287 lines
12 KiB
Python
287 lines
12 KiB
Python
from __future__ import annotations
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from typing import Any, Mapping
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CAMERA_DIRECTIONS = (
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"front-right quarter view",
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"right side view",
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"back-right quarter view",
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"back view",
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"back-left quarter view",
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"left side view",
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"front-left quarter view",
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"front view",
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)
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CAMERA_ELEVATIONS = ("low-angle shot", "eye-level shot", "elevated shot", "high-angle shot")
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CAMERA_DISTANCES = (
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"wide shot",
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"full-body shot",
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"three-quarter body shot",
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"medium shot",
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"close-up",
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"extreme close-up",
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)
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def is_coworking_scene(scene_text: Any) -> bool:
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text = str(scene_text or "").lower()
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return any(
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term in text
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for term in (
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"coworking",
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"cowork",
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"office lounge",
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"business cafe",
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"work cafe",
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"shared office",
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"corporate office",
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"office after hours",
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"laptops",
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"warm desks",
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"repeating desks",
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"glass partitions",
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"copier alcove",
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)
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)
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def _compact_label(value: Any, compact_labels: Mapping[str, str] | None = None) -> str:
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text = str(value or "")
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if compact_labels and text in compact_labels:
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return compact_labels[text]
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return text.replace("_", " ")
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def camera_geometry_phrase(parsed: dict[str, Any], compact_labels: Mapping[str, str] | None = None) -> str:
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direction = str(parsed.get("orbit_direction") or "").strip()
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elevation = str(parsed.get("orbit_elevation_label") or "").strip()
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distance = str(parsed.get("orbit_distance_label") or "").strip()
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custom = str(parsed.get("custom_camera_prompt") or "").strip()
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if not any((direction, elevation, distance)) and custom:
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return custom
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parts = [part for part in (direction, elevation, distance) if part and part != "auto"]
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if parts:
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return ", ".join(parts)
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compact_parts = [
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_compact_label(parsed.get(key), compact_labels)
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for key in ("shot_size", "angle", "distance")
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]
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compact_parts = [part for part in compact_parts if part and part != "auto"]
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return ", ".join(compact_parts)
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def camera_direction_from_text(text: Any) -> str:
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source = str(text or "").lower()
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for label in CAMERA_DIRECTIONS:
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if label in source:
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return label
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return ""
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def camera_elevation_from_text(text: Any) -> str:
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source = str(text or "").lower()
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for label in CAMERA_ELEVATIONS:
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if label in source:
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return label
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return ""
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def camera_distance_from_text(text: Any) -> str:
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source = str(text or "").lower()
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for label in CAMERA_DISTANCES:
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if label in source:
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return label
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return ""
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def coworking_location_profile(scene_text: Any) -> dict[str, str]:
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text = str(scene_text or "").lower()
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if "business cafe" in text or "work cafe" in text or "cafe" in text:
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return {
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"layout_label": "Business cafe camera layout",
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"place": "business cafe coworking counter",
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"foreground": "counter edge, laptop corner, and small plant",
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"midground": "bar stools, warm desk lamps, and coffee-counter work spots",
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"background": "plants, mirror strip, menu wall, and repeated cafe work tables",
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}
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if "corporate office" in text or "office after hours" in text or "copier" in text:
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return {
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"layout_label": "Office camera layout",
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"place": "empty after-hours office",
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"foreground": "copier alcove edge, chair backs, and nearest desk corner",
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"midground": "repeating desks, glass partition seams, and muted monitor glow",
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"background": "rows of empty workstations, city-light windows, and quiet office depth",
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}
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return {
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"layout_label": "Coworking camera layout",
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"place": "coworking lounge",
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"foreground": "near desk edge, laptop corner, and chair back",
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"midground": "warm work desks, laptop tables, and glass partition seams",
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"background": "tall windows, repeated desk rows, plants, and soft shared-office depth",
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}
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def coworking_subject_terms(subject_kind: str, pov_labels: list[str] | None = None) -> tuple[str, str]:
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if pov_labels:
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return "the visible partner", "them"
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if subject_kind == "woman":
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return "the woman", "her"
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if subject_kind == "man":
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return "the man", "him"
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if subject_kind == "couple":
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return "the couple", "them"
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return "the subjects", "them"
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def coworking_direction_detail(
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direction: str,
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profile: dict[str, str],
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pov_labels: list[str] | None = None,
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subject_kind: str = "subjects",
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) -> str:
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direction = str(direction or "").strip().lower()
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foreground = profile["foreground"]
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midground = profile["midground"]
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background = profile["background"]
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subject, pronoun = coworking_subject_terms(subject_kind, pov_labels)
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if pov_labels:
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if "right side" in direction:
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return f"{subject} is in right-side profile; {midground} run behind {pronoun} toward {background}, with coworking details kept at the frame edges"
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if "left side" in direction:
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return f"{subject} is in left-side profile; {midground} run behind {pronoun} toward {background}, with coworking details kept at the frame edges"
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if "back-right" in direction or "back-left" in direction:
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return f"{subject} stays close in one continuous diagonal first-person body angle; {midground} lead toward {background} behind {pronoun} at the edges, not in the lower foreground"
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if direction == "back view":
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return f"the viewer looks past {subject}'s back toward {midground}, then into {background}; only POV body cues sit low in frame"
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if "front-right" in direction or "front-left" in direction:
