nb_kernel100_ia32_sse.intel_syntax.s

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	mov ecx, [ebp + nb100nf_p_nri]	mov esi, [ebp + nb100nf_p_facel]	mov ecx, [ecx]	mov esi, [esi]	mov [esp + nb100nf_nri], ecx	mov [esp + nb100nf_facel], esi	;# zero iteration counters	mov eax, 0	mov [esp + nb100nf_nouter], eax	mov [esp + nb100nf_ninner], eax	;# create constant floating-point factors on stack	mov eax, 0x3f000000     ;# half in IEEE (hex)	mov [esp + nb100nf_half], eax	movss xmm1, [esp + nb100nf_half]	shufps xmm1, xmm1, 0    ;# splat to all elements	movaps xmm2, xmm1       	addps  xmm2, xmm2	;# one	movaps xmm3, xmm2	addps  xmm2, xmm2	;# two	addps  xmm3, xmm2	;# three	movaps [esp + nb100nf_half],  xmm1	movaps [esp + nb100nf_three],  xmm3.nb100nf_threadloop:        mov   esi, [ebp + nb100nf_count]          ;# pointer to sync counter        mov   eax, [esi].nb100nf_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 .nb100nf_spinlock        ;# if(nn1>nri) nn1=nri        mov ecx, [esp + nb100nf_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 + nb100nf_n], eax        mov [esp + nb100nf_nn1], ebx        sub ebx, eax                            ;# calc number of outer lists	mov esi, eax				;# copy n to esi        jg  .nb100nf_outerstart        jmp .nb100nf_end.nb100nf_outerstart:	;# ebx contains number of outer iterations	add ebx, [esp + nb100nf_nouter]	mov [esp + nb100nf_nouter], ebx.nb100nf_outer:	mov   eax, [ebp + nb100nf_shift]      	;# eax = pointer into shift[] 	mov   ebx, [eax+esi*4]			;# ebx=shift[n] 		lea   ebx, [ebx + ebx*2]    ;# ebx=3*is 	mov   [esp + nb100nf_is3],ebx    	;# store is3 	mov   eax, [ebp + nb100nf_shiftvec]   	;# eax = base of shiftvec[] 	movss xmm0, [eax + ebx*4]	movss xmm1, [eax + ebx*4 + 4]	movss xmm2, [eax + ebx*4 + 8] 	mov   ecx, [ebp + nb100nf_iinr]       	;# ecx = pointer into iinr[] 		mov   ebx, [ecx+esi*4]	    		;# ebx =ii 	mov   edx, [ebp + nb100nf_charge]	movss xmm3, [edx + ebx*4]		mulss xmm3, [esp + nb100nf_facel]	shufps xmm3, xmm3, 0		lea   ebx, [ebx + ebx*2]	;# ebx = 3*ii=ii3 	mov   eax, [ebp + nb100nf_pos]    ;# eax = base of pos[]  	addss xmm0, [eax + ebx*4]	addss xmm1, [eax + ebx*4 + 4]	addss xmm2, [eax + ebx*4 + 8]	movaps [esp + nb100nf_iq], xmm3		shufps xmm0, xmm0, 0	shufps xmm1, xmm1, 0	shufps xmm2, xmm2, 0	movaps [esp + nb100nf_ix], xmm0	movaps [esp + nb100nf_iy], xmm1	movaps [esp + nb100nf_iz], xmm2	mov   [esp + nb100nf_ii3], ebx		;# clear vctot and i forces 	xorps xmm4, xmm4	movaps [esp + nb100nf_vctot], xmm4	mov   eax, [ebp + nb100nf_jindex]	mov   ecx, [eax + esi*4]	     ;# jindex[n] 	mov   edx, [eax + esi*4 + 4]	     ;# jindex[n+1] 	sub   edx, ecx               ;# number of innerloop atoms 	mov   esi, [ebp + nb100nf_pos]	mov   eax, [ebp + nb100nf_jjnr]	shl   ecx, 2	add   eax, ecx	mov   [esp + nb100nf_innerjjnr], eax     ;# pointer to jjnr[nj0] 	mov   ecx, edx	sub   edx,  4	add   ecx, [esp + nb100nf_ninner]	mov   [esp + nb100nf_ninner], ecx	add   edx, 0	mov   [esp + nb100nf_innerk], edx    ;# number of innerloop atoms 	jge   .nb100nf_unroll_loop	jmp   .nb100nf_finish_inner.nb100nf_unroll_loop:		;# quad-unrolled innerloop here 	mov   edx, [esp + nb100nf_innerjjnr]     ;# pointer to jjnr[k] 	mov   eax, [edx]		mov   ebx, [edx + 4]              	mov   ecx, [edx + 8]            	mov   edx, [edx + 12]         ;# eax-edx=jnr1-4 	