While debugging/profiling applications using perf or other tools, the kernels appear scattered in the profile reports. This is because the labels within the kernels are not local and each label is shown as a separate function. To avoid this, all the labels within the kernels are changed to local labels.
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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