Models now resolve to global coordinates, which alone would make things worse:
composed per-instance transforms are float32, and around six million metres
that quantises at roughly half a metre. So the first model to load also sets a
false origin, derived from where its geometry actually sits, unless a host has
set one itself.
WebFederation owns the concepts an .ifcfed carries — a federation unit, a false
origin, a per-model transform and display name — without the file format. The
desktop Federation class is a document model whose sources are local filesystem
paths, which mean nothing in a browser; a host page that wants .ifcfed can parse
the JSON and drive these calls.
Models are keyed by the JS source id rather than the session model id. The
source id exists the moment a File or URL is registered, whereas the session id
is minted inside the async range-read chain, so keying on it lets a transform be
set before the model has streamed and applied when it arrives — the model never
visibly jumps. loadSidecarMetadataWeb gained a completion callback to carry that
id back out, and addFile/addUrl now return the source id and fire onModelLoaded,
where before they were fire-and-forget with no handle and no completion signal.
The embedded sample bypasses the source registry, so it is bound separately;
otherwise the guess never runs for a page that only ever shows the sample.
georef-a and georef-b are the regression fixture: two boxes whose different map
conversions resolve to the same real-world point, so a viewer that applies them
draws one box's worth of scene and one that ignores them spans 707 m. They carry
two meshes each because reorderSidecarByMorton bails out below two and then
writes no chunk table, and a sidecar without one cannot stream over byte ranges.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Background colour gains a meaningful alpha. Below 1 the viewport composites
over whatever the host has stacked behind it rather than painting a colour
of its own; at 0 it clears to nothing, so the model draws over another 3D
view, a map, or ordinary page content. There is no depth interaction -- the
layer behind is strictly behind and cannot occlude the model.
Honouring the alpha needs a premultiplied surface. configureSurface asks for
one only when the platform advertises it, the same way it picks a present
mode, and falls back to Auto otherwise -- this machine's Vulkan surface
offers opaque compositing only, so hardcoding premultiplied would have
requested a mode it does not support. The clear follows that choice: scaled
by alpha when premultiplied, held at 1 when not, since scaling would
otherwise just darken the colour for an alpha nobody reads.
ViewportWindow::setBackgroundColor now forwards to core rather than writing
through a reference proxy, dropping one more member from the friend
declaration it is meant to shrink. The screenshot QImage is tagged
premultiplied to match what the main pass leaves in the buffer.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The renderer tints the selection blue, which says nothing about an object
that is already blue. Add a halo drawn just outside the selected objects
instead: a fixed colour against the background, so it reads whatever the
element is painted.
The mask pass reuses the main shader module and pipeline layout and shares
the main depth buffer read-only, so the halo follows the selection as
visible -- an occluded object contributes nothing. A separable dilation
widens the mask into inner and outer rings, composited after the edge pass
so the edge multiply does not darken it.
On by default; IfcViewer.setSelectionOutline(false) gets the tint alone.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Box select resolved hits by reading the depth-tested object_id MRT, so only
the front-most surface in each pixel could ever come back. In x-ray that is
wrong twice over: you can see the geometry behind, and you still cannot
select it.
Add a second box-pick path used only while x-ray is active. It runs the same
vs_pick geometry through fs_boxpick with depth compare Always, no depth write
and no colour targets, scissored to the marquee — so nothing culls a fragment
behind another and the pass's only output is an atomicOr of one bit per
object into a hit bitmask. Reading that back gives every object with geometry
inside the box, occluded or not.
The bitmask rides alongside sel_flags at group(0) binding 2, allocated and
bound by ensureSelectionFlagsBuffer so the two can never disagree about how
many object ids exist. The layout entry is FRAGMENT-visible only: WebGPU
forbids a read_write storage buffer in the vertex stage, and every pipeline
shares this layout. Back-face culling is off for the pass — a box landing
inside a closed solid would otherwise see none of its faces and miss it.
Outside x-ray the depth-tested read stands, so a plain marquee still takes
only what is visible. A failure to build the pipeline falls back to that path
rather than breaking box select.
Tests cover the three properties worth having: x-ray selects strictly more,
its result is a superset of the plain one (a bare count would wave through a
wrong scissor or an off-by-one in the bit decode), and turning x-ray off
restores front-most-only. They need a model with real self-occlusion, which
sidecar_bake cannot currently produce — it segfaults on any input, including
the pristine sample.ifc — so they skip with an explanation until a fixture is
supplied. See the note at the top of the spec.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Give host pages a real API over the web viewer, not just "embed it and listen
for picks": read/set the camera, read/set multi-selection, enumerate every
object with its IFC identity, drive per-object visibility, and override
object colours.
