arm-spe-pkt-decoder.h 6.1 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. /*
  3. * Arm Statistical Profiling Extensions (SPE) support
  4. * Copyright (c) 2017-2018, Arm Ltd.
  5. */
  6. #ifndef INCLUDE__ARM_SPE_PKT_DECODER_H__
  7. #define INCLUDE__ARM_SPE_PKT_DECODER_H__
  8. #include <linux/bitfield.h>
  9. #include <stddef.h>
  10. #include <stdint.h>
  11. #define ARM_SPE_PKT_DESC_MAX 256
  12. #define ARM_SPE_NEED_MORE_BYTES -1
  13. #define ARM_SPE_BAD_PACKET -2
  14. #define ARM_SPE_PKT_MAX_SZ 16
  15. enum arm_spe_pkt_type {
  16. ARM_SPE_BAD,
  17. ARM_SPE_PAD,
  18. ARM_SPE_END,
  19. ARM_SPE_TIMESTAMP,
  20. ARM_SPE_ADDRESS,
  21. ARM_SPE_COUNTER,
  22. ARM_SPE_CONTEXT,
  23. ARM_SPE_OP_TYPE,
  24. ARM_SPE_EVENTS,
  25. ARM_SPE_DATA_SOURCE,
  26. };
  27. struct arm_spe_pkt {
  28. enum arm_spe_pkt_type type;
  29. unsigned char index;
  30. uint64_t payload;
  31. };
  32. /* Short header (HEADER0) and extended header (HEADER1) */
  33. #define SPE_HEADER0_PAD 0x0
  34. #define SPE_HEADER0_END 0x1
  35. #define SPE_HEADER0_TIMESTAMP 0x71
  36. /* Mask for event & data source */
  37. #define SPE_HEADER0_MASK1 (GENMASK_ULL(7, 6) | GENMASK_ULL(3, 0))
  38. #define SPE_HEADER0_EVENTS 0x42
  39. #define SPE_HEADER0_SOURCE 0x43
  40. /* Mask for context & operation */
  41. #define SPE_HEADER0_MASK2 GENMASK_ULL(7, 2)
  42. #define SPE_HEADER0_CONTEXT 0x64
  43. #define SPE_HEADER0_OP_TYPE 0x48
  44. /* Mask for extended format */
  45. #define SPE_HEADER0_EXTENDED 0x20
  46. /* Mask for address & counter */
  47. #define SPE_HEADER0_MASK3 GENMASK_ULL(7, 3)
  48. #define SPE_HEADER0_ADDRESS 0xb0
  49. #define SPE_HEADER0_COUNTER 0x98
  50. #define SPE_HEADER1_ALIGNMENT 0x0
  51. #define SPE_HDR_SHORT_INDEX(h) ((h) & GENMASK_ULL(2, 0))
  52. #define SPE_HDR_EXTENDED_INDEX(h0, h1) (((h0) & GENMASK_ULL(1, 0)) << 3 | \
  53. SPE_HDR_SHORT_INDEX(h1))
  54. /* Address packet header */
  55. #define SPE_ADDR_PKT_HDR_INDEX_INS 0x0
  56. #define SPE_ADDR_PKT_HDR_INDEX_BRANCH 0x1
  57. #define SPE_ADDR_PKT_HDR_INDEX_DATA_VIRT 0x2
  58. #define SPE_ADDR_PKT_HDR_INDEX_DATA_PHYS 0x3
  59. #define SPE_ADDR_PKT_HDR_INDEX_PREV_BRANCH 0x4
  60. /* Address packet payload */
  61. #define SPE_ADDR_PKT_ADDR_BYTE7_SHIFT 56
  62. #define SPE_ADDR_PKT_ADDR_GET_BYTES_0_6(v) ((v) & GENMASK_ULL(55, 0))
