lwp_user_mm.c 26 KB

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  1. /*
  2. * Copyright (c) 2006-2021, RT-Thread Development Team
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. *
  6. * Change Logs:
  7. * Date Author Notes
  8. * 2019-10-28 Jesven first version
  9. * 2021-02-06 lizhirui fixed fixed vtable size problem
  10. * 2021-02-12 lizhirui add 64-bit support for lwp_brk
  11. * 2021-02-19 lizhirui add riscv64 support for lwp_user_accessable and lwp_get_from_user
  12. * 2021-06-07 lizhirui modify user space bound check
  13. * 2022-12-25 wangxiaoyao adapt to new mm
  14. * 2023-08-12 Shell Fix parameter passing of lwp_mmap()/lwp_munmap()
  15. * 2023-08-29 Shell Add API accessible()/data_get()/data_set()/data_put()
  16. * 2023-09-13 Shell Add lwp_memcpy and support run-time choice of memcpy base on memory attr
  17. * 2023-09-19 Shell add lwp_user_memory_remap_to_kernel
  18. */
  19. #include <rtthread.h>
  20. #include <rthw.h>
  21. #include <string.h>
  22. #ifdef ARCH_MM_MMU
  23. #include "lwp_internal.h"
  24. #include <mm_aspace.h>
  25. #include <mm_fault.h>
  26. #include <mm_flag.h>
  27. #include <mm_page.h>
  28. #include <mmu.h>
  29. #include <page.h>
  30. #ifdef RT_USING_MUSLLIBC
  31. #include "libc_musl.h"
  32. #endif
  33. #define DBG_TAG "LwP.mman"
  34. #define DBG_LVL DBG_INFO
  35. #include <rtdbg.h>
  36. #include <stdlib.h>
  37. #define STACK_OBJ _null_object
  38. static const char *_null_get_name(rt_varea_t varea)
  39. {
  40. return "null";
  41. }
  42. static void _null_page_fault(struct rt_varea *varea,
  43. struct rt_aspace_fault_msg *msg)
  44. {
  45. static void *null_page;
  46. if (!null_page)
  47. {
  48. null_page = rt_pages_alloc_ext(0, PAGE_ANY_AVAILABLE);
  49. if (null_page)
  50. memset(null_page, 0, ARCH_PAGE_SIZE);
  51. else
  52. return;
  53. }
  54. msg->response.status = MM_FAULT_STATUS_OK;
  55. msg->response.size = ARCH_PAGE_SIZE;
  56. msg->response.vaddr = null_page;
  57. }
  58. static rt_err_t _null_shrink(rt_varea_t varea, void *new_start, rt_size_t size)
  59. {
  60. return RT_EOK;
  61. }
  62. static rt_err_t _null_split(struct rt_varea *existed, void *unmap_start, rt_size_t unmap_len, struct rt_varea *subset)
  63. {
  64. return RT_EOK;
  65. }
  66. static rt_err_t _null_expand(struct rt_varea *varea, void *new_vaddr, rt_size_t size)
  67. {
  68. return RT_EOK;
  69. }
  70. static void _null_page_read(struct rt_varea *varea, struct rt_aspace_io_msg *msg)
  71. {
  72. void *dest = msg->buffer_vaddr;
  73. memset(dest, 0, ARCH_PAGE_SIZE);
  74. msg->response.status = MM_FAULT_STATUS_OK;
  75. return ;
  76. }
  77. static void _null_page_write(struct rt_varea *varea, struct rt_aspace_io_msg *msg)
  78. {
  79. /* write operation is not allowed */
  80. msg->response.status = MM_FAULT_STATUS_UNRECOVERABLE;
  81. return ;
  82. }
  83. static struct rt_mem_obj _null_object = {
  84. .get_name = _null_get_name,
  85. .hint_free = RT_NULL,
  86. .on_page_fault = _null_page_fault,
  87. .page_read = _null_page_read,
  88. .page_write = _null_page_write,
  89. .on_varea_expand = _null_expand,
  90. .on_varea_shrink = _null_shrink,
  91. .on_varea_split = _null_split,
  92. };
  93. int lwp_user_space_init(struct rt_lwp *lwp, rt_bool_t is_fork)
  94. {
  95. void *stk_addr;
  96. int err = -RT_ENOMEM;
  97. const size_t flags = MMF_MAP_PRIVATE;
