mm.c 8.4 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * ACRN: Memory mapping management
  4. *
  5. * Copyright (C) 2020 Intel Corporation. All rights reserved.
  6. *
  7. * Authors:
  8. * Fei Li <[email protected]>
  9. * Shuo Liu <[email protected]>
  10. */
  11. #include <linux/io.h>
  12. #include <linux/mm.h>
  13. #include <linux/slab.h>
  14. #include "acrn_drv.h"
  15. static int modify_region(struct acrn_vm *vm, struct vm_memory_region_op *region)
  16. {
  17. struct vm_memory_region_batch *regions;
  18. int ret;
  19. regions = kzalloc(sizeof(*regions), GFP_KERNEL);
  20. if (!regions)
  21. return -ENOMEM;
  22. regions->vmid = vm->vmid;
  23. regions->regions_num = 1;
  24. regions->regions_gpa = virt_to_phys(region);
  25. ret = hcall_set_memory_regions(virt_to_phys(regions));
  26. if (ret < 0)
  27. dev_dbg(acrn_dev.this_device,
  28. "Failed to set memory region for VM[%u]!\n", vm->vmid);
  29. kfree(regions);
  30. return ret;
  31. }
  32. /**
  33. * acrn_mm_region_add() - Set up the EPT mapping of a memory region.
  34. * @vm: User VM.
  35. * @user_gpa: A GPA of User VM.
  36. * @service_gpa: A GPA of Service VM.
  37. * @size: Size of the region.
  38. * @mem_type: Combination of ACRN_MEM_TYPE_*.
  39. * @mem_access_right: Combination of ACRN_MEM_ACCESS_*.
  40. *
  41. * Return: 0 on success, <0 on error.
  42. */
  43. int acrn_mm_region_add(struct acrn_vm *vm, u64 user_gpa, u64 service_gpa,
  44. u64 size, u32 mem_type, u32 mem_access_right)
  45. {
  46. struct vm_memory_region_op *region;
  47. int ret = 0;
  48. region = kzalloc(sizeof(*region), GFP_KERNEL);
  49. if (!region)
  50. return -ENOMEM;
  51. region->type = ACRN_MEM_REGION_ADD;
  52. region->user_vm_pa = user_gpa;
  53. region->service_vm_pa = service_gpa;
  54. region->size = size;
  55. region->attr = ((mem_type & ACRN_MEM_TYPE_MASK) |
  56. (mem_access_right & ACRN_MEM_ACCESS_RIGHT_MASK));
  57. ret = modify_region(vm, region);
  58. dev_dbg(acrn_dev.this_device,
  59. "%s: user-GPA[%pK] service-GPA[%pK] size[0x%llx].\n",
  60. __func__, (void *)user_gpa, (void *)service_gpa, size);
  61. kfree(region);
  62. return ret;
  63. }
  64. /**
  65. * acrn_mm_region_del() - Del the EPT mapping of a memory region.
  66. * @vm: User VM.
  67. * @user_gpa: A GPA of the User VM.
  68. * @size: Size of the region.
  69. *
  70. * Return: 0 on success, <0 for error.
  71. */
  72. int acrn_mm_region_del(struct acrn_vm *vm, u64 user_gpa, u64 size)
  73. {
  74. struct vm_memory_region_op *region;
  75. int ret = 0;
  76. region = kzalloc(sizeof(*region), GFP_KERNEL);
  77. if (!region)
  78. return -ENOMEM;
  79. region->type = ACRN_MEM_REGION_DEL;
  80. region->user_vm_pa = user_gpa;
  81. region->service_vm_pa = 0UL;
  82. region->size = size;
  83. region->attr = 0U;
  84. ret = modify_region(vm, region);
  85. dev_dbg(acrn_dev.this_device, "%s: user-GPA[%pK] size[0x%llx].\n",
  86. __func__, (void *)user_gpa, size);
  87. kfree(region);
  88. return ret;
  89. }
  90. int acrn_vm_memseg_map(struct acrn_vm *vm, struct acrn_vm_memmap *memmap)
  91. {
  92. int ret;
  93. if (memmap->type == ACRN_MEMMAP_RAM)
  94. return acrn_vm_ram_map(vm, memmap);
  95. if (memmap->type != ACRN_MEMMAP_MMIO) {
  96. dev_dbg(acrn_dev.this_device,
  97. "Invalid memmap type: %u\n", memmap->type);
  98. return -EINVAL;
  99. }
  100. ret = acrn_mm_region_add(vm, memmap->user_vm_pa,
  101. memmap->service_vm_pa, memmap->len,
  102. ACRN_MEM_TYPE_UC, memmap->attr);
  103. if (ret < 0)
  104. dev_dbg(acrn_dev.this_device,
  105. "Add memory region failed, VM[%u]!\n", vm->vmid);
  106. return ret;
  107. }
  108. int acrn_vm_memseg_unmap(struct acrn_vm *vm, struct acrn_vm_memmap *memmap)
  109. {
  110. int ret;
  111. if (memmap->type != ACRN_MEMMAP_MMIO) {
  112. dev_dbg(acrn_dev.this_device,
  113. "Invalid memmap type: %u\n", memmap->type);
  114. return -EINVAL;
  115. }
  116. ret = acrn_mm_region_del(vm, memmap->user_vm_pa, memmap->len);
  117. if (ret < 0)
  118. dev_dbg(acrn_dev.this_device,
  119. "Del memory region failed, VM[%u]!\n", vm->vmid);
  120. return ret;
  121. }
  122. /**
  123. * acrn_vm_ram_map() - Create a RAM EPT mapping of User VM.
