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rump.c revision 1.228
      1 /*	$NetBSD: rump.c,v 1.228 2011/02/03 11:01:51 pooka Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 2007 Antti Kantee.  All Rights Reserved.
      5  *
      6  * Development of this software was supported by Google Summer of Code.
      7  *
      8  * Redistribution and use in source and binary forms, with or without
      9  * modification, are permitted provided that the following conditions
     10  * are met:
     11  * 1. Redistributions of source code must retain the above copyright
     12  *    notice, this list of conditions and the following disclaimer.
     13  * 2. Redistributions in binary form must reproduce the above copyright
     14  *    notice, this list of conditions and the following disclaimer in the
     15  *    documentation and/or other materials provided with the distribution.
     16  *
     17  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     18  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     19  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     20  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     21  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     22  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     23  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     24  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     25  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     26  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     27  * SUCH DAMAGE.
     28  */
     29 
     30 #include <sys/cdefs.h>
     31 __KERNEL_RCSID(0, "$NetBSD: rump.c,v 1.228 2011/02/03 11:01:51 pooka Exp $");
     32 
     33 #include <sys/systm.h>
     34 #define ELFSIZE ARCH_ELFSIZE
     35 
     36 #include <sys/param.h>
     37 #include <sys/atomic.h>
     38 #include <sys/buf.h>
     39 #include <sys/callout.h>
     40 #include <sys/conf.h>
     41 #include <sys/cpu.h>
     42 #include <sys/device.h>
     43 #include <sys/evcnt.h>
     44 #include <sys/event.h>
     45 #include <sys/exec_elf.h>
     46 #include <sys/filedesc.h>
     47 #include <sys/iostat.h>
     48 #include <sys/kauth.h>
     49 #include <sys/kernel.h>
     50 #include <sys/kmem.h>
     51 #include <sys/kprintf.h>
     52 #include <sys/kthread.h>
     53 #include <sys/ksyms.h>
     54 #include <sys/msgbuf.h>
     55 #include <sys/module.h>
     56 #include <sys/once.h>
     57 #include <sys/percpu.h>
     58 #include <sys/pipe.h>
     59 #include <sys/pool.h>
     60 #include <sys/queue.h>
     61 #include <sys/reboot.h>
     62 #include <sys/resourcevar.h>
     63 #include <sys/select.h>
     64 #include <sys/sysctl.h>
     65 #include <sys/syscall.h>
     66 #include <sys/syscallvar.h>
     67 #include <sys/timetc.h>
     68 #include <sys/tty.h>
     69 #include <sys/uidinfo.h>
     70 #include <sys/vmem.h>
     71 #include <sys/xcall.h>
     72 #include <sys/simplelock.h>
     73 
     74 #include <rump/rumpuser.h>
     75 
     76 #include <secmodel/suser/suser.h>
     77 
     78 #include <prop/proplib.h>
     79 
     80 #include <uvm/uvm_extern.h>
     81 #include <uvm/uvm_readahead.h>
     82 
     83 #include "rump_private.h"
