Home | History | Annotate | Line # | Download | only in arm32
pmap.h revision 1.33
      1  1.33   thorpej /*	$NetBSD: pmap.h,v 1.33 2002/03/23 02:22:57 thorpej Exp $	*/
      2   1.1   reinoud 
      3   1.1   reinoud /*
      4   1.1   reinoud  * Copyright (c) 1994,1995 Mark Brinicombe.
      5   1.1   reinoud  * All rights reserved.
      6   1.1   reinoud  *
      7   1.1   reinoud  * Redistribution and use in source and binary forms, with or without
      8   1.1   reinoud  * modification, are permitted provided that the following conditions
      9   1.1   reinoud  * are met:
     10   1.1   reinoud  * 1. Redistributions of source code must retain the above copyright
     11   1.1   reinoud  *    notice, this list of conditions and the following disclaimer.
     12   1.1   reinoud  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1   reinoud  *    notice, this list of conditions and the following disclaimer in the
     14   1.1   reinoud  *    documentation and/or other materials provided with the distribution.
     15   1.1   reinoud  * 3. All advertising materials mentioning features or use of this software
     16   1.1   reinoud  *    must display the following acknowledgement:
     17   1.1   reinoud  *	This product includes software developed by Mark Brinicombe
     18   1.1   reinoud  * 4. The name of the author may not be used to endorse or promote products
     19   1.1   reinoud  *    derived from this software without specific prior written permission.
     20   1.1   reinoud  *
     21   1.1   reinoud  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     22   1.1   reinoud  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     23   1.1   reinoud  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     24   1.1   reinoud  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     25   1.1   reinoud  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     26   1.1   reinoud  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     27   1.1   reinoud  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     28   1.1   reinoud  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     29   1.1   reinoud  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     30   1.1   reinoud  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     31   1.1   reinoud  */
     32   1.1   reinoud 
     33   1.1   reinoud #ifndef	_ARM32_PMAP_H_
     34   1.1   reinoud #define	_ARM32_PMAP_H_
     35   1.1   reinoud 
     36  1.18   thorpej #ifdef _KERNEL
     37  1.18   thorpej 
     38  1.19   thorpej #include <arm/cpufunc.h>
     39  1.18   thorpej #include <arm/arm32/pte.h>
     40  1.12     chris #include <uvm/uvm_object.h>
     41   1.1   reinoud 
     42   1.1   reinoud /*
     43  1.11     chris  * a pmap describes a processes' 4GB virtual address space.  this
     44  1.11     chris  * virtual address space can be broken up into 4096 1MB regions which
     45  1.11     chris  * are described by PDEs in the PDP.  the PDEs are defined as follows:
     46  1.11     chris  *
     47  1.11     chris  * (ranges are inclusive -> exclusive, just like vm_map_entry start/end)
     48  1.11     chris  * (the following assumes that KERNBASE is 0xf0000000)
     49  1.11     chris  *
     50  1.11     chris  * PDE#s	VA range		usage
     51  1.11     chris  * 0->3835	0x0 -> 0xefc00000	user address space
     52  1.11     chris  * 3836->3839	0xefc00000->		recursive mapping of PDP (used for
     53  1.11     chris  *			0xf0000000	linear mapping of PTPs)
     54  1.11     chris  * 3840->3851	0xf0000000->		kernel text address space (constant
     55  1.11     chris  *			0xf0c00000	across all pmap's/processes)
     56  1.11     chris  * 3852->3855	0xf0c00000->		"alternate" recursive PDP mapping
     57  1.11     chris  *			0xf1000000	(for other pmaps)
     58  1.11     chris  * 3856->4095	0xf1000000->		KVM and device mappings, constant
     59  1.11     chris  *			0x00000000	across all pmaps
     60  1.11     chris  *
     61  1.11     chris  * The maths works out that to then map each 1MB block into 4k pages requires
     62  1.11     chris  * 256 entries, of 4 bytes each, totaling 1k per 1MB.  However as we use 4k
     63  1.11     chris  * pages we allocate 4 PDE's at a time, allocating the same access permissions
     64  1.11     chris  * to them all.  This means we only need 1024 entries in the page table page
     65  1.11     chris  * table, IE we use 1 4k page to linearly map all the other page tables used.
     66  1.11     chris  */
     67  1.11     chris 
     68  1.11     chris /*
     69   1.1   reinoud  * Data structures used by pmap
     70   1.1   reinoud  */
     71   1.1   reinoud 
     72   1.1   reinoud /*
     73   1.1   reinoud  * Structure that describes a Level 1 page table and the flags
     74   1.1   reinoud  * associated with it.
