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43.8 kB
| """Interactive playback for React data -- accepts a single `.pt` OR a | |
| directory of segments / episodes, concatenates same-episode segments | |
| into one continuous timeline, and lets you switch between source | |
| episodes with N / P. | |
| The viewer builds its own 1280x480 grid (no status strip): | |
| Row 1 (y=0..240): [left cam | middle cam | right cam | OptiTrack] | |
| Row 2 (y=240..480): [gs_L_raw | gs_L_diff | gs_R_raw | gs_R_diff | Controls] | |
| The three RealSense thumbnails and both GelSight raw streams are pulled | |
| from the source HDF5 file (referenced by each .pt segment's | |
| `_contact_meta.source_episode` + `source_h5_frame_range`). When the | |
| source H5 cannot be located, those cells are filled with a "no H5" | |
| placeholder. | |
| Usage | |
| ----- | |
| Single .pt file (mode1_v1 episode OR one mode2_v1 segment): | |
| python scripts/play_react_pt.py \\ | |
| processed/mode2_v1/motherboard/2026-05-11/episode_012.segment_00.pt | |
| Episode stem (no .pt suffix) -- loads ALL segments of that episode and | |
| seeds N/P navigation across the rest of the date folder: | |
| python scripts/play_react_pt.py \\ | |
| processed/mode2_v1/motherboard/2026-05-11/episode_005 | |
| Date folder -- all episodes recorded that day: | |
| python scripts/play_react_pt.py \\ | |
| processed/mode2_v1/motherboard/2026-05-11 | |
| Whole task -- every episode across every date: | |
| python scripts/play_react_pt.py \\ | |
| processed/mode2_v1/motherboard | |
| In all multi-episode modes, same-episode segments are concatenated | |
| into one playback timeline; N / P jumps to the next / previous | |
| source episode. | |
| Headless export (one MP4 per episode): | |
| python scripts/play_react_pt.py <root> --save_video_dir /tmp/out | |
| Override the source-H5 root (otherwise inferred by replacing | |
| `processed/<mode>` with `data` in the input path): | |
| python scripts/play_react_pt.py <root> --h5_root /path/to/data/<task> | |
| Controls | |
| -------- | |
| space pause / resume | |
| -> / d next frame | |
| <- / a previous frame | |
| 1..6 playback speed 1x / 2x / 5x / 10x / 25x / 50x | |
| r reset GelSight diff reference to current frame | |
| n next episode | |
| p previous episode | |
| q quit | |
| """ | |
| import argparse | |
| import re | |
| import sys | |
| import time | |
| from pathlib import Path | |
| from typing import Optional | |
| import cv2 | |
| import h5py | |
| import numpy as np | |
| import torch | |
| import sys as _sys | |
| from pathlib import Path as _Path | |
| # repo root, so `force_recovery` / `twm` / `react_toolbox` import however | |
| # this file is invoked. Six scripts lacked this and failed at import; all | |
| # six sat in validate_all's "slow" skip list, so nothing ran them. | |
| _sys.path.insert(0, str(_Path(__file__).resolve().parents[1])) | |
| try: | |
| from twm.viz import ( | |
| load_optitrack as _viz_load_optitrack, | |
| optitrack_at as _viz_optitrack_at, | |
| DISPLAY_ORDER, | |
| draw_projection_overlay as _viz_draw_projection_overlay, | |
| load_calibrations as _viz_load_calibrations, | |
| ) | |
| except Exception: | |
| _viz_load_optitrack = None | |
| _viz_optitrack_at = None | |
| _viz_draw_projection_overlay = None | |
| _viz_load_calibrations = None | |
| DISPLAY_ORDER = [1, 2, 0] # H5 cam_idx order for [left, middle, right] | |
| try: | |
| from twm.data_collection import REALSENSE_SERIALS | |
| except Exception: | |
| REALSENSE_SERIALS = ["143322063538", "104122062574", "217222066989"] | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| # Layout constants for this viewer's own panel | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| PANEL_W, PANEL_H = 1280, 480 | |
| RS_THUMB_W, RS_THUMB_H = 320, 240 # RealSense cam cell | |
| GS_THUMB_W, GS_THUMB_H = 240, 240 # GelSight raw/diff cell | |
| CONTROLS_W, CONTROLS_H = 320, 240 # Controls panel (replaces blank in row 2) | |
| TRACKER_COLORS = { | |
| "sensor_left": ( 0, 255, 120), | |
| "sensor_right": ( 0, 180, 255), | |
| } | |
| SEGMENT_FNAME_RE = re.compile(r"^(episode_\d+)\.segment_(\d+)\.pt$") | |
| PLAIN_EPISODE_RE = re.compile(r"^(episode_\d+)\.pt$") | |
| DATE_RE = re.compile(r"^\d{4}-\d{2}-\d{2}$") | |
| # The calibration epoch is PER TASK (May-12 for motherboard, June-26 for | |
| # pushT); it is resolved from the input path at parse time via calib_epoch. | |
| # The old module constant here defaulted every task to June-26. | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| def _tactile_to_bgr(tac_chw): | |
| rgb = tac_chw.permute(1, 2, 0).numpy() | |
| return rgb[..., ::-1] | |
| def _missing_cell(w, h, label): | |
| panel = np.full((h, w, 3), 32, np.uint8) | |