     84 #include "rump_net_private.h"
     85 #include "rump_vfs_private.h"
     86 #include "rump_dev_private.h"
     87 
     88 char machine[] = MACHINE;
     89 
     90 struct proc *initproc;
     91 
     92 struct device rump_rootdev = {
     93 	.dv_class = DV_VIRTUAL
     94 };
     95 
     96 #ifdef RUMP_WITHOUT_THREADS
     97 int rump_threads = 0;
     98 #else
     99 int rump_threads = 1;
    100 #endif
    101 
    102 static int rump_proxy_syscall(int, void *, register_t *);
    103 static int rump_proxy_rfork(void *, int, const char *);
    104 static void rump_proxy_procexit(void);
    105 
    106 static char rump_msgbuf[16*1024]; /* 16k should be enough for std rump needs */
    107 
    108 #ifdef LOCKDEBUG
    109 const int rump_lockdebug = 1;
    110 #else
    111 const int rump_lockdebug = 0;
    112 #endif
    113 bool rump_ttycomponent = false;
    114 
    115 static void
    116 rump_aiodone_worker(struct work *wk, void *dummy)
    117 {
    118 	struct buf *bp = (struct buf *)wk;
    119 
    120 	KASSERT(&bp->b_work == wk);
    121 	bp->b_iodone(bp);
    122 }
    123 
    124 static int rump_inited;
    125 
    126 /*
    127  * Make sure pnbuf_cache is available even without vfs
    128  */
    129 struct pool_cache *pnbuf_cache;
    130 int rump_initpnbufpool(void);
    131 int rump_initpnbufpool(void)
    132 {
    133 
    134         pnbuf_cache = pool_cache_init(MAXPATHLEN, 0, 0, 0, "pnbufpl",
    135 	    NULL, IPL_NONE, NULL, NULL, NULL);
    136 	return EOPNOTSUPP;
    137 }
    138 
    139 int rump__unavailable(void);
    140 int rump__unavailable() {return EOPNOTSUPP;}
    141 __weak_alias(rump_net_init,rump__unavailable);
    142 __weak_alias(rump_vfs_init,rump_initpnbufpool);
    143 __weak_alias(rump_dev_init,rump__unavailable);
    144 
    145 __weak_alias(rump_vfs_fini,rump__unavailable);
    146 
    147 __weak_alias(biodone,rump__unavailable);
    148 __weak_alias(sopoll,rump__unavailable);
    149 
    150 __weak_alias(rump_vfs_drainbufs,rump__unavailable);
    151 
    152 void rump__unavailable_vfs_panic(void);
    153 void rump__unavailable_vfs_panic() {panic("vfs component not available");}
    154 __weak_alias(usermount_common_policy,rump__unavailable_vfs_panic);
    155 
    156 /* easier to write vfs-less clients */
    157 __weak_alias(rump_pub_etfs_register,rump__unavailable);
    158 __weak_alias(rump_pub_etfs_register_withsize,rump__unavailable);
    159 __weak_alias(rump_pub_etfs_remove,rump__unavailable);
    160 
    161 rump_proc_vfs_init_fn rump_proc_vfs_init;
    162 rump_proc_vfs_release_fn rump_proc_vfs_release;
    163 
    164 static void add_linkedin_modules(const struct modinfo *const *, size_t);
    165 
    166 static void __noinline
    167 messthestack(void)
    168 {
    169 	volatile uint32_t mess[64];
    170 	uint64_t d1, d2;
    171 	int i, error;
    172 
    173 	for (i = 0; i < 64; i++) {
    174 		rumpuser_gettime(&d1, &d2, &error);
    175 		mess[i] = d2;
    176 	}
    177 }
    178 
    179 /*
    180  * Create kern.hostname.  why only this you ask.  well, init_sysctl
    181  * is a kitchen sink in need of some gardening.  but i want to use
    182  * kern.hostname today.
