rumpfiber.c revision 1.9 1 1.9 justin /* $NetBSD: rumpfiber.c,v 1.9 2014/12/29 21:50:09 justin Exp $ */
2 1.4 pooka
3 1.1 justin /*
4 1.1 justin * Copyright (c) 2007-2013 Antti Kantee. All Rights Reserved.
5 1.1 justin * Copyright (c) 2014 Justin Cormack. All Rights Reserved.
6 1.1 justin *
7 1.1 justin * Redistribution and use in source and binary forms, with or without
8 1.1 justin * modification, are permitted provided that the following conditions
9 1.1 justin * are met:
10 1.1 justin * 1. Redistributions of source code must retain the above copyright
11 1.1 justin * notice, this list of conditions and the following disclaimer.
12 1.1 justin * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 justin * notice, this list of conditions and the following disclaimer in the
14 1.1 justin * documentation and/or other materials provided with the distribution.
15 1.1 justin *
16 1.1 justin * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
17 1.1 justin * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
18 1.1 justin * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
19 1.1 justin * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20 1.1 justin * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21 1.1 justin * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
22 1.1 justin * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23 1.1 justin * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24 1.1 justin * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 1.1 justin * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 1.1 justin * SUCH DAMAGE.
27 1.1 justin */
28 1.1 justin
29 1.1 justin /* Based partly on code from Xen Minios with the following license */
30 1.1 justin
31 1.1 justin /*
32 1.1 justin ****************************************************************************
33 1.1 justin * (C) 2005 - Grzegorz Milos - Intel Research Cambridge
34 1.1 justin ****************************************************************************
35 1.1 justin *
36 1.1 justin * File: sched.c
37 1.1 justin * Author: Grzegorz Milos
38 1.1 justin * Changes: Robert Kaiser
39 1.1 justin *
40 1.1 justin * Date: Aug 2005
41 1.1 justin *
42 1.1 justin * Environment: Xen Minimal OS
43 1.1 justin * Description: simple scheduler for Mini-Os
44 1.1 justin *
45 1.1 justin * The scheduler is non-preemptive (cooperative), and schedules according
46 1.1 justin * to Round Robin algorithm.
47 1.1 justin *
48 1.1 justin ****************************************************************************
49 1.1 justin * Permission is hereby granted, free of charge, to any person obtaining a copy
50 1.1 justin * of this software and associated documentation files (the "Software"), to
51 1.1 justin * deal in the Software without restriction, including without limitation the
52 1.1 justin * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
53 1.1 justin * sell copies of the Software, and to permit persons to whom the Software is
54 1.1 justin * furnished to do so, subject to the following conditions:
55 1.1 justin *
56 1.1 justin * The above copyright notice and this permission notice shall be included in
57 1.1 justin * all copies or substantial portions of the Software.
58 1.1 justin *
59 1.1 justin * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
60 1.1 justin * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
61 1.1 justin * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
62 1.1 justin * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
63 1.1 justin * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
64 1.1 justin * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
65 1.1 justin * DEALINGS IN THE SOFTWARE.
66 1.1 justin */
67 1.1 justin
68 1.1 justin #include "rumpuser_port.h"
69 1.1 justin
70 1.1 justin #if !defined(lint)
71 1.9 justin __RCSID("$NetBSD: rumpfiber.c,v 1.9 2014/12/29 21:50:09 justin Exp $");
72 1.1 justin #endif /* !lint */
73 1.1 justin
74 1.1 justin #include <sys/ioctl.h>
75 1.1 justin #include <sys/mman.h>
76 1.1 justin #include <sys/time.h>
77 1.1 justin
78 1.1 justin #include <assert.h>
79 1.1 justin #include <errno.h>
80 1.1 justin #include <fcntl.h>
81 1.1 justin #include <signal.h>
82 1.1 justin #include <stdarg.h>
83 1.1 justin #include <stdint.h>
84 1.1 justin #include <stdio.h>
85 1.1 justin #include <stdlib.h>
86 1.1 justin #include <string.h>
87 1.1 justin #include <time.h>
88 1.1 justin #include <unistd.h>
89 1.1 justin
90 1.1 justin #include <rump/rumpuser.h>
91 1.1 justin
92 1.1 justin #include "rumpuser_int.h"
93 1.1 justin #include "rumpfiber.h"
94 1.1 justin
