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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 libc
29
/** @addtogroup libc
30
 * @{
30
 * @{
31
 */
31
 */
32
/** @file
32
/** @file
33
 */
33
 */
34
 
34
 
35
#include <vfs/vfs.h>
35
#include <vfs/vfs.h>
36
#include <vfs/canonify.h>
36
#include <vfs/canonify.h>
37
#include <stdlib.h>
37
#include <stdlib.h>
38
#include <unistd.h>
38
#include <unistd.h>
39
#include <dirent.h>
39
#include <dirent.h>
40
#include <fcntl.h>
40
#include <fcntl.h>
41
#include <sys/stat.h>
41
#include <sys/stat.h>
42
#include <stdio.h>
42
#include <stdio.h>
43
#include <sys/types.h>
43
#include <sys/types.h>
44
#include <ipc/ipc.h>
44
#include <ipc/ipc.h>
45
#include <ipc/services.h>
45
#include <ipc/services.h>
46
#include <async.h>
46
#include <async.h>
47
#include <atomic.h>
47
#include <atomic.h>
48
#include <futex.h>
48
#include <futex.h>
49
#include <errno.h>
49
#include <errno.h>
50
#include <string.h>
50
#include <string.h>
-
 
51
#include <devmap.h>
-
 
52
#include <ipc/vfs.h>
51
#include <ipc/devmap.h>
53
#include <ipc/devmap.h>
52
#include "../../../srv/vfs/vfs.h"
-
 
53
 
54
 
54
int vfs_phone = -1;
55
static int vfs_phone = -1;
55
futex_t vfs_phone_futex = FUTEX_INITIALIZER;
56
static futex_t vfs_phone_futex = FUTEX_INITIALIZER;
-
 
57
static futex_t cwd_futex = FUTEX_INITIALIZER;
56
 
58
 
57
futex_t cwd_futex = FUTEX_INITIALIZER;
-
 
58
DIR *cwd_dir = NULL;
59
DIR *cwd_dir = NULL;
59
char *cwd_path = NULL;
60
char *cwd_path = NULL;
60
size_t cwd_size = 0;
61
size_t cwd_size = 0;
61
 
62
 
62
char *absolutize(const char *path, size_t *retlen)
63
char *absolutize(const char *path, size_t *retlen)
63
{
64
{
64
    char *ncwd_path;
65
    char *ncwd_path;
65
    char *ncwd_path_nc;
66
    char *ncwd_path_nc;
66
 
67
 
67
    futex_down(&cwd_futex);
68
    futex_down(&cwd_futex);
68
    size_t size = str_size(path);
69
    size_t size = str_size(path);
69
    if (*path != '/') {
70
    if (*path != '/') {
70
        if (!cwd_path) {
71
        if (!cwd_path) {
71
            futex_up(&cwd_futex);
72
            futex_up(&cwd_futex);
72
            return NULL;
73
            return NULL;
73
        }
74
        }
74
        ncwd_path_nc = malloc(cwd_size + 1 + size + 1);
75
        ncwd_path_nc = malloc(cwd_size + 1 + size + 1);
75
        if (!ncwd_path_nc) {
76
        if (!ncwd_path_nc) {
76
            futex_up(&cwd_futex);
77
            futex_up(&cwd_futex);
77
            return NULL;
78
            return NULL;
78
        }
79
        }
79
        str_cpy(ncwd_path_nc, cwd_size + 1 + size + 1, cwd_path);
80
        str_cpy(ncwd_path_nc, cwd_size + 1 + size + 1, cwd_path);
80
        ncwd_path_nc[cwd_size] = '/';
81
        ncwd_path_nc[cwd_size] = '/';
81
        ncwd_path_nc[cwd_size + 1] = '\0';
82
        ncwd_path_nc[cwd_size + 1] = '\0';
82
    } else {
83
    } else {
83
        ncwd_path_nc = malloc(size + 1);
84
        ncwd_path_nc = malloc(size + 1);
84
        if (!ncwd_path_nc) {
85
        if (!ncwd_path_nc) {
85
            futex_up(&cwd_futex);
86
            futex_up(&cwd_futex);
86
            return NULL;
87
            return NULL;
87
        }
88
        }
88
        ncwd_path_nc[0] = '\0';
89
        ncwd_path_nc[0] = '\0';
89
    }
90
    }
90
    str_append(ncwd_path_nc, cwd_size + 1 + size + 1, path);
91
    str_append(ncwd_path_nc, cwd_size + 1 + size + 1, path);
91
    ncwd_path = canonify(ncwd_path_nc, retlen);
92
    ncwd_path = canonify(ncwd_path_nc, retlen);
92
    if (!ncwd_path) {
93
    if (!ncwd_path) {
93
        futex_up(&cwd_futex);
94
        futex_up(&cwd_futex);
94
        free(ncwd_path_nc);
95
        free(ncwd_path_nc);
95
        return NULL;
96
        return NULL;
96
    }
97
    }
97
    /*
98
    /*
98
     * We need to clone ncwd_path because canonify() works in-place and thus
99
     * We need to clone ncwd_path because canonify() works in-place and thus
99
     * the address in ncwd_path need not be the same as ncwd_path_nc, even
100
     * the address in ncwd_path need not be the same as ncwd_path_nc, even
100
     * though they both point into the same dynamically allocated buffer.
101
     * though they both point into the same dynamically allocated buffer.
101
     */
102
     */
102
    ncwd_path = str_dup(ncwd_path);
103
    ncwd_path = str_dup(ncwd_path);
103
    free(ncwd_path_nc);
104
    free(ncwd_path_nc);
104
    if (!ncwd_path) {
105
    if (!ncwd_path) {
105
        futex_up(&cwd_futex);
106
        futex_up(&cwd_futex);
106
        return NULL;
107
        return NULL;
107
    }
108
    }
108
    futex_up(&cwd_futex);
109
    futex_up(&cwd_futex);
109
    return ncwd_path;
110
    return ncwd_path;
110
}
111
}
111
 
