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One committed example per registered mark: 12 PNG (image registry) and 6 MP4 clips (video registry), generated by scripts/render_visible_examples.py from the committed silhouettes and detector templates -- never from user uploads. The generator self-verifies (exit 1 when a mark misses its own example) and tests/test_visible_examples.py holds both sides to it: registry completeness both ways, per-engine detection on the canonical example, and the shipped temporal selection accepting each clip. Second tranche of measured-but-unregistered candidates parked under scripts/assets/visible-mark-candidates/ with a README recording why none ships yet (positives do not separate from clean negatives): samsung_en, gemini_text, notebooklm, dola, mindvideo, higgsfield, jianying, capcut, zsky, chromastudio, digenai, gendo.
276 lines
11 KiB
Python
276 lines
11 KiB
Python
"""Render the visible-mark example gallery under data/fixtures/visible/.
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One committed example per registered image mark, so the repo carries a working
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sample of everything it supports and a canary test can hold both sides to it
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(mark registered without example; engine regressed on its canonical example).
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Every example is SYNTHETIC: a deterministic generated base photo with the mark's
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own committed silhouette composited at the engine's measured geometry. User
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uploads never enter the repository (data/spaces stays out of git), and no vendor
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asset is copied -- the silhouettes are the same font-rendered templates the
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detectors match against.
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Regenerate with:
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uv run python scripts/render_visible_examples.py
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"""
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from __future__ import annotations
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import sys
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from pathlib import Path
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from typing import Any
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import cv2
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import numpy as np
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_ROOT = Path(__file__).resolve().parents[1]
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sys.path.insert(0, str(_ROOT / "src"))
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from remove_ai_watermarks import watermark_registry as wr # noqa: E402
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from remove_ai_watermarks.image_io import imread # noqa: E402
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ASSETS = _ROOT / "src" / "remove_ai_watermarks" / "assets"
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OUT = _ROOT / "data" / "fixtures" / "visible"
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# Composite strength per key: glyph target luma for the light-overlay class.
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# Kling is a thin light-gray run (not near-white); Samsung is a faint overlay
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# expressed by SCALING ITS ALPHA to 0.38 toward full white (see below); everything
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# else is the bold near-white house style.
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_STRENGTH: dict[str, int] = {
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"kling": 208,
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}
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_DEFAULT_STRENGTH = 238
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# Base geometry: one canonical size per mark where the engine's size modes
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# matter (qwen's big mode), otherwise a plain 3:2 landscape frame.
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# Samsung keeps the larger base: its overlay is faint (peak alpha ~0.38) and
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# the real marks live on ~2958px phone photos -- at 1536 the example falls to 0.39,
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# just under the engine's 0.40 gate.
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_SIZE: dict[str, tuple[int, int]] = {"qwen": (1536, 1536), "liblib": (1152, 1536), "samsung": (2048, 1536)}
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def base_photo(w: int, h: int, seed: int = 7) -> np.ndarray:
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"""A deterministic synthetic 'photo': gradient sky, soft blobs, mild noise."""
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rng = np.random.default_rng(seed)
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top, bottom = 96, 168
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grad = np.linspace(top, bottom, h, dtype=np.float32)[:, None]
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img = np.repeat(grad[:, :, None], w, axis=1) # (h, w, 1)
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for _ in range(5):
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cx, cy = rng.uniform(0, w), rng.uniform(0, h)
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r = rng.uniform(w * 0.12, w * 0.35)
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blob = rng.uniform(-52, 52)
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yy, xx = np.ogrid[:h, :w]
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gauss = np.exp(-(((xx - cx) ** 2 + (yy - cy) ** 2) / (2 * (r * 0.55) ** 2))).astype(np.float32)
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img = img + (blob * gauss)[:, :, None]
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img = img + rng.normal(0, 1.6, img.shape).astype(np.float32)
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return cv2.merge([np.clip(img, 0, 255).astype(np.uint8)] * 3)
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def _glyph_asset(name: str) -> np.ndarray:
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at = imread(str(ASSETS / name), cv2.IMREAD_GRAYSCALE)
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if at is None:
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raise RuntimeError(f"missing silhouette asset: {name}")
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return at.astype(np.float32) / 255.0
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def _composite_light(base: np.ndarray, alpha: np.ndarray, x: int, y: int, strength: int) -> np.ndarray:
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out = base.copy()
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h, w = alpha.shape[:2]
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roi = out[y : y + h, x : x + w].astype(np.float32)
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a3 = alpha[:, :, None] if alpha.ndim == 2 else alpha
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out[y : y + h, x : x + w] = np.clip(roi * (1 - a3) + strength * a3, 0, 255).astype(np.uint8)
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return out
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def _text_mark_example(key: str) -> np.ndarray:
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engine = wr._engine(key) # the generator drives the engine's own config
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cfg = engine.config
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w, h = _SIZE.get(key, (1536, 1152))
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base = base_photo(w, h)
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if key == "microsoft":
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# Opaque white pill with dark text/sparkle holes, at the measured inset.
