Files
Mujoco_WASM/python/mujoco/structs.cc
T
Yuval Tassa 5e666635f6 Remove mjtVisFlag.mjVIS_FLEXBVH and mjvOption.oct_depth
PiperOrigin-RevId: 783355711
Change-Id: I1e11999d5c533925f1d07266aeca95598a5691ba
2025-07-15 09:08:22 -07:00

1264 lines
44 KiB
C++

// Copyright 2022 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.
#include "structs.h"
#include <Python.h>
#include <cstdint>
#include <ios>
#include <iostream>
#include <memory>
#include <sstream>
#include <string>
#include <string_view>
#include <utility>
#include <vector>
#include <mujoco/mjxmacro.h>
#include <mujoco/mujoco.h>
#include "errors.h"
#include "function_traits.h"
#include "indexer_xmacro.h"
#include "indexers.h"
#include "raw.h"
#include <pybind11/cast.h>
#include <pybind11/detail/common.h>
#include <pybind11/numpy.h>
#include <pybind11/operators.h>
#include <pybind11/pybind11.h>
#include <pybind11/pytypes.h>
#include <pybind11/stl.h>
namespace mujoco::python::_impl {
namespace py = ::pybind11;
namespace {
#define PTRDIFF(x, y) \
reinterpret_cast<const char*>(x) - reinterpret_cast<const char*>(y)
// Returns the shape of a NumPy array given the dimensions from an X Macro.
// If dim1 is a _literal_ constant 1, the resulting array is 1-dimensional of
// length dim0, otherwise the resulting array is 2-dimensional of shape
// (dim0, dim1).
#define X_ARRAY_SHAPE(dim0, dim1) XArrayShapeImpl(#dim1)((dim0), (dim1))
std::vector<int> XArrayShapeImpl1D(int dim0, int dim1) { return {dim0}; }
std::vector<int> XArrayShapeImpl2D(int dim0, int dim1) { return {dim0, dim1}; }
constexpr auto XArrayShapeImpl(const std::string_view dim1_str) {
if (dim1_str == "1") {
return XArrayShapeImpl1D;
} else {
return XArrayShapeImpl2D;
}
}
py::tuple RecompileSpec(raw::MjSpec* spec, const MjModelWrapper& old_m,
const MjDataWrapper& old_d) {
raw::MjModel* m = static_cast<raw::MjModel*>(mju_malloc(sizeof(mjModel)));
m->buffer = nullptr;
raw::MjData* d = mj_copyData(nullptr, old_m.get(), old_d.get());
if (mj_recompile(spec, nullptr, m, d)) {
throw py::value_error(mjs_getError(spec));
}
py::object m_pyobj = py::cast((MjModelWrapper(m)));
py::object d_pyobj =
py::cast((MjDataWrapper(py::cast<MjModelWrapper*>(m_pyobj), d)));
return py::make_tuple(m_pyobj, d_pyobj);
}
} // namespace
PYBIND11_MODULE(_structs, m) {
py::module_::import("mujoco._enums");
// ==================== MJOPTION =============================================
py::class_<MjOptionWrapper> mjOption(m, "MjOption");
mjOption.def(py::init<>());
mjOption.def("__copy__", [](const MjOptionWrapper& other) {
return MjOptionWrapper(other);
});
mjOption.def("__deepcopy__", [](const MjOptionWrapper& other, py::dict) {
return MjOptionWrapper(other);
});
DefineStructFunctions(mjOption);
#define X(type, var) \
mjOption.def_property( \
#var, [](const MjOptionWrapper& c) { return c.get()->var; }, \
[](MjOptionWrapper& c, type rhs) { c.get()->var = rhs; });
MJOPTION_SCALARS
#undef X
#define X(var, dim) DefinePyArray(mjOption, #var, &MjOptionWrapper::var);
MJOPTION_VECTORS
#undef X
mjOption.def_property_readonly_static("_float_fields", [](py::object) {
std::vector<std::string> field_names;
#define X(type, var) field_names.push_back(#var);
MJOPTION_FLOATS
#undef X
return py::tuple(py::cast(field_names));
});
mjOption.def_property_readonly_static("_int_fields", [](py::object) {
std::vector<std::string> field_names;
#define X(type, var) field_names.push_back(#var);
MJOPTION_INTS
#undef X
return py::tuple(py::cast(field_names));
});
mjOption.def_property_readonly_static("_floatarray_fields", [](py::object) {
std::vector<std::string> field_names;
#define X(var, sz) field_names.push_back(#var);
MJOPTION_VECTORS
#undef X
return py::tuple(py::cast(field_names));
});
// ==================== MJVISUAL =============================================
py::class_<MjVisualWrapper> mjVisual(m, "MjVisual");
mjVisual.def("__copy__", [](const MjVisualWrapper& other) {
return MjVisualWrapper(other);
});
mjVisual.def("__deepcopy__", [](const MjVisualWrapper& other, py::dict) {
return MjVisualWrapper(other);
});
mjVisual.def("__eq__", StructsEqual<MjVisualWrapper>);
// Special __repr__ implementation for MjVisual, since:
// 1. Types under MjVisual confuse StructRepr;
// 2. StructRepr does not handle the indentation of nested structs well.
