hijack.c revision 1.48 1 1.48 pooka /* $NetBSD: hijack.c,v 1.48 2011/02/17 17:18:08 pooka Exp $ */
2 1.1 pooka
3 1.1 pooka /*-
4 1.1 pooka * Copyright (c) 2011 Antti Kantee. All Rights Reserved.
5 1.1 pooka *
6 1.1 pooka * Redistribution and use in source and binary forms, with or without
7 1.1 pooka * modification, are permitted provided that the following conditions
8 1.1 pooka * are met:
9 1.1 pooka * 1. Redistributions of source code must retain the above copyright
10 1.1 pooka * notice, this list of conditions and the following disclaimer.
11 1.1 pooka * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 pooka * notice, this list of conditions and the following disclaimer in the
13 1.1 pooka * documentation and/or other materials provided with the distribution.
14 1.1 pooka *
15 1.1 pooka * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
16 1.1 pooka * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
17 1.1 pooka * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
18 1.1 pooka * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19 1.1 pooka * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20 1.1 pooka * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
21 1.1 pooka * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 1.1 pooka * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23 1.1 pooka * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 1.1 pooka * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 1.1 pooka * SUCH DAMAGE.
26 1.1 pooka */
27 1.1 pooka
28 1.1 pooka #include <sys/cdefs.h>
29 1.48 pooka __RCSID("$NetBSD: hijack.c,v 1.48 2011/02/17 17:18:08 pooka Exp $");
30 1.21 christos
31 1.21 christos #define __ssp_weak_name(fun) _hijack_ ## fun
32 1.1 pooka
33 1.1 pooka #include <sys/param.h>
34 1.1 pooka #include <sys/types.h>
35 1.10 pooka #include <sys/event.h>
36 1.1 pooka #include <sys/ioctl.h>
37 1.48 pooka #include <sys/mount.h>
38 1.48 pooka #include <sys/poll.h>
39 1.1 pooka #include <sys/socket.h>
40 1.45 pooka #include <sys/statvfs.h>
41 1.1 pooka
42 1.1 pooka #include <rump/rumpclient.h>
43 1.1 pooka #include <rump/rump_syscalls.h>
44 1.1 pooka
45 1.1 pooka #include <assert.h>
46 1.1 pooka #include <dlfcn.h>
47 1.1 pooka #include <err.h>
48 1.1 pooka #include <errno.h>
49 1.1 pooka #include <fcntl.h>
50 1.1 pooka #include <poll.h>
51 1.1 pooka #include <pthread.h>
52 1.3 pooka #include <signal.h>
53 1.1 pooka #include <stdarg.h>
54 1.8 pooka #include <stdbool.h>
55 1.1 pooka #include <stdio.h>
56 1.1 pooka #include <stdlib.h>
57 1.28 pooka #include <string.h>
58 1.3 pooka #include <time.h>
59 1.1 pooka #include <unistd.h>
60 1.1 pooka
61 1.17 pooka enum dualcall {
62 1.17 pooka DUALCALL_WRITE, DUALCALL_WRITEV,
63 1.17 pooka DUALCALL_IOCTL, DUALCALL_FCNTL,
64 1.17 pooka DUALCALL_SOCKET, DUALCALL_ACCEPT, DUALCALL_BIND, DUALCALL_CONNECT,
65 1.17 pooka DUALCALL_GETPEERNAME, DUALCALL_GETSOCKNAME, DUALCALL_LISTEN,
66 1.17 pooka DUALCALL_RECVFROM, DUALCALL_RECVMSG,
67 1.17 pooka DUALCALL_SENDTO, DUALCALL_SENDMSG,
68 1.17 pooka DUALCALL_GETSOCKOPT, DUALCALL_SETSOCKOPT,
69 1.17 pooka DUALCALL_SHUTDOWN,
70 1.17 pooka DUALCALL_READ, DUALCALL_READV,
71 1.41 pooka DUALCALL_DUP2,
72 1.34 pooka DUALCALL_CLOSE,
73 1.17 pooka DUALCALL_POLLTS,
74 1.34 pooka DUALCALL_KEVENT,
75 1.45 pooka DUALCALL_STAT, DUALCALL_LSTAT, DUALCALL_FSTAT,
76 1.45 pooka DUALCALL_CHMOD, DUALCALL_LCHMOD, DUALCALL_FCHMOD,
77 1.45 pooka DUALCALL_CHOWN, DUALCALL_LCHOWN, DUALCALL_FCHOWN,
78 1.45 pooka DUALCALL_OPEN,
79 1.45 pooka DUALCALL_STATVFS1, DUALCALL_FSTATVFS1,
80 1.45 pooka DUALCALL_CHDIR, DUALCALL_FCHDIR,
81 1.45 pooka DUALCALL_LSEEK,
82 1.45 pooka DUALCALL_GETDENTS,
83 1.45 pooka DUALCALL_UNLINK, DUALCALL_SYMLINK, DUALCALL_READLINK,
84 1.45 pooka DUALCALL_RENAME,
85 1.45 pooka DUALCALL_MKDIR, DUALCALL_RMDIR,
86 1.45 pooka DUALCALL_UTIMES, DUALCALL_LUTIMES, DUALCALL_FUTIMES,
87 1.45 pooka DUALCALL_TRUNCATE, DUALCALL_FTRUNCATE,
88 1.45 pooka DUALCALL_FSYNC, DUALCALL_FSYNC_RANGE,
89 1.48 pooka DUALCALL_MOUNT, DUALCALL_UNMOUNT,
90 1.17 pooka DUALCALL__NUM
91 1.1 pooka };
92 1.1 pooka
93 1.8 pooka #define RSYS_STRING(a) __STRING(a)
94 1.8 pooka #define RSYS_NAME(a) RSYS_STRING(__CONCAT(RUMP_SYS_RENAME_,a))
95 1.8 pooka
96 1.1 pooka /*
97 1.14 pooka * Would be nice to get this automatically in sync with libc.
98 1.14 pooka * Also, this does not work for compat-using binaries!
99 1.14 pooka */
100 1.14 pooka #if !__NetBSD_Prereq__(5,99,7)
101 1.29 pooka #define REALSELECT select
102 1.29 pooka #define REALPOLLTS pollts
103 1.34 pooka #define REALKEVENT kevent
104 1.45 pooka #define REALSTAT __stat30
105 1.45 pooka #define REALLSTAT __lstat30
106 1.45 pooka #define REALFSTAT __fstat30
107 1.45 pooka #define REALUTIMES utimes
108 1.45 pooka #define REALLUTIMES lutimes
109 1.45 pooka #define REALFUTIMES futimes
110 1.14 pooka #else
111 1.29 pooka #define REALSELECT _sys___select50
112 1.29 pooka #define REALPOLLTS _sys___pollts50
113 1.34 pooka #define REALKEVENT _sys___kevent50
114 1.45 pooka #define REALSTAT __stat50
115 1.45 pooka #define REALLSTAT __lstat50
116 1.45 pooka #define REALFSTAT __fstat50
117 1.45 pooka #define REALUTIMES __utimes50
118 1.45 pooka #define REALLUTIMES __lutimes50
119 1.45 pooka #define REALFUTIMES __futimes50
120 1.17 pooka #endif
121 1.31 pooka #define REALREAD _sys_read
122 1.45 pooka #define REALGETDENTS __getdents30
123 1.48 pooka #define REALMOUNT __mount50
124 1.14 pooka
125 1.29 pooka int REALSELECT(int, fd_set *, fd_set *, fd_set *, struct timeval *);
126 1.29 pooka int REALPOLLTS(struct pollfd *, nfds_t,
127 1.20 pooka const struct timespec *, const sigset_t *);
128 1.34 pooka int REALKEVENT(int, const struct kevent *, size_t, struct kevent *, size_t,
129 1.34 pooka const struct timespec *);
130 1.31 pooka ssize_t REALREAD(int, void *, size_t);
131 1.45 pooka int REALSTAT(const char *, struct stat *);
132 1.45 pooka int REALLSTAT(const char *, struct stat *);
133 1.45 pooka int REALFSTAT(int, struct stat *);
134 1.45 pooka int REALGETDENTS(int, char *, size_t);
135 1.45 pooka int REALUTIMES(const char *, const struct timeval [2]);
136 1.45 pooka int REALLUTIMES(const char *, const struct timeval [2]);
137 1.45 pooka int REALFUTIMES(int, const struct timeval [2]);
138 1.48 pooka int REALMOUNT(const char *, const char *, int, void *, size_t);
139 1.17 pooka
140 1.17 pooka #define S(a) __STRING(a)
141 1.17 pooka struct sysnames {
142 1.17 pooka enum dualcall scm_callnum;
143 1.17 pooka const char *scm_hostname;
144 1.17 pooka const char *scm_rumpname;
145 1.17 pooka } syscnames[] = {
146 1.17 pooka { DUALCALL_SOCKET, "__socket30", RSYS_NAME(SOCKET) },
147 1.17 pooka { DUALCALL_ACCEPT, "accept", RSYS_NAME(ACCEPT) },
148 1.17 pooka { DUALCALL_BIND, "bind", RSYS_NAME(BIND) },
149 1.17 pooka { DUALCALL_CONNECT, "connect", RSYS_NAME(CONNECT) },
150 1.17 pooka { DUALCALL_GETPEERNAME, "getpeername", RSYS_NAME(GETPEERNAME) },
151 1.17 pooka { DUALCALL_GETSOCKNAME, "getsockname", RSYS_NAME(GETSOCKNAME) },
152 1.17 pooka { DUALCALL_LISTEN, "listen", RSYS_NAME(LISTEN) },
153 1.17 pooka { DUALCALL_RECVFROM, "recvfrom", RSYS_NAME(RECVFROM) },
154 1.17 pooka { DUALCALL_RECVMSG, "recvmsg", RSYS_NAME(RECVMSG) },
155 1.17 pooka { DUALCALL_SENDTO, "sendto", RSYS_NAME(SENDTO) },
156 1.17 pooka { DUALCALL_SENDMSG, "sendmsg", RSYS_NAME(SENDMSG) },
157 1.17 pooka { DUALCALL_GETSOCKOPT, "getsockopt", RSYS_NAME(GETSOCKOPT) },
158 1.17 pooka { DUALCALL_SETSOCKOPT, "setsockopt", RSYS_NAME(SETSOCKOPT) },
159 1.17 pooka { DUALCALL_SHUTDOWN, "shutdown", RSYS_NAME(SHUTDOWN) },
