xref: /OK3568_Linux_fs/kernel/fs/ecryptfs/mmap.c (revision 4882a59341e53eb6f0b4789bf948001014eff981)
1*4882a593Smuzhiyun // SPDX-License-Identifier: GPL-2.0-or-later
2*4882a593Smuzhiyun /**
3*4882a593Smuzhiyun  * eCryptfs: Linux filesystem encryption layer
4*4882a593Smuzhiyun  * This is where eCryptfs coordinates the symmetric encryption and
5*4882a593Smuzhiyun  * decryption of the file data as it passes between the lower
6*4882a593Smuzhiyun  * encrypted file and the upper decrypted file.
7*4882a593Smuzhiyun  *
8*4882a593Smuzhiyun  * Copyright (C) 1997-2003 Erez Zadok
9*4882a593Smuzhiyun  * Copyright (C) 2001-2003 Stony Brook University
10*4882a593Smuzhiyun  * Copyright (C) 2004-2007 International Business Machines Corp.
11*4882a593Smuzhiyun  *   Author(s): Michael A. Halcrow <mahalcro@us.ibm.com>
12*4882a593Smuzhiyun  */
13*4882a593Smuzhiyun 
14*4882a593Smuzhiyun #include <linux/pagemap.h>
15*4882a593Smuzhiyun #include <linux/writeback.h>
16*4882a593Smuzhiyun #include <linux/page-flags.h>
17*4882a593Smuzhiyun #include <linux/mount.h>
18*4882a593Smuzhiyun #include <linux/file.h>
19*4882a593Smuzhiyun #include <linux/scatterlist.h>
20*4882a593Smuzhiyun #include <linux/slab.h>
21*4882a593Smuzhiyun #include <linux/xattr.h>
22*4882a593Smuzhiyun #include <asm/unaligned.h>
23*4882a593Smuzhiyun #include "ecryptfs_kernel.h"
24*4882a593Smuzhiyun 
25*4882a593Smuzhiyun /**
26*4882a593Smuzhiyun  * ecryptfs_get_locked_page
27*4882a593Smuzhiyun  *
28*4882a593Smuzhiyun  * Get one page from cache or lower f/s, return error otherwise.
29*4882a593Smuzhiyun  *
30*4882a593Smuzhiyun  * Returns locked and up-to-date page (if ok), with increased
31*4882a593Smuzhiyun  * refcnt.
32*4882a593Smuzhiyun  */
ecryptfs_get_locked_page(struct inode * inode,loff_t index)33*4882a593Smuzhiyun struct page *ecryptfs_get_locked_page(struct inode *inode, loff_t index)
34*4882a593Smuzhiyun {
35*4882a593Smuzhiyun 	struct page *page = read_mapping_page(inode->i_mapping, index, NULL);
36*4882a593Smuzhiyun 	if (!IS_ERR(page))
37*4882a593Smuzhiyun 		lock_page(page);
38*4882a593Smuzhiyun 	return page;
39*4882a593Smuzhiyun }
40*4882a593Smuzhiyun 
41*4882a593Smuzhiyun /**
42*4882a593Smuzhiyun  * ecryptfs_writepage
43*4882a593Smuzhiyun  * @page: Page that is locked before this call is made
44*4882a593Smuzhiyun  *
45*4882a593Smuzhiyun  * Returns zero on success; non-zero otherwise
46*4882a593Smuzhiyun  *
47*4882a593Smuzhiyun  * This is where we encrypt the data and pass the encrypted data to
48*4882a593Smuzhiyun  * the lower filesystem.  In OpenPGP-compatible mode, we operate on
49*4882a593Smuzhiyun  * entire underlying packets.
