xref: /openbmc/linux/fs/cachefiles/ondemand.c (revision c8383054506c77b814489c09877b5db83fd4abf2)
1*c8383054SJeffle Xu // SPDX-License-Identifier: GPL-2.0-or-later
2*c8383054SJeffle Xu #include <linux/fdtable.h>
3*c8383054SJeffle Xu #include <linux/anon_inodes.h>
4*c8383054SJeffle Xu #include <linux/uio.h>
5*c8383054SJeffle Xu #include "internal.h"
6*c8383054SJeffle Xu 
7*c8383054SJeffle Xu static int cachefiles_ondemand_fd_release(struct inode *inode,
8*c8383054SJeffle Xu 					  struct file *file)
9*c8383054SJeffle Xu {
10*c8383054SJeffle Xu 	struct cachefiles_object *object = file->private_data;
11*c8383054SJeffle Xu 	struct cachefiles_cache *cache = object->volume->cache;
12*c8383054SJeffle Xu 	int object_id = object->ondemand_id;
13*c8383054SJeffle Xu 
14*c8383054SJeffle Xu 	object->ondemand_id = CACHEFILES_ONDEMAND_ID_CLOSED;
15*c8383054SJeffle Xu 	xa_erase(&cache->ondemand_ids, object_id);
16*c8383054SJeffle Xu 	cachefiles_put_object(object, cachefiles_obj_put_ondemand_fd);
17*c8383054SJeffle Xu 	return 0;
18*c8383054SJeffle Xu }
19*c8383054SJeffle Xu 
20*c8383054SJeffle Xu static ssize_t cachefiles_ondemand_fd_write_iter(struct kiocb *kiocb,
21*c8383054SJeffle Xu 						 struct iov_iter *iter)
22*c8383054SJeffle Xu {
23*c8383054SJeffle Xu 	struct cachefiles_object *object = kiocb->ki_filp->private_data;
24*c8383054SJeffle Xu 	struct cachefiles_cache *cache = object->volume->cache;
25*c8383054SJeffle Xu 	struct file *file = object->file;
26*c8383054SJeffle Xu 	size_t len = iter->count;
27*c8383054SJeffle Xu 	loff_t pos = kiocb->ki_pos;
28*c8383054SJeffle Xu 	const struct cred *saved_cred;
29*c8383054SJeffle Xu 	int ret;
30*c8383054SJeffle Xu 
31*c8383054SJeffle Xu 	if (!file)
32*c8383054SJeffle Xu 		return -ENOBUFS;
33*c8383054SJeffle Xu 
34*c8383054SJeffle Xu 	cachefiles_begin_secure(cache, &saved_cred);
35*c8383054SJeffle Xu 	ret = __cachefiles_prepare_write(object, file, &pos, &len, true);
36*c8383054SJeffle Xu 	cachefiles_end_secure(cache, saved_cred);
37*c8383054SJeffle Xu 	if (ret < 0)
38*c8383054SJeffle Xu 		return ret;
39*c8383054SJeffle Xu 
40*c8383054SJeffle Xu 	ret = __cachefiles_write(object, file, pos, iter, NULL, NULL);
41*c8383054SJeffle Xu 	if (!ret)
42*c8383054SJeffle Xu 		ret = len;
43*c8383054SJeffle Xu 
44*c8383054SJeffle Xu 	return ret;
45*c8383054SJeffle Xu }
46*c8383054SJeffle Xu 
47*c8383054SJeffle Xu static loff_t cachefiles_ondemand_fd_llseek(struct file *filp, loff_t pos,
48*c8383054SJeffle Xu 					    int whence)
49*c8383054SJeffle Xu {
50*c8383054SJeffle Xu 	struct cachefiles_object *object = filp->private_data;
51*c8383054SJeffle Xu 	struct file *file = object->file;
52*c8383054SJeffle Xu 
53*c8383054SJeffle Xu 	if (!file)
54*c8383054SJeffle Xu 		return -ENOBUFS;
55*c8383054SJeffle Xu 
56*c8383054SJeffle Xu 	return vfs_llseek(file, pos, whence);
57*c8383054SJeffle Xu }
58*c8383054SJeffle Xu 
59*c8383054SJeffle Xu static const struct file_operations cachefiles_ondemand_fd_fops = {
60*c8383054SJeffle Xu 	.owner		= THIS_MODULE,
