version 1.19, 2004/01/07 06:53:11 |
version 1.26, 2004/01/09 03:48:58 |
Line 112 def jacobi(N,A,W){ |
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Line 112 def jacobi(N,A,W){ |
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return 1; |
return 1; |
} |
} |
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def interval2value(A,Vars){ |
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B=atl(A)$ |
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if(length(B)>2){ |
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print("bug")$ |
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return []$ |
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} |
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else if(length(B)==0){ |
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if(fop(A)==0) |
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return [Vars,1]$ |
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else |
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return []$ |
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} |
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else if(length(B)==1){ |
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C=fargs(B[0])$ |
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D=vars(C)$ |
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E=solve(C,D)$ |
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if(fop(B[0])==15) |
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return [Vars,E[0][1]+1]$ |
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else if(fop(B[0])==11) |
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return [Vars,E[0][1]-1]$ |
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else if(fop(B[0])==8) |
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return [Vars,E[0][1]]$ |
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else |
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return []$ |
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} |
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else{ |
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C=fargs(B[0])$ |
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D=vars(C)$ |
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E=solve(C,D)$ |
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C=fargs(B[1])$ |
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D=vars(C)$ |
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F=solve(C,D)$ |
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return [Vars,(E[0][1]+F[0][1])/2]$ |
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} |
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} |
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def fixpointmain(F,Vars){ |
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RET=[]$ |
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for(I=length(Vars)-1;I>=1;I--){ |
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for(H=[],J=0;J<I;J++) |
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H=cons(Vars[J],H)$ |
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G=interval2value(qe(ex(H,F)),Vars[I])$ |
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if(G==[]) |
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return RET$ |
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else |
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RET=cons(G,RET)$ |
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F=subf(F,G[0],G[1])$ |
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} |
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G=interval2value(simpl(F),Vars[0])$ |
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if(G==[]) |
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return RET$ |
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else |
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RET=cons(G,RET)$ |
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return RET$ |
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} |
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def fixedpoint(A,FLAG){ |
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Vars=vars(A)$ |
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N=length(A)$ |
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if (FLAG==0) |
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for(F=@true,I=0;I < N; I++ ) { F = F @&& A[I] @> 0$ } |
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else if (FLAG==1) |
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for(F=@true,I=0;I < N; I++ ) { F = F @&& A[I] @< 0$ } |
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return fixpointmain(F,Vars)$ |
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} |
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def nonzerovec(A){ |
def nonzerovec(A){ |
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for(I=0;I<size(A)[0];I++) |
for(I=0;I<size(A)[0];I++) |
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return A$ |
return A$ |
} |
} |
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def perm(I,P,TMP){ |
def wsort(A,B,C,ID){ |
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if(I>0){ |
D=newvect(length(B))$ |
TMP=perm(I-1,P,TMP)$ |
for(I=0;I<length(B);I++) |
for(J=I-1;J>=0;J--){ |
D[I]=[A[I],B[I],C[I]]$ |
T=P[I]$ |
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P[I]=P[J]$ |
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P[J]=T$ |
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TMP=perm(I-1,P,TMP)$ |
