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1 /*
2  * Copyright (c) 2021-2023 Huawei Device Co., Ltd. All rights reserved.
3  *
4  * Redistribution and use in source and binary forms, with or without modification,
5  * are permitted provided that the following conditions are met:
6  *
7  * 1. Redistributions of source code must retain the above copyright notice, this list of
8  *    conditions and the following disclaimer.
9  *
10  * 2. Redistributions in binary form must reproduce the above copyright notice, this list
11  *    of conditions and the following disclaimer in the documentation and/or other materials
12  *    provided with the distribution.
13  *
14  * 3. Neither the name of the copyright holder nor the names of its contributors may be used
15  *    to endorse or promote products derived from this software without specific prior written
16  *    permission.
17  *
18  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
19  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
20  * THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
21  * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
22  * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
23  * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
24  * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
25  * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
26  * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
27  * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
28  * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29  */
30 
31 #include "proc_file.h"
32 
33 #include <sys/statfs.h>
34 #include <stdlib.h>
35 #include <fcntl.h>
36 #include <unistd.h>
37 
38 #include "fs/dirent_fs.h"
39 #include "fs/mount.h"
40 #include "fs/fs.h"
41 #include "los_tables.h"
42 #include "internal.h"
43 
44 #ifdef LOSCFG_FS_PROC
45 static struct VnodeOps g_procfsVops;
46 static struct file_operations_vfs g_procfsFops;
47 
VnodeToEntry(struct Vnode * node)48 struct ProcDirEntry *VnodeToEntry(struct Vnode *node)
49 {
50     return (struct ProcDirEntry *)(node->data);
51 }
52 
EntryToVnode(struct ProcDirEntry * entry)53 static struct Vnode *EntryToVnode(struct ProcDirEntry *entry)
54 {
55     struct Vnode *node = NULL;
56 
57     (void)VnodeAlloc(&g_procfsVops, &node);
58     node->fop = &g_procfsFops;
59     node->data = entry;
60     node->type = entry->type;
61     node->uid = entry->uid;
62     node->gid = entry->gid;
63     node->mode = entry->mode;
64     return node;
65 }
66 
EntryMatch(const char * name,int len,const struct ProcDirEntry * pn)67 static int EntryMatch(const char *name, int len, const struct ProcDirEntry *pn)
68 {
69     if (len != pn->nameLen) {
70         return 0;
71     }
72     return !strncmp(name, pn->name, len);
73 }
74 
VfsProcfsTruncate(struct Vnode * pVnode,off_t len)75 int VfsProcfsTruncate(struct Vnode *pVnode, off_t len)
76 {
77     return 0;
78 }
79 
VfsProcfsCreate(struct Vnode * parent,const char * name,int mode,struct Vnode ** vnode)80 int VfsProcfsCreate(struct Vnode* parent, const char *name, int mode, struct Vnode **vnode)
81 {
82     int ret;
83     struct Vnode *vp = NULL;
84     struct ProcDirEntry *curEntry = NULL;
85 
86     struct ProcDirEntry *parentEntry = VnodeToEntry(parent);
87     if (parentEntry == NULL) {
88         return -ENODATA;
89     }
90 
91     ret = VnodeAlloc(&g_procfsVops, &vp);
92     if (ret != 0) {
93         return -ENOMEM;
94     }
95 
96     curEntry = ProcCreate(name, mode, parentEntry, NULL);
97     if (curEntry == NULL) {
98         VnodeFree(vp);
99         return -ENODATA;
100     }
101 
102     vp->data = curEntry;
103     vp->type = curEntry->type;
104     if (vp->type == VNODE_TYPE_DIR) {
105         vp->mode = S_IFDIR | PROCFS_DEFAULT_MODE;
106     } else {
