read number of vertices and edges from commandline
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parent
5a8a5983b2
commit
6cb40f2011
1 changed files with 23 additions and 36 deletions
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@ -11,7 +11,7 @@
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import std.stdio;
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import std.stdio;
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int nVertices = 16; // number of vertices
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int nVertices = 0; // number of vertices
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int start = 0; // starting vertex index
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int start = 0; // starting vertex index
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int [][] Ak; // integer array size n of lists
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int [][] Ak; // integer array size n of lists
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// ie the arcs from the vertex
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// ie the arcs from the vertex
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@ -189,7 +189,8 @@ bool circuit(int v) { // based on Johnson ’s logical procedure CIRCUIT
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return f;
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return f;
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}
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}
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void setupGlobals() { // presupposes nVertices is set up
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void setupGlobals(string[] args) { // presupposes nVertices is set up
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nVertices = std.conv.parse!int(args[1]);
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Ak.length = nVertices; // Ak[i][0] is the number of members, Ak[i][1]..Ak[i][n] ARE the members, i>0
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Ak.length = nVertices; // Ak[i][0] is the number of members, Ak[i][1]..Ak[i][n] ARE the members, i>0
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B.length = nVertices; // B[i][0] is the number of members, B[i][1]..B[i][n] ARE the members , i>0
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B.length = nVertices; // B[i][0] is the number of members, B[i][1]..B[i][n] ARE the members , i>0
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blocked.length = nVertices; // we use blocked [0]..blocked[n-1], i> = 0
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blocked.length = nVertices; // we use blocked [0]..blocked[n-1], i> = 0
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@ -199,38 +200,12 @@ void setupGlobals() { // presupposes nVertices is set up
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blocked[i] = false;
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blocked[i] = false;
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}
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}
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addToList(Ak[0], 2);
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for (int i = 2; i < args.length; i++) {
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addToList(Ak[0], 10);
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string[] vertices = std.array.split(args[i], ",");
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addToList(Ak[0], 14);
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int v1 = std.conv.parse!int(vertices[0]);
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addToList(Ak[1], 5);
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int v2 = std.conv.parse!int(vertices[1]);
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addToList(Ak[1], 8);
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addToList(Ak[v1], v2);
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addToList(Ak[2], 7);
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}
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addToList(Ak[2], 9);
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addToList(Ak[3], 3);
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addToList(Ak[3], 4);
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addToList(Ak[3], 6);
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addToList(Ak[4], 5);
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addToList(Ak[4], 13);
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addToList(Ak[4], 15);
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addToList(Ak[6], 13);
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addToList(Ak[8], 0);
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addToList(Ak[8], 4);
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addToList(Ak[8], 8);
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addToList(Ak[9], 9);
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addToList(Ak[10], 7);
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addToList(Ak[10], 11);
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addToList(Ak[11], 6);
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addToList(Ak[12], 1);
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addToList(Ak[12], 1);
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addToList(Ak[12], 2);
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addToList(Ak[12], 10);
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addToList(Ak[12], 12);
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addToList(Ak[12], 14);
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addToList(Ak[13], 3);
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addToList(Ak[13], 12);
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addToList(Ak[13], 15);
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addToList(Ak[14], 11);
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addToList(Ak[15], 0);
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lengthHistogram.length = nVertices+1; // will use as [1]...[n] to histogram circuits by length
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lengthHistogram.length = nVertices+1; // will use as [1]...[n] to histogram circuits by length
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// [0] for zero length circuits, which are impossible
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// [0] for zero length circuits, which are impossible
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@ -246,8 +221,20 @@ void setupGlobals() { // presupposes nVertices is set up
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}
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}
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}
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}
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int main() {
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/*
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setupGlobals();
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* to replicate the result from figure 10 in the paper, run the program as
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* follows:
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*
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* ./circuits_hawick 16 0,2 0,10 0,14 1,5 1,8 2,7 2,9 3,3 3,4 3,6 4,5 4,13 \
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* 4,15 6,13 8,0 8,4 8,8 9,9 10,7 10,11 11,6 12,1 12,1 12,2 12,10 12,12 \
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* 12,14 13,3 13,12 13,15 14,11 15,0
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*/
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int main(string[] args) {
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if (args.length < 3) {
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std.stdio.writefln("usage: %s num_vertices [v1,v2...]", args[0]);
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return 1;
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}
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setupGlobals(args);
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stackClear();
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stackClear();
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start = 0;
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start = 0;
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bool verbose = false;
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bool verbose = false;
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