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Usage:
python scripts/make_card.py <workflow.json> [output.png]
Reads the LTX Director run/base context from the workflow JSON, paints a
self-contained card matching the look of
docs/investigations/experiments/combined-card.html, and writes it to PNG.
PNG can then be loaded into a ComfyUI workflow via a LoadImage node and
composited alongside the rendered video, or dropped straight into an NLE.
Tested against LTX_Director_4k_v0[1-3].json.
"""
from __future__ import annotations
import json
import os
import re
import sys
import time
from pathlib import Path
from PIL import Image, ImageDraw, ImageFont
def _load_dotenv(env_path: Path) -> None:
"""Minimal `.env` loader. Mirrors scripts/sync_to_dev.py — no python-dotenv dep."""
if not env_path.exists():
return
for line in env_path.read_text(encoding="utf-8").splitlines():
line = line.strip()
if not line or line.startswith("#") or "=" not in line:
continue
key, value = line.split("=", 1)
os.environ.setdefault(key.strip(), value.strip().strip('"').strip("'"))
def _find_dotenv() -> Path | None:
"""Find .env in the current worktree first, then fall back to the main repo
root (resolved via git's common-dir) when running from a worktree.
Returns the first existing .env found, or None."""
repo_root = Path(__file__).resolve().parent.parent
direct = repo_root / ".env"
if direct.exists():
return direct
# Try the main repo root via git's common-dir.
git_marker = repo_root / ".git"
common_dir = None
if git_marker.is_file():
# Worktree marker file contains: "gitdir: <path-to>/<main>/.git/worktrees/<name>"
try:
content = git_marker.read_text(encoding="utf-8").strip()
if content.startswith("gitdir:"):
gitdir = Path(content.split(":", 1)[1].strip())
# walk up from .git/worktrees/<name>/ to find <main repo>/
if "worktrees" in gitdir.parts:
idx = gitdir.parts.index("worktrees")
common_dir = Path(*gitdir.parts[:idx]) # ends at <main>/.git
main_root = common_dir.parent
candidate = main_root / ".env"
if candidate.exists():
return candidate
except Exception:
pass
return None
# Resolve repo root and load .env once on import — same pattern as sync_to_dev.py.
_REPO_ROOT = Path(__file__).resolve().parent.parent
_env_file = _find_dotenv()
if _env_file is not None:
_load_dotenv(_env_file)
# ---------- palette + geometry (kept in sync with combined-card.html) ----------
W = 540 # slim vertical card — sits beside a video
PAD_X = 28
PAD_TOP = 28
PAD_BOTTOM = 28
# Palette mirrored from docs/designs/snapshot-dialogs.html
BG_OUTER = (14, 14, 14) # --bg
BG_CARD = (21, 21, 21) # --panel
BG_SECTION = (26, 26, 31) # --panel-soft (each section gets this)
BORDER = (48, 47, 47) # --border
BORDER_STR = (79, 79, 84) # --border-strong
TEXT = (249, 250, 251) # --text
MUTED = (143, 149, 156) # --muted
DIM = (200, 204, 209) # close to --text but slightly down
HEADER_GREY = (201, 204, 209) # snapshot dialog H2 colour
ACCENT_RUN = (255, 184, 77) # --amber (PHASE 1 / changeable)
ACCENT_BASE = (109, 180, 255) # --sky (frozen base)
ACCENT_OUT = (123, 207, 128) # --green (post-render)
NOTE_BG = (12, 12, 12)
RADIUS = 14
SECTION_RADIUS = 8
# ---------- font loading ----------
WIN_FONTS = Path(r"C:/Windows/Fonts")
def load_font(filenames: list[str], size: int) -> ImageFont.FreeTypeFont:
for fn in filenames:
for p in (WIN_FONTS / fn, Path("/Library/Fonts") / fn, Path("/usr/share/fonts") / fn):
if p.exists():
return ImageFont.truetype(str(p), size)
return ImageFont.load_default()
F_TITLE = load_font(["segoeuib.ttf", "Arial Bold.ttf"], 28)
F_SUB = load_font(["segoeui.ttf", "Arial.ttf"], 17)
F_H2 = load_font(["segoeuib.ttf", "Arial Bold.ttf"], 16)
F_TAG = load_font(["segoeuib.ttf", "Arial Bold.ttf"], 12) # FEEDBACK / OUTCOME sub-labels
F_SECTION = load_font(["segoeuib.ttf", "Arial Bold.ttf"], 17) # main section titles (PHASE 1 etc.)