    183  */
    184 static void
    185 mksysctls(void)
    186 {
    187 
    188 	sysctl_createv(NULL, 0, NULL, NULL,
    189 	    CTLFLAG_PERMANENT, CTLTYPE_NODE, "kern", NULL,
    190 	    NULL, 0, NULL, 0, CTL_KERN, CTL_EOL);
    191 
    192 	/* XXX: setting hostnamelen is missing */
    193 	sysctl_createv(NULL, 0, NULL, NULL,
    194 	    CTLFLAG_PERMANENT|CTLFLAG_READWRITE, CTLTYPE_STRING, "hostname",
    195 	    SYSCTL_DESCR("System hostname"), NULL, 0,
    196 	    &hostname, MAXHOSTNAMELEN, CTL_KERN, KERN_HOSTNAME, CTL_EOL);
    197 }
    198 
    199 /* there's no convenient kernel entry point for this, so just craft out own */
    200 static pid_t
    201 spgetpid(void)
    202 {
    203 
    204 	return curproc->p_pid;
    205 }
    206 
    207 static const struct rumpuser_sp_ops spops = {
    208 	.spop_schedule		= rump_schedule,
    209 	.spop_unschedule	= rump_unschedule,
    210 	.spop_lwproc_switch	= rump_lwproc_switch,
    211 	.spop_lwproc_release	= rump_lwproc_releaselwp,
    212 	.spop_lwproc_rfork	= rump_proxy_rfork,
    213 	.spop_lwproc_newlwp	= rump_lwproc_newlwp,
    214 	.spop_lwproc_curlwp	= rump_lwproc_curlwp,
    215 	.spop_procexit		= rump_proxy_procexit,
    216 	.spop_syscall		= rump_proxy_syscall,
    217 	.spop_getpid		= spgetpid,
    218 };
    219 
    220 int
    221 rump_daemonize_begin(void)
    222 {
    223 
    224 	if (rump_inited)
    225 		return EALREADY;
    226 
    227 	return rumpuser_daemonize_begin();
    228 }
    229 
    230 int
    231 rump_daemonize_done(int error)
    232 {
    233 
    234 	return rumpuser_daemonize_done(error);
    235 }
    236 
    237 int
    238 rump__init(int rump_version)
    239 {
    240 	char buf[256];
    241 	struct timespec ts;
    242 	uint64_t sec, nsec;
    243 	struct lwp *l;
    244 	int i, numcpu;
    245 	int error;
    246 
    247 	/* not reentrant */
    248 	if (rump_inited)
    249 		return 0;
    250 	else if (rump_inited == -1)
    251 		panic("rump_init: host process restart required");
    252 	else
    253 		rump_inited = 1;
    254 
    255 	if (rumpuser_getversion() != RUMPUSER_VERSION) {
    256 		/* let's hope the ABI of rumpuser_dprintf is the same ;) */
    257 		rumpuser_dprintf("rumpuser version mismatch: %d vs. %d\n",
    258 		    rumpuser_getversion(), RUMPUSER_VERSION);
    259 		return EPROGMISMATCH;
    260 	}
    261 
    262 	if (rumpuser_getenv("RUMP_VERBOSE", buf, sizeof(buf), &error) == 0) {
    263 		if (*buf != '0')
    264 			boothowto = AB_VERBOSE;
    265 	}
    266 
    267 	if (rumpuser_getenv("RUMP_NCPU", buf, sizeof(buf), &error) == 0)
    268 		error = 0;
    269 	if (error == 0) {
    270 		numcpu = strtoll(buf, NULL, 10);
    271 		if (numcpu < 1)
    272 			numcpu = 1;
    273 	} else {
    274 		numcpu = rumpuser_getnhostcpu();
    275 	}
    276 	rump_cpus_bootstrap(&numcpu);
    277 
    278 	rumpuser_gettime(&sec, &nsec, &error);
    279 	boottime.tv_sec = sec;
    280 	boottime.tv_nsec = nsec;
    281 
    282 	initmsgbuf(rump_msgbuf, sizeof(rump_msgbuf));
    283 	aprint_verbose("%s%s", copyright, version);
    284 
    285 	/*
    286 	 * Seed arc4random() with a "reasonable" amount of randomness.
    287 	 * Yes, this is a quick kludge which depends on the arc4random
    288 	 * implementation.