| cv2.putText(panel, label, (10, h // 2), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.45, (140, 140, 140), 1, cv2.LINE_AA) | |
| return panel | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| # H5 source resolution | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| def infer_h5_root(pt_path: Path) -> Optional[Path]: | |
| """Map a .pt path to its source-H5 root by replacing the | |
| `processed/<mode>/` prefix with `data/`. | |
| Examples: | |
| .../twm/processed/mode2_v1/motherboard/2026-05-11/ep.pt | |
| -> .../twm/data/motherboard | |
| .../twm/processed/mode2_v1/motherboard | |
| -> .../twm/data/motherboard | |
| """ | |
| parts = list(pt_path.parts) | |
| try: | |
| i = parts.index("processed") | |
| except ValueError: | |
| return None | |
| if i + 1 >= len(parts): | |
| return None | |
| base = parts[:i] | |
| tail = [] | |
| for p in parts[i + 2:]: | |
| if DATE_RE.match(p) or p.endswith(".pt"): | |
| break | |
| tail.append(p) | |
| return Path(*base, "data", *tail) | |
| def resolve_h5_path(h5_root: Optional[Path], source_episode: Optional[str]) -> Optional[Path]: | |
| """`source_episode` is '<date>/<episode_stem>'. Returns | |
| <h5_root>/<source_episode>.h5 if it exists, else None. | |
| """ | |
| if not h5_root or not source_episode: | |
| return None | |
| candidate = h5_root / f"{source_episode}.h5" | |
| return candidate if candidate.exists() else None | |
| class H5Source: | |
| """Lazy read-only access to a source H5: cams, gelsight frames, OT poses. | |
| Reads are served from an in-RAM chunk cache (default 32 frames). When the | |
| requested frame falls outside the current chunk, the next chunk for all | |
| 5 image streams is read in a single batched slab read -- ~30x faster than | |
| per-frame H5 fancy-indexing. | |
| """ | |
| CHUNK = 32 | |
| def __init__(self, h5_path: Optional[Path]): | |
| self.path = h5_path | |
| self.f = None | |
| self.n_frames = 0 | |
| self.timestamps = None | |
| self.gs_left_n = 0 | |
| self.gs_right_n = 0 | |
| self.optitrack = None | |
| self._chunk_start = -1 # inclusive | |
| self._chunk_end = -1 # exclusive (for cams) | |
| self._chunk_cache: dict = {} | |
| if h5_path is None: | |
| return | |
| try: | |
| self.f = h5py.File(str(h5_path), "r") | |
| self.n_frames = int(self.f["timestamps"].shape[0]) | |
| self.timestamps = self.f["timestamps"][:] | |
| self.gs_left_n = int(self.f["gelsight/left/frames"].shape[0]) | |
| self.gs_right_n = int(self.f["gelsight/right/frames"].shape[0]) | |
| if _viz_load_optitrack is not None: | |
| self.optitrack = _viz_load_optitrack(self.f) | |
| except Exception as e: | |
| print(f"[player] ! failed to open H5 {h5_path}: {e}") | |
| self.close() | |
| def ok(self) -> bool: | |
| return self.f is not None | |
| def _ensure_chunk(self, h5_frame: int): | |
| """Load the chunk containing h5_frame into RAM if not already there.""" | |
| if h5_frame < 0 or h5_frame >= self.n_frames: | |
| return | |
| cs = (h5_frame // self.CHUNK) * self.CHUNK | |
| if cs == self._chunk_start: | |
| return | |
| ce = min(cs + self.CHUNK, self.n_frames) | |
| cache = { | |
| "cam0": self.f["realsense/cam0/color"][cs:ce], | |
| "cam1": self.f["realsense/cam1/color"][cs:ce], | |
| "cam2": self.f["realsense/cam2/color"][cs:ce], | |
| } | |
| if self.gs_left_n > 0: | |
| ge = min(ce, self.gs_left_n) | |
| cache["gs_left"] = self.f["gelsight/left/frames"][cs:ge] if cs < self.gs_left_n else None | |
| if self.gs_right_n > 0: | |
| ge = min(ce, self.gs_right_n) | |
| cache["gs_right"] = self.f["gelsight/right/frames"][cs:ge] if cs < self.gs_right_n else None | |
| self._chunk_start = cs | |
| self._chunk_end = ce | |
| self._chunk_cache = cache | |
| def cam(self, idx: int, h5_frame: int) -> Optional[np.ndarray]: | |
| if not self.ok or h5_frame < 0 or h5_frame >= self.n_frames: | |
| return None | |
| self._ensure_chunk(h5_frame) | |
| slab = self._chunk_cache.get(f"cam{idx}") | |
| if slab is None: | |
| return None | |
| return slab[h5_frame - self._chunk_start] | |
| def gelsight(self, side: str, h5_frame: int) -> Optional[np.ndarray]: | |
| if not self.ok: | |
| return None | |
| n = self.gs_left_n if side == "left" else self.gs_right_n | |
| if n == 0: | |
| return None | |
| clamped = min(max(h5_frame, 0), n - 1) | |
| self._ensure_chunk(clamped) | |
| slab = self._chunk_cache.get(f"gs_{side}") | |
| if slab is None: | |
| return None | |
| local = clamped - self._chunk_start | |
| if local < 0 or local >= len(slab): | |
| return None | |
| return slab[local] | |
| def ot_at(self, h5_frame: int) -> dict: | |
| if not self.ok or self.optitrack is None or _viz_optitrack_at is None: | |
| return {} | |
| idx = min(max(h5_frame, 0), self.n_frames - 1) | |
| return _viz_optitrack_at(self.optitrack, float(self.timestamps[idx])) | |
