[PATCH] uml: Remove unused variable
[deliverable/linux.git] / arch / um / os-Linux / signal.c
1 /*
2 * Copyright (C) 2004 PathScale, Inc
3 * Licensed under the GPL
4 */
5
6 #include <signal.h>
7 #include <stdio.h>
8 #include <unistd.h>
9 #include <stdlib.h>
10 #include <errno.h>
11 #include <stdarg.h>
12 #include <string.h>
13 #include <sys/mman.h>
14 #include "user_util.h"
15 #include "user.h"
16 #include "signal_kern.h"
17 #include "sysdep/sigcontext.h"
18 #include "sigcontext.h"
19 #include "mode.h"
20 #include "os.h"
21
22 /* These are the asynchronous signals. SIGVTALRM and SIGARLM are handled
23 * together under SIGVTALRM_BIT. SIGPROF is excluded because we want to
24 * be able to profile all of UML, not just the non-critical sections. If
25 * profiling is not thread-safe, then that is not my problem. We can disable
26 * profiling when SMP is enabled in that case.
27 */
28 #define SIGIO_BIT 0
29 #define SIGIO_MASK (1 << SIGIO_BIT)
30
31 #define SIGVTALRM_BIT 1
32 #define SIGVTALRM_MASK (1 << SIGVTALRM_BIT)
33
34 #define SIGALRM_BIT 2
35 #define SIGALRM_MASK (1 << SIGALRM_BIT)
36
37 static int signals_enabled = 1;
38 static int pending = 0;
39
40 void sig_handler(int sig, struct sigcontext *sc)
41 {
42 int enabled;
43
44 enabled = signals_enabled;
45 if(!enabled && (sig == SIGIO)){
46 pending |= SIGIO_MASK;
47 return;
48 }
49
50 block_signals();
51
52 CHOOSE_MODE_PROC(sig_handler_common_tt, sig_handler_common_skas,
53 sig, sc);
54
55 set_signals(enabled);
56 }
57
58 static void real_alarm_handler(int sig, struct sigcontext *sc)
59 {
60 if(sig == SIGALRM)
61 switch_timers(0);
62
63 CHOOSE_MODE_PROC(sig_handler_common_tt, sig_handler_common_skas,
64 sig, sc);
65
66 if(sig == SIGALRM)
67 switch_timers(1);
68
69 }
70
71 void alarm_handler(int sig, struct sigcontext *sc)
72 {
73 int enabled;
74
75 enabled = signals_enabled;
76 if(!signals_enabled){
77 if(sig == SIGVTALRM)
78 pending |= SIGVTALRM_MASK;
79 else pending |= SIGALRM_MASK;
80
81 return;
82 }
83
84 block_signals();
85
86 real_alarm_handler(sig, sc);
87 set_signals(enabled);
88 }
89
90 void set_sigstack(void *sig_stack, int size)
91 {
92 stack_t stack = ((stack_t) { .ss_flags = 0,
93 .ss_sp = (__ptr_t) sig_stack,
94 .ss_size = size - sizeof(void *) });
95
96 if(sigaltstack(&stack, NULL) != 0)
97 panic("enabling signal stack failed, errno = %d\n", errno);
98 }
99
100 void remove_sigstack(void)
101 {
102 stack_t stack = ((stack_t) { .ss_flags = SS_DISABLE,
103 .ss_sp = NULL,
104 .ss_size = 0 });
105
106 if(sigaltstack(&stack, NULL) != 0)
107 panic("disabling signal stack failed, errno = %d\n", errno);
108 }
109
110 void (*handlers[_NSIG])(int sig, struct sigcontext *sc);
111
112 extern void hard_handler(int sig);
113
114 void set_handler(int sig, void (*handler)(int), int flags, ...)
115 {
116 struct sigaction action;
117 va_list ap;
118 sigset_t sig_mask;
119 int mask;
120
121 handlers[sig] = (void (*)(int, struct sigcontext *)) handler;
122 action.sa_handler = hard_handler;
123
124 sigemptyset(&action.sa_mask);
125
126 va_start(ap, flags);
127 while((mask = va_arg(ap, int)) != -1)
128 sigaddset(&action.sa_mask, mask);
129 va_end(ap);
130
131 action.sa_flags = flags;
132 action.sa_restorer = NULL;
133 if(sigaction(sig, &action, NULL) < 0)
134 panic("sigaction failed - errno = %d\n", errno);
135
136 sigemptyset(&sig_mask);
137 sigaddset(&sig_mask, sig);
138 if(sigprocmask(SIG_UNBLOCK, &sig_mask, NULL) < 0)
139 panic("sigprocmask failed - errno = %d\n", errno);
140 }
141
142 int change_sig(int signal, int on)
143 {
144 sigset_t sigset, old;
145
146 sigemptyset(&sigset);
147 sigaddset(&sigset, signal);
148 sigprocmask(on ? SIG_UNBLOCK : SIG_BLOCK, &sigset, &old);
149 return(!sigismember(&old, signal));
150 }
151
152 void block_signals(void)
153 {
154 signals_enabled = 0;
155 }
156
157 void unblock_signals(void)
158 {
159 int save_pending;
160
161 if(signals_enabled == 1)
162 return;
163
164 /* We loop because the IRQ handler returns with interrupts off. So,
165 * interrupts may have arrived and we need to re-enable them and
166 * recheck pending.
167 */
168 while(1){
169 /* Save and reset save_pending after enabling signals. This
170 * way, pending won't be changed while we're reading it.
171 */
172 signals_enabled = 1;
173
174 save_pending = pending;
175 if(save_pending == 0)
176 return;
177
178 pending = 0;
179
180 /* We have pending interrupts, so disable signals, as the
181 * handlers expect them off when they are called. They will
182 * be enabled again above.
183 */
184
185 signals_enabled = 0;
186
187 /* Deal with SIGIO first because the alarm handler might
188 * schedule, leaving the pending SIGIO stranded until we come
189 * back here.
190 */
191 if(save_pending & SIGIO_MASK)
192 CHOOSE_MODE_PROC(sig_handler_common_tt,
193 sig_handler_common_skas, SIGIO, NULL);
194
195 if(save_pending & SIGALRM_MASK)
196 real_alarm_handler(SIGALRM, NULL);
197
198 if(save_pending & SIGVTALRM_MASK)
199 real_alarm_handler(SIGVTALRM, NULL);
200 }
201 }
202
203 int get_signals(void)
204 {
205 return signals_enabled;
206 }
207
208 int set_signals(int enable)
209 {
210 int ret;
211 if(signals_enabled == enable)
212 return enable;
213
214 ret = signals_enabled;
215 if(enable)
216 unblock_signals();
217 else block_signals();
218
219 return ret;
220 }
221
222 void os_usr1_signal(int on)
223 {
224 change_sig(SIGUSR1, on);
225 }
This page took 0.060482 seconds and 5 git commands to generate.