id
int64
1
194k
buggy
stringlengths
23
37.5k
fixed
stringlengths
6
37.4k
201
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]] = destinationNoDataUShort; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2]; } } } else {
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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;
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
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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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2]; dstPixelOffset += dstPixelStride; } }
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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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataShort; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; } } } else {
206
: 0); } } } if (tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
: 0); } } } if (tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
207
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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; dstPixelOffset += dstPixelStride; } }
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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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataShort; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; } } } else {
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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]] = destinationNoDataShort; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
pixelKernel[h][z] = srcDataArrays[k2][pos + (z - 1) tmpROI += roiIter.getSample(x0 + h - 1, y0 + z - 1, 0) & 0xff; } } if (tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
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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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; dstPixelOffset += dstPixelStride; } }
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weightVert &= (0x0F - (1 << h)); } sumArray[h] = ((tempSum + round) >> precisionBits); } if (weight == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } else { long[] tempData = bicubicInpainting(sumArray, weightVert, emptyArray);
weightVert &= (0x0F - (1 << h)); } sumArray[h] = ((tempSum + round) >> precisionBits); } if (weight == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; } else { long[] tempData = bicubicInpainting(sumArray, weightVert, emptyArray);
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dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = (short) result; } } } 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]] = (short) result; } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; } } if (fracx < fracdx1) {
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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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataShort; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; } } } else {
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weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
217
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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; dstPixelOffset += dstPixelStride; } }
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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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataShort; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; } } } else {
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weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
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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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2]; dstPixelOffset += dstPixelStride; } }
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result = (int) ((sum + round) >> precisionBits); dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = result; } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } } if (fracx < fracdx1) {
result = (int) ((sum + round) >> precisionBits); dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = result; } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } } if (fracx < fracdx1) {
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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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataInt; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } } } else {
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: 0); } } } if (tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
: 0); } } } if (tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
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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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; dstPixelOffset += dstPixelStride; } }
