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pmap_tlb.c revision 1.31
      1  1.31     skrll /*	$NetBSD: pmap_tlb.c,v 1.31 2020/04/09 08:55:45 skrll Exp $	*/
      2   1.1  christos 
      3   1.1  christos /*-
      4   1.1  christos  * Copyright (c) 2010 The NetBSD Foundation, Inc.
      5   1.1  christos  * All rights reserved.
      6   1.1  christos  *
      7   1.1  christos  * This code is derived from software contributed to The NetBSD Foundation
      8   1.1  christos  * by Matt Thomas at 3am Software Foundry.
      9   1.1  christos  *
     10   1.1  christos  * Redistribution and use in source and binary forms, with or without
     11   1.1  christos  * modification, are permitted provided that the following conditions
     12   1.1  christos  * are met:
     13   1.1  christos  * 1. Redistributions of source code must retain the above copyright
     14   1.1  christos  *    notice, this list of conditions and the following disclaimer.
     15   1.1  christos  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.1  christos  *    notice, this list of conditions and the following disclaimer in the
     17   1.1  christos  *    documentation and/or other materials provided with the distribution.
     18   1.1  christos  *
     19   1.1  christos  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20   1.1  christos  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21   1.1  christos  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22   1.1  christos  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23   1.1  christos  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24   1.1  christos  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25   1.1  christos  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26   1.1  christos  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27   1.1  christos  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28   1.1  christos  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29   1.1  christos  * POSSIBILITY OF SUCH DAMAGE.
     30   1.1  christos  */
     31   1.1  christos 
     32   1.1  christos #include <sys/cdefs.h>
     33   1.1  christos 
     34  1.31     skrll __KERNEL_RCSID(0, "$NetBSD: pmap_tlb.c,v 1.31 2020/04/09 08:55:45 skrll Exp $");
     35   1.1  christos 
     36   1.1  christos /*
     37   1.1  christos  * Manages address spaces in a TLB.
     38   1.1  christos  *
     39   1.1  christos  * Normally there is a 1:1 mapping between a TLB and a CPU.  However, some
     40   1.1  christos  * implementations may share a TLB between multiple CPUs (really CPU thread
     41   1.1  christos  * contexts).  This requires the TLB abstraction to be separated from the
     42   1.1  christos  * CPU abstraction.  It also requires that the TLB be locked while doing
     43   1.1  christos  * TLB activities.
     44   1.1  christos  *
     45   1.1  christos  * For each TLB, we track the ASIDs in use in a bitmap and a list of pmaps
     46   1.1  christos  * that have a valid ASID.
     47   1.1  christos  *
     48   1.1  christos  * We allocate ASIDs in increasing order until we have exhausted the supply,
     49   1.1  christos  * then reinitialize the ASID space, and start allocating again at 1.  When
     50   1.1  christos  * allocating from the ASID bitmap, we skip any ASID who has a corresponding
     51   1.1  christos  * bit set in the ASID bitmap.  Eventually this causes the ASID bitmap to fill
     52   1.1  christos  * and, when completely filled, a reinitialization of the ASID space.
     53   1.1  christos  *
     54   1.1  christos  * To reinitialize the ASID space, the ASID bitmap is reset and then the ASIDs
     55   1.1  christos  * of non-kernel TLB entries get recorded in the ASID bitmap.  If the entries
     56   1.1  christos  * in TLB consume more than half of the ASID space, all ASIDs are invalidated,
     57   1.1  christos  * the ASID bitmap is recleared, and the list of pmaps is emptied.  Otherwise,
     58   1.1  christos  * (the normal case), any ASID present in the TLB (even those which are no
     59   1.1  christos  * longer used by a pmap) will remain active (allocated) and all other ASIDs
     60   1.1  christos  * will be freed.  If the size of the TLB is much smaller than the ASID space,
     61   1.1  christos  * this algorithm completely avoids TLB invalidation.
     62   1.1  christos  *
     63   1.1  christos  * For multiprocessors, we also have to deal TLB invalidation requests from
     64   1.1  christos  * other CPUs, some of which are dealt with the reinitialization of the ASID
     65   1.1  christos  * space.  Whereas above we keep the ASIDs of those pmaps which have active
     66   1.1  christos  * TLB entries, this type of reinitialization preserves the ASIDs of any
     67   1.1  christos  * "onproc" user pmap and all other ASIDs will be freed.  We must do this
     68   1.1  christos  * since we can't change the current ASID.
     69   1.1  christos  *
     70   1.1  christos  * Each pmap has two bitmaps: pm_active and pm_onproc.  Each bit in pm_active
     71   1.1  christos  * indicates whether that pmap has an allocated ASID for a CPU.  Each bit in
     72  1.31     skrll  * pm_onproc indicates that the pmap's ASID is in use, i.e. a CPU has it in its
     73  1.31     skrll  * "current ASID" field, e.g. the ASID field of the COP 0 register EntryHi for
     74  1.31     skrll  * MIPS, or the ASID field of TTBR0 for AA64.  The bit number used in these
     75  1.31     skrll  * bitmaps comes from the CPU's cpu_index().  Even though these bitmaps contain
     76  1.31     skrll  * the bits for all CPUs, the bits that  correspond to the bits belonging to
     77  1.31     skrll  * the CPUs sharing a TLB can only be manipulated while holding that TLB's
     78  1.31     skrll  * lock.  Atomic ops must be used to update them since multiple CPUs may be
     79  1.31     skrll  * changing different sets of bits at same time but these sets never overlap.
     80   1.1  christos  *
     81   1.1  christos  * When a change to the local TLB may require a change in the TLB's of other
     82   1.1  christos  * CPUs, we try to avoid sending an IPI if at all possible.  For instance, if
     83   1.1  christos  * we are updating a PTE and that PTE previously was invalid and therefore
     84   1.1  christos  * couldn't support an active mapping, there's no need for an IPI since there
     85   1.1  christos  * can't be a TLB entry to invalidate.  The other case is when we change a PTE
     86   1.1  christos  * to be modified we just update the local TLB.  If another TLB has a stale
     87   1.1  christos  * entry, a TLB MOD exception will be raised and that will cause the local TLB
     88   1.1  christos  * to be updated.
     89   1.1  christos  *
     90   1.1  christos  * We never need to update a non-local TLB if the pmap doesn't have a valid
     91   1.1  christos  * ASID for that TLB.  If it does have a valid ASID but isn't current "onproc"
     92   1.1  christos  * we simply reset its ASID for that TLB and then when it goes "onproc" it
     93   1.1  christos  * will allocate a new ASID and any existing TLB entries will be orphaned.
     94   1.1  christos  * Only in the case that pmap has an "onproc" ASID do we actually have to send
     95   1.1  christos  * an IPI.
     96   1.1  christos  *
     97   1.1  christos  * Once we determined we must send an IPI to shootdown a TLB, we need to send
     98   1.1  christos  * it to one of CPUs that share that TLB.  We choose the lowest numbered CPU
     99   1.1  christos  * that has one of the pmap's ASID "onproc".  In reality, any CPU sharing that
    100   1.1  christos  * TLB would do, but interrupting an active CPU seems best.
    101   1.1  christos  *
    102   1.1  christos  * A TLB might have multiple shootdowns active concurrently.  The shootdown
    103   1.1  christos  * logic compresses these into a few cases:
    104   1.1  christos  *	0) nobody needs to have its TLB entries invalidated
    105   1.1  christos  *	1) one ASID needs to have its TLB entries invalidated
    106   1.1  christos  *	2) more than one ASID needs to have its TLB entries invalidated
    107   1.1  christos  *	3) the kernel needs to have its TLB entries invalidated
    108   1.1  christos  *	4) the kernel and one or more ASID need their TLB entries invalidated.
    109   1.1  christos  *
    110   1.1  christos  * And for each case we do:
    111   1.1  christos  *	0) nothing,
    112   1.1  christos  *	1) if that ASID is still "onproc", we invalidate the TLB entries for
    113   1.1  christos  *	   that single ASID.  If not, just reset the pmap's ASID to invalidate
    114   1.1  christos  *	   and let it allocate a new ASID the next time it goes "onproc",
    115   1.1  christos  *	2) we reinitialize the ASID space (preserving any "onproc" ASIDs) and
    116   1.1  christos  *	   invalidate all non-wired non-global TLB entries,
    117   1.1  christos  *	3) we invalidate all of the non-wired global TLB entries,
    118   1.1  christos  *	4) we reinitialize the ASID space (again preserving any "onproc" ASIDs)
    119   1.1  christos  *	   invalidate all non-wired TLB entries.
    120   1.1  christos  *
    121   1.1  christos  * As you can see, shootdowns are not concerned with addresses, just address
    122   1.1  christos  * spaces.  Since the number of TLB entries is usually quite small, this avoids
    123   1.1  christos  * a lot of overhead for not much gain.
