partial working code39

This commit is contained in:
Henry Schimke
2022-12-04 10:42:23 -06:00
parent 34e2473a5d
commit 2a32984d8d
17 changed files with 705 additions and 631 deletions

View File

@@ -74,10 +74,6 @@ fn impl_one_d_reader_macro(ast: &syn::DeriveInput) -> TokenStream {
} }
} }
} }
fn reset(&mut self) {
// do nothing
}
} }
}; };
gen.into() gen.into()

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@@ -16,6 +16,8 @@
//package com.google.zxing; //package com.google.zxing;
use std::collections::HashSet;
use crate::{BarcodeFormat, RXingResultPointCallback}; use crate::{BarcodeFormat, RXingResultPointCallback};
/** /**
@@ -141,7 +143,7 @@ pub enum DecodeHintValue {
* Image is known to be of one of a few possible formats. * Image is known to be of one of a few possible formats.
* Maps to a {@link List} of {@link BarcodeFormat}s. * Maps to a {@link List} of {@link BarcodeFormat}s.
*/ */
PossibleFormats(Vec<BarcodeFormat>), PossibleFormats(HashSet<BarcodeFormat>),
/** /**
* Spend more time to try to find a barcode; optimize for accuracy, not speed. * Spend more time to try to find a barcode; optimize for accuracy, not speed.

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@@ -18,8 +18,8 @@ use std::collections::HashMap;
use crate::{ use crate::{
aztec::AztecReader, datamatrix::DataMatrixReader, maxicode::MaxiCodeReader, aztec::AztecReader, datamatrix::DataMatrixReader, maxicode::MaxiCodeReader,
qrcode::QRCodeReader, BarcodeFormat, BinaryBitmap, DecodeHintType, DecodeHintValue, oned::MultiFormatOneDReader, qrcode::QRCodeReader, BarcodeFormat, BinaryBitmap, DecodeHintType,
DecodingHintDictionary, Exceptions, RXingResult, Reader, DecodeHintValue, DecodingHintDictionary, Exceptions, RXingResult, Reader,
}; };
/** /**
@@ -124,8 +124,7 @@ impl MultiFormatReader {
|| formats.contains(&BarcodeFormat::RSS_EXPANDED); || formats.contains(&BarcodeFormat::RSS_EXPANDED);
// Put 1D readers upfront in "normal" mode // Put 1D readers upfront in "normal" mode
if addOneDReader && !tryHarder { if addOneDReader && !tryHarder {
unimplemented!(""); readers.push(Box::new(MultiFormatOneDReader::new(hints)));
// readers.push(new MultiFormatOneDReader(hints));
} }
if formats.contains(&BarcodeFormat::QR_CODE) { if formats.contains(&BarcodeFormat::QR_CODE) {
readers.push(Box::new(QRCodeReader {})); readers.push(Box::new(QRCodeReader {}));
@@ -145,13 +144,12 @@ impl MultiFormatReader {
} }
// At end in "try harder" mode // At end in "try harder" mode
if addOneDReader && tryHarder { if addOneDReader && tryHarder {
unimplemented!(""); readers.push(Box::new(MultiFormatOneDReader::new(hints)));
// readers.push( MultiFormatOneDReader::new(hints));
} }
} }
if readers.is_empty() { if readers.is_empty() {
if !tryHarder { if !tryHarder {
// readers.push( MultiFormatOneDReader::new(hints)); readers.push(Box::new(MultiFormatOneDReader::new(hints)));
//TODO: ADD MultiformatOneDReader here //TODO: ADD MultiformatOneDReader here
} }
@@ -163,7 +161,7 @@ impl MultiFormatReader {
// unimplemented!(""); // unimplemented!("");
if tryHarder { if tryHarder {
// readers.push( Box::new(MultiFormatOneDReader::new(hints))); readers.push(Box::new(MultiFormatOneDReader::new(hints)));
//TODO: ADD MultiformatOneDReader here //TODO: ADD MultiformatOneDReader here
} }
} }