50*4882a593Smuzhiyun  */
ecryptfs_writepage(struct page * page,struct writeback_control * wbc)51*4882a593Smuzhiyun static int ecryptfs_writepage(struct page *page, struct writeback_control *wbc)
52*4882a593Smuzhiyun {
53*4882a593Smuzhiyun 	int rc;
54*4882a593Smuzhiyun 
55*4882a593Smuzhiyun 	rc = ecryptfs_encrypt_page(page);
56*4882a593Smuzhiyun 	if (rc) {
57*4882a593Smuzhiyun 		ecryptfs_printk(KERN_WARNING, "Error encrypting "
58*4882a593Smuzhiyun 				"page (upper index [0x%.16lx])\n", page->index);
59*4882a593Smuzhiyun 		ClearPageUptodate(page);
60*4882a593Smuzhiyun 		goto out;
61*4882a593Smuzhiyun 	}
62*4882a593Smuzhiyun 	SetPageUptodate(page);
63*4882a593Smuzhiyun out:
64*4882a593Smuzhiyun 	unlock_page(page);
65*4882a593Smuzhiyun 	return rc;
66*4882a593Smuzhiyun }
67*4882a593Smuzhiyun 
strip_xattr_flag(char * page_virt,struct ecryptfs_crypt_stat * crypt_stat)68*4882a593Smuzhiyun static void strip_xattr_flag(char *page_virt,
69*4882a593Smuzhiyun 			     struct ecryptfs_crypt_stat *crypt_stat)
70*4882a593Smuzhiyun {
71*4882a593Smuzhiyun 	if (crypt_stat->flags & ECRYPTFS_METADATA_IN_XATTR) {
72*4882a593Smuzhiyun 		size_t written;
73*4882a593Smuzhiyun 
74*4882a593Smuzhiyun 		crypt_stat->flags &= ~ECRYPTFS_METADATA_IN_XATTR;
75*4882a593Smuzhiyun 		ecryptfs_write_crypt_stat_flags(page_virt, crypt_stat,
76*4882a593Smuzhiyun 						&written);
77*4882a593Smuzhiyun 		crypt_stat->flags |= ECRYPTFS_METADATA_IN_XATTR;
78*4882a593Smuzhiyun 	}
79*4882a593Smuzhiyun }
80*4882a593Smuzhiyun 
81*4882a593Smuzhiyun /**
82*4882a593Smuzhiyun  *   Header Extent:
83*4882a593Smuzhiyun  *     Octets 0-7:        Unencrypted file size (big-endian)
84*4882a593Smuzhiyun  *     Octets 8-15:       eCryptfs special marker
85*4882a593Smuzhiyun  *     Octets 16-19:      Flags
86*4882a593Smuzhiyun  *      Octet 16:         File format version number (between 0 and 255)
87*4882a593Smuzhiyun  *      Octets 17-18:     Reserved
88*4882a593Smuzhiyun  *      Octet 19:         Bit 1 (lsb): Reserved
89*4882a593Smuzhiyun  *                        Bit 2: Encrypted?
90*4882a593Smuzhiyun  *                        Bits 3-8: Reserved
91*4882a593Smuzhiyun  *     Octets 20-23:      Header extent size (big-endian)
92*4882a593Smuzhiyun  *     Octets 24-25:      Number of header extents at front of file
93*4882a593Smuzhiyun  *                        (big-endian)
94*4882a593Smuzhiyun  *     Octet  26:         Begin RFC 2440 authentication token packet set
95*4882a593Smuzhiyun  */
96*4882a593Smuzhiyun 
97*4882a593Smuzhiyun /**
98*4882a593Smuzhiyun  * ecryptfs_copy_up_encrypted_with_header
99*4882a593Smuzhiyun  * @page: Sort of a ``virtual'' representation of the encrypted lower
100*4882a593Smuzhiyun  *        file. The actual lower file does not have the metadata in
101*4882a593Smuzhiyun  *        the header. This is locked.
102*4882a593Smuzhiyun  * @crypt_stat: The eCryptfs inode's cryptographic context
103*4882a593Smuzhiyun  *
104*4882a593Smuzhiyun  * The ``view'' is the version of the file that userspace winds up
105*4882a593Smuzhiyun  * seeing, with the header information inserted.
106*4882a593Smuzhiyun  */
107*4882a593Smuzhiyun static int
ecryptfs_copy_up_encrypted_with_header(struct page * page,struct ecryptfs_crypt_stat * crypt_stat)108*4882a593Smuzhiyun ecryptfs_copy_up_encrypted_with_header(struct page *page,
109*4882a593Smuzhiyun 				       struct ecryptfs_crypt_stat *crypt_stat)
110*4882a593Smuzhiyun {
111*4882a593Smuzhiyun 	loff_t extent_num_in_page = 0;
112*4882a593Smuzhiyun 	loff_t num_extents_per_page = (PAGE_SIZE
113*4882a593Smuzhiyun 				       / crypt_stat->extent_size);
114*4882a593Smuzhiyun 	int rc = 0;
115*4882a593Smuzhiyun 
116*4882a593Smuzhiyun 	while (extent_num_in_page < num_extents_per_page) {
117*4882a593Smuzhiyun 		loff_t view_extent_num = ((((loff_t)page->index)
