All pastes #1906230 Raw Edit

Anonymous

public text v1 · immutable
#1906230 ·published 2010-07-22 20:20 UTC
rendered paste body
Checking nona...[OK]
Checking enblend...[OK]
Checking enfuse...[OK]
Checking hugin_hdrmerge...[OK]
Checking exiftool...[OK]
nona  -z PACKBITS -r ldr -e 13.9366 -m TIFF_m -o pano_exposure_layers_ -i 0 /tmp/huginpto_8UFnzi
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 1 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0000.tif pano_exposure_layers_0000.tif pano_exposure_layers_0001.tif
Loading next image: pano_exposure_layers_0000.tif
Loading next image: pano_exposure_layers_0001.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0000.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.2765 -m TIFF_m -o pano_exposure_layers_ -i 2 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0001.tif pano_exposure_layers_0002.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0002.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0001.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.2765 -m TIFF_m -o pano_exposure_layers_ -i 3 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0002.tif pano_exposure_layers_0003.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0003.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0002.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.2765 -m TIFF_m -o pano_exposure_layers_ -i 4 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0003.tif pano_exposure_layers_0004.tif
Loading next image: pano_exposure_layers_0004.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0003.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.655 -m TIFF_m -o pano_exposure_layers_ -i 5 /tmp/huginpto_8UFnzi
nona  -z PACKBITS -r ldr -e 15.655 -m TIFF_m -o pano_exposure_layers_ -i 6 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0004.tif pano_exposure_layers_0005.tif pano_exposure_layers_0006.tif
Loading next image: pano_exposure_layers_0005.tif
Loading next image: pano_exposure_layers_0006.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0004.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.655 -m TIFF_m -o pano_exposure_layers_ -i 7 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0005.tif pano_exposure_layers_0007.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0007.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0005.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.2765 -m TIFF_m -o pano_exposure_layers_ -i 8 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0006.tif pano_exposure_layers_0008.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0008.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0006.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 9 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0007.tif pano_exposure_layers_0009.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0009.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0007.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 10 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0008.tif pano_exposure_layers_0010.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0010.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0008.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 11 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0009.tif pano_exposure_layers_0011.tif
Loading next image: pano_exposure_layers_0011.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0009.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 12 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0010.tif pano_exposure_layers_0012.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0012.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0010.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 13 /tmp/huginpto_8UFnzi
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 29 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0011.tif pano_exposure_layers_0013.tif pano_exposure_layers_0029.tif
Loading next image: pano_exposure_layers_0013.tif
Loading next image: pano_exposure_layers_0029.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0011.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 14 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0012.tif pano_exposure_layers_0014.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0014.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0012.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 15 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0013.tif pano_exposure_layers_0015.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0015.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0013.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 16 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0014.tif pano_exposure_layers_0016.tif
Loading next image: pano_exposure_layers_0016.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0014.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 17 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0015.tif pano_exposure_layers_0017.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0017.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0015.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 18 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0016.tif pano_exposure_layers_0018.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0018.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0016.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 19 /tmp/huginpto_8UFnzi
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 53 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0017.tif pano_exposure_layers_0019.tif pano_exposure_layers_0053.tif
Loading next image: pano_exposure_layers_0019.tif
Loading next image: pano_exposure_layers_0053.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0017.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 20 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0018.tif pano_exposure_layers_0020.tif
Loading next image: pano_exposure_layers_0020.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0018.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 21 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0019.tif pano_exposure_layers_0021.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0021.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0019.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 22 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0020.tif pano_exposure_layers_0022.tif
Loading next image: pano_exposure_layers_0022.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0020.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.655 -m TIFF_m -o pano_exposure_layers_ -i 23 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0021.tif pano_exposure_layers_0023.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0023.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0021.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.2765 -m TIFF_m -o pano_exposure_layers_ -i 24 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0022.tif pano_exposure_layers_0024.tif
Loading next image: pano_exposure_layers_0024.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0022.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.655 -m TIFF_m -o pano_exposure_layers_ -i 25 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0023.tif pano_exposure_layers_0025.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0025.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0023.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.655 -m TIFF_m -o pano_exposure_layers_ -i 26 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0024.tif pano_exposure_layers_0026.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0026.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0024.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.2765 -m TIFF_m -o pano_exposure_layers_ -i 27 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0025.tif pano_exposure_layers_0027.tif
