[CIFS] Fix oops in cifs_readpages caused by not checking buf_type in an
[sfrench/cifs-2.6.git] / arch / um / kernel / sigio_user.c
1 /* 
2  * Copyright (C) 2002 Jeff Dike (jdike@karaya.com)
3  * Licensed under the GPL
4  */
5
6 #include <unistd.h>
7 #include <stdlib.h>
8 #include <termios.h>
9 #include <pty.h>
10 #include <signal.h>
11 #include <errno.h>
12 #include <string.h>
13 #include <sched.h>
14 #include <sys/socket.h>
15 #include <sys/poll.h>
16 #include "init.h"
17 #include "user.h"
18 #include "kern_util.h"
19 #include "user_util.h"
20 #include "sigio.h"
21 #include "os.h"
22
23 /* Changed during early boot */
24 int pty_output_sigio = 0;
25 int pty_close_sigio = 0;
26
27 /* Used as a flag during SIGIO testing early in boot */
28 static volatile int got_sigio = 0;
29
30 void __init handler(int sig)
31 {
32         got_sigio = 1;
33 }
34
35 struct openpty_arg {
36         int master;
37         int slave;
38         int err;
39 };
40
41 static void openpty_cb(void *arg)
42 {
43         struct openpty_arg *info = arg;
44
45         info->err = 0;
46         if(openpty(&info->master, &info->slave, NULL, NULL, NULL))
47                 info->err = -errno;
48 }
49
50 void __init check_one_sigio(void (*proc)(int, int))
51 {
52         struct sigaction old, new;
53         struct openpty_arg pty = { .master = -1, .slave = -1 };
54         int master, slave, err;
55
56         initial_thread_cb(openpty_cb, &pty);
57         if(pty.err){
58                 printk("openpty failed, errno = %d\n", -pty.err);
59                 return;
60         }
61
62         master = pty.master;
63         slave = pty.slave;
64
65         if((master == -1) || (slave == -1)){
66                 printk("openpty failed to allocate a pty\n");
67                 return;
68         }
69
70         /* Not now, but complain so we now where we failed. */
71         err = raw(master);
72         if (err < 0)
73                 panic("check_sigio : __raw failed, errno = %d\n", -err);
74
75         err = os_sigio_async(master, slave);
76         if(err < 0)
77                 panic("tty_fds : sigio_async failed, err = %d\n", -err);
78
79         if(sigaction(SIGIO, NULL, &old) < 0)
80                 panic("check_sigio : sigaction 1 failed, errno = %d\n", errno);
81         new = old;
82         new.sa_handler = handler;
83         if(sigaction(SIGIO, &new, NULL) < 0)
84                 panic("check_sigio : sigaction 2 failed, errno = %d\n", errno);
85
86         got_sigio = 0;
87         (*proc)(master, slave);
88                 
89         os_close_file(master);
90         os_close_file(slave);
91
92         if(sigaction(SIGIO, &old, NULL) < 0)
93                 panic("check_sigio : sigaction 3 failed, errno = %d\n", errno);
94 }
95
96 static void tty_output(int master, int slave)
97 {
98         int n;
99         char buf[512];
100
101         printk("Checking that host ptys support output SIGIO...");
102
103         memset(buf, 0, sizeof(buf));
104
105         while(os_write_file(master, buf, sizeof(buf)) > 0) ;
106         if(errno != EAGAIN)
107                 panic("check_sigio : write failed, errno = %d\n", errno);
108         while(((n = os_read_file(slave, buf, sizeof(buf))) > 0) && !got_sigio) ;
109
110         if (got_sigio) {
111                 printk("Yes\n");
112                 pty_output_sigio = 1;
113         } else if (n == -EAGAIN) {
114                 printk("No, enabling workaround\n");
115         } else {
116                 panic("check_sigio : read failed, err = %d\n", n);
117         }
118 }
119
120 static void tty_close(int master, int slave)
121 {
122         printk("Checking that host ptys support SIGIO on close...");
123
124         os_close_file(slave);
125         if(got_sigio){
126                 printk("Yes\n");
127                 pty_close_sigio = 1;
128         }
129         else printk("No, enabling workaround\n");
130 }
131
132 void __init check_sigio(void)
133 {
134         if((os_access("/dev/ptmx", OS_ACC_R_OK) < 0) &&
135            (os_access("/dev/ptyp0", OS_ACC_R_OK) < 0)){
136                 printk("No pseudo-terminals available - skipping pty SIGIO "
137                        "check\n");
138                 return;
139         }
140         check_one_sigio(tty_output);
141         check_one_sigio(tty_close);
142 }
143
144 /* Protected by sigio_lock(), also used by sigio_cleanup, which is an 
145  * exitcall.
