diff --git a/src/libslic3r/BeltPurge.cpp b/src/libslic3r/BeltPurge.cpp index bba338b878..cff3de8846 100644 --- a/src/libslic3r/BeltPurge.cpp +++ b/src/libslic3r/BeltPurge.cpp @@ -128,10 +128,6 @@ void Print::_align_belt_purge_layers() delta += h; po->belt_shift_layer_grid(delta); // no-op for the reference object (delta ~ 0) } - - BOOST_LOG_TRIVIAL(debug) << "[BELT-DEBUG] purge grid align: snapped " << m_objects.size() - << " objects onto ref grid offset=" << ref_offset - << " (ref=" << ref->model_object()->name << ")"; } // Belt mode replacement for _make_wipe_tower(): plan filament-change purging @@ -246,21 +242,11 @@ void Print::_plan_belt_purge() } } - // Diagnostic: the prism only absorbs purge at toolchange layers whose - // print_z coincides with one of its own layers. Compare the prism's layer - // print_z range to the toolchange print_z range and count how many - // toolchange layers actually land on a prism layer. This distinguishes a - // range/grid-alignment failure (no coverage) from a capacity shortfall - // (covered but not enough cross-section). + // The prism only absorbs purge at toolchange layers whose print_z coincides + // with one of its own layers. PrintObject *prism_po = nullptr; for (PrintObject *po : m_objects) if (po->config().belt_purge_tower_object.value && !po->layers().empty()) { prism_po = po; break; } - const PrintObject *diag_prism = prism_po; - if (diag_prism != nullptr) - BOOST_LOG_TRIVIAL(warning) << "[BELT-DEBUG] purge prism layer range print_z=[" - << diag_prism->layers().front()->print_z << ", " << diag_prism->layers().back()->print_z - << "] nlayers=" << diag_prism->layers().size(); - int tc_layers = 0, tc_layers_covered = 0; float total_leftover = 0.f; float worst_layer_leftover = 0.f; @@ -269,26 +255,14 @@ void Print::_plan_belt_purge() unsigned int current_extruder_id = m_wipe_tower_data.tool_ordering.first_extruder(); for (auto &layer_tools : m_wipe_tower_data.tool_ordering.layer_tools()) { float layer_leftover = 0.f; - bool layer_has_tc = false; for (const unsigned int extruder_id : layer_tools.extruders) { if (extruder_id == current_extruder_id) continue; - if (!layer_has_tc) { - layer_has_tc = true; - ++tc_layers; - if (diag_prism != nullptr && diag_prism->get_layer_at_printz(layer_tools.print_z, EPSILON) != nullptr) - ++tc_layers_covered; - } float volume_to_wipe = use_flush_matrix ? wipe_volumes[current_extruder_id][extruder_id] * flush_multiplier : (float) m_config.prime_volume; float leftover = layer_tools.wiping_extrusions().mark_wiping_extrusions(*this, current_extruder_id, extruder_id, volume_to_wipe); - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] purge toolchange print_z=" << layer_tools.print_z - << " filament " << current_extruder_id << "->" << extruder_id - << " requested=" << volume_to_wipe - << " absorbed=" << volume_to_wipe - leftover - << " leftover=" << leftover; layer_leftover += leftover; current_extruder_id = extruder_id; } @@ -323,11 +297,6 @@ void Print::_plan_belt_purge() this->throw_if_canceled(); } - BOOST_LOG_TRIVIAL(warning) << "[BELT-DEBUG] purge coverage: " << tc_layers_covered << "/" << tc_layers - << " toolchange layers land on a prism layer" - << (tc_layers > 0 && tc_layers_covered == 0 ? " (RANGE/GRID MISALIGNMENT — prism absorbs nothing)" : - tc_layers_covered < tc_layers ? " (partial coverage)" : " (full