📄 qtrsm_kernel_ln_2x2.s
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/*********************************************************************//* *//* Optimized BLAS libraries *//* By Kazushige Goto <kgoto@tacc.utexas.edu> *//* *//* Copyright (c) The University of Texas, 2005. All rights reserved. *//* UNIVERSITY EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES CONCERNING *//* THIS SOFTWARE AND DOCUMENTATION, INCLUDING ANY WARRANTIES OF *//* MERCHANTABILITY, FITNESS FOR ANY PARTICULAR PURPOSE, *//* NON-INFRINGEMENT AND WARRANTIES OF PERFORMANCE, AND ANY WARRANTY *//* THAT MIGHT OTHERWISE ARISE FROM COURSE OF DEALING OR USAGE OF *//* TRADE. NO WARRANTY IS EITHER EXPRESS OR IMPLIED WITH RESPECT TO *//* THE USE OF THE SOFTWARE OR DOCUMENTATION. *//* Under no circumstances shall University be liable for incidental, *//* special, indirect, direct or consequential damages or loss of *//* profits, interruption of business, or related expenses which may *//* arise from use of Software or Documentation, including but not *//* limited to those resulting from defects in Software and/or *//* Documentation, or loss or inaccuracy of data of any kind. *//*********************************************************************/#define ASSEMBLER#include "common.h"#ifdef OPTERON#define PREFETCH prefetch#define PREFETCHW prefetchw#else#define PREFETCH prefetcht0#define PREFETCHW prefetcht0#endif#define PREFETCHSIZE (5 + 4 * 10)#define STACK 16#define ARGS 16 #define J 0 + STACK(%esp)#define KK 4 + STACK(%esp)#define KKK 8 + STACK(%esp)#define AORIG 12 + STACK(%esp)#define M 4 + STACK + ARGS(%esp)#define N 8 + STACK + ARGS(%esp)#define K 12 + STACK + ARGS(%esp)#define ALPHA 16 + STACK + ARGS(%esp)#define A 32 + STACK + ARGS(%esp)#define ARG_B 36 + STACK + ARGS(%esp)#define C 40 + STACK + ARGS(%esp)#define ARG_LDC 44 + STACK + ARGS(%esp)#define OFFSET 48 + STACK + ARGS(%esp)#define I %esi#define B %ebx#define CO %edi#define AO %edx#define BO %ecx#define LDC %ebp#define PREFETCH_OFFSET 48 PROLOGUE subl $ARGS, %esp # Generate Stack Frame pushl %ebp pushl %edi pushl %esi pushl %ebx PROFCODE movl ARG_LDC, LDC movl ARG_B, B sall $BASE_SHIFT, LDC addl $8 * SIZE, A addl $8 * SIZE, B#ifdef LN movl M, %eax sall $BASE_SHIFT, %eax addl %eax, C imull K, %eax addl %eax, A#endif#ifdef RT movl N, %eax sall $BASE_SHIFT, %eax imull K, %eax addl %eax, B movl N, %eax imull %ebp, %eax addl %eax, C#endif#ifdef RN movl OFFSET, %eax negl %eax movl %eax, KK#endif #ifdef RT movl N, %eax subl OFFSET, %eax movl %eax, KK#endif movl N, %eax sarl $1, %eax movl %eax, J je .L30 ALIGN_4.L01:#if defined(LT) || defined(RN) movl A, AO#else movl A, %eax movl %eax, AORIG#endif#ifdef RT movl K, %eax sall $1 + BASE_SHIFT, %eax subl %eax, B#endif lea (, LDC, 2), %eax#ifdef RT subl %eax, C#endif movl C, CO#ifndef RT addl %eax, C#endif#ifdef LN