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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
HanifKoh f9ddb23804 Keep Each Filament's Device Drying Values When the CLI Merges Filaments (#16157)
The device drying options hold several values per filament, as many as
the filament preset gives, and a project stores them as the filaments'
values one after another. The CLI filament merge wrote them like an
option with one value per filament, putting each preset's first value at
the filament's own index, so a project with three filaments whose preset
gives "1", "0" was exported with 1;1;1;0;1;0 where the GUI writes
1;0;1;0;1;0.

The merge now leaves these options out of the per-filament pass and
rebuilds them afterwards from every filament's values in slot order.
Without a fixed number of values per filament one slot cannot be
replaced in place, so the stored values are kept when any slot has no
config to rebuild from.
2026-10-07 15:54:53 +08:00
HanifKoh ff8aebe76f Allow Unsigned Executable Memory in the macOS Entitlements (#16203)
The Bambu network plug-in's code protector rewrites one page of its own signed __TEXT after loading. The hardened runtime tolerates that until the page is evicted; the next read of it then kills OrcaSlicer with CODESIGNING Invalid Page. Bambu Studio signs with allow-unsigned-executable-memory for this reason; with it added, the same build survives critical memory pressure that killed it in 30 s without.
2026-10-07 15:52:18 +08:00
HanifKoh a56d1bf33e Keep a Project's Changed Values on Extruder Variants It Doesn't List (#16107)
A project's listed settings are carried onto its base preset by update_non_diff_values_to_base_config, which matched variants by exact name and id. A variant the base gained after the project was saved got the base's value, while the same value in a user preset now falls back to the preset's first variant of that extruder. So an old project opened with its printer preset already modified, and saving it wrote the base's values into the 3MF.

The function now maps variants with map_variant_indices, as update_diff_values_to_child_config does: a base variant the project does not list takes the project's first variant of the same extruder. The variant lists themselves stay the base's, so a fallback never writes one variant's name over another's.
2026-10-07 15:51:49 +08:00
HanifKoh 662a8e340d Support the 02.08.04 Bambu Network Plug-in Series (#16202)
The 02.08.02 series appended queue_plate_id to PrintParams and nothing
after it changed the ABI OrcaSlicer calls, so adding the field brings
the current layout up to 02.08.04. Make 02.08.04 the latest series and
drop 02.08.01 from the whitelist: its PrintParams no longer matches, and
its malformed bind table is refused by dyld on macOS 27, so it cannot
load there. A stored 02.08.01 falls back to the latest series through
the existing unsupported-version path.
2026-10-07 15:51:21 +08:00
31 changed files with 355 additions and 197 deletions
+5
View File
@@ -4,5 +4,10 @@
<dict>
<key>com.apple.security.cs.disable-library-validation</key>
<true/>
<!-- The Bambu network plug-in's code protector rewrites one of its own signed code pages
after loading. Under the hardened runtime macOS kills the process when that page is
paged back in; this lets it run, as Bambu Studio's signature does. -->
<key>com.apple.security.cs.allow-unsigned-executable-memory</key>
<true/>
</dict>
</plist>
+11
View File
@@ -3618,6 +3618,9 @@ int CLI::run(int argc, char **argv)
{
if (opt_key == "compatible_prints" || opt_key == "compatible_printers" || opt_key == "model_id" || opt_key == "dev_model_name" || opt_key == "filament_settings_id")
continue;
// rebuilt from every filament after this loop
if (filament_dev_options.find(opt_key) != filament_dev_options.end())
continue;
ConfigOption *opt = m_print_config.option(opt_key, true);
if (opt == nullptr) {
// opt_key does not exist in this ConfigBase and it cannot be created, because it is not defined by this->def().
@@ -3681,6 +3684,14 @@ int CLI::run(int argc, char **argv)
}
}
// The stored values cannot be told apart per filament, so they are kept as they are unless every slot has a config.
std::vector<const DynamicPrintConfig *> filament_configs(filament_count, nullptr);
for (size_t index = 0; index < load_filaments_config.size(); index++)
if (load_filaments_index[index] >= 1 && load_filaments_index[index] <= filament_count)
filament_configs[load_filaments_index[index] - 1] = &load_filaments_config[index];
if (std::find(filament_configs.begin(), filament_configs.end(), nullptr) == filament_configs.end())
set_filament_dev_options(m_print_config, filament_configs);
if (m_print_config.option<ConfigOptionStrings>("filament_extruder_variant")) {
std::vector<int>& filament_self_indice = m_print_config.option<ConfigOptionInts>("filament_self_index", true)->values;
int index_size = m_print_config.option<ConfigOptionStrings>("filament_extruder_variant")->size();
@@ -5,5 +5,10 @@
<!-- for dynamic loading of libraries without signature validation. Used for 3dconnection drivers.-->
<key>com.apple.security.cs.disable-library-validation</key>
<true/>
<!-- The Bambu network plug-in's code protector rewrites one of its own signed code pages
after loading. Under the hardened runtime macOS kills the process when that page is
paged back in; this lets it run, as Bambu Studio's signature does. -->
<key>com.apple.security.cs.allow-unsigned-executable-memory</key>
<true/>
</dict>
</plist>
-2
View File
@@ -148,8 +148,6 @@ struct ConflictComputeResult
using ConflictComputeOpt = std::optional<ConflictComputeResult>;
using ConflictObjName = std::optional<std::pair<std::string, std::string>>;
struct ConflictChecker
{
static ConflictResultOpt find_inter_of_lines_in_diff_objs(PrintObjectPtrs objs, std::optional<const FakeWipeTower *> wtdptr);
+1 -4
View File
@@ -22,9 +22,6 @@
namespace Slic3r {
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.
struct ModifierRegion {
ExPolygon polygon;
@@ -137,7 +134,7 @@ SegmentExtraction extract_perimeter_segments(const PreparedPerimeter &prepared,
// Result of weak modifier segment processing
struct WeakModifierSegment {
EnforcedBlockedSeamPoint type; // Enforced/Blocked/Neutral
SeamPlacerImpl::EnforcedBlockedSeamPoint type; // Enforced/Blocked/Neutral
Point left_point; // Coordinates of left (first) point of segment
PerimeterPosition left_position; // Position on the source perimeter before insertion/refinement.
Point right_point; // Coordinates of right (last) point of segment
+1 -2
View File
@@ -40,8 +40,7 @@ std::string get_error_string(const ThumbnailErrors& errors);
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"sv);
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 ConfigBase &config);
-2
View File
@@ -94,8 +94,6 @@ struct Circle {
using Circlef = Circle<Vec2f>;
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.
