id
int64
1
49k
buggy
stringlengths
34
37.5k
fixed
stringlengths
2
37k
41,501
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];
41,502
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];
41,503
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];
41,504
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];
41,505
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];
41,506
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];
41,507
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];
41,508
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];
41,509
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];
41,510
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];
41,511
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];
41,512
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];
41,513
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];
41,514
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];
41,515
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];
41,516
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];
41,517
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];
41,518
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];
41,519
: 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];
41,520
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];
41,521
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];
41,522
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];
41,523
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];
41,524
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];
41,525
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];
41,526
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];
41,527
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];
41,528
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];
41,529
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];
41,530
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];
41,531
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];
41,532
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];
41,533
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];
41,534
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];
41,535
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];
41,536
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];
41,537
: 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];
41,538
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];
41,539
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];
41,540
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];
41,541
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];
41,542
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];
41,543
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];
41,544
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];
41,545
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];
41,546
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];
41,547
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];
41,548
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];
41,549
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];
41,550
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];
41,551
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];
41,552
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];
41,553
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];
41,554
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];
41,555
: 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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package org.springframework.integration.kafka.inbound; <BUG>import java.util.Map; import org.springframework.integration.context.OrderlyShutdownCapable;</BUG> import org.springframework.integration.endpoint.MessageProducerSupport; import org.springframework.integration.kafka.core.KafkaMessageMetadata; import org.springframework.integration.kafka.listener.AbstractDecodingAcknowledgingMessageListener;
import java.util.HashMap; import kafka.serializer.Decoder; import kafka.serializer.DefaultDecoder; import org.springframework.integration.context.OrderlyShutdownCapable;
