rump.c revision 1.296 1 1.296 pooka /* $NetBSD: rump.c,v 1.296 2014/04/23 23:25:45 pooka Exp $ */
2 1.1 pooka
3 1.1 pooka /*
4 1.233 pooka * Copyright (c) 2007-2011 Antti Kantee. All Rights Reserved.
5 1.1 pooka *
6 1.1 pooka * Redistribution and use in source and binary forms, with or without
7 1.1 pooka * modification, are permitted provided that the following conditions
8 1.1 pooka * are met:
9 1.1 pooka * 1. Redistributions of source code must retain the above copyright
10 1.1 pooka * notice, this list of conditions and the following disclaimer.
11 1.1 pooka * 2. Redistributions in binary form must reproduce the above copyright
12 1.1 pooka * notice, this list of conditions and the following disclaimer in the
13 1.1 pooka * documentation and/or other materials provided with the distribution.
14 1.1 pooka *
15 1.1 pooka * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
16 1.1 pooka * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
17 1.1 pooka * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
18 1.1 pooka * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19 1.1 pooka * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20 1.1 pooka * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
21 1.1 pooka * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 1.1 pooka * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23 1.1 pooka * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24 1.1 pooka * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25 1.1 pooka * SUCH DAMAGE.
26 1.1 pooka */
27 1.1 pooka
28 1.78 pooka #include <sys/cdefs.h>
29 1.296 pooka __KERNEL_RCSID(0, "$NetBSD: rump.c,v 1.296 2014/04/23 23:25:45 pooka Exp $");
30 1.165 pooka
31 1.165 pooka #include <sys/systm.h>
32 1.165 pooka #define ELFSIZE ARCH_ELFSIZE
33 1.78 pooka
34 1.1 pooka #include <sys/param.h>
35 1.64 pooka #include <sys/atomic.h>
36 1.75 pooka #include <sys/buf.h>
37 1.66 pooka #include <sys/callout.h>
38 1.79 pooka #include <sys/conf.h>
39 1.27 pooka #include <sys/cpu.h>
40 1.144 pooka #include <sys/device.h>
41 1.100 pooka #include <sys/evcnt.h>
42 1.98 pooka #include <sys/event.h>
43 1.137 pooka #include <sys/exec_elf.h>
44 1.1 pooka #include <sys/filedesc.h>
45 1.72 pooka #include <sys/iostat.h>
46 1.1 pooka #include <sys/kauth.h>
47 1.245 pgoyette #include <sys/kcpuset.h>
48 1.80 pooka #include <sys/kernel.h>
49 1.14 pooka #include <sys/kmem.h>
50 1.81 pooka #include <sys/kprintf.h>
51 1.175 pooka #include <sys/kthread.h>
52 1.82 pooka #include <sys/ksyms.h>
53 1.81 pooka #include <sys/msgbuf.h>
54 1.49 simonb #include <sys/module.h>
55 1.234 pooka #include <sys/namei.h>
56 1.71 pooka #include <sys/once.h>
57 1.65 pooka #include <sys/percpu.h>
58 1.139 pooka #include <sys/pipe.h>
59 1.162 pooka #include <sys/pool.h>
60 1.244 pgoyette #include <sys/pserialize.h>
61 1.1 pooka #include <sys/queue.h>
62 1.121 pooka #include <sys/reboot.h>
63 1.1 pooka #include <sys/resourcevar.h>
64 1.27 pooka #include <sys/select.h>
65 1.87 pooka #include <sys/sysctl.h>
66 1.96 pooka #include <sys/syscall.h>
67 1.169 pooka #include <sys/syscallvar.h>
68 1.160 pooka #include <sys/timetc.h>
69 1.87 pooka #include <sys/tty.h>
70 1.68 pooka #include <sys/uidinfo.h>
71 1.89 pooka #include <sys/vmem.h>
72 1.143 pooka #include <sys/xcall.h>
73 1.235 tls #include <sys/cprng.h>
74 1.279 pooka #include <sys/ktrace.h>
75 1.1 pooka
76 1.48 pooka #include <rump/rumpuser.h>
77 1.48 pooka
78 1.117 elad #include <secmodel/suser/suser.h>
79 1.101 pooka
80 1.114 pooka #include <prop/proplib.h>
81 1.114 pooka
82 1.174 pooka #include <uvm/uvm_extern.h>
83 1.136 pooka #include <uvm/uvm_readahead.h>
84 1.136 pooka
85 1.8 pooka #include "rump_private.h"
86 1.71 pooka #include "rump_net_private.h"
87 1.75 pooka #include "rump_vfs_private.h"
88 1.112 pooka #include "rump_dev_private.h"
89 1.1 pooka
90 1.164 pooka char machine[] = MACHINE;
91 1.1 pooka
92 1.193 pooka struct proc *initproc;
93 1.101 pooka
94 1.144 pooka struct device rump_rootdev = {
95 1.144 pooka .dv_class = DV_VIRTUAL
96 1.144 pooka };
97 1.144 pooka
98 1.54 pooka #ifdef RUMP_WITHOUT_THREADS
99 1.54 pooka int rump_threads = 0;
100 1.54 pooka #else
101 1.54 pooka int rump_threads = 1;
102 1.54 pooka #endif
103 1.54 pooka
104 1.263 pooka static int rump_hyp_syscall(int, void *, long *);
105 1.263 pooka static int rump_hyp_rfork(void *, int, const char *);
106 1.263 pooka static void rump_hyp_lwpexit(void);
107 1.263 pooka static void rump_hyp_execnotify(const char *);
108 1.199 pooka
109 1.265 pooka static void rump_component_addlocal(void);
110 1.255 pooka static struct lwp *bootlwp;
111 1.255 pooka
112 1.156 pooka static char rump_msgbuf[16*1024]; /* 16k should be enough for std rump needs */
113 1.156 pooka
114 1.217 pooka #ifdef LOCKDEBUG
115 1.217 pooka const int rump_lockdebug = 1;
116 1.217 pooka #else
117 1.217 pooka const int rump_lockdebug = 0;
118 1.217 pooka #endif
119 1.218 pooka bool rump_ttycomponent = false;
120 1.217 pooka
121 1.14 pooka static void
122 1.14 pooka rump_aiodone_worker(struct work *wk, void *dummy)
123 1.14 pooka {
124 1.14 pooka struct buf *bp = (struct buf *)wk;
125 1.14 pooka
126 1.14 pooka KASSERT(&bp->b_work == wk);
127 1.14 pooka bp->b_iodone(bp);
128 1.14 pooka }
129 1.14 pooka
130 1.51 pooka static int rump_inited;
131 1.27 pooka
132 1.249 pooka void (*rump_vfs_drainbufs)(int);
133 1.249 pooka void (*rump_vfs_fini)(void);
134 1.254 pooka int (*rump_vfs_makeonedevnode)(dev_t, const char *,
135 1.254 pooka devmajor_t, devminor_t) = (void *)nullop;
136 1.254 pooka int (*rump_vfs_makedevnodes)(dev_t, const char *, char,
137 1.254 pooka devmajor_t, devminor_t, int) = (void *)nullop;
138 1.162 pooka
139 1.126 pooka int rump__unavailable(void);
140 1.126 pooka int rump__unavailable() {return EOPNOTSUPP;}
141 1.121 pooka
142 1.113 pooka __weak_alias(biodone,rump__unavailable);
143 1.126 pooka __weak_alias(sopoll,rump__unavailable);
144 1.113 pooka
145 1.92 pooka void rump__unavailable_vfs_panic(void);
146 1.92 pooka void rump__unavailable_vfs_panic() {panic("vfs component not available");}
147 1.132 pooka __weak_alias(usermount_common_policy,rump__unavailable_vfs_panic);
148 1.92 pooka
149 1.211 pooka /* easier to write vfs-less clients */
150 1.211 pooka __weak_alias(rump_pub_etfs_register,rump__unavailable);
151 1.228 pooka __weak_alias(rump_pub_etfs_register_withsize,rump__unavailable);
152 1.211 pooka __weak_alias(rump_pub_etfs_remove,rump__unavailable);
153 1.211 pooka
154 1.147 pooka rump_proc_vfs_init_fn rump_proc_vfs_init;
155 1.147 pooka rump_proc_vfs_release_fn rump_proc_vfs_release;
156 1.71 pooka
157 1.155 pooka static void add_linkedin_modules(const struct modinfo *const *, size_t);
158 1.155 pooka
159 1.158 pooka /*
160 1.273 pooka * Create some sysctl nodes. why only this you ask. well, init_sysctl
161 1.158 pooka * is a kitchen sink in need of some gardening. but i want to use
162 1.273 pooka * others today. Furthermore, creating a whole kitchen sink full of
163 1.273 pooka * sysctl nodes is a waste of cycles for rump kernel bootstrap.