61*c8383054SJeffle Xu 	.release	= cachefiles_ondemand_fd_release,
62*c8383054SJeffle Xu 	.write_iter	= cachefiles_ondemand_fd_write_iter,
63*c8383054SJeffle Xu 	.llseek		= cachefiles_ondemand_fd_llseek,
64*c8383054SJeffle Xu };
65*c8383054SJeffle Xu 
66*c8383054SJeffle Xu /*
67*c8383054SJeffle Xu  * OPEN request Completion (copen)
68*c8383054SJeffle Xu  * - command: "copen <id>,<cache_size>"
69*c8383054SJeffle Xu  *   <cache_size> indicates the object size if >=0, error code if negative
70*c8383054SJeffle Xu  */
71*c8383054SJeffle Xu int cachefiles_ondemand_copen(struct cachefiles_cache *cache, char *args)
72*c8383054SJeffle Xu {
73*c8383054SJeffle Xu 	struct cachefiles_req *req;
74*c8383054SJeffle Xu 	struct fscache_cookie *cookie;
75*c8383054SJeffle Xu 	char *pid, *psize;
76*c8383054SJeffle Xu 	unsigned long id;
77*c8383054SJeffle Xu 	long size;
78*c8383054SJeffle Xu 	int ret;
79*c8383054SJeffle Xu 
80*c8383054SJeffle Xu 	if (!test_bit(CACHEFILES_ONDEMAND_MODE, &cache->flags))
81*c8383054SJeffle Xu 		return -EOPNOTSUPP;
82*c8383054SJeffle Xu 
83*c8383054SJeffle Xu 	if (!*args) {
84*c8383054SJeffle Xu 		pr_err("Empty id specified\n");
85*c8383054SJeffle Xu 		return -EINVAL;
86*c8383054SJeffle Xu 	}
87*c8383054SJeffle Xu 
88*c8383054SJeffle Xu 	pid = args;
89*c8383054SJeffle Xu 	psize = strchr(args, ',');
90*c8383054SJeffle Xu 	if (!psize) {
91*c8383054SJeffle Xu 		pr_err("Cache size is not specified\n");
92*c8383054SJeffle Xu 		return -EINVAL;
93*c8383054SJeffle Xu 	}
94*c8383054SJeffle Xu 
95*c8383054SJeffle Xu 	*psize = 0;
96*c8383054SJeffle Xu 	psize++;
97*c8383054SJeffle Xu 
98*c8383054SJeffle Xu 	ret = kstrtoul(pid, 0, &id);
99*c8383054SJeffle Xu 	if (ret)
100*c8383054SJeffle Xu 		return ret;
101*c8383054SJeffle Xu 
102*c8383054SJeffle Xu 	req = xa_erase(&cache->reqs, id);
103*c8383054SJeffle Xu 	if (!req)
104*c8383054SJeffle Xu 		return -EINVAL;
105*c8383054SJeffle Xu 
106*c8383054SJeffle Xu 	/* fail OPEN request if copen format is invalid */
107*c8383054SJeffle Xu 	ret = kstrtol(psize, 0, &size);
108*c8383054SJeffle Xu 	if (ret) {
109*c8383054SJeffle Xu 		req->error = ret;
110*c8383054SJeffle Xu 		goto out;
111*c8383054SJeffle Xu 	}
112*c8383054SJeffle Xu 
113*c8383054SJeffle Xu 	/* fail OPEN request if daemon reports an error */
114*c8383054SJeffle Xu 	if (size < 0) {
115*c8383054SJeffle Xu 		if (!IS_ERR_VALUE(size))
116*c8383054SJeffle Xu 			size = -EINVAL;
117*c8383054SJeffle Xu 		req->error = size;
118*c8383054SJeffle Xu 		goto out;
119*c8383054SJeffle Xu 	}
120*c8383054SJeffle Xu 
121*c8383054SJeffle Xu 	cookie = req->object->cookie;
122*c8383054SJeffle Xu 	cookie->object_size = size;
123*c8383054SJeffle Xu 	if (size)
124*c8383054SJeffle Xu 		clear_bit(FSCACHE_COOKIE_NO_DATA_TO_READ, &cookie->flags);
125*c8383054SJeffle Xu 	else
126*c8383054SJeffle Xu 		set_bit(FSCACHE_COOKIE_NO_DATA_TO_READ, &cookie->flags);
127*c8383054SJeffle Xu 
128*c8383054SJeffle Xu out:
129*c8383054SJeffle Xu 	complete(&req->done);
130*c8383054SJeffle Xu 	return ret;
