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2022-05-11Cleanup: use '_num' suffix, mostly for curves & spline codeCampbell Barton
Replace tot/amount & size with num, in keeping with T85728.
2022-04-21Geometry Nodes: better support for byte color attributesJacques Lucke
Since {rBeae36be372a6b16ee3e76eff0485a47da4f3c230} the distinction between float and byte colors is more explicit in the ui. So far, geometry nodes couldn't really deal with byte colors in general. This patch fixes that. There is still only one color socket, which contains float colors. Conversion to and from byte colors is done when read from or writing to attributes. * Support writing to byte color attributes in Store Named Attribute node. * Support converting to/from byte color in attribute conversion operator. * Support propagating byte color attributes. * Add all the implicit conversions from byte colors to the other types. * Display byte colors as integers in spreadsheet. Differential Revision: https://developer.blender.org/D14705
2022-04-20Cleanup: Rename CD_MLOOPCOL to CD_PROP_BYTE_COLORHans Goudey
The "PROP" in the name reflects its generic status, and removing "LOOP" makes sense because it is no longer associated with just mesh face corners. In general the goal is to remove extra semantic meaning from the custom data types.
2022-04-06Cleanup: Simplify if statements, clang tidyHans Goudey
2022-04-01Cleanup: Move geometry set fields to a separate headerHans Goudey
This commit moves declarations that depend on `FN_field.hh` out of `BKE_geometry_set.hh` into `BKE_geometry_fields.hh`. This helps to reduce the number of areas that need to depend on the functions module, which recently came in in review of D11591. In the future we may have a library of standard field inputs in order to make composing algorithms easier, so it makes sense to have a header that could contain them and some basic related utilities relating the concepts of geometry and fields. Reducing use of unnecessary headers may also reduce compilation time. Differential Revision: https://developer.blender.org/D14517
2022-03-24Geometry Nodes: Improve performance writing to vertex groupsHans Goudey
In a test file from T96282, this commit reduces the runtime of the delete geometry node from 82 ms to 23 ms, a 3.6x improvement. Writing to vertex groups in other cases should be faster too. The largest improvement comes from not writing a new weight of zero if the vertex is not in the group. This mirrors the behavior of custom data interpolation in `layerInterp_mdeformvert`. Other improvements come from using `set_all` for writing output attributes and implementing that method for vertex groups. I also implemented `materialize` methods. Though I didn't obverse an improvement from this, I think it's best to remove virtual method call overhead where it's simple to do so. The test file for the delete geometry node needs to be updated. These methods could be parallelized too, but better to do that later. Differential Revision: https://developer.blender.org/D14420
2022-03-19BLI: move generic data structures to blenlibJacques Lucke
This is a follow up to rB2252bc6a5527cd7360d1ccfe7a2d1bc640a8dfa6.
2022-03-15Cleanup: remove accidental shallow mesh copyJacques Lucke
2022-03-11Fix: Deleting vertex group attribute can change original meshHans Goudey
There was an error with the attribute API implementation for vertex groups. If the vertex group layer referenced an original mesh, it wasn't properly duplicated for writing.
