source: mainline/kernel/generic/src/mm/backend_elf.c@ 0abc2ae

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 0abc2ae was 0abc2ae, checked in by Jiří Zárevúcky <jiri.zarevucky@…>, 7 years ago

Remove single-argument version of smc_coherence.

  • Property mode set to 100644
File size: 12.0 KB
RevLine 
[0ee077ee]1/*
[df4ed85]2 * Copyright (c) 2006 Jakub Jermar
[0ee077ee]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
[cc73a8a1]29/** @addtogroup genericmm
[b45c443]30 * @{
31 */
32
[0ee077ee]33/**
[b45c443]34 * @file
[0ee077ee]35 * @brief Backend for address space areas backed by an ELF image.
36 */
37
[d4b5542]38#include <lib/elf.h>
[63e27ef]39#include <assert.h>
[d99c1d2]40#include <typedefs.h>
[0ee077ee]41#include <mm/as.h>
42#include <mm/frame.h>
43#include <mm/slab.h>
[00b595b]44#include <mm/page.h>
[03523dc]45#include <mm/reserve.h>
[c7f8fc5]46#include <mm/km.h>
[00b595b]47#include <genarch/mm/page_pt.h>
48#include <genarch/mm/page_ht.h>
[0ee077ee]49#include <align.h>
[44a7ee5]50#include <mem.h>
[0ee077ee]51#include <macros.h>
52#include <arch.h>
[05882233]53#include <barrier.h>
[0ee077ee]54
[03523dc]55static bool elf_create(as_area_t *);
56static bool elf_resize(as_area_t *, size_t);
57static void elf_share(as_area_t *);
58static void elf_destroy(as_area_t *);
59
[01029fc]60static bool elf_is_resizable(as_area_t *);
61static bool elf_is_shareable(as_area_t *);
62
[cda1378]63static int elf_page_fault(as_area_t *, uintptr_t, pf_access_t);
64static void elf_frame_free(as_area_t *, uintptr_t, uintptr_t);
[0ee077ee]65
66mem_backend_t elf_backend = {
[03523dc]67 .create = elf_create,
68 .resize = elf_resize,
69 .share = elf_share,
70 .destroy = elf_destroy,
71
[01029fc]72 .is_resizable = elf_is_resizable,
73 .is_shareable = elf_is_shareable,
74
[0ee077ee]75 .page_fault = elf_page_fault,
76 .frame_free = elf_frame_free,
[83b6ba9f]77
78 .create_shared_data = NULL,
79 .destroy_shared_data = NULL
[0ee077ee]80};
81
[3ac69647]82static size_t elf_nonanon_pages_get(as_area_t *area)
[03523dc]83{
[9dd730d1]84 elf_segment_header_t *entry = area->backend_data.segment;
[8f6c6264]85 uintptr_t first = ALIGN_UP(entry->p_vaddr, PAGE_SIZE);
86 uintptr_t last = ALIGN_DOWN(entry->p_vaddr + entry->p_filesz,
87 PAGE_SIZE);
[9dd730d1]88
[2c86f81]89 if (entry->p_flags & PF_W)
[3ac69647]90 return 0;
91
[8f6c6264]92 if (last < first)
93 return 0;
94
95 return last - first;
[3ac69647]96}
97
98bool elf_create(as_area_t *area)
99{
100 size_t nonanon_pages = elf_nonanon_pages_get(area);
[2c86f81]101
[9dd730d1]102 if (area->pages <= nonanon_pages)
103 return true;
[a35b458]104
[9dd730d1]105 return reserve_try_alloc(area->pages - nonanon_pages);
[03523dc]106}
107
108bool elf_resize(as_area_t *area, size_t new_pages)
109{
[3ac69647]110 size_t nonanon_pages = elf_nonanon_pages_get(area);
[2c86f81]111
[9dd730d1]112 if (new_pages > area->pages) {
113 /* The area is growing. */
114 if (area->pages >= nonanon_pages)
115 return reserve_try_alloc(new_pages - area->pages);
116 else if (new_pages > nonanon_pages)
117 return reserve_try_alloc(new_pages - nonanon_pages);
118 } else if (new_pages < area->pages) {
119 /* The area is shrinking. */
120 if (new_pages >= nonanon_pages)
121 reserve_free(area->pages - new_pages);
122 else if (area->pages > nonanon_pages)
123 reserve_free(nonanon_pages - new_pages);
124 }
[a35b458]125
[03523dc]126 return true;
127}
128
129/** Share ELF image backed address space area.
130 *
131 * If the area is writable, then all mapped pages are duplicated in the pagemap.