    124   1.1  christos  */
    125   1.1  christos 
    126   1.1  christos #define __PMAP_PRIVATE
    127   1.1  christos 
    128   1.1  christos #include "opt_multiprocessor.h"
    129   1.1  christos 
    130   1.1  christos #include <sys/param.h>
    131  1.30     skrll 
    132   1.1  christos #include <sys/atomic.h>
    133  1.30     skrll #include <sys/cpu.h>
    134   1.1  christos #include <sys/kernel.h>			/* for cold */
    135  1.30     skrll #include <sys/mutex.h>
    136  1.30     skrll #include <sys/proc.h>
    137  1.30     skrll #include <sys/systm.h>
    138   1.1  christos 
    139   1.1  christos #include <uvm/uvm.h>
    140   1.1  christos 
    141   1.5      matt static kmutex_t pmap_tlb0_lock __cacheline_aligned;
    142   1.1  christos 
    143   1.1  christos #define	IFCONSTANT(x)	(__builtin_constant_p((x)) ? (x) : 0)
    144   1.1  christos 
    145  1.25  jdolecek #if KERNEL_PID > 31
    146  1.25  jdolecek #error "KERNEL_PID expected in range 0-31"
    147  1.25  jdolecek #endif
    148  1.25  jdolecek 
    149  1.26  jdolecek #define	TLBINFO_ASID_MARK_UNUSED(ti, asid) \
    150  1.26  jdolecek 	__BITMAP_CLR((asid), &(ti)->ti_asid_bitmap)
    151  1.26  jdolecek #define	TLBINFO_ASID_MARK_USED(ti, asid) \
    152  1.26  jdolecek 	__BITMAP_SET((asid), &(ti)->ti_asid_bitmap)
    153  1.26  jdolecek #define	TLBINFO_ASID_INUSE_P(ti, asid) \
    154  1.26  jdolecek 	__BITMAP_ISSET((asid), &(ti)->ti_asid_bitmap)
    155  1.26  jdolecek #define	TLBINFO_ASID_RESET(ti) \
    156  1.26  jdolecek 	do {								\
    157  1.26  jdolecek 		__BITMAP_ZERO(&ti->ti_asid_bitmap);			\
    158  1.26  jdolecek 		for (tlb_asid_t asid = 0; asid <= KERNEL_PID; asid++) 	\
    159  1.26  jdolecek 			TLBINFO_ASID_MARK_USED(ti, asid);	 	\
    160  1.26  jdolecek 	} while (0)
    161  1.26  jdolecek #define	TLBINFO_ASID_INITIAL_FREE(asid_max) \
    162  1.26  jdolecek 	(asid_max + 1 /* 0 */ - (1 + KERNEL_PID))
    163  1.26  jdolecek 
    164   1.1  christos struct pmap_tlb_info pmap_tlb0_info = {
    165   1.1  christos 	.ti_name = "tlb0",
    166   1.1  christos 	.ti_asid_hint = KERNEL_PID + 1,
    167   1.1  christos #ifdef PMAP_TLB_NUM_PIDS
    168   1.1  christos 	.ti_asid_max = IFCONSTANT(PMAP_TLB_NUM_PIDS - 1),
    169  1.26  jdolecek 	.ti_asids_free = IFCONSTANT(
    170  1.26  jdolecek 		TLBINFO_ASID_INITIAL_FREE(PMAP_TLB_NUM_PIDS - 1)),
    171   1.1  christos #endif
    172  1.26  jdolecek 	.ti_asid_bitmap._b[0] = __BITS(0, KERNEL_PID),
    173   1.1  christos #ifdef PMAP_TLB_WIRED_UPAGES
    174   1.1  christos 	.ti_wired = PMAP_TLB_WIRED_UPAGES,
    175   1.1  christos #endif
    176   1.5      matt 	.ti_lock = &pmap_tlb0_lock,
    177   1.1  christos 	.ti_pais = LIST_HEAD_INITIALIZER(pmap_tlb0_info.ti_pais),
    178   1.3      matt #if defined(MULTIPROCESSOR) && PMAP_TLB_MAX > 1
    179   1.1  christos 	.ti_tlbinvop = TLBINV_NOBODY,
    180   1.1  christos #endif
    181   1.1  christos };
    182   1.1  christos 
    183   1.1  christos #undef IFCONSTANT
    184   1.1  christos 
    185   1.3      matt #if defined(MULTIPROCESSOR) && PMAP_TLB_MAX > 1
    186   1.3      matt struct pmap_tlb_info *pmap_tlbs[PMAP_TLB_MAX] = {
    187   1.1  christos 	[0] = &pmap_tlb0_info,
    188   1.1  christos };
    189   1.1  christos u_int pmap_ntlbs = 1;
    190   1.1  christos #endif
    191   1.1  christos 
    192   1.3      matt #ifdef MULTIPROCESSOR
    193  1.11     joerg __unused static inline bool
    194   1.3      matt pmap_tlb_intersecting_active_p(pmap_t pm, struct pmap_tlb_info *ti)
    195   1.3      matt {
    196   1.3      matt #if PMAP_TLB_MAX == 1
    197   1.3      matt 	return !kcpuset_iszero(pm->pm_active);
    198   1.3      matt #else
    199   1.3      matt 	return kcpuset_intersecting_p(pm->pm_active, ti->ti_kcpuset);
    200   1.3      matt #endif
    201   1.3      matt }
    202   1.3      matt 
    203   1.3      matt static inline bool
    204   1.3      matt pmap_tlb_intersecting_onproc_p(pmap_t pm, struct pmap_tlb_info *ti)
    205   1.3      matt {
    206   1.3      matt #if PMAP_TLB_MAX == 1
    207   1.3      matt 	return !kcpuset_iszero(pm->pm_onproc);
    208   1.3      matt #else
    209   1.3      matt 	return kcpuset_intersecting_p(pm->pm_onproc, ti->ti_kcpuset);
    210   1.3      matt #endif
    211   1.3      matt }
    212   1.3      matt #endif
    213   1.3      matt 
    214  1.13      matt static void
    215  1.18      matt pmap_tlb_pai_check(struct pmap_tlb_info *ti, bool locked_p)
    216  1.13      matt {
    217  1.13      matt #ifdef DIAGNOSTIC
    218  1.13      matt 	struct pmap_asid_info *pai;
    219  1.18      matt 	if (!locked_p)
    220  1.18      matt 		TLBINFO_LOCK(ti);
    221  1.13      matt 	LIST_FOREACH(pai, &ti->ti_pais, pai_link) {
    222  1.13      matt 		KASSERT(pai != NULL);
    223  1.13      matt 		KASSERT(PAI_PMAP(pai, ti) != pmap_kernel());
    224  1.13      matt 		KASSERT(pai->pai_asid > KERNEL_PID);
    225  1.13      matt 		KASSERTMSG(pai->pai_asid <= ti->ti_asid_max,
    226  1.13      matt 		    "pm %p asid %#x", PAI_PMAP(pai, ti), pai->pai_asid);
    227  1.13      matt 		KASSERTMSG(TLBINFO_ASID_INUSE_P(ti, pai->pai_asid),
    228  1.13      matt 		    "pm %p asid %u", PAI_PMAP(pai, ti), pai->pai_asid);
    229  1.13      matt #ifdef MULTIPROCESSOR
    230  1.13      matt 		KASSERT(pmap_tlb_intersecting_active_p(PAI_PMAP(pai, ti), ti));
    231  1.13      matt #endif
    232  1.13      matt 	}
    233  1.18      matt 	if (!locked_p)
    234  1.18      matt 		TLBINFO_UNLOCK(ti);
    235  1.13      matt #endif
    236  1.13      matt }
    237  1.13      matt 
    238  1.13      matt static void
    239  1.13      matt pmap_tlb_pai_reset(struct pmap_tlb_info *ti, struct pmap_asid_info *pai,
    240   1.1  christos 	struct pmap *pm)
    241   1.1  christos {
    242  1.13      matt 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(maphist);
    243  1.22  pgoyette 	UVMHIST_LOG(maphist, "(ti=%#jx, pai=%#jx, pm=%#jx): asid %u",
    244  1.22  pgoyette 	    (uintptr_t)ti, (uintptr_t)pai, (uintptr_t)pm, pai->pai_asid);
    245  1.13      matt 
    246   1.1  christos 	/*
    247   1.1  christos 	 * We must have an ASID but it must not be onproc (on a processor).
    248   1.1  christos 	 */
    249   1.1  christos 	KASSERT(pai->pai_asid > KERNEL_PID);
    250  1.13      matt 	KASSERT(pai->pai_asid <= ti->ti_asid_max);
    251   1.1  christos #if defined(MULTIPROCESSOR)
    252  1.13      matt 	KASSERT(pmap_tlb_intersecting_active_p(pm, ti));
    253   1.3      matt 	KASSERT(!pmap_tlb_intersecting_onproc_p(pm, ti));
    254   1.1  christos #endif
    255   1.1  christos 	LIST_REMOVE(pai, pai_link);
    256   1.1  christos #ifdef DIAGNOSTIC
    257   1.1  christos 	pai->pai_link.le_prev = NULL;	/* tagged as unlinked */
    258   1.1  christos #endif
    259   1.1  christos 	/*
    260   1.5      matt 	 * If the platform has a cheap way to flush ASIDs then free the ASID
    261   1.5      matt 	 * back into the pool.  On multiprocessor systems, we will flush the
    262   1.5      matt 	 * ASID from the TLB when it's allocated.  That way we know the flush
    263   1.5      matt 	 * was always done in the correct TLB space.  On uniprocessor systems,
    264   1.5      matt 	 * just do the flush now since we know that it has been used.  This has
    265   1.5      matt 	 * a bit less overhead.  Either way, this will mean that we will only
    266   1.5      matt 	 * need to flush all ASIDs if all ASIDs are in use and we need to
    267   1.5      matt 	 * allocate a new one.
