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author | Chao Yu <yuchao0@huawei.com> | 2018-05-29 18:20:41 +0200 |
---|---|---|
committer | Jaegeuk Kim <jaegeuk@kernel.org> | 2018-05-31 20:31:53 +0200 |
commit | 4d57b86dd86404fd8bb4f87d277d5a86a7fe537e (patch) | |
tree | 6ad79aca10e807b05daf891b2472642e2e941002 /fs/f2fs/node.c | |
parent | f2fs: make set_de_type() static (diff) | |
download | linux-4d57b86dd86404fd8bb4f87d277d5a86a7fe537e.tar.xz linux-4d57b86dd86404fd8bb4f87d277d5a86a7fe537e.zip |
f2fs: clean up symbol namespace
As Ted reported:
"Hi, I was looking at f2fs's sources recently, and I noticed that there
is a very large number of non-static symbols which don't have a f2fs
prefix. There's well over a hundred (see attached below).
As one example, in fs/f2fs/dir.c there is:
unsigned char get_de_type(struct f2fs_dir_entry *de)
This function is clearly only useful for f2fs, but it has a generic
name. This means that if any other file system tries to have the same
symbol name, there will be a symbol conflict and the kernel would not
successfully build. It also means that when someone is looking f2fs
sources, it's not at all obvious whether a function such as
read_data_page(), invalidate_blocks(), is a generic kernel function
found in the fs, mm, or block layers, or a f2fs specific function.
You might want to fix this at some point. Hopefully Kent's bcachefs
isn't similarly using genericly named functions, since that might
cause conflicts with f2fs's functions --- but just as this would be a
problem that we would rightly insist that Kent fix, this is something
that we should have rightly insisted that f2fs should have fixed
before it was integrated into the mainline kernel.
acquire_orphan_inode
add_ino_entry
add_orphan_inode
allocate_data_block
allocate_new_segments
alloc_nid
alloc_nid_done
alloc_nid_failed
available_free_memory
...."
This patch adds "f2fs_" prefix for all non-static symbols in order to:
a) avoid conflict with other kernel generic symbols;
b) to indicate the function is f2fs specific one instead of generic
one;
Reported-by: Theodore Ts'o <tytso@mit.edu>
Signed-off-by: Chao Yu <yuchao0@huawei.com>
Signed-off-by: Jaegeuk Kim <jaegeuk@kernel.org>
Diffstat (limited to 'fs/f2fs/node.c')
-rw-r--r-- | fs/f2fs/node.c | 223 |
1 files changed, 113 insertions, 110 deletions
diff --git a/fs/f2fs/node.c b/fs/f2fs/node.c index 59041acbf7ac..513f03d823b6 100644 --- a/fs/f2fs/node.c +++ b/fs/f2fs/node.c @@ -23,7 +23,7 @@ #include "trace.h" #include <trace/events/f2fs.h> -#define on_build_free_nids(nmi) mutex_is_locked(&(nm_i)->build_lock) +#define on_f2fs_build_free_nids(nmi) mutex_is_locked(&(nm_i)->build_lock) static struct kmem_cache *nat_entry_slab; static struct kmem_cache *free_nid_slab; @@ -32,7 +32,7 @@ static struct kmem_cache *nat_entry_set_slab; /* * Check whether the given nid is within node id range. */ -int check_nid_range(struct f2fs_sb_info *sbi, nid_t nid) +int f2fs_check_nid_range(struct f2fs_sb_info *sbi, nid_t nid) { if (unlikely(nid < F2FS_ROOT_INO(sbi) || nid >= NM_I(sbi)->max_nid)) { set_sbi_flag(sbi, SBI_NEED_FSCK); @@ -44,7 +44,7 @@ int check_nid_range(struct f2fs_sb_info *sbi, nid_t nid) return 0; } -bool available_free_memory(struct f2fs_sb_info *sbi, int type) +bool f2fs_available_free_memory(struct f2fs_sb_info *sbi, int type) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct sysinfo val; @@ -103,7 +103,7 @@ bool available_free_memory(struct f2fs_sb_info *sbi, int type) static void clear_node_page_dirty(struct page *page) { if (PageDirty(page)) { - clear_radix_tree_dirty_tag(page); + f2fs_clear_radix_tree_dirty_tag(page); clear_page_dirty_for_io(page); dec_page_count(F2FS_P_SB(page), F2FS_DIRTY_NODES); } @@ -113,7 +113,7 @@ static void clear_node_page_dirty(struct page *page) static struct page *get_current_nat_page(struct f2fs_sb_info *sbi, nid_t nid) { pgoff_t index = current_nat_addr(sbi, nid); - return get_meta_page(sbi, index); + return f2fs_get_meta_page(sbi, index); } static struct page *get_next_nat_page(struct f2fs_sb_info *sbi, nid_t nid) @@ -130,8 +130,8 @@ static struct page *get_next_nat_page(struct f2fs_sb_info *sbi, nid_t nid) dst_off = next_nat_addr(sbi, src_off); /* get current nat block page with lock */ - src_page = get_meta_page(sbi, src_off); - dst_page = grab_meta_page(sbi, dst_off); + src_page = f2fs_get_meta_page(sbi, src_off); + dst_page = f2fs_grab_meta_page(sbi, dst_off); f2fs_bug_on(sbi, PageDirty(src_page)); src_addr = page_address(src_page); @@ -267,7 +267,7 @@ static unsigned int __gang_lookup_nat_set(struct f2fs_nm_info *nm_i, start, nr); } -int need_dentry_mark(struct f2fs_sb_info *sbi, nid_t nid) +int f2fs_need_dentry_mark(struct f2fs_sb_info *sbi, nid_t nid) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct nat_entry *e; @@ -284,7 +284,7 @@ int need_dentry_mark(struct f2fs_sb_info *sbi, nid_t nid) return need; } -bool is_checkpointed_node(struct f2fs_sb_info *sbi, nid_t nid) +bool f2fs_is_checkpointed_node(struct f2fs_sb_info *sbi, nid_t nid) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct nat_entry *e; @@ -298,7 +298,7 @@ bool is_checkpointed_node(struct f2fs_sb_info *sbi, nid_t nid) return is_cp; } -bool need_inode_block_update(struct f2fs_sb_info *sbi, nid_t ino) +bool f2fs_need_inode_block_update(struct f2fs_sb_info *sbi, nid_t ino) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct nat_entry *e; @@ -397,7 +397,7 @@ static void set_node_addr(struct f2fs_sb_info *sbi, struct node_info *ni, up_write(&nm_i->nat_tree_lock); } -int try_to_free_nats(struct f2fs_sb_info *sbi, int nr_shrink) +int f2fs_try_to_free_nats(struct f2fs_sb_info *sbi, int nr_shrink) { struct f2fs_nm_info *nm_i = NM_I(sbi); int nr = nr_shrink; @@ -419,7 +419,8 @@ int try_to_free_nats(struct f2fs_sb_info *sbi, int nr_shrink) /* * This function always returns success */ -void get_node_info(struct f2fs_sb_info *sbi, nid_t nid, struct node_info *ni) +void f2fs_get_node_info(struct f2fs_sb_info *sbi, nid_t nid, + struct node_info *ni) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA); @@ -449,7 +450,7 @@ void get_node_info(struct f2fs_sb_info *sbi, nid_t nid, struct node_info *ni) /* Check current segment summary */ down_read(&curseg->journal_rwsem); - i = lookup_journal_in_cursum(journal, NAT_JOURNAL, nid, 0); + i = f2fs_lookup_journal_in_cursum(journal, NAT_JOURNAL, nid, 0); if (i >= 0) { ne = nat_in_journal(journal, i); node_info_from_raw_nat(ni, &ne); @@ -464,7 +465,7 @@ void get_node_info(struct f2fs_sb_info *sbi, nid_t nid, struct node_info *ni) index = current_nat_addr(sbi, nid); up_read(&nm_i->nat_tree_lock); - page = get_meta_page(sbi, index); + page = f2fs_get_meta_page(sbi, index); nat_blk = (struct f2fs_nat_block *)page_address(page); ne = nat_blk->entries[nid - start_nid]; node_info_from_raw_nat(ni, &ne); @@ -477,7 +478,7 @@ cache: /* * readahead MAX_RA_NODE number of node pages. */ -static void ra_node_pages(struct page *parent, int start, int n) +static void f2fs_ra_node_pages(struct page *parent, int start, int n) { struct f2fs_sb_info *sbi = F2FS_P_SB(parent); struct blk_plug plug; @@ -491,13 +492,13 @@ static void ra_node_pages(struct page *parent, int start, int n) end = min(end, NIDS_PER_BLOCK); for (i = start; i < end; i++) { nid = get_nid(parent, i, false); - ra_node_page(sbi, nid); + f2fs_ra_node_page(sbi, nid); } blk_finish_plug(&plug); } -pgoff_t get_next_page_offset(struct dnode_of_data *dn, pgoff_t pgofs) +pgoff_t f2fs_get_next_page_offset(struct dnode_of_data *dn, pgoff_t pgofs) { const long direct_index = ADDRS_PER_INODE(dn->inode); const long direct_blks = ADDRS_PER_BLOCK; @@ -612,7 +613,7 @@ got: * f2fs_unlock_op() only if ro is not set RDONLY_NODE. * In the case of RDONLY_NODE, we don't need to care about mutex. */ -int get_dnode_of_data(struct dnode_of_data *dn, pgoff_t index, int mode) +int f2fs_get_dnode_of_data(struct dnode_of_data *dn, pgoff_t index, int mode) { struct f2fs_sb_info *sbi = F2FS_I_SB(dn->inode); struct page *npage[4]; @@ -631,7 +632,7 @@ int get_dnode_of_data(struct dnode_of_data *dn, pgoff_t index, int mode) npage[0] = dn->inode_page; if (!npage[0]) { - npage[0] = get_node_page(sbi, nids[0]); + npage[0] = f2fs_get_node_page(sbi, nids[0]); if (IS_ERR(npage[0])) return PTR_ERR(npage[0]); } @@ -655,24 +656,24 @@ int get_dnode_of_data(struct dnode_of_data *dn, pgoff_t index, int mode) if (!nids[i] && mode == ALLOC_NODE) { /* alloc new node */ - if (!alloc_nid(sbi, &(nids[i]))) { + if (!f2fs_alloc_nid(sbi, &(nids[i]))) { err = -ENOSPC; goto release_pages; } dn->nid = nids[i]; - npage[i] = new_node_page(dn, noffset[i]); + npage[i] = f2fs_new_node_page(dn, noffset[i]); if (IS_ERR(npage[i])) { - alloc_nid_failed(sbi, nids[i]); + f2fs_alloc_nid_failed(sbi, nids[i]); err = PTR_ERR(npage[i]); goto release_pages; } set_nid(parent, offset[i - 1], nids[i], i == 1); - alloc_nid_done(sbi, nids[i]); + f2fs_alloc_nid_done(sbi, nids[i]); done = true; } else if (mode == LOOKUP_NODE_RA && i == level && level > 1) { - npage[i] = get_node_page_ra(parent, offset[i - 1]); + npage[i] = f2fs_get_node_page_ra(parent, offset[i - 1]); if (IS_ERR(npage[i])) { err = PTR_ERR(npage[i]); goto release_pages; @@ -687,7 +688,7 @@ int get_dnode_of_data(struct dnode_of_data *dn, pgoff_t index, int mode) } if (!done) { - npage[i] = get_node_page(sbi, nids[i]); + npage[i] = f2fs_get_node_page(sbi, nids[i]); if (IS_ERR(npage[i])) { err = PTR_ERR(npage[i]); f2fs_put_page(npage[0], 0); @@ -726,15 +727,15 @@ static void truncate_node(struct dnode_of_data *dn) struct f2fs_sb_info *sbi = F2FS_I_SB(dn->inode); struct node_info ni; - get_node_info(sbi, dn->nid, &ni); + f2fs_get_node_info(sbi, dn->nid, &ni); /* Deallocate node address */ - invalidate_blocks(sbi, ni.blk_addr); + f2fs_invalidate_blocks(sbi, ni.blk_addr); dec_valid_node_count(sbi, dn->inode, dn->nid == dn->inode->i_ino); set_node_addr(sbi, &ni, NULL_ADDR, false); if (dn->nid == dn->inode->i_ino) { - remove_orphan_inode(sbi, dn->nid); + f2fs_remove_orphan_inode(sbi, dn->nid); dec_valid_inode_count(sbi); f2fs_inode_synced(dn->inode); } @@ -759,7 +760,7 @@ static int truncate_dnode(struct dnode_of_data *dn) return 1; /* get direct node */ - page = get_node_page(F2FS_I_SB(dn->inode), dn->nid); + page = f2fs_get_node_page(F2FS_I_SB(dn->inode), dn->nid); if (IS_ERR(page) && PTR_ERR(page) == -ENOENT) return 1; else if (IS_ERR(page)) @@ -768,7 +769,7 @@ static int truncate_dnode(struct dnode_of_data *dn) /* Make dnode_of_data for parameter */ dn->node_page = page; dn->ofs_in_node = 0; - truncate_data_blocks(dn); + f2fs_truncate_data_blocks(dn); truncate_node(dn); return 1; } @@ -789,13 +790,13 @@ static int truncate_nodes(struct dnode_of_data *dn, unsigned int nofs, trace_f2fs_truncate_nodes_enter(dn->inode, dn->nid, dn->data_blkaddr); - page = get_node_page(F2FS_I_SB(dn->inode), dn->nid); + page = f2fs_get_node_page(F2FS_I_SB(dn->inode), dn->nid); if (IS_ERR(page)) { trace_f2fs_truncate_nodes_exit(dn->inode, PTR_ERR(page)); return