160 1.31 pooka { DUALCALL_READ, S(REALREAD), RSYS_NAME(READ) },
161 1.17 pooka { DUALCALL_READV, "readv", RSYS_NAME(READV) },
162 1.17 pooka { DUALCALL_WRITE, "write", RSYS_NAME(WRITE) },
163 1.17 pooka { DUALCALL_WRITEV, "writev", RSYS_NAME(WRITEV) },
164 1.17 pooka { DUALCALL_IOCTL, "ioctl", RSYS_NAME(IOCTL) },
165 1.17 pooka { DUALCALL_FCNTL, "fcntl", RSYS_NAME(FCNTL) },
166 1.17 pooka { DUALCALL_DUP2, "dup2", RSYS_NAME(DUP2) },
167 1.17 pooka { DUALCALL_CLOSE, "close", RSYS_NAME(CLOSE) },
168 1.29 pooka { DUALCALL_POLLTS, S(REALPOLLTS), RSYS_NAME(POLLTS) },
169 1.34 pooka { DUALCALL_KEVENT, S(REALKEVENT), RSYS_NAME(KEVENT) },
170 1.45 pooka { DUALCALL_STAT, S(REALSTAT), RSYS_NAME(STAT) },
171 1.45 pooka { DUALCALL_LSTAT, S(REALLSTAT), RSYS_NAME(LSTAT) },
172 1.45 pooka { DUALCALL_FSTAT, S(REALFSTAT), RSYS_NAME(FSTAT) },
173 1.45 pooka { DUALCALL_CHOWN, "chown", RSYS_NAME(CHOWN) },
174 1.45 pooka { DUALCALL_LCHOWN, "lchown", RSYS_NAME(LCHOWN) },
175 1.45 pooka { DUALCALL_FCHOWN, "fchown", RSYS_NAME(FCHOWN) },
176 1.45 pooka { DUALCALL_CHMOD, "chmod", RSYS_NAME(CHMOD) },
177 1.45 pooka { DUALCALL_LCHMOD, "lchmod", RSYS_NAME(LCHMOD) },
178 1.45 pooka { DUALCALL_FCHMOD, "fchmod", RSYS_NAME(FCHMOD) },
179 1.45 pooka { DUALCALL_UTIMES, S(REALUTIMES), RSYS_NAME(UTIMES) },
180 1.45 pooka { DUALCALL_LUTIMES, S(REALLUTIMES), RSYS_NAME(LUTIMES) },
181 1.45 pooka { DUALCALL_FUTIMES, S(REALFUTIMES), RSYS_NAME(FUTIMES) },
182 1.45 pooka { DUALCALL_OPEN, "open", RSYS_NAME(OPEN) },
183 1.45 pooka { DUALCALL_STATVFS1, "statvfs1", RSYS_NAME(STATVFS1) },
184 1.45 pooka { DUALCALL_FSTATVFS1, "fstatvfs1", RSYS_NAME(FSTATVFS1) },
185 1.45 pooka { DUALCALL_CHDIR, "chdir", RSYS_NAME(CHDIR) },
186 1.45 pooka { DUALCALL_FCHDIR, "fchdir", RSYS_NAME(FCHDIR) },
187 1.45 pooka { DUALCALL_LSEEK, "lseek", RSYS_NAME(LSEEK) },
188 1.45 pooka { DUALCALL_GETDENTS, "__getdents30", RSYS_NAME(GETDENTS) },
189 1.45 pooka { DUALCALL_UNLINK, "unlink", RSYS_NAME(UNLINK) },
190 1.45 pooka { DUALCALL_SYMLINK, "symlink", RSYS_NAME(SYMLINK) },
191 1.45 pooka { DUALCALL_READLINK, "readlink", RSYS_NAME(READLINK) },
192 1.45 pooka { DUALCALL_RENAME, "rename", RSYS_NAME(RENAME) },
193 1.45 pooka { DUALCALL_MKDIR, "mkdir", RSYS_NAME(MKDIR) },
194 1.45 pooka { DUALCALL_RMDIR, "rmdir", RSYS_NAME(RMDIR) },
195 1.45 pooka { DUALCALL_TRUNCATE, "truncate", RSYS_NAME(TRUNCATE) },
196 1.45 pooka { DUALCALL_FTRUNCATE, "ftruncate", RSYS_NAME(FTRUNCATE) },
197 1.45 pooka { DUALCALL_FSYNC, "fsync", RSYS_NAME(FSYNC) },
198 1.45 pooka { DUALCALL_FSYNC_RANGE, "fsync_range", RSYS_NAME(FSYNC_RANGE) },
199 1.48 pooka { DUALCALL_MOUNT, S(REALMOUNT), RSYS_NAME(MOUNT) },
200 1.48 pooka { DUALCALL_UNMOUNT, "unmount", RSYS_NAME(UNMOUNT) },
201 1.17 pooka };
202 1.17 pooka #undef S
203 1.17 pooka
204 1.17 pooka struct bothsys {
205 1.17 pooka void *bs_host;
206 1.17 pooka void *bs_rump;
207 1.17 pooka } syscalls[DUALCALL__NUM];
208 1.17 pooka #define GETSYSCALL(which, name) syscalls[DUALCALL_##name].bs_##which
209 1.17 pooka
210 1.25 pooka pid_t (*host_fork)(void);
211 1.25 pooka int (*host_daemon)(int, int);
212 1.39 pooka int (*host_execve)(const char *, char *const[], char *const[]);
213 1.17 pooka
214 1.47 pooka /* ok, we need *two* bits per dup2'd fd to track fd+HIJACKOFF aliases */
215 1.40 pooka static uint32_t dup2mask;
216 1.47 pooka #define ISDUP2D(fd) (((fd) < 16) && (1<<(fd) & dup2mask))
217 1.40 pooka #define SETDUP2(fd) \
218 1.47 pooka do { if ((fd) < 16) dup2mask |= (1<<(fd)); } while (/*CONSTCOND*/0)
219 1.40 pooka #define CLRDUP2(fd) \
220 1.47 pooka do { if ((fd) < 16) dup2mask &= ~(1<<(fd)); } while (/*CONSTCOND*/0)
221 1.47 pooka #define ISDUP2ALIAS(fd) (((fd) < 16) && (1<<((fd)+16) & dup2mask))
222 1.47 pooka #define SETDUP2ALIAS(fd) \
223 1.47 pooka do { if ((fd) < 16) dup2mask |= (1<<((fd)+16)); } while (/*CONSTCOND*/0)
224 1.47 pooka #define CLRDUP2ALIAS(fd) \
225 1.47 pooka do { if ((fd) < 16) dup2mask &= ~(1<<((fd)+16)); } while (/*CONSTCOND*/0)
226 1.17 pooka
227 1.17 pooka //#define DEBUGJACK
228 1.17 pooka #ifdef DEBUGJACK
229 1.17 pooka #define DPRINTF(x) mydprintf x
230 1.17 pooka static void
231 1.17 pooka mydprintf(const char *fmt, ...)
232 1.17 pooka {
233 1.17 pooka va_list ap;
234 1.17 pooka
235 1.17 pooka if (ISDUP2D(STDERR_FILENO))
236 1.17 pooka return;
237 1.17 pooka
238 1.17 pooka va_start(ap, fmt);
239 1.17 pooka vfprintf(stderr, fmt, ap);
240 1.17 pooka va_end(ap);
241 1.17 pooka }
242 1.17 pooka
243 1.17 pooka #else
244 1.17 pooka #define DPRINTF(x)
245 1.14 pooka #endif
246 1.14 pooka
247 1.17 pooka #define FDCALL(type, name, rcname, args, proto, vars) \
248 1.17 pooka type name args \
249 1.17 pooka { \
250 1.17 pooka type (*fun) proto; \
251 1.17 pooka \
252 1.33 pooka DPRINTF(("%s -> %d\n", __STRING(name), fd)); \
253 1.17 pooka if (fd_isrump(fd)) { \
254 1.17 pooka fun = syscalls[rcname].bs_rump; \
255 1.17 pooka fd = fd_host2rump(fd); \
256 1.17 pooka } else { \
257 1.17 pooka fun = syscalls[rcname].bs_host; \
258 1.17 pooka } \
259 1.17 pooka \
260 1.17 pooka return fun vars; \
261 1.17 pooka }
262 1.17 pooka
263 1.45 pooka #define PATHCALL(type, name, rcname, args, proto, vars) \
264 1.45 pooka type name args \
265 1.45 pooka { \
266 1.45 pooka type (*fun) proto; \
267 1.45 pooka \
268 1.45 pooka DPRINTF(("%s -> %s\n", __STRING(name), path)); \
269 1.45 pooka if (path_isrump(path)) { \
270 1.45 pooka fun = syscalls[rcname].bs_rump; \
271 1.45 pooka path = path_host2rump(path); \
272 1.45 pooka } else { \
273 1.45 pooka fun = syscalls[rcname].bs_host; \
274 1.45 pooka } \
275 1.45 pooka \
276 1.45 pooka return fun vars; \
277 1.45 pooka }
278 1.45 pooka
279 1.14 pooka /*
280 1.1 pooka * This is called from librumpclient in case of LD_PRELOAD.
281 1.1 pooka * It ensures correct RTLD_NEXT.
282 1.32 pooka *
283 1.32 pooka * ... except, it's apparently extremely difficult to force
284 1.32 pooka * at least gcc to generate an actual stack frame here. So
285 1.32 pooka * sprinkle some volatile foobar and baz to throw the optimizer
286 1.32 pooka * off the scent and generate a variable assignment with the
287 1.32 pooka * return value. The posterboy for this meltdown is amd64
288 1.32 pooka * with -O2. At least with gcc 4.1.3 i386 works regardless of
289 1.32 pooka * optimization.
290 1.1 pooka */
291 1.32 pooka volatile int rumphijack_unrope; /* there, unhang yourself */
292 1.1 pooka static void *
293 1.1 pooka hijackdlsym(void *handle, const char *symbol)
294 1.1 pooka {
295 1.32 pooka void *rv;
296 1.32 pooka
297 1.32 pooka rv = dlsym(handle, symbol);
298 1.32 pooka rumphijack_unrope = *(volatile int *)rv;
299 1.1 pooka
300 1.32 pooka return (void *)rv;
301 1.1 pooka }
302 1.1 pooka
303 1.45 pooka static int pwdinrump = 0;
304 1.45 pooka
305 1.7 pooka /* low calorie sockets? */
306 1.14 pooka static bool hostlocalsockets = true;
307 1.7 pooka
308 1.1 pooka static void __attribute__((constructor))
309 1.1 pooka rcinit(void)
310 1.1 pooka {
311 1.28 pooka char buf[64];
312 1.23 pooka extern void *(*rumpclient_dlsym)(void *, const char *);
313 1.19 pooka unsigned i, j;
314 1.1 pooka
315 1.23 pooka rumpclient_dlsym = hijackdlsym;
316 1.17 pooka host_fork = dlsym(RTLD_NEXT, "fork");
317 1.25 pooka host_daemon = dlsym(RTLD_NEXT, "daemon");
318 1.39 pooka host_execve = dlsym(RTLD_NEXT, "execve");
319 1.17 pooka
320 1.17 pooka /*
321 1.17 pooka * In theory cannot print anything during lookups because
322 1.17 pooka * we might not have the call vector set up. so, the errx()
323 1.17 pooka * is a bit of a strech, but it might work.