131*c8383054SJeffle Xu }
132*c8383054SJeffle Xu 
133*c8383054SJeffle Xu static int cachefiles_ondemand_get_fd(struct cachefiles_req *req)
134*c8383054SJeffle Xu {
135*c8383054SJeffle Xu 	struct cachefiles_object *object;
136*c8383054SJeffle Xu 	struct cachefiles_cache *cache;
137*c8383054SJeffle Xu 	struct cachefiles_open *load;
138*c8383054SJeffle Xu 	struct file *file;
139*c8383054SJeffle Xu 	u32 object_id;
140*c8383054SJeffle Xu 	int ret, fd;
141*c8383054SJeffle Xu 
142*c8383054SJeffle Xu 	object = cachefiles_grab_object(req->object,
143*c8383054SJeffle Xu 			cachefiles_obj_get_ondemand_fd);
144*c8383054SJeffle Xu 	cache = object->volume->cache;
145*c8383054SJeffle Xu 
146*c8383054SJeffle Xu 	ret = xa_alloc_cyclic(&cache->ondemand_ids, &object_id, NULL,
147*c8383054SJeffle Xu 			      XA_LIMIT(1, INT_MAX),
148*c8383054SJeffle Xu 			      &cache->ondemand_id_next, GFP_KERNEL);
149*c8383054SJeffle Xu 	if (ret < 0)
150*c8383054SJeffle Xu 		goto err;
151*c8383054SJeffle Xu 
152*c8383054SJeffle Xu 	fd = get_unused_fd_flags(O_WRONLY);
153*c8383054SJeffle Xu 	if (fd < 0) {
154*c8383054SJeffle Xu 		ret = fd;
155*c8383054SJeffle Xu 		goto err_free_id;
156*c8383054SJeffle Xu 	}
157*c8383054SJeffle Xu 
158*c8383054SJeffle Xu 	file = anon_inode_getfile("[cachefiles]", &cachefiles_ondemand_fd_fops,
159*c8383054SJeffle Xu 				  object, O_WRONLY);
160*c8383054SJeffle Xu 	if (IS_ERR(file)) {
161*c8383054SJeffle Xu 		ret = PTR_ERR(file);
162*c8383054SJeffle Xu 		goto err_put_fd;
163*c8383054SJeffle Xu 	}
164*c8383054SJeffle Xu 
165*c8383054SJeffle Xu 	file->f_mode |= FMODE_PWRITE | FMODE_LSEEK;
166*c8383054SJeffle Xu 	fd_install(fd, file);
167*c8383054SJeffle Xu 
168*c8383054SJeffle Xu 	load = (void *)req->msg.data;
169*c8383054SJeffle Xu 	load->fd = fd;
170*c8383054SJeffle Xu 	req->msg.object_id = object_id;
171*c8383054SJeffle Xu 	object->ondemand_id = object_id;
172*c8383054SJeffle Xu 	return 0;
173*c8383054SJeffle Xu 
174*c8383054SJeffle Xu err_put_fd:
175*c8383054SJeffle Xu 	put_unused_fd(fd);
176*c8383054SJeffle Xu err_free_id:
177*c8383054SJeffle Xu 	xa_erase(&cache->ondemand_ids, object_id);
178*c8383054SJeffle Xu err:
179*c8383054SJeffle Xu 	cachefiles_put_object(object, cachefiles_obj_put_ondemand_fd);
180*c8383054SJeffle Xu 	return ret;
181*c8383054SJeffle Xu }
182*c8383054SJeffle Xu 
183*c8383054SJeffle Xu ssize_t cachefiles_ondemand_daemon_read(struct cachefiles_cache *cache,
184*c8383054SJeffle Xu 					char __user *_buffer, size_t buflen)
185*c8383054SJeffle Xu {
186*c8383054SJeffle Xu 	struct cachefiles_req *req;
187*c8383054SJeffle Xu 	struct cachefiles_msg *msg;
188*c8383054SJeffle Xu 	unsigned long id = 0;
189*c8383054SJeffle Xu 	size_t n;
190*c8383054SJeffle Xu 	int ret = 0;
191*c8383054SJeffle Xu 	XA_STATE(xas, &cache->reqs, 0);
192*c8383054SJeffle Xu 
193*c8383054SJeffle Xu 	/*
194*c8383054SJeffle Xu 	 * Search for a request that has not ever been processed, to prevent
195*c8383054SJeffle Xu 	 * requests from being processed repeatedly.