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.
using namespace Slic3r;
template<> struct _Loop<ExecutionTBB>
template<> struct _Loop<Slic3r::ExecutionTBB>
{
template<class It, class Fn> static void for_each_idx(It from, It to, Fn&& fn)
{
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::execution::for_each(
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));
}
};
+31 -13
View File
@@ -10822,6 +10822,22 @@ void normalize_filament_values_to_variants(DynamicPrintConfig &config)
}
}
void set_filament_dev_options(DynamicPrintConfig &config, const std::vector<const DynamicPrintConfig *> &filament_configs)
{
for (const std::string &key : filament_dev_options) {
if (std::none_of(filament_configs.begin(), filament_configs.end(), [&key](const DynamicPrintConfig *filament) { return filament->has(key); }))
continue;
const ConfigOption *default_value = print_config_def.get(key)->default_value.get();
auto *dst = static_cast<ConfigOptionVectorBase *>(config.option(key, true));
dst->clear();
for (const DynamicPrintConfig *filament : filament_configs) {
const auto *src = static_cast<const ConfigOptionVectorBase *>(filament->has(key) ? filament->option(key) : default_value);
if (!src->empty())
dst->append(src);
}
}
}
//used for object/region config
//use the smallest of multiple to single
@@ -11520,12 +11536,18 @@ void DynamicPrintConfig::update_non_diff_values_to_base_config(DynamicPrintConfi
int cur_variant_count = cur_extruder_variants.size();
int target_variant_count = target_extruder_variants.size();
// A base variant this config does not list (the base gained it after the config was saved, or the
// config lists none) takes this config's first variant of the same extruder, as a user preset's
// values do in update_diff_values_to_child_config. Left unmatched, the base's value would silently
// replace the user's.
variant_index.resize(target_variant_count, -1);
if (cur_variant_count == 0) {
// Defensive: target_variant_count may be 0 if the preset doesn't carry extruder_variant_name.
// In that case keep variant_index empty and let the downstream size checks produce a useful error.
if (!variant_index.empty())
variant_index[0] = 0;
// This config's one value belongs to the extruder of the base's first variant.
variant_index = map_variant_indices(target_extruder_variants, target_extruder_ids, {},
target_extruder_ids.empty() ? std::vector<int>() : std::vector<int>{target_extruder_ids[0]});
}
else if ((cur_extruder_ids.size() > 0) && cur_variant_count != cur_extruder_ids.size()){
//should not happen
@@ -11538,18 +11560,7 @@ void DynamicPrintConfig::update_non_diff_values_to_base_config(DynamicPrintConfi
%extruder_variant_name %target_variant_count %extruder_id_name %target_extruder_ids.size();
}
else {
for (int i = 0; i < target_variant_count; i++)
{
for (int j = 0; j < cur_variant_count; j++)
{
if ((target_extruder_variants[i] == cur_extruder_variants[j])
&&(target_extruder_ids.empty() || (target_extruder_ids[i] == cur_extruder_ids[j])))
{
variant_index[i] = j;
break;
}
}
}
variant_index = map_variant_indices(target_extruder_variants, target_extruder_ids, cur_extruder_variants, cur_extruder_ids);
}
for (auto& opt : keys) {
@@ -11574,6 +11585,13 @@ void DynamicPrintConfig::update_non_diff_values_to_base_config(DynamicPrintConfi
if (cur_variant_count > target_variant_count)
continue;
// The variant lists are the base's layout itself, which every other value is
// carried onto: a variant this config lacks keeps its own name and id.
if (opt == extruder_id_name || opt == extruder_variant_name) {
opt_src->set(opt_target);
continue;
}
int stride = 1;
if (key_set2.find(opt) != key_set2.end())
stride = 2;
+5
View File
@@ -928,6 +928,11 @@ void normalize_filament_values_to_variants(DynamicPrintConfig &config);
extern std::set<std::string> filament_dev_options;
// Orca: a filament_dev_options option holds several values per filament, and how many is up to the
// filament preset, so one filament's values cannot be replaced in place. This rebuilds each option from
// filament_configs, one config per filament in slot order, as the filaments' values one after another.
void set_filament_dev_options(DynamicPrintConfig &config, const std::vector<const DynamicPrintConfig *> &filament_configs);
extern void update_static_print_config_from_dynamic(ConfigBase& config, const DynamicPrintConfig& dest_config, std::vector<int> variant_index, std::set<std::string>& key_set1, int stride = 1);
extern void compute_filament_override_value(const std::string& opt_key, const ConfigOption *opt_old_machine, const ConfigOption *opt_new_machine, const ConfigOption *opt_new_filament, const DynamicPrintConfig& new_full_config,
t_config_option_keys& diff_keys, DynamicPrintConfig& filament_overrides, std::vector<int>& f_map_indices);
-1
View File
@@ -49,7 +49,6 @@ public:
using TColor = typename PixelRenderer::color_type;
using TValue = typename TColor::value_type;
using TPixel = typename PixelRenderer::pixel_type;
using TRawBuffer = agg::rendering_buffer;
protected:
@@ -17,9 +17,6 @@ typedef std::vector<Color> ColorList;
typedef std::array<double, 3> ColorDouble;
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.
enum struct ColorDifferenceMethod : std::size_t {
RGB = 0, // Simplest and fastest
+3 -2
View File
@@ -23,8 +23,6 @@
namespace Slic3r { namespace tex2color {
namespace PMP = CGAL::Polygon_mesh_processing;
// Default upper bound on the number of half-edges in any single boundary cycle
// that CloseBoundariesAndRepairManifoldness will attempt to triangulate. The
// 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.
inline BoundaryEdgeStats ComputeBoundaryEdgeStats(const cgalutils::CGALMesh& cgal_mesh)
{
namespace PMP = CGAL::Polygon_mesh_processing;
using CGALMesh = cgalutils::CGALMesh;
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.
