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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
2021-10-19Geometry Nodes: De-duplicate index input nodes during evaluationHans Goudey
We do this in other nodes to reduce overhead of using the same node more than once. I don't think it will make a difference with index nodes currently, but at least it's consistent.
2021-10-18Geometry Nodes: decouple multi-function lifetimes from modifierJacques Lucke
Previously, some multi-functions were allocated in a resource scope. This was fine as long as the multi-functions were only needed during the current evaluation of the node tree. However, now cases arise that require the multi-functions to be alive after the modifier is finished. For example, we want to evaluate fields created with geometry nodes outside of geometry nodes. To make this work, `std::shared_ptr` has to be used in a few more places. Realistically, this shouldn't have a noticable impact on performance. If this does become a bottleneck in the future, we can think about ways to make this work without using `shared_ptr` for multi-functions that are only used once.
2021-10-05Cleanup: use doxygen sectionsCampbell Barton
2021-09-27Functions: fail early when multi-function throws an exceptionJacques Lucke
Multi-functions are not allowed to throw exceptions that are not caught in the same multi-function. Previously, it was difficult to backtrack a crash to a previously thrown exception.
2021-09-27Cleanup: simplify field evaluationJacques Lucke
2021-09-27Fix T91732: crash in Set Position node on empty meshJacques Lucke
2021-09-24Fix: field evaluation crash when the domain size is zeroJacques Lucke
2021-09-24Geometry Nodes: make index field more reusableJacques Lucke
Some inputs will be the index field implicitly, so we want this class to be available outside of `node_geo_input_index.cc`.
2021-09-22Geometry Nodes: fix evaluating field to spanJacques Lucke
2021-09-21Functions: Fix incorrect assert for unused outputHans Goudey
Since the variable for an output parameter can be null, it is incorrect to use it later on in a reference.
2021-09-15Geometry Nodes: multi threaded field evaluationJacques Lucke
This adds a new `ParallelMultiFunction` which wraps another multi-function and evaluates it with multiple threads. The speeds up field evaluation quite a bit (the effect is most noticeable when the number of evaluations and the field is large). There are still other single-threaded performance bottlenecks in field evaluation that will need to be solved separately. Most notably here is the process of copying the computed data into the position attribute in the Set Position node. Differential Revision: https://developer.blender.org/D12457
2021-09-14Cleanup: simplify resource scope methodsJacques Lucke
Previously, a debug name had to be passed to all methods that added a resource to the `ResourceScope`. The idea was that this would make it easier to find certain bugs. In reality I never found this to be useful, and it was mostly annoying. The thing is, something that is in a resource scope never leaks (unless the resource scope is not destructed of course). Removing the name parameter makes the structure easier to use.
2021-09-14Functions: support optional outputs in multi-functionJacques Lucke
Sometimes not all outputs of a multi-function are required by the caller. In those cases it would be a waste of compute resources to calculate the unused values anyway. Now, the caller of a multi-function can specify when a specific output is not used. The called function can check if an output is unused and may ignore it. Multi-functions can still computed unused outputs as before if they don't want to check if a specific output is unused. The multi-function procedure system has been updated to support ignored outputs in call instructions. An ignored output just has no variable assigned to it. The field system has been updated to generate a multi-function procedure where unused outputs are ignored.
2021-09-11Geometry Nodes: add field support for socket inspectionJacques Lucke
Since fields were committed to master, socket inspection did not work correctly for all socket types anymore. Now the same functionality as before is back. Furthermore, fields that depend on some input will now show the inputs in the socket inspection. I added support for evaluating constant fields more immediately. This has the benefit that the same constant field is not evaluated more than once. It also helps with making the field independent of the multi-functions that it uses. We might still want to change the ownership handling for the multi-functions of nodes a bit, but that can be done separately. Differential Revision: https://developer.blender.org/D12444
2021-09-11Cleanup: use nullptrJacques Lucke
2021-09-11Functions: store cursors to previous instructionsJacques Lucke
Now an instruction knows the cursors where it is inserted instead of just the instruction that references it. This has two benefits: * An instruction knows when it is the entry instruction. * The cursor can contain more information, e.g. if it is linked to the true or false branch of a branch instruction. This also simplifies updating the procedure in future optimization passes.
