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Author SHA1 Message Date
Hanif Koh ee7bd58a9f Stop Exporting Names Through Usings in the Remaining Headers
The last headers with a using or namespace alias at namespace scope:

- TCPConsole.hpp imported boost::asio::ip::tcp into Slic3r::Utils for
  two member declarations. The alias is now a private member of the
  class.
- WebSocketClient.hpp declared four namespace aliases and a tcp alias
  at global scope, each used only by the header. The names are spelled
  out.
- Repair.hpp aliased CGAL::Polygon_mesh_processing as PMP in
  Slic3r::tex2color. The three functions that use it declare the alias
  themselves.
- PreciseSeam.hpp, Thumbnails.hpp and MarchingSquares.hpp used a
  using-declaration or directive for one or two spots each; those spots
  are qualified. Thumbnails.hpp's "PNG"sv default argument becomes
  "PNG", which converts to the std::string_view parameter the same way.
- tests/sla_print/sla_test_utils.hpp had "using namespace Slic3r;" and
  tests/filament_group/fg_test_serialization.hpp "using json =
  nlohmann::json;" at global scope. The headers qualify their own names;
  the two SLA test sources get the directive themselves.

Also removed: twelve type aliases in headers that nothing references
(ConflictObjName, CircleSqf, CircleSqd, TRawBuffer, DistanceFunction,
SamePair, ExtruderNozzleInfos, Vec2dEvent, Vec2dsEvent, Vec3dEvent,
t_option, t_optgroups, Plater::fs_path) and a duplicate
fn_ft_job_msg_destroy alias in FileTransferUtils.hpp.
2026-10-07 18:31:22 +08:00
24 changed files with 120 additions and 157 deletions
+1 -1
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@@ -311,7 +311,7 @@ function CreatePrinterBlock(OneModel)
return '<div class="PrinterBlock" onClick="ChooseModel(\''+vendor+'\',\''+OneModel['model']+'\')">'+ return '<div class="PrinterBlock" onClick="ChooseModel(\''+vendor+'\',\''+OneModel['model']+'\')">'+
' <div class="PImg">'+ ' <div class="PImg">'+
' <img class="ModelThumbnail" src="' + OneModel['cover'] + '" onerror="this.onerror=null;this.src=\'../img/printer-dummy.png\';"/>'+ ' <img class="ModelThumbnail" src="' + OneModel['cover'] + '" />'+
' </div>'+ ' </div>'+
' <div class="PrinterInfoMark">?</div>'+ ' <div class="PrinterInfoMark">?</div>'+
' <div class="PrinterInfo">'+ ' <div class="PrinterInfo">'+
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-2
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@@ -148,8 +148,6 @@ struct ConflictComputeResult
using ConflictComputeOpt = std::optional<ConflictComputeResult>; using ConflictComputeOpt = std::optional<ConflictComputeResult>;
using ConflictObjName = std::optional<std::pair<std::string, std::string>>;
struct ConflictChecker struct ConflictChecker
{ {
static ConflictResultOpt find_inter_of_lines_in_diff_objs(PrintObjectPtrs objs, std::optional<const FakeWipeTower *> wtdptr); static ConflictResultOpt find_inter_of_lines_in_diff_objs(PrintObjectPtrs objs, std::optional<const FakeWipeTower *> wtdptr);
+1 -4
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@@ -22,9 +22,6 @@
namespace Slic3r { namespace Slic3r {
namespace PreciseSeam { namespace PreciseSeam {
// Import EnforcedBlockedSeamPoint from SeamPlacerImpl namespace for convenience
using SeamPlacerImpl::EnforcedBlockedSeamPoint;
// Geometry and its exterior bounds are prepared together, then treated as read-only. // Geometry and its exterior bounds are prepared together, then treated as read-only.
struct ModifierRegion { struct ModifierRegion {
ExPolygon polygon; ExPolygon polygon;
@@ -137,7 +134,7 @@ SegmentExtraction extract_perimeter_segments(const PreparedPerimeter &prepared,
// Result of weak modifier segment processing // Result of weak modifier segment processing
struct WeakModifierSegment { struct WeakModifierSegment {
EnforcedBlockedSeamPoint type; // Enforced/Blocked/Neutral SeamPlacerImpl::EnforcedBlockedSeamPoint type; // Enforced/Blocked/Neutral
Point left_point; // Coordinates of left (first) point of segment Point left_point; // Coordinates of left (first) point of segment
PerimeterPosition left_position; // Position on the source perimeter before insertion/refinement. PerimeterPosition left_position; // Position on the source perimeter before insertion/refinement.
Point right_point; // Coordinates of right (last) point of segment Point right_point; // Coordinates of right (last) point of segment
+1 -2
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@@ -40,8 +40,7 @@ std::string get_error_string(const ThumbnailErrors& errors);
typedef std::vector<std::pair<GCodeThumbnailsFormat, Vec2d>> GCodeThumbnailDefinitionsList; typedef std::vector<std::pair<GCodeThumbnailsFormat, Vec2d>> GCodeThumbnailDefinitionsList;
using namespace std::literals; std::pair<GCodeThumbnailDefinitionsList, ThumbnailErrors> make_and_check_thumbnail_list(const std::string& thumbnails_string, const std::string_view def_ext = "PNG");
std::pair<GCodeThumbnailDefinitionsList, ThumbnailErrors> make_and_check_thumbnail_list(const std::string& thumbnails_string, const std::string_view def_ext = "PNG"sv);
std::pair<GCodeThumbnailDefinitionsList, ThumbnailErrors> make_and_check_thumbnail_list(const ConfigBase &config); std::pair<GCodeThumbnailDefinitionsList, ThumbnailErrors> make_and_check_thumbnail_list(const ConfigBase &config);
-2
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@@ -94,8 +94,6 @@ struct Circle {
using Circlef = Circle<Vec2f>; using Circlef = Circle<Vec2f>;
using Circled = Circle<Vec2d>; using Circled = Circle<Vec2d>;
using CircleSqf = CircleSq<Vec2f>;
using CircleSqd = CircleSq<Vec2d>;
/// Find the center of the circle corresponding to the vector of Points as an arc. /// Find the center of the circle corresponding to the vector of Points as an arc.