95 1.1 justin static void init_sched(void);
96 1.1 justin static void join_thread(struct thread *);
97 1.1 justin static void switch_threads(struct thread *prev, struct thread *next);
98 1.1 justin static struct thread *get_current(void);
99 1.1 justin static int64_t now(void);
100 1.1 justin static void msleep(uint64_t millisecs);
101 1.1 justin static void abssleep(uint64_t millisecs);
102 1.1 justin
103 1.1 justin TAILQ_HEAD(thread_list, thread);
104 1.1 justin
105 1.1 justin static struct thread_list exited_threads = TAILQ_HEAD_INITIALIZER(exited_threads);
106 1.1 justin static struct thread_list thread_list = TAILQ_HEAD_INITIALIZER(thread_list);
107 1.1 justin static struct thread *current_thread = NULL;
108 1.1 justin
109 1.1 justin static void (*scheduler_hook)(void *, void *);
110 1.1 justin
111 1.9 justin static void printk(const char *s);
112 1.9 justin
113 1.9 justin static void
114 1.9 justin printk(const char *msg)
115 1.9 justin {
116 1.9 justin int ret __attribute__((unused));
117 1.9 justin
118 1.9 justin ret = write(2, msg, strlen(msg));
119 1.9 justin }
120 1.9 justin
121 1.1 justin static struct thread *
122 1.1 justin get_current(void)
123 1.1 justin {
124 1.1 justin
125 1.1 justin return current_thread;
126 1.1 justin }
127 1.1 justin
128 1.1 justin static int64_t
129 1.1 justin now(void)
130 1.1 justin {
131 1.1 justin struct timespec ts;
132 1.5 pooka int rv;
133 1.1 justin
134 1.5 pooka rv = clock_gettime(CLOCK_MONOTONIC, &ts);
135 1.5 pooka assert(rv == 0);
136 1.1 justin return (ts.tv_sec * 1000LL) + (ts.tv_nsec / 1000000LL);
137 1.1 justin }
138 1.1 justin
139 1.1 justin void
140 1.1 justin schedule(void)
141 1.1 justin {
142 1.1 justin struct thread *prev, *next, *thread, *tmp;
143 1.1 justin int64_t tm, wakeup;
144 1.1 justin struct timespec sl;
145 1.1 justin
146 1.1 justin prev = get_current();
147 1.1 justin
148 1.1 justin do {
149 1.1 justin tm = now();
150 1.1 justin wakeup = tm + 1000; /* wake up in 1s max */
151 1.1 justin next = NULL;
152 1.1 justin TAILQ_FOREACH_SAFE(thread, &thread_list, thread_list, tmp) {
153 1.1 justin if (!is_runnable(thread) && thread->wakeup_time >= 0) {
154 1.1 justin if (thread->wakeup_time <= tm) {
155 1.1 justin thread->flags |= THREAD_TIMEDOUT;
156 1.1 justin wake(thread);
157 1.1 justin } else if (thread->wakeup_time < wakeup)
158 1.1 justin wakeup = thread->wakeup_time;
159 1.1 justin }
160 1.1 justin if (is_runnable(thread)) {
161 1.1 justin next = thread;
162 1.1 justin /* Put this thread on the end of the list */
163 1.1 justin TAILQ_REMOVE(&thread_list, thread, thread_list);
164 1.1 justin TAILQ_INSERT_TAIL(&thread_list, thread, thread_list);
165 1.1 justin break;
166 1.1 justin }
167 1.1 justin }
168 1.1 justin if (next)
169 1.1 justin break;
170 1.1 justin sl.tv_sec = (wakeup - tm) / 1000;
171 1.1 justin sl.tv_nsec = ((wakeup - tm) - 1000 * sl.tv_sec) * 1000000;
172 1.1 justin #ifdef HAVE_CLOCK_NANOSLEEP
173 1.1 justin clock_nanosleep(CLOCK_MONOTONIC, 0, &sl, NULL);
174 1.1 justin #else
175 1.1 justin nanosleep(&sl, NULL);
176 1.1 justin #endif
177 1.1 justin } while (1);
178 1.1 justin
179 1.1 justin if (prev != next)
180 1.1 justin switch_threads(prev, next);
181 1.1 justin
182 1.1 justin TAILQ_FOREACH_SAFE(thread, &exited_threads, thread_list, tmp) {
183 1.1 justin if (thread != prev) {
184 1.1 justin TAILQ_REMOVE(&exited_threads, thread, thread_list);
185 1.1 justin if ((thread->flags & THREAD_EXTSTACK) == 0)
186 1.1 justin munmap(thread->ctx.uc_stack.ss_sp, STACKSIZE);
187 1.1 justin free(thread->name);
188 1.1 justin free(thread);
189 1.1 justin }
190 1.1 justin }
191 1.1 justin }
192 1.1 justin
193 1.1 justin static void
194 1.7 justin create_ctx(ucontext_t *ctx, void *stack, size_t stack_size,
195 1.7 justin void (*f)(void *), void *data)
196 1.1 justin {
197 1.1 justin
198 1.1 justin getcontext(ctx);
199 1.1 justin ctx->uc_stack.ss_sp = stack;
200 1.1 justin ctx->uc_stack.ss_size = stack_size;
201 1.1 justin ctx->uc_stack.ss_flags = 0;
202 1.1 justin ctx->uc_link = NULL; /* TODO may link to main thread */
203 1.7 justin /* may have to do bounce function to call, if args to makecontext are ints */
204 1.7 justin makecontext(ctx, (void (*)(void))f, 1, data);
205 1.1 justin }
206 1.1 justin
207 1.1 justin /* TODO see notes in rumpuser_thread_create, have flags here */
208 1.1 justin struct thread *
209 1.1 justin create_thread(const char *name, void *cookie, void (*f)(void *), void *data,
210 1.1 justin void *stack, size_t stack_size)
211 1.1 justin {
212 1.1 justin struct thread *thread = calloc(1, sizeof(struct thread));
213 1.1 justin
