setup.c 10 KB

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  1. /*
  2. * linux/arch/m32r/kernel/setup.c
  3. *
  4. * Setup routines for Renesas M32R
  5. *
  6. * Copyright (c) 2001, 2002 Hiroyuki Kondo, Hirokazu Takata,
  7. * Hitoshi Yamamoto
  8. */
  9. #include <linux/config.h>
  10. #include <linux/init.h>
  11. #include <linux/kernel.h>
  12. #include <linux/stddef.h>
  13. #include <linux/fs.h>
  14. #include <linux/sched.h>
  15. #include <linux/ioport.h>
  16. #include <linux/mm.h>
  17. #include <linux/bootmem.h>
  18. #include <linux/console.h>
  19. #include <linux/initrd.h>
  20. #include <linux/major.h>
  21. #include <linux/root_dev.h>
  22. #include <linux/seq_file.h>
  23. #include <linux/timex.h>
  24. #include <linux/tty.h>
  25. #include <linux/cpu.h>
  26. #include <linux/nodemask.h>
  27. #include <linux/pfn.h>
  28. #include <asm/processor.h>
  29. #include <asm/pgtable.h>
  30. #include <asm/io.h>
  31. #include <asm/mmu_context.h>
  32. #include <asm/m32r.h>
  33. #include <asm/setup.h>
  34. #include <asm/sections.h>
  35. #ifdef CONFIG_MMU
  36. extern void init_mmu(void);
  37. #endif
  38. extern char _end[];
  39. /*
  40. * Machine setup..
  41. */
  42. struct cpuinfo_m32r boot_cpu_data;
  43. #ifdef CONFIG_BLK_DEV_RAM
  44. extern int rd_doload; /* 1 = load ramdisk, 0 = don't load */
  45. extern int rd_prompt; /* 1 = prompt for ramdisk, 0 = don't prompt */
  46. extern int rd_image_start; /* starting block # of image */
  47. #endif
  48. #if defined(CONFIG_VGA_CONSOLE)
  49. struct screen_info screen_info = {
  50. .orig_video_lines = 25,
  51. .orig_video_cols = 80,
  52. .orig_video_mode = 0,
  53. .orig_video_ega_bx = 0,
  54. .orig_video_isVGA = 1,
  55. .orig_video_points = 8
  56. };
  57. #endif
  58. extern int root_mountflags;
  59. static char command_line[COMMAND_LINE_SIZE];
  60. static struct resource data_resource = {
  61. .name = "Kernel data",
  62. .start = 0,
  63. .end = 0,
  64. .flags = IORESOURCE_BUSY | IORESOURCE_MEM
  65. };
  66. static struct resource code_resource = {
  67. .name = "Kernel code",
  68. .start = 0,
  69. .end = 0,
  70. .flags = IORESOURCE_BUSY | IORESOURCE_MEM
  71. };
  72. unsigned long memory_start;
  73. unsigned long memory_end;
  74. void __init setup_arch(char **);
  75. int get_cpuinfo(char *);
  76. static __inline__ void parse_mem_cmdline(char ** cmdline_p)
  77. {
  78. char c = ' ';
  79. char *to = command_line;
  80. char *from = COMMAND_LINE;
  81. int len = 0;
  82. int usermem = 0;
  83. /* Save unparsed command line copy for /proc/cmdline */
  84. memcpy(saved_command_line, COMMAND_LINE, COMMAND_LINE_SIZE);
  85. saved_command_line[COMMAND_LINE_SIZE-1] = '\0';
  86. memory_start = (unsigned long)CONFIG_MEMORY_START+PAGE_OFFSET;
  87. memory_end = memory_start+(unsigned long)CONFIG_MEMORY_SIZE;
  88. for ( ; ; ) {
  89. if (c == ' ' && !memcmp(from, "mem=", 4)) {
  90. if (to != command_line)
  91. to--;
  92. {
  93. unsigned long mem_size;
  94. usermem = 1;
  95. mem_size = memparse(from+4, &from);
  96. memory_end = memory_start + mem_size;
  97. }
  98. }
  99. c = *(from++);
  100. if (!c)
  101. break;
  102. if (COMMAND_LINE_SIZE <= ++len)
  103. break;
  104. *(to++) = c;
  105. }
  106. *to = '\0';
  107. *cmdline_p = command_line;
  108. if (usermem)
  109. printk(KERN_INFO "user-defined physical RAM map:\n");
  110. }
  111. #ifndef CONFIG_DISCONTIGMEM
  112. static unsigned long __init setup_memory(void)
  113. {
  114. unsigned long start_pfn, max_low_pfn, bootmap_size;
  115. start_pfn = PFN_UP( __pa(_end) );
  116. max_low_pfn = PFN_DOWN( __pa(memory_end) );
  117. /*
  118. * Initialize the boot-time allocator (with low memory only):
  119. */
  120. bootmap_size = init_bootmem_node(NODE_DATA(0), start_pfn,
  121. CONFIG_MEMORY_START>>PAGE_SHIFT, max_low_pfn);
  122. /*
  123. * Register fully available low RAM pages with the bootmem allocator.