    268   1.5      matt 	 */
    269   1.5      matt 	if (PMAP_TLB_FLUSH_ASID_ON_RESET) {
    270   1.5      matt #ifndef MULTIPROCESSOR
    271   1.5      matt 		tlb_invalidate_asids(pai->pai_asid, pai->pai_asid);
    272   1.5      matt #endif
    273   1.5      matt 		if (TLBINFO_ASID_INUSE_P(ti, pai->pai_asid)) {
    274   1.5      matt 			TLBINFO_ASID_MARK_UNUSED(ti, pai->pai_asid);
    275   1.5      matt 			ti->ti_asids_free++;
    276   1.5      matt 		}
    277   1.5      matt 	}
    278   1.5      matt 	/*
    279   1.1  christos 	 * Note that we don't mark the ASID as not in use in the TLB's ASID
    280   1.1  christos 	 * bitmap (thus it can't be allocated until the ASID space is exhausted
    281   1.1  christos 	 * and therefore reinitialized).  We don't want to flush the TLB for
    282   1.1  christos 	 * entries belonging to this ASID so we will let natural TLB entry
    283   1.1  christos 	 * replacement flush them out of the TLB.  Any new entries for this
    284   1.1  christos 	 * pmap will need a new ASID allocated.
    285   1.1  christos 	 */
    286   1.1  christos 	pai->pai_asid = 0;
    287   1.1  christos 
    288   1.1  christos #if defined(MULTIPROCESSOR)
    289   1.1  christos 	/*
    290   1.1  christos 	 * The bits in pm_active belonging to this TLB can only be changed
    291   1.1  christos 	 * while this TLB's lock is held.
    292   1.1  christos 	 */
    293   1.3      matt #if PMAP_TLB_MAX == 1
    294   1.3      matt 	kcpuset_zero(pm->pm_active);
    295   1.3      matt #else
    296  1.13      matt 	kcpuset_remove(pm->pm_active, ti->ti_kcpuset);
    297   1.3      matt #endif
    298  1.13      matt 	KASSERT(!pmap_tlb_intersecting_active_p(pm, ti));
    299   1.1  christos #endif /* MULTIPROCESSOR */
    300  1.13      matt 
    301  1.13      matt 	UVMHIST_LOG(maphist, " <-- done", 0, 0, 0, 0);
    302   1.1  christos }
    303   1.1  christos 
    304   1.1  christos void
    305   1.1  christos pmap_tlb_info_evcnt_attach(struct pmap_tlb_info *ti)
    306   1.1  christos {
    307  1.23  jdolecek #if defined(MULTIPROCESSOR) && !defined(PMAP_TLB_NO_SYNCI_EVCNT)
    308   1.1  christos 	evcnt_attach_dynamic_nozero(&ti->ti_evcnt_synci_desired,
    309   1.1  christos 	    EVCNT_TYPE_MISC, NULL,
    310   1.1  christos 	    ti->ti_name, "icache syncs desired");
    311   1.1  christos 	evcnt_attach_dynamic_nozero(&ti->ti_evcnt_synci_asts,
    312   1.1  christos 	    EVCNT_TYPE_MISC, &ti->ti_evcnt_synci_desired,
    313   1.1  christos 	    ti->ti_name, "icache sync asts");
    314   1.1  christos 	evcnt_attach_dynamic_nozero(&ti->ti_evcnt_synci_all,
    315   1.1  christos 	    EVCNT_TYPE_MISC, &ti->ti_evcnt_synci_asts,
    316   1.1  christos 	    ti->ti_name, "icache full syncs");
    317   1.1  christos 	evcnt_attach_dynamic_nozero(&ti->ti_evcnt_synci_pages,
    318   1.1  christos 	    EVCNT_TYPE_MISC, &ti->ti_evcnt_synci_asts,
    319   1.1  christos 	    ti->ti_name, "icache pages synced");
    320   1.1  christos 	evcnt_attach_dynamic_nozero(&ti->ti_evcnt_synci_duplicate,
    321   1.1  christos 	    EVCNT_TYPE_MISC, &ti->ti_evcnt_synci_desired,
    322   1.1  christos 	    ti->ti_name, "icache dup pages skipped");
    323   1.1  christos 	evcnt_attach_dynamic_nozero(&ti->ti_evcnt_synci_deferred,
    324   1.1  christos 	    EVCNT_TYPE_MISC, &ti->ti_evcnt_synci_desired,
    325   1.1  christos 	    ti->ti_name, "icache pages deferred");
    326  1.23  jdolecek #endif /* MULTIPROCESSOR && !PMAP_TLB_NO_SYNCI_EVCNT */
    327   1.1  christos 	evcnt_attach_dynamic_nozero(&ti->ti_evcnt_asid_reinits,
    328   1.1  christos 	    EVCNT_TYPE_MISC, NULL,
    329   1.1  christos 	    ti->ti_name, "asid pool reinit");
    330   1.1  christos }
    331   1.1  christos 
    332   1.1  christos void
    333   1.1  christos pmap_tlb_info_init(struct pmap_tlb_info *ti)
    334   1.1  christos {
    335   1.1  christos #if defined(MULTIPROCESSOR)
    336   1.3      matt #if PMAP_TLB_MAX == 1
    337   1.3      matt 	KASSERT(ti == &pmap_tlb0_info);
    338   1.3      matt #else
    339   1.1  christos 	if (ti != &pmap_tlb0_info) {
    340   1.3      matt 		KASSERT(pmap_ntlbs < PMAP_TLB_MAX);
    341   1.1  christos 
    342   1.1  christos 		KASSERT(pmap_tlbs[pmap_ntlbs] == NULL);
    343   1.1  christos 
    344   1.1  christos 		ti->ti_lock = mutex_obj_alloc(MUTEX_DEFAULT, IPL_SCHED);
    345  1.26  jdolecek 		TLBINFO_ASID_RESET(ti);
    346   1.1  christos 		ti->ti_asid_hint = KERNEL_PID + 1;
    347   1.1  christos 		ti->ti_asid_max = pmap_tlbs[0]->ti_asid_max;
    348  1.26  jdolecek 		ti->ti_asids_free = TLBINFO_ASID_INITIAL_FREE(ti->ti_asid_max);
    349  1.19  christos 		ti->ti_tlbinvop = TLBINV_NOBODY;
    350   1.1  christos 		ti->ti_victim = NULL;
    351   1.3      matt 		kcpuset_create(&ti->ti_kcpuset, true);
    352   1.1  christos 		ti->ti_index = pmap_ntlbs++;
    353   1.1  christos 		ti->ti_wired = 0;
    354   1.1  christos 		pmap_tlbs[ti->ti_index] = ti;
    355   1.1  christos 		snprintf(ti->ti_name, sizeof(ti->ti_name), "tlb%u",
    356   1.1  christos 		    ti->ti_index);
    357   1.1  christos 		pmap_tlb_info_evcnt_attach(ti);
    358  1.25  jdolecek 
    359  1.25  jdolecek 		KASSERT(ti->ti_asid_max < PMAP_TLB_BITMAP_LENGTH);
    360   1.1  christos 		return;
    361   1.1  christos 	}
    362   1.3      matt #endif
    363   1.1  christos #endif /* MULTIPROCESSOR */
    364   1.1  christos 	KASSERT(ti == &pmap_tlb0_info);
    365   1.5      matt 	KASSERT(ti->ti_lock == &pmap_tlb0_lock);
    366   1.5      matt 	//printf("ti_lock %p ", ti->ti_lock);
    367   1.1  christos 	mutex_init(ti->ti_lock, MUTEX_DEFAULT, IPL_SCHED);
    368   1.3      matt #if defined(MULTIPROCESSOR) && PMAP_TLB_MAX > 1
    369   1.3      matt 	kcpuset_create(&ti->ti_kcpuset, true);
    370   1.5      matt 	kcpuset_set(ti->ti_kcpuset, cpu_index(curcpu()));
    371   1.3      matt #endif
    372   1.5      matt 	//printf("asid ");
    373   1.1  christos 	if (ti->ti_asid_max == 0) {
    374   1.1  christos 		ti->ti_asid_max = pmap_md_tlb_asid_max();
    375  1.26  jdolecek 		ti->ti_asids_free = TLBINFO_ASID_INITIAL_FREE(ti->ti_asid_max);
    376   1.1  christos 	}
    377   1.1  christos 
    378  1.25  jdolecek 	KASSERT(ti->ti_asid_max < PMAP_TLB_BITMAP_LENGTH);
    379   1.1  christos }
    380   1.1  christos 
    381   1.1  christos #if defined(MULTIPROCESSOR)
    382   1.1  christos void
    383   1.1  christos pmap_tlb_info_attach(struct pmap_tlb_info *ti, struct cpu_info *ci)
    384   1.1  christos {
    385   1.1  christos 	KASSERT(!CPU_IS_PRIMARY(ci));
    386   1.1  christos 	KASSERT(ci->ci_data.cpu_idlelwp != NULL);
    387   1.1  christos 	KASSERT(cold);
    388   1.1  christos 
    389   1.1  christos 	TLBINFO_LOCK(ti);
    390   1.3      matt #if PMAP_TLB_MAX > 1
    391   1.3      matt 	kcpuset_set(ti->ti_kcpuset, cpu_index(ci));
    392   1.5      matt 	cpu_set_tlb_info(ci, ti);
    393   1.3      matt #endif
    394   1.1  christos 
    395   1.1  christos 	/*
    396   1.1  christos 	 * Do any MD tlb info init.