| def close(self): | |
| self._chunk_cache = {} | |
| self._chunk_start = -1 | |
| if self.f is not None: | |
| try: self.f.close() | |
| except Exception: pass | |
| self.f = None | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| # Episode discovery | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| def discover_episodes(root: Path) -> list[dict]: | |
| """Walk `root`, group .pt files by source episode key '<date>/episode_NNN', | |
| and return one entry per episode with its segment paths sorted. | |
| Handles both: | |
| - mode2_v1: `<root>/<date>/episode_NNN.segment_MM.pt` | |
| - mode1_v1: `<root>/<date>/episode_NNN.pt` | |
| """ | |
| pts = sorted(root.rglob("*.pt")) | |
| if not pts: | |
| raise SystemExit(f"No .pt files under {root}") | |
| episodes: dict[str, dict] = {} | |
| for p in pts: | |
| m_seg = SEGMENT_FNAME_RE.match(p.name) | |
| m_plain = PLAIN_EPISODE_RE.match(p.name) | |
| if m_seg: | |
| ep_stem, seg_idx = m_seg.group(1), int(m_seg.group(2)) | |
| elif m_plain: | |
| ep_stem, seg_idx = m_plain.group(1), 0 | |
| else: | |
| continue | |
| date = p.parent.name | |
| key = f"{date}/{ep_stem}" | |
| episodes.setdefault(key, {"date": date, "ep_stem": ep_stem, "segs": []}) | |
| episodes[key]["segs"].append((seg_idx, p)) | |
| out = [] | |
| for key in sorted(episodes): | |
| ep = episodes[key] | |
| ep["segs"].sort(key=lambda x: x[0]) | |
| out.append({"key": key, **ep}) | |
| return out | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| # Episode-load | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| class LoadedEpisode: | |
| """One source episode, with all its segments concatenated for playback. | |
| The concat timeline only carries .pt scalar/pose tensors; image cells are | |
| served on-demand from the bound source H5 file. | |
| """ | |
| PER_FRAME_KEYS = ( | |
| "timestamps", | |
| "sensor_left_pose", "sensor_right_pose", | |
| "tactile_left_intensity", "tactile_right_intensity", | |
| "tactile_left_mixed", "tactile_right_mixed", | |
| ) | |
| def __init__(self, ep_meta: dict, h5_root: Optional[Path] = None, | |
| tactile_latency: int = 0, source: str = "pt"): | |
| self.tactile_latency = int(tactile_latency) | |
| self.source = source | |
| self.key = ep_meta["key"] | |
| self.date = ep_meta["date"] | |
| self.ep_stem = ep_meta["ep_stem"] | |
| self.segment_paths = [p for _, p in ep_meta["segs"]] | |
| _t_load = time.time() | |
| n_segs = len(self.segment_paths) | |
| print(f"[player] loading episode {self.key} " | |
| f"({n_segs} segment{'s' if n_segs > 1 else ''})...", flush=True) | |
| # mmap=True memory-maps the .pt without copying tensors into RAM. | |
| # We only touch the small scalar/pose fields below; the large | |
| # image tensors (view, tactile_*) are never read. | |
| def _load(p): | |
| try: | |
| return torch.load(str(p), weights_only=False, map_location="cpu", mmap=True) | |
| except (TypeError, ValueError, RuntimeError): | |
| return torch.load(p, weights_only=False, map_location="cpu") | |
| per_seg = [] | |
| for i, p in enumerate(self.segment_paths): | |
| _ts = time.time() | |
| per_seg.append(_load(p)) | |
| print(f"[player] [{i + 1}/{n_segs}] {p.name} " | |
| f"({p.stat().st_size / 1e6:.0f} MB, {time.time() - _ts:.2f}s)", flush=True) | |
| # Clone small tensors out of the mmap so they don't keep the file open | |
| # any longer than necessary. When source="pt" we *do* keep the mmap'd | |
| # per-segment dicts alive so `view` / `tactile_*` can be served from | |
| # the .pt on demand. | |
| cat = {} | |
| for k in self.PER_FRAME_KEYS: | |
| if k in per_seg[0]: | |
| cat[k] = torch.cat([s[k].clone() for s in per_seg], dim=0) | |
| self.per_seg_data = per_seg if source == "pt" else None | |
| bounds = [] | |
| cursor = 0 | |
| source_ep = None | |
| for i, s in enumerate(per_seg): | |
| # Use shape[0] of any per-frame tensor instead of "view" to avoid | |
| # paging in the giant image tensor under mmap. | |
| n = int(s["timestamps"].shape[0]) | |
| meta = s.get("_contact_meta", {}) | |
| if source_ep is None: | |
| source_ep = meta.get("source_episode") | |
| bounds.append({ | |
| "start_in_concat": cursor, | |
| "end_in_concat": cursor + n - 1, | |
| "seg_idx": int(meta.get("source_segment_idx", i)), | |
| "source_h5_range": meta.get("source_h5_frame_range"), | |
| "n_frames": n, | |
| }) | |
| cursor += n | |
| self.data = cat | |
| self.bounds = bounds | |
| self.n_frames = cursor | |
| self.source_episode = source_ep | |
| # Bind source H5 | |
| h5_path = resolve_h5_path(h5_root, source_ep) if source_ep else None | |
| self.h5 = H5Source(h5_path) | |
| if self.h5.ok: | |
| print(f"[player] H5 source: {h5_path} ({self.h5.n_frames} frames)", flush=True) | |
| else: | |
| print(f"[player] H5 source not available " | |