164 1.158 pooka */
165 1.158 pooka static void
166 1.158 pooka mksysctls(void)
167 1.158 pooka {
168 1.158 pooka
169 1.273 pooka /* hw.pagesize */
170 1.273 pooka sysctl_createv(NULL, 0, NULL, NULL,
171 1.273 pooka CTLFLAG_PERMANENT|CTLFLAG_IMMEDIATE,
172 1.273 pooka CTLTYPE_INT, "pagesize",
173 1.273 pooka SYSCTL_DESCR("Software page size"),
174 1.273 pooka NULL, PAGE_SIZE, NULL, 0,
175 1.273 pooka CTL_HW, HW_PAGESIZE, CTL_EOL);
176 1.158 pooka }
177 1.158 pooka
178 1.201 pooka /* there's no convenient kernel entry point for this, so just craft out own */
179 1.201 pooka static pid_t
180 1.201 pooka spgetpid(void)
181 1.201 pooka {
182 1.201 pooka
183 1.201 pooka return curproc->p_pid;
184 1.201 pooka }
185 1.201 pooka
186 1.263 pooka static const struct rumpuser_hyperup hyp = {
187 1.263 pooka .hyp_schedule = rump_schedule,
188 1.263 pooka .hyp_unschedule = rump_unschedule,
189 1.263 pooka .hyp_backend_unschedule = rump_user_unschedule,
190 1.263 pooka .hyp_backend_schedule = rump_user_schedule,
191 1.263 pooka .hyp_lwproc_switch = rump_lwproc_switch,
192 1.263 pooka .hyp_lwproc_release = rump_lwproc_releaselwp,
193 1.263 pooka .hyp_lwproc_rfork = rump_hyp_rfork,
194 1.263 pooka .hyp_lwproc_newlwp = rump_lwproc_newlwp,
195 1.263 pooka .hyp_lwproc_curlwp = rump_lwproc_curlwp,
196 1.263 pooka .hyp_lwpexit = rump_hyp_lwpexit,
197 1.263 pooka .hyp_syscall = rump_hyp_syscall,
198 1.263 pooka .hyp_execnotify = rump_hyp_execnotify,
199 1.263 pooka .hyp_getpid = spgetpid,
200 1.197 pooka };
201 1.197 pooka
202 1.61 pooka int
203 1.207 pooka rump_daemonize_begin(void)
204 1.207 pooka {
205 1.207 pooka
206 1.207 pooka if (rump_inited)
207 1.207 pooka return EALREADY;
208 1.207 pooka
209 1.207 pooka return rumpuser_daemonize_begin();
210 1.207 pooka }
211 1.207 pooka
212 1.207 pooka int
213 1.207 pooka rump_daemonize_done(int error)
214 1.207 pooka {
215 1.207 pooka
216 1.207 pooka return rumpuser_daemonize_done(error);
217 1.207 pooka }
218 1.207 pooka
219 1.296 pooka #ifndef RUMP_USE_CTOR
220 1.252 pooka RUMP_COMPONENT(RUMP_COMPONENT_POSTINIT)
221 1.252 pooka {
222 1.265 pooka __link_set_decl(rump_components, struct rump_component);
223 1.252 pooka
224 1.252 pooka /*
225 1.253 pooka * Trick compiler into generating references so that statically
226 1.253 pooka * linked rump kernels are generated with the link set symbols.