    397   1.1  christos 	 */
    398   1.1  christos 	pmap_md_tlb_info_attach(ti, ci);
    399   1.1  christos 
    400   1.1  christos 	/*
    401   1.3      matt 	 * The kernel pmap uses the kcpuset_running set so it's always
    402   1.3      matt 	 * up-to-date.
    403   1.1  christos 	 */
    404   1.1  christos 	TLBINFO_UNLOCK(ti);
    405   1.1  christos }
    406   1.1  christos #endif /* MULTIPROCESSOR */
    407   1.1  christos 
    408   1.1  christos #ifdef DIAGNOSTIC
    409   1.1  christos static size_t
    410   1.1  christos pmap_tlb_asid_count(struct pmap_tlb_info *ti)
    411   1.1  christos {
    412   1.1  christos 	size_t count = 0;
    413   1.1  christos 	for (tlb_asid_t asid = 1; asid <= ti->ti_asid_max; asid++) {
    414  1.28  jdolecek 		if (TLBINFO_ASID_INUSE_P(ti, asid))
    415  1.28  jdolecek 			count++;
    416   1.1  christos 	}
    417   1.1  christos 	return count;
    418   1.1  christos }
    419   1.1  christos #endif
    420   1.1  christos 
    421   1.1  christos static void
    422   1.1  christos pmap_tlb_asid_reinitialize(struct pmap_tlb_info *ti, enum tlb_invalidate_op op)
    423   1.1  christos {
    424  1.13      matt 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(maphist);
    425  1.22  pgoyette 	UVMHIST_LOG(maphist, "(ti=%#jx, op=%ju)", (uintptr_t)ti, op, 0, 0);
    426  1.13      matt 
    427  1.18      matt 	pmap_tlb_pai_check(ti, true);
    428   1.1  christos 
    429   1.5      matt 	ti->ti_evcnt_asid_reinits.ev_count++;
    430   1.5      matt 
    431   1.1  christos 	/*
    432   1.1  christos 	 * First, clear the ASID bitmap (except for ASID 0 which belongs
    433   1.1  christos 	 * to the kernel).
    434   1.1  christos 	 */
    435  1.26  jdolecek 	ti->ti_asids_free = TLBINFO_ASID_INITIAL_FREE(ti->ti_asid_max);
    436   1.1  christos 	ti->ti_asid_hint = KERNEL_PID + 1;
    437  1.25  jdolecek 	TLBINFO_ASID_RESET(ti);
    438   1.1  christos 
    439   1.1  christos 	switch (op) {
    440  1.13      matt #if defined(MULTIPROCESSOR) && defined(PMAP_TLB_NEED_SHOOTDOWN)
    441   1.1  christos 	case TLBINV_ALL:
    442   1.1  christos 		tlb_invalidate_all();
    443   1.1  christos 		break;
    444   1.1  christos 	case TLBINV_ALLUSER:
    445   1.1  christos 		tlb_invalidate_asids(KERNEL_PID + 1, ti->ti_asid_max);
    446   1.1  christos 		break;
    447  1.13      matt #endif /* MULTIPROCESSOR && PMAP_TLB_NEED_SHOOTDOWN */
    448   1.1  christos 	case TLBINV_NOBODY: {
    449   1.1  christos 		/*
    450   1.1  christos 		 * If we are just reclaiming ASIDs in the TLB, let's go find
    451   1.1  christos 		 * what ASIDs are in use in the TLB.  Since this is a
    452   1.1  christos 		 * semi-expensive operation, we don't want to do it too often.
    453   1.1  christos 		 * So if more half of the ASIDs are in use, we don't have
    454   1.1  christos 		 * enough free ASIDs so invalidate the TLB entries with ASIDs
    455   1.1  christos 		 * and clear the ASID bitmap.  That will force everyone to
    456   1.1  christos 		 * allocate a new ASID.
    457   1.1  christos 		 */
    458  1.13      matt #if !defined(MULTIPROCESSOR) || defined(PMAP_TLB_NEED_SHOOTDOWN)
    459   1.1  christos 		pmap_tlb_asid_check();
    460  1.25  jdolecek 		const u_int asids_found = tlb_record_asids(
    461  1.25  jdolecek 		    ti->ti_asid_bitmap._b, ti->ti_asid_max);
    462   1.1  christos 		pmap_tlb_asid_check();
    463  1.27  jdolecek #ifdef DIAGNOSTIC
    464  1.27  jdolecek 		const u_int asids_count = pmap_tlb_asid_count(ti);
    465  1.27  jdolecek #endif
    466  1.27  jdolecek 		KASSERTMSG(asids_found == asids_count,
    467  1.27  jdolecek 		    "found %u != count %u", asids_found, asids_count);
    468   1.1  christos 		if (__predict_false(asids_found >= ti->ti_asid_max / 2)) {
    469   1.1  christos 			tlb_invalidate_asids(KERNEL_PID + 1, ti->ti_asid_max);
    470  1.13      matt #else /* MULTIPROCESSOR && !PMAP_TLB_NEED_SHOOTDOWN */
    471   1.1  christos 			/*
    472   1.9     skrll 			 * For those systems (PowerPC) that don't require
    473   1.1  christos 			 * cross cpu TLB shootdowns, we have to invalidate the
    474   1.1  christos 			 * entire TLB because we can't record the ASIDs in use
    475   1.1  christos 			 * on the other CPUs.  This is hopefully cheaper than
    476   1.1  christos 			 * than trying to use an IPI to record all the ASIDs
    477   1.1  christos 			 * on all the CPUs (which would be a synchronization
    478   1.1  christos 			 * nightmare).
    479   1.1  christos 			 */
    480   1.1  christos 			tlb_invalidate_all();
    481  1.13      matt #endif /* MULTIPROCESSOR && !PMAP_TLB_NEED_SHOOTDOWN */
    482  1.25  jdolecek 			TLBINFO_ASID_RESET(ti);
    483  1.26  jdolecek 			ti->ti_asids_free = TLBINFO_ASID_INITIAL_FREE(
    484  1.26  jdolecek 				ti->ti_asid_max);
    485  1.13      matt #if !defined(MULTIPROCESSOR) || defined(PMAP_TLB_NEED_SHOOTDOWN)
    486   1.1  christos 		} else {
    487   1.1  christos 			ti->ti_asids_free -= asids_found;
    488   1.1  christos 		}
    489  1.13      matt #endif /* !MULTIPROCESSOR || PMAP_TLB_NEED_SHOOTDOWN */
    490   1.5      matt 		KASSERTMSG(ti->ti_asids_free <= ti->ti_asid_max, "%u",
    491   1.5      matt 		    ti->ti_asids_free);
    492   1.1  christos 		break;
    493   1.1  christos 	}
    494   1.1  christos 	default:
    495   1.1  christos 		panic("%s: unexpected op %d", __func__, op);
    496   1.1  christos 	}
    497   1.1  christos 
    498   1.1  christos 	/*
    499   1.1  christos 	 * Now go through the active ASIDs.  If the ASID is on a processor or
    500   1.1  christos 	 * we aren't invalidating all ASIDs and the TLB has an entry owned by
    501   1.1  christos 	 * that ASID, mark it as in use.  Otherwise release the ASID.
    502   1.1  christos 	 */
    503   1.1  christos 	struct pmap_asid_info *pai, *next;
    504   1.1  christos 	for (pai = LIST_FIRST(&ti->ti_pais); pai != NULL; pai = next) {
    505   1.1  christos 		struct pmap * const pm = PAI_PMAP(pai, ti);
    506   1.1  christos 		next = LIST_NEXT(pai, pai_link);
    507   1.1  christos 		KASSERT(pm != pmap_kernel());
    508   1.1  christos 		KASSERT(pai->pai_asid > KERNEL_PID);
    509   1.1  christos #if defined(MULTIPROCESSOR)
    510   1.3      matt 		if (pmap_tlb_intersecting_onproc_p(pm, ti)) {
    511   1.1  christos 			if (!TLBINFO_ASID_INUSE_P(ti, pai->pai_asid)) {
    512   1.1  christos 				TLBINFO_ASID_MARK_USED(ti, pai->pai_asid);
    513   1.1  christos 				ti->ti_asids_free--;
    514   1.1  christos 			}
    515   1.1  christos 			continue;
    516   1.1  christos 		}
    517   1.1  christos #endif /* MULTIPROCESSOR */
    518   1.1  christos 		if (TLBINFO_ASID_INUSE_P(ti, pai->pai_asid)) {
    519   1.1  christos 			KASSERT(op == TLBINV_NOBODY);
    520   1.1  christos 		} else {
    521  1.13      matt 			pmap_tlb_pai_reset(ti, pai, pm);
    522   1.1  christos 		}
    523   1.1  christos 	}
    524   1.1  christos #ifdef DIAGNOSTIC
    525   1.5      matt 	size_t free_count __diagused = ti->ti_asid_max - pmap_tlb_asid_count(ti);
    526   1.5      matt 	KASSERTMSG(free_count == ti->ti_asids_free,
    527   1.5      matt 	    "bitmap error: %zu != %u", free_count, ti->ti_asids_free);
    528   1.1  christos #endif
    529  1.13      matt 	UVMHIST_LOG(maphist, " <-- done", 0, 0, 0, 0);
    530   1.1  christos }
    531   1.1  christos 
    532  1.13      matt #if defined(MULTIPROCESSOR) && defined(PMAP_TLB_NEED_SHOOTDOWN)
    533  1.14     skrll #if PMAP_TLB_MAX == 1
    534   1.3      matt #error shootdown not required for single TLB systems
    535   1.3      matt #endif
    536   1.1  christos void
    537   1.1  christos pmap_tlb_shootdown_process(void)
    538   1.1  christos {
    539   1.1  christos 	struct cpu_info * const ci = curcpu();
    540   1.2      matt 	struct pmap_tlb_info * const ti = cpu_tlb_info(ci);
    541   1.1  christos #ifdef DIAGNOSTIC
    542   1.1  christos 	struct pmap * const pm = curlwp->l_proc->p_vmspace->vm_map.pmap;
    543   1.1  christos #endif
    544   1.1  christos 
    545   1.1  christos 	KASSERT(cpu_intr_p());
    546   1.1  christos 	KASSERTMSG(ci->ci_cpl >= IPL_SCHED,
    547   1.1  christos 	    "%s: cpl (%d) < IPL_SCHED (%d)",
    548   1.1  christos 	    __func__, ci->ci_cpl, IPL_SCHED);
    549   1.1  christos 
    550   1.1  christos 	TLBINFO_LOCK(ti);
    551   1.1  christos 
    552   1.1  christos 	switch (ti->ti_tlbinvop) {
    553   1.1  christos 	case TLBINV_ONE: {
    554   1.1  christos 		/*
    555   1.1  christos 		 * We only need to invalidate one user ASID.
