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emul.c revision 1.38.2.4
      1  1.38.2.4    yamt /*	$NetBSD: emul.c,v 1.38.2.4 2009/08/19 18:48:29 yamt Exp $	*/
      2       1.1   pooka 
      3       1.1   pooka /*
      4       1.1   pooka  * Copyright (c) 2007 Antti Kantee.  All Rights Reserved.
      5       1.1   pooka  *
      6       1.1   pooka  * Development of this software was supported by Google Summer of Code.
      7       1.1   pooka  *
      8       1.1   pooka  * Redistribution and use in source and binary forms, with or without
      9       1.1   pooka  * modification, are permitted provided that the following conditions
     10       1.1   pooka  * are met:
     11       1.1   pooka  * 1. Redistributions of source code must retain the above copyright
     12       1.1   pooka  *    notice, this list of conditions and the following disclaimer.
     13       1.1   pooka  * 2. Redistributions in binary form must reproduce the above copyright
     14       1.1   pooka  *    notice, this list of conditions and the following disclaimer in the
     15       1.1   pooka  *    documentation and/or other materials provided with the distribution.
     16       1.1   pooka  *
     17       1.1   pooka  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
     18       1.1   pooka  * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
     19       1.1   pooka  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
     20       1.1   pooka  * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
     21       1.1   pooka  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     22       1.1   pooka  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
     23       1.1   pooka  * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     24       1.1   pooka  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     25       1.1   pooka  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     26       1.1   pooka  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     27       1.1   pooka  * SUCH DAMAGE.
     28       1.1   pooka  */
     29       1.1   pooka 
     30  1.38.2.1    yamt #include <sys/cdefs.h>
     31  1.38.2.4    yamt __KERNEL_RCSID(0, "$NetBSD: emul.c,v 1.38.2.4 2009/08/19 18:48:29 yamt Exp $");
     32       1.9   pooka 
     33       1.1   pooka #include <sys/param.h>
     34       1.1   pooka #include <sys/malloc.h>
     35       1.1   pooka #include <sys/null.h>
     36       1.1   pooka #include <sys/vnode.h>
     37       1.1   pooka #include <sys/stat.h>
     38      1.35  martin #include <sys/select.h>
     39       1.1   pooka #include <sys/syslog.h>
     40       1.1   pooka #include <sys/namei.h>
     41       1.1   pooka #include <sys/kauth.h>
     42       1.1   pooka #include <sys/conf.h>
     43       1.1   pooka #include <sys/device.h>
     44       1.1   pooka #include <sys/queue.h>
     45      1.20   pooka #include <sys/file.h>
     46       1.1   pooka #include <sys/filedesc.h>
     47       1.5   pooka #include <sys/kthread.h>
     48      1.15      ad #include <sys/cpu.h>
     49      1.17   pooka #include <sys/kmem.h>
     50      1.20   pooka #include <sys/poll.h>
     51  1.38.2.1    yamt #include <sys/timetc.h>
     52  1.38.2.1    yamt #include <sys/tprintf.h>
     53  1.38.2.1    yamt #include <sys/module.h>
     54  1.38.2.1    yamt #include <sys/tty.h>
     55  1.38.2.1    yamt #include <sys/reboot.h>
     56  1.38.2.1    yamt 
     57  1.38.2.1    yamt #include <dev/cons.h>
     58       1.1   pooka 
     59       1.1   pooka #include <machine/stdarg.h>
     60       1.1   pooka 
     61  1.38.2.1    yamt #include <rump/rumpuser.h>
     62  1.38.2.1    yamt 
     63       1.8   pooka #include <uvm/uvm_map.h>
     64       1.8   pooka 
     65      1.10   pooka #include "rump_private.h"
     66       1.1   pooka 
     67       1.1   pooka time_t time_second = 1;
     68       1.1   pooka 
     69      1.38      ad kmutex_t *proc_lock;
     70       1.1   pooka struct lwp lwp0;
     71       1.1   pooka struct vnode *rootvp;
     72       1.1   pooka struct device *root_device;
     73       1.5   pooka dev_t rootdev;
     74      1.25   pooka int physmem = 256*256; /* 256 * 1024*1024 / 4k, PAGE_SIZE not always set */
     75      1.16   pooka int doing_shutdown;
     76      1.17   pooka int ncpu = 1;
     77      1.19   pooka const int schedppq = 1;
