arm-spe-decoder.c 8.4 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * arm_spe_decoder.c: ARM SPE support
  4. */
  5. #ifndef _GNU_SOURCE
  6. #define _GNU_SOURCE
  7. #endif
  8. #include <errno.h>
  9. #include <inttypes.h>
  10. #include <stdbool.h>
  11. #include <string.h>
  12. #include <stdint.h>
  13. #include <stdlib.h>
  14. #include <linux/bitops.h>
  15. #include <linux/compiler.h>
  16. #include <linux/zalloc.h>
  17. #include "../auxtrace.h"
  18. #include "../debug.h"
  19. #include "../util.h"
  20. #include "arm-spe-decoder.h"
  21. static u64 arm_spe_calc_ip(int index, u64 payload)
  22. {
  23. u64 ns, el, val;
  24. /* Instruction virtual address or Branch target address */
  25. if (index == SPE_ADDR_PKT_HDR_INDEX_INS ||
  26. index == SPE_ADDR_PKT_HDR_INDEX_BRANCH ||
  27. index == SPE_ADDR_PKT_HDR_INDEX_PREV_BRANCH) {
  28. ns = SPE_ADDR_PKT_GET_NS(payload);
  29. el = SPE_ADDR_PKT_GET_EL(payload);
  30. /* Clean highest byte */
  31. payload = SPE_ADDR_PKT_ADDR_GET_BYTES_0_6(payload);
  32. /* Fill highest byte for EL1 or EL2 (VHE) mode */
  33. if (ns && (el == SPE_ADDR_PKT_EL1 || el == SPE_ADDR_PKT_EL2))
  34. payload |= 0xffULL << SPE_ADDR_PKT_ADDR_BYTE7_SHIFT;
  35. /* Data access virtual address */
  36. } else if (index == SPE_ADDR_PKT_HDR_INDEX_DATA_VIRT) {
  37. /* Clean tags */
  38. payload = SPE_ADDR_PKT_ADDR_GET_BYTES_0_6(payload);
  39. /*
  40. * Armv8 ARM (ARM DDI 0487F.c), chapter "D10.2.1 Address packet"
  41. * defines the data virtual address payload format, the top byte
  42. * (bits [63:56]) is assigned as top-byte tag; so we only can
  43. * retrieve address value from bits [55:0].
  44. *
  45. * According to Documentation/arch/arm64/memory.rst, if detects the
  46. * specific pattern in bits [55:52] of payload which falls in
  47. * the kernel space, should fixup the top byte and this allows
  48. * perf tool to parse DSO symbol for data address correctly.
  49. *
  50. * For this reason, if detects the bits [55:52] is 0xf, will
  51. * fill 0xff into the top byte.
  52. */
  53. val = SPE_ADDR_PKT_ADDR_GET_BYTE_6(payload);
  54. if ((val & 0xf0ULL) == 0xf0ULL)
  55. payload |= 0xffULL << SPE_ADDR_PKT_ADDR_BYTE7_SHIFT;
  56. /* Data access physical address */
  57. } else if (index == SPE_ADDR_PKT_HDR_INDEX_DATA_PHYS) {
  58. /* Clean highest byte */
  59. payload = SPE_ADDR_PKT_ADDR_GET_BYTES_0_6(payload);
  60. } else {
  61. static u32 seen_idx = 0;
  62. if (!(seen_idx & BIT(index))) {
  63. seen_idx |= BIT(index);
  64. pr_warning("ignoring unsupported address packet index: 0x%x\n", index);
  65. }
  66. }
  67. return payload;
  68. }
  69. struct arm_spe_decoder *arm_spe_decoder_new(struct arm_spe_params *params)
  70. {
  71. struct arm_spe_decoder *decoder;
  72. if (!params->get_trace)
  73. return NULL;
  74. decoder = zalloc(sizeof(struct arm_spe_decoder));
  75. if (!decoder)
  76. return NULL;
  77. decoder->get_trace = params->get_trace;
  78. decoder->data = params->data;
  79. return decoder;
  80. }
  81. void arm_spe_decoder_free(struct arm_spe_decoder *decoder)
  82. {
  83. free(decoder);
  84. }
  85. static int arm_spe_get_data(struct arm_spe_decoder *decoder)
  86. {
