Test Report

Summary

115
110 passed 5 skipped

Warnings

Warnings 197

  • DeprecationWarning numpy.core is deprecated and has been renamed to numpy._core. The numpy._core namespace contains private NumPy internals and its use is discouraged, as NumPy internals can change without warning in any release. In practice, most real-world usage of numpy.core is to access functionality in the public NumPy API. If that is the case, use the public NumPy API. If not, you are using NumPy internals. If you would still like to access an internal attribute, use numpy._core._multiarray_umath.
    /opt/conda/envs/ci_env/lib/python3.13/site-packages/dill/_dill.py:1065
  • DeprecationWarning numpy.core is deprecated and has been renamed to numpy._core. The numpy._core namespace contains private NumPy internals and its use is discouraged, as NumPy internals can change without warning in any release. In practice, most real-world usage of numpy.core is to access functionality in the public NumPy API. If that is the case, use the public NumPy API. If not, you are using NumPy internals. If you would still like to access an internal attribute, use numpy._core._multiarray_umath.
    /opt/conda/envs/ci_env/lib/python3.13/site-packages/dill/_dill.py:1065
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning numpy.core is deprecated and has been renamed to numpy._core. The numpy._core namespace contains private NumPy internals and its use is discouraged, as NumPy internals can change without warning in any release. In practice, most real-world usage of numpy.core is to access functionality in the public NumPy API. If that is the case, use the public NumPy API. If not, you are using NumPy internals. If you would still like to access an internal attribute, use numpy._core._multiarray_umath.
    /opt/conda/envs/ci_env/lib/python3.13/site-packages/dill/_dill.py:1065
  • DeprecationWarning numpy.core is deprecated and has been renamed to numpy._core. The numpy._core namespace contains private NumPy internals and its use is discouraged, as NumPy internals can change without warning in any release. In practice, most real-world usage of numpy.core is to access functionality in the public NumPy API. If that is the case, use the public NumPy API. If not, you are using NumPy internals. If you would still like to access an internal attribute, use numpy._core._multiarray_umath.
    /opt/conda/envs/ci_env/lib/python3.13/site-packages/dill/_dill.py:1065
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning numpy.core is deprecated and has been renamed to numpy._core. The numpy._core namespace contains private NumPy internals and its use is discouraged, as NumPy internals can change without warning in any release. In practice, most real-world usage of numpy.core is to access functionality in the public NumPy API. If that is the case, use the public NumPy API. If not, you are using NumPy internals. If you would still like to access an internal attribute, use numpy._core._multiarray_umath.
    /opt/conda/envs/ci_env/lib/python3.13/site-packages/dill/_dill.py:1065
  • DeprecationWarning numpy.core is deprecated and has been renamed to numpy._core. The numpy._core namespace contains private NumPy internals and its use is discouraged, as NumPy internals can change without warning in any release. In practice, most real-world usage of numpy.core is to access functionality in the public NumPy API. If that is the case, use the public NumPy API. If not, you are using NumPy internals. If you would still like to access an internal attribute, use numpy._core._multiarray_umath.
    /opt/conda/envs/ci_env/lib/python3.13/site-packages/dill/_dill.py:1065
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • FutureWarning Tip: In future versions of Ray, Ray will no longer override accelerator visible devices env var if num_gpus=0 or num_gpus=None (default). To enable this behavior and turn off this error message, set RAY_ACCEL_ENV_VAR_OVERRIDE_ON_ZERO=0
    /opt/conda/envs/ci_env/lib/python3.13/site-packages/ray/_private/worker.py:2052
  • VisibleDeprecationWarning dtype(): align should be passed as Python or NumPy boolean but got `align=0`. Did you mean to pass a tuple to create a subarray type? (Deprecated NumPy 2.4)
    /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_spatial_transform.py:201
  • VisibleDeprecationWarning dtype(): align should be passed as Python or NumPy boolean but got `align=0`. Did you mean to pass a tuple to create a subarray type? (Deprecated NumPy 2.4)
    /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_spatial_transform.py:201
  • VisibleDeprecationWarning dtype(): align should be passed as Python or NumPy boolean but got `align=0`. Did you mean to pass a tuple to create a subarray type? (Deprecated NumPy 2.4)
    /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_spatial_transform.py:201
  • VisibleDeprecationWarning dtype(): align should be passed as Python or NumPy boolean but got `align=0`. Did you mean to pass a tuple to create a subarray type? (Deprecated NumPy 2.4)
    /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_spatial_transform.py:201
  • VisibleDeprecationWarning dtype(): align should be passed as Python or NumPy boolean but got `align=0`. Did you mean to pass a tuple to create a subarray type? (Deprecated NumPy 2.4)
    /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_spatial_transform.py:201
  • VisibleDeprecationWarning dtype(): align should be passed as Python or NumPy boolean but got `align=0`. Did you mean to pass a tuple to create a subarray type? (Deprecated NumPy 2.4)
    /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_spatial_transform.py:268
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • VisibleDeprecationWarning dtype(): align should be passed as Python or NumPy boolean but got `align=0`. Did you mean to pass a tuple to create a subarray type? (Deprecated NumPy 2.4)
    /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_spatial_transform.py:268
  • VisibleDeprecationWarning dtype(): align should be passed as Python or NumPy boolean but got `align=0`. Did you mean to pass a tuple to create a subarray type? (Deprecated NumPy 2.4)
    /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_spatial_transform.py:268
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • DeprecationWarning This process (pid=121) is multi-threaded, use of fork() may lead to deadlocks in the child.
    /opt/conda/envs/ci_env/lib/python3.13/multiprocessing/popen_fork.py:67
  • VisibleDeprecationWarning dtype(): align should be passed as Python or NumPy boolean but got `align=0`. Did you mean to pass a tuple to create a subarray type? (Deprecated NumPy 2.4)
    /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_spatial_transform.py:268
  • VisibleDeprecationWarning dtype(): align should be passed as Python or NumPy boolean but got `align=0`. Did you mean to pass a tuple to create a subarray type? (Deprecated NumPy 2.4)
    /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_spatial_transform.py:268

Tests

tests/test_cli_parser.py 7 0:00:00.578979

PASSED Test_CLIParser::test_json_opts 0:00:00.162220

Setup

Call

Teardown

PASSED Test_CLIParser::test_output_nodata_value 0:00:00.094151

Setup

Call

Teardown

PASSED Test_CLIParser::test_param_acceptance 0:00:00.063998

Setup

Call

Teardown

PASSED Test_CLIParser::test_param_boolean 0:00:00.093881

Setup

Call

Teardown

PASSED Test_CLIParser::test_param_list 0:00:00.036297

Setup

Call

Teardown

PASSED Test_CLIParser::test_tgtepsg 0:00:00.063840

Setup

Call

Teardown

PASSED Test_CLIParser::test_tgtprj 0:00:00.064592

Setup

Call

Teardown

tests/test_config.py 13 0:00:00.300111

PASSED Test_get_options::test_target_is_file_no_validation 0:00:00.005704

Setup

Call

Teardown

PASSED Test_get_options::test_target_is_file_validation 0:00:00.013833

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_invalid_filepath 0:00:00.029203

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_jsonconfig_file 0:00:00.033468

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_jsonconfig_param_acceptance 0:00:00.028515

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_jsonconfig_str_allfine 0:00:00.029458

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_jsonconfig_str_badcomment 0:00:00.013501

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_jsonconfig_str_nojson 0:00:00.013506

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_jsonconfig_str_schema_violation 0:00:00.022330

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_jsonconfig_str_undecodable_val 0:00:00.013639

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_plain_args 0:00:00.029964

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_to_dict_validity 0:00:00.037161

