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1 /* See LICENSE file for license details. */
2 #define _XOPEN_SOURCE 500
3 #if HAVE_SHADOW_H
4 #include <shadow.h>
5 #endif
6
7 #include <ctype.h>
8 #include <errno.h>
9 #include <pwd.h>
10 #include <stdarg.h>
11 #include <stdlib.h>
12 #include <stdio.h>
13 #include <string.h>
14 #include <unistd.h>
15 #include <sys/types.h>
16 #include <X11/extensions/Xrandr.h>
17 #include <X11/keysym.h>
18 #include <X11/Xlib.h>
19 #include <X11/Xutil.h>
20
21 #if HAVE_BSD_AUTH
22 #include <login_cap.h>
23 #include <bsd_auth.h>
24 #endif
25
26 enum {
27         INIT,
28         INPUT,
29         FAILED,
30         NUMCOLS
31 };
32
33 #include "config.h"
34
35 typedef struct {
36         int screen;
37         Window root, win;
38         Pixmap pmap;
39         unsigned long colors[NUMCOLS];
40 } Lock;
41
42 static Lock **locks;
43 static int nscreens;
44 static Bool running = True;
45 static Bool failure = False;
46 static Bool rr;
47 static int rrevbase;
48 static int rrerrbase;
49
50 static void
51 die(const char *errstr, ...)
52 {
53         va_list ap;
54
55         va_start(ap, errstr);
56         vfprintf(stderr, errstr, ap);
57         va_end(ap);
58         exit(1);
59 }
60
61 #ifdef __linux__
62 #include <fcntl.h>
63 #include <linux/oom.h>
64
65 static void
66 dontkillme(void)
67 {
68         int fd;
69         int length;
70         char value[64];
71
72         fd = open("/proc/self/oom_score_adj", O_WRONLY);
73         if (fd < 0 && errno == ENOENT)
74                 return;
75
76         /* convert OOM_SCORE_ADJ_MIN to string for writing */
77         length = snprintf(value, sizeof(value), "%d\n", OOM_SCORE_ADJ_MIN);
78
79         /* bail on truncation */
80         if (length >= sizeof(value))
81                 die("buffer too small\n");
82
83         if (fd < 0 || write(fd, value, length) != length || close(fd) != 0)
84                 die("cannot disable the out-of-memory killer for this process\n");
85 }
86 #endif
87
88 #ifndef HAVE_BSD_AUTH
89 /* only run as root */
90 static const char *
91 getpw(void)
92 {
93         const char *rval;
94         struct passwd *pw;
95
96         errno = 0;
97         pw = getpwuid(getuid());
98         if (!pw) {
99                 if (errno)
100                         die("slock: getpwuid: %s\n", strerror(errno));
101                 else
102                         die("slock: cannot retrieve password entry\n");
103         }
104         rval =  pw->pw_passwd;
105
106 #if HAVE_SHADOW_H
107         if (rval[0] == 'x' && rval[1] == '\0') {
108                 struct spwd *sp;
109                 sp = getspnam(getenv("USER"));
110                 if (!sp)
111                         die("slock: cannot retrieve shadow entry (make sure to suid or sgid slock)\n");
112                 rval = sp->sp_pwdp;
113         }
114 #endif
115
116         /* drop privileges */
117         if (geteuid() == 0 &&
118             ((getegid() != pw->pw_gid && setgid(pw->pw_gid) < 0) || setuid(pw->pw_uid) < 0))
119                 die("slock: cannot drop privileges\n");
120         return rval;
121 }
122 #endif
123
124 static void
125 #ifdef HAVE_BSD_AUTH
126 readpw(Display *dpy)
127 #else
128 readpw(Display *dpy, const char *pws)
129 #endif
130 {
131         char buf[32], passwd[256];
132         int num, screen;
133         unsigned int len, color;
134         KeySym ksym;
135         XEvent ev;
136         static int oldc = INIT;
137
138         len = 0;
139         running = True;
140
141         /* As "slock" stands for "Simple X display locker", the DPMS settings
142          * had been removed and you can set it with "xset" or some other
143          * utility. This way the user can easily set a customized DPMS
144          * timeout. */
145         while (running && !XNextEvent(dpy, &ev)) {
146                 if (ev.type == KeyPress) {
147                         buf[0] = 0;
148                         num = XLookupString(&ev.xkey, buf, sizeof(buf), &ksym, 0);
149                         if (IsKeypadKey(ksym)) {
150                                 if (ksym == XK_KP_Enter)