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import org.springframework.integration.support.MessageBuilderFactory; import org.springframework.integration.support.MutableMessageBuilderFactory; import org.springframework.messaging.Message; import org.springframework.messaging.MessageHeaders; import org.springframework.util.Assert; <BUG>import com.gs.collections.api.map.MutableMap; import com.gs.collections.impl.map.mutable.UnifiedMap; import kafka.serializer.Decoder; import kafka.serializer.DefaultDecoder;</BUG> public class KafkaMessageDrivenChannelAdapter extends MessageProducerSupport implements OrderlyShutdownCapable {
[DELETED]
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this.queryLogger = Loggers.getLogger(logger, ".query"); this.fetchLogger = Loggers.getLogger(logger, ".fetch"); queryLogger.setLevel(level); fetchLogger.setLevel(level); indexSettingsService.addListener(new ApplySettings()); <BUG>} private long parseTimeSetting(String name, long defaultNanos) { try { return componentSettings.getAsTime(name, TimeValue.timeValueNanos(defaultNanos)).nanos(); } catch (ElasticSearchParseException e) { logger.error("Could not parse setting for [{}], disabling", name); return -1; }</BUG> }
[DELETED]
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minX = src.getMinX(); maxX = src.getMaxX(); minY = src.getMinY(); maxY = src.getMaxY(); } else { <BUG>iterSource = RandomIterFactory.create(src, src.getBounds(), TILE_CACHED, ARRAY_CALC); minX = src.getMinX() + 1; // Left padding maxX = src.getMaxX() - 2; // Right padding minY = src.getMinY() + 1; // Top padding maxY = src.getMaxY() - 2; // Bottom padding </BUG> }
iterSource = getRandomIterator(src, null); minX = src.getMinX() + leftPad; // Left padding maxX = src.getMaxX() - rightPad; // Right padding minY = src.getMinY() + topPad; // Top padding maxY = src.getMaxY() - bottomPad; // Bottom padding
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final int lineStride = dst.getScanlineStride(); final int pixelStride = dst.getPixelStride(); final int[] bandOffsets = dst.getBandOffsets(); final byte[][] data = dst.getByteDataArrays(); final float[] warpData = new float[2 * dstWidth]; <BUG>int lineOffset = 0; if (ctable == null) { // source does not have IndexColorModel if (caseA) { for (int h = 0; h < dstHeight; h++) {</BUG> int pixelOffset = lineOffset;
if(hasROI && !roiContainsTile && roiIter == null){ throw new IllegalArgumentException("Error on creating the ROI iterator"); } if (caseA || (caseB && roiContainsTile)) { for (int h = 0; h < dstHeight; h++) {
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pixelOffset += pixelStride; } // COLS LOOP } // ROWS LOOP } } else {// source has IndexColorModel <BUG>if (caseA) { for (int h = 0; h < dstHeight; h++) {</BUG> int pixelOffset = lineOffset; lineOffset += lineStride; warp.warpRect(dst.getX(), dst.getY() + h, dstWidth, 1, warpData);
} else if (caseB) { for (int h = 0; h < dstHeight; h++) {
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minX = src.getMinX(); maxX = src.getMaxX(); minY = src.getMinY(); maxY = src.getMaxY(); } else { <BUG>iterSource = RandomIterFactory.create(src, src.getBounds(), TILE_CACHED, ARRAY_CALC); minX = src.getMinX() + 1; // Left padding maxX = src.getMaxX() - 2; // Right padding minY = src.getMinY() + 1; // Top padding maxY = src.getMaxY() - 2; // Bottom padding </BUG> }
iterSource = getRandomIterator(src, null); minX = src.getMinX() + leftPad; // Left padding maxX = src.getMaxX() - rightPad; // Right padding minY = src.getMinY() + topPad; // Top padding maxY = src.getMaxY() - bottomPad; // Bottom padding
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final int pixelStride = dst.getPixelStride(); final int[] bandOffsets = dst.getBandOffsets(); final short[][] data = dst.getShortDataArrays(); final float[] warpData = new float[2 * dstWidth]; int lineOffset = 0; <BUG>if (caseA) { for (int h = 0; h < dstHeight; h++) {</BUG> int pixelOffset = lineOffset; lineOffset += lineStride; warp.warpRect(dst.getX(), dst.getY() + h, dstWidth, 1, warpData);
if(hasROI && !roiContainsTile && roiIter == null){ throw new IllegalArgumentException("Error on creating the ROI iterator"); } if (caseA || (caseB && roiContainsTile)) { for (int h = 0; h < dstHeight; h++) {