  63. #define SPE_ADDR_PKT_ADDR_GET_BYTE_6(v) (((v) & GENMASK_ULL(55, 48)) >> 48)
  64. #define SPE_ADDR_PKT_GET_NS(v) (((v) & BIT_ULL(63)) >> 63)
  65. #define SPE_ADDR_PKT_GET_EL(v) (((v) & GENMASK_ULL(62, 61)) >> 61)
  66. #define SPE_ADDR_PKT_GET_CH(v) (((v) & BIT_ULL(62)) >> 62)
  67. #define SPE_ADDR_PKT_GET_PAT(v) (((v) & GENMASK_ULL(59, 56)) >> 56)
  68. #define SPE_ADDR_PKT_EL0 0
  69. #define SPE_ADDR_PKT_EL1 1
  70. #define SPE_ADDR_PKT_EL2 2
  71. #define SPE_ADDR_PKT_EL3 3
  72. /* Context packet header */
  73. #define SPE_CTX_PKT_HDR_INDEX(h) ((h) & GENMASK_ULL(1, 0))
  74. /* Counter packet header */
  75. #define SPE_CNT_PKT_HDR_INDEX_TOTAL_LAT 0x0
  76. #define SPE_CNT_PKT_HDR_INDEX_ISSUE_LAT 0x1
  77. #define SPE_CNT_PKT_HDR_INDEX_TRANS_LAT 0x2
  78. /* Event packet payload */
  79. enum arm_spe_events {
  80. EV_EXCEPTION_GEN = 0,
  81. EV_RETIRED = 1,
  82. EV_L1D_ACCESS = 2,
  83. EV_L1D_REFILL = 3,
  84. EV_TLB_ACCESS = 4,
  85. EV_TLB_WALK = 5,
  86. EV_NOT_TAKEN = 6,
  87. EV_MISPRED = 7,
  88. EV_LLC_ACCESS = 8,
  89. EV_LLC_MISS = 9,
  90. EV_REMOTE_ACCESS = 10,
  91. EV_ALIGNMENT = 11,
  92. EV_TRANSACTIONAL = 16,
  93. EV_PARTIAL_PREDICATE = 17,
  94. EV_EMPTY_PREDICATE = 18,
  95. EV_L2D_ACCESS = 19,
  96. EV_L2D_MISS = 20,
  97. EV_CACHE_DATA_MODIFIED = 21,
  98. EV_RECENTLY_FETCHED = 22,
  99. EV_DATA_SNOOPED = 23,
  100. EV_STREAMING_SVE_MODE = 24,
  101. EV_SMCU = 25,
  102. };
  103. /* Operation packet header */
  104. #define SPE_OP_PKT_HDR_CLASS(h) ((h) & GENMASK_ULL(1, 0))
  105. #define SPE_OP_PKT_HDR_CLASS_OTHER 0x0
  106. #define SPE_OP_PKT_HDR_CLASS_LD_ST_ATOMIC 0x1
  107. #define SPE_OP_PKT_HDR_CLASS_BR_ERET 0x2
  108. #define SPE_OP_PKT_OTHER_SUBCLASS_OTHER(v) (((v) & GENMASK_ULL(7, 3)) == 0x0)
  109. #define SPE_OP_PKT_OTHER_SUBCLASS_SVE(v) (((v) & (BIT(7) | BIT(3) | BIT(0))) == 0x8)
  110. #define SPE_OP_PKT_OTHER_SUBCLASS_SME(v) (((v) & (BIT(7) | BIT(3) | BIT(0))) == 0x88)
  111. #define SPE_OP_PKT_OTHER_ASE BIT(2)
  112. #define SPE_OP_PKT_OTHER_FP BIT(1)
  113. /*
  114. * SME effective vector length or tile size (ETS) is stored in byte 0
  115. * bits [6:4,2]; the length is rounded up to a power of two and use 128
  116. * as one step, so ETS calculation is:
  117. *
  118. * 128 * (2 ^ bits [6:4,2]) = 32 << (bits [6:4,2])
  119. */