  98. err = arch_user_space_init(lwp);
  99. if (err == RT_EOK)
  100. {
  101. if (!is_fork)
  102. {
  103. stk_addr = (void *)USER_STACK_VSTART;
  104. err = rt_aspace_map(lwp->aspace, &stk_addr,
  105. USER_STACK_VEND - USER_STACK_VSTART,
  106. MMU_MAP_U_RWCB, flags, &STACK_OBJ, 0);
  107. }
  108. }
  109. return err;
  110. }
  111. void lwp_aspace_switch(struct rt_thread *thread)
  112. {
  113. struct rt_lwp *lwp = RT_NULL;
  114. rt_aspace_t aspace;
  115. void *from_tbl;
  116. if (thread->lwp)
  117. {
  118. lwp = (struct rt_lwp *)thread->lwp;
  119. aspace = lwp->aspace;
  120. }
  121. else
  122. {
  123. aspace = &rt_kernel_space;
  124. }
  125. from_tbl = rt_hw_mmu_tbl_get();
  126. if (aspace->page_table != from_tbl)
  127. {
  128. rt_hw_aspace_switch(aspace);
  129. }
  130. }
  131. void lwp_unmap_user_space(struct rt_lwp *lwp)
  132. {
  133. if (lwp->aspace)
  134. arch_user_space_free(lwp);
  135. }
  136. static void *_lwp_map_user(struct rt_lwp *lwp, void *map_va, size_t map_size,
  137. int text)
  138. {
  139. void *va = map_va;
  140. int ret = 0;
  141. rt_size_t flags = MMF_PREFETCH;
  142. if (text)
  143. flags |= MMF_TEXT;
  144. if (va != RT_NULL)
  145. flags |= MMF_MAP_FIXED;
  146. ret = rt_aspace_map_private(lwp->aspace, &va, map_size, MMU_MAP_U_RWCB, flags);
  147. if (ret != RT_EOK)
  148. {
  149. va = RT_NULL;
  150. LOG_I("lwp_map_user: failed to map %lx with size %lx with errno %d", map_va,
  151. map_size, ret);
  152. }
  153. return va;
  154. }
  155. int lwp_unmap_user(struct rt_lwp *lwp, void *va)
  156. {
  157. int err = rt_aspace_unmap(lwp->aspace, va);
  158. return err;
  159. }
  160. /** fork the src_lwp->aspace in current */
  161. int lwp_fork_aspace(struct rt_lwp *dest_lwp, struct rt_lwp *src_lwp)
  162. {
  163. int err;
  164. err = rt_aspace_fork(&src_lwp->aspace, &dest_lwp->aspace);
  165. if (!err)
  166. {
  167. /* do a explicit aspace switch if the page table is changed */
  168. lwp_aspace_switch(rt_thread_self());
  169. }
  170. return err;
  171. }
  172. int lwp_unmap_user_phy(struct rt_lwp *lwp, void *va)
  173. {
  174. return lwp_unmap_user(lwp, va);
  175. }
  176. void *lwp_map_user(struct rt_lwp *lwp, void *map_va, size_t map_size, int text)
  177. {
  178. void *ret = RT_NULL;
  179. size_t offset = 0;
  180. if (!map_size)
  181. {
  182. return 0;
  183. }
  184. offset = (size_t)map_va & ARCH_PAGE_MASK;
  185. map_size += (offset + ARCH_PAGE_SIZE - 1);
  186. map_size &= ~ARCH_PAGE_MASK;
  187. map_va = (void *)((size_t)map_va & ~ARCH_PAGE_MASK);
  188. ret = _lwp_map_user(lwp, map_va, map_size, text);
  189. if (ret)
  190. {
  191. ret = (void *)((char *)ret + offset);
  192. }
  193. return ret;
  194. }
  195. static inline size_t _flags_to_attr(size_t flags)
  196. {
  197. size_t attr;
  198. if (flags & LWP_MAP_FLAG_NOCACHE)
  199. {
  200. attr = MMU_MAP_U_RW;
  201. }
  202. else
  203. {
  204. attr = MMU_MAP_U_RWCB;
  205. }
  206. return attr;
  207. }
  208. static inline mm_flag_t _flags_to_aspace_flag(size_t flags)
  209. {
  210. mm_flag_t mm_flag = 0;
  211. if (flags & LWP_MAP_FLAG_MAP_FIXED)
  212. mm_flag |= MMF_MAP_FIXED;
  213. if (flags & LWP_MAP_FLAG_PREFETCH)
  214. mm_flag |= MMF_PREFETCH;
  215. return mm_flag;
  216. }
  217. static rt_varea_t _lwp_map_user_varea(struct rt_lwp *lwp, void *map_va, size_t map_size, size_t flags)
