cpuinfo.c 15 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Record and handle CPU attributes.
  4. *
  5. * Copyright (C) 2014 ARM Ltd.
  6. */
  7. #include <asm/arch_timer.h>
  8. #include <asm/cache.h>
  9. #include <asm/cpu.h>
  10. #include <asm/cputype.h>
  11. #include <asm/cpufeature.h>
  12. #include <asm/fpsimd.h>
  13. #include <linux/bitops.h>
  14. #include <linux/bug.h>
  15. #include <linux/compat.h>
  16. #include <linux/elf.h>
  17. #include <linux/init.h>
  18. #include <linux/kernel.h>
  19. #include <linux/personality.h>
  20. #include <linux/preempt.h>
  21. #include <linux/printk.h>
  22. #include <linux/seq_file.h>
  23. #include <linux/sched.h>
  24. #include <linux/smp.h>
  25. #include <linux/delay.h>
  26. /*
  27. * In case the boot CPU is hotpluggable, we record its initial state and
  28. * current state separately. Certain system registers may contain different
  29. * values depending on configuration at or after reset.
  30. */
  31. DEFINE_PER_CPU(struct cpuinfo_arm64, cpu_data);
  32. static struct cpuinfo_arm64 boot_cpu_data;
  33. static inline const char *icache_policy_str(int l1ip)
  34. {
  35. switch (l1ip) {
  36. case CTR_EL0_L1Ip_VIPT:
  37. return "VIPT";
  38. case CTR_EL0_L1Ip_PIPT:
  39. return "PIPT";
  40. default:
  41. return "RESERVED/UNKNOWN";
  42. }
  43. }
  44. unsigned long __icache_flags;
  45. static const char *const hwcap_str[] = {
  46. [KERNEL_HWCAP_FP] = "fp",
  47. [KERNEL_HWCAP_ASIMD] = "asimd",
  48. [KERNEL_HWCAP_EVTSTRM] = "evtstrm",
  49. [KERNEL_HWCAP_AES] = "aes",
  50. [KERNEL_HWCAP_PMULL] = "pmull",
  51. [KERNEL_HWCAP_SHA1] = "sha1",
  52. [KERNEL_HWCAP_SHA2] = "sha2",
  53. [KERNEL_HWCAP_CRC32] = "crc32",
  54. [KERNEL_HWCAP_ATOMICS] = "atomics",
  55. [KERNEL_HWCAP_FPHP] = "fphp",
  56. [KERNEL_HWCAP_ASIMDHP] = "asimdhp",
  57. [KERNEL_HWCAP_CPUID] = "cpuid",
  58. [KERNEL_HWCAP_ASIMDRDM] = "asimdrdm",
  59. [KERNEL_HWCAP_JSCVT] = "jscvt",
  60. [KERNEL_HWCAP_FCMA] = "fcma",
  61. [KERNEL_HWCAP_LRCPC] = "lrcpc",
  62. [KERNEL_HWCAP_DCPOP] = "dcpop",
  63. [KERNEL_HWCAP_SHA3] = "sha3",
  64. [KERNEL_HWCAP_SM3] = "sm3",
  65. [KERNEL_HWCAP_SM4] = "sm4",
  66. [KERNEL_HWCAP_ASIMDDP] = "asimddp",
  67. [KERNEL_HWCAP_SHA512] = "sha512",
  68. [KERNEL_HWCAP_SVE] = "sve",
  69. [KERNEL_HWCAP_ASIMDFHM] = "asimdfhm",
  70. [KERNEL_HWCAP_DIT] = "dit",
  71. [KERNEL_HWCAP_USCAT] = "uscat",
  72. [KERNEL_HWCAP_ILRCPC] = "ilrcpc",
  73. [KERNEL_HWCAP_FLAGM] = "flagm",
  74. [KERNEL_HWCAP_SSBS] = "ssbs",
  75. [KERNEL_HWCAP_SB] = "sb",
  76. [KERNEL_HWCAP_PACA] = "paca",
  77. [KERNEL_HWCAP_PACG] = "pacg",
  78. [KERNEL_HWCAP_DCPODP] = "dcpodp",