inline void CloseBoundariesAndRepairManifoldness(cgalutils::CGALMesh& cgal_mesh)
{
namespace PMP = CGAL::Polygon_mesh_processing;
using CGALMesh = cgalutils::CGALMesh;
using HalfedgeDescriptor = boost::graph_traits<CGALMesh>::halfedge_descriptor;
using FaceDescriptor = boost::graph_traits<CGALMesh>::face_descriptor;
@@ -111,6 +111,7 @@ inline bool RepairMesh(const TriMesh& mesh,
AlgoCancelCallback cancel_callback = nullptr,
const RepairSetting& setting = RepairSetting{})
{
namespace PMP = CGAL::Polygon_mesh_processing;
using Clock = std::chrono::steady_clock;
auto elapsed_ms = [](Clock::time_point t0) {
return std::chrono::duration_cast<std::chrono::milliseconds>(Clock::now() - t0).count();
-2
View File
@@ -432,8 +432,6 @@ inline IntegerOnly<I, I> fast_round_up(double a)
return a == 0.49999999999999994 ? I(0) : I(floor(a + 0.5));
}
template<class T> using SamePair = std::pair<T, T>;
} // namespace Slic3r
#endif
-3
View File
@@ -198,6 +198,3 @@ template<> struct std::hash<NozzleDef>
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
View File
@@ -183,13 +183,10 @@ wxDECLARE_EVENT(EVT_GLCANVAS_PLATE_NAME_CHANGE, SimpleEvent);
//BBS: declare EVT_GLCANVAS_PLATE_SELECT
wxDECLARE_EVENT(EVT_GLCANVAS_PLATE_SELECT, SimpleEvent);
using Vec2dEvent = Event<Vec2d>;
// _bool_ value is used as a indicator of selection in the 3DScene
using RBtnEvent = Event<std::pair<Vec2d, bool>>;
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>;
using HeightProfileSmoothEvent = Event<HeightProfileSmoothingParams>;
-1
View File
@@ -54,7 +54,6 @@ struct Option {
Option(const ConfigOptionDef& _opt, t_config_option_key id) :
opt(_opt), opt_id(id) {}
};
using t_option = std::unique_ptr<Option>; //!
/// Represents option lines
class Line : public UndoValueUIManager
-2
View File
@@ -108,7 +108,6 @@ class PlaterPresetComboBox;
class PartPlateList;
class SyncNozzleAndAmsDialog;
class FinishSyncAmsDialog;
using t_optgroups = std::vector <std::shared_ptr<ConfigOptionsGroup>>;
class Plater;
enum class ActionButtonType : int;
@@ -325,7 +324,6 @@ private:
class Plater: public wxPanel
{
public:
using fs_path = boost::filesystem::path;
Plater(wxWindow *parent, MainFrame *main_frame);
Plater(Plater &&) = delete;
+2 -1
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@@ -596,7 +596,8 @@ PrintParams_Legacy BBLNetworkPlugin::as_legacy(PrintParams& param)
}
// Every PrintParams field except the four the 02.08.01 series added
// (task_timelapse_use_internal, extruder_cali_manual_mode, svc_context, slicer_uid).
// (task_timelapse_use_internal, extruder_cali_manual_mode, svc_context, slicer_uid) and the
// queue_plate_id 02.08.02 appended.
PrintParams_0203 BBLNetworkPlugin::as_0203(PrintParams& param)
{
PrintParams_0203 p;
-1
View File
@@ -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_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_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);
+2 -2
View File
@@ -16,12 +16,12 @@
namespace Slic3r {
namespace Utils {
using boost::asio::ip::tcp;
// 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").
class TCPConsole
{
using tcp = boost::asio::ip::tcp;
public:
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)
+11 -16
View File
@@ -16,11 +16,6 @@
#include <iostream>
#include <string>
#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 {
public:
@@ -36,7 +31,7 @@ public:
}
try {
// Close the WebSocket connection
ws_.close(websocket::close_code::normal);
ws_.close(boost::beast::websocket::close_code::normal);
} catch (const std::exception& e) {
std::cerr << "Error: " << e.what() << std::endl;
}
@@ -49,7 +44,7 @@ public:
auto const results = resolver_.resolve(host, port);
// 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;
//if _host last char is '/', remove it
if(_host.size()>0&&_host[host.size()-1] == '/'){
@@ -58,10 +53,10 @@ public:
// _host += ':' + std::to_string(ep.port());
// Set a decorator to change the User-Agent of the handshake
ws_.set_option(websocket::stream_base::decorator(
[](websocket::request_type& req)
ws_.set_option(boost::beast::websocket::stream_base::decorator(
[](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
ws_.handshake(_host, path);
@@ -70,25 +65,25 @@ public:
void send(const std::string& message){
// Send a message
ws_.write(net::buffer(message));
ws_.write(boost::asio::buffer(message));
}
std::string receive(int timeout = 0){
// This buffer will hold the incoming message
beast::flat_buffer buffer;
boost::beast::flat_buffer buffer;
// Read a message into our buffer
ws_.read(buffer);
// Return the message as a string
return beast::buffers_to_string(buffer.data());
return boost::beast::buffers_to_string(buffer.data());
}
private:
net::io_context ioc_;
tcp::resolver resolver_;
websocket::stream<tcp::socket> ws_;
boost::asio::io_context ioc_;
boost::asio::ip::tcp::resolver resolver_;
boost::beast::websocket::stream<boost::asio::ip::tcp::socket> ws_;
bool is_connect;
};
+7 -4
View File
@@ -336,6 +336,7 @@ struct PrintParams {
bool try_emmc_print;
std::string svc_context;
std::string slicer_uid;
std::string queue_plate_id;
};
struct TaskQueryParams
@@ -412,7 +413,7 @@ enum class NetworkAbi {
Unsupported, // no generation in this build can call it - never dispatch through it
Legacy, // 01.10.01: PrintParams_Legacy; send_message/send_message_to_printer take no flag
V0203, // 02.03.00: PrintParams_0203; bind takes no dev_model
Current, // 02.08.01: the layouts and signatures this build declares directly
Current, // 02.08.04: the layouts and signatures this build declares directly
};
struct NetworkLibraryVersion {
@@ -425,10 +426,12 @@ struct NetworkLibraryVersion {
};
// Every row names the generation that can call it, so a series can never be offered without a
// host-side ABI for it. Series with no generation - 02.01.01, 02.00.02 and older - must stay out;
// is_supported_network_version() is the gate that keeps them from loading.
