15b81b6b3SRodney W. Grimes /*- 25b81b6b3SRodney W. Grimes * Copyright (c) 1982, 1986 The Regents of the University of California. 35b81b6b3SRodney W. Grimes * Copyright (c) 1989, 1990 William Jolitz 41561d038SDavid Greenman * Copyright (c) 1994 John Dyson 55b81b6b3SRodney W. Grimes * All rights reserved. 65b81b6b3SRodney W. Grimes * 75b81b6b3SRodney W. Grimes * This code is derived from software contributed to Berkeley by 85b81b6b3SRodney W. Grimes * the Systems Programming Group of the University of Utah Computer 95b81b6b3SRodney W. Grimes * Science Department, and William Jolitz. 105b81b6b3SRodney W. Grimes * 115b81b6b3SRodney W. Grimes * Redistribution and use in source and binary forms, with or without 125b81b6b3SRodney W. Grimes * modification, are permitted provided that the following conditions 135b81b6b3SRodney W. Grimes * are met: 145b81b6b3SRodney W. Grimes * 1. Redistributions of source code must retain the above copyright 155b81b6b3SRodney W. Grimes * notice, this list of conditions and the following disclaimer. 165b81b6b3SRodney W. Grimes * 2. Redistributions in binary form must reproduce the above copyright 175b81b6b3SRodney W. Grimes * notice, this list of conditions and the following disclaimer in the 185b81b6b3SRodney W. Grimes * documentation and/or other materials provided with the distribution. 195b81b6b3SRodney W. Grimes * 3. All advertising materials mentioning features or use of this software 205b81b6b3SRodney W. Grimes * must display the following acknowledgement: 215b81b6b3SRodney W. Grimes * This product includes software developed by the University of 225b81b6b3SRodney W. Grimes * California, Berkeley and its contributors. 235b81b6b3SRodney W. Grimes * 4. Neither the name of the University nor the names of its contributors 245b81b6b3SRodney W. Grimes * may be used to endorse or promote products derived from this software 255b81b6b3SRodney W. Grimes * without specific prior written permission. 265b81b6b3SRodney W. Grimes * 275b81b6b3SRodney W. Grimes * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 285b81b6b3SRodney W. Grimes * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 295b81b6b3SRodney W. Grimes * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 305b81b6b3SRodney W. Grimes * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 315b81b6b3SRodney W. Grimes * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 325b81b6b3SRodney W. Grimes * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 335b81b6b3SRodney W. Grimes * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 345b81b6b3SRodney W. Grimes * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 355b81b6b3SRodney W. Grimes * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 365b81b6b3SRodney W. Grimes * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 375b81b6b3SRodney W. Grimes * SUCH DAMAGE. 385b81b6b3SRodney W. Grimes * 39960173b9SRodney W. Grimes * from: @(#)vm_machdep.c 7.3 (Berkeley) 5/13/91 405b81b6b3SRodney W. Grimes * Utah $Hdr: vm_machdep.c 1.16.1.1 89/06/23$ 415b81b6b3SRodney W. Grimes */ 425b81b6b3SRodney W. Grimes 439676a785SDavid E. O'Brien #include <sys/cdefs.h> 449676a785SDavid E. O'Brien __FBSDID("$FreeBSD$"); 459676a785SDavid E. O'Brien 466d7d4649SBruce Evans #include "opt_isa.h" 47558226eaSPeter Wemm #include "opt_npx.h" 4861324207SKATO Takenori #ifdef PC98 4961324207SKATO Takenori #include "opt_pc98.h" 5061324207SKATO Takenori #endif 510d74cc48SPeter Wemm #include "opt_reset.h" 52883bd55aSPoul-Henning Kamp #include "opt_cpu.h" 538890984dSGarrett Wollman 5426f9a767SRodney W. Grimes #include <sys/param.h> 5526f9a767SRodney W. Grimes #include <sys/systm.h> 569626b608SPoul-Henning Kamp #include <sys/bio.h> 5726f9a767SRodney W. Grimes #include <sys/buf.h> 586d7d4649SBruce Evans #include <sys/kse.h> 5966095752SJohn Dyson #include <sys/kernel.h> 600384fff8SJason Evans #include <sys/ktr.h> 616d7d4649SBruce Evans #include <sys/lock.h> 626d7d4649SBruce Evans #include <sys/malloc.h> 63411d10a6SAlan Cox #include <sys/mbuf.h> 6413b0500fSJohn Baldwin #include <sys/mutex.h> 655ad5504cSKelly Yancey #include <sys/pioctl.h> 666d7d4649SBruce Evans #include <sys/proc.h> 67e45db9b8SAlan Cox #include <sys/sf_buf.h> 686d7d4649SBruce Evans #include <sys/smp.h> 6966095752SJohn Dyson #include <sys/sysctl.h> 7091c28bfdSLuoqi Chen #include <sys/unistd.h> 716d7d4649SBruce Evans #include <sys/vnode.h> 726d7d4649SBruce Evans #include <sys/vmmeter.h> 735b81b6b3SRodney W. Grimes 74a2a1c95cSPeter Wemm #include <machine/cpu.h> 7541ee9f1cSPoul-Henning Kamp #include <machine/cputypes.h> 761f8745a9SPeter Wemm #include <machine/md_var.h> 7791c28bfdSLuoqi Chen #include <machine/pcb.h> 7891c28bfdSLuoqi Chen #include <machine/pcb_ext.h> 795c0db7c7SAlan Cox #include <machine/smp.h> 8091c28bfdSLuoqi Chen #include <machine/vm86.h> 815b81b6b3SRodney W. Grimes 82883bd55aSPoul-Henning Kamp #ifdef CPU_ELAN 83883bd55aSPoul-Henning Kamp #include <machine/elan_mmcr.h> 84883bd55aSPoul-Henning Kamp #endif 