Creates a dedicated folder for each video and does not depend on ffmpeg, just
like the EXRWriter (but supporting all MC versions).
Also does 32 bit depth export by chunking the 32-bit float into the 8-bit BGRA
component channels.
That is, most of the business code should not be aware that it is being compiled
to multiple versions even when it heavily interacts with MC, preprocessor
statements should be an escape hatch, not the norm.
Similarly, code should not be forced to do `MCVer.getWindow(mc)` instead of the
much more intuitive `mc.getWindow()`, and a new preprocessor (technically remap)
feature makes this possible by defining "search and replace"-like patterns (but
smarter in that they are type-aware) in one or more central places (the
"Patterns.java" files) which then are applied all over the code base.
In a way, this is another step in the automatic back-porting process where
preprocessor statements are used when we cannot yet do something automatically.
Previously we "merely" automatically converted between different mapping, this
new feature now also allows us to automatically perform simple refactoring
tasks like changing field access to a getter+setter (e.g. `mc.getWindow()`), or
changing how a method is called (e.g. `BufferBuilder.begin`), or changing a
method call chain (e.g. `dispatcher.camera.getYaw()`), or most other
search-and-replace-like changes and any combination of those.
The only major limitation is that the replacement itself is not smart, so
arguments must be kept in same order (or be temporarily assigned to local
variables which then can be used in any order).
For one, we have already switched to RGBA some time ago, so the name was
technically incorrect already.
But the main reason is that we'll want to use them for depth maps as well (and
potentially maybe even for HDR images if that's possible with canvas?).
Basically the result of the Delombok function, except we use IntelliJ's equals,
hashCode and toString and don't re-organize imports (cause that breaks the
preprocessor) and a bunch of manual cleanup was necessary (and half the classes
weren't even converted).
The fetching of the ticks variable was accidentally moved to before the timer
update while updating to 1.16, this caused the interpolation to be off by one
tick each frame in which the timer advances to the next tick.
This used to be more of an issue in the past but `displaySizeChanged` has gotten
pretty cheap by now and not updating it will basically make the rendering GUI
useless once you resize even once.
The task queue is executed by MC each frame, not just each tick, so we should do
so as well. Most async actions also rely on it to re-synchronize with the
rendering thread, e.g. skins won't load if we never poll the task queue.
They ended up lingering around and breaking any further blocking operations,
resulting in random errors afterwards. And using them was really unnecessary
anyway.