  124. */
  125. {
  126. unsigned long curr_pfn;
  127. unsigned long last_pfn;
  128. unsigned long pages;
  129. /*
  130. * We are rounding up the start address of usable memory:
  131. */
  132. curr_pfn = PFN_UP(__pa(memory_start));
  133. /*
  134. * ... and at the end of the usable range downwards:
  135. */
  136. last_pfn = PFN_DOWN(__pa(memory_end));
  137. if (last_pfn > max_low_pfn)
  138. last_pfn = max_low_pfn;
  139. pages = last_pfn - curr_pfn;
  140. free_bootmem(PFN_PHYS(curr_pfn), PFN_PHYS(pages));
  141. }
  142. /*
  143. * Reserve the kernel text and
  144. * Reserve the bootmem bitmap. We do this in two steps (first step
  145. * was init_bootmem()), because this catches the (definitely buggy)
  146. * case of us accidentally initializing the bootmem allocator with
  147. * an invalid RAM area.
  148. */
  149. reserve_bootmem(CONFIG_MEMORY_START + PAGE_SIZE,
  150. (PFN_PHYS(start_pfn) + bootmap_size + PAGE_SIZE - 1)
  151. - CONFIG_MEMORY_START);
  152. /*
  153. * reserve physical page 0 - it's a special BIOS page on many boxes,
  154. * enabling clean reboots, SMP operation, laptop functions.
  155. */
  156. reserve_bootmem(CONFIG_MEMORY_START, PAGE_SIZE);
  157. /*
  158. * reserve memory hole
  159. */
  160. #ifdef CONFIG_MEMHOLE
  161. reserve_bootmem(CONFIG_MEMHOLE_START, CONFIG_MEMHOLE_SIZE);
  162. #endif
  163. #ifdef CONFIG_BLK_DEV_INITRD
  164. if (LOADER_TYPE && INITRD_START) {
  165. if (INITRD_START + INITRD_SIZE <= (max_low_pfn << PAGE_SHIFT)) {
  166. reserve_bootmem(INITRD_START, INITRD_SIZE);
  167. initrd_start = INITRD_START ?
