intr.c revision 1.23.2.1 1 /* $NetBSD: intr.c,v 1.23.2.1 2010/04/30 14:44:29 uebayasi Exp $ */
2
3 /*
4 * Copyright (c) 2008 Antti Kantee. All Rights Reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 * 1. Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * 2. Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 *
15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
16 * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
17 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
18 * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
21 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 * SUCH DAMAGE.
26 */
27
28 #include <sys/cdefs.h>
29 __KERNEL_RCSID(0, "$NetBSD: intr.c,v 1.23.2.1 2010/04/30 14:44:29 uebayasi Exp $");
30
31 #include <sys/param.h>
32 #include <sys/cpu.h>
33 #include <sys/kernel.h>
34 #include <sys/kmem.h>
35 #include <sys/kthread.h>
36 #include <sys/intr.h>
37 #include <sys/timetc.h>
38
39 #include <rump/rumpuser.h>
40
41 #include "rump_private.h"
42
43 /*
44 * Interrupt simulator. It executes hardclock() and softintrs.
45 */
46
47 #define SI_MPSAFE 0x01
48 #define SI_ONLIST 0x02
49 #define SI_KILLME 0x04
50
51 struct softint {
52 void (*si_func)(void *);
53 void *si_arg;
54 int si_flags;
55 int si_level;
56
57 LIST_ENTRY(softint) si_entries;
58 };
59
60 static struct rumpuser_mtx *si_mtx;
61 struct softint_lev {
62 struct rumpuser_cv *si_cv;
63 LIST_HEAD(, softint) si_pending;
64 };
65
66 kcondvar_t lbolt; /* Oh Kath Ra */
67
68 static u_int ticks;
69
70 static u_int
71 rumptc_get(struct timecounter *tc)
72 {
73
74 KASSERT(rump_threads);
75 return ticks;
76 }
77
78 static struct timecounter rumptc = {
79 .tc_get_timecount = rumptc_get,
80 .tc_poll_pps = NULL,
81 .tc_counter_mask = ~0,
82 .tc_frequency = 0,
83 .tc_name = "rumpclk",
84 .tc_quality = 0,
85 };
86
87 /*
88 * clock "interrupt"
89 */
90 static void
91 doclock(void *noarg)
92 {
93 struct timespec clockbase, clockup;
94 struct timespec thetick, curtime;
95 struct rumpuser_cv *clockcv;
96 struct rumpuser_mtx *clockmtx;
97 uint64_t sec, nsec;
98 int error;
99 extern int hz;
100
101 memset(&clockup, 0, sizeof(clockup));
102 rumpuser_gettime(&sec, &nsec, &error);
103 clockbase.tv_sec = sec;
104 clockbase.tv_nsec = nsec;
105 curtime = clockbase;
106 thetick.tv_sec = 0;
107 thetick.tv_nsec = 1000000000/hz;
108
109 /* XXX: dummies */
110 rumpuser_cv_init(&clockcv);
111 rumpuser_mutex_init(&clockmtx);
112
113 rumpuser_mutex_enter(clockmtx);
114 for (;;) {
115 callout_hardclock();
116
117 /* wait until the next tick. XXX: what if the clock changes? */
118 while (rumpuser_cv_timedwait(clockcv, clockmtx,
119 curtime.tv_sec, curtime.tv_nsec) == 0)
120 continue;
121
122 /* XXX: sync with a) virtual clock b) host clock */
123 timespecadd(&clockup, &clockbase, &curtime);
124 timespecadd(&clockup, &thetick, &clockup);
125
126 #if 0
127 /* CPU_IS_PRIMARY is MD and hence unreliably correct here */
128 if (!CPU_IS_PRIMARY(curcpu()))
129 continue;
130 #else
131 if (curcpu()->ci_index == 0)
132 continue;
133 #endif
134
135 if ((++ticks % hz) == 0) {
136 cv_broadcast(&lbolt);
137 }
138 tc_ticktock();
139 }
140 }
141
142 /*
143 * Soft interrupt execution thread. Note that we run without a CPU
144 * context until we start processing the interrupt. This is to avoid
145 * lock recursion.
