cap_audit.c 8.0 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * cap_audit.c - audit iommu capabilities for boot time and hot plug
  4. *
  5. * Copyright (C) 2021 Intel Corporation
  6. *
  7. * Author: Kyung Min Park <kyung.min.park@intel.com>
  8. * Lu Baolu <baolu.lu@linux.intel.com>
  9. */
  10. #define pr_fmt(fmt) "DMAR: " fmt
  11. #include "iommu.h"
  12. #include "cap_audit.h"
  13. static u64 intel_iommu_cap_sanity;
  14. static u64 intel_iommu_ecap_sanity;
  15. static inline void check_irq_capabilities(struct intel_iommu *a,
  16. struct intel_iommu *b)
  17. {
  18. CHECK_FEATURE_MISMATCH(a, b, cap, pi_support, CAP_PI_MASK);
  19. CHECK_FEATURE_MISMATCH(a, b, ecap, eim_support, ECAP_EIM_MASK);
  20. }
  21. static inline void check_dmar_capabilities(struct intel_iommu *a,
  22. struct intel_iommu *b)
  23. {
  24. MINIMAL_FEATURE_IOMMU(b, cap, CAP_MAMV_MASK);
  25. MINIMAL_FEATURE_IOMMU(b, cap, CAP_NFR_MASK);
  26. MINIMAL_FEATURE_IOMMU(b, cap, CAP_SLLPS_MASK);
  27. MINIMAL_FEATURE_IOMMU(b, cap, CAP_FRO_MASK);
  28. MINIMAL_FEATURE_IOMMU(b, cap, CAP_MGAW_MASK);
  29. MINIMAL_FEATURE_IOMMU(b, cap, CAP_SAGAW_MASK);
  30. MINIMAL_FEATURE_IOMMU(b, cap, CAP_NDOMS_MASK);
  31. MINIMAL_FEATURE_IOMMU(b, ecap, ECAP_PSS_MASK);
  32. MINIMAL_FEATURE_IOMMU(b, ecap, ECAP_MHMV_MASK);
  33. MINIMAL_FEATURE_IOMMU(b, ecap, ECAP_IRO_MASK);
  34. CHECK_FEATURE_MISMATCH(a, b, cap, fl5lp_support, CAP_FL5LP_MASK);
  35. CHECK_FEATURE_MISMATCH(a, b, cap, fl1gp_support, CAP_FL1GP_MASK);
  36. CHECK_FEATURE_MISMATCH(a, b, cap, read_drain, CAP_RD_MASK);
  37. CHECK_FEATURE_MISMATCH(a, b, cap, write_drain, CAP_WD_MASK);
  38. CHECK_FEATURE_MISMATCH(a, b, cap, pgsel_inv, CAP_PSI_MASK);
  39. CHECK_FEATURE_MISMATCH(a, b, cap, zlr, CAP_ZLR_MASK);
  40. CHECK_FEATURE_MISMATCH(a, b, cap, caching_mode, CAP_CM_MASK);
  41. CHECK_FEATURE_MISMATCH(a, b, cap, phmr, CAP_PHMR_MASK);
  42. CHECK_FEATURE_MISMATCH(a, b, cap, plmr, CAP_PLMR_MASK);
  43. CHECK_FEATURE_MISMATCH(a, b, cap, rwbf, CAP_RWBF_MASK);
  44. CHECK_FEATURE_MISMATCH(a, b, cap, afl, CAP_AFL_MASK);
  45. CHECK_FEATURE_MISMATCH(a, b, ecap, rps, ECAP_RPS_MASK);
  46. CHECK_FEATURE_MISMATCH(a, b, ecap, smpwc, ECAP_SMPWC_MASK);
  47. CHECK_FEATURE_MISMATCH(a, b, ecap, flts, ECAP_FLTS_MASK);
  48. CHECK_FEATURE_MISMATCH(a, b, ecap, slts, ECAP_SLTS_MASK);
  49. CHECK_FEATURE_MISMATCH(a, b, ecap, nwfs, ECAP_NWFS_MASK);
  50. CHECK_FEATURE_MISMATCH(a, b, ecap, slads, ECAP_SLADS_MASK);
  51. CHECK_FEATURE_MISMATCH(a, b, ecap, smts, ECAP_SMTS_MASK);
  52. CHECK_FEATURE_MISMATCH(a, b, ecap, pds, ECAP_PDS_MASK);
  53. CHECK_FEATURE_MISMATCH(a, b, ecap, dit, ECAP_DIT_MASK);
  54. CHECK_FEATURE_MISMATCH(a, b, ecap, pasid, ECAP_PASID_MASK);
  55. CHECK_FEATURE_MISMATCH(a, b, ecap, eafs, ECAP_EAFS_MASK);
  56. CHECK_FEATURE_MISMATCH(a, b, ecap, srs, ECAP_SRS_MASK);
  57. CHECK_FEATURE_MISMATCH(a, b, ecap, ers, ECAP_ERS_MASK);
  58. CHECK_FEATURE_MISMATCH(a, b, ecap, prs, ECAP_PRS_MASK);
  59. CHECK_FEATURE_MISMATCH(a, b, ecap, nest, ECAP_NEST_MASK);
  60. CHECK_FEATURE_MISMATCH(a, b, ecap, mts, ECAP_MTS_MASK);
  61. CHECK_FEATURE_MISMATCH(a, b, ecap, sc_support, ECAP_SC_MASK);
