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1
/*
1
/*
2
 * Copyright (c) 2008 Jakub Jermar
2
 * Copyright (c) 2008 Jakub Jermar
3
 * All rights reserved.
3
 * All rights reserved.
4
 *
4
 *
5
 * Redistribution and use in source and binary forms, with or without
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions
6
 * modification, are permitted provided that the following conditions
7
 * are met:
7
 * are met:
8
 *
8
 *
9
 * - Redistributions of source code must retain the above copyright
9
 * - Redistributions of source code must retain the above copyright
10
 *   notice, this list of conditions and the following disclaimer.
10
 *   notice, this list of conditions and the following disclaimer.
11
 * - Redistributions in binary form must reproduce the above copyright
11
 * - Redistributions in binary form must reproduce the above copyright
12
 *   notice, this list of conditions and the following disclaimer in the
12
 *   notice, this list of conditions and the following disclaimer in the
13
 *   documentation and/or other materials provided with the distribution.
13
 *   documentation and/or other materials provided with the distribution.
14
 * - The name of the author may not be used to endorse or promote products
14
 * - The name of the author may not be used to endorse or promote products
15
 *   derived from this software without specific prior written permission.
15
 *   derived from this software without specific prior written permission.
16
 *
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
 */
27
 */
28
 
28
 
29
/** @addtogroup fs
29
/** @addtogroup fs
30
 * @{
30
 * @{
31
 */
31
 */
32
 
32
 
33
/**
33
/**
34
 * @file vfs_ops.c
34
 * @file vfs_ops.c
35
 * @brief Operations that VFS offers to its clients.
35
 * @brief Operations that VFS offers to its clients.
36
 */
36
 */
37
 
37
 
38
#include "vfs.h"
38
#include "vfs.h"
39
#include <ipc/ipc.h>
39
#include <ipc/ipc.h>
40
#include <async.h>
40
#include <async.h>
41
#include <errno.h>
41
#include <errno.h>
42
#include <stdio.h>
42
#include <stdio.h>
43
#include <stdlib.h>
43
#include <stdlib.h>
44
#include <string.h>
44
#include <string.h>
45
#include <bool.h>
45
#include <bool.h>
46
#include <futex.h>
46
#include <futex.h>
47
#include <rwlock.h>
47
#include <fibril_sync.h>
48
#include <libadt/list.h>
48
#include <adt/list.h>
49
#include <unistd.h>
49
#include <unistd.h>
50
#include <ctype.h>
50
#include <ctype.h>
51
#include <fcntl.h>
51
#include <fcntl.h>
52
#include <assert.h>
52
#include <assert.h>
53
#include <vfs/canonify.h>
53
#include <vfs/canonify.h>
54
 
54
 
55
/* Forward declarations of static functions. */
55
/* Forward declarations of static functions. */
56
static int vfs_truncate_internal(fs_handle_t, dev_handle_t, fs_index_t, size_t);
56
static int vfs_truncate_internal(fs_handle_t, dev_handle_t, fs_index_t, size_t);
57
 
57
 
58
/** Pending mount structure. */
58
/** Pending mount structure. */
59
typedef struct {
59
typedef struct {
60
    link_t link;
60
    link_t link;
61
    char *fs_name;            /**< File system name */
61
    char *fs_name;            /**< File system name */
62
    char *mp;                 /**< Mount point */
62
    char *mp;                 /**< Mount point */
63
    char *opts;       /**< Mount options. */
63
    char *opts;       /**< Mount options. */
64
    ipc_callid_t callid;      /**< Call ID waiting for the mount */
64
    ipc_callid_t callid;      /**< Call ID waiting for the mount */
65
    ipc_callid_t rid;         /**< Request ID */
65
    ipc_callid_t rid;         /**< Request ID */
66
    dev_handle_t dev_handle;  /**< Device handle */
66
    dev_handle_t dev_handle;  /**< Device handle */
67
} pending_req_t;
67
} pending_req_t;
68
 
68
 
-
 
69
FIBRIL_MUTEX_INITIALIZE(pending_lock);
69
LIST_INITIALIZE(pending_req);
70
LIST_INITIALIZE(pending_req);
70
 
71
 
71
/**
72
/**
72
 * This rwlock prevents the race between a triplet-to-VFS-node resolution and a
73
 * This rwlock prevents the race between a triplet-to-VFS-node resolution and a
73
 * concurrent VFS operation which modifies the file system namespace.
74
 * concurrent VFS operation which modifies the file system namespace.
74
 */
75
 */
75
RWLOCK_INITIALIZE(namespace_rwlock);
76
FIBRIL_RWLOCK_INITIALIZE(namespace_rwlock);
76
 
77
 
77
vfs_pair_t rootfs = {
78
vfs_pair_t rootfs = {
78
    .fs_handle = 0,
79
    .fs_handle = 0,
79
    .dev_handle = 0
80
    .dev_handle = 0
80
};
81
};
81
 
82
 
82
static void vfs_mount_internal(ipc_callid_t rid, dev_handle_t dev_handle,
83
static void vfs_mount_internal(ipc_callid_t rid, dev_handle_t dev_handle,
83
    fs_handle_t fs_handle, char *mp, char *opts)
84
    fs_handle_t fs_handle, char *mp, char *opts)
84
{
85
{
85
    vfs_lookup_res_t mp_res;
86
    vfs_lookup_res_t mp_res;
86
    vfs_lookup_res_t mr_res;
87
    vfs_lookup_res_t mr_res;
87
    vfs_node_t *mp_node = NULL;
88
    vfs_node_t *mp_node = NULL;
88
    vfs_node_t *mr_node;
89
    vfs_node_t *mr_node;
89
    fs_index_t rindex;
90
    fs_index_t rindex;
90
    size_t rsize;
91
    size_t rsize;
91
    unsigned rlnkcnt;
92
    unsigned rlnkcnt;
92
    ipcarg_t rc;
93
    ipcarg_t rc;
93
    int phone;
94
    int phone;
94
    aid_t msg;
95
    aid_t msg;
95
    ipc_call_t answer;
96
    ipc_call_t answer;
96
           
97
   
97
    /* Resolve the path to the mountpoint. */
98
    /* Resolve the path to the mountpoint. */
98
    rwlock_write_lock(&namespace_rwlock);
99
    fibril_rwlock_write_lock(&namespace_rwlock);
99
    if (rootfs.fs_handle) {
100
    if (rootfs.fs_handle) {
100
        /* We already have the root FS. */
101
        /* We already have the root FS. */
101
        if (str_cmp(mp, "/") == 0) {
102
        if (str_cmp(mp, "/") == 0) {
102
            /* Trying to mount root FS over root FS */
103
            /* Trying to mount root FS over root FS */
-
 
104
            fibril_rwlock_write_unlock(&namespace_rwlock);
103
            ipc_answer_0(rid, EBUSY);
105
            ipc_answer_0(rid, EBUSY);
104
            rwlock_write_unlock(&namespace_rwlock);
-
 
105
            return;
106
            return;
106
        }
107
        }
107
       
108
       
108
        rc = vfs_lookup_internal(mp, L_DIRECTORY, &mp_res, NULL);
109
        rc = vfs_lookup_internal(mp, L_DIRECTORY, &mp_res, NULL);
109
        if (rc != EOK) {
110
        if (rc != EOK) {
110
            /* The lookup failed for some reason. */
111
            /* The lookup failed for some reason. */
-
 
112
            fibril_rwlock_write_unlock(&namespace_rwlock);
111
            ipc_answer_0(rid, rc);
113
            ipc_answer_0(rid, rc);
112
            rwlock_write_unlock(&namespace_rwlock);
-
 
113
            return;
114
            return;
114
        }
115
        }
115
       
116
       
116
        mp_node = vfs_node_get(&mp_res);
117
        mp_node = vfs_node_get(&mp_res);
117
        if (!mp_node) {
118
        if (!mp_node) {
-
 
119
            fibril_rwlock_write_unlock(&namespace_rwlock);
118
            ipc_answer_0(rid, ENOMEM);
120
            ipc_answer_0(rid, ENOMEM);
119
            rwlock_write_unlock(&namespace_rwlock);
-
 
120
            return;
121
            return;
121
        }
122
        }
122
       
123
       
123
        /*
124
        /*
124
         * Now we hold a reference to mp_node.
125
         * Now we hold a reference to mp_node.
125
         * It will be dropped upon the corresponding VFS_UNMOUNT.
126
         * It will be dropped upon the corresponding VFS_UNMOUNT.
126
         * This prevents the mount point from being deleted.
127
         * This prevents the mount point from being deleted.
127
         */
128
         */
128
    } else {
129
    } else {
129
        /* We still don't have the root file system mounted. */
130
        /* We still don't have the root file system mounted. */
130
        if (str_cmp(mp, "/") == 0) {
131
        if (str_cmp(mp, "/") == 0) {
131
            /*
132
            /*
132
             * For this simple, but important case,
133
             * For this simple, but important case,
133
             * we are almost done.
134
             * we are almost done.
134
             */
135
             */
135
           
136
           
136
            /* Tell the mountee that it is being mounted. */
137
            /* Tell the mountee that it is being mounted. */
137
            phone = vfs_grab_phone(fs_handle);
138
            phone = vfs_grab_phone(fs_handle);
138
            msg = async_send_1(phone, VFS_MOUNTED,
139
            msg = async_send_1(phone, VFS_MOUNTED,
139
                (ipcarg_t) dev_handle, &answer);
140
                (ipcarg_t) dev_handle, &answer);
140
            /* send the mount options */
141
            /* send the mount options */
141
            rc = ipc_data_write_start(phone, (void *)opts,
142
            rc = ipc_data_write_start(phone, (void *)opts,
142
                str_size(opts));
143
                str_size(opts));
143
            if (rc != EOK) {
144
            if (rc != EOK) {
144
                async_wait_for(msg, NULL);
-
 
145
                vfs_release_phone(phone);
145
                vfs_release_phone(phone);
-
 
146
                async_wait_for(msg, NULL);
-
 
147
                fibril_rwlock_write_unlock(&namespace_rwlock);
146
                ipc_answer_0(rid, rc);
148
                ipc_answer_0(rid, rc);
147
                rwlock_write_unlock(&namespace_rwlock);
-
 
148
                return;
149
                return;
149
            }
150
            }
150
            async_wait_for(msg, &rc);
-
 
151
            vfs_release_phone(phone);
151
            vfs_release_phone(phone);
-
 
152
            async_wait_for(msg, &rc);
152
           
153
           
153
            if (rc != EOK) {
154
            if (rc != EOK) {
-
 
155
                fibril_rwlock_write_unlock(&namespace_rwlock);
154
                ipc_answer_0(rid, rc);
156
                ipc_answer_0(rid, rc);
155
                rwlock_write_unlock(&namespace_rwlock);
-
 
156
                return;
157
                return;
157
            }
158
            }
158
 
159
 
159
            rindex = (fs_index_t) IPC_GET_ARG1(answer);
160
            rindex = (fs_index_t) IPC_GET_ARG1(answer);
160
            rsize = (size_t) IPC_GET_ARG2(answer);
161
            rsize = (size_t) IPC_GET_ARG2(answer);
161
            rlnkcnt = (unsigned) IPC_GET_ARG3(answer);
162
            rlnkcnt = (unsigned) IPC_GET_ARG3(answer);
162
           
