source: mainline/kernel/genarch/src/mm/page_pt.c@ eb1c0a3

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since eb1c0a3 was e32e092, checked in by Jiri Svoboda <jirik.svoboda@…>, 17 years ago

Declare arguments for memstr.h operations as pointers instead of uintptr_t.

  • Property mode set to 100644
File size: 7.9 KB
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[6d7ffa65]1/*
[df4ed85]2 * Copyright (c) 2006 Jakub Jermar
[6d7ffa65]3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
[f47fd19]29/** @addtogroup genarchmm
[b45c443]30 * @{
31 */
32
[0f27b4c]33/**
[b45c443]34 * @file
[0f27b4c]35 * @brief Virtual Address Translation for hierarchical 4-level page tables.
36 */
37
[6d7ffa65]38#include <genarch/mm/page_pt.h>
39#include <mm/page.h>
40#include <mm/frame.h>
[ef67bab]41#include <mm/as.h>
[6d7ffa65]42#include <arch/mm/page.h>
[fc1e4f6]43#include <arch/mm/as.h>
[6d7ffa65]44#include <arch/types.h>
45#include <arch/asm.h>
46#include <memstr.h>
47
[7f1c620]48static void pt_mapping_insert(as_t *as, uintptr_t page, uintptr_t frame, int flags);
49static void pt_mapping_remove(as_t *as, uintptr_t page);
50static pte_t *pt_mapping_find(as_t *as, uintptr_t page);
[6d7ffa65]51
[f5935ed]52page_mapping_operations_t pt_mapping_operations = {
[6d7ffa65]53 .mapping_insert = pt_mapping_insert,
[8f00329]54 .mapping_remove = pt_mapping_remove,
[6d7ffa65]55 .mapping_find = pt_mapping_find
56};
57
58/** Map page to frame using hierarchical page tables.
59 *
[9179d0a]60 * Map virtual address page to physical address frame
61 * using flags.
[6d7ffa65]62 *
[2299914]63 * The page table must be locked and interrupts must be disabled.
[ef67bab]64 *
65 * @param as Address space to wich page belongs.
[6d7ffa65]66 * @param page Virtual address of the page to be mapped.
67 * @param frame Physical address of memory frame to which the mapping is done.
68 * @param flags Flags to be used for mapping.
69 */
[7f1c620]70void pt_mapping_insert(as_t *as, uintptr_t page, uintptr_t frame, int flags)
[6d7ffa65]71{
72 pte_t *ptl0, *ptl1, *ptl2, *ptl3;
[2e9eae2]73 pte_t *newpt;
[6d7ffa65]74
[80bcaed]75 ptl0 = (pte_t *) PA2KA((uintptr_t) as->genarch.page_table);
[6d7ffa65]76
77 if (GET_PTL1_FLAGS(ptl0, PTL0_INDEX(page)) & PAGE_NOT_PRESENT) {
[6b781c0]78 newpt = (pte_t *)frame_alloc(PTL1_SIZE, FRAME_KA);
[e32e092]79 memsetb(newpt, FRAME_SIZE << PTL1_SIZE, 0);
[6d7ffa65]80 SET_PTL1_ADDRESS(ptl0, PTL0_INDEX(page), KA2PA(newpt));
81 SET_PTL1_FLAGS(ptl0, PTL0_INDEX(page), PAGE_PRESENT | PAGE_USER | PAGE_EXEC | PAGE_CACHEABLE | PAGE_WRITE);
82 }
83
84 ptl1 = (pte_t *) PA2KA(GET_PTL1_ADDRESS(ptl0, PTL0_INDEX(page)));
85
86 if (GET_PTL2_FLAGS(ptl1, PTL1_INDEX(page)) & PAGE_NOT_PRESENT) {
[6b781c0]87 newpt = (pte_t *)frame_alloc(PTL2_SIZE, FRAME_KA);
