2012-02-03 22:07:47 +00:00
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#include "CurveIntersection.h"
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2012-07-02 20:27:02 +00:00
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#include "CurveUtilities.h"
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2012-01-25 18:57:23 +00:00
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#include "Intersection_Tests.h"
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#include "Intersections.h"
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#include "TestUtilities.h"
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struct lineQuad {
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Quadratic quad;
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_Line line;
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} lineQuadTests[] = {
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2012-04-26 21:01:06 +00:00
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{{{2, 0}, {1, 1}, {2, 2}}, {{0, 0}, {0, 2}}},
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{{{4, 0}, {0, 1}, {4, 2}}, {{3, 1}, {4, 1}}},
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{{{0, 0}, {0, 1}, {1, 1}}, {{0, 1}, {1, 0}}},
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2012-01-25 18:57:23 +00:00
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};
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size_t lineQuadTests_count = sizeof(lineQuadTests) / sizeof(lineQuadTests[0]);
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const int firstLineQuadIntersectionTest = 0;
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void LineQuadraticIntersection_Test() {
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for (size_t index = firstLineQuadIntersectionTest; index < lineQuadTests_count; ++index) {
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const Quadratic& quad = lineQuadTests[index].quad;
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const _Line& line = lineQuadTests[index].line;
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Quadratic reduce1;
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_Line reduce2;
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int order1 = reduceOrder(quad, reduce1);
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int order2 = reduceOrder(line, reduce2);
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if (order1 < 3) {
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printf("[%d] quad order=%d\n", (int) index, order1);
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}
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if (order2 < 2) {
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printf("[%d] line order=%d\n", (int) index, order2);
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}
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if (order1 == 3 && order2 == 2) {
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Intersections intersections;
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2012-02-03 22:07:47 +00:00
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intersect(reduce1, reduce2, intersections);
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2012-01-25 18:57:23 +00:00
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if (intersections.intersected()) {
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for (int pt = 0; pt < intersections.used(); ++pt) {
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double tt1 = intersections.fT[0][pt];
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double tx1, ty1;
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xy_at_t(quad, tt1, tx1, ty1);
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double tt2 = intersections.fT[1][pt];
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double tx2, ty2;
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xy_at_t(line, tt2, tx2, ty2);
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if (!approximately_equal(tx1, tx2)) {
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printf("%s [%d,%d] x!= t1=%g (%g,%g) t2=%g (%g,%g)\n",
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__FUNCTION__, (int)index, pt, tt1, tx1, ty1, tt2, tx2, ty2);
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}
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if (!approximately_equal(ty1, ty2)) {
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printf("%s [%d,%d] y!= t1=%g (%g,%g) t2=%g (%g,%g)\n",
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__FUNCTION__, (int)index, pt, tt1, tx1, ty1, tt2, tx2, ty2);
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}
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}
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}
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}
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}
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}
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