mdwe_test.c 6.3 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. #ifdef __aarch64__
  3. #include <asm/hwcap.h>
  4. #endif
  5. #include <linux/mman.h>
  6. #include <linux/prctl.h>
  7. #include <stdio.h>
  8. #include <stdlib.h>
  9. #include <sys/auxv.h>
  10. #include <sys/prctl.h>
  11. #include <sys/wait.h>
  12. #include <unistd.h>
  13. #include "kselftest_harness.h"
  14. #ifndef __aarch64__
  15. # define PROT_BTI 0
  16. #endif
  17. TEST(prctl_flags)
  18. {
  19. EXPECT_LT(prctl(PR_SET_MDWE, PR_MDWE_NO_INHERIT, 0L, 0L, 7L), 0);
  20. EXPECT_EQ(errno, EINVAL);
  21. EXPECT_LT(prctl(PR_SET_MDWE, 7L, 0L, 0L, 0L), 0);
  22. EXPECT_EQ(errno, EINVAL);
  23. EXPECT_LT(prctl(PR_SET_MDWE, 0L, 7L, 0L, 0L), 0);
  24. EXPECT_EQ(errno, EINVAL);
  25. EXPECT_LT(prctl(PR_SET_MDWE, 0L, 0L, 7L, 0L), 0);
  26. EXPECT_EQ(errno, EINVAL);
  27. EXPECT_LT(prctl(PR_SET_MDWE, 0L, 0L, 0L, 7L), 0);
  28. EXPECT_EQ(errno, EINVAL);
  29. EXPECT_LT(prctl(PR_GET_MDWE, 7L, 0L, 0L, 0L), 0);
  30. EXPECT_EQ(errno, EINVAL);
  31. EXPECT_LT(prctl(PR_GET_MDWE, 0L, 7L, 0L, 0L), 0);
  32. EXPECT_EQ(errno, EINVAL);
  33. EXPECT_LT(prctl(PR_GET_MDWE, 0L, 0L, 7L, 0L), 0);
  34. EXPECT_EQ(errno, EINVAL);
  35. EXPECT_LT(prctl(PR_GET_MDWE, 0L, 0L, 0L, 7L), 0);
  36. EXPECT_EQ(errno, EINVAL);
  37. }
  38. FIXTURE(consecutive_prctl_flags) {};
  39. FIXTURE_SETUP(consecutive_prctl_flags) {}
  40. FIXTURE_TEARDOWN(consecutive_prctl_flags) {}
  41. FIXTURE_VARIANT(consecutive_prctl_flags)
  42. {
  43. unsigned long first_flags;
  44. unsigned long second_flags;
  45. bool should_work;
  46. };
  47. FIXTURE_VARIANT_ADD(consecutive_prctl_flags, can_keep_no_flags)
  48. {
  49. .first_flags = 0,
  50. .second_flags = 0,
  51. .should_work = true,
  52. };
  53. FIXTURE_VARIANT_ADD(consecutive_prctl_flags, can_keep_exec_gain)
  54. {
  55. .first_flags = PR_MDWE_REFUSE_EXEC_GAIN,
  56. .second_flags = PR_MDWE_REFUSE_EXEC_GAIN,
  57. .should_work = true,
  58. };
  59. FIXTURE_VARIANT_ADD(consecutive_prctl_flags, can_keep_both_flags)
  60. {
  61. .first_flags = PR_MDWE_REFUSE_EXEC_GAIN | PR_MDWE_NO_INHERIT,
  62. .second_flags = PR_MDWE_REFUSE_EXEC_GAIN | PR_MDWE_NO_INHERIT,
  63. .should_work = true,
  64. };
  65. FIXTURE_VARIANT_ADD(consecutive_prctl_flags, cant_disable_mdwe)
  66. {
  67. .first_flags = PR_MDWE_REFUSE_EXEC_GAIN,
  68. .second_flags = 0,
  69. .should_work = false,
  70. };
  71. FIXTURE_VARIANT_ADD(consecutive_prctl_flags, cant_disable_mdwe_no_inherit)
  72. {
  73. .first_flags = PR_MDWE_REFUSE_EXEC_GAIN | PR_MDWE_NO_INHERIT,
  74. .second_flags = 0,
  75. .should_work = false,