163
           
163
            mr_res.triplet.fs_handle = fs_handle;
164
            mr_res.triplet.fs_handle = fs_handle;
164
            mr_res.triplet.dev_handle = dev_handle;
165
            mr_res.triplet.dev_handle = dev_handle;
165
            mr_res.triplet.index = rindex;
166
            mr_res.triplet.index = rindex;
166
            mr_res.size = rsize;
167
            mr_res.size = rsize;
167
            mr_res.lnkcnt = rlnkcnt;
168
            mr_res.lnkcnt = rlnkcnt;
168
            mr_res.type = VFS_NODE_DIRECTORY;
169
            mr_res.type = VFS_NODE_DIRECTORY;
169
           
170
           
170
            rootfs.fs_handle = fs_handle;
171
            rootfs.fs_handle = fs_handle;
171
            rootfs.dev_handle = dev_handle;
172
            rootfs.dev_handle = dev_handle;
172
           
173
           
173
            /* Add reference to the mounted root. */
174
            /* Add reference to the mounted root. */
174
            mr_node = vfs_node_get(&mr_res);
175
            mr_node = vfs_node_get(&mr_res);
175
            assert(mr_node);
176
            assert(mr_node);
176
           
177
           
-
 
178
            fibril_rwlock_write_unlock(&namespace_rwlock);
177
            ipc_answer_0(rid, rc);
179
            ipc_answer_0(rid, rc);
178
            rwlock_write_unlock(&namespace_rwlock);
-
 
179
            return;
180
            return;
180
        } else {
181
        } else {
181
            /*
182
            /*
182
             * We can't resolve this without the root filesystem
183
             * We can't resolve this without the root filesystem
183
             * being mounted first.
184
             * being mounted first.
184
             */
185
             */
-
 
186
            fibril_rwlock_write_unlock(&namespace_rwlock);
185
            ipc_answer_0(rid, ENOENT);
187
            ipc_answer_0(rid, ENOENT);
186
            rwlock_write_unlock(&namespace_rwlock);
-
 
187
            return;
188
            return;
188
        }
189
        }
189
    }
190
    }
190
   
191
   
191
    /*
192
    /*
192
     * At this point, we have all necessary pieces: file system and device
193
     * At this point, we have all necessary pieces: file system and device
193
     * handles, and we know the mount point VFS node.
194
     * handles, and we know the mount point VFS node.
194
     */
195
     */
195
   
196
   
196
    int mountee_phone = vfs_grab_phone(fs_handle);
197
    int mountee_phone = vfs_grab_phone(fs_handle);
197
    assert(mountee_phone >= 0);
198
    assert(mountee_phone >= 0);
198
    vfs_release_phone(mountee_phone);
199
    vfs_release_phone(mountee_phone);
199
 
200
 
200
    phone = vfs_grab_phone(mp_res.triplet.fs_handle);
201
    phone = vfs_grab_phone(mp_res.triplet.fs_handle);
201
    msg = async_send_4(phone, VFS_MOUNT,
202
    msg = async_send_4(phone, VFS_MOUNT,
202
        (ipcarg_t) mp_res.triplet.dev_handle,
203
        (ipcarg_t) mp_res.triplet.dev_handle,
203
        (ipcarg_t) mp_res.triplet.index,
204
        (ipcarg_t) mp_res.triplet.index,
204
        (ipcarg_t) fs_handle,
205
        (ipcarg_t) fs_handle,
205
        (ipcarg_t) dev_handle, &answer);
206
        (ipcarg_t) dev_handle, &answer);
206
   
207
   
207
    /* send connection */
208
    /* send connection */
208
    rc = async_req_1_0(phone, IPC_M_CONNECTION_CLONE, mountee_phone);
209
    rc = async_req_1_0(phone, IPC_M_CONNECTION_CLONE, mountee_phone);
209
    if (rc != EOK) {
210
    if (rc != EOK) {
210
        async_wait_for(msg, NULL);
-
 
211
        vfs_release_phone(phone);
211
        vfs_release_phone(phone);
-
 
212
        async_wait_for(msg, NULL);
212
        /* Mount failed, drop reference to mp_node. */
213
        /* Mount failed, drop reference to mp_node. */
213
        if (mp_node)
214
        if (mp_node)
214
            vfs_node_put(mp_node);
215
            vfs_node_put(mp_node);
215
        ipc_answer_0(rid, rc);
216
        ipc_answer_0(rid, rc);
216
        rwlock_write_unlock(&namespace_rwlock);
217
        fibril_rwlock_write_unlock(&namespace_rwlock);
217
        return;
218
        return;
218
    }
219
    }
219
   
220
   
220
    /* send the mount options */
221
    /* send the mount options */
221
    rc = ipc_data_write_start(phone, (void *)opts, str_size(opts));
222
    rc = ipc_data_write_start(phone, (void *)opts, str_size(opts));
222
    if (rc != EOK) {
223
    if (rc != EOK) {
223
        async_wait_for(msg, NULL);
-
 
224
        vfs_release_phone(phone);
224
        vfs_release_phone(phone);
-
 
225
        async_wait_for(msg, NULL);
225
        /* Mount failed, drop reference to mp_node. */
226
        /* Mount failed, drop reference to mp_node. */
226
        if (mp_node)
227
        if (mp_node)
227
            vfs_node_put(mp_node);
228
            vfs_node_put(mp_node);
-
 
229
        fibril_rwlock_write_unlock(&namespace_rwlock);
228
        ipc_answer_0(rid, rc);
230
        ipc_answer_0(rid, rc);
229
        rwlock_write_unlock(&namespace_rwlock);
-
 
230
        return;
231
        return;
231
    }
232
    }
232
    async_wait_for(msg, &rc);
-
 
233
    vfs_release_phone(phone);
233
    vfs_release_phone(phone);
-
 
234
    async_wait_for(msg, &rc);
234
   
235
   
235
    if (rc == EOK) {
236
    if (rc == EOK) {
236
        rindex = (fs_index_t) IPC_GET_ARG1(answer);
237
        rindex = (fs_index_t) IPC_GET_ARG1(answer);
237
        rsize = (size_t) IPC_GET_ARG2(answer);
238
        rsize = (size_t) IPC_GET_ARG2(answer);
238
        rlnkcnt = (unsigned) IPC_GET_ARG3(answer);
239
        rlnkcnt = (unsigned) IPC_GET_ARG3(answer);
239
   
240
   
240
        mr_res.triplet.fs_handle = fs_handle;
241
        mr_res.triplet.fs_handle = fs_handle;
241
        mr_res.triplet.dev_handle = dev_handle;
242
        mr_res.triplet.dev_handle = dev_handle;
242
        mr_res.triplet.index = rindex;
243
        mr_res.triplet.index = rindex;
243
        mr_res.size = rsize;
244
        mr_res.size = rsize;
244
        mr_res.lnkcnt = rlnkcnt;
245
        mr_res.lnkcnt = rlnkcnt;
245
        mr_res.type = VFS_NODE_DIRECTORY;
246
        mr_res.type = VFS_NODE_DIRECTORY;
246
   
247
   
247
        /* Add reference to the mounted root. */
248
        /* Add reference to the mounted root. */
248
        mr_node = vfs_node_get(&mr_res);
249
        mr_node = vfs_node_get(&mr_res);
249
        assert(mr_node);
250
        assert(mr_node);
250
    } else {
251
    } else {
251
        /* Mount failed, drop reference to mp_node. */
252
        /* Mount failed, drop reference to mp_node. */
252
        if (mp_node)
253
        if (mp_node)
253
            vfs_node_put(mp_node);
254
            vfs_node_put(mp_node);
254
    }
255
    }
255
 
256
 
256
    ipc_answer_0(rid, rc);
257
    ipc_answer_0(rid, rc);
257
    rwlock_write_unlock(&namespace_rwlock);
258
    fibril_rwlock_write_unlock(&namespace_rwlock);
258
}
259
}
259
 
260
 
260
/** Process pending mount requests */
261
/** Process pending mount requests */
261
void vfs_process_pending_mount(void)
262
void vfs_process_pending_mount(void)
262
{
263
{
263
    link_t *cur;
264
    link_t *cur;
264
   
265
   
265
loop:
266
loop:
-
 
267
    fibril_mutex_lock(&pending_lock);
266
    for (cur = pending_req.next; cur != &pending_req; cur = cur->next) {
268
    for (cur = pending_req.next; cur != &pending_req; cur = cur->next) {
267
        pending_req_t *pr = list_get_instance(cur, pending_req_t, link);
269
        pending_req_t *pr = list_get_instance(cur, pending_req_t, link);
268
       
270
 
269
        fs_handle_t fs_handle = fs_name_to_handle(pr->fs_name, true);
271
        fs_handle_t fs_handle = fs_name_to_handle(pr->fs_name, true);
270
        if (!fs_handle)
272
        if (!fs_handle)
271
            continue;
273
            continue;
272
       
274
       
273
        /* Acknowledge that we know fs_name. */
275
        /* Acknowledge that we know fs_name. */
274
        ipc_answer_0(pr->callid, EOK);
276
        ipc_answer_0(pr->callid, EOK);
275
       
277
       
276
        /* Do the mount */
278
        /* Do the mount */
277
        vfs_mount_internal(pr->rid, pr->dev_handle, fs_handle, pr->mp,
279
        vfs_mount_internal(pr->rid, pr->dev_handle, fs_handle, pr->mp,
278
            pr->opts);
280
            pr->opts);
279
       
281
       
280
        free(pr->fs_name);
282
        free(pr->fs_name);
281
        free(pr->mp);
283
        free(pr->mp);
282
        free(pr->opts);
284
        free(pr->opts);
283
        list_remove(cur);
285
        list_remove(cur);
284
        free(pr);
286
        free(pr);
-
 
287
        fibril_mutex_unlock(&pending_lock);
-
 
288
        fibril_yield();
285
        goto loop;
289
        goto loop;
286
    }
290
    }
-
 
291
    fibril_mutex_unlock(&pending_lock);
287
}
292
}
288
 
293
 
289
void vfs_mount(ipc_callid_t rid, ipc_call_t *request)
294
void vfs_mount(ipc_callid_t rid, ipc_call_t *request)
290
{
295
{
291
    /*
296
    /*
292
     * We expect the library to do the device-name to device-handle
297
     * We expect the library to do the device-name to device-handle
293
     * translation for us, thus the device handle will arrive as ARG1
298
     * translation for us, thus the device handle will arrive as ARG1
294
     * in the request.
299
     * in the request.
295
     */
300
     */
296
    dev_handle_t dev_handle = (dev_handle_t) IPC_GET_ARG1(*request);
301
    dev_handle_t dev_handle = (dev_handle_t) IPC_GET_ARG1(*request);
297
   
302
   
298
    /*
303
    /*
299
     * Mount flags are passed as ARG2.
304
     * Mount flags are passed as ARG2.
300
     */
305
     */
301
    unsigned int flags = (unsigned int) IPC_GET_ARG2(*request);
306
    unsigned int flags = (unsigned int) IPC_GET_ARG2(*request);
302
   
307
   
303
    /*
308
    /*
304
     * For now, don't make use of ARG3, but it can be used to
309
     * For now, don't make use of ARG3, but it can be used to
305
     * carry mount options in the future.
310
     * carry mount options in the future.
306
     */
311
     */
307
   