add dword ptr [esp + nb100nf_innerjjnr],  16 ;# advance pointer (unrolled 4) 	mov esi, [ebp + nb100nf_charge]    ;# base of charge[] 		movss xmm3, [esi + eax*4]	movss xmm4, [esi + ecx*4]	movss xmm6, [esi + ebx*4]	movss xmm7, [esi + edx*4]	movaps xmm5, [esp + nb100nf_iq]	shufps xmm3, xmm6, 0 	shufps xmm4, xmm7, 0	shufps xmm3, xmm4, 136  ;# constant 10001000	      	mov esi, [ebp + nb100nf_pos]       ;# base of pos[] 	lea   eax, [eax + eax*2]     ;# replace jnr with j3 	lea   ebx, [ebx + ebx*2]		mulps xmm3, xmm5	lea   ecx, [ecx + ecx*2]     ;# replace jnr with j3 	lea   edx, [edx + edx*2]		;# move four coordinates to xmm0-xmm2 		movlps xmm4, [esi + eax*4]	;# x1 y1 - - 	movlps xmm5, [esi + ecx*4]	;# x3 y3 - - 	movss xmm2, [esi + eax*4 + 8]	;# z1 -  - - 	movss xmm6, [esi + ecx*4 + 8]   ;# z3 -  - - 	movhps xmm4, [esi + ebx*4]	;# x1 y1 x2 y2 	movhps xmm5, [esi + edx*4]	;# x3 y3 x4 y4 	movss xmm0, [esi + ebx*4 + 8]	;# z2 - - - 	movss xmm1, [esi + edx*4 + 8]	;# z4 - - - 	shufps xmm2, xmm0, 0		;# z1 z1 z2 z2 	shufps xmm6, xmm1, 0		;# z3 z3 z4 z4 		movaps xmm0, xmm4		;# x1 y1 x2 y2 		movaps xmm1, xmm4		;# x1 y1 x2 y2 	shufps xmm2, xmm6, 136  ;# constant 10001000	;# z1 z2 z3 z4 		shufps xmm0, xmm5, 136  ;# constant 10001000	;# x1 x2 x3 x4 	shufps xmm1, xmm5, 221  ;# constant 11011101	;# y1 y2 y3 y4 			;# move nb100nf_ix-iz to xmm4-xmm6 	movaps xmm4, [esp + nb100nf_ix]	movaps xmm5, [esp + nb100nf_iy]	movaps xmm6, [esp + nb100nf_iz]	;# calc dr 	subps xmm4, xmm0	subps xmm5, xmm1	subps xmm6, xmm2	;# square it 	mulps xmm4,xmm4	mulps xmm5,xmm5	mulps xmm6,xmm6	addps xmm4, xmm5	addps xmm4, xmm6	;# rsq in xmm4 	rsqrtps xmm5, xmm4	;# lookup seed in xmm5 	movaps xmm2, xmm5	mulps xmm5, xmm5	movaps xmm1, [esp + nb100nf_three]	mulps xmm5, xmm4	;# rsq*lu*lu 				movaps xmm0, [esp + nb100nf_half]	subps xmm1, xmm5	;# constant 30-rsq*lu*lu 	mulps xmm1, xmm2		mulps xmm0, xmm1	;# xmm0=rinv 	movaps xmm5, [esp + nb100nf_vctot]	mulps  xmm3, xmm0	;# xmm3=vcoul 	addps  xmm5, xmm3	movaps [esp + nb100nf_vctot], xmm5	;# should we do one more iteration? 	sub dword ptr [esp + nb100nf_innerk],  4	jl    .nb100nf_finish_inner	jmp   .nb100nf_unroll_loop.nb100nf_finish_inner:	;# check if at least two particles remain 	add dword ptr [esp + nb100nf_innerk],  4	mov   edx, [esp + nb100nf_innerk]	and   edx, 2	jnz   .nb100nf_dopair	jmp   .nb100nf_checksingle.nb100nf_dopair:		mov esi, [ebp + nb100nf_charge]	mov edi, [ebp + nb100nf_pos]    	mov   ecx, [esp + nb100nf_innerjjnr]		mov   eax, [ecx]		mov   ebx, [ecx + 4]              	add dword ptr [esp + nb100nf_innerjjnr],  8	movss xmm3, [esi + eax*4]			movss xmm6, [esi + ebx*4]	shufps xmm3, xmm6, 0 	shufps xmm3, xmm3, 8 ;# constant 00001000 ;# xmm3(0,1) has the charges 	lea   eax, [eax + eax*2]	lea   ebx, [ebx + ebx*2]	;# move coordinates to xmm0-xmm2 	movlps xmm1, [edi + eax*4]	movss xmm2, [edi + eax*4 + 8]		movhps xmm1, [edi + ebx*4]	movss xmm0, [edi + ebx*4 + 8]		mulps  xmm3, [esp + nb100nf_iq]	xorps  xmm7,xmm7	movlhps xmm3, xmm7		shufps xmm2, xmm0, 0		movaps xmm0, xmm1	shufps xmm2, xmm2, 136  ;# constant 10001000		shufps xmm0, xmm0, 136  ;# constant 10001000	shufps xmm1, xmm1, 221  ;# constant 11011101				;# move nb100nf_ix-iz to xmm4-xmm6 	xorps   xmm7, xmm7		movaps xmm4, [esp + nb100nf_ix]	movaps xmm5, [esp + nb100nf_iy]	movaps xmm6, [esp + nb100nf_iz]	;# calc dr 	subps