  79. [KERNEL_HWCAP_SVE2] = "sve2",
  80. [KERNEL_HWCAP_SVEAES] = "sveaes",
  81. [KERNEL_HWCAP_SVEPMULL] = "svepmull",
  82. [KERNEL_HWCAP_SVEBITPERM] = "svebitperm",
  83. [KERNEL_HWCAP_SVESHA3] = "svesha3",
  84. [KERNEL_HWCAP_SVESM4] = "svesm4",
  85. [KERNEL_HWCAP_FLAGM2] = "flagm2",
  86. [KERNEL_HWCAP_FRINT] = "frint",
  87. [KERNEL_HWCAP_SVEI8MM] = "svei8mm",
  88. [KERNEL_HWCAP_SVEF32MM] = "svef32mm",
  89. [KERNEL_HWCAP_SVEF64MM] = "svef64mm",
  90. [KERNEL_HWCAP_SVEBF16] = "svebf16",
  91. [KERNEL_HWCAP_I8MM] = "i8mm",
  92. [KERNEL_HWCAP_BF16] = "bf16",
  93. [KERNEL_HWCAP_DGH] = "dgh",
  94. [KERNEL_HWCAP_RNG] = "rng",
  95. [KERNEL_HWCAP_BTI] = "bti",
  96. [KERNEL_HWCAP_MTE] = "mte",
  97. [KERNEL_HWCAP_ECV] = "ecv",
  98. [KERNEL_HWCAP_AFP] = "afp",
  99. [KERNEL_HWCAP_RPRES] = "rpres",
  100. [KERNEL_HWCAP_MTE3] = "mte3",
  101. [KERNEL_HWCAP_SME] = "sme",
  102. [KERNEL_HWCAP_SME_I16I64] = "smei16i64",
  103. [KERNEL_HWCAP_SME_F64F64] = "smef64f64",
  104. [KERNEL_HWCAP_SME_I8I32] = "smei8i32",
  105. [KERNEL_HWCAP_SME_F16F32] = "smef16f32",
  106. [KERNEL_HWCAP_SME_B16F32] = "smeb16f32",
  107. [KERNEL_HWCAP_SME_F32F32] = "smef32f32",
  108. [KERNEL_HWCAP_SME_FA64] = "smefa64",
  109. [KERNEL_HWCAP_WFXT] = "wfxt",
  110. [KERNEL_HWCAP_EBF16] = "ebf16",
  111. [KERNEL_HWCAP_SVE_EBF16] = "sveebf16",
  112. [KERNEL_HWCAP_CSSC] = "cssc",
  113. [KERNEL_HWCAP_RPRFM] = "rprfm",
  114. [KERNEL_HWCAP_SVE2P1] = "sve2p1",
  115. [KERNEL_HWCAP_SME2] = "sme2",
  116. [KERNEL_HWCAP_SME2P1] = "sme2p1",
  117. [KERNEL_HWCAP_SME_I16I32] = "smei16i32",
  118. [KERNEL_HWCAP_SME_BI32I32] = "smebi32i32",
  119. [KERNEL_HWCAP_SME_B16B16] = "smeb16b16",
  120. [KERNEL_HWCAP_SME_F16F16] = "smef16f16",
  121. [KERNEL_HWCAP_MOPS] = "mops",
  122. [KERNEL_HWCAP_HBC] = "hbc",
  123. [KERNEL_HWCAP_SVE_B16B16] = "sveb16b16",
  124. [KERNEL_HWCAP_LRCPC3] = "lrcpc3",
  125. [KERNEL_HWCAP_LSE128] = "lse128",
  126. [KERNEL_HWCAP_FPMR] = "fpmr",
  127. [KERNEL_HWCAP_LUT] = "lut",
  128. [KERNEL_HWCAP_FAMINMAX] = "faminmax",
  129. [KERNEL_HWCAP_F8CVT] = "f8cvt",
  130. [KERNEL_HWCAP_F8FMA] = "f8fma",
  131. [KERNEL_HWCAP_F8DP4] = "f8dp4",
  132. [KERNEL_HWCAP_F8DP2] = "f8dp2",
  133. [KERNEL_HWCAP_F8E4M3] = "f8e4m3",
  134. [KERNEL_HWCAP_F8E5M2] = "f8e5m2",
  135. [KERNEL_HWCAP_SME_LUTV2] = "smelutv2",
  136. [KERNEL_HWCAP_SME_F8F16] = "smef8f16",
  137. [KERNEL_HWCAP_SME_F8F32] = "smef8f32",
  138. [KERNEL_HWCAP_SME_SF8FMA] = "smesf8fma",
  139. [KERNEL_HWCAP_SME_SF8DP4] = "smesf8dp4",
  140. [KERNEL_HWCAP_SME_SF8DP2] = "smesf8dp2",
  141. [KERNEL_HWCAP_POE] = "poe",
  142. };
  143. #ifdef CONFIG_COMPAT
