setup-common.c 12 KB

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  1. /*
  2. * Common boot and setup code for both 32-bit and 64-bit.
  3. * Extracted from arch/powerpc/kernel/setup_64.c.
  4. *
  5. * Copyright (C) 2001 PPC64 Team, IBM Corp
  6. *
  7. * This program is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU General Public License
  9. * as published by the Free Software Foundation; either version
  10. * 2 of the License, or (at your option) any later version.
  11. */
  12. #undef DEBUG
  13. #include <linux/module.h>
  14. #include <linux/string.h>
  15. #include <linux/sched.h>
  16. #include <linux/init.h>
  17. #include <linux/kernel.h>
  18. #include <linux/reboot.h>
  19. #include <linux/delay.h>
  20. #include <linux/initrd.h>
  21. #include <linux/platform_device.h>
  22. #include <linux/seq_file.h>
  23. #include <linux/ioport.h>
  24. #include <linux/console.h>
  25. #include <linux/utsname.h>
  26. #include <linux/screen_info.h>
  27. #include <linux/root_dev.h>
  28. #include <linux/notifier.h>
  29. #include <linux/cpu.h>
  30. #include <linux/unistd.h>
  31. #include <linux/serial.h>
  32. #include <linux/serial_8250.h>
  33. #include <asm/io.h>
  34. #include <asm/prom.h>
  35. #include <asm/processor.h>
  36. #include <asm/vdso_datapage.h>
  37. #include <asm/pgtable.h>
  38. #include <asm/smp.h>
  39. #include <asm/elf.h>
  40. #include <asm/machdep.h>
  41. #include <asm/time.h>
  42. #include <asm/cputable.h>
  43. #include <asm/sections.h>
  44. #include <asm/firmware.h>
  45. #include <asm/btext.h>
  46. #include <asm/nvram.h>
  47. #include <asm/setup.h>
  48. #include <asm/system.h>
  49. #include <asm/rtas.h>
  50. #include <asm/iommu.h>
  51. #include <asm/serial.h>
  52. #include <asm/cache.h>
  53. #include <asm/page.h>
  54. #include <asm/mmu.h>
  55. #include <asm/lmb.h>
  56. #include <asm/xmon.h>
  57. #include "setup.h"
  58. #ifdef DEBUG
  59. #include <asm/udbg.h>
  60. #define DBG(fmt...) udbg_printf(fmt)
  61. #else
  62. #define DBG(fmt...)
  63. #endif
  64. /* The main machine-dep calls structure
  65. */
  66. struct machdep_calls ppc_md;
  67. EXPORT_SYMBOL(ppc_md);
  68. struct machdep_calls *machine_id;
  69. EXPORT_SYMBOL(machine_id);
  70. unsigned long klimit = (unsigned long) _end;
  71. /*
  72. * This still seems to be needed... -- paulus
  73. */
  74. struct screen_info screen_info = {
  75. .orig_x = 0,
  76. .orig_y = 25,
  77. .orig_video_cols = 80,
  78. .orig_video_lines = 25,
  79. .orig_video_isVGA = 1,
  80. .orig_video_points = 16
  81. };
  82. #ifdef __DO_IRQ_CANON
  83. /* XXX should go elsewhere eventually */
  84. int ppc_do_canonicalize_irqs;
  85. EXPORT_SYMBOL(ppc_do_canonicalize_irqs);
  86. #endif
  87. /* also used by kexec */
  88. void machine_shutdown(void)
  89. {
  90. if (ppc_md.machine_shutdown)
  91. ppc_md.machine_shutdown();
  92. }
  93. void machine_restart(char *cmd)
  94. {
  95. machine_shutdown();
  96. if (ppc_md.restart)
  97. ppc_md.restart(cmd);
  98. #ifdef CONFIG_SMP
  99. smp_send_stop();
  100. #endif
  101. printk(KERN_EMERG "System Halted, OK to turn off power\n");
  102. local_irq_disable();
  103. while (1) ;
  104. }
  105. void machine_power_off(void)
  106. {
  107. machine_shutdown();
  108. if (ppc_md.power_off)
  109. ppc_md.power_off();
  110. #ifdef CONFIG_SMP
  111. smp_send_stop();
  112. #endif
  113. printk(KERN_EMERG "System Halted, OK to turn off power\n");
  114. local_irq_disable();
  115. while (1) ;
  116. }
