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1/*
2 * f2fs debugging statistics
3 *
4 * Copyright (c) 2012 Samsung Electronics Co., Ltd.
5 * http://www.samsung.com/
6 * Copyright (c) 2012 Linux Foundation
7 * Copyright (c) 2012 Greg Kroah-Hartman <gregkh@linuxfoundation.org>
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License version 2 as
11 * published by the Free Software Foundation.
12 */
13
14#include <linux/fs.h>
15#include <linux/backing-dev.h>
16#include <linux/f2fs_fs.h>
17#include <linux/blkdev.h>
18#include <linux/debugfs.h>
19#include <linux/seq_file.h>
20
21#include "f2fs.h"
22#include "node.h"
23#include "segment.h"
24#include "gc.h"
25
26static LIST_HEAD(f2fs_stat_list);
27static struct dentry *f2fs_debugfs_root;
28static DEFINE_MUTEX(f2fs_stat_mutex);
29
30static void update_general_status(struct f2fs_sb_info *sbi)
31{
32 struct f2fs_stat_info *si = F2FS_STAT(sbi);
33 int i;
34
35 /* valid check of the segment numbers */
36 si->hit_ext = sbi->read_hit_ext;
37 si->total_ext = sbi->total_hit_ext;
38 si->ndirty_node = get_pages(sbi, F2FS_DIRTY_NODES);
39 si->ndirty_dent = get_pages(sbi, F2FS_DIRTY_DENTS);
40 si->ndirty_dirs = sbi->n_dirty_dirs;
41 si->ndirty_meta = get_pages(sbi, F2FS_DIRTY_META);
42 si->total_count = (int)sbi->user_block_count / sbi->blocks_per_seg;
43 si->rsvd_segs = reserved_segments(sbi);
44 si->overp_segs = overprovision_segments(sbi);
45 si->valid_count = valid_user_blocks(sbi);
46 si->valid_node_count = valid_node_count(sbi);
47 si->valid_inode_count = valid_inode_count(sbi);
48 si->inline_inode = sbi->inline_inode;
49 si->utilization = utilization(sbi);
50
51 si->free_segs = free_segments(sbi);
52 si->free_secs = free_sections(sbi);
53 si->prefree_count = prefree_segments(sbi);
54 si->dirty_count = dirty_segments(sbi);
55 si->node_pages = NODE_MAPPING(sbi)->nrpages;
56 si->meta_pages = META_MAPPING(sbi)->nrpages;
57 si->nats = NM_I(sbi)->nat_cnt;
58 si->sits = SIT_I(sbi)->dirty_sentries;
59 si->fnids = NM_I(sbi)->fcnt;
60 si->bg_gc = sbi->bg_gc;
61 si->util_free = (int)(free_user_blocks(sbi) >> sbi->log_blocks_per_seg)
62 * 100 / (int)(sbi->user_block_count >> sbi->log_blocks_per_seg)
63 / 2;
64 si->util_valid = (int)(written_block_count(sbi) >>
65 sbi->log_blocks_per_seg)
66 * 100 / (int)(sbi->user_block_count >> sbi->log_blocks_per_seg)
67 / 2;
68 si->util_invalid = 50 - si->util_free - si->util_valid;
69 for (i = CURSEG_HOT_DATA; i <= CURSEG_COLD_NODE; i++) {
70 struct curseg_info *curseg = CURSEG_I(sbi, i);
71 si->curseg[i] = curseg->segno;
72 si->cursec[i] = curseg->segno / sbi->segs_per_sec;
73 si->curzone[i] = si->cursec[i] / sbi->secs_per_zone;
74 }
75
76 for (i = 0; i < 2; i++) {
77 si->segment_count[i] = sbi->segment_count[i];
78 si->block_count[i] = sbi->block_count[i];
79 }
80}
81
82/*
83 * This function calculates BDF of every segments
84 */
85static void update_sit_info(struct f2fs_sb_info *sbi)
86{
87 struct f2fs_stat_info *si = F2FS_STAT(sbi);
88 unsigned int blks_per_sec, hblks_per_sec, total_vblocks, bimodal, dist;
89 unsigned int segno, vblocks;
90 int ndirty = 0;
91
92 bimodal = 0;
93 total_vblocks = 0;
94 blks_per_sec = sbi->segs_per_sec * (1 << sbi->log_blocks_per_seg);
95 hblks_per_sec = blks_per_sec / 2;
96 for (segno = 0; segno < TOTAL_SEGS(sbi); segno += sbi->segs_per_sec) {
97 vblocks = get_valid_blocks(sbi, segno, sbi->segs_per_sec);
98 dist = abs(vblocks - hblks_per_sec);
99 bimodal += dist * dist;
100
101 if (vblocks > 0 && vblocks < blks_per_sec) {
102 total_vblocks += vblocks;
103 ndirty++;
104 }
105 }
106 dist = TOTAL_SECS(sbi) * hblks_per_sec * hblks_per_sec / 100;
107 si->bimodal = bimodal / dist;
108 if (si->dirty_count)
109 si->avg_vblocks = total_vblocks / ndirty;
110 else
111 si->avg_vblocks = 0;
112}
113
114/*
115 * This function calculates memory footprint.