312
   
308
    /* We want the client to send us the mount point. */
313
    /* We want the client to send us the mount point. */
309
    ipc_callid_t callid;
314
    ipc_callid_t callid;
310
    size_t size;
315
    size_t size;
311
    if (!ipc_data_write_receive(&callid, &size)) {
316
    if (!ipc_data_write_receive(&callid, &size)) {
312
        ipc_answer_0(callid, EINVAL);
317
        ipc_answer_0(callid, EINVAL);
313
        ipc_answer_0(rid, EINVAL);
318
        ipc_answer_0(rid, EINVAL);
314
        return;
319
        return;
315
    }
320
    }
316
   
321
   
317
    /* Check whether size is reasonable wrt. the mount point. */
322
    /* Check whether size is reasonable wrt. the mount point. */
318
    if ((size < 1) || (size > MAX_PATH_LEN)) {
323
    if ((size < 1) || (size > MAX_PATH_LEN)) {
319
        ipc_answer_0(callid, EINVAL);
324
        ipc_answer_0(callid, EINVAL);
320
        ipc_answer_0(rid, EINVAL);
325
        ipc_answer_0(rid, EINVAL);
321
        return;
326
        return;
322
    }
327
    }
323
   
328
   
324
    /* Allocate buffer for the mount point data being received. */
329
    /* Allocate buffer for the mount point data being received. */
325
    char *mp = malloc(size + 1);
330
    char *mp = malloc(size + 1);
326
    if (!mp) {
331
    if (!mp) {
327
        ipc_answer_0(callid, ENOMEM);
332
        ipc_answer_0(callid, ENOMEM);
328
        ipc_answer_0(rid, ENOMEM);
333
        ipc_answer_0(rid, ENOMEM);
329
        return;
334
        return;
330
    }
335
    }
331
   
336
   
332
    /* Deliver the mount point. */
337
    /* Deliver the mount point. */
333
    ipcarg_t retval = ipc_data_write_finalize(callid, mp, size);
338
    ipcarg_t retval = ipc_data_write_finalize(callid, mp, size);
334
    if (retval != EOK) {
339
    if (retval != EOK) {
335
        ipc_answer_0(rid, retval);
340
        ipc_answer_0(rid, retval);
336
        free(mp);
341
        free(mp);
337
        return;
342
        return;
338
    }
343
    }
339
    mp[size] = '\0';
344
    mp[size] = '\0';
340
   
345
   
341
    /* Now we expect to receive the mount options. */
346
    /* Now we expect to receive the mount options. */
342
    if (!ipc_data_write_receive(&callid, &size)) {
347
    if (!ipc_data_write_receive(&callid, &size)) {
343
        ipc_answer_0(callid, EINVAL);
348
        ipc_answer_0(callid, EINVAL);
344
        ipc_answer_0(rid, EINVAL);
349
        ipc_answer_0(rid, EINVAL);
345
        free(mp);
350
        free(mp);
346
        return;
351
        return;
347
    }
352
    }
348
 
353
 
349
    /* Check the offered options size. */
354
    /* Check the offered options size. */
350
    if (size < 0 || size > MAX_MNTOPTS_LEN) {
355
    if (size < 0 || size > MAX_MNTOPTS_LEN) {
351
        ipc_answer_0(callid, EINVAL);
356
        ipc_answer_0(callid, EINVAL);
352
        ipc_answer_0(rid, EINVAL);
357
        ipc_answer_0(rid, EINVAL);
353
        free(mp);
358
        free(mp);
354
        return;
359
        return;
355
    }
360
    }
356
 
361
 
357
    /* Allocate buffer for the mount options. */
362
    /* Allocate buffer for the mount options. */
358
    char *opts = (char *) malloc(size + 1);
363
    char *opts = (char *) malloc(size + 1);
359
    if (!opts) {
364
    if (!opts) {
360
        ipc_answer_0(callid, ENOMEM);
365
        ipc_answer_0(callid, ENOMEM);
361
        ipc_answer_0(rid, ENOMEM);
366
        ipc_answer_0(rid, ENOMEM);
362
        free(mp);
367
        free(mp);
363
        return;
368
        return;
364
    }
369
    }
365
 
370
 
366
    /* Deliver the mount options. */
371
    /* Deliver the mount options. */
367
    retval = ipc_data_write_finalize(callid, opts, size);
372
    retval = ipc_data_write_finalize(callid, opts, size);
368
    if (retval != EOK) {
373
    if (retval != EOK) {
369
        ipc_answer_0(rid, retval);
374
        ipc_answer_0(rid, retval);
370
        free(mp);
375
        free(mp);
371
        free(opts);
376
        free(opts);
372
        return;
377
        return;
373
    }
378
    }
374
    opts[size] = '\0';
379
    opts[size] = '\0';
375
   
380
   
376
    /*
381
    /*
377
     * Now, we expect the client to send us data with the name of the file
382
     * Now, we expect the client to send us data with the name of the file
378
     * system.
383
     * system.
379
     */
384
     */
380
    if (!ipc_data_write_receive(&callid, &size)) {
385
    if (!ipc_data_write_receive(&callid, &size)) {
381
        ipc_answer_0(callid, EINVAL);
386
        ipc_answer_0(callid, EINVAL);
382
        ipc_answer_0(rid, EINVAL);
387
        ipc_answer_0(rid, EINVAL);
383
        free(mp);
388
        free(mp);
384
        free(opts);
389
        free(opts);
385
        return;
390
        return;
386
    }
391
    }
387
   
392
   
388
    /*
393
    /*
389
     * Don't receive more than is necessary for storing a full file system
394
     * Don't receive more than is necessary for storing a full file system
390
     * name.
395
     * name.
391
     */
396
     */
392
    if ((size < 1) || (size > FS_NAME_MAXLEN)) {
397
    if ((size < 1) || (size > FS_NAME_MAXLEN)) {
393
        ipc_answer_0(callid, EINVAL);
398
        ipc_answer_0(callid, EINVAL);
394
        ipc_answer_0(rid, EINVAL);
399
        ipc_answer_0(rid, EINVAL);
395
        free(mp);
400
        free(mp);
396
        free(opts);
401
        free(opts);
397
        return;
402
        return;
398
    }
403
    }
399
   
404
   
400
    /*
405
    /*
401
     * Allocate buffer for file system name.
406
     * Allocate buffer for file system name.
402
     */
407
     */
403
    char *fs_name = (char *) malloc(size + 1);
408
    char *fs_name = (char *) malloc(size + 1);
404
    if (fs_name == NULL) {
409
    if (fs_name == NULL) {
405
        ipc_answer_0(callid, ENOMEM);
410
        ipc_answer_0(callid, ENOMEM);
406
        ipc_answer_0(rid, ENOMEM);
411
        ipc_answer_0(rid, ENOMEM);
407
        free(mp);
412
        free(mp);
408
        free(opts);
413
        free(opts);
409
        return;
414
        return;
410
    }
415
    }
411
   
416
   
412
    /* Deliver the file system name. */
417
    /* Deliver the file system name. */
413
    retval = ipc_data_write_finalize(callid, fs_name, size);
418
    retval = ipc_data_write_finalize(callid, fs_name, size);
414
    if (retval != EOK) {
419
    if (retval != EOK) {
415
        ipc_answer_0(rid, retval);
420
        ipc_answer_0(rid, retval);
416
        free(mp);
421
        free(mp);
417
        free(opts);
422
        free(opts);
418
        free(fs_name);
423
        free(fs_name);
419
        return;
424
        return;
420
    }
425
    }
421
    fs_name[size] = '\0';
426
    fs_name[size] = '\0';
422
 
427
 
423
    /*
428
    /*
424
     * Wait for IPC_M_PING so that we can return an error if we don't know
429
     * Wait for IPC_M_PING so that we can return an error if we don't know
425
     * fs_name.
430
     * fs_name.
426
     */
431
     */
427
    ipc_call_t data;
432
    ipc_call_t data;
428
    callid = async_get_call(&data);
433
    callid = async_get_call(&data);
429
    if (IPC_GET_METHOD(data) != IPC_M_PING) {
434
    if (IPC_GET_METHOD(data) != IPC_M_PING) {
430
        ipc_answer_0(callid, ENOTSUP);
435
        ipc_answer_0(callid, ENOTSUP);
431
        ipc_answer_0(rid, ENOTSUP);
436
        ipc_answer_0(rid, ENOTSUP);
432
        free(mp);
437
        free(mp);
433
        free(opts);
438
        free(opts);
434
        free(fs_name);
439
        free(fs_name);
435
        return;
440
        return;
436
    }
441
    }
437
 
442
 
438
    /*
443
    /*
439
     * Check if we know a file system with the same name as is in fs_name.
444
     * Check if we know a file system with the same name as is in fs_name.
440
     * This will also give us its file system handle.
445
     * This will also give us its file system handle.
441
     */
446
     */
442
    fs_handle_t fs_handle = fs_name_to_handle(fs_name, true);
447
    fs_handle_t fs_handle = fs_name_to_handle(fs_name, true);
443
    if (!fs_handle) {
448
    if (!fs_handle) {
444
        if (flags & IPC_FLAG_BLOCKING) {
449
        if (flags & IPC_FLAG_BLOCKING) {
445
            pending_req_t *pr;
450
            pending_req_t *pr;
446
 
451
 
447
            /* Blocking mount, add to pending list */
452
            /* Blocking mount, add to pending list */
448
            pr = (pending_req_t *) malloc(sizeof(pending_req_t));
453
            pr = (pending_req_t *) malloc(sizeof(pending_req_t));
449
            if (!pr) {
454
            if (!pr) {
450
                ipc_answer_0(callid, ENOMEM);
455
                ipc_answer_0(callid, ENOMEM);
451
                ipc_answer_0(rid, ENOMEM);
456
                ipc_answer_0(rid, ENOMEM);
452
                free(mp);
457
                free(mp);
453
                free(fs_name);
458
                free(fs_name);
454
                free(opts);
459
                free(opts);
455
                return;
460
                return;
456
            }
461
            }
457
           
462
           
458
            pr->fs_name = fs_name;
463
            pr->fs_name = fs_name;
459
            pr->mp = mp;
464
            pr->mp = mp;
460
            pr->opts = opts;
465
            pr->opts = opts;
461
            pr->callid = callid;
466
            pr->callid = callid;
462
            pr->rid = rid;
467
            pr->rid = rid;
463
            pr->dev_handle = dev_handle;
468
            pr->dev_handle = dev_handle;
464
            link_initialize(&pr->link);
469
            link_initialize(&pr->link);
-
 
470
            fibril_mutex_lock(&pending_lock);
465
            list_append(&pr->link, &pending_req);
471
            list_append(&pr->link, &pending_req);
-
 
472
            fibril_mutex_unlock(&pending_lock);
466
            return;
473
            return;
467
        }
474
        }
468
       
475
       
469
        ipc_answer_0(callid, ENOENT);
476
        ipc_answer_0(callid, ENOENT);
470
        ipc_answer_0(rid, ENOENT);
477
        ipc_answer_0(rid, ENOENT);
471
        free(mp);
478
        free(mp);
472
        free(fs_name);
479
        free(fs_name);
473
        free(opts);
480
        free(opts);
474
        return;
481
        return;
475
    }
482
    }
476
   
483
   
477
    /* Acknowledge that we know fs_name. */
484
    /* Acknowledge that we know fs_name. */
478
    ipc_answer_0(callid, EOK);
485
    ipc_answer_0(callid, EOK);
479
   