PTR_ERR(page); } - ra_node_pages(page, ofs, NIDS_PER_BLOCK); + f2fs_ra_node_pages(page, ofs, NIDS_PER_BLOCK); rn = F2FS_NODE(page); if (depth < 3) { @@ -865,7 +866,7 @@ static int truncate_partial_nodes(struct dnode_of_data *dn, /* get indirect nodes in the path */ for (i = 0; i < idx + 1; i++) { /* reference count'll be increased */ - pages[i] = get_node_page(F2FS_I_SB(dn->inode), nid[i]); + pages[i] = f2fs_get_node_page(F2FS_I_SB(dn->inode), nid[i]); if (IS_ERR(pages[i])) { err = PTR_ERR(pages[i]); idx = i - 1; @@ -874,7 +875,7 @@ static int truncate_partial_nodes(struct dnode_of_data *dn, nid[i + 1] = get_nid(pages[i], offset[i + 1], false); } - ra_node_pages(pages[idx], offset[idx + 1], NIDS_PER_BLOCK); + f2fs_ra_node_pages(pages[idx], offset[idx + 1], NIDS_PER_BLOCK); /* free direct nodes linked to a partial indirect node */ for (i = offset[idx + 1]; i < NIDS_PER_BLOCK; i++) { @@ -911,7 +912,7 @@ fail: /* * All the block addresses of data and nodes should be nullified. */ -int truncate_inode_blocks(struct inode *inode, pgoff_t from) +int f2fs_truncate_inode_blocks(struct inode *inode, pgoff_t from) { struct f2fs_sb_info *sbi = F2FS_I_SB(inode); int err = 0, cont = 1; @@ -927,7 +928,7 @@ int truncate_inode_blocks(struct inode *inode, pgoff_t from) if (level < 0) return level; - page = get_node_page(sbi, inode->i_ino); + page = f2fs_get_node_page(sbi, inode->i_ino); if (IS_ERR(page)) { trace_f2fs_truncate_inode_blocks_exit(inode, PTR_ERR(page)); return PTR_ERR(page); @@ -1007,7 +1008,7 @@ fail: } /* caller must lock inode page */ -int truncate_xattr_node(struct inode *inode) +int f2fs_truncate_xattr_node(struct inode *inode) { struct f2fs_sb_info *sbi = F2FS_I_SB(inode); nid_t nid = F2FS_I(inode)->i_xattr_nid; @@ -1017,7 +1018,7 @@ int truncate_xattr_node(struct inode *inode) if (!nid) return 0; - npage = get_node_page(sbi, nid); + npage = f2fs_get_node_page(sbi, nid); if (IS_ERR(npage)) return PTR_ERR(npage); @@ -1032,17 +1033,17 @@ int truncate_xattr_node(struct inode *inode) * Caller should grab and release a rwsem by calling f2fs_lock_op() and * f2fs_unlock_op(). */ -int remove_inode_page(struct inode *inode) +int f2fs_remove_inode_page(struct inode *inode) { struct dnode_of_data dn; int err; set_new_dnode(&dn, inode, NULL, NULL, inode->i_ino); - err = get_dnode_of_data(&dn, 0, LOOKUP_NODE); + err = f2fs_get_dnode_of_data(&dn, 0, LOOKUP_NODE); if (err) return err; - err = truncate_xattr_node(inode); + err = f2fs_truncate_xattr_node(inode); if (err) { f2fs_put_dnode(&dn); return err; @@ -1051,7 +1052,7 @@ int remove_inode_page(struct inode *inode) /* remove potential inline_data blocks */ if (S_ISREG(inode->i_mode) || S_ISDIR(inode->i_mode) || S_ISLNK(inode->i_mode)) - truncate_data_blocks_range(&dn, 1); + f2fs_truncate_data_blocks_range(&dn, 1); /* 0 is possible, after f2fs_new_inode() has failed */ f2fs_bug_on(F2FS_I_SB(inode), @@ -1062,7 +1063,7 @@ int remove_inode_page(struct inode *inode) return 0; } -struct page *new_inode_page(struct inode *inode) +struct page *f2fs_new_inode_page(struct inode *inode) { struct dnode_of_data dn; @@ -1070,10 +1071,10 @@ struct page *new_inode_page(struct inode *inode) set_new_dnode(&dn, inode, NULL, NULL, inode->i_ino); /* caller should f2fs_put_page(page, 1); */ - return new_node_page(&dn, 0); + return f2fs_new_node_page(&dn, 0); } -struct page *new_node_page(struct dnode_of_data *dn, unsigned int ofs) +struct page *f2fs_new_node_page(struct dnode_of_data *dn, unsigned int ofs) { struct f2fs_sb_info *sbi = F2FS_I_SB(dn->inode); struct node_info new_ni; @@ -1091,7 +1092,7 @@ struct page *new_node_page(struct dnode_of_data *dn, unsigned