mm_aspace.h 10.0 KB

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  1. /*
  2. * Copyright (c) 2006-2023, RT-Thread Development Team
  3. *
  4. * SPDX-License-Identifier: Apache-2.0
  5. *
  6. * Change Logs:
  7. * Date Author Notes
  8. * 2022-11-14 WangXiaoyao the first version
  9. * 2023-08-17 Shell Add unmap_range for MAP_PRIVATE
  10. */
  11. #ifndef __MM_ASPACE_H__
  12. #define __MM_ASPACE_H__
  13. #include <rthw.h>
  14. #include <rtthread.h>
  15. #include "avl_adpt.h"
  16. #include "mm_fault.h"
  17. #include "mm_flag.h"
  18. #include <stddef.h>
  19. #include <string.h>
  20. #define MM_PAGE_SHIFT 12
  21. #define MM_PA_TO_OFF(pa) ((uintptr_t)(pa) >> MM_PAGE_SHIFT)
  22. #define PV_OFFSET (rt_kmem_pvoff())
  23. typedef struct rt_spinlock mm_spinlock_t;
  24. #define MM_PGTBL_LOCK_INIT(aspace) (rt_spin_lock_init(&((aspace)->pgtbl_lock)))
  25. #define MM_PGTBL_LOCK(aspace) (rt_spin_lock(&((aspace)->pgtbl_lock)))
  26. #define MM_PGTBL_UNLOCK(aspace) (rt_spin_unlock(&((aspace)->pgtbl_lock)))
  27. struct rt_aspace;
  28. struct rt_varea;
  29. struct rt_mem_obj;
  30. extern struct rt_aspace rt_kernel_space;
  31. typedef struct rt_aspace
  32. {
  33. void *start;
  34. rt_size_t size;
  35. void *page_table;
  36. mm_spinlock_t pgtbl_lock;
  37. struct _aspace_tree tree;
  38. struct rt_mutex bst_lock;
  39. struct rt_mem_obj *private_object;
  40. #ifdef ARCH_USING_ASID
  41. rt_uint64_t asid;
  42. #endif /* ARCH_USING_ASID */
  43. } *rt_aspace_t;
  44. typedef struct rt_varea
  45. {
  46. void *start;
  47. rt_size_t size;
  48. rt_size_t offset;
  49. rt_size_t attr;
  50. rt_size_t flag;
  51. struct rt_aspace *aspace;
  52. struct rt_mem_obj *mem_obj;
  53. struct _aspace_node node;
  54. void *data;
  55. } *rt_varea_t;
  56. typedef struct rt_mm_va_hint
  57. {
  58. void *limit_start;
  59. rt_size_t limit_range_size;
  60. void *prefer;
  61. const rt_size_t map_size;
  62. mm_flag_t flags;
  63. } *rt_mm_va_hint_t;
  64. typedef struct rt_mem_obj
  65. {
  66. void (*hint_free)(rt_mm_va_hint_t hint);
  67. void (*on_page_fault)(struct rt_varea *varea, struct rt_aspace_fault_msg *msg);
  68. /* do pre open bushiness like inc a ref */
  69. void (*on_varea_open)(struct rt_varea *varea);
  70. /* do post close bushiness like def a ref */
  71. void (*on_varea_close)(struct rt_varea *varea);
  72. /* do preparation for address space modification of varea */
  73. rt_err_t (*on_varea_shrink)(struct rt_varea *varea, void *new_vaddr, rt_size_t size);
  74. /* do preparation for address space modification of varea */
  75. rt_err_t (*on_varea_expand)(struct rt_varea *varea, void *new_vaddr, rt_size_t size);
  76. /**
  77. * this is like an on_varea_open() to `subset`, and an on_varea_shrink() to `existed`
  78. * while resource can migrate from `existed` to `subset` at the same time
  79. */
  80. rt_err_t (*on_varea_split)(struct rt_varea *existed, void *unmap_start,
  81. rt_size_t unmap_len, struct rt_varea *subset);
  82. /**
  83. * this is like a on_varea_expand() to `merge_to` and on_varea_close() to `merge_from`
  84. * while resource can migrate from `merge_from` to `merge_to` at the same time
  85. */
  86. rt_err_t (*on_varea_merge)(struct rt_varea *merge_to, struct rt_varea *merge_from);
  87. /* dynamic mem_obj API */
  88. void (*page_read)(struct rt_varea *varea, struct rt_aspace_io_msg *msg);
  89. void (*page_write)(struct rt_varea *varea, struct rt_aspace_io_msg *msg);
  90. const char *(*get_name)(rt_varea_t varea);
  91. void *(*on_varea_mremap)(struct rt_varea *varea, rt_size_t new_size, int flags, void *new_address);
  92. } *rt_mem_obj_t;