  218. {
  219. void *va = map_va;
  220. int ret = 0;
  221. rt_varea_t varea = RT_NULL;
  222. mm_flag_t mm_flags;
  223. size_t attr;
  224. attr = _flags_to_attr(flags);
  225. mm_flags = _flags_to_aspace_flag(flags);
  226. ret = rt_aspace_map_private(lwp->aspace, &va, map_size,
  227. attr, mm_flags);
  228. if (ret == RT_EOK)
  229. {
  230. varea = rt_aspace_query(lwp->aspace, va);
  231. }
  232. if (ret != RT_EOK)
  233. {
  234. LOG_I("lwp_map_user: failed to map %lx with size %lx with errno %d", map_va,
  235. map_size, ret);
  236. }
  237. return varea;
  238. }
  239. static rt_varea_t _map_user_varea_ext(struct rt_lwp *lwp, void *map_va, size_t map_size, size_t flags)
  240. {
  241. size_t offset = 0;
  242. if (!map_size)
  243. {
  244. return 0;
  245. }
  246. offset = (size_t)map_va & ARCH_PAGE_MASK;
  247. map_size += (offset + ARCH_PAGE_SIZE - 1);
  248. map_size &= ~ARCH_PAGE_MASK;
  249. map_va = (void *)((size_t)map_va & ~ARCH_PAGE_MASK);
  250. return _lwp_map_user_varea(lwp, map_va, map_size, flags);
  251. }
  252. rt_varea_t lwp_map_user_varea_ext(struct rt_lwp *lwp, void *map_va, size_t map_size, size_t flags)
  253. {
  254. return _map_user_varea_ext(lwp, map_va, map_size, flags);
  255. }
  256. rt_varea_t lwp_map_user_varea(struct rt_lwp *lwp, void *map_va, size_t map_size)
  257. {
  258. return _map_user_varea_ext(lwp, map_va, map_size, LWP_MAP_FLAG_NONE);
  259. }
  260. void *lwp_map_user_phy(struct rt_lwp *lwp, void *map_va, void *map_pa,
  261. size_t map_size, int cached)
  262. {
  263. int err;
  264. char *va;
  265. size_t offset = 0;
  266. if (!map_size)
  267. {
  268. return 0;
  269. }
  270. if (map_va)
  271. {
  272. if (((size_t)map_va & ARCH_PAGE_MASK) !=
  273. ((size_t)map_pa & ARCH_PAGE_MASK))
  274. {
  275. return 0;
  276. }
  277. }
  278. offset = (size_t)map_pa & ARCH_PAGE_MASK;
  279. map_size += (offset + ARCH_PAGE_SIZE - 1);
  280. map_size &= ~ARCH_PAGE_MASK;
  281. map_pa = (void *)((size_t)map_pa & ~ARCH_PAGE_MASK);
  282. struct rt_mm_va_hint hint = {.flags = 0,
  283. .limit_range_size = lwp->aspace->size,
  284. .limit_start = lwp->aspace->start,
  285. .prefer = map_va,
  286. .map_size = map_size};
  287. if (map_va != RT_NULL)
  288. hint.flags |= MMF_MAP_FIXED;
  289. rt_size_t attr = cached ? MMU_MAP_U_RWCB : MMU_MAP_U_RW;
  290. err =
  291. rt_aspace_map_phy(lwp->aspace, &hint, attr, MM_PA_TO_OFF(map_pa), (void **)&va);
  292. if (err != RT_EOK)
  293. {
  294. va = RT_NULL;
  295. LOG_W("%s", __func__);
  296. }
  297. else
  298. {
  299. va += offset;
  300. }
  301. return va;
  302. }
  303. rt_base_t lwp_brk(void *addr)
  304. {
  305. rt_base_t ret = -1;
  306. rt_varea_t varea = RT_NULL;
  307. struct rt_lwp *lwp = RT_NULL;
  308. size_t size = 0;
  309. lwp = lwp_self();
  310. if ((size_t)addr == RT_NULL)
  311. {
  312. addr = (char *)lwp->end_heap + 1;
  313. }
  314. if ((size_t)addr <= lwp->end_heap && (size_t)addr > USER_HEAP_VADDR)
  315. {
  316. ret = (size_t)addr;
  317. }
  318. else if ((size_t)addr <= USER_HEAP_VEND)
  319. {
  320. size = RT_ALIGN((size_t)addr - lwp->end_heap, ARCH_PAGE_SIZE);
  321. varea = lwp_map_user_varea_ext(lwp, (void *)lwp->end_heap, size, LWP_MAP_FLAG_PREFETCH);
  322. if (varea)
  323. {
  324. lwp->end_heap = (long)(varea->start + varea->size);
