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cpu.c revision 1.74.8.2
      1  1.74.8.2  pgoyette /* $NetBSD: cpu.c,v 1.74.8.2 2018/06/25 07:25:46 pgoyette Exp $ */
      2       1.1  jmcneill 
      3       1.1  jmcneill /*-
      4       1.1  jmcneill  * Copyright (c) 2007 Jared D. McNeill <jmcneill (at) invisible.ca>
      5       1.1  jmcneill  * All rights reserved.
      6       1.1  jmcneill  *
      7       1.1  jmcneill  * Redistribution and use in source and binary forms, with or without
      8       1.1  jmcneill  * modification, are permitted provided that the following conditions
      9       1.1  jmcneill  * are met:
     10       1.1  jmcneill  * 1. Redistributions of source code must retain the above copyright
     11       1.1  jmcneill  *    notice, this list of conditions and the following disclaimer.
     12       1.1  jmcneill  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.1  jmcneill  *    notice, this list of conditions and the following disclaimer in the
     14       1.1  jmcneill  *    documentation and/or other materials provided with the distribution.
     15       1.1  jmcneill  *
     16       1.1  jmcneill  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     17       1.1  jmcneill  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     18       1.1  jmcneill  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     19       1.1  jmcneill  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     20       1.1  jmcneill  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     21       1.1  jmcneill  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     22       1.1  jmcneill  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     23       1.1  jmcneill  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     24       1.1  jmcneill  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     25       1.1  jmcneill  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     26       1.1  jmcneill  * POSSIBILITY OF SUCH DAMAGE.
     27       1.1  jmcneill  */
     28       1.1  jmcneill 
     29      1.19  jmcneill #include "opt_cpu.h"
     30      1.37  jmcneill #include "opt_hz.h"
     31      1.19  jmcneill 
     32       1.1  jmcneill #include <sys/cdefs.h>
     33  1.74.8.2  pgoyette __KERNEL_RCSID(0, "$NetBSD: cpu.c,v 1.74.8.2 2018/06/25 07:25:46 pgoyette Exp $");
     34       1.1  jmcneill 
     35       1.1  jmcneill #include <sys/param.h>
     36       1.1  jmcneill #include <sys/conf.h>
     37       1.1  jmcneill #include <sys/proc.h>
     38       1.1  jmcneill #include <sys/systm.h>
     39       1.1  jmcneill #include <sys/device.h>
     40       1.1  jmcneill #include <sys/reboot.h>
     41       1.1  jmcneill #include <sys/lwp.h>
     42       1.1  jmcneill #include <sys/cpu.h>
     43       1.1  jmcneill #include <sys/mbuf.h>
     44      1.16  jmcneill #include <sys/msgbuf.h>
     45      1.54  jmcneill #include <sys/kmem.h>
     46      1.65   reinoud #include <sys/kernel.h>
     47      1.67  jmcneill #include <sys/mount.h>
     48       1.1  jmcneill 
     49       1.1  jmcneill #include <dev/cons.h>
     50       1.1  jmcneill 
     51       1.1  jmcneill #include <machine/cpu.h>
     52       1.1  jmcneill #include <machine/mainbus.h>
     53       1.8  jmcneill #include <machine/pcb.h>
     54      1.40   reinoud #include <machine/machdep.h>
     55      1.10  jmcneill #include <machine/thunk.h>
     56       1.1  jmcneill 