107         vp->mode = S_IFREG | PROCFS_DEFAULT_MODE;
108     }
109 
110     vp->vop = parent->vop;
111     vp->fop = parent->fop;
112     vp->parent = parent;
113     vp->originMount = parent->originMount;
114 
115     *vnode = vp;
116 
117     return LOS_OK;
118 }
119 
VfsProcfsRead(struct file * filep,char * buffer,size_t buflen)120 int VfsProcfsRead(struct file *filep, char *buffer, size_t buflen)
121 {
122     ssize_t size;
123     struct ProcDirEntry *entry = NULL;
124     if ((filep == NULL) || (filep->f_vnode == NULL) || (buffer == NULL)) {
125         return -EINVAL;
126     }
127 
128     VnodeHold();
129     entry = VnodeToEntry(filep->f_vnode);
130     if (entry == NULL) {
131         VnodeDrop();
132         return -EPERM;
133     }
134 
135     size = (ssize_t)ReadProcFile(entry, (void *)buffer, buflen);
136     filep->f_pos = entry->pf->fPos;
137     VnodeDrop();
138     return size;
139 }
140 
VfsProcfsWrite(struct file * filep,const char * buffer,size_t buflen)141 int VfsProcfsWrite(struct file *filep, const char *buffer, size_t buflen)
142 {
143     ssize_t size;
144     struct ProcDirEntry *entry = NULL;
145     if ((filep == NULL) || (filep->f_vnode == NULL) || (buffer == NULL)) {
146         return -EINVAL;
147     }
148 
149     VnodeHold();
150     entry = VnodeToEntry(filep->f_vnode);
151     if (entry == NULL) {
152         VnodeDrop();
153         return -EPERM;
154     }
155 
156     size = (ssize_t)WriteProcFile(entry, (void *)buffer, buflen);
157     filep->f_pos = entry->pf->fPos;
158     VnodeDrop();
159     return size;
160 }
161 
VfsProcfsLookup(struct Vnode * parent,const char * name,int len,struct Vnode ** vpp)162 int VfsProcfsLookup(struct Vnode *parent, const char *name, int len, struct Vnode **vpp)
163 {
164     if (parent == NULL || name == NULL || len <= 0 || vpp == NULL) {
165         return -EINVAL;
166     }
167     struct ProcDirEntry *entry = VnodeToEntry(parent);
168     if (entry == NULL) {
169         return -ENODATA;
170     }
171 
172     entry = entry->subdir;
173     while (1) {
174         if (entry == NULL) {
175             return -ENOENT;
176         }
177         if (EntryMatch(name, len, entry)) {
178             break;
179         }
180         entry = entry->next;
181     }
182 
183     *vpp = EntryToVnode(entry);
184     if ((*vpp) == NULL) {
185         return -ENOMEM;
186     }
187     (*vpp)->originMount = parent->originMount;
188     (*vpp)->parent = parent;
189     return LOS_OK;
190 }
191 
VfsProcfsMount(struct Mount * mnt,struct Vnode * device,const void * data)192 int VfsProcfsMount(struct Mount *mnt, struct Vnode *device, const void *data)
193 {
194     struct Vnode *vp = NULL;
195     int ret;
196 
197     spin_lock_init(&procfsLock);
198     procfsInit = true;
199 
200     ret = VnodeAlloc(&g_procfsVops, &vp);
201     if (ret != 0) {
202         return -ENOMEM;
203     }
204 
205     struct ProcDirEntry *root = GetProcRootEntry();
206     vp->data = root;
207     vp->originMount = mnt;
208     vp->fop = &g_procfsFops;
209     mnt->data = NULL;
210     mnt->vnodeCovered = vp;
211     vp->type = root->type;
212     if (vp->type == VNODE_TYPE_DIR) {
213         vp->mode = S_IFDIR | PROCFS_DEFAULT_MODE;
214     } else {
215         vp->mode = S_IFREG | PROCFS_DEFAULT_MODE;
216     }
217 
218     return LOS_OK;
219 }
220 
VfsProcfsUnmount(void * handle,struct Vnode ** blkdriver)221 int VfsProcfsUnmount(void *handle, struct Vnode **blkdriver)
222 {
223     (void)handle;
224     (void)blkdriver;
225     return -EPERM;
226 }
227 
VfsProcfsStat(struct Vnode * node,struct stat * buf)228 int VfsProcfsStat(struct Vnode *node, struct stat *buf)
229 {
230     VnodeHold();
231     struct ProcDirEntry *entry = VnodeToEntry(node);
232     if (entry == NULL) {
233         VnodeDrop();
