| 1 | /* memcopy.h -- definitions for memory copy functions.  Generic C version. | 
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| 2 | Copyright (C) 1991-2020 Free Software Foundation, Inc. | 
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| 3 | This file is part of the GNU C Library. | 
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| 4 | Contributed by Torbjorn Granlund (tege@sics.se). | 
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| 5 |  | 
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| 6 | The GNU C Library is free software; you can redistribute it and/or | 
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| 7 | modify it under the terms of the GNU Lesser General Public | 
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| 8 | License as published by the Free Software Foundation; either | 
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| 9 | version 2.1 of the License, or (at your option) any later version. | 
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| 10 |  | 
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| 11 | The GNU C Library is distributed in the hope that it will be useful, | 
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| 12 | but WITHOUT ANY WARRANTY; without even the implied warranty of | 
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| 13 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU | 
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| 14 | Lesser General Public License for more details. | 
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| 15 |  | 
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| 16 | You should have received a copy of the GNU Lesser General Public | 
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| 17 | License along with the GNU C Library; if not, see | 
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| 18 | <https://www.gnu.org/licenses/>.  */ | 
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| 19 |  | 
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| 20 | #ifndef _MEMCOPY_H | 
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| 21 | #define _MEMCOPY_H	1 | 
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| 22 |  | 
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| 23 | /* The strategy of the memory functions is: | 
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| 24 |  | 
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| 25 | 1. Copy bytes until the destination pointer is aligned. | 
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| 26 |  | 
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| 27 | 2. Copy words in unrolled loops.  If the source and destination | 
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| 28 | are not aligned in the same way, use word memory operations, | 
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| 29 | but shift and merge two read words before writing. | 
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| 30 |  | 
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| 31 | 3. Copy the few remaining bytes. | 
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| 32 |  | 
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| 33 | This is fast on processors that have at least 10 registers for | 
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| 34 | allocation by GCC, and that can access memory at reg+const in one | 
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| 35 | instruction. | 
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| 36 |  | 
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| 37 | I made an "exhaustive" test of this memmove when I wrote it, | 
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| 38 | exhaustive in the sense that I tried all alignment and length | 
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| 39 | combinations, with and without overlap.  */ | 
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| 40 |  | 
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| 41 | #include <sys/cdefs.h> | 
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| 42 | #include <endian.h> | 
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| 43 | #include <pagecopy.h> | 
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| 44 |  | 
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| 45 | /* The macros defined in this file are: | 
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| 46 |  | 
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| 47 | BYTE_COPY_FWD(dst_beg_ptr, src_beg_ptr, nbytes_to_copy) | 
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| 48 |  | 
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| 49 | BYTE_COPY_BWD(dst_end_ptr, src_end_ptr, nbytes_to_copy) | 
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| 50 |  | 
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| 51 | WORD_COPY_FWD(dst_beg_ptr, src_beg_ptr, nbytes_remaining, nbytes_to_copy) | 
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| 52 |  | 
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| 53 | WORD_COPY_BWD(dst_end_ptr, src_end_ptr, nbytes_remaining, nbytes_to_copy) | 
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| 54 |  | 
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| 55 | MERGE(old_word, sh_1, new_word, sh_2) | 
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| 56 | [I fail to understand.  I feel stupid.  --roland] | 
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| 57 | */ | 
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| 58 |  | 
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| 59 | /* Type to use for aligned memory operations. | 
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| 60 | This should normally be the biggest type supported by a single load | 
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| 61 | and store.  */ | 
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| 62 | #define	op_t	unsigned long int | 
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| 63 | #define OPSIZ	(sizeof (op_t)) | 
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| 64 |  | 
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| 65 | /* Type to use for unaligned operations.  */ | 
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| 66 | typedef unsigned char byte; | 
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| 67 |  | 
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| 68 | #if __BYTE_ORDER == __LITTLE_ENDIAN | 
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| 69 | #define MERGE(w0, sh_1, w1, sh_2) (((w0) >> (sh_1)) | ((w1) << (sh_2))) | 
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| 70 | #endif | 