  325. ret = lwp->end_heap;
  326. }
  327. }
  328. return ret;
  329. }
  330. rt_inline rt_mem_obj_t _get_mmap_obj(struct rt_lwp *lwp)
  331. {
  332. return &_null_object;
  333. }
  334. rt_inline rt_bool_t _memory_threshold_ok(void)
  335. {
  336. #define GUARDIAN_BITS (10)
  337. size_t total, free;
  338. rt_page_get_info(&total, &free);
  339. if (free * (0x1000) < 0x100000)
  340. {
  341. LOG_I("%s: low of system memory", __func__);
  342. return RT_FALSE;
  343. }
  344. return RT_TRUE;
  345. }
  346. rt_inline long _uflag_to_kernel(long flag)
  347. {
  348. flag &= ~MMF_MAP_FIXED;
  349. flag &= ~MMF_MAP_PRIVATE;
  350. flag &= ~MMF_MAP_PRIVATE_DONT_SYNC;
  351. return flag;
  352. }
  353. rt_inline long _uattr_to_kernel(long attr)
  354. {
  355. /* Warning: be careful with the case if user attribution is unwritable */
  356. return attr;
  357. }
  358. static void _prefetch_mmap(rt_aspace_t aspace, void *addr, long size)
  359. {
  360. struct rt_aspace_fault_msg msg;
  361. msg.fault_op = MM_FAULT_OP_WRITE;
  362. msg.fault_type = MM_FAULT_TYPE_PAGE_FAULT;
  363. for (char *base = addr; size > 0; base += ARCH_PAGE_SIZE, size -= ARCH_PAGE_SIZE)
  364. {
  365. msg.fault_vaddr = base;
  366. msg.off = (long)base >> MM_PAGE_SHIFT;
  367. rt_aspace_fault_try_fix(aspace, &msg);
  368. }
  369. return ;
  370. }
  371. void *lwp_user_memory_remap_to_kernel(rt_lwp_t lwp, void *uaddr, size_t length)
  372. {
  373. long kattr;
  374. long kflag;
  375. long offset_in_mobj;
  376. long offset_in_page;
  377. rt_err_t error;
  378. rt_varea_t uarea;
  379. rt_mem_obj_t mobj;
  380. void *kaddr = 0;
  381. uarea = rt_aspace_query(lwp->aspace, uaddr);
  382. if (uarea)
  383. {
  384. /* setup the identical mapping, and align up for address & length */
  385. kattr = _uattr_to_kernel(uarea->attr);
  386. kflag = _uflag_to_kernel(uarea->flag);
  387. offset_in_mobj = uarea->offset + ((long)uaddr - (long)uarea->start) / ARCH_PAGE_SIZE;
  388. mobj = uarea->mem_obj;
  389. offset_in_page = (long)uaddr & ARCH_PAGE_MASK;
  390. length = RT_ALIGN(length + offset_in_page, ARCH_PAGE_SIZE);
  391. error = rt_aspace_map(&rt_kernel_space, &kaddr, length, kattr, kflag, mobj, offset_in_mobj);
  392. if (error)
  393. {
  394. LOG_I("%s(length=0x%lx,attr=0x%lx,flags=0x%lx): do map failed", __func__, length, kattr, kflag);
  395. kaddr = 0;
  396. }
  397. else
  398. {
  399. /* TODO: {make a memory lock?} */
  400. LOG_D("%s(length=0x%lx,attr=0x%lx,flags=0x%lx,offset=0x%lx) => %p", __func__, length, kattr, kflag, offset_in_mobj, kaddr);
  401. _prefetch_mmap(&rt_kernel_space, kaddr, length);
  402. kaddr += offset_in_page;
  403. }
  404. }
  405. return kaddr;
  406. }
  407. void *lwp_mmap2(struct rt_lwp *lwp, void *addr, size_t length, int prot,
  408. int flags, int fd, off_t pgoffset)
  409. {
  410. rt_err_t rc;
  411. rt_size_t k_attr;
  412. rt_size_t k_flags;
  413. rt_size_t k_offset;
  414. rt_aspace_t uspace;
  415. rt_mem_obj_t mem_obj;
  416. void *ret = 0;
  417. LOG_D("%s(addr=0x%lx,length=%ld,fd=%d)", __func__, addr, length, fd);
  418. if (fd == -1)
  419. {
  420. /**
  421. * todo: add threshold
  422. */
  423. if (!_memory_threshold_ok())
  424. return (void *)-ENOMEM;
  425. k_offset = MM_PA_TO_OFF(addr);
  426. k_flags = lwp_user_mm_flag_to_kernel(flags) | MMF_MAP_PRIVATE;
  427. k_attr = lwp_user_mm_attr_to_kernel(prot);