Point circle_center_taubin_newton(const Points::const_iterator& input_start, const Points::const_iterator& input_end, size_t cycles = 20); Point circle_center_taubin_newton(const Points::const_iterator& input_start, const Points::const_iterator& input_end, size_t cycles = 20);
+3 -4
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@@ -154,13 +154,12 @@ template<class ExecutionPolicy, class Enable = void> struct _Loop
}; };
// Add Specialization for using ExecutionTBB for parallel loops. // Add Specialization for using ExecutionTBB for parallel loops.
using namespace Slic3r; template<> struct _Loop<Slic3r::ExecutionTBB>
template<> struct _Loop<ExecutionTBB>
{ {
template<class It, class Fn> static void for_each_idx(It from, It to, Fn&& fn) template<class It, class Fn> static void for_each_idx(It from, It to, Fn&& fn)
{ {
execution::for_each( Slic3r::execution::for_each(
ex_tbb, size_t(0), size_t(to - from), [&from, &fn](size_t i) { fn(from[i], i); }, execution::max_concurrency(ex_tbb)); Slic3r::ex_tbb, size_t(0), size_t(to - from), [&from, &fn](size_t i) { fn(from[i], i); }, Slic3r::execution::max_concurrency(Slic3r::ex_tbb));
} }
}; };
-1
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@@ -49,7 +49,6 @@ public:
using TColor = typename PixelRenderer::color_type; using TColor = typename PixelRenderer::color_type;
using TValue = typename TColor::value_type; using TValue = typename TColor::value_type;
using TPixel = typename PixelRenderer::pixel_type; using TPixel = typename PixelRenderer::pixel_type;
using TRawBuffer = agg::rendering_buffer;
protected: protected:
@@ -17,9 +17,6 @@ typedef std::vector<Color> ColorList;
typedef std::array<double, 3> ColorDouble; typedef std::array<double, 3> ColorDouble;
typedef std::array<std::size_t, 3> RGB; typedef std::array<std::size_t, 3> RGB;
// Function pointer type that points to a specific color-difference function based on the chosen method.
using DistanceFunction = double (*)(const Color&, const Color&);
// Color space used for computing color differences. // Color space used for computing color differences.
enum struct ColorDifferenceMethod : std::size_t { enum struct ColorDifferenceMethod : std::size_t {
RGB = 0, // Simplest and fastest RGB = 0, // Simplest and fastest
+3 -2
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@@ -23,8 +23,6 @@
namespace Slic3r { namespace tex2color { namespace Slic3r { namespace tex2color {
namespace PMP = CGAL::Polygon_mesh_processing;
// Default upper bound on the number of half-edges in any single boundary cycle // Default upper bound on the number of half-edges in any single boundary cycle
// that CloseBoundariesAndRepairManifoldness will attempt to triangulate. The // that CloseBoundariesAndRepairManifoldness will attempt to triangulate. The
// cost of triangulate_hole grows non-linearly with cycle length, so this caps // cost of triangulate_hole grows non-linearly with cycle length, so this caps
@@ -60,6 +58,7 @@ struct BoundaryEdgeStats
// any pre-processing (e.g. stitch_borders) needed for the count to be meaningful. // any pre-processing (e.g. stitch_borders) needed for the count to be meaningful.
inline BoundaryEdgeStats ComputeBoundaryEdgeStats(const cgalutils::CGALMesh& cgal_mesh) inline BoundaryEdgeStats ComputeBoundaryEdgeStats(const cgalutils::CGALMesh& cgal_mesh)
{ {
namespace PMP = CGAL::Polygon_mesh_processing;
using CGALMesh = cgalutils::CGALMesh; using CGALMesh = cgalutils::CGALMesh;
using HalfedgeDescriptor = boost::graph_traits<CGALMesh>::halfedge_descriptor; using HalfedgeDescriptor = boost::graph_traits<CGALMesh>::halfedge_descriptor;
@@ -86,6 +85,7 @@ inline BoundaryEdgeStats ComputeBoundaryEdgeStats(const cgalutils::CGALMesh& cga
// boundary statistics; entering this function always triggers triangulation. // boundary statistics; entering this function always triggers triangulation.
inline void CloseBoundariesAndRepairManifoldness(cgalutils::CGALMesh& cgal_mesh) inline void CloseBoundariesAndRepairManifoldness(cgalutils::CGALMesh& cgal_mesh)
{ {
namespace PMP = CGAL::Polygon_mesh_processing;
using CGALMesh = cgalutils::CGALMesh; using CGALMesh = cgalutils::CGALMesh;
using HalfedgeDescriptor = boost::graph_traits<CGALMesh>::halfedge_descriptor; using HalfedgeDescriptor = boost::graph_traits<CGALMesh>::halfedge_descriptor;
using FaceDescriptor = boost::graph_traits<CGALMesh>::face_descriptor; using FaceDescriptor = boost::graph_traits<CGALMesh>::face_descriptor;
@@ -111,6 +111,7 @@ inline bool RepairMesh(const TriMesh& mesh,
AlgoCancelCallback cancel_callback = nullptr, AlgoCancelCallback cancel_callback = nullptr,
const RepairSetting& setting = RepairSetting{}) const RepairSetting& setting = RepairSetting{})
{ {
namespace PMP = CGAL::Polygon_mesh_processing;
using Clock = std::chrono::steady_clock; using Clock = std::chrono::steady_clock;
auto elapsed_ms = [](Clock::time_point t0) { auto elapsed_ms = [](Clock::time_point t0) {
return std::chrono::duration_cast<std::chrono::milliseconds>(Clock::now() - t0).count(); return std::chrono::duration_cast<std::chrono::milliseconds>(Clock::now() - t0).count();
-2
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@@ -432,8 +432,6 @@ inline IntegerOnly<I, I> fast_round_up(double a)
return a == 0.49999999999999994 ? I(0) : I(floor(a + 0.5)); return a == 0.49999999999999994 ? I(0) : I(floor(a + 0.5));
} }
template<class T> using SamePair = std::pair<T, T>;
} // namespace Slic3r } // namespace Slic3r
#endif #endif
-3
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@@ -198,6 +198,3 @@ template<> struct std::hash<NozzleDef>
return h1 ^ (h2 + 0x9e3779b9 + (h1 << 6) + (h1 >> 2)); return h1 ^ (h2 + 0x9e3779b9 + (h1 << 6) + (h1 >> 2));
}; };
}; };
// key(extruder_id) -> { key1(nozzle type info), val1( number of the nozzle type)}
using ExtruderNozzleInfos = std::unordered_map<int, std::unordered_map<NozzleDef, int>>;
-3
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@@ -183,13 +183,10 @@ wxDECLARE_EVENT(EVT_GLCANVAS_PLATE_NAME_CHANGE, SimpleEvent);
//BBS: declare EVT_GLCANVAS_PLATE_SELECT //BBS: declare EVT_GLCANVAS_PLATE_SELECT
wxDECLARE_EVENT(EVT_GLCANVAS_PLATE_SELECT, SimpleEvent); wxDECLARE_EVENT(EVT_GLCANVAS_PLATE_SELECT, SimpleEvent);
using Vec2dEvent = Event<Vec2d>;
// _bool_ value is used as a indicator of selection in the 3DScene // _bool_ value is used as a indicator of selection in the 3DScene
using RBtnEvent = Event<std::pair<Vec2d, bool>>; using RBtnEvent = Event<std::pair<Vec2d, bool>>;
using RBtnPlateEvent = Event<std::pair<Vec2d, int>>; using RBtnPlateEvent = Event<std::pair<Vec2d, int>>;
template <size_t N> using Vec2dsEvent = ArrayEvent<Vec2d, N>;
using Vec3dEvent = Event<Vec3d>;
template <size_t N> using Vec3dsEvent = ArrayEvent<Vec3d, N>; template <size_t N> using Vec3dsEvent = ArrayEvent<Vec3d, N>;
using HeightProfileSmoothEvent = Event<HeightProfileSmoothingParams>; using HeightProfileSmoothEvent = Event<HeightProfileSmoothingParams>;
-1
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@@ -54,7 +54,6 @@ struct Option {
Option(const ConfigOptionDef& _opt, t_config_option_key id) : Option(const ConfigOptionDef& _opt, t_config_option_key id) :
opt(_opt), opt_id(id) {} opt(_opt), opt_id(id) {}
}; };
using t_option = std::unique_ptr<Option>; //!