324 1.17 pooka */
325 1.1 pooka
326 1.17 pooka for (i = 0; i < DUALCALL__NUM; i++) {
327 1.17 pooka /* build runtime O(1) access */
328 1.17 pooka for (j = 0; j < __arraycount(syscnames); j++) {
329 1.17 pooka if (syscnames[j].scm_callnum == i)
330 1.17 pooka break;
331 1.17 pooka }
332 1.17 pooka
333 1.17 pooka if (j == __arraycount(syscnames))
334 1.17 pooka errx(1, "rumphijack error: syscall pos %d missing", i);
335 1.17 pooka
336 1.23 pooka syscalls[i].bs_host = dlsym(RTLD_NEXT,
337 1.23 pooka syscnames[j].scm_hostname);
338 1.17 pooka if (syscalls[i].bs_host == NULL)
339 1.17 pooka errx(1, "hostcall %s not found missing",
340 1.17 pooka syscnames[j].scm_hostname);
341 1.17 pooka
342 1.23 pooka syscalls[i].bs_rump = dlsym(RTLD_NEXT,
343 1.23 pooka syscnames[j].scm_rumpname);
344 1.17 pooka if (syscalls[i].bs_rump == NULL)
345 1.17 pooka errx(1, "rumpcall %s not found missing",
346 1.17 pooka syscnames[j].scm_rumpname);
347 1.1 pooka }
348 1.1 pooka
349 1.22 pooka if (rumpclient_init() == -1)
350 1.1 pooka err(1, "rumpclient init");
351 1.28 pooka
352 1.28 pooka /* set client persistence level */
353 1.44 pooka if (getenv_r("RUMPHIJACK_RETRYCONNECT", buf, sizeof(buf)) != -1) {
354 1.28 pooka if (strcmp(buf, "die") == 0)
355 1.28 pooka rumpclient_setconnretry(RUMPCLIENT_RETRYCONN_DIE);
356 1.28 pooka else if (strcmp(buf, "inftime") == 0)
357 1.28 pooka rumpclient_setconnretry(RUMPCLIENT_RETRYCONN_INFTIME);
358 1.28 pooka else if (strcmp(buf, "once") == 0)
359 1.28 pooka rumpclient_setconnretry(RUMPCLIENT_RETRYCONN_ONCE);
360 1.28 pooka else {
361 1.28 pooka time_t timeout;
362 1.44 pooka char *ep;
363 1.28 pooka
364 1.44 pooka timeout = (time_t)strtoll(buf, &ep, 10);
365 1.44 pooka if (timeout <= 0 || ep != buf + strlen(buf))
366 1.44 pooka errx(1, "RUMPHIJACK_RETRYCONNECT must be "
367 1.44 pooka "keyword or integer, got: %s", buf);
368 1.28 pooka
369 1.28 pooka rumpclient_setconnretry(timeout);
370 1.28 pooka }
371 1.28 pooka }
372 1.39 pooka
373 1.39 pooka if (getenv_r("RUMPHIJACK__DUP2MASK", buf, sizeof(buf)) == 0) {
374 1.40 pooka dup2mask = strtoul(buf, NULL, 10);
375 1.45 pooka unsetenv("RUMPHIJACK__DUP2MASK");
376 1.45 pooka }
377 1.45 pooka if (getenv_r("RUMPHIJACK__PWDINRUMP", buf, sizeof(buf)) == 0) {
378 1.45 pooka pwdinrump = strtoul(buf, NULL, 10);
379 1.45 pooka unsetenv("RUMPHIJACK__PWDINRUMP");
380 1.39 pooka }
381 1.1 pooka }
382 1.1 pooka
383 1.2 pooka /* XXX: need runtime selection. low for now due to FD_SETSIZE */
384 1.2 pooka #define HIJACK_FDOFF 128
385 1.2 pooka static int
386 1.2 pooka fd_rump2host(int fd)
387 1.2 pooka {
388 1.2 pooka
389 1.2 pooka if (fd == -1)
390 1.2 pooka return fd;
391 1.2 pooka
392 1.2 pooka if (!ISDUP2D(fd))
393 1.2 pooka fd += HIJACK_FDOFF;
394 1.2 pooka
395 1.2 pooka return fd;
396 1.2 pooka }
397 1.2 pooka
398 1.2 pooka static int
399 1.2 pooka fd_host2rump(int fd)
400 1.2 pooka {
401 1.2 pooka
402 1.2 pooka if (!ISDUP2D(fd))
403 1.2 pooka fd -= HIJACK_FDOFF;
404 1.2 pooka return fd;
405 1.2 pooka }
406 1.2 pooka
407 1.2 pooka static bool
408 1.2 pooka fd_isrump(int fd)
409 1.2 pooka {
410 1.2 pooka
411 1.2 pooka return ISDUP2D(fd) || fd >= HIJACK_FDOFF;
412 1.2 pooka }
413 1.2 pooka
414 1.40 pooka #define assertfd(_fd_) assert(ISDUP2D(_fd_) || (_fd_) >= HIJACK_FDOFF)
415 1.40 pooka
416 1.45 pooka #define RUMPPREFIX "/rump"
417 1.45 pooka static int
418 1.45 pooka path_isrump(const char *path)
419 1.45 pooka {
420 1.45 pooka
421 1.45 pooka if (*path == '/') {
422 1.45 pooka if (strncmp(path, RUMPPREFIX, sizeof(RUMPPREFIX)-1) == 0)
423 1.45 pooka return 1;
424 1.45 pooka return 0;
425 1.45 pooka } else {
426 1.45 pooka return pwdinrump;
427 1.45 pooka }
428 1.45 pooka }
429 1.45 pooka
430 1.45 pooka static const char *rootpath = "/";
431 1.45 pooka static const char *
432 1.45 pooka path_host2rump(const char *path)
433 1.45 pooka {
434 1.45 pooka const char *rv;
435 1.45 pooka
436 1.45 pooka if (*path == '/') {
437 1.45 pooka rv = path + (sizeof(RUMPPREFIX)-1);
438 1.45 pooka if (*rv == '\0')
439 1.45 pooka rv = rootpath;
440 1.45 pooka } else {
441 1.45 pooka rv = path;
442 1.45 pooka }
443 1.45 pooka
444 1.45 pooka return rv;
445 1.45 pooka }
446 1.45 pooka
447 1.40 pooka static int
448 1.40 pooka dodup(int oldd, int minfd)
449 1.40 pooka {
450 1.40 pooka int (*op_fcntl)(int, int, ...);
451 1.40 pooka int newd;
452 1.40 pooka int isrump;
453 1.40 pooka
454 1.40 pooka DPRINTF(("dup -> %d (minfd %d)\n", oldd, minfd));
455 1.40 pooka if (fd_isrump(oldd)) {
456 1.40 pooka op_fcntl = GETSYSCALL(rump, FCNTL);
457 1.40 pooka oldd = fd_host2rump(oldd);
458 1.40 pooka isrump = 1;
459 1.40 pooka } else {
460 1.40 pooka op_fcntl = GETSYSCALL(host, FCNTL);
461 1.40 pooka isrump = 0;
462 1.40 pooka }
463 1.40 pooka
464 1.40 pooka newd = op_fcntl(oldd, F_DUPFD, minfd);
465 1.40 pooka
466 1.40 pooka if (isrump)
467 1.40 pooka newd = fd_rump2host(newd);
468 1.40 pooka DPRINTF(("dup <- %d\n", newd));
469 1.40 pooka
470 1.40 pooka return newd;
471 1.40 pooka }
472 1.2 pooka
473 1.47 pooka /*
474 1.47 pooka * dup a host file descriptor so that it doesn't collide with the dup2mask
475 1.47 pooka */
476 1.47 pooka static int
477 1.47 pooka fd_dupgood(int fd)
478 1.47 pooka {
479 1.47 pooka int (*op_fcntl)(int, int, ...) = GETSYSCALL(host, FCNTL);
480 1.47 pooka int (*op_close)(int) = GETSYSCALL(host, CLOSE);
481 1.47 pooka int ofd, i;
482 1.47 pooka
483 1.47 pooka for (i = 1; ISDUP2D(fd); i++) {
484 1.47 pooka ofd = fd;
485 1.47 pooka fd = op_fcntl(ofd, F_DUPFD, i);
486 1.47 pooka op_close(ofd);
487 1.47 pooka }
488 1.47 pooka
489 1.47 pooka return fd;
490 1.47 pooka }
491 1.47 pooka
492 1.45 pooka int
493 1.45 pooka open(const char *path, int flags, ...)