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@@ -1,340 +0,0 @@
/*
* Copyright 2008 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.oned;
import com.google.zxing.BarcodeFormat;
import com.google.zxing.ChecksumException;
import com.google.zxing.DecodeHintType;
import com.google.zxing.FormatException;
import com.google.zxing.NotFoundException;
import com.google.zxing.RXingResult;
import com.google.zxing.RXingResultMetadataType;
import com.google.zxing.RXingResultPoint;
import com.google.zxing.common.BitArray;
import java.util.Arrays;
import java.util.Map;
/**
* <p>Decodes Code 39 barcodes. Supports "Full ASCII Code 39" if USE_CODE_39_EXTENDED_MODE is set.</p>
*
* @author Sean Owen
* @see Code93Reader
*/
public final class Code39Reader extends OneDReader {
static final String ALPHABET_STRING = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ-. $/+%";
/**
* These represent the encodings of characters, as patterns of wide and narrow bars.
* The 9 least-significant bits of each int correspond to the pattern of wide and narrow,
* with 1s representing "wide" and 0s representing narrow.
*/
static final int[] CHARACTER_ENCODINGS = {
0x034, 0x121, 0x061, 0x160, 0x031, 0x130, 0x070, 0x025, 0x124, 0x064, // 0-9
0x109, 0x049, 0x148, 0x019, 0x118, 0x058, 0x00D, 0x10C, 0x04C, 0x01C, // A-J
0x103, 0x043, 0x142, 0x013, 0x112, 0x052, 0x007, 0x106, 0x046, 0x016, // K-T
0x181, 0x0C1, 0x1C0, 0x091, 0x190, 0x0D0, 0x085, 0x184, 0x0C4, 0x0A8, // U-$
0x0A2, 0x08A, 0x02A // /-%
};
static final int ASTERISK_ENCODING = 0x094;
private final boolean usingCheckDigit;
private final boolean extendedMode;
private final StringBuilder decodeRowRXingResult;
private final int[] counters;
/**
* Creates a reader that assumes all encoded data is data, and does not treat the final
* character as a check digit. It will not decoded "extended Code 39" sequences.
*/
public Code39Reader() {
this(false);
}
/**
* Creates a reader that can be configured to check the last character as a check digit.
* It will not decoded "extended Code 39" sequences.
*
* @param usingCheckDigit if true, treat the last data character as a check digit, not
* data, and verify that the checksum passes.
*/
public Code39Reader(boolean usingCheckDigit) {
this(usingCheckDigit, false);
}
/**
* Creates a reader that can be configured to check the last character as a check digit,
* or optionally attempt to decode "extended Code 39" sequences that are used to encode
* the full ASCII character set.
*
* @param usingCheckDigit if true, treat the last data character as a check digit, not
* data, and verify that the checksum passes.
* @param extendedMode if true, will attempt to decode extended Code 39 sequences in the
* text.
*/
public Code39Reader(boolean usingCheckDigit, boolean extendedMode) {
this.usingCheckDigit = usingCheckDigit;
this.extendedMode = extendedMode;
decodeRowRXingResult = new StringBuilder(20);
counters = new int[9];
}
@Override
public RXingResult decodeRow(int rowNumber, BitArray row, Map<DecodeHintType,?> hints)
throws NotFoundException, ChecksumException, FormatException {
int[] theCounters = counters;
Arrays.fill(theCounters, 0);
StringBuilder result = decodeRowRXingResult;
result.setLength(0);
int[] start = findAsteriskPattern(row, theCounters);
// Read off white space
int nextStart = row.getNextSet(start[1]);
int end = row.getSize();
char decodedChar;
int lastStart;
do {
recordPattern(row, nextStart, theCounters);
int pattern = toNarrowWidePattern(theCounters);
if (pattern < 0) {
throw NotFoundException.getNotFoundInstance();
}
decodedChar = patternToChar(pattern);
result.append(decodedChar);
lastStart = nextStart;
for (int counter : theCounters) {
nextStart += counter;
}
// Read off white space
nextStart = row.getNextSet(nextStart);
} while (decodedChar != '*');
result.setLength(result.length() - 1); // remove asterisk
// Look for whitespace after pattern:
int lastPatternSize = 0;
for (int counter : theCounters) {
lastPatternSize += counter;
}
int whiteSpaceAfterEnd = nextStart - lastStart - lastPatternSize;
// If 50% of last pattern size, following last pattern, is not whitespace, fail
// (but if it's whitespace to the very end of the image, that's OK)
if (nextStart != end && (whiteSpaceAfterEnd * 2) < lastPatternSize) {
throw NotFoundException.getNotFoundInstance();
}
if (usingCheckDigit) {
int max = result.length() - 1;
int total = 0;
for (int i = 0; i < max; i++) {
total += ALPHABET_STRING.indexOf(decodeRowRXingResult.charAt(i));
}
if (result.charAt(max) != ALPHABET_STRING.charAt(total % 43)) {
throw ChecksumException.getChecksumInstance();
}
result.setLength(max);
}
if (result.length() == 0) {
// false positive
throw NotFoundException.getNotFoundInstance();
}
String resultString;
if (extendedMode) {
resultString = decodeExtended(result);
} else {
resultString = result.toString();
}
float left = (start[1] + start[0]) / 2.0f;
float right = lastStart + lastPatternSize / 2.0f;
RXingResult resultObject = new RXingResult(
resultString,
null,
new RXingResultPoint[]{
new RXingResultPoint(left, rowNumber),
new RXingResultPoint(right, rowNumber)},
BarcodeFormat.CODE_39);
resultObject.putMetadata(RXingResultMetadataType.SYMBOLOGY_IDENTIFIER, "]A0");
return resultObject;
}
private static int[] findAsteriskPattern(BitArray row, int[] counters) throws NotFoundException {
int width = row.getSize();
int rowOffset = row.getNextSet(0);
int counterPosition = 0;
int patternStart = rowOffset;
boolean isWhite = false;
int patternLength = counters.length;
for (int i = rowOffset; i < width; i++) {
if (row.get(i) != isWhite) {
counters[counterPosition]++;
} else {
if (counterPosition == patternLength - 1) {
// Look for whitespace before start pattern, >= 50% of width of start pattern
if (toNarrowWidePattern(counters) == ASTERISK_ENCODING &&
row.isRange(Math.max(0, patternStart - ((i - patternStart) / 2)), patternStart, false)) {
return new int[]{patternStart, i};
}
patternStart += counters[0] + counters[1];
System.arraycopy(counters, 2, counters, 0, counterPosition - 1);
counters[counterPosition - 1] = 0;
counters[counterPosition] = 0;
counterPosition--;
} else {
counterPosition++;
}
counters[counterPosition] = 1;
isWhite = !isWhite;
}
}
throw NotFoundException.getNotFoundInstance();
}
// For efficiency, returns -1 on failure. Not throwing here saved as many as 700 exceptions
// per image when using some of our blackbox images.
private static int toNarrowWidePattern(int[] counters) {
int numCounters = counters.length;
int maxNarrowCounter = 0;
int wideCounters;
do {
int minCounter = Integer.MAX_VALUE;
for (int counter : counters) {
if (counter < minCounter && counter > maxNarrowCounter) {
minCounter = counter;
}
}
maxNarrowCounter = minCounter;
wideCounters = 0;
int totalWideCountersWidth = 0;
int pattern = 0;
for (int i = 0; i < numCounters; i++) {
int counter = counters[i];
if (counter > maxNarrowCounter) {
pattern |= 1 << (numCounters - 1 - i);
wideCounters++;
totalWideCountersWidth += counter;
}
}
if (wideCounters == 3) {
// Found 3 wide counters, but are they close enough in width?
// We can perform a cheap, conservative check to see if any individual
// counter is more than 1.5 times the average:
for (int i = 0; i < numCounters && wideCounters > 0; i++) {
int counter = counters[i];
if (counter > maxNarrowCounter) {
wideCounters--;
// totalWideCountersWidth = 3 * average, so this checks if counter >= 3/2 * average
if ((counter * 2) >= totalWideCountersWidth) {
return -1;
}
}
}
return pattern;
}
} while (wideCounters > 3);
return -1;
}
private static char patternToChar(int pattern) throws NotFoundException {
for (int i = 0; i < CHARACTER_ENCODINGS.length; i++) {
if (CHARACTER_ENCODINGS[i] == pattern) {
return ALPHABET_STRING.charAt(i);
}
}
if (pattern == ASTERISK_ENCODING) {
return '*';
}
throw NotFoundException.getNotFoundInstance();
}
private static String decodeExtended(CharSequence encoded) throws FormatException {
int length = encoded.length();
StringBuilder decoded = new StringBuilder(length);
for (int i = 0; i < length; i++) {
char c = encoded.charAt(i);
if (c == '+' || c == '$' || c == '%' || c == '/') {
char next = encoded.charAt(i + 1);
char decodedChar = '\0';
switch (c) {
case '+':
// +A to +Z map to a to z
if (next >= 'A' && next <= 'Z') {
decodedChar = (char) (next + 32);
} else {
throw FormatException.getFormatInstance();
}
break;
case '$':
// $A to $Z map to control codes SH to SB
if (next >= 'A' && next <= 'Z') {
decodedChar = (char) (next - 64);
} else {
throw FormatException.getFormatInstance();
}
break;
case '%':
// %A to %E map to control codes ESC to US
if (next >= 'A' && next <= 'E') {
decodedChar = (char) (next - 38);
} else if (next >= 'F' && next <= 'J') {
decodedChar = (char) (next - 11);
} else if (next >= 'K' && next <= 'O') {
decodedChar = (char) (next + 16);
} else if (next >= 'P' && next <= 'T') {
decodedChar = (char) (next + 43);
} else if (next == 'U') {
decodedChar = (char) 0;
} else if (next == 'V') {
decodedChar = '@';
} else if (next == 'W') {
decodedChar = '`';
} else if (next == 'X' || next == 'Y' || next == 'Z') {
decodedChar = (char) 127;
} else {
throw FormatException.getFormatInstance();
}
break;
case '/':
// /A to /O map to ! to , and /Z maps to :
if (next >= 'A' && next <= 'O') {
decodedChar = (char) (next - 32);
} else if (next == 'Z') {
decodedChar = ':';
} else {
throw FormatException.getFormatInstance();
}
break;
}
decoded.append(decodedChar);
// bump up i again since we read two characters
i++;
} else {
decoded.append(c);
}
}
return decoded.toString();
}
}

