pmap.h revision 1.24 1 1.24 skrll /* $NetBSD: pmap.h,v 1.24 2010/02/22 21:32:55 skrll Exp $ */
2 1.1 fredette
3 1.18 skrll /* $OpenBSD: pmap.h,v 1.35 2007/12/14 18:32:23 deraadt Exp $ */
4 1.1 fredette
5 1.1 fredette /*
6 1.18 skrll * Copyright (c) 2002-2004 Michael Shalayeff
7 1.1 fredette * All rights reserved.
8 1.1 fredette *
9 1.1 fredette * Redistribution and use in source and binary forms, with or without
10 1.1 fredette * modification, are permitted provided that the following conditions
11 1.1 fredette * are met:
12 1.1 fredette * 1. Redistributions of source code must retain the above copyright
13 1.1 fredette * notice, this list of conditions and the following disclaimer.
14 1.1 fredette * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 fredette * notice, this list of conditions and the following disclaimer in the
16 1.1 fredette * documentation and/or other materials provided with the distribution.
17 1.1 fredette *
18 1.1 fredette * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 1.1 fredette * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.1 fredette * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.18 skrll * IN NO EVENT SHALL THE AUTHOR OR HIS RELATIVES BE LIABLE FOR ANY DIRECT,
22 1.18 skrll * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
23 1.18 skrll * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
24 1.18 skrll * SERVICES; LOSS OF MIND, USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25 1.18 skrll * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
26 1.18 skrll * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
27 1.18 skrll * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
28 1.18 skrll * THE POSSIBILITY OF SUCH DAMAGE.
29 1.1 fredette */
30 1.1 fredette
31 1.1 fredette /*
32 1.1 fredette * Pmap header for hppa.
33 1.1 fredette */
34 1.1 fredette
35 1.1 fredette #ifndef _HPPA_PMAP_H_
36 1.1 fredette #define _HPPA_PMAP_H_
37 1.1 fredette
38 1.18 skrll #include <sys/mutex.h>
39 1.1 fredette #include <machine/pte.h>
40 1.18 skrll #include <machine/cpufunc.h>
41 1.18 skrll
42 1.18 skrll #include <uvm/uvm_pglist.h>
43 1.18 skrll #include <uvm/uvm_object.h>
44 1.18 skrll
45 1.18 skrll #ifdef _KERNEL
46 1.1 fredette
47 1.1 fredette struct pmap {
48 1.18 skrll struct uvm_object pm_obj; /* object (lck by object lock) */
49 1.18 skrll #define pm_lock pm_obj.vmobjlock
50 1.18 skrll struct vm_page *pm_ptphint;
51 1.18 skrll struct vm_page *pm_pdir_pg; /* vm_page for pdir */
52 1.21 skrll volatile uint32_t *pm_pdir; /* page dir (read-only after create) */
53 1.18 skrll pa_space_t pm_space; /* space id (read-only after create) */
54 1.18 skrll u_int pm_pid; /* prot id (read-only after create) */
55 1.18 skrll
56 1.18 skrll struct pmap_statistics pm_stats;
57 1.18 skrll };
58 1.18 skrll
59 1.18 skrll /*
60 1.18 skrll * Flags that indicate attributes of pages or mappings of pages.
61 1.18 skrll *
62 1.18 skrll * We need two flags for cacheability because pages/mappings can be marked
63 1.18 skrll * uncacheable for two reasons,
64 1.18 skrll *
65 1.18 skrll * 1) A page's contents may change under our feet and can never be
66 1.18 skrll * cacheable, e.g. I/O space, DMA buffers.
67 1.18 skrll * 2) A page has non-equivalent aliases and must be (temporarily)
68 1.18 skrll * marked uncachable.
69 1.18 skrll *
70 1.18 skrll * A page that is marked PVF_NC can *never* be marked cacheable and will have
71 1.18 skrll * all mappings marked PVF_UNCACHEABLE. A page marked PVF_UNCACHEABLE only
72 1.18 skrll * is done so due to non-equivalent aliases this maybe removed is the non-
73 1.18 skrll * equivalent aliases are removed.