  428. uspace = lwp->aspace;
  429. length = RT_ALIGN(length, ARCH_PAGE_SIZE);
  430. mem_obj = _get_mmap_obj(lwp);
  431. rc = rt_aspace_map(uspace, &addr, length, k_attr, k_flags, mem_obj, k_offset);
  432. if (rc == RT_EOK)
  433. {
  434. ret = addr;
  435. }
  436. else
  437. {
  438. ret = (void *)lwp_errno_to_posix(rc);
  439. }
  440. }
  441. else
  442. {
  443. struct dfs_file *d;
  444. d = fd_get(fd);
  445. if (d)
  446. {
  447. struct dfs_mmap2_args mmap2;
  448. mmap2.addr = addr;
  449. mmap2.length = length;
  450. mmap2.prot = prot;
  451. mmap2.flags = flags;
  452. mmap2.pgoffset = pgoffset;
  453. mmap2.ret = (void *)-1;
  454. mmap2.lwp = lwp;
  455. rc = dfs_file_mmap2(d, &mmap2);
  456. if (rc == RT_EOK)
  457. {
  458. ret = mmap2.ret;
  459. }
  460. else
  461. {
  462. ret = (void *)lwp_errno_to_posix(rc);
  463. }
  464. }
  465. }
  466. if ((long)ret <= 0)
  467. LOG_D("%s() => %ld", __func__, ret);
  468. return ret;
  469. }
  470. int lwp_munmap(struct rt_lwp *lwp, void *addr, size_t length)
  471. {
  472. int ret;
  473. RT_ASSERT(lwp);
  474. ret = rt_aspace_unmap_range(lwp->aspace, addr, length);
  475. return lwp_errno_to_posix(ret);
  476. }
  477. void *lwp_mremap(struct rt_lwp *lwp, void *old_address, size_t old_size,
  478. size_t new_size, int flags, void *new_address)
  479. {
  480. RT_ASSERT(lwp);
  481. return rt_aspace_mremap_range(lwp->aspace, old_address, old_size, new_size, flags, new_address);
  482. }
  483. size_t lwp_get_from_user(void *dst, void *src, size_t size)
  484. {
  485. struct rt_lwp *lwp = RT_NULL;
  486. /* check src */
  487. if (src < (void *)USER_VADDR_START)
  488. {
  489. return 0;
  490. }
  491. if (src >= (void *)USER_VADDR_TOP)
  492. {
  493. return 0;
  494. }
  495. if ((void *)((char *)src + size) > (void *)USER_VADDR_TOP)
  496. {
  497. return 0;
  498. }
  499. lwp = lwp_self();
  500. if (!lwp)
  501. {
  502. return 0;
  503. }
  504. return lwp_data_get(lwp, dst, src, size);
  505. }
  506. size_t lwp_put_to_user(void *dst, void *src, size_t size)
  507. {
  508. struct rt_lwp *lwp = RT_NULL;
  509. /* check dst */
  510. if (dst < (void *)USER_VADDR_START)
  511. {
  512. return 0;
  513. }
  514. if (dst >= (void *)USER_VADDR_TOP)
  515. {
  516. return 0;
  517. }
  518. if ((void *)((char *)dst + size) > (void *)USER_VADDR_TOP)
  519. {
  520. return 0;
  521. }
  522. lwp = lwp_self();
  523. if (!lwp)
  524. {
  525. return 0;
  526. }
  527. return lwp_data_put(lwp, dst, src, size);
  528. }
  529. rt_inline rt_bool_t _can_unaligned_access(const char *addr)
  530. {
  531. return rt_kmem_v2p((char *)addr) - PV_OFFSET == addr;
  532. }
  533. void *lwp_memcpy(void * __restrict dst, const void * __restrict src, size_t size)
  534. {
  535. void *rc = dst;
  536. long len;
  537. if (lwp_in_user_space(dst))
  538. {
  539. if (!lwp_in_user_space(src))
  540. {
  541. len = lwp_put_to_user(dst, (void *)src, size);
  542. if (!len)
  543. {
  544. LOG_E("lwp_put_to_user(lwp=%p, dst=%p,src=%p,size=0x%lx) failed", lwp_self(), dst, src, size);
  545. }
  546. }
  547. else
  548. {
  549. /* not support yet */
  550. LOG_W("%s(dst=%p,src=%p,size=0x%lx): operation not support", dst, src, size, __func__);
  551. }
  552. }
  553. else
  554. {
  555. if (lwp_in_user_space(src))
  556. {