2022-02-16Cleanup: Deduplicate functions for creating attributesHans Goudey
2022-02-11File headers: SPDX License migrationCampbell Barton
Use a shorter/simpler license convention, stops the header taking so much space. Follow the SPDX license specification: https://spdx.org/licenses - C/C++/objc/objc++ - Python - Shell Scripts - CMake, GNUmakefile While most of the source tree has been included - `./extern/` was left out. - `./intern/cycles` & `./intern/atomic` are also excluded because they use different header conventions. doc/license/SPDX-license-identifiers.txt has been added to list SPDX all used identifiers. See P2788 for the script that automated these edits. Reviewed By: brecht, mont29, sergey Ref D14069
2022-01-18Geometry Nodes: improve domain interpolation codeJacques Lucke
It's now easier than before to do the interpolation of attributes only for the elements that are actually used in some cases. This can result in a speedup because unnecessary computations can be avoided. See the patch for a simple performance test. Differential Revision: https://developer.blender.org/D13828
2022-01-13Refactor: Move normals out of MVert, lazy calculationHans Goudey
As described in T91186, this commit moves mesh vertex normals into a contiguous array of float vectors in a custom data layer, how face normals are currently stored. The main interface is documented in `BKE_mesh.h`. Vertex and face normals are now calculated on-demand and cached, retrieved with an "ensure" function. Since the logical state of a mesh is now "has normals when necessary", they can be retrieved from a `const` mesh. The goal is to use on-demand calculation for all derived data, but leave room for eager calculation for performance purposes (modifier evaluation is threaded, but viewport data generation is not). **Benefits** This moves us closer to a SoA approach rather than the current AoS paradigm. Accessing a contiguous `float3` is much more efficient than retrieving data from a larger struct. The memory requirements for accessing only normals or vertex locations are smaller, and at the cost of more memory usage for just normals, they now don't have to be converted between float and short, which also simplifies code In the future, the remaining items can be removed from `MVert`, leaving only `float3`, which has similar benefits (see T93602). Removing the combination of derived and original data makes it conceptually simpler to only calculate normals when necessary. This is especially important now that we have more opportunities for temporary meshes in geometry nodes. **Performance** In addition to the theoretical future performance improvements by making `MVert == float3`, I've done some basic performance testing on this patch directly. The data is fairly rough, but it gives an idea about where things stand generally. - Mesh line primitive 4m Verts: 1.16x faster (36 -> 31 ms), showing that accessing just `MVert` is now more efficient. - Spring Splash Screen: 1.03-1.06 -> 1.06-1.11 FPS, a very slight change that at least shows there is no regression. - Sprite Fright Snail Smoosh: 3.30-3.40 -> 3.42-3.50 FPS, a small but observable speedup. - Set Position Node with Scaled Normal: 1.36x faster (53 -> 39 ms), shows that using normals in geometry nodes is faster. - Normal Calculation 1.6m Vert Cube: 1.19x faster (25 -> 21 ms), shows that calculating normals is slightly faster now. - File Size of 1.6m Vert Cube: 1.03x smaller (214.7 -> 208.4 MB), Normals are not saved in files, which can help with large meshes. As for memory usage, it may be slightly more in some cases, but I didn't observe any difference in the production files I tested. **Tests** Some modifiers and cycles test results need to be updated with this commit, for two reasons: - The subdivision surface modifier is not responsible for calculating normals anymore. In master, the modifier creates different normals than the result of the `Mesh` normal calculation, so this is a bug fix. - There are small differences in the results of some modifiers that use normals because they are not converted to and from `short` anymore. **Future improvements** - Remove `ModifierTypeInfo::dependsOnNormals`. Code in each modifier already retrieves normals if they are needed anyway. - Copy normals as part of a better CoW system for attributes. - Make more areas use lazy instead of eager normal calculation. - Remove `BKE_mesh_normals_tag_dirty` in more places since that is now the default state of a new mesh. - Possibly apply a similar change to derived face corner normals. Differential Revision: https://developer.blender.org/D12770
2022-01-12BLI: Refactor vector types & functions to use templatesClément Foucault
This patch implements the vector types (i.e:`float2`) by making heavy usage of templating. All vector functions are now outside of the vector classes (inside the `blender::math` namespace) and are not vector size dependent for the most part. In the ongoing effort to make shaders less GL centric, we are aiming to share more code between GLSL and C++ to avoid code duplication. ####Motivations: - We are aiming to share UBO and SSBO structures between GLSL and C++. This means we will use many of the existing vector types and others we currently don't have (uintX, intX). All these variations were asking for many more code duplication. - Deduplicate existing code which is duplicated for each vector size. - We also want to share small functions. Which means that vector functions should be static and not in the class namespace. - Reduce friction to use these types in new projects due to their incompleteness. - The current state of the `BLI_(float|double|mpq)(2|3|4).hh` is a bit of a let down. Most clases are incomplete, out of sync with each others with different codestyles, and some functions that should be static are not (i.e: `float3::reflect()`). ####Upsides: - Still support `.x, .y, .z, .w` for readability. - Compact, readable and easilly extendable. - All of the vector functions are available for all the vectors