303 lines
8.2 KiB
ArmAsm
303 lines
8.2 KiB
ArmAsm
/*******************************************************************************
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Copyright (c) 2015, The OpenBLAS Project
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All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions are
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met:
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1. Redistributions of source code must retain the above copyright
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notice, this list of conditions and the following disclaimer.
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2. Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in
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the documentation and/or other materials provided with the
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distribution.
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3. Neither the name of the OpenBLAS project nor the names of
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its contributors may be used to endorse or promote products
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derived from this software without specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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ARE DISCLAIMED. IN NO EVENT SHALL THE OPENBLAS PROJECT OR CONTRIBUTORS BE
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LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
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SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
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CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE
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USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*******************************************************************************/
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#define ASSEMBLER
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#include "common.h"
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#define N x0 /* vector length */
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#define X x1 /* X vector address */
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#define INC_X x2 /* X stride */
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#define Y x3 /* Y vector address */
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#define INC_Y x4 /* Y stride */
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#define I x5 /* loop variable */
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/*******************************************************************************
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* Macro definitions
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*******************************************************************************/
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#if !defined(DOUBLE)
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#if !defined(DSDOT)
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#define REG0 wzr
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#define DOTF s0
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#else // DSDOT
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#define REG0 xzr
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#define DOTF d0
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#endif
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#define DOTI s1
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#define TMPX s2
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#define LD1VX {v2.s}[0]
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#define TMPY s3
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#define LD1VY {v3.s}[0]
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#define TMPVY v3.s[0]
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#define SZ 4
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#else
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#define REG0 xzr
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#define DOTF d0
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#define DOTI d1
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#define TMPX d2
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#define LD1VX {v2.d}[0]
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#define TMPY d3
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#define LD1VY {v3.d}[0]
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#define TMPVY v3.d[0]
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#define SZ 8
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#endif
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/******************************************************************************/
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.macro KERNEL_F1
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#if !defined(DOUBLE)
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ld1 {v2.2s}, [X], #8 // V2 = X[ix+1], X[ix]; X += 2
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ld1 {v3.2s}, [Y], #8 // V3 = Y[iy+1], Y[iy]; Y += 2
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ins v4.s[0], v2.s[1] // V4 = X[ix+1]
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#if !defined(CONJ)
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fmla DOTF, s2, v3.s[0] // dot[0] += X[ix] * Y[iy]
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fmls DOTF, s4, v3.s[1] // dot[0] -= X[ix+1] * Y[iy+1]
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fmla DOTI, s4, v3.s[0] // dot[1] += X[ix+1] * Y[iy]
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fmla DOTI, s2, v3.s[1] // dot[1] += X[ix] * Y[iy+1]
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#else
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fmla DOTF, s2, v3.s[0] // dot[0] += X[ix] * Y[iy]
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fmla DOTF, s4, v3.s[1] // dot[0] += X[ix+1] * Y[iy+1]
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fmls DOTI, s4, v3.s[0] // dot[1] -= X[ix+1] * Y[iy]
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fmla DOTI, s2, v3.s[1] // dot[1] += X[ix] * Y[iy+1]
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#endif
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#else // DOUBLE
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ld1 {v2.2d}, [X], #16 // V2 = X[ix+1], X[ix]; X += 2
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ld1 {v3.2d}, [Y], #16 // V3 = Y[iy+1], Y[iy]; Y += 2
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ins v4.d[0], v2.d[1] // V4 = X[ix+1]
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#if !defined(CONJ)
