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[/] [scarts/] [trunk/] [toolchain/] [scarts-newlib/] [newlib-1.17.0/] [newlib/] [libc/] [machine/] [i960/] [memccpy_ca.S] - Blame information for rev 9

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1 9 jlechner
/*******************************************************************************
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 *
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 * Copyright (c) 1993 Intel Corporation
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 *
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 * Intel hereby grants you permission to copy, modify, and distribute this
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 * software and its documentation.  Intel grants this permission provided
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 * that the above copyright notice appears in all copies and that both the
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 * copyright notice and this permission notice appear in supporting
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 * documentation.  In addition, Intel grants this permission provided that
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 * you prominently mark as "not part of the original" any modifications
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 * made to this software or documentation, and that the name of Intel
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 * Corporation not be used in advertising or publicity pertaining to
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 * distribution of the software or the documentation without specific,
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 * written prior permission.
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 *
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 * Intel Corporation provides this AS IS, WITHOUT ANY WARRANTY, EXPRESS OR
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 * IMPLIED, INCLUDING, WITHOUT LIMITATION, ANY WARRANTY OF MERCHANTABILITY
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 * OR FITNESS FOR A PARTICULAR PURPOSE.  Intel makes no guarantee or
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 * representations regarding the use of, or the results of the use of,
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 * the software and documentation in terms of correctness, accuracy,
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 * reliability, currentness, or otherwise; and you rely on the software,
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 * documentation and results solely at your own risk.
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 *
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 * IN NO EVENT SHALL INTEL BE LIABLE FOR ANY LOSS OF USE, LOSS OF BUSINESS,
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 * LOSS OF PROFITS, INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES
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 * OF ANY KIND.  IN NO EVENT SHALL INTEL'S TOTAL LIABILITY EXCEED THE SUM
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 * PAID TO INTEL FOR THE PRODUCT LICENSED HEREUNDER.
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 *
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 ******************************************************************************/
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        .file "mccpy_ca.s"
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#ifdef  __PIC
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        .pic
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#endif
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#ifdef  __PID
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        .pid
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#endif
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/*
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 * (c) copyright 1989,1993 Intel Corp., all rights reserved
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 */
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/*
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        procedure memccpy  (optimized assembler version for the 80960CA)
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        dest_addr = memccpy (dest_addr, src_addr, char, len)
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        copy len bytes pointed to by src_addr to the space pointed to by
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        dest_addr, stopping if char is copied.  If char is copied,
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        return address of byte after char in dest string;  else null.
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        Undefined behavior will occur if the end of the source array is in
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        the last two words of the program's allocated memory space.  This
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        is so because the routine fetches ahead.  Disallowing the fetch
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        ahead would impose a severe performance penalty.
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        Undefined behavior will also occur if the source and destination
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        strings overlap.
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        This program handles five cases:
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        1) both arguments start on a word boundary
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        2) neither are word aligned, but they are offset by the same amount
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        3) source is word aligned, destination is not
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        4) destination is word aligned, source is not
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        5) neither is word aligned, and they are offset by differing amounts
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        At the time of this writing, only g0 thru g7 and g13 are available
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        for use in this leafproc;  other registers would have to be saved and
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        restored.  These nine registers, plus tricky use of g14 are sufficient
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        to implement the routine.
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*/
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#if __i960_BIG_ENDIAN__
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#define MSW g6
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#define LSW g7
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#else
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#define LSW g6
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#define MSW g7
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#endif
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        .globl  _memccpy
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        .leafproc       _memccpy, __memccpy
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        .align  2
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_memccpy:
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#ifndef __PIC
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        lda     Lrett,g14
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#else
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        lda     Lrett-(.+8)(ip),g14
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#endif
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__memccpy:
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        notand  g1,3,g5         # extract word addr of start of src
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         lda    (g14),g13       # preserve return address
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        cmpibge.f 0,g3,Lexit_char_not_found # Lexit if # of bytes to move is <= 0
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        cmpo    g5,g1           # check alignment of src
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         ld     (g5),LSW        # fetch word containing at least first byte
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        notand  g0,3,g4         # extract word addr of start of dest
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         lda    4(g5),g5        # advance src word addr
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        shlo    24,g2,g2        # reduce char to single byte
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         bne.f  Lcase_245       # branch if src is NOT word aligned
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Lcase_13:
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        cmpobe.t g0,g4,Lcase_1_setup    # branch if dest word aligned
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Lcase_3:                                # src is word aligned; dest is not
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        mov     LSW,MSW         # make copy of first word of src
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        addo    4,g4,g1         # move dest word ptr to first word boundary
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         lda    32,g14          # initialize shift count to zero
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Lcase_25:
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Lcase_3_cloop_at_start:         # character copying loop for start of dest str
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        cmpdeci 0,g3,g3         # is max_bytes exhausted?