     75   1.1   reinoud  */
     76   1.1   reinoud struct l1pt {
     77   1.1   reinoud 	SIMPLEQ_ENTRY(l1pt)	pt_queue;	/* Queue pointers */
     78   1.1   reinoud 	struct pglist		pt_plist;	/* Allocated page list */
     79   1.2      matt 	vaddr_t			pt_va;		/* Allocated virtual address */
     80   1.1   reinoud 	int	                pt_flags;	/* Flags */
     81   1.1   reinoud };
     82   1.1   reinoud #define	PTFLAG_STATIC		1		/* Statically allocated */
     83   1.1   reinoud #define PTFLAG_KPT		2		/* Kernel pt's are mapped */
     84   1.1   reinoud #define PTFLAG_CLEAN		4		/* L1 is clean */
     85   1.1   reinoud 
     86   1.1   reinoud /*
     87  1.29     chris  * we maintain a list of all non-kernel pmaps
     88  1.29     chris  */
     89  1.29     chris 
     90  1.29     chris LIST_HEAD(pmap_head, pmap); /* struct pmap_head: head of a pmap list */
     91  1.29     chris 
     92  1.29     chris /*
     93   1.1   reinoud  * The pmap structure itself.
     94   1.1   reinoud  */
     95   1.1   reinoud struct pmap {
     96  1.12     chris 	struct uvm_object	pm_obj;		/* uvm_object */
     97  1.12     chris #define	pm_lock	pm_obj.vmobjlock
     98  1.29     chris 	LIST_ENTRY(pmap)	pm_list;	/* list (lck by pm_list lock) */
     99   1.1   reinoud 	pd_entry_t		*pm_pdir;	/* KVA of page directory */
    100   1.1   reinoud 	struct l1pt		*pm_l1pt;	/* L1 descriptor */
    101  1.12     chris 	paddr_t                 pm_pptpt;	/* PA of pt's page table */
    102  1.12     chris 	vaddr_t                 pm_vptpt;	/* VA of pt's page table */
    103   1.1   reinoud 	struct pmap_statistics	pm_stats;	/* pmap statistics */
    104  1.29     chris 	struct vm_page *pm_ptphint;		/* pointer to a PTP in our pmap */
    105   1.1   reinoud };
    106   1.1   reinoud 
    107   1.1   reinoud typedef struct pmap *pmap_t;
    108   1.1   reinoud 
    109   1.1   reinoud /*
    110   1.1   reinoud  * Page hooks. I'll eliminate these sometime soon :-)
    111   1.1   reinoud  *
    112   1.1   reinoud  * For speed we store the both the virtual address and the page table
    113   1.1   reinoud  * entry address for each page hook.
    114   1.1   reinoud  */
    115   1.1   reinoud typedef struct {
    116  1.28   thorpej 	vaddr_t va;
    117  1.28   thorpej 	pt_entry_t *pte;
    118   1.1   reinoud } pagehook_t;
    119   1.1   reinoud 
    120   1.1   reinoud /*
    121   1.1   reinoud  * Physical / virtual address structure. In a number of places (particularly
    122   1.1   reinoud  * during bootstrapping) we need to keep track of the physical and virtual
    123   1.1   reinoud  * addresses of various pages
    124   1.1   reinoud  */
    125  1.28   thorpej typedef struct pv_addr {
    126  1.28   thorpej 	SLIST_ENTRY(pv_addr) pv_list;
    127   1.3      matt 	paddr_t pv_pa;
    128   1.2      matt 	vaddr_t pv_va;
    129   1.1   reinoud } pv_addr_t;
    130   1.1   reinoud 
    131   1.1   reinoud /*
    132  1.24   thorpej  * Determine various modes for PTEs (user vs. kernel, cacheable
    133  1.24   thorpej  * vs. non-cacheable).
    134  1.24   thorpej  */
    135  1.24   thorpej #define	PTE_KERNEL	0
    136  1.24   thorpej #define	PTE_USER	1
    137  1.24   thorpej #define	PTE_NOCACHE	0
    138  1.24   thorpej #define	PTE_CACHE	1
    139  1.24   thorpej 
    140  1.24   thorpej /*
    141   1.1   reinoud  * Commonly referenced structures
    142   1.1   reinoud  */
    143  1.11     chris extern struct pmap	kernel_pmap_store;
    144   1.4      matt extern int		pmap_debug_level; /* Only exists if PMAP_DEBUG */
    145   1.1   reinoud 
    146   1.1   reinoud /*
    147   1.1   reinoud  * Macros that we need to export
    148   1.1   reinoud  */
    149   1.1   reinoud #define pmap_kernel()			(&kernel_pmap_store)
    150   1.1   reinoud #define	pmap_resident_count(pmap)	((pmap)->pm_stats.resident_count)
    151   1.1   reinoud #define	pmap_wired_count(pmap)		((pmap)->pm_stats.wired_count)
    152  1.31   thorpej 
    153  1.31   thorpej #define	pmap_is_modified(pg)		(((pg)->mdpage.pvh_attrs & PT_M) != 0)