F_MONO = load_font(["consola.ttf", "Menlo.ttc", "DejaVuSansMono.ttf"], 19)
F_NOTE = load_font(["segoeuii.ttf", "Arial Italic.ttf"], 18)
# ---------- workflow extraction ----------
VIDEO_EXTS = (".mp4", ".mov", ".mkv", ".webm", ".avi")
LOG_NAME = "iterations.md"
AI_SUBDIR = "_AI" # AI-managed artifacts live here, separate from user content
CARD_NAME = "card.png"
# Files containing this marker (case-insensitive) in their basename are
# post-loop outputs (the card already composited with the video) — skip
# them in auto-discovery so the script never picks its own output as input.
SKIP_MARKER = "loop"
def _is_loop_output(p: Path) -> bool:
return SKIP_MARKER in p.stem.lower()
LOG_HEADER = (
"# LTX Director — iterations log\n\n"
"Append-only. Newest at bottom. Generated by `scripts/make_card.py`.\n\n"
"| # | When | Run | Format | Denoise | JSON | Video | Δ from base | Feedback |\n"
"| - | ---- | --- | ------ | ------- | ---- | ----- | ----------- | -------- |\n"
)
def log_iteration(folder: Path, json_path: Path, data: dict) -> None:
"""Append one row to <folder>/_AI/iterations.md. Dedupe by (json filename + json mtime).
Markdown table — newest at bottom. Creates the file + the _AI subdir on first call."""
ai_dir = folder / AI_SUBDIR
ai_dir.mkdir(exist_ok=True)
log_path = ai_dir / LOG_NAME
json_mtime = json_path.stat().st_mtime
json_mtime_iso = time.strftime("%Y-%m-%d %H:%M", time.localtime(json_mtime))
fingerprint = f"{json_path.name}@{int(json_mtime)}"
existing = ""
last_fp = ""
next_idx = 1
if log_path.exists():
existing = log_path.read_text(encoding="utf-8")
rows = [ln for ln in existing.splitlines()
if ln.startswith("| ") and not ln.startswith("| -")
and not ln.startswith("| #")]
next_idx = len(rows) + 1
if rows:
# last row's hidden HTML-comment fingerprint, if present
tail_comment_re = re.compile(r"<!--fp:([^>]+)-->")
for ln in reversed(rows):
m = tail_comment_re.search(ln)
if m:
last_fp = m.group(1)
break
if last_fp == fingerprint:
# Same JSON, same mtime — already logged. Skip.
return
def trunc(s, n):
s = (s or "").replace("\n", " ").strip()
return (s[: n - 1] + "…") if len(s) > n else s
row = (
f"| {next_idx} "
f"| {json_mtime_iso} "
f"| {data.get('run_label', '?')} "
f"| {data.get('format', '?')} "
f"| {data.get('denoise', '?')} "
f"| `{json_path.name}` "
f"| `{data.get('render_output', '—')}` "
f"| {trunc(data.get('note', ''), 40)} "
f"| {trunc(data.get('feedback', ''), 40)} "
f"|<!--fp:{fingerprint}-->\n"
)
if not existing:
log_path.write_text(LOG_HEADER + row, encoding="utf-8")
else:
with log_path.open("a", encoding="utf-8") as f:
f.write(row)
def load_workflow(path: Path) -> dict:
"""Load a ComfyUI workflow JSON. Accepts two formats:
1. raw editor JSON (top-level 'nodes' + 'links' keys), or
2. metadata bundle ({"CreationTime": ..., "prompt": ..., "workflow": {...}})
— the format ComfyUI writes alongside saved outputs.
"""
raw = json.loads(path.read_text(encoding="utf-8"))
if "nodes" in raw:
return raw
if "workflow" in raw and isinstance(raw["workflow"], dict) and "nodes" in raw["workflow"]:
return raw["workflow"]
raise SystemExit(f"Unrecognised JSON format in {path} — no 'nodes' key found.")
def find_newest_video(folder: Path):
"""Return (Path, mtime) for the newest video file in folder, or (None, None).
