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2022-06-23Cycles: unify math functions namesAndrii Symkin
This patch unifies the names of math functions for different data types and uses overloading instead. The goal is to make it possible to swap out all the float3 variables containing RGB data with something else, with as few as possible changes to the code. It's a requirement for future spectral rendering patches. Differential Revision: https://developer.blender.org/D15276
2022-06-17Cleanup: add verbose logging category names instead of numbersBrecht Van Lommel
And use them more consistently than before.
2022-05-23Cycles: Add half precision float support for volumes with NanoVDBPatrick Mours
This patch makes it possible to change the precision with which to store volume data in the NanoVDB data structure (as float, half, or using variable bit quantization) via the previously unused precision field in the volume data block. It makes it possible to further reduce memory usage during rendering, at a slight cost to the visual detail of a volume. Differential Revision: https://developer.blender.org/D10023
2022-05-03Fix T96822: Cycles motion blur + persistent data not updating properlyBrecht Van Lommel
At the frame before/after an object starts moving, it's transform may not be modified but its motion would be and requires an update.
2022-04-20Cleanup: clang-formatCampbell Barton
2022-04-19Cycles: add support for volume motion blurKévin Dietrich
This adds support for rendering motion blur for volumes, using their velocity field. This works for fluid simulations and imported VDB volumes. For the latter, the name of the velocity field can be set per volume object, with automatic detection of velocity fields that are split into 3 scalar grids. A new parameter is also added to scale velocity for more artistic control. Like for Alembic and USD caches, a parameter to set the unit of time in which the velocity vectors are expressed is also added. For Blender gas simulations, the velocity unit should always be in seconds, so this is only exposed for volume objects which may come from external OpenVDB files. These parameters are available under the `Render` panels for the fluid domain and the volume object data properties respectively. Credits: kernel advection code from Tangent Animation's Blackbird based on earlier work by Geraldine Chua Differential Revision: https://developer.blender.org/D14629
2022-04-02Cycles: Add support for light groupsLukas Stockner
Light groups are a type of pass that only contains lighting from a subset of light sources. They are created in the View layer, and light sources (lamps, objects with emissive materials and/or the environment) can be assigned to a group. Currently, each light group ends up generating its own version of the Combined pass. In the future, additional types of passes (e.g. shadowcatcher) might be getting their own per-lightgroup versions. The lightgroup creation and assignment is not Cycles-specific, so Eevee or external render engines could make use of it in the future. Note that Lightgroups are identified by their name - therefore, the name of the Lightgroup in the View Layer and the name that's set in an object's settings must match for it to be included. Currently, changing a Lightgroup's name does not update objects - this is planned for the future, along with other features such as denoising for light groups and viewing them in preview renders. Original patch by Alex Fuller (@mistaed), with some polishing by Lukas Stockner (@lukasstockner97). Differential Revision: https://developer.blender.org/D12871
2022-04-01Cycles: approximate shadow caustics using manifold next event estimationOlivier Maury
This adds support for selective rendering of caustics in shadows of refractive objects. Example uses are rendering of underwater caustics and eye caustics. This is based on "Manifold Next Event Estimation", a method developed for production rendering. The idea is to selectively enable shadow caustics on a few objects in the scene where they have a big visual impact, without impacting render performance for the rest of the scene. The Shadow Caustic option must be manually enabled on light, caustic receiver and caster objects. For such light paths, the Filter Glossy option will be ignored and replaced by sharp caustics. Currently this method has a various limitations: * Only caustics in shadows of refractive objects work, which means no caustics from reflection or caustics that outside shadows. Only up to 4 refractive caustic bounces are supported. * Caustic caster objects should have smooth normals. * Not currently support for Metal GPU rendering. In the future this method may be extended for more general caustics. TECHNICAL DETAILS This code adds manifold next event estimation through refractive surface(s) as a new sampling technique for direct lighting, i.e. finding the point on the refractive surface(s) along the path to a light sample, which satisfies Fermat's principle for a given microfacet normal and the path's end points. This technique involves walking on the "specular manifold" using a pseudo newton solver. Such a manifold is defined by the specular constraint matrix from the manifold exploration framework [2]. For each refractive interface, this constraint is defined by enforcing that the generalized half-vector projection onto the interface local tangent plane is null. The newton solver guides the walk by linearizing the manifold locally before reprojecting the linear solution onto the refractive surface. See paper [1] for more details about the technique itself and [3] for the half-vector light transport formulation, from which it is derived. [1] Manifold Next Event Estimation Johannes Hanika, Marc Droske, and Luca Fascione. 2015. Comput. Graph. Forum 34, 4 (July 2015), 87–97. https://jo.dreggn.org/home/2015_mnee.pdf [2] Manifold exploration: a Markov Chain Monte Carlo technique for rendering scenes with difficult specular transport Wenzel Jakob and Steve Marschner. 2012. ACM Trans. Graph. 