| f"(source_episode={source_ep!r}, h5_root={h5_root}) -- " | |
| f"cam/gelsight cells will be blank", flush=True) | |
| # GelSight diff references = gelsight frame at concat-frame 0 + latency | |
| # (shifted so the reference matches what build_panel will display). | |
| self.gs_ref_L = None | |
| self.gs_ref_R = None | |
| ref_idx = max(0, min(self.n_frames - 1, self.tactile_latency)) | |
| if source == "pt": | |
| self.gs_ref_L = self.pt_tactile("left", ref_idx) | |
| self.gs_ref_R = self.pt_tactile("right", ref_idx) | |
| elif self.h5.ok: | |
| r0 = bounds[0]["source_h5_range"] | |
| ref_h5_frame = (r0[0] if r0 else 0) + self.tactile_latency | |
| self.gs_ref_L = self.h5.gelsight("left", ref_h5_frame) | |
| self.gs_ref_R = self.h5.gelsight("right", ref_h5_frame) | |
| print(f"[player] total {self.n_frames} frames ({self.n_frames / 30.0:.1f}s) " | |
| f"[ready in {time.time() - _t_load:.2f}s]", flush=True) | |
| def segment_at(self, frame_idx: int) -> dict: | |
| for b in self.bounds: | |
| if b["start_in_concat"] <= frame_idx <= b["end_in_concat"]: | |
| return b | |
| return self.bounds[-1] | |
| def is_segment_start(self, frame_idx: int) -> bool: | |
| return any(frame_idx == b["start_in_concat"] for b in self.bounds[1:]) | |
| def h5_frame_for(self, frame_idx: int) -> Optional[int]: | |
| seg = self.segment_at(frame_idx) | |
| r = seg["source_h5_range"] | |
| if r is None: | |
| return None | |
| return r[0] + (frame_idx - seg["start_in_concat"]) | |
| def _seg_local(self, frame_idx: int): | |
| """Map concat frame_idx -> (segment index, local index inside segment).""" | |
| for i, b in enumerate(self.bounds): | |
| if b["start_in_concat"] <= frame_idx <= b["end_in_concat"]: | |
| return i, frame_idx - b["start_in_concat"] | |
| last = len(self.bounds) - 1 | |
| return last, frame_idx - self.bounds[last]["start_in_concat"] | |
| def _pt_image(self, key: str, frame_idx: int) -> Optional[np.ndarray]: | |
| """Read an image tensor (shape (T, 3, H, W) uint8) from the per-segment | |
| .pt mmap'd dicts, return BGR HxWx3 uint8 or None. | |
| """ | |
| if self.per_seg_data is None or frame_idx < 0 or frame_idx >= self.n_frames: | |
| return None | |
| seg_i, local = self._seg_local(frame_idx) | |
| d = self.per_seg_data[seg_i] | |
| if key not in d: | |
| return None | |
| chw = d[key][local] | |
| rgb = chw.permute(1, 2, 0).numpy() | |
| return np.ascontiguousarray(rgb[..., ::-1]) # BGR for OpenCV | |
| def pt_view(self, frame_idx: int) -> Optional[np.ndarray]: | |
| return self._pt_image("view", frame_idx) | |
| def pt_tactile(self, side: str, frame_idx: int) -> Optional[np.ndarray]: | |
| return self._pt_image(f"tactile_{side}", frame_idx) | |
| def close(self): | |
| self.h5.close() | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| # Panel renderer (this viewer's own 1280x480 grid) | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| def _make_ot_panel(ot_poses, t_idx, t_sec, w, h): | |
| panel = np.zeros((h, w, 3), np.uint8) | |
| cv2.putText(panel, "OptiTrack (this frame)", (8, 22), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.55, (200, 200, 200), 1, cv2.LINE_AA) | |
| cv2.line(panel, (8, 30), (w - 8, 30), (60, 60, 60), 1) | |
| y = 56 | |
| for name in ("sensor_left", "sensor_right"): | |
| color = TRACKER_COLORS[name] | |
| cv2.putText(panel, name, (8, y), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.45, color, 1, cv2.LINE_AA) | |
| y += 18 | |
| pose = ot_poses.get(name) if isinstance(ot_poses, dict) else None | |
| if pose is None: | |
| cv2.putText(panel, " no data", (8, y), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.4, (100, 100, 100), 1, cv2.LINE_AA) | |
| y += 36 | |
| continue | |
| _, xyz_quat = pose | |
| x_m, y_m, z_m = xyz_quat[:3] | |
| qx, qy, qz, qw = xyz_quat[3:] | |
| cv2.putText(panel, f" x={x_m:+.3f} y={y_m:+.3f} z={z_m:+.3f}", (8, y), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.38, (220, 220, 220), 1, cv2.LINE_AA) | |
| y += 16 | |
| cv2.putText(panel, f" qx={qx:+.2f} qy={qy:+.2f}", (8, y), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.38, (160, 160, 160), 1, cv2.LINE_AA) | |
| y += 16 | |
| cv2.putText(panel, f" qz={qz:+.2f} qw={qw:+.2f}", (8, y), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.38, (160, 160, 160), 1, cv2.LINE_AA) | |
| y += 24 | |
| cv2.putText(panel, f"t = {t_sec:.2f} s (concat frame {t_idx})", | |
| (8, h - 14), cv2.FONT_HERSHEY_SIMPLEX, 0.45, (200, 200, 200), 1, cv2.LINE_AA) | |
| return panel | |
| def _make_controls_panel(w, h, paused, speed, ep_idx, n_eps, tactile_latency=0): | |
| panel = np.zeros((h, w, 3), np.uint8) | |
| cv2.putText(panel, "Controls", (10, 20), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.5, (200, 200, 200), 1, cv2.LINE_AA) | |
| cv2.line(panel, (10, 26), (w - 10, 26), (80, 80, 80), 1) | |