Setup

Call

Teardown

PASSED Test_EnPTConfig::test_to_jsonable_dict 0:00:00.029829

Setup

Call

Teardown

tests/test_controller.py 3 0:03:10.781910

PASSED Test_EnPT_Controller::test_run_all_processors 0:00:38.202420

Setup

Call

Captured stdout call
EnPT Controller received the following configuration:
{'general_opts': {'CPUs': 24,
                  'create_logfile': True,
                  'disable_progress_bars': False,
                  'drop_bad_bands': True,
                  'log_level': 'DEBUG',
                  'n_lines_to_append': 50,
                  'path_dem': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z__tile2__DEM_ASTER.bsq',
                  'path_l1b_enmap_image': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/EnMAP_Level_1B/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z__rows700-799.zip',
                  'path_l1b_enmap_image_gapfill': '',
                  'path_l1b_snr_model': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/enpt/resources/EnMAP_Sensor/EnMAP_Level_1B_SNR.zip',
                  'working_dir': '/tmp/tmpwhomxzq4'},
 'output': {'output_dir': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs',
            'output_format': 'GTiff',
            'output_interleave': 'pixel',
            'output_nodata_value': -32768},
 'processors': {'atmospheric_correction': {'auto_download_ecmwf': True,
                                           'blocksize': 100,
                                           'enable_ac': True,
                                           'enable_segmentation': True,
                                           'isofit_surface_category': 'multicomponent_surface',
                                           'land_ac_alg': 'SICOR',
                                           'mode_ac': 'land',
                                           'path_isofit_surface_config': '',
                                           'path_isofit_surface_priors': '',
                                           'polymer_additional_results': True,
                                           'polymer_root': '',
                                           'scale_factor_boa_ref': 10000,
                                           'threads': -1},
                'dead_pixel': {'algorithm': 'spatial',
                               'interp_method_spatial': 'linear',
                               'interp_method_spectral': 'linear',
                               'run_processor': False},
                'geometry': {'enable_absolute_coreg': True,
                             'enable_keystone_correction': False,
                             'enable_vnir_swir_coreg': False,
                             'path_reference_image': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/enpt/../tests/data/T30TXQ_20170218T110111_B05__sub.tif'},
                'orthorectification': {'resamp_alg': 'bilinear',
                                       'target_coord_grid': {'x': array([ 0, 30]),
                                                             'y': array([ 0, 30])},
                                       'target_epsg': None,
                                       'target_projection_type': 'UTM',
                                       'vswir_overlap_algorithm': 'swir_only'},
                'smile': {'run_processor': False},
                'toa_ref': {'path_earthSunDist': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/enpt/resources/earth_sun_distance/Earth_Sun_distances_per_day_edited__1980_2030.csv',
                            'path_solar_irr': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/enpt/resources/solar_irradiance/SUNp1fontenla__350-2500nm_@0.1nm_converted.txt',
                            'scale_factor_toa_ref': 10000}}}
2026/05/13 16:20:04:   Reading metadata for VNIR detector...
2026/05/13 16:20:04:   Calculating solar irradiance...
2026/05/13 16:20:04:   Reading metadata for SWIR detector...
2026/05/13 16:20:05:   Calculating solar irradiance...
2026/05/13 16:20:05:   Pre-processing user-provided DEM...
2026/05/13 16:20:05:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:20:05:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:20:05:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:20:06:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:20:06:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:20:06:   Computing VNIR geolayer...
2026/05/13 16:20:07:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:20:07:   Computing SWIR geolayer...
2026/05/13 16:20:07:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:20:07:   Temporarily transforming EnMAP band 40 to map geometry for co-registration.
2026/05/13 16:20:08:   Temporarily transforming EnMAP water mask to map geometry for co-registration.
2026/05/13 16:20:08:   Preparing reference image for co-registration.
2026/05/13 16:20:08:   Computing tie points between the EnMAP image and the given spatial reference image.
Calculating footprint polygon and actual data corner coordinates for reference image...
Bounding box of calculated footprint for reference image:
	(637005.0, 4940640.0, 666300.0, 4949895.0)
Bounding box of calculated footprint for image to be shifted:
	(637009.9236523756, 4940648.633479693, 666298.6703669054, 4949893.375184522)
Matching window position (X,Y): 651655.4222751356/4945271.096554121
Target window size (256, 256) not possible due to too small overlap area or window position too close to an image edge. New matching window size: (164, 164).
Initializing tie points grid...
With respect to the provided bad data mask(s) 81 points of initially 242 have been excluded.
Calculating tie point grid (161 points) using 24 CPU cores...
Found 131 matches.
Performing validity checks...
41 tie points flagged by level 1 filtering (reliability).
11 tie points flagged by level 2 filtering (SSIM).
9 tie points flagged by level 3 filtering (RANSAC)
81 valid tie points remain after filtering.
2026/05/13 16:20:13:   Generating misregistration array.
interpolation runtime: 0.23s
interpolation runtime: 0.20s
2026/05/13 16:20:13:   Transforming spatial optimization results back to sensor geometry.
2026/05/13 16:20:14:   Applying results of spatial optimization to geolayer.
2026/05/13 16:20:14:   Transforming the 'mask_landwater' attribute from VNIR to SWIR sensor geometry.
2026/05/13 16:20:14:   Starting atmospheric correction for VNIR and SWIR detector in 'land' mode. Source radiometric unit code is 'TOARad'.
2026/05/13 16:20:14:   Running atmospheric correction in 'land' mode, i.e., SICOR is applied to ALL surfaces. Uncertainty is expected for water surfaces because SICOR is designed for land only.
2026/05/13 16:20:14:   SICOR AC configuration: 
{'processing': {'Exception': None,
                'Exception_type': '',
                'clear_fraction': None,
                'interface': {'args': (), 'kwargs': {}},
                'status': 1,
                'tIO': 0.0,
                'tRT': 0.0,
                'uncertainties': {}},
 'retrieval': {'cpu': 24,
               'default_aot_value': 0.192,
               'disable_progressbars': False,
               'fn_LUT': '',
               'inversion': {'eps': 0.01,
                             'full': False,
                             'gnform': 'n',
                             'maxiter': 35},
               'land_only': False,
               'n_pca': 5,
               'segmentation': True,
               'segs': 200,
               'smoothing_sigma': 50,
               'sol_model': 'fontenla',
               'state_vector': {'ice': {'ll': 0.001,
                                        'prior_mean': 0.02,
                                        'prior_sigma': 1000.0,
                                        'ul': 0.499,
                                        'use_prior_mean': False},
                                'intercept': {'ll': 0.001,
                                              'prior_mean': 0.3,
                                              'prior_sigma': 1000.0,
                                              'ul': 0.999,
                                              'use_prior_mean': False},
                                'liquid_water': {'ll': 0.001,
                                                 'prior_mean': 0.02,
                                                 'prior_sigma': 1000.0,
                                                 'ul': 0.499,
                                                 'use_prior_mean': False},
                                'slope': {'ll': -0.0004,
                                          'prior_mean': 0.0002,
                                          'prior_sigma': 1000.0,
                                          'ul': 0.0004,
                                          'use_prior_mean': False},
                                'water_vapor': {'ll': 0.001,
                                                'prior_mean': 2.5,
                                                'prior_sigma': 1000.0,
                                                'ul': 4.999,
                                                'use_prior_mean': False}},
               'unknowns': {'ice_absorption_coefficients': {'sigma': 2.39e-07},
                            'liquid_water_absorption_coefficients': {'sigma': 2.43e-07},
                            'skyview': {'sigma': 0.1},
                            'water_vapor_absorption_coefficients': {'sigma': 0.01}}},
 'sensor': {'fit': {'idx': [14,
                            15,
                            16,
                            17,
                            18,
                            19,
                            20,
                            21,
                            22,
                            23,
                            24,
                            25,
                            26,
                            27,
                            28,
                            29,
                            30,
                            31],
                    'snr': [322.94254006,
                            313.45752342,
                            313.32464722,
                            306.19455173,
                            281.35641378,
                            227.9759974,
                            157.22390595,
                            148.93620623,
                            154.40197388,
                            182.60431866,
                            232.89644996,
                            250.1244036,
                            252.2267179,
                            272.16592448,
                            299.71964816,
                            316.11909184,
                            326.33202741,
                            312.28461288]},
            'name': 'EnMAP',
            'resamp_alg': 'nearest'}}
2026/05/13 16:20:14:   Setting up forward operator...
2026/05/13 16:20:15:   SICOR is applied to land AND water pixels.
2026/05/13 16:20:15:   Transforming VNIR data to SWIR sensor geometry to enable first guess retrievals for liquid water and ice...
2026/05/13 16:20:16:   Getting observation metadata...
2026/05/13 16:20:16:   Checking if observation metadata values are within LUT value ranges...
2026/05/13 16:20:16:   Loading solar irradiance model...
2026/05/13 16:20:16:   Loading RT LUT...
2026/05/13 16:20:16:   LUT file was not found locally. Try to download it from Git repository...
2026/05/13 16:20:19:   LUT file was properly downloaded and is available for AC!
2026/05/13 16:20:19:   Converting LUT to Fontenla solar model...
2026/05/13 16:20:20:   Resampling LUT to EnMAP wavelengths...
2026/05/13 16:20:22:   Reducing grid dimensionality of LUT to increase interpolation speed...
2026/05/13 16:20:22:   Calculating absorption coefficients of liquid water and ice...
2026/05/13 16:20:23:   Performing first guess water vapor retrieval based on a common band ratio using VNIR data...
2026/05/13 16:20:24:   Transforming CWV first guess map to SWIR sensor geometry to enable segmentation and 3 phases of water retrieval...
2026/05/13 16:20:25:   Performing first guess liquid water retrieval based on the NDWI...
2026/05/13 16:20:25:   Performing first guess ice retrieval based on the NDSI...
2026/05/13 16:20:25:   Calculating first guess for intercept and slope of absorption feature continuum...
2026/05/13 16:20:25:   Segmenting SWIR L1B spectra to enhance processing speed...
2026/05/13 16:20:25:   Preparing segmented SWIR L1B data cube...
2026/05/13 16:20:25:   Performing 3 phases of water retrieval...
2026/05/13 16:20:25:   Setting up multiprocessing...
2026/05/13 16:20:25:   Multiprocessing on 24 cpu's
2026/05/13 16:20:25:   Preparing optimal estimation input...
2026/05/13 16:20:25:   Optimization...
2026/05/13 16:20:27:   Done!
2026/05/13 16:20:27:   Runtime: 1.83 s
2026/05/13 16:20:27:   Smoothing segmented CWV retrieval map...
2026/05/13 16:20:27:   Transforming smoothed CWV retrieval map to VNIR sensor geometry to enable AC of VNIR data...
2026/05/13 16:20:28:   Starting surface reflectance retrieval...
2026/05/13 16:20:28:   Calculating surface reflectance for vnir detector...
2026/05/13 16:20:30:   Calculating surface reflectance for swir detector...
2026/05/13 16:20:32:   Smoothing segmented liquid water and ice maps...
2026/05/13 16:20:33:   SICOR atmospheric correction for EnMAP in land mode successfully finished!
2026/05/13 16:20:33:   Joining results of atmospheric correction.
2026/05/13 16:20:33:   Starting orthorectification...
2026/05/13 16:20:33:   Computed common target extent of orthorectified image (xmin, ymin, xmax, ymax in EPSG 32630): (636990.0, 4940670.0, 666150.0, 4949310.0)
2026/05/13 16:20:33:   Orthorectifying VNIR data using 'bilinear' resampling algorithm...
2026/05/13 16:20:34:   Orthorectifying SWIR data using 'bilinear' resampling algorithm...
2026/05/13 16:20:35:   Merging VNIR and SWIR data...
2026/05/13 16:20:35:   Orthorectifying 'mask_landwater' attribute...
2026/05/13 16:20:35:   Orthorectifying 'mask_clouds' attribute...
2026/05/13 16:20:35:   Orthorectifying 'mask_cloudshadow' attribute...
2026/05/13 16:20:36:   Orthorectifying 'mask_haze' attribute...
2026/05/13 16:20:36:   Orthorectifying 'mask_snow' attribute...
2026/05/13 16:20:37:   Orthorectifying 'mask_cirrus' attribute...
2026/05/13 16:20:37:   Orthorectifying 'sicor_cwv' attribute...
2026/05/13 16:20:37:   Orthorectifying 'sicor_liq' attribute...
2026/05/13 16:20:38:   Orthorectifying 'sicor_ice' attribute...
2026/05/13 16:20:38:   Setting all pixels to nodata that have values in the VNIR or the SWIR only...
2026/05/13 16:20:38:   Generating L2A metadata...
2026/05/13 16:20:40:   Pre-processing DEM to match EnMAP grid...
2026/05/13 16:20:40:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (288, 972, 202) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE.TIF.
Writing GeoArray of size (288, 972) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (288, 972) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (288, 972) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (288, 972) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (288, 972) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (288, 972) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (288, 972, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.TIF.
Writing GeoArray of size (288, 972, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.TIF.
Writing GeoArray of size (288, 972) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_SICOR_CWV.TIF.
Writing GeoArray of size (288, 972) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_SICOR_LIQ.TIF.
Writing GeoArray of size (288, 972) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_SICOR_ICE.TIF.
2026/05/13 16:20:42:   Writing metadata to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-METADATA.XML
2026/05/13 16:20:42:   L2A product successfully written!
2026/05/13 16:20:42:   Total runtime of the processing chain: 0:00:38.134375
Captured stderr call
2026/05/13 16:20:04:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:20:07:   Statically using band 40 for co-registration.