112
 
112
static void vfs_connect(void)
113
static void vfs_connect(void)
113
{
114
{
114
    while (vfs_phone < 0)
115
    while (vfs_phone < 0)
115
        vfs_phone = ipc_connect_me_to_blocking(PHONE_NS, SERVICE_VFS, 0, 0);
116
        vfs_phone = ipc_connect_me_to_blocking(PHONE_NS, SERVICE_VFS, 0, 0);
116
}
117
}
117
 
118
 
118
static int device_get_handle(const char *name, dev_handle_t *handle,
-
 
119
    const unsigned int flags)
-
 
120
{
-
 
121
    int phone;
-
 
122
   
-
 
123
    if (flags & IPC_FLAG_BLOCKING)
-
 
124
        phone = ipc_connect_me_to_blocking(PHONE_NS, SERVICE_DEVMAP, DEVMAP_CLIENT, 0);
-
 
125
    else
-
 
126
        phone = ipc_connect_me_to(PHONE_NS, SERVICE_DEVMAP, DEVMAP_CLIENT, 0);
-
 
127
   
-
 
128
    if (phone < 0)
-
 
129
        return phone;
-
 
130
   
-
 
131
    ipc_call_t answer;
-
 
132
    aid_t req = async_send_2(phone, DEVMAP_DEVICE_GET_HANDLE, flags, 0,
-
 
133
        &answer);
-
 
134
   
-
 
135
    ipcarg_t retval = ipc_data_write_start(phone, name, str_size(name) + 1);
-
 
136
   
-
 
137
    if (retval != EOK) {
-
 
138
        async_wait_for(req, NULL);
-
 
139
        ipc_hangup(phone);
-
 
140
        return retval;
-
 
141
    }
-
 
142
   
-
 
143
    async_wait_for(req, &retval);
-
 
144
   
-
 
145
    if (handle != NULL)
-
 
146
        *handle = -1;
-
 
147
   
-
 
148
    if (retval == EOK) {
-
 
149
        if (handle != NULL)
-
 
150
            *handle = (dev_handle_t) IPC_GET_ARG1(answer);
-
 
151
    }
-
 
152
   
-
 
153
    ipc_hangup(phone);
-
 
154
    return retval;
-
 
155
}
-
 
156
 
-
 
157
int mount(const char *fs_name, const char *mp, const char *dev,
119
int mount(const char *fs_name, const char *mp, const char *dev,
158
    const char *opts, const unsigned int flags)
120
    const char *opts, unsigned int flags)
159
{
121
{
160
    int res;
122
    int res;
161
    ipcarg_t rc;
123
    ipcarg_t rc;
162
    aid_t req;
124
    aid_t req;
163
    dev_handle_t dev_handle;
125
    dev_handle_t dev_handle;
164
   
126
   
165
    res = device_get_handle(dev, &dev_handle, flags);
127
    res = devmap_device_get_handle(dev, &dev_handle, flags);
166
    if (res != EOK)
128
    if (res != EOK)
167
        return res;
129
        return res;
168
   
130
   
169
    size_t mpa_size;
131
    size_t mpa_size;
170
    char *mpa = absolutize(mp, &mpa_size);
132
    char *mpa = absolutize(mp, &mpa_size);
171
    if (!mpa)
133
    if (!mpa)
172
        return ENOMEM;
134
        return ENOMEM;
173
   
