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Author SHA1 Message Date
SoftFever 12b6d6b9ba Merge branch 'main' into hanif/preview-drag-detail 2026-09-29 16:14:34 +08:00
Hanif Koh c6d89d6978 Hide Infill in the Shell Drag Mode Only Where the Profile Covers It
A profile with no top or bottom shell layers, or no walls, leaves the infill on the surface,
so hiding it changed the picture. The viewer now reads the print's default region settings
when it loads a print and leaves the infill in place for such a print; per-object overrides
are not consulted.
2026-09-28 17:10:54 +08:00
Hanif Koh abecef53b0 Keep Only the Solid Model and Shell Modes While Dragging
The skip-layers and outer-walls modes drew one layer in every N, and every visual
complaint on the review came from the gaps that leaves at close range. The shell mode
draws every layer and looks the same from outside, and the solid model is the one mode
whose cost does not depend on the toolpaths, so the two of them cover what the stride
modes were for. The layer stride goes with them; a saved preference naming a removed
mode falls back to off.
2026-09-28 17:10:54 +08:00
Hanif Koh 44d5a22a32 Add a Shell-Only Drag Mode That Keeps What Can Be Seen From Outside
A third mode of the drag preference: the reduced set keeps every role but the sparse
infill, internal solid infill, internal bridge infill and gap fill, which lie under the
skins or between the walls, on every layer. Walls, top and bottom surfaces, bridges,
supports and the prime tower are drawn whole, so from outside the print looks as it does
at rest, and the two end layers of the visible range stay whole as in every mode.

The roles come from the slicer, so the classification is exact wherever the slicer's is.
What a role cannot tell apart is the inside of the prime tower or of a support from its
outside; both are kept whole. A profile with no top or bottom shell layers exposes infill,
which this mode hides.
2026-09-28 17:10:54 +08:00
Hanif Koh dec146f1e6 Let the User Choose What the Preview Draws While Dragging
The solid model is one answer to a preview that cannot keep up with a drag; a
reviewer asked for the two that keep the drag view made of toolpaths. The
checkbox is now a combobox, "Simplify preview while dragging", with Off, Solid
model, Skip layers and Outer walls, and a spin, "Draw one layer in every N",
for the toolpath modes. Off is the default, and with it nothing is built.

Skip layers keeps one layer in every N. Outer walls keeps the outer and overhang
perimeters of those layers, so the prime tower and supports, whose segments have
other roles, drop out of it. Both keep the bottom and top layers of the visible
range whole, as the solid model does, so the faces the range cuts open stay what
was printed there.

libvgcode takes the choice as EReducedDetailMode and a stride; the sets are
rebuilt when either changes, and drawing from the reduced one is still a buffer
binding. A mode change reaches the loaded preview at once, as the checkbox did.
2026-09-28 16:20:11 +08:00
Hanif Koh a9fec0ffc4 Release the Reduced Set When Unused and Share the Drag Check With the Scene Cache
The reduced index buffers were only re-uploaded while the preference was on, so
the last set stayed allocated until the next load once it was switched off, and
their size was missing from get_used_gpu_memory(). They are now uploaded on every
rebuild, empty when nothing was built, and counted.

The scene cache and the solid model both asked whether the user was dragging,
with different lists: the cache knew about gizmos and the rectangle selection,
the solid model about the navigator and the sliders. One is_user_interacting()
now answers both.

The tooltip says that negative volumes are not cut out of the solid model, since
load_shells() drops every non-model-part volume, and the preferences handler
keeps the dimming comment with the branch it documents.
2026-09-28 16:20:11 +08:00
Hanif Koh 9ab6bbebf0 Offer the Sliced Objects as a Solid Model While Dragging
The G-code preview draws every toolpath segment as an instanced box, and its frame cost is
linear in the number of segments drawn. On a plate of large objects that is enough that
dragging the camera or a preview slider cannot keep up, and no amount of per-segment work
changes that; only drawing fewer segments does.

The objects themselves are cheaper: a mesh costs its triangles once, however many layers it
has, and the preview already loads the objects as shells for its translucent ghost. A new
preference, "Only render solid model when dragging" (off by default), draws those shells
opaque in their filament colours instead of the toolpaths while the user drags.

The visible layer range still holds. The shells are cut at the range's top and bottom through
the gouraud shader's z range, and libvgcode keeps a second index buffer holding just the
range's bottom and top layers, filled in the same walk as the full one, which is drawn
afterwards so that it caps the cut with what was really printed there. Switching between the
two sets is a buffer binding, never a rebuild. The prime tower is added to the shells from its
sliced mesh while the preference is on, positioned as the print placed it; it keeps its opaque
colour and so stays out of the translucent ghost. Supports have no mesh and are not shown.

Dragging is the camera, the navigator or either slider being held; a slider reports it from
ImGui's active id, since its dirty flag is raised and consumed inside one frame. A wheel step
holds the solid model for a 150 ms settle time, with the frame that restores the toolpaths
scheduled for when it runs out. The switch is decided at the top of the frame, before the
cached scene is consulted, and a frame that switches redraws the scene. A drag cut short by
focus or capture loss is ended explicitly, and a button release wakes the idle loop, since on
some platforms no idle event follows it until the next input.

With the preference off, nothing is built and the preview is unchanged.
2026-09-28 16:20:11 +08:00
106 changed files with 993 additions and 1576 deletions
@@ -189,7 +189,8 @@ the presets to a base is in [shared-bases.md](shared-bases.md#variant-arrays-on-
2. Every key in `filament_options_with_variant` ([the full list](#the-four-key-sets)) that reaches the 2. Every key in `filament_options_with_variant` ([the full list](#the-four-key-sets)) that reaches the
preset, whether written, included or inherited, is resized to its variant count: write it at exactly preset, whether written, included or inherited, is resized to its variant count: write it at exactly
that width, or leave it out. Keys outside the set that width, or leave it out. Keys outside the set
(`filament_type`, plate temperatures, `fan_max_speed`, `slow_down_min_speed`, …) are never addressed by variant index; the preset contributes their first value however wide a (`filament_type`, plate temperatures, `fan_max_speed`, `slow_down_min_speed`, `pressure_advance`,
…) are never addressed by variant index; the preset contributes their first value however wide a
file writes them. file writes them.
3. Cover every variant the material is meant to print on across its `compatible_printers`. Leave out 3. Cover every variant the material is meant to print on across its `compatible_printers`. Leave out
a variant deliberately when the material should not be tuned for it (e.g. a TPU High Flow variant a variant deliberately when the material should not be tuned for it (e.g. a TPU High Flow variant
@@ -454,7 +455,7 @@ no set: the variant-length resize leaves it alone, and only the pair rebuild of
last for contrast; it is not a variant set. last for contrast; it is not a variant set.
`check` and `fix-variant` read the four sets from `PrintConfig.cpp` on every run, so they follow the `check` and `fix-variant` read the four sets from `PrintConfig.cpp` on every run, so they follow the
engine. The lists below are from the 2026-09-29 checkout; regenerate them from the repository root engine. The lists below are from the 2026-09-25 checkout; regenerate them from the repository root
before relying on them (the recipe strips comments, since an initializer can carry a commented-out entry): before relying on them (the recipe strips comments, since an initializer can carry a commented-out entry):
```bash ```bash
@@ -477,7 +478,7 @@ EOF
**`print_options_with_variant`**, process, stride 1 (45): `bridge_acceleration`, `bridge_speed`, `default_acceleration`, `default_jerk`, `default_junction_deviation`, `enable_overhang_speed`, `gap_infill_speed`, `infill_jerk`, `initial_layer_acceleration`, `initial_layer_infill_speed`, `initial_layer_jerk`, `initial_layer_speed`, `initial_layer_travel_acceleration`, `initial_layer_travel_jerk`, `initial_layer_travel_speed`, `inner_wall_acceleration`, `inner_wall_jerk`, `inner_wall_speed`, `internal_bridge_speed`, `internal_solid_infill_acceleration`, `internal_solid_infill_speed`, `outer_wall_acceleration`, `outer_wall_jerk`, `outer_wall_speed`, `overhang_1_4_speed`, `overhang_2_4_speed`, `overhang_3_4_speed`, `overhang_4_4_speed`, `print_extruder_id`, `print_extruder_variant`, `slowdown_for_curled_perimeters`, `small_perimeter_speed`, `small_perimeter_threshold`, `sparse_infill_acceleration`, `sparse_infill_speed`, `support_interface_speed`, `support_speed`, `top_solid_infill_flow_ratio`, `top_surface_acceleration`, `top_surface_jerk`, `top_surface_speed`, `travel_acceleration`, `travel_jerk`, `travel_speed`, `travel_speed_z` **`print_options_with_variant`**, process, stride 1 (45): `bridge_acceleration`, `bridge_speed`, `default_acceleration`, `default_jerk`, `default_junction_deviation`, `enable_overhang_speed`, `gap_infill_speed`, `infill_jerk`, `initial_layer_acceleration`, `initial_layer_infill_speed`, `initial_layer_jerk`, `initial_layer_speed`, `initial_layer_travel_acceleration`, `initial_layer_travel_jerk`, `initial_layer_travel_speed`, `inner_wall_acceleration`, `inner_wall_jerk`, `inner_wall_speed`, `internal_bridge_speed`, `internal_solid_infill_acceleration`, `internal_solid_infill_speed`, `outer_wall_acceleration`, `outer_wall_jerk`, `outer_wall_speed`, `overhang_1_4_speed`, `overhang_2_4_speed`, `overhang_3_4_speed`, `overhang_4_4_speed`, `print_extruder_id`, `print_extruder_variant`, `slowdown_for_curled_perimeters`, `small_perimeter_speed`, `small_perimeter_threshold`, `sparse_infill_acceleration`, `sparse_infill_speed`, `support_interface_speed`, `support_speed`, `top_solid_infill_flow_ratio`, `top_surface_acceleration`, `top_surface_jerk`, `top_surface_speed`, `travel_acceleration`, `travel_jerk`, `travel_speed`, `travel_speed_z`
**`filament_options_with_variant`**, filament, stride 1 (54): `activate_air_filtration`, `activate_air_filtration_during_print`, `activate_air_filtration_on_completion`, `adaptive_pressure_advance`, `adaptive_pressure_advance_bridges`, `adaptive_pressure_advance_model`, `adaptive_pressure_advance_overhangs`, `complete_print_exhaust_fan_speed`, `during_print_exhaust_fan_speed`, `enable_pressure_advance`, `filament_adaptive_volumetric_speed`, `filament_cooling_before_tower`, `filament_deretraction_speed`, `filament_extruder_variant`, `filament_flow_ratio`, `filament_flush_temp`, `filament_flush_volumetric_speed`, `filament_ironing_flow`, `filament_ironing_inset`, `filament_ironing_spacing`, `filament_ironing_speed`, `filament_long_retractions_when_cut`, `filament_max_volumetric_speed`, `filament_pre_cooling_temperature`, `filament_pre_cooling_temperature_nc`, `filament_preheat_temperature_delta`, `filament_ramming_travel_time`, `filament_ramming_travel_time_nc`, `filament_ramming_volumetric_speed`, `filament_ramming_volumetric_speed_nc`, `filament_retract_after_wipe`, `filament_retract_before_wipe`, `filament_retract_length_nc`, `filament_retract_length_toolchange`, `filament_retract_lift_above`, `filament_retract_lift_below`, `filament_retract_lift_enforce`, `filament_retract_restart_extra`, `filament_retract_restart_extra_toolchange`, `filament_retract_when_changing_layer`, `filament_retraction_distances_when_cut`, `filament_retraction_length`, `filament_retraction_minimum_travel`, `filament_retraction_speed`, `filament_wipe`, `filament_wipe_distance`, `filament_z_hop`, `filament_z_hop_types`, `long_retractions_when_ec`, `nozzle_temperature`, `nozzle_temperature_initial_layer`, `pressure_advance`, `retraction_distances_when_ec`, `volumetric_speed_coefficients` **`filament_options_with_variant`**, filament, stride 1 (48): `activate_air_filtration`, `activate_air_filtration_during_print`, `activate_air_filtration_on_completion`, `complete_print_exhaust_fan_speed`, `during_print_exhaust_fan_speed`, `filament_adaptive_volumetric_speed`, `filament_cooling_before_tower`, `filament_deretraction_speed`, `filament_extruder_variant`, `filament_flow_ratio`, `filament_flush_temp`, `filament_flush_volumetric_speed`, `filament_ironing_flow`, `filament_ironing_inset`, `filament_ironing_spacing`, `filament_ironing_speed`, `filament_long_retractions_when_cut`, `filament_max_volumetric_speed`, `filament_pre_cooling_temperature`, `filament_pre_cooling_temperature_nc`, `filament_preheat_temperature_delta`, `filament_ramming_travel_time`, `filament_ramming_travel_time_nc`, `filament_ramming_volumetric_speed`, `filament_ramming_volumetric_speed_nc`, `filament_retract_after_wipe`, `filament_retract_before_wipe`, `filament_retract_length_nc`, `filament_retract_length_toolchange`, `filament_retract_lift_above`, `filament_retract_lift_below`, `filament_retract_lift_enforce`, `filament_retract_restart_extra`, `filament_retract_restart_extra_toolchange`, `filament_retract_when_changing_layer`, `filament_retraction_distances_when_cut`, `filament_retraction_length`, `filament_retraction_minimum_travel`, `filament_retraction_speed`, `filament_wipe`, `filament_wipe_distance`, `filament_z_hop`, `filament_z_hop_types`, `long_retractions_when_ec`, `nozzle_temperature`, `nozzle_temperature_initial_layer`, `retraction_distances_when_ec`, `volumetric_speed_coefficients`
**`printer_extruder_options`**, machine, one value per extruder, not a variant set (8): **`printer_extruder_options`**, machine, one value per extruder, not a variant set (8):
`default_nozzle_volume_type`, `extruder_max_nozzle_count`, `extruder_printable_area`, `default_nozzle_volume_type`, `extruder_max_nozzle_count`, `extruder_printable_area`,
@@ -244,10 +244,10 @@ preset for a 0.2 nozzle, explicitly revisit flow limits; do not infer a pressure
required direction of change, from diameter alone. required direction of change, from diameter alone.
On a printer with extruder variants, a filament tunes these per variant too: On a printer with extruder variants, a filament tunes these per variant too:
`filament_max_volumetric_speed`, `filament_flow_ratio`, `nozzle_temperature`, pressure advance and the `filament_max_volumetric_speed`, `filament_flow_ratio`, `nozzle_temperature` and the retraction
retraction overrides carry one value per variant of `filament_extruder_variant` (Standard, High Flow, …). The overrides carry one value per variant of `filament_extruder_variant` (Standard, High Flow, …). The
exact key set is [`filament_options_with_variant`](extruder-variants.md#the-four-key-sets); exact key set is [`filament_options_with_variant`](extruder-variants.md#the-four-key-sets);
`slow_down_min_speed` and `fan_max_speed` are not in it. Keep every such array at exactly that width, even where the `slow_down_min_speed` and `pressure_advance` are not in it. Keep every such array at exactly that width, even where the
setting does not differ per variant, and measure the High Flow variant rather than copying Standard setting does not differ per variant, and measure the High Flow variant rather than copying Standard
([extruder-variants.md](extruder-variants.md#filament)). ([extruder-variants.md](extruder-variants.md#filament)).
+80
View File
@@ -0,0 +1,80 @@
# G-code preview while dragging
The sliced preview draws every toolpath segment of the plate as an instanced box. On a large
plate that is tens of millions of segments, and the frame is GPU-bound: the cost is the number of
instances drawn, not anything the CPU does per frame. Dragging the camera over such a plate cannot
keep up. The `preview_reduced_detail_mode` preference (*Graphics > G-code Preview*, off by
default) lets the preview draw less while the user drags and put the full toolpaths back when they
let go.
| Preference | Values | Effect |
|---|---|---|
| `preview_reduced_detail_mode` | `off`, `solid`, `shell` | what is drawn while dragging |
libvgcode (`src/libvgcode`) builds and binds the reduced toolpath set, `GCodeViewer` maps the
preferences onto it and draws the solid model, and `GLCanvas3D` decides when the user is dragging.
The OpenGL ES path keeps a single set and ignores the preference.
## Two sets, one walk
`ViewerImpl::update_enabled_entities()` walks the visible vertex range once and fills two segment
index buffers side by side: the **full** set and the **reduced** set (segments and options).
Building them together is what makes switching free: starting or ending a drag is a buffer
binding, never a rebuild. A change of mode does rebuild. Nothing is built while the mode
is off, and the reduced buffers are then uploaded empty so that the last set does not stay
allocated.
Whatever the mode leaves out, the bottom and top layers of the visible range are kept whole: they
are the faces the range cuts open, and the top is what the user is looking at.
### Modes
- `EndLayersOnly` (`solid` in the preference) keeps only the two end layers. `GCodeViewer` then
draws the sliced objects and the prime tower as opaque solids, see below.
- `ShellOnly` (`shell`) keeps every role but the sparse infill, internal solid infill, internal
bridge infill and gap fill, which lie under the skins or between the walls. Walls, top and
bottom surfaces, bridges, supports and the prime tower are drawn whole, so from outside the
print looks as it does at rest. The roles come from
the slicer, so the classification is exact wherever the slicer's is; what it cannot express is
the inside of the prime tower and of a support, which share one role with their outside and are
kept whole. A profile with no top or bottom shell layers, or no walls, leaves the infill on the
surface, so `GCodeViewer` turns the hiding off for such a print when it loads it, from the
print's default region settings; per-object overrides are not consulted.
## The solid model
The preview already loads the sliced objects as shells for its translucent ghost.
`GCodeViewer::render_solid_model()` draws those shells opaque, in their filament colors, with the
`gouraud` shader, whose z range cuts them to the visible layer range. The two toolpath layers of
the reduced set are drawn afterwards and cap the cut with what was really printed there. The
shells hold only the objects, so while this mode is on the prime tower is added from its sliced
mesh, positioned as the print placed it. It is added or removed on its own when the mode changes,
without reloading the objects, keeps its opaque color so that it never appears among the
translucent shells, and stays out of their bounding box. Supports have no mesh and are not shown,
and `load_shells()` drops every non-model-part volume, so a negative volume is not cut out.
A plate whose shells are not loaded keeps drawing toolpaths, since the solid model would leave
only the end layers.
## Deciding that the user is dragging
`GLCanvas3D::_update_preview_interaction()` runs at the top of every preview frame, before the
canvas decides whether to reuse its cached scene, so that the switch lands in that frame. Dragging
is `GLCanvas3D::is_user_interacting()`, the same answer the scene cache reads: the camera, the
navigator, a gizmo, the rectangle selection or either slider being held. A slider reports this from
ImGui's active id rather than its dirty flag, which is raised and consumed inside one frame. A
wheel step has no duration, so it holds the reduced set for a 150 ms settle time instead, and the
frame that restores the toolpaths is scheduled for when that time runs out, since the render timer
only wakes the idle loop. A drag cut short by focus or capture loss is ended explicitly, and a
button release wakes the idle loop, because on some platforms nothing else would until the next
input.
## Reused scene frames
`GLCanvas3D` keeps its last scene pass for frames that only rebuild the overlay (`SceneCache`). Its
key covers the canvas size, the camera and hover state, not what the toolpath sets draw, so a frame
that reuses the scene must never be one on which the set is switched.
`_update_preview_interaction()` therefore reports whether the bound set changed, and a frame on
which it did redraws the scene. The canvas neither captures nor reuses the scene while the user
drags, so no reduced frame outlives a drag, and the frame that ends a wheel's settle time is
requested as a full frame.
+1 -1
View File
@@ -1,6 +1,6 @@
{ {
"name": "OrcaFilamentLibrary", "name": "OrcaFilamentLibrary",
"version": "02.04.00.16", "version": "02.04.00.15",
"force_update": "0", "force_update": "0",
"description": "Orca Filament Library", "description": "Orca Filament Library",
"filament_list": [ "filament_list": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"1" "1"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"0" "0"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"0" "0"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
@@ -111,7 +111,6 @@
"1" "1"
], ],
"enable_pressure_advance": [ "enable_pressure_advance": [
"0",
"0" "0"
], ],
"eng_plate_temp": [ "eng_plate_temp": [
@@ -317,7 +316,6 @@
"2" "2"
], ],
"pressure_advance": [ "pressure_advance": [
"0.02",
"0.02" "0.02"
], ],
"reduce_fan_stop_start_freq": [ "reduce_fan_stop_start_freq": [
+30 -129
View File
@@ -214,9 +214,9 @@ function ShowModelInfo( pModel )
SendWXDebugInfo("Model Name: "+sModelName); SendWXDebugInfo("Model Name: "+sModelName);
$('#ModelName').text(sModelName); $('#ModelName').html(sModelName);
$('#ModelName').attr('title',sModelName); $('#ModelName').attr('title',sModelName);
$('#ModelAuthorName').text(sModelAuthor); $('#ModelAuthorName').html(sModelAuthor);
switch(UploadType) switch(UploadType)
{ {
@@ -268,7 +268,7 @@ function ShowModelInfo( pModel )
break; break;
} }
$('#Model_Desc').empty().append( SanitizeDescHtml( html_decode(sModelDesc) ) ); $('#Model_Desc').html( html_decode(sModelDesc) );
let ModelPreviewList=pModel.preview_img; let ModelPreviewList=pModel.preview_img;
let TotalPreview=ModelPreviewList.length; let TotalPreview=ModelPreviewList.length;
@@ -281,15 +281,16 @@ function ShowModelInfo( pModel )
if(TotalPreview>0) if(TotalPreview>0)
{ {
$('#ModelPreviewList').empty(); let htmlPreview='';
for(let pn=0;pn<TotalPreview;pn++) for(let pn=0;pn<TotalPreview;pn++)
{ {
//let FTmpPath=decodeURIComponent(ModelPreviewList[pn]); //let FTmpPath=decodeURIComponent(ModelPreviewList[pn]);
let FTmpPath=ModelPreviewList[pn]['filepath']; let FTmpPath=ModelPreviewList[pn]['filepath'];
$('#ModelPreviewList').append( $('<div class="swiper-slide"></div>').append( $('<img class="Model_PrevImg" />').attr('src',FTmpPath) ) ); htmlPreview+='<div class="swiper-slide"><img class="Model_PrevImg" src="'+FTmpPath+'" /></div>';
} }
$('#ModelPreviewList').html(htmlPreview);
$('#Model_Preview_Image').viewer({ $('#Model_Preview_Image').viewer({
title: false, title: false,
fullsreen: false, fullsreen: false,
@@ -409,8 +410,7 @@ function ConstructFileHtml( ID, pItem )
{ {
let fTotal=pItem.length; let fTotal=pItem.length;
let pBoard=$('#'+ID+' .FileListBoard'); let strHtml='';
pBoard.empty();
for( let f=0;f<fTotal;f++ ) for( let f=0;f<fTotal;f++ )
{ {
let pOne=pItem[f]; let pOne=pItem[f];
@@ -443,139 +443,39 @@ function ConstructFileHtml( ID, pItem )
ImgPath='img/default.png'; ImgPath='img/default.png';
} }
//Add html. File names come from the 3MF, so build the nodes rather than concatenating markup. //Add html
let pIconImg=$('<img />').attr('src',ImgPath);
let pMenu=$('<div class="FileMenu"><img src="img/s.svg" /></div>');
if( strClass!='ImageIcon' ) if( strClass!='ImageIcon' )
{ {
pMenu.on('click', function(){ OnClickOpenFile(tPath); }); strHtml+='<div class="FileItem">'+
' <div class="'+strClass+'"><img src="'+ImgPath+'" /></div>'+
' <div class="FileText">'+
' <div class="FileName">'+tName+'</div>'+
' </div>'+
' <div class="FileMenu" onClick="OnClickOpenFile(\''+tPath+'\')"><img src="img/s.svg" /></div>'+
'</div>';
} }
else else
{ {
ImgID++; ImgID++;
let TmpImgID="AF"+ImgID; let TmpImgID="AF"+ImgID;
pIconImg.attr('id',TmpImgID); strHtml+='<div class="FileItem">'+
pMenu.on('click', function(){ OnClickOpenImage(TmpImgID); }); ' <div class="'+strClass+'"><img id="'+TmpImgID+'" src="'+ImgPath+'" /></div>'+
' <div class="FileText">'+
' <div class="FileName">'+tName+'</div>'+
' </div>'+
' <div class="FileMenu" onClick="OnClickOpenImage(\''+TmpImgID+'\')"><img src="img/s.svg" /></div>'+
'</div>';
} }
let pFileItem=$('<div class="FileItem"></div>');
pFileItem.append( $('<div></div>').addClass(strClass).append(pIconImg) );
pFileItem.append( $('<div class="FileText"></div>').append( $('<div class="FileName"></div>').text(tName).attr('title',tName) ) );
pFileItem.append( pMenu );
pBoard.append( pFileItem );
} }
$('#'+ID+' .FileListBoard').html(strHtml);
if( fTotal>0 ) if( fTotal>0 )
$('#'+ID).show(); $('#'+ID).show();
} }
// Descriptions are untrusted 3MF metadata that may carry rich-text HTML (e.g. from MakerWorld).
// Rebuild them from an inert parse, keeping only plain formatting tags and http(s) links and images.
var DescAllowedTags=['P','BR','B','STRONG','I','EM','U','S','STRIKE','DEL','INS','SUB','SUP','SMALL','MARK',
'Q','ABBR','KBD','WBR','H1','H2','H3','H4','H5','H6','UL','OL','LI','DL','DT','DD','BLOCKQUOTE','PRE','CODE',
'HR','SPAN','DIV','FIGURE','FIGCAPTION','TABLE','CAPTION','THEAD','TBODY','TFOOT','TR','TH','TD','A','IMG'];
// Plain attributes kept per tag; the numeric ones must be plain non-negative integers.
var DescAllowedAttrs={'IMG':['alt','title','width','height'],'TD':['colspan','rowspan'],'TH':['colspan','rowspan'],'OL':['start']};
var DescNumericAttrs=['width','height','colspan','rowspan','start'];
// Dropped together with their content; any other unknown tag is unwrapped to its children.
var DescDroppedTags=['SCRIPT','STYLE','TEMPLATE','NOSCRIPT','TEXTAREA','TITLE','IFRAME','FRAME','OBJECT','EMBED','SVG','MATH'];
function IsHttpUrl( strUrl )
{
// The scheme must be written as is, so nothing the URL parser would strip can precede or split it.
if( typeof strUrl!='string' || !/^https?:/i.test(strUrl) )
return false;
try
{
let sProtocol=new URL(strUrl).protocol;
return sProtocol=='http:' || sProtocol=='https:';
}
catch(e)
{
return false;
}
}
// Images load as soon as the page opens, so only https sources are kept: no plain-http requests to the local network.
function IsHttpsUrl( strUrl )
{
return IsHttpUrl(strUrl) && new URL(strUrl).protocol=='https:';
}
// Embedded YouTube players become a plain link to the video.
function GetYouTubeEmbedUrl( pNode )
{
let sSrc=pNode.getAttribute('src');
if( !IsHttpUrl(sSrc) )
return null;
let pUrl=new URL(sSrc);
return ( pUrl.origin=='https://www.youtube.com' && pUrl.pathname.indexOf('/embed/')==0 ) ? pUrl.href : null;
}
function CopyDescNodes( pSrc, pDst )
{
for( let pNode=pSrc.firstChild;pNode!=null;pNode=pNode.nextSibling )
{
if( pNode.nodeType==Node.TEXT_NODE )
{
pDst.appendChild( document.createTextNode(pNode.nodeValue) );
continue;
}
if( pNode.nodeType!=Node.ELEMENT_NODE )
continue;
let sTag=pNode.nodeName.toUpperCase();
if( sTag=='IFRAME' )
{
let sVideoUrl=GetYouTubeEmbedUrl(pNode);
if( sVideoUrl!=null )
{
let pLink=document.createElement('A');
pLink.setAttribute('href',sVideoUrl);
pLink.textContent=sVideoUrl;
pDst.appendChild(pLink);
}
continue;
}
if( $.inArray(sTag,DescDroppedTags)>=0 )
continue;
if( $.inArray(sTag,DescAllowedTags)<0 )
{
CopyDescNodes(pNode,pDst);
continue;
}
let pElem=document.createElement(sTag);
if( sTag=='A' && IsHttpUrl(pNode.getAttribute('href')) )
pElem.setAttribute('href',pNode.getAttribute('href'));
else if( sTag=='IMG' )
{
if( !IsHttpsUrl(pNode.getAttribute('src')) )
continue;
pElem.setAttribute('src',pNode.getAttribute('src'));
}
$.each( DescAllowedAttrs[sTag]||[], function(i,sAttr){
let sValue=pNode.getAttribute(sAttr);
if( sValue!=null && ( $.inArray(sAttr,DescNumericAttrs)<0 || /^\d+$/.test(sValue) ) )
pElem.setAttribute(sAttr,sValue);
});
CopyDescNodes(pNode,pElem);
pDst.appendChild(pElem);
}
}
function SanitizeDescHtml( strHtml )
{
let pFragment=document.createDocumentFragment();
// A DOMParser document is inert: it runs no scripts and loads no resources.