[e32e092]88 memsetb(newpt, FRAME_SIZE << PTL2_SIZE, 0);
[6d7ffa65]89 SET_PTL2_ADDRESS(ptl1, PTL1_INDEX(page), KA2PA(newpt));
90 SET_PTL2_FLAGS(ptl1, PTL1_INDEX(page), PAGE_PRESENT | PAGE_USER | PAGE_EXEC | PAGE_CACHEABLE | PAGE_WRITE);
91 }
92
93 ptl2 = (pte_t *) PA2KA(GET_PTL2_ADDRESS(ptl1, PTL1_INDEX(page)));
94
95 if (GET_PTL3_FLAGS(ptl2, PTL2_INDEX(page)) & PAGE_NOT_PRESENT) {
[6b781c0]96 newpt = (pte_t *)frame_alloc(PTL3_SIZE, FRAME_KA);
[e32e092]97 memsetb(newpt, FRAME_SIZE << PTL3_SIZE, 0);
[6d7ffa65]98 SET_PTL3_ADDRESS(ptl2, PTL2_INDEX(page), KA2PA(newpt));
99 SET_PTL3_FLAGS(ptl2, PTL2_INDEX(page), PAGE_PRESENT | PAGE_USER | PAGE_EXEC | PAGE_CACHEABLE | PAGE_WRITE);
100 }
101
102 ptl3 = (pte_t *) PA2KA(GET_PTL3_ADDRESS(ptl2, PTL2_INDEX(page)));
103
104 SET_FRAME_ADDRESS(ptl3, PTL3_INDEX(page), frame);
105 SET_FRAME_FLAGS(ptl3, PTL3_INDEX(page), flags);
106}
107
[8f00329]108/** Remove mapping of page from hierarchical page tables.
109 *
[9179d0a]110 * Remove any mapping of page within address space as.
[8f00329]111 * TLB shootdown should follow in order to make effects of
112 * this call visible.
113 *
[ecbdc724]114 * Empty page tables except PTL0 are freed.
115 *
[2299914]116 * The page table must be locked and interrupts must be disabled.
[8f00329]117 *
[9179d0a]118 * @param as Address space to wich page belongs.
[8f00329]119 * @param page Virtual address of the page to be demapped.
120 */
[7f1c620]121void pt_mapping_remove(as_t *as, uintptr_t page)
[8f00329]122{
123 pte_t *ptl0, *ptl1, *ptl2, *ptl3;
[ecbdc724]124 bool empty = true;
125 int i;
126
127 /*
128 * First, remove the mapping, if it exists.
129 */
[8f00329]130
[80bcaed]131 ptl0 = (pte_t *) PA2KA((uintptr_t) as->genarch.page_table);
[8f00329]132
133 if (GET_PTL1_FLAGS(ptl0, PTL0_INDEX(page)) & PAGE_NOT_PRESENT)
134 return;
135
136 ptl1 = (pte_t *) PA2KA(GET_PTL1_ADDRESS(ptl0, PTL0_INDEX(page)));
137
138 if (GET_PTL2_FLAGS(ptl1, PTL1_INDEX(page)) & PAGE_NOT_PRESENT)
139 return;
140
141 ptl2 = (pte_t *) PA2KA(GET_PTL2_ADDRESS(ptl1, PTL1_INDEX(page)));
142
143 if (GET_PTL3_FLAGS(ptl2, PTL2_INDEX(page)) & PAGE_NOT_PRESENT)
144 return;
145
146 ptl3 = (pte_t *) PA2KA(GET_PTL3_ADDRESS(ptl2, PTL2_INDEX(page)));
147
148 /* Destroy the mapping. Setting to PAGE_NOT_PRESENT is not sufficient. */
[e32e092]149 memsetb(&ptl3[PTL3_INDEX(page)], sizeof(pte_t), 0);
[ecbdc724]150
151 /*
152 * Second, free all empty tables along the way from PTL3 down to PTL0.
153 */
154
155 /* check PTL3 */
156 for (i = 0; i < PTL3_ENTRIES; i++) {
157 if (PTE_VALID(&ptl3[i])) {
158 empty = false;
159 break;
160 }
161 }
162 if (empty) {
163 /*
164 * PTL3 is empty.
165 * Release the frame and remove PTL3 pointer from preceding table.
