This is 466 KB insted of the usual 850 KB. It assumes that users do not
need spec-gloss, non-lit, or a special transparency mode.
(uncompressed SO size on arm64)
We can add a new maven project for this next week.
math/mathwfd.h forward declares all {mat|vec}{2|3|4}<> classes,
which allows us to remove their respective #include in a lot of
our public headers.
Our math headers are full of templates, so this should help build times
a bit.
Also we want to keep the public headers as minimalist as possible.
There was actually no need to give special treatment to leading drive
designators since they effectively form the first path segment anyway.
To help prevent regressions, I added a few unit tests in a previous CL.
The motivation for the CL is to remove a dependency on `locale.cpp`,
which can result in shorter build times and reduced binary sizes.
For Android and wasm we do not use the filesystem and therefore do not
need `utils::Path`.
```
libgltfio-jni.so BEFORE 1.9 MB (693 KB gzipped)
libgltfio-jni.so AFTER 1.4 MB (542 KB gzipped)
```
Note that libgeometry is already included in `filament-android`, this
simply exposes more of its existing functionality.
The Java version of SurfaceOrientation is similar to the JavaScript
version because we are bundling it into the main Filament package, even
though it is a separate library in C++. This is much simpler than
creating a brand new Java package.
New Android sample that tests this is forthcoming.
Fixes#1729.
Fulfills a request from tirichards@.
This is similar in some ways to dynamic backface culling but simpler
because there is no interaction with double-sided lighting.
For reference, dynamic backface culling was implemented with #1936, #1877, #1641.
This "fixes" the new animated Fox model in the glTF conformance suite.
As per the glTF spec, we now generate per-face normals for the case
where normals are not specified in the model.
Note that true flat shading (i.e. flat interpolation) is not a
requirement in the glTF spec, since some Khronos members advocate for
WebGL 1.0 compatibility.
Fixes#2088.
This feature adds one new method to `FilamentAsset` and uses it in our
Kotlin, JavaScript, and C++ helpers:
utils::Entity popRenderable() noexcept;
This pops a ready renderable off an internal queue, or returns 0 if no
renderables have become ready. It provides a simple way for clients to
gradually add renderables to the scene as they become ready. Previously
clients could only get the entire list of entities, regardless of
whether they had Renderable components or complete textures.
To facilitate this feature, this PR adds a new internal-only class to
gltfio called `DependencyGraph`, which is a temporary object used for
bookkeeping during the asynchronous load.
`DependencyGraph` discovers ready-to-render entities by tracking the
textures that each entity depends on. This is a graph because
renderables connect to a set of material instances, which in turn
connect to a set of parameter names, which in turn connect to a set of
texture objects. These relationships are not easily inspectable using
the Filament API or ECS.
We now use a fixed-size kernel (right now 17), for each mip-level.
And we workout the mapping from roughness to such mip.
This improves performance by reducing significantly the number of taps
per mip, however, we don't control how much blur is actually applied
at each level. This gives a mip-chain that is proportional to
'roughness'.
It's now easier to tune quality vs. speed by tweaking the kernel's width
as well as how we map 'sigma' to a the kernel width.
We were already using jobs for decoding PNG and JPEG files, but we were
doing a join. This add three methods to ResourceLoader that allow
clients to amortize the decoding process across multiple frames, even on
single-threaded platforms like WebGL.
This PR adds async loading to the following demos:
- samples/gltf_viewer (now shows a progress bar in the UI)
- android/sample-gltf-viewer
- web/samples/helmet.html
Fixes#1876.
With this PR screen-space refraction is functional.
Caveats:
The blur passes for supporting rough refractive materials is quite
heavy and increases with the resolution.
SSR uses a gaussian approximation for the brdf and therefore doesn’t
match perfectly cubemap-based refraction and IBL.
The use of MSAA with screen-space effects, while working, is going
to incur a large cost, especially on tilers.
Replace with forward declarations if needed and includes in .cpp that
now need them.
The idea here is to have our headers have the least amount of impact as
possible on our clients (e.g. compilation time).
Add bindings for releaseSourceAsset() and fix a double-free issue.
According to the Android Studio profiler, this makes Java memory usage
go from 18.6 MB to 6.5 MB.
glTF specifies that client implementations must support at least two UV
texture coordinate sets but does not seem to have an upper limit.
We use a mapping table in order to honor high-numbered UV set indices,
but our mapping table only accomodates 8 entries.
Fixes#2042
This makes the upcoming Java bindings simpler and improves parity with
existing API conventions.
Note that camutils does not depend on filament and therefore cannot use
BuilderBase.
Note that the Manipulator Builder state is public which breaks with
convention but makes implementation simple and allows C++ clients to
continue using modern initializer syntax if they wish.
This was untested because our only glTF Android sample uses glb instead
of JSON. We will soon be adding a new Android demo that uses an actual
gltf file.
This fixes#1841.
This is in preparation to supporting screen-space effects.
There are two major changes:
- RenderPass is now copiable and intended to be passed by copy to
the execute stage of frame graph passes
- The color pass is in its own function now
This actually simplify RenderPass api.
Rotate the sample pattern at every light direction, which trades
aliasing for noise (which is arguably more pleasant) for IBLs with
very high frequency (i.e. high level of HDR-ness).
This moves the camera manipulator into its own library and adds new
functionality including a new "Google Maps" manipulator and a bookmark
feature to facilitate camera animation.
Java bindings and an Android sample will land later this week.
In glTF, multiple nodes can refer to the same mesh, and each node can be
assigned a unqiue string label. Previously we used NameComponentManager
to annotate entities with mesh labels rather than node labels. This was
wrong because Filament entities are 1:1 with nodes, not meshes.
We still fall back to mesh labels when node labels are not provided.
An version of clang is smarter about generating warnings for template code. `assert` here is not included, so clang generates: `error: use of undeclared identifier 'assert'`