241 lines
9.4 KiB
Python
241 lines
9.4 KiB
Python
"""
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.agents/skills/lib_py/layout.py
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Shared 2xK grid TUI layout engine for multi-agent workspaces.
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"""
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from dataclasses import dataclass
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from typing import List, Dict, Optional, Any
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import json
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import sys
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import os
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import argparse
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@dataclass
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class PaneInfo:
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pane_id: str
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x: int
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y: int
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width: int
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height: int
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# NOTE: no `focused` field. The 2xK engine is deliberately geometry- and
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# structure-driven so that identical pane sets always yield identical
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# decisions. Focus is user-interaction state and would make the result
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# non-deterministic; herdr still reports it in the payload if ever needed.
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@dataclass
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class LayoutDecision:
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target_pane_id: str
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direction: str # 'right' | 'down' | 'overflow'
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is_overflow: bool = False
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reason: str = ""
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def extract_panes(data: Dict[str, Any]) -> List[PaneInfo]:
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"""Extracts list of PaneInfo from herdr layout JSON payload.
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Accepts all three shapes herdr 0.8 emits: result.layout.panes,
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result.panes, and a bare top-level panes array.
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"""
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if not isinstance(data, dict):
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return []
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res = data.get("result", {})
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if not isinstance(res, dict):
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res = {}
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layout = res.get("layout", {})
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if isinstance(layout, dict) and "panes" in layout:
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raw_panes = layout.get("panes", [])
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else:
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raw_panes = res.get("panes", []) or data.get("panes", [])
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panes: List[PaneInfo] = []
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for p in raw_panes:
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if not isinstance(p, dict):
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continue
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pid = str(p.get("pane_id", ""))
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rect = p.get("rect", {})
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if not isinstance(rect, dict):
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rect = {}
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x = int(rect.get("x", 0))
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y = int(rect.get("y", 0))
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w = int(rect.get("width", 0))
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h = int(rect.get("height", 0))
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if pid:
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panes.append(PaneInfo(pane_id=pid, x=x, y=y, width=w, height=h))
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return panes
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def compute_2xk_layout(
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data: Dict[str, Any],
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min_cols: int = 40,
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min_rows: int = 20,
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max_columns: Optional[int] = None,
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default_anchor_id: Optional[str] = None
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) -> LayoutDecision:
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"""
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Computes optimal target pane and direction to maintain a balanced 2xK grid.
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Only uses Herdr-supported split directions: 'right' and 'down'.
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"""
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panes = extract_panes(data)
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if not panes:
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# no_panes_default: when herdr returns no panes (empty workspace), default to 'right'
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target = default_anchor_id or ""
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return LayoutDecision(target_pane_id=target, direction="right", is_overflow=False, reason="no_panes_default")
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# If only 1 pane in workspace
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if len(panes) == 1:
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p = panes[0]
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# In 2xK grid, 1 pane -> 2 panes: split down to create top and bottom rows
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# Check height overflow if dimensions known
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if p.height > 0 and p.height // 2 < min_rows:
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# If height is too small for 2 rows, try splitting right if width allows
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if p.width > 0 and p.width // 2 >= min_cols:
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return LayoutDecision(target_pane_id=p.pane_id, direction="right", reason="single_pane_height_constrained")
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elif p.width > 0 and p.width // 2 < min_cols:
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return LayoutDecision(target_pane_id=p.pane_id, direction="overflow", is_overflow=True, reason="single_pane_overflow")
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else:
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return LayoutDecision(target_pane_id=p.pane_id, direction="right", reason="single_pane_height_constrained_unknown_width")
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return LayoutDecision(target_pane_id=p.pane_id, direction="down", reason="single_pane_split_down")
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# Check for Headless mode: all panes have width <= 0 or height <= 0
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is_headless = all(p.width <= 0 or p.height <= 0 for p in panes)
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if is_headless:
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# Headless panes are all 0x0, so columns cannot be counted from geometry
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# the way the GUI path does. The alternation below (odd -> down,
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# even -> right) is what builds the grid, so while that invariant holds
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# the completed-column count is exactly n // 2. If panes were closed and
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# the shape drifted, an odd n is absorbed by the `down` branch and the
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# estimate self-corrects at the next even n.
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n = len(panes)
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anchor = default_anchor_id or panes[-1].pane_id
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if n % 2 == 1:
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# Filling an existing column never opens a new one, so max_columns is
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# deliberately NOT checked here -- this mirrors the GUI path, where
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# `fill_singleton_column` also ignores the cap. max_columns is a
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# growth guard, not an invariant over the existing layout.
