nb_kernel303_x86_64_sse.s

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#### $Id: nb_kernel303_x86_64_sse.s,v 1.4.2.3 2006/09/22 08:32:50 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##.globl nb_kernel303_x86_64_sse.globl _nb_kernel303_x86_64_ssenb_kernel303_x86_64_sse:        _nb_kernel303_x86_64_sse:       ##      Room for return address and rbp (16 bytes).set nb303_fshift, 16.set nb303_gid, 24.set nb303_pos, 32.set nb303_faction, 40.set nb303_charge, 48.set nb303_p_facel, 56.set nb303_argkrf, 64.set nb303_argcrf, 72.set nb303_Vc, 80.set nb303_type, 88.set nb303_p_ntype, 96.set nb303_vdwparam, 104.set nb303_Vvdw, 112.set nb303_p_tabscale, 120.set nb303_VFtab, 128.set nb303_invsqrta, 136.set nb303_dvda, 144.set nb303_p_gbtabscale, 152.set nb303_GBtab, 160.set nb303_p_nthreads, 168.set nb303_count, 176.set nb303_mtx, 184.set nb303_outeriter, 192.set nb303_inneriter, 200.set nb303_work, 208        ## stack offsets for local variables          ## bottom of stack is cache-aligned for sse use .set nb303_ixH1, 0.set nb303_iyH1, 16.set nb303_izH1, 32.set nb303_ixH2, 48.set nb303_iyH2, 64.set nb303_izH2, 80.set nb303_ixM, 96.set nb303_iyM, 112.set nb303_izM, 128.set nb303_iqH, 144.set nb303_iqM, 160.set nb303_dxH1, 176.set nb303_dyH1, 192.set nb303_dzH1, 208.set nb303_dxH2, 224.set nb303_dyH2, 240.set nb303_dzH2, 256.set nb303_dxM, 272.set nb303_dyM, 288.set nb303_dzM, 304.set nb303_qqH, 320.set nb303_qqM, 336.set nb303_rinvH1, 352.set nb303_rinvH2, 368.set nb303_rinvM, 384.set nb303_rH1, 400.set nb303_rH2, 416.set nb303_rM, 432.set nb303_tsc, 448.set nb303_two, 464.set nb303_vctot, 480.set nb303_fixH1, 496.set nb303_fiyH1, 512.set nb303_fizH1, 528.set nb303_fixH2, 544.set nb303_fiyH2, 560.set nb303_fizH2, 576.set nb303_fixM, 592.set nb303_fiyM, 608.set nb303_fizM, 624.set nb303_epsH1, 640.set nb303_epsH2, 656.set nb303_epsM, 672.set nb303_half, 688.set nb303_three, 704.set nb303_is3, 720.set nb303_ii3, 724.set nb303_nri, 728.set nb303_iinr, 736.set nb303_jindex, 744.set nb303_jjnr, 752.set nb303_shift, 760.set nb303_shiftvec, 768.set nb303_facel, 776.set nb303_innerjjnr, 784.set nb303_innerk, 792.set nb303_n, 796.set nb303_nn1, 800.set nb303_nouter, 804.set nb303_ninner, 808        push %rbp        movq %rsp,%rbp        push %rbx        push %r12        push %r13        push %r14        push %r15        subq $824,%rsp          ## local variable stack space (n*16+8)        emms        ## zero 32-bit iteration counters        movl $0,%eax        movl %eax,nb303_nouter(%rsp)        movl %eax,nb303_ninner(%rsp)        movl (%rdi),%edi        movl %edi,nb303_nri(%rsp)        movq %rsi,nb303_iinr(%rsp)        movq %rdx,nb303_jindex(%rsp)        movq %rcx,nb303_jjnr(%rsp)        movq %r8,nb303_shift(%rsp)        movq %r9,nb303_shiftvec(%rsp)        movq nb303_p_facel(%rbp),%rsi        movss (%rsi),%xmm0        movss %xmm0,nb303_facel(%rsp)        movq nb303_p_tabscale(%rbp),%rax        movss (%rax),%xmm3        shufps $0,%xmm3,%xmm3        movaps %xmm3,nb303_tsc(%rsp)        ## create constant floating-point factors on stack        movl $0x3f000000,%eax   ## half in IEEE (hex)        movl %eax,nb303_half(%rsp)        movss nb303_half(%rsp),%xmm1        shufps $0,%xmm1,%xmm1  ## splat to all elements        movaps %xmm1,%xmm2        addps  %xmm2,%xmm2      ## one        movaps %xmm2,%xmm3        addps  %xmm2,%xmm2      ## two        addps  %xmm2,%xmm3      ## three        movaps %xmm1,nb303_half(%rsp)        movaps %xmm2,nb303_two(%rsp)        movaps %xmm3,nb303_three(%rsp)        ## assume we have at least one i particle - start directly         movq  nb303_iinr(%rsp),%rcx             ## rcx = pointer into iinr[]            movl  (%rcx),%ebx               ## ebx =ii         movq  nb303_charge(%rbp),%rdx        movss 4(%rdx,%rbx,4),%xmm3        movss 12(%rdx,%rbx,4),%xmm4        movq nb303_p_facel(%rbp),%rsi        movss (%rsi),%xmm0        movss nb303_facel(%rsp),%xmm5        mulss  %xmm5,%xmm3        mulss  %xmm5,%xmm4        shufps $0,%xmm3,%xmm3        shufps $0,%xmm4,%xmm4        movaps %xmm3,nb303_iqH(%rsp)        movaps %xmm4,nb303_iqM(%rsp)_nb_kernel303_x86_64_sse.nb303_threadloop:         movq  nb303_count(%rbp),%rsi            ## pointer to sync counter        movl  (%rsi),%eax_nb_kernel303_x86_64_sse.nb303_spinlock:         movl  %eax,%ebx                         ## ebx=*count=nn0        addl  $1,%ebx                          ## ebx=nn1=nn0+10        lock         cmpxchgl %ebx,(%rsi)                    ## write nn1 to *counter,                                                ## if it hasnt changed.                                                ## or reread *counter to eax.        pause                                   ## -> better p4 performance        jnz _nb_kernel303_x86_64_sse.nb303_spinlock        ## if(nn1>nri) nn1=nri        movl nb303_nri(%rsp),%ecx        movl %ecx,%edx        subl %ebx,%ecx        cmovlel %edx,%ebx                       ## if(nn1>nri) nn1=nri        ## Cleared the spinlock if we got here.        ## eax contains nn0, ebx contains nn1.        movl %eax,nb303_n(%rsp)        movl %ebx,nb303_nn1(%rsp)        subl %eax,%ebx                          ## calc number of outer lists        movl %eax,%esi                          ## copy n to esi        jg  _nb_kernel303_x86_64_sse.nb303_outerstart        jmp _nb_kernel303_x86_64_sse.nb303_end_nb_kernel303_x86_64_sse.nb303_outerstart:         ## ebx contains number of outer iterations        addl nb303_nouter(%rsp),%ebx        movl %ebx,nb303_nouter(%rsp)_nb_kernel303_x86_64_sse.nb303_outer:         movq  nb303_shift(%rsp),%rax            ## rax = pointer into shift[]         movl  (%rax,%rsi,4),%ebx                ## rbx=shift[n]         lea  (%rbx,%rbx,2),%rbx        ## rbx=3*is         movl  %ebx,nb303_is3(%rsp)      ## store is3         movq  nb303_shiftvec(%rsp),%rax     ## rax = base of shiftvec[]         movss (%rax,%rbx,4),%xmm0        movss 4(%rax,%rbx,4),%xmm1        movss 8(%rax,%rbx,4),%xmm2        movq  nb303_iinr(%rsp),%rcx             ## rcx = pointer into iinr[]            movl  (%rcx,%rsi,4),%ebx                ## ebx =ii         movaps %xmm0,%xmm3        movaps %xmm1,%xmm4        movaps %xmm2,%xmm5        lea  (%rbx,%rbx,2),%rbx        ## rbx = 3*ii=ii3         movq  nb303_pos(%rbp),%rax      ## rax = base of pos[]          movl  %ebx,nb303_ii3(%rsp)        addss 12(%rax,%rbx,4),%xmm3        addss 16(%rax,%rbx,4),%xmm4        addss 20(%rax,%rbx,4),%xmm5        shufps $0,%xmm3,%xmm3        shufps $0,%xmm4,%xmm4        shufps $0,%xmm5,%xmm5        movaps %xmm3,nb303_ixH1(%rsp)        movaps %xmm4,nb303_iyH1(%rsp)        movaps %xmm5,nb303_izH1(%rsp)        movss %xmm0,%xmm3        movss %xmm1,%xmm4        movss %xmm2,%xmm5        addss 24(%rax,%rbx,4),%xmm0        addss 28(%rax,%rbx,4),%xmm1        addss 32(%rax,%rbx,4),%xmm2        addss 36(%rax,%rbx,4),%xmm3        addss 40(%rax,%rbx,4),%xmm4        addss 44(%rax,%rbx,4),%xmm5        shufps $0,%xmm0,%xmm0        shufps $0,%xmm1,%xmm1        shufps $0,%xmm2,%xmm2        shufps $0,%xmm3,%xmm3        shufps $0,%xmm4,%xmm4        shufps $0,%xmm5,%xmm5        movaps %xmm0,nb303_ixH2(%rsp)        movaps %xmm1,nb303_iyH2(%rsp)        movaps %xmm2,nb303_izH2(%rsp)        movaps %xmm3,nb303_ixM(%rsp)        movaps %xmm4,nb303_iyM(%rsp)        movaps %xmm5,nb303_izM(%rsp)        ## clear vctot and i forces         xorps %xmm4,%xmm4        movaps %xmm4,nb303_vctot(%rsp)        movaps %xmm4,nb303_fixH1(%rsp)        movaps %xmm4,nb303_fiyH1(%rsp)        movaps %xmm4,nb303_fizH1(%rsp)        movaps %xmm4,nb303_fixH2(%rsp)        movaps %xmm4,nb303_fiyH2(%rsp)        movaps %xmm4,nb303_fizH2(%rsp)        movaps %xmm4,nb303_fixM(%rsp)        movaps %xmm4,nb303_fiyM(%rsp)        movaps %xmm4,nb303_fizM(%rsp)        movq  nb303_jindex(%rsp),%rax        movl  (%rax,%rsi,4),%ecx                ## jindex[n]         movl  4(%rax,%rsi,4),%edx               ## jindex[n+1]         subl  %ecx,%edx                 ## number of innerloop atoms         movq  nb303_pos(%rbp),%rsi        movq  nb303_faction(%rbp),%rdi        movq  nb303_jjnr(%rsp),%rax        shll  $2,%ecx        addq  %rcx,%rax        movq  %rax,nb303_innerjjnr(%rsp)        ## pointer to jjnr[nj0]         movl  %edx,%ecx        subl  $4,%edx        addl  nb303_ninner(%rsp),%ecx        movl  %ecx,nb303_ninner(%rsp)        addl  $0,%edx        movl  %edx,nb303_innerk(%rsp)   ## number of innerloop atoms         jge   _nb_kernel303_x86_64_sse.nb303_unroll_loop        jmp   _nb_kernel303_x86_64_sse.nb303_odd_inner_nb_kernel303_x86_64_sse.nb303_unroll_loop:         ## quad-unroll innerloop here         movq  nb303_innerjjnr(%rsp),%rdx        ## pointer to jjnr[k]         movl  (%rdx),%eax        movl  4(%rdx),%ebx        movl  8(%rdx),%ecx        movl  12(%rdx),%edx             ## eax-edx=jnr1-4         addq $16,nb303_innerjjnr(%rsp)             ## advance pointer (unrolled 4)         movq nb303_charge(%rbp),%rsi    ## base of charge[]         movss (%rsi,%rax,4),%xmm3        movss (%rsi,%rcx,4),%xmm4        movss (%rsi,%rbx,4),%xmm6        movss (%rsi,%rdx,4),%xmm7        shufps $0,%xmm6,%xmm3        shufps $0,%xmm7,%xmm4        shufps $136,%xmm4,%xmm3 ## 10001000 ;# all charges in xmm3          movaps %xmm3,%xmm4              ## and in xmm4         mulps  nb303_iqH(%rsp),%xmm3        mulps  nb303_iqM(%rsp),%xmm4        movaps  %xmm3,nb303_qqH(%rsp)        movaps  %xmm4,nb303_qqM(%rsp)        movq nb303_pos(%rbp),%rsi       ## base of pos[]         lea  (%rax,%rax,2),%rax        ## replace jnr with j3         lea  (%rbx,%rbx,2),%rbx        lea  (%rcx,%rcx,2),%rcx        lea  (%rdx,%rdx,2),%rdx        ## move four coordinates to xmm0-xmm2           movlps (%rsi,%rax,4),%xmm4        movlps (%rsi,%rcx,4),%xmm5        movss 8(%rsi,%rax,4),%xmm2        movss 8(%rsi,%rcx,4),%xmm6        movhps (%rsi,%rbx,4),%xmm4        movhps (%rsi,%rdx,4),%xmm5        movss 