     78      1.28      ad int hardclock_ticks;
     79  1.38.2.1    yamt bool mp_online = false;
     80  1.38.2.1    yamt struct vm_map *mb_map;
     81  1.38.2.1    yamt struct timeval boottime;
     82  1.38.2.1    yamt struct emul emul_netbsd;
     83  1.38.2.1    yamt int cold = 1;
     84  1.38.2.1    yamt int boothowto;
     85  1.38.2.1    yamt struct tty *constty;
     86       1.1   pooka 
     87       1.1   pooka char hostname[MAXHOSTNAMELEN];
     88       1.1   pooka size_t hostnamelen;
     89       1.1   pooka 
     90       1.6   pooka const char *panicstr;
     91      1.26   pooka const char ostype[] = "NetBSD";
     92      1.26   pooka const char osrelease[] = "999"; /* paradroid 4evah */
     93      1.26   pooka const char kernel_ident[] = "RUMP-ROAST";
     94      1.26   pooka const char *domainname;
     95      1.26   pooka int domainnamelen;
     96       1.6   pooka 
     97      1.20   pooka const struct filterops seltrue_filtops;
     98  1.38.2.1    yamt const struct filterops sig_filtops;
     99      1.20   pooka 
    100  1.38.2.1    yamt #define DEVSW_SIZE 255
    101  1.38.2.1    yamt const struct bdevsw *bdevsw0[DEVSW_SIZE]; /* XXX storage size */
    102  1.38.2.1    yamt const struct bdevsw **bdevsw = bdevsw0;
    103  1.38.2.1    yamt const int sys_cdevsws = DEVSW_SIZE;
    104  1.38.2.1    yamt int max_cdevsws = DEVSW_SIZE;
    105  1.38.2.1    yamt 
    106  1.38.2.1    yamt const struct cdevsw *cdevsw0[DEVSW_SIZE]; /* XXX storage size */
    107  1.38.2.1    yamt const struct cdevsw **cdevsw = cdevsw0;
    108  1.38.2.1    yamt const int sys_bdevsws = DEVSW_SIZE;
    109  1.38.2.1    yamt int max_bdevsws = DEVSW_SIZE;
    110  1.38.2.1    yamt 
    111  1.38.2.1    yamt struct devsw_conv devsw_conv0;
    112  1.38.2.1    yamt struct devsw_conv *devsw_conv = &devsw_conv0;
    113  1.38.2.1    yamt int max_devsw_convs = 0;
    114  1.38.2.1    yamt int mem_no = 2;
    115       1.1   pooka 
    116  1.38.2.1    yamt kmutex_t tty_lock;
    117       1.1   pooka 
    118  1.38.2.1    yamt int
    119  1.38.2.1    yamt copyin(const void *uaddr, void *kaddr, size_t len)
    120       1.1   pooka {
    121       1.1   pooka 
    122  1.38.2.1    yamt 	if (curproc->p_vmspace == &rump_vmspace)
    123  1.38.2.1    yamt 		memcpy(kaddr, uaddr, len);
    124  1.38.2.1    yamt 	else
    125  1.38.2.1    yamt 		rump_sysproxy_copyin(uaddr, kaddr, len);
    126  1.38.2.1    yamt 	return 0;
    127       1.1   pooka }
    128       1.1   pooka 
    129  1.38.2.1    yamt int
    130  1.38.2.1    yamt copyout(const void *kaddr, void *uaddr, size_t len)
    131       1.1   pooka {
    132       1.1   pooka 
    133  1.38.2.1    yamt 	if (curproc->p_vmspace == &rump_vmspace)
    134  1.38.2.1    yamt 		memcpy(uaddr, kaddr, len);
    135  1.38.2.1    yamt 	else
    136  1.38.2.1    yamt 		rump_sysproxy_copyout(kaddr, uaddr, len);
    137  1.38.2.1    yamt 	return 0;
    138       1.1   pooka }
    139       1.1   pooka 
    140  1.38.2.1    yamt int
    141  1.38.2.1    yamt copystr(const void *kfaddr, void *kdaddr, size_t len, size_t *done)
    142      1.16   pooka {
    143      1.16   pooka 
    144  1.38.2.1    yamt 	return copyinstr(kfaddr, kdaddr, len, done);
    145      1.16   pooka }
    146      1.16   pooka 
    147  1.38.2.1    yamt int
    148  1.38.2.1    yamt copyinstr(const void *uaddr, void *kaddr, size_t len, size_t *done)
    149      1.27   pooka {
    150      1.27   pooka 
    151  1.38.2.1    yamt 	if (curproc->p_vmspace == &rump_vmspace)
    152  1.38.2.1    yamt 		strlcpy(kaddr, uaddr, len);
    153  1.38.2.1    yamt 	else
    154  1.38.2.1    yamt 		rump_sysproxy_copyin(uaddr, kaddr, len);
    155  1.38.2.1    yamt 	if (done)
    156  1.38.2.1    yamt 		*done = strlen(kaddr)+1; /* includes termination */
    157  1.38.2.1    yamt 	return 0;
    158      1.27   pooka }
    159      1.27   pooka 
    160       1.1   pooka int
    161  1.38.2.1    yamt copyoutstr(const void *kaddr, void *uaddr, size_t len, size_t *done)
    162       1.1   pooka {
    163       1.1   pooka 
    164  1.38.2.1    yamt 	if (curproc->p_vmspace == &rump_vmspace)
    165  1.38.2.1    yamt 		strlcpy(uaddr, kaddr, len);
    166  1.38.2.1    yamt 	else
    167  1.38.2.1    yamt 		rump_sysproxy_copyout(kaddr, uaddr, len);
    168  1.38.2.1    yamt 	if (done)