31, 4, Article 58 (July 2012), 13 pages. https://www.cs.cornell.edu/projects/manifolds-sg12/ [3] The Natural-Constraint Representation of the Path Space for Efficient Light Transport Simulation. Anton S. Kaplanyan, Johannes Hanika, and Carsten Dachsbacher. 2014. ACM Trans. Graph. 33, 4, Article 102 (July 2014), 13 pages. https://cg.ivd.kit.edu/english/HSLT.php The code for this samping technique was inserted at the light sampling stage (direct lighting). If the walk is successful, it turns off path regularization using a specialized flag in the path state (PATH_MNEE_SUCCESS). This flag tells the integrator not to blur the brdf roughness further down the path (in a child ray created from BSDF sampling). In addition, using a cascading mechanism of flag values, we cull connections to caustic lights for this and children rays, which should be resolved through MNEE. This mechanism also cancels the MIS bsdf counter part at the casutic receiver depth, in essence leaving MNEE as the only sampling technique from receivers through refractive casters to caustic lights. This choice might not be optimal when the light gets large wrt to the receiver, though this is usually not when you want to use MNEE. This connection culling strategy removes a fair amount of fireflies, at the cost of introducing a slight bias. Because of the selective nature of the culling mechanism, reflective caustics still benefit from the native path regularization, which further removes fireflies on other surfaces (bouncing light off casters). Differential Revision: https://developer.blender.org/D13533
2022-03-07Shader Nodes: add Alpha output to Object Info nodeEthan-Hall
An alpha component can be specified for an object's color. This adds an alpha socket to the object info shader node allowing for the alpha component of the object's color to be accessed in the shader editor. Differential Revision: https://developer.blender.org/D14141
2022-02-11Cycles: use SPDX license headersBrecht Van Lommel
* Replace license text in headers with SPDX identifiers. * Remove specific license info from outdated readme.txt, instead leave details to the source files. * Add list of SPDX license identifiers used, and corresponding license texts. * Update copyright dates while we're at it. Ref D14069, T95597
2022-01-05Cleanup: rename mesh -> geom in some places that now handle multiple geom typesBrecht Van Lommel
2021-12-16Cycles: pointcloud renderingBrecht Van Lommel
This add support for rendering of the point cloud object in Blender, as a native geometry type in Cycles that is more memory and time efficient than instancing sphere meshes. This can be useful for rendering sand, water splashes, particles, motion graphics, etc. Points are currently always rendered as spheres, with backface culling. More shapes are likely to be added later, but this is the most important one and can be customized with shaders. For CPU rendering the Embree primitive is used, for GPU there is our own intersection code. Motion blur is suppored. Volumes inside points are not currently supported. Implemented with help from: * Kévin Dietrich: Alembic procedural integration * Patrick Mourse: OptiX integration * Josh Whelchel: update for cycles-x changes Ref T92573 Differential Revision: https://developer.blender.org/D9887
2021-12-14Cleanup: clang-formatCampbell Barton
2021-12-14Fix T94022: Both options GPU/CPU checked under preferences cause viewport ↵Michael Jones
render crash. (ARM/Metal) This fixes crash T94022 when selecting live viewport render with both GPU & CPU devices selected. It is caused by incorrect `KernelBVHLayout` assignment. Similar to `BVH_LAYOUT_MULTI_OPTIX` for Optix, this patch adds a `BVH_LAYOUT_MULTI_METAL` to correctly redirect to the correct Metal BVH layout type. Reviewed By: brecht Differential Revision: https://developer.blender.org/D13561
2021-11-29Cycles: MetalRT support (kernel side)Michael Jones
This patch adds MetalRT support to Cycles kernel code. It is mostly additive in nature or confined to Metal-specific code, however there are a few areas where this interacts with other code: - MetalRT closely follows the Optix implementation, and in some cases (notably handling of transforms) it makes sense to extend Optix special-casing to MetalRT. For these generalisations we now have `__KERNEL_GPU_RAYTRACING__` instead of `__KERNEL_OPTIX__`. - MetalRT doesn't support primitive offsetting (as with `primitiveIndexOffset` in Optix), so we define and populate a new kernel texture, `__object_prim_offset`, containing per-object primitive / curve-segment offsets. This is referenced and applied in MetalRT intersection handlers. - Two new BVH layout enum values have been added: `BVH_LAYOUT_METAL` and `BVH_LAYOUT_MULTI_METAL_EMBREE` for XPU mode). Some host-side enum case handling has been updated where it is trivial to do so. Ref T92212 Reviewed By: brecht Maniphest Tasks: T92212 Differential Revision: https://developer.blender.org/D13353
2021-10-26Cycles: remove prefix from source code file namesBrecht Van Lommel
Remove prefix of filenames that is the same as the folder name. This used to help when #includes were using individual files, but now they are always relative to the cycles root directory and so the prefixes are redundant. For patches and branches, git merge and rebase should be able to detect the renames and move over code to the right file.
2021-10-26Cycles: changes to source code folders structureBrecht Van Lommel
* Split render/ into scene/ and session/. The scene/ folder now contains the scene and its nodes. The session/ folder contains the render session and associated data structures like drivers and render buffers. * Move top level kernel headers into new folders kernel/camera/, kernel/film/, kernel/light/, kernel/sample/, kernel/util/ * Move integrator related kernel headers into kernel/integrator/ * Move OSL shaders from kernel/shaders/ to kernel/osl/shaders/ For patches and branches, git merge and rebase should be able to detect the renames and move over code to the right file.