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1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * fs/f2fs/verity.c: fs-verity support for f2fs
4  *
5  * Copyright 2019 Google LLC
6  */
7 
8 /*
9  * Implementation of fsverity_operations for f2fs.
10  *
11  * Like ext4, f2fs stores the verity metadata (Merkle tree and
12  * fsverity_descriptor) past the end of the file, starting at the first 64K
13  * boundary beyond i_size.  This approach works because (a) verity files are
14  * readonly, and (b) pages fully beyond i_size aren't visible to userspace but
15  * can be read/written internally by f2fs with only some relatively small
16  * changes to f2fs.  Extended attributes cannot be used because (a) f2fs limits
17  * the total size of an inode's xattr entries to 4096 bytes, which wouldn't be
18  * enough for even a single Merkle tree block, and (b) f2fs encryption doesn't
19  * encrypt xattrs, yet the verity metadata *must* be encrypted when the file is
20  * because it contains hashes of the plaintext data.
21  *
22  * Using a 64K boundary rather than a 4K one keeps things ready for
23  * architectures with 64K pages, and it doesn't necessarily waste space on-disk
24  * since there can be a hole between i_size and the start of the Merkle tree.
25  */
26 
27 #include <linux/f2fs_fs.h>
28 
29 #include "f2fs.h"
30 #include "xattr.h"
31 
32 #define F2FS_VERIFY_VER	(1)
33 
f2fs_verity_metadata_pos(const struct inode * inode)34 static inline loff_t f2fs_verity_metadata_pos(const struct inode *inode)
35 {
36 	return round_up(inode->i_size, 65536);
37 }
38 
39 /*
40  * Read some verity metadata from the inode.  __vfs_read() can't be used because
41  * we need to read beyond i_size.
42  */
pagecache_read(struct inode * inode,void * buf,size_t count,loff_t pos)43 static int pagecache_read(struct inode *inode, void *buf, size_t count,
44 			  loff_t pos)
45 {
46 	while (count) {
47 		size_t n = min_t(size_t, count,
48 				 PAGE_SIZE - offset_in_page(pos));
49 		struct page *page;
50 
51 		page = read_mapping_page(inode->i_mapping, pos >> PAGE_SHIFT,
52 					 NULL);
53 		if (IS_ERR(page))
54 			return PTR_ERR(page);
55 
56 		memcpy_from_page(buf, page, offset_in_page(pos), n);
57 
58 		put_page(page);
59 
60 		buf += n;
61 		pos += n;
62 		count -= n;
63 	}
64 	return 0;
65 }
66 
67 /*
68  * Write some verity metadata to the inode for FS_IOC_ENABLE_VERITY.
69  * kernel_write() can't be used because the file descriptor is readonly.
70  */
pagecache_write(struct inode * inode,const void * buf,size_t count,loff_t pos)71 static int pagecache_write(struct inode *inode, const void *buf, size_t count,
72 			   loff_t pos)
73 {
74 	if (pos + count > inode->i_sb->s_maxbytes)
75 		return -EFBIG;
76 
77 	while (count) {
78 		size_t n = min_t(size_t, count,
79 				 PAGE_SIZE - offset_in_page(pos));
80 		struct page *page;
81 		void *fsdata = NULL;
82 		int res;
83 
84 		res = pagecache_write_begin(NULL, inode->i_mapping, pos, n, 0,
85 					    &page, &fsdata);
86 		if (res)
87 			return res;
88 
89 		memcpy_to_page(page, offset_in_page(pos), buf, n);
90 
91 		res = pagecache_write_end(NULL, inode->i_mapping, pos, n, n,
92 					  page, fsdata);
93 		if (res < 0)
94 			return res;
95 		if (res != n)
96 			return -EIO;
97 
98 		buf += n;
99 		pos += n;
100 		count -= n;
101 	}
102 	return 0;
103 }
104 
105 /*
106  * Format of f2fs verity xattr.  This points to the location of the verity
107  * descriptor within the file data rather than containing it directly because
108  * the verity descriptor *must* be encrypted when f2fs encryption is used.  But,
109  * f2fs encryption does not encrypt xattrs.
