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pmap.h revision 1.55.6.6
      1 /*	$NetBSD: pmap.h,v 1.55.6.6 2017/08/28 17:51:56 skrll Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 1997 Charles D. Cranor and Washington University.
      5  * All rights reserved.
      6  *
      7  * Redistribution and use in source and binary forms, with or without
      8  * modification, are permitted provided that the following conditions
      9  * are met:
     10  * 1. Redistributions of source code must retain the above copyright
     11  *    notice, this list of conditions and the following disclaimer.
     12  * 2. Redistributions in binary form must reproduce the above copyright
     13  *    notice, this list of conditions and the following disclaimer in the
     14  *    documentation and/or other materials provided with the distribution.
     15  *
     16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     17  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     18  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     19  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     20  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     21  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     22  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     23  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     24  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     25  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     26  */
     27 
     28 /*
     29  * Copyright (c) 2001 Wasabi Systems, Inc.
     30  * All rights reserved.
     31  *
     32  * Written by Frank van der Linden for Wasabi Systems, Inc.
     33  *
     34  * Redistribution and use in source and binary forms, with or without
     35  * modification, are permitted provided that the following conditions
     36  * are met:
     37  * 1. Redistributions of source code must retain the above copyright
     38  *    notice, this list of conditions and the following disclaimer.
     39  * 2. Redistributions in binary form must reproduce the above copyright
     40  *    notice, this list of conditions and the following disclaimer in the
     41  *    documentation and/or other materials provided with the distribution.
     42  * 3. All advertising materials mentioning features or use of this software
     43  *    must display the following acknowledgement:
     44  *      This product includes software developed for the NetBSD Project by
     45  *      Wasabi Systems, Inc.
     46  * 4. The name of Wasabi Systems, Inc. may not be used to endorse
     47  *    or promote products derived from this software without specific prior
     48  *    written permission.
     49  *
     50  * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
     51  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     52  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     53  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL WASABI SYSTEMS, INC
     54  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     55  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     56  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     57  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     58  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     59  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     60  * POSSIBILITY OF SUCH DAMAGE.
     61  */
     62 
     63 /*
     64  * pmap.h: see pmap.c for the history of this pmap module.
     65  */
     66 
     67 #ifndef _X86_PMAP_H_
     68 #define	_X86_PMAP_H_
     69 
     70 /*
     71  * pl*_pi: index in the ptp page for a pde mapping a VA.
     72  * (pl*_i below is the index in the virtual array of all pdes per level)
     73  */
     74 #define pl1_pi(VA)	(((VA_SIGN_POS(VA)) & L1_MASK) >> L1_SHIFT)
     75 #define pl2_pi(VA)	(((VA_SIGN_POS(VA)) & L2_MASK) >> L2_SHIFT)
     76 #define pl3_pi(VA)	(((VA_SIGN_POS(VA)) & L3_MASK) >> L3_SHIFT)
     77 #define pl4_pi(VA)	(((VA_SIGN_POS(VA)) & L4_MASK) >> L4_SHIFT)
     78 
     79 /*
     80  * pl*_i: generate index into pde/pte arrays in virtual space
     81  *
     82  * pl_i(va, X) == plX_i(va) <= pl_i_roundup(va, X)
     83  */
     84 #define pl1_i(VA)	(((VA_SIGN_POS(VA)) & L1_FRAME) >> L1_SHIFT)
     85 #define pl2_i(VA)	(((VA_SIGN_POS(VA)) & L2_FRAME) >> L2_SHIFT)
     86 #define pl3_i(VA)	(((VA_SIGN_POS(VA)) & L3_FRAME) >> L3_SHIFT)
     87 #define pl4_i(VA)	(((VA_SIGN_POS(VA)) & L4_FRAME) >> L4_SHIFT)
     88 #define pl_i(va, lvl) \
     89         (((VA_SIGN_POS(va)) & ptp_masks[(lvl)-1]) >> ptp_shifts[(lvl)-1])
     90 
     91 #define	pl_i_roundup(va, lvl)	pl_i((va)+ ~ptp_masks[(lvl)-1], (lvl))
     92 
     93 /*
     94  * PTP macros:
     95  *   a PTP's index is the PD index of the PDE that points to it
     96  *   a PTP's offset is the byte-offset in the PTE space that this PTP is at
     97  *   a PTP's VA is the first VA mapped by that PTP
     98  */
     99 
    100 #define ptp_va2o(va, lvl)	(pl_i(va, (lvl)+1) * PAGE_SIZE)
    101 
    102 /* size of a PDP: usually one page, except for PAE */
    103 #ifdef PAE
    104 #define PDP_SIZE 4
    105 #else
    106 #define PDP_SIZE 1
    107 #endif
    108 
    109 
    110 #if defined(_KERNEL)
    111 #include <sys/kcpuset.h>
    112 #include <uvm/pmap/pmap_pvt.h>
    113 
    114 /*
    115  * pmap data structures: see pmap.c for details of locking.