// host-side ABI for it. Series with no generation - 02.08.01 (whose PrintParams lacks the
// queue_plate_id that 02.08.02 appended, and whose malformed bind table macOS 27 refuses to
// load), 02.01.01, 02.00.02 and older - must stay out; is_supported_network_version() is the
// gate that keeps them from loading.
static const NetworkLibraryVersion AVAILABLE_NETWORK_VERSIONS[] = {
{"02.08.01", "02.08.01", nullptr, true, nullptr, NetworkAbi::Current},
{"02.08.04", "02.08.04", nullptr, true, nullptr, NetworkAbi::Current},
{"02.03.00", "02.03.00", nullptr, false,
"An older plug-in series. Features that need newer plug-in support, such as print-failure "
"snapshots in the device error dialog, are unavailable.", NetworkAbi::V0203},
+58 -60
View File
@@ -17,20 +17,18 @@
#include <map>
#include <unordered_map>
using json = nlohmann::json;
// Put serializers in correct ADL namespaces for each type
namespace Slic3r {
namespace FilamentGroupUtils {
inline void to_json(json& j, const Color& c) {
inline void to_json(nlohmann::json& j, const Color& c) {
char buf[10];
snprintf(buf, sizeof(buf), "#%02X%02X%02X%02X", c.r, c.g, c.b, c.a);
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>();
if (s.size() >= 7 && s[0] == '#') {
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) {
j = json{
inline void to_json(nlohmann::json& j, const FilamentInfo& fi) {
j = nlohmann::json{
{"color", fi.color},
{"type", fi.type},
{"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>();
j.at("type").get_to(fi.type);
j.at("is_support").get_to(fi.is_support);
fi.usage_type = (FilamentUsageType)j.at("usage_type").get<int>();
}
inline void to_json(json& j, const MachineFilamentInfo& mfi) {
j = json{
inline void to_json(nlohmann::json& j, const MachineFilamentInfo& mfi) {
j = nlohmann::json{
{"color", mfi.color},
{"type", mfi.type},
{"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>();
j.at("type").get_to(mfi.type);
j.at("is_support").get_to(mfi.is_support);
@@ -80,8 +78,8 @@ inline void from_json(const json& j, MachineFilamentInfo& mfi) {
namespace MultiNozzleUtils {
inline void to_json(json& j, const NozzleInfo& ni) {
j = json{
inline void to_json(nlohmann::json& j, const NozzleInfo& ni) {
j = nlohmann::json{
{"diameter", ni.diameter},
{"volume_type", (int)ni.volume_type},
{"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);
ni.volume_type = (NozzleVolumeType)j.at("volume_type").get<int>();
j.at("extruder_id").get_to(ni.extruder_id);
j.at("group_id").get_to(ni.group_id);
}
inline void to_json(json& j, const FilamentChangeTimeParams& p) {
j = json{
inline void to_json(nlohmann::json& j, const FilamentChangeTimeParams& p) {
j = nlohmann::json{
{"selector_load_time", p.selector_load_time},
{"selector_unload_time", p.selector_unload_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_unload_time").get_to(p.selector_unload_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 ============
namespace FGTestDetail {
inline json set_to_json(const std::set<int>& s) {
return json(std::vector<int>(s.begin(), s.end()));
inline nlohmann::json set_to_json(const std::set<int>& s) {
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>>();
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;
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;
for (auto& item : j) s.insert((NozzleVolumeType)item.get<int>());
return s;
@@ -139,28 +137,28 @@ inline std::set<NozzleVolumeType> json_to_nvt_set(const json& j) {
} // namespace FGTestDetail
// ============ 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;
j["flush_matrix"] = mi.flush_matrix;
j["layer_filaments"] = mi.layer_filaments;
j["filament_info"] = json::array();
j["filament_info"] = nlohmann::json::array();
for (auto& fi : mi.filament_info)
j["filament_info"].push_back(fi);
j["filament_ids"] = mi.filament_ids;
j["unprintable_filaments"] = json::array();
j["unprintable_filaments"] = nlohmann::json::array();
for (auto& s : mi.unprintable_filaments)
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)
uv[std::to_string(fil)] = nvt_set_to_json(types);
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;
j.at("flush_matrix").get_to(mi.flush_matrix);
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 ============
inline void to_json(json& j, const FilamentGroupContext::GroupInfo& gi) {
j = json{
inline void to_json(nlohmann::json& j, const FilamentGroupContext::GroupInfo& gi) {
j = nlohmann::json{
{"total_filament_num", gi.total_filament_num},
{"max_gap_threshold", gi.max_gap_threshold},
{"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("max_gap_threshold").get_to(gi.max_gap_threshold);
gi.mode = (FGMode)j.at("mode").get<int>();
@@ -206,12 +204,12 @@ inline void from_json(const json& j, FilamentGroupContext::GroupInfo& gi) {
}
// ============ 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["machine_filament_info"] = json::array();
j["machine_filament_info"] = nlohmann::json::array();
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);
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;
}
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);
mi.machine_filament_info.clear();
@@ -236,10 +234,10 @@ inline void from_json(const json& j, FilamentGroupContext::MachineInfo& mi) {
}
// ============ FilamentGroupContext::SpeedInfo ============
inline void to_json(json& j, const FilamentGroupContext::SpeedInfo& si) {
json fpt = json::object();
inline void to_json(nlohmann::json& j, const FilamentGroupContext::SpeedInfo& si) {
nlohmann::json fpt = nlohmann::json::object();
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)
inner_j[std::to_string(layer)] = time;
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;
}
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();
if (j.contains("filament_print_time")) {
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 ============
inline void to_json(json& j, const FilamentGroupContext::NozzleInfo& ni) {
json enl = json::object();
