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1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * V9FS FID Management
4  *
5  *  Copyright (C) 2007 by Latchesar Ionkov <lucho@ionkov.net>
6  *  Copyright (C) 2005, 2006 by Eric Van Hensbergen <ericvh@gmail.com>
7  */
8 
9 #include <linux/module.h>
10 #include <linux/errno.h>
11 #include <linux/fs.h>
12 #include <linux/slab.h>
13 #include <linux/sched.h>
14 #include <linux/idr.h>
15 #include <net/9p/9p.h>
16 #include <net/9p/client.h>
17 
18 #include "v9fs.h"
19 #include "v9fs_vfs.h"
20 #include "fid.h"
21 
__add_fid(struct dentry * dentry,struct p9_fid * fid)22 static inline void __add_fid(struct dentry *dentry, struct p9_fid *fid)
23 {
24 	hlist_add_head(&fid->dlist, (struct hlist_head *)&dentry->d_fsdata);
25 }
26 
27 
28 /**
29  * v9fs_fid_add - add a fid to a dentry
30  * @dentry: dentry that the fid is being added to
31  * @fid: fid to add
32  *
33  */
v9fs_fid_add(struct dentry * dentry,struct p9_fid * fid)34 void v9fs_fid_add(struct dentry *dentry, struct p9_fid *fid)
35 {
36 	spin_lock(&dentry->d_lock);
37 	__add_fid(dentry, fid);
38 	spin_unlock(&dentry->d_lock);
39 }
40 
41 /**
42  * v9fs_fid_find_inode - search for an open fid off of the inode list
43  * @inode: return a fid pointing to a specific inode
44  * @uid: return a fid belonging to the specified user
45  *
46  */
47 
v9fs_fid_find_inode(struct inode * inode,kuid_t uid)48 static struct p9_fid *v9fs_fid_find_inode(struct inode *inode, kuid_t uid)
49 {
50 	struct hlist_head *h;
51 	struct p9_fid *fid, *ret = NULL;
52 
53 	p9_debug(P9_DEBUG_VFS, " inode: %p\n", inode);
54 
55 	spin_lock(&inode->i_lock);
56 	h = (struct hlist_head *)&inode->i_private;
57 	hlist_for_each_entry(fid, h, ilist) {
58 		if (uid_eq(fid->uid, uid)) {
59 			refcount_inc(&fid->count);
60 			ret = fid;
61 			break;
62 		}
63 	}
64 	spin_unlock(&inode->i_lock);
65 	return ret;
66 }
67 
68 /**
69  * v9fs_open_fid_add - add an open fid to an inode
70  * @inode: inode that the fid is being added to
71  * @fid: fid to add
72  *
73  */
74 
v9fs_open_fid_add(struct inode * inode,struct p9_fid * fid)75 void v9fs_open_fid_add(struct inode *inode, struct p9_fid *fid)
76 {
77 	spin_lock(&inode->i_lock);
78 	hlist_add_head(&fid->ilist, (struct hlist_head *)&inode->i_private);
79 	spin_unlock(&inode->i_lock);
80 }
81 
82 
83 /**
84  * v9fs_fid_find - retrieve a fid that belongs to the specified uid
85  * @dentry: dentry to look for fid in
86  * @uid: return fid that belongs to the specified user
87  * @any: if non-zero, return any fid associated with the dentry
88  *
89  */
90 
v9fs_fid_find(struct dentry * dentry,kuid_t uid,int any)91 static struct p9_fid *v9fs_fid_find(struct dentry *dentry, kuid_t uid, int any)
92 {
93 	struct p9_fid *fid, *ret;
94 
95 	p9_debug(P9_DEBUG_VFS, " dentry: %pd (%p) uid %d any %d\n",
96 		 dentry, dentry, from_kuid(&init_user_ns, uid),
97 		 any);
98 	ret = NULL;
99 	/* we'll recheck under lock if there's anything to look in */
100 	if (dentry->d_fsdata) {
101 		struct hlist_head *h = (struct hlist_head *)&dentry->d_fsdata;
102 		spin_lock(&dentry->d_lock);
103 		hlist_for_each_entry(fid, h, dlist) {
104 			if (any || uid_eq(fid->uid, uid)) {
105 				ret = fid;
106 				refcount_inc(&ret->count);
107 				break;
108 			}
109 		}
110 		spin_unlock(&dentry->d_lock);
111 	} else {
112 		if (dentry->d_inode)
113 			ret = v9fs_fid_find_inode(dentry->d_inode, uid);
114 	}
115 
116 	return ret;
117 }
118 
119 /*
120  * We need to hold v9ses->rename_sem as long as we hold references
121  * to returned path array. Array element contain pointers to
122  * dentry names.