  117. /* Used by the G5 thermal driver */
  118. EXPORT_SYMBOL_GPL(machine_power_off);
  119. void (*pm_power_off)(void) = machine_power_off;
  120. EXPORT_SYMBOL_GPL(pm_power_off);
  121. void machine_halt(void)
  122. {
  123. machine_shutdown();
  124. if (ppc_md.halt)
  125. ppc_md.halt();
  126. #ifdef CONFIG_SMP
  127. smp_send_stop();
  128. #endif
  129. printk(KERN_EMERG "System Halted, OK to turn off power\n");
  130. local_irq_disable();
  131. while (1) ;
  132. }
  133. #ifdef CONFIG_TAU
  134. extern u32 cpu_temp(unsigned long cpu);
  135. extern u32 cpu_temp_both(unsigned long cpu);
  136. #endif /* CONFIG_TAU */
  137. #ifdef CONFIG_SMP
  138. DEFINE_PER_CPU(unsigned int, pvr);
  139. #endif
  140. static int show_cpuinfo(struct seq_file *m, void *v)
  141. {
  142. unsigned long cpu_id = (unsigned long)v - 1;
  143. unsigned int pvr;
  144. unsigned short maj;
  145. unsigned short min;
  146. if (cpu_id == NR_CPUS) {
  147. #if defined(CONFIG_SMP) && defined(CONFIG_PPC32)
  148. unsigned long bogosum = 0;
  149. int i;
  150. for_each_online_cpu(i)
  151. bogosum += loops_per_jiffy;
  152. seq_printf(m, "total bogomips\t: %lu.%02lu\n",
  153. bogosum/(500000/HZ), bogosum/(5000/HZ) % 100);
  154. #endif /* CONFIG_SMP && CONFIG_PPC32 */
  155. seq_printf(m, "timebase\t: %lu\n", ppc_tb_freq);
  156. if (ppc_md.name)
  157. seq_printf(m, "platform\t: %s\n", ppc_md.name);
  158. if (ppc_md.show_cpuinfo != NULL)
  159. ppc_md.show_cpuinfo(m);
  160. return 0;
  161. }
  162. /* We only show online cpus: disable preempt (overzealous, I
  163. * knew) to prevent cpu going down. */
  164. preempt_disable();
  165. if (!cpu_online(cpu_id)) {
  166. preempt_enable();
  167. return 0;
  168. }
  169. #ifdef CONFIG_SMP
  170. pvr = per_cpu(pvr, cpu_id);
  171. #else
  172. pvr = mfspr(SPRN_PVR);
  173. #endif
  174. maj = (pvr >> 8) & 0xFF;
  175. min = pvr & 0xFF;
  176. seq_printf(m, "processor\t: %lu\n", cpu_id);
  177. seq_printf(m, "cpu\t\t: ");
  178. if (cur_cpu_spec->pvr_mask)
  179. seq_printf(m, "%s", cur_cpu_spec->cpu_name);
  180. else
  181. seq_printf(m, "unknown (%08x)", pvr);
  182. #ifdef CONFIG_ALTIVEC
  183. if (cpu_has_feature(CPU_FTR_ALTIVEC))
  184. seq_printf(m, ", altivec supported");
  185. #endif /* CONFIG_ALTIVEC */
  186. seq_printf(m, "\n");
  187. #ifdef CONFIG_TAU
  188. if (cur_cpu_spec->cpu_features & CPU_FTR_TAU) {
  189. #ifdef CONFIG_TAU_AVERAGE
  190. /* more straightforward, but potentially misleading */
  191. seq_printf(m, "temperature \t: %u C (uncalibrated)\n",
  192. cpu_temp(cpu_id));
  193. #else
  194. /* show the actual temp sensor range */
  195. u32 temp;
  196. temp = cpu_temp_both(cpu_id);
  197. seq_printf(m, "temperature \t: %u-%u C (uncalibrated)\n",
  198. temp & 0xff, temp >> 16);
  199. #endif
  200. }
  201. #endif /* CONFIG_TAU */
  202. /*
  203. * Assume here that all clock rates are the same in a
  204. * smp system. -- Cort
  205. */
  206. if (ppc_proc_freq)
  207. seq_printf(m, "clock\t\t: %lu.%06luMHz\n",
  208. ppc_proc_freq / 1000000, ppc_proc_freq % 1000000);
  209. if (ppc_md.show_percpuinfo != NULL)
  210. ppc_md.show_percpuinfo(m, cpu_id);
  211. /* If we are a Freescale core do a simple check so
  212. * we dont have to keep adding cases in the future */
  213. if (PVR_VER(pvr) & 0x8000) {
  214. maj = PVR_MAJ(pvr);
  215. min = PVR_MIN(pvr);
  216. } else {
  217. switch (PVR_VER(pvr)) {
  218. case 0x0020: /* 403 family */
  219. maj = PVR_MAJ(pvr) + 1;
  220. min = PVR_MIN(pvr);
  221. break;