    116  */
    117 
    118 /*
    119  * we maintain a list of all non-kernel pmaps
    120  */
    121 
    122 LIST_HEAD(pmap_head, pmap); /* struct pmap_head: head of a pmap list */
    123 
    124 /*
    125  * linked list of all non-kernel pmaps
    126  */
    127 extern struct pmap_head pmaps;
    128 extern kmutex_t pmaps_lock;    /* protects pmaps */
    129 
    130 /*
    131  * pool_cache(9) that PDPs are allocated from
    132  */
    133 extern struct pool_cache pmap_pdp_cache;
    134 
    135 /*
    136  * the pmap structure
    137  *
    138  * note that the pm_obj contains the lock pointer, the reference count,
    139  * page list, and number of PTPs within the pmap.
    140  *
    141  * pm_lock is the same as the lock for vm object 0.  Changes to
    142  * the other objects may only be made if that lock has been taken
    143  * (the other object locks are only used when uvm_pagealloc is called)
    144  */
    145 
    146 struct pmap {
    147 	struct uvm_object pm_obj[PTP_LEVELS-1]; /* objects for lvl >= 1) */
    148 #define	pm_lock	pm_obj[0].vmobjlock
    149 	kmutex_t pm_obj_lock[PTP_LEVELS-1];	/* locks for pm_objs */
    150 	LIST_ENTRY(pmap) pm_list;	/* list (lck by pm_list lock) */
    151 	pd_entry_t *pm_pdir;		/* VA of PD (lck by object lock) */
    152 	paddr_t pm_pdirpa[PDP_SIZE];	/* PA of PDs (read-only after create) */
    153 	struct vm_page *pm_ptphint[PTP_LEVELS-1];
    154 					/* pointer to a PTP in our pmap */
    155 	struct pmap_statistics pm_stats;  /* pmap stats (lck by object lock) */
    156 
    157 #if !defined(__x86_64__)
    158 	vaddr_t pm_hiexec;		/* highest executable mapping */
    159 #endif /* !defined(__x86_64__) */
    160 	int pm_flags;			/* see below */
    161 
    162 	union descriptor *pm_ldt;	/* user-set LDT */
    163 	size_t pm_ldt_len;		/* size of LDT in bytes */
    164 	int pm_ldt_sel;			/* LDT selector */
    165 	kcpuset_t *pm_cpus;		/* mask of CPUs using pmap */
    166 	kcpuset_t *pm_kernel_cpus;	/* mask of CPUs using kernel part
    167 					 of pmap */
    168 	kcpuset_t *pm_xen_ptp_cpus;	/* mask of CPUs which have this pmap's
    169 					 ptp mapped */
    170 	uint64_t pm_ncsw;		/* for assertions */
    171 	struct vm_page *pm_gc_ptp;	/* pages from pmap g/c */
    172 };
    173 
    174 /* macro to access pm_pdirpa slots */
    175 #ifdef PAE
    176 #define pmap_pdirpa(pmap, index) \
    177 	((pmap)->pm_pdirpa[l2tol3(index)] + l2tol2(index) * sizeof(pd_entry_t))
    178 #else
    179 #define pmap_pdirpa(pmap, index) \
    180 	((pmap)->pm_pdirpa[0] + (index) * sizeof(pd_entry_t))
    181 #endif
    182 
    183 /*
    184  * MD flags that we use for pmap_enter and pmap_kenter_pa:
    185  */
    186 
    187 /*
    188  * global kernel variables
    189  */
    190 
    191 /*
    192  * PDPpaddr is the physical address of the kernel's PDP.
    193  * - i386 non-PAE and amd64: PDPpaddr corresponds directly to the %cr3
    194  * value associated to the kernel process, proc0.
    195  * - i386 PAE: it still represents the PA of the kernel's PDP (L2). Due to
    196  * the L3 PD, it cannot be considered as the equivalent of a %cr3 any more.
    197  * - Xen: it corresponds to the PFN of the kernel's PDP.
