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pmap.h revision 1.57
      1  1.57       mrg /*	$NetBSD: pmap.h,v 1.57 2001/06/18 15:42:06 mrg Exp $ */
      2   1.8   deraadt 
      3   1.1   deraadt /*
      4  1.20        pk  * Copyright (c) 1996
      5  1.21    abrown  * 	The President and Fellows of Harvard College. All rights reserved.
      6   1.1   deraadt  * Copyright (c) 1992, 1993
      7   1.1   deraadt  *	The Regents of the University of California.  All rights reserved.
      8   1.1   deraadt  *
      9   1.1   deraadt  * This software was developed by the Computer Systems Engineering group
     10   1.1   deraadt  * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
     11   1.1   deraadt  * contributed to Berkeley.
     12   1.1   deraadt  *
     13   1.1   deraadt  * All advertising materials mentioning features or use of this software
     14   1.1   deraadt  * must display the following acknowledgement:
     15  1.20        pk  *	This product includes software developed by Aaron Brown and
     16  1.20        pk  *	Harvard University.
     17   1.1   deraadt  *	This product includes software developed by the University of
     18   1.1   deraadt  *	California, Lawrence Berkeley Laboratory.
     19   1.1   deraadt  *
     20  1.20        pk  * @InsertRedistribution@
     21   1.1   deraadt  * 3. All advertising materials mentioning features or use of this software
     22   1.1   deraadt  *    must display the following acknowledgement:
     23  1.20        pk  *	This product includes software developed by Aaron Brown and
     24  1.20        pk  *	Harvard University.
     25   1.1   deraadt  *	This product includes software developed by the University of
     26   1.1   deraadt  *	California, Berkeley and its contributors.
     27   1.1   deraadt  * 4. Neither the name of the University nor the names of its contributors
     28   1.1   deraadt  *    may be used to endorse or promote products derived from this software
     29   1.1   deraadt  *    without specific prior written permission.
     30   1.1   deraadt  *
     31   1.1   deraadt  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     32   1.1   deraadt  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     33   1.1   deraadt  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     34   1.1   deraadt  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     35   1.1   deraadt  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     36   1.1   deraadt  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     37   1.1   deraadt  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     38   1.1   deraadt  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     39   1.1   deraadt  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     40   1.1   deraadt  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     41   1.1   deraadt  * SUCH DAMAGE.
     42   1.1   deraadt  *
     43   1.1   deraadt  *	@(#)pmap.h	8.1 (Berkeley) 6/11/93
     44   1.1   deraadt  */
     45   1.1   deraadt 
     46   1.1   deraadt #ifndef	_SPARC_PMAP_H_
     47   1.1   deraadt #define _SPARC_PMAP_H_
     48   1.1   deraadt 
     49   1.1   deraadt #include <machine/pte.h>
     50   1.1   deraadt 
     51   1.1   deraadt /*
     52   1.1   deraadt  * Pmap structure.
     53   1.1   deraadt  *
     54   1.1   deraadt  * The pmap structure really comes in two variants, one---a single
     55   1.1   deraadt  * instance---for kernel virtual memory and the other---up to nproc
     56   1.1   deraadt  * instances---for user virtual memory.  Unfortunately, we have to mash
     57   1.1   deraadt  * both into the same structure.  Fortunately, they are almost the same.
     58   1.1   deraadt  *
     59   1.1   deraadt  * The kernel begins at 0xf8000000 and runs to 0xffffffff (although
     60   1.1   deraadt  * some of this is not actually used).  Kernel space, including DVMA
     61   1.1   deraadt  * space (for now?), is mapped identically into all user contexts.
     62   1.1   deraadt  * There is no point in duplicating this mapping in each user process
     63   1.1   deraadt  * so they do not appear in the user structures.
     64   1.1   deraadt  *
     65   1.1   deraadt  * User space begins at 0x00000000 and runs through 0x1fffffff,
     66   1.1   deraadt  * then has a `hole', then resumes at 0xe0000000 and runs until it
     67   1.1   deraadt  * hits the kernel space at 0xf8000000.  This can be mapped
     68   1.1   deraadt  * contiguously by ignorning the top two bits and pretending the
     69   1.1   deraadt  * space goes from 0 to 37ffffff.  Typically the lower range is
     70   1.1   deraadt  * used for text+data and the upper for stack, but the code here
     71   1.1   deraadt  * makes no such distinction.