    289 	 */
    290 	messthestack();
    291 	arc4random();
    292 
    293 	if (rump_version != RUMP_VERSION) {
    294 		printf("rump version mismatch, %d vs. %d\n",
    295 		    rump_version, RUMP_VERSION);
    296 		return EPROGMISMATCH;
    297 	}
    298 
    299 	if (rumpuser_getenv("RUMP_THREADS", buf, sizeof(buf), &error) == 0) {
    300 		rump_threads = *buf != '0';
    301 	}
    302 	rumpuser_thrinit(rump_user_schedule, rump_user_unschedule,
    303 	    rump_threads);
    304 	rump_intr_init(numcpu);
    305 	rump_tsleep_init();
    306 
    307 	/* init minimal lwp/cpu context */
    308 	l = &lwp0;
    309 	l->l_lid = 1;
    310 	l->l_cpu = l->l_target_cpu = rump_cpu;
    311 	l->l_fd = &filedesc0;
    312 	rumpuser_set_curlwp(l);
    313 
    314 	rumpuser_mutex_init(&rump_giantlock);
    315 	ksyms_init();
    316 	uvm_init();
    317 	evcnt_init();
    318 
    319 	once_init();
    320 	kernconfig_lock_init();
    321 	prop_kern_init();
    322 
    323 	pool_subsystem_init();
    324 	kmem_init();
    325 
    326 	uvm_ra_init();
    327 	uao_init();
    328 
    329 	mutex_obj_init();
    330 	callout_startup();
    331 
    332 	kprintf_init();
    333 	loginit();
    334 
    335 	kauth_init();
    336 
    337 	procinit();
    338 	proc0_init();
    339 	uid_init();
    340 	chgproccnt(0, 1);
    341 
    342 	l->l_proc = &proc0;
    343 	lwp_update_creds(l);
    344 
    345 	lwpinit_specificdata();
    346 	lwp_initspecific(&lwp0);
    347 
    348 	rump_scheduler_init(numcpu);
    349 	/* revert temporary context and schedule a semireal context */
    350 	rumpuser_set_curlwp(NULL);
    351 	initproc = &proc0; /* borrow proc0 before we get initproc started */
    352 	rump_schedule();
    353 
    354 	percpu_init();
    355 	inittimecounter();
    356 	ntp_init();
    357 
    358 	rumpuser_gettime(&sec, &nsec, &error);
    359 	ts.tv_sec = sec;
    360 	ts.tv_nsec = nsec;
    361 	tc_setclock(&ts);
    362 
    363 	/* we are mostly go.  do per-cpu subsystem init */
    364 	for (i = 0; i < numcpu; i++) {
    365 		struct cpu_info *ci = cpu_lookup(i);
    366 
    367 		/* attach non-bootstrap CPUs */
    368 		if (i > 0) {
    369 			rump_cpu_attach(ci);
    370 			ncpu++;
    371 		}
    372 
    373 		callout_init_cpu(ci);
    374 		softint_init(ci);
    375 		xc_init_cpu(ci);
    376 		pool_cache_cpu_init(ci);
    377 		selsysinit(ci);
    378 		percpu_init_cpu(ci);
    379 
    380 		TAILQ_INIT(&ci->ci_data.cpu_ld_locks);
    381 		__cpu_simple_lock_init(&ci->ci_data.cpu_ld_lock);
    382 
    383 		aprint_verbose("cpu%d at thinair0: rump virtual cpu\n", i);
    384 	}
    385 
    386 	sysctl_init();
    387 	mksysctls();
    388 	kqueue_init();
    389 	iostat_init();
    390 	fd_sys_init();
    391 	module_init();
    392 	devsw_init();
    393 	pipe_init();
    394 	resource_init();
    395 	procinit_sysctl();
    396 
    397 	/* start page baroness */
    398 	if (rump_threads) {
    399 		if (kthread_create(PRI_PGDAEMON, KTHREAD_MPSAFE, NULL,
    400 		    uvm_pageout, NULL, &uvm.pagedaemon_lwp, "pdaemon") != 0)
    401 			panic("pagedaemon create failed");
    402 	} else
    403 		uvm.pagedaemon_lwp = NULL; /* doesn't match curlwp */
    404 
    405 	/* process dso's */
    406 	rumpuser_dl_bootstrap(add_linkedin_modules, rump_kernelfsym_load);
    407 
    408 	rump_component_init(RUMP_COMPONENT_KERN);
    409 
    410 	/* these do nothing if not present */
    411 	rump_vfs_init();
    412 	rump_net_init();
    413 	rump_dev_init();
    414 
    415 	rump_component_init(RUMP_COMPONENT_KERN_VFS);
    416 
    417 	/*
    418 	 * if we initialized the tty component above, the tyttymtx is
    419 	 * now initialized.  otherwise, we need to initialize it.