mjVisual.def("__repr__", [](py::object self) {
std::ostringstream result;
result << "<"
<< self.attr("__class__").attr("__name__").cast<std::string_view>();
#define X(type, var) \
result << "\n " #var ": "; \
StructReprImpl<type>(self.attr(#var), result, 2);
X(raw::MjVisualGlobal, global_)
X(raw::MjVisualQuality, quality)
X(MjVisualHeadlightWrapper, headlight)
X(raw::MjVisualMap, map)
X(raw::MjVisualScale, scale)
X(MjVisualRgbaWrapper, rgba)
#undef X
result << "\n>";
return result.str();
});
py::class_<raw::MjVisualGlobal> mjVisualGlobal(mjVisual, "Global");
mjVisualGlobal.def("__copy__", [](const raw::MjVisualGlobal& other) {
return raw::MjVisualGlobal(other);
});
mjVisualGlobal.def("__deepcopy__",
[](const raw::MjVisualGlobal& other, py::dict) {
return raw::MjVisualGlobal(other);
});
DefineStructFunctions(mjVisualGlobal);
#define X(var) mjVisualGlobal.def_readwrite(#var, &raw::MjVisualGlobal::var)
X(cameraid);
X(orthographic);
X(fovy);
X(ipd);
X(azimuth);
X(elevation);
X(linewidth);
X(glow);
X(realtime);
X(offwidth);
X(offheight);
X(ellipsoidinertia);
X(bvactive);
#undef X
py::class_<raw::MjVisualQuality> mjVisualQuality(mjVisual, "Quality");
mjVisualQuality.def("__copy__", [](const raw::MjVisualQuality& other) {
return raw::MjVisualQuality(other);
});
mjVisualQuality.def("__deepcopy__",
[](const raw::MjVisualQuality& other, py::dict) {
return raw::MjVisualQuality(other);
});
DefineStructFunctions(mjVisualQuality);
#define X(var) mjVisualQuality.def_readwrite(#var, &raw::MjVisualQuality::var)
X(shadowsize);
X(offsamples);
X(numslices);
X(numstacks);
X(numquads);
#undef X
py::class_<MjVisualHeadlightWrapper> mjVisualHeadlight(mjVisual, "Headlight");
mjVisualHeadlight.def("__copy__", [](const MjVisualHeadlightWrapper& other) {
return MjVisualHeadlightWrapper(other);
});
mjVisualHeadlight.def("__deepcopy__",
[](const MjVisualHeadlightWrapper& other, py::dict) {
return MjVisualHeadlightWrapper(other);
});
DefineStructFunctions(mjVisualHeadlight);
#define X(var) \
DefinePyArray(mjVisualHeadlight, #var, &MjVisualHeadlightWrapper::var)
X(ambient);
X(diffuse);
X(specular);
#undef X
mjVisualHeadlight.def_property(
"active",
[](const MjVisualHeadlightWrapper& c) { return c.get()->active; },
[](MjVisualHeadlightWrapper& c, int rhs) {
return c.get()->active = rhs;
});
py::class_<raw::MjVisualMap> mjVisualMap(mjVisual, "Map");
mjVisualMap.def("__copy__", [](const raw::MjVisualMap& other) {
return raw::MjVisualMap(other);
});
mjVisualMap.def("__deepcopy__", [](const raw::MjVisualMap& other, py::dict) {
return raw::MjVisualMap(other);
});
DefineStructFunctions(mjVisualMap);
#define X(var) mjVisualMap.def_readwrite(#var, &raw::MjVisualMap::var)
X(stiffness);
X(stiffnessrot);
X(force);
X(torque);
X(alpha);
X(fogstart);
X(fogend);
X(znear);
X(zfar);
X(haze);
X(shadowclip);
X(shadowscale);
X(actuatortendon);
#undef X
py::class_<raw::MjVisualScale> mjVisualScale(mjVisual, "Scale");
mjVisualScale.def("__copy__", [](const raw::MjVisualScale& other) {
return raw::MjVisualScale(other);
});
mjVisualScale.def("__deepcopy__",
[](const raw::MjVisualScale& other, py::dict) {
return raw::MjVisualScale(other);
});
DefineStructFunctions(mjVisualScale);
#define X(var) mjVisualScale.def_readwrite(#var, &raw::MjVisualScale::var)
X(forcewidth);
X(contactwidth);
X(contactheight);
X(connect);
X(com);
X(camera);
X(light);
X(selectpoint);
X(jointlength);
X(jointwidth);
X(actuatorlength);
X(actuatorwidth);
X(framelength);
X(framewidth);
X(constraint);
X(slidercrank);
X(frustum);
#undef X
py::class_<MjVisualRgbaWrapper> mjVisualRgba(mjVisual, "Rgba");
mjVisualRgba.def("__copy__", [](const MjVisualRgbaWrapper& other) {
return MjVisualRgbaWrapper(other);
});
mjVisualRgba.def("__deepcopy__",
[](const MjVisualRgbaWrapper& other, py::dict) {
return MjVisualRgbaWrapper(other);
});
DefineStructFunctions(mjVisualRgba);
#define X(var) DefinePyArray(mjVisualRgba, #var, &MjVisualRgbaWrapper::var)
X(fog);
X(haze);
X(force);
X(inertia);
X(joint);
X(actuator);
X(actuatornegative);
X(actuatorpositive);
X(com);
X(camera);
X(light);
X(selectpoint);
X(connect);
X(contactpoint);
X(contactforce);
X(contactfriction);
X(contacttorque);
X(contactgap);
X(rangefinder);
X(constraint);
X(slidercrank);
X(crankbroken);
X(frustum);
X(bv);
X(bvactive);
#undef X
#define X(var) \
mjVisual.def_property_readonly( \
#var, [](const MjVisualWrapper& c) -> auto& { return c.get()->var; });
// mjVisual.global is exposed as "global_" to avoid clash with the Python
// keyword.
