init.c 12 KB

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  1. /*
  2. * This file is subject to the terms and conditions of the GNU General Public
  3. * License. See the file "COPYING" in the main directory of this archive
  4. * for more details.
  5. *
  6. * Copyright (C) 1994 - 2000 Ralf Baechle
  7. * Copyright (C) 1999, 2000 Silicon Graphics, Inc.
  8. * Kevin D. Kissell, kevink@mips.com and Carsten Langgaard, carstenl@mips.com
  9. * Copyright (C) 2000 MIPS Technologies, Inc. All rights reserved.
  10. */
  11. #include <linux/bug.h>
  12. #include <linux/init.h>
  13. #include <linux/module.h>
  14. #include <linux/signal.h>
  15. #include <linux/sched.h>
  16. #include <linux/smp.h>
  17. #include <linux/kernel.h>
  18. #include <linux/errno.h>
  19. #include <linux/string.h>
  20. #include <linux/types.h>
  21. #include <linux/pagemap.h>
  22. #include <linux/ptrace.h>
  23. #include <linux/mman.h>
  24. #include <linux/mm.h>
  25. #include <linux/bootmem.h>
  26. #include <linux/highmem.h>
  27. #include <linux/swap.h>
  28. #include <linux/proc_fs.h>
  29. #include <linux/pfn.h>
  30. #include <linux/hardirq.h>
  31. #include <asm/asm-offsets.h>
  32. #include <asm/bootinfo.h>
  33. #include <asm/cachectl.h>
  34. #include <asm/cpu.h>
  35. #include <asm/dma.h>
  36. #include <asm/kmap_types.h>
  37. #include <asm/mmu_context.h>
  38. #include <asm/sections.h>
  39. #include <asm/pgtable.h>
  40. #include <asm/pgalloc.h>
  41. #include <asm/tlb.h>
  42. #include <asm/fixmap.h>
  43. /* Atomicity and interruptability */
  44. #ifdef CONFIG_MIPS_MT_SMTC
  45. #include <asm/mipsmtregs.h>
  46. #define ENTER_CRITICAL(flags) \
  47. { \
  48. unsigned int mvpflags; \
  49. local_irq_save(flags);\
  50. mvpflags = dvpe()
  51. #define EXIT_CRITICAL(flags) \
  52. evpe(mvpflags); \
  53. local_irq_restore(flags); \
  54. }
  55. #else
  56. #define ENTER_CRITICAL(flags) local_irq_save(flags)
  57. #define EXIT_CRITICAL(flags) local_irq_restore(flags)
  58. #endif /* CONFIG_MIPS_MT_SMTC */
  59. DEFINE_PER_CPU(struct mmu_gather, mmu_gathers);
  60. /*
  61. * We have up to 8 empty zeroed pages so we can map one of the right colour
  62. * when needed. This is necessary only on R4000 / R4400 SC and MC versions
  63. * where we have to avoid VCED / VECI exceptions for good performance at
  64. * any price. Since page is never written to after the initialization we
  65. * don't have to care about aliases on other CPUs.