494 1.45 pooka {
495 1.45 pooka int (*op_open)(const char *, int, ...);
496 1.45 pooka bool isrump;
497 1.45 pooka va_list ap;
498 1.45 pooka int fd;
499 1.45 pooka
500 1.45 pooka if (path_isrump(path)) {
501 1.45 pooka path = path_host2rump(path);
502 1.45 pooka op_open = GETSYSCALL(rump, OPEN);
503 1.45 pooka isrump = true;
504 1.45 pooka } else {
505 1.45 pooka op_open = GETSYSCALL(host, OPEN);
506 1.45 pooka isrump = false;
507 1.45 pooka }
508 1.45 pooka
509 1.45 pooka va_start(ap, flags);
510 1.45 pooka fd = op_open(path, flags, va_arg(ap, mode_t));
511 1.45 pooka va_end(ap);
512 1.45 pooka
513 1.45 pooka if (isrump)
514 1.45 pooka fd = fd_rump2host(fd);
515 1.47 pooka else
516 1.47 pooka fd = fd_dupgood(fd);
517 1.45 pooka return fd;
518 1.45 pooka }
519 1.45 pooka
520 1.45 pooka int
521 1.45 pooka chdir(const char *path)
522 1.45 pooka {
523 1.45 pooka int (*op_chdir)(const char *);
524 1.45 pooka bool isrump;
525 1.45 pooka int rv;
526 1.45 pooka
527 1.45 pooka if (path_isrump(path)) {
528 1.45 pooka op_chdir = GETSYSCALL(rump, CHDIR);
529 1.45 pooka isrump = true;
530 1.45 pooka path = path_host2rump(path);
531 1.45 pooka } else {
532 1.45 pooka op_chdir = GETSYSCALL(host, CHDIR);
533 1.45 pooka isrump = false;
534 1.45 pooka }
535 1.45 pooka
536 1.45 pooka rv = op_chdir(path);
537 1.45 pooka if (rv == 0) {
538 1.45 pooka if (isrump)
539 1.45 pooka pwdinrump = true;
540 1.45 pooka else
541 1.45 pooka pwdinrump = false;
542 1.45 pooka }
543 1.45 pooka
544 1.45 pooka return rv;
545 1.45 pooka }
546 1.45 pooka
547 1.45 pooka int
548 1.45 pooka fchdir(int fd)
549 1.45 pooka {
550 1.45 pooka int (*op_fchdir)(int);
551 1.45 pooka bool isrump;
552 1.45 pooka int rv;
553 1.45 pooka
554 1.45 pooka if (fd_isrump(fd)) {
555 1.45 pooka op_fchdir = GETSYSCALL(rump, FCHDIR);
556 1.45 pooka isrump = true;
557 1.45 pooka fd = fd_host2rump(fd);
558 1.45 pooka } else {
559 1.45 pooka op_fchdir = GETSYSCALL(host, FCHDIR);
560 1.45 pooka isrump = false;
561 1.45 pooka }
562 1.45 pooka
563 1.45 pooka rv = op_fchdir(fd);
564 1.45 pooka if (rv == 0) {
565 1.45 pooka if (isrump)
566 1.45 pooka pwdinrump = true;
567 1.45 pooka else
568 1.45 pooka pwdinrump = false;
569 1.45 pooka }
570 1.45 pooka
571 1.45 pooka return rv;
572 1.45 pooka }
573 1.45 pooka
574 1.1 pooka int __socket30(int, int, int);
575 1.1 pooka int
576 1.1 pooka __socket30(int domain, int type, int protocol)
577 1.1 pooka {
578 1.17 pooka int (*op_socket)(int, int, int);
579 1.1 pooka int fd;
580 1.7 pooka bool dohost;
581 1.7 pooka
582 1.7 pooka dohost = hostlocalsockets && (domain == AF_LOCAL);
583 1.1 pooka
584 1.7 pooka if (dohost)
585 1.17 pooka op_socket = GETSYSCALL(host, SOCKET);
586 1.7 pooka else
587 1.17 pooka op_socket = GETSYSCALL(rump, SOCKET);
588 1.17 pooka fd = op_socket(domain, type, protocol);
589 1.2 pooka
590 1.7 pooka if (!dohost)
591 1.7 pooka fd = fd_rump2host(fd);
592 1.47 pooka else
593 1.47 pooka fd = fd_dupgood(fd);
594 1.7 pooka DPRINTF(("socket <- %d\n", fd));
595 1.2 pooka
596 1.7 pooka return fd;
597 1.1 pooka }
598 1.1 pooka
599 1.1 pooka int
600 1.1 pooka accept(int s, struct sockaddr *addr, socklen_t *addrlen)
601 1.1 pooka {
602 1.17 pooka int (*op_accept)(int, struct sockaddr *, socklen_t *);
603 1.1 pooka int fd;
604 1.7 pooka bool isrump;
605 1.7 pooka
606 1.7 pooka isrump = fd_isrump(s);
607 1.1 pooka
608 1.2 pooka DPRINTF(("accept -> %d", s));
609 1.7 pooka if (isrump) {
610 1.17 pooka op_accept = GETSYSCALL(rump, ACCEPT);
611 1.7 pooka s = fd_host2rump(s);
612 1.7 pooka } else {
613 1.17 pooka op_accept = GETSYSCALL(host, ACCEPT);
614 1.7 pooka }
615 1.17 pooka fd = op_accept(s, addr, addrlen);
616 1.7 pooka if (fd != -1 && isrump)
617 1.7 pooka fd = fd_rump2host(fd);
618 1.47 pooka else
619 1.47 pooka fd = fd_dupgood(fd);
620 1.7 pooka
621 1.7 pooka DPRINTF((" <- %d\n", fd));
622 1.2 pooka
623 1.7 pooka return fd;
624 1.1 pooka }
625 1.1 pooka
626 1.17 pooka /*
627 1.17 pooka * ioctl and fcntl are varargs calls and need special treatment
628 1.17 pooka */
629 1.1 pooka int
630 1.17 pooka ioctl(int fd, unsigned long cmd, ...)
631 1.1 pooka {
632 1.17 pooka int (*op_ioctl)(int, unsigned long cmd, ...);
633 1.17 pooka va_list ap;
634 1.17 pooka int rv;
635 1.1 pooka
636 1.17 pooka DPRINTF(("ioctl -> %d\n", fd));
637 1.17 pooka if (fd_isrump(fd)) {
638 1.17 pooka fd = fd_host2rump(fd);
639 1.17 pooka op_ioctl = GETSYSCALL(rump, IOCTL);
640 1.7 pooka } else {
641 1.17 pooka op_ioctl = GETSYSCALL(host, IOCTL);
642 1.7 pooka }
643 1.1 pooka
644 1.17 pooka va_start(ap, cmd);
645 1.17 pooka rv = op_ioctl(fd, cmd, va_arg(ap, void *));
646 1.17 pooka va_end(ap);
647 1.17 pooka return rv;
648 1.1 pooka }
649 1.1 pooka
650 1.40 pooka #include <syslog.h>
651 1.1 pooka int
652 1.17 pooka fcntl(int fd, int cmd, ...)
653 1.1 pooka {
654 1.17 pooka int (*op_fcntl)(int, int, ...);
655 1.17 pooka va_list ap;
656 1.40 pooka int rv, minfd, i;
657 1.40 pooka
658 1.40 pooka DPRINTF(("fcntl -> %d (cmd %d)\n", fd, cmd));
659 1.40 pooka
660 1.40 pooka switch (cmd) {
661 1.40 pooka case F_DUPFD:
662 1.40 pooka va_start(ap, cmd);
663 1.40 pooka minfd = va_arg(ap, int);
664 1.40 pooka va_end(ap);
665 1.40 pooka return dodup(fd, minfd);
666 1.40 pooka
667 1.40 pooka case F_CLOSEM:
668 1.40 pooka /*
669 1.40 pooka * So, if fd < HIJACKOFF, we want to do a host closem.
670 1.40 pooka */
671 1.40 pooka
672 1.40 pooka if (fd < HIJACK_FDOFF) {
673 1.40 pooka int closemfd = fd;
674 1.1 pooka
675 1.40 pooka if (rumpclient__closenotify(&closemfd,
676 1.39 pooka RUMPCLIENT_CLOSE_FCLOSEM) == -1)
677 1.39 pooka return -1;
678 1.40 pooka op_fcntl = GETSYSCALL(host, FCNTL);
679 1.40 pooka rv = op_fcntl(closemfd, cmd);
680 1.40 pooka if (rv)
681 1.40 pooka return rv;
682 1.40 pooka }
683 1.40 pooka
684 1.40 pooka /*
685 1.40 pooka * Additionally, we want to do a rump closem, but only
686 1.40 pooka * for the file descriptors not within the dup2mask.
687 1.40 pooka */
688 1.40 pooka
689 1.40 pooka /* why don't we offer fls()? */
690 1.47 pooka for (i = 15; i >= 0; i--) {
691 1.47 pooka if (ISDUP2D(i))
692 1.40 pooka break;
693 1.40 pooka }
694 1.40 pooka
695 1.40 pooka if (fd >= HIJACK_FDOFF)
696 1.40 pooka fd -= HIJACK_FDOFF;
697 1.40 pooka else
698 1.40 pooka fd = 0;
699 1.40 pooka fd = MAX(i+1, fd);
700 1.40 pooka
701 1.40 pooka /* hmm, maybe we should close rump fd's not within dup2mask? */
702 1.40 pooka
703 1.40 pooka return rump_sys_fcntl(fd, F_CLOSEM);
704 1.40 pooka
705 1.40 pooka case F_MAXFD:
706 1.40 pooka /*
707 1.40 pooka * For maxfd, if there's a rump kernel fd, return
708 1.40 pooka * it hostified. Otherwise, return host's MAXFD
709 1.40 pooka * return value.
710 1.40 pooka */
711 1.40 pooka if ((rv = rump_sys_fcntl(fd, F_MAXFD)) != -1) {
712 1.40 pooka /*
713 1.40 pooka * This might go a little wrong in case
714 1.40 pooka * of dup2 to [012], but I'm not sure if
715 1.40 pooka * there's a justification for tracking
716 1.40 pooka * that info. Consider e.g.
717 1.40 pooka * dup2(rumpfd, 2) followed by rump_sys_open()
718 1.40 pooka * returning 1. We should return 1+HIJACKOFF,
719 1.40 pooka * not 2+HIJACKOFF. However, if [01] is not
720 1.40 pooka * open, the correct return value is 2.