coverage)"); - if (total_leftover > 1.f) { this->active_step_add_warning( PrintStateBase::WarningLevel::CRITICAL, @@ -336,8 +305,6 @@ void Print::_plan_belt_purge() "Increase the belt purge tower width, or reduce flushing volumes."), int(std::ceil(total_leftover)), int(std::ceil(worst_layer_leftover)), Slic3r::float_to_string_decimal_point(worst_layer_z, 2))); - BOOST_LOG_TRIVIAL(warning) << "[BELT-DEBUG] purge planning leftover total=" << total_leftover - << " worst_layer=" << worst_layer_leftover << " at print_z=" << worst_layer_z; } } @@ -356,10 +323,6 @@ void PrintObject::belt_shift_layer_grid(double delta) for (SupportLayer *layer : m_support_layers) layer->print_z += delta; m_slicing_params.belt_floor_z_shift += delta; - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] belt_shift_layer_grid" - << " obj=" << this->model_object()->name - << " delta=" << delta - << " first_layer.print_z=" << (m_layers.empty() ? 0. : m_layers.front()->print_z); } // Belt mode: drop layers strictly above z (used to cancel the purge prism early @@ -382,9 +345,6 @@ size_t PrintObject::belt_truncate_layers_above(coordf_t z) m_layers.resize(keep); if (!m_layers.empty()) m_layers.back()->upper_layer = nullptr; - BOOST_LOG_TRIVIAL(debug) << "[BELT-DEBUG] truncate purge prism above print_z=" << z - << " kept=" << keep << " removed=" << removed - << " new_top=" << (m_layers.empty() ? 0. : m_layers.back()->print_z); return removed; } diff --git a/src/libslic3r/BeltSliceStrategy.cpp b/src/libslic3r/BeltSliceStrategy.cpp index cdb6ba428f..d16819e7db 100644 --- a/src/libslic3r/BeltSliceStrategy.cpp +++ b/src/libslic3r/BeltSliceStrategy.cpp @@ -3,13 +3,6 @@ #include -#include -#ifdef SLIC3R_BELT_DIAGNOSTIC_LOG -#include -#include -#include -#endif - namespace Slic3r { void BeltSliceStrategy::apply_preslice_transforms(Transform3d &trafo, @@ -45,79 +38,18 @@ void BeltSliceStrategy::apply_preslice_transforms(Transform3d &trafo, // each volume within the object) would compute min_z against mesh-local vertex // coordinates rather than object-space coordinates, so volumes translated along // the slicer's Z axis would be silently excluded from the bound check. -#ifdef SLIC3R_BELT_DIAGNOSTIC_LOG - // Capture the incoming trafo for diagnostic logging. - // This is the slicer-frame transform AFTER remap + rotation but BEFORE z_shift. - const Transform3d trafo_pre_shift = trafo; - auto log_mat = [](const Matrix3d &m) { - std::ostringstream ss; - ss << std::fixed << std::setprecision(4); - ss << "[[" << m(0,0) << "," << m(0,1) << "," << m(0,2) << "]," - << "[" << m(1,0) << "," << m(1,1) << "," << m(1,2) << "]," - << "[" << m(2,0) << "," << m(2,1) << "," << m(2,2) << "]]"; - return ss.str(); - }; - auto log_vec3 = [](const Vec3d &v) { - std::ostringstream ss; - ss << std::fixed << std::setprecision(4); - ss << "(" << v.x() << "," << v.y() << "," << v.z() << ")"; - return ss.str(); - }; - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] apply_preslice_transforms enter" - << " has_rotation=" << has_rotation - << " has_remap=" << has_remap - << " trafo.linear=" << log_mat(trafo_pre_shift.linear()) - << " trafo.translation=" << log_vec3(trafo_pre_shift.translation()) - << " volumes=" << model_volumes.size(); -#endif double min_z = std::numeric_limits::max(); -#ifdef SLIC3R_BELT_DIAGNOSTIC_LOG - int vol_idx = 0; -#endif