Skips files marked as loop outputs (see SKIP_MARKER)."""
candidates = [p for p in folder.iterdir()
if p.is_file()
and p.suffix.lower() in VIDEO_EXTS
and not _is_loop_output(p)]
if not candidates:
return None, None
best = max(candidates, key=lambda p: p.stat().st_mtime)
return best, best.stat().st_mtime
def find_comfyui_log_path():
"""Resolve the ComfyUI log path. Priority:
1. `KOLOOK_COMFYUI_LOG` env var (explicit override).
2. Inferred from `KOLOOK_COMFYUI_DEV_PATH` — the dev path points at
`<comfyui-root>/custom_nodes/<koolook>`, so the log sits at
`<comfyui-root>/user/comfyui.log`.
Returns Path or None."""
override = os.environ.get("KOLOOK_COMFYUI_LOG", "").strip()
if override:
p = Path(override)
return p if p.exists() else None
dev = os.environ.get("KOLOOK_COMFYUI_DEV_PATH", "").strip()
if not dev:
return None
candidate = Path(dev).parent.parent / "user" / "comfyui.log"
return candidate if candidate.exists() else None
_LOG_DUR_PATTERNS = [
# "Prompt executed in 18.21 seconds"
(re.compile(r"Prompt executed in ([\d.]+) seconds"),
lambda m: float(m.group(1))),
# "Prompt executed in 00:10:33"
(re.compile(r"Prompt executed in (\d+):(\d+):(\d+)"),
lambda m: int(m.group(1)) * 3600 + int(m.group(2)) * 60 + int(m.group(3))),
]
def render_time_from_log(log_path: Path):
"""Return the duration of the most recent render that actually wrote
frames. Locates the latest `saving images: 100%` line in the Comfy log
and pairs it with the next `Prompt executed in X` line — that's the
completed EXR-producing render. Skips trivial follow-up prompts that
happen between the render finishing and the user invoking /make-card.
Returns duration in seconds, or None."""
if not log_path or not log_path.exists():
return None
text = log_path.read_text(encoding="utf-8", errors="replace")
saves = list(re.finditer(r"saving images: 100%", text))
if not saves:
return None
after = saves[-1].end()
candidates = []
for pat, to_seconds in _LOG_DUR_PATTERNS:
m = pat.search(text, after)
if m:
candidates.append((m.start(), to_seconds(m)))
if not candidates:
return None
# Take the first 'Prompt executed in X' line after the save (smallest start).
candidates.sort(key=lambda x: x[0])
return candidates[0][1]
def exr_sequence_duration(folder: Path):
"""Return (duration_seconds, version_dir_name) for the most recent EXR
sequence in the working folder. Treats render time as the wall-clock
span between the first and last frame in the version subdirectory of
the newest EXR — accurate even when the JSON is saved after rendering.
Returns (None, None) if no EXR sequence is found."""
all_exrs = list(folder.rglob("*.exr"))
if not all_exrs:
return None, None
newest = max(all_exrs, key=lambda p: p.stat().st_mtime)
seq_dir = newest.parent
seq_mtimes = sorted(p.stat().st_mtime for p in seq_dir.glob("*.exr"))
if len(seq_mtimes) < 2:
return None, seq_dir.name
return seq_mtimes[-1] - seq_mtimes[0], seq_dir.name
def fmt_duration(seconds: float) -> str:
s = int(round(seconds))
if s < 60:
return f"{s}s"
m, s = divmod(s, 60)
if m < 60:
return f"{m}m {s:02d}s"
h, m = divmod(m, 60)
return f"{h}h {m:02d}m"
def find(wf, t):
return [n for n in wf["nodes"] if n.get("type") == t]
def widgets(n): return n.get("widgets_values", []) or []
def resolve_input(wf, node, name):
"""Return the upstream node feeding a named input, or None."""
links = {link[0]: link for link in wf["links"]}
by_id = {n["id"]: n for n in wf["nodes"]}
for inp in node.get("inputs", []) or []:
if inp.get("name") == name and inp.get("link") is not None:
link = links.get(inp["link"])
if link:
return by_id.get(link[1])
return None
def follow_setnode(wf, getnode):
"""GetNode -> the value-producing source via SetNode of the same variable."""
