6944da0a68
treewide: Use array_size in f2fs_kvzalloc()f15443db99
treewide: Use array_size() in f2fs_kzalloc()3ea03ea4bd
treewide: Use array_size() in f2fs_kmalloc()c41203299a
overflow.h: Add allocation size calculation helpersd400752f54
f2fs: fix to clear FI_VOLATILE_FILE correctly853e7339b6
f2fs: let sync node IO interrupt async one6a4540cf19
f2fs: don't change wbc->sync_mode588ecdfd7d
f2fs: fix to update mtime correctly1ae5aadab1
fs: f2fs: insert space around that ':' and ', '39ee53e223
fs: f2fs: add missing blank lines after declarationsd5b4710fcf
fs: f2fs: changed variable type of offset "unsigned" to "loff_t"c35da89531
f2fs: clean up symbol namespacefcf37e16f3
f2fs: make set_de_type() static5d1633aa10
f2fs: make __f2fs_write_data_pages() staticcc8093af7c
f2fs: fix to avoid accessing cross the boundaryb7f5594670
f2fs: fix to let caller retry allocating block addresse48fcd8576
disable loading f2fs module on PAGE_SIZE > 4KB02afc275a5
f2fs: fix error path of move_data_page0291bd36d0
f2fs: don't drop dentry pages after fs shutdowna1259450b6
f2fs: fix to avoid race during access gc_thread pointerd2e0f2f786
f2fs: clean up with clear_radix_tree_dirty_tagc74034518f
f2fs: fix to don't trigger writeback during recoverye72a2cca82
f2fs: clear discard_wake earlierb25a1872e9
f2fs: let discard thread wait a little longer if dev is busyb125dfb20d
f2fs: avoid stucking GC due to atomic write405909e7f5
f2fs: introduce sbi->gc_mode to determine the policy1f62e4702a
f2fs: keep migration IO order in LFS modec4408c2387
f2fs: fix to wait page writeback during revoking atomic write9db5be4af8
f2fs: Fix deadlock in shutdown ioctled74404955
f2fs: detect synchronous writeback more earlier91e7d9d2dd
mm: remove nr_pages argument from pagevec_lookup_{,range}_tag()feb94dc829
ceph: use pagevec_lookup_range_nr_tag()f3aa4a25b8
mm: add variant of pagevec_lookup_range_tag() taking number of pages8914877e37
mm: use pagevec_lookup_range_tag() in write_cache_pages()26778b87a0
mm: use pagevec_lookup_range_tag() in __filemap_fdatawait_range()94f1b99298
nilfs2: use pagevec_lookup_range_tag()160355d69f
gfs2: use pagevec_lookup_range_tag()564108e83a
f2fs: use find_get_pages_tag() for looking up single page6cf6fb8645
f2fs: simplify page iteration loopsa05d8a6a2b
f2fs: use pagevec_lookup_range_tag()18a4848ffd
ext4: use pagevec_lookup_range_tag()1c7be24f65
ceph: use pagevec_lookup_range_tag()e25fadabb5
btrfs: use pagevec_lookup_range_tag()bf9510b162
mm: implement find_get_pages_range_tag()461247b21f
f2fs: clean up with is_valid_blkaddr()a5d0ccbc18
f2fs: fix to initialize min_mtime with ULLONG_MAX9bb4d22cf5
f2fs: fix to let checkpoint guarantee atomic page persistencecdcf2b3e25
f2fs: fix to initialize i_current_depth according to inode type331ae0c25b
Revert "f2fs: add ovp valid_blocks check for bg gc victim to fg_gc"2494cc7c0b
f2fs: don't drop any page on f2fs_cp_error() case0037c639e6
f2fs: fix spelling mistake: "extenstion" -> "extension"2bba5b8eb8
f2fs: enhance sanity_check_raw_super() to avoid potential overflows9bb86b63dc
f2fs: treat volatile file's data as hot one2cf6459036
f2fs: introduce release_discard_addr() for cleanup03279ce90b
f2fs: fix potential overflowf46eddc4da
f2fs: rename dio_rwsem to i_gc_rwsembb01582453
f2fs: move mnt_want_write_file after range check8bb9a8da75
f2fs: fix missing clear FI_NO_PREALLOC in some error casecb38cc4e1d
f2fs: enforce fsync_mode=strict for renamed directory26bf4e8a96
f2fs: sanity check for total valid node blocks78f8b0f46f
f2fs: sanity check on sit entryab758ada22
f2fs: avoid bug_on on corrupted inode1a5d1966c0
f2fs: give message and set need_fsck given broken node idb025f6dfc0
f2fs: clean up commit_inmem_pages()7aff5c69da
f2fs: do not check F2FS_INLINE_DOTS in recover23d00b0287
f2fs: remove duplicated dquot_initialize and fix error handling937f4ef79e
f2fs: stop issue discard if something wrong with f2fsa6d74bb282
f2fs: fix return value in f2fs_ioc_commit_atomic_write258489ec52
f2fs: allocate hot_data for atomic write more strictlyaa857e0f3b
f2fs: check if inmem_pages list is empty correctly9d77ded0a7
f2fs: fix race in between GC and atomic open0d17eb90b5
f2fs: change le32 to le16 of f2fs_inode->i_extra_sizeea2813111f
f2fs: check cur_valid_map_mir & raw_sit block count when flush sit entries9190cadf38
f2fs: correct return value of f2fs_trim_fs17f85d0708
f2fs: fix to show missing bits in FS_IOC_GETFLAGS3e90db63fc
f2fs: remove unneeded F2FS_PROJINHERIT_FL298032d4d4
f2fs: don't use GFP_ZERO for page cachesfdf61219dc
f2fs: issue all big range discards in umount processcd79eb2b5e
f2fs: remove redundant block plugec034d0f14
f2fs: remove unmatched zero_user_segment when convert inline dentry71aaced0e1
f2fs: introduce private inode status mappinge7724207f7
fscrypt: log the crypto algorithm implementations4cbda579cd
crypto: api - Add crypto_type_has_alg helperb24dcaae87
crypto: skcipher - Add low-level skcipher interfacea9146e4235
crypto: skcipher - Add helper to retrieve driver namea0ca4bdf47
crypto: skcipher - Add default key size helpereb13e0b692
fscrypt: add Speck128/256 support27a0e77380
fscrypt: only derive the needed portion of the keyf68a71fa8f
fscrypt: separate key lookup from key derivation52359cf4fd
fscrypt: use a common logging functionff8e7c745e
fscrypt: remove internal key size constants7149dd4d39
fscrypt: remove unnecessary check for non-logon key type56446c9142
fscrypt: make fscrypt_operations.max_namelen an integerf572a22ef9
fscrypt: drop empty name check from fname_decrypt()0077eff1d2
fscrypt: drop max_namelen check from fname_decrypt()3f7af9d27f
fscrypt: don't special-case EOPNOTSUPP from fscrypt_get_encryption_info()52c51f7b7b
fscrypt: don't clear flags on crypto transform89b7fb8298
