setup.c 18 KB

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  1. /*
  2. * arch/s390/kernel/setup.c
  3. *
  4. * S390 version
  5. * Copyright (C) 1999,2000 IBM Deutschland Entwicklung GmbH, IBM Corporation
  6. * Author(s): Hartmut Penner (hp@de.ibm.com),
  7. * Martin Schwidefsky (schwidefsky@de.ibm.com)
  8. *
  9. * Derived from "arch/i386/kernel/setup.c"
  10. * Copyright (C) 1995, Linus Torvalds
  11. */
  12. /*
  13. * This file handles the architecture-dependent parts of initialization
  14. */
  15. #include <linux/errno.h>
  16. #include <linux/module.h>
  17. #include <linux/sched.h>
  18. #include <linux/kernel.h>
  19. #include <linux/mm.h>
  20. #include <linux/stddef.h>
  21. #include <linux/unistd.h>
  22. #include <linux/ptrace.h>
  23. #include <linux/slab.h>
  24. #include <linux/user.h>
  25. #include <linux/a.out.h>
  26. #include <linux/tty.h>
  27. #include <linux/ioport.h>
  28. #include <linux/delay.h>
  29. #include <linux/init.h>
  30. #include <linux/initrd.h>
  31. #include <linux/bootmem.h>
  32. #include <linux/root_dev.h>
  33. #include <linux/console.h>
  34. #include <linux/seq_file.h>
  35. #include <linux/kernel_stat.h>
  36. #include <linux/device.h>
  37. #include <linux/notifier.h>
  38. #include <linux/pfn.h>
  39. #include <linux/reboot.h>
  40. #include <asm/uaccess.h>
  41. #include <asm/system.h>
  42. #include <asm/smp.h>
  43. #include <asm/mmu_context.h>
  44. #include <asm/cpcmd.h>
  45. #include <asm/lowcore.h>
  46. #include <asm/irq.h>
  47. #include <asm/page.h>
  48. #include <asm/ptrace.h>
  49. #include <asm/sections.h>
  50. /*
  51. * User copy operations.
  52. */
  53. struct uaccess_ops uaccess;
  54. EXPORT_SYMBOL_GPL(uaccess);
  55. /*
  56. * Machine setup..
  57. */
  58. unsigned int console_mode = 0;
  59. unsigned int console_devno = -1;
  60. unsigned int console_irq = -1;
  61. unsigned long machine_flags = 0;
  62. struct mem_chunk __initdata memory_chunk[MEMORY_CHUNKS];
  63. volatile int __cpu_logical_map[NR_CPUS]; /* logical cpu to cpu address */
  64. static unsigned long __initdata memory_end;
  65. /*
  66. * This is set up by the setup-routine at boot-time
  67. * for S390 need to find out, what we have to setup
  68. * using address 0x10400 ...
  69. */
  70. #include <asm/setup.h>
  71. static struct resource code_resource = {
  72. .name = "Kernel code",
  73. .flags = IORESOURCE_BUSY | IORESOURCE_MEM,
  74. };
  75. static struct resource data_resource = {
  76. .name = "Kernel data",
  77. .flags = IORESOURCE_BUSY | IORESOURCE_MEM,
  78. };
  79. /*
  80. * cpu_init() initializes state that is per-CPU.
