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104 lines
3.5 KiB
ArmAsm
104 lines
3.5 KiB
ArmAsm
/* Optimized rawmemchr implementation for PowerPC64/POWER7 using cmpb insn.
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Copyright (C) 2010 Free Software Foundation, Inc.
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Contributed by Luis Machado <luisgpm@br.ibm.com>.
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This file is part of the GNU C Library.
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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, write to the Free
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Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston MA
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02110-1301 USA. */
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#include <sysdep.h>
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#include <bp-sym.h>
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#include <bp-asm.h>
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/* int [r3] rawmemchr (void *s [r3], int c [r4]) */
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.machine power7
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ENTRY (BP_SYM(__rawmemchr))
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CALL_MCOUNT 2
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dcbt 0,r3
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clrrdi r8,r3,3 /* Align the address to doubleword boundary. */
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/* Replicate byte to doubleword. */
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rlwimi r4,r4,8,16,23
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rlwimi r4,r4,16,0,15
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insrdi r4,r4,32,0
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/* Now r4 has a doubleword of c bytes. */
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rlwinm r6,r3,3,26,28 /* Calculate padding. */
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ld r12,0(r8) /* Load doubleword from memory. */
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cmpb r5,r12,r4 /* Compare each byte against c byte. */
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sld r5,r5,r6 /* Move left to discard ignored bits. */
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srd r5,r5,r6 /* Bring the bits back as zeros. */
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cmpdi cr7,r5,0 /* If r5 == 0, no c bytes have been found. */
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bne cr7,L(done)
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mtcrf 0x01,r8
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/* Are we now aligned to a quadword boundary? If so, skip to
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the main loop. Otherwise, go through the alignment code. */
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bt 28,L(loop)
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/* Handle DWORD2 of pair. */
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ldu r12,8(r8)
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cmpb r5,r12,r4
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cmpdi cr7,r5,0
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bne cr7,L(done)
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b L(loop) /* We branch here (rather than falling through)
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to skip the nops due to heavy alignment
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of the loop below. */
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/* Main loop to look for the end of the string. Since it's a
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small loop (< 8 instructions), align it to 32-bytes. */
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.p2align 5
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L(loop):
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/* Load two doublewords, compare and merge in a
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single register for speed. This is an attempt
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to speed up the byte-checking process for bigger strings. */
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ld r12,8(r8)
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ldu r11,16(r8)
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cmpb r5,r12,r4
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cmpb r6,r11,r4
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or r7,r5,r6
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cmpdi cr7,r7,0
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beq cr7,L(loop)
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/* OK, one (or both) of the doublewords contains a 'c' byte. Check
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the first doubleword and decrement the address in case the first
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doubleword really contains a c byte. */
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cmpdi cr6,r5,0
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addi r8,r8,-8
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bne cr6,L(done)
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/* The 'c' byte must be in the second doubleword. Adjust the address
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again and move the result of cmpb to r10 so we can calculate the
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pointer. */
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mr r5,r6
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addi r8,r8,8
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/* r5 has the output of the cmpb instruction, that is, it contains
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0xff in the same position as the 'c' byte in the original
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doubleword from the string. Use that fact to find out what is
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the position of the byte inside the string. */
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L(done):
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cntlzd r0,r5 /* Count leading zeros before the match. */
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srdi r0,r0,3 /* Convert leading zeroes to bytes. */
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add r3,r8,r0 /* Return address of the matching char. */
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blr
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END (BP_SYM (__rawmemchr))
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weak_alias (__rawmemchr,rawmemchr)
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libc_hidden_builtin_def (__rawmemchr)
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