Compare commits
2 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| cf40a19b4e | |||
| 5d7c77db91 |
@@ -0,0 +1,9 @@
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#!/bin/sh
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./gnommo.sh -p video1 all --force --prod
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./gnommo.sh -p video2 all --force --prod
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./gnommo.sh -p video3 all --force --prod
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#./gnommo.sh -p video4 all --force
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#./gnommo.sh -p video5 all --force
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#./gnommo.sh -p video6 all --force
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@@ -5,7 +5,6 @@
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"footer": "Subscribe for more tutorials!\nTwitter: @example",
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"resolution": [1920, 1080],
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"fps": 30,
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"gnommo_scratch": null,
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"defaultSlideType": "fullscreen",
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"keynote_file": "media/example.key",
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"transcript": "media/videos/talking_head.transcript.json",
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+58
-2
@@ -2394,6 +2394,57 @@ def _parse_slide_range(slides_arg: str) -> tuple[str, Optional[str]]:
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return start_slide, end_slide
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def _project_markers_to_videos(
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markers: list[str], videos_json_path: Path, config
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) -> None:
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"""ETL: project shorthand marker semantics into videos.json.
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Scans the manuscript marker list for shorthand prefixes (vft:, vfb:, vst:,
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vsb:, vf2t:, vf2b: and their pause variants) and writes the implied cutout
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and layer values directly into videos.json. This runs before parse_videos
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so the render pass reads already-projected data and needs no shorthand logic.
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The manuscript is the authoritative source: the LAST shorthand reference to
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a given video_id wins, matching what a human editor would expect when they
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change a marker near the end of the script.
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"""
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if not videos_json_path.exists():
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return
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from .transformer import _SHORTHAND_PREFIXES # (cutout, layer) lookup table
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# Build projection: video_id → {cutout, layer}
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projection: dict[str, dict] = {}
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for marker in markers:
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for prefix, implied in _SHORTHAND_PREFIXES.items():
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if marker.startswith(prefix):
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video_id = marker[len(prefix):]
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cutout, layer = implied[0], implied[1]
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projection[video_id] = {"cutout": cutout, "layer": layer}
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break
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if not projection:
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return
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with open(videos_json_path, "r", encoding="utf-8") as f:
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raw = json.load(f)
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changed = False
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for video_id, fields in projection.items():
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if video_id not in raw:
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continue
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for field, value in fields.items():
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if raw[video_id].get(field) != value:
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raw[video_id][field] = value
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changed = True
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if changed:
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with open(videos_json_path, "w", encoding="utf-8") as f:
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json.dump(raw, f, indent=2, ensure_ascii=False)
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updated = [vid for vid in projection if vid in raw]
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print(f" Projected marker semantics → videos.json: {', '.join(updated)}")
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def _writeback_video_metadata(plan, project_path, config) -> None:
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"""Write back cutout/layer derived from shorthand markers to videos.json.
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@@ -2586,6 +2637,12 @@ def cmd_render(
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save_citations(citations, citations_path)
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config = parse_project_config(project_path)
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# ETL: project shorthand marker semantics (cutout/layer) into videos.json
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# before parse_videos reads it, so the render pass is purely data-driven.
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_project_markers_to_videos(
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markers, project_path / config.videos_path, config
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)
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# Override resolution for preview modes
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if res != "full":
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cfg = RES_CONFIGS[res]
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@@ -2732,8 +2789,7 @@ def cmd_render(
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if plan.time_offset > 0:
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print(f" Time offset: {plan.time_offset:.1f}s (partial render)")
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# Persist shorthand-derived cutout/layer back to videos.json (idempotent)
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_writeback_video_metadata(plan, project_path, config)
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# Print detailed render plan with alignment info
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_print_render_plan_details(plan, marker_timings, slides)
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@@ -260,7 +260,6 @@ def parse_project_config(project_path: Path) -> ProjectConfig:
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audio_path=data.get("audio", "audio.json"),
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audio_source=data.get("audio_source"),
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main_video=data.get("main_video"),
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gnommo_scratch=data.get("gnommo_scratch"),
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process_cache=data.get("process_cache"),
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default_begin=float(data.get("default_begin", 0.0)),
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default_end_trim=float(data.get("default_end_trim", 0.0)),
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+36
-55
@@ -814,10 +814,10 @@ def build_filter_complex(
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Layer structure (bottom to top):
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- Layer 1: Background (solid color, image, or video)
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- Layer 2: "below" triggered videos (vfb/vsb) — behind talking head
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- Layer 3: Always visible videos (like talking head) in cutouts
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- Layer 4: Slides (with time-based enable)
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- Layer 5: "above" triggered videos (vft/vst) — in front of slides
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- Layer 2: "below" triggered videos (vfb/vf2b/vsb) — behind slides, use with slide on top to mask
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- Layer 3: Slides (transparent in talking-head cutout area)
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- Layer 4: Always visible videos (talking head) — above slides, visible through cutout
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- Layer 5: "above" triggered videos (vft/vf2t/vst) — topmost, covers everything including talking head
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- Layer 6: Camera transform
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- Layer 7: Outro videos (fullscreen, after narration ends)
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- Audio: Main audio mixed with triggered sound effects and outro audio
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@@ -846,8 +846,7 @@ def build_filter_complex(
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current_label = "bg"
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# Add "below" triggered video overlays (vfb/vsb) BEFORE the talking head
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# so they sit behind it in the composite stack.
