port generic multiple barcode reader

This commit is contained in:
Henry Schimke
2022-12-01 16:11:49 -06:00
parent 2d37d398e6
commit ad9d193695
5 changed files with 221 additions and 187 deletions

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@@ -1,182 +0,0 @@
/*
* Copyright 2009 ZXing authors
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package com.google.zxing.multi;
import com.google.zxing.BinaryBitmap;
import com.google.zxing.DecodeHintType;
import com.google.zxing.NotFoundException;
import com.google.zxing.Reader;
import com.google.zxing.ReaderException;
import com.google.zxing.RXingResult;
import com.google.zxing.RXingResultPoint;
import java.util.ArrayList;
import java.util.List;
import java.util.Map;
/**
* <p>Attempts to locate multiple barcodes in an image by repeatedly decoding portion of the image.
* After one barcode is found, the areas left, above, right and below the barcode's
* {@link RXingResultPoint}s are scanned, recursively.</p>
*
* <p>A caller may want to also employ {@link ByQuadrantReader} when attempting to find multiple
* 2D barcodes, like QR Codes, in an image, where the presence of multiple barcodes might prevent
* detecting any one of them.</p>
*
* <p>That is, instead of passing a {@link Reader} a caller might pass
* {@code new ByQuadrantReader(reader)}.</p>
*
* @author Sean Owen
*/
public final class GenericMultipleBarcodeReader implements MultipleBarcodeReader {
private static final int MIN_DIMENSION_TO_RECUR = 100;
private static final int MAX_DEPTH = 4;
static final RXingResult[] EMPTY_RESULT_ARRAY = new RXingResult[0];
private final Reader delegate;
public GenericMultipleBarcodeReader(Reader delegate) {
this.delegate = delegate;
}
@Override
public RXingResult[] decodeMultiple(BinaryBitmap image) throws NotFoundException {
return decodeMultiple(image, null);
}
@Override
public RXingResult[] decodeMultiple(BinaryBitmap image, Map<DecodeHintType,?> hints)
throws NotFoundException {
List<RXingResult> results = new ArrayList<>();
doDecodeMultiple(image, hints, results, 0, 0, 0);
if (results.isEmpty()) {
throw NotFoundException.getNotFoundInstance();
}
return results.toArray(EMPTY_RESULT_ARRAY);
}
private void doDecodeMultiple(BinaryBitmap image,
Map<DecodeHintType,?> hints,
List<RXingResult> results,
int xOffset,
int yOffset,
int currentDepth) {
if (currentDepth > MAX_DEPTH) {
return;
}
RXingResult result;
try {
result = delegate.decode(image, hints);
} catch (ReaderException ignored) {
return;
}
boolean alreadyFound = false;
for (RXingResult existingRXingResult : results) {
if (existingRXingResult.getText().equals(result.getText())) {
alreadyFound = true;
break;
}
}
if (!alreadyFound) {
results.add(translateRXingResultPoints(result, xOffset, yOffset));
}
RXingResultPoint[] resultPoints = result.getRXingResultPoints();
if (resultPoints == null || resultPoints.length == 0) {
return;
}
int width = image.getWidth();
int height = image.getHeight();
float minX = width;
float minY = height;
float maxX = 0.0f;
float maxY = 0.0f;
for (RXingResultPoint point : resultPoints) {
if (point == null) {
continue;
}
float x = point.getX();
float y = point.getY();
if (x < minX) {
minX = x;
}
if (y < minY) {
minY = y;
}
if (x > maxX) {
maxX = x;
}
if (y > maxY) {
maxY = y;
}
}
// Decode left of barcode
if (minX > MIN_DIMENSION_TO_RECUR) {
doDecodeMultiple(image.crop(0, 0, (int) minX, height),
hints, results,
xOffset, yOffset,
currentDepth + 1);
}
// Decode above barcode
if (minY > MIN_DIMENSION_TO_RECUR) {
doDecodeMultiple(image.crop(0, 0, width, (int) minY),
hints, results,
xOffset, yOffset,
currentDepth + 1);
}
// Decode right of barcode
if (maxX < width - MIN_DIMENSION_TO_RECUR) {
doDecodeMultiple(image.crop((int) maxX, 0, width - (int) maxX, height),
hints, results,
xOffset + (int) maxX, yOffset,
currentDepth + 1);
}
// Decode below barcode
if (maxY < height - MIN_DIMENSION_TO_RECUR) {
doDecodeMultiple(image.crop(0, (int) maxY, width, height - (int) maxY),
hints, results,
xOffset, yOffset + (int) maxY,
currentDepth + 1);
}
}
private static RXingResult translateRXingResultPoints(RXingResult result, int xOffset, int yOffset) {
RXingResultPoint[] oldRXingResultPoints = result.getRXingResultPoints();
if (oldRXingResultPoints == null) {
return result;
}
RXingResultPoint[] newRXingResultPoints = new RXingResultPoint[oldRXingResultPoints.length];
for (int i = 0; i < oldRXingResultPoints.length; i++) {
RXingResultPoint oldPoint = oldRXingResultPoints[i];
if (oldPoint != null) {
newRXingResultPoints[i] = new RXingResultPoint(oldPoint.getX() + xOffset, oldPoint.getY() + yOffset);
}
}
RXingResult newRXingResult = new RXingResult(result.getText(),
result.getRawBytes(),
result.getNumBits(),
newRXingResultPoints,
result.getBarcodeFormat(),
result.getTimestamp());
newRXingResult.putAllMetadata(result.getRXingResultMetadata());
return newRXingResult;
}
}

