id
int64
1
49k
buggy
stringlengths
34
37.5k
fixed
stringlengths
2
37k
2,901
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,902
int w10 = roiIter.getSample(x0, y0 + 1, 0) & 0xff; int w11 = roiIter.getSample(x0 + 1, y0 + 1, 0) & 0xff; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,903
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,904
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,905
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,906
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,907
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,908
final int w10 = roiIter.getSample(x0, y0 + 1, 0) & 0xff; final int w11 = roiIter.getSample(x0 + 1, y0 + 1, 0) & 0xff; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,909
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,910
int w01 = noData.contains(s01) ? 0 : 1; int w10 = noData.contains(s10) ? 0 : 1; int w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01, w10,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,911
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = (short) (intResult); } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } } if (fracx < fracdx1) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,912
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,913
int w11 = w11index < roiDataLength ? roiDataArray[w11index] & 0xff : 0; if (baseIndex > roiDataLength || w00 == 0 || (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0)) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,914
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01, w10,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,915
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,916
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,917
int w10 = roiIter.getSample(x0, y0 + 1, 0) & 0xff; int w11 = roiIter.getSample(x0 + 1, y0 + 1, 0) & 0xff; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,918
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,919
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
2,920
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,921
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,922
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,923
final int w10 = roiIter.getSample(x0, y0 + 1, 0) & 0xff; final int w11 = roiIter.getSample(x0 + 1, y0 + 1, 0) & 0xff; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,924
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,925
int w01 = noData.contains(s01) ? 0 : 1; int w10 = noData.contains(s10) ? 0 : 1; int w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01, w10,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,926
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = intResult; } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } } if (fracx < fracdx1) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,927
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,928
int w11 = w11index < roiDataLength ? roiDataArray[w11index] & 0xff : 0; if (baseIndex > roiDataLength || w00 == 0 || (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0)) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,929
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01, w10,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,930
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,931
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,932
int w10 = roiIter.getSample(x0, y0 + 1, 0) & 0xff; int w11 = roiIter.getSample(x0 + 1, y0 + 1, 0) & 0xff; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,933
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,934
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
2,935
float result = (float) ((s1 - s0) * fracy + s0); dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = result; } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } } if (fracx < fracdx1) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,936
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,937
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,938
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,939
final int w10 = roiIter.getSample(x0, y0 + 1, 0) & 0xff; final int w11 = roiIter.getSample(x0 + 1, y0 + 1, 0) & 0xff; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,940
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,941
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01, w10,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,942
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = (float) result; } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } } if (fracx < fracdx1) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,943
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,944
int w11 = w11index < roiDataLength ? roiDataArray[w11index] & 0xff : 0; if (baseIndex > roiDataLength || w00 == 0 || (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0)) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,945
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01, w10,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,946
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,947
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,948
int w10 = roiIter.getSample(x0, y0 + 1, 0) & 0xff; int w11 = roiIter.getSample(x0 + 1, y0 + 1, 0) & 0xff; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,949
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,950
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
2,951
double result = ((s1 - s0) * fracy + s0); dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = result; } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } } if (fracx < fracdx1) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,952
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,953
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,954
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,955
final int w10 = roiIter.getSample(x0, y0 + 1, 0) & 0xff; final int w11 = roiIter.getSample(x0 + 1, y0 + 1, 0) & 0xff; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,956
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,957
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01, w10,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,958
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = result; } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } } if (fracx < fracdx1) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,959
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,960