214 1.6 justin if (!thread) {
215 1.6 justin return NULL;
216 1.6 justin }
217 1.6 justin
218 1.1 justin if (!stack) {
219 1.1 justin assert(stack_size == 0);
220 1.1 justin stack = mmap(NULL, STACKSIZE, PROT_READ | PROT_WRITE,
221 1.1 justin MAP_SHARED | MAP_ANON, -1, 0);
222 1.1 justin if (stack == MAP_FAILED) {
223 1.6 justin free(thread);
224 1.1 justin return NULL;
225 1.1 justin }
226 1.1 justin stack_size = STACKSIZE;
227 1.1 justin } else {
228 1.1 justin thread->flags = THREAD_EXTSTACK;
229 1.1 justin }
230 1.7 justin create_ctx(&thread->ctx, stack, stack_size, f, data);
231 1.1 justin
232 1.1 justin thread->name = strdup(name);
233 1.1 justin thread->cookie = cookie;
234 1.1 justin
235 1.1 justin /* Not runnable, not exited, not sleeping */
236 1.1 justin thread->wakeup_time = -1;
237 1.1 justin thread->lwp = NULL;
238 1.1 justin set_runnable(thread);
239 1.1 justin TAILQ_INSERT_TAIL(&thread_list, thread, thread_list);
240 1.1 justin
241 1.1 justin return thread;
242 1.1 justin }
243 1.1 justin
244 1.1 justin static void
245 1.1 justin switch_threads(struct thread *prev, struct thread *next)
246 1.1 justin {
247 1.1 justin int ret;
248 1.1 justin
249 1.1 justin current_thread = next;
250 1.1 justin if (scheduler_hook)
251 1.1 justin scheduler_hook(prev->cookie, next->cookie);
252 1.1 justin ret = swapcontext(&prev->ctx, &next->ctx);
253 1.1 justin if (ret < 0) {
254 1.1 justin printk("swapcontext failed\n");
255 1.1 justin abort();
256 1.1 justin }
257 1.1 justin }
258 1.1 justin
259 1.1 justin struct join_waiter {
260 1.1 justin struct thread *jw_thread;
261 1.1 justin struct thread *jw_wanted;
262 1.1 justin TAILQ_ENTRY(join_waiter) jw_entries;
263 1.1 justin };
264 1.1 justin static TAILQ_HEAD(, join_waiter) joinwq = TAILQ_HEAD_INITIALIZER(joinwq);
265 1.1 justin
266 1.1 justin void
267 1.1 justin exit_thread(void)
268 1.1 justin {
269 1.1 justin struct thread *thread = get_current();
270 1.1 justin struct join_waiter *jw_iter;
271 1.1 justin
272 1.1 justin /* if joinable, gate until we are allowed to exit */
273 1.1 justin while (thread->flags & THREAD_MUSTJOIN) {
274 1.1 justin thread->flags |= THREAD_JOINED;
275 1.1 justin
276 1.1 justin /* see if the joiner is already there */
277 1.1 justin TAILQ_FOREACH(jw_iter, &joinwq, jw_entries) {
278 1.1 justin if (jw_iter->jw_wanted == thread) {
279 1.1 justin wake(jw_iter->jw_thread);
280 1.1 justin break;
281 1.1 justin }
282 1.1 justin }
283 1.1 justin block(thread);
284 1.1 justin schedule();
285 1.1 justin }
286 1.1 justin
287 1.1 justin /* Remove from the thread list */
288 1.1 justin TAILQ_REMOVE(&thread_list, thread, thread_list);
289 1.1 justin clear_runnable(thread);
290 1.1 justin /* Put onto exited list */
291 1.1 justin TAILQ_INSERT_HEAD(&exited_threads, thread, thread_list);
292 1.1 justin
293 1.1 justin /* Schedule will free the resources */
294 1.1 justin while (1) {
295 1.1 justin schedule();
296 1.1 justin printk("schedule() returned! Trying again\n");
297 1.1 justin }
298 1.1 justin }
299 1.1 justin
300 1.1 justin static void
301 1.1 justin join_thread(struct thread *joinable)
302 1.1 justin {
303 1.1 justin struct join_waiter jw;
304 1.1 justin struct thread *thread = get_current();
305 1.1 justin
306 1.1 justin assert(joinable->flags & THREAD_MUSTJOIN);
307 1.1 justin
308 1.1 justin /* wait for exiting thread to hit thread_exit() */
309 1.1 justin while (! (joinable->flags & THREAD_JOINED)) {
310 1.1 justin
311 1.1 justin jw.jw_thread = thread;
312 1.1 justin jw.jw_wanted = joinable;
313 1.1 justin TAILQ_INSERT_TAIL(&joinwq, &jw, jw_entries);
314 1.1 justin block(thread);
315 1.1 justin schedule();
316 1.1 justin TAILQ_REMOVE(&joinwq, &jw, jw_entries);
317 1.1 justin }
318 1.1 justin
319 1.1 justin /* signal exiting thread that we have seen it and it may now exit */
320 1.1 justin assert(joinable->flags & THREAD_JOINED);
321 1.1 justin joinable->flags &= ~THREAD_MUSTJOIN;
322 1.1 justin
323 1.1 justin wake(joinable);
324 1.1 justin }
325 1.1 justin
326 1.1 justin static void msleep(uint64_t millisecs)
327 1.1 justin {
328 1.1 justin struct thread *thread = get_current();
329 1.1 justin
330 1.1 justin thread->wakeup_time = now() + millisecs;
331 1.1 justin clear_runnable(thread);
332 1.1 justin schedule();
333 1.1 justin }
334 1.1 justin
335 1.1 justin static void abssleep(uint64_t millisecs)
336 1.1 justin {
337 1.1 justin struct thread *thread = get_current();
338 1.1 justin
339 1.1 justin thread->wakeup_time = millisecs;
340 1.1 justin clear_runnable(thread);
341 1.1 justin schedule();
342 1.1 justin }
343 1.1 justin
