proc.c 8.5 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * Copyright (C) 1995, 1996, 2001 Ralf Baechle
  4. * Copyright (C) 2001, 2004 MIPS Technologies, Inc.
  5. * Copyright (C) 2004 Maciej W. Rozycki
  6. */
  7. #include <linux/delay.h>
  8. #include <linux/kernel.h>
  9. #include <linux/sched.h>
  10. #include <linux/seq_file.h>
  11. #include <asm/bootinfo.h>
  12. #include <asm/cpu.h>
  13. #include <asm/cpu-features.h>
  14. #include <asm/idle.h>
  15. #include <asm/mipsregs.h>
  16. #include <asm/processor.h>
  17. #include <asm/prom.h>
  18. unsigned int vced_count, vcei_count;
  19. /*
  20. * No lock; only written during early bootup by CPU 0.
  21. */
  22. static RAW_NOTIFIER_HEAD(proc_cpuinfo_chain);
  23. int __ref register_proc_cpuinfo_notifier(struct notifier_block *nb)
  24. {
  25. return raw_notifier_chain_register(&proc_cpuinfo_chain, nb);
  26. }
  27. int proc_cpuinfo_notifier_call_chain(unsigned long val, void *v)
  28. {
  29. return raw_notifier_call_chain(&proc_cpuinfo_chain, val, v);
  30. }
  31. static int show_cpuinfo(struct seq_file *m, void *v)
  32. {
  33. struct proc_cpuinfo_notifier_args proc_cpuinfo_notifier_args;
  34. unsigned long n = (unsigned long) v - 1;
  35. unsigned int version = cpu_data[n].processor_id;
  36. unsigned int fp_vers = cpu_data[n].fpu_id;
  37. char fmt[64];
  38. int i;
  39. #ifdef CONFIG_SMP
  40. if (!cpu_online(n))
  41. return 0;
  42. #endif
  43. /*
  44. * For the first processor also print the system type
  45. */
  46. if (n == 0) {
  47. seq_printf(m, "system type\t\t: %s\n", get_system_type());
  48. if (mips_get_machine_name())
  49. seq_printf(m, "machine\t\t\t: %s\n",
  50. mips_get_machine_name());
  51. }
  52. seq_printf(m, "processor\t\t: %ld\n", n);
  53. sprintf(fmt, "cpu model\t\t: %%s V%%d.%%d%s\n",
  54. cpu_data[n].options & MIPS_CPU_FPU ? " FPU V%d.%d" : "");
  55. seq_printf(m, fmt, __cpu_name[n],
  56. (version >> 4) & 0x0f, version & 0x0f,
  57. (fp_vers >> 4) & 0x0f, fp_vers & 0x0f);
  58. seq_printf(m, "BogoMIPS\t\t: %u.%02u\n",
  59. cpu_data[n].udelay_val / (500000/HZ),
  60. (cpu_data[n].udelay_val / (5000/HZ)) % 100);
  61. seq_printf(m, "wait instruction\t: %s\n", cpu_wait ? "yes" : "no");
  62. seq_printf(m, "microsecond timers\t: %s\n",
  63. cpu_has_counter ? "yes" : "no");
  64. seq_printf(m, "tlb_entries\t\t: %d\n", cpu_data[n].tlbsize);
  65. seq_printf(m, "extra interrupt vector\t: %s\n",
  66. cpu_has_divec ? "yes" : "no");
  67. seq_printf(m, "hardware watchpoint\t: %s",
  68. cpu_has_watch ? "yes, " : "no\n");
  69. if (cpu_has_watch) {
  70. seq_printf(m, "count: %d, address/irw mask: [",
  71. cpu_data[n].watch_reg_count);
  72. for (i = 0; i < cpu_data[n].watch_reg_count; i++)
  73. seq_printf(m, "%s0x%04x", i ? ", " : "",
  74. cpu_data[n].watch_reg_masks[i]);
  75. seq_puts(m, "]\n");
  76. }
  77. seq_puts(m, "isa\t\t\t:");
  78. if (cpu_has_mips_1)
  79. seq_puts(m, " mips1");
  80. if (cpu_has_mips_2)
  81. seq_puts(m, " mips2");
  82. if (cpu_has_mips_3)
  83. seq_puts(m, " mips3");
  84. if (cpu_has_mips_4)
  85. seq_puts(m, " mips4");
  86. if (cpu_has_mips_5)
  87. seq_puts(m, " mips5");
  88. if (cpu_has_mips32r1)
  89. seq_puts(m, " mips32r1");
  90. if (cpu_has_mips32r2)
  91. seq_puts(m, " mips32r2");
  92. if (cpu_has_mips32r5)
  93. seq_puts(m, " mips32r5");
  94. if (cpu_has_mips32r6)
  95. seq_puts(m, " mips32r6");
