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pmap.h revision 1.60
      1  1.60      matt /*	$NetBSD: pmap.h,v 1.60 2011/02/20 07:45:47 matt Exp $	*/
      2   1.5       cgd 
      3  1.26    simonb /*
      4   1.3     glass  * Copyright (c) 1992, 1993
      5   1.3     glass  *	The Regents of the University of California.  All rights reserved.
      6  1.44       agc  *
      7  1.44       agc  * This code is derived from software contributed to Berkeley by
      8  1.44       agc  * Ralph Campbell.
      9  1.44       agc  *
     10  1.44       agc  * Redistribution and use in source and binary forms, with or without
     11  1.44       agc  * modification, are permitted provided that the following conditions
     12  1.44       agc  * are met:
     13  1.44       agc  * 1. Redistributions of source code must retain the above copyright
     14  1.44       agc  *    notice, this list of conditions and the following disclaimer.
     15  1.44       agc  * 2. Redistributions in binary form must reproduce the above copyright
     16  1.44       agc  *    notice, this list of conditions and the following disclaimer in the
     17  1.44       agc  *    documentation and/or other materials provided with the distribution.
     18  1.44       agc  * 3. Neither the name of the University nor the names of its contributors
     19  1.44       agc  *    may be used to endorse or promote products derived from this software
     20  1.44       agc  *    without specific prior written permission.
     21  1.44       agc  *
     22  1.44       agc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     23  1.44       agc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24  1.44       agc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25  1.44       agc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     26  1.44       agc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     27  1.44       agc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     28  1.44       agc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     29  1.44       agc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     30  1.44       agc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     31  1.44       agc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     32  1.44       agc  * SUCH DAMAGE.
     33  1.44       agc  *
     34  1.44       agc  *	@(#)pmap.h	8.1 (Berkeley) 6/10/93
     35  1.44       agc  */
     36  1.44       agc 
     37  1.44       agc /*
     38  1.44       agc  * Copyright (c) 1987 Carnegie-Mellon University
     39   1.1   deraadt  *
     40   1.1   deraadt  * This code is derived from software contributed to Berkeley by
     41   1.1   deraadt  * Ralph Campbell.
     42   1.1   deraadt  *
     43   1.1   deraadt  * Redistribution and use in source and binary forms, with or without
     44   1.1   deraadt  * modification, are permitted provided that the following conditions
     45   1.1   deraadt  * are met:
     46   1.1   deraadt  * 1. Redistributions of source code must retain the above copyright
     47   1.1   deraadt  *    notice, this list of conditions and the following disclaimer.
     48   1.1   deraadt  * 2. Redistributions in binary form must reproduce the above copyright
     49   1.1   deraadt  *    notice, this list of conditions and the following disclaimer in the
     50   1.1   deraadt  *    documentation and/or other materials provided with the distribution.
     51   1.1   deraadt  * 3. All advertising materials mentioning features or use of this software
     52   1.1   deraadt  *    must display the following acknowledgement:
     53   1.1   deraadt  *	This product includes software developed by the University of
     54   1.1   deraadt  *	California, Berkeley and its contributors.
     55   1.1   deraadt  * 4. Neither the name of the University nor the names of its contributors
     56   1.1   deraadt  *    may be used to endorse or promote products derived from this software
     57   1.1   deraadt  *    without specific prior written permission.
     58   1.1   deraadt  *
     59   1.1   deraadt  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     60   1.1   deraadt  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     61   1.1   deraadt  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     62   1.1   deraadt  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     63   1.1   deraadt  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     64   1.1   deraadt  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     65   1.1   deraadt  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     66   1.1   deraadt  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     67   1.1   deraadt  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     68   1.1   deraadt  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     69   1.1   deraadt  * SUCH DAMAGE.
     70   1.1   deraadt  *
     71   1.5       cgd  *	@(#)pmap.h	8.1 (Berkeley) 6/10/93
     72   1.1   deraadt  */
     73   1.1   deraadt 
     74  1.41    simonb #ifndef	_MIPS_PMAP_H_
     75  1.41    simonb #define	_MIPS_PMAP_H_
     76   1.1   deraadt 
     77  1.60      matt #ifdef _KERNEL_OPT
     78  1.60      matt #include "opt_multiprocessor.h"
     79  1.60      matt #endif
     80  1.60      matt 
     81  1.24    castor #include <mips/cpuregs.h>	/* for KSEG0 below */
     82  1.60      matt //#include <mips/pte.h>
     83  1.18   thorpej 
     84   1.1   deraadt /*
     85   1.3     glass  * The user address space is 2Gb (0x0 - 0x80000000).
