Meged with dev2

This commit is contained in:
bubnikv 2018-09-19 11:28:30 +02:00
commit e8c16c35e5
17 changed files with 1301 additions and 117 deletions

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@ -1,28 +0,0 @@
###############################################################################
# Find Flann
#
# This sets the following variables:
# FLANN_FOUND - True if FLANN was found.
# FLANN_INCLUDE_DIRS - Directories containing the FLANN include files.
# FLANN_LIBRARIES - Libraries needed to use FLANN.
# FLANN_DEFINITIONS - Compiler flags for FLANN.
find_package(PkgConfig)
pkg_check_modules(PC_FLANN flann)
set(FLANN_DEFINITIONS ${PC_FLANN_CFLAGS_OTHER})
find_path(FLANN_INCLUDE_DIR flann/flann.hpp
HINTS ${PC_FLANN_INCLUDEDIR} ${PC_FLANN_INCLUDE_DIRS})
find_library(FLANN_LIBRARY flann_cpp
HINTS ${PC_FLANN_LIBDIR} ${PC_FLANN_LIBRARY_DIRS})
set(FLANN_INCLUDE_DIRS ${FLANN_INCLUDE_DIR})
set(FLANN_LIBRARIES ${FLANN_LIBRARY})
include(FindPackageHandleStandardArgs)
find_package_handle_standard_args(Flann DEFAULT_MSG
FLANN_LIBRARY FLANN_INCLUDE_DIR)
mark_as_advanced(FLANN_LIBRARY FLANN_INCLUDE_DIR)

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@ -296,29 +296,42 @@ sub new {
}
});
Slic3r::GUI::_3DScene::register_on_viewport_changed_callback($self->{canvas3D}, sub { Slic3r::GUI::_3DScene::set_viewport_from_scene($self->{preview3D}->canvas, $self->{canvas3D}); });
Slic3r::GUI::_3DScene::register_on_viewport_changed_callback($self->{canvas3D},
sub {
$self->{preview_iface}->set_viewport_from_scene($self->{canvas3D});
});
# Slic3r::GUI::_3DScene::register_on_viewport_changed_callback($self->{canvas3D}, sub { Slic3r::GUI::_3DScene::set_viewport_from_scene($self->{preview3D}->canvas, $self->{canvas3D}); });
}
Slic3r::GUI::register_on_request_update_callback(sub { $self->schedule_background_process; });
# Initialize 3D toolpaths preview
if ($Slic3r::GUI::have_OpenGL) {
$self->{preview3D} = Slic3r::GUI::Plater::3DPreview->new($self->{preview_notebook}, $self->{print}, $self->{gcode_preview_data}, $self->{config});
Slic3r::GUI::_3DScene::enable_legend_texture($self->{preview3D}->canvas, 1);
Slic3r::GUI::_3DScene::enable_dynamic_background($self->{preview3D}->canvas, 1);
Slic3r::GUI::_3DScene::register_on_viewport_changed_callback($self->{preview3D}->canvas, sub { Slic3r::GUI::_3DScene::set_viewport_from_scene($self->{canvas3D}, $self->{preview3D}->canvas); });
$self->{preview_notebook}->AddPage($self->{preview3D}, L('Preview'));
$self->{preview_iface} = Slic3r::GUI::create_preview_iface($self->{preview_notebook}, $self->{config}, $self->{print}, $self->{gcode_preview_data});
$self->{preview_page_idx} = $self->{preview_notebook}->GetPageCount-1;
$self->{preview_iface}->register_on_viewport_changed_callback(sub { $self->{preview_iface}->set_viewport_into_scene($self->{canvas3D}); });
# $self->{preview3D} = Slic3r::GUI::Plater::3DPreview->new($self->{preview_notebook}, $self->{print}, $self->{gcode_preview_data}, $self->{config});
# Slic3r::GUI::_3DScene::enable_legend_texture($self->{preview3D}->canvas, 1);
# Slic3r::GUI::_3DScene::enable_dynamic_background($self->{preview3D}->canvas, 1);
# Slic3r::GUI::_3DScene::register_on_viewport_changed_callback($self->{preview3D}->canvas, sub { Slic3r::GUI::_3DScene::set_viewport_from_scene($self->{canvas3D}, $self->{preview3D}->canvas); });
# $self->{preview_notebook}->AddPage($self->{preview3D}, L('Preview'));
$self->{preview3D_page_idx} = $self->{preview_notebook}->GetPageCount-1;
}
EVT_NOTEBOOK_PAGE_CHANGED($self, $self->{preview_notebook}, sub {
my $preview = $self->{preview_notebook}->GetCurrentPage;
if (($preview != $self->{preview3D}) && ($preview != $self->{canvas3D})) {
my $page_id = $self->{preview_notebook}->GetSelection;
if (($preview != $self->{canvas3D}) && ($page_id != $self->{preview_page_idx})) {
# if (($preview != $self->{preview3D}) && ($preview != $self->{canvas3D})) {
$preview->OnActivate if $preview->can('OnActivate');
} elsif ($preview == $self->{preview3D}) {
$self->{preview3D}->reload_print;
} elsif ($page_id == $self->{preview_page_idx}) {
$self->{preview_iface}->reload_print;
# sets the canvas as dirty to force a render at the 1st idle event (wxWidgets IsShownOnScreen() is buggy and cannot be used reliably)
Slic3r::GUI::_3DScene::set_as_dirty($self->{preview3D}->canvas);
$self->{preview_iface}->set_canvas_as_dirty;
# } elsif ($preview == $self->{preview3D}) {
# $self->{preview3D}->reload_print;
# # sets the canvas as dirty to force a render at the 1st idle event (wxWidgets IsShownOnScreen() is buggy and cannot be used reliably)
# Slic3r::GUI::_3DScene::set_as_dirty($self->{preview3D}->canvas);
} elsif ($preview == $self->{canvas3D}) {
if (Slic3r::GUI::_3DScene::is_reload_delayed($self->{canvas3D})) {
my $selections = $self->collect_selections;
@ -461,7 +474,8 @@ sub new {
$_->SetDropTarget(Slic3r::GUI::Plater::DropTarget->new($self))
for grep defined($_),
$self, $self->{canvas3D}, $self->{preview3D}, $self->{list};
$self, $self->{canvas3D}, $self->{preview_iface}, $self->{list};
# $self, $self->{canvas3D}, $self->{preview3D}, $self->{list};
# $self, $self->{canvas}, $self->{canvas3D}, $self->{preview3D};
EVT_COMMAND($self, -1, $SLICING_COMPLETED_EVENT, sub {
@ -488,9 +502,10 @@ sub new {
Slic3r::GUI::_3DScene::set_bed_shape($self->{canvas3D}, $self->{config}->bed_shape);
Slic3r::GUI::_3DScene::zoom_to_bed($self->{canvas3D});
}
if ($self->{preview3D}) {
Slic3r::GUI::_3DScene::set_bed_shape($self->{preview3D}->canvas, $self->{config}->bed_shape);
}
$self->{preview_iface}->set_bed_shape($self->{config}->bed_shape) if ($self->{preview_iface});
# if ($self->{preview3D}) {
# Slic3r::GUI::_3DScene::set_bed_shape($self->{preview3D}->canvas, $self->{config}->bed_shape);
# }
$self->update;
{
@ -1005,7 +1020,8 @@ sub remove {
$self->stop_background_process;
# Prevent toolpaths preview from rendering while we modify the Print object
$self->{preview3D}->enabled(0) if $self->{preview3D};
$self->{preview_iface}->set_enabled(0) if $self->{preview_iface};
# $self->{preview3D}->enabled(0) if $self->{preview3D};
# If no object index is supplied, remove the selected one.
if (! defined $obj_idx) {
@ -1030,7 +1046,8 @@ sub reset {
$self->stop_background_process;
# Prevent toolpaths preview from rendering while we modify the Print object
$self->{preview3D}->enabled(0) if $self->{preview3D};
$self->{preview_iface}->set_enabled(0) if $self->{preview_iface};
# $self->{preview3D}->enabled(0) if $self->{preview3D};
@{$self->{objects}} = ();
$self->{model}->clear_objects;
@ -1391,7 +1408,8 @@ sub async_apply_config {
# Reset preview canvases. If the print has been invalidated, the preview canvases will be cleared.
# Otherwise they will be just refreshed.
$self->{gcode_preview_data}->reset;
$self->{preview3D}->reload_print if $self->{preview3D};
$self->{preview_iface}->reload_print if $self->{preview_iface};
# $self->{preview3D}->reload_print if $self->{preview3D};
# We also need to reload 3D scene because of the wipe tower preview box
if ($self->{config}->wipe_tower) {
my $selections = $self->collect_selections;
@ -1426,7 +1444,8 @@ sub start_background_process {
sub stop_background_process {
my ($self) = @_;
$self->{background_slicing_process}->stop();
$self->{preview3D}->reload_print if $self->{preview3D};
$self->{preview_iface}->reload_print if $self->{preview_iface};
# $self->{preview3D}->reload_print if $self->{preview3D};
}
# Called by the "Slice now" button, which is visible only if the background processing is disabled.
@ -1532,7 +1551,8 @@ sub export_gcode {
# This message should be called by the background process synchronously.
sub on_update_print_preview {
my ($self) = @_;
$self->{preview3D}->reload_print if $self->{preview3D};
$self->{preview_iface}->reload_print if $self->{preview_iface};
# $self->{preview3D}->reload_print if $self->{preview3D};
# in case this was MM print, wipe tower bounding box on 3D tab might need redrawing with exact depth:
my $selections = $self->collect_selections;
@ -1613,7 +1633,8 @@ sub on_process_completed {
$self->object_list_changed;
# refresh preview
$self->{preview3D}->reload_print if $self->{preview3D};
$self->{preview_iface}->reload_print if $self->{preview_iface};
# $self->{preview3D}->reload_print if $self->{preview3D};
}
# Fill in the "Sliced info" box with the result of the G-code generator.
@ -1881,8 +1902,10 @@ sub update {
my $selections = $self->collect_selections;
Slic3r::GUI::_3DScene::set_objects_selections($self->{canvas3D}, \@$selections);
Slic3r::GUI::_3DScene::reload_scene($self->{canvas3D}, 0);
$self->{preview3D}->reset_gcode_preview_data if $self->{preview3D};
$self->{preview3D}->reload_print if $self->{preview3D};
$self->{preview_iface}->reset_gcode_preview_data if $self->{preview_iface};
$self->{preview_iface}->reload_print if $self->{preview_iface};
# $self->{preview3D}->reset_gcode_preview_data if $self->{preview3D};
# $self->{preview3D}->reload_print if $self->{preview3D};
$self->schedule_background_process;
$self->Thaw;
}
@ -1958,7 +1981,8 @@ sub on_config_change {
if ($opt_key eq 'bed_shape') {
# $self->{canvas}->update_bed_size;
Slic3r::GUI::_3DScene::set_bed_shape($self->{canvas3D}, $self->{config}->bed_shape) if $self->{canvas3D};
Slic3r::GUI::_3DScene::set_bed_shape($self->{preview3D}->canvas, $self->{config}->bed_shape) if $self->{preview3D};
$self->{preview_iface}->set_bed_shape($self->{config}->bed_shape) if ($self->{preview_iface});
# Slic3r::GUI::_3DScene::set_bed_shape($self->{preview3D}->canvas, $self->{config}->bed_shape) if $self->{preview3D};
$update_scheduled = 1;
} elsif ($opt_key =~ '^wipe_tower' || $opt_key eq 'single_extruder_multi_material') {
$update_scheduled = 1;
@ -1993,13 +2017,15 @@ sub on_config_change {
} elsif ($opt_key eq 'extruder_colour') {
$update_scheduled = 1;
my $extruder_colors = $config->get('extruder_colour');
$self->{preview3D}->set_number_extruders(scalar(@{$extruder_colors}));
$self->{preview_iface}->set_number_extruders(scalar(@{$extruder_colors}));
# $self->{preview3D}->set_number_extruders(scalar(@{$extruder_colors}));
} elsif ($opt_key eq 'max_print_height') {
$update_scheduled = 1;
} elsif ($opt_key eq 'printer_model') {
# update to force bed selection (for texturing)
Slic3r::GUI::_3DScene::set_bed_shape($self->{canvas3D}, $self->{config}->bed_shape) if $self->{canvas3D};
Slic3r::GUI::_3DScene::set_bed_shape($self->{preview3D}->canvas, $self->{config}->bed_shape) if $self->{preview3D};
$self->{preview_iface}->set_bed_shape($self->{config}->bed_shape) if ($self->{preview_iface});
# Slic3r::GUI::_3DScene::set_bed_shape($self->{preview3D}->canvas, $self->{config}->bed_shape) if $self->{preview3D};
$update_scheduled = 1;
}
}
@ -2451,11 +2477,14 @@ sub select_view {
my $idx_page = $self->{preview_notebook}->GetSelection;
my $page = ($idx_page == &Wx::wxNOT_FOUND) ? L('3D') : $self->{preview_notebook}->GetPageText($idx_page);
if ($page eq L('Preview')) {
Slic3r::GUI::_3DScene::select_view($self->{preview3D}->canvas, $direction);
Slic3r::GUI::_3DScene::set_viewport_from_scene($self->{canvas3D}, $self->{preview3D}->canvas);
$self->{preview_iface}->select_view($direction);
$self->{preview_iface}->set_viewport_into_scene($self->{canvas3D});
# Slic3r::GUI::_3DScene::select_view($self->{preview3D}->canvas, $direction);
# Slic3r::GUI::_3DScene::set_viewport_from_scene($self->{canvas3D}, $self->{preview3D}->canvas);
} else {
Slic3r::GUI::_3DScene::select_view($self->{canvas3D}, $direction);
Slic3r::GUI::_3DScene::set_viewport_from_scene($self->{preview3D}->canvas, $self->{canvas3D});
$self->{preview_iface}->set_viewport_from_scene($self->{canvas3D});
# Slic3r::GUI::_3DScene::set_viewport_from_scene($self->{preview3D}->canvas, $self->{canvas3D});
}
}