110  */
111 struct fsverity_descriptor_location {
112 	__le32 version;
113 	__le32 size;
114 	__le64 pos;
115 };
116 
f2fs_begin_enable_verity(struct file * filp)117 static int f2fs_begin_enable_verity(struct file *filp)
118 {
119 	struct inode *inode = file_inode(filp);
120 	int err;
121 
122 	if (f2fs_verity_in_progress(inode))
123 		return -EBUSY;
124 
125 	if (f2fs_is_atomic_file(inode) || f2fs_is_volatile_file(inode))
126 		return -EOPNOTSUPP;
127 
128 	/*
129 	 * Since the file was opened readonly, we have to initialize the quotas
130 	 * here and not rely on ->open() doing it.  This must be done before
131 	 * evicting the inline data.
132 	 */
133 	err = dquot_initialize(inode);
134 	if (err)
135 		return err;
136 
137 	err = f2fs_convert_inline_inode(inode);
138 	if (err)
139 		return err;
140 
141 	set_inode_flag(inode, FI_VERITY_IN_PROGRESS);
142 	return 0;
143 }
144 
f2fs_end_enable_verity(struct file * filp,const void * desc,size_t desc_size,u64 merkle_tree_size)145 static int f2fs_end_enable_verity(struct file *filp, const void *desc,
146 				  size_t desc_size, u64 merkle_tree_size)
147 {
148 	struct inode *inode = file_inode(filp);
149 	struct f2fs_sb_info *sbi = F2FS_I_SB(inode);
150 	u64 desc_pos = f2fs_verity_metadata_pos(inode) + merkle_tree_size;
151 	struct fsverity_descriptor_location dloc = {
152 		.version = cpu_to_le32(F2FS_VERIFY_VER),
153 		.size = cpu_to_le32(desc_size),
154 		.pos = cpu_to_le64(desc_pos),
155 	};
156 	int err = 0, err2 = 0;
157 
158 	/*
159 	 * If an error already occurred (which fs/verity/ signals by passing
160 	 * desc == NULL), then only clean-up is needed.
161 	 */
162 	if (desc == NULL)
163 		goto cleanup;
164 
165 	/* Append the verity descriptor. */
166 	err = pagecache_write(inode, desc, desc_size, desc_pos);
167 	if (err)
168 		goto cleanup;
169 
170 	/*
171 	 * Write all pages (both data and verity metadata).  Note that this must
172 	 * happen before clearing FI_VERITY_IN_PROGRESS; otherwise pages beyond
173 	 * i_size won't be written properly.  For crash consistency, this also
174 	 * must happen before the verity inode flag gets persisted.
175 	 */
176 	err = filemap_write_and_wait(inode->i_mapping);
177 	if (err)
178 		goto cleanup;
179 
180 	/* Set the verity xattr. */
181 	err = f2fs_setxattr(inode, F2FS_XATTR_INDEX_VERITY,
182 			    F2FS_XATTR_NAME_VERITY, &dloc, sizeof(dloc),
183 			    NULL, XATTR_CREATE);
184 	if (err)
185 		goto cleanup;
186 
187 	/* Finally, set the verity inode flag. */
188 	file_set_verity(inode);
189 	f2fs_set_inode_flags(inode);
190 	f2fs_mark_inode_dirty_sync(inode, true);
191 
192 	clear_inode_flag(inode, FI_VERITY_IN_PROGRESS);
193 	return 0;
194 
195 cleanup:
196 	/*
197 	 * Verity failed to be enabled, so clean up by truncating any verity
198 	 * metadata that was written beyond i_size (both from cache and from
199 	 * disk) and clearing FI_VERITY_IN_PROGRESS.
200 	 *
201 	 * Taking i_gc_rwsem[WRITE] is needed to stop f2fs garbage collection
202 	 * from re-instantiating cached pages we are truncating (since unlike
203 	 * normal file accesses, garbage collection isn't limited by i_size).
