nb_kernel300_ia32_sse.intel_syntax.s
来自「最著名最快的分子模拟软件」· S 代码 · 共 1,533 行 · 第 1/3 页
S
1,533 行
mov eax, [esi].nb300nf_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 .nb300nf_spinlock ;# if(nn1>nri) nn1=nri mov ecx, [esp + nb300nf_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 + nb300nf_n], eax mov [esp + nb300nf_nn1], ebx sub ebx, eax ;# calc number of outer lists mov esi, eax ;# copy n to esi jg .nb300nf_outerstart jmp .nb300nf_end.nb300nf_outerstart: ;# ebx contains number of outer iterations add ebx, [esp + nb300nf_nouter] mov [esp + nb300nf_nouter], ebx.nb300nf_outer: mov eax, [ebp + nb300nf_shift] ;# eax = pointer into shift[] mov ebx, [eax + esi*4] ;# ebx=shift[n] lea ebx, [ebx + ebx*2] ;# ebx=3*is mov [esp + nb300nf_is3],ebx ;# store is3 mov eax, [ebp + nb300nf_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 + nb300nf_iinr] ;# ecx = pointer into iinr[] mov ebx, [ecx + esi*4] ;# ebx =ii mov edx, [ebp + nb300nf_charge] movss xmm3, [edx + ebx*4] mulss xmm3, [esp + nb300nf_facel] shufps xmm3, xmm3, 0 lea ebx, [ebx + ebx*2] ;# ebx = 3*ii=ii3 mov eax, [ebp + nb300nf_pos] ;# eax = base of pos[] addss xmm0, [eax + ebx*4] addss xmm1, [eax + ebx*4 + 4] addss xmm2, [eax + ebx*4 + 8] movaps [esp + nb300nf_iq], xmm3 shufps xmm0, xmm0, 0 shufps xmm1, xmm1, 0 shufps xmm2, xmm2, 0 movaps [esp + nb300nf_ix], xmm0 movaps [esp + nb300nf_iy], xmm1 movaps [esp + nb300nf_iz], xmm2 mov [esp + nb300nf_ii3], ebx ;# clear vctot and i forces xorps xmm4, xmm4 movaps [esp + nb300nf_vctot], xmm4 mov eax, [ebp + nb300nf_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 + nb300nf_pos] mov eax, [ebp + nb300nf_jjnr] shl ecx, 2 add eax, ecx mov [esp + nb300nf_innerjjnr], eax ;# pointer to jjnr[nj0] mov ecx, edx sub edx, 4 add ecx, [esp + nb300nf_ninner] mov [esp + nb300nf_ninner], ecx add edx, 0 mov [esp + nb300nf_innerk], edx ;# number of innerloop atoms jge .nb300nf_unroll_loop jmp .nb300nf_finish_inner.nb300nf_unroll_loop: ;# quad-unroll innerloop here mov edx, [esp + nb300nf_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 + nb300nf_innerjjnr], 16 ;# advance pointer (unrolled 4) mov esi, [ebp + nb300nf_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 xmm2, [esp + nb300nf_iq] shufps xmm3, xmm6, 0 shufps xmm4, xmm7, 0 shufps xmm3, xmm4, 136 ;# constant 10001000 ;# all charges in xmm3 mulps xmm3, xmm2 movaps [esp + nb300nf_qq], xmm3 mov esi, [ebp + nb300nf_pos] ;# base of pos[] lea eax, [eax + eax*2] ;# replace jnr with j3 lea ebx, [ebx + ebx*2] 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] movlps xmm5, [esi + ecx*4] movss xmm2, [esi + eax*4 + 8] movss xmm6, [esi + ecx*4 + 8] movhps xmm4, [esi + ebx*4] movhps xmm5, [esi + edx*4] movss xmm0, [esi + ebx*4 + 8] movss xmm1, [esi + edx*4 + 8] shufps xmm2, xmm0, 0 shufps xmm6, xmm1, 0 movaps xmm0, xmm4 movaps xmm1, xmm4 shufps xmm2, xmm6, 136 ;# constant 10001000 shufps xmm0, xmm5, 136 ;# constant 10001000 shufps xmm1, xmm5, 221 ;# constant 11011101 ;# move ix-iz to xmm4-xmm6 movaps xmm4, [esp + nb300nf_ix] movaps xmm5, [esp + nb300nf_iy] movaps xmm6, [esp + nb300nf_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 + nb300nf_three] mulps xmm5, xmm4 ;# rsq*lu*lu