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https://github.com/starovoid/rxing.git
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chore: clippy cleanup
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@@ -150,7 +150,7 @@ impl Version {
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let square = |s: i32| point(s, s);
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let valid = |v: i32, max: i32| v >= 1 && v <= max;
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match (qr_type) {
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match qr_type {
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Type::Model1 => {
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if valid(version, 32) {
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square(17 + 4 * version)
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@@ -183,7 +183,7 @@ impl Version {
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}
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pub fn IsValidSize(size: PointI, qr_type: Type) -> bool {
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match (qr_type) {
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match qr_type {
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Type::Model1 => size.x == size.y && size.x >= 21 && size.x <= 145 && (size.x % 4 == 1),
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Type::Model2 => size.x == size.y && size.x >= 21 && size.x <= 177 && (size.x % 4 == 1),
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Type::Micro => size.x == size.y && size.x >= 11 && size.x <= 17 && (size.x % 2 == 1),
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@@ -200,40 +200,39 @@ impl Version {
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}
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}
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pub fn HasValidSizeType(bitMatrix: &BitMatrix, qr_type: Type) -> bool {
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return Self::IsValidSize(
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Self::IsValidSize(
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point(bitMatrix.width() as i32, bitMatrix.height() as i32),
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qr_type,
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);
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)
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}
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pub fn HasValidSize(matrix: &BitMatrix) -> bool {
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return Self::HasValidSizeType(matrix, Type::Model1)
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Self::HasValidSizeType(matrix, Type::Model1)
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|| Self::HasValidSizeType(matrix, Type::Model2)
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|| Self::HasValidSizeType(matrix, Type::Micro)
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|| Self::HasValidSizeType(matrix, Type::RectMicro);
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|| Self::HasValidSizeType(matrix, Type::RectMicro)
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}
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fn IndexOf(points: &[PointI], search: PointI) -> i32 {
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fn IndexOf(_points: &[PointI], search: PointI) -> i32 {
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RMQR_SIZES
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.iter()
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.position(|p| *p == search)
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.and_then(|x| Some(x as i32))
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.position(|p| *p == search).map(|x| x as i32)
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.unwrap_or(-1)
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}
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pub fn NumberPoint(size: PointI) -> u32 {
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if (size.x != size.y) {
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return (Self::IndexOf(&RMQR_SIZES, size) + 1) as u32;
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} else if (Self::IsValidSize(size, Type::Model2)) {
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return ((size.x as i32 - 17) / 4) as u32;
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} else if (Self::IsValidSize(size, Type::Micro)) {
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return ((size.x as i32 - 9) / 2) as u32;
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if size.x != size.y {
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(Self::IndexOf(&RMQR_SIZES, size) + 1) as u32
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} else if Self::IsValidSize(size, Type::Model2) {
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((size.x - 17) / 4) as u32
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} else if Self::IsValidSize(size, Type::Micro) {
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((size.x - 9) / 2) as u32
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} else {
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return 0;
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0
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}
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}
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pub fn Number(bitMatrix: &BitMatrix) -> u32 {
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return Self::NumberPoint(point(bitMatrix.width() as i32, bitMatrix.height() as i32));
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Self::NumberPoint(point(bitMatrix.width() as i32, bitMatrix.height() as i32))
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}
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}
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@@ -13,7 +13,7 @@ use crate::{
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Exceptions, point,
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};
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use multimap::MultiMap;
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use num::Integer;
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use crate::{
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common::{
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@@ -570,7 +570,7 @@ pub fn SampleQR(image: &BitMatrix, fp: &FinderPatternSet) -> Result<QRCodeDetect
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Quadrilateral::from([fp.tl.p, fp.tr.p, br.p, fp.bl.p]),
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)?;
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if dimension >= Version::SymbolSize(7, Type::Model2).x as i32 {
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if dimension >= Version::SymbolSize(7, Type::Model2).x {
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let version = ReadVersion(image, dimension as u32, mod2Pix);
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// if the version bits are garbage -> discard the detection
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@@ -995,12 +995,12 @@ pub fn DetectPureRMQR(image: &BitMatrix) -> Result<QRCodeDetectorResult> {
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let dimW = (width as f32 / moduleSize as f32).floor() as u32;
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let dimH = (height as f32 / moduleSize as f32).floor() as u32;
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if (!Version::IsValidSize(point(dimW as i32, dimH as i32), Type::RectMicro))
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if !Version::IsValidSize(point(dimW as i32, dimH as i32), Type::RectMicro)
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{return Err(Exceptions::NOT_FOUND);}
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// Finder sub pattern
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let subdiagonal : SubPattern = EdgeTracer::new(image, br, point_i(-1, -1)).readPatternFromBlack(1,None).ok_or(Exceptions::ILLEGAL_STATE)?;
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let subdiagonal_hld = diagonal.to_vec().into();
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let subdiagonal_hld = subdiagonal.to_vec().into();
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let view = PatternView::new(&subdiagonal_hld);
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if IsPattern::<E2E, 4, 4, false>(&view, &SUBPATTERN, None, 0.0, 0.0) != 0.0
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{return Err(Exceptions::NOT_FOUND);}
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@@ -1012,7 +1012,7 @@ pub fn DetectPureRMQR(image: &BitMatrix) -> Result<QRCodeDetectorResult> {
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// skip corner / finder / sub pattern edge
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cur.stepToEdge(Some(2 + i32::from(cur.isWhite())), None, None);
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let timing : TimingPattern = cur.readPattern(None).ok_or(Exceptions::ILLEGAL_STATE)?;
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let timing_hld = diagonal.to_vec().into();
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let timing_hld = timing.to_vec().into();
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let view = PatternView::new(&timing_hld);
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if !(IsPattern::<E2E, 10,10, false>(&view, &TIMINGPATTERN, None, 0.0, 0.0) != 0.0)
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{return Err(Exceptions::NOT_FOUND);}
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