movl OFFSET, %eax addl M, %eax movl %eax, KK#endif #ifdef LT movl OFFSET, %eax movl %eax, KK#endif movl M, %eax andl $1, %eax je .L20 ALIGN_4.L21:#ifdef LN movl K, %eax sall $0 + BASE_SHIFT, %eax subl %eax, AORIG#endif#if defined(LN) || defined(RT) movl KK, %eax sall $BASE_SHIFT, %eax movl AORIG, AO leal (AO, %eax, 1), AO leal (B, %eax, 2), BO#else movl B, BO#endif fldz fldz#if defined(LT) || defined(RN) movl KK, %eax#else movl K, %eax subl KK, %eax#endif sarl $2, %eax je .L25 ALIGN_4.L22: PREFETCH (PREFETCHSIZE + 0) * SIZE(AO) FLD -8 * SIZE(AO) FLD -8 * SIZE(BO) fmul %st(1), %st faddp %st, %st(2) FLD -7 * SIZE(BO) fmulp %st, %st(1) faddp %st, %st(2) FLD -7 * SIZE(AO) FLD -6 * SIZE(BO) fmul %st(1), %st faddp %st, %st(2) FLD -5 * SIZE(BO) fmulp %st, %st(1) faddp %st, %st(2) FLD -6 * SIZE(AO) FLD -4 * SIZE(BO) fmul %st(1), %st faddp %st, %st(2) FLD -3 * SIZE(BO) fmulp %st, %st(1) faddp %st, %st(2) FLD -5 * SIZE(AO) FLD -2 * SIZE(BO) fmul %st(1), %st faddp %st, %st(2) FLD -1 * SIZE(BO) fmulp %st, %st(1) faddp %st, %st(2) addl $4 * SIZE,AO addl $8 * SIZE,BO decl %eax jne .L22 ALIGN_4.L25:#if defined(LT) || defined(RN) movl KK, %eax#else movl K, %eax subl KK, %eax#endif and $3, %eax je .L28 ALIGN_4.L26: FLD -8 * SIZE(AO) FLD -8 * SIZE(BO) fmul %st(1), %st faddp %st, %st(2) FLD -7 * SIZE(BO) fmulp %st, %st(1) faddp %st, %st(2) addl $1 * SIZE,AO addl $2 * SIZE,BO decl %eax jne .L26 ALIGN_4.L28:#if defined(LN) || defined(RT) movl KK, %eax#ifdef LN subl $1, %eax#else subl $2, %eax#endif sall $BASE_SHIFT, %eax movl AORIG, AO leal (AO, %eax, 1), AO leal (B, %eax, 2), BO#endif#if defined(LN) || defined(LT) FLD -8 * SIZE(BO) fsubp %st, %st(1) FLD -7 * SIZE(BO) fsubp %st, %st(2)#else FLD -8 * SIZE(AO) fsubp %st, %st(1) FLD -7 * SIZE(AO) fsubp %st, %st(3)#endif#if defined(LN) || defined(LT) FLD -8 * SIZE(AO) fmul %st, %st(1) fmulp %st, %st(2)#endif#ifdef RN FLD -8 * SIZE(BO) fmulp %st, %st(1) FLD -7 * SIZE(BO) fmul %st(1), %st fsubrp %st, %st(2) FLD -5 * SIZE(BO) fmulp %st, %st(2)#endif#ifdef RT FLD -5 * SIZE(BO) fmulp %st, %st(2) FLD -6 * SIZE(BO) fmul %st(2), %st fsubrp %st, %st(1) FLD -8 * SIZE(BO) fmulp %st, %st(1)#endif#ifdef LN subl $1 * SIZE, CO#endif#if defined(LN) || defined(LT) fld %st FST -8 * SIZE(BO) fxch %st(1) fld %st FST -7 * SIZE(BO)#else fld %st FST -8 * SIZE(AO) fxch %st(1) fld %st FST -7 * SIZE(AO)#endif FST 0 * SIZE(CO, LDC) FST 0 * SIZE(CO)#ifndef LN addl $1 * SIZE, CO#endif#if defined(LT) || defined(RN) movl K, %eax subl KK, %eax sall $BASE_SHIFT, %eax leal (AO, %eax, 1), AO leal (BO, %eax, 2), BO#endif#ifdef LN subl $1, KK#endif#ifdef LT addl $1, KK#endif#ifdef RT movl K, %eax sall $0 + BASE_SHIFT, %eax addl %eax, AORIG#endif ALIGN_4.L20: movl M, I sarl $1, I je .L29 ALIGN_4.L11:#ifdef LN movl K, %eax sall $1 + BASE_SHIFT, %eax subl %eax, AORIG#endif#if defined(LN) || defined(RT) movl