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T=P[I]$ |
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P[I]=P[J]$ |
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P[J]=T$ |
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} |
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return TMP$ |
D=bsort(D)$ |
} |
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else{ |
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for(TMP0=[],K=0;K<size(P)[0];K++) |
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TMP0=cons(P[K],TMP0)$ |
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TMP=cons(TMP0,TMP)$ |
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return TMP$ |
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} |
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} |
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def marge(A,B){ |
for(E=[],I=0;I<length(B);I++) |
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E=cons(D[I][1],E)$ |
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E=reverse(E)$ |
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RET=[]$ |
for(F=[],I=0;I<length(B);I++) |
for(I=0;I<length(A);I++) |
F=cons(D[I][2],F)$ |
for(J=0;J<length(B);J++) |
F=reverse(F)$ |
RET=cons(append(A[I],B[J]),RET)$ |
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return RET$ |
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} |
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def wsort(A,B,C,FLAG,ID){ |
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if(FLAG==0){ |
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D=newvect(length(B))$ |
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for(I=0;I<length(B);I++) |
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D[I]=[A[I],B[I],C[I]]$ |
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D=bsort(D)$ |
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E=[]$ |
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for(I=0;I<length(B);I++) |
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E=cons(D[I][1],E)$ |
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E=reverse(E)$ |
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F=[]$ |
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for(I=0;I<length(B);I++) |
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F=cons(D[I][2],F)$ |
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F=reverse(F)$ |
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return [[ID,E,F]]$ |
return [[ID,E,F]]$ |
} |
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else{ |
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D=newvect(length(B))$ |
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for(I=0;I<length(B);I++) |
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D[I]=[A[I],B[I],C[I]]$ |
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D=qsort(D,worder)$ |
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D0=[]$ |
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for(I=0,J=0,TMP=[],X=0;I<size(D)[0];I++){ |
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if(X==D[I][0]) |
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TMP=cons(cdr(D[I]),TMP)$ |
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else{ |
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D0=cons(TMP,D0)$ |
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TMP=[]$ |
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TMP=cons(cdr(D[I]),TMP)$ |
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X=car(D[I])$ |
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} |
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} |
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D0=cdr(reverse(cons(TMP,D0)))$ |
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D0=map(ltov,D0)$ |
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for(I=0,TMP=[[]];I<length(D0);I++){ |
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TMP0=perm(length(D0[I])-1,D0[I],[])$ |
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TMP=marge(TMP,TMP0)$ |
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} |
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RET=[]$ |
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for(I=0;I<length(TMP);I++){ |
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TMP0=[]$ |
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TMP1=[]$ |
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for(J=0;J<length(TMP[I]);J++){ |
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TMP0=cons(TMP[I][J][0],TMP0)$ |
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TMP1=cons(TMP[I][J][1],TMP1)$ |
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} |
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TMP0=reverse(TMP0)$ |
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TMP1=reverse(TMP1)$ |
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RET=cons([ID,TMP0,TMP1],RET)$ |
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} |
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return RET$ |
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} |
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} |
} |
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def nonposdegchk(Res){ |
def nonposdegchk(Res){ |
Line 449 def checktd(PolyList,Vars,ResVars){ |
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Line 458 def checktd(PolyList,Vars,ResVars){ |
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return 1$ |
return 1$ |
} |
} |
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def value2(Vars,Ans){ |