227 1.252 pooka */
228 1.253 pooka asm("" :: "r"(__start_link_set_rump_components));
229 1.253 pooka asm("" :: "r"(__stop_link_set_rump_components));
230 1.252 pooka }
231 1.296 pooka #endif
232 1.252 pooka
233 1.207 pooka int
234 1.259 pooka rump_init(void)
235 1.1 pooka {
236 1.36 pooka char buf[256];
237 1.160 pooka struct timespec ts;
238 1.268 pooka int64_t sec;
239 1.268 pooka long nsec;
240 1.274 pooka struct lwp *l, *initlwp;
241 1.166 pooka int i, numcpu;
242 1.1 pooka
243 1.121 pooka /* not reentrant */
244 1.27 pooka if (rump_inited)
245 1.61 pooka return 0;
246 1.121 pooka else if (rump_inited == -1)
247 1.121 pooka panic("rump_init: host process restart required");
248 1.121 pooka else
249 1.121 pooka rump_inited = 1;
250 1.27 pooka
251 1.258 pooka /* initialize hypervisor */
252 1.263 pooka if (rumpuser_init(RUMPUSER_VERSION, &hyp) != 0) {
253 1.258 pooka rumpuser_dprintf("rumpuser init failed\n");
254 1.258 pooka return EINVAL;
255 1.177 pooka }
256 1.177 pooka
257 1.276 njoly /* init minimal lwp/cpu context */
258 1.290 pooka rump_lwproc_init();
259 1.276 njoly l = &lwp0;
260 1.276 njoly l->l_cpu = l->l_target_cpu = rump_cpu;
261 1.290 pooka rump_lwproc_curlwp_set(l);
262 1.276 njoly
263 1.258 pooka /* retrieve env vars which affect the early stage of bootstrap */
264 1.264 pooka if (rumpuser_getparam("RUMP_THREADS", buf, sizeof(buf)) == 0) {
265 1.258 pooka rump_threads = *buf != '0';
266 1.258 pooka }
267 1.264 pooka if (rumpuser_getparam("RUMP_VERBOSE", buf, sizeof(buf)) == 0) {
268 1.149 pooka if (*buf != '0')
269 1.149 pooka boothowto = AB_VERBOSE;
270 1.149 pooka }
271 1.264 pooka
272 1.264 pooka if (rumpuser_getparam(RUMPUSER_PARAM_NCPU, buf, sizeof(buf)) != 0)
273 1.264 pooka panic("mandatory hypervisor configuration (NCPU) missing");
274 1.264 pooka numcpu = strtoll(buf, NULL, 10);
275 1.264 pooka if (numcpu < 1) {
276 1.264 pooka panic("rump kernels are not lightweight enough for \"%d\" CPUs",
277 1.264 pooka numcpu);
278 1.167 pooka }
279 1.258 pooka
280 1.256 pooka rump_thread_init();
281 1.204 pooka rump_cpus_bootstrap(&numcpu);
282 1.165 pooka
283 1.266 pooka rumpuser_clock_gettime(RUMPUSER_CLOCK_RELWALL, &sec, &nsec);
284 1.157 pooka boottime.tv_sec = sec;
285 1.157 pooka boottime.tv_nsec = nsec;
286 1.157 pooka
287 1.156 pooka initmsgbuf(rump_msgbuf, sizeof(rump_msgbuf));
288 1.156 pooka aprint_verbose("%s%s", copyright, version);
289 1.148 pooka
290 1.187 pooka rump_intr_init(numcpu);
291 1.36 pooka
292 1.271 njoly rump_tsleep_init();
293 1.271 njoly
294 1.261 pooka rumpuser_mutex_init(&rump_giantlock, RUMPUSER_MTX_SPIN);
295 1.82 pooka ksyms_init();
296 1.174 pooka uvm_init();
297 1.100 pooka evcnt_init();
298 1.89 pooka
299 1.246 pgoyette kcpuset_sysinit();
300 1.89 pooka once_init();
301 1.181 pgoyette kernconfig_lock_init();
302 1.114 pooka prop_kern_init();
303 1.63 pooka
304 1.52 pooka kmem_init();
305 1.257 pooka kmeminit();
306 1.102 pooka
307 1.136 pooka uvm_ra_init();
308 1.185 pooka uao_init();
309 1.136 pooka
310 1.133 pooka mutex_obj_init();
311 1.143 pooka callout_startup();
312 1.133 pooka
313 1.81 pooka kprintf_init();
314 1.243 pgoyette pserialize_init();
315 1.81 pooka loginit();
316 1.52 pooka
317 1.59 pooka kauth_init();
318 1.59 pooka
319 1.238 jym secmodel_init();
320 1.283 pooka sysctl_init();
321 1.238 jym
322 1.240 njoly rnd_init();
323 1.282 pooka cprng_init();
324 1.237 tls kern_cprng = cprng_strong_create("kernel", IPL_VM,
325 1.282 pooka CPRNG_INIT_ANY|CPRNG_REKEY_ANY);
326 1.282 pooka rump_hyperentropy_init();
327 1.236 njoly
328 1.184 pooka procinit();
329 1.184 pooka proc0_init();
330 1.192 pooka uid_init();
331 1.192 pooka chgproccnt(0, 1);
332 1.184 pooka
333 1.178 pooka l->l_proc = &proc0;
334 1.184 pooka lwp_update_creds(l);
335 1.176 pooka
336 1.159 pooka lwpinit_specificdata();
337 1.176 pooka lwp_initspecific(&lwp0);
338 1.36 pooka
339 1.247 pooka rump_biglock_init();
340 1.247 pooka
341 1.186 pooka rump_scheduler_init(numcpu);
342 1.193 pooka /* revert temporary context and schedule a semireal context */
343 1.290 pooka rump_lwproc_curlwp_clear(l);
344 1.193 pooka initproc = &proc0; /* borrow proc0 before we get initproc started */
345 1.124 pooka rump_schedule();
346 1.255 pooka bootlwp = curlwp;
347 1.124 pooka
348 1.150 pooka percpu_init();
349 1.160 pooka inittimecounter();
350 1.160 pooka ntp_init();
351 1.160 pooka
352 1.280 pooka #ifdef KTRACE
353 1.278 pooka ktrinit();
354 1.280 pooka #endif
355 1.278 pooka
356 1.262 pooka ts = boottime;
357 1.160 pooka tc_setclock(&ts);
358 1.150 pooka
359 1.293 pooka extern krwlock_t exec_lock;
360 1.293 pooka rw_init(&exec_lock);
361 1.293 pooka
362 1.143 pooka /* we are mostly go. do per-cpu subsystem init */
363 1.186 pooka for (i = 0; i < numcpu; i++) {
364 1.143 pooka struct cpu_info *ci = cpu_lookup(i);
365 1.143 pooka
366 1.186 pooka /* attach non-bootstrap CPUs */
367 1.186 pooka if (i > 0) {
368 1.186 pooka rump_cpu_attach(ci);
369 1.186 pooka ncpu++;
370 1.186 pooka }
371 1.186 pooka
