/* Copyright (c) 2016, Antonio SJ Musumeci Permission to use, copy, modify, and/or distribute this software for any purpose with or without fee is hereby granted, provided that the above copyright notice and this permission notice appear in all copies. THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */ #include "config.hpp" #include "errno.hpp" #include "fileinfo.hpp" #include "fs_close.hpp" #include "fs_dup2.hpp" #include "fs_movefile.hpp" #include "fs_pwrite.hpp" #include "fs_pwriten.hpp" #include "fuse.h" namespace l { static bool out_of_space(const ssize_t error_) { return ((error_ == -ENOSPC) || (error_ == -EDQUOT)); } static int move_and_pwrite(const char *buf_, const size_t count_, const off_t offset_, FileInfo *fi_, int err_) { int err; ssize_t rv; Config::Read cfg; if(cfg->moveonenospc.enabled == false) return err_; rv = fs::movefile_as_root(cfg->moveonenospc.policy, cfg->branches, fi_->fusepath, fi_->fd); if(rv < 0) return err_; err = fs::dup2(rv,fi_->fd); fs::close(rv); if(err < 0) return err_; return fs::pwrite(fi_->fd,buf_,count_,offset_); } static int move_and_pwriten(char const *buf_, size_t const count_, off_t const offset_, FileInfo *fi_, ssize_t const err_, ssize_t const written_) { int err; ssize_t rv; Config::Read cfg; if(cfg->moveonenospc.enabled == false) return err_; rv = fs::movefile_as_root(cfg->moveonenospc.policy, cfg->branches, fi_->fusepath, fi_->fd); if(rv < 0) return err_; err = fs::dup2(rv,fi_->fd); fs::close(rv); if(err < 0) return err_; rv = fs::pwriten(fi_->fd, buf_ + written_, count_ - written_, offset_ + written_, &err); if(err < 0) return err; return (written_ + rv); } // When in direct_io mode write's return value should match that of // the operation. // 0 on EOF // N bytes written (short writes included) // -errno on error // See libfuse/include/fuse.h for more details static int write_direct_io(const char *buf_, const size_t count_, const off_t offset_, FileInfo *fi_) { ssize_t rv; rv = fs::pwrite(fi_->fd,buf_,count_,offset_); if(l::out_of_space(rv)) rv = l::move_and_pwrite(buf_,count_,offset_,fi_,rv); return rv; } // When not in direct_io mode write's return value is more complex. // 0 or less than `count` on EOF // `count` on non-errors // -errno on error // See libfuse/include/fuse.h for more details static int write_cached(const char *buf_, const size_t count_, const off_t offset_, FileInfo *fi_) { int err; ssize_t rv; rv = fs::pwriten(fi_->fd,buf_,count_,offset_,&err); if(err == 0) return rv; if(err && !l::out_of_space(err)) return err; rv = l::move_and_pwriten(buf_,count_,offset_,fi_,err,rv); return rv; } static int write(const fuse_file_info_t *ffi_, const char *buf_, const size_t count_, const off_t offset_) { FileInfo *fi; fi = reinterpret_cast(ffi_->fh); // Concurrent writes can only happen if: // 1) writeback-cache is enabled and using page caching // 2) parallel_direct_writes is enabled and file has `direct_io=true` // Will look into selectively locking in the future // A reader/writer lock would probably be the best option given // the expense of the write itself in comparison. Alternatively, // could change the move file behavior to use a known target file // and have threads use O_EXCL and back off and wait for the // transfer to complete before retrying. std::lock_guard guard(fi->mutex); if(fi->direct_io) return l::write_direct_io(buf_,count_,offset_,fi); return l::write_cached(buf_,count_,offset_,fi); } } namespace FUSE { int write(const fuse_file_info_t *ffi_, const char *buf_, size_t count_, off_t offset_) { return l::write(ffi_,buf_,count_,offset_); } int write_null(const fuse_file_info_t *ffi_, const char *buf_, size_t count_, off_t offset_) { return count_; } }