     72   1.1   deraadt  *
     73   1.1   deraadt  * Since each virtual segment covers 256 kbytes, the user space
     74   1.1   deraadt  * requires 3584 segments, while the kernel (including DVMA) requires
     75   1.1   deraadt  * only 512 segments.
     76   1.1   deraadt  *
     77  1.20        pk  *
     78  1.20        pk  ** FOR THE SUN4/SUN4C
     79  1.20        pk  *
     80   1.1   deraadt  * The segment map entry for virtual segment vseg is offset in
     81   1.1   deraadt  * pmap->pm_rsegmap by 0 if pmap is not the kernel pmap, or by
     82   1.1   deraadt  * NUSEG if it is.  We keep a pointer called pmap->pm_segmap
     83   1.1   deraadt  * pre-offset by this value.  pmap->pm_segmap thus contains the
     84   1.1   deraadt  * values to be loaded into the user portion of the hardware segment
     85   1.1   deraadt  * map so as to reach the proper PMEGs within the MMU.  The kernel
     86   1.1   deraadt  * mappings are `set early' and are always valid in every context
     87   1.1   deraadt  * (every change is always propagated immediately).
     88   1.1   deraadt  *
     89   1.1   deraadt  * The PMEGs within the MMU are loaded `on demand'; when a PMEG is
     90   1.1   deraadt  * taken away from context `c', the pmap for context c has its
     91   1.1   deraadt  * corresponding pm_segmap[vseg] entry marked invalid (the MMU segment
     92   1.1   deraadt  * map entry is also made invalid at the same time).  Thus
     93   1.1   deraadt  * pm_segmap[vseg] is the `invalid pmeg' number (127 or 511) whenever
     94   1.1   deraadt  * the corresponding PTEs are not actually in the MMU.  On the other
     95   1.1   deraadt  * hand, pm_pte[vseg] is NULL only if no pages in that virtual segment
     96   1.1   deraadt  * are in core; otherwise it points to a copy of the 32 or 64 PTEs that
     97   1.1   deraadt  * must be loaded in the MMU in order to reach those pages.
     98   1.1   deraadt  * pm_npte[vseg] counts the number of valid pages in each vseg.
     99   1.1   deraadt  *
    100   1.1   deraadt  * XXX performance: faster to count valid bits?
    101   1.1   deraadt  *
    102   1.1   deraadt  * The kernel pmap cannot malloc() PTEs since malloc() will sometimes
    103   1.1   deraadt  * allocate a new virtual segment.  Since kernel mappings are never
    104  1.44     soren  * `stolen' out of the MMU, we just keep all its PTEs there, and have
    105  1.44     soren  * no software copies.  Its mmu entries are nonetheless kept on lists
    106   1.1   deraadt  * so that the code that fiddles with mmu lists has something to fiddle.
    107  1.20        pk  *
    108  1.20        pk  ** FOR THE SUN4M
    109  1.20        pk  *
    110  1.20        pk  * On this architecture, the virtual-to-physical translation (page) tables
    111  1.20        pk  * are *not* stored within the MMU as they are in the earlier Sun architect-
    112  1.20        pk  * ures; instead, they are maintained entirely within physical memory (there
    113  1.20        pk  * is a TLB cache to prevent the high performance hit from keeping all page
    114  1.20        pk  * tables in core). Thus there is no need to dynamically allocate PMEGs or
    115  1.20        pk  * SMEGs; only contexts must be shared.
    116  1.20        pk  *
    117  1.20        pk  * We maintain two parallel sets of tables: one is the actual MMU-edible
    118  1.20        pk  * hierarchy of page tables in allocated kernel memory; these tables refer
    119  1.20        pk  * to each other by physical address pointers in SRMMU format (thus they
    120  1.20        pk  * are not very useful to the kernel's management routines). The other set
    121  1.20        pk  * of tables is similar to those used for the Sun4/100's 3-level MMU; it
    122  1.20        pk  * is a hierarchy of regmap and segmap structures which contain kernel virtual
    123  1.20        pk  * pointers to each other. These must (unfortunately) be kept in sync.