    198  */
    199 extern u_long PDPpaddr;
    200 
    201 extern pd_entry_t pmap_pg_g;			/* do we support PG_G? */
    202 extern pd_entry_t pmap_pg_nx;			/* do we support PG_NX? */
    203 extern long nkptp[PTP_LEVELS];
    204 
    205 /*
    206  * macros
    207  */
    208 
    209 #define	pmap_resident_count(pmap)	((pmap)->pm_stats.resident_count)
    210 #define	pmap_wired_count(pmap)		((pmap)->pm_stats.wired_count)
    211 
    212 #define pmap_clear_modify(pg)		pmap_clear_attrs(pg, PG_M)
    213 #define pmap_clear_reference(pg)	pmap_clear_attrs(pg, PG_U)
    214 #define pmap_copy(DP,SP,D,L,S)		__USE(L)
    215 #define pmap_is_modified(pg)		pmap_test_attrs(pg, PG_M)
    216 #define pmap_is_referenced(pg)		pmap_test_attrs(pg, PG_U)
    217 #define pmap_move(DP,SP,D,L,S)
    218 #define pmap_phys_address(ppn)		(x86_ptob(ppn) & ~X86_MMAP_FLAG_MASK)
    219 #define pmap_mmap_flags(ppn)		x86_mmap_flags(ppn)
    220 #define pmap_valid_entry(E) 		((E) & PG_V) /* is PDE or PTE valid? */
    221 
    222 #if defined(__x86_64__) || defined(PAE)
    223 #define X86_MMAP_FLAG_SHIFT	(64 - PGSHIFT)
    224 #else
    225 #define X86_MMAP_FLAG_SHIFT	(32 - PGSHIFT)
    226 #endif
    227 
    228 #define X86_MMAP_FLAG_MASK	0xf
    229 #define X86_MMAP_FLAG_PREFETCH	0x1
    230 
    231 /*
    232  * prototypes
    233  */
    234 
    235 void		pmap_activate(struct lwp *);
    236 void		pmap_bootstrap(vaddr_t);
    237 bool		pmap_clear_attrs(struct vm_page *, unsigned);
    238 bool		pmap_pv_clear_attrs(paddr_t, unsigned);
    239 void		pmap_deactivate(struct lwp *);
    240 void		pmap_page_remove(struct vm_page *);
    241 void		pmap_pv_remove(paddr_t);
    242 void		pmap_remove(struct pmap *, vaddr_t, vaddr_t);
    243 bool		pmap_test_attrs(struct vm_page *, unsigned);
    244 void		pmap_write_protect(struct pmap *, vaddr_t, vaddr_t, vm_prot_t);
    245 void		pmap_load(void);
    246 paddr_t		pmap_init_tmp_pgtbl(paddr_t);
    247 void		pmap_remove_all(struct pmap *);
    248 void		pmap_ldt_cleanup(struct lwp *);
    249 void		pmap_ldt_sync(struct pmap *);
    250 void		pmap_kremove_local(vaddr_t, vsize_t);
    251 
    252 void		pmap_emap_enter(vaddr_t, paddr_t, vm_prot_t);
    253 void		pmap_emap_remove(vaddr_t, vsize_t);
    254 void		pmap_emap_sync(bool);
    255 
    256 #define	__HAVE_PMAP_PV_TRACK	1
    257 void		pmap_pv_init(void);
    258 void		pmap_pv_track(paddr_t, psize_t);
    259 void		pmap_pv_untrack(paddr_t, psize_t);
    260 
    261 void		pmap_map_ptes(struct pmap *, struct pmap **, pd_entry_t **,
    262 		    pd_entry_t * const **);
    263 void		pmap_unmap_ptes(struct pmap *, struct pmap *);
    264 
    265 int		pmap_pdes_invalid(vaddr_t, pd_entry_t * const *, pd_entry_t *);
    266 
    267 u_int		x86_mmap_flags(paddr_t);
    268 
    269 bool		pmap_is_curpmap(struct pmap *);
    270 
    271 #ifndef __HAVE_DIRECT_MAP
    272 void		pmap_vpage_cpu_init(struct cpu_info *);
    273 #endif
    274 
    275 vaddr_t reserve_dumppages(vaddr_t); /* XXX: not a pmap fn */
    276 
    277 typedef enum tlbwhy {
    278 	TLBSHOOT_APTE,
    279 	TLBSHOOT_KENTER,
    280 	TLBSHOOT_KREMOVE,
    281 	TLBSHOOT_FREE_PTP1,
    282 	TLBSHOOT_FREE_PTP2,
    283 	TLBSHOOT_REMOVE_PTE,
    284 	TLBSHOOT_REMOVE_PTES,
    285 	TLBSHOOT_SYNC_PV1,
    286 	TLBSHOOT_SYNC_PV2,
    287 	TLBSHOOT_WRITE_PROTECT,
    288 	TLBSHOOT_ENTER,
    289 	TLBSHOOT_UPDATE,
    290 	TLBSHOOT_BUS_DMA,
    291 	TLBSHOOT_BUS_SPACE,
    292 	TLBSHOOT__MAX,
    293 } tlbwhy_t;
    294 
    295 void		pmap_tlb_init(void);
    296 void		pmap_tlb_cpu_init(struct cpu_info *);
    297 void		pmap_tlb_shootdown(pmap_t, vaddr_t, pt_entry_t, tlbwhy_t);
    298 void		pmap_tlb_shootnow(void);
    299 void		pmap_tlb_intr(void);
    300 
    301 #define	__HAVE_PMAP_EMAP
    302 
    303 #define PMAP_GROWKERNEL		/* turn on pmap_growkernel interface */
    304 #define PMAP_FORK		/* turn on pmap_fork interface */
    305 
    306 /*
    307  * Do idle page zero'ing uncached to avoid polluting the cache.