118*4882a593Smuzhiyun 					   * num_extents_per_page)
119*4882a593Smuzhiyun 					  + extent_num_in_page);
120*4882a593Smuzhiyun 		size_t num_header_extents_at_front =
121*4882a593Smuzhiyun 			(crypt_stat->metadata_size / crypt_stat->extent_size);
122*4882a593Smuzhiyun 
123*4882a593Smuzhiyun 		if (view_extent_num < num_header_extents_at_front) {
124*4882a593Smuzhiyun 			/* This is a header extent */
125*4882a593Smuzhiyun 			char *page_virt;
126*4882a593Smuzhiyun 
127*4882a593Smuzhiyun 			page_virt = kmap_atomic(page);
128*4882a593Smuzhiyun 			memset(page_virt, 0, PAGE_SIZE);
129*4882a593Smuzhiyun 			/* TODO: Support more than one header extent */
130*4882a593Smuzhiyun 			if (view_extent_num == 0) {
131*4882a593Smuzhiyun 				size_t written;
132*4882a593Smuzhiyun 
133*4882a593Smuzhiyun 				rc = ecryptfs_read_xattr_region(
134*4882a593Smuzhiyun 					page_virt, page->mapping->host);
135*4882a593Smuzhiyun 				strip_xattr_flag(page_virt + 16, crypt_stat);
136*4882a593Smuzhiyun 				ecryptfs_write_header_metadata(page_virt + 20,
137*4882a593Smuzhiyun 							       crypt_stat,
138*4882a593Smuzhiyun 							       &written);
139*4882a593Smuzhiyun 			}
140*4882a593Smuzhiyun 			kunmap_atomic(page_virt);
141*4882a593Smuzhiyun 			flush_dcache_page(page);
142*4882a593Smuzhiyun 			if (rc) {
143*4882a593Smuzhiyun 				printk(KERN_ERR "%s: Error reading xattr "
144*4882a593Smuzhiyun 				       "region; rc = [%d]\n", __func__, rc);
145*4882a593Smuzhiyun 				goto out;
146*4882a593Smuzhiyun 			}
147*4882a593Smuzhiyun 		} else {
148*4882a593Smuzhiyun 			/* This is an encrypted data extent */
149*4882a593Smuzhiyun 			loff_t lower_offset =
150*4882a593Smuzhiyun 				((view_extent_num * crypt_stat->extent_size)
151*4882a593Smuzhiyun 				 - crypt_stat->metadata_size);
152*4882a593Smuzhiyun 
153*4882a593Smuzhiyun 			rc = ecryptfs_read_lower_page_segment(
154*4882a593Smuzhiyun 				page, (lower_offset >> PAGE_SHIFT),
155*4882a593Smuzhiyun 				(lower_offset & ~PAGE_MASK),
156*4882a593Smuzhiyun 				crypt_stat->extent_size, page->mapping->host);
157*4882a593Smuzhiyun 			if (rc) {
158*4882a593Smuzhiyun 				printk(KERN_ERR "%s: Error attempting to read "
159*4882a593Smuzhiyun 				       "extent at offset [%lld] in the lower "
160*4882a593Smuzhiyun 				       "file; rc = [%d]\n", __func__,
161*4882a593Smuzhiyun 				       lower_offset, rc);
162*4882a593Smuzhiyun 				goto out;
163*4882a593Smuzhiyun 			}
164*4882a593Smuzhiyun 		}
165*4882a593Smuzhiyun 		extent_num_in_page++;
166*4882a593Smuzhiyun 	}
167*4882a593Smuzhiyun out:
168*4882a593Smuzhiyun 	return rc;
169*4882a593Smuzhiyun }
170*4882a593Smuzhiyun 
171*4882a593Smuzhiyun /**
172*4882a593Smuzhiyun  * ecryptfs_readpage
173*4882a593Smuzhiyun  * @file: An eCryptfs file
174*4882a593Smuzhiyun  * @page: Page from eCryptfs inode mapping into which to stick the read data
175*4882a593Smuzhiyun  *
176*4882a593Smuzhiyun  * Read in a page, decrypting if necessary.
177*4882a593Smuzhiyun  *
178*4882a593Smuzhiyun  * Returns zero on success; non-zero on error.
179*4882a593Smuzhiyun  */
ecryptfs_readpage(struct file * file,struct page * page)180*4882a593Smuzhiyun static int ecryptfs_readpage(struct file *file, struct page *page)
181*4882a593Smuzhiyun {
182*4882a593Smuzhiyun 	struct ecryptfs_crypt_stat *crypt_stat =
183*4882a593Smuzhiyun 		&ecryptfs_inode_to_private(page->mapping->host)->crypt_stat;
184*4882a593Smuzhiyun 	int rc = 0;
185*4882a593Smuzhiyun 
186*4882a593Smuzhiyun 	if (!crypt_stat || !(crypt_stat->flags & ECRYPTFS_ENCRYPTED)) {
187*4882a593Smuzhiyun 		rc = ecryptfs_read_lower_page_segment(page, page->index, 0,
188*4882a593Smuzhiyun 						      PAGE_SIZE,
189*4882a593Smuzhiyun 						      page->mapping->host);
190*4882a593Smuzhiyun 	} else if (crypt_stat->flags & ECRYPTFS_VIEW_AS_ENCRYPTED) {
191*4882a593Smuzhiyun 		if (crypt_stat->flags & ECRYPTFS_METADATA_IN_XATTR) {