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| 71 | #if __BYTE_ORDER == __BIG_ENDIAN | 
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| 72 | #define MERGE(w0, sh_1, w1, sh_2) (((w0) << (sh_1)) | ((w1) >> (sh_2))) | 
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| 73 | #endif | 
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| 74 |  | 
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| 75 | /* Copy exactly NBYTES bytes from SRC_BP to DST_BP, | 
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| 76 | without any assumptions about alignment of the pointers.  */ | 
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| 77 | #define BYTE_COPY_FWD(dst_bp, src_bp, nbytes)				      \ | 
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| 78 | do									      \ | 
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| 79 | {									      \ | 
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| 80 | size_t __nbytes = (nbytes);					      \ | 
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| 81 | while (__nbytes > 0)						      \ | 
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| 82 | {								      \ | 
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| 83 | byte __x = ((byte *) src_bp)[0];				      \ | 
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| 84 | src_bp += 1;							      \ | 
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| 85 | __nbytes -= 1;						      \ | 
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| 86 | ((byte *) dst_bp)[0] = __x;					      \ | 
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| 87 | dst_bp += 1;							      \ | 
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| 88 | }								      \ | 
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| 89 | } while (0) | 
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| 90 |  | 
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| 91 | /* Copy exactly NBYTES_TO_COPY bytes from SRC_END_PTR to DST_END_PTR, | 
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| 92 | beginning at the bytes right before the pointers and continuing towards | 
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| 93 | smaller addresses.  Don't assume anything about alignment of the | 
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| 94 | pointers.  */ | 
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| 95 | #define BYTE_COPY_BWD(dst_ep, src_ep, nbytes)				      \ | 
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| 96 | do									      \ | 
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| 97 | {									      \ | 
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| 98 | size_t __nbytes = (nbytes);					      \ | 
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| 99 | while (__nbytes > 0)						      \ | 
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| 100 | {								      \ | 
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| 101 | byte __x;							      \ | 
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| 102 | src_ep -= 1;							      \ | 
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| 103 | __x = ((byte *) src_ep)[0];					      \ | 
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| 104 | dst_ep -= 1;							      \ | 
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| 105 | __nbytes -= 1;						      \ | 
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| 106 | ((byte *) dst_ep)[0] = __x;					      \ | 
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| 107 | }								      \ | 
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| 108 | } while (0) | 
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| 109 |  | 
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| 110 | /* Copy *up to* NBYTES bytes from SRC_BP to DST_BP, with | 
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| 111 | the assumption that DST_BP is aligned on an OPSIZ multiple.  If | 
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| 112 | not all bytes could be easily copied, store remaining number of bytes | 
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| 113 | in NBYTES_LEFT, otherwise store 0.  */ | 
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| 114 | extern void _wordcopy_fwd_aligned (long int, long int, size_t) | 
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| 115 | attribute_hidden __THROW; | 
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| 116 | extern void _wordcopy_fwd_dest_aligned (long int, long int, size_t) | 
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| 117 | attribute_hidden __THROW; | 
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| 118 | #define WORD_COPY_FWD(dst_bp, src_bp, nbytes_left, nbytes)		      \ | 
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| 119 | do									      \ | 
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| 120 | {									      \ | 
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| 121 | if (src_bp % OPSIZ == 0)						      \ | 
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| 122 | _wordcopy_fwd_aligned (dst_bp, src_bp, (nbytes) / OPSIZ);	      \ | 
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| 123 | else								      \ | 
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| 124 | _wordcopy_fwd_dest_aligned (dst_bp, src_bp, (nbytes) / OPSIZ);	      \ | 
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| 125 | src_bp += (nbytes) & -OPSIZ;					      \ | 
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| 126 | dst_bp += (nbytes) & -OPSIZ;					      \ | 
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| 127 | (nbytes_left) = (nbytes) % OPSIZ;					      \ | 
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| 128 | } while (0) | 
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| 129 |  | 
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| 130 | /* Copy *up to* NBYTES_TO_COPY bytes from SRC_END_PTR to DST_END_PTR, | 
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| 131 | beginning at the words (of type op_t) right before the pointers and | 
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| 132 | continuing towards smaller addresses.  May take advantage of that | 
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| 133 | DST_END_PTR is aligned on an OPSIZ multiple.  If not all bytes could be | 
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| 134 | easily copied, store remaining number of bytes in NBYTES_REMAINING, | 
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| 135 | otherwise store 0.  */ | 
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| 136 | extern void _wordcopy_bwd_aligned (long int, long int, size_t) | 
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| 137 | attribute_hidden __THROW; | 