mjVisual.def_property_readonly(
"global_",
[](const MjVisualWrapper& c) -> auto& { return c.get()->global; });
X(quality);
mjVisual.def_readonly("headlight", &MjVisualWrapper::headlight);
X(map);
X(scale);
mjVisual.def_readonly("rgba", &MjVisualWrapper::rgba);
#undef X
// ==================== MJMODEL ==============================================
py::class_<MjModelWrapper> mjModel(m, "MjModel");
mjModel.def_static(
"from_xml_string", &MjModelWrapper::LoadXML, py::arg("xml"),
py::arg_v("assets", py::none()),
py::doc(
R"(Loads an MjModel from an XML string and an optional assets dictionary.)"));
mjModel.def_static("_from_model_ptr", [](uintptr_t addr) {
return MjModelWrapper::WrapRawModel(reinterpret_cast<raw::MjModel*>(addr));
});
mjModel.def_static(
"from_xml_path", &MjModelWrapper::LoadXMLFile, py::arg("filename"),
py::arg_v("assets", py::none()),
py::doc(
R"(Loads an MjModel from an XML file and an optional assets dictionary.
The filename for the XML can also refer to a key in the assets dictionary.
This is useful for example when the XML is not available as a file on disk.)"));
mjModel.def_static(
"from_binary_path", &MjModelWrapper::LoadBinaryFile, py::arg("filename"),
py::arg_v("assets", py::none()),
py::doc(
R"(Loads an MjModel from an MJB file and an optional assets dictionary.
The filename for the MJB can also refer to a key in the assets dictionary.
This is useful for example when the MJB is not available as a file on disk.)"));
mjModel.def_property_readonly("_address", [](const MjModelWrapper& m) {
return reinterpret_cast<std::uintptr_t>(m.get());
});
mjModel.def("__copy__", [](const MjModelWrapper& other) {
return MjModelWrapper(other);
});
mjModel.def("__deepcopy__", [](const MjModelWrapper& other, py::dict) {
return MjModelWrapper(other);
});
mjModel.def(py::pickle(
[](const MjModelWrapper& m) { // __getstate__
std::ostringstream output(std::ios::out | std::ios::binary);
m.Serialize(output);
return py::bytes(output.str());
},
[](py::bytes b) { // __setstate__
std::istringstream input(b, std::ios::in | std::ios::binary);
return MjModelWrapper::Deserialize(input);
}));
mjModel.def_readonly("opt", &MjModelWrapper::opt);
mjModel.def_readonly("vis", &MjModelWrapper::vis);
mjModel.def_readonly("stat", &MjModelWrapper::stat);
#define X(var) \
mjModel.def_property_readonly( \
#var, [](const MjModelWrapper& m) { return m.get()->var; });
MJMODEL_INTS
#undef X
mjModel.def_property_readonly("_sizes", [](const MjModelWrapper& m) {
int nint = 0;
#define X(var) ++nint;
MJMODEL_INTS
#undef X
py::array_t<std::int64_t> sizes(nint);
{
int i = 0;
auto data = sizes.mutable_unchecked();
#define X(var) data[i++] = m.get()->var;
MJMODEL_INTS
#undef X
}
py::detail::array_proxy(sizes.ptr())->flags &=
~py::detail::npy_api::NPY_ARRAY_WRITEABLE_;
return sizes;
});
mjModel.def_property_readonly_static("_size_fields", [](py::object) {
std::vector<std::string> fields;
#define X(var) fields.push_back(#var);
MJMODEL_INTS
#undef X
return py::tuple(py::cast(fields));
});
#define X(dtype, var, dim0, dim1) \
if constexpr (std::string_view(#var) != "text_data" && \
std::string_view(#var) != "names" && \
std::string_view(#var) != "paths") { \
DefinePyArray(mjModel, #var, &MjModelWrapper::var); \
}
MJMODEL_POINTERS
#undef X
mjModel.def_property_readonly("text_data",
[](const MjModelWrapper& m) -> const auto& {
// Return the full bytes array of concatenated
// text data
return m.text_data_bytes;
});
mjModel.def_property_readonly("names",
[](const MjModelWrapper& m) -> const auto& {
// Return the full bytes array of concatenated
// names
return m.names_bytes;
});
mjModel.def_property_readonly("paths",
[](const MjModelWrapper& m) -> const auto& {
// Return the full bytes array of concatenated
// paths
return m.paths_bytes;
});
mjModel.def_property_readonly("signature",
[](const MjModelWrapper& m) -> const uint64_t& {
return m.get()->signature;
});
#define XGROUP(MjModelGroupedViews, field, nfield, FIELD_XMACROS) \
mjModel.def( \
#field, \
[](MjModelWrapper& m, int i) -> auto& { return m.indexer().field(i); }, \
py::return_value_policy::reference_internal); \
mjModel.def( \
#field, \
[](MjModelWrapper& m, std::string_view name) -> auto& { \
return m.indexer().field##_by_name(name); \
}, \