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@@ -1,114 +0,0 @@
/*
* Copyright 2008 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.oned;
import com.google.zxing.BarcodeFormat;
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.common.BitArray;
import com.google.zxing.oned.rss.RSS14Reader;
import com.google.zxing.oned.rss.expanded.RSSExpandedReader;
import java.util.ArrayList;
import java.util.Collection;
import java.util.Map;
/**
* @author dswitkin@google.com (Daniel Switkin)
* @author Sean Owen
*/
public final class MultiFormatOneDReader extends OneDReader {
private static final OneDReader[] EMPTY_ONED_ARRAY = new OneDReader[0];
private final OneDReader[] readers;
public MultiFormatOneDReader(Map<DecodeHintType,?> hints) {
@SuppressWarnings("unchecked")
Collection<BarcodeFormat> possibleFormats = hints == null ? null :
(Collection<BarcodeFormat>) hints.get(DecodeHintType.POSSIBLE_FORMATS);
boolean useCode39CheckDigit = hints != null &&
hints.get(DecodeHintType.ASSUME_CODE_39_CHECK_DIGIT) != null;
Collection<OneDReader> readers = new ArrayList<>();
if (possibleFormats != null) {
if (possibleFormats.contains(BarcodeFormat.EAN_13) ||
possibleFormats.contains(BarcodeFormat.UPC_A) ||
possibleFormats.contains(BarcodeFormat.EAN_8) ||
possibleFormats.contains(BarcodeFormat.UPC_E)) {
readers.add(new MultiFormatUPCEANReader(hints));
}
if (possibleFormats.contains(BarcodeFormat.CODE_39)) {
readers.add(new Code39Reader(useCode39CheckDigit));
}
if (possibleFormats.contains(BarcodeFormat.CODE_93)) {
readers.add(new Code93Reader());
}
if (possibleFormats.contains(BarcodeFormat.CODE_128)) {
readers.add(new Code128Reader());
}
if (possibleFormats.contains(BarcodeFormat.ITF)) {
readers.add(new ITFReader());
}
if (possibleFormats.contains(BarcodeFormat.CODABAR)) {
readers.add(new CodaBarReader());
}
if (possibleFormats.contains(BarcodeFormat.RSS_14)) {
readers.add(new RSS14Reader());
}
if (possibleFormats.contains(BarcodeFormat.RSS_EXPANDED)) {
readers.add(new RSSExpandedReader());
}
}
if (readers.isEmpty()) {
readers.add(new MultiFormatUPCEANReader(hints));
readers.add(new Code39Reader());
readers.add(new CodaBarReader());
readers.add(new Code93Reader());
readers.add(new Code128Reader());
readers.add(new ITFReader());
readers.add(new RSS14Reader());
readers.add(new RSSExpandedReader());
}
this.readers = readers.toArray(EMPTY_ONED_ARRAY);
}
@Override
public RXingResult decodeRow(int rowNumber,
BitArray row,
Map<DecodeHintType,?> hints) throws NotFoundException {
for (OneDReader reader : readers) {
try {
return reader.decodeRow(rowNumber, row, hints);
} catch (ReaderException re) {
// continue
}
}
throw NotFoundException.getNotFoundInstance();
}
@Override
public void reset() {
for (Reader reader : readers) {
reader.reset();
}
}
}