721 1.40 pooka */
722 1.40 pooka return fd_rump2host(fd);
723 1.40 pooka } else {
724 1.40 pooka op_fcntl = GETSYSCALL(host, FCNTL);
725 1.40 pooka return op_fcntl(fd, F_MAXFD);
726 1.40 pooka }
727 1.40 pooka /*NOTREACHED*/
728 1.40 pooka
729 1.40 pooka default:
730 1.40 pooka if (fd_isrump(fd)) {
731 1.40 pooka fd = fd_host2rump(fd);
732 1.40 pooka op_fcntl = GETSYSCALL(rump, FCNTL);
733 1.40 pooka } else {
734 1.40 pooka op_fcntl = GETSYSCALL(host, FCNTL);
735 1.40 pooka }
736 1.40 pooka
737 1.40 pooka va_start(ap, cmd);
738 1.40 pooka rv = op_fcntl(fd, cmd, va_arg(ap, void *));
739 1.40 pooka va_end(ap);
740 1.40 pooka return rv;
741 1.7 pooka }
742 1.40 pooka /*NOTREACHED*/
743 1.1 pooka }
744 1.1 pooka
745 1.39 pooka int
746 1.39 pooka close(int fd)
747 1.39 pooka {
748 1.39 pooka int (*op_close)(int);
749 1.39 pooka int rv;
750 1.39 pooka
751 1.39 pooka DPRINTF(("close -> %d\n", fd));
752 1.39 pooka if (fd_isrump(fd)) {
753 1.39 pooka int undup2 = 0;
754 1.39 pooka
755 1.47 pooka fd = fd_host2rump(fd);
756 1.47 pooka if (ISDUP2ALIAS(fd)) {
757 1.47 pooka _DIAGASSERT(ISDUP2D(fd));
758 1.47 pooka CLRDUP2ALIAS(fd);
759 1.47 pooka return 0;
760 1.47 pooka }
761 1.47 pooka
762 1.39 pooka if (ISDUP2D(fd))
763 1.39 pooka undup2 = 1;
764 1.39 pooka op_close = GETSYSCALL(rump, CLOSE);
765 1.39 pooka rv = op_close(fd);
766 1.39 pooka if (rv == 0 && undup2)
767 1.40 pooka CLRDUP2(fd);
768 1.39 pooka } else {
769 1.39 pooka if (rumpclient__closenotify(&fd, RUMPCLIENT_CLOSE_CLOSE) == -1)
770 1.39 pooka return -1;
771 1.39 pooka op_close = GETSYSCALL(host, CLOSE);
772 1.39 pooka rv = op_close(fd);
773 1.39 pooka }
774 1.39 pooka
775 1.39 pooka return rv;
776 1.39 pooka }
777 1.39 pooka
778 1.17 pooka /*
779 1.17 pooka * write cannot issue a standard debug printf due to recursion
780 1.17 pooka */
781 1.1 pooka ssize_t
782 1.17 pooka write(int fd, const void *buf, size_t blen)
783 1.1 pooka {
784 1.17 pooka ssize_t (*op_write)(int, const void *, size_t);
785 1.1 pooka
786 1.17 pooka if (fd_isrump(fd)) {
787 1.17 pooka fd = fd_host2rump(fd);
788 1.17 pooka op_write = GETSYSCALL(rump, WRITE);
789 1.16 pooka } else {
790 1.17 pooka op_write = GETSYSCALL(host, WRITE);
791 1.16 pooka }
792 1.1 pooka
793 1.17 pooka return op_write(fd, buf, blen);
794 1.2 pooka }
795 1.2 pooka
796 1.2 pooka /*
797 1.2 pooka * dup2 is special. we allow dup2 of a rump kernel fd to 0-2 since
798 1.2 pooka * many programs do that. dup2 of a rump kernel fd to another value
799 1.2 pooka * not >= fdoff is an error.
800 1.2 pooka *
801 1.2 pooka * Note: cannot rump2host newd, because it is often hardcoded.
802 1.2 pooka */
803 1.2 pooka int
804 1.2 pooka dup2(int oldd, int newd)
805 1.2 pooka {
806 1.17 pooka int (*host_dup2)(int, int);
807 1.2 pooka int rv;
808 1.2 pooka
809 1.2 pooka DPRINTF(("dup2 -> %d (o) -> %d (n)\n", oldd, newd));
810 1.2 pooka
811 1.2 pooka if (fd_isrump(oldd)) {
812 1.2 pooka if (!(newd >= 0 && newd <= 2))
813 1.2 pooka return EBADF;
814 1.2 pooka oldd = fd_host2rump(oldd);
815 1.47 pooka if (oldd == newd) {
816 1.47 pooka SETDUP2(newd);
817 1.47 pooka SETDUP2ALIAS(newd);
818 1.47 pooka return newd;
819 1.47 pooka }
820 1.2 pooka rv = rump_sys_dup2(oldd, newd);
821 1.2 pooka if (rv != -1)
822 1.40 pooka SETDUP2(newd);
823 1.2 pooka } else {
824 1.17 pooka host_dup2 = syscalls[DUALCALL_DUP2].bs_host;
825 1.39 pooka if (rumpclient__closenotify(&newd, RUMPCLIENT_CLOSE_DUP2) == -1)
826 1.39 pooka return -1;
827 1.10 pooka rv = host_dup2(oldd, newd);
828 1.2 pooka }
829 1.10 pooka
830 1.10 pooka return rv;
831 1.2 pooka }
832 1.2 pooka
833 1.34 pooka int
834 1.34 pooka dup(int oldd)
835 1.34 pooka {
836 1.34 pooka
837 1.40 pooka return dodup(oldd, 0);
838 1.34 pooka }
839 1.34 pooka
840 1.2 pooka pid_t
841 1.2 pooka fork()
842 1.2 pooka {
843 1.2 pooka pid_t rv;
844 1.2 pooka
845 1.2 pooka DPRINTF(("fork\n"));
846 1.2 pooka
847 1.43 pooka rv = rumpclient__dofork(host_fork);
848 1.2 pooka
849 1.2 pooka DPRINTF(("fork returns %d\n", rv));
850 1.2 pooka return rv;
851 1.1 pooka }
852 1.43 pooka /* we do not have the luxury of not requiring a stackframe */
853 1.43 pooka __strong_alias(__vfork14,fork);
854 1.1 pooka
855 1.25 pooka int
856 1.25 pooka daemon(int nochdir, int noclose)
857 1.25 pooka {
858 1.25 pooka struct rumpclient_fork *rf;
859 1.25 pooka
860 1.25 pooka if ((rf = rumpclient_prefork()) == NULL)
861 1.25 pooka return -1;
862 1.25 pooka
863 1.25 pooka if (host_daemon(nochdir, noclose) == -1)
864 1.25 pooka return -1;
865 1.25 pooka
866 1.25 pooka if (rumpclient_fork_init(rf) == -1)
867 1.25 pooka return -1;
868 1.25 pooka
869 1.25 pooka return 0;
870 1.25 pooka }
871 1.25 pooka
872 1.39 pooka int
873 1.42 pooka execve(const char *path, char *const argv[], char *const envp[])
874 1.39 pooka {
875 1.39 pooka char buf[128];
876 1.39 pooka char *dup2str;
877 1.45 pooka char *pwdinrumpstr;
878 1.42 pooka char **newenv;
879 1.42 pooka size_t nelem;
880 1.42 pooka int rv, sverrno;
881 1.45 pooka int bonus = 1, i = 0;
882 1.45 pooka
883 1.45 pooka if (dup2mask) {
884 1.45 pooka snprintf(buf, sizeof(buf), "RUMPHIJACK__DUP2MASK=%u", dup2mask);
885 1.45 pooka dup2str = malloc(strlen(buf)+1);
886 1.45 pooka if (dup2str == NULL)
887 1.45 pooka return ENOMEM;
888 1.45 pooka strcpy(dup2str, buf);
889 1.45 pooka bonus++;
890 1.45 pooka } else {
891 1.45 pooka dup2str = NULL;
892 1.45 pooka }
893 1.39 pooka
894 1.45 pooka if (pwdinrump) {
895 1.45 pooka snprintf(buf, sizeof(buf), "RUMPHIJACK__PWDINRUMP=%u",
896 1.45 pooka pwdinrump);
897 1.45 pooka pwdinrumpstr = malloc(strlen(buf)+1);
898 1.45 pooka if (pwdinrumpstr == NULL) {
899 1.45 pooka free(dup2str);
900 1.45 pooka return ENOMEM;
901 1.45 pooka }
902 1.45 pooka strcpy(pwdinrumpstr, buf);
903 1.45 pooka bonus++;
904 1.45 pooka } else {
905 1.45 pooka pwdinrumpstr = NULL;
906 1.45 pooka }
907 1.39 pooka
908 1.42 pooka for (nelem = 0; envp && envp[nelem]; nelem++)
909 1.42 pooka continue;
910 1.45 pooka newenv = malloc(sizeof(*newenv) * nelem+bonus);
911 1.42 pooka if (newenv == NULL) {
912 1.39 pooka free(dup2str);
913 1.45 pooka free(pwdinrumpstr);
914 1.42 pooka return ENOMEM;
915 1.39 pooka }
916 1.42 pooka memcpy(newenv, envp, nelem*sizeof(*newenv));
917 1.45 pooka if (dup2str) {
918 1.45 pooka newenv[nelem+i] = dup2str;
919 1.45 pooka i++;
920 1.45 pooka }
921 1.45 pooka if (pwdinrumpstr) {
922 1.45 pooka newenv[nelem+i] = pwdinrumpstr;
923 1.45 pooka i++;
924 1.45 pooka }
925 1.45 pooka newenv[nelem+i] = NULL;
926 1.45 pooka _DIAGASSERT(i < bonus);
927 1.42 pooka
928 1.42 pooka rv = rumpclient_exec(path, argv, newenv);
929 1.42 pooka
930 1.42 pooka _DIAGASSERT(rv != 0);
931 1.42 pooka sverrno = errno;
932 1.42 pooka free(newenv);
933 1.42 pooka free(dup2str);
934 1.42 pooka errno = sverrno;
935 1.39 pooka return rv;
936 1.39 pooka }
937 1.39 pooka
938 1.1 pooka /*
939 1.17 pooka * select is done by calling poll.
940 1.1 pooka */
941 1.1 pooka int
942 1.29 pooka REALSELECT(int nfds, fd_set *readfds, fd_set *writefds, fd_set *exceptfds,
943 1.4 pooka struct timeval *timeout)
944 1.1 pooka {
945 1.4 pooka struct pollfd *pfds;
946 1.4 pooka struct timespec ts, *tsp = NULL;
947 1.19 pooka nfds_t realnfds;
948 1.19 pooka int i, j;
949 1.4 pooka int rv, incr;
950 1.4 pooka
951 1.7 pooka DPRINTF(("select\n"));
952 1.7 pooka
953 1.4 pooka /*
954 1.4 pooka * Well, first we must scan the fds to figure out how many
955 1.4 pooka * fds there really are. This is because up to and including
956 1.17 pooka * nb5 poll() silently refuses nfds > process_maxopen_fds.
957 1.4 pooka * Seems to be fixed in current, thank the maker.
958 1.4 pooka * god damn cluster...bomb.