85883bd55aSPoul-Henning Kamp 8626f9a767SRodney W. Grimes #include <vm/vm.h> 876d7d4649SBruce Evans #include <vm/vm_extern.h> 8826f9a767SRodney W. Grimes #include <vm/vm_kern.h> 8924a1cce3SDavid Greenman #include <vm/vm_page.h> 90efeaf95aSDavid Greenman #include <vm/vm_map.h> 916d7d4649SBruce Evans #include <vm/vm_param.h> 925b81b6b3SRodney W. Grimes 93e30f0011SSatoshi Asami #ifdef PC98 94d1725ef7SYoshihiro Takahashi #include <pc98/cbus/cbus.h> 95e30f0011SSatoshi Asami #else 962320728fSRodney W. Grimes #include <i386/isa/isa.h> 97e30f0011SSatoshi Asami #endif 982320728fSRodney W. Grimes 99099a0e58SBosko Milekic #ifndef NSFBUFS 100099a0e58SBosko Milekic #define NSFBUFS (512 + maxusers * 16) 101099a0e58SBosko Milekic #endif 102099a0e58SBosko Milekic 10315fe3067SAlfred Perlstein static void cpu_reset_real(void); 1044260b00aSNate Lawson #ifdef SMP 1054260b00aSNate Lawson static void cpu_reset_proxy(void); 1064260b00aSNate Lawson static u_int cpu_reset_proxyid; 1074260b00aSNate Lawson static volatile u_int cpu_reset_proxy_active; 1084260b00aSNate Lawson #endif 109411d10a6SAlan Cox static void sf_buf_init(void *arg); 110411d10a6SAlan Cox SYSINIT(sock_sf, SI_SUB_MBUF, SI_ORDER_ANY, sf_buf_init, NULL) 111411d10a6SAlan Cox 1120543fa53SAlan Cox LIST_HEAD(sf_head, sf_buf); 113411d10a6SAlan Cox 1140543fa53SAlan Cox /* 1150543fa53SAlan Cox * A hash table of active sendfile(2) buffers 1160543fa53SAlan Cox */ 1170543fa53SAlan Cox static struct sf_head *sf_buf_active; 1180543fa53SAlan Cox static u_long sf_buf_hashmask; 1190543fa53SAlan Cox 1200543fa53SAlan Cox #define SF_BUF_HASH(m) (((m) - vm_page_array) & sf_buf_hashmask) 1210543fa53SAlan Cox 122a5819cb5SAlan Cox static TAILQ_HEAD(, sf_buf) sf_buf_freelist; 123411d10a6SAlan Cox static u_int sf_buf_alloc_want; 124411d10a6SAlan Cox 1250543fa53SAlan Cox /* 1260543fa53SAlan Cox * A lock used to synchronize access to the hash table and free list 1270543fa53SAlan Cox */ 1280543fa53SAlan Cox static struct mtx sf_buf_lock; 1290543fa53SAlan Cox 13037b087a6SPeter Wemm extern int _ucodesel, _udatasel; 1312f1e7069STor Egge 132a4f7a4c9SDavid Greenman /* 1335b81b6b3SRodney W. Grimes * Finish a fork operation, with process p2 nearly set up. 134a2a1c95cSPeter Wemm * Copy and update the pcb, set up the stack so that the child 135a2a1c95cSPeter Wemm * ready to run and return to user mode. 1365b81b6b3SRodney W. Grimes */ 137a2a1c95cSPeter Wemm void 138079b7badSJulian Elischer cpu_fork(td1, p2, td2, flags) 139b40ce416SJulian Elischer register struct thread *td1; 140b40ce416SJulian Elischer register struct proc *p2; 141079b7badSJulian Elischer struct thread *td2; 14291c28bfdSLuoqi Chen int flags; 1435b81b6b3SRodney W. Grimes { 144b40ce416SJulian Elischer register struct proc *p1; 14591c28bfdSLuoqi Chen struct pcb *pcb2; 14624db0459SJohn Baldwin struct mdproc *mdp2; 147a4b8c657SBruce Evans #ifdef DEV_NPX 148ba74981eSWarner Losh register_t savecrit; 149a4b8c657SBruce Evans #endif 15091c28bfdSLuoqi Chen 151b40ce416SJulian Elischer p1 = td1->td_proc; 15291c28bfdSLuoqi Chen if ((flags & RFPROC) == 0) { 15391c28bfdSLuoqi Chen if ((flags & RFMEM) == 0) { 15491c28bfdSLuoqi Chen /* unshare user LDT */ 15545449f84SJulian Elischer struct mdproc *mdp1 = &p1->p_md; 156bc2e774aSJohn Baldwin struct proc_ldt *pldt; 157bc2e774aSJohn Baldwin 158bc2e774aSJohn Baldwin pldt = mdp1->md_ldt; 15924db0459SJohn Baldwin if (pldt && pldt->ldt_refcnt > 1) { 16024db0459SJohn Baldwin pldt = user_ldt_alloc(mdp1, pldt->ldt_len); 16124db0459SJohn Baldwin if (pldt == NULL) 1621acf256dSJohn Baldwin panic("could not copy LDT"); 16324db0459SJohn Baldwin mdp1->md_ldt = pldt; 16424db0459SJohn Baldwin set_user_ldt(mdp1); 16524db0459SJohn Baldwin user_ldt_free(td1); 16691c28bfdSLuoqi Chen } 16791c28bfdSLuoqi Chen } 16891c28bfdSLuoqi Chen return; 16991c28bfdSLuoqi Chen } 1705b81b6b3SRodney W. Grimes 1711f8745a9SPeter Wemm /* Ensure that p1's pcb is up to date. */ 172a4b8c657SBruce Evans #ifdef DEV_NPX 173b40ce416SJulian Elischer if (td1 == curthread) 174b40ce416SJulian Elischer td1->td_pcb->pcb_gs = rgs(); 175ba74981eSWarner Losh savecrit = intr_disable(); 1760bbc8826SJohn Baldwin if (PCPU_GET(fpcurthread) == td1) 177b40ce416SJulian Elischer npxsave(&td1->td_pcb->pcb_save); 178ba74981eSWarner Losh intr_restore(savecrit); 1799f449d2aSBruce Evans #endif 1801f8745a9SPeter Wemm 181b40ce416SJulian Elischer /* Point the pcb to the top of the stack */ 1826041f1a5SBill Paul pcb2 = (struct pcb *)(td2->td_kstack + 1836041f1a5SBill Paul td2->td_kstack_pages * PAGE_SIZE) - 1; 184b40ce416SJulian Elischer td2->td_pcb = pcb2; 185b40ce416SJulian Elischer 18624db0459SJohn Baldwin /* Copy p1's pcb */ 187b40ce416SJulian Elischer bcopy(td1->td_pcb, pcb2, sizeof(*pcb2)); 188a2a1c95cSPeter Wemm 18924db0459SJohn Baldwin /* Point mdproc and then copy over td1's contents */ 19045449f84SJulian Elischer mdp2 = &p2->p_md; 19145449f84SJulian Elischer bcopy(&p1->p_md, mdp2, sizeof(*mdp2)); 19224db0459SJohn Baldwin 193a2a1c95cSPeter Wemm /* 194a2a1c95cSPeter Wemm * Create a new fresh stack for the new process. 