forked from genewildish/Mainline
feat(figment): add render_figment_overlay() to layers.py
Implements phase-aware (REVEAL/HOLD/DISSOLVE) ANSI cursor-positioning overlay renderer for figment glyphs, with deterministic shuffle seeding and gradient coloring via _color_codes_to_ansi(). Includes 6 TDD tests. Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
This commit is contained in:
100
engine/layers.py
100
engine/layers.py
@@ -258,3 +258,103 @@ def get_effect_chain() -> EffectChain | None:
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if _effect_chain is None:
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init_effects()
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return _effect_chain
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def render_figment_overlay(
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figment_state,
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w: int,
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h: int,
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) -> list[str]:
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"""Render figment overlay as ANSI cursor-positioning commands.
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Args:
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figment_state: FigmentState with phase, progress, rows, gradient, centering.
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w: terminal width
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h: terminal height
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Returns:
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List of ANSI strings to append to display buffer.
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"""
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from engine.render import _color_codes_to_ansi
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rows = figment_state.rows
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if not rows:
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return []
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phase = figment_state.phase
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progress = figment_state.progress
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gradient = figment_state.gradient
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center_row = figment_state.center_row
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center_col = figment_state.center_col
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cols = _color_codes_to_ansi(gradient)
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# Build a list of non-space cell positions
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cell_positions = []
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for r_idx, row in enumerate(rows):
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for c_idx, ch in enumerate(row):
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if ch != " ":
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cell_positions.append((r_idx, c_idx))
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n_cells = len(cell_positions)
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if n_cells == 0:
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return []
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# Use a deterministic seed so the reveal/dissolve pattern is stable per-figment
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rng = random.Random(hash(tuple(rows[0][:10])) if rows[0] else 42)
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shuffled = list(cell_positions)
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rng.shuffle(shuffled)
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# Phase-dependent visibility
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from effects_plugins.figment import FigmentPhase
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if phase == FigmentPhase.REVEAL:
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visible_count = int(n_cells * progress)
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visible = set(shuffled[:visible_count])
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elif phase == FigmentPhase.HOLD:
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visible = set(cell_positions)
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# Strobe: dim some cells periodically
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if int(progress * 20) % 3 == 0:
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dim_count = int(n_cells * 0.3)
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visible -= set(shuffled[:dim_count])
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elif phase == FigmentPhase.DISSOLVE:
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remaining_count = int(n_cells * (1.0 - progress))
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visible = set(shuffled[:remaining_count])
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else:
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visible = set(cell_positions)
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# Build overlay commands
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overlay: list[str] = []
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n_cols = len(cols)
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max_x = max((len(r.rstrip()) for r in rows if r.strip()), default=1)
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for r_idx, row in enumerate(rows):
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scr_row = center_row + r_idx + 1 # 1-indexed
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if scr_row < 1 or scr_row > h:
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continue
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line_buf: list[str] = []
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has_content = False
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for c_idx, ch in enumerate(row):
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scr_col = center_col + c_idx + 1
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if scr_col < 1 or scr_col > w:
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continue
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if ch != " " and (r_idx, c_idx) in visible:
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# Apply gradient color
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shifted = (c_idx / max(max_x - 1, 1)) % 1.0
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idx = min(round(shifted * (n_cols - 1)), n_cols - 1)
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line_buf.append(f"{cols[idx]}{ch}{RST}")
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has_content = True
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else:
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line_buf.append(" ")
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if has_content:
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line_str = "".join(line_buf).rstrip()
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if line_str.strip():
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overlay.append(
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f"\033[{scr_row};{center_col + 1}H{line_str}{RST}"
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)
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return overlay
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