nb_kernel130_ia32_sse2.intel_syntax.s

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	movapd xmm5, [esp + nb130_fiz]	addpd  xmm3, xmm0	addpd  xmm4, xmm1	addpd  xmm5, xmm2	movapd [esp + nb130_fix], xmm3	movapd [esp + nb130_fiy], xmm4	movapd [esp + nb130_fiz], xmm5	;# the fj's - start by accumulating forces from memory 	movlpd xmm3, [edi + eax*8]	movlpd xmm4, [edi + eax*8 + 8]	movlpd xmm5, [edi + eax*8 + 16]	movhpd xmm3, [edi + ebx*8]	movhpd xmm4, [edi + ebx*8 + 8]	movhpd xmm5, [edi + ebx*8 + 16]	subpd xmm3, xmm0	subpd xmm4, xmm1	subpd xmm5, xmm2	movlpd [edi + eax*8], xmm3	movlpd [edi + eax*8 + 8], xmm4	movlpd [edi + eax*8 + 16], xmm5	movhpd [edi + ebx*8], xmm3	movhpd [edi + ebx*8 + 8], xmm4	movhpd [edi + ebx*8 + 16], xmm5		;# should we do one more iteration? 	sub dword ptr [esp + nb130_innerk],  2	jl    .nb130_checksingle	jmp   .nb130_unroll_loop.nb130_checksingle:					mov   edx, [esp + nb130_innerk]	and   edx, 1	jnz    .nb130_dosingle	jmp    .nb130_updateouterdata.nb130_dosingle:				mov esi, [ebp + nb130_charge]	mov edi, [ebp + nb130_pos]	mov   ecx, [esp + nb130_innerjjnr]	xorpd xmm3, xmm3	mov   eax, [ecx]	movlpd xmm3, [esi + eax*8]	movapd xmm5, [esp + nb130_iq]	mulpd xmm3, xmm5		;# qq 		movd  mm0, eax		;# use mmx registers as temp storage 	mov esi, [ebp + nb130_type]	mov eax, [esi + eax*4]	mov esi, [ebp + nb130_vdwparam]	shl eax, 1	mov edi, [esp + nb130_ntia]	add eax, edi	movlpd xmm6, [esi + eax*8]	;# c6a	movhpd xmm6, [esi + eax*8 + 8]	;# c6a c12a 	xorpd xmm7, xmm7	movapd xmm4, xmm6	unpcklpd xmm4, xmm7	unpckhpd xmm6, xmm7		movd  eax, mm0			movapd [esp + nb130_c6], xmm4	movapd [esp + nb130_c12], xmm6		mov esi, [ebp + nb130_pos]       ;# base of pos[] 	lea eax, [eax + eax*2]     ;# replace jnr with j3 	;# move two coordinates to xmm0-xmm2 		movlpd xmm0, [esi + eax*8]	movlpd xmm1, [esi + eax*8 + 8]	movlpd xmm2, [esi + eax*8 + 16]		;# move ix-iz to xmm4-xmm6 	movapd xmm4, [esp + nb130_ix]	movapd xmm5, [esp + nb130_iy]	movapd xmm6, [esp + nb130_iz]	;# calc dr 	subsd xmm4, xmm0	subsd xmm5, xmm1	subsd xmm6, xmm2	;# store dr 	movapd [esp + nb130_dx], xmm4	movapd [esp + nb130_dy], xmm5	movapd [esp + nb130_dz], xmm6	;# square it 	mulsd xmm4,xmm4	mulsd xmm5,xmm5	mulsd xmm6,xmm6	addsd xmm4, xmm5	addsd xmm4, xmm6	;# rsq in xmm4 	cvtsd2ss xmm5, xmm4		rsqrtss xmm5, xmm5	cvtss2sd xmm2, xmm5	;# lu in low xmm2 	;# lookup seed in xmm2 	movapd xmm5, xmm2	;# copy of lu 	mulsd xmm2, xmm2	;# lu*lu 	movapd xmm1, [esp + nb130_three]	mulsd xmm2, xmm4	;# rsq*lu*lu 				movapd xmm0, [esp + nb130_half]	subsd xmm1, xmm2	;# 30-rsq*lu*lu 	mulsd xmm1, xmm5		mulsd xmm1, xmm0	;# xmm0=iter1 of rinv (new