Loading next image: pano_exposure_layers_0027.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0025.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.2765 -m TIFF_m -o pano_exposure_layers_ -i 28 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0026.tif pano_exposure_layers_0028.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0028.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0026.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 30 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0027.tif pano_exposure_layers_0030.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0030.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0027.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.9546 -m TIFF_m -o pano_exposure_layers_ -i 31 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0028.tif pano_exposure_layers_0031.tif
Loading next image: pano_exposure_layers_0031.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0028.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.9546 -m TIFF_m -o pano_exposure_layers_ -i 32 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0029.tif pano_exposure_layers_0032.tif
Loading next image: pano_exposure_layers_0032.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0029.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 16.2765 -m TIFF_m -o pano_exposure_layers_ -i 33 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0030.tif pano_exposure_layers_0033.tif
Loading next image: pano_exposure_layers_0033.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0030.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 16.2765 -m TIFF_m -o pano_exposure_layers_ -i 34 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0031.tif pano_exposure_layers_0034.tif
Loading next image: pano_exposure_layers_0034.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0031.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 16.2765 -m TIFF_m -o pano_exposure_layers_ -i 35 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0032.tif pano_exposure_layers_0035.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0035.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0032.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 16.2765 -m TIFF_m -o pano_exposure_layers_ -i 36 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0033.tif pano_exposure_layers_0036.tif
Loading next image: pano_exposure_layers_0036.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0033.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 16.2765 -m TIFF_m -o pano_exposure_layers_ -i 37 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0034.tif pano_exposure_layers_0037.tif
Loading next image: pano_exposure_layers_0037.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0034.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 16.2765 -m TIFF_m -o pano_exposure_layers_ -i 38 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0035.tif pano_exposure_layers_0038.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0038.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0035.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.9546 -m TIFF_m -o pano_exposure_layers_ -i 39 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0036.tif pano_exposure_layers_0039.tif
Loading next image: pano_exposure_layers_0039.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0036.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 15.9546 -m TIFF_m -o pano_exposure_layers_ -i 40 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0037.tif pano_exposure_layers_0040.tif
Loading next image: pano_exposure_layers_0040.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 8 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Collapsing Laplacian pyramid: l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0037.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.2765 -m TIFF_m -o pano_exposure_layers_ -i 41 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0038.tif pano_exposure_layers_0041.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0041.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0038.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 42 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0039.tif pano_exposure_layers_0042.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0042.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0039.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 43 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0040.tif pano_exposure_layers_0043.tif
Loading next image: pano_exposure_layers_0043.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0040.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.9546 -m TIFF_m -o pano_exposure_layers_ -i 44 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0041.tif pano_exposure_layers_0044.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0044.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0041.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 45 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0042.tif pano_exposure_layers_0045.tif
Loading next image: pano_exposure_layers_0045.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0042.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 46 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0043.tif pano_exposure_layers_0046.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0046.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0043.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 47 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0044.tif pano_exposure_layers_0047.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0047.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0044.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.2765 -m TIFF_m -o pano_exposure_layers_ -i 48 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0045.tif pano_exposure_layers_0048.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0048.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0045.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 13.9546 -m TIFF_m -o pano_exposure_layers_ -i 49 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0046.tif pano_exposure_layers_0049.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0049.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0046.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 13.9546 -m TIFF_m -o pano_exposure_layers_ -i 50 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0047.tif pano_exposure_layers_0050.tif
Loading next image: pano_exposure_layers_0050.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0047.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 13.9546 -m TIFF_m -o pano_exposure_layers_ -i 51 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0048.tif pano_exposure_layers_0051.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0051.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0048.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.2765 -m TIFF_m -o pano_exposure_layers_ -i 52 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0049.tif pano_exposure_layers_0052.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0052.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0049.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 54 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0050.tif pano_exposure_layers_0054.tif
Loading next image: pano_exposure_layers_0054.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0050.tif
    1 image files updated
nona  -z PACKBITS -r ldr -e 14.6326 -m TIFF_m -o pano_exposure_layers_ -i 55 /tmp/huginpto_8UFnzi
enfuse -m 512 -o pano_stack_ldr_0051.tif pano_exposure_layers_0055.tif
enfuse: only one input file given. Enfuse needs two or more overlapping input images in order to do blending calculations. The output will be the same as the input.