  87. struct arm_spe_buffer buffer = { .buf = 0, };
  88. int ret;
  89. pr_debug("Getting more data\n");
  90. ret = decoder->get_trace(&buffer, decoder->data);
  91. if (ret < 0)
  92. return ret;
  93. decoder->buf = buffer.buf;
  94. decoder->len = buffer.len;
  95. if (!decoder->len)
  96. pr_debug("No more data\n");
  97. return decoder->len;
  98. }
  99. static int arm_spe_get_next_packet(struct arm_spe_decoder *decoder)
  100. {
  101. int ret;
  102. do {
  103. if (!decoder->len) {
  104. ret = arm_spe_get_data(decoder);
  105. /* Failed to read out trace data */
  106. if (ret <= 0)
  107. return ret;
  108. }
  109. ret = arm_spe_get_packet(decoder->buf, decoder->len,
  110. &decoder->packet);
  111. if (ret <= 0) {
  112. /* Move forward for 1 byte */
  113. decoder->buf += 1;
  114. decoder->len -= 1;
  115. return -EBADMSG;
  116. }
  117. decoder->buf += ret;
  118. decoder->len -= ret;
  119. } while (decoder->packet.type == ARM_SPE_PAD);
  120. return 1;
  121. }
  122. static int arm_spe_read_record(struct arm_spe_decoder *decoder)
  123. {
  124. int err;
  125. int idx;
  126. u64 payload, ip;
  127. memset(&decoder->record, 0x0, sizeof(decoder->record));
  128. decoder->record.context_id = (u64)-1;
  129. while (1) {
  130. err = arm_spe_get_next_packet(decoder);
  131. if (err <= 0)
  132. return err;
  133. idx = decoder->packet.index;
  134. payload = decoder->packet.payload;
  135. switch (decoder->packet.type) {
  136. case ARM_SPE_TIMESTAMP:
  137. decoder->record.timestamp = payload;
  138. return 1;
  139. case ARM_SPE_END:
  140. return 1;
  141. case ARM_SPE_ADDRESS:
  142. ip = arm_spe_calc_ip(idx, payload);
  143. if (idx == SPE_ADDR_PKT_HDR_INDEX_INS)
  144. decoder->record.from_ip = ip;
  145. else if (idx == SPE_ADDR_PKT_HDR_INDEX_BRANCH)
  146. decoder->record.to_ip = ip;
  147. else if (idx == SPE_ADDR_PKT_HDR_INDEX_DATA_VIRT)
  148. decoder->record.virt_addr = ip;
  149. else if (idx == SPE_ADDR_PKT_HDR_INDEX_DATA_PHYS)
  150. decoder->record.phys_addr = ip;
  151. else if (idx == SPE_ADDR_PKT_HDR_INDEX_PREV_BRANCH)
  152. decoder->record.prev_br_tgt = ip;
  153. break;
  154. case ARM_SPE_COUNTER:
  155. if (idx == SPE_CNT_PKT_HDR_INDEX_TOTAL_LAT)
  156. decoder->record.latency = payload;
  157. break;
  158. case ARM_SPE_CONTEXT:
  159. decoder->record.context_id = payload;
  160. break;
  161. case ARM_SPE_OP_TYPE:
  162. switch (idx) {
  163. case SPE_OP_PKT_HDR_CLASS_LD_ST_ATOMIC:
  164. decoder->record.op |= ARM_SPE_OP_LDST;
  165. if (payload & SPE_OP_PKT_ST)
  166. decoder->record.op |= ARM_SPE_OP_ST;
  167. else
  168. decoder->record.op |= ARM_SPE_OP_LD;
  169. if (SPE_OP_PKT_LDST_SUBCLASS_GP_REG(payload)) {
  170. decoder->record.op |= ARM_SPE_OP_GP_REG;
  171. } else if (SPE_OP_PKT_LDST_SUBCLASS_SIMD_FP(payload)) {
  172. decoder->record.op |= ARM_SPE_OP_SIMD_FP;
  173. } else if (SPE_OP_PKT_LDST_SUBCLASS_UNSPEC_REG(payload)) {
  174. decoder->record.op |= ARM_SPE_OP_UNSPEC_REG;
  175. } else if (SPE_OP_PKT_LDST_SUBCLASS_NV_SYSREG(payload)) {
  176. decoder->record.op |= ARM_SPE_OP_NV_SYSREG;
  177. } else if (SPE_OP_PKT_LDST_SUBCLASS_MTE_TAG(payload)) {
  178. decoder->record.op |= ARM_SPE_OP_MTE_TAG;
