/*********************************************************************/ /* Copyright 2009, 2010 The University of Texas at Austin. */ /* All rights reserved. */ /* */ /* Redistribution and use in source and binary forms, with or */ /* without modification, are permitted provided that the following */ /* conditions are met: */ /* */ /* 1. Redistributions of source code must retain the above */ /* copyright notice, this list of conditions and the following */ /* disclaimer. */ /* */ /* 2. Redistributions in binary form must reproduce the above */ /* copyright notice, this list of conditions and the following */ /* disclaimer in the documentation and/or other materials */ /* provided with the distribution. */ /* */ /* THIS SOFTWARE IS PROVIDED BY THE UNIVERSITY OF TEXAS AT */ /* AUSTIN ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, */ /* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF */ /* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE */ /* DISCLAIMED. IN NO EVENT SHALL THE UNIVERSITY OF TEXAS AT */ /* AUSTIN OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, */ /* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES */ /* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE */ /* GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR */ /* BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF */ /* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT */ /* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT */ /* OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE */ /* POSSIBILITY OF SUCH DAMAGE. */ /* */ /* The views and conclusions contained in the software and */ /* documentation are those of the authors and should not be */ /* interpreted as representing official policies, either expressed */ /* or implied, of The University of Texas at Austin. */ /*********************************************************************/ #define ASSEMBLER #include "common.h" #ifndef WINDOWS_ABI #define M ARG1 /* rdi */ #define N ARG2 /* rsi */ #define A ARG3 /* rdx */ #define LDA ARG4 /* rcx */ #define B ARG5 /* r8 */ #define I %r9 #else #define STACKSIZE 256 #define M ARG1 /* rcx */ #define N ARG2 /* rdx */ #define A ARG3 /* r8 */ #define LDA ARG4 /* r9 */ #define OLD_B 40 + 32 + STACKSIZE(%rsp) #define B %r14 #define I %r15 #endif #define J %r10 #define AO1 %r11 #define AO2 %r12 #define AO3 %r13 #define AO4 %rax PROLOGUE PROFCODE #ifdef WINDOWS_ABI pushq %r15 pushq %r14 #endif pushq %r13 pushq %r12 #ifdef WINDOWS_ABI subq $STACKSIZE, %rsp vmovups %xmm6, 0(%rsp) vmovups %xmm7, 16(%rsp) vmovups %xmm8, 32(%rsp) vmovups %xmm9, 48(%rsp) vmovups %xmm10, 64(%rsp) vmovups %xmm11, 80(%rsp) vmovups %xmm12, 96(%rsp) vmovups %xmm13, 112(%rsp) vmovups %xmm14, 128(%rsp) vmovups %xmm15, 144(%rsp) movq OLD_B, B #endif leaq (,LDA, SIZE), LDA # Scaling movq N, J sarq $1, J jle .L20 ALIGN_4 .L01: movq A, AO1 leaq (A, LDA), AO2 leaq (A, LDA, 2), A movq M, I sarq $3, I jle .L08 ALIGN_4 .L03: #ifndef DOUBLE vmovss 0 * SIZE(AO1), %xmm0 vmovss 0 * SIZE(AO2), %xmm1 vmovss 1 * SIZE(AO1), %xmm2 vmovss 1 * SIZE(AO2), %xmm3 vmovss 2 * SIZE(AO1), %xmm4 vmovss 2 * SIZE(AO2), %xmm5 vmovss 3 * SIZE(AO1), %xmm6 vmovss 3 * SIZE(AO2), %xmm7 vmovss 4 * SIZE(AO1), %xmm8 vmovss 4 * SIZE(AO2), %xmm9 vmovss 5 * SIZE(AO1), %xmm10 vmovss 5 * SIZE(AO2), %xmm11 vmovss 6 * SIZE(AO1), %xmm12 vmovss 6 * SIZE(AO2), %xmm13 vmovss 7 * SIZE(AO1), %xmm14 vmovss 7 * SIZE(AO2), %xmm15 vmovss %xmm0, 0 * SIZE(B) vmovss %xmm1, 1 * SIZE(B) vmovss %xmm2, 2 * SIZE(B) vmovss %xmm3, 3 * SIZE(B) vmovss %xmm4, 4 * SIZE(B) vmovss %xmm5, 5 * SIZE(B) vmovss %xmm6, 6 * SIZE(B) vmovss %xmm7, 7 * SIZE(B) vmovss %xmm8, 8 * SIZE(B) vmovss %xmm9, 9 * SIZE(B) vmovss %xmm10, 10 * SIZE(B) vmovss %xmm11, 11 * SIZE(B) vmovss %xmm12, 12 * SIZE(B) vmovss %xmm13, 13 * SIZE(B) vmovss %xmm14, 14 * SIZE(B) vmovss %xmm15, 15 * SIZE(B) #else prefetchw 256(B) prefetchnta 256(AO1) vmovsd 0 * SIZE(AO1), %xmm0 vmovsd 1 * SIZE(AO1), %xmm1 vmovsd 2 * SIZE(AO1), %xmm2 vmovsd 3 * SIZE(AO1), %xmm3 vmovsd 4 * SIZE(AO1), %xmm4 vmovsd 5 * SIZE(AO1), %xmm5 vmovsd 6 * SIZE(AO1), %xmm6 vmovsd 7 * SIZE(AO1), %xmm7 prefetchnta 256(AO2) vmovhpd 0 * SIZE(AO2), %xmm0 , %xmm0 vmovhpd 1 * SIZE(AO2), %xmm1 , %xmm1 vmovhpd 2 * SIZE(AO2), %xmm2 , %xmm2 vmovhpd 3 * SIZE(AO2), %xmm3 , %xmm3 vmovhpd 4 * SIZE(AO2), %xmm4 , %xmm4 vmovhpd 5 * SIZE(AO2), %xmm5 , %xmm5 vmovhpd 6 * SIZE(AO2), %xmm6 , %xmm6 vmovhpd 7 * SIZE(AO2), %xmm7 , %xmm7 prefetchw 256+64(B) vmovups %xmm0, 0 * SIZE(B) vmovups %xmm1, 2 * SIZE(B) vmovups %xmm2, 4 * SIZE(B) vmovups %xmm3, 6 * SIZE(B) vmovups %xmm4, 8 * SIZE(B) vmovups %xmm5, 10 * SIZE(B) vmovups %xmm6, 12 * SIZE(B) vmovups %xmm7, 14 * SIZE(B) #endif addq $8 * SIZE, AO1 addq $8 * SIZE, AO2 subq $-16 * SIZE, B decq I jg .L03 ALIGN_4 .L08: testq $4 , M je .L14 ALIGN_4 .L13: #ifndef DOUBLE vmovss 0 * SIZE(AO1), %xmm0 vmovss 0 * SIZE(AO2), %xmm1 vmovss 1 * SIZE(AO1), %xmm2 vmovss 1 * SIZE(AO2), %xmm3 vmovss 2 * SIZE(AO1), %xmm4 vmovss 2 * SIZE(AO2), %xmm5 vmovss 3 * SIZE(AO1), %xmm6 vmovss 3 * SIZE(AO2), %xmm7 vmovss %xmm0, 0 * SIZE(B) vmovss %xmm1, 1 * SIZE(B) vmovss %xmm2, 2 * SIZE(B) vmovss %xmm3, 3 * SIZE(B) vmovss %xmm4, 4 * SIZE(B) vmovss %xmm5, 5 * SIZE(B) vmovss %xmm6, 6 * SIZE(B) vmovss %xmm7, 7 * SIZE(B) #else vmovsd 0 * SIZE(AO1), %xmm0 vmovsd 1 * SIZE(AO1), %xmm1 vmovsd 2 * SIZE(AO1), %xmm2 vmovsd 3 * SIZE(AO1), %xmm3 vmovhpd 0 * SIZE(AO2), %xmm0 , %xmm0 vmovhpd 1 * SIZE(AO2), %xmm1 , %xmm1 vmovhpd 2 * SIZE(AO2), %xmm2 , %xmm2 vmovhpd 3 * SIZE(AO2), %xmm3 , %xmm3 vmovups %xmm0, 0 * SIZE(B) vmovups %xmm1, 2 * SIZE(B) vmovups %xmm2, 4 * SIZE(B) vmovups %xmm3, 6 * SIZE(B) #endif addq $4 * SIZE, AO1 addq $4 * SIZE, AO2 subq $-8 * SIZE, B ALIGN_4 .L14: movq M, I andq $3, I jle .L16 ALIGN_4 .L15: #ifndef DOUBLE vmovss 0 * SIZE(AO1), %xmm0 vmovss 0 * SIZE(AO2), %xmm1 vmovss %xmm0, 0 * SIZE(B) vmovss %xmm1, 1 * SIZE(B) #else vmovsd 0 * SIZE(AO1), %xmm0 vmovhpd 0 * SIZE(AO2), %xmm0 , %xmm0 vmovups %xmm0, 0 * SIZE(B) #endif addq $SIZE, AO1 addq $SIZE, AO2 addq $2 * SIZE, B decq I jg .L15 ALIGN_4 .L16: decq J jg .L01 ALIGN_4 .L20: testq $1, N jle .L999 movq A, AO1 movq M, I sarq $2, I jle .L34 ALIGN_4 .L33: #ifndef DOUBLE vmovups 0 * SIZE(AO1), %xmm0 vmovups %xmm0, 0 * SIZE(B) #else vmovups 0 * SIZE(AO1), %xmm0 vmovups 2 * SIZE(AO1), %xmm1 vmovups %xmm0, 0 * SIZE(B) vmovups %xmm1, 2 * SIZE(B) #endif addq $4 * SIZE, AO1 subq $-4 * SIZE, B decq I jg .L33 ALIGN_4 .L34: movq M, I andq $3, I jle .L999 ALIGN_4 .L35: #ifndef DOUBLE vmovss 0 * SIZE(AO1), %xmm0 vmovss %xmm0, 0 * SIZE(B) #else vmovsd 0 * SIZE(AO1), %xmm0 vmovsd %xmm0, 0 * SIZE(B) #endif addq $SIZE, AO1 addq $1 * SIZE, B decq I jg .L35 ALIGN_4 .L999: #ifdef WINDOWS_ABI vmovups 0(%rsp), %xmm6 vmovups 16(%rsp), %xmm7 vmovups 32(%rsp), %xmm8 vmovups 48(%rsp), %xmm9 vmovups 64(%rsp), %xmm10 vmovups 80(%rsp), %xmm11 vmovups 96(%rsp), %xmm12 vmovups 112(%rsp), %xmm13 vmovups 128(%rsp), %xmm14 vmovups 144(%rsp), %xmm15 addq $STACKSIZE, %rsp #endif popq %r12 popq %r13 #ifdef WINDOWS_ABI popq %r14 popq %r15 #endif ret EPILOGUE