372 1.143 pooka callout_init_cpu(ci);
373 1.143 pooka softint_init(ci);
374 1.143 pooka xc_init_cpu(ci);
375 1.143 pooka pool_cache_cpu_init(ci);
376 1.143 pooka selsysinit(ci);
377 1.150 pooka percpu_init_cpu(ci);
378 1.182 pooka
379 1.216 pooka TAILQ_INIT(&ci->ci_data.cpu_ld_locks);
380 1.216 pooka __cpu_simple_lock_init(&ci->ci_data.cpu_ld_lock);
381 1.216 pooka
382 1.182 pooka aprint_verbose("cpu%d at thinair0: rump virtual cpu\n", i);
383 1.143 pooka }
384 1.43 pooka
385 1.256 pooka /* CPUs are up. allow kernel threads to run */
386 1.294 pooka rump_thread_allow(NULL);
387 1.256 pooka
388 1.282 pooka rnd_init_softint();
389 1.282 pooka
390 1.191 pooka mksysctls();
391 1.98 pooka kqueue_init();
392 1.72 pooka iostat_init();
393 1.43 pooka fd_sys_init();
394 1.44 ad module_init();
395 1.79 pooka devsw_init();
396 1.139 pooka pipe_init();
397 1.162 pooka resource_init();
398 1.224 pooka procinit_sysctl();
399 1.292 pooka time_init();
400 1.292 pooka time_init2();
401 1.1 pooka
402 1.175 pooka /* start page baroness */
403 1.175 pooka if (rump_threads) {
404 1.175 pooka if (kthread_create(PRI_PGDAEMON, KTHREAD_MPSAFE, NULL,
405 1.175 pooka uvm_pageout, NULL, &uvm.pagedaemon_lwp, "pdaemon") != 0)
406 1.175 pooka panic("pagedaemon create failed");
407 1.175 pooka } else
408 1.175 pooka uvm.pagedaemon_lwp = NULL; /* doesn't match curlwp */
409 1.175 pooka
410 1.175 pooka /* process dso's */
411 1.255 pooka rumpuser_dl_bootstrap(add_linkedin_modules,
412 1.255 pooka rump_kernelfsym_load, rump_component_load);
413 1.155 pooka
414 1.265 pooka rump_component_addlocal();
415 1.179 pooka rump_component_init(RUMP_COMPONENT_KERN);
416 1.179 pooka
417 1.249 pooka /* initialize factions, if present */
418 1.249 pooka rump_component_init(RUMP__FACTION_VFS);
419 1.249 pooka /* pnbuf_cache is used even without vfs */
420 1.249 pooka if (rump_component_count(RUMP__FACTION_VFS) == 0) {
421 1.249 pooka pnbuf_cache = pool_cache_init(MAXPATHLEN, 0, 0, 0, "pnbufpl",
422 1.249 pooka NULL, IPL_NONE, NULL, NULL, NULL);
423 1.249 pooka }
424 1.249 pooka rump_component_init(RUMP__FACTION_NET);
425 1.249 pooka rump_component_init(RUMP__FACTION_DEV);
426 1.249 pooka KASSERT(rump_component_count(RUMP__FACTION_VFS) <= 1
427 1.249 pooka && rump_component_count(RUMP__FACTION_NET) <= 1
428 1.249 pooka && rump_component_count(RUMP__FACTION_DEV) <= 1);
429 1.179 pooka
430 1.179 pooka rump_component_init(RUMP_COMPONENT_KERN_VFS);
431 1.179 pooka
432 1.218 pooka /*
433 1.218 pooka * if we initialized the tty component above, the tyttymtx is
434 1.218 pooka * now initialized. otherwise, we need to initialize it.
435 1.218 pooka */
436 1.218 pooka if (!rump_ttycomponent)
437 1.218 pooka mutex_init(&tty_lock, MUTEX_DEFAULT, IPL_VM);
438 1.218 pooka
439 1.112 pooka cold = 0;
440 1.31 pooka
441 1.14 pooka /* aieeeedondest */
442 1.54 pooka if (rump_threads) {
443 1.54 pooka if (workqueue_create(&uvm.aiodone_queue, "aiodoned",
444 1.110 pooka rump_aiodone_worker, NULL, 0, 0, WQ_MPSAFE))
445 1.54 pooka panic("aiodoned");
446 1.54 pooka }
447 1.14 pooka
448 1.115 pooka sysctl_finalize();
449 1.115 pooka
450 1.155 pooka module_init_class(MODULE_CLASS_ANY);
451 1.140 pooka
452 1.264 pooka if (rumpuser_getparam(RUMPUSER_PARAM_HOSTNAME,
453 1.264 pooka hostname, MAXHOSTNAMELEN) != 0) {
454 1.264 pooka panic("mandatory hypervisor configuration (HOSTNAME) missing");
455 1.264 pooka }
456 1.1 pooka hostnamelen = strlen(hostname);
457 1.24 pooka
458 1.24 pooka sigemptyset(&sigcantmask);
459 1.27 pooka
460 1.89 pooka if (rump_threads)
461 1.89 pooka vmem_rehash_start();
462 1.89 pooka
463 1.193 pooka /*
464 1.274 pooka * Create init (proc 1), used to attach implicit threads in rump.
465 1.193 pooka * (note: must be done after vfsinit to get cwdi)
466 1.193 pooka */
467 1.274 pooka initlwp = rump__lwproc_alloclwp(NULL);
468 1.193 pooka mutex_enter(proc_lock);
469 1.193 pooka initproc = proc_find_raw(1);
470 1.193 pooka mutex_exit(proc_lock);
471 1.193 pooka if (initproc == NULL)
472 1.193 pooka panic("where in the world is initproc?");
473 1.193 pooka
474 1.213 pooka /*
475 1.213 pooka * Adjust syscall vector in case factions were dlopen()'d
476 1.213 pooka * before calling rump_init().
477 1.213 pooka * (modules will handle dynamic syscalls the usual way)
478 1.213 pooka *
479 1.213 pooka * Note: this will adjust the function vectors of
480 1.213 pooka * syscalls which use a funcalias (getpid etc.), but
481 1.213 pooka * it makes no difference.
482 1.213 pooka */
483 1.213 pooka for (i = 0; i < SYS_NSYSENT; i++) {
484 1.213 pooka void *sym;
485 1.213 pooka
486 1.213 pooka if (rump_sysent[i].sy_flags & SYCALL_NOSYS ||
487 1.213 pooka *syscallnames[i] == '#' ||
488 1.213 pooka rump_sysent[i].sy_call == sys_nomodule)
489 1.213 pooka continue;
490 1.213 pooka
491 1.222 pooka /*
492 1.222 pooka * deal with compat wrappers. makesyscalls.sh should
493 1.222 pooka * generate the necessary info instead of this hack,
494 1.222 pooka * though. ugly, fix it later.
