amd-sample-raw.c 12 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * AMD specific. Provide textual annotation for IBS raw sample data.
  4. */
  5. #include <unistd.h>
  6. #include <stdio.h>
  7. #include <string.h>
  8. #include <inttypes.h>
  9. #include <linux/string.h>
  10. #include "../../arch/x86/include/asm/amd/ibs.h"
  11. #include "debug.h"
  12. #include "session.h"
  13. #include "evlist.h"
  14. #include "sample-raw.h"
  15. #include "util/sample.h"
  16. static u32 cpu_family, cpu_model, ibs_fetch_type, ibs_op_type;
  17. static bool zen4_ibs_extensions;
  18. static bool ldlat_cap;
  19. static bool dtlb_pgsize_cap;
  20. static void pr_ibs_fetch_ctl(union ibs_fetch_ctl reg)
  21. {
  22. const char * const ic_miss_strs[] = {
  23. " IcMiss 0",
  24. " IcMiss 1",
  25. };
  26. const char * const l1tlb_pgsz_strs[] = {
  27. " L1TlbPgSz 4KB",
  28. " L1TlbPgSz 2MB",
  29. " L1TlbPgSz 1GB",
  30. " L1TlbPgSz RESERVED"
  31. };
  32. const char * const l1tlb_pgsz_strs_erratum1347[] = {
  33. " L1TlbPgSz 4KB",
  34. " L1TlbPgSz 16KB",
  35. " L1TlbPgSz 2MB",
  36. " L1TlbPgSz 1GB"
  37. };
  38. const char *ic_miss_str = NULL;
  39. const char *l1tlb_pgsz_str = NULL;
  40. char l3_miss_str[sizeof(" L3MissOnly _ FetchOcMiss _ FetchL3Miss _")] = "";
  41. if (cpu_family == 0x19 && cpu_model < 0x10) {
  42. /*
  43. * Erratum #1238 workaround is to ignore MSRC001_1030[IbsIcMiss]
  44. * Erratum #1347 workaround is to use table provided in erratum
  45. */
  46. if (reg.phy_addr_valid)
  47. l1tlb_pgsz_str = l1tlb_pgsz_strs_erratum1347[reg.l1tlb_pgsz];
  48. } else {
  49. if (reg.phy_addr_valid)
  50. l1tlb_pgsz_str = l1tlb_pgsz_strs[reg.l1tlb_pgsz];
  51. ic_miss_str = ic_miss_strs[reg.ic_miss];
  52. }
  53. if (zen4_ibs_extensions) {
  54. snprintf(l3_miss_str, sizeof(l3_miss_str),
  55. " L3MissOnly %d FetchOcMiss %d FetchL3Miss %d",
  56. reg.l3_miss_only, reg.fetch_oc_miss, reg.fetch_l3_miss);
  57. }
  58. printf("ibs_fetch_ctl:\t%016llx MaxCnt %7d Cnt %7d Lat %5d En %d Val %d Comp %d%s "
  59. "PhyAddrValid %d%s L1TlbMiss %d L2TlbMiss %d RandEn %d%s%s\n",
  60. reg.val, reg.fetch_maxcnt << 4, reg.fetch_cnt << 4, reg.fetch_lat,
  61. reg.fetch_en, reg.fetch_val, reg.fetch_comp, ic_miss_str ? : "",
  62. reg.phy_addr_valid, l1tlb_pgsz_str ? : "", reg.l1tlb_miss, reg.l2tlb_miss,
  63. reg.rand_en, reg.fetch_comp ? (reg.fetch_l2_miss ? " L2Miss 1" : " L2Miss 0") : "",