fscrypt: remove stale comment from fscrypt_d_revalidate()d56de4e926
fscrypt: remove error messages for skcipher_request_alloc() failuref68d3b84ae
fscrypt: remove unnecessary NULL check when allocating skcipherfb10231825
fscrypt: clean up after fscrypt_prepare_lookup() conversions39b1444906
fscrypt: use unbound workqueue for decryption Change-Id: Ied79ecd97385c05ef26e6b7b24d250eee9ec4e47 Signed-off-by: Jaegeuk Kim <jaegeuk@google.com>
697 lines
16 KiB
C
697 lines
16 KiB
C
/*
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* fs/f2fs/inline.c
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* Copyright (c) 2013, Intel Corporation
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* Authors: Huajun Li <huajun.li@intel.com>
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* Haicheng Li <haicheng.li@intel.com>
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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*/
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#include <linux/fs.h>
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#include <linux/f2fs_fs.h>
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#include "f2fs.h"
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#include "node.h"
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#include <trace/events/android_fs.h>
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bool f2fs_may_inline_data(struct inode *inode)
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{
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if (f2fs_is_atomic_file(inode))
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return false;
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if (!S_ISREG(inode->i_mode) && !S_ISLNK(inode->i_mode))
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return false;
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if (i_size_read(inode) > MAX_INLINE_DATA(inode))
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return false;
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if (f2fs_post_read_required(inode))
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return false;
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return true;
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}
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bool f2fs_may_inline_dentry(struct inode *inode)
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{
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if (!test_opt(F2FS_I_SB(inode), INLINE_DENTRY))
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return false;
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if (!S_ISDIR(inode->i_mode))
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return false;
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return true;
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}
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void f2fs_do_read_inline_data(struct page *page, struct page *ipage)
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{
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struct inode *inode = page->mapping->host;
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void *src_addr, *dst_addr;
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if (PageUptodate(page))
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return;
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f2fs_bug_on(F2FS_P_SB(page), page->index);
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zero_user_segment(page, MAX_INLINE_DATA(inode), PAGE_SIZE);
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/* Copy the whole inline data block */
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src_addr = inline_data_addr(inode, ipage);
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dst_addr = kmap_atomic(page);
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memcpy(dst_addr, src_addr, MAX_INLINE_DATA(inode));
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flush_dcache_page(page);
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kunmap_atomic(dst_addr);
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if (!PageUptodate(page))
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SetPageUptodate(page);
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}
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void f2fs_truncate_inline_inode(struct inode *inode,
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struct page *ipage, u64 from)
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{
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void *addr;
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if (from >= MAX_INLINE_DATA(inode))
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return;
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addr = inline_data_addr(inode, ipage);
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f2fs_wait_on_page_writeback(ipage, NODE, true);
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memset(addr + from, 0, MAX_INLINE_DATA(inode) - from);
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set_page_dirty(ipage);
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if (from == 0)
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clear_inode_flag(inode, FI_DATA_EXIST);
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}
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int f2fs_read_inline_data(struct inode *inode, struct page *page)
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{
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struct page *ipage;
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if (trace_android_fs_dataread_start_enabled()) {