74 1.18 skrll *
75 1.18 skrll */
76 1.18 skrll
77 1.18 skrll #define PVF_NC 0x2000 /* pg is never cacheable */
78 1.18 skrll
79 1.18 skrll #define PVF_MOD PTE_PROT(TLB_DIRTY) /* pg/mp is modified */
80 1.18 skrll #define PVF_REF PTE_PROT(TLB_REFTRAP) /* pg/mp (inv) is referenced */
81 1.18 skrll #define PVF_WRITE PTE_PROT(TLB_WRITE) /* pg/mp is writable */
82 1.18 skrll #define PVF_UNCACHEABLE PTE_PROT(TLB_UNCACHEABLE)
83 1.18 skrll /* pg/mp is uncacheable */
84 1.18 skrll
85 1.18 skrll #define pmap_is_aliased(pg) \
86 1.18 skrll (((pg)->mdpage.pvh_attrs & PVF_NC) == 0 && \
87 1.18 skrll ((pg)->mdpage.pvh_attrs & PVF_UNCACHEABLE) != 0)
88 1.18 skrll
89 1.18 skrll #define HPPA_MAX_PID 0xfffa
90 1.18 skrll #define HPPA_SID_MAX 0x7ffd
91 1.19 skrll
92 1.19 skrll /*
93 1.19 skrll * DON'T CHANGE THIS - this is assumed in lots of places.
94 1.19 skrll */
95 1.18 skrll #define HPPA_SID_KERNEL 0
96 1.18 skrll #define HPPA_PID_KERNEL 2
97 1.18 skrll
98 1.18 skrll struct pv_entry { /* locked by its list's pvh_lock */
99 1.18 skrll struct pv_entry *pv_next;
100 1.18 skrll struct pmap *pv_pmap; /* the pmap */
101 1.18 skrll vaddr_t pv_va; /* the virtual address + flags */
102 1.18 skrll #define PV_VAMASK (~(PAGE_SIZE - 1))
103 1.18 skrll #define PV_KENTER 0x001
104 1.18 skrll
105 1.18 skrll struct vm_page *pv_ptp; /* the vm_page of the PTP */
106 1.17 pooka };
107 1.1 fredette
108 1.18 skrll extern int pmap_hptsize;
109 1.18 skrll extern struct pdc_hwtlb pdc_hwtlb;
110 1.18 skrll
111 1.18 skrll /*
112 1.18 skrll * pool quickmaps
113 1.18 skrll */
114 1.18 skrll static inline vaddr_t hppa_map_poolpage(paddr_t pa)
115 1.18 skrll {
116 1.18 skrll return (vaddr_t)pa;
117 1.18 skrll }
118 1.5 chs
119 1.18 skrll static inline paddr_t hppa_unmap_poolpage(vaddr_t va)
120 1.18 skrll {
121 1.18 skrll pdcache(HPPA_SID_KERNEL, va, PAGE_SIZE);
122 1.24 skrll #if defined(HP8000_CPU) || defined(HP8200_CPU) || \
123 1.24 skrll defined(HP8500_CPU) || defined(HP8600_CPU)
124 1.24 skrll pdtlb(HPPA_SID_KERNEL, va);
125 1.24 skrll ficache(HPPA_SID_KERNEL, va, PAGE_SIZE);
126 1.24 skrll pitlb(HPPA_SID_KERNEL, va);
127 1.24 skrll #endif
128 1.5 chs
129 1.18 skrll return (paddr_t)va;
130 1.18 skrll }
131 1.1 fredette
132 1.18 skrll #define PMAP_MAP_POOLPAGE(pa) hppa_map_poolpage(pa)
133 1.18 skrll #define PMAP_UNMAP_POOLPAGE(va) hppa_unmap_poolpage(va)
134 1.1 fredette
135 1.1 fredette /*
136 1.1 fredette * according to the parisc manual aliased va's should be
137 1.1 fredette * different by high 12 bits only.