116 */
117static void update_mem_info(struct f2fs_sb_info *sbi)
118{
119 struct f2fs_stat_info *si = F2FS_STAT(sbi);
120 unsigned npages;
121
122 if (si->base_mem)
123 goto get_cache;
124
125 si->base_mem = sizeof(struct f2fs_sb_info) + sbi->sb->s_blocksize;
126 si->base_mem += 2 * sizeof(struct f2fs_inode_info);
127 si->base_mem += sizeof(*sbi->ckpt);
128
129 /* build sm */
130 si->base_mem += sizeof(struct f2fs_sm_info);
131
132 /* build sit */
133 si->base_mem += sizeof(struct sit_info);
134 si->base_mem += TOTAL_SEGS(sbi) * sizeof(struct seg_entry);
135 si->base_mem += f2fs_bitmap_size(TOTAL_SEGS(sbi));
136 si->base_mem += 2 * SIT_VBLOCK_MAP_SIZE * TOTAL_SEGS(sbi);
137 if (sbi->segs_per_sec > 1)
138 si->base_mem += TOTAL_SECS(sbi) * sizeof(struct sec_entry);
139 si->base_mem += __bitmap_size(sbi, SIT_BITMAP);
140
141 /* build free segmap */
142 si->base_mem += sizeof(struct free_segmap_info);
143 si->base_mem += f2fs_bitmap_size(TOTAL_SEGS(sbi));
144 si->base_mem += f2fs_bitmap_size(TOTAL_SECS(sbi));
145
146 /* build curseg */
147 si->base_mem += sizeof(struct curseg_info) * NR_CURSEG_TYPE;
148 si->base_mem += PAGE_CACHE_SIZE * NR_CURSEG_TYPE;
149
150 /* build dirty segmap */
151 si->base_mem += sizeof(struct dirty_seglist_info);
152 si->base_mem += NR_DIRTY_TYPE * f2fs_bitmap_size(TOTAL_SEGS(sbi));
153 si->base_mem += f2fs_bitmap_size(TOTAL_SECS(sbi));
154
155 /* buld nm */
156 si->base_mem += sizeof(struct f2fs_nm_info);
157 si->base_mem += __bitmap_size(sbi, NAT_BITMAP);
158
159 /* build gc */
160 si->base_mem += sizeof(struct f2fs_gc_kthread);
161
162get_cache:
163 /* free nids */
164 si->cache_mem = NM_I(sbi)->fcnt;
165 si->cache_mem += NM_I(sbi)->nat_cnt;
166 npages = NODE_MAPPING(sbi)->nrpages;
167 si->cache_mem += npages << PAGE_CACHE_SHIFT;
168 npages = META_MAPPING(sbi)->nrpages;
169 si->cache_mem += npages << PAGE_CACHE_SHIFT;
170 si->cache_mem += sbi->n_orphans * sizeof(struct orphan_inode_entry);
171 si->cache_mem += sbi->n_dirty_dirs * sizeof(struct dir_inode_entry);
172}
173
174static int stat_show(struct seq_file *s, void *v)
175{
176 struct f2fs_stat_info *si;
177 int i = 0;
178 int j;
179
180 mutex_lock(&f2fs_stat_mutex);
181 list_for_each_entry(si, &f2fs_stat_list, stat_list) {
182 char devname[BDEVNAME_SIZE];
183
184 update_general_status(si->sbi);
185
186 seq_printf(s, "\n=====[ partition info(%s). #%d ]=====\n",
187 bdevname(si->sbi->sb->s_bdev, devname), i++);
188 seq_printf(s, "[SB: 1] [CP: 2] [SIT: %d] [NAT: %d] ",
189 si->sit_area_segs, si->nat_area_segs);
190 seq_printf(s, "[SSA: %d] [MAIN: %d",
191 si->ssa_area_segs, si->main_area_segs);
192 seq_printf(s, "(OverProv:%d Resv:%d)]\n\n",
193 si->overp_segs, si->rsvd_segs);
194 seq_printf(s, "Utilization: %d%% (%d valid blocks)\n",
195 si->utilization, si->valid_count);
196 seq_printf(s, " - Node: %u (Inode: %u, ",
197 si->valid_node_count, si->valid_inode_count);
198 seq_printf(s, "Other: %u)\n - Data: %u\n",
199 si->valid_node_count - si->valid_inode_count,
200 si->valid_count - si->valid_node_count);
201 seq_printf(s, " - Inline_data Inode: %u\n",
202 si->inline_inode);
203 seq_printf(s, "\nMain area: %d segs, %d secs %d zones\n",
204 si->main_area_segs, si->main_area_sections,
205 si->main_area_zones);
206 seq_printf(s, " - COLD data: %d, %d, %d\n",
207 si->curseg[CURSEG_COLD_DATA],
208 si->cursec[CURSEG_COLD_DATA],
209 si->curzone[CURSEG_COLD_DATA]);
210 seq_printf(s, " - WARM data: %d, %d, %d\n",
211 si->curseg[CURSEG_WARM_DATA],
212 si->cursec[CURSEG_WARM_DATA],
213 si->curzone[CURSEG_WARM_DATA]);
214 seq_printf(s, " - HOT data: %d, %d, %d\n",
215 si->curseg[CURSEG_HOT_DATA],
216 si->cursec[CURSEG_HOT_DATA],
217 si->curzone[CURSEG_HOT_DATA]);
218 seq_printf(s, " - Dir dnode: %d, %d, %d\n",
219 si->curseg[CURSEG_HOT_NODE],
220 si->cursec[CURSEG_HOT_NODE],
221 si->curzone[CURSEG_HOT_NODE]);
222 seq_printf(s, " - File dnode: %d, %d, %d\n",
223 si->curseg[CURSEG_WARM_NODE],
224 si->cursec[CURSEG_WARM_NODE],
225 si->curzone[CURSEG_WARM_NODE]);
226 seq_printf(s, " - Indir nodes: %d, %d, %d\n",
227 si->curseg[CURSEG_COLD_NODE],
228 si->cursec[CURSEG_COLD_NODE],
229 si->curzone[CURSEG_COLD_NODE]);
230 seq_printf(s, "\n - Valid: %d\n - Dirty: %d\n",
231 si->main_area_segs - si->dirty_count -
232 si->prefree_count - si->free_segs,
233 si->dirty_count);