for (const ModelVolume *mv : model_volumes) { -#ifdef SLIC3R_BELT_DIAGNOSTIC_LOG - if (!mv->is_model_part()) { ++vol_idx; continue; } -#else - if (!mv->is_model_part()) continue; -#endif Transform3d vol_trafo = trafo * mv->get_matrix(); const auto &its = mv->mesh().its; -#ifdef SLIC3R_BELT_DIAGNOSTIC_LOG - // Per-volume bbox in mesh-frame and post-trafo slicer-frame. - Vec3d mesh_min(std::numeric_limits::max(), std::numeric_limits::max(), std::numeric_limits::max()); - Vec3d mesh_max(std::numeric_limits::lowest(), std::numeric_limits::lowest(), std::numeric_limits::lowest()); - Vec3d slicer_min(std::numeric_limits::max(), std::numeric_limits::max(), std::numeric_limits::max()); - Vec3d slicer_max(std::numeric_limits::lowest(), std::numeric_limits::lowest(), std::numeric_limits::lowest()); - double vol_min_z = std::numeric_limits::max(); -#endif for (const stl_vertex &v : its.vertices) { Vec3d vm = v.cast(); Vec3d pt = vol_trafo * vm; min_z = std::min(min_z, pt.z()); -#ifdef SLIC3R_BELT_DIAGNOSTIC_LOG - mesh_min = mesh_min.cwiseMin(vm); - mesh_max = mesh_max.cwiseMax(vm); - slicer_min = slicer_min.cwiseMin(pt); - slicer_max = slicer_max.cwiseMax(pt); - vol_min_z = std::min(vol_min_z, pt.z()); -#endif } -#ifdef SLIC3R_BELT_DIAGNOSTIC_LOG - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] vol[" << vol_idx - << "] id=" << mv->id().id << " name='" << mv->name << "'" - << " mesh_bbox_min=" << log_vec3(mesh_min) << " mesh_bbox_max=" << log_vec3(mesh_max) - << " get_matrix.translation=" << log_vec3(mv->get_matrix().translation()) - << " slicer_bbox_min=" << log_vec3(slicer_min) << " slicer_bbox_max=" << log_vec3(slicer_max) - << " vol_min_z=" << vol_min_z; - ++vol_idx; -#endif } const double z_shift_val = (min_z < 0. && min_z != std::numeric_limits::max()) ? -min_z : 0.; -#ifdef SLIC3R_BELT_DIAGNOSTIC_LOG - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] combined min_z=" << min_z - << " z_shift_val=" << z_shift_val; -#endif if (z_shift_val > 0.) { Transform3d z_shift = Transform3d::Identity(); z_shift.matrix()(2, 3) = z_shift_val; @@ -126,18 +58,8 @@ void BeltSliceStrategy::apply_preslice_transforms(Transform3d &trafo, // out_belt_min_z is only meaningful in belt mode; the standalone-remap path // never reported it. if (out_belt_min_z && config.belt_printer.value) { - const double new_val = (min_z != std::numeric_limits::max()) ? min_z : 0.; -#ifdef SLIC3R_BELT_DIAGNOSTIC_LOG - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] write m_belt_min_z tid=" << std::this_thread::get_id() - << " target=" << out_belt_min_z << " old=" << *out_belt_min_z << " new=" << new_val; -#endif - *out_belt_min_z = new_val; + *out_belt_min_z = (min_z != std::numeric_limits::max()) ? min_z : 0.; } -#ifdef SLIC3R_BELT_DIAGNOSTIC_LOG - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] apply_preslice_transforms exit" - << " final_trafo.linear=" << log_mat(trafo.linear()) - << " final_trafo.translation=" << log_vec3(trafo.translation()); -#endif } } // namespace Slic3r diff --git a/src/libslic3r/PrintObject.cpp b/src/libslic3r/PrintObject.cpp index 58ce53df5a..6b9c5842bf 100644 --- a/src/libslic3r/PrintObject.cpp +++ b/src/libslic3r/PrintObject.cpp @@ -4,7 +4,6 @@ #include "Print.hpp" #include "BeltTransform.hpp" -#include #include "BoundingBox.hpp" #include "ClipperUtils.hpp" #include "Clipper2Utils.hpp" @@ -460,15 +459,11 @@ std::vector> PrintObject::detect_extruder_geometric_unprintables() // 3) Generates perimeters, gap fills and fill regions (fill regions of type stInternal). void PrintObject::make_perimeters() { - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] make_perimeters request tid=" << std::this_thread::get_id() << " obj=" << this; // prerequisites this->slice(); - if (! this->set_started(posPerimeters)) { - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] make_perimeters SKIP tid=" << std::this_thread::get_id() << " obj=" << this << " (already started/done)"; + if (! this->set_started(posPerimeters)) return; - } - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] make_perimeters ENTER tid=" << std::this_thread::get_id() << " obj=" << this; m_print->set_status(15, L("Generating walls")); BOOST_LOG_TRIVIAL(info) << "Generating walls..." << log_memory_info(); @@ -566,7 +561,6 @@ void PrintObject::make_perimeters() m_print->throw_if_canceled(); BOOST_LOG_TRIVIAL(debug) << "Generating perimeters in parallel - end"; - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] make_perimeters EXIT tid=" << std::this_thread::get_id() << " obj=" << this; this->set_done(posPerimeters); } @@ -955,9 +949,7 @@ void PrintObject::detect_overhangs_for_lift() void PrintObject::generate_support_material() { - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] generate_support_material request tid=" << std::this_thread::get_id() << " obj=" << this; if (this->set_started(posSupportMaterial)) { - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] generate_support_material ENTER tid=" << std::this_thread::get_id() << " obj=" << this; this->clear_support_layers(); if(!has_support() && !m_print->get_no_check_flag()) { @@ -1005,10 +997,7 @@ void PrintObject::generate_support_material() // posSupportMaterial, so this needs no extra invalidation edges. make_belt_brim(*this); m_print->throw_if_canceled(); - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] generate_support_material EXIT tid=" << std::this_thread::get_id() << " obj=" << this; this->set_done(posSupportMaterial); - } else { - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] generate_support_material SKIP tid=" << std::this_thread::get_id() << " obj=" << this << " (already started/done)"; } } diff --git a/src/libslic3r/PrintObjectSlice.cpp b/src/libslic3r/PrintObjectSlice.cpp index 8360a9562f..2181b3e0d5 100644 --- a/src/libslic3r/PrintObjectSlice.cpp +++ b/src/libslic3r/PrintObjectSlice.cpp @@ -1,6 +1,5 @@ #include #include -#include #include @@ -860,12 +859,8 @@ void groupingVolumesForBrim(PrintObject* object, LayerPtrs& layers, int firstLay // Resulting expolygons of layer regions are marked as Internal. void PrintObject::slice() { - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] slice request tid=" << std::this_thread::get_id() << " obj=" << this; - if (! this->set_started(posSlice)) { - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] slice SKIP tid=" << std::this_thread::get_id() << " obj=" << this << " (already started/done)"; + if (! this->set_started(posSlice)) return; - } - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] slice ENTER tid=" << std::this_thread::get_id() << " obj=" << this; //BBS: add flag to reload scene for shell rendering m_print->set_status(5, L("Slicing