192*4882a593Smuzhiyun 			rc = ecryptfs_copy_up_encrypted_with_header(page,
193*4882a593Smuzhiyun 								    crypt_stat);
194*4882a593Smuzhiyun 			if (rc) {
195*4882a593Smuzhiyun 				printk(KERN_ERR "%s: Error attempting to copy "
196*4882a593Smuzhiyun 				       "the encrypted content from the lower "
197*4882a593Smuzhiyun 				       "file whilst inserting the metadata "
198*4882a593Smuzhiyun 				       "from the xattr into the header; rc = "
199*4882a593Smuzhiyun 				       "[%d]\n", __func__, rc);
200*4882a593Smuzhiyun 				goto out;
201*4882a593Smuzhiyun 			}
202*4882a593Smuzhiyun 
203*4882a593Smuzhiyun 		} else {
204*4882a593Smuzhiyun 			rc = ecryptfs_read_lower_page_segment(
205*4882a593Smuzhiyun 				page, page->index, 0, PAGE_SIZE,
206*4882a593Smuzhiyun 				page->mapping->host);
207*4882a593Smuzhiyun 			if (rc) {
208*4882a593Smuzhiyun 				printk(KERN_ERR "Error reading page; rc = "
209*4882a593Smuzhiyun 				       "[%d]\n", rc);
210*4882a593Smuzhiyun 				goto out;
211*4882a593Smuzhiyun 			}
212*4882a593Smuzhiyun 		}
213*4882a593Smuzhiyun 	} else {
214*4882a593Smuzhiyun 		rc = ecryptfs_decrypt_page(page);
215*4882a593Smuzhiyun 		if (rc) {
216*4882a593Smuzhiyun 			ecryptfs_printk(KERN_ERR, "Error decrypting page; "
217*4882a593Smuzhiyun 					"rc = [%d]\n", rc);
218*4882a593Smuzhiyun 			goto out;
219*4882a593Smuzhiyun 		}
220*4882a593Smuzhiyun 	}
221*4882a593Smuzhiyun out:
222*4882a593Smuzhiyun 	if (rc)
223*4882a593Smuzhiyun 		ClearPageUptodate(page);
224*4882a593Smuzhiyun 	else
225*4882a593Smuzhiyun 		SetPageUptodate(page);
226*4882a593Smuzhiyun 	ecryptfs_printk(KERN_DEBUG, "Unlocking page with index = [0x%.16lx]\n",
227*4882a593Smuzhiyun 			page->index);
228*4882a593Smuzhiyun 	unlock_page(page);
229*4882a593Smuzhiyun 	return rc;
230*4882a593Smuzhiyun }
231*4882a593Smuzhiyun 
232*4882a593Smuzhiyun /**
233*4882a593Smuzhiyun  * Called with lower inode mutex held.
234*4882a593Smuzhiyun  */
fill_zeros_to_end_of_page(struct page * page,unsigned int to)235*4882a593Smuzhiyun static int fill_zeros_to_end_of_page(struct page *page, unsigned int to)
236*4882a593Smuzhiyun {
237*4882a593Smuzhiyun 	struct inode *inode = page->mapping->host;
238*4882a593Smuzhiyun 	int end_byte_in_page;
239*4882a593Smuzhiyun 
240*4882a593Smuzhiyun 	if ((i_size_read(inode) / PAGE_SIZE) != page->index)
241*4882a593Smuzhiyun 		goto out;
242*4882a593Smuzhiyun 	end_byte_in_page = i_size_read(inode) % PAGE_SIZE;
243*4882a593Smuzhiyun 	if (to > end_byte_in_page)
244*4882a593Smuzhiyun 		end_byte_in_page = to;
245*4882a593Smuzhiyun 	zero_user_segment(page, end_byte_in_page, PAGE_SIZE);
246*4882a593Smuzhiyun out:
247*4882a593Smuzhiyun 	return 0;
248*4882a593Smuzhiyun }
249*4882a593Smuzhiyun 
250*4882a593Smuzhiyun /**
251*4882a593Smuzhiyun  * ecryptfs_write_begin
252*4882a593Smuzhiyun  * @file: The eCryptfs file
253*4882a593Smuzhiyun  * @mapping: The eCryptfs object
254*4882a593Smuzhiyun  * @pos: The file offset at which to start writing
255*4882a593Smuzhiyun  * @len: Length of the write
256*4882a593Smuzhiyun  * @flags: Various flags
257*4882a593Smuzhiyun  * @pagep: Pointer to return the page
258*4882a593Smuzhiyun  * @fsdata: Pointer to return fs data (unused)
259*4882a593Smuzhiyun  *
260*4882a593Smuzhiyun  * This function must zero any hole we create
261*4882a593Smuzhiyun  *
262*4882a593Smuzhiyun  * Returns zero on success; non-zero otherwise
263*4882a593Smuzhiyun  */
ecryptfs_write_begin(struct file * file,struct address_space * mapping,loff_t pos,unsigned len,unsigned flags,struct page ** pagep,void ** fsdata)264*4882a593Smuzhiyun static int ecryptfs_write_begin(struct file *file,
265*4882a593Smuzhiyun 			struct address_space *mapping,
266*4882a593Smuzhiyun 			loff_t pos, unsigned len, unsigned flags,
267*4882a593Smuzhiyun 			struct page **pagep, void **fsdata)