var = widgets(getnode)[0] if widgets(getnode) else None
if not var:
return None
for n in wf["nodes"]:
if n.get("type") == "SetNode" and widgets(n)[:1] == [var]:
# SetNode's incoming link is the actual value source
links = {link[0]: link for link in wf["links"]}
by_id = {n["id"]: n for n in wf["nodes"]}
for inp in n.get("inputs", []) or []:
if inp.get("link") is not None:
link = links.get(inp["link"])
if link:
src = by_id.get(link[1])
# If it's a switch, resolve the selected value
if src and src.get("type") == "easy anythingIndexSwitch":
idx_node = resolve_input(wf, src, "index")
idx = widgets(idx_node)[0] if idx_node and widgets(idx_node) else 0
val_node = resolve_input(wf, src, f"value{idx}")
return val_node
return src
return None
def res_label(w, h):
return {(3744,2112):"4K", (3840,2160):"4K", (2560,1440):"2K",
(1920,1080):"HD", (1280,720):"HD"}.get((w,h), f"{w}x{h}")
def extract(wf):
"""Pull every field we need to draw the card."""
d = find(wf, "LTXDirector")[0]
dw = widgets(d)
# LTXDirector widget order (verified in v01-v03):
# 0 global_prompt, 1 dur_frames, 2 dur_sec, 3 timeline_data, 4 local_prompts,
# 5 segment_lengths, 6 epsilon, 7 guide_strength, 8 use_custom_audio,
# 9 frame_rate, 10 display_mode, 11 custom_width, 12 custom_height,
# 13 resize_method, 14 divisible_by, 15 img_compression
epsilon = dw[6]
seg_lengths_str = dw[5]
fps = dw[9]
use_custom_aud = dw[8]
dur_frames = dw[1]
dur_seconds = dw[2]
# custom_width / height may be widget value OR fed by GetNode chain
cw = resolve_input(wf, d, "custom_width")
ch = resolve_input(wf, d, "custom_height")
if cw and cw.get("type") == "GetNode":
cw = follow_setnode(wf, cw)
if ch and ch.get("type") == "GetNode":
ch = follow_setnode(wf, ch)
width = widgets(cw)[0] if cw and widgets(cw) else dw[11]
height = widgets(ch)[0] if ch and widgets(ch) else dw[12]
# parse timeline_data segments
try:
tl = json.loads(dw[3]) if dw[3] else {}
segments = tl.get("segments", [])
except Exception:
segments = []
seg_lengths = [int(x.strip()) for x in seg_lengths_str.split(",") if x.strip()]
# phase 1 chain — first BasicScheduler with denoise == 1.0, else first one
schedulers = find(wf, "BasicScheduler")
p1 = next((s for s in schedulers if widgets(s)[2] == 1), schedulers[0] if schedulers else None)
sched_name, steps, denoise = (widgets(p1) if p1 else ("?", "?", "?"))
# Director Guide scale_by per phase — pick the one fed by LTXDirector (phase 1)
guides = find(wf, "LTXDirectorGuide")
p1_guide = None
for g in guides:
latent_src = resolve_input(wf, g, "latent")
if latent_src and latent_src.get("type") == "LTXDirector":
p1_guide = g
break
if p1_guide is None and guides:
p1_guide = guides[0]
mult = widgets(p1_guide)[0] if p1_guide else "?"
# Pull three named Text Multiline nodes from the workflow:
# - "OVERLAY - INFO" (or any title containing INFO) -> base notes (Δ from baseline)
# - "OVERLAY - FEEDBACK" / "FEEDBACK" / "OBSERVATIONS" -> video feedback + scores
# - "Working_Folder_PATH" / "OUT_working_folder" -> authoritative output folder
note, feedback, work_folder = "", "", ""
for n in wf["nodes"]:
if n.get("type") != "Text Multiline":
continue
title = (n.get("title") or "").upper()
ws = widgets(n)
if not (ws and isinstance(ws[0], str)):
continue
text = ws[0]
if not note and ("INFO" in title or ("OVERLAY" in title and "FEEDBACK" not in title)):
for marker in ("BASE (notes):", "BASE:"):
if marker in text:
note = text.split(marker, 1)[1].strip()
break
if not feedback and ("FEEDBACK" in title or "OBSERVATION" in title or "VIDEO" in title):
feedback = text.strip()
if not work_folder and ("WORKING_FOLDER" in title or "WORK_FOLDER" in title
or "OUT_WORKING" in title or "WORKING-FOLDER" in title):
work_folder = text.strip().strip("\"' ").rstrip("\\/")