196*c8383054SJeffle Xu 	 */
197*c8383054SJeffle Xu 	xa_lock(&cache->reqs);
198*c8383054SJeffle Xu 	req = xas_find_marked(&xas, UINT_MAX, CACHEFILES_REQ_NEW);
199*c8383054SJeffle Xu 	if (!req) {
200*c8383054SJeffle Xu 		xa_unlock(&cache->reqs);
201*c8383054SJeffle Xu 		return 0;
202*c8383054SJeffle Xu 	}
203*c8383054SJeffle Xu 
204*c8383054SJeffle Xu 	msg = &req->msg;
205*c8383054SJeffle Xu 	n = msg->len;
206*c8383054SJeffle Xu 
207*c8383054SJeffle Xu 	if (n > buflen) {
208*c8383054SJeffle Xu 		xa_unlock(&cache->reqs);
209*c8383054SJeffle Xu 		return -EMSGSIZE;
210*c8383054SJeffle Xu 	}
211*c8383054SJeffle Xu 
212*c8383054SJeffle Xu 	xas_clear_mark(&xas, CACHEFILES_REQ_NEW);
213*c8383054SJeffle Xu 	xa_unlock(&cache->reqs);
214*c8383054SJeffle Xu 
215*c8383054SJeffle Xu 	id = xas.xa_index;
216*c8383054SJeffle Xu 	msg->msg_id = id;
217*c8383054SJeffle Xu 
218*c8383054SJeffle Xu 	if (msg->opcode == CACHEFILES_OP_OPEN) {
219*c8383054SJeffle Xu 		ret = cachefiles_ondemand_get_fd(req);
220*c8383054SJeffle Xu 		if (ret)
221*c8383054SJeffle Xu 			goto error;
222*c8383054SJeffle Xu 	}
223*c8383054SJeffle Xu 
224*c8383054SJeffle Xu 	if (copy_to_user(_buffer, msg, n) != 0) {
225*c8383054SJeffle Xu 		ret = -EFAULT;
226*c8383054SJeffle Xu 		goto err_put_fd;
227*c8383054SJeffle Xu 	}
228*c8383054SJeffle Xu 
229*c8383054SJeffle Xu 	return n;
230*c8383054SJeffle Xu 
231*c8383054SJeffle Xu err_put_fd:
232*c8383054SJeffle Xu 	if (msg->opcode == CACHEFILES_OP_OPEN)
233*c8383054SJeffle Xu 		close_fd(((struct cachefiles_open *)msg->data)->fd);
234*c8383054SJeffle Xu error:
235*c8383054SJeffle Xu 	xa_erase(&cache->reqs, id);
236*c8383054SJeffle Xu 	req->error = ret;
237*c8383054SJeffle Xu 	complete(&req->done);
238*c8383054SJeffle Xu 	return ret;
239*c8383054SJeffle Xu }
240*c8383054SJeffle Xu 
241*c8383054SJeffle Xu typedef int (*init_req_fn)(struct cachefiles_req *req, void *private);
242*c8383054SJeffle Xu 
243*c8383054SJeffle Xu static int cachefiles_ondemand_send_req(struct cachefiles_object *object,
244*c8383054SJeffle Xu 					enum cachefiles_opcode opcode,
245*c8383054SJeffle Xu 					size_t data_len,
246*c8383054SJeffle Xu 					init_req_fn init_req,
247*c8383054SJeffle Xu 					void *private)
248*c8383054SJeffle Xu {
249*c8383054SJeffle Xu 	struct cachefiles_cache *cache = object->volume->cache;
250*c8383054SJeffle Xu 	struct cachefiles_req *req;
251*c8383054SJeffle Xu 	XA_STATE(xas, &cache->reqs, 0);
252*c8383054SJeffle Xu 	int ret;
253*c8383054SJeffle Xu 
254*c8383054SJeffle Xu 	if (!test_bit(CACHEFILES_ONDEMAND_MODE, &cache->flags))
255*c8383054SJeffle Xu 		return 0;
256*c8383054SJeffle Xu 
257*c8383054SJeffle Xu 	if (test_bit(CACHEFILES_DEAD, &cache->flags))
258*c8383054SJeffle Xu 		return -EIO;
259*c8383054SJeffle Xu 
260*c8383054SJeffle Xu 	req = kzalloc(sizeof(*req) + data_len, GFP_KERNEL);
261*c8383054SJeffle Xu 	if (!req)
262*c8383054SJeffle Xu 		return -ENOMEM;
263*c8383054SJeffle Xu 
264*c8383054SJeffle Xu 	req->object = object;
265*c8383054SJeffle Xu 	init_completion(&req->done);
266*c8383054SJeffle Xu 	req->msg.opcode = opcode;
267*c8383054SJeffle Xu 	req->msg.len = sizeof(struct cachefiles_msg) + data_len;
268*c8383054SJeffle Xu 
269*c8383054SJeffle Xu 	ret = init_req(req, private);
270*c8383054SJeffle Xu 	if (ret)
271*c8383054SJeffle Xu 		goto out;
272*c8383054SJeffle Xu 
273*c8383054SJeffle Xu 	do {
274*c8383054SJeffle Xu 		/*
275*c8383054SJeffle Xu 		 * Stop enqueuing the request when daemon is dying. The
276*c8383054SJeffle Xu 		 * following two operations need to be atomic as a whole.
