nb_kernel430_x86_64_sse.intel_syntax.s
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S
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;#;# $Id: nb_kernel430_x86_64_sse.intel_syntax.s,v 1.1.2.2 2006/09/22 08:32:51 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;#;# These files require GNU binutils 2.10 or later, since we;# use intel syntax for portability, or a recent version ;# of NASM that understands Extended 3DNow and SSE2 instructions.;# (NASM is normally only used with MS Visual C++).;# Since NASM and gnu as disagree on some definitions and use ;# completely different preprocessing options I have to introduce a;# trick: NASM uses ';' for comments, while gnu as uses '#' on x86.;# Gnu as treats ';' as a line break, i.e. ignores it. This is the;# reason why all comments need both symbols...;# The source is written for GNU as, with intel syntax. When you use;# NASM we redefine a couple of things. The false if-statement around ;# the following code is seen by GNU as, but NASM doesn't see it, so ;# the code inside is read by NASM but not gcc.; .if 0 # block below only read by NASM%define .section section%define .long dd%define .align align%define .globl global;# NASM only wants 'dword', not 'dword ptr'.%define ptr.equiv .equiv 2 %1 equ %2%endmacro; .endif # End of NASM-specific block; .intel_syntax noprefix # Line only read by gnu as.globl nb_kernel430_x86_64_sse.globl _nb_kernel430_x86_64_ssenb_kernel430_x86_64_sse: _nb_kernel430_x86_64_sse: ;# Room for return address and rbp (16 bytes).equiv nb430_fshift, 16.equiv nb430_gid, 24.equiv nb430_pos, 32.equiv nb430_faction, 40.equiv nb430_charge, 48.equiv nb430_p_facel, 56.equiv nb430_argkrf, 64.equiv nb430_argcrf, 72.equiv nb430_Vc, 80.equiv nb430_type, 88.equiv nb430_p_ntype, 96.equiv nb430_vdwparam, 104.equiv nb430_Vvdw, 112.equiv nb430_p_tabscale, 120.equiv nb430_VFtab, 128.equiv nb430_invsqrta, 136.equiv nb430_dvda, 144.equiv nb430_p_gbtabscale, 152.equiv nb430_GBtab, 160.equiv nb430_p_nthreads, 168.equiv nb430_count, 176.equiv nb430_mtx, 184.equiv nb430_outeriter, 192.equiv nb430_inneriter, 200.equiv nb430_work, 208 ;# stack offsets for local variables ;# bottom of stack is cache-aligned for sse use .equiv nb430_ix, 0.equiv nb430_iy, 16.equiv nb430_iz, 32.equiv nb430_iq, 48.equiv nb430_dx, 64.equiv nb430_dy, 80.equiv nb430_dz, 96.equiv nb430_eps, 112.equiv nb430_gbtsc, 128.equiv nb430_tsc, 144.equiv nb430_qq, 160.equiv nb430_c6, 176.equiv nb430_c12, 192.equiv nb430_epsgb, 208.equiv nb430_vctot, 224.equiv nb430_Vvdwtot, 240.equiv nb430_fix, 256.equiv nb430_fiy, 272.equiv nb430_fiz, 288.equiv nb430_half, 