#!/usr/bin/env python3 """Render preview MP4s for each build's parquet. Reads data/ticks/{build_id:03d}.parquet and writes: previews/{build_id:03d}/chamber.mp4 (optical) previews/{build_id:03d}/thermal.mp4 previews/{build_id:03d}/galvo.mp4 previews/{build_id:03d}/composite.mp4 (1x3 panel: chamber | thermal | galvo) Playback is at 10 fps (= tick rate), so the video duration matches the build's wall-clock duration. Null frames are forward-filled with the most recent captured frame of that kind, so the preview keeps moving even during the sparse stretches (heating, idle). Source is the dataset's own parquet — no recorder repo needed. The trade-off is that ~half of upstream-captured frames don't survive the per-tick attach, so motion looks chunkier than playing the raw recorder frames would. The thermal panel is rendered from the raw `bedmatrix` IR grid (inferno colormap over a fixed absolute °C range; see _thermal.py) whenever it's present — builds 013+. The three earliest builds (001/002/012) predate the bedmatrix stream and fall back to the legacy pre-rendered `frame_thermal` GIF. Usage: uv run scripts/previews/01_render.py # all builds in data/ticks/ uv run scripts/previews/01_render.py 13 26 # specific build ids """ import io import os import sys from pathlib import Path # Point imageio-ffmpeg at the system ffmpeg (Ubuntu's build includes h264_nvenc; # the bundled imageio-ffmpeg binary doesn't). Must be set BEFORE importing imageio. os.environ.setdefault("IMAGEIO_FFMPEG_EXE", "/usr/bin/ffmpeg") import imageio.v2 as iio import numpy as np import pyarrow.parquet as pq from PIL import Image sys.path.insert(0, str(Path(__file__).parent.parent)) sys.path.insert(0, str(Path(__file__).parent)) from _lib import DATA_DIR from _thermal import bedmatrix_to_image OUTPUT_DIR = DATA_DIR.parent / "previews" TICKS_DIR = DATA_DIR / "ticks" # Order here = left-to-right order in the composite panel. FRAME_KINDS = ("chamber", "thermal", "galvo") # The thermal panel is rendered from the raw `bedmatrix` IR grid when present # (builds 013+), falling back to the legacy `frame_thermal` GIF for the three # earliest builds (001/002/012) that predate the bedmatrix stream. # Per-kind rotation applied post-decode (degrees clockwise). The chamber camera # is mounted sideways on the printer, so its raw frames need a 90° CW correction # before rendering. Other kinds are captured already in display orientation. KIND_ROTATION_CW = {"chamber": 90} FPS = 10 PANEL_HEIGHT = 480 # all panels resized to this height; widths float to preserve aspect ratio. BATCH_ROWS = 1000 # pyarrow row-group iter chunk; bounds peak memory per build. def _even(n: int) -> int: """H.264 requires even dimensions; round up if odd.""" return n if n % 2 == 0 else n + 1 def _decode_raw(frame_struct, kind: str) -> Image.Image | None: """Decode an HF Image struct to a PIL Image (RGB), applying KIND_ROTATION_CW if the kind needs orientation correction. None when missing.""" if frame_struct is None: return None b = frame_struct.get("bytes") if b is None: return None try: img = Image.open(io.BytesIO(b)).convert("RGB") except Exception: return None rot = KIND_ROTATION_CW.get(kind, 0) # Image.Transpose.ROTATE_N rotates N degrees CCW, so CW=N → ROTATE_(360-N). if rot == 90: img = img.transpose(Image.Transpose.ROTATE_270) elif rot == 180: img = img.transpose(Image.Transpose.ROTATE_180) elif rot == 270: img = img.transpose(Image.Transpose.ROTATE_90) return img def _decode_cell(cell, kind: str) -> Image.Image | None: """Decode one struct cell to a PIL RGB image, dispatching on struct shape: a `bedmatrix` struct (has 'values') renders as an inferno heatmap; a frame Image struct (has 'bytes') decodes + orientation-corrects. None when missing.""" if cell is None: return None if "values" in cell: return bedmatrix_to_image(cell) return _decode_raw(cell, kind) def _thermal_column(parquet_path: Path) -> str: """Which column feeds the thermal panel for this build: 'bedmatrix' when the raw IR matrix has any non-null cell, else the legacy 'frame_thermal'. The bedmatrix stream started at build 013, so 001/002/012 fall back to the GIF.""" pf = pq.ParquetFile(parquet_path) if "bedmatrix" not in {f.name for f in pf.schema_arrow}: return "frame_thermal" for batch in pf.iter_batches(columns=["bedmatrix"], batch_size=BATCH_ROWS): for cell in batch.column("bedmatrix").to_pylist(): if cell is not None: return "bedmatrix" return "frame_thermal" def _columns_for_build(parquet_path: Path) -> dict[str, str]: """Map each panel kind → the parquet column that feeds it for this build.""" return { "chamber": "frame_chamber", "thermal": _thermal_column(parquet_path), "galvo": "frame_galvo", } def _fit_to_canvas(img: Image.Image, canvas_w: int) -> np.ndarray: """Letterbox `img` into a (canvas_w × PANEL_HEIGHT) gray canvas, preserving aspect. Locking on the canvas dims is required because some builds have frames whose source dimensions drift mid-build (e.g. thermal IR config changes).""" sw, sh = img.size scale = min(canvas_w / sw, PANEL_HEIGHT / sh) new_w = max(1, round(sw * scale)) new_h = max(1, round(sh * scale)) fitted = img.resize((new_w, new_h), Image.BILINEAR) canvas = Image.new("RGB", (canvas_w, PANEL_HEIGHT), (20, 20, 20)) canvas.paste(fitted, ((canvas_w - new_w) // 2, (PANEL_HEIGHT - new_h) // 2)) return np.asarray(canvas) def _placeholder(width: int) -> np.ndarray: """Gray panel shown before the first frame of a kind has been seen.""" return np.full((PANEL_HEIGHT, width, 3), 20, dtype=np.uint8) def _iter_struct_batches(parquet_path: Path, columns: list[str]): """Yield (n_rows, dict[col -> list[struct|None]]) per row-group batch.""" pf = pq.ParquetFile(parquet_path) for batch in pf.iter_batches(columns=columns, batch_size=BATCH_ROWS): cols = {c: batch.column(c).to_pylist() for c in columns} yield batch.num_rows, cols def _open_writer(out_path: Path): """Open an MP4 writer. Uses NVENC on the K620 GPUs when available, falling back to libx264 if the env var RENDER_CPU=1 forces software encode.""" out_path.parent.mkdir(parents=True, exist_ok=True) if os.environ.get("RENDER_CPU") == "1": return iio.get_writer( out_path, fps=FPS, codec="libx264", macro_block_size=1, quality=6, # ~CRF 23-ish ) # NVENC path. Quality target ~CRF 23 via constant-quality VBR. `p4` is the # balanced preset on the new naming; older NVENC firmware may report this # as "medium". yuv420p forced because rgb24 input → NVENC needs 4:2:0. return iio.get_writer( out_path, fps=FPS, codec="h264_nvenc", macro_block_size=1, ffmpeg_params=[ "-preset", "p4", "-rc", "vbr", "-cq", "23", "-pix_fmt", "yuv420p", ], ) def _probe_first_frame_width(parquet_path: Path, kind: str, col: str) -> int | None: """Find the first non-null cell in `col`, compute the locked canvas width from its post-decode aspect ratio (height = PANEL_HEIGHT). Returns None if no frame of that kind ever appears.""" for n_rows, cols in _iter_struct_batches(parquet_path, [col]): for struct in cols[col]: img = _decode_cell(struct, kind) if img is not None: sw, sh = img.size return _even(max(2, round(sw * PANEL_HEIGHT / sh))) return None def render_per_kind(parquet_path: Path, kind: str, out_path: Path, col: str) -> int: """Write one MP4 of a single panel kind, forward-filled. Returns frame count.""" width = _probe_first_frame_width(parquet_path, kind, col) if width is None: # No frames of this kind exist for this build; nothing meaningful to render. print(f" {kind:8s}: no frames of this kind, skipping") return 0 last: np.ndarray | None = None frames_written = 0 with _open_writer(out_path) as writer: for n_rows, cols in _iter_struct_batches(parquet_path, [col]): for struct in cols[col]: img = _decode_cell(struct, kind) if img is not None: last = _fit_to_canvas(img, width) writer.append_data(last if last is not None else _placeholder(width)) frames_written += 1 return frames_written def render_composite(parquet_path: Path, out_path: Path, cols_map: dict[str, str]) -> int: """Write the 1×3 composite. All three panels share the tick timeline.""" # Lock canvas widths up front so all subsequent frames letterbox into a fixed shape. widths = {k: (_probe_first_frame_width(parquet_path, k, cols_map[k]) or PANEL_HEIGHT) for k in FRAME_KINDS} cols_to_read = [cols_map[k] for k in FRAME_KINDS] last: dict[str, np.ndarray | None] = {k: None for k in FRAME_KINDS} frames_written = 0 with _open_writer(out_path) as writer: for n_rows, cols in _iter_struct_batches(parquet_path, cols_to_read): for i in range(n_rows): for k in FRAME_KINDS: img = _decode_cell(cols[cols_map[k]][i], k) if img is not None: last[k] = _fit_to_canvas(img, widths[k]) panels = [ last[k] if last[k] is not None else _placeholder(widths[k]) for k in FRAME_KINDS ] writer.append_data(np.hstack(panels)) frames_written += 1 return frames_written def process_build(build_id: int, kinds: set[str]) -> None: parquet_path = TICKS_DIR / f"{build_id:03d}.parquet" if not parquet_path.exists(): print(f"build {build_id:03d}: no parquet, skipping") return build_dir = OUTPUT_DIR / f"{build_id:03d}" print(f"build {build_id:03d}: rendering → {build_dir.relative_to(Path.cwd())}/") cols_map = _columns_for_build(parquet_path) if ("thermal" in kinds or "composite" in kinds): print(f" thermal source: {cols_map['thermal']}") for kind in FRAME_KINDS: if kind not in kinds: continue out = build_dir / f"{kind}.mp4" n = render_per_kind(parquet_path, kind, out, cols_map[kind]) # render_per_kind skips writing entirely when no frames of this kind exist # (and prints its own "skipping" line). Guard stat to avoid FileNotFoundError. if out.exists(): print(f" {kind:8s}: {n:>7,} frames → {out.name} ({out.stat().st_size:,} bytes)") if "composite" in kinds: out = build_dir / "composite.mp4" n = render_composite(parquet_path, out, cols_map) if out.exists(): print(f" composite: {n:>7,} frames → {out.name} ({out.stat().st_size:,} bytes)") def main(): import argparse parser = argparse.ArgumentParser(description=__doc__, formatter_class=argparse.RawDescriptionHelpFormatter) parser.add_argument("build_ids", nargs="*", type=int, help="Specific build IDs to render (default: all in data/ticks/)") parser.add_argument("--kinds", default="chamber,thermal,galvo,composite", help="Comma-separated outputs to render. Default: all four. " "Useful for re-rendering just one kind, e.g. " "--kinds chamber,composite after a chamber-orientation change.") args = parser.parse_args() kinds = set(args.kinds.split(",")) unknown = kinds - (set(FRAME_KINDS) | {"composite"}) if unknown: parser.error(f"unknown --kinds values: {sorted(unknown)}; " f"valid: {sorted(set(FRAME_KINDS) | {'composite'})}") targets = args.build_ids or sorted(int(p.stem) for p in TICKS_DIR.glob("*.parquet")) for bid in targets: process_build(bid, kinds) if __name__ == "__main__": main()