1951f8745a9SPeter Wemm * Copy the trap frame for the return to user mode as if from a 196a4b8c657SBruce Evans * syscall. This copies most of the user mode register values. 197e5a860ebSPeter Wemm * The -16 is so we can expand the trapframe if we go to vm86. 198a2a1c95cSPeter Wemm */ 199e5a860ebSPeter Wemm td2->td_frame = (struct trapframe *)((caddr_t)td2->td_pcb - 16) - 1; 200b40ce416SJulian Elischer bcopy(td1->td_frame, td2->td_frame, sizeof(struct trapframe)); 201a2a1c95cSPeter Wemm 202b40ce416SJulian Elischer td2->td_frame->tf_eax = 0; /* Child returns zero */ 203b40ce416SJulian Elischer td2->td_frame->tf_eflags &= ~PSL_C; /* success */ 204b40ce416SJulian Elischer td2->td_frame->tf_edx = 1; 2050d54b9d1SJohn Baldwin 206a2a1c95cSPeter Wemm /* 2075ad5504cSKelly Yancey * If the parent process has the trap bit set (i.e. a debugger had 2085ad5504cSKelly Yancey * single stepped the process to the system call), we need to clear 2095ad5504cSKelly Yancey * the trap flag from the new frame unless the debugger had set PF_FORK 2105ad5504cSKelly Yancey * on the parent. Otherwise, the child will receive a (likely 2115ad5504cSKelly Yancey * unexpected) SIGTRAP when it executes the first instruction after 2125ad5504cSKelly Yancey * returning to userland. 2135ad5504cSKelly Yancey */ 2145ad5504cSKelly Yancey if ((p1->p_pfsflags & PF_FORK) == 0) 2155ad5504cSKelly Yancey td2->td_frame->tf_eflags &= ~PSL_T; 2165ad5504cSKelly Yancey 2175ad5504cSKelly Yancey /* 218a2a1c95cSPeter Wemm * Set registers for trampoline to user mode. Leave space for the 219a2a1c95cSPeter Wemm * return address on stack. These are the kernel mode register values. 220a2a1c95cSPeter Wemm */ 2217ab9b220SJake Burkholder #ifdef PAE 2227ab9b220SJake Burkholder pcb2->pcb_cr3 = vtophys(vmspace_pmap(p2->p_vmspace)->pm_pdpt); 2237ab9b220SJake Burkholder #else 224b1028ad1SLuoqi Chen pcb2->pcb_cr3 = vtophys(vmspace_pmap(p2->p_vmspace)->pm_pdir); 2257ab9b220SJake Burkholder #endif 22637b087a6SPeter Wemm pcb2->pcb_edi = 0; 22737b087a6SPeter Wemm pcb2->pcb_esi = (int)fork_return; /* fork_trampoline argument */ 22837b087a6SPeter Wemm pcb2->pcb_ebp = 0; 229b40ce416SJulian Elischer pcb2->pcb_esp = (int)td2->td_frame - sizeof(void *); 230b40ce416SJulian Elischer pcb2->pcb_ebx = (int)td2; /* fork_trampoline argument */ 2311f8745a9SPeter Wemm pcb2->pcb_eip = (int)fork_trampoline; 232a93b6bf5SThomas Moestl pcb2->pcb_psl = PSL_KERNEL; /* ints disabled */ 2332257a44fSDavid Xu pcb2->pcb_gs = rgs(); 234a4b8c657SBruce Evans /*- 235a4b8c657SBruce Evans * pcb2->pcb_dr*: cloned above. 2361f8745a9SPeter Wemm * pcb2->pcb_savefpu: cloned above. 237a4b8c657SBruce Evans * pcb2->pcb_flags: cloned above. 2381f8745a9SPeter Wemm * pcb2->pcb_onfault: cloned above (always NULL here?). 239a4b8c657SBruce Evans * pcb2->pcb_gs: cloned above. 240a4b8c657SBruce Evans * pcb2->pcb_ext: cleared below. 2411f8745a9SPeter Wemm */ 2425b81b6b3SRodney W. Grimes 24348a09cf2SJohn Dyson /* 24448a09cf2SJohn Dyson * XXX don't copy the i/o pages. this should probably be fixed. 24548a09cf2SJohn Dyson */ 24648a09cf2SJohn Dyson pcb2->pcb_ext = 0; 24748a09cf2SJohn Dyson 2488c39a127SStefan Eßer /* Copy the LDT, if necessary. */ 249df4d012bSJohn Baldwin mtx_lock_spin(&sched_lock); 250753d1af1SJohn Baldwin if (mdp2->md_ldt != NULL) { 25191c28bfdSLuoqi Chen if (flags & RFMEM) { 25224db0459SJohn Baldwin mdp2->md_ldt->ldt_refcnt++; 25391c28bfdSLuoqi Chen } else { 25424db0459SJohn Baldwin mdp2->md_ldt = user_ldt_alloc(mdp2, 25524db0459SJohn Baldwin mdp2->md_ldt->ldt_len); 25624db0459SJohn Baldwin if (mdp2->md_ldt == NULL) 257df4d012bSJohn Baldwin panic("could not copy LDT"); 25891c28bfdSLuoqi Chen } 2598c39a127SStefan Eßer } 260df4d012bSJohn Baldwin mtx_unlock_spin(&sched_lock); 2618c39a127SStefan Eßer 262c6a37e84SJohn Baldwin /* Setup to release sched_lock in fork_exit(). */ 263c6a37e84SJohn Baldwin td2->td_md.md_spinlock_count = 1; 264c6a37e84SJohn Baldwin td2->td_md.md_saved_flags = PSL_KERNEL | PSL_I; 265c6a37e84SJohn Baldwin 266a2a1c95cSPeter Wemm /* 267a2a1c95cSPeter Wemm * Now, cpu_switch() can schedule the new process. 268a2a1c95cSPeter Wemm * pcb_esp is loaded pointing to the cpu_switch() stack frame 269a2a1c95cSPeter Wemm * containing the return address when exiting cpu_switch. 