    124  1.20        pk  *
    125   1.1   deraadt  */
    126  1.15        pk #define NKREG	((int)((-(unsigned)KERNBASE) / NBPRG))	/* i.e., 8 */
    127  1.15        pk #define NUREG	(256 - NKREG)				/* i.e., 248 */
    128  1.15        pk 
    129  1.15        pk TAILQ_HEAD(mmuhd,mmuentry);
    130   1.1   deraadt 
    131  1.20        pk /*
    132  1.20        pk  * data appearing in both user and kernel pmaps
    133  1.20        pk  *
    134  1.20        pk  * note: if we want the same binaries to work on the 4/4c and 4m, we have to
    135  1.20        pk  *       include the fields for both to make sure that the struct kproc
    136  1.20        pk  * 	 is the same size.
    137  1.20        pk  */
    138   1.5        pk struct pmap {
    139   1.5        pk 	union	ctxinfo *pm_ctx;	/* current context, if any */
    140   1.5        pk 	int	pm_ctxnum;		/* current context's number */
    141  1.56       chs 	struct simplelock pm_lock;	/* spinlock */
    142   1.5        pk 	int	pm_refcount;		/* just what it says */
    143  1.15        pk 
    144  1.20        pk 	struct mmuhd	pm_reglist;	/* MMU regions on this pmap (4/4c) */
    145  1.20        pk 	struct mmuhd	pm_seglist;	/* MMU segments on this pmap (4/4c) */
    146  1.20        pk 
    147  1.15        pk 	struct regmap	*pm_regmap;
    148  1.20        pk 
    149  1.42        pk 	int		**pm_reg_ptps;	/* SRMMU-edible region tables for 4m */
    150  1.42        pk 	int		*pm_reg_ptps_pa;/* _Physical_ address of pm_reg_ptps */
    151  1.20        pk 
    152  1.15        pk 	int		pm_gap_start;	/* Starting with this vreg there's */
    153  1.15        pk 	int		pm_gap_end;	/* no valid mapping until here */
    154  1.15        pk 
    155   1.6   deraadt 	struct pmap_statistics	pm_stats;	/* pmap statistics */
    156   1.1   deraadt };
    157   1.1   deraadt 
    158  1.15        pk struct regmap {
    159  1.15        pk 	struct segmap	*rg_segmap;	/* point to NSGPRG PMEGs */
    160  1.20        pk 	int		*rg_seg_ptps; 	/* SRMMU-edible segment tables (NULL
    161  1.20        pk 					 * indicates invalid region (4m) */
    162  1.20        pk 	smeg_t		rg_smeg;	/* the MMU region number (4c) */
    163  1.15        pk 	u_char		rg_nsegmap;	/* number of valid PMEGS */
    164   1.1   deraadt };
    165   1.1   deraadt 
    166  1.15        pk struct segmap {
    167  1.15        pk 	int	*sg_pte;		/* points to NPTESG PTEs */
    168  1.20        pk 	pmeg_t	sg_pmeg;		/* the MMU segment number (4c) */
    169  1.15        pk 	u_char	sg_npte;		/* number of valid PTEs per seg */
    170   1.1   deraadt };
    171   1.1   deraadt 
    172   1.3        pk typedef struct pmap *pmap_t;
    173   1.3        pk 
    174  1.20        pk #if 0
    175  1.20        pk struct kvm_cpustate {
    176  1.20        pk 	int		kvm_npmemarr;
    177  1.20        pk 	struct memarr	kvm_pmemarr[MA_SIZE];
    178  1.20        pk 	int		kvm_seginval;			/* [4,4c] */
    179  1.20        pk 	struct segmap	kvm_segmap_store[NKREG*NSEGRG];	/* [4,4c] */
    180  1.20        pk }/*not yet used*/;
    181  1.20        pk #endif
    182  1.20        pk 
    183  1.13       jtc #ifdef _KERNEL
    184   1.1   deraadt 
    185   1.1   deraadt #define PMAP_NULL	((pmap_t)0)
    186   1.1   deraadt 
    187   1.5        pk extern struct pmap	kernel_pmap_store;
    188  1.49        pk 
    189  1.49        pk /*
    190  1.49        pk  * Bounds on managed physical addresses. Used by (MD) users
    191  1.49        pk  * of uvm_pglistalloc() to provide search hints.