135
   
174
    futex_down(&vfs_phone_futex);
136
    futex_down(&vfs_phone_futex);
175
    async_serialize_start();
137
    async_serialize_start();
176
    vfs_connect();
138
    vfs_connect();
177
   
139
   
178
    req = async_send_2(vfs_phone, VFS_MOUNT, dev_handle, flags, NULL);
140
    req = async_send_2(vfs_phone, VFS_MOUNT, dev_handle, flags, NULL);
179
    rc = ipc_data_write_start(vfs_phone, (void *) mpa, mpa_size);
141
    rc = ipc_data_write_start(vfs_phone, (void *) mpa, mpa_size);
180
    if (rc != EOK) {
142
    if (rc != EOK) {
181
        async_wait_for(req, NULL);
143
        async_wait_for(req, NULL);
182
        async_serialize_end();
144
        async_serialize_end();
183
        futex_up(&vfs_phone_futex);
145
        futex_up(&vfs_phone_futex);
184
        free(mpa);
146
        free(mpa);
185
        return (int) rc;
147
        return (int) rc;
186
    }
148
    }
187
   
149
   
188
    rc = ipc_data_write_start(vfs_phone, (void *) opts, str_size(opts));
150
    rc = ipc_data_write_start(vfs_phone, (void *) opts, str_size(opts));
189
    if (rc != EOK) {
151
    if (rc != EOK) {
190
        async_wait_for(req, NULL);
152
        async_wait_for(req, NULL);
191
        async_serialize_end();
153
        async_serialize_end();
192
        futex_up(&vfs_phone_futex);
154
        futex_up(&vfs_phone_futex);
193
        free(mpa);
155
        free(mpa);
194
        return (int) rc;
156
        return (int) rc;
195
    }
157
    }
196
 
158
 
197
    rc = ipc_data_write_start(vfs_phone, (void *) fs_name, str_size(fs_name));
159
    rc = ipc_data_write_start(vfs_phone, (void *) fs_name, str_size(fs_name));
198
    if (rc != EOK) {
160
    if (rc != EOK) {
199
        async_wait_for(req, NULL);
161
        async_wait_for(req, NULL);
200
        async_serialize_end();
162
        async_serialize_end();
201
        futex_up(&vfs_phone_futex);
163
        futex_up(&vfs_phone_futex);
202
        free(mpa);
164
        free(mpa);
203
        return (int) rc;
165
        return (int) rc;
204
    }
166
    }
205
 
167
 
206
    /* Ask VFS whether it likes fs_name. */
168
    /* Ask VFS whether it likes fs_name. */
207
    rc = async_req_0_0(vfs_phone, IPC_M_PING);
169
    rc = async_req_0_0(vfs_phone, IPC_M_PING);
208
    if (rc != EOK) {
170
    if (rc != EOK) {
209
        async_wait_for(req, NULL);
171
        async_wait_for(req, NULL);
210
        async_serialize_end();
172
        async_serialize_end();
211
        futex_up(&vfs_phone_futex);
173
        futex_up(&vfs_phone_futex);
212
        free(mpa);
174
        free(mpa);
213
        return (int) rc;
175
        return (int) rc;
214
    }
176
    }
215
   
177
   
216
    async_wait_for(req, &rc);
178
    async_wait_for(req, &rc);
217
    async_serialize_end();
179
    async_serialize_end();
218
    futex_up(&vfs_phone_futex);
180
    futex_up(&vfs_phone_futex);
219
    free(mpa);
181
    free(mpa);
220
   
182
   
221
    return (int) rc;
183
    return (int) rc;
222
}
184
}
223
 
185
 
224
static int _open(const char *path, int lflag, int oflag, ...)
186
static int _open(const char *path, int lflag, int oflag, ...)
225
{
187
{
226
    ipcarg_t rc;
188
    ipcarg_t rc;
227
    ipc_call_t answer;
189
    ipc_call_t answer;
228
    aid_t req;
190
    aid_t req;
229
   
191
   
230
    size_t pa_size;
192
    size_t pa_size;
231
    char *pa = absolutize(path, &pa_size);
193
    char *pa = absolutize(path, &pa_size);
232
    if (!pa)
194
    if (!pa)
233
        return ENOMEM;
195
        return ENOMEM;
234
   
196
   
235
    futex_down(&vfs_phone_futex);
197
    futex_down(&vfs_phone_futex);
236
    async_serialize_start();
198
    async_serialize_start();
237
    vfs_connect();
199
    vfs_connect();
238
   