  66. */
  67. unsigned long empty_zero_page, zero_page_mask;
  68. EXPORT_SYMBOL_GPL(empty_zero_page);
  69. /*
  70. * Not static inline because used by IP27 special magic initialization code
  71. */
  72. unsigned long setup_zero_pages(void)
  73. {
  74. unsigned int order;
  75. unsigned long size;
  76. struct page *page;
  77. if (cpu_has_vce)
  78. order = 3;
  79. else
  80. order = 0;
  81. empty_zero_page = __get_free_pages(GFP_KERNEL | __GFP_ZERO, order);
  82. if (!empty_zero_page)
  83. panic("Oh boy, that early out of memory?");
  84. page = virt_to_page((void *)empty_zero_page);
  85. split_page(page, order);
  86. while (page < virt_to_page((void *)(empty_zero_page + (PAGE_SIZE << order)))) {
  87. SetPageReserved(page);
  88. page++;
  89. }
  90. size = PAGE_SIZE << order;
  91. zero_page_mask = (size - 1) & PAGE_MASK;
  92. return 1UL << order;
  93. }
  94. #ifdef CONFIG_MIPS_MT_SMTC
  95. static pte_t *kmap_coherent_pte;
  96. static void __init kmap_coherent_init(void)
  97. {
  98. unsigned long vaddr;
  99. /* cache the first coherent kmap pte */
  100. vaddr = __fix_to_virt(FIX_CMAP_BEGIN);
  101. kmap_coherent_pte = kmap_get_fixmap_pte(vaddr);
  102. }
  103. #else
  104. static inline void kmap_coherent_init(void) {}
  105. #endif
  106. void *kmap_coherent(struct page *page, unsigned long addr)
  107. {
  108. enum fixed_addresses idx;
  109. unsigned long vaddr, flags, entrylo;
  110. unsigned long old_ctx;
  111. pte_t pte;
  112. int tlbidx;
  113. BUG_ON(Page_dcache_dirty(page));
  114. inc_preempt_count();
  115. idx = (addr >> PAGE_SHIFT) & (FIX_N_COLOURS - 1);
  116. #ifdef CONFIG_MIPS_MT_SMTC
  117. idx += FIX_N_COLOURS * smp_processor_id() +
  118. (in_interrupt() ? (FIX_N_COLOURS * NR_CPUS) : 0);
  119. #else
  120. idx += in_interrupt() ? FIX_N_COLOURS : 0;
  121. #endif
  122. vaddr = __fix_to_virt(FIX_CMAP_END - idx);
  123. pte = mk_pte(page, PAGE_KERNEL);
  124. #if defined(CONFIG_64BIT_PHYS_ADDR) && defined(CONFIG_CPU_MIPS32)
  125. entrylo = pte.pte_high;
  126. #else
  127. entrylo = pte_val(pte) >> 6;
  128. #endif
  129. ENTER_CRITICAL(flags);
  130. old_ctx = read_c0_entryhi();
  131. write_c0_entryhi(vaddr & (PAGE_MASK << 1));
  132. write_c0_entrylo0(entrylo);
  133. write_c0_entrylo1(entrylo);
  134. #ifdef CONFIG_MIPS_MT_SMTC
  135. set_pte(kmap_coherent_pte - (FIX_CMAP_END - idx), pte);
  136. /* preload TLB instead of local_flush_tlb_one() */
  137. mtc0_tlbw_hazard();
  138. tlb_probe();
  139. tlb_probe_hazard();
  140. tlbidx = read_c0_index();
  141. mtc0_tlbw_hazard();
  142. if (tlbidx < 0)
  143. tlb_write_random();
  144. else
  145. tlb_write_indexed();
  146. #else
  147. tlbidx = read_c0_wired();
  148. write_c0_wired(tlbidx + 1);
  149. write_c0_index(tlbidx);
  150. mtc0_tlbw_hazard();
  151. tlb_write_indexed();
  152. #endif
  153. tlbw_use_hazard();
  154. write_c0_entryhi(old_ctx);
  155. EXIT_CRITICAL(flags);
  156. return (void*) vaddr;
  157. }
  158. #define UNIQUE_ENTRYHI(idx) (CKSEG0 + ((idx) << (PAGE_SHIFT + 1)))
