2018-06-11 22:41:11 +02:00
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package ar.com.hjg.pngj;
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/**
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* Lightweight wrapper for an image scanline, used for read and write.
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* <p>
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2018-09-22 11:17:30 +02:00
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* This object can be (usually it is) reused while iterating over the image
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* lines.
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2018-06-11 22:41:11 +02:00
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* <p>
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* See <code>scanline</code> field, to understand the format.
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2018-09-22 11:17:30 +02:00
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*
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* Format: byte (one bytes per sample) (for 16bpp the extra byte is placed in an
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* extra array)
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2018-06-11 22:41:11 +02:00
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*/
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public class ImageLineByte implements IImageLine, IImageLineArray {
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2018-09-22 11:17:30 +02:00
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public final ImageInfo imgInfo;
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final byte[] scanline;
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final byte[] scanline2; // only used for 16 bpp (less significant byte) Normally you'd prefer
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// ImageLineInt in this case
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protected FilterType filterType; // informational ; only filled by the reader. not significant for
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// interlaced
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final int size; // = imgInfo.samplePerRowPacked, if packed:imgInfo.samplePerRow elswhere
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public ImageLineByte(final ImageInfo imgInfo) {
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this(imgInfo, null);
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}
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public ImageLineByte(final ImageInfo imgInfo, final byte[] sci) {
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this.imgInfo = imgInfo;
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filterType = FilterType.FILTER_UNKNOWN;
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size = imgInfo.samplesPerRow;
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scanline = sci != null && sci.length >= size ? sci : new byte[size];
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scanline2 = imgInfo.bitDepth == 16 ? new byte[size] : null;
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}
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/**
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* Returns a factory for this object
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*/
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public static IImageLineFactory<ImageLineByte> getFactory() {
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return iminfo -> new ImageLineByte(iminfo);
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}
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public FilterType getFilterUsed() {
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return filterType;
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}
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/**
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* One byte per sample. This can be used also for 16bpp images, but in this
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* case this loses the less significant
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* 8-bits ; see also getScanlineByte2 and getElem.
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*/
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public byte[] getScanlineByte() {
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return scanline;
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}
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/**
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* only for 16bpp (less significant byte)
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*
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* @return null for less than 16bpp
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*/
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public byte[] getScanlineByte2() {
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return scanline2;
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}
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/**
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* Basic info
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*/
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@Override
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public String toString() {
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return " cols=" + imgInfo.cols + " bpc=" + imgInfo.bitDepth + " size=" + scanline.length;
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}
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@Override
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public void readFromPngRaw(final byte[] raw, final int len, final int offset, final int step) {
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filterType = FilterType.getByVal(raw[0]); // only for non interlaced line the filter is significative
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final int len1 = len - 1;
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final int step1 = (step - 1) * imgInfo.channels;
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if (imgInfo.bitDepth == 8) {
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if (step == 1)
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System.arraycopy(raw, 1, scanline, 0, len1);
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else
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for (int s = 1, c = 0, i = offset * imgInfo.channels; s <= len1; s++, i++) {
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scanline[i] = raw[s];
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c++;
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if (c == imgInfo.channels) {
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c = 0;
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i += step1;
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}
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}
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} else if (imgInfo.bitDepth == 16) {
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if (step == 1)
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for (int i = 0, s = 1; i < imgInfo.samplesPerRow; i++) {
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scanline[i] = raw[s++]; // get the first byte
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scanline2[i] = raw[s++]; // get the first byte
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}
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else
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for (int s = 1, c = 0, i = offset != 0 ? offset * imgInfo.channels : 0; s <= len1; i++) {
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scanline[i] = raw[s++];
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scanline2[i] = raw[s++];
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c++;
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if (c == imgInfo.channels) {
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c = 0;
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i += step1;
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}
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}
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} else { // packed formats
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int mask0, mask, shi, bd;
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bd = imgInfo.bitDepth;
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mask0 = ImageLineHelper.getMaskForPackedFormats(bd);
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for (int i = offset * imgInfo.channels, r = 1, c = 0; r < len; r++) {
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mask = mask0;
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shi = 8 - bd;
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do {
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scanline[i] = (byte) ((raw[r] & mask) >> shi);
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mask >>= bd;
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shi -= bd;
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i++;
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c++;
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if (c == imgInfo.channels) {
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c = 0;
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i += step1;
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}
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} while (mask != 0 && i < size);
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}
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}
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}
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@Override
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public void writeToPngRaw(final byte[] raw) {
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raw[0] = (byte) filterType.val;
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if (imgInfo.bitDepth == 8)
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System.arraycopy(scanline, 0, raw, 1, size);
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else if (imgInfo.bitDepth == 16)
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for (int i = 0, s = 1; i < size; i++) {
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raw[s++] = scanline[i];
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raw[s++] = scanline2[i];
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}
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else { // packed formats
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int shi, bd, v;
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bd = imgInfo.bitDepth;
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shi = 8 - bd;
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v = 0;
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for (int i = 0, r = 1; i < size; i++) {
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v |= scanline[i] << shi;
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shi -= bd;
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if (shi < 0 || i == size - 1) {
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raw[r++] = (byte) v;
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shi = 8 - bd;
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v = 0;
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}
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}
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}
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}
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@Override
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public void endReadFromPngRaw() {}
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@Override
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public int getSize() {
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return size;
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}
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@Override
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public int getElem(final int i) {
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return scanline2 == null ? scanline[i] & 0xFF : (scanline[i] & 0xFF) << 8 | scanline2[i] & 0xFF;
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}
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public byte[] getScanline() {
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return scanline;
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}
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@Override
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public ImageInfo getImageInfo() {
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return imgInfo;
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}
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@Override
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public FilterType getFilterType() {
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return filterType;
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}
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/**
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* This should rarely be used by client code. Only relevant if
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* FilterPreserve==true
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*/
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public void setFilterType(final FilterType ft) {
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filterType = ft;
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}
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2018-06-11 22:41:11 +02:00
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}
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