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@ -7,10 +7,6 @@
#include <fstream>
#include <sstream>
#include <wx/stdstream.h>
#include <wx/wfstream.h>
#include <wx/zipstrm.h>
#include <boost/log/trivial.hpp>
#include "Rasterizer/Rasterizer.hpp"
@ -32,7 +28,7 @@ enum class FilePrinterFormat {
* different implementations of this class template for each supported format.
*
*/
template<FilePrinterFormat format>
template<FilePrinterFormat format, class LayerFormat = void>
class FilePrinter {
public:
@ -73,10 +69,33 @@ public:
void saveLayer(unsigned lyr, const std::string& path);
};
template<class T = void> struct VeryFalse { static const bool value = false; };
// This has to be explicitly implemented in the gui layer or a default zlib
// based implementation is needed.
template<class Backend> class Zipper {
public:
Zipper(const std::string& /*zipfile_path*/) {
static_assert(VeryFalse<Backend>::value,
"No zipper implementation provided!");
}
void next_entry(const std::string& /*fname*/) {}
std::string get_name() { return ""; }
template<class T> Zipper& operator<<(const T& /*arg*/) {
return *this;
}
void close() {}
};
// Implementation for PNG raster output
// Be aware that if a large number of layers are allocated, it can very well
// exhaust the available memory especially on 32 bit platform.
template<> class FilePrinter<FilePrinterFormat::PNG> {
template<class LyrFormat> class FilePrinter<FilePrinterFormat::PNG, LyrFormat> {
struct Layer {
Raster first;
@ -148,7 +167,7 @@ public:
pxdim_(m.pxdim_) {}
inline void layers(unsigned cnt) { if(cnt > 0) layers_rst_.resize(cnt); }
inline unsigned layers() const { return layers_rst_.size(); }
inline unsigned layers() const { return unsigned(layers_rst_.size()); }
void printConfig(const Print& printconf) { print_ = &printconf; }
@ -183,38 +202,63 @@ public:
}
inline void save(const std::string& path) {
try {
Zipper<LyrFormat> zipper(path);
wxFileName filepath(path);
std::string project = zipper.get_name();
wxFFileOutputStream zipfile(path);
zipper.next_entry(project);
zipper << createIniContent(project);
std::string project = filepath.GetName().ToStdString();
for(unsigned i = 0; i < layers_rst_.size(); i++) {
if(layers_rst_[i].second.rdbuf()->in_avail() > 0) {
char lyrnum[6];
std::sprintf(lyrnum, "%.5d", i);
auto zfilename = project + lyrnum + ".png";
zipper.next_entry(zfilename);
zipper << layers_rst_[i].second.rdbuf();
layers_rst_[i].second.str("");
}
}
if(!zipfile.IsOk()) {
zipper.close();
} catch(std::exception&) {
BOOST_LOG_TRIVIAL(error) << "Can't create zip file for layers! "
<< path;
return;
}
wxZipOutputStream zipstream(zipfile);
wxStdOutputStream pngstream(zipstream);
// wxFileName filepath(path);
zipstream.PutNextEntry("config.ini");
pngstream << createIniContent(project);
// wxFFileOutputStream zipfile(path);
for(unsigned i = 0; i < layers_rst_.size(); i++) {
if(layers_rst_[i].second.rdbuf()->in_avail() > 0) {
char lyrnum[6];
std::sprintf(lyrnum, "%.5d", i);
auto zfilename = project + lyrnum + ".png";
zipstream.PutNextEntry(zfilename);
pngstream << layers_rst_[i].second.rdbuf();
layers_rst_[i].second.str("");
}
}
// std::string project = filepath.GetName().ToStdString();
zipstream.Close();
zipfile.Close();
// if(!zipfile.IsOk()) {
// BOOST_LOG_TRIVIAL(error) << "Can't create zip file for layers! "
// << path;
// return;
// }
// wxZipOutputStream zipstream(zipfile);
// wxStdOutputStream pngstream(zipstream);
// zipstream.PutNextEntry("config.ini");
// pngstream << createIniContent(project);
// for(unsigned i = 0; i < layers_rst_.size(); i++) {
// if(layers_rst_[i].second.rdbuf()->in_avail() > 0) {
// char lyrnum[6];
// std::sprintf(lyrnum, "%.5d", i);
// auto zfilename = project + lyrnum + ".png";
// zipstream.PutNextEntry(zfilename);
// pngstream << layers_rst_[i].second.rdbuf();
// layers_rst_[i].second.str("");
// }
// }
// zipstream.Close();
// zipfile.Close();
}
void saveLayer(unsigned lyr, const std::string& path) {
@ -243,7 +287,7 @@ inline coord_t py(const Point& p) { return p(1); }
inline coordf_t px(const Vec2d& p) { return p(0); }
inline coordf_t py(const Vec2d& p) { return p(1); }
template<FilePrinterFormat format, class...Args>
template<FilePrinterFormat format, class LayerFormat, class...Args>
void print_to(Print& print,
std::string dirpath,
double width_mm,
@ -261,7 +305,9 @@ void print_to(Print& print,
auto& objects = print.objects();
// Merge the sliced layers with the support layers
std::for_each(objects.cbegin(), objects.cend(), [&layers](const PrintObject *o) {
std::for_each(objects.cbegin(), objects.cend(),
[&layers](const PrintObject *o)
{
for(const auto l : o->layers()) {
auto& lyrs = layers[static_cast<long long>(scale_(l->print_z))];
lyrs.push_back(l);
@ -288,8 +334,8 @@ void print_to(Print& print,
auto cy = scale_(height_mm)/2 - (py(print_bb.center()) - py(print_bb.min));
// Create the actual printer, forward any additional arguments to it.
FilePrinter<format> printer(width_mm, height_mm,
std::forward<Args>(args)...);
FilePrinter<format, LayerFormat> printer(width_mm, height_mm,
std::forward<Args>(args)...);
printer.printConfig(print);
@ -303,14 +349,11 @@ void print_to(Print& print,
keys.reserve(layers.size());
for(auto& e : layers) keys.push_back(e.first);
//FIXME
int initstatus = //print.progressindicator? print.progressindicator->state() :
0;
print.set_status(initstatus, jobdesc);
print.set_status(0, jobdesc);
// Method that prints one layer
auto process_layer = [&layers, &keys, &printer, &st_prev, &m,
&jobdesc, print_bb, dir, cx, cy, &print, initstatus]
&jobdesc, print_bb, dir, cx, cy, &print]
(unsigned layer_id)
{
LayerPtrs lrange = layers[keys[layer_id]];
@ -354,7 +397,7 @@ void print_to(Print& print,
auto st = static_cast<int>(layer_id*80.0/layers.size());
m.lock();
if( st - st_prev > 10) {
print.set_status(initstatus + st, jobdesc);
print.set_status(st, jobdesc);
st_prev = st;
}
m.unlock();
@ -373,9 +416,9 @@ void print_to(Print& print,
// print.set_status(100, jobdesc);
// Save the print into the file system.
print.set_status(initstatus + 90, "Writing layers to disk");
print.set_status(90, "Writing layers to disk");
printer.save(dir);
print.set_status(initstatus + 100, "Writing layers completed");
print.set_status(100, "Writing layers completed");
}
}