| keys = [ | |
| ("SPACE", "pause / resume"), | |
| ("-> / d", "next frame"), | |
| ("<- / a", "prev frame"), | |
| ("1..6", "speed 1x/2x/5x/10x/25x/50x"), | |
| ("n / p", "next / prev episode"), | |
| ("r", "reset gel-diff ref"), | |
| ("[ / ]", "tactile lat -/+ 1"), | |
| ("q", "quit"), | |
| ] | |
| y = 44 | |
| for key, desc in keys: | |
| highlight = (key == "SPACE") | |
| key_color = (0, 220, 255) if highlight else (140, 200, 140) | |
| desc_color = (220, 220, 220) if highlight else (160, 160, 160) | |
| cv2.putText(panel, f"[{key}]", (10, y), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.4, key_color, 1, cv2.LINE_AA) | |
| cv2.putText(panel, desc, (105, y), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.4, desc_color, 1, cv2.LINE_AA) | |
| y += 18 | |
| state_text = "|| PAUSED" if paused else "> PLAYING" | |
| state_color = (0, 140, 255) if paused else (0, 220, 80) | |
| cv2.putText(panel, state_text, (10, h - 44), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.5, state_color, 2, cv2.LINE_AA) | |
| cv2.putText(panel, f"speed: {speed}x ep {ep_idx + 1}/{n_eps}", | |
| (10, h - 26), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.4, (180, 180, 180), 1, cv2.LINE_AA) | |
| cv2.putText(panel, f"tactile_latency: {tactile_latency:+d}", | |
| (10, h - 8), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.42, (0, 220, 255), 1, cv2.LINE_AA) | |
| return panel | |
| def _rs_thumb(img, label=None): | |
| out = cv2.resize(img, (RS_THUMB_W, RS_THUMB_H)) | |
| if label: | |
| cv2.putText(out, label, (6, 16), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.45, (220, 220, 220), 1, cv2.LINE_AA) | |
| return out | |
| def _gs_thumb(img, label=None): | |
| out = cv2.resize(img, (GS_THUMB_W, GS_THUMB_H)) | |
| if label: | |
| cv2.putText(out, label, (6, 16), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.42, (220, 220, 220), 1, cv2.LINE_AA) | |
| return out | |
| def _gs_diff_thumb(frame_bgr, ref_bgr, label=None): | |
| diff = np.clip(frame_bgr.astype(np.int16) - ref_bgr.astype(np.int16) + 128, 0, 255).astype(np.uint8) | |
| out = cv2.resize(diff, (GS_THUMB_W, GS_THUMB_H)) | |
| if label: | |
| cv2.putText(out, label, (6, 16), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.42, (220, 220, 220), 1, cv2.LINE_AA) | |
| return out | |
| def build_panel(ep: LoadedEpisode, frame_idx: int, | |
| gs_ref_L, gs_ref_R, | |
| paused: bool, speed: int, | |
| ep_idx: int, n_eps: int, | |
| project_cams: Optional[list] = None, | |
| gel_center_left: Optional[np.ndarray] = None, | |
| gel_center_right: Optional[np.ndarray] = None, | |
| tactile_latency: int = 0): | |
| source = ep.source | |
| h5_frame = ep.h5_frame_for(frame_idx) | |
| gs_h5_frame = (h5_frame + tactile_latency) if h5_frame is not None else None | |
| pt_tac_frame = frame_idx + tactile_latency | |
| if pt_tac_frame < 0 or pt_tac_frame >= ep.n_frames: | |
| pt_tac_frame = None | |
| t_sec = float(ep.data["timestamps"][frame_idx] - ep.data["timestamps"][0]) | |
| # Row 1: 3 RealSense cams (left, middle, right) + OptiTrack | |
| cam_thumbs = [] | |
| cam_labels = ["left cam", "middle cam", "right cam"] | |
| pt_view_bgr = ep.pt_view(frame_idx) if source == "pt" else None | |
| for slot, label in zip(DISPLAY_ORDER, cam_labels): | |
| if source == "pt": | |
| # Only cam0 lives in the .pt; fill its slot (DISPLAY_ORDER maps it | |
| # to "right cam"), placeholder the others. | |
| if slot == 0 and pt_view_bgr is not None: | |
| cam_thumbs.append(_rs_thumb(pt_view_bgr, f"{label} (pt:view)")) | |
| else: | |
| cam_thumbs.append(_missing_cell(RS_THUMB_W, RS_THUMB_H, | |
| f"{label}: pt has cam0 only")) | |
| else: | |
| img = ep.h5.cam(slot, h5_frame) if h5_frame is not None else None | |
| if img is None: | |
| cam_thumbs.append(_missing_cell(RS_THUMB_W, RS_THUMB_H, f"{label}: no H5")) | |
| else: | |
| cam_thumbs.append(_rs_thumb(img, label)) | |
| # OT poses always come from H5 if available, regardless of image source. | |
| ot_poses = ep.h5.ot_at(h5_frame) if h5_frame is not None else {} | |
| ot_panel = _make_ot_panel(ot_poses, frame_idx, t_sec, RS_THUMB_W, RS_THUMB_H) | |
| row1 = np.hstack(cam_thumbs + [ot_panel]) | |
| # Row 2: GelSight raw + diff (L, R) + Controls. Gelsight reads use | |
| # `frame + tactile_latency` so a measured capture lag is compensated. | |
| if source == "pt": | |
| gs_L = ep.pt_tactile("left", pt_tac_frame) if pt_tac_frame is not None else None | |
| gs_R = ep.pt_tactile("right", pt_tac_frame) if pt_tac_frame is not None else None | |
| miss_tag = "no pt" | |
| else: | |
| gs_L = ep.h5.gelsight("left", gs_h5_frame) if gs_h5_frame is not None else None | |
| gs_R = ep.h5.gelsight("right", gs_h5_frame) if gs_h5_frame is not None else None | |
| miss_tag = "no H5" | |