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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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataInt; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } } } else {
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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]] = destinationNoDataInt; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
pixelKernel[h][z] = srcDataArrays[k2][pos + (z - 1) tmpROI += roiIter.getSample(x0 + h - 1, y0 + z - 1, 0) & 0xff; } } if (tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
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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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; dstPixelOffset += dstPixelStride; } }
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weightVert &= (0x0F - (1 << h)); } sumArray[h] = ((tempSum + round) >> precisionBits); } if (weight == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } else { long[] tempData = bicubicInpainting(sumArray, weightVert, emptyArray);
weightVert &= (0x0F - (1 << h)); } sumArray[h] = ((tempSum + round) >> precisionBits); } if (weight == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } else { long[] tempData = bicubicInpainting(sumArray, weightVert, emptyArray);
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dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = result; } } } 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]] = result; } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } } if (fracx < fracdx1) {
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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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataInt; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } } } else {
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weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
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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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; dstPixelOffset += dstPixelStride; } }
237
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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; dstPixelOffset += dstPixelStride; } } else
238
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]] = destinationNoDataInt; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } } } else {
239
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { long tempSum = 0;
240
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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2]; dstPixelOffset += dstPixelStride; } }
241
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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; dstPixelOffset += dstPixelStride; } } else
242
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]] = destinationNoDataFloat; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; } } } else {
243
: 0); } } } if (tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { float tempSum = 0;
: 0); } } } if (tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { float tempSum = 0;
244
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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; dstPixelOffset += dstPixelStride; } }
245
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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; dstPixelOffset += dstPixelStride; } } else
246
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]] = destinationNoDataFloat; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; } } } else {
247
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]] = destinationNoDataFloat; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { float tempSum = 0;
pixelKernel[h][z] = srcDataArrays[k2][pos + (z - 1) tmpROI += roiIter.getSample(x0 + h - 1, y0 + z - 1, 0) & 0xff; } } if (tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { float tempSum = 0;
248
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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; dstPixelOffset += dstPixelStride; } }
249
weightVert &= (0x0F - (1 << h)); } sumArray[h] = tempSum; } if (weight == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } else { double[] tempData = bicubicInpaintingDouble(sumArray, weightVert, emptyArray);
weightVert &= (0x0F - (1 << h)); } sumArray[h] = tempSum; } if (weight == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; } else { double[] tempData = bicubicInpaintingDouble(sumArray, weightVert, emptyArray);
250
sum = 0; } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } } if (fracx < fracdx1) {
sum = 0; } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; } } if (fracx < fracdx1) {
251