let pDoc=new DOMParser().parseFromString(strHtml,'text/html');
if( pDoc && pDoc.body )
CopyDescNodes(pDoc.body,pFragment);
return pFragment;
}
function ShowProfilelInfo( pProfile ) function ShowProfilelInfo( pProfile )
{ {
//==========Profile Info========== //==========Profile Info==========
@@ -583,10 +483,10 @@ function ShowProfilelInfo( pProfile )
let sProfileAuthor=decodeURIComponent(pProfile.author); let sProfileAuthor=decodeURIComponent(pProfile.author);
let sProfileDesc=decodeURIComponent(pProfile.description); let sProfileDesc=decodeURIComponent(pProfile.description);
$('#ProfileName').text(sProfileName); $('#ProfileName').html(sProfileName);
$('#ProfileAuthor').text(sProfileAuthor); $('#ProfileAuthor').html(sProfileAuthor);
$('#Profile_Desc').empty().append( SanitizeDescHtml( html_decode(sProfileDesc) ) ); $('#Profile_Desc').html( html_decode(sProfileDesc) );
let ProfilePreviewList=pProfile.preview_img; let ProfilePreviewList=pProfile.preview_img;
let TotalPreview=ProfilePreviewList.length; let TotalPreview=ProfilePreviewList.length;
@@ -599,14 +499,15 @@ function ShowProfilelInfo( pProfile )
if(TotalPreview>0) if(TotalPreview>0)
{ {
$('#ProfilePreviewList').empty(); let htmlPreview='';
for(let pn=0;pn<TotalPreview;pn++) for(let pn=0;pn<TotalPreview;pn++)
{ {
let FTmpPath=ProfilePreviewList[pn]['filepath']; let FTmpPath=ProfilePreviewList[pn]['filepath'];
$('#ProfilePreviewList').append( $('<div class="swiper-slide"></div>').append( $('<img class="Model_PrevImg" />').attr('src',FTmpPath) ) ); htmlPreview+='<div class="swiper-slide"><img class="Model_PrevImg" src="'+FTmpPath+'" /></div>';
} }
$('#ProfilePreviewList').html(htmlPreview);
$('#Profile_Preview_Image').viewer({ $('#Profile_Preview_Image').viewer({
title: false, title: false,
fullsreen: false, fullsreen: false,
-30
View File
@@ -3476,14 +3476,6 @@ int CLI::run(int argc, char **argv)
} }
new_variant_counts = old_variant_counts; new_variant_counts = old_variant_counts;
//filament_variant_count = old_variant_counts; //filament_variant_count = old_variant_counts;
//ORCA: lay the per-variant options out one value per variant of the current filaments before each
// loaded filament replaces its own variants, including an option only a loaded filament
// defines, which otherwise starts as a single default value and never reaches the others.
for (const DynamicPrintConfig &config : load_filaments_config)
for (const std::string &opt_key : filament_options_with_variant)
if (opt_key != "filament_extruder_variant" && config.has(opt_key))
m_print_config.option(opt_key, true);
normalize_filament_values_to_variants(m_print_config);
for (int index = 0; index < load_filaments_config.size(); index++) { for (int index = 0; index < load_filaments_config.size(); index++) {
DynamicPrintConfig& config = load_filaments_config[index]; DynamicPrintConfig& config = load_filaments_config[index];
int filament_index = load_filaments_index[index]; int filament_index = load_filaments_index[index];
@@ -3655,25 +3647,6 @@ int CLI::run(int argc, char **argv)
} }
} }
//ORCA: a per-variant option the loaded filament does not define keeps the values of the
// variants the filament already had, and a variant new to it takes its first one's.
const int old_start = old_start_indice[filament_index - 1];
std::vector<int> kept_variant_indice = new_variant_indice;
for (int &i : kept_variant_indice)
if (i < 0)
i = old_start;
for (const std::string &opt_key : filament_options_with_variant) {
if (config.has(opt_key))
continue;
auto *opt_vec_dst = dynamic_cast<ConfigOptionVectorBase *>(m_print_config.option(opt_key));
if (opt_vec_dst == nullptr || opt_vec_dst->size() < size_t(old_start + old_variant_count))
continue;
// set_with_restore_2() pads its source in place
std::unique_ptr<ConfigOption> old_values(opt_vec_dst->clone());
opt_vec_dst->set_with_restore_2(static_cast<ConfigOptionVectorBase *>(old_values.get()), kept_variant_indice, old_start,
old_variant_count, true);
}
//update the old index //update the old index
if (old_variant_count != new_variant_count) if (old_variant_count != new_variant_count)
{ {
@@ -4108,9 +4081,6 @@ int CLI::run(int argc, char **argv)
if (printer_technology == ptFFF) { if (printer_technology == ptFFF) {
fff_print_config.apply(m_print_config, true); fff_print_config.apply(m_print_config, true);
m_print_config.apply(fff_print_config, true); m_print_config.apply(fff_print_config, true);
//ORCA: an option no preset or project defines has just come in as its single default value, and a
// command line override may hold one value per filament.
normalize_filament_values_to_variants(m_print_config);
} else { } else {
boost::nowide::cerr << "invalid printer_technology " << std::endl; boost::nowide::cerr << "invalid printer_technology " << std::endl;
record_exit_reson(outfile_dir, CLI_INVALID_PRINTER_TECH, 0, cli_errors[CLI_INVALID_PRINTER_TECH], sliced_info); record_exit_reson(outfile_dir, CLI_INVALID_PRINTER_TECH, 0, cli_errors[CLI_INVALID_PRINTER_TECH], sliced_info);
+7
View File
@@ -205,6 +205,13 @@ void AppConfig::set_defaults()
if (get("seq_top_layer_only").empty()) if (get("seq_top_layer_only").empty())
set("seq_top_layer_only", "1"); set("seq_top_layer_only", "1");
// what the preview draws while the user drags it
{
const std::string mode = get("preview_reduced_detail_mode");
if (mode != "off" && mode != "solid" && mode != "shell")
set("preview_reduced_detail_mode", "off");
}
// ORCA: darken the layers the preview layer slider is not scrubbed to // ORCA: darken the layers the preview layer slider is not scrubbed to
if (get("preview_dim_previous_layers").empty()) if (get("preview_dim_previous_layers").empty())
set_bool("preview_dim_previous_layers", false); set_bool("preview_dim_previous_layers", false);
+8 -12
View File
@@ -141,7 +141,7 @@ bool load_obj(const char *path, TriangleMesh *meshptr, ObjInfo& obj_info, std::s
its.indices.emplace_back(indices[0], indices[1], indices[2]); its.indices.emplace_back(indices[0], indices[1], indices[2]);
int face_index =its.indices.size() - 1; int face_index =its.indices.size() - 1;
RGBA face_color; RGBA face_color;
auto set_face_color = [&uvs, &data, &mtl_data, &obj_info, &face_color](int face_index, const std::string mtl_name, const std::array<int, 3> &corners) { auto set_face_color = [&uvs, &data, &mtl_data, &obj_info, &face_color](int face_index, const std::string mtl_name) {
if (mtl_data.new_mtl_unmap.find(mtl_name) != mtl_data.new_mtl_unmap.end()) { if (mtl_data.new_mtl_unmap.find(mtl_name) != mtl_data.new_mtl_unmap.end()) {
bool is_merge_ka_kd = true; bool is_merge_ka_kd = true;
for (size_t n = 0; n < 3; n++) { for (size_t n = 0; n < 3; n++) {
@@ -174,7 +174,7 @@ bool load_obj(const char *path, TriangleMesh *meshptr, ObjInfo& obj_info, std::s
return Vec2f::Zero(); return Vec2f::Zero();
return Vec2f(data.textureCoordinates[idx * OBJ_TEXCOORD_LENGTH], data.textureCoordinates[idx * OBJ_TEXCOORD_LENGTH + 1]); return Vec2f(data.textureCoordinates[idx * OBJ_TEXCOORD_LENGTH], data.textureCoordinates[idx * OBJ_TEXCOORD_LENGTH + 1]);
}; };
std::array<Vec2f, 3> uv_array{uv_at(uvs[corners[0]]), uv_at(uvs[corners[1]]), uv_at(uvs[corners[2]])}; std::array<Vec2f, 3> uv_array{uv_at(uvs[0]), uv_at(uvs[1]), uv_at(uvs[2])};
obj_info.uvs.emplace_back(uv_array); obj_info.uvs.emplace_back(uv_array);
} }
obj_info.face_colors.emplace_back(face_color); obj_info.face_colors.emplace_back(face_color);
@@ -185,27 +185,27 @@ bool load_obj(const char *path, TriangleMesh *meshptr, ObjInfo& obj_info, std::s
} }
} }
}; };
auto set_face_color_by_mtl = [&data, &set_face_color](int face_index, const std::array<int, 3> &corners) { auto set_face_color_by_mtl = [&data, &set_face_color](int face_index) {
if (data.usemtls.size() == 1) { if (data.usemtls.size() == 1) {
set_face_color(face_index, data.usemtls[0].name, corners); set_face_color(face_index, data.usemtls[0].name);
} else { } else {
for (size_t k = 0; k < data.usemtls.size(); k++) { for (size_t k = 0; k < data.usemtls.size(); k++) {
auto mtl = data.usemtls[k]; auto mtl = data.usemtls[k];
if (face_index >= mtl.face_start && face_index <= mtl.face_end) { if (face_index >= mtl.face_start && face_index <= mtl.face_end) {
set_face_color(face_index, data.usemtls[k].name, corners); set_face_color(face_index, data.usemtls[k].name);
break; break;
} }
} }
} }
}; };
if (exist_mtl) { if (exist_mtl) {
set_face_color_by_mtl(face_index, {0, 1, 2}); set_face_color_by_mtl(face_index);
} }
if (cnt == 4) { if (cnt == 4) {
its.indices.emplace_back(indices[0], indices[2], indices[3]); its.indices.emplace_back(indices[0], indices[2], indices[3]);
int face_index = its.indices.size() - 1; int face_index = its.indices.size() - 1;
if (exist_mtl) { if (exist_mtl) {
set_face_color_by_mtl(face_index, {0, 2, 3}); set_face_color_by_mtl(face_index);
} }
} }
} }
@@ -217,12 +217,8 @@ bool load_obj(const char *path, TriangleMesh *meshptr, ObjInfo& obj_info, std::s
message = _L("This OBJ file couldn't be read because it's empty."); message = _L("This OBJ file couldn't be read because it's empty.");
return false; return false;
} }
if (meshptr->volume() < 0) { if (meshptr->volume() < 0)
meshptr->flip_triangles(); meshptr->flip_triangles();
// Flipping swaps corners 1 and 2 of every face, so the UVs have to follow.
for (std::array<Vec2f, 3> &uv : obj_info.uvs)
std::swap(uv[1], uv[2]);
}
// Hand the parsed material table back so callers can build a TexturedMesh from it. // Hand the parsed material table back so callers can build a TexturedMesh from it.
if (out_mtl) if (out_mtl)
*out_mtl = mtl_data; *out_mtl = mtl_data;
+69 -49
View File
@@ -1497,7 +1497,12 @@ static std::vector<Vec2d> get_path_of_change_filament(const Print& print)
check_add_eol(toolchange_gcode_str); check_add_eol(toolchange_gcode_str);
// SoftFever: set new PA for new filament // SoftFever: set new PA for new filament
gcode += gcodegen.set_filament_pressure_advance(new_filament_id); if (gcodegen.config().enable_pressure_advance.get_at(new_filament_id)) {
gcode += gcodegen.writer().set_pressure_advance(gcodegen.config().pressure_advance.get_at(new_filament_id));
// Orca: Adaptive PA
// Reset Adaptive PA processor last PA value
gcodegen.m_pa_processor->resetPreviousPA(gcodegen.config().pressure_advance.get_at(new_filament_id));
}
// A phony move to the end position at the wipe tower. // A phony move to the end position at the wipe tower.
gcodegen.writer().travel_to_xy((end_pos + plate_origin_2d).cast<double>()); gcodegen.writer().travel_to_xy((end_pos + plate_origin_2d).cast<double>());
@@ -1821,8 +1826,12 @@ static std::vector<Vec2d> get_path_of_change_filament(const Print& print)
check_add_eol(toolchange_gcode_str); check_add_eol(toolchange_gcode_str);
// SoftFever: set new PA for new filament // SoftFever: set new PA for new filament
if (new_extruder_id != -1) if (new_extruder_id != -1 && gcodegen.config().enable_pressure_advance.get_at(new_extruder_id)) {
gcode += gcodegen.set_filament_pressure_advance(new_extruder_id); gcode += gcodegen.writer().set_pressure_advance(gcodegen.config().pressure_advance.get_at(new_extruder_id));
// Orca: Adaptive PA
// Reset Adaptive PA processor last PA value
gcodegen.m_pa_processor->resetPreviousPA(gcodegen.config().pressure_advance.get_at(new_extruder_id));
}
// A phony move to the end position at the wipe tower. // A phony move to the end position at the wipe tower.
gcodegen.writer().travel_to_xy((end_pos + plate_origin_2d).cast<double>()); gcodegen.writer().travel_to_xy((end_pos + plate_origin_2d).cast<double>());
@@ -3223,7 +3232,7 @@ void GCode::_do_export(Print& print, GCodeOutputStream &file, ThumbnailsGenerato
m_cooling_buffer->set_current_extruder(initial_extruder_id, extruder_id); m_cooling_buffer->set_current_extruder(initial_extruder_id, extruder_id);
// Orca: Initialise AdaptivePA processor filter // Orca: Initialise AdaptivePA processor filter
m_pa_processor = std::make_unique<AdaptivePAProcessor>(*this); m_pa_processor = std::make_unique<AdaptivePAProcessor>(*this, tool_ordering.all_extruders());
// Update output variables after the extruders were initialized. // Update output variables after the extruders were initialized.
m_placeholder_parser_integration.init(m_writer); m_placeholder_parser_integration.init(m_writer);
@@ -3788,7 +3797,12 @@ void GCode::_do_export(Print& print, GCodeOutputStream &file, ThumbnailsGenerato
} }
} }
// Orca: add missing PA settings for initial filament // Orca: add missing PA settings for initial filament
file.write(set_filament_pressure_advance(initial_non_support_extruder_id)); if (m_config.enable_pressure_advance.get_at(initial_non_support_extruder_id)) {
file.write(m_writer.set_pressure_advance(m_config.pressure_advance.get_at(initial_non_support_extruder_id)));
// Orca: Adaptive PA
// Reset Adaptive PA processor last PA value
m_pa_processor->resetPreviousPA(m_config.pressure_advance.get_at(initial_non_support_extruder_id));
}
} }
//flush FanMover buffer to avoid modifying the start gcode if it's manual. //flush FanMover buffer to avoid modifying the start gcode if it's manual.
@@ -8376,16 +8390,12 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
// Orca: Dynamic PA // Orca: Dynamic PA
// If adaptive PA is enabled, by default evaluate PA on all extrusion moves // If adaptive PA is enabled, by default evaluate PA on all extrusion moves
// The PA settings and the PA_CHANGE tags use the filament config index of the filament's extruder variant
const unsigned int pa_config_index = (unsigned int) get_filament_config_index(m_writer.filament()->id());
const bool adaptive_pa = m_config.adaptive_pressure_advance.get_at(pa_config_index) && m_config.enable_pressure_advance.get_at(pa_config_index);
const bool adaptive_pa_overhangs = adaptive_pa && m_config.adaptive_pressure_advance_overhangs.get_at(pa_config_index);
bool is_pa_calib = m_curr_print->calib_mode() == CalibMode::Calib_PA_Line || bool is_pa_calib = m_curr_print->calib_mode() == CalibMode::Calib_PA_Line ||
m_curr_print->calib_mode() == CalibMode::Calib_PA_Pattern || m_curr_print->calib_mode() == CalibMode::Calib_PA_Pattern ||
m_curr_print->calib_mode() == CalibMode::Calib_PA_Tower; m_curr_print->calib_mode() == CalibMode::Calib_PA_Tower;
bool evaluate_adaptive_pa = false; bool evaluate_adaptive_pa = false;
bool role_change = (m_last_extrusion_role != path.role()); bool role_change = (m_last_extrusion_role != path.role());
if (!is_pa_calib && adaptive_pa) { if (!is_pa_calib && FILAMENT_CONFIG(adaptive_pressure_advance) && FILAMENT_CONFIG(enable_pressure_advance)) {
evaluate_adaptive_pa = true; evaluate_adaptive_pa = true;
// If we have already emmited a PA change because the m_multi_flow_segment_path_pa_set is set // If we have already emmited a PA change because the m_multi_flow_segment_path_pa_set is set
// skip re-issuing the PA change tag. // skip re-issuing the PA change tag.
@@ -8468,7 +8478,7 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
// Post processor flag generation code segment when option to emit only at role changes is enabled // Post processor flag generation code segment when option to emit only at role changes is enabled
// Variables published to the post processor: // Variables published to the post processor:
// 1) Tag to trigger a PA evaluation (because a role change was identified and the user has requested dynamic PA adjustments) // 1) Tag to trigger a PA evaluation (because a role change was identified and the user has requested dynamic PA adjustments)
// 2) Current filament config index (to identify the PA model for the currently used filament and its extruder variant) // 2) Current extruder ID (to identify the PA model for the currently used extruder)
// 3) mm3_per_mm value (to then multiply by the final model print speed after slowdown for cooling is applied) // 3) mm3_per_mm value (to then multiply by the final model print speed after slowdown for cooling is applied)
// 4) the current acceleration (to pass to the model for evaluation) // 4) the current acceleration (to pass to the model for evaluation)
// 5) whether this is an external perimeter (for future use) // 5) whether this is an external perimeter (for future use)
@@ -8479,7 +8489,7 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
if (m_multi_flow_segment_path_average_mm3_per_mm > 0) { if (m_multi_flow_segment_path_average_mm3_per_mm > 0) {
sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n", sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n",
GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(), GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(),
pa_config_index, m_writer.filament()->id(),
m_multi_flow_segment_path_average_mm3_per_mm, m_multi_flow_segment_path_average_mm3_per_mm,
acceleration_i, acceleration_i,
((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)), ((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)),
@@ -8492,7 +8502,7 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
// to issue a zero flow PA change command for this // to issue a zero flow PA change command for this
sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n", sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n",
GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(), GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(),
pa_config_index, m_writer.filament()->id(),
_mm3_per_mm, _mm3_per_mm,
acceleration_i, acceleration_i,
((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)), ((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)),
@@ -8600,7 +8610,11 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
// or a flow change, so emit the flag to evaluate PA for the upcomming extrusion // or a flow change, so emit the flag to evaluate PA for the upcomming extrusion
// Emit tag before new speed is set so the post processor reads the next speed immediately and uses it. // Emit tag before new speed is set so the post processor reads the next speed immediately and uses it.
// Dont emit tag if it has just already been emitted from a role change above // Dont emit tag if it has just already been emitted from a role change above
if(_mm3_per_mm >0 && adaptive_pa_overhangs && !evaluate_adaptive_pa){ if(_mm3_per_mm >0 &&
FILAMENT_CONFIG(adaptive_pressure_advance) &&
FILAMENT_CONFIG(enable_pressure_advance) &&
FILAMENT_CONFIG(adaptive_pressure_advance_overhangs) &&
!evaluate_adaptive_pa){
if(writer().get_current_speed() > F){ // Ramping down speed - use overhang logic where the minimum speed is used between current and upcoming extrusion if(writer().get_current_speed() > F){ // Ramping down speed - use overhang logic where the minimum speed is used between current and upcoming extrusion
if(m_config.gcode_comments){ if(m_config.gcode_comments){
sprintf(buf, "; Ramp down-non-variable\n"); sprintf(buf, "; Ramp down-non-variable\n");
@@ -8608,7 +8622,7 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
} }
sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n", sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n",
GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(), GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(),
pa_config_index, m_writer.filament()->id(),
_mm3_per_mm, _mm3_per_mm,
acceleration_i, acceleration_i,
((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)), ((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)),
@@ -8623,7 +8637,7 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
} }
sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n", sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n",
GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(), GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(),
pa_config_index, m_writer.filament()->id(),
_mm3_per_mm, _mm3_per_mm,
acceleration_i, acceleration_i,
((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)), ((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)),
@@ -8829,7 +8843,10 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
// ORCA: Adaptive PA code segment when adjusting PA within the same feature // ORCA: Adaptive PA code segment when adjusting PA within the same feature
// There is a speed change or flow change so emit the flag to evaluate PA for the upcomming extrusion // There is a speed change or flow change so emit the flag to evaluate PA for the upcomming extrusion
// Emit tag before new speed is set so the post processor reads the next speed immediately and uses it. // Emit tag before new speed is set so the post processor reads the next speed immediately and uses it.
if(_mm3_per_mm >0 && adaptive_pa_overhangs){ if(_mm3_per_mm >0 &&
EXTRUDER_CONFIG(adaptive_pressure_advance) &&
EXTRUDER_CONFIG(enable_pressure_advance) &&
EXTRUDER_CONFIG(adaptive_pressure_advance_overhangs) ){
if(last_set_speed > new_speed){ // Ramping down speed - use overhang logic where the minimum speed is used between current and upcoming extrusion if(last_set_speed > new_speed){ // Ramping down speed - use overhang logic where the minimum speed is used between current and upcoming extrusion
if(m_config.gcode_comments) { if(m_config.gcode_comments) {
sprintf(buf, "; Ramp up-variable\n"); sprintf(buf, "; Ramp up-variable\n");
@@ -8837,7 +8854,7 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
} }
sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n", sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n",
GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(), GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(),
pa_config_index, m_writer.filament()->id(),
_mm3_per_mm, _mm3_per_mm,
acceleration_i, acceleration_i,
((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)), ((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)),
@@ -8852,7 +8869,7 @@ std::string GCode::_extrude(const ExtrusionPath &path, std::string description,
} }
sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n", sprintf(buf, ";%sT%u MM3MM:%g ACCEL:%u BR:%d RC:%d OV:%d\n",
GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(), GCodeProcessor::reserved_tag(GCodeProcessor::ETags::PA_Change).c_str(),
pa_config_index, m_writer.filament()->id(),
_mm3_per_mm, _mm3_per_mm,
acceleration_i, acceleration_i,
((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)), ((path.role() == erBridgeInfill) ||(path.role() == erOverhangPerimeter)),
@@ -9405,29 +9422,33 @@ void GCode::update_placeholder_parser_with_variant_params()
if (num_filaments == 0) if (num_filaments == 0)
return; return;
// Helper: remap config arrays from variant index space to filament_id index space. // Helpers: remap config arrays from variant index space to filament_id index space.
// After remapping, gcode templates can use param[filament_id] directly. // After remapping, gcode templates can use param[filament_id] directly.
auto remap_by_filament = [&](const auto &src) { auto remap_floats_by_filament = [&](const auto &src) {
std::decay_t<decltype(src.values)> dst(num_filaments); std::vector<double> dst(num_filaments);
for (size_t i = 0; i < num_filaments; ++i)
dst[i] = src.get_at(get_filament_config_index(i));
return dst;
};
auto remap_ints_by_filament = [&](const auto &src) {
std::vector<int> dst(num_filaments);
for (size_t i = 0; i < num_filaments; ++i) for (size_t i = 0; i < num_filaments; ++i)
dst[i] = src.get_at(get_filament_config_index(i)); dst[i] = src.get_at(get_filament_config_index(i));
return dst; return dst;
}; };
// --- filament_options_with_variant: gcode indexes by filament_id --- // --- filament_options_with_variant: gcode indexes by filament_id ---
this->placeholder_parser().set("filament_max_volumetric_speed", new ConfigOptionFloats(remap_by_filament(m_config.filament_max_volumetric_speed))); this->placeholder_parser().set("filament_max_volumetric_speed", new ConfigOptionFloats(remap_floats_by_filament(m_config.filament_max_volumetric_speed)));
this->placeholder_parser().set("filament_pre_cooling_temperature", new ConfigOptionInts(remap_by_filament(m_config.filament_pre_cooling_temperature))); this->placeholder_parser().set("filament_pre_cooling_temperature", new ConfigOptionInts(remap_ints_by_filament(m_config.filament_pre_cooling_temperature)));
this->placeholder_parser().set("filament_pre_cooling_temperature_nc", new ConfigOptionInts(remap_by_filament(m_config.filament_pre_cooling_temperature_nc))); this->placeholder_parser().set("filament_pre_cooling_temperature_nc", new ConfigOptionInts(remap_ints_by_filament(m_config.filament_pre_cooling_temperature_nc)));
this->placeholder_parser().set("filament_cooling_before_tower", new ConfigOptionFloats(remap_by_filament(m_config.filament_cooling_before_tower))); this->placeholder_parser().set("filament_cooling_before_tower", new ConfigOptionFloats(remap_floats_by_filament(m_config.filament_cooling_before_tower)));
this->placeholder_parser().set("nozzle_temperature_initial_layer", new ConfigOptionInts(remap_by_filament(m_config.nozzle_temperature_initial_layer))); this->placeholder_parser().set("nozzle_temperature_initial_layer", new ConfigOptionInts(remap_ints_by_filament(m_config.nozzle_temperature_initial_layer)));
this->placeholder_parser().set("nozzle_temperature", new ConfigOptionInts(remap_by_filament(m_config.nozzle_temperature))); this->placeholder_parser().set("nozzle_temperature", new ConfigOptionInts(remap_ints_by_filament(m_config.nozzle_temperature)));
// first_layer_temperature is a legacy alias of nozzle_temperature_initial_layer // first_layer_temperature is a legacy alias of nozzle_temperature_initial_layer
this->placeholder_parser().set("first_layer_temperature", new ConfigOptionInts(remap_by_filament(m_config.nozzle_temperature_initial_layer))); this->placeholder_parser().set("first_layer_temperature", new ConfigOptionInts(remap_ints_by_filament(m_config.nozzle_temperature_initial_layer)));
this->placeholder_parser().set("pressure_advance", new ConfigOptionFloats(remap_by_filament(m_config.pressure_advance)));
this->placeholder_parser().set("enable_pressure_advance", new ConfigOptionBools(remap_by_filament(m_config.enable_pressure_advance)));
// --- printer_options_with_variant_1: in m_config these are already merged as filament-indexed --- // --- printer_options_with_variant_1: in m_config these are already merged as filament-indexed ---
this->placeholder_parser().set("retraction_distances_when_cut", new ConfigOptionFloats(remap_by_filament(m_config.retraction_distances_when_cut))); this->placeholder_parser().set("retraction_distances_when_cut", new ConfigOptionFloats(remap_floats_by_filament(m_config.retraction_distances_when_cut)));
// hotend_cooling_rate / hotend_heating_rate: gcode uses [filament_map[x]-1] (extruder_id), no remap needed // hotend_cooling_rate / hotend_heating_rate: gcode uses [filament_map[x]-1] (extruder_id), no remap needed
// --- filament_map: per-layer dynamic, sync from m_config to placeholder_parser --- // --- filament_map: per-layer dynamic, sync from m_config to placeholder_parser ---
@@ -9437,10 +9458,10 @@ void GCode::update_placeholder_parser_with_variant_params()
{ {
// Fast purge mode uses filament_flush_temp_fast; Default is inert. // Fast purge mode uses filament_flush_temp_fast; Default is inert.
bool use_fast_flush = m_config.prime_volume_mode == PrimeVolumeMode::pvmFast; bool use_fast_flush = m_config.prime_volume_mode == PrimeVolumeMode::pvmFast;
auto flush_v_speed = remap_by_filament(m_config.filament_flush_volumetric_speed); auto flush_v_speed = remap_floats_by_filament(m_config.filament_flush_volumetric_speed);
auto filament_max_v = remap_by_filament(m_config.filament_max_volumetric_speed); auto filament_max_v = remap_floats_by_filament(m_config.filament_max_volumetric_speed);
auto flush_temps = remap_by_filament(use_fast_flush ? m_config.filament_flush_temp_fast auto flush_temps = remap_ints_by_filament(use_fast_flush ? m_config.filament_flush_temp_fast
: m_config.filament_flush_temp); : m_config.filament_flush_temp);
for (size_t i = 0; i < num_filaments; ++i) { for (size_t i = 0; i < num_filaments; ++i) {
if (flush_v_speed[i] == 0) if (flush_v_speed[i] == 0)
flush_v_speed[i] = filament_max_v[i]; flush_v_speed[i] = filament_max_v[i];
@@ -9492,7 +9513,12 @@ std::string GCode::set_extruder(unsigned int new_filament_id, double print_z, bo
gcode += this->placeholder_parser_process("filament_start_gcode", filament_start_gcode, new_filament_id, &config); gcode += this->placeholder_parser_process("filament_start_gcode", filament_start_gcode, new_filament_id, &config);
check_add_eol(gcode); check_add_eol(gcode);
} }
gcode += set_filament_pressure_advance(new_filament_id); if (m_config.enable_pressure_advance.get_at(new_filament_id)) {
gcode += m_writer.set_pressure_advance(m_config.pressure_advance.get_at(new_filament_id));
// Orca: Adaptive PA
// Reset Adaptive PA processor last PA value
m_pa_processor->resetPreviousPA(m_config.pressure_advance.get_at(new_filament_id));
}
gcode += m_writer.toolchange(new_filament_id, new_extruder_id); gcode += m_writer.toolchange(new_filament_id, new_extruder_id);
if (Extruder *fil = m_writer.filament()) if (Extruder *fil = m_writer.filament())
@@ -9883,24 +9909,18 @@ std::string GCode::set_extruder(unsigned int new_filament_id, double print_z, bo
if (m_ooze_prevention.enable && !defer_temp_wait) if (m_ooze_prevention.enable && !defer_temp_wait)
gcode += m_ooze_prevention.post_toolchange(*this); gcode += m_ooze_prevention.post_toolchange(*this);
gcode += set_filament_pressure_advance(new_filament_id); if (m_config.enable_pressure_advance.get_at(new_filament_id)) {
gcode += m_writer.set_pressure_advance(m_config.pressure_advance.get_at(new_filament_id));
// Orca: Adaptive PA
// Reset Adaptive PA processor last PA value
m_pa_processor->resetPreviousPA(m_config.pressure_advance.get_at(new_filament_id));
}
//Orca: tool changer or IDEX's firmware may change Z position, so we set it to unknown/undefined //Orca: tool changer or IDEX's firmware may change Z position, so we set it to unknown/undefined
m_last_pos_defined = false; m_last_pos_defined = false;
return gcode; return gcode;
} }
std::string GCode::set_filament_pressure_advance(unsigned int filament_id)
{
const size_t fi = get_filament_config_index(filament_id);
if (!m_config.enable_pressure_advance.get_at(fi))
return {};
// Orca: Adaptive PA
// Reset Adaptive PA processor last PA value
m_pa_processor->resetPreviousPA(m_config.pressure_advance.get_at(fi));
return m_writer.set_pressure_advance(m_config.pressure_advance.get_at(fi));
}
inline std::string polygon_to_string(const Polygon &polygon, Print *print, bool is_print_space = false) { inline std::string polygon_to_string(const Polygon &polygon, Print *print, bool is_print_space = false) {
std::ostringstream gcode; std::ostringstream gcode;
gcode << "["; gcode << "[";
-2
View File
@@ -281,8 +281,6 @@ public:
// extra_retract forwards a PETG pre-extrusion over-extrusion; default 0 -> identical to the plain deretract. // extra_retract forwards a PETG pre-extrusion over-extrusion; default 0 -> identical to the plain deretract.
std::string unretract(float extra_retract = 0.f) { return m_writer.unlift() + m_writer.unretract(extra_retract); } std::string unretract(float extra_retract = 0.f) { return m_writer.unlift() + m_writer.unretract(extra_retract); }
std::string set_extruder(unsigned int extruder_id, double print_z, bool by_object=false, int toolchange_temp_override = -1, bool defer_temp_wait = false); std::string set_extruder(unsigned int extruder_id, double print_z, bool by_object=false, int toolchange_temp_override = -1, bool defer_temp_wait = false);
// Sets the pressure advance of the filament's extruder variant, if enabled for it.
std::string set_filament_pressure_advance(unsigned int filament_id);
bool is_BBL_Printer(); bool is_BBL_Printer();
WipeTowerType wipe_tower_type(); WipeTowerType wipe_tower_type();
+33 -26
View File
@@ -21,30 +21,38 @@ namespace Slic3r {
* *
* @param gcodegen A reference to the GCode object that generates the G-code. * @param gcodegen A reference to the GCode object that generates the G-code.