/// Represents option lines /// Represents option lines
class Line : public UndoValueUIManager class Line : public UndoValueUIManager
-2
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@@ -108,7 +108,6 @@ class PlaterPresetComboBox;
class PartPlateList; class PartPlateList;
class SyncNozzleAndAmsDialog; class SyncNozzleAndAmsDialog;
class FinishSyncAmsDialog; class FinishSyncAmsDialog;
using t_optgroups = std::vector <std::shared_ptr<ConfigOptionsGroup>>;
class Plater; class Plater;
enum class ActionButtonType : int; enum class ActionButtonType : int;
@@ -325,7 +324,6 @@ private:
class Plater: public wxPanel class Plater: public wxPanel
{ {
public: public:
using fs_path = boost::filesystem::path;
Plater(wxWindow *parent, MainFrame *main_frame); Plater(wxWindow *parent, MainFrame *main_frame);
Plater(Plater &&) = delete; Plater(Plater &&) = delete;
-1
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@@ -89,7 +89,6 @@ using fn_ft_job_get_result = ft_err(FT_CALL *)(FT_JobHandle *, uint32_t timeo
using fn_ft_tunnel_start_job = ft_err(FT_CALL *)(FT_TunnelHandle *, FT_JobHandle *); using fn_ft_tunnel_start_job = ft_err(FT_CALL *)(FT_TunnelHandle *, FT_JobHandle *);
using fn_ft_job_cancel = ft_err(FT_CALL *)(FT_JobHandle *); using fn_ft_job_cancel = ft_err(FT_CALL *)(FT_JobHandle *);
using fn_ft_job_msg_destroy = void(FT_CALL *)(ft_job_msg *);
using fn_ft_job_set_msg_cb = ft_err(FT_CALL *)(FT_JobHandle *, void(FT_CALL *)(void *user, ft_job_msg msg), void *user); using fn_ft_job_set_msg_cb = ft_err(FT_CALL *)(FT_JobHandle *, void(FT_CALL *)(void *user, ft_job_msg msg), void *user);
using fn_ft_job_try_get_msg = ft_err(FT_CALL *)(FT_JobHandle *, ft_job_msg *out_msg); using fn_ft_job_try_get_msg = ft_err(FT_CALL *)(FT_JobHandle *, ft_job_msg *out_msg);
using fn_ft_job_get_msg = ft_err(FT_CALL *)(FT_JobHandle *, uint32_t timeout_ms, ft_job_msg *out_msg); using fn_ft_job_get_msg = ft_err(FT_CALL *)(FT_JobHandle *, uint32_t timeout_ms, ft_job_msg *out_msg);
+2 -2
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@@ -16,12 +16,12 @@
namespace Slic3r { namespace Slic3r {
namespace Utils { namespace Utils {
using boost::asio::ip::tcp;
// Generic command / response TCP telnet like console class. // Generic command / response TCP telnet like console class.
// Used by the MKS host to send G-code commands to test connection ("M105") and to start printing ("M23 filename", "M24"). // Used by the MKS host to send G-code commands to test connection ("M105") and to start printing ("M23 filename", "M24").
class TCPConsole class TCPConsole
{ {
using tcp = boost::asio::ip::tcp;
public: public:
TCPConsole() : m_resolver(m_io_context), m_socket(m_io_context) { set_defaults(); } TCPConsole() : m_resolver(m_io_context), m_socket(m_io_context) { set_defaults(); }
TCPConsole(const std::string& host_name, const std::string& port_name) : m_resolver(m_io_context), m_socket(m_io_context) TCPConsole(const std::string& host_name, const std::string& port_name) : m_resolver(m_io_context), m_socket(m_io_context)
+11 -16
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@@ -16,11 +16,6 @@
#include <iostream> #include <iostream>
#include <string> #include <string>
#include <chrono> #include <chrono>
namespace beast = boost::beast; // from <boost/beast.hpp>
namespace http = beast::http; // from <boost/beast/http.hpp>
namespace websocket = beast::websocket; // from <boost/beast/websocket.hpp>
namespace net = boost::asio; // from <boost/asio.hpp>
using tcp = net::ip::tcp; // from <boost/asio/ip/tcp.hpp>
class WebSocketClient { class WebSocketClient {
public: public:
@@ -36,7 +31,7 @@ public:
} }
try { try {
// Close the WebSocket connection // Close the WebSocket connection
ws_.close(websocket::close_code::normal); ws_.close(boost::beast::websocket::close_code::normal);
} catch (const std::exception& e) { } catch (const std::exception& e) {
std::cerr << "Error: " << e.what() << std::endl; std::cerr << "Error: " << e.what() << std::endl;
} }
@@ -49,7 +44,7 @@ public:
auto const results = resolver_.resolve(host, port); auto const results = resolver_.resolve(host, port);
// Make the connection on the IP address we get from a lookup // Make the connection on the IP address we get from a lookup
auto ep = net::connect(ws_.next_layer(), results); auto ep = boost::asio::connect(ws_.next_layer(), results);
std::string _host = host; std::string _host = host;
//if _host last char is '/', remove it //if _host last char is '/', remove it
if(_host.size()>0&&_host[host.size()-1] == '/'){ if(_host.size()>0&&_host[host.size()-1] == '/'){
@@ -58,10 +53,10 @@ public:
// _host += ':' + std::to_string(ep.port()); // _host += ':' + std::to_string(ep.port());
// Set a decorator to change the User-Agent of the handshake // Set a decorator to change the User-Agent of the handshake
ws_.set_option(websocket::stream_base::decorator( ws_.set_option(boost::beast::websocket::stream_base::decorator(
[](websocket::request_type& req) [](boost::beast::websocket::request_type& req)
{ {
req.set(http::field::user_agent,"ElegooSlicer"); req.set(boost::beast::http::field::user_agent,"ElegooSlicer");
})); }));
// Perform the WebSocket handshake // Perform the WebSocket handshake
ws_.handshake(_host, path); ws_.handshake(_host, path);
@@ -70,25 +65,25 @@ public:
void send(const std::string& message){ void send(const std::string& message){
// Send a message // Send a message
ws_.write(net::buffer(message)); ws_.write(boost::asio::buffer(message));
} }
std::string receive(int timeout = 0){ std::string receive(int timeout = 0){
// This buffer will hold the incoming message // This buffer will hold the incoming message
beast::flat_buffer buffer; boost::beast::flat_buffer buffer;
// Read a message into our buffer // Read a message into our buffer
ws_.read(buffer); ws_.read(buffer);
// Return the message as a string // Return the message as a string
return beast::buffers_to_string(buffer.data()); return boost::beast::buffers_to_string(buffer.data());
} }
private: private:
net::io_context ioc_; boost::asio::io_context ioc_;
tcp::resolver resolver_; boost::asio::ip::tcp::resolver resolver_;
websocket::stream<tcp::socket> ws_; boost::beast::websocket::stream<boost::asio::ip::tcp::socket> ws_;
bool is_connect; bool is_connect;
}; };
-7
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@@ -115,9 +115,6 @@ static const std::unordered_map<std::string, AuditEventCategory> audit_event_cat
{"subprocess.Popen", AuditEventCategory::ProcessCreate}, {"subprocess.Popen", AuditEventCategory::ProcessCreate},
{"_winapi.CreateProcess", AuditEventCategory::ProcessCreate}, {"_winapi.CreateProcess", AuditEventCategory::ProcessCreate},
{"_posixsubprocess.fork_exec", AuditEventCategory::ProcessCreate}, {"_posixsubprocess.fork_exec", AuditEventCategory::ProcessCreate},
// processreplace: exec* replaces the current process image rather than spawning a child
{"os.exec", AuditEventCategory::ProcessReplace},
}; };
// Returns the category event_name belongs to, or AuditEventCategory::None when it isn't audited. // Returns the category event_name belongs to, or AuditEventCategory::None when it isn't audited.