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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataFloat; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; } } } else {
253
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
254
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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; dstPixelOffset += dstPixelStride; } }
255
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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; dstPixelOffset += dstPixelStride; } } else
256
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]] = destinationNoDataFloat; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; } } } else {
257
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
258
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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2]; dstPixelOffset += dstPixelStride; } }
259
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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataDouble; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; } } } else {
261
: 0); } } } if (tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
: 0); } } } if (tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
262
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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; dstPixelOffset += dstPixelStride; } }
263
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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataDouble; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; } } } else {
265
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]] = destinationNoDataDouble; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
pixelKernel[h][z] = srcDataArrays[k2][pos + (z - 1) tmpROI += roiIter.getSample(x0 + h - 1, y0 + z - 1, 0) & 0xff; } } if (tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
266
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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; dstPixelOffset += dstPixelStride; } }
267
weightVert &= (0x0F - (1 << h)); } sumArray[h] = tempSum; } if (weight == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } else { double[] tempData = bicubicInpaintingDouble(sumArray, weightVert, emptyArray);
weightVert &= (0x0F - (1 << h)); } sumArray[h] = tempSum; } if (weight == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; } else { double[] tempData = bicubicInpaintingDouble(sumArray, weightVert, emptyArray);
268
sum = 0; } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } } if (fracx < fracdx1) {
sum = 0; } } } else if (setDestinationNoData) { for (int k2 = 0; k2 < dst_num_bands; k2++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; } } if (fracx < fracdx1) {
269
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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; dstPixelOffset += dstPixelStride; } } else
270
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]] = destinationNoDataDouble; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; } } } else {
271
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
272
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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; dstPixelOffset += dstPixelStride; } }
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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
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++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; dstPixelOffset += dstPixelStride; } } else
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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]] = destinationNoDataDouble; </BUG> } } } else {
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++) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; } } } else {
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weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { <BUG>dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
weight &= (0xffff - (1 << 4 * h + z)); } } } if (weight == 0 || tmpROI == 0) { dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
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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; } }
dstPixelOffset += dstPixelStride; } if (setDestinationNoData && clipMinX <= clipMaxX) { for (int x = clipMaxX; x < dst_max_x; x++) { for (int k2 = 0; k2 < dst_num_bands; k2++) dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2]; dstPixelOffset += dstPixelStride; } }
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UserGroupGroupRoleLocalServiceUtil.addUserGroupGroupRoles( <BUG>userGroup.getGroupId(), group.getGroupId(), roleIds); </BUG> UserGroupRoleLocalServiceUtil.addUserGroupRoles( <BUG>user.getUserId(), group.getGroupId(), roleIds); </BUG> Assert.assertEquals( <BUG>2, RoleLocalServiceUtil.getAssigneesTotal(role.getRoleId())); </BUG> }
