Hunyuan3D-2.2-mrp-MLX/generate_e2e.py
modelbeast e4cfa9d1e9 Clean MLX build for MODELBEAST (inference-only)
Fork of dgrauet/Hunyuan3D-2.1-mlx + our generate_e2e.py CLI, env-tunable
remesh (HY3D_REMESH_FACES), and HARDWARE.md. Upstream training data
(mini_trainset) and demo images stripped — inference needs none of it.
Full upstream history: github.com/dgrauet/Hunyuan3D-2.1-mlx
2026-07-16 14:38:14 +10:00

161 lines
5.6 KiB
Python

#!/usr/bin/env python3
"""End-to-end image -> textured GLB, fully local on Apple Silicon (MLX).
Chains Hunyuan3D 2.1 Stage 1 (shape) + Stage 2 (PBR texture) into one command.
Distilled from tests/test_stage1_to_stage2.py, plus CLI flags, stage timings,
and MLX peak-memory reporting for MODELBEAST job logs.
python generate_e2e.py IMAGE --output STEM [flags]
Produces (STEM given without extension):
STEM_shape.glb Stage 1 mesh (untextured) [omitted with --no-texture]
STEM.glb final PBR-textured mesh [or the shape mesh if --no-texture]
"""
import argparse
import gc
import os
import sys
import time
from pathlib import Path
REPO = Path(__file__).resolve().parent
def _mlx_mem(fn_names):
import mlx.core as mx
candidates = []
for name in fn_names:
candidates.append(getattr(mx, name, None))
metal = getattr(mx, "metal", None)
if metal is not None:
candidates.append(getattr(metal, name, None))
for fn in candidates:
if fn is None:
continue
try:
return fn()
except Exception:
continue
return None
def peak_gb():
v = _mlx_mem(["get_peak_memory"])
return v / 1e9 if v is not None else float("nan")
def reset_peak():
_mlx_mem(["reset_peak_memory"])
def main():
ap = argparse.ArgumentParser(description="Hunyuan3D 2.1 MLX image->textured GLB")
ap.add_argument("image", help="input reference image (ideally a bg-removed cutout)")
ap.add_argument("--output", required=True, help="output path stem (extension ignored)")
# Stage 1 (shape)
ap.add_argument("--steps", type=int, default=50, help="Stage 1 denoising steps")
ap.add_argument("--guidance", type=float, default=7.5, help="Stage 1 CFG scale")
ap.add_argument("--octree-resolution", type=int, default=256, help="Stage 1 marching-cubes grid")
# Stage 2 (texture)
ap.add_argument("--max-num-view", type=int, default=6, help="Stage 2 baked views")
ap.add_argument("--view-resolution", type=int, default=512, help="Stage 2 per-view diffusion res")
ap.add_argument("--texture-size", type=int, default=2048, help="Stage 2 UV atlas res (2048|4096)")
ap.add_argument("--remesh-faces", type=int, default=40000, help="Stage 2 bake-mesh decimation target")
# Common
ap.add_argument("--seed", type=int, default=42)
ap.add_argument("--no-texture", action="store_true", help="Stage 1 only (geometry, much faster)")
ap.add_argument("--weights", default="dgrauet/hunyuan3d-2.1-mlx", help="HF repo id or local dir")
a = ap.parse_args()
# Resolve I/O to absolute BEFORE chdir; the pipeline reads relative config
# paths (hy3dpaint/cfgs/...), so it must run from the repo root.
image_path = str(Path(a.image).resolve())
out_stem = Path(a.output).resolve()
out_stem.parent.mkdir(parents=True, exist_ok=True)
if not os.path.exists(image_path):
print(f"ERROR: image not found: {image_path}", flush=True)
sys.exit(1)
os.environ["HY3D_REMESH_FACES"] = str(a.remesh_faces)
os.environ.setdefault("HF_HUB_DISABLE_XET", "1")
os.chdir(REPO)
sys.path.insert(0, str(REPO / "hy3dshape"))
sys.path.insert(0, str(REPO / "hy3dpaint"))
# ---- Stage 1: image -> mesh ----
print(f"[Stage 1] shape generation from {image_path}", flush=True)
from hy3dshape.pipeline_mlx import ShapePipeline
reset_peak()
t0 = time.time()
shape_pipe = ShapePipeline.from_pretrained(a.weights)
print(f" pipeline ready in {time.time() - t0:.1f}s", flush=True)
t0 = time.time()
mesh = shape_pipe(
image_path,
num_inference_steps=a.steps,
guidance_scale=a.guidance,
octree_resolution=a.octree_resolution,
seed=a.seed,
)
dt1 = time.time() - t0
nverts, nfaces = len(mesh.vertices), len(mesh.faces)
print(f" shape in {dt1:.1f}s ({nverts} verts, {nfaces} faces), "
f"peak {peak_gb():.1f}GB", flush=True)
if a.no_texture:
final = out_stem.with_suffix(".glb")
mesh.export(str(final))
print(f"[done] {final} (geometry only, {dt1:.0f}s)", flush=True)
return
shape_glb = str(out_stem.parent / (out_stem.name + "_shape.glb"))
mesh.export(shape_glb)
print(f" saved shape: {shape_glb}", flush=True)
# Free the DiT before loading the paint stack (both are memory-heavy)
del shape_pipe, mesh
gc.collect()
reset_peak()
# ---- Stage 2: mesh + reference -> textured GLB ----
print("[Stage 2] PBR texture synthesis", flush=True)
from textureGenPipeline_mlx import (
Hunyuan3DPaintConfigMLX,
Hunyuan3DPaintPipelineMLX,
)
cfg = Hunyuan3DPaintConfigMLX(max_num_view=a.max_num_view, resolution=a.view_resolution)
cfg.texture_size = a.texture_size
cfg.mlx_seed = a.seed
t0 = time.time()
paint_pipe = Hunyuan3DPaintPipelineMLX(cfg)
print(f" pipeline ready in {time.time() - t0:.1f}s", flush=True)
tex_obj = str(out_stem.with_suffix(".obj"))
t0 = time.time()
paint_pipe(
mesh_path=shape_glb,
image_path=image_path,
output_mesh_path=tex_obj,
use_remesh=True,
save_glb=True,
)
dt2 = time.time() - t0
final = out_stem.with_suffix(".glb")
if not final.exists():
print(f"ERROR: expected textured GLB not produced at {final}", flush=True)
sys.exit(2)
size_mb = final.stat().st_size / 1024 / 1024
print(f" texture in {dt2:.1f}s, peak {peak_gb():.1f}GB", flush=True)
print(f"[done] {final} ({size_mb:.1f} MB) "
f"shape={dt1:.0f}s tex={dt2:.0f}s total={dt1 + dt2:.0f}s", flush=True)
if __name__ == "__main__":
main()