    192  1.49        pk  */
    193  1.49        pk extern paddr_t		vm_first_phys, vm_last_phys;
    194  1.49        pk extern psize_t		vm_num_phys;
    195   1.1   deraadt 
    196   1.1   deraadt /*
    197   1.1   deraadt  * Since PTEs also contain type bits, we have to have some way
    198   1.1   deraadt  * to tell pmap_enter `this is an IO page' or `this is not to
    199   1.1   deraadt  * be cached'.  Since physical addresses are always aligned, we
    200   1.1   deraadt  * can do this with the low order bits.
    201   1.1   deraadt  *
    202   1.1   deraadt  * The ordering below is important: PMAP_PGTYPE << PG_TNC must give
    203   1.1   deraadt  * exactly the PG_NC and PG_TYPE bits.
    204   1.1   deraadt  */
    205   1.1   deraadt #define	PMAP_OBIO	1		/* tells pmap_enter to use PG_OBIO */
    206   1.1   deraadt #define	PMAP_VME16	2		/* etc */
    207   1.1   deraadt #define	PMAP_VME32	3		/* etc */
    208   1.1   deraadt #define	PMAP_NC		4		/* tells pmap_enter to set PG_NC */
    209  1.26        pk #define	PMAP_TNC_4	7		/* mask to get PG_TYPE & PG_NC */
    210  1.26        pk 
    211  1.34        pk #define	PMAP_T2PTE_4(x)		(((x) & PMAP_TNC_4) << PG_TNC_SHIFT)
    212  1.34        pk #define	PMAP_IOENC_4(io)	(io)
    213  1.26        pk 
    214  1.26        pk /*
    215  1.26        pk  * On a SRMMU machine, the iospace is encoded in bits [3-6] of the
    216  1.26        pk  * physical address passed to pmap_enter().
    217  1.26        pk  */
    218  1.26        pk #define PMAP_TYPE_SRMMU		0x78	/* mask to get 4m page type */
    219  1.26        pk #define PMAP_PTESHFT_SRMMU	25	/* right shift to put type in pte */
    220  1.26        pk #define PMAP_SHFT_SRMMU		3	/* left shift to extract iospace */
    221  1.26        pk #define	PMAP_TNC_SRMMU		127	/* mask to get PG_TYPE & PG_NC */
    222   1.1   deraadt 
    223  1.20        pk /*#define PMAP_IOC      0x00800000      -* IO cacheable, NOT shifted */
    224  1.20        pk 
    225  1.26        pk #define PMAP_T2PTE_SRMMU(x)	(((x) & PMAP_TYPE_SRMMU) << PMAP_PTESHFT_SRMMU)
    226  1.26        pk #define PMAP_IOENC_SRMMU(io)	((io) << PMAP_SHFT_SRMMU)
    227  1.26        pk 
    228  1.26        pk /* Encode IO space for pmap_enter() */
    229  1.26        pk #define PMAP_IOENC(io)	(CPU_ISSUN4M ? PMAP_IOENC_SRMMU(io) : PMAP_IOENC_4(io))
    230  1.20        pk 
    231  1.20        pk int             pmap_dumpsize __P((void));
    232  1.20        pk int             pmap_dumpmmu __P((int (*)__P((dev_t, daddr_t, caddr_t, size_t)),
    233  1.20        pk                                  daddr_t));
    234   1.7   deraadt 
    235  1.14   mycroft #define	pmap_kernel()	(&kernel_pmap_store)
    236   1.7   deraadt #define	pmap_resident_count(pmap)	pmap_count_ptes(pmap)
    237   1.9        pk 
    238  1.18       gwr #define PMAP_PREFER(fo, ap)		pmap_prefer((fo), (ap))
    239  1.19  christos 
    240  1.20        pk #define PMAP_EXCLUDE_DECLS	/* tells MI pmap.h *not* to include decls */
    241  1.20        pk 
    242  1.20        pk /* FUNCTION DECLARATIONS FOR COMMON PMAP MODULE */
    243  1.20        pk 
    244  1.31   thorpej struct proc;
    245  1.31   thorpej void		pmap_activate __P((struct proc *));