    420 	 */
    421 	if (!rump_ttycomponent)
    422 		mutex_init(&tty_lock, MUTEX_DEFAULT, IPL_VM);
    423 
    424 	cold = 0;
    425 
    426 	/* aieeeedondest */
    427 	if (rump_threads) {
    428 		if (workqueue_create(&uvm.aiodone_queue, "aiodoned",
    429 		    rump_aiodone_worker, NULL, 0, 0, WQ_MPSAFE))
    430 			panic("aiodoned");
    431 	}
    432 
    433 	sysctl_finalize();
    434 
    435 	module_init_class(MODULE_CLASS_ANY);
    436 
    437 	rumpuser_gethostname(hostname, MAXHOSTNAMELEN, &error);
    438 	hostnamelen = strlen(hostname);
    439 
    440 	sigemptyset(&sigcantmask);
    441 
    442 	if (rump_threads)
    443 		vmem_rehash_start();
    444 
    445 	/*
    446 	 * Create init, used to attach implicit threads in rump.
    447 	 * (note: must be done after vfsinit to get cwdi)
    448 	 */
    449 	(void)rump__lwproc_alloclwp(NULL); /* dummy thread for initproc */
    450 	mutex_enter(proc_lock);
    451 	initproc = proc_find_raw(1);
    452 	mutex_exit(proc_lock);
    453 	if (initproc == NULL)
    454 		panic("where in the world is initproc?");
    455 
    456 	/*
    457 	 * Adjust syscall vector in case factions were dlopen()'d
    458 	 * before calling rump_init().
    459 	 * (modules will handle dynamic syscalls the usual way)
    460 	 *
    461 	 * Note: this will adjust the function vectors of
    462 	 * syscalls which use a funcalias (getpid etc.), but
    463 	 * it makes no difference.
    464 	 */
    465 	for (i = 0; i < SYS_NSYSENT; i++) {
    466 		void *sym;
    467 
    468 		if (rump_sysent[i].sy_flags & SYCALL_NOSYS ||
    469 		    *syscallnames[i] == '#' ||
    470 		    rump_sysent[i].sy_call == sys_nomodule)
    471 			continue;
    472 
    473 		/*
    474 		 * deal with compat wrappers.  makesyscalls.sh should
    475 		 * generate the necessary info instead of this hack,
    476 		 * though.  ugly, fix it later.
    477 		 */
    478 #define CPFX "compat_"
    479 #define CPFXLEN (sizeof(CPFX)-1)
    480 		if (strncmp(syscallnames[i], CPFX, CPFXLEN) == 0) {
    481 			const char *p = syscallnames[i] + CPFXLEN;
    482 			size_t namelen;
    483 
    484 			/* skip version number */
    485 			while (*p >= '0' && *p <= '9')
    486 				p++;
    487 			if (p == syscallnames[i] + CPFXLEN || *p != '_')
    488 				panic("invalid syscall name %s\n",
    489 				    syscallnames[i]);
    490 
    491 			/* skip over the next underscore */
    492 			p++;
    493 			namelen = p + (sizeof("rumpns_")-1) - syscallnames[i];
    494 
    495 			strcpy(buf, "rumpns_");
    496 			strcat(buf, syscallnames[i]);
    497 			/* XXX: no strncat in the kernel */
    498 			strcpy(buf+namelen, "sys_");
    499 			strcat(buf, p);
    500 #undef CPFX
    501 #undef CPFXLEN
    502 		} else {
    503 			sprintf(buf, "rumpns_sys_%s", syscallnames[i]);
    504 		}
    505 		if ((sym = rumpuser_dl_globalsym(buf)) != NULL
    506 		    && sym != rump_sysent[i].sy_call) {
    507 #if 0
    508 			rumpuser_dprintf("adjusting %s: %p (old %p)\n",
    509 			    syscallnames[i], sym, rump_sysent[i].sy_call);
    510 #endif
    511 			rump_sysent[i].sy_call = sym;
    512 		}
    513 	}
    514 
    515 	/* release cpu */
    516 	rump_unschedule();
    517 
    518 	return 0;