@@ -711,7 +708,6 @@ static const std::unordered_map<std::string, std::vector<Py_ssize_t>> audit_targ
{"pty.spawn", {0}}, {"pty.spawn", {0}},
{"_winapi.CreateProcess", {1, 0}}, {"_winapi.CreateProcess", {1, 0}},
{"_posixsubprocess.fork_exec", {0}}, {"_posixsubprocess.fork_exec", {0}},
{"os.exec", {0}},
}; };
AuditEventCategory open_category(PyObject* args) AuditEventCategory open_category(PyObject* args)
@@ -765,7 +761,6 @@ std::vector<std::string>* permission_list_for(AuditEventCategory category, Plugi
case AuditEventCategory::Http: return &permissions.network_http; case AuditEventCategory::Http: return &permissions.network_http;
case AuditEventCategory::Socket: return &permissions.network_socket; case AuditEventCategory::Socket: return &permissions.network_socket;
case AuditEventCategory::ProcessCreate: return &permissions.process; case AuditEventCategory::ProcessCreate: return &permissions.process;
case AuditEventCategory::ProcessReplace: return &permissions.process;
default: return nullptr; default: return nullptr;
} }
} }
@@ -837,8 +832,6 @@ wxString audit_message(AuditEventCategory category, const wxString& plugin_name,
return wxString::Format(_L("Plugin \"%s\" is requesting to open a network connection to:\n%s"), plugin_name, target_list); return wxString::Format(_L("Plugin \"%s\" is requesting to open a network connection to:\n%s"), plugin_name, target_list);
case AuditEventCategory::ProcessCreate: case AuditEventCategory::ProcessCreate:
return wxString::Format(_L("Plugin \"%s\" is requesting to run the following command(s):\n%s"), plugin_name, target_list); return wxString::Format(_L("Plugin \"%s\" is requesting to run the following command(s):\n%s"), plugin_name, target_list);
case AuditEventCategory::ProcessReplace:
return wxString::Format(_L("Plugin \"%s\" is requesting to replace the running application with:\n%s"), plugin_name, target_list);
default: default:
return wxString::Format(_L("Plugin \"%s\" is requesting permission for the Python audit event \"%s\"."), plugin_name, event_name); return wxString::Format(_L("Plugin \"%s\" is requesting permission for the Python audit event \"%s\"."), plugin_name, event_name);
} }
-1
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@@ -45,7 +45,6 @@ enum class AuditEventCategory {
Http, Http,
Socket, Socket,
ProcessCreate, ProcessCreate,
ProcessReplace,
Threading, Threading,
}; };
+58 -60
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@@ -17,20 +17,18 @@
#include <map> #include <map>
#include <unordered_map> #include <unordered_map>
using json = nlohmann::json;
// Put serializers in correct ADL namespaces for each type // Put serializers in correct ADL namespaces for each type
namespace Slic3r { namespace Slic3r {
namespace FilamentGroupUtils { namespace FilamentGroupUtils {
inline void to_json(json& j, const Color& c) { inline void to_json(nlohmann::json& j, const Color& c) {
char buf[10]; char buf[10];
snprintf(buf, sizeof(buf), "#%02X%02X%02X%02X", c.r, c.g, c.b, c.a); snprintf(buf, sizeof(buf), "#%02X%02X%02X%02X", c.r, c.g, c.b, c.a);
j = std::string(buf); j = std::string(buf);
} }
inline void from_json(const json& j, Color& c) { inline void from_json(const nlohmann::json& j, Color& c) {
std::string s = j.get<std::string>(); std::string s = j.get<std::string>();
if (s.size() >= 7 && s[0] == '#') { if (s.size() >= 7 && s[0] == '#') {
c.r = (unsigned char)std::stoi(s.substr(1, 2), nullptr, 16); c.r = (unsigned char)std::stoi(s.substr(1, 2), nullptr, 16);
@@ -40,8 +38,8 @@ inline void from_json(const json& j, Color& c) {
} }
} }
inline void to_json(json& j, const FilamentInfo& fi) { inline void to_json(nlohmann::json& j, const FilamentInfo& fi) {
j = json{ j = nlohmann::json{
{"color", fi.color}, {"color", fi.color},
{"type", fi.type}, {"type", fi.type},
{"is_support", fi.is_support}, {"is_support", fi.is_support},
@@ -49,15 +47,15 @@ inline void to_json(json& j, const FilamentInfo& fi) {
}; };
} }
inline void from_json(const json& j, FilamentInfo& fi) { inline void from_json(const nlohmann::json& j, FilamentInfo& fi) {
fi.color = j.at("color").get<Color>(); fi.color = j.at("color").get<Color>();
j.at("type").get_to(fi.type); j.at("type").get_to(fi.type);
j.at("is_support").get_to(fi.is_support); j.at("is_support").get_to(fi.is_support);
fi.usage_type = (FilamentUsageType)j.at("usage_type").get<int>(); fi.usage_type = (FilamentUsageType)j.at("usage_type").get<int>();
} }
inline void to_json(json& j, const MachineFilamentInfo& mfi) { inline void to_json(nlohmann::json& j, const MachineFilamentInfo& mfi) {
j = json{ j = nlohmann::json{
{"color", mfi.color}, {"color", mfi.color},
{"type", mfi.type}, {"type", mfi.type},
{"is_support", mfi.is_support}, {"is_support", mfi.is_support},
@@ -67,7 +65,7 @@ inline void to_json(json& j, const MachineFilamentInfo& mfi) {
}; };
} }
inline void from_json(const json& j, MachineFilamentInfo& mfi) { inline void from_json(const nlohmann::json& j, MachineFilamentInfo& mfi) {
mfi.color = j.at("color").get<Color>(); mfi.color = j.at("color").get<Color>();
j.at("type").get_to(mfi.type); j.at("type").get_to(mfi.type);
j.at("is_support").get_to(mfi.is_support); j.at("is_support").get_to(mfi.is_support);
@@ -80,8 +78,8 @@ inline void from_json(const json& j, MachineFilamentInfo& mfi) {
namespace MultiNozzleUtils { namespace MultiNozzleUtils {
inline void to_json(json& j, const NozzleInfo& ni) { inline void to_json(nlohmann::json& j, const NozzleInfo& ni) {
j = json{ j = nlohmann::json{
{"diameter", ni.diameter}, {"diameter", ni.diameter},
{"volume_type", (int)ni.volume_type}, {"volume_type", (int)ni.volume_type},
{"extruder_id", ni.extruder_id}, {"extruder_id", ni.extruder_id},
@@ -89,15 +87,15 @@ inline void to_json(json& j, const NozzleInfo& ni) {
}; };
} }
inline void from_json(const json& j, NozzleInfo& ni) { inline void from_json(const nlohmann::json& j, NozzleInfo& ni) {