200
   
239
    req = async_send_3(vfs_phone, VFS_OPEN, lflag, oflag, 0, &answer);
201
    req = async_send_3(vfs_phone, VFS_OPEN, lflag, oflag, 0, &answer);
240
    rc = ipc_data_write_start(vfs_phone, pa, pa_size);
202
    rc = ipc_data_write_start(vfs_phone, pa, pa_size);
241
    if (rc != EOK) {
203
    if (rc != EOK) {
242
        async_wait_for(req, NULL);
204
        async_wait_for(req, NULL);
243
        async_serialize_end();
205
        async_serialize_end();
244
        futex_up(&vfs_phone_futex);
206
        futex_up(&vfs_phone_futex);
245
        free(pa);
207
        free(pa);
246
        return (int) rc;
208
        return (int) rc;
247
    }
209
    }
248
    async_wait_for(req, &rc);
210
    async_wait_for(req, &rc);
249
    async_serialize_end();
211
    async_serialize_end();
250
    futex_up(&vfs_phone_futex);
212
    futex_up(&vfs_phone_futex);
251
    free(pa);
213
    free(pa);
252
 
214
   
253
    if (rc != EOK)
215
    if (rc != EOK)
254
        return (int) rc;
216
        return (int) rc;
-
 
217
   
255
    return (int) IPC_GET_ARG1(answer);
218
    return (int) IPC_GET_ARG1(answer);
256
}
219
}
257
 
220
 
258
int open(const char *path, int oflag, ...)
221
int open(const char *path, int oflag, ...)
259
{
222
{
260
    return _open(path, L_FILE, oflag);
223
    return _open(path, L_FILE, oflag);
261
}
224
}
262
 
225
 
-
 
226
int open_node(fdi_node_t *node, int oflag)
-
 
227
{
-
 
228
    futex_down(&vfs_phone_futex);
-
 
229
    async_serialize_start();
-
 
230
    vfs_connect();
-
 
231
   
-
 
232
    ipc_call_t answer;
-
 
233
    aid_t req = async_send_4(vfs_phone, VFS_OPEN_NODE, node->fs_handle,
-
 
234
        node->dev_handle, node->index, oflag, &answer);
-
 
235
   
-
 
236
    ipcarg_t rc;
-
 
237
    async_wait_for(req, &rc);
-
 
238
    async_serialize_end();
-
 
239
    futex_up(&vfs_phone_futex);
-
 
240
   
-
 
241
    if (rc != EOK)
-
 
242
        return (int) rc;
-
 
243
   
-
 
244
    return (int) IPC_GET_ARG1(answer);
-
 
245
}
-
 
246
 
263
int close(int fildes)
247
int close(int fildes)
264
{
248
{
265
    ipcarg_t rc;
249
    ipcarg_t rc;
266
   
250
   
267
    futex_down(&vfs_phone_futex);
251
    futex_down(&vfs_phone_futex);
268
    async_serialize_start();
252
    async_serialize_start();
269
    vfs_connect();
253
    vfs_connect();
270
   
254
   
271
    rc = async_req_1_0(vfs_phone, VFS_CLOSE, fildes);
255
    rc = async_req_1_0(vfs_phone, VFS_CLOSE, fildes);
272
   
256
   
273
    async_serialize_end();
257
    async_serialize_end();
274
    futex_up(&vfs_phone_futex);
258
    futex_up(&vfs_phone_futex);
275
   
259
   
276
    return (int)rc;
260
    return (int)rc;
277
}
261
}
278
 
262
 
279
ssize_t read(int fildes, void *buf, size_t nbyte)
263
ssize_t read(int fildes, void *buf, size_t nbyte)
280
{
264
{
281
    ipcarg_t rc;
265
    ipcarg_t rc;
282
    ipc_call_t answer;
266
    ipc_call_t answer;
283
    aid_t req;
267
    aid_t req;
284
 
268
 
285
    futex_down(&vfs_phone_futex);
269
    futex_down(&vfs_phone_futex);
286
    async_serialize_start();
270
    async_serialize_start();
287
    vfs_connect();
271
    vfs_connect();
288
   
272
   
289
    req = async_send_1(vfs_phone, VFS_READ, fildes, &answer);
273
    req = async_send_1(vfs_phone, VFS_READ, fildes, &answer);
290
    rc = ipc_data_read_start(vfs_phone, (void *)buf, nbyte);
274
    rc = ipc_data_read_start(vfs_phone, (void *)buf, nbyte);
291
    if (rc != EOK) {
275
    if (rc != EOK) {
292
        async_wait_for(req, NULL);
276
        async_wait_for(req, NULL);
293
        async_serialize_end();
277
        async_serialize_end();
294
        futex_up(&vfs_phone_futex);
278
        futex_up(&vfs_phone_futex);
295
        return (ssize_t) rc;
279
        return (ssize_t) rc;
296
    }
280
    }
297
    async_wait_for(req, &rc);
281
    async_wait_for(req, &rc);
298
    async_serialize_end();
282
    async_serialize_end();
299
    futex_up(&vfs_phone_futex);
283
    futex_up(&vfs_phone_futex);
300
    if (rc == EOK)
284
    if (rc == EOK)
301
        return (ssize_t) IPC_GET_ARG1(answer);
285
        return (ssize_t) IPC_GET_ARG1(answer);
302
    else
286
    else
303
        return rc;
287
        return rc;
304
}
288
}
305
 
