File size: 8,009 Bytes
3f4bb1d | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 | #!/usr/bin/env python3
"""Fetch the G1 Inspire 5-finger USD and make it spawnable as a floating base.
Isaac Lab's ``g1_29dof_inspire_hand.usd`` is authored for a *fixed-base*
manipulation setup and needs two independent fixes before SONIC can use it. Both
faults report the same unhelpful symptom -- ``Pattern '/World/Robot/root_joint'
did not match any articulations`` -- because each one prevents PhysX from
creating the articulation at all.
1. **Mimic joints.** The Inspire finger linkages are ``physxMimicJoint:*``
properties (gearing -1.0 on the four fingers, -1.6 and -2.4 on the thumb).
This PhysX build cannot resolve them and logs ``failed to find internal joint
object for PhysxMimicJointAPI``. We strip all 60 properties, which leaves the
six coupled joints per hand independently actuated.
2. **Fixed base.** ``PhysicsArticulationRootAPI`` is applied to ``root_joint``,
a ``PhysicsFixedJoint`` anchoring the pelvis to the world. Spawning with
``fix_root_link=False`` disables that joint and takes the articulation root
with it. Stock ``g1.usd`` instead puts the root API on ``/g1/pelvis`` with no
root joint, so we match that: move the API and the ``physxArticulation:*``
solver settings onto the pelvis and drop the fixed joint.
The asset is a thin variant wrapper over four ``configuration/`` layers and
everything we touch lives in the 19 KB physics layer, so the 39 MB mesh layer is
mirrored untouched.
python scripts/fetch_inspire_hand.py [--force]
"""
from __future__ import annotations
import argparse
import urllib.request
from pathlib import Path
_ROOT = Path(__file__).resolve().parents[1]
_DEST = _ROOT / "assets" / "g1"
_BASE_URL = (
"https://omniverse-content-production.s3-us-west-2.amazonaws.com"
"/Assets/Isaac/6.0/Isaac/IsaacLab/Robots/Unitree/G1"
)
_WRAPPER = "g1_29dof_inspire_hand.usd"
_STEM = "g1_29dof_rev_1_0_with_inspire_hand_retarget_inspire_white"
_LAYERS = [f"{_STEM}_{k}.usd" for k in ("base", "physics", "robot", "sensor")]
_PHYSICS = f"{_STEM}_physics.usd"
_MARKER = "v2d_patch_version"
#: Bump when patch() changes, so an already-mirrored asset is re-patched.
_PATCH_VERSION = 2
_PRIM = "/g1_29dof_rev_1_0"
def _download(rel: str, dst: Path, force: bool) -> None:
if dst.is_file() and not force:
print(f" have {rel} ({dst.stat().st_size:,} B)")
return
dst.parent.mkdir(parents=True, exist_ok=True)
url = f"{_BASE_URL}/{rel}"
with urllib.request.urlopen(url) as r, open(dst, "wb") as f: # noqa: S310
f.write(r.read())
print(f" fetched {rel} ({dst.stat().st_size:,} B)")
def _drop_api_schema(spec, name: str) -> bool:
"""Remove one applied API schema from a prim spec, preserving the list-op kind."""
from pxr import Sdf
if not spec.HasInfo("apiSchemas"):
return False
op = spec.GetInfo("apiSchemas")
fields = ("explicitItems",) if op.isExplicit else ("prependedItems", "appendedItems", "addedItems")
new = Sdf.TokenListOp()
changed = False
for field in fields:
items = list(getattr(op, field))
kept = [t for t in items if name not in t]
changed |= len(kept) != len(items)
setattr(new, field, kept)
if changed:
spec.SetInfo("apiSchemas", new)
return changed
def _strip_mimic(layer) -> tuple[int, int]:
"""Drop the mimic properties *and* the now-orphaned API schema.
Removing only the properties leaves ``PhysxMimicJointAPI`` applied with no
``referenceJoint``, so PhysX logs an error per joint per articulation on
every run -- 48 lines for four environments -- which buries real errors.
The joints end up independently actuated either way.