  81. */
  82. void __devinit cpu_init (void)
  83. {
  84. int addr = hard_smp_processor_id();
  85. /*
  86. * Store processor id in lowcore (used e.g. in timer_interrupt)
  87. */
  88. asm volatile("stidp %0": "=m" (S390_lowcore.cpu_data.cpu_id));
  89. S390_lowcore.cpu_data.cpu_addr = addr;
  90. /*
  91. * Force FPU initialization:
  92. */
  93. clear_thread_flag(TIF_USEDFPU);
  94. clear_used_math();
  95. atomic_inc(&init_mm.mm_count);
  96. current->active_mm = &init_mm;
  97. if (current->mm)
  98. BUG();
  99. enter_lazy_tlb(&init_mm, current);
  100. }
  101. /*
  102. * VM halt and poweroff setup routines
  103. */
  104. char vmhalt_cmd[128] = "";
  105. char vmpoff_cmd[128] = "";
  106. static char vmpanic_cmd[128] = "";
  107. static inline void strncpy_skip_quote(char *dst, char *src, int n)
  108. {
  109. int sx, dx;
  110. dx = 0;
  111. for (sx = 0; src[sx] != 0; sx++) {
  112. if (src[sx] == '"') continue;
  113. dst[dx++] = src[sx];
  114. if (dx >= n) break;
  115. }
  116. }
  117. static int __init vmhalt_setup(char *str)
  118. {
  119. strncpy_skip_quote(vmhalt_cmd, str, 127);
  120. vmhalt_cmd[127] = 0;
  121. return 1;
  122. }
  123. __setup("vmhalt=", vmhalt_setup);
  124. static int __init vmpoff_setup(char *str)
  125. {
  126. strncpy_skip_quote(vmpoff_cmd, str, 127);
  127. vmpoff_cmd[127] = 0;
  128. return 1;
  129. }
  130. __setup("vmpoff=", vmpoff_setup);
  131. static int vmpanic_notify(struct notifier_block *self, unsigned long event,
  132. void *data)
  133. {
  134. if (MACHINE_IS_VM && strlen(vmpanic_cmd) > 0)
  135. cpcmd(vmpanic_cmd, NULL, 0, NULL);
  136. return NOTIFY_OK;
  137. }
  138. #define PANIC_PRI_VMPANIC 0
  139. static struct notifier_block vmpanic_nb = {
  140. .notifier_call = vmpanic_notify,
  141. .priority = PANIC_PRI_VMPANIC
  142. };
  143. static int __init vmpanic_setup(char *str)
  144. {
  145. static int register_done __initdata = 0;
  146. strncpy_skip_quote(vmpanic_cmd, str, 127);
  147. vmpanic_cmd[127] = 0;
  148. if (!register_done) {
  149. register_done = 1;
  150. atomic_notifier_chain_register(&panic_notifier_list,
  151. &vmpanic_nb);
  152. }
  153. return 1;
  154. }
  155. __setup("vmpanic=", vmpanic_setup);
  156. /*
  157. * condev= and conmode= setup parameter.
  158. */
  159. static int __init condev_setup(char *str)
  160. {
  161. int vdev;
  162. vdev = simple_strtoul(str, &str, 0);
  163. if (vdev >= 0 && vdev < 65536) {
  164. console_devno = vdev;
  165. console_irq = -1;
  166. }
  167. return 1;
  168. }
  169. __setup("condev=", condev_setup);
  170. static int __init conmode_setup(char *str)
  171. {
  172. #if defined(CONFIG_SCLP_CONSOLE)
  173. if (strncmp(str, "hwc", 4) == 0 || strncmp(str, "sclp", 5) == 0)
  174. SET_CONSOLE_SCLP;
  175. #endif
  176. #if defined(CONFIG_TN3215_CONSOLE)
  177. if (strncmp(str, "3215", 5) == 0)
  178. SET_CONSOLE_3215;
  179. #endif
  180. #if defined(CONFIG_TN3270_CONSOLE)
  181. if (strncmp(str, "3270", 5) == 0)
  182. SET_CONSOLE_3270;
  183. #endif
  184. return 1;
  185. }
  186. __setup("conmode=", conmode_setup);
  187. static void __init conmode_default(void)
  188. {
  189. char query_buffer[1024];
  190. char *ptr;
  191. if (MACHINE_IS_VM) {
  192. cpcmd("QUERY CONSOLE", query_buffer, 1024, NULL);
  193. console_devno = simple_strtoul(query_buffer + 5, NULL, 16);
  194. ptr = strstr(query_buffer, "SUBCHANNEL =");
  195. console_irq = simple_strtoul(ptr + 13, NULL, 16);
  196. cpcmd("QUERY TERM", query_buffer, 1024, NULL);
  197. ptr = strstr(query_buffer, "CONMODE");
  198. /*
  199. * Set the conmode to 3215 so that the device recognition
  200. * will set the cu_type of the console to 3215. If the
  201. * conmode is 3270 and we don't set it back then both
  202. * 3215 and the 3270 driver will try to access the console
  203. * device (3215 as console and 3270 as normal tty).