959 1.4 pooka */
960 1.4 pooka
961 1.4 pooka for (i = 0, realnfds = 0; i < nfds; i++) {
962 1.4 pooka if (readfds && FD_ISSET(i, readfds)) {
963 1.4 pooka realnfds++;
964 1.4 pooka continue;
965 1.4 pooka }
966 1.4 pooka if (writefds && FD_ISSET(i, writefds)) {
967 1.4 pooka realnfds++;
968 1.4 pooka continue;
969 1.4 pooka }
970 1.4 pooka if (exceptfds && FD_ISSET(i, exceptfds)) {
971 1.4 pooka realnfds++;
972 1.4 pooka continue;
973 1.1 pooka }
974 1.1 pooka }
975 1.1 pooka
976 1.6 pooka if (realnfds) {
977 1.38 pooka pfds = calloc(realnfds, sizeof(*pfds));
978 1.6 pooka if (!pfds)
979 1.6 pooka return -1;
980 1.6 pooka } else {
981 1.6 pooka pfds = NULL;
982 1.6 pooka }
983 1.1 pooka
984 1.4 pooka for (i = 0, j = 0; i < nfds; i++) {
985 1.4 pooka incr = 0;
986 1.4 pooka if (readfds && FD_ISSET(i, readfds)) {
987 1.4 pooka pfds[j].fd = i;
988 1.4 pooka pfds[j].events |= POLLIN;
989 1.4 pooka incr=1;
990 1.4 pooka }
991 1.4 pooka if (writefds && FD_ISSET(i, writefds)) {
992 1.4 pooka pfds[j].fd = i;
993 1.4 pooka pfds[j].events |= POLLOUT;
994 1.4 pooka incr=1;
995 1.4 pooka }
996 1.4 pooka if (exceptfds && FD_ISSET(i, exceptfds)) {
997 1.4 pooka pfds[j].fd = i;
998 1.4 pooka pfds[j].events |= POLLHUP|POLLERR;
999 1.4 pooka incr=1;
1000 1.1 pooka }
1001 1.4 pooka if (incr)
1002 1.4 pooka j++;
1003 1.1 pooka }
1004 1.37 pooka assert(j == (int)realnfds);
1005 1.1 pooka
1006 1.4 pooka if (timeout) {
1007 1.4 pooka TIMEVAL_TO_TIMESPEC(timeout, &ts);
1008 1.4 pooka tsp = &ts;
1009 1.4 pooka }
1010 1.29 pooka rv = REALPOLLTS(pfds, realnfds, tsp, NULL);
1011 1.36 pooka /*
1012 1.36 pooka * "If select() returns with an error the descriptor sets
1013 1.36 pooka * will be unmodified"
1014 1.36 pooka */
1015 1.36 pooka if (rv < 0)
1016 1.4 pooka goto out;
1017 1.4 pooka
1018 1.4 pooka /*
1019 1.36 pooka * zero out results (can't use FD_ZERO for the
1020 1.36 pooka * obvious select-me-not reason). whee.
1021 1.36 pooka *
1022 1.36 pooka * We do this here since some software ignores the return
1023 1.36 pooka * value of select, and hence if the timeout expires, it may
1024 1.36 pooka * assume all input descriptors have activity.
1025 1.4 pooka */
1026 1.4 pooka for (i = 0; i < nfds; i++) {
1027 1.4 pooka if (readfds)
1028 1.4 pooka FD_CLR(i, readfds);
1029 1.4 pooka if (writefds)
1030 1.4 pooka FD_CLR(i, writefds);
1031 1.4 pooka if (exceptfds)
1032 1.4 pooka FD_CLR(i, exceptfds);
1033 1.1 pooka }
1034 1.36 pooka if (rv == 0)
1035 1.36 pooka goto out;
1036 1.1 pooka
1037 1.36 pooka /*
1038 1.36 pooka * We have >0 fds with activity. Harvest the results.
1039 1.36 pooka */
1040 1.19 pooka for (i = 0; i < (int)realnfds; i++) {
1041 1.4 pooka if (readfds) {
1042 1.4 pooka if (pfds[i].revents & POLLIN) {
1043 1.4 pooka FD_SET(pfds[i].fd, readfds);
1044 1.4 pooka }
1045 1.4 pooka }
1046 1.4 pooka if (writefds) {
1047 1.4 pooka if (pfds[i].revents & POLLOUT) {
1048 1.4 pooka FD_SET(pfds[i].fd, writefds);
1049 1.4 pooka }
1050 1.4 pooka }
1051 1.4 pooka if (exceptfds) {
1052 1.4 pooka if (pfds[i].revents & (POLLHUP|POLLERR)) {
1053 1.4 pooka FD_SET(pfds[i].fd, exceptfds);
1054 1.4 pooka }
1055 1.4 pooka }
1056 1.1 pooka }
1057 1.1 pooka
1058 1.4 pooka out:
1059 1.4 pooka free(pfds);
1060 1.1 pooka return rv;
1061 1.1 pooka }
1062 1.1 pooka
1063 1.1 pooka static void
1064 1.1 pooka checkpoll(struct pollfd *fds, nfds_t nfds, int *hostcall, int *rumpcall)
1065 1.1 pooka {
1066 1.1 pooka nfds_t i;
1067 1.1 pooka
1068 1.1 pooka for (i = 0; i < nfds; i++) {
1069 1.12 pooka if (fds[i].fd == -1)
1070 1.12 pooka continue;
1071 1.12 pooka
1072 1.2 pooka if (fd_isrump(fds[i].fd))
1073 1.2 pooka (*rumpcall)++;
1074 1.2 pooka else
1075 1.1 pooka (*hostcall)++;
1076 1.1 pooka }
1077 1.1 pooka }
1078 1.1 pooka
1079 1.1 pooka static void
1080 1.2 pooka adjustpoll(struct pollfd *fds, nfds_t nfds, int (*fdadj)(int))
1081 1.1 pooka {
1082 1.1 pooka nfds_t i;
1083 1.1 pooka
1084 1.1 pooka for (i = 0; i < nfds; i++) {
1085 1.2 pooka fds[i].fd = fdadj(fds[i].fd);
1086 1.1 pooka }
1087 1.1 pooka }
1088 1.1 pooka
1089 1.1 pooka /*
1090 1.1 pooka * poll is easy as long as the call comes in the fds only in one
1091 1.1 pooka * kernel. otherwise its quite tricky...
1092 1.1 pooka */
1093 1.1 pooka struct pollarg {
1094 1.1 pooka struct pollfd *pfds;
1095 1.1 pooka nfds_t nfds;
1096 1.3 pooka const struct timespec *ts;
1097 1.3 pooka const sigset_t *sigmask;
1098 1.1 pooka int pipefd;
1099 1.1 pooka int errnum;
1100 1.1 pooka };
1101 1.1 pooka
1102 1.1 pooka static void *
1103 1.1 pooka hostpoll(void *arg)
1104 1.1 pooka {
1105 1.17 pooka int (*op_pollts)(struct pollfd *, nfds_t, const struct timespec *,
1106 1.17 pooka const sigset_t *);
1107 1.1 pooka struct pollarg *parg = arg;
1108 1.1 pooka intptr_t rv;
1109 1.1 pooka
1110 1.35 pooka op_pollts = GETSYSCALL(host, POLLTS);
1111 1.17 pooka rv = op_pollts(parg->pfds, parg->nfds, parg->ts, parg->sigmask);
1112 1.1 pooka if (rv == -1)
1113 1.1 pooka parg->errnum = errno;
1114 1.1 pooka rump_sys_write(parg->pipefd, &rv, sizeof(rv));
1115 1.1 pooka
1116 1.1 pooka return (void *)(intptr_t)rv;
1117 1.1 pooka }
1118 1.1 pooka
1119 1.1 pooka int
1120 1.29 pooka REALPOLLTS(struct pollfd *fds, nfds_t nfds, const struct timespec *ts,
1121 1.3 pooka const sigset_t *sigmask)
1122 1.1 pooka {
1123 1.3 pooka int (*op_pollts)(struct pollfd *, nfds_t, const struct timespec *,
1124 1.3 pooka const sigset_t *);
1125 1.17 pooka int (*host_close)(int);
1126 1.1 pooka int hostcall = 0, rumpcall = 0;
1127 1.1 pooka pthread_t pt;
1128 1.1 pooka nfds_t i;
1129 1.1 pooka int rv;
1130 1.1 pooka
1131 1.2 pooka DPRINTF(("poll\n"));
1132 1.1 pooka checkpoll(fds, nfds, &hostcall, &rumpcall);
1133 1.1 pooka
1134 1.1 pooka if (hostcall && rumpcall) {
1135 1.1 pooka struct pollfd *pfd_host = NULL, *pfd_rump = NULL;
1136 1.1 pooka int rpipe[2] = {-1,-1}, hpipe[2] = {-1,-1};
1137 1.1 pooka struct pollarg parg;
1138 1.1 pooka uintptr_t lrv;
1139 1.1 pooka int sverrno = 0, trv;
1140 1.1 pooka
1141 1.1 pooka /*
1142 1.1 pooka * ok, this is where it gets tricky. We must support
1143 1.1 pooka * this since it's a very common operation in certain
1144 1.1 pooka * types of software (telnet, netcat, etc). We allocate
1145 1.1 pooka * two vectors and run two poll commands in separate
1146 1.1 pooka * threads. Whichever returns first "wins" and the
1147 1.1 pooka * other kernel's fds won't show activity.
1148 1.1 pooka */
1149 1.1 pooka rv = -1;
1150 1.1 pooka
1151 1.1 pooka /* allocate full vector for O(n) joining after call */
1152 1.1 pooka pfd_host = malloc(sizeof(*pfd_host)*(nfds+1));
1153 1.1 pooka if (!pfd_host)
1154 1.1 pooka goto out;
1155 1.1 pooka pfd_rump = malloc(sizeof(*pfd_rump)*(nfds+1));
1156 1.1 pooka if (!pfd_rump) {
1157 1.1 pooka goto out;
1158 1.1 pooka }
1159 1.1 pooka
1160 1.1 pooka /* split vectors */
1161 1.1 pooka for (i = 0; i < nfds; i++) {
1162 1.3 pooka if (fds[i].fd == -1) {
1163 1.3 pooka pfd_host[i].fd = -1;
1164 1.3 pooka pfd_rump[i].fd = -1;
1165 1.3 pooka } else if (fd_isrump(fds[i].fd)) {
1166 1.2 pooka pfd_host[i].fd = -1;
1167 1.2 pooka pfd_rump[i].fd = fd_host2rump(fds[i].fd);
1168 1.2 pooka pfd_rump[i].events = fds[i].events;
1169 1.2 pooka } else {
1170 1.2 pooka pfd_rump[i].fd = -1;
1171 1.1 pooka pfd_host[i].fd = fds[i].fd;
1172 1.1 pooka pfd_host[i].events = fds[i].events;
1173 1.1 pooka }
1174 1.39 pooka pfd_rump[i].revents = pfd_host[i].revents = 0;
1175 1.13 pooka fds[i].revents = 0;
1176 1.1 pooka }
1177 1.1 pooka
1178 1.1 pooka /*
1179 1.1 pooka * then, open two pipes, one for notifications
1180 1.1 pooka * to each kernel.