419
src/oned/code_39_reader.rs Normal file
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@@ -0,0 +1,419 @@
/*
* Copyright 2008 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 one_d_reader_derive::OneDReader;
use crate::common::BitArray;
use crate::{BarcodeFormat, Exceptions, RXingResult};
use super::OneDReader;
/**
* <p>Decodes Code 39 barcodes. Supports "Full ASCII Code 39" if USE_CODE_39_EXTENDED_MODE is set.</p>
*
* @author Sean Owen
* @see Code93Reader
*/
#[derive(OneDReader)]
pub struct Code39Reader {
usingCheckDigit: bool,
extendedMode: bool,
decodeRowRXingResult: String,
counters: Vec<u32>,
}
impl OneDReader for Code39Reader {
fn decodeRow(
&mut self,
rowNumber: u32,
row: &crate::common::BitArray,
_hints: &DecodingHintDictionary,
) -> Result<crate::RXingResult, Exceptions> {
// let theCounters = self.counters;
self.counters.fill(0);
// let result = self.decodeRowRXingResult;
// result.setLength(0);
self.decodeRowRXingResult.clear();
let start = Self::findAsteriskPattern(row, &mut self.counters)?;
// Read off white space
let mut nextStart = row.getNextSet(start[1] as usize);
let end = row.getSize();
let mut decodedChar;
let mut lastStart;
loop {
Self::recordPattern(row, nextStart, &mut self.counters)?;
let pattern = Self::toNarrowWidePattern(&self.counters);
if pattern < 0 {
return Err(Exceptions::NotFoundException("".to_owned()));
}
decodedChar = Self::patternToChar(pattern as u32)?;
self.decodeRowRXingResult.push(decodedChar);
lastStart = nextStart;
for counter in &self.counters {
// for (int counter : theCounters) {
nextStart += *counter as usize;
}
// Read off white space
nextStart = row.getNextSet(nextStart);
if !(decodedChar != '*') {
break;
}
} //(decodedChar != '*');
self.decodeRowRXingResult
.truncate(self.decodeRowRXingResult.len() - 1); // remove asterisk
// Look for whitespace after pattern:
let mut lastPatternSize = 0;
for counter in &self.counters {
// for (int counter : self.counters) {
lastPatternSize += *counter;
}
let whiteSpaceAfterEnd = nextStart - lastStart - lastPatternSize as usize;
// If 50% of last pattern size, following last pattern, is not whitespace, fail
// (but if it's whitespace to the very end of the image, that's OK)
if nextStart != end && (whiteSpaceAfterEnd * 2) < lastPatternSize as usize {
return Err(Exceptions::NotFoundException("".to_owned()));
}
if self.usingCheckDigit {
let max = self.decodeRowRXingResult.chars().count() - 1;
let mut total = 0;
for i in 0..max {
// for (int i = 0; i < max; i++) {
if let Some(pos) =
Self::ALPHABET_STRING.find(self.decodeRowRXingResult.chars().nth(i).unwrap())
{
total += pos;
}
// total += Self::ALPHABET_STRING.indexOf(self.decodeRowRXingResult.chars().nth(i).unwrap());
}
if self.decodeRowRXingResult.chars().nth(max).unwrap()
!= Self::ALPHABET_STRING.chars().nth(total % 43).unwrap()
{
return Err(Exceptions::NotFoundException("".to_owned()));
}
self.decodeRowRXingResult.truncate(max);
}
if self.decodeRowRXingResult.chars().count() == 0 {
// false positive
return Err(Exceptions::NotFoundException("".to_owned()));
}
let resultString;
if self.extendedMode {
resultString = Self::decodeExtended(&self.decodeRowRXingResult)?;
} else {
resultString = self.decodeRowRXingResult.clone();
}
let left = (start[1] + start[0]) as f32 / 2.0;
let right = (lastStart + lastPatternSize as usize) as f32 / 2.0;
let mut resultObject = RXingResult::new(
&resultString,
Vec::new(),
vec![
RXingResultPoint::new(left, rowNumber as f32),
RXingResultPoint::new(right, rowNumber as f32),
],
BarcodeFormat::CODE_39,
);
resultObject.putMetadata(
RXingResultMetadataType::SYMBOLOGY_IDENTIFIER,
RXingResultMetadataValue::SymbologyIdentifier("]A0".to_owned()),
);
Ok(resultObject)
}
}
impl Code39Reader {
const ALPHABET_STRING: &str = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZ-. $/+%";
/**
* These represent the encodings of characters, as patterns of wide and narrow bars.
* The 9 least-significant bits of each int correspond to the pattern of wide and narrow,
* with 1s representing "wide" and 0s representing narrow.
*/
const CHARACTER_ENCODINGS: [u32; 43] = [
0x034, 0x121, 0x061, 0x160, 0x031, 0x130, 0x070, 0x025, 0x124, 0x064, // 0-9
0x109, 0x049, 0x148, 0x019, 0x118, 0x058, 0x00D, 0x10C, 0x04C, 0x01C, // A-J
0x103, 0x043, 0x142, 0x013, 0x112, 0x052, 0x007, 0x106, 0x046, 0x016, // K-T
0x181, 0x0C1, 0x1C0, 0x091, 0x190, 0x0D0, 0x085, 0x184, 0x0C4, 0x0A8, // U-$
0x0A2, 0x08A, 0x02A, // /-%
];
const ASTERISK_ENCODING: u32 = 0x094;
/**
* Creates a reader that assumes all encoded data is data, and does not treat the final
* character as a check digit. It will not decoded "extended Code 39" sequences.
*/
pub fn new() -> Self {
Self::with_use_check_digit(false)
}
/**
* Creates a reader that can be configured to check the last character as a check digit.
* It will not decoded "extended Code 39" sequences.
*
* @param usingCheckDigit if true, treat the last data character as a check digit, not
* data, and verify that the checksum passes.
*/
pub fn with_use_check_digit(usingCheckDigit: bool) -> Self {
Self::with_all_config(usingCheckDigit, false)
}
/**
* Creates a reader that can be configured to check the last character as a check digit,
* or optionally attempt to decode "extended Code 39" sequences that are used to encode
* the full ASCII character set.
*
* @param usingCheckDigit if true, treat the last data character as a check digit, not
* data, and verify that the checksum passes.
* @param extendedMode if true, will attempt to decode extended Code 39 sequences in the
* text.
*/
pub fn with_all_config(usingCheckDigit: bool, extendedMode: bool) -> Self {
Self {
usingCheckDigit,
extendedMode,
decodeRowRXingResult: String::with_capacity(20),
counters: vec![0; 9],
}
}
fn findAsteriskPattern(row: &BitArray, counters: &mut [u32]) -> Result<Vec<u32>, Exceptions> {
let width = row.getSize();
let rowOffset = row.getNextSet(0);
let mut counterPosition = 0;
let mut patternStart = rowOffset;
let mut isWhite = false;
let patternLength = counters.len();
for i in rowOffset..width {
// for (int i = rowOffset; i < width; i++) {
if row.get(i) != isWhite {
counters[counterPosition] += 1;
} else {
if counterPosition == patternLength - 1 {
// Look for whitespace before start pattern, >= 50% of width of start pattern
if Self::toNarrowWidePattern(counters) == (Self::ASTERISK_ENCODING as i32)
&& row.isRange(
0.max(
patternStart as isize - ((i as isize - patternStart as isize) / 2),
) as usize,
patternStart,
false,
)?
{
return Ok(vec![patternStart as u32, i as u32]);
// return new int[]{patternStart, i};
}
patternStart += (counters[0] + counters[1]) as usize;
let slc = counters[0..(counterPosition - 1)].to_vec();
counters[2..(counterPosition - 1 + 2)].clone_from_slice(&slc[..]);
// System.arraycopy(counters, 2, counters, 0, counterPosition - 1);
counters[counterPosition - 1] = 0;
counters[counterPosition] = 0;
counterPosition -= 1;
} else {
counterPosition += 1;
}
counters[counterPosition] = 1;
isWhite = !isWhite;
}
}
return Err(Exceptions::NotFoundException("".to_owned()));
}
// For efficiency, returns -1 on failure. Not throwing here saved as many as 700 exceptions
// per image when using some of our blackbox images.
fn toNarrowWidePattern(counters: &[u32]) -> i32 {
let numCounters = counters.len();
let mut maxNarrowCounter = 0;
let mut wideCounters;
loop {
let mut minCounter = u32::MAX; //Integer.MAX_VALUE;
for counter in counters {
// for (int counter : counters) {