     57       1.1  jmcneill #include <uvm/uvm_extern.h>
     58       1.1  jmcneill #include <uvm/uvm_page.h>
     59       1.1  jmcneill 
     60      1.27  jmcneill #if __GNUC_PREREQ__(4,4)
     61      1.27  jmcneill #define cpu_unreachable()	__builtin_unreachable()
     62      1.27  jmcneill #else
     63      1.27  jmcneill #define cpu_unreachable()	do { thunk_abort(); } while (0)
     64      1.27  jmcneill #endif
     65      1.27  jmcneill 
     66       1.1  jmcneill static int	cpu_match(device_t, cfdata_t, void *);
     67       1.1  jmcneill static void	cpu_attach(device_t, device_t, void *);
     68       1.1  jmcneill 
     69  1.74.8.2  pgoyette /* XXX */
     70  1.74.8.2  pgoyette //extern void *_lwp_getprivate(void);
     71  1.74.8.2  pgoyette //extern int _lwp_setprivate(void *);
     72  1.74.8.2  pgoyette 
     73  1.74.8.2  pgoyette 
     74      1.13  jmcneill struct cpu_info cpu_info_primary = {
     75      1.13  jmcneill 	.ci_dev = 0,
     76      1.13  jmcneill 	.ci_self = &cpu_info_primary,
     77      1.13  jmcneill 	.ci_idepth = -1,
     78      1.13  jmcneill 	.ci_curlwp = &lwp0,
     79      1.13  jmcneill };
     80      1.13  jmcneill 
     81       1.1  jmcneill typedef struct cpu_softc {
     82       1.1  jmcneill 	device_t	sc_dev;
     83       1.1  jmcneill 	struct cpu_info	*sc_ci;
     84      1.68   reinoud 
     85      1.68   reinoud 	ucontext_t	sc_ucp;
     86      1.68   reinoud 	uint8_t		sc_ucp_stack[PAGE_SIZE];
     87       1.1  jmcneill } cpu_softc_t;
     88       1.1  jmcneill 
     89      1.64   reinoud 
     90      1.64   reinoud /* statics */
     91      1.15  jmcneill static struct pcb lwp0pcb;
     92      1.54  jmcneill static void *um_msgbuf;
     93       1.9  jmcneill 
     94      1.64   reinoud 
     95      1.64   reinoud /* attachment */
     96       1.1  jmcneill CFATTACH_DECL_NEW(cpu, sizeof(cpu_softc_t), cpu_match, cpu_attach, NULL, NULL);
     97       1.1  jmcneill 
     98       1.1  jmcneill static int
     99       1.1  jmcneill cpu_match(device_t parent, cfdata_t match, void *opaque)
    100       1.1  jmcneill {
    101       1.1  jmcneill 	struct thunkbus_attach_args *taa = opaque;
    102       1.1  jmcneill 
    103       1.1  jmcneill 	if (taa->taa_type != THUNKBUS_TYPE_CPU)
    104       1.1  jmcneill 		return 0;
    105       1.1  jmcneill 
    106       1.1  jmcneill 	return 1;
    107       1.1  jmcneill }
    108       1.1  jmcneill 
    109       1.1  jmcneill static void
    110       1.1  jmcneill cpu_attach(device_t parent, device_t self, void *opaque)
    111       1.1  jmcneill {
    112       1.1  jmcneill 	cpu_softc_t *sc = device_private(self);
    113       1.1  jmcneill 
    114       1.1  jmcneill 	aprint_naive("\n");
    115       1.1  jmcneill 	aprint_normal("\n");
    116       1.1  jmcneill 
    117      1.68   reinoud 	cpu_info_primary.ci_dev = self;
    118       1.1  jmcneill 	sc->sc_dev = self;
    119       1.1  jmcneill 	sc->sc_ci = &cpu_info_primary;
    120      1.68   reinoud 
    121      1.68   reinoud 	thunk_getcontext(&sc->sc_ucp);
    122      1.68   reinoud 	sc->sc_ucp.uc_stack.ss_sp = sc->sc_ucp_stack;
    123      1.68   reinoud 	sc->sc_ucp.uc_stack.ss_size = PAGE_SIZE - sizeof(register_t);
    124      1.68   reinoud 	sc->sc_ucp.uc_flags = _UC_STACK | _UC_CPU | _UC_SIGMASK;
    125      1.68   reinoud 	thunk_sigaddset(&sc->sc_ucp.uc_sigmask, SIGALRM);
    126      1.68   reinoud 	thunk_sigaddset(&sc->sc_ucp.uc_sigmask, SIGIO);