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2026/05/13 16:20:32:   VNIR L2A data contain negative values indicating an overcorrection. Please check for errors in the input data, the options file, or the processing code.
2026/05/13 16:20:33:   SWIR L2A data contain negative values indicating an overcorrection. Please check for errors in the input data, the options file, or the processing code.
2026/05/13 16:20:41:   Currently, L2A dead pixel masks cannot be saved yet.
2026/05/13 16:20:41:   The 'isofit_atm_state' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:20:41:   The 'isofit_uncertainty' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:20:41:   Currently, the L2A metadata XML file does not contain all relevant keys and contains not updated values!

Teardown

PASSED Test_EnPT_Controller_ACWater::test_run_all_processors 0:02:13.510785

Setup

Call

Captured stdout call
EnPT Controller received the following configuration:
{'general_opts': {'CPUs': 24,
                  'create_logfile': True,
                  'disable_progress_bars': False,
                  'drop_bad_bands': True,
                  'log_level': 'DEBUG',
                  'n_lines_to_append': None,
                  'path_dem': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z__tile2__DEM_ASTER.bsq',
                  'path_l1b_enmap_image': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/EnMAP_Level_1B/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z__rows700-730.zip',
                  'path_l1b_enmap_image_gapfill': '',
                  'path_l1b_snr_model': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/enpt/resources/EnMAP_Sensor/EnMAP_Level_1B_SNR.zip',
                  'working_dir': '/tmp/tmpsjsa_b9k'},
 'output': {'output_dir': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs',
            'output_format': 'GTiff',
            'output_interleave': 'pixel',
            'output_nodata_value': -32768},
 'processors': {'atmospheric_correction': {'auto_download_ecmwf': True,
                                           'blocksize': 100,
                                           'enable_ac': True,
                                           'enable_segmentation': True,
                                           'isofit_surface_category': 'multicomponent_surface',
                                           'land_ac_alg': 'SICOR',
                                           'mode_ac': 'combined',
                                           'path_isofit_surface_config': '',
                                           'path_isofit_surface_priors': '',
                                           'polymer_additional_results': True,
                                           'polymer_root': '/opt/conda/envs/ci_env/lib/python3.13/site-packages',
                                           'scale_factor_boa_ref': 10000,
                                           'threads': -1},
                'dead_pixel': {'algorithm': 'spectral',
                               'interp_method_spatial': 'linear',
                               'interp_method_spectral': 'linear',
                               'run_processor': True},
                'geometry': {'enable_absolute_coreg': False,
                             'enable_keystone_correction': False,
                             'enable_vnir_swir_coreg': False,
                             'path_reference_image': ''},
                'orthorectification': {'resamp_alg': 'bilinear',
                                       'target_coord_grid': {'x': array([ 0, 30]),
                                                             'y': array([ 0, 30])},
                                       'target_epsg': None,
                                       'target_projection_type': 'UTM',
                                       'vswir_overlap_algorithm': 'swir_only'},
                'smile': {'run_processor': False},
                'toa_ref': {'path_earthSunDist': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/enpt/resources/earth_sun_distance/Earth_Sun_distances_per_day_edited__1980_2030.csv',
                            'path_solar_irr': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/enpt/resources/solar_irradiance/SUNp1fontenla__350-2500nm_@0.1nm_converted.txt',
                            'scale_factor_toa_ref': 10000}}}
2026/05/13 16:20:42:   Reading metadata for VNIR detector...
2026/05/13 16:20:42:   Calculating solar irradiance...
2026/05/13 16:20:42:   Reading metadata for SWIR detector...
2026/05/13 16:20:43:   Calculating solar irradiance...
2026/05/13 16:20:43:   Pre-processing user-provided DEM...
2026/05/13 16:20:43:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:20:43:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:20:43:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:20:43:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:20:44:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:20:44:   Computing VNIR geolayer...
2026/05/13 16:20:44:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:20:44:   Computing SWIR geolayer...
2026/05/13 16:20:44:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:20:44:   Correcting dead pixels of VNIR detector...
Used algorithm: linear interpolation in the spectral domain
2026/05/13 16:20:44:   Percentage of defective pixels: 0.49
2026/05/13 16:20:44:   Percentage of pixels with a defect in any band: 35.60
2026/05/13 16:20:44:   Correcting dead pixels of SWIR detector...
Used algorithm: linear interpolation in the spectral domain
2026/05/13 16:20:45:   Percentage of defective pixels: 0.50
2026/05/13 16:20:45:   Percentage of pixels with a defect in any band: 44.50
2026/05/13 16:20:45:   Transforming the 'mask_landwater' attribute from VNIR to SWIR sensor geometry.
2026/05/13 16:20:45:   Starting atmospheric correction for VNIR and SWIR detector in 'combined' mode. Source radiometric unit code is 'TOARad'.
2026/05/13 16:20:45:   SICOR AC configuration: 
{'processing': {'Exception': None,
                'Exception_type': '',
                'clear_fraction': None,
                'interface': {'args': (), 'kwargs': {}},
                'status': 1,
                'tIO': 0.0,
                'tRT': 0.0,
                'uncertainties': {}},
 'retrieval': {'cpu': 24,
               'default_aot_value': 0.192,
               'disable_progressbars': False,
               'fn_LUT': '',
               'inversion': {'eps': 0.01,
                             'full': False,
                             'gnform': 'n',
                             'maxiter': 35},
               'land_only': True,
               'n_pca': 5,
               'segmentation': True,
               'segs': 200,
               'smoothing_sigma': 50,
               'sol_model': 'fontenla',
               'state_vector': {'ice': {'ll': 0.001,
                                        'prior_mean': 0.02,
                                        'prior_sigma': 1000.0,
                                        'ul': 0.499,
                                        'use_prior_mean': False},
                                'intercept': {'ll': 0.001,
                                              'prior_mean': 0.3,
                                              'prior_sigma': 1000.0,
                                              'ul': 0.999,
                                              'use_prior_mean': False},
                                'liquid_water': {'ll': 0.001,
                                                 'prior_mean': 0.02,
                                                 'prior_sigma': 1000.0,
                                                 'ul': 0.499,
                                                 'use_prior_mean': False},
                                'slope': {'ll': -0.0004,
                                          'prior_mean': 0.0002,
                                          'prior_sigma': 1000.0,
                                          'ul': 0.0004,
                                          'use_prior_mean': False},
                                'water_vapor': {'ll': 0.001,
                                                'prior_mean': 2.5,
                                                'prior_sigma': 1000.0,
                                                'ul': 4.999,
                                                'use_prior_mean': False}},
               'unknowns': {'ice_absorption_coefficients': {'sigma': 2.39e-07},
                            'liquid_water_absorption_coefficients': {'sigma': 2.43e-07},
                            'skyview': {'sigma': 0.1},
                            'water_vapor_absorption_coefficients': {'sigma': 0.01}}},
 'sensor': {'fit': {'idx': [14,
                            15,
                            16,
                            17,
                            18,
                            19,
                            20,
                            21,
                            22,
                            23,
                            24,
                            25,
                            26,
                            27,
                            28,
                            29,
                            30,
                            31],
                    'snr': [322.94254006,
                            313.45752342,
                            313.32464722,
                            306.19455173,
                            281.35641378,
                            227.9759974,
                            157.22390595,
                            148.93620623,
                            154.40197388,
                            182.60431866,
                            232.89644996,
                            250.1244036,
                            252.2267179,
                            272.16592448,
                            299.71964816,
                            316.11909184,
                            326.33202741,
                            312.28461288]},
            'name': 'EnMAP',
            'resamp_alg': 'nearest'}}
2026/05/13 16:20:45:   Setting up forward operator...
2026/05/13 16:20:46:   SICOR is applied to land pixels only. This may result in edge effects, e.g., at coastlines...
2026/05/13 16:20:46:   Transforming VNIR data to SWIR sensor geometry to enable first guess retrievals for liquid water and ice...
2026/05/13 16:20:47:   Getting observation metadata...
2026/05/13 16:20:47:   Checking if observation metadata values are within LUT value ranges...
2026/05/13 16:20:47:   Loading solar irradiance model...
2026/05/13 16:20:47:   Loading RT LUT...
2026/05/13 16:20:47:   LUT file was properly downloaded and is available for AC!
2026/05/13 16:20:47:   Converting LUT to Fontenla solar model...
2026/05/13 16:20:48:   Resampling LUT to EnMAP wavelengths...
2026/05/13 16:20:51:   Reducing grid dimensionality of LUT to increase interpolation speed...
2026/05/13 16:20:51:   Calculating absorption coefficients of liquid water and ice...
2026/05/13 16:20:51:   Performing first guess water vapor retrieval based on a common band ratio using VNIR data...
2026/05/13 16:20:52:   Transforming CWV first guess map to SWIR sensor geometry to enable segmentation and 3 phases of water retrieval...
2026/05/13 16:20:53:   Performing first guess liquid water retrieval based on the NDWI...
2026/05/13 16:20:53:   Performing first guess ice retrieval based on the NDSI...
2026/05/13 16:20:53:   Calculating first guess for intercept and slope of absorption feature continuum...
2026/05/13 16:20:53:   Segmenting SWIR L1B spectra to enhance processing speed...
2026/05/13 16:20:53:   Preparing segmented SWIR L1B data cube...
2026/05/13 16:20:53:   Performing 3 phases of water retrieval...
2026/05/13 16:20:53:   Setting up multiprocessing...
2026/05/13 16:20:53:   Multiprocessing on 24 cpu's
2026/05/13 16:20:53:   Preparing optimal estimation input...
2026/05/13 16:20:53:   Optimization...
2026/05/13 16:20:54:   Done!
2026/05/13 16:20:54:   Runtime: 1.46 s
2026/05/13 16:20:54:   Smoothing segmented CWV retrieval map...
2026/05/13 16:20:54:   Transforming smoothed CWV retrieval map to VNIR sensor geometry to enable AC of VNIR data...
2026/05/13 16:20:55:   Starting surface reflectance retrieval...
2026/05/13 16:20:55:   Calculating surface reflectance for vnir detector...
2026/05/13 16:20:56:   Calculating surface reflectance for swir detector...
2026/05/13 16:20:58:   Smoothing segmented liquid water and ice maps...
2026/05/13 16:20:58:   SICOR atmospheric correction for EnMAP in combined mode successfully finished!
vnir
2026/05/13 16:21:08:   Running polymer...
Initializing ENMAP product of size (30, 1000)
2026/05/13 16:21:09:   Landmask is EnMAP L1B
Download 2017-02-18 11:00:00 -> /root/.cache/polymer/auxdata/ancillary/ERA5/2017/02/18/era5_20170218_110000.nc
Download 2017-02-18 12:00:00 -> /root/.cache/polymer/auxdata/ancillary/ERA5/2017/02/18/era5_20170218_120000.nc
Starting processing at 2026-05-13 16:21:52.413022
Processing block: size (30, 1000), offset (0, 0)
Done in 0:00:57.296090
2026/05/13 16:22:49:   Joining results of atmospheric correction.
2026/05/13 16:22:49:   Re-applying dead pixel correction to correct for spectral spikes due to fringe effect.
2026/05/13 16:22:49:   Correcting dead pixels of VNIR detector...
Used algorithm: linear interpolation in the spectral domain
2026/05/13 16:22:49:   Percentage of defective pixels: 0.49
2026/05/13 16:22:49:   Percentage of pixels with a defect in any band: 35.60
2026/05/13 16:22:50:   Correcting dead pixels of SWIR detector...
Used algorithm: linear interpolation in the spectral domain
2026/05/13 16:22:50:   Percentage of defective pixels: 0.50
2026/05/13 16:22:50:   Percentage of pixels with a defect in any band: 44.50
2026/05/13 16:22:50:   Starting orthorectification...
2026/05/13 16:22:50:   Computed common target extent of orthorectified image (xmin, ymin, xmax, ymax in EPSG 32630): (637410.0, 4942680.0, 666180.0, 4949340.0)
2026/05/13 16:22:50:   Orthorectifying VNIR data using 'bilinear' resampling algorithm...
2026/05/13 16:22:50:   Orthorectifying SWIR data using 'bilinear' resampling algorithm...
2026/05/13 16:22:51:   Merging VNIR and SWIR data...
2026/05/13 16:22:51:   Orthorectifying 'mask_landwater' attribute...
2026/05/13 16:22:51:   Orthorectifying 'mask_clouds' attribute...
2026/05/13 16:22:51:   Orthorectifying 'mask_cloudshadow' attribute...
2026/05/13 16:22:51:   Orthorectifying 'mask_haze' attribute...
2026/05/13 16:22:51:   Orthorectifying 'mask_snow' attribute...
2026/05/13 16:22:52:   Orthorectifying 'mask_cirrus' attribute...
2026/05/13 16:22:52:   Orthorectifying 'sicor_cwv' attribute...
2026/05/13 16:22:52:   Orthorectifying 'sicor_liq' attribute...
2026/05/13 16:22:52:   Orthorectifying 'sicor_ice' attribute...
2026/05/13 16:22:52:   Orthorectifying 'polymer_logchl' attribute...
2026/05/13 16:22:52:   Orthorectifying 'polymer_logfb' attribute...
2026/05/13 16:22:53:   Orthorectifying 'polymer_rgli' attribute...
2026/05/13 16:22:53:   Orthorectifying 'polymer_rnir' attribute...
2026/05/13 16:22:53:   Orthorectifying 'polymer_bitmask' attribute...
2026/05/13 16:22:53:   Setting all pixels to nodata that have values in the VNIR or the SWIR only...
2026/05/13 16:22:53:   Generating L2A metadata...
2026/05/13 16:22:54:   Pre-processing DEM to match EnMAP grid...
2026/05/13 16:22:54:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (222, 959, 202) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (222, 959, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.TIF.
Writing GeoArray of size (222, 959, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_SICOR_CWV.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_SICOR_LIQ.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_SICOR_ICE.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_POLYMER_LOGCHL.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_POLYMER_LOGFB.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_POLYMER_RGLI.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_POLYMER_RNIR.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_POLYMER_BITMASK.TIF.
2026/05/13 16:22:55:   Writing metadata to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-METADATA.XML
2026/05/13 16:22:55:   L2A product successfully written!
2026/05/13 16:22:55:   Total runtime of the processing chain: 0:02:13.442774
Captured stderr call
2026/05/13 16:20:42:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.