    308  */
    309 bool	pmap_pageidlezero(paddr_t);
    310 #define	PMAP_PAGEIDLEZERO(pa)	pmap_pageidlezero((pa))
    311 
    312 /*
    313  * inline functions
    314  */
    315 
    316 __inline static bool __unused
    317 pmap_pdes_valid(vaddr_t va, pd_entry_t * const *pdes, pd_entry_t *lastpde)
    318 {
    319 	return pmap_pdes_invalid(va, pdes, lastpde) == 0;
    320 }
    321 
    322 /*
    323  * pmap_update_pg: flush one page from the TLB (or flush the whole thing
    324  *	if hardware doesn't support one-page flushing)
    325  */
    326 
    327 __inline static void __unused
    328 pmap_update_pg(vaddr_t va)
    329 {
    330 	invlpg(va);
    331 }
    332 
    333 /*
    334  * pmap_update_2pg: flush two pages from the TLB
    335  */
    336 
    337 __inline static void __unused
    338 pmap_update_2pg(vaddr_t va, vaddr_t vb)
    339 {
    340 	invlpg(va);
    341 	invlpg(vb);
    342 }
    343 
    344 /*
    345  * pmap_page_protect: change the protection of all recorded mappings
    346  *	of a managed page
    347  *
    348  * => this function is a frontend for pmap_page_remove/pmap_clear_attrs
    349  * => we only have to worry about making the page more protected.
    350  *	unprotecting a page is done on-demand at fault time.
    351  */
    352 
    353 __inline static void __unused
    354 pmap_page_protect(struct vm_page *pg, vm_prot_t prot)
    355 {
    356 	if ((prot & VM_PROT_WRITE) == 0) {
    357 		if (prot & (VM_PROT_READ|VM_PROT_EXECUTE)) {
    358 			(void) pmap_clear_attrs(pg, PG_RW);
    359 		} else {
    360 			pmap_page_remove(pg);
    361 		}
    362 	}
    363 }
    364 
    365 /*
    366  * pmap_pv_protect: change the protection of all recorded mappings
    367  *	of an unmanaged page
    368  */
    369 
    370 __inline static void __unused
    371 pmap_pv_protect(paddr_t pa, vm_prot_t prot)
    372 {
    373 	if ((prot & VM_PROT_WRITE) == 0) {
    374 		if (prot & (VM_PROT_READ|VM_PROT_EXECUTE)) {
    375 			(void) pmap_pv_clear_attrs(pa, PG_RW);
    376 		} else {
    377 			pmap_pv_remove(pa);
    378 		}
    379 	}
    380 }
    381 
    382 /*
    383  * pmap_protect: change the protection of pages in a pmap
    384  *
    385  * => this function is a frontend for pmap_remove/pmap_write_protect
    386  * => we only have to worry about making the page more protected.
    387  *	unprotecting a page is done on-demand at fault time.
