The exporter transcodes ADV.wmv and S00A.wmv to Ogg Theora and records the exact ffmpeg command in the manifest, per MISSION §6, so a modder who dislikes the quality re-runs one line rather than reverse-engineering what was done. Quality was MEASURED, not judged: SSIM against the decoded source over a 10 s sample is 0.9863 / 0.9896 / 0.9924 at -q:v 6 / 8 / 10, and at 200 % zoom on the reel's hardest case -- fine serif text and soft gradients over near-black, where Theora breaks first -- q8 is indistinguishable. So MISSION §6's permitted FFmpeg-GDExtension fallback is NOT needed and is NOT being proposed. No new runtime dependency. -ac 2 because the source is 6-channel WMA Pro; that downmix is a decision, so it lives in the recorded command rather than in prose. Encoding is cached on a .cmd sidecar holding the command and the source size -- any change to either re-encodes. export/ is still regenerated wholesale; this is derived state validating derived state, not a hand-edit, and without it every re-export pays ~4 minutes to produce a byte-identical file. The player renders INTO the design SubViewport. Parenting it to the Boot node played the movie to the window instead, and every captured frame came out black -- which is worth more than a capture-bug note: a movie outside the 1280x720 design space is outside the coordinate system every screen is expressed in. (A) skips a movie, because Q9 measured that (title at 57 s vs a 193 s baseline). NOT VERIFIED, and stated as such: audible playback. This container has no audio device and Godot falls back to the dummy driver. The Vorbis stream exists, is 2-channel and decodes; whether Godot emits it is unconfirmed.
274 lines
9.6 KiB
GDScript
274 lines
9.6 KiB
GDScript
# Entry point.
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#
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# P1 shows one exported screen, statically, so that its pixels can be diffed
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# against `sylpheed-cli screen render` of the same build. The boot sequence
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# proper (splash -> intro -> title -> menu) is P3 and is not here.
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#
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# godot --path port -- --screen=main_menu
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# godot --path port -- --screen=main_menu --capture=/tmp/godot.png
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# godot --path port -- --screen=main_menu --time=0.5 --capture=/tmp/at-half.png
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# godot --path port -- --screen=main_menu --pose=rest --capture=/tmp/rest.png
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# godot --path port -- --boot # the whole boot sequence
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# godot --path port -- --boot --film=/tmp/boot # ...and a frame every 0.25 s
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#
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# `--time` is in SECONDS and freezes the timeline there; without it the screen
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# animates in real time from t=0. `--pose=rest` draws the export's declared
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# resting pose instead of the timeline -- what the reference renderer draws, so
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# that a renderer-vs-renderer diff compares like with like.
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#
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# The screen is drawn into a SubViewport sized to the export's own `design`
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# rectangle and shown through a container that scales it to the window. That is
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# the same separation the project settings already make -- design space is
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# fixed, the window is not -- and it makes `--capture` exact: the PNG is the
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# design rectangle itself, never the window, so it is directly comparable with
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# `screen render`'s composite with no cropping or rescaling.
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extends Node
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const DEFAULT_SCREEN := "main_menu"
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var view: ScreenView = null
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var viewport: SubViewport = null
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func _ready() -> void:
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var args := _args()
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var export_tree := ExportTree.locate()
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if export_tree.root == "":
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push_error(export_tree.error)
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get_tree().quit(2)
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return
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_flow = export_tree.authored("flow.json")
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if args.has("boot"):
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if _flow == null:
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push_error(export_tree.error)
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get_tree().quit(2)
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return
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for step: Dictionary in _flow["boot"]:
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_sequence.append(step)
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_film = args.get("film", "")
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var name: String = String(_sequence[0].get("screen", "")) if not _sequence.is_empty() \
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else args.get("screen", DEFAULT_SCREEN)
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if name == "":
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name = DEFAULT_SCREEN # the sequence opens on a video; load something to size the viewport
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var screen: Dictionary = export_tree.screen(name)
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if screen.is_empty():
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push_error(export_tree.error)
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print("screens in this export: ", ", ".join(export_tree.screen_names()))
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get_tree().quit(2)
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return
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var design: Array = screen.get("design", [1280, 720])
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var container := SubViewportContainer.new()
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container.stretch = true
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container.set_anchors_preset(Control.PRESET_FULL_RECT)
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add_child(container)
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viewport = SubViewport.new()
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viewport.size = Vector2i(int(design[0]), int(design[1]))
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viewport.transparent_bg = false
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viewport.render_target_update_mode = SubViewport.UPDATE_ALWAYS
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container.add_child(viewport)
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view = ScreenView.new()
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# The export is a 1:1 copy of the disc's texels and elements are drawn at up
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# to 500 %. Nearest is also what the reference renderer does
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# (`ui_layout::blit` maps destination to source by integer division), so a
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# filter difference cannot masquerade as a placement difference in the diff.