  557. len = lwp_get_from_user(dst, (void *)src, size);
  558. if (!len)
  559. {
  560. LOG_E("lwp_get_from_user(lwp=%p, dst=%p,src=%p,size=0x%lx) failed", lwp_self(), dst, src, size);
  561. }
  562. }
  563. else
  564. {
  565. if (_can_unaligned_access(dst) && _can_unaligned_access(src))
  566. {
  567. rc = memcpy(dst, src, size);
  568. }
  569. else
  570. {
  571. rt_memcpy(dst, src, size);
  572. }
  573. }
  574. }
  575. return rc;
  576. }
  577. int lwp_user_accessible_ext(struct rt_lwp *lwp, void *addr, size_t size)
  578. {
  579. void *addr_start = RT_NULL, *addr_end = RT_NULL, *next_page = RT_NULL;
  580. void *tmp_addr = RT_NULL;
  581. if (!lwp)
  582. {
  583. return RT_FALSE;
  584. }
  585. if (!size || !addr)
  586. {
  587. return RT_FALSE;
  588. }
  589. addr_start = addr;
  590. addr_end = (void *)((char *)addr + size);
  591. #ifdef ARCH_RISCV64
  592. if (addr_start < (void *)USER_VADDR_START)
  593. {
  594. return RT_FALSE;
  595. }
  596. #else
  597. if (addr_start >= (void *)USER_VADDR_TOP)
  598. {
  599. return RT_FALSE;
  600. }
  601. if (addr_end > (void *)USER_VADDR_TOP)
  602. {
  603. return RT_FALSE;
  604. }
  605. #endif
  606. next_page =
  607. (void *)(((size_t)addr_start + ARCH_PAGE_SIZE) & ~(ARCH_PAGE_SIZE - 1));
  608. do
  609. {
  610. size_t len = (char *)next_page - (char *)addr_start;
  611. if (size < len)
  612. {
  613. len = size;
  614. }
  615. tmp_addr = lwp_v2p(lwp, addr_start);
  616. if (tmp_addr == ARCH_MAP_FAILED &&
  617. !rt_aspace_query(lwp->aspace, addr_start))
  618. {
  619. return RT_FALSE;
  620. }
  621. addr_start = (void *)((char *)addr_start + len);
  622. size -= len;
  623. next_page = (void *)((char *)next_page + ARCH_PAGE_SIZE);
  624. } while (addr_start < addr_end);
  625. return RT_TRUE;
  626. }
  627. int lwp_user_accessable(void *addr, size_t size)
  628. {
  629. return lwp_user_accessible_ext(lwp_self(), addr, size);
  630. }
  631. #define ALIGNED(addr) (!((rt_size_t)(addr) & ARCH_PAGE_MASK))
  632. /* src is in lwp address space, dst is in current thread space */
  633. size_t lwp_data_get(struct rt_lwp *lwp, void *dst, void *src, size_t size)
  634. {
  635. size_t copy_len = 0;
  636. char *temp_page = 0;
  637. char *dst_iter, *dst_next_page;
  638. char *src_copy_end, *src_iter, *src_iter_aligned;
  639. if (!size || !dst)
  640. {
  641. return 0;
  642. }
  643. dst_iter = dst;
  644. src_iter = src;
  645. src_copy_end = src + size;
  646. dst_next_page =
  647. (char *)(((size_t)src_iter + ARCH_PAGE_SIZE) & ~(ARCH_PAGE_SIZE - 1));
  648. do
  649. {
  650. size_t bytes_to_copy = (char *)dst_next_page - (char *)src_iter;
  651. if (bytes_to_copy > size)
  652. {
  653. bytes_to_copy = size;
  654. }
  655. if (ALIGNED(src_iter) && bytes_to_copy == ARCH_PAGE_SIZE)
  656. {
  657. /* get page to kernel buffer */
  658. if (rt_aspace_page_get(lwp->aspace, src_iter, dst_iter))
  659. break;
  660. }
  661. else
  662. {
  663. if (!temp_page)
  664. temp_page = rt_pages_alloc_ext(0, PAGE_ANY_AVAILABLE);
  665. if (!temp_page)
  666. break;
  667. src_iter_aligned = (char *)((long)src_iter & ~ARCH_PAGE_MASK);
  668. if (rt_aspace_page_get(lwp->aspace, src_iter_aligned, temp_page))
  669. break;
  670. memcpy(dst_iter, temp_page + (src_iter - src_iter_aligned), bytes_to_copy);
  671. }
  672. dst_iter = dst_iter + bytes_to_copy;