if counter < &minCounter && counter > &maxNarrowCounter {
minCounter = *counter;
}
}
maxNarrowCounter = minCounter;
wideCounters = 0;
let mut totalWideCountersWidth = 0;
let mut pattern = 0;
for i in 0..numCounters {
// for (int i = 0; i < numCounters; i++) {
let counter = counters[i];
if counter > maxNarrowCounter {
pattern |= 1 << (numCounters - 1 - i);
wideCounters += 1;
totalWideCountersWidth += counter;
}
}
if wideCounters == 3 {
// Found 3 wide counters, but are they close enough in width?
// We can perform a cheap, conservative check to see if any individual
// counter is more than 1.5 times the average:
let mut i = 0;
while i < numCounters && wideCounters > 0 {
// for (int i = 0; i < numCounters && wideCounters > 0; i++) {
let counter = counters[i];
if counter > maxNarrowCounter {
wideCounters -= 1;
// totalWideCountersWidth = 3 * average, so this checks if counter >= 3/2 * average
if (counter * 2) >= totalWideCountersWidth {
return -1;
}
}
i += 1;
}
return pattern;
}
if !(wideCounters > 3) {
break;
}
} //while ;
return -1;
}
fn patternToChar(pattern: u32) -> Result<char, Exceptions> {
for i in 0..Self::CHARACTER_ENCODINGS.len() {
// for (int i = 0; i < CHARACTER_ENCODINGS.length; i++) {
if Self::CHARACTER_ENCODINGS[i] == pattern {
return Ok(Self::ALPHABET_STRING.chars().nth(i).unwrap());
}
}
if pattern == Self::ASTERISK_ENCODING {
return Ok('*');
}
return Err(Exceptions::NotFoundException("".to_owned()));
}
fn decodeExtended(encoded: &str) -> Result<String, Exceptions> {
let length = encoded.chars().count();
let mut decoded = String::with_capacity(length); //new StringBuilder(length);
let mut i = 0;
while i < length {
// for i in 0..length {
// for (int i = 0; i < length; i++) {
let c = encoded.chars().nth(i).unwrap();
if c == '+' || c == '$' || c == '%' || c == '/' {
let next = encoded.chars().nth(i + 1).unwrap();
let mut decodedChar = '\0';
match c {
'+' => {
// +A to +Z map to a to z
if next >= 'A' && next <= 'Z' {
decodedChar = char::from_u32(next as u32 + 32).unwrap();
} else {
return Err(Exceptions::NotFoundException("".to_owned()));
}
}
'$' => {
// $A to $Z map to control codes SH to SB
if next >= 'A' && next <= 'Z' {
decodedChar = char::from_u32(next as u32 - 64).unwrap();
} else {
return Err(Exceptions::NotFoundException("".to_owned()));
}
}
'%' => {
// %A to %E map to control codes ESC to US
if next >= 'A' && next <= 'E' {
decodedChar = char::from_u32(next as u32 - 38).unwrap();
} else if next >= 'F' && next <= 'J' {
decodedChar = char::from_u32(next as u32 - 11).unwrap();
} else if next >= 'K' && next <= 'O' {
decodedChar = char::from_u32(next as u32 + 16).unwrap();
} else if next >= 'P' && next <= 'T' {
decodedChar = char::from_u32(next as u32 + 43).unwrap();
} else if next == 'U' {
decodedChar = 0 as char;
} else if next == 'V' {
decodedChar = '@';
} else if next == 'W' {
decodedChar = '`';
} else if next == 'X' || next == 'Y' || next == 'Z' {
decodedChar = 127 as char;
} else {
return Err(Exceptions::NotFoundException("".to_owned()));
}
}
'/' => {
// /A to /O map to ! to , and /Z maps to :
if next >= 'A' && next <= 'O' {
decodedChar = char::from_u32(next as u32 - 32).unwrap();
} else if next == 'Z' {
decodedChar = ':';
} else {
return Err(Exceptions::NotFoundException("".to_owned()));
}
}
_ => {}
}
decoded.push(decodedChar);
// bump up i again since we read two characters
i += 1;
} else {
decoded.push(c);
}
i += 1;
}
Ok(decoded)
}
}
#[cfg(test)]
mod code_39_extended_mode_test_case {
use std::collections::HashMap;
use crate::{
common::{BitArray, BitMatrix},
oned::{Code39Reader, OneDReader},
};
#[test]
fn testDecodeExtendedMode() {
// \b -> 2408 \f -> 000c
doTest("\u{0000}\u{0001}\u{0002}\u{0003}\u{0004}\u{0005}\u{0006}\u{0007}\u{0008}\t\n\u{000b}\u{000C}\r\u{000e}\u{000f}\u{0010}\u{0011}\u{0012}\u{0013}\u{0014}\u{0015}\u{0016}\u{0017}\u{0018}\u{0019}\u{001a}\u{001b}\u{001c}\u{001d}\u{001e}\u{001f}",
"000001001011011010101001001001011001010101101001001001010110101001011010010010010101011010010110100100100101011011010010101001001001010101011001011010010010010101101011001010100100100101010110110010101001001001010101010011011010010010010101101010011010100100100101010110100110101001001001010101011001101010010010010101101010100110100100100101010110101001101001001001010110110101001010010010010101010110100110100100100101011010110100101001001001010101101101001010010010010101010101100110100100100101011010101100101001001001010101101011001010010010010101010110110010100100100101011001010101101001001001010100110101011010010010010101100110101010100100100101010010110101101001001001010110010110101010010010010101001101101010101001001001011010100101101010010010010101101001011010100100100101101101001010101001001001010101100101101010010010010110101100101010010110110100000");
doTest(" !\"#$%&'()*+,-./0123456789:;<=>?",
"00000100101101101010011010110101001001010010110101001011010010010100101011010010110100100101001011011010010101001001010010101011001011010010010100101101011001010100100101001010110110010101001001010010101010011011010010010100101101010011010100100101001010110100110101001001010010101011001101010010010100101101010100110100100101001010110101001101001010110110110010101101010010010100101101011010010101001101101011010010101101011001010110110110010101010100110101101101001101010101100110101010100101101101101001011010101100101101010010010100101001101101010101001001001010110110010101010010010010101010011011010100100100101101010011010101001001001010110100110101010010010010101011001101010010110110100000");
doTest("@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\\]^_",
"000010010110110101010010010010100110101011011010100101101011010010110110110100101010101100101101101011001010101101100101010101001101101101010011010101101001101010101100110101101010100110101101010011011011010100101010110100110110101101001010110110100101010101100110110101011001010110101100101010110110010110010101011010011010101101100110101010100101101011011001011010101001101101010101001001001011010101001101010010010010101101010011010100100100101101101010010101001001001010101101001101010010010010110101101001010010110110100000");
doTest("`abcdefghijklmnopqrstuvwxyz{|}~",
"000001001011011010101001001001011001101010101001010010010110101001011010010100100101011010010110100101001001011011010010101001010010010101011001011010010100100101101011001010100101001001010110110010101001010010010101010011011010010100100101101010011010100101001001010110100110101001010010010101011001101010010100100101101010100110100101001001010110101001101001010010010110110101001010010100100101010110100110100101001001011010110100101001010010010101101101001010010100100101010101100110100101001001011010101100101001010010010101101011001010010100100101010110110010100101001001011001010101101001010010010100110101011010010100100101100110101010100101001001010010110101101001010010010110010110101010010100100101001101101010101001001001010110110100101010010010010101010110011010100100100101101010110010101001001001010110101100101010010010010101011011001010010110110100000");
}
fn doTest(expectedRXingResult: &str, encodedRXingResult: &str) {
let mut sut = Code39Reader::with_all_config(false, true);
let matrix =
BitMatrix::parse_strings(encodedRXingResult, "1", "0").expect("bitmatrix parse");
let row = BitArray::with_size(matrix.getWidth() as usize);
let row = matrix.getRow(0, &row);
let result = sut.decodeRow(0, &row, &HashMap::new()).expect("decode row");
assert_eq!(expectedRXingResult, result.getText());
}
}