  144. #define COMPAT_KERNEL_HWCAP(x) const_ilog2(COMPAT_HWCAP_ ## x)
  145. static const char *const compat_hwcap_str[] = {
  146. [COMPAT_KERNEL_HWCAP(SWP)] = "swp",
  147. [COMPAT_KERNEL_HWCAP(HALF)] = "half",
  148. [COMPAT_KERNEL_HWCAP(THUMB)] = "thumb",
  149. [COMPAT_KERNEL_HWCAP(26BIT)] = NULL, /* Not possible on arm64 */
  150. [COMPAT_KERNEL_HWCAP(FAST_MULT)] = "fastmult",
  151. [COMPAT_KERNEL_HWCAP(FPA)] = NULL, /* Not possible on arm64 */
  152. [COMPAT_KERNEL_HWCAP(VFP)] = "vfp",
  153. [COMPAT_KERNEL_HWCAP(EDSP)] = "edsp",
  154. [COMPAT_KERNEL_HWCAP(JAVA)] = NULL, /* Not possible on arm64 */
  155. [COMPAT_KERNEL_HWCAP(IWMMXT)] = NULL, /* Not possible on arm64 */
  156. [COMPAT_KERNEL_HWCAP(CRUNCH)] = NULL, /* Not possible on arm64 */
  157. [COMPAT_KERNEL_HWCAP(THUMBEE)] = NULL, /* Not possible on arm64 */
  158. [COMPAT_KERNEL_HWCAP(NEON)] = "neon",
  159. [COMPAT_KERNEL_HWCAP(VFPv3)] = "vfpv3",
  160. [COMPAT_KERNEL_HWCAP(VFPV3D16)] = NULL, /* Not possible on arm64 */
  161. [COMPAT_KERNEL_HWCAP(TLS)] = "tls",
  162. [COMPAT_KERNEL_HWCAP(VFPv4)] = "vfpv4",
  163. [COMPAT_KERNEL_HWCAP(IDIVA)] = "idiva",
  164. [COMPAT_KERNEL_HWCAP(IDIVT)] = "idivt",
  165. [COMPAT_KERNEL_HWCAP(VFPD32)] = NULL, /* Not possible on arm64 */
  166. [COMPAT_KERNEL_HWCAP(LPAE)] = "lpae",
  167. [COMPAT_KERNEL_HWCAP(EVTSTRM)] = "evtstrm",
  168. [COMPAT_KERNEL_HWCAP(FPHP)] = "fphp",
  169. [COMPAT_KERNEL_HWCAP(ASIMDHP)] = "asimdhp",
  170. [COMPAT_KERNEL_HWCAP(ASIMDDP)] = "asimddp",
  171. [COMPAT_KERNEL_HWCAP(ASIMDFHM)] = "asimdfhm",
  172. [COMPAT_KERNEL_HWCAP(ASIMDBF16)] = "asimdbf16",
  173. [COMPAT_KERNEL_HWCAP(I8MM)] = "i8mm",
  174. };
  175. #define COMPAT_KERNEL_HWCAP2(x) const_ilog2(COMPAT_HWCAP2_ ## x)
  176. static const char *const compat_hwcap2_str[] = {
  177. [COMPAT_KERNEL_HWCAP2(AES)] = "aes",
  178. [COMPAT_KERNEL_HWCAP2(PMULL)] = "pmull",
  179. [COMPAT_KERNEL_HWCAP2(SHA1)] = "sha1",
  180. [COMPAT_KERNEL_HWCAP2(SHA2)] = "sha2",
  181. [COMPAT_KERNEL_HWCAP2(CRC32)] = "crc32",
  182. [COMPAT_KERNEL_HWCAP2(SB)] = "sb",
  183. [COMPAT_KERNEL_HWCAP2(SSBS)] = "ssbs",
  184. };
  185. #endif /* CONFIG_COMPAT */
  186. static int c_show(struct seq_file *m, void *v)
  187. {
  188. int i, j;
  189. bool compat = personality(current->personality) == PER_LINUX32;
  190. for_each_online_cpu(i) {
  191. struct cpuinfo_arm64 *cpuinfo = &per_cpu(cpu_data, i);
  192. u32 midr = cpuinfo->reg_midr;
  193. /*
  194. * glibc reads /proc/cpuinfo to determine the number of
  195. * online processors, looking for lines beginning with
  196. * "processor". Give glibc what it expects.
  197. */
  198. seq_printf(m, "processor\t: %d\n", i);