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fmla DOTF, d2, v3.d[0] // dot[0] += X[ix] * Y[iy]
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fmls DOTF, d4, v3.d[1] // dot[0] -= X[ix+1] * Y[iy+1]
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fmla DOTI, d4, v3.d[0] // dot[1] += X[ix+1] * Y[iy]
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fmla DOTI, d2, v3.d[1] // dot[1] += X[ix] * Y[iy+1]
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#else
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fmla DOTF, d2, v3.d[0] // dot[0] += X[ix] * Y[iy]
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fmla DOTF, d4, v3.d[1] // dot[0] += X[ix+1] * Y[iy+1]
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fmls DOTI, d4, v3.d[0] // dot[1] -= X[ix+1] * Y[iy]
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fmla DOTI, d2, v3.d[1] // dot[1] += X[ix] * Y[iy+1]
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#endif
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#endif
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.endm
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.macro KERNEL_F4
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#if !defined(DOUBLE)
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ld2 {v2.4s, v3.4s}, [X], #32 // V2 = X[ix+1], X[ix]; X += 2
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ld2 {v4.4s, v5.4s}, [Y], #32 // V2 = X[ix+1], X[ix]; X += 2
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fmla v0.4s, v2.4s, v4.4s // dot[0] += X[ix] * Y[iy]
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fmla v1.4s, v2.4s, v5.4s // dot[1] += X[ix] * Y[iy+1]
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PRFM PLDL1KEEP, [X, #1024]
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PRFM PLDL1KEEP, [Y, #1024]
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#if !defined(CONJ)
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fmls v0.4s, v3.4s, v5.4s // dot[0] -= X[ix+1] * Y[iy+1]
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fmla v1.4s, v3.4s, v4.4s // dot[1] += X[ix+1] * Y[iy]
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#else
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fmla v0.4s, v3.4s, v5.4s // dot[0] += X[ix+1] * Y[iy+1]
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fmls v1.4s, v3.4s, v4.4s // dot[1] -= X[ix+1] * Y[iy]
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#endif
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#else // DOUBLE
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ld2 {v2.2d, v3.2d}, [X], #32 // V2 = X[ix+1], X[ix]; X += 2
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ld2 {v16.2d, v17.2d}, [Y], #32
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fmla v0.2d, v2.2d, v16.2d // dot[0] += X[ix] * Y[iy]
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fmla v1.2d, v2.2d, v17.2d // dot[1] += X[ix] * Y[iy+1]
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ld2 {v4.2d, v5.2d}, [X], #32
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ld2 {v18.2d, v19.2d}, [Y], #32
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fmla v0.2d, v4.2d, v18.2d // dot[1] += X[ix] * Y[iy+1]
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fmla v1.2d, v4.2d, v19.2d // dot[1] += X[ix] * Y[iy+1]
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PRFM PLDL1KEEP, [X, #1024]
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PRFM PLDL1KEEP, [Y, #1024]
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#if !defined(CONJ)
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fmls v0.2d, v3.2d, v17.2d // dot[0] -= X[ix+1] * Y[iy+1]
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fmls v20.2d, v5.2d, v19.2d // dot[0] -= X[ix+1] * Y[iy+1]
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fmla v1.2d, v3.2d, v16.2d // dot[1] += X[ix+1] * Y[iy]
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fmla v21.2d, v5.2d, v18.2d // dot[1] += X[ix+1] * Y[iy]
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#else
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fmla v0.2d, v3.2d, v17.2d // dot[0] += X[ix+1] * Y[iy+1]
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fmla v20.2d, v5.2d, v19.2d // dot[0] += X[ix+1] * Y[iy+1]
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fmls v1.2d, v3.2d, v16.2d // dot[1] -= X[ix+1] * Y[iy]
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fmls v21.2d, v5.2d, v18.2d // dot[1] -= X[ix+1] * Y[iy]
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#endif
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#endif
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.endm
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.macro KERNEL_F4_FINALIZE
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#if !defined(DOUBLE)
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ext v2.16b, v0.16b, v0.16b, #8
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fadd v0.2s, v0.2s, v2.2s
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faddp DOTF, v0.2s
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ext v3.16b, v1.16b, v1.16b, #8
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fadd v1.2s, v1.2s, v3.2s
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faddp DOTI, v1.2s
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#else
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fadd v0.2d, v0.2d, v20.2d
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faddp DOTF, v0.2d
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fadd v1.2d, v1.2d, v21.2d
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faddp DOTI, v1.2d
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#endif
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.endm
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.macro INIT_S
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#if !defined(DOUBLE)
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lsl INC_X, INC_X, #3
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lsl INC_Y, INC_Y, #3
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#else
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lsl INC_X, INC_X, #4
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lsl INC_Y, INC_Y, #4
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#endif
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.endm
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.macro KERNEL_S1
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#if !defined(DOUBLE)
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ld1 {v2.2s}, [X], INC_X // V2 = X[ix+1], X[ix]; X += 2
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ld1 {v3.2s}, [Y], INC_Y // V3 = Y[iy+1], Y[iy]; Y += 2