  168. INITRD_START + PAGE_OFFSET : 0;
  169. initrd_end = initrd_start + INITRD_SIZE;
  170. printk("initrd:start[%08lx],size[%08lx]\n",
  171. initrd_start, INITRD_SIZE);
  172. } else {
  173. printk("initrd extends beyond end of memory "
  174. "(0x%08lx > 0x%08lx)\ndisabling initrd\n",
  175. INITRD_START + INITRD_SIZE,
  176. max_low_pfn << PAGE_SHIFT);
  177. initrd_start = 0;
  178. }
  179. }
  180. #endif
  181. return max_low_pfn;
  182. }
  183. #else /* CONFIG_DISCONTIGMEM */
  184. extern unsigned long setup_memory(void);
  185. #endif /* CONFIG_DISCONTIGMEM */
  186. void __init setup_arch(char **cmdline_p)
  187. {
  188. ROOT_DEV = old_decode_dev(ORIG_ROOT_DEV);
  189. boot_cpu_data.cpu_clock = M32R_CPUCLK;
  190. boot_cpu_data.bus_clock = M32R_BUSCLK;
  191. boot_cpu_data.timer_divide = M32R_TIMER_DIVIDE;
  192. #ifdef CONFIG_BLK_DEV_RAM
  193. rd_image_start = RAMDISK_FLAGS & RAMDISK_IMAGE_START_MASK;
  194. rd_prompt = ((RAMDISK_FLAGS & RAMDISK_PROMPT_FLAG) != 0);
  195. rd_doload = ((RAMDISK_FLAGS & RAMDISK_LOAD_FLAG) != 0);
  196. #endif
  197. if (!MOUNT_ROOT_RDONLY)
  198. root_mountflags &= ~MS_RDONLY;
  199. #ifdef CONFIG_VT
  200. #if defined(CONFIG_VGA_CONSOLE)
  201. conswitchp = &vga_con;
  202. #elif defined(CONFIG_DUMMY_CONSOLE)
  203. conswitchp = &dummy_con;
  204. #endif
  205. #endif
  206. #ifdef CONFIG_DISCONTIGMEM
  207. nodes_clear(node_online_map);
  208. node_set_online(0);
  209. node_set_online(1);
  210. #endif /* CONFIG_DISCONTIGMEM */
  211. init_mm.start_code = (unsigned long) _text;
  212. init_mm.end_code = (unsigned long) _etext;
  213. init_mm.end_data = (unsigned long) _edata;
  214. init_mm.brk = (unsigned long) _end;
  215. code_resource.start = virt_to_phys(_text);
  216. code_resource.end = virt_to_phys(_etext)-1;
  217. data_resource.start = virt_to_phys(_etext);
  218. data_resource.end = virt_to_phys(_edata)-1;
  219. parse_mem_cmdline(cmdline_p);
  220. setup_memory();
  221. paging_init();
  222. }
  223. static struct cpu cpu_devices[NR_CPUS];
  224. static int __init topology_init(void)
  225. {
  226. int i;
  227. for_each_present_cpu(i)
  228. register_cpu(&cpu_devices[i], i, NULL);
  229. return 0;
  230. }
  231. subsys_initcall(topology_init);
  232. #ifdef CONFIG_PROC_FS
  233. /*
  234. * Get CPU information for use by the procfs.
  235. */
  236. static int show_cpuinfo(struct seq_file *m, void *v)
  237. {
  238. struct cpuinfo_m32r *c = v;
  239. unsigned long cpu = c - cpu_data;
  240. #ifdef CONFIG_SMP
  241. if (!cpu_online(cpu))
  242. return 0;
  243. #endif /* CONFIG_SMP */
  244. seq_printf(m, "processor\t: %ld\n", cpu);
  245. #if defined(CONFIG_CHIP_VDEC2)
  246. seq_printf(m, "cpu family\t: VDEC2\n"
  247. "cache size\t: Unknown\n");
  248. #elif defined(CONFIG_CHIP_M32700)
  249. seq_printf(m,"cpu family\t: M32700\n"
  250. "cache size\t: I-8KB/D-8KB\n");
  251. #elif defined(CONFIG_CHIP_M32102)
  252. seq_printf(m,"cpu family\t: M32102\n"
  253. "cache size\t: I-8KB\n");
  254. #elif defined(CONFIG_CHIP_OPSP)
  255. seq_printf(m,"cpu family\t: OPSP\n"
  256. "cache size\t: I-8KB/D-8KB\n");
  257. #elif defined(CONFIG_CHIP_MP)
  258. seq_printf(m, "cpu family\t: M32R-MP\n"
  259. "cache size\t: I-xxKB/D-xxKB\n");
  260. #elif defined(CONFIG_CHIP_M32104)
  261. seq_printf(m,"cpu family\t: M32104\n"