	progress: |================----------------------------------| 31.7% Complete  => 0:00:00
	progress: |=================================================-| 97.6% Complete  => 0:00:00
	progress: |==================================================| 100.0% Complete  => 0:00:00
2026/05/13 16:20:58:   VNIR L2A data contain negative values indicating an overcorrection. Please check for errors in the input data, the options file, or the processing code.
2026/05/13 16:20:58:   SWIR L2A data contain negative values indicating an overcorrection. Please check for errors in the input data, the options file, or the processing code.
(i) 16:20:59 Downloading:http://download.hygeos.com/POLYMER/auxdata/generic/LUT.hdf
(i) 16:20:59 To: /root/.cache/polymer/auxdata/static/generic/LUT.hdf
--2026-05-13 16:20:59--  http://download.hygeos.com/POLYMER/auxdata/generic/LUT.hdf
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:80... connected.
HTTP request sent, awaiting response... 301 Moved Permanently
Location: https://download.hygeos.com/POLYMER/auxdata/generic/LUT.hdf [following]
--2026-05-13 16:20:59--  https://download.hygeos.com/POLYMER/auxdata/generic/LUT.hdf
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:443... connected.
HTTP request sent, awaiting response... 200 OK
Length: 97540482 (93M) [application/x-hdf]
Saving to: ‘/tmp/tmpjm_4y80y/LUT.hdf’