  199. if (compat)
  200. seq_printf(m, "model name\t: ARMv8 Processor rev %d (%s)\n",
  201. MIDR_REVISION(midr), COMPAT_ELF_PLATFORM);
  202. seq_printf(m, "BogoMIPS\t: %lu.%02lu\n",
  203. loops_per_jiffy / (500000UL/HZ),
  204. loops_per_jiffy / (5000UL/HZ) % 100);
  205. /*
  206. * Dump out the common processor features in a single line.
  207. * Userspace should read the hwcaps with getauxval(AT_HWCAP)
  208. * rather than attempting to parse this, but there's a body of
  209. * software which does already (at least for 32-bit).
  210. */
  211. seq_puts(m, "Features\t:");
  212. if (compat) {
  213. #ifdef CONFIG_COMPAT
  214. for (j = 0; j < ARRAY_SIZE(compat_hwcap_str); j++) {
  215. if (compat_elf_hwcap & (1 << j)) {
  216. /*
  217. * Warn once if any feature should not
  218. * have been present on arm64 platform.
  219. */
  220. if (WARN_ON_ONCE(!compat_hwcap_str[j]))
  221. continue;
  222. seq_printf(m, " %s", compat_hwcap_str[j]);
  223. }
  224. }
  225. for (j = 0; j < ARRAY_SIZE(compat_hwcap2_str); j++)
  226. if (compat_elf_hwcap2 & (1 << j))
  227. seq_printf(m, " %s", compat_hwcap2_str[j]);
  228. #endif /* CONFIG_COMPAT */
  229. } else {
  230. for (j = 0; j < ARRAY_SIZE(hwcap_str); j++)
  231. if (cpu_have_feature(j))
  232. seq_printf(m, " %s", hwcap_str[j]);
  233. }
  234. seq_puts(m, "\n");
  235. seq_printf(m, "CPU implementer\t: 0x%02x\n",
  236. MIDR_IMPLEMENTOR(midr));
  237. seq_printf(m, "CPU architecture: 8\n");
  238. seq_printf(m, "CPU variant\t: 0x%x\n", MIDR_VARIANT(midr));
  239. seq_printf(m, "CPU part\t: 0x%03x\n", MIDR_PARTNUM(midr));
  240. seq_printf(m, "CPU revision\t: %d\n\n", MIDR_REVISION(midr));
  241. }
  242. return 0;
  243. }
  244. static void *c_start(struct seq_file *m, loff_t *pos)
  245. {
  246. return *pos < 1 ? (void *)1 : NULL;
  247. }
  248. static void *c_next(struct seq_file *m, void *v, loff_t *pos)
  249. {
  250. ++*pos;
  251. return NULL;
  252. }
  253. static void c_stop(struct seq_file *m, void *v)
  254. {
  255. }
  256. const struct seq_operations cpuinfo_op = {
  257. .start = c_start,
  258. .next = c_next,
  259. .stop = c_stop,
  260. .show = c_show
  261. };
  262. static const struct kobj_type cpuregs_kobj_type = {
  263. .sysfs_ops = &kobj_sysfs_ops,
  264. };
  265. /*
  266. * The ARM ARM uses the phrase "32-bit register" to describe a register
  267. * whose upper 32 bits are RES0 (per C5.1.1, ARM DDI 0487A.i), however
  268. * no statement is made as to whether the upper 32 bits will or will not
  269. * be made use of in future, and between ARM DDI 0487A.c and ARM DDI
  270. * 0487A.d CLIDR_EL1 was expanded from 32-bit to 64-bit.