py::return_value_policy::reference_internal, py::arg_v("name", ""));
MJMODEL_VIEW_GROUPS
#undef XGROUP
#define XGROUP(spectype, field) \
mjModel.def( \
"bind_scalar", \
[](MjModelWrapper& m, spectype& spec) -> auto& { \
if (mjs_getSpec(spec.element)->element->signature != \
m.get()->signature) { \
throw py::value_error( \
"The mjSpec does not match mjModel. Please recompile " \
"the mjSpec."); \
} \
return m.indexer().field(mjs_getId(spec.element)); \
}, \
py::return_value_policy::reference_internal, \
py::arg_v("spec", py::none()));
MJMODEL_BIND_GROUPS
#undef XGROUP
#define XGROUP(field, altname, FIELD_XMACROS) \
mjModel.def( \
#altname, \
[](MjModelWrapper& m, int i) -> auto& { return m.indexer().field(i); }, \
py::return_value_policy::reference_internal); \
mjModel.def( \
#altname, \
[](MjModelWrapper& m, std::string_view name) -> auto& { \
return m.indexer().field##_by_name(name); \
}, \
py::return_value_policy::reference_internal, py::arg_v("name", ""));
MJMODEL_VIEW_GROUPS_ALTNAMES
#undef XGROUP
#define XGROUP(MjModelGroupedViews, field, nfield, FIELD_XMACROS) \
{ \
using GroupedViews = MjModelGroupedViews; \
py::class_<MjModelGroupedViews> groupedViews(m, "_" #MjModelGroupedViews); \
FIELD_XMACROS \
groupedViews.def("__repr__", MjModelStructRepr<GroupedViews>); \
groupedViews.def_property_readonly( \
"id", [](GroupedViews& views) { return views.index(); }); \
groupedViews.def_property_readonly( \
"name", [](GroupedViews& views) { return views.name(); }); \
}
#define X(type, prefix, var, dim0, dim1) \
groupedViews.def_property( \
#var, &GroupedViews::var, [](GroupedViews& views, py::handle rhs) { \
(views.var())[py::slice(py::none(), py::none(), py::none())] = rhs; \
});
MJMODEL_VIEW_GROUPS
#undef X
#undef XGROUP
{
py::handle builtins(PyEval_GetBuiltins());
builtins[MjModelWrapper::kFromRawPointer] =
reinterpret_cast<std::uintptr_t>(
reinterpret_cast<void*>(&MjModelWrapper::FromRawPointer));
}
// ==================== MJWARNINGSTAT ========================================
py::class_<MjWarningStatWrapper> mjWarningStat(m, "MjWarningStat");
mjWarningStat.def(py::init<>());
mjWarningStat.def("__copy__", [](const MjWarningStatWrapper& other) {
return MjWarningStatWrapper(other);
});
mjWarningStat.def("__deepcopy__",
[](const MjWarningStatWrapper& other, py::dict) {
return MjWarningStatWrapper(other);
});
DefineStructFunctions(mjWarningStat);
#define X(var) \
mjWarningStat.def_property( \
#var, [](const MjWarningStatWrapper& d) { return d.get()->var; }, \
[](MjWarningStatWrapper& d, decltype(raw::MjWarningStat::var) rhs) { \
d.get()->var = rhs; \
});
X(lastinfo);
X(number);
#undef X
py::class_<MjWarningStatList> mjWarningStatList(m, "_MjWarningStatList");
mjWarningStatList.def("__getitem__", &MjWarningStatList::operator[],
py::return_value_policy::reference);
mjWarningStatList.def(
"__getitem__",
[](MjWarningStatList& list, ::mjtWarning idx) { return list[idx]; },
py::return_value_policy::reference);
mjWarningStatList.def("__getitem__", &MjWarningStatList::Slice);
mjWarningStatList.def("__len__", &MjWarningStatList::size);
DefineStructFunctions(mjWarningStatList);
#define X(type, var) \
mjWarningStatList.def_readonly(#var, &MjWarningStatList::var)
X(int, lastinfo);
X(int, number);
#undef X
// ==================== MJTIMERSTAT ==========================================
py::class_<MjTimerStatWrapper> mjTimerStat(m, "MjTimerStat");
mjTimerStat.def(py::init<>());
mjTimerStat.def("__copy__", [](const MjTimerStatWrapper& other) {
return MjTimerStatWrapper(other);
});
mjTimerStat.def("__deepcopy__",
[](const MjTimerStatWrapper& other, py::dict) {
return MjTimerStatWrapper(other);
});
DefineStructFunctions(mjTimerStat);
#define X(var) \
mjTimerStat.def_property( \
#var, [](const MjTimerStatWrapper& d) { return d.get()->var; }, \
[](MjTimerStatWrapper& d, decltype(raw::MjTimerStat::var) rhs) { \
d.get()->var = rhs; \
});
X(duration);
X(number);
#undef X
py::class_<MjTimerStatList> mjTimerStatList(m, "_MjTimerStatList");
mjTimerStatList.def("__getitem__", &MjTimerStatList::operator[],
py::return_value_policy::reference);
mjTimerStatList.def(
"__getitem__",
[](MjTimerStatList& list, ::mjtTimer idx) { return list[idx]; },
py::return_value_policy::reference);
mjTimerStatList.def("__getitem__", &MjTimerStatList::Slice);