lu) 	movapd xmm5, xmm1	;# copy of lu 	mulsd xmm1, xmm1	;# lu*lu 	movapd xmm2, [esp + nb130_three]	mulsd xmm1, xmm4	;# rsq*lu*lu 				movapd xmm0, [esp + nb130_half]	subsd xmm2, xmm1	;# 30-rsq*lu*lu 	mulsd xmm2, xmm5		mulsd xmm0, xmm2	;# xmm0=rinv 	movapd xmm6, xmm0	movapd xmm1, xmm4	mulsd  xmm6, xmm3	;# xmm6=vcoul=qq*rinv	movapd xmm1, xmm0	movapd xmm3, xmm6	mulsd  xmm3, xmm0	movsd [esp + nb130_fstmp], xmm3		addsd  xmm6, [esp + nb130_vctot]	movsd [esp + nb130_vctot], xmm6	;# LJ table interaction. xmm0=rinv, cmm4=rsq		mulsd xmm4, xmm0	;# xmm4=r 	mulsd xmm4, [esp + nb130_tsc]		cvttsd2si ebx, xmm4	;# mm6 = lu idx 	cvtsi2sd xmm5, ebx	subsd xmm4, xmm5	movsd xmm1, xmm4	;# xmm1=eps 	movsd xmm2, xmm1		mulsd  xmm2, xmm2	;# xmm2=eps2 	shl   ebx, 3	mov  esi, [ebp + nb130_VFtab]	;# dispersion 	movlpd xmm4, [esi + ebx*8]	;# Y1 		movhpd xmm4, [esi + ebx*8 + 8]	;# Y1 F1 		movapd xmm5, xmm4	unpcklpd xmm4, xmm3	;# Y1 Y2 	unpckhpd xmm5, xmm3	;# F1 F2 	movlpd xmm6, [esi + ebx*8 + 16]	;# G1	movhpd xmm6, [esi + ebx*8 + 24]	;# G1 H1 		movapd xmm7, xmm6	unpcklpd xmm6, xmm3	;# G1 G2 	unpckhpd xmm7, xmm3	;# H1 H2 	;# dispersion table ready, in xmm4-xmm7 		mulsd  xmm6, xmm1	;# xmm6=Geps 	mulsd  xmm7, xmm2	;# xmm7=Heps2 	addsd  xmm5, xmm6	addsd  xmm5, xmm7	;# xmm5=Fp 		mulsd  xmm7, [esp + nb130_two]	;# two*Heps2 	addsd  xmm7, xmm6	addsd  xmm7, xmm5 ;# xmm7=FF 	mulsd  xmm5, xmm1 ;# xmm5=eps*Fp 	addsd  xmm5, xmm4 ;# xmm5=VV 	movsd xmm4, [esp + nb130_c6]	mulsd  xmm7, xmm4	 ;# fijD 	mulsd  xmm5, xmm4	 ;# Vvdw6 	;# put scalar force on stack Update Vvdwtot directly 	addsd  xmm5, [esp + nb130_Vvdwtot]	movsd xmm3, [esp + nb130_fstmp]	mulsd  xmm7, [esp + nb130_tsc]	subsd  xmm3, xmm7	movsd [esp + nb130_fstmp], xmm3	movsd [esp + nb130_Vvdwtot], xmm5	;# repulsion 	movlpd xmm4, [esi + ebx*8 + 32]	;# Y1 		movhpd xmm4, [esi + ebx*8 + 40]	;# Y1 F1 		movapd xmm5, xmm4	unpcklpd xmm4, xmm3	;# Y1 Y2 	unpckhpd xmm5, xmm3	;# F1 F2 	movlpd xmm6, [esi + ebx*8 + 48]	;# G1	movhpd xmm6, [esi + ebx*8 + 56]	;# G1 H1 		movapd xmm7, xmm6	unpcklpd xmm6, xmm3	;# G1 G2 	unpckhpd xmm7, xmm3	;# H1 H2 		;# table ready, in xmm4-xmm7 		mulsd  xmm6, xmm1	;# xmm6=Geps 	mulsd  xmm7, xmm2	;# xmm7=Heps2 	addsd  xmm5, xmm6	addsd  xmm5, xmm7	;# xmm5=Fp 		mulsd  xmm7, [esp + nb130_two]	;# two*Heps2 	addsd  xmm7, xmm6	addsd  xmm7, xmm5 ;# xmm7=FF 	mulsd  xmm5, xmm1 ;# xmm5=eps*Fp 	addsd  xmm5, xmm4 ;# xmm5=VV 		movsd xmm4, [esp + nb130_c12]	mulsd  xmm7, xmm4 	mulsd  xmm5, xmm4  		addsd  xmm5, [esp + nb130_Vvdwtot]	movsd xmm3, [esp + nb130_fstmp]	mulsd  xmm7, [esp + nb130_tsc]	subsd  xmm3, xmm7	movsd [esp + nb130_Vvdwtot], xmm5	mulsd  xmm3, xmm0			movsd