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return f"{subject} fills the first-person front-quarter view; {midground} recede diagonally behind {pronoun} toward {background}"
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return f"{subject} faces the viewer in first-person view; {midground} and {background} stay behind {pronoun}, not between viewer and body"
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if "right side" in direction or "left side" in direction:
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return f"{subject} is held in side profile along the {foreground}; {midground} run laterally behind {pronoun}, with {background} still readable"
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if "back-right" in direction or "back-left" in direction:
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return f"{subject} is viewed from a rear-quarter angle, partly turning back toward camera; the {foreground} stays low in frame while {midground} lead into {background}"
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if direction == "back view":
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return f"{subject} is seen from behind with the {foreground} at camera side, facing into {midground} and {background}"
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if "front-right" in direction or "front-left" in direction:
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return f"{subject} is placed beside the {foreground}; {midground} recede diagonally behind {pronoun} toward {background}"
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return f"{subject} faces camera beside the {foreground}; {midground} sit between {pronoun} and {background}"
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def coworking_distance_detail(
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distance: str,
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profile: dict[str, str],
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subject_kind: str,
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pov_labels: list[str] | None = None,
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) -> str:
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distance = str(distance or "").strip().lower()
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subject, _pronoun = coworking_subject_terms(subject_kind, pov_labels)
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if pov_labels:
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if "wide" in distance or "full-body" in distance or "full body" in distance:
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return f"wide POV keeps {subject} readable with coworking context behind them"
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if "close" in distance:
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return f"close POV keeps {subject} dominant with coworking context only at the sides or background"
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return f"medium POV keeps {subject} dominant with room context behind them"
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if "wide" in distance or "full-body" in distance or "full body" in distance:
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return "wide crop keeps floor aisle, table rows, and window depth readable"
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if "close" in distance:
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return "close crop keeps one desk or counter anchor visible"
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return f"medium crop keeps {subject} dominant"
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def coworking_elevation_detail(
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elevation: str,
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profile: dict[str, str],
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subject_kind: str,
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pov_labels: list[str] | None = None,
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) -> str:
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elevation = str(elevation or "").strip().lower()
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subject, pronoun = coworking_subject_terms(subject_kind, pov_labels)
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if pov_labels:
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if "low-angle" in elevation:
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return f"low angle keeps POV body cues low while windows and partition lines rise behind {pronoun}"
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if "elevated" in elevation:
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return f"elevated POV keeps the viewer's eye line slightly higher than {subject}, with tabletop and glass lines only behind or at the side edges"
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if "high-angle" in elevation:
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return f"high angle looks down from the viewer's position with desks and aisle only in the background"
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return f"eye-level angle keeps tabletop lines and glass seams behind {pronoun}"
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if "low-angle" in elevation:
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return f"low angle keeps the foreground desk edge low while windows and partitions rise behind {pronoun}"
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if "elevated" in elevation:
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return f"elevated angle shows tabletop surfaces, laptop shapes, chairs, and walking aisle around {pronoun}"
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if "high-angle" in elevation:
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return f"high angle shows the desk grid, chairs, floor aisle, and placement of {pronoun}"
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return f"eye-level angle keeps tabletop lines and glass seams straight"
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def coworking_camera_scene_directive(
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scene_text: Any,
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parsed: dict[str, Any],
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pov_labels: list[str] | None = None,
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subject_kind: str = "subjects",
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compact_labels: Mapping[str, str] | None = None,
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) -> str:
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if not is_coworking_scene(scene_text):
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return ""
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direction = str(parsed.get("orbit_direction") or "").strip()
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elevation = str(parsed.get("orbit_elevation_label") or "").strip()
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distance = str(parsed.get("orbit_distance_label") or "").strip()
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custom_prompt = str(parsed.get("custom_camera_prompt") or "").strip()
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direction = direction or camera_direction_from_text(custom_prompt)
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elevation = elevation or camera_elevation_from_text(custom_prompt)
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distance = distance or camera_distance_from_text(custom_prompt)
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if not any((direction, elevation, distance, custom_prompt)):
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return ""
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profile = coworking_location_profile(scene_text)
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direction_detail = coworking_direction_detail(direction, profile, pov_labels, subject_kind)
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distance_detail = coworking_distance_detail(distance, profile, subject_kind, pov_labels)
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elevation_detail = coworking_elevation_detail(elevation, profile, subject_kind, pov_labels)
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if pov_labels:
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return (
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f"{profile['layout_label']} from POV: {direction_detail}. "
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f"{distance_detail}; {elevation_detail}; use the multiangle camera only as first-person spatial geometry."
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)
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geometry = camera_geometry_phrase(parsed, compact_labels)
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geometry_clause = f" ({geometry})" if geometry else ""
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return (
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f"{profile['layout_label']}{geometry_clause}: {direction_detail}; "
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f"{distance_detail}; {elevation_detail}."
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)
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def coworking_composition_prompt(scene_text: Any, composition: Any, subject_kind: str = "subjects") -> str:
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text = str(composition or "").strip()
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if not text or not is_coworking_scene(scene_text):
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return text
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lower = text.lower()
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if not any(term in lower for term in ("office-lobby", "office lobby", "walking composition", "outfit-check")):
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return text
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subject, _pronoun = coworking_subject_terms(subject_kind)
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if subject_kind == "woman":
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return "coworking lounge selfie frame with the woman near a desk edge and tall-window depth behind her"
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if subject_kind == "man":
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return "coworking lounge portrait frame with the man near a desk edge and tall-window depth behind him"
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return f"coworking lounge frame with {subject} near a desk edge and tall-window depth behind them"
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def camera_scene_directive_for_context(
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scene_text: Any,
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parsed_camera_config: dict[str, Any],
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pov_labels: list[str] | None = None,
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subject_kind: str = "subjects",
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compact_labels: Mapping[str, str] | None = None,
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) -> str:
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if (
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parsed_camera_config.get("camera_detail") == "off"
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or parsed_camera_config.get("camera_mode") == "disabled"
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):
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return ""
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return coworking_camera_scene_directive(
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scene_text,
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parsed_camera_config,
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pov_labels,
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subject_kind,
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compact_labels,
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)
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