not need to save cfs and time.
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if(0 <= size && pagelist.Size() != static_cast<size_t>(size)){
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@ -1545,6 +1552,10 @@ ssize_t FdEntity::Read(char* bytes, off_t start, size_t size, bool force_load)
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if(-1 == fd){
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return -EBADF;
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}
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// check if not enough disk space left BEFORE locking fd
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if(FdManager::IsCacheDir() && !FdManager::IsSafeDiskSpace(NULL, size)){
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FdManager::get()->CleanupCacheDir();
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}
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AutoLock auto_lock(&fdent_lock);
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if(force_load){
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@ -1605,6 +1616,10 @@ ssize_t FdEntity::Write(const char* bytes, off_t start, size_t size)
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if(-1 == fd){
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return -EBADF;
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}
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// check if not enough disk space left BEFORE locking fd
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if(FdManager::IsCacheDir() && !FdManager::IsSafeDiskSpace(NULL, size)){
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FdManager::get()->CleanupCacheDir();
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}
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AutoLock auto_lock(&fdent_lock);
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// check file size
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@ -1686,6 +1701,22 @@ ssize_t FdEntity::Write(const char* bytes, off_t start, size_t size)
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return wsize;
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}
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void FdEntity::CleanupCache()
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{
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AutoLock auto_lock(&fdent_lock, true);
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if (!auto_lock.isLockAcquired()) {
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return;
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}
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if (is_modify) {
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// cache is not commited to s3, cannot cleanup
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return;
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}
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FdManager::DeleteCacheFile(path.c_str());
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}
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//------------------------------------------------
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// FdManager symbol
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//------------------------------------------------
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@ -1709,6 +1740,7 @@ ssize_t FdEntity::Write(const char* bytes, off_t start, size_t size)
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//------------------------------------------------
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FdManager FdManager::singleton;
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pthread_mutex_t FdManager::fd_manager_lock;
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pthread_mutex_t FdManager::cache_cleanup_lock;
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bool FdManager::is_lock_init(false);
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string FdManager::cache_dir("");
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size_t FdManager::free_disk_space = 0;
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@ -1892,6 +1924,7 @@ FdManager::FdManager()
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if(this == FdManager::get()){
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try{
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pthread_mutex_init(&FdManager::fd_manager_lock, NULL);
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pthread_mutex_init(&FdManager::cache_cleanup_lock, NULL);
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FdManager::is_lock_init = true;
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}catch(exception& e){
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FdManager::is_lock_init = false;
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@ -1914,6 +1947,7 @@ FdManager::~FdManager()
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if(FdManager::is_lock_init){
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try{
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pthread_mutex_destroy(&FdManager::fd_manager_lock);
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pthread_mutex_destroy(&FdManager::cache_cleanup_lock);
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}catch(exception& e){
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S3FS_PRN_CRIT("failed to init mutex");
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}
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@ -1954,7 +1988,7 @@ FdEntity* FdManager::GetFdEntity(const char* path, int existfd)
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return NULL;
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}
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FdEntity* FdManager::Open(const char* path, headers_t* pmeta, ssize_t size, time_t time, bool force_tmpfile, bool is_create)
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FdEntity* FdManager::Open(const char* path, headers_t* pmeta, ssize_t size, time_t time, bool force_tmpfile, bool is_create, bool no_fd_lock_wait)
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{
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S3FS_PRN_DBG("[path=%s][size=%jd][time=%jd]", SAFESTRPTR(path), (intmax_t)size, (intmax_t)time);
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@ -2014,7 +2048,7 @@ FdEntity* FdManager::Open(const char* path, headers_t* pmeta, ssize_t size, time
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}
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// open
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if(-1 == ent->Open(pmeta, size, time)){
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if(0 != ent->Open(pmeta, size, time, no_fd_lock_wait)){
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return NULL;
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}
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return ent;
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@ -2112,6 +2146,61 @@ bool FdManager::ChangeEntityToTempPath(FdEntity* ent, const char* path)
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return false;
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}
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void FdManager::CleanupCacheDir()
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{
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if (!FdManager::IsCacheDir()) {
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return;
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}
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AutoLock auto_lock(&FdManager::cache_cleanup_lock, true);
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if (!auto_lock.isLockAcquired()) {
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return;
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}
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CleanupCacheDirInternal("");
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}
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void FdManager::CleanupCacheDirInternal(const std::string &path)
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{
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DIR* dp;
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struct dirent* dent;
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std::string abs_path = cache_dir + "/" + bucket + path;
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if(NULL == (dp = opendir(abs_path.c_str()))){
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S3FS_PRN_ERR("could not open cache dir(%s) - errno(%d)", abs_path.c_str(), errno);
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return;
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}
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for(dent = readdir(dp); dent; dent = readdir(dp)){
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if(0 == strcmp(dent->d_name, "..") || 0 == strcmp(dent->d_name, ".")){
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continue;