  124. * @vm: The User VM pointer
  125. * @memmap: Info of the EPT mapping
  126. *
  127. * Return: 0 on success, <0 for error.
  128. */
  129. int acrn_vm_ram_map(struct acrn_vm *vm, struct acrn_vm_memmap *memmap)
  130. {
  131. struct vm_memory_region_batch *regions_info;
  132. int nr_pages, i = 0, order, nr_regions = 0;
  133. struct vm_memory_mapping *region_mapping;
  134. struct vm_memory_region_op *vm_region;
  135. struct page **pages = NULL, *page;
  136. void *remap_vaddr;
  137. int ret, pinned;
  138. u64 user_vm_pa;
  139. unsigned long pfn;
  140. struct vm_area_struct *vma;
  141. if (!vm || !memmap)
  142. return -EINVAL;
  143. mmap_read_lock(current->mm);
  144. vma = vma_lookup(current->mm, memmap->vma_base);
  145. if (vma && ((vma->vm_flags & VM_PFNMAP) != 0)) {
  146. if ((memmap->vma_base + memmap->len) > vma->vm_end) {
  147. mmap_read_unlock(current->mm);
  148. return -EINVAL;
  149. }
  150. ret = follow_pfn(vma, memmap->vma_base, &pfn);
  151. mmap_read_unlock(current->mm);
  152. if (ret < 0) {
  153. dev_dbg(acrn_dev.this_device,
  154. "Failed to lookup PFN at VMA:%pK.\n", (void *)memmap->vma_base);
  155. return ret;
  156. }
  157. return acrn_mm_region_add(vm, memmap->user_vm_pa,
  158. PFN_PHYS(pfn), memmap->len,
  159. ACRN_MEM_TYPE_WB, memmap->attr);
  160. }
  161. mmap_read_unlock(current->mm);
  162. /* Get the page number of the map region */
  163. nr_pages = memmap->len >> PAGE_SHIFT;
  164. pages = vzalloc(array_size(nr_pages, sizeof(*pages)));
  165. if (!pages)
  166. return -ENOMEM;
  167. /* Lock the pages of user memory map region */
  168. pinned = pin_user_pages_fast(memmap->vma_base,
  169. nr_pages, FOLL_WRITE | FOLL_LONGTERM,
  170. pages);
  171. if (pinned < 0) {
  172. ret = pinned;
  173. goto free_pages;
  174. } else if (pinned != nr_pages) {
  175. ret = -EFAULT;
  176. goto put_pages;
  177. }
  178. /* Create a kernel map for the map region */
  179. remap_vaddr = vmap(pages, nr_pages, VM_MAP, PAGE_KERNEL);
  180. if (!remap_vaddr) {
  181. ret = -ENOMEM;
  182. goto put_pages;
  183. }
  184. /* Record Service VM va <-> User VM pa mapping */
  185. mutex_lock(&vm->regions_mapping_lock);
  186. region_mapping = &vm->regions_mapping[vm->regions_mapping_count];
  187. if (vm->regions_mapping_count < ACRN_MEM_MAPPING_MAX) {
  188. region_mapping->pages = pages;
  189. region_mapping->npages = nr_pages;
  190. region_mapping->size = memmap->len;
  191. region_mapping->service_vm_va = remap_vaddr;
  192. region_mapping->user_vm_pa = memmap->user_vm_pa;
  193. vm->regions_mapping_count++;
  194. } else {
  195. dev_warn(acrn_dev.this_device,
  196. "Run out of memory mapping slots!\n");
  197. ret = -ENOMEM;
  198. mutex_unlock(&vm->regions_mapping_lock);
  199. goto unmap_no_count;
  200. }
  201. mutex_unlock(&vm->regions_mapping_lock);
  202. /* Calculate count of vm_memory_region_op */