| if gs_L is None: | |
| gs_L_raw = _missing_cell(GS_THUMB_W, GS_THUMB_H, f"tac_L: {miss_tag}") | |
| gs_L_dif = _missing_cell(GS_THUMB_W, GS_THUMB_H, f"tac_L diff: {miss_tag}") | |
| else: | |
| gs_L_raw = _gs_thumb(gs_L, "tactile_left") | |
| ref_L = gs_ref_L if gs_ref_L is not None else gs_L | |
| gs_L_dif = _gs_diff_thumb(gs_L, ref_L, "tac_L diff") | |
| if gs_R is None: | |
| gs_R_raw = _missing_cell(GS_THUMB_W, GS_THUMB_H, f"tac_R: {miss_tag}") | |
| gs_R_dif = _missing_cell(GS_THUMB_W, GS_THUMB_H, f"tac_R diff: {miss_tag}") | |
| else: | |
| gs_R_raw = _gs_thumb(gs_R, "tactile_right") | |
| ref_R = gs_ref_R if gs_ref_R is not None else gs_R | |
| gs_R_dif = _gs_diff_thumb(gs_R, ref_R, "tac_R diff") | |
| controls = _make_controls_panel(CONTROLS_W, CONTROLS_H, paused, speed, ep_idx, n_eps, | |
| tactile_latency=tactile_latency) | |
| row2 = np.hstack([gs_L_raw, gs_L_dif, gs_R_raw, gs_R_dif, controls]) | |
| panel = np.vstack([row1, row2]) | |
| # GelSight-center + axes projection on every cam thumb (matches visualize.py) | |
| if (project_cams and gel_center_left is not None and gel_center_right is not None | |
| and ot_poses and _viz_draw_projection_overlay is not None): | |
| _viz_draw_projection_overlay( | |
| panel, ot_poses, project_cams, gel_center_left, gel_center_right, | |
| ) | |
| # Top status bar (visualize.py style: thicker cyan text) | |
| cv2.rectangle(panel, (0, 0), (PANEL_W, 22), (30, 30, 30), -1) | |
| state = "PAUSED" if paused else "PLAYING" | |
| seg = ep.segment_at(frame_idx) | |
| h5r = seg["source_h5_range"] | |
| seg_label = f"seg {seg['seg_idx']:02d}" | |
| if h5r: | |
| seg_label += f" H5[{h5r[0]}..{h5r[1]}]" | |
| if h5_frame is not None: | |
| seg_label += f" @{h5_frame}" | |
| status = (f"[{state}] ep {ep_idx + 1}/{n_eps} {ep.key} | " | |
| f"frame {frame_idx + 1}/{ep.n_frames} | t={t_sec:.2f}s | " | |
| f"{seg_label} | {speed}x | tac_lat={tactile_latency:+d} | src={source}") | |
| cv2.putText(panel, status, (10, 16), | |
| cv2.FONT_HERSHEY_SIMPLEX, 0.5, (0, 200, 255), 1, cv2.LINE_AA) | |
| # Segment-cut flash: red border for the first 2 frames of a non-first segment | |
| if ep.is_segment_start(frame_idx): | |
| cv2.rectangle(panel, (0, 22), (PANEL_W - 1, PANEL_H - 1), (0, 0, 220), 3) | |
| return panel | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| # Main | |
| # ────────────────────────────────────────────────────────────────────────────── | |
| def main(): | |
| ap = argparse.ArgumentParser(description="Interactive React .pt player (visualize.py-style layout).") | |
| ap.add_argument("path", help="A single .pt file OR a directory of episodes/segments.") | |
| ap.add_argument("--save_video", default=None, | |
| help="When `path` is a single .pt: write that one episode as MP4 here.") | |
| ap.add_argument("--save_video_dir", default=None, | |
| help="When `path` is a directory: write one MP4 per episode into this dir.") | |
| ap.add_argument("--fps", type=float, default=30.0) | |
| ap.add_argument("--h5_root", default=None, | |
| help="Root directory of source H5 files (e.g. <twm>/data/<task>). " | |
| "If omitted, inferred by replacing `processed/<mode>` with `data` in `path`.") | |
| ap.add_argument("--source", choices=("pt", "h5"), default="pt", | |
| help="Where to read image cells from. 'pt' = read view/tactile_* from " | |
| "the .pt segment files (default, ~1000x faster, but the .pt only " | |
| "carries cam0 + both gelsights at 128x128). 'h5' = read full-res " | |
| "480x640 frames from the source H5 (original behavior).") | |
| # ── GelSight-center projection overlay (mirrors visualize.py) ──────────── | |
| ap.add_argument("--cam_calib", type=str, nargs="+", default=None, | |
| help="Path(s) to T_mocap_to_cam_<name>.json (one per " | |
| "camera); default: the input's task epoch via calib_epoch.") | |
| ap.add_argument("--gel_left", type=str, default=None, | |
| help="Path to T_gel_to_rigid_left.json (default: task epoch).") | |
| ap.add_argument("--gel_right", type=str, default=None, | |
| help="Path to T_gel_to_rigid_right.json (default: task epoch).") | |
| ap.add_argument("--no_projection", action="store_true", | |
| help="Skip the GelSight-center projection overlay " | |
| "(and calibration loading). Default: overlay ON.") | |
| ap.add_argument("--tactile_latency", type=int, default=3, | |
| help="Frames to advance gelsight reads (h5_frame + N) to " | |
| "compensate for tactile capture lag. Default: 3.") | |
| args = ap.parse_args() | |
| if not args.no_projection and None in (args.gel_left, args.gel_right, | |
| args.cam_calib): | |
| from twm.calib_epoch import calib_dir_for_path | |
| cdir = calib_dir_for_path(args.path) # raises rather than guessing | |
| print(f"calibration epoch: {cdir.name} (from input path)") | |