151                                         ksym = XK_Return;
152                                 else if (ksym >= XK_KP_0 && ksym <= XK_KP_9)
153                                         ksym = (ksym - XK_KP_0) + XK_0;
154                         }
155                         if (IsFunctionKey(ksym) ||
156                             IsKeypadKey(ksym) ||
157                             IsMiscFunctionKey(ksym) ||
158                             IsPFKey(ksym) ||
159                             IsPrivateKeypadKey(ksym))
160                                 continue;
161                         switch (ksym) {
162                         case XK_Return:
163                                 passwd[len] = 0;
164 #ifdef HAVE_BSD_AUTH
165                                 running = !auth_userokay(getlogin(), NULL, "auth-xlock", passwd);
166 #else
167                                 running = !!strcmp(crypt(passwd, pws), pws);
168 #endif
169                                 if (running) {
170                                         XBell(dpy, 100);
171                                         failure = True;
172                                 }
173                                 len = 0;
174                                 break;
175                         case XK_Escape:
176                                 len = 0;
177                                 break;
178                         case XK_BackSpace:
179                                 if (len)
180                                         --len;
181                                 break;
182                         default:
183                                 if (num && !iscntrl((int) buf[0]) && (len + num < sizeof(passwd))) {
184                                         memcpy(passwd + len, buf, num);
185                                         len += num;
186                                 }
187                                 break;
188                         }
189                         color = len ? INPUT : (failure || failonclear ? FAILED : INIT);
190                         if (running && oldc != color) {
191                                 for (screen = 0; screen < nscreens; screen++) {
192                                         XSetWindowBackground(dpy, locks[screen]->win, locks[screen]->colors[color]);
193                                         XClearWindow(dpy, locks[screen]->win);
194                                 }
195                                 oldc = color;
196                         }
197                 } else if (rr && ev.type == rrevbase + RRScreenChangeNotify) {
198                         XRRScreenChangeNotifyEvent *rre = (XRRScreenChangeNotifyEvent*)&ev;
199                         for (screen = 0; screen < nscreens; screen++) {
200                                 if (locks[screen]->win == rre->window) {
201                                         XResizeWindow(dpy, locks[screen]->win, rre->width, rre->height);
202                                         XClearWindow(dpy, locks[screen]->win);
203                                 }
204                         }
205                 } else for (screen = 0; screen < nscreens; screen++)
206                         XRaiseWindow(dpy, locks[screen]->win);
207         }
208 }
209
210 static void
211 unlockscreen(Display *dpy, Lock *lock)
212 {
213         if(dpy == NULL || lock == NULL)
214                 return;
215
216         XUngrabPointer(dpy, CurrentTime);
217         XFreeColors(dpy, DefaultColormap(dpy, lock->screen), lock->colors, NUMCOLS, 0);
218         XFreePixmap(dpy, lock->pmap);
219         XDestroyWindow(dpy, lock->win);
220
221         free(lock);
222 }
223
224 static Lock *
225 lockscreen(Display *dpy, int screen)
226 {
227         char curs[] = {0, 0, 0, 0, 0, 0, 0, 0};
228         unsigned int len;
229         int i;
230         Lock *lock;
231         XColor color, dummy;
232         XSetWindowAttributes wa;
233         Cursor invisible;
234
235         if (dpy == NULL || screen < 0)
236                 return NULL;
237
238         lock = malloc(sizeof(Lock));
239         if (lock == NULL)
240                 return NULL;
241
242         lock->screen = screen;
243