486
   
480
    /* Do the mount */
487
    /* Do the mount */
481
    vfs_mount_internal(rid, dev_handle, fs_handle, mp, opts);
488
    vfs_mount_internal(rid, dev_handle, fs_handle, mp, opts);
482
    free(mp);
489
    free(mp);
483
    free(fs_name);
490
    free(fs_name);
484
    free(opts);
491
    free(opts);
485
}
492
}
486
 
493
 
487
void vfs_open(ipc_callid_t rid, ipc_call_t *request)
494
void vfs_open(ipc_callid_t rid, ipc_call_t *request)
488
{
495
{
489
    if (!vfs_files_init()) {
496
    if (!vfs_files_init()) {
490
        ipc_answer_0(rid, ENOMEM);
497
        ipc_answer_0(rid, ENOMEM);
491
        return;
498
        return;
492
    }
499
    }
493
 
500
   
494
    /*
501
    /*
495
     * The POSIX interface is open(path, oflag, mode).
502
     * The POSIX interface is open(path, oflag, mode).
496
     * We can receive oflags and mode along with the VFS_OPEN call; the path
503
     * We can receive oflags and mode along with the VFS_OPEN call; the path
497
     * will need to arrive in another call.
504
     * will need to arrive in another call.
498
     *
505
     *
499
     * We also receive one private, non-POSIX set of flags called lflag
506
     * We also receive one private, non-POSIX set of flags called lflag
500
     * used to pass information to vfs_lookup_internal().
507
     * used to pass information to vfs_lookup_internal().
501
     */
508
     */
502
    int lflag = IPC_GET_ARG1(*request);
509
    int lflag = IPC_GET_ARG1(*request);
503
    int oflag = IPC_GET_ARG2(*request);
510
    int oflag = IPC_GET_ARG2(*request);
504
    int mode = IPC_GET_ARG3(*request);
511
    int mode = IPC_GET_ARG3(*request);
505
    size_t len;
512
    size_t len;
506
 
513
   
507
    /*
514
    /*
508
     * Make sure that we are called with exactly one of L_FILE and
515
     * Make sure that we are called with exactly one of L_FILE and
509
     * L_DIRECTORY.
516
     * L_DIRECTORY. Make sure that the user does not pass L_OPEN.
510
     */
517
     */
511
    if ((lflag & (L_FILE | L_DIRECTORY)) == 0 ||
518
    if (((lflag & (L_FILE | L_DIRECTORY)) == 0) ||
512
        (lflag & (L_FILE | L_DIRECTORY)) == (L_FILE | L_DIRECTORY)) {
519
        ((lflag & (L_FILE | L_DIRECTORY)) == (L_FILE | L_DIRECTORY)) ||
-
 
520
        ((lflag & L_OPEN) != 0)) {
513
        ipc_answer_0(rid, EINVAL);
521
        ipc_answer_0(rid, EINVAL);
514
        return;
522
        return;
515
    }
523
    }
516
 
524
   
517
    if (oflag & O_CREAT)
525
    if (oflag & O_CREAT)
518
        lflag |= L_CREATE;
526
        lflag |= L_CREATE;
519
    if (oflag & O_EXCL)
527
    if (oflag & O_EXCL)
520
        lflag |= L_EXCLUSIVE;
528
        lflag |= L_EXCLUSIVE;
521
 
529
   
522
    ipc_callid_t callid;
530
    ipc_callid_t callid;
523
 
-
 
524
    if (!ipc_data_write_receive(&callid, &len)) {
531
    if (!ipc_data_write_receive(&callid, &len)) {
525
        ipc_answer_0(callid, EINVAL);
532
        ipc_answer_0(callid, EINVAL);
526
        ipc_answer_0(rid, EINVAL);
533
        ipc_answer_0(rid, EINVAL);
527
        return;
534
        return;
528
    }
535
    }
-
 
536
   
529
    char *path = malloc(len + 1);
537
    char *path = malloc(len + 1);
530
    if (!path) {
538
    if (!path) {
531
        ipc_answer_0(callid, ENOMEM);
539
        ipc_answer_0(callid, ENOMEM);
532
        ipc_answer_0(rid, ENOMEM);
540
        ipc_answer_0(rid, ENOMEM);
533
        return;
541
        return;
534
    }
542
    }
-
 
543
   
535
    int rc;
544
    int rc;
536
    if ((rc = ipc_data_write_finalize(callid, path, len))) {
545
    if ((rc = ipc_data_write_finalize(callid, path, len))) {
537
        ipc_answer_0(rid, rc);
546
        ipc_answer_0(rid, rc);
538
        free(path);
547
        free(path);
539
        return;
548
        return;
540
    }
549
    }
541
    path[len] = '\0';
550
    path[len] = '\0';
542
   
551
   
543
    /*
552
    /*
544
     * Avoid the race condition in which the file can be deleted before we
553
     * Avoid the race condition in which the file can be deleted before we
545
     * find/create-and-lock the VFS node corresponding to the looked-up
554
     * find/create-and-lock the VFS node corresponding to the looked-up
546
     * triplet.
555
     * triplet.
547
     */
556
     */
548
    if (lflag & L_CREATE)
557
    if (lflag & L_CREATE)
549
        rwlock_write_lock(&namespace_rwlock);
558
        fibril_rwlock_write_lock(&namespace_rwlock);
550
    else
559
    else
551
        rwlock_read_lock(&namespace_rwlock);
560
        fibril_rwlock_read_lock(&namespace_rwlock);
552
 
561
   
553
    /* The path is now populated and we can call vfs_lookup_internal(). */
562
    /* The path is now populated and we can call vfs_lookup_internal(). */
554
    vfs_lookup_res_t lr;
563
    vfs_lookup_res_t lr;
555
    rc = vfs_lookup_internal(path, lflag, &lr, NULL);
564
    rc = vfs_lookup_internal(path, lflag | L_OPEN, &lr, NULL);
556
    if (rc) {
565
    if (rc != EOK) {
557
        if (lflag & L_CREATE)
566
        if (lflag & L_CREATE)
558
            rwlock_write_unlock(&namespace_rwlock);
567
            fibril_rwlock_write_unlock(&namespace_rwlock);
559
        else
568
        else
560
            rwlock_read_unlock(&namespace_rwlock);
569
            fibril_rwlock_read_unlock(&namespace_rwlock);
561
        ipc_answer_0(rid, rc);
570
        ipc_answer_0(rid, rc);
562
        free(path);
571
        free(path);
563
        return;
572
        return;
564
    }
573
    }
565
 
574
   
566
    /* Path is no longer needed. */
575
    /* Path is no longer needed. */
567
    free(path);
576
    free(path);
568
 
577
   
569
    vfs_node_t *node = vfs_node_get(&lr);
578
    vfs_node_t *node = vfs_node_get(&lr);
570
    if (lflag & L_CREATE)
579
    if (lflag & L_CREATE)
571
        rwlock_write_unlock(&namespace_rwlock);
580
        fibril_rwlock_write_unlock(&namespace_rwlock);
572
    else
581
    else
573
        rwlock_read_unlock(&namespace_rwlock);
582
        fibril_rwlock_read_unlock(&namespace_rwlock);
574
 
583
   
575
    /* Truncate the file if requested and if necessary. */
584
    /* Truncate the file if requested and if necessary. */
576
    if (oflag & O_TRUNC) {
585
    if (oflag & O_TRUNC) {
577
        rwlock_write_lock(&node->contents_rwlock);
586
        fibril_rwlock_write_lock(&node->contents_rwlock);
578
        if (node->size) {
587
        if (node->size) {
579
            rc = vfs_truncate_internal(node->fs_handle,
588
            rc = vfs_truncate_internal(node->fs_handle,
580
                node->dev_handle, node->index, 0);
589
                node->dev_handle, node->index, 0);
581
            if (rc) {
590
            if (rc) {
582
                rwlock_write_unlock(&node->contents_rwlock);
591
                fibril_rwlock_write_unlock(&node->contents_rwlock);
583
                vfs_node_put(node);
592
                vfs_node_put(node);
584
                ipc_answer_0(rid, rc);
593
                ipc_answer_0(rid, rc);
585
                return;
594
                return;
586
            }
595
            }
587
            node->size = 0;
596
            node->size = 0;
588
        }
597
        }
589
        rwlock_write_unlock(&node->contents_rwlock);
598
        fibril_rwlock_write_unlock(&node->contents_rwlock);
590
    }
599
    }
591
 
600
   
592
    /*
601
    /*
593
     * Get ourselves a file descriptor and the corresponding vfs_file_t
602
     * Get ourselves a file descriptor and the corresponding vfs_file_t
594
     * structure.
603
     * structure.
595
     */
604
     */
596
    int fd = vfs_fd_alloc();
605
    int fd = vfs_fd_alloc();
597
    if (fd < 0) {
606
    if (fd < 0) {
598
        vfs_node_put(node);
607
        vfs_node_put(node);
599
        ipc_answer_0(rid, fd);
608
        ipc_answer_0(rid, fd);
600
        return;
609
        return;
601
    }
610
    }
602
    vfs_file_t *file = vfs_file_get(fd);
611
    vfs_file_t *file = vfs_file_get(fd);
603
    file->node = node;
612
    file->node = node;
604
    if (oflag & O_APPEND)
613
    if (oflag & O_APPEND)
605
        file->append = true;
614
        file->append = true;
606
 
615
   
607
    /*
616
    /*
608
     * The following increase in reference count is for the fact that the
617
     * The following increase in reference count is for the fact that the
609
     * file is being opened and that a file structure is pointing to it.
618
     * file is being opened and that a file structure is pointing to it.
610
     * It is necessary so that the file will not disappear when
619
     * It is necessary so that the file will not disappear when
611
     * vfs_node_put() is called. The reference will be dropped by the
620
     * vfs_node_put() is called. The reference will be dropped by the
612
     * respective VFS_CLOSE.
621
     * respective VFS_CLOSE.
613
     */
622
     */
614
    vfs_node_addref(node);
623
    vfs_node_addref(node);
615
    vfs_node_put(node);
624
    vfs_node_put(node);
-
 