    519 }
    520 
    521 int
    522 rump_init_server(const char *url)
    523 {
    524 
    525 	return rumpuser_sp_init(url, &spops, ostype, osrelease, MACHINE);
    526 }
    527 
    528 void
    529 cpu_reboot(int howto, char *bootstr)
    530 {
    531 	int ruhow = 0;
    532 	void *finiarg;
    533 
    534 	printf("rump kernel halting...\n");
    535 
    536 	if (!RUMP_LOCALPROC_P(curproc))
    537 		finiarg = curproc->p_vmspace->vm_map.pmap;
    538 	else
    539 		finiarg = NULL;
    540 
    541 	/* dump means we really take the dive here */
    542 	if ((howto & RB_DUMP) || panicstr) {
    543 		ruhow = RUMPUSER_PANIC;
    544 		goto out;
    545 	}
    546 
    547 	/* try to sync */
    548 	if (!((howto & RB_NOSYNC) || panicstr)) {
    549 		rump_vfs_fini();
    550 	}
    551 
    552 	/* your wish is my command */
    553 	if (howto & RB_HALT) {
    554 		printf("rump kernel halted\n");
    555 		rumpuser_sp_fini(finiarg);
    556 		for (;;) {
    557 			uint64_t sec = 5, nsec = 0;
    558 			int error;
    559 
    560 			rumpuser_nanosleep(&sec, &nsec, &error);
    561 		}
    562 	}
    563 
    564 	/* this function is __dead, we must exit */
    565  out:
    566 	printf("halted\n");
    567 	rumpuser_sp_fini(finiarg);
    568 	rumpuser_exit(ruhow);
    569 }
    570 
    571 struct uio *
    572 rump_uio_setup(void *buf, size_t bufsize, off_t offset, enum rump_uiorw rw)
    573 {
    574 	struct uio *uio;
    575 	enum uio_rw uiorw;
    576 
    577 	switch (rw) {
    578 	case RUMPUIO_READ:
    579 		uiorw = UIO_READ;
    580 		break;
    581 	case RUMPUIO_WRITE:
    582 		uiorw = UIO_WRITE;
    583 		break;
    584 	default:
    585 		panic("%s: invalid rw %d", __func__, rw);
    586 	}
    587 
    588 	uio = kmem_alloc(sizeof(struct uio), KM_SLEEP);
    589 	uio->uio_iov = kmem_alloc(sizeof(struct iovec), KM_SLEEP);
    590 
    591 	uio->uio_iov->iov_base = buf;
    592 	uio->uio_iov->iov_len = bufsize;
    593 
    594 	uio->uio_iovcnt = 1;
    595 	uio->uio_offset = offset;
    596 	uio->uio_resid = bufsize;
    597 	uio->uio_rw = uiorw;
    598 	UIO_SETUP_SYSSPACE(uio);
    599 
    600 	return uio;
    601 }
    602 
    603 size_t
    604 rump_uio_getresid(struct uio *uio)
    605 {
    606 
    607 	return uio->uio_resid;
    608 }
    609 
    610 off_t
    611 rump_uio_getoff(struct uio *uio)
    612 {
    613 
    614 	return uio->uio_offset;
    615 }
    616 
    617 size_t
    618 rump_uio_free(struct uio *uio)
    619 {
    620 	size_t resid;
    621 
    622 	resid = uio->uio_resid;
    623 	kmem_free(uio->uio_iov, sizeof(*uio->uio_iov));
    624 	kmem_free(uio, sizeof(*uio));
    625 
    626 	return resid;
    627 }
    628 
    629 kauth_cred_t
    630 rump_cred_create(uid_t uid, gid_t gid, size_t ngroups, gid_t *groups)
    631 {
    632 	kauth_cred_t cred;
    633 	int rv;
    634 
    635 	cred = kauth_cred_alloc();
    636 	kauth_cred_setuid(cred, uid);
    637 	kauth_cred_seteuid(cred, uid);
    638 	kauth_cred_setsvuid(cred, uid);
    639 	kauth_cred_setgid(cred, gid);
    640 	kauth_cred_setgid(cred, gid);
    641 	kauth_cred_setegid(cred, gid);
    642 	kauth_cred_setsvgid(cred, gid);
    643 	rv = kauth_cred_setgroups(cred, groups, ngroups, 0, UIO_SYSSPACE);