495 1.222 pooka */
496 1.222 pooka #define CPFX "compat_"
497 1.222 pooka #define CPFXLEN (sizeof(CPFX)-1)
498 1.222 pooka if (strncmp(syscallnames[i], CPFX, CPFXLEN) == 0) {
499 1.222 pooka const char *p = syscallnames[i] + CPFXLEN;
500 1.222 pooka size_t namelen;
501 1.222 pooka
502 1.222 pooka /* skip version number */
503 1.222 pooka while (*p >= '0' && *p <= '9')
504 1.222 pooka p++;
505 1.222 pooka if (p == syscallnames[i] + CPFXLEN || *p != '_')
506 1.222 pooka panic("invalid syscall name %s\n",
507 1.222 pooka syscallnames[i]);
508 1.222 pooka
509 1.222 pooka /* skip over the next underscore */
510 1.222 pooka p++;
511 1.222 pooka namelen = p + (sizeof("rumpns_")-1) - syscallnames[i];
512 1.222 pooka
513 1.222 pooka strcpy(buf, "rumpns_");
514 1.222 pooka strcat(buf, syscallnames[i]);
515 1.222 pooka /* XXX: no strncat in the kernel */
516 1.222 pooka strcpy(buf+namelen, "sys_");
517 1.222 pooka strcat(buf, p);
518 1.222 pooka #undef CPFX
519 1.222 pooka #undef CPFXLEN
520 1.222 pooka } else {
521 1.291 christos snprintf(buf, sizeof(buf), "rumpns_sys_%s",
522 1.291 christos syscallnames[i]);
523 1.222 pooka }
524 1.213 pooka if ((sym = rumpuser_dl_globalsym(buf)) != NULL
525 1.213 pooka && sym != rump_sysent[i].sy_call) {
526 1.213 pooka #if 0
527 1.213 pooka rumpuser_dprintf("adjusting %s: %p (old %p)\n",
528 1.213 pooka syscallnames[i], sym, rump_sysent[i].sy_call);
529 1.213 pooka #endif
530 1.213 pooka rump_sysent[i].sy_call = sym;
531 1.213 pooka }
532 1.213 pooka }
533 1.213 pooka
534 1.250 pooka rump_component_init(RUMP_COMPONENT_POSTINIT);
535 1.249 pooka
536 1.274 pooka /* component inits done */
537 1.274 pooka bootlwp = NULL;
538 1.274 pooka
539 1.274 pooka /* open 0/1/2 for init */
540 1.275 pooka KASSERT(rump_lwproc_curlwp() == NULL);
541 1.274 pooka rump_lwproc_switch(initlwp);
542 1.274 pooka rump_consdev_init();
543 1.275 pooka rump_lwproc_switch(NULL);
544 1.274 pooka
545 1.193 pooka /* release cpu */
546 1.124 pooka rump_unschedule();
547 1.116 pooka
548 1.2 pooka return 0;
549 1.2 pooka }
550 1.259 pooka /* historic compat */
551 1.259 pooka __strong_alias(rump__init,rump_init);
552 1.2 pooka
553 1.207 pooka int
554 1.207 pooka rump_init_server(const char *url)
555 1.207 pooka {
556 1.207 pooka
557 1.263 pooka return rumpuser_sp_init(url, ostype, osrelease, MACHINE);
558 1.207 pooka }
559 1.207 pooka
560 1.121 pooka void
561 1.203 pooka cpu_reboot(int howto, char *bootstr)
562 1.121 pooka {
563 1.209 pooka int ruhow = 0;
564 1.220 pooka void *finiarg;
565 1.209 pooka
566 1.209 pooka printf("rump kernel halting...\n");
567 1.220 pooka
568 1.220 pooka if (!RUMP_LOCALPROC_P(curproc))
569 1.220 pooka finiarg = curproc->p_vmspace->vm_map.pmap;
570 1.220 pooka else
571 1.220 pooka finiarg = NULL;
572 1.121 pooka
573 1.121 pooka /* dump means we really take the dive here */
574 1.121 pooka if ((howto & RB_DUMP) || panicstr) {
575 1.209 pooka ruhow = RUMPUSER_PANIC;
576 1.209 pooka goto out;
577 1.121 pooka }
578 1.121 pooka
579 1.121 pooka /* try to sync */
580 1.121 pooka if (!((howto & RB_NOSYNC) || panicstr)) {
581 1.249 pooka if (rump_vfs_fini)
582 1.249 pooka rump_vfs_fini();
583 1.121 pooka }
584 1.121 pooka
585 1.270 pooka doshutdownhooks();
586 1.270 pooka
587 1.121 pooka /* your wish is my command */
588 1.121 pooka if (howto & RB_HALT) {
589 1.203 pooka printf("rump kernel halted\n");
590 1.227 bouyer rumpuser_sp_fini(finiarg);
591 1.121 pooka for (;;) {
592 1.266 pooka rumpuser_clock_sleep(RUMPUSER_CLOCK_RELWALL, 10, 0);
593 1.121 pooka }
594 1.121 pooka }
595 1.203 pooka
596 1.203 pooka /* this function is __dead, we must exit */
597 1.209 pooka out:
598 1.209 pooka printf("halted\n");
599 1.227 bouyer rumpuser_sp_fini(finiarg);
600 1.209 pooka rumpuser_exit(ruhow);
601 1.121 pooka }
602 1.121 pooka
603 1.8 pooka struct uio *
604 1.123 pooka rump_uio_setup(void *buf, size_t bufsize, off_t offset, enum rump_uiorw rw)
605 1.8 pooka {
606 1.8 pooka struct uio *uio;
607 1.8 pooka enum uio_rw uiorw;
608 1.8 pooka
609 1.8 pooka switch (rw) {
610 1.8 pooka case RUMPUIO_READ:
611 1.8 pooka uiorw = UIO_READ;
612 1.8 pooka break;
613 1.8 pooka case RUMPUIO_WRITE:
614 1.8 pooka uiorw = UIO_WRITE;
615 1.8 pooka break;
616 1.11 pooka default:
617 1.11 pooka panic("%s: invalid rw %d", __func__, rw);
618 1.8 pooka }
619 1.8 pooka
620 1.28 pooka uio = kmem_alloc(sizeof(struct uio), KM_SLEEP);
621 1.28 pooka uio->uio_iov = kmem_alloc(sizeof(struct iovec), KM_SLEEP);
622 1.8 pooka
623 1.8 pooka uio->uio_iov->iov_base = buf;
624 1.8 pooka uio->uio_iov->iov_len = bufsize;
625 1.8 pooka
626 1.8 pooka uio->uio_iovcnt = 1;
627 1.8 pooka uio->uio_offset = offset;
628 1.8 pooka uio->uio_resid = bufsize;
629 1.8 pooka uio->uio_rw = uiorw;
630 1.198 pooka UIO_SETUP_SYSSPACE(uio);
631 1.8 pooka
632 1.8 pooka return uio;
633 1.8 pooka }
634 1.8 pooka
635 1.8 pooka size_t
636 1.123 pooka rump_uio_getresid(struct uio *uio)
637 1.8 pooka {
638 1.8 pooka
639 1.8 pooka return uio->uio_resid;
640 1.8 pooka }
641 1.8 pooka
642 1.8 pooka off_t
643 1.123 pooka rump_uio_getoff(struct uio *uio)
644 1.8 pooka {
645 1.8 pooka
646 1.8 pooka return uio->uio_offset;
647 1.8 pooka }
648 1.8 pooka
649 1.8 pooka size_t
650 1.123 pooka rump_uio_free(struct uio *uio)
651 1.8 pooka {
652 1.8 pooka size_t resid;
653 1.8 pooka
654 1.8 pooka resid = uio->uio_resid;
655 1.28 pooka kmem_free(uio->uio_iov, sizeof(*uio->uio_iov));
656 1.28 pooka kmem_free(uio, sizeof(*uio));
657 1.8 pooka
658 1.8 pooka return resid;
659 1.8 pooka }
660 1.8 pooka
661 1.59 pooka kauth_cred_t
662 1.123 pooka rump_cred_create(uid_t uid, gid_t gid, size_t ngroups, gid_t *groups)
663 1.59 pooka {
664 1.59 pooka kauth_cred_t cred;
665 1.59 pooka int rv;
666 1.59 pooka
667 1.59 pooka cred = kauth_cred_alloc();
668 1.59 pooka kauth_cred_setuid(cred, uid);
669 1.59 pooka kauth_cred_seteuid(cred, uid);
670 1.59 pooka kauth_cred_setsvuid(cred, uid);
671 1.59 pooka kauth_cred_setgid(cred, gid);
672 1.59 pooka kauth_cred_setgid(cred, gid);
673 1.59 pooka kauth_cred_setegid(cred, gid);
674 1.59 pooka kauth_cred_setsvgid(cred, gid);
675 1.59 pooka rv = kauth_cred_setgroups(cred, groups, ngroups, 0, UIO_SYSSPACE);
676 1.59 pooka /* oh this is silly. and by "this" I mean kauth_cred_setgroups() */
677 1.59 pooka assert(rv == 0);
678 1.59 pooka
679 1.59 pooka return cred;
680 1.59 pooka }
681 1.59 pooka
682 1.59 pooka void
683 1.123 pooka rump_cred_put(kauth_cred_t cred)
684 1.59 pooka {
685 1.59 pooka
686 1.59 pooka kauth_cred_free(cred);
687 1.59 pooka }
688 1.59 pooka
689 1.154 pooka static int compcounter[RUMP_COMPONENT_MAX];
690 1.248 pooka static int compinited[RUMP_COMPONENT_MAX];
691 1.154 pooka
692 1.255 pooka /*
693 1.255 pooka * Yea, this is O(n^2), but we're only looking at a handful of components.