27037b087a6SPeter Wemm * This will normally be to fork_trampoline(), which will have 27137b087a6SPeter Wemm * %ebx loaded with the new proc's pointer. fork_trampoline() 272a2a1c95cSPeter Wemm * will set up a stack to call fork_return(p, frame); to complete 273a2a1c95cSPeter Wemm * the return to user-mode. 274a2a1c95cSPeter Wemm */ 275a2a1c95cSPeter Wemm } 276a2a1c95cSPeter Wemm 277a2a1c95cSPeter Wemm /* 278a2a1c95cSPeter Wemm * Intercept the return address from a freshly forked process that has NOT 279a2a1c95cSPeter Wemm * been scheduled yet. 280a2a1c95cSPeter Wemm * 281a2a1c95cSPeter Wemm * This is needed to make kernel threads stay in kernel mode. 282a2a1c95cSPeter Wemm */ 283a2a1c95cSPeter Wemm void 284b40ce416SJulian Elischer cpu_set_fork_handler(td, func, arg) 285b40ce416SJulian Elischer struct thread *td; 28615fe3067SAlfred Perlstein void (*func)(void *); 2879c8b8baaSPeter Wemm void *arg; 288a2a1c95cSPeter Wemm { 289a2a1c95cSPeter Wemm /* 290a2a1c95cSPeter Wemm * Note that the trap frame follows the args, so the function 291a2a1c95cSPeter Wemm * is really called like this: func(arg, frame); 292a2a1c95cSPeter Wemm */ 293b40ce416SJulian Elischer td->td_pcb->pcb_esi = (int) func; /* function */ 294b40ce416SJulian Elischer td->td_pcb->pcb_ebx = (int) arg; /* first arg */ 2955b81b6b3SRodney W. Grimes } 2965b81b6b3SRodney W. Grimes 2977c2b54e8SNate Williams void 298e602ba25SJulian Elischer cpu_exit(struct thread *td) 299e602ba25SJulian Elischer { 300e602ba25SJulian Elischer 301bc2e774aSJohn Baldwin /* 302bc2e774aSJohn Baldwin * If this process has a custom LDT, release it. Reset pc->pcb_gs 303bc2e774aSJohn Baldwin * and %gs before we free it in case they refer to an LDT entry. 304bc2e774aSJohn Baldwin */ 305bc2e774aSJohn Baldwin if (td->td_proc->p_md.md_ldt) { 30666250360SDavid Xu td->td_pcb->pcb_gs = _udatasel; 30766250360SDavid Xu load_gs(_udatasel); 308e602ba25SJulian Elischer user_ldt_free(td); 30966250360SDavid Xu } 310e602ba25SJulian Elischer } 311e602ba25SJulian Elischer 312e602ba25SJulian Elischer void 313e602ba25SJulian Elischer cpu_thread_exit(struct thread *td) 3145b81b6b3SRodney W. Grimes { 3154cc99cf6SJohn Baldwin 316558226eaSPeter Wemm #ifdef DEV_NPX 317d5e1f581SDavid Xu if (td == PCPU_GET(fpcurthread)) 318d5e1f581SDavid Xu npxdrop(); 319558226eaSPeter Wemm #endif 320bc2e774aSJohn Baldwin 321bc2e774aSJohn Baldwin /* Disable any hardware breakpoints. */ 322bc2e774aSJohn Baldwin if (td->td_pcb->pcb_flags & PCB_DBREGS) { 323b19d9defSMaxime Henrion reset_dbregs(); 324bc2e774aSJohn Baldwin td->td_pcb->pcb_flags &= ~PCB_DBREGS; 325b19d9defSMaxime Henrion } 326b19d9defSMaxime Henrion } 327b19d9defSMaxime Henrion 328b19d9defSMaxime Henrion void 329696058c3SJulian Elischer cpu_thread_clean(struct thread *td) 330b19d9defSMaxime Henrion { 331b19d9defSMaxime Henrion struct pcb *pcb; 332b19d9defSMaxime Henrion 333b19d9defSMaxime Henrion pcb = td->td_pcb; 334ae3676c4SJohn Baldwin if (pcb->pcb_ext != NULL) { 335e602ba25SJulian Elischer /* XXXKSE XXXSMP not SMP SAFE.. what locks do we have? */ 336e602ba25SJulian Elischer /* if (pcb->pcb_ext->ext_refcount-- == 1) ?? */ 33748a09cf2SJohn Dyson /* 33848a09cf2SJohn Dyson * XXX do we need to move the TSS off the allocated pages 33948a09cf2SJohn Dyson * before freeing them? (not done here) 34048a09cf2SJohn Dyson */ 34148a09cf2SJohn Dyson kmem_free(kernel_map, (vm_offset_t)pcb->pcb_ext, 34248a09cf2SJohn Dyson ctob(IOPAGES + 1)); 343ae3676c4SJohn Baldwin pcb->pcb_ext = NULL; 34448a09cf2SJohn Dyson } 3455b81b6b3SRodney W. Grimes } 3465b81b6b3SRodney W. Grimes 347381fe1aaSGarrett Wollman void 348710338e9SMarcel Moolenaar cpu_thread_swapin(struct thread *td) 349710338e9SMarcel Moolenaar { 350710338e9SMarcel Moolenaar } 351710338e9SMarcel Moolenaar 352710338e9SMarcel Moolenaar void 353710338e9SMarcel Moolenaar cpu_thread_swapout(struct thread *td) 354710338e9SMarcel Moolenaar { 355710338e9SMarcel Moolenaar } 356710338e9SMarcel Moolenaar 357710338e9SMarcel Moolenaar void 358e602ba25SJulian Elischer cpu_thread_setup(struct thread *td) 359e602ba25SJulian Elischer { 360e602ba25SJulian Elischer 3616041f1a5SBill Paul td->td_pcb = (struct pcb *)(td->td_kstack + 3626041f1a5SBill Paul td->td_kstack_pages * PAGE_SIZE) - 1; 363e602ba25SJulian Elischer td->td_frame = (struct trapframe *)((caddr_t)td->td_pcb - 16) - 1; 364c7251aedSTor Egge td->td_pcb->pcb_ext = NULL; 365e602ba25SJulian Elischer } 366e602ba25SJulian Elischer 367e602ba25SJulian Elischer /* 368575525a0SJonathan Mini * Initialize machine state (pcb and trap frame) for a new thread about to 36948bfcdddSJulian Elischer * upcall. Put enough state in the new thread's PCB to get it to go back 37048bfcdddSJulian Elischer * userret(), where we can intercept it again to set the return (upcall) 37148bfcdddSJulian Elischer * Address and stack, along with those from upcals that are from other sources 37248bfcdddSJulian Elischer * such as those generated in thread_userret() itself. 373e602ba25SJulian Elischer */ 374e602ba25SJulian Elischer void 37511e0f8e1SMarcel Moolenaar cpu_set_upcall(struct thread *td, struct thread *td0) 376e602ba25SJulian Elischer { 377e602ba25SJulian Elischer struct pcb *pcb2; 378e602ba25SJulian Elischer 379e602ba25SJulian Elischer /* Point the pcb to the top of the stack. */ 380e602ba25SJulian Elischer pcb2 = td->td_pcb; 381e602ba25SJulian Elischer 382e602ba25SJulian Elischer /* 383e602ba25SJulian Elischer * Copy the upcall pcb. This loads kernel regs. 384e602ba25SJulian Elischer * Those not loaded individually below get their default 385e602ba25SJulian Elischer * values here. 386e602ba25SJulian Elischer * 387e602ba25SJulian Elischer * XXXKSE It might be a good idea to simply skip this as 388e602ba25SJulian Elischer * the values of the other registers may be unimportant. 