625
   
-
 
626
    /* Success! Return the new file descriptor to the client. */
-
 
627
    ipc_answer_1(rid, EOK, fd);
-
 
628
}
616
 
629
 
-
 
630
void vfs_open_node(ipc_callid_t rid, ipc_call_t *request)
-
 
631
{
-
 
632
    // FIXME: check for sanity of the supplied fs, dev and index
-
 
633
   
-
 
634
    if (!vfs_files_init()) {
-
 
635
        ipc_answer_0(rid, ENOMEM);
-
 
636
        return;
-
 
637
    }
-
 
638
   
-
 
639
    /*
-
 
640
     * The interface is open_node(fs, dev, index, oflag).
-
 
641
     */
-
 
642
    vfs_lookup_res_t lr;
-
 
643
   
-
 
644
    lr.triplet.fs_handle = IPC_GET_ARG1(*request);
-
 
645
    lr.triplet.dev_handle = IPC_GET_ARG2(*request);
-
 
646
    lr.triplet.index = IPC_GET_ARG3(*request);
-
 
647
    int oflag = IPC_GET_ARG4(*request);
-
 
648
   
-
 
649
    fibril_rwlock_read_lock(&namespace_rwlock);
-
 
650
   
-
 
651
    int rc = vfs_open_node_internal(&lr);
-
 
652
    if (rc != EOK) {
-
 
653
        fibril_rwlock_read_unlock(&namespace_rwlock);
-
 
654
        ipc_answer_0(rid, rc);
-
 
655
        return;
-
 
656
    }
-
 
657
   
-
 
658
    vfs_node_t *node = vfs_node_get(&lr);
-
 
659
    fibril_rwlock_read_unlock(&namespace_rwlock);
-
 
660
   
-
 
661
    /* Truncate the file if requested and if necessary. */
-
 
662
    if (oflag & O_TRUNC) {
-
 
663
        fibril_rwlock_write_lock(&node->contents_rwlock);
-
 
664
        if (node->size) {
-
 
665
            rc = vfs_truncate_internal(node->fs_handle,
-
 
666
                node->dev_handle, node->index, 0);
-
 
667
            if (rc) {
-
 
668
                fibril_rwlock_write_unlock(&node->contents_rwlock);
-
 
669
                vfs_node_put(node);
-
 
670
                ipc_answer_0(rid, rc);
-
 
671
                return;
-
 
672
            }
-
 
673
            node->size = 0;
-
 
674
        }
-
 
675
        fibril_rwlock_write_unlock(&node->contents_rwlock);
-
 
676
    }
-
 
677
   
-
 
678
    /*
-
 
679
     * Get ourselves a file descriptor and the corresponding vfs_file_t
-
 
680
     * structure.
-
 
681
     */
-
 
682
    int fd = vfs_fd_alloc();
-
 
683
    if (fd < 0) {
-
 
684
        vfs_node_put(node);
-
 
685
        ipc_answer_0(rid, fd);
-
 
686
        return;
-
 
687
    }
-
 
688
    vfs_file_t *file = vfs_file_get(fd);
-
 
689
    file->node = node;
-
 
690
    if (oflag & O_APPEND)
-
 
691
        file->append = true;
-
 
692
   
-
 
693
    /*
-
 
694
     * The following increase in reference count is for the fact that the
-
 
695
     * file is being opened and that a file structure is pointing to it.
-
 
696
     * It is necessary so that the file will not disappear when
-
 
697
     * vfs_node_put() is called. The reference will be dropped by the
-
 
698
     * respective VFS_CLOSE.
-
 
699
     */
-
 
700
    vfs_node_addref(node);
-
 
701
    vfs_node_put(node);
-
 
702
   
617
    /* Success! Return the new file descriptor to the client. */
703
    /* Success! Return the new file descriptor to the client. */
618
    ipc_answer_1(rid, EOK, fd);
704
    ipc_answer_1(rid, EOK, fd);
619
}
705
}
620
 
706
 
621
void vfs_close(ipc_callid_t rid, ipc_call_t *request)
707
void vfs_node(ipc_callid_t rid, ipc_call_t *request)
-
 
708
{
-
 
709
    int fd = IPC_GET_ARG1(*request);
-
 
710
   
-
 
711
    /* Lookup the file structure corresponding to the file descriptor. */
-
 
712
    vfs_file_t *file = vfs_file_get(fd);
-
 
713
    if (!file) {
-
 
714
        ipc_answer_0(rid, ENOENT);
-
 
715
        return;
-
 
716
    }
-
 
717
   
-
 
718
    ipc_answer_3(rid, EOK, file->node->fs_handle, file->node->dev_handle,
-
 
719
        file->node->index);
-
 
720
}
-
 
721
 
-
 
722
void vfs_device(ipc_callid_t rid, ipc_call_t *request)
-
 
723
{
-
 
724
    int fd = IPC_GET_ARG1(*request);
-
 
725
   
-
 
726
    /* Lookup the file structure corresponding to the file descriptor. */
-
 
727
    vfs_file_t *file = vfs_file_get(fd);
-
 
728
    if (!file) {
-
 
729
        ipc_answer_0(rid, ENOENT);
-
 
730
        return;
-
 
731
    }
-
 
732
   
-
 
733
    /*
-
 
734
     * Lock the open file structure so that no other thread can manipulate
-
 
735
     * the same open file at a time.
-
 
736
     */
-
 
737
    fibril_mutex_lock(&file->lock);
-
 
738
    int fs_phone = vfs_grab_phone(file->node->fs_handle);
-
 
739
   
-
 
740
    /* Make a VFS_DEVICE request at the destination FS server. */
-
 
741
    aid_t msg;
-
 
742
    ipc_call_t answer;
-
 
743
    msg = async_send_2(fs_phone, IPC_GET_METHOD(*request),
-
 
744
        file->node->dev_handle, file->node->index, &answer);
-
 
745
   
-
 
746
    vfs_release_phone(fs_phone);
-
 
747
 
-
 
748
    /* Wait for reply from the FS server. */
-
 
749
    ipcarg_t rc;
-
 
750
    async_wait_for(msg, &rc);
-
 
751
   
-
 
752
    fibril_mutex_unlock(&file->lock);
-
 
753
   
-
 
754
    ipc_answer_1(rid, EOK, IPC_GET_ARG1(answer));
-
 
755
}
-
 
756
 
-
 
757
void vfs_sync(ipc_callid_t rid, ipc_call_t *request)
622
{
758
{
623
    int fd = IPC_GET_ARG1(*request);
759
    int fd = IPC_GET_ARG1(*request);
-
 
760
   
-
 
761
    /* Lookup the file structure corresponding to the file descriptor. */
624
    int rc = vfs_fd_free(fd);
762
    vfs_file_t *file = vfs_file_get(fd);
-
 
763
    if (!file) {
-
 
764
        ipc_answer_0(rid, ENOENT);
-
 
765
        return;
-
 
766
    }
-
 
767
   
-
 
768
    /*
-
 
769
     * Lock the open file structure so that no other thread can manipulate
-
 
770
     * the same open file at a time.
-
 
771
     */
-
 
772
    fibril_mutex_lock(&file->lock);
-
 
773
    int fs_phone = vfs_grab_phone(file->node->fs_handle);
-
 
774
   
-
 
775
    /* Make a VFS_SYMC request at the destination FS server. */
-
 
776
    aid_t msg;
-
 
777
    ipc_call_t answer;
-
 
778
    msg = async_send_2(fs_phone, IPC_GET_METHOD(*request),
-
 
779
        file->node->dev_handle, file->node->index, &answer);
-
 
780
 
-
 
781
    vfs_release_phone(fs_phone);
-
 
782
 
-
 
783
    /* Wait for reply from the FS server. */
-
 
784
    ipcarg_t rc;
-
 
785
    async_wait_for(msg, &rc);
-
 
786
   
-
 
787
    fibril_mutex_unlock(&file->lock);
-
 
788
   
625
    ipc_answer_0(rid, rc);
789
    ipc_answer_0(rid, rc);
626
}
790
}
627
 
791
 
-
 
792
void vfs_close(ipc_callid_t rid, ipc_call_t *request)
-
 
793
{
-
 
794
    int fd = IPC_GET_ARG1(*request);
-
 
795
   
-
 
796
    /* Lookup the file structure corresponding to the file descriptor. */
-
 
797
    vfs_file_t *file = vfs_file_get(fd);
-
 
798
    if (!file) {
-
 
799
        ipc_answer_0(rid, ENOENT);
-
 
800
        return;
-
 
801
    }
-
 
802
   
-
 
803
    /*
-
 
804
     * Lock the open file structure so that no other thread can manipulate
-
 
805
     * the same open file at a time.
-
 
806
     */
-
 
807
    fibril_mutex_lock(&file->lock);
-
 
808
   
-
 
809
    int fs_phone = vfs_grab_phone(file->node->fs_handle);
-
 
810
   
-
 
811
    /* Make a VFS_CLOSE request at the destination FS server. */
-
 
812
    aid_t msg;
-
 
813
    ipc_call_t answer;
-
 
814
    msg = async_send_2(fs_phone, IPC_GET_METHOD(*request),
-
 
815
        file->node->dev_handle, file->node->index, &answer);
-
 
816
 
-
 
817
    vfs_release_phone(fs_phone);
-
 
818
   
-
 
819
    /* Wait for reply from the FS server. */
-
 
820
    ipcarg_t rc;
-
 
821
    async_wait_for(msg, &rc);
-
 
822
   
-
 
823
    fibril_mutex_unlock(&file->lock);
-
 
824
   
-
 
825
    int retval = IPC_GET_ARG1(answer);
-
 
826
    if (retval != EOK)
-
 
827
        ipc_answer_0(rid, retval);
-
 
828
   
-
 
829
    retval = vfs_fd_free(fd);
-
 
830
    ipc_answer_0(rid, retval);
-
 
831
}
-
 
832
 
628
static void vfs_rdwr(ipc_callid_t rid, ipc_call_t *request, bool read)
833
static void vfs_rdwr(ipc_callid_t rid, ipc_call_t *request, bool read)
629
{
834
{
630
 
835
 
631
    /*
836
    /*
632
     * The following code strongly depends on the fact that the files data
837
     * The following code strongly depends on the fact that the files data
633
     * structure can be only accessed by a single fibril and all file
838
     * structure can be only accessed by a single fibril and all file
634
     * operations are serialized (i.e. the reads and writes cannot
839
     * operations are serialized (i.e. the reads and writes cannot
635
     * interleave and a file cannot be closed while it is being read).
840
     * interleave and a file cannot be closed while it is being read).
636
     *
841
     *
637
     * Additional synchronization needs to be added once the table of
842
     * Additional synchronization needs to be added once the table of
638
     * open files supports parallel access!
843
     * open files supports parallel access!
639
     */
844
     */
640
 
845
 
641
    int fd = IPC_GET_ARG1(*request);
846
    int fd = IPC_GET_ARG1(*request);
642
   
847
   
643
    /* Lookup the file structure corresponding to the file descriptor. */
848
    /* Lookup the file structure corresponding to the file descriptor. */
644
    vfs_file_t *file = vfs_file_get(fd);
849
    vfs_file_t *file = vfs_file_get(fd);
645
    if (!file) {
850
    if (!file) {
646
        ipc_answer_0(rid, ENOENT);
851
        ipc_answer_0(rid, ENOENT);
647
        return;
852
        return;
648
    }
853
    }
649
   
854
   
650
    /*
855
    /*
651
     * Now we need to receive a call with client's
856
     * Now we need to receive a call with client's
652
     * IPC_M_DATA_READ/IPC_M_DATA_WRITE request.
857
     * IPC_M_DATA_READ/IPC_M_DATA_WRITE request.
653
     */
858
     */
654
    ipc_callid_t callid;
859
    ipc_callid_t callid;
655
    int res;
860
    int res;
656
    if (read)
861
    if (read)
657
        res = ipc_data_read_receive(&callid, NULL);
862
        res = ipc_data_read_receive(&callid, NULL);
658
    else
863
    else
659
        res = ipc_data_write_receive(&callid, NULL);
864
        res = ipc_data_write_receive(&callid, NULL);
660
    if (!res) {
865
    if (!res) {
661
        ipc_answer_0(callid, EINVAL);
866
        ipc_answer_0(callid, EINVAL);
662
        ipc_answer_0(rid, EINVAL);
867
        ipc_answer_0(rid, EINVAL);
663
        return;
868
        return;
664
    }
869
    }
665
   
870
   
666
    /*
871
    /*
667
     * Lock the open file structure so that no other thread can manipulate
872
     * Lock the open file structure so that no other thread can manipulate
668
     * the same open file at a time.
873
     * the same open file at a time.
669
     */
874
     */
670
    futex_down(&file->lock);
875
    fibril_mutex_lock(&file->lock);
671
 