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#if __i960_BIG_ENDIAN__
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         lda    -8(g14),g14     # augment the shift counter
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#else
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         lda    8(g14),g14      # augment the shift counter
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#endif
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        be.f    Lexit_char_not_found    # Lexit if max_bytes is exhausted
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#if __i960_BIG_ENDIAN__
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        rotate  8,MSW,MSW       # move next byte into position for extraction
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#endif
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        shlo    24,MSW,g4
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         stob   MSW,(g0)        # store the byte in dest
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        cmpo    g4,g2
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         lda    1(g0),g0        # post-increment dest ptr
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#if ! __i960_BIG_ENDIAN__
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        shro    8,MSW,MSW       # move next byte into position for extraction
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#endif
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         be.f   Lexit_char_found        # Lexit if char found
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        cmpobne.t g1,g0,Lcase_3_cloop_at_start # branch if reached word boundary
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        ld      (g5),MSW        # fetch msw of operand for double shift
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Lcase_4:
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        shro    8,g2,g4
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        or      g4,g2,g1
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        shro    16,g1,g4
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        or      g4,g1,g4
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#if __i960_BIG_ENDIAN__
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        cmpobne 0,g14,Lcase_3_wloop
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Lcase_3_wloop2:
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        cmpi    g3,4            # less than four bytes to move?
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         lda    4(g5),g5        # post-increment src word addr
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        mov     LSW,g1          # extract 4 bytes of src
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         bl.f   Lcase_13_cloop_setup    # branch if < four bytes left to move
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        scanbyte g4,g1          # branch if word has char in it
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         bo.f   Lcase_13_cloop_setup
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        mov     MSW,LSW         # move msw to lsw
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         ld     (g5),MSW        # pre-fetch msw of operand for double shift
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        subi    4,g3,g3         # decrease max_byte count by the 4 bytes moved
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         st     g1,(g0)         # store 4 bytes to dest
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        addo    4,g0,g0         # post-increment dest ptr
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         b      Lcase_3_wloop2
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#endif
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Lcase_3_wloop:
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        cmpi    g3,4            # less than four bytes to move?
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         lda    4(g5),g5        # post-increment src word addr
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        eshro   g14,g6,g1       # extract 4 bytes of src
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         bl.f   Lcase_13_cloop_setup    # branch if < four bytes left to move
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        scanbyte g4,g1          # branch if word has char in it
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         bo.f   Lcase_13_cloop_setup
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        mov     MSW,LSW         # move msw to lsw
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         ld     (g5),MSW        # pre-fetch msw of operand for double shift
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        subi    4,g3,g3         # decrease max_byte count by the 4 bytes moved
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         st     g1,(g0)         # store 4 bytes to dest
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        addo    4,g0,g0         # post-increment dest ptr
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         b      Lcase_3_wloop
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Lcase_1_setup:
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        subo    4,g0,g0         # store is pre-incrementing;  back up dest addr
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        shro    8,g2,g4
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        or      g4,g2,MSW
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        shro    16,MSW,g4
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        or      g4,MSW,g4
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         b      Lcase_1
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Lcase_1_wloop:                  # word copying loop
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        subi    4,g3,g3         # decrease max_byte count by the 4 bytes moved
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         ld     (g5),LSW        # pre-fetch next word of src
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        addo    4,g5,g5         # post-increment src addr
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         st     g1,(g0)         # store word in dest string
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Lcase_1:                                # src and dest are word aligned
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        cmpi    g3,4            # check for fewer than four bytes to move
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        addo    4,g0,g0         # pre-increment dest addr
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         lda    (LSW),g1        # keep a copy of the src word
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         bl.f   Lcase_13_cloop_setup    # branch if less than four bytes to copy
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        scanbyte LSW,g4         # branch if char is not in foursome
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        bno.t   Lcase_1_wloop
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Lcase_13_cloop_setup:
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        cmpibe.f 0,g3,Lexit_char_not_found      # Lexit if max_bytes is exhausted
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Lcase_1_cloop:
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#if __i960_BIG_ENDIAN__
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        rotate  8,g1,g1         # move next byte into position for extraction
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#endif
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        shlo    24,g1,g4
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         stob   g1,(g0)         # store the byte in dest
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        cmpo    g4,g2
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         lda    1(g0),g0        # post-increment dest byte addr
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        subi    1,g3,g3
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         be.f   Lexit_char_found        # Lexit if char reached
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        cmpi    0,g3
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#if ! __i960_BIG_ENDIAN__
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        shro    8,g1,g1         # move next byte into position for extraction
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#endif
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         bne.t  Lcase_1_cloop   # continue if len not exhausted
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Lexit_char_not_found:
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        mov     0,g0
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Lexit_char_found:
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        lda     0,g14
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        bx      (g13)           # g0 = dest array address;  g14 = 0
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Lrett:
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        ret
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Lcase_245:
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        cmpo    g0,g4           # check alignment of dest
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         ld     (g5),MSW        # pre-fetch second half
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        and     3,g1,g1         # compute shift count
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        shlo    3,g1,g14
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#if __i960_BIG_ENDIAN__
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        subo    g14,0,g14       # adjust shift count for big endian
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#endif
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         be.t   Lcase_4         # branch if dest is word aligned
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        or      g4,g1,g1        # is src earlier in word, later, or sync w/ dst
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        cmpo    g0,g1           # < indicates first word of dest has more bytes
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                                /* than first word of source. */
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        eshro   g14,g6,g4       # extract four bytes
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         lda    4(g0),g1        # move dest word addr to first word boundary
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#if __i960_BIG_ENDIAN__
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         bge.f  1f
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#else
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         bg.f   1f
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#endif
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        mov     MSW,LSW
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         lda    4(g5),g5        # move src word addr to second word boundary
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1:
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        notand  g1,3,g1
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         mov    g4,MSW
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         b      Lcase_25
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/* end of memccpy */

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