244         lock->root = RootWindow(dpy, lock->screen);
245
246         for (i = 0; i < NUMCOLS; i++) {
247                 XAllocNamedColor(dpy, DefaultColormap(dpy, lock->screen), colorname[i], &color, &dummy);
248                 lock->colors[i] = color.pixel;
249         }
250
251         /* init */
252         wa.override_redirect = 1;
253         wa.background_pixel = lock->colors[INIT];
254         lock->win = XCreateWindow(dpy, lock->root, 0, 0, DisplayWidth(dpy, lock->screen), DisplayHeight(dpy, lock->screen),
255                                   0, DefaultDepth(dpy, lock->screen), CopyFromParent,
256                                   DefaultVisual(dpy, lock->screen), CWOverrideRedirect | CWBackPixel, &wa);
257         lock->pmap = XCreateBitmapFromData(dpy, lock->win, curs, 8, 8);
258         invisible = XCreatePixmapCursor(dpy, lock->pmap, lock->pmap, &color, &color, 0, 0);
259         XDefineCursor(dpy, lock->win, invisible);
260         XMapRaised(dpy, lock->win);
261         if (rr)
262                 XRRSelectInput(dpy, lock->win, RRScreenChangeNotifyMask);
263         for (len = 1000; len; len--) {
264                 if (XGrabPointer(dpy, lock->root, False, ButtonPressMask | ButtonReleaseMask | PointerMotionMask,
265                     GrabModeAsync, GrabModeAsync, None, invisible, CurrentTime) == GrabSuccess)
266                         break;
267                 usleep(1000);
268         }
269         if (running && (len > 0)) {
270                 for (len = 1000; len; len--) {
271                         if (XGrabKeyboard(dpy, lock->root, True, GrabModeAsync, GrabModeAsync, CurrentTime) == GrabSuccess)
272                                 break;
273                         usleep(1000);
274                 }
275         }
276
277         running &= (len > 0);
278         if (!running) {
279                 unlockscreen(dpy, lock);
280                 lock = NULL;
281         }
282         else {
283                 XSelectInput(dpy, lock->root, SubstructureNotifyMask);
284         }
285
286         return lock;
287 }
288
289 static void
290 usage(void)
291 {
292         fprintf(stderr, "usage: slock [-v]\n");
293         exit(1);
294 }
295
296 int
297 main(int argc, char **argv) {
298 #ifndef HAVE_BSD_AUTH
299         const char *pws;
300 #endif
301         Display *dpy;
302         int screen;
303
304         if ((argc == 2) && !strcmp("-v", argv[1]))
305                 die("slock-%s, © 2006-2015 slock engineers\n", VERSION);
306         else if (argc != 1)
307                 usage();
308
309 #ifdef __linux__
310         dontkillme();
311 #endif
312
313         if (!getpwuid(getuid()))
314                 die("slock: no passwd entry for you\n");
315
316 #ifndef HAVE_BSD_AUTH
317         pws = getpw();
318 #endif
319
320         if (!(dpy = XOpenDisplay(0)))
321                 die("slock: cannot open display\n");
322         rr = XRRQueryExtension(dpy, &rrevbase, &rrerrbase);
323         /* Get the number of screens in display "dpy" and blank them all. */
324         nscreens = ScreenCount(dpy);
325         locks = malloc(sizeof(Lock *) * nscreens);
326         if (locks == NULL)
327                 die("slock: malloc: %s\n", strerror(errno));
328         int nlocks = 0;
329         for (screen = 0; screen < nscreens; screen++) {
330                 if ( (locks[screen] = lockscreen(dpy, screen)) != NULL)
331                         nlocks++;
332         }
333         XSync(dpy, False);
334
335         /* Did we actually manage to lock something? */
336         if (nlocks == 0) { /* nothing to protect */
337                 free(locks);
338                 XCloseDisplay(dpy);
339                 return 1;
340         }
341
342         /* Everything is now blank. Now wait for the correct password. */
343 #ifdef HAVE_BSD_AUTH
344         readpw(dpy);
345 #else
346         readpw(dpy, pws);
347 #endif
348
349         /* Password ok, unlock everything and quit. */
350         for (screen = 0; screen < nscreens; screen++)
351                 unlockscreen(dpy, locks[screen]);
352
353         free(locks);
354         XCloseDisplay(dpy);
355
356         return 0;
357 }