    169  1.38.2.1    yamt 		*done = strlen(uaddr)+1; /* includes termination */
    170       1.1   pooka 	return 0;
    171       1.1   pooka }
    172       1.1   pooka 
    173       1.1   pooka int
    174  1.38.2.1    yamt copyin_vmspace(struct vmspace *vm, const void *uaddr, void *kaddr, size_t len)
    175       1.1   pooka {
    176       1.1   pooka 
    177  1.38.2.1    yamt 	return copyin(uaddr, kaddr, len);
    178       1.1   pooka }
    179       1.1   pooka 
    180       1.1   pooka int
    181  1.38.2.1    yamt copyout_vmspace(struct vmspace *vm, const void *kaddr, void *uaddr, size_t len)
    182       1.1   pooka {
    183       1.1   pooka 
    184  1.38.2.1    yamt 	return copyout(kaddr, uaddr, len);
    185       1.1   pooka }
    186       1.1   pooka 
    187       1.1   pooka int
    188  1.38.2.1    yamt kcopy(const void *src, void *dst, size_t len)
    189       1.1   pooka {
    190       1.1   pooka 
    191  1.38.2.1    yamt 	memcpy(dst, src, len);
    192       1.1   pooka 	return 0;
    193       1.1   pooka }
    194       1.1   pooka 
    195       1.1   pooka int
    196       1.1   pooka uiomove(void *buf, size_t n, struct uio *uio)
    197       1.1   pooka {
    198       1.1   pooka 	struct iovec *iov;
    199       1.1   pooka 	uint8_t *b = buf;
    200       1.1   pooka 	size_t cnt;
    201       1.1   pooka 
    202       1.1   pooka 	if (uio->uio_vmspace != UIO_VMSPACE_SYS)
    203       1.1   pooka 		panic("%s: vmspace != UIO_VMSPACE_SYS", __func__);
    204       1.1   pooka 
    205       1.1   pooka 	while (n && uio->uio_resid) {
    206       1.1   pooka 		iov = uio->uio_iov;
    207       1.1   pooka 		cnt = iov->iov_len;
    208       1.1   pooka 		if (cnt == 0) {
    209       1.1   pooka 			uio->uio_iov++;
    210       1.1   pooka 			uio->uio_iovcnt--;
    211       1.1   pooka 			continue;
    212       1.1   pooka 		}
    213       1.1   pooka 		if (cnt > n)
    214       1.1   pooka 			cnt = n;
    215       1.1   pooka 
    216       1.1   pooka 		if (uio->uio_rw == UIO_READ)
    217       1.1   pooka 			memcpy(iov->iov_base, b, cnt);
    218       1.1   pooka 		else
    219       1.1   pooka 			memcpy(b, iov->iov_base, cnt);
    220       1.1   pooka 
    221       1.1   pooka 		iov->iov_base = (uint8_t *)iov->iov_base + cnt;
    222       1.1   pooka 		iov->iov_len -= cnt;
    223       1.1   pooka 		b += cnt;
    224       1.1   pooka 		uio->uio_resid -= cnt;
    225       1.1   pooka 		uio->uio_offset += cnt;
    226       1.1   pooka 		n -= cnt;
    227       1.1   pooka 	}
    228       1.1   pooka 
    229       1.1   pooka 	return 0;
    230       1.1   pooka }
    231       1.1   pooka 
    232       1.1   pooka void
    233       1.1   pooka uio_setup_sysspace(struct uio *uio)
    234       1.1   pooka {
    235       1.1   pooka 
    236       1.1   pooka 	uio->uio_vmspace = UIO_VMSPACE_SYS;
    237       1.1   pooka }
    238       1.1   pooka 
    239       1.1   pooka devclass_t
    240       1.1   pooka device_class(device_t dev)
    241       1.1   pooka {
    242       1.1   pooka 
    243       1.1   pooka 	if (dev != root_device)
    244       1.1   pooka 		panic("%s: dev != root_device not supported", __func__);
    245       1.1   pooka 
    246       1.1   pooka 	return DV_DISK;
    247       1.1   pooka }
    248       1.1   pooka 
    249       1.1   pooka void
    250  1.38.2.1    yamt getnanouptime(struct timespec *ts)
    251       1.1   pooka {
    252       1.1   pooka 
    253  1.38.2.1    yamt 	rump_getuptime(ts);
    254  1.38.2.1    yamt }
    255  1.38.2.1    yamt 
    256  1.38.2.1    yamt void
    257  1.38.2.1    yamt getmicrouptime(struct timeval *tv)
    258  1.38.2.1    yamt {
    259  1.38.2.1    yamt 	struct timespec ts;
    260  1.38.2.1    yamt 
    261  1.38.2.1    yamt 	getnanouptime(&ts);
    262  1.38.2.1    yamt 	TIMESPEC_TO_TIMEVAL(tv, &ts);
    263       1.1   pooka }
    264       1.1   pooka 
    265       1.5   pooka void
    266       1.1   pooka malloc_type_attach(struct malloc_type *type)
    267       1.1   pooka {
    268       1.1   pooka 
    269       1.1   pooka 	return;
    270       1.1   pooka }
    271       1.1   pooka 
    272       1.1   pooka void
    273       1.1   pooka malloc_type_detach(struct malloc_type *type)
    274       1.1   pooka {
    275       1.1   pooka 
    276       1.1   pooka 	return;
