version 1.27, 2000/08/16 22:38:52 |
version 1.29, 2000/08/22 05:34:06 |
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/* $OpenXM: OpenXM/src/k097/lib/minimal/minimal.k,v 1.26 2000/08/10 02:59:08 takayama Exp $ */ |
/* $OpenXM: OpenXM/src/k097/lib/minimal/minimal.k,v 1.28 2000/08/21 07:45:22 takayama Exp $ */ |
#define DEBUG 1 |
#define DEBUG 1 |
Sordinary = false; |
Sordinary = false; |
/* If you run this program on openxm version 1.1.2 (FreeBSD), |
/* If you run this program on openxm version 1.1.2 (FreeBSD), |
Line 1006 def Sminimal(g,opt) { |
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Line 1006 def Sminimal(g,opt) { |
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redundantTable = r[1]; |
redundantTable = r[1]; |
reducer = r[2]; |
reducer = r[2]; |
bettiTable = SbettiTable(redundantTable); |
bettiTable = SbettiTable(redundantTable); |
Sprintln2("Betti numbers are ------"); |
Sprintln2("BettiTable ------"); |
if (Sverbose || Sverbose2) {sm1_pmat(bettiTable);} |
if (Sverbose || Sverbose2) {sm1_pmat(bettiTable);} |
minRes = SnewArrayOfFormat(freeRes); |
minRes = SnewArrayOfFormat(freeRes); |
seq = 0; |
seq = 0; |
Line 1070 def Sminimal(g,opt) { |
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Line 1070 def Sminimal(g,opt) { |
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Println("0: minimal resolution, 3: Schreyer resolution "); |
Println("0: minimal resolution, 3: Schreyer resolution "); |
Println("------------ Resolution Summary --------------"); |
Println("------------ Resolution Summary --------------"); |
Print("Betti numbers : "); |
Print("Betti numbers : "); |
Println(Map(ansSminimal[0],"Length")); |
Println(Join([Length(ansSminimal[0,0,0])],Map(ansSminimal[0],"Length"))); |
Print("Betti numbers of the Schreyer frame: "); |
Print("Betti numbers of the Schreyer frame: "); |
Println(Map(ansSminimal[3],"Length")); |
Println(Join([Length(ansSminimal[3,0,0])],Map(ansSminimal[3],"Length"))); |
Println("-----------------------------------------------"); |
Println("-----------------------------------------------"); |
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sm1(" restoreEnvAfterResolution "); |
sm1(" restoreEnvAfterResolution "); |
Line 1509 HelpAdd(["SgetShift", |
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Line 1509 HelpAdd(["SgetShift", |
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def SgetShifts(resmat,w) { |
def SgetShifts(resmat,w) { |
local i,n,ans,m0; |
local i,n,ans,m0; |
n = Length(resmat); |
n = Length(resmat); |
ans = NewArray(n); |
ans = NewArray(n+1); |
m0 = NewArray(Length(resmat[0,0])); |
m0 = NewArray(Length(resmat[0,0])); |
ans[0] = m0; |
ans[0] = m0; |
for (i=0; i<n-1; i++) { |
for (i=0; i<n; i++) { |
ans[i+1] = SgetShift(resmat[i],w,m0); |
ans[i+1] = SgetShift(resmat[i],w,m0); |
m0 = ans[i+1]; |
m0 = ans[i+1]; |
} |
} |
Line 1564 def SbettiTable(rtable) { |
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Line 1564 def SbettiTable(rtable) { |
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ans[i] = pp; |
ans[i] = pp; |
} |
} |
return(ans); |
return(ans); |
} |
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} |
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def BfRoots1(G,V) { |
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local bb,ans; |
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sm1(" /BFparlist [ ] def "); |
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if (IsString(V)) { |
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sm1(" [ V to_records pop ] /V set "); |
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}else { |
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sm1(" V { toString } map /V set "); |
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} |
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sm1(" /BFvarlist V def "); |
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sm1(" G flatten { toString } map /G set "); |
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sm1(" G V bfm /bb set "); |
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if (IsSm1Integer(bb)) { |
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return([ ]); |
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} |
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sm1(" bb 0 get findIntegralRoots { (universalNumber) dc } map /ans set "); |
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return([ans, bb]); |
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} |
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HelpAdd(["BfRoots1", |
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["BfRoots1(g,v) returns the integral roots of g with respect to the weight", |
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"vector (1,1,...,1) and the b-function itself", |
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"Example: BfRoots1([x*Dx-2, y*Dy-3],[x,y]);" |
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]]); |
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