int ofs) goto fail; #ifdef CONFIG_F2FS_CHECK_FS - get_node_info(sbi, dn->nid, &new_ni); + f2fs_get_node_info(sbi, dn->nid, &new_ni); f2fs_bug_on(sbi, new_ni.blk_addr != NULL_ADDR); #endif new_ni.nid = dn->nid; @@ -1143,7 +1144,7 @@ static int read_node_page(struct page *page, int op_flags) if (PageUptodate(page)) return LOCKED_PAGE; - get_node_info(sbi, page->index, &ni); + f2fs_get_node_info(sbi, page->index, &ni); if (unlikely(ni.blk_addr == NULL_ADDR)) { ClearPageUptodate(page); @@ -1157,14 +1158,14 @@ static int read_node_page(struct page *page, int op_flags) /* * Readahead a node page */ -void ra_node_page(struct f2fs_sb_info *sbi, nid_t nid) +void f2fs_ra_node_page(struct f2fs_sb_info *sbi, nid_t nid) { struct page *apage; int err; if (!nid) return; - if (check_nid_range(sbi, nid)) + if (f2fs_check_nid_range(sbi, nid)) return; rcu_read_lock(); @@ -1189,7 +1190,7 @@ static struct page *__get_node_page(struct f2fs_sb_info *sbi, pgoff_t nid, if (!nid) return ERR_PTR(-ENOENT); - if (check_nid_range(sbi, nid)) + if (f2fs_check_nid_range(sbi, nid)) return ERR_PTR(-EINVAL); repeat: page = f2fs_grab_cache_page(NODE_MAPPING(sbi), nid, false); @@ -1206,7 +1207,7 @@ repeat: } if (parent) - ra_node_pages(parent, start + 1, MAX_RA_NODE); + f2fs_ra_node_pages(parent, start + 1, MAX_RA_NODE); lock_page(page); @@ -1240,12 +1241,12 @@ out_err: return page; } -struct page *get_node_page(struct f2fs_sb_info *sbi, pgoff_t nid) +struct page *f2fs_get_node_page(struct f2fs_sb_info *sbi, pgoff_t nid) { return __get_node_page(sbi, nid, NULL, 0); } -struct page *get_node_page_ra(struct page *parent, int start) +struct page *f2fs_get_node_page_ra(struct page *parent, int start) { struct f2fs_sb_info *sbi = F2FS_P_SB(parent); nid_t nid = get_nid(parent, start, false); @@ -1280,7 +1281,7 @@ static void flush_inline_data(struct f2fs_sb_info *sbi, nid_t ino) ret = f2fs_write_inline_data(inode, page); inode_dec_dirty_pages(inode); - remove_dirty_inode(inode); + f2fs_remove_dirty_inode(inode); if (ret) set_page_dirty(page); page_out: @@ -1384,7 +1385,7 @@ static int __write_node_page(struct page *page, bool atomic, bool *submitted, down_read(&sbi->node_write); } - get_node_info(sbi, nid, &ni); + f2fs_get_node_info(sbi, nid, &ni); /* This page is already truncated */ if (unlikely(ni.blk_addr == NULL_ADDR)) { @@ -1401,7 +1402,7 @@ static int __write_node_page(struct page *page, bool atomic, bool *submitted, set_page_writeback(page); ClearPageError(page); fio.old_blkaddr = ni.blk_addr; - write_node_page(nid, &fio); + f2fs_do_write_node_page(nid, &fio); set_node_addr(sbi, &ni, fio.new_blkaddr, is_fsync_dnode(page)); dec_page_count(sbi, F2FS_DIRTY_NODES); up_read(&sbi->node_write); @@ -1430,7 +1431,7 @@ redirty_out: return AOP_WRITEPAGE_ACTIVATE; } -void move_node_page(struct page *node_page, int gc_type) +void f2fs_move_node_page(struct page *node_page, int gc_type) { if (gc_type == FG_GC) { struct writeback_control wbc = { @@ -1467,7 +1468,7 @@ static int f2fs_write_node_page(struct page *page, return __write_node_page(page, false, NULL, wbc, false, FS_NODE_IO); } -int fsync_node_pages(struct f2fs_sb_info *sbi, struct inode *inode, +int f2fs_fsync_node_pages(struct f2fs_sb_info *sbi, struct inode *inode, struct writeback_control *wbc, bool atomic) { pgoff_t index; @@ -1534,9 +1535,9 @@ continue_unlock: if (IS_INODE(page)) { if (is_inode_flag_set(inode, FI_DIRTY_INODE)) - update_inode(inode, page); + f2fs_update_inode(inode, page); set_dentry_mark(page, - need_dentry_mark(sbi, ino)); + f2fs_need_dentry_mark(sbi, ino)); } /* may be written by other thread */ if (!PageDirty(page)) @@ -1586,7 +1587,8 @@ out: return