vfio_dma_mapping_test.c 7.6 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. #include <stdio.h>
  3. #include <sys/mman.h>
  4. #include <unistd.h>
  5. #include <linux/iommufd.h>
  6. #include <linux/limits.h>
  7. #include <linux/mman.h>
  8. #include <linux/sizes.h>
  9. #include <linux/vfio.h>
  10. #include <libvfio.h>
  11. #include "kselftest_harness.h"
  12. static const char *device_bdf;
  13. struct iommu_mapping {
  14. u64 pgd;
  15. u64 p4d;
  16. u64 pud;
  17. u64 pmd;
  18. u64 pte;
  19. };
  20. static void parse_next_value(char **line, u64 *value)
  21. {
  22. char *token;
  23. token = strtok_r(*line, " \t|\n", line);
  24. if (!token)
  25. return;
  26. /* Caller verifies `value`. No need to check return value. */
  27. sscanf(token, "0x%lx", value);
  28. }
  29. static int intel_iommu_mapping_get(const char *bdf, u64 iova,
  30. struct iommu_mapping *mapping)
  31. {
  32. char iommu_mapping_path[PATH_MAX], line[PATH_MAX];
  33. u64 line_iova = -1;
  34. int ret = -ENOENT;
  35. FILE *file;
  36. char *rest;
  37. snprintf(iommu_mapping_path, sizeof(iommu_mapping_path),
  38. "/sys/kernel/debug/iommu/intel/%s/domain_translation_struct",
  39. bdf);
  40. printf("Searching for IOVA 0x%lx in %s\n", iova, iommu_mapping_path);
  41. file = fopen(iommu_mapping_path, "r");
  42. VFIO_ASSERT_NOT_NULL(file, "fopen(%s) failed", iommu_mapping_path);
  43. while (fgets(line, sizeof(line), file)) {
  44. rest = line;
  45. parse_next_value(&rest, &line_iova);
  46. if (line_iova != (iova / getpagesize()))
  47. continue;
  48. /*
  49. * Ensure each struct field is initialized in case of empty
  50. * page table values.
  51. */
  52. memset(mapping, 0, sizeof(*mapping));
  53. parse_next_value(&rest, &mapping->pgd);
  54. parse_next_value(&rest, &mapping->p4d);
  55. parse_next_value(&rest, &mapping->pud);
  56. parse_next_value(&rest, &mapping->pmd);
  57. parse_next_value(&rest, &mapping->pte);
  58. ret = 0;
  59. break;
  60. }
  61. fclose(file);
  62. if (ret)
  63. printf("IOVA not found\n");
  64. return ret;
  65. }
  66. static int iommu_mapping_get(const char *bdf, u64 iova,
  67. struct iommu_mapping *mapping)
  68. {
  69. if (!access("/sys/kernel/debug/iommu/intel", F_OK))
  70. return intel_iommu_mapping_get(bdf, iova, mapping);
  71. return -EOPNOTSUPP;
  72. }
  73. FIXTURE(vfio_dma_mapping_test) {
  74. struct iommu *iommu;
  75. struct vfio_pci_device *device;
  76. struct iova_allocator *iova_allocator;
  77. };
  78. FIXTURE_VARIANT(vfio_dma_mapping_test) {
  79. const char *iommu_mode;
  80. u64 size;
  81. int mmap_flags;
  82. };
  83. #define FIXTURE_VARIANT_ADD_IOMMU_MODE(_iommu_mode, _name, _size, _mmap_flags) \
  84. FIXTURE_VARIANT_ADD(vfio_dma_mapping_test, _iommu_mode ## _ ## _name) { \
  85. .iommu_mode = #_iommu_mode, \
  86. .size = (_size), \
  87. .mmap_flags = MAP_ANONYMOUS | MAP_PRIVATE | (_mmap_flags), \
  88. }
  89. FIXTURE_VARIANT_ADD_ALL_IOMMU_MODES(anonymous, 0, 0);