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@@ -0,0 +1,213 @@
/*
* Copyright 2009 ZXing authors
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
use std::collections::HashMap;
use crate::{
BinaryBitmap, DecodingHintDictionary, Exceptions, RXingResult, RXingResultPoint, Reader,
ResultPoint,
};
use super::MultipleBarcodeReader;
/**
* <p>Attempts to locate multiple barcodes in an image by repeatedly decoding portion of the image.
* After one barcode is found, the areas left, above, right and below the barcode's
* {@link RXingResultPoint}s are scanned, recursively.</p>
*
* <p>A caller may want to also employ {@link ByQuadrantReader} when attempting to find multiple
* 2D barcodes, like QR Codes, in an image, where the presence of multiple barcodes might prevent
* detecting any one of them.</p>
*
* <p>That is, instead of passing a {@link Reader} a caller might pass
* {@code new ByQuadrantReader(reader)}.</p>
*
* @author Sean Owen
*/
pub struct GenericMultipleBarcodeReader<T: Reader>(T);
impl<T: Reader> MultipleBarcodeReader for GenericMultipleBarcodeReader<T> {
fn decodeMultiple(
&mut self,
image: &crate::BinaryBitmap,
) -> Result<Vec<crate::RXingResult>, crate::Exceptions> {
self.decodeMultipleWithHints(image, &HashMap::new())
}
fn decodeMultipleWithHints(
&mut self,
image: &crate::BinaryBitmap,
hints: &crate::DecodingHintDictionary,
) -> Result<Vec<crate::RXingResult>, crate::Exceptions> {
let mut results = Vec::new();
self.doDecodeMultiple(image, hints, &mut results, 0, 0, 0);
if results.is_empty() {
return Err(Exceptions::NotFoundException("".to_owned()));
}
Ok(results)
}
}
impl<T: Reader> GenericMultipleBarcodeReader<T> {
const MIN_DIMENSION_TO_RECUR: f32 = 100.0;
const MAX_DEPTH: u32 = 4;
pub fn new(delegate: T) -> Self {
Self(delegate)
}
fn doDecodeMultiple(
&mut self,
image: &BinaryBitmap,
hints: &DecodingHintDictionary,
results: &mut Vec<RXingResult>,
xOffset: u32,
yOffset: u32,
currentDepth: u32,
) {
if currentDepth > Self::MAX_DEPTH {
return;
}
let result;
//try {
result = self.0.decode_with_hints(image, hints);
//} catch (ReaderException ignored) {
// return;
//}
if let Err(Exceptions::ReaderException(_)) = result {
return;
}
let result = result.expect("must exist");
let mut alreadyFound = false;
for existingRXingResult in results.iter() {
if existingRXingResult.getText() == (result.getText()) {
alreadyFound = true;
break;
}
}
let resultPoints = result.getRXingResultPoints().clone();
if !alreadyFound {
results.push(Self::translateRXingResultPoints(result, xOffset, yOffset));
}
if resultPoints.is_empty() {
return;
}
let width = image.getWidth();
let height = image.getHeight();
let mut minX: f32 = width as f32;
let mut minY: f32 = height as f32;
let mut maxX: f32 = 0.0;
let mut maxY: f32 = 0.0;
for point in resultPoints {
// if (point == null) {
// continue;
// }
let x = point.getX();
let y = point.getY();
if x < minX {
minX = x;
}
if y < minY {
minY = y;
}
if x > maxX {
maxX = x;
}
if y > maxY {
maxY = y;
}
}
// Decode left of barcode
if minX > Self::MIN_DIMENSION_TO_RECUR {
self.doDecodeMultiple(
&image.crop(0, 0, minX as usize, height),
hints,
results,
xOffset,
yOffset,
currentDepth + 1,
);
}
// Decode above barcode
if minY > Self::MIN_DIMENSION_TO_RECUR {
self.doDecodeMultiple(
&image.crop(0, 0, width, minY as usize),
hints,
results,
xOffset,
yOffset,
currentDepth + 1,
);
}
// Decode right of barcode
if maxX < (width as f32) - Self::MIN_DIMENSION_TO_RECUR {
self.doDecodeMultiple(
&image.crop(maxX as usize, 0, width - maxX as usize, height),
hints,
results,
xOffset + maxX as u32,
yOffset,
currentDepth + 1,
);
}
// Decode below barcode
if maxY < (height as f32) - Self::MIN_DIMENSION_TO_RECUR {
self.doDecodeMultiple(
&image.crop(0, maxY as usize, width, height - maxY as usize),
hints,
results,
xOffset,
yOffset + maxY as u32,
currentDepth + 1,
);
}
}
fn translateRXingResultPoints(result: RXingResult, xOffset: u32, yOffset: u32) -> RXingResult {
let oldRXingResultPoints = result.getRXingResultPoints();
if oldRXingResultPoints.is_empty() {
return result;
}
let mut newRXingResultPoints = Vec::with_capacity(oldRXingResultPoints.len()); //new RXingResultPoint[oldRXingResultPoints.length];
for oldPoint in oldRXingResultPoints {
// for (int i = 0; i < oldRXingResultPoints.length; i++) {
// RXingResultPoint oldPoint = oldRXingResultPoints[i];
// if (oldPoint != null) {
newRXingResultPoints.push(RXingResultPoint::new(
oldPoint.getX() + xOffset as f32,
oldPoint.getY() + yOffset as f32,
));
// }
}
let mut newRXingResult = RXingResult::new_complex(
result.getText(),
result.getRawBytes().clone(),
result.getNumBits(),
newRXingResultPoints,
*result.getBarcodeFormat(),
result.getTimestamp(),
);
newRXingResult.putAllMetadata(result.getRXingResultMetadata().clone());
newRXingResult
}
}