     86   1.3     glass  * User programs are laid out in memory as follows:
     87   1.3     glass  *			address
     88   1.3     glass  *	USRTEXT		0x00001000
     89   1.3     glass  *	USRDATA		USRTEXT + text_size
     90   1.3     glass  *	USRSTACK	0x7FFFFFFF
     91   1.3     glass  *
     92   1.3     glass  * The user address space is mapped using a two level structure where
     93   1.3     glass  * virtual address bits 30..22 are used to index into a segment table which
     94   1.3     glass  * points to a page worth of PTEs (4096 page can hold 1024 PTEs).
     95  1.26    simonb  * Bits 21..12 are then used to index a PTE which describes a page within
     96   1.3     glass  * a segment.
     97   1.3     glass  *
     98   1.1   deraadt  * The wired entries in the TLB will contain the following:
     99   1.3     glass  *	0-1	(UPAGES)	for curproc user struct and kernel stack.
    100   1.3     glass  *
    101   1.3     glass  * Note: The kernel doesn't use the same data structures as user programs.
    102   1.3     glass  * All the PTE entries are stored in a single array in Sysmap which is
    103   1.3     glass  * dynamically allocated at boot time.
    104   1.1   deraadt  */
    105   1.1   deraadt 
    106  1.22  nisimura #define mips_trunc_seg(x)	((vaddr_t)(x) & ~SEGOFSET)
    107  1.22  nisimura #define mips_round_seg(x)	(((vaddr_t)(x) + SEGOFSET) & ~SEGOFSET)
    108   1.3     glass 
    109  1.60      matt #ifdef _LP64
    110  1.60      matt #define PMAP_SEGTABSIZE		NSEGPG
    111  1.60      matt #else
    112  1.57      matt #define PMAP_SEGTABSIZE		(1 << (31 - SEGSHIFT))
    113  1.60      matt #endif
    114   1.3     glass 
    115   1.3     glass union pt_entry;
    116   1.3     glass 
    117  1.60      matt union segtab {
    118  1.60      matt #ifdef _LP64
    119  1.60      matt 	union segtab	*seg_seg[PMAP_SEGTABSIZE];
    120  1.60      matt #endif
    121   1.3     glass 	union pt_entry	*seg_tab[PMAP_SEGTABSIZE];
    122   1.3     glass };
    123   1.1   deraadt 
    124   1.1   deraadt /*
    125  1.60      matt  * Structure defining an tlb entry data set.
    126  1.60      matt  */
    127  1.60      matt struct tlb {
    128  1.60      matt 	vaddr_t	tlb_hi;		/* should be 64 bits */
    129  1.60      matt 	uint32_t tlb_lo0;	/* XXX maybe 64 bits (only 32 really used) */
    130  1.60      matt 	uint32_t tlb_lo1;	/* XXX maybe 64 bits (only 32 really used) */
    131  1.60      matt };
    132  1.60      matt 
    133  1.60      matt struct tlbmask {
    134  1.60      matt 	vaddr_t	tlb_hi;		/* should be 64 bits */
    135  1.60      matt 	uint32_t tlb_lo0;	/* XXX maybe 64 bits (only 32 really used) */
    136  1.60      matt 	uint32_t tlb_lo1;	/* XXX maybe 64 bits (only 32 really used) */
    137  1.60      matt 	uint32_t tlb_mask;
    138  1.60      matt };
    139  1.60      matt 
    140  1.60      matt #ifdef _KERNEL
    141  1.60      matt struct pmap;
    142  1.60      matt typedef bool (*pte_callback_t)(struct pmap *, vaddr_t, vaddr_t,
    143  1.60      matt 	union pt_entry *, uintptr_t);
    144  1.60      matt union pt_entry *pmap_pte_lookup(struct pmap *, vaddr_t);
    145  1.60      matt union pt_entry *pmap_pte_reserve(struct pmap *, vaddr_t, int);
    146  1.60      matt void pmap_pte_process(struct pmap *, vaddr_t, vaddr_t, pte_callback_t,
    147  1.60      matt 	uintptr_t);
    148  1.60      matt void pmap_segtab_activate(struct pmap *, struct lwp *);