  204. */
  205. cpcmd("TERM CONMODE 3215", NULL, 0, NULL);
  206. if (ptr == NULL) {
  207. #if defined(CONFIG_SCLP_CONSOLE)
  208. SET_CONSOLE_SCLP;
  209. #endif
  210. return;
  211. }
  212. if (strncmp(ptr + 8, "3270", 4) == 0) {
  213. #if defined(CONFIG_TN3270_CONSOLE)
  214. SET_CONSOLE_3270;
  215. #elif defined(CONFIG_TN3215_CONSOLE)
  216. SET_CONSOLE_3215;
  217. #elif defined(CONFIG_SCLP_CONSOLE)
  218. SET_CONSOLE_SCLP;
  219. #endif
  220. } else if (strncmp(ptr + 8, "3215", 4) == 0) {
  221. #if defined(CONFIG_TN3215_CONSOLE)
  222. SET_CONSOLE_3215;
  223. #elif defined(CONFIG_TN3270_CONSOLE)
  224. SET_CONSOLE_3270;
  225. #elif defined(CONFIG_SCLP_CONSOLE)
  226. SET_CONSOLE_SCLP;
  227. #endif
  228. }
  229. } else if (MACHINE_IS_P390) {
  230. #if defined(CONFIG_TN3215_CONSOLE)
  231. SET_CONSOLE_3215;
  232. #elif defined(CONFIG_TN3270_CONSOLE)
  233. SET_CONSOLE_3270;
  234. #endif
  235. } else {
  236. #if defined(CONFIG_SCLP_CONSOLE)
  237. SET_CONSOLE_SCLP;
  238. #endif
  239. }
  240. }
  241. #ifdef CONFIG_SMP
  242. void (*_machine_restart)(char *command) = machine_restart_smp;
  243. void (*_machine_halt)(void) = machine_halt_smp;
  244. void (*_machine_power_off)(void) = machine_power_off_smp;
  245. #else
  246. /*
  247. * Reboot, halt and power_off routines for non SMP.
  248. */
  249. static void do_machine_restart_nonsmp(char * __unused)
  250. {
  251. do_reipl();
  252. }
  253. static void do_machine_halt_nonsmp(void)
  254. {
  255. if (MACHINE_IS_VM && strlen(vmhalt_cmd) > 0)
  256. __cpcmd(vmhalt_cmd, NULL, 0, NULL);
  257. signal_processor(smp_processor_id(), sigp_stop_and_store_status);
  258. }
  259. static void do_machine_power_off_nonsmp(void)
  260. {
  261. if (MACHINE_IS_VM && strlen(vmpoff_cmd) > 0)
  262. __cpcmd(vmpoff_cmd, NULL, 0, NULL);
  263. signal_processor(smp_processor_id(), sigp_stop_and_store_status);
  264. }
  265. void (*_machine_restart)(char *command) = do_machine_restart_nonsmp;
  266. void (*_machine_halt)(void) = do_machine_halt_nonsmp;
  267. void (*_machine_power_off)(void) = do_machine_power_off_nonsmp;
  268. #endif
  269. /*
  270. * Reboot, halt and power_off stubs. They just call _machine_restart,
  271. * _machine_halt or _machine_power_off.
  272. */
  273. void machine_restart(char *command)
  274. {
  275. if (!in_interrupt() || oops_in_progress)
  276. /*
  277. * Only unblank the console if we are called in enabled
  278. * context or a bust_spinlocks cleared the way for us.
  279. */
  280. console_unblank();
  281. _machine_restart(command);
  282. }
  283. void machine_halt(void)
  284. {
  285. if (!in_interrupt() || oops_in_progress)
  286. /*
  287. * Only unblank the console if we are called in enabled
  288. * context or a bust_spinlocks cleared the way for us.