UserGroupGroupRoleLocalServiceUtil.addUserGroupGroupRoles( _userGroup.getGroupId(), _group.getGroupId(), roleIds); UserGroupRoleLocalServiceUtil.addUserGroupRoles( _user.getUserId(), _group.getGroupId(), roleIds); Assert.assertEquals( 2, RoleLocalServiceUtil.getAssigneesTotal(_role.getRoleId())); }
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group.getGroupId()); testGetTeamRoleMap(teamRoleMap, team, true); } protected Object[] getOrganizationAndTeam() throws Exception { User user = TestPropsValues.getUser(); <BUG>Organization organization = OrganizationLocalServiceUtil.addOrganization( </BUG> user.getUserId(), OrganizationConstants.DEFAULT_PARENT_ORGANIZATION_ID,
group.getGroupId()); testGetTeamRoleMap(teamRoleMap, team, true); } protected Object[] getOrganizationAndTeam() throws Exception { User user = TestPropsValues.getUser(); _organization = OrganizationLocalServiceUtil.addOrganization( user.getUserId(), OrganizationConstants.DEFAULT_PARENT_ORGANIZATION_ID,
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Team team = TeamLocalServiceUtil.addTeam( <BUG>user.getUserId(), organization.getGroupId(), </BUG> RandomTestUtil.randomString(), null, new ServiceContext()); <BUG>return new Object[] {organization, team}; </BUG> } protected void testGetTeamRoleMap( Map<Team, Role> teamRoleMap, Team team, boolean hasTeam) { Assert.assertNotNull(teamRoleMap);
Team team = TeamLocalServiceUtil.addTeam( user.getUserId(), _organization.getGroupId(), RandomTestUtil.randomString(), null, new ServiceContext()); return new Object[] {_organization, team}; } protected void testGetTeamRoleMap( Map<Team, Role> teamRoleMap, Team team, boolean hasTeam) { Assert.assertNotNull(teamRoleMap);
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else { Assert.assertFalse(teamRoleMap.containsKey(team)); } } @DeleteAfterTestRun <BUG>private final List<Group> _groups = new ArrayList<>(); @DeleteAfterTestRun private final List<Organization> _organizations = new ArrayList<>(); @DeleteAfterTestRun private final List<Role> _roles = new ArrayList<>(); @DeleteAfterTestRun private final List<UserGroup> _userGroups = new ArrayList<>(); @DeleteAfterTestRun private final List<User> _users = new ArrayList<>(); }</BUG>
else { Assert.assertFalse(teamRoleMap.containsKey(team)); } }
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import com.liferay.document.library.web.display.context.logic.FileEntryDisplayContextHelper; import com.liferay.portal.kernel.exception.PortalException; import com.liferay.portal.kernel.portlet.configuration.icon.BasePortletConfigurationIcon; import com.liferay.portal.kernel.repository.model.FileEntry; import com.liferay.portal.kernel.util.Constants; <BUG>import com.liferay.portal.util.PortalUtil; import com.liferay.portlet.trash.util.TrashUtil;</BUG> import javax.portlet.ActionRequest; import javax.portlet.PortletRequest; import javax.portlet.PortletURL;
import com.liferay.document.library.web.display.context.logic.FileEntryDisplayContextHelper; import com.liferay.portal.kernel.exception.PortalException; import com.liferay.portal.kernel.portlet.configuration.icon.BasePortletConfigurationIcon; import com.liferay.portal.kernel.repository.model.FileEntry; import com.liferay.portal.kernel.util.Constants; import com.liferay.portal.util.PortalUtil; import com.liferay.portlet.documentlibrary.model.DLFolderConstants; import com.liferay.portlet.trash.util.TrashUtil; import javax.portlet.ActionRequest; import javax.portlet.PortletRequest; import javax.portlet.PortletURL;
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import com.liferay.document.library.web.constants.DLPortletKeys; import com.liferay.document.library.web.display.context.logic.FileEntryDisplayContextHelper; import com.liferay.portal.kernel.exception.PortalException; import com.liferay.portal.kernel.portlet.configuration.icon.BasePortletConfigurationIcon; import com.liferay.portal.kernel.repository.model.FileEntry; <BUG>import com.liferay.portal.util.PortalUtil; import javax.portlet.PortletRequest;</BUG> import javax.portlet.PortletURL; public class MoveFileEntryPortletConfigurationIcon extends BasePortletConfigurationIcon {
import com.liferay.document.library.web.constants.DLPortletKeys; import com.liferay.document.library.web.display.context.logic.FileEntryDisplayContextHelper; import com.liferay.portal.kernel.exception.PortalException; import com.liferay.portal.kernel.portlet.configuration.icon.BasePortletConfigurationIcon; import com.liferay.portal.kernel.repository.model.FileEntry; import com.liferay.portal.util.PortalUtil; import com.liferay.portlet.documentlibrary.model.DLFolderConstants; import javax.portlet.PortletRequest; import javax.portlet.PortletURL; public class MoveFileEntryPortletConfigurationIcon extends BasePortletConfigurationIcon {