    149  1.60      matt void pmap_segtab_init(struct pmap *);
    150  1.60      matt void pmap_segtab_destroy(struct pmap *);
    151  1.60      matt #endif /* _KERNEL */
    152  1.60      matt 
    153  1.60      matt /*
    154  1.60      matt  * Per TLB (normally same as CPU) asid info
    155  1.60      matt  */
    156  1.60      matt struct pmap_asid_info {
    157  1.60      matt 	LIST_ENTRY(pmap_asid_info) pai_link;
    158  1.60      matt 	uint32_t	pai_asid;	/* TLB address space tag */
    159  1.60      matt };
    160  1.60      matt 
    161  1.60      matt #define	TLBINFO_LOCK(ti)		mutex_spin_enter((ti)->ti_lock)
    162  1.60      matt #define	TLBINFO_UNLOCK(ti)		mutex_spin_exit((ti)->ti_lock)
    163  1.60      matt #define	PMAP_PAI_ASIDVALID_P(pai, ti)	((pai)->pai_asid != 0)
    164  1.60      matt #define	PMAP_PAI(pmap, ti)		(&(pmap)->pm_pai[tlbinfo_index(ti)])
    165  1.60      matt #define	PAI_PMAP(pai, ti)	\
    166  1.60      matt 	((pmap_t)((intptr_t)(pai) \
    167  1.60      matt 	    - offsetof(struct pmap, pm_pai[tlbinfo_index(ti)])))
    168  1.60      matt 
    169  1.60      matt /*
    170   1.1   deraadt  * Machine dependent pmap structure.
    171   1.1   deraadt  */
    172  1.55     pooka struct pmap {
    173  1.60      matt #ifdef MULTIPROCESSOR
    174  1.60      matt 	volatile uint32_t	pm_active;	/* pmap was active on ... */
    175  1.60      matt 	volatile uint32_t	pm_onproc;	/* pmap is active on ... */
    176  1.60      matt 	volatile u_int		pm_shootdown_pending;
    177  1.60      matt #endif
    178  1.60      matt 	union segtab		*pm_segtab;	/* pointers to pages of PTEs */
    179  1.60      matt 	u_int			pm_count;	/* pmap reference count */
    180  1.60      matt 	u_int			pm_flags;
    181  1.60      matt #define	PMAP_DEFERRED_ACTIVATE	0x0001
    182   1.1   deraadt 	struct pmap_statistics	pm_stats;	/* pmap statistics */
    183  1.60      matt 	struct pmap_asid_info	pm_pai[1];
    184  1.55     pooka };
    185   1.1   deraadt 
    186  1.60      matt enum tlb_invalidate_op {
    187  1.60      matt 	TLBINV_NOBODY=0,
    188  1.60      matt 	TLBINV_ONE=1,
    189  1.60      matt 	TLBINV_ALLUSER=2,
    190  1.60      matt 	TLBINV_ALLKERNEL=3,
    191  1.60      matt 	TLBINV_ALL=4
    192  1.60      matt };
    193  1.17   thorpej 
    194  1.60      matt struct pmap_tlb_info {
    195  1.60      matt 	char ti_name[8];
    196  1.60      matt 	uint32_t ti_asid_hint;		/* probable next ASID to use */
    197  1.60      matt 	uint32_t ti_asids_free;		/* # of ASIDs free */
    198  1.60      matt #define	tlbinfo_noasids_p(ti)	((ti)->ti_asids_free == 0)
    199  1.60      matt 	kmutex_t *ti_lock;
    200  1.60      matt 	u_int ti_wired;			/* # of wired TLB entries */
    201  1.60      matt 	uint32_t ti_asid_mask;
    202  1.60      matt 	uint32_t ti_asid_max;
    203  1.60      matt 	LIST_HEAD(, pmap_asid_info) ti_pais; /* list of active ASIDs */
    204  1.60      matt #ifdef MULTIPROCESSOR
    205  1.60      matt 	pmap_t ti_victim;
    206  1.60      matt 	uint32_t ti_synci_page_bitmap;	/* page indices needing a syncicache */
    207  1.60      matt 	uint32_t ti_cpu_mask;		/* bitmask of CPUs sharing this TLB */
    208  1.60      matt 	enum tlb_invalidate_op ti_tlbinvop;
    209  1.60      matt 	u_int ti_index;
    210  1.60      matt #define tlbinfo_index(ti)	((ti)->ti_index)
    211  1.60      matt 	struct evcnt ti_evcnt_synci_asts;
    212  1.60      matt 	struct evcnt ti_evcnt_synci_all;
    213  1.60      matt 	struct evcnt ti_evcnt_synci_pages;