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}
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string fullpath = abs_path;
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fullpath += "/";
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fullpath += dent->d_name;
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struct stat st;
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if(0 != lstat(fullpath.c_str(), &st)){
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S3FS_PRN_ERR("could not get stats of file(%s) - errno(%d)", fullpath.c_str(), errno);
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closedir(dp);
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return;
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}
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string next_path = path + "/" + dent->d_name;
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if(S_ISDIR(st.st_mode)){
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CleanupCacheDirInternal(next_path);
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}else{
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FdEntity* ent;
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if(NULL == (ent = FdManager::get()->Open(next_path.c_str(), NULL, -1, -1, false, true, true))){
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continue;
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}
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ent->CleanupCache();
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Close(ent);
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}
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}
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closedir(dp);
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}
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/*
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* Local variables:
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* tab-width: 4
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@ -144,9 +144,9 @@ class FdEntity
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void Close(void);
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bool IsOpen(void) const { return (-1 != fd); }
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int Open(headers_t* pmeta = NULL, ssize_t size = -1, time_t time = -1);
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int Open(headers_t* pmeta = NULL, ssize_t size = -1, time_t time = -1, bool no_fd_lock_wait = false);
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bool OpenAndLoadAll(headers_t* pmeta = NULL, size_t* size = NULL, bool force_load = false);
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int Dup(void);
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int Dup(bool no_fd_lock_wait = false);
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const char* GetPath(void) const { return path.c_str(); }
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void SetPath(const std::string &newpath) { path = newpath; }
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@ -172,6 +172,8 @@ class FdEntity
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ssize_t Read(char* bytes, off_t start, size_t size, bool force_load = false);
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ssize_t Write(const char* bytes, off_t start, size_t size);
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void CleanupCache();
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};
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typedef std::map<std::string, class FdEntity*> fdent_map_t; // key=path, value=FdEntity*
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@ -183,6 +185,7 @@ class FdManager
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private:
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static FdManager singleton;
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static pthread_mutex_t fd_manager_lock;
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static pthread_mutex_t cache_cleanup_lock;
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static bool is_lock_init;
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static std::string cache_dir;
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static size_t free_disk_space; // limit free disk space
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@ -191,6 +194,7 @@ class FdManager
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private:
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static fsblkcnt_t GetFreeDiskSpace(const char* path);
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void CleanupCacheDirInternal(const std::string &path = "");
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public:
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FdManager();
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@ -214,11 +218,12 @@ class FdManager
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static bool IsSafeDiskSpace(const char* path, size_t size);
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FdEntity* GetFdEntity(const char* path, int existfd = -1);
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FdEntity* Open(const char* path, headers_t* pmeta = NULL, ssize_t size = -1, time_t time = -1, bool force_tmpfile = false, bool is_create = true);
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FdEntity* Open(const char* path, headers_t* pmeta = NULL, ssize_t size = -1, time_t time = -1, bool force_tmpfile = false, bool is_create = true, bool no_fd_lock_wait = false);
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FdEntity* ExistOpen(const char* path, int existfd = -1, bool ignore_existfd = false);
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void Rename(const std::string &from, const std::string &to);
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bool Close(FdEntity* ent);
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bool ChangeEntityToTempPath(FdEntity* ent, const char* path);
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void CleanupCacheDir();
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};
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#endif // FD_CACHE_H_
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//-------------------------------------------------------------------
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// Class AutoLock
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//-------------------------------------------------------------------
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AutoLock::AutoLock(pthread_mutex_t* pmutex) : auto_mutex(pmutex)
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AutoLock::AutoLock(pthread_mutex_t* pmutex, bool no_wait) : auto_mutex(pmutex)
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{
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pthread_mutex_lock(auto_mutex);
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if (no_wait) {
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is_lock_acquired = pthread_mutex_trylock(auto_mutex) == 0;
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} else {
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is_lock_acquired = pthread_mutex_lock(auto_mutex) == 0;
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}
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}
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bool AutoLock::isLockAcquired() const
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{
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return is_lock_acquired;
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}
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AutoLock::~AutoLock()
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{
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pthread_mutex_unlock(auto_mutex);
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if (is_lock_acquired) {
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pthread_mutex_unlock(auto_mutex);
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}
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}
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//-------------------------------------------------------------------
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{
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private:
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pthread_mutex_t* auto_mutex;
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bool is_lock_acquired;
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public:
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explicit AutoLock(pthread_mutex_t* pmutex);
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explicit AutoLock(pthread_mutex_t* pmutex, bool no_wait = false);
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bool isLockAcquired() const;
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~AutoLock();
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};
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