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mvcRenderCommandName.equals("/document_library/select_folder")) { _addPortletBreadcrumbEntry( request, "mvcRenderCommandName", mvcRenderCommandName, groupId, ignoreRootFolder, portletURL); } <BUG>else { portletURL.setParameter( "mvcRenderCommandName", "/document_library/view"); }</BUG> addPortletBreadcrumbEntries(folder, request, portletURL);
mvcRenderCommandName.equals("/document_library/select_folder")) { _addPortletBreadcrumbEntry( request, "mvcRenderCommandName", mvcRenderCommandName, groupId, ignoreRootFolder, portletURL);
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import com.liferay.portal.theme.ThemeDisplay; import com.liferay.portal.util.PortalUtil; import com.liferay.portal.util.PropsValues; import com.liferay.portlet.PortletURLUtil; import com.liferay.portlet.documentlibrary.display.context.DLUIItemKeys; <BUG>import com.liferay.portlet.documentlibrary.model.DLFileEntryConstants; import com.liferay.portlet.documentlibrary.util.DLUtil;</BUG> import com.liferay.portlet.trash.util.TrashUtil; import com.liferay.taglib.security.PermissionsURLTag; import java.util.List;
import com.liferay.portal.theme.ThemeDisplay; import com.liferay.portal.util.PortalUtil; import com.liferay.portal.util.PropsValues; import com.liferay.portlet.PortletURLUtil; import com.liferay.portlet.documentlibrary.display.context.DLUIItemKeys; import com.liferay.portlet.documentlibrary.model.DLFileEntryConstants; import com.liferay.portlet.documentlibrary.model.DLFolderConstants; import com.liferay.portlet.documentlibrary.util.DLUtil; import com.liferay.portlet.trash.util.TrashUtil; import com.liferay.taglib.security.PermissionsURLTag; import java.util.List;
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LiferayPortletResponse liferayPortletResponse = _getLiferayPortletResponse(); PortletURL portletURL = liferayPortletResponse.createRenderURL(); portletURL.setParameter( "mvcRenderCommandName", "/document_library/move_entry"); <BUG>PortletURL redirectURL = liferayPortletResponse.createRenderURL(); redirectURL.setParameter( "mvcRenderCommandName", "/document_library/view"); redirectURL.setParameter("folderId", String.valueOf(_folderId)); </BUG> portletURL.setParameter("redirect", redirectURL.toString());
LiferayPortletResponse liferayPortletResponse = _getLiferayPortletResponse(); PortletURL portletURL = liferayPortletResponse.createRenderURL(); long folderId = _fileEntry.getFolderId(); if (folderId == DLFolderConstants.DEFAULT_PARENT_FOLDER_ID) {
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"package test " + "class Foo extends Super {" + " Number baz" + "}"; AssertBuilder assertBuilder = newAssertBuilder(model).numChildren(2); <BUG>AssertBuilder sub = assertBuilder.child(1, "Foo").numChildren(1); sub.child(0, "baz : Number").numChildren(0); </BUG> setShowInherited(true);
"package test " + "class Foo extends Super {" + " Number baz" + "}"; AssertBuilder assertBuilder = newAssertBuilder(model).numChildren(2); AssertBuilder sub = assertBuilder.child(1, "Foo").numChildren(1).hasTextRegion(true); sub.child(0, "baz : Number").numChildren(0).hasTextRegion(true); setShowInherited(true);
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"package test " + "class Foo extends Super {" + " def Number baz() { null }" + "}"; AssertBuilder assertBuilder = newAssertBuilder(model).numChildren(2); <BUG>AssertBuilder sub = assertBuilder.child(1, "Foo").numChildren(1); sub.child(0, "baz() : Number").numChildren(0); </BUG> setShowInherited(true);
"package test " + "class Foo extends Super {" + " Number baz" + "}"; AssertBuilder assertBuilder = newAssertBuilder(model).numChildren(2); AssertBuilder sub = assertBuilder.child(1, "Foo").numChildren(1).hasTextRegion(true); sub.child(0, "baz : Number").numChildren(0).hasTextRegion(true); setShowInherited(true);
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"package test " + "class Foo extends Super {" + " def dispatch void foo(Number x) { }" + "}"; AssertBuilder assertBuilder = newAssertBuilder(model).numChildren(2); <BUG>AssertBuilder sub = assertBuilder.child(1, "Foo").numChildren(1); sub.child(0, "foo(Serializable) : void").numChildren(1).child(0, "foo(Number) : void").numChildren(0); </BUG> setShowInherited(true);
"package test " + "class Foo extends Super {" + " Number baz" + "}"; AssertBuilder assertBuilder = newAssertBuilder(model).numChildren(2); AssertBuilder sub = assertBuilder.child(1, "Foo").numChildren(1).hasTextRegion(true); sub.child(0, "baz : Number").numChildren(0).hasTextRegion(true); setShowInherited(true);
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for (JvmConstructor constructor : inferredType.getDeclaredConstructors()) { if (associations.getXtendConstructor(constructor) == null) processedFeatures.add(constructor); } for (JvmFeature feature : remainingFeatures) { <BUG>if (!processedFeatures.contains(feature)) { createNodeForFeature(parentNode, inferredType, feature, feature); }</BUG> } } else {