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view.texture_filter = CanvasItem.TEXTURE_FILTER_NEAREST
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view.focused_id = args.get("focus", "")
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if args.get("pose", "") == "rest":
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view.pose_mode = ScreenView.Pose.REST
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# The keyframe unit is MEASURED, not on the disc, so it is authored and read
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# in exactly one place -- here.
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var timing: Variant = export_tree.authored("timing.json")
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if timing == null:
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push_error(export_tree.error)
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get_tree().quit(2)
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return
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view.units_per_second = float(timing["keyframe_units_per_second"])
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# The one unknown duration per screen: the ramp into the final untimed
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# keyframe. Authored, because the disc has no time slot there.
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view.exit_ramp_units = float(timing["exit_ramp_units"])
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viewport.add_child(view)
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if not view.load_screen(export_tree, name):
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push_error(export_tree.error)
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get_tree().quit(2)
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return
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var settle := view.settle_time()
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print("screen %s: %d elements, %d in paint order, design %dx%d, settles at t=%d (%.3f s)" % [
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name, view.screen["elements"].size(), view.screen["paint_order"].size(),
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design[0], design[1], settle, settle / view.units_per_second])
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if args.has("time"):
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_frozen = true
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view.time_units = float(args["time"]) * view.units_per_second
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view.queue_redraw()
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if _film != "":
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set_process(true)
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_film_capture()
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if args.has("capture"):
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await _capture(args["capture"])
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get_tree().quit(0)
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var _frozen := false
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var _flow: Variant = null
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var _sequence: Array[Dictionary] = []
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var _player: VideoStreamPlayer = null
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var _step := 0
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var _film := ""
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var _film_frame := 0
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var _film_next := 0.0
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var _elapsed := 0.0
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var _boot_done := false
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func _process(delta: float) -> void:
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if _frozen or view == null:
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return
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view.time_units += delta * view.units_per_second
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_elapsed += delta
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view.queue_redraw()
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if _sequence.is_empty() or _player != null:
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return
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# A screen holds at `rest` until it has arrived, then plays itself out and
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# the next one begins. Nothing waits on a timer the disc does not carry: the
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# pacing is each group's own timeline (authored/flow.json, `dwell`).
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if view.holding and view.time_units >= view.settle_time():
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# The LAST screen in the sequence keeps holding. A screen plays itself
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# out because something is taking its place; nothing is taking the
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# title's place here, and a boot that ends by fading to black is a boot
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# that looks like it crashed. P4 puts the intro video in front of the
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# title, and P5 gives the title somewhere to go.
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if _step + 1 < _sequence.size():
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view.holding = false
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elif not _boot_done:
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_boot_done = true
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print("boot sequence complete after %.2f s, holding on %s" % [_elapsed, _sequence[_step]])
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if _film == "":
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get_tree().quit(0)
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elif not view.holding and view.time_units >= view.exit_time():
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_advance()
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func _advance() -> void:
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_step += 1
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var next: Dictionary = _sequence[_step]
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if next.has("video"):
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_play_video(String(next["video"]), bool(next.get("skippable", false)))
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return
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var name := String(next["screen"])
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print(" -> %s at %.2f s" % [name, _elapsed])
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view.holding = true
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view.time_units = 0.0
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if not view.load_screen(view.tree, name):
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push_error(view.tree.error)
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get_tree().quit(2)
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## Play one transcoded movie, full-bleed over the screen.