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at = _glyph_asset("microsoft_alpha.png")
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long_side = max(w, h)
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pw = int(0.152 * long_side)
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ph = max(4, int(pw / (at.shape[1] / at.shape[0])))
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pad = int(0.010 * long_side)
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pill = cv2.resize(at, (pw, ph))
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x, y = w - pad - pw, pad
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roi = base[y : y + ph, x : x + pw].astype(np.float32)
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bright = (pill > 0.6)[:, :, None]
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roi = np.where(bright, 245.0, 46.0)
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base[y : y + ph, x : x + pw] = roi.astype(np.uint8)
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return base
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base_dim = {"short": min(w, h), "width": w, "long": max(w, h)}[cfg.scale_basis]
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# Size the glyph ON a ladder rung: the continuous front ends sweep only the
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# configured rungs, and a glyph sized between rungs collapses the NCC (the
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# comb-collapse qwen's own two-rung ladder exists to avoid).
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rung = max(cfg.ladder) if cfg.detect_frontend != "binary" else 1.0
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gw = int(cfg.alpha_width_frac * base_dim * rung)
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gh = max(4, int(cfg.alpha_height_frac * base_dim * rung))
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loc = engine.locate(base)
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# Corner-hugging placement: the yuanbao/runninghub anchor gates demote a match
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# that does not hug the corner, and the real marks sit flush on the box's
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# corner side (never centered).
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if cfg.corner in ("br", "tr"):
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x = loc.x + loc.w - gw
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elif cfg.corner == "bc":
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x = loc.x + (loc.w - gw) // 2
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else: # bl, tl: flush left
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x = loc.x
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y = loc.y if cfg.corner in ("tl", "tr") else loc.y + loc.h - gh
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x, y = max(0, x), max(0, y)
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at = _glyph_asset(f"{key}_alpha.png")
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alpha = cv2.resize(at, (gw, gh))
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if key == "samsung": # faint overlay: peak alpha 0.38 toward FULL white
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alpha = alpha * 0.38
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return _composite_light(base, alpha, x, y, _STRENGTH.get(key, _DEFAULT_STRENGTH))
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def _gemini_example() -> np.ndarray:
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from remove_ai_watermarks.gemini_engine import GeminiEngine, get_watermark_config, get_watermark_size
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w, h = 1536, 1152
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base = base_photo(w, h)
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eng = GeminiEngine()
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size = get_watermark_size(w, h)
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alpha = eng.get_alpha_map(size)
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cfg = get_watermark_config(w, h)
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x, y = cfg.get_position(w, h)
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return _composite_light(base, alpha.astype(np.float32), x, y, 255)
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def _pill_example() -> np.ndarray:
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w, h = 1152, 1536 # the measured pill cohort is 3:4 portrait
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base = base_photo(w, h)
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at = _glyph_asset("jimeng_pill.png")
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pw = max(24, int(0.161 * w))
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ph = max(8, int(pw * at.shape[0] / at.shape[1]))
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x, y = int(0.03 * w), int(0.03 * h)
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alpha = cv2.resize(at, (pw, ph))
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return _composite_light(base, alpha, x, y, 232)
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_BUILDERS: dict[str, Any] = {"gemini": _gemini_example, "jimeng_pill": _pill_example}
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def build(key: str) -> np.ndarray:
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if key in _BUILDERS:
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return _BUILDERS[key]()
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return _text_mark_example(key)
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# ── Video mark examples ──────────────────────────────────────────────────────
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# One short clip per registered video mark: the detector's own synthetic
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# template composited at a scale inside its calibrated search profile, on every
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# frame of a generated base. The canary asserts the SHIPPED selection accepts
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# the clip (identify_video -> visible_mark), not just the per-frame detector.
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_VIDEO_FRAMES = 90
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_VIDEO_FPS = 30
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def _video_mark_frame(key: str, w: int, h: int) -> np.ndarray:
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from remove_ai_watermarks.video_visible import _template_sources
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base = base_photo(w, h, seed=11)
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templates = _template_sources()
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short = min(w, h)
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if key == "sora":
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tmpl, scale, x, y = templates["sora-icon"], 0.10, int(w * 0.72), int(h * 0.90)
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elif key == "veo":
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# The legacy "Veo" TEXT form: a perfect synthetic diamond also matches the
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# Sora icon template (both are 4-point stars) and table order hands the
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# tie to Sora, so the gallery carries the discriminative text variant.