ret ? -EIO: 0; } -int sync_node_pages(struct f2fs_sb_info *sbi, struct writeback_control *wbc, +int f2fs_sync_node_pages(struct f2fs_sb_info *sbi, + struct writeback_control *wbc, bool do_balance, enum iostat_type io_type) { pgoff_t index; @@ -1687,7 +1689,7 @@ continue_unlock: return ret; } -int wait_on_node_pages_writeback(struct f2fs_sb_info *sbi, nid_t ino) +int f2fs_wait_on_node_pages_writeback(struct f2fs_sb_info *sbi, nid_t ino) { pgoff_t index = 0; struct pagevec pvec; @@ -1741,7 +1743,7 @@ static int f2fs_write_node_pages(struct address_space *mapping, diff = nr_pages_to_write(sbi, NODE, wbc); wbc->sync_mode = WB_SYNC_NONE; blk_start_plug(&plug); - sync_node_pages(sbi, wbc, true, FS_NODE_IO); + f2fs_sync_node_pages(sbi, wbc, true, FS_NODE_IO); blk_finish_plug(&plug); wbc->nr_to_write = max((long)0, wbc->nr_to_write - diff); return 0; @@ -1889,20 +1891,20 @@ static bool add_free_nid(struct f2fs_sb_info *sbi, * Thread A Thread B * - f2fs_create * - f2fs_new_inode - * - alloc_nid + * - f2fs_alloc_nid * - __insert_nid_to_list(PREALLOC_NID) * - f2fs_balance_fs_bg - * - build_free_nids - * - __build_free_nids + * - f2fs_build_free_nids + * - __f2fs_build_free_nids * - scan_nat_page * - add_free_nid * - __lookup_nat_cache * - f2fs_add_link - * - init_inode_metadata - * - new_inode_page - * - new_node_page + * - f2fs_init_inode_metadata + * - f2fs_new_inode_page + * - f2fs_new_node_page * - set_node_addr - * - alloc_nid_done + * - f2fs_alloc_nid_done * - __remove_nid_from_list(PREALLOC_NID) * - __insert_nid_to_list(FREE_NID) */ @@ -2034,7 +2036,8 @@ out: up_read(&nm_i->nat_tree_lock); } -static void __build_free_nids(struct f2fs_sb_info *sbi, bool sync, bool mount) +static void __f2fs_build_free_nids(struct f2fs_sb_info *sbi, + bool sync, bool mount) { struct f2fs_nm_info *nm_i = NM_I(sbi); int i = 0; @@ -2047,7 +2050,7 @@ static void __build_free_nids(struct f2fs_sb_info *sbi, bool sync, bool mount) if (nm_i->nid_cnt[FREE_NID] >= NAT_ENTRY_PER_BLOCK) return; - if (!sync && !available_free_memory(sbi, FREE_NIDS)) + if (!sync && !f2fs_available_free_memory(sbi, FREE_NIDS)) return; if (!mount) { @@ -2059,7 +2062,7 @@ static void __build_free_nids(struct f2fs_sb_info *sbi, bool sync, bool mount) } /* readahead nat pages to be scanned */ - ra_meta_pages(sbi, NAT_BLOCK_OFFSET(nid), FREE_NID_PAGES, + f2fs_ra_meta_pages(sbi, NAT_BLOCK_OFFSET(nid), FREE_NID_PAGES, META_NAT, true); down_read(&nm_i->nat_tree_lock); @@ -2089,14 +2092,14 @@ static void __build_free_nids(struct f2fs_sb_info *sbi, bool sync, bool mount) up_read(&nm_i->nat_tree_lock); - ra_meta_pages(sbi, NAT_BLOCK_OFFSET(nm_i->next_scan_nid), + f2fs_ra_meta_pages(sbi, NAT_BLOCK_OFFSET(nm_i->next_scan_nid), nm_i->ra_nid_pages, META_NAT, false); } -void build_free_nids(struct f2fs_sb_info *sbi, bool sync, bool mount) +void f2fs_build_free_nids(struct f2fs_sb_info *sbi, bool sync, bool mount) { mutex_lock(&NM_I(sbi)->build_lock); - __build_free_nids(sbi, sync, mount); + __f2fs_build_free_nids(sbi, sync, mount); mutex_unlock(&NM_I(sbi)->build_lock); } @@ -2105,7 +2108,7 @@ void build_free_nids(struct f2fs_sb_info *sbi, bool sync, bool mount) * from second parameter of this function. * The returned nid could be used ino as well as nid when inode is created. */ -bool alloc_nid(struct f2fs_sb_info *sbi, nid_t *nid) +bool f2fs_alloc_nid(struct f2fs_sb_info *sbi, nid_t *nid) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct free_nid *i = NULL; @@ -2123,8 +2126,8 @@ retry: return false; } - /* We should not use stale free nids created by build_free_nids */ - if (nm_i->nid_cnt[FREE_NID] && !on_build_free_nids(nm_i)) { + /* We should