    556   1.1  christos 		 */
    557   1.1  christos 		struct pmap_asid_info * const pai = PMAP_PAI(ti->ti_victim, ti);
    558   1.1  christos 		KASSERT(ti->ti_victim != pmap_kernel());
    559  1.13      matt 		if (!pmap_tlb_intersecting_onproc_p(ti->ti_victim, ti)) {
    560   1.1  christos 			/*
    561   1.1  christos 			 * The victim is an active pmap so we will just
    562   1.1  christos 			 * invalidate its TLB entries.
    563   1.1  christos 			 */
    564   1.1  christos 			KASSERT(pai->pai_asid > KERNEL_PID);
    565   1.1  christos 			pmap_tlb_asid_check();
    566   1.1  christos 			tlb_invalidate_asids(pai->pai_asid, pai->pai_asid);
    567   1.1  christos 			pmap_tlb_asid_check();
    568   1.1  christos 		} else if (pai->pai_asid) {
    569   1.1  christos 			/*
    570   1.1  christos 			 * The victim is no longer an active pmap for this TLB.
    571   1.1  christos 			 * So simply clear its ASID and when pmap_activate is
    572   1.1  christos 			 * next called for this pmap, it will allocate a new
    573   1.1  christos 			 * ASID.
    574   1.1  christos 			 */
    575   1.3      matt 			KASSERT(!pmap_tlb_intersecting_onproc_p(pm, ti));
    576  1.13      matt 			pmap_tlb_pai_reset(ti, pai, PAI_PMAP(pai, ti));
    577   1.1  christos 		}
    578   1.1  christos 		break;
    579   1.1  christos 	}
    580   1.1  christos 	case TLBINV_ALLUSER:
    581   1.1  christos 		/*
    582   1.1  christos 		 * Flush all user TLB entries.
    583   1.1  christos 		 */
    584   1.1  christos 		pmap_tlb_asid_reinitialize(ti, TLBINV_ALLUSER);
    585   1.1  christos 		break;
    586   1.1  christos 	case TLBINV_ALLKERNEL:
    587   1.1  christos 		/*
    588   1.1  christos 		 * We need to invalidate all global TLB entries.
    589   1.1  christos 		 */
    590   1.1  christos 		pmap_tlb_asid_check();
    591   1.1  christos 		tlb_invalidate_globals();
    592   1.1  christos 		pmap_tlb_asid_check();
    593   1.1  christos 		break;
    594   1.1  christos 	case TLBINV_ALL:
    595   1.1  christos 		/*
    596   1.1  christos 		 * Flush all the TLB entries (user and kernel).
    597   1.1  christos 		 */
    598   1.1  christos 		pmap_tlb_asid_reinitialize(ti, TLBINV_ALL);
    599   1.1  christos 		break;
    600   1.1  christos 	case TLBINV_NOBODY:
    601   1.1  christos 		/*
    602   1.1  christos 		 * Might be spurious or another SMT CPU sharing this TLB
    603   1.1  christos 		 * could have already done the work.
    604   1.1  christos 		 */
    605   1.1  christos 		break;
    606   1.1  christos 	}
    607   1.1  christos 
    608   1.1  christos 	/*
    609   1.1  christos 	 * Indicate we are done with shutdown event.
    610   1.1  christos 	 */
    611   1.1  christos 	ti->ti_victim = NULL;
    612   1.1  christos 	ti->ti_tlbinvop = TLBINV_NOBODY;
    613   1.1  christos 	TLBINFO_UNLOCK(ti);
    614   1.1  christos }
    615   1.1  christos 
    616   1.1  christos /*
    617   1.1  christos  * This state machine could be encoded into an array of integers but since all
    618   1.1  christos  * the values fit in 3 bits, the 5 entry "table" fits in a 16 bit value which
    619   1.1  christos  * can be loaded in a single instruction.
    620   1.1  christos  */
    621   1.1  christos #define	TLBINV_MAP(op, nobody, one, alluser, allkernel, all)	\
    622   1.1  christos 	((((   (nobody) << 3*TLBINV_NOBODY)			\
    623   1.1  christos 	 | (      (one) << 3*TLBINV_ONE)			\
    624   1.1  christos 	 | (  (alluser) << 3*TLBINV_ALLUSER)			\
    625   1.1  christos 	 | ((allkernel) << 3*TLBINV_ALLKERNEL)			\
    626   1.1  christos 	 | (      (all) << 3*TLBINV_ALL)) >> 3*(op)) & 7)
    627   1.1  christos 
    628   1.1  christos #define	TLBINV_USER_MAP(op)	\
    629   1.1  christos 	TLBINV_MAP(op, TLBINV_ONE, TLBINV_ALLUSER, TLBINV_ALLUSER,	\
    630   1.1  christos 	    TLBINV_ALL, TLBINV_ALL)
    631   1.1  christos 
    632   1.1  christos #define	TLBINV_KERNEL_MAP(op)	\
    633   1.1  christos 	TLBINV_MAP(op, TLBINV_ALLKERNEL, TLBINV_ALL, TLBINV_ALL,	\
    634   1.1  christos 	    TLBINV_ALLKERNEL, TLBINV_ALL)
    635   1.1  christos 
    636   1.1  christos bool
    637   1.1  christos pmap_tlb_shootdown_bystanders(pmap_t pm)
    638   1.1  christos {
    639   1.1  christos 	/*
    640  1.16     skrll 	 * We don't need to deal with our own TLB.
    641   1.1  christos 	 */
    642  1.13      matt 
    643  1.13      matt 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(maphist);
    644  1.13      matt 
    645   1.3      matt 	kcpuset_t *pm_active;
    646   1.3      matt 	kcpuset_clone(&pm_active, pm->pm_active);
    647  1.13      matt 	kcpuset_remove(pm_active, cpu_tlb_info(curcpu())->ti_kcpuset);
    648   1.1  christos 	const bool kernel_p = (pm == pmap_kernel());
    649   1.1  christos 	bool ipi_sent = false;
    650   1.1  christos 
    651   1.1  christos 	/*
    652   1.1  christos 	 * If pm_active gets more bits set, then it's after all our changes
    653   1.1  christos 	 * have been made so they will already be cognizant of them.
    654   1.1  christos 	 */
    655   1.1  christos 
    656   1.3      matt 	for (size_t i = 0; !kcpuset_iszero(pm_active); i++) {
    657   1.1  christos 		KASSERT(i < pmap_ntlbs);
    658   1.1  christos 		struct pmap_tlb_info * const ti = pmap_tlbs[i];
    659   1.1  christos 		KASSERT(tlbinfo_index(ti) == i);
    660   1.1  christos 		/*
    661   1.1  christos 		 * Skip this TLB if there are no active mappings for it.
    662   1.1  christos 		 */
    663   1.3      matt 		if (!kcpuset_intersecting_p(pm_active, ti->ti_kcpuset))
    664   1.1  christos 			continue;
    665   1.1  christos 		struct pmap_asid_info * const pai = PMAP_PAI(pm, ti);
    666   1.3      matt 		kcpuset_remove(pm_active, ti->ti_kcpuset);
    667   1.1  christos 		TLBINFO_LOCK(ti);
    668  1.12      matt 		cpuid_t j = kcpuset_ffs_intersecting(pm->pm_onproc,
    669  1.12      matt 		    ti->ti_kcpuset);
    670  1.12      matt 		// post decrement since ffs returns bit + 1 or 0 if no bit
    671  1.12      matt 		if (j-- > 0) {
    672   1.1  christos 			if (kernel_p) {
    673   1.1  christos 				ti->ti_tlbinvop =
    674   1.1  christos 				    TLBINV_KERNEL_MAP(ti->ti_tlbinvop);
    675   1.1  christos 				ti->ti_victim = NULL;
    676   1.1  christos 			} else {
    677   1.1  christos 				KASSERT(pai->pai_asid);
    678   1.1  christos 				if (__predict_false(ti->ti_victim == pm)) {
    679   1.1  christos 					KASSERT(ti->ti_tlbinvop == TLBINV_ONE);
    680   1.1  christos 					/*
    681   1.1  christos 					 * We still need to invalidate this one
    682   1.1  christos 					 * ASID so there's nothing to change.