    277       1.1   pooka }
    278       1.1   pooka 
    279       1.9   pooka void *
    280  1.38.2.1    yamt kern_malloc(unsigned long size, struct malloc_type *type, int flags)
    281       1.9   pooka {
    282       1.9   pooka 	void *rv;
    283       1.9   pooka 
    284      1.16   pooka 	rv = rumpuser_malloc(size, (flags & (M_CANFAIL | M_NOWAIT)) != 0);
    285       1.9   pooka 	if (rv && flags & M_ZERO)
    286       1.9   pooka 		memset(rv, 0, size);
    287       1.9   pooka 
    288       1.9   pooka 	return rv;
    289       1.9   pooka }
    290       1.9   pooka 
    291  1.38.2.1    yamt void *
    292  1.38.2.1    yamt kern_realloc(void *ptr, unsigned long size, struct malloc_type *type, int flags)
    293       1.1   pooka {
    294       1.1   pooka 
    295  1.38.2.4    yamt 	return rumpuser_realloc(ptr, size, (flags & (M_CANFAIL|M_NOWAIT)) != 0);
    296       1.1   pooka }
    297       1.1   pooka 
    298       1.1   pooka void
    299  1.38.2.1    yamt kern_free(void *ptr, struct malloc_type *type)
    300       1.1   pooka {
    301       1.1   pooka 
    302  1.38.2.1    yamt 	rumpuser_free(ptr);
    303       1.1   pooka }
    304       1.1   pooka 
    305  1.38.2.1    yamt static void
    306  1.38.2.1    yamt gettime(struct timespec *ts)
    307       1.2   pooka {
    308  1.38.2.1    yamt 	uint64_t sec, nsec;
    309      1.12   pooka 	int error;
    310       1.2   pooka 
    311  1.38.2.1    yamt 	rumpuser_gettime(&sec, &nsec, &error);
    312  1.38.2.1    yamt 	ts->tv_sec = sec;
    313  1.38.2.1    yamt 	ts->tv_nsec = nsec;
    314       1.2   pooka }
    315       1.2   pooka 
    316       1.2   pooka void
    317  1.38.2.1    yamt nanotime(struct timespec *ts)
    318       1.5   pooka {
    319       1.5   pooka 
    320  1.38.2.1    yamt 	if (rump_threads) {
    321  1.38.2.1    yamt 		rump_gettime(ts);
    322  1.38.2.1    yamt 	} else {
    323  1.38.2.1    yamt 		gettime(ts);
    324  1.38.2.1    yamt 	}
    325       1.5   pooka }
    326       1.5   pooka 
    327  1.38.2.1    yamt /* hooray for mick, so what if I do */
    328       1.5   pooka void
    329  1.38.2.1    yamt getnanotime(struct timespec *ts)
    330       1.1   pooka {
    331       1.1   pooka 
    332  1.38.2.1    yamt 	nanotime(ts);
    333       1.1   pooka }
    334       1.5   pooka 
    335  1.38.2.1    yamt void
    336  1.38.2.1    yamt microtime(struct timeval *tv)
    337  1.38.2.1    yamt {
    338  1.38.2.1    yamt 	struct timespec ts;
    339  1.38.2.1    yamt 
    340  1.38.2.1    yamt 	if (rump_threads) {
    341  1.38.2.1    yamt 		rump_gettime(&ts);
    342  1.38.2.1    yamt 		TIMESPEC_TO_TIMEVAL(tv, &ts);
    343  1.38.2.1    yamt 	} else {
    344  1.38.2.1    yamt 		gettime(&ts);
    345  1.38.2.1    yamt 		TIMESPEC_TO_TIMEVAL(tv, &ts);
    346  1.38.2.1    yamt 	}
    347  1.38.2.1    yamt }
    348  1.38.2.1    yamt 
    349  1.38.2.1    yamt void
    350  1.38.2.1    yamt getmicrotime(struct timeval *tv)
    351       1.5   pooka {
    352       1.5   pooka 
    353  1.38.2.1    yamt 	microtime(tv);
    354       1.5   pooka }
    355       1.5   pooka 
    356      1.17   pooka struct kthdesc {
    357      1.17   pooka 	void (*f)(void *);
    358      1.17   pooka 	void *arg;
    359      1.17   pooka 	struct lwp *mylwp;
    360      1.17   pooka };
    361      1.17   pooka 
    362      1.17   pooka static void *
    363      1.17   pooka threadbouncer(void *arg)
    364      1.17   pooka {
    365      1.17   pooka 	struct kthdesc *k = arg;
    366      1.17   pooka 	void (*f)(void *);
    367      1.17   pooka 	void *thrarg;
    368      1.17   pooka 
    369      1.17   pooka 	f = k->f;
    370      1.17   pooka 	thrarg = k->arg;
    371      1.17   pooka 	rumpuser_set_curlwp(k->mylwp);
    372      1.17   pooka 	kmem_free(k, sizeof(struct kthdesc));
    373      1.17   pooka 
    374  1.38.2.1    yamt 	if ((curlwp->l_pflag & LP_MPSAFE) == 0)
    375  1.38.2.1    yamt 		KERNEL_LOCK(1, NULL);
    376      1.17   pooka 	f(thrarg);
    377      1.17   pooka 	panic("unreachable, should kthread_exit()");
    378      1.17   pooka }
    379      1.17   pooka 
    380       1.5   pooka int
    381       1.5   pooka kthread_create(pri_t pri, int flags, struct cpu_info *ci,
    382       1.5   pooka 	void (*func)(void *), void *arg, lwp_t **newlp, const char *fmt, ...)
