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Catch more weird edge cases where readBits fails on bad QR codes and just return FormatException; remove a deprecated PDF417 method
git-svn-id: https://zxing.googlecode.com/svn/trunk@2542 59b500cc-1b3d-0410-9834-0bbf25fbcc57
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@ -22,7 +22,6 @@ import com.google.zxing.Writer;
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import com.google.zxing.WriterException;
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import com.google.zxing.common.BitMatrix;
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import java.util.EnumMap;
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import java.util.Map;
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/**
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@ -70,28 +69,6 @@ public final class PDF417Writer implements Writer {
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return encode(contents, format, width, height, null);
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}
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/**
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* @deprecated Use {@link #encode(String, BarcodeFormat, int, int, Map)} instead, with hints to
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* specify the encoding options.
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*/
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@Deprecated
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public BitMatrix encode(String contents,
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BarcodeFormat format,
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boolean compact,
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int width,
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int height,
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int minCols,
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int maxCols,
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int minRows,
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int maxRows,
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Compaction compaction) throws WriterException {
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Map<EncodeHintType, Object> hints = new EnumMap<EncodeHintType,Object>(EncodeHintType.class);
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hints.put(EncodeHintType.PDF417_COMPACT, compact);
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hints.put(EncodeHintType.PDF417_COMPACTION, compaction);
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hints.put(EncodeHintType.PDF417_DIMENSIONS, new Dimensions(minCols, maxCols, minRows, maxRows));
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return encode(contents, format, width, height, hints);
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}
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/**
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* Takes encoder, accounts for width/height, and retrieves bit matrix
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*/
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@ -59,68 +59,69 @@ final class DecodedBitStreamParser {
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Map<DecodeHintType,?> hints) throws FormatException {
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BitSource bits = new BitSource(bytes);
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StringBuilder result = new StringBuilder(50);
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CharacterSetECI currentCharacterSetECI = null;
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boolean fc1InEffect = false;
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List<byte[]> byteSegments = new ArrayList<byte[]>(1);
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Mode mode;
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do {
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// While still another segment to read...
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if (bits.available() < 4) {
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// OK, assume we're done. Really, a TERMINATOR mode should have been recorded here
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mode = Mode.TERMINATOR;
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} else {
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try {
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mode = Mode.forBits(bits.readBits(4)); // mode is encoded by 4 bits
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} catch (IllegalArgumentException iae) {
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throw FormatException.getFormatInstance();
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}
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}
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if (mode != Mode.TERMINATOR) {
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if (mode == Mode.FNC1_FIRST_POSITION || mode == Mode.FNC1_SECOND_POSITION) {
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// We do little with FNC1 except alter the parsed result a bit according to the spec
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fc1InEffect = true;
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} else if (mode == Mode.STRUCTURED_APPEND) {
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if (bits.available() < 16) {
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throw FormatException.getFormatInstance();
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}
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// not really supported; all we do is ignore it
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// Read next 8 bits (symbol sequence #) and 8 bits (parity data), then continue
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bits.readBits(16);
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} else if (mode == Mode.ECI) {
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// Count doesn't apply to ECI
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int value = parseECIValue(bits);
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currentCharacterSetECI = CharacterSetECI.getCharacterSetECIByValue(value);
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if (currentCharacterSetECI == null) {
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throw FormatException.getFormatInstance();
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}
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try {
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CharacterSetECI currentCharacterSetECI = null;
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boolean fc1InEffect = false;
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Mode mode;
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do {
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// While still another segment to read...
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if (bits.available() < 4) {
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// OK, assume we're done. Really, a TERMINATOR mode should have been recorded here
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mode = Mode.TERMINATOR;
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} else {
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// First handle Hanzi mode which does not start with character count
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if (mode == Mode.HANZI) {
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//chinese mode contains a sub set indicator right after mode indicator
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int subset = bits.readBits(4);
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int countHanzi = bits.readBits(mode.getCharacterCountBits(version));
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if (subset == GB2312_SUBSET) {
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decodeHanziSegment(bits, result, countHanzi);
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}
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} else {
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// "Normal" QR code modes:
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// How many characters will follow, encoded in this mode?
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int count = bits.readBits(mode.getCharacterCountBits(version));
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if (mode == Mode.NUMERIC) {
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decodeNumericSegment(bits, result, count);
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} else if (mode == Mode.ALPHANUMERIC) {
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decodeAlphanumericSegment(bits, result, count, fc1InEffect);
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} else if (mode == Mode.BYTE) {
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decodeByteSegment(bits, result, count, currentCharacterSetECI, byteSegments, hints);
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} else if (mode == Mode.KANJI) {
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decodeKanjiSegment(bits, result, count);
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} else {
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mode = Mode.forBits(bits.readBits(4)); // mode is encoded by 4 bits
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}
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if (mode != Mode.TERMINATOR) {
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if (mode == Mode.FNC1_FIRST_POSITION || mode == Mode.FNC1_SECOND_POSITION) {
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// We do little with FNC1 except alter the parsed result a bit according to the spec
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fc1InEffect = true;
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} else if (mode == Mode.STRUCTURED_APPEND) {
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if (bits.available() < 16) {
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throw FormatException.getFormatInstance();
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}
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// not really supported; all we do is ignore it
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// Read next 8 bits (symbol sequence #) and 8 bits (parity data), then continue
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bits.readBits(16);
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} else if (mode == Mode.ECI) {
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// Count doesn't apply to ECI
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int value = parseECIValue(bits);
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currentCharacterSetECI = CharacterSetECI.getCharacterSetECIByValue(value);
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if (currentCharacterSetECI == null) {
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throw FormatException.getFormatInstance();
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}
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} else {
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// First handle Hanzi mode which does not start with character count
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if (mode == Mode.HANZI) {
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//chinese mode contains a sub set indicator right after mode indicator
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int subset = bits.readBits(4);
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int countHanzi = bits.readBits(mode.getCharacterCountBits(version));
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if (subset == GB2312_SUBSET) {
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decodeHanziSegment(bits, result, countHanzi);
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}
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} else {
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// "Normal" QR code modes:
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// How many characters will follow, encoded in this mode?
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int count = bits.readBits(mode.getCharacterCountBits(version));
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if (mode == Mode.NUMERIC) {
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decodeNumericSegment(bits, result, count);
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} else if (mode == Mode.ALPHANUMERIC) {
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decodeAlphanumericSegment(bits, result, count, fc1InEffect);
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} else if (mode == Mode.BYTE) {
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decodeByteSegment(bits, result, count, currentCharacterSetECI, byteSegments, hints);
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} else if (mode == Mode.KANJI) {
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decodeKanjiSegment(bits, result, count);
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} else {
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throw FormatException.getFormatInstance();
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}
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}
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}
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}
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}
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} while (mode != Mode.TERMINATOR);
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} while (mode != Mode.TERMINATOR);
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} catch (IllegalArgumentException iae) {
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// from readBits() calls
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throw FormatException.getFormatInstance();
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}
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return new DecoderResult(bytes,
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result.toString(),
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