    683   1.1  christos 					 */
    684   1.1  christos 				} else {
    685   1.1  christos 					ti->ti_tlbinvop =
    686   1.1  christos 					    TLBINV_USER_MAP(ti->ti_tlbinvop);
    687   1.1  christos 					if (ti->ti_tlbinvop == TLBINV_ONE)
    688   1.1  christos 						ti->ti_victim = pm;
    689   1.1  christos 					else
    690   1.1  christos 						ti->ti_victim = NULL;
    691   1.1  christos 				}
    692   1.1  christos 			}
    693   1.1  christos 			TLBINFO_UNLOCK(ti);
    694   1.1  christos 			/*
    695   1.1  christos 			 * Now we can send out the shootdown IPIs to a CPU
    696   1.1  christos 			 * that shares this TLB and is currently using this
    697   1.1  christos 			 * pmap.  That CPU will process the IPI and do the
    698   1.1  christos 			 * all the work.  Any other CPUs sharing that TLB
    699   1.1  christos 			 * will take advantage of that work.  pm_onproc might
    700   1.1  christos 			 * change now that we have released the lock but we
    701   1.1  christos 			 * can tolerate spurious shootdowns.
    702   1.1  christos 			 */
    703   1.1  christos 			cpu_send_ipi(cpu_lookup(j), IPI_SHOOTDOWN);
    704   1.1  christos 			ipi_sent = true;
    705   1.1  christos 			continue;
    706   1.1  christos 		}
    707   1.3      matt 		if (!pmap_tlb_intersecting_active_p(pm, ti)) {
    708   1.1  christos 			/*
    709   1.1  christos 			 * If this pmap has an ASID assigned but it's not
    710   1.1  christos 			 * currently running, nuke its ASID.  Next time the
    711   1.1  christos 			 * pmap is activated, it will allocate a new ASID.
    712   1.1  christos 			 * And best of all, we avoid an IPI.
    713   1.1  christos 			 */
    714   1.1  christos 			KASSERT(!kernel_p);
    715  1.13      matt 			pmap_tlb_pai_reset(ti, pai, pm);
    716   1.1  christos 			//ti->ti_evcnt_lazy_shots.ev_count++;
    717   1.1  christos 		}
    718   1.1  christos 		TLBINFO_UNLOCK(ti);
    719   1.1  christos 	}
    720   1.1  christos 
    721   1.3      matt 	kcpuset_destroy(pm_active);
    722   1.3      matt 
    723  1.22  pgoyette 	UVMHIST_LOG(maphist, " <-- done (ipi_sent=%jd)", ipi_sent, 0, 0, 0);
    724  1.13      matt 
    725   1.1  christos 	return ipi_sent;
    726   1.1  christos }
    727  1.13      matt #endif /* MULTIPROCESSOR && PMAP_TLB_NEED_SHOOTDOWN */
    728   1.1  christos 
    729  1.20     skrll #ifndef PMAP_HWPAGEWALKER
    730   1.1  christos int
    731  1.13      matt pmap_tlb_update_addr(pmap_t pm, vaddr_t va, pt_entry_t pte, u_int flags)
    732   1.1  christos {
    733   1.2      matt 	struct pmap_tlb_info * const ti = cpu_tlb_info(curcpu());
    734   1.1  christos 	struct pmap_asid_info * const pai = PMAP_PAI(pm, ti);
    735   1.1  christos 	int rv = -1;
    736   1.1  christos 
    737  1.13      matt 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(maphist);
    738  1.13      matt 	UVMHIST_LOG(maphist,
    739  1.29     skrll 	    " (pm=%#jx va=%#jx, pte=%#jx flags=%#jx)",
    740  1.22  pgoyette 	    (uintptr_t)pm, va, pte_value(pte), flags);
    741  1.13      matt 
    742   1.1  christos 	KASSERT(kpreempt_disabled());
    743   1.1  christos 
    744  1.13      matt 	KASSERTMSG(pte_valid_p(pte), "va %#"PRIxVADDR" %#"PRIxPTE,
    745  1.13      matt 	    va, pte_value(pte));
    746  1.13      matt 
    747   1.1  christos 	TLBINFO_LOCK(ti);
    748   1.1  christos 	if (pm == pmap_kernel() || PMAP_PAI_ASIDVALID_P(pai, ti)) {
    749   1.1  christos 		pmap_tlb_asid_check();
    750  1.13      matt 		rv = tlb_update_addr(va, pai->pai_asid, pte,
    751   1.1  christos 		    (flags & PMAP_TLB_INSERT) != 0);
    752   1.1  christos 		pmap_tlb_asid_check();
    753  1.13      matt 		UVMHIST_LOG(maphist,
    754  1.22  pgoyette 		     "   %jd <-- tlb_update_addr(%#jx, %#jx, %#jx, ...)",
    755  1.13      matt 		     rv, va, pai->pai_asid, pte_value(pte));
    756  1.13      matt 		KASSERTMSG((flags & PMAP_TLB_INSERT) == 0 || rv == 1,
    757  1.13      matt 		    "pmap %p (asid %u) va %#"PRIxVADDR" pte %#"PRIxPTE" rv %d",
    758  1.13      matt 		    pm, pai->pai_asid, va, pte_value(pte), rv);
    759  1.13      matt 	}
    760  1.13      matt #if defined(MULTIPROCESSOR) && defined(PMAP_TLB_NEED_SHOOTDOWN)
    761  1.13      matt 	if (flags & PMAP_TLB_NEED_IPI)
    762  1.13      matt 		pm->pm_shootdown_pending = 1;
    763   1.1  christos #endif
    764   1.1  christos 	TLBINFO_UNLOCK(ti);
    765   1.1  christos 
    766  1.22  pgoyette 	UVMHIST_LOG(maphist, "   <-- done (rv=%jd)", rv, 0, 0, 0);
    767  1.13      matt 
    768   1.1  christos 	return rv;
    769   1.1  christos }
    770  1.20     skrll #endif /* !PMAP_HWPAGEWALKER */
    771   1.1  christos 
    772   1.1  christos void
    773   1.1  christos pmap_tlb_invalidate_addr(pmap_t pm, vaddr_t va)
    774   1.1  christos {
    775   1.2      matt 	struct pmap_tlb_info * const ti = cpu_tlb_info(curcpu());
    776   1.1  christos 	struct pmap_asid_info * const pai = PMAP_PAI(pm, ti);
    777   1.1  christos 
    778   1.5      matt 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(maphist);
    779  1.22  pgoyette 	UVMHIST_LOG(maphist, " (pm=%#jx va=%#jx) ti=%#jx asid=%#jx",
    780  1.22  pgoyette 	    (uintptr_t)pm, va, (uintptr_t)ti, pai->pai_asid);
    781   1.5      matt 
    782   1.1  christos 	KASSERT(kpreempt_disabled());
    783   1.1  christos 
    784   1.1  christos 	TLBINFO_LOCK(ti);
    785   1.1  christos 	if (pm == pmap_kernel() || PMAP_PAI_ASIDVALID_P(pai, ti)) {
    786   1.1  christos 		pmap_tlb_asid_check();
    787  1.22  pgoyette 		UVMHIST_LOG(maphist, " invalidating %#jx asid %#jx",
    788   1.5      matt 		    va, pai->pai_asid, 0, 0);
    789   1.1  christos 		tlb_invalidate_addr(va, pai->pai_asid);
    790   1.1  christos 		pmap_tlb_asid_check();
    791   1.1  christos 	}
    792  1.13      matt #if defined(MULTIPROCESSOR) && defined(PMAP_TLB_NEED_SHOOTDOWN)
    793   1.1  christos 	pm->pm_shootdown_pending = 1;
    794   1.1  christos #endif
    795   1.1  christos 	TLBINFO_UNLOCK(ti);
    796   1.5      matt 	UVMHIST_LOG(maphist, " <-- done", 0, 0, 0, 0);
    797   1.1  christos }
    798   1.1  christos 
    799   1.1  christos static inline void
    800   1.1  christos pmap_tlb_asid_alloc(struct pmap_tlb_info *ti, pmap_t pm,
    801   1.1  christos 	struct pmap_asid_info *pai)
    802   1.1  christos {
    803   1.1  christos 	/*
    804   1.1  christos 	 * We shouldn't have an ASID assigned, and thusly must not be onproc
    805   1.1  christos 	 * nor active.
    806   1.1  christos 	 */
    807   1.1  christos 	KASSERT(pm != pmap_kernel());
    808   1.1  christos 	KASSERT(pai->pai_asid == 0);
    809   1.1  christos 	KASSERT(pai->pai_link.le_prev == NULL);
    810   1.1  christos #if defined(MULTIPROCESSOR)
    811   1.5      matt 	KASSERT(!pmap_tlb_intersecting_onproc_p(pm, ti));
    812   1.5      matt 	KASSERT(!pmap_tlb_intersecting_active_p(pm, ti));
    813   1.1  christos #endif
    814   1.1  christos 	KASSERT(ti->ti_asids_free > 0);
    815   1.5      matt 	KASSERT(ti->ti_asid_hint > KERNEL_PID);
    816   1.5      matt 
    817   1.5      matt 	/*
    818   1.5      matt 	 * If the last ASID allocated was the maximum ASID, then the
    819   1.5      matt 	 * hint will be out of range.  Reset the hint to first
    820   1.5      matt 	 * available ASID.