The wasm boundary keeps to object_ids (u32 arrays marshalled through the heap,
with an "ask twice" convention on the getters); web/ifcviewer.js layers IFC
GlobalId resolution on top, from the element table getObjects() fetches. Every
id-taking call accepts an objectId, a GlobalId, or an element object.
Colour override needed no new mechanism: color_override_rgba8 was already
plumbed through the sidecar, the instance SSBO, the WGSL shader and the
opaque/transparent cull classifier, but nothing ever wrote a non-zero value
into it. setObjectsColor is the missing writer, which is why an alpha below 255
correctly reclassifies the instance into the transparent pass.
Two bugs surfaced while wiring this up:
- wgpu_initialized_ was only ever set by the Qt desktop host, so on web every
upload guarded on it was a silent no-op — including the pre-existing
recomposeAndUploadModel that federation transforms depend on. The core now
latches it in its own web init.
- The demo pages were copied into the build dir by a POST_BUILD command on the
wasm target, so they only refreshed when the wasm itself relinked; editing a
page left a stale copy that the dev server (and the Playwright suite) kept
serving. Each page now has its own copy rule with a real dependency, and
sample.ifcview is a LINK_DEPENDS so regenerating it forces a relink.
applyCachedModel also now keeps the element metadata it already parses on the
path-based load (it was being dropped), so the embedded sample has GUIDs and
the demo works with no file to pick.
The sample model was three coincident cubes, which made per-object hide and
colour look like no-ops — whatever you hid was still drawn by the box behind
it. make_sample.py regenerates it as a slab, a wall and a beam in distinct
places, so the fixture is reproducible rather than an opaque blob.
Demoed by web/scripting.html (linked from the index; viewer is on
window.viewer) and covered by tests/scripting.spec.mjs — 6 cases against a real
GPU, asserting visibility and colour at the pixels, not just at the API.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Full section tool for the web viewport, with the gizmo + interaction shared with
desktop from one codebase.
- True-face surface pick. pickSurfaceAt had always ray-cast the instance AABB (to
skip a depth readback), so cuts sat in front of the real surface. The pick
fragment already computes the exact world_pos (it clips sections with it); now
it OUTPUTS it to a 3rd pick MRT (RGBA32F) that every pick path renders, and
pickSurfaceAt / pickSurfaceAtAsync read it back (decodeMappedPickPosition;
ray-AABB kept only as a fallback). The web async pick chains id -> normal ->
position spontaneous staging maps.
- Web tool: LMB drops a cut at the picked surface (LMB drag still orbits), K
toggles, Shift+K clears; oriented to the real MRT surface normal. Exports + a
Section / Clear cuts toolbar pair.
- Shared gizmo: lifted the section-gizmo renderer (SECTION_WGSL + thick-line AA +
quad+arrow VBO + pack + screen-space hit-test) out of the Qt-coupled
OverlayRenderer into a Qt-free SectionGizmoRenderer that ViewportCore::render
draws for BOTH desktop and web (both already render via render()). One identical
gizmo; OverlayRenderer's now-dead section code removed. Fixed 1 m size (matches
the desktop constant).
- Interaction (shared): hitTestSectionGizmo (SectionGizmoRenderer::hitTest) +
beginSectionDrag / updateSectionDrag / endSectionDrag live in ViewportCore.
Drag a gizmo arrow to slide the plane along its normal; Del/Backspace removes
the most recent cut. Desktop's ViewportWindow dropped its duplicate hit-test /
drag math + state and delegates to the core; web wires the same calls.
Tests: sectionPlaneCount add/clear/cap (Catch2, 125); web smoke "click a surface
cuts geometry, clear restores" exercises the shared gizmo + 3-MRT pick (11/11).
Desktop object-pick / marquee unaffected; BonsaiViewer builds.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Add IfcOpenShell-Python and IfcViewer test-running documentation, including desktop CTest targets and web Playwright smoke tests. Move the web test README content into the Sphinx docs.\n\nGenerated with the assistance of an AI coding tool.
Bring rubber-band box-select to the web on the Web preset's select button (RMB).
- Core: factor the pick-pass encode + rect copy out of picksInRect into
encodeBoxPickToStaging (mirroring how single-pick shares
encodePickReadbackToStaging), shared by the sync picksInRect (desktop) and a
new async picksInRectAsync (web) — the latter maps the staging buffer via a
spontaneous callback because the sync spin-map hangs the JS loop. New
applyMarqueeToSelection (plain replace / Shift add / Ctrl remove).
- Web main_web: a select-button drag past the click threshold draws a marquee
rubber-band (a plain DOM <div> positioned in CSS px — no GPU overlay pass,
which the web lib lacks) and on release box-picks the rect (device px) and
applies it to the selection. A click (no drag) still single-picks.