1181 1.1 pooka */
1182 1.1 pooka if (rump_sys_pipe(rpipe) == -1)
1183 1.1 pooka goto out;
1184 1.1 pooka if (pipe(hpipe) == -1)
1185 1.1 pooka goto out;
1186 1.1 pooka
1187 1.1 pooka pfd_host[nfds].fd = hpipe[0];
1188 1.1 pooka pfd_host[nfds].events = POLLIN;
1189 1.1 pooka pfd_rump[nfds].fd = rpipe[0];
1190 1.1 pooka pfd_rump[nfds].events = POLLIN;
1191 1.1 pooka
1192 1.1 pooka /*
1193 1.1 pooka * then, create a thread to do host part and meanwhile
1194 1.1 pooka * do rump kernel part right here
1195 1.1 pooka */
1196 1.1 pooka
1197 1.1 pooka parg.pfds = pfd_host;
1198 1.1 pooka parg.nfds = nfds+1;
1199 1.3 pooka parg.ts = ts;
1200 1.3 pooka parg.sigmask = sigmask;
1201 1.1 pooka parg.pipefd = rpipe[1];
1202 1.1 pooka pthread_create(&pt, NULL, hostpoll, &parg);
1203 1.1 pooka
1204 1.35 pooka op_pollts = GETSYSCALL(rump, POLLTS);
1205 1.3 pooka lrv = op_pollts(pfd_rump, nfds+1, ts, NULL);
1206 1.1 pooka sverrno = errno;
1207 1.1 pooka write(hpipe[1], &rv, sizeof(rv));
1208 1.1 pooka pthread_join(pt, (void *)&trv);
1209 1.1 pooka
1210 1.1 pooka /* check who "won" and merge results */
1211 1.1 pooka if (lrv != 0 && pfd_host[nfds].revents & POLLIN) {
1212 1.1 pooka rv = trv;
1213 1.1 pooka
1214 1.1 pooka for (i = 0; i < nfds; i++) {
1215 1.1 pooka if (pfd_rump[i].fd != -1)
1216 1.1 pooka fds[i].revents = pfd_rump[i].revents;
1217 1.1 pooka }
1218 1.1 pooka sverrno = parg.errnum;
1219 1.1 pooka } else if (trv != 0 && pfd_rump[nfds].revents & POLLIN) {
1220 1.1 pooka rv = trv;
1221 1.1 pooka
1222 1.1 pooka for (i = 0; i < nfds; i++) {
1223 1.1 pooka if (pfd_host[i].fd != -1)
1224 1.1 pooka fds[i].revents = pfd_host[i].revents;
1225 1.1 pooka }
1226 1.1 pooka } else {
1227 1.1 pooka rv = 0;
1228 1.1 pooka }
1229 1.1 pooka
1230 1.1 pooka out:
1231 1.35 pooka host_close = GETSYSCALL(host, CLOSE);
1232 1.1 pooka if (rpipe[0] != -1)
1233 1.1 pooka rump_sys_close(rpipe[0]);
1234 1.1 pooka if (rpipe[1] != -1)
1235 1.1 pooka rump_sys_close(rpipe[1]);
1236 1.1 pooka if (hpipe[0] != -1)
1237 1.9 pooka host_close(hpipe[0]);
1238 1.1 pooka if (hpipe[1] != -1)
1239 1.9 pooka host_close(hpipe[1]);
1240 1.1 pooka free(pfd_host);
1241 1.1 pooka free(pfd_rump);
1242 1.1 pooka errno = sverrno;
1243 1.1 pooka } else {
1244 1.1 pooka if (hostcall) {
1245 1.35 pooka op_pollts = GETSYSCALL(host, POLLTS);
1246 1.1 pooka } else {
1247 1.35 pooka op_pollts = GETSYSCALL(rump, POLLTS);
1248 1.2 pooka adjustpoll(fds, nfds, fd_host2rump);
1249 1.1 pooka }
1250 1.1 pooka
1251 1.3 pooka rv = op_pollts(fds, nfds, ts, sigmask);
1252 1.1 pooka if (rumpcall)
1253 1.2 pooka adjustpoll(fds, nfds, fd_rump2host);
1254 1.1 pooka }
1255 1.1 pooka
1256 1.1 pooka return rv;
1257 1.1 pooka }
1258 1.1 pooka
1259 1.1 pooka int
1260 1.24 pooka poll(struct pollfd *fds, nfds_t nfds, int timeout)
1261 1.1 pooka {
1262 1.3 pooka struct timespec ts;
1263 1.3 pooka struct timespec *tsp = NULL;
1264 1.3 pooka
1265 1.3 pooka if (timeout != INFTIM) {
1266 1.3 pooka ts.tv_sec = timeout / 1000;
1267 1.11 pooka ts.tv_nsec = (timeout % 1000) * 1000*1000;
1268 1.3 pooka
1269 1.3 pooka tsp = &ts;
1270 1.3 pooka }
1271 1.1 pooka
1272 1.29 pooka return REALPOLLTS(fds, nfds, tsp, NULL);
1273 1.1 pooka }
1274 1.10 pooka
1275 1.10 pooka int
1276 1.34 pooka REALKEVENT(int kq, const struct kevent *changelist, size_t nchanges,
1277 1.34 pooka struct kevent *eventlist, size_t nevents,
1278 1.34 pooka const struct timespec *timeout)
1279 1.10 pooka {
1280 1.34 pooka int (*op_kevent)(int, const struct kevent *, size_t,
1281 1.34 pooka struct kevent *, size_t, const struct timespec *);
1282 1.34 pooka const struct kevent *ev;
1283 1.34 pooka size_t i;
1284 1.10 pooka
1285 1.34 pooka /*
1286 1.34 pooka * Check that we don't attempt to kevent rump kernel fd's.
1287 1.34 pooka * That needs similar treatment to select/poll, but is slightly
1288 1.34 pooka * trickier since we need to manage to different kq descriptors.
1289 1.34 pooka * (TODO, in case you're wondering).
1290 1.34 pooka */
1291 1.34 pooka for (i = 0; i < nchanges; i++) {
1292 1.34 pooka ev = &changelist[i];
1293 1.34 pooka if (ev->filter == EVFILT_READ || ev->filter == EVFILT_WRITE ||
1294 1.34 pooka ev->filter == EVFILT_VNODE) {
1295 1.40 pooka if (fd_isrump((int)ev->ident))
1296 1.34 pooka return ENOTSUP;
1297 1.34 pooka }
1298 1.27 pooka }
1299 1.10 pooka
1300 1.35 pooka op_kevent = GETSYSCALL(host, KEVENT);
1301 1.34 pooka return op_kevent(kq, changelist, nchanges, eventlist, nevents, timeout);
1302 1.10 pooka }
1303 1.17 pooka
1304 1.17 pooka /*
1305 1.17 pooka * Rest are std type calls.
1306 1.17 pooka */
1307 1.17 pooka
1308 1.17 pooka FDCALL(int, bind, DUALCALL_BIND, \
1309 1.17 pooka (int fd, const struct sockaddr *name, socklen_t namelen), \
1310 1.17 pooka (int, const struct sockaddr *, socklen_t), \
1311 1.17 pooka (fd, name, namelen))
1312 1.17 pooka
1313 1.17 pooka FDCALL(int, connect, DUALCALL_CONNECT, \
1314 1.17 pooka (int fd, const struct sockaddr *name, socklen_t namelen), \
1315 1.17 pooka (int, const struct sockaddr *, socklen_t), \
1316 1.17 pooka (fd, name, namelen))
1317 1.17 pooka
1318 1.17 pooka FDCALL(int, getpeername, DUALCALL_GETPEERNAME, \
1319 1.17 pooka (int fd, struct sockaddr *name, socklen_t *namelen), \
1320 1.17 pooka (int, struct sockaddr *, socklen_t *), \
1321 1.17 pooka (fd, name, namelen))
1322 1.17 pooka
1323 1.17 pooka FDCALL(int, getsockname, DUALCALL_GETSOCKNAME, \
1324 1.17 pooka (int fd, struct sockaddr *name, socklen_t *namelen), \
1325 1.17 pooka (int, struct sockaddr *, socklen_t *), \
1326 1.17 pooka (fd, name, namelen))
1327 1.17 pooka
1328 1.17 pooka FDCALL(int, listen, DUALCALL_LISTEN, \
1329 1.17 pooka (int fd, int backlog), \
1330 1.17 pooka (int, int), \
1331 1.17 pooka (fd, backlog))
1332 1.17 pooka
1333 1.17 pooka FDCALL(ssize_t, recvfrom, DUALCALL_RECVFROM, \
1334 1.17 pooka (int fd, void *buf, size_t len, int flags, \
1335 1.17 pooka struct sockaddr *from, socklen_t *fromlen), \
1336 1.17 pooka (int, void *, size_t, int, struct sockaddr *, socklen_t *), \
1337 1.17 pooka (fd, buf, len, flags, from, fromlen))
1338 1.17 pooka
1339 1.17 pooka FDCALL(ssize_t, sendto, DUALCALL_SENDTO, \
1340 1.17 pooka (int fd, const void *buf, size_t len, int flags, \
1341 1.17 pooka const struct sockaddr *to, socklen_t tolen), \
1342 1.17 pooka (int, const void *, size_t, int, \
1343 1.17 pooka const struct sockaddr *, socklen_t), \
1344 1.17 pooka (fd, buf, len, flags, to, tolen))
1345 1.17 pooka
1346 1.17 pooka FDCALL(ssize_t, recvmsg, DUALCALL_RECVMSG, \
1347 1.17 pooka (int fd, struct msghdr *msg, int flags), \
1348 1.17 pooka (int, struct msghdr *, int), \
1349 1.17 pooka (fd, msg, flags))
1350 1.17 pooka
1351 1.17 pooka FDCALL(ssize_t, sendmsg, DUALCALL_SENDMSG, \
1352 1.17 pooka (int fd, const struct msghdr *msg, int flags), \
1353 1.17 pooka (int, const struct msghdr *, int), \
1354 1.17 pooka (fd, msg, flags))
1355 1.17 pooka
1356 1.17 pooka FDCALL(int, getsockopt, DUALCALL_GETSOCKOPT, \
1357 1.17 pooka (int fd, int level, int optn, void *optval, socklen_t *optlen), \
1358 1.17 pooka (int, int, int, void *, socklen_t *), \
1359 1.17 pooka (fd, level, optn, optval, optlen))
1360 1.17 pooka
1361 1.17 pooka FDCALL(int, setsockopt, DUALCALL_SETSOCKOPT, \
1362 1.17 pooka (int fd, int level, int optn, \
1363 1.17 pooka const void *optval, socklen_t optlen), \
1364 1.17 pooka (int, int, int, const void *, socklen_t), \
1365 1.17 pooka (fd, level, optn, optval, optlen))
1366 1.17 pooka
1367 1.17 pooka FDCALL(int, shutdown, DUALCALL_SHUTDOWN, \
1368 1.17 pooka (int fd, int how), \
1369 1.17 pooka (int, int), \
1370 1.17 pooka (fd, how))
1371 1.17 pooka
1372 1.21 christos #if _FORTIFY_SOURCE > 0
