nb_kernel310_x86_64_sse2.intel_syntax.s

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;#;# $Id: nb_kernel310_x86_64_sse2.intel_syntax.s,v 1.1.2.2 2006/09/22 08:40:36 lindahl Exp $;#;# Gromacs 4.0                         Copyright (c) 1991-2003 ;# David van der Spoel, Erik Lindahl;#;# This program is free software; you can redistribute it and/or;# modify it under the terms of the GNU General Public License;# as published by the Free Software Foundation; either version 2;# of the License, or (at your option) any later version.;#;# To help us fund GROMACS development, we humbly ask that you cite;# the research papers on the package. Check out http://www.gromacs.org;# ;# And Hey:;# Gnomes, ROck Monsters And Chili Sauce;#;# These files require GNU binutils 2.10 or later, since we;# use intel syntax for portability, or a recent version ;# of NASM that understands Extended 3DNow and SSE2 instructions.;# (NASM is normally only used with MS Visual C++).;# Since NASM and gnu as disagree on some definitions and use ;# completely different preprocessing options I have to introduce a;# trick: NASM uses ';' for comments, while gnu as uses '#' on x86.;# Gnu as treats ';' as a line break, i.e. ignores it. This is the;# reason why all comments need both symbols...;# The source is written for GNU as, with intel syntax. When you use;# NASM we redefine a couple of things. The false if-statement around ;# the following code is seen by GNU as, but NASM doesn't see it, so ;# the code inside is read by NASM but not gcc.; .if 0    # block below only read by NASM%define .section	section%define .long		dd%define .align		align%define .globl		global;# NASM only wants 'dword', not 'dword ptr'.%define ptr.equiv          .equiv                  2   %1 equ %2%endmacro; .endif                   # End of NASM-specific block; .intel_syntax noprefix   # Line only read by gnu as.globl nb_kernel310_x86_64_sse2.globl _nb_kernel310_x86_64_sse2nb_kernel310_x86_64_sse2:	_nb_kernel310_x86_64_sse2:	;#	Room for return address and rbp (16 bytes).equiv          nb310_fshift,           16.equiv          nb310_gid,              24.equiv          nb310_pos,              32.equiv          nb310_faction,          40.equiv          nb310_charge,           48.equiv          nb310_p_facel,          56.equiv          nb310_argkrf,           64.equiv          nb310_argcrf,           72.equiv          nb310_Vc,               80.equiv          nb310_type,             88.equiv          nb310_p_ntype,          96.equiv          nb310_vdwparam,         104.equiv          nb310_Vvdw,             112.equiv          nb310_p_tabscale,       120.equiv          nb310_VFtab,            128.equiv          nb310_invsqrta,         136.equiv          nb310_dvda,             144.equiv          nb310_p_gbtabscale,     152.equiv          nb310_GBtab,            160.equiv          nb310_p_nthreads,       168.equiv          nb310_count,            176.equiv          nb310_mtx,              184.equiv          nb310_outeriter,        192.equiv          nb310_inneriter,        200.equiv          nb310_work,             208	;# stack offsets for local variables  	;# bottom of stack is cache-aligned for sse2 use .equiv          nb310_ix,               0.equiv          nb310_iy,               16.equiv          nb310_iz,               32.equiv          nb310_iq,               