mesh"), PrintBase::SlicingStatus::RELOAD_SCENE); std::vector layer_height_profile; @@ -1000,41 +995,6 @@ void PrintObject::slice() 0.); double centering_z_corr = (T_fwd.linear() * c_off).z(); global_z_offset += centering_z_corr; - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] centering correction" - << " obj=" << this->model_object()->name - << " m_center_offset_mm=(" << c_off.x() << "," << c_off.y() << ")" - << " centering_z_corr=" << centering_z_corr - << " (added to global_z_offset)"; - } - - // [BELT-DEBUG] Per-object summary so Case A vs Case B can be compared - // side-by-side. Lays out every value that feeds into the final layer - // print_z adjustment. - { - BoundingBoxf3 raw_bb = this->model_object()->raw_bounding_box(); - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] slice() per-object summary" - << " obj=" << this->model_object()->name - << " n_volumes=" << this->model_object()->volumes.size() - << " raw_bbox.min=(" << raw_bb.min.x() << "," << raw_bb.min.y() << "," << raw_bb.min.z() << ")" - << " raw_bbox.max=(" << raw_bb.max.x() << "," << raw_bb.max.y() << "," << raw_bb.max.z() << ")" - << " raw_bbox.center=(" << raw_bb.center().x() << "," << raw_bb.center().y() << ")" - << " m_center_offset=(" << unscale(m_center_offset.x()) << "," << unscale(m_center_offset.y()) << ")" - << " inst_shift=(" << unscale(inst_shift.x()) << "," << unscale(inst_shift.y()) << ")" - << " m_belt_min_z=" << m_belt_min_z - << " belt_surface_z=" << belt_surface_z - << " belt_z_shift=" << belt_z_shift; - // Per-volume bbox + get_matrix translation so order/composition is visible. - int vi = 0; - for (const ModelVolume *mv : this->model_object()->volumes) { - if (!mv->is_model_part()) { ++vi; continue; } - BoundingBoxf3 vol_bb = mv->mesh().transformed_bounding_box(mv->get_matrix()); - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] vol[" << vi - << "] id=" << mv->id().id << " name='" << mv->name << "'" - << " get_matrix.translation=(" << mv->get_matrix().translation().x() << "," << mv->get_matrix().translation().y() << "," << mv->get_matrix().translation().z() << ")" - << " object_bbox.min=(" << vol_bb.min.x() << "," << vol_bb.min.y() << "," << vol_bb.min.z() << ")" - << " object_bbox.max=(" << vol_bb.max.x() << "," << vol_bb.max.y() << "," << vol_bb.max.z() << ")"; - ++vi; - } } if (pcfg.belt_preslice_global.value) { @@ -1044,9 +1004,6 @@ void PrintObject::slice() Vec3d d(unscale(inst_shift.x()), unscale(inst_shift.y()), 0.); Vec3d c = T.linear() * d - d; global_z_offset += c.z(); - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] write m_belt_global_xy_correction tid=" << std::this_thread::get_id() - << " obj=" << this << " old=(" << m_belt_global_xy_correction.x() << "," << m_belt_global_xy_correction.y() - << ") new=(" << c.x() << "," << c.y() << ")"; m_belt_global_xy_correction = Vec2d(c.x(), c.y()); BOOST_LOG_TRIVIAL(trace) << "Belt preslice_global: correction=(" @@ -1081,18 +1038,7 @@ void PrintObject::slice() BOOST_LOG_TRIVIAL(trace) << "Belt global: z_offset=" << global_z_offset << " (relative to min across " << this->print()->objects().size() << " objects)"; - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] write m_belt_global_z_offset tid=" << std::this_thread::get_id() - << " obj=" << this << " old=" << m_belt_global_z_offset << " new=" << global_z_offset; m_belt_global_z_offset = global_z_offset; - // [BELT-DEBUG] Final breakdown of all contributions to layer.print_z - // and where the first / last layer end up post-adjustment. - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] global_z_offset breakdown" - << " obj=" << this->model_object()->name - << " belt_z_shift=" << belt_z_shift - << " total_global_z_offset=" << global_z_offset - << " xy_correction=(" << m_belt_global_xy_correction.x() << "," << m_belt_global_xy_correction.y() << ")" - << " belt_floor_z_shift_before=" << (m_slicing_params.belt_floor_z_shift) - << " n_layers=" << m_layers.size(); if (std::abs(global_z_offset) > EPSILON) { for (Layer *layer : m_layers) layer->print_z += global_z_offset; @@ -1101,12 +1047,6 @@ void PrintObject::slice() // layer print_z, so belt_floor_z_shift must match. m_slicing_params.belt_floor_z_shift += global_z_offset; } - if (!m_layers.empty()) { - BOOST_LOG_TRIVIAL(trace) << "[BELT-DEBUG] post-adjustment" - << " first_layer.print_z=" << m_layers.front()->print_z - << " last_layer.print_z=" << m_layers.back()->print_z - << " belt_floor_z_shift_after=" << m_slicing_params.belt_floor_z_shift; - } if (!m_layers.empty()) { BOOST_LOG_TRIVIAL(trace) << "Belt global: first_layer_z=" << m_layers.front()->print_z << " last_layer_z=" << m_layers.back()->print_z @@ -1125,10 +1065,6 @@ void PrintObject::slice() } // BBS - BOOST_LOG_TRIVIAL(trace) << "[BELTRACE] slice EXIT tid=" << std::this_thread::get_id() << " obj=" << this - << " layers=" << m_layers.size() << " belt_min_z=" << m_belt_min_z - << " belt_global_z_offset=" << m_belt_global_z_offset - << " belt_xy=(" << m_belt_global_xy_correction.x() << "," << m_belt_global_xy_correction.y() << ")"; this->set_done(posSlice); } diff --git a/src/libslic3r/Support/TreeSupport.cpp b/src/libslic3r/Support/TreeSupport.cpp index 7cf1baeb68..75195d0167 100644 --- a/src/libslic3r/Support/TreeSupport.cpp +++ b/src/libslic3r/Support/TreeSupport.cpp @@ -1913,8 +1913,6 @@ void TreeSupport::generate() if (first_layer != nullptr) { ExPolygons floating = diff_ex(first_layer->lslices_extrudable, ctx.surface_polygon(first_layer->bottom_z() - first_layer->height)); - BOOST_LOG_TRIVIAL(debug) << "[BELT-CALIB] wedge seed: obj=" << m_object->model_object()->name - << " bottom_z=" << first_layer->bottom_z() << " floating=" << floating.size(); if (!floating.empty()) { source_areas = std::move(floating); first_z = first_layer->bottom_z(); diff --git a/src/slic3r/GUI/BeltPurgeTower.cpp b/src/slic3r/GUI/BeltPurgeTower.cpp index 1882363d27..a8b0b0c0b8 100644 --- a/src/slic3r/GUI/BeltPurgeTower.cpp +++ b/src/slic3r/GUI/BeltPurgeTower.cpp @@ -171,7 +171,6 @@ bool ensure_belt_purge_tower(Model &model, PartPlateList &partplate_list, Object if (prism_idxs.empty()) return false; remove_prisms(prism_idxs); - BOOST_LOG_TRIVIAL(warning) << "[BELT-DEBUG] belt purge tower removed (conditions not met)"; return true; } @@ -295,22 +294,13 @@ bool ensure_belt_purge_tower(Model &model, PartPlateList &partplate_list, Object const double lat_origin = plate_origin[belt_is_y ? 