    127  1.74.8.1  pgoyette 	thunk_sigaddset(&sc->sc_ucp.uc_sigmask, SIGINT);
    128  1.74.8.1  pgoyette 	thunk_sigaddset(&sc->sc_ucp.uc_sigmask, SIGTSTP);
    129       1.1  jmcneill }
    130       1.1  jmcneill 
    131       1.1  jmcneill void
    132       1.1  jmcneill cpu_configure(void)
    133       1.1  jmcneill {
    134      1.73  christos 	cpu_setmodel("virtual processor");
    135       1.1  jmcneill 	if (config_rootfound("mainbus", NULL) == NULL)
    136       1.1  jmcneill 		panic("configure: mainbus not configured");
    137       1.1  jmcneill 
    138       1.1  jmcneill 	spl0();
    139       1.1  jmcneill }
    140       1.1  jmcneill 
    141      1.64   reinoud 
    142      1.64   reinoud /* main guts */
    143       1.1  jmcneill void
    144       1.1  jmcneill cpu_reboot(int howto, char *bootstr)
    145       1.1  jmcneill {
    146      1.11  jmcneill 	extern void usermode_reboot(void);
    147      1.11  jmcneill 
    148      1.67  jmcneill 	if (cold)
    149      1.67  jmcneill 		howto |= RB_HALT;
    150      1.67  jmcneill 
    151      1.67  jmcneill 	if ((howto & RB_NOSYNC) == 0)
    152      1.67  jmcneill 		vfs_shutdown();
    153      1.67  jmcneill 	else
    154      1.67  jmcneill 		suspendsched();
    155      1.67  jmcneill 
    156      1.67  jmcneill 	doshutdownhooks();
    157      1.67  jmcneill 	pmf_system_shutdown(boothowto);
    158       1.1  jmcneill 
    159       1.1  jmcneill 	if ((howto & RB_POWERDOWN) == RB_POWERDOWN)
    160      1.10  jmcneill 		thunk_exit(0);
    161       1.1  jmcneill 
    162      1.67  jmcneill 	splhigh();
    163      1.67  jmcneill 
    164      1.22  jmcneill 	if (howto & RB_DUMP)
    165      1.22  jmcneill 		thunk_abort();
    166      1.22  jmcneill 
    167       1.1  jmcneill 	if (howto & RB_HALT) {
    168       1.1  jmcneill 		printf("\n");
    169       1.1  jmcneill 		printf("The operating system has halted.\n");
    170       1.1  jmcneill 		printf("Please press any key to reboot.\n\n");
    171       1.1  jmcneill 		cnpollc(1);
    172       1.1  jmcneill 		cngetc();
    173       1.1  jmcneill 		cnpollc(0);
    174       1.1  jmcneill 	}
    175       1.1  jmcneill 
    176       1.1  jmcneill 	printf("rebooting...\n");
    177       1.1  jmcneill 
    178      1.11  jmcneill 	usermode_reboot();
    179       1.1  jmcneill 
    180       1.1  jmcneill 	/* NOTREACHED */
    181      1.27  jmcneill 	cpu_unreachable();
    182       1.1  jmcneill }
    183       1.1  jmcneill 
    184       1.1  jmcneill void
    185       1.1  jmcneill cpu_need_resched(struct cpu_info *ci, int flags)
    186       1.1  jmcneill {
    187       1.9  jmcneill 	ci->ci_want_resched |= flags;
    188      1.65   reinoud 	aston(ci);
    189       1.1  jmcneill }
    190       1.1  jmcneill 
    191       1.1  jmcneill void
    192       1.1  jmcneill cpu_need_proftick(struct lwp *l)
    193       1.1  jmcneill {
    194       1.1  jmcneill }
    195       1.1  jmcneill 
    196  1.74.8.2  pgoyette int
    197  1.74.8.2  pgoyette cpu_lwp_setprivate(lwp_t *l, void *ptr)
    198  1.74.8.2  pgoyette {
    199  1.74.8.2  pgoyette 	struct pcb *pcb = lwp_getpcb(l);
    200  1.74.8.2  pgoyette 
    201  1.74.8.2  pgoyette 	/* set both ucontexts up for TLS just in case */
    202  1.74.8.2  pgoyette 	pcb->pcb_ucp.uc_mcontext._mc_tlsbase =
    203  1.74.8.2  pgoyette 		(uintptr_t) ptr;
    204  1.74.8.2  pgoyette 	pcb->pcb_ucp.uc_flags |= _UC_TLSBASE;