289
 
306
ssize_t write(int fildes, const void *buf, size_t nbyte)
290
ssize_t write(int fildes, const void *buf, size_t nbyte)
307
{
291
{
308
    ipcarg_t rc;
292
    ipcarg_t rc;
309
    ipc_call_t answer;
293
    ipc_call_t answer;
310
    aid_t req;
294
    aid_t req;
311
 
295
 
312
    futex_down(&vfs_phone_futex);
296
    futex_down(&vfs_phone_futex);
313
    async_serialize_start();
297
    async_serialize_start();
314
    vfs_connect();
298
    vfs_connect();
315
   
299
   
316
    req = async_send_1(vfs_phone, VFS_WRITE, fildes, &answer);
300
    req = async_send_1(vfs_phone, VFS_WRITE, fildes, &answer);
317
    rc = ipc_data_write_start(vfs_phone, (void *)buf, nbyte);
301
    rc = ipc_data_write_start(vfs_phone, (void *)buf, nbyte);
318
    if (rc != EOK) {
302
    if (rc != EOK) {
319
        async_wait_for(req, NULL);
303
        async_wait_for(req, NULL);
320
        async_serialize_end();
304
        async_serialize_end();
321
        futex_up(&vfs_phone_futex);
305
        futex_up(&vfs_phone_futex);
322
        return (ssize_t) rc;
306
        return (ssize_t) rc;
323
    }
307
    }
324
    async_wait_for(req, &rc);
308
    async_wait_for(req, &rc);
325
    async_serialize_end();
309
    async_serialize_end();
326
    futex_up(&vfs_phone_futex);
310
    futex_up(&vfs_phone_futex);
327
    if (rc == EOK)
311
    if (rc == EOK)
328
        return (ssize_t) IPC_GET_ARG1(answer);
312
        return (ssize_t) IPC_GET_ARG1(answer);
329
    else
313
    else
330
        return -1;
314
        return -1;
331
}
315
}
332
 
316
 
-
 
317
int fd_phone(int fildes)
-
 
318
{
-
 
319
    futex_down(&vfs_phone_futex);
-
 
320
    async_serialize_start();
-
 
321
    vfs_connect();
-
 
322
   
-
 
323
    ipcarg_t device;
-
 
324
    ipcarg_t rc = async_req_1_1(vfs_phone, VFS_DEVICE, fildes, &device);
-
 
325
   
-
 
326
    async_serialize_end();
-
 
327
    futex_up(&vfs_phone_futex);
-
 
328
   
-
 
329
    if (rc != EOK)
-
 
330
        return -1;
-
 
331
   
-
 
332
    return devmap_device_connect((dev_handle_t) device, 0);
-
 
333
}
-
 
334
 
-
 
335
int fd_node(int fildes, fdi_node_t *node)
-
 
336
{
-
 
337
    futex_down(&vfs_phone_futex);
-
 
338
    async_serialize_start();
-
 
339
    vfs_connect();
-
 
340
   
-
 
341
    ipcarg_t fs_handle;
-
 
342
    ipcarg_t dev_handle;
-
 
343
    ipcarg_t index;
-
 
344
    ipcarg_t rc = async_req_1_3(vfs_phone, VFS_NODE, fildes, &fs_handle,
-
 
345
        &dev_handle, &index);
-
 
346
   
-
 
347
    async_serialize_end();
-
 
348
    futex_up(&vfs_phone_futex);
-
 
349
   
-
 
350
    if (rc == EOK) {
-
 
351
        node->fs_handle = (fs_handle_t) fs_handle;
-
 
352
        node->dev_handle = (dev_handle_t) dev_handle;
-
 
353
        node->index = (fs_index_t) index;
-
 
354
    }
-
 
355
   
-
 
356
    return rc;
-
 
357
}
-
 
358
 
-
 
359
int fsync(int fildes)
-
 
360
{
-
 
361
    futex_down(&vfs_phone_futex);
-
 
362
    async_serialize_start();
-
 
363
    vfs_connect();
-
 
364
   
-
 
365
    ipcarg_t rc = async_req_1_0(vfs_phone, VFS_SYNC, fildes);
-
 
366
   
-
 
367
    async_serialize_end();
-
 
368
    futex_up(&vfs_phone_futex);
-
 
369
   
-
 
370
    return (int) rc;
-
 
371
}
-
 
372
 
333
off_t lseek(int fildes, off_t offset, int whence)
373
off_t lseek(int fildes, off_t offset, int whence)
334
{
374
{
335
    ipcarg_t rc;
375
    ipcarg_t rc;
336
 