  62. CHECK_FEATURE_MISMATCH(a, b, ecap, pass_through, ECAP_PT_MASK);
  63. CHECK_FEATURE_MISMATCH(a, b, ecap, dev_iotlb_support, ECAP_DT_MASK);
  64. CHECK_FEATURE_MISMATCH(a, b, ecap, qis, ECAP_QI_MASK);
  65. CHECK_FEATURE_MISMATCH(a, b, ecap, coherent, ECAP_C_MASK);
  66. }
  67. static int cap_audit_hotplug(struct intel_iommu *iommu, enum cap_audit_type type)
  68. {
  69. bool mismatch = false;
  70. u64 old_cap = intel_iommu_cap_sanity;
  71. u64 old_ecap = intel_iommu_ecap_sanity;
  72. if (type == CAP_AUDIT_HOTPLUG_IRQR) {
  73. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, pi_support, CAP_PI_MASK);
  74. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, eim_support, ECAP_EIM_MASK);
  75. goto out;
  76. }
  77. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, fl5lp_support, CAP_FL5LP_MASK);
  78. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, fl1gp_support, CAP_FL1GP_MASK);
  79. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, read_drain, CAP_RD_MASK);
  80. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, write_drain, CAP_WD_MASK);
  81. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, pgsel_inv, CAP_PSI_MASK);
  82. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, zlr, CAP_ZLR_MASK);
  83. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, caching_mode, CAP_CM_MASK);
  84. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, phmr, CAP_PHMR_MASK);
  85. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, plmr, CAP_PLMR_MASK);
  86. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, rwbf, CAP_RWBF_MASK);
  87. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, cap, afl, CAP_AFL_MASK);
  88. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, rps, ECAP_RPS_MASK);
  89. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, smpwc, ECAP_SMPWC_MASK);
  90. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, flts, ECAP_FLTS_MASK);
  91. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, slts, ECAP_SLTS_MASK);
  92. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, nwfs, ECAP_NWFS_MASK);
  93. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, slads, ECAP_SLADS_MASK);
  94. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, smts, ECAP_SMTS_MASK);
  95. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, pds, ECAP_PDS_MASK);
  96. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, dit, ECAP_DIT_MASK);
  97. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, pasid, ECAP_PASID_MASK);
  98. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, eafs, ECAP_EAFS_MASK);
  99. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, srs, ECAP_SRS_MASK);
  100. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, ers, ECAP_ERS_MASK);
  101. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, prs, ECAP_PRS_MASK);
  102. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, nest, ECAP_NEST_MASK);
  103. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, mts, ECAP_MTS_MASK);
  104. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, sc_support, ECAP_SC_MASK);
  105. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, pass_through, ECAP_PT_MASK);