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@ -2618,7 +2618,10 @@ void modulate_extrusion_by_overlapping_layers(
(fragment_end.is_start ? &polyline.points.front() : &polyline.points.back());
}
private:
ExtrusionPathFragmentEndPointAccessor& operator=(const ExtrusionPathFragmentEndPointAccessor&) {}
ExtrusionPathFragmentEndPointAccessor& operator=(const ExtrusionPathFragmentEndPointAccessor&) {
return *this;
}
const std::vector<ExtrusionPathFragment> &m_path_fragments;
};
const coord_t search_radius = 7;

View File

@ -11,12 +11,17 @@
#include <ModelArrange.hpp>
#include <slic3r/GUI/PresetBundle.hpp>
#include <Geometry.hpp>
#include <PrintConfig.hpp>
#include <Print.hpp>
#include <PrintExport.hpp>
#include <Geometry.hpp>
#include <Model.hpp>
#include <Utils.hpp>
#include <wx/stdstream.h>
#include <wx/wfstream.h>
#include <wx/zipstrm.h>
namespace Slic3r {
class AppControllerBoilerplate::PriData {
@ -43,6 +48,15 @@ namespace GUI {
PresetBundle* get_preset_bundle();
}
static const PrintObjectStep STEP_SLICE = posSlice;
static const PrintObjectStep STEP_PERIMETERS = posPerimeters;
static const PrintObjectStep STEP_PREPARE_INFILL = posPrepareInfill;
static const PrintObjectStep STEP_INFILL = posInfill;
static const PrintObjectStep STEP_SUPPORTMATERIAL = posSupportMaterial;
static const PrintStep STEP_SKIRT = psSkirt;
static const PrintStep STEP_BRIM = psBrim;
static const PrintStep STEP_WIPE_TOWER = psWipeTower;
AppControllerBoilerplate::ProgresIndicatorPtr
AppControllerBoilerplate::global_progress_indicator() {
ProgresIndicatorPtr ret;
@ -62,6 +76,376 @@ void AppControllerBoilerplate::global_progress_indicator(
pri_data_->m.unlock();
}
//void PrintController::make_skirt()
//{
// assert(print_ != nullptr);
// // prerequisites
// for(auto obj : print_->objects) make_perimeters(obj);
// for(auto obj : print_->objects) infill(obj);
// for(auto obj : print_->objects) gen_support_material(obj);
// if(!print_->state.is_done(STEP_SKIRT)) {
// print_->state.set_started(STEP_SKIRT);
// print_->skirt.clear();
// if(print_->has_skirt()) print_->_make_skirt();
// print_->state.set_done(STEP_SKIRT);
// }
//}
//void PrintController::make_brim()
//{
// assert(print_ != nullptr);
// // prerequisites
// for(auto obj : print_->objects) make_perimeters(obj);
// for(auto obj : print_->objects) infill(obj);
// for(auto obj : print_->objects) gen_support_material(obj);
// make_skirt();
// if(!print_->state.is_done(STEP_BRIM)) {
// print_->state.set_started(STEP_BRIM);
// // since this method must be idempotent, we clear brim paths *before*
// // checking whether we need to generate them
// print_->brim.clear();
// if(print_->config.brim_width > 0) print_->_make_brim();
// print_->state.set_done(STEP_BRIM);
// }
//}
//void PrintController::make_wipe_tower()
//{
// assert(print_ != nullptr);
// // prerequisites
// for(auto obj : print_->objects) make_perimeters(obj);
// for(auto obj : print_->objects) infill(obj);
// for(auto obj : print_->objects) gen_support_material(obj);
// make_skirt();
// make_brim();
// if(!print_->state.is_done(STEP_WIPE_TOWER)) {
// print_->state.set_started(STEP_WIPE_TOWER);
// // since this method must be idempotent, we clear brim paths *before*
// // checking whether we need to generate them
// print_->brim.clear();
// if(print_->has_wipe_tower()) print_->_make_wipe_tower();
// print_->state.set_done(STEP_WIPE_TOWER);
// }
//}
//void PrintController::slice(PrintObject *pobj)
//{
// assert(pobj != nullptr && print_ != nullptr);
// if(pobj->state.is_done(STEP_SLICE)) return;
// pobj->state.set_started(STEP_SLICE);
// pobj->_slice();
// auto msg = pobj->_fix_slicing_errors();
// if(!msg.empty()) report_issue(IssueType::WARN, msg);
// // simplify slices if required
// if (print_->config.resolution)
// pobj->_simplify_slices(scale_(print_->config.resolution));
// if(pobj->layers.empty())
// report_issue(IssueType::ERR,
// L("No layers were detected. You might want to repair your "
// "STL file(s) or check their size or thickness and retry")
// );
// pobj->state.set_done(STEP_SLICE);
//}
//void PrintController::make_perimeters(PrintObject *pobj)
//{
// assert(pobj != nullptr);
// slice(pobj);
// if (!pobj->state.is_done(STEP_PERIMETERS)) {
// pobj->_make_perimeters();
// }
//}
//void PrintController::infill(PrintObject *pobj)
//{
// assert(pobj != nullptr);
// make_perimeters(pobj);
// if (!pobj->state.is_done(STEP_PREPARE_INFILL)) {
// pobj->state.set_started(STEP_PREPARE_INFILL);
// pobj->_prepare_infill();
// pobj->state.set_done(STEP_PREPARE_INFILL);
// }
// pobj->_infill();
//}
//void PrintController::gen_support_material(PrintObject *pobj)
//{
// assert(pobj != nullptr);
// // prerequisites
// slice(pobj);
// if(!pobj->state.is_done(STEP_SUPPORTMATERIAL)) {
// pobj->state.set_started(STEP_SUPPORTMATERIAL);
// pobj->clear_support_layers();
// if((pobj->config.support_material || pobj->config.raft_layers > 0)
// && pobj->layers.size() > 1) {
// pobj->_generate_support_material();
// }
// pobj->state.set_done(STEP_SUPPORTMATERIAL);
// }
//}
PrintController::PngExportData
PrintController::query_png_export_data(const DynamicPrintConfig& conf)
{
PngExportData ret;
auto zippath = query_destination_path("Output zip file", "*.zip", "out");
ret.zippath = zippath;
ret.width_mm = conf.opt_float("display_width");
ret.height_mm = conf.opt_float("display_height");
ret.width_px = conf.opt_int("display_pixels_x");
ret.height_px = conf.opt_int("display_pixels_y");
auto opt_corr = conf.opt<ConfigOptionFloats>("printer_correction");
if(opt_corr) {
ret.corr_x = opt_corr->values[0];
ret.corr_y = opt_corr->values[1];
ret.corr_z = opt_corr->values[2];
}
ret.exp_time_first_s = conf.opt_float("initial_exposure_time");
ret.exp_time_s = conf.opt_float("exposure_time");
return ret;
}
void PrintController::slice(AppControllerBoilerplate::ProgresIndicatorPtr pri)
{
auto st = pri->state();
Slic3r::trace(3, "Starting the slicing process.");
pri->update(st+20, L("Generating perimeters"));
// for(auto obj : print_->objects) make_perimeters(obj);
pri->update(st+60, L("Infilling layers"));
// for(auto obj : print_->objects) infill(obj);
pri->update(st+70, L("Generating support material"));
// for(auto obj : print_->objects) gen_support_material(obj);
// pri->message_fmt(L("Weight: %.1fg, Cost: %.1f"),
// print_->total_weight, print_->total_cost);
pri->state(st+85);
pri->update(st+88, L("Generating skirt"));
make_skirt();
pri->update(st+90, L("Generating brim"));
make_brim();
pri->update(st+95, L("Generating wipe tower"));
make_wipe_tower();
pri->update(st+100, L("Done"));
// time to make some statistics..
Slic3r::trace(3, L("Slicing process finished."));
}
void PrintController::slice()
{
auto pri = global_progress_indicator();
if(!pri) pri = create_progress_indicator(100, L("Slicing"));
slice(pri);
}
struct wxZipper {};
template<> class Zipper<wxZipper> {
wxFileName m_fpath;
wxFFileOutputStream m_zipfile;
wxZipOutputStream m_zipstream;
wxStdOutputStream m_pngstream;
public:
Zipper(const std::string& zipfile_path):
m_fpath(zipfile_path),
m_zipfile(zipfile_path),
m_zipstream(m_zipfile),
m_pngstream(m_zipstream)
{
if(!m_zipfile.IsOk())
throw std::runtime_error(L("Cannot create zip file."));
}
void next_entry(const std::string& fname) {
m_zipstream.PutNextEntry(fname);
}
std::string get_name() {
return m_fpath.GetName().ToStdString();
}
template<class T> Zipper& operator<<(const T& arg) {
m_pngstream << arg; return *this;
}
void close() {
m_zipstream.Close();
m_zipfile.Close();
}
};
void PrintController::slice_to_png()
{
using Pointf3 = Vec3d;
auto presetbundle = GUI::get_preset_bundle();
assert(presetbundle);
auto pt = presetbundle->printers.get_selected_preset().printer_technology();
if(pt != ptSLA) {
report_issue(IssueType::ERR, L("Printer technology is not SLA!"),
L("Error"));
return;
}
auto conf = presetbundle->full_config();
conf.validate();
auto exd = query_png_export_data(conf);
if(exd.zippath.empty()) return;
Print *print = print_;
try {
print->apply_config(conf);
print->validate();
} catch(std::exception& e) {
report_issue(IssueType::ERR, e.what(), "Error");
return;
}
// TODO: copy the model and work with the copy only
bool correction = false;
if(exd.corr_x != 1.0 || exd.corr_y != 1.0 || exd.corr_z != 1.0) {
correction = true;
// print->invalidate_all_steps();
// for(auto po : print->objects) {
// po->model_object()->scale(
// Pointf3(exd.corr_x, exd.corr_y, exd.corr_z)
// );
// po->model_object()->invalidate_bounding_box();
// po->reload_model_instances();
// po->invalidate_all_steps();
// }
}
// Turn back the correction scaling on the model.
auto scale_back = [this, print, correction, exd]() {
if(correction) { // scale the model back
// print->invalidate_all_steps();
// for(auto po : print->objects) {
// po->model_object()->scale(
// Pointf3(1.0/exd.corr_x, 1.0/exd.corr_y, 1.0/exd.corr_z)
// );
// po->model_object()->invalidate_bounding_box();
// po->reload_model_instances();
// po->invalidate_all_steps();
// }
}
};
auto print_bb = print->bounding_box();
Vec2d punsc = unscale(print_bb.size());
// If the print does not fit into the print area we should cry about it.
if(px(punsc) > exd.width_mm || py(punsc) > exd.height_mm) {
std::stringstream ss;
ss << L("Print will not fit and will be truncated!") << "\n"
<< L("Width needed: ") << px(punsc) << " mm\n"
<< L("Height needed: ") << py(punsc) << " mm\n";
if(!report_issue(IssueType::WARN_Q, ss.str(), L("Warning"))) {
scale_back();
return;
}
}
auto pri = create_progress_indicator(
200, L("Slicing to zipped png files..."));
pri->on_cancel([&print](){ print->cancel(); });
try {
pri->update(0, L("Slicing..."));
slice(pri);
} catch (std::exception& e) {
report_issue(IssueType::ERR, e.what(), L("Exception occurred"));
scale_back();
if(print->canceled()) print->restart();
return;
}
auto initstate = unsigned(pri->state());
print->set_status_callback([pri, initstate](int st, const std::string& msg)
{
pri->update(initstate + unsigned(st), msg);
});
try {
print_to<FilePrinterFormat::PNG, wxZipper>( *print, exd.zippath,
exd.width_mm, exd.height_mm,
exd.width_px, exd.height_px,
exd.exp_time_s, exd.exp_time_first_s);
} catch (std::exception& e) {
report_issue(IssueType::ERR, e.what(), L("Exception occurred"));
}
scale_back();
if(print->canceled()) print->restart();
}
const PrintConfig &PrintController::config() const
{
return print_->config();
}
void ProgressIndicator::message_fmt(
const std::string &fmtstr, ...) {
std::stringstream ss;