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  8400K .......... .......... .......... .......... ..........  8%  101M 2s
  8450K .......... .......... .......... .......... ..........  8%  104M 2s
  8500K .......... .......... .......... .......... ..........  8%  101M 2s
  8550K .......... .......... .......... .......... ..........  9%  102M 2s
  8600K .......... .......... .......... .......... ..........  9% 71.2M 2s
  8650K .......... .......... .......... .......... ..........  9% 97.8M 2s
  8700K .......... .......... .......... .......... ..........  9%  101M 2s
  8750K .......... .......... .......... .......... ..........  9%  101M 2s
  8800K .......... .......... .......... .......... ..........  9% 97.1M 2s
  8850K .......... .......... .......... .......... ..........  9%  100M 2s
  8900K .......... .......... .......... .......... ..........  9%  102M 2s
  8950K .......... .......... .......... .......... ..........  9% 98.6M 2s
  9000K .......... .......... .......... .......... ..........  9% 74.9M 2s
  9050K .......... .......... .......... .......... ..........  9% 99.6M 2s
  9100K .......... .......... .......... .......... ..........  9%  102M 2s
  9150K .......... .......... .......... .......... ..........  9%  103M 2s
  9200K .......... .......... .......... .......... ..........  9%  102M 2s
  9250K .......... .......... .......... .......... ..........  9%  105M 2s
  9300K .......... .......... .......... .......... ..........  9% 97.2M 2s
  9350K .......... .......... .......... .......... ..........  9%  105M 2s
  9400K .......... .......... .......... .......... ..........  9% 77.0M 2s
  9450K .......... .......... .......... .......... ..........  9%  102M 2s
  9500K .......... .......... .......... .......... .......... 10%  101M 2s
  9550K .......... .......... .......... .......... .......... 10%  101M 2s
  9600K .......... .......... .......... .......... .......... 10%  102M 2s
  9650K .......... .......... .......... .......... .......... 10% 99.0M 2s
  9700K .......... .......... .......... .......... .......... 10%  102M 2s
  9750K .......... .......... .......... .......... .......... 10%  104M 2s
  9800K .......... .......... .......... .......... .......... 10% 76.7M 2s
  9850K .......... .......... .......... .......... .......... 10% 99.2M 2s
  9900K .......... .......... .......... .......... .......... 10%  105M 2s
  9950K .......... .......... .......... .......... .......... 10%  106M 2s
 10000K .......... .......... .......... .......... .......... 10%  106M 2s
 10050K .......... .......... .......... .......... .......... 10%  105M 2s
 10100K .......... .......... .......... .......... .......... 10% 99.6M 2s
 10150K .......... .......... .......... .......... .......... 10% 99.3M 2s
 10200K .......... .......... .......... .......... .......... 10% 76.4M 2s
 10250K .......... .......... .......... .......... .......... 10%  104M 2s
 10300K .......... .......... .......... .......... .......... 10%  102M 2s
 10350K .......... .......... .......... .......... .......... 10%  105M 2s
 10400K .......... .......... .......... .......... .......... 10%  107M 2s
 10450K .......... .......... .......... .......... .......... 11% 99.9M 2s
 10500K .......... .......... .......... .......... .......... 11% 99.0M 2s
 10550K .......... .......... .......... .......... .......... 11% 98.2M 2s
 10600K .......... .......... .......... .......... .......... 11% 78.2M 2s
 10650K .......... .......... .......... .......... .......... 11% 99.1M 2s
 10700K .......... .......... .......... .......... .......... 11% 99.7M 2s
 10750K .......... .......... .......... .......... .......... 11% 99.0M 2s
 10800K .......... .......... .......... .......... .......... 11%  101M 2s
 10850K .......... .......... .......... .......... .......... 11%  102M 2s
 10900K .......... .......... .......... .......... .......... 11% 99.6M 2s
 10950K .......... .......... .......... .......... .......... 11%  103M 2s
 11000K .......... .......... .......... .......... .......... 11% 75.9M 2s
 11050K .......... .......... .......... .......... .......... 11%  100M 2s
 11100K .......... .......... .......... .......... .......... 11%  102M 2s
 11150K .......... .......... .......... .......... .......... 11%  106M 2s
 11200K .......... .......... .......... .......... .......... 11% 99.6M 2s
 11250K .......... .......... .......... .......... .......... 11%  102M 2s
 11300K .......... .......... .......... .......... .......... 11%  100M 2s
 11350K .......... .......... .......... .......... .......... 11%  104M 2s
 11400K .......... .......... .......... .......... .......... 12% 74.9M 2s
 11450K .......... .......... .......... .......... .......... 12%  106M 2s
 11500K .......... .......... .......... .......... .......... 12%  103M 2s
 11550K .......... .......... .......... .......... .......... 12% 97.6M 2s
 11600K .......... .......... .......... .......... .......... 12%  103M 2s
 11650K .......... .......... .......... .......... .......... 12%  102M 2s
 11700K .......... .......... .......... .......... .......... 12%  103M 2s
 11750K .......... .......... .......... .......... .......... 12% 99.5M 2s
 11800K .......... .......... .......... .......... .......... 12% 75.8M 2s
 11850K .......... .......... .......... .......... .......... 12% 99.2M 2s
 11900K .......... .......... .......... .......... .......... 12%  106M 2s
 11950K .......... .......... .......... .......... .......... 12% 99.7M 2s
 12000K .......... .......... .......... .......... .......... 12%  104M 2s
 12050K .......... .......... .......... .......... .......... 12% 98.2M 2s
 12100K .......... .......... .......... .......... .......... 12%  106M 2s
 12150K .......... .......... .......... .......... .......... 12%  103M 2s
 12200K .......... .......... .......... .......... .......... 12% 73.9M 2s
 12250K .......... .......... .......... .......... .......... 12% 98.2M 2s
 12300K .......... .......... .......... .......... .......... 12% 96.1M 2s
 12350K .......... .......... .......... .......... .......... 13% 78.6M 2s
 12400K .......... .......... .......... .......... .......... 13% 80.3M 2s
 12450K .......... .......... .......... .......... .......... 13%  105M 2s
 12500K .......... .......... .......... .......... .......... 13%  103M 2s
 12550K .......... .......... .......... .......... .......... 13%  100M 2s
 12600K .......... .......... .......... .......... .......... 13% 76.1M 2s
 12650K .......... .......... .......... .......... .......... 13% 88.8M 2s
 12700K .......... .......... .......... .......... .......... 13% 97.9M 2s
 12750K .......... .......... .......... .......... .......... 13%  102M 2s
 12800K .......... .......... .......... .......... .......... 13% 97.2M 2s
 12850K .......... .......... .......... .......... .......... 13%  102M 2s
 12900K .......... .......... .......... .......... .......... 13%  105M 2s
 12950K .......... .......... .......... .......... .......... 13%  103M 2s
 13000K .......... .......... .......... .......... .......... 13% 76.0M 2s
 13050K .......... .......... .......... .......... .......... 13% 99.8M 2s
 13100K .......... .......... .......... .......... .......... 13%  102M 2s
 13150K .......... .......... .......... .......... .......... 13%  102M 2s
 13200K .......... .......... .......... .......... .......... 13% 98.9M 2s
 13250K .......... .......... .......... .......... .......... 13%  101M 2s
 13300K .......... .......... .......... .......... .......... 14% 92.6M 2s
 13350K .......... .......... .......... .......... .......... 14%  100M 2s
 13400K .......... .......... .......... .......... .......... 14% 75.8M 2s
 13450K .......... .......... .......... .......... .......... 14%  103M 2s
 13500K .......... .......... .......... .......... .......... 14%  102M 2s
 13550K .......... .......... .......... .......... .......... 14% 98.2M 2s
 13600K .......... .......... .......... .......... .......... 14%  102M 2s
 13650K .......... .......... .......... .......... .......... 14%  103M 2s
 13700K .......... .......... .......... .......... .......... 14%  103M 2s
 13750K .......... .......... .......... .......... .......... 14% 97.7M 2s
 13800K .......... .......... .......... .......... .......... 14% 78.9M 2s
 13850K .......... .......... .......... .......... .......... 14%  102M 2s
 13900K .......... .......... .......... .......... .......... 14%  105M 2s
 13950K .......... .......... .......... .......... .......... 14%  100M 2s
 14000K .......... .......... .......... .......... .......... 14% 99.8M 2s
 14050K .......... .......... .......... .......... .......... 14% 99.2M 2s
 14100K .......... .......... .......... .......... .......... 14%  101M 2s
 14150K .......... .......... .......... .......... .......... 14% 99.4M 2s
 14200K .......... .......... .......... .......... .......... 14% 76.3M 2s
 14250K .......... .......... .......... .......... .......... 15%  102M 2s
 14300K .......... .......... .......... .......... .......... 15%  104M 2s
 14350K .......... .......... .......... .......... .......... 15%  104M 2s
 14400K .......... .......... .......... .......... .......... 15% 99.9M 2s
 14450K .......... .......... .......... .......... .......... 15%  106M 2s
 14500K .......... .......... .......... .......... .......... 15%  103M 2s
 14550K .......... .......... .......... .......... .......... 15% 94.6M 2s
 14600K .......... .......... .......... .......... .......... 15% 74.0M 2s
 14650K .......... .......... .......... .......... .......... 15%  106M 2s
 14700K .......... .......... .......... .......... .......... 15% 99.5M 2s
 14750K .......... .......... .......... .......... .......... 15% 99.7M 2s
 14800K .......... .......... .......... .......... .......... 15%  103M 2s
 14850K .......... .......... .......... .......... .......... 15%  101M 2s
 14900K .......... .......... .......... .......... .......... 15%  102M 2s
 14950K .......... .......... .......... .......... .......... 15% 98.4M 2s
 15000K .......... .......... .......... .......... .......... 15% 76.5M 2s
 15050K .......... .......... .......... .......... .......... 15%  103M 2s
 15100K .......... .......... .......... .......... .......... 15%  101M 2s
 15150K .......... .......... .......... .......... .......... 15%  102M 2s
 15200K .......... .......... .......... .......... .......... 16%  103M 2s
 15250K .......... .......... .......... .......... .......... 16%  103M 2s
