id
int64
1
49k
buggy
stringlengths
34
37.5k
fixed
stringlengths
2
37k
15,801
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];
15,802
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];
15,803
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];
15,804
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];
15,805
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];
15,806
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataUShort[k2];
15,807
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];
15,808
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];
15,809
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];
15,810
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
15,811
: 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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
15,812
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];
15,813
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];
15,814
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
15,815
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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
15,816
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];
15,817
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);
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
15,818
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]] = destinationNoDataShort[k2];
15,819
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];
15,820
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
15,821
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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
15,822
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];
15,823
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];
15,824
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
15,825
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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataShort[k2];
15,826
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];
15,827
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) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
15,828
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];
15,829
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
15,830
: 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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
15,831
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];
15,832
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];
15,833
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
15,834
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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
15,835
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];
15,836
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);
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
15,837
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]] = destinationNoDataInt[k2];
15,838
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];
15,839
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
15,840
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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
15,841
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];
15,842
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];
15,843
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
15,844
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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataInt[k2];
15,845
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];
15,846
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];
15,847
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
15,848
: 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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
15,849
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];
15,850
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];
15,851
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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
15,852
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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
15,853
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];
15,854
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);
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
15,855
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) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
15,856
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];
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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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
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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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
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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]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
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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]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } } else
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
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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]] = destinationNoDataFloat; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
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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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
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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]] = destinationNoDataFloat; </BUG> dstPixelOffset += dstPixelStride; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataFloat[k2];
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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
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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: 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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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]] = destinationNoDataDouble; </BUG> } else { for (int h = 0; h < KERNEL_LINE_DIM; h++) { double tempSum = 0;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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);