View File

@ -165,12 +165,49 @@ protected:
ProgresIndicatorPtr global_progressind_;
};
#if 0
/**
* @brief Implementation of the printing logic.
*/
class PrintController: public AppControllerBoilerplate {
Print *print_ = nullptr;
std::function<void()> rempools_;
protected:
void make_skirt() {}
void make_brim() {}
void make_wipe_tower() {}
void make_perimeters(PrintObject *pobj) {}
void infill(PrintObject *pobj) {}
void gen_support_material(PrintObject *pobj) {}
// Data structure with the png export input data
struct PngExportData {
std::string zippath; // output zip file
unsigned long width_px = 1440; // resolution - rows
unsigned long height_px = 2560; // resolution columns
double width_mm = 68.0, height_mm = 120.0; // dimensions in mm
double exp_time_first_s = 35.0; // first exposure time
double exp_time_s = 8.0; // global exposure time
double corr_x = 1.0; // offsetting in x
double corr_y = 1.0; // offsetting in y
double corr_z = 1.0; // offsetting in y
};
// Should display a dialog with the input fields for printing to png
PngExportData query_png_export_data(const DynamicPrintConfig&);
// The previous export data, to pre-populate the dialog
PngExportData prev_expdata_;
/**
* @brief Slice one pront object.
* @param pobj The print object.
*/
void slice(PrintObject *pobj);
void slice(ProgresIndicatorPtr pri);
public:
// Must be public for perl to use it
@ -185,24 +222,18 @@ public:
return PrintController::Ptr( new PrintController(print) );
}
void slice() {}
void slice_to_png() {}
/**
* @brief Slice the loaded print scene.
*/
void slice();
/**
* @brief Slice the print into zipped png files.
*/
void slice_to_png();
const PrintConfig& config() const;
};
#else
class PrintController: public AppControllerBoilerplate {
public:
using Ptr = std::unique_ptr<PrintController>;
explicit inline PrintController(Print *print){}
inline static Ptr create(Print *print) {
return PrintController::Ptr( new PrintController(print) );
}
void slice() {}
void slice_to_png() {}
const PrintConfig& config() const { static PrintConfig cfg; return cfg; }
};
#endif
/**
* @brief Top level controller.

View File

@ -991,6 +991,12 @@ wxString from_u8(const std::string &str)
return wxString::FromUTF8(str.c_str());
}
std::string into_u8(const wxString &str)
{
auto buffer_utf8 = str.utf8_str();
return std::string(buffer_utf8.data());
}
void set_model_events_from_perl(Model &model,
int event_object_selection_changed,
int event_object_settings_changed,

View File

@ -217,6 +217,8 @@ int combochecklist_get_flags(wxComboCtrl* comboCtrl);
wxString L_str(const std::string &str);
// Return wxString from std::string in UTF8
wxString from_u8(const std::string &str);
// Return std::string in UTF8 from wxString
std::string into_u8(const wxString &str);
void set_model_events_from_perl(Model &model,
int event_object_selection_changed,

View File

@ -63,6 +63,7 @@ REGISTER_CLASS(Preset, "GUI::Preset");
REGISTER_CLASS(PresetCollection, "GUI::PresetCollection");
REGISTER_CLASS(PresetBundle, "GUI::PresetBundle");
REGISTER_CLASS(TabIface, "GUI::Tab");
REGISTER_CLASS(PreviewIface, "GUI::Preview");
REGISTER_CLASS(ProgressStatusBar, "GUI::ProgressStatusBar");
REGISTER_CLASS(PresetUpdater, "PresetUpdater");
REGISTER_CLASS(AppController, "AppController");