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char *path, pathbuf[MAX_TRACE_PATHBUF_LEN];
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path = android_fstrace_get_pathname(pathbuf,
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MAX_TRACE_PATHBUF_LEN,
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inode);
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trace_android_fs_dataread_start(inode, page_offset(page),
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PAGE_SIZE, current->pid,
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path, current->comm);
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}
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ipage = f2fs_get_node_page(F2FS_I_SB(inode), inode->i_ino);
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if (IS_ERR(ipage)) {
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trace_android_fs_dataread_end(inode, page_offset(page),
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PAGE_SIZE);
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unlock_page(page);
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return PTR_ERR(ipage);
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}
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if (!f2fs_has_inline_data(inode)) {
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f2fs_put_page(ipage, 1);
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trace_android_fs_dataread_end(inode, page_offset(page),
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PAGE_SIZE);
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return -EAGAIN;
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}
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if (page->index)
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zero_user_segment(page, 0, PAGE_SIZE);
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else
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f2fs_do_read_inline_data(page, ipage);
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if (!PageUptodate(page))
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SetPageUptodate(page);
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f2fs_put_page(ipage, 1);
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trace_android_fs_dataread_end(inode, page_offset(page),
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PAGE_SIZE);
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unlock_page(page);
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return 0;
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}
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int f2fs_convert_inline_page(struct dnode_of_data *dn, struct page *page)
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{
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struct f2fs_io_info fio = {
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.sbi = F2FS_I_SB(dn->inode),
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.ino = dn->inode->i_ino,
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.type = DATA,
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.op = REQ_OP_WRITE,
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.op_flags = REQ_SYNC | REQ_NOIDLE | REQ_PRIO,
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.page = page,
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.encrypted_page = NULL,
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.io_type = FS_DATA_IO,
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};
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int dirty, err;
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if (!f2fs_exist_data(dn->inode))
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goto clear_out;
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err = f2fs_reserve_block(dn, 0);
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if (err)
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return err;
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f2fs_bug_on(F2FS_P_SB(page), PageWriteback(page));
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f2fs_do_read_inline_data(page, dn->inode_page);
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set_page_dirty(page);
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/* clear dirty state */
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dirty = clear_page_dirty_for_io(page);
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/* write data page to try to make data consistent */
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set_page_writeback(page);
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ClearPageError(page);
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fio.old_blkaddr = dn->data_blkaddr;
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set_inode_flag(dn->inode, FI_HOT_DATA);
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f2fs_outplace_write_data(dn, &fio);
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f2fs_wait_on_page_writeback(page, DATA, true);
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if (dirty) {
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inode_dec_dirty_pages(dn->inode);
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f2fs_remove_dirty_inode(dn->inode);
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}
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/* this converted inline_data should be recovered. */
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set_inode_flag(dn->inode, FI_APPEND_WRITE);
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/* clear inline data and flag after data writeback */