123  */
build_path_from_dentry(struct v9fs_session_info * v9ses,struct dentry * dentry,const unsigned char *** names)124 static int build_path_from_dentry(struct v9fs_session_info *v9ses,
125 				  struct dentry *dentry, const unsigned char ***names)
126 {
127 	int n = 0, i;
128 	const unsigned char **wnames;
129 	struct dentry *ds;
130 
131 	for (ds = dentry; !IS_ROOT(ds); ds = ds->d_parent)
132 		n++;
133 
134 	wnames = kmalloc_array(n, sizeof(char *), GFP_KERNEL);
135 	if (!wnames)
136 		goto err_out;
137 
138 	for (ds = dentry, i = (n-1); i >= 0; i--, ds = ds->d_parent)
139 		wnames[i] = ds->d_name.name;
140 
141 	*names = wnames;
142 	return n;
143 err_out:
144 	return -ENOMEM;
145 }
146 
v9fs_fid_lookup_with_uid(struct dentry * dentry,kuid_t uid,int any)147 static struct p9_fid *v9fs_fid_lookup_with_uid(struct dentry *dentry,
148 					       kuid_t uid, int any)
149 {
150 	struct dentry *ds;
151 	const unsigned char **wnames, *uname;
152 	int i, n, l, clone, access;
153 	struct v9fs_session_info *v9ses;
154 	struct p9_fid *fid, *old_fid;
155 
156 	v9ses = v9fs_dentry2v9ses(dentry);
157 	access = v9ses->flags & V9FS_ACCESS_MASK;
158 	fid = v9fs_fid_find(dentry, uid, any);
159 	if (fid)
160 		return fid;
161 	/*
162 	 * we don't have a matching fid. To do a TWALK we need
163 	 * parent fid. We need to prevent rename when we want to
164 	 * look at the parent.
165 	 */
166 	down_read(&v9ses->rename_sem);
167 	ds = dentry->d_parent;
168 	fid = v9fs_fid_find(ds, uid, any);
169 	if (fid) {
170 		/* Found the parent fid do a lookup with that */
171 		struct p9_fid *ofid = fid;
172 
173 		fid = p9_client_walk(ofid, 1, &dentry->d_name.name, 1);
174 		p9_client_clunk(ofid);
175 		goto fid_out;
176 	}
177 	up_read(&v9ses->rename_sem);
178 
179 	/* start from the root and try to do a lookup */
180 	fid = v9fs_fid_find(dentry->d_sb->s_root, uid, any);
181 	if (!fid) {
182 		/* the user is not attached to the fs yet */
183 		if (access == V9FS_ACCESS_SINGLE)
184 			return ERR_PTR(-EPERM);
185 
186 		if (v9fs_proto_dotu(v9ses) || v9fs_proto_dotl(v9ses))
187 				uname = NULL;
188 		else
189 			uname = v9ses->uname;
190 
191 		fid = p9_client_attach(v9ses->clnt, NULL, uname, uid,
192 				       v9ses->aname);
193 		if (IS_ERR(fid))
194 			return fid;
195 
196 		refcount_inc(&fid->count);
197 		v9fs_fid_add(dentry->d_sb->s_root, fid);
198 	}
199 	/* If we are root ourself just return that */
200 	if (dentry->d_sb->s_root == dentry)
201 		return fid;
202 	/*
203 	 * Do a multipath walk with attached root.
