nb_kernel304_ia32_sse.intel_syntax.s
来自「最著名最快的分子模拟软件」· S 代码 · 共 2,258 行 · 第 1/5 页
S
2,258 行
movlps xmm7, [esi + ecx*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 + ebx*4 + 8] movlps xmm3, [esi + ecx*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 mulps xmm7, [esp + nb304_two] ;# two*Heps2 xorps xmm3, xmm3 ;# fetch charges to xmm3 (temporary) movss xmm3, [esp + nb304_qqMH] movhps xmm3, [esp + nb304_qqHH] addps xmm7, xmm6 addps xmm7, xmm5 ;# xmm7=FF mulps xmm5, xmm1 ;# xmm5=eps*Fp addps xmm5, xmm4 ;# xmm5=VV mulps xmm5, xmm3 ;# vcoul=qq*VV mulps xmm3, xmm7 ;# fijC=FF*qq ;# at this point xmm5 contains vcoul and xmm3 fijC addps xmm5, [esp + nb304_vctot] movaps [esp + nb304_vctot], xmm5 xorps xmm1, xmm1 mulps xmm3, [esp + nb304_tsc] mulps xmm3, xmm0 subps xmm1, xmm3 movaps xmm0, xmm1 movaps xmm2, xmm1 mulps xmm0, [esp + nb304_dxH1M] mulps xmm1, [esp + nb304_dyH1M] mulps xmm2, [esp + nb304_dzH1M] ;# update forces H1 - j water movaps xmm3, [esp + nb304_fjxM] movaps xmm4, [esp + nb304_fjyM] movaps xmm5, [esp + nb304_fjzM] subps xmm3, xmm0 subps xmm4, xmm1 subps xmm5, xmm2 movaps [esp + nb304_fjxM], xmm3 movaps [esp + nb304_fjyM], xmm4 movaps [esp + nb304_fjzM], xmm5 addps xmm0, [esp + nb304_fixH1] addps xmm1, [esp + nb304_fiyH1] addps xmm2, [esp + nb304_fizH1] movaps [esp + nb304_fixH1], xmm0 movaps [esp + nb304_fiyH1], xmm1 movaps [esp + nb304_fizH1], xmm2 ;# do table for H2 - j water interaction movaps xmm0, [esp + nb304_rinvH2M] movaps xmm1, [esp + nb304_rsqH2M] mulps xmm1, xmm0 ;# xmm0=rinv, xmm1=r mulps xmm1, [esp + nb304_tsc] movhlps xmm2, xmm1 cvttps2pi mm6, xmm1 cvttps2pi mm7, xmm2 ;# mm6/mm7 contain lu indices cvtpi2ps xmm3, mm6 cvtpi2ps xmm2, mm7 movlhps xmm3, xmm2 subps xmm1, xmm3 ;# xmm1=eps movaps xmm2, xmm1 mulps xmm2, xmm2 ;# xmm2=eps2 pslld mm6, 2 pslld mm7, 2 movd ebx, mm6 movd ecx, mm7 psrlq mm7, 32 movd edx, mm7 ;# table indices in ebx,ecx,edx movlps xmm5, [esi + ebx*4] movlps xmm7, [esi + ecx*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 + ebx*4 + 8] movlps xmm3, [esi + ecx*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 mulps xmm7, [esp + nb304_two] ;# two*Heps2 xorps xmm3, xmm3 ;# fetch charges to xmm3 (temporary) movss xmm3, [esp + nb304_qqMH] movhps xmm3, [esp + nb304_qqHH] addps xmm7, xmm6 addps xmm7, xmm5 ;# xmm7=FF mulps xmm5, xmm1 ;# xmm5=eps*Fp addps xmm5, xmm4 ;# xmm5=VV mulps xmm5, xmm3 ;# vcoul=qq*VV mulps xmm3, xmm7 ;# fijC=FF*qq ;# at this point xmm5 contains vcoul and xmm3 fijC addps xmm5, [esp + nb304_vctot] movaps [esp + nb304_vctot], xmm5 xorps xmm1, xmm1 mulps xmm3, [esp + nb304_tsc] mulps xmm3, xmm0 subps xmm1, xmm3 movaps xmm0, xmm1 movaps xmm2, xmm1 mulps xmm0, [esp + nb304_dxH2M] mulps xmm1, [esp + nb304_dyH2M] mulps xmm2, [esp + nb304_dzH2M] movaps xmm3, [esp + nb304_fjxM] movaps xmm4, [esp + nb304_fjyM] movaps xmm5, [esp + nb304_fjzM] subps xmm3, xmm0 subps xmm4, xmm1 subps xmm5, xmm2 mov esi, [ebp + nb304_faction] movaps [esp + nb304_fjxM], xmm3 movaps [esp + nb304_fjyM], xmm4 movaps [esp + nb304_fjzM], xmm5 addps xmm0, [esp + nb304_fixH2] addps xmm1, [esp + nb304_fiyH2] addps xmm2, [esp + nb304_fizH2] movaps [esp + nb304_fixH2], xmm0 movaps [esp + nb304_fiyH2], xmm1 movaps [esp + nb304_fizH2], xmm2 ;# update j water forces from local variables movlps xmm0, [esi + eax*4 + 36] movlps xmm1, [esi + eax*4 + 12] movhps xmm1, [esi + eax*4 + 24] movaps xmm3, [esp + nb304_fjxM] movaps xmm4, [esp + nb304_fjyM] movaps xmm5, [esp + nb304_fjzM] movaps xmm6, xmm5 movaps xmm7, xmm5 shufps xmm6, xmm6, 2 ;# constant 00000010 shufps xmm7, xmm7, 3 ;# constant 00000011 addss xmm5, [esi + eax*4 + 44] addss xmm6, [esi + eax*4 + 20] addss xmm7, [esi + eax*4 + 32] movss [esi + eax*4 + 44], xmm5 movss [esi + eax*4 + 20], xmm6 movss [esi + eax*4 + 32], xmm7 movaps xmm5, xmm3 unpcklps xmm3, xmm4 unpckhps xmm5, xmm4 addps xmm0, xmm3 addps xmm1, xmm5 movlps [esi + eax*4 + 36], xmm0 movlps [esi + eax*4 + 12], xmm1 movhps [esi + eax*4 + 24], xmm1 dec dword ptr [esp + nb304_innerk] jz .nb304_updateouterdata jmp .nb304_single_loop.nb304_updateouterdata: mov ecx, [esp + nb304_ii3] mov edi, [ebp + nb304_faction] mov esi, [ebp + nb304_fshift] mov edx, [esp + nb304_is3] ;# accumulate H1 i forces in xmm0, xmm1, xmm2 movaps xmm0, [esp + nb304_fixH1] movaps xmm1, [esp + nb304_fiyH1] movaps xmm2, [esp + nb304_fizH1] movhlps xmm3, xmm0 movhlps xmm4, xmm1 movhlps xmm5, xmm2 addps xmm0, xmm3 addps xmm1, xmm4 addps xmm2, xmm5 ;# sum is in 1/2 in xmm0-xmm2 movaps xmm3, xmm0 movaps xmm4, xmm1 movaps xmm5, xmm2 shufps xmm3, xmm3, 1 shufps xmm4, xmm4, 1 shufps xmm5, xmm5, 1 addss xmm0, xmm3 addss xmm1, xmm4 addss xmm2, xmm5 ;# xmm0-xmm2 has single force in pos0 ;# increment i force movss xmm3, [edi + ecx*4 + 12] movss xmm4, [edi + ecx*4 + 16] movss xmm5, [edi + ecx*4 + 20] addss xmm3, xmm0 addss xmm4, xmm1 addss xmm5, xmm2 movss [edi + ecx*4 + 12], xmm3 movss [edi + ecx*4 + 16], xmm4 movss [edi + ecx*4 + 20], xmm5 ;# accumulate force in xmm6/xmm7 for fshift movaps xmm6, xmm0 movss xmm7, xmm2 