  222. case 0x1008: /* 740P/750P ?? */
  223. maj = ((pvr >> 8) & 0xFF) - 1;
  224. min = pvr & 0xFF;
  225. break;
  226. default:
  227. maj = (pvr >> 8) & 0xFF;
  228. min = pvr & 0xFF;
  229. break;
  230. }
  231. }
  232. seq_printf(m, "revision\t: %hd.%hd (pvr %04x %04x)\n",
  233. maj, min, PVR_VER(pvr), PVR_REV(pvr));
  234. #ifdef CONFIG_PPC32
  235. seq_printf(m, "bogomips\t: %lu.%02lu\n",
  236. loops_per_jiffy / (500000/HZ),
  237. (loops_per_jiffy / (5000/HZ)) % 100);
  238. #endif
  239. #ifdef CONFIG_SMP
  240. seq_printf(m, "\n");
  241. #endif
  242. preempt_enable();
  243. return 0;
  244. }
  245. static void *c_start(struct seq_file *m, loff_t *pos)
  246. {
  247. unsigned long i = *pos;
  248. return i <= NR_CPUS ? (void *)(i + 1) : NULL;
  249. }
  250. static void *c_next(struct seq_file *m, void *v, loff_t *pos)
  251. {
  252. ++*pos;
  253. return c_start(m, pos);
  254. }
  255. static void c_stop(struct seq_file *m, void *v)
  256. {
  257. }
  258. struct seq_operations cpuinfo_op = {
  259. .start =c_start,
  260. .next = c_next,
  261. .stop = c_stop,
  262. .show = show_cpuinfo,
  263. };
  264. void __init check_for_initrd(void)
  265. {
  266. #ifdef CONFIG_BLK_DEV_INITRD
  267. DBG(" -> check_for_initrd() initrd_start=0x%lx initrd_end=0x%lx\n",
  268. initrd_start, initrd_end);
  269. /* If we were passed an initrd, set the ROOT_DEV properly if the values
  270. * look sensible. If not, clear initrd reference.
  271. */
  272. if (is_kernel_addr(initrd_start) && is_kernel_addr(initrd_end) &&
  273. initrd_end > initrd_start)
  274. ROOT_DEV = Root_RAM0;
  275. else
  276. initrd_start = initrd_end = 0;
  277. if (initrd_start)
  278. printk("Found initrd at 0x%lx:0x%lx\n", initrd_start, initrd_end);
  279. DBG(" <- check_for_initrd()\n");
  280. #endif /* CONFIG_BLK_DEV_INITRD */
  281. }
  282. #ifdef CONFIG_SMP
  283. /**
  284. * setup_cpu_maps - initialize the following cpu maps:
  285. * cpu_possible_map
  286. * cpu_present_map
  287. * cpu_sibling_map
  288. *
  289. * Having the possible map set up early allows us to restrict allocations
  290. * of things like irqstacks to num_possible_cpus() rather than NR_CPUS.
  291. *
  292. * We do not initialize the online map here; cpus set their own bits in
  293. * cpu_online_map as they come up.
  294. *
  295. * This function is valid only for Open Firmware systems. finish_device_tree
  296. * must be called before using this.
  297. *
  298. * While we're here, we may as well set the "physical" cpu ids in the paca.
  299. *
  300. * NOTE: This must match the parsing done in early_init_dt_scan_cpus.
  301. */
  302. void __init smp_setup_cpu_maps(void)
  303. {
  304. struct device_node *dn = NULL;
  305. int cpu = 0;
  306. while ((dn = of_find_node_by_type(dn, "cpu")) && cpu < NR_CPUS) {
  307. const int *intserv;
  308. int j, len = sizeof(u32), nthreads = 1;
  309. intserv = get_property(dn, "ibm,ppc-interrupt-server#s", &len);
  310. if (intserv)
  311. nthreads = len / sizeof(int);
  312. else {
  313. intserv = get_property(dn, "reg", NULL);
  314. if (!intserv)
  315. intserv = &cpu; /* assume logical == phys */
  316. }
  317. for (j = 0; j < nthreads && cpu < NR_CPUS; j++) {
  318. cpu_set(cpu, cpu_present_map);
  319. set_hard_smp_processor_id(cpu, intserv[j]);
  320. cpu_set(cpu, cpu_possible_map);
  321. cpu++;
  322. }
  323. }
  324. #ifdef CONFIG_PPC64
  325. /*
  326. * On pSeries LPAR, we need to know how many cpus
  327. * could possibly be added to this partition.