    821   1.5      matt 	 */
    822   1.5      matt 	if (PMAP_TLB_FLUSH_ASID_ON_RESET
    823   1.5      matt 	    && ti->ti_asid_hint > ti->ti_asid_max) {
    824   1.5      matt 		ti->ti_asid_hint = KERNEL_PID + 1;
    825   1.5      matt 	}
    826   1.5      matt 	KASSERTMSG(ti->ti_asid_hint <= ti->ti_asid_max, "hint %u",
    827   1.5      matt 	    ti->ti_asid_hint);
    828   1.1  christos 
    829   1.1  christos 	/*
    830   1.1  christos 	 * Let's see if the hinted ASID is free.  If not search for
    831   1.1  christos 	 * a new one.
    832   1.1  christos 	 */
    833   1.5      matt 	if (__predict_true(TLBINFO_ASID_INUSE_P(ti, ti->ti_asid_hint))) {
    834  1.25  jdolecek 		const size_t nbpw = NBBY * sizeof(ti->ti_asid_bitmap._b[0]);
    835   1.5      matt 		size_t i;
    836   1.5      matt 		u_long bits;
    837  1.25  jdolecek 		for (i = 0; (bits = ~ti->ti_asid_bitmap._b[i]) == 0; i++) {
    838  1.25  jdolecek 			KASSERT(i < __arraycount(ti->ti_asid_bitmap._b) - 1);
    839   1.1  christos 		}
    840   1.5      matt 		/*
    841   1.5      matt 		 * ffs wants to find the first bit set while we want
    842   1.5      matt 		 * to find the first bit cleared.
    843   1.5      matt 		 */
    844   1.5      matt 		const u_int n = __builtin_ffsl(bits) - 1;
    845   1.5      matt 		KASSERTMSG((bits << (nbpw - (n+1))) == (1ul << (nbpw-1)),
    846   1.5      matt 		    "n %u bits %#lx", n, bits);
    847   1.5      matt 		KASSERT(n < nbpw);
    848   1.5      matt 		ti->ti_asid_hint = n + i * nbpw;
    849   1.1  christos 	}
    850   1.1  christos 
    851   1.5      matt 	KASSERT(ti->ti_asid_hint > KERNEL_PID);
    852   1.5      matt 	KASSERT(ti->ti_asid_hint <= ti->ti_asid_max);
    853   1.5      matt 	KASSERTMSG(PMAP_TLB_FLUSH_ASID_ON_RESET
    854   1.5      matt 	    || TLBINFO_ASID_INUSE_P(ti, ti->ti_asid_hint - 1),
    855  1.25  jdolecek 	    "hint %u bitmap %p", ti->ti_asid_hint, &ti->ti_asid_bitmap);
    856   1.5      matt 	KASSERTMSG(!TLBINFO_ASID_INUSE_P(ti, ti->ti_asid_hint),
    857  1.25  jdolecek 	    "hint %u bitmap %p", ti->ti_asid_hint, &ti->ti_asid_bitmap);
    858   1.5      matt 
    859   1.1  christos 	/*
    860   1.1  christos 	 * The hint contains our next ASID so take it and advance the hint.
    861   1.1  christos 	 * Mark it as used and insert the pai into the list of active asids.
    862   1.1  christos 	 * There is also one less asid free in this TLB.
    863   1.1  christos 	 */
    864   1.5      matt 	KASSERT(ti->ti_asid_hint > KERNEL_PID);
    865   1.1  christos 	pai->pai_asid = ti->ti_asid_hint++;
    866   1.5      matt #ifdef MULTIPROCESSOR
    867   1.5      matt 	if (PMAP_TLB_FLUSH_ASID_ON_RESET) {
    868   1.5      matt 		/*
    869   1.5      matt 		 * Clean the new ASID from the TLB.
    870   1.5      matt 		 */
    871   1.5      matt 		tlb_invalidate_asids(pai->pai_asid, pai->pai_asid);
    872   1.5      matt 	}
    873   1.5      matt #endif
    874   1.1  christos 	TLBINFO_ASID_MARK_USED(ti, pai->pai_asid);
    875   1.1  christos 	LIST_INSERT_HEAD(&ti->ti_pais, pai, pai_link);
    876   1.1  christos 	ti->ti_asids_free--;
    877   1.1  christos 
    878   1.1  christos #if defined(MULTIPROCESSOR)
    879   1.1  christos 	/*
    880   1.1  christos 	 * Mark that we now have an active ASID for all CPUs sharing this TLB.
    881   1.1  christos 	 * The bits in pm_active belonging to this TLB can only be changed
    882   1.1  christos 	 * while this TLBs lock is held.
    883   1.1  christos 	 */
    884   1.3      matt #if PMAP_TLB_MAX == 1
    885   1.3      matt 	kcpuset_copy(pm->pm_active, kcpuset_running);
    886   1.3      matt #else
    887  1.13      matt 	kcpuset_merge(pm->pm_active, ti->ti_kcpuset);
    888   1.3      matt #endif
    889   1.1  christos #endif
    890   1.1  christos }
    891   1.1  christos 
    892   1.1  christos /*
    893   1.1  christos  * Acquire a TLB address space tag (called ASID or TLBPID) and return it.
    894   1.1  christos  * ASID might have already been previously acquired.
    895   1.1  christos  */
    896   1.1  christos void
    897   1.1  christos pmap_tlb_asid_acquire(pmap_t pm, struct lwp *l)
    898   1.1  christos {
    899   1.1  christos 	struct cpu_info * const ci = l->l_cpu;
    900   1.2      matt 	struct pmap_tlb_info * const ti = cpu_tlb_info(ci);
    901   1.1  christos 	struct pmap_asid_info * const pai = PMAP_PAI(pm, ti);
    902   1.1  christos 
    903  1.13      matt 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(maphist);
    904  1.22  pgoyette 	UVMHIST_LOG(maphist, "(pm=%#jx, l=%#jx, ti=%#jx)", (uintptr_t)pm,
    905  1.22  pgoyette 	    (uintptr_t)l, (uintptr_t)ti, 0);
    906  1.13      matt 
    907   1.1  christos 	KASSERT(kpreempt_disabled());
    908   1.1  christos 
    909   1.1  christos 	/*
    910   1.1  christos 	 * Kernels use a fixed ASID and thus doesn't need to acquire one.
    911   1.1  christos 	 */
    912   1.5      matt 	if (pm == pmap_kernel()) {
    913   1.5      matt 		UVMHIST_LOG(maphist, " <-- done (kernel)", 0, 0, 0, 0);
    914   1.1  christos 		return;
    915   1.5      matt 	}
    916   1.1  christos 
    917   1.1  christos 	TLBINFO_LOCK(ti);
    918   1.1  christos 	KASSERT(pai->pai_asid <= KERNEL_PID || pai->pai_link.le_prev != NULL);
    919   1.1  christos 	KASSERT(pai->pai_asid > KERNEL_PID || pai->pai_link.le_prev == NULL);
    920  1.18      matt 	pmap_tlb_pai_check(ti, true);
    921   1.1  christos 	if (__predict_false(!PMAP_PAI_ASIDVALID_P(pai, ti))) {
    922   1.1  christos 		/*
    923   1.1  christos 		 * If we've run out ASIDs, reinitialize the ASID space.
    924   1.1  christos 		 */
    925   1.1  christos 		if (__predict_false(tlbinfo_noasids_p(ti))) {
    926   1.1  christos 			KASSERT(l == curlwp);
    927   1.5      matt 			UVMHIST_LOG(maphist, " asid reinit", 0, 0, 0, 0);
    928   1.1  christos 			pmap_tlb_asid_reinitialize(ti, TLBINV_NOBODY);
    929   1.5      matt 			KASSERT(!tlbinfo_noasids_p(ti));
    930   1.1  christos 		}
    931   1.1  christos 
    932   1.1  christos 		/*
    933   1.1  christos 		 * Get an ASID.
    934   1.1  christos 		 */
    935   1.1  christos 		pmap_tlb_asid_alloc(ti, pm, pai);
    936  1.22  pgoyette 		UVMHIST_LOG(maphist, "allocated asid %#jx", pai->pai_asid,
    937  1.22  pgoyette 		    0, 0, 0);
    938   1.1  christos 	}
    939  1.18      matt 	pmap_tlb_pai_check(ti, true);
    940  1.13      matt #if defined(MULTIPROCESSOR)
    941  1.13      matt 	KASSERT(kcpuset_isset(pm->pm_active, cpu_index(ci)));
    942  1.13      matt #endif
    943   1.1  christos 
    944   1.1  christos 	if (l == curlwp) {
    945   1.1  christos #if defined(MULTIPROCESSOR)
    946   1.1  christos 		/*
    947   1.1  christos 		 * The bits in pm_onproc belonging to this TLB can only
    948   1.1  christos 		 * be changed while this TLBs lock is held unless atomic
    949   1.1  christos 		 * operations are used.