234         return -EPERM;
235     }
236     (void)memset_s(buf, sizeof(struct stat), 0, sizeof(struct stat));
237     buf->st_mode = entry->mode;
238     VnodeDrop();
239     return LOS_OK;
240 }
241 
242 #ifdef LOSCFG_KERNEL_PLIMITS
VfsProcfsMkdir(struct Vnode * parent,const char * dirName,mode_t mode,struct Vnode ** vnode)243 int VfsProcfsMkdir(struct Vnode *parent, const char *dirName, mode_t mode, struct Vnode **vnode)
244 {
245     struct ProcDirEntry *parentEntry = VnodeToEntry(parent);
246     struct ProcDirEntry *pde = NULL;
247     if ((parentEntry->procDirOps == NULL) || (parentEntry->procDirOps->mkdir == NULL)) {
248         return -ENOSYS;
249     }
250 
251     int ret = parentEntry->procDirOps->mkdir(parentEntry, dirName, mode, &pde);
252     if ((ret < 0) || (pde == NULL)) {
253         return ret;
254     }
255 
256     *vnode = EntryToVnode(pde);
257     (*vnode)->vop = parent->vop;
258     (*vnode)->parent = parent;
259     (*vnode)->originMount = parent->originMount;
260     if ((*vnode)->type == VNODE_TYPE_DIR) {
261         (*vnode)->mode = S_IFDIR | PROCFS_DEFAULT_MODE;
262     } else {
263         (*vnode)->mode = S_IFREG | PROCFS_DEFAULT_MODE;
264     }
265     return ret;
266 }
267 
VfsProcfsRmdir(struct Vnode * parent,struct Vnode * vnode,const char * dirName)268 int VfsProcfsRmdir(struct Vnode *parent, struct Vnode *vnode, const char *dirName)
269 {
270     if (parent == NULL) {
271         return -EINVAL;
272     }
273 
274     struct ProcDirEntry *parentEntry = VnodeToEntry(parent);
275     if ((parentEntry->procDirOps == NULL) || (parentEntry->procDirOps->rmdir == NULL)) {
276         return -ENOSYS;
277     }
278 
279     struct ProcDirEntry *dirEntry = VnodeToEntry(vnode);
280     int ret = parentEntry->procDirOps->rmdir(parentEntry, dirEntry, dirName);
281     if (ret < 0) {
282         return ret;
283     }
284     vnode->data = NULL;
285     return 0;
286 }
287 #endif
288 
VfsProcfsReaddir(struct Vnode * node,struct fs_dirent_s * dir)289 int VfsProcfsReaddir(struct Vnode *node, struct fs_dirent_s *dir)
290 {
291     int result;
292     char *buffer = NULL;
293     unsigned int minSize, dstNameSize;
294     struct ProcDirEntry *pde = NULL;
295     int i = 0;
296 
297     if (dir == NULL) {
298         return -EINVAL;
299     }
300     if (node->type != VNODE_TYPE_DIR) {
301         return -ENOTDIR;
302     }
303     VnodeHold();
304     pde = VnodeToEntry(node);
305     if (pde == NULL) {
306         VnodeDrop();
307         return -EPERM;
308     }
309 
310     while (i < dir->read_cnt) {
311         buffer = (char *)zalloc(sizeof(char) * NAME_MAX);
312         if (buffer == NULL) {
313             VnodeDrop();
314             PRINT_ERR("malloc failed\n");
315             return -ENOMEM;
316         }
317 
318         result = ReadProcFile(pde, (void *)buffer, NAME_MAX);
319         if (result != ENOERR) {
320             free(buffer);
321             break;
322         }
323         dstNameSize = sizeof(dir->fd_dir[i].d_name);
324         minSize = (dstNameSize < NAME_MAX) ? dstNameSize : NAME_MAX;
325         result = strncpy_s(dir->fd_dir[i].d_name, dstNameSize, buffer, minSize);
326         if (result != EOK) {
327             VnodeDrop();
328             free(buffer);
329             return -ENAMETOOLONG;
330         }
331         dir->fd_dir[i].d_name[dstNameSize - 1] = '\0';
332         dir->fd_position++;
333         dir->fd_dir[i].d_off = dir->fd_position;
334         dir->fd_dir[i].d_reclen = (uint16_t)sizeof(struct dirent);
335 
336         i++;
337         free(buffer);
338     }
339     VnodeDrop();
340     return i;
341 }
342 
VfsProcfsOpendir(struct Vnode * node,struct fs_dirent_s * dir)343 int VfsProcfsOpendir(struct Vnode *node,  struct fs_dirent_s *dir)
344 {
345     VnodeHold();