166 */
[7f1c620]167 frame_free(KA2PA((uintptr_t) ptl3));
[ecbdc724]168 if (PTL2_ENTRIES)
[e32e092]169 memsetb(&ptl2[PTL2_INDEX(page)], sizeof(pte_t), 0);
[ecbdc724]170 else if (PTL1_ENTRIES)
[e32e092]171 memsetb(&ptl1[PTL1_INDEX(page)], sizeof(pte_t), 0);
[ecbdc724]172 else
[e32e092]173 memsetb(&ptl0[PTL0_INDEX(page)], sizeof(pte_t), 0);
[ecbdc724]174 } else {
175 /*
176 * PTL3 is not empty.
177 * Therefore, there must be a path from PTL0 to PTL3 and
178 * thus nothing to free in higher levels.
179 */
180 return;
181 }
182
183 /* check PTL2, empty is still true */
184 if (PTL2_ENTRIES) {
185 for (i = 0; i < PTL2_ENTRIES; i++) {
186 if (PTE_VALID(&ptl2[i])) {
187 empty = false;
188 break;
189 }
190 }
191 if (empty) {
192 /*
193 * PTL2 is empty.
194 * Release the frame and remove PTL2 pointer from preceding table.
195 */
[7f1c620]196 frame_free(KA2PA((uintptr_t) ptl2));
[ecbdc724]197 if (PTL1_ENTRIES)
[e32e092]198 memsetb(&ptl1[PTL1_INDEX(page)], sizeof(pte_t), 0);
[ecbdc724]199 else
[e32e092]200 memsetb(&ptl0[PTL0_INDEX(page)], sizeof(pte_t), 0);
[ecbdc724]201 }
202 else {
203 /*
204 * PTL2 is not empty.
205 * Therefore, there must be a path from PTL0 to PTL2 and
206 * thus nothing to free in higher levels.
207 */
208 return;
209 }
210 }
211
212 /* check PTL1, empty is still true */
213 if (PTL1_ENTRIES) {
214 for (i = 0; i < PTL1_ENTRIES; i++) {
215 if (PTE_VALID(&ptl1[i])) {
216 empty = false;
217 break;
218 }
219 }
220 if (empty) {
221 /*
222 * PTL1 is empty.
223 * Release the frame and remove PTL1 pointer from preceding table.
224 */
[7f1c620]225 frame_free(KA2PA((uintptr_t) ptl1));
[e32e092]226 memsetb(&ptl0[PTL0_INDEX(page)], sizeof(pte_t), 0);
[ecbdc724]227 }
228 }
229
[8f00329]230}
231
[6d7ffa65]232/** Find mapping for virtual page in hierarchical page tables.
233 *
234 * Find mapping for virtual page.
235 *
[2299914]236 * The page table must be locked and interrupts must be disabled.
[ef67bab]237 *
[9179d0a]238 * @param as Address space to which page belongs.
[6d7ffa65]239 * @param page Virtual page.
240 *
241 * @return NULL if there is no such mapping; entry from PTL3 describing the mapping otherwise.
242 */
[7f1c620]243pte_t *pt_mapping_find(as_t *as, uintptr_t page)
[6d7ffa65]244{
245 pte_t *ptl0, *ptl1, *ptl2, *ptl3;
246
[80bcaed]247 ptl0 = (pte_t *) PA2KA((uintptr_t) as->genarch.page_table);
[6d7ffa65]248
249 if (GET_PTL1_FLAGS(ptl0, PTL0_INDEX(page)) & PAGE_NOT_PRESENT)
250 return NULL;
251
252 ptl1 = (pte_t *) PA2KA(GET_PTL1_ADDRESS(ptl0, PTL0_INDEX(page)));
253
254 if (GET_PTL2_FLAGS(ptl1, PTL1_INDEX(page)) & PAGE_NOT_PRESENT)
255 return NULL;
256
257 ptl2 = (pte_t *) PA2KA(GET_PTL2_ADDRESS(ptl1, PTL1_INDEX(page)));
258
259 if (GET_PTL3_FLAGS(ptl2, PTL2_INDEX(page)) & PAGE_NOT_PRESENT)
260 return NULL;
261
262 ptl3 = (pte_t *) PA2KA(GET_PTL3_ADDRESS(ptl2, PTL2_INDEX(page)));
263
264 return &ptl3[PTL3_INDEX(page)];
265}
[b45c443]266
[f47fd19]267/** @}
[b45c443]268 */
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