138 1.1 fredette */
139 1.8 atatat #define PMAP_PREFER(o,h,s,td) do { \
140 1.1 fredette vaddr_t pmap_prefer_hint; \
141 1.1 fredette pmap_prefer_hint = (*(h) & HPPA_PGAMASK) | ((o) & HPPA_PGAOFF); \
142 1.1 fredette if (pmap_prefer_hint < *(h)) \
143 1.1 fredette pmap_prefer_hint += HPPA_PGALIAS; \
144 1.1 fredette *(h) = pmap_prefer_hint; \
145 1.1 fredette } while(0)
146 1.1 fredette
147 1.18 skrll #define pmap_sid2pid(s) (((s) + 1) << 1)
148 1.18 skrll #define pmap_resident_count(pmap) ((pmap)->pm_stats.resident_count)
149 1.18 skrll #define pmap_wired_count(pmap) ((pmap)->pm_stats.wired_count)
150 1.18 skrll #define pmap_update(p)
151 1.18 skrll
152 1.18 skrll #define pmap_copy(dpmap,spmap,da,len,sa)
153 1.18 skrll
154 1.18 skrll #define pmap_clear_modify(pg) pmap_changebit(pg, 0, PTE_PROT(TLB_DIRTY))
155 1.18 skrll #define pmap_clear_reference(pg) \
156 1.18 skrll pmap_changebit(pg, PTE_PROT(TLB_REFTRAP), 0)
157 1.18 skrll #define pmap_is_modified(pg) pmap_testbit(pg, PTE_PROT(TLB_DIRTY))
158 1.18 skrll #define pmap_is_referenced(pg) pmap_testbit(pg, PTE_PROT(TLB_REFTRAP))
159 1.18 skrll #define pmap_phys_address(ppn) ((ppn) << PAGE_SHIFT)
160 1.1 fredette
161 1.12 skrll void pmap_activate(struct lwp *);
162 1.6 chs
163 1.18 skrll void pmap_bootstrap(vaddr_t);
164 1.18 skrll bool pmap_changebit(struct vm_page *, u_int, u_int);
165 1.18 skrll bool pmap_testbit(struct vm_page *, u_int);
166 1.18 skrll void pmap_write_protect(struct pmap *, vaddr_t, vaddr_t, vm_prot_t);
167 1.18 skrll void pmap_remove(struct pmap *pmap, vaddr_t sva, vaddr_t eva);
168 1.18 skrll void pmap_page_remove(struct vm_page *pg);
169 1.18 skrll
170 1.18 skrll static inline void
171 1.12 skrll pmap_deactivate(struct lwp *l)
172 1.6 chs {
173 1.18 skrll /* Nothing. */
174 1.6 chs }
175 1.1 fredette
176 1.18 skrll static inline void
177 1.3 chs pmap_remove_all(struct pmap *pmap)
178 1.2 chs {
179 1.2 chs /* Nothing. */
180 1.2 chs }
181 1.1 fredette
182 1.18 skrll static inline int
183 1.18 skrll pmap_prot(struct pmap *pmap, int prot)
184 1.1 fredette {
185 1.18 skrll extern u_int hppa_prot[];
186 1.18 skrll return (hppa_prot[prot] | (pmap == pmap_kernel()? 0 : TLB_USER));
187 1.18 skrll }
188 1.5 chs
189 1.18 skrll static inline void
190 1.18 skrll pmap_page_protect(struct vm_page *pg, vm_prot_t prot)
191 1.18 skrll {
192 1.18 skrll if ((prot & UVM_PROT_WRITE) == 0) {
193 1.18 skrll if (prot & (UVM_PROT_RX))
194 1.18 skrll pmap_changebit(pg, 0, PTE_PROT(TLB_WRITE));
195 1.18 skrll else
196 1.18 skrll pmap_page_remove(pg);
197 1.18 skrll }
198 1.18 skrll }
199 1.18 skrll
200 1.18 skrll static inline void
201 1.18 skrll pmap_protect(struct pmap *pmap, vaddr_t sva, vaddr_t eva, vm_prot_t prot)
202 1.18 skrll {
203 1.18 skrll if ((prot & UVM_PROT_WRITE) == 0) {
204 1.18 skrll if (prot & (UVM_PROT_RX))
205 1.18 skrll pmap_write_protect(pmap, sva, eva, prot);
206 1.18 skrll else
207 1.18 skrll pmap_remove(pmap, sva, eva);
208 1.18 skrll }
209 1.1 fredette }
210 1.1 fredette
211 1.7 chs #define pmap_sid(pmap, va) \
212 1.7 chs ((((va) & 0xc0000000) != 0xc0000000) ? \
213 1.18 skrll (pmap)->pm_space : HPPA_SID_KERNEL)
214 1.7 chs
215 1.22 skrll /*
216 1.22 skrll * MD flags that we use for pmap_kenter_pa:
217 1.22 skrll */
218 1.23 skrll #define PMAP_NOCACHE 0x01000000 /* set the non-cacheable bit */
219 1.22 skrll
220 1.1 fredette #endif /* _KERNEL */
221 1.1 fredette
222 1.1 fredette #endif /* _HPPA_PMAP_H_ */
223