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return LayoutDecision(target_pane_id=anchor, direction="down", reason="headless_odd_down")
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current_cols = n // 2
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if max_columns and current_cols >= max_columns:
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return LayoutDecision(target_pane_id=anchor, direction="overflow",
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is_overflow=True, reason="max_columns_reached")
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return LayoutDecision(target_pane_id=anchor, direction="right", reason="headless_even_right")
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# Geometry-aware column grouping
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# Group panes into columns by X coordinate (fuzz threshold 2 cols)
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sorted_by_x = sorted(panes, key=lambda p: (p.x, p.y))
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columns: List[List[PaneInfo]] = []
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for p in sorted_by_x:
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matched_col = False
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for col in columns:
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if abs(col[0].x - p.x) <= 2:
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col.append(p)
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matched_col = True
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break
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if not matched_col:
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columns.append([p])
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# Sort each column's panes by Y coordinate (top to bottom)
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for col in columns:
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col.sort(key=lambda p: p.y)
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num_cols = len(columns)
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# 1. Check for any singleton column (column with only 1 pane spanning full height)
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singleton_col = None
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for col in columns:
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if len(col) == 1:
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singleton_col = col
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break
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if singleton_col is not None:
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target_p = singleton_col[0]
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# Check height
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if target_p.height > 0 and target_p.height // 2 < min_rows:
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return LayoutDecision(target_pane_id=target_p.pane_id, direction="overflow", is_overflow=True, reason="singleton_height_overflow")
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return LayoutDecision(target_pane_id=target_p.pane_id, direction="down", reason="fill_singleton_column")
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# 2. All existing columns have 2 (or more) panes -> we need to start a NEW column to the right
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if max_columns and num_cols >= max_columns:
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return LayoutDecision(target_pane_id=columns[-1][0].pane_id, direction="overflow", is_overflow=True, reason="max_columns_reached")
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# Target the top pane of the rightmost column to split right
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rightmost_top_pane = columns[-1][0]
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# Check width constraint on the rightmost column
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if rightmost_top_pane.width > 0 and rightmost_top_pane.width // 2 < min_cols:
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return LayoutDecision(target_pane_id=rightmost_top_pane.pane_id, direction="overflow", is_overflow=True, reason="column_width_overflow")
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return LayoutDecision(target_pane_id=rightmost_top_pane.pane_id, direction="right", reason="new_column_right")
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def _env_int(*names: str, default: Optional[int] = None) -> Optional[int]:
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"""First *valid* int among the env vars in *names*, else `default`.
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`default` is an explicit parameter rather than an `or` at the call site so a
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legitimate 0 survives (MAM_MIN_PANE_COLS=0 means 0, not the 40 default).
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An unparsable value is skipped rather than raised or treated as terminal: a
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typo in an operator's shell must not take the whole layout call down (lib.sh
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would silently fall back to 'right'), and must not shadow a later candidate
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that IS set correctly -- MAM_MIN_COLS is a legacy alias while
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MAM_MIN_PANE_COLS is the name .mam.env.example documents, so aborting on the
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first bad value would discard the documented setting. Empty values already
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fell through; this makes invalid values behave the same way.
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"""
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for n in names:
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raw = os.environ.get(n, "").strip()
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if raw:
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try:
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return int(raw)
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except ValueError:
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continue
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return default
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def main():
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parser = argparse.ArgumentParser(description="Compute 2xK grid TUI layout split direction")
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parser.add_argument("--min-cols", type=int, default=_env_int("MAM_MIN_COLS", "MAM_MIN_PANE_COLS", default=40))
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parser.add_argument("--min-rows", type=int, default=_env_int("MAM_MIN_ROWS", "MAM_MIN_PANE_ROWS", default=20))
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parser.add_argument("--max-cols", type=int, default=_env_int("MAM_MAX_COLS", "MAM_MAX_PANE_COLS"))
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parser.add_argument("--sample-pane", type=str, default=None)
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parser.add_argument("--json", action="store_true", help="Output full JSON decision")
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args = parser.parse_args()
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raw_input = sys.stdin.read().strip()
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data = {}
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if raw_input:
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try:
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data = json.loads(raw_input)
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except Exception:
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data = {}
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decision = compute_2xk_layout(
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data=data,
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min_cols=args.min_cols,
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min_rows=args.min_rows,
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max_columns=args.max_cols,
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default_anchor_id=args.sample_pane
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)
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if args.json:
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print(json.dumps({
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"target_pane_id": decision.target_pane_id,
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"direction": decision.direction,
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"is_overflow": decision.is_overflow,
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"reason": decision.reason
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}))
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else:
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if decision.target_pane_id:
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print(f"{decision.direction} {decision.target_pane_id}")
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else:
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print(decision.direction)
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if __name__ == "__main__":
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main()
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