    246  1.31   thorpej void		pmap_deactivate __P((struct proc *));
    247  1.20        pk void		pmap_bootstrap __P((int nmmu, int nctx, int nregion));
    248  1.20        pk int		pmap_count_ptes __P((struct pmap *));
    249  1.34        pk void		pmap_prefer __P((vaddr_t, vaddr_t *));
    250  1.34        pk int		pmap_pa_exists __P((paddr_t));
    251  1.38   thorpej void		pmap_unwire __P((pmap_t, vaddr_t));
    252  1.34        pk void		pmap_collect __P((pmap_t));
    253  1.34        pk void		pmap_copy __P((pmap_t, pmap_t, vaddr_t, vsize_t, vaddr_t));
    254  1.41       chs pmap_t		pmap_create __P((void));
    255  1.34        pk void		pmap_destroy __P((pmap_t));
    256  1.34        pk void		pmap_init __P((void));
    257  1.34        pk vaddr_t		pmap_map __P((vaddr_t, paddr_t, paddr_t, int));
    258  1.34        pk paddr_t		pmap_phys_address __P((int));
    259  1.34        pk void		pmap_reference __P((pmap_t));
    260  1.34        pk void		pmap_remove __P((pmap_t, vaddr_t, vaddr_t));
    261  1.53   thorpej #define		pmap_update()		/* nothing (yet) */
    262  1.34        pk void		pmap_virtual_space __P((vaddr_t *, vaddr_t *));
    263  1.20        pk void		pmap_redzone __P((void));
    264  1.20        pk void		kvm_uncache __P((caddr_t, int));
    265  1.19  christos struct user;
    266  1.39        pk int		mmu_pagein __P((struct pmap *pm, vaddr_t, int));
    267  1.30        pk void		pmap_writetext __P((unsigned char *, int));
    268  1.47        pk void		pmap_globalize_boot_cpuinfo __P((struct cpu_info *));
    269  1.30        pk 
    270  1.20        pk 
    271  1.20        pk /* SUN4/SUN4C SPECIFIC DECLARATIONS */
    272  1.20        pk 
    273  1.20        pk #if defined(SUN4) || defined(SUN4C)
    274  1.41       chs boolean_t	pmap_clear_modify4_4c __P((struct vm_page *));
    275  1.41       chs boolean_t	pmap_clear_reference4_4c __P((struct vm_page *));
    276  1.34        pk void		pmap_copy_page4_4c __P((paddr_t, paddr_t));
    277  1.43   thorpej int		pmap_enter4_4c __P((pmap_t, vaddr_t, paddr_t, vm_prot_t,
    278  1.43   thorpej 		    int));
    279  1.40   thorpej boolean_t	pmap_extract4_4c __P((pmap_t, vaddr_t, paddr_t *));
    280  1.41       chs boolean_t	pmap_is_modified4_4c __P((struct vm_page *));
    281  1.41       chs boolean_t	pmap_is_referenced4_4c __P((struct vm_page *));
    282  1.41       chs void		pmap_kenter_pa4_4c __P((vaddr_t, paddr_t, vm_prot_t));
    283  1.41       chs void		pmap_kremove4_4c __P((vaddr_t, vsize_t));
    284  1.41       chs void		pmap_page_protect4_4c __P((struct vm_page *, vm_prot_t));
    285  1.34        pk void		pmap_protect4_4c __P((pmap_t, vaddr_t, vaddr_t, vm_prot_t));
    286  1.34        pk void		pmap_zero_page4_4c __P((paddr_t));
    287  1.34        pk void		pmap_changeprot4_4c __P((pmap_t, vaddr_t, vm_prot_t, int));
    288  1.20        pk 
    289  1.20        pk #endif
    290  1.20        pk 
    291  1.20        pk /* SIMILAR DECLARATIONS FOR SUN4M MODULE */
    292  1.20        pk 
    293  1.20        pk #if defined(SUN4M)
    294  1.41       chs boolean_t	pmap_clear_modify4m __P((struct vm_page *));
    295  1.41       chs boolean_t	pmap_clear_reference4m __P((struct vm_page *));