types and can be restricted to certain types. Also template specialization let us define exception for special class (like mpq). - With optimization ON, the compiler unroll the loops and performance is the same. ####Downsides: - Might impact debugability. Though I would arge that the bugs are rarelly caused by the vector class itself (since the operations are quite trivial) but by the type conversions. - Might impact compile time. I did not saw a significant impact since the usage is not really widespread. - Functions needs to be rewritten to support arbitrary vector length. For instance, one can't call `len_squared_v3v3` in `math::length_squared()` and call it a day. - Type cast does not work with the template version of the `math::` vector functions. Meaning you need to manually cast `float *` and `(float *)[3]` to `float3` for the function calls. i.e: `math::distance_squared(float3(nearest.co), positions[i]);` - Some parts might loose in readability: `float3::dot(v1.normalized(), v2.normalized())` becoming `math::dot(math::normalize(v1), math::normalize(v2))` But I propose, when appropriate, to use `using namespace blender::math;` on function local or file scope to increase readability. `dot(normalize(v1), normalize(v2))` ####Consideration: - Include back `.length()` method. It is quite handy and is more C++ oriented. - I considered the GLM library as a candidate for replacement. It felt like too much for what we need and would be difficult to extend / modify to our needs. - I used Macros to reduce code in operators declaration and potential copy paste bugs. This could reduce debugability and could be reverted. - This touches `delaunay_2d.cc` and the intersection code. I would like to know @howardt opinion on the matter. - The `noexcept` on the copy constructor of `mpq(2|3)` is being removed. But according to @JacquesLucke it is not a real problem for now. I would like to give a huge thanks to @JacquesLucke who helped during this and pushed me to reduce the duplication further. Reviewed By: brecht, sergey, JacquesLucke Differential Revision: https://developer.blender.org/D13791
2022-01-12Revert "BLI: Refactor vector types & functions to use templates"Clément Foucault
Includes unwanted changes This reverts commit 46e049d0ce2bce2f53ddc41a0dbbea2969d00a5d.
2022-01-12BLI: Refactor vector types & functions to use templatesClment Foucault
This patch implements the vector types (i.e:`float2`) by making heavy usage of templating. All vector functions are now outside of the vector classes (inside the `blender::math` namespace) and are not vector size dependent for the most part. In the ongoing effort to make shaders less GL centric, we are aiming to share more code between GLSL and C++ to avoid code duplication. ####Motivations: - We are aiming to share UBO and SSBO structures between GLSL and C++. This means we will use many of the existing vector types and others we currently don't have (uintX, intX). All these variations were asking for many more code duplication. - Deduplicate existing code which is duplicated for each vector size. - We also want to share small functions. Which means that vector functions should be static and not in the class namespace. - Reduce friction to use these types in new projects due to their incompleteness. - The current state of the `BLI_(float|double|mpq)(2|3|4).hh` is a bit of a let down. Most clases are incomplete, out of sync with each others with different codestyles, and some functions that should be static are not (i.e: `float3::reflect()`). ####Upsides: - Still support `.x, .y, .z, .w` for readability. - Compact, readable and easilly extendable. - All of the vector functions are available for all the vectors types and can be restricted to certain types. Also template specialization let us define exception for special class (like mpq). - With optimization ON, the compiler unroll the loops and performance is the same. ####Downsides: - Might impact debugability. Though I would arge that the bugs are rarelly caused by the vector class itself (since the operations are quite trivial) but by the type conversions. - Might impact compile time. I did not saw a significant impact since the usage is not really widespread. - Functions needs to be rewritten to support arbitrary vector length. For instance, one can't call `len_squared_v3v3` in `math::length_squared()` and call it a day. - Type cast does not work with the template version of the `math::` vector functions. Meaning you need to manually cast `float *` and `(float *)[3]` to `float3` for the function calls. i.e: `math::distance_squared(float3(nearest.co), positions[i]);` - Some parts might loose in readability: `float3::dot(v1.normalized(), v2.normalized())` becoming `math::dot(math::normalize(v1), math::normalize(v2))` But I propose, when appropriate, to use `using namespace blender::math;` on function local or file scope to increase readability. `dot(normalize(v1), normalize(v2))` ####Consideration: - Include back `.length()` method. It is quite handy and is more C++ oriented. - I considered the GLM library as a candidate for replacement. It felt like too much for what we need and would be difficult to extend / modify to our needs. - I used Macros to reduce code in operators declaration and potential copy paste bugs. This could reduce debugability and could be reverted. - This touches `delaunay_2d.cc` and the intersection code. I would like to know @howardt opinion on the matter. - The `noexcept` on the copy constructor of `mpq(2|3)` is being removed. But according to @JacquesLucke it is not a real problem for now. I would like to give a huge thanks to @JacquesLucke who helped during this and pushed me to reduce the duplication further. Reviewed By: brecht, sergey, JacquesLucke Differential Revision: https://developer.blender.org/D13791
2022-01-12Revert "BLI: Refactor vector types & functions to use templates"Clément Foucault
Reverted because the commit removes a lot of commits. This reverts commit a2c1c368af48644fa8995ecbe7138cc0d7900c30.