movaps xmm0, [esp + nb300nf_half] subps xmm1, xmm5 ;# constant 30-rsq*lu*lu mulps xmm1, xmm2 mulps xmm0, xmm1 ;# xmm0=rinv mulps xmm4, xmm0 ;# xmm4=r mulps xmm4, [esp + nb300nf_tsc] movhlps xmm5, xmm4 cvttps2pi mm6, xmm4 cvttps2pi mm7, xmm5 ;# mm6/mm7 contain lu indices cvtpi2ps xmm6, mm6 cvtpi2ps xmm5, mm7 movlhps xmm6, xmm5 subps xmm4, xmm6 movaps xmm1, xmm4 ;# 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 esi, [ebp + nb300nf_VFtab] movd eax, mm6 psrlq mm6, 32 movd ecx, mm7 psrlq mm7, 32 movd ebx, mm6 movd edx, mm7 movlps xmm5, [esi + eax*4] movlps xmm7, [esi + ecx*4] movhps xmm5, [esi + ebx*4] movhps xmm7, [esi + edx*4] ;# got half coulomb table movaps xmm4, xmm5 shufps xmm4, xmm7, 136 ;# constant 10001000 shufps xmm5, xmm7, 221 ;# constant 11011101 movlps xmm7, [esi + eax*4 + 8] movlps xmm3, [esi + ecx*4 + 8] movhps xmm7, [esi + ebx*4 + 8] movhps xmm3, [esi + edx*4 + 8] ;# other half of coulomb table movaps xmm6, xmm7 shufps xmm6, xmm3, 136 ;# constant 10001000 shufps xmm7, xmm3, 221 ;# constant 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 xmm3, [esp + nb300nf_qq] mulps xmm5, xmm1 ;# xmm5=eps*Fp addps xmm5, xmm4 ;# xmm5=VV mulps xmm5, xmm3 ;# vcoul=qq*VV ;# at this point xmm5 contains vcoul ;# increment vcoul - then we can get rid of mm5 ;# update vctot addps xmm5, [esp + nb300nf_vctot] movaps [esp + nb300nf_vctot], xmm5 ;# should we do one more iteration? sub dword ptr [esp + nb300nf_innerk], 4 jl .nb300nf_finish_inner jmp .nb300nf_unroll_loop.nb300nf_finish_inner: ;# check if at least two particles remain add dword ptr [esp + nb300nf_innerk], 4 mov edx, [esp + nb300nf_innerk] and edx, 2 jnz .nb300nf_dopair jmp .nb300nf_checksingle.nb300nf_dopair: mov esi, [ebp + nb300nf_charge] mov ecx, [esp + nb300nf_innerjjnr] mov eax, [ecx] mov ebx, [ecx + 4] add dword ptr [esp + nb300nf_innerjjnr], 8 xorps xmm7, xmm7 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 mulps xmm3, [esp + nb300nf_iq] movlhps xmm3, xmm7 movaps [esp + nb300nf_qq], xmm3 mov edi, [ebp + nb300nf_pos] 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] 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 ix-iz to xmm4-xmm6 xorps xmm7, xmm7 movaps xmm4, [esp + nb300nf_ix] movaps xmm5, [esp + nb300nf_iy] movaps xmm6, [esp + nb300nf_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 + nb300nf_three] mulps xmm5, xmm4 ;# rsq*lu*lu movaps xmm0, [esp + nb300nf_half] subps xmm1, xmm5 ;# constant 30-rsq*lu*lu mulps xmm1, xmm2 mulps xmm0, xmm1 ;# xmm0=rinv mulps xmm4, xmm0 ;# xmm4=r mulps xmm4, [esp + nb300nf_tsc] cvttps2pi mm6, xmm4 ;# mm6 contain lu indices cvtpi2ps xmm6, mm6 subps xmm4, xmm6 movaps xmm1, xmm4 ;# xmm1=eps movaps xmm2, xmm1 mulps xmm2, xmm2 ;# xmm2=eps2 pslld mm6, 2 mov esi, [ebp + nb300nf_VFtab] movd ecx, mm6 psrlq mm6, 32 movd edx, mm6 movlps xmm5, [esi + ecx*4] movhps xmm5, [esi + edx*4] ;# got half coulomb table movaps xmm4, xmm5 shufps xmm4, xmm4, 136 ;# constant 10001000 shufps xmm5, xmm7, 221 ;# constant 11011101 movlps xmm7, [esi + ecx*4 + 8] movhps xmm7, [esi + edx*4 + 8] movaps xmm6, xmm7 shufps xmm6, xmm6, 136 ;# constant 10001000 shufps xmm7, xmm7, 221 ;# constant 11011101 ;# table ready in xmm4-xmm7 