694 1.255 pooka * Components are always initialized from the thread that called rump_init().
695 1.255 pooka */
696 1.295 pooka static LIST_HEAD(, rump_component) rchead = LIST_HEAD_INITIALIZER(rchead);
697 1.255 pooka
698 1.296 pooka #ifdef RUMP_USE_CTOR
699 1.296 pooka struct modinfo_boot_chain modinfo_boot_chain \
700 1.296 pooka = LIST_HEAD_INITIALIZER(modinfo_boot_chain);
701 1.296 pooka
702 1.296 pooka static void
703 1.296 pooka rump_component_addlocal(void)
704 1.296 pooka {
705 1.296 pooka struct modinfo_chain *mc;
706 1.296 pooka
707 1.296 pooka while ((mc = LIST_FIRST(&modinfo_boot_chain)) != NULL) {
708 1.296 pooka LIST_REMOVE(mc, mc_entries);
709 1.296 pooka module_builtin_add(&mc->mc_info, 1, false);
710 1.296 pooka }
711 1.296 pooka }
712 1.296 pooka
713 1.296 pooka #else /* RUMP_USE_CTOR */
714 1.296 pooka
715 1.265 pooka static void
716 1.265 pooka rump_component_addlocal(void)
717 1.265 pooka {
718 1.265 pooka __link_set_decl(rump_components, struct rump_component);
719 1.265 pooka struct rump_component *const *rc;
720 1.265 pooka
721 1.265 pooka __link_set_foreach(rc, rump_components) {
722 1.265 pooka rump_component_load(*rc);
723 1.265 pooka }
724 1.265 pooka }
725 1.296 pooka #endif /* RUMP_USE_CTOR */
726 1.265 pooka
727 1.296 pooka void
728 1.295 pooka rump_component_load(const struct rump_component *rc_const)
729 1.154 pooka {
730 1.295 pooka struct rump_component *rc, *rc_iter;
731 1.295 pooka
732 1.295 pooka /*
733 1.295 pooka * XXX: this is ok since the "const" was removed from the
734 1.295 pooka * definition of RUMP_COMPONENT().
735 1.295 pooka *
736 1.295 pooka * However, to preserve the hypercall interface, the const
737 1.295 pooka * remains here. This can be fixed in the next hypercall revision.
738 1.295 pooka */
739 1.295 pooka rc = __UNCONST(rc_const);
740 1.154 pooka
741 1.255 pooka KASSERT(curlwp == bootlwp);
742 1.248 pooka
743 1.295 pooka LIST_FOREACH(rc_iter, &rchead, rc_entries) {
744 1.295 pooka if (rc_iter == rc)
745 1.255 pooka return;
746 1.154 pooka }
747 1.255 pooka
748 1.295 pooka LIST_INSERT_HEAD(&rchead, rc, rc_entries);
749 1.255 pooka KASSERT(rc->rc_type < RUMP_COMPONENT_MAX);
750 1.255 pooka compcounter[rc->rc_type]++;
751 1.154 pooka }
752 1.154 pooka
753 1.154 pooka int
754 1.154 pooka rump_component_count(enum rump_component_type type)
755 1.154 pooka {
756 1.154 pooka
757 1.255 pooka KASSERT(curlwp == bootlwp);
758 1.255 pooka KASSERT(type < RUMP_COMPONENT_MAX);
759 1.154 pooka return compcounter[type];
760 1.154 pooka }
761 1.154 pooka
762 1.154 pooka void
763 1.154 pooka rump_component_init(enum rump_component_type type)
764 1.154 pooka {
765 1.296 pooka const struct rump_component *rc, *rc_safe;
766 1.154 pooka
767 1.255 pooka KASSERT(curlwp == bootlwp);
768 1.248 pooka KASSERT(!compinited[type]);
769 1.296 pooka LIST_FOREACH_SAFE(rc, &rchead, rc_entries, rc_safe) {
770 1.296 pooka if (rc->rc_type == type) {
771 1.255 pooka rc->rc_init();
772 1.296 pooka LIST_REMOVE(rc, rc_entries);
773 1.296 pooka }
774 1.255 pooka }
775 1.248 pooka compinited[type] = 1;
776 1.154 pooka }
777 1.154 pooka
778 1.155 pooka /*
779 1.155 pooka * Initialize a module which has already been loaded and linked
780 1.155 pooka * with dlopen(). This is fundamentally the same as a builtin module.
781 1.296 pooka *
782 1.296 pooka * XXX: this interface does not really work in the RUMP_USE_CTOR case,
783 1.296 pooka * but I'm not sure it's anything to cry about. In feeling blue,
784 1.296 pooka * things could somehow be handled via modinfo_boot_chain.
785 1.155 pooka */
786 1.76 pooka int
787 1.155 pooka rump_module_init(const struct modinfo * const *mip, size_t nmodinfo)
788 1.76 pooka {
789 1.76 pooka
790 1.155 pooka return module_builtin_add(mip, nmodinfo, true);
791 1.106 pooka }
792 1.106 pooka
793 1.155 pooka /*
794 1.155 pooka * Finish module (flawless victory, fatality!).
795 1.155 pooka */
796 1.106 pooka int
797 1.155 pooka rump_module_fini(const struct modinfo *mi)
798 1.106 pooka {
799 1.120 pooka
800 1.155 pooka return module_builtin_remove(mi, true);
801 1.155 pooka }
802 1.155 pooka
803 1.155 pooka /*
804 1.155 pooka * Add loaded and linked module to the builtin list. It will
805 1.155 pooka * later be initialized with module_init_class().
