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@@ -761,8 +761,8 @@ Vector2 Curve2D::interpolate_baked(float p_offset, bool p_cubic) const {
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//validate//
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//validate//
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int pc = baked_point_cache.size();
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int pc = baked_point_cache.size();
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if (pc == 0) {
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if (pc == 0) {
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- ERR_EXPLAIN("No points in Curve2D");
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- ERR_FAIL_COND_V(pc == 0, Vector2());
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+ ERR_EXPLAIN("No points in Curve2D.");
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+ ERR_FAIL_V(Vector2());
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}
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}
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if (pc == 1)
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if (pc == 1)
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@@ -826,8 +826,8 @@ Vector2 Curve2D::get_closest_point(const Vector2 &p_to_point) const {
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//validate//
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//validate//
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int pc = baked_point_cache.size();
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int pc = baked_point_cache.size();
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if (pc == 0) {
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if (pc == 0) {
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- ERR_EXPLAIN("No points in Curve2D");
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- ERR_FAIL_COND_V(pc == 0, Vector2());
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+ ERR_EXPLAIN("No points in Curve2D.");
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+ ERR_FAIL_V(Vector2());
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}
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}
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if (pc == 1)
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if (pc == 1)
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@@ -865,8 +865,8 @@ float Curve2D::get_closest_offset(const Vector2 &p_to_point) const {
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//validate//
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//validate//
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int pc = baked_point_cache.size();
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int pc = baked_point_cache.size();
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if (pc == 0) {
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if (pc == 0) {
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- ERR_EXPLAIN("No points in Curve2D");
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- ERR_FAIL_COND_V(pc == 0, 0.0f);
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+ ERR_EXPLAIN("No points in Curve2D.");
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+ ERR_FAIL_V(0.0f);
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}
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}
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if (pc == 1)
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if (pc == 1)
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@@ -1331,8 +1331,8 @@ Vector3 Curve3D::interpolate_baked(float p_offset, bool p_cubic) const {
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//validate//
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//validate//
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int pc = baked_point_cache.size();
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int pc = baked_point_cache.size();
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if (pc == 0) {
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if (pc == 0) {
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- ERR_EXPLAIN("No points in Curve3D");
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- ERR_FAIL_COND_V(pc == 0, Vector3());
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+ ERR_EXPLAIN("No points in Curve3D.");
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+ ERR_FAIL_V(Vector3());
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}
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}
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if (pc == 1)
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if (pc == 1)
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@@ -1375,8 +1375,8 @@ float Curve3D::interpolate_baked_tilt(float p_offset) const {
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//validate//
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//validate//
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int pc = baked_tilt_cache.size();
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int pc = baked_tilt_cache.size();
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if (pc == 0) {
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if (pc == 0) {
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- ERR_EXPLAIN("No tilts in Curve3D");
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- ERR_FAIL_COND_V(pc == 0, 0);
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+ ERR_EXPLAIN("No tilts in Curve3D.");
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+ ERR_FAIL_V(0);
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}
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}
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if (pc == 1)
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if (pc == 1)
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@@ -1413,8 +1413,8 @@ Vector3 Curve3D::interpolate_baked_up_vector(float p_offset, bool p_apply_tilt)
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// curve may not have baked up vectors
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// curve may not have baked up vectors
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int count = baked_up_vector_cache.size();
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int count = baked_up_vector_cache.size();
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if (count == 0) {
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if (count == 0) {
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- ERR_EXPLAIN("No up vectors in Curve3D");
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- ERR_FAIL_COND_V(count == 0, Vector3(0, 1, 0));
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+ ERR_EXPLAIN("No up vectors in Curve3D.");
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+ ERR_FAIL_V(Vector3(0, 1, 0));
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}
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}
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if (count == 1)
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if (count == 1)
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@@ -1484,8 +1484,8 @@ Vector3 Curve3D::get_closest_point(const Vector3 &p_to_point) const {
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//validate//
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//validate//
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int pc = baked_point_cache.size();
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int pc = baked_point_cache.size();
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if (pc == 0) {
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if (pc == 0) {
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- ERR_EXPLAIN("No points in Curve3D");
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- ERR_FAIL_COND_V(pc == 0, Vector3());
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+ ERR_EXPLAIN("No points in Curve3D.");
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+ ERR_FAIL_V(Vector3());
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}
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}
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if (pc == 1)
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if (pc == 1)
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@@ -1523,8 +1523,8 @@ float Curve3D::get_closest_offset(const Vector3 &p_to_point) const {
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//validate//
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//validate//
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int pc = baked_point_cache.size();
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int pc = baked_point_cache.size();
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if (pc == 0) {
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if (pc == 0) {
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- ERR_EXPLAIN("No points in Curve3D");
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- ERR_FAIL_COND_V(pc == 0, 0.0f);
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+ ERR_EXPLAIN("No points in Curve3D.");
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+ ERR_FAIL_V(0.0f);
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}
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}
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if (pc == 1)
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if (pc == 1)
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