344 1.1 justin /* like abssleep, except against realtime clock instead of monotonic clock */
345 1.1 justin int abssleep_real(uint64_t millisecs)
346 1.1 justin {
347 1.1 justin struct thread *thread = get_current();
348 1.1 justin struct timespec ts;
349 1.1 justin uint64_t real_now;
350 1.1 justin int rv;
351 1.1 justin
352 1.1 justin clock_gettime(CLOCK_REALTIME, &ts);
353 1.1 justin real_now = 1000*ts.tv_sec + ts.tv_nsec/(1000*1000);
354 1.1 justin thread->wakeup_time = now() + (millisecs - real_now);
355 1.1 justin
356 1.1 justin clear_runnable(thread);
357 1.1 justin schedule();
358 1.1 justin
359 1.1 justin rv = !!(thread->flags & THREAD_TIMEDOUT);
360 1.1 justin thread->flags &= ~THREAD_TIMEDOUT;
361 1.1 justin return rv;
362 1.1 justin }
363 1.1 justin
364 1.1 justin void wake(struct thread *thread)
365 1.1 justin {
366 1.1 justin
367 1.1 justin thread->wakeup_time = -1;
368 1.1 justin set_runnable(thread);
369 1.1 justin }
370 1.1 justin
371 1.1 justin void block(struct thread *thread)
372 1.1 justin {
373 1.1 justin
374 1.1 justin thread->wakeup_time = -1;
375 1.1 justin clear_runnable(thread);
376 1.1 justin }
377 1.1 justin
378 1.1 justin int is_runnable(struct thread *thread)
379 1.1 justin {
380 1.1 justin
381 1.1 justin return thread->flags & RUNNABLE_FLAG;
382 1.1 justin }
383 1.1 justin
384 1.1 justin void set_runnable(struct thread *thread)
385 1.1 justin {
386 1.1 justin
387 1.1 justin thread->flags |= RUNNABLE_FLAG;
388 1.1 justin }
389 1.1 justin
390 1.1 justin void clear_runnable(struct thread *thread)
391 1.1 justin {
392 1.1 justin
393 1.1 justin thread->flags &= ~RUNNABLE_FLAG;
394 1.1 justin }
395 1.1 justin
396 1.1 justin static void
397 1.1 justin init_sched(void)
398 1.1 justin {
399 1.1 justin struct thread *thread = calloc(1, sizeof(struct thread));
400 1.1 justin
401 1.1 justin thread->name = strdup("init");
402 1.1 justin thread->flags = 0;
403 1.1 justin thread->wakeup_time = -1;
404 1.1 justin thread->lwp = NULL;
405 1.1 justin set_runnable(thread);
406 1.1 justin TAILQ_INSERT_TAIL(&thread_list, thread, thread_list);
407 1.1 justin current_thread = thread;
408 1.1 justin }
409 1.1 justin
410 1.1 justin void
411 1.1 justin set_sched_hook(void (*f)(void *, void *))
412 1.1 justin {
413 1.1 justin
414 1.1 justin scheduler_hook = f;
415 1.1 justin }
416 1.1 justin
417 1.1 justin struct thread *
418 1.1 justin init_mainthread(void *cookie)
419 1.1 justin {
420 1.1 justin
421 1.1 justin current_thread->cookie = cookie;
422 1.1 justin return current_thread;
423 1.1 justin }
424 1.1 justin
425 1.1 justin /* rump functions below */
426 1.1 justin
427 1.1 justin struct rumpuser_hyperup rumpuser__hyp;
428 1.1 justin
429 1.1 justin int
430 1.1 justin rumpuser_init(int version, const struct rumpuser_hyperup *hyp)
431 1.1 justin {
432 1.3 justin int rv;
433 1.1 justin
434 1.1 justin if (version != RUMPUSER_VERSION) {
435 1.1 justin printk("rumpuser version mismatch\n");
436 1.3 justin abort();
437 1.1 justin }
438 1.1 justin
439 1.3 justin rv = rumpuser__random_init();
440 1.3 justin if (rv != 0) {
441 1.3 justin ET(rv);
442 1.1 justin }
443 1.1 justin
444 1.1 justin rumpuser__hyp = *hyp;
445 1.1 justin
446 1.1 justin init_sched();
447 1.1 justin
448 1.1 justin return 0;
449 1.1 justin }
450 1.1 justin
451 1.1 justin int
452 1.1 justin rumpuser_clock_gettime(int enum_rumpclock, int64_t *sec, long *nsec)
453 1.1 justin {
454 1.1 justin enum rumpclock rclk = enum_rumpclock;
455 1.1 justin struct timespec ts;
456 1.1 justin clockid_t clk;
457 1.1 justin int rv;
458 1.1 justin
459 1.1 justin switch (rclk) {
460 1.1 justin case RUMPUSER_CLOCK_RELWALL:
461 1.1 justin clk = CLOCK_REALTIME;
462 1.1 justin break;
463 1.1 justin case RUMPUSER_CLOCK_ABSMONO:
464 1.1 justin clk = CLOCK_MONOTONIC;
465 1.1 justin break;
466 1.1 justin default:
467 1.1 justin abort();
468 1.1 justin }
469 1.1 justin
470 1.1 justin if (clock_gettime(clk, &ts) == -1) {
471 1.1 justin rv = errno;
472 1.1 justin } else {
473 1.1 justin *sec = ts.tv_sec;
474 1.1 justin *nsec = ts.tv_nsec;
475 1.1 justin rv = 0;
476 1.1 justin }
477 1.1 justin
478 1.1 justin ET(rv);
479 1.1 justin }
480 1.1 justin
481 1.1 justin int
482 1.1 justin rumpuser_clock_sleep(int enum_rumpclock, int64_t sec, long nsec)
483 1.1 justin {
484 1.1 justin enum rumpclock rclk = enum_rumpclock;
485 1.1 justin uint32_t msec;
486 1.1 justin int nlocks;
487 1.1 justin
488 1.1 justin rumpkern_unsched(&nlocks, NULL);
489 1.1 justin switch (rclk) {
490 1.1 justin case RUMPUSER_CLOCK_RELWALL:
491 1.1 justin msec = sec * 1000 + nsec / (1000*1000UL);
492 1.1 justin msleep(msec);
493 1.1 justin break;