146 */
147 static void
148 sithread(void *arg)
149 {
150 struct softint *si;
151 void (*func)(void *) = NULL;
152 void *funarg;
153 bool mpsafe;
154 int mylevel = (uintptr_t)arg;
155 struct softint_lev *si_lvlp, *si_lvl;
156 struct cpu_data *cd = &curcpu()->ci_data;
157
158 rump_unschedule();
159
160 si_lvlp = cd->cpu_softcpu;
161 si_lvl = &si_lvlp[mylevel];
162
163 /*
164 * XXX: si_mtx is unnecessary, and should open an interface
165 * which allows to use schedmtx for the cv wait
166 */
167 rumpuser_mutex_enter_nowrap(si_mtx);
168 for (;;) {
169 if (!LIST_EMPTY(&si_lvl->si_pending)) {
170 si = LIST_FIRST(&si_lvl->si_pending);
171 func = si->si_func;
172 funarg = si->si_arg;
173 mpsafe = si->si_flags & SI_MPSAFE;
174
175 si->si_flags &= ~SI_ONLIST;
176 LIST_REMOVE(si, si_entries);
177 if (si->si_flags & SI_KILLME) {
178 rumpuser_mutex_exit(si_mtx);
179 rump_schedule();
180 softint_disestablish(si);
181 rump_unschedule();
182 rumpuser_mutex_enter_nowrap(si_mtx);
183 continue;
184 }
185 } else {
186 rumpuser_cv_wait_nowrap(si_lvl->si_cv, si_mtx);
187 continue;
188 }
189 rumpuser_mutex_exit(si_mtx);
190
191 rump_schedule();
192 if (!mpsafe)
193 KERNEL_LOCK(1, curlwp);
194 func(funarg);
195 if (!mpsafe)
196 KERNEL_UNLOCK_ONE(curlwp);
197 rump_unschedule();
198
199 rumpuser_mutex_enter_nowrap(si_mtx);
200 }
201
202 panic("sithread unreachable");
203 }
204
205 void
206 rump_intr_init()
207 {
208
209 rumpuser_mutex_init(&si_mtx);
210 cv_init(&lbolt, "oh kath ra");
211 }
212
213 void
214 softint_init(struct cpu_info *ci)
215 {
216 struct cpu_data *cd = &ci->ci_data;
217 struct softint_lev *slev;
218 int rv, i;
219
220 if (!rump_threads)
221 return;
222
223 /* XXX */
224 if (ci->ci_index == 0) {
225 rumptc.tc_frequency = hz;
226 tc_init(&rumptc);
227 }
228
229 slev = kmem_alloc(sizeof(struct softint_lev) * SOFTINT_COUNT, KM_SLEEP);
230 for (i = 0; i < SOFTINT_COUNT; i++) {
231 rumpuser_cv_init(&slev[i].si_cv);
232 LIST_INIT(&slev[i].si_pending);
233 }
234 cd->cpu_softcpu = slev;
235
236 for (i = 0; i < SOFTINT_COUNT; i++) {
237 rv = kthread_create(PRI_NONE,
238 KTHREAD_MPSAFE | KTHREAD_INTR, ci,
239 sithread, (void *)(uintptr_t)i,
240 NULL, "rumpsi%d", i);
241 }
242
243 rv = kthread_create(PRI_NONE, KTHREAD_MPSAFE | KTHREAD_INTR,
244 ci, doclock, NULL, NULL, "rumpclk%d", i);
245 if (rv)
246 panic("clock thread creation failed: %d", rv);
247 }
248
249 /*
250 * Soft interrupts bring two choices. If we are running with thread
251 * support enabled, defer execution, otherwise execute in place.
252 * See softint_schedule().
253 *
254 * As there is currently no clear concept of when a thread finishes
255 * work (although rump_clear_curlwp() is close), simply execute all
256 * softints in the timer thread. This is probably not the most
257 * efficient method, but good enough for now.
258 */
259 void *
260 softint_establish(u_int flags, void (*func)(void *), void *arg)
261 {
262 struct softint *si;
263
264 si = kmem_alloc(sizeof(*si), KM_SLEEP);
265 si->si_func = func;
266 si->si_arg = arg;
267 si->si_flags = flags & SOFTINT_MPSAFE ? SI_MPSAFE : 0;
268 si->si_level = flags & SOFTINT_LVLMASK;
269 KASSERT(si->si_level < SOFTINT_COUNT);
270
271 return si;
272 }
273
274 void
275 softint_schedule(void *arg)
276 {
277 struct softint *si = arg;
278 struct cpu_data *cd = &curcpu()->ci_data;
279 struct softint_lev *si_lvl = cd->cpu_softcpu;
280
281 if (!rump_threads) {
282 si->si_func(si->si_arg);
283 } else {
284 if (!(si->si_flags & SI_ONLIST)) {
285 LIST_INSERT_HEAD(&si_lvl[si->si_level].si_pending,
286 si, si_entries);
287 si->si_flags |= SI_ONLIST;
288 }
289 }
290 }
291
292 /* flimsy disestablish: should wait for softints to finish */
293 void
294 softint_disestablish(void *cook)
295 {
296 struct softint *si = cook;
297
298 rumpuser_mutex_enter(si_mtx);
299 if (si->si_flags & SI_ONLIST) {
300 si->si_flags |= SI_KILLME;
301 return;
302 }
303 rumpuser_mutex_exit(si_mtx);
304 kmem_free(si, sizeof(*si));
305 }
306
307 void
308 rump_softint_run(struct cpu_info *ci)
309 {
310 struct cpu_data *cd = &ci->ci_data;
311 struct softint_lev *si_lvl = cd->cpu_softcpu;
312 int i;
313
314 if (!rump_threads)
315 return;
316
317 for (i = 0; i < SOFTINT_COUNT; i++) {
318 if (!LIST_EMPTY(&si_lvl[i].si_pending))
319 rumpuser_cv_signal(si_lvl[i].si_cv);
320 }
321 }
322
323 bool
324 cpu_intr_p(void)
325 {
326
327 return false;
328 }
329
330 bool
331 cpu_softintr_p(void)
332 {
333
334 return curlwp->l_pflag & LP_INTR;
335 }
336