234 seq_printf(s, " - Prefree: %d\n - Free: %d (%d)\n\n",
235 si->prefree_count, si->free_segs, si->free_secs);
236 seq_printf(s, "CP calls: %d\n", si->cp_count);
237 seq_printf(s, "GC calls: %d (BG: %d)\n",
238 si->call_count, si->bg_gc);
239 seq_printf(s, " - data segments : %d\n", si->data_segs);
240 seq_printf(s, " - node segments : %d\n", si->node_segs);
241 seq_printf(s, "Try to move %d blocks\n", si->tot_blks);
242 seq_printf(s, " - data blocks : %d\n", si->data_blks);
243 seq_printf(s, " - node blocks : %d\n", si->node_blks);
244 seq_printf(s, "\nExtent Hit Ratio: %d / %d\n",
245 si->hit_ext, si->total_ext);
246 seq_puts(s, "\nBalancing F2FS Async:\n");
247 seq_printf(s, " - nodes: %4d in %4d\n",
248 si->ndirty_node, si->node_pages);
249 seq_printf(s, " - dents: %4d in dirs:%4d\n",
250 si->ndirty_dent, si->ndirty_dirs);
251 seq_printf(s, " - meta: %4d in %4d\n",
252 si->ndirty_meta, si->meta_pages);
253 seq_printf(s, " - NATs: %9d\n - SITs: %9d\n",
254 si->nats, si->sits);
255 seq_printf(s, " - free_nids: %9d\n",
256 si->fnids);
257 seq_puts(s, "\nDistribution of User Blocks:");
258 seq_puts(s, " [ valid | invalid | free ]\n");
259 seq_puts(s, " [");
260
261 for (j = 0; j < si->util_valid; j++)
262 seq_putc(s, '-');
263 seq_putc(s, '|');
264
265 for (j = 0; j < si->util_invalid; j++)
266 seq_putc(s, '-');
267 seq_putc(s, '|');
268
269 for (j = 0; j < si->util_free; j++)
270 seq_putc(s, '-');
271 seq_puts(s, "]\n\n");
272 seq_printf(s, "SSR: %u blocks in %u segments\n",
273 si->block_count[SSR], si->segment_count[SSR]);
274 seq_printf(s, "LFS: %u blocks in %u segments\n",
275 si->block_count[LFS], si->segment_count[LFS]);
276
277 /* segment usage info */
278 update_sit_info(si->sbi);
279 seq_printf(s, "\nBDF: %u, avg. vblocks: %u\n",
280 si->bimodal, si->avg_vblocks);
281
282 /* memory footprint */
283 update_mem_info(si->sbi);
284 seq_printf(s, "\nMemory: %u KB = static: %u + cached: %u\n",
285 (si->base_mem + si->cache_mem) >> 10,
286 si->base_mem >> 10, si->cache_mem >> 10);
287 }
288 mutex_unlock(&f2fs_stat_mutex);
289 return 0;
290}
291
292static int stat_open(struct inode *inode, struct file *file)
293{
294 return single_open(file, stat_show, inode->i_private);
295}
296
297static const struct file_operations stat_fops = {
298 .open = stat_open,
299 .read = seq_read,
300 .llseek = seq_lseek,
301 .release = single_release,
302};
303
304int f2fs_build_stats(struct f2fs_sb_info *sbi)
305{
306 struct f2fs_super_block *raw_super = F2FS_RAW_SUPER(sbi);
307 struct f2fs_stat_info *si;
308
309 si = kzalloc(sizeof(struct f2fs_stat_info), GFP_KERNEL);
310 if (!si)
311 return -ENOMEM;
312
313 si->all_area_segs = le32_to_cpu(raw_super->segment_count);
314 si->sit_area_segs = le32_to_cpu(raw_super->segment_count_sit);
315 si->nat_area_segs = le32_to_cpu(raw_super->segment_count_nat);
316 si->ssa_area_segs = le32_to_cpu(raw_super->segment_count_ssa);
317 si->main_area_segs = le32_to_cpu(raw_super->segment_count_main);
318 si->main_area_sections = le32_to_cpu(raw_super->section_count);
319 si->main_area_zones = si->main_area_sections /
320 le32_to_cpu(raw_super->secs_per_zone);
321 si->sbi = sbi;
322 sbi->stat_info = si;
323
324 mutex_lock(&f2fs_stat_mutex);
325 list_add_tail(&si->stat_list, &f2fs_stat_list);
326 mutex_unlock(&f2fs_stat_mutex);
327
328 return 0;
329}
330
331void f2fs_destroy_stats(struct f2fs_sb_info *sbi)
332{
333 struct f2fs_stat_info *si = F2FS_STAT(sbi);
334
335 mutex_lock(&f2fs_stat_mutex);
336 list_del(&si->stat_list);
337 mutex_unlock(&f2fs_stat_mutex);
338
339 kfree(si);
340}
341
342void __init f2fs_create_root_stats(void)
343{
344 struct dentry *file;
345
346 f2fs_debugfs_root = debugfs_create_dir("f2fs", NULL);
347 if (!f2fs_debugfs_root)
348 goto bail;
349
350 file = debugfs_create_file("status", S_IRUGO, f2fs_debugfs_root,
351 NULL, &stat_fops);
352 if (!file)
353 goto free_debugfs_dir;
354
355 return;
356
357free_debugfs_dir:
358 debugfs_remove(f2fs_debugfs_root);
359
360bail:
361 f2fs_debugfs_root = NULL;
362 return;
363}
364
365void f2fs_destroy_root_stats(void)
366{
367 if (!f2fs_debugfs_root)
368 return;
369
370 debugfs_remove_recursive(f2fs_debugfs_root);
371 f2fs_debugfs_root = NULL;
372}
1// SPDX-License-Identifier: GPL-2.0
2/*
3 * f2fs debugging statistics
4 *
5 * Copyright (c) 2012 Samsung Electronics Co., Ltd.