xmm0, [esp + nb130_dx]	movsd xmm1, [esp + nb130_dy]	movsd xmm2, [esp + nb130_dz]	mov    edi, [ebp + nb130_faction]	mulsd  xmm0, xmm3	mulsd  xmm1, xmm3	mulsd  xmm2, xmm3	;# xmm0-xmm2 contains tx-tz (partial force) 	;# now update f_i 	movlpd xmm3, [esp + nb130_fix]	movlpd xmm4, [esp + nb130_fiy]	movlpd xmm5, [esp + nb130_fiz]	addsd  xmm3, xmm0	addsd  xmm4, xmm1	addsd  xmm5, xmm2	movlpd [esp + nb130_fix], xmm3	movlpd [esp + nb130_fiy], xmm4	movlpd [esp + nb130_fiz], xmm5	;# the fj's - start by accumulating forces from memory 	movlpd xmm3, [edi + eax*8]	movlpd xmm4, [edi + eax*8 + 8]	movlpd xmm5, [edi + eax*8 + 16]	subsd xmm3, xmm0	subsd xmm4, xmm1	subsd xmm5, xmm2	movlpd [edi + eax*8], xmm3	movlpd [edi + eax*8 + 8], xmm4	movlpd [edi + eax*8 + 16], xmm5	.nb130_updateouterdata:	mov   ecx, [esp + nb130_ii3]	mov   edi, [ebp + nb130_faction]	mov   esi, [ebp + nb130_fshift]	mov   edx, [esp + nb130_is3]	;# accumulate i forces in xmm0, xmm1, xmm2 	movapd xmm0, [esp + nb130_fix]	movapd xmm1, [esp + nb130_fiy]	movapd xmm2, [esp + nb130_fiz]	movhlps xmm3, xmm0	movhlps xmm4, xmm1	movhlps xmm5, xmm2	addpd  xmm0, xmm3	addpd  xmm1, xmm4	addpd  xmm2, xmm5 ;# sum is in low xmm0-xmm2 	;# increment i force 	movsd  xmm3, [edi + ecx*8]	movsd  xmm4, [edi + ecx*8 + 8]	movsd  xmm5, [edi + ecx*8 + 16]	addsd  xmm3, xmm0	addsd  xmm4, xmm1	addsd  xmm5, xmm2	movsd  [edi + ecx*8],     xmm3	movsd  [edi + ecx*8 + 8], xmm4	movsd  [edi + ecx*8 + 16], xmm5	;# increment fshift force  	movsd  xmm3, [esi + edx*8]	movsd  xmm4, [esi + edx*8 + 8]	movsd  xmm5, [esi + edx*8 + 16]	addsd  xmm3, xmm0	addsd  xmm4, xmm1	addsd  xmm5, xmm2	movsd  [esi + edx*8],     xmm3	movsd  [esi + edx*8 + 8], xmm4	movsd  [esi + edx*8 + 16], xmm5	;# get n from stack	mov esi, [esp + nb130_n]        ;# get group index for i particle         mov   edx, [ebp + nb130_gid]      	;# base of gid[]        mov   edx, [edx + esi*4]		;# ggid=gid[n]	;# accumulate total potential energy and update it 	movapd xmm7, [esp + nb130_vctot]	;# accumulate 	movhlps xmm6, xmm7	addsd  xmm7, xmm6	;# low xmm7 has the sum now 	;# add earlier value from mem 	mov   eax, [ebp + nb130_Vc]	addsd xmm7, [eax + edx*8] 	;# move back to mem 	movsd [eax + edx*8], xmm7 		;# accumulate total lj energy and update it 	movapd xmm7, [esp + nb130_Vvdwtot]	;# accumulate 	movhlps xmm6, xmm7	addsd  xmm7, xmm6	;# low xmm7 has the sum now 	;# add earlier value from mem 	mov   eax, [ebp + nb130_Vvdw]	addsd xmm7, [eax + edx*8] 	;# move back to mem 	movsd [eax + edx*8], xmm7 	        ;# finish if last         mov ecx, [esp + nb130_nn1]	;# esi already loaded with n	inc esi        sub ecx, esi        