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minX = src.getMinX(); maxX = src.getMaxX(); minY = src.getMinY(); maxY = src.getMaxY(); } else { <BUG>iterSource = RandomIterFactory.create(src, src.getBounds(), TILE_CACHED, ARRAY_CALC); minX = src.getMinX() + 1; // Left padding maxX = src.getMaxX() - 2; // Right padding minY = src.getMinY() + 1; // Top padding maxY = src.getMaxY() - 2; // Bottom padding </BUG> }
iterSource = getRandomIterator(src, null); minX = src.getMinX() + leftPad; // Left padding maxX = src.getMaxX() - rightPad; // Right padding minY = src.getMinY() + topPad; // Top padding maxY = src.getMaxY() - bottomPad; // Bottom padding
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final int pixelStride = dst.getPixelStride(); final int[] bandOffsets = dst.getBandOffsets(); final short[][] data = dst.getShortDataArrays(); final float[] warpData = new float[2 * dstWidth]; int lineOffset = 0; <BUG>if (caseA) { for (int h = 0; h < dstHeight; h++) {</BUG> int pixelOffset = lineOffset; lineOffset += lineStride; warp.warpRect(dst.getX(), dst.getY() + h, dstWidth, 1, warpData);
if(hasROI && !roiContainsTile && roiIter == null){ throw new IllegalArgumentException("Error on creating the ROI iterator"); } if (caseA || (caseB && roiContainsTile)) { for (int h = 0; h < dstHeight; h++) {
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minX = src.getMinX(); maxX = src.getMaxX(); minY = src.getMinY(); maxY = src.getMaxY(); } else { <BUG>iterSource = RandomIterFactory.create(src, src.getBounds(), TILE_CACHED, ARRAY_CALC); minX = src.getMinX() + 1; // Left padding maxX = src.getMaxX() - 2; // Right padding minY = src.getMinY() + 1; // Top padding maxY = src.getMaxY() - 2; // Bottom padding </BUG> }
iterSource = getRandomIterator(src, null); minX = src.getMinX() + leftPad; // Left padding maxX = src.getMaxX() - rightPad; // Right padding minY = src.getMinY() + topPad; // Top padding maxY = src.getMaxY() - bottomPad; // Bottom padding
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final int pixelStride = dst.getPixelStride(); final int[] bandOffsets = dst.getBandOffsets(); final int[][] data = dst.getIntDataArrays(); final float[] warpData = new float[2 * dstWidth]; int lineOffset = 0; <BUG>if (caseA) { for (int h = 0; h < dstHeight; h++) {</BUG> int pixelOffset = lineOffset; lineOffset += lineStride; warp.warpRect(dst.getX(), dst.getY() + h, dstWidth, 1, warpData);
if(hasROI && !roiContainsTile && roiIter == null){ throw new IllegalArgumentException("Error on creating the ROI iterator"); } if (caseA || (caseB && roiContainsTile)) { for (int h = 0; h < dstHeight; h++) {
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minX = src.getMinX(); maxX = src.getMaxX(); minY = src.getMinY(); maxY = src.getMaxY(); } else { <BUG>iterSource = RandomIterFactory.create(src, src.getBounds(), TILE_CACHED, ARRAY_CALC); minX = src.getMinX() + 1; // Left padding maxX = src.getMaxX() - 2; // Right padding minY = src.getMinY() + 1; // Top padding maxY = src.getMaxY() - 2; // Bottom padding </BUG> }
iterSource = getRandomIterator(src, null); minX = src.getMinX() + leftPad; // Left padding maxX = src.getMaxX() - rightPad; // Right padding minY = src.getMinY() + topPad; // Top padding maxY = src.getMaxY() - bottomPad; // Bottom padding
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final int pixelStride = dst.getPixelStride(); final int[] bandOffsets = dst.getBandOffsets(); final float[][] data = dst.getFloatDataArrays(); final float[] warpData = new float[2 * dstWidth]; int lineOffset = 0; <BUG>if (caseA) { for (int h = 0; h < dstHeight; h++) {</BUG> int pixelOffset = lineOffset; lineOffset += lineStride; warp.warpRect(dst.getX(), dst.getY() + h, dstWidth, 1, warpData);
if(hasROI && !roiContainsTile && roiIter == null){ throw new IllegalArgumentException("Error on creating the ROI iterator"); } if (caseA || (caseB && roiContainsTile)) { for (int h = 0; h < dstHeight; h++) {
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minX = src.getMinX(); maxX = src.getMaxX(); minY = src.getMinY(); maxY = src.getMaxY(); } else { <BUG>iterSource = RandomIterFactory.create(src, src.getBounds(), TILE_CACHED, ARRAY_CALC); minX = src.getMinX() + 1; // Left padding maxX = src.getMaxX() - 2; // Right padding minY = src.getMinY() + 1; // Top padding maxY = src.getMaxY() - 2; // Bottom padding </BUG> }