    205  1.74.8.2  pgoyette 
    206  1.74.8.2  pgoyette 	pcb->pcb_userret_ucp.uc_mcontext._mc_tlsbase =
    207  1.74.8.2  pgoyette 		(uintptr_t) ptr;
    208  1.74.8.2  pgoyette 	pcb->pcb_userret_ucp.uc_flags |= _UC_TLSBASE;
    209  1.74.8.2  pgoyette 
    210  1.74.8.2  pgoyette 	return 0;
    211  1.74.8.2  pgoyette }
    212  1.74.8.2  pgoyette 
    213      1.68   reinoud static
    214      1.68   reinoud void
    215      1.68   reinoud cpu_switchto_atomic(lwp_t *oldlwp, lwp_t *newlwp)
    216      1.68   reinoud {
    217  1.74.8.1  pgoyette 	struct pcb *oldpcb;
    218  1.74.8.1  pgoyette 	struct pcb *newpcb;
    219  1.74.8.1  pgoyette 	struct cpu_info *ci;
    220  1.74.8.2  pgoyette 	int s;
    221  1.74.8.1  pgoyette 
    222  1.74.8.1  pgoyette 	oldpcb = oldlwp ? lwp_getpcb(oldlwp) : NULL;
    223  1.74.8.1  pgoyette 	newpcb = lwp_getpcb(newlwp);
    224  1.74.8.1  pgoyette 	ci = curcpu();
    225      1.68   reinoud 
    226  1.74.8.2  pgoyette 	s = splhigh();
    227      1.68   reinoud 
    228  1.74.8.2  pgoyette 	ci->ci_stash = oldlwp;
    229      1.68   reinoud 	if (oldpcb)
    230      1.68   reinoud 		oldpcb->pcb_errno = thunk_geterrno();
    231      1.68   reinoud 
    232      1.68   reinoud 	thunk_seterrno(newpcb->pcb_errno);
    233      1.68   reinoud 	curlwp = newlwp;
    234  1.74.8.2  pgoyette 
    235  1.74.8.2  pgoyette 	splx(s);
    236  1.74.8.2  pgoyette 
    237      1.68   reinoud 	if (thunk_setcontext(&newpcb->pcb_ucp))
    238      1.68   reinoud 		panic("setcontext failed");
    239  1.74.8.2  pgoyette 
    240      1.68   reinoud 	/* not reached */
    241      1.68   reinoud }
    242      1.68   reinoud 
    243  1.74.8.2  pgoyette 
    244       1.1  jmcneill lwp_t *
    245       1.1  jmcneill cpu_switchto(lwp_t *oldlwp, lwp_t *newlwp, bool returning)
    246       1.1  jmcneill {
    247       1.5     rmind 	struct pcb *oldpcb = oldlwp ? lwp_getpcb(oldlwp) : NULL;
    248       1.5     rmind 	struct pcb *newpcb = lwp_getpcb(newlwp);
    249       1.1  jmcneill 	struct cpu_info *ci = curcpu();
    250      1.68   reinoud 	cpu_softc_t *sc = device_private(ci->ci_dev);
    251       1.1  jmcneill 
    252       1.1  jmcneill #ifdef CPU_DEBUG
    253      1.58   reinoud 	thunk_printf_debug("cpu_switchto [%s,pid=%d,lid=%d] -> [%s,pid=%d,lid=%d]\n",
    254       1.1  jmcneill 	    oldlwp ? oldlwp->l_name : "none",
    255      1.17  jmcneill 	    oldlwp ? oldlwp->l_proc->p_pid : -1,
    256      1.17  jmcneill 	    oldlwp ? oldlwp->l_lid : -1,
    257      1.17  jmcneill 	    newlwp ? newlwp->l_name : "none",
    258      1.17  jmcneill 	    newlwp ? newlwp->l_proc->p_pid : -1,
    259      1.17  jmcneill 	    newlwp ? newlwp->l_lid : -1);
    260       1.1  jmcneill 	if (oldpcb) {
    261      1.58   reinoud 		thunk_printf_debug("    oldpcb uc_link=%p, uc_stack.ss_sp=%p, "
    262  1.74.8.2  pgoyette 		    "uc_stack.ss_size=%d, l_private %p, uc_mcontext._mc_tlsbase=%p(%s)\n",
    263       1.1  jmcneill 		    oldpcb->pcb_ucp.uc_link,
    264       1.1  jmcneill 		    oldpcb->pcb_ucp.uc_stack.ss_sp,
    265  1.74.8.2  pgoyette 		    (int)oldpcb->pcb_ucp.uc_stack.ss_size,
    266  1.74.8.2  pgoyette 		    (void *) oldlwp->l_private,
    267  1.74.8.2  pgoyette 		    (void *) oldpcb->pcb_ucp.uc_mcontext._mc_tlsbase,
    268  1.74.8.2  pgoyette 		    oldpcb->pcb_ucp.uc_flags & _UC_TLSBASE? "ON":"off");
    269       1.1  jmcneill 	}
    270       1.1  jmcneill 	if (newpcb) {