  271. *
  272. * Thus, while both MIDR_EL1 and REVIDR_EL1 are described as 32-bit
  273. * registers, we expose them both as 64 bit values to cater for possible
  274. * future expansion without an ABI break.
  275. */
  276. #define kobj_to_cpuinfo(kobj) container_of(kobj, struct cpuinfo_arm64, kobj)
  277. #define CPUREGS_ATTR_RO(_name, _field) \
  278. static ssize_t _name##_show(struct kobject *kobj, \
  279. struct kobj_attribute *attr, char *buf) \
  280. { \
  281. struct cpuinfo_arm64 *info = kobj_to_cpuinfo(kobj); \
  282. \
  283. if (info->reg_midr) \
  284. return sprintf(buf, "0x%016llx\n", info->reg_##_field); \
  285. else \
  286. return 0; \
  287. } \
  288. static struct kobj_attribute cpuregs_attr_##_name = __ATTR_RO(_name)
  289. CPUREGS_ATTR_RO(midr_el1, midr);
  290. CPUREGS_ATTR_RO(revidr_el1, revidr);
  291. CPUREGS_ATTR_RO(smidr_el1, smidr);
  292. static struct attribute *cpuregs_id_attrs[] = {
  293. &cpuregs_attr_midr_el1.attr,
  294. &cpuregs_attr_revidr_el1.attr,
  295. NULL
  296. };
  297. static const struct attribute_group cpuregs_attr_group = {
  298. .attrs = cpuregs_id_attrs,
  299. .name = "identification"
  300. };
  301. static struct attribute *sme_cpuregs_id_attrs[] = {
  302. &cpuregs_attr_smidr_el1.attr,
  303. NULL
  304. };
  305. static const struct attribute_group sme_cpuregs_attr_group = {
  306. .attrs = sme_cpuregs_id_attrs,
  307. .name = "identification"
  308. };
  309. static int cpuid_cpu_online(unsigned int cpu)
  310. {
  311. int rc;
  312. struct device *dev;
  313. struct cpuinfo_arm64 *info = &per_cpu(cpu_data, cpu);
  314. dev = get_cpu_device(cpu);
  315. if (!dev) {
  316. rc = -ENODEV;
  317. goto out;
  318. }
  319. rc = kobject_add(&info->kobj, &dev->kobj, "regs");
  320. if (rc)
  321. goto out;
  322. rc = sysfs_create_group(&info->kobj, &cpuregs_attr_group);
  323. if (rc)
  324. kobject_del(&info->kobj);
  325. if (system_supports_sme())
  326. rc = sysfs_merge_group(&info->kobj, &sme_cpuregs_attr_group);
  327. out:
  328. return rc;
  329. }
  330. static int cpuid_cpu_offline(unsigned int cpu)
  331. {
  332. struct device *dev;
  333. struct cpuinfo_arm64 *info = &per_cpu(cpu_data, cpu);
  334. dev = get_cpu_device(cpu);
  335. if (!dev)
  336. return -ENODEV;
  337. if (info->kobj.parent) {
  338. sysfs_remove_group(&info->kobj, &cpuregs_attr_group);
  339. kobject_del(&info->kobj);
  340. }
  341. return 0;
  342. }
  343. static int __init cpuinfo_regs_init(void)
  344. {
  345. int cpu, ret;
  346. for_each_possible_cpu(cpu) {
  347. struct cpuinfo_arm64 *info = &per_cpu(cpu_data, cpu);
