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Mujoco_WASM/include/mujoco/experimental/usd/mjcPhysics/equalityJointAPI.h
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Sam Haves 2582a83ac3 Add equalityJointAPI to mjcPhysics.
PiperOrigin-RevId: 860081702
Change-Id: Ifd961dcb2a8e0f5d885e9e9dadc0153b03cb5f4d
2026-01-23 06:28:29 -08:00

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// Copyright 2025 DeepMind Technologies Limited
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#ifndef MJCPHYSICS_GENERATED_EQUALITYJOINTAPI_H
#define MJCPHYSICS_GENERATED_EQUALITYJOINTAPI_H
/// \file mjcPhysics/equalityJointAPI.h
#include <mujoco/experimental/usd/mjcPhysics/api.h>
#include <mujoco/experimental/usd/mjcPhysics/tokens.h>
#include <pxr/base/gf/matrix4d.h>
#include <pxr/base/gf/vec3d.h>
#include <pxr/base/gf/vec3f.h>
#include <pxr/base/tf/token.h>
#include <pxr/base/tf/type.h>
#include <pxr/base/vt/value.h>
#include <pxr/pxr.h>
#include <pxr/usd/usd/apiSchemaBase.h>
#include <pxr/usd/usd/prim.h>
#include <pxr/usd/usd/stage.h>
PXR_NAMESPACE_OPEN_SCOPE
class SdfAssetPath;
// -------------------------------------------------------------------------- //
// MJCEQUALITYJOINTAPI //
// -------------------------------------------------------------------------- //
/// \class MjcPhysicsEqualityJointAPI
///
/// API providing extension attributes to represent equality/joint constraints.
/// This API is applied to a joint prim which acts as the constrained joint
/// (joint1 in MuJoCo terminology). The target relationship points to another
/// joint prim which is the reference joint (joint2 in MuJoCo terminology). The
/// constrained joint's position or angle is constrained to be a quartic
/// polynomial of the reference joint's position or angle. Only scalar joint
/// types (slide and hinge) can be used.
///
class MjcPhysicsEqualityJointAPI : public UsdAPISchemaBase {
public:
/// Compile time constant representing what kind of schema this class is.
///
/// \sa UsdSchemaKind
static const UsdSchemaKind schemaKind = UsdSchemaKind::SingleApplyAPI;
/// Construct a MjcPhysicsEqualityJointAPI on UsdPrim \p prim .
/// Equivalent to MjcPhysicsEqualityJointAPI::Get(prim.GetStage(),
/// prim.GetPath()) for a \em valid \p prim, but will not immediately throw an
/// error for an invalid \p prim
explicit MjcPhysicsEqualityJointAPI(const UsdPrim& prim = UsdPrim())
: UsdAPISchemaBase(prim) {}
/// Construct a MjcPhysicsEqualityJointAPI on the prim held by \p schemaObj .
/// Should be preferred over MjcPhysicsEqualityJointAPI(schemaObj.GetPrim()),
/// as it preserves SchemaBase state.
explicit MjcPhysicsEqualityJointAPI(const UsdSchemaBase& schemaObj)
: UsdAPISchemaBase(schemaObj) {}
/// Destructor.
MJCPHYSICS_API
virtual ~MjcPhysicsEqualityJointAPI();
/// Return a vector of names of all pre-declared attributes for this schema
/// class and all its ancestor classes. Does not include attributes that
/// may be authored by custom/extended methods of the schemas involved.
MJCPHYSICS_API
static const TfTokenVector& GetSchemaAttributeNames(
bool includeInherited = true);
/// Return a MjcPhysicsEqualityJointAPI holding the prim adhering to this
/// schema at \p path on \p stage. If no prim exists at \p path on
/// \p stage, or if the prim at that path does not adhere to this schema,
/// return an invalid schema object. This is shorthand for the following:
///
/// \code
/// MjcPhysicsEqualityJointAPI(stage->GetPrimAtPath(path));
/// \endcode
///
MJCPHYSICS_API
static MjcPhysicsEqualityJointAPI Get(const UsdStagePtr& stage,
const SdfPath& path);
/// Returns true if this <b>single-apply</b> API schema can be applied to
/// the given \p prim. If this schema can not be a applied to the prim,
/// this returns false and, if provided, populates \p whyNot with the
/// reason it can not be applied.
