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📄 nb_kernel030_ia32_3dnow.s

📁 最著名最快的分子模拟软件
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        punpckldq %mm0,%mm0        punpckhdq %mm1,%mm1        ## calc vector force         prefetchw (%edi,%eax,4) ## prefetch the 1st faction to cache         movq nb030_dx1(%esp),%mm2       ## fetch dr         movd nb030_dz1(%esp),%mm3        ## update Vvdwtot         pfadd nb030_Vvdwtot(%esp),%mm5        ## add the earlier value         movq %mm5,nb030_Vvdwtot(%esp)         ## store the sum               prefetchw (%edi,%ebx,4) ## prefetch the 2nd faction to cache         pfmul %mm0,%mm2         ## mult by fs          pfmul %mm0,%mm3        movq nb030_dx2(%esp),%mm4       ## fetch dr         movd nb030_dz2(%esp),%mm5        pfmul %mm1,%mm4         ## mult by fs          pfmul %mm1,%mm5        ## update i forces         movq nb030_fix(%esp),%mm0        movd nb030_fiz(%esp),%mm1        pfadd %mm2,%mm0        pfadd %mm3,%mm1        pfadd %mm4,%mm0        pfadd %mm5,%mm1        movq %mm0,nb030_fix(%esp)        movd %mm1,nb030_fiz(%esp)        ## update j forces         movq (%edi,%eax,4),%mm0        movd 8(%edi,%eax,4),%mm1        movq (%edi,%ebx,4),%mm6        movd 8(%edi,%ebx,4),%mm7        pfsub %mm2,%mm0        pfsub %mm3,%mm1        pfsub %mm4,%mm6        pfsub %mm5,%mm7        movq %mm0,(%edi,%eax,4)        movd %mm1,8(%edi,%eax,4)        movq %mm6,(%edi,%ebx,4)        movd %mm7,8(%edi,%ebx,4)        ## should we do one more iteration?         subl $2,nb030_innerk(%esp)        jl    _nb_kernel030_ia32_3dnow.nb030_finish_inner        jmp   _nb_kernel030_ia32_3dnow.nb030_unroll_loop_nb_kernel030_ia32_3dnow.nb030_finish_inner:         andl $1,nb030_innerk(%esp)        jnz  _nb_kernel030_ia32_3dnow.nb030_single_inner        jmp  _nb_kernel030_ia32_3dnow.nb030_updateouterdata_nb_kernel030_ia32_3dnow.nb030_single_inner:         ## a single j particle iteration here - compare with the unrolled code for comments         movl  nb030_innerjjnr(%esp),%eax        movl  (%eax),%eax       ## eax=jnr offset         movl nb030_vdwparam(%ebp),%esi        movl nb030_type(%ebp),%ecx        movl (%ecx,%eax,4),%edx          ## type [jnr1]         shll %edx        addl nb030_ntia(%esp),%edx           ## tja = ntia + 2*type         movd (%esi,%edx,4),%mm5         ## mm5 = 1st c6                         movq %mm5,nb030_c6(%esp)        movd 4(%esi,%edx,4),%mm5        ## mm5 = 1st c12                        movq %mm5,nb030_c12(%esp)        movl  nb030_pos(%ebp),%esi        leal  (%eax,%eax,2),%eax        movq  nb030_ix(%esp),%mm0        movd  nb030_iz(%esp),%mm1        movq  (%esi,%eax,4),%mm4        movd  8(%esi,%eax,4),%mm5        pfsubr %mm0,%mm4        pfsubr %mm1,%mm5        movq  %mm4,nb030_dx1(%esp)        pfmul %mm4,%mm4        movd  %mm5,nb030_dz1(%esp)        pfmul %mm5,%mm5        pfacc %mm5,%mm4        pfacc %mm5,%mm4         ## mm0=rsq     pfrsqrt %mm4,%mm0    movq %mm0,%mm2    pfmul %mm0,%mm0    pfrsqit1 %mm4,%mm0    pfrcpit2 %mm2,%mm0  ## mm1=invsqrt         pfmul %mm0,%mm4        movq %mm4,%mm1        ## mm0 is invsqrt, and mm1 r         ## calculate potentials and scalar force         pfmul nb030_tsc(%esp),%mm1      ## mm1=rt         pf2iw %mm1,%mm4        movd %mm4,nb030_n1(%esp)        pi2fd %mm4,%mm4        pfsub %mm4,%mm1              ## now mm1 is eps and mm4 is n0         movq %mm1,%mm2        pfmul %mm2,%mm2 ## mm1 is eps, mm2 is eps2         movl nb030_VFtab(%ebp),%edx        movl nb030_n1(%esp),%ecx        shll $3,%ecx        ## dispersion table         ## load all the table values we need         