  348. kobject_init(&info->kobj, &cpuregs_kobj_type);
  349. }
  350. ret = cpuhp_setup_state(CPUHP_AP_ONLINE_DYN, "arm64/cpuinfo:online",
  351. cpuid_cpu_online, cpuid_cpu_offline);
  352. if (ret < 0) {
  353. pr_err("cpuinfo: failed to register hotplug callbacks.\n");
  354. return ret;
  355. }
  356. return 0;
  357. }
  358. device_initcall(cpuinfo_regs_init);
  359. static void cpuinfo_detect_icache_policy(struct cpuinfo_arm64 *info)
  360. {
  361. unsigned int cpu = smp_processor_id();
  362. u32 l1ip = CTR_L1IP(info->reg_ctr);
  363. switch (l1ip) {
  364. case CTR_EL0_L1Ip_PIPT:
  365. break;
  366. case CTR_EL0_L1Ip_VIPT:
  367. default:
  368. /* Assume aliasing */
  369. set_bit(ICACHEF_ALIASING, &__icache_flags);
  370. break;
  371. }
  372. pr_info("Detected %s I-cache on CPU%d\n", icache_policy_str(l1ip), cpu);
  373. }
  374. static void __cpuinfo_store_cpu_32bit(struct cpuinfo_32bit *info)
  375. {
  376. info->reg_id_dfr0 = read_cpuid(ID_DFR0_EL1);
  377. info->reg_id_dfr1 = read_cpuid(ID_DFR1_EL1);
  378. info->reg_id_isar0 = read_cpuid(ID_ISAR0_EL1);
  379. info->reg_id_isar1 = read_cpuid(ID_ISAR1_EL1);
  380. info->reg_id_isar2 = read_cpuid(ID_ISAR2_EL1);
  381. info->reg_id_isar3 = read_cpuid(ID_ISAR3_EL1);
  382. info->reg_id_isar4 = read_cpuid(ID_ISAR4_EL1);
  383. info->reg_id_isar5 = read_cpuid(ID_ISAR5_EL1);
  384. info->reg_id_isar6 = read_cpuid(ID_ISAR6_EL1);
  385. info->reg_id_mmfr0 = read_cpuid(ID_MMFR0_EL1);
  386. info->reg_id_mmfr1 = read_cpuid(ID_MMFR1_EL1);
  387. info->reg_id_mmfr2 = read_cpuid(ID_MMFR2_EL1);
  388. info->reg_id_mmfr3 = read_cpuid(ID_MMFR3_EL1);
  389. info->reg_id_mmfr4 = read_cpuid(ID_MMFR4_EL1);
  390. info->reg_id_mmfr5 = read_cpuid(ID_MMFR5_EL1);
  391. info->reg_id_pfr0 = read_cpuid(ID_PFR0_EL1);
  392. info->reg_id_pfr1 = read_cpuid(ID_PFR1_EL1);
  393. info->reg_id_pfr2 = read_cpuid(ID_PFR2_EL1);
  394. info->reg_mvfr0 = read_cpuid(MVFR0_EL1);
  395. info->reg_mvfr1 = read_cpuid(MVFR1_EL1);
  396. info->reg_mvfr2 = read_cpuid(MVFR2_EL1);
  397. }
  398. static void __cpuinfo_store_cpu(struct cpuinfo_arm64 *info)
  399. {
  400. info->reg_cntfrq = arch_timer_get_cntfrq();
  401. /*
  402. * Use the effective value of the CTR_EL0 than the raw value
  403. * exposed by the CPU. CTR_EL0.IDC field value must be interpreted
  404. * with the CLIDR_EL1 fields to avoid triggering false warnings
  405. * when there is a mismatch across the CPUs. Keep track of the
  406. * effective value of the CTR_EL0 in our internal records for
  407. * accurate sanity check and feature enablement.
