add simple CLI interface
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0763056ccb
commit
729d1a10b7
@ -7,6 +7,7 @@
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#include <stdio.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdlib.h>
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#include <math.h>
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#include <math.h>
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#include <string.h>
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#define LOOP(i,n) for(int i = 0; i < (n); i++)
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#define LOOP(i,n) for(int i = 0; i < (n); i++)
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#define SWAP(t,x,y) do { t _tmp = (x); (x) = (y); (y) = _tmp; } while (0);
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#define SWAP(t,x,y) do { t _tmp = (x); (x) = (y); (y) = _tmp; } while (0);
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@ -81,15 +82,51 @@ static double gaussian_sqrt5_imag(NUMBER x)
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return result;
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return result;
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}
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}
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enum mode {
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MODE_HELP,
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MODE_TRACES,
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MODE_SUMMARY,
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MODE_TRACE_IDS
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};
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int main(int argc, char *argv[])
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int main(int argc, char *argv[])
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{
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{
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char buf[100];
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char buf[100];
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int n = atoi(argv[1]);
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int mode;
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if(argc < 2 || strcmp(argv[1], "help") == 0)
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mode = MODE_HELP;
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else if(strcmp(argv[1], "traces") == 0)
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mode = MODE_TRACES;
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else if(strcmp(argv[1], "summary") == 0)
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mode = MODE_SUMMARY;
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else if(strcmp(argv[1], "trace_ids") == 0)
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mode = MODE_TRACE_IDS;
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else
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mode = MODE_HELP;
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if(mode == MODE_HELP) {
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fprintf(stderr, "Usage: %s <help|traces|summary|trace_ids> [arguments]\n", argv[0]);
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fprintf(stderr, "%s help display this page\n", argv[0]);
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fprintf(stderr, "%s traces <n> <qreal> <qimag> enumerate group and output unique trace/trace inverse pairs\n", argv[0]);
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fprintf(stderr, "%s summary <n> <qreal> <qimag> only output max slope etc.\n", argv[0]);
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fprintf(stderr, "%s trace_ids <n> <qreal> <qimag> list of ids of unique traces\n", argv[0]);
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return 0;
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}
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if(argc < 5) {
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fprintf(stderr, "Not enough arguments!\n");
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return 0;
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}
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int n = atoi(argv[2]);
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mpq_t qreal, qimag;
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mpq_t qreal, qimag;
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mpq_inits(qreal, qimag, NULL);
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mpq_inits(qreal, qimag, NULL);
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mpq_set_si(qreal, 50, 10);
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mpq_set_str(qreal, argv[3], 10);
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mpq_set_si(qimag, 1, 10);
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mpq_set_str(qimag, argv[4], 10);
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// mpq_set_si(qreal, 50, 10);
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// mpq_set_si(qimag, 1, 10);
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mpq_canonicalize(qreal);
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mpq_canonicalize(qreal);
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mpq_canonicalize(qimag);
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mpq_canonicalize(qimag);
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@ -170,12 +207,21 @@ int main(int argc, char *argv[])
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max_slope_id = traces[i].id;
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max_slope_id = traces[i].id;
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}
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}
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printf("%d %f %f %f\n",
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if(mode == MODE_TRACES) {
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traces[i].id, log(ev_abs2[0]), log(ev_abs2[1]), log(ev_abs2[2]));
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printf("%d %f %f %f\n",
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traces[i].id, log(ev_abs2[0]), log(ev_abs2[1]), log(ev_abs2[2]));
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} else if(mode == MODE_TRACE_IDS) {
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printf("%d\n", traces[i].id);
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}
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}
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}
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coxeter_snprint(buf, sizeof(buf), &group->elements[max_slope_id]);
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coxeter_snprint(buf, sizeof(buf), &group->elements[max_slope_id]);
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gmp_printf("q = %Qd + i*%Qd\tElements: %d\tTraces: %d\tMaximal slope: %f at %s\n", qreal, qimag, n, nuniq, max_slope, buf);
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if(mode == MODE_SUMMARY) {
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gmp_fprintf(stdout, "%f %f %d %d %f %s\n", mpq_get_d(qreal), mpq_get_d(qimag), n, nuniq, max_slope, buf);
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} else {
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gmp_fprintf(stderr, "q = %Qd + i*%Qd\tElements: %d\tTraces: %d\tMaximal slope: %f at %s\n", qreal, qimag, n, nuniq, max_slope, buf);
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}
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mps_monomial_poly_free(solver, MPS_POLYNOMIAL(poly));
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mps_monomial_poly_free(solver, MPS_POLYNOMIAL(poly));
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mps_context_free(solver);
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mps_context_free(solver);
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