    214  1.60      matt 	struct evcnt ti_evcnt_synci_deferred;
    215  1.60      matt 	struct evcnt ti_evcnt_synci_desired;
    216  1.60      matt 	struct evcnt ti_evcnt_synci_duplicate;
    217  1.60      matt #else
    218  1.60      matt #define tlbinfo_index(ti)	(0)
    219  1.60      matt #endif
    220  1.60      matt 	struct evcnt ti_evcnt_asid_reinits;
    221  1.60      matt 	u_long ti_asid_bitmap[256 / (sizeof(u_long) * 8)];
    222  1.60      matt };
    223   1.1   deraadt 
    224  1.60      matt #ifdef	_KERNEL
    225  1.13  jonathan 
    226  1.60      matt struct pmap_kernel {
    227  1.60      matt 	struct pmap kernel_pmap;
    228  1.60      matt #ifdef MULTIPROCESSOR
    229  1.60      matt 	struct pmap_asid_info kernel_pai[MAXCPUS-1];
    230  1.60      matt #endif
    231  1.60      matt };
    232  1.13  jonathan 
    233  1.60      matt extern struct pmap_kernel kernel_pmap_store;
    234  1.60      matt extern struct pmap_tlb_info pmap_tlb0_info;
    235  1.60      matt #ifdef MULTIPROCESSOR
    236  1.60      matt extern struct pmap_tlb_info *pmap_tlbs[MAXCPUS];
    237  1.60      matt extern u_int pmap_ntlbs;
    238  1.60      matt #endif
    239  1.60      matt extern paddr_t mips_avail_start;
    240  1.60      matt extern paddr_t mips_avail_end;
    241  1.60      matt extern vaddr_t mips_virtual_end;
    242   1.7   mycroft 
    243   1.3     glass #define	pmap_wired_count(pmap) 	((pmap)->pm_stats.wired_count)
    244  1.14    mhitch #define pmap_resident_count(pmap) ((pmap)->pm_stats.resident_count)
    245  1.31   thorpej 
    246  1.51  macallan #define pmap_phys_address(x)	mips_ptob(x)
    247  1.39       chs 
    248  1.12  jonathan /*
    249  1.13  jonathan  *	Bootstrap the system enough to run with virtual memory.
    250  1.13  jonathan  */
    251  1.38    simonb void	pmap_bootstrap(void);
    252  1.20    mhitch 
    253  1.60      matt void	pmap_remove_all(pmap_t);
    254  1.38    simonb void	pmap_set_modified(paddr_t);
    255  1.38    simonb void	pmap_procwr(struct proc *, vaddr_t, size_t);
    256  1.25        is #define	PMAP_NEED_PROCWR
    257  1.13  jonathan 
    258  1.60      matt #ifdef MULTIPROCESSOR
    259  1.60      matt void	pmap_tlb_shootdown_process(void);
    260  1.60      matt bool	pmap_tlb_shootdown_bystanders(pmap_t pmap);
    261  1.60      matt void	pmap_tlb_info_attach(struct pmap_tlb_info *, struct cpu_info *);
    262  1.60      matt void	pmap_tlb_syncicache_ast(struct cpu_info *);
    263  1.60      matt void	pmap_tlb_syncicache_wanted(struct cpu_info *);
    264  1.60      matt void	pmap_tlb_syncicache(vaddr_t, uint32_t);
    265  1.60      matt #endif
    266  1.60      matt void	pmap_tlb_info_init(struct pmap_tlb_info *);
    267  1.60      matt void	pmap_tlb_info_evcnt_attach(struct pmap_tlb_info *);
    268  1.60      matt void	pmap_tlb_asid_acquire(pmap_t pmap, struct lwp *l);
    269  1.60      matt void	pmap_tlb_asid_deactivate(pmap_t pmap);
    270  1.60      matt void	pmap_tlb_asid_check(void);
    271  1.60      matt void	pmap_tlb_asid_release_all(pmap_t pmap);
    272  1.60      matt int	pmap_tlb_update_addr(pmap_t pmap, vaddr_t, uint32_t, bool);
    273  1.60      matt void	pmap_tlb_invalidate_addr(pmap_t pmap, vaddr_t);
    274  1.60      matt 
    275  1.13  jonathan /*
    276  1.28     soren  * pmap_prefer() helps reduce virtual-coherency exceptions in
    277  1.13  jonathan  * the virtually-indexed cache on mips3 CPUs.
