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2021-03-10DNA: add defaults for UnifiedPaintSettingsSiddhartha Jejurkar
Newly created scenes had unified paint settings zeroed. see T80164 Ref D10658
2021-02-13EEVEE: Depth of field: New implementationClément Foucault
This is a complete refactor over the old system. The goal was to increase quality first and then have something more flexible and optimised. |{F9603145} | {F9603142}|{F9603147}| This fixes issues we had with the old system which were: - Too much overdraw (low performance). - Not enough precision in render targets (hugly color banding/drifting). - Poor resolution near in-focus regions. - Wrong support of orthographic views. - Missing alpha support in viewport. - Missing bokeh shape inversion on foreground field. - Issues on some GPUs. (see T72489) (But I'm sure this one will have other issues as well heh...) - Fix T81092 I chose Unreal's Diaphragm DOF as a reference / goal implementation. It is well described in the presentation "A Life of a Bokeh" by Guillaume Abadie. You can check about it here https://epicgames.ent.box.com/s/s86j70iamxvsuu6j35pilypficznec04 Along side the main implementation we provide a way to increase the quality by jittering the camera position for each sample (the ones specified under the Sampling tab). The jittering is dividing the actual post processing dof radius so that it fills the undersampling. The user can still add more overblur to have a noiseless image, but reducing bokeh shape sharpness. Effect of overblur (left without, right with): | {F9603122} | {F9603123}| The actual implementation differs a bit: - Foreground gather implementation uses the same "ring binning" accumulator as background but uses a custom occlusion method. This gives the problem of inflating the foreground elements when they are over background or in-focus regions. This is was a hard decision but this was preferable to the other method that was giving poor opacity masks for foreground and had other more noticeable issues. Do note it is possible to improve this part in the future if a better alternative is found. - Use occlusion texture for foreground. Presentation says it wasn't really needed for them. - The TAA stabilisation pass is replace by a simple neighborhood clamping at the reduce copy stage for simplicity. - We don't do a brute-force in-focus separate gather pass. Instead we just do the brute force pass during resolve. Using the separate pass could be a future optimization if needed but might give less precise results. - We don't use compute shaders at all so shader branching might not be optimal. But performance is still way better than our previous implementation. - We mainly rely on density change to fix all undersampling issues even for foreground (which is something the reference implementation is not doing strangely). Remaining issues (not considered blocking for me): - Slight defocus stability: Due to slight defocus bruteforce gather using the bare scene color, highlights are dilated and make convergence quite slow or imposible when using jittered DOF (or gives ) - ~~Slight defocus inflating: There seems to be a 1px inflation discontinuity of the slight focus convolution compared to the half resolution. This is not really noticeable if using jittered camera.~~ Fixed - Foreground occlusion approximation is a bit glitchy and gives incorrect result if the a defocus foreground element overlaps a farther foreground element. Note that this is easily mitigated using the jittered camera position. |{F9603114}|{F9603115}|{F9603116}| - Foreground is inflating, not revealing background. However this avoids some other bugs too as discussed previously. Also mitigated with jittered camera position. |{F9603130}|{F9603129}| - Sensor vertical fit is still broken (does not match cycles). - Scattred bokeh shapes can be a bit strange at polygon vertices. This is due to the distance field stored in the Bokeh LUT which is not rounded at the edges. This is barely noticeable if the shape does not rotate. - ~~Sampling pattern of the jittered camera position is suboptimal. Could try something like hammersley or poisson disc distribution.~~Used hexaweb sampling pattern which is not random but has better stability and overall coverage. - Very large bokeh (> 300 px) can exhibit undersampling artifact in gather pass and quite a bit of bleeding. But at this size it is preferable to use jittered camera position. Codewise the changes are pretty much self contained and each pass are well documented. However the whole pipeline is quite complex to understand from bird's-eye view. Notes: - There is the possibility of using arbitrary bokeh texture with this implementation. However implementation is a bit involved. - Gathering max sample count is hardcoded to avoid to deal with shader variations. The actual max sample count is already quite high but samples are not evenly distributed due to the ring binning method. - While this implementation does not need 32bit/channel textures to render correctly it does use many other textures so actual VRAM usage is higher than previous method for viewport but less for render. Textures are reused to avoid many allocations. - Bokeh LUT computation is fast and done for each redraw because it can be animated. Also the texture can be shared with other viewport with different camera settings.