mjTimerStatList.def("__len__", &MjTimerStatList::size);
DefineStructFunctions(mjTimerStatList);
#define X(type, var) mjTimerStatList.def_readonly(#var, &MjTimerStatList::var)
X(mjtNum, duration);
X(int, number);
#undef X
// ==================== MJSOLVERSTAT =========================================
py::class_<MjSolverStatWrapper> mjSolverStat(m, "MjSolverStat");
mjSolverStat.def(py::init<>());
mjSolverStat.def("__copy__", [](const MjSolverStatWrapper& other) {
return MjSolverStatWrapper(other);
});
mjSolverStat.def("__deepcopy__",
[](const MjSolverStatWrapper& other, py::dict) {
return MjSolverStatWrapper(other);
});
DefineStructFunctions(mjSolverStat);
#define X(var) \
mjSolverStat.def_property( \
#var, [](const MjSolverStatWrapper& d) { return d.get()->var; }, \
[](MjSolverStatWrapper& d, decltype(raw::MjSolverStat::var) rhs) { \
d.get()->var = rhs; \
});
X(improvement);
X(gradient);
X(lineslope);
X(nactive);
X(nchange);
X(neval);
X(nupdate);
#undef X
py::class_<MjSolverStatList> mjSolverStatList(m, "_MjSolverStatList");
mjSolverStatList.def("__getitem__", &MjSolverStatList::operator[],
py::return_value_policy::reference);
mjSolverStatList.def("__getitem__", &MjSolverStatList::Slice);
mjSolverStatList.def("__len__", &MjSolverStatList::size);
DefineStructFunctions(mjSolverStatList);
#define X(type, var) mjSolverStatList.def_readonly(#var, &MjSolverStatList::var)
X(mjtNum, improvement);
X(mjtNum, gradient);
X(mjtNum, lineslope);
X(int, nactive);
X(int, nchange);
X(int, neval);
X(int, nupdate);
#undef X
// ==================== MJCONTACT ============================================
py::class_<MjContactWrapper> mjContact(m, "MjContact");
mjContact.def(py::init<>());
mjContact.def("__copy__", [](const MjContactWrapper& self) {
return MjContactWrapper(self);
});
mjContact.def("__deepcopy__", [](const MjContactWrapper& self, py::dict) {
return MjContactWrapper(self);
});
DefineStructFunctions(mjContact);
#define X(var) \
mjContact.def_property( \
#var, [](const MjContactWrapper& c) { return c.get()->var; }, \
[](MjContactWrapper& c, decltype(raw::MjContact::var) rhs) { \
c.get()->var = rhs; \
})
X(dist);
X(includemargin);
X(mu);
X(dim);
X(geom1);
X(geom2);
X(exclude);
X(efc_address);
#undef X
#define X(var) DefinePyArray(mjContact, #var, &MjContactWrapper::var)
X(pos);
X(frame);
X(friction);
X(solref);
X(solreffriction);
X(solimp);
X(H);
X(geom);
X(flex);
X(elem);
X(vert);
#undef X
py::class_<MjContactList> mjContactList(m, "_MjContactList");
mjContactList.def("__getitem__", &MjContactList::operator[],
py::return_value_policy::reference);
mjContactList.def("__getitem__", &MjContactList::Slice);
mjContactList.def("__len__", &MjContactList::size);
DefineStructFunctions(mjContactList);
#define X(type, var) \
mjContactList.def_property_readonly(#var, [](const MjContactList& c) { \
return py::array_t<type>(std::vector<int>{c.size()}, \
std::vector<int>{sizeof(raw::MjContact)}, \
&c.get()->var, c.owner()); \
});
#define XN(type, var) \
mjContactList.def_property_readonly(#var, [](const MjContactList& c) { \
return py::array_t<type>( \
std::vector<int>{c.size(), \
sizeof(raw::MjContact::var) / sizeof(type)}, \
std::vector<int>{sizeof(raw::MjContact), sizeof(type)}, \
&c.get()->var[0], c.owner()); \
});
X(mjtNum, dist);
XN(mjtNum, pos);
XN(mjtNum, frame);
X(mjtNum, includemargin);
XN(mjtNum, friction);
XN(mjtNum, solref);
XN(mjtNum, solreffriction);
XN(mjtNum, solimp);
X(mjtNum, mu);
XN(mjtNum, H);
X(int, dim);
X(int, geom1);
X(int, geom2);
X(int, exclude);
X(int, efc_address);
XN(int, geom);
XN(int, flex);
XN(int, elem);
XN(int, vert);
#undef X
#undef XN
// ==================== MJDATA ===============================================
py::class_<MjDataWrapper> mjData(m, "MjData");
mjData.def(py::init<MjModelWrapper*>());
mjData.def_property_readonly("_address", [](const MjDataWrapper& d) {
return reinterpret_cast<std::uintptr_t>(d.get());
});
mjData.def_property_readonly(
"model", [](const MjDataWrapper& d) { return &d.model(); });
mjData.def("__copy__",
[](const MjDataWrapper& other) { return MjDataWrapper(other); });
mjData.def("__deepcopy__", [](const MjDataWrapper& other, py::dict memo) {
// Use copy.deepcopy(model) to make a model that Python is aware of.