6 * http://www.samsung.com/
7 * Copyright (c) 2012 Linux Foundation
8 * Copyright (c) 2012 Greg Kroah-Hartman <gregkh@linuxfoundation.org>
9 */
10
11#include <linux/fs.h>
12#include <linux/backing-dev.h>
13#include <linux/f2fs_fs.h>
14#include <linux/blkdev.h>
15#include <linux/debugfs.h>
16#include <linux/seq_file.h>
17
18#include "f2fs.h"
19#include "node.h"
20#include "segment.h"
21#include "gc.h"
22
23static LIST_HEAD(f2fs_stat_list);
24static DEFINE_MUTEX(f2fs_stat_mutex);
25#ifdef CONFIG_DEBUG_FS
26static struct dentry *f2fs_debugfs_root;
27#endif
28
29/*
30 * This function calculates BDF of every segments
31 */
32void f2fs_update_sit_info(struct f2fs_sb_info *sbi)
33{
34 struct f2fs_stat_info *si = F2FS_STAT(sbi);
35 unsigned long long blks_per_sec, hblks_per_sec, total_vblocks;
36 unsigned long long bimodal, dist;
37 unsigned int segno, vblocks;
38 int ndirty = 0;
39
40 bimodal = 0;
41 total_vblocks = 0;
42 blks_per_sec = BLKS_PER_SEC(sbi);
43 hblks_per_sec = blks_per_sec / 2;
44 for (segno = 0; segno < MAIN_SEGS(sbi); segno += sbi->segs_per_sec) {
45 vblocks = get_valid_blocks(sbi, segno, true);
46 dist = abs(vblocks - hblks_per_sec);
47 bimodal += dist * dist;
48
49 if (vblocks > 0 && vblocks < blks_per_sec) {
50 total_vblocks += vblocks;
51 ndirty++;
52 }
53 }
54 dist = div_u64(MAIN_SECS(sbi) * hblks_per_sec * hblks_per_sec, 100);
55 si->bimodal = div64_u64(bimodal, dist);
56 if (si->dirty_count)
57 si->avg_vblocks = div_u64(total_vblocks, ndirty);
58 else
59 si->avg_vblocks = 0;
60}
61
62#ifdef CONFIG_DEBUG_FS
63static void update_general_status(struct f2fs_sb_info *sbi)
64{
65 struct f2fs_stat_info *si = F2FS_STAT(sbi);
66 struct f2fs_super_block *raw_super = F2FS_RAW_SUPER(sbi);
67 int i;
68
69 /* these will be changed if online resize is done */
70 si->main_area_segs = le32_to_cpu(raw_super->segment_count_main);
71 si->main_area_sections = le32_to_cpu(raw_super->section_count);
72 si->main_area_zones = si->main_area_sections /
73 le32_to_cpu(raw_super->secs_per_zone);
74
75 /* validation check of the segment numbers */
76 si->hit_largest = atomic64_read(&sbi->read_hit_largest);
77 si->hit_cached = atomic64_read(&sbi->read_hit_cached);
78 si->hit_rbtree = atomic64_read(&sbi->read_hit_rbtree);
79 si->hit_total = si->hit_largest + si->hit_cached + si->hit_rbtree;
80 si->total_ext = atomic64_read(&sbi->total_hit_ext);
81 si->ext_tree = atomic_read(&sbi->total_ext_tree);
82 si->zombie_tree = atomic_read(&sbi->total_zombie_tree);
83 si->ext_node = atomic_read(&sbi->total_ext_node);
84 si->ndirty_node = get_pages(sbi, F2FS_DIRTY_NODES);
85 si->ndirty_dent = get_pages(sbi, F2FS_DIRTY_DENTS);
86 si->ndirty_meta = get_pages(sbi, F2FS_DIRTY_META);
87 si->ndirty_data = get_pages(sbi, F2FS_DIRTY_DATA);
88 si->ndirty_qdata = get_pages(sbi, F2FS_DIRTY_QDATA);
89 si->ndirty_imeta = get_pages(sbi, F2FS_DIRTY_IMETA);
90 si->ndirty_dirs = sbi->ndirty_inode[DIR_INODE];
91 si->ndirty_files = sbi->ndirty_inode[FILE_INODE];
92 si->nquota_files = sbi->nquota_files;
93 si->ndirty_all = sbi->ndirty_inode[DIRTY_META];
94 si->inmem_pages = get_pages(sbi, F2FS_INMEM_PAGES);
95 si->aw_cnt = sbi->atomic_files;
96 si->vw_cnt = atomic_read(&sbi->vw_cnt);
97 si->max_aw_cnt = atomic_read(&sbi->max_aw_cnt);
98 si->max_vw_cnt = atomic_read(&sbi->max_vw_cnt);
99 si->nr_dio_read = get_pages(sbi, F2FS_DIO_READ);
100 si->nr_dio_write = get_pages(sbi, F2FS_DIO_WRITE);
101 si->nr_wb_cp_data = get_pages(sbi, F2FS_WB_CP_DATA);
102 si->nr_wb_data = get_pages(sbi, F2FS_WB_DATA);
103 si->nr_rd_data = get_pages(sbi, F2FS_RD_DATA);
104 si->nr_rd_node = get_pages(sbi, F2FS_RD_NODE);
105 si->nr_rd_meta = get_pages(sbi, F2FS_RD_META);
106 if (SM_I(sbi)->fcc_info) {
107 si->nr_flushed =
108 atomic_read(&SM_I(sbi)->fcc_info->issued_flush);
109 si->nr_flushing =
110 atomic_read(&SM_I(sbi)->fcc_info->queued_flush);
111 si->flush_list_empty =
112 llist_empty(&SM_I(sbi)->fcc_info->issue_list);
113 }
114 if (SM_I(sbi)->dcc_info) {
115 si->nr_discarded =
116 atomic_read(&SM_I(sbi)->dcc_info->issued_discard);
117 si->nr_discarding =
118 atomic_read(&SM_I(sbi)->dcc_info->queued_discard);
119 si->nr_discard_cmd =
120 atomic_read(&SM_I(sbi)->dcc_info->discard_cmd_cnt);
121 si->undiscard_blks = SM_I(sbi)->dcc_info->undiscard_blks;
122 }
123 si->nr_issued_ckpt = atomic_read(&sbi->cprc_info.issued_ckpt);
124 si->nr_total_ckpt = atomic_read(&sbi->cprc_info.total_ckpt);
125 si->nr_queued_ckpt = atomic_read(&sbi->cprc_info.queued_ckpt);
126 spin_lock(&sbi->cprc_info.stat_lock);
127 si->cur_ckpt_time = sbi->cprc_info.cur_time;
128 si->peak_ckpt_time = sbi->cprc_info.peak_time;