376
 
337
    futex_down(&vfs_phone_futex);
377
    futex_down(&vfs_phone_futex);
338
    async_serialize_start();
378
    async_serialize_start();
339
    vfs_connect();
379
    vfs_connect();
340
   
380
   
341
    ipcarg_t newoffs;
381
    ipcarg_t newoffs;
342
    rc = async_req_3_1(vfs_phone, VFS_SEEK, fildes, offset, whence,
382
    rc = async_req_3_1(vfs_phone, VFS_SEEK, fildes, offset, whence,
343
        &newoffs);
383
        &newoffs);
344
 
384
 
345
    async_serialize_end();
385
    async_serialize_end();
346
    futex_up(&vfs_phone_futex);
386
    futex_up(&vfs_phone_futex);
347
 
387
 
348
    if (rc != EOK)
388
    if (rc != EOK)
349
        return (off_t) -1;
389
        return (off_t) -1;
350
   
390
   
351
    return (off_t) newoffs;
391
    return (off_t) newoffs;
352
}
392
}
353
 
393
 
354
int ftruncate(int fildes, off_t length)
394
int ftruncate(int fildes, off_t length)
355
{
395
{
356
    ipcarg_t rc;
396
    ipcarg_t rc;
357
   
397
   
358
    futex_down(&vfs_phone_futex);
398
    futex_down(&vfs_phone_futex);
359
    async_serialize_start();
399
    async_serialize_start();
360
    vfs_connect();
400
    vfs_connect();
361
   
401
   
362
    rc = async_req_2_0(vfs_phone, VFS_TRUNCATE, fildes, length);
402
    rc = async_req_2_0(vfs_phone, VFS_TRUNCATE, fildes, length);
363
    async_serialize_end();
403
    async_serialize_end();
364
    futex_up(&vfs_phone_futex);
404
    futex_up(&vfs_phone_futex);
365
    return (int) rc;
405
    return (int) rc;
366
}
406
}
367
 
407
 
368
DIR *opendir(const char *dirname)
408
DIR *opendir(const char *dirname)
369
{
409
{
370
    DIR *dirp = malloc(sizeof(DIR));
410
    DIR *dirp = malloc(sizeof(DIR));
371
    if (!dirp)
411
    if (!dirp)
372
        return NULL;
412
        return NULL;
373
    dirp->fd = _open(dirname, L_DIRECTORY, 0);
413
    dirp->fd = _open(dirname, L_DIRECTORY, 0);
374
    if (dirp->fd < 0) {
414
    if (dirp->fd < 0) {
375
        free(dirp);
415
        free(dirp);
376
        return NULL;
416
        return NULL;
377
    }
417
    }
378
    return dirp;
418
    return dirp;
379
}
419
}
380
 
420
 
381
struct dirent *readdir(DIR *dirp)
421
struct dirent *readdir(DIR *dirp)
382
{
422
{
383
    ssize_t len = read(dirp->fd, &dirp->res.d_name[0], NAME_MAX + 1);
423
    ssize_t len = read(dirp->fd, &dirp->res.d_name[0], NAME_MAX + 1);
384
    if (len <= 0)
424
    if (len <= 0)
385
        return NULL;
425
        return NULL;
386
    return &dirp->res;
426
    return &dirp->res;
387
}
427
}
388
 
428
 
389
void rewinddir(DIR *dirp)
429
void rewinddir(DIR *dirp)
390
{
430
{
391
    (void) lseek(dirp->fd, 0, SEEK_SET);
431
    (void) lseek(dirp->fd, 0, SEEK_SET);
392
}
432
}
393
 
433
 
394
int closedir(DIR *dirp)
434
int closedir(DIR *dirp)
395
{
435
{
396
    (void) close(dirp->fd);
436
    (void) close(dirp->fd);
397
    free(dirp);
437
    free(dirp);
398
    return 0;
438
    return 0;
399
}
439
}
400
 
440
 
401
int mkdir(const char *path, mode_t mode)
441
int mkdir(const char *path, mode_t mode)
402
{
442
{
403
    ipcarg_t rc;
443
    ipcarg_t rc;
404
    aid_t req;
444
    aid_t req;
405
   
445
   
406
    size_t pa_size;
446
    size_t pa_size;
407
    char *pa = absolutize(path, &pa_size);
447
    char *pa = absolutize(path, &pa_size);
408
    if (!pa)
448
    if (!pa)
409
        return ENOMEM;
449
        return ENOMEM;
410
   