204 	 * When walking parent we need to make sure we
205 	 * don't have a parallel rename happening
206 	 */
207 	down_read(&v9ses->rename_sem);
208 	n  = build_path_from_dentry(v9ses, dentry, &wnames);
209 	if (n < 0) {
210 		fid = ERR_PTR(n);
211 		goto err_out;
212 	}
213 	old_fid = fid;
214 	clone = 1;
215 	i = 0;
216 	while (i < n) {
217 		l = min(n - i, P9_MAXWELEM);
218 		/*
219 		 * We need to hold rename lock when doing a multipath
220 		 * walk to ensure none of the patch component change
221 		 */
222 		fid = p9_client_walk(fid, l, &wnames[i], clone);
223 		/* non-cloning walk will return the same fid */
224 		if (fid != old_fid) {
225 			p9_client_clunk(old_fid);
226 			old_fid = fid;
227 		}
228 		if (IS_ERR(fid)) {
229 			kfree(wnames);
230 			goto err_out;
231 		}
232 		i += l;
233 		clone = 0;
234 	}
235 	kfree(wnames);
236 fid_out:
237 	if (!IS_ERR(fid)) {
238 		spin_lock(&dentry->d_lock);
239 		if (d_unhashed(dentry)) {
240 			spin_unlock(&dentry->d_lock);
241 			p9_client_clunk(fid);
242 			fid = ERR_PTR(-ENOENT);
243 		} else {
244 			__add_fid(dentry, fid);
245 			refcount_inc(&fid->count);
246 			spin_unlock(&dentry->d_lock);
247 		}
248 	}
249 err_out:
250 	up_read(&v9ses->rename_sem);
251 	return fid;
252 }
253 
254 /**
255  * v9fs_fid_lookup - lookup for a fid, try to walk if not found
256  * @dentry: dentry to look for fid in
257  *
258  * Look for a fid in the specified dentry for the current user.
259  * If no fid is found, try to create one walking from a fid from the parent
260  * dentry (if it has one), or the root dentry. If the user haven't accessed
261  * the fs yet, attach now and walk from the root.
262  */
263 
v9fs_fid_lookup(struct dentry * dentry)264 struct p9_fid *v9fs_fid_lookup(struct dentry *dentry)
265 {
266 	kuid_t uid;
267 	int  any, access;
268 	struct v9fs_session_info *v9ses;
269 
270 	v9ses = v9fs_dentry2v9ses(dentry);
271 	access = v9ses->flags & V9FS_ACCESS_MASK;
272 	switch (access) {
273 	case V9FS_ACCESS_SINGLE:
274 	case V9FS_ACCESS_USER:
275 	case V9FS_ACCESS_CLIENT:
276 		uid = current_fsuid();
277 		any = 0;
278 		break;
279 
280 	case V9FS_ACCESS_ANY:
281 		uid = v9ses->uid;
282 		any = 1;
283 		break;
284 
285 	default:
286 		uid = INVALID_UID;
287 		any = 0;
288 		break;
289 	}
290 	return v9fs_fid_lookup_with_uid(dentry, uid, any);
291 }
292 
v9fs_writeback_fid(struct dentry * dentry)293 struct p9_fid *v9fs_writeback_fid(struct dentry *dentry)
294 {
295 	int err;
296 	struct p9_fid *fid, *ofid;
297 
298 	ofid = v9fs_fid_lookup_with_uid(dentry, GLOBAL_ROOT_UID, 0);
299 	fid = clone_fid(ofid);
300 	if (IS_ERR(fid))
301 		goto error_out;
302 	p9_client_clunk(ofid);
303 	/*
304 	 * writeback fid will only be used to write back the
305 	 * dirty pages. We always request for the open fid in read-write
306 	 * mode so that a partial page write which result in page
307 	 * read can work.
308 	 */
309 	err = p9_client_open(fid, O_RDWR);
310 	if (err < 0) {
311 		p9_client_clunk(fid);
312 		fid = ERR_PTR(err);
313 		goto error_out;
314 	}
315 error_out:
316 	return fid;
317 }
318