    644 	/* oh this is silly.  and by "this" I mean kauth_cred_setgroups() */
    645 	assert(rv == 0);
    646 
    647 	return cred;
    648 }
    649 
    650 void
    651 rump_cred_put(kauth_cred_t cred)
    652 {
    653 
    654 	kauth_cred_free(cred);
    655 }
    656 
    657 static int compcounter[RUMP_COMPONENT_MAX];
    658 
    659 static void
    660 rump_component_init_cb(struct rump_component *rc, int type)
    661 {
    662 
    663 	KASSERT(type < RUMP_COMPONENT_MAX);
    664 	if (rc->rc_type == type) {
    665 		rc->rc_init();
    666 		compcounter[type]++;
    667 	}
    668 }
    669 
    670 int
    671 rump_component_count(enum rump_component_type type)
    672 {
    673 
    674 	KASSERT(type <= RUMP_COMPONENT_MAX);
    675 	return compcounter[type];
    676 }
    677 
    678 void
    679 rump_component_init(enum rump_component_type type)
    680 {
    681 
    682 	rumpuser_dl_component_init(type, rump_component_init_cb);
    683 }
    684 
    685 /*
    686  * Initialize a module which has already been loaded and linked
    687  * with dlopen(). This is fundamentally the same as a builtin module.
    688  */
    689 int
    690 rump_module_init(const struct modinfo * const *mip, size_t nmodinfo)
    691 {
    692 
    693 	return module_builtin_add(mip, nmodinfo, true);
    694 }
    695 
    696 /*
    697  * Finish module (flawless victory, fatality!).
    698  */
    699 int
    700 rump_module_fini(const struct modinfo *mi)
    701 {
    702 
    703 	return module_builtin_remove(mi, true);
    704 }
    705 
    706 /*
    707  * Add loaded and linked module to the builtin list.  It will
    708  * later be initialized with module_init_class().
    709  */
    710 
    711 static void
    712 add_linkedin_modules(const struct modinfo * const *mip, size_t nmodinfo)
    713 {
    714 
    715 	module_builtin_add(mip, nmodinfo, false);
    716 }
    717 
    718 int
    719 rump_kernelfsym_load(void *symtab, uint64_t symsize,
    720 	char *strtab, uint64_t strsize)
    721 {
    722 	static int inited = 0;
    723 	Elf64_Ehdr ehdr;
    724 
    725 	if (inited)
    726 		return EBUSY;
    727 	inited = 1;
    728 
    729 	/*
    730 	 * Use 64bit header since it's bigger.  Shouldn't make a
    731 	 * difference, since we're passing in all zeroes anyway.
    732 	 */
    733 	memset(&ehdr, 0, sizeof(ehdr));
    734 	ksyms_addsyms_explicit(&ehdr, symtab, symsize, strtab, strsize);
    735 
    736 	return 0;
    737 }
    738 
    739 static int
    740 rump_proxy_syscall(int num, void *arg, register_t *retval)
    741 {
    742 	struct lwp *l;
    743 	struct sysent *callp;
    744 	int rv;
    745 
    746 	if (__predict_false(num >= SYS_NSYSENT))
    747 		return ENOSYS;
    748 
    749 	callp = rump_sysent + num;
    750 	l = curlwp;
    751 	rv = sy_call(callp, l, (void *)arg, retval);
    752 
    753 	return rv;
    754 }
    755 
    756 static int
    757 rump_proxy_rfork(void *priv, int flags, const char *comm)
    758 {
    759 	struct vmspace *newspace;
    760 	struct proc *p;
    761 	int error;
    762 
    763 	if ((error = rump_lwproc_rfork(flags)) != 0)
    764 		return error;
    765 
    766 	/*
    767 	 * Since it's a proxy proc, adjust the vmspace.