movlhps xmm6, xmm1 shufps xmm6, xmm6, 8 ;# constant 00001000 ;# accumulate H2 i forces in xmm0, xmm1, xmm2 movaps xmm0, [esp + nb304_fixH2] movaps xmm1, [esp + nb304_fiyH2] movaps xmm2, [esp + nb304_fizH2] movhlps xmm3, xmm0 movhlps xmm4, xmm1 movhlps xmm5, xmm2 addps xmm0, xmm3 addps xmm1, xmm4 addps xmm2, xmm5 ;# sum is in 1/2 in xmm0-xmm2 movaps xmm3, xmm0 movaps xmm4, xmm1 movaps xmm5, xmm2 shufps xmm3, xmm3, 1 shufps xmm4, xmm4, 1 shufps xmm5, xmm5, 1 addss xmm0, xmm3 addss xmm1, xmm4 addss xmm2, xmm5 ;# xmm0-xmm2 has single force in pos0 ;# increment i force movss xmm3, [edi + ecx*4 + 24] movss xmm4, [edi + ecx*4 + 28] movss xmm5, [edi + ecx*4 + 32] addss xmm3, xmm0 addss xmm4, xmm1 addss xmm5, xmm2 movss [edi + ecx*4 + 24], xmm3 movss [edi + ecx*4 + 28], xmm4 movss [edi + ecx*4 + 32], xmm5 ;# accumulate force in xmm6/xmm7 for fshift addss xmm7, xmm2 movlhps xmm0, xmm1 shufps xmm0, xmm0, 8 ;# constant 00001000 addps xmm6, xmm0 ;# accumulate M i forces in xmm0, xmm1, xmm2 movaps xmm0, [esp + nb304_fixM] movaps xmm1, [esp + nb304_fiyM] movaps xmm2, [esp + nb304_fizM] movhlps xmm3, xmm0 movhlps xmm4, xmm1 movhlps xmm5, xmm2 addps xmm0, xmm3 addps xmm1, xmm4 addps xmm2, xmm5 ;# sum is in 1/2 in xmm0-xmm2 movaps xmm3, xmm0 movaps xmm4, xmm1 movaps xmm5, xmm2 shufps xmm3, xmm3, 1 shufps xmm4, xmm4, 1 shufps xmm5, xmm5, 1 addss xmm0, xmm3 addss xmm1, xmm4 addss xmm2, xmm5 ;# xmm0-xmm2 has single force in pos0 ;# increment i force movss xmm3, [edi + ecx*4 + 36] movss xmm4, [edi + ecx*4 + 40] movss xmm5, [edi + ecx*4 + 44] addss xmm3, xmm0 addss xmm4, xmm1 addss xmm5, xmm2 movss [edi + ecx*4 + 36], xmm3 movss [edi + ecx*4 + 40], xmm4 movss [edi + ecx*4 + 44], xmm5 ;# accumulate force in xmm6/xmm7 for fshift addss xmm7, xmm2 movlhps xmm0, xmm1 shufps xmm0, xmm0, 8 ;# constant 00001000 addps xmm6, xmm0 ;# increment fshift force movlps xmm3, [esi + edx*4] movss xmm4, [esi + edx*4 + 8] addps xmm3, xmm6 addss xmm4, xmm7 movlps [esi + edx*4], xmm3 movss [esi + edx*4 + 8], xmm4 ;# get n from stack mov esi, [esp + nb304_n] ;# get group index for i particle mov edx, [ebp + nb304_gid] ;# base of gid[] mov edx, [edx + esi*4] ;# ggid=gid[n] ;# accumulate total potential energy and update it movaps xmm7, [esp + nb304_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 + nb304_Vc] addss xmm7, [eax + edx*4] ;# move back to mem movss [eax + edx*4], xmm7 ;# finish if last mov ecx, [esp + nb304_nn1] ;# esi already loaded with n inc esi sub ecx, esi jecxz .nb304_outerend ;# not