  289. */
  290. console_unblank();
  291. _machine_halt();
  292. }
  293. void machine_power_off(void)
  294. {
  295. if (!in_interrupt() || oops_in_progress)
  296. /*
  297. * Only unblank the console if we are called in enabled
  298. * context or a bust_spinlocks cleared the way for us.
  299. */
  300. console_unblank();
  301. _machine_power_off();
  302. }
  303. /*
  304. * Dummy power off function.
  305. */
  306. void (*pm_power_off)(void) = machine_power_off;
  307. static int __init early_parse_mem(char *p)
  308. {
  309. memory_end = memparse(p, &p);
  310. return 0;
  311. }
  312. early_param("mem", early_parse_mem);
  313. /*
  314. * "ipldelay=XXX[sm]" sets ipl delay in seconds or minutes
  315. */
  316. static int __init early_parse_ipldelay(char *p)
  317. {
  318. unsigned long delay = 0;
  319. delay = simple_strtoul(p, &p, 0);
  320. switch (*p) {
  321. case 's':
  322. case 'S':
  323. delay *= 1000000;
  324. break;
  325. case 'm':
  326. case 'M':
  327. delay *= 60 * 1000000;
  328. }
  329. /* now wait for the requested amount of time */
  330. udelay(delay);
  331. return 0;
  332. }
  333. early_param("ipldelay", early_parse_ipldelay);
  334. static void __init
  335. setup_lowcore(void)
  336. {
  337. struct _lowcore *lc;
  338. int lc_pages;
  339. /*
  340. * Setup lowcore for boot cpu
  341. */
  342. lc_pages = sizeof(void *) == 8 ? 2 : 1;
  343. lc = (struct _lowcore *)
  344. __alloc_bootmem(lc_pages * PAGE_SIZE, lc_pages * PAGE_SIZE, 0);
  345. memset(lc, 0, lc_pages * PAGE_SIZE);
  346. lc->restart_psw.mask = PSW_BASE_BITS | PSW_DEFAULT_KEY;
  347. lc->restart_psw.addr =
  348. PSW_ADDR_AMODE | (unsigned long) restart_int_handler;
  349. lc->external_new_psw.mask = PSW_KERNEL_BITS;
  350. lc->external_new_psw.addr =
  351. PSW_ADDR_AMODE | (unsigned long) ext_int_handler;
  352. lc->svc_new_psw.mask = PSW_KERNEL_BITS | PSW_MASK_IO | PSW_MASK_EXT;
  353. lc->svc_new_psw.addr = PSW_ADDR_AMODE | (unsigned long) system_call;
  354. lc->program_new_psw.mask = PSW_KERNEL_BITS;
  355. lc->program_new_psw.addr =
  356. PSW_ADDR_AMODE | (unsigned long)pgm_check_handler;
  357. lc->mcck_new_psw.mask =
  358. PSW_KERNEL_BITS & ~PSW_MASK_MCHECK & ~PSW_MASK_DAT;
  359. lc->mcck_new_psw.addr =
  360. PSW_ADDR_AMODE | (unsigned long) mcck_int_handler;
  361. lc->io_new_psw.mask = PSW_KERNEL_BITS;
  362. lc->io_new_psw.addr = PSW_ADDR_AMODE | (unsigned long) io_int_handler;
  363. lc->ipl_device = S390_lowcore.ipl_device;
  364. lc->jiffy_timer = -1LL;
  365. lc->kernel_stack = ((unsigned long) &init_thread_union) + THREAD_SIZE;
  366. lc->async_stack = (unsigned long)
  367. __alloc_bootmem(ASYNC_SIZE, ASYNC_SIZE, 0) + ASYNC_SIZE;
  368. lc->panic_stack = (unsigned long)
  369. __alloc_bootmem(PAGE_SIZE, PAGE_SIZE, 0) + PAGE_SIZE;
  370. lc->current_task = (unsigned long) init_thread_union.thread_info.task;
  371. lc->thread_info = (unsigned long) &init_thread_union;
  372. #ifndef CONFIG_64BIT