48.equiv          nb310_dx,               64.equiv          nb310_dy,               80.equiv          nb310_dz,               96.equiv          nb310_two,              112.equiv          nb310_six,              128.equiv          nb310_twelve,           144.equiv          nb310_tsc,              160.equiv          nb310_qq,               176.equiv          nb310_c6,               192.equiv          nb310_c12,              208.equiv          nb310_eps,              224.equiv          nb310_vctot,            240.equiv          nb310_Vvdwtot,          256.equiv          nb310_fix,              272.equiv          nb310_fiy,              288.equiv          nb310_fiz,              304.equiv          nb310_half,             320.equiv          nb310_three,            336.equiv          nb310_nri,              352.equiv          nb310_iinr,             360.equiv          nb310_jindex,           368.equiv          nb310_jjnr,             376.equiv          nb310_shift,            384.equiv          nb310_shiftvec,         392.equiv          nb310_facel,            400.equiv          nb310_innerjjnr,        408.equiv          nb310_is3,              416.equiv          nb310_ii3,              420.equiv          nb310_ntia,             424.equiv          nb310_innerk,           428.equiv          nb310_n,                432.equiv          nb310_nn1,              436.equiv          nb310_ntype,            440.equiv          nb310_nouter,           444.equiv          nb310_ninner,           448	push rbp	mov  rbp, rsp	push rbx		emms        push r12        push r13        push r14        push r15	sub rsp, 472		;# local variable stack space (n*16+8)	;# zero 32-bit iteration counters	mov eax, 0	mov [rsp + nb310_nouter], eax	mov [rsp + nb310_ninner], eax	mov edi, [rdi]	mov [rsp + nb310_nri], edi	mov [rsp + nb310_iinr], rsi	mov [rsp + nb310_jindex], rdx	mov [rsp + nb310_jjnr], rcx	mov [rsp + nb310_shift], r8	mov [rsp + nb310_shiftvec], r9	mov rdi, [rbp + nb310_p_ntype]	mov edi, [rdi]	mov [rsp + nb310_ntype], edi	mov rsi, [rbp + nb310_p_facel]	movsd xmm0, [rsi]	movsd [rsp + nb310_facel], xmm0	mov rax, [rbp + nb310_p_tabscale]	movsd xmm3, [rax]	shufpd xmm3, xmm3, 0	movapd [rsp + nb310_tsc], xmm3	;# create constant floating-point factors on stack	mov eax, 0x00000000     ;# lower half of double half IEEE (hex)	mov ebx, 0x3fe00000	mov [rsp + nb310_half], eax	mov [rsp + nb310_half+4], ebx	movsd xmm1, [rsp + nb310_half]	shufpd xmm1, xmm1, 0    ;# splat to all elements	movapd xmm3, xmm1	addpd  xmm3, xmm3       ;# one	movapd xmm2, xmm3	addpd  xmm2, xmm2       ;# two	addpd  xmm3, xmm2	;# three	movapd xmm4, xmm3	addpd  xmm4, xmm4       ;# six	movapd xmm5, xmm4	addpd  xmm5, xmm5       ;# twelve	movapd [rsp + nb310_half], xmm1	movapd [rsp + nb310_two], xmm2	movapd [rsp + nb310_three], xmm3	movapd [rsp + nb310_six], xmm4	movapd [rsp + nb310_twelve], xmm5.nb310_threadloop:        mov   rsi, [rbp + nb310_count]          ;# pointer to sync counter        mov   eax, [rsi].nb310_spinlock:        mov   ebx, eax                          ;# ebx=*count=nn0        add   ebx, 1                           ;# ebx=nn1=nn0+10        lock        cmpxchg [esi], ebx                      ;# write nn1 to *counter,                                                ;# if it hasnt changed.                                                ;# or reread *counter to eax.        pause                                   ;# -> better p4 performance        jnz .nb310_spinlock        ;# if(nn1>nri) nn1=nri        mov ecx, [rsp + nb310_nri]        mov edx, ecx        sub ecx, ebx        cmovle ebx, edx                         ;# if(nn1>nri) nn1=nri        ;# Cleared the spinlock if we got here.        ;# eax contains nn0, ebx contains nn1.        mov [rsp + nb310_n], eax        mov [rsp + nb310_nn1], ebx        sub ebx, eax                            ;# calc number of outer lists	mov esi, eax				;# copy n to esi        jg  .nb310_outerstart        jmp .nb310_end.nb310_outerstart:	;# ebx contains number of outer iterations	add ebx, [rsp + nb310_nouter]	mov [rsp + nb310_nouter], ebx.nb310_outer:	mov   rax, [rsp + nb310_shift]      ;# rax = pointer into shift[] 	mov   ebx, [rax+rsi*4]		;# rbx=shift[n] 		lea   rbx, [rbx + rbx*2]    ;# rbx=3*is 	mov   [rsp + nb310_is3],ebx    	;# store is3 	mov   rax, [rsp + nb310_shiftvec]   ;# rax = base of shiftvec[] 	movsd xmm0, [rax + rbx*8]	movsd xmm1, [rax + rbx*8 + 8]	movsd xmm2, [rax + rbx*8 + 16] 	mov   rcx, [rsp + nb310_iinr]       ;# rcx = pointer into iinr[] 		mov   ebx, [rcx+rsi*4]	    ;# ebx =ii 	mov   rdx, [rbp + nb310_charge]	movsd xmm3, [rdx + rbx*8]		mulsd xmm3, [rsp + nb310_facel]	shufpd xmm3, xmm3, 0    	mov   rdx, [rbp + nb310_type]     	mov   edx, [rdx + rbx*4]    	imul  edx, [rsp + nb310_ntype]    	shl   edx, 1    	mov   [rsp + nb310_ntia], edx		lea   rbx, [rbx + rbx*2]	;# rbx = 3*ii=ii3 	mov   rax, [rbp + nb310_pos]    ;# rax = base of pos[]  	addsd xmm0, [rax + rbx*8]	addsd xmm1, [rax + rbx*8 + 8]	addsd xmm2, [rax + rbx*8 + 16]	movapd [rsp + nb310_iq], xmm3		shufpd xmm0, xmm0, 0	shufpd xmm1, xmm1, 0	shufpd xmm2, xmm2, 0	movapd [rsp + nb310_ix], xmm0	movapd [rsp + nb310_iy], xmm1	movapd [rsp + nb310_iz], xmm2	mov   [rsp + nb310_ii3], ebx		;# clear vctot and i forces 	xorpd xmm15, xmm15	movapd [rsp + nb310_vctot], xmm15	movapd [rsp + nb310_Vvdwtot], xmm15	movapd xmm14, xmm15	movapd xmm13, xmm15		mov   rax, [rsp + nb310_jindex]	mov   ecx, [rax + rsi*4]	     ;# jindex[n] 	mov   edx, [rax + rsi*4 + 4]	     ;# jindex[n+1] 	sub   edx, ecx               ;# number of innerloop atoms 	mov   rsi, [rbp + nb310_pos]	mov   rdi, [rbp + nb310_faction]		mov   rax, [rsp + nb310_jjnr]	shl   ecx, 2	add   rax, rcx	mov   [rsp + nb310_innerjjnr], rax     ;# pointer to jjnr[nj0] 	mov   ecx, edx	sub   edx,  2	add   ecx, [rsp + nb310_ninner]	mov   [rsp + nb310_ninner], ecx	add   edx, 0	mov   [rsp + nb310_innerk], edx    ;# number of innerloop atoms 	jge   .nb310_unroll_loop	jmp   .nb310_checksingle.nb310_unroll_loop:		;# twice unrolled innerloop here 	mov   rdx, [rsp + nb310_innerjjnr]     ;# pointer to jjnr[k] 	mov   r10d, [rdx]		mov   r11d, [rdx + 4]              	add qword ptr [rsp + nb310_innerjjnr],  8 ;# advance pointer (unrolled 2) 	mov rsi, [rbp + nb310_pos]       ;# base of pos[] 	lea   rax, [r10 + r10*2]     ;# replace jnr with j3 	lea   rbx, [r11 + r11*2]		;# move two coordinates to xmm4-xmm6 		movlpd xmm4, [rsi + rax*8]	movlpd xmm5, [rsi + rax*8 + 8]	movlpd xmm6, [rsi + rax*8 + 16]	movhpd xmm4, [rsi + rbx*8]	movhpd xmm5, [rsi + rbx*8 + 8]	movhpd xmm6, [rsi + rbx*8 + 16]				;# calc dr 	subpd xmm4, [rsp + nb310_ix]	subpd xmm5, [rsp + nb310_iy]	subpd xmm6, [rsp + nb310_iz]	;# store dr 	movapd xmm9, xmm4	movapd xmm10, xmm5	