146  */
147 static int write_sigio_pid = -1;
148
149 /* These arrays are initialized before the sigio thread is started, and
150  * the descriptors closed after it is killed.  So, it can't see them change.
151  * On the UML side, they are changed under the sigio_lock.
152  */
153 static int write_sigio_fds[2] = { -1, -1 };
154 static int sigio_private[2] = { -1, -1 };
155
156 struct pollfds {
157         struct pollfd *poll;
158         int size;
159         int used;
160 };
161
162 /* Protected by sigio_lock().  Used by the sigio thread, but the UML thread
163  * synchronizes with it.
164  */
165 struct pollfds current_poll = {
166         .poll           = NULL,
167         .size           = 0,
168         .used           = 0
169 };
170
171 struct pollfds next_poll = {
172         .poll           = NULL,
173         .size           = 0,
174         .used           = 0
175 };
176
177 static int write_sigio_thread(void *unused)
178 {
179         struct pollfds *fds, tmp;
180         struct pollfd *p;
181         int i, n, respond_fd;
182         char c;
183
184         signal(SIGWINCH, SIG_IGN);
185         fds = &current_poll;
186         while(1){
187                 n = poll(fds->poll, fds->used, -1);
188                 if(n < 0){
189                         if(errno == EINTR) continue;
190                         printk("write_sigio_thread : poll returned %d, "
191                                "errno = %d\n", n, errno);
192                 }
193                 for(i = 0; i < fds->used; i++){
194                         p = &fds->poll[i];
195                         if(p->revents == 0) continue;
196                         if(p->fd == sigio_private[1]){
197                                 n = os_read_file(sigio_private[1], &c, sizeof(c));
198                                 if(n != sizeof(c))
199                                         printk("write_sigio_thread : "
200                                                "read failed, err = %d\n", -n);
201                                 tmp = current_poll;
202                                 current_poll = next_poll;
203                                 next_poll = tmp;
204                                 respond_fd = sigio_private[1];
205                         }
206                         else {
207                                 respond_fd = write_sigio_fds[1];
208                                 fds->used--;
209                                 memmove(&fds->poll[i], &fds->poll[i + 1],
210                                         (fds->used - i) * sizeof(*fds->poll));
211                         }
212
213                         n = os_write_file(respond_fd, &c, sizeof(c));
214                         if(n != sizeof(c))
215                                 printk("write_sigio_thread : write failed, "
216                                        "err = %d\n", -n);
217                 }
218         }
219
220         return 0;
221 }
222
223 static int need_poll(int n)
224 {
225         if(n <= next_poll.size){
226                 next_poll.used = n;
227                 return(0);
228         }
229         kfree(next_poll.poll);
230         next_poll.poll = um_kmalloc_atomic(n * sizeof(struct pollfd));
231         if(next_poll.poll == NULL){
232                 printk("need_poll : failed to allocate new pollfds\n");
233                 next_poll.size = 0;
234                 next_poll.used = 0;
235                 return(-1);
236         }
237         next_poll.size = n;
238         next_poll.used = n;
239         return(0);
240 }
241
242 /* Must be called with sigio_lock held, because it's needed by the marked
243  * critical section. */
244 static void update_thread(void)
245 {
246         unsigned long flags;
247         int n;
248         char c;
249
250         flags = set_signals(0);
251         n = os_write_file(sigio_private[0], &c, sizeof(c));
252         if(n != sizeof(c)){
253                 printk("update_thread : write failed, err = %d\n", -n);
254                 goto fail;
255         }
256
257         n = os_read_file(sigio_private[0], &c, sizeof(c));
258         if(n != sizeof(c)){
259                 printk("update_thread : read failed, err = %d\n", -n);
260                 goto fail;
261         }
262
263         set_signals(flags);
264         return;
265  fail:
266         /* Critical section start */
267         if(write_sigio_pid != -1) 
268                 os_kill_process(write_sigio_pid, 1);
269         write_sigio_pid = -1;
270         os_close_file(sigio_private[0]);
271         os_close_file(sigio_private[1]);
272         os_close_file(write_sigio_fds[0]);
273         os_close_file(write_sigio_fds[1]);
274         /* Critical section end */
275         set_signals(flags);
276 }
277
278 int add_sigio_fd(int fd, int read)
279 {