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| 138 | extern void _wordcopy_bwd_dest_aligned (long int, long int, size_t) | 
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| 139 | attribute_hidden __THROW; | 
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| 140 | #define WORD_COPY_BWD(dst_ep, src_ep, nbytes_left, nbytes)		      \ | 
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| 141 | do									      \ | 
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| 142 | {									      \ | 
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| 143 | if (src_ep % OPSIZ == 0)						      \ | 
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| 144 | _wordcopy_bwd_aligned (dst_ep, src_ep, (nbytes) / OPSIZ);	      \ | 
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| 145 | else								      \ | 
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| 146 | _wordcopy_bwd_dest_aligned (dst_ep, src_ep, (nbytes) / OPSIZ);	      \ | 
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| 147 | src_ep -= (nbytes) & -OPSIZ;					      \ | 
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| 148 | dst_ep -= (nbytes) & -OPSIZ;					      \ | 
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| 149 | (nbytes_left) = (nbytes) % OPSIZ;					      \ | 
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| 150 | } while (0) | 
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| 151 |  | 
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| 152 | /* The macro PAGE_COPY_FWD_MAYBE (dstp, srcp, nbytes_left, nbytes) is invoked | 
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| 153 | like WORD_COPY_FWD et al.  The pointers should be at least word aligned. | 
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| 154 | This will check if virtual copying by pages can and should be done and do it | 
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| 155 | if so.  The pointers will be aligned to PAGE_SIZE bytes.  The macro requires | 
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| 156 | that pagecopy.h defines at least PAGE_COPY_THRESHOLD to 0.  If | 
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| 157 | PAGE_COPY_THRESHOLD is non-zero, the header must also define PAGE_COPY_FWD | 
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| 158 | and PAGE_SIZE. | 
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| 159 | */ | 
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| 160 | #if PAGE_COPY_THRESHOLD | 
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| 161 |  | 
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| 162 | # include <assert.h> | 
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| 163 |  | 
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| 164 | # define PAGE_COPY_FWD_MAYBE(dstp, srcp, nbytes_left, nbytes)		      \ | 
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| 165 | do									      \ | 
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| 166 | {									      \ | 
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| 167 | if ((nbytes) >= PAGE_COPY_THRESHOLD				      \ | 
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| 168 | && PAGE_OFFSET ((dstp) - (srcp)) == 0)			      \ | 
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| 169 | {								      \ | 
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| 170 | /* The amount to copy is past the threshold for copying	      \ | 
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| 171 | pages virtually with kernel VM operations, and the		      \ | 
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| 172 | source and destination addresses have the same alignment.  */    \ | 
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| 173 | size_t nbytes_before = PAGE_OFFSET (-(dstp));			      \ | 
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| 174 | if (nbytes_before != 0)					      \ | 
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| 175 | {								      \ | 
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| 176 | /* First copy the words before the first page boundary.  */     \ | 
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| 177 | WORD_COPY_FWD (dstp, srcp, nbytes_left, nbytes_before);	      \ | 
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| 178 | assert (nbytes_left == 0);				      \ | 
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| 179 | nbytes -= nbytes_before;					      \ | 
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| 180 | }								      \ | 
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| 181 | PAGE_COPY_FWD (dstp, srcp, nbytes_left, nbytes);		      \ | 
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| 182 | }								      \ | 
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| 183 | } while (0) | 
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| 184 |  | 
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| 185 | /* The page size is always a power of two, so we can avoid modulo division.  */ | 
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| 186 | # define PAGE_OFFSET(n)	((n) & (PAGE_SIZE - 1)) | 
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| 187 |  | 
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| 188 | #else | 
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| 189 |  | 
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| 190 | # define PAGE_COPY_FWD_MAYBE(dstp, srcp, nbytes_left, nbytes) /* nada */ | 
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| 191 |  | 
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| 192 | #endif | 
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| 193 |  | 
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| 194 | /* Threshold value for when to enter the unrolled loops.  */ | 
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| 195 | #define	OP_T_THRES	16 | 
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| 196 |  | 
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| 197 | /* Set to 1 if memcpy is safe to use for forward-copying memmove with | 
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| 198 | overlapping addresses.  This is 0 by default because memcpy implementations | 
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| 199 | are generally not safe for overlapping addresses.  */ | 
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| 200 | #define MEMCPY_OK_FOR_FWD_MEMMOVE 0 | 
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| 201 |  | 
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| 202 | #endif /* memcopy.h */ | 
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| 203 |  | 
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