132 * Otherwise only portions of the area that are not backed by the ELF image
133 * are put into the pagemap.
134 *
135 * @param area Address space area.
136 */
137void elf_share(as_area_t *area)
138{
139 elf_segment_header_t *entry = area->backend_data.segment;
140 link_t *cur;
141 btree_node_t *leaf, *node;
142 uintptr_t start_anon = entry->p_vaddr + entry->p_filesz;
143
[63e27ef]144 assert(mutex_locked(&area->as->lock));
145 assert(mutex_locked(&area->lock));
[03523dc]146
147 /*
148 * Find the node in which to start linear search.
149 */
150 if (area->flags & AS_AREA_WRITE) {
[55b77d9]151 node = list_get_instance(list_first(&area->used_space.leaf_list),
[03523dc]152 btree_node_t, leaf_link);
153 } else {
154 (void) btree_search(&area->sh_info->pagemap, start_anon, &leaf);
155 node = btree_leaf_node_left_neighbour(&area->sh_info->pagemap,
156 leaf);
157 if (!node)
158 node = leaf;
159 }
160
161 /*
162 * Copy used anonymous portions of the area to sh_info's page map.
163 */
164 mutex_lock(&area->sh_info->lock);
[55b77d9]165 for (cur = &node->leaf_link; cur != &area->used_space.leaf_list.head;
[03523dc]166 cur = cur->next) {
167 unsigned int i;
[a35b458]168
[03523dc]169 node = list_get_instance(cur, btree_node_t, leaf_link);
[a35b458]170
[03523dc]171 for (i = 0; i < node->keys; i++) {
172 uintptr_t base = node->key[i];
173 size_t count = (size_t) node->value[i];
174 unsigned int j;
[a35b458]175
[03523dc]176 /*
177 * Skip read-only areas of used space that are backed
178 * by the ELF image.
179 */
180 if (!(area->flags & AS_AREA_WRITE))
181 if (base >= entry->p_vaddr &&
[b4ffe5bc]182 base + P2SZ(count) <= start_anon)
[03523dc]183 continue;
[a35b458]184
[03523dc]185 for (j = 0; j < count; j++) {
[38dc82d]186 pte_t pte;
187 bool found;
[a35b458]188
[03523dc]189 /*
190 * Skip read-only pages that are backed by the
191 * ELF image.
192 */
193 if (!(area->flags & AS_AREA_WRITE))
194 if (base >= entry->p_vaddr &&
[b4ffe5bc]195 base + P2SZ(j + 1) <= start_anon)
[03523dc]196 continue;
[a35b458]197
[03523dc]198 page_table_lock(area->as, false);
[38dc82d]199 found = page_mapping_find(area->as,
200 base + P2SZ(j), false, &pte);
201
[63e27ef]202 assert(found);
203 assert(PTE_VALID(&pte));
204 assert(PTE_PRESENT(&pte));
[38dc82d]205
[03523dc]206 btree_insert(&area->sh_info->pagemap,
[b4ffe5bc]207 (base + P2SZ(j)) - area->base,
[38dc82d]208 (void *) PTE_GET_FRAME(&pte), NULL);
[03523dc]209 page_table_unlock(area->as, false);
210
[38dc82d]211 pfn_t pfn = ADDR2PFN(PTE_GET_FRAME(&pte));
[03523dc]212 frame_reference_add(pfn);
213 }
[a35b458]214
[03523dc]215 }
216 }
217 mutex_unlock(&area->sh_info->lock);
218}
219
220void elf_destroy(as_area_t *area)
221{
[3ac69647]222 size_t nonanon_pages = elf_nonanon_pages_get(area);
[2c86f81]223
[9dd730d1]224 if (area->pages > nonanon_pages)
225 reserve_free(area->pages - nonanon_pages);
[03523dc]226}
227
[01029fc]228bool elf_is_resizable(as_area_t *area)
229{
230 return true;
231}
232
233bool elf_is_shareable(as_area_t *area)
234{
235 return true;
236}
237
238
[0ee077ee]239/** Service a page fault in the ELF backend address space area.
240 *
241 * The address space area and page tables must be already locked.
242 *
[36e86862]243 * @param area Pointer to the address space area.
[59fb782]244 * @param upage Faulting virtual page.
[36e86862]245 * @param access Access mode that caused the fault (i.e.
246 * read/write/exec).
[0ee077ee]247 *
[36e86862]248 * @return AS_PF_FAULT on failure (i.e. page fault) or AS_PF_OK
249 * on success (i.e. serviced).