  203. while (i < nr_pages) {
  204. page = pages[i];
  205. VM_BUG_ON_PAGE(PageTail(page), page);
  206. order = compound_order(page);
  207. nr_regions++;
  208. i += 1 << order;
  209. }
  210. /* Prepare the vm_memory_region_batch */
  211. regions_info = kzalloc(struct_size(regions_info, regions_op,
  212. nr_regions), GFP_KERNEL);
  213. if (!regions_info) {
  214. ret = -ENOMEM;
  215. goto unmap_kernel_map;
  216. }
  217. /* Fill each vm_memory_region_op */
  218. vm_region = regions_info->regions_op;
  219. regions_info->vmid = vm->vmid;
  220. regions_info->regions_num = nr_regions;
  221. regions_info->regions_gpa = virt_to_phys(vm_region);
  222. user_vm_pa = memmap->user_vm_pa;
  223. i = 0;
  224. while (i < nr_pages) {
  225. u32 region_size;
  226. page = pages[i];
  227. VM_BUG_ON_PAGE(PageTail(page), page);
  228. order = compound_order(page);
  229. region_size = PAGE_SIZE << order;
  230. vm_region->type = ACRN_MEM_REGION_ADD;
  231. vm_region->user_vm_pa = user_vm_pa;
  232. vm_region->service_vm_pa = page_to_phys(page);
  233. vm_region->size = region_size;
  234. vm_region->attr = (ACRN_MEM_TYPE_WB & ACRN_MEM_TYPE_MASK) |
  235. (memmap->attr & ACRN_MEM_ACCESS_RIGHT_MASK);
  236. vm_region++;
  237. user_vm_pa += region_size;
  238. i += 1 << order;
  239. }
  240. /* Inform the ACRN Hypervisor to set up EPT mappings */
  241. ret = hcall_set_memory_regions(virt_to_phys(regions_info));
  242. if (ret < 0) {
  243. dev_dbg(acrn_dev.this_device,
  244. "Failed to set regions, VM[%u]!\n", vm->vmid);
  245. goto unset_region;
  246. }
  247. kfree(regions_info);
  248. dev_dbg(acrn_dev.this_device,
  249. "%s: VM[%u] service-GVA[%pK] user-GPA[%pK] size[0x%llx]\n",
  250. __func__, vm->vmid,
  251. remap_vaddr, (void *)memmap->user_vm_pa, memmap->len);
  252. return ret;
  253. unset_region:
  254. kfree(regions_info);
  255. unmap_kernel_map:
  256. mutex_lock(&vm->regions_mapping_lock);
  257. vm->regions_mapping_count--;
  258. mutex_unlock(&vm->regions_mapping_lock);
  259. unmap_no_count:
  260. vunmap(remap_vaddr);
  261. put_pages:
  262. for (i = 0; i < pinned; i++)
  263. unpin_user_page(pages[i]);
  264. free_pages:
  265. vfree(pages);
  266. return ret;
  267. }
  268. /**
  269. * acrn_vm_all_ram_unmap() - Destroy a RAM EPT mapping of User VM.
  270. * @vm: The User VM
  271. */
  272. void acrn_vm_all_ram_unmap(struct acrn_vm *vm)
  273. {
  274. struct vm_memory_mapping *region_mapping;
  275. int i, j;
  276. mutex_lock(&vm->regions_mapping_lock);
  277. for (i = 0; i < vm->regions_mapping_count; i++) {
  278. region_mapping = &vm->regions_mapping[i];
  279. vunmap(region_mapping->service_vm_va);
  280. for (j = 0; j < region_mapping->npages; j++)
  281. unpin_user_page(region_mapping->pages[j]);
  282. vfree(region_mapping->pages);
  283. }
  284. mutex_unlock(&vm->regions_mapping_lock);
  285. }