movd (%edx,%ecx,4),%mm4        movd 4(%edx,%ecx,4),%mm5        movd 8(%edx,%ecx,4),%mm6        movd 12(%edx,%ecx,4),%mm7        pfmul %mm1,%mm6 ## mm6 = Geps                   pfmul %mm2,%mm7 ## mm7 = Heps2         pfadd %mm6,%mm5        pfadd %mm7,%mm5 ## mm5 = Fp         pfmul nb030_two(%esp),%mm7      ## two*Heps2         pfadd %mm6,%mm7        pfadd %mm5,%mm7 ## mm7=FF         pfmul %mm1,%mm5 ## mm5=eps*Fp         pfadd %mm4,%mm5 ##  mm5= VV             movq nb030_c6(%esp),%mm4        pfmul %mm4,%mm7 ## fijD         pfmul %mm4,%mm5 ## Vvdw6                    movq %mm7,%mm3  ## add to fscal         ## update Vvdwtot to release mm5!         pfadd nb030_Vvdwtot(%esp),%mm5        ## add the earlier value         movq %mm5,nb030_Vvdwtot(%esp)         ## store the sum               ## repulsion table         ## load all the table values we need         movd 16(%edx,%ecx,4),%mm4        movd 20(%edx,%ecx,4),%mm5        movd 24(%edx,%ecx,4),%mm6        movd 28(%edx,%ecx,4),%mm7        pfmul %mm1,%mm6 ## mm6 = Geps                   pfmul %mm2,%mm7 ## mm7 = Heps2         pfadd %mm6,%mm5        pfadd %mm7,%mm5 ## mm5 = Fp         pfmul nb030_two(%esp),%mm7      ## two*Heps2         pfadd %mm6,%mm7        pfadd %mm5,%mm7 ## mm7=FF         pfmul %mm1,%mm5 ## mm5=eps*Fp         pfadd %mm4,%mm5 ##  mm5= VV         movq nb030_c12(%esp),%mm6        pfmul %mm6,%mm7 ## fijR         pfmul %mm6,%mm5 ## Vvdw12         pfadd %mm7,%mm3 ## total fscal fijC+ fijD+ fijR         ## change sign of mm3     pxor %mm1,%mm1        pfsub %mm3,%mm1        pfmul nb030_tsc(%esp),%mm0        pfmul %mm1,%mm0   ## mm0 is total fscal now             ## update Vvdwtot         pfadd nb030_Vvdwtot(%esp),%mm5        ## add the earlier value         movq %mm5,nb030_Vvdwtot(%esp)         ## store the sum               ## spread fscalar to both positions         punpckldq %mm0,%mm0        ## calc vectorial force         prefetchw (%edi,%eax,4) ## prefetch faction to cache          movq nb030_dx1(%esp),%mm2        movd nb030_dz1(%esp),%mm3        pfmul %mm0,%mm2        pfmul %mm0,%mm3        ## update i particle force         movq nb030_fix(%esp),%mm0        movd nb030_fiz(%esp),%mm1        pfadd %mm2,%mm0        pfadd %mm3,%mm1        movq %mm0,nb030_fix(%esp)        movd %mm1,nb030_fiz(%esp)        ## update j particle force         movq (%edi,%eax,4),%mm0        movd 8(%edi,%eax,4),%mm1        pfsub %mm2,%mm0        pfsub %mm3,%mm1        movq %mm0,(%edi,%eax,4)        movd %mm1,8(%edi,%eax,4)        ## done! _nb_kernel030_ia32_3dnow.nb030_updateouterdata:         movl  nb030_ii3(%esp),%ecx        movq  (%edi,%ecx,4),%mm6       ## increment i force         movd  8(%edi,%ecx,4),%mm7        pfadd nb030_fix(%esp),%mm6        pfadd nb030_fiz(%esp),%mm7        movq  %mm6,(%edi,%ecx,4)        movd  %mm7,8(%edi,%ecx,4)        movl  nb030_fshift(%ebp),%ebx      ## increment fshift force         movl  nb030_is3(%esp),%edx        movq  (%ebx,%edx,4),%mm6        movd  8(%ebx,%edx,4),%mm7        pfadd nb030_fix(%esp),%mm6        pfadd nb030_fiz(%esp),%mm7        movq  %mm6,(%ebx,%edx,4)        movd  %mm7,8(%ebx,%edx,4)        ## get n from stack        movl nb030_n(%esp),%esi        ## get group index for i particle         movl  nb030_gid(%ebp),%edx              ## base of gid[]        movl  (%edx,%esi,4),%edx                ## ggid=gid[n]        movq  nb030_Vvdwtot(%esp),%mm7        pfacc %mm7,%mm7           ## get and sum the two parts of total potential         movl  nb030_Vvdw(%ebp),%eax        movd  (%eax,%edx,4),%mm6        pfadd %mm7,%mm6        movd  %mm6,(%eax,%edx,4)          ## increment Vvdw[gid]        ## finish if last         movl nb030_nn1(%esp),%ecx        ## esi already loaded with n        incl %esi        subl %esi,%ecx        jz _nb_kernel030_ia32_3dnow.nb030_outerend        ## not last, iterate outer loop once more!          movl %esi,nb030_n(%esp)        jmp _nb_kernel030_ia32_3dnow.nb030_outer_nb_kernel030_ia32_3dnow.nb030_outerend:         ## check if more outer neighborlists remain        movl  nb030_nri(%esp),%ecx        ## esi already loaded with n above        subl  %esi,%ecx        jz _nb_kernel030_ia32_3dnow.nb030_end        ## non-zero, do one more workunit        jmp   _nb_kernel030_ia32_3dnow.nb030_threadloop_nb_kernel030_ia32_3dnow.nb030_end:         femms        movl nb030_nouter(%esp),%eax        movl nb030_ninner(%esp),%ebx        movl nb030_outeriter(%ebp),%ecx        movl nb030_inneriter(%ebp),%edx        movl %eax,(%ecx)        movl %ebx,(%edx)        addl $140,%esp        popl %edi        popl %esi        popl %edx        popl %ecx        popl %ebx        popl %eax        leave        ret.globl nb_kernel030nf_ia32_3dnow.globl _nb_kernel030nf_ia32_3dnownb_kernel030nf_ia32_3dnow:      _nb_kernel030nf_ia32_3dnow:     .set nb030nf_p_nri, 8.set nb030nf_iinr, 12.set nb030nf_jindex, 16.set nb030nf_jjnr, 20.set nb030nf_shift, 24.set nb030nf_shiftvec, 28.set nb030nf_fshift, 32.set nb030nf_gid, 36.set nb030nf_pos, 40.set nb030nf_faction, 44.set nb030nf_charge, 48.set nb030nf_p_facel, 52.set nb030nf_p_krf, 56.set nb030nf_p_crf, 60.set nb030nf_Vc, 64.set nb030nf_type, 68.set nb030nf_p_ntype, 72.set nb030nf_vdwparam, 76.set nb030nf_Vvdw, 80.set nb030nf_p_tabscale, 84.set nb030nf_VFtab, 88.set nb030nf_invsqrta, 92.set nb030nf_dvda, 96.set nb030nf_p_gbtabscale, 100.set nb030nf_GBtab, 104.set nb030nf_p_nthreads, 108.set nb030nf_count, 112.set nb030nf_mtx, 116.set nb030nf_outeriter, 120.set nb030nf_inneriter, 124.set nb030nf_work, 128        ## stack offsets for local variables .set nb030nf_is3, 0.set nb030nf_ii3, 4.set nb030nf_ix, 8.set nb030nf_iy, 12.set nb030nf_iz, 16.set nb030nf_Vvdwtot, 20.set nb030nf_c6, 28.set nb030nf_c12, 36.set nb030nf_n1, 44.set nb030nf_tsc, 52.set nb030nf_ntia, 60.set nb030nf_innerjjnr, 64.set nb030nf_innerk, 68.set nb030nf_n, 72                         ## idx for outer loop.set nb030nf_nn1, 76                       ## number of outer iterations.set nb030nf_nri, 80.set nb030nf_ntype, 84.set nb030nf_nouter, 88.set nb030nf_ninner, 92        pushl %ebp        movl %esp,%ebp        pushl %eax        pushl %ebx        pushl %ecx        pushl %edx        pushl %esi        pushl %edi        subl $96,%esp           ## local stack space         femms        ## move data to local stack          movl nb030nf_p_nri(%ebp),%ecx        movl nb030nf_p_ntype(%ebp),%edx        movl nb030nf_p_tabscale(%ebp),%esi        movl (%ecx),%ecx        movl (%edx),%edx        movl %ecx,nb030nf_nri(%esp)        movl %edx,nb030nf_ntype(%esp)        movd  (%esi),%mm3        punpckldq %mm3,%mm3        movq  %mm3,nb030nf_tsc(%esp)        ## zero iteration counters        movl $0,%eax        movl %eax,nb030nf_nouter(%esp)        movl %eax,nb030nf_ninner(%esp)_nb_kernel030nf_ia32_3dnow.nb030nf_threadloop:         movl  nb030nf_count(%ebp),%esi            ## pointer to sync counter        movl  (%esi),%eax_nb_kernel030nf_ia32_3dnow.nb030nf_spinlock:         movl  %eax,%ebx                         ## ebx=*count=nn0        addl  $1,%ebx                          ## ebx=nn1=nn0+10        lock         cmpxchgl %ebx,(%esi)                    ## write nn1 to *counter,

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