inline void to_json(nlohmann::json& j, const FilamentGroupContext::NozzleInfo& ni) {
nlohmann::json enl = nlohmann::json::object();
for (auto& [ext, nozzles] : ni.extruder_nozzle_list)
enl[std::to_string(ext)] = nozzles;
j["extruder_nozzle_list"] = enl;
j["nozzle_list"] = json::array();
j["nozzle_list"] = nlohmann::json::array();
for (auto& n : ni.nozzle_list)
j["nozzle_list"].push_back(n);
json ns = json::object();
nlohmann::json ns = nlohmann::json::object();
for (auto& [noz, fil] : ni.nozzle_status)
ns[std::to_string(noz)] = fil;
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();
for (auto& [k, v] : j.at("extruder_nozzle_list").items())
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 ============
inline void to_json(json& j, const FilamentGroupContext& ctx) {
json mi, gi, mai, si, ni;
inline void to_json(nlohmann::json& j, const FilamentGroupContext& ctx) {
nlohmann::json mi, gi, mai, si, ni;
to_json(mi, ctx.model_info);
to_json(gi, ctx.group_info);
to_json(mai, ctx.machine_info);
@@ -316,7 +314,7 @@ inline void to_json(json& j, const FilamentGroupContext& ctx) {
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("group_info"), ctx.group_info);
from_json(j.at("machine_info"), ctx.machine_info);
@@ -336,11 +334,11 @@ struct TestMetadata {
int seed = 0;
};
inline void to_json(json& j, const TestMetadata& m) {
j = json{{"id", m.id}, {"config_type", m.config_type}, {"seed", m.seed}};
inline void to_json(nlohmann::json& j, const TestMetadata& m) {
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("config_type").get_to(m.config_type);
j.at("seed").get_to(m.seed);
@@ -354,8 +352,8 @@ struct TestResult {
std::vector<std::string> violations;
};
inline void to_json(json& j, const TestResult& r) {
j = json{
inline void to_json(nlohmann::json& j, const TestResult& r) {
j = nlohmann::json{
{"filament_map", r.filament_map},
{"flush_cost", r.flush_cost},
{"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("flush_cost").get_to(r.flush_cost);
j.at("elapsed_ms").get_to(r.elapsed_ms);
@@ -380,15 +378,15 @@ struct BaseResult {
bool constraints_ok = true;
};
inline void to_json(json& j, const BaseResult& g) {
j = json{
inline void to_json(nlohmann::json& j, const BaseResult& g) {
j = nlohmann::json{
{"full_score", g.full_score},
{"flush_cost", g.flush_cost},
{"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("flush_cost").get_to(g.flush_cost);
j.at("constraints_ok").get_to(g.constraints_ok);
@@ -403,7 +401,7 @@ struct TestCase {
inline TestCase load_test_case(const std::string& path) {
std::ifstream f(path);
json j = json::parse(f);
nlohmann::json j = nlohmann::json::parse(f);
TestCase tc;
tc.metadata = j.at("metadata").get<TestMetadata>();
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) {
json j;
nlohmann::json j;
j["metadata"] = tc.metadata;
json ctx_j;
nlohmann::json ctx_j;
Slic3r::to_json(ctx_j, tc.context);
j["context"] = ctx_j;
if (tc.base_result)
@@ -432,14 +430,14 @@ inline void save_result(const std::string& case_path, const TestResult& result)
else
result_path += ".result.json";
json j = result;
nlohmann::json j = result;
std::ofstream f(result_path);
f << j.dump(2);
}
inline TestResult load_result(const std::string& result_path) {
std::ifstream f(result_path);
json j = json::parse(f);
nlohmann::json j = nlohmann::json::parse(f);
return j.get<TestResult>();
}
+104
View File
@@ -538,6 +538,110 @@ SCENARIO("update_diff_values_to_child_config keeps a child's values on variants
}
}
SCENARIO("update_non_diff_values_to_base_config keeps a project's changed values on variants it does not list",
"[Config][Variant]") {
std::set<std::string> no_keys;
auto variants = [](std::initializer_list<std::string> names) { return new Slic3r::ConfigOptionStrings(names); };
GIVEN("A filament base with three variants") {
Slic3r::DynamicPrintConfig base;
base.set_key_value("filament_extruder_variant",
variants({"Direct Drive Standard", "Bowden Standard", "Direct Drive High Flow"}));
base.set_deserialize_strict("nozzle_temperature", "220,220,220");
WHEN("the project was saved when the base had only its first variant") {
Slic3r::DynamicPrintConfig project;
project.set_key_value("filament_extruder_variant", variants({"Direct Drive Standard"}));
project.set_deserialize_strict("nozzle_temperature", "199");
AND_WHEN("the project lists the value as changed") {
project.update_non_diff_values_to_base_config(base, project.keys(), {"nozzle_temperature"}, "", "filament_extruder_variant",
Slic3r::filament_options_with_variant, no_keys);
THEN("the project's value applies to every variant") {
REQUIRE(project.opt_serialize("nozzle_temperature") == "199,199,199");
}
}
AND_WHEN("the project does not list the value as changed") {
project.update_non_diff_values_to_base_config(base, project.keys(), {}, "", "filament_extruder_variant",
Slic3r::filament_options_with_variant, no_keys);
THEN("the base's values replace it") {
REQUIRE(project.opt_serialize("nozzle_temperature") == "220,220,220");
}
}
}
WHEN("the project lists every variant, in another order") {
Slic3r::DynamicPrintConfig project;
project.set_key_value("filament_extruder_variant",
variants({"Bowden Standard", "Direct Drive High Flow", "Direct Drive Standard"}));
project.set_deserialize_strict("nozzle_temperature", "190,205,199");
project.update_non_diff_values_to_base_config(base, project.keys(), {"nozzle_temperature"}, "", "filament_extruder_variant",
Slic3r::filament_options_with_variant, no_keys);
THEN("each variant keeps its own value") {
REQUIRE(project.opt_serialize("nozzle_temperature") == "199,190,205");
}
}
WHEN("the project lists no variants") {
Slic3r::DynamicPrintConfig project;
project.set_deserialize_strict("nozzle_temperature", "199");
project.update_non_diff_values_to_base_config(base, project.keys(), {"nozzle_temperature"}, "", "filament_extruder_variant",
Slic3r::filament_options_with_variant, no_keys);
THEN("the project's value applies to every variant") {