277*c8383054SJeffle Xu 		 *   1) check cache state, and
278*c8383054SJeffle Xu 		 *   2) enqueue request if cache is alive.
279*c8383054SJeffle Xu 		 * Otherwise the request may be enqueued after xarray has been
280*c8383054SJeffle Xu 		 * flushed, leaving the orphan request never being completed.
281*c8383054SJeffle Xu 		 *
282*c8383054SJeffle Xu 		 * CPU 1			CPU 2
283*c8383054SJeffle Xu 		 * =====			=====
284*c8383054SJeffle Xu 		 *				test CACHEFILES_DEAD bit
285*c8383054SJeffle Xu 		 * set CACHEFILES_DEAD bit
286*c8383054SJeffle Xu 		 * flush requests in the xarray
287*c8383054SJeffle Xu 		 *				enqueue the request
288*c8383054SJeffle Xu 		 */
289*c8383054SJeffle Xu 		xas_lock(&xas);
290*c8383054SJeffle Xu 
291*c8383054SJeffle Xu 		if (test_bit(CACHEFILES_DEAD, &cache->flags)) {
292*c8383054SJeffle Xu 			xas_unlock(&xas);
293*c8383054SJeffle Xu 			ret = -EIO;
294*c8383054SJeffle Xu 			goto out;
295*c8383054SJeffle Xu 		}
296*c8383054SJeffle Xu 
297*c8383054SJeffle Xu 		/* coupled with the barrier in cachefiles_flush_reqs() */
298*c8383054SJeffle Xu 		smp_mb();
299*c8383054SJeffle Xu 
300*c8383054SJeffle Xu 		xas.xa_index = 0;
301*c8383054SJeffle Xu 		xas_find_marked(&xas, UINT_MAX, XA_FREE_MARK);
302*c8383054SJeffle Xu 		if (xas.xa_node == XAS_RESTART)
303*c8383054SJeffle Xu 			xas_set_err(&xas, -EBUSY);
304*c8383054SJeffle Xu 		xas_store(&xas, req);
305*c8383054SJeffle Xu 		xas_clear_mark(&xas, XA_FREE_MARK);
306*c8383054SJeffle Xu 		xas_set_mark(&xas, CACHEFILES_REQ_NEW);
307*c8383054SJeffle Xu 		xas_unlock(&xas);
308*c8383054SJeffle Xu 	} while (xas_nomem(&xas, GFP_KERNEL));
309*c8383054SJeffle Xu 
310*c8383054SJeffle Xu 	ret = xas_error(&xas);
311*c8383054SJeffle Xu 	if (ret)
312*c8383054SJeffle Xu 		goto out;
313*c8383054SJeffle Xu 
314*c8383054SJeffle Xu 	wake_up_all(&cache->daemon_pollwq);
315*c8383054SJeffle Xu 	wait_for_completion(&req->done);
316*c8383054SJeffle Xu 	ret = req->error;
317*c8383054SJeffle Xu out:
318*c8383054SJeffle Xu 	kfree(req);
319*c8383054SJeffle Xu 	return ret;
320*c8383054SJeffle Xu }
321*c8383054SJeffle Xu 
322*c8383054SJeffle Xu static int cachefiles_ondemand_init_open_req(struct cachefiles_req *req,
323*c8383054SJeffle Xu 					     void *private)
324*c8383054SJeffle Xu {
325*c8383054SJeffle Xu 	struct cachefiles_object *object = req->object;
326*c8383054SJeffle Xu 	struct fscache_cookie *cookie = object->cookie;
327*c8383054SJeffle Xu 	struct fscache_volume *volume = object->volume->vcookie;
328*c8383054SJeffle Xu 	struct cachefiles_open *load = (void *)req->msg.data;
329*c8383054SJeffle Xu 	size_t volume_key_size, cookie_key_size;
330*c8383054SJeffle Xu 	void *volume_key, *cookie_key;
331*c8383054SJeffle Xu 
332*c8383054SJeffle Xu 	/*
333*c8383054SJeffle Xu 	 * Volume key is a NUL-terminated string. key[0] stores strlen() of the
334*c8383054SJeffle Xu 	 * string, followed by the content of the string (excluding '\0').