  76. };
  77. FIXTURE_VARIANT_ADD(consecutive_prctl_flags, cant_disable_no_inherit)
  78. {
  79. .first_flags = PR_MDWE_REFUSE_EXEC_GAIN | PR_MDWE_NO_INHERIT,
  80. .second_flags = PR_MDWE_REFUSE_EXEC_GAIN,
  81. .should_work = false,
  82. };
  83. FIXTURE_VARIANT_ADD(consecutive_prctl_flags, cant_enable_no_inherit)
  84. {
  85. .first_flags = PR_MDWE_REFUSE_EXEC_GAIN,
  86. .second_flags = PR_MDWE_REFUSE_EXEC_GAIN | PR_MDWE_NO_INHERIT,
  87. .should_work = false,
  88. };
  89. TEST_F(consecutive_prctl_flags, two_prctls)
  90. {
  91. int ret;
  92. EXPECT_EQ(prctl(PR_SET_MDWE, variant->first_flags, 0L, 0L, 0L), 0);
  93. ret = prctl(PR_SET_MDWE, variant->second_flags, 0L, 0L, 0L);
  94. if (variant->should_work) {
  95. EXPECT_EQ(ret, 0);
  96. ret = prctl(PR_GET_MDWE, 0L, 0L, 0L, 0L);
  97. ASSERT_EQ(ret, variant->second_flags);
  98. } else {
  99. EXPECT_NE(ret, 0);
  100. ASSERT_EQ(errno, EPERM);
  101. }
  102. }
  103. FIXTURE(mdwe)
  104. {
  105. void *p;
  106. int flags;
  107. size_t size;
  108. pid_t pid;
  109. };
  110. FIXTURE_VARIANT(mdwe)
  111. {
  112. bool enabled;
  113. bool forked;
  114. bool inherit;
  115. };
  116. FIXTURE_VARIANT_ADD(mdwe, stock)
  117. {
  118. .enabled = false,
  119. .forked = false,
  120. .inherit = false,
  121. };
  122. FIXTURE_VARIANT_ADD(mdwe, enabled)
  123. {
  124. .enabled = true,
  125. .forked = false,
  126. .inherit = true,
  127. };
  128. FIXTURE_VARIANT_ADD(mdwe, inherited)
  129. {
  130. .enabled = true,
  131. .forked = true,
  132. .inherit = true,
  133. };
  134. FIXTURE_VARIANT_ADD(mdwe, not_inherited)
  135. {
  136. .enabled = true,
  137. .forked = true,
  138. .inherit = false,
  139. };
  140. static bool executable_map_should_fail(const FIXTURE_VARIANT(mdwe) *variant)
  141. {
  142. return variant->enabled && (!variant->forked || variant->inherit);
  143. }
  144. FIXTURE_SETUP(mdwe)
  145. {
  146. unsigned long mdwe_flags;
  147. int ret, status;
  148. self->p = NULL;
  149. self->flags = MAP_SHARED | MAP_ANONYMOUS;
  150. self->size = getpagesize();
  151. if (!variant->enabled)
  152. return;
  153. mdwe_flags = PR_MDWE_REFUSE_EXEC_GAIN;
  154. if (!variant->inherit)
  155. mdwe_flags |= PR_MDWE_NO_INHERIT;
  156. ret = prctl(PR_SET_MDWE, mdwe_flags, 0L, 0L, 0L);
  157. ASSERT_EQ(ret, 0) {
  158. TH_LOG("PR_SET_MDWE failed or unsupported");
  159. }
  160. ret = prctl(PR_GET_MDWE, 0L, 0L, 0L, 0L);
  161. ASSERT_EQ(ret, mdwe_flags);
  162. if (variant->forked) {
  163. self->pid = fork();
  164. ASSERT_GE(self->pid, 0) {
  165. TH_LOG("fork failed\n");
  166. }
  167. if (self->pid > 0) {