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
2021-08-20Functions: remove multi-function networkJacques Lucke
The multi-function network system was able to compose multiple multi-functions into a new one and to evaluate that efficiently. This functionality was heavily used by the particle nodes prototype a year ago. However, since then we only used multi-functions without the need to compose them in geometry nodes. The upcoming "fields" in geometry nodes will need a way to compose multi-functions again. Unfortunately, the code removed in this commit was not ideal for this different kind of function composition. I've been working on an alternative that will be added separately when it becomes needed. I've had to update all the function nodes, because their interface depended on the multi-function network data structure a bit. The actual multi-function implementations are still the same though.
2021-08-20Functions: add clear method to vector arrayJacques Lucke
2021-08-02Cleanup: simplify subclassing CPPTypeJacques Lucke
`CPPType` can wrap any C++ type so that code can work with the wrapped type in a generic way. The goal of subclassing `CPPType` is to provide additional methods for some types. For example, the `CPPType` for `Array<int>` could have a `.element_type()` method that returns the `CPPType` for `int`.
2021-06-28Functions: improve CPPTypeJacques Lucke
* Reduce code duplication. * Give methods more standardized names (e.g. `move_to_initialized` -> `move_assign`). * Support wrapping arbitrary C++ types, even those that e.g. are not copyable.
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
2021-05-14Functions: Expose set_all method for generic virtual arraysHans Goudey
This is very similar to rB5613c61275fe6 and rB0061150e4c90d, basically just exposing a `VMutableArray` method to its generic counterpart. This is quite important for curve point attributes to avoid a lookup for every point when there are multiple splines.
2021-05-10Functions: support materialize virtual array to initialized spanJacques Lucke
2021-04-29Function: add method to create shallow copy of virtual arrayJacques Lucke
Creating a shallow copy is sometimes useful to get a unique ptr for a virtual array when one only has a reference. It shouldn't be used usually, but sometimes its the fastest way to do correct ownership handling.
2021-04-29Functions: make copying virtual arrays to span more efficientJacques Lucke
Sometimes functions expect a span instead of a virtual array. If the virtual array is a span internally already, great. But if it is not (e.g. the position attribute on a mesh), the elements have to be copied over to a span. This patch makes the copying process more efficient by giving the compiler more opportunity for optimization.
2021-04-17Functions: extend virtual array functionalityJacques Lucke
This adds support for mutable virtual arrays and provides many utilities for creating virtual arrays for various kinds of data. This commit is preparation for D10994.
2021-04-01BLI: rename resource collector to resource scopeJacques Lucke
Differential Revision: https://developer.blender.org/D10857
2021-03-22Functions: make multi functions smaller and cheaper to construct in many casesJacques Lucke
Previously, the signature of a `MultiFunction` was always embedded into the function. There are two issues with that. First, `MFSignature` is relatively large, because it contains multiple strings and vectors. Secondly, constructing it can add overhead that should not be necessary, because often the same signature can be reused. The solution is to only keep a pointer to a signature in `MultiFunction` that is set during construction. Child classes are responsible for making sure that the signature lives long enough. In most cases, the signature is either embedded into the child class or it is allocated statically (and is only created once).
2021-03-21Functions: refactor virtual array data structuresJacques Lucke
When a function is executed for many elements (e.g. per point) it is often the case that some parameters are different for every element and other parameters are the same (there are some more less common cases). To simplify writing such functions one can use a "virtual array". This is a data structure that has a value for every index, but might not be stored as an actual array internally. Instead, it might be just a single value or is computed on the fly. There are various tradeoffs involved when using this data structure which are mentioned in `BLI_virtual_array.hh`. It is called "virtual", because it uses inheritance and virtual methods. Furthermore, there is a new virtual vector array data structure, which is an array of vectors. Both these types have corresponding generic variants, which can be used when the data type is not known at compile time. This is typically the case when building a somewhat generic execution system. The function system used these virtual data structures before, but now they are more versatile. I've done this refactor in preparation for the attribute processor and other features of geometry nodes. I moved the typed virtual arrays to blenlib, so that they can be used independent of the function system. One open question for me is whether all the generic data structures (and `CPPType`) should be moved to blenlib as well. They are well isolated and don't really contain any business logic. That can be done later if necessary.