2020-10-01Volumes: support lower resolution in viewportJacques Lucke
The adds a new option to simplify volumes in the viewport. The setting can be found in the Simplify panel in the render properties. Volume objects use OpenVDB grids, which are sparse. For rendering, we have to convert sparse grids to dense grids (for now). Those require significantly more memory. Therefore, it's often a good idea to reduce the resolution of volumes in the viewport. Reviewers: brecht Differential Revision: https://developer.blender.org/D9040 Ref T73201.
2020-08-17Cleanup: header order, trailing spaceCampbell Barton
2020-08-07Code Style: use "#pragma once" in source directoryJacques Lucke
This replaces header include guards with `#pragma once`. A couple of include guards are not removed yet (e.g. `__RNA_TYPES_H__`), because they are used in other places. This patch has been generated by P1561 followed by `make format`. Differential Revision: https://developer.blender.org/D8466
2020-07-01Transform: generalized custom-data correction supportGermano Cavalcante
Support custom-data correction based on surrounding geometry for all transformation modes of the mesh transform operators. The is the same logic used in Vert and Edge Slide. In order not to change the current default behavior, this property does not affect Vert and Edge Slide modes.
2020-06-29Fix compiler warning for deprecated variable useJulian Eisel
2020-06-23EEVEE: Motion Blur: Add accumulation motion blur for better precisionClément Foucault
This revisit the render pipeline to support time slicing for better motion blur. We support accumulation with or without the Post-process motion blur. If using the post-process, we reuse last step next motion data to avoid another scene reevaluation. This also adds support for hair motion blur which is handled in a similar way as mesh motion blur. The total number of samples is distributed evenly accross all timesteps to avoid sampling weighting issues. For this reason, the sample count is (internally) rounded up to the next multiple of the step count. Only FX Motion BLur: {F8632258} FX Motion Blur + 4 time steps: {F8632260} FX Motion Blur + 32 time steps: {F8632261} Reviewed By: jbakker Differential Revision: https://developer.blender.org/D8079
2020-06-19EEEVEE: Object Motion Blur: Initial ImplementationClément Foucault
This adds object motion blur vectors for EEVEE as well as better noise reduction for it. For TAA reprojection we just compute the motion vector on the fly based on camera motion and depth buffer. This makes possible to store another motion vector only for the blurring which is not useful for TAA history fetching. Motion Data is saved per object & per geometry if using deformation blur. We support deformation motion blur by saving previous VBO and modifying the actual GPUBatch for the geometry to include theses VBOs. We store Previous and Next frame motion in the same motion vector buffer (RG for prev and BA for next). This makes non linear motion blur (like rotating objects) less prone to outward/inward blur. We also improve the motion blur post process to expand outside the objects border. We use a tile base approach and the max size of the blur is set via a new render setting. We use a background reconstruction method that needs another setting (Background Separation). Sampling is done using a fixed 8 dithered samples per direction. The final render samples will clear the noise like other stochastic effects. One caveat is that hair particles are not yet supported. Support will come in another patch. Reviewed By: jbakker Differential Revision: https://developer.blender.org/D7297
2020-03-11EEVEE: Replace octahedron reflection probe by cubemap arrayClément Foucault
We implement cubemap array support for EEVEE's lightcache reflection probes. This removes stretched texels and bottom hemisphere seams artifacts caused by the octahedral projection previously used. This introduce versioning code for the lightcache which will discard any lightcache version that is not compatible. Differential Revision: https://developer.blender.org/D7066
2020-02-15Cleanup: remove unused RenderData.displaymodeCampbell Barton
2019-11-12Fix T71508: wrong gravity settings in scene defaultsPhilipp Oeser
Typo in rBf5e0dfe59c7e. Showed when creating a new default scene. Maniphest Tasks: T71508 Differential Revision: https://developer.blender.org/D6229
2019-09-19Cleanup: spellingCampbell Barton
2019-09-11DNA: initialize defaults for output pathsCampbell Barton
2019-09-09DNA: initial DNA defaults supportCampbell Barton
This provides an API to access structs with their members set to default values: - DNA_struct_default_get(name) - DNA_struct_default_alloc(name) Currently this is only used for scene & view shading initialization, eventually it can be used for RNA defaults and initializing DNA struct members on file reading.