 15300K .......... .......... .......... .......... .......... 16%  106M 2s
 15350K .......... .......... .......... .......... .......... 16% 98.6M 2s
 15400K .......... .......... .......... .......... .......... 16% 74.8M 2s
 15450K .......... .......... .......... .......... .......... 16%  102M 2s
 15500K .......... .......... .......... .......... .......... 16%  105M 2s
 15550K .......... .......... .......... .......... .......... 16%  106M 2s
 15600K .......... .......... .......... .......... .......... 16% 99.9M 2s
 15650K .......... .......... .......... .......... .......... 16% 99.5M 2s
 15700K .......... .......... .......... .......... .......... 16%  105M 2s
 15750K .......... .......... .......... .......... .......... 16% 93.5M 2s
 15800K .......... .......... .......... .......... .......... 16% 72.6M 2s
 15850K .......... .......... .......... .......... .......... 16% 96.6M 1s
 15900K .......... .......... .......... .......... .......... 16% 97.1M 1s
 15950K .......... .......... .......... .......... .......... 16%  105M 1s
 16000K .......... .......... .......... .......... .......... 16% 99.6M 1s
 16050K .......... .......... .......... .......... .......... 16%  103M 1s
 16100K .......... .......... .......... .......... .......... 16%  101M 1s
 16150K .......... .......... .......... .......... .......... 17% 97.4M 1s
 16200K .......... .......... .......... .......... .......... 17% 76.4M 1s
 16250K .......... .......... .......... .......... .......... 17%  103M 1s
 16300K .......... .......... .......... .......... .......... 17%  106M 1s
 16350K .......... .......... .......... .......... .......... 17%  101M 1s
 16400K .......... .......... .......... .......... .......... 17%  100M 1s
 16450K .......... .......... .......... .......... .......... 17%  102M 1s
 16500K .......... .......... .......... .......... .......... 17%  106M 1s
 16550K .......... .......... .......... .......... .......... 17%  101M 1s
 16600K .......... .......... .......... .......... .......... 17% 75.7M 1s
 16650K .......... .......... .......... .......... .......... 17%  103M 1s
 16700K .......... .......... .......... .......... .......... 17%  103M 1s
 16750K .......... .......... .......... .......... .......... 17%  103M 1s
 16800K .......... .......... .......... .......... .......... 17%  102M 1s
 16850K .......... .......... .......... .......... .......... 17%  102M 1s
 16900K .......... .......... .......... .......... .......... 17%  102M 1s
 16950K .......... .......... .......... .......... .......... 17% 96.3M 1s
 17000K .......... .......... .......... .......... .......... 17% 76.9M 1s
 17050K .......... .......... .......... .......... .......... 17%  103M 1s
 17100K .......... .......... .......... .......... .......... 18%  101M 1s
 17150K .......... .......... .......... .......... .......... 18%  102M 1s
 17200K .......... .......... .......... .......... .......... 18%  103M 1s
 17250K .......... .......... .......... .......... .......... 18%  102M 1s
 17300K .......... .......... .......... .......... .......... 18%  103M 1s
 17350K .......... .......... .......... .......... .......... 18% 96.6M 1s
 17400K .......... .......... .......... .......... .......... 18% 77.4M 1s
 17450K .......... .......... .......... .......... .......... 18%  102M 1s
 17500K .......... .......... .......... .......... .......... 18%  102M 1s
 17550K .......... .......... .......... .......... .......... 18%  102M 1s
 17600K .......... .......... .......... .......... .......... 18%  100M 1s
 17650K .......... .......... .......... .......... .......... 18%  102M 1s
 17700K .......... .......... .......... .......... .......... 18% 99.6M 1s
 17750K .......... .......... .......... .......... .......... 18% 97.4M 1s
 17800K .......... .......... .......... .......... .......... 18% 78.3M 1s
 17850K .......... .......... .......... .......... .......... 18%  100M 1s
 17900K .......... .......... .......... .......... .......... 18%  101M 1s
 17950K .......... .......... .......... .......... .......... 18% 85.1M 1s
 18000K .......... .......... .......... .......... .......... 18%  102M 1s
 18050K .......... .......... .......... .......... .......... 19%  106M 1s
 18100K .......... .......... .......... .......... .......... 19% 93.8M 1s
 18150K .......... .......... .......... .......... .......... 19%  100M 1s
 18200K .......... .......... .......... .......... .......... 19% 77.9M 1s
 18250K .......... .......... .......... .......... .......... 19%  103M 1s
 18300K .......... .......... .......... .......... .......... 19%  106M 1s
 18350K .......... .......... .......... .......... .......... 19% 98.2M 1s
 18400K .......... .......... .......... .......... .......... 19% 99.8M 1s
 18450K .......... .......... .......... .......... .......... 19%  103M 1s
 18500K .......... .......... .......... .......... .......... 19%  101M 1s
 18550K .......... .......... .......... .......... .......... 19%  101M 1s
 18600K .......... .......... .......... .......... .......... 19% 75.5M 1s
 18650K .......... .......... .......... .......... .......... 19% 99.6M 1s
 18700K .......... .......... .......... .......... .......... 19%  102M 1s
 18750K .......... .......... .......... .......... .......... 19%  103M 1s
 18800K .......... .......... .......... .......... .......... 19% 99.0M 1s
 18850K .......... .......... .......... .......... .......... 19%  101M 1s
 18900K .......... .......... .......... .......... .......... 19%  104M 1s
 18950K .......... .......... .......... .......... .......... 19% 98.5M 1s
 19000K .......... .......... .......... .......... .......... 19% 76.3M 1s
 19050K .......... .......... .......... .......... .......... 20% 99.4M 1s
 19100K .......... .......... .......... .......... .......... 20%  104M 1s
 19150K .......... .......... .......... .......... .......... 20%  102M 1s
 19200K .......... .......... .......... .......... .......... 20% 99.2M 1s
 19250K .......... .......... .......... .......... .......... 20% 99.6M 1s
 19300K .......... .......... .......... .......... .......... 20%  102M 1s
 19350K .......... .......... .......... .......... .......... 20% 92.5M 1s
 19400K .......... .......... .......... .......... .......... 20% 75.1M 1s
 19450K .......... .......... .......... .......... .......... 20%  103M 1s
 19500K .......... .......... .......... .......... .......... 20%  102M 1s
 19550K .......... .......... .......... .......... .......... 20%  102M 1s
 19600K .......... .......... .......... .......... .......... 20% 97.8M 1s
 19650K .......... .......... .......... .......... .......... 20%  102M 1s
 19700K .......... .......... .......... .......... .......... 20% 99.8M 1s
 19750K .......... .......... .......... .......... .......... 20% 99.2M 1s
 19800K .......... .......... .......... .......... .......... 20% 77.8M 1s
 19850K .......... .......... .......... .......... .......... 20% 98.6M 1s
 19900K .......... .......... .......... .......... .......... 20% 99.4M 1s
 19950K .......... .......... .......... .......... .......... 20% 71.3M 1s
 20000K .......... .......... .......... .......... .......... 21% 79.5M 1s
 20050K .......... .......... .......... .......... .......... 21% 94.1M 1s
 20100K .......... .......... .......... .......... .......... 21% 97.2M 1s
 20150K .......... .......... .......... .......... .......... 21%  102M 1s
 20200K .......... .......... .......... .......... .......... 21% 75.5M 1s
 20250K .......... .......... .......... .......... .......... 21% 99.3M 1s
 20300K .......... .......... .......... .......... .......... 21%  102M 1s
 20350K .......... .......... .......... .......... .......... 21% 98.6M 1s
 20400K .......... .......... .......... .......... .......... 21%  102M 1s
 20450K .......... .......... .......... .......... .......... 21% 99.6M 1s
 20500K .......... .......... .......... .......... .......... 21% 93.8M 1s
 20550K .......... .......... .......... .......... .......... 21% 94.1M 1s
 20600K .......... .......... .......... .......... .......... 21% 71.9M 1s
 20650K .......... .......... .......... .......... .......... 21%  102M 1s
 20700K .......... .......... .......... .......... .......... 21%  102M 1s
 20750K .......... .......... .......... .......... .......... 21%  101M 1s
 20800K .......... .......... .......... .......... .......... 21%  102M 1s
 20850K .......... .......... .......... .......... .......... 21% 99.8M 1s
 20900K .......... .......... .......... .......... .......... 21% 99.1M 1s
 20950K .......... .......... .......... .......... .......... 22% 99.8M 1s
 21000K .......... .......... .......... .......... .......... 22% 76.2M 1s
 21050K .......... .......... .......... .......... .......... 22% 99.1M 1s
 21100K .......... .......... .......... .......... .......... 22% 98.0M 1s
 21150K .......... .......... .......... .......... .......... 22%  105M 1s
 21200K .......... .......... .......... .......... .......... 22%  102M 1s
 21250K .......... .......... .......... .......... .......... 22%  101M 1s
 21300K .......... .......... .......... .......... .......... 22% 99.9M 1s
 21350K .......... .......... .......... .......... .......... 22%  102M 1s
 21400K .......... .......... .......... .......... .......... 22% 77.4M 1s
 21450K .......... .......... .......... .......... .......... 22%  102M 1s
 21500K .......... .......... .......... .......... .......... 22%  102M 1s
 21550K .......... .......... .......... .......... .......... 22%  103M 1s
 21600K .......... .......... .......... .......... .......... 22% 99.7M 1s
 21650K .......... .......... .......... .......... .......... 22% 94.2M 1s
 21700K .......... .......... .......... .......... .......... 22% 96.5M 1s
 21750K .......... .......... .......... .......... .......... 22%  101M 1s
 21800K .......... .......... .......... .......... .......... 22% 74.9M 1s
 21850K .......... .......... .......... .......... .......... 22%  101M 1s
 21900K .......... .......... .......... .......... .......... 23%  103M 1s
 21950K .......... .......... .......... .......... .......... 23%  102M 1s
 22000K .......... .......... .......... .......... .......... 23%  106M 1s
 22050K .......... .......... .......... .......... .......... 23% 99.3M 1s
 22100K .......... .......... .......... .......... .......... 23% 99.2M 1s
 22150K .......... .......... .......... .......... .......... 23% 95.9M 1s
 22200K .......... .......... .......... .......... .......... 23% 76.1M 1s