129 spin_unlock(&sbi->cprc_info.stat_lock);
130 si->total_count = (int)sbi->user_block_count / sbi->blocks_per_seg;
131 si->rsvd_segs = reserved_segments(sbi);
132 si->overp_segs = overprovision_segments(sbi);
133 si->valid_count = valid_user_blocks(sbi);
134 si->discard_blks = discard_blocks(sbi);
135 si->valid_node_count = valid_node_count(sbi);
136 si->valid_inode_count = valid_inode_count(sbi);
137 si->inline_xattr = atomic_read(&sbi->inline_xattr);
138 si->inline_inode = atomic_read(&sbi->inline_inode);
139 si->inline_dir = atomic_read(&sbi->inline_dir);
140 si->compr_inode = atomic_read(&sbi->compr_inode);
141 si->compr_blocks = atomic64_read(&sbi->compr_blocks);
142 si->append = sbi->im[APPEND_INO].ino_num;
143 si->update = sbi->im[UPDATE_INO].ino_num;
144 si->orphans = sbi->im[ORPHAN_INO].ino_num;
145 si->utilization = utilization(sbi);
146
147 si->free_segs = free_segments(sbi);
148 si->free_secs = free_sections(sbi);
149 si->prefree_count = prefree_segments(sbi);
150 si->dirty_count = dirty_segments(sbi);
151 if (sbi->node_inode)
152 si->node_pages = NODE_MAPPING(sbi)->nrpages;
153 if (sbi->meta_inode)
154 si->meta_pages = META_MAPPING(sbi)->nrpages;
155#ifdef CONFIG_F2FS_FS_COMPRESSION
156 if (sbi->compress_inode) {
157 si->compress_pages = COMPRESS_MAPPING(sbi)->nrpages;
158 si->compress_page_hit = atomic_read(&sbi->compress_page_hit);
159 }
160#endif
161 si->nats = NM_I(sbi)->nat_cnt[TOTAL_NAT];
162 si->dirty_nats = NM_I(sbi)->nat_cnt[DIRTY_NAT];
163 si->sits = MAIN_SEGS(sbi);
164 si->dirty_sits = SIT_I(sbi)->dirty_sentries;
165 si->free_nids = NM_I(sbi)->nid_cnt[FREE_NID];
166 si->avail_nids = NM_I(sbi)->available_nids;
167 si->alloc_nids = NM_I(sbi)->nid_cnt[PREALLOC_NID];
168 si->io_skip_bggc = sbi->io_skip_bggc;
169 si->other_skip_bggc = sbi->other_skip_bggc;
170 si->skipped_atomic_files[BG_GC] = sbi->skipped_atomic_files[BG_GC];
171 si->skipped_atomic_files[FG_GC] = sbi->skipped_atomic_files[FG_GC];
172 si->util_free = (int)(free_user_blocks(sbi) >> sbi->log_blocks_per_seg)
173 * 100 / (int)(sbi->user_block_count >> sbi->log_blocks_per_seg)
174 / 2;
175 si->util_valid = (int)(written_block_count(sbi) >>
176 sbi->log_blocks_per_seg)
177 * 100 / (int)(sbi->user_block_count >> sbi->log_blocks_per_seg)
178 / 2;
179 si->util_invalid = 50 - si->util_free - si->util_valid;
180 for (i = CURSEG_HOT_DATA; i < NO_CHECK_TYPE; i++) {
181 struct curseg_info *curseg = CURSEG_I(sbi, i);
182
183 si->curseg[i] = curseg->segno;
184 si->cursec[i] = GET_SEC_FROM_SEG(sbi, curseg->segno);
185 si->curzone[i] = GET_ZONE_FROM_SEC(sbi, si->cursec[i]);
186 }
187
188 for (i = META_CP; i < META_MAX; i++)
189 si->meta_count[i] = atomic_read(&sbi->meta_count[i]);
190
191 for (i = 0; i < NO_CHECK_TYPE; i++) {
192 si->dirty_seg[i] = 0;
193 si->full_seg[i] = 0;
194 si->valid_blks[i] = 0;
195 }
196
197 for (i = 0; i < MAIN_SEGS(sbi); i++) {
198 int blks = get_seg_entry(sbi, i)->valid_blocks;
199 int type = get_seg_entry(sbi, i)->type;
200
201 if (!blks)
202 continue;
203
204 if (blks == sbi->blocks_per_seg)
205 si->full_seg[type]++;
206 else
207 si->dirty_seg[type]++;
208 si->valid_blks[type] += blks;
209 }
210
211 for (i = 0; i < 2; i++) {
212 si->segment_count[i] = sbi->segment_count[i];
213 si->block_count[i] = sbi->block_count[i];
214 }
215
216 si->inplace_count = atomic_read(&sbi->inplace_count);
217}
218
219/*
220 * This function calculates memory footprint.
221 */
222static void update_mem_info(struct f2fs_sb_info *sbi)
223{
224 struct f2fs_stat_info *si = F2FS_STAT(sbi);
225 int i;
226
227 if (si->base_mem)
228 goto get_cache;
229
230 /* build stat */
231 si->base_mem = sizeof(struct f2fs_stat_info);
232
233 /* build superblock */
234 si->base_mem += sizeof(struct f2fs_sb_info) + sbi->sb->s_blocksize;
235 si->base_mem += 2 * sizeof(struct f2fs_inode_info);
236 si->base_mem += sizeof(*sbi->ckpt);
237
238 /* build sm */
239 si->base_mem += sizeof(struct f2fs_sm_info);
240
241 /* build sit */
242 si->base_mem += sizeof(struct sit_info);
243 si->base_mem += MAIN_SEGS(sbi) * sizeof(struct seg_entry);
244 si->base_mem += f2fs_bitmap_size(MAIN_SEGS(sbi));
245 si->base_mem += 2 * SIT_VBLOCK_MAP_SIZE * MAIN_SEGS(sbi);
246 si->base_mem += SIT_VBLOCK_MAP_SIZE * MAIN_SEGS(sbi);
247 si->base_mem += SIT_VBLOCK_MAP_SIZE;
248 if (__is_large_section(sbi))
249 si->base_mem += MAIN_SECS(sbi) * sizeof(struct sec_entry);
250 si->base_mem += __bitmap_size(sbi, SIT_BITMAP);
251
252 /* build free segmap */
253 si->base_mem += sizeof(struct free_segmap_info);
254 si->base_mem += f2fs_bitmap_size(MAIN_SEGS(sbi));