iterSource = getRandomIterator(src, null); minX = src.getMinX() + leftPad; // Left padding maxX = src.getMaxX() - rightPad; // Right padding minY = src.getMinY() + topPad; // Top padding maxY = src.getMaxY() - bottomPad; // Bottom padding
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final int pixelStride = dst.getPixelStride(); final int[] bandOffsets = dst.getBandOffsets(); final double[][] data = dst.getDoubleDataArrays(); final float[] warpData = new float[2 * dstWidth]; int lineOffset = 0; <BUG>if (caseA) { for (int h = 0; h < dstHeight; h++) {</BUG> int pixelOffset = lineOffset; lineOffset += lineStride; warp.warpRect(dst.getX(), dst.getY() + h, dstWidth, 1, warpData);
if(hasROI && !roiContainsTile && roiIter == null){ throw new IllegalArgumentException("Error on creating the ROI iterator"); } if (caseA || (caseB && roiContainsTile)) { for (int h = 0; h < dstHeight; h++) {
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if(worldIn.getTileEntity(pos) != null){ TileEntity te = worldIn.getTileEntity(pos); if(te.hasCapability(Capabilities.HEAT_HANDLER_CAPABILITY, null) && te.getCapability(Capabilities.HEAT_HANDLER_CAPABILITY, null).getTemp() >= -273D + mult){ te.getCapability(Capabilities.HEAT_HANDLER_CAPABILITY, null).addHeat(-mult); } <BUG>for(EnumFacing dir : EnumFacing.values()){ if(te.hasCapability(Capabilities.ROTARY_HANDLER_CAPABILITY, dir)){ te.getCapability(Capabilities.ROTARY_HANDLER_CAPABILITY, dir).addEnergy(-mult, false, false); break;</BUG> }
if(te.hasCapability(Capabilities.HEAT_HANDLER_CAPABILITY, null)){ te.getCapability(Capabilities.HEAT_HANDLER_CAPABILITY, null).addHeat(mult);
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public static double betterRound(double numIn, int decPlac){ double opOn = Math.round(numIn * Math.pow(10, decPlac)) / Math.pow(10D, decPlac); return opOn; } public static double centerCeil(double numIn, int tiers){ <BUG>return ((numIn > 0) ? Math.ceil(numIn * tiers) : Math.floor(numIn * tiers)) / tiers; </BUG> } public static double findEfficiency(double speedIn, double lowerLimit, double upperLimit){ speedIn = Math.abs(speedIn);
return ((numIn > 0) ? Math.ceil(numIn * (double) tiers) : Math.floor(numIn * (double) tiers)) / (double) tiers;
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package com.Da_Technomancer.crossroads.API; import com.Da_Technomancer.crossroads.API.DefaultStorageHelper.DefaultStorage; import com.Da_Technomancer.crossroads.API.heat.DefaultHeatHandler; import com.Da_Technomancer.crossroads.API.heat.IHeatHandler; import com.Da_Technomancer.crossroads.API.magic.DefaultMagicHandler; <BUG>import com.Da_Technomancer.crossroads.API.magic.IMagicHandler; import com.Da_Technomancer.crossroads.API.rotary.DefaultRotaryHandler; import com.Da_Technomancer.crossroads.API.rotary.IRotaryHandler; </BUG> import net.minecraftforge.common.capabilities.Capability;
import com.Da_Technomancer.crossroads.API.rotary.DefaultAxleHandler; import com.Da_Technomancer.crossroads.API.rotary.DefaultCogHandler; import com.Da_Technomancer.crossroads.API.rotary.IAxleHandler; import com.Da_Technomancer.crossroads.API.rotary.ICogHandler;
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import net.minecraftforge.common.capabilities.Capability; import net.minecraftforge.common.capabilities.CapabilityInject; import net.minecraftforge.common.capabilities.CapabilityManager; public class Capabilities{ @CapabilityInject(IHeatHandler.class) <BUG>public static Capability<IHeatHandler> HEAT_HANDLER_CAPABILITY = null; @CapabilityInject(IRotaryHandler.class) public static Capability<IRotaryHandler> ROTARY_HANDLER_CAPABILITY = null; </BUG> @CapabilityInject(IMagicHandler.class)
@CapabilityInject(IAxleHandler.class) public static Capability<IAxleHandler> AXLE_HANDLER_CAPABILITY = null; @CapabilityInject(ICogHandler.class) public static Capability<ICogHandler> COG_HANDLER_CAPABILITY = null;
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public IEffect getMixEffect(Color col){ if(col == null){ return effect; } int top = Math.max(col.getBlue(), Math.max(col.getRed(), col.getGreen())); <BUG>if(top < rand.nextInt(128) + 128){ return voidEffect;</BUG> } return effect; }
if(top != 255){ return voidEffect;