 22250K .......... .......... .......... .......... .......... 23%  101M 1s
 22300K .......... .......... .......... .......... .......... 23%  102M 1s
 22350K .......... .......... .......... .......... .......... 23%  102M 1s
 22400K .......... .......... .......... .......... .......... 23%  103M 1s
 22450K .......... .......... .......... .......... .......... 23% 97.9M 1s
 22500K .......... .......... .......... .......... .......... 23%  105M 1s
 22550K .......... .......... .......... .......... .......... 23%  102M 1s
 22600K .......... .......... .......... .......... .......... 23% 78.4M 1s
 22650K .......... .......... .......... .......... .......... 23% 98.1M 1s
 22700K .......... .......... .......... .......... .......... 23%  105M 1s
 22750K .......... .......... .......... .......... .......... 23%  103M 1s
 22800K .......... .......... .......... .......... .......... 23%  103M 1s
 22850K .......... .......... .......... .......... .......... 24% 95.4M 1s
 22900K .......... .......... .......... .......... .......... 24% 99.2M 1s
 22950K .......... .......... .......... .......... .......... 24%  102M 1s
 23000K .......... .......... .......... .......... .......... 24% 76.0M 1s
 23050K .......... .......... .......... .......... .......... 24%  101M 1s
 23100K .......... .......... .......... .......... .......... 24%  103M 1s
 23150K .......... .......... .......... .......... .......... 24%  104M 1s
 23200K .......... .......... .......... .......... .......... 24% 99.3M 1s
 23250K .......... .......... .......... .......... .......... 24%  100M 1s
 23300K .......... .......... .......... .......... .......... 24% 99.2M 1s
 23350K .......... .......... .......... .......... .......... 24%  102M 1s
 23400K .......... .......... .......... .......... .......... 24% 75.9M 1s
 23450K .......... .......... .......... .......... .......... 24%  102M 1s
 23500K .......... .......... .......... .......... .......... 24%  106M 1s
 23550K .......... .......... .......... .......... .......... 24%  103M 1s
 23600K .......... .......... .......... .......... .......... 24%  105M 1s
 23650K .......... .......... .......... .......... .......... 24% 97.2M 1s
 23700K .......... .......... .......... .......... .......... 24% 99.7M 1s
 23750K .......... .......... .......... .......... .......... 24%  103M 1s
 23800K .......... .......... .......... .......... .......... 25% 78.3M 1s
 23850K .......... .......... .......... .......... .......... 25%  103M 1s
 23900K .......... .......... .......... .......... .......... 25%  104M 1s
 23950K .......... .......... .......... .......... .......... 25% 99.9M 1s
 24000K .......... .......... .......... .......... .......... 25%  103M 1s
 24050K .......... .......... .......... .......... .......... 25% 99.1M 1s
 24100K .......... .......... .......... .......... .......... 25%  102M 1s
 24150K .......... .......... .......... .......... .......... 25% 98.6M 1s
 24200K .......... .......... .......... .......... .......... 25% 77.9M 1s
 24250K .......... .......... .......... .......... .......... 25%  102M 1s
 24300K .......... .......... .......... .......... .......... 25%  102M 1s
 24350K .......... .......... .......... .......... .......... 25%  106M 1s
 24400K .......... .......... .......... .......... .......... 25% 98.7M 1s
 24450K .......... .......... .......... .......... .......... 25% 98.2M 1s
 24500K .......... .......... .......... .......... .......... 25%  102M 1s
 24550K .......... .......... .......... .......... .......... 25%  102M 1s
 24600K .......... .......... .......... .......... .......... 25% 78.2M 1s
 24650K .......... .......... .......... .......... .......... 25%  101M 1s
 24700K .......... .......... .......... .......... .......... 25%  101M 1s
 24750K .......... .......... .......... .......... .......... 26% 93.0M 1s
 24800K .......... .......... .......... .......... .......... 26%  100M 1s
 24850K .......... .......... .......... .......... .......... 26%  106M 1s
 24900K .......... .......... .......... .......... .......... 26%  102M 1s
 24950K .......... .......... .......... .......... .......... 26%  104M 1s
 25000K .......... .......... .......... .......... .......... 26% 76.2M 1s
 25050K .......... .......... .......... .......... .......... 26%  102M 1s
 25100K .......... .......... .......... .......... .......... 26% 98.1M 1s
 25150K .......... .......... .......... .......... .......... 26%  104M 1s
 25200K .......... .......... .......... .......... .......... 26%  105M 1s
 25250K .......... .......... .......... .......... .......... 26% 93.7M 1s
 25300K .......... .......... .......... .......... .......... 26% 97.5M 1s
 25350K .......... .......... .......... .......... .......... 26% 93.1M 1s
 25400K .......... .......... .......... .......... .......... 26% 77.3M 1s
 25450K .......... .......... .......... .......... .......... 26% 99.3M 1s
 25500K .......... .......... .......... .......... .......... 26%  102M 1s
 25550K .......... .......... .......... .......... .......... 26%  103M 1s
 25600K .......... .......... .......... .......... .......... 26% 97.5M 1s
 25650K .......... .......... .......... .......... .......... 26% 98.0M 1s
 25700K .......... .......... .......... .......... .......... 27%  100M 1s
 25750K .......... .......... .......... .......... .......... 27%  104M 1s
 25800K .......... .......... .......... .......... .......... 27% 78.3M 1s
 25850K .......... .......... .......... .......... .......... 27% 99.8M 1s
 25900K .......... .......... .......... .......... .......... 27% 98.2M 1s
 25950K .......... .......... .......... .......... .......... 27%  102M 1s
 26000K .......... .......... .......... .......... .......... 27%  101M 1s
 26050K .......... .......... .......... .......... .......... 27% 99.7M 1s
 26100K .......... .......... .......... .......... .......... 27%  106M 1s
 26150K .......... .......... .......... .......... .......... 27%  101M 1s
 26200K .......... .......... .......... .......... .......... 27% 75.4M 1s
 26250K .......... .......... .......... .......... .......... 27%  103M 1s
 26300K .......... .......... .......... .......... .......... 27%  106M 1s
 26350K .......... .......... .......... .......... .......... 27% 98.8M 1s
 26400K .......... .......... .......... .......... .......... 27% 98.3M 1s
 26450K .......... .......... .......... .......... .......... 27% 96.7M 1s
 26500K .......... .......... .......... .......... .......... 27% 95.0M 1s
 26550K .......... .......... .......... .......... .......... 27% 93.3M 1s
 26600K .......... .......... .......... .......... .......... 27% 75.0M 1s
 26650K .......... .......... .......... .......... .......... 28%  103M 1s
 26700K .......... .......... .......... .......... .......... 28%  101M 1s
 26750K .......... .......... .......... .......... .......... 28%  103M 1s
 26800K .......... .......... .......... .......... .......... 28%  100M 1s
 26850K .......... .......... .......... .......... .......... 28% 99.9M 1s
 26900K .......... .......... .......... .......... .......... 28%  102M 1s
 26950K .......... .......... .......... .......... .......... 28% 98.6M 1s
 27000K .......... .......... .......... .......... .......... 28% 75.4M 1s
 27050K .......... .......... .......... .......... .......... 28%  106M 1s
 27100K .......... .......... .......... .......... .......... 28%  102M 1s
 27150K .......... .......... .......... .......... .......... 28%  102M 1s
 27200K .......... .......... .......... .......... .......... 28% 95.2M 1s
 27250K .......... .......... .......... .......... .......... 28%  102M 1s
 27300K .......... .......... .......... .......... .......... 28%  103M 1s
 27350K .......... .......... .......... .......... .......... 28%  105M 1s
 27400K .......... .......... .......... .......... .......... 28% 80.1M 1s
 27450K .......... .......... .......... .......... .......... 28%  101M 1s
 27500K .......... .......... .......... .......... .......... 28%  102M 1s
 27550K .......... .......... .......... .......... .......... 28% 99.2M 1s
 27600K .......... .......... .......... .......... .......... 29% 97.3M 1s
 27650K .......... .......... .......... .......... .......... 29% 97.2M 1s
 27700K .......... .......... .......... .......... .......... 29% 99.0M 1s
 27750K .......... .......... .......... .......... .......... 29%  103M 1s
 27800K .......... .......... .......... .......... .......... 29% 76.3M 1s
 27850K .......... .......... .......... .......... .......... 29%  103M 1s
 27900K .......... .......... .......... .......... .......... 29%  106M 1s
 27950K .......... .......... .......... .......... .......... 29%  105M 1s
 28000K .......... .......... .......... .......... .......... 29% 99.9M 1s
 28050K .......... .......... .......... .......... .......... 29%  102M 1s
 28100K .......... .......... .......... .......... .......... 29%  106M 1s
 28150K .......... .......... .......... .......... .......... 29%  104M 1s
 28200K .......... .......... .......... .......... .......... 29% 76.6M 1s
 28250K .......... .......... .......... .......... .......... 29%  100M 1s
 28300K .......... .......... .......... .......... .......... 29%  106M 1s
 28350K .......... .......... .......... .......... .......... 29% 99.4M 1s
 28400K .......... .......... .......... .......... .......... 29%  100M 1s
 28450K .......... .......... .......... .......... .......... 29%  101M 1s
 28500K .......... .......... .......... .......... .......... 29%  104M 1s
 28550K .......... .......... .......... .......... .......... 30%  106M 1s
 28600K .......... .......... .......... .......... .......... 30% 77.9M 1s
 28650K .......... .......... .......... .......... .......... 30%  105M 1s
 28700K .......... .......... .......... .......... .......... 30% 97.9M 1s
 28750K .......... .......... .......... .......... .......... 30%  102M 1s
 28800K .......... .......... .......... .......... .......... 30% 99.6M 1s
 28850K .......... .......... .......... .......... .......... 30% 97.7M 1s
 28900K .......... .......... .......... .......... .......... 30% 96.2M 1s
 28950K .......... .......... .......... .......... .......... 30% 95.9M 1s
 29000K .......... .......... .......... .......... .......... 30% 73.6M 1s
 29050K .......... .......... .......... .......... .......... 30% 94.2M 1s
 29100K .......... .......... .......... .......... .......... 30% 97.0M 1s
 29150K .......... .......... .......... .......... .......... 30% 96.9M 1s