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tmpl = templates["veo-text"]
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th = max(6, round(14 * short / 720))
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tw = max(1, round(tmpl.shape[1] * th / tmpl.shape[0]))
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x, y = w - tw - int(0.045 * w), h - th - int(0.045 * h)
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return _composite_light(base, cv2.resize(tmpl, (tw, th)).astype(np.float32) / 255.0, x, y, 250)
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elif key == "seedance":
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tmpl, scale, x, y = templates["seedance"], 0.095, int(w * 0.74), int(h * 0.80)
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elif key == "dola":
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tmpl, scale, x, y = templates["dola"], 0.036, int(w * 0.70), int(h * 0.88)
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elif key == "hailuo":
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tmpl, scale, x, y = templates["hailuo"], 0.052, int(w * 0.34), int(h * 0.82)
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elif key == "kling":
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# The FULL mark: swirl logo left of the text run, flush against the
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# bottom-right EDGE. The font arm is edge-gated (region must reach
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# >=0.96W / >=0.94H), and a text-only composite away from the edge both
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# fails that gate and cross-fires the Seedance detector.
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tmpl = templates["kling-1"]
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th = max(8, round(short * 0.040))
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tw = max(1, round(tmpl.shape[1] * th / tmpl.shape[0]))
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tx, ty = w - tw - 6, h - th - 6
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out = _composite_light(base, cv2.resize(tmpl, (tw, th)).astype(np.float32) / 255.0, tx, ty, 250)
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logo = templates["kling-logo"]
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lh = max(6, round(short * 0.046))
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lw = max(1, round(logo.shape[1] * lh / logo.shape[0]))
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lx, ly = tx - lw - round(th * 0.5), h - lh - 6
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return _composite_light(out, cv2.resize(logo, (lw, lh)).astype(np.float32) / 255.0, lx, ly, 250)
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else:
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raise ValueError(key)
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th = max(8, round(short * scale))
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tw = max(1, round(tmpl.shape[1] * th / tmpl.shape[0]))
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alpha = cv2.resize(tmpl, (tw, th)).astype(np.float32) / 255.0
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return _composite_light(base, alpha, x, y, 250)
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def build_video(key: str) -> None:
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w, h = 960, 540
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out_dir = OUT / key
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out_dir.mkdir(parents=True, exist_ok=True)
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path = out_dir / "example.mp4"
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writer = cv2.VideoWriter(str(path), cv2.VideoWriter_fourcc(*"mp4v"), _VIDEO_FPS, (w, h))
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if not writer.isOpened():
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raise RuntimeError("mp4v writer unavailable")
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frame = _video_mark_frame(key, w, h)
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for _ in range(_VIDEO_FRAMES):
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writer.write(frame)
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writer.release()
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def verify_video(key: str) -> tuple[float, str | None, int]:
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from remove_ai_watermarks.video import identify_video
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rep = identify_video(OUT / key / "example.mp4", check_visible=True)
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return float(rep.visible_detected_frames or 0), rep.visible_mark, rep.total_frames
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def render_videos() -> list[str]:
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from remove_ai_watermarks.video import VIDEO_VISIBLE_MARKS
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failures: list[str] = []
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for key in VIDEO_VISIBLE_MARKS:
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build_video(key)
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frames, mark, total = verify_video(key)
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status = "OK " if mark == key else "MISS"
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print(f"{status} {key:10s} video: {mark} on {frames}/{total} frames -> data/fixtures/visible/{key}/example.mp4")
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if mark != key:
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failures.append(key)
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return failures
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def main() -> None:
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failures: list[str] = []
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for mark in wr.known_marks():
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key = mark.key
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img = build(key)
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out_dir = OUT / key
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out_dir.mkdir(parents=True, exist_ok=True)
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path = out_dir / "example.png"
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cv2.imwrite(str(path), img)
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det = wr.get_mark(key).detect(imread(str(path)), provenance=False)
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status = "OK " if det.detected else "MISS"
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print(f"{status} {key:12s} conf={det.confidence:.3f} -> {path.relative_to(_ROOT)}")
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if not det.detected:
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failures.append(key)
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failures += render_videos()
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if failures:
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print(f"\nNOT DETECTED on their own examples: {failures}", file=sys.stderr)
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raise SystemExit(1)
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if __name__ == "__main__":
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main()
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