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f2fs_truncate_inline_inode(dn->inode, dn->inode_page, 0);
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clear_inline_node(dn->inode_page);
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clear_out:
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stat_dec_inline_inode(dn->inode);
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clear_inode_flag(dn->inode, FI_INLINE_DATA);
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f2fs_put_dnode(dn);
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return 0;
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}
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int f2fs_convert_inline_inode(struct inode *inode)
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{
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struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
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struct dnode_of_data dn;
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struct page *ipage, *page;
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int err = 0;
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if (!f2fs_has_inline_data(inode))
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return 0;
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page = f2fs_grab_cache_page(inode->i_mapping, 0, false);
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if (!page)
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return -ENOMEM;
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f2fs_lock_op(sbi);
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ipage = f2fs_get_node_page(sbi, inode->i_ino);
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if (IS_ERR(ipage)) {
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err = PTR_ERR(ipage);
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goto out;
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}
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set_new_dnode(&dn, inode, ipage, ipage, 0);
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if (f2fs_has_inline_data(inode))
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err = f2fs_convert_inline_page(&dn, page);
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f2fs_put_dnode(&dn);
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out:
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f2fs_unlock_op(sbi);
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f2fs_put_page(page, 1);
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f2fs_balance_fs(sbi, dn.node_changed);
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return err;
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}
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int f2fs_write_inline_data(struct inode *inode, struct page *page)
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{
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void *src_addr, *dst_addr;
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struct dnode_of_data dn;
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int err;
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set_new_dnode(&dn, inode, NULL, NULL, 0);
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err = f2fs_get_dnode_of_data(&dn, 0, LOOKUP_NODE);
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if (err)
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return err;
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if (!f2fs_has_inline_data(inode)) {
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f2fs_put_dnode(&dn);
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return -EAGAIN;
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}
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f2fs_bug_on(F2FS_I_SB(inode), page->index);
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f2fs_wait_on_page_writeback(dn.inode_page, NODE, true);
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src_addr = kmap_atomic(page);
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dst_addr = inline_data_addr(inode, dn.inode_page);
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memcpy(dst_addr, src_addr, MAX_INLINE_DATA(inode));
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kunmap_atomic(src_addr);
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set_page_dirty(dn.inode_page);
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f2fs_clear_radix_tree_dirty_tag(page);
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set_inode_flag(inode, FI_APPEND_WRITE);
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set_inode_flag(inode, FI_DATA_EXIST);
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clear_inline_node(dn.inode_page);
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f2fs_put_dnode(&dn);
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return 0;
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}
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bool f2fs_recover_inline_data(struct inode *inode, struct page *npage)
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{
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struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
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struct f2fs_inode *ri = NULL;
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void *src_addr, *dst_addr;
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struct page *ipage;
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/*
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* The inline_data recovery policy is as follows.
