Files
Mujoco_WASM/wasm/codegen/helpers/struct_field_handler_test.py
T
Matias Manevi 76e64d96bb Add JavaScript bindings and WASM support
Co-authored-by: Matija Kecman <matijak@google.com>
Co-authored-by: Sebastian Noreña Rendón <sebas.norena@creativa77.com.ar>
Co-authored-by: Kyle Bayes <kylebayes@google.com>
PiperOrigin-RevId: 826094938
Change-Id: Id2658a187bc078056f4410c71202696753319e64
2025-10-30 10:38:16 -07:00

242 lines
7.0 KiB
Python

# 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.
from absl.testing import absltest
from introspect import ast_nodes
from wasm.codegen.helpers import struct_field_handler
StructFieldDecl = ast_nodes.StructFieldDecl
ValueType = ast_nodes.ValueType
PointerType = ast_nodes.PointerType
ArrayType = ast_nodes.ArrayType
class StructFieldHandlerTest(absltest.TestCase):
def test_scalar_field(self):
"""Test that a scalar type field is handled correctly."""
field_scalar = StructFieldDecl(
name='ngeom',
type=ValueType(name='int'),
doc='number of geoms',
)
field_handler_scalar = struct_field_handler.StructFieldHandler(
field_scalar, 'MjModel'
)
wrapped_field_data = field_handler_scalar.generate()
self.assertEqual(
wrapped_field_data.definition,
"""
int ngeom() const {
return ptr_->ngeom;
}
void set_ngeom(int value) {
ptr_->ngeom = value;
}
""".strip(),
)
self.assertEqual(
wrapped_field_data.binding,
'.property("ngeom", &MjModel::ngeom, &MjModel::set_ngeom, reference())',
)
def test_pointer_type_field(self):
"""Test that a pointer type field is handled correctly."""
field = StructFieldDecl(
name='geom_rgba',
type=PointerType(
inner_type=ValueType(name='float'),
),
doc='rgba when material is omitted',
array_extent=('ngeom', 4),
)
wrapped_field_data = struct_field_handler.StructFieldHandler(
field, 'MjModel'
).generate()
self.assertEqual(
wrapped_field_data.definition,
("""
emscripten::val geom_rgba() const {
return emscripten::val(emscripten::typed_memory_view(ptr_->ngeom * 4, ptr_->geom_rgba));
}
""".strip()),
)
self.assertEqual(
wrapped_field_data.binding,
'.property("geom_rgba", &MjModel::geom_rgba)',
)
def test_pointer_type_field_for_byte_type(self):
"""Test that a pointer type field for a byte type is handled correctly."""
field = StructFieldDecl(
name='buffer',
type=PointerType(
inner_type=ValueType(name='void'),
),
doc='main buffer; all pointers point in it (nbuffer bytes)',
)
wrapped_field_data = struct_field_handler.StructFieldHandler(
field, 'MjData'
).generate()
self.assertEqual(
wrapped_field_data.definition,
("""
emscripten::val buffer() const {
return emscripten::val(emscripten::typed_memory_view(model->nbuffer, static_cast<uint8_t*>(ptr_->buffer)));
}
""".strip()),
)
assert (
wrapped_field_data.binding
== '.property("buffer", &MjData::buffer)'
)
def test_pointer_type_field_for_mj_struct(self):
"""Test that a pointer type field for a mj struct is handled correctly."""
field = StructFieldDecl(
name='element',
type=PointerType(
inner_type=ValueType(name='mjsElement'),
),
doc='',
)
wrapped_field_data = struct_field_handler.StructFieldHandler(
field, 'MjsTexture'
).generate()
self.assertEqual(wrapped_field_data.definition, "MjsElement element;")
self.assertEqual(
wrapped_field_data.binding,
'.property("element", &MjsTexture::element, reference())',
)
self.assertEqual(
wrapped_field_data.initialization,
', element(ptr_->element)',
)
def test_array_type_field(self):
"""Test that an array type field is handled correctly."""
field = StructFieldDecl(
name='gravity',
type=ArrayType(
inner_type=ValueType(name='mjtNum'),
extents=(3,),
),
doc='gravitational acceleration',
)
wrapped_field_data = struct_field_handler.StructFieldHandler(
field, 'MjOption'
).generate()
self.assertEqual(
wrapped_field_data.definition,
("""
emscripten::val gravity() const {
return emscripten::val(emscripten::typed_memory_view(3, ptr_->gravity));
}
""".strip()),
)
self.assertEqual(
wrapped_field_data.binding,
'.property("gravity", &MjOption::gravity)',
)
def test_array_field_with_multi_dimensional_array(self):
"""Test that multi-dimensional arrays are handled correctly."""
field = StructFieldDecl(
name='multi_dim_array',
type=ArrayType(
inner_type=ValueType(name='float'),
extents=(3, 4),
),
doc='description',
)
wrapped_field_data = struct_field_handler.StructFieldHandler(
field, 'MjModel'
).generate()
self.assertEqual(
wrapped_field_data.definition,
"""
emscripten::val multi_dim_array() const {
return emscripten::val(emscripten::typed_memory_view(12, reinterpret_cast<float*>(ptr_->multi_dim_array)));
}
""".strip(),
)
self.assertEqual(
wrapped_field_data.binding,
'.property("multi_dim_array", &MjModel::multi_dim_array)',
)
def test_parse_array_extent(self):
"""Test that parse_array_extent handles various cases correctly."""
self.assertEqual(
struct_field_handler.parse_array_extent((1, 2), 'MjModel', 'geom_rgba'),
'1 * 2',
)
self.assertEqual(
struct_field_handler.parse_array_extent(
(1, 'ngeom'), 'MjModel', 'geom_rgba'
),
'1 * ptr_->ngeom',
)
self.assertEqual(
struct_field_handler.parse_array_extent(
(1, 'mjConstant'), 'MjModel', 'geom_rgba'
),
'1 * mjConstant',
)
def test_resolve_extent(self):
"""Test that resolve_extent handles various cases correctly."""
# for integer just return the number
self.assertEqual(
struct_field_handler.resolve_extent(1, 'MjModel', 'geom_rgba'), '1'
)
# for string that does not start with mj, it's a member of the struct
self.assertEqual(
struct_field_handler.resolve_extent('ngeom', 'MjModel', 'geom_rgba'),
'ptr_->ngeom',
)
# when it's MjData and the field is in MJDATA_SIZES, it should use ptr_->
self.assertEqual(
struct_field_handler.resolve_extent('size_value', 'MjData', 'efc_AR'),
'ptr_->size_value',
)
# when it's MjData and the field is not in MJDATA_SIZES,
# it should use model->
self.assertEqual(
struct_field_handler.resolve_extent(
'size_value', 'MjData', 'data_field'
),
'model->size_value',
)
self.assertEqual(
struct_field_handler.resolve_extent(
'mjConstant', 'MjModel', 'model_field'
),
'mjConstant',
)
if __name__ == '__main__':
absltest.main()