REQUIRE(project.opt_serialize("nozzle_temperature") == "199,199,199");
}
}
}
GIVEN("A two-extruder printer base with two variants per extruder") {
Slic3r::DynamicPrintConfig base;
base.set_key_value("printer_extruder_variant",
variants({"Direct Drive Standard", "Direct Drive High Flow", "Direct Drive Standard", "Direct Drive High Flow"}));
base.set_key_value("printer_extruder_id", new Slic3r::ConfigOptionInts({1, 1, 2, 2}));
base.set_deserialize_strict("retraction_length", "0.8,0.8,0.8,0.8");
WHEN("the project lists only the Standard variant of each extruder") {
Slic3r::DynamicPrintConfig project;
project.set_key_value("printer_extruder_variant", variants({"Direct Drive Standard", "Direct Drive Standard"}));
project.set_key_value("printer_extruder_id", new Slic3r::ConfigOptionInts({1, 2}));
project.set_deserialize_strict("retraction_length", "1.1,2.2");
project.update_non_diff_values_to_base_config(base, project.keys(), {"retraction_length"}, "printer_extruder_id", "printer_extruder_variant",
Slic3r::printer_options_with_variant_1,
Slic3r::printer_options_with_variant_2);
THEN("each extruder's High Flow variant takes that extruder's value") {
REQUIRE(project.opt_serialize("retraction_length") == "1.1,1.1,2.2,2.2");
}
}
WHEN("the project lists only the Standard variant of each extruder, and the variant lists as changed") {
Slic3r::DynamicPrintConfig project;
project.set_key_value("printer_extruder_variant", variants({"Direct Drive Standard", "Direct Drive Standard"}));
project.set_key_value("printer_extruder_id", new Slic3r::ConfigOptionInts({1, 2}));
project.set_deserialize_strict("machine_max_speed_x", "300,100,400,150");
base.set_deserialize_strict("machine_max_speed_x", "500,200,500,200,500,200,500,200");
project.update_non_diff_values_to_base_config(base, project.keys(),
{"machine_max_speed_x", "printer_extruder_id", "printer_extruder_variant"},
"printer_extruder_id", "printer_extruder_variant",
Slic3r::printer_options_with_variant_1,
Slic3r::printer_options_with_variant_2);
THEN("the variant lists are the base's") {
REQUIRE(project.opt_serialize("printer_extruder_variant") == base.opt_serialize("printer_extruder_variant"));
REQUIRE(project.opt_serialize("printer_extruder_id") == "1,1,2,2");
}
THEN("each extruder's High Flow variant takes that extruder's pair of limits") {
REQUIRE(project.opt_serialize("machine_max_speed_x") == "300,100,300,100,400,150,400,150");
}
}
WHEN("the project lists no variants") {
Slic3r::DynamicPrintConfig project;
project.set_deserialize_strict("retraction_length", "1.1");
project.update_non_diff_values_to_base_config(base, project.keys(), {"retraction_length"}, "printer_extruder_id", "printer_extruder_variant",
Slic3r::printer_options_with_variant_1,
Slic3r::printer_options_with_variant_2);
THEN("only the first extruder's variants take the project's value") {
REQUIRE(project.opt_serialize("retraction_length") == "1.1,1.1,0.8,0.8");
}
}
}
}
// SCENARIO("DynamicPrintConfig JSON serialization", "[Config]") {
// WHEN("DynamicPrintConfig is serialized and deserialized") {
// auto now = std::chrono::high_resolution_clock::now();
@@ -799,3 +799,30 @@ TEST_CASE("A per-variant filament option read with a single value gives it to ev
config.load_from_ini_string("pressure_advance = 0.021", ForwardCompatibilitySubstitutionRule::Disable);
REQUIRE(config.option<ConfigOptionFloats>("pressure_advance")->values == std::vector<double>({0.021, 0.021, 0.021}));
}
// The device drying options hold several values per filament, as many as each filament preset gives.
TEST_CASE("The device drying options are rebuilt as each filament's values in slot order", "[Config]")
{
DynamicPrintConfig two_values, one_value, no_value;
two_values.option<ConfigOptionStrings>("filament_dev_ams_drying_ams_limitations", true)->values = {"1", "0"};
two_values.option<ConfigOptionFloats>("filament_dev_ams_drying_temperature", true)->values = {45., 45., 55., 55.};
one_value.option<ConfigOptionStrings>("filament_dev_ams_drying_ams_limitations", true)->values = {"1"};
one_value.option<ConfigOptionFloats>("filament_dev_ams_drying_temperature", true)->values = {65., 65., 75., 75.};
// values a project stored for three other filaments
DynamicPrintConfig config;
config.option<ConfigOptionStrings>("filament_dev_ams_drying_ams_limitations", true)->values = {"0", "0", "0"};
config.option<ConfigOptionFloats>("filament_dev_chamber_drying_time", true)->values = {12., 8., 12.};
set_filament_dev_options(config, {&two_values, &one_value, &two_values});
REQUIRE(config.option<ConfigOptionStrings>("filament_dev_ams_drying_ams_limitations")->values ==
std::vector<std::string>({"1", "0", "1", "1", "0"}));
REQUIRE(config.option<ConfigOptionFloats>("filament_dev_ams_drying_temperature")->values ==
std::vector<double>({45., 45., 55., 55., 65., 65., 75., 75., 45., 45., 55., 55.}));
// an option no filament defines keeps the stored values
REQUIRE(config.option<ConfigOptionFloats>("filament_dev_chamber_drying_time")->values == std::vector<double>({12., 8., 12.}));
// a filament without the option takes the option's default
set_filament_dev_options(config, {&two_values, &no_value});
REQUIRE(config.option<ConfigOptionStrings>("filament_dev_ams_drying_ams_limitations")->values == std::vector<std::string>({"1", "0", ""}));
}
@@ -6228,8 +6228,9 @@ TEST_CASE("A per-variant project value maps onto its base preset's variant layou
base_finder(&base, calls));
CHECK(config.option<ConfigOptionStrings>("print_extruder_variant")->values ==
std::vector<std::string>{"Direct Drive Standard", "Direct Drive High Flow"});
// The listed key keeps the project's Standard value and takes High Flow from the base.
check_double_vector(config.option<ConfigOptionFloats>("outer_wall_speed")->values, {100., 300.});
// The listed key keeps the project's Standard value, and High Flow, which the project does not
// list, takes it too, as a user preset's value does.
