nb_kernel130_ia32_sse2.s
来自「最著名最快的分子模拟软件」· S 代码 · 共 1,473 行 · 第 1/4 页
S
1,473 行
#### $Id: nb_kernel130_ia32_sse2.s,v 1.1.2.2 2007/11/28 18:35:34 spoel 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_kernel130_ia32_sse2.globl _nb_kernel130_ia32_sse2nb_kernel130_ia32_sse2: _nb_kernel130_ia32_sse2: .set nb130_p_nri, 8.set nb130_iinr, 12.set nb130_jindex, 16.set nb130_jjnr, 20.set nb130_shift, 24.set nb130_shiftvec, 28.set nb130_fshift, 32.set nb130_gid, 36.set nb130_pos, 40.set nb130_faction, 44.set nb130_charge, 48.set nb130_p_facel, 52.set nb130_argkrf, 56.set nb130_argcrf, 60.set nb130_Vc, 64.set nb130_type, 68.set nb130_p_ntype, 72.set nb130_vdwparam, 76.set nb130_Vvdw, 80.set nb130_p_tabscale, 84.set nb130_VFtab, 88.set nb130_invsqrta, 92.set nb130_dvda, 96.set nb130_p_gbtabscale, 100.set nb130_GBtab, 104.set nb130_p_nthreads, 108.set nb130_count, 112.set nb130_mtx, 116.set nb130_outeriter, 120.set nb130_inneriter, 124.set nb130_work, 128 ## stack offsets for local variables ## bottom of stack is cache-aligned for sse2 use .set nb130_ix, 0.set nb130_iy, 16.set nb130_iz, 32.set nb130_iq, 48.set nb130_dx, 64.set nb130_dy, 80.set nb130_dz, 96.set nb130_c6, 112.set nb130_c12, 128.set nb130_tsc, 144.set nb130_fstmp, 160.set nb130_vctot, 176.set nb130_Vvdwtot, 192.set nb130_fix, 208.set nb130_fiy, 224.set nb130_fiz, 240.set nb130_half, 256.set nb130_three, 272.set nb130_two, 288.set nb130_is3, 336.set nb130_ii3, 340.set nb130_ntia, 344.set nb130_innerjjnr, 348.set nb130_innerk, 352.set nb130_n, 356.set nb130_nn1, 360.set nb130_nri, 364.set nb130_facel, 368 ## uses 8 bytes.set nb130_ntype, 376.set nb130_nouter, 380.set nb130_ninner, 384.set nb130_salign, 388 pushl %ebp movl %esp,%ebp pushl %eax pushl %ebx pushl %ecx pushl %edx pushl %esi pushl %edi subl $392,%esp ## local stack space movl %esp,%eax andl $0xf,%eax subl %eax,%esp movl %eax,nb130_salign(%esp) emms ## Move args passed by reference to stack movl nb130_p_nri(%ebp),%ecx movl nb130_p_facel(%ebp),%esi movl nb130_p_ntype(%ebp),%edi movl (%ecx),%ecx movsd (%esi),%xmm7 movl (%edi),%edi movl %ecx,nb130_nri(%esp) movsd %xmm7,nb130_facel(%esp) movl %edi,nb130_ntype(%esp) ## zero iteration counters movl $0,%eax movl %eax,nb130_nouter(%esp) movl %eax,nb130_ninner(%esp) movl nb130_p_tabscale(%ebp),%eax movsd (%eax),%xmm3 shufpd $0,%xmm3,%xmm3 movapd %xmm3,nb130_tsc(%esp) ## create constant floating-point factors on stack movl $0x00000000,%eax ## lower half of double 0.5 IEEE (hex) movl $0x3fe00000,%ebx movl %eax,nb130_half(%esp) movl %ebx,nb130_half+4(%esp) movsd nb130_half(%esp),%xmm1 shufpd $0,%xmm1,%xmm1 ## splat to all elements movapd %xmm1,%xmm3 addpd %xmm3,%xmm3 ## 1.0 movapd %xmm3,%xmm2 addpd %xmm2,%xmm2 ## 2.0 addpd %xmm2,%xmm3 ## 3.0 movapd %xmm1,nb130_half(%esp) movapd %xmm2,nb130_two(%esp) movapd %xmm3,nb130_three(%esp)_nb_kernel130_ia32_sse2.nb130_threadloop: movl nb130_count(%ebp),%esi ## pointer to sync counter movl (%esi),%eax_nb_kernel130_ia32_sse2.nb130_spinlock: movl %eax,%ebx ## ebx=*count=nn0 addl $1,%ebx ## ebx=nn1=nn0+10 lock cmpxchgl %ebx,(%esi) ## write nn1 to *counter, ## if it hasnt changed. ## or reread *counter to eax. pause ## -> better p4 performance jnz _nb_kernel130_ia32_sse2.nb130_spinlock ## if(nn1>nri) nn1=nri movl nb130_nri(%esp),%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,nb130_n(%esp) movl %ebx,nb130_nn1(%esp) subl %eax,%ebx ## calc number of outer lists movl %eax,%esi ## copy n to esi jg _nb_kernel130_ia32_sse2.nb130_outerstart jmp _nb_kernel130_ia32_sse2.nb130_end_nb_kernel130_ia32_sse2.nb130_outerstart: ## ebx contains number of outer iterations addl nb130_nouter(%esp),%ebx movl %ebx,nb130_nouter(%esp)_nb_kernel130_ia32_sse2.nb130_outer: movl nb130_shift(%ebp),%eax ## eax = pointer into shift[] movl (%eax,%esi,4),%ebx ## ebx=shift[n] leal (%ebx,%ebx,2),%ebx ## ebx=3*is movl %ebx,nb130_is3(%esp) ## store is3 movl nb130_shiftvec(%ebp),%eax ## eax = base of shiftvec[] movsd (%eax,%ebx,8),%xmm0 movsd 8(%eax,%ebx,8),%xmm1 movsd 16(%eax,%ebx,8),%xmm2 movl nb130_iinr(%ebp),%ecx ## ecx = pointer into iinr[] movl (%ecx,%esi,4),%ebx ## ebx =ii movl nb130_charge(%ebp),%edx movsd (%edx,%ebx,8),%xmm3 mulsd nb130_facel(%esp),%xmm3 shufpd $0,%xmm3,%xmm3 movl nb130_type(%ebp),%edx movl (%edx,%ebx,4),%edx imull nb130_ntype(%esp),%edx shll %edx movl %edx,nb130_ntia(%esp) leal (%ebx,%ebx,2),%ebx ## ebx = 3*ii=ii3 movl nb130_pos(%ebp),%eax ## eax = base of pos[] addsd (%eax,%ebx,8),%xmm0 addsd 8(%eax,%ebx,8),%xmm1 addsd 16(%eax,%ebx,8),%xmm2 movapd %xmm3,nb130_iq(%esp) shufpd $0,%xmm0,%xmm0 shufpd $0,%xmm1,%xmm1 shufpd $0,%xmm2,%xmm2 movapd %xmm0,nb130_ix(%esp) movapd %xmm1,nb130_iy(%esp) movapd %xmm2,nb130_iz(%esp) movl %ebx,nb130_ii3(%esp) ## clear vctot and i forces xorpd %xmm4,%xmm4 movapd %xmm4,nb130_vctot(%esp) movapd %xmm4,nb130_Vvdwtot(%esp) movapd %xmm4,nb130_fix(%esp) movapd %xmm4,nb130_fiy(%esp) movapd %xmm4,nb130_fiz(%esp) movl nb130_jindex(%ebp),%eax movl (%eax,%esi,4),%ecx ## jindex[n] movl 4(%eax,%esi,4),%edx ## jindex[n+1] subl %ecx,%edx ## number of innerloop atoms movl nb130_pos(%ebp),%esi movl nb130_faction(%ebp),%edi movl nb130_jjnr(%ebp),%eax shll $2,%ecx addl %ecx,%eax movl %eax,nb130_innerjjnr(%esp) ## pointer to jjnr[nj0] movl %edx,%ecx subl $2,%edx addl nb130_ninner(%esp),%ecx movl %ecx,nb130_ninner(%esp) addl $0,%edx movl %edx,nb130_innerk(%esp) ## number of innerloop atoms jge _nb_kernel130_ia32_sse2.nb130_unroll_loop jmp _nb_kernel130_ia32_sse2.nb130_checksingle_nb_kernel130_ia32_sse2.nb130_unroll_loop: ## twice unrolled innerloop here movl nb130_innerjjnr(%esp),%edx ## pointer to jjnr[k] movl (%edx),%eax movl 4(%edx),%ebx addl $8,nb130_innerjjnr(%esp) ## advance pointer (unrolled 2) movl nb130_charge(%ebp),%esi ## base of charge[] movlpd (%esi,%eax,8),%xmm3 movhpd (%esi,%ebx,8),%xmm3 movapd nb130_iq(%esp),%xmm5 mulpd %xmm5,%xmm3 ## qq movd %eax,%mm0 ## use mmx registers as temp storage movd %ebx,%mm1 movl nb130_type(%ebp),%esi movl (%esi,%eax,4),%eax movl (%esi,%ebx,4),%ebx movl nb130_vdwparam(%ebp),%esi shll %eax shll %ebx movl nb130_ntia(%esp),%edi addl %edi,%eax addl %edi,%ebx movlpd (%esi,%eax,8),%xmm6 ## c6a movlpd (%esi,%ebx,8),%xmm7 ## c6b movhpd 8(%esi,%eax,8),%xmm6 ## c6a c12a movhpd 8(%esi,%ebx,8),%xmm7 ## c6b c12b movapd %xmm6,%xmm4 unpcklpd %xmm7,%xmm4 unpckhpd %xmm7,%xmm6 movd %mm0,%eax movd %mm1,%ebx movapd %xmm4,nb130_c6(%esp) movapd %xmm6,nb130_c12(%esp) movl nb130_pos(%ebp),%esi ## base of pos[] leal (%eax,%eax,2),%eax ## replace jnr with j3 leal (%ebx,%ebx,2),%ebx ## move two coordinates to xmm0-xmm2 movlpd (%esi,%eax,8),%xmm0 movlpd 8(%esi,%eax,8),%xmm1 movlpd 16(%esi,%eax,8),%xmm2 movhpd (%esi,%ebx,8),%xmm0 movhpd 8(%esi,%ebx,8),%xmm1 movhpd 16(%esi,%ebx,8),%xmm2 ## move ix-iz to xmm4-xmm6 movapd nb130_ix(%esp),%xmm4 movapd nb130_iy(%esp),%xmm5 movapd nb130_iz(%esp),%xmm6 ## calc dr subpd %xmm0,%xmm4 subpd %xmm1,%xmm5 subpd %xmm2,%xmm6 ## store dr movapd %xmm4,nb130_dx(%esp) movapd %xmm5,nb130_dy(%esp) movapd %xmm6,nb130_dz(%esp) ## square it mulpd %xmm4,%xmm4 mulpd %xmm5,%xmm5 mulpd %xmm6,%xmm6 addpd %xmm5,%xmm4 addpd %xmm6,%xmm4 ## rsq in xmm4 cvtpd2ps %xmm4,%xmm5 rsqrtps %xmm5,%xmm5 cvtps2pd %xmm5,%xmm2 ## lu in low xmm2 ## lookup seed in xmm2 movapd %xmm2,%xmm5 ## copy of lu mulpd %xmm2,%xmm2 ## lu*lu movapd nb130_three(%esp),%xmm1 mulpd %xmm4,%xmm2 ## rsq*lu*lu movapd nb130_half(%esp),%xmm0 subpd %xmm2,%xmm1 ## 30-rsq*lu*lu mulpd %xmm5,%xmm1 mulpd %xmm0,%xmm1 ## xmm0=iter1 of rinv (new lu) movapd %xmm1,%xmm5 ## copy of lu mulpd %xmm1,%xmm1 ## lu*lu movapd nb130_three(%esp),%xmm2 mulpd %xmm4,%xmm1 ## rsq*lu*lu movapd nb130_half(%esp),%xmm0 subpd %xmm1,%xmm2 ## 30-rsq*lu*lu mulpd %xmm5,%xmm2 mulpd %xmm2,%xmm0 ## xmm0=rinv movapd %xmm0,%xmm6 movapd %xmm4,%xmm1 mulpd %xmm3,%xmm6 ## vcoul = rinv*qq movapd %xmm6,%xmm3 mulpd %xmm0,%xmm3 movapd %xmm3,nb130_fstmp(%esp) addpd nb130_vctot(%esp),%xmm6 movapd %xmm6,nb130_vctot(%esp) ## LJ table interaction. xmm0=rinv, xmm4=rsq mulpd %xmm0,%xmm4 ## xmm4=r mulpd nb130_tsc(%esp),%xmm4 cvttpd2pi %xmm4,%mm6 ## mm6 = lu idx cvtpi2pd %mm6,%xmm5 subpd %xmm5,%xmm4 movapd %xmm4,%xmm1 ## xmm1=eps movapd %xmm1,%xmm2 mulpd %xmm2,%xmm2 ## xmm2=eps2 pslld $3,%mm6 ## idx *= 8 movd %eax,%mm0
⌨️ 快捷键说明
复制代码Ctrl + C
搜索代码Ctrl + F
全屏模式F11
增大字号Ctrl + =
减小字号Ctrl + -
显示快捷键?