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} @RootTask static Task<Exec.Result> exec(String parameter, int number) { Task<String> task1 = MyTask.create(parameter); Task<Integer> task2 = Adder.create(number, number + 2); <BUG>return Task.ofType(Exec.Result.class).named("exec", "/bin/sh") .in(() -> task1)</BUG> .in(() -> task2) .process(Exec.exec((str, i) -> args("/bin/sh", "-c", "\"echo " + i + "\""))); }
return Task.named("exec", "/bin/sh").ofType(Exec.Result.class) .in(() -> task1)
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return args; } static class MyTask { static final int PLUS = 10; static Task<String> create(String parameter) { <BUG>return Task.ofType(String.class).named("MyTask", parameter) .in(() -> Adder.create(parameter.length(), PLUS))</BUG> .in(() -> Fib.create(parameter.length())) .process((sum, fib) -> something(parameter, sum, fib)); }
return Task.named("MyTask", parameter).ofType(String.class) .in(() -> Adder.create(parameter.length(), PLUS))
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final String instanceField = "from instance"; final TaskContext context = TaskContext.inmem(); final AwaitingConsumer<String> val = new AwaitingConsumer<>(); @Test public void shouldJavaUtilSerialize() throws Exception { <BUG>Task<Long> task1 = Task.ofType(Long.class).named("Foo", "Bar", 39) .process(() -> 9999L); Task<String> task2 = Task.ofType(String.class).named("Baz", 40) .in(() -> task1)</BUG> .ins(() -> singletonList(task1))
Task<Long> task1 = Task.named("Foo", "Bar", 39).ofType(Long.class) Task<String> task2 = Task.named("Baz", 40).ofType(String.class) .in(() -> task1)
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assertEquals(des.id().name(), "Baz"); assertEquals(val.awaitAndGet(), "[9999] hello 10004"); } @Test(expected = NotSerializableException.class) public void shouldNotSerializeWithInstanceFieldReference() throws Exception { <BUG>Task<String> task = Task.ofType(String.class).named("WithRef") .process(() -> instanceField + " causes an outer reference");</BUG> serialize(task); } @Test
Task<String> task = Task.named("WithRef").ofType(String.class) .process(() -> instanceField + " causes an outer reference");
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serialize(task); } @Test public void shouldSerializeWithLocalReference() throws Exception { String local = instanceField; <BUG>Task<String> task = Task.ofType(String.class).named("WithLocalRef") .process(() -> local + " won't cause an outer reference");</BUG> serialize(task); Task<String> des = deserialize(); context.evaluate(des).consume(val);
Task<String> task = Task.named("WithLocalRef").ofType(String.class) .process(() -> local + " won't cause an outer reference");
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} @RootTask public static Task<String> standardArgs(int first, String second) { firstInt = first; secondString = second; <BUG>return Task.ofType(String.class).named("StandardArgs", first, second) .process(() -> second + " " + first * 100);</BUG> } @Test public void shouldParseFlags() throws Exception {
return Task.named("StandardArgs", first, second).ofType(String.class) .process(() -> second + " " + first * 100);
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assertThat(parsedEnum, is(CustomEnum.BAR)); } @RootTask public static Task<String> enums(CustomEnum enm) { parsedEnum = enm; <BUG>return Task.ofType(String.class).named("Enums", enm) .process(enm::toString);</BUG> } @Test public void shouldParseCustomTypes() throws Exception {
return Task.named("Enums", enm).ofType(String.class) .process(enm::toString);
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assertThat(parsedType.content, is("blarg parsed for you!")); } @RootTask public static Task<String> customType(CustomType myType) { parsedType = myType; <BUG>return Task.ofType(String.class).named("Types", myType.content) .process(() -> myType.content);</BUG> } public enum CustomEnum { BAR
return Task.named("Types", myType.content).ofType(String.class) .process(() -> myType.content);
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TaskContext taskContext = TaskContext.inmem(); TaskContext.Value<Long> value = taskContext.evaluate(fib92); value.consume(f92 -> System.out.println("fib(92) = " + f92)); } static Task<Long> create(long n) { <BUG>TaskBuilder<Long> fib = Task.ofType(Long.class).named("Fib", n); </BUG> if (n < 2) { return fib .process(() -> n);
TaskBuilder<Long> fib = Task.named("Fib", n).ofType(Long.class);