  96. if (cpu_has_mips64r1)
  97. seq_puts(m, " mips64r1");
  98. if (cpu_has_mips64r2)
  99. seq_puts(m, " mips64r2");
  100. if (cpu_has_mips64r5)
  101. seq_puts(m, " mips64r5");
  102. if (cpu_has_mips64r6)
  103. seq_puts(m, " mips64r6");
  104. seq_puts(m, "\n");
  105. seq_puts(m, "ASEs implemented\t:");
  106. if (cpu_has_mips16)
  107. seq_puts(m, " mips16");
  108. if (cpu_has_mips16e2)
  109. seq_puts(m, " mips16e2");
  110. if (cpu_has_mdmx)
  111. seq_puts(m, " mdmx");
  112. if (cpu_has_mips3d)
  113. seq_puts(m, " mips3d");
  114. if (cpu_has_smartmips)
  115. seq_puts(m, " smartmips");
  116. if (cpu_has_dsp)
  117. seq_puts(m, " dsp");
  118. if (cpu_has_dsp2)
  119. seq_puts(m, " dsp2");
  120. if (cpu_has_dsp3)
  121. seq_puts(m, " dsp3");
  122. if (cpu_has_mipsmt)
  123. seq_puts(m, " mt");
  124. if (cpu_has_mmips)
  125. seq_puts(m, " micromips");
  126. if (cpu_has_vz)
  127. seq_puts(m, " vz");
  128. if (cpu_has_msa)
  129. seq_puts(m, " msa");
  130. if (cpu_has_eva)
  131. seq_puts(m, " eva");
  132. if (cpu_has_htw)
  133. seq_puts(m, " htw");
  134. if (cpu_has_xpa)
  135. seq_puts(m, " xpa");
  136. if (cpu_has_loongson_mmi)
  137. seq_puts(m, " loongson-mmi");
  138. if (cpu_has_loongson_cam)
  139. seq_puts(m, " loongson-cam");
  140. if (cpu_has_loongson_ext)
  141. seq_puts(m, " loongson-ext");
  142. if (cpu_has_loongson_ext2)
  143. seq_puts(m, " loongson-ext2");
  144. seq_puts(m, "\n");
  145. if (cpu_has_mmips) {
  146. seq_printf(m, "micromips kernel\t: %s\n",
  147. (read_c0_config3() & MIPS_CONF3_ISA_OE) ? "yes" : "no");
  148. }
  149. seq_puts(m, "Options implemented\t:");
  150. if (cpu_has_tlb)
  151. seq_puts(m, " tlb");
  152. if (cpu_has_ftlb)
  153. seq_puts(m, " ftlb");
  154. if (cpu_has_tlbinv)
  155. seq_puts(m, " tlbinv");
  156. if (cpu_has_segments)
  157. seq_puts(m, " segments");
  158. if (cpu_has_rixiex)
  159. seq_puts(m, " rixiex");
  160. if (cpu_has_ldpte)
  161. seq_puts(m, " ldpte");
  162. if (cpu_has_maar)
  163. seq_puts(m, " maar");
  164. if (cpu_has_rw_llb)
  165. seq_puts(m, " rw_llb");
  166. if (cpu_has_4kex)
  167. seq_puts(m, " 4kex");
  168. if (cpu_has_3k_cache)
  169. seq_puts(m, " 3k_cache");
  170. if (cpu_has_4k_cache)
  171. seq_puts(m, " 4k_cache");
  172. if (cpu_has_octeon_cache)
  173. seq_puts(m, " octeon_cache");
  174. if (raw_cpu_has_fpu)
  175. seq_puts(m, " fpu");
  176. if (cpu_has_32fpr)
  177. seq_puts(m, " 32fpr");
  178. if (cpu_has_cache_cdex_p)
  179. seq_puts(m, " cache_cdex_p");
  180. if (cpu_has_cache_cdex_s)
  181. seq_puts(m, " cache_cdex_s");
  182. if (cpu_has_prefetch)
  183. seq_puts(m, " prefetch");
  184. if (cpu_has_mcheck)
  185. seq_puts(m, " mcheck");
  186. if (cpu_has_ejtag)
  187. seq_puts(m, " ejtag");
  188. if (cpu_has_llsc)
  189. seq_puts(m, " llsc");
  190. if (cpu_has_guestctl0ext)
  191. seq_puts(m, " guestctl0ext");
  192. if (cpu_has_guestctl1)
  193. seq_puts(m, " guestctl1");
  194. if (cpu_has_guestctl2)
  195. seq_puts(m, " guestctl2");
  196. if (cpu_has_guestid)
  197. seq_puts(m, " guestid");
  198. if (cpu_has_drg)
  199. seq_puts(m, " drg");
  200. if (cpu_has_rixi)
  201. seq_puts(m, " rixi");
  202. if (cpu_has_lpa)
  203. seq_puts(m, " lpa");
  204. if (cpu_has_mvh)
  205. seq_puts(m, " mvh");
  206. if (cpu_has_vtag_icache)
  207. seq_puts(m, " vtag_icache");
  208. if (cpu_has_dc_aliases)