j.at("diameter").get_to(ni.diameter); j.at("diameter").get_to(ni.diameter);
ni.volume_type = (NozzleVolumeType)j.at("volume_type").get<int>(); ni.volume_type = (NozzleVolumeType)j.at("volume_type").get<int>();
j.at("extruder_id").get_to(ni.extruder_id); j.at("extruder_id").get_to(ni.extruder_id);
j.at("group_id").get_to(ni.group_id); j.at("group_id").get_to(ni.group_id);
} }
inline void to_json(json& j, const FilamentChangeTimeParams& p) { inline void to_json(nlohmann::json& j, const FilamentChangeTimeParams& p) {
j = json{ j = nlohmann::json{
{"selector_load_time", p.selector_load_time}, {"selector_load_time", p.selector_load_time},
{"selector_unload_time", p.selector_unload_time}, {"selector_unload_time", p.selector_unload_time},
{"standard_load_time", p.standard_load_time}, {"standard_load_time", p.standard_load_time},
@@ -105,7 +103,7 @@ inline void to_json(json& j, const FilamentChangeTimeParams& p) {
}; };
} }
inline void from_json(const json& j, FilamentChangeTimeParams& p) { inline void from_json(const nlohmann::json& j, FilamentChangeTimeParams& p) {
j.at("selector_load_time").get_to(p.selector_load_time); j.at("selector_load_time").get_to(p.selector_load_time);
j.at("selector_unload_time").get_to(p.selector_unload_time); j.at("selector_unload_time").get_to(p.selector_unload_time);
j.at("standard_load_time").get_to(p.standard_load_time); j.at("standard_load_time").get_to(p.standard_load_time);
@@ -116,22 +114,22 @@ inline void from_json(const json& j, FilamentChangeTimeParams& p) {
// ============ Helper: set<int> as JSON array ============ // ============ Helper: set<int> as JSON array ============
namespace FGTestDetail { namespace FGTestDetail {
inline json set_to_json(const std::set<int>& s) { inline nlohmann::json set_to_json(const std::set<int>& s) {
return json(std::vector<int>(s.begin(), s.end())); return nlohmann::json(std::vector<int>(s.begin(), s.end()));
} }
inline std::set<int> json_to_set(const json& j) { inline std::set<int> json_to_set(const nlohmann::json& j) {
auto v = j.get<std::vector<int>>(); auto v = j.get<std::vector<int>>();
return std::set<int>(v.begin(), v.end()); return std::set<int>(v.begin(), v.end());
} }
inline json nvt_set_to_json(const std::set<NozzleVolumeType>& s) { inline nlohmann::json nvt_set_to_json(const std::set<NozzleVolumeType>& s) {
std::vector<int> v; std::vector<int> v;
for (auto t : s) v.push_back((int)t); for (auto t : s) v.push_back((int)t);
return json(v); return nlohmann::json(v);
} }
inline std::set<NozzleVolumeType> json_to_nvt_set(const json& j) { inline std::set<NozzleVolumeType> json_to_nvt_set(const nlohmann::json& j) {
std::set<NozzleVolumeType> s; std::set<NozzleVolumeType> s;
for (auto& item : j) s.insert((NozzleVolumeType)item.get<int>()); for (auto& item : j) s.insert((NozzleVolumeType)item.get<int>());
return s; return s;
@@ -139,28 +137,28 @@ inline std::set<NozzleVolumeType> json_to_nvt_set(const json& j) {
} // namespace FGTestDetail } // namespace FGTestDetail
// ============ FilamentGroupContext::ModelInfo ============ // ============ FilamentGroupContext::ModelInfo ============
inline void to_json(json& j, const FilamentGroupContext::ModelInfo& mi) { inline void to_json(nlohmann::json& j, const FilamentGroupContext::ModelInfo& mi) {
using namespace FGTestDetail; using namespace FGTestDetail;
j["flush_matrix"] = mi.flush_matrix; j["flush_matrix"] = mi.flush_matrix;
j["layer_filaments"] = mi.layer_filaments; j["layer_filaments"] = mi.layer_filaments;
j["filament_info"] = json::array(); j["filament_info"] = nlohmann::json::array();
for (auto& fi : mi.filament_info) for (auto& fi : mi.filament_info)
j["filament_info"].push_back(fi); j["filament_info"].push_back(fi);
j["filament_ids"] = mi.filament_ids; j["filament_ids"] = mi.filament_ids;
j["unprintable_filaments"] = json::array(); j["unprintable_filaments"] = nlohmann::json::array();
for (auto& s : mi.unprintable_filaments) for (auto& s : mi.unprintable_filaments)
j["unprintable_filaments"].push_back(set_to_json(s)); j["unprintable_filaments"].push_back(set_to_json(s));
json uv = json::object(); nlohmann::json uv = nlohmann::json::object();
for (auto& [fil, types] : mi.unprintable_volumes) for (auto& [fil, types] : mi.unprintable_volumes)
uv[std::to_string(fil)] = nvt_set_to_json(types); uv[std::to_string(fil)] = nvt_set_to_json(types);
j["unprintable_volumes"] = uv; j["unprintable_volumes"] = uv;
} }
inline void from_json(const json& j, FilamentGroupContext::ModelInfo& mi) { inline void from_json(const nlohmann::json& j, FilamentGroupContext::ModelInfo& mi) {
using namespace FGTestDetail; using namespace FGTestDetail;
j.at("flush_matrix").get_to(mi.flush_matrix); j.at("flush_matrix").get_to(mi.flush_matrix);
j.at("layer_filaments").get_to(mi.layer_filaments); j.at("layer_filaments").get_to(mi.layer_filaments);
@@ -183,8 +181,8 @@ inline void from_json(const json& j, FilamentGroupContext::ModelInfo& mi) {
} }
// ============ FilamentGroupContext::GroupInfo ============ // ============ FilamentGroupContext::GroupInfo ============
inline void to_json(json& j, const FilamentGroupContext::GroupInfo& gi) { inline void to_json(nlohmann::json& j, const FilamentGroupContext::GroupInfo& gi) {
j = json{ j = nlohmann::json{
{"total_filament_num", gi.total_filament_num}, {"total_filament_num", gi.total_filament_num},
{"max_gap_threshold", gi.max_gap_threshold}, {"max_gap_threshold", gi.max_gap_threshold},
{"mode", (int)gi.mode}, {"mode", (int)gi.mode},
@@ -195,7 +193,7 @@ inline void to_json(json& j, const FilamentGroupContext::GroupInfo& gi) {
}; };
} }
inline void from_json(const json& j, FilamentGroupContext::GroupInfo& gi) { inline void from_json(const nlohmann::json& j, FilamentGroupContext::GroupInfo& gi) {