# Parse scores out of the feedback text. Pattern: "motion: 4/5" / "sync 3" / "sharpness: 5/5".
scores = {"motion": None, "sync": None, "sharp": None}
feedback_lines = []
score_re = re.compile(
r"^\s*(motion|sync|sharp(?:ness)?|sharpness)\s*[:=]?\s*(\d+)\s*(?:/\s*\d+)?\s*$",
re.IGNORECASE,
)
for line in feedback.splitlines():
m = score_re.match(line)
if m:
key = m.group(1).lower()
if key.startswith("sharp"):
key = "sharp"
scores[key] = int(m.group(2))
elif line.strip():
feedback_lines.append(line.rstrip())
feedback = "\n".join(feedback_lines).strip()
# model stack
ckpt = (widgets(find(wf, "CheckpointLoaderSimple")[0]) if find(wf, "CheckpointLoaderSimple") else [""])[0]
lora_nodes = find(wf, "LoraLoaderModelOnly")
lora = ""
if lora_nodes:
lw = widgets(lora_nodes[0])
lora_name = lw[0].replace("\\", "/").split("/")[-1].replace(".safetensors", "")
lora_strength = lw[1] if len(lw) > 1 else ""
lora = f"{lora_name} @ {lora_strength}"
clip_nodes = find(wf, "DualCLIPLoader")
clip = ""
if clip_nodes:
cw_ = widgets(clip_nodes[0])
clip = cw_[0].replace("\\", "/").split("/")[-1].replace(".safetensors", "")
vaes = find(wf, "VAELoaderKJ")
video_vae = audio_vae = ""
for v in vaes:
n = widgets(v)[0].replace(".safetensors", "")
if "video" in n:
video_vae = n
elif "audio" in n:
audio_vae = n
# seed
rn = find(wf, "RandomNoise")
seed = widgets(rn[0])[0] if rn else "?"
return {
"format": res_label(width, height),
"resolution": f"{width} × {height}",
"mult": mult,
"scheduler": sched_name,
"steps": steps,
"denoise": denoise,
"note": note,
"feedback": feedback,
"scores": scores,
"work_folder_from_wf": work_folder,
"epsilon": epsilon,
"seed": seed,
"fps": fps,
"dur_frames": dur_frames,
"dur_seconds": dur_seconds,
"segments": segments,
"seg_lengths": seg_lengths,
"use_custom_audio": use_custom_aud,
"ckpt": Path(ckpt).name.replace(".safetensors", ""),
"lora": lora,
"clip": Path(clip).name,
"video_vae": video_vae,
"audio_vae": audio_vae,
}
# ---------- drawing helpers ----------
def draw_kv_row(draw, x, y, key, val, key_w):
draw.text((x, y), key, font=F_MONO, fill=MUTED)
draw.text((x + key_w, y), str(val), font=F_MONO, fill=TEXT)
return y + 26
def draw_h2(draw, x, y, label, color):
draw.text((x, y), label.upper(), font=F_H2, fill=color)
return y + 30
def wrap_text(text, max_chars):
"""Naive word-wrap to fit max_chars per line."""
out = []
for raw_line in text.split("\n"):
if not raw_line.strip():
out.append("")
continue
words, cur = raw_line.split(), ""
for w in words:
if len(cur) + len(w) + 1 <= max_chars:
cur = (cur + " " + w).strip()
else:
if cur:
out.append(cur)
cur = w
if cur:
out.append(cur)
return out
def draw_text_box(draw, x, y, width, label, content, accent, max_lines=3):
"""Draw a left-accented note box with a header label + wrapped content lines."""
char_per_line = 42
lines = wrap_text(content, char_per_line)[:max_lines]
box_h = 26 + 22 * max(1, len(lines)) + 14
draw.rounded_rectangle(
[x - 12, y, x + width, y + box_h],
radius=4, fill=NOTE_BG,
)
draw.rectangle([x - 12, y, x - 8, y + box_h], fill=accent)
draw.text((x + 4, y + 8), label, font=F_H2, fill=accent)
line_y = y + 34
for line in lines:
draw.text((x + 4, line_y), line, font=F_NOTE, fill=DIM)
line_y += 22
return y + box_h + 4
def draw_section(draw, x, y, width, accent, label, body_lines_height,
bg=BG_SECTION, border=BORDER):
"""Draw a section panel header + return (content_x, content_y, content_w, end_y).