[0ee077ee]250 */
[59fb782]251int elf_page_fault(as_area_t *area, uintptr_t upage, pf_access_t access)
[0ee077ee]252{
[127c957b]253 elf_header_t *elf = area->backend_data.elf;
254 elf_segment_header_t *entry = area->backend_data.segment;
[00b595b]255 btree_node_t *leaf;
[c7f8fc5]256 uintptr_t base;
257 uintptr_t frame;
258 uintptr_t kpage;
259 uintptr_t start_anon;
[98000fb]260 size_t i;
[454f1da]261 bool dirty = false;
[0ee077ee]262
[63e27ef]263 assert(page_table_locked(AS));
264 assert(mutex_locked(&area->lock));
265 assert(IS_ALIGNED(upage, PAGE_SIZE));
[1d432f9]266
[0ee077ee]267 if (!as_area_check_access(area, access))
268 return AS_PF_FAULT;
[a35b458]269
[59fb782]270 if (upage < ALIGN_DOWN(entry->p_vaddr, PAGE_SIZE))
[917a8c8]271 return AS_PF_FAULT;
[a35b458]272
[59fb782]273 if (upage >= entry->p_vaddr + entry->p_memsz)
[917a8c8]274 return AS_PF_FAULT;
[a35b458]275
[59fb782]276 i = (upage - ALIGN_DOWN(entry->p_vaddr, PAGE_SIZE)) >> PAGE_WIDTH;
[1cc2974]277 base = (uintptr_t)
278 (((void *) elf) + ALIGN_DOWN(entry->p_offset, PAGE_SIZE));
279
280 /* Virtual address of the end of initialized part of segment */
281 start_anon = entry->p_vaddr + entry->p_filesz;
[00b595b]282
[83b6ba9f]283 mutex_lock(&area->sh_info->lock);
284 if (area->sh_info->shared) {
[00b595b]285 bool found = false;
286
287 /*
288 * The address space area is shared.
289 */
[a35b458]290
[7f1c620]291 frame = (uintptr_t) btree_search(&area->sh_info->pagemap,
[c7f8fc5]292 upage - area->base, &leaf);
[00b595b]293 if (!frame) {
[6c441cf8]294 unsigned int i;
[00b595b]295
296 /*
297 * Workaround for valid NULL address.
298 */
299
300 for (i = 0; i < leaf->keys; i++) {
[c7f8fc5]301 if (leaf->key[i] == upage - area->base) {
[00b595b]302 found = true;
303 break;
304 }
305 }
306 }
307 if (frame || found) {
[c9d2235b]308 frame_reference_add(ADDR2PFN(frame));
[c7f8fc5]309 page_mapping_insert(AS, upage, frame,
[d5bd8d7]310 as_area_get_flags(area));
[c7f8fc5]311 if (!used_space_insert(area, upage, 1))
[f651e80]312 panic("Cannot insert used space.");
[00b595b]313 mutex_unlock(&area->sh_info->lock);
314 return AS_PF_OK;
315 }
316 }
[1cc2974]317
[00b595b]318 /*
[d5bd8d7]319 * The area is either not shared or the pagemap does not contain the
320 * mapping.
[00b595b]321 */
[c7f8fc5]322 if (upage >= entry->p_vaddr && upage + PAGE_SIZE <= start_anon) {
[0ee077ee]323 /*
324 * Initialized portion of the segment. The memory is backed
325 * directly by the content of the ELF image. Pages are
326 * only copied if the segment is writable so that there
327 * can be more instantions of the same memory ELF image
328 * used at a time. Note that this could be later done
329 * as COW.
330 */
331 if (entry->p_flags & PF_W) {
[c7f8fc5]332 kpage = km_temporary_page_get(&frame, FRAME_NO_RESERVE);
[d56382d]333 memcpy((void *) kpage, (void *) (base + i * PAGE_SIZE),
[c7f8fc5]334 PAGE_SIZE);
[d56382d]335 if (entry->p_flags & PF_X) {
[0abc2ae]336 smc_coherence((void *) kpage, PAGE_SIZE);
[d56382d]337 }
[c7f8fc5]338 km_temporary_page_put(kpage);
[454f1da]339 dirty = true;
[0ee077ee]340 } else {
[38dc82d]341 pte_t pte;
342 bool found;
343
344 found = page_mapping_find(AS_KERNEL,
345 base + i * FRAME_SIZE, true, &pte);
[32817cc]346
[63e27ef]347 assert(found);
348 assert(PTE_PRESENT(&pte));
[32817cc]349
[38dc82d]350 frame = PTE_GET_FRAME(&pte);
[1b20da0]351 }
[c7f8fc5]352 } else if (upage >= start_anon) {
[0ee077ee]353 /*
354 * This is the uninitialized portion of the segment.