j.at("total_filament_num").get_to(gi.total_filament_num); j.at("total_filament_num").get_to(gi.total_filament_num);
j.at("max_gap_threshold").get_to(gi.max_gap_threshold); j.at("max_gap_threshold").get_to(gi.max_gap_threshold);
gi.mode = (FGMode)j.at("mode").get<int>(); gi.mode = (FGMode)j.at("mode").get<int>();
@@ -206,12 +204,12 @@ inline void from_json(const json& j, FilamentGroupContext::GroupInfo& gi) {
} }
// ============ FilamentGroupContext::MachineInfo ============ // ============ FilamentGroupContext::MachineInfo ============
inline void to_json(json& j, const FilamentGroupContext::MachineInfo& mi) { inline void to_json(nlohmann::json& j, const FilamentGroupContext::MachineInfo& mi) {
j["max_group_size"] = mi.max_group_size; j["max_group_size"] = mi.max_group_size;
j["machine_filament_info"] = json::array(); j["machine_filament_info"] = nlohmann::json::array();
for (auto& vec : mi.machine_filament_info) { for (auto& vec : mi.machine_filament_info) {
json arr = json::array(); nlohmann::json arr = nlohmann::json::array();
for (auto& mfi : vec) arr.push_back(mfi); for (auto& mfi : vec) arr.push_back(mfi);
j["machine_filament_info"].push_back(arr); j["machine_filament_info"].push_back(arr);
} }
@@ -220,7 +218,7 @@ inline void to_json(json& j, const FilamentGroupContext::MachineInfo& mi) {
j["master_extruder_id"] = mi.master_extruder_id; j["master_extruder_id"] = mi.master_extruder_id;
} }
inline void from_json(const json& j, FilamentGroupContext::MachineInfo& mi) { inline void from_json(const nlohmann::json& j, FilamentGroupContext::MachineInfo& mi) {
j.at("max_group_size").get_to(mi.max_group_size); j.at("max_group_size").get_to(mi.max_group_size);
mi.machine_filament_info.clear(); mi.machine_filament_info.clear();
@@ -236,10 +234,10 @@ inline void from_json(const json& j, FilamentGroupContext::MachineInfo& mi) {
} }
// ============ FilamentGroupContext::SpeedInfo ============ // ============ FilamentGroupContext::SpeedInfo ============
inline void to_json(json& j, const FilamentGroupContext::SpeedInfo& si) { inline void to_json(nlohmann::json& j, const FilamentGroupContext::SpeedInfo& si) {
json fpt = json::object(); nlohmann::json fpt = nlohmann::json::object();
for (auto& [fil, inner] : si.filament_print_time) { for (auto& [fil, inner] : si.filament_print_time) {
json inner_j = json::object(); nlohmann::json inner_j = nlohmann::json::object();
for (auto& [layer, time] : inner) for (auto& [layer, time] : inner)
inner_j[std::to_string(layer)] = time; inner_j[std::to_string(layer)] = time;
fpt[std::to_string(fil)] = inner_j; fpt[std::to_string(fil)] = inner_j;
@@ -252,7 +250,7 @@ inline void to_json(json& j, const FilamentGroupContext::SpeedInfo& si) {
j["ams_preload_enabled"] = si.ams_preload_enabled; j["ams_preload_enabled"] = si.ams_preload_enabled;
} }
inline void from_json(const json& j, FilamentGroupContext::SpeedInfo& si) { inline void from_json(const nlohmann::json& j, FilamentGroupContext::SpeedInfo& si) {
si.filament_print_time.clear(); si.filament_print_time.clear();
if (j.contains("filament_print_time")) { if (j.contains("filament_print_time")) {
for (auto& [k, v] : j.at("filament_print_time").items()) { for (auto& [k, v] : j.at("filament_print_time").items()) {
@@ -269,23 +267,23 @@ inline void from_json(const json& j, FilamentGroupContext::SpeedInfo& si) {
} }
// ============ FilamentGroupContext::NozzleInfo ============ // ============ FilamentGroupContext::NozzleInfo ============
inline void to_json(json& j, const FilamentGroupContext::NozzleInfo& ni) { inline void to_json(nlohmann::json& j, const FilamentGroupContext::NozzleInfo& ni) {
json enl = json::object(); nlohmann::json enl = nlohmann::json::object();
for (auto& [ext, nozzles] : ni.extruder_nozzle_list) for (auto& [ext, nozzles] : ni.extruder_nozzle_list)
enl[std::to_string(ext)] = nozzles; enl[std::to_string(ext)] = nozzles;
j["extruder_nozzle_list"] = enl; j["extruder_nozzle_list"] = enl;
j["nozzle_list"] = json::array(); j["nozzle_list"] = nlohmann::json::array();
for (auto& n : ni.nozzle_list) for (auto& n : ni.nozzle_list)
j["nozzle_list"].push_back(n); j["nozzle_list"].push_back(n);
json ns = json::object(); nlohmann::json ns = nlohmann::json::object();
for (auto& [noz, fil] : ni.nozzle_status) for (auto& [noz, fil] : ni.nozzle_status)
ns[std::to_string(noz)] = fil; ns[std::to_string(noz)] = fil;
j["nozzle_status"] = ns; j["nozzle_status"] = ns;
} }
inline void from_json(const json& j, FilamentGroupContext::NozzleInfo& ni) { inline void from_json(const nlohmann::json& j, FilamentGroupContext::NozzleInfo& ni) {
ni.extruder_nozzle_list.clear(); ni.extruder_nozzle_list.clear();
for (auto& [k, v] : j.at("extruder_nozzle_list").items()) for (auto& [k, v] : j.at("extruder_nozzle_list").items())
ni.extruder_nozzle_list[std::stoi(k)] = v.get<std::vector<int>>(); ni.extruder_nozzle_list[std::stoi(k)] = v.get<std::vector<int>>();
@@ -302,8 +300,8 @@ inline void from_json(const json& j, FilamentGroupContext::NozzleInfo& ni) {
} }
// ============ Full FilamentGroupContext ============ // ============ Full FilamentGroupContext ============
inline void to_json(json& j, const FilamentGroupContext& ctx) { inline void to_json(nlohmann::json& j, const FilamentGroupContext& ctx) {
json mi, gi, mai, si, ni; nlohmann::json mi, gi, mai, si, ni;
to_json(mi, ctx.model_info); to_json(mi, ctx.model_info);
to_json(gi, ctx.group_info); to_json(gi, ctx.group_info);
to_json(mai, ctx.machine_info); to_json(mai, ctx.machine_info);
@@ -316,7 +314,7 @@ inline void to_json(json& j, const FilamentGroupContext& ctx) {
j["nozzle_info"] = ni; j["nozzle_info"] = ni;
} }
inline void from_json(const json& j, FilamentGroupContext& ctx) { inline void from_json(const nlohmann::json& j, FilamentGroupContext& ctx) {
from_json(j.at("model_info"), ctx.model_info); from_json(j.at("model_info"), ctx.model_info);
