H41386 s 00100/00000/00000 d D 1.1 02/03/13 20:31:05 patch 2 1 cC cF1 cK10110 cO-rw-rw-r-- e s 00000/00000/00000 d D 1.0 02/03/13 20:31:05 patch 1 0 c BitKeeper file /home/marcelo/bk/linux-2.4/include/asm-mips/highmem.h cBtorvalds@athlon.transmeta.com|ChangeSet|20020205173056|16047|c1d11a41ed024864 cHplucky.distro.conectiva cK57531 cPinclude/asm-mips/highmem.h cRaabbc5125a83e543 cV4 cX0x821 cZ-03:00 e u U f e 0 f x 0x821 t T I 2 /* * highmem.h: virtual kernel memory mappings for high memory * * Used in CONFIG_HIGHMEM systems for memory pages which * are not addressable by direct kernel virtual addresses. * * Copyright (C) 1999 Gerhard Wichert, Siemens AG * Gerhard.Wichert@pdb.siemens.de * * * Redesigned the x86 32-bit VM architecture to deal with * up to 16 Terabyte physical memory. With current x86 CPUs * we now support up to 64 Gigabytes physical RAM. * * Copyright (C) 1999 Ingo Molnar */ #ifndef _ASM_HIGHMEM_H #define _ASM_HIGHMEM_H #ifdef __KERNEL__ #include #include #include #include #include /* undef for production */ #define HIGHMEM_DEBUG 1 /* declarations for highmem.c */ extern unsigned long highstart_pfn, highend_pfn; extern pte_t *kmap_pte; extern pgprot_t kmap_prot; extern pte_t *pkmap_page_table; /* * Right now we initialize only a single pte table. It can be extended * easily, subsequent pte tables have to be allocated in one physical * chunk of RAM. */ #define PKMAP_BASE (0xfe000000UL) #define LAST_PKMAP 1024 #define LAST_PKMAP_MASK (LAST_PKMAP-1) #define PKMAP_NR(virt) ((virt-PKMAP_BASE) >> PAGE_SHIFT) #define PKMAP_ADDR(nr) (PKMAP_BASE + ((nr) << PAGE_SHIFT)) extern void * kmap_high(struct page *page); extern void kunmap_high(struct page *page); static inline void *kmap(struct page *page) { if (in_interrupt()) BUG(); if (page < highmem_start_page) return page_address(page); return kmap_high(page); } static inline void kunmap(struct page *page) { if (in_interrupt()) BUG(); if (page < highmem_start_page) return; kunmap_high(page); } /* * The use of kmap_atomic/kunmap_atomic is discouraged - kmap/kunmap * gives a more generic (and caching) interface. But kmap_atomic can * be used in IRQ contexts, so in some (very limited) cases we need * it. */ static inline void *kmap_atomic(struct page *page, enum km_type type) { enum fixed_addresses idx; unsigned long vaddr; if (page < highmem_start_page) return page_address(page); idx = type + KM_TYPE_NR*smp_processor_id(); vaddr = __fix_to_virt(FIX_KMAP_BEGIN + idx); set_pte(kmap_pte-idx, mk_pte(page, kmap_prot)); //local_flush_tlb_page(NULL, vaddr); local_flush_tlb_all(); return (void*) vaddr; } static inline void kunmap_atomic(void *kvaddr, enum km_type type) { } #endif /* __KERNEL__ */ #endif /* _ASM_HIGHMEM_H */ E 2 I 1 E 1