    383       1.5   pooka {
    384  1.38.2.1    yamt 	char thrstore[MAXCOMLEN];
    385  1.38.2.1    yamt 	const char *thrname = NULL;
    386  1.38.2.1    yamt 	va_list ap;
    387      1.17   pooka 	struct kthdesc *k;
    388      1.17   pooka 	struct lwp *l;
    389      1.17   pooka 	int rv;
    390      1.17   pooka 
    391  1.38.2.1    yamt 	thrstore[0] = '\0';
    392  1.38.2.1    yamt 	if (fmt) {
    393  1.38.2.1    yamt 		va_start(ap, fmt);
    394  1.38.2.1    yamt 		vsnprintf(thrstore, sizeof(thrstore), fmt, ap);
    395  1.38.2.1    yamt 		va_end(ap);
    396  1.38.2.1    yamt 		thrname = thrstore;
    397  1.38.2.1    yamt 	}
    398  1.38.2.1    yamt 
    399  1.38.2.1    yamt 	/*
    400  1.38.2.1    yamt 	 * We don't want a module unload thread.
    401  1.38.2.1    yamt 	 * (XXX: yes, this is a kludge too, and the kernel should
    402  1.38.2.1    yamt 	 * have a more flexible method for configuring which threads
    403  1.38.2.1    yamt 	 * we want).
    404  1.38.2.1    yamt 	 */
    405  1.38.2.1    yamt 	if (strcmp(thrstore, "modunload") == 0) {
    406      1.27   pooka 		return 0;
    407  1.38.2.1    yamt 	}
    408  1.38.2.1    yamt 
    409  1.38.2.1    yamt 	if (!rump_threads) {
    410  1.38.2.1    yamt 		/* fake them */
    411  1.38.2.1    yamt 		if (strcmp(thrstore, "vrele") == 0) {
    412  1.38.2.1    yamt 			printf("rump warning: threads not enabled, not starting"
    413  1.38.2.1    yamt 			   " vrele thread\n");
    414  1.38.2.1    yamt 			return 0;
    415  1.38.2.1    yamt 		} else if (strcmp(thrstore, "cachegc") == 0) {
    416  1.38.2.1    yamt 			printf("rump warning: threads not enabled, not starting"
    417  1.38.2.1    yamt 			   " namecache g/c thread\n");
    418  1.38.2.1    yamt 			return 0;
    419  1.38.2.1    yamt 		} else if (strcmp(thrstore, "nfssilly") == 0) {
    420  1.38.2.1    yamt 			printf("rump warning: threads not enabled, not enabling"
    421  1.38.2.1    yamt 			   " nfs silly rename\n");
    422  1.38.2.1    yamt 			return 0;
    423  1.38.2.2    yamt 		} else if (strcmp(thrstore, "unpgc") == 0) {
    424  1.38.2.2    yamt 			printf("rump warning: threads not enabled, not enabling"
    425  1.38.2.2    yamt 			   " UNP garbage collection\n");
    426  1.38.2.2    yamt 			return 0;
    427  1.38.2.1    yamt 		} else
    428  1.38.2.1    yamt 			panic("threads not available, setenv RUMP_THREADS 1");
    429  1.38.2.1    yamt 	}
    430      1.23   pooka 
    431      1.17   pooka 	KASSERT(fmt != NULL);
    432      1.17   pooka 	if (ci != NULL)
    433      1.17   pooka 		panic("%s: bounded threads not supported", __func__);
    434      1.17   pooka 
    435      1.17   pooka 	k = kmem_alloc(sizeof(struct kthdesc), KM_SLEEP);
    436      1.17   pooka 	k->f = func;
    437      1.17   pooka 	k->arg = arg;
    438  1.38.2.1    yamt 	k->mylwp = l = rump_setup_curlwp(0, rump_nextlid(), 0);
    439  1.38.2.1    yamt 	if (flags & KTHREAD_MPSAFE)
    440  1.38.2.1    yamt 		l->l_pflag |= LP_MPSAFE;
    441  1.38.2.1    yamt 	rv = rumpuser_thread_create(threadbouncer, k, thrname);
    442      1.17   pooka 	if (rv)
    443      1.17   pooka 		return rv;
    444       1.5   pooka 
    445      1.17   pooka 	if (newlp)
    446      1.17   pooka 		*newlp = l;
    447       1.5   pooka 	return 0;
    448       1.5   pooka }
    449       1.5   pooka 
    450       1.5   pooka void
    451      1.17   pooka kthread_exit(int ecode)
    452       1.5   pooka {
    453       1.5   pooka 
    454  1.38.2.1    yamt 	if ((curlwp->l_pflag & LP_MPSAFE) == 0)
    455  1.38.2.1    yamt 		KERNEL_UNLOCK_ONE(NULL);
    456  1.38.2.1    yamt 	rump_clear_curlwp();
    457      1.17   pooka 	rumpuser_thread_exit();
    458       1.5   pooka }
    459      1.11   pooka 
    460      1.20   pooka struct proc *
    461      1.20   pooka p_find(pid_t pid, uint flags)
    462      1.20   pooka {
    463      1.20   pooka 
    464      1.20   pooka 	panic("%s: not implemented", __func__);