View File

@ -0,0 +1,489 @@
#include "../../libslic3r/libslic3r.h"
#include "GUI_Preview.hpp"
#include "GUI.hpp"
#include "AppConfig.hpp"
#include "3DScene.hpp"
#include "../../libslic3r/GCode/PreviewData.hpp"
#include "PresetBundle.hpp"
#include <wx/notebook.h>
#include <wx/glcanvas.h>
#include <wx/sizer.h>
#include <wx/stattext.h>
#include <wx/choice.h>
#include <wx/combo.h>
#include <wx/checkbox.h>
// this include must follow the wxWidgets ones or it won't compile on Windows -> see http://trac.wxwidgets.org/ticket/2421
#include "../../libslic3r/Print.hpp"
namespace Slic3r {
namespace GUI {
Preview::Preview(wxNotebook* notebook, DynamicPrintConfig* config, Print* print, GCodePreviewData* gcode_preview_data)
: m_canvas(nullptr)
, m_double_slider_sizer(nullptr)
, m_label_view_type(nullptr)
, m_choice_view_type(nullptr)
, m_label_show_features(nullptr)
, m_combochecklist_features(nullptr)
, m_checkbox_travel(nullptr)
, m_checkbox_retractions(nullptr)
, m_checkbox_unretractions(nullptr)
, m_checkbox_shells(nullptr)
, m_config(config)
, m_print(print)
, m_gcode_preview_data(gcode_preview_data)
, m_number_extruders(1)
, m_preferred_color_mode("feature")
, m_loaded(false)
, m_enabled(false)
, m_force_sliders_full_range(false)
{
if (init(notebook, config, print, gcode_preview_data))
{
notebook->AddPage(this, _(L("Preview")));
show_hide_ui_elements("none");
load_print();
}
}
bool Preview::init(wxNotebook* notebook, DynamicPrintConfig* config, Print* print, GCodePreviewData* gcode_preview_data)
{
if ((notebook == nullptr) || (config == nullptr) || (print == nullptr) || (gcode_preview_data == nullptr))
return false;
// creates this panel add append it to the given notebook as a new page
if (!Create(notebook, wxID_ANY, wxDefaultPosition, wxDefaultSize))
return false;
int attribList[] = { WX_GL_RGBA, WX_GL_DOUBLEBUFFER, WX_GL_DEPTH_SIZE, 24, WX_GL_SAMPLE_BUFFERS, GL_TRUE, WX_GL_SAMPLES, 4, 0 };
int wxVersion = wxMAJOR_VERSION * 10000 + wxMINOR_VERSION * 100 + wxRELEASE_NUMBER;
const AppConfig* app_config = GUI::get_app_config();
bool enable_multisample = (app_config != nullptr) && (app_config->get("use_legacy_opengl") != "1") && (wxVersion >= 30003);
// if multisample is not enabled or supported by the graphic card, remove it from the attributes list
bool can_multisample = enable_multisample && wxGLCanvas::IsExtensionSupported("WGL_ARB_multisample");
// bool can_multisample = enable_multisample && wxGLCanvas::IsDisplaySupported(attribList); // <<< Alternative method: but IsDisplaySupported() seems not to work
if (!can_multisample)
attribList[4] = 0;
m_canvas = new wxGLCanvas(this, wxID_ANY, attribList);
if (m_canvas == nullptr)
return false;
_3DScene::add_canvas(m_canvas);
_3DScene::allow_multisample(m_canvas, can_multisample);
_3DScene::enable_shader(m_canvas, true);
_3DScene::set_config(m_canvas, m_config);
_3DScene::set_print(m_canvas, m_print);
_3DScene::enable_legend_texture(m_canvas, true);
_3DScene::enable_dynamic_background(m_canvas, true);
m_double_slider_sizer = new wxBoxSizer(wxHORIZONTAL);
create_double_slider(this, m_double_slider_sizer, m_canvas);
m_label_view_type = new wxStaticText(this, wxID_ANY, _(L("View")));
m_choice_view_type = new wxChoice(this, wxID_ANY);
m_choice_view_type->Append(_(L("Feature type")));
m_choice_view_type->Append(_(L("Height")));
m_choice_view_type->Append(_(L("Width")));
m_choice_view_type->Append(_(L("Speed")));
m_choice_view_type->Append(_(L("Volumetric flow rate")));
m_choice_view_type->Append(_(L("Tool")));
m_choice_view_type->SetSelection(0);
m_label_show_features = new wxStaticText(this, wxID_ANY, _(L("Show")));
m_combochecklist_features = new wxComboCtrl();
m_combochecklist_features->Create(this, wxID_ANY, _(L("Feature types")), wxDefaultPosition, wxSize(200, -1), wxCB_READONLY);
std::string feature_text = GUI::into_u8(_(L("Feature types")));
std::string feature_items = GUI::into_u8(
_(L("Perimeter")) + "|" +
_(L("External perimeter")) + "|" +
_(L("Overhang perimeter")) + "|" +
_(L("Internal infill")) + "|" +
_(L("Solid infill")) + "|" +
_(L("Top solid infill")) + "|" +
_(L("Bridge infill")) + "|" +
_(L("Gap fill")) + "|" +
_(L("Skirt")) + "|" +
_(L("Support material")) + "|" +
_(L("Support material interface")) + "|" +
_(L("Wipe tower")) + "|" +
_(L("Custom"))
);
Slic3r::GUI::create_combochecklist(m_combochecklist_features, feature_text, feature_items, true);
m_checkbox_travel = new wxCheckBox(this, wxID_ANY, _(L("Travel")));
m_checkbox_retractions = new wxCheckBox(this, wxID_ANY, _(L("Retractions")));
m_checkbox_unretractions = new wxCheckBox(this, wxID_ANY, _(L("Unretractions")));
m_checkbox_shells = new wxCheckBox(this, wxID_ANY, _(L("Shells")));
wxBoxSizer* top_sizer = new wxBoxSizer(wxHORIZONTAL);
top_sizer->Add(m_canvas, 1, wxALL | wxEXPAND, 0);
top_sizer->Add(m_double_slider_sizer, 0, wxEXPAND, 0);
wxBoxSizer* bottom_sizer = new wxBoxSizer(wxHORIZONTAL);
bottom_sizer->Add(m_label_view_type, 0, wxALIGN_CENTER_VERTICAL, 5);
bottom_sizer->Add(m_choice_view_type, 0, wxEXPAND | wxALL | wxALIGN_CENTER_VERTICAL, 5);
bottom_sizer->AddSpacer(10);
bottom_sizer->Add(m_label_show_features, 0, wxALIGN_CENTER_VERTICAL, 5);
bottom_sizer->Add(m_combochecklist_features, 0, wxEXPAND | wxALL | wxALIGN_CENTER_VERTICAL, 5);
bottom_sizer->AddSpacer(20);
bottom_sizer->Add(m_checkbox_travel, 0, wxEXPAND | wxALL | wxALIGN_CENTER_VERTICAL, 5);
bottom_sizer->AddSpacer(10);
bottom_sizer->Add(m_checkbox_retractions, 0, wxEXPAND | wxALL | wxALIGN_CENTER_VERTICAL, 5);
bottom_sizer->AddSpacer(10);
bottom_sizer->Add(m_checkbox_unretractions, 0, wxEXPAND | wxALL | wxALIGN_CENTER_VERTICAL, 5);
bottom_sizer->AddSpacer(10);
bottom_sizer->Add(m_checkbox_shells, 0, wxEXPAND | wxALL | wxALIGN_CENTER_VERTICAL, 5);
wxBoxSizer* main_sizer = new wxBoxSizer(wxVERTICAL);
main_sizer->Add(top_sizer, 1, wxALL | wxEXPAND, 0);
main_sizer->Add(bottom_sizer, 0, wxALL | wxEXPAND, 0);
SetSizer(main_sizer);
SetMinSize(GetSize());
GetSizer()->SetSizeHints(this);
bind_event_handlers();
// sets colors for gcode preview extrusion roles
std::vector<std::string> extrusion_roles_colors = {
"FFFF66", // Perimeter
"FFA500", // External perimeter
"0000FF", // Overhang perimeter
"B1302A", // Internal infill
"D732D7", // Solid infill
"FF1A1A", // Top solid infill
"9999FF", // Bridge infill
"FFFFFF", // Gap fill
"845321", // Skirt
"00FF00", // Support material
"008000", // Support material interface
"B3E3AB", // Wipe tower
"28CC94" // Custom
};
m_gcode_preview_data->set_extrusion_paths_colors(extrusion_roles_colors);
return true;
}
Preview::~Preview()
{
unbind_event_handlers();
if (m_canvas != nullptr)
{
_3DScene::remove_canvas(m_canvas);
delete m_canvas;
}
}
void Preview::register_on_viewport_changed_callback(void* callback)
{
if ((m_canvas != nullptr) && (callback != nullptr))
_3DScene::register_on_viewport_changed_callback(m_canvas, callback);
}
void Preview::set_number_extruders(unsigned int number_extruders)
{
if (m_number_extruders != number_extruders)
{
m_number_extruders = number_extruders;
int type = 0; // color by a feature type
if (number_extruders > 1)
{
int tool_idx = m_choice_view_type->FindString(_(L("Tool")));
int type = (number_extruders > 1) ? tool_idx /* color by a tool number */ : 0; // color by a feature type
m_choice_view_type->SetSelection(type);
if ((0 <= type) && (type < (int)GCodePreviewData::Extrusion::Num_View_Types))
m_gcode_preview_data->extrusion.view_type = (GCodePreviewData::Extrusion::EViewType)type;
m_preferred_color_mode = (type == tool_idx) ? "tool_or_feature" : "feature";
}
}
}
void Preview::reset_gcode_preview_data()
{
m_gcode_preview_data->reset();