    271  1.74.8.2  pgoyette 		thunk_printf_debug("    newpewcb uc_link=%p, uc_stack.ss_sp=%p, "
    272  1.74.8.2  pgoyette 		    "uc_stack.ss_size=%d, l_private %p, uc_mcontext._mc_tlsbase=%p(%s)\n",
    273       1.1  jmcneill 		    newpcb->pcb_ucp.uc_link,
    274       1.1  jmcneill 		    newpcb->pcb_ucp.uc_stack.ss_sp,
    275  1.74.8.2  pgoyette 		    (int)newpcb->pcb_ucp.uc_stack.ss_size,
    276  1.74.8.2  pgoyette 		    (void *) newlwp->l_private,
    277  1.74.8.2  pgoyette 		    (void *) newpcb->pcb_ucp.uc_mcontext._mc_tlsbase,
    278  1.74.8.2  pgoyette 		    newpcb->pcb_ucp.uc_flags & _UC_TLSBASE? "ON":"off");
    279       1.1  jmcneill 	}
    280       1.1  jmcneill #endif /* !CPU_DEBUG */
    281       1.1  jmcneill 
    282      1.68   reinoud 	/* create atomic switcher */
    283  1.74.8.1  pgoyette 	KASSERT(newlwp);
    284      1.68   reinoud 	thunk_makecontext(&sc->sc_ucp, (void (*)(void)) cpu_switchto_atomic,
    285      1.70   reinoud 			2, oldlwp, newlwp, NULL, NULL);
    286      1.69   reinoud 	KASSERT(sc);
    287      1.69   reinoud 	if (oldpcb) {
    288      1.69   reinoud 		thunk_swapcontext(&oldpcb->pcb_ucp, &sc->sc_ucp);
    289      1.69   reinoud 		/* returns here */
    290      1.69   reinoud 	} else {
    291      1.68   reinoud 		thunk_setcontext(&sc->sc_ucp);
    292      1.68   reinoud 		/* never returns */
    293       1.1  jmcneill 	}
    294      1.30   reinoud 
    295       1.1  jmcneill #ifdef CPU_DEBUG
    296      1.58   reinoud 	thunk_printf_debug("cpu_switchto: returning %p (was %p)\n", ci->ci_stash, oldlwp);
    297       1.1  jmcneill #endif
    298       1.1  jmcneill 	return ci->ci_stash;
    299       1.1  jmcneill }
    300       1.1  jmcneill 
    301       1.1  jmcneill void
    302       1.1  jmcneill cpu_dumpconf(void)
    303       1.1  jmcneill {
    304       1.1  jmcneill #ifdef CPU_DEBUG
    305      1.58   reinoud 	thunk_printf_debug("cpu_dumpconf\n");
    306       1.1  jmcneill #endif
    307       1.1  jmcneill }
    308       1.1  jmcneill 
    309       1.1  jmcneill void
    310       1.1  jmcneill cpu_signotify(struct lwp *l)
    311       1.1  jmcneill {
    312       1.1  jmcneill }
    313       1.1  jmcneill 
    314       1.1  jmcneill void
    315       1.1  jmcneill cpu_getmcontext(struct lwp *l, mcontext_t *mcp, unsigned int *flags)
    316       1.1  jmcneill {
    317      1.56   reinoud 	struct pcb *pcb = lwp_getpcb(l);
    318      1.56   reinoud 	ucontext_t *ucp = &pcb->pcb_userret_ucp;
    319  1.74.8.2  pgoyette 
    320       1.1  jmcneill #ifdef CPU_DEBUG
    321      1.58   reinoud 	thunk_printf_debug("cpu_getmcontext\n");
    322       1.1  jmcneill #endif
    323      1.56   reinoud 	memcpy(mcp, &ucp->uc_mcontext, sizeof(mcontext_t));
    324  1.74.8.2  pgoyette 
    325  1.74.8.2  pgoyette 	/* report we have the CPU FPU and TLSBASE registers */
    326  1.74.8.2  pgoyette 	mcp->_mc_tlsbase = (uintptr_t) l->l_private;
    327  1.74.8.2  pgoyette 	*flags = _UC_CPU | _UC_FPU | _UC_TLSBASE;
    328  1.74.8.2  pgoyette 
    329      1.56   reinoud 	return;
    330       1.1  jmcneill }
    331       1.1  jmcneill 
    332       1.1  jmcneill int
    333      1.71   reinoud cpu_mcontext_validate(struct lwp *l, const mcontext_t *mcp)
    334      1.71   reinoud {
    335      1.71   reinoud 	/*
    336      1.71   reinoud 	 * can we check here? or should that be done in the target
    337      1.71   reinoud 	 * specific places?
