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Mujoco_WASM/python/mujoco/structs.cc
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Sam Haves eadd13038a Move Mujoco struct wrappers definitions into library separate from pybind module.
This allows other modules to depend on functions such as FromRawPointer that previously were only defined in the _struct python module.

PiperOrigin-RevId: 745619670
Change-Id: I9f1af60cb665c00d853b7ca38201b37302d278af
2025-04-09 09:28:40 -07:00

1260 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(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(directional);
X(castshadow);
X(bulbradius);
#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