- Web shell.html: the #marquee div + styling, and — the reported bug — a
contextmenu preventDefault on the canvas so RMB (now the select button) doesn't
pop the browser menu. (Firefox still forces its native menu on Shift+RightClick;
that's a browser escape hatch pages can't override.)
Tests: applyMarqueeToSelection replace/add/remove + id-0 (Catch2, 124 total);
web smoke marquee drag → rubber-band shown → selection changes → hidden (10/10).
Desktop picksInRect unchanged in behaviour; BonsaiViewer builds.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Make orbit/pan/select mouse bindings pure data owned by ViewportCore so both
hosts and every preset share one source of truth, and add a "Web" preset. This
rounds out the matrix: the desktop gains a web-style scheme and the web inherits
all presets, with no per-platform hardcoding.
- Core: NavBindings { orbit, pan, select button + modifier } + setNavPreset
("blender" default | "rhino" | "revit" | "web") + navBindings(). Select is
preset-driven too (was hardcoded LMB) so "web" moves it to RMB. web = orbit
LMB, pan MMB, select RMB (LMB drag orbits with no click/drag ambiguity; RMB
click-selects / drag-marquees). NavMod uses "Plain" not "None" (X11 #defines
None to 0L).
- Desktop ViewportWindow: applyNavPreset sources the core table (mapped to Qt);
marquee-arm / single-pick dispatch keys off select_button_. Default stays
blender → no behaviour change.
- Desktop config: AppSettings::NavPreset gains Web + navPresetName(); the
Settings dialog lists it. This also FIXES a pre-existing gap — the preset combo
was persisted but never applied (only WGPU_NAV_PRESET env worked). MainWindow
now applies the persisted preset at startup (env override still wins) and live
on navPresetChanged, so all four presets actually work from the dialog.
- Web main_web: classifyPress routes the pressed button through navBindings()
(orbit/pan/select), defaulting to the "web" preset; context menu already
suppressed so RMB is free.
Tests: setNavPreset table (Catch2, 123 total); web smoke select tests use RMB.
BonsaiViewer builds; 9/9 web smoke.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Coverage had lagged the recent feature work. Add both layers:
- test_viewport_camera (Catch2, headless): constructs ViewportCore with a mock
ViewportHost — construction/teardown touch no GPU (the wgpu teardown lives in
releaseWgpuModelGpuData, only reached with models loaded), and the camera ops
are pure — so it unit-tests the SHARED fly math fast and deterministically:
flyMove (forward step, 5x boost, opposing-key cancel, dt clamp, QE along +Z,
degenerate-pitch stays finite), flyLook (turn-in-place pins the eye, pitch
clamp), flyAdjustSpeed (x1.25/notch, [0.05,1000] clamp), toggleXray, and
hideSelected/showAll. Links the built IfcViewerCore (ViewportCore.cpp is the
monster TU that can't compile standalone). +9 cases → 122 desktop.
- smoke.spec.mjs (Playwright): fly (enter → W moves the camera → Esc exits),
x-ray (toggle translucency on/off), and hide-after-pick, driving the exported
C hooks end-to-end. +3 cases → 9 web.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The scene core is already multi-model — models_gpu_ is a map, applyCachedModel
APPENDS, and per-model model_id / object_id rebasing / georef+transformation
are how the desktop federates today. The only web-specific gap was the byte
source: web had ONE global source (__ifcvFile/__ifcvUrl) and reset the scene on
every load, so it could show one file at a time. Desktop meanwhile carries a
per-model source (streaming_file_path).
Mirror that on web: give each model its own web_source_id into a JS source
registry (Module.__ifcvSources[id] = a picked File or a sized remote URL).
beginWebChunkLoad, the metadata bootstrap, and the on-demand deferred fetch all
read from the owning model's source, so several files stream concurrently into
one federated scene — reusing all the shared machinery (viewAll, picking, the
GUID fetch) untouched.
- webReadRangesAsync / ifcvReadRangeInto / ifcvSourceSize take a source id.
- loadSidecarMetadataWeb(source_id, …) appends (no resetScene); main_web
exposes load_sidecar_from_source_c(id) + clear_scene_c().
- URL size resolution moved to JS (shell.html registers + sizes sources via
HEAD/Range), retiring the C-side ifcvBeginUrlSource / ifcv_source_ready dance.
- shell.html: source registry + "Open" (replace) / "Add" (append) buttons,
multi-file selection; ?model= registers a URL source then loads.
Verified: two sidecars from two sources stream into one scene, both fully
resident, zero GPU errors. 111/111 unit + 6/6 web smoke pass.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Adds a network byte-source alongside the local Blob one. The async-chunk
infra is source-agnostic — only the two JS primitives knew it was a Blob —
so this generalises them and reuses everything else:
- ifcvReadRangeInto: local → Blob.slice; remote → fetch() with a Range
header (206). If a server ignores Range and returns 200, the requested
window is sliced out so it still works (without the bandwidth saving).