  673. src_iter = src_iter + bytes_to_copy;
  674. size -= bytes_to_copy;
  675. dst_next_page = (void *)((char *)dst_next_page + ARCH_PAGE_SIZE);
  676. copy_len += bytes_to_copy;
  677. } while (src_iter < src_copy_end);
  678. if (temp_page)
  679. rt_pages_free(temp_page, 0);
  680. return copy_len;
  681. }
  682. /* dst is in lwp address space, src is in current thread space */
  683. size_t lwp_data_put(struct rt_lwp *lwp, void *dst, void *src, size_t size)
  684. {
  685. size_t copy_len = 0;
  686. char *temp_page = 0;
  687. char *dst_iter, *dst_iter_aligned, *dst_next_page;
  688. char *src_put_end, *src_iter;
  689. if (!size || !dst)
  690. {
  691. return 0;
  692. }
  693. src_iter = src;
  694. dst_iter = dst;
  695. src_put_end = dst + size;
  696. dst_next_page =
  697. (char *)(((size_t)dst_iter + ARCH_PAGE_SIZE) & ~(ARCH_PAGE_SIZE - 1));
  698. do
  699. {
  700. size_t bytes_to_put = (char *)dst_next_page - (char *)dst_iter;
  701. if (bytes_to_put > size)
  702. {
  703. bytes_to_put = size;
  704. }
  705. if (ALIGNED(dst_iter) && bytes_to_put == ARCH_PAGE_SIZE)
  706. {
  707. /* write to page in kernel */
  708. if (rt_aspace_page_put(lwp->aspace, dst_iter, src_iter))
  709. break;
  710. }
  711. else
  712. {
  713. if (!temp_page)
  714. temp_page = rt_pages_alloc_ext(0, PAGE_ANY_AVAILABLE);
  715. if (!temp_page)
  716. break;
  717. dst_iter_aligned = (void *)((long)dst_iter & ~ARCH_PAGE_MASK);
  718. if (rt_aspace_page_get(lwp->aspace, dst_iter_aligned, temp_page))
  719. break;
  720. memcpy(temp_page + (dst_iter - dst_iter_aligned), src_iter, bytes_to_put);
  721. if (rt_aspace_page_put(lwp->aspace, dst_iter_aligned, temp_page))
  722. break;
  723. }
  724. src_iter = src_iter + bytes_to_put;
  725. dst_iter = dst_iter + bytes_to_put;
  726. size -= bytes_to_put;
  727. dst_next_page = dst_next_page + ARCH_PAGE_SIZE;
  728. copy_len += bytes_to_put;
  729. } while (dst_iter < src_put_end);
  730. if (temp_page)
  731. rt_pages_free(temp_page, 0);
  732. return copy_len;
  733. }
  734. /* Set N bytes of S to C */
  735. size_t lwp_data_set(struct rt_lwp *lwp, void *dst, int byte, size_t size)
  736. {
  737. size_t copy_len = 0;
  738. char *temp_page = 0;
  739. char *dst_iter, *dst_iter_aligned, *dst_next_page;
  740. char *dst_put_end;
  741. if (!size || !dst)
  742. {
  743. return 0;
  744. }
  745. dst_iter = dst;
  746. dst_put_end = dst + size;
  747. dst_next_page =
  748. (char *)(((size_t)dst_iter + ARCH_PAGE_SIZE) & ~(ARCH_PAGE_SIZE - 1));
  749. temp_page = rt_pages_alloc_ext(0, PAGE_ANY_AVAILABLE);
  750. if (temp_page)
  751. {
  752. do
  753. {
  754. size_t bytes_to_put = (char *)dst_next_page - (char *)dst_iter;
  755. if (bytes_to_put > size)
  756. {
  757. bytes_to_put = size;
  758. }
  759. dst_iter_aligned = (void *)((long)dst_iter & ~ARCH_PAGE_MASK);
  760. if (!ALIGNED(dst_iter) || bytes_to_put != ARCH_PAGE_SIZE)
  761. if (rt_aspace_page_get(lwp->aspace, dst_iter_aligned, temp_page))
  762. break;
  763. memset(temp_page + (dst_iter - dst_iter_aligned), byte, bytes_to_put);
  764. if (rt_aspace_page_put(lwp->aspace, dst_iter_aligned, temp_page))
  765. break;
  766. dst_iter = dst_iter + bytes_to_put;
  767. size -= bytes_to_put;
  768. dst_next_page = dst_next_page + ARCH_PAGE_SIZE;
  769. copy_len += bytes_to_put;
  770. } while (dst_iter < dst_put_end);
  771. rt_pages_free(temp_page, 0);