movapd xmm11, xmm6	mov rsi, [rbp + nb310_charge]    ;# base of charge[] 	;# square it 	mulpd xmm4,xmm4	mulpd xmm5,xmm5	mulpd xmm6,xmm6	addpd xmm4, xmm5	addpd xmm4, xmm6	movlpd xmm3, [rsi + r10*8]	cvtpd2ps xmm5, xmm4		rsqrtps xmm5, xmm5	cvtps2pd xmm2, xmm5	;# lu in low xmm2 	movhpd xmm3, [rsi + r11*8]	;# lookup seed in xmm2 	movapd xmm5, xmm2	;# copy of lu 	mulpd xmm2, xmm2	;# lu*lu 	movapd xmm1, [rsp + nb310_three]	mulpd xmm2, xmm4	;# rsq*lu*lu 				movapd xmm0, [rsp + nb310_half]	subpd xmm1, xmm2	;# 30-rsq*lu*lu 	mulpd xmm1, xmm5		mulpd xmm1, xmm0	;# xmm0=iter1 of rinv (new lu) 	mulpd  xmm3, [rsp + nb310_iq]	movapd [rsp + nb310_qq], xmm3	    	mov rsi, [rbp + nb310_type]	movapd xmm5, xmm1	;# copy of lu 	mulpd xmm1, xmm1	;# lu*lu 	movapd xmm2, [rsp + nb310_three]	mulpd xmm1, xmm4	;# rsq*lu*lu 				movapd xmm0, [rsp + nb310_half]	subpd xmm2, xmm1	;# 30-rsq*lu*lu 	mulpd xmm2, xmm5		mulpd xmm0, xmm2	;# xmm0=rinv     movapd xmm1, xmm0   ;# xmm1=rinv    	mov r12d, [rsi + r10*4]	mov r13d, [rsi + r11*4]	mulpd xmm4, xmm0	;# xmm4=r 	mulpd xmm4, [rsp + nb310_tsc]	cvttpd2pi mm6, xmm4	;# mm6 = lu idx 	cvtpi2pd xmm5, mm6	subpd xmm4, xmm5	movapd [rsp + nb310_eps], xmm4		shl r12d, 1	shl r13d, 1		pslld mm6, 2		;# idx *= 4 	mov  rsi, [rbp + nb310_VFtab]	movd r8d, mm6	psrlq mm6, 32	movd r9d, mm6			mov edi, [rsp + nb310_ntia]	add r12d, edi	add r13d, edi	mov rdi, [rbp + nb310_vdwparam]	movapd xmm4, [rsi + r8*8]	;# Y1 F1 		movapd xmm8, [rsi + r9*8]	;# Y2 F2 	movapd xmm5, xmm4	unpcklpd xmm4, xmm8	;# Y1 Y2 	unpckhpd xmm5, xmm8	;# F1 F2 	movlpd xmm3, [rdi + r12*8]		movlpd xmm7, [rdi + r12*8 + 8]    movapd xmm0, xmm1 ;# rinv    mulpd  xmm0, xmm0 ;# rinvsq    movapd xmm2, xmm0 ;# rinvsq    mulpd  xmm2, xmm2 ;# rinv4    mulpd  xmm2, xmm0 ;# rinv6    movapd xmm12, xmm2     mulpd  xmm12, xmm12 ;# rinv12    	movhpd xmm3, [rdi + r13*8]		movhpd xmm7, [rdi + r13*8 + 8]	movapd xmm6, [rsi + r8*8 + 16]	;# G1 H1 		movapd xmm8, [rsi + r9*8 + 16]	;# G2 H2     mulpd  xmm2, xmm3    ;# vvdw6=c6*rinv6	mulpd  xmm12, xmm7   ;# vvdw12=c12*rinv12     	movapd xmm0, xmm12	subpd  xmm12, xmm2	;# Vvdw=Vvdw12-Vvdw6    ;# add potential to vvdwtot 	addpd  xmm12, [rsp + nb310_Vvdwtot]    movapd [rsp + nb310_Vvdwtot], xmm12    	movapd xmm7, xmm6	unpcklpd xmm6, xmm8	;# G1 G2 	unpckhpd xmm7, xmm8	;# H1 H2 	;# coulomb table ready, in xmm4-xmm7  		       	movapd xmm3, [rsp + nb310_eps]	    mulpd xmm7, xmm3   ;# Heps    mulpd  xmm6, xmm3  ;# Geps    mulpd xmm7, xmm3   ;# Heps2    addpd  xmm5, xmm6   ;# F+Geps    addpd  xmm5, xmm7   ;# F+Geps+Heps2 = Fp    addpd  xmm7, xmm7   ;# 2*Heps2    addpd  xmm7, xmm6   ;# 2*Heps2+Geps    addpd  xmm7, xmm5   ;# FF = Fp + 2*Heps2 + Geps    mulpd  xmm5, xmm3   ;# eps*Fp    addpd  xmm5, xmm4   ;# VV    mulpd  xmm5, [rsp + nb310_qq]   ;# VV*qq=vcoul    mulpd  xmm7, [rsp + nb310_qq]   ;# FF*qq=fijC	;# the fj's - start by accumulating forces from memory     mov rdi, [rbp + nb310_faction]	movlpd xmm3, [rdi + rax*8]	movlpd xmm4, [rdi + rax*8 + 8]	movlpd xmm6, [rdi + rax*8 + 16]	movhpd xmm3, [rdi + rbx*8]	movhpd xmm4, [rdi + rbx*8 + 8]	movhpd xmm6, [rdi + rbx*8 + 16]    ;# LJ forces    mulpd  xmm2, [rsp + nb310_six]    mulpd  xmm0, [rsp + nb310_twelve]    subpd  xmm0, xmm2    mulpd  xmm0, xmm1 ;# (12*vnb12-6*vnb6)*rinv    ;# add potential to vctot 	addpd  xmm5, [rsp + nb310_vctot]

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