304.equiv nb430_three, 320.equiv nb430_r, 336.equiv nb430_isai, 352.equiv nb430_isaprod, 368.equiv nb430_dvdasum, 384.equiv nb430_gbscale, 400.equiv nb430_rinv, 416.equiv nb430_nri, 432.equiv nb430_iinr, 440.equiv nb430_jindex, 448.equiv nb430_jjnr, 456.equiv nb430_shift, 464.equiv nb430_shiftvec, 472.equiv nb430_facel, 480.equiv nb430_innerjjnr, 488.equiv nb430_ii, 496.equiv nb430_is3, 500.equiv nb430_ii3, 504.equiv nb430_ntia, 508.equiv nb430_innerk, 512.equiv nb430_n, 516.equiv nb430_nn1, 520.equiv nb430_ntype, 524.equiv nb430_nouter, 528.equiv nb430_ninner, 532 push rbp mov rbp, rsp push rbx emms push r12 push r13 push r14 push r15 sub rsp, 552 ;# local variable stack space (n*16+8) ;# zero 32-bit iteration counters mov eax, 0 mov [rsp + nb430_nouter], eax mov [rsp + nb430_ninner], eax mov edi, [rdi] mov [rsp + nb430_nri], edi mov [rsp + nb430_iinr], rsi mov [rsp + nb430_jindex], rdx mov [rsp + nb430_jjnr], rcx mov [rsp + nb430_shift], r8 mov [rsp + nb430_shiftvec], r9 mov rdi, [rbp + nb430_p_ntype] mov edi, [rdi] mov [rsp + nb430_ntype], edi mov rsi, [rbp + nb430_p_facel] movss xmm0, [rsi] movss [rsp + nb430_facel], xmm0 mov rax, [rbp + nb430_p_tabscale] movss xmm3, [rax] shufps xmm3, xmm3, 0 movaps [rsp + nb430_tsc], xmm3 mov rbx, [rbp + nb430_p_gbtabscale] movss xmm4, [rbx] shufps xmm4, xmm4, 0 movaps [rsp + nb430_gbtsc], xmm4 ;# create constant floating-point factors on stack mov eax, 0x3f000000 ;# half in IEEE (hex) mov [rsp + nb430_half], eax movss xmm1, [rsp + nb430_half] shufps xmm1, xmm1, 0 ;# splat to all elements movaps xmm2, xmm1 addps xmm2, xmm2 ;# one movaps xmm3, xmm2 addps xmm2, xmm2 ;# two addps xmm3, xmm2 ;# three movaps [rsp + nb430_half], xmm1 movaps [rsp + nb430_three], xmm3.nb430_threadloop: mov rsi, [rbp + nb430_count] ;# pointer to sync counter mov eax, [rsi].nb430_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 .nb430_spinlock ;# if(nn1>nri) nn1=nri mov ecx, [rsp + nb430_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 [rsp + nb430_n], eax mov [rsp + nb430_nn1], ebx sub ebx, eax ;# calc number of outer lists mov esi, eax ;# copy n to esi jg .nb430_outerstart jmp .nb430_end.nb430_outerstart: ;# ebx contains number of outer iterations add ebx, [rsp + nb430_nouter] mov [rsp + nb430_nouter], ebx.nb430_outer: mov rax, [rsp + nb430_shift] ;# rax = pointer into shift[] mov ebx, [rax + rsi*4] ;# ebx=shift[n] lea rbx, [rbx + rbx*2] ;# rbx=3*is mov [rsp + nb430_is3],ebx ;# store is3 mov rax, [rsp + nb430_shiftvec] ;# rax = base of shiftvec[] movss xmm0, [rax + rbx*4] movss xmm1, [rax + rbx*4 + 4] movss xmm2, [rax + rbx*4 + 8] mov rcx, [rsp + nb430_iinr] ;# rcx = pointer into iinr[] mov ebx, [rcx + rsi*4] ;# ebx =ii mov [rsp + nb430_ii], ebx mov rdx, [rbp + nb430_charge] movss xmm3, [rdx + rbx*4] mulss xmm3, [rsp + nb430_facel] shufps xmm3, xmm3, 0 mov rdx, [rbp + nb430_invsqrta] ;# load invsqrta[ii] movss xmm4, [rdx + rbx*4] shufps xmm4, xmm4, 0 mov rdx, [rbp + nb430_type] mov edx, [rdx + rbx*4] imul edx, [rsp + nb430_ntype] shl edx, 1 mov [rsp + nb430_ntia], edx lea rbx, [rbx + rbx*2] ;# rbx = 3*ii=ii3 mov rax, [rbp + nb430_pos] ;# rax = base of pos[] addss xmm0, [rax + rbx*4] addss xmm1, [rax + rbx*4 + 4] addss xmm2, [rax + rbx*4 + 8] movaps [rsp + nb430_iq], xmm3 movaps [rsp + nb430_isai], xmm4 shufps xmm0, xmm0, 0 shufps xmm1, xmm1, 0 shufps xmm2, xmm2, 0 movaps [rsp + nb430_ix], xmm0 movaps [rsp + nb430_iy], xmm1 movaps [rsp + nb430_iz], xmm2 mov [rsp + nb430_ii3], ebx ;# clear vctot and i forces xorps xmm4, xmm4 movaps [rsp + nb430_vctot], xmm4 movaps [rsp + nb430_Vvdwtot], xmm4 movaps [rsp + nb430_dvdasum], xmm4 movaps [rsp + nb430_fix], xmm4 movaps [rsp + nb430_fiy], xmm4 movaps [rsp + nb430_fiz], xmm4 mov rax, [rsp + nb430_jindex] mov ecx, [rax + rsi*4] ;# jindex[n] mov edx, [rax + rsi*4 + 4] ;# jindex[n+1] sub edx, ecx ;# number of innerloop atoms mov rsi, [rbp + nb430_pos] mov rdi, [rbp + nb430_faction] mov rax, [rsp + nb430_jjnr] shl ecx, 2 add rax, rcx mov [rsp + nb430_innerjjnr], rax ;# pointer to jjnr[nj0] mov ecx, edx sub edx, 4 add ecx, [rsp + nb430_ninner] mov [rsp + nb430_ninner], ecx add edx, 0 mov [rsp + nb430_innerk], edx ;# number of innerloop atoms jge .nb430_unroll_loop jmp .nb430_finish_inner.nb430_unroll_loop: ;# quad-unroll innerloop here mov rdx, [rsp + nb430_innerjjnr] ;# pointer to jjnr[k] mov eax, [rdx] mov ebx, [rdx + 4] mov ecx, [rdx + 8] mov edx, [rdx + 12] ;# eax-edx=jnr1-4 add qword ptr [rsp + nb430_innerjjnr], 16 ;# advance pointer (unrolled 4) ;# load isaj mov rsi, [rbp + nb430_invsqrta] movss xmm3, [rsi + rax*4] movss xmm4, [rsi + rcx*4] movss xmm6, [rsi + rbx*4] movss xmm7, [rsi + rdx*4] movaps xmm2, [rsp + nb430_isai] shufps xmm3, xmm6, 0 shufps xmm4, xmm7, 0 shufps xmm3, xmm4, 136 ;# 10001000 ;# all isaj in xmm3 mulps xmm2, xmm3 movaps [rsp + nb430_isaprod], xmm2 movaps xmm1, xmm2 mulps xmm1, [rsp + nb430_gbtsc] movaps [rsp + nb430_gbscale], xmm1 mov rsi, [rbp + nb430_charge] ;# base of charge[] movss xmm3, [rsi + rax*4] movss xmm4, [rsi + rcx*4] movss xmm6, [rsi + rbx*4] movss xmm7, [rsi + rdx*4] mulps xmm2, [rsp + nb430_iq] shufps xmm3, xmm6, 0 shufps xmm4, xmm7, 0 shufps xmm3, xmm4, 136 ;# 10001000 ;# all charges in xmm3 mulps xmm3, xmm2 movaps [rsp + nb430_qq], xmm3 ;# vdw