355 * It is not physically present in the ELF image.
356 * To resolve the situation, a frame must be allocated
357 * and cleared.
358 */
[c7f8fc5]359 kpage = km_temporary_page_get(&frame, FRAME_NO_RESERVE);
360 memsetb((void *) kpage, PAGE_SIZE, 0);
361 km_temporary_page_put(kpage);
[454f1da]362 dirty = true;
[0ee077ee]363 } else {
[1cc2974]364 size_t pad_lo, pad_hi;
[0ee077ee]365 /*
366 * The mixed case.
[1cc2974]367 *
368 * The middle part is backed by the ELF image and
369 * the lower and upper parts are anonymous memory.
370 * (The segment can be and often is shorter than 1 page).
[0ee077ee]371 */
[c7f8fc5]372 if (upage < entry->p_vaddr)
373 pad_lo = entry->p_vaddr - upage;
[1cc2974]374 else
375 pad_lo = 0;
376
[c7f8fc5]377 if (start_anon < upage + PAGE_SIZE)
378 pad_hi = upage + PAGE_SIZE - start_anon;
[1cc2974]379 else
380 pad_hi = 0;
381
[c7f8fc5]382 kpage = km_temporary_page_get(&frame, FRAME_NO_RESERVE);
383 memcpy((void *) (kpage + pad_lo),
384 (void *) (base + i * PAGE_SIZE + pad_lo),
385 PAGE_SIZE - pad_lo - pad_hi);
[62cd66f]386 if (entry->p_flags & PF_X) {
[0abc2ae]387 smc_coherence((void *) (kpage + pad_lo),
[c7f8fc5]388 PAGE_SIZE - pad_lo - pad_hi);
[62cd66f]389 }
[c7f8fc5]390 memsetb((void *) kpage, pad_lo, 0);
391 memsetb((void *) (kpage + PAGE_SIZE - pad_hi), pad_hi, 0);
392 km_temporary_page_put(kpage);
[454f1da]393 dirty = true;
[1cc2974]394 }
[00b595b]395
[83b6ba9f]396 if (dirty && area->sh_info->shared) {
[1cc2974]397 frame_reference_add(ADDR2PFN(frame));
[c7f8fc5]398 btree_insert(&area->sh_info->pagemap, upage - area->base,
[1cc2974]399 (void *) frame, leaf);
[0ee077ee]400 }
[1cc2974]401
[83b6ba9f]402 mutex_unlock(&area->sh_info->lock);
[1cc2974]403
[c7f8fc5]404 page_mapping_insert(AS, upage, frame, as_area_get_flags(area));
405 if (!used_space_insert(area, upage, 1))
[f651e80]406 panic("Cannot insert used space.");
[0ee077ee]407
408 return AS_PF_OK;
409}
410
411/** Free a frame that is backed by the ELF backend.
412 *
413 * The address space area and page tables must be already locked.
414 *
[36e86862]415 * @param area Pointer to the address space area.
416 * @param page Page that is mapped to frame. Must be aligned to
417 * PAGE_SIZE.
418 * @param frame Frame to be released.
[0ee077ee]419 *
420 */
[7f1c620]421void elf_frame_free(as_area_t *area, uintptr_t page, uintptr_t frame)
[0ee077ee]422{
[127c957b]423 elf_segment_header_t *entry = area->backend_data.segment;
[137691a]424 uintptr_t start_anon;
[1cc2974]425
[63e27ef]426 assert(page_table_locked(area->as));
427 assert(mutex_locked(&area->lock));
[1d432f9]428
[63e27ef]429 assert(page >= ALIGN_DOWN(entry->p_vaddr, PAGE_SIZE));
430 assert(page < entry->p_vaddr + entry->p_memsz);
[1d432f9]431
[1cc2974]432 start_anon = entry->p_vaddr + entry->p_filesz;
433
434 if (page >= entry->p_vaddr && page + PAGE_SIZE <= start_anon) {
[0ee077ee]435 if (entry->p_flags & PF_W) {
436 /*
[d5bd8d7]437 * Free the frame with the copy of writable segment
438 * data.
[0ee077ee]439 */
[5df1963]440 frame_free_noreserve(frame, 1);
[0ee077ee]441 }
442 } else {
443 /*
[d5bd8d7]444 * The frame is either anonymous memory or the mixed case (i.e.
445 * lower part is backed by the ELF image and the upper is
446 * anonymous). In any case, a frame needs to be freed.
[137691a]447 */
[5df1963]448 frame_free_noreserve(frame, 1);
[0ee077ee]449 }
450}
[00b595b]451
[cc73a8a1]452/** @}
[b45c443]453 */
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