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N=length(Vars)$ |
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Res=newvect(N)$ |
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for(I=0;I<N;I++){ |
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Res[I]=newvect(2)$ |
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Res[I][0]=Vars[I]$ |
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Res[I][1]=Ans[I]$ |
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} |
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Res=getgcd(Res,Vars)$ |
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if(nonposdegchk(Res)){ |
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TMP1=makeret(Res,Vars,1)$ |
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return vtol(TMP1[1])$ |
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} |
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else |
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return []$ |
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} |
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def qcheck(PolyList,Vars,FLAG){ |
def qcheck(PolyList,Vars,FLAG){ |
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RET=[]$ |
RET=[]$ |
Line 480 def qcheck(PolyList,Vars,FLAG){ |
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Line 509 def qcheck(PolyList,Vars,FLAG){ |
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if(nonposdegchk(Res)){ |
if(nonposdegchk(Res)){ |
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ResVars=makeret(Res,Vars,0)$ |
TMP1=makeret(Res,Vars,0)$ |
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if(checktd(PolyList,Vars,ResVars[1])==1){ |
if(checktd(PolyList,Vars,TMP1[1])==1){ |
if(ResVars[0]==0){ |
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RET=append(RET,wsort(ResVars[1],Vars, |
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ResVars[1],FLAG,0))$ |
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return RET$ |
if(FLAG==0){ |
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if(TMP1[0]==0) |
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RET=append(RET,wsort(TMP1[1],Vars,TMP1[1],0))$ |
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else{ |
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TMP=vtol(TMP1[1])$ |
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if((TMP0=fixedpoint(TMP,0))!=[]){ |
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for(I=0;I<length(TMP0);I++) |
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TMP=map(subst,TMP,TMP0[I][0],TMP0[I][1])$ |
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TMP=value2(Vars,TMP)$ |
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if(TMP!=[]) |
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RET=append(RET,wsort(TMP,Vars,TMP,1/10))$ |
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} |
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else if((TMP0=fixedpoint(TMP,1))!=[]){ |
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for(I=0;I<length(TMP0);I++) |
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TMP=map(subst,TMP,TMP0[I][0],TMP0[I][1])$ |
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TMP=value2(Vars,TMP)$ |
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if(TMP!=[]) |
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RET=append(RET,wsort(TMP,Vars,TMP,1/10))$ |
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} |
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} |
} |
} |
else{ |
else if(FLAG==1) |
RET=append(RET,[[0,Vars,vtol(ResVars[1])]])$ |
RET=append(RET,[[0,Vars,vtol(TMP1[1])]])$ |
return RET$ |
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} |
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} |
} |
else |
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return []$ |
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} |
} |
else |
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return []$ |
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return RET$ |
} |
} |
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def leastsq(NormMat,ExpMat,Vars,FLAG,ID){ |
def leastsq(NormMat,ExpMat,Vars,FLAG,ID){ |
Line 552 def leastsq(NormMat,ExpMat,Vars,FLAG,ID){ |
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Line 601 def leastsq(NormMat,ExpMat,Vars,FLAG,ID){ |
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TMP1=makeret(Res,Vars,1)$ |
TMP1=makeret(Res,Vars,1)$ |
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if(TMP1[0]==0){ |
if(FLAG==0){ |
TMP=roundret(TMP1[1])$ |
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RET=append(RET,wsort(TMP1[1],Vars, |
if(TMP1[0]==0){ |
map(drint,TMP1[1]*1.0),FLAG,ID))$ |
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if(TMP!=[]) |
TMP=roundret(TMP1[1])$ |
RET=append(RET,wsort(TMP1[1],Vars, |
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TMP,FLAG,ID+1))$ |
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return RET$ |
RET=append(RET,wsort(TMP1[1],Vars,map(drint,TMP1[1]*1.0),ID))$ |
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if(TMP!=[]) |
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RET=append(RET,wsort(TMP1[1],Vars,TMP,ID+1))$ |
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} |
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else{ |
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TMP=vtol(TMP1[1])$ |
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if((TMP0=fixedpoint(TMP1[1],0))!=[]){ |