0 : 1]; const double inset = 1.; double lat_center = lat_max + 5. + 0.5 * width; // fallback: just past the parts - BoundingBoxf bed_ext_dbg; if (const auto *bed_opt = printer_config.option("printable_area"); bed_opt != nullptr && !bed_opt->values.empty()) { const BoundingBoxf bed_ext = get_extents(bed_opt->values); - bed_ext_dbg = bed_ext; const double bed_lat_max = belt_is_y ? bed_ext.max.x() : bed_ext.max.y(); lat_center = lat_origin + bed_lat_max - inset - 0.5 * width; } - BOOST_LOG_TRIVIAL(warning) << "[BELT-DEBUG] purge place" - << " plate_origin=(" << plate_origin.x() << "," << plate_origin.y() << ")" - << " parts_x=[" << x_min << "," << x_max << "] parts_y=[" << y_min << "," << y_max << "] z_max=" << z_max - << " bed_ext=[" << bed_ext_dbg.min.x() << "," << bed_ext_dbg.min.y() - << " -> " << bed_ext_dbg.max.x() << "," << bed_ext_dbg.max.y() << "]" - << " lat_center=" << lat_center << " belt=[" << belt_start << "," << belt_end << "]"; - const Vec3d desired_center(belt_is_y ? lat_center : belt_center, belt_is_y ? belt_center : lat_center, 0.5 * height); @@ -395,15 +385,6 @@ bool ensure_belt_purge_tower(Model &model, PartPlateList &partplate_list, Object // until the parts/config actually change. sig = new_sig; - BOOST_LOG_TRIVIAL(warning) << "[BELT-DEBUG] belt purge tower generated" - << " belt_is_y=" << belt_is_y - << " W=" << width << " L=" << length << " H=" << height - << " v_layer=" << v_layer << " max_flush=" << max_flush - << " filaments=" << filaments.size() - << " theta_deg=" << Geometry::rad2deg(theta) - << " desired_center=(" << desired_center.x() << "," << desired_center.y() << "," << desired_center.z() << ")" - << " achieved_center=(" << new_object->bounding_box_exact().center().x() << "," - << new_object->bounding_box_exact().center().y() << ")"; return true; } diff --git a/src/slic3r/GUI/GCodeViewer.cpp b/src/slic3r/GUI/GCodeViewer.cpp index 58fe8f9931..9193cc5ef8 100644 --- a/src/slic3r/GUI/GCodeViewer.cpp +++ b/src/slic3r/GUI/GCodeViewer.cpp @@ -1387,8 +1387,6 @@ void GCodeViewer::load_as_gcode(const GCodeProcessorResult& gcode_result, const // translation, which this min-corner step recovers. const Vec3d d = model_bb.min - tp_bb.min; belt_inv = Transform3d(Eigen::Translation3d(d)) * belt_inv; - BOOST_LOG_TRIVIAL(debug) << "[BELT-PREVIEW] anchor d=[" << d.x() << "," << d.y() << "," << d.z() - << "] (clip kept " << n_clip << "/" << n_filtered << " moves)"; } } libvgcode::GCodeInputData data = libvgcode::convert(gcode_result, str_tool_colors, str_color_print_colors, m_viewer, diff --git a/src/slic3r/GUI/Plater.cpp b/src/slic3r/GUI/Plater.cpp index 69086cd915..5b6e2c6300 100644 --- a/src/slic3r/GUI/Plater.cpp +++ b/src/slic3r/GUI/Plater.cpp @@ -15893,20 +15893,6 @@ void Plater::_calib_apply_belt_mode() inst->rotate(cancel_rotation); obj->invalidate_bounding_box(); obj->ensure_on_bed(); - - { - const BoundingBoxf3 rb = obj->raw_bounding_box(); - const Vec3d io = inst->get_offset(); - const Vec3d ir = inst->get_rotation(); - BOOST_LOG_TRIVIAL(debug) << "[BELT-CALIB] helper exit: obj=" << obj->name - << " inst_offset=(" << io.x() << "," << io.y() << "," << io.z() << ")" - << " inst_rot=(" << ir.x() << "," << ir.y() << "," << ir.z() << ")" - << " vol0_offset=(" << obj->volumes.front()->get_offset().x() << "," - << obj->volumes.front()->get_offset().y() << "," << obj->volumes.front()->get_offset().z() << ")" - << " raw_bbox=(" << rb.min.x() << "," << rb.min.y() << "," << rb.min.z() - << ")..(" << rb.max.x() << "," << rb.max.y() << "," << rb.max.z() << ")" - << " min_z=" << obj->min_z(); - } } // Each object's support wedge extends upstream of it by roughly its own