chan.c revision 1.1 1 1.1 pho /* $NetBSD: chan.c,v 1.1 2022/01/22 08:09:40 pho Exp $ */
2 1.1 pho
3 1.1 pho /*
4 1.1 pho * Copyright (c) 2021 The NetBSD Foundation, Inc.
5 1.1 pho * All rights reserved.
6 1.1 pho *
7 1.1 pho * Redistribution and use in source and binary forms, with or without
8 1.1 pho * modification, are permitted provided that the following conditions
9 1.1 pho * are met:
10 1.1 pho * 1. Redistributions of source code must retain the above copyright
11 1.1 pho * notice, this list of conditions and the following disclaimer.
12 1.1 pho * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 pho * notice, this list of conditions and the following disclaimer in the
14 1.1 pho * documentation and/or other materials provided with the distribution.
15 1.1 pho * 3. The name of the author may not be used to endorse or promote
16 1.1 pho * products derived from this software without specific prior written
17 1.1 pho * permission.
18 1.1 pho *
19 1.1 pho * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
20 1.1 pho * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
21 1.1 pho * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22 1.1 pho * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
23 1.1 pho * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24 1.1 pho * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
25 1.1 pho * GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 pho * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
27 1.1 pho * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
28 1.1 pho * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
29 1.1 pho * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
30 1.1 pho */
31 1.1 pho
32 1.1 pho #include <sys/cdefs.h>
33 1.1 pho #if !defined(lint)
34 1.1 pho __RCSID("$NetBSD: chan.c,v 1.1 2022/01/22 08:09:40 pho Exp $");
35 1.1 pho #endif /* !lint */
36 1.1 pho
37 1.1 pho #include <assert.h>
38 1.1 pho #include <err.h>
39 1.1 pho #include <fuse_internal.h>
40 1.1 pho #if defined(MULTITHREADED_REFUSE)
41 1.1 pho # include <pthread.h>
42 1.1 pho #endif
43 1.1 pho #include <stdlib.h>
44 1.1 pho #include <string.h>
45 1.1 pho
46 1.1 pho /* The communication channel API is a part of the public interface of
47 1.1 pho * FUSE. However, it is actually an implementation detail and we can't
48 1.1 pho * really emulate its semantics. We only use it for implementing
49 1.1 pho * pre-3.0 fuse_mount(), i.e. the mount-before-new thingy.
50 1.1 pho */
51 1.1 pho
52 1.1 pho struct fuse_chan {
53 1.1 pho char* mountpoint;
54 1.1 pho struct fuse_args* args;
55 1.1 pho struct fuse* fuse;
56 1.1 pho bool is_to_be_destroyed;
57 1.1 pho };
58 1.1 pho
59 1.1 pho struct refuse_chan_storage {
60 1.1 pho size_t n_alloc;
61 1.1 pho struct fuse_chan** vec;
62 1.1 pho };
63 1.1 pho
64 1.1 pho #if defined(MULTITHREADED_REFUSE)
65 1.1 pho static pthread_mutex_t storage_mutex = PTHREAD_MUTEX_INITIALIZER;