Body content is drawn by the caller starting at (content_x, content_y)."""
HEADER_H = 36
section_h = HEADER_H + body_lines_height + 14
draw.rounded_rectangle(
[x, y, x + width, y + section_h],
radius=SECTION_RADIUS, fill=bg, outline=border, width=1,
)
# header label — bigger, no side bar, accent colour
draw.text((x + 14, y + 10), label.upper(), font=F_SECTION, fill=accent)
return x + 14, y + HEADER_H, width - 28, y + section_h + 10
def section_body_rows(num_rows, extra=0):
"""Pixel height needed for N kv rows plus optional extra padding."""
return num_rows * 26 + extra
def render(data: dict, out_path: Path) -> None:
# Oversized canvas; crop after laying out.
canvas_h = 2000
img = Image.new("RGB", (W, canvas_h), BG_OUTER)
draw = ImageDraw.Draw(img)
inset = 18
# outer card
draw.rounded_rectangle(
[inset, inset, W - inset, canvas_h - inset],
radius=RADIUS, fill=BG_CARD, outline=BORDER, width=1,
)
x = inset + PAD_X
y = inset + PAD_TOP
inner_w = W - 2 * inset - 2 * PAD_X
# ---------- HEADER ----------
import datetime
today = datetime.date.today().isoformat()
ver = data.get("run_label", "?")
stage_label = "single-stage" if data.get("denoise", 1) == 1 else "two-stage"
res_label = data.get("format", "")
title_line = f"Run {ver or '?'} — {stage_label} {res_label}".strip()
sub_line = f"{today} · {data.get('json_name', '')}"
draw.text((x, y), title_line, font=F_TITLE, fill=TEXT)
y += 38
draw.text((x, y), sub_line, font=F_SUB, fill=MUTED)
y += 30
# hairline divider under header
draw.line([(x, y), (x + inner_w, y)], fill=BORDER, width=1)
y += 18
key_w = 122
# ---------- PHASE 1 ----------
body_h = section_body_rows(5)
cx, cy, cw, end_y = draw_section(draw, x, y, inner_w, ACCENT_RUN, "Phase 1", body_h)
cy = draw_kv_row(draw, cx, cy, "Format", f"{data['format']} · {data['resolution']}", key_w)
cy = draw_kv_row(draw, cx, cy, "Mult", data["mult"], key_w)
cy = draw_kv_row(draw, cx, cy, "Scheduler", data["scheduler"], key_w)
cy = draw_kv_row(draw, cx, cy, "Steps", data["steps"], key_w)
cy = draw_kv_row(draw, cx, cy, "Denoise", data["denoise"], key_w)
y = end_y
# ---------- BASE NOTES ----------
note_text = data["note"] or "(no changes)"
note_lines = wrap_text(note_text, 42)[:4]
body_h = max(28, 24 * len(note_lines)) + 4
cx, cy, cw, end_y = draw_section(draw, x, y, inner_w, ACCENT_RUN,
"Base · notes (Δ this run)", body_h)
for line in note_lines:
draw.text((cx, cy), line, font=F_NOTE, fill=DIM)
cy += 24
y = end_y
# ---------- BASE · LOCKED ----------
body_h = section_body_rows(5)
cx, cy, cw, end_y = draw_section(draw, x, y, inner_w, ACCENT_BASE, "Base · locked", body_h)
cy = draw_kv_row(draw, cx, cy, "Sampler", "euler", key_w)
cy = draw_kv_row(draw, cx, cy, "CFG", "1.0", key_w)
cy = draw_kv_row(draw, cx, cy, "Seed", f"{data['seed']} (fixed)", key_w)
cy = draw_kv_row(draw, cx, cy, "epsilon", data["epsilon"], key_w)
cy = draw_kv_row(draw, cx, cy, "Audio src", "model-gen"
if not data["use_custom_audio"] else "custom", key_w)
y = end_y
# ---------- BASE · SCENE ----------
seg_rows = min(len(data["segments"]), 6)
body_h = section_body_rows(2 + seg_rows, extra=4)