    296  1.34        pk void		pmap_copy_page4m __P((paddr_t, paddr_t));
    297  1.45        pk void		pmap_copy_page_viking_mxcc(paddr_t, paddr_t);
    298  1.46        pk void		pmap_copy_page_hypersparc(paddr_t, paddr_t);
    299  1.43   thorpej int		pmap_enter4m __P((pmap_t, vaddr_t, paddr_t, vm_prot_t,
    300  1.43   thorpej 		    int));
    301  1.40   thorpej boolean_t	pmap_extract4m __P((pmap_t, vaddr_t, paddr_t *));
    302  1.41       chs boolean_t	pmap_is_modified4m __P((struct vm_page *));
    303  1.41       chs boolean_t	pmap_is_referenced4m __P((struct vm_page *));
    304  1.41       chs void		pmap_kenter_pa4m __P((vaddr_t, paddr_t, vm_prot_t));
    305  1.41       chs void		pmap_kremove4m __P((vaddr_t, vsize_t));
    306  1.41       chs void		pmap_page_protect4m __P((struct vm_page *, vm_prot_t));
    307  1.34        pk void		pmap_protect4m __P((pmap_t, vaddr_t, vaddr_t, vm_prot_t));
    308  1.34        pk void		pmap_zero_page4m __P((paddr_t));
    309  1.45        pk void		pmap_zero_page_viking_mxcc(paddr_t);
    310  1.46        pk void		pmap_zero_page_hypersparc(paddr_t);
    311  1.34        pk void		pmap_changeprot4m __P((pmap_t, vaddr_t, vm_prot_t, int));
    312  1.20        pk 
    313  1.20        pk #endif /* defined SUN4M */
    314  1.20        pk 
    315  1.20        pk #if !defined(SUN4M) && (defined(SUN4) || defined(SUN4C))
    316  1.20        pk 
    317  1.34        pk #define		pmap_clear_modify	pmap_clear_modify4_4c
    318  1.20        pk #define		pmap_clear_reference	pmap_clear_reference4_4c
    319  1.20        pk #define		pmap_enter		pmap_enter4_4c
    320  1.20        pk #define		pmap_extract		pmap_extract4_4c
    321  1.20        pk #define		pmap_is_modified	pmap_is_modified4_4c
    322  1.20        pk #define		pmap_is_referenced	pmap_is_referenced4_4c
    323  1.41       chs #define		pmap_kenter_pa		pmap_kenter_pa4_4c
    324  1.41       chs #define		pmap_kremove		pmap_kremove4_4c
    325  1.20        pk #define		pmap_page_protect	pmap_page_protect4_4c
    326  1.20        pk #define		pmap_protect		pmap_protect4_4c
    327  1.20        pk #define		pmap_changeprot		pmap_changeprot4_4c
    328  1.20        pk 
    329  1.20        pk #elif defined(SUN4M) && !(defined(SUN4) || defined(SUN4C))
    330  1.20        pk 
    331  1.34        pk #define		pmap_clear_modify	pmap_clear_modify4m
    332  1.20        pk #define		pmap_clear_reference	pmap_clear_reference4m
    333  1.20        pk #define		pmap_enter		pmap_enter4m
    334  1.20        pk #define		pmap_extract		pmap_extract4m
    335  1.20        pk #define		pmap_is_modified	pmap_is_modified4m
    336  1.20        pk #define		pmap_is_referenced	pmap_is_referenced4m
    337  1.41       chs #define		pmap_kenter_pa		pmap_kenter_pa4m
    338  1.41       chs #define		pmap_kremove		pmap_kremove4m
    339  1.20        pk #define		pmap_page_protect	pmap_page_protect4m
    340  1.20        pk #define		pmap_protect		pmap_protect4m
    341  1.20        pk #define		pmap_changeprot		pmap_changeprot4m
    342  1.20        pk 
    343  1.20        pk #else  /* must use function pointers */
    344  1.20        pk 
    345  1.41       chs extern boolean_t(*pmap_clear_modify_p) __P((struct vm_page *));