1373 1.21 christos #define STUB(fun) __ssp_weak_name(fun)
1374 1.21 christos ssize_t _sys_readlink(const char * __restrict, char * __restrict, size_t);
1375 1.21 christos ssize_t
1376 1.21 christos STUB(readlink)(const char * __restrict path, char * __restrict buf,
1377 1.21 christos size_t bufsiz)
1378 1.21 christos {
1379 1.21 christos return _sys_readlink(path, buf, bufsiz);
1380 1.21 christos }
1381 1.21 christos
1382 1.21 christos char *_sys_getcwd(char *, size_t);
1383 1.21 christos char *
1384 1.21 christos STUB(getcwd)(char *buf, size_t size)
1385 1.21 christos {
1386 1.21 christos return _sys_getcwd(buf, size);
1387 1.21 christos }
1388 1.21 christos #else
1389 1.21 christos #define STUB(fun) fun
1390 1.21 christos #endif
1391 1.21 christos
1392 1.31 pooka FDCALL(ssize_t, REALREAD, DUALCALL_READ, \
1393 1.17 pooka (int fd, void *buf, size_t buflen), \
1394 1.17 pooka (int, void *, size_t), \
1395 1.17 pooka (fd, buf, buflen))
1396 1.17 pooka
1397 1.18 pooka FDCALL(ssize_t, readv, DUALCALL_READV, \
1398 1.17 pooka (int fd, const struct iovec *iov, int iovcnt), \
1399 1.17 pooka (int, const struct iovec *, int), \
1400 1.17 pooka (fd, iov, iovcnt))
1401 1.17 pooka
1402 1.17 pooka FDCALL(ssize_t, writev, DUALCALL_WRITEV, \
1403 1.17 pooka (int fd, const struct iovec *iov, int iovcnt), \
1404 1.17 pooka (int, const struct iovec *, int), \
1405 1.17 pooka (fd, iov, iovcnt))
1406 1.45 pooka
1407 1.45 pooka FDCALL(int, REALFSTAT, DUALCALL_FSTAT, \
1408 1.45 pooka (int fd, struct stat *sb), \
1409 1.45 pooka (int, struct stat *), \
1410 1.45 pooka (fd, sb))
1411 1.45 pooka
1412 1.45 pooka FDCALL(int, fstatvfs1, DUALCALL_FSTATVFS1, \
1413 1.45 pooka (int fd, struct statvfs *buf, int flags), \
1414 1.45 pooka (int, struct statvfs *, int), \
1415 1.45 pooka (fd, buf, flags))
1416 1.45 pooka
1417 1.45 pooka FDCALL(off_t, lseek, DUALCALL_LSEEK, \
1418 1.45 pooka (int fd, off_t offset, int whence), \
1419 1.45 pooka (int, off_t, int), \
1420 1.45 pooka (fd, offset, whence))
1421 1.45 pooka
1422 1.45 pooka FDCALL(int, REALGETDENTS, DUALCALL_GETDENTS, \
1423 1.45 pooka (int fd, char *buf, size_t nbytes), \
1424 1.45 pooka (int, char *, size_t), \
1425 1.45 pooka (fd, buf, nbytes))
1426 1.45 pooka
1427 1.45 pooka FDCALL(int, fchown, DUALCALL_FCHOWN, \
1428 1.45 pooka (int fd, uid_t owner, gid_t group), \
1429 1.45 pooka (int, uid_t, gid_t), \
1430 1.45 pooka (fd, owner, group))
1431 1.45 pooka
1432 1.45 pooka FDCALL(int, fchmod, DUALCALL_FCHMOD, \
1433 1.45 pooka (int fd, mode_t mode), \
1434 1.45 pooka (int, mode_t), \
1435 1.45 pooka (fd, mode))
1436 1.45 pooka
1437 1.45 pooka FDCALL(int, ftruncate, DUALCALL_FTRUNCATE, \
1438 1.45 pooka (int fd, off_t length), \
1439 1.45 pooka (int, off_t), \
1440 1.45 pooka (fd, length))
1441 1.45 pooka
1442 1.45 pooka FDCALL(int, fsync, DUALCALL_FSYNC, \
1443 1.45 pooka (int fd), \
1444 1.45 pooka (int), \
1445 1.45 pooka (fd))
1446 1.45 pooka
1447 1.45 pooka FDCALL(int, fsync_range, DUALCALL_FSYNC_RANGE, \
1448 1.45 pooka (int fd, int how, off_t start, off_t length), \
1449 1.45 pooka (int, int, off_t, off_t), \
1450 1.45 pooka (fd, how, start, length))
1451 1.45 pooka
1452 1.45 pooka FDCALL(int, futimes, DUALCALL_FUTIMES, \
1453 1.45 pooka (int fd, const struct timeval *tv), \
1454 1.45 pooka (int, const struct timeval *), \
1455 1.45 pooka (fd, tv))
1456 1.45 pooka
1457 1.45 pooka /*
1458 1.45 pooka * path-based selectors
1459 1.45 pooka */
1460 1.45 pooka
1461 1.45 pooka PATHCALL(int, REALSTAT, DUALCALL_STAT, \
1462 1.45 pooka (const char *path, struct stat *sb), \
1463 1.45 pooka (const char *, struct stat *), \
1464 1.45 pooka (path, sb))
1465 1.45 pooka
1466 1.45 pooka PATHCALL(int, REALLSTAT, DUALCALL_LSTAT, \
1467 1.45 pooka (const char *path, struct stat *sb), \
1468 1.45 pooka (const char *, struct stat *), \
1469 1.45 pooka (path, sb))
1470 1.45 pooka
1471 1.45 pooka PATHCALL(int, chown, DUALCALL_CHOWN, \
1472 1.45 pooka (const char *path, uid_t owner, gid_t group), \
1473 1.45 pooka (const char *, uid_t, gid_t), \
1474 1.45 pooka (path, owner, group))
1475 1.45 pooka
1476 1.45 pooka PATHCALL(int, lchown, DUALCALL_LCHOWN, \
1477 1.45 pooka (const char *path, uid_t owner, gid_t group), \
1478 1.45 pooka (const char *, uid_t, gid_t), \
1479 1.45 pooka (path, owner, group))
1480 1.45 pooka
1481 1.45 pooka PATHCALL(int, chmod, DUALCALL_CHMOD, \
1482 1.45 pooka (const char *path, mode_t mode), \
1483 1.45 pooka (const char *, mode_t), \
1484 1.45 pooka (path, mode))
1485 1.45 pooka
1486 1.45 pooka PATHCALL(int, lchmod, DUALCALL_LCHMOD, \
1487 1.45 pooka (const char *path, mode_t mode), \
1488 1.45 pooka (const char *, mode_t), \
1489 1.45 pooka (path, mode))
1490 1.45 pooka
1491 1.45 pooka PATHCALL(int, statvfs1, DUALCALL_STATVFS1, \
1492 1.45 pooka (const char *path, struct statvfs *buf, int flags), \
1493 1.45 pooka (const char *, struct statvfs *, int), \
1494 1.45 pooka (path, buf, flags))
1495 1.45 pooka
1496 1.45 pooka PATHCALL(int, unlink, DUALCALL_UNLINK, \
1497 1.45 pooka (const char *path), \
1498 1.45 pooka (const char *), \
1499 1.45 pooka (path))
1500 1.45 pooka
1501 1.45 pooka PATHCALL(int, symlink, DUALCALL_SYMLINK, \
1502 1.45 pooka (const char *path, const char *target), \
1503 1.45 pooka (const char *, const char *), \
1504 1.45 pooka (path, target))
1505 1.45 pooka
1506 1.46 pooka PATHCALL(ssize_t, readlink, DUALCALL_READLINK, \
1507 1.45 pooka (const char *path, char *buf, size_t bufsiz), \
1508 1.45 pooka (const char *, char *, size_t), \
1509 1.45 pooka (path, buf, bufsiz))
1510 1.45 pooka
1511 1.45 pooka /* XXX: cross-kernel renames need to be blocked */
1512 1.45 pooka PATHCALL(int, rename, DUALCALL_RENAME, \
1513 1.45 pooka (const char *path, const char *to), \
1514 1.45 pooka (const char *, const char *), \
1515 1.45 pooka (path, to))
1516 1.45 pooka
1517 1.45 pooka PATHCALL(int, mkdir, DUALCALL_MKDIR, \
1518 1.45 pooka (const char *path, mode_t mode), \
1519 1.45 pooka (const char *, mode_t), \
1520 1.45 pooka (path, mode))
1521 1.45 pooka
1522 1.45 pooka PATHCALL(int, rmdir, DUALCALL_RMDIR, \
1523 1.45 pooka (const char *path), \
1524 1.45 pooka (const char *), \
1525 1.45 pooka (path))
1526 1.45 pooka
1527 1.45 pooka PATHCALL(int, utimes, DUALCALL_UTIMES, \
1528 1.45 pooka (const char *path, const struct timeval *tv), \
1529 1.45 pooka (const char *, const struct timeval *), \
1530 1.45 pooka (path, tv))
1531 1.45 pooka
1532 1.45 pooka PATHCALL(int, lutimes, DUALCALL_LUTIMES, \
1533 1.45 pooka (const char *path, const struct timeval *tv), \
1534 1.45 pooka (const char *, const struct timeval *), \
1535 1.45 pooka (path, tv))
1536 1.45 pooka
1537 1.45 pooka PATHCALL(int, truncate, DUALCALL_TRUNCATE, \
1538 1.45 pooka (const char *path, off_t length), \
1539 1.45 pooka (const char *, off_t), \
1540 1.45 pooka (path, length))
1541 1.48 pooka
1542 1.48 pooka /*
1543 1.48 pooka * Note: with mount the decisive parameter is the mount
1544 1.48 pooka * destination directory. This is because we don't really know
1545 1.48 pooka * about the "source" directory in a generic call (and besides,
1546 1.48 pooka * it might not even exist, cf. nfs).
1547 1.48 pooka */
1548 1.48 pooka PATHCALL(int, REALMOUNT, DUALCALL_MOUNT, \
1549 1.48 pooka (const char *type, const char *path, int flags, \
1550 1.48 pooka void *data, size_t dlen), \
1551 1.48 pooka (const char *, const char *, int, void *, size_t), \
1552 1.48 pooka (type, path, flags, data, dlen))
1553 1.48 pooka
1554 1.48 pooka PATHCALL(int, unmount, DUALCALL_UNMOUNT, \
1555 1.48 pooka (const char *path, int flags), \
1556 1.48 pooka (const char *, int), \
1557 1.48 pooka (path, flags))
1558