450
   
411
    futex_down(&vfs_phone_futex);
451
    futex_down(&vfs_phone_futex);
412
    async_serialize_start();
452
    async_serialize_start();
413
    vfs_connect();
453
    vfs_connect();
414
   
454
   
415
    req = async_send_1(vfs_phone, VFS_MKDIR, mode, NULL);
455
    req = async_send_1(vfs_phone, VFS_MKDIR, mode, NULL);
416
    rc = ipc_data_write_start(vfs_phone, pa, pa_size);
456
    rc = ipc_data_write_start(vfs_phone, pa, pa_size);
417
    if (rc != EOK) {
457
    if (rc != EOK) {
418
        async_wait_for(req, NULL);
458
        async_wait_for(req, NULL);
419
        async_serialize_end();
459
        async_serialize_end();
420
        futex_up(&vfs_phone_futex);
460
        futex_up(&vfs_phone_futex);
421
        free(pa);
461
        free(pa);
422
        return (int) rc;
462
        return (int) rc;
423
    }
463
    }
424
    async_wait_for(req, &rc);
464
    async_wait_for(req, &rc);
425
    async_serialize_end();
465
    async_serialize_end();
426
    futex_up(&vfs_phone_futex);
466
    futex_up(&vfs_phone_futex);
427
    free(pa);
467
    free(pa);
428
    return rc;
468
    return rc;
429
}
469
}
430
 
470
 
431
static int _unlink(const char *path, int lflag)
471
static int _unlink(const char *path, int lflag)
432
{
472
{
433
    ipcarg_t rc;
473
    ipcarg_t rc;
434
    aid_t req;
474
    aid_t req;
435
   
475
   
436
    size_t pa_size;
476
    size_t pa_size;
437
    char *pa = absolutize(path, &pa_size);
477
    char *pa = absolutize(path, &pa_size);
438
    if (!pa)
478
    if (!pa)
439
        return ENOMEM;
479
        return ENOMEM;
440
 
480
 
441
    futex_down(&vfs_phone_futex);
481
    futex_down(&vfs_phone_futex);
442
    async_serialize_start();
482
    async_serialize_start();
443
    vfs_connect();
483
    vfs_connect();
444
   
484
   
445
    req = async_send_0(vfs_phone, VFS_UNLINK, NULL);
485
    req = async_send_0(vfs_phone, VFS_UNLINK, NULL);
446
    rc = ipc_data_write_start(vfs_phone, pa, pa_size);
486
    rc = ipc_data_write_start(vfs_phone, pa, pa_size);
447
    if (rc != EOK) {
487
    if (rc != EOK) {
448
        async_wait_for(req, NULL);
488
        async_wait_for(req, NULL);
449
        async_serialize_end();
489
        async_serialize_end();
450
        futex_up(&vfs_phone_futex);
490
        futex_up(&vfs_phone_futex);
451
        free(pa);
491
        free(pa);
452
        return (int) rc;
492
        return (int) rc;
453
    }
493
    }
454
    async_wait_for(req, &rc);
494
    async_wait_for(req, &rc);
455
    async_serialize_end();
495
    async_serialize_end();
456
    futex_up(&vfs_phone_futex);
496
    futex_up(&vfs_phone_futex);
457
    free(pa);
497
    free(pa);
458
    return rc;
498
    return rc;
459
}
499
}
460
 
500
 
461
int unlink(const char *path)
501
int unlink(const char *path)
462
{
502
{
463
    return _unlink(path, L_NONE);
503
    return _unlink(path, L_NONE);
464
}
504
}
465
 
505
 
466
int rmdir(const char *path)
506
int rmdir(const char *path)
467
{
507
{
468
    return _unlink(path, L_DIRECTORY);
508
    return _unlink(path, L_DIRECTORY);
469
}
509
}
470
 
510
 
471
int rename(const char *old, const char *new)
511
int rename(const char *old, const char *new)
472
{
512
{
473
    ipcarg_t rc;
513
    ipcarg_t rc;
474
    aid_t req;
514
    aid_t req;
475
   
515
   
476
    size_t olda_size;
516
    size_t olda_size;
477
    char *olda = absolutize(old, &olda_size);
517
    char *olda = absolutize(old, &olda_size);
478
    if (!olda)
518
    if (!olda)
479
        return ENOMEM;
519
        return ENOMEM;
480
 
520
 
481
    size_t newa_size;
521
    size_t newa_size;
482
    char *newa = absolutize(new, &newa_size);
522
    char *newa = absolutize(new, &newa_size);
483
    if (!newa) {
523
    if (!newa) {
484
        free(olda);
524
        free(olda);
485
        return ENOMEM;
525
        return ENOMEM;
486
    }
526
    }
487
 