check_double_vector(config.option<ConfigOptionFloats>("outer_wall_speed")->values, {100., 100.});
check_double_vector(config.option<ConfigOptionFloats>("inner_wall_speed")->values, {250., 350.});
}
+2
View File
@@ -31,6 +31,8 @@
#include "libslic3r/BoundingBox.hpp"
#include "libslic3r/ExtrusionEntity.hpp"
using namespace Slic3r;
namespace {
const char *const BELOW_PAD_TEST_OBJECTS[] = {
+2
View File
@@ -36,6 +36,8 @@
#include "libslic3r/BoundingBox.hpp"
#include "libslic3r/Line.hpp"
using namespace Slic3r;
void test_support_model_collision(const std::string &obj_filename,
const sla::SupportTreeConfig &input_supportcfg,
const sla::HollowingConfig &hollowingcfg,
+36 -38
View File
@@ -33,33 +33,31 @@ namespace Slic3r::sla { struct PadConfig; }
namespace Slic3r::sla { struct SupportTreeConfig; }
using namespace Slic3r;
enum e_validity {
ASSUME_NO_EMPTY = 1,
ASSUME_MANIFOLD = 2,
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 |
ASSUME_NO_REPAIR);
struct PadByproducts
{
ExPolygons model_contours;
ExPolygons support_contours;
TriangleMesh mesh;
Slic3r::ExPolygons model_contours;
Slic3r::ExPolygons support_contours;
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,
const sla::PadConfig &padcfg,
const Slic3r::sla::PadConfig &padcfg,
PadByproducts & out);
inline void test_pad(const std::string & obj_filename,
const sla::PadConfig &padcfg = {})
const Slic3r::sla::PadConfig &padcfg = {})
{
PadByproducts byproducts;
test_pad(obj_filename, padcfg, byproducts);
@@ -69,53 +67,53 @@ struct SupportByproducts
{
std::string obj_fname;
std::vector<float> slicegrid;
std::vector<ExPolygons> model_slices;
sla::SupportTreeBuilder supporttree;
TriangleMesh input_mesh;
std::vector<Slic3r::ExPolygons> model_slices;
Slic3r::sla::SupportTreeBuilder supporttree;
Slic3r::TriangleMesh input_mesh;
};
const constexpr float CLOSING_RADIUS = 0.005f;
void check_support_tree_integrity(const sla::SupportTreeBuilder &stree,
const sla::SupportTreeConfig &cfg);
void check_support_tree_integrity(const Slic3r::sla::SupportTreeBuilder &stree,
const Slic3r::sla::SupportTreeConfig &cfg);
void test_supports(const std::string &obj_filename,
const sla::SupportTreeConfig &supportcfg,
const sla::HollowingConfig &hollowingcfg,
const sla::DrainHoles &drainholes,
const Slic3r::sla::SupportTreeConfig &supportcfg,
const Slic3r::sla::HollowingConfig &hollowingcfg,
const Slic3r::sla::DrainHoles &drainholes,
SupportByproducts &out);
inline void test_supports(const std::string &obj_filename,
const sla::SupportTreeConfig &supportcfg,
const Slic3r::sla::SupportTreeConfig &supportcfg,
SupportByproducts &out)
{
sla::HollowingConfig hcfg;
Slic3r::sla::HollowingConfig hcfg;
hcfg.enabled = false;
test_supports(obj_filename, supportcfg, hcfg, {}, out);
}
inline void test_supports(const std::string &obj_filename,
const sla::SupportTreeConfig &supportcfg = {})
const Slic3r::sla::SupportTreeConfig &supportcfg = {})
{
SupportByproducts 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);
void test_support_model_collision(
const std::string &obj_filename,
const sla::SupportTreeConfig &input_supportcfg,
const sla::HollowingConfig &hollowingcfg,
const sla::DrainHoles &drainholes);
const Slic3r::sla::SupportTreeConfig &input_supportcfg,
const Slic3r::sla::HollowingConfig &hollowingcfg,
const Slic3r::sla::DrainHoles &drainholes);
inline void test_support_model_collision(
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;
test_support_model_collision(obj_filename, input_supportcfg, hcfg, {});
}
@@ -156,8 +154,8 @@ template <class I, class II> void test_pairhash()
REQUIRE(a != b);
II hash_ab = sla::pairhash<I, II>(a, b);
II hash_ba = sla::pairhash<I, II>(b, a);
II hash_ab = Slic3r::sla::pairhash<I, II>(a, b);
II hash_ba = Slic3r::sla::pairhash<I, II>(b, a);
REQUIRE(hash_ab == hash_ba);
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; }
void check_raster_transformations(sla::RasterBase::Orientation o,
sla::RasterBase::TMirroring mirroring);
void check_raster_transformations(Slic3r::sla::RasterBase::Orientation o,
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);
}
double raster_white_area(const sla::RasterGrayscaleAA &raster);
long raster_pxsum(const sla::RasterGrayscaleAA &raster);
double raster_white_area(const Slic3r::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(
const TriangleMesh & mesh,
const sla::SupportPointGenerator::Config &cfg = {});
Slic3r::sla::SupportPoints calc_support_pts(
const Slic3r::TriangleMesh & mesh,
const Slic3r::sla::SupportPointGenerator::Config &cfg = {});
#endif // SLA_TEST_UTILS_HPP
+36 -29
View File
@@ -78,31 +78,34 @@ TEST_CASE("Series and managed classification", "[NetworkVersions]")
TEST_CASE_METHOD(PluginFolderFixture, "Managed builds fold into the series; customs are surfaced", "[NetworkVersions]")
{
add_plugin("02.08.01.55"); // managed, same series -> folded into the 02.08.01 row
add_plugin("02.08.04.60"); // managed, same series -> folded into the 02.08.04 row
add_plugin("02.09.00.10"); // managed, unknown series -> not listed
add_plugin("02.08.01.55"); // managed, series this build no longer has an ABI for -> not listed
add_plugin("02.03.00.62"); // managed, older whitelisted series -> folded into 02.03.00
add_plugin("02.01.01.52"); // managed, series with no ABI in this build -> not listed
add_plugin("02.08.01_custom"); // custom, whitelisted series -> listed under it
add_plugin("02.08.01.52-dev"); // custom (dash-suffixed), whitelisted series -> listed
add_plugin("02.08.04_custom"); // custom, whitelisted series -> listed under it
add_plugin("02.08.04.52-dev"); // custom (dash-suffixed), whitelisted series -> listed
auto versions = get_all_available_versions();
// The specific managed build never gets its own row - the series represents it.
REQUIRE(count_version(versions, "02.08.01.55") == 0);
REQUIRE(count_version(versions, "02.08.01") == 1);
REQUIRE(count_version(versions, "02.08.04.60") == 0);
REQUIRE(count_version(versions, "02.08.04") == 1);
REQUIRE(count_version(versions, "02.09.00.10") == 0);
REQUIRE(count_version(versions, "02.08.01.55") == 0);
REQUIRE(count_version(versions, "02.08.01") == 0);
REQUIRE(count_version(versions, "02.03.00.62") == 0);
REQUIRE(count_version(versions, "02.03.00") == 1);
REQUIRE(count_version(versions, "02.01.01.52") == 0);
// Custom-named builds are distinct files kept under their own name.
REQUIRE(count_version(versions, "02.08.01_custom") == 1);
REQUIRE(count_version(versions, "02.08.01.52-dev") == 1);
REQUIRE(count_version(versions, "02.08.04_custom") == 1);
REQUIRE(count_version(versions, "02.08.04.52-dev") == 1);
// Newest series first, its customs nested under it (suffix sort: "" < ".52-dev" < "_custom"),
// then older series, legacy last.
REQUIRE(versions[0].version == "02.08.01");
REQUIRE(versions[1].version == "02.08.01.52-dev");
REQUIRE(versions[2].version == "02.08.01_custom");
REQUIRE(versions[0].version == "02.08.04");
REQUIRE(versions[1].version == "02.08.04.52-dev");
REQUIRE(versions[2].version == "02.08.04_custom");
REQUIRE(versions[3].version == "02.03.00");
REQUIRE(versions.back().version == BAMBU_NETWORK_AGENT_VERSION_LEGACY);
@@ -111,9 +114,9 @@ TEST_CASE_METHOD(PluginFolderFixture, "Managed builds fold into the series; cust
REQUIRE_FALSE(versions[3].is_latest);
// Customs sort/render nested under their series (non-empty suffix, base = the series).