204 	 */
205 	down_write(&F2FS_I(inode)->i_gc_rwsem[WRITE]);
206 	truncate_inode_pages(inode->i_mapping, inode->i_size);
207 	err2 = f2fs_truncate(inode);
208 	if (err2) {
209 		f2fs_err(sbi, "Truncating verity metadata failed (errno=%d)",
210 			 err2);
211 		set_sbi_flag(sbi, SBI_NEED_FSCK);
212 	}
213 	up_write(&F2FS_I(inode)->i_gc_rwsem[WRITE]);
214 	clear_inode_flag(inode, FI_VERITY_IN_PROGRESS);
215 	return err ?: err2;
216 }
217 
f2fs_get_verity_descriptor(struct inode * inode,void * buf,size_t buf_size)218 static int f2fs_get_verity_descriptor(struct inode *inode, void *buf,
219 				      size_t buf_size)
220 {
221 	struct fsverity_descriptor_location dloc;
222 	int res;
223 	u32 size;
224 	u64 pos;
225 
226 	/* Get the descriptor location */
227 	res = f2fs_getxattr(inode, F2FS_XATTR_INDEX_VERITY,
228 			    F2FS_XATTR_NAME_VERITY, &dloc, sizeof(dloc), NULL);
229 	if (res < 0 && res != -ERANGE)
230 		return res;
231 	if (res != sizeof(dloc) || dloc.version != cpu_to_le32(F2FS_VERIFY_VER)) {
232 		f2fs_warn(F2FS_I_SB(inode), "unknown verity xattr format");
233 		return -EINVAL;
234 	}
235 	size = le32_to_cpu(dloc.size);
236 	pos = le64_to_cpu(dloc.pos);
237 
238 	/* Get the descriptor */
239 	if (pos + size < pos || pos + size > inode->i_sb->s_maxbytes ||
240 	    pos < f2fs_verity_metadata_pos(inode) || size > INT_MAX) {
241 		f2fs_warn(F2FS_I_SB(inode), "invalid verity xattr");
242 		return -EFSCORRUPTED;
243 	}
244 	if (buf_size) {
245 		if (size > buf_size)
246 			return -ERANGE;
247 		res = pagecache_read(inode, buf, size, pos);
248 		if (res)
249 			return res;
250 	}
251 	return size;
252 }
253 
f2fs_read_merkle_tree_page(struct inode * inode,pgoff_t index,unsigned long num_ra_pages)254 static struct page *f2fs_read_merkle_tree_page(struct inode *inode,
255 					       pgoff_t index,
256 					       unsigned long num_ra_pages)
257 {
258 	struct page *page;
259 
260 	index += f2fs_verity_metadata_pos(inode) >> PAGE_SHIFT;
261 
262 	page = find_get_page_flags(inode->i_mapping, index, FGP_ACCESSED);
263 	if (!page || !PageUptodate(page)) {
264 		DEFINE_READAHEAD(ractl, NULL, inode->i_mapping, index);
265 
266 		if (page)
267 			put_page(page);
268 		else if (num_ra_pages > 1)
269 			page_cache_ra_unbounded(&ractl, num_ra_pages, 0);
270 		page = read_mapping_page(inode->i_mapping, index, NULL);
271 	}
272 	return page;
273 }
274 
f2fs_write_merkle_tree_block(struct inode * inode,const void * buf,u64 index,int log_blocksize)275 static int f2fs_write_merkle_tree_block(struct inode *inode, const void *buf,
276 					u64 index, int log_blocksize)
277 {
278 	loff_t pos = f2fs_verity_metadata_pos(inode) + (index << log_blocksize);
279 
280 	return pagecache_write(inode, buf, 1 << log_blocksize, pos);
281 }
282 
283 const struct fsverity_operations f2fs_verityops = {
284 	.begin_enable_verity	= f2fs_begin_enable_verity,
285 	.end_enable_verity	= f2fs_end_enable_verity,
286 	.get_verity_descriptor	= f2fs_get_verity_descriptor,
287 	.read_merkle_tree_page	= f2fs_read_merkle_tree_page,
288 	.write_merkle_tree_block = f2fs_write_merkle_tree_block,
289 };
290