389e602ba25SJulian Elischer * This would remove any requirement for knowing the KSE 390e602ba25SJulian Elischer * at this time (see the matching comment below for 391e602ba25SJulian Elischer * more analysis) (need a good safe default). 392e602ba25SJulian Elischer */ 39311e0f8e1SMarcel Moolenaar bcopy(td0->td_pcb, pcb2, sizeof(*pcb2)); 394d5e1f581SDavid Xu pcb2->pcb_flags &= ~(PCB_NPXTRAP|PCB_NPXINITDONE); 395e602ba25SJulian Elischer 396e602ba25SJulian Elischer /* 397e602ba25SJulian Elischer * Create a new fresh stack for the new thread. 398e602ba25SJulian Elischer * The -16 is so we can expand the trapframe if we go to vm86. 399e602ba25SJulian Elischer * Don't forget to set this stack value into whatever supplies 400e602ba25SJulian Elischer * the address for the fault handlers. 401e602ba25SJulian Elischer * The contexts are filled in at the time we actually DO the 402e602ba25SJulian Elischer * upcall as only then do we know which KSE we got. 403e602ba25SJulian Elischer */ 40411e0f8e1SMarcel Moolenaar bcopy(td0->td_frame, td->td_frame, sizeof(struct trapframe)); 405e602ba25SJulian Elischer 406e602ba25SJulian Elischer /* 407e602ba25SJulian Elischer * Set registers for trampoline to user mode. Leave space for the 408e602ba25SJulian Elischer * return address on stack. These are the kernel mode register values. 409e602ba25SJulian Elischer */ 4107ab9b220SJake Burkholder #ifdef PAE 4117ab9b220SJake Burkholder pcb2->pcb_cr3 = vtophys(vmspace_pmap(td->td_proc->p_vmspace)->pm_pdpt); 4127ab9b220SJake Burkholder #else 413e602ba25SJulian Elischer pcb2->pcb_cr3 = vtophys(vmspace_pmap(td->td_proc->p_vmspace)->pm_pdir); 4147ab9b220SJake Burkholder #endif 415e602ba25SJulian Elischer pcb2->pcb_edi = 0; 416e602ba25SJulian Elischer pcb2->pcb_esi = (int)fork_return; /* trampoline arg */ 417e602ba25SJulian Elischer pcb2->pcb_ebp = 0; 418e602ba25SJulian Elischer pcb2->pcb_esp = (int)td->td_frame - sizeof(void *); /* trampoline arg */ 419e602ba25SJulian Elischer pcb2->pcb_ebx = (int)td; /* trampoline arg */ 420e602ba25SJulian Elischer pcb2->pcb_eip = (int)fork_trampoline; 421e602ba25SJulian Elischer pcb2->pcb_psl &= ~(PSL_I); /* interrupts must be disabled */ 4222257a44fSDavid Xu pcb2->pcb_gs = rgs(); 423e602ba25SJulian Elischer /* 424e602ba25SJulian Elischer * If we didn't copy the pcb, we'd need to do the following registers: 425e602ba25SJulian Elischer * pcb2->pcb_dr*: cloned above. 426e602ba25SJulian Elischer * pcb2->pcb_savefpu: cloned above. 427e602ba25SJulian Elischer * pcb2->pcb_flags: cloned above. 428e602ba25SJulian Elischer * pcb2->pcb_onfault: cloned above (always NULL here?). 429e602ba25SJulian Elischer * pcb2->pcb_gs: cloned above. XXXKSE ??? 430e602ba25SJulian Elischer * pcb2->pcb_ext: cleared below. 431e602ba25SJulian Elischer */ 432e602ba25SJulian Elischer pcb2->pcb_ext = NULL; 433c6a37e84SJohn Baldwin 434c6a37e84SJohn Baldwin /* Setup to release sched_lock in fork_exit(). */ 435c6a37e84SJohn Baldwin td->td_md.md_spinlock_count = 1; 436c6a37e84SJohn Baldwin td->td_md.md_saved_flags = PSL_KERNEL | PSL_I; 437e602ba25SJulian Elischer } 438e602ba25SJulian Elischer 439e602ba25SJulian Elischer /* 44048bfcdddSJulian Elischer * Set that machine state for performing an upcall that has to 44148bfcdddSJulian Elischer * be done in thread_userret() so that those upcalls generated 44248bfcdddSJulian Elischer * in thread_userret() itself can be done as well. 443e602ba25SJulian Elischer */ 444575525a0SJonathan Mini void 44521fc3164SDavid Xu cpu_set_upcall_kse(struct thread *td, void (*entry)(void *), void *arg, 44621fc3164SDavid Xu stack_t *stack) 447575525a0SJonathan Mini { 448575525a0SJonathan Mini 449575525a0SJonathan Mini /* 450696058c3SJulian Elischer * Do any extra cleaning that needs to be done. 451696058c3SJulian Elischer * The thread may have optional components 452696058c3SJulian Elischer * that are not present in a fresh thread. 453696058c3SJulian Elischer * This may be a recycled thread so make it look 454696058c3SJulian Elischer * as though it's newly allocated. 455696058c3SJulian Elischer */ 456696058c3SJulian Elischer cpu_thread_clean(td); 457696058c3SJulian Elischer 458696058c3SJulian Elischer /* 459575525a0SJonathan Mini * Set the trap frame to point at the beginning of the uts 460575525a0SJonathan Mini * function. 461575525a0SJonathan Mini */ 4622396628bSDavid Xu td->td_frame->tf_ebp = 0; 463575525a0SJonathan Mini td->td_frame->tf_esp = 46421fc3164SDavid Xu (int)stack->ss_sp + stack->ss_size - 16; 46521fc3164SDavid Xu td->td_frame->tf_eip = (int)entry; 466575525a0SJonathan Mini 467575525a0SJonathan Mini /* 468575525a0SJonathan Mini * Pass the address of the mailbox for this kse to the uts 469575525a0SJonathan Mini * function as a parameter on the stack. 