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[Fixed] for "off-by-1" bug when sampling "baked" curve data towards the end of the curve.
[Fixed] Failing test "[Curve] Custom curve with free tangents" by setting the curve's `bake_resolution` to 11. [Fixed] test messages in "[Curve] Custom curve with free tangents" to match sample offset used in each test [Added] New test "[Curve] Straight line offset test" in response to pull request feedback. Update tests/scene/test_curve.h Co-authored-by: kleonc <9283098+kleonc@users.noreply.github.com>
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@ -452,7 +452,7 @@ void Curve::bake() {
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_baked_cache.resize(_bake_resolution);
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for (int i = 1; i < _bake_resolution - 1; ++i) {
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real_t x = i / static_cast<real_t>(_bake_resolution);
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real_t x = i / static_cast<real_t>(_bake_resolution - 1);
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real_t y = sample(x);
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_baked_cache.write[i] = y;
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}
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@ -489,7 +489,7 @@ real_t Curve::sample_baked(real_t p_offset) const {
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}
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// Get interpolation index
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real_t fi = p_offset * _baked_cache.size();
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real_t fi = p_offset * (_baked_cache.size() - 1);
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int i = Math::floor(fi);
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if (i < 0) {
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i = 0;
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@ -62,6 +62,7 @@ TEST_CASE("[Curve] Custom curve with free tangents") {
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curve->add_point(Vector2(0.25, 1));
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curve->add_point(Vector2(0.5, 0));
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curve->add_point(Vector2(0.75, 1));
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curve->set_bake_resolution(11);
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CHECK_MESSAGE(
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Math::is_zero_approx(curve->get_point_left_tangent(0)),
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@ -82,41 +83,41 @@ TEST_CASE("[Curve] Custom curve with free tangents") {
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CHECK_MESSAGE(
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Math::is_zero_approx(curve->sample(-0.1)),
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"Custom free curve should return the expected value at offset 0.1.");
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"Custom free curve should return the expected value at offset -0.1.");
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CHECK_MESSAGE(
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curve->sample(0.1) == doctest::Approx((real_t)0.352),
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"Custom free curve should return the expected value at offset 0.1.");
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CHECK_MESSAGE(
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curve->sample(0.4) == doctest::Approx((real_t)0.352),
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"Custom free curve should return the expected value at offset 0.1.");
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"Custom free curve should return the expected value at offset 0.4.");
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CHECK_MESSAGE(
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curve->sample(0.7) == doctest::Approx((real_t)0.896),
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"Custom free curve should return the expected value at offset 0.1.");
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"Custom free curve should return the expected value at offset 0.7.");
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CHECK_MESSAGE(
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curve->sample(1) == doctest::Approx(1),
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"Custom free curve should return the expected value at offset 0.1.");
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"Custom free curve should return the expected value at offset 1.");
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CHECK_MESSAGE(
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curve->sample(2) == doctest::Approx(1),
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"Custom free curve should return the expected value at offset 0.1.");
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"Custom free curve should return the expected value at offset 2.");
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CHECK_MESSAGE(
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Math::is_zero_approx(curve->sample_baked(-0.1)),
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"Custom free curve should return the expected baked value at offset 0.1.");
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"Custom free curve should return the expected baked value at offset -0.1.");
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CHECK_MESSAGE(
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curve->sample_baked(0.1) == doctest::Approx((real_t)0.352),
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"Custom free curve should return the expected baked value at offset 0.1.");
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CHECK_MESSAGE(
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curve->sample_baked(0.4) == doctest::Approx((real_t)0.352),
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"Custom free curve should return the expected baked value at offset 0.1.");
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"Custom free curve should return the expected baked value at offset 0.4.");
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CHECK_MESSAGE(
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curve->sample_baked(0.7) == doctest::Approx((real_t)0.896),
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"Custom free curve should return the expected baked value at offset 0.1.");
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"Custom free curve should return the expected baked value at offset 0.7.");
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CHECK_MESSAGE(
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curve->sample_baked(1) == doctest::Approx(1),
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"Custom free curve should return the expected baked value at offset 0.1.");
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"Custom free curve should return the expected baked value at offset 1.");
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CHECK_MESSAGE(
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curve->sample_baked(2) == doctest::Approx(1),
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"Custom free curve should return the expected baked value at offset 0.1.");
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"Custom free curve should return the expected baked value at offset 2.");
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curve->remove_point(1);
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CHECK_MESSAGE(
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@ -218,6 +219,16 @@ TEST_CASE("[Curve] Custom curve with linear tangents") {
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"Custom free curve should return the expected baked value at offset 0.7 after removing point at invalid index 10.");
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}
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TEST_CASE("[Curve] Straight line offset test") {
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Ref<Curve> curve = memnew(Curve);
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curve->add_point(Vector2(0, 0));
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curve->add_point(Vector2(1, 1));
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CHECK_MESSAGE(
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curve->sample_baked(1.0 - (0.5 / curve->get_bake_resolution())) != curve->sample_baked(1),
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"Straight line curve should return different baked values at offset 1 vs offset (1 - 0.5 / bake resolution) .");
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}
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TEST_CASE("[Curve2D] Linear sampling should return exact value") {
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Ref<Curve2D> curve = memnew(Curve2D);
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real_t len = 2048.0;
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