nb_kernel303_x86_64_sse.intel_syntax.s

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	movhps xmm4, [rsi + rbx*4]	movhps xmm5, [rsi + rdx*4]	movss xmm0, [rsi + rbx*4 + 8]	movss xmm1, [rsi + rdx*4 + 8]	shufps xmm2, xmm0, 0	shufps xmm6, xmm1, 0		movaps xmm0, xmm4	movaps xmm1, xmm4	shufps xmm2, xmm6, 136  ;# 10001000		shufps xmm0, xmm5, 136  ;# 10001000	shufps xmm1, xmm5, 221  ;# 11011101			;# move ixH1-izH1 to xmm4-xmm6 	movaps xmm4, [rsp + nb303nf_ixH1]	movaps xmm5, [rsp + nb303nf_iyH1]	movaps xmm6, [rsp + nb303nf_izH1]	;# 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	movaps xmm7, xmm4	;# rsqH1 in xmm7 	;# move ixH2-izH2 to xmm4-xmm6 	movaps xmm4, [rsp + nb303nf_ixH2]	movaps xmm5, [rsp + nb303nf_iyH2]	movaps xmm6, [rsp + nb303nf_izH2]	;# calc dr 	subps xmm4, xmm0	subps xmm5, xmm1	subps xmm6, xmm2	;# square it 	mulps xmm4,xmm4	mulps xmm5,xmm5	mulps xmm6,xmm6	addps xmm6, xmm5	addps xmm6, xmm4	;# rsqH2 in xmm6 	;# move ixM-izM to xmm3-xmm5  	movaps xmm3, [rsp + nb303nf_ixM]	movaps xmm4, [rsp + nb303nf_iyM]	movaps xmm5, [rsp + nb303nf_izM]	;# calc dr 	subps xmm3, xmm0	subps xmm4, xmm1	subps xmm5, xmm2	;# square it 	mulps xmm3,xmm3	mulps xmm4,xmm4	mulps xmm5,xmm5	addps xmm5, xmm4	addps xmm5, xmm3	;# rsqM in xmm5, rsqH2 in xmm6, rsqH1 in xmm7 	;# start with rsqH1 - seed to xmm2 		rsqrtps xmm2, xmm7	movaps  xmm3, xmm2	mulps   xmm2, xmm2	movaps  xmm4, [rsp + nb303nf_three]	mulps   xmm2, xmm7	;# rsq*lu*lu 	subps   xmm4, xmm2	;# 30-rsq*lu*lu 	mulps   xmm4, xmm3	;# lu*(3-rsq*lu*lu) 	mulps   xmm4, [rsp + nb303nf_half]	movaps  [rsp + nb303nf_rinvH1], xmm4	;# rinvH1 in xmm4 	mulps   xmm7, xmm4	movaps  [rsp + nb303nf_rH1], xmm7		;# rsqH2 - seed in xmm2 	rsqrtps xmm2, xmm6	movaps  xmm3, xmm2	mulps   xmm2, xmm2	movaps  xmm4, [rsp + nb303nf_three]	mulps   xmm2, xmm6	;# rsq*lu*lu 	subps   xmm4, xmm2	;# 30-rsq*lu*lu 	mulps   xmm4, xmm3	;# lu*(3-rsq*lu*lu) 	mulps   xmm4, [rsp + nb303nf_half]	movaps  [rsp + nb303nf_rinvH2], xmm4	;# rinvH2 in xmm4 	mulps   xmm6, xmm4	movaps  [rsp + nb303nf_rH2], xmm6	;# rsqM - seed to xmm2 	rsqrtps xmm2, xmm5	movaps  xmm3, xmm2	mulps   xmm2, xmm2	movaps  xmm4, [rsp + nb303nf_three]	mulps   xmm2, xmm5	;# rsq*lu*lu 	subps   xmm4, xmm2	;# 30-rsq*lu*lu 	mulps   xmm4, xmm3	;# lu*(3-rsq*lu*lu) 	mulps   xmm4, [rsp + nb303nf_half]	movaps  [rsp + nb303nf_rinvM], xmm4	;# rinvM in xmm4 	mulps   xmm5, xmm4	movaps  [rsp + nb303nf_rM], xmm5	;# do H1 interactions 	;# rH1 is still in xmm7 	mulps   xmm7, [rsp + nb303nf_tsc]	movhlps xmm4, xmm7	cvttps2pi mm6, xmm7	cvttps2pi mm7, xmm4	;# mm6/mm7 contain lu indices 		cvtpi2ps xmm3, mm6	cvtpi2ps xmm4, mm7	movlhps xmm3, xmm4		subps xmm7, xmm3	movaps xmm1, xmm7	;# xmm1=eps 	movaps xmm2, xmm1	mulps  xmm2, xmm2	;# xmm2=eps2 	pslld mm6, 2	pslld mm7, 2		movd mm0, eax   	movd mm1, ebx	movd mm2, ecx	movd mm3, edx	mov  rsi, [rbp + nb303nf_VFtab]	movd eax, mm6	psrlq mm6, 32	movd ecx, mm7	psrlq mm7, 32	movd ebx, mm6	movd edx, mm7	movlps xmm5, [rsi + rax*4]	movlps xmm7, [rsi + rcx*4]	movhps xmm5, [rsi + rbx*4]	movhps xmm7, [rsi + rdx*4] ;# got half coulomb table 	movaps xmm4, xmm5	shufps xmm4, xmm7, 136  ;# 10001000	shufps xmm5, xmm7, 221  ;# 11011101	movlps xmm7, [rsi + rax*4 + 8]	movlps xmm3, [rsi + rcx*4 + 8]	movhps xmm7, [rsi + rbx*4 + 8]	movhps xmm3, [rsi + rdx*4 + 8] ;# other half of coulomb table  	movaps xmm6, xmm7	shufps xmm6, xmm3, 136  ;# 10001000	shufps xmm7, xmm3, 221  ;# 11011101	;# coulomb table ready, in xmm4-xmm7              	mulps  xmm6, xmm1   	;# xmm6=Geps 	mulps  xmm7, xmm2   	;# xmm7=Heps2 	addps  xmm5, xmm6	addps  xmm5, xmm7   	;# xmm5=Fp        	movaps xmm0, [rsp + nb303nf_qqH]	mulps  xmm5, xmm1 ;# xmm5=eps*Fp 	addps  xmm5, xmm4 ;# xmm5=VV 	mulps  xmm5, xmm0 ;# vcoul=qq*VV  	;# at this point mm5 contains vcoul 	;# increment vcoul 	addps  xmm5, [rsp + nb303nf_vctot]	movaps [rsp + nb303nf_vctot], xmm5 	;# Done with H1 interactions - now H2! 	movaps xmm7, [rsp + nb303nf_rH2]	mulps   xmm7, [rsp + nb303nf_tsc]	movhlps xmm4, xmm7	cvttps2pi mm6, xmm7	cvttps2pi mm7, xmm4	;# mm6/mm7 contain lu indices 		cvtpi2ps xmm3, mm6	cvtpi2ps xmm4, mm7	movlhps xmm3, xmm4		subps xmm7, xmm3	movaps xmm1, xmm7	;# xmm1=eps 	movaps xmm2, xmm1	mulps  xmm2, xmm2	;# xmm2=eps2 	pslld mm6, 2	pslld mm7, 2		movd eax, mm6	psrlq mm6, 32	movd ecx, mm7	psrlq mm7, 32	movd ebx, mm6	movd edx, mm7	movlps xmm5, [rsi + rax*4]	movlps xmm7, [rsi + rcx*4]	movhps xmm5, [rsi + rbx*4]	movhps xmm7, [rsi + rdx*4] ;# got half coulomb table 	movaps xmm4, xmm5	shufps xmm4, xmm7, 136  ;# 10001000	shufps xmm5, xmm7, 221  ;# 11011101	movlps xmm7, [rsi + rax*4 + 8]	movlps xmm3, [rsi + rcx*4 + 8]	movhps xmm7, [rsi + rbx*4 + 8]	movhps xmm3, [rsi + rdx*4 + 8] ;# other half of coulomb table  	movaps xmm6, xmm7	shufps xmm6, xmm3, 136  ;# 10001000	shufps xmm7, xmm3, 221  ;# 11011101	;# coulomb table ready, in xmm4-xmm7              	mulps  xmm6, xmm1   	;# xmm6=Geps 	mulps  xmm7, xmm2   	;# xmm7=Heps2 	addps  xmm5, xmm6	addps  xmm5, xmm7   	;# xmm5=Fp        	movaps xmm0, [rsp + nb303nf_qqH]	mulps  xmm5, xmm1 ;# xmm5=eps*Fp 	addps  xmm5, xmm4 ;# xmm5=VV 	mulps  xmm5, xmm0 ;# vcoul=qq*VV  	;# at this point mm5 contains vcoul 	;# increment vcoul 	addps  xmm5, [rsp + nb303nf_vctot]	movaps [rsp + nb303nf_vctot], xmm5 	;# Done with H2, finally we do M interactions 	movaps xmm7, [rsp + nb303nf_rM]	mulps   xmm7, [rsp + nb303nf_tsc]	movhlps xmm4, xmm7	cvttps2pi mm6, xmm7	cvttps2pi mm7, xmm4	;# mm6/mm7 contain lu indices 		cvtpi2ps xmm3, mm6	cvtpi2ps xmm4, mm7	movlhps xmm3, xmm4		subps xmm7, xmm3	movaps xmm1, xmm7	;# xmm1=eps 	movaps xmm2, xmm1	mulps  xmm2, xmm2	;# xmm2=eps2 	pslld mm6, 2	pslld mm7, 2		movd eax, mm6	psrlq mm6, 32	movd ecx, mm7	