    278  1.13  jonathan  */
    279  1.38    simonb #ifdef MIPS3_PLUS
    280  1.60      matt #define PMAP_PREFER(pa, va, sz, td)	pmap_prefer((pa), (va), (sz), (td))
    281  1.60      matt void	pmap_prefer(vaddr_t, vaddr_t *, vsize_t, int);
    282  1.38    simonb #endif /* MIPS3_PLUS */
    283  1.13  jonathan 
    284  1.17   thorpej #define	PMAP_STEAL_MEMORY	/* enable pmap_steal_memory() */
    285  1.18   thorpej 
    286  1.18   thorpej /*
    287  1.18   thorpej  * Alternate mapping hooks for pool pages.  Avoids thrashing the TLB.
    288  1.18   thorpej  */
    289  1.47   tsutsui vaddr_t mips_pmap_map_poolpage(paddr_t);
    290  1.47   tsutsui paddr_t mips_pmap_unmap_poolpage(vaddr_t);
    291  1.60      matt struct vm_page *mips_pmap_alloc_poolpage(int);
    292  1.60      matt #define	PMAP_ALLOC_POOLPAGE(flags)	mips_pmap_alloc_poolpage(flags)
    293  1.60      matt #define	PMAP_MAP_POOLPAGE(pa)		mips_pmap_map_poolpage(pa)
    294  1.60      matt #define	PMAP_UNMAP_POOLPAGE(va)		mips_pmap_unmap_poolpage(va)
    295  1.42   thorpej 
    296  1.42   thorpej /*
    297  1.42   thorpej  * Other hooks for the pool allocator.
    298  1.42   thorpej  */
    299  1.57      matt #ifdef _LP64
    300  1.57      matt #define	POOL_VTOPHYS(va)	(MIPS_KSEG0_P(va) \
    301  1.57      matt 				    ? MIPS_KSEG0_TO_PHYS(va) \
    302  1.57      matt 				    : MIPS_XKPHYS_TO_PHYS(va))
    303  1.57      matt #else
    304  1.43   thorpej #define	POOL_VTOPHYS(va)	MIPS_KSEG0_TO_PHYS((vaddr_t)(va))
    305  1.57      matt #endif
    306  1.38    simonb 
    307  1.38    simonb /*
    308  1.38    simonb  * Select CCA to use for unmanaged pages.
    309  1.38    simonb  */
    310  1.57      matt #define	PMAP_CCA_FOR_PA(pa)	CCA_UNCACHED		/* uncached */
    311  1.13  jonathan 
    312  1.52  macallan #if defined(_MIPS_PADDR_T_64BIT) || defined(_LP64)
    313  1.58    cegger #define PGC_NOCACHE	0x4000000000000000ULL
    314  1.52  macallan #endif
    315  1.52  macallan 
    316  1.59  uebayasi #define	__HAVE_VM_PAGE_MD
    317  1.59  uebayasi 
    318  1.59  uebayasi /*
    319  1.59  uebayasi  * pmap-specific data stored in the vm_page structure.
    320  1.59  uebayasi  */
    321  1.60      matt /*
    322  1.60      matt  * For each struct vm_page, there is a list of all currently valid virtual
    323  1.60      matt  * mappings of that page.  An entry is a pv_entry_t, the list is pv_table.
    324  1.60      matt  * XXX really should do this as a part of the higher level code.