REQUIRE(versions[1].base_version == "02.08.01");
REQUIRE(versions[1].base_version == "02.08.04");
REQUIRE_FALSE(versions[1].suffix.empty());
REQUIRE(versions[2].base_version == "02.08.01");
REQUIRE(versions[2].base_version == "02.08.04");
REQUIRE_FALSE(versions[2].suffix.empty());
// "(Latest)" is the series row, never a nested custom build.
@@ -123,20 +126,20 @@ TEST_CASE_METHOD(PluginFolderFixture, "Managed builds fold into the series; cust
REQUIRE_FALSE(versions[2].is_latest);
// The stored default that drives download and update-check decisions is now the series.
REQUIRE(std::string(get_latest_network_version()) == "02.08.01");
REQUIRE(std::string(get_latest_network_version()) == "02.08.04");
}
TEST_CASE_METHOD(PluginFolderFixture, "Only the loaded series is marked installed", "[NetworkVersions]")
{
add_plugin("02.08.01.55");
add_plugin("02.08.01_custom");
add_plugin("02.08.04.60");
add_plugin("02.08.04_custom");
// The loaded plug-in reports its full build (02.08.01.55); the series row is what gets marked.
// The loaded plug-in reports its full build (02.08.04.60); the series row is what gets marked.
{
auto versions = get_all_available_versions("02.08.01.55");
auto versions = get_all_available_versions("02.08.04.60");
int marked = 0;
for (const auto& info : versions)
if (info.is_loaded) { ++marked; REQUIRE(info.version == "02.08.01"); }
if (info.is_loaded) { ++marked; REQUIRE(info.version == "02.08.04"); }
REQUIRE(marked == 1);
}
@@ -152,10 +155,10 @@ TEST_CASE_METHOD(PluginFolderFixture, "Only the loaded series is marked installe
// A loaded custom build matches its own row, never the bare series.
{
auto versions = get_all_available_versions("02.08.01_custom");
auto versions = get_all_available_versions("02.08.04_custom");
int marked = 0;
for (const auto& info : versions)
if (info.is_loaded) { ++marked; REQUIRE(info.version == "02.08.01_custom"); }
if (info.is_loaded) { ++marked; REQUIRE(info.version == "02.08.04_custom"); }
REQUIRE(marked == 1);
}
@@ -167,11 +170,11 @@ TEST_CASE_METHOD(PluginFolderFixture, "Only the loaded series is marked installe
TEST_CASE("Only whitelisted series pass the load gate", "[NetworkVersions]")
{
// Each whitelisted series, its builds, and custom-named builds of that series.
REQUIRE(is_supported_network_version("02.08.01"));
REQUIRE(is_supported_network_version("02.08.01.52"));
REQUIRE(is_supported_network_version("02.08.01.55"));
REQUIRE(is_supported_network_version("02.08.01_custom"));
REQUIRE(is_supported_network_version("02.08.01.52-dev"));
REQUIRE(is_supported_network_version("02.08.04"));
REQUIRE(is_supported_network_version("02.08.04.52"));
REQUIRE(is_supported_network_version("02.08.04.60"));
REQUIRE(is_supported_network_version("02.08.04_custom"));
REQUIRE(is_supported_network_version("02.08.04.52-dev"));
REQUIRE(is_supported_network_version("02.03.00"));
REQUIRE(is_supported_network_version("02.03.00.62"));
REQUIRE(is_supported_network_version("02.03.00.70"));
@@ -179,6 +182,9 @@ TEST_CASE("Only whitelisted series pass the load gate", "[NetworkVersions]")
REQUIRE(is_supported_network_version(BAMBU_NETWORK_AGENT_VERSION_LEGACY));
// Series whitelisted by previous Orca releases that no generation here can call.
REQUIRE_FALSE(is_supported_network_version("02.08.01"));
REQUIRE_FALSE(is_supported_network_version("02.08.01.55"));
REQUIRE_FALSE(is_supported_network_version("02.08.01_custom"));
REQUIRE_FALSE(is_supported_network_version("02.01.01.52"));
REQUIRE_FALSE(is_supported_network_version("02.00.02.50"));
@@ -198,9 +204,9 @@ TEST_CASE("Each version resolves to the ABI generation that can call it", "[Netw
{
// The generation is keyed on the series, so every build of a series - including the
// custom-named ones - resolves to the same one.
CHECK(network_plugin_abi("02.08.01") == NetworkAbi::Current);
CHECK(network_plugin_abi("02.08.01.55") == NetworkAbi::Current);
CHECK(network_plugin_abi("02.08.01.52-dev") == NetworkAbi::Current);
CHECK(network_plugin_abi("02.08.04") == NetworkAbi::Current);
CHECK(network_plugin_abi("02.08.04.60") == NetworkAbi::Current);
CHECK(network_plugin_abi("02.08.04.52-dev") == NetworkAbi::Current);
CHECK(network_plugin_abi("02.03.00") == NetworkAbi::V0203);
CHECK(network_plugin_abi("02.03.00.62") == NetworkAbi::V0203);
CHECK(network_plugin_abi("02.03.00_custom") == NetworkAbi::V0203);
@@ -208,6 +214,7 @@ TEST_CASE("Each version resolves to the ABI generation that can call it", "[Netw
// Anything the load gate rejects must dispatch through nothing at all, rather than
// defaulting to a layout it does not share.
CHECK(network_plugin_abi("02.08.01.55") == NetworkAbi::Unsupported);
CHECK(network_plugin_abi("02.01.01.52") == NetworkAbi::Unsupported);
CHECK(network_plugin_abi("02.00.02.50") == NetworkAbi::Unsupported);
CHECK(network_plugin_abi("02.09.00.10") == NetworkAbi::Unsupported);
@@ -234,7 +241,7 @@ TEST_CASE_METHOD(PluginFolderFixture, "Legacy series never adopts discovered bui
// With nothing else on disk, the series holds "(Latest)" even though its library is
// not installed.
for (const auto& info : versions) {
if (info.version == "02.08.01") {
if (info.version == "02.08.04") {
REQUIRE(info.is_latest);
REQUIRE_FALSE(info.is_loaded);
}