_3DScene::reset_legend_texture();
}
void Preview::set_canvas_as_dirty()
{
if (m_canvas != nullptr)
_3DScene::set_as_dirty(m_canvas);
}
void Preview::set_enabled(bool enabled)
{
m_enabled = enabled;
}
void Preview::set_bed_shape(const Pointfs& shape)
{
if (m_canvas != nullptr)
_3DScene::set_bed_shape(m_canvas, shape);
}
void Preview::select_view(const std::string& direction)
{
if (m_canvas != nullptr)
_3DScene::select_view(m_canvas, direction);
}
void Preview::set_viewport_from_scene(wxGLCanvas* canvas)
{
if ((m_canvas != nullptr) && (canvas != nullptr))
_3DScene::set_viewport_from_scene(m_canvas, canvas);
}
void Preview::set_viewport_into_scene(wxGLCanvas* canvas)
{
if ((m_canvas != nullptr) && (canvas != nullptr))
_3DScene::set_viewport_from_scene(canvas, m_canvas);
}
void Preview::set_drop_target(wxDropTarget* target)
{
if (target != nullptr)
SetDropTarget(target);
}
void Preview::load_print()
{
if (m_loaded)
return;
// we require that there's at least one object and the posSlice step
// is performed on all of them(this ensures that _shifted_copies was
// populated and we know the number of layers)
unsigned int n_layers = 0;
if (m_print->is_step_done(posSlice))
{
std::set<float> zs;
for (const PrintObject* print_object : m_print->objects())
{
const LayerPtrs& layers = print_object->layers();
const SupportLayerPtrs& support_layers = print_object->support_layers();
for (const Layer* layer : layers)
{
zs.insert(layer->print_z);
}
for (const SupportLayer* layer : support_layers)
{
zs.insert(layer->print_z);
}
}
n_layers = (unsigned int)zs.size();
}
if (n_layers == 0)
{
reset_sliders();
_3DScene::reset_legend_texture();
if (m_canvas)
m_canvas->Refresh();
return;
}
if (m_preferred_color_mode == "tool_or_feature")
{
// It is left to Slic3r to decide whether the print shall be colored by the tool or by the feature.
// Color by feature if it is a single extruder print.
unsigned int number_extruders = (unsigned int)m_print->extruders().size();
int tool_idx = m_choice_view_type->FindString(_(L("Tool")));
int type = (number_extruders > 1) ? tool_idx /* color by a tool number */ : 0; // color by a feature type
m_choice_view_type->SetSelection(type);
if ((0 <= type) && (type < (int)GCodePreviewData::Extrusion::Num_View_Types))
m_gcode_preview_data->extrusion.view_type = (GCodePreviewData::Extrusion::EViewType)type;
// If the->SetSelection changed the following line, revert it to "decide yourself".
m_preferred_color_mode = "tool_or_feature";
}
// Collect colors per extruder.
std::vector<std::string> colors;
if (!m_gcode_preview_data->empty() || (m_gcode_preview_data->extrusion.view_type == GCodePreviewData::Extrusion::Tool))
{
const ConfigOptionStrings* extruders_opt = dynamic_cast<const ConfigOptionStrings*>(m_config->option("extruder_colour"));
const ConfigOptionStrings* filamemts_opt = dynamic_cast<const ConfigOptionStrings*>(m_config->option("filament_colour"));
unsigned int colors_count = std::max((unsigned int)extruders_opt->values.size(), (unsigned int)filamemts_opt->values.size());
unsigned char rgb[3];
for (unsigned int i = 0; i < colors_count; ++i)
{
std::string color = m_config->opt_string("extruder_colour", i);
if (!PresetBundle::parse_color(color, rgb))
{
color = m_config->opt_string("filament_colour", i);
if (!PresetBundle::parse_color(color, rgb))
color = "#FFFFFF";
}
colors.push_back(color);
}
}
if (IsShown() && (m_canvas != nullptr))
{
// used to set the sliders to the extremes of the current zs range
m_force_sliders_full_range = false;
if (m_gcode_preview_data->empty())
{
// load skirt and brim
_3DScene::load_preview(m_canvas, colors);
show_hide_ui_elements("simple");
}
else
{
m_force_sliders_full_range = (_3DScene::get_volumes_count(m_canvas) == 0);
_3DScene::load_gcode_preview(m_canvas, m_gcode_preview_data, colors);
show_hide_ui_elements("full");
// recalculates zs and update sliders accordingly
n_layers = (unsigned int)_3DScene::get_current_print_zs(m_canvas, true).size();
if (n_layers == 0)
{
// all layers filtered out
reset_sliders();
m_canvas->Refresh();
}
}
if (n_layers > 0)
update_sliders();
m_loaded = true;
}
}
void Preview::reload_print(bool force)
{
_3DScene::reset_volumes(m_canvas);
m_loaded = false;
if (!IsShown() && !force)
return;
load_print();
}
void Preview::refresh_print()
{
m_loaded = false;
if (!IsShown())
return;
load_print();
}
void Preview::bind_event_handlers()
{
this->Bind(wxEVT_SIZE, &Preview::on_size, this);
m_choice_view_type->Bind(wxEVT_CHOICE, &Preview::on_choice_view_type, this);
m_combochecklist_features->Bind(wxEVT_CHECKLISTBOX, &Preview::on_combochecklist_features, this);
m_checkbox_travel->Bind(wxEVT_CHECKBOX, &Preview::on_checkbox_travel, this);
m_checkbox_retractions->Bind(wxEVT_CHECKBOX, &Preview::on_checkbox_retractions, this);
m_checkbox_unretractions->Bind(wxEVT_CHECKBOX, &Preview::on_checkbox_unretractions, this);
m_checkbox_shells->Bind(wxEVT_CHECKBOX, &Preview::on_checkbox_shells, this);
}
void Preview::unbind_event_handlers()
{
this->Unbind(wxEVT_SIZE, &Preview::on_size, this);
m_choice_view_type->Unbind(wxEVT_CHOICE, &Preview::on_choice_view_type, this);
m_combochecklist_features->Unbind(wxEVT_CHECKLISTBOX, &Preview::on_combochecklist_features, this);
m_checkbox_travel->Unbind(wxEVT_CHECKBOX, &Preview::on_checkbox_travel, this);
m_checkbox_retractions->Unbind(wxEVT_CHECKBOX, &Preview::on_checkbox_retractions, this);
m_checkbox_unretractions->Unbind(wxEVT_CHECKBOX, &Preview::on_checkbox_unretractions, this);
m_checkbox_shells->Unbind(wxEVT_CHECKBOX, &Preview::on_checkbox_shells, this);
}
void Preview::show_hide_ui_elements(const std::string& what)
{
bool enable = (what == "full");
m_label_show_features->Enable(enable);
m_combochecklist_features->Enable(enable);
m_checkbox_travel->Enable(enable);
m_checkbox_retractions->Enable(enable);
m_checkbox_unretractions->Enable(enable);
m_checkbox_shells->Enable(enable);
enable = (what != "none");
m_label_view_type->Enable(enable);
m_choice_view_type->Enable(enable);
}
void Preview::reset_sliders()
{
m_enabled = false;
reset_double_slider();
m_double_slider_sizer->Hide((size_t)0);
}
void Preview::update_sliders()
{
m_enabled = true;
update_double_slider(m_force_sliders_full_range);
m_double_slider_sizer->Show((size_t)0);
Layout();
}
void Preview::on_size(wxSizeEvent& evt)
{
evt.Skip();
Refresh();
}
void Preview::on_choice_view_type(wxCommandEvent& evt)
{
m_preferred_color_mode = (m_choice_view_type->GetStringSelection() == L("Tool")) ? "tool" : "feature";
int selection = m_choice_view_type->GetCurrentSelection();
if ((0 <= selection) && (selection < (int)GCodePreviewData::Extrusion::Num_View_Types))
m_gcode_preview_data->extrusion.view_type = (GCodePreviewData::Extrusion::EViewType)selection;
reload_print();
}
void Preview::on_combochecklist_features(wxCommandEvent& evt)
{
int flags = Slic3r::GUI::combochecklist_get_flags(m_combochecklist_features);
m_gcode_preview_data->extrusion.role_flags = (unsigned int)flags;
refresh_print();
}
void Preview::on_checkbox_travel(wxCommandEvent& evt)
{
m_gcode_preview_data->travel.is_visible = m_checkbox_travel->IsChecked();
refresh_print();
}
void Preview::on_checkbox_retractions(wxCommandEvent& evt)
{
m_gcode_preview_data->retraction.is_visible = m_checkbox_retractions->IsChecked();
refresh_print();
}
void Preview::on_checkbox_unretractions(wxCommandEvent& evt)
{
m_gcode_preview_data->unretraction.is_visible = m_checkbox_unretractions->IsChecked();
refresh_print();
}
void Preview::on_checkbox_shells(wxCommandEvent& evt)
{
m_gcode_preview_data->shell.is_visible = m_checkbox_shells->IsChecked();
refresh_print();
}
} // namespace GUI
} // namespace Slic3r