    338      1.71   reinoud 	 */
    339  1.74.8.2  pgoyette 	/* XXX NO CHECKING! XXX */
    340  1.74.8.2  pgoyette #ifdef CPU_DEBUG
    341  1.74.8.2  pgoyette 	thunk_printf_debug("cpu_mcontext_validate\n");
    342  1.74.8.2  pgoyette #endif
    343      1.71   reinoud 	return 0;
    344      1.71   reinoud }
    345      1.71   reinoud 
    346      1.71   reinoud int
    347       1.1  jmcneill cpu_setmcontext(struct lwp *l, const mcontext_t *mcp, unsigned int flags)
    348       1.1  jmcneill {
    349      1.56   reinoud 	struct pcb *pcb = lwp_getpcb(l);
    350      1.56   reinoud 	ucontext_t *ucp = &pcb->pcb_userret_ucp;
    351      1.56   reinoud 
    352       1.1  jmcneill #ifdef CPU_DEBUG
    353      1.58   reinoud 	thunk_printf_debug("cpu_setmcontext\n");
    354       1.1  jmcneill #endif
    355  1.74.8.2  pgoyette 	if ((flags & _UC_CPU) != 0)
    356  1.74.8.2  pgoyette 		memcpy(&ucp->uc_mcontext.__gregs, &mcp->__gregs, sizeof(__gregset_t));
    357  1.74.8.2  pgoyette 	if ((flags & _UC_FPU) != 0)
    358  1.74.8.2  pgoyette 		memcpy(&ucp->uc_mcontext.__fpregs, &mcp->__fpregs, sizeof(__fpregset_t));
    359  1.74.8.2  pgoyette 	if ((flags & _UC_TLSBASE) != 0)
    360  1.74.8.2  pgoyette 		lwp_setprivate(l, (void *) (uintptr_t) mcp->_mc_tlsbase);
    361  1.74.8.2  pgoyette 
    362  1.74.8.2  pgoyette #if 0
    363  1.74.8.2  pgoyette 	/*
    364  1.74.8.2  pgoyette 	 * XXX we ignore the set and clear stack since signals are done
    365  1.74.8.2  pgoyette 	 * slightly differently.
    366  1.74.8.2  pgoyette 	 */
    367  1.74.8.2  pgoyette thunk_printf("%s: flags %x\n", __func__, flags);
    368  1.74.8.2  pgoyette 	mutex_enter(l->l_proc->p_lock);
    369  1.74.8.2  pgoyette 	if (flags & _UC_SETSTACK)
    370  1.74.8.2  pgoyette 		l->l_sigstk.ss_flags |= SS_ONSTACK;
    371  1.74.8.2  pgoyette 	if (flags & _UC_CLRSTACK)
    372  1.74.8.2  pgoyette 		l->l_sigstk.ss_flags &= ~SS_ONSTACK;
    373  1.74.8.2  pgoyette 	mutex_exit(l->l_proc->p_lock);
    374  1.74.8.2  pgoyette #endif
    375  1.74.8.2  pgoyette 
    376  1.74.8.2  pgoyette 	ucp->uc_flags |= (flags & (_UC_CPU | _UC_FPU | _UC_TLSBASE));
    377  1.74.8.2  pgoyette 
    378       1.1  jmcneill 	return 0;
    379       1.1  jmcneill }
    380       1.1  jmcneill 
    381       1.1  jmcneill void
    382       1.1  jmcneill cpu_idle(void)
    383       1.1  jmcneill {
    384       1.1  jmcneill 	struct cpu_info *ci = curcpu();
    385       1.1  jmcneill 
    386       1.1  jmcneill 	if (ci->ci_want_resched)
    387       1.1  jmcneill 		return;
    388       1.1  jmcneill 
    389      1.53  jmcneill 	thunk_idle();
    390       1.1  jmcneill }
    391       1.1  jmcneill 
    392       1.1  jmcneill void
    393       1.1  jmcneill cpu_lwp_free(struct lwp *l, int proc)
    394       1.1  jmcneill {
    395       1.1  jmcneill #ifdef CPU_DEBUG
    396      1.58   reinoud 	thunk_printf_debug("cpu_lwp_free (dummy)\n");
    397       1.1  jmcneill #endif
    398       1.1  jmcneill }
    399       1.1  jmcneill 
    400       1.1  jmcneill void
    401       1.1  jmcneill cpu_lwp_free2(struct lwp *l)
    402       1.1  jmcneill {
    403       1.5     rmind 	struct pcb *pcb = lwp_getpcb(l);
    404       1.1  jmcneill 
    405       1.1  jmcneill #ifdef CPU_DEBUG
    406      1.58   reinoud 	thunk_printf_debug("cpu_lwp_free2\n");
    407       1.1  jmcneill #endif
