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209 lines
4.8 KiB
C
209 lines
4.8 KiB
C
/* _memcopy.c -- subroutines for memory copy functions.
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Copyright (C) 1991, 1996 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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Contributed by Torbjorn Granlund (tege@sics.se).
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The GNU C Library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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The GNU C Library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with the GNU C Library; if not, see
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<http://www.gnu.org/licenses/>. */
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/* BE VERY CAREFUL IF YOU CHANGE THIS CODE...! */
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#include <stddef.h>
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#include <memcopy.h>
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/* _wordcopy_fwd_aligned -- Copy block beginning at SRCP to
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block beginning at DSTP with LEN `op_t' words (not LEN bytes!).
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Both SRCP and DSTP should be aligned for memory operations on `op_t's. */
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void
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_wordcopy_fwd_aligned (dstp, srcp, len)
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long int dstp;
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long int srcp;
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size_t len;
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{
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op_t a0, a1;
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if (len & 1)
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{
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((op_t *) dstp)[0] = ((op_t *) srcp)[0];
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if (len == 1)
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return;
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srcp += OPSIZ;
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dstp += OPSIZ;
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len -= 1;
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}
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do
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{
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a0 = ((op_t *) srcp)[0];
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a1 = ((op_t *) srcp)[1];
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((op_t *) dstp)[0] = a0;
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((op_t *) dstp)[1] = a1;
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srcp += 2 * OPSIZ;
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dstp += 2 * OPSIZ;
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len -= 2;
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}
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while (len != 0);
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}
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/* _wordcopy_fwd_dest_aligned -- Copy block beginning at SRCP to
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block beginning at DSTP with LEN `op_t' words (not LEN bytes!).
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DSTP should be aligned for memory operations on `op_t's, but SRCP must
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*not* be aligned. */
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void
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_wordcopy_fwd_dest_aligned (dstp, srcp, len)
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long int dstp;
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long int srcp;
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size_t len;
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{
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op_t a0, a1, a2;
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int sh_1, sh_2;
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/* Calculate how to shift a word read at the memory operation
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aligned srcp to make it aligned for copy. */
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sh_1 = 8 * (srcp % OPSIZ);
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sh_2 = 8 * OPSIZ - sh_1;
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/* Make SRCP aligned by rounding it down to the beginning of the `op_t'
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it points in the middle of. */
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srcp &= -OPSIZ;
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a0 = ((op_t *) srcp)[0];
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if (len & 1)
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{
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a1 = ((op_t *) srcp)[1];
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((op_t *) dstp)[0] = MERGE (a0, sh_1, a1, sh_2);
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if (len == 1)
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return;
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a0 = a1;
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srcp += OPSIZ;
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dstp += OPSIZ;
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len -= 1;
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}
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do
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{
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a1 = ((op_t *) srcp)[1];
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a2 = ((op_t *) srcp)[2];
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((op_t *) dstp)[0] = MERGE (a0, sh_1, a1, sh_2);
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((op_t *) dstp)[1] = MERGE (a1, sh_1, a2, sh_2);
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a0 = a2;
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srcp += 2 * OPSIZ;
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dstp += 2 * OPSIZ;
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len -= 2;
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}
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while (len != 0);
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}
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/* _wordcopy_bwd_aligned -- Copy block finishing right before
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SRCP to block finishing right before DSTP with LEN `op_t' words
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(not LEN bytes!). Both SRCP and DSTP should be aligned for memory
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operations on `op_t's. */
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void
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_wordcopy_bwd_aligned (dstp, srcp, len)
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long int dstp;
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long int srcp;
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size_t len;
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{
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op_t a0, a1;
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if (len & 1)
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{
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srcp -= OPSIZ;
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dstp -= OPSIZ;
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((op_t *) dstp)[0] = ((op_t *) srcp)[0];
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if (len == 1)
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return;
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len -= 1;
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}
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do
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{
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srcp -= 2 * OPSIZ;
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dstp -= 2 * OPSIZ;
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a1 = ((op_t *) srcp)[1];
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a0 = ((op_t *) srcp)[0];
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((op_t *) dstp)[1] = a1;
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((op_t *) dstp)[0] = a0;
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len -= 2;
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}
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while (len != 0);
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}
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/* _wordcopy_bwd_dest_aligned -- Copy block finishing right
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before SRCP to block finishing right before DSTP with LEN `op_t'
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words (not LEN bytes!). DSTP should be aligned for memory
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operations on `op_t', but SRCP must *not* be aligned. */
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void
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_wordcopy_bwd_dest_aligned (dstp, srcp, len)
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long int dstp;
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long int srcp;
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size_t len;
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{
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op_t a0, a1, a2;
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int sh_1, sh_2;
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/* Calculate how to shift a word read at the memory operation
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aligned srcp to make it aligned for copy. */
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sh_1 = 8 * (srcp % OPSIZ);
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sh_2 = 8 * OPSIZ - sh_1;
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/* Make srcp aligned by rounding it down to the beginning of the op_t
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it points in the middle of. */
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srcp &= -OPSIZ;
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a2 = ((op_t *) srcp)[0];
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if (len & 1)
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{
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srcp -= OPSIZ;
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dstp -= OPSIZ;
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a1 = ((op_t *) srcp)[0];
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((op_t *) dstp)[0] = MERGE (a1, sh_1, a2, sh_2);
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if (len == 1)
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return;
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a2 = a1;
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len -= 1;
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}
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do
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{
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srcp -= 2 * OPSIZ;
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dstp -= 2 * OPSIZ;
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a1 = ((op_t *) srcp)[1];
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a0 = ((op_t *) srcp)[0];
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((op_t *) dstp)[1] = MERGE (a1, sh_1, a2, sh_2);
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((op_t *) dstp)[0] = MERGE (a0, sh_1, a1, sh_2);
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a2 = a0;
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len -= 2;
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}
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while (len != 0);
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}
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