xref: /openbmc/linux/arch/sparc/include/asm/highmem.h (revision b24413180f5600bcb3bb70fbed5cf186b60864bd)
1*b2441318SGreg Kroah-Hartman /* SPDX-License-Identifier: GPL-2.0 */
2a439fe51SSam Ravnborg /*
3a439fe51SSam Ravnborg  * highmem.h: virtual kernel memory mappings for high memory
4a439fe51SSam Ravnborg  *
5a439fe51SSam Ravnborg  * Used in CONFIG_HIGHMEM systems for memory pages which
6a439fe51SSam Ravnborg  * are not addressable by direct kernel virtual addresses.
7a439fe51SSam Ravnborg  *
8a439fe51SSam Ravnborg  * Copyright (C) 1999 Gerhard Wichert, Siemens AG
9a439fe51SSam Ravnborg  *		      Gerhard.Wichert@pdb.siemens.de
10a439fe51SSam Ravnborg  *
11a439fe51SSam Ravnborg  *
12a439fe51SSam Ravnborg  * Redesigned the x86 32-bit VM architecture to deal with
13a439fe51SSam Ravnborg  * up to 16 Terrabyte physical memory. With current x86 CPUs
14a439fe51SSam Ravnborg  * we now support up to 64 Gigabytes physical RAM.
15a439fe51SSam Ravnborg  *
16a439fe51SSam Ravnborg  * Copyright (C) 1999 Ingo Molnar <mingo@redhat.com>
17a439fe51SSam Ravnborg  */
18a439fe51SSam Ravnborg 
19a439fe51SSam Ravnborg #ifndef _ASM_HIGHMEM_H
20a439fe51SSam Ravnborg #define _ASM_HIGHMEM_H
21a439fe51SSam Ravnborg 
22a439fe51SSam Ravnborg #ifdef __KERNEL__
23a439fe51SSam Ravnborg 
24a439fe51SSam Ravnborg #include <linux/interrupt.h>
25a439fe51SSam Ravnborg #include <asm/vaddrs.h>
26a439fe51SSam Ravnborg #include <asm/kmap_types.h>
27a439fe51SSam Ravnborg #include <asm/pgtable.h>
28a439fe51SSam Ravnborg 
29a439fe51SSam Ravnborg /* declarations for highmem.c */
30a439fe51SSam Ravnborg extern unsigned long highstart_pfn, highend_pfn;
31a439fe51SSam Ravnborg 
32a439fe51SSam Ravnborg extern pgprot_t kmap_prot;
33a439fe51SSam Ravnborg extern pte_t *pkmap_page_table;
34a439fe51SSam Ravnborg 
35f05a6865SSam Ravnborg void kmap_init(void) __init;
36a439fe51SSam Ravnborg 
37a439fe51SSam Ravnborg /*
38a439fe51SSam Ravnborg  * Right now we initialize only a single pte table. It can be extended
39a439fe51SSam Ravnborg  * easily, subsequent pte tables have to be allocated in one physical
40a439fe51SSam Ravnborg  * chunk of RAM.  Currently the simplest way to do this is to align the
41a439fe51SSam Ravnborg  * pkmap region on a pagetable boundary (4MB).
42a439fe51SSam Ravnborg  */
43a439fe51SSam Ravnborg #define LAST_PKMAP 1024
44a439fe51SSam Ravnborg #define PKMAP_SIZE (LAST_PKMAP << PAGE_SHIFT)
45a439fe51SSam Ravnborg #define PKMAP_BASE PMD_ALIGN(SRMMU_NOCACHE_VADDR + (SRMMU_MAX_NOCACHE_PAGES << PAGE_SHIFT))
46a439fe51SSam Ravnborg 
47a439fe51SSam Ravnborg #define LAST_PKMAP_MASK (LAST_PKMAP - 1)
48a439fe51SSam Ravnborg #define PKMAP_NR(virt)  ((virt - PKMAP_BASE) >> PAGE_SHIFT)
49a439fe51SSam Ravnborg #define PKMAP_ADDR(nr)  (PKMAP_BASE + ((nr) << PAGE_SHIFT))
50a439fe51SSam Ravnborg 
51a439fe51SSam Ravnborg #define PKMAP_END (PKMAP_ADDR(LAST_PKMAP))
52a439fe51SSam Ravnborg 
53f05a6865SSam Ravnborg void *kmap_high(struct page *page);
54f05a6865SSam Ravnborg void kunmap_high(struct page *page);
55a439fe51SSam Ravnborg 
56a439fe51SSam Ravnborg static inline void *kmap(struct page *page)
57a439fe51SSam Ravnborg {
58a439fe51SSam Ravnborg 	BUG_ON(in_interrupt());
59a439fe51SSam Ravnborg 	if (!PageHighMem(page))
60a439fe51SSam Ravnborg 		return page_address(page);
61a439fe51SSam Ravnborg 	return kmap_high(page);
62a439fe51SSam Ravnborg }
63a439fe51SSam Ravnborg 
64a439fe51SSam Ravnborg static inline void kunmap(struct page *page)
65a439fe51SSam Ravnborg {
66a439fe51SSam Ravnborg 	BUG_ON(in_interrupt());
67a439fe51SSam Ravnborg 	if (!PageHighMem(page))
68a439fe51SSam Ravnborg 		return;
69a439fe51SSam Ravnborg 	kunmap_high(page);
70a439fe51SSam Ravnborg }
71a439fe51SSam Ravnborg 
72f05a6865SSam Ravnborg void *kmap_atomic(struct page *page);
73f05a6865SSam Ravnborg void __kunmap_atomic(void *kvaddr);
74a439fe51SSam Ravnborg 
75a439fe51SSam Ravnborg #define flush_cache_kmaps()	flush_cache_all()
76a439fe51SSam Ravnborg 
77a439fe51SSam Ravnborg #endif /* __KERNEL__ */
78a439fe51SSam Ravnborg 
79a439fe51SSam Ravnborg #endif /* _ASM_HIGHMEM_H */
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