    408       1.1  jmcneill 
    409       1.1  jmcneill 	if (pcb == NULL)
    410       1.1  jmcneill 		return;
    411      1.64   reinoud 	/* XXX nothing to do? */
    412       1.1  jmcneill }
    413       1.1  jmcneill 
    414       1.1  jmcneill static void
    415      1.44   reinoud cpu_lwp_trampoline(ucontext_t *ucp, void (*func)(void *), void *arg)
    416       1.1  jmcneill {
    417      1.18   reinoud #ifdef CPU_DEBUG
    418      1.58   reinoud 	thunk_printf_debug("cpu_lwp_trampoline called with func %p, arg %p\n", (void *) func, arg);
    419      1.18   reinoud #endif
    420      1.44   reinoud 	/* init lwp */
    421       1.1  jmcneill 	lwp_startup(curcpu()->ci_stash, curlwp);
    422      1.44   reinoud 
    423      1.45   reinoud 	/* actual jump */
    424      1.70   reinoud 	thunk_makecontext(ucp, (void (*)(void)) func, 1, arg, NULL, NULL, NULL);
    425      1.45   reinoud 	thunk_setcontext(ucp);
    426       1.1  jmcneill }
    427       1.1  jmcneill 
    428       1.1  jmcneill void
    429       1.1  jmcneill cpu_lwp_fork(struct lwp *l1, struct lwp *l2, void *stack, size_t stacksize,
    430       1.1  jmcneill     void (*func)(void *), void *arg)
    431       1.1  jmcneill {
    432      1.23   reinoud 	struct pcb *pcb1 = lwp_getpcb(l1);
    433      1.23   reinoud 	struct pcb *pcb2 = lwp_getpcb(l2);
    434       1.1  jmcneill 
    435       1.1  jmcneill #ifdef CPU_DEBUG
    436      1.58   reinoud 	thunk_printf_debug("cpu_lwp_fork [%s/%p] -> [%s/%p] stack=%p stacksize=%d\n",
    437       1.1  jmcneill 	    l1 ? l1->l_name : "none", l1,
    438       1.1  jmcneill 	    l2 ? l2->l_name : "none", l2,
    439       1.1  jmcneill 	    stack, (int)stacksize);
    440       1.1  jmcneill #endif
    441      1.45   reinoud 	if (stack)
    442      1.45   reinoud 		panic("%s: stack passed, can't handle\n", __func__);
    443      1.45   reinoud 
    444      1.23   reinoud 	/* copy the PCB and its switchframes from parent */
    445      1.23   reinoud 	memcpy(pcb2, pcb1, sizeof(struct pcb));
    446      1.23   reinoud 
    447  1.74.8.2  pgoyette 	/* refresh context, XXX needed? */
    448      1.23   reinoud 	if (thunk_getcontext(&pcb2->pcb_ucp))
    449      1.26  jmcneill 		panic("getcontext failed");
    450      1.23   reinoud 
    451  1.74.8.2  pgoyette 	/* set up for TLS */
    452  1.74.8.2  pgoyette 	pcb2->pcb_ucp.uc_mcontext._mc_tlsbase = (intptr_t) l2->l_private;
    453  1.74.8.2  pgoyette 	pcb2->pcb_ucp.uc_flags |= _UC_TLSBASE;
    454  1.74.8.2  pgoyette 
    455      1.64   reinoud 	/* recalculate the system stack top */
    456      1.64   reinoud 	pcb2->sys_stack_top = pcb2->sys_stack + TRAPSTACKSIZE;
    457      1.64   reinoud 
    458      1.64   reinoud 	/* get l2 its own stack */
    459      1.64   reinoud 	pcb2->pcb_ucp.uc_stack.ss_sp = pcb2->sys_stack;
    460      1.64   reinoud 	pcb2->pcb_ucp.uc_stack.ss_size = pcb2->sys_stack_top - pcb2->sys_stack;
    461      1.69   reinoud 	pcb2->pcb_ucp.uc_link = &pcb2->pcb_userret_ucp;
    462      1.69   reinoud 
    463      1.69   reinoud 	thunk_sigemptyset(&pcb2->pcb_ucp.uc_sigmask);
    464  1.74.8.2  pgoyette 
    465      1.45   reinoud 	thunk_makecontext(&pcb2->pcb_ucp,
    466      1.45   reinoud 	    (void (*)(void)) cpu_lwp_trampoline,
    467      1.70   reinoud 	    3, &pcb2->pcb_ucp, func, arg, NULL);
    468       1.1  jmcneill }
    469       1.1  jmcneill 