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##
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## The port never reads WMV: the exporter transcoded this to Ogg Theora and
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## recorded the exact ffmpeg command in the manifest (MISSION §6), so a modder
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## who dislikes the quality re-runs one line.
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func _play_video(name: String, skippable: bool) -> void:
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var v := view.tree.video(name)
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if v.is_empty():
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push_error(view.tree.error)
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get_tree().quit(2)
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return
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print(" -> video %s at %.2f s (%s)" % [name, _elapsed, v["path"]])
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var stream := VideoStreamTheora.new()
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stream.file = v["path"]
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_player = VideoStreamPlayer.new()
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_player.stream = stream
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_player.expand = true
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_player.set_anchors_preset(Control.PRESET_FULL_RECT)
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# Into the SubViewport, not beside it. Everything this port draws composes in
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# the export's own 1280x720 design space; a player parented to the Boot node
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# renders to the window instead and is invisible to `--capture`, which reads
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# the SubViewport. That is not only a capture artefact -- it would also put
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# the movie outside the space every screen coordinate is expressed in.
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viewport.add_child(_player)
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_skippable = skippable
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# `play()` needs the node in the tree; calling it before that is an error
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# the engine reports and then ignores, which looks like a video that simply
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# never starts.
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await get_tree().process_frame
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_player.finished.connect(_video_finished)
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_player.play()
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var _skippable := false
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func _video_finished() -> void:
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print(" video ended at %.2f s" % _elapsed)
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_player.queue_free()
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_player = null
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_advance()
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func _unhandled_input(event: InputEvent) -> void:
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# HANDOFF Q9, measured: one (A) press skips a movie -- the title was reached
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# at 57 s against a 193 s baseline. This is the only input the port handles
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# so far; menu navigation is P5.
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if _player == null or not _skippable:
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return
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if event.is_action_pressed("ui_accept") or event.is_action_pressed("ui_cancel"):
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print(" video skipped at %.2f s" % _elapsed)
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_player.stop()
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_video_finished()
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func _capture(path: String) -> void:
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# Two frames: the first is the one this callback is still inside of.
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await RenderingServer.frame_post_draw
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await RenderingServer.frame_post_draw
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var img := viewport.get_texture().get_image()
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print("t = %.2f units (%.3f s), pose = %s" % [
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view.time_units, view.time_units / view.units_per_second,
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"rest" if view.pose_mode == ScreenView.Pose.REST else "timeline"])
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print("drew %d: %s" % [view.drawn.size(), ", ".join(view.drawn)])
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if not view.skipped.is_empty():
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print("not drawn %d: %s" % [view.skipped.size(), ", ".join(view.skipped)])
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var err := img.save_png(path)
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if err != OK:
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push_error("cannot write %s (%d)" % [path, err])
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return
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print("captured %dx%d -> %s" % [img.get_width(), img.get_height(), path])
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## A frame every 0.25 s for the whole run, so an unattended boot leaves a
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## filmstrip behind rather than requiring someone to be watching it.
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func _film_capture() -> void:
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while true:
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await RenderingServer.frame_post_draw
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if _elapsed >= _film_next:
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var img := viewport.get_texture().get_image()
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img.save_png("%s_%03d.png" % [_film, _film_frame])
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_film_frame += 1
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_film_next += 0.25
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# Godot passes everything after `--` through untouched; take `--key=value`.
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static func _args() -> Dictionary:
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var out := {}
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for arg in OS.get_cmdline_user_args():
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if arg.begins_with("--") and arg.contains("="):
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var pair := arg.substr(2).split("=", true, 1)
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out[pair[0]] = pair[1]
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elif arg.begins_with("--"):
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out[arg.substr(2)] = "1"
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return out
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