268*4882a593Smuzhiyun {
269*4882a593Smuzhiyun 	pgoff_t index = pos >> PAGE_SHIFT;
270*4882a593Smuzhiyun 	struct page *page;
271*4882a593Smuzhiyun 	loff_t prev_page_end_size;
272*4882a593Smuzhiyun 	int rc = 0;
273*4882a593Smuzhiyun 
274*4882a593Smuzhiyun 	page = grab_cache_page_write_begin(mapping, index, flags);
275*4882a593Smuzhiyun 	if (!page)
276*4882a593Smuzhiyun 		return -ENOMEM;
277*4882a593Smuzhiyun 	*pagep = page;
278*4882a593Smuzhiyun 
279*4882a593Smuzhiyun 	prev_page_end_size = ((loff_t)index << PAGE_SHIFT);
280*4882a593Smuzhiyun 	if (!PageUptodate(page)) {
281*4882a593Smuzhiyun 		struct ecryptfs_crypt_stat *crypt_stat =
282*4882a593Smuzhiyun 			&ecryptfs_inode_to_private(mapping->host)->crypt_stat;
283*4882a593Smuzhiyun 
284*4882a593Smuzhiyun 		if (!(crypt_stat->flags & ECRYPTFS_ENCRYPTED)) {
285*4882a593Smuzhiyun 			rc = ecryptfs_read_lower_page_segment(
286*4882a593Smuzhiyun 				page, index, 0, PAGE_SIZE, mapping->host);
287*4882a593Smuzhiyun 			if (rc) {
288*4882a593Smuzhiyun 				printk(KERN_ERR "%s: Error attempting to read "
289*4882a593Smuzhiyun 				       "lower page segment; rc = [%d]\n",
290*4882a593Smuzhiyun 				       __func__, rc);
291*4882a593Smuzhiyun 				ClearPageUptodate(page);
292*4882a593Smuzhiyun 				goto out;
293*4882a593Smuzhiyun 			} else
294*4882a593Smuzhiyun 				SetPageUptodate(page);
295*4882a593Smuzhiyun 		} else if (crypt_stat->flags & ECRYPTFS_VIEW_AS_ENCRYPTED) {
296*4882a593Smuzhiyun 			if (crypt_stat->flags & ECRYPTFS_METADATA_IN_XATTR) {
297*4882a593Smuzhiyun 				rc = ecryptfs_copy_up_encrypted_with_header(
298*4882a593Smuzhiyun 					page, crypt_stat);
299*4882a593Smuzhiyun 				if (rc) {
300*4882a593Smuzhiyun 					printk(KERN_ERR "%s: Error attempting "
301*4882a593Smuzhiyun 					       "to copy the encrypted content "
302*4882a593Smuzhiyun 					       "from the lower file whilst "
303*4882a593Smuzhiyun 					       "inserting the metadata from "
304*4882a593Smuzhiyun 					       "the xattr into the header; rc "
305*4882a593Smuzhiyun 					       "= [%d]\n", __func__, rc);
306*4882a593Smuzhiyun 					ClearPageUptodate(page);
307*4882a593Smuzhiyun 					goto out;
308*4882a593Smuzhiyun 				}
309*4882a593Smuzhiyun 				SetPageUptodate(page);
310*4882a593Smuzhiyun 			} else {
311*4882a593Smuzhiyun 				rc = ecryptfs_read_lower_page_segment(
312*4882a593Smuzhiyun 					page, index, 0, PAGE_SIZE,
313*4882a593Smuzhiyun 					mapping->host);
314*4882a593Smuzhiyun 				if (rc) {
315*4882a593Smuzhiyun 					printk(KERN_ERR "%s: Error reading "
316*4882a593Smuzhiyun 					       "page; rc = [%d]\n",
317*4882a593Smuzhiyun 					       __func__, rc);
318*4882a593Smuzhiyun 					ClearPageUptodate(page);
319*4882a593Smuzhiyun 					goto out;
320*4882a593Smuzhiyun 				}
321*4882a593Smuzhiyun 				SetPageUptodate(page);
322*4882a593Smuzhiyun 			}
323*4882a593Smuzhiyun 		} else {
324*4882a593Smuzhiyun 			if (prev_page_end_size
325*4882a593Smuzhiyun 			    >= i_size_read(page->mapping->host)) {
326*4882a593Smuzhiyun 				zero_user(page, 0, PAGE_SIZE);
327*4882a593Smuzhiyun 				SetPageUptodate(page);
328*4882a593Smuzhiyun 			} else if (len < PAGE_SIZE) {
329*4882a593Smuzhiyun 				rc = ecryptfs_decrypt_page(page);
330*4882a593Smuzhiyun 				if (rc) {
331*4882a593Smuzhiyun 					printk(KERN_ERR "%s: Error decrypting "
332*4882a593Smuzhiyun 					       "page at index [%ld]; "
333*4882a593Smuzhiyun 					       "rc = [%d]\n",
334*4882a593Smuzhiyun 					       __func__, page->index, rc);
335*4882a593Smuzhiyun 					ClearPageUptodate(page);
336*4882a593Smuzhiyun 					goto out;
337*4882a593Smuzhiyun 				}
338*4882a593Smuzhiyun 				SetPageUptodate(page);
339*4882a593Smuzhiyun 			}
340*4882a593Smuzhiyun 		}
341*4882a593Smuzhiyun 	}
342*4882a593Smuzhiyun 	/* If creating a page or more of holes, zero them out via truncate.