2022-01-12BLI: Refactor vector types & functions to use templatesClément Foucault
This patch implements the vector types (i.e:float2) by making heavy usage of templating. All vector functions are now outside of the vector classes (inside the blender::math namespace) and are not vector size dependent for the most part. In the ongoing effort to make shaders less GL centric, we are aiming to share more code between GLSL and C++ to avoid code duplication. Motivations: - We are aiming to share UBO and SSBO structures between GLSL and C++. This means we will use many of the existing vector types and others we currently don't have (uintX, intX). All these variations were asking for many more code duplication. - Deduplicate existing code which is duplicated for each vector size. - We also want to share small functions. Which means that vector functions should be static and not in the class namespace. - Reduce friction to use these types in new projects due to their incompleteness. - The current state of the BLI_(float|double|mpq)(2|3|4).hh is a bit of a let down. Most clases are incomplete, out of sync with each others with different codestyles, and some functions that should be static are not (i.e: float3::reflect()). Upsides: - Still support .x, .y, .z, .w for readability. - Compact, readable and easilly extendable. - All of the vector functions are available for all the vectors types and can be restricted to certain types. Also template specialization let us define exception for special class (like mpq). - With optimization ON, the compiler unroll the loops and performance is the same. Downsides: - Might impact debugability. Though I would arge that the bugs are rarelly caused by the vector class itself (since the operations are quite trivial) but by the type conversions. - Might impact compile time. I did not saw a significant impact since the usage is not really widespread. - Functions needs to be rewritten to support arbitrary vector length. For instance, one can't call len_squared_v3v3 in math::length_squared() and call it a day. - Type cast does not work with the template version of the math:: vector functions. Meaning you need to manually cast float * and (float *)[3] to float3 for the function calls. i.e: math::distance_squared(float3(nearest.co), positions[i]); - Some parts might loose in readability: float3::dot(v1.normalized(), v2.normalized()) becoming math::dot(math::normalize(v1), math::normalize(v2)) But I propose, when appropriate, to use using namespace blender::math; on function local or file scope to increase readability. dot(normalize(v1), normalize(v2)) Consideration: - Include back .length() method. It is quite handy and is more C++ oriented. - I considered the GLM library as a candidate for replacement. It felt like too much for what we need and would be difficult to extend / modify to our needs. - I used Macros to reduce code in operators declaration and potential copy paste bugs. This could reduce debugability and could be reverted. - This touches delaunay_2d.cc and the intersection code. I would like to know @Howard Trickey (howardt) opinion on the matter. - The noexcept on the copy constructor of mpq(2|3) is being removed. But according to @Jacques Lucke (JacquesLucke) it is not a real problem for now. I would like to give a huge thanks to @Jacques Lucke (JacquesLucke) who helped during this and pushed me to reduce the duplication further. Reviewed By: brecht, sergey, JacquesLucke Differential Revision: http://developer.blender.org/D13791
2022-01-11Geometry Nodes: Move normal field input to be usable elsewhereHans Goudey
This commit moves the normal field input to `BKE_geometry_set.hh` from the node file so that normals can be used as an implicit input to other nodes. Differential Revision: https://developer.blender.org/D13779
2021-12-07Cleanup: move public doc-strings into headers for 'blenkernel'Campbell Barton
- Added space below non doc-string comments to make it clear these aren't comments for the symbols directly below them. - Use doxy sections for some headers. - Minor improvements to doc-strings. Ref T92709
2021-11-26Geometry Nodes: deduplicate virtual array implementationsJacques Lucke
For some underlying data (e.g. spans) we had two virtual array implementations. One for the mutable and one for the immutable case. Now that most code does not deal with the virtual array implementations directly anymore (since rBrBd4c868da9f97a), we can get away with sharing one implementation for both cases. This means that we have to do a `const_cast` in a few places, but this is an implementation detail that does not leak into "user code" (only when explicitly casting a `VArrayImpl` to a `VMutableArrayImpl`, which should happen nowhere).