66 1.1 pho #endif
67 1.1 pho static struct refuse_chan_storage storage;
68 1.1 pho
69 1.1 pho
70 1.1 pho struct fuse_chan* fuse_chan_new(const char* mountpoint, const struct fuse_args* args) {
71 1.1 pho struct fuse_chan* chan;
72 1.1 pho
73 1.1 pho chan = calloc(1, sizeof(*chan));
74 1.1 pho if (!chan) {
75 1.1 pho warn("%s", __func__);
76 1.1 pho return NULL;
77 1.1 pho }
78 1.1 pho
79 1.1 pho chan->mountpoint = strdup(mountpoint);
80 1.1 pho if (!chan->mountpoint) {
81 1.1 pho warn("%s", __func__);
82 1.1 pho free(chan);
83 1.1 pho return NULL;
84 1.1 pho }
85 1.1 pho
86 1.1 pho chan->args = fuse_opt_deep_copy_args(args->argc, args->argv);
87 1.1 pho if (!chan->args) {
88 1.1 pho warn("%s", __func__);
89 1.1 pho free(chan->mountpoint);
90 1.1 pho free(chan);
91 1.1 pho return NULL;
92 1.1 pho }
93 1.1 pho
94 1.1 pho return chan;
95 1.1 pho }
96 1.1 pho
97 1.1 pho void
98 1.1 pho fuse_chan_destroy(struct fuse_chan* chan) {
99 1.1 pho free(chan->mountpoint);
100 1.1 pho fuse_opt_free_args(chan->args);
101 1.1 pho free(chan->args);
102 1.1 pho free(chan);
103 1.1 pho }
104 1.1 pho
105 1.1 pho int
106 1.1 pho fuse_chan_stash(struct fuse_chan* chan) {
107 1.1 pho int idx;
108 1.1 pho #if defined(MULTITHREADED_REFUSE)
109 1.1 pho int rv;
110 1.1 pho
111 1.1 pho rv = pthread_mutex_lock(&storage_mutex);
112 1.1 pho assert(rv == 0);
113 1.1 pho #endif
114 1.1 pho
115 1.1 pho /* Find the first empty slot in the storage. */
116 1.1 pho for (idx = 0; idx < (int)storage.n_alloc; idx++) {
117 1.1 pho if (storage.vec[idx] == NULL) {
118 1.1 pho storage.vec[idx] = chan;
119 1.1 pho goto done;
120 1.1 pho }
121 1.1 pho }
122 1.1 pho
123 1.1 pho /* Allocate more space */
124 1.1 pho storage.n_alloc = (storage.n_alloc + 8) * 2;
125 1.1 pho storage.vec = realloc(storage.vec, sizeof(struct fuse_chan*) * storage.n_alloc);
126 1.1 pho if (!storage.vec) {
127 1.1 pho warn("%s", __func__);
128 1.1 pho idx = -1;
129 1.1 pho goto done;
130 1.1 pho }
131 1.1 pho
132 1.1 pho storage.vec[idx] = chan;
133 1.1 pho memset(&storage.vec[idx+1], 0, sizeof(struct fuse_chan*) * (storage.n_alloc - (size_t)idx - 1));
134 1.1 pho
135 1.1 pho done:
136 1.1 pho #if defined(MULTITHREADED_REFUSE)
137 1.1 pho rv = pthread_mutex_unlock(&storage_mutex);
138 1.1 pho assert(rv == 0);
139 1.1 pho #endif
140 1.1 pho return idx;
141 1.1 pho }
142 1.1 pho
143 1.1 pho /* Acquire a pointer to a stashed channel with a given index. */
144 1.1 pho struct fuse_chan* fuse_chan_peek(int idx) {
145 1.1 pho struct fuse_chan* chan = NULL;
146 1.1 pho #if defined(MULTITHREADED_REFUSE)
147 1.1 pho int rv;
148 1.1 pho
149 1.1 pho rv = pthread_mutex_lock(&storage_mutex);
150 1.1 pho assert(rv == 0);
151 1.1 pho #endif
152 1.1 pho
153 1.1 pho if (idx >= 0 && idx < (int)storage.n_alloc) {
154 1.1 pho chan = storage.vec[idx];
155 1.1 pho }
156 1.1 pho
157 1.1 pho #if defined(MULTITHREADED_REFUSE)