py::object new_model_py =
py::cast(other.model()).attr("__deepcopy__")(memo);
return MjDataWrapper(other, new_model_py.cast<MjModelWrapper*>());
});
mjData.def(py::pickle(
[](const MjDataWrapper& d) { // __getstate__
std::ostringstream output(std::ios::out | std::ios::binary);
d.Serialize(output);
return py::bytes(output.str());
},
[](py::bytes b) { // __setstate__
std::istringstream input(b, std::ios::in | std::ios::binary);
return MjDataWrapper::Deserialize(input);
}));
mjData.def_property_readonly(
"signature",
[](const MjDataWrapper& d) -> uint64_t { return d.get()->signature; });
#define X(type, var) \
mjData.def_property( \
#var, [](const MjDataWrapper& d) { return d.get()->var; }, \
[](MjDataWrapper& d, decltype(raw::MjData::var) rhs) { \
d.get()->var = rhs; \
});
MJDATA_SCALAR
#undef X
#define X(dtype, var, dim0, dim1) \
DefinePyArray(mjData, #var, &MjDataWrapper::var);
MJDATA_POINTERS
MJDATA_ARENA_POINTERS_CONTACT
#undef X
#undef MJ_M
#define MJ_M(x) d.model().get()->x
#undef MJ_D
#define MJ_D(x) d.get()->x
#define X(dtype, var, dim0, dim1) \
mjData.def_property_readonly(#var, [](const MjDataWrapper& d) { \
return InitPyArray(X_ARRAY_SHAPE(dim0, dim1), d.get()->var, d.owner()); \
});
MJDATA_ARENA_POINTERS_SOLVER
MJDATA_ARENA_POINTERS_DUAL
MJDATA_ARENA_POINTERS_ISLAND
#undef MJ_M
#define MJ_M(x) (x)
#undef MJ_D
#define MJ_D(x) (x)
#undef X
#define X(dtype, var, dim0, dim1) \
DefinePyArray(mjData, #var, &MjDataWrapper::var);
MJDATA_VECTOR
#undef X
#define XGROUP(MjDataGroupedViews, field, nfield, FIELD_XMACROS) \
mjData.def( \
#field, \
[](MjDataWrapper& d, int i) -> auto& { return d.indexer().field(i); }, \
py::return_value_policy::reference_internal); \
mjData.def( \
#field, \
[](MjDataWrapper& d, std::string_view name) -> auto& { \
return d.indexer().field##_by_name(name); \
}, \
py::return_value_policy::reference_internal, py::arg_v("name", ""));
MJDATA_VIEW_GROUPS
#undef XGROUP
#define XGROUP(spectype, field) \
mjData.def( \
"bind_scalar", \
[](MjDataWrapper& d, spectype& spec) -> auto& { \
if (mjs_getSpec(spec.element)->element->signature != \
d.get()->signature) { \
throw py::value_error( \
"The mjSpec does not match mjData. Please recompile " \
"the mjSpec."); \
} \
return d.indexer().field(mjs_getId(spec.element)); \
}, \
py::return_value_policy::reference_internal, \
py::arg_v("spec", py::none()));
MJDATA_BIND_GROUPS
#undef XGROUP
#define XGROUP(field, altname, FIELD_XMACROS) \
mjData.def( \
#altname, \
[](MjDataWrapper& d, int i) -> auto& { return d.indexer().field(i); }, \
py::return_value_policy::reference_internal); \
mjData.def( \
#altname, \
[](MjDataWrapper& d, std::string_view name) -> auto& { \
return d.indexer().field##_by_name(name); \
}, \
py::return_value_policy::reference_internal, py::arg_v("name", ""));
MJDATA_VIEW_GROUPS_ALTNAMES
#undef XGROUP
#define XGROUP(MjDataGroupedViews, field, nfield, FIELD_XMACROS) \
{ \
using GroupedViews = MjDataGroupedViews; \
py::class_<MjDataGroupedViews> groupedViews(m, "_" #MjDataGroupedViews); \
FIELD_XMACROS \
groupedViews.def("__repr__", MjDataStructRepr<GroupedViews>); \
groupedViews.def_property_readonly( \
"id", [](GroupedViews& views) { return views.index(); }); \
groupedViews.def_property_readonly( \
"name", [](GroupedViews& views) { return views.name(); }); \
}
#define X(type, prefix, var, dim0, dim1) \
groupedViews.def_property( \
#var, &GroupedViews::var, [](GroupedViews& views, py::handle rhs) { \
(views.var())[py::slice(py::none(), py::none(), py::none())] = rhs; \
});
MJDATA_VIEW_GROUPS
#undef X
#undef XGROUP
{
py::handle builtins(PyEval_GetBuiltins());
builtins[MjDataWrapper::kFromRawPointer] = reinterpret_cast<std::uintptr_t>(
reinterpret_cast<void*>(&MjDataWrapper::FromRawPointer));
}
// ==================== MJSTATISTIC ==========================================
py::class_<MjStatisticWrapper> mjStatistic(m, "MjStatistic");
mjStatistic.def(py::init<>());
mjStatistic.def("__copy__", [](const MjStatisticWrapper& other) {
return MjStatisticWrapper(other);
});
mjStatistic.def("__deepcopy__",
[](const MjStatisticWrapper& other, py::dict) {
return MjStatisticWrapper(other);
});
DefineStructFunctions(mjStatistic);
#define X(var) \
mjStatistic.def_property( \
#var, [](const MjStatisticWrapper& c) { return c.get()->var; }, \
[](MjStatisticWrapper& c, decltype(raw::MjStatistic::var) rhs) { \
c.get()->var = rhs; \
})
X(meaninertia);
X(meanmass);
X(meansize);
X(extent);
#undef X
#define X(var) DefinePyArray(mjStatistic, #var, &MjStatisticWrapper::var)
X(center);
#undef X