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for(I=0;I<length(TMP0);I++) |
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TMP=map(subst,TMP,TMP0[I][0],TMP0[I][1])$ |
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TMP=value2(Vars,TMP)$ |
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if(TMP!=[]) |
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RET=append(RET,wsort(TMP,Vars,TMP,ID+1/10))$ |
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} |
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else if((TMP0=fixedpoint(TMP1[1],1))!=[]){ |
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for(I=0;I<length(TMP0);I++) |
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TMP=map(subst,TMP,TMP0[I][0],TMP0[I][1])$ |
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TMP=value2(Vars,TMP)$ |
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if(TMP!=[]) |
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RET=append(RET,wsort(TMP,Vars,TMP,ID+1/10))$ |
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} |
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} |
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} |
} |
else{ |
else if(FLAG==1) |
RET=append(RET,[[ID,Vars,vtol(TMP1[1]*1.0)]])$ |
RET=append(RET,[[ID,Vars,vtol(TMP1[1])]])$ |
return RET$ |
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} |
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} |
} |
else |
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return RET$ |
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return RET$ |
} |
} |
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def unitweight(ExpMat,Vars,PolyListNum,OneMat,FLAG){ |
def unitweight(ExpMat,Vars,PolyListNum,OneMat,FLAG){ |
Line 616 def unitweight(ExpMat,Vars,PolyListNum,OneMat,FLAG){ |
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Line 688 def unitweight(ExpMat,Vars,PolyListNum,OneMat,FLAG){ |
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for(I=0;I<ExpMatColNum;I++) |
for(I=0;I<ExpMatColNum;I++) |
for(J=0;J<PolyListNum;J++) |
for(J=0;J<PolyListNum;J++) |
for(K=OneMat[J];K<OneMat[J+1];K++) |
for(K=OneMat[J];K<OneMat[J+1];K++) |
NormMat1[I][J+ExpMatColNum]-= |
NormMat1[I][J+ExpMatColNum]-=ExpMat[K][I]$ |
ExpMat[K][I]$ |
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for(I=0;I<PolyListNum;I++) |
for(I=0;I<PolyListNum;I++) |
NormMat1[I+ExpMatColNum][I+ExpMatColNum]=OneMat[I+1]-OneMat[I]$ |
NormMat1[I+ExpMatColNum][I+ExpMatColNum]=OneMat[I+1]-OneMat[I]$ |
Line 635 def unitweight(ExpMat,Vars,PolyListNum,OneMat,FLAG){ |
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Line 706 def unitweight(ExpMat,Vars,PolyListNum,OneMat,FLAG){ |
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TMP1=makeret(Res,Vars,1)$ |
TMP1=makeret(Res,Vars,1)$ |
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TMP=roundret(TMP1[1])$ |
if(FLAG==0){ |
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TMP=roundret(TMP1[1])$ |
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RET=append(RET,wsort(TMP1[1],Vars, |
RET=append(RET,wsort(TMP1[1],Vars,map(drint,TMP1[1]*1.0),1))$ |
map(drint,TMP1[1]*1.0),FLAG,1))$ |
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if(TMP!=[]) |
if(TMP!=[]) |
RET=append(RET,wsort(TMP1[1],Vars, |
RET=append(RET,wsort(TMP1[1],Vars,TMP,2))$ |
TMP,FLAG,2))$ |
} |
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if(FLAG==1) |
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RET=append(RET,[[1,Vars,vtol(TMP1[1])]])$ |
} |
} |
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} |
} |
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return [NormMat0,RET]$ |
return [NormMat0,RET]$ |
Line 690 def weight(PolyList,Vars,FLAG){ |
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Line 763 def weight(PolyList,Vars,FLAG){ |
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RET=append(RET,TMP[1])$ |
RET=append(RET,TMP[1])$ |
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RET=append(RET,leastsq(TMP[0],ExpMat,Vars,FLAG,3))$ |
TMP0=leastsq(TMP[0],ExpMat,Vars,FLAG,3)$ |
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RET=append(RET,TMP0)$ |
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ExpMat=qsort(ExpMat,junban)$ |
ExpMat=qsort(ExpMat,junban)$ |
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ExpMat2=[]$ |
ExpMat2=[]$ |
Line 702 def weight(PolyList,Vars,FLAG){ |
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Line 777 def weight(PolyList,Vars,FLAG){ |
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if(size(ExpMat)[0]!=length(ExpMat2)){ |
if(size(ExpMat)[0]!=length(ExpMat2)){ |
ExpMat=newvect(length(ExpMat2),ExpMat2)$ |
ExpMat=newvect(length(ExpMat2),ExpMat2)$ |
RET=append(RET,leastsq(0,ExpMat,Vars,FLAG,5))$ |
RET=append(RET,leastsq(0,ExpMat,Vars,FLAG,5))$ |
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} |
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else{ |
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TMP0=map(ltov,TMP0)$ |
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for(I=0;I<length(TMP0);I++) |
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if(TMP0[I][0]==3) |
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TMP0[I][0]=5$ |
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else if(TMP0[I][0]==4) |
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TMP0[I][0]=6$ |
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TMP0=map(vtol,TMP0)$ |
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RET=append(RET,TMP0)$ |
} |
} |
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return RET$ |
return RET$ |