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# Layer 2: "below" triggered video overlays (vfb/vsb) — behind slides and talking head
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for i, event in enumerate(plan.video_events):
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if event.layer != "below":
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continue
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@@ -884,23 +883,37 @@ def build_filter_complex(
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)
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current_label = next_label
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# Overlay always_visible videos (like talking head)
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# If there are narration pauses, we need to segment the video
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# Layer 3: Slides (transparent in the talking-head cutout area)
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for i, event in enumerate(plan.slide_events):
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slide_idx = slide_inputs[event.slide_id]
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slide_label = f"s{i}"
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filters.append(
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f"[{slide_idx}:v]scale={width}:{height}:"
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f"force_original_aspect_ratio=decrease,pad={width}:{height}:(ow-iw)/2:(oh-ih)/2:color=0x00000000[{slide_label}]"
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)
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next_label = f"sbase{i}"
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enable_expr = f"between(t\\,{event.start_time:.3f}\\,{event.end_time:.3f})"
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filters.append(
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f"[{current_label}][{slide_label}]overlay="
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f"x=0:y=0:enable={enable_expr}"
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f"[{next_label}]"
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)
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current_label = next_label
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# Layer 4: Always-visible videos (talking head) — above slides, visible through cutout
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for i, (video_id, video_source, cutout) in enumerate(plan.narration_videos):
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input_idx = always_visible_inputs[i]
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cut_x, cut_y, cut_width, cut_height = _calculate_cutout_position(
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cutout, width, height
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)
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# Apply zoom factor to cutout dimensions
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zoom = video_source.zoom
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zoomed_width = int(cut_width * zoom)
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zoomed_height = int(cut_height * zoom)
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if not plan.narration_pauses:
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# Simple case: no pauses, continuous overlay
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# fps+setpts normalise the source to a constant frame rate and reset
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# the timeline to 0 so the video stays locked to the audio track.
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video_label = f"av{i}"
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filters.append(
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f"[{input_idx}:v]fps={plan.config.fps},setpts=PTS-STARTPTS,"
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@@ -916,18 +929,12 @@ def build_filter_complex(
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)
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current_label = next_label
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else:
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# Complex case: narration pauses - segment the video
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# Each segment is trimmed from source and positioned in output timeline
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segments = _build_narration_segments(
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plan.narration_pauses, plan.total_duration
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)
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for seg_idx, (src_start, src_end, out_start, out_end) in enumerate(
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segments
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):
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for seg_idx, (src_start, src_end, out_start, out_end) in enumerate(segments):
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seg_label = f"av{i}_seg{seg_idx}"
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# Trim to source range, then shift PTS to output position
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# setpts=PTS-STARTPTS puts segment at 0, then +offset/TB shifts to output time
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pts_offset = out_start
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filters.append(
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f"[{input_idx}:v]trim={src_start:.3f}:{src_end:.3f},"
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@@ -938,7 +945,6 @@ def build_filter_complex(
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f"format=rgba[{seg_label}]"
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)
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# Overlay with enable for this segment's output time range
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next_label = f"avbase{i}_seg{seg_idx}"
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enable_expr = f"between(t\\,{out_start:.3f}\\,{out_end:.3f})"
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filters.append(
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@@ -947,29 +953,8 @@ def build_filter_complex(
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)
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current_label = next_label
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# Add slide overlays with time-based enable
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for i, event in enumerate(plan.slide_events):
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slide_idx = slide_inputs[event.slide_id]
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# Scale slide to full frame size (transparent areas show through)
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slide_label = f"s{i}"
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filters.append(
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f"[{slide_idx}:v]scale={width}:{height}:"
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f"force_original_aspect_ratio=decrease,pad={width}:{height}:(ow-iw)/2:(oh-ih)/2:color=0x00000000[{slide_label}]"