psrlq mm7, 32	movd ebx, mm6	movd edx, mm7	movlps xmm5, [rsi + rax*4]	movlps xmm7, [rsi + rcx*4]	movhps xmm5, [rsi + rbx*4]	movhps xmm7, [rsi + rdx*4] ;# got half coulomb table 	movaps xmm4, xmm5	shufps xmm4, xmm7, 136  ;# 10001000	shufps xmm5, xmm7, 221  ;# 11011101	movlps xmm7, [rsi + rax*4 + 8]	movlps xmm3, [rsi + rcx*4 + 8]	movhps xmm7, [rsi + rbx*4 + 8]	movhps xmm3, [rsi + rdx*4 + 8] ;# other half of coulomb table  	movaps xmm6, xmm7	shufps xmm6, xmm3, 136  ;# 10001000	shufps xmm7, xmm3, 221  ;# 11011101	;# coulomb table ready, in xmm4-xmm7              	mulps  xmm6, xmm1   	;# xmm6=Geps 	mulps  xmm7, xmm2   	;# xmm7=Heps2 	addps  xmm5, xmm6	addps  xmm5, xmm7   	;# xmm5=Fp        	movaps xmm0, [rsp + nb303nf_qqM]	mulps  xmm5, xmm1 ;# xmm5=eps*Fp 	addps  xmm5, xmm4 ;# xmm5=VV 	mulps  xmm5, xmm0 ;# vcoul=qq*VV  	;# at this point mm5 contains vcoul 	;# increment vcoul 	addps  xmm5, [rsp + nb303nf_vctot]	movaps [rsp + nb303nf_vctot], xmm5 		;# should we do one more iteration? 	sub dword ptr [rsp + nb303nf_innerk],  4	jl    .nb303nf_odd_inner	jmp   .nb303nf_unroll_loop.nb303nf_odd_inner:		add dword ptr [rsp + nb303nf_innerk],  4	jnz   .nb303nf_odd_loop	jmp   .nb303nf_updateouterdata.nb303nf_odd_loop:	mov   rdx, [rsp + nb303nf_innerjjnr] 	;# pointer to jjnr[k] 	mov   eax, [rdx]		add qword ptr [rsp + nb303nf_innerjjnr],  4	 	xorps xmm4, xmm4	movss xmm4, [rsp + nb303nf_iqM]	mov rsi, [rbp + nb303nf_charge] 	movhps xmm4, [rsp + nb303nf_iqH]     	movss xmm3, [rsi + rax*4]	;# charge in xmm3 	shufps xmm3, xmm3, 0	mulps xmm3, xmm4	movaps [rsp + nb303nf_qqM], xmm3	;# use dummy qq for storage 	mov rsi, [rbp + nb303nf_pos]	lea   rax, [rax + rax*2]  		;# move j coords to xmm0-xmm2 	movss xmm0, [rsi + rax*4]	movss xmm1, [rsi + rax*4 + 4]	movss xmm2, [rsi + rax*4 + 8]	shufps xmm0, xmm0, 0	shufps xmm1, xmm1, 0	shufps xmm2, xmm2, 0		movss xmm3, [rsp + nb303nf_ixM]	movss xmm4, [rsp + nb303nf_iyM]	movss xmm5, [rsp + nb303nf_izM]		movlps xmm6, [rsp + nb303nf_ixH1]	movlps xmm7, [rsp + nb303nf_ixH2]	unpcklps xmm6, xmm7	movlhps xmm3, xmm6	movlps xmm6, [rsp + nb303nf_iyH1]	movlps xmm7, [rsp + nb303nf_iyH2]	unpcklps xmm6, xmm7	movlhps xmm4, xmm6	movlps xmm6, [rsp + nb303nf_izH1]	movlps xmm7, [rsp + nb303nf_izH2]	unpcklps xmm6, xmm7	movlhps xmm5, xmm6	subps xmm3, xmm0	subps xmm4, xmm1	subps xmm5, xmm2	mulps  xmm3, xmm3	mulps  xmm4, xmm4	mulps  xmm5, xmm5	addps  xmm4, xmm3	addps  xmm4, xmm5	;# rsq in xmm4 	rsqrtps xmm5, xmm4	;# lookup seed in xmm5 	movaps xmm2, xmm5	mulps xmm5, xmm5	movaps xmm1, [rsp + nb303nf_three]	mulps xmm5, xmm4	;# rsq*lu*lu 				movaps xmm0, [rsp + nb303nf_half]	subps xmm1, xmm5	;# 30-rsq*lu*lu 	mulps xmm1, xmm2		mulps xmm0, xmm1	;# xmm0=rinv 	;# a little trick to avoid NaNs: 	;# positions 0,2,and 3 are valid, but not 1. 	;# If it contains NaN it doesnt help to mult by 0, 	;# So we shuffle it and copy pos 0 to pos1! 	