    346  1.41       chs extern boolean_t(*pmap_clear_reference_p) __P((struct vm_page *));
    347  1.43   thorpej extern int	(*pmap_enter_p) __P((pmap_t, vaddr_t, paddr_t, vm_prot_t,
    348  1.43   thorpej 		    int));
    349  1.40   thorpej extern boolean_t (*pmap_extract_p) __P((pmap_t, vaddr_t, paddr_t *));
    350  1.41       chs extern boolean_t(*pmap_is_modified_p) __P((struct vm_page *));
    351  1.41       chs extern boolean_t(*pmap_is_referenced_p) __P((struct vm_page *));
    352  1.41       chs extern void	(*pmap_kenter_pa_p) __P((vaddr_t, paddr_t, vm_prot_t));
    353  1.41       chs extern void	(*pmap_kremove_p) __P((vaddr_t, vsize_t));
    354  1.41       chs extern void	(*pmap_page_protect_p) __P((struct vm_page *, vm_prot_t));
    355  1.34        pk extern void	(*pmap_protect_p) __P((pmap_t, vaddr_t, vaddr_t, vm_prot_t));
    356  1.34        pk extern void	(*pmap_changeprot_p) __P((pmap_t, vaddr_t, vm_prot_t, int));
    357  1.20        pk 
    358  1.34        pk #define		pmap_clear_modify	(*pmap_clear_modify_p)
    359  1.20        pk #define		pmap_clear_reference	(*pmap_clear_reference_p)
    360  1.20        pk #define		pmap_enter		(*pmap_enter_p)
    361  1.20        pk #define		pmap_extract		(*pmap_extract_p)
    362  1.20        pk #define		pmap_is_modified	(*pmap_is_modified_p)
    363  1.20        pk #define		pmap_is_referenced	(*pmap_is_referenced_p)
    364  1.41       chs #define		pmap_kenter_pa		(*pmap_kenter_pa_p)
    365  1.41       chs #define		pmap_kremove		(*pmap_kremove_p)
    366  1.20        pk #define		pmap_page_protect	(*pmap_page_protect_p)
    367  1.20        pk #define		pmap_protect		(*pmap_protect_p)
    368  1.20        pk #define		pmap_changeprot		(*pmap_changeprot_p)
    369  1.20        pk 
    370  1.20        pk #endif
    371  1.45        pk 
    372  1.45        pk /* pmap_{zero,copy}_page() may be assisted by specialized hardware */
    373  1.45        pk #define		pmap_zero_page		(*cpuinfo.zero_page)
    374  1.45        pk #define		pmap_copy_page		(*cpuinfo.copy_page)
    375  1.57       mrg 
    376  1.57       mrg #if defined(SUN4M)
    377  1.57       mrg /*
    378  1.57       mrg  * Macros which implement SRMMU TLB flushing/invalidation
    379  1.57       mrg  */
    380  1.57       mrg #define tlb_flush_page_real(va)    \
    381  1.57       mrg 	sta(((vaddr_t)(va) & ~0xfff) | ASI_SRMMUFP_L3, ASI_SRMMUFP, 0)
    382  1.57       mrg 
    383  1.57       mrg #define tlb_flush_segment_real(vr, vs) \
    384  1.57       mrg 	sta(((vr)<<RGSHIFT) | ((vs)<<SGSHIFT) | ASI_SRMMUFP_L2, ASI_SRMMUFP,0)
    385  1.57       mrg 
    386  1.57       mrg #define tlb_flush_region_real(vr) \
    387  1.57       mrg 	sta(((vr) << RGSHIFT) | ASI_SRMMUFP_L1, ASI_SRMMUFP, 0)
    388  1.57       mrg 
    389  1.57       mrg #define tlb_flush_context_real()	sta(ASI_SRMMUFP_L0, ASI_SRMMUFP, 0)
    390  1.57       mrg #define tlb_flush_all_real()		sta(ASI_SRMMUFP_LN, ASI_SRMMUFP, 0)
    391  1.57       mrg 
    392  1.57       mrg #endif /* SUN4M */
    393   1.7   deraadt 
    394  1.13       jtc #endif /* _KERNEL */
    395   1.1   deraadt 
    396   1.1   deraadt #endif /* _SPARC_PMAP_H_ */
    397