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150 lines
4.3 KiB
Rust
150 lines
4.3 KiB
Rust
use crate::LuminanceSource;
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/// A simple luma8 source for bytes, supports cropping but not rotation
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pub struct Luma8LuminanceSource {
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/// image dimension in form (x,y)
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dimensions: (u32, u32),
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/// image origin in the form (x,y)
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origin: (u32, u32),
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/// raw data for luma 8
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data: Vec<u8>,
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/// flag indicating if the underlying data needs to be inverted for use
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inverted: bool,
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/// original dimensions of the data, used to manage crop
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original_dimension: (u32, u32),
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}
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impl LuminanceSource for Luma8LuminanceSource {
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fn getRow(&self, y: usize) -> Vec<u8> {
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self.data
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.chunks_exact(self.original_dimension.0 as usize)
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.skip(y + self.origin.1 as usize)
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.take(1)
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.flatten()
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.skip(self.origin.0 as usize)
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.take(self.dimensions.0 as usize)
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.map(|byte| Self::invert_if_should(*byte, self.inverted))
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.collect()
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}
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fn getMatrix(&self) -> Vec<u8> {
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self.data
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.iter()
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.skip((self.original_dimension.0 * self.origin.1) as usize)
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.take((self.dimensions.1 * self.original_dimension.0) as usize)
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.collect::<Vec<&u8>>()
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.chunks_exact(self.original_dimension.0 as usize)
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.into_iter()
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.flat_map(|f| {
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f.iter()
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.skip((self.origin.0) as usize)
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.take(self.getWidth())
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.copied()
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}) // flatten this all out
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.copied() // copy it over so that it's u8
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.map(|byte| Self::invert_if_should(byte, self.inverted))
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.collect() // collect into a vec
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}
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fn getWidth(&self) -> usize {
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self.dimensions.0 as usize
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}
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fn getHeight(&self) -> usize {
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self.dimensions.1 as usize
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}
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fn invert(&mut self) {
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self.inverted = !self.inverted;
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}
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fn isCropSupported(&self) -> bool {
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true
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}
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fn crop(
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&self,
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left: usize,
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top: usize,
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width: usize,
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height: usize,
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) -> Result<Box<dyn LuminanceSource>, crate::Exceptions> {
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Ok(Box::new(Self {
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dimensions: (width as u32, height as u32),
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origin: (left as u32, top as u32),
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data: self.data.clone(),
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inverted: self.inverted,
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original_dimension: self.original_dimension,
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}))
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}
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fn isRotateSupported(&self) -> bool {
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true
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}
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fn rotateCounterClockwise(&self) -> Result<Box<dyn LuminanceSource>, crate::Exceptions> {
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let mut new_matrix = Self {
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dimensions: self.dimensions,
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origin: self.origin,
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data: self.data.clone(),
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inverted: self.inverted,
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original_dimension: self.original_dimension,
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};
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new_matrix.transpose();
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new_matrix.reverseColumns();
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Ok(Box::new(new_matrix))
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}
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fn rotateCounterClockwise45(&self) -> Result<Box<dyn LuminanceSource>, crate::Exceptions> {
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Err(crate::Exceptions::unsupportedOperationWith(
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"This luminance source does not support rotation by 45 degrees.",
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))
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}
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}
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impl Luma8LuminanceSource {
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fn reverseColumns(&mut self) {
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for i in 0..self.getWidth() {
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let mut j = 0;
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let mut k = self.getWidth() - 1;
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while j < k {
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let offset_a = (self.getWidth() * i) + j;
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let offset_b = (self.getWidth() * i) + k;
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self.data.swap(offset_a, offset_b);
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j += 1;
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k -= 1;
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}
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}
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}
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fn transpose(&mut self) {
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for i in 0..self.getHeight() {
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for j in i..self.getWidth() {
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let offset_a = (self.getWidth() * i) + j;
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let offset_b = (self.getWidth() * j) + i;
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self.data.swap(offset_a, offset_b);
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}
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}
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}
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}
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impl Luma8LuminanceSource {
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pub fn new(source: Vec<u8>, width: u32, height: u32) -> Self {
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Self {
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dimensions: (width, height),
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origin: (0, 0),
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data: source,
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inverted: false,
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original_dimension: (width, height),
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}
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}
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#[inline(always)]
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fn invert_if_should(byte: u8, invert: bool) -> u8 {
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if invert {
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255 - byte
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} else {
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byte
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}
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}
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}
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