not use stale free nids created by f2fs_build_free_nids */ + if (nm_i->nid_cnt[FREE_NID] && !on_f2fs_build_free_nids(nm_i)) { f2fs_bug_on(sbi, list_empty(&nm_i->free_nid_list)); i = list_first_entry(&nm_i->free_nid_list, struct free_nid, list); @@ -2141,14 +2144,14 @@ retry: spin_unlock(&nm_i->nid_list_lock); /* Let's scan nat pages and its caches to get free nids */ - build_free_nids(sbi, true, false); + f2fs_build_free_nids(sbi, true, false); goto retry; } /* - * alloc_nid() should be called prior to this function. + * f2fs_alloc_nid() should be called prior to this function. */ -void alloc_nid_done(struct f2fs_sb_info *sbi, nid_t nid) +void f2fs_alloc_nid_done(struct f2fs_sb_info *sbi, nid_t nid) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct free_nid *i; @@ -2163,9 +2166,9 @@ void alloc_nid_done(struct f2fs_sb_info *sbi, nid_t nid) } /* - * alloc_nid() should be called prior to this function. + * f2fs_alloc_nid() should be called prior to this function. */ -void alloc_nid_failed(struct f2fs_sb_info *sbi, nid_t nid) +void f2fs_alloc_nid_failed(struct f2fs_sb_info *sbi, nid_t nid) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct free_nid *i; @@ -2178,7 +2181,7 @@ void alloc_nid_failed(struct f2fs_sb_info *sbi, nid_t nid) i = __lookup_free_nid_list(nm_i, nid); f2fs_bug_on(sbi, !i); - if (!available_free_memory(sbi, FREE_NIDS)) { + if (!f2fs_available_free_memory(sbi, FREE_NIDS)) { __remove_free_nid(sbi, i, PREALLOC_NID); need_free = true; } else { @@ -2195,7 +2198,7 @@ void alloc_nid_failed(struct f2fs_sb_info *sbi, nid_t nid) kmem_cache_free(free_nid_slab, i); } -int try_to_free_nids(struct f2fs_sb_info *sbi, int nr_shrink) +int f2fs_try_to_free_nids(struct f2fs_sb_info *sbi, int nr_shrink) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct free_nid *i, *next; @@ -2223,14 +2226,14 @@ int try_to_free_nids(struct f2fs_sb_info *sbi, int nr_shrink) return nr - nr_shrink; } -void recover_inline_xattr(struct inode *inode, struct page *page) +void f2fs_recover_inline_xattr(struct inode *inode, struct page *page) { void *src_addr, *dst_addr; size_t inline_size; struct page *ipage; struct f2fs_inode *ri; - ipage = get_node_page(F2FS_I_SB(inode), inode->i_ino); + ipage = f2fs_get_node_page(F2FS_I_SB(inode), inode->i_ino); f2fs_bug_on(F2FS_I_SB(inode), IS_ERR(ipage)); ri = F2FS_INODE(page); @@ -2248,11 +2251,11 @@ void recover_inline_xattr(struct inode *inode, struct page *page) f2fs_wait_on_page_writeback(ipage, NODE, true); memcpy(dst_addr, src_addr, inline_size); update_inode: - update_inode(inode, ipage); + f2fs_update_inode(inode, ipage); f2fs_put_page(ipage, 1); } -int recover_xattr_data(struct inode *inode, struct page *page) +int f2fs_recover_xattr_data(struct inode *inode, struct page *page) { struct f2fs_sb_info *sbi = F2FS_I_SB(inode); nid_t prev_xnid = F2FS_I(inode)->i_xattr_nid; @@ -2265,25 +2268,25 @@ int recover_xattr_data(struct inode *inode, struct page *page) goto recover_xnid; /* 1: invalidate the previous xattr nid */ - get_node_info(sbi, prev_xnid, &ni); - invalidate_blocks(sbi, ni.blk_addr); + f2fs_get_node_info(sbi, prev_xnid, &ni); + f2fs_invalidate_blocks(sbi, ni.blk_addr); dec_valid_node_count(sbi, inode, false); set_node_addr(sbi, &ni, NULL_ADDR, false); recover_xnid: /* 2: update xattr nid in inode */ - if (!alloc_nid(sbi, &new_xnid)) + if (!f2fs_alloc_nid(sbi, &new_xnid)) return -ENOSPC; set_new_dnode(&dn, inode, NULL, NULL, new_xnid); - xpage = new_node_page(&dn, XATTR_NODE_OFFSET); + xpage = f2fs_new_node_page(&dn, XATTR_NODE_OFFSET); if (IS_ERR(xpage)) { - alloc_nid_failed(sbi, new_xnid); + f2fs_alloc_nid_failed(sbi, new_xnid); return