    950   1.1  christos 		 */
    951   1.5      matt 		KASSERT(pm != pmap_kernel());
    952   1.3      matt 		kcpuset_atomic_set(pm->pm_onproc, cpu_index(ci));
    953   1.1  christos #endif
    954   1.1  christos 		ci->ci_pmap_asid_cur = pai->pai_asid;
    955  1.22  pgoyette 		UVMHIST_LOG(maphist, "setting asid to %#jx", pai->pai_asid,
    956  1.22  pgoyette 		    0, 0, 0);
    957   1.1  christos 		tlb_set_asid(pai->pai_asid);
    958   1.1  christos 		pmap_tlb_asid_check();
    959   1.1  christos 	} else {
    960   1.1  christos 		printf("%s: l (%p) != curlwp %p\n", __func__, l, curlwp);
    961   1.1  christos 	}
    962   1.1  christos 	TLBINFO_UNLOCK(ti);
    963   1.5      matt 	UVMHIST_LOG(maphist, " <-- done", 0, 0, 0, 0);
    964   1.1  christos }
    965   1.1  christos 
    966   1.1  christos void
    967   1.1  christos pmap_tlb_asid_deactivate(pmap_t pm)
    968   1.1  christos {
    969   1.5      matt 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(maphist);
    970  1.13      matt 
    971   1.1  christos 	KASSERT(kpreempt_disabled());
    972   1.1  christos #if defined(MULTIPROCESSOR)
    973   1.1  christos 	/*
    974   1.1  christos 	 * The kernel pmap is aways onproc and active and must never have
    975   1.1  christos 	 * those bits cleared.  If pmap_remove_all was called, it has already
    976   1.1  christos 	 * deactivated the pmap and thusly onproc will be 0 so there's nothing
    977   1.1  christos 	 * to do.
    978   1.1  christos 	 */
    979   1.5      matt 	if (pm != pmap_kernel() && !kcpuset_iszero(pm->pm_onproc)) {
    980   1.1  christos 		struct cpu_info * const ci = curcpu();
    981   1.1  christos 		KASSERT(!cpu_intr_p());
    982   1.3      matt 		KASSERTMSG(kcpuset_isset(pm->pm_onproc, cpu_index(ci)),
    983   1.3      matt 		    "%s: pmap %p onproc %p doesn't include cpu %d (%p)",
    984   1.1  christos 		    __func__, pm, pm->pm_onproc, cpu_index(ci), ci);
    985   1.1  christos 		/*
    986   1.1  christos 		 * The bits in pm_onproc that belong to this TLB can
    987   1.1  christos 		 * be changed while this TLBs lock is not held as long
    988   1.1  christos 		 * as we use atomic ops.
    989   1.1  christos 		 */
    990   1.3      matt 		kcpuset_atomic_clear(pm->pm_onproc, cpu_index(ci));
    991   1.1  christos 	}
    992   1.5      matt #endif
    993  1.17     skrll 	curcpu()->ci_pmap_asid_cur = KERNEL_PID;
    994  1.22  pgoyette 	UVMHIST_LOG(maphist, " <-- done (pm=%#jx)", (uintptr_t)pm, 0, 0, 0);
    995  1.10     skrll 	tlb_set_asid(KERNEL_PID);
    996  1.18      matt 	pmap_tlb_pai_check(cpu_tlb_info(curcpu()), false);
    997   1.5      matt #if defined(DEBUG)
    998   1.1  christos 	pmap_tlb_asid_check();
    999   1.1  christos #endif
   1000   1.1  christos }
   1001   1.1  christos 
   1002   1.1  christos void
   1003   1.1  christos pmap_tlb_asid_release_all(struct pmap *pm)
   1004   1.1  christos {
   1005  1.13      matt 	UVMHIST_FUNC(__func__); UVMHIST_CALLED(maphist);
   1006  1.22  pgoyette 	UVMHIST_LOG(maphist, "(pm=%#jx)", (uintptr_t)pm, 0, 0, 0);
   1007  1.13      matt 
   1008   1.1  christos 	KASSERT(pm != pmap_kernel());
   1009   1.1  christos #if defined(MULTIPROCESSOR)
   1010   1.5      matt 	//KASSERT(!kcpuset_iszero(pm->pm_onproc)); // XXX
   1011  1.13      matt 	struct cpu_info * const ci __diagused = curcpu();
   1012  1.13      matt 	KASSERT(!kcpuset_isotherset(pm->pm_onproc, cpu_index(ci)));
   1013   1.8      matt #if PMAP_TLB_MAX > 1
   1014   1.3      matt 	for (u_int i = 0; !kcpuset_iszero(pm->pm_active); i++) {
   1015   1.1  christos 		KASSERT(i < pmap_ntlbs);
   1016   1.1  christos 		struct pmap_tlb_info * const ti = pmap_tlbs[i];
   1017   1.3      matt #else
   1018   1.3      matt 		struct pmap_tlb_info * const ti = &pmap_tlb0_info;
   1019   1.3      matt #endif
   1020   1.5      matt 		struct pmap_asid_info * const pai = PMAP_PAI(pm, ti);
   1021   1.5      matt 		TLBINFO_LOCK(ti);
   1022   1.5      matt 		if (PMAP_PAI_ASIDVALID_P(pai, ti)) {
   1023   1.5      matt 			/*
   1024  1.13      matt 			 * This pmap should not be in use by any other cpu so
   1025  1.13      matt 			 * we can just reset and be happy.
   1026   1.5      matt 			 */
   1027  1.13      matt 			if (ti->ti_victim == pm)
   1028  1.13      matt 				ti->ti_victim = NULL;
   1029  1.13      matt 			pmap_tlb_pai_reset(ti, pai, pm);
   1030   1.1  christos 		}
   1031  1.13      matt 		KASSERT(pai->pai_link.le_prev == NULL);
   1032   1.5      matt 		TLBINFO_UNLOCK(ti);
   1033   1.3      matt #if PMAP_TLB_MAX > 1
   1034   1.1  christos 	}
   1035   1.3      matt #endif
   1036  1.13      matt #ifdef DIAGNOSTIC
   1037  1.13      matt 	for (size_t i = 0; i < (PMAP_TLB_MAX > 1 ? pmap_ntlbs : 1); i++) {
   1038  1.13      matt 		KASSERTMSG(pm->pm_pai[i].pai_asid == 0,
   1039  1.13      matt 		    "pm %p i %zu asid %u",
   1040  1.13      matt 		    pm, i, pm->pm_pai[i].pai_asid);
   1041  1.13      matt 	}
   1042  1.13      matt #endif
   1043   1.1  christos #else
   1044   1.1  christos 	/*
   1045  1.16     skrll 	 * Handle the case of an UP kernel which only has, at most, one TLB.
   1046   1.1  christos 	 * If the pmap has an ASID allocated, free it.
   1047   1.1  christos 	 */
   1048   1.1  christos 	struct pmap_tlb_info * const ti = &pmap_tlb0_info;
   1049   1.1  christos 	struct pmap_asid_info * const pai = PMAP_PAI(pm, ti);
   1050   1.1  christos 	TLBINFO_LOCK(ti);
   1051   1.1  christos 	if (pai->pai_asid > KERNEL_PID) {
   1052   1.7      matt 		if (curcpu()->ci_pmap_asid_cur == pai->pai_asid) {
   1053   1.5      matt 			tlb_invalidate_asids(pai->pai_asid, pai->pai_asid);
   1054   1.5      matt 		} else {
   1055  1.13      matt 			pmap_tlb_pai_reset(ti, pai, pm);
   1056   1.5      matt 		}
   1057   1.1  christos 	}
   1058   1.1  christos 	TLBINFO_UNLOCK(ti);
   1059   1.1  christos #endif /* MULTIPROCESSOR */
   1060  1.13      matt 	UVMHIST_LOG(maphist, " <-- done", 0, 0, 0, 0);
   1061   1.1  christos }
   1062   1.1  christos 
   1063   1.1  christos void
   1064   1.1  christos pmap_tlb_asid_check(void)
   1065   1.1  christos {
   1066   1.1  christos #ifdef DEBUG
   1067   1.1  christos 	kpreempt_disable();
   1068   1.5      matt 	const tlb_asid_t asid __debugused = tlb_get_asid();
   1069   1.1  christos 	KDASSERTMSG(asid == curcpu()->ci_pmap_asid_cur,
   1070   1.1  christos 	   "%s: asid (%#x) != current asid (%#x)",
   1071   1.1  christos 	    __func__, asid, curcpu()->ci_pmap_asid_cur);
   1072   1.1  christos 	kpreempt_enable();
   1073   1.1  christos #endif
   1074   1.1  christos }
   1075   1.1  christos 
   1076   1.1  christos #ifdef DEBUG
   1077   1.1  christos void
   1078   1.1  christos pmap_tlb_check(pmap_t pm, bool (*func)(void *, vaddr_t, tlb_asid_t, pt_entry_t))
   1079   1.1  christos {
   1080   1.2      matt         struct pmap_tlb_info * const ti = cpu_tlb_info(curcpu());
   1081   1.1  christos         struct pmap_asid_info * const pai = PMAP_PAI(pm, ti);
   1082   1.1  christos         TLBINFO_LOCK(ti);
   1083   1.1  christos         if (pm == pmap_kernel() || pai->pai_asid > KERNEL_PID)
   1084   1.1  christos 		tlb_walk(pm, func);
   1085   1.1  christos         TLBINFO_UNLOCK(ti);
   1086   1.1  christos }
   1087   1.1  christos #endif /* DEBUG */
   1088