876
 
672
    /*
877
    /*
673
     * Lock the file's node so that no other client can read/write to it at
878
     * Lock the file's node so that no other client can read/write to it at
674
     * the same time.
879
     * the same time.
675
     */
880
     */
676
    if (read)
881
    if (read)
677
        rwlock_read_lock(&file->node->contents_rwlock);
882
        fibril_rwlock_read_lock(&file->node->contents_rwlock);
678
    else
883
    else
679
        rwlock_write_lock(&file->node->contents_rwlock);
884
        fibril_rwlock_write_lock(&file->node->contents_rwlock);
680
 
885
 
681
    if (file->node->type == VFS_NODE_DIRECTORY) {
886
    if (file->node->type == VFS_NODE_DIRECTORY) {
682
        /*
887
        /*
683
         * Make sure that no one is modifying the namespace
888
         * Make sure that no one is modifying the namespace
684
         * while we are in readdir().
889
         * while we are in readdir().
685
         */
890
         */
686
        assert(read);
891
        assert(read);
687
        rwlock_read_lock(&namespace_rwlock);
892
        fibril_rwlock_read_lock(&namespace_rwlock);
688
    }
893
    }
689
   
894
   
690
    int fs_phone = vfs_grab_phone(file->node->fs_handle);  
895
    int fs_phone = vfs_grab_phone(file->node->fs_handle);  
691
   
896
   
692
    /* Make a VFS_READ/VFS_WRITE request at the destination FS server. */
897
    /* Make a VFS_READ/VFS_WRITE request at the destination FS server. */
693
    aid_t msg;
898
    aid_t msg;
694
    ipc_call_t answer;
899
    ipc_call_t answer;
695
    if (!read && file->append)
900
    if (!read && file->append)
696
        file->pos = file->node->size;
901
        file->pos = file->node->size;
697
    msg = async_send_3(fs_phone, IPC_GET_METHOD(*request),
902
    msg = async_send_3(fs_phone, IPC_GET_METHOD(*request),
698
        file->node->dev_handle, file->node->index, file->pos, &answer);
903
        file->node->dev_handle, file->node->index, file->pos, &answer);
699
   
904
   
700
    /*
905
    /*
701
     * Forward the IPC_M_DATA_READ/IPC_M_DATA_WRITE request to the
906
     * Forward the IPC_M_DATA_READ/IPC_M_DATA_WRITE request to the
702
     * destination FS server. The call will be routed as if sent by
907
     * destination FS server. The call will be routed as if sent by
703
     * ourselves. Note that call arguments are immutable in this case so we
908
     * ourselves. Note that call arguments are immutable in this case so we
704
     * don't have to bother.
909
     * don't have to bother.
705
     */
910
     */
706
    ipc_forward_fast(callid, fs_phone, 0, 0, 0, IPC_FF_ROUTE_FROM_ME);
911
    ipc_forward_fast(callid, fs_phone, 0, 0, 0, IPC_FF_ROUTE_FROM_ME);
707
   
912
 
708
    vfs_release_phone(fs_phone);
913
    vfs_release_phone(fs_phone);
709
   
914
   
710
    /* Wait for reply from the FS server. */
915
    /* Wait for reply from the FS server. */
711
    ipcarg_t rc;
916
    ipcarg_t rc;
712
    async_wait_for(msg, &rc);
917
    async_wait_for(msg, &rc);
-
 
918
   
713
    size_t bytes = IPC_GET_ARG1(answer);
919
    size_t bytes = IPC_GET_ARG1(answer);
714
 
920
 
715
    if (file->node->type == VFS_NODE_DIRECTORY)
921
    if (file->node->type == VFS_NODE_DIRECTORY)
716
        rwlock_read_unlock(&namespace_rwlock);
922
        fibril_rwlock_read_unlock(&namespace_rwlock);
717
   
923
   
718
    /* Unlock the VFS node. */
924
    /* Unlock the VFS node. */
719
    if (read)
925
    if (read)
720
        rwlock_read_unlock(&file->node->contents_rwlock);
926
        fibril_rwlock_read_unlock(&file->node->contents_rwlock);
721
    else {
927
    else {
722
        /* Update the cached version of node's size. */
928
        /* Update the cached version of node's size. */
723
        if (rc == EOK)
929
        if (rc == EOK)
724
            file->node->size = IPC_GET_ARG2(answer);
930
            file->node->size = IPC_GET_ARG2(answer);
725
        rwlock_write_unlock(&file->node->contents_rwlock);
931
        fibril_rwlock_write_unlock(&file->node->contents_rwlock);
726
    }
932
    }
727
   
933
   
728
    /* Update the position pointer and unlock the open file. */
934
    /* Update the position pointer and unlock the open file. */
729
    if (rc == EOK)
935
    if (rc == EOK)
730
        file->pos += bytes;
936
        file->pos += bytes;
731
    futex_up(&file->lock);
937
    fibril_mutex_unlock(&file->lock);
732
   
938
   
733
    /*
939
    /*
734
     * FS server's reply is the final result of the whole operation we
940
     * FS server's reply is the final result of the whole operation we
735
     * return to the client.
941
     * return to the client.
736
     */
942
     */
737
    ipc_answer_1(rid, rc, bytes);
943
    ipc_answer_1(rid, rc, bytes);
738
}
944
}
739
 
945
 
740
void vfs_read(ipc_callid_t rid, ipc_call_t *request)
946
void vfs_read(ipc_callid_t rid, ipc_call_t *request)
741
{
947
{
742
    vfs_rdwr(rid, request, true);
948
    vfs_rdwr(rid, request, true);
743
}
949
}
744
 
950
 
745
void vfs_write(ipc_callid_t rid, ipc_call_t *request)
951
void vfs_write(ipc_callid_t rid, ipc_call_t *request)
746
{
952
{
747
    vfs_rdwr(rid, request, false);
953
    vfs_rdwr(rid, request, false);
748
}
954
}
749
 
955
 
750
void vfs_seek(ipc_callid_t rid, ipc_call_t *request)
956
void vfs_seek(ipc_callid_t rid, ipc_call_t *request)
751
{
957
{
752
    int fd = (int) IPC_GET_ARG1(*request);
958
    int fd = (int) IPC_GET_ARG1(*request);
753
    off_t off = (off_t) IPC_GET_ARG2(*request);
959
    off_t off = (off_t) IPC_GET_ARG2(*request);
754
    int whence = (int) IPC_GET_ARG3(*request);
960
    int whence = (int) IPC_GET_ARG3(*request);
755
 
961
 
756
 
962
 
757
    /* Lookup the file structure corresponding to the file descriptor. */
963
    /* Lookup the file structure corresponding to the file descriptor. */
758
    vfs_file_t *file = vfs_file_get(fd);
964
    vfs_file_t *file = vfs_file_get(fd);
759
    if (!file) {
965
    if (!file) {
760
        ipc_answer_0(rid, ENOENT);
966
        ipc_answer_0(rid, ENOENT);
761
        return;
967
        return;
762
    }
968
    }
763
 
969
 
764
    off_t newpos;
970
    off_t newpos;
765
    futex_down(&file->lock);
971
    fibril_mutex_lock(&file->lock);
766
    if (whence == SEEK_SET) {
972
    if (whence == SEEK_SET) {
767
        file->pos = off;
973
        file->pos = off;
768
        futex_up(&file->lock);
974
        fibril_mutex_unlock(&file->lock);
769
        ipc_answer_1(rid, EOK, off);
975
        ipc_answer_1(rid, EOK, off);
770
        return;
976
        return;
771
    }
977
    }
772
    if (whence == SEEK_CUR) {
978
    if (whence == SEEK_CUR) {
773
        if (file->pos + off < file->pos) {
979
        if (file->pos + off < file->pos) {
774
            futex_up(&file->lock);
980
            fibril_mutex_unlock(&file->lock);
775
            ipc_answer_0(rid, EOVERFLOW);
981
            ipc_answer_0(rid, EOVERFLOW);
776
            return;
982
            return;
777
        }
983
        }
778
        file->pos += off;
984
        file->pos += off;
779
        newpos = file->pos;
985
        newpos = file->pos;
780
        futex_up(&file->lock);
986
        fibril_mutex_unlock(&file->lock);
781
        ipc_answer_1(rid, EOK, newpos);
987
        ipc_answer_1(rid, EOK, newpos);
782
        return;
988
        return;
783
    }
989
    }
784
    if (whence == SEEK_END) {
990
    if (whence == SEEK_END) {
785
        rwlock_read_lock(&file->node->contents_rwlock);
991
        fibril_rwlock_read_lock(&file->node->contents_rwlock);
786
        size_t size = file->node->size;
992
        size_t size = file->node->size;
787
        rwlock_read_unlock(&file->node->contents_rwlock);
993
        fibril_rwlock_read_unlock(&file->node->contents_rwlock);
788
        if (size + off < size) {
994
        if (size + off < size) {
789
            futex_up(&file->lock);
995
            fibril_mutex_unlock(&file->lock);
790
            ipc_answer_0(rid, EOVERFLOW);
996
            ipc_answer_0(rid, EOVERFLOW);
791
            return;
997
            return;
792
        }
998
        }
793
        newpos = size + off;
999
        newpos = size + off;
794
        futex_up(&file->lock);
1000
        fibril_mutex_unlock(&file->lock);
795
        ipc_answer_1(rid, EOK, newpos);
1001
        ipc_answer_1(rid, EOK, newpos);
796
        return;
1002
        return;
797
    }
1003
    }
798
    futex_up(&file->lock);
1004
    fibril_mutex_unlock(&file->lock);
799
    ipc_answer_0(rid, EINVAL);
1005
    ipc_answer_0(rid, EINVAL);
800
}
1006
}
801
 
1007
 
802
int
1008
int
803
vfs_truncate_internal(fs_handle_t fs_handle, dev_handle_t dev_handle,
1009
vfs_truncate_internal(fs_handle_t fs_handle, dev_handle_t dev_handle,
804
    fs_index_t index, size_t size)
1010
    fs_index_t index, size_t size)
805
{
1011
{
806
    ipcarg_t rc;
1012
    ipcarg_t rc;
807
    int fs_phone;
1013
    int fs_phone;
808
   
1014
   
809
    fs_phone = vfs_grab_phone(fs_handle);
1015
    fs_phone = vfs_grab_phone(fs_handle);
810
    rc = async_req_3_0(fs_phone, VFS_TRUNCATE, (ipcarg_t)dev_handle,
1016
    rc = async_req_3_0(fs_phone, VFS_TRUNCATE, (ipcarg_t)dev_handle,
811
        (ipcarg_t)index, (ipcarg_t)size);
1017
        (ipcarg_t)index, (ipcarg_t)size);
812
    vfs_release_phone(fs_phone);
1018
    vfs_release_phone(fs_phone);
813
    return (int)rc;
1019
    return (int)rc;
814
}
1020
}
815
 
1021
 
816
void vfs_truncate(ipc_callid_t rid, ipc_call_t *request)
1022
void vfs_truncate(ipc_callid_t rid, ipc_call_t *request)
817
{
1023
{
818
    int fd = IPC_GET_ARG1(*request);
1024
    int fd = IPC_GET_ARG1(*request);
819
    size_t size = IPC_GET_ARG2(*request);
1025
    size_t size = IPC_GET_ARG2(*request);
820
    int rc;
1026
    int rc;
821
 