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* [prev.] [next] of inline_data flag
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* o o -> recover inline_data
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* o x -> remove inline_data, and then recover data blocks
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* x o -> remove inline_data, and then recover inline_data
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* x x -> recover data blocks
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*/
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if (IS_INODE(npage))
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ri = F2FS_INODE(npage);
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if (f2fs_has_inline_data(inode) &&
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ri && (ri->i_inline & F2FS_INLINE_DATA)) {
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process_inline:
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ipage = f2fs_get_node_page(sbi, inode->i_ino);
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f2fs_bug_on(sbi, IS_ERR(ipage));
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f2fs_wait_on_page_writeback(ipage, NODE, true);
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src_addr = inline_data_addr(inode, npage);
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dst_addr = inline_data_addr(inode, ipage);
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memcpy(dst_addr, src_addr, MAX_INLINE_DATA(inode));
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set_inode_flag(inode, FI_INLINE_DATA);
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set_inode_flag(inode, FI_DATA_EXIST);
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set_page_dirty(ipage);
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f2fs_put_page(ipage, 1);
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return true;
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}
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if (f2fs_has_inline_data(inode)) {
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ipage = f2fs_get_node_page(sbi, inode->i_ino);
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f2fs_bug_on(sbi, IS_ERR(ipage));
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f2fs_truncate_inline_inode(inode, ipage, 0);
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clear_inode_flag(inode, FI_INLINE_DATA);
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f2fs_put_page(ipage, 1);
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} else if (ri && (ri->i_inline & F2FS_INLINE_DATA)) {
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if (f2fs_truncate_blocks(inode, 0, false))
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return false;
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goto process_inline;
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}
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return false;
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}
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struct f2fs_dir_entry *f2fs_find_in_inline_dir(struct inode *dir,
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struct fscrypt_name *fname, struct page **res_page)
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{
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struct f2fs_sb_info *sbi = F2FS_SB(dir->i_sb);
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struct qstr name = FSTR_TO_QSTR(&fname->disk_name);
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struct f2fs_dir_entry *de;
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struct f2fs_dentry_ptr d;
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struct page *ipage;
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void *inline_dentry;
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f2fs_hash_t namehash;
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ipage = f2fs_get_node_page(sbi, dir->i_ino);
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if (IS_ERR(ipage)) {
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*res_page = ipage;
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return NULL;
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}
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namehash = f2fs_dentry_hash(&name, fname);
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inline_dentry = inline_data_addr(dir, ipage);
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make_dentry_ptr_inline(dir, &d, inline_dentry);
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de = f2fs_find_target_dentry(fname, namehash, NULL, &d);
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unlock_page(ipage);
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if (de)
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*res_page = ipage;
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else
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f2fs_put_page(ipage, 0);
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return de;
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}
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int f2fs_make_empty_inline_dir(struct inode *inode, struct inode *parent,
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struct page *ipage)
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{
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struct f2fs_dentry_ptr d;
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void *inline_dentry;
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inline_dentry = inline_data_addr(inode, ipage);
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make_dentry_ptr_inline(inode, &d, inline_dentry);
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f2fs_do_make_empty_dir(inode, parent, &d);
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set_page_dirty(ipage);
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/* update i_size to MAX_INLINE_DATA */
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if (i_size_read(inode) < MAX_INLINE_DATA(inode))
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f2fs_i_size_write(inode, MAX_INLINE_DATA(inode));
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return 0;
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}
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/*
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* NOTE: ipage is grabbed by caller, but if any error occurs, we should
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|
* release ipage in this function.
|
|
*/
|
|
static int f2fs_move_inline_dirents(struct inode *dir, struct page *ipage,
|
|
void *inline_dentry)
|
|
{
|
|
struct page *page;
|
|
struct dnode_of_data dn;
|
|
struct f2fs_dentry_block *dentry_blk;
|
|
struct f2fs_dentry_ptr src, dst;
|
|
int err;
|
|
|
|
page = f2fs_grab_cache_page(dir->i_mapping, 0, false);
|
|
if (!page) {
|
|
f2fs_put_page(ipage, 1);
|
|
return -ENOMEM;
|
|
}
|
|
|
|
set_new_dnode(&dn, dir, ipage, NULL, 0);
|
|
err = f2fs_reserve_block(&dn, 0);
|
|
if (err)
|
|
goto out;
|
|
|
|
f2fs_wait_on_page_writeback(page, DATA, true);
|
|
|
|
dentry_blk = page_address(page);
|
|
|
|
make_dentry_ptr_inline(dir, &src, inline_dentry);
|
|
make_dentry_ptr_block(dir, &dst, dentry_blk);
|
|
|
|
/* copy data from inline dentry block to new dentry block */
|
|
memcpy(dst.bitmap, src.bitmap, src.nr_bitmap);
|
|
memset(dst.bitmap + src.nr_bitmap, 0, dst.nr_bitmap - src.nr_bitmap);
|
|
/*
|
|
* we do not need to zero out remainder part of dentry and filename
|
|
* field, since we have used bitmap for marking the usage status of
|
|
* them, besides, we can also ignore copying/zeroing reserved space
|
|
* of dentry block, because them haven't been used so far.