// ==================== MJLROPT ==============================================
py::class_<raw::MjLROpt> mjLROpt(m, "MjLROpt");
mjLROpt.def(py::init<>());
mjLROpt.def("__copy__",
[](const raw::MjLROpt& other) { return raw::MjLROpt(other); });
mjLROpt.def("__deepcopy__", [](const raw::MjLROpt& other, py::dict) {
return raw::MjLROpt(other);
});
DefineStructFunctions(mjLROpt);
#define X(var) mjLROpt.def_readwrite(#var, &raw::MjLROpt::var)
X(mode);
X(useexisting);
X(uselimit);
X(accel);
X(maxforce);
X(timeconst);
X(timestep);
X(inttotal);
X(interval);
X(tolrange);
#undef X
// ==================== MJVPERTURB ===========================================
py::class_<MjvPerturbWrapper> mjvPerturb(m, "MjvPerturb");
mjvPerturb.def(py::init<>());
mjvPerturb.def("__copy__", [](const MjvPerturbWrapper& other) {
return MjvPerturbWrapper(other);
});
mjvPerturb.def("__deepcopy__", [](const MjvPerturbWrapper& other, py::dict) {
return MjvPerturbWrapper(other);
});
DefineStructFunctions(mjvPerturb);
#define X(var) \
mjvPerturb.def_property( \
#var, [](const MjvPerturbWrapper& c) { return c.get()->var; }, \
[](MjvPerturbWrapper& c, decltype(raw::MjvPerturb::var) rhs) { \
c.get()->var = rhs; \
})
X(select);
X(flexselect);
X(skinselect);
X(active);
X(active2);
X(localmass);
X(scale);
#undef X
#define X(var) DefinePyArray(mjvPerturb, #var, &MjvPerturbWrapper::var)
X(refpos);
X(refquat);
X(refselpos);
X(localpos);
#undef X
// ==================== MJVCAMERA ============================================
py::class_<MjvCameraWrapper> mjvCamera(m, "MjvCamera");
mjvCamera.def(py::init<>());
mjvCamera.def("__copy__", [](const MjvCameraWrapper& other) {
return MjvCameraWrapper(other);
});
mjvCamera.def("__deepcopy__", [](const MjvCameraWrapper& other, py::dict) {
return MjvCameraWrapper(other);
});
DefineStructFunctions(mjvCamera);
#define X(var) \
mjvCamera.def_property( \
#var, [](const MjvCameraWrapper& c) { return c.get()->var; }, \
[](MjvCameraWrapper& c, decltype(raw::MjvCamera::var) rhs) { \
c.get()->var = rhs; \
})
X(type);
X(fixedcamid);
X(trackbodyid);
X(distance);
X(azimuth);
X(elevation);
X(orthographic);
#undef X
#define X(var) DefinePyArray(mjvCamera, #var, &MjvCameraWrapper::var)
X(lookat);
#undef X
// ==================== MJVGLCAMERA ==========================================
py::class_<MjvGLCameraWrapper> mjvGLCamera(m, "MjvGLCamera");
mjvGLCamera.def(py::init<>());
mjvGLCamera.def("__copy__", [](const MjvGLCameraWrapper& other) {
return MjvGLCameraWrapper(other);
});
mjvGLCamera.def("__deepcopy__",
[](const MjvGLCameraWrapper& other, py::dict) {
return MjvGLCameraWrapper(other);
});
DefineStructFunctions(mjvGLCamera);
#define X(var) \
mjvGLCamera.def_property( \
#var, [](const MjvGLCameraWrapper& c) { return c.get()->var; }, \
[](MjvGLCameraWrapper& c, decltype(raw::MjvGLCamera::var) rhs) { \
c.get()->var = rhs; \
})
X(frustum_center);
X(frustum_width);
X(frustum_bottom);
X(frustum_top);
X(frustum_near);
X(frustum_far);
X(orthographic);
#undef X
#define X(var) DefinePyArray(mjvGLCamera, #var, &MjvGLCameraWrapper::var)
X(pos);
X(forward);
X(up);
#undef X
// ==================== MJVGEOM ==============================================
py::class_<MjvGeomWrapper> mjvGeom(m, "MjvGeom");
mjvGeom.def(py::init<>());
mjvGeom.def("__copy__", [](const MjvGeomWrapper& other) {
return MjvGeomWrapper(other);
});
mjvGeom.def("__deepcopy__", [](const MjvGeomWrapper& other, py::dict) {
return MjvGeomWrapper(other);
});
DefineStructFunctions(mjvGeom);
#define X(var) \
mjvGeom.def_property( \
#var, [](const MjvGeomWrapper& c) { return c.get()->var; }, \
[](MjvGeomWrapper& c, decltype(raw::MjvGeom::var) rhs) { \
c.get()->var = rhs; \
})
X(type);
X(dataid);
X(objtype);
X(objid);
X(category);
X(matid);
X(texcoord);
X(segid);
X(emission);
X(specular);
X(shininess);
X(reflectance);
X(camdist);
X(modelrbound);
X(transparent);
#undef X
#define X(var) DefinePyArray(mjvGeom, #var, &MjvGeomWrapper::var)
X(size);
X(pos);
X(mat);
X(rgba);
#undef X
DefinePyStr(mjvGeom, "label", &raw::MjvGeom::label);
// ==================== MJVLIGHT =============================================
py::class_<MjvLightWrapper> mjvLight(m, "MjvLight");
mjvLight.def(py::init<>());
mjvLight.def("__copy__", [](const MjvLightWrapper& other) {
return MjvLightWrapper(other);
});
mjvLight.def("__deepcopy__", [](const MjvLightWrapper& other, py::dict) {
return MjvLightWrapper(other);
});
DefineStructFunctions(mjvLight);
#define X(var) \
mjvLight.def_property( \
#var, [](const MjvLightWrapper& c) { return c.get()->var; }, \