527
 
488
    futex_down(&vfs_phone_futex);
528
    futex_down(&vfs_phone_futex);
489
    async_serialize_start();
529
    async_serialize_start();
490
    vfs_connect();
530
    vfs_connect();
491
   
531
   
492
    req = async_send_0(vfs_phone, VFS_RENAME, NULL);
532
    req = async_send_0(vfs_phone, VFS_RENAME, NULL);
493
    rc = ipc_data_write_start(vfs_phone, olda, olda_size);
533
    rc = ipc_data_write_start(vfs_phone, olda, olda_size);
494
    if (rc != EOK) {
534
    if (rc != EOK) {
495
        async_wait_for(req, NULL);
535
        async_wait_for(req, NULL);
496
        async_serialize_end();
536
        async_serialize_end();
497
        futex_up(&vfs_phone_futex);
537
        futex_up(&vfs_phone_futex);
498
        free(olda);
538
        free(olda);
499
        free(newa);
539
        free(newa);
500
        return (int) rc;
540
        return (int) rc;
501
    }
541
    }
502
    rc = ipc_data_write_start(vfs_phone, newa, newa_size);
542
    rc = ipc_data_write_start(vfs_phone, newa, newa_size);
503
    if (rc != EOK) {
543
    if (rc != EOK) {
504
        async_wait_for(req, NULL);
544
        async_wait_for(req, NULL);
505
        async_serialize_end();
545
        async_serialize_end();
506
        futex_up(&vfs_phone_futex);
546
        futex_up(&vfs_phone_futex);
507
        free(olda);
547
        free(olda);
508
        free(newa);
548
        free(newa);
509
        return (int) rc;
549
        return (int) rc;
510
    }
550
    }
511
    async_wait_for(req, &rc);
551
    async_wait_for(req, &rc);
512
    async_serialize_end();
552
    async_serialize_end();
513
    futex_up(&vfs_phone_futex);
553
    futex_up(&vfs_phone_futex);
514
    free(olda);
554
    free(olda);
515
    free(newa);
555
    free(newa);
516
    return rc;
556
    return rc;
517
}
557
}
518
 
558
 
519
int chdir(const char *path)
559
int chdir(const char *path)
520
{
560
{
521
    size_t pa_size;
561
    size_t pa_size;
522
    char *pa = absolutize(path, &pa_size);
562
    char *pa = absolutize(path, &pa_size);
523
    if (!pa)
563
    if (!pa)
524
        return ENOMEM;
564
        return ENOMEM;
525
 
565
 
526
    DIR *d = opendir(pa);
566
    DIR *d = opendir(pa);
527
    if (!d) {
567
    if (!d) {
528
        free(pa);
568
        free(pa);
529
        return ENOENT;
569
        return ENOENT;
530
    }
570
    }
531
 
571
 
532
    futex_down(&cwd_futex);
572
    futex_down(&cwd_futex);
533
    if (cwd_dir) {
573
    if (cwd_dir) {
534
        closedir(cwd_dir);
574
        closedir(cwd_dir);
535
        cwd_dir = NULL;
575
        cwd_dir = NULL;
536
        free(cwd_path);
576
        free(cwd_path);
537
        cwd_path = NULL;
577
        cwd_path = NULL;
538
        cwd_size = 0;
578
        cwd_size = 0;
539
    }
579
    }
540
    cwd_dir = d;
580
    cwd_dir = d;
541
    cwd_path = pa;
581
    cwd_path = pa;
542
    cwd_size = pa_size;
582
    cwd_size = pa_size;
543
    futex_up(&cwd_futex);
583
    futex_up(&cwd_futex);
544
    return EOK;
584
    return EOK;
545
}
585
}
546
 
586
 
547
char *getcwd(char *buf, size_t size)
587
char *getcwd(char *buf, size_t size)
548
{
588
{
549
    if (!size)
589
    if (!size)
550
        return NULL;
590
        return NULL;
551
    futex_down(&cwd_futex);
591
    futex_down(&cwd_futex);
552
    if (size < cwd_size + 1) {
592
    if (size < cwd_size + 1) {
553
        futex_up(&cwd_futex);
593
        futex_up(&cwd_futex);
554
        return NULL;
594
        return NULL;
555
    }
595
    }
556
    str_cpy(buf, size, cwd_path);
596
    str_cpy(buf, size, cwd_path);
557
    futex_up(&cwd_futex);
597
    futex_up(&cwd_futex);
558
    return buf;
598
    return buf;
559
}
599
}
560
 
600
 
561
/** @}
601
/** @}
562
 */
602
 */
563
 
603