343*4882a593Smuzhiyun 	 * Note, this will increase i_size. */
344*4882a593Smuzhiyun 	if (index != 0) {
345*4882a593Smuzhiyun 		if (prev_page_end_size > i_size_read(page->mapping->host)) {
346*4882a593Smuzhiyun 			rc = ecryptfs_truncate(file->f_path.dentry,
347*4882a593Smuzhiyun 					       prev_page_end_size);
348*4882a593Smuzhiyun 			if (rc) {
349*4882a593Smuzhiyun 				printk(KERN_ERR "%s: Error on attempt to "
350*4882a593Smuzhiyun 				       "truncate to (higher) offset [%lld];"
351*4882a593Smuzhiyun 				       " rc = [%d]\n", __func__,
352*4882a593Smuzhiyun 				       prev_page_end_size, rc);
353*4882a593Smuzhiyun 				goto out;
354*4882a593Smuzhiyun 			}
355*4882a593Smuzhiyun 		}
356*4882a593Smuzhiyun 	}
357*4882a593Smuzhiyun 	/* Writing to a new page, and creating a small hole from start
358*4882a593Smuzhiyun 	 * of page?  Zero it out. */
359*4882a593Smuzhiyun 	if ((i_size_read(mapping->host) == prev_page_end_size)
360*4882a593Smuzhiyun 	    && (pos != 0))
361*4882a593Smuzhiyun 		zero_user(page, 0, PAGE_SIZE);
362*4882a593Smuzhiyun out:
363*4882a593Smuzhiyun 	if (unlikely(rc)) {
364*4882a593Smuzhiyun 		unlock_page(page);
365*4882a593Smuzhiyun 		put_page(page);
366*4882a593Smuzhiyun 		*pagep = NULL;
367*4882a593Smuzhiyun 	}
368*4882a593Smuzhiyun 	return rc;
369*4882a593Smuzhiyun }
370*4882a593Smuzhiyun 
371*4882a593Smuzhiyun /**
372*4882a593Smuzhiyun  * ecryptfs_write_inode_size_to_header
373*4882a593Smuzhiyun  *
374*4882a593Smuzhiyun  * Writes the lower file size to the first 8 bytes of the header.
375*4882a593Smuzhiyun  *
376*4882a593Smuzhiyun  * Returns zero on success; non-zero on error.
377*4882a593Smuzhiyun  */
ecryptfs_write_inode_size_to_header(struct inode * ecryptfs_inode)378*4882a593Smuzhiyun static int ecryptfs_write_inode_size_to_header(struct inode *ecryptfs_inode)
379*4882a593Smuzhiyun {
380*4882a593Smuzhiyun 	char *file_size_virt;
381*4882a593Smuzhiyun 	int rc;
382*4882a593Smuzhiyun 
383*4882a593Smuzhiyun 	file_size_virt = kmalloc(sizeof(u64), GFP_KERNEL);
384*4882a593Smuzhiyun 	if (!file_size_virt) {
385*4882a593Smuzhiyun 		rc = -ENOMEM;
386*4882a593Smuzhiyun 		goto out;
387*4882a593Smuzhiyun 	}
388*4882a593Smuzhiyun 	put_unaligned_be64(i_size_read(ecryptfs_inode), file_size_virt);
389*4882a593Smuzhiyun 	rc = ecryptfs_write_lower(ecryptfs_inode, file_size_virt, 0,
390*4882a593Smuzhiyun 				  sizeof(u64));
391*4882a593Smuzhiyun 	kfree(file_size_virt);
392*4882a593Smuzhiyun 	if (rc < 0)
393*4882a593Smuzhiyun 		printk(KERN_ERR "%s: Error writing file size to header; "
394*4882a593Smuzhiyun 		       "rc = [%d]\n", __func__, rc);
395*4882a593Smuzhiyun 	else
396*4882a593Smuzhiyun 		rc = 0;
397*4882a593Smuzhiyun out:
398*4882a593Smuzhiyun 	return rc;
399*4882a593Smuzhiyun }
400*4882a593Smuzhiyun 
401*4882a593Smuzhiyun struct kmem_cache *ecryptfs_xattr_cache;
402*4882a593Smuzhiyun 
ecryptfs_write_inode_size_to_xattr(struct inode * ecryptfs_inode)403*4882a593Smuzhiyun static int ecryptfs_write_inode_size_to_xattr(struct inode *ecryptfs_inode)
404*4882a593Smuzhiyun {
405*4882a593Smuzhiyun 	ssize_t size;
406*4882a593Smuzhiyun 	void *xattr_virt;
407*4882a593Smuzhiyun 	struct dentry *lower_dentry =
408*4882a593Smuzhiyun 		ecryptfs_inode_to_private(ecryptfs_inode)->lower_file->f_path.dentry;
409*4882a593Smuzhiyun 	struct inode *lower_inode = d_inode(lower_dentry);
410*4882a593Smuzhiyun 	int rc;
411*4882a593Smuzhiyun 
412*4882a593Smuzhiyun 	if (!(lower_inode->i_opflags & IOP_XATTR)) {