from_json(j.at("group_info"), ctx.group_info); from_json(j.at("group_info"), ctx.group_info);
from_json(j.at("machine_info"), ctx.machine_info); from_json(j.at("machine_info"), ctx.machine_info);
@@ -336,11 +334,11 @@ struct TestMetadata {
int seed = 0; int seed = 0;
}; };
inline void to_json(json& j, const TestMetadata& m) { inline void to_json(nlohmann::json& j, const TestMetadata& m) {
j = json{{"id", m.id}, {"config_type", m.config_type}, {"seed", m.seed}}; j = nlohmann::json{{"id", m.id}, {"config_type", m.config_type}, {"seed", m.seed}};
} }
inline void from_json(const json& j, TestMetadata& m) { inline void from_json(const nlohmann::json& j, TestMetadata& m) {
j.at("id").get_to(m.id); j.at("id").get_to(m.id);
j.at("config_type").get_to(m.config_type); j.at("config_type").get_to(m.config_type);
j.at("seed").get_to(m.seed); j.at("seed").get_to(m.seed);
@@ -354,8 +352,8 @@ struct TestResult {
std::vector<std::string> violations; std::vector<std::string> violations;
}; };
inline void to_json(json& j, const TestResult& r) { inline void to_json(nlohmann::json& j, const TestResult& r) {
j = json{ j = nlohmann::json{
{"filament_map", r.filament_map}, {"filament_map", r.filament_map},
{"flush_cost", r.flush_cost}, {"flush_cost", r.flush_cost},
{"elapsed_ms", r.elapsed_ms}, {"elapsed_ms", r.elapsed_ms},
@@ -364,7 +362,7 @@ inline void to_json(json& j, const TestResult& r) {
}; };
} }
inline void from_json(const json& j, TestResult& r) { inline void from_json(const nlohmann::json& j, TestResult& r) {
j.at("filament_map").get_to(r.filament_map); j.at("filament_map").get_to(r.filament_map);
j.at("flush_cost").get_to(r.flush_cost); j.at("flush_cost").get_to(r.flush_cost);
j.at("elapsed_ms").get_to(r.elapsed_ms); j.at("elapsed_ms").get_to(r.elapsed_ms);
@@ -380,15 +378,15 @@ struct BaseResult {
bool constraints_ok = true; bool constraints_ok = true;
}; };
inline void to_json(json& j, const BaseResult& g) { inline void to_json(nlohmann::json& j, const BaseResult& g) {
j = json{ j = nlohmann::json{
{"full_score", g.full_score}, {"full_score", g.full_score},
{"flush_cost", g.flush_cost}, {"flush_cost", g.flush_cost},
{"constraints_ok", g.constraints_ok} {"constraints_ok", g.constraints_ok}
}; };
} }
inline void from_json(const json& j, BaseResult& g) { inline void from_json(const nlohmann::json& j, BaseResult& g) {
j.at("full_score").get_to(g.full_score); j.at("full_score").get_to(g.full_score);
j.at("flush_cost").get_to(g.flush_cost); j.at("flush_cost").get_to(g.flush_cost);
j.at("constraints_ok").get_to(g.constraints_ok); j.at("constraints_ok").get_to(g.constraints_ok);
@@ -403,7 +401,7 @@ struct TestCase {
inline TestCase load_test_case(const std::string& path) { inline TestCase load_test_case(const std::string& path) {
std::ifstream f(path); std::ifstream f(path);
json j = json::parse(f); nlohmann::json j = nlohmann::json::parse(f);
TestCase tc; TestCase tc;
tc.metadata = j.at("metadata").get<TestMetadata>(); tc.metadata = j.at("metadata").get<TestMetadata>();
Slic3r::from_json(j.at("context"), tc.context); Slic3r::from_json(j.at("context"), tc.context);
@@ -413,9 +411,9 @@ inline TestCase load_test_case(const std::string& path) {
} }
inline void save_test_case(const std::string& path, const TestCase& tc) { inline void save_test_case(const std::string& path, const TestCase& tc) {
json j; nlohmann::json j;
j["metadata"] = tc.metadata; j["metadata"] = tc.metadata;
json ctx_j; nlohmann::json ctx_j;
Slic3r::to_json(ctx_j, tc.context); Slic3r::to_json(ctx_j, tc.context);
j["context"] = ctx_j; j["context"] = ctx_j;
if (tc.base_result) if (tc.base_result)
@@ -432,14 +430,14 @@ inline void save_result(const std::string& case_path, const TestResult& result)
else else
result_path += ".result.json"; result_path += ".result.json";
json j = result; nlohmann::json j = result;
std::ofstream f(result_path); std::ofstream f(result_path);
f << j.dump(2); f << j.dump(2);
} }
inline TestResult load_result(const std::string& result_path) { inline TestResult load_result(const std::string& result_path) {
std::ifstream f(result_path); std::ifstream f(result_path);
json j = json::parse(f); nlohmann::json j = nlohmann::json::parse(f);
return j.get<TestResult>(); return j.get<TestResult>();
} }
+2
View File
@@ -31,6 +31,8 @@
#include "libslic3r/BoundingBox.hpp" #include "libslic3r/BoundingBox.hpp"
#include "libslic3r/ExtrusionEntity.hpp" #include "libslic3r/ExtrusionEntity.hpp"
using namespace Slic3r;
namespace { namespace {
const char *const BELOW_PAD_TEST_OBJECTS[] = { const char *const BELOW_PAD_TEST_OBJECTS[] = {
+2
View File
@@ -36,6 +36,8 @@
#include "libslic3r/BoundingBox.hpp" #include "libslic3r/BoundingBox.hpp"
#include "libslic3r/Line.hpp" #include "libslic3r/Line.hpp"
using namespace Slic3r;
void test_support_model_collision(const std::string &obj_filename, void test_support_model_collision(const std::string &obj_filename,
const sla::SupportTreeConfig &input_supportcfg, const sla::SupportTreeConfig &input_supportcfg,
const sla::HollowingConfig &hollowingcfg, const sla::HollowingConfig &hollowingcfg,
+36 -38
View File
@@ -33,33 +33,31 @@ namespace Slic3r::sla { struct PadConfig; }
namespace Slic3r::sla { struct SupportTreeConfig; } namespace Slic3r::sla { struct SupportTreeConfig; }
using namespace Slic3r;
enum e_validity { enum e_validity {
ASSUME_NO_EMPTY = 1, ASSUME_NO_EMPTY = 1,
ASSUME_MANIFOLD = 2, ASSUME_MANIFOLD = 2,
ASSUME_NO_REPAIR = 4 ASSUME_NO_REPAIR = 4
}; };
void check_validity(const TriangleMesh &input_mesh, void check_validity(const Slic3r::TriangleMesh &input_mesh,
int flags = ASSUME_NO_EMPTY | ASSUME_MANIFOLD | int flags = ASSUME_NO_EMPTY | ASSUME_MANIFOLD |
ASSUME_NO_REPAIR); ASSUME_NO_REPAIR);
struct PadByproducts struct PadByproducts
{ {
ExPolygons model_contours; Slic3r::ExPolygons model_contours;
ExPolygons support_contours; Slic3r::ExPolygons support_contours;