xmm4, xmm0	subps xmm5, xmm1	subps xmm6, xmm2	;# square it 	mulps xmm4,xmm4	mulps xmm5,xmm5	mulps xmm6,xmm6	addps xmm4, xmm5	addps xmm4, xmm6	;# rsq in xmm4 	rsqrtps xmm5, xmm4	;# lookup seed in xmm5 	movaps xmm2, xmm5	mulps xmm5, xmm5	movaps xmm1, [esp + nb100nf_three]	mulps xmm5, xmm4	;# rsq*lu*lu 				movaps xmm0, [esp + nb100nf_half]	subps xmm1, xmm5	;# constant 30-rsq*lu*lu 	mulps xmm1, xmm2		mulps xmm0, xmm1	;# xmm0=rinv 	movaps xmm4, xmm0	mulps  xmm4, xmm4	;# xmm4=rinvsq 	movaps xmm5, [esp + nb100nf_vctot]	mulps  xmm3, xmm0	;# xmm3=vcoul 	addps  xmm5, xmm3	movaps [esp + nb100nf_vctot], xmm5.nb100nf_checksingle:					mov   edx, [esp + nb100nf_innerk]	and   edx, 1	jnz    .nb100nf_dosingle	jmp    .nb100nf_updateouterdata.nb100nf_dosingle:				mov esi, [ebp + nb100nf_charge]	mov edi, [ebp + nb100nf_pos]	mov   ecx, [esp + nb100nf_innerjjnr]	mov   eax, [ecx]		movss xmm3, [esi + eax*4]	;# xmm3(0) has the charge 			lea   eax, [eax + eax*2]		;# move coordinates to xmm0-xmm2 	movss xmm0, [edi + eax*4]		movss xmm1, [edi + eax*4 + 4]		movss xmm2, [edi + eax*4 + 8]	 	mulps  xmm3, [esp + nb100nf_iq]		xorps   xmm7, xmm7		movaps xmm4, [esp + nb100nf_ix]	movaps xmm5, [esp + nb100nf_iy]	movaps xmm6, [esp + nb100nf_iz]	;# calc dr 	subps xmm4, xmm0	subps xmm5, xmm1	subps xmm6, xmm2	;# square it 	mulps xmm4,xmm4	mulps xmm5,xmm5	mulps xmm6,xmm6	addps xmm4, xmm5	addps xmm4, xmm6	;# rsq in xmm4 	rsqrtps xmm5, xmm4	;# lookup seed in xmm5 	movaps xmm2, xmm5	mulps xmm5, xmm5	movaps xmm1, [esp + nb100nf_three]	mulps xmm5, xmm4	;# rsq*lu*lu 				movaps xmm0, [esp + nb100nf_half]	subps xmm1, xmm5	;# constant 30-rsq*lu*lu 	mulps xmm1, xmm2		mulps xmm0, xmm1	;# xmm0=rinv 	movaps xmm4, xmm0	mulps  xmm4, xmm4	;# xmm4=rinvsq 	movaps xmm5, [esp + nb100nf_vctot]	mulps  xmm3, xmm0	;# xmm3=vcoul 	addss  xmm5, xmm3	movaps [esp + nb100nf_vctot], xmm5.nb100nf_updateouterdata:	;# get n from stack	mov esi, [esp + nb100nf_n]        ;# get group index for i particle         mov   edx, [ebp + nb100nf_gid]      	;# base of gid[]        mov   edx, [edx + esi*4]		;# ggid=gid[n]	;# accumulate total potential energy and update it 	movaps xmm7, [esp + nb100nf_vctot]	;# accumulate 	movhlps xmm6, xmm7	addps  xmm7, xmm6	;# pos 0-1 in xmm7 have the sum now 	movaps xmm6, xmm7	shufps xmm6, xmm6, 1	addss  xmm7, xmm6			;# add earlier value from mem 	mov   eax, [ebp + nb100nf_Vc]	addss xmm7, [eax + edx*4] 	;# move back to mem 	movss [eax + edx*4], xmm7 	        ;# finish if last         mov ecx, [esp + nb100nf_nn1]	;# esi already loaded with n	inc esi        sub ecx, esi        jecxz .nb100nf_outerend        ;# not last, iterate outer loop once more!          mov [esp + nb100nf_n], esi        jmp .nb100nf_outer.nb100nf_outerend:        ;# check if more outer neighborlists remain        mov   ecx, [esp + nb100nf_nri]	;# esi already loaded with n above        sub   ecx, esi        jecxz .nb100nf_end        ;# non-zero, do one more workunit        jmp   .nb100nf_threadloop.nb100nf_end:	emms	mov eax, [esp + nb100nf_nouter]	mov ebx, [esp + nb100nf_ninner]	mov ecx, [ebp + nb100nf_outeriter]	mov edx, [ebp + nb100nf_inneriter]	mov [ecx], eax	mov [edx], ebx	mov eax, [esp + nb100nf_salign]	add esp, eax	add esp, 156	pop edi	pop esi    	pop edx    	pop ecx    	pop ebx    	pop eax	leave	ret

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