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@ -0,0 +1,91 @@
#ifndef slic3r_GUI_Preview_hpp_
#define slic3r_GUI_Preview_hpp_
#include <wx/panel.h>
#include "../../libslic3r/Point.hpp"
#include <string>
class wxNotebook;
class wxGLCanvas;
class wxBoxSizer;
class wxStaticText;
class wxChoice;
class wxComboCtrl;
class wxCheckBox;
namespace Slic3r {
class DynamicPrintConfig;
class Print;
class GCodePreviewData;
namespace GUI {
class Preview : public wxPanel
{
wxGLCanvas* m_canvas;
wxBoxSizer* m_double_slider_sizer;
wxStaticText* m_label_view_type;
wxChoice* m_choice_view_type;
wxStaticText* m_label_show_features;
wxComboCtrl* m_combochecklist_features;
wxCheckBox* m_checkbox_travel;
wxCheckBox* m_checkbox_retractions;
wxCheckBox* m_checkbox_unretractions;
wxCheckBox* m_checkbox_shells;
DynamicPrintConfig* m_config;
Print* m_print;
GCodePreviewData* m_gcode_preview_data;
unsigned int m_number_extruders;
std::string m_preferred_color_mode;
bool m_loaded;
bool m_enabled;
bool m_force_sliders_full_range;
public:
Preview(wxNotebook* notebook, DynamicPrintConfig* config, Print* print, GCodePreviewData* gcode_preview_data);
virtual ~Preview();
void register_on_viewport_changed_callback(void* callback);
void set_number_extruders(unsigned int number_extruders);
void reset_gcode_preview_data();
void set_canvas_as_dirty();
void set_enabled(bool enabled);
void set_bed_shape(const Pointfs& shape);
void select_view(const std::string& direction);
void set_viewport_from_scene(wxGLCanvas* canvas);
void set_viewport_into_scene(wxGLCanvas* canvas);
void set_drop_target(wxDropTarget* target);
void load_print();
void reload_print(bool force = false);
void refresh_print();
private:
bool init(wxNotebook* notebook, DynamicPrintConfig* config, Print* print, GCodePreviewData* gcode_preview_data);
void bind_event_handlers();
void unbind_event_handlers();
void show_hide_ui_elements(const std::string& what);
void reset_sliders();
void update_sliders();
void on_size(wxSizeEvent& evt);
void on_choice_view_type(wxCommandEvent& evt);
void on_combochecklist_features(wxCommandEvent& evt);
void on_checkbox_travel(wxCommandEvent& evt);
void on_checkbox_retractions(wxCommandEvent& evt);
void on_checkbox_unretractions(wxCommandEvent& evt);
void on_checkbox_shells(wxCommandEvent& evt);
};
} // namespace GUI
} // namespace Slic3r
#endif // slic3r_GUI_Preview_hpp_