1027
 
822
    vfs_file_t *file = vfs_file_get(fd);
1028
    vfs_file_t *file = vfs_file_get(fd);
823
    if (!file) {
1029
    if (!file) {
824
        ipc_answer_0(rid, ENOENT);
1030
        ipc_answer_0(rid, ENOENT);
825
        return;
1031
        return;
826
    }
1032
    }
827
    futex_down(&file->lock);
1033
    fibril_mutex_lock(&file->lock);
828
 
1034
 
829
    rwlock_write_lock(&file->node->contents_rwlock);
1035
    fibril_rwlock_write_lock(&file->node->contents_rwlock);
830
    rc = vfs_truncate_internal(file->node->fs_handle,
1036
    rc = vfs_truncate_internal(file->node->fs_handle,
831
        file->node->dev_handle, file->node->index, size);
1037
        file->node->dev_handle, file->node->index, size);
832
    if (rc == EOK)
1038
    if (rc == EOK)
833
        file->node->size = size;
1039
        file->node->size = size;
834
    rwlock_write_unlock(&file->node->contents_rwlock);
1040
    fibril_rwlock_write_unlock(&file->node->contents_rwlock);
835
 
1041
 
836
    futex_up(&file->lock);
1042
    fibril_mutex_unlock(&file->lock);
837
    ipc_answer_0(rid, (ipcarg_t)rc);
1043
    ipc_answer_0(rid, (ipcarg_t)rc);
838
}
1044
}
839
 
1045
 
840
void vfs_mkdir(ipc_callid_t rid, ipc_call_t *request)
1046
void vfs_mkdir(ipc_callid_t rid, ipc_call_t *request)
841
{
1047
{
842
    int mode = IPC_GET_ARG1(*request);
1048
    int mode = IPC_GET_ARG1(*request);
843
 
1049
 
844
    size_t len;
1050
    size_t len;
845
    ipc_callid_t callid;
1051
    ipc_callid_t callid;
846
 
1052
 
847
    if (!ipc_data_write_receive(&callid, &len)) {
1053
    if (!ipc_data_write_receive(&callid, &len)) {
848
        ipc_answer_0(callid, EINVAL);
1054
        ipc_answer_0(callid, EINVAL);
849
        ipc_answer_0(rid, EINVAL);
1055
        ipc_answer_0(rid, EINVAL);
850
        return;
1056
        return;
851
    }
1057
    }
852
    char *path = malloc(len + 1);
1058
    char *path = malloc(len + 1);
853
    if (!path) {
1059
    if (!path) {
854
        ipc_answer_0(callid, ENOMEM);
1060
        ipc_answer_0(callid, ENOMEM);
855
        ipc_answer_0(rid, ENOMEM);
1061
        ipc_answer_0(rid, ENOMEM);
856
        return;
1062
        return;
857
    }
1063
    }
858
    int rc;
1064
    int rc;
859
    if ((rc = ipc_data_write_finalize(callid, path, len))) {
1065
    if ((rc = ipc_data_write_finalize(callid, path, len))) {
860
        ipc_answer_0(rid, rc);
1066
        ipc_answer_0(rid, rc);
861
        free(path);
1067
        free(path);
862
        return;
1068
        return;
863
    }
1069
    }
864
    path[len] = '\0';
1070
    path[len] = '\0';
865
   
1071
   
866
    rwlock_write_lock(&namespace_rwlock);
1072
    fibril_rwlock_write_lock(&namespace_rwlock);
867
    int lflag = L_DIRECTORY | L_CREATE | L_EXCLUSIVE;
1073
    int lflag = L_DIRECTORY | L_CREATE | L_EXCLUSIVE;
868
    rc = vfs_lookup_internal(path, lflag, NULL, NULL);
1074
    rc = vfs_lookup_internal(path, lflag, NULL, NULL);
869
    rwlock_write_unlock(&namespace_rwlock);
1075
    fibril_rwlock_write_unlock(&namespace_rwlock);
870
    free(path);
1076
    free(path);
871
    ipc_answer_0(rid, rc);
1077
    ipc_answer_0(rid, rc);
872
}
1078
}
873
 
1079
 
874
void vfs_unlink(ipc_callid_t rid, ipc_call_t *request)
1080
void vfs_unlink(ipc_callid_t rid, ipc_call_t *request)
875
{
1081
{
876
    int lflag = IPC_GET_ARG1(*request);
1082
    int lflag = IPC_GET_ARG1(*request);
877
 
1083
 
878
    size_t len;
1084
    size_t len;
879
    ipc_callid_t callid;
1085
    ipc_callid_t callid;
880
 
1086
 
881
    if (!ipc_data_write_receive(&callid, &len)) {
1087
    if (!ipc_data_write_receive(&callid, &len)) {
882
        ipc_answer_0(callid, EINVAL);
1088
        ipc_answer_0(callid, EINVAL);
883
        ipc_answer_0(rid, EINVAL);
1089
        ipc_answer_0(rid, EINVAL);
884
        return;
1090
        return;
885
    }
1091
    }
886
    char *path = malloc(len + 1);
1092
    char *path = malloc(len + 1);
887
    if (!path) {
1093
    if (!path) {
888
        ipc_answer_0(callid, ENOMEM);
1094
        ipc_answer_0(callid, ENOMEM);
889
        ipc_answer_0(rid, ENOMEM);
1095
        ipc_answer_0(rid, ENOMEM);
890
        return;
1096
        return;
891
    }
1097
    }
892
    int rc;
1098
    int rc;
893
    if ((rc = ipc_data_write_finalize(callid, path, len))) {
1099
    if ((rc = ipc_data_write_finalize(callid, path, len))) {
894
        ipc_answer_0(rid, rc);
1100
        ipc_answer_0(rid, rc);
895
        free(path);
1101
        free(path);
896
        return;
1102
        return;
897
    }
1103
    }
898
    path[len] = '\0';
1104
    path[len] = '\0';
899
   
1105
   
900
    rwlock_write_lock(&namespace_rwlock);
1106
    fibril_rwlock_write_lock(&namespace_rwlock);
901
    lflag &= L_DIRECTORY;   /* sanitize lflag */
1107
    lflag &= L_DIRECTORY;   /* sanitize lflag */
902
    vfs_lookup_res_t lr;
1108
    vfs_lookup_res_t lr;
903
    rc = vfs_lookup_internal(path, lflag | L_UNLINK, &lr, NULL);
1109
    rc = vfs_lookup_internal(path, lflag | L_UNLINK, &lr, NULL);
904
    free(path);
1110
    free(path);
905
    if (rc != EOK) {
1111
    if (rc != EOK) {
906
        rwlock_write_unlock(&namespace_rwlock);
1112
        fibril_rwlock_write_unlock(&namespace_rwlock);
907
        ipc_answer_0(rid, rc);
1113
        ipc_answer_0(rid, rc);
908
        return;
1114
        return;
909
    }
1115
    }
910
 
1116
 
911
    /*
1117
    /*
912
     * The name has already been unlinked by vfs_lookup_internal().
1118
     * The name has already been unlinked by vfs_lookup_internal().
913
     * We have to get and put the VFS node to ensure that it is
1119
     * We have to get and put the VFS node to ensure that it is
914
     * VFS_DESTROY'ed after the last reference to it is dropped.
1120
     * VFS_DESTROY'ed after the last reference to it is dropped.
915
     */
1121
     */
916
    vfs_node_t *node = vfs_node_get(&lr);
1122
    vfs_node_t *node = vfs_node_get(&lr);
917
    futex_down(&nodes_futex);
1123
    futex_down(&nodes_futex);
918
    node->lnkcnt--;
1124
    node->lnkcnt--;
919
    futex_up(&nodes_futex);
1125
    futex_up(&nodes_futex);
920
    rwlock_write_unlock(&namespace_rwlock);
1126
    fibril_rwlock_write_unlock(&namespace_rwlock);
921
    vfs_node_put(node);
1127
    vfs_node_put(node);
922
    ipc_answer_0(rid, EOK);
1128
    ipc_answer_0(rid, EOK);
923
}
1129
}
924
 
1130
 
925
void vfs_rename(ipc_callid_t rid, ipc_call_t *request)
1131
void vfs_rename(ipc_callid_t rid, ipc_call_t *request)
926
{
1132
{
927
    size_t olen, nlen;
1133
    size_t olen, nlen;
928
    ipc_callid_t callid;
1134
    ipc_callid_t callid;
929
    int rc;
1135
    int rc;
930
 
1136
 
931
    /* Retrieve the old path. */
1137
    /* Retrieve the old path. */
932
    if (!ipc_data_write_receive(&callid, &olen)) {
1138
    if (!ipc_data_write_receive(&callid, &olen)) {
933
        ipc_answer_0(callid, EINVAL);
1139
        ipc_answer_0(callid, EINVAL);
934
        ipc_answer_0(rid, EINVAL);
1140
        ipc_answer_0(rid, EINVAL);
935
        return;
1141
        return;
936
    }
1142
    }
937
    char *old = malloc(olen + 1);
1143
    char *old = malloc(olen + 1);
938
    if (!old) {
1144
    if (!old) {
939
        ipc_answer_0(callid, ENOMEM);
1145
        ipc_answer_0(callid, ENOMEM);
940
        ipc_answer_0(rid, ENOMEM);
1146
        ipc_answer_0(rid, ENOMEM);
941
        return;
1147
        return;
942
    }
1148
    }
943
    if ((rc = ipc_data_write_finalize(callid, old, olen))) {
1149
    if ((rc = ipc_data_write_finalize(callid, old, olen))) {
944
        ipc_answer_0(rid, rc);
1150
        ipc_answer_0(rid, rc);
945
        free(old);
1151
        free(old);
946
        return;
1152
        return;
947
    }
1153
    }
948
    old[olen] = '\0';
1154
    old[olen] = '\0';
949
   
1155
   
950
    /* Retrieve the new path. */
1156
    /* Retrieve the new path. */
951
    if (!ipc_data_write_receive(&callid, &nlen)) {
1157
    if (!ipc_data_write_receive(&callid, &nlen)) {
952
        ipc_answer_0(callid, EINVAL);
1158
        ipc_answer_0(callid, EINVAL);
953
        ipc_answer_0(rid, EINVAL);
1159
        ipc_answer_0(rid, EINVAL);
954
        free(old);
1160
        free(old);
955
        return;
1161
        return;
956
    }
1162
    }
957
    char *new = malloc(nlen + 1);
1163
    char *new = malloc(nlen + 1);
958
    if (!new) {
1164
    if (!new) {
959
        ipc_answer_0(callid, ENOMEM);
1165
        ipc_answer_0(callid, ENOMEM);
960
        ipc_answer_0(rid, ENOMEM);
1166
        ipc_answer_0(rid, ENOMEM);
961
        free(old);
1167
        free(old);
962
        return;
1168
        return;
963
    }
1169
    }
964
    if ((rc = ipc_data_write_finalize(callid, new, nlen))) {
1170
    if ((rc = ipc_data_write_finalize(callid, new, nlen))) {
965
        ipc_answer_0(rid, rc);
1171
        ipc_answer_0(rid, rc);
966
        free(old);
1172
        free(old);
967
        free(new);
1173
        free(new);
968
        return;
1174
        return;
969
    }
1175
    }
970
    new[nlen] = '\0';
1176
    new[nlen] = '\0';
971
 