2021-11-23Merge branch 'blender-v3.0-release'Jacques Lucke
2021-11-23Fix T93231: crash when overwriting vertex group with other domainJacques Lucke
The problem was that we forgot to actually remove the vertex group when it should be deleted. We only removed all the data that was attached to it. Differential Revision: https://developer.blender.org/D13326
2021-11-16Geometry Nodes: refactor virtual array systemJacques Lucke
Goals of this refactor: * Simplify creating virtual arrays. * Simplify passing virtual arrays around. * Simplify converting between typed and generic virtual arrays. * Reduce memory allocations. As a quick reminder, a virtual arrays is a data structure that behaves like an array (i.e. it can be accessed using an index). However, it may not actually be stored as array internally. The two most important implementations of virtual arrays are those that correspond to an actual plain array and those that have the same value for every index. However, many more implementations exist for various reasons (interfacing with legacy attributes, unified iterator over all points in multiple splines, ...). With this refactor the core types (`VArray`, `GVArray`, `VMutableArray` and `GVMutableArray`) can be used like "normal values". They typically live on the stack. Before, they were usually inside a `std::unique_ptr`. This makes passing them around much easier. Creation of new virtual arrays is also much simpler now due to some constructors. Memory allocations are reduced by making use of small object optimization inside the core types. Previously, `VArray` was a class with virtual methods that had to be overridden to change the behavior of a the virtual array. Now,`VArray` has a fixed size and has no virtual methods. Instead it contains a `VArrayImpl` that is similar to the old `VArray`. `VArrayImpl` should rarely ever be used directly, unless a new virtual array implementation is added. To support the small object optimization for many `VArrayImpl` classes, a new `blender::Any` type is added. It is similar to `std::any` with two additional features. It has an adjustable inline buffer size and alignment. The inline buffer size of `std::any` can't be relied on and is usually too small for our use case here. Furthermore, `blender::Any` can store additional user-defined type information without increasing the stack size. Differential Revision: https://developer.blender.org/D12986
2021-10-29Geometry Nodes: do cache invalidation after writing attributesJacques Lucke
This is a better and more general fix for T92511 and T92508 than the ones that I committed before. Previously, we tagged caches dirty when first accessing attributes. This led to incorrect caches when under some circumstances. Now cache invalidation is part of `OutputAttribute.save()`. A nice side benefit of this change is that it may make things more efficient in some cases, because we don't invalidate caches when they don't have to be invalidated. Differential Revision: https://developer.blender.org/D13009
2021-10-20Geometry Nodes: Make Random ID a builtin attribute, remove socketsHans Goudey
In order to address feedback that the "Stable ID" was not easy enough to use, remove the "Stable ID" output from the distribution node and the input from the instance on points node. Instead, the nodes write or read a builtin named attribute called `id`. In the future we may add more attributes like `edge_id` and `face_id`. The downside is that more behavior is invisible, which is les expected now that most attributes are passed around with node links. This behavior will have to be explained in the manual. The random value node's "ID" input that had an implicit index input is converted to a special implicit input that uses the `id` attribute if possible, but otherwise defaults to the index. There is no way to tell in the UI which it uses, except by knowing that rule and checking in the spreadsheet for the id attribute. Because it isn't always possible to create stable randomness, this attribute does not always exist, and it will be possible to remove it when we have the attribute remove node back, to improve performance. Differential Revision: https://developer.blender.org/D12903
2021-09-15Cleanup: Use function to mark mesh normals dirtyHans Goudey
2021-09-15Geometry Nodes: Add special domain interpolation for selectionsHans Goudey
