adaptivegrain/src/mask.rs

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use super::PLUGIN_NAME;
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use failure::Error;
use std::fmt::Debug;
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use vapoursynth::api::API;
use vapoursynth::core::CoreRef;
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use vapoursynth::format::ColorFamily;
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use vapoursynth::frame::{FrameRef, FrameRefMut};
use vapoursynth::node::Node;
use vapoursynth::plugins::{Filter, FrameContext};
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use vapoursynth::video_info::{Property, VideoInfo};
use std::hint::unreachable_unchecked;
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pub struct Mask<'core> {
pub source: Node<'core>,
pub luma_scaling: f32,
}
lazy_static! {
static ref FLOAT_RANGE: Vec<f32> = {
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[0f32; 1000]
.iter()
.enumerate()
.map(|(i, _f)| (i as f32) * 0.001)
.collect::<Vec<_>>()
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};
}
#[inline]
fn get_mask_value(x: f32, y: f32, luma_scaling: f32) -> f32 {
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f32::powf(
1.0 - (x * (1.124 + x * (-9.466 + x * (36.624 + x * (-45.47 + x * 18.188))))),
(y * y) * luma_scaling,
)
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}
#[inline]
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fn from_property<T: Debug + Clone + Copy + Eq + PartialEq>(prop: Property<T>) -> T {
match prop {
Property::Constant(p) => p,
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Property::Variable => unreachable!(),
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}
}
impl<'core> Filter<'core> for Mask<'core> {
fn video_info(&self, _api: API, _core: CoreRef<'core>) -> Vec<VideoInfo<'core>> {
let info = self.source.info();
let format = match info.format {
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Property::Variable => unreachable!(),
Property::Constant(format) => format,
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};
vec![VideoInfo {
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format: Property::Constant(
_core
.register_format(
ColorFamily::Gray,
format.sample_type(),
format.bits_per_sample(),
0,
0,
)
.unwrap(),
),
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flags: info.flags,
framerate: info.framerate,
num_frames: info.num_frames,
resolution: info.resolution,
}]
}
fn get_frame_initial(
&self,
_api: API,
_core: CoreRef<'core>,
context: FrameContext,
n: usize,
) -> Result<Option<FrameRef<'core>>, Error> {
self.source.request_frame_filter(context, n);
Ok(None)
}
fn get_frame(
&self,
_api: API,
core: CoreRef<'core>,
context: FrameContext,
n: usize,
) -> Result<FrameRef<'core>, Error> {
let new_format = from_property(self.video_info(_api, core)[0].format);
let mut frame = unsafe {
FrameRefMut::new_uninitialized(
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core,
None,
new_format,
from_property(self.source.info().resolution),
)
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};
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let src_frame = self.source.get_frame_filter(context, n).ok_or_else(|| {
format_err!("Could not retrieve source frame. This shouldn’t happen.")
})?;
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let average = match src_frame.props().get::<f64>("PlaneStatsAverage") {
Ok(average) => average as f32,
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Err(_) => panic!(format!(
"{}: you need to run std.PlaneStats on the clip before calling this function.",
PLUGIN_NAME
)),
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};
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let lut: Vec<f32> = FLOAT_RANGE
.iter()
.map(|x| get_mask_value(*x, average, self.luma_scaling))
.collect();
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for row in 0..frame.height(0) {
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for (pixel, src_pixel) in frame
.plane_row_mut::<f32>(0, row)
.iter_mut()
.zip(src_frame.plane_row::<f32>(0, row).iter())
{
*pixel = lut[(src_pixel * 1000f32) as usize];
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}
}
Ok(frame.into())
}
}