158 1.1 pho rv = pthread_mutex_unlock(&storage_mutex);
159 1.1 pho assert(rv == 0);
160 1.1 pho #endif
161 1.1 pho return chan;
162 1.1 pho }
163 1.1 pho
164 1.1 pho /* Like fuse_chan_peek() but also removes the channel from the
165 1.1 pho * storage. */
166 1.1 pho struct fuse_chan* fuse_chan_take(int idx) {
167 1.1 pho struct fuse_chan* chan = NULL;
168 1.1 pho #if defined(MULTITHREADED_REFUSE)
169 1.1 pho int rv;
170 1.1 pho
171 1.1 pho rv = pthread_mutex_lock(&storage_mutex);
172 1.1 pho assert(rv == 0);
173 1.1 pho #endif
174 1.1 pho
175 1.1 pho if (idx >= 0 && idx < (int)storage.n_alloc) {
176 1.1 pho chan = storage.vec[idx];
177 1.1 pho storage.vec[idx] = NULL;
178 1.1 pho }
179 1.1 pho
180 1.1 pho #if defined(MULTITHREADED_REFUSE)
181 1.1 pho rv = pthread_mutex_unlock(&storage_mutex);
182 1.1 pho assert(rv == 0);
183 1.1 pho #endif
184 1.1 pho return chan;
185 1.1 pho }
186 1.1 pho
187 1.1 pho /* Find the first stashed channel satisfying a given predicate in the
188 1.1 pho * storage, or NULL if no channels satisfy it. */
189 1.1 pho struct fuse_chan*
190 1.1 pho fuse_chan_find(bool (*pred)(struct fuse_chan*, void*),
191 1.1 pho int* found_idx, void* priv) {
192 1.1 pho int idx;
193 1.1 pho struct fuse_chan* chan = NULL;
194 1.1 pho #if defined(MULTITHREADED_REFUSE)
195 1.1 pho int rv;
196 1.1 pho
197 1.1 pho rv = pthread_mutex_lock(&storage_mutex);
198 1.1 pho assert(rv == 0);
199 1.1 pho #endif
200 1.1 pho
201 1.1 pho for (idx = 0; idx < (int)storage.n_alloc; idx++) {
202 1.1 pho if (storage.vec[idx] != NULL) {
203 1.1 pho if (pred(storage.vec[idx], priv)) {
204 1.1 pho chan = storage.vec[idx];
205 1.1 pho if (found_idx)
206 1.1 pho *found_idx = idx;
207 1.1 pho goto done;
208 1.1 pho }
209 1.1 pho }
210 1.1 pho }
211 1.1 pho
212 1.1 pho done:
213 1.1 pho #if defined(MULTITHREADED_REFUSE)
214 1.1 pho rv = pthread_mutex_unlock(&storage_mutex);
215 1.1 pho assert(rv == 0);
216 1.1 pho #endif
217 1.1 pho return chan;
218 1.1 pho }
219 1.1 pho
220 1.1 pho void
221 1.1 pho fuse_chan_set_fuse(struct fuse_chan* chan, struct fuse* fuse) {
222 1.1 pho chan->fuse = fuse;
223 1.1 pho }
224 1.1 pho
225 1.1 pho void
226 1.1 pho fuse_chan_set_to_be_destroyed(struct fuse_chan* chan, bool is_to_be_destroyed) {
227 1.1 pho chan->is_to_be_destroyed = is_to_be_destroyed;
228 1.1 pho }
229 1.1 pho
230 1.1 pho const char*
231 1.1 pho fuse_chan_mountpoint(const struct fuse_chan* chan) {
232 1.1 pho return chan->mountpoint;
233 1.1 pho }
234 1.1 pho
235 1.1 pho struct fuse_args*
236 1.1 pho fuse_chan_args(struct fuse_chan* chan) {
237 1.1 pho return chan->args;
238 1.1 pho }
239 1.1 pho
240 1.1 pho struct fuse*
241 1.1 pho fuse_chan_fuse(struct fuse_chan* chan) {
242 1.1 pho return chan->fuse;
243 1.1 pho }
244 1.1 pho
245 1.1 pho bool
246 1.1 pho fuse_chan_is_to_be_destroyed(const struct fuse_chan* chan) {
247 1.1 pho return chan->is_to_be_destroyed;
248 1.1 pho }
249