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Use max value of double instead of std::optional in get_first_crossed_line_distance() and get_obstacle_adjusted_slope_end().
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@ -114,13 +114,12 @@ Points3 generate_elevated_travel(
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return result;
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}
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std::optional<double> get_first_crossed_line_distance(
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double get_first_crossed_line_distance(
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tcb::span<const Line> xy_path, const AABBTreeLines::LinesDistancer<Linef> &distancer
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) {
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assert(!xy_path.empty());
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if (xy_path.empty()) {
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return {};
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}
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if (xy_path.empty())
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return std::numeric_limits<double>::max();
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double traversed_distance = 0;
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for (const Line &line : xy_path) {
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@ -139,7 +138,7 @@ std::optional<double> get_first_crossed_line_distance(
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traversed_distance += (unscaled_line.a - unscaled_line.b).norm();
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}
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return {};
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return std::numeric_limits<double>::max();
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}
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struct SmoothingParams
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@ -222,15 +221,14 @@ ElevatedTravelParams get_elevated_traval_params(
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elevation_params.slope_end = elevation_params.lift_height / std::tan(slope_rad);
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}
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std::optional<double> obstacle_adjusted_slope_end{
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const double obstacle_adjusted_slope_end{
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previous_layer_distancer ?
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get_first_crossed_line_distance(xy_path.lines(), *previous_layer_distancer) :
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std::nullopt
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get_first_crossed_line_distance(xy_path.lines(), *previous_layer_distancer) :
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std::numeric_limits<double>::max()
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};
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if (obstacle_adjusted_slope_end && obstacle_adjusted_slope_end < elevation_params.slope_end) {
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elevation_params.slope_end = *obstacle_adjusted_slope_end;
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}
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if (obstacle_adjusted_slope_end < elevation_params.slope_end)
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elevation_params.slope_end = obstacle_adjusted_slope_end;
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SmoothingParams smoothing_params{get_smoothing_params(
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elevation_params.lift_height, elevation_params.slope_end, extruder_id,
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@ -141,7 +141,7 @@ Points3 generate_elevated_travel(
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*
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* **Ignores intersection with xy_path starting point.**
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*/
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std::optional<double> get_first_crossed_line_distance(
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double get_first_crossed_line_distance(
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tcb::span<const Line> xy_path, const AABBTreeLines::LinesDistancer<Linef> &distancer
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);
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@ -171,13 +171,13 @@ TEST_CASE("Get first crossed line distance", "[GCode]") {
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// Try different cases by skipping lines in the travel.
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AABBTreeLines::LinesDistancer<Linef> distancer{std::move(lines)};
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CHECK(*get_first_crossed_line_distance(travel, distancer) == Approx(1));
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CHECK(*get_first_crossed_line_distance(tcb::span{travel}.subspan(1), distancer) == Approx(0.2));
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CHECK(*get_first_crossed_line_distance(tcb::span{travel}.subspan(2), distancer) == Approx(0.5));
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CHECK(*get_first_crossed_line_distance(tcb::span{travel}.subspan(3), distancer) == Approx(1.0)); //Edge case
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CHECK(*get_first_crossed_line_distance(tcb::span{travel}.subspan(4), distancer) == Approx(0.7));
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CHECK(*get_first_crossed_line_distance(tcb::span{travel}.subspan(5), distancer) == Approx(1.6));
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CHECK_FALSE(get_first_crossed_line_distance(tcb::span{travel}.subspan(6), distancer));
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CHECK(get_first_crossed_line_distance(travel, distancer) == Approx(1));
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CHECK(get_first_crossed_line_distance(tcb::span{travel}.subspan(1), distancer) == Approx(0.2));
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CHECK(get_first_crossed_line_distance(tcb::span{travel}.subspan(2), distancer) == Approx(0.5));
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CHECK(get_first_crossed_line_distance(tcb::span{travel}.subspan(3), distancer) == Approx(1.0)); //Edge case
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CHECK(get_first_crossed_line_distance(tcb::span{travel}.subspan(4), distancer) == Approx(0.7));
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CHECK(get_first_crossed_line_distance(tcb::span{travel}.subspan(5), distancer) == Approx(1.6));
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CHECK(get_first_crossed_line_distance(tcb::span{travel}.subspan(6), distancer) == std::numeric_limits<double>::max());
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}
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