1177
 
972
    char *oldc = canonify(old, &olen);
1178
    char *oldc = canonify(old, &olen);
973
    char *newc = canonify(new, &nlen);
1179
    char *newc = canonify(new, &nlen);
974
    if (!oldc || !newc) {
1180
    if (!oldc || !newc) {
975
        ipc_answer_0(rid, EINVAL);
1181
        ipc_answer_0(rid, EINVAL);
976
        free(old);
1182
        free(old);
977
        free(new);
1183
        free(new);
978
        return;
1184
        return;
979
    }
1185
    }
980
    oldc[olen] = '\0';
1186
    oldc[olen] = '\0';
981
    newc[nlen] = '\0';
1187
    newc[nlen] = '\0';
982
    if ((!str_lcmp(newc, oldc, str_length(oldc))) &&
1188
    if ((!str_lcmp(newc, oldc, str_length(oldc))) &&
983
        ((newc[str_length(oldc)] == '/') ||
1189
        ((newc[str_length(oldc)] == '/') ||
984
        (str_length(oldc) == 1) ||
1190
        (str_length(oldc) == 1) ||
985
        (str_length(oldc) == str_length(newc)))) {
1191
        (str_length(oldc) == str_length(newc)))) {
986
            /*
1192
            /*
987
         * oldc is a prefix of newc and either
1193
         * oldc is a prefix of newc and either
988
         * - newc continues with a / where oldc ends, or
1194
         * - newc continues with a / where oldc ends, or
989
         * - oldc was / itself, or
1195
         * - oldc was / itself, or
990
         * - oldc and newc are equal.
1196
         * - oldc and newc are equal.
991
         */
1197
         */
992
        ipc_answer_0(rid, EINVAL);
1198
        ipc_answer_0(rid, EINVAL);
993
        free(old);
1199
        free(old);
994
        free(new);
1200
        free(new);
995
        return;
1201
        return;
996
    }
1202
    }
997
   
1203
   
998
    vfs_lookup_res_t old_lr;
1204
    vfs_lookup_res_t old_lr;
999
    vfs_lookup_res_t new_lr;
1205
    vfs_lookup_res_t new_lr;
1000
    vfs_lookup_res_t new_par_lr;
1206
    vfs_lookup_res_t new_par_lr;
1001
    rwlock_write_lock(&namespace_rwlock);
1207
    fibril_rwlock_write_lock(&namespace_rwlock);
1002
    /* Lookup the node belonging to the old file name. */
1208
    /* Lookup the node belonging to the old file name. */
1003
    rc = vfs_lookup_internal(oldc, L_NONE, &old_lr, NULL);
1209
    rc = vfs_lookup_internal(oldc, L_NONE, &old_lr, NULL);
1004
    if (rc != EOK) {
1210
    if (rc != EOK) {
1005
        rwlock_write_unlock(&namespace_rwlock);
1211
        fibril_rwlock_write_unlock(&namespace_rwlock);
1006
        ipc_answer_0(rid, rc);
1212
        ipc_answer_0(rid, rc);
1007
        free(old);
1213
        free(old);
1008
        free(new);
1214
        free(new);
1009
        return;
1215
        return;
1010
    }
1216
    }
1011
    vfs_node_t *old_node = vfs_node_get(&old_lr);
1217
    vfs_node_t *old_node = vfs_node_get(&old_lr);
1012
    if (!old_node) {
1218
    if (!old_node) {
1013
        rwlock_write_unlock(&namespace_rwlock);
1219
        fibril_rwlock_write_unlock(&namespace_rwlock);
1014
        ipc_answer_0(rid, ENOMEM);
1220
        ipc_answer_0(rid, ENOMEM);
1015
        free(old);
1221
        free(old);
1016
        free(new);
1222
        free(new);
1017
        return;
1223
        return;
1018
    }
1224
    }
1019
    /* Determine the path to the parent of the node with the new name. */
1225
    /* Determine the path to the parent of the node with the new name. */
1020
    char *parentc = str_dup(newc);
1226
    char *parentc = str_dup(newc);
1021
    if (!parentc) {
1227
    if (!parentc) {
1022
        rwlock_write_unlock(&namespace_rwlock);
1228
        fibril_rwlock_write_unlock(&namespace_rwlock);
1023
        ipc_answer_0(rid, rc);
1229
        ipc_answer_0(rid, rc);
1024
        free(old);
1230
        free(old);
1025
        free(new);
1231
        free(new);
1026
        return;
1232
        return;
1027
    }
1233
    }
1028
    char *lastsl = str_rchr(parentc + 1, '/');
1234
    char *lastsl = str_rchr(parentc + 1, '/');
1029
    if (lastsl)
1235
    if (lastsl)
1030
        *lastsl = '\0';
1236
        *lastsl = '\0';
1031
    else
1237
    else
1032
        parentc[1] = '\0';
1238
        parentc[1] = '\0';
1033
    /* Lookup parent of the new file name. */
1239
    /* Lookup parent of the new file name. */
1034
    rc = vfs_lookup_internal(parentc, L_NONE, &new_par_lr, NULL);
1240
    rc = vfs_lookup_internal(parentc, L_NONE, &new_par_lr, NULL);
1035
    free(parentc);  /* not needed anymore */
1241
    free(parentc);  /* not needed anymore */
1036
    if (rc != EOK) {
1242
    if (rc != EOK) {
1037
        rwlock_write_unlock(&namespace_rwlock);
1243
        fibril_rwlock_write_unlock(&namespace_rwlock);
1038
        ipc_answer_0(rid, rc);
1244
        ipc_answer_0(rid, rc);
1039
        free(old);
1245
        free(old);
1040
        free(new);
1246
        free(new);
1041
        return;
1247
        return;
1042
    }
1248
    }
1043
    /* Check whether linking to the same file system instance. */
1249
    /* Check whether linking to the same file system instance. */
1044
    if ((old_node->fs_handle != new_par_lr.triplet.fs_handle) ||
1250
    if ((old_node->fs_handle != new_par_lr.triplet.fs_handle) ||
1045
        (old_node->dev_handle != new_par_lr.triplet.dev_handle)) {
1251
        (old_node->dev_handle != new_par_lr.triplet.dev_handle)) {
1046
        rwlock_write_unlock(&namespace_rwlock);
1252
        fibril_rwlock_write_unlock(&namespace_rwlock);
1047
        ipc_answer_0(rid, EXDEV);   /* different file systems */
1253
        ipc_answer_0(rid, EXDEV);   /* different file systems */
1048
        free(old);
1254
        free(old);
1049
        free(new);
1255
        free(new);
1050
        return;
1256
        return;
1051
    }
1257
    }
1052
    /* Destroy the old link for the new name. */
1258
    /* Destroy the old link for the new name. */
1053
    vfs_node_t *new_node = NULL;
1259
    vfs_node_t *new_node = NULL;
1054
    rc = vfs_lookup_internal(newc, L_UNLINK, &new_lr, NULL);
1260
    rc = vfs_lookup_internal(newc, L_UNLINK, &new_lr, NULL);
1055
    switch (rc) {
1261
    switch (rc) {
1056
    case ENOENT:
1262
    case ENOENT:
1057
        /* simply not in our way */
1263
        /* simply not in our way */
1058
        break;
1264
        break;
1059
    case EOK:
1265
    case EOK:
1060
        new_node = vfs_node_get(&new_lr);
1266
        new_node = vfs_node_get(&new_lr);
1061
        if (!new_node) {
1267
        if (!new_node) {
1062
            rwlock_write_unlock(&namespace_rwlock);
1268
            fibril_rwlock_write_unlock(&namespace_rwlock);
1063
            ipc_answer_0(rid, ENOMEM);
1269
            ipc_answer_0(rid, ENOMEM);
1064
            free(old);
1270
            free(old);
1065
            free(new);
1271
            free(new);
1066
            return;
1272
            return;
1067
        }
1273
        }
1068
        futex_down(&nodes_futex);
1274
        futex_down(&nodes_futex);
1069
        new_node->lnkcnt--;
1275
        new_node->lnkcnt--;
1070
        futex_up(&nodes_futex);
1276
        futex_up(&nodes_futex);
1071
        break;
1277
        break;
1072
    default:
1278
    default:
1073
        rwlock_write_unlock(&namespace_rwlock);
1279
        fibril_rwlock_write_unlock(&namespace_rwlock);
1074
        ipc_answer_0(rid, ENOTEMPTY);
1280
        ipc_answer_0(rid, ENOTEMPTY);
1075
        free(old);
1281
        free(old);
1076
        free(new);
1282
        free(new);
1077
        return;
1283
        return;
1078
    }
1284
    }
1079
    /* Create the new link for the new name. */
1285
    /* Create the new link for the new name. */
1080
    rc = vfs_lookup_internal(newc, L_LINK, NULL, NULL, old_node->index);
1286
    rc = vfs_lookup_internal(newc, L_LINK, NULL, NULL, old_node->index);
1081
    if (rc != EOK) {
1287
    if (rc != EOK) {
1082
        rwlock_write_unlock(&namespace_rwlock);
1288
        fibril_rwlock_write_unlock(&namespace_rwlock);
1083
        if (new_node)
1289
        if (new_node)
1084
            vfs_node_put(new_node);
1290
            vfs_node_put(new_node);
1085
        ipc_answer_0(rid, rc);
1291
        ipc_answer_0(rid, rc);
1086
        free(old);
1292
        free(old);
1087
        free(new);
1293
        free(new);
1088
        return;
1294
        return;
1089
    }
1295
    }
1090
    futex_down(&nodes_futex);
1296
    futex_down(&nodes_futex);
1091
    old_node->lnkcnt++;
1297
    old_node->lnkcnt++;
1092
    futex_up(&nodes_futex);
1298
    futex_up(&nodes_futex);
1093
    /* Destroy the link for the old name. */
1299
    /* Destroy the link for the old name. */
1094
    rc = vfs_lookup_internal(oldc, L_UNLINK, NULL, NULL);
1300
    rc = vfs_lookup_internal(oldc, L_UNLINK, NULL, NULL);
1095
    if (rc != EOK) {
1301
    if (rc != EOK) {
1096
        rwlock_write_unlock(&namespace_rwlock);
1302
        fibril_rwlock_write_unlock(&namespace_rwlock);
1097
        vfs_node_put(old_node);
1303
        vfs_node_put(old_node);
1098
        if (new_node)
1304
        if (new_node)
1099
            vfs_node_put(new_node);
1305
            vfs_node_put(new_node);
1100
        ipc_answer_0(rid, rc);
1306
        ipc_answer_0(rid, rc);
1101
        free(old);
1307
        free(old);
1102
        free(new);
1308
        free(new);
1103
        return;
1309
        return;
1104
    }
1310
    }
1105
    futex_down(&nodes_futex);
1311
    futex_down(&nodes_futex);
1106
    old_node->lnkcnt--;
1312
    old_node->lnkcnt--;
1107
    futex_up(&nodes_futex);
1313
    futex_up(&nodes_futex);
1108
    rwlock_write_unlock(&namespace_rwlock);
1314
    fibril_rwlock_write_unlock(&namespace_rwlock);
1109
    vfs_node_put(old_node);
1315
    vfs_node_put(old_node);
1110
    if (new_node)
1316
    if (new_node)
1111
        vfs_node_put(new_node);
1317
        vfs_node_put(new_node);
1112
    free(old);
1318
    free(old);
1113
    free(new);
1319
    free(new);
1114
    ipc_answer_0(rid, EOK);
1320
    ipc_answer_0(rid, EOK);
1115
}
1321
}
1116
 
1322
 
1117
/**
1323
/**
1118
 * @}
1324
 * @}
1119
 */
1325
 */
1120
 
1326