"""
doomed: list = []
prims: list = []
def walk(spec) -> None:
for prop in spec.properties:
if "physxMimicJoint" in prop.name:
doomed.append(prop.path)
prims.append(spec)
for child in spec.nameChildren:
walk(child)
for root in layer.rootPrims:
walk(root)
for path in doomed:
del layer.GetPrimAtPath(path.GetPrimPath()).properties[path.name]
n_api = sum(_drop_api_schema(spec, "PhysxMimicJointAPI") for spec in prims)
return len(doomed), n_api
def _float_base(layer) -> bool:
"""Move the articulation root off the world-anchoring fixed joint."""
from pxr import Sdf
root_joint = layer.GetPrimAtPath(f"{_PRIM}/root_joint")
pelvis = layer.GetPrimAtPath(f"{_PRIM}/pelvis")
if root_joint is None or pelvis is None:
return False
for name in list(root_joint.properties.keys()):
if name.startswith("physxArticulation:"):
src = root_joint.properties[name]
dst = Sdf.AttributeSpec(pelvis, name, src.typeName)
dst.default = src.default
existing = pelvis.GetInfo("apiSchemas").prependedItems if pelvis.HasInfo("apiSchemas") else []
schemas = Sdf.TokenListOp()
schemas.prependedItems = list(existing) + ["PhysicsArticulationRootAPI"]
pelvis.SetInfo("apiSchemas", schemas)
del layer.GetPrimAtPath(_PRIM).nameChildren["root_joint"]
return True
def patch(layer_path: Path) -> tuple[int, int, bool]:
"""Strip mimic joints and float the base, in place. Idempotent."""
from pxr import Sdf
layer = Sdf.Layer.FindOrOpen(str(layer_path))
if layer is None:
raise SystemExit(f"cannot open {layer_path}")
if layer.customLayerData.get(_MARKER, 0) >= _PATCH_VERSION:
print(f" physics layer already patched (v{_PATCH_VERSION})")
return 0, 0, False
n_prop, n_api = _strip_mimic(layer)
floated = _float_base(layer)
data = dict(layer.customLayerData)
data[_MARKER] = _PATCH_VERSION
layer.customLayerData = data
layer.Save()
return n_prop, n_api, floated
def main() -> int:
ap = argparse.ArgumentParser()
ap.add_argument("--force", action="store_true", help="re-download even if present")
args = ap.parse_args()
print(f"mirroring Inspire hand USD into {_DEST}")
_download(_WRAPPER, _DEST / _WRAPPER, args.force)
for name in _LAYERS:
_download(f"configuration/{name}", _DEST / "configuration" / name, args.force)
n_prop, n_api, floated = patch(_DEST / "configuration" / _PHYSICS)
if n_prop:
print(f" stripped {n_prop} mimic properties")
if n_api:
print(f" removed PhysxMimicJointAPI from {n_api} prims")
if floated:
print(" moved articulation root onto pelvis, removed root_joint")
from pxr import Usd
stage = Usd.Stage.Open(str(_DEST / _WRAPPER))
left = [
p.GetPath().pathString
for p in stage.Traverse()
if any("physxMimicJoint" in a.GetName() for a in p.GetAttributes())
]
# An applied-but-empty API is what makes PhysX log an error per joint.
left_api = [
p.GetPath().pathString
for p in stage.Traverse()
if any("PhysxMimicJointAPI" in s for s in p.GetAppliedSchemas())
]
fingers = [
p.GetName()
for p in stage.Traverse()
if p.GetName().startswith(("L_", "R_")) and p.GetName().endswith("_joint")
]
roots = [
(p.GetPath().pathString, str(p.GetTypeName()))
for p in stage.Traverse()
if "PhysicsArticulationRootAPI" in p.GetAppliedSchemas()
]
print()
print(f" mimic properties remaining : {len(left)} (want 0)")
print(f" mimic API still applied : {len(left_api)} (want 0)")
print(f" finger joints : {len(fingers)} (want 24)")
print(f" articulation root : {roots}")
print(f" root_joint present : {bool(stage.GetPrimAtPath(_PRIM + '/root_joint'))} (want False)")
ok = (
not left
and not left_api
and len(fingers) == 24
and len(roots) == 1
and roots[0][1] == "Xform"
)
print(f"\n{'OK' if ok else 'NOT OK'}: {_DEST / _WRAPPER}")
return 0 if ok else 1
if __name__ == "__main__":
raise SystemExit(main())
|