cx, cy, cw, end_y = draw_section(draw, x, y, inner_w, ACCENT_BASE, "Base · scene", body_h)
cy = draw_kv_row(draw, cx, cy, "Duration",
f"{data['dur_frames']} f · {data['dur_seconds']} s @ {data['fps']} fps", key_w)
cy = draw_kv_row(draw, cx, cy, "Segments",
f"{len(data['segments'])} × {data['seg_lengths'][0] if data['seg_lengths'] else '?'} f", key_w)
for i, seg in enumerate(data["segments"][:seg_rows]):
start_s = seg.get("start", 0) / data["fps"]
end_s = (seg.get("start", 0) + seg.get("length", 0)) / data["fps"]
has_prompt = "[x]" if seg.get("prompt") else "[ ]"
has_audio = "[x]" if "Audio:" in (seg.get("prompt") or "") else "[ ]"
has_kf = "[x]" if seg.get("imageFile") else "[ ]"
all_set = (has_prompt == has_audio == has_kf == "[x]")
fill_col = ACCENT_OUT if all_set else TEXT
draw.text((cx, cy), f"{i+1})", font=F_MONO, fill=ACCENT_BASE)
draw.text((cx + 32, cy), f"{start_s:.0f}-{end_s:.0f}s", font=F_MONO, fill=DIM)
draw.text((cx + 110, cy), f"P{has_prompt} A{has_audio} K{has_kf}",
font=F_MONO, fill=fill_col)
cy += 26
y = end_y
# ---------- POST-RENDER ----------
feedback_text = data["feedback"] or "(add observations)"
feedback_lines = wrap_text(feedback_text, 42)[:5]
body_h = (
section_body_rows(2) # render time + output
+ 8 # spacer
+ 20 # FEEDBACK sublabel
+ max(24, 22 * len(feedback_lines))
+ 14 # spacer before outcome
+ 20 # OUTCOME sublabel
+ 26 # outcome scores row
)
cx, cy, cw, end_y = draw_section(draw, x, y, inner_w, ACCENT_OUT, "Post-render", body_h)
cy = draw_kv_row(draw, cx, cy, "Render time", data.get("render_duration", "?"), key_w)
cy = draw_kv_row(draw, cx, cy, "Output", data.get("render_output", "?")[:36], key_w)
cy += 8
# FEEDBACK sublabel + body
draw.text((cx, cy), "FEEDBACK", font=F_TAG, fill=ACCENT_OUT)
cy += 20
for line in feedback_lines:
draw.text((cx, cy), line, font=F_NOTE, fill=DIM)
cy += 22
cy += 6
# OUTCOME sublabel + scores (auto-filled from FEEDBACK parsing)
draw.text((cx, cy), "OUTCOME", font=F_TAG, fill=ACCENT_OUT)
cy += 20
s = data.get("scores", {}) or {}
def _s(v): return f"{v}/5" if v is not None else "?/5"
draw.text((cx, cy),
f"Motion {_s(s.get('motion'))} Sync {_s(s.get('sync'))} Sharp {_s(s.get('sharp'))}",
font=F_MONO, fill=TEXT)
y = end_y
# ---------- final crop ----------
final_h = y + PAD_BOTTOM + inset
final = Image.new("RGB", (W, final_h), BG_OUTER)
draw2 = ImageDraw.Draw(final)
draw2.rounded_rectangle(
[inset, inset, W - inset, final_h - inset],
radius=RADIUS, fill=BG_CARD, outline=BORDER, width=1,
)
content = img.crop((inset + 1, inset + 1, W - inset - 1, final_h - inset - 1))
final.paste(content, (inset + 1, inset + 1))
final.save(out_path)
print(f"wrote {out_path} ({W}×{final_h})")
# ---------- CLI ----------
def _autodiscover_json() -> Path:
"""Find the newest *.json in $KOLOOK_AUTOMATIONS_WORK_DIR. Fails clearly."""
folder = os.environ.get("KOLOOK_AUTOMATIONS_WORK_DIR", "").strip()
if not folder:
raise SystemExit(
"KOLOOK_AUTOMATIONS_WORK_DIR not set. Add it to `.env` (see `.env.example`) "
"or pass the JSON path explicitly: `make_card.py <workflow.json>`."