  262. "cache size\t: I-8KB/D-8KB\n");
  263. #else
  264. seq_printf(m, "cpu family\t: Unknown\n");
  265. #endif
  266. seq_printf(m, "bogomips\t: %lu.%02lu\n",
  267. c->loops_per_jiffy/(500000/HZ),
  268. (c->loops_per_jiffy/(5000/HZ)) % 100);
  269. #if defined(CONFIG_PLAT_MAPPI)
  270. seq_printf(m, "Machine\t\t: Mappi Evaluation board\n");
  271. #elif defined(CONFIG_PLAT_MAPPI2)
  272. seq_printf(m, "Machine\t\t: Mappi-II Evaluation board\n");
  273. #elif defined(CONFIG_PLAT_MAPPI3)
  274. seq_printf(m, "Machine\t\t: Mappi-III Evaluation board\n");
  275. #elif defined(CONFIG_PLAT_M32700UT)
  276. seq_printf(m, "Machine\t\t: M32700UT Evaluation board\n");
  277. #elif defined(CONFIG_PLAT_OPSPUT)
  278. seq_printf(m, "Machine\t\t: OPSPUT Evaluation board\n");
  279. #elif defined(CONFIG_PLAT_USRV)
  280. seq_printf(m, "Machine\t\t: uServer\n");
  281. #elif defined(CONFIG_PLAT_OAKS32R)
  282. seq_printf(m, "Machine\t\t: OAKS32R\n");
  283. #elif defined(CONFIG_PLAT_M32104UT)
  284. seq_printf(m, "Machine\t\t: M3T-M32104UT uT Engine board\n");
  285. #else
  286. seq_printf(m, "Machine\t\t: Unknown\n");
  287. #endif
  288. #define PRINT_CLOCK(name, value) \
  289. seq_printf(m, name " clock\t: %d.%02dMHz\n", \
  290. ((value) / 1000000), ((value) % 1000000)/10000)
  291. PRINT_CLOCK("CPU", (int)c->cpu_clock);
  292. PRINT_CLOCK("Bus", (int)c->bus_clock);
  293. seq_printf(m, "\n");
  294. return 0;
  295. }
  296. static void *c_start(struct seq_file *m, loff_t *pos)
  297. {
  298. return *pos < NR_CPUS ? cpu_data + *pos : NULL;
  299. }
  300. static void *c_next(struct seq_file *m, void *v, loff_t *pos)
  301. {
  302. ++*pos;
  303. return c_start(m, pos);
  304. }
  305. static void c_stop(struct seq_file *m, void *v)
  306. {
  307. }
  308. struct seq_operations cpuinfo_op = {
  309. start: c_start,
  310. next: c_next,
  311. stop: c_stop,
  312. show: show_cpuinfo,
  313. };
  314. #endif /* CONFIG_PROC_FS */
  315. unsigned long cpu_initialized __initdata = 0;
  316. /*
  317. * cpu_init() initializes state that is per-CPU. Some data is already
  318. * initialized (naturally) in the bootstrap process.
  319. * We reload them nevertheless, this function acts as a
  320. * 'CPU state barrier', nothing should get across.
  321. */
  322. #if defined(CONFIG_CHIP_VDEC2) || defined(CONFIG_CHIP_XNUX2) \
  323. || defined(CONFIG_CHIP_M32700) || defined(CONFIG_CHIP_M32102) \
  324. || defined(CONFIG_CHIP_OPSP) || defined(CONFIG_CHIP_M32104)
  325. void __init cpu_init (void)
  326. {
  327. int cpu_id = smp_processor_id();
  328. if (test_and_set_bit(cpu_id, &cpu_initialized)) {
  329. printk(KERN_WARNING "CPU#%d already initialized!\n", cpu_id);
  330. for ( ; ; )
  331. local_irq_enable();
  332. }
  333. printk(KERN_INFO "Initializing CPU#%d\n", cpu_id);
  334. /* Set up and load the per-CPU TSS and LDT */
  335. atomic_inc(&init_mm.mm_count);
  336. current->active_mm = &init_mm;
  337. if (current->mm)
  338. BUG();
  339. /* Force FPU initialization */
  340. current_thread_info()->status = 0;
  341. clear_used_math();
  342. #ifdef CONFIG_MMU
  343. /* Set up MMU */
  344. init_mmu();
  345. #endif
  346. /* Set up ICUIMASK */
  347. outl(0x00070000, M32R_ICU_IMASK_PORTL); /* imask=111 */
  348. }
  349. #endif /* defined(CONFIG_CHIP_VDEC2) ... */