page.h

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00001 /*
00002  * Copyright (C) 2005 Ondrej Palkovsky
00003  * All rights reserved.
00004  *
00005  * Redistribution and use in source and binary forms, with or without
00006  * modification, are permitted provided that the following conditions
00007  * are met:
00008  *
00009  * - Redistributions of source code must retain the above copyright
00010  *   notice, this list of conditions and the following disclaimer.
00011  * - Redistributions in binary form must reproduce the above copyright
00012  *   notice, this list of conditions and the following disclaimer in the
00013  *   documentation and/or other materials provided with the distribution.
00014  * - The name of the author may not be used to endorse or promote products
00015  *   derived from this software without specific prior written permission.
00016  *
00017  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
00018  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
00019  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
00020  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
00021  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
00022  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
00023  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
00024  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
00025  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
00026  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
00027  */
00028 
00047 #ifndef __amd64_PAGE_H__
00048 #define __amd64_PAGE_H__
00049 
00050 #include <arch/mm/frame.h>
00051 
00052 #define PAGE_WIDTH      FRAME_WIDTH
00053 #define PAGE_SIZE       FRAME_SIZE
00054 
00055 #ifdef KERNEL
00056 
00057 #ifndef __ASM__
00058 #  include <mm/page.h>
00059 #  include <arch/types.h>
00060 #endif
00061 
00062 #ifndef __ASM__
00063 static inline __address ka2pa(__address x)
00064 {
00065         if (x > 0xffffffff80000000)
00066                 return x - 0xffffffff80000000;
00067         else 
00068                 return x - 0xffff800000000000;
00069 }
00070 # define KA2PA(x)      ka2pa((__address)x)
00071 # define PA2KA_CODE(x)      (((__address) (x)) + 0xffffffff80000000)
00072 # define PA2KA(x)      (((__address) (x)) + 0xffff800000000000)
00073 #else
00074 # define KA2PA(x)      ((x) - 0xffffffff80000000)
00075 # define PA2KA(x)      ((x) + 0xffffffff80000000)
00076 #endif
00077 
00078 #define PTL0_ENTRIES_ARCH       512
00079 #define PTL1_ENTRIES_ARCH       512
00080 #define PTL2_ENTRIES_ARCH       512
00081 #define PTL3_ENTRIES_ARCH       512
00082 
00083 #define PTL0_INDEX_ARCH(vaddr)  (((vaddr)>>39)&0x1ff)
00084 #define PTL1_INDEX_ARCH(vaddr)  (((vaddr)>>30)&0x1ff)
00085 #define PTL2_INDEX_ARCH(vaddr)  (((vaddr)>>21)&0x1ff)
00086 #define PTL3_INDEX_ARCH(vaddr)  (((vaddr)>>12)&0x1ff)
00087 
00088 #define GET_PTL1_ADDRESS_ARCH(ptl0, i)          ((pte_t *) ((((__u64) ((pte_t *)(ptl0))[(i)].addr_12_31)<<12) | (((__u64) ((pte_t *)(ptl0))[(i)].addr_32_51)<<32 )))
00089 #define GET_PTL2_ADDRESS_ARCH(ptl1, i)          ((pte_t *) ((((__u64) ((pte_t *)(ptl1))[(i)].addr_12_31)<<12) | (((__u64) ((pte_t *)(ptl1))[(i)].addr_32_51)<<32 )))
00090 #define GET_PTL3_ADDRESS_ARCH(ptl2, i)          ((pte_t *) ((((__u64) ((pte_t *)(ptl2))[(i)].addr_12_31)<<12) | (((__u64) ((pte_t *)(ptl2))[(i)].addr_32_51)<<32 )))
00091 #define GET_FRAME_ADDRESS_ARCH(ptl3, i)         ((__address *) ((((__u64) ((pte_t *)(ptl3))[(i)].addr_12_31)<<12) | (((__u64) ((pte_t *)(ptl3))[(i)].addr_32_51)<<32 )))
00092 
00093 #define SET_PTL0_ADDRESS_ARCH(ptl0)             (write_cr3((__address) (ptl0)))
00094 #define SET_PTL1_ADDRESS_ARCH(ptl0, i, a)       set_pt_addr((pte_t *)(ptl0), (index_t)(i), a)
00095 #define SET_PTL2_ADDRESS_ARCH(ptl1, i, a)       set_pt_addr((pte_t *)(ptl1), (index_t)(i), a)
00096 #define SET_PTL3_ADDRESS_ARCH(ptl2, i, a)       set_pt_addr((pte_t *)(ptl2), (index_t)(i), a)