int w11 = w11index < roiDataLength ? roiDataArray[w11index] & 0xff : 0; if (baseIndex > roiDataLength || w00 == 0 || (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0)) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,961
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01, w10,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,962
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,963
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,964
int w10 = roiIter.getSample(x0, y0 + 1, 0) & 0xff; int w11 = roiIter.getSample(x0 + 1, y0 + 1, 0) & 0xff; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,965
w01 = noData.contains(s01) ? 0 : 1; w10 = noData.contains(s10) ? 0 : 1; w11 = noData.contains(s11) ? 0 : 1; if (w00 == 0 && w01 == 0 && w10 == 0 && w11 == 0) { if (setDestinationNoData) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } } else { double result = computeValue(s00, s01, s10, s11, w00, w01,
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,966
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
2,967
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,968
final int posyROI = (s_iy - srcRectY) * roiScanlineStride; final int baseIndex = (posx / dst_num_bands) + posyROI; if (baseIndex > roiDataLength || roiDataArray[baseIndex] == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,969
: 0); } } } if (tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,970
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,971
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,972
int x0 = src.getX() + posx / srcPixelStride; int y0 = src.getY() + posy / srcScanlineStride; if (!roiBounds.contains(x0, y0)) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,973
pixelKernel[h][z] = srcDataArrays[k2][pos + (z - 1) tmpROI += roiIter.getSample(x0 + h - 1, y0 + z - 1, 0) & 0xff; } } if (tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,974
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,975
for (int h = 0; h < KERNEL_LINE_DIM; h++) { for (int z = 0; z < KERNEL_LINE_DIM; z++) { int sample = bandDataArray[pos + (z - 1) * srcPixelStride + (h - 1) * srcScanlineStride + bandOffsets[k2] ] & 0xff; pixelKernel[h][z] = sample; <BUG>if (byteLookupTable[sample] != destinationNoDataByte) { </BUG> weight |= (1 << (4 * h + z)); } else { weight &= (0xffff - (1 << 4 * h + z));
if (byteLookupTable[k2][sample] != destinationNoDataByte[k2]) {
2,976
weightVert &= (0x0F - (1 << h)); } sumArray[h] = ((tempSum + round) >> precisionBits); } if (weight == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> } else { tempData = bicubicInpainting(sumArray, weightVert, emptyArray); sum = tempData[0] * dataVi[offsetY] + tempData[1]
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,977
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = (byte) (result & 0xff); } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> } } if (fracx < fracdx1) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,978
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,979
final int offsetY = KERNEL_LINE_DIM * (int) (shift * fracy); final int pos = posx + posy; if (baseIndex > roiDataLength || roiDataArray[baseIndex] == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,980
int index = baseIndex - 1 + z + (h - 1) if (index < roiDataLength) { tmpROI += ((byte) (roiDataArray[index] & 0xff) != 0 ? 1 : 0); } <BUG>if (byteLookupTable[(int) pixelKernel[h][z]] != destinationNoDataByte) { </BUG> weight |= (1 << (4 * h + z)); } else { weight &= (0xffff - (1 << 4 * h + z));
if (byteLookupTable[k2][(int) pixelKernel[h][z]] != destinationNoDataByte[k2]) {
2,981
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,982
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,983
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,984
final int offsetY = KERNEL_LINE_DIM * (int) (shift * fracy); final int pos = posx + posy; if (!roiBounds.contains(x0, y0)) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,985
int tmpROI = 0; for (int h = 0; h < KERNEL_LINE_DIM; h++) { for (int z = 0; z < KERNEL_LINE_DIM; z++) { pixelKernel[h][z] = srcDataArrays[k2][pos + (z - 1) tmpROI += roiIter.getSample(x0 + h - 1, y0 + z - 1, 0) & 0xff; <BUG>if (byteLookupTable[(int) pixelKernel[h][z]] != destinationNoDataByte) { </BUG> weight |= (1 << (4 * h + z)); } else { weight &= (0xffff - (1 << 4 * h + z));
if (byteLookupTable[k2][(int) pixelKernel[h][z]] != destinationNoDataByte[k2]) {
2,986
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,987
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataByte[k2];
2,988
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,989
final int posyROI = (s_iy - srcRectY) * roiScanlineStride; final int baseIndex = (posx / dst_num_bands) + posyROI; if (baseIndex > roiDataLength || roiDataArray[baseIndex] == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,990
: 0); } } } if (tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,991
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,992
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,993
int x0 = src.getX() + posx / srcPixelStride; int y0 = src.getY() + posy / srcScanlineStride; if (!roiBounds.contains(x0, y0)) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,994
pixelKernel[h][z] = srcDataArrays[k2][pos + (z - 1) tmpROI += roiIter.getSample(x0 + h - 1, y0 + z - 1, 0) & 0xff; } } if (tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,995
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,996
weightVert &= (0x0F - (1 << h)); } sumArray[h] = ((tempSum + round) >> precisionBits); } if (weight == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> } else { long[] tempData = bicubicInpainting(sumArray, weightVert, emptyArray);
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,997
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = (short) (result & 0xffff); } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> } } if (fracx < fracdx1) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,998
s_ix = startPts[0].x; s_iy = startPts[0].y; if (setDestinationNoData) { for (int x = dst_min_x; x < clipMinX; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
2,999
final int offsetY = KERNEL_LINE_DIM * (int) (shift * fracy); final int pos = posx + posy; if (baseIndex > roiDataLength || roiDataArray[baseIndex] == 0) { if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
3,000
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];