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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) {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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]] = destinationNoDataDouble; </BUG> } } } else {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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 {
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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;
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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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; } }
dstDataArrays[k2][dstPixelOffset + dstBandOffsets[k2]] = destinationNoDataDouble[k2];
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import com.intellij.android.designer.designSurface.layout.FrameLayoutOperation; import com.intellij.android.designer.designSurface.layout.LayoutMarginOperation; import com.intellij.android.designer.designSurface.layout.ResizeOperation; import com.intellij.android.designer.model.RadViewComponent; import com.intellij.android.designer.model.RadViewLayoutWithData; <BUG>import com.intellij.designer.actions.AbstractComboBoxAction; import com.intellij.designer.designSurface.ComponentDecorator;</BUG> import com.intellij.designer.designSurface.DesignerEditorPanel; import com.intellij.designer.designSurface.EditOperation; import com.intellij.designer.designSurface.OperationContext;
import com.intellij.designer.componentTree.TreeEditOperation; import com.intellij.designer.designSurface.ComponentDecorator;
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return LAYOUT_PARAMS; } @Override public EditOperation processChildOperation(OperationContext context) { if (context.isCreate() || context.isPaste() || context.isAdd() || context.isMove()) { <BUG>if (context.isTree()) { return new TreeDropToOperation(myContainer, context); }</BUG> return new FrameLayoutOperation(myContainer, context); }
if (TreeEditOperation.isTarget(myContainer, context)) { return null;
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package com.intellij.android.designer.designSurface; import com.intellij.android.designer.model.RadViewComponent; import com.intellij.designer.componentTree.TreeEditOperation; import com.intellij.designer.designSurface.OperationContext; <BUG>import com.intellij.designer.model.RadComponent; public class TreeDropToOperation extends TreeEditOperation {</BUG> public TreeDropToOperation(RadComponent container, OperationContext context) { super(container, context); }
import org.jetbrains.annotations.Nullable; public class TreeDropToOperation extends TreeEditOperation {
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import com.intellij.android.designer.designSurface.AbstractEditOperation; import com.intellij.android.designer.designSurface.layout.ResizeOperation; import com.intellij.android.designer.designSurface.layout.TableLayoutDecorator; import com.intellij.android.designer.model.RadViewComponent; import com.intellij.android.designer.model.RadViewLayout; <BUG>import com.intellij.android.designer.model.RadViewLayoutWithData; import com.intellij.designer.designSurface.*;</BUG> import com.intellij.designer.designSurface.selection.ResizeSelectionDecorator; import com.intellij.designer.model.RadComponent; import com.intellij.designer.model.RadLayout;
import com.intellij.designer.componentTree.TreeEditOperation; import com.intellij.designer.designSurface.*;
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return LAYOUT_PARAMS; } @Override public EditOperation processChildOperation(OperationContext context) { if (context.isCreate() || context.isPaste() || context.isAdd() || context.isMove()) { <BUG>if (context.isTree()) { return new TreeDropToOperation(myContainer, context); }</BUG> } else if (context.is(ResizeOperation.TYPE)) {
if (TreeEditOperation.isTarget(myContainer, context)) { return null;
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package com.intellij.android.designer.model.viewAnimator; import com.intellij.android.designer.designSurface.DropToOperation; import com.intellij.android.designer.designSurface.TreeDropToOperation; <BUG>import com.intellij.android.designer.model.RadViewLayout; import com.intellij.designer.designSurface.EditOperation;</BUG> import com.intellij.designer.designSurface.OperationContext; public class RadViewAnimatorLayout extends RadViewLayout { public EditOperation processChildOperation(OperationContext context) {
import com.intellij.designer.componentTree.TreeEditOperation; import com.intellij.designer.designSurface.EditOperation;
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import com.intellij.designer.designSurface.EditOperation;</BUG> import com.intellij.designer.designSurface.OperationContext; public class RadViewAnimatorLayout extends RadViewLayout { public EditOperation processChildOperation(OperationContext context) { if ((context.isCreate() || context.isPaste() || context.isAdd() || context.isMove()) && checkChildOperation(context)) { <BUG>if (context.isTree()) { return new TreeDropToOperation(myContainer, context); }</BUG> return new DropToOperation(myContainer, context); }
package com.intellij.android.designer.model.viewAnimator; import com.intellij.android.designer.designSurface.DropToOperation; import com.intellij.android.designer.designSurface.TreeDropToOperation; import com.intellij.android.designer.model.RadViewLayout; import com.intellij.designer.componentTree.TreeEditOperation; import com.intellij.designer.designSurface.EditOperation; if (TreeEditOperation.isTarget(myContainer, context)) {
15,889
package com.intellij.android.designer.model; import com.intellij.android.designer.designSurface.DropToOperation; <BUG>import com.intellij.android.designer.designSurface.TreeDropToOperation; import com.intellij.designer.designSurface.EditOperation;</BUG> import com.intellij.designer.designSurface.OperationContext; public class RadSingleChildrenViewLayout extends RadViewLayout { @Override
import com.intellij.designer.componentTree.TreeEditOperation; import com.intellij.designer.designSurface.EditOperation;
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@Override public EditOperation processChildOperation(OperationContext context) { if (myContainer.getChildren().isEmpty() && (context.isCreate() || context.isPaste() || context.isAdd()) && context.getComponents().size() == 1) { <BUG>if (context.isTree()) { return new TreeDropToOperation(myContainer, context); }</BUG> return new DropToOperation(myContainer, context); }