The generic domain interpolation algorithms didn't quite work for selections. The interpolation would do unexpected things that were different than the results in edit mode. The new behavior is supposed to be the same as edit mode, although we also have to handle face corner selections here. Currently the code assumes that all boolean attributes should be handled that way. I'm not sure of why that wouldn't be the case, but if we ever need non-selection boolean attributes, that could be supported too. Differential Revision: https://developer.blender.org/D12488
2021-09-09Geometry Nodes: fields and anonymous attributesJacques Lucke
This implements the initial core framework for fields and anonymous attributes (also see T91274). The new functionality is hidden behind the "Geometry Nodes Fields" feature flag. When enabled in the user preferences, the following new nodes become available: `Position`, `Index`, `Normal`, `Set Position` and `Attribute Capture`. Socket inspection has not been updated to work with fields yet. Besides these changes at the user level, this patch contains the ground work for: * building and evaluating fields at run-time (`FN_fields.hh`) and * creating and accessing anonymous attributes on geometry (`BKE_anonymous_attribute.h`). For evaluating fields we use a new so called multi-function procedure (`FN_multi_function_procedure.hh`). It allows composing multi-functions in arbitrary ways and supports efficient evaluation as is required by fields. See `FN_multi_function_procedure.hh` for more details on how this evaluation mechanism can be used. A new `AttributeIDRef` has been added which allows handling named and anonymous attributes in the same way in many places. Hans and I worked on this patch together. Differential Revision: https://developer.blender.org/D12414
2021-07-15Fix: missing null checkJacques Lucke
This was a regression in rB3b6ee8cee7080af200e25e944fe30d310240e138.
2021-07-13Refactor: Move vertex group names to object dataHans Goudey
This commit moves the storage of `bDeformGroup` and the active index to `Mesh`, `Lattice`, and `bGPdata` instead of `Object`. Utility functions are added to allow easy access to the vertex groups given an object or an ID. As explained in T88951, the list of vertex group names is currently stored separately per object, even though vertex group data is stored on the geometry. This tends to complicate code and cause bugs, especially as geometry is created procedurally and tied less closely to an object. The "Copy Vertex Groups to Linked" operator is removed, since they are stored on the geometry anyway. This patch leaves the object-level python API for vertex groups in place. Creating a geometry-level RNA API can be a separate step; the changes in this commit are invasive enough as it is. Note that opening a file saved in 3.0 in an earlier version means the vertex groups will not be available. Differential Revision: https://developer.blender.org/D11689
2021-06-24Cleanup: comment blocks, trailing space in commentsCampbell Barton
2021-05-25Blenlib: Explicit Colors.Jeroen Bakker
Colors are often thought of as being 4 values that make up that can make any color. But that is of course too limited. In C we didn’t spend time to annotate what we meant when using colors. Recently `BLI_color.hh` was made to facilitate color structures in CPP. CPP has possibilities to enforce annotating structures during compilation and can adds conversions between them using function overloading and explicit constructors. The storage structs can hold 4 channels (r, g, b and a). Usage: Convert a theme byte color to a linearrgb premultiplied. ``` ColorTheme4b theme_color; ColorSceneLinear4f<eAlpha::Premultiplied> linearrgb_color = BLI_color_convert_to_scene_linear(theme_color).premultiply_alpha(); ``` The API is structured to make most use of inlining. Most notable are space conversions done via `BLI_color_convert_to*` functions. - Conversions between spaces (theme <=> scene linear) should always be done by invoking the `BLI_color_convert_to*` methods. - Encoding colors (compressing to store colors inside a less precision storage) should be done by invoking the `encode` and `decode` methods. - Changing alpha association should be done by invoking `premultiply_alpha` or `unpremultiply_alpha` methods. # Encoding. Color encoding is used to store colors with less precision