    325  1.60      matt  */
    326  1.60      matt typedef struct pv_entry {
    327  1.60      matt 	struct pv_entry	*pv_next;	/* next pv_entry */
    328  1.60      matt 	struct pmap	*pv_pmap;	/* pmap where mapping lies */
    329  1.60      matt 	vaddr_t		pv_va;		/* virtual address for mapping */
    330  1.60      matt } *pv_entry_t;
    331  1.60      matt 
    332  1.60      matt #define	PG_MD_UNCACHED		0x0001	/* page is mapped uncached */
    333  1.60      matt #define	PG_MD_MODIFIED		0x0002	/* page has been modified */
    334  1.60      matt #define	PG_MD_REFERENCED	0x0004	/* page has been recently referenced */
    335  1.60      matt #define	PG_MD_POOLPAGE		0x0008	/* page is used as a poolpage */
    336  1.60      matt #define	PG_MD_EXECPAGE		0x0010	/* page is exec mapped */
    337  1.60      matt 
    338  1.60      matt #define	PG_MD_CACHED_P(md)	(((md)->pvh_attrs & PG_MD_UNCACHED) == 0)
    339  1.60      matt #define	PG_MD_UNCACHED_P(md)	(((md)->pvh_attrs & PG_MD_UNCACHED) != 0)
    340  1.60      matt #define	PG_MD_MODIFIED_P(md)	(((md)->pvh_attrs & PG_MD_MODIFIED) != 0)
    341  1.60      matt #define	PG_MD_REFERENCED_P(md)	(((md)->pvh_attrs & PG_MD_REFERENCED) != 0)
    342  1.60      matt #define	PG_MD_POOLPAGE_P(md)	(((md)->pvh_attrs & PG_MD_POOLPAGE) != 0)
    343  1.60      matt #define	PG_MD_EXECPAGE_P(md)	(((md)->pvh_attrs & PG_MD_EXECPAGE) != 0)
    344  1.60      matt 
    345  1.59  uebayasi struct vm_page_md {
    346  1.60      matt 	struct pv_entry pvh_first;	/* pv_entry first */
    347  1.60      matt #ifdef MULTIPROCESSOR
    348  1.60      matt 	volatile u_int pvh_attrs;	/* page attributes */
    349  1.60      matt 	kmutex_t *pvh_lock;		/* pv list lock */
    350  1.60      matt #define	PG_MD_PVLIST_LOCK_INIT(md) 	((md)->pvh_lock = NULL)
    351  1.60      matt #define	PG_MD_PVLIST_LOCKED_P(md)	(mutex_owner((md)->pvh_lock) != 0)
    352  1.60      matt #define	PG_MD_PVLIST_LOCK(md, lc)	pmap_pvlist_lock((md), (lc))
    353  1.60      matt #define	PG_MD_PVLIST_UNLOCK(md)		mutex_spin_exit((md)->pvh_lock)
    354  1.60      matt #define	PG_MD_PVLIST_GEN(md)		((uint16_t)((md)->pvh_attrs >> 16))
    355  1.60      matt #else
    356  1.59  uebayasi 	u_int pvh_attrs;		/* page attributes */
    357  1.60      matt #define	PG_MD_PVLIST_LOCK_INIT(md)	do { } while (/*CONSTCOND*/ 0)
    358  1.60      matt #define	PG_MD_PVLIST_LOCKED_P(md)	true
    359  1.60      matt #define	PG_MD_PVLIST_LOCK(md, lc)	(mutex_spin_enter(&pmap_pvlist_mutex), 0)
    360  1.60      matt #define	PG_MD_PVLIST_UNLOCK(md)		mutex_spin_exit(&pmap_pvlist_mutex)
    361  1.60      matt #define	PG_MD_PVLIST_GEN(md)		(0)
    362  1.60      matt #endif
    363  1.59  uebayasi };
    364  1.59  uebayasi 
    365  1.60      matt #define VM_MDPAGE_INIT(pg)					\
    366  1.60      matt do {								\
    367  1.60      matt 	struct vm_page_md * const md = VM_PAGE_TO_MD(pg);	\
    368  1.60      matt 	(md)->pvh_first.pv_next = NULL;				\
    369  1.60      matt 	(md)->pvh_first.pv_pmap = NULL;				\
    370  1.60      matt 	(md)->pvh_first.pv_va = VM_PAGE_TO_PHYS(pg);		\
    371  1.60      matt 	PG_MD_PVLIST_LOCK_INIT(md);				\
    372  1.60      matt 	(md)->pvh_attrs = 0;					\
    373  1.59  uebayasi } while (/* CONSTCOND */ 0)
    374  1.59  uebayasi 
    375  1.60      matt uint16_t pmap_pvlist_lock(struct vm_page_md *, bool);
    376  1.60      matt 
    377   1.6       jtc #endif	/* _KERNEL */
    378  1.41    simonb #endif	/* _MIPS_PMAP_H_ */
    379