8858651bf4
of Layer->LayerSlice->LayerIsland hierarchy. This should improve tool path ordering of multiple parts within the same object #5511. Some shells tests rewritten from Perl to C++. FIXME: Gap fill extrusions are currently not handled by the initial G-code preview!
113 lines
5.1 KiB
C++
113 lines
5.1 KiB
C++
#include <catch2/catch.hpp>
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#include "libslic3r/GCodeReader.hpp"
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#include "test_data.hpp" // get access to init_print, etc
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using namespace Slic3r::Test;
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using namespace Slic3r;
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SCENARIO("Shells", "[Shells]") {
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GIVEN("20mm box") {
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auto test = [](const DynamicPrintConfig &config){
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std::string gcode = Slic3r::Test::slice({ Slic3r::Test::TestMesh::cube_20x20x20 }, config);
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std::vector<coord_t> zs;
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std::set<coord_t> layers_with_solid_infill;
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std::set<coord_t> layers_with_bridge_infill;
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const double solid_infill_speed = config.opt_float("solid_infill_speed") * 60;
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const double bridge_speed = config.opt_float("bridge_speed") * 60;
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GCodeReader parser;
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parser.parse_buffer(gcode,
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[&zs, &layers_with_solid_infill, &layers_with_bridge_infill, solid_infill_speed, bridge_speed]
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(Slic3r::GCodeReader &self, const Slic3r::GCodeReader::GCodeLine &line)
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{
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double z = line.new_Z(self);
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REQUIRE(z >= 0);
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if (z > 0) {
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coord_t scaled_z = scaled<float>(z);
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zs.emplace_back(scaled_z);
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if (line.extruding(self) && line.dist_XY(self) > 0) {
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double f = line.new_F(self);
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if (std::abs(f - solid_infill_speed) < EPSILON)
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layers_with_solid_infill.insert(scaled_z);
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if (std::abs(f - bridge_speed) < EPSILON)
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layers_with_bridge_infill.insert(scaled_z);
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}
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}
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});
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sort_remove_duplicates(zs);
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auto has_solid_infill = [&layers_with_solid_infill](coord_t z) { return layers_with_solid_infill.find(z) != layers_with_solid_infill.end(); };
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auto has_bridge_infill = [&layers_with_bridge_infill](coord_t z) { return layers_with_bridge_infill.find(z) != layers_with_bridge_infill.end(); };
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auto has_shells = [&has_solid_infill, &has_bridge_infill, &zs](int layer_idx) { coord_t z = zs[layer_idx]; return has_solid_infill(z) || has_bridge_infill(z); };
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const int bottom_solid_layers = config.opt_int("bottom_solid_layers");
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const int top_solid_layers = config.opt_int("top_solid_layers");
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THEN("correct number of bottom solid layers") {
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for (int i = 0; i < bottom_solid_layers; ++ i)
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REQUIRE(has_shells(i));
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for (int i = bottom_solid_layers; i < int(zs.size() / 2); ++ i)
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REQUIRE(! has_shells(i));
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}
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THEN("correct number of top solid layers") {
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for (int i = 0; i < top_solid_layers; ++ i)
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REQUIRE(has_shells(int(zs.size()) - i - 1));
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for (int i = top_solid_layers; i < int(zs.size() / 2); ++ i)
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REQUIRE(! has_shells(int(zs.size()) - i - 1));
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}
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if (top_solid_layers > 0) {
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THEN("solid infill speed is used on solid infill") {
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for (int i = 0; i < top_solid_layers - 1; ++ i) {
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auto z = zs[int(zs.size()) - i - 1];
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REQUIRE(has_solid_infill(z));
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REQUIRE(! has_bridge_infill(z));
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}
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}
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THEN("bridge used in first solid layer over sparse infill") {
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auto z = zs[int(zs.size()) - top_solid_layers];
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REQUIRE(! has_solid_infill(z));
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REQUIRE(has_bridge_infill(z));
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}
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}
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};
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auto config = Slic3r::DynamicPrintConfig::full_print_config_with({
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{ "skirts", 0 },
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{ "perimeters", 0 },
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{ "solid_infill_speed", 99 },
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{ "top_solid_infill_speed", 99 },
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{ "bridge_speed", 72 },
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{ "first_layer_speed", "100%" },
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{ "cooling", "0" }
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});
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WHEN("three top and bottom layers") {
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// proper number of shells is applied
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config.set_deserialize_strict({
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{ "top_solid_layers", 3 },
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{ "bottom_solid_layers", 3 }
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});
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test(config);
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}
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WHEN("zero top and bottom layers") {
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// no shells are applied when both top and bottom are set to zero
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config.set_deserialize_strict({
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{ "top_solid_layers", 0 },
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{ "bottom_solid_layers", 0 }
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});
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test(config);
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}
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WHEN("three top and bottom layers, zero infill") {
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// proper number of shells is applied even when fill density is none
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config.set_deserialize_strict({
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{ "perimeters", 1 },
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{ "top_solid_layers", 3 },
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{ "bottom_solid_layers", 3 }
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});
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test(config);
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}
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}
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}
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