  159. void kunmap_coherent(void)
  160. {
  161. #ifndef CONFIG_MIPS_MT_SMTC
  162. unsigned int wired;
  163. unsigned long flags, old_ctx;
  164. ENTER_CRITICAL(flags);
  165. old_ctx = read_c0_entryhi();
  166. wired = read_c0_wired() - 1;
  167. write_c0_wired(wired);
  168. write_c0_index(wired);
  169. write_c0_entryhi(UNIQUE_ENTRYHI(wired));
  170. write_c0_entrylo0(0);
  171. write_c0_entrylo1(0);
  172. mtc0_tlbw_hazard();
  173. tlb_write_indexed();
  174. tlbw_use_hazard();
  175. write_c0_entryhi(old_ctx);
  176. EXIT_CRITICAL(flags);
  177. #endif
  178. dec_preempt_count();
  179. preempt_check_resched();
  180. }
  181. void copy_user_highpage(struct page *to, struct page *from,
  182. unsigned long vaddr, struct vm_area_struct *vma)
  183. {
  184. void *vfrom, *vto;
  185. vto = kmap_atomic(to, KM_USER1);
  186. if (cpu_has_dc_aliases &&
  187. page_mapped(from) && !Page_dcache_dirty(from)) {
  188. vfrom = kmap_coherent(from, vaddr);
  189. copy_page(vto, vfrom);
  190. kunmap_coherent();
  191. } else {
  192. vfrom = kmap_atomic(from, KM_USER0);
  193. copy_page(vto, vfrom);
  194. kunmap_atomic(vfrom, KM_USER0);
  195. }
  196. if ((!cpu_has_ic_fills_f_dc) ||
  197. pages_do_alias((unsigned long)vto, vaddr & PAGE_MASK))
  198. flush_data_cache_page((unsigned long)vto);
  199. kunmap_atomic(vto, KM_USER1);
  200. /* Make sure this page is cleared on other CPU's too before using it */
  201. smp_wmb();
  202. }
  203. void copy_to_user_page(struct vm_area_struct *vma,
  204. struct page *page, unsigned long vaddr, void *dst, const void *src,
  205. unsigned long len)
  206. {
  207. if (cpu_has_dc_aliases &&
  208. page_mapped(page) && !Page_dcache_dirty(page)) {
  209. void *vto = kmap_coherent(page, vaddr) + (vaddr & ~PAGE_MASK);
  210. memcpy(vto, src, len);
  211. kunmap_coherent();
  212. } else {
  213. memcpy(dst, src, len);
  214. if (cpu_has_dc_aliases)
  215. SetPageDcacheDirty(page);
  216. }
  217. if ((vma->vm_flags & VM_EXEC) && !cpu_has_ic_fills_f_dc)
  218. flush_cache_page(vma, vaddr, page_to_pfn(page));
  219. }
  220. void copy_from_user_page(struct vm_area_struct *vma,
  221. struct page *page, unsigned long vaddr, void *dst, const void *src,
  222. unsigned long len)
  223. {
  224. if (cpu_has_dc_aliases &&
  225. page_mapped(page) && !Page_dcache_dirty(page)) {
  226. void *vfrom = kmap_coherent(page, vaddr) + (vaddr & ~PAGE_MASK);
  227. memcpy(dst, vfrom, len);
  228. kunmap_coherent();
  229. } else {
  230. memcpy(dst, src, len);
  231. if (cpu_has_dc_aliases)
  232. SetPageDcacheDirty(page);
  233. }
  234. }
  235. void __init fixrange_init(unsigned long start, unsigned long end,
  236. pgd_t *pgd_base)
  237. {
  238. #if defined(CONFIG_HIGHMEM) || defined(CONFIG_MIPS_MT_SMTC)
  239. pgd_t *pgd;
  240. pud_t *pud;
  241. pmd_t *pmd;
  242. pte_t *pte;
  243. int i, j, k;
  244. unsigned long vaddr;
  245. vaddr = start;
  246. i = __pgd_offset(vaddr);
  247. j = __pud_offset(vaddr);
  248. k = __pmd_offset(vaddr);