  93. extern struct rt_mem_obj rt_mm_dummy_mapper;
  94. enum rt_mmu_cntl
  95. {
  96. MMU_CNTL_NONCACHE,
  97. MMU_CNTL_CACHE,
  98. MMU_CNTL_READONLY,
  99. MMU_CNTL_READWRITE,
  100. MMU_CNTL_OFFLOAD,
  101. MMU_CNTL_INSTALL,
  102. MMU_CNTL_DUMMY_END,
  103. };
  104. /**
  105. * @brief Lock to access page table of address space
  106. */
  107. #define WR_LOCK(aspace) \
  108. rt_thread_self() ? rt_mutex_take(&(aspace)->bst_lock, RT_WAITING_FOREVER) \
  109. : 0
  110. #define WR_UNLOCK(aspace) \
  111. rt_thread_self() ? rt_mutex_release(&(aspace)->bst_lock) : 0
  112. /* FIXME: fix rd_lock */
  113. #define RD_LOCK(aspace) WR_LOCK(aspace)
  114. #define RD_UNLOCK(aspace) WR_UNLOCK(aspace)
  115. #define RDWR_LOCK(aspace) ((void)aspace)
  116. #define RDWR_UNLOCK(aspace) ((void)aspace)
  117. rt_aspace_t rt_aspace_create(void *start, rt_size_t length, void *pgtbl);
  118. rt_err_t rt_aspace_init(rt_aspace_t aspace, void *start, rt_size_t length, void *pgtbl);
  119. void rt_aspace_delete(rt_aspace_t aspace);
  120. void rt_aspace_detach(rt_aspace_t aspace);
  121. /**
  122. * @brief Memory Map on Virtual Address Space to Mappable Object
  123. * *INFO There is no restriction to use NULL address(physical/virtual).
  124. * Vaddr passing in addr must be page aligned. If vaddr is RT_NULL,
  125. * a suitable address will be chose automatically.
  126. *
  127. * @param aspace target virtual address space
  128. * @param addr virtual address of the mapping
  129. * @param length length of mapping region
  130. * @param attr MMU attribution
  131. * @param flags desired memory protection and behaviour of the mapping
  132. * @param mem_obj memory map backing store object
  133. * @param offset offset of mapping in 4KB page for mem_obj
  134. * @return int E_OK on success, with addr set to vaddr of mapping
  135. * E_INVAL
  136. */
  137. int rt_aspace_map(rt_aspace_t aspace, void **addr, rt_size_t length, rt_size_t attr,
  138. mm_flag_t flags, rt_mem_obj_t mem_obj, rt_size_t offset);
  139. /** no malloc routines call */
  140. int rt_aspace_map_static(rt_aspace_t aspace, rt_varea_t varea, void **addr,
  141. rt_size_t length, rt_size_t attr, mm_flag_t flags,
  142. rt_mem_obj_t mem_obj, rt_size_t offset);
  143. /**
  144. * @brief Memory Map on Virtual Address Space to Physical Memory
  145. *
  146. * @param aspace target virtual address space
  147. * @param hint hint of mapping va
  148. * @param attr MMU attribution
  149. * @param pa_off (physical address >> 12)
  150. * @param ret_va pointer to the location to store va
  151. * @return int E_OK on success, with ret_va set to vaddr of mapping
  152. * E_INVAL
  153. */
  154. int rt_aspace_map_phy(rt_aspace_t aspace, rt_mm_va_hint_t hint, rt_size_t attr,
  155. rt_size_t pa_off, void **ret_va);
  156. /** no malloc routines call */
  157. int rt_aspace_map_phy_static(rt_aspace_t aspace, rt_varea_t varea,
  158. rt_mm_va_hint_t hint, rt_size_t attr, rt_size_t pa_off,
  159. void **ret_va);
  160. /** map a private memory region to aspace */
  161. int rt_aspace_map_private(rt_aspace_t aspace, void **addr, rt_size_t length,
  162. rt_size_t attr, mm_flag_t flags);
  163. /**
  164. * @brief Remove mappings containing address specified by addr
  165. *
  166. * @param aspace target virtual address space
  167. * @param addr addresses that mapping to be removed contains
  168. * @return int rt errno
  169. */
  170. int rt_aspace_unmap(rt_aspace_t aspace, void *addr);
  171. /**
  172. * @brief Remove pages of existed mappings in the range [addr, addr+length)
  173. * Length is automatically rounded up to the next multiple of the page size.