255 si->base_mem += f2fs_bitmap_size(MAIN_SECS(sbi));
256
257 /* build curseg */
258 si->base_mem += sizeof(struct curseg_info) * NR_CURSEG_TYPE;
259 si->base_mem += PAGE_SIZE * NR_CURSEG_TYPE;
260
261 /* build dirty segmap */
262 si->base_mem += sizeof(struct dirty_seglist_info);
263 si->base_mem += NR_DIRTY_TYPE * f2fs_bitmap_size(MAIN_SEGS(sbi));
264 si->base_mem += f2fs_bitmap_size(MAIN_SECS(sbi));
265
266 /* build nm */
267 si->base_mem += sizeof(struct f2fs_nm_info);
268 si->base_mem += __bitmap_size(sbi, NAT_BITMAP);
269 si->base_mem += (NM_I(sbi)->nat_bits_blocks << F2FS_BLKSIZE_BITS);
270 si->base_mem += NM_I(sbi)->nat_blocks *
271 f2fs_bitmap_size(NAT_ENTRY_PER_BLOCK);
272 si->base_mem += NM_I(sbi)->nat_blocks / 8;
273 si->base_mem += NM_I(sbi)->nat_blocks * sizeof(unsigned short);
274
275get_cache:
276 si->cache_mem = 0;
277
278 /* build gc */
279 if (sbi->gc_thread)
280 si->cache_mem += sizeof(struct f2fs_gc_kthread);
281
282 /* build merge flush thread */
283 if (SM_I(sbi)->fcc_info)
284 si->cache_mem += sizeof(struct flush_cmd_control);
285 if (SM_I(sbi)->dcc_info) {
286 si->cache_mem += sizeof(struct discard_cmd_control);
287 si->cache_mem += sizeof(struct discard_cmd) *
288 atomic_read(&SM_I(sbi)->dcc_info->discard_cmd_cnt);
289 }
290
291 /* free nids */
292 si->cache_mem += (NM_I(sbi)->nid_cnt[FREE_NID] +
293 NM_I(sbi)->nid_cnt[PREALLOC_NID]) *
294 sizeof(struct free_nid);
295 si->cache_mem += NM_I(sbi)->nat_cnt[TOTAL_NAT] *
296 sizeof(struct nat_entry);
297 si->cache_mem += NM_I(sbi)->nat_cnt[DIRTY_NAT] *
298 sizeof(struct nat_entry_set);
299 si->cache_mem += si->inmem_pages * sizeof(struct inmem_pages);
300 for (i = 0; i < MAX_INO_ENTRY; i++)
301 si->cache_mem += sbi->im[i].ino_num * sizeof(struct ino_entry);
302 si->cache_mem += atomic_read(&sbi->total_ext_tree) *
303 sizeof(struct extent_tree);
304 si->cache_mem += atomic_read(&sbi->total_ext_node) *
305 sizeof(struct extent_node);
306
307 si->page_mem = 0;
308 if (sbi->node_inode) {
309 unsigned npages = NODE_MAPPING(sbi)->nrpages;
310
311 si->page_mem += (unsigned long long)npages << PAGE_SHIFT;
312 }
313 if (sbi->meta_inode) {
314 unsigned npages = META_MAPPING(sbi)->nrpages;
315
316 si->page_mem += (unsigned long long)npages << PAGE_SHIFT;
317 }
318#ifdef CONFIG_F2FS_FS_COMPRESSION
319 if (sbi->compress_inode) {
320 unsigned npages = COMPRESS_MAPPING(sbi)->nrpages;
321 si->page_mem += (unsigned long long)npages << PAGE_SHIFT;
322 }
323#endif
324}
325
326static int stat_show(struct seq_file *s, void *v)
327{
328 struct f2fs_stat_info *si;
329 int i = 0;
330 int j;
331
332 mutex_lock(&f2fs_stat_mutex);
333 list_for_each_entry(si, &f2fs_stat_list, stat_list) {
334 update_general_status(si->sbi);
335
336 seq_printf(s, "\n=====[ partition info(%pg). #%d, %s, CP: %s]=====\n",
337 si->sbi->sb->s_bdev, i++,
338 f2fs_readonly(si->sbi->sb) ? "RO": "RW",
339 is_set_ckpt_flags(si->sbi, CP_DISABLED_FLAG) ?
340 "Disabled": (f2fs_cp_error(si->sbi) ? "Error": "Good"));
341 seq_printf(s, "[SB: 1] [CP: 2] [SIT: %d] [NAT: %d] ",
342 si->sit_area_segs, si->nat_area_segs);
343 seq_printf(s, "[SSA: %d] [MAIN: %d",
344 si->ssa_area_segs, si->main_area_segs);
345 seq_printf(s, "(OverProv:%d Resv:%d)]\n\n",
346 si->overp_segs, si->rsvd_segs);
347 seq_printf(s, "Current Time Sec: %llu / Mounted Time Sec: %llu\n\n",
348 ktime_get_boottime_seconds(),
349 SIT_I(si->sbi)->mounted_time);
350 if (test_opt(si->sbi, DISCARD))
351 seq_printf(s, "Utilization: %u%% (%u valid blocks, %u discard blocks)\n",
352 si->utilization, si->valid_count, si->discard_blks);
353 else
354 seq_printf(s, "Utilization: %u%% (%u valid blocks)\n",
355 si->utilization, si->valid_count);
356
357 seq_printf(s, " - Node: %u (Inode: %u, ",
358 si->valid_node_count, si->valid_inode_count);
359 seq_printf(s, "Other: %u)\n - Data: %u\n",
360 si->valid_node_count - si->valid_inode_count,
361 si->valid_count - si->valid_node_count);
362 seq_printf(s, " - Inline_xattr Inode: %u\n",
363 si->inline_xattr);
364 seq_printf(s, " - Inline_data Inode: %u\n",
365 si->inline_inode);
366 seq_printf(s, " - Inline_dentry Inode: %u\n",
367 si->inline_dir);
368 seq_printf(s, " - Compressed Inode: %u, Blocks: %llu\n",
369 si->compr_inode, si->compr_blocks);
370 seq_printf(s, " - Orphan/Append/Update Inode: %u, %u, %u\n",
371 si->orphans, si->append, si->update);
372 seq_printf(s, "\nMain area: %d segs, %d secs %d zones\n",
373 si->main_area_segs, si->main_area_sections,
374 si->main_area_zones);
375 seq_printf(s, " TYPE %8s %8s %8s %10s %10s %10s\n",
376 "segno", "secno", "zoneno", "dirty_seg", "full_seg", "valid_blk");