    465      1.20   pooka }
    466      1.20   pooka 
    467      1.20   pooka struct pgrp *
    468      1.20   pooka pg_find(pid_t pid, uint flags)
    469      1.20   pooka {
    470      1.20   pooka 
    471      1.20   pooka 	panic("%s: not implemented", __func__);
    472      1.20   pooka }
    473      1.20   pooka 
    474      1.20   pooka void
    475  1.38.2.1    yamt psignal(struct proc *p, int signo)
    476  1.38.2.1    yamt {
    477  1.38.2.1    yamt 
    478  1.38.2.1    yamt 	switch (signo) {
    479  1.38.2.1    yamt 	case SIGSYS:
    480  1.38.2.1    yamt 		break;
    481  1.38.2.1    yamt 	default:
    482  1.38.2.1    yamt 		panic("unhandled signal %d", signo);
    483  1.38.2.1    yamt 	}
    484  1.38.2.1    yamt }
    485  1.38.2.1    yamt 
    486  1.38.2.1    yamt void
    487      1.20   pooka kpsignal(struct proc *p, ksiginfo_t *ksi, void *data)
    488      1.20   pooka {
    489      1.20   pooka 
    490      1.20   pooka 	panic("%s: not implemented", __func__);
    491      1.20   pooka }
    492      1.20   pooka 
    493      1.20   pooka void
    494      1.20   pooka kpgsignal(struct pgrp *pgrp, ksiginfo_t *ksi, void *data, int checkctty)
    495      1.20   pooka {
    496      1.20   pooka 
    497      1.20   pooka 	panic("%s: not implemented", __func__);
    498      1.20   pooka }
    499      1.20   pooka 
    500      1.20   pooka int
    501      1.20   pooka pgid_in_session(struct proc *p, pid_t pg_id)
    502      1.20   pooka {
    503      1.20   pooka 
    504      1.20   pooka 	panic("%s: not implemented", __func__);
    505      1.20   pooka }
    506      1.20   pooka 
    507      1.20   pooka int
    508      1.20   pooka sigispending(struct lwp *l, int signo)
    509      1.20   pooka {
    510      1.20   pooka 
    511      1.20   pooka 	return 0;
    512      1.20   pooka }
    513      1.20   pooka 
    514      1.20   pooka void
    515  1.38.2.1    yamt sigpending1(struct lwp *l, sigset_t *ss)
    516      1.20   pooka {
    517      1.20   pooka 
    518      1.20   pooka 	panic("%s: not implemented", __func__);
    519      1.20   pooka }
    520      1.20   pooka 
    521      1.20   pooka int
    522      1.20   pooka kpause(const char *wmesg, bool intr, int timeo, kmutex_t *mtx)
    523      1.20   pooka {
    524      1.20   pooka 	extern int hz;
    525      1.20   pooka 	int rv, error;
    526  1.38.2.1    yamt 	uint64_t sec, nsec;
    527  1.38.2.1    yamt 
    528      1.20   pooka 	if (mtx)
    529      1.20   pooka 		mutex_exit(mtx);
    530  1.38.2.1    yamt 
    531  1.38.2.1    yamt 	sec = timeo / hz;
    532  1.38.2.1    yamt 	nsec = (timeo % hz) * (1000000000 / hz);
    533  1.38.2.1    yamt 	rv = rumpuser_nanosleep(&sec, &nsec, &error);
    534  1.38.2.1    yamt 
    535      1.20   pooka 	if (mtx)
    536      1.20   pooka 		mutex_enter(mtx);
    537      1.20   pooka 
    538      1.20   pooka 	if (rv)
    539      1.20   pooka 		return error;
    540      1.20   pooka 
    541      1.20   pooka 	return 0;
    542      1.20   pooka }
    543      1.27   pooka 
    544      1.27   pooka void
    545  1.38.2.1    yamt suspendsched(void)
    546      1.27   pooka {
    547      1.27   pooka 
    548      1.27   pooka 	panic("%s: not implemented", __func__);
    549      1.27   pooka }
    550      1.29      ad 
    551      1.32     bjs u_int
    552      1.32     bjs lwp_unsleep(lwp_t *l, bool cleanup)
    553      1.32     bjs {
    554      1.32     bjs 
    555      1.32     bjs 	KASSERT(mutex_owned(l->l_mutex));
    556      1.32     bjs 
    557      1.32     bjs 	return (*l->l_syncobj->sobj_unsleep)(l, cleanup);
    558      1.32     bjs }
    559      1.34    yamt 
    560      1.34    yamt vaddr_t
    561      1.36    yamt calc_cache_size(struct vm_map *map, int pct, int va_pct)
    562      1.34    yamt {
    563      1.34    yamt 	paddr_t t;
    564      1.34    yamt 
    565      1.34    yamt 	t = (paddr_t)physmem * pct / 100 * PAGE_SIZE;