806 1.155 pooka */
807 1.155 pooka
808 1.155 pooka static void
809 1.155 pooka add_linkedin_modules(const struct modinfo * const *mip, size_t nmodinfo)
810 1.155 pooka {
811 1.106 pooka
812 1.155 pooka module_builtin_add(mip, nmodinfo, false);
813 1.76 pooka }
814 1.76 pooka
815 1.137 pooka int
816 1.137 pooka rump_kernelfsym_load(void *symtab, uint64_t symsize,
817 1.137 pooka char *strtab, uint64_t strsize)
818 1.137 pooka {
819 1.137 pooka static int inited = 0;
820 1.137 pooka Elf64_Ehdr ehdr;
821 1.137 pooka
822 1.137 pooka if (inited)
823 1.137 pooka return EBUSY;
824 1.137 pooka inited = 1;
825 1.137 pooka
826 1.137 pooka /*
827 1.137 pooka * Use 64bit header since it's bigger. Shouldn't make a
828 1.137 pooka * difference, since we're passing in all zeroes anyway.
829 1.137 pooka */
830 1.137 pooka memset(&ehdr, 0, sizeof(ehdr));
831 1.137 pooka ksyms_addsyms_explicit(&ehdr, symtab, symsize, strtab, strsize);
832 1.137 pooka
833 1.137 pooka return 0;
834 1.137 pooka }
835 1.137 pooka
836 1.199 pooka static int
837 1.263 pooka rump_hyp_syscall(int num, void *arg, long *retval)
838 1.95 pooka {
839 1.260 pooka register_t regrv[2] = {0, 0};
840 1.95 pooka struct lwp *l;
841 1.95 pooka struct sysent *callp;
842 1.124 pooka int rv;
843 1.95 pooka
844 1.95 pooka if (__predict_false(num >= SYS_NSYSENT))
845 1.95 pooka return ENOSYS;
846 1.95 pooka
847 1.281 pooka /* XXX: always uses native syscall vector */
848 1.95 pooka callp = rump_sysent + num;
849 1.125 pooka l = curlwp;
850 1.277 pooka rv = sy_invoke(callp, l, (void *)arg, regrv, num);
851 1.260 pooka retval[0] = regrv[0];
852 1.260 pooka retval[1] = regrv[1];
853 1.191 pooka
854 1.191 pooka return rv;
855 1.191 pooka }
856 1.191 pooka
857 1.206 pooka static int
858 1.263 pooka rump_hyp_rfork(void *priv, int flags, const char *comm)
859 1.206 pooka {
860 1.206 pooka struct vmspace *newspace;
861 1.226 pooka struct proc *p;
862 1.206 pooka int error;
863 1.206 pooka
864 1.214 pooka if ((error = rump_lwproc_rfork(flags)) != 0)
865 1.206 pooka return error;
866 1.206 pooka
867 1.206 pooka /*
868 1.206 pooka * Since it's a proxy proc, adjust the vmspace.
869 1.206 pooka * Refcount will eternally be 1.
870 1.206 pooka */
871 1.226 pooka p = curproc;
872 1.229 pooka newspace = kmem_zalloc(sizeof(*newspace), KM_SLEEP);
873 1.206 pooka newspace->vm_refcnt = 1;
874 1.206 pooka newspace->vm_map.pmap = priv;
875 1.226 pooka KASSERT(p->p_vmspace == vmspace_kernel());
876 1.226 pooka p->p_vmspace = newspace;
877 1.226 pooka if (comm)
878 1.226 pooka strlcpy(p->p_comm, comm, sizeof(p->p_comm));
879 1.206 pooka
880 1.206 pooka return 0;
881 1.206 pooka }
882 1.206 pooka
883 1.232 pooka /*
884 1.232 pooka * Order all lwps in a process to exit. does *not* wait for them to drain.
885 1.232 pooka */
886 1.219 pooka static void
887 1.263 pooka rump_hyp_lwpexit(void)
888 1.219 pooka {
889 1.219 pooka struct proc *p = curproc;
890 1.219 pooka uint64_t where;
891 1.219 pooka struct lwp *l;
892 1.219 pooka
893 1.219 pooka mutex_enter(p->p_lock);
894 1.219 pooka /*
895 1.232 pooka * First pass: mark all lwps in the process with LW_RUMP_QEXIT
896 1.219 pooka * so that they know they should exit.
897 1.219 pooka */
898 1.219 pooka LIST_FOREACH(l, &p->p_lwps, l_sibling) {
899 1.219 pooka if (l == curlwp)
900 1.219 pooka continue;
901 1.232 pooka l->l_flag |= LW_RUMP_QEXIT;
902 1.219 pooka }
903 1.219 pooka mutex_exit(p->p_lock);
904 1.219 pooka
905 1.219 pooka /*
906 1.219 pooka * Next, make sure everyone on all CPUs sees our status
907 1.219 pooka * update. This keeps threads inside cv_wait() and makes
908 1.219 pooka * sure we don't access a stale cv pointer later when
909 1.219 pooka * we wake up the threads.
910 1.219 pooka */
911 1.219 pooka
912 1.219 pooka where = xc_broadcast(0, (xcfunc_t)nullop, NULL, NULL);
913 1.219 pooka xc_wait(where);
914 1.219 pooka
915 1.219 pooka /*
916 1.219 pooka * Ok, all lwps are either:
917 1.219 pooka * 1) not in the cv code
918 1.219 pooka * 2) sleeping on l->l_private
919 1.219 pooka * 3) sleeping on p->p_waitcv
920 1.219 pooka *
921 1.232 pooka * Either way, l_private is stable until we set PS_RUMP_LWPEXIT
922 1.232 pooka * in p->p_sflag.
923 1.219 pooka */
924 1.219 pooka
925 1.219 pooka mutex_enter(p->p_lock);
926 1.219 pooka LIST_FOREACH(l, &p->p_lwps, l_sibling) {
927 1.219 pooka if (l->l_private)
928 1.219 pooka cv_broadcast(l->l_private);
929 1.219 pooka }
930 1.232 pooka p->p_sflag |= PS_RUMP_LWPEXIT;
931 1.219 pooka cv_broadcast(&p->p_waitcv);
932 1.219 pooka mutex_exit(p->p_lock);
933 1.232 pooka }
934 1.219 pooka
935 1.232 pooka /*
936 1.232 pooka * Notify process that all threads have been drained and exec is complete.