[](MjvLightWrapper& c, decltype(raw::MjvLight::var) rhs) { \
c.get()->var = rhs; \
})
X(cutoff);
X(exponent);
X(headlight);
X(type);
X(texid);
X(castshadow);
X(bulbradius);
X(intensity);
X(range);
#undef X
#define X(var) DefinePyArray(mjvLight, #var, &MjvLightWrapper::var)
X(pos);
X(dir);
X(attenuation);
X(ambient);
X(diffuse);
X(specular);
#undef X
// ==================== MJVOPTION ============================================
py::class_<MjvOptionWrapper> mjvOption(m, "MjvOption");
mjvOption.def(py::init<>());
mjvOption.def("__copy__", [](const MjvOptionWrapper& other) {
return MjvOptionWrapper(other);
});
mjvOption.def("__deepcopy__", [](const MjvOptionWrapper& other, py::dict) {
return MjvOptionWrapper(other);
});
DefineStructFunctions(mjvOption);
#define X(var) \
mjvOption.def_property( \
#var, [](const MjvOptionWrapper& c) { return c.get()->var; }, \
[](MjvOptionWrapper& c, decltype(raw::MjvOption::var) rhs) { \
c.get()->var = rhs; \
})
X(label);
X(frame);
X(bvh_depth);
X(flex_layer);
#undef X
#define X(var) DefinePyArray(mjvOption, #var, &MjvOptionWrapper::var)
X(geomgroup);
X(sitegroup);
X(jointgroup);
X(tendongroup);
X(actuatorgroup);
X(flexgroup);
X(skingroup);
X(flags);
#undef X
// ==================== MJVSCENE =============================================
py::class_<MjvSceneWrapper> mjvScene(m, "MjvScene");
mjvScene.def(py::init<>());
mjvScene.def(py::init<const MjModelWrapper&, int>(), py::arg("model"),
py::arg("maxgeom"));
mjvScene.def("__copy__", [](const MjvSceneWrapper& other) {
return MjvSceneWrapper(other);
});
mjvScene.def("__deepcopy__", [](const MjvSceneWrapper& other, py::dict) {
return MjvSceneWrapper(other);
});
#define X(var) \
mjvScene.def_property( \
#var, [](const MjvSceneWrapper& c) { return c.get()->var; }, \
[](MjvSceneWrapper& c, decltype(raw::MjvScene::var) rhs) { \
c.get()->var = rhs; \
})
X(maxgeom);
X(ngeom);
X(nflex);
X(nskin);
X(nlight);
X(flexvertopt);
X(flexedgeopt);
X(flexfaceopt);
X(flexskinopt);
X(enabletransform);
X(scale);
X(stereo);
X(framewidth);
#undef X
#define X(var) DefinePyArray(mjvScene, #var, &MjvSceneWrapper::var)
X(geoms);
X(geomorder);
X(flexedgeadr);
X(flexedgenum);
X(flexvertadr);
X(flexvertnum);
X(flexfaceadr);
X(flexfacenum);
X(flexfaceused);
X(flexedge);
X(flexvert);
X(flexface);
X(flexnormal);
X(flextexcoord);
X(skinfacenum);
X(skinvertadr);
X(skinvertnum);
X(skinvert);
X(skinnormal);
X(lights);
X(camera);
X(translate);
X(rotate);
X(flags);
X(framergb);
#undef X
// ==================== MJVFIGURE ============================================
py::class_<MjvFigureWrapper> mjvFigure(m, "MjvFigure");
mjvFigure.def(py::init<>());
mjvFigure.def("__copy__", [](const MjvFigureWrapper& other) {
return MjvFigureWrapper(other);
});
mjvFigure.def("__deepcopy__", [](const MjvFigureWrapper& other, py::dict) {
return MjvFigureWrapper(other);
});
#define X(var) \
mjvFigure.def_property( \
#var, [](const MjvFigureWrapper& c) { return c.get()->var; }, \
[](MjvFigureWrapper& c, decltype(raw::MjvFigure::var) rhs) { \
c.get()->var = rhs; \
})
X(flg_legend);
X(flg_extend);
X(flg_barplot);
X(flg_selection);
X(flg_symmetric);
X(linewidth);
X(gridwidth);
X(legendoffset);
X(subplot);
X(highlightid);
X(selection);
#undef X
#define X(var) DefinePyArray(mjvFigure, #var, &MjvFigureWrapper::var)
X(flg_ticklabel);
X(gridsize);
X(gridrgb);
X(figurergba);
X(panergba);
X(legendrgba);
X(textrgb);
X(linergb);
X(range);
X(highlight);
X(linepnt);
X(linedata);
X(xaxispixel);
X(yaxispixel);
X(xaxisdata);
X(yaxisdata);
#undef X
#define X(var) DefinePyStr(mjvFigure, #var, &raw::MjvFigure::var);
X(xformat);
X(yformat);
X(minwidth);
X(title);
X(xlabel);
#undef X
mjvFigure.def_readonly("linename", &MjvFigureWrapper::linename);
// mjv_averageCamera returns an mjvGLCamera and we need to call the wrapper's
// constructor on the return value. Defining the binding for this function
// in this file to avoid symbol dependency across modules.
m.def(
"mjv_averageCamera",
[](const MjvGLCameraWrapper& cam1, const MjvGLCameraWrapper& cam2) {
return MjvGLCameraWrapper([&cam1, &cam2]() {
py::gil_scoped_release no_gil;
return InterceptMjErrors(mjv_averageCamera)(cam1.get(), cam2.get());
}());
},
py::arg("cam1"), py::arg("cam2"),
py::doc(python_traits::mjv_averageCamera::doc));
m.def("_recompile_spec_addr", [](uintptr_t spec_addr, const MjModelWrapper& m,
const MjDataWrapper& d) {
return RecompileSpec(reinterpret_cast<raw::MjSpec*>(spec_addr), m, d);
});
} // PYBIND11_MODULE NOLINT(readability/fn_size)
} // namespace mujoco::python::_impl