    566      1.34    yamt 	if ((vaddr_t)t != t) {
    567      1.34    yamt 		panic("%s: needs tweak", __func__);
    568      1.34    yamt 	}
    569      1.34    yamt 	return t;
    570      1.34    yamt }
    571      1.35  martin 
    572      1.35  martin int
    573      1.35  martin seltrue(dev_t dev, int events, struct lwp *l)
    574      1.35  martin {
    575      1.35  martin         return (events & (POLLIN | POLLOUT | POLLRDNORM | POLLWRNORM));
    576      1.35  martin }
    577      1.35  martin 
    578      1.35  martin void
    579      1.35  martin selrecord(lwp_t *selector, struct selinfo *sip)
    580      1.35  martin {
    581      1.35  martin }
    582      1.35  martin 
    583      1.35  martin void
    584      1.35  martin selinit(struct selinfo *sip)
    585      1.35  martin {
    586      1.35  martin }
    587      1.35  martin 
    588      1.35  martin void
    589      1.35  martin selnotify(struct selinfo *sip, int events, long knhint)
    590      1.35  martin {
    591      1.35  martin }
    592      1.35  martin 
    593      1.35  martin void
    594      1.35  martin seldestroy(struct selinfo *sip)
    595      1.35  martin {
    596      1.35  martin }
    597      1.37    matt 
    598      1.37    matt const char *
    599      1.37    matt device_xname(device_t dv)
    600      1.37    matt {
    601      1.37    matt 	return "bogus0";
    602      1.37    matt }
    603  1.38.2.1    yamt 
    604  1.38.2.1    yamt void
    605  1.38.2.1    yamt assert_sleepable(void)
    606  1.38.2.1    yamt {
    607  1.38.2.1    yamt 
    608  1.38.2.1    yamt 	/* always sleepable, although we should improve this */
    609  1.38.2.1    yamt }
    610  1.38.2.1    yamt 
    611  1.38.2.1    yamt void
    612  1.38.2.1    yamt tc_setclock(const struct timespec *ts)
    613  1.38.2.1    yamt {
    614  1.38.2.1    yamt 
    615  1.38.2.1    yamt 	panic("%s: not implemented", __func__);
    616  1.38.2.1    yamt }
    617  1.38.2.1    yamt 
    618  1.38.2.1    yamt void
    619  1.38.2.1    yamt proc_crmod_enter(void)
    620  1.38.2.1    yamt {
    621  1.38.2.1    yamt 
    622  1.38.2.1    yamt 	panic("%s: not implemented", __func__);
    623  1.38.2.1    yamt }
    624  1.38.2.1    yamt 
    625  1.38.2.1    yamt void
    626  1.38.2.1    yamt proc_crmod_leave(kauth_cred_t c1, kauth_cred_t c2, bool sugid)
    627  1.38.2.1    yamt {
    628  1.38.2.1    yamt 
    629  1.38.2.1    yamt 	panic("%s: not implemented", __func__);
    630  1.38.2.1    yamt }
    631  1.38.2.1    yamt 
    632  1.38.2.1    yamt void
    633  1.38.2.1    yamt module_init_md(void)
    634  1.38.2.1    yamt {
    635  1.38.2.1    yamt 
    636  1.38.2.1    yamt 	/*
    637  1.38.2.1    yamt 	 * Nothing for now.  However, we should load the librump
    638  1.38.2.1    yamt 	 * symbol table.
    639  1.38.2.1    yamt 	 */
    640  1.38.2.1    yamt }
    641  1.38.2.1    yamt 
    642  1.38.2.1    yamt /* us and them, after all we're only ordinary seconds */
    643  1.38.2.1    yamt static void
    644  1.38.2.1    yamt rump_delay(unsigned int us)
    645  1.38.2.1    yamt {
    646  1.38.2.1    yamt 	uint64_t sec, nsec;
    647  1.38.2.1    yamt 	int error;
    648  1.38.2.1    yamt 
    649  1.38.2.1    yamt 	sec = us / 1000000;
    650  1.38.2.1    yamt 	nsec = (us % 1000000) * 1000;
    651  1.38.2.1    yamt 
    652  1.38.2.1    yamt 	if (__predict_false(sec != 0))
    653  1.38.2.1    yamt 		printf("WARNING: over 1s delay\n");
    654  1.38.2.1    yamt 
    655  1.38.2.1    yamt 	rumpuser_nanosleep(&sec, &nsec, &error);
    656  1.38.2.1    yamt }
    657  1.38.2.1    yamt void (*delay_func)(unsigned int) = rump_delay;
    658  1.38.2.1    yamt 
    659  1.38.2.1    yamt void
    660  1.38.2.1    yamt kpreempt_disable(void)
    661  1.38.2.1    yamt {
    662  1.38.2.1    yamt 
    663  1.38.2.1    yamt 	/* XXX: see below */
    664  1.38.2.1    yamt 	KPREEMPT_DISABLE(curlwp);
    665  1.38.2.1    yamt }
    666  1.38.2.1    yamt 