if (TreeEditOperation.isTarget(myContainer, context)) {
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package com.intellij.android.designer.model.layout; import com.intellij.android.designer.designSurface.TreeDropToOperation; import com.intellij.android.designer.designSurface.layout.*; import com.intellij.android.designer.model.RadViewComponent; import com.intellij.android.designer.model.RadViewLayoutWithData; <BUG>import com.intellij.designer.actions.AbstractComboBoxAction; import com.intellij.designer.designSurface.*;</BUG> import com.intellij.designer.designSurface.selection.DirectionResizePoint; import com.intellij.designer.designSurface.selection.ResizePoint; import com.intellij.designer.designSurface.selection.ResizeSelectionDecorator;
import com.intellij.designer.componentTree.TreeEditOperation; import com.intellij.designer.designSurface.*;
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return !"vertical".equals(((RadViewComponent)myContainer).getTag().getAttributeValue("android:orientation")); } @Override public EditOperation processChildOperation(OperationContext context) { if (context.isCreate() || context.isPaste() || context.isAdd() || context.isMove()) { <BUG>if (context.isTree()) { return new TreeDropToOperation(myContainer, context); }</BUG> return new LinearLayoutOperation(myContainer, context, isHorizontal()); }
if (TreeEditOperation.isTarget(myContainer, context)) { return null;
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return !layer.isBeforeLocation(target, location.x, location.y) && !layer.isAfterLocation(target, location.x, location.y); } return true; } <BUG>public TreeEditOperation(RadComponent container, OperationContext context) { super(container, context); }</BUG> @Override public void showFeedback() {
[DELETED]
15,894
package com.intellij.android.designer.model.layout; import com.intellij.android.designer.designSurface.TreeDropToOperation; import com.intellij.android.designer.designSurface.layout.AbsoluteLayoutOperation; import com.intellij.android.designer.designSurface.layout.ResizeOperation; <BUG>import com.intellij.android.designer.model.RadViewLayoutWithData; import com.intellij.designer.designSurface.ComponentDecorator;</BUG> import com.intellij.designer.designSurface.EditOperation; import com.intellij.designer.designSurface.OperationContext; import com.intellij.designer.designSurface.selection.ResizeSelectionDecorator;
import com.intellij.designer.componentTree.TreeEditOperation; import com.intellij.designer.designSurface.ComponentDecorator;
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return LAYOUT_PARAMS; } @Override public EditOperation processChildOperation(OperationContext context) { if (context.isCreate() || context.isPaste() || context.isAdd() || context.isMove()) { <BUG>if (context.isTree()) { return new TreeDropToOperation(myContainer, context); }</BUG> return new AbsoluteLayoutOperation(myContainer, context); }
if (TreeEditOperation.isTarget(myContainer, context)) { return null;
15,896
import com.redhat.ceylon.compiler.typechecker.model.TypeDeclaration; import com.redhat.ceylon.compiler.typechecker.model.TypeParameter; import com.redhat.ceylon.compiler.typechecker.model.TypedDeclaration; import com.redhat.ceylon.compiler.typechecker.model.Value; import com.redhat.ceylon.compiler.typechecker.tree.Node; <BUG>import com.redhat.ceylon.compiler.typechecker.tree.Tree; import com.redhat.ceylon.compiler.typechecker.tree.Tree.Comprehension;</BUG> import com.redhat.ceylon.compiler.typechecker.tree.Tree.Condition; import com.redhat.ceylon.compiler.typechecker.tree.Tree.DefaultArgument; import com.redhat.ceylon.compiler.typechecker.tree.Tree.ExistsOrNonemptyCondition;
import com.redhat.ceylon.compiler.typechecker.tree.Tree.BooleanCondition; import com.redhat.ceylon.compiler.typechecker.tree.Tree.Comprehension;
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at(comp); Tree.ComprehensionClause clause = comp.getForComprehensionClause(); ProducedType targetIterType = typeFact().getIterableType(clause.getTypeModel()); int idx = 0; ExpressionComprehensionClause excc = null; <BUG>String prevItemVar = null; ListBuffer<JCTree> fields = new ListBuffer<JCTree>();</BUG> while (clause != null) { final String iterVar = "iter$"+idx; String itemVar = null;
String ctxtName = null; ListBuffer<JCTree> fields = new ListBuffer<JCTree>();
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names().fromString("getIterator")), List.<JCExpression>nil()))); } else { fields.add(make().VarDef(make().Modifiers(2), names().fromString(iterVar), iterTypeExpr, null)); JCBlock body = make().Block(0l, List.<JCStatement>of( make().If(make().Binary(JCTree.EQ, makeUnquotedIdent(iterVar), makeNull()), <BUG>make().Exec(make().Apply(null, makeSelect("this", prevItemVar), List.<JCExpression>nil())), </BUG> null), make().Exec(make().Assign(makeUnquotedIdent(iterVar), make().Apply(null, make().Select(transformExpression(specexpr.getExpression()),
make().Exec(make().Apply(null, makeSelect("this", ctxtName), List.<JCExpression>nil())),
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names().fromString("getItem")), List.<JCExpression>nil())))))); } ListBuffer<JCStatement> innerBody = new ListBuffer<JCStatement>(); if (idx>0) { innerBody.add(make().If(make().Binary(JCTree.EQ, <BUG>make().Apply(null, makeSelect("this", prevItemVar), List.<JCExpression>nil()), makeBoolean(true)), </BUG> make().Block(0, List.<JCStatement>of( make().Exec(make().Assign(makeUnquotedIdent(iterVar), make().Apply(null, makeSelect("this", iterVar), List.<JCExpression>nil()))),
make().Apply(null, makeSelect("this", ctxtName), List.<JCExpression>nil()), makeBoolean(true)),
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List.<JCTree.JCTypeParameter>nil(), List.<JCTree.JCVariableDecl>nil(), List.<JCExpression>nil(), make().Block(0, List.<JCStatement>of( make().WhileLoop(condExpr, make().Block(0, List.<JCStatement>nil())), make().Return(make().Unary(JCTree.NOT, makeUnquotedIdent(prevItemVar+"$exhausted"))) )), null)); <BUG>clause = ((IfComprehensionClause)clause).getComprehensionClause(); } else if (clause instanceof ExpressionComprehensionClause) {</BUG> excc = (ExpressionComprehensionClause)clause; at(excc); clause = null;
itemVar = prevItemVar; } else if (clause instanceof ExpressionComprehensionClause) {