| if args.cam_calib is None: | |
| args.cam_calib = [str(cdir / f"T_mocap_to_cam_{n}.json") | |
| for n in ("middle", "left", "right")] | |
| args.gel_left = args.gel_left or str(cdir / "T_gel_to_rigid_left.json") | |
| args.gel_right = args.gel_right or str(cdir / "T_gel_to_rigid_right.json") | |
| in_path = Path(args.path) | |
| # Path-stem expansion: if the user typed an incomplete path like | |
| # `.../2026-05-11/episode_005` (no .pt suffix, possibly no .segment_NN), | |
| # treat it as an episode-stem filter. We load the parent date folder so | |
| # N/P navigation still works, then start playback at the matching episode. | |
| start_episode_key: Optional[str] = None | |
| if not in_path.exists(): | |
| parent = in_path.parent | |
| stem = in_path.name | |
| if parent.is_dir() and stem: | |
| matches = sorted(parent.glob(f"{stem}*.pt")) | |
| # Require either an exact-name match or segment_NN siblings | |
| matches = [p for p in matches | |
| if PLAIN_EPISODE_RE.match(p.name) and p.stem == stem | |
| or (SEGMENT_FNAME_RE.match(p.name) | |
| and SEGMENT_FNAME_RE.match(p.name).group(1) == stem)] | |
| if matches: | |
| start_episode_key = f"{parent.name}/{stem}" | |
| in_path = parent # discover the whole date folder | |
| print(f"[player] interpreting '{args.path}' as episode-stem; " | |
| f"will start at {start_episode_key}") | |
| if not in_path.exists(): | |
| print(f"Not found: {args.path}", file=sys.stderr); sys.exit(1) | |
| if in_path.is_file(): | |
| parent_root = in_path.parent.parent | |
| episodes = discover_episodes(parent_root) | |
| target_path = in_path.resolve() | |
| start_idx = 0 | |
| for i, ep_meta in enumerate(episodes): | |
| if any(p.resolve() == target_path for _, p in ep_meta["segs"]): | |
| start_idx = i; break | |
| else: | |
| episodes = discover_episodes(in_path) | |
| start_idx = 0 | |
| if start_episode_key is not None: | |
| for i, ep_meta in enumerate(episodes): | |
| if ep_meta["key"] == start_episode_key: | |
| start_idx = i; break | |
| else: | |
| print(f"[player] WARN: stem '{start_episode_key}' not found in discovered " | |
| f"episodes; starting at the first one") | |
| print(f"[player] discovered {len(episodes)} episode(s) under {in_path}") | |
| # Resolve H5 root | |
| h5_root: Optional[Path] = None | |
| if args.h5_root: | |
| h5_root = Path(args.h5_root) | |
| else: | |
| h5_root = infer_h5_root(in_path) | |
| if h5_root: | |
| ok = "ok" if h5_root.exists() else "missing" | |
| print(f"[player] H5 source root: {h5_root} ({ok})") | |
| else: | |
| print("[player] H5 source root not specified and could not be inferred -- " | |
| "RealSense + GelSight cells will be blank") | |
| # ── Load projection calibrations (mirrors visualize.py) ────────────────── | |
| project_cams: list = [] | |
| gel_center_left = None | |
| gel_center_right = None | |
| if args.no_projection or _viz_load_calibrations is None: | |
| if args.no_projection: | |
| print("[player] Projection overlay: OFF (--no_projection)") | |
| else: | |
| print("[player] Projection overlay: OFF (twm.viz unavailable)") | |
| else: | |
| try: | |
| cam_calibs, gel_center_left, gel_center_right = \ | |
| _viz_load_calibrations(args.cam_calib, args.gel_left, args.gel_right) | |
| for calib in cam_calibs: | |
| serial = calib["camera_serial"] | |
| try: | |
| c_idx = REALSENSE_SERIALS.index(serial) | |
| except ValueError: | |
| print(f"[player] WARN: camera serial {serial} not in REALSENSE_SERIALS, skipping") | |
| continue | |
| project_cams.append({ | |
| "index": c_idx, | |
| "T_mocap_to_cam": calib["T_mocap_to_cam"], | |
| "intrinsics": calib["intrinsics"], | |
| "serial": serial, | |
| "rmse": calib["rmse_mm"], | |
| }) | |
| if not project_cams: | |
| print("[player] Projection overlay: OFF (no usable camera calibrations found -- " | |
| "check --cam_calib paths)") | |
| else: | |
| print(f"[player] Projection overlay: ON ({len(project_cams)} camera(s))") | |
| for pc in project_cams: | |
| print(f" cam{pc['index']} serial={pc['serial']} RMSE={pc['rmse']:.2f} mm") | |
| if gel_center_left is not None and gel_center_right is not None: | |
| print(f" gel_L center (rigid): " | |
| f"[{gel_center_left[0]:.2f}, {gel_center_left[1]:.2f}, {gel_center_left[2]:.2f}] mm") | |
| print(f" gel_R center (rigid): " | |
| f"[{gel_center_right[0]:.2f}, {gel_center_right[1]:.2f}, {gel_center_right[2]:.2f}] mm") | |
| except Exception as e: | |
| print(f"[player] WARN: calibration loading failed -- projection overlay disabled ({e})") | |
| project_cams = [] | |
| gel_center_left = None | |
| gel_center_right = None | |
| headless_dir = Path(args.save_video_dir) if args.save_video_dir else None | |
| headless_single = args.save_video | |
| if headless_single and len(episodes) > 1 and in_path.is_dir(): | |