  90. FIXTURE_VARIANT_ADD_ALL_IOMMU_MODES(anonymous_hugetlb_2mb, SZ_2M, MAP_HUGETLB | MAP_HUGE_2MB);
  91. FIXTURE_VARIANT_ADD_ALL_IOMMU_MODES(anonymous_hugetlb_1gb, SZ_1G, MAP_HUGETLB | MAP_HUGE_1GB);
  92. #undef FIXTURE_VARIANT_ADD_IOMMU_MODE
  93. FIXTURE_SETUP(vfio_dma_mapping_test)
  94. {
  95. self->iommu = iommu_init(variant->iommu_mode);
  96. self->device = vfio_pci_device_init(device_bdf, self->iommu);
  97. self->iova_allocator = iova_allocator_init(self->iommu);
  98. }
  99. FIXTURE_TEARDOWN(vfio_dma_mapping_test)
  100. {
  101. iova_allocator_cleanup(self->iova_allocator);
  102. vfio_pci_device_cleanup(self->device);
  103. iommu_cleanup(self->iommu);
  104. }
  105. TEST_F(vfio_dma_mapping_test, dma_map_unmap)
  106. {
  107. const u64 size = variant->size ?: getpagesize();
  108. const int flags = variant->mmap_flags;
  109. struct dma_region region;
  110. struct iommu_mapping mapping;
  111. u64 mapping_size = size;
  112. u64 unmapped;
  113. int rc;
  114. region.vaddr = mmap(NULL, size, PROT_READ | PROT_WRITE, flags, -1, 0);
  115. /* Skip the test if there aren't enough HugeTLB pages available. */
  116. if (flags & MAP_HUGETLB && region.vaddr == MAP_FAILED)
  117. SKIP(return, "mmap() failed: %s (%d)\n", strerror(errno), errno);
  118. else
  119. ASSERT_NE(region.vaddr, MAP_FAILED);
  120. region.iova = iova_allocator_alloc(self->iova_allocator, size);
  121. region.size = size;
  122. iommu_map(self->iommu, &region);
  123. printf("Mapped HVA %p (size 0x%lx) at IOVA 0x%lx\n", region.vaddr, size, region.iova);
  124. ASSERT_EQ(region.iova, to_iova(self->device, region.vaddr));
  125. rc = iommu_mapping_get(device_bdf, region.iova, &mapping);
  126. if (rc == -EOPNOTSUPP)
  127. goto unmap;
  128. if (self->iommu->mode->iommu_type == VFIO_TYPE1_IOMMU)
  129. goto unmap;
  130. ASSERT_EQ(0, rc);
  131. printf("Found IOMMU mappings for IOVA 0x%lx:\n", region.iova);
  132. printf("PGD: 0x%016lx\n", mapping.pgd);
  133. printf("P4D: 0x%016lx\n", mapping.p4d);
  134. printf("PUD: 0x%016lx\n", mapping.pud);
  135. printf("PMD: 0x%016lx\n", mapping.pmd);
  136. printf("PTE: 0x%016lx\n", mapping.pte);
  137. switch (mapping_size) {
  138. case SZ_4K:
  139. ASSERT_NE(0, mapping.pte);
  140. break;
  141. case SZ_2M:
  142. ASSERT_EQ(0, mapping.pte);
  143. ASSERT_NE(0, mapping.pmd);
  144. break;
  145. case SZ_1G:
  146. ASSERT_EQ(0, mapping.pte);
  147. ASSERT_EQ(0, mapping.pmd);
  148. ASSERT_NE(0, mapping.pud);
  149. break;
  150. default:
  151. VFIO_FAIL("Unrecognized size: 0x%lx\n", mapping_size);
  152. }
  153. unmap:
  154. rc = __iommu_unmap(self->iommu, &region, &unmapped);
  155. ASSERT_EQ(rc, 0);
  156. ASSERT_EQ(unmapped, region.size);
  157. printf("Unmapped IOVA 0x%lx\n", region.iova);
  158. ASSERT_NE(0, __to_iova(self->device, region.vaddr, NULL));
  159. ASSERT_NE(0, iommu_mapping_get(device_bdf, region.iova, &mapping));
  160. ASSERT_TRUE(!munmap(region.vaddr, size));
  161. }
  162. FIXTURE(vfio_dma_map_limit_test) {
  163. struct iommu *iommu;