  373. if (MACHINE_HAS_IEEE) {
  374. lc->extended_save_area_addr = (__u32)
  375. __alloc_bootmem(PAGE_SIZE, PAGE_SIZE, 0);
  376. /* enable extended save area */
  377. __ctl_set_bit(14, 29);
  378. }
  379. #endif
  380. set_prefix((u32)(unsigned long) lc);
  381. }
  382. static void __init
  383. setup_resources(void)
  384. {
  385. struct resource *res;
  386. int i;
  387. code_resource.start = (unsigned long) &_text;
  388. code_resource.end = (unsigned long) &_etext - 1;
  389. data_resource.start = (unsigned long) &_etext;
  390. data_resource.end = (unsigned long) &_edata - 1;
  391. for (i = 0; i < MEMORY_CHUNKS && memory_chunk[i].size > 0; i++) {
  392. res = alloc_bootmem_low(sizeof(struct resource));
  393. res->flags = IORESOURCE_BUSY | IORESOURCE_MEM;
  394. switch (memory_chunk[i].type) {
  395. case CHUNK_READ_WRITE:
  396. res->name = "System RAM";
  397. break;
  398. case CHUNK_READ_ONLY:
  399. res->name = "System ROM";
  400. res->flags |= IORESOURCE_READONLY;
  401. break;
  402. default:
  403. res->name = "reserved";
  404. }
  405. res->start = memory_chunk[i].addr;
  406. res->end = memory_chunk[i].addr + memory_chunk[i].size - 1;
  407. request_resource(&iomem_resource, res);
  408. request_resource(res, &code_resource);
  409. request_resource(res, &data_resource);
  410. }
  411. }
  412. static void __init setup_memory_end(void)
  413. {
  414. unsigned long real_size, memory_size;
  415. unsigned long max_mem, max_phys;
  416. int i;
  417. memory_size = real_size = 0;
  418. max_phys = VMALLOC_END_INIT - VMALLOC_MIN_SIZE;
  419. memory_end &= PAGE_MASK;
  420. max_mem = memory_end ? min(max_phys, memory_end) : max_phys;
  421. for (i = 0; i < MEMORY_CHUNKS; i++) {
  422. struct mem_chunk *chunk = &memory_chunk[i];
  423. real_size = max(real_size, chunk->addr + chunk->size);
  424. if (chunk->addr >= max_mem) {
  425. memset(chunk, 0, sizeof(*chunk));
  426. continue;
  427. }
  428. if (chunk->addr + chunk->size > max_mem)
  429. chunk->size = max_mem - chunk->addr;
  430. memory_size = max(memory_size, chunk->addr + chunk->size);
  431. }
  432. if (!memory_end)
  433. memory_end = memory_size;
  434. if (real_size > memory_end)
  435. printk("More memory detected than supported. Unused: %luk\n",
  436. (real_size - memory_end) >> 10);
  437. }
  438. static void __init
  439. setup_memory(void)
  440. {
  441. unsigned long bootmap_size;
  442. unsigned long start_pfn, end_pfn, init_pfn;
  443. int i;
  444. /*
  445. * partially used pages are not usable - thus
  446. * we are rounding upwards:
  447. */
  448. start_pfn = PFN_UP(__pa(&_end));
  449. end_pfn = max_pfn = PFN_DOWN(memory_end);
  450. /* Initialize storage key for kernel pages */
  451. for (init_pfn = 0 ; init_pfn < start_pfn; init_pfn++)
  452. page_set_storage_key(init_pfn << PAGE_SHIFT, PAGE_DEFAULT_KEY);
  453. #ifdef CONFIG_BLK_DEV_INITRD
  454. /*
  455. * Move the initrd in case the bitmap of the bootmem allocater
  456. * would overwrite it.