2021-03-21Functions: move CPPType creation related code to separate headerJacques Lucke
This does not need to be included everywhere, because it is only needed in very few translation units that actually define CPPType's.
2021-03-07Cleanup: remove dead codeJacques Lucke
2021-03-07Cleanup: compiler warningsJacques Lucke
2021-03-07BLI: make it harder to forget to destruct a valueJacques Lucke
Instead of returning a raw pointer, `LinearAllocator.construct(...)` now returns a `destruct_ptr`, which is similar to `unique_ptr`, but does not deallocate the memory and only calls the destructor instead.
2021-02-20Cleanup: doxygen sectionsCampbell Barton
2020-12-02Functions: add float2 cpp typeJacques Lucke
This also adds a hash function for `float2`, because `CPPType` expects that currently.
2020-08-07Cleanup: use C++ style casts in various placesJacques Lucke
2020-08-07Cleanup: Clang-Tidy else-after-return fixesSybren A. Stüvel
This addresses warnings from Clang-Tidy's `readability-else-after-return` rule. This should be the final commit of the series of commits that addresses this particular rule. No functional changes.
2020-08-02Particles: new Age Reached Event, Kill Particle and Random Float nodeJacques Lucke
The hardcoded age limit is now gone. The behavior can be implemented with an Age Reached Event and Kill Particle node. Other utility nodes to handle age limits of particles can be added later. Adding an Age Limit attribute to particles on birth will be useful for some effects, e.g. when you want to control the color or size of a particle over its life time. The Random Float node takes a seed currently. Different nodes will produce different values even with the same seed. However, the same node will generate the same random number for the same seed every time. The "Hash" of a particle can be used as seed. Later, we'd want to have more modes in the node to make it more user friendly. Modes could be: Per Particle, Per Time, Per Particle Per Time, Per Node Instance, ... Also a Random Vector node will be useful, as it currently has to be build using three Random Float nodes.
2020-07-27Particles: initial support for events and actionsJacques Lucke
The following nodes work now (although things can still be improved of course): Particle Birth Event, Praticle Time Step Event, Set Particle Attribute and Execute Condition. Multiple Set Particle Attribute nodes can be chained using the "Execute" sockets. They will be executed from left to right.
2020-07-24BLI: add MultiValueMapJacques Lucke
This is a convenience wrapper for `Map<Key, Vector<Value>>`. It does not provide any performance benefits (yet). I need this kind of map in a couple of places and before I was duplicating the lookup logic in many places.
2020-07-23Cleanup: unify naming between different spansJacques Lucke
2020-07-21Particles: initial object socket and emitter node supportJacques Lucke
Object sockets work now, but only the new Object Transforms and the Particle Mesh Emitter node use it. The emitter does not actually use the mesh surface yet. Instead, new particles are just emitted around the origin of the object. Internally, handles to object data blocks are passed around in the network, instead of raw object pointers. Using handles has a couple of benefits: * The caller of the function has control over which handles can be resolved and therefore limit access to specific data. The set of data blocks that is accessed by a node tree should be known statically. This is necessary for a proper integration with the dependency graph. * When the pointer to an object changes (e.g. after restarting Blender), all handles are still valid. * When an object is deleted, the handle is invalidated without causing crashes. * The handle is just an integer that can be stored per particle and can be cached easily. The mapping between handles and their corresponding data blocks is stored in the Simulation data block.
2020-07-20Refactor: Update integer type usageJacques Lucke
This updates the usage of integer types in code I wrote according to our new style guides. Major changes: * Use signed instead of unsigned integers in many places. * C++ containers in blenlib use `int64_t` for size and indices now (instead of `uint`). * Hash values for C++ containers are 64 bit wide now (instead of 32 bit). I do hope that I broke no builds, but it is quite likely that some compiler reports slightly different errors. Please let me know when there are any errors. If the fix is small, feel free to commit it yourself. I compiled successfully on linux with gcc and on windows.
2020-07-18Simulation: cleanup deduplicating attribute input nodesJacques Lucke
2020-07-17Cleanup: avoid static initialization order issues when accessing CPPTypesJacques Lucke
Instead of depending on static initialization order of globals use static variables within functions. Those are initialized on first use. This is every so slighly less efficient, but avoids a full class of problems.
2020-07-16Nodes: support default function for partially implemented nodesJacques Lucke