  328. */
  329. if (machine_is(pseries) && firmware_has_feature(FW_FEATURE_LPAR) &&
  330. (dn = of_find_node_by_path("/rtas"))) {
  331. int num_addr_cell, num_size_cell, maxcpus;
  332. const unsigned int *ireg;
  333. num_addr_cell = of_n_addr_cells(dn);
  334. num_size_cell = prom_n_size_cells(dn);
  335. ireg = get_property(dn, "ibm,lrdr-capacity", NULL);
  336. if (!ireg)
  337. goto out;
  338. maxcpus = ireg[num_addr_cell + num_size_cell];
  339. /* Double maxcpus for processors which have SMT capability */
  340. if (cpu_has_feature(CPU_FTR_SMT))
  341. maxcpus *= 2;
  342. if (maxcpus > NR_CPUS) {
  343. printk(KERN_WARNING
  344. "Partition configured for %d cpus, "
  345. "operating system maximum is %d.\n",
  346. maxcpus, NR_CPUS);
  347. maxcpus = NR_CPUS;
  348. } else
  349. printk(KERN_INFO "Partition configured for %d cpus.\n",
  350. maxcpus);
  351. for (cpu = 0; cpu < maxcpus; cpu++)
  352. cpu_set(cpu, cpu_possible_map);
  353. out:
  354. of_node_put(dn);
  355. }
  356. /*
  357. * Do the sibling map; assume only two threads per processor.
  358. */
  359. for_each_possible_cpu(cpu) {
  360. cpu_set(cpu, cpu_sibling_map[cpu]);
  361. if (cpu_has_feature(CPU_FTR_SMT))
  362. cpu_set(cpu ^ 0x1, cpu_sibling_map[cpu]);
  363. }
  364. vdso_data->processorCount = num_present_cpus();
  365. #endif /* CONFIG_PPC64 */
  366. }
  367. #endif /* CONFIG_SMP */
  368. static __init int add_pcspkr(void)
  369. {
  370. struct device_node *np;
  371. struct platform_device *pd;
  372. int ret;
  373. np = of_find_compatible_node(NULL, NULL, "pnpPNP,100");
  374. of_node_put(np);
  375. if (!np)
  376. return -ENODEV;
  377. pd = platform_device_alloc("pcspkr", -1);
  378. if (!pd)
  379. return -ENOMEM;
  380. ret = platform_device_add(pd);
  381. if (ret)
  382. platform_device_put(pd);
  383. return ret;
  384. }
  385. device_initcall(add_pcspkr);
  386. void probe_machine(void)
  387. {
  388. extern struct machdep_calls __machine_desc_start;
  389. extern struct machdep_calls __machine_desc_end;
  390. /*
  391. * Iterate all ppc_md structures until we find the proper
  392. * one for the current machine type
  393. */
  394. DBG("Probing machine type ...\n");
  395. for (machine_id = &__machine_desc_start;
  396. machine_id < &__machine_desc_end;
  397. machine_id++) {
  398. DBG(" %s ...", machine_id->name);
  399. memcpy(&ppc_md, machine_id, sizeof(struct machdep_calls));
  400. if (ppc_md.probe()) {
  401. DBG(" match !\n");
  402. break;
  403. }
  404. DBG("\n");
  405. }
  406. /* What can we do if we didn't find ? */
  407. if (machine_id >= &__machine_desc_end) {
  408. DBG("No suitable machine found !\n");
  409. for (;;);
  410. }
  411. printk(KERN_INFO "Using %s machine description\n", ppc_md.name);
  412. }
  413. int check_legacy_ioport(unsigned long base_port)
  414. {
  415. if (ppc_md.check_legacy_ioport == NULL)
  416. return 0;
  417. return ppc_md.check_legacy_ioport(base_port);
  418. }
  419. EXPORT_SYMBOL(check_legacy_ioport);
  420. static int ppc_panic_event(struct notifier_block *this,
  421. unsigned long event, void *ptr)
  422. {
  423. ppc_md.panic(ptr); /* May not return */
  424. return NOTIFY_DONE;
  425. }
  426. static struct notifier_block ppc_panic_block = {
  427. .notifier_call = ppc_panic_event,
  428. .priority = INT_MIN /* may not return; must be done last */
  429. };
  430. void __init setup_panic(void)
  431. {
  432. atomic_notifier_chain_register(&panic_notifier_list, &ppc_panic_block);
  433. }