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@@ -4,3 +4,6 @@ pub use multiple_barcode_reader::*;
mod by_quadrant_reader;
pub use by_quadrant_reader::*;
mod generic_multiple_barcode_reader;
pub use generic_multiple_barcode_reader::*;

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@@ -23,10 +23,10 @@ use crate::{BinaryBitmap, DecodingHintDictionary, Exceptions, RXingResult};
* @author Sean Owen
*/
pub trait MultipleBarcodeReader {
fn decodeMultiple(&self, image: &BinaryBitmap) -> Result<Vec<RXingResult>, Exceptions>;
fn decodeMultiple(&mut self, image: &BinaryBitmap) -> Result<Vec<RXingResult>, Exceptions>;
fn decodeMultipleWithHints(
&self,
&mut self,
image: &BinaryBitmap,
hints: &DecodingHintDictionary,
) -> Result<Vec<RXingResult>, Exceptions>;

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@@ -37,14 +37,14 @@ use super::detector::MultiDetector;
pub struct QRCodeMultiReader(QRCodeReader);
impl MultipleBarcodeReader for QRCodeMultiReader {
fn decodeMultiple(
&self,
&mut self,
image: &crate::BinaryBitmap,
) -> Result<Vec<crate::RXingResult>, crate::Exceptions> {
self.decodeMultipleWithHints(image, &HashMap::new())
}
fn decodeMultipleWithHints(
&self,
&mut self,
image: &crate::BinaryBitmap,
hints: &crate::DecodingHintDictionary,
) -> Result<Vec<crate::RXingResult>, crate::Exceptions> {
@@ -251,7 +251,7 @@ mod multi_qr_code_test_case {
let source = BufferedImageLuminanceSource::new(image);
let bitmap = BinaryBitmap::new(Rc::new(HybridBinarizer::new(Box::new(source))));
let reader = QRCodeMultiReader::new();
let mut reader = QRCodeMultiReader::new();
let results = reader.decodeMultiple(&bitmap).expect("must decode");
// assertNotNull(results);
assert_eq!(4, results.len());