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)
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# Overlay at 0,0 (full frame) with time-based enable
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next_label = f"sbase{i}"
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enable_expr = f"between(t\\,{event.start_time:.3f}\\,{event.end_time:.3f})"
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filters.append(
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f"[{current_label}][{slide_label}]overlay="
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f"x=0:y=0:enable={enable_expr}"
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f"[{next_label}]"
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)
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current_label = next_label
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# Add "above-slides" triggered video overlays (vft/vst or layer="above")
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# Layer 5: "above" triggered videos (vft/vf2t/vst) — topmost, covers slides and talking head
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# Use case: fullscreen video that intentionally masks the narrator
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for i, event in enumerate(plan.video_events):
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if event.layer != "above":
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continue
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@@ -978,22 +963,15 @@ def build_filter_complex(
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event.cutout, width, height
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)
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# Calculate effective end time (respecting 'take' parameter)
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duration = event.end_time - event.start_time
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if event.video_source.take is not None:
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duration = min(duration, event.video_source.take)
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effective_end = event.start_time + duration
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# Apply zoom factor to cutout dimensions
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zoom = event.video_source.zoom
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zoomed_width = int(cut_width * zoom)
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zoomed_height = int(cut_height * zoom)
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# Scale to cover the zoomed area (like CSS object-fit: cover)
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# Then crop to cutout dimensions (centered)
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# Use setpts to sync video start with overlay enable time
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# IMPORTANT: convert to rgba FIRST (before scale/crop) so the alpha channel
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# is preserved throughout. scale in yuva444p10le can silently strip alpha.
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video_label = f"tv{i}"
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start_pts = event.start_time
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filters.append(
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@@ -1004,8 +982,6 @@ def build_filter_complex(
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f"[{video_label}]"
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)
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# Overlay with time-based enable; format=auto lets FFmpeg pick the right
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# compositing format so the RGBA alpha channel is respected.
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next_label = f"tvbase{i}"
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enable_expr = f"between(t\\,{event.start_time:.3f}\\,{effective_end:.3f})"
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filters.append(
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@@ -1013,7 +989,6 @@ def build_filter_complex(
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f"x={cut_x}:y={cut_y}:enable={enable_expr}:format=auto"
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f"[{next_label}]"
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)
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current_label = next_label
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# Scene composition complete - now apply camera transform
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@@ -1279,10 +1254,13 @@ def build_filter_complex(
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delay_ms = int(event.start_time * 1000)
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label = f"tvaud{i}"
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vol = event.video_source.volume
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vol_filter = f",volume={vol:.2f}" if vol != 1.0 else ""
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filters.append(
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f"[{video_idx}:a]atrim=0:{duration:.3f},"
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f"asetpts=PTS-STARTPTS,"
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f"adelay={delay_ms}|{delay_ms}[{label}]"
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f"adelay={delay_ms}|{delay_ms}"
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f"{vol_filter}[{label}]"
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)
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audio_labels_to_mix.append(f"[{label}]")
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@@ -1298,10 +1276,13 @@ def build_filter_complex(
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delay_ms = int(event.start_time * 1000)
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label = f"outroaud{i}"
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vol = event.video_source.volume
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vol_filter = f",volume={vol:.2f}" if vol != 1.0 else ""
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filters.append(
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f"[{video_idx}:a]atrim=0:{duration:.3f},"
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f"asetpts=PTS-STARTPTS,"
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f"adelay={delay_ms}|{delay_ms}[{label}]"
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f"adelay={delay_ms}|{delay_ms}"
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f"{vol_filter}[{label}]"
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)
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audio_labels_to_mix.append(f"[{label}]")
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+49
-64
@@ -28,6 +28,26 @@ from .transcriber import TranscribedWord
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# Audio trigger offset: play sound this many seconds before the marker
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AUDIO_OFFSET_SECONDS = 1.0
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# Shorthand marker prefix → (cutout_name, layer).