8(%rsi,%rbx,4),%xmm0        movss 8(%rsi,%rdx,4),%xmm1        shufps $0,%xmm0,%xmm2        shufps $0,%xmm1,%xmm6        movaps %xmm4,%xmm0        movaps %xmm4,%xmm1        shufps $136,%xmm6,%xmm2 ## 10001000        shufps $136,%xmm5,%xmm0 ## 10001000        shufps $221,%xmm5,%xmm1 ## 11011101                 ## xmm0 = jx    ## xmm1 = jy    ## xmm2 = jz    movaps %xmm0,%xmm3    movaps %xmm1,%xmm4    movaps %xmm2,%xmm5    movaps %xmm0,%xmm6    movaps %xmm1,%xmm7    movaps %xmm2,%xmm8    subps nb303_ixH1(%rsp),%xmm0    subps nb303_iyH1(%rsp),%xmm1    subps nb303_izH1(%rsp),%xmm2    subps nb303_ixH2(%rsp),%xmm3    subps nb303_iyH2(%rsp),%xmm4    subps nb303_izH2(%rsp),%xmm5    subps nb303_ixM(%rsp),%xmm6    subps nb303_iyM(%rsp),%xmm7    subps nb303_izM(%rsp),%xmm8        movd  %eax,%mm0         ## use mmx registers as temp storage         movd  %ebx,%mm1        movd  %ecx,%mm2        movd  %edx,%mm3        movaps %xmm0,nb303_dxH1(%rsp)        movaps %xmm1,nb303_dyH1(%rsp)        movaps %xmm2,nb303_dzH1(%rsp)        mulps  %xmm0,%xmm0        mulps  %xmm1,%xmm1        mulps  %xmm2,%xmm2        movaps %xmm3,nb303_dxH2(%rsp)        movaps %xmm4,nb303_dyH2(%rsp)        movaps %xmm5,nb303_dzH2(%rsp)        mulps  %xmm3,%xmm3        mulps  %xmm4,%xmm4        mulps  %xmm5,%xmm5        movaps %xmm6,nb303_dxM(%rsp)        movaps %xmm7,nb303_dyM(%rsp)        movaps %xmm8,nb303_dzM(%rsp)        mulps  %xmm6,%xmm6        mulps  %xmm7,%xmm7        mulps  %xmm8,%xmm8        addps  %xmm1,%xmm0        addps  %xmm2,%xmm0        addps  %xmm4,%xmm3        addps  %xmm5,%xmm3    addps  %xmm7,%xmm6    addps  %xmm8,%xmm6        ## start doing invsqrt for j atoms        rsqrtps %xmm0,%xmm1        rsqrtps %xmm3,%xmm4    rsqrtps %xmm6,%xmm7        movaps  %xmm1,%xmm2        movaps  %xmm4,%xmm5    movaps  %xmm7,%xmm8        mulps   %xmm1,%xmm1 ## lu*lu        mulps   %xmm4,%xmm4 ## lu*lu    mulps   %xmm7,%xmm7 ## lu*lu        movaps  nb303_three(%rsp),%xmm9        movaps  %xmm9,%xmm10    movaps  %xmm9,%xmm11        mulps   %xmm0,%xmm1 ## rsq*lu*lu        mulps   %xmm3,%xmm4 ## rsq*lu*lu     mulps   %xmm6,%xmm7 ## rsq*lu*lu        subps   %xmm1,%xmm9        subps   %xmm4,%xmm10    subps   %xmm7,%xmm11 ## 3-rsq*lu*lu        mulps   %xmm2,%xmm9        mulps   %xmm5,%xmm10    mulps   %xmm8,%xmm11 ## lu*(3-rsq*lu*lu)        movaps  nb303_half(%rsp),%xmm4        mulps   %xmm4,%xmm9 ## rinvH1         mulps   %xmm4,%xmm10 ## rinvH2    mulps   %xmm4,%xmm11 ## rinvM        movaps  %xmm9,nb303_rinvH1(%rsp)        movaps  %xmm10,nb303_rinvH2(%rsp)        movaps  %xmm11,nb303_rinvM(%rsp)        ## interactions     ## rsq in xmm0,xmm3,xmm6      ## rinv in xmm9, xmm10, xmm11    movaps nb303_tsc(%rsp),%xmm1    mulps  %xmm9,%xmm0 ## r    mulps  %xmm10,%xmm3    mulps  %xmm11,%xmm6    mulps  %xmm1,%xmm0 ## rtab    mulps  %xmm1,%xmm3    mulps  %xmm1,%xmm6    ## truncate and convert to integers    cvttps2dq %xmm0,%xmm1    cvttps2dq %xmm3,%xmm4    cvttps2dq %xmm6,%xmm7    ## convert back to float    cvtdq2ps  %xmm1,%xmm2    cvtdq2ps  %xmm4,%xmm5    cvtdq2ps  %xmm7,%xmm8    ## multiply by 4    pslld   $2,%xmm1    pslld   $2,%xmm4    pslld   $2,%xmm7    ## move to integer registers    movhlps %xmm1,%xmm13    movhlps %xmm4,%xmm14    movhlps %xmm7,%xmm15

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