  106. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, dev_iotlb_support, ECAP_DT_MASK);
  107. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, qis, ECAP_QI_MASK);
  108. CHECK_FEATURE_MISMATCH_HOTPLUG(iommu, ecap, coherent, ECAP_C_MASK);
  109. /* Abort hot plug if the hot plug iommu feature is smaller than global */
  110. MINIMAL_FEATURE_HOTPLUG(iommu, cap, max_amask_val, CAP_MAMV_MASK, mismatch);
  111. MINIMAL_FEATURE_HOTPLUG(iommu, cap, num_fault_regs, CAP_NFR_MASK, mismatch);
  112. MINIMAL_FEATURE_HOTPLUG(iommu, cap, super_page_val, CAP_SLLPS_MASK, mismatch);
  113. MINIMAL_FEATURE_HOTPLUG(iommu, cap, fault_reg_offset, CAP_FRO_MASK, mismatch);
  114. MINIMAL_FEATURE_HOTPLUG(iommu, cap, mgaw, CAP_MGAW_MASK, mismatch);
  115. MINIMAL_FEATURE_HOTPLUG(iommu, cap, sagaw, CAP_SAGAW_MASK, mismatch);
  116. MINIMAL_FEATURE_HOTPLUG(iommu, cap, ndoms, CAP_NDOMS_MASK, mismatch);
  117. MINIMAL_FEATURE_HOTPLUG(iommu, ecap, pss, ECAP_PSS_MASK, mismatch);
  118. MINIMAL_FEATURE_HOTPLUG(iommu, ecap, max_handle_mask, ECAP_MHMV_MASK, mismatch);
  119. MINIMAL_FEATURE_HOTPLUG(iommu, ecap, iotlb_offset, ECAP_IRO_MASK, mismatch);
  120. out:
  121. if (mismatch) {
  122. intel_iommu_cap_sanity = old_cap;
  123. intel_iommu_ecap_sanity = old_ecap;
  124. return -EFAULT;
  125. }
  126. return 0;
  127. }
  128. static int cap_audit_static(struct intel_iommu *iommu, enum cap_audit_type type)
  129. {
  130. struct dmar_drhd_unit *d;
  131. struct intel_iommu *i;
  132. int rc = 0;
  133. rcu_read_lock();
  134. if (list_empty(&dmar_drhd_units))
  135. goto out;
  136. for_each_active_iommu(i, d) {
  137. if (!iommu) {
  138. intel_iommu_ecap_sanity = i->ecap;
  139. intel_iommu_cap_sanity = i->cap;
  140. iommu = i;
  141. continue;
  142. }
  143. if (type == CAP_AUDIT_STATIC_DMAR)
  144. check_dmar_capabilities(iommu, i);
  145. else
  146. check_irq_capabilities(iommu, i);
  147. }
  148. /*
  149. * If the system is sane to support scalable mode, either SL or FL
  150. * should be sane.
  151. */
  152. if (intel_cap_smts_sanity() &&
  153. !intel_cap_flts_sanity() && !intel_cap_slts_sanity())
  154. rc = -EOPNOTSUPP;
  155. out:
  156. rcu_read_unlock();
  157. return rc;
  158. }
  159. int intel_cap_audit(enum cap_audit_type type, struct intel_iommu *iommu)
  160. {
  161. switch (type) {
  162. case CAP_AUDIT_STATIC_DMAR:
  163. case CAP_AUDIT_STATIC_IRQR:
  164. return cap_audit_static(iommu, type);
  165. case CAP_AUDIT_HOTPLUG_DMAR:
  166. case CAP_AUDIT_HOTPLUG_IRQR:
  167. return cap_audit_hotplug(iommu, type);
  168. default:
  169. break;
  170. }
  171. return -EFAULT;
  172. }
  173. bool intel_cap_smts_sanity(void)
  174. {
  175. return ecap_smts(intel_iommu_ecap_sanity);
  176. }
  177. bool intel_cap_pasid_sanity(void)
  178. {
  179. return ecap_pasid(intel_iommu_ecap_sanity);
  180. }
  181. bool intel_cap_nest_sanity(void)
  182. {
  183. return ecap_nest(intel_iommu_ecap_sanity);
  184. }
  185. bool intel_cap_flts_sanity(void)
  186. {
  187. return ecap_flts(intel_iommu_ecap_sanity);
  188. }
  189. bool intel_cap_slts_sanity(void)
  190. {
  191. return ecap_slts(intel_iommu_ecap_sanity);
  192. }