|
|
*/
|
|
memcpy(dst.dentry, src.dentry, SIZE_OF_DIR_ENTRY * src.max);
|
|
memcpy(dst.filename, src.filename, src.max * F2FS_SLOT_LEN);
|
|
|
|
if (!PageUptodate(page))
|
|
SetPageUptodate(page);
|
|
set_page_dirty(page);
|
|
|
|
/* clear inline dir and flag after data writeback */
|
|
f2fs_truncate_inline_inode(dir, ipage, 0);
|
|
|
|
stat_dec_inline_dir(dir);
|
|
clear_inode_flag(dir, FI_INLINE_DENTRY);
|
|
|
|
f2fs_i_depth_write(dir, 1);
|
|
if (i_size_read(dir) < PAGE_SIZE)
|
|
f2fs_i_size_write(dir, PAGE_SIZE);
|
|
out:
|
|
f2fs_put_page(page, 1);
|
|
return err;
|
|
}
|
|
|
|
static int f2fs_add_inline_entries(struct inode *dir, void *inline_dentry)
|
|
{
|
|
struct f2fs_dentry_ptr d;
|
|
unsigned long bit_pos = 0;
|
|
int err = 0;
|
|
|
|
make_dentry_ptr_inline(dir, &d, inline_dentry);
|
|
|
|
while (bit_pos < d.max) {
|
|
struct f2fs_dir_entry *de;
|
|
struct qstr new_name;
|
|
nid_t ino;
|
|
umode_t fake_mode;
|
|
|
|
if (!test_bit_le(bit_pos, d.bitmap)) {
|
|
bit_pos++;
|
|
continue;
|
|
}
|
|
|
|
de = &d.dentry[bit_pos];
|
|
|
|
if (unlikely(!de->name_len)) {
|
|
bit_pos++;
|
|
continue;
|
|
}
|
|
|
|
new_name.name = d.filename[bit_pos];
|
|
new_name.len = le16_to_cpu(de->name_len);
|
|
|
|
ino = le32_to_cpu(de->ino);
|
|
fake_mode = f2fs_get_de_type(de) << S_SHIFT;
|
|
|
|
err = f2fs_add_regular_entry(dir, &new_name, NULL, NULL,
|
|
ino, fake_mode);
|
|
if (err)
|
|
goto punch_dentry_pages;
|
|
|
|
bit_pos += GET_DENTRY_SLOTS(le16_to_cpu(de->name_len));
|
|
}
|
|
return 0;
|
|
punch_dentry_pages:
|
|
truncate_inode_pages(&dir->i_data, 0);
|
|
f2fs_truncate_blocks(dir, 0, false);
|
|
f2fs_remove_dirty_inode(dir);
|
|
return err;
|
|
}
|
|
|
|
static int f2fs_move_rehashed_dirents(struct inode *dir, struct page *ipage,
|
|
void *inline_dentry)
|
|
{
|
|
void *backup_dentry;
|
|
int err;
|
|
|
|
backup_dentry = f2fs_kmalloc(F2FS_I_SB(dir),
|
|
MAX_INLINE_DATA(dir), GFP_F2FS_ZERO);
|
|
if (!backup_dentry) {
|
|
f2fs_put_page(ipage, 1);
|
|
return -ENOMEM;
|
|
}
|
|
|
|
memcpy(backup_dentry, inline_dentry, MAX_INLINE_DATA(dir));
|
|
f2fs_truncate_inline_inode(dir, ipage, 0);
|
|
|
|
unlock_page(ipage);
|
|
|
|
err = f2fs_add_inline_entries(dir, backup_dentry);
|
|
if (err)
|
|
goto recover;
|
|
|
|
lock_page(ipage);
|
|
|
|
stat_dec_inline_dir(dir);
|
|
clear_inode_flag(dir, FI_INLINE_DENTRY);
|
|
kfree(backup_dentry);
|
|
return 0;
|
|
recover:
|
|
lock_page(ipage);
|
|
memcpy(inline_dentry, backup_dentry, MAX_INLINE_DATA(dir));
|
|
f2fs_i_depth_write(dir, 0);
|
|
f2fs_i_size_write(dir, MAX_INLINE_DATA(dir));
|
|
set_page_dirty(ipage);
|
|
