version 1.10, 2000/08/01 05:16:02 |
version 1.11, 2000/08/01 06:26:10 |
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/* $OpenXM: OpenXM/src/k097/lib/minimal/minimal-test.k,v 1.9 2000/08/01 03:42:35 takayama Exp $ */ |
/* $OpenXM: OpenXM/src/k097/lib/minimal/minimal-test.k,v 1.10 2000/08/01 05:16:02 takayama Exp $ */ |
load["minimal.k"]; |
load["minimal.k"]; |
def sm1_resol1(p) { |
def sm1_resol1(p) { |
sm1(" p resol1 /FunctionValue set "); |
sm1(" p resol1 /FunctionValue set "); |
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} |
} |
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def test_if_v_strict(resmat,w,v) { |
def test_if_v_strict(resmat,w,v) { |
local b,c; |
local b,c,g,cc; |
Sweyl(v,[w]); b = Reparse(resmat); |
Sweyl(v,[w]); b = Reparse(resmat); |
c=Sinit_w(b,w); |
c=Sinit_w(b,w); |
Println("Resolution (b)----"); |
Println("Resolution (b)----"); |
sm1_pmat(b); |
sm1_pmat(b); |
Println("Initial (c)----"); |
Println("Initial (c)----"); |
sm1_pmat(c); |
sm1_pmat(c); cc=c; |
Println("Exactness of the resolution ---"); |
Println("Exactness of the resolution ---"); |
Println(IsExact_h(b,v)); |
Println(IsExact_h(b,v)); /* IsExact_h breaks the variable c. |
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THIS BUG SHOULD BE FIXED. */ |
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Println("Why is the initial c rewritten by b? (buggy) ");sm1_pmat(c[0]); |
Println("Exactness of the initial complex.---"); |
Println("Exactness of the initial complex.---"); |
Println(IsExact_h(c,v)); |
Println(IsExact_h(cc,v)); |
g = Sinvolutive(b[0],w); |
g = Sinvolutive(b[0],w); |
/* Println("Involutive basis ---"); |
/* Println("Involutive basis ---"); |
sm1_pmat(g); */ |
sm1_pmat(g); |
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Println(Sinvolutive(cc[0],w)); |
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sm1(" /gb.verbose 1 def "); */ |
Println("Is same ideal?"); |
Println("Is same ideal?"); |
Println(IsSameIdeal_h(g,c[0],"x,y")); |
Println(IsSameIdeal_h(g,cc[0],v)); |
} |
} |
def test17b() { |
def test17b() { |
a=Sannfs3("x^3-y^2*z^2"); |
a=Sannfs3("x^3-y^2*z^2"); |
b=a[0]; w = ["x",-1,"y",-1,"z",-5,"Dx",1,"Dy",1,"Dz",5]; |
b=a[0]; w = ["x",-1,"y",-1,"z",-1,"Dx",1,"Dy",1,"Dz",1]; |
test_if_v_strict(b,w,"x,y,z"); |
test_if_v_strict(b,w,"x,y,z"); |
return(a); |
return(a); |
} |
} |