280         int err = 0, i, n, events;
281
282         sigio_lock();
283         for(i = 0; i < current_poll.used; i++){
284                 if(current_poll.poll[i].fd == fd) 
285                         goto out;
286         }
287
288         n = current_poll.used + 1;
289         err = need_poll(n);
290         if(err) 
291                 goto out;
292
293         for(i = 0; i < current_poll.used; i++)
294                 next_poll.poll[i] = current_poll.poll[i];
295
296         if(read) events = POLLIN;
297         else events = POLLOUT;
298
299         next_poll.poll[n - 1] = ((struct pollfd) { .fd          = fd,
300                                                    .events      = events,
301                                                    .revents     = 0 });
302         update_thread();
303  out:
304         sigio_unlock();
305         return(err);
306 }
307
308 int ignore_sigio_fd(int fd)
309 {
310         struct pollfd *p;
311         int err = 0, i, n = 0;
312
313         sigio_lock();
314         for(i = 0; i < current_poll.used; i++){
315                 if(current_poll.poll[i].fd == fd) break;
316         }
317         if(i == current_poll.used)
318                 goto out;
319         
320         err = need_poll(current_poll.used - 1);
321         if(err)
322                 goto out;
323
324         for(i = 0; i < current_poll.used; i++){
325                 p = &current_poll.poll[i];
326                 if(p->fd != fd) next_poll.poll[n++] = current_poll.poll[i];
327         }
328         if(n == i){
329                 printk("ignore_sigio_fd : fd %d not found\n", fd);
330                 err = -1;
331                 goto out;
332         }
333
334         update_thread();
335  out:
336         sigio_unlock();
337         return(err);
338 }
339
340 static int setup_initial_poll(int fd)
341 {
342         struct pollfd *p;
343
344         p = um_kmalloc_atomic(sizeof(struct pollfd));
345         if(p == NULL){
346                 printk("setup_initial_poll : failed to allocate poll\n");
347                 return(-1);
348         }
349         *p = ((struct pollfd) { .fd     = fd,
350                                 .events         = POLLIN,
351                                 .revents        = 0 });
352         current_poll = ((struct pollfds) { .poll        = p,
353                                            .used        = 1,
354                                            .size        = 1 });
355         return(0);
356 }
357
358 void write_sigio_workaround(void)
359 {
360         unsigned long stack;
361         int err;
362
363         sigio_lock();
364         if(write_sigio_pid != -1)
365                 goto out;
366
367         err = os_pipe(write_sigio_fds, 1, 1);
368         if(err < 0){
369                 printk("write_sigio_workaround - os_pipe 1 failed, "
370                        "err = %d\n", -err);
371                 goto out;
372         }
373         err = os_pipe(sigio_private, 1, 1);
374         if(err < 0){
375                 printk("write_sigio_workaround - os_pipe 2 failed, "
376                        "err = %d\n", -err);
377                 goto out_close1;
378         }
379         if(setup_initial_poll(sigio_private[1]))
380                 goto out_close2;
381
382         write_sigio_pid = run_helper_thread(write_sigio_thread, NULL, 
383                                             CLONE_FILES | CLONE_VM, &stack, 0);
384
385         if(write_sigio_pid < 0) goto out_close2;
386
387         if(write_sigio_irq(write_sigio_fds[0])) 
388                 goto out_kill;
389
390  out:
391         sigio_unlock();
392         return;
393
394  out_kill:
395         os_kill_process(write_sigio_pid, 1);
396         write_sigio_pid = -1;
397  out_close2:
398         os_close_file(sigio_private[0]);
399         os_close_file(sigio_private[1]);
400  out_close1:
401         os_close_file(write_sigio_fds[0]);
402         os_close_file(write_sigio_fds[1]);
403         sigio_unlock();
404 }
405
406 int read_sigio_fd(int fd)
407 {
408         int n;
409         char c;
410
411         n = os_read_file(fd, &c, sizeof(c));
412         if(n != sizeof(c)){
413                 if(n < 0) {
414                         printk("read_sigio_fd - read failed, err = %d\n", -n);
415                         return(n);
416                 }
417                 else {
418                         printk("read_sigio_fd - short read, bytes = %d\n", n);
419                         return(-EIO);
420                 }
421         }
422         return(n);
423 }
424
425 static void sigio_cleanup(void)
426 {
427         if (write_sigio_pid != -1) {
428                 os_kill_process(write_sigio_pid, 1);
429                 write_sigio_pid = -1;
430         }
431 }
432
433 __uml_exitcall(sigio_cleanup);