View File

@@ -8,3 +8,9 @@ pub use ean_manufacturer_org_support::*;
mod coda_bar_reader; mod coda_bar_reader;
pub use coda_bar_reader::*; pub use coda_bar_reader::*;
mod code_39_reader;
pub use code_39_reader::*;
mod multi_format_one_d_reader;
pub use multi_format_one_d_reader::*;

View File

@@ -0,0 +1,185 @@
/*
* Copyright 2008 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 one_d_reader_derive::OneDReader;
use super::CodaBarReader;
use super::Code39Reader;
use super::OneDReader;
use crate::BarcodeFormat;
use crate::DecodeHintValue;
use crate::Exceptions;
/**
* @author dswitkin@google.com (Daniel Switkin)
* @author Sean Owen
*/
pub struct MultiFormatOneDReader(Vec<Box<dyn OneDReader>>);
impl OneDReader for MultiFormatOneDReader {
fn decodeRow(
&mut self,
rowNumber: u32,
row: &crate::common::BitArray,
hints: &crate::DecodingHintDictionary,
) -> Result<crate::RXingResult, crate::Exceptions> {
for reader in self.0.iter_mut() {
// for (OneDReader reader : readers) {
// try {
if let Ok(res) = reader.decodeRow(rowNumber, row, hints) {
return Ok(res);
}
// } catch (ReaderException re) {
// continue
// }
}
return Err(Exceptions::NotFoundException("".to_owned()));
}
}
impl MultiFormatOneDReader {
// private static final OneDReader[] EMPTY_ONED_ARRAY = new OneDReader[0];
// private final OneDReader[] readers;
pub fn new(hints: &DecodingHintDictionary) -> Self {
let useCode39CheckDigit = hints.contains_key(&DecodeHintType::ASSUME_CODE_39_CHECK_DIGIT);
let mut readers: Vec<Box<dyn OneDReader>> = Vec::new();
if let Some(DecodeHintValue::PossibleFormats(possibleFormats)) =
hints.get(&DecodeHintType::POSSIBLE_FORMATS)
{
// if let let possibleFormats = hints == null ? null :
// (Collection<BarcodeFormat>) hints.get(&DecodeHintType::POSSIBLE_FORMATS);
// if (possibleFormats != null) {
// if (possibleFormats.contains(&BarcodeFormat::EAN_13) ||
// possibleFormats.contains(&BarcodeFormat::UPC_A) ||
// possibleFormats.contains(&BarcodeFormat::EAN_8) ||
// possibleFormats.contains(&BarcodeFormat::UPC_E)) {
// readers.add(new MultiFormatUPCEANReader(hints));
// }
if possibleFormats.contains(&BarcodeFormat::CODE_39) {
readers.push(Box::new(Code39Reader::with_use_check_digit(
useCode39CheckDigit,
)));
}
// if (possibleFormats.contains(&BarcodeFormat::CODE_93)) {
// readers.add(new Code93Reader());
// }
// if (possibleFormats.contains(&BarcodeFormat::CODE_128)) {
// readers.add(new Code128Reader());
// }
// if (possibleFormats.contains(&BarcodeFormat::ITF)) {
// readers.add(new ITFReader());
// }
if possibleFormats.contains(&BarcodeFormat::CODABAR) {
readers.push(Box::new(CodaBarReader::new()));
}
// if (possibleFormats.contains(&BarcodeFormat::RSS_14)) {
// readers.add(new RSS14Reader());
// }
// if (possibleFormats.contains(&BarcodeFormat::RSS_EXPANDED)) {
// readers.add(new RSSExpandedReader());
// }
}
if readers.is_empty() {
// readers.push(new MultiFormatUPCEANReader(hints));
readers.push(Box::new(Code39Reader::new()));
readers.push(Box::new(CodaBarReader::new()));
// readers.push(new Code93Reader());
// readers.push(new Code128Reader());
// readers.push(new ITFReader());
// readers.push(new RSS14Reader());
// readers.push(new RSSExpandedReader());
}
Self(readers)
}
}
use crate::result_point::ResultPoint;
use crate::DecodeHintType;
use crate::DecodingHintDictionary;
use crate::RXingResultMetadataType;
use crate::RXingResultMetadataValue;
use crate::RXingResultPoint;
use crate::Reader;
use std::collections::HashMap;
impl Reader for MultiFormatOneDReader {
fn decode(&mut self, image: &crate::BinaryBitmap) -> Result<crate::RXingResult, Exceptions> {
self.decode_with_hints(image, &HashMap::new())
}
// Note that we don't try rotation without the try harder flag, even if rotation was supported.
fn decode_with_hints(
&mut self,
image: &crate::BinaryBitmap,
hints: &DecodingHintDictionary,
) -> Result<crate::RXingResult, Exceptions> {
if let Ok(res) = self.doDecode(image, hints) {
Ok(res)
} else {
let tryHarder = hints.contains_key(&DecodeHintType::TRY_HARDER);
if tryHarder && image.isRotateSupported() {
let rotatedImage = image.rotateCounterClockwise();
let mut result = self.doDecode(&rotatedImage, hints)?;
// Record that we found it rotated 90 degrees CCW / 270 degrees CW
let metadata = result.getRXingResultMetadata();
let mut orientation = 270;
if metadata.contains_key(&RXingResultMetadataType::ORIENTATION) {
// But if we found it reversed in doDecode(), add in that result here:
orientation = (orientation
+ if let Some(crate::RXingResultMetadataValue::Orientation(or)) =
metadata.get(&RXingResultMetadataType::ORIENTATION)
{
*or
} else {
0
})
% 360;
}
result.putMetadata(
RXingResultMetadataType::ORIENTATION,
RXingResultMetadataValue::Orientation(orientation),
);
// Update result points
// let points = result.getRXingResultPoints();
// if points != null {
let height = rotatedImage.getHeight();
// for point in result.getRXingResultPointsMut().iter_mut() {
let total_points = result.getRXingResultPoints().len();
let points = result.getRXingResultPointsMut();
for i in 0..total_points {
// for (int i = 0; i < points.length; i++) {
points[i] = RXingResultPoint::new(
height as f32 - points[i].getY() - 1.0,
points[i].getX(),
);
}
// }
Ok(result)
} else {
return Err(Exceptions::NotFoundException("".to_owned()));
}
}
}
fn reset(&mut self) {
for reader in self.0.iter_mut() {
// for (Reader reader : readers) {
reader.reset();
}
}
}