)
p = Path(folder)
if not p.is_dir():
raise SystemExit(f"KOLOOK_AUTOMATIONS_WORK_DIR does not exist on disk: {p}")
candidates = sorted(
(j for j in p.glob("*.json") if not _is_loop_output(j)),
key=lambda x: x.stat().st_mtime,
reverse=True,
)
if not candidates:
raise SystemExit(f"No *.json files found in {p}. Export a workflow from ComfyUI first.")
return candidates[0]
def main():
if len(sys.argv) >= 2:
wf_path = Path(sys.argv[1])
else:
wf_path = _autodiscover_json()
print(f"auto-discovered: {wf_path}")
wf = load_workflow(wf_path)
data = extract(wf)
data["json_name"] = wf_path.name
data["json_stem"] = wf_path.stem
# Output folder priority (first existing wins):
# 1. Working_Folder_PATH Text Multiline inside the workflow JSON.
# 2. KOLOOK_AUTOMATIONS_WORK_DIR env var (from .env).
# 3. The JSON's own parent directory.
candidates = []
wf_folder = data.get("work_folder_from_wf") or ""
if wf_folder:
candidates.append(("Working_Folder_PATH node", Path(wf_folder)))
env_folder = os.environ.get("KOLOOK_AUTOMATIONS_WORK_DIR", "").strip()
if env_folder:
candidates.append(("KOLOOK_AUTOMATIONS_WORK_DIR", Path(env_folder)))
candidates.append(("JSON parent directory", wf_path.parent))
folder = None
for label, p in candidates:
try:
p = p.resolve()
except Exception:
continue
if p.is_dir():
folder = p
break
if folder is None:
# Last-resort fallback — use the unresolved JSON parent.
folder = wf_path.parent
# Output path: stable filename in the _AI subfolder of the working folder.
# Keeps managed artifacts (card.png + iterations.md) separated from user
# content (JSONs, MP4s) so the maintainer can wipe one without the other.
if len(sys.argv) > 2:
out_path = Path(sys.argv[2])
else:
ai_dir = folder / AI_SUBDIR
ai_dir.mkdir(exist_ok=True)
out_path = ai_dir / CARD_NAME
video, vmtime = find_newest_video(folder)
# Render duration priority:
# 1. ComfyUI's own `Prompt executed in X` log line — authoritative
# wall-time for the model run. Skips trivial follow-up prompts.
# 2. EXR sequence first-to-last-frame span.
# 3. JSON-vs-MP4 mtime delta (last resort).
# Disk mtimes alone are unreliable: ComfyUI writes JSON + MP4 together
# at end-of-render, and the maintainer often assembles MP4s separately.
json_mtime = wf_path.stat().st_mtime
log_path = find_comfyui_log_path()
log_duration = render_time_from_log(log_path) if log_path else None
if log_duration:
data["render_duration"] = fmt_duration(log_duration) + " (Comfy log)"
data["render_log_path"] = str(log_path)
else:
exr_span, exr_version = exr_sequence_duration(folder)
if exr_span is not None and exr_span > 0:
suffix = f" ({exr_version})" if exr_version else ""
data["render_duration"] = fmt_duration(exr_span) + suffix
elif video is not None:
# Fall back to MP4 mtime delta only if no EXRs are present.
same_stem = video.stem.startswith(wf_path.stem) or wf_path.stem.startswith(video.stem)
delta = vmtime - json_mtime
if same_stem:
data["render_duration"] = "—"
elif delta >= 0:
data["render_duration"] = fmt_duration(delta)
else:
data["render_duration"] = "pending"
else:
data["render_duration"] = "pending"
data["render_output"] = video.name if video is not None else "(no video yet)"
# run_label: prefer v01/v04 style, else fall back to ComfyUI sequence number
stem = wf_path.stem
m = re.search(r"(?:^|[_\-])v(\d{1,4})(?:[_\-]|$)", stem)
if m:
data["run_label"] = f"v{m.group(1)}"
else:
m = re.search(r"_(\d{4,6})(?:_|$)", stem)
data["run_label"] = f"#{int(m.group(1))}" if m else "?"
render(data, out_path)
log_iteration(folder, wf_path, data)
if __name__ == "__main__":
main()
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