*/ */
AdaptivePAProcessor::AdaptivePAProcessor(GCode &gcodegen) AdaptivePAProcessor::AdaptivePAProcessor(GCode &gcodegen, const std::vector<unsigned int> &tools_used)
: m_gcodegen(gcodegen), : m_gcodegen(gcodegen),
m_config(gcodegen.config()), m_config(gcodegen.config()),
m_last_predicted_pa(0.0), m_last_predicted_pa(0.0),
m_max_next_feedrate(0.0), m_max_next_feedrate(0.0),
m_next_feedrate(0.0), m_next_feedrate(0.0),
m_current_feedrate(0.0), m_current_feedrate(0.0),
m_last_config_index(-1), m_last_extruder_id(-1),
m_pa_change_pattern(R"(; PA_CHANGE:T(\d+) MM3MM:([0-9]*\.[0-9]+) ACCEL:(\d+) BR:(\d+) RC:(\d+) OV:(\d+))"), m_pa_change_pattern(R"(; PA_CHANGE:T(\d+) MM3MM:([0-9]*\.[0-9]+) ACCEL:(\d+) BR:(\d+) RC:(\d+) OV:(\d+))"),
m_g1_f_pattern(R"(G1 F([0-9]+))") m_g1_f_pattern(R"(G1 F([0-9]+))")
{ {
// Constructor body can be used for further initialization if necessary
for (unsigned int tool : tools_used) {
// Only enable model for the tool if both PA and adaptive PA options are enabled
if(m_config.adaptive_pressure_advance.get_at(tool) && m_config.enable_pressure_advance.get_at(tool)){
auto interpolator = std::make_unique<AdaptivePAInterpolator>();
// Get calibration values from extruder
std::string pa_calibration_values = m_config.adaptive_pressure_advance_model.get_at(tool);
// Setup the model and store it in the tool-interpolation model map
interpolator->parseAndSetData(pa_calibration_values);
m_AdaptivePAInterpolators[tool] = std::move(interpolator);
}
}
} }
// Method to get the interpolator for a specific filament config index. // Method to get the interpolator for a specific tool ID
// The model is built the first time an index is requested, as the indices in use depend on AdaptivePAInterpolator* AdaptivePAProcessor::getInterpolator(unsigned int tool_id) {
// the extruder variant each filament prints with. auto it = m_AdaptivePAInterpolators.find(tool_id);
AdaptivePAInterpolator* AdaptivePAProcessor::getInterpolator(unsigned int config_index) { if (it != m_AdaptivePAInterpolators.end()) {
auto [it, inserted] = m_AdaptivePAInterpolators.try_emplace(config_index); return it->second.get();
// Only enable model for the index if both PA and adaptive PA options are enabled
if (inserted && m_config.adaptive_pressure_advance.get_at(config_index) && m_config.enable_pressure_advance.get_at(config_index)) {
it->second = std::make_unique<AdaptivePAInterpolator>();
it->second->parseAndSetData(m_config.adaptive_pressure_advance_model.get_at(config_index));
} }
return it->second.get(); return nullptr; // Handle the case where the tool_id was not found
} }
/** /**
@@ -100,17 +108,16 @@ std::string AdaptivePAProcessor::process_layer(std::string &&gcode) {
// the PA for that material is set. As no tag below will be found for this extruder, the original PA is retained. // the PA for that material is set. As no tag below will be found for this extruder, the original PA is retained.
if (line.find("; PA_CHANGE") == 0) { // prune lines quickly before running regex check as regex is more expensive to run if (line.find("; PA_CHANGE") == 0) { // prune lines quickly before running regex check as regex is more expensive to run
if (std::regex_search(line, m_match, m_pa_change_pattern)) { if (std::regex_search(line, m_match, m_pa_change_pattern)) {
// The tag carries the filament config index, which selects the PA settings of the filament's extruder variant int extruder_id = std::stoi(m_match[1].str());
int config_index = std::stoi(m_match[1].str());
mm3mm_value = std::stod(m_match[2].str()); mm3mm_value = std::stod(m_match[2].str());
accel_value = std::stod(m_match[3].str()); accel_value = std::stod(m_match[3].str());
int isBridge = std::stoi(m_match[4].str()); int isBridge = std::stoi(m_match[4].str());
int roleChange = std::stoi(m_match[5].str()); int roleChange = std::stoi(m_match[5].str());
int isOverhang = std::stoi(m_match[6].str()); int isOverhang = std::stoi(m_match[6].str());
// Check if the filament config index has changed // Check if the extruder ID has changed
bool config_index_changed = (config_index != m_last_config_index); bool extruder_changed = (extruder_id != m_last_extruder_id);
m_last_config_index = config_index; m_last_extruder_id = extruder_id;
// Save the PA_CHANGE line to output later after finding feedrate // Save the PA_CHANGE line to output later after finding feedrate
pa_change_line = line; pa_change_line = line;
@@ -205,23 +212,23 @@ std::string AdaptivePAProcessor::process_layer(std::string &&gcode) {
// Calculate the predicted PA using the upcomming feature maximum feedrate // Calculate the predicted PA using the upcomming feature maximum feedrate
// Get the interpolator for the active tool // Get the interpolator for the active tool
AdaptivePAInterpolator* interpolator = getInterpolator(m_last_config_index); AdaptivePAInterpolator* interpolator = getInterpolator(m_last_extruder_id);
double predicted_pa = 0; double predicted_pa = 0;
double adaptive_PA_speed = 0; double adaptive_PA_speed = 0;
if(!interpolator){ // Tool not found in the interpolator map if(!interpolator){ // Tool not found in the interpolator map
// Tool not found in the PA interpolator to tool map // Tool not found in the PA interpolator to tool map
predicted_pa = m_config.enable_pressure_advance.get_at(m_last_config_index) ? m_config.pressure_advance.get_at(m_last_config_index) : 0; predicted_pa = m_config.enable_pressure_advance.get_at(m_last_extruder_id) ? m_config.pressure_advance.get_at(m_last_extruder_id) : 0;
if(m_config.gcode_comments) output << "; APA: Tool doesnt have APA enabled\n"; if(m_config.gcode_comments) output << "; APA: Tool doesnt have APA enabled\n";
} else if (!interpolator->isInitialised() || (!m_config.adaptive_pressure_advance.get_at(m_last_config_index)) ) } else if (!interpolator->isInitialised() || (!m_config.adaptive_pressure_advance.get_at(m_last_extruder_id)) )
// Check if the model is not initialised by the constructor for the active extruder // Check if the model is not initialised by the constructor for the active extruder
// Also check that adaptive PA is enabled for that extruder. This should not be needed // Also check that adaptive PA is enabled for that extruder. This should not be needed
// as the PA change flag should not be set upstream (in the GCode.cpp file) if adaptive PA is disabled // as the PA change flag should not be set upstream (in the GCode.cpp file) if adaptive PA is disabled
// however check for robustness sake. // however check for robustness sake.
{ {
// Model failed or adaptive pressure advance not enabled - use default value from m_config // Model failed or adaptive pressure advance not enabled - use default value from m_config
predicted_pa = m_config.enable_pressure_advance.get_at(m_last_config_index) ? m_config.pressure_advance.get_at(m_last_config_index) : 0; predicted_pa = m_config.enable_pressure_advance.get_at(m_last_extruder_id) ? m_config.pressure_advance.get_at(m_last_extruder_id) : 0;
if(m_config.gcode_comments) output << "; APA: Interpolator setup failed, using default pressure advance\n"; if(m_config.gcode_comments) output << "; APA: Interpolator setup failed, using default pressure advance\n";
} else { // Model setup succeeded } else { // Model setup succeeded
// Proceed to identify the print speed to use to calculate the adaptive PA value // Proceed to identify the print speed to use to calculate the adaptive PA value
@@ -242,18 +249,18 @@ std::string AdaptivePAProcessor::process_layer(std::string &&gcode) {
predicted_pa = (*interpolator)(mm3mm_value * adaptive_PA_speed, accel_value); predicted_pa = (*interpolator)(mm3mm_value * adaptive_PA_speed, accel_value);
// This is a bridge, use the dedicated PA setting. // This is a bridge, use the dedicated PA setting.
if(isBridge && m_config.adaptive_pressure_advance_bridges.get_at(m_last_config_index) > EPSILON) if(isBridge && m_config.adaptive_pressure_advance_bridges.get_at(m_last_extruder_id) > EPSILON)
predicted_pa = m_config.adaptive_pressure_advance_bridges.get_at(m_last_config_index); predicted_pa = m_config.adaptive_pressure_advance_bridges.get_at(m_last_extruder_id);
if (predicted_pa < 0) { // If extrapolation fails, fall back to the default PA for the extruder. if (predicted_pa < 0) { // If extrapolation fails, fall back to the default PA for the extruder.
predicted_pa = m_config.enable_pressure_advance.get_at(m_last_config_index) ? m_config.pressure_advance.get_at(m_last_config_index) : 0; predicted_pa = m_config.enable_pressure_advance.get_at(m_last_extruder_id) ? m_config.pressure_advance.get_at(m_last_extruder_id) : 0;
if(m_config.gcode_comments) output << "; APA: Interpolation failed, using fallback pressure advance value\n"; if(m_config.gcode_comments) output << "; APA: Interpolation failed, using fallback pressure advance value\n";
} }
} }
if(m_config.gcode_comments) { if(m_config.gcode_comments) {
// Output debug GCode comments // Output debug GCode comments
output << pa_change_line << '\n'; // Output PA change command tag output << pa_change_line << '\n'; // Output PA change command tag
if(isBridge && m_config.adaptive_pressure_advance_bridges.get_at(m_last_config_index) > EPSILON) if(isBridge && m_config.adaptive_pressure_advance_bridges.get_at(m_last_extruder_id) > EPSILON)
output << "; APA Model Override (bridge)\n"; output << "; APA Model Override (bridge)\n";
output << "; APA Current Speed: " << std::to_string(m_current_feedrate) << "\n"; output << "; APA Current Speed: " << std::to_string(m_current_feedrate) << "\n";
output << "; APA Next Speed: " << std::to_string(m_next_feedrate) << "\n"; output << "; APA Next Speed: " << std::to_string(m_next_feedrate) << "\n";
@@ -262,7 +269,7 @@ std::string AdaptivePAProcessor::process_layer(std::string &&gcode) {
output << "; APA Flow rate: " << std::to_string(mm3mm_value * m_max_next_feedrate) << "\n"; output << "; APA Flow rate: " << std::to_string(mm3mm_value * m_max_next_feedrate) << "\n";
output << "; APA Prev PA: " << std::to_string(m_last_predicted_pa) << " New PA: " << std::to_string(predicted_pa) << "\n"; output << "; APA Prev PA: " << std::to_string(m_last_predicted_pa) << " New PA: " << std::to_string(predicted_pa) << "\n";
} }
if (config_index_changed || std::fabs(predicted_pa - m_last_predicted_pa) > EPSILON) { if (extruder_changed || std::fabs(predicted_pa - m_last_predicted_pa) > EPSILON) {
output << m_gcodegen.writer().set_pressure_advance(predicted_pa); // Use m_writer to set pressure advance output << m_gcodegen.writer().set_pressure_advance(predicted_pa); // Use m_writer to set pressure advance
m_last_predicted_pa = predicted_pa; // Update the last predicted PA value m_last_predicted_pa = predicted_pa; // Update the last predicted PA value
} }
+11 -7
View File
@@ -11,6 +11,7 @@
#include <regex> #include <regex>
#include <memory> #include <memory>
#include <map> #include <map>
#include <vector>
#include "AdaptivePAInterpolator.hpp" #include "AdaptivePAInterpolator.hpp"
namespace Slic3r { namespace Slic3r {
@@ -32,7 +33,7 @@ public:
* *
* @param gcodegen A reference to the GCode object that generates the G-code. * @param gcodegen A reference to the GCode object that generates the G-code.
*/ */
AdaptivePAProcessor(GCode &gcodegen); AdaptivePAProcessor(GCode &gcodegen, const std::vector<unsigned int> &tools_used);
/** /**
* @brief Processes a layer of G-code and applies adaptive pressure advance. * @brief Processes a layer of G-code and applies adaptive pressure advance.
@@ -69,25 +70,28 @@ public:
private: private:
GCode &m_gcodegen; ///< Reference to the GCode object. GCode &m_gcodegen; ///< Reference to the GCode object.
std::unordered_map<unsigned int, std::unique_ptr<AdaptivePAInterpolator>> m_AdaptivePAInterpolators; ///< Map between Interpolator objects and filament config indices (null when adaptive PA is off) std::unordered_map<unsigned int, std::unique_ptr<AdaptivePAInterpolator>> m_AdaptivePAInterpolators; ///< Map between Interpolator objects and tool ID's
const PrintConfig &m_config; ///< Reference to the print configuration. const PrintConfig &m_config; ///< Reference to the print configuration.
double m_last_predicted_pa; ///< Last predicted pressure advance value. double m_last_predicted_pa; ///< Last predicted pressure advance value.
double m_max_next_feedrate; ///< Maximum feed rate (speed) for the upcomming island. If no speed is found, the previous island speed is used. double m_max_next_feedrate; ///< Maximum feed rate (speed) for the upcomming island. If no speed is found, the previous island speed is used.
double m_next_feedrate; ///< First feed rate (speed) for the upcomming island. double m_next_feedrate; ///< First feed rate (speed) for the upcomming island.
double m_current_feedrate; ///< Current, latest feedrate. double m_current_feedrate; ///< Current, latest feedrate.
int m_last_config_index; ///< Filament config index of the last PA_CHANGE tag. int m_last_extruder_id; ///< Last used extruder ID.
std::regex m_pa_change_pattern; ///< Regular expression to detect PA_CHANGE pattern. std::regex m_pa_change_pattern; ///< Regular expression to detect PA_CHANGE pattern.
std::regex m_g1_f_pattern; ///< Regular expression to detect G1 F pattern. std::regex m_g1_f_pattern; ///< Regular expression to detect G1 F pattern.
std::smatch m_match; ///< Match results for regular expressions. std::smatch m_match; ///< Match results for regular expressions.
/** /**
* @brief Get the PA interpolator attached to the specified filament config index. * @brief Get the PA interpolator attached to the specified tool ID.
* *
* @param config_index The filament config index (one per filament and extruder variant) for which the PA interpolation model is to be returned. * This method manually sets the adaptive PA internally held value.
* @return The Adaptive PA Interpolator object corresponding to that index, or nullptr when adaptive PA is off for it. * Call this when changing tools or in any other case where the internally assumed last PA value may be incorrect
*
* @param An integer with the tool ID for which the PA interpolation model is to be returned.
* @return The Adaptive PA Interpolator object corresponding to that tool.
*/ */
AdaptivePAInterpolator* getInterpolator(unsigned int config_index); AdaptivePAInterpolator* getInterpolator(unsigned int tool_id);
}; };
} // namespace Slic3r } // namespace Slic3r
+5 -11
View File
@@ -2439,18 +2439,12 @@ StringObjectException Print::validate(std::vector<StringObjectException> *warnin
if (m_default_region_config.precise_outer_wall && m_default_region_config.wall_sequence != WallSequence::InnerOuter) if (m_default_region_config.precise_outer_wall && m_default_region_config.wall_sequence != WallSequence::InnerOuter)
warn(L("The precise wall option will be ignored for outer-inner or inner-outer-inner wall sequences."), "precise_outer_wall"); warn(L("The precise wall option will be ignored for outer-inner or inner-outer-inner wall sequences."), "precise_outer_wall");
// check adaptive pressure advance model of every extruder variant column of the used filaments // check adaptive pressure advance model
const std::vector<int> &self_index = m_config.filament_self_index.values; for (unsigned int extruder_id : extruders) {
const size_t pa_columns = std::max(m_config.adaptive_pressure_advance_model.size(), size_t(extruders.back()) + 1); if (m_config.adaptive_pressure_advance.get_at(extruder_id) &&
for (size_t column = 0; column < pa_columns; ++column) { m_config.enable_pressure_advance.get_at(extruder_id)) {
// filament_self_index maps a column to its filament once the filament arrays hold one column per variant
const unsigned int filament_id = self_index.size() == pa_columns ? self_index[column] - 1 : column;
if (!std::binary_search(extruders.begin(), extruders.end(), filament_id))
continue;
if (m_config.adaptive_pressure_advance.get_at(column) &&
m_config.enable_pressure_advance.get_at(column)) {
const std::string pa_model = m_config.adaptive_pressure_advance_model.get_at(column); const std::string pa_model = m_config.adaptive_pressure_advance_model.get_at(extruder_id);
if (!pa_model.empty()) { if (!pa_model.empty()) {
std::string validation_error = AdaptivePAProcessor::validate_adaptive_pa_model(pa_model); std::string validation_error = AdaptivePAProcessor::validate_adaptive_pa_model(pa_model);
if (!validation_error.empty()) { if (!validation_error.empty()) {
-30
View File
@@ -9403,10 +9403,6 @@ void PrintConfigDef::handle_legacy_composite(DynamicPrintConfig &config)
} }
config.set_key_value("wiping_volumes_use_custom_matrix", new ConfigOptionBool(custom)); config.set_key_value("wiping_volumes_use_custom_matrix", new ConfigOptionBool(custom));
} }
// Orca: a config saved before a key joined filament_options_with_variant stores it once per filament
// rather than once per filament variant, and one exported by an older CLI may store a single value.
normalize_filament_values_to_variants(config);
} }
const PrintConfigDef print_config_def; const PrintConfigDef print_config_def;
@@ -9509,13 +9505,6 @@ std::set<std::string> filament_options_with_variant = {
"filament_ironing_spacing", "filament_ironing_spacing",
"filament_ironing_inset", "filament_ironing_inset",
"filament_ironing_speed", "filament_ironing_speed",
// Orca: pressure advance
"enable_pressure_advance",
"pressure_advance",
"adaptive_pressure_advance",
"adaptive_pressure_advance_model",
"adaptive_pressure_advance_overhangs",
"adaptive_pressure_advance_bridges",
"activate_air_filtration", "activate_air_filtration",
"activate_air_filtration_during_print", "activate_air_filtration_during_print",
"activate_air_filtration_on_completion", "activate_air_filtration_on_completion",
@@ -10723,25 +10712,6 @@ void set_variant_override(ConfigOptionVectorBase &target, const ConfigOptionVect
target.set_to_index(&source, indices, stride); target.set_to_index(&source, indices, stride);
} }
void normalize_filament_values_to_variants(DynamicPrintConfig &config)
{
const auto *self_index = config.option<ConfigOptionInts>("filament_self_index");
if (self_index == nullptr || self_index->empty())
return;
const int filament_count = *std::max_element(self_index->values.begin(), self_index->values.end());
if (filament_count <= 0 || size_t(filament_count) >= self_index->size())
return;
for (const std::string &key : filament_options_with_variant) {
auto *opt = dynamic_cast<ConfigOptionVectorBase *>(config.option(key));
if (opt == nullptr || (opt->size() != size_t(filament_count) && opt->size() != 1))
continue;
std::unique_ptr<ConfigOption> per_filament(opt->clone());
// set_at() takes the first value for a filament past the end of a single-value vector
for (size_t variant = 0; variant < self_index->size(); ++variant)
opt->set_at(per_filament.get(), variant, self_index->values[variant] - 1);
}
}
//used for object/region config //used for object/region config
//use the smallest of multiple to single //use the smallest of multiple to single
-5
View File
@@ -884,11 +884,6 @@ extern std::set<std::string> empty_options;
void set_variant_override(ConfigOptionVectorBase &target, const ConfigOptionVectorBase &source, void set_variant_override(ConfigOptionVectorBase &target, const ConfigOptionVectorBase &source,
const std::vector<int> &variant_index, int stride = 1); const std::vector<int> &variant_index, int stride = 1);
// Orca: lays every filament_options_with_variant option out one value per filament variant, as
// filament_self_index maps the variants to filaments. An option holding one value per filament, or a
// single value, gives every variant of a filament that filament's value; other lengths are left alone.
void normalize_filament_values_to_variants(DynamicPrintConfig &config);
extern std::set<std::string> filament_dev_options; extern std::set<std::string> filament_dev_options;
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 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);
+1 -10
View File
@@ -256,19 +256,10 @@ extern bool is_gallery_file(const std::string& path, char const* type);
extern bool is_shapes_dir(const std::string& dir); extern bool is_shapes_dir(const std::string& dir);
//BBS: add json support //BBS: add json support
extern bool is_json_file(const std::string& path); extern bool is_json_file(const std::string& path);
// True if rel_path is relative, has no ".." component or embedded NUL and, joined to root, still resolves inside it. // True if rel_path is relative, has no ".." component and, joined to root, still resolves inside it.
// Both '/' and '\\' are treated as separators on every platform, so an archive rejected on one OS // Both '/' and '\\' are treated as separators on every platform, so an archive rejected on one OS
// is rejected on all of them. // is rejected on all of them.
extern bool is_path_within_root(const std::string &rel_path, const boost::filesystem::path &root); extern bool is_path_within_root(const std::string &rel_path, const boost::filesystem::path &root);
// True if a symlink stored at link_rel_path (relative to root) with this target stays inside root: the target
// must be relative, and joined to the link's directory it must pass is_path_within_root.
extern bool is_symlink_target_within_root(const std::string &link_rel_path, const std::string &target, const boost::filesystem::path &root);
// True if path names an entry strictly inside root: it must be spelled with root as its prefix,
// and must still resolve inside root once symlinks are followed.
extern bool is_absolute_path_within_root(const boost::filesystem::path &path, const boost::filesystem::path &root);
// True if a file with this name is of a type that the desktop opens as plain content, so it cannot run code.
// Anything unknown is not safe.
extern bool is_safe_to_open_file_name(const std::string &file_name);
// Orca: custom protocal support utils // Orca: custom protocal support utils
inline bool is_orca_open(const std::string& url) { return boost::starts_with(url, "orcaslicer://open"); } inline bool is_orca_open(const std::string& url) { return boost::starts_with(url, "orcaslicer://open"); }
-63
View File
@@ -4,9 +4,6 @@
#include "miniz_extension.hpp" #include "miniz_extension.hpp"
#include "Utils.hpp" #include "Utils.hpp"
#include <boost/filesystem.hpp>
#include <boost/log/trivial.hpp>
#if defined(_MSC_VER) || defined(__MINGW64__) #if defined(_MSC_VER) || defined(__MINGW64__)
#include "boost/nowide/cstdio.hpp" #include "boost/nowide/cstdio.hpp"
#endif #endif
@@ -118,66 +115,6 @@ std::string decode_archive_entry_path(mz_zip_archive *zip, const mz_zip_archive_
return decode_zip_unicode_path_extra_field(extra.substr(0, extra_size > 0 ? extra_size - 1 : 0), stat.m_filename); return decode_zip_unicode_path_extra_field(extra.substr(0, extra_size > 0 ? extra_size - 1 : 0), stat.m_filename);
} }
bool extract_archive_confined(const std::string &zip_path_utf8, const std::string &dest_dir)
{
mz_zip_archive archive;
mz_zip_zero_struct(&archive);
if (!open_zip_reader(&archive, zip_path_utf8)) {
BOOST_LOG_TRIVIAL(error) << "Unable to open zip reader for " << zip_path_utf8;
return false;
}
const mz_uint num_entries = mz_zip_reader_get_num_files(&archive);
mz_zip_archive_file_stat stat;
// Validate every entry first so an archive with a single escaping entry leaves no partial output behind.
const boost::filesystem::path root(dest_dir);
for (mz_uint i = 0; i < num_entries; ++i) {
if (mz_zip_reader_file_stat(&archive, i, &stat) && !is_path_within_root(stat.m_filename, root)) {
BOOST_LOG_TRIVIAL(error) << "Unzip: rejecting " << zip_path_utf8 << ", entry " << stat.m_filename << " resolves outside " << dest_dir;
close_zip_reader(&archive);
return false;
}
}
for (mz_uint i = 0; i < num_entries; ++i) {
if (!mz_zip_reader_file_stat(&archive, i, &stat)) {
BOOST_LOG_TRIVIAL(warning) << "Unzip: read file stat failed";
continue;
}
const std::string dest_file = dest_dir + "/" + stat.m_filename;
try {
if (stat.m_is_directory) {
const boost::filesystem::path dest_path(dest_file);
if (!boost::filesystem::exists(dest_path))
boost::filesystem::create_directories(dest_path);
continue;
}
if (stat.m_uncomp_size == 0) {
BOOST_LOG_TRIVIAL(warning) << "Unzip: invalid size for file " << stat.m_filename;
continue;
}
// Replace a symlink at the destination rather than writing through it.
const boost::filesystem::path dest_path(dest_file);
if (boost::filesystem::is_symlink(boost::filesystem::symlink_status(dest_path)))
boost::filesystem::remove(dest_path);
if (!mz_zip_reader_extract_to_file(&archive, stat.m_file_index, dest_file.c_str(), 0)) {
BOOST_LOG_TRIVIAL(error) << "Unzip: extract file " << stat.m_filename << " to dest " << dest_file << " failed";
close_zip_reader(&archive);
return false;
}
BOOST_LOG_TRIVIAL(info) << "Unzip: successfully extract file " << stat.m_file_index << " to " << dest_file;
} catch (const std::exception &e) {
close_zip_reader(&archive);
BOOST_LOG_TRIVIAL(error) << "Unzip: archive read exception: " << e.what();
return false;
}
}
close_zip_reader(&archive);
return true;
}
MZ_Archive::MZ_Archive() MZ_Archive::MZ_Archive()
{ {
mz_zip_zero_struct(&arch); mz_zip_zero_struct(&arch);
-2
View File
@@ -11,8 +11,6 @@ bool open_zip_writer(mz_zip_archive *zip, const std::string &fname_utf8);
bool close_zip_reader(mz_zip_archive *zip); bool close_zip_reader(mz_zip_archive *zip);
bool close_zip_writer(mz_zip_archive *zip); bool close_zip_writer(mz_zip_archive *zip);
std::string decode_archive_entry_path(mz_zip_archive *zip, const mz_zip_archive_file_stat &stat); std::string decode_archive_entry_path(mz_zip_archive *zip, const mz_zip_archive_file_stat &stat);
// Extracts every entry of the archive under dest_dir. Nothing is written if any entry would resolve outside dest_dir.
bool extract_archive_confined(const std::string &zip_path_utf8, const std::string &dest_dir);
class MZ_Archive { class MZ_Archive {
public: public:
+1 -39
View File
@@ -70,7 +70,6 @@
#include <boost/shared_ptr.hpp> #include <boost/shared_ptr.hpp>
#include <boost/algorithm/string/predicate.hpp> #include <boost/algorithm/string/predicate.hpp>
#include <boost/algorithm/string/case_conv.hpp>
#include <boost/filesystem.hpp> #include <boost/filesystem.hpp>
#include <boost/filesystem/path.hpp> #include <boost/filesystem/path.hpp>
#include <boost/nowide/fstream.hpp> #include <boost/nowide/fstream.hpp>
@@ -1094,9 +1093,6 @@ bool is_path_within_root(const std::string &rel_path, const boost::filesystem::p
auto is_separator = [](char c) { return c == '/' || c == '\\'; }; auto is_separator = [](char c) { return c == '/' || c == '\\'; };
if (rel_path.empty() || is_separator(rel_path.front()) || (rel_path.size() > 1 && rel_path[1] == ':')) if (rel_path.empty() || is_separator(rel_path.front()) || (rel_path.size() > 1 && rel_path[1] == ':'))
return false; return false;
// The filesystem calls stop at a NUL, so they would act on a shorter path than the one checked here.