jz .nb130_outerend        ;# not last, iterate outer loop once more!          mov [esp + nb130_n], esi        jmp .nb130_outer.nb130_outerend:        ;# check if more outer neighborlists remain        mov   ecx, [esp + nb130_nri]	;# esi already loaded with n above        sub   ecx, esi        jz .nb130_end        ;# non-zero, do one more workunit        jmp   .nb130_threadloop.nb130_end:	emms	mov eax, [esp + nb130_nouter]	mov ebx, [esp + nb130_ninner]	mov ecx, [ebp + nb130_outeriter]	mov edx, [ebp + nb130_inneriter]	mov [ecx], eax	mov [edx], ebx	mov eax, [esp + nb130_salign]	add esp, eax	add esp,  392	pop edi	pop esi    	pop edx    	pop ecx    	pop ebx    	pop eax	leave	ret.globl nb_kernel130nf_ia32_sse2.globl _nb_kernel130nf_ia32_sse2nb_kernel130nf_ia32_sse2:	_nb_kernel130nf_ia32_sse2:	.equiv          nb130nf_p_nri,            8.equiv          nb130nf_iinr,             12.equiv          nb130nf_jindex,           16.equiv          nb130nf_jjnr,             20.equiv          nb130nf_shift,            24.equiv          nb130nf_shiftvec,         28.equiv          nb130nf_fshift,           32.equiv          nb130nf_gid,              36.equiv          nb130nf_pos,              40.equiv          nb130nf_faction,          44.equiv          nb130nf_charge,           48.equiv          nb130nf_p_facel,          52.equiv          nb130nf_argkrf,           56.equiv          nb130nf_argcrf,           60.equiv          nb130nf_Vc,               64.equiv          nb130nf_type,             68.equiv          nb130nf_p_ntype,          72.equiv          nb130nf_vdwparam,         76.equiv          nb130nf_Vvdw,             80.equiv          nb130nf_p_tabscale,       84.equiv          nb130nf_VFtab,            88.equiv          nb130nf_invsqrta,         92.equiv          nb130nf_dvda,             96.equiv          nb130nf_p_gbtabscale,     100.equiv          nb130nf_GBtab,            104.equiv          nb130nf_p_nthreads,       108.equiv          nb130nf_count,            112.equiv          nb130nf_mtx,              116.equiv          nb130nf_outeriter,        120.equiv          nb130nf_inneriter,        124.equiv          nb130nf_work,             128	;# stack offsets for local variables  	;# bottom of stack is cache-aligned for sse2 use .equiv          nb130nf_ix,               0.equiv          nb130nf_iy,               16.equiv          nb130nf_iz,               32.equiv          nb130nf_iq,               48.equiv          nb130nf_dx,               64.equiv          nb130nf_dy,               80.equiv          nb130nf_dz,               96.equiv          nb130nf_c6,               112.equiv          