494 1.1 justin case RUMPUSER_CLOCK_ABSMONO:
495 1.1 justin msec = sec * 1000 + nsec / (1000*1000UL);
496 1.1 justin abssleep(msec);
497 1.1 justin break;
498 1.1 justin }
499 1.1 justin rumpkern_sched(nlocks, NULL);
500 1.1 justin
501 1.1 justin return 0;
502 1.1 justin }
503 1.1 justin
504 1.1 justin int
505 1.1 justin rumpuser_getparam(const char *name, void *buf, size_t blen)
506 1.1 justin {
507 1.1 justin int rv;
508 1.1 justin const char *ncpu = "1";
509 1.1 justin
510 1.1 justin if (strcmp(name, RUMPUSER_PARAM_NCPU) == 0) {
511 1.1 justin strncpy(buf, ncpu, blen);
512 1.1 justin rv = 0;
513 1.1 justin } else if (strcmp(name, RUMPUSER_PARAM_HOSTNAME) == 0) {
514 1.1 justin char tmp[MAXHOSTNAMELEN];
515 1.1 justin
516 1.1 justin if (gethostname(tmp, sizeof(tmp)) == -1) {
517 1.1 justin snprintf(buf, blen, "rump-%05d", (int)getpid());
518 1.1 justin } else {
519 1.1 justin snprintf(buf, blen, "rump-%05d.%s",
520 1.1 justin (int)getpid(), tmp);
521 1.1 justin }
522 1.1 justin rv = 0;
523 1.1 justin } else if (*name == '_') {
524 1.1 justin rv = EINVAL;
525 1.1 justin } else {
526 1.1 justin if (getenv_r(name, buf, blen) == -1)
527 1.1 justin rv = errno;
528 1.1 justin else
529 1.1 justin rv = 0;
530 1.1 justin }
531 1.1 justin
532 1.1 justin ET(rv);
533 1.1 justin }
534 1.1 justin
535 1.1 justin void
536 1.1 justin rumpuser_putchar(int c)
537 1.1 justin {
538 1.1 justin
539 1.1 justin putchar(c);
540 1.1 justin }
541 1.1 justin
542 1.1 justin __dead void
543 1.1 justin rumpuser_exit(int rv)
544 1.1 justin {
545 1.1 justin
546 1.1 justin if (rv == RUMPUSER_PANIC)
547 1.1 justin abort();
548 1.1 justin else
549 1.1 justin exit(rv);
550 1.1 justin }
551 1.1 justin
552 1.1 justin void
553 1.1 justin rumpuser_seterrno(int error)
554 1.1 justin {
555 1.1 justin
556 1.1 justin errno = error;
557 1.1 justin }
558 1.1 justin
559 1.1 justin /*
560 1.1 justin * This is meant for safe debugging prints from the kernel.
561 1.1 justin */
562 1.1 justin void
563 1.1 justin rumpuser_dprintf(const char *format, ...)
564 1.1 justin {
565 1.1 justin va_list ap;
566 1.1 justin
567 1.1 justin va_start(ap, format);
568 1.1 justin vfprintf(stderr, format, ap);
569 1.1 justin va_end(ap);
570 1.1 justin }
571 1.1 justin
572 1.1 justin int
573 1.1 justin rumpuser_kill(int64_t pid, int rumpsig)
574 1.1 justin {
575 1.1 justin int sig;
576 1.1 justin
577 1.1 justin sig = rumpuser__sig_rump2host(rumpsig);
578 1.1 justin if (sig > 0)
579 1.1 justin raise(sig);
580 1.1 justin return 0;
581 1.1 justin }
582 1.1 justin
583 1.1 justin /* thread functions */
584 1.1 justin
585 1.1 justin TAILQ_HEAD(waithead, waiter);
586 1.1 justin struct waiter {
587 1.1 justin struct thread *who;
588 1.1 justin TAILQ_ENTRY(waiter) entries;
589 1.1 justin int onlist;
590 1.1 justin };
591 1.1 justin
592 1.1 justin static int
593 1.1 justin wait(struct waithead *wh, uint64_t msec)
594 1.1 justin {
595 1.1 justin struct waiter w;
596 1.1 justin
597 1.1 justin w.who = get_current();
598 1.1 justin TAILQ_INSERT_TAIL(wh, &w, entries);
599 1.1 justin w.onlist = 1;
600 1.1 justin block(w.who);
601 1.1 justin if (msec)
602 1.1 justin w.who->wakeup_time = now() + msec;
603 1.1 justin schedule();
604 1.1 justin
605 1.1 justin /* woken up by timeout? */
606 1.1 justin if (w.onlist)
607 1.1 justin TAILQ_REMOVE(wh, &w, entries);
608 1.1 justin
609 1.1 justin return w.onlist ? ETIMEDOUT : 0;
610 1.1 justin }
611 1.1 justin
612 1.1 justin static void
613 1.1 justin wakeup_one(struct waithead *wh)
614 1.1 justin {
615 1.1 justin struct waiter *w;
616 1.1 justin
617 1.1 justin if ((w = TAILQ_FIRST(wh)) != NULL) {
618 1.1 justin TAILQ_REMOVE(wh, w, entries);
619 1.1 justin w->onlist = 0;
620 1.1 justin wake(w->who);
621 1.1 justin }
622 1.1 justin }
623 1.1 justin
624 1.1 justin static void
625 1.1 justin wakeup_all(struct waithead *wh)
626 1.1 justin {
627 1.1 justin struct waiter *w;
628 1.1 justin
629 1.1 justin while ((w = TAILQ_FIRST(wh)) != NULL) {
630 1.1 justin TAILQ_REMOVE(wh, w, entries);
631 1.1 justin w->onlist = 0;
632 1.1 justin wake(w->who);
633 1.1 justin }
634 1.1 justin }
635 1.1 justin
636 1.1 justin int
637 1.1 justin rumpuser_thread_create(void *(*f)(void *), void *arg, const char *thrname,
638 1.1 justin int joinable, int pri, int cpuidx, void **tptr)
639 1.1 justin {
640 1.1 justin struct thread *thr;
641 1.1 justin
642 1.1 justin thr = create_thread(thrname, NULL, (void (*)(void *))f, arg, NULL, 0);
643 1.1 justin /*
644 1.1 justin * XXX: should be supplied as a flag to create_thread() so as to
645 1.1 justin * _ensure_ it's set before the thread runs (and could exit).