00097 #define SET_FRAME_ADDRESS_ARCH(ptl3, i, a)      set_pt_addr((pte_t *)(ptl3), (index_t)(i), a)
00098 
00099 #define GET_PTL1_FLAGS_ARCH(ptl0, i)            get_pt_flags((pte_t *)(ptl0), (index_t)(i))
00100 #define GET_PTL2_FLAGS_ARCH(ptl1, i)            get_pt_flags((pte_t *)(ptl1), (index_t)(i))
00101 #define GET_PTL3_FLAGS_ARCH(ptl2, i)            get_pt_flags((pte_t *)(ptl2), (index_t)(i))
00102 #define GET_FRAME_FLAGS_ARCH(ptl3, i)           get_pt_flags((pte_t *)(ptl3), (index_t)(i))
00103 
00104 #define SET_PTL1_FLAGS_ARCH(ptl0, i, x)         set_pt_flags((pte_t *)(ptl0), (index_t)(i), (x))
00105 #define SET_PTL2_FLAGS_ARCH(ptl1, i, x)         set_pt_flags((pte_t *)(ptl1), (index_t)(i), (x))
00106 #define SET_PTL3_FLAGS_ARCH(ptl2, i, x)         set_pt_flags((pte_t *)(ptl2), (index_t)(i), (x))
00107 #define SET_FRAME_FLAGS_ARCH(ptl3, i, x)        set_pt_flags((pte_t *)(ptl3), (index_t)(i), (x))
00108 
00109 #define PTE_VALID_ARCH(p)                       (*((__u64 *) (p)) != 0)
00110 #define PTE_PRESENT_ARCH(p)                     ((p)->present != 0)
00111 #define PTE_GET_FRAME_ARCH(p)                   ((((__address)(p)->addr_12_31)<<12) | ((__address)(p)->addr_32_51<<32))
00112 #define PTE_WRITABLE_ARCH(p)                    ((p)->writeable != 0)
00113 #define PTE_EXECUTABLE_ARCH(p)                  ((p)->no_execute == 0)
00114 
00115 #ifndef __ASM__
00116 
00117 /* Page fault error codes. */
00118 
00120 #define PFERR_CODE_P            (1<<0)  
00121 
00123 #define PFERR_CODE_RW           (1<<1)
00124 
00126 #define PFERR_CODE_US           (1<<2)
00127 
00129 #define PFERR_CODE_RSVD         (1<<3)
00130 
00132 #define PFERR_CODE_ID           (1<<4)
00133 
00135 struct page_specifier {
00136         unsigned present : 1;
00137         unsigned writeable : 1;
00138         unsigned uaccessible : 1;
00139         unsigned page_write_through : 1;
00140         unsigned page_cache_disable : 1;
00141         unsigned accessed : 1;
00142         unsigned dirty : 1;
00143         unsigned unused: 1;
00144         unsigned global : 1;
00145         unsigned soft_valid : 1;                
00146         unsigned avl : 2;
00147         unsigned addr_12_31 : 30;
00148         unsigned addr_32_51 : 21;
00149         unsigned no_execute : 1;
00150 } __attribute__ ((packed));
00151 
00152 static inline int get_pt_flags(pte_t *pt, index_t i)
00153 {
00154         pte_t *p = &pt[i];
00155         
00156         return (
00157                 (!p->page_cache_disable)<<PAGE_CACHEABLE_SHIFT |
00158                 (!p->present)<<PAGE_PRESENT_SHIFT |
00159                 p->uaccessible<<PAGE_USER_SHIFT |
00160                 1<<PAGE_READ_SHIFT |
00161                 p->writeable<<PAGE_WRITE_SHIFT |
00162                 (!p->no_execute)<<PAGE_EXEC_SHIFT |
00163                 p->global<<PAGE_GLOBAL_SHIFT
00164         );
00165 }
00166 
00167 static inline void set_pt_addr(pte_t *pt, index_t i, __address a)
00168 {
00169         pte_t *p = &pt[i];
00170 
00171         p->addr_12_31 = (a >> 12) & 0xfffff;
00172         p->addr_32_51 = a >> 32;
00173 }
00174 
00175 static inline void set_pt_flags(pte_t *pt, index_t i, int flags)
00176 {
00177         pte_t *p = &pt[i];
00178         
00179         p->page_cache_disable = !(flags & PAGE_CACHEABLE);
00180         p->present = !(flags & PAGE_NOT_PRESENT);
00181         p->uaccessible = (flags & PAGE_USER) != 0;
00182         p->writeable = (flags & PAGE_WRITE) != 0;
00183         p->no_execute = (flags & PAGE_EXEC) == 0;
00184         p->global = (flags & PAGE_GLOBAL) != 0;
00185         
00186         /*
00187          * Ensure that there is at least one bit set even if the present bit is cleared.
00188          */
00189         p->soft_valid = 1;
00190 }
00191 
00192 extern void page_arch_init(void);
00193 
00194 #endif /* __ASM__ */
00195 
00196 #endif /* KERNEL */
00197 
00198 #endif
00199 

Generated on Sun Jun 18 16:26:57 2006 for HelenOS Kernel (amd64) by  doxygen 1.4.6