    388  */
    389 
    390 __inline static void __unused
    391 pmap_protect(struct pmap *pmap, vaddr_t sva, vaddr_t eva, vm_prot_t prot)
    392 {
    393 	if ((prot & VM_PROT_WRITE) == 0) {
    394 		if (prot & (VM_PROT_READ|VM_PROT_EXECUTE)) {
    395 			pmap_write_protect(pmap, sva, eva, prot);
    396 		} else {
    397 			pmap_remove(pmap, sva, eva);
    398 		}
    399 	}
    400 }
    401 
    402 /*
    403  * various address inlines
    404  *
    405  *  vtopte: return a pointer to the PTE mapping a VA, works only for
    406  *  user and PT addresses
    407  *
    408  *  kvtopte: return a pointer to the PTE mapping a kernel VA
    409  */
    410 
    411 #include <lib/libkern/libkern.h>
    412 
    413 static __inline pt_entry_t * __unused
    414 vtopte(vaddr_t va)
    415 {
    416 
    417 	KASSERT(va < VM_MIN_KERNEL_ADDRESS);
    418 
    419 	return (PTE_BASE + pl1_i(va));
    420 }
    421 
    422 static __inline pt_entry_t * __unused
    423 kvtopte(vaddr_t va)
    424 {
    425 	pd_entry_t *pde;
    426 
    427 	KASSERT(va >= VM_MIN_KERNEL_ADDRESS);
    428 
    429 	pde = L2_BASE + pl2_i(va);
    430 	if (*pde & PG_PS)
    431 		return ((pt_entry_t *)pde);
    432 
    433 	return (PTE_BASE + pl1_i(va));
    434 }
    435 
    436 paddr_t vtophys(vaddr_t);
    437 vaddr_t	pmap_map(vaddr_t, paddr_t, paddr_t, vm_prot_t);
    438 void	pmap_cpu_init_late(struct cpu_info *);
    439 bool	sse2_idlezero_page(void *);
    440 
    441 #ifdef XEN
    442 #include <sys/bitops.h>
    443 
    444 #define XPTE_MASK	L1_FRAME
    445 /* Selects the index of a PTE in (A)PTE_BASE */
    446 #define XPTE_SHIFT	(L1_SHIFT - ilog2(sizeof(pt_entry_t)))
    447 
    448 /* PTE access inline fuctions */
    449 
    450 /*
    451  * Get the machine address of the pointed pte
    452  * We use hardware MMU to get value so works only for levels 1-3
    453  */
    454 
    455 static __inline paddr_t
    456 xpmap_ptetomach(pt_entry_t *pte)
    457 {
    458 	pt_entry_t *up_pte;
    459 	vaddr_t va = (vaddr_t) pte;
    460 
    461 	va = ((va & XPTE_MASK) >> XPTE_SHIFT) | (vaddr_t) PTE_BASE;
    462 	up_pte = (pt_entry_t *) va;
    463 
    464 	return (paddr_t) (((*up_pte) & PG_FRAME) + (((vaddr_t) pte) & (~PG_FRAME & ~VA_SIGN_MASK)));
    465 }
    466 
    467 /* Xen helpers to change bits of a pte */
    468 #define XPMAP_UPDATE_DIRECT	1	/* Update direct map entry flags too */
    469 
    470 paddr_t	vtomach(vaddr_t);
    471 #define vtomfn(va) (vtomach(va) >> PAGE_SHIFT)
    472 #endif	/* XEN */
    473 
    474 /* pmap functions with machine addresses */
    475 void	pmap_kenter_ma(vaddr_t, paddr_t, vm_prot_t, u_int);
    476 int	pmap_enter_ma(struct pmap *, vaddr_t, paddr_t, paddr_t,
    477 	    vm_prot_t, u_int, int);
    478 bool	pmap_extract_ma(pmap_t, vaddr_t, paddr_t *);
    479 void	pmap_free_ptps(struct vm_page *);
    480 
    481 /*
    482  * Hooks for the pool allocator.
    483  */
    484 #define	POOL_VTOPHYS(va)	vtophys((vaddr_t) (va))
    485 
    486 #ifdef __HAVE_DIRECT_MAP
    487 
    488 #define L4_SLOT_DIRECT		456
    489 #define PDIR_SLOT_DIRECT	L4_SLOT_DIRECT
    490 
    491 #define NL4_SLOT_DIRECT		32
    492 
    493 #define PMAP_DIRECT_BASE	(VA_SIGN_NEG((L4_SLOT_DIRECT * NBPD_L4)))
    494 #define PMAP_DIRECT_END		(PMAP_DIRECT_BASE + NL4_SLOT_DIRECT * NBPD_L4)
    495 
    496 #define PMAP_DIRECT_MAP(pa)	((vaddr_t)PMAP_DIRECT_BASE + (pa))
    497 #define PMAP_DIRECT_UNMAP(va)	((paddr_t)(va) - PMAP_DIRECT_BASE)
    498 
    499 /*
    500  * Alternate mapping hooks for pool pages.
    501  */
    502 #define PMAP_MAP_POOLPAGE(pa)	PMAP_DIRECT_MAP((pa))
    503 #define PMAP_UNMAP_POOLPAGE(va)	PMAP_DIRECT_UNMAP((va))
    504 
    505 void	pagezero(vaddr_t);
    506 
    507 #endif /* __HAVE_DIRECT_MAP */
    508 
    509 #endif /* _KERNEL */
    510 
    511 #endif /* _X86_PMAP_H_ */
    512