  457. */
  458. if (INITRD_START && INITRD_SIZE) {
  459. unsigned long bmap_size;
  460. unsigned long start;
  461. bmap_size = bootmem_bootmap_pages(end_pfn - start_pfn + 1);
  462. bmap_size = PFN_PHYS(bmap_size);
  463. if (PFN_PHYS(start_pfn) + bmap_size > INITRD_START) {
  464. start = PFN_PHYS(start_pfn) + bmap_size + PAGE_SIZE;
  465. if (start + INITRD_SIZE > memory_end) {
  466. printk("initrd extends beyond end of memory "
  467. "(0x%08lx > 0x%08lx)\n"
  468. "disabling initrd\n",
  469. start + INITRD_SIZE, memory_end);
  470. INITRD_START = INITRD_SIZE = 0;
  471. } else {
  472. printk("Moving initrd (0x%08lx -> 0x%08lx, "
  473. "size: %ld)\n",
  474. INITRD_START, start, INITRD_SIZE);
  475. memmove((void *) start, (void *) INITRD_START,
  476. INITRD_SIZE);
  477. INITRD_START = start;
  478. }
  479. }
  480. }
  481. #endif
  482. /*
  483. * Initialize the boot-time allocator
  484. */
  485. bootmap_size = init_bootmem(start_pfn, end_pfn);
  486. /*
  487. * Register RAM areas with the bootmem allocator.
  488. */
  489. for (i = 0; i < MEMORY_CHUNKS && memory_chunk[i].size > 0; i++) {
  490. unsigned long start_chunk, end_chunk, pfn;
  491. if (memory_chunk[i].type != CHUNK_READ_WRITE)
  492. continue;
  493. start_chunk = PFN_DOWN(memory_chunk[i].addr);
  494. end_chunk = start_chunk + PFN_DOWN(memory_chunk[i].size) - 1;
  495. end_chunk = min(end_chunk, end_pfn);
  496. if (start_chunk >= end_chunk)
  497. continue;
  498. add_active_range(0, start_chunk, end_chunk);
  499. pfn = max(start_chunk, start_pfn);
  500. for (; pfn <= end_chunk; pfn++)
  501. page_set_storage_key(PFN_PHYS(pfn), PAGE_DEFAULT_KEY);
  502. }
  503. psw_set_key(PAGE_DEFAULT_KEY);
  504. free_bootmem_with_active_regions(0, max_pfn);
  505. reserve_bootmem(0, PFN_PHYS(start_pfn));
  506. /*
  507. * Reserve the bootmem bitmap itself as well. We do this in two
  508. * steps (first step was init_bootmem()) because this catches
  509. * the (very unlikely) case of us accidentally initializing the
  510. * bootmem allocator with an invalid RAM area.
  511. */
  512. reserve_bootmem(start_pfn << PAGE_SHIFT, bootmap_size);
  513. #ifdef CONFIG_BLK_DEV_INITRD
  514. if (INITRD_START && INITRD_SIZE) {
  515. if (INITRD_START + INITRD_SIZE <= memory_end) {
  516. reserve_bootmem(INITRD_START, INITRD_SIZE);
  517. initrd_start = INITRD_START;
  518. initrd_end = initrd_start + INITRD_SIZE;
  519. } else {
  520. printk("initrd extends beyond end of memory "
  521. "(0x%08lx > 0x%08lx)\ndisabling initrd\n",
  522. initrd_start + INITRD_SIZE, memory_end);
  523. initrd_start = initrd_end = 0;
  524. }
  525. }
  526. #endif
  527. }
  528. /*
  529. * Setup function called from init/main.c just after the banner
  530. * was printed.
  531. */
  532. void __init
  533. setup_arch(char **cmdline_p)
  534. {
  535. /*
  536. * print what head.S has found out about the machine
  537. */
  538. #ifndef CONFIG_64BIT
  539. printk((MACHINE_IS_VM) ?
  540. "We are running under VM (31 bit mode)\n" :
  541. "We are running native (31 bit mode)\n");
  542. printk((MACHINE_HAS_IEEE) ?
  543. "This machine has an IEEE fpu\n" :
  544. "This machine has no IEEE fpu\n");
  545. #else /* CONFIG_64BIT */
  546. printk((MACHINE_IS_VM) ?