if (rel_path.find('\0') != std::string::npos)
return false;
for (size_t start = 0; start <= rel_path.size();) { for (size_t start = 0; start <= rel_path.size();) {
size_t end = start; size_t end = start;
while (end < rel_path.size() && !is_separator(rel_path[end])) while (end < rel_path.size() && !is_separator(rel_path[end]))
@@ -1107,10 +1103,7 @@ bool is_path_within_root(const std::string &rel_path, const boost::filesystem::p
} }
// Resolve against the canonical root so a symlink inside it cannot lead back out. // Resolve against the canonical root so a symlink inside it cannot lead back out.
try { try {
std::string root_str = boost::filesystem::weakly_canonical(root).string(); const std::string root_str = boost::filesystem::weakly_canonical(root).string();
// A trailing separator on root would otherwise fail the prefix match below for every path.
while (!root_str.empty() && (root_str.back() == '/' || root_str.back() == boost::filesystem::path::preferred_separator))
root_str.pop_back();
const std::string full_str = boost::filesystem::weakly_canonical(root / rel_path).string(); const std::string full_str = boost::filesystem::weakly_canonical(root / rel_path).string();
return full_str.compare(0, root_str.size(), root_str) == 0 && return full_str.compare(0, root_str.size(), root_str) == 0 &&
(full_str.size() == root_str.size() || full_str[root_str.size()] == boost::filesystem::path::preferred_separator); (full_str.size() == root_str.size() || full_str[root_str.size()] == boost::filesystem::path::preferred_separator);
@@ -1119,37 +1112,6 @@ bool is_path_within_root(const std::string &rel_path, const boost::filesystem::p
} }
} }
bool is_symlink_target_within_root(const std::string &link_rel_path, const std::string &target, const boost::filesystem::path &root)
{
if (target.empty() || target.front() == '/' || target.front() == '\\' || (target.size() > 1 && target[1] == ':'))
return false;
// A relative target without ".." only descends from the link's directory, so no chain of such links can leave root.
const size_t sep = link_rel_path.find_last_of("/\\");
return is_path_within_root((sep == std::string::npos ? std::string() : link_rel_path.substr(0, sep + 1)) + target, root);
}
bool is_absolute_path_within_root(const boost::filesystem::path &path, const boost::filesystem::path &root)
{
const boost::filesystem::path rel = path.lexically_relative(root);
return !rel.empty() && rel != "." && is_path_within_root(rel.string(), root);
}
bool is_safe_to_open_file_name(const std::string &file_name)
{
// Formats that cannot carry macros or scripts. Legacy and OpenDocument office files, HTML and SVG are left out on purpose.
static const std::vector<std::string> safe_extensions = {
"jpg", "jpeg", "jfif", "pjpeg", "pjp", "png", "gif", "bmp", "webp", "tif", "tiff",
"pdf", "txt", "md", "csv", "docx", "xlsx", "pptx",
"stl", "obj", "3mf", "amf", "ply", "step", "stp", "iges", "igs", "dxf",
"mp4", "mov", "webm"};
// The name must end in the extension itself: Windows drops trailing dots and spaces and reads ':' as a stream separator.
const size_t dot = file_name.find_last_of('.');
if (dot == std::string::npos || file_name.find_first_of("/\\:") != std::string::npos)
return false;
const std::string extension = boost::algorithm::to_lower_copy(file_name.substr(dot + 1));
return std::find(safe_extensions.begin(), safe_extensions.end(), extension) != safe_extensions.end();
}
bool is_img_file(const std::string &path) bool is_img_file(const std::string &path)
{ {
return boost::iends_with(path, ".png") || boost::iends_with(path, ".svg"); return boost::iends_with(path, ".png") || boost::iends_with(path, ".svg");
+15
View File
@@ -158,6 +158,21 @@ enum class EGCodeExtrusionRole : uint8_t
static constexpr std::size_t GCODE_EXTRUSION_ROLES_COUNT = static_cast<std::size_t>(EGCodeExtrusionRole::COUNT); static constexpr std::size_t GCODE_EXTRUSION_ROLES_COUNT = static_cast<std::size_t>(EGCodeExtrusionRole::COUNT);
//
// What the reduced set, drawn while the user is dragging, holds in place of the full toolpaths
//
enum class EReducedDetailMode : uint8_t
{
// nothing: no reduced set is built
Off,
// only the bottom and top layers of the visible range, for a caller that draws the print
// itself some other way
EndLayersOnly,
// every role but the infill under the skins and the gap fill: what can be seen from outside
ShellOnly,
COUNT
};
// //
// Option types // Option types
// //
+13
View File
@@ -114,6 +114,19 @@ public:
// //
bool is_dim_previous_layers() const; bool is_dim_previous_layers() const;
void set_dim_previous_layers(bool value); void set_dim_previous_layers(bool value);
//
// The reduced set drawn while the user drags: what the mode keeps, and always the bottom and
// top layers of the visible range. While a mode is set it is built alongside the full set, so
// set_reduced_detail() rebuilds nothing. Ignored on the OpenGL ES path.
//
EReducedDetailMode get_reduced_detail_mode() const;
void set_reduced_detail_mode(EReducedDetailMode mode);
// Whether the shell mode hides the infill roles; off for a profile that leaves them on the
// surface, with no top or bottom shell or no walls.
bool get_reduced_detail_hide_infill() const;
void set_reduced_detail_hide_infill(bool value);
void set_reduced_detail(bool value);
bool is_reduced_detail() const;
float get_dim_previous_layers_brightness() const; float get_dim_previous_layers_brightness() const;
void set_dim_previous_layers_brightness(float value); void set_dim_previous_layers_brightness(float value);
// //
+5
View File
@@ -25,6 +25,11 @@ struct Settings
// ORCA: how bright those darkened layers are rendered, 1.0 = unchanged, 0.0 = black // ORCA: how bright those darkened layers are rendered, 1.0 = unchanged, 0.0 = black
float dim_previous_layers_brightness{ 0.4f }; float dim_previous_layers_brightness{ 0.4f };
bool spiral_vase_mode{ false }; bool spiral_vase_mode{ false };
// what the reduced set holds and whether it is drawn. Ignored on the OpenGL ES path.
EReducedDetailMode reduced_detail_mode{ EReducedDetailMode::Off };
// whether the shell mode may hide the infill roles: false when the profile leaves them on the surface
bool reduced_detail_hide_infill{ true };
bool reduced_detail{ false };
// //
// Required update flags // Required update flags
// //
+30
View File
@@ -92,6 +92,36 @@ bool Viewer::is_dim_previous_layers() const
return m_impl->is_dim_previous_layers(); return m_impl->is_dim_previous_layers();
} }
void Viewer::set_reduced_detail(bool value)
{
m_impl->set_reduced_detail(value);
}
bool Viewer::is_reduced_detail() const
{
return m_impl->is_reduced_detail();
}
EReducedDetailMode Viewer::get_reduced_detail_mode() const
{
return m_impl->get_reduced_detail_mode();
}
void Viewer::set_reduced_detail_mode(EReducedDetailMode mode)
{
m_impl->set_reduced_detail_mode(mode);
}
bool Viewer::get_reduced_detail_hide_infill() const
{
return m_impl->get_reduced_detail_hide_infill();
}
void Viewer::set_reduced_detail_hide_infill(bool value)
{
m_impl->set_reduced_detail_hide_infill(value);
}
void Viewer::set_dim_previous_layers(bool value) void Viewer::set_dim_previous_layers(bool value)
{ {
m_impl->set_dim_previous_layers(value); m_impl->set_dim_previous_layers(value);
+104 -9
View File
@@ -17,6 +17,7 @@
#include <algorithm> #include <algorithm>
#include <cmath> #include <cmath>
#include <numeric> #include <numeric>
#include <cfloat>
namespace libvgcode { namespace libvgcode {
@@ -901,9 +902,17 @@ void ViewerImpl::reset()
#else #else
m_enabled_segments_count = 0; m_enabled_segments_count = 0;
m_enabled_options_count = 0; m_enabled_options_count = 0;
m_enabled_segments_reduced_count = 0;
m_enabled_options_reduced_count = 0;
m_enabled_segments_reduced_tex_size = 0;
m_enabled_options_reduced_tex_size = 0;
m_settings_used_for_ranges = std::nullopt; m_settings_used_for_ranges = std::nullopt;
delete_textures(m_enabled_options_reduced_tex_id);
delete_buffers(m_enabled_options_reduced_buf_id);
delete_textures(m_enabled_segments_reduced_tex_id);
delete_buffers(m_enabled_segments_reduced_buf_id);
delete_textures(m_enabled_options_tex_id); delete_textures(m_enabled_options_tex_id);
delete_buffers(m_enabled_options_buf_id); delete_buffers(m_enabled_options_buf_id);
delete_textures(m_enabled_segments_tex_id); delete_textures(m_enabled_segments_tex_id);
@@ -1163,6 +1172,17 @@ void ViewerImpl::load(GCodeInputData&& gcode_data)
glsafe(glGenTextures(1, &m_enabled_options_tex_id)); glsafe(glGenTextures(1, &m_enabled_options_tex_id));
glsafe(glBindTexture(GL_TEXTURE_BUFFER, m_enabled_options_tex_id)); glsafe(glBindTexture(GL_TEXTURE_BUFFER, m_enabled_options_tex_id));
// create (but do not fill) the reduced counterparts of the two buffers above
glsafe(glGenBuffers(1, &m_enabled_segments_reduced_buf_id));
glsafe(glBindBuffer(GL_TEXTURE_BUFFER, m_enabled_segments_reduced_buf_id));
glsafe(glGenTextures(1, &m_enabled_segments_reduced_tex_id));
glsafe(glBindTexture(GL_TEXTURE_BUFFER, m_enabled_segments_reduced_tex_id));
glsafe(glGenBuffers(1, &m_enabled_options_reduced_buf_id));
glsafe(glBindBuffer(GL_TEXTURE_BUFFER, m_enabled_options_reduced_buf_id));
glsafe(glGenTextures(1, &m_enabled_options_reduced_tex_id));
glsafe(glBindTexture(GL_TEXTURE_BUFFER, m_enabled_options_reduced_tex_id));
glsafe(glBindBuffer(GL_TEXTURE_BUFFER, 0)); glsafe(glBindBuffer(GL_TEXTURE_BUFFER, 0));
glsafe(glBindTexture(GL_TEXTURE_BUFFER, old_bound_texture)); glsafe(glBindTexture(GL_TEXTURE_BUFFER, old_bound_texture));
#endif // ENABLE_OPENGL_ES #endif // ENABLE_OPENGL_ES
@@ -1174,6 +1194,18 @@ void ViewerImpl::load(GCodeInputData&& gcode_data)
update_colors(); update_colors();
} }
#ifndef ENABLE_OPENGL_ES
// the roles that lie under a skin or between walls, never seen from outside the print
static bool is_hidden_in_shell(EGCodeExtrusionRole role)
{
return role == EGCodeExtrusionRole::InternalInfill ||
role == EGCodeExtrusionRole::SolidInfill ||
role == EGCodeExtrusionRole::InternalBridgeInfill ||
role == EGCodeExtrusionRole::GapFill;
}
#endif // ENABLE_OPENGL_ES
void ViewerImpl::update_enabled_entities() void ViewerImpl::update_enabled_entities()
{ {
if (m_vertices.empty()) if (m_vertices.empty())
@@ -1181,6 +1213,17 @@ void ViewerImpl::update_enabled_entities()
std::vector<uint32_t> enabled_segments; std::vector<uint32_t> enabled_segments;
std::vector<uint32_t> enabled_options; std::vector<uint32_t> enabled_options;
#ifndef ENABLE_OPENGL_ES
// the reduced set is filled by the same walk, so switching to it costs no rebuild. Whatever the
// mode leaves out, the bottom and top layers of the visible range are kept whole: they are the
// surfaces the range cuts open
const EReducedDetailMode reduced_mode = m_settings.reduced_detail_mode;
const bool build_reduced = reduced_mode != EReducedDetailMode::Off;
const bool hide_infill = m_settings.reduced_detail_hide_infill;
std::vector<uint32_t> enabled_segments_reduced;
std::vector<uint32_t> enabled_options_reduced;
const Interval& layers_range = m_layers.get_view_range();
#endif // ENABLE_OPENGL_ES
Interval range = m_view_range.get_visible(); Interval range = m_view_range.get_visible();
// when top layer only visualization is enabled, we need to render // when top layer only visualization is enabled, we need to render
@@ -1228,6 +1271,20 @@ void ViewerImpl::update_enabled_entities()
enabled_options.push_back(static_cast<uint32_t>(i)); enabled_options.push_back(static_cast<uint32_t>(i));
else else
enabled_segments.push_back(static_cast<uint32_t>(i)); enabled_segments.push_back(static_cast<uint32_t>(i));
#ifndef ENABLE_OPENGL_ES
if (build_reduced) {
const bool end_layer = v.layer_id == layers_range[0] || v.layer_id == layers_range[1];
if (end_layer)
(v.is_option() ? enabled_options_reduced : enabled_segments_reduced).push_back(static_cast<uint32_t>(i));
else if (reduced_mode == EReducedDetailMode::ShellOnly) {
if (v.is_option())
enabled_options_reduced.push_back(static_cast<uint32_t>(i));
else if (!v.is_extrusion() || !hide_infill || !is_hidden_in_shell(v.role))
enabled_segments_reduced.push_back(static_cast<uint32_t>(i));
}
}
#endif // ENABLE_OPENGL_ES
} }
#ifdef ENABLE_OPENGL_ES #ifdef ENABLE_OPENGL_ES
@@ -1256,6 +1313,23 @@ void ViewerImpl::update_enabled_entities()
else else
glsafe(glBufferData(GL_TEXTURE_BUFFER, 0, nullptr, GL_STATIC_DRAW)); glsafe(glBufferData(GL_TEXTURE_BUFFER, 0, nullptr, GL_STATIC_DRAW));
m_enabled_segments_reduced_count = enabled_segments_reduced.size();
m_enabled_options_reduced_count = enabled_options_reduced.size();
m_enabled_segments_reduced_tex_size = enabled_segments_reduced.size() * sizeof(uint32_t);
m_enabled_options_reduced_tex_size = enabled_options_reduced.size() * sizeof(uint32_t);
// uploaded even when nothing was built, so that the last reduced set is released as soon as
// the preference is switched off
assert(m_enabled_segments_reduced_buf_id > 0);
glsafe(glBindBuffer(GL_TEXTURE_BUFFER, m_enabled_segments_reduced_buf_id));
glsafe(glBufferData(GL_TEXTURE_BUFFER, m_enabled_segments_reduced_tex_size,
enabled_segments_reduced.empty() ? nullptr : enabled_segments_reduced.data(), GL_STATIC_DRAW));
assert(m_enabled_options_reduced_buf_id > 0);
glsafe(glBindBuffer(GL_TEXTURE_BUFFER, m_enabled_options_reduced_buf_id));
glsafe(glBufferData(GL_TEXTURE_BUFFER, m_enabled_options_reduced_tex_size,
enabled_options_reduced.empty() ? nullptr : enabled_options_reduced.data(), GL_STATIC_DRAW));
glsafe(glBindBuffer(GL_TEXTURE_BUFFER, 0)); glsafe(glBindBuffer(GL_TEXTURE_BUFFER, 0));
#endif // ENABLE_OPENGL_ES #endif // ENABLE_OPENGL_ES
@@ -1463,6 +1537,23 @@ void ViewerImpl::toggle_top_layer_only_view_range()
update_colors_texture(); update_colors_texture();
} }
// Both decide which vertices land in the reduced set, so the sets are rebuilt.
void ViewerImpl::set_reduced_detail_mode(EReducedDetailMode mode)
{
if (m_settings.reduced_detail_mode == mode)
return;
m_settings.reduced_detail_mode = mode;
m_settings.update_enabled_entities = true;
}
void ViewerImpl::set_reduced_detail_hide_infill(bool value)
{
if (m_settings.reduced_detail_hide_infill == value)
return;
m_settings.reduced_detail_hide_infill = value;
m_settings.update_enabled_entities = true;
}
// ORCA: enable/disable darkening of the layers the layer slider is not scrubbed to // ORCA: enable/disable darkening of the layers the layer slider is not scrubbed to
void ViewerImpl::set_dim_previous_layers(bool value) void ViewerImpl::set_dim_previous_layers(bool value)
{ {
@@ -1856,6 +1947,8 @@ size_t ViewerImpl::get_used_gpu_memory() const
ret += m_colors_tex_size; ret += m_colors_tex_size;
ret += m_enabled_segments_tex_size; ret += m_enabled_segments_tex_size;
ret += m_enabled_options_tex_size; ret += m_enabled_options_tex_size;
ret += m_enabled_segments_reduced_tex_size;
ret += m_enabled_options_reduced_tex_size;
#endif // ENABLE_OPENGL_ES #endif // ENABLE_OPENGL_ES
return ret; return ret;
} }
@@ -2072,7 +2165,8 @@ void ViewerImpl::render_segments(const Mat4x4& view_matrix, const Mat4x4& projec
#ifdef ENABLE_OPENGL_ES #ifdef ENABLE_OPENGL_ES
if (m_texture_data.get_enabled_segments_count() == 0) if (m_texture_data.get_enabled_segments_count() == 0)
#else #else
if (m_enabled_segments_count == 0) const ActiveSet segments = active_segments();
if (segments.count == 0)
#endif // ENABLE_OPENGL_ES #endif // ENABLE_OPENGL_ES
return; return;
@@ -2099,7 +2193,7 @@ void ViewerImpl::render_segments(const Mat4x4& view_matrix, const Mat4x4& projec
const bool top_down = !m_rendering_shadow_casters && view_matrix[10] > 0.0f; const bool top_down = !m_rendering_shadow_casters && view_matrix[10] > 0.0f;
glsafe(glUniform1i(m_uni_segments_reverse_order_id, top_down ? 1 : 0)); glsafe(glUniform1i(m_uni_segments_reverse_order_id, top_down ? 1 : 0));
#ifndef ENABLE_OPENGL_ES #ifndef ENABLE_OPENGL_ES
glsafe(glUniform1i(m_uni_segments_instance_count_id, static_cast<int>(m_enabled_segments_count))); glsafe(glUniform1i(m_uni_segments_instance_count_id, static_cast<int>(segments.count)));
#endif // ENABLE_OPENGL_ES #endif // ENABLE_OPENGL_ES
// ORCA: realistic view. The depth pass writes the map it would otherwise read, so it shades // ORCA: realistic view. The depth pass writes the map it would otherwise read, so it shades
// with the lookup off. // with the lookup off.
@@ -2149,10 +2243,10 @@ void ViewerImpl::render_segments(const Mat4x4& view_matrix, const Mat4x4& projec
glsafe(glBindTexture(GL_TEXTURE_BUFFER, m_colors_tex_id)); glsafe(glBindTexture(GL_TEXTURE_BUFFER, m_colors_tex_id));
glsafe(glTexBuffer(GL_TEXTURE_BUFFER, GL_R32F, m_colors_buf_id)); glsafe(glTexBuffer(GL_TEXTURE_BUFFER, GL_R32F, m_colors_buf_id));
glsafe(glActiveTexture(GL_TEXTURE3)); glsafe(glActiveTexture(GL_TEXTURE3));
glsafe(glBindTexture(GL_TEXTURE_BUFFER, m_enabled_segments_tex_id)); glsafe(glBindTexture(GL_TEXTURE_BUFFER, segments.tex_id));
glsafe(glTexBuffer(GL_TEXTURE_BUFFER, GL_R32UI, m_enabled_segments_buf_id)); glsafe(glTexBuffer(GL_TEXTURE_BUFFER, GL_R32UI, segments.buf_id));
m_segment_template.render(m_enabled_segments_count); m_segment_template.render(segments.count);
#endif // ENABLE_OPENGL_ES #endif // ENABLE_OPENGL_ES
if (curr_cull_face) if (curr_cull_face)
@@ -2178,7 +2272,8 @@ void ViewerImpl::render_options(const Mat4x4& view_matrix, const Mat4x4& project
#ifdef ENABLE_OPENGL_ES #ifdef ENABLE_OPENGL_ES
if (m_texture_data.get_enabled_options_count() == 0) if (m_texture_data.get_enabled_options_count() == 0)
#else #else
if (m_enabled_options_count == 0) const ActiveSet options = active_options();
if (options.count == 0)
#endif // ENABLE_OPENGL_ES #endif // ENABLE_OPENGL_ES
return; return;
@@ -2236,10 +2331,10 @@ void ViewerImpl::render_options(const Mat4x4& view_matrix, const Mat4x4& project
glsafe(glBindTexture(GL_TEXTURE_BUFFER, m_colors_tex_id)); glsafe(glBindTexture(GL_TEXTURE_BUFFER, m_colors_tex_id));
glsafe(glTexBuffer(GL_TEXTURE_BUFFER, GL_R32F, m_colors_buf_id)); glsafe(glTexBuffer(GL_TEXTURE_BUFFER, GL_R32F, m_colors_buf_id));
glsafe(glActiveTexture(GL_TEXTURE3)); glsafe(glActiveTexture(GL_TEXTURE3));
glsafe(glBindTexture(GL_TEXTURE_BUFFER, m_enabled_options_tex_id)); glsafe(glBindTexture(GL_TEXTURE_BUFFER, options.tex_id));
glsafe(glTexBuffer(GL_TEXTURE_BUFFER, GL_R32UI, m_enabled_options_buf_id)); glsafe(glTexBuffer(GL_TEXTURE_BUFFER, GL_R32UI, options.buf_id));
m_option_template.render(m_enabled_options_count); m_option_template.render(options.count);
#endif // ENABLE_OPENGL_ES #endif // ENABLE_OPENGL_ES
if (!curr_cull_face) if (!curr_cull_face)
+45
View File
@@ -109,6 +109,21 @@ public:
// 0.0 = black // 0.0 = black
bool is_dim_previous_layers() const { return m_settings.dim_previous_layers; } bool is_dim_previous_layers() const { return m_settings.dim_previous_layers; }
void set_dim_previous_layers(bool value); void set_dim_previous_layers(bool value);
//
// Draw from the reduced set; it is already built, so this is just a buffer binding.
//
void set_reduced_detail(bool value) {
#ifdef ENABLE_OPENGL_ES
// no reduced set is built on OpenGL ES
value = false;
#endif // ENABLE_OPENGL_ES
m_settings.reduced_detail = value;
}
bool is_reduced_detail() const { return m_settings.reduced_detail; }
EReducedDetailMode get_reduced_detail_mode() const { return m_settings.reduced_detail_mode; }
void set_reduced_detail_mode(EReducedDetailMode mode);
bool get_reduced_detail_hide_infill() const { return m_settings.reduced_detail_hide_infill; }
void set_reduced_detail_hide_infill(bool value);
float get_dim_previous_layers_brightness() const { return m_settings.dim_previous_layers_brightness; } float get_dim_previous_layers_brightness() const { return m_settings.dim_previous_layers_brightness; }
void set_dim_previous_layers_brightness(float value); void set_dim_previous_layers_brightness(float value);
@@ -501,6 +516,15 @@ private:
unsigned int m_enabled_options_tex_id{ 0 }; unsigned int m_enabled_options_tex_id{ 0 };
size_t m_enabled_options_count{ 0 }; size_t m_enabled_options_count{ 0 };
// //
// OpenGL buffers to store the reduced set drawn while Settings::reduced_detail is set
//
unsigned int m_enabled_segments_reduced_buf_id{ 0 };
unsigned int m_enabled_segments_reduced_tex_id{ 0 };
size_t m_enabled_segments_reduced_count{ 0 };
unsigned int m_enabled_options_reduced_buf_id{ 0 };
unsigned int m_enabled_options_reduced_tex_id{ 0 };
size_t m_enabled_options_reduced_count{ 0 };
//
// Caches for size of data sent to gpu, in bytes // Caches for size of data sent to gpu, in bytes
// //
size_t m_positions_tex_size{ 0 }; size_t m_positions_tex_size{ 0 };
@@ -508,6 +532,27 @@ private:
size_t m_colors_tex_size{ 0 }; size_t m_colors_tex_size{ 0 };
size_t m_enabled_segments_tex_size{ 0 }; size_t m_enabled_segments_tex_size{ 0 };
size_t m_enabled_options_tex_size{ 0 }; size_t m_enabled_options_tex_size{ 0 };
size_t m_enabled_segments_reduced_tex_size{ 0 };
size_t m_enabled_options_reduced_tex_size{ 0 };
// The set the next draw reads from: the reduced one while dragging, if one is built.
bool use_reduced_set() const { return m_settings.reduced_detail && m_settings.reduced_detail_mode != EReducedDetailMode::Off; }
struct ActiveSet
{
size_t count{ 0 };
unsigned int buf_id{ 0 };
unsigned int tex_id{ 0 };
};
ActiveSet active_segments() const {
if (use_reduced_set())
return { m_enabled_segments_reduced_count, m_enabled_segments_reduced_buf_id, m_enabled_segments_reduced_tex_id };
return { m_enabled_segments_count, m_enabled_segments_buf_id, m_enabled_segments_tex_id };
}
ActiveSet active_options() const {
if (use_reduced_set())
return { m_enabled_options_reduced_count, m_enabled_options_reduced_buf_id, m_enabled_options_reduced_tex_id };
return { m_enabled_options_count, m_enabled_options_buf_id, m_enabled_options_tex_id };
}
#endif // ENABLE_OPENGL_ES #endif // ENABLE_OPENGL_ES
// //
+7 -2
View File
@@ -1019,9 +1019,14 @@ if (UNIX AND NOT APPLE)
find_package(GTK${SLIC3R_GTK} REQUIRED) find_package(GTK${SLIC3R_GTK} REQUIRED)
pkg_check_modules(LIBSECRET REQUIRED libsecret-1) pkg_check_modules(LIBSECRET REQUIRED libsecret-1)
pkg_check_modules(webkit2gtk REQUIRED webkit2gtk-4.1) pkg_check_modules(webkit2gtk REQUIRED webkit2gtk-4.1)
find_package(X11 REQUIRED) if (FLATPAK)
# I don't know why this is needed, but for whatever reason slic3r isn't
# linking to X11 and webkit2gtk. force it.
find_package(X11 REQUIRED)
target_link_libraries(libslic3r_gui ${X11_LIBRARIES} ${webkit2gtk_LIBRARIES})
endif()
target_include_directories(libslic3r_gui SYSTEM PRIVATE ${GTK${SLIC3R_GTK}_INCLUDE_DIRS} ${LIBSECRET_INCLUDE_DIRS} ${webkit2gtk_INCLUDE_DIRS}) target_include_directories(libslic3r_gui SYSTEM PRIVATE ${GTK${SLIC3R_GTK}_INCLUDE_DIRS} ${LIBSECRET_INCLUDE_DIRS} ${webkit2gtk_INCLUDE_DIRS})
target_link_libraries(libslic3r_gui ${GTK${SLIC3R_GTK}_LIBRARIES} fontconfig ${LIBSECRET_LIBRARIES} ${webkit2gtk_LIBRARIES} ${X11_LIBRARIES}) target_link_libraries(libslic3r_gui ${GTK${SLIC3R_GTK}_LIBRARIES} fontconfig ${LIBSECRET_LIBRARIES})
# Propagate GDK backend detection results as compile definitions so that # Propagate GDK backend detection results as compile definitions so that
# LinuxDisplayBackend.cpp can include the right GDK headers. # LinuxDisplayBackend.cpp can include the right GDK headers.