377 seq_printf(s, " - COLD data: %8d %8d %8d %10u %10u %10u\n",
378 si->curseg[CURSEG_COLD_DATA],
379 si->cursec[CURSEG_COLD_DATA],
380 si->curzone[CURSEG_COLD_DATA],
381 si->dirty_seg[CURSEG_COLD_DATA],
382 si->full_seg[CURSEG_COLD_DATA],
383 si->valid_blks[CURSEG_COLD_DATA]);
384 seq_printf(s, " - WARM data: %8d %8d %8d %10u %10u %10u\n",
385 si->curseg[CURSEG_WARM_DATA],
386 si->cursec[CURSEG_WARM_DATA],
387 si->curzone[CURSEG_WARM_DATA],
388 si->dirty_seg[CURSEG_WARM_DATA],
389 si->full_seg[CURSEG_WARM_DATA],
390 si->valid_blks[CURSEG_WARM_DATA]);
391 seq_printf(s, " - HOT data: %8d %8d %8d %10u %10u %10u\n",
392 si->curseg[CURSEG_HOT_DATA],
393 si->cursec[CURSEG_HOT_DATA],
394 si->curzone[CURSEG_HOT_DATA],
395 si->dirty_seg[CURSEG_HOT_DATA],
396 si->full_seg[CURSEG_HOT_DATA],
397 si->valid_blks[CURSEG_HOT_DATA]);
398 seq_printf(s, " - Dir dnode: %8d %8d %8d %10u %10u %10u\n",
399 si->curseg[CURSEG_HOT_NODE],
400 si->cursec[CURSEG_HOT_NODE],
401 si->curzone[CURSEG_HOT_NODE],
402 si->dirty_seg[CURSEG_HOT_NODE],
403 si->full_seg[CURSEG_HOT_NODE],
404 si->valid_blks[CURSEG_HOT_NODE]);
405 seq_printf(s, " - File dnode: %8d %8d %8d %10u %10u %10u\n",
406 si->curseg[CURSEG_WARM_NODE],
407 si->cursec[CURSEG_WARM_NODE],
408 si->curzone[CURSEG_WARM_NODE],
409 si->dirty_seg[CURSEG_WARM_NODE],
410 si->full_seg[CURSEG_WARM_NODE],
411 si->valid_blks[CURSEG_WARM_NODE]);
412 seq_printf(s, " - Indir nodes: %8d %8d %8d %10u %10u %10u\n",
413 si->curseg[CURSEG_COLD_NODE],
414 si->cursec[CURSEG_COLD_NODE],
415 si->curzone[CURSEG_COLD_NODE],
416 si->dirty_seg[CURSEG_COLD_NODE],
417 si->full_seg[CURSEG_COLD_NODE],
418 si->valid_blks[CURSEG_COLD_NODE]);
419 seq_printf(s, " - Pinned file: %8d %8d %8d\n",
420 si->curseg[CURSEG_COLD_DATA_PINNED],
421 si->cursec[CURSEG_COLD_DATA_PINNED],
422 si->curzone[CURSEG_COLD_DATA_PINNED]);
423 seq_printf(s, " - ATGC data: %8d %8d %8d\n",
424 si->curseg[CURSEG_ALL_DATA_ATGC],
425 si->cursec[CURSEG_ALL_DATA_ATGC],
426 si->curzone[CURSEG_ALL_DATA_ATGC]);
427 seq_printf(s, "\n - Valid: %d\n - Dirty: %d\n",
428 si->main_area_segs - si->dirty_count -
429 si->prefree_count - si->free_segs,
430 si->dirty_count);
431 seq_printf(s, " - Prefree: %d\n - Free: %d (%d)\n\n",
432 si->prefree_count, si->free_segs, si->free_secs);
433 seq_printf(s, "CP calls: %d (BG: %d)\n",
434 si->cp_count, si->bg_cp_count);
435 seq_printf(s, " - cp blocks : %u\n", si->meta_count[META_CP]);
436 seq_printf(s, " - sit blocks : %u\n",
437 si->meta_count[META_SIT]);
438 seq_printf(s, " - nat blocks : %u\n",
439 si->meta_count[META_NAT]);
440 seq_printf(s, " - ssa blocks : %u\n",
441 si->meta_count[META_SSA]);
442 seq_printf(s, "CP merge (Queued: %4d, Issued: %4d, Total: %4d, "
443 "Cur time: %4d(ms), Peak time: %4d(ms))\n",
444 si->nr_queued_ckpt, si->nr_issued_ckpt,
445 si->nr_total_ckpt, si->cur_ckpt_time,
446 si->peak_ckpt_time);
447 seq_printf(s, "GC calls: %d (BG: %d)\n",
448 si->call_count, si->bg_gc);
449 seq_printf(s, " - data segments : %d (%d)\n",
450 si->data_segs, si->bg_data_segs);
451 seq_printf(s, " - node segments : %d (%d)\n",
452 si->node_segs, si->bg_node_segs);
453 seq_printf(s, "Try to move %d blocks (BG: %d)\n", si->tot_blks,
454 si->bg_data_blks + si->bg_node_blks);
455 seq_printf(s, " - data blocks : %d (%d)\n", si->data_blks,
456 si->bg_data_blks);
457 seq_printf(s, " - node blocks : %d (%d)\n", si->node_blks,
458 si->bg_node_blks);
459 seq_printf(s, "Skipped : atomic write %llu (%llu)\n",
460 si->skipped_atomic_files[BG_GC] +
461 si->skipped_atomic_files[FG_GC],
462 si->skipped_atomic_files[BG_GC]);
463 seq_printf(s, "BG skip : IO: %u, Other: %u\n",
464 si->io_skip_bggc, si->other_skip_bggc);
465 seq_puts(s, "\nExtent Cache:\n");
466 seq_printf(s, " - Hit Count: L1-1:%llu L1-2:%llu L2:%llu\n",
467 si->hit_largest, si->hit_cached,
468 si->hit_rbtree);
469 seq_printf(s, " - Hit Ratio: %llu%% (%llu / %llu)\n",
470 !si->total_ext ? 0 :
471 div64_u64(si->hit_total * 100, si->total_ext),
472 si->hit_total, si->total_ext);
473 seq_printf(s, " - Inner Struct Count: tree: %d(%d), node: %d\n",
474 si->ext_tree, si->zombie_tree, si->ext_node);
475 seq_puts(s, "\nBalancing F2FS Async:\n");
476 seq_printf(s, " - DIO (R: %4d, W: %4d)\n",
477 si->nr_dio_read, si->nr_dio_write);
478 seq_printf(s, " - IO_R (Data: %4d, Node: %4d, Meta: %4d\n",
479 si->nr_rd_data, si->nr_rd_node, si->nr_rd_meta);
480 seq_printf(s, " - IO_W (CP: %4d, Data: %4d, Flush: (%4d %4d %4d), "
481 "Discard: (%4d %4d)) cmd: %4d undiscard:%4u\n",
482 si->nr_wb_cp_data, si->nr_wb_data,
483 si->nr_flushing, si->nr_flushed,
484 si->flush_list_empty,
485 si->nr_discarding, si->nr_discarded,