as in using `uint8_t` in stead of `float`. This encoding is supported for `eSpace::SceneLinear`. To make this clear to the developer the `eSpace::SceneLinearByteEncoded` space is added. # Precision Colors can be stored using `uint8_t` or `float` colors. The conversion between the two precisions are available as methods. (`to_4b` and `to_4f`). # Alpha conversion Alpha conversion is only supported in SceneLinear space. Extending: - This file can be extended with `ColorHex/Hsl/Hsv` for different representations of rgb based colors. `ColorHsl4f<eSpace::SceneLinear, eAlpha::Premultiplied>` - Add non RGB spaces/storages ColorXyz. Reviewed By: JacquesLucke, brecht Differential Revision: https://developer.blender.org/D10978
2021-05-25Revert "Blenlib: Explicit Colors."Jeroen Bakker
This reverts commit fd94e033446c72fb92048a9864c1d539fccde59a. does not compile against latest master.
2021-05-25Blenlib: Explicit Colors.Jeroen Bakker
Colors are often thought of as being 4 values that make up that can make any color. But that is of course too limited. In C we didn’t spend time to annotate what we meant when using colors. Recently `BLI_color.hh` was made to facilitate color structures in CPP. CPP has possibilities to enforce annotating structures during compilation and can adds conversions between them using function overloading and explicit constructors. The storage structs can hold 4 channels (r, g, b and a). Usage: Convert a theme byte color to a linearrgb premultiplied. ``` ColorTheme4b theme_color; ColorSceneLinear4f<eAlpha::Premultiplied> linearrgb_color = BLI_color_convert_to_scene_linear(theme_color).premultiply_alpha(); ``` The API is structured to make most use of inlining. Most notable are space conversions done via `BLI_color_convert_to*` functions. - Conversions between spaces (theme <=> scene linear) should always be done by invoking the `BLI_color_convert_to*` methods. - Encoding colors (compressing to store colors inside a less precision storage) should be done by invoking the `encode` and `decode` methods. - Changing alpha association should be done by invoking `premultiply_alpha` or `unpremultiply_alpha` methods. # Encoding. Color encoding is used to store colors with less precision as in using `uint8_t` in stead of `float`. This encoding is supported for `eSpace::SceneLinear`. To make this clear to the developer the `eSpace::SceneLinearByteEncoded` space is added. # Precision Colors can be stored using `uint8_t` or `float` colors. The conversion between the two precisions are available as methods. (`to_4b` and `to_4f`). # Alpha conversion Alpha conversion is only supported in SceneLinear space. Extending: - This file can be extended with `ColorHex/Hsl/Hsv` for different representations of rgb based colors. `ColorHsl4f<eSpace::SceneLinear, eAlpha::Premultiplied>` - Add non RGB spaces/storages ColorXyz. Reviewed By: JacquesLucke, brecht Differential Revision: https://developer.blender.org/D10978
2021-05-25Cleanup: Convert to static type directly from CPPTypeHans Goudey
2021-04-23Merge branch 'blender-v2.93-release'Jacques Lucke
2021-04-23Fix T87582: incorrect interpolation from edge to corner domainJacques Lucke
2021-04-22Geometry Nodes: Add initializer for attribute creationHans Goudey
Previously we always had to set attribute values after creating the attribute. This patch adds an initializer argument to `attribute_try_create` which can fill it in a few ways, which are explained in code comments. This fixes T87597. Differential Revision: https://developer.blender.org/D11045
2021-04-17Geometry Nodes: use virtual arrays in internal attribute apiJacques Lucke
A virtual array is a data structure that is similar to a normal array in that its elements can be accessed by an index. However, a virtual array does not have to be a contiguous array internally. Instead, its elements can be layed out arbitrarily while element access happens through a virtual function call. However, the virtual array data structures are designed so that the virtual function call can be avoided in cases where it could become a bottleneck. Most commonly, a virtual array is backed by an actual array/span or is a single value internally, that is the same for every index. Besides those, there are many more specialized virtual arrays like the ones that provides vertex positions based on the `MVert` struct or vertex group