refactor ResultPoint trait bounds into Into<Point> bounds

This commit is contained in:
Vukašin Stepanović
2023-02-16 15:19:35 +00:00
parent 00f007f14c
commit 9889555b02
2 changed files with 38 additions and 33 deletions

View File

@@ -16,7 +16,7 @@
//Point
use crate::{Point, ResultPoint};
use crate::{point, Point, ResultPoint};
/**
* <p>Encapsulates an alignment pattern, which are the smaller square patterns found in
@@ -27,23 +27,26 @@ use crate::{Point, ResultPoint};
#[derive(Debug, Clone, Copy, PartialEq)]
pub struct AlignmentPattern {
estimatedModuleSize: f32,
point: (f32, f32),
point: Point,
}
impl From<&AlignmentPattern> for Point {
fn from(value: &AlignmentPattern) -> Self {
value.point
}
}
impl ResultPoint for AlignmentPattern {
fn getX(&self) -> f32 {
self.point.0
self.point.x
}
fn getY(&self) -> f32 {
self.point.1
self.point.y
}
fn to_rxing_result_point(&self) -> Point {
Point {
x: self.point.0,
y: self.point.1,
}
self.point
}
}
@@ -51,7 +54,7 @@ impl AlignmentPattern {
pub fn new(posX: f32, posY: f32, estimatedModuleSize: f32) -> Self {
Self {
estimatedModuleSize,
point: (posX, posY),
point: point(posX, posY),
}
}

View File

@@ -167,13 +167,18 @@ impl<'a> Detector<'_> {
Ok(QRCodeDetectorResult::new(bits, points))
}
fn createTransform<T: ResultPoint, X: ResultPoint>(
topLeft: &T,
topRight: &T,
bottomLeft: &T,
alignmentPattern: Option<&X>,
fn createTransform<T: Into<Point>, X: Into<Point>>(
topLeft: T,
topRight: T,
bottomLeft: T,
alignmentPattern: Option<X>,
dimension: u32,
) -> Option<PerspectiveTransform> {
let topLeft: Point = topLeft.into();
let topRight: Point = topRight.into();
let bottomLeft: Point = bottomLeft.into();
let alignmentPattern: Option<Point> = alignmentPattern.map(Into::into);
let dimMinusThree = dimension as f32 - 3.5;
let bottomRightX: f32;
let bottomRightY: f32;
@@ -226,22 +231,16 @@ impl<'a> Detector<'_> {
* <p>Computes the dimension (number of modules on a size) of the QR Code based on the position
* of the finder patterns and estimated module size.</p>
*/
fn computeDimension<T: ResultPoint>(
topLeft: &T,
topRight: &T,
bottomLeft: &T,
fn computeDimension<T: Into<Point>>(
topLeft: T,
topRight: T,
bottomLeft: T,
moduleSize: f32,
) -> Result<u32> {
let tltrCentersDimension = (Point::distance(
topLeft.to_rxing_result_point(),
topRight.to_rxing_result_point(),
) / moduleSize)
.round() as i32;
let tlblCentersDimension = (Point::distance(
topLeft.to_rxing_result_point(),
bottomLeft.to_rxing_result_point(),
) / moduleSize)
.round() as i32;
let tltrCentersDimension =
(Point::distance(topLeft.into(), topRight.into()) / moduleSize).round() as i32;
let tlblCentersDimension =
(Point::distance(topLeft.into(), bottomLeft.into()) / moduleSize).round() as i32;
let mut dimension = ((tltrCentersDimension + tlblCentersDimension) / 2) + 7;
match dimension & 0x03 {
0 => dimension += 1,
@@ -261,11 +260,11 @@ impl<'a> Detector<'_> {
* @param bottomLeft detected bottom-left finder pattern center
* @return estimated module size
*/
pub fn calculateModuleSize<T: ResultPoint>(
pub fn calculateModuleSize<T: Into<Point>>(
&self,
topLeft: &T,
topRight: &T,
bottomLeft: &T,
topLeft: T,
topRight: T,
bottomLeft: T,
) -> f32 {
// Take the average
(self.calculateModuleSizeOneWay(topLeft, topRight)
@@ -278,7 +277,10 @@ impl<'a> Detector<'_> {
* {@link #sizeOfBlackWhiteBlackRunBothWays(int, int, int, int)} to figure the
* width of each, measuring along the axis between their centers.</p>
*/
fn calculateModuleSizeOneWay<T: ResultPoint>(&self, pattern: &T, otherPattern: &T) -> f32 {
fn calculateModuleSizeOneWay<T: Into<Point>>(&self, pattern: T, otherPattern: T) -> f32 {
let pattern: Point = pattern.into();
let otherPattern: Point = otherPattern.into();
let moduleSizeEst1 = self.sizeOfBlackWhiteBlackRunBothWays(
pattern.getX().floor() as u32,
pattern.getY().floor() as u32,