646 1.1 justin * now we're trusting unclear semantics of create_thread()
647 1.1 justin */
648 1.1 justin if (thr && joinable)
649 1.1 justin thr->flags |= THREAD_MUSTJOIN;
650 1.1 justin
651 1.1 justin if (!thr)
652 1.1 justin return EINVAL;
653 1.1 justin
654 1.1 justin *tptr = thr;
655 1.1 justin return 0;
656 1.1 justin }
657 1.1 justin
658 1.1 justin void
659 1.1 justin rumpuser_thread_exit(void)
660 1.1 justin {
661 1.1 justin
662 1.1 justin exit_thread();
663 1.1 justin }
664 1.1 justin
665 1.1 justin int
666 1.1 justin rumpuser_thread_join(void *p)
667 1.1 justin {
668 1.1 justin
669 1.1 justin join_thread(p);
670 1.1 justin return 0;
671 1.1 justin }
672 1.1 justin
673 1.1 justin struct rumpuser_mtx {
674 1.1 justin struct waithead waiters;
675 1.1 justin int v;
676 1.1 justin int flags;
677 1.1 justin struct lwp *o;
678 1.1 justin };
679 1.1 justin
680 1.1 justin void
681 1.1 justin rumpuser_mutex_init(struct rumpuser_mtx **mtxp, int flags)
682 1.1 justin {
683 1.1 justin struct rumpuser_mtx *mtx;
684 1.1 justin
685 1.1 justin mtx = malloc(sizeof(*mtx));
686 1.1 justin memset(mtx, 0, sizeof(*mtx));
687 1.1 justin mtx->flags = flags;
688 1.1 justin TAILQ_INIT(&mtx->waiters);
689 1.1 justin *mtxp = mtx;
690 1.1 justin }
691 1.1 justin
692 1.1 justin void
693 1.1 justin rumpuser_mutex_enter(struct rumpuser_mtx *mtx)
694 1.1 justin {
695 1.1 justin int nlocks;
696 1.1 justin
697 1.1 justin if (rumpuser_mutex_tryenter(mtx) != 0) {
698 1.1 justin rumpkern_unsched(&nlocks, NULL);
699 1.1 justin while (rumpuser_mutex_tryenter(mtx) != 0)
700 1.1 justin wait(&mtx->waiters, 0);
701 1.1 justin rumpkern_sched(nlocks, NULL);
702 1.1 justin }
703 1.1 justin }
704 1.1 justin
705 1.1 justin void
706 1.1 justin rumpuser_mutex_enter_nowrap(struct rumpuser_mtx *mtx)
707 1.1 justin {
708 1.1 justin int rv;
709 1.1 justin
710 1.1 justin rv = rumpuser_mutex_tryenter(mtx);
711 1.1 justin /* one VCPU supported, no preemption => must succeed */
712 1.1 justin if (rv != 0) {
713 1.1 justin printk("no voi ei\n");
714 1.1 justin }
715 1.1 justin }
716 1.1 justin
717 1.1 justin int
718 1.1 justin rumpuser_mutex_tryenter(struct rumpuser_mtx *mtx)
719 1.1 justin {
720 1.1 justin struct lwp *l = get_current()->lwp;
721 1.1 justin
722 1.1 justin if (mtx->v && mtx->o != l)
723 1.1 justin return EBUSY;
724 1.1 justin
725 1.1 justin mtx->v++;
726 1.1 justin mtx->o = l;
727 1.1 justin
728 1.1 justin return 0;
729 1.1 justin }
730 1.1 justin
731 1.1 justin void
732 1.1 justin rumpuser_mutex_exit(struct rumpuser_mtx *mtx)
733 1.1 justin {
734 1.1 justin
735 1.1 justin assert(mtx->v > 0);
736 1.1 justin if (--mtx->v == 0) {
737 1.1 justin mtx->o = NULL;
738 1.1 justin wakeup_one(&mtx->waiters);
739 1.1 justin }
740 1.1 justin }
741 1.1 justin
742 1.1 justin void
743 1.1 justin rumpuser_mutex_destroy(struct rumpuser_mtx *mtx)
744 1.1 justin {
745 1.1 justin
746 1.1 justin assert(TAILQ_EMPTY(&mtx->waiters) && mtx->o == NULL);
747 1.1 justin free(mtx);
748 1.1 justin }
749 1.1 justin
750 1.1 justin void
751 1.1 justin rumpuser_mutex_owner(struct rumpuser_mtx *mtx, struct lwp **lp)
752 1.1 justin {
753 1.1 justin
754 1.1 justin *lp = mtx->o;
755 1.1 justin }
756 1.1 justin
757 1.1 justin struct rumpuser_rw {
758 1.1 justin struct waithead rwait;
759 1.1 justin struct waithead wwait;
760 1.1 justin int v;
761 1.1 justin struct lwp *o;
762 1.1 justin };
763 1.1 justin
764 1.1 justin void
765 1.1 justin rumpuser_rw_init(struct rumpuser_rw **rwp)
766 1.1 justin {
767 1.1 justin struct rumpuser_rw *rw;
768 1.1 justin
769 1.1 justin rw = malloc(sizeof(*rw));
770 1.1 justin memset(rw, 0, sizeof(*rw));
771 1.1 justin TAILQ_INIT(&rw->rwait);
772 1.1 justin TAILQ_INIT(&rw->wwait);
773 1.1 justin
774 1.1 justin *rwp = rw;
775 1.1 justin }
776 1.1 justin
777 1.1 justin void