    154  1.31   thorpej #define	pmap_is_referenced(pg)		(((pg)->mdpage.pvh_attrs & PT_H) != 0)
    155   1.1   reinoud 
    156   1.1   reinoud #define pmap_phys_address(ppn)		(arm_page_to_byte((ppn)))
    157   1.1   reinoud 
    158   1.1   reinoud /*
    159   1.1   reinoud  * Functions that we need to export
    160   1.1   reinoud  */
    161   1.2      matt extern vaddr_t pmap_map __P((vaddr_t, vaddr_t, vaddr_t, int));
    162   1.4      matt extern void pmap_procwr __P((struct proc *, vaddr_t, int));
    163   1.1   reinoud #define	PMAP_NEED_PROCWR
    164  1.29     chris #define PMAP_GROWKERNEL		/* turn on pmap_growkernel interface */
    165   1.4      matt 
    166   1.4      matt /*
    167   1.4      matt  * Functions we use internally
    168   1.4      matt  */
    169  1.13     chris void pmap_bootstrap __P((pd_entry_t *, pv_addr_t));
    170  1.13     chris void pmap_debug	__P((int));
    171  1.13     chris int pmap_handled_emulation __P((struct pmap *, vaddr_t));
    172  1.13     chris int pmap_modified_emulation __P((struct pmap *, vaddr_t));
    173  1.13     chris void pmap_postinit __P((void));
    174  1.13     chris pt_entry_t *pmap_pte __P((struct pmap *, vaddr_t));
    175  1.24   thorpej 
    176  1.24   thorpej /* Bootstrapping routines. */
    177  1.24   thorpej void	pmap_map_section(vaddr_t, vaddr_t, paddr_t, int, int);
    178  1.25   thorpej void	pmap_map_entry(vaddr_t, vaddr_t, paddr_t, int, int);
    179  1.28   thorpej vsize_t	pmap_map_chunk(vaddr_t, vaddr_t, paddr_t, vsize_t, int, int);
    180  1.28   thorpej void	pmap_link_l2pt(vaddr_t, vaddr_t, pv_addr_t *);
    181  1.13     chris 
    182  1.13     chris /*
    183  1.13     chris  * Special page zero routine for use by the idle loop (no cache cleans).
    184  1.13     chris  */
    185  1.13     chris boolean_t	pmap_pageidlezero __P((paddr_t));
    186  1.13     chris #define PMAP_PAGEIDLEZERO(pa)	pmap_pageidlezero((pa))
    187   1.1   reinoud 
    188  1.29     chris /*
    189  1.29     chris  * The current top of kernel VM
    190  1.29     chris  */
    191  1.29     chris extern vaddr_t	pmap_curmaxkvaddr;
    192   1.1   reinoud 
    193   1.1   reinoud /*
    194   1.1   reinoud  * Useful macros and constants
    195   1.1   reinoud  */
    196   1.1   reinoud 
    197   1.1   reinoud /* Virtual address to page table entry */
    198   1.1   reinoud #define vtopte(va) \
    199  1.33   thorpej 	((pt_entry_t *)(PTE_BASE + \
    200   1.1   reinoud 	(arm_byte_to_page((unsigned int)(va)) << 2)))
    201   1.1   reinoud 
    202   1.1   reinoud /* Virtual address to physical address */
    203   1.1   reinoud #define vtophys(va) \
    204   1.1   reinoud 	((*vtopte(va) & PG_FRAME) | ((unsigned int)(va) & ~PG_FRAME))
    205   1.1   reinoud 
    206   1.1   reinoud /* L1 and L2 page table macros */
    207  1.29     chris #define pmap_pdei(v)	((v & PD_MASK) >> PDSHIFT)
    208  1.29     chris #define pmap_pde(m, v) (&((m)->pm_pdir[pmap_pdei(v)]))
    209   1.1   reinoud #define pmap_pte_pa(pte)	(*(pte) & PG_FRAME)
    210   1.1   reinoud #define pmap_pde_v(pde)		(*(pde) != 0)
    211  1.16  rearnsha #define pmap_pde_section(pde)	((*(pde) & L1_MASK) == L1_SECTION)
    212  1.16  rearnsha #define pmap_pde_page(pde)	((*(pde) & L1_MASK) == L1_PAGE)
    213  1.16  rearnsha #define pmap_pde_fpage(pde)	((*(pde) & L1_MASK) == L1_FPAGE)
    214  1.16  rearnsha 
    215   1.1   reinoud #define pmap_pte_v(pte)		(*(pte) != 0)
    216   1.1   reinoud 
    217   1.1   reinoud /* Size of the kernel part of the L1 page table */
    218   1.1   reinoud #define KERNEL_PD_SIZE	\
    219   1.1   reinoud 	(PD_SIZE - (KERNEL_SPACE_START >> PDSHIFT) * sizeof(pd_entry_t))
    220  1.20       chs 
    221  1.20       chs /*
    222  1.20       chs  * tell MI code that the cache is virtually-indexed *and* virtually-tagged.
    223  1.20       chs  */
    224  1.20       chs 
    225  1.20       chs #define PMAP_CACHE_VIVT
    226  1.18   thorpej 
    227  1.18   thorpej #endif /* _KERNEL */
    228   1.1   reinoud 
    229   1.1   reinoud #endif	/* _ARM32_PMAP_H_ */
    230