470575525a0SJonathan Mini */ 471575525a0SJonathan Mini suword((void *)(td->td_frame->tf_esp + sizeof(void *)), 47221fc3164SDavid Xu (int)arg); 47321fc3164SDavid Xu } 47421fc3164SDavid Xu 475740fd64dSDavid Xu int 47621fc3164SDavid Xu cpu_set_user_tls(struct thread *td, void *tls_base) 47721fc3164SDavid Xu { 47821fc3164SDavid Xu struct segment_descriptor sd; 47921fc3164SDavid Xu uint32_t base; 48021fc3164SDavid Xu 48121fc3164SDavid Xu /* 48221fc3164SDavid Xu * Construct a descriptor and store it in the pcb for 48321fc3164SDavid Xu * the next context switch. Also store it in the gdt 48421fc3164SDavid Xu * so that the load of tf_fs into %fs will activate it 48521fc3164SDavid Xu * at return to userland. 48621fc3164SDavid Xu */ 48721fc3164SDavid Xu base = (uint32_t)tls_base; 48821fc3164SDavid Xu sd.sd_lobase = base & 0xffffff; 48921fc3164SDavid Xu sd.sd_hibase = (base >> 24) & 0xff; 49021fc3164SDavid Xu sd.sd_lolimit = 0xffff; /* 4GB limit, wraps around */ 49121fc3164SDavid Xu sd.sd_hilimit = 0xf; 49221fc3164SDavid Xu sd.sd_type = SDT_MEMRWA; 49321fc3164SDavid Xu sd.sd_dpl = SEL_UPL; 49421fc3164SDavid Xu sd.sd_p = 1; 49521fc3164SDavid Xu sd.sd_xx = 0; 49621fc3164SDavid Xu sd.sd_def32 = 1; 49721fc3164SDavid Xu sd.sd_gran = 1; 49821fc3164SDavid Xu critical_enter(); 49921fc3164SDavid Xu /* set %gs */ 50021fc3164SDavid Xu td->td_pcb->pcb_gsd = sd; 50121fc3164SDavid Xu if (td == curthread) { 50221fc3164SDavid Xu PCPU_GET(fsgs_gdt)[1] = sd; 50321fc3164SDavid Xu load_gs(GSEL(GUGS_SEL, SEL_UPL)); 50421fc3164SDavid Xu } 50521fc3164SDavid Xu critical_exit(); 506740fd64dSDavid Xu return (0); 507e602ba25SJulian Elischer } 508e602ba25SJulian Elischer 5095b81b6b3SRodney W. Grimes /* 5105b81b6b3SRodney W. Grimes * Convert kernel VA to physical address 5115b81b6b3SRodney W. Grimes */ 512227f9a1cSJake Burkholder vm_paddr_t 5137f8cb368SDavid Greenman kvtop(void *addr) 5145b81b6b3SRodney W. Grimes { 515227f9a1cSJake Burkholder vm_paddr_t pa; 5165b81b6b3SRodney W. Grimes 517227f9a1cSJake Burkholder pa = pmap_kextract((vm_offset_t)addr); 518227f9a1cSJake Burkholder if (pa == 0) 5195b81b6b3SRodney W. Grimes panic("kvtop: zero page frame"); 520227f9a1cSJake Burkholder return (pa); 5215b81b6b3SRodney W. Grimes } 5225b81b6b3SRodney W. Grimes 5234260b00aSNate Lawson #ifdef SMP 5244260b00aSNate Lawson static void 5254260b00aSNate Lawson cpu_reset_proxy() 5264260b00aSNate Lawson { 5274260b00aSNate Lawson 5284260b00aSNate Lawson cpu_reset_proxy_active = 1; 5294260b00aSNate Lawson while (cpu_reset_proxy_active == 1) 5304260b00aSNate Lawson ; /* Wait for other cpu to see that we've started */ 5314260b00aSNate Lawson stop_cpus((1<<cpu_reset_proxyid)); 5324260b00aSNate Lawson printf("cpu_reset_proxy: Stopped CPU %d\n", cpu_reset_proxyid); 5334260b00aSNate Lawson DELAY(1000000); 5344260b00aSNate Lawson cpu_reset_real(); 5354260b00aSNate Lawson } 5364260b00aSNate Lawson #endif 5374260b00aSNate Lawson 5387f8cb368SDavid Greenman void 539d447dbeeSBruce Evans cpu_reset() 540d447dbeeSBruce Evans { 5412f1e7069STor Egge #ifdef SMP 5424260b00aSNate Lawson u_int cnt, map; 5432f1e7069STor Egge 54463a6daf6SNate Lawson if (smp_active) { 545ef73ae4bSJake Burkholder map = PCPU_GET(other_cpus) & ~stopped_cpus; 5462f1e7069STor Egge if (map != 0) { 5472f1e7069STor Egge printf("cpu_reset: Stopping other CPUs\n"); 54863a6daf6SNate Lawson stop_cpus(map); 5492f1e7069STor Egge } 5504260b00aSNate Lawson 5514260b00aSNate Lawson if (PCPU_GET(cpuid) != 0) { 5524260b00aSNate Lawson cpu_reset_proxyid = PCPU_GET(cpuid); 5534260b00aSNate Lawson cpustop_restartfunc = cpu_reset_proxy; 5544260b00aSNate Lawson cpu_reset_proxy_active = 0; 5554260b00aSNate Lawson printf("cpu_reset: Restarting BSP\n"); 5564260b00aSNate Lawson started_cpus = (1<<0); /* Restart CPU #0 */ 5574260b00aSNate Lawson 5584260b00aSNate Lawson cnt = 0; 5594260b00aSNate Lawson while (cpu_reset_proxy_active == 0 && cnt < 10000000) 5604260b00aSNate Lawson cnt++; /* Wait for BSP to announce restart */ 5614260b00aSNate Lawson if (cpu_reset_proxy_active == 0) 5624260b00aSNate Lawson printf("cpu_reset: Failed to restart BSP\n"); 5634260b00aSNate Lawson enable_intr(); 5644260b00aSNate Lawson cpu_reset_proxy_active = 2; 5654260b00aSNate Lawson 5664260b00aSNate Lawson while (1); 5674260b00aSNate Lawson /* NOTREACHED */ 5684260b00aSNate Lawson } 5694260b00aSNate Lawson 5702f1e7069STor Egge DELAY(1000000); 5712f1e7069STor Egge } 5722f1e7069STor Egge #endif 57363a6daf6SNate Lawson cpu_reset_real(); 57463a6daf6SNate Lawson /* NOTREACHED */ 5752f1e7069STor Egge } 5762f1e7069STor Egge 5772f1e7069STor Egge static void 5782f1e7069STor Egge cpu_reset_real() 5792f1e7069STor Egge { 580d447dbeeSBruce Evans 581883bd55aSPoul-Henning Kamp #ifdef CPU_ELAN 582883bd55aSPoul-Henning Kamp if (elan_mmcr != NULL) 583883bd55aSPoul-Henning Kamp elan_mmcr->RESCFG = 1; 584883bd55aSPoul-Henning Kamp #endif 585883bd55aSPoul-Henning Kamp 58602d12d93SPoul-Henning Kamp if (cpu == CPU_GEODE1100) { 58702d12d93SPoul-Henning Kamp /* Attempt Geode's own reset */ 58802d12d93SPoul-Henning Kamp outl(0xcf8, 0x80009044ul); 58902d12d93SPoul-Henning Kamp outl(0xcfc, 0xf); 59002d12d93SPoul-Henning Kamp } 59102d12d93SPoul-Henning Kamp 59203245f09SKATO Takenori #ifdef PC98 59303245f09SKATO Takenori /* 59403245f09SKATO Takenori * Attempt to do a CPU reset via CPU reset port. 59503245f09SKATO Takenori */ 596d447dbeeSBruce Evans disable_intr(); 5978e929d65SKATO Takenori if ((inb(0x35) & 0xa0) != 0xa0) { 59803245f09SKATO Takenori outb(0x37, 0x0f); /* SHUT0 = 0. */ 59903245f09SKATO Takenori outb(0x37, 0x0b); /* SHUT1 = 0. */ 6008e929d65SKATO Takenori } 60103245f09SKATO Takenori outb(0xf0, 0x00); /* Reset. */ 60203245f09SKATO Takenori #else 60363a6daf6SNate Lawson #if !defined(BROKEN_KEYBOARD_RESET) 6042320728fSRodney W. Grimes /* 6052320728fSRodney W. Grimes * Attempt to do a CPU reset via the keyboard controller, 60663a6daf6SNate Lawson * do not turn off GateA20, as any machine that fails 6072320728fSRodney W. Grimes * to do the reset here would then end up in no man's land. 6082320728fSRodney W. Grimes */ 6092320728fSRodney W. Grimes outb(IO_KBD + 4, 0xFE); 6102320728fSRodney W. Grimes DELAY(500000); /* wait 0.5 sec to see if that did it */ 6112320728fSRodney W. Grimes printf("Keyboard reset did not work, attempting CPU shutdown\n"); 6122320728fSRodney W. Grimes DELAY(1000000); /* wait 1 sec for printf to complete */ 6135eb46edfSDavid Greenman #endif 61403245f09SKATO Takenori #endif /* PC98 */ 61563a6daf6SNate Lawson 61663a6daf6SNate Lawson /* Force a shutdown by unmapping entire address space. */ 617910548deSJake Burkholder bzero((caddr_t)PTD, NBPTD); 6185b81b6b3SRodney W. Grimes 6195b81b6b3SRodney W. Grimes /* "good night, sweet prince .... <THUNK!>" */ 62027e9b35eSJohn Dyson invltlb(); 6215b81b6b3SRodney W. Grimes /* NOTREACHED */ 6227f8cb368SDavid Greenman while(1); 6235b81b6b3SRodney W. Grimes } 624b9d60b3fSDavid Greenman 625e0b78e19SJoerg Wunsch /* 626411d10a6SAlan Cox * Allocate a pool of sf_bufs (sendfile(2) or "super-fast" if you prefer. :-)) 627411d10a6SAlan Cox */ 628411d10a6SAlan Cox static void 629411d10a6SAlan Cox sf_buf_init(void *arg) 630411d10a6SAlan Cox { 631411d10a6SAlan Cox struct sf_buf *sf_bufs; 632411d10a6SAlan Cox vm_offset_t sf_base; 633411d10a6SAlan Cox int i; 634411d10a6SAlan Cox 635099a0e58SBosko Milekic nsfbufs = NSFBUFS; 636099a0e58SBosko Milekic TUNABLE_INT_FETCH("kern.ipc.nsfbufs", &nsfbufs); 637099a0e58SBosko Milekic 6380543fa53SAlan Cox sf_buf_active = hashinit(nsfbufs, M_TEMP, &sf_buf_hashmask); 639a5819cb5SAlan Cox TAILQ_INIT(&sf_buf_freelist); 640411d10a6SAlan Cox sf_base = kmem_alloc_nofault(kernel_map, nsfbufs * PAGE_SIZE); 641411d10a6SAlan Cox sf_bufs = malloc(nsfbufs * sizeof(struct sf_buf), M_TEMP, 642411d10a6SAlan Cox M_NOWAIT | M_ZERO); 643411d10a6SAlan Cox for (i = 0; i < nsfbufs; i++) { 644411d10a6SAlan Cox sf_bufs[i].kva = sf_base + i * PAGE_SIZE; 645a5819cb5SAlan Cox TAILQ_INSERT_TAIL(&sf_buf_freelist, &sf_bufs[i], free_entry); 646411d10a6SAlan Cox } 647411d10a6SAlan Cox sf_buf_alloc_want = 0; 6480543fa53SAlan Cox mtx_init(&sf_buf_lock, "sf_buf", NULL, MTX_DEF); 649411d10a6SAlan Cox } 650411d10a6SAlan Cox 651411d10a6SAlan Cox /* 652411d10a6SAlan Cox * Get an sf_buf from the freelist. Will block if none are available. 653411d10a6SAlan Cox */ 654411d10a6SAlan Cox struct sf_buf * 655d3cb0d99SAlan Cox sf_buf_alloc(struct vm_page *m, int flags) 656411d10a6SAlan Cox { 65720351fafSAlan Cox pt_entry_t opte, *ptep; 6580543fa53SAlan Cox struct sf_head *hash_list; 659411d10a6SAlan Cox struct sf_buf *sf; 6605c0db7c7SAlan Cox #ifdef SMP 6615c0db7c7SAlan Cox cpumask_t cpumask, other_cpus; 6625c0db7c7SAlan Cox #endif 663411d10a6SAlan Cox int error; 664411d10a6SAlan Cox 6655c0db7c7SAlan Cox KASSERT(curthread->td_pinned > 0 || (flags & SFB_CPUPRIVATE) == 0, 6665c0db7c7SAlan Cox ("sf_buf_alloc(SFB_CPUPRIVATE): curthread not pinned")); 6670543fa53SAlan Cox hash_list = &sf_buf_active[SF_BUF_HASH(m)]; 6680543fa53SAlan Cox mtx_lock(&sf_buf_lock); 6690543fa53SAlan Cox LIST_FOREACH(sf, hash_list, list_entry) { 6700543fa53SAlan Cox if (sf->m == m) { 6710543fa53SAlan Cox sf->ref_count++; 6725eda9873SMike Silbersack if (sf->ref_count == 1) { 6739a63fc0dSAlan Cox TAILQ_REMOVE(&sf_buf_freelist, sf, free_entry); 6745eda9873SMike Silbersack nsfbufsused++; 6755caf2b00SMike Silbersack nsfbufspeak = imax(nsfbufspeak, nsfbufsused); 6765eda9873SMike Silbersack } 6775c0db7c7SAlan Cox #ifdef SMP 6785c0db7c7SAlan Cox cpumask = PCPU_GET(cpumask); 6795c0db7c7SAlan Cox if ((sf->cpumask & cpumask) == 0) { 6805c0db7c7SAlan Cox sf->cpumask |= cpumask; 6815c0db7c7SAlan Cox invlpg(sf->kva); 6825c0db7c7SAlan Cox } 6835c0db7c7SAlan Cox if ((flags & SFB_CPUPRIVATE) == 0) { 6845c0db7c7SAlan Cox other_cpus = PCPU_GET(other_cpus) & ~sf->cpumask; 6855c0db7c7SAlan Cox if (other_cpus != 0) { 6865c0db7c7SAlan Cox sf->cpumask |= other_cpus; 6875c0db7c7SAlan Cox mtx_lock_spin(&smp_ipi_mtx); 6885c0db7c7SAlan Cox smp_masked_invlpg(other_cpus, sf->kva); 6895c0db7c7SAlan Cox mtx_unlock_spin(&smp_ipi_mtx); 6905c0db7c7SAlan Cox } 6915c0db7c7SAlan Cox } 6925c0db7c7SAlan Cox #endif 6930543fa53SAlan Cox goto done; 6940543fa53SAlan Cox } 6950543fa53SAlan Cox } 696a5819cb5SAlan Cox while ((sf = TAILQ_FIRST(&sf_buf_freelist)) == NULL) { 697d3cb0d99SAlan Cox if (flags & SFB_NOWAIT) 698d3cb0d99SAlan Cox goto done; 699411d10a6SAlan Cox sf_buf_alloc_want++; 700ddeb5b24SMike Silbersack mbstat.sf_allocwait++; 701d3cb0d99SAlan Cox error = msleep(&sf_buf_freelist, &sf_buf_lock, 702d3cb0d99SAlan Cox (flags & SFB_CATCH) ? PCATCH | PVM : PVM, "sfbufa", 0); 703411d10a6SAlan Cox sf_buf_alloc_want--; 704411d10a6SAlan Cox 705411d10a6SAlan Cox /* 706411d10a6SAlan Cox * If we got a signal, don't risk going back to sleep. 