All Cartan matrices
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weyl.c
64
weyl.c
@ -229,28 +229,26 @@ int weyl_opposition(semisimple_type_t type, int simple_root)
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r = simple_root - offset;
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switch(type.factors[factor].series) {
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case 'B': case 'C': case 'F': case 'G':
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iota_r = r;
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break;
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case 'A':
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iota_r = type.factors[factor].rank - 1 - r;
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break;
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case 'B': case 'C':
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iota_r = r;
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break;
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case 'D':
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ERROR(1, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[factor].series, type.factors[factor].rank);
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if(type.factors[factor].rank % 2 == 0)
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iota_r = r;
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else
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iota_r = r == 0 ? 1 : r == 1 ? 0 : r;
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break;
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case 'E':
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ERROR(1, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[factor].series, type.factors[factor].rank);
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break;
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case 'F':
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ERROR(1, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[factor].series, type.factors[factor].rank);
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break;
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case 'G':
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ERROR(1, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[factor].series, type.factors[factor].rank);
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if(type.factors[factor].rank == 6)
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iota_r = r;
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else
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iota_r = r == 3 || r == 4 ? r : 5 - r;
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break;
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default:
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@ -275,50 +273,46 @@ void weyl_cartan_matrix(semisimple_type_t type, int *m)
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for(int i = 0; i < type.factors[k].rank; i++) // A is the submatrix corresponding to the current simple factor
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A[i] = &m[(i+offset)*rank + offset];
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switch(type.factors[k].series) {
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case 'A':
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for(int i = 1; i < type.factors[k].rank; i++) {
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A[i][i-1] = -1;
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A[i-1][i] = -1;
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}
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switch(type.factors[k].series) {
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case 'A':
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break;
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case 'B': // not sure at all about the order of B and C
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if(type.factors[k].rank >= 2) {
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case 'B':
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ERROR(type.factors[k].rank < 2, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[k].series, type.factors[k].rank);
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A[0][1] = -2;
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A[1][0] = -1;
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}
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for(int i = 2; i < type.factors[k].rank; i++) {
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A[i][i-1] = -1;
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A[i-1][i] = -1;
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}
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break;
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case 'C':
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if(type.factors[k].rank >= 2) {
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A[0][1] = -1;
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ERROR(type.factors[k].rank < 2, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[k].series, type.factors[k].rank);
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A[1][0] = -2;
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}
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for(int i = 2; i < type.factors[k].rank; i++) {
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A[i][i-1] = -1;
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A[i-1][i] = -1;
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}
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break;
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case 'D':
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ERROR(1, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[k].series, type.factors[k].rank);
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ERROR(type.factors[k].rank < 3, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[k].series, type.factors[k].rank);
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A[0][1] = A[1][0] = 0;
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A[0][2] = A[2][0] = -1;
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break;
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case 'E':
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ERROR(1, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[k].series, type.factors[k].rank);
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ERROR(type.factors[k].rank < 6 || type.factors[k].rank > 8, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[k].series, type.factors[k].rank);
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A[1][2] = A[2][1] = 0;
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A[1][3] = A[3][1] = -1;
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break;
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case 'F':
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ERROR(1, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[k].series, type.factors[k].rank);
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ERROR(type.factors[k].rank != 4, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[k].series, type.factors[k].rank);
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A[3][2] = -2;
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break;
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case 'G':
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ERROR(1, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[k].series, type.factors[k].rank);
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ERROR(type.factors[k].rank != 2, "A Weyl group of type %c%d does not exist or is not implemented!\n", type.factors[k].series, type.factors[k].rank);
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A[1][0] = -3;
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break;
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default:
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