for (JvmConstructor constructor : inferredType.getDeclaredConstructors()) { if (associations.getXtendConstructor(constructor) == null) processedFeatures.add(constructor); } for (JvmFeature feature : remainingFeatures) { if (!processedFeatures.contains(feature)) { EObject primarySourceElement = associations.getPrimarySourceElement(feature); createNodeForFeature(parentNode, inferredType, feature, primarySourceElement != null ? primarySourceElement : feature); } } } else {
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return nextMatch; } catch (NoSuchValueException e) { throw new IllegalArgumentException(e); } } <BUG>DateTime nextClosestMatch(DateTime date) throws NoSuchValueException { </BUG> List<Integer> year = yearsValueGenerator.generateCandidates(date.getYear(), date.getYear()); TimeNode days = null; int lowestMonth = months.getValues().get(0);
return nextMatch; } catch (NoSuchValueException e) { throw new IllegalArgumentException(e); } } ZonedDateTime nextClosestMatch(ZonedDateTime date) throws NoSuchValueException { List<Integer> year = yearsValueGenerator.generateCandidates(date.getYear(), date.getYear()); TimeNode days = null; int lowestMonth = months.getValues().get(0);
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int lowestMonth = months.getValues().get(0); int lowestHour = hours.getValues().get(0); int lowestMinute = minutes.getValues().get(0); int lowestSecond = seconds.getValues().get(0); NearestValue nearestValue; <BUG>DateTime newDate; </BUG> if(year.isEmpty()){ int newYear = yearsValueGenerator.generateNextValue(date.getYear()); <BUG>days = generateDays(cronDefinition, new DateTime(newYear, lowestMonth, 1, 0, 0)); </BUG> return initDateTime(yearsValueGenerator.generateNextValue(date.getYear()), lowestMonth, days.getValues().get(0), lowestHour, lowestMinute, lowestSecond, date.getZone());
int lowestMonth = months.getValues().get(0); int lowestHour = hours.getValues().get(0); int lowestMinute = minutes.getValues().get(0); int lowestSecond = seconds.getValues().get(0); NearestValue nearestValue; ZonedDateTime newDate; if(year.isEmpty()){ int newYear = yearsValueGenerator.generateNextValue(date.getYear()); days = generateDays(cronDefinition, ZonedDateTime.of(LocalDateTime.of(newYear, lowestMonth, 1, 0, 0), date.getZone())); return initDateTime(yearsValueGenerator.generateNextValue(date.getYear()), lowestMonth, days.getValues().get(0), lowestHour, lowestMinute, lowestSecond, date.getZone());
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int newYear = yearsValueGenerator.generateNextValue(date.getYear()); <BUG>days = generateDays(cronDefinition, new DateTime(newYear, lowestMonth, 1, 0, 0)); </BUG> return initDateTime(yearsValueGenerator.generateNextValue(date.getYear()), lowestMonth, days.getValues().get(0), lowestHour, lowestMinute, lowestSecond, date.getZone()); } <BUG>if(!months.getValues().contains(date.getMonthOfYear())) { nearestValue = months.getNextValue(date.getMonthOfYear(), 0); </BUG> int nextMonths = nearestValue.getValue();
int newYear = yearsValueGenerator.generateNextValue(date.getYear()); days = generateDays(cronDefinition, ZonedDateTime.of(LocalDateTime.of(newYear, lowestMonth, 1, 0, 0), date.getZone())); return initDateTime(yearsValueGenerator.generateNextValue(date.getYear()), lowestMonth, days.getValues().get(0), lowestHour, lowestMinute, lowestSecond, date.getZone()); } if(!months.getValues().contains(date.getMonthValue())) { nearestValue = months.getNextValue(date.getMonthValue(), 0); int nextMonths = nearestValue.getValue();
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nearestValue = months.getNextValue(date.getMonthOfYear(), 0); </BUG> int nextMonths = nearestValue.getValue(); if(nearestValue.getShifts()>0){ newDate = <BUG>new DateTime(date.getYear(), 1, 1, 0, 0, 0, date.getZone()).plusYears(nearestValue.getShifts()); </BUG> return nextClosestMatch(newDate); } <BUG>if (nearestValue.getValue() < date.getMonthOfYear()) { </BUG> date = date.plusYears(1);
int newYear = yearsValueGenerator.generateNextValue(date.getYear()); days = generateDays(cronDefinition, ZonedDateTime.of(LocalDateTime.of(newYear, lowestMonth, 1, 0, 0), date.getZone())); return initDateTime(yearsValueGenerator.generateNextValue(date.getYear()), lowestMonth, days.getValues().get(0), lowestHour, lowestMinute, lowestSecond, date.getZone()); } if(!months.getValues().contains(date.getMonthValue())) { nearestValue = months.getNextValue(date.getMonthValue(), 0); int nextMonths = nearestValue.getValue(); if(nearestValue.getShifts()>0){ newDate = ZonedDateTime.of(LocalDateTime.of(date.getYear(), 1, 1, 0, 0, 0), date.getZone()).plusYears(nearestValue.getShifts()); return nextClosestMatch(newDate);