  547. "We are running under VM (64 bit mode)\n" :
  548. "We are running native (64 bit mode)\n");
  549. #endif /* CONFIG_64BIT */
  550. /* Save unparsed command line copy for /proc/cmdline */
  551. strlcpy(saved_command_line, COMMAND_LINE, COMMAND_LINE_SIZE);
  552. *cmdline_p = COMMAND_LINE;
  553. *(*cmdline_p + COMMAND_LINE_SIZE - 1) = '\0';
  554. ROOT_DEV = Root_RAM0;
  555. init_mm.start_code = PAGE_OFFSET;
  556. init_mm.end_code = (unsigned long) &_etext;
  557. init_mm.end_data = (unsigned long) &_edata;
  558. init_mm.brk = (unsigned long) &_end;
  559. if (MACHINE_HAS_MVCOS)
  560. memcpy(&uaccess, &uaccess_mvcos, sizeof(uaccess));
  561. else
  562. memcpy(&uaccess, &uaccess_std, sizeof(uaccess));
  563. parse_early_param();
  564. setup_memory_end();
  565. setup_memory();
  566. setup_resources();
  567. setup_lowcore();
  568. cpu_init();
  569. __cpu_logical_map[0] = S390_lowcore.cpu_data.cpu_addr;
  570. smp_setup_cpu_possible_map();
  571. /*
  572. * Create kernel page tables and switch to virtual addressing.
  573. */
  574. paging_init();
  575. /* Setup default console */
  576. conmode_default();
  577. }
  578. void print_cpu_info(struct cpuinfo_S390 *cpuinfo)
  579. {
  580. printk("cpu %d "
  581. #ifdef CONFIG_SMP
  582. "phys_idx=%d "
  583. #endif
  584. "vers=%02X ident=%06X machine=%04X unused=%04X\n",
  585. cpuinfo->cpu_nr,
  586. #ifdef CONFIG_SMP
  587. cpuinfo->cpu_addr,
  588. #endif
  589. cpuinfo->cpu_id.version,
  590. cpuinfo->cpu_id.ident,
  591. cpuinfo->cpu_id.machine,
  592. cpuinfo->cpu_id.unused);
  593. }
  594. /*
  595. * show_cpuinfo - Get information on one CPU for use by procfs.
  596. */
  597. static int show_cpuinfo(struct seq_file *m, void *v)
  598. {
  599. struct cpuinfo_S390 *cpuinfo;
  600. unsigned long n = (unsigned long) v - 1;
  601. preempt_disable();
  602. if (!n) {
  603. seq_printf(m, "vendor_id : IBM/S390\n"
  604. "# processors : %i\n"
  605. "bogomips per cpu: %lu.%02lu\n",
  606. num_online_cpus(), loops_per_jiffy/(500000/HZ),
  607. (loops_per_jiffy/(5000/HZ))%100);
  608. }
  609. if (cpu_online(n)) {
  610. #ifdef CONFIG_SMP
  611. if (smp_processor_id() == n)
  612. cpuinfo = &S390_lowcore.cpu_data;
  613. else
  614. cpuinfo = &lowcore_ptr[n]->cpu_data;
  615. #else
  616. cpuinfo = &S390_lowcore.cpu_data;
  617. #endif
  618. seq_printf(m, "processor %li: "
  619. "version = %02X, "
  620. "identification = %06X, "
  621. "machine = %04X\n",
  622. n, cpuinfo->cpu_id.version,
  623. cpuinfo->cpu_id.ident,
  624. cpuinfo->cpu_id.machine);
  625. }
  626. preempt_enable();
  627. return 0;
  628. }
  629. static void *c_start(struct seq_file *m, loff_t *pos)
  630. {
  631. return *pos < NR_CPUS ? (void *)((unsigned long) *pos + 1) : NULL;
  632. }
  633. static void *c_next(struct seq_file *m, void *v, loff_t *pos)
  634. {
  635. ++*pos;
  636. return c_start(m, pos);
  637. }
  638. static void c_stop(struct seq_file *m, void *v)
  639. {
  640. }
  641. struct seq_operations cpuinfo_op = {
  642. .start = c_start,
  643. .next = c_next,
  644. .stop = c_stop,
  645. .show = show_cpuinfo,
  646. };