  64. l3_miss_str);
  65. }
  66. static void pr_ic_ibs_extd_ctl(union ic_ibs_extd_ctl reg)
  67. {
  68. printf("ic_ibs_ext_ctl:\t%016llx IbsItlbRefillLat %3d\n", reg.val, reg.itlb_refill_lat);
  69. }
  70. static void pr_ibs_op_ctl(union ibs_op_ctl reg)
  71. {
  72. char l3_miss_only[sizeof(" L3MissOnly _")] = "";
  73. char ldlat[sizeof(" LdLatThrsh __ LdLatEn _")] = "";
  74. if (zen4_ibs_extensions)
  75. snprintf(l3_miss_only, sizeof(l3_miss_only), " L3MissOnly %d", reg.l3_miss_only);
  76. if (ldlat_cap) {
  77. snprintf(ldlat, sizeof(ldlat), " LdLatThrsh %2d LdLatEn %d",
  78. reg.ldlat_thrsh, reg.ldlat_en);
  79. }
  80. printf("ibs_op_ctl:\t%016llx MaxCnt %9d%s En %d Val %d CntCtl %d=%s CurCnt %9d%s\n",
  81. reg.val, ((reg.opmaxcnt_ext << 16) | reg.opmaxcnt) << 4, l3_miss_only,
  82. reg.op_en, reg.op_val, reg.cnt_ctl,
  83. reg.cnt_ctl ? "uOps" : "cycles", reg.opcurcnt, ldlat);
  84. }
  85. static void pr_ibs_op_data(union ibs_op_data reg)
  86. {
  87. printf("ibs_op_data:\t%016llx CompToRetCtr %5d TagToRetCtr %5d%s%s%s BrnRet %d "
  88. " RipInvalid %d BrnFuse %d Microcode %d\n",
  89. reg.val, reg.comp_to_ret_ctr, reg.tag_to_ret_ctr,
  90. reg.op_brn_ret ? (reg.op_return ? " OpReturn 1" : " OpReturn 0") : "",
  91. reg.op_brn_ret ? (reg.op_brn_taken ? " OpBrnTaken 1" : " OpBrnTaken 0") : "",
  92. reg.op_brn_ret ? (reg.op_brn_misp ? " OpBrnMisp 1" : " OpBrnMisp 0") : "",
  93. reg.op_brn_ret, reg.op_rip_invalid, reg.op_brn_fuse, reg.op_microcode);
  94. }
  95. static void pr_ibs_op_data2_extended(union ibs_op_data2 reg)
  96. {
  97. static const char * const data_src_str[] = {
  98. "",
  99. " DataSrc 1=Local L3 or other L1/L2 in CCX",
  100. " DataSrc 2=Another CCX cache in the same NUMA node",
  101. " DataSrc 3=DRAM",
  102. " DataSrc 4=(reserved)",
  103. " DataSrc 5=Another CCX cache in a different NUMA node",
  104. " DataSrc 6=Long-latency DIMM",
  105. " DataSrc 7=MMIO/Config/PCI/APIC",
  106. " DataSrc 8=Extension Memory",
  107. " DataSrc 9=(reserved)",
  108. " DataSrc 10=(reserved)",
  109. " DataSrc 11=(reserved)",
  110. " DataSrc 12=Coherent Memory of a different processor type",
  111. /* 13 to 31 are reserved. Avoid printing them. */
  112. };
  113. int data_src = (reg.data_src_hi << 3) | reg.data_src_lo;
  114. printf("ibs_op_data2:\t%016llx %sRmtNode %d%s\n", reg.val,
  115. (data_src == 1 || data_src == 2 || data_src == 5) ?