  164. struct vfio_pci_device *device;
  165. struct dma_region region;
  166. size_t mmap_size;
  167. };
  168. FIXTURE_VARIANT(vfio_dma_map_limit_test) {
  169. const char *iommu_mode;
  170. };
  171. #define FIXTURE_VARIANT_ADD_IOMMU_MODE(_iommu_mode) \
  172. FIXTURE_VARIANT_ADD(vfio_dma_map_limit_test, _iommu_mode) { \
  173. .iommu_mode = #_iommu_mode, \
  174. }
  175. FIXTURE_VARIANT_ADD_ALL_IOMMU_MODES();
  176. #undef FIXTURE_VARIANT_ADD_IOMMU_MODE
  177. FIXTURE_SETUP(vfio_dma_map_limit_test)
  178. {
  179. struct dma_region *region = &self->region;
  180. struct iommu_iova_range *ranges;
  181. u64 region_size = getpagesize();
  182. iova_t last_iova;
  183. u32 nranges;
  184. /*
  185. * Over-allocate mmap by double the size to provide enough backing vaddr
  186. * for overflow tests
  187. */
  188. self->mmap_size = 2 * region_size;
  189. self->iommu = iommu_init(variant->iommu_mode);
  190. self->device = vfio_pci_device_init(device_bdf, self->iommu);
  191. region->vaddr = mmap(NULL, self->mmap_size, PROT_READ | PROT_WRITE,
  192. MAP_ANONYMOUS | MAP_PRIVATE, -1, 0);
  193. ASSERT_NE(region->vaddr, MAP_FAILED);
  194. ranges = iommu_iova_ranges(self->iommu, &nranges);
  195. VFIO_ASSERT_NOT_NULL(ranges);
  196. last_iova = ranges[nranges - 1].last;
  197. free(ranges);
  198. /* One page prior to the last iova */
  199. region->iova = last_iova & ~(region_size - 1);
  200. region->size = region_size;
  201. }
  202. FIXTURE_TEARDOWN(vfio_dma_map_limit_test)
  203. {
  204. vfio_pci_device_cleanup(self->device);
  205. iommu_cleanup(self->iommu);
  206. ASSERT_EQ(munmap(self->region.vaddr, self->mmap_size), 0);
  207. }
  208. TEST_F(vfio_dma_map_limit_test, unmap_range)
  209. {
  210. struct dma_region *region = &self->region;
  211. u64 unmapped;
  212. int rc;
  213. iommu_map(self->iommu, region);
  214. ASSERT_EQ(region->iova, to_iova(self->device, region->vaddr));
  215. rc = __iommu_unmap(self->iommu, region, &unmapped);
  216. ASSERT_EQ(rc, 0);
  217. ASSERT_EQ(unmapped, region->size);
  218. }
  219. TEST_F(vfio_dma_map_limit_test, unmap_all)
  220. {
  221. struct dma_region *region = &self->region;
  222. u64 unmapped;
  223. int rc;
  224. iommu_map(self->iommu, region);
  225. ASSERT_EQ(region->iova, to_iova(self->device, region->vaddr));
  226. rc = __iommu_unmap_all(self->iommu, &unmapped);
  227. ASSERT_EQ(rc, 0);
  228. ASSERT_EQ(unmapped, region->size);
  229. }
  230. TEST_F(vfio_dma_map_limit_test, overflow)
  231. {
  232. struct dma_region *region = &self->region;
  233. int rc;
  234. region->iova = ~(iova_t)0 & ~(region->size - 1);
  235. region->size = self->mmap_size;
  236. rc = __iommu_map(self->iommu, region);
  237. ASSERT_EQ(rc, -EOVERFLOW);
  238. rc = __iommu_unmap(self->iommu, region, NULL);
  239. ASSERT_EQ(rc, -EOVERFLOW);
  240. }
  241. int main(int argc, char *argv[])
  242. {
  243. device_bdf = vfio_selftests_get_bdf(&argc, argv);
  244. return test_harness_run(argc, argv);
  245. }