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# These are the ETL source-of-truth: when a manuscript contains [vft:X],
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# that projects cutout="fullscreen" and layer="above" into videos.json for X.
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# The pause-variant entries (vftp: etc.) carry a third element "pause_narration"
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# which is a per-event property, not stored in videos.json.
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_SHORTHAND_PREFIXES: dict[str, tuple] = {
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"vft:": ("fullscreen", "above"),
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"vfb:": ("fullscreen", "below"),
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"vf2t:": ("fullscreen2", "above"),
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"vf2b:": ("fullscreen2", "below"),
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"vst:": ("square", "above"),
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"vsb:": ("square", "below"),
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"vftp:": ("fullscreen", "above"),
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"vfbp:": ("fullscreen", "below"),
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"vf2tp:": ("fullscreen2", "above"),
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"vf2bp:": ("fullscreen2", "below"),
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"vstp:": ("square", "above"),
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"vsbp:": ("square", "below"),
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}
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@dataclass
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class MarkerTiming:
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@@ -961,26 +981,14 @@ def _extract_video_events(
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]
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)
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# Mapping from shorthand marker prefix → (implied_cutout_name, implied_layer)
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# These are the defaults; videos.json values act as a base but the marker wins.
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_SHORTHAND: dict[str, tuple[str, str]] = {
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"vft:": ("fullscreen", "above"),
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"vfb:": ("fullscreen", "below"),
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"vf2t:": ("fullscreen2", "above"),
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"vf2b:": ("fullscreen2", "below"),
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"vst:": ("square", "above"),
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"vsb:": ("square", "below"),
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"vftp:": ("fullscreen", "above", "pause_narration"),
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"vfbp:": ("fullscreen", "below", "pause_narration"),
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"vf2tp:": ("fullscreen2", "above", "pause_narration"),
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"vf2bp:": ("fullscreen2", "below", "pause_narration"),
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"vstp:": ("square", "above", "pause_narration"),
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"vsbp:": ("square", "below", "pause_narration"),
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}
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# Pause-variant prefixes — the only thing the render pass still needs from
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# shorthand markers at event-build time (pause_narration is per-event, not stored in videos.json).
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_PAUSE_PREFIXES = {"vftp:", "vfbp:", "vf2tp:", "vf2bp:", "vstp:", "vsbp:"}
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# Collect video markers: (time, video_id, event_type, cutout_name_override, layer_override)
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# event_type is "video" (ends at next slide) or "narration" (runs to end)
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video_markers: list[tuple[float, str, str, str | None, str | None]] = []
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# Collect video markers: (time, video_id, event_type, pause_narration)
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# video_markers: (timestamp, video_id, marker_type, pause_narration)
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# cutout and layer are read from videos.json (projected there by _project_markers_to_videos)
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video_markers: list[tuple[float, str, str, bool]] = []
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for timing in marker_timings:
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if timing.timestamp < 0:
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@@ -988,26 +996,26 @@ def _extract_video_events(
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mid = timing.marker_id
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# --- shorthand markers: vft/vfb/vst/vsb ---
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shorthand_match = next((p for p in _SHORTHAND if mid.startswith(p)), None)
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# --- shorthand markers (vft:/vfb:/vst:/vsb: and pause variants) ---
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shorthand_match = next((p for p in _SHORTHAND_PREFIXES if mid.startswith(p)), None)
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if shorthand_match:
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video_id = mid[len(shorthand_match) :]
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video_id = mid[len(shorthand_match):]
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if video_id not in videos:
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warnings.append(
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f"[{mid}] references unknown video '{video_id}' — skipped. "
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f"Add it to videos.json or remove the marker."
|
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)
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continue
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implied_cutout, implied_layer = _SHORTHAND[shorthand_match]
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if implied_cutout not in cutouts:
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# Validate that videos.json has the correct cutout (written by ETL)
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video_source = videos[video_id]
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if not video_source.cutout or video_source.cutout not in cutouts:
|
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warnings.append(
|
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f"[{mid}] requires cutout '{implied_cutout}' which is not defined in project config — skipped. "
|
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f"Available cutouts: {list(cutouts.keys())}"
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f"[{mid}] video '{video_id}' has no valid cutout in videos.json — "
|
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f"run render once to project values, or set cutout manually."