shufps xmm0, xmm0, 224 ;# 11100000			mulps xmm4, xmm0	;# xmm4=r 	movaps [rsp + nb303nf_rinvM], xmm0		mulps xmm4, [rsp + nb303nf_tsc]	movhlps xmm7, xmm4	cvttps2pi mm6, xmm4	cvttps2pi mm7, xmm7	;# mm6/mm7 contain lu indices 	cvtpi2ps xmm3, mm6	cvtpi2ps xmm7, mm7	movlhps xmm3, xmm7	subps   xmm4, xmm3		movaps xmm1, xmm4	;# xmm1=eps 	movaps xmm2, xmm1	mulps  xmm2, xmm2	;# xmm2=eps2 	pslld mm6, 2	pslld mm7, 2		movd mm0, eax   	movd mm1, ecx	movd mm2, edx	mov  rsi, [rbp + nb303nf_VFtab]	movd eax, mm6	movd ecx, mm7	psrlq mm7, 32	movd edx, mm7	movlps xmm5, [rsi + rax*4]	movlps xmm7, [rsi + rcx*4]	movhps xmm7, [rsi + rdx*4] ;# got half coulomb table 	movaps xmm4, xmm5	shufps xmm4, xmm7, 136  ;# 10001000	shufps xmm5, xmm7, 221  ;# 11011101	movlps xmm7, [rsi + rax*4 + 8]	movlps xmm3, [rsi + rcx*4 + 8]	movhps xmm3, [rsi + rdx*4 + 8] ;# other half of coulomb table  	movaps xmm6, xmm7	shufps xmm6, xmm3, 136  ;# 10001000	shufps xmm7, xmm3, 221  ;# 11011101	;# coulomb table ready, in xmm4-xmm7      	mulps  xmm6, xmm1   	;# xmm6=Geps 	mulps  xmm7, xmm2   	;# xmm7=Heps2 	addps  xmm5, xmm6	addps  xmm5, xmm7   	;# xmm5=Fp        	movaps xmm0, [rsp + nb303nf_qqM]	mulps  xmm5, xmm1 ;# xmm5=eps*Fp 	addps  xmm5, xmm4 ;# xmm5=VV 	mulps  xmm5, xmm0 ;# vcoul=qq*VV  	;# at this point mm5 contains vcoul 	;# increment vcoul 	addps  xmm5, [rsp + nb303nf_vctot]	movaps [rsp + nb303nf_vctot], xmm5	dec dword ptr [rsp + nb303nf_innerk]	jz    .nb303nf_updateouterdata	jmp   .nb303nf_odd_loop.nb303nf_updateouterdata:	;# get n from stack	mov esi, [rsp + nb303nf_n]        ;# get group index for i particle         mov   rdx, [rbp + nb303nf_gid]      	;# base of gid[]        mov   edx, [rdx + rsi*4]		;# ggid=gid[n]	;# accumulate total potential energy and update it 	movaps xmm7, [rsp + nb303nf_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   rax, [rbp + nb303nf_Vc]	addss xmm7, [rax + rdx*4] 	;# move back to mem 	movss [rax + rdx*4], xmm7         ;# finish if last         mov ecx, [rsp + nb303nf_nn1]	;# esi already loaded with n	inc esi        sub ecx, esi        jz .nb303nf_outerend        ;# not last, iterate outer loop once more!          mov [rsp + nb303nf_n], esi        jmp .nb303nf_outer.nb303nf_outerend:        ;# check if more outer neighborlists remain        mov   ecx, [rsp + nb303nf_nri]	;# esi already loaded with n above        sub   ecx, esi        jz .nb303nf_end        ;# non-zero, do one more workunit        jmp   .nb303nf_threadloop.nb303nf_end:	mov eax, [rsp + nb303nf_nouter]	mov ebx, [rsp + nb303nf_ninner]	mov rcx, [rbp + nb303nf_outeriter]	mov rdx, [rbp + nb303nf_inneriter]	mov [rcx], eax	mov [rdx], ebx	add rsp, 472	emms        pop r15        pop r14        pop r13        pop r12	pop rbx	pop	rbp	ret

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