+1 -1
View File
@@ -428,7 +428,7 @@ void AuFile::on_dclick(wxMouseEvent &evt)
if (m_type == AddFileButton) if (m_type == AddFileButton)
return; return;
else else
desktop_open_project_attachment(this, m_file_path); wxLaunchDefaultApplication(m_file_path.wstring(), 0);
} }
void AuFile::on_mouse_left_up(wxMouseEvent &evt) void AuFile::on_mouse_left_up(wxMouseEvent &evt)
+6 -8
View File
@@ -171,16 +171,14 @@ void ConfigManipulation::check_adaptive_pressure_advance_model(DynamicPrintConfi
return; return;
const auto* model = config->option<ConfigOptionStrings>("adaptive_pressure_advance_model"); const auto* model = config->option<ConfigOptionStrings>("adaptive_pressure_advance_model");
if (model == nullptr) if (model == nullptr || model->values.empty())
return; return;
// Each extruder variant holds its own model. std::string raw_model;
std::string error; for (const std::string& chunk : model->values)
for (const std::string& variant_model : model->values) { raw_model += chunk;
error = AdaptivePAProcessor::validate_adaptive_pa_model(variant_model);
if (!error.empty()) std::string error = AdaptivePAProcessor::validate_adaptive_pa_model(raw_model);
break;
}
if (!error.empty()) { if (!error.empty()) {
wxString msg_text = _L("Adaptive Pressure Advance model validation failed:\n"); wxString msg_text = _L("Adaptive Pressure Advance model validation failed:\n");
msg_text += from_u8(error); msg_text += from_u8(error);
+146 -1
View File
@@ -1267,6 +1267,8 @@ void GCodeViewer::load_as_gcode(const GCodeProcessorResult& gcode_result, const
if (current_top_layer_only != required_top_layer_only) if (current_top_layer_only != required_top_layer_only)
m_viewer.toggle_top_layer_only_view_range(); m_viewer.toggle_top_layer_only_view_range();
read_reduced_detail_preferences();
// ORCA: darken the layers the preview layer slider is not scrubbed to // ORCA: darken the layers the preview layer slider is not scrubbed to
m_viewer.set_dim_previous_layers(get_app_config()->get_bool("preview_dim_previous_layers")); m_viewer.set_dim_previous_layers(get_app_config()->get_bool("preview_dim_previous_layers"));
m_viewer.set_dim_previous_layers_brightness(0.01f * std::stoi(get_app_config()->get("preview_dim_previous_layers_brightness"))); m_viewer.set_dim_previous_layers_brightness(0.01f * std::stoi(get_app_config()->get("preview_dim_previous_layers_brightness")));
@@ -1491,6 +1493,10 @@ void GCodeViewer::load_as_gcode(const GCodeProcessorResult& gcode_result, const
// BBS: data for rendering color arrangement recommendation // BBS: data for rendering color arrangement recommendation
m_nozzle_nums = print.config().option<ConfigOptionFloats>("nozzle_diameter")->values.size(); m_nozzle_nums = print.config().option<ConfigOptionFloats>("nozzle_diameter")->values.size();
// the shell drag mode hides the infill only where the profile covers it: with no top or bottom
// shell, or no walls, the infill is the surface. Per-object settings are not consulted.
const PrintRegionConfig& region = print.default_region_config();
m_viewer.set_reduced_detail_hide_infill(region.top_shell_layers.value > 0 && region.bottom_shell_layers.value > 0 && region.wall_loops.value > 0);
// Orca hack: Hide filament group for non-bbl printers // Orca hack: Hide filament group for non-bbl printers
if (!print.is_BBL_printer()) m_nozzle_nums = 1; if (!print.is_BBL_printer()) m_nozzle_nums = 1;
std::vector<int> filament_maps = print.get_filament_maps(); std::vector<int> filament_maps = print.get_filament_maps();
@@ -1661,6 +1667,7 @@ void GCodeViewer::reset_shell()
{ {
m_shells.volumes.clear(); m_shells.volumes.clear();
m_shells.print_id = -1; m_shells.print_id = -1;
m_shells.with_wipe_tower = false;
m_shell_bounding_box = BoundingBoxf3(); m_shell_bounding_box = BoundingBoxf3();
} }
@@ -1697,7 +1704,12 @@ void GCodeViewer::reset()
void GCodeViewer::render_scene(int canvas_width, int canvas_height) void GCodeViewer::render_scene(int canvas_width, int canvas_height)
{ {
glsafe(::glEnable(GL_DEPTH_TEST)); glsafe(::glEnable(GL_DEPTH_TEST));
render_shells(canvas_width, canvas_height); // while dragging in the solid model mode, the objects stand in for their toolpaths, cut to the
// visible layer range; the toolpath set then holds only the range's bottom and top layers
if (m_viewer.is_reduced_detail() && solid_model_enabled())
render_solid_model(canvas_width, canvas_height);
else
render_shells(canvas_width, canvas_height);
if (m_viewer.get_extrusion_roles_count() == 0) if (m_viewer.get_extrusion_roles_count() == 0)
return; return;
@@ -2020,6 +2032,56 @@ void GCodeViewer::update_layers_slider_mode()
// TODO m_layers_slider->SetModeAndOnlyExtruder(one_extruder_printed_model, only_extruder); // TODO m_layers_slider->SetModeAndOnlyExtruder(one_extruder_printed_model, only_extruder);
} }
void GCodeViewer::set_interacting(bool interacting)
{
// with no shells to stand in for the toolpaths, the solid model would leave only the end layers
const bool usable = !solid_model_enabled() || !m_shells.volumes.empty();
m_viewer.set_reduced_detail(interacting && usable);
}
void GCodeViewer::read_reduced_detail_preferences()
{
m_reduced_detail_mode = reduced_detail_mode_from_string(get_app_config()->get("preview_reduced_detail_mode"));
apply_reduced_detail_settings();
}
void GCodeViewer::apply_reduced_detail_settings()
{
m_viewer.set_reduced_detail_mode(m_reduced_detail_mode);
}
void GCodeViewer::set_reduced_detail_mode(const std::string& mode)
{
const bool was_solid = solid_model_enabled();
m_reduced_detail_mode = reduced_detail_mode_from_string(mode);
apply_reduced_detail_settings();
reload_shells_if_solid_model_changed(was_solid);
}
libvgcode::EReducedDetailMode GCodeViewer::reduced_detail_mode_from_string(const std::string& mode)
{
if (mode == "solid")
return libvgcode::EReducedDetailMode::EndLayersOnly;
if (mode == "shell")
return libvgcode::EReducedDetailMode::ShellOnly;
return libvgcode::EReducedDetailMode::Off;
}
void GCodeViewer::reload_shells_if_solid_model_changed(bool was_enabled)
{
if (was_enabled == solid_model_enabled() || m_shells.print_id == -1)
return;
// only the prime tower comes and goes with the mode: a full reload would drop the shells
// whenever the print has moved on since they were loaded, leaving the solid model nothing to draw
if (wxGetApp().plater() == nullptr)
return;
// the shells are loaded from the current plate's print, which is not the plater's own
const Print& print = wxGetApp().plater()->get_partplate_list().get_current_fff_print();
if (static_cast<int>(print.id().id) != m_shells.print_id)
return;
update_shell_wipe_tower(print, m_gl_data_initialized);
}
void GCodeViewer::set_layers_z_range(const std::array<unsigned int, 2>& layers_z_range) void GCodeViewer::set_layers_z_range(const std::array<unsigned int, 2>& layers_z_range)
{ {
m_viewer.set_layers_view_range(static_cast<uint32_t>(layers_z_range[0]), static_cast<uint32_t>(layers_z_range[1])); m_viewer.set_layers_view_range(static_cast<uint32_t>(layers_z_range[0]), static_cast<uint32_t>(layers_z_range[1]));
@@ -2344,7 +2406,11 @@ void GCodeViewer::export_toolpaths_to_obj(const char* filename) const
void GCodeViewer::load_shells(const Print& print, bool initialized, bool force_previewing) void GCodeViewer::load_shells(const Print& print, bool initialized, bool force_previewing)
{ {
BOOST_LOG_TRIVIAL(info) << __FUNCTION__ << boost::format(": initialized=%1%, force_previewing=%2%")%initialized %force_previewing; BOOST_LOG_TRIVIAL(info) << __FUNCTION__ << boost::format(": initialized=%1%, force_previewing=%2%")%initialized %force_previewing;
// the shells can load before the first G-code does, so the preferences are read here as well
read_reduced_detail_preferences();
if ((print.id().id == m_shells.print_id)&&(print.get_modified_count() == m_shells.print_modify_count)) { if ((print.id().id == m_shells.print_id)&&(print.get_modified_count() == m_shells.print_modify_count)) {
// the prime tower comes and goes on its own, without reloading the objects
update_shell_wipe_tower(print, initialized);
//BBS: update force previewing logic //BBS: update force previewing logic
if (force_previewing) if (force_previewing)
m_shells.previewing = force_previewing; m_shells.previewing = force_previewing;
@@ -2453,10 +2519,45 @@ void GCodeViewer::load_shells(const Print& print, bool initialized, bool force_p
m_shells.print_id = print.id().id; m_shells.print_id = print.id().id;
m_shells.print_modify_count = print.get_modified_count(); m_shells.print_modify_count = print.get_modified_count();
m_shells.previewing = true; m_shells.previewing = true;
update_shell_wipe_tower(print, initialized);
BOOST_LOG_TRIVIAL(debug) << __FUNCTION__ << boost::format(": shell loaded, id change to %1%, modify_count %2%, object count %3%, glvolume count %4%") BOOST_LOG_TRIVIAL(debug) << __FUNCTION__ << boost::format(": shell loaded, id change to %1%, modify_count %2%, object count %3%, glvolume count %4%")
% m_shells.print_id % m_shells.print_modify_count % object_count %m_shells.volumes.volumes.size(); % m_shells.print_id % m_shells.print_modify_count % object_count %m_shells.volumes.volumes.size();
} }
// The prime tower as it was sliced, so that the solid model shows what the print shows. It keeps its
// opaque colour, so it never appears among the translucent shells, and stays out of their bounding box.
void GCodeViewer::update_shell_wipe_tower(const Print& print, bool initialized)
{
const bool with_wipe_tower = solid_model_enabled() && print.is_step_done(psWipeTower) && print.wipe_tower_data().wipe_tower_mesh_data;
if (with_wipe_tower == m_shells.with_wipe_tower)
return;
m_shells.with_wipe_tower = with_wipe_tower;
GLVolumePtrs& volumes = m_shells.volumes.volumes;
if (!with_wipe_tower) {
volumes.erase(std::remove_if(volumes.begin(), volumes.end(), [](GLVolume* volume) {
if (!volume->is_wipe_tower)
return false;
delete volume;
return true;
}), volumes.end());
return;
}
const PrintConfig& config = print.config();
const int plate_idx = print.get_plate_index();
const Vec3d plate_origin = print.get_plate_origin();
const float x = static_cast<float>(config.wipe_tower_x.get_at(plate_idx) + plate_origin.x());
const float y = static_cast<float>(config.wipe_tower_y.get_at(plate_idx) + plate_origin.y());
const size_t first_new = volumes.size();
m_shells.volumes.load_real_wipe_tower_preview(1000 + plate_idx, x, y, print.wipe_tower_data().wipe_tower_mesh_data->real_wipe_tower_mesh,
print.wipe_tower_data().wipe_tower_mesh_data->real_brim_mesh, true,
static_cast<float>(config.wipe_tower_rotation_angle), false, initialized);
for (size_t i = first_new; i < volumes.size(); ++i) {
volumes[i]->zoom_to_volumes = false;
volumes[i]->force_native_color = true;
volumes[i]->set_render_color();
}
}
void GCodeViewer::render_toolpaths() void GCodeViewer::render_toolpaths()
{ {
const Camera& camera = wxGetApp().plater()->get_camera(); const Camera& camera = wxGetApp().plater()->get_camera();
@@ -2657,6 +2758,50 @@ void GCodeViewer::render_shells(int canvas_width, int canvas_height)
glsafe(::glDepthMask(GL_TRUE)); glsafe(::glDepthMask(GL_TRUE));
} }
// The sliced objects and the prime tower drawn opaque, in their filament colours, cut to the
// visible layer range by the shader's z range. The toolpaths of the range's bottom and top layers
// are drawn afterwards and cap the cut.
void GCodeViewer::render_solid_model(int canvas_width, int canvas_height)
{
if (m_shells.volumes.empty())
return;
// gouraud_light has no z range, so it could not cut the model
GLShaderProgram* shader = wxGetApp().get_shader("gouraud");
if (shader == nullptr)
return;
const libvgcode::Interval& layers = m_viewer.get_layers_view_range();
const float z_top = m_viewer.get_layer_z(layers[1]) - m_z_offset + 0.001f;
const float z_bottom = (layers[0] > 0) ? m_viewer.get_layer_z(layers[0] - 1) - m_z_offset - 0.001f : -FLT_MAX;
std::vector<float> alphas;
alphas.reserve(m_shells.volumes.volumes.size());
for (GLVolume* volume : m_shells.volumes.volumes) {
alphas.push_back(volume->color.a());
volume->color.a(1.0f);
volume->set_render_color();
}
m_shells.volumes.set_z_range(z_bottom, z_top);
// gouraud also clips by this plane, which nothing else sets on the shells
m_shells.volumes.set_clipping_plane(ClippingPlane::ClipsNothing().get_data());
shader->start_using();
// the 3D view leaves its shadow settings on the shared program
shader->set_uniform("shadow_intensity", 0.0f);
const Camera& camera = wxGetApp().plater()->get_camera();
shader->set_uniform("z_far", camera.get_far_z());
shader->set_uniform("z_near", camera.get_near_z());
m_shells.volumes.render(GLVolumeCollection::ERenderType::Opaque, false, camera.get_view_matrix(), camera.get_projection_matrix(), {canvas_width, canvas_height});
shader->stop_using();
m_shells.volumes.set_z_range(-FLT_MAX, FLT_MAX);
size_t k = 0;
for (GLVolume* volume : m_shells.volumes.volumes) {
volume->color.a(alphas[k++]);
volume->set_render_color();
}
}
//BBS //BBS
void GCodeViewer::render_all_plates_stats(const std::vector<const GCodeProcessorResult*>& gcode_result_list, bool show /*= true*/) const { void GCodeViewer::render_all_plates_stats(const std::vector<const GCodeProcessorResult*>& gcode_result_list, bool show /*= true*/) const {
if (!show) if (!show)
+22 -1
View File
@@ -174,6 +174,8 @@ public:
int print_id{-1}; int print_id{-1};
int print_modify_count{-1}; int print_modify_count{-1};
bool previewing{false}; bool previewing{false};
// the prime tower was loaded with the objects, for the solid model
bool with_wipe_tower{false};
}; };
//BBS //BBS
ConflictResultOpt m_conflict_result; ConflictResultOpt m_conflict_result;
@@ -234,6 +236,17 @@ private:
bool m_legend_visible{ true }; bool m_legend_visible{ true };
bool m_legend_enabled{ true }; bool m_legend_enabled{ true };
// the reduced-detail preferences, pushed to libvgcode by apply_reduced_detail_settings()
libvgcode::EReducedDetailMode m_reduced_detail_mode{ libvgcode::EReducedDetailMode::Off };
void read_reduced_detail_preferences();
void apply_reduced_detail_settings();
static libvgcode::EReducedDetailMode reduced_detail_mode_from_string(const std::string& mode);
// in the solid model mode, the sliced objects are drawn as solid shapes instead of toolpaths
bool solid_model_enabled() const { return m_reduced_detail_mode == libvgcode::EReducedDetailMode::EndLayersOnly; }
void render_solid_model(int canvas_width, int canvas_height);
// the prime tower is only among the shells for the solid model, so it is added or removed when that changes
void reload_shells_if_solid_model_changed(bool was_enabled);
void update_shell_wipe_tower(const Print& print, bool initialized);
float m_legend_height; float m_legend_height;
PrintEstimatedStatistics m_print_statistics; PrintEstimatedStatistics m_print_statistics;
@@ -291,7 +304,7 @@ public:
// void _render_calibration_thumbnail_internal(ThumbnailData& thumbnail_data, const ThumbnailsParams& thumbnail_params, PartPlateList& partplate_list, OpenGLManager& opengl_manager); // void _render_calibration_thumbnail_internal(ThumbnailData& thumbnail_data, const ThumbnailsParams& thumbnail_params, PartPlateList& partplate_list, OpenGLManager& opengl_manager);
// void _render_calibration_thumbnail_framebuffer(ThumbnailData& thumbnail_data, unsigned int w, unsigned int h, const ThumbnailsParams& thumbnail_params, PartPlateList& partplate_list, OpenGLManager& opengl_manager); // void _render_calibration_thumbnail_framebuffer(ThumbnailData& thumbnail_data, unsigned int w, unsigned int h, const ThumbnailsParams& thumbnail_params, PartPlateList& partplate_list, OpenGLManager& opengl_manager);
// void render_calibration_thumbnail(ThumbnailData& thumbnail_data, unsigned int w, unsigned int h, const ThumbnailsParams& thumbnail_params, PartPlateList& partplate_list, OpenGLManager& opengl_manager); // void render_calibration_thumbnail(ThumbnailData& thumbnail_data, unsigned int w, unsigned int h, const ThumbnailsParams& thumbnail_params, PartPlateList& partplate_list, OpenGLManager& opengl_manager);
bool has_data() const { return !m_viewer.get_extrusion_roles().empty(); } bool has_data() const { return m_viewer.get_extrusion_roles_count() != 0; }
bool can_export_toolpaths() const; bool can_export_toolpaths() const;
std::vector<int> get_plater_extruder(); std::vector<int> get_plater_extruder();
@@ -363,6 +376,14 @@ public:
void set_dim_previous_layers_brightness(float value) { m_viewer.set_dim_previous_layers_brightness(value); } void set_dim_previous_layers_brightness(float value) { m_viewer.set_dim_previous_layers_brightness(value); }
float get_dim_previous_layers_brightness() const { return m_viewer.get_dim_previous_layers_brightness(); } float get_dim_previous_layers_brightness() const { return m_viewer.get_dim_previous_layers_brightness(); }
// whether the mouse is holding either slider's handle
bool is_slider_dragging() const { return m_layers_slider->is_dragging() || m_moves_slider->is_dragging(); }
// while the user drags the camera or a slider, draw the reduced set, if the preference asks for one
void set_interacting(bool interacting);
bool is_reduced_detail() const { return m_viewer.is_reduced_detail(); }
// the preference's string value: "off", "solid" or "shell"
void set_reduced_detail_mode(const std::string& mode);
void set_layers_z_range(const std::array<unsigned int, 2>& layers_z_range); void set_layers_z_range(const std::array<unsigned int, 2>& layers_z_range);
bool is_legend_shown() const { return m_legend_visible && m_legend_enabled; } bool is_legend_shown() const { return m_legend_visible && m_legend_enabled; }
+64 -4
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@@ -2084,6 +2084,11 @@ void GLCanvas3D::_render_frame(bool scene_dirty, bool only_init)
const bool overlay_tick = m_fps_overlay_tick; const bool overlay_tick = m_fps_overlay_tick;
m_fps_overlay_tick = false; m_fps_overlay_tick = false;
// Whether the preview draws its reduced set is decided before the cached scene is consulted,
// since switching changes what the scene pass draws.
if (m_canvas_type == ECanvasType::CanvasPreview && m_render_preview && m_gcode_viewer.has_data() && _update_preview_interaction())
scene_dirty = true;
// An overlay-only frame reuses the last scene pass. The overlay is rebuilt either way, and drawn // An overlay-only frame reuses the last scene pass. The overlay is rebuilt either way, and drawn
// below once it is known whether the frame differs from the one on screen. // below once it is known whether the frame differs from the one on screen.
const bool reuse_scene = !scene_dirty && _can_reuse_cached_scene(camera); const bool reuse_scene = !scene_dirty && _can_reuse_cached_scene(camera);
@@ -3277,9 +3282,16 @@ void GLCanvas3D::bind_event_handlers()
if (m_selection_edit.kind != SelectionEdit::None) if (m_selection_edit.kind != SelectionEdit::None)
finish_selection_edit(); finish_selection_edit();
ImGui::SetWindowFocus(nullptr); ImGui::SetWindowFocus(nullptr);
// a drag cut short never sees its button release, which would leave the reduced set drawn
if (m_canvas_type == CanvasPreview && m_mouse.dragging && m_gcode_viewer.is_reduced_detail())
mouse_up_cleanup();
render(); render();
evt.Skip(); evt.Skip();
}); });
m_canvas->Bind(wxEVT_MOUSE_CAPTURE_LOST, [this](wxMouseCaptureLostEvent&) {
if (m_canvas_type == CanvasPreview && m_mouse.dragging && m_gcode_viewer.is_reduced_detail())
mouse_up_cleanup();
});
m_event_handlers_bound = true; m_event_handlers_bound = true;
m_canvas->Bind(wxEVT_GESTURE_PAN, &GLCanvas3D::on_gesture, this); m_canvas->Bind(wxEVT_GESTURE_PAN, &GLCanvas3D::on_gesture, this);
@@ -3355,6 +3367,17 @@ void GLCanvas3D::on_idle(wxIdleEvent& evt)
m_overlay_dirty |= imgui_requires_extra_frame; m_overlay_dirty |= imgui_requires_extra_frame;
#endif // ENABLE_ENHANCED_IMGUI_SLIDER_FLOAT #endif // ENABLE_ENHANCED_IMGUI_SLIDER_FLOAT
m_dirty |= GLTexture::Compressor::has_compressed_texture_to_refresh(); m_dirty |= GLTexture::Compressor::has_compressed_texture_to_refresh();
// the render timer only wakes the idle loop; the frame that puts the preview's toolpaths back
// after a wheel burst has to be asked for here, once the settle time is really up
if (m_preview_settle_pending) {
const auto now = std::chrono::steady_clock::now();
if (now >= m_preview_interaction_until) {
m_preview_settle_pending = false;
m_dirty = true;
}
else // the timer fired early
schedule_extra_frame(static_cast<int>(std::chrono::duration_cast<std::chrono::milliseconds>(m_preview_interaction_until - now).count()) + 1);
}
if (!m_dirty && !m_overlay_dirty) if (!m_dirty && !m_overlay_dirty)
return; return;
@@ -3885,6 +3908,10 @@ void GLCanvas3D::on_mouse_wheel(wxMouseEvent& evt)
return; return;
} }
// only a wheel the panels did not take moves the camera
if (m_canvas_type == CanvasPreview)
note_preview_interaction();
#ifdef __WXMSW__ #ifdef __WXMSW__
// For some reason the Idle event is not being generated after the mouse scroll event in case of scrolling with the two fingers on the touch pad, // For some reason the Idle event is not being generated after the mouse scroll event in case of scrolling with the two fingers on the touch pad,
// if the event is not allowed to be passed further. // if the event is not allowed to be passed further.
@@ -3985,6 +4012,11 @@ void GLCanvas3D::on_fps_overlay_timer(wxTimerEvent& evt)
wxWakeUpIdle(); wxWakeUpIdle();
} }
void GLCanvas3D::note_preview_interaction()
{
m_preview_interaction_until = std::chrono::steady_clock::now() + std::chrono::milliseconds(150);
}
void GLCanvas3D::schedule_extra_frame(int milliseconds) void GLCanvas3D::schedule_extra_frame(int milliseconds)
{ {
// Schedule idle event right now // Schedule idle event right now
@@ -5631,6 +5663,9 @@ void GLCanvas3D::mouse_up_cleanup()
m_mouse.ignore_left_up = false; m_mouse.ignore_left_up = false;
m_mouse.ignore_right_up = false; m_mouse.ignore_right_up = false;
m_dirty = true; m_dirty = true;
// the frame that follows a release puts the preview's toolpaths back, and on some platforms
// no idle event follows a button release until the next input
wxWakeUpIdle();
if (m_canvas->HasCapture()) if (m_canvas->HasCapture())
m_canvas->ReleaseMouse(); m_canvas->ReleaseMouse();
@@ -7779,13 +7814,20 @@ bool GLCanvas3D::_is_scene_cacheable() const
return false; return false;
#endif #endif
// The scene follows the cursor during a drag, under a gizmo that draws at the cursor, and while // The scene follows the cursor while the user drags, under a gizmo that draws at the cursor, and
// the cursor is on the layer height bar, where the object shader draws a band at its height. // while the cursor is on the layer height bar, where the object shader draws a band at its height.
const GLGizmoBase* gizmo = m_gizmos.get_current(); const GLGizmoBase* gizmo = m_gizmos.get_current();
const bool cursor_on_layers_bar = is_layers_editing_enabled() && const bool cursor_on_layers_bar = is_layers_editing_enabled() &&
m_layers_editing.bar_rect_contains(*this, (float)m_mouse.position.x(), (float)m_mouse.position.y()); m_layers_editing.bar_rect_contains(*this, (float)m_mouse.position.x(), (float)m_mouse.position.y());
return !m_mouse.dragging && !m_gizmos.is_dragging() && !m_rectangle_selection.is_dragging() && return !is_user_interacting() && (gizmo == nullptr || !gizmo->render_follows_cursor()) && !cursor_on_layers_bar;
(gizmo == nullptr || !gizmo->render_follows_cursor()) && !cursor_on_layers_bar; }
// Whether the user is holding something that moves the scene: the camera, the navigator, a gizmo,
// the rectangle selection or a preview slider.
bool GLCanvas3D::is_user_interacting() const
{
return m_mouse.dragging || m_navigator_dragging || m_gizmos.is_dragging() || m_rectangle_selection.is_dragging() ||
m_gcode_viewer.is_slider_dragging();
} }
bool GLCanvas3D::_is_frame_skipping_enabled() const bool GLCanvas3D::_is_frame_skipping_enabled() const
@@ -8776,6 +8818,24 @@ void GLCanvas3D::_render_wireframe_overlay()
shader->stop_using(); shader->stop_using();
} }
// The reduced set is drawn while the camera, the navigator or either slider is dragged. A wheel
// step has no duration, so it holds the reduced set for a settle time instead, and the frame that
// restores the full toolpaths is scheduled for when that time runs out. Returns whether what the scene
// pass draws changed, since a frame that reuses the cached scene would hide the change.
bool GLCanvas3D::_update_preview_interaction()
{
const auto now = std::chrono::steady_clock::now();
const bool settling = now < m_preview_interaction_until;
const bool dragging = is_user_interacting();
const bool was_reduced = m_gcode_viewer.is_reduced_detail();
m_gcode_viewer.set_interacting(dragging || settling);
if (settling && !dragging && m_gcode_viewer.is_reduced_detail()) {
m_preview_settle_pending = true;
schedule_extra_frame(static_cast<int>(std::chrono::duration_cast<std::chrono::milliseconds>(m_preview_interaction_until - now).count()) + 1);
}
return m_gcode_viewer.is_reduced_detail() != was_reduced;
}
//BBS: GUI refactor: add canvas size as parameters //BBS: GUI refactor: add canvas size as parameters
void GLCanvas3D::_render_gcode(int canvas_width, int canvas_height) void GLCanvas3D::_render_gcode(int canvas_width, int canvas_height)
{ {
+11
View File
@@ -656,6 +656,10 @@ private:
ECursorType m_cursor_type; ECursorType m_cursor_type;
GLSelectionRectangle m_rectangle_selection; GLSelectionRectangle m_rectangle_selection;
bool m_navigator_dragging{ false }; bool m_navigator_dragging{ false };
// until when a wheel step keeps the preview's reduced set drawn
std::chrono::time_point<std::chrono::steady_clock> m_preview_interaction_until{};
// whether the frame that restores the toolpaths once that time is up is still owed
bool m_preview_settle_pending{ false };
//BBS:add plate related logic //BBS:add plate related logic
mutable std::vector<int> m_hover_volume_idxs; mutable std::vector<int> m_hover_volume_idxs;
@@ -1222,6 +1226,10 @@ public:
void msw_rescale() { m_gcode_viewer.invalidate_legend(); } void msw_rescale() { m_gcode_viewer.invalidate_legend(); }
void request_extra_frame() { m_extra_frame_requested = true; } void request_extra_frame() { m_extra_frame_requested = true; }
// whether the user is holding the camera, the navigator, a gizmo, the rectangle selection or a preview slider
bool is_user_interacting() const;
// a wheel step is over before the next frame, so it holds the preview's reduced set for a settle time
void note_preview_interaction();
void schedule_extra_frame(int milliseconds); void schedule_extra_frame(int milliseconds);
@@ -1372,6 +1380,9 @@ private:
//BBS: GUI refactor: add canvas size as parameters //BBS: GUI refactor: add canvas size as parameters
void _render_gcode(int canvas_width, int canvas_height); void _render_gcode(int canvas_width, int canvas_height);
void _render_gcode_overlay(int canvas_width, int canvas_height); void _render_gcode_overlay(int canvas_width, int canvas_height);
// decides whether the preview draws its reduced set this frame and returns whether what the scene
// pass draws changed; runs before the cached scene is consulted
bool _update_preview_interaction();
//BBS: render a plane for assemble //BBS: render a plane for assemble
void _render_plane() const; void _render_plane() const;
void _render_selection(); void _render_selection();
-32
View File
@@ -14,9 +14,6 @@
#include <boost/algorithm/string/predicate.hpp> #include <boost/algorithm/string/predicate.hpp>
#include <boost/any.hpp> #include <boost/any.hpp>
#include <wx/filename.h>
#include <wx/filesys.h>
#if __APPLE__ #if __APPLE__
#import <IOKit/pwr_mgt/IOPMLib.h> #import <IOKit/pwr_mgt/IOPMLib.h>
#elif _WIN32 #elif _WIN32
@@ -30,13 +27,11 @@
#include "AboutDialog.hpp" #include "AboutDialog.hpp"
#include "MsgDialog.hpp" #include "MsgDialog.hpp"
#include "Plater.hpp"
#include "format.hpp" #include "format.hpp"
#include "WebUserLoginDialog.hpp" #include "WebUserLoginDialog.hpp"
#include "libslic3r/Print.hpp" #include "libslic3r/Print.hpp"
#include "libslic3r/Utils.hpp"
namespace Slic3r { namespace Slic3r {
@@ -536,11 +531,6 @@ boost::filesystem::path into_path(const wxString &str)
return boost::filesystem::path(str.wx_str()); return boost::filesystem::path(str.wx_str());
} }
wxString file_url_from_path(const boost::filesystem::path &path)
{
return wxFileSystem::FileNameToURL(wxFileName(from_path(path)));
}
void about() void about()
{ {
AboutDialog dlg; AboutDialog dlg;
@@ -645,26 +635,4 @@ void desktop_open_any_folder( const std::string& path )
} }
bool desktop_open_project_attachment(wxWindow *parent, const boost::filesystem::path &path)
{
// The auxiliary path is UTF-8, which is what boost::filesystem reads a narrow string as.
const boost::filesystem::path aux_root(wxGetApp().plater()->model().get_auxiliary_file_temp_path());
boost::system::error_code ec;
if (!is_absolute_path_within_root(path, aux_root) || !boost::filesystem::is_regular_file(path, ec))
return false;
// Attachments come with the project and carry no download mark, so the desktop would open them without a warning.
if (!is_safe_to_open_file_name(path.filename().string())) {
MessageDialog dlg(parent,
wxString::Format(_L("\"%s\" is not a plain document, image or model file. Opening it may run it as a "
"program or script on this computer.\n\n"
"Only open attachments from projects you trust. Open it anyway?"),
from_path(path.filename())),
_L("Open attachment"), wxICON_WARNING | wxYES_NO);
if (dlg.ShowModal() != wxID_YES)
return false;
}
return wxLaunchDefaultApplication(from_path(path), 0);
}
} } } }
-6
View File
@@ -76,9 +76,6 @@ std::string into_u8(const wxString &str);
wxString from_path(const boost::filesystem::path &path); wxString from_path(const boost::filesystem::path &path);
// boost path from wxString // boost path from wxString
boost::filesystem::path into_path(const wxString &str); boost::filesystem::path into_path(const wxString &str);
// file:// URL of a local path, percent-encoded so characters such as '#', '%' and '?' stay part of the path.