f2fs_put_page(ipage, 1);
|
|
|
|
kfree(backup_dentry);
|
|
return err;
|
|
}
|
|
|
|
static int f2fs_convert_inline_dir(struct inode *dir, struct page *ipage,
|
|
void *inline_dentry)
|
|
{
|
|
if (!F2FS_I(dir)->i_dir_level)
|
|
return f2fs_move_inline_dirents(dir, ipage, inline_dentry);
|
|
else
|
|
return f2fs_move_rehashed_dirents(dir, ipage, inline_dentry);
|
|
}
|
|
|
|
int f2fs_add_inline_entry(struct inode *dir, const struct qstr *new_name,
|
|
const struct qstr *orig_name,
|
|
struct inode *inode, nid_t ino, umode_t mode)
|
|
{
|
|
struct f2fs_sb_info *sbi = F2FS_I_SB(dir);
|
|
struct page *ipage;
|
|
unsigned int bit_pos;
|
|
f2fs_hash_t name_hash;
|
|
void *inline_dentry = NULL;
|
|
struct f2fs_dentry_ptr d;
|
|
int slots = GET_DENTRY_SLOTS(new_name->len);
|
|
struct page *page = NULL;
|
|
int err = 0;
|
|
|
|
ipage = f2fs_get_node_page(sbi, dir->i_ino);
|
|
if (IS_ERR(ipage))
|
|
return PTR_ERR(ipage);
|
|
|
|
inline_dentry = inline_data_addr(dir, ipage);
|
|
make_dentry_ptr_inline(dir, &d, inline_dentry);
|
|
|
|
bit_pos = f2fs_room_for_filename(d.bitmap, slots, d.max);
|
|
if (bit_pos >= d.max) {
|
|
err = f2fs_convert_inline_dir(dir, ipage, inline_dentry);
|
|
if (err)
|
|
return err;
|
|
err = -EAGAIN;
|
|
goto out;
|
|
}
|
|
|
|
if (inode) {
|
|
down_write(&F2FS_I(inode)->i_sem);
|
|
page = f2fs_init_inode_metadata(inode, dir, new_name,
|
|
orig_name, ipage);
|
|
if (IS_ERR(page)) {
|
|
err = PTR_ERR(page);
|
|
goto fail;
|
|
}
|
|
}
|
|
|
|
f2fs_wait_on_page_writeback(ipage, NODE, true);
|
|
|
|
name_hash = f2fs_dentry_hash(new_name, NULL);
|
|
f2fs_update_dentry(ino, mode, &d, new_name, name_hash, bit_pos);
|
|
|
|
set_page_dirty(ipage);
|
|
|
|
/* we don't need to mark_inode_dirty now */
|
|
if (inode) {
|
|
f2fs_i_pino_write(inode, dir->i_ino);
|
|
f2fs_put_page(page, 1);
|
|
}
|
|
|
|
f2fs_update_parent_metadata(dir, inode, 0);
|
|
fail:
|
|
if (inode)
|
|
up_write(&F2FS_I(inode)->i_sem);
|
|
out:
|
|
f2fs_put_page(ipage, 1);
|
|
return err;
|
|
}
|
|
|
|
void f2fs_delete_inline_entry(struct f2fs_dir_entry *dentry, struct page *page,
|
|
struct inode *dir, struct inode *inode)
|
|
{
|
|
struct f2fs_dentry_ptr d;
|
|
void *inline_dentry;
|
|
int slots = GET_DENTRY_SLOTS(le16_to_cpu(dentry->name_len));
|
|
unsigned int bit_pos;
|
|
int i;
|
|
|
|
lock_page(page);
|
|
f2fs_wait_on_page_writeback(page, NODE, true);
|
|
|
|
inline_dentry = inline_data_addr(dir, page);
|
|
make_dentry_ptr_inline(dir, &d, inline_dentry);
|
|
|
|
bit_pos = dentry - d.dentry;
|
|
for (i = 0; i < slots; i++)
|
|
__clear_bit_le(bit_pos + i, d.bitmap);
|
|
|
|