413*4882a593Smuzhiyun 		printk(KERN_WARNING
414*4882a593Smuzhiyun 		       "No support for setting xattr in lower filesystem\n");
415*4882a593Smuzhiyun 		rc = -ENOSYS;
416*4882a593Smuzhiyun 		goto out;
417*4882a593Smuzhiyun 	}
418*4882a593Smuzhiyun 	xattr_virt = kmem_cache_alloc(ecryptfs_xattr_cache, GFP_KERNEL);
419*4882a593Smuzhiyun 	if (!xattr_virt) {
420*4882a593Smuzhiyun 		rc = -ENOMEM;
421*4882a593Smuzhiyun 		goto out;
422*4882a593Smuzhiyun 	}
423*4882a593Smuzhiyun 	inode_lock(lower_inode);
424*4882a593Smuzhiyun 	size = __vfs_getxattr(lower_dentry, lower_inode, ECRYPTFS_XATTR_NAME,
425*4882a593Smuzhiyun 			      xattr_virt, PAGE_SIZE, XATTR_NOSECURITY);
426*4882a593Smuzhiyun 	if (size < 0)
427*4882a593Smuzhiyun 		size = 8;
428*4882a593Smuzhiyun 	put_unaligned_be64(i_size_read(ecryptfs_inode), xattr_virt);
429*4882a593Smuzhiyun 	rc = __vfs_setxattr(lower_dentry, lower_inode, ECRYPTFS_XATTR_NAME,
430*4882a593Smuzhiyun 			    xattr_virt, size, 0);
431*4882a593Smuzhiyun 	inode_unlock(lower_inode);
432*4882a593Smuzhiyun 	if (rc)
433*4882a593Smuzhiyun 		printk(KERN_ERR "Error whilst attempting to write inode size "
434*4882a593Smuzhiyun 		       "to lower file xattr; rc = [%d]\n", rc);
435*4882a593Smuzhiyun 	kmem_cache_free(ecryptfs_xattr_cache, xattr_virt);
436*4882a593Smuzhiyun out:
437*4882a593Smuzhiyun 	return rc;
438*4882a593Smuzhiyun }
439*4882a593Smuzhiyun 
ecryptfs_write_inode_size_to_metadata(struct inode * ecryptfs_inode)440*4882a593Smuzhiyun int ecryptfs_write_inode_size_to_metadata(struct inode *ecryptfs_inode)
441*4882a593Smuzhiyun {
442*4882a593Smuzhiyun 	struct ecryptfs_crypt_stat *crypt_stat;
443*4882a593Smuzhiyun 
444*4882a593Smuzhiyun 	crypt_stat = &ecryptfs_inode_to_private(ecryptfs_inode)->crypt_stat;
445*4882a593Smuzhiyun 	BUG_ON(!(crypt_stat->flags & ECRYPTFS_ENCRYPTED));
446*4882a593Smuzhiyun 	if (crypt_stat->flags & ECRYPTFS_METADATA_IN_XATTR)
447*4882a593Smuzhiyun 		return ecryptfs_write_inode_size_to_xattr(ecryptfs_inode);
448*4882a593Smuzhiyun 	else
449*4882a593Smuzhiyun 		return ecryptfs_write_inode_size_to_header(ecryptfs_inode);
450*4882a593Smuzhiyun }
451*4882a593Smuzhiyun 
452*4882a593Smuzhiyun /**
453*4882a593Smuzhiyun  * ecryptfs_write_end
454*4882a593Smuzhiyun  * @file: The eCryptfs file object
455*4882a593Smuzhiyun  * @mapping: The eCryptfs object
456*4882a593Smuzhiyun  * @pos: The file position
457*4882a593Smuzhiyun  * @len: The length of the data (unused)
458*4882a593Smuzhiyun  * @copied: The amount of data copied
459*4882a593Smuzhiyun  * @page: The eCryptfs page
460*4882a593Smuzhiyun  * @fsdata: The fsdata (unused)
461*4882a593Smuzhiyun  */
ecryptfs_write_end(struct file * file,struct address_space * mapping,loff_t pos,unsigned len,unsigned copied,struct page * page,void * fsdata)462*4882a593Smuzhiyun static int ecryptfs_write_end(struct file *file,
463*4882a593Smuzhiyun 			struct address_space *mapping,
464*4882a593Smuzhiyun 			loff_t pos, unsigned len, unsigned copied,
465*4882a593Smuzhiyun 			struct page *page, void *fsdata)
466*4882a593Smuzhiyun {
467*4882a593Smuzhiyun 	pgoff_t index = pos >> PAGE_SHIFT;
468*4882a593Smuzhiyun 	unsigned from = pos & (PAGE_SIZE - 1);
469*4882a593Smuzhiyun 	unsigned to = from + copied;
470*4882a593Smuzhiyun 	struct inode *ecryptfs_inode = mapping->host;
471*4882a593Smuzhiyun 	struct ecryptfs_crypt_stat *crypt_stat =
472*4882a593Smuzhiyun 		&ecryptfs_inode_to_private(ecryptfs_inode)->crypt_stat;