// Append any query or fragment to the result.
wxString file_url_from_path(const boost::filesystem::path &path);
// Display an About dialog // Display an About dialog
extern void about(); extern void about();
@@ -86,9 +83,6 @@ extern void about();
extern void desktop_open_datadir_folder(); extern void desktop_open_datadir_folder();
// Ask the destop to open one folder // Ask the destop to open one folder
extern void desktop_open_any_folder(const std::string& path); extern void desktop_open_any_folder(const std::string& path);
// Ask the desktop to open a file from the project's auxiliary directory, after a confirmation
// unless its type is known to be plain content. Returns false if the file was not opened.
extern bool desktop_open_project_attachment(wxWindow *parent, const boost::filesystem::path &path);
} // namespace GUI } // namespace GUI
} // namespace Slic3r } // namespace Slic3r
+5 -26
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@@ -1512,33 +1512,11 @@ int GUI_App::install_plugin(std::string name, std::string package_name, InstallP
size_t n = mz_zip_reader_get_extra(&archive, stat.m_file_index, extra.data(), extra.size()); size_t n = mz_zip_reader_get_extra(&archive, stat.m_file_index, extra.data(), extra.size());
dest_file = decode(extra.substr(0, n), stat.m_filename); dest_file = decode(extra.substr(0, n), stat.m_filename);
} }
if (!is_path_within_root(dest_file, plugin_folder)) {
BOOST_LOG_TRIVIAL(error) << "[install_plugin] entry " << dest_file << " resolves outside " << plugin_folder.string();
close_zip_reader(&archive);
if (pro_fn) { pro_fn(InstallStatusUnzipFailed, 0, cancel); }
return InstallStatusUnzipFailed;
}
auto dest_path = plugin_folder / dest_file; auto dest_path = plugin_folder / dest_file;
boost::filesystem::create_directories(dest_path.parent_path());
std::string dest_zip_file = encode_path(dest_path.string().c_str()); std::string dest_zip_file = encode_path(dest_path.string().c_str());
#ifndef WIN32
// Validate a symlink's target before anything at the destination is replaced.
const bool is_link = S_ISLNK(stat.m_external_attr >> 16);
std::string link;
if (is_link) {
link.assign(stat.m_uncomp_size, 0);
if (!mz_zip_reader_extract_to_mem(&archive, stat.m_file_index, link.data(), stat.m_uncomp_size, 0) ||
!is_symlink_target_within_root(dest_file, link, plugin_folder)) {
BOOST_LOG_TRIVIAL(error) << "[install_plugin] link " << dest_file << " -> " << link << " is unreadable or resolves outside " << plugin_folder.string();
close_zip_reader(&archive);
if (pro_fn) { pro_fn(InstallStatusUnzipFailed, 0, cancel); }
return InstallStatusUnzipFailed;
}
}
#endif
try { try {
boost::filesystem::create_directories(dest_path.parent_path()); if (fs::exists(dest_path)) {
// symlink_status so that an existing symlink, dangling or not, is replaced rather than written through.
if (fs::exists(fs::symlink_status(dest_path))) {
boost::system::error_code ec; boost::system::error_code ec;
fs::remove(dest_path, ec); fs::remove(dest_path, ec);
if (ec) { if (ec) {
@@ -1566,8 +1544,9 @@ int GUI_App::install_plugin(std::string name, std::string package_name, InstallP
} }
mz_bool res = 0; mz_bool res = 0;
#ifndef WIN32 #ifndef WIN32
if (is_link) { if (S_ISLNK(stat.m_external_attr >> 16)) {
res = 1; std::string link(stat.m_uncomp_size + 1, 0);
res = mz_zip_reader_extract_to_mem(&archive, stat.m_file_index, link.data(), stat.m_uncomp_size, 0);
try { try {
boost::filesystem::create_symlink(link, dest_path); boost::filesystem::create_symlink(link, dest_path);
} catch (const std::exception &e) { } catch (const std::exception &e) {
+7
View File
@@ -483,6 +483,11 @@ void IMSlider::draw_background_and_groove(const ImRect& bg_rect, const ImRect& g
ImGui::RenderFrame(groove.Min, groove.Max, groove_col, false, 0.5 * groove.GetWidth()); ImGui::RenderFrame(groove.Min, groove.Max, groove_col, false, 0.5 * groove.GetWidth());
} }
bool IMSlider::is_dragging() const
{
return GImGui != nullptr && m_imgui_id != 0 && GImGui->ActiveId == m_imgui_id && GImGui->IO.MouseDown[0];
}
bool IMSlider::horizontal_slider(const char* str_id, int* value, int v_min, int v_max, const ImVec2& size, float scale) bool IMSlider::horizontal_slider(const char* str_id, int* value, int v_min, int v_max, const ImVec2& size, float scale)
{ {
ImGuiWindow* window = ImGui::GetCurrentWindow(); ImGuiWindow* window = ImGui::GetCurrentWindow();
@@ -491,6 +496,7 @@ bool IMSlider::horizontal_slider(const char* str_id, int* value, int v_min, int
ImGuiContext& context = *GImGui; ImGuiContext& context = *GImGui;
const ImGuiID id = window->GetID(str_id); const ImGuiID id = window->GetID(str_id);
m_imgui_id = id;
const ImVec2 pos = window->DC.CursorPos; const ImVec2 pos = window->DC.CursorPos;
const ImRect draw_region(pos, pos + size); const ImRect draw_region(pos, pos + size);
@@ -883,6 +889,7 @@ bool IMSlider::vertical_slider(const char* str_id, int* higher_value, int* lower
ImGuiContext& context = *GImGui; ImGuiContext& context = *GImGui;
const ImGuiID id = window->GetID(str_id); const ImGuiID id = window->GetID(str_id);
m_imgui_id = id;
const ImVec2 pos = window->DC.CursorPos; const ImVec2 pos = window->DC.CursorPos;
const ImRect draw_region(pos, pos + size); const ImRect draw_region(pos, pos + size);
+5
View File
@@ -118,6 +118,9 @@ public:
//BBS update scroll value changed //BBS update scroll value changed
bool is_dirty() { return m_dirty; } bool is_dirty() { return m_dirty; }
// whether the mouse is holding this slider's handle, read from ImGui's active id rather than
// from the dirty flag, which is raised and consumed inside a single frame
bool is_dragging() const;
void set_as_dirty(bool dirty = true) { m_dirty = dirty; } void set_as_dirty(bool dirty = true) { m_dirty = dirty; }
bool is_need_post_tick_event() { return m_is_need_post_tick_changed_event; } bool is_need_post_tick_event() { return m_is_need_post_tick_changed_event; }
void reset_post_tick_event(bool val = false) { void reset_post_tick_event(bool val = false) {
@@ -182,6 +185,8 @@ private:
int m_higher_value; int m_higher_value;
int m_one_layer_value; // ORCA int m_one_layer_value; // ORCA
bool m_dirty = false; bool m_dirty = false;
// the ImGui id of the slider widget, as of its last render
unsigned int m_imgui_id = 0;
bool m_render_as_disabled{ false }; bool m_render_as_disabled{ false };
+4 -1
View File
@@ -98,7 +98,10 @@ void MarkdownTip::LoadStyle()
ph /= "tooltip/styled.html"; ph /= "tooltip/styled.html";
_data_dir = false; _data_dir = false;
} }
_tipView->LoadURL(file_url_from_path(ph)); auto url = ph.string();
std::replace(url.begin(), url.end(), '\\', '/');
url = "file:///" + url;
_tipView->LoadURL(from_u8(url));
_lastTip.clear(); _lastTip.clear();
} }
+16 -28
View File
@@ -286,30 +286,6 @@ static void set_config_values(DynamicPrintConfig *config, const std::string &key
} }
} }
// Orca: a calibration print sets pressure advance explicitly to 0 on each extruder variant that
// has it disabled, so the value stored in the printer does not skew the result. Variants with
// pressure advance enabled keep their own value.
static void zero_pressure_advance_where_disabled(DynamicPrintConfig *filament_config)
{
auto enable_pa = filament_config->option<ConfigOptionBools>("enable_pressure_advance");
auto pa = filament_config->option<ConfigOptionFloats>("pressure_advance");
auto adaptive_pa = filament_config->option<ConfigOptionBools>("adaptive_pressure_advance");
if (!enable_pa || !pa || !adaptive_pa || pa->empty() || adaptive_pa->empty())
return;
// All variant keys share the variant count; widen a short one rather than index past it.
if (pa->size() < enable_pa->size())
pa->resize(enable_pa->size());
if (adaptive_pa->size() < enable_pa->size())
adaptive_pa->resize(enable_pa->size());
for (size_t variant = 0; variant < enable_pa->size(); ++variant) {
if (enable_pa->get_at(variant))
continue;
enable_pa->values[variant] = true;
pa->values[variant] = 0.0;
adaptive_pa->values[variant] = false;
}
}
bool Plater::has_illegal_filename_characters(const wxString& wxs_name) bool Plater::has_illegal_filename_characters(const wxString& wxs_name)
{ {
std::string name = into_u8(wxs_name); std::string name = into_u8(wxs_name);
@@ -3696,7 +3672,7 @@ void Sidebar::update_all_preset_comboboxes()
wxString url = from_u8(PrintHost::get_print_host_webui(&cfg)); wxString url = from_u8(PrintHost::get_print_host_webui(&cfg));
wxString apikey; wxString apikey;
if(url.empty()) if(url.empty())
url = file_url_from_path(boost::filesystem::path(resources_dir()) / "web/orca/missing_connection.html"); url = wxString::Format("file://%s/web/orca/missing_connection.html", from_u8(resources_dir()));
else { else {
const auto host_type = cfg.option<ConfigOptionEnum<PrintHostType>>("host_type")->value; const auto host_type = cfg.option<ConfigOptionEnum<PrintHostType>>("host_type")->value;
if (cfg.has("printhost_apikey") && (host_type != htSimplyPrint)) if (cfg.has("printhost_apikey") && (host_type != htSimplyPrint))
@@ -17088,7 +17064,11 @@ void Plater::calib_input_shaping_freq(const Calib_Params& params)
set_config_values<double, ConfigOptionFloatsNullable>(print_config, "default_jerk", 0); set_config_values<double, ConfigOptionFloatsNullable>(print_config, "default_jerk", 0);
} }
zero_pressure_advance_where_disabled(filament_config); if (!filament_config->option<ConfigOptionBools>("enable_pressure_advance")->get_at(0)) {
set_config_values<bool, ConfigOptionBools>(filament_config, "enable_pressure_advance", true);
set_config_values<double, ConfigOptionFloatsNullable>(filament_config, "pressure_advance", 0.0);
set_config_values<bool, ConfigOptionBools>(filament_config, "adaptive_pressure_advance", false);
}
printer_config->set_key_value("resonance_avoidance", new ConfigOptionBool{false}); printer_config->set_key_value("resonance_avoidance", new ConfigOptionBool{false});
printer_config->set_key_value("input_shaping_emit", new ConfigOptionBool{false}); printer_config->set_key_value("input_shaping_emit", new ConfigOptionBool{false});
@@ -17150,7 +17130,11 @@ void Plater::calib_input_shaping_damp(const Calib_Params& params)
set_config_values<double, ConfigOptionFloatsNullable>(print_config, "default_jerk", 0); set_config_values<double, ConfigOptionFloatsNullable>(print_config, "default_jerk", 0);
} }
zero_pressure_advance_where_disabled(filament_config); if (!filament_config->option<ConfigOptionBools>("enable_pressure_advance")->get_at(0)) {
set_config_values<bool, ConfigOptionBools>(filament_config, "enable_pressure_advance", true);
set_config_values<double, ConfigOptionFloatsNullable>(filament_config, "pressure_advance", 0.0);
set_config_values<bool, ConfigOptionBools>(filament_config, "adaptive_pressure_advance", false);
}
printer_config->set_key_value("resonance_avoidance", new ConfigOptionBool{false}); printer_config->set_key_value("resonance_avoidance", new ConfigOptionBool{false});
printer_config->set_key_value("input_shaping_emit", new ConfigOptionBool{false}); printer_config->set_key_value("input_shaping_emit", new ConfigOptionBool{false});
@@ -17212,7 +17196,11 @@ void Plater::Calib_Cornering(const Calib_Params& params)
set_config_values<double, ConfigOptionFloatsNullable>(print_config, "default_jerk", 0); set_config_values<double, ConfigOptionFloatsNullable>(print_config, "default_jerk", 0);
} }
zero_pressure_advance_where_disabled(filament_config); if (!filament_config->option<ConfigOptionBools>("enable_pressure_advance")->get_at(0)) {
set_config_values<bool, ConfigOptionBools>(filament_config, "enable_pressure_advance", true);
set_config_values<double, ConfigOptionFloatsNullable>(filament_config, "pressure_advance", 0.0);
set_config_values<bool, ConfigOptionBools>(filament_config, "adaptive_pressure_advance", false);
}
printer_config->set_key_value("resonance_avoidance", new ConfigOptionBool{false}); printer_config->set_key_value("resonance_avoidance", new ConfigOptionBool{false});
printer_config->set_key_value("input_shaping_emit", new ConfigOptionBool{true}); printer_config->set_key_value("input_shaping_emit", new ConfigOptionBool{true});
+29 -2
View File
@@ -322,7 +322,7 @@ wxBoxSizer* PreferencesDialog::create_item_combobox(wxString title, wxString too
return sizer; return sizer;
} }
wxBoxSizer *PreferencesDialog::create_item_combobox(wxString title, wxString tooltip, std::string param, std::vector<wxString> vlist, std::vector<std::string> config_name_index, const wxString wiki_url) wxBoxSizer *PreferencesDialog::create_item_combobox(wxString title, wxString tooltip, std::string param, std::vector<wxString> vlist, std::vector<std::string> config_name_index, std::function<void(std::string)> onchange, const wxString wiki_url)
{ {
assert(vlist.size() == config_name_index.size()); assert(vlist.size() == config_name_index.size());
unsigned int current_index = 0; unsigned int current_index = 0;
@@ -338,8 +338,9 @@ wxBoxSizer *PreferencesDialog::create_item_combobox(wxString title, wxString too
auto [sizer, combobox] = create_item_combobox_base(title, tooltip, param, vlist, current_index); auto [sizer, combobox] = create_item_combobox_base(title, tooltip, param, vlist, current_index);
//// save config //// save config
combobox->GetDropDown().Bind(wxEVT_COMBOBOX, [this, param, config_name_index](wxCommandEvent& e) { combobox->GetDropDown().Bind(wxEVT_COMBOBOX, [this, param, config_name_index, onchange](wxCommandEvent& e) {
app_config->set(param, config_name_index[e.GetSelection()]); app_config->set(param, config_name_index[e.GetSelection()]);
if (onchange != nullptr) onchange(config_name_index[e.GetSelection()]);
e.Skip(); e.Skip();
}); });
@@ -2044,6 +2045,32 @@ void PreferencesDialog::create_items()
"preview_default_view_type", PreviewViewTypeLabels, PreviewViewTypeValues); "preview_default_view_type", PreviewViewTypeLabels, PreviewViewTypeValues);
g_sizer->Add(item_preview_view_type); g_sizer->Add(item_preview_view_type);
auto item_reduced_detail_mode = create_item_combobox(
_L("Simplify preview while dragging"),
_L("What the sliced preview draws while you drag the camera or a preview slider, or zoom with the mouse wheel, so that large prints stay responsive. "
"The full toolpaths are restored as soon as you let go.\n"
"Off: the full toolpaths.\n"
"Solid model: the sliced objects and the prime tower as solid shapes in their filament colors, cut to the visible layer range, "
"with its bottom and top layers drawn as toolpaths. Supports are not shown, and negative volumes are not cut out.\n"
"Shell only: every layer without its sparse infill, internal solid infill and gap fill, which lie under the walls and skins. "
"Walls, top and bottom surfaces, bridges, supports and the prime tower are drawn whole, so the print looks the same from outside.\n"
"The bottom and top of the visible layer range are always drawn whole."),
"preview_reduced_detail_mode",
{_L("Off"), _L("Solid model"), _L("Shell only")},
{"off", "solid", "shell"},
// apply the new mode immediately to the currently loaded preview
[](std::string value) {
if (Plater* plater = wxGetApp().plater()) {
if (GLCanvas3D* canvas = plater->get_preview_canvas3D()) {
canvas->get_gcode_viewer().set_reduced_detail_mode(value);
canvas->set_as_dirty();
canvas->request_extra_frame();
}
}
}
);
g_sizer->Add(item_reduced_detail_mode);
auto item_dim_previous_layers = create_item_checkbox( auto item_dim_previous_layers = create_item_checkbox(
_L("Dim lower layers"), _L("Dim lower layers"),
_L("When scrubbing the layer slider in the sliced preview, render the layers below the current one darkened so that only the layer being viewed is shown at full brightness."), _L("When scrubbing the layer slider in the sliced preview, render the layers below the current one darkened so that only the layer being viewed is shown at full brightness."),
+1 -1
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@@ -93,7 +93,7 @@ public:
wxBoxSizer *create_item_title(wxString title); wxBoxSizer *create_item_title(wxString title);
wxBoxSizer *create_item_label(wxString label, const wxString tooltip = "", const wxString wiki_url = ""); wxBoxSizer *create_item_label(wxString label, const wxString tooltip = "", const wxString wiki_url = "");
wxBoxSizer *create_item_combobox(wxString title, wxString tooltip, std::string param, std::vector<wxString> vlist, std::function<void(wxString)> onchange = {}, const wxString wiki_url = ""); wxBoxSizer *create_item_combobox(wxString title, wxString tooltip, std::string param, std::vector<wxString> vlist, std::function<void(wxString)> onchange = {}, const wxString wiki_url = "");
wxBoxSizer *create_item_combobox(wxString title, wxString tooltip, std::string param, std::vector<wxString> vlist, std::vector<std::string> config_name_index, const wxString wiki_url = ""); wxBoxSizer *create_item_combobox(wxString title, wxString tooltip, std::string param, std::vector<wxString> vlist, std::vector<std::string> config_name_index, std::function<void(std::string)> onchange = {}, const wxString wiki_url = "");
wxBoxSizer *create_item_region_combobox(wxString title, wxString tooltip); wxBoxSizer *create_item_region_combobox(wxString title, wxString tooltip);
wxBoxSizer *create_item_language_combobox(wxString title, wxString tooltip); wxBoxSizer *create_item_language_combobox(wxString title, wxString tooltip);
wxBoxSizer *create_item_loglevel_combobox(wxString title, wxString tooltip, std::vector<wxString> vlist); wxBoxSizer *create_item_loglevel_combobox(wxString title, wxString tooltip, std::vector<wxString> vlist);
+3 -1
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@@ -57,7 +57,9 @@ PrivacyUpdateDialog::PrivacyUpdateDialog(wxWindow* parent, wxWindowID id, const
fs::path ph(resources_dir()); fs::path ph(resources_dir());
ph /= "tooltip/privacyupdate.html"; ph /= "tooltip/privacyupdate.html";
m_host_url = into_u8(file_url_from_path(ph)); m_host_url = ph.string();
std::replace(m_host_url.begin(), m_host_url.end(), '\\', '/');
m_host_url = "file:///" + m_host_url;
m_vebview_release_note->LoadURL(from_u8(m_host_url)); m_vebview_release_note->LoadURL(from_u8(m_host_url));
m_sizer_right->Add(m_vebview_release_note, 0, wxEXPAND | wxRIGHT | wxLEFT, FromDIP(15)); m_sizer_right->Add(m_vebview_release_note, 0, wxEXPAND | wxRIGHT | wxLEFT, FromDIP(15));
+6 -4
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@@ -45,10 +45,10 @@ const std::vector<std::string> license_list = {
ProjectPanel::ProjectPanel(wxWindow *parent, wxWindowID id, const wxPoint &pos, const wxSize &size, long style) : wxPanel(parent, id, pos, size, style) ProjectPanel::ProjectPanel(wxWindow *parent, wxWindowID id, const wxPoint &pos, const wxSize &size, long style) : wxPanel(parent, id, pos, size, style)
{ {
SetBackgroundColour(*wxWHITE); SetBackgroundColour(*wxWHITE);
m_project_home_url = file_url_from_path(boost::filesystem::path(resources_dir()) / "web/model/index.html"); m_project_home_url = wxString::Format("file://%s/web/model/index.html", from_u8(resources_dir()));
wxString strlang = wxGetApp().current_language_code_safe(); wxString strlang = wxGetApp().current_language_code_safe();
if (strlang != "") if (strlang != "")
m_project_home_url += "?lang=" + strlang; m_project_home_url = wxString::Format("file://%s/web/model/index.html?lang=%s", from_u8(resources_dir()), strlang);
wxBoxSizer* main_sizer = new wxBoxSizer(wxVERTICAL); wxBoxSizer* main_sizer = new wxBoxSizer(wxVERTICAL);
@@ -293,8 +293,10 @@ void ProjectPanel::OnScriptMessage(wxWebViewEvent& evt)
if (!accessory_path.empty()) { if (!accessory_path.empty()) {
std::string decode_path = wxGetApp().url_decode(accessory_path.ToStdString()); std::string decode_path = wxGetApp().url_decode(accessory_path.ToStdString());
fs::path path(decode_path); fs::path path(decode_path);
if (!desktop_open_project_attachment(this, path))
BOOST_LOG_TRIVIAL(warning) << "open_3mf_accessory: not opening " << decode_path; if (fs::exists(path)) {
wxLaunchDefaultApplication(path.wstring(), 0);
}
} }
} }
else if (strCmd == "request_3mf_info") { else if (strCmd == "request_3mf_info") {
+1 -1
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@@ -510,7 +510,7 @@ void UpdateVersionDialog::update_version_info(wxString release_note, wxString ve
out_buf->append(text, size); out_buf->append(text, size);
}, (void*) &html_source, MD_DIALECT_GITHUB | MD_FLAG_STRIKETHROUGH | MD_FLAG_WIKILINKS, 0); }, (void*) &html_source, MD_DIALECT_GITHUB | MD_FLAG_STRIKETHROUGH | MD_FLAG_WIKILINKS, 0);
html_source.append("</body></html>"); html_source.append("</body></html>");
m_vebview_release_note->LoadURL(file_url_from_path(boost::filesystem::path(resources_dir()) / "web/guide/0/index.html")); m_vebview_release_note->LoadURL("file://" + (boost::filesystem::path (resources_dir()) / "web/guide/0/index.html").string());
SetMinSize(GetSize()); SetMinSize(GetSize());
SetMaxSize(GetSize()); SetMaxSize(GetSize());
+19 -20
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@@ -4415,15 +4415,15 @@ void TabFilament::build()
optgroup->append_single_option_line("pellet_flow_coefficient", "printer_basic_information_advanced#pellet-modded-printer"); optgroup->append_single_option_line("pellet_flow_coefficient", "printer_basic_information_advanced#pellet-modded-printer");
optgroup->append_single_option_line("filament_flow_ratio", "material_flow_ratio_and_pressure_advance#flow-ratio", 0); optgroup->append_single_option_line("filament_flow_ratio", "material_flow_ratio_and_pressure_advance#flow-ratio", 0);
optgroup->append_single_option_line("enable_pressure_advance", "material_flow_ratio_and_pressure_advance#pressure-advance", 0); optgroup->append_single_option_line("enable_pressure_advance", "material_flow_ratio_and_pressure_advance#pressure-advance");
optgroup->append_single_option_line("pressure_advance", "material_flow_ratio_and_pressure_advance#pressure-advance", 0); optgroup->append_single_option_line("pressure_advance", "material_flow_ratio_and_pressure_advance#pressure-advance");
// Orca: adaptive pressure advance and calibration model // Orca: adaptive pressure advance and calibration model
optgroup->append_single_option_line("adaptive_pressure_advance", "material_flow_ratio_and_pressure_advance#enable-adaptive-pressure-advance-beta", 0); optgroup->append_single_option_line("adaptive_pressure_advance", "material_flow_ratio_and_pressure_advance#enable-adaptive-pressure-advance-beta");
optgroup->append_single_option_line("adaptive_pressure_advance_overhangs", "material_flow_ratio_and_pressure_advance#enable-adaptive-pressure-advance-for-overhangs-beta", 0); optgroup->append_single_option_line("adaptive_pressure_advance_overhangs", "material_flow_ratio_and_pressure_advance#enable-adaptive-pressure-advance-for-overhangs-beta");
optgroup->append_single_option_line("adaptive_pressure_advance_bridges", "material_flow_ratio_and_pressure_advance#pressure-advance-for-bridges", 0); optgroup->append_single_option_line("adaptive_pressure_advance_bridges", "material_flow_ratio_and_pressure_advance#pressure-advance-for-bridges");
Option option = optgroup->get_option("adaptive_pressure_advance_model", 0); Option option = optgroup->get_option("adaptive_pressure_advance_model");
option.opt.full_width = true; option.opt.full_width = true;
option.opt.is_code = true; option.opt.is_code = true;
option.opt.height = 15; option.opt.height = 15;
@@ -4432,7 +4432,7 @@ void TabFilament::build()
DynamicPrintConfig& filament_config = m_preset_bundle->filaments.get_edited_preset().config; DynamicPrintConfig& filament_config = m_preset_bundle->filaments.get_edited_preset().config;
update_dirty(); update_dirty();
if (opt_key.substr(0, opt_key.find('#')) == "adaptive_pressure_advance_model") if (opt_key == "adaptive_pressure_advance_model")
m_config_manipulation.check_adaptive_pressure_advance_model(&filament_config); m_config_manipulation.check_adaptive_pressure_advance_model(&filament_config);
on_value_change(opt_key, value); on_value_change(opt_key, value);
@@ -4829,11 +4829,8 @@ void TabFilament::toggle_options()
} }
if (m_active_page->title() == L("Filament")) if (m_active_page->title() == L("Filament"))
{ {
const int selection = m_variant_combo ? m_variant_combo->GetSelection() : 0; bool pa = m_config->opt_bool("enable_pressure_advance", 0);
const unsigned int variant_idx = (unsigned int) std::max(selection, 0); toggle_option("pressure_advance", pa);
bool pa = m_config->opt_bool("enable_pressure_advance", variant_idx);
toggle_option("pressure_advance", pa, 0);
//Orca: Enable the plates that should be visible when multi bed support is enabled or a BBL printer is selected; otherwise, enable only the plate visible for the selected bed type. //Orca: Enable the plates that should be visible when multi bed support is enabled or a BBL printer is selected; otherwise, enable only the plate visible for the selected bed type.