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@ -0,0 +1,62 @@
#include "../../libslic3r/libslic3r.h"
#include "GUI_PreviewIface.hpp"
#include "GUI_Preview.hpp"
namespace Slic3r {
void PreviewIface::register_on_viewport_changed_callback(void* callback)
{
m_preview->register_on_viewport_changed_callback(callback);
}
void PreviewIface::set_number_extruders(unsigned int number_extruders)
{
m_preview->set_number_extruders(number_extruders);
}
void PreviewIface::reset_gcode_preview_data()
{
m_preview->reset_gcode_preview_data();
}
void PreviewIface::reload_print(bool force)
{
m_preview->reload_print(force);
}
void PreviewIface::set_canvas_as_dirty()
{
m_preview->set_canvas_as_dirty();
}
void PreviewIface::set_enabled(bool enabled)
{
m_preview->set_enabled(enabled);
}
void PreviewIface::set_bed_shape(const Pointfs& shape)
{
m_preview->set_bed_shape(shape);
}
void PreviewIface::select_view(const std::string& direction)
{
m_preview->select_view(direction);
}
void PreviewIface::set_viewport_from_scene(wxGLCanvas* canvas)
{
m_preview->set_viewport_from_scene(canvas);
}
void PreviewIface::set_viewport_into_scene(wxGLCanvas* canvas)
{
m_preview->set_viewport_into_scene(canvas);
}
void PreviewIface::set_drop_target(wxDropTarget* target)
{
m_preview->set_drop_target(target);
}
} // namespace Slic3r

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@ -0,0 +1,37 @@
#ifndef slic3r_GUI_PreviewIface_hpp_
#define slic3r_GUI_PreviewIface_hpp_
#include "../../libslic3r/Point.hpp"
class wxGLCanvas;
class wxDropTarget;
namespace Slic3r {
namespace GUI {
class Preview;
} // namespace GUI
class PreviewIface
{
GUI::Preview* m_preview;
public:
explicit PreviewIface(GUI::Preview* preview) : m_preview(preview) {}
void register_on_viewport_changed_callback(void* callback);
void set_number_extruders(unsigned int number_extruders);
void reset_gcode_preview_data();
void reload_print(bool force = false);
void set_canvas_as_dirty();
void set_enabled(bool enabled);
void set_bed_shape(const Pointfs& shape);
void select_view(const std::string& direction);
void set_viewport_from_scene(wxGLCanvas* canvas);
void set_viewport_into_scene(wxGLCanvas* canvas);
void set_drop_target(wxDropTarget* target);
};
} // namespace Slic3r
#endif // slic3r_GUI_PreviewIface_hpp_

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@ -59,6 +59,9 @@ void show_error_id(int id, std::string msg)
TabIface* get_preset_tab(char *name)
%code%{ RETVAL=Slic3r::GUI::get_preset_tab_iface(name); %};
PreviewIface* create_preview_iface(SV *ui, DynamicPrintConfig* config, Print* print, GCodePreviewData* gcode_preview_data)
%code%{ RETVAL=Slic3r::GUI::create_preview_iface((wxNotebook*)wxPli_sv_2_object(aTHX_ ui, "Wx::Notebook"), config, print, gcode_preview_data); %};
bool load_language()
%code%{ RETVAL=Slic3r::GUI::load_language(); %};

28
xs/xsp/GUI_Preview.xsp Normal file
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@ -0,0 +1,28 @@
%module{Slic3r::XS};
%{
#include <xsinit.h>
#include "slic3r/GUI/GUI_PreviewIface.hpp"
%}
%name{Slic3r::GUI::Preview} class PreviewIface {
void register_on_viewport_changed_callback(SV* callback)
%code%{ THIS->register_on_viewport_changed_callback((void*)callback); %};
void set_number_extruders(unsigned int number_extruders);
void reset_gcode_preview_data();
void reload_print(bool force = false);
void set_canvas_as_dirty();
void set_enabled(bool enabled);
void set_bed_shape(Pointfs shape);
void select_view(std::string direction);
void set_viewport_from_scene(SV *ui)
%code%{ THIS->set_viewport_from_scene((wxGLCanvas*)wxPli_sv_2_object(aTHX_ ui, "Wx::GLCanvas")); %};
void set_viewport_into_scene(SV *ui)
%code%{ THIS->set_viewport_into_scene((wxGLCanvas*)wxPli_sv_2_object(aTHX_ ui, "Wx::GLCanvas")); %};
void SetDropTarget(SV *ui)
%code%{ THIS->set_drop_target((wxDropTarget*)wxPli_sv_2_object(aTHX_ ui, "Wx::DropTarget")); %};
};

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@ -235,10 +235,12 @@ PresetCollection* O_OBJECT_SLIC3R
Ref<PresetCollection> O_OBJECT_SLIC3R_T
PresetBundle* O_OBJECT_SLIC3R
Ref<PresetBundle> O_OBJECT_SLIC3R_T
TabIface* O_OBJECT_SLIC3R
Ref<TabIface> O_OBJECT_SLIC3R_T
ProgressStatusBar* O_OBJECT_SLIC3R
Ref<ProgressStatusBar> O_OBJECT_SLIC3R_T
TabIface* O_OBJECT_SLIC3R
Ref<TabIface> O_OBJECT_SLIC3R_T
PreviewIface* O_OBJECT_SLIC3R
Ref<PreviewIface> O_OBJECT_SLIC3R_T
ProgressStatusBar* O_OBJECT_SLIC3R
Ref<ProgressStatusBar> O_OBJECT_SLIC3R_T
PresetUpdater* O_OBJECT_SLIC3R
Ref<PresetUpdater> O_OBJECT_SLIC3R_T

View File

@ -215,6 +215,7 @@
%typemap{PresetHints*};
%typemap{Ref<PresetHints>}{simple};
%typemap{TabIface*};
%typemap{PreviewIface*};
%typemap{ProgressStatusBar*};
%typemap{PrintRegionPtrs*};