  209. seq_puts(m, " dc_aliases");
  210. if (cpu_has_ic_fills_f_dc)
  211. seq_puts(m, " ic_fills_f_dc");
  212. if (cpu_has_pindexed_dcache)
  213. seq_puts(m, " pindexed_dcache");
  214. if (cpu_has_userlocal)
  215. seq_puts(m, " userlocal");
  216. if (cpu_has_nofpuex)
  217. seq_puts(m, " nofpuex");
  218. if (cpu_has_vint)
  219. seq_puts(m, " vint");
  220. if (cpu_has_veic)
  221. seq_puts(m, " veic");
  222. if (cpu_has_inclusive_pcaches)
  223. seq_puts(m, " inclusive_pcaches");
  224. if (cpu_has_perf_cntr_intr_bit)
  225. seq_puts(m, " perf_cntr_intr_bit");
  226. if (cpu_has_ufr)
  227. seq_puts(m, " ufr");
  228. if (cpu_has_fre)
  229. seq_puts(m, " fre");
  230. if (cpu_has_cdmm)
  231. seq_puts(m, " cdmm");
  232. if (cpu_has_small_pages)
  233. seq_puts(m, " small_pages");
  234. if (cpu_has_nan_legacy)
  235. seq_puts(m, " nan_legacy");
  236. if (cpu_has_nan_2008)
  237. seq_puts(m, " nan_2008");
  238. if (cpu_has_ebase_wg)
  239. seq_puts(m, " ebase_wg");
  240. if (cpu_has_badinstr)
  241. seq_puts(m, " badinstr");
  242. if (cpu_has_badinstrp)
  243. seq_puts(m, " badinstrp");
  244. if (cpu_has_contextconfig)
  245. seq_puts(m, " contextconfig");
  246. if (cpu_has_perf)
  247. seq_puts(m, " perf");
  248. if (cpu_has_mac2008_only)
  249. seq_puts(m, " mac2008_only");
  250. if (cpu_has_ftlbparex)
  251. seq_puts(m, " ftlbparex");
  252. if (cpu_has_gsexcex)
  253. seq_puts(m, " gsexcex");
  254. if (cpu_has_shared_ftlb_ram)
  255. seq_puts(m, " shared_ftlb_ram");
  256. if (cpu_has_shared_ftlb_entries)
  257. seq_puts(m, " shared_ftlb_entries");
  258. if (cpu_has_mipsmt_pertccounters)
  259. seq_puts(m, " mipsmt_pertccounters");
  260. if (cpu_has_mmid)
  261. seq_puts(m, " mmid");
  262. if (cpu_has_mm_sysad)
  263. seq_puts(m, " mm_sysad");
  264. if (cpu_has_mm_full)
  265. seq_puts(m, " mm_full");
  266. seq_puts(m, "\n");
  267. seq_printf(m, "shadow register sets\t: %d\n",
  268. cpu_data[n].srsets);
  269. seq_printf(m, "kscratch registers\t: %d\n",
  270. hweight8(cpu_data[n].kscratch_mask));
  271. seq_printf(m, "package\t\t\t: %d\n", cpu_data[n].package);
  272. seq_printf(m, "core\t\t\t: %d\n", cpu_core(&cpu_data[n]));
  273. #if defined(CONFIG_MIPS_MT_SMP) || defined(CONFIG_CPU_MIPSR6)
  274. if (cpu_has_mipsmt)
  275. seq_printf(m, "VPE\t\t\t: %d\n", cpu_vpe_id(&cpu_data[n]));
  276. else if (cpu_has_vp)
  277. seq_printf(m, "VP\t\t\t: %d\n", cpu_vpe_id(&cpu_data[n]));
  278. #endif
  279. sprintf(fmt, "VCE%%c exceptions\t\t: %s\n",
  280. cpu_has_vce ? "%u" : "not available");
  281. seq_printf(m, fmt, 'D', vced_count);
  282. seq_printf(m, fmt, 'I', vcei_count);
  283. proc_cpuinfo_notifier_args.m = m;
  284. proc_cpuinfo_notifier_args.n = n;
  285. raw_notifier_call_chain(&proc_cpuinfo_chain, 0,
  286. &proc_cpuinfo_notifier_args);
  287. seq_puts(m, "\n");
  288. return 0;
  289. }
  290. static void *c_start(struct seq_file *m, loff_t *pos)
  291. {
  292. unsigned long i = *pos;
  293. return i < nr_cpu_ids ? (void *) (i + 1) : NULL;
  294. }
  295. static void *c_next(struct seq_file *m, void *v, loff_t *pos)
  296. {
  297. ++*pos;
  298. return c_start(m, pos);
  299. }
  300. static void c_stop(struct seq_file *m, void *v)
  301. {
  302. }
  303. const struct seq_operations cpuinfo_op = {
  304. .start = c_start,
  305. .next = c_next,
  306. .stop = c_stop,
  307. .show = show_cpuinfo,
  308. };