  249. pgd = pgd_base + i;
  250. for ( ; (i < PTRS_PER_PGD) && (vaddr != end); pgd++, i++) {
  251. pud = (pud_t *)pgd;
  252. for ( ; (j < PTRS_PER_PUD) && (vaddr != end); pud++, j++) {
  253. pmd = (pmd_t *)pud;
  254. for (; (k < PTRS_PER_PMD) && (vaddr != end); pmd++, k++) {
  255. if (pmd_none(*pmd)) {
  256. pte = (pte_t *) alloc_bootmem_low_pages(PAGE_SIZE);
  257. set_pmd(pmd, __pmd((unsigned long)pte));
  258. BUG_ON(pte != pte_offset_kernel(pmd, 0));
  259. }
  260. vaddr += PMD_SIZE;
  261. }
  262. k = 0;
  263. }
  264. j = 0;
  265. }
  266. #endif
  267. }
  268. #ifndef CONFIG_NEED_MULTIPLE_NODES
  269. static int __init page_is_ram(unsigned long pagenr)
  270. {
  271. int i;
  272. for (i = 0; i < boot_mem_map.nr_map; i++) {
  273. unsigned long addr, end;
  274. if (boot_mem_map.map[i].type != BOOT_MEM_RAM)
  275. /* not usable memory */
  276. continue;
  277. addr = PFN_UP(boot_mem_map.map[i].addr);
  278. end = PFN_DOWN(boot_mem_map.map[i].addr +
  279. boot_mem_map.map[i].size);
  280. if (pagenr >= addr && pagenr < end)
  281. return 1;
  282. }
  283. return 0;
  284. }
  285. void __init paging_init(void)
  286. {
  287. unsigned long max_zone_pfns[MAX_NR_ZONES];
  288. unsigned long lastpfn;
  289. pagetable_init();
  290. #ifdef CONFIG_HIGHMEM
  291. kmap_init();
  292. #endif
  293. kmap_coherent_init();
  294. #ifdef CONFIG_ZONE_DMA
  295. max_zone_pfns[ZONE_DMA] = MAX_DMA_PFN;
  296. #endif
  297. #ifdef CONFIG_ZONE_DMA32
  298. max_zone_pfns[ZONE_DMA32] = MAX_DMA32_PFN;
  299. #endif
  300. max_zone_pfns[ZONE_NORMAL] = max_low_pfn;
  301. lastpfn = max_low_pfn;
  302. #ifdef CONFIG_HIGHMEM
  303. max_zone_pfns[ZONE_HIGHMEM] = highend_pfn;
  304. lastpfn = highend_pfn;
  305. if (cpu_has_dc_aliases && max_low_pfn != highend_pfn) {
  306. printk(KERN_WARNING "This processor doesn't support highmem."
  307. " %ldk highmem ignored\n",
  308. (highend_pfn - max_low_pfn) << (PAGE_SHIFT - 10));
  309. max_zone_pfns[ZONE_HIGHMEM] = max_low_pfn;
  310. lastpfn = max_low_pfn;
  311. }
  312. #endif
  313. free_area_init_nodes(max_zone_pfns);
  314. }
  315. #ifdef CONFIG_64BIT
  316. static struct kcore_list kcore_kseg0;
  317. #endif
  318. void __init mem_init(void)
  319. {
  320. unsigned long codesize, reservedpages, datasize, initsize;
  321. unsigned long tmp, ram;
  322. #ifdef CONFIG_HIGHMEM
  323. #ifdef CONFIG_DISCONTIGMEM
  324. #error "CONFIG_HIGHMEM and CONFIG_DISCONTIGMEM dont work together yet"
  325. #endif
  326. max_mapnr = highend_pfn;
  327. #else
  328. max_mapnr = max_low_pfn;
  329. #endif
  330. high_memory = (void *) __va(max_low_pfn << PAGE_SHIFT);
  331. totalram_pages += free_all_bootmem();
  332. totalram_pages -= setup_zero_pages(); /* Setup zeroed pages. */
  333. reservedpages = ram = 0;
  334. for (tmp = 0; tmp < max_low_pfn; tmp++)
  335. if (page_is_ram(tmp)) {
  336. ram++;
  337. if (PageReserved(pfn_to_page(tmp)))
  338. reservedpages++;
  339. }
  340. num_physpages = ram;
  341. #ifdef CONFIG_HIGHMEM