  116. (reg.cache_hit_st ? "CacheHitSt 1=O-State " : "CacheHitSt 0=M-state ") : "",
  117. reg.rmt_node,
  118. data_src < (int)ARRAY_SIZE(data_src_str) ? data_src_str[data_src] : "");
  119. }
  120. static void pr_ibs_op_data2_default(union ibs_op_data2 reg)
  121. {
  122. static const char * const data_src_str[] = {
  123. "",
  124. " DataSrc 1=(reserved)",
  125. " DataSrc 2=Local node cache",
  126. " DataSrc 3=DRAM",
  127. " DataSrc 4=Remote node cache",
  128. " DataSrc 5=(reserved)",
  129. " DataSrc 6=(reserved)",
  130. " DataSrc 7=Other"
  131. };
  132. printf("ibs_op_data2:\t%016llx %sRmtNode %d%s\n", reg.val,
  133. reg.data_src_lo == 2 ? (reg.cache_hit_st ? "CacheHitSt 1=O-State "
  134. : "CacheHitSt 0=M-state ") : "",
  135. reg.rmt_node, data_src_str[reg.data_src_lo]);
  136. }
  137. static void pr_ibs_op_data2(union ibs_op_data2 reg)
  138. {
  139. if (zen4_ibs_extensions)
  140. return pr_ibs_op_data2_extended(reg);
  141. pr_ibs_op_data2_default(reg);
  142. }
  143. static void pr_ibs_op_data3(union ibs_op_data3 reg)
  144. {
  145. static const char * const dc_page_sizes[] = {
  146. " 4K",
  147. " 2M",
  148. " 1G",
  149. " ??",
  150. };
  151. char op_dc_miss_open_mem_reqs_str[sizeof(" OpDcMissOpenMemReqs __")] = "";
  152. char dc_l1_l2tlb_miss_str[sizeof(" DcL1TlbMiss _ DcL2TlbMiss _")] = "";
  153. char dc_l1tlb_hit_str[sizeof(" DcL1TlbHit2M _ DcL1TlbHit1G _")] = "";
  154. char op_mem_width_str[sizeof(" OpMemWidth _____ bytes")] = "";
  155. char dc_l2tlb_hit_2m_str[sizeof(" DcL2TlbHit2M _")] = "";
  156. char dc_l2tlb_hit_1g_str[sizeof(" DcL2TlbHit1G _")] = "";
  157. char dc_page_size_str[sizeof(" DcPageSize ____")] = "";
  158. char l2_miss_str[sizeof(" L2Miss _")] = "";
  159. /*
  160. * Erratum #1293
  161. * Ignore L2Miss and OpDcMissOpenMemReqs (and opdata2) if DcMissNoMabAlloc or SwPf set
  162. */
  163. if (!(cpu_family == 0x19 && cpu_model < 0x10 && (reg.dc_miss_no_mab_alloc || reg.sw_pf))) {
  164. snprintf(l2_miss_str, sizeof(l2_miss_str), " L2Miss %d", reg.l2_miss);
  165. snprintf(op_dc_miss_open_mem_reqs_str, sizeof(op_dc_miss_open_mem_reqs_str),
  166. " OpDcMissOpenMemReqs %2d", reg.op_dc_miss_open_mem_reqs);
  167. }
  168. if (reg.op_mem_width)
  169. snprintf(op_mem_width_str, sizeof(op_mem_width_str),
  170. " OpMemWidth %2d bytes", 1 << (reg.op_mem_width - 1));
  171. if (dtlb_pgsize_cap) {
  172. if (reg.dc_phy_addr_valid) {
  173. int idx = (reg.dc_l1tlb_hit_1g << 1) | reg.dc_l1tlb_hit_2m;
  174. snprintf(dc_l1_l2tlb_miss_str, sizeof(dc_l1_l2tlb_miss_str),
  175. " DcL1TlbMiss %d DcL2TlbMiss %d",
  176. reg.dc_l1tlb_miss, reg.dc_l2tlb_miss);
  177. snprintf(dc_page_size_str, sizeof(dc_page_size_str),
  178. " DcPageSize %4s", dc_page_sizes[idx]);
  179. }
  180. } else {
  181. snprintf(dc_l1_l2tlb_miss_str, sizeof(dc_l1_l2tlb_miss_str),
  182. " DcL1TlbMiss %d DcL2TlbMiss %d",
  183. reg.dc_l1tlb_miss, reg.dc_l2tlb_miss);
  184. snprintf(dc_l1tlb_hit_str, sizeof(dc_l1tlb_hit_str),
  185. " DcL1TlbHit2M %d DcL1TlbHit1G %d",
  186. reg.dc_l1tlb_hit_2m, reg.dc_l1tlb_hit_1g);