473*4882a593Smuzhiyun 	int rc;
474*4882a593Smuzhiyun 
475*4882a593Smuzhiyun 	ecryptfs_printk(KERN_DEBUG, "Calling fill_zeros_to_end_of_page"
476*4882a593Smuzhiyun 			"(page w/ index = [0x%.16lx], to = [%d])\n", index, to);
477*4882a593Smuzhiyun 	if (!(crypt_stat->flags & ECRYPTFS_ENCRYPTED)) {
478*4882a593Smuzhiyun 		rc = ecryptfs_write_lower_page_segment(ecryptfs_inode, page, 0,
479*4882a593Smuzhiyun 						       to);
480*4882a593Smuzhiyun 		if (!rc) {
481*4882a593Smuzhiyun 			rc = copied;
482*4882a593Smuzhiyun 			fsstack_copy_inode_size(ecryptfs_inode,
483*4882a593Smuzhiyun 				ecryptfs_inode_to_lower(ecryptfs_inode));
484*4882a593Smuzhiyun 		}
485*4882a593Smuzhiyun 		goto out;
486*4882a593Smuzhiyun 	}
487*4882a593Smuzhiyun 	if (!PageUptodate(page)) {
488*4882a593Smuzhiyun 		if (copied < PAGE_SIZE) {
489*4882a593Smuzhiyun 			rc = 0;
490*4882a593Smuzhiyun 			goto out;
491*4882a593Smuzhiyun 		}
492*4882a593Smuzhiyun 		SetPageUptodate(page);
493*4882a593Smuzhiyun 	}
494*4882a593Smuzhiyun 	/* Fills in zeros if 'to' goes beyond inode size */
495*4882a593Smuzhiyun 	rc = fill_zeros_to_end_of_page(page, to);
496*4882a593Smuzhiyun 	if (rc) {
497*4882a593Smuzhiyun 		ecryptfs_printk(KERN_WARNING, "Error attempting to fill "
498*4882a593Smuzhiyun 			"zeros in page with index = [0x%.16lx]\n", index);
499*4882a593Smuzhiyun 		goto out;
500*4882a593Smuzhiyun 	}
501*4882a593Smuzhiyun 	rc = ecryptfs_encrypt_page(page);
502*4882a593Smuzhiyun 	if (rc) {
503*4882a593Smuzhiyun 		ecryptfs_printk(KERN_WARNING, "Error encrypting page (upper "
504*4882a593Smuzhiyun 				"index [0x%.16lx])\n", index);
505*4882a593Smuzhiyun 		goto out;
506*4882a593Smuzhiyun 	}
507*4882a593Smuzhiyun 	if (pos + copied > i_size_read(ecryptfs_inode)) {
508*4882a593Smuzhiyun 		i_size_write(ecryptfs_inode, pos + copied);
509*4882a593Smuzhiyun 		ecryptfs_printk(KERN_DEBUG, "Expanded file size to "
510*4882a593Smuzhiyun 			"[0x%.16llx]\n",
511*4882a593Smuzhiyun 			(unsigned long long)i_size_read(ecryptfs_inode));
512*4882a593Smuzhiyun 	}
513*4882a593Smuzhiyun 	rc = ecryptfs_write_inode_size_to_metadata(ecryptfs_inode);
514*4882a593Smuzhiyun 	if (rc)
515*4882a593Smuzhiyun 		printk(KERN_ERR "Error writing inode size to metadata; "
516*4882a593Smuzhiyun 		       "rc = [%d]\n", rc);
517*4882a593Smuzhiyun 	else
518*4882a593Smuzhiyun 		rc = copied;
519*4882a593Smuzhiyun out:
520*4882a593Smuzhiyun 	unlock_page(page);
521*4882a593Smuzhiyun 	put_page(page);
522*4882a593Smuzhiyun 	return rc;
523*4882a593Smuzhiyun }
524*4882a593Smuzhiyun 
ecryptfs_bmap(struct address_space * mapping,sector_t block)525*4882a593Smuzhiyun static sector_t ecryptfs_bmap(struct address_space *mapping, sector_t block)
526*4882a593Smuzhiyun {
527*4882a593Smuzhiyun 	struct inode *lower_inode = ecryptfs_inode_to_lower(mapping->host);
528*4882a593Smuzhiyun 	int ret = bmap(lower_inode, &block);
529*4882a593Smuzhiyun 
530*4882a593Smuzhiyun 	if (ret)
531*4882a593Smuzhiyun 		return 0;
532*4882a593Smuzhiyun 	return block;
533*4882a593Smuzhiyun }
534*4882a593Smuzhiyun 
535*4882a593Smuzhiyun const struct address_space_operations ecryptfs_aops = {
536*4882a593Smuzhiyun 	.writepage = ecryptfs_writepage,
537*4882a593Smuzhiyun 	.readpage = ecryptfs_readpage,
538*4882a593Smuzhiyun 	.write_begin = ecryptfs_write_begin,
539*4882a593Smuzhiyun 	.write_end = ecryptfs_write_end,
540*4882a593Smuzhiyun 	.bmap = ecryptfs_bmap,
541*4882a593Smuzhiyun };
542