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boolean questionMarkSupported = cronDefinition.getFieldDefinition(DAY_OF_WEEK).getConstraints().getSpecialChars().contains(QUESTION_MARK); if(questionMarkSupported){ return new TimeNode( generateDayCandidatesQuestionMarkSupported( <BUG>date.getYear(), date.getMonthOfYear(), </BUG> ((DayOfWeekFieldDefinition) cronDefinition.getFieldDefinition(DAY_OF_WEEK) ).getMondayDoWValue()
boolean questionMarkSupported = cronDefinition.getFieldDefinition(DAY_OF_WEEK).getConstraints().getSpecialChars().contains(QUESTION_MARK); if(questionMarkSupported){ return new TimeNode( generateDayCandidatesQuestionMarkSupported( date.getYear(), date.getMonthValue(), ((DayOfWeekFieldDefinition) cronDefinition.getFieldDefinition(DAY_OF_WEEK) ).getMondayDoWValue()
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) ); }else{ return new TimeNode( generateDayCandidatesQuestionMarkNotSupported( <BUG>date.getYear(), date.getMonthOfYear(), </BUG> ((DayOfWeekFieldDefinition) cronDefinition.getFieldDefinition(DAY_OF_WEEK) ).getMondayDoWValue()
) ); }else{ return new TimeNode( generateDayCandidatesQuestionMarkNotSupported( date.getYear(), date.getMonthValue(), ((DayOfWeekFieldDefinition) cronDefinition.getFieldDefinition(DAY_OF_WEEK) ).getMondayDoWValue()
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} public DateTime lastExecution(DateTime date){ </BUG> Validate.notNull(date); try { <BUG>DateTime previousMatch = previousClosestMatch(date); </BUG> if(previousMatch.equals(date)){ previousMatch = previousClosestMatch(date.minusSeconds(1)); }
} } public java.time.Duration timeToNextExecution(ZonedDateTime date){ return java.time.Duration.between(date, nextExecution(date)); } public ZonedDateTime lastExecution(ZonedDateTime date){ Validate.notNull(date); try { ZonedDateTime previousMatch = previousClosestMatch(date); if(previousMatch.equals(date)){ previousMatch = previousClosestMatch(date.minusSeconds(1)); }
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return previousMatch; } catch (NoSuchValueException e) { throw new IllegalArgumentException(e); } } <BUG>public Duration timeFromLastExecution(DateTime date){ return new Interval(lastExecution(date), date).toDuration(); } public boolean isMatch(DateTime date){ </BUG> return nextExecution(lastExecution(date)).equals(date);
return previousMatch; } catch (NoSuchValueException e) { throw new IllegalArgumentException(e);
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<BUG>package com.cronutils.model.time.generator; import com.cronutils.model.field.CronField;</BUG> import com.cronutils.model.field.expression.Every; import com.cronutils.model.field.expression.FieldExpression; import com.google.common.annotations.VisibleForTesting;
package com.cronutils.model.time.generator; import java.time.ZonedDateTime; import java.util.List; import org.slf4j.Logger; import org.slf4j.LoggerFactory; import com.cronutils.model.field.CronField; import com.cronutils.model.field.expression.Every; import com.cronutils.model.field.expression.FieldExpression; import com.google.common.annotations.VisibleForTesting;
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import com.cronutils.model.field.CronField;</BUG> import com.cronutils.model.field.expression.Every; import com.cronutils.model.field.expression.FieldExpression; import com.google.common.annotations.VisibleForTesting; import com.google.common.collect.Lists; <BUG>import org.joda.time.DateTime; import org.slf4j.Logger; import org.slf4j.LoggerFactory; import java.util.List;</BUG> class EveryFieldValueGenerator extends FieldValueGenerator {
package com.cronutils.model.time.generator; import java.time.ZonedDateTime; import java.util.List; import org.slf4j.Logger; import org.slf4j.LoggerFactory; import com.cronutils.model.field.CronField; import com.cronutils.model.field.expression.Every; import com.cronutils.model.field.expression.FieldExpression; import com.google.common.annotations.VisibleForTesting; import com.google.common.collect.Lists; class EveryFieldValueGenerator extends FieldValueGenerator {
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private static final Logger log = LoggerFactory.getLogger(EveryFieldValueGenerator.class); public EveryFieldValueGenerator(CronField cronField) { super(cronField); log.trace(String.format( "processing \"%s\" at %s", <BUG>cronField.getExpression().asString(), DateTime.now() </BUG> )); } @Override
private static final Logger log = LoggerFactory.getLogger(EveryFieldValueGenerator.class); public EveryFieldValueGenerator(CronField cronField) { super(cronField); log.trace(String.format( "processing \"%s\" at %s", cronField.getExpression().asString(), ZonedDateTime.now() )); } @Override