| print("--save_video accepts a single output path; for a directory pass --save_video_dir instead.", | |
| file=sys.stderr) | |
| sys.exit(1) | |
| headless = headless_single is not None or headless_dir is not None | |
| if headless: | |
| if headless_dir: | |
| headless_dir.mkdir(parents=True, exist_ok=True) | |
| for ep_idx in range(start_idx, len(episodes)): | |
| ep = LoadedEpisode(episodes[ep_idx], h5_root=h5_root, | |
| tactile_latency=args.tactile_latency, | |
| source=args.source) | |
| try: | |
| out_path = (Path(headless_single) | |
| if headless_single else | |
| (headless_dir / f"{ep.date}_{ep.ep_stem}.mp4")) | |
| fourcc = cv2.VideoWriter_fourcc(*"mp4v") | |
| writer = cv2.VideoWriter(str(out_path), fourcc, args.fps, (PANEL_W, PANEL_H)) | |
| print(f" -> {out_path}") | |
| for f in range(ep.n_frames): | |
| panel = build_panel(ep, f, ep.gs_ref_L, ep.gs_ref_R, | |
| paused=False, speed=1, | |
| ep_idx=ep_idx, n_eps=len(episodes), | |
| project_cams=project_cams, | |
| gel_center_left=gel_center_left, | |
| gel_center_right=gel_center_right, | |
| tactile_latency=args.tactile_latency) | |
| writer.write(panel) | |
| writer.release() | |
| finally: | |
| ep.close() | |
| if headless_single: | |
| break | |
| return | |
| # Interactive | |
| paused, speed = False, 1 | |
| SPEEDS = {ord('1'): 1, ord('2'): 2, ord('3'): 5, | |
| ord('4'): 10, ord('5'): 25, ord('6'): 50} | |
| tactile_latency = int(args.tactile_latency) # mutable; adjustable via [ / ] | |
| ep_idx = start_idx | |
| while 0 <= ep_idx < len(episodes): | |
| ep = LoadedEpisode(episodes[ep_idx], h5_root=h5_root, | |
| tactile_latency=tactile_latency, | |
| source=args.source) | |
| action = "stay" | |
| try: | |
| WIN = "React .pt player" | |
| cv2.namedWindow(WIN, cv2.WINDOW_AUTOSIZE) | |
| cv2.createTrackbar("Frame", WIN, 0, max(1, ep.n_frames - 1), lambda v: None) | |
| gs_ref_L, gs_ref_R = ep.gs_ref_L, ep.gs_ref_R | |
| frame_idx = 0 | |
| last_drawn = -1 | |
| while True: | |
| frame_idx = max(0, min(frame_idx, ep.n_frames - 1)) | |
| pos = cv2.getTrackbarPos("Frame", WIN) | |
| if pos != frame_idx and pos != last_drawn: | |
| frame_idx = pos; paused = True | |
| panel = build_panel(ep, frame_idx, | |
| gs_ref_L, gs_ref_R, | |
| paused=paused, speed=speed, | |
| ep_idx=ep_idx, n_eps=len(episodes), | |
| project_cams=project_cams, | |
| gel_center_left=gel_center_left, | |
| gel_center_right=gel_center_right, | |
| tactile_latency=tactile_latency) | |
| cv2.imshow(WIN, panel) | |
| if cv2.getTrackbarPos("Frame", WIN) != frame_idx: | |
| cv2.setTrackbarPos("Frame", WIN, frame_idx) | |
| last_drawn = frame_idx | |
| key = cv2.waitKey(1) & 0xFF | |
| if key == ord('q'): action = "quit"; break | |
| elif key == ord(' '): paused = not paused | |
| elif key in (81, ord('a')): paused = True; frame_idx -= 1 | |
| elif key in (83, ord('d')): paused = True; frame_idx += 1 | |
| elif key in SPEEDS: speed = SPEEDS[key] | |
| elif key == ord('r'): | |
| if ep.source == "pt": | |
| shifted = max(0, min(ep.n_frames - 1, frame_idx + tactile_latency)) | |
| new_L = ep.pt_tactile("left", shifted) | |
| new_R = ep.pt_tactile("right", shifted) | |
| if new_L is not None: gs_ref_L = new_L | |
| if new_R is not None: gs_ref_R = new_R | |
| print(f" gel-diff ref reset to concat frame {frame_idx} " | |
| f"(pt idx {shifted}, latency {tactile_latency:+d})") | |
| else: | |
| h5_frame = ep.h5_frame_for(frame_idx) | |
| if h5_frame is not None and ep.h5.ok: | |
| shifted = h5_frame + tactile_latency | |
| gs_ref_L = ep.h5.gelsight("left", shifted) | |
| gs_ref_R = ep.h5.gelsight("right", shifted) | |
| print(f" gel-diff ref reset to concat frame {frame_idx} " | |
| f"(H5 frame {h5_frame}, gs idx {shifted})") | |
| elif key == ord('['): | |
| tactile_latency -= 1 | |
| print(f" tactile_latency = {tactile_latency:+d}") | |
| elif key == ord(']'): | |
| tactile_latency += 1 | |
| print(f" tactile_latency = {tactile_latency:+d}") | |
| elif key == ord('n'): action = "next"; break | |
| elif key == ord('p'): action = "prev"; break | |
| if not paused: | |
| frame_idx += speed | |
| if frame_idx >= ep.n_frames: | |
| print(f"End of episode {ep.key}.") | |
| paused = True | |
| frame_idx = ep.n_frames - 1 | |
| time.sleep(max(0.0, 1.0 / (args.fps * speed) - 0.001)) | |
| cv2.destroyAllWindows() | |
| finally: | |
| ep.close() | |
| if action == "quit": return | |
| if action == "next": | |
| new_idx = min(ep_idx + 1, len(episodes) - 1) | |
| if new_idx == ep_idx: | |
| print("Already at last episode.") | |
| ep_idx = new_idx | |
| elif action == "prev": | |
| new_idx = max(ep_idx - 1, 0) | |
| if new_idx == ep_idx: | |
| print("Already at first episode.") | |
| ep_idx = new_idx | |
| else: | |
| paused = True | |
| if __name__ == "__main__": | |
| main() | |