778 1.1 justin rumpuser_rw_enter(int enum_rumprwlock, struct rumpuser_rw *rw)
779 1.1 justin {
780 1.1 justin enum rumprwlock lk = enum_rumprwlock;
781 1.1 justin struct waithead *w = NULL;
782 1.1 justin int nlocks;
783 1.1 justin
784 1.1 justin switch (lk) {
785 1.1 justin case RUMPUSER_RW_WRITER:
786 1.1 justin w = &rw->wwait;
787 1.1 justin break;
788 1.1 justin case RUMPUSER_RW_READER:
789 1.1 justin w = &rw->rwait;
790 1.1 justin break;
791 1.1 justin }
792 1.1 justin
793 1.1 justin if (rumpuser_rw_tryenter(enum_rumprwlock, rw) != 0) {
794 1.1 justin rumpkern_unsched(&nlocks, NULL);
795 1.1 justin while (rumpuser_rw_tryenter(enum_rumprwlock, rw) != 0)
796 1.1 justin wait(w, 0);
797 1.1 justin rumpkern_sched(nlocks, NULL);
798 1.1 justin }
799 1.1 justin }
800 1.1 justin
801 1.1 justin int
802 1.1 justin rumpuser_rw_tryenter(int enum_rumprwlock, struct rumpuser_rw *rw)
803 1.1 justin {
804 1.1 justin enum rumprwlock lk = enum_rumprwlock;
805 1.1 justin int rv;
806 1.1 justin
807 1.1 justin switch (lk) {
808 1.1 justin case RUMPUSER_RW_WRITER:
809 1.1 justin if (rw->o == NULL) {
810 1.1 justin rw->o = rumpuser_curlwp();
811 1.1 justin rv = 0;
812 1.1 justin } else {
813 1.1 justin rv = EBUSY;
814 1.1 justin }
815 1.1 justin break;
816 1.1 justin case RUMPUSER_RW_READER:
817 1.1 justin if (rw->o == NULL && TAILQ_EMPTY(&rw->wwait)) {
818 1.1 justin rw->v++;
819 1.1 justin rv = 0;
820 1.1 justin } else {
821 1.1 justin rv = EBUSY;
822 1.1 justin }
823 1.1 justin break;
824 1.1 justin default:
825 1.1 justin rv = EINVAL;
826 1.1 justin }
827 1.1 justin
828 1.1 justin return rv;
829 1.1 justin }
830 1.1 justin
831 1.1 justin void
832 1.1 justin rumpuser_rw_exit(struct rumpuser_rw *rw)
833 1.1 justin {
834 1.1 justin
835 1.1 justin if (rw->o) {
836 1.1 justin rw->o = NULL;
837 1.1 justin } else {
838 1.1 justin rw->v--;
839 1.1 justin }
840 1.1 justin
841 1.1 justin /* standard procedure, don't let readers starve out writers */
842 1.1 justin if (!TAILQ_EMPTY(&rw->wwait)) {
843 1.1 justin if (rw->o == NULL)
844 1.1 justin wakeup_one(&rw->wwait);
845 1.1 justin } else if (!TAILQ_EMPTY(&rw->rwait) && rw->o == NULL) {
846 1.1 justin wakeup_all(&rw->rwait);
847 1.1 justin }
848 1.1 justin }
849 1.1 justin
850 1.1 justin void
851 1.1 justin rumpuser_rw_destroy(struct rumpuser_rw *rw)
852 1.1 justin {
853 1.1 justin
854 1.1 justin free(rw);
855 1.1 justin }
856 1.1 justin
857 1.1 justin void
858 1.1 justin rumpuser_rw_held(int enum_rumprwlock, struct rumpuser_rw *rw, int *rvp)
859 1.1 justin {
860 1.1 justin enum rumprwlock lk = enum_rumprwlock;
861 1.1 justin
862 1.1 justin switch (lk) {
863 1.1 justin case RUMPUSER_RW_WRITER:
864 1.1 justin *rvp = rw->o == rumpuser_curlwp();
865 1.1 justin break;
866 1.1 justin case RUMPUSER_RW_READER:
867 1.1 justin *rvp = rw->v > 0;
868 1.1 justin break;
869 1.1 justin }
870 1.1 justin }
871 1.1 justin
872 1.1 justin void
873 1.1 justin rumpuser_rw_downgrade(struct rumpuser_rw *rw)
874 1.1 justin {
875 1.1 justin
876 1.1 justin assert(rw->o == rumpuser_curlwp());
877 1.1 justin rw->v = -1;
878 1.1 justin }
879 1.1 justin
880 1.1 justin int
881 1.1 justin rumpuser_rw_tryupgrade(struct rumpuser_rw *rw)
882 1.1 justin {
883 1.1 justin
884 1.1 justin if (rw->v == -1) {
885 1.1 justin rw->v = 1;
886 1.1 justin rw->o = rumpuser_curlwp();
887 1.1 justin return 0;
888 1.1 justin }
889 1.1 justin
890 1.1 justin return EBUSY;
891 1.1 justin }
892 1.1 justin
893 1.1 justin struct rumpuser_cv {
894 1.1 justin struct waithead waiters;
895 1.1 justin int nwaiters;
896 1.1 justin };
897 1.1 justin
898 1.1 justin void
899 1.1 justin rumpuser_cv_init(struct rumpuser_cv **cvp)
900 1.1 justin {
901 1.1 justin struct rumpuser_cv *cv;
902 1.1 justin
903 1.1 justin cv = malloc(sizeof(*cv));
904 1.1 justin memset(cv, 0, sizeof(*cv));
905 1.1 justin TAILQ_INIT(&cv->waiters);
906 1.1 justin *cvp = cv;