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ext v4.8b, v2.8b, v2.8b, #4 // V4 = X[ix], X[ix+1]
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#if !defined(CONJ)
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fmla DOTF, s2, v3.s[0] // dot[0] += X[ix] * Y[iy]
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fmls DOTF, s4, v3.s[1] // dot[0] -= X[ix+1] * Y[iy+1]
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fmla DOTI, s4, v3.s[0] // dot[1] += X[ix+1] * Y[iy]
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fmla DOTI, s2, v3.s[1] // dot[1] += X[ix] * Y[iy+1]
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#else
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fmla DOTF, s2, v3.s[0] // dot[0] += X[ix] * Y[iy]
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fmla DOTF, s4, v3.s[1] // dot[0] += X[ix+1] * Y[iy+1]
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fmls DOTI, s4, v3.s[0] // dot[1] -= X[ix+1] * Y[iy]
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fmla DOTI, s2, v3.s[1] // dot[1] += X[ix] * Y[iy+1]
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#endif
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#else // DOUBLE
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ld1 {v2.2d}, [X], INC_X // V2 = X[ix+1], X[ix]; X += 2
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ld1 {v3.2d}, [Y], INC_Y // V3 = Y[iy+1], Y[iy]; Y += 2
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ext v4.16b, v2.16b, v2.16b, #8 // V4 = X[ix], X[ix+1]
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#if !defined(CONJ)
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fmla DOTF, d2, v3.d[0] // dot[0] += X[ix] * Y[iy]
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fmls DOTF, d4, v3.d[1] // dot[0] -= X[ix+1] * Y[iy+1]
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fmla DOTI, d4, v3.d[0] // dot[1] += X[ix+1] * Y[iy]
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fmla DOTI, d2, v3.d[1] // dot[1] += X[ix] * Y[iy+1]
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#else
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fmla DOTF, d2, v3.d[0] // dot[0] += X[ix] * Y[iy]
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fmla DOTF, d4, v3.d[1] // dot[0] += X[ix+1] * Y[iy+1]
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fmls DOTI, d4, v3.d[0] // dot[1] -= X[ix+1] * Y[iy]
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fmla DOTI, d2, v3.d[1] // dot[1] += X[ix] * Y[iy+1]
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#endif
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#endif
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.endm
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/*******************************************************************************
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* End of macro definitions
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*******************************************************************************/
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PROLOGUE
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fmov DOTF, REG0
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fmov DOTI, DOTF
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#if !defined(DOUBLE)
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fmov s20, DOTF
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fmov s21, DOTI
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#else
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fmov d20, DOTF
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fmov d21, DOTI
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#endif
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cmp N, xzr
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ble .Lzdot_kernel_L999
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cmp INC_X, #1
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bne .Lzdot_kernel_S_BEGIN
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cmp INC_Y, #1
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bne .Lzdot_kernel_S_BEGIN
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.Lzdot_kernel_F_BEGIN:
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asr I, N, #2
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cmp I, xzr
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beq .Lzdot_kernel_F1
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.Lzdot_kernel_F4:
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KERNEL_F4
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subs I, I, #1
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bne .Lzdot_kernel_F4
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KERNEL_F4_FINALIZE
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.Lzdot_kernel_F1:
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ands I, N, #3
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ble .Lzdot_kernel_L999
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.Lzdot_kernel_F10:
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KERNEL_F1
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subs I, I, #1
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bne .Lzdot_kernel_F10
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ret
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.Lzdot_kernel_S_BEGIN:
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INIT_S
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asr I, N, #2
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cmp I, xzr
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ble .Lzdot_kernel_S1
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.Lzdot_kernel_S4:
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KERNEL_S1
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KERNEL_S1
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KERNEL_S1
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KERNEL_S1
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subs I, I, #1
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bne .Lzdot_kernel_S4
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.Lzdot_kernel_S1:
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ands I, N, #3
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ble .Lzdot_kernel_L999
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.Lzdot_kernel_S10:
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KERNEL_S1
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subs I, I, #1
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bne .Lzdot_kernel_S10
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.Lzdot_kernel_L999:
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ret
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EPILOGUE
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