  408. */
  409. info->reg_ctr = read_cpuid_effective_cachetype();
  410. info->reg_dczid = read_cpuid(DCZID_EL0);
  411. info->reg_midr = read_cpuid_id();
  412. info->reg_revidr = read_cpuid(REVIDR_EL1);
  413. info->reg_id_aa64dfr0 = read_cpuid(ID_AA64DFR0_EL1);
  414. info->reg_id_aa64dfr1 = read_cpuid(ID_AA64DFR1_EL1);
  415. info->reg_id_aa64isar0 = read_cpuid(ID_AA64ISAR0_EL1);
  416. info->reg_id_aa64isar1 = read_cpuid(ID_AA64ISAR1_EL1);
  417. info->reg_id_aa64isar2 = read_cpuid(ID_AA64ISAR2_EL1);
  418. info->reg_id_aa64isar3 = read_cpuid(ID_AA64ISAR3_EL1);
  419. info->reg_id_aa64mmfr0 = read_cpuid(ID_AA64MMFR0_EL1);
  420. info->reg_id_aa64mmfr1 = read_cpuid(ID_AA64MMFR1_EL1);
  421. info->reg_id_aa64mmfr2 = read_cpuid(ID_AA64MMFR2_EL1);
  422. info->reg_id_aa64mmfr3 = read_cpuid(ID_AA64MMFR3_EL1);
  423. info->reg_id_aa64mmfr4 = read_cpuid(ID_AA64MMFR4_EL1);
  424. info->reg_id_aa64pfr0 = read_cpuid(ID_AA64PFR0_EL1);
  425. info->reg_id_aa64pfr1 = read_cpuid(ID_AA64PFR1_EL1);
  426. info->reg_id_aa64pfr2 = read_cpuid(ID_AA64PFR2_EL1);
  427. info->reg_id_aa64zfr0 = read_cpuid(ID_AA64ZFR0_EL1);
  428. info->reg_id_aa64smfr0 = read_cpuid(ID_AA64SMFR0_EL1);
  429. info->reg_id_aa64fpfr0 = read_cpuid(ID_AA64FPFR0_EL1);
  430. if (id_aa64pfr1_mte(info->reg_id_aa64pfr1))
  431. info->reg_gmid = read_cpuid(GMID_EL1);
  432. if (id_aa64pfr0_32bit_el0(info->reg_id_aa64pfr0))
  433. __cpuinfo_store_cpu_32bit(&info->aarch32);
  434. if (IS_ENABLED(CONFIG_ARM64_SME) &&
  435. id_aa64pfr1_sme(info->reg_id_aa64pfr1)) {
  436. /*
  437. * We mask out SMPS since even if the hardware
  438. * supports priorities the kernel does not at present
  439. * and we block access to them.
  440. */
  441. info->reg_smidr = read_cpuid(SMIDR_EL1) & ~SMIDR_EL1_SMPS;
  442. }
  443. cpuinfo_detect_icache_policy(info);
  444. }
  445. void cpuinfo_store_cpu(void)
  446. {
  447. struct cpuinfo_arm64 *info = this_cpu_ptr(&cpu_data);
  448. __cpuinfo_store_cpu(info);
  449. update_cpu_features(smp_processor_id(), info, &boot_cpu_data);
  450. }
  451. void __init cpuinfo_store_boot_cpu(void)
  452. {
  453. struct cpuinfo_arm64 *info = &per_cpu(cpu_data, 0);
  454. __cpuinfo_store_cpu(info);
  455. boot_cpu_data = *info;
  456. init_cpu_features(&boot_cpu_data);
  457. }