DynamicConfig& proj_cfg = m_preset_bundle->project_config; DynamicConfig& proj_cfg = m_preset_bundle->project_config;
@@ -4861,12 +4858,12 @@ void TabFilament::toggle_options()
// Orca: adaptive pressure advance and calibration model // Orca: adaptive pressure advance and calibration model
// If PA is not enabled, disable adaptive pressure advance and hide the model section // If PA is not enabled, disable adaptive pressure advance and hide the model section
// If adaptive PA is not enabled, hide the adaptive PA model section // If adaptive PA is not enabled, hide the adaptive PA model section
toggle_option("adaptive_pressure_advance", pa, 0); toggle_option("adaptive_pressure_advance", pa);
toggle_option("adaptive_pressure_advance_overhangs", pa, 0); toggle_option("adaptive_pressure_advance_overhangs", pa);
bool has_adaptive_pa = m_config->opt_bool("adaptive_pressure_advance", variant_idx); bool has_adaptive_pa = m_config->opt_bool("adaptive_pressure_advance", 0);
toggle_line("adaptive_pressure_advance_overhangs", has_adaptive_pa && pa, 0); toggle_line("adaptive_pressure_advance_overhangs", has_adaptive_pa && pa);
toggle_line("adaptive_pressure_advance_model", has_adaptive_pa && pa, 0); toggle_line("adaptive_pressure_advance_model", has_adaptive_pa && pa);
toggle_line("adaptive_pressure_advance_bridges", has_adaptive_pa && pa, 0); toggle_line("adaptive_pressure_advance_bridges", has_adaptive_pa && pa);
bool is_pellet_printer = printer_cfg.opt_bool("pellet_modded_printer"); bool is_pellet_printer = printer_cfg.opt_bool("pellet_modded_printer");
toggle_line("pellet_flow_coefficient", is_pellet_printer); toggle_line("pellet_flow_coefficient", is_pellet_printer);
@@ -4874,6 +4871,8 @@ void TabFilament::toggle_options()
toggle_line("activate_chamber_temp_control", printer_cfg.opt_bool("support_chamber_temp_control")); toggle_line("activate_chamber_temp_control", printer_cfg.opt_bool("support_chamber_temp_control"));
const int selection = m_variant_combo ? m_variant_combo->GetSelection() : 0;
const unsigned int variant_idx = (unsigned int) std::max(selection, 0);
std::string volumetric_speed_cos = m_config->opt_string("volumetric_speed_coefficients", variant_idx); std::string volumetric_speed_cos = m_config->opt_string("volumetric_speed_coefficients", variant_idx);
bool enable_fit = volumetric_speed_cos != "0 0 0 0 0 0"; bool enable_fit = volumetric_speed_cos != "0 0 0 0 0 0";
toggle_option("filament_adaptive_volumetric_speed", enable_fit, 256 + variant_idx); toggle_option("filament_adaptive_volumetric_speed", enable_fit, 256 + variant_idx);
@@ -5206,6 +5205,7 @@ void TabPrinter::build_fff()
optgroup->append_single_option_line("adaptive_bed_mesh_margin", "printer_basic_information_adaptive_bed_mesh#mesh-margin"); optgroup->append_single_option_line("adaptive_bed_mesh_margin", "printer_basic_information_adaptive_bed_mesh#mesh-margin");
optgroup = page->new_optgroup(L("Accessory"), "param_accessory"); optgroup = page->new_optgroup(L("Accessory"), "param_accessory");
optgroup->append_single_option_line("nozzle_type", "printer_basic_information_accessory#nozzle-type", 0);
optgroup->append_single_option_line("nozzle_hrc", "printer_basic_information_accessory#nozzle-hrc"); optgroup->append_single_option_line("nozzle_hrc", "printer_basic_information_accessory#nozzle-hrc");
optgroup->append_single_option_line("auxiliary_fan", "printer_basic_information_accessory#auxiliary-part-cooling-fan"); optgroup->append_single_option_line("auxiliary_fan", "printer_basic_information_accessory#auxiliary-part-cooling-fan");
optgroup->append_single_option_line("fan_direction"); optgroup->append_single_option_line("fan_direction");
@@ -5720,7 +5720,6 @@ if (is_marlin_flavor)
auto optgroup = page->new_optgroup(L("Basic information"), L"param_information", -1, true); auto optgroup = page->new_optgroup(L("Basic information"), L"param_information", -1, true);
optgroup->append_single_option_line("nozzle_diameter", "printer_extruder_basic_information#nozzle-diameter", extruder_idx); optgroup->append_single_option_line("nozzle_diameter", "printer_extruder_basic_information#nozzle-diameter", extruder_idx);
optgroup->append_single_option_line("nozzle_type", "printer_basic_information_accessory#nozzle-type", extruder_idx);
//optgroup->append_single_option_line("nozzle_volume_type", "", extruder_idx); //optgroup->append_single_option_line("nozzle_volume_type", "", extruder_idx);
optgroup->append_single_option_line("nozzle_volume", "printer_extruder_basic_information#nozzle-volume", extruder_idx); optgroup->append_single_option_line("nozzle_volume", "printer_extruder_basic_information#nozzle-volume", extruder_idx);
@@ -5732,7 +5731,7 @@ if (is_marlin_flavor)
optgroup->m_on_change = [this, extruder_idx](const t_config_option_key& opt_key, boost::any value) optgroup->m_on_change = [this, extruder_idx](const t_config_option_key& opt_key, boost::any value)
{ {
bool is_SEMM = m_config->opt_bool("single_extruder_multi_material"); bool is_SEMM = m_config->opt_bool("single_extruder_multi_material");
if (is_SEMM && m_extruders_count > 1 && boost::starts_with(opt_key, "nozzle_diameter")) if (is_SEMM && m_extruders_count > 1 && opt_key.find_first_of("nozzle_diameter") != std::string::npos)
{ {
SuppressBackgroundProcessingUpdate sbpu; SuppressBackgroundProcessingUpdate sbpu;
const double new_nd = boost::any_cast<double>(value); const double new_nd = boost::any_cast<double>(value);
+4 -5
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@@ -31,15 +31,14 @@ int UserManager::parse_json(std::string payload)
{ {
bool restored_json = false; bool restored_json = false;
json j; json j;
json j_pre = json::parse(payload);
if (j_pre.empty()) {
return -1;
}
//bind/unbind //bind/unbind
try { try {
json j_pre = json::parse(payload);
if (j_pre.empty()) {
return -1;
}
if (j_pre.contains("bind")) { if (j_pre.contains("bind")) {
if (j_pre["bind"].contains("command")) { if (j_pre["bind"].contains("command")) {
+3 -1
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@@ -38,7 +38,9 @@ DownPluginFrame::DownPluginFrame(GUI_App *pGUI) : wxDialog((wxWindow *) (pGUI->m
// set the frame icon // set the frame icon
wxBoxSizer *topsizer = new wxBoxSizer(wxVERTICAL); wxBoxSizer *topsizer = new wxBoxSizer(wxVERTICAL);
wxString TargetUrl = file_url_from_path(boost::filesystem::path(resources_dir()) / "web/guide/6/index.html"); wxString TargetUrl = from_u8((boost::filesystem::path(resources_dir()) / "web/guide/6/index.html").make_preferred().string());
TargetUrl = "file://" + TargetUrl;
// Create the webview // Create the webview
m_browser = WebView::CreateWebView(this, TargetUrl); m_browser = WebView::CreateWebView(this, TargetUrl);
+12 -12
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@@ -218,38 +218,37 @@ wxString GuideFrame::SetStartPage(GuidePage startpage, bool load)
m_page = startpage; m_page = startpage;
BOOST_LOG_TRIVIAL(info) << __FUNCTION__<< boost::format(" enter, load=%1%, start_page=%2%")%load%int(startpage); BOOST_LOG_TRIVIAL(info) << __FUNCTION__<< boost::format(" enter, load=%1%, start_page=%2%")%load%int(startpage);
//wxLogMessage("GUIDE: webpage_1 %s", (boost::filesystem::path(resources_dir()) / "web\\guide\\1\\index.html").make_preferred().string().c_str() ); //wxLogMessage("GUIDE: webpage_1 %s", (boost::filesystem::path(resources_dir()) / "web\\guide\\1\\index.html").make_preferred().string().c_str() );
const wxString guide_url = file_url_from_path(boost::filesystem::path(resources_dir()) / "web/guide/0/index.html"); wxString TargetUrl = from_u8( (boost::filesystem::path(resources_dir()) / "web/guide/0/index.html?target=1").make_preferred().string() );
wxString TargetUrl = guide_url + "?target=1";
//wxLogMessage("GUIDE: webpage_2 %s", TargetUrl.mb_str()); //wxLogMessage("GUIDE: webpage_2 %s", TargetUrl.mb_str());
if (startpage == BBL_WELCOME){ if (startpage == BBL_WELCOME){
SetTitle(_L("Setup Wizard")); SetTitle(_L("Setup Wizard"));
TargetUrl = guide_url + "?target=1"; TargetUrl = from_u8((boost::filesystem::path(resources_dir()) / "web/guide/0/index.html?target=1").make_preferred().string());
} else if (startpage == BBL_REGION) { } else if (startpage == BBL_REGION) {
SetTitle(_L("Setup Wizard")); SetTitle(_L("Setup Wizard"));
TargetUrl = guide_url + "?target=11"; TargetUrl = from_u8((boost::filesystem::path(resources_dir()) / "web/guide/0/index.html?target=11").make_preferred().string());
} else if (startpage == BBL_MODELS) { } else if (startpage == BBL_MODELS) {
SetTitle(_L("Setup Wizard")); SetTitle(_L("Setup Wizard"));
TargetUrl = guide_url + "?target=21"; TargetUrl = from_u8((boost::filesystem::path(resources_dir()) / "web/guide/0/index.html?target=21").make_preferred().string());
} else if (startpage == BBL_FILAMENTS) { } else if (startpage == BBL_FILAMENTS) {
SetTitle(_L("Setup Wizard")); SetTitle(_L("Setup Wizard"));
int nSize = m_ProfileJson["model"].size(); int nSize = m_ProfileJson["model"].size();
if (nSize>0) if (nSize>0)
TargetUrl = guide_url + "?target=22"; TargetUrl = from_u8((boost::filesystem::path(resources_dir()) / "web/guide/0/index.html?target=22").make_preferred().string());
else else
TargetUrl = guide_url + "?target=21"; TargetUrl = from_u8((boost::filesystem::path(resources_dir()) / "web/guide/0/index.html?target=21").make_preferred().string());
} else if (startpage == BBL_FILAMENT_ONLY) { } else if (startpage == BBL_FILAMENT_ONLY) {
SetTitle(""); SetTitle("");
TargetUrl = guide_url + "?target=23"; TargetUrl = from_u8((boost::filesystem::path(resources_dir()) / "web/guide/0/index.html?target=23").make_preferred().string());
} else if (startpage == BBL_MODELS_ONLY) { } else if (startpage == BBL_MODELS_ONLY) {
SetTitle(""); SetTitle("");
TargetUrl = guide_url + "?target=24"; TargetUrl = from_u8((boost::filesystem::path(resources_dir()) / "web/guide/0/index.html?target=24").make_preferred().string());
} }
else { else {
SetTitle(_L("Setup Wizard")); SetTitle(_L("Setup Wizard"));
TargetUrl = guide_url + "?target=21"; TargetUrl = from_u8((boost::filesystem::path(resources_dir()) / "web/guide/0/index.html?target=21").make_preferred().string());
} }
wxString strlang = wxGetApp().current_language_code_safe(); wxString strlang = wxGetApp().current_language_code_safe();
@@ -257,6 +256,7 @@ wxString GuideFrame::SetStartPage(GuidePage startpage, bool load)
if (strlang != "") if (strlang != "")
TargetUrl = wxString::Format("%s&lang=%s", w2s(TargetUrl), strlang); TargetUrl = wxString::Format("%s&lang=%s", w2s(TargetUrl), strlang);
TargetUrl = "file://" + TargetUrl;
if (load) if (load)
load_url(TargetUrl); load_url(TargetUrl);
@@ -1284,7 +1284,7 @@ bool GuideFrame::BuildProfileJson(const PresetBundle& bundle, bool require_all_r
entry["vendor"] = vp.id; entry["vendor"] = vp.id;
entry["nozzle_diameter"] = nozzle_str; entry["nozzle_diameter"] = nozzle_str;
entry["materials"] = materials_str; entry["materials"] = materials_str;
entry["cover"] = into_u8(file_url_from_path(cover_path)); entry["cover"] = cover_path.string();
entry["nozzle_selected"] = ""; entry["nozzle_selected"] = "";
entry["sub_path"] = ""; entry["sub_path"] = "";
m_ProfileJson["model"].push_back(entry); m_ProfileJson["model"].push_back(entry);
@@ -1732,7 +1732,7 @@ int GuideFrame::LoadProfileFamily(std::string strVendor, std::string strFilePath
cover_path = (boost::filesystem::absolute(boost::filesystem::path(resources_dir()) / "/web/image/printer/") / cover_file) cover_path = (boost::filesystem::absolute(boost::filesystem::path(resources_dir()) / "/web/image/printer/") / cover_file)
.make_preferred(); .make_preferred();
} }
OneModel["cover"] = into_u8(file_url_from_path(cover_path)); OneModel["cover"] = cover_path.string();
OneModel["nozzle_selected"] = ""; OneModel["nozzle_selected"] = "";
+1 -1
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@@ -599,7 +599,7 @@ void ZUserLogin::OnScriptResponseMessage(wxCommandEvent &WXUNUSED(evt))
bool ZUserLogin::ShowErrorPage() bool ZUserLogin::ShowErrorPage()
{ {
wxString ErrortUrl = file_url_from_path(boost::filesystem::path(resources_dir()) / "web/login/error.html"); wxString ErrortUrl = from_u8((boost::filesystem::path(resources_dir()) / "web\\login\\error.html").make_preferred().string());
load_url(ErrortUrl); load_url(ErrortUrl);
return true; return true;
+2 -2
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@@ -36,10 +36,10 @@ namespace GUI {
WebViewPanel::WebViewPanel(wxWindow *parent) WebViewPanel::WebViewPanel(wxWindow *parent)
: wxPanel(parent, wxID_ANY, wxDefaultPosition, wxDefaultSize) : wxPanel(parent, wxID_ANY, wxDefaultPosition, wxDefaultSize)
{ {
wxString url = file_url_from_path(boost::filesystem::path(resources_dir()) / "web/homepage/index.html"); wxString url = wxString::Format("file://%s/web/homepage/index.html", from_u8(resources_dir()));
wxString strlang = wxGetApp().current_language_code_safe(); wxString strlang = wxGetApp().current_language_code_safe();
if (strlang != "") if (strlang != "")
url += "?lang=" + strlang; url = wxString::Format("file://%s/web/homepage/index.html?lang=%s", from_u8(resources_dir()), strlang);
wxBoxSizer* topsizer = new wxBoxSizer(wxVERTICAL); wxBoxSizer* topsizer = new wxBoxSizer(wxVERTICAL);
+4 -2
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@@ -1,6 +1,5 @@
#include "MultiNozzleSync.hpp" #include "MultiNozzleSync.hpp"
#include "../GUI.hpp"
#include "../GUI_App.hpp" #include "../GUI_App.hpp"
#include "../I18N.hpp" #include "../I18N.hpp"
#include "../Plater.hpp" #include "../Plater.hpp"
@@ -22,6 +21,8 @@
#include <set> #include <set>
#include <wx/choice.h> #include <wx/choice.h>
#include <wx/filename.h>
#include <wx/filesys.h>
#include <wx/sizer.h> #include <wx/sizer.h>
#include <wx/stattext.h> #include <wx/stattext.h>
@@ -640,7 +641,8 @@ NozzleListTable::NozzleListTable(wxWindow* parent) : wxPanel(parent,wxID_ANY,wxD
m_web_view->AddScriptMessageHandler("nozzleListTable"); m_web_view->AddScriptMessageHandler("nozzleListTable");
m_web_view->EnableContextMenu(false); m_web_view->EnableContextMenu(false);
fs::path filepath = fs::path(resources_dir()) / "web/flush/NozzleListTable.html"; fs::path filepath = fs::path(resources_dir()) / "web/flush/NozzleListTable.html";
wxString url = file_url_from_path(filepath); wxFileName fn(wxString::FromUTF8(filepath.string()));
wxString url = wxFileSystem::FileNameToURL(fn);
m_web_view->LoadURL(url); m_web_view->LoadURL(url);
auto sizer = new wxBoxSizer(wxVERTICAL); auto sizer = new wxBoxSizer(wxVERTICAL);
+6 -5
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@@ -48,19 +48,20 @@ constexpr char ORCA_BRIDGE_JS[] = R"JS(
wxString bootstrap_url() wxString bootstrap_url()
{ {
return file_url_from_path(boost::filesystem::path(resources_dir()) / BOOTSTRAP_PAGE); return wxString("file://") + from_u8((boost::filesystem::path(resources_dir()) / BOOTSTRAP_PAGE).make_preferred().string());
} }
wxString content_base_url() wxString content_base_url()
{ {
return file_url_from_path(boost::filesystem::path(resources_dir()) / "web") + "/"; const std::string dir = (boost::filesystem::path(resources_dir()) / "web").make_preferred().string();
return wxString("file://") + from_u8(dir) + "/";
} }
bool is_content_url(const wxString& url) bool is_content_url(const wxString& url)
{ {
// The web view reports the URL it parsed, which may escape the resources path differently // The web view reports the URL it parsed, which escapes anything the resources path holds
// from content_base_url(). // (a space, a non-ASCII character), while content_base_url() is the raw path.
return wxURI::Unescape(url.BeforeFirst('#')) == wxURI::Unescape(content_base_url()); return wxURI::Unescape(url.BeforeFirst('#')) == content_base_url();
} }
const char* orca_bridge_script() { return ORCA_BRIDGE_JS; } const char* orca_bridge_script() { return ORCA_BRIDGE_JS; }
+2 -2
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@@ -192,7 +192,7 @@ bool WebViewHostDialog::create_webview(const std::string& resource_path,
wxString WebViewHostDialog::build_resource_url(const std::string& resource_path) const wxString WebViewHostDialog::build_resource_url(const std::string& resource_path) const
{ {
wxString target_url = file_url_from_path(boost::filesystem::path(resources_dir()) / resource_path); wxString target_url = from_u8((boost::filesystem::path(resources_dir()) / resource_path).make_preferred().string());
if (append_language_to_url()) { if (append_language_to_url()) {
const wxString lang = wxGetApp().current_language_code_safe(); const wxString lang = wxGetApp().current_language_code_safe();
@@ -202,7 +202,7 @@ wxString WebViewHostDialog::build_resource_url(const std::string& resource_path)
} }
} }
return target_url; return wxString("file://") + target_url;
} }
void WebViewHostDialog::load_url(const wxString& url) void WebViewHostDialog::load_url(const wxString& url)
+1 -1
View File
@@ -464,7 +464,7 @@ WipingDialog::WipingDialog(wxWindow* parent, const int max_flush_volume) :
wxString filepath_str = from_path(filepath); wxString filepath_str = from_path(filepath);
wxFileName fn(filepath_str); wxFileName fn(filepath_str);
if(fn.FileExists()) { if(fn.FileExists()) {
wxString url = file_url_from_path(filepath); wxString url = wxFileSystem::FileNameToURL(fn);
BOOST_LOG_TRIVIAL(debug) << __FUNCTION__<< "File exists and load url " << url.ToStdString(); BOOST_LOG_TRIVIAL(debug) << __FUNCTION__<< "File exists and load url " << url.ToStdString();
m_webview->LoadURL(url); m_webview->LoadURL(url);
BOOST_LOG_TRIVIAL(debug) << __FUNCTION__<< "Successfully loaded url: " << url.ToStdString(); BOOST_LOG_TRIVIAL(debug) << __FUNCTION__<< "Successfully loaded url: " << url.ToStdString();
+9
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@@ -274,4 +274,13 @@ bool Duet::start_print(wxString &msg, const std::string &filename, ConnectionTyp
return res; return res;
} }
int Duet::get_err_code_from_body(const std::string &body) const
{
pt::ptree root;
std::istringstream iss (body); // wrap returned json to istringstream
pt::read_json(iss, root);
return root.get<int>("err", 0);
}
} }
+1
View File
@@ -40,6 +40,7 @@ private:
ConnectionType connect(wxString &msg) const; ConnectionType connect(wxString &msg) const;
void disconnect(ConnectionType connectionType) const; void disconnect(ConnectionType connectionType) const;
bool start_print(wxString &msg, const std::string &filename, ConnectionType connectionType, bool simulationMode) const; bool start_print(wxString &msg, const std::string &filename, ConnectionType connectionType, bool simulationMode) const;
int get_err_code_from_body(const std::string &body) const;
}; };
} }
+9
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@@ -146,6 +146,15 @@ bool ESP3D::start_print(wxString& msg, const std::string& filename) const
return ret; return ret;
} }
int ESP3D::get_err_code_from_body(const std::string& body) const
{
pt::ptree root;
std::istringstream iss(body); // wrap returned json to istringstream
pt::read_json(iss, root);
return root.get<int>("err", 0);
}
// ESP3D only accepts 8.3 filenames else it crashes marlin and other undefined behaviour // ESP3D only accepts 8.3 filenames else it crashes marlin and other undefined behaviour
std::string ESP3D::get_short_name(const std::string& filename) const std::string ESP3D::get_short_name(const std::string& filename) const
{ {
+1
View File
@@ -33,6 +33,7 @@ private:
std::string m_console_port; std::string m_console_port;
bool start_print(wxString& msg, const std::string& filename) const; bool start_print(wxString& msg, const std::string& filename) const;
int get_err_code_from_body(const std::string& body) const;
std::string get_short_name(const std::string& filename) const; std::string get_short_name(const std::string& filename) const;
std::string format_command(const std::string& path, const std::string& arg, const std::string& val) const; std::string format_command(const std::string& path, const std::string& arg, const std::string& val) const;
}; };
+3 -1
View File
@@ -340,7 +340,9 @@ namespace Slic3r {
if (classify_printer_model(config->opt_string("printer_model")) != ElegooPrinterType::CC2) if (classify_printer_model(config->opt_string("printer_model")) != ElegooPrinterType::CC2)
return fallback_webui; return fallback_webui;
std::string web_path = GUI::into_u8(GUI::file_url_from_path(boost::filesystem::path(resources_dir()) / "web/elegoolink/lan_service_web/index.html")); std::string web_path = resources_dir() + "/web/elegoolink/lan_service_web/index.html";
std::replace(web_path.begin(), web_path.end(), '\\', '/');
web_path = "file://" + web_path;
const std::string token = get_cc2_token(config->opt_string("printhost_apikey")); const std::string token = get_cc2_token(config->opt_string("printhost_apikey"));
const std::string host_ip = Http::get_host_header_value(host); const std::string host_ip = Http::get_host_header_value(host);
+15 -25
View File
@@ -510,22 +510,12 @@ bool Flashforge::fetch_material_slots(std::vector<FlashforgeMaterialSlot>& slots
if (!request_local_api_json("detail", json{{"serialNumber", m_serial_number}, {"checkCode", m_check_code}}.dump(), body, msg)) if (!request_local_api_json("detail", json{{"serialNumber", m_serial_number}, {"checkCode", m_check_code}}.dump(), body, msg))
return false; return false;
if (!parse_material_slots(body, slots, supports_material_station)) { const auto parsed = json::parse(body, nullptr, false, true);
if (parsed.is_discarded()) {
msg = _(L("Flashforge returned an invalid JSON response.")); msg = _(L("Flashforge returned an invalid JSON response."));
return false; return false;
} }
return true;
}
bool Flashforge::parse_material_slots(const std::string& body, std::vector<FlashforgeMaterialSlot>& slots, bool* supports_material_station)
{
slots.clear();
const auto parsed = json::parse(body, nullptr, false, true);
if (parsed.is_discarded())
return false;
const auto& detail = parsed.contains("detail") ? parsed["detail"] : parsed; const auto& detail = parsed.contains("detail") ? parsed["detail"] : parsed;
const auto& station = detail.contains("matlStationInfo") ? detail["matlStationInfo"] : const auto& station = detail.contains("matlStationInfo") ? detail["matlStationInfo"] :
detail.contains("MatlStationInfo") ? detail["MatlStationInfo"] : json(); detail.contains("MatlStationInfo") ? detail["MatlStationInfo"] : json();
@@ -552,21 +542,12 @@ bool Flashforge::parse_material_slots(const std::string& body, std::vector<Flash
if (supports_material_station != nullptr) if (supports_material_station != nullptr)
*supports_material_station = reports_material_station; *supports_material_station = reports_material_station;
// Fields are read leniently: firmware may send numbers as strings or flags as numbers.
for (const auto& slot : slot_infos) { for (const auto& slot : slot_infos) {
if (!slot.is_object())
continue;
FlashforgeMaterialSlot info; FlashforgeMaterialSlot info;
info.slot_id = static_cast<int>(slots.size()) + 1; info.slot_id = slot.value("slotId", static_cast<int>(slots.size()) + 1);
if (const auto it = slot.find("slotId"); it != slot.end()) info.has_filament = slot.value("hasFilament", false);
try_parse_json_int(*it, info.slot_id); info.material_name = slot.value("materialName", std::string());
int has_filament = 0; info.material_color = slot.value("materialColor", std::string());
if (const auto it = slot.find("hasFilament"); it != slot.end() && try_parse_json_int(*it, has_filament))
info.has_filament = has_filament != 0;
if (const auto it = slot.find("materialName"); it != slot.end() && it->is_string())
info.material_name = it->get<std::string>();
if (const auto it = slot.find("materialColor"); it != slot.end() && it->is_string())
info.material_color = it->get<std::string>();
slots.emplace_back(std::move(info)); slots.emplace_back(std::move(info));
} }
@@ -689,4 +670,13 @@ std::string Flashforge::extract_host_name() const
return out; return out;
} }
int Flashforge::get_err_code_from_body(const std::string& body) const
{
pt::ptree root;
std::istringstream iss(body); // wrap returned json to istringstream
pt::read_json(iss, root);
return root.get<int>("err", 0);
}
} // namespace Slic3r } // namespace Slic3r
+1 -2
View File
@@ -45,8 +45,6 @@ public:
PrintHostPostUploadActions get_post_upload_actions() const override { return PrintHostPostUploadAction::StartPrint; } PrintHostPostUploadActions get_post_upload_actions() const override { return PrintHostPostUploadAction::StartPrint; }
std::string get_host() const override { return m_host; } std::string get_host() const override { return m_host; }
bool fetch_material_slots(std::vector<FlashforgeMaterialSlot>& slots, bool* supports_material_station, wxString& msg) const; bool fetch_material_slots(std::vector<FlashforgeMaterialSlot>& slots, bool* supports_material_station, wxString& msg) const;
// Parses a local API "detail" reply. Returns false when the body is not valid JSON.
static bool parse_material_slots(const std::string& body, std::vector<FlashforgeMaterialSlot>& slots, bool* supports_material_station);
static bool discover_printers(std::vector<FlashforgeDiscoveredPrinter>& printers, wxString& msg, int timeout_ms = 10000, int idle_timeout_ms = 1500, int max_retries = 3); static bool discover_printers(std::vector<FlashforgeDiscoveredPrinter>& printers, wxString& msg, int timeout_ms = 10000, int idle_timeout_ms = 1500, int max_retries = 3);
private: private:
@@ -70,6 +68,7 @@ private:
bool request_local_api_json(const std::string& path, const std::string& body, std::string& response_body, wxString& error_msg) const; bool request_local_api_json(const std::string& path, const std::string& body, std::string& response_body, wxString& error_msg) const;
std::string make_http_url(const std::string& path) const; std::string make_http_url(const std::string& path) const;
std::string extract_host_name() const; std::string extract_host_name() const;
int get_err_code_from_body(const std::string &body) const;
bool connect(wxString& msg) const; bool connect(wxString& msg) const;
bool start_print(wxString& msg, const std::string& filename) const; bool start_print(wxString& msg, const std::string& filename) const;
}; };
+9
View File
@@ -141,4 +141,13 @@ bool MKS::start_print(wxString& msg, const std::string& filename) const
return ret; return ret;
} }
int MKS::get_err_code_from_body(const std::string& body) const
{
pt::ptree root;
std::istringstream iss(body); // wrap returned json to istringstream
pt::read_json(iss, root);
return root.get<int>("err", 0);
}
} // Slic3r } // Slic3r
+1
View File
@@ -34,6 +34,7 @@ private:
std::string get_upload_url(const std::string& filename) const; std::string get_upload_url(const std::string& filename) const;
bool start_print(wxString& msg, const std::string& filename) const; bool start_print(wxString& msg, const std::string& filename) const;
int get_err_code_from_body(const std::string& body) const;
}; };
} }
+56 -2
View File
@@ -339,8 +339,62 @@ bool PresetUpdater::priv::get_file(const std::string &url, const fs::path &targe
//BBS: refine preset update logic //BBS: refine preset update logic
bool PresetUpdater::priv::extract_file(const fs::path &source_path, const fs::path &dest_path) bool PresetUpdater::priv::extract_file(const fs::path &source_path, const fs::path &dest_path)
{ {
const std::string parent_path = (!dest_path.empty() ? dest_path : source_path.parent_path()).string(); bool res = true;
return extract_archive_confined(source_path.string(), parent_path); std::string file_path = source_path.string();
std::string parent_path = (!dest_path.empty() ? dest_path : source_path.parent_path()).string();
mz_zip_archive archive;
mz_zip_zero_struct(&archive);
if (!open_zip_reader(&archive, file_path))
{
BOOST_LOG_TRIVIAL(error) << "Unable to open zip reader for "<<file_path;
return false;
}
mz_uint num_entries = mz_zip_reader_get_num_files(&archive);
mz_zip_archive_file_stat stat;
// we first loop the entries to read from the archive the .amf file only, in order to extract the version from it
for (mz_uint i = 0; i < num_entries; ++i)
{
if (mz_zip_reader_file_stat(&archive, i, &stat))
{
std::string dest_file = parent_path+"/"+stat.m_filename;
if (stat.m_is_directory) {
fs::path dest_path(dest_file);
if (!fs::exists(dest_path))
fs::create_directories(dest_path);
continue;
}
else if (stat.m_uncomp_size == 0) {
BOOST_LOG_TRIVIAL(warning) << "[Orca Updater]Unzip: invalid size for file "<<stat.m_filename;
continue;
}
try
{
res = mz_zip_reader_extract_to_file(&archive, stat.m_file_index, dest_file.c_str(), 0);
if (!res) {
BOOST_LOG_TRIVIAL(error) << "[Orca Updater]extract file "<<stat.m_filename<<" to dest "<<dest_file<<" failed";
close_zip_reader(&archive);
return res;
}
BOOST_LOG_TRIVIAL(info) << "[Orca Updater]successfully extract file " << stat.m_file_index << " to "<<dest_file;
}
catch (const std::exception& e)
{
// ensure the zip archive is closed and rethrow the exception
close_zip_reader(&archive);
BOOST_LOG_TRIVIAL(error) << "[Orca Updater]Archive read exception:"<<e.what();
return false;
}
}
else {
BOOST_LOG_TRIVIAL(warning) << "[Orca Updater]Unzip: read file stat failed";
}
}
close_zip_reader(&archive);
return true;
} }
// Remove a leftover partial archive for the vendor about to be synchronized. // Remove a leftover partial archive for the vendor about to be synchronized.