Loading next image: pano_exposure_layers_0055.tif
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
exiftool -overwrite_original_in_place -TagsFromFile /data/pictures/Montserrat/Pano4/P1040483.JPG -ImageDescription -Make -Model -Artist -WhitePoint -Copyright -GPS:all -DateTimeOriginal -CreateDate -UserComment -ColorSpace -OwnerName -SerialNumber pano_stack_ldr_0051.tif
    1 image files updated
enblend --compression LZW -m 512 -f17987x4280+1174+1468 -o pano_fused.tif pano_stack_ldr_0000.tif pano_stack_ldr_0001.tif pano_stack_ldr_0002.tif pano_stack_ldr_0003.tif pano_stack_ldr_0004.tif pano_stack_ldr_0005.tif pano_stack_ldr_0006.tif pano_stack_ldr_0007.tif pano_stack_ldr_0008.tif pano_stack_ldr_0009.tif pano_stack_ldr_0010.tif pano_stack_ldr_0011.tif pano_stack_ldr_0012.tif pano_stack_ldr_0013.tif pano_stack_ldr_0014.tif pano_stack_ldr_0015.tif pano_stack_ldr_0016.tif pano_stack_ldr_0017.tif pano_stack_ldr_0018.tif pano_stack_ldr_0019.tif pano_stack_ldr_0020.tif pano_stack_ldr_0021.tif pano_stack_ldr_0022.tif pano_stack_ldr_0023.tif pano_stack_ldr_0024.tif pano_stack_ldr_0025.tif pano_stack_ldr_0026.tif pano_stack_ldr_0027.tif pano_stack_ldr_0028.tif pano_stack_ldr_0029.tif pano_stack_ldr_0030.tif pano_stack_ldr_0031.tif pano_stack_ldr_0032.tif pano_stack_ldr_0033.tif pano_stack_ldr_0034.tif pano_stack_ldr_0035.tif pano_stack_ldr_0036.tif pano_stack_ldr_0037.tif pano_stack_ldr_0038.tif pano_stack_ldr_0039.tif pano_stack_ldr_0040.tif pano_stack_ldr_0041.tif pano_stack_ldr_0042.tif pano_stack_ldr_0043.tif pano_stack_ldr_0044.tif pano_stack_ldr_0045.tif pano_stack_ldr_0046.tif pano_stack_ldr_0047.tif pano_stack_ldr_0048.tif pano_stack_ldr_0049.tif pano_stack_ldr_0050.tif pano_stack_ldr_0051.tif  
Loading next image: pano_stack_ldr_0000.tif
Loading next image: pano_stack_ldr_0001.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0002.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 8 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7
Collapsing Laplacian pyramid: l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0003.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 8 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7
Collapsing Laplacian pyramid: l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0004.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 8 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7
Collapsing Laplacian pyramid: l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0005.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 8 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7
Collapsing Laplacian pyramid: l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0006.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0007.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0008.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0009.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0010.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0011.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 8 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7
Collapsing Laplacian pyramid: l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0012.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0013.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 8 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7
Collapsing Laplacian pyramid: l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0014.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0015.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0016.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0017.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0018.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0019.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0020.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0021.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0022.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0023.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0024.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0025.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0026.tif
enblend: some images are redundant and will not be blended.Loading next image: pano_stack_ldr_0027.tif

Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0028.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0029.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0030.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0031.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0032.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0033.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0034.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0035.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0036.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0037.tif
Loading next image: pano_stack_ldr_0038.tif
enblend: some images are redundant and will not be blended.
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0039.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0040.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0041.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0042.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0043.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0044.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0045.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0046.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0047.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 1 distinct seam.
Strategy 1, s0: 1/4 2/4 3/4 4/4
Strategy 2: s0
Using 9 blending levels
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Generating Gaussian pyramid:  g0 g1 g2 g3 g4 g5 g6 g7 g8
Generating Laplacian pyramid: l0 l1 l2 l3 l4 l5 l6 l7 l8
Blending layers:              l0 l1 l2 l3 l4 l5 l6 l7 l8
Collapsing Laplacian pyramid: l8 l7 l6 l5 l4 l3 l2 l1 l0
Loading next image: pano_stack_ldr_0048.tif
Creating blend mask: 1/4 2/4 3/4 4/4
Optimizing 0 distinct seams.
Strategy 2:

enblend: an exception occured
Mask is entirely black, but white image was not identified as redundant.
make: *** [pano_fused.tif] Error 1