  120. #define SPE_OP_PKG_SME_ETS(v) (128 << (FIELD_GET(GENMASK_ULL(6, 4), (v)) << 1 | \
  121. (FIELD_GET(BIT(2), (v)))))
  122. #define SPE_OP_PKT_LDST_SUBCLASS_GP_REG(v) (((v) & GENMASK_ULL(7, 1)) == 0x0)
  123. #define SPE_OP_PKT_LDST_SUBCLASS_SIMD_FP(v) (((v) & GENMASK_ULL(7, 1)) == 0x4)
  124. #define SPE_OP_PKT_LDST_SUBCLASS_UNSPEC_REG(v) (((v) & GENMASK_ULL(7, 1)) == 0x10)
  125. #define SPE_OP_PKT_LDST_SUBCLASS_NV_SYSREG(v) (((v) & GENMASK_ULL(7, 1)) == 0x30)
  126. #define SPE_OP_PKT_LDST_SUBCLASS_MTE_TAG(v) (((v) & GENMASK_ULL(7, 1)) == 0x14)
  127. #define SPE_OP_PKT_LDST_SUBCLASS_MEMCPY(v) (((v) & GENMASK_ULL(7, 1)) == 0x20)
  128. #define SPE_OP_PKT_LDST_SUBCLASS_MEMSET(v) (((v) & GENMASK_ULL(7, 0)) == 0x25)
  129. #define SPE_OP_PKT_LDST_SUBCLASS_EXTENDED(v) (((v) & (GENMASK_ULL(7, 5) | BIT(1))) == 0x2)
  130. #define SPE_OP_PKT_AR BIT(4)
  131. #define SPE_OP_PKT_EXCL BIT(3)
  132. #define SPE_OP_PKT_AT BIT(2)
  133. #define SPE_OP_PKT_ST BIT(0)
  134. #define SPE_OP_PKT_LDST_SUBCLASS_SVE_SME_REG(v) (((v) & (BIT(3) | BIT(1))) == 0x8)
  135. #define SPE_OP_PKT_SVE_SG BIT(7)
  136. /*
  137. * SVE effective vector length (EVL) is stored in byte 0 bits [6:4];
  138. * the length is rounded up to a power of two and use 32 as one step,
  139. * so EVL calculation is:
  140. *
  141. * 32 * (2 ^ bits [6:4]) = 32 << (bits [6:4])
  142. */
  143. #define SPE_OP_PKG_SVE_EVL(v) (32 << (((v) & GENMASK_ULL(6, 4)) >> 4))
  144. #define SPE_OP_PKT_SVE_PRED BIT(2)
  145. #define SPE_OP_PKT_SVE_FP BIT(1)
  146. #define SPE_OP_PKT_LDST_SUBCLASS_GCS(v) (((v) & (GENMASK_ULL(7, 3) | BIT(1))) == 0x40)
  147. #define SPE_OP_PKT_GCS_COMM BIT(2)
  148. #define SPE_OP_PKT_CR_MASK GENMASK_ULL(4, 3)
  149. #define SPE_OP_PKT_CR_BL(v) (FIELD_GET(SPE_OP_PKT_CR_MASK, (v)) == 1)
  150. #define SPE_OP_PKT_CR_RET(v) (FIELD_GET(SPE_OP_PKT_CR_MASK, (v)) == 2)
  151. #define SPE_OP_PKT_CR_NON_BL_RET(v) (FIELD_GET(SPE_OP_PKT_CR_MASK, (v)) == 3)
  152. #define SPE_OP_PKT_GCS BIT(2)
  153. #define SPE_OP_PKT_INDIRECT_BRANCH BIT(1)
  154. #define SPE_OP_PKT_COND BIT(0)
  155. const char *arm_spe_pkt_name(enum arm_spe_pkt_type);
  156. int arm_spe_get_packet(const unsigned char *buf, size_t len,
  157. struct arm_spe_pkt *packet);
  158. int arm_spe_pkt_desc(const struct arm_spe_pkt *packet, char *buf, size_t len);
  159. #endif