  342. for (tmp = highstart_pfn; tmp < highend_pfn; tmp++) {
  343. struct page *page = pfn_to_page(tmp);
  344. if (!page_is_ram(tmp)) {
  345. SetPageReserved(page);
  346. continue;
  347. }
  348. ClearPageReserved(page);
  349. init_page_count(page);
  350. __free_page(page);
  351. totalhigh_pages++;
  352. }
  353. totalram_pages += totalhigh_pages;
  354. num_physpages += totalhigh_pages;
  355. #endif
  356. codesize = (unsigned long) &_etext - (unsigned long) &_text;
  357. datasize = (unsigned long) &_edata - (unsigned long) &_etext;
  358. initsize = (unsigned long) &__init_end - (unsigned long) &__init_begin;
  359. #ifdef CONFIG_64BIT
  360. if ((unsigned long) &_text > (unsigned long) CKSEG0)
  361. /* The -4 is a hack so that user tools don't have to handle
  362. the overflow. */
  363. kclist_add(&kcore_kseg0, (void *) CKSEG0,
  364. 0x80000000 - 4, KCORE_TEXT);
  365. #endif
  366. printk(KERN_INFO "Memory: %luk/%luk available (%ldk kernel code, "
  367. "%ldk reserved, %ldk data, %ldk init, %ldk highmem)\n",
  368. nr_free_pages() << (PAGE_SHIFT-10),
  369. ram << (PAGE_SHIFT-10),
  370. codesize >> 10,
  371. reservedpages << (PAGE_SHIFT-10),
  372. datasize >> 10,
  373. initsize >> 10,
  374. (unsigned long) (totalhigh_pages << (PAGE_SHIFT-10)));
  375. }
  376. #endif /* !CONFIG_NEED_MULTIPLE_NODES */
  377. void free_init_pages(const char *what, unsigned long begin, unsigned long end)
  378. {
  379. unsigned long pfn;
  380. for (pfn = PFN_UP(begin); pfn < PFN_DOWN(end); pfn++) {
  381. struct page *page = pfn_to_page(pfn);
  382. void *addr = phys_to_virt(PFN_PHYS(pfn));
  383. ClearPageReserved(page);
  384. init_page_count(page);
  385. memset(addr, POISON_FREE_INITMEM, PAGE_SIZE);
  386. __free_page(page);
  387. totalram_pages++;
  388. }
  389. printk(KERN_INFO "Freeing %s: %ldk freed\n", what, (end - begin) >> 10);
  390. }
  391. #ifdef CONFIG_BLK_DEV_INITRD
  392. void free_initrd_mem(unsigned long start, unsigned long end)
  393. {
  394. free_init_pages("initrd memory",
  395. virt_to_phys((void *)start),
  396. virt_to_phys((void *)end));
  397. }
  398. #endif
  399. void __init_refok free_initmem(void)
  400. {
  401. prom_free_prom_memory();
  402. free_init_pages("unused kernel memory",
  403. __pa_symbol(&__init_begin),
  404. __pa_symbol(&__init_end));
  405. }
  406. unsigned long pgd_current[NR_CPUS];
  407. /*
  408. * On 64-bit we've got three-level pagetables with a slightly
  409. * different layout ...
  410. */
  411. #define __page_aligned(order) __attribute__((__aligned__(PAGE_SIZE<<order)))
  412. /*
  413. * gcc 3.3 and older have trouble determining that PTRS_PER_PGD and PGD_ORDER
  414. * are constants. So we use the variants from asm-offset.h until that gcc
  415. * will officially be retired.
  416. */
  417. pgd_t swapper_pg_dir[_PTRS_PER_PGD] __page_aligned(_PGD_ORDER);
  418. #ifdef CONFIG_64BIT
  419. pmd_t invalid_pmd_table[PTRS_PER_PMD] __page_aligned(PMD_ORDER);
  420. #endif
  421. pte_t invalid_pte_table[PTRS_PER_PTE] __page_aligned(PTE_ORDER);