mulps xmm6, xmm1 ;# xmm6=Geps mulps xmm7, xmm2 ;# xmm7=Heps2 addps xmm5, xmm6 addps xmm5, xmm7 ;# xmm5=Fp movaps xmm3, [esp + nb300nf_qq] mulps xmm5, xmm1 ;# xmm5=eps*Fp addps xmm5, xmm4 ;# xmm5=VV mulps xmm5, xmm3 ;# vcoul=qq*VV ;# at this point mm5 contains vcoul ;# increment vcoul - then we can get rid of mm5 ;# update vctot addps xmm5, [esp + nb300nf_vctot] movaps [esp + nb300nf_vctot], xmm5 .nb300nf_checksingle: mov edx, [esp + nb300nf_innerk] and edx, 1 jnz .nb300nf_dosingle jmp .nb300nf_updateouterdata.nb300nf_dosingle: mov esi, [ebp + nb300nf_charge] mov edi, [ebp + nb300nf_pos] mov ecx, [esp + nb300nf_innerjjnr] mov eax, [ecx] xorps xmm6, xmm6 movss xmm6, [esi + eax*4] ;# xmm6(0) has the charge mulps xmm6, [esp + nb300nf_iq] movaps [esp + nb300nf_qq], xmm6 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] movaps xmm4, [esp + nb300nf_ix] movaps xmm5, [esp + nb300nf_iy] movaps xmm6, [esp + nb300nf_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 + nb300nf_three] mulps xmm5, xmm4 ;# rsq*lu*lu movaps xmm0, [esp + nb300nf_half] subps xmm1, xmm5 ;# constant 30-rsq*lu*lu mulps xmm1, xmm2 mulps xmm0, xmm1 ;# xmm0=rinv mulps xmm4, xmm0 ;# xmm4=r mulps xmm4, [esp + nb300nf_tsc] cvttps2pi mm6, xmm4 ;# mm6 contain lu indices cvtpi2ps xmm6, mm6 subps xmm4, xmm6 movaps xmm1, xmm4 ;# xmm1=eps movaps xmm2, xmm1 mulps xmm2, xmm2 ;# xmm2=eps2 pslld mm6, 2 mov esi, [ebp + nb300nf_VFtab] movd ebx, mm6 movlps xmm4, [esi + ebx*4] movlps xmm6, [esi + ebx*4 + 8] movaps xmm5, xmm4 movaps xmm7, xmm6 shufps xmm5, xmm5, 1 shufps xmm7, xmm7, 1 ;# table ready in xmm4-xmm7 mulps xmm6, xmm1 ;# xmm6=Geps mulps xmm7, xmm2 ;# xmm7=Heps2 addps xmm5, xmm6 addps xmm5, xmm7 ;# xmm5=Fp movaps xmm3, [esp + nb300nf_qq] mulps xmm5, xmm1 ;# xmm5=eps*Fp addps xmm5, xmm4 ;# xmm5=VV mulps xmm5, xmm3 ;# vcoul=qq*VV ;# at this point mm5 contains vcoul ;# increment vcoul - then we can get rid of mm5 ;# update vctot addss xmm5, [esp + nb300nf_vctot] movss [esp + nb300nf_vctot], xmm5 .nb300nf_updateouterdata: ;# get n from stack mov esi, [esp + nb300nf_n] ;# get group index for i particle mov edx, [ebp + nb300nf_gid] ;# base of gid[] mov edx, [edx + esi*4] ;# ggid=gid[n] ;# accumulate total potential energy and update it movaps xmm7, [esp + nb300nf_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 + nb300nf_Vc] addss xmm7, [eax + edx*4] ;# move back to mem movss [eax + edx*4], xmm7 ;# finish if last mov ecx, [esp + nb300nf_nn1] ;# esi already loaded with n inc esi sub ecx, esi jecxz .nb300nf_outerend ;# not last, iterate outer loop once more! mov [esp + nb300nf_n], esi jmp .nb300nf_outer.nb300nf_outerend: ;# check if more outer neighborlists remain mov ecx, [esp + nb300nf_nri] ;# esi already loaded with n above sub ecx, esi jecxz .nb300nf_end ;# non-zero, do one more workunit jmp .nb300nf_threadloop.nb300nf_end: emms mov eax, [esp + nb300nf_nouter] mov ebx, [esp + nb300nf_ninner] mov ecx, [ebp + nb300nf_outeriter] mov edx, [ebp + nb300nf_inneriter] mov [ecx], eax mov [edx], ebx mov eax, [esp + nb300nf_salign] add esp, eax add esp, 188 pop edi pop esi pop edx pop ecx pop ebx pop eax leave ret
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