weights. Not all attributes used by geometry nodes are stored in simple contiguous arrays. To provide uniform access to all kinds of attributes, the attribute API has to provide virtual array functionality that hides the implementation details of attributes. Before this refactor, the attribute API provided its own virtual array implementation as part of the `ReadAttribute` and `WriteAttribute` types. That resulted in unnecessary code duplication with the virtual array system. Even worse, it bound many algorithms used by geometry nodes to the specifics of the attribute API, even though they could also use different data sources (such as data from sockets, default values, later results of expressions, ...). This refactor removes the `ReadAttribute` and `WriteAttribute` types and replaces them with `GVArray` and `GVMutableArray` respectively. The `GV` stands for "generic virtual". The "generic" means that the data type contained in those virtual arrays is only known at run-time. There are the corresponding statically typed types `VArray<T>` and `VMutableArray<T>` as well. No regressions are expected from this refactor. It does come with one improvement for users. The attribute API can convert the data type on write now. This is especially useful when writing to builtin attributes like `material_index` with e.g. the Attribute Math node (which usually just writes to float attributes, while `material_index` is an integer attribute). Differential Revision: https://developer.blender.org/D10994
2021-04-12Fix T87348: convert vertex colors to linear color spaceJacques Lucke
Differential Revision: https://developer.blender.org/D10956
2021-04-08Spreadsheet: support showing data of specific nodeJacques Lucke
Previously, the spreadsheet editor could only show data of the original and of the final evaluated object. Now it is possible to show the data at some intermediate stages too. For that the mode has to be set to "Node" in the spreadsheet editor. Furthermore, the preview of a specific node has to be activated by clicking the new icon in the header of geometry nodes. The exact ui of this feature might be refined in upcoming commits. It is already very useful for debugging node groups in it's current state though. Differential Revision: https://developer.blender.org/D10875
2021-03-28Cleanup: deduplicate attribute creating codeJacques Lucke
2021-03-25Geometry Nodes: rename attribute domainsJacques Lucke
This patch renames two domains: * `Polygon` -> `Face` * `Corner` -> `Face Corner` For the change from `polygon` to `face` I did a "deep rename" where I updated all (most?) cases where we refere to the attribute domain in code as well. The change from `corner` to `face corner` is only a ui change. I did not see a real need to update all code the code for that. It does not seem to improve the code, more on the contrary. Ref T86818. Differential Revision: https://developer.blender.org/D10803
2021-03-23Cleanup: allow looking up size of unsupported domainsJacques Lucke
There isn't really a reason for not supporting it.
2021-03-23Cleanup: use BLI_assert_unreachable in some placesJacques Lucke
2021-03-19Geometry Nodes: Implicit interpolations to and from the edge domainHans Goudey
This patch adds the remaining 6 interpolations for mesh domains. The new interpolations are: - Corner / point / polygon to edge - Edge to corner / point / polygon After this it is possible to adapt an attribute to and from every mesh domain. This is simple to test with the "Attribute Convert" node. Though, as a note for the future, there are still some improvements possible to the interpolations, like lazily calculating values for the interpolations where it's possible, and slightly improving the algorithms used for some interpolations, like using corner angles for polygon to point. Differential Revision: https://developer.blender.org/D10765
2021-03-17Cleanup: improve gathering supported domains by geometry typeJacques Lucke
2021-03-15Geometry Nodes: expose builtin crease attributeJacques Lucke
This exposes the `crease` attribute, that is used by the Subdivide Smooth node. It is also the first attribute on the edge domain. Domain interpolations for the edge domain have not been implemented yet. Ref T86397. Differential Revision: https://developer.blender.org/D10660
2021-03-15Cleanup: clang modernize-use-override errors.Jeroen Bakker