  187. snprintf(dc_l2tlb_hit_2m_str, sizeof(dc_l2tlb_hit_2m_str),
  188. " DcL2TlbHit2M %d", reg.dc_l2tlb_hit_2m);
  189. snprintf(dc_l2tlb_hit_1g_str, sizeof(dc_l2tlb_hit_1g_str),
  190. " DcL2TlbHit1G %d", reg.dc_l2_tlb_hit_1g);
  191. }
  192. printf("ibs_op_data3:\t%016llx LdOp %d StOp %d%s%s%s DcMiss %d DcMisAcc %d "
  193. "DcWcMemAcc %d DcUcMemAcc %d DcLockedOp %d DcMissNoMabAlloc %d "
  194. "DcLinAddrValid %d DcPhyAddrValid %d%s%s SwPf %d%s%s "
  195. "DcMissLat %5d TlbRefillLat %5d\n",
  196. reg.val, reg.ld_op, reg.st_op, dc_l1_l2tlb_miss_str,
  197. dtlb_pgsize_cap ? dc_page_size_str : dc_l1tlb_hit_str,
  198. dc_l2tlb_hit_2m_str, reg.dc_miss, reg.dc_mis_acc, reg.dc_wc_mem_acc,
  199. reg.dc_uc_mem_acc, reg.dc_locked_op, reg.dc_miss_no_mab_alloc,
  200. reg.dc_lin_addr_valid, reg.dc_phy_addr_valid, dc_l2tlb_hit_1g_str,
  201. l2_miss_str, reg.sw_pf, op_mem_width_str, op_dc_miss_open_mem_reqs_str,
  202. reg.dc_miss_lat, reg.tlb_refill_lat);
  203. }
  204. /*
  205. * IBS Op/Execution MSRs always saved, in order, are:
  206. * IBS_OP_CTL, IBS_OP_RIP, IBS_OP_DATA, IBS_OP_DATA2,
  207. * IBS_OP_DATA3, IBS_DC_LINADDR, IBS_DC_PHYSADDR, BP_IBSTGT_RIP
  208. */
  209. static void amd_dump_ibs_op(struct perf_sample *sample)
  210. {
  211. struct perf_ibs_data *data = sample->raw_data;
  212. union ibs_op_ctl *op_ctl = (union ibs_op_ctl *)data->data;
  213. __u64 *rip = (__u64 *)op_ctl + 1;
  214. union ibs_op_data *op_data = (union ibs_op_data *)(rip + 1);
  215. union ibs_op_data3 *op_data3 = (union ibs_op_data3 *)(rip + 3);
  216. pr_ibs_op_ctl(*op_ctl);
  217. if (!op_data->op_rip_invalid)
  218. printf("IbsOpRip:\t%016llx\n", *rip);
  219. pr_ibs_op_data(*op_data);
  220. /*
  221. * Erratum #1293: ignore op_data2 if DcMissNoMabAlloc or SwPf are set
  222. */
  223. if (!(cpu_family == 0x19 && cpu_model < 0x10 &&
  224. (op_data3->dc_miss_no_mab_alloc || op_data3->sw_pf)))
  225. pr_ibs_op_data2(*(union ibs_op_data2 *)(rip + 2));
  226. pr_ibs_op_data3(*op_data3);
  227. if (op_data3->dc_lin_addr_valid)
  228. printf("IbsDCLinAd:\t%016llx\n", *(rip + 4));
  229. if (op_data3->dc_phy_addr_valid)
  230. printf("IbsDCPhysAd:\t%016llx\n", *(rip + 5));
  231. if (op_data->op_brn_ret && *(rip + 6))
  232. printf("IbsBrTarget:\t%016llx\n", *(rip + 6));
  233. }
  234. /*
  235. * IBS Fetch MSRs always saved, in order, are:
  236. * IBS_FETCH_CTL, IBS_FETCH_LINADDR, IBS_FETCH_PHYSADDR, IC_IBS_EXTD_CTL
  237. */
  238. static void amd_dump_ibs_fetch(struct perf_sample *sample)
  239. {
  240. struct perf_ibs_data *data = sample->raw_data;
  241. union ibs_fetch_ctl *fetch_ctl = (union ibs_fetch_ctl *)data->data;
  242. __u64 *addr = (__u64 *)fetch_ctl + 1;
  243. union ic_ibs_extd_ctl *extd_ctl = (union ic_ibs_extd_ctl *)addr + 2;
  244. pr_ibs_fetch_ctl(*fetch_ctl);
  245. printf("IbsFetchLinAd:\t%016llx\n", *addr++);
  246. if (fetch_ctl->phy_addr_valid)
  247. printf("IbsFetchPhysAd:\t%016llx\n", *addr);
  248. pr_ic_ibs_extd_ctl(*extd_ctl);
  249. }
  250. /*
  251. * Test for enable and valid bits in captured control MSRs.