335*c8383054SJeffle Xu 	 */
336*c8383054SJeffle Xu 	volume_key_size = volume->key[0] + 1;
337*c8383054SJeffle Xu 	volume_key = volume->key + 1;
338*c8383054SJeffle Xu 
339*c8383054SJeffle Xu 	/* Cookie key is binary data, which is netfs specific. */
340*c8383054SJeffle Xu 	cookie_key_size = cookie->key_len;
341*c8383054SJeffle Xu 	cookie_key = fscache_get_key(cookie);
342*c8383054SJeffle Xu 
343*c8383054SJeffle Xu 	if (!(object->cookie->advice & FSCACHE_ADV_WANT_CACHE_SIZE)) {
344*c8383054SJeffle Xu 		pr_err("WANT_CACHE_SIZE is needed for on-demand mode\n");
345*c8383054SJeffle Xu 		return -EINVAL;
346*c8383054SJeffle Xu 	}
347*c8383054SJeffle Xu 
348*c8383054SJeffle Xu 	load->volume_key_size = volume_key_size;
349*c8383054SJeffle Xu 	load->cookie_key_size = cookie_key_size;
350*c8383054SJeffle Xu 	memcpy(load->data, volume_key, volume_key_size);
351*c8383054SJeffle Xu 	memcpy(load->data + volume_key_size, cookie_key, cookie_key_size);
352*c8383054SJeffle Xu 
353*c8383054SJeffle Xu 	return 0;
354*c8383054SJeffle Xu }
355*c8383054SJeffle Xu 
356*c8383054SJeffle Xu int cachefiles_ondemand_init_object(struct cachefiles_object *object)
357*c8383054SJeffle Xu {
358*c8383054SJeffle Xu 	struct fscache_cookie *cookie = object->cookie;
359*c8383054SJeffle Xu 	struct fscache_volume *volume = object->volume->vcookie;
360*c8383054SJeffle Xu 	size_t volume_key_size, cookie_key_size, data_len;
361*c8383054SJeffle Xu 
362*c8383054SJeffle Xu 	/*
363*c8383054SJeffle Xu 	 * CacheFiles will firstly check the cache file under the root cache
364*c8383054SJeffle Xu 	 * directory. If the coherency check failed, it will fallback to
365*c8383054SJeffle Xu 	 * creating a new tmpfile as the cache file. Reuse the previously
366*c8383054SJeffle Xu 	 * allocated object ID if any.
367*c8383054SJeffle Xu 	 */
368*c8383054SJeffle Xu 	if (object->ondemand_id > 0)
369*c8383054SJeffle Xu 		return 0;
370*c8383054SJeffle Xu 
371*c8383054SJeffle Xu 	volume_key_size = volume->key[0] + 1;
372*c8383054SJeffle Xu 	cookie_key_size = cookie->key_len;
373*c8383054SJeffle Xu 	data_len = sizeof(struct cachefiles_open) +
374*c8383054SJeffle Xu 		   volume_key_size + cookie_key_size;
375*c8383054SJeffle Xu 
376*c8383054SJeffle Xu 	return cachefiles_ondemand_send_req(object, CACHEFILES_OP_OPEN,
377*c8383054SJeffle Xu 			data_len, cachefiles_ondemand_init_open_req, NULL);
378*c8383054SJeffle Xu }
379