- ifcvFileSize: Blob size, or the URL's total length resolved up front.
- ifcvBeginUrlSource: resolves total size (HEAD Content-Length, else a
0-0 ranged GET's Content-Range) then fires _ifcv_source_ready.
- The metadata bootstrap is extracted into a source-agnostic
loadSidecarMetadataWeb(label); loadSidecarFromBlobWeb / FromUrlWeb are
thin entries. streaming_from_blob → streaming_from_web (now covers both).
main_web exports load_sidecar_from_url_c(url); shell.html reads a
?model=URL query param and ccalls it once the app is live (same-origin
needs no CORS; cross-origin hosts must send CORS + Accept-Ranges).
Test: serve.mjs now answers HEAD + Range (206) and falls back to the
ifcviewer-web source dir for sample.ifcview (embedded in the wasm, not in
build-web). New smoke case loads ?model=/sample.ifcview and asserts it
renders via the Range path. 6/6 web smoke + 107/107 unit pass; desktop
unaffected (web-guarded; only the shared field rename touches it).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The fragment shader pre-decodes sRGB→linear to cancel the surface's
automatic linear→sRGB write encoding, so the final bytes match the GL
backend. That only holds when the render target is an sRGB format. On
desktop the surface's preferred format already is (e.g. BGRA8UnormSrgb),
but the browser canvas only offers plain BGRA8Unorm — so nothing
re-encoded and the whole image (background + models) rendered ~3× too
dark (authored bg 0.125,0.137,0.161 → ~32,35,41 collapsed to ~3,4,6).
Fix: when the surface format isn't sRGB, render through an sRGB *view* of
it — the standard WebGPU canvas pattern. surface_view_format_ is the sRGB
sibling of surface_format_ (unchanged when already sRGB, so desktop is a
no-op); configureSurface advertises it via viewFormats, the colour
pipelines (main, MSAA target, edge) target it, and render() creates the
surface view with it. The screenshot path still reads the base texture, so
its BGRA byte-order check stays on surface_format_.
Regression test: sample a 1x1 background pixel and assert it isn't crushed
dark (R,B > 20). Verified visually too — bg is now the correct dark
blue-gray and the cube is properly lit. 5/5 web smoke + 107/107 unit pass.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
On first web load the sample stayed blank until a click/drag, then popped
in. Root cause: the main draw + cull run before driveStreamingLoads in
render(), so a chunk that becomes resident there is only painted a frame
later. On desktop the streaming thread keeps inFlightApprox() > 0 during a
load, so the render loop keeps ticking and the next frame paints it. On web
the sync MEMFS / Blob load finishes instantly (inFlightApprox stays 0), so
the single post-load requestFrame fired once and the on-demand loop went
idle before the geometry was ever drawn — until some input re-armed it.
Fix: arm a bounded settle burst (kStreamingSettleFrames) whenever there's
streaming activity — a load this frame, work still queued, or a visible
chunk not yet resident — and bleed it down over the next few frames, each
requesting one more. Covers the cull→display latency under an on-demand
loop and still quiesces at idle (no busy-rendering). General, not web-only.
Regression test: the sample must render with NO pointer input — a centred
patch (the framed cube) differs from a corner patch (background); a blank
stall leaves both as background. Verified empirically with a no-interaction
probe (canvas went from a static blank hash to a stable rendered one).
107/107 unit tests pass; 4/4 web smoke tests pass.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Third Playwright case: click dead-centre on the framed sample, assert the
canvas changes (selection highlight rendered) with zero WebGPU errors. A
broken async pick would hang init or leave the canvas unchanged. All three
cases pass.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Adds a second Playwright case that picks the sample sidecar through the
file input, waits for the C side to confirm the blob load (console),
then asserts an orbit drag changes the canvas with zero WebGPU errors.
This exercises the #88 path distinctly from the embedded MEMFS sample —
a broken metadata-head/tail or chunk range read renders blank and fails
the orbit-changed-canvas check. Both cases pass.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Drives the built web page in a real Chrome (channel:'chrome', so no
`playwright install`): waits for wgpu init, then asserts an orbit drag
changes the composited canvas — one check that simultaneously proves the
scene rendered, mouse input is wired, and the log overlay isn't eating
events — and that zero uncaptured WebGPU errors were logged. Every web
bring-up bug so far (blank render, error-buffer cascade, overlay
swallowing input) is this shape; this would have caught them.
serve.mjs statically serves build-web; the config launches headed
against the real GPU (--use-angle=vulkan + --ignore-gpu-blocklist are
load-bearing for a non-null adapter on Linux Chrome). node_modules and
results are gitignored. See README.md to run.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>