parameters mov rsi, [rbp + nb430_type] mov r12d, [rsi + rax*4] mov r13d, [rsi + rbx*4] mov r14d, [rsi + rcx*4] mov r15d, [rsi + rdx*4] shl r12d, 1 shl r13d, 1 shl r14d, 1 shl r15d, 1 mov edi, [rsp + nb430_ntia] add r12d, edi add r13d, edi add r14d, edi add r15d, edi mov rsi, [rbp + nb430_vdwparam] movlps xmm3, [rsi + r12*4] movlps xmm7, [rsi + r14*4] movhps xmm3, [rsi + r13*4] movhps xmm7, [rsi + r15*4] movaps xmm0, xmm3 shufps xmm0, xmm7, 136 ;# 10001000 shufps xmm3, xmm7, 221 ;# 11011101 movaps [rsp + nb430_c6], xmm0 movaps [rsp + nb430_c12], xmm3 mov rsi, [rbp + nb430_pos] ;# base of pos[] lea r8, [rax + rax*2] ;# jnr lea r9, [rbx + rbx*2] lea r10, [rcx + rcx*2] lea r11, [rdx + rdx*2] ;# move four coordinates to xmm0-xmm2 movlps xmm4, [rsi + r8*4] movlps xmm5, [rsi + r10*4] movss xmm2, [rsi + r8*4 + 8] movss xmm6, [rsi + r10*4 + 8] movhps xmm4, [rsi + r9*4] movhps xmm5, [rsi + r11*4] movss xmm0, [rsi + r9*4 + 8] movss xmm1, [rsi + r11*4 + 8] shufps xmm2, xmm0, 0 shufps xmm6, xmm1, 0 movaps xmm0, xmm4 movaps xmm1, xmm4 shufps xmm2, xmm6, 136 ;# 10001000 shufps xmm0, xmm5, 136 ;# 10001000 shufps xmm1, xmm5, 221 ;# 11011101 ;# calc dr subps xmm0, [rsp + nb430_ix] subps xmm1, [rsp + nb430_iy] subps xmm2, [rsp + nb430_iz] ;# store dr movaps [rsp + nb430_dx], xmm0 movaps [rsp + nb430_dy], xmm1 movaps [rsp + nb430_dz], xmm2 movd mm0, r8 ;# store j3 movd mm1, r9 movd mm2, r10 movd mm3, r11 ;# square it mulps xmm0,xmm0 mulps xmm1,xmm1 mulps xmm2,xmm2 addps xmm0, xmm1 addps xmm0, xmm2 movaps xmm4, xmm0 ;# rsq in xmm4 rsqrtps xmm5, xmm4 ;# lookup seed in xmm5 movaps xmm2, xmm5 mulps xmm5, xmm5 movaps xmm1, [rsp + nb430_three] mulps xmm5, xmm4 ;# rsq*lu*lu movaps xmm0, [rsp + nb430_half] subps xmm1, xmm5 ;# 30-rsq*lu*lu mulps xmm1, xmm2 mulps xmm0, xmm1 ;# xmm0=rinv mulps xmm4, xmm0 ;# xmm4=r movaps [rsp + nb430_r], xmm4 movaps [rsp + nb430_rinv], xmm0 movaps xmm8, xmm4 ;# r mulps xmm4, [rsp + nb430_gbscale] ;# rgbtab mulps xmm8, [rsp + nb430_tsc] ;# rtab ;# truncate and convert to integers cvttps2dq xmm5, xmm4 ;# gb cvttps2dq xmm9, xmm8 ;# lj ;# convert back to float cvtdq2ps xmm6, xmm5 ;# gb cvtdq2ps xmm10, xmm9 ;# lj ;# multiply by 4 and 8, respectively pslld xmm5, 2 ;# gb pslld xmm9, 3 ;# lj ;# move to integer registers movhlps xmm7, xmm5 ;# gb movhlps xmm11, xmm9 ;# lj movd r8d, xmm5 ;# gb movd r12d, xmm9 ;# lj movd r10d, xmm7 ;# gb movd r14d, xmm11 ;# lj pshufd xmm5, xmm5, 1 ;# gb pshufd xmm9, xmm9, 1 ;# lj pshufd xmm7, xmm7, 1 ;# gb pshufd xmm11, xmm11, 1 ;# lj movd r9d, xmm5 ;# gb movd r13d, xmm9 ;# lj movd r11d, xmm7 ;# gb
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