  179. } else if (SPE_OP_PKT_LDST_SUBCLASS_EXTENDED(payload)) {
  180. if (payload & SPE_OP_PKT_AR)
  181. decoder->record.op |= ARM_SPE_OP_AR;
  182. if (payload & SPE_OP_PKT_EXCL)
  183. decoder->record.op |= ARM_SPE_OP_EXCL;
  184. if (payload & SPE_OP_PKT_AT)
  185. decoder->record.op |= ARM_SPE_OP_ATOMIC;
  186. } else if (SPE_OP_PKT_LDST_SUBCLASS_SVE_SME_REG(payload)) {
  187. decoder->record.op |= ARM_SPE_OP_SVE;
  188. if (payload & SPE_OP_PKT_SVE_PRED)
  189. decoder->record.op |= ARM_SPE_OP_PRED;
  190. if (payload & SPE_OP_PKT_SVE_SG)
  191. decoder->record.op |= ARM_SPE_OP_SG;
  192. } else if (SPE_OP_PKT_LDST_SUBCLASS_MEMCPY(payload)) {
  193. decoder->record.op |= ARM_SPE_OP_MEMCPY;
  194. } else if (SPE_OP_PKT_LDST_SUBCLASS_MEMSET(payload)) {
  195. decoder->record.op |= ARM_SPE_OP_MEMSET;
  196. } else if (SPE_OP_PKT_LDST_SUBCLASS_GCS(payload)) {
  197. decoder->record.op |= ARM_SPE_OP_GCS;
  198. if (payload & SPE_OP_PKT_GCS_COMM)
  199. decoder->record.op |= ARM_SPE_OP_COMM;
  200. }
  201. break;
  202. case SPE_OP_PKT_HDR_CLASS_OTHER:
  203. decoder->record.op |= ARM_SPE_OP_OTHER;
  204. if (SPE_OP_PKT_OTHER_SUBCLASS_SVE(payload)) {
  205. decoder->record.op |= ARM_SPE_OP_SVE | ARM_SPE_OP_DP;
  206. if (payload & SPE_OP_PKT_OTHER_FP)
  207. decoder->record.op |= ARM_SPE_OP_FP;
  208. if (payload & SPE_OP_PKT_SVE_PRED)
  209. decoder->record.op |= ARM_SPE_OP_PRED;
  210. } else if (SPE_OP_PKT_OTHER_SUBCLASS_SME(payload)) {
  211. decoder->record.op |= ARM_SPE_OP_SME;
  212. if (payload & SPE_OP_PKT_OTHER_FP)
  213. decoder->record.op |= ARM_SPE_OP_FP;
  214. } else if (SPE_OP_PKT_OTHER_SUBCLASS_OTHER(payload)) {
  215. if (payload & SPE_OP_PKT_OTHER_ASE)
  216. decoder->record.op |= ARM_SPE_OP_ASE;
  217. if (payload & SPE_OP_PKT_OTHER_FP)
  218. decoder->record.op |= ARM_SPE_OP_FP;
  219. if (payload & SPE_OP_PKT_COND)
  220. decoder->record.op |= ARM_SPE_OP_COND;
  221. }
  222. break;
  223. case SPE_OP_PKT_HDR_CLASS_BR_ERET:
  224. decoder->record.op |= ARM_SPE_OP_BRANCH_ERET;
  225. if (payload & SPE_OP_PKT_COND)
  226. decoder->record.op |= ARM_SPE_OP_BR_COND;
  227. if (payload & SPE_OP_PKT_INDIRECT_BRANCH)
  228. decoder->record.op |= ARM_SPE_OP_BR_INDIRECT;
  229. if (payload & SPE_OP_PKT_GCS)
  230. decoder->record.op |= ARM_SPE_OP_BR_GCS;
  231. if (SPE_OP_PKT_CR_BL(payload))
  232. decoder->record.op |= ARM_SPE_OP_BR_CR_BL;
  233. if (SPE_OP_PKT_CR_RET(payload))
  234. decoder->record.op |= ARM_SPE_OP_BR_CR_RET;
  235. if (SPE_OP_PKT_CR_NON_BL_RET(payload))
  236. decoder->record.op |= ARM_SPE_OP_BR_CR_NON_BL_RET;
  237. break;
  238. default:
  239. pr_err("Get packet error!\n");
  240. return -1;
  241. }
  242. break;
  243. case ARM_SPE_EVENTS:
  244. decoder->record.type = payload;
  245. break;
  246. case ARM_SPE_DATA_SOURCE:
  247. decoder->record.source = payload;
  248. break;
  249. case ARM_SPE_BAD:
  250. break;
  251. case ARM_SPE_PAD:
  252. break;
  253. default:
  254. pr_err("Get packet error!\n");
  255. return -1;
  256. }
  257. }
  258. return 0;
  259. }
  260. int arm_spe_decode(struct arm_spe_decoder *decoder)
  261. {
  262. return arm_spe_read_record(decoder);
  263. }