View File

@@ -159,7 +159,10 @@ pub trait OneDReader: Reader {
* @throws NotFoundException if counters cannot be filled entirely from row before running out * @throws NotFoundException if counters cannot be filled entirely from row before running out
* of pixels * of pixels
*/ */
fn recordPattern(row: &BitArray, start: usize, counters: &mut [u32]) -> Result<(), Exceptions> { fn recordPattern(row: &BitArray, start: usize, counters: &mut [u32]) -> Result<(), Exceptions>
where
Self: Sized,
{
let numCounters = counters.len(); let numCounters = counters.len();
// Arrays.fill(counters, 0, numCounters, 0); // Arrays.fill(counters, 0, numCounters, 0);
counters.fill(0); counters.fill(0);
@@ -196,7 +199,10 @@ pub trait OneDReader: Reader {
row: &BitArray, row: &BitArray,
start: usize, start: usize,
counters: &mut [u32], counters: &mut [u32],
) -> Result<(), Exceptions> { ) -> Result<(), Exceptions>
where
Self: Sized,
{
let mut start = start; let mut start = start;
// This could be more efficient I guess // This could be more efficient I guess
let mut numTransitionsLeft = counters.len() as isize; let mut numTransitionsLeft = counters.len() as isize;
@@ -226,7 +232,10 @@ pub trait OneDReader: Reader {
* @param maxIndividualVariance The most any counter can differ before we give up * @param maxIndividualVariance The most any counter can differ before we give up
* @return ratio of total variance between counters and pattern compared to total pattern size * @return ratio of total variance between counters and pattern compared to total pattern size
*/ */
fn patternMatchVariance(counters: &[u32], pattern: &[u32], maxIndividualVariance: f32) -> f32 { fn patternMatchVariance(counters: &[u32], pattern: &[u32], maxIndividualVariance: f32) -> f32
where
Self: Sized,
{
let mut maxIndividualVariance = maxIndividualVariance; let mut maxIndividualVariance = maxIndividualVariance;
let numCounters = counters.len(); let numCounters = counters.len();
let mut total = 0.0; let mut total = 0.0;

View File

@@ -66,5 +66,6 @@ pub trait Reader {
* Resets any internal state the implementation has after a decode, to prepare it * Resets any internal state the implementation has after a decode, to prepare it
* for reuse. * for reuse.
*/ */
fn reset(&mut self); fn reset(&mut self) { /* do nothing */
}
} }

View File

@@ -1,34 +0,0 @@
/*
* Copyright 2008 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.oned;
import com.google.zxing.BarcodeFormat;
import com.google.zxing.MultiFormatReader;
import com.google.zxing.common.AbstractBlackBoxTestCase;
/**
* @author Sean Owen
*/
public final class Code39BlackBox1TestCase extends AbstractBlackBoxTestCase {
public Code39BlackBox1TestCase() {
super("src/test/resources/blackbox/code39-1", new MultiFormatReader(), BarcodeFormat.CODE_39);
addTest(4, 4, 0.0f);
addTest(4, 4, 180.0f);
}
}

View File

@@ -1,34 +0,0 @@
/*
* Copyright 2008 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.oned;
import com.google.zxing.BarcodeFormat;
import com.google.zxing.MultiFormatReader;
import com.google.zxing.common.AbstractBlackBoxTestCase;
/**
* @author dswitkin@google.com (Daniel Switkin)
*/
public final class Code39BlackBox3TestCase extends AbstractBlackBoxTestCase {
public Code39BlackBox3TestCase() {
super("src/test/resources/blackbox/code39-3", new MultiFormatReader(), BarcodeFormat.CODE_39);
addTest(17, 17, 0.0f);
addTest(17, 17, 180.0f);
}
}

View File

@@ -1,33 +0,0 @@
/*
* Copyright 2008 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.oned;
import com.google.zxing.BarcodeFormat;
import com.google.zxing.common.AbstractBlackBoxTestCase;
/**
* @author Sean Owen
*/
public final class Code39ExtendedBlackBox2TestCase extends AbstractBlackBoxTestCase {
public Code39ExtendedBlackBox2TestCase() {
super("src/test/resources/blackbox/code39-2", new Code39Reader(false, true), BarcodeFormat.CODE_39);
addTest(2, 2, 0.0f);
addTest(2, 2, 180.0f);
}
}