|
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)
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continue
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video_markers.append(
|
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(timing.timestamp, video_id, "video", implied_cutout, implied_layer)
|
||||
)
|
||||
pause_narration = shorthand_match in _PAUSE_PREFIXES
|
||||
video_markers.append((timing.timestamp, video_id, "video", pause_narration))
|
||||
continue
|
||||
|
||||
# --- legacy [video:xxx] ---
|
||||
@@ -1015,23 +1023,16 @@ def _extract_video_events(
|
||||
video_id = mid[6:]
|
||||
if video_id not in videos:
|
||||
warnings.append(
|
||||
f"[video:{video_id}] references unknown video '{video_id}' — skipped. "
|
||||
f"Add it to videos.json or remove the marker."
|
||||
f"[video:{video_id}] references unknown video '{video_id}' — skipped."
|
||||
)
|
||||
continue
|
||||
video_source = videos[video_id]
|
||||
if not video_source.cutout:
|
||||
if not video_source.cutout or video_source.cutout not in cutouts:
|
||||
warnings.append(
|
||||
f"[video:{video_id}] has no 'cutout' set in videos.json — skipped."
|
||||
f"[video:{video_id}] has no valid cutout in videos.json — skipped."
|
||||
)
|
||||
continue
|
||||
if video_source.cutout not in cutouts:
|
||||
warnings.append(
|
||||
f"[video:{video_id}] cutout '{video_source.cutout}' is not defined in project config — skipped. "
|
||||
f"Available: {list(cutouts.keys())}"
|
||||
)
|
||||
continue
|
||||
video_markers.append((timing.timestamp, video_id, "video", None, None))
|
||||
video_markers.append((timing.timestamp, video_id, "video", False))
|
||||
continue
|
||||
|
||||
# --- [narration:xxx] ---
|
||||
@@ -1039,41 +1040,25 @@ def _extract_video_events(
|
||||
video_id = mid[10:]
|
||||
if video_id not in videos:
|
||||
warnings.append(
|
||||
f"[narration:{video_id}] references unknown video '{video_id}' — skipped. "
|
||||
f"Add it to videos.json or remove the marker."
|
||||
f"[narration:{video_id}] references unknown video '{video_id}' — skipped."
|
||||
)
|
||||
continue
|
||||
video_source = videos[video_id]
|
||||
if not video_source.cutout:
|
||||
if not video_source.cutout or video_source.cutout not in cutouts:
|
||||
warnings.append(
|
||||
f"[narration:{video_id}] has no 'cutout' set in videos.json — skipped."
|
||||
f"[narration:{video_id}] has no valid cutout in videos.json — skipped."
|
||||
)
|
||||
continue
|
||||
if video_source.cutout not in cutouts:
|
||||
warnings.append(
|
||||
f"[narration:{video_id}] cutout '{video_source.cutout}' is not defined in project config — skipped. "
|
||||
f"Available: {list(cutouts.keys())}"
|
||||
)
|
||||
continue
|
||||
video_markers.append((timing.timestamp, video_id, "narration", None, None))
|
||||
video_markers.append((timing.timestamp, video_id, "narration", False))
|
||||
|
||||
events: list[VideoEvent] = []
|
||||
for (
|
||||
start_time,
|
||||
video_id,
|
||||
marker_type,
|
||||
cutout_override,
|
||||
layer_override,
|
||||
) in video_markers:
|
||||
for (start_time, video_id, marker_type, pause_narration) in video_markers:
|
||||
video_source = videos[video_id]
|
||||
|
||||
# Resolve cutout: marker override > videos.json cutout
|
||||
# (validation already ensured cutout exists — this is a safety assertion)
|
||||
cutout_name = cutout_override or video_source.cutout
|
||||
# Read cutout and layer directly from videos.json (projected by ETL)
|
||||
cutout_name = video_source.cutout
|
||||
cutout = cutouts[cutout_name]
|
||||
|
||||
# Resolve layer: marker override > videos.json layer
|
||||
layer = layer_override if layer_override is not None else video_source.layer
|
||||
layer = video_source.layer
|
||||
|
||||
end_on = video_source.end_on
|
||||
if end_on == "take" and video_source.take is not None:
|
||||
|
||||
Reference in New Issue
Block a user