+9 -42
View File
@@ -3,13 +3,10 @@
#include <vector> #include <vector>
#include <thread> #include <thread>
#include <exception> #include <exception>
#include <sstream>
#include <boost/optional.hpp> #include <boost/optional.hpp>
#include <boost/log/trivial.hpp> #include <boost/log/trivial.hpp>
#include <boost/filesystem.hpp> #include <boost/filesystem.hpp>
#include <nlohmann/json.hpp> #include <nlohmann/json.hpp>
#include <boost/property_tree/ptree.hpp>
#include <boost/property_tree/json_parser.hpp>
#include <wx/string.h> #include <wx/string.h>
#include <wx/app.h> #include <wx/app.h>
@@ -175,20 +172,6 @@ std::string moonraker_error_reason(const std::string &body)
} // namespace } // namespace
int PrintHost::get_err_code_from_body(const std::string &body)
{
boost::property_tree::ptree root;
std::istringstream iss(body);
try {
boost::property_tree::read_json(iss, root);
} catch (const std::exception &ex) {
BOOST_LOG_TRIVIAL(error) << "PrintHost: response is not valid JSON: " << ex.what();
return -1;
}
return root.get<int>("err", 0);
}
wxString PrintHost::format_error(const std::string &body, const std::string &error, unsigned status) const wxString PrintHost::format_error(const std::string &body, const std::string &error, unsigned status) const
{ {
if (status != 0) { if (status != 0) {
@@ -432,10 +415,12 @@ void PrintHostJobQueue::priv::remove_source()
source_to_remove.clear(); source_to_remove.clear();
} }
bool PrintHostJobQueue::upload_job(PrintHostJob &job, PrintHost::ProgressFn progress_fn, PrintHost::ErrorFn error_fn, PrintHost::InfoFn info_fn) void PrintHostJobQueue::priv::perform_job(PrintHostJob the_job)
{ {
emit_progress(0); // Indicate the upload is starting
// Captured before upload_data is moved into upload() below. // Captured before upload_data is moved into upload() below.
const std::string upload_filename = job.upload_data.source_path.filename().string(); const std::string upload_filename = the_job.upload_data.source_path.filename().string();
{ {
LifecycleEventContext ctx; LifecycleEventContext ctx;
@@ -444,37 +429,19 @@ bool PrintHostJobQueue::upload_job(PrintHostJob &job, PrintHost::ProgressFn prog
fire_lifecycle_event(LifecycleEvent::UploadStarted, ctx); fire_lifecycle_event(LifecycleEvent::UploadStarted, ctx);
} }
bool success = false; bool success = the_job.printhost->upload(std::move(the_job.upload_data),
std::string error; [this](Http::Progress progress, bool &cancel) { this->progress_fn(std::move(progress), cancel); },
// A throwing upload must not stop the worker, or later jobs would stay queued forever. [this](wxString error) { this->error_fn(std::move(error)); },
try { [this](wxString tag, wxString host) { this->info_fn(std::move(tag), std::move(host)); }
success = job.printhost->upload(std::move(job.upload_data), std::move(progress_fn), error_fn, std::move(info_fn)); );
} catch (const std::exception &e) {
error = e.what();
error_fn(error);
}
{ {
LifecycleEventContext ctx; LifecycleEventContext ctx;
ctx.name = upload_filename; ctx.name = upload_filename;
ctx.code = success ? LifecycleEvtCode::Ok : LifecycleEvtCode::Error; ctx.code = success ? LifecycleEvtCode::Ok : LifecycleEvtCode::Error;
ctx.msg = error;
fire_lifecycle_event(LifecycleEvent::UploadFinished, ctx); fire_lifecycle_event(LifecycleEvent::UploadFinished, ctx);
} }
return success;
}
void PrintHostJobQueue::priv::perform_job(PrintHostJob the_job)
{
emit_progress(0); // Indicate the upload is starting
bool success = PrintHostJobQueue::upload_job(the_job,
[this](Http::Progress progress, bool &cancel) { this->progress_fn(std::move(progress), cancel); },
[this](wxString error) { this->error_fn(std::move(error)); },
[this](wxString tag, wxString host) { this->info_fn(std::move(tag), std::move(host)); }
);
if (success) { if (success) {
emit_progress(100); emit_progress(100);
if (the_job.switch_to_device_tab) { if (the_job.switch_to_device_tab) {
-6
View File
@@ -87,8 +87,6 @@ public:
static PrintHost* get_print_host(DynamicPrintConfig *config); static PrintHost* get_print_host(DynamicPrintConfig *config);
static std::string get_print_host_webui(DynamicPrintConfig *config); static std::string get_print_host_webui(DynamicPrintConfig *config);
// Reads the "err" field of a JSON reply, 0 when absent. Returns -1 when the body is not valid JSON.
static int get_err_code_from_body(const std::string &body);
//Support for cloud webui login //Support for cloud webui login
virtual bool is_cloud() const { return false; } virtual bool is_cloud() const { return false; }
@@ -152,10 +150,6 @@ public:
void enqueue(PrintHostJob job); void enqueue(PrintHostJob job);
void cancel(size_t id); void cancel(size_t id);
// Uploads the job, firing UploadStarted and a matching UploadFinished. An exception thrown by
// the upload is reported through error_fn and makes the upload fail.
static bool upload_job(PrintHostJob &job, PrintHost::ProgressFn progress_fn, PrintHost::ErrorFn error_fn, PrintHost::InfoFn info_fn);
private: private:
struct priv; struct priv;
std::shared_ptr<priv> p; std::shared_ptr<priv> p;
+9
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@@ -654,4 +654,13 @@ bool UltiMaker::start_print(wxString &msg, const std::string &filename, Connecti
return res; return res;
} }
int UltiMaker::get_err_code_from_body(const std::string &body) const
{
pt::ptree root;
std::istringstream iss (body); // wrap returned json to istringstream
pt::read_json(iss, root);
return root.get<int>("err", 0);
}
} }
+1
View File
@@ -64,6 +64,7 @@ private:
void set_auth(Http& http) const; void set_auth(Http& http) const;
void disconnect(ConnectionType connectionType) const; void disconnect(ConnectionType connectionType) const;
bool start_print(wxString &msg, const std::string &filename, ConnectionType connectionType) const; bool start_print(wxString &msg, const std::string &filename, ConnectionType connectionType) const;
int get_err_code_from_body(const std::string &body) const;
}; };
} }
-125
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@@ -768,128 +768,3 @@ TEST_CASE("Each filament prints with its variant of the extruder's variant strin
CHECK(gcode.find("; nozzle_temperature = " + resolved + "\n") != std::string::npos); CHECK(gcode.find("; nozzle_temperature = " + resolved + "\n") != std::string::npos);
} }
} }
// An adaptive pressure advance model predicting the same pressure advance at every flow and acceleration.
static std::string constant_pressure_advance_model(const std::string &pa)
{
return pa + ",1,1000\n" + pa + ",500,1000\n" + pa + ",1,100000\n" + pa + ",500,100000";
}
// The pressure advance values a Klipper G-code sets.
static std::set<std::string> pressure_advance_values(const std::string &gcode)
{
const std::string token = "SET_PRESSURE_ADVANCE ADVANCE=";
std::set<std::string> values;
std::istringstream stream(gcode);
for (std::string line; std::getline(stream, line);)
if (line.rfind(token, 0) == 0)
values.insert(line.substr(token.size(), line.find(';') - token.size()));
return values;
}
// Pressure advance, and the adaptive pressure advance model, are tuned per extruder variant like the
// other filament variant settings.
TEST_CASE("Each filament sets the pressure advance of its extruder variant", "[MultiFilament]")
{
auto [nozzle_volume_type, filament, pressure_advance, adaptive_pressure_advance] = GENERATE(table<NozzleVolumeType, int, std::string, std::string>({
{ nvtStandard, 1, "0.021", "0.012" },
{ nvtHighFlow, 1, "0.037", "0.034" },
{ nvtHighFlow, 2, "0.043", "0.056" }, // filament 2 defines no High Flow variant
}));
const bool adaptive = GENERATE(false, true);
DYNAMIC_SECTION(get_nozzle_volume_type_string(nozzle_volume_type) << " nozzle, filament " << filament << (adaptive ? ", adaptive" : "")) {
DynamicPrintConfig config = multifilament_config(2, {
{ "gcode_flavor", "klipper" },
{ "extruder_variant_list", "Direct Drive Standard,Direct Drive High Flow" },
// filament 1 defines Standard (0.021) and High Flow (0.037), filament 2 Standard (0.043)
{ "filament_extruder_variant", "Direct Drive Standard;Direct Drive High Flow;Direct Drive Standard" },
{ "filament_self_index", "1,1,2" },
{ "enable_pressure_advance", "1,1,1" },
{ "pressure_advance", "0.021,0.037,0.043" },
{ "adaptive_pressure_advance", adaptive ? "1,1,1" : "0,0,0" },
{ "sparse_infill_filament_id", filament },
{ "internal_solid_filament_id", filament },
{ "top_surface_filament_id", filament },
{ "bottom_surface_filament_id", filament },
{ "outer_wall_filament_id", filament },
{ "inner_wall_filament_id", filament },
{ "enable_prime_tower", 0 },
{ "skirt_loops", 0 },
{ "brim_type", "no_brim" },
// custom G-code indexes the per-filament arrays by filament
{ "machine_start_gcode", "; start pressure advance {pressure_advance[initial_extruder]}" },
});
config.option<ConfigOptionStrings>("adaptive_pressure_advance_model")->values = {
constant_pressure_advance_model("0.012"), constant_pressure_advance_model("0.034"), constant_pressure_advance_model("0.056") };
config.option<ConfigOptionEnumsGeneric>("nozzle_volume_type", true)->values = { nozzle_volume_type };
const std::string gcode = slice({ cube(20) }, config);
// The toolchange sets the variant's pressure advance; with adaptive pressure advance, the
// prediction of the variant's model then replaces it.
std::set<std::string> expected{ pressure_advance };
if (adaptive)
expected.insert(adaptive_pressure_advance);
CHECK(pressure_advance_values(gcode) == expected);
CHECK(gcode.find("; start pressure advance " + pressure_advance + "\n") != std::string::npos);
}
}
// On a printer with two extruders, a filament takes the pressure advance of the variant of the extruder
// it is mapped to, whichever filament and extruder that is.
TEST_CASE("Each filament sets the pressure advance of its extruder variant on a two-extruder printer", "[MultiFilament]")
{
auto [filament, extruder, pressure_advance, adaptive_pressure_advance] = GENERATE(table<int, int, std::string, std::string>({
{ 1, 1, "0.021", "0.012" },
{ 1, 2, "0.037", "0.034" },
{ 2, 1, "0.043", "0.056" },
{ 2, 2, "0.049", "0.078" },
}));
const bool adaptive = GENERATE(false, true);
DYNAMIC_SECTION("filament " << filament << " on extruder " << extruder << (adaptive ? ", adaptive" : "")) {
// the other filament goes on the other extruder
const std::string filament_map = filament == 1 ? std::to_string(extruder) + "," + std::to_string(3 - extruder) :
std::to_string(3 - extruder) + "," + std::to_string(extruder);
DynamicPrintConfig config = multifilament_config(2, {
{ "gcode_flavor", "klipper" },
{ "single_extruder_multi_material", 0 },
{ "nozzle_diameter", "0.4,0.4" },
{ "extruder_printable_height", "0,0" },
// extruder 1 has a Standard nozzle, extruder 2 a High Flow one
{ "printer_extruder_id", "1,2" },
{ "printer_extruder_variant", "Direct Drive Standard;Direct Drive High Flow" },
{ "extruder_variant_list", "Direct Drive Standard;Direct Drive High Flow" },
{ "filament_map", filament_map },
// both filaments define Standard and High Flow
{ "filament_extruder_variant", "Direct Drive Standard;Direct Drive High Flow;Direct Drive Standard;Direct Drive High Flow" },
{ "filament_self_index", "1,1,2,2" },
{ "enable_pressure_advance", "1,1,1,1" },
{ "pressure_advance", "0.021,0.037,0.043,0.049" },
{ "adaptive_pressure_advance", adaptive ? "1,1,1,1" : "0,0,0,0" },
{ "sparse_infill_filament_id", filament },
{ "internal_solid_filament_id", filament },
{ "top_surface_filament_id", filament },
{ "bottom_surface_filament_id", filament },
{ "outer_wall_filament_id", filament },
{ "inner_wall_filament_id", filament },
{ "enable_prime_tower", 0 },
{ "skirt_loops", 0 },
{ "brim_type", "no_brim" },
// custom G-code indexes the per-filament arrays by filament
{ "machine_start_gcode", "; start pressure advance {pressure_advance[initial_extruder]}" },
});
config.option<ConfigOptionStrings>("adaptive_pressure_advance_model")->values = {
constant_pressure_advance_model("0.012"), constant_pressure_advance_model("0.034"),
constant_pressure_advance_model("0.056"), constant_pressure_advance_model("0.078") };
config.option<ConfigOptionEnumsGeneric>("extruder_type", true)->values = { etDirectDrive, etDirectDrive };
config.option<ConfigOptionEnumsGeneric>("nozzle_volume_type", true)->values = { nvtStandard, nvtHighFlow };
// keep the mapping above rather than grouping the filaments automatically
config.option<ConfigOptionEnum<FilamentMapMode>>("filament_map_mode", true)->value = fmmManual;
const std::string gcode = slice({ cube(20) }, config);
std::set<std::string> expected{ pressure_advance };
if (adaptive)
expected.insert(adaptive_pressure_advance);
CHECK(pressure_advance_values(gcode) == expected);
CHECK(gcode.find("; start pressure advance " + pressure_advance + "\n") != std::string::npos);
}
}
-1
View File
@@ -44,7 +44,6 @@ add_executable(${_TEST_NAME}_tests
test_lay_on_face.cpp test_lay_on_face.cpp
test_model.cpp test_model.cpp
test_utils.cpp test_utils.cpp
test_miniz_extension.cpp
test_timeutils.cpp test_timeutils.cpp
test_voronoi.cpp test_voronoi.cpp
test_wipe_tower_estimate.cpp test_wipe_tower_estimate.cpp
@@ -717,15 +717,3 @@ TEST_CASE("get_index_for_extruder scales the variant column by the requested str
REQUIRE(col0_stride2 == 0); REQUIRE(col0_stride2 == 0);
REQUIRE(col1_stride2 == 2); REQUIRE(col1_stride2 == 2);
} }
// A per-variant filament option read with a single value gives it to every filament variant. A project
// exported by an older CLI holds a single value for an option no loaded preset defined, such as
// filament_ironing_flow.
TEST_CASE("A per-variant filament option read with a single value gives it to every filament variant", "[Config]")
{
// filament 1 defines Standard and High Flow, filament 2 Standard
DynamicPrintConfig config;
config.option<ConfigOptionInts>("filament_self_index", true)->values = {1, 1, 2};
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}));
}
-194
View File
@@ -1,194 +0,0 @@
#include <catch2/catch_all.hpp>
#include "libslic3r/miniz_extension.hpp"
#include "test_utils.hpp"
#include <boost/filesystem.hpp>
#include <algorithm>
#include <fstream>
#include <iterator>
#include <string>
#include <utility>
#include <vector>
using namespace Slic3r;
namespace fs = boost::filesystem;
namespace {
void write_zip(const fs::path &zip_file, const std::vector<std::pair<std::string, std::string>> &entries)
{
mz_zip_archive zip;
mz_zip_zero_struct(&zip);
REQUIRE(open_zip_writer(&zip, zip_file.string()));
for (const auto &[name, content] : entries)
REQUIRE(mz_zip_writer_add_mem(&zip, name.c_str(), content.data(), content.size(), MZ_DEFAULT_COMPRESSION));
REQUIRE(mz_zip_writer_finalize_archive(&zip));
REQUIRE(close_zip_writer(&zip));
}
// miniz refuses to write a name starting with '/', so write a placeholder of the same length and patch it in place.
void rename_entry(const fs::path &zip_file, const std::string &from, const std::string &to)
{
REQUIRE(from.size() == to.size());
std::string bytes;
{
std::ifstream in(zip_file.string(), std::ios::binary);
bytes.assign(std::istreambuf_iterator<char>(in), std::istreambuf_iterator<char>());
}
size_t count = 0;
for (size_t pos = bytes.find(from); pos != std::string::npos; pos = bytes.find(from, pos + to.size()), ++count)
bytes.replace(pos, from.size(), to);
// Once in the local header and once in the central directory.
REQUIRE(count == 2);
std::ofstream out(zip_file.string(), std::ios::binary | std::ios::trunc);
out << bytes;
}
std::vector<std::string> list_dir(const fs::path &dir)
{
std::vector<std::string> names;
for (const fs::directory_entry &entry : fs::directory_iterator(dir))
names.push_back(entry.path().filename().string());
std::sort(names.begin(), names.end());
return names;
}
std::string read_file(const fs::path &file)
{
std::ifstream in(file.string(), std::ios::binary);
return std::string(std::istreambuf_iterator<char>(in), std::istreambuf_iterator<char>());
}
} // namespace
TEST_CASE("Confined extraction writes a well-formed archive under the target directory", "[MinizExtension]")
{
ScopedTemporaryDir tmp;
const fs::path zip_file = tmp.path() / "bundle.zip";
const fs::path target = tmp.path() / "cache";
fs::create_directories(target);
write_zip(zip_file, {{"vendor/", ""}, {"vendor/machine/", ""}, {"vendor.json", "{\"a\":1}"}, {"vendor/machine/printer.json", "{\"b\":2}"}});
REQUIRE(extract_archive_confined(zip_file.string(), target.string()));
CHECK(fs::is_directory(target / "vendor"));
CHECK(read_file(target / "vendor.json") == "{\"a\":1}");
CHECK(read_file(target / "vendor" / "machine" / "printer.json") == "{\"b\":2}");
}
TEST_CASE("Confined extraction rejects an archive with an entry outside the target directory", "[MinizExtension]")
{
ScopedTemporaryDir tmp;
const fs::path zip_file = tmp.path() / "bundle.zip";
const fs::path target = tmp.path() / "cache";
fs::create_directories(target);
const std::string escaping_entry = GENERATE(std::string("../escape.txt"), std::string("..\\escape.txt"),
std::string("sub/../../escape.txt"), std::string("C:/escape.txt"),
std::string("C:escape.txt"), std::string("\\escape.txt"));
// The normal entry comes first so a per-entry check would already have written it.
write_zip(zip_file, {{"normal.json", "{}"}, {escaping_entry, "escaped"}});
CAPTURE(escaping_entry);
CHECK_FALSE(extract_archive_confined(zip_file.string(), target.string()));
CHECK_FALSE(fs::exists(tmp.path() / "escape.txt"));
CHECK(fs::is_empty(target));
}
TEST_CASE("Confined extraction rejects an archive with an absolute entry name", "[MinizExtension]")
{
ScopedTemporaryDir tmp;
const fs::path zip_file = tmp.path() / "bundle.zip";
const fs::path target = tmp.path() / "cache";
fs::create_directories(target);
const std::string absolute = (tmp.path() / "escape.txt").generic_string();
const std::string placeholder = "#" + absolute.substr(1);
write_zip(zip_file, {{"normal.json", "{}"}, {placeholder, "escaped"}});
rename_entry(zip_file, placeholder, absolute);
CHECK_FALSE(extract_archive_confined(zip_file.string(), target.string()));
CHECK_FALSE(fs::exists(tmp.path() / "escape.txt"));
CHECK(fs::is_empty(target));
}
TEST_CASE("Confined extraction rejects a directory entry outside the target directory", "[MinizExtension]")
{
ScopedTemporaryDir tmp;
const fs::path zip_file = tmp.path() / "bundle.zip";
const fs::path target = tmp.path() / "cache";
fs::create_directories(target);
write_zip(zip_file, {{"vendor/", ""}, {"../outside/", ""}});
CHECK_FALSE(extract_archive_confined(zip_file.string(), target.string()));
CHECK_FALSE(fs::exists(tmp.path() / "outside"));
CHECK(fs::is_empty(target));
}
TEST_CASE("Confined extraction validates zero-size entries like any other", "[MinizExtension]")
{
ScopedTemporaryDir tmp;
const fs::path zip_file = tmp.path() / "bundle.zip";
const fs::path target = tmp.path() / "cache";
fs::create_directories(target);
SECTION("an empty file inside the target does not fail the archive") {
write_zip(zip_file, {{"empty.json", ""}, {"vendor.json", "{}"}});
CHECK(extract_archive_confined(zip_file.string(), target.string()));
CHECK(read_file(target / "vendor.json") == "{}");
}
SECTION("an empty file outside the target rejects the archive") {
write_zip(zip_file, {{"vendor.json", "{}"}, {"../escape.txt", ""}});
CHECK_FALSE(extract_archive_confined(zip_file.string(), target.string()));
CHECK_FALSE(fs::exists(tmp.path() / "escape.txt"));
CHECK(fs::is_empty(target));
}
}
TEST_CASE("Confined extraction writes nothing outside the target for Windows-specific name forms", "[MinizExtension]")
{
ScopedTemporaryDir tmp;
const fs::path zip_file = tmp.path() / "bundle.zip";
const fs::path target = tmp.path() / "cache";
fs::create_directories(target);
// Windows strips trailing dots and spaces and maps device names; whether these extract depends on the
// platform, but none of them may land beside the target.
const std::string name = GENERATE(std::string("name."), std::string("name "), std::string("..."), std::string(".. "),
std::string(".. /escape.txt"), std::string(".../escape.txt"), std::string("CON"),
std::string("sub/NUL.txt"), std::string("C:escape.txt"));
write_zip(zip_file, {{name, "payload"}});
CAPTURE(name);
extract_archive_confined(zip_file.string(), target.string());
CHECK(list_dir(tmp.path()) == std::vector<std::string>{"bundle.zip", "cache"});
}
#ifndef _WIN32
TEST_CASE("Confined extraction replaces a symlink at the destination instead of writing through it", "[MinizExtension]")
{
ScopedTemporaryDir tmp;
const fs::path zip_file = tmp.path() / "bundle.zip";
const fs::path target = tmp.path() / "cache";
const fs::path outside = tmp.path() / "outside";
fs::create_directories(target);
fs::create_directories(outside);
write_zip(zip_file, {{"vendor.json", "{\"a\":1}"}});
SECTION("a dangling symlink") {
fs::create_symlink(outside / "vendor.json", target / "vendor.json");
CHECK(extract_archive_confined(zip_file.string(), target.string()));
CHECK_FALSE(fs::exists(outside / "vendor.json"));
CHECK_FALSE(fs::is_symlink(fs::symlink_status(target / "vendor.json")));
CHECK(read_file(target / "vendor.json") == "{\"a\":1}");
}
SECTION("a symlink to an existing file") {
{ std::ofstream((outside / "vendor.json").string()) << "original"; }
fs::create_symlink(outside / "vendor.json", target / "vendor.json");
extract_archive_confined(zip_file.string(), target.string());
CHECK(read_file(outside / "vendor.json") == "original");
}
}
#endif
+9 -54
View File
@@ -19,8 +19,9 @@ struct LoadedObj
ObjInfo info; ObjInfo info;
}; };
// Loads an OBJ made of the given lines, with a material library that defines material "a". // A tetrahedron with a material and two texture coordinates, (0.25, 0.5) and (0.75, 1).
LoadedObj load_textured_obj(const std::string &body) // Only the first face and the vt lines are varied; the other three faces reference vt 1.
LoadedObj load_textured_tetrahedron(const std::string &first_face, const std::string &vts = "vt 0.25 0.5\nvt 0.75 1\n")
{ {
ScopedTemporaryFile obj(".obj"); ScopedTemporaryFile obj(".obj");
ScopedTemporaryFile mtl(".mtl"); ScopedTemporaryFile mtl(".mtl");
@@ -30,7 +31,12 @@ LoadedObj load_textured_obj(const std::string &body)
} }
{ {
boost::nowide::ofstream out(obj.string()); boost::nowide::ofstream out(obj.string());
out << "mtllib " << mtl.path().filename().string() << "\n" << body; out << "mtllib " << mtl.path().filename().string() << "\n"
<< "v 0 0 0\nv 10 0 0\nv 0 10 0\nv 0 0 10\n"
<< vts
<< "usemtl a\n"
<< first_face << "\n"
<< "f 1/1 2/1 4/1\nf 1/1 4/1 3/1\nf 2/1 3/1 4/1\n";
} }
LoadedObj loaded; LoadedObj loaded;
std::string message; std::string message;
@@ -38,21 +44,6 @@ LoadedObj load_textured_obj(const std::string &body)
return loaded; return loaded;
} }
// A tetrahedron with a material and two texture coordinates, (0.25, 0.5) and (0.75, 1).
// Only the first face and the vt lines are varied; the other three faces reference vt 1.
LoadedObj load_textured_tetrahedron(const std::string &first_face, const std::string &vts = "vt 0.25 0.5\nvt 0.75 1\n")
{
return load_textured_obj("v 0 0 0\nv 10 0 0\nv 0 10 0\nv 0 0 10\n" + vts + "usemtl a\n" + first_face + "\n" +
"f 1/1 2/1 4/1\nf 1/1 4/1 3/1\nf 2/1 3/1 4/1\n");
}
// Texture coordinate n is (n / 10, n / 20), so a UV identifies the vt it came from.
void check_uv_is_vt(const Vec2f &uv, int vt)
{
CHECK_THAT(uv.x(), WithinAbs(vt / 10., 1e-6));
CHECK_THAT(uv.y(), WithinAbs(vt / 20., 1e-6));
}
} // namespace } // namespace
TEST_CASE("An out-of-range texture index falls back to a zero UV and keeps the geometry", "[OBJ][Regression]") TEST_CASE("An out-of-range texture index falls back to a zero UV and keeps the geometry", "[OBJ][Regression]")
@@ -129,39 +120,3 @@ TEST_CASE("A texture coordinate with w does not shift the indices of the ones af
CHECK_THAT(uv[2].x(), WithinAbs(0.75, 1e-6)); CHECK_THAT(uv[2].x(), WithinAbs(0.75, 1e-6));
CHECK_THAT(uv[2].y(), WithinAbs(1., 1e-6)); CHECK_THAT(uv[2].y(), WithinAbs(1., 1e-6));
} }
TEST_CASE("Both triangles of a quad take the texture coordinates of their own corners", "[OBJ][Regression]")
{
const LoadedObj loaded = load_textured_obj("v 0 0 0\nv 10 0 0\nv 10 10 0\nv 0 10 0\n"
"vt 0.1 0.05\nvt 0.2 0.1\nvt 0.3 0.15\nvt 0.4 0.2\n"
"usemtl a\n"
"f 1/1 2/2 3/3 4/4\n");
REQUIRE(loaded.ok);
REQUIRE(loaded.mesh.facets_count() == 2);
REQUIRE(loaded.info.uvs.size() == 2);
check_uv_is_vt(loaded.info.uvs[0][0], 1);
check_uv_is_vt(loaded.info.uvs[0][1], 2);
check_uv_is_vt(loaded.info.uvs[0][2], 3);
check_uv_is_vt(loaded.info.uvs[1][0], 1);
check_uv_is_vt(loaded.info.uvs[1][1], 3);
check_uv_is_vt(loaded.info.uvs[1][2], 4);
}
TEST_CASE("Texture coordinates follow the corners of a mesh that is flipped on load", "[OBJ][Regression]")
{
// The faces wind inwards, so the loader flips them. Vertex n uses vt n.
const LoadedObj loaded = load_textured_obj("v 0 0 0\nv 10 0 0\nv 0 10 0\nv 0 0 10\n"
"vt 0.1 0.05\nvt 0.2 0.1\nvt 0.3 0.15\nvt 0.4 0.2\n"
"usemtl a\n"
"f 1/1 2/2 3/3\nf 1/1 4/4 2/2\nf 1/1 3/3 4/4\nf 2/2 4/4 3/3\n");
REQUIRE(loaded.ok);
const indexed_triangle_set &its = loaded.mesh.its;
CHECK(its_volume(its) > 0.f);
REQUIRE(its.indices.size() == 4);
REQUIRE(loaded.info.uvs.size() == 4);
for (size_t face = 0; face < its.indices.size(); ++face)
for (int corner = 0; corner < 3; ++corner)
check_uv_is_vt(loaded.info.uvs[face][corner], its.indices[face][corner] + 1);
}
@@ -5482,39 +5482,3 @@ TEST_CASE("Config import confines zip entries, preset names and bundle ids to th
CHECK_FALSE(any_filename_contains(temp_dir.path(), "bundle-escape")); CHECK_FALSE(any_filename_contains(temp_dir.path(), "bundle-escape"));
} }
} }
// A project saved before a key joined filament_options_with_variant stores it once per filament,
// while the keys that were already per variant store it once per filament variant. Loading such a
// project gives every variant of a filament that filament's value.
TEST_CASE("A project saved with pressure advance per filament applies it to every variant of the filament", "[Preset][Bundle]")
{
DynamicPrintConfig config = DynamicPrintConfig::full_print_config();
config.opt<ConfigOptionStrings>("filament_colour")->values = { "#FF0000", "#00FF00" };
config.opt<ConfigOptionFloats>("filament_diameter")->values = { 1.75, 1.75 };
config.option<ConfigOptionStrings>("filament_settings_id", true)->values = { "Project PLA", "Project PETG" };
// A multi-variant printer: full_print_config() leaves the list out, and the loader splits the
// variant keys per filament only when the project carries it.
config.option<ConfigOptionStrings>("extruder_variant_list", true)->values = { "Direct Drive Standard,Direct Drive High Flow" };
// filament 1 defines Standard and High Flow, filament 2 Standard
config.opt<ConfigOptionStrings>("filament_extruder_variant")->values = { "Direct Drive Standard", "Direct Drive High Flow", "Direct Drive Standard" };
config.opt<ConfigOptionInts>("filament_self_index")->values = { 1, 1, 2 };
config.opt<ConfigOptionFloatsNullable>("filament_flow_ratio")->values = { 0.95, 0.96, 0.97 }; // one per filament variant
// One per filament, read through the loader that project files go through.
config.load_from_ini_string("pressure_advance = 0.021,0.043", ForwardCompatibilitySubstitutionRule::Disable);
// The CLI slices the config as loaded.
check_double_vector(config.opt<ConfigOptionFloats>("pressure_advance")->values, { 0.021, 0.021, 0.043 });
check_double_vector(config.opt<ConfigOptionFloatsNullable>("filament_flow_ratio")->values, { 0.95, 0.96, 0.97 });
// The GUI normalizes the config before load; mirror that so only the production path runs.
Preset::normalize(config);
PresetBundle bundle;
bundle.load_config_model("test.3mf", std::move(config));
REQUIRE(bundle.filament_presets.size() == 2);
const DynamicPrintConfig &pla = bundle.filaments.find_preset(bundle.filament_presets[0], false, true)->config;
const DynamicPrintConfig &petg = bundle.filaments.find_preset(bundle.filament_presets[1], false, true)->config;
check_double_vector(pla.opt<ConfigOptionFloats>("pressure_advance")->values, { 0.021, 0.021 });
check_double_vector(petg.opt<ConfigOptionFloats>("pressure_advance")->values, { 0.043 });
check_double_vector(pla.opt<ConfigOptionFloatsNullable>("filament_flow_ratio")->values, { 0.95, 0.96 });
check_double_vector(petg.opt<ConfigOptionFloatsNullable>("filament_flow_ratio")->values, { 0.97 });
}

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