KK, %eax sall $BASE_SHIFT, %eax movl AORIG, AO leal (AO, %eax, 2), AO leal (B, %eax, 2), BO#else movl B, BO#endif fldz fldz fldz fldz#if defined(HAVE_3DNOW) prefetchw 2 * SIZE(CO) prefetchw 2 * SIZE(CO, LDC, 1)#elif defined(HAVE_SSE) prefetchnta 2 * SIZE(CO) prefetchnta 2 * SIZE(CO, LDC, 1)#endif#if defined(LT) || defined(RN) movl KK, %eax#else movl K, %eax subl KK, %eax#endif sarl $2, %eax je .L15 ALIGN_4.L12: PREFETCH (PREFETCHSIZE + 0) * SIZE(AO) FLD -8 * SIZE(AO) FLD -8 * SIZE(BO) fld %st(1) fmul %st(1), %st faddp %st, %st(3) FLD -7 * SIZE(BO) fmul %st, %st(2) FLD -7 * SIZE(AO) fmul %st, %st(2) fmulp %st, %st(1) faddp %st, %st(6) faddp %st, %st(4) faddp %st, %st(2) FLD -6 * SIZE(AO) FLD -6 * SIZE(BO) fld %st(1) fmul %st(1), %st faddp %st, %st(3) FLD -5 * SIZE(BO) fmul %st, %st(2) FLD -5 * SIZE(AO) fmul %st, %st(2) fmulp %st, %st(1) faddp %st, %st(6) faddp %st, %st(4) faddp %st, %st(2) PREFETCH (PREFETCHSIZE + 4) * SIZE(AO) FLD -4 * SIZE(AO) FLD -4 * SIZE(BO) fld %st(1) fmul %st(1), %st faddp %st, %st(3) FLD -3 * SIZE(BO) fmul %st, %st(2) FLD -3 * SIZE(AO) fmul %st, %st(2) fmulp %st, %st(1) faddp %st, %st(6) faddp %st, %st(4) faddp %st, %st(2) FLD -2 * SIZE(AO) FLD -2 * SIZE(BO) fld %st(1) fmul %st(1), %st faddp %st, %st(3) FLD -1 * SIZE(BO) fmul %st, %st(2) FLD -1 * SIZE(AO) fmul %st, %st(2) fmulp %st, %st(1) faddp %st, %st(6) faddp %st, %st(4) faddp %st, %st(2) addl $8 * SIZE,AO addl $8 * SIZE,BO decl %eax jne .L12 ALIGN_4.L15:#if defined(LT) || defined(RN) movl KK, %eax#else movl K, %eax subl KK, %eax#endif and $3, %eax je .L18 ALIGN_4.L16: FLD -8 * SIZE(AO) FLD -8 * SIZE(BO) fld %st(1) fmul %st(1), %st faddp %st, %st(3) FLD -7 * SIZE(BO) fmul %st, %st(2) FLD -7 * SIZE(AO) fmul %st, %st(2) fmulp %st, %st(1) faddp %st, %st(6) faddp %st, %st(4) faddp %st, %st(2) addl $2 * SIZE,AO addl $2 * SIZE,BO decl %eax jne .L16 ALIGN_4.L18:#if defined(LN) || defined(RT) movl KK, %eax#ifdef LN subl $2, %eax#else subl $2, %eax#endif sall $BASE_SHIFT, %eax movl AORIG, AO leal (AO, %eax, 2), AO leal (B, %eax, 2), BO#endif#if defined(LN) || defined(LT) FLD -8 * SIZE(BO) fsubp %st, %st(1) FLD -7 * SIZE(BO) fsubp %st, %st(2) FLD -6 * SIZE(BO) fsubp %st, %st(3) FLD -5 * SIZE(BO) fsubp %st, %st(4)#else FLD -8 * SIZE(AO) fsubp %st, %st(1) FLD -7 * SIZE(AO) fsubp %st, %st(3) FLD -6 * SIZE(AO) fsubp %st, %st(2) FLD -5 * SIZE(AO) fsubp %st, %st(4)#endif#ifdef LN FLD -5 * SIZE(AO) fmul %st, %st(3) fmulp %st, %st(4) FLD -6 * SIZE(AO) fmul %st(3), %st FLD -6 * SIZE(AO) fmul %st(5), %st fsubrp %st, %st(3) fsubrp %st, %st(1) FLD -8 * SIZE(AO) fmul %st, %st(1) fmulp %st, %st(2)#endif#ifdef LT FLD -8 * SIZE(AO) fmul %st, %st(1) fmulp %st, %st(2) FLD -7 * SIZE(AO) fmul %st(1), %st FLD -7 * SIZE(AO) fmul %st(3), %st fsubrp %st, %st(5) fsubrp %st, %st(3) FLD -5 * SIZE(AO)
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