  174. *
  175. * @param aspace target virtual address space
  176. * @param addr the beginning of the range of pages to be unmapped
  177. * @param length length of range in bytes
  178. * @return int rt errno
  179. */
  180. int rt_aspace_unmap_range(rt_aspace_t aspace, void *addr, size_t length);
  181. void *rt_aspace_mremap_range(rt_aspace_t aspace, void *old_address, size_t old_size,
  182. size_t new_size, int flags, void *new_address);
  183. int rt_aspace_control(rt_aspace_t aspace, void *addr, enum rt_mmu_cntl cmd);
  184. int rt_aspace_load_page(rt_aspace_t aspace, void *addr, rt_size_t npage);
  185. int rt_aspace_offload_page(rt_aspace_t aspace, void *addr, rt_size_t npage);
  186. rt_err_t rt_aspace_page_put(rt_aspace_t aspace, void *page_va, void *buffer);
  187. rt_err_t rt_aspace_page_get(rt_aspace_t aspace, void *page_va, void *buffer);
  188. int rt_aspace_traversal(rt_aspace_t aspace,
  189. int (*fn)(rt_varea_t varea, void *arg), void *arg);
  190. void rt_aspace_print_all(rt_aspace_t aspace);
  191. rt_base_t rt_aspace_count_vsz(rt_aspace_t aspace);
  192. rt_varea_t rt_aspace_query(rt_aspace_t aspace, void *vaddr);
  193. rt_err_t rt_aspace_duplicate_locked(rt_aspace_t src, rt_aspace_t dst);
  194. rt_err_t rt_aspace_fork(rt_aspace_t *psrc, rt_aspace_t *pdst);
  195. rt_err_t rt_aspace_compare(rt_aspace_t src, rt_aspace_t dst);
  196. /**
  197. * @brief Map one page to varea
  198. *
  199. * @note caller should take the read/write lock
  200. *
  201. * @param varea target varea
  202. * @param addr user address
  203. * @param page the page frame to be mapped
  204. * @return int
  205. */
  206. int rt_varea_map_page(rt_varea_t varea, void *vaddr, void *page);
  207. /**
  208. * @brief Unmap one page in varea
  209. *
  210. * @note caller should take the read/write lock
  211. *
  212. * @param varea target varea
  213. * @param addr user address
  214. * @param page the page frame to be mapped
  215. * @return int
  216. */
  217. int rt_varea_unmap_page(rt_varea_t varea, void *vaddr);
  218. /**
  219. * @brief Map a range of physical address to varea
  220. *
  221. * @warning Caller should take care of synchronization of its varea among all
  222. * the map/unmap operation
  223. *
  224. * @param varea target varea
  225. * @param vaddr user address
  226. * @param paddr physical address
  227. * @param length map range
  228. * @return int
  229. */
  230. int rt_varea_map_range(rt_varea_t varea, void *vaddr, void *paddr, rt_size_t length);
  231. /**
  232. * @brief Unmap a range of physical address in varea
  233. *
  234. * @warning Caller should take care of synchronization of its varea among all
  235. * the map/unmap operation
  236. *
  237. * @param varea target varea
  238. * @param vaddr user address
  239. * @param length map range
  240. * @return int
  241. */
  242. int rt_varea_unmap_range(rt_varea_t varea, void *vaddr, rt_size_t length);
  243. /**
  244. * @brief Insert page to page manager of varea
  245. * The page will be freed by varea on uninstall automatically
  246. *
  247. * @param varea target varea
  248. * @param page_addr the page frame to be added
  249. */
  250. void rt_varea_pgmgr_insert(rt_varea_t varea, void *page_addr);
  251. rt_inline rt_mem_obj_t rt_mem_obj_create(rt_mem_obj_t source)
  252. {
  253. rt_mem_obj_t target;
  254. target = rt_malloc(sizeof(*target));
  255. if (target)
  256. memcpy(target, source, sizeof(*target));
  257. return target;
  258. }
  259. const rt_ubase_t rt_kmem_pvoff(void);
  260. void rt_kmem_pvoff_set(rt_ubase_t pvoff);
  261. int rt_kmem_map_phy(void *va, void *pa, rt_size_t length, rt_size_t attr);
  262. void *rt_kmem_v2p(void *vaddr);
  263. void *rt_kmem_p2v(void *paddr);
  264. void rt_kmem_list(void);
  265. #endif /* __MM_ASPACE_H__ */