///
/// Note that if CanApply returns false, that does not necessarily imply
/// that calling Apply will fail. Callers are expected to call CanApply
/// before calling Apply if they want to ensure that it is valid to
/// apply a schema.
///
/// \sa UsdPrim::GetAppliedSchemas()
/// \sa UsdPrim::HasAPI()
/// \sa UsdPrim::CanApplyAPI()
/// \sa UsdPrim::ApplyAPI()
/// \sa UsdPrim::RemoveAPI()
///
MJCPHYSICS_API
static bool CanApply(const UsdPrim& prim, std::string* whyNot = nullptr);
/// Applies this <b>single-apply</b> API schema to the given \p prim.
/// This information is stored by adding "MjcEqualityJointAPI" to the
/// token-valued, listOp metadata \em apiSchemas on the prim.
///
/// \return A valid MjcPhysicsEqualityJointAPI object is returned upon
/// success. An invalid (or empty) MjcPhysicsEqualityJointAPI object is
/// returned upon failure. See \ref UsdPrim::ApplyAPI() for conditions
/// resulting in failure.
///
/// \sa UsdPrim::GetAppliedSchemas()
/// \sa UsdPrim::HasAPI()
/// \sa UsdPrim::CanApplyAPI()
/// \sa UsdPrim::ApplyAPI()
/// \sa UsdPrim::RemoveAPI()
///
MJCPHYSICS_API
static MjcPhysicsEqualityJointAPI Apply(const UsdPrim& prim);
protected:
/// Returns the kind of schema this class belongs to.
///
/// \sa UsdSchemaKind
MJCPHYSICS_API
UsdSchemaKind _GetSchemaKind() const override;
private:
// needs to invoke _GetStaticTfType.
friend class UsdSchemaRegistry;
MJCPHYSICS_API
static const TfType& _GetStaticTfType();
static bool _IsTypedSchema();
// override SchemaBase virtuals.
MJCPHYSICS_API
const TfType& _GetTfType() const override;
public:
// --------------------------------------------------------------------- //
// POLYCOEF
// --------------------------------------------------------------------- //
/// Coefficients a0 through a4 of the quartic polynomial. If the joint values
/// of the constrained joint and reference joint are respectively y and x, and
/// their reference positions (corresponding to the joint values in the
/// initial model configuration) are y0 and x0, the constraint is: y = y0 + a0
/// + a1*(x-x0) + a2*(x-x0)^2 + a3*(x-x0)^3 + a4*(x-x0)^4. Omitting the target
/// joint (joint2) is equivalent to setting x = x0, in which case the
/// constraint is y = y0 + a0. The default [0, 1, 0, 0, 0] creates a simple
/// 1:1 mimic constraint where y tracks x with the same offset from their
/// references.
///
/// | ||
/// | -- | -- |
/// | Declaration | `uniform double[] mjc:polycoef = [0, 1, 0, 0, 0]` |
/// | C++ Type | VtArray<double> |
/// | \ref Usd_Datatypes "Usd Type" | SdfValueTypeNames->DoubleArray |
/// | \ref SdfVariability "Variability" | SdfVariabilityUniform |
MJCPHYSICS_API
UsdAttribute GetPolycoefAttr() const;
/// See GetPolycoefAttr(), and also
/// \ref Usd_Create_Or_Get_Property for when to use Get vs Create.
/// If specified, author \p defaultValue as the attribute's default,
/// sparsely (when it makes sense to do so) if \p writeSparsely is \c true -
/// the default for \p writeSparsely is \c false.
MJCPHYSICS_API
UsdAttribute CreatePolycoefAttr(VtValue const& defaultValue = VtValue(),
bool writeSparsely = false) const;
public:
// ===================================================================== //
// Feel free to add custom code below this line, it will be preserved by
// the code generator.
//
// Just remember to:
// - Close the class declaration with };
// - Close the namespace with PXR_NAMESPACE_CLOSE_SCOPE
// - Close the include guard with #endif
// ===================================================================== //
// --(BEGIN CUSTOM CODE)--
};
PXR_NAMESPACE_CLOSE_SCOPE
#endif