set_page_dirty(page);
|
|
f2fs_put_page(page, 1);
|
|
|
|
dir->i_ctime = dir->i_mtime = current_time(dir);
|
|
f2fs_mark_inode_dirty_sync(dir, false);
|
|
|
|
if (inode)
|
|
f2fs_drop_nlink(dir, inode);
|
|
}
|
|
|
|
bool f2fs_empty_inline_dir(struct inode *dir)
|
|
{
|
|
struct f2fs_sb_info *sbi = F2FS_I_SB(dir);
|
|
struct page *ipage;
|
|
unsigned int bit_pos = 2;
|
|
void *inline_dentry;
|
|
struct f2fs_dentry_ptr d;
|
|
|
|
ipage = f2fs_get_node_page(sbi, dir->i_ino);
|
|
if (IS_ERR(ipage))
|
|
return false;
|
|
|
|
inline_dentry = inline_data_addr(dir, ipage);
|
|
make_dentry_ptr_inline(dir, &d, inline_dentry);
|
|
|
|
bit_pos = find_next_bit_le(d.bitmap, d.max, bit_pos);
|
|
|
|
f2fs_put_page(ipage, 1);
|
|
|
|
if (bit_pos < d.max)
|
|
return false;
|
|
|
|
return true;
|
|
}
|
|
|
|
int f2fs_read_inline_dir(struct file *file, struct dir_context *ctx,
|
|
struct fscrypt_str *fstr)
|
|
{
|
|
struct inode *inode = file_inode(file);
|
|
struct page *ipage = NULL;
|
|
struct f2fs_dentry_ptr d;
|
|
void *inline_dentry = NULL;
|
|
int err;
|
|
|
|
make_dentry_ptr_inline(inode, &d, inline_dentry);
|
|
|
|
if (ctx->pos == d.max)
|
|
return 0;
|
|
|
|
ipage = f2fs_get_node_page(F2FS_I_SB(inode), inode->i_ino);
|
|
if (IS_ERR(ipage))
|
|
return PTR_ERR(ipage);
|
|
|
|
inline_dentry = inline_data_addr(inode, ipage);
|
|
|
|
make_dentry_ptr_inline(inode, &d, inline_dentry);
|
|
|
|
err = f2fs_fill_dentries(ctx, &d, 0, fstr);
|
|
if (!err)
|
|
ctx->pos = d.max;
|
|
|
|
f2fs_put_page(ipage, 1);
|
|
return err < 0 ? err : 0;
|
|
}
|
|
|
|
int f2fs_inline_data_fiemap(struct inode *inode,
|
|
struct fiemap_extent_info *fieinfo, __u64 start, __u64 len)
|
|
{
|
|
__u64 byteaddr, ilen;
|
|
__u32 flags = FIEMAP_EXTENT_DATA_INLINE | FIEMAP_EXTENT_NOT_ALIGNED |
|
|
FIEMAP_EXTENT_LAST;
|
|
struct node_info ni;
|
|
struct page *ipage;
|
|
int err = 0;
|
|
|
|
ipage = f2fs_get_node_page(F2FS_I_SB(inode), inode->i_ino);
|
|
if (IS_ERR(ipage))
|
|
return PTR_ERR(ipage);
|
|
|
|
if (!f2fs_has_inline_data(inode)) {
|
|
err = -EAGAIN;
|
|
goto out;
|
|
}
|
|
|
|
ilen = min_t(size_t, MAX_INLINE_DATA(inode), i_size_read(inode));
|
|
if (start >= ilen)
|
|
goto out;
|
|
if (start + len < ilen)
|
|
ilen = start + len;
|
|
ilen -= start;
|
|
|
|
f2fs_get_node_info(F2FS_I_SB(inode), inode->i_ino, &ni);
|
|
byteaddr = (__u64)ni.blk_addr << inode->i_sb->s_blocksize_bits;
|
|
byteaddr += (char *)inline_data_addr(inode, ipage) -
|
|
(char *)F2FS_INODE(ipage);
|
|
err = fiemap_fill_next_extent(fieinfo, start, byteaddr, ilen, flags);
|
|
out:
|
|
f2fs_put_page(ipage, 1);
|
|
return err;
|
|
}
|