    470       1.1  jmcneill void
    471       1.1  jmcneill cpu_initclocks(void)
    472       1.1  jmcneill {
    473      1.55  jmcneill 	extern timer_t clock_timerid;
    474      1.37  jmcneill 
    475      1.55  jmcneill 	thunk_timer_start(clock_timerid, HZ);
    476       1.1  jmcneill }
    477       1.1  jmcneill 
    478       1.1  jmcneill void
    479       1.1  jmcneill cpu_startup(void)
    480       1.1  jmcneill {
    481      1.57   reinoud 	vaddr_t minaddr, maxaddr;
    482      1.64   reinoud 	size_t msgbufsize = 32 * 1024;
    483      1.47   reinoud 
    484      1.57   reinoud 	/* get ourself a message buffer */
    485      1.54  jmcneill 	um_msgbuf = kmem_zalloc(msgbufsize, KM_SLEEP);
    486      1.54  jmcneill 	initmsgbuf(um_msgbuf, msgbufsize);
    487      1.16  jmcneill 
    488      1.57   reinoud 	/* allocate a submap for physio, 1Mb enough? */
    489      1.57   reinoud 	minaddr = 0;
    490      1.57   reinoud 	phys_map = uvm_km_suballoc(kernel_map, &minaddr, &maxaddr,
    491      1.57   reinoud 				   1024 * 1024, 0, false, NULL);
    492      1.57   reinoud 
    493      1.57   reinoud 	/* say hi! */
    494      1.13  jmcneill 	banner();
    495      1.15  jmcneill 
    496      1.57   reinoud 	/* init lwp0 */
    497      1.15  jmcneill 	memset(&lwp0pcb, 0, sizeof(lwp0pcb));
    498      1.64   reinoud 	thunk_getcontext(&lwp0pcb.pcb_ucp);
    499      1.69   reinoud 	thunk_sigemptyset(&lwp0pcb.pcb_ucp.uc_sigmask);
    500      1.68   reinoud 	lwp0pcb.pcb_ucp.uc_flags = _UC_STACK | _UC_CPU | _UC_SIGMASK;
    501      1.69   reinoud 
    502      1.64   reinoud 	uvm_lwp_setuarea(&lwp0, (vaddr_t) &lwp0pcb);
    503      1.64   reinoud 	memcpy(&lwp0pcb.pcb_userret_ucp, &lwp0pcb.pcb_ucp, sizeof(ucontext_t));
    504      1.23   reinoud 
    505      1.64   reinoud 	/* set stack top */
    506      1.64   reinoud 	lwp0pcb.sys_stack_top = lwp0pcb.sys_stack + TRAPSTACKSIZE;
    507       1.1  jmcneill }
    508       1.1  jmcneill 
    509       1.1  jmcneill void
    510       1.1  jmcneill cpu_rootconf(void)
    511       1.1  jmcneill {
    512      1.66  jmcneill 	extern char *usermode_root_device;
    513       1.2     joerg 	device_t rdev;
    514       1.1  jmcneill 
    515      1.66  jmcneill 	if (usermode_root_device != NULL) {
    516      1.66  jmcneill 		rdev = device_find_by_xname(usermode_root_device);
    517      1.66  jmcneill 	} else {
    518      1.66  jmcneill 		rdev = device_find_by_xname("ld0");
    519      1.66  jmcneill 		if (rdev == NULL)
    520      1.66  jmcneill 			rdev = device_find_by_xname("md0");
    521      1.66  jmcneill 	}
    522       1.1  jmcneill 
    523      1.12  jmcneill 	aprint_normal("boot device: %s\n",
    524      1.12  jmcneill 	    rdev ? device_xname(rdev) : "<unknown>");
    525      1.72   mlelstv 	booted_device = rdev;
    526      1.72   mlelstv 	rootconf();
    527       1.1  jmcneill }
    528       1.1  jmcneill 
    529       1.1  jmcneill bool
    530       1.1  jmcneill cpu_intr_p(void)
    531       1.1  jmcneill {
    532      1.13  jmcneill 	int idepth;
    533      1.13  jmcneill 
    534      1.13  jmcneill 	kpreempt_disable();
    535      1.13  jmcneill 	idepth = curcpu()->ci_idepth;
    536      1.13  jmcneill 	kpreempt_enable();
    537      1.13  jmcneill 
    538      1.13  jmcneill 	return (idepth >= 0);
    539       1.1  jmcneill }
    540