TriangleMesh mesh; Slic3r::TriangleMesh mesh;
}; };
void test_concave_hull(const ExPolygons &polys); void test_concave_hull(const Slic3r::ExPolygons &polys);
void test_pad(const std::string & obj_filename, void test_pad(const std::string & obj_filename,
const sla::PadConfig &padcfg, const Slic3r::sla::PadConfig &padcfg,
PadByproducts & out); PadByproducts & out);
inline void test_pad(const std::string & obj_filename, inline void test_pad(const std::string & obj_filename,
const sla::PadConfig &padcfg = {}) const Slic3r::sla::PadConfig &padcfg = {})
{ {
PadByproducts byproducts; PadByproducts byproducts;
test_pad(obj_filename, padcfg, byproducts); test_pad(obj_filename, padcfg, byproducts);
@@ -69,53 +67,53 @@ struct SupportByproducts
{ {
std::string obj_fname; std::string obj_fname;
std::vector<float> slicegrid; std::vector<float> slicegrid;
std::vector<ExPolygons> model_slices; std::vector<Slic3r::ExPolygons> model_slices;
sla::SupportTreeBuilder supporttree; Slic3r::sla::SupportTreeBuilder supporttree;
TriangleMesh input_mesh; Slic3r::TriangleMesh input_mesh;
}; };
const constexpr float CLOSING_RADIUS = 0.005f; const constexpr float CLOSING_RADIUS = 0.005f;
void check_support_tree_integrity(const sla::SupportTreeBuilder &stree, void check_support_tree_integrity(const Slic3r::sla::SupportTreeBuilder &stree,
const sla::SupportTreeConfig &cfg); const Slic3r::sla::SupportTreeConfig &cfg);
void test_supports(const std::string &obj_filename, void test_supports(const std::string &obj_filename,
const sla::SupportTreeConfig &supportcfg, const Slic3r::sla::SupportTreeConfig &supportcfg,
const sla::HollowingConfig &hollowingcfg, const Slic3r::sla::HollowingConfig &hollowingcfg,
const sla::DrainHoles &drainholes, const Slic3r::sla::DrainHoles &drainholes,
SupportByproducts &out); SupportByproducts &out);
inline void test_supports(const std::string &obj_filename, inline void test_supports(const std::string &obj_filename,
const sla::SupportTreeConfig &supportcfg, const Slic3r::sla::SupportTreeConfig &supportcfg,
SupportByproducts &out) SupportByproducts &out)
{ {
sla::HollowingConfig hcfg; Slic3r::sla::HollowingConfig hcfg;
hcfg.enabled = false; hcfg.enabled = false;
test_supports(obj_filename, supportcfg, hcfg, {}, out); test_supports(obj_filename, supportcfg, hcfg, {}, out);
} }
inline void test_supports(const std::string &obj_filename, inline void test_supports(const std::string &obj_filename,
const sla::SupportTreeConfig &supportcfg = {}) const Slic3r::sla::SupportTreeConfig &supportcfg = {})
{ {
SupportByproducts byproducts; SupportByproducts byproducts;
test_supports(obj_filename, supportcfg, byproducts); test_supports(obj_filename, supportcfg, byproducts);
} }
void export_failed_case(const std::vector<ExPolygons> &support_slices, void export_failed_case(const std::vector<Slic3r::ExPolygons> &support_slices,
const SupportByproducts &byproducts); const SupportByproducts &byproducts);
void test_support_model_collision( void test_support_model_collision(
const std::string &obj_filename, const std::string &obj_filename,
const sla::SupportTreeConfig &input_supportcfg, const Slic3r::sla::SupportTreeConfig &input_supportcfg,
const sla::HollowingConfig &hollowingcfg, const Slic3r::sla::HollowingConfig &hollowingcfg,
const sla::DrainHoles &drainholes); const Slic3r::sla::DrainHoles &drainholes);
inline void test_support_model_collision( inline void test_support_model_collision(
const std::string &obj_filename, const std::string &obj_filename,
const sla::SupportTreeConfig &input_supportcfg = {}) const Slic3r::sla::SupportTreeConfig &input_supportcfg = {})
{ {
sla::HollowingConfig hcfg; Slic3r::sla::HollowingConfig hcfg;
hcfg.enabled = false; hcfg.enabled = false;
test_support_model_collision(obj_filename, input_supportcfg, hcfg, {}); test_support_model_collision(obj_filename, input_supportcfg, hcfg, {});
} }
@@ -156,8 +154,8 @@ template <class I, class II> void test_pairhash()
REQUIRE(a != b); REQUIRE(a != b);
II hash_ab = sla::pairhash<I, II>(a, b); II hash_ab = Slic3r::sla::pairhash<I, II>(a, b);
II hash_ba = sla::pairhash<I, II>(b, a); II hash_ba = Slic3r::sla::pairhash<I, II>(b, a);
REQUIRE(hash_ab == hash_ba); REQUIRE(hash_ab == hash_ba);
auto it = ints.find(hash_ab); auto it = ints.find(hash_ab);
@@ -180,23 +178,23 @@ static constexpr const TPixel FullBlack = 0;
template <class A, int N> constexpr int arraysize(const A (&)[N]) { return N; } template <class A, int N> constexpr int arraysize(const A (&)[N]) { return N; }
void check_raster_transformations(sla::RasterBase::Orientation o, void check_raster_transformations(Slic3r::sla::RasterBase::Orientation o,
sla::RasterBase::TMirroring mirroring); Slic3r::sla::RasterBase::TMirroring mirroring);
ExPolygon square_with_hole(double v); Slic3r::ExPolygon square_with_hole(double v);
inline double pixel_area(TPixel px, const sla::PixelDim &pxdim) inline double pixel_area(TPixel px, const Slic3r::sla::PixelDim &pxdim)
{ {
return (pxdim.h_mm * pxdim.w_mm) * px * 1. / (FullWhite - FullBlack); return (pxdim.h_mm * pxdim.w_mm) * px * 1. / (FullWhite - FullBlack);
} }
double raster_white_area(const sla::RasterGrayscaleAA &raster); double raster_white_area(const Slic3r::sla::RasterGrayscaleAA &raster);
long raster_pxsum(const sla::RasterGrayscaleAA &raster); long raster_pxsum(const Slic3r::sla::RasterGrayscaleAA &raster);
double predict_error(const ExPolygon &p, const sla::PixelDim &pd); double predict_error(const Slic3r::ExPolygon &p, const Slic3r::sla::PixelDim &pd);
sla::SupportPoints calc_support_pts( Slic3r::sla::SupportPoints calc_support_pts(
const TriangleMesh & mesh, const Slic3r::TriangleMesh & mesh,
const sla::SupportPointGenerator::Config &cfg = {}); const Slic3r::sla::SupportPointGenerator::Config &cfg = {});
#endif // SLA_TEST_UTILS_HPP #endif // SLA_TEST_UTILS_HPP