nb130nf_c12,              128.equiv          nb130nf_tsc,              144.equiv          nb130nf_vctot,            176.equiv          nb130nf_Vvdwtot,          192.equiv          nb130nf_half,             256.equiv          nb130nf_three,            272.equiv          nb130nf_is3,              336.equiv          nb130nf_ii3,              340.equiv          nb130nf_ntia,             344.equiv          nb130nf_innerjjnr,        348.equiv          nb130nf_innerk,           352.equiv          nb130nf_n,                356.equiv          nb130nf_nn1,              360.equiv          nb130nf_nri,              364.equiv          nb130nf_facel,            368   ;# uses 8 bytes.equiv          nb130nf_ntype,            376.equiv          nb130nf_nouter,           380.equiv          nb130nf_ninner,           384.equiv          nb130nf_salign,           388	push ebp	mov ebp,esp	    	push eax    	push ebx    	push ecx    	push edx	push esi	push edi	sub esp,  392		;# local stack space 	mov  eax, esp	and  eax, 0xf	sub esp, eax	mov [esp + nb130nf_salign], eax	emms	;# Move args passed by reference to stack	mov ecx, [ebp + nb130nf_p_nri]	mov esi, [ebp + nb130nf_p_facel]	mov edi, [ebp + nb130nf_p_ntype]	mov ecx, [ecx]	movsd xmm7, [esi]	mov edi, [edi]	mov [esp + nb130nf_nri], ecx	movsd [esp + nb130nf_facel], xmm7	mov [esp + nb130nf_ntype], edi	;# zero iteration counters	mov eax, 0	mov [esp + nb130nf_nouter], eax	mov [esp + nb130nf_ninner], eax	mov eax, [ebp + nb130nf_p_tabscale]	movsd xmm3, [eax]	shufpd xmm3, xmm3, 0	movapd [esp + nb130nf_tsc], xmm3	;# create constant floating-point factors on stack	mov eax, 0x00000000     ;# lower half of double 0.5 IEEE (hex)	mov ebx, 0x3fe00000	mov [esp + nb130nf_half], eax	mov [esp + nb130nf_half+4], ebx	movsd xmm1, [esp + nb130nf_half]	shufpd xmm1, xmm1, 0    ;# splat to all elements	movapd xmm3, xmm1	addpd  xmm3, xmm3       ;# 1.0	movapd xmm2, xmm3	addpd  xmm2, xmm2       ;# 2.0	addpd  xmm3, xmm2	;# 3.0	movapd [esp + nb130nf_half], xmm1	movapd [esp + nb130nf_three], xmm3.nb130nf_threadloop:        mov   esi, [ebp + nb130nf_count]          ;# pointer to sync counter        mov   eax, [esi].nb130nf_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 .nb130nf_spinlock        ;# if(nn1>nri) nn1=nri        mov ecx, [esp + nb130nf_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 [esp + nb130nf_n], eax        mov [esp + nb130nf_nn1], ebx        sub ebx, eax                            ;# calc number of outer lists	mov esi, eax				;# copy n to esi        jg  .nb130nf_outerstart        jmp .nb130nf_end

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