last, iterate outer loop once more! mov [esp + nb304_n], esi jmp .nb304_outer.nb304_outerend: ;# check if more outer neighborlists remain mov ecx, [esp + nb304_nri] ;# esi already loaded with n above sub ecx, esi jecxz .nb304_end ;# non-zero, do one more workunit jmp .nb304_threadloop.nb304_end: emms mov eax, [esp + nb304_nouter] mov ebx, [esp + nb304_ninner] mov ecx, [ebp + nb304_outeriter] mov edx, [ebp + nb304_inneriter] mov [ecx], eax mov [edx], ebx mov eax, [esp + nb304_salign] add esp, eax add esp, 1464 pop edi pop esi pop edx pop ecx pop ebx pop eax leave ret .globl nb_kernel304nf_ia32_sse.globl _nb_kernel304nf_ia32_ssenb_kernel304nf_ia32_sse: _nb_kernel304nf_ia32_sse: .equiv nb304nf_p_nri, 8.equiv nb304nf_iinr, 12.equiv nb304nf_jindex, 16.equiv nb304nf_jjnr, 20.equiv nb304nf_shift, 24.equiv nb304nf_shiftvec, 28.equiv nb304nf_fshift, 32.equiv nb304nf_gid, 36.equiv nb304nf_pos, 40.equiv nb304nf_faction, 44.equiv nb304nf_charge, 48.equiv nb304nf_p_facel, 52.equiv nb304nf_argkrf, 56.equiv nb304nf_argcrf, 60.equiv nb304nf_Vc, 64.equiv nb304nf_type, 68.equiv nb304nf_p_ntype, 72.equiv nb304nf_vdwparam, 76.equiv nb304nf_Vvdw, 80.equiv nb304nf_p_tabscale, 84.equiv nb304nf_VFtab, 88.equiv nb304nf_invsqrta, 92.equiv nb304nf_dvda, 96.equiv nb304nf_p_gbtabscale, 100.equiv nb304nf_GBtab, 104.equiv nb304nf_p_nthreads, 108.equiv nb304nf_count, 112.equiv nb304nf_mtx, 116.equiv nb304nf_outeriter, 120.equiv nb304nf_inneriter, 124.equiv nb304nf_work, 128 ;# stack offsets for local variables ;# bottom of stack is cache-aligned for sse use .equiv nb304nf_ixH1, 0.equiv nb304nf_iyH1, 16.equiv nb304nf_izH1, 32.equiv nb304nf_ixH2, 48.equiv nb304nf_iyH2, 64.equiv nb304nf_izH2, 80.equiv nb304nf_ixM, 96.equiv nb304nf_iyM, 112.equiv nb304nf_izM, 128.equiv nb304nf_jxH1, 144.equiv nb304nf_jyH1, 160.equiv nb304nf_jzH1, 176.equiv nb304nf_jxH2, 192.equiv nb304nf_jyH2, 208.equiv nb304nf_jzH2, 224.equiv nb304nf_jxM, 240.equiv nb304nf_jyM, 256.equiv nb304nf_jzM, 272.equiv nb304nf_qqHH, 288.equiv nb304nf_qqMH, 304.equiv nb304nf_qqMM, 320.equiv nb304nf_tsc, 336.equiv nb304nf_vctot, 352.equiv nb304nf_half, 368.equiv nb304nf_three, 384.equiv nb304nf_rsqH1H1, 400.equiv nb304nf_rsqH1H2, 416.equiv nb304nf_rsqH1M, 432.equiv nb304nf_rsqH2H1, 448.equiv nb304nf_rsqH2H2, 464.equiv nb304nf_rsqH2M, 480.equiv nb304nf_rsqMH1, 496.equiv nb304nf_rsqMH2, 512.equiv nb304nf_rsqMM, 528.equiv nb304nf_rinvH1H1, 544.equiv nb304nf_rinvH1H2, 560.equiv nb304nf_rinvH1
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