PTR_ERR(xpage); } - alloc_nid_done(sbi, new_xnid); - update_inode_page(inode); + f2fs_alloc_nid_done(sbi, new_xnid); + f2fs_update_inode_page(inode); /* 3: update and set xattr node page dirty */ memcpy(F2FS_NODE(xpage), F2FS_NODE(page), VALID_XATTR_BLOCK_SIZE); @@ -2294,14 +2297,14 @@ recover_xnid: return 0; } -int recover_inode_page(struct f2fs_sb_info *sbi, struct page *page) +int f2fs_recover_inode_page(struct f2fs_sb_info *sbi, struct page *page) { struct f2fs_inode *src, *dst; nid_t ino = ino_of_node(page); struct node_info old_ni, new_ni; struct page *ipage; - get_node_info(sbi, ino, &old_ni); + f2fs_get_node_info(sbi, ino, &old_ni); if (unlikely(old_ni.blk_addr != NULL_ADDR)) return -EINVAL; @@ -2355,7 +2358,7 @@ retry: return 0; } -void restore_node_summary(struct f2fs_sb_info *sbi, +void f2fs_restore_node_summary(struct f2fs_sb_info *sbi, unsigned int segno, struct f2fs_summary_block *sum) { struct f2fs_node *rn; @@ -2372,10 +2375,10 @@ void restore_node_summary(struct f2fs_sb_info *sbi, nrpages = min(last_offset - i, BIO_MAX_PAGES); /* readahead node pages */ - ra_meta_pages(sbi, addr, nrpages, META_POR, true); + f2fs_ra_meta_pages(sbi, addr, nrpages, META_POR, true); for (idx = addr; idx < addr + nrpages; idx++) { - struct page *page = get_tmp_page(sbi, idx); + struct page *page = f2fs_get_tmp_page(sbi, idx); rn = F2FS_NODE(page); sum_entry->nid = rn->footer.nid; @@ -2517,7 +2520,7 @@ static void __flush_nat_entry_set(struct f2fs_sb_info *sbi, f2fs_bug_on(sbi, nat_get_blkaddr(ne) == NEW_ADDR); if (to_journal) { - offset = lookup_journal_in_cursum(journal, + offset = f2fs_lookup_journal_in_cursum(journal, NAT_JOURNAL, nid, 1); f2fs_bug_on(sbi, offset < 0); raw_ne = &nat_in_journal(journal, offset); @@ -2554,7 +2557,7 @@ static void __flush_nat_entry_set(struct f2fs_sb_info *sbi, /* * This function is called during the checkpointing process. */ -void flush_nat_entries(struct f2fs_sb_info *sbi, struct cp_control *cpc) +void f2fs_flush_nat_entries(struct f2fs_sb_info *sbi, struct cp_control *cpc) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct curseg_info *curseg = CURSEG_I(sbi, CURSEG_HOT_DATA); @@ -2617,7 +2620,7 @@ static int __get_nat_bitmaps(struct f2fs_sb_info *sbi) nat_bits_addr = __start_cp_addr(sbi) + sbi->blocks_per_seg - nm_i->nat_bits_blocks; for (i = 0; i < nm_i->nat_bits_blocks; i++) { - struct page *page = get_meta_page(sbi, nat_bits_addr++); + struct page *page = f2fs_get_meta_page(sbi, nat_bits_addr++); memcpy(nm_i->nat_bits + (i << F2FS_BLKSIZE_BITS), page_address(page), F2FS_BLKSIZE); @@ -2760,7 +2763,7 @@ static int init_free_nid_cache(struct f2fs_sb_info *sbi) return 0; } -int build_node_manager(struct f2fs_sb_info *sbi) +int f2fs_build_node_manager(struct f2fs_sb_info *sbi) { int err; @@ -2780,11 +2783,11 @@ int build_node_manager(struct f2fs_sb_info *sbi) /* load free nid status from nat_bits table */ load_free_nid_bitmap(sbi); - build_free_nids(sbi, true, true); + f2fs_build_free_nids(sbi, true, true); return 0; } -void destroy_node_manager(struct f2fs_sb_info *sbi) +void f2fs_destroy_node_manager(struct f2fs_sb_info *sbi) { struct f2fs_nm_info *nm_i = NM_I(sbi); struct free_nid *i, *next_i; @@ -2856,7 +2859,7 @@ void destroy_node_manager(struct f2fs_sb_info *sbi) kfree(nm_i); } -int __init create_node_manager_caches(void) +int __init f2fs_create_node_manager_caches(void) { nat_entry_slab = f2fs_kmem_cache_create("nat_entry", sizeof(struct nat_entry)); @@ -2882,7 +2885,7 @@ fail: return -ENOMEM; } -void destroy_node_manager_caches(void) +void f2fs_destroy_node_manager_caches(void) { kmem_cache_destroy(nat_entry_set_slab); kmem_cache_destroy(free_nid_slab); |