/* * Copyright 2011 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.maxicode; import com.google.zxing.BarcodeFormat; import com.google.zxing.BinaryBitmap; import com.google.zxing.ChecksumException; import com.google.zxing.DecodeHintType; import com.google.zxing.FormatException; import com.google.zxing.NotFoundException; import com.google.zxing.Reader; import com.google.zxing.RXingResult; import com.google.zxing.RXingResultMetadataType; import com.google.zxing.RXingResultPoint; import com.google.zxing.common.BitMatrix; import com.google.zxing.common.DecoderRXingResult; import com.google.zxing.maxicode.decoder.Decoder; import java.util.Map; /** * This implementation can detect and decode a MaxiCode in an image. */ public final class MaxiCodeReader implements Reader { private static final RXingResultPoint[] NO_POINTS = new RXingResultPoint[0]; private static final int MATRIX_WIDTH = 30; private static final int MATRIX_HEIGHT = 33; private final Decoder decoder = new Decoder(); /** * Locates and decodes a MaxiCode in an image. * * @return a String representing the content encoded by the MaxiCode * @throws NotFoundException if a MaxiCode cannot be found * @throws FormatException if a MaxiCode cannot be decoded * @throws ChecksumException if error correction fails */ @Override public RXingResult decode(BinaryBitmap image) throws NotFoundException, ChecksumException, FormatException { return decode(image, null); } @Override public RXingResult decode(BinaryBitmap image, Map hints) throws NotFoundException, ChecksumException, FormatException { // Note that MaxiCode reader effectively always assumes PURE_BARCODE mode // and can't detect it in an image BitMatrix bits = extractPureBits(image.getBlackMatrix()); DecoderRXingResult decoderRXingResult = decoder.decode(bits, hints); RXingResult result = new RXingResult(decoderRXingResult.getText(), decoderRXingResult.getRawBytes(), NO_POINTS, BarcodeFormat.MAXICODE); String ecLevel = decoderRXingResult.getECLevel(); if (ecLevel != null) { result.putMetadata(RXingResultMetadataType.ERROR_CORRECTION_LEVEL, ecLevel); } return result; } @Override public void reset() { // do nothing } /** * This method detects a code in a "pure" image -- that is, pure monochrome image * which contains only an unrotated, unskewed, image of a code, with some white border * around it. This is a specialized method that works exceptionally fast in this special * case. */ private static BitMatrix extractPureBits(BitMatrix image) throws NotFoundException { int[] enclosingRectangle = image.getEnclosingRectangle(); if (enclosingRectangle == null) { throw NotFoundException.getNotFoundInstance(); } int left = enclosingRectangle[0]; int top = enclosingRectangle[1]; int width = enclosingRectangle[2]; int height = enclosingRectangle[3]; // Now just read off the bits BitMatrix bits = new BitMatrix(MATRIX_WIDTH, MATRIX_HEIGHT); for (int y = 0; y < MATRIX_HEIGHT; y++) { int iy = Math.min(top + (y * height + height / 2) / MATRIX_HEIGHT, height - 1); for (int x = 0; x < MATRIX_WIDTH; x++) { // srowen: I don't quite understand why the formula below is necessary, but it // can walk off the image if left + width = the right boundary. So cap it. int ix = left + Math.min( (x * width + width / 2 + (y & 0x01) * width / 2) / MATRIX_WIDTH, width - 1); if (image.get(ix, iy)) { bits.set(x, y); } } } return bits; } }