937 1.232 pooka */
938 1.232 pooka static void
939 1.263 pooka rump_hyp_execnotify(const char *comm)
940 1.232 pooka {
941 1.232 pooka struct proc *p = curproc;
942 1.232 pooka
943 1.232 pooka fd_closeexec();
944 1.232 pooka mutex_enter(p->p_lock);
945 1.232 pooka KASSERT(p->p_nlwps == 1 && p->p_sflag & PS_RUMP_LWPEXIT);
946 1.232 pooka p->p_sflag &= ~PS_RUMP_LWPEXIT;
947 1.232 pooka mutex_exit(p->p_lock);
948 1.232 pooka strlcpy(p->p_comm, comm, sizeof(p->p_comm));
949 1.219 pooka }
950 1.219 pooka
951 1.191 pooka int
952 1.130 pooka rump_boot_gethowto()
953 1.130 pooka {
954 1.130 pooka
955 1.130 pooka return boothowto;
956 1.130 pooka }
957 1.130 pooka
958 1.130 pooka void
959 1.130 pooka rump_boot_sethowto(int howto)
960 1.130 pooka {
961 1.130 pooka
962 1.130 pooka boothowto = howto;
963 1.130 pooka }
964 1.130 pooka
965 1.109 pooka int
966 1.124 pooka rump_getversion(void)
967 1.109 pooka {
968 1.109 pooka
969 1.109 pooka return __NetBSD_Version__;
970 1.109 pooka }
971 1.289 pooka /* compat */
972 1.289 pooka __strong_alias(rump_pub_getversion,rump_getversion);
973 1.170 pooka
974 1.288 pooka int
975 1.288 pooka rump_nativeabi_p(void)
976 1.288 pooka {
977 1.288 pooka
978 1.288 pooka #ifdef _RUMP_NATIVE_ABI
979 1.288 pooka return 1;
980 1.288 pooka #else
981 1.288 pooka return 0;
982 1.288 pooka #endif
983 1.288 pooka }
984 1.288 pooka
985 1.170 pooka /*
986 1.170 pooka * Note: may be called unscheduled. Not fully safe since no locking
987 1.170 pooka * of allevents (currently that's not even available).
988 1.170 pooka */
989 1.170 pooka void
990 1.170 pooka rump_printevcnts()
991 1.170 pooka {
992 1.170 pooka struct evcnt *ev;
993 1.170 pooka
994 1.170 pooka TAILQ_FOREACH(ev, &allevents, ev_list)
995 1.170 pooka rumpuser_dprintf("%s / %s: %" PRIu64 "\n",
996 1.170 pooka ev->ev_group, ev->ev_name, ev->ev_count);
997 1.170 pooka }
998 1.184 pooka
999 1.184 pooka /*
1000 1.184 pooka * If you use this interface ... well ... all bets are off.
1001 1.184 pooka * The original purpose is for the p2k fs server library to be
1002 1.184 pooka * able to use the same pid/lid for VOPs as the host kernel.
1003 1.184 pooka */
1004 1.184 pooka void
1005 1.184 pooka rump_allbetsareoff_setid(pid_t pid, int lid)
1006 1.184 pooka {
1007 1.184 pooka struct lwp *l = curlwp;
1008 1.184 pooka struct proc *p = l->l_proc;
1009 1.184 pooka
1010 1.184 pooka l->l_lid = lid;
1011 1.184 pooka p->p_pid = pid;
1012 1.184 pooka }
1013 1.251 martin
1014 1.251 martin #include <sys/pserialize.h>
1015 1.251 martin
1016 1.251 martin static void
1017 1.251 martin ipiemu(void *a1, void *a2)
1018 1.251 martin {
1019 1.251 martin
1020 1.251 martin xc__highpri_intr(NULL);
1021 1.251 martin pserialize_switchpoint();
1022 1.251 martin }
1023 1.251 martin
1024 1.251 martin void
1025 1.251 martin rump_xc_highpri(struct cpu_info *ci)
1026 1.251 martin {
1027 1.251 martin
1028 1.251 martin if (ci)
1029 1.251 martin xc_unicast(0, ipiemu, NULL, NULL, ci);
1030 1.251 martin else
1031 1.251 martin xc_broadcast(0, ipiemu, NULL, NULL);
1032 1.251 martin }
1033 1.272 pooka
1034 1.272 pooka int
1035 1.272 pooka rump_syscall(int num, void *data, size_t dlen, register_t *retval)
1036 1.272 pooka {
1037 1.272 pooka struct proc *p;
1038 1.272 pooka struct emul *e;
1039 1.272 pooka struct sysent *callp;
1040 1.281 pooka const int *etrans = NULL;
1041 1.272 pooka int rv;
1042 1.272 pooka
1043 1.272 pooka rump_schedule();
1044 1.272 pooka p = curproc;
1045 1.272 pooka e = p->p_emul;
1046 1.272 pooka #ifndef __HAVE_MINIMAL_EMUL
1047 1.272 pooka KASSERT(num > 0 && num < e->e_nsysent);
1048 1.272 pooka #endif
1049 1.272 pooka callp = e->e_sysent + num;
1050 1.272 pooka
1051 1.277 pooka rv = sy_invoke(callp, curlwp, data, retval, num);
1052 1.281 pooka
1053 1.281 pooka /*
1054 1.281 pooka * I hope that (!__HAVE_MINIMAL_EMUL || __HAVE_SYSCALL_INTERN) is
1055 1.281 pooka * an invariant ...
1056 1.281 pooka */
1057 1.281 pooka #if !defined(__HAVE_MINIMAL_EMUL)
1058 1.281 pooka etrans = e->e_errno;
1059 1.281 pooka #elif defined(__HAVE_SYSCALL_INTERN)
1060 1.281 pooka etrans = p->p_emuldata;
1061 1.281 pooka #endif
1062 1.281 pooka
1063 1.281 pooka if (etrans) {
1064 1.281 pooka rv = etrans[rv];
1065 1.281 pooka /*
1066 1.281 pooka * XXX: small hack since Linux etrans vectors on some
1067 1.281 pooka * archs contain negative errnos, but rump_syscalls
1068 1.281 pooka * uses the -1 + errno ABI. Note that these
1069 1.281 pooka * negative values are always the result of translation,
1070 1.281 pooka * otherwise the above translation method would not
1071 1.281 pooka * work very well.
1072 1.281 pooka */
1073 1.281 pooka if (rv < 0)
1074 1.281 pooka rv = -rv;
1075 1.281 pooka }
1076 1.272 pooka rump_unschedule();
1077 1.272 pooka
1078 1.272 pooka return rv;
1079 1.272 pooka }
1080 1.292 pooka
1081 1.292 pooka /*
1082 1.292 pooka * Temporary notification that rumpkern_time is obsolete. This is to
1083 1.292 pooka * be removed along with obsoleting rumpkern_time in a few months.
1084 1.292 pooka */
1085 1.292 pooka #define RUMPKERN_TIME_WARN "rumpkern_time is obsolete, functionality in librump"
1086 1.292 pooka __warn_references(rumpkern_time_is_obsolete,RUMPKERN_TIME_WARN)
1087 1.292 pooka void rumpkern_time_is_obsolete(void);
1088 1.292 pooka void
1089 1.292 pooka rumpkern_time_is_obsolete(void)
1090 1.292 pooka {
1091 1.292 pooka printf("WARNING: %s\n", RUMPKERN_TIME_WARN);
1092 1.292 pooka }
1093