View File

@@ -1,57 +0,0 @@
/*
* Copyright 2017 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.oned;
import org.junit.Assert;
import org.junit.Test;
import com.google.zxing.common.BitMatrix;
import com.google.zxing.common.BitArray;
import com.google.zxing.ChecksumException;
import com.google.zxing.FormatException;
import com.google.zxing.NotFoundException;
import com.google.zxing.RXingResult;
/**
* @author Michael Jahn
*/
public final class Code39ExtendedModeTestCase extends Assert {
@SuppressWarnings("checkstyle:lineLength")
@Test
public void testDecodeExtendedMode() throws FormatException, ChecksumException, NotFoundException {
doTest("\u0000\u0001\u0002\u0003\u0004\u0005\u0006\u0007\b\t\n\u000b\f\r\u000e\u000f\u0010\u0011\u0012\u0013\u0014\u0015\u0016\u0017\u0018\u0019\u001a\u001b\u001c\u001d\u001e\u001f",
"000001001011011010101001001001011001010101101001001001010110101001011010010010010101011010010110100100100101011011010010101001001001010101011001011010010010010101101011001010100100100101010110110010101001001001010101010011011010010010010101101010011010100100100101010110100110101001001001010101011001101010010010010101101010100110100100100101010110101001101001001001010110110101001010010010010101010110100110100100100101011010110100101001001001010101101101001010010010010101010101100110100100100101011010101100101001001001010101101011001010010010010101010110110010100100100101011001010101101001001001010100110101011010010010010101100110101010100100100101010010110101101001001001010110010110101010010010010101001101101010101001001001011010100101101010010010010101101001011010100100100101101101001010101001001001010101100101101010010010010110101100101010010110110100000");
doTest(" !\"#$%&'()*+,-./0123456789:;<=>?",
"00000100101101101010011010110101001001010010110101001011010010010100101011010010110100100101001011011010010101001001010010101011001011010010010100101101011001010100100101001010110110010101001001010010101010011011010010010100101101010011010100100101001010110100110101001001010010101011001101010010010100101101010100110100100101001010110101001101001010110110110010101101010010010100101101011010010101001101101011010010101101011001010110110110010101010100110101101101001101010101100110101010100101101101101001011010101100101101010010010100101001101101010101001001001010110110010101010010010010101010011011010100100100101101010011010101001001001010110100110101010010010010101011001101010010110110100000");
doTest("@ABCDEFGHIJKLMNOPQRSTUVWXYZ[\\]^_",
"000010010110110101010010010010100110101011011010100101101011010010110110110100101010101100101101101011001010101101100101010101001101101101010011010101101001101010101100110101101010100110101101010011011011010100101010110100110110101101001010110110100101010101100110110101011001010110101100101010110110010110010101011010011010101101100110101010100101101011011001011010101001101101010101001001001011010101001101010010010010101101010011010100100100101101101010010101001001001010101101001101010010010010110101101001010010110110100000");
doTest("`abcdefghijklmnopqrstuvwxyz{|}~",
"000001001011011010101001001001011001101010101001010010010110101001011010010100100101011010010110100101001001011011010010101001010010010101011001011010010100100101101011001010100101001001010110110010101001010010010101010011011010010100100101101010011010100101001001010110100110101001010010010101011001101010010100100101101010100110100101001001010110101001101001010010010110110101001010010100100101010110100110100101001001011010110100101001010010010101101101001010010100100101010101100110100101001001011010101100101001010010010101101011001010010100100101010110110010100101001001011001010101101001010010010100110101011010010100100101100110101010100101001001010010110101101001010010010110010110101010010100100101001101101010101001001001010110110100101010010010010101010110011010100100100101101010110010101001001001010110101100101010010010010101011011001010010110110100000");
}
private static void doTest(String expectedRXingResult, String encodedRXingResult)
throws FormatException, ChecksumException, NotFoundException {
Code39Reader sut = new Code39Reader(false, true);
BitMatrix matrix = BitMatrix.parse(encodedRXingResult, "1", "0");
BitArray row = new BitArray(matrix.getWidth());
matrix.getRow(0, row);
RXingResult result = sut.decodeRow(0, row, null);
assertEquals(expectedRXingResult, result.getText());
}
}

View File

@@ -14,7 +14,10 @@
* limitations under the License. * limitations under the License.
*/ */
use rxing::{BarcodeFormat, MultiFormatReader, oned::{OneDReader, CodaBarReader}}; use rxing::{
oned::{CodaBarReader, OneDReader},
BarcodeFormat, MultiFormatReader,
};
mod common; mod common;

View File

@@ -0,0 +1,67 @@
/**
* 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 rxing::{
oned::{CodaBarReader, Code39Reader, OneDReader},
BarcodeFormat, MultiFormatReader,
};
mod common;
/**
* @author Sean Owen
*/
#[test]
fn code39_black_box1_test_case() {
let mut tester = common::AbstractBlackBoxTestCase::new(
"test_resources/blackbox/code39-1",
MultiFormatReader::default(),
BarcodeFormat::CODE_39,
);
// super("src/test/resources/blackbox/code39-1", new MultiFormatReader(), BarcodeFormat.CODE_39);
tester.add_test(4, 4, 0.0);
tester.add_test(4, 4, 180.0);
tester.test_black_box();
}
/**
* @author dswitkin@google.com (Daniel Switkin)
*/
#[test]
fn code39_black_box3_test_case() {
let mut tester = common::AbstractBlackBoxTestCase::new(
"test_resources/blackbox/code39-3",
MultiFormatReader::default(),
BarcodeFormat::CODE_39,
);
// super("src/test/resources/blackbox/code39-3", new MultiFormatReader(), BarcodeFormat.CODE_39);
tester.add_test(17, 17, 0.0);
tester.add_test(17, 17, 180.0);
tester.test_black_box();
}
/**
* @author Sean Owen
*/
#[test]
fn code39_extended_black_box2_test_case() {
let mut tester = common::AbstractBlackBoxTestCase::new(
"test_resources/blackbox/code39-2",
Code39Reader::with_all_config(false, true),
BarcodeFormat::CODE_39,
);
// super("src/test/resources/blackbox/code39-2", new Code39Reader(false, true), BarcodeFormat.CODE_39);
tester.add_test(2, 2, 0.0);
tester.add_test(2, 2, 180.0);
tester.test_black_box();
}