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📄 rot.s

📁 Optimized GotoBLAS libraries
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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"	#define STACK	12#define ARGS     0	#define STACK_N		 4 + STACK + ARGS(%esp)#define STACK_X		 8 + STACK + ARGS(%esp)#define STACK_INCX	12 + STACK + ARGS(%esp)#define STACK_Y		16 + STACK + ARGS(%esp)#define STACK_INCY	20 + STACK + ARGS(%esp)#define STACK_C		24 + STACK + ARGS(%esp)#ifdef XDOUBLE#define STACK_S		40 + STACK + ARGS(%esp)#elif defined DOUBLE#define STACK_S		32 + STACK + ARGS(%esp)#else#define STACK_S		28 + STACK + ARGS(%esp)#endif#define N	%ebx#define X	%esi#define INCX	%ecx#define Y	%edi#define INCY	%edx#define	I	%eax#ifdef PENTIUM4#define PREFETCH	prefetcht0#define PREFETCH_SIZE	144#endif#ifdef OPTERON#define PREFETCH	prefetchw#define PREFETCH_SIZE	144#endif	PROLOGUE	pushl	%edi	pushl	%esi	pushl	%ebx	PROFCODE#ifdef F_INTERFACE_GFORT	EMMS#endif	movl	STACK_N,     N	movl	STACK_X,     X	movl	STACK_INCX,  INCX	movl	STACK_Y,     Y	movl	STACK_INCY,  INCY	FLD	STACK_S	FLD	STACK_C	sall	$BASE_SHIFT, INCX	sall	$BASE_SHIFT, INCY	testl	N, N	jle	.L999	cmpl	$SIZE, INCX	jne	.L50	cmpl	$SIZE, INCY	jne	.L50	movl	N,  I	sarl	$2, I	jle	.L15	ALIGN_4	.L10:#ifdef PENTIUM4	PREFETCH	(PREFETCH_SIZE + 0) * SIZE(X)#endif#ifdef OPTERON	PREFETCH	(PREFETCH_SIZE + 0) * SIZE(X)#endif	FLD	0 * SIZE(X)	FLD	0 * SIZE(Y)	fld	%st(1)	fmul	%st(3), %st	fld	%st(1)	fmul	%st(5), %st	faddp	%st, %st(1)	FST	0 * SIZE(X)	fmul	%st(2), %st	fxch	%st(1)	fmul	%st(3), %st	fsubrp	%st, %st(1)	FST	0 * SIZE(Y)	FLD	1 * SIZE(X)	FLD	1 * SIZE(Y)	fld	%st(1)	fmul	%st(3), %st	fld	%st(1)	fmul	%st(5), %st	faddp	%st, %st(1)	FST	1 * SIZE(X)	fmul	%st(2), %st	fxch	%st(1)	fmul	%st(3), %st	fsubrp	%st, %st(1)	FST	1 * SIZE(Y)#ifdef PENTIUM4	PREFETCH	(PREFETCH_SIZE + 0) * SIZE(Y)#endif#ifdef OPTERON	PREFETCH	(PREFETCH_SIZE + 0) * SIZE(Y)#endif	FLD	2 * SIZE(X)	FLD	2 * SIZE(Y)	fld	%st(1)	fmul	%st(3), %st	fld	%st(1)	fmul	%st(5), %st	faddp	%st, %st(1)	FST	2 * SIZE(X)	fmul	%st(2), %st	fxch	%st(1)	fmul	%st(3), %st	fsubrp	%st, %st(1)	FST	2 * SIZE(Y)	FLD	3 * SIZE(X)	FLD	3 * SIZE(Y)	fld	%st(1)	fmul	%st(3), %st	fld	%st(1)	fmul	%st(5), %st	faddp	%st, %st(1)	FST	3 * SIZE(X)	fmul	%st(2), %st	fxch	%st(1)	fmul	%st(3), %st	fsubrp	%st, %st(1)	FST	3 * SIZE(Y)	addl	$4 * SIZE, X	addl	$4 * SIZE, Y	decl	I	jg	.L10	ALIGN_4.L15:	movl	N,  I	andl	$3, I	jle	.L999	ALIGN_4.L16:	FLD	0 * SIZE(X)	FLD	0 * SIZE(Y)	fld	%st(1)	fmul	%st(3), %st	fld	%st(1)	fmul	%st(5), %st	faddp	%st, %st(1)	FST	0 * SIZE(X)	fmul	%st(2), %st	fxch	%st(1)	fmul	%st(3), %st	fsubrp	%st, %st(1)	FST	0 * SIZE(Y)	addl	$SIZE, X	addl	$SIZE, Y	decl	I	jg	.L16	jmp	.L999	ALIGN_4.L50:	movl	N,  I	sarl	$2, I	jle	.L55	ALIGN_4	.L51:	FLD	0 * SIZE(X)	FLD	0 * SIZE(Y)	fld	%st(1)	fmul	%st(3), %st	fld	%st(1)	fmul	%st(5), %st	faddp	%st, %st(1)	FST	0 * SIZE(X)	fmul	%st(2), %st	fxch	%st(1)	fmul	%st(3), %st	fsubrp	%st, %st(1)	FST	0 * SIZE(Y)	addl	INCX, X	addl	INCY, Y	FLD	0 * SIZE(X)	FLD	0 * SIZE(Y)	fld	%st(1)	fmul	%st(3), %st	fld	%st(1)	fmul	%st(5), %st	faddp	%st, %st(1)	FST	0 * SIZE(X)	fmul	%st(2), %st	fxch	%st(1)	fmul	%st(3), %st	fsubrp	%st, %st(1)	FST	0 * SIZE(Y)	addl	INCX, X	addl	INCY, Y	FLD	0 * SIZE(X)	FLD	0 * SIZE(Y)	fld	%st(1)	fmul	%st(3), %st	fld	%st(1)	fmul	%st(5), %st	faddp	%st, %st(1)	FST	0 * SIZE(X)	fmul	%st(2), %st	fxch	%st(1)	fmul	%st(3), %st	fsubrp	%st, %st(1)	FST	0 * SIZE(Y)	addl	INCX, X	addl	INCY, Y	FLD	0 * SIZE(X)	FLD	0 * SIZE(Y)	fld	%st(1)	fmul	%st(3), %st	fld	%st(1)	fmul	%st(5), %st	faddp	%st, %st(1)	FST	0 * SIZE(X)	fmul	%st(2), %st	fxch	%st(1)	fmul	%st(3), %st	fsubrp	%st, %st(1)	FST	0 * SIZE(Y)	addl	INCX, X	addl	INCY, Y	decl	I	jg	.L51	ALIGN_4.L55:	movl	N,  I	andl	$3, I	jle	.L999	ALIGN_4.L56:	FLD	0 * SIZE(X)	FLD	0 * SIZE(Y)	fld	%st(1)	fmul	%st(3), %st	fld	%st(1)	fmul	%st(5), %st	faddp	%st, %st(1)	FST	0 * SIZE(X)	fmul	%st(2), %st	fxch	%st(1)	fmul	%st(3), %st	fsubrp	%st, %st(1)	FST	0 * SIZE(Y)	addl	INCX, X	addl	INCY, Y	decl	I	jg	.L56	ALIGN_4.L999:	ffreep	%st	ffreep	%st	popl	%ebx	popl	%esi	popl	%edi	ret	EPILOGUE

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