  252. */
  253. static bool is_valid_ibs_fetch_sample(struct perf_sample *sample)
  254. {
  255. struct perf_ibs_data *data = sample->raw_data;
  256. union ibs_fetch_ctl *fetch_ctl = (union ibs_fetch_ctl *)data->data;
  257. if (fetch_ctl->fetch_en && fetch_ctl->fetch_val)
  258. return true;
  259. return false;
  260. }
  261. static bool is_valid_ibs_op_sample(struct perf_sample *sample)
  262. {
  263. struct perf_ibs_data *data = sample->raw_data;
  264. union ibs_op_ctl *op_ctl = (union ibs_op_ctl *)data->data;
  265. if (op_ctl->op_en && op_ctl->op_val)
  266. return true;
  267. return false;
  268. }
  269. /* AMD vendor specific raw sample function. Check for PERF_RECORD_SAMPLE events
  270. * and if the event was triggered by IBS, display its raw data with decoded text.
  271. * The function is only invoked when the dump flag -D is set.
  272. */
  273. void evlist__amd_sample_raw(struct evlist *evlist, union perf_event *event,
  274. struct perf_sample *sample)
  275. {
  276. struct evsel *evsel;
  277. if (event->header.type != PERF_RECORD_SAMPLE || !sample->raw_size)
  278. return;
  279. evsel = evlist__event2evsel(evlist, event);
  280. if (!evsel)
  281. return;
  282. if (evsel->core.attr.type == ibs_fetch_type) {
  283. if (!is_valid_ibs_fetch_sample(sample)) {
  284. pr_debug("Invalid raw IBS Fetch MSR data encountered\n");
  285. return;
  286. }
  287. amd_dump_ibs_fetch(sample);
  288. } else if (evsel->core.attr.type == ibs_op_type) {
  289. if (!is_valid_ibs_op_sample(sample)) {
  290. pr_debug("Invalid raw IBS Op MSR data encountered\n");
  291. return;
  292. }
  293. amd_dump_ibs_op(sample);
  294. }
  295. }
  296. static void parse_cpuid(struct perf_env *env)
  297. {
  298. const char *cpuid;
  299. int ret;
  300. cpuid = perf_env__cpuid(env);
  301. /*
  302. * cpuid = "AuthenticAMD,family,model,stepping"
  303. */
  304. ret = sscanf(cpuid, "%*[^,],%u,%u", &cpu_family, &cpu_model);
  305. if (ret != 2)
  306. pr_debug("problem parsing cpuid\n");
  307. }
  308. /*
  309. * Find and assign the type number used for ibs_op or ibs_fetch samples.
  310. * Device names can be large - we are only interested in the first 9 characters,
  311. * to match "ibs_fetch".
  312. */
  313. bool evlist__has_amd_ibs(struct evlist *evlist)
  314. {
  315. struct perf_env *env = perf_session__env(evlist->session);
  316. int ret, nr_pmu_mappings = perf_env__nr_pmu_mappings(env);
  317. const char *pmu_mapping = perf_env__pmu_mappings(env);
  318. char name[sizeof("ibs_fetch")];
  319. u32 type;
  320. while (nr_pmu_mappings--) {
  321. ret = sscanf(pmu_mapping, "%u:%9s", &type, name);
  322. if (ret == 2) {
  323. if (strstarts(name, "ibs_op"))
  324. ibs_op_type = type;
  325. else if (strstarts(name, "ibs_fetch"))
  326. ibs_fetch_type = type;
  327. }
  328. pmu_mapping += strlen(pmu_mapping) + 1 /* '\0' */;
  329. }
  330. if (perf_env__find_pmu_cap(env, "ibs_op", "zen4_ibs_extensions"))
  331. zen4_ibs_extensions = 1;
  332. if (perf_env__find_pmu_cap(env, "ibs_op", "ldlat"))
  333. ldlat_cap = 1;
  334. if (perf_env__find_pmu_cap(env, "ibs_op", "dtlb_pgsize"))
  335. dtlb_pgsize_cap = 1;
  336. if (ibs_fetch_type || ibs_op_type) {
  337. if (!cpu_family)
  338. parse_cpuid(env);
  339. return true;
  340. }
  341. return false;
  342. }