  168. ret = waitpid(self->pid, &status, 0);
  169. ASSERT_TRUE(WIFEXITED(status));
  170. exit(WEXITSTATUS(status));
  171. }
  172. }
  173. }
  174. FIXTURE_TEARDOWN(mdwe)
  175. {
  176. if (self->p && self->p != MAP_FAILED)
  177. munmap(self->p, self->size);
  178. }
  179. TEST_F(mdwe, mmap_READ_EXEC)
  180. {
  181. self->p = mmap(NULL, self->size, PROT_READ | PROT_EXEC, self->flags, 0, 0);
  182. EXPECT_NE(self->p, MAP_FAILED);
  183. }
  184. TEST_F(mdwe, mmap_WRITE_EXEC)
  185. {
  186. self->p = mmap(NULL, self->size, PROT_WRITE | PROT_EXEC, self->flags, 0, 0);
  187. if (executable_map_should_fail(variant)) {
  188. EXPECT_EQ(self->p, MAP_FAILED);
  189. } else {
  190. EXPECT_NE(self->p, MAP_FAILED);
  191. }
  192. }
  193. TEST_F(mdwe, mprotect_stay_EXEC)
  194. {
  195. int ret;
  196. self->p = mmap(NULL, self->size, PROT_READ | PROT_EXEC, self->flags, 0, 0);
  197. ASSERT_NE(self->p, MAP_FAILED);
  198. ret = mprotect(self->p, self->size, PROT_READ | PROT_EXEC);
  199. EXPECT_EQ(ret, 0);
  200. }
  201. TEST_F(mdwe, mprotect_add_EXEC)
  202. {
  203. int ret;
  204. self->p = mmap(NULL, self->size, PROT_READ, self->flags, 0, 0);
  205. ASSERT_NE(self->p, MAP_FAILED);
  206. ret = mprotect(self->p, self->size, PROT_READ | PROT_EXEC);
  207. if (executable_map_should_fail(variant)) {
  208. EXPECT_LT(ret, 0);
  209. } else {
  210. EXPECT_EQ(ret, 0);
  211. }
  212. }
  213. TEST_F(mdwe, mprotect_WRITE_EXEC)
  214. {
  215. int ret;
  216. self->p = mmap(NULL, self->size, PROT_WRITE, self->flags, 0, 0);
  217. ASSERT_NE(self->p, MAP_FAILED);
  218. ret = mprotect(self->p, self->size, PROT_WRITE | PROT_EXEC);
  219. if (executable_map_should_fail(variant)) {
  220. EXPECT_LT(ret, 0);
  221. } else {
  222. EXPECT_EQ(ret, 0);
  223. }
  224. }
  225. TEST_F(mdwe, mmap_FIXED)
  226. {
  227. void *p;
  228. self->p = mmap(NULL, self->size, PROT_READ, self->flags, 0, 0);
  229. ASSERT_NE(self->p, MAP_FAILED);
  230. /* MAP_FIXED unmaps the existing page before mapping which is allowed */
  231. p = mmap(self->p, self->size, PROT_READ | PROT_EXEC,
  232. self->flags | MAP_FIXED, 0, 0);
  233. EXPECT_EQ(p, self->p);
  234. }
  235. TEST_F(mdwe, arm64_BTI)
  236. {
  237. int ret;
  238. #ifdef __aarch64__
  239. if (!(getauxval(AT_HWCAP2) & HWCAP2_BTI))
  240. #endif
  241. SKIP(return, "HWCAP2_BTI not supported");
  242. self->p = mmap(NULL, self->size, PROT_EXEC, self->flags, 0, 0);
  243. ASSERT_NE(self->p, MAP_FAILED);
  244. ret = mprotect(self->p, self->size, PROT_EXEC | PROT_BTI);
  245. EXPECT_EQ(ret, 0);
  246. }
  247. TEST_HARNESS_MAIN