    768 	 * Refcount will eternally be 1.
    769 	 */
    770 	p = curproc;
    771 	newspace = kmem_alloc(sizeof(*newspace), KM_SLEEP);
    772 	newspace->vm_refcnt = 1;
    773 	newspace->vm_map.pmap = priv;
    774 	KASSERT(p->p_vmspace == vmspace_kernel());
    775 	p->p_vmspace = newspace;
    776 	if (comm)
    777 		strlcpy(p->p_comm, comm, sizeof(p->p_comm));
    778 
    779 	return 0;
    780 }
    781 
    782 static void
    783 rump_proxy_procexit(void)
    784 {
    785 	struct proc *p = curproc;
    786 	uint64_t where;
    787 	struct lwp *l;
    788 
    789 	mutex_enter(p->p_lock);
    790 	/*
    791 	 * First pass: mark all lwps in the process with LSDEAD
    792 	 * so that they know they should exit.
    793 	 */
    794 	LIST_FOREACH(l, &p->p_lwps, l_sibling) {
    795 		if (l == curlwp)
    796 			continue;
    797 		l->l_flag |= LW_RUMP_DYING;
    798 	}
    799 	mutex_exit(p->p_lock);
    800 
    801 	/*
    802 	 * Next, make sure everyone on all CPUs sees our status
    803 	 * update.  This keeps threads inside cv_wait() and makes
    804 	 * sure we don't access a stale cv pointer later when
    805 	 * we wake up the threads.
    806 	 */
    807 
    808 	where = xc_broadcast(0, (xcfunc_t)nullop, NULL, NULL);
    809 	xc_wait(where);
    810 
    811 	/*
    812 	 * Ok, all lwps are either:
    813 	 *  1) not in the cv code
    814 	 *  2) sleeping on l->l_private
    815 	 *  3) sleeping on p->p_waitcv
    816 	 *
    817 	 * Either way, l_private is stable until we change the lwps
    818 	 * state to LSZOMB.
    819 	 */
    820 
    821 	mutex_enter(p->p_lock);
    822 	LIST_FOREACH(l, &p->p_lwps, l_sibling) {
    823 		if (l->l_private)
    824 			cv_broadcast(l->l_private);
    825 	}
    826 	p->p_stat = SDYING;
    827 	cv_broadcast(&p->p_waitcv);
    828 	mutex_exit(p->p_lock);
    829 
    830 	/*
    831 	 * Don't wait for lwps to exit.  There's refcounting in the
    832 	 * rumpuser sp code which makes this safe.  Also, this routine
    833 	 * should not sleep for a long time.
    834 	 */
    835 }
    836 
    837 int
    838 rump_boot_gethowto()
    839 {
    840 
    841 	return boothowto;
    842 }
    843 
    844 void
    845 rump_boot_sethowto(int howto)
    846 {
    847 
    848 	boothowto = howto;
    849 }
    850 
    851 int
    852 rump_getversion(void)
    853 {
    854 
    855 	return __NetBSD_Version__;
    856 }
    857 
    858 /*
    859  * Note: may be called unscheduled.  Not fully safe since no locking
    860  * of allevents (currently that's not even available).
    861  */
    862 void
    863 rump_printevcnts()
    864 {
    865 	struct evcnt *ev;
    866 
    867 	TAILQ_FOREACH(ev, &allevents, ev_list)
    868 		rumpuser_dprintf("%s / %s: %" PRIu64 "\n",
    869 		    ev->ev_group, ev->ev_name, ev->ev_count);
    870 }
    871 
    872 /*
    873  * If you use this interface ... well ... all bets are off.
    874  * The original purpose is for the p2k fs server library to be
    875  * able to use the same pid/lid for VOPs as the host kernel.
    876  */
    877 void
    878 rump_allbetsareoff_setid(pid_t pid, int lid)
    879 {
    880 	struct lwp *l = curlwp;
    881 	struct proc *p = l->l_proc;
    882 
    883 	l->l_lid = lid;
    884 	p->p_pid = pid;
    885 }
    886