346     struct ProcDirEntry *pde = VnodeToEntry(node);
347     if (pde == NULL) {
348         VnodeDrop();
349         return -EINVAL;
350     }
351 
352     pde->pdirCurrent = pde->subdir;
353     if (pde->pf == NULL) {
354         VnodeDrop();
355         return -EINVAL;
356     }
357     pde->pf->fPos = 0;
358     VnodeDrop();
359     return LOS_OK;
360 }
361 
VfsProcfsOpen(struct file * filep)362 int VfsProcfsOpen(struct file *filep)
363 {
364     if (filep == NULL) {
365         return -EINVAL;
366     }
367     VnodeHold();
368     struct Vnode *node = filep->f_vnode;
369     struct ProcDirEntry *pde = VnodeToEntry(node);
370     if (pde == NULL) {
371         VnodeDrop();
372         return -EPERM;
373     }
374 
375     if (ProcOpen(pde->pf) != OK) {
376         return -ENOMEM;
377     }
378     if (S_ISREG(pde->mode) && (pde->procFileOps != NULL) && (pde->procFileOps->open != NULL)) {
379         (void)pde->procFileOps->open((struct Vnode *)pde, pde->pf);
380     }
381     if (S_ISDIR(pde->mode)) {
382         pde->pdirCurrent = pde->subdir;
383         pde->pf->fPos = 0;
384     }
385     filep->f_priv = (void *)pde;
386     VnodeDrop();
387     return LOS_OK;
388 }
389 
VfsProcfsClose(struct file * filep)390 int VfsProcfsClose(struct file *filep)
391 {
392     int result = 0;
393     if (filep == NULL) {
394         return -EINVAL;
395     }
396 
397     VnodeHold();
398     struct Vnode *node = filep->f_vnode;
399     struct ProcDirEntry *pde = VnodeToEntry(node);
400     if ((pde == NULL) || (pde->pf == NULL)) {
401         VnodeDrop();
402         return -EPERM;
403     }
404 
405     pde->pf->fPos = 0;
406     if ((pde->procFileOps != NULL) && (pde->procFileOps->release != NULL)) {
407         result = pde->procFileOps->release((struct Vnode *)pde, pde->pf);
408     }
409     LosBufRelease(pde->pf->sbuf);
410     pde->pf->sbuf = NULL;
411     VnodeDrop();
412     return result;
413 }
414 
VfsProcfsStatfs(struct Mount * mnt,struct statfs * buf)415 int VfsProcfsStatfs(struct Mount *mnt, struct statfs *buf)
416 {
417     (void)memset_s(buf, sizeof(struct statfs), 0, sizeof(struct statfs));
418     buf->f_type = PROCFS_MAGIC;
419 
420     return LOS_OK;
421 }
422 
VfsProcfsClosedir(struct Vnode * vp,struct fs_dirent_s * dir)423 int VfsProcfsClosedir(struct Vnode *vp, struct fs_dirent_s *dir)
424 {
425     return LOS_OK;
426 }
427 
VfsProcfsReadlink(struct Vnode * vnode,char * buffer,size_t bufLen)428 ssize_t VfsProcfsReadlink(struct Vnode *vnode, char *buffer, size_t bufLen)
429 {
430     int result = -EINVAL;
431     if (vnode == NULL) {
432         return result;
433     }
434 
435     struct ProcDirEntry *pde = VnodeToEntry(vnode);
436     if (pde == NULL) {
437         return -EPERM;
438     }
439 
440     if ((pde->procFileOps != NULL) && (pde->procFileOps->readLink != NULL)) {
441         result = pde->procFileOps->readLink(pde, buffer, bufLen);
442     }
443     return result;
444 }
445 
446 const struct MountOps procfs_operations = {
447     .Mount = VfsProcfsMount,
448     .Unmount = NULL,
449     .Statfs = VfsProcfsStatfs,
450 };
451 
452 static struct VnodeOps g_procfsVops = {
453     .Lookup = VfsProcfsLookup,
454     .Getattr = VfsProcfsStat,
455     .Readdir = VfsProcfsReaddir,
456     .Opendir = VfsProcfsOpendir,
457     .Closedir = VfsProcfsClosedir,
458     .Truncate = VfsProcfsTruncate,
459     .Readlink = VfsProcfsReadlink,
460 #ifdef LOSCFG_KERNEL_PLIMITS
461     .Mkdir = VfsProcfsMkdir,
462     .Rmdir = VfsProcfsRmdir,
463 #endif
464 };
465 
466 static struct file_operations_vfs g_procfsFops = {
467     .read = VfsProcfsRead,
468     .write = VfsProcfsWrite,
469     .open = VfsProcfsOpen,
470     .close = VfsProcfsClose
471 };
472 
473 FSMAP_ENTRY(procfs_fsmap, "procfs", procfs_operations, FALSE, FALSE);
474 #endif
475