907 1.1 justin }
908 1.1 justin
909 1.1 justin void
910 1.1 justin rumpuser_cv_destroy(struct rumpuser_cv *cv)
911 1.1 justin {
912 1.1 justin
913 1.1 justin assert(cv->nwaiters == 0);
914 1.1 justin free(cv);
915 1.1 justin }
916 1.1 justin
917 1.1 justin static void
918 1.1 justin cv_unsched(struct rumpuser_mtx *mtx, int *nlocks)
919 1.1 justin {
920 1.1 justin
921 1.1 justin rumpkern_unsched(nlocks, mtx);
922 1.1 justin rumpuser_mutex_exit(mtx);
923 1.1 justin }
924 1.1 justin
925 1.1 justin static void
926 1.1 justin cv_resched(struct rumpuser_mtx *mtx, int nlocks)
927 1.1 justin {
928 1.1 justin
929 1.1 justin /* see rumpuser(3) */
930 1.1 justin if ((mtx->flags & (RUMPUSER_MTX_KMUTEX | RUMPUSER_MTX_SPIN)) ==
931 1.1 justin (RUMPUSER_MTX_KMUTEX | RUMPUSER_MTX_SPIN)) {
932 1.1 justin rumpkern_sched(nlocks, mtx);
933 1.1 justin rumpuser_mutex_enter_nowrap(mtx);
934 1.1 justin } else {
935 1.1 justin rumpuser_mutex_enter_nowrap(mtx);
936 1.1 justin rumpkern_sched(nlocks, mtx);
937 1.1 justin }
938 1.1 justin }
939 1.1 justin
940 1.1 justin void
941 1.1 justin rumpuser_cv_wait(struct rumpuser_cv *cv, struct rumpuser_mtx *mtx)
942 1.1 justin {
943 1.1 justin int nlocks;
944 1.1 justin
945 1.1 justin cv->nwaiters++;
946 1.1 justin cv_unsched(mtx, &nlocks);
947 1.1 justin wait(&cv->waiters, 0);
948 1.1 justin cv_resched(mtx, nlocks);
949 1.1 justin cv->nwaiters--;
950 1.1 justin }
951 1.1 justin
952 1.1 justin void
953 1.1 justin rumpuser_cv_wait_nowrap(struct rumpuser_cv *cv, struct rumpuser_mtx *mtx)
954 1.1 justin {
955 1.1 justin
956 1.1 justin cv->nwaiters++;
957 1.1 justin rumpuser_mutex_exit(mtx);
958 1.1 justin wait(&cv->waiters, 0);
959 1.1 justin rumpuser_mutex_enter_nowrap(mtx);
960 1.1 justin cv->nwaiters--;
961 1.1 justin }
962 1.1 justin
963 1.1 justin int
964 1.1 justin rumpuser_cv_timedwait(struct rumpuser_cv *cv, struct rumpuser_mtx *mtx,
965 1.1 justin int64_t sec, int64_t nsec)
966 1.1 justin {
967 1.1 justin int nlocks;
968 1.1 justin int rv;
969 1.1 justin
970 1.1 justin cv->nwaiters++;
971 1.1 justin cv_unsched(mtx, &nlocks);
972 1.1 justin rv = wait(&cv->waiters, sec * 1000 + nsec / (1000*1000));
973 1.1 justin cv_resched(mtx, nlocks);
974 1.1 justin cv->nwaiters--;
975 1.1 justin
976 1.1 justin return rv;
977 1.1 justin }
978 1.1 justin
979 1.1 justin void
980 1.1 justin rumpuser_cv_signal(struct rumpuser_cv *cv)
981 1.1 justin {
982 1.1 justin
983 1.1 justin wakeup_one(&cv->waiters);
984 1.1 justin }
985 1.1 justin
986 1.1 justin void
987 1.1 justin rumpuser_cv_broadcast(struct rumpuser_cv *cv)
988 1.1 justin {
989 1.1 justin
990 1.1 justin wakeup_all(&cv->waiters);
991 1.1 justin }
992 1.1 justin
993 1.1 justin void
994 1.1 justin rumpuser_cv_has_waiters(struct rumpuser_cv *cv, int *rvp)
995 1.1 justin {
996 1.1 justin
997 1.1 justin *rvp = cv->nwaiters != 0;
998 1.1 justin }
999 1.1 justin
1000 1.1 justin /*
1001 1.1 justin * curlwp
1002 1.1 justin */
1003 1.1 justin
1004 1.1 justin void
1005 1.1 justin rumpuser_curlwpop(int enum_rumplwpop, struct lwp *l)
1006 1.1 justin {
1007 1.1 justin struct thread *thread;
1008 1.1 justin enum rumplwpop op = enum_rumplwpop;
1009 1.1 justin
1010 1.1 justin switch (op) {
1011 1.1 justin case RUMPUSER_LWP_CREATE:
1012 1.1 justin case RUMPUSER_LWP_DESTROY:
1013 1.1 justin break;
1014 1.1 justin case RUMPUSER_LWP_SET:
1015 1.1 justin thread = get_current();
1016 1.1 justin thread->lwp = l;
1017 1.1 justin break;
1018 1.1 justin case RUMPUSER_LWP_CLEAR:
1019 1.1 justin thread = get_current();
1020 1.1 justin assert(thread->lwp == l);
1021 1.1 justin thread->lwp = NULL;
1022 1.1 justin break;
1023 1.1 justin }
1024 1.1 justin }
1025 1.1 justin
1026 1.1 justin struct lwp *
1027 1.1 justin rumpuser_curlwp(void)
1028 1.1 justin {
1029 1.1 justin
1030 1.1 justin return get_current()->lwp;
1031 1.1 justin }
1032