707411d10a6SAlan Cox */ 708411d10a6SAlan Cox if (error) 7090543fa53SAlan Cox goto done; 710411d10a6SAlan Cox } 711a5819cb5SAlan Cox TAILQ_REMOVE(&sf_buf_freelist, sf, free_entry); 712a5819cb5SAlan Cox if (sf->m != NULL) 7130543fa53SAlan Cox LIST_REMOVE(sf, list_entry); 7140543fa53SAlan Cox LIST_INSERT_HEAD(hash_list, sf, list_entry); 7150543fa53SAlan Cox sf->ref_count = 1; 716411d10a6SAlan Cox sf->m = m; 7175eda9873SMike Silbersack nsfbufsused++; 7185caf2b00SMike Silbersack nsfbufspeak = imax(nsfbufspeak, nsfbufsused); 71920351fafSAlan Cox 72020351fafSAlan Cox /* 72120351fafSAlan Cox * Update the sf_buf's virtual-to-physical mapping, flushing the 72220351fafSAlan Cox * virtual address from the TLB only if the PTE implies that the old 72320351fafSAlan Cox * mapping has been used. Since the reference count for the sf_buf's 72420351fafSAlan Cox * old mapping was zero, that mapping is not currently in use. 72520351fafSAlan Cox * Consequently, there is no need to exchange the old and new PTEs 72620351fafSAlan Cox * atomically, even under PAE. 72720351fafSAlan Cox */ 72820351fafSAlan Cox ptep = vtopte(sf->kva); 72920351fafSAlan Cox opte = *ptep; 73020351fafSAlan Cox *ptep = VM_PAGE_TO_PHYS(m) | pgeflag | PG_RW | PG_V; 7315c0db7c7SAlan Cox #ifdef SMP 7325c0db7c7SAlan Cox if (flags & SFB_CPUPRIVATE) { 7335c0db7c7SAlan Cox if ((opte & (PG_A | PG_V)) == (PG_A | PG_V)) { 7345c0db7c7SAlan Cox sf->cpumask = PCPU_GET(cpumask); 7355c0db7c7SAlan Cox invlpg(sf->kva); 7365c0db7c7SAlan Cox } else 7375c0db7c7SAlan Cox sf->cpumask = all_cpus; 7385c0db7c7SAlan Cox goto done; 7395c0db7c7SAlan Cox } else 7405c0db7c7SAlan Cox sf->cpumask = all_cpus; 7415c0db7c7SAlan Cox #endif 74220351fafSAlan Cox if ((opte & (PG_A | PG_V)) == (PG_A | PG_V)) 74320351fafSAlan Cox pmap_invalidate_page(kernel_pmap, sf->kva); 7440543fa53SAlan Cox done: 7450543fa53SAlan Cox mtx_unlock(&sf_buf_lock); 746411d10a6SAlan Cox return (sf); 747411d10a6SAlan Cox } 748411d10a6SAlan Cox 749411d10a6SAlan Cox /* 75090ecfebdSAlan Cox * Remove a reference from the given sf_buf, adding it to the free 75190ecfebdSAlan Cox * list when its reference count reaches zero. A freed sf_buf still, 75290ecfebdSAlan Cox * however, retains its virtual-to-physical mapping until it is 75390ecfebdSAlan Cox * recycled or reactivated by sf_buf_alloc(9). 754411d10a6SAlan Cox */ 755411d10a6SAlan Cox void 75690ecfebdSAlan Cox sf_buf_free(struct sf_buf *sf) 757411d10a6SAlan Cox { 758411d10a6SAlan Cox 7590543fa53SAlan Cox mtx_lock(&sf_buf_lock); 7600543fa53SAlan Cox sf->ref_count--; 7610543fa53SAlan Cox if (sf->ref_count == 0) { 762a5819cb5SAlan Cox TAILQ_INSERT_TAIL(&sf_buf_freelist, sf, free_entry); 76390ecfebdSAlan Cox nsfbufsused--; 7640543fa53SAlan Cox if (sf_buf_alloc_want > 0) 7650543fa53SAlan Cox wakeup_one(&sf_buf_freelist); 7660543fa53SAlan Cox } 7670543fa53SAlan Cox mtx_unlock(&sf_buf_lock); 768411d10a6SAlan Cox } 769411d10a6SAlan Cox 770411d10a6SAlan Cox /* 77157d7d7b3SJustin T. Gibbs * Software interrupt handler for queued VM system processing. 77257d7d7b3SJustin T. Gibbs */ 77357d7d7b3SJustin T. Gibbs void 7748088699fSJohn Baldwin swi_vm(void *dummy) 77557d7d7b3SJustin T. Gibbs { 77657d7d7b3SJustin T. Gibbs if (busdma_swi_pending != 0) 77757d7d7b3SJustin T. Gibbs busdma_swi(); 77857d7d7b3SJustin T. Gibbs } 77957d7d7b3SJustin T. Gibbs 78057d7d7b3SJustin T. Gibbs /* 781cae6f73aSJoerg Wunsch * Tell whether this address is in some physical memory region. 782e0b78e19SJoerg Wunsch * Currently used by the kernel coredump code in order to avoid 783e0b78e19SJoerg Wunsch * dumping the ``ISA memory hole'' which could cause indefinite hangs, 784e0b78e19SJoerg Wunsch * or other unpredictable behaviour. 785e0b78e19SJoerg Wunsch */ 786e0b78e19SJoerg Wunsch 787e0b78e19SJoerg Wunsch int 7882c38d78eSAlan Cox is_physical_memory(vm_paddr_t addr) 789e0b78e19SJoerg Wunsch { 790e0b78e19SJoerg Wunsch 79103927d3cSPeter Wemm #ifdef DEV_ISA 792e0b78e19SJoerg Wunsch /* The ISA ``memory hole''. */ 793e0b78e19SJoerg Wunsch if (addr >= 0xa0000 && addr < 0x100000) 794cae6f73aSJoerg Wunsch return 0; 795e0b78e19SJoerg Wunsch #endif 796e0b78e19SJoerg Wunsch 797e0b78e19SJoerg Wunsch /* 798e0b78e19SJoerg Wunsch * stuff other tests for known memory-mapped devices (PCI?) 799e0b78e19SJoerg Wunsch * here 800e0b78e19SJoerg Wunsch */ 801e0b78e19SJoerg Wunsch 802cae6f73aSJoerg Wunsch return 1; 803e0b78e19SJoerg Wunsch } 804