  772. }
  773. return copy_len;
  774. }
  775. size_t lwp_user_strlen_ext(struct rt_lwp *lwp, const char *s)
  776. {
  777. int len = 0;
  778. char *temp_buf = RT_NULL;
  779. void *addr_start = RT_NULL;
  780. int get_bytes = 0;
  781. int index = 0;
  782. if (s == RT_NULL)
  783. return 0;
  784. if (lwp == RT_NULL)
  785. {
  786. LOG_W("%s: lwp is NULL", __func__);
  787. return -1;
  788. }
  789. addr_start = (void *)s;
  790. temp_buf = rt_pages_alloc_ext(0, PAGE_ANY_AVAILABLE);
  791. if (!temp_buf)
  792. {
  793. LOG_W("%s: No memory", __func__);
  794. return -1;
  795. }
  796. get_bytes = lwp_data_get(lwp, temp_buf, addr_start, ARCH_PAGE_SIZE);
  797. if (get_bytes == 0)
  798. {
  799. LOG_I("lwp_data_get(lwp=%p,dst=0x%lx,src=0x%lx,size=0x1000) failed", lwp, temp_buf, addr_start);
  800. rt_pages_free(temp_buf, 0);
  801. return -1;
  802. }
  803. while (temp_buf[index] != '\0')
  804. {
  805. len++;
  806. index++;
  807. if (index == get_bytes)
  808. {
  809. if (get_bytes == ARCH_PAGE_SIZE)
  810. {
  811. get_bytes = lwp_data_get(lwp, temp_buf, addr_start + len, ARCH_PAGE_SIZE);
  812. if (get_bytes == 0)
  813. {
  814. LOG_I("lwp_data_get(lwp=%p,dst=0x%lx,src=0x%lx,size=0x1000): user data unaccessible",
  815. lwp, temp_buf, addr_start);
  816. len = -1;
  817. break;
  818. }
  819. index = 0;
  820. }
  821. else
  822. {
  823. LOG_I("lwp_data_get(lwp=%p,dst=0x%lx,src=0x%lx,size=0x1000): user data unaccessible",
  824. lwp, temp_buf, addr_start);
  825. len = -1;
  826. break;
  827. }
  828. }
  829. }
  830. rt_pages_free(temp_buf, 0);
  831. return len;
  832. }
  833. size_t lwp_user_strlen(const char *s)
  834. {
  835. struct rt_lwp *lwp = RT_NULL;
  836. lwp = lwp_self();
  837. RT_ASSERT(lwp != RT_NULL);
  838. return lwp_user_strlen_ext(lwp, s);
  839. }
  840. size_t lwp_strlen(struct rt_lwp *lwp, const char *s)
  841. {
  842. if (lwp_in_user_space(s))
  843. return lwp_user_strlen_ext(lwp, s);
  844. else
  845. return strlen(s);
  846. }
  847. char** lwp_get_command_line_args(struct rt_lwp *lwp)
  848. {
  849. size_t argc = 0;
  850. char** argv = NULL;
  851. int ret;
  852. size_t i;
  853. size_t len;
  854. if (lwp)
  855. {
  856. ret = lwp_data_get(lwp, &argc, lwp->args, sizeof(argc));
  857. if (ret == 0)
  858. {
  859. return RT_NULL;
  860. }
  861. argv = (char**)rt_malloc((argc + 1) * sizeof(char*));
  862. if (argv)
  863. {
  864. for (i = 0; i < argc; i++)
  865. {
  866. char *argvp = NULL;
  867. ret = lwp_data_get(lwp, &argvp, &((char **)lwp->args)[1 + i], sizeof(argvp));
  868. if (ret == 0)
  869. {
  870. lwp_free_command_line_args(argv);
  871. return RT_NULL;
  872. }
  873. len = lwp_user_strlen_ext(lwp, argvp);
  874. if (len > 0)
  875. {
  876. argv[i] = (char*)rt_malloc(len + 1);
  877. ret = lwp_data_get(lwp, argv[i], argvp, len);
  878. if (ret == 0)
  879. {
  880. lwp_free_command_line_args(argv);
  881. return RT_NULL;
  882. }
  883. argv[i][len] = '\0';
  884. }
  885. else
  886. {
  887. argv[i] = NULL;
  888. }
  889. }
  890. argv[argc] = NULL;
  891. }
  892. }
  893. return argv;
  894. }
  895. void lwp_free_command_line_args(char** argv)
  896. {
  897. size_t i;
  898. if (argv)
  899. {
  900. for (i = 0; argv[i]; i++)
  901. {
  902. rt_free(argv[i]);
  903. }
  904. rt_free(argv);
  905. }
  906. }
  907. #endif