    667  1.38.2.1    yamt void
    668  1.38.2.1    yamt kpreempt_enable(void)
    669  1.38.2.1    yamt {
    670  1.38.2.1    yamt 
    671  1.38.2.1    yamt 	/* try to make sure kpreempt_disable() is only used from panic() */
    672  1.38.2.1    yamt 	panic("kpreempt not supported");
    673  1.38.2.1    yamt }
    674  1.38.2.1    yamt 
    675  1.38.2.1    yamt void
    676  1.38.2.1    yamt proc_sesshold(struct session *ss)
    677  1.38.2.1    yamt {
    678  1.38.2.1    yamt 
    679  1.38.2.1    yamt 	panic("proc_sesshold() impossible, session %p", ss);
    680  1.38.2.1    yamt }
    681  1.38.2.1    yamt 
    682  1.38.2.1    yamt void
    683  1.38.2.1    yamt proc_sessrele(struct session *ss)
    684  1.38.2.1    yamt {
    685  1.38.2.1    yamt 
    686  1.38.2.1    yamt 	panic("proc_sessrele() impossible, session %p", ss);
    687  1.38.2.1    yamt }
    688  1.38.2.1    yamt 
    689  1.38.2.1    yamt int
    690  1.38.2.1    yamt ttycheckoutq(struct tty *tp, int wait)
    691  1.38.2.1    yamt {
    692  1.38.2.1    yamt 
    693  1.38.2.1    yamt 	return 1;
    694  1.38.2.1    yamt }
    695  1.38.2.1    yamt 
    696  1.38.2.1    yamt void
    697  1.38.2.1    yamt cnputc(int c)
    698  1.38.2.1    yamt {
    699  1.38.2.1    yamt 	int error;
    700  1.38.2.1    yamt 
    701  1.38.2.1    yamt 	rumpuser_putchar(c, &error);
    702  1.38.2.1    yamt }
    703  1.38.2.1    yamt 
    704  1.38.2.1    yamt void
    705  1.38.2.1    yamt cnflush(void)
    706  1.38.2.1    yamt {
    707  1.38.2.1    yamt 
    708  1.38.2.1    yamt 	/* done */
    709  1.38.2.1    yamt }
    710  1.38.2.1    yamt 
    711  1.38.2.1    yamt int
    712  1.38.2.1    yamt tputchar(int c, int flags, struct tty *tp)
    713  1.38.2.1    yamt {
    714  1.38.2.1    yamt 
    715  1.38.2.1    yamt 	cnputc(c);
    716  1.38.2.1    yamt 	return 0;
    717  1.38.2.1    yamt }
    718  1.38.2.1    yamt 
    719  1.38.2.1    yamt void
    720  1.38.2.1    yamt cpu_reboot(int howto, char *bootstr)
    721  1.38.2.1    yamt {
    722  1.38.2.1    yamt 
    723  1.38.2.1    yamt 	rumpuser_panic();
    724  1.38.2.1    yamt }
    725  1.38.2.1    yamt 
    726  1.38.2.1    yamt /* XXX: static, but not used except to make spcopy.S link */
    727  1.38.2.1    yamt #ifdef __hppa__
    728  1.38.2.1    yamt #undef curlwp
    729  1.38.2.1    yamt struct lwp *curlwp = &lwp0;
    730  1.38.2.1    yamt #endif
    731  1.38.2.1    yamt 
    732  1.38.2.1    yamt /*
    733  1.38.2.1    yamt  * XXX: from sys_select.c, see that file for license.
    734  1.38.2.1    yamt  * (these will go away really soon in favour of the real sys_select.c)
    735  1.38.2.1    yamt  * ((really, the select code just needs cleanup))
    736  1.38.2.1    yamt  * (((seriously)))
    737  1.38.2.1    yamt  */
    738  1.38.2.1    yamt int
    739  1.38.2.1    yamt inittimeleft(struct timespec *ts, struct timespec *sleepts)
    740  1.38.2.1    yamt {
    741  1.38.2.1    yamt 	if (itimespecfix(ts))
    742  1.38.2.1    yamt 		return -1;
    743  1.38.2.1    yamt 	getnanouptime(sleepts);
    744  1.38.2.1    yamt 	return 0;
    745  1.38.2.1    yamt }
    746  1.38.2.1    yamt 
    747  1.38.2.1    yamt int
    748  1.38.2.1    yamt gettimeleft(struct timespec *ts, struct timespec *sleepts)
    749  1.38.2.1    yamt {
    750  1.38.2.1    yamt 	/*
    751  1.38.2.1    yamt 	 * We have to recalculate the timeout on every retry.
    752  1.38.2.1    yamt 	 */
    753  1.38.2.1    yamt 	struct timespec sleptts;
    754  1.38.2.1    yamt 	/*
    755  1.38.2.1    yamt 	 * reduce ts by elapsed time
    756  1.38.2.1    yamt 	 * based on monotonic time scale
    757  1.38.2.1    yamt 	 */
    758  1.38.2.1    yamt 	getnanouptime(&sleptts);
    759  1.38.2.1    yamt 	timespecadd(ts, sleepts, ts);
    760  1.38.2.1    yamt 	timespecsub(ts, &sleptts, ts);
    761  1.38.2.1    yamt 	*sleepts = sleptts;
    762  1.38.2.1    yamt 	return tstohz(ts);
    763  1.38.2.1    yamt }
    764