486 si->nr_discard_cmd, si->undiscard_blks);
487 seq_printf(s, " - inmem: %4d, atomic IO: %4d (Max. %4d), "
488 "volatile IO: %4d (Max. %4d)\n",
489 si->inmem_pages, si->aw_cnt, si->max_aw_cnt,
490 si->vw_cnt, si->max_vw_cnt);
491 seq_printf(s, " - compress: %4d, hit:%8d\n", si->compress_pages, si->compress_page_hit);
492 seq_printf(s, " - nodes: %4d in %4d\n",
493 si->ndirty_node, si->node_pages);
494 seq_printf(s, " - dents: %4d in dirs:%4d (%4d)\n",
495 si->ndirty_dent, si->ndirty_dirs, si->ndirty_all);
496 seq_printf(s, " - datas: %4d in files:%4d\n",
497 si->ndirty_data, si->ndirty_files);
498 seq_printf(s, " - quota datas: %4d in quota files:%4d\n",
499 si->ndirty_qdata, si->nquota_files);
500 seq_printf(s, " - meta: %4d in %4d\n",
501 si->ndirty_meta, si->meta_pages);
502 seq_printf(s, " - imeta: %4d\n",
503 si->ndirty_imeta);
504 seq_printf(s, " - NATs: %9d/%9d\n - SITs: %9d/%9d\n",
505 si->dirty_nats, si->nats, si->dirty_sits, si->sits);
506 seq_printf(s, " - free_nids: %9d/%9d\n - alloc_nids: %9d\n",
507 si->free_nids, si->avail_nids, si->alloc_nids);
508 seq_puts(s, "\nDistribution of User Blocks:");
509 seq_puts(s, " [ valid | invalid | free ]\n");
510 seq_puts(s, " [");
511
512 for (j = 0; j < si->util_valid; j++)
513 seq_putc(s, '-');
514 seq_putc(s, '|');
515
516 for (j = 0; j < si->util_invalid; j++)
517 seq_putc(s, '-');
518 seq_putc(s, '|');
519
520 for (j = 0; j < si->util_free; j++)
521 seq_putc(s, '-');
522 seq_puts(s, "]\n\n");
523 seq_printf(s, "IPU: %u blocks\n", si->inplace_count);
524 seq_printf(s, "SSR: %u blocks in %u segments\n",
525 si->block_count[SSR], si->segment_count[SSR]);
526 seq_printf(s, "LFS: %u blocks in %u segments\n",
527 si->block_count[LFS], si->segment_count[LFS]);
528
529 /* segment usage info */
530 f2fs_update_sit_info(si->sbi);
531 seq_printf(s, "\nBDF: %u, avg. vblocks: %u\n",
532 si->bimodal, si->avg_vblocks);
533
534 /* memory footprint */
535 update_mem_info(si->sbi);
536 seq_printf(s, "\nMemory: %llu KB\n",
537 (si->base_mem + si->cache_mem + si->page_mem) >> 10);
538 seq_printf(s, " - static: %llu KB\n",
539 si->base_mem >> 10);
540 seq_printf(s, " - cached: %llu KB\n",
541 si->cache_mem >> 10);
542 seq_printf(s, " - paged : %llu KB\n",
543 si->page_mem >> 10);
544 }
545 mutex_unlock(&f2fs_stat_mutex);
546 return 0;
547}
548
549DEFINE_SHOW_ATTRIBUTE(stat);
550#endif
551
552int f2fs_build_stats(struct f2fs_sb_info *sbi)
553{
554 struct f2fs_super_block *raw_super = F2FS_RAW_SUPER(sbi);
555 struct f2fs_stat_info *si;
556 int i;
557
558 si = f2fs_kzalloc(sbi, sizeof(struct f2fs_stat_info), GFP_KERNEL);
559 if (!si)
560 return -ENOMEM;
561
562 si->all_area_segs = le32_to_cpu(raw_super->segment_count);
563 si->sit_area_segs = le32_to_cpu(raw_super->segment_count_sit);
564 si->nat_area_segs = le32_to_cpu(raw_super->segment_count_nat);
565 si->ssa_area_segs = le32_to_cpu(raw_super->segment_count_ssa);
566 si->main_area_segs = le32_to_cpu(raw_super->segment_count_main);
567 si->main_area_sections = le32_to_cpu(raw_super->section_count);
568 si->main_area_zones = si->main_area_sections /
569 le32_to_cpu(raw_super->secs_per_zone);
570 si->sbi = sbi;
571 sbi->stat_info = si;
572
573 atomic64_set(&sbi->total_hit_ext, 0);
574 atomic64_set(&sbi->read_hit_rbtree, 0);
575 atomic64_set(&sbi->read_hit_largest, 0);
576 atomic64_set(&sbi->read_hit_cached, 0);
577
578 atomic_set(&sbi->inline_xattr, 0);
579 atomic_set(&sbi->inline_inode, 0);
580 atomic_set(&sbi->inline_dir, 0);
581 atomic_set(&sbi->compr_inode, 0);
582 atomic64_set(&sbi->compr_blocks, 0);
583 atomic_set(&sbi->inplace_count, 0);
584 for (i = META_CP; i < META_MAX; i++)
585 atomic_set(&sbi->meta_count[i], 0);
586
587 atomic_set(&sbi->vw_cnt, 0);
588 atomic_set(&sbi->max_aw_cnt, 0);
589 atomic_set(&sbi->max_vw_cnt, 0);
590
591 mutex_lock(&f2fs_stat_mutex);
592 list_add_tail(&si->stat_list, &f2fs_stat_list);
593 mutex_unlock(&f2fs_stat_mutex);
594
595 return 0;
596}
597
598void f2fs_destroy_stats(struct f2fs_sb_info *sbi)
599{
600 struct f2fs_stat_info *si = F2FS_STAT(sbi);
601
602 mutex_lock(&f2fs_stat_mutex);
603 list_del(&si->stat_list);
604 mutex_unlock(&f2fs_stat_mutex);
605
606 kfree(si);
607}
608
609void __init f2fs_create_root_stats(void)
610{
611#ifdef CONFIG_DEBUG_FS
612 f2fs_debugfs_root = debugfs_create_dir("f2fs", NULL);
613
614 debugfs_create_file("status", S_IRUGO, f2fs_debugfs_root, NULL,
615 &stat_fops);
616#endif
617}
618
619void f2fs_destroy_root_stats(void)
620{
621#ifdef CONFIG_DEBUG_FS
622 debugfs_remove_recursive(f2fs_debugfs_root);
623 f2fs_debugfs_root = NULL;
624#endif
625}