 29200K .......... .......... .......... .......... .......... 30% 97.7M 1s
 29250K .......... .......... .......... .......... .......... 30%  103M 1s
 29300K .......... .......... .......... .......... .......... 30%  102M 1s
 29350K .......... .......... .......... .......... .......... 30%  102M 1s
 29400K .......... .......... .......... .......... .......... 30% 78.0M 1s
 29450K .......... .......... .......... .......... .......... 30% 98.5M 1s
 29500K .......... .......... .......... .......... .......... 31%  102M 1s
 29550K .......... .......... .......... .......... .......... 31%  102M 1s
 29600K .......... .......... .......... .......... .......... 31%  101M 1s
 29650K .......... .......... .......... .......... .......... 31% 99.2M 1s
 29700K .......... .......... .......... .......... .......... 31%  101M 1s
 29750K .......... .......... .......... .......... .......... 31%  102M 1s
 29800K .......... .......... .......... .......... .......... 31% 78.0M 1s
 29850K .......... .......... .......... .......... .......... 31%  102M 1s
 29900K .......... .......... .......... .......... .......... 31%  102M 1s
 29950K .......... .......... .......... .......... .......... 31%  101M 1s
 30000K .......... .......... .......... .......... .......... 31% 94.6M 1s
 30050K .......... .......... .......... .......... .......... 31% 97.8M 1s
 30100K .......... .......... .......... .......... .......... 31% 97.3M 1s
 30150K .......... .......... .......... .......... .......... 31%  101M 1s
 30200K .......... .......... .......... .......... .......... 31% 72.3M 1s
 30250K .......... .......... .......... .......... .......... 31% 97.5M 1s
 30300K .......... .......... .......... .......... .......... 31% 99.5M 1s
 30350K .......... .......... .......... .......... .......... 31% 98.4M 1s
 30400K .......... .......... .......... .......... .......... 31% 92.8M 1s
 30450K .......... .......... .......... .......... .......... 32% 93.5M 1s
 30500K .......... .......... .......... .......... .......... 32% 96.0M 1s
 30550K .......... .......... .......... .......... .......... 32% 91.3M 1s
 30600K .......... .......... .......... .......... .......... 32% 71.8M 1s
 30650K .......... .......... .......... .......... .......... 32% 91.3M 1s
 30700K .......... .......... .......... .......... .......... 32% 95.4M 1s
 30750K .......... .......... .......... .......... .......... 32% 96.8M 1s
 30800K .......... .......... .......... .......... .......... 32%  105M 1s
 30850K .......... .......... .......... .......... .......... 32% 92.5M 1s
 30900K .......... .......... .......... .......... .......... 32%  102M 1s
 30950K .......... .......... .......... .......... .......... 32% 97.4M 1s
 31000K .......... .......... .......... .......... .......... 32% 74.2M 1s
 31050K .......... .......... .......... .......... .......... 32%  104M 1s
 31100K .......... .......... .......... .......... .......... 32%  101M 1s
 31150K .......... .......... .......... .......... .......... 32% 93.2M 1s
 31200K .......... .......... .......... .......... .......... 32% 96.3M 1s
 31250K .......... .......... .......... .......... .......... 32% 96.5M 1s
 31300K .......... .......... .......... .......... .......... 32%  101M 1s
 31350K .......... .......... .......... .......... .......... 32% 99.8M 1s
 31400K .......... .......... .......... .......... .......... 33% 76.2M 1s
 31450K .......... .......... .......... .......... .......... 33%  101M 1s
 31500K .......... .......... .......... .......... .......... 33% 91.4M 1s
 31550K .......... .......... .......... .......... .......... 33%  101M 1s
 31600K .......... .......... .......... .......... .......... 33% 79.7M 1s
 31650K .......... .......... .......... .......... .......... 33% 98.1M 1s
 31700K .......... .......... .......... .......... .......... 33% 98.3M 1s
 31750K .......... .......... .......... .......... .......... 33%  100M 1s
 31800K .......... .......... .......... .......... .......... 33% 74.5M 1s
 31850K .......... .......... .......... .......... .......... 33%  100M 1s
 31900K .......... .......... .......... .......... .......... 33% 82.9M 1s
 31950K .......... .......... .......... .......... .......... 33%  102M 1s
 32000K .......... .......... .......... .......... .......... 33%  102M 1s
 32050K .......... .......... .......... .......... .......... 33%  102M 1s
 32100K .......... .......... .......... .......... .......... 33%  102M 1s
 32150K .......... .......... .......... .......... .......... 33%  101M 1s
 32200K .......... .......... .......... .......... .......... 33% 78.4M 1s
 32250K .......... .......... .......... .......... .......... 33%  101M 1s
 32300K .......... .......... .......... .......... .......... 33% 93.3M 1s
 32350K .......... .......... .......... .......... .......... 34% 95.8M 1s
 32400K .......... .......... .......... .......... .......... 34% 97.9M 1s
 32450K .......... .......... .......... .......... .......... 34%  106M 1s
 32500K .......... .......... .......... .......... .......... 34%  102M 1s
 32550K .......... .......... .......... .......... .......... 34%  101M 1s
 32600K .......... .......... .......... .......... .......... 34% 77.3M 1s
 32650K .......... .......... .......... .......... .......... 34% 97.6M 1s
 32700K .......... .......... .......... .......... .......... 34%  101M 1s
 32750K .......... .......... .......... .......... .......... 34%  105M 1s
 32800K .......... .......... .......... .......... .......... 34%  103M 1s
 32850K .......... .......... .......... .......... .......... 34%  101M 1s
 32900K .......... .......... .......... .......... .......... 34%  102M 1s
 32950K .......... .......... .......... .......... .......... 34%  102M 1s
 33000K .......... .......... .......... .......... .......... 34% 77.9M 1s
 33050K .......... .......... .......... .......... .......... 34%  101M 1s
 33100K .......... .......... .......... .......... .......... 34% 99.6M 1s
 33150K .......... .......... .......... .......... .......... 34%  103M 1s
 33200K .......... .......... .......... .......... .......... 34%  106M 1s
 33250K .......... .......... .......... .......... .......... 34%  106M 1s
 33300K .......... .......... .......... .......... .......... 35%  100M 1s
 33350K .......... .......... .......... .......... .......... 35% 98.1M 1s
 33400K .......... .......... .......... .......... .......... 35% 76.2M 1s
 33450K .......... .......... .......... .......... .......... 35%  103M 1s
 33500K .......... .......... .......... .......... .......... 35% 97.0M 1s
 33550K .......... .......... .......... .......... .......... 35% 99.4M 1s
 33600K .......... .......... .......... .......... .......... 35%  100M 1s
 33650K .......... .......... .......... .......... .......... 35%  101M 1s
 33700K .......... .......... .......... .......... .......... 35%  102M 1s
 33750K .......... .......... .......... .......... .......... 35%  104M 1s
 33800K .......... .......... .......... .......... .......... 35% 78.4M 1s
 33850K .......... .......... .......... .......... .......... 35% 95.7M 1s
 33900K .......... .......... .......... .......... .......... 35% 98.0M 1s
 33950K .......... .......... .......... .......... .......... 35%  102M 1s
 34000K .......... .......... .......... .......... .......... 35%  102M 1s
 34050K .......... .......... .......... .......... .......... 35% 98.9M 1s
 34100K .......... .......... .......... .......... .......... 35% 97.8M 1s
 34150K .......... .......... .......... .......... .......... 35%  103M 1s
 34200K .......... .......... .......... .......... .......... 35% 75.8M 1s
 34250K .......... .......... .......... .......... .......... 36% 97.8M 1s
 34300K .......... .......... .......... .......... .......... 36%  103M 1s
 34350K .......... .......... .......... .......... .......... 36%  104M 1s
 34400K .......... .......... .......... .......... .......... 36%  106M 1s
 34450K .......... .......... .......... .......... .......... 36%  100M 1s
 34500K .......... .......... .......... .......... .......... 36% 99.4M 1s
 34550K .......... .......... .......... .......... .......... 36%  103M 1s
 34600K .......... .......... .......... .......... .......... 36% 75.3M 1s
 34650K .......... .......... .......... .......... .......... 36% 98.6M 1s
 34700K .......... .......... .......... .......... .......... 36%  106M 1s
 34750K .......... .......... .......... .......... .......... 36%  100M 1s
 34800K .......... .......... .......... .......... .......... 36% 99.2M 1s
 34850K .......... .......... .......... .......... .......... 36%  101M 1s
 34900K .......... .......... .......... .......... .......... 36%  103M 1s
 34950K .......... .......... .......... .......... .......... 36% 99.7M 1s
 35000K .......... .......... .......... .......... .......... 36% 78.4M 1s
 35050K .......... .......... .......... .......... .......... 36%  100M 1s
 35100K .......... .......... .......... .......... .......... 36% 97.8M 1s
 35150K .......... .......... .......... .......... .......... 36%  106M 1s
 35200K .......... .......... .......... .......... .......... 37%  103M 1s
 35250K .......... .......... .......... .......... .......... 37%  102M 1s
 35300K .......... .......... .......... .......... .......... 37%  102M 1s
 35350K .......... .......... .......... .......... .......... 37%  102M 1s
 35400K .......... .......... .......... .......... .......... 37% 74.5M 1s
 35450K .......... .......... .......... .......... .......... 37% 97.1M 1s
 35500K .......... .......... .......... .......... .......... 37%  102M 1s
 35550K .......... .......... .......... .......... .......... 37%  102M 1s
 35600K .......... .......... .......... .......... .......... 37% 97.8M 1s
 35650K .......... .......... .......... .......... .......... 37%  100M 1s
 35700K .......... .......... .......... .......... .......... 37%  103M 1s
 35750K .......... .......... .......... .......... .......... 37% 99.3M 1s
 35800K .......... .......... .......... .......... .......... 37% 78.2M 1s
 35850K .......... .......... .......... .......... .......... 37% 86.8M 1s
 35900K .......... .......... .......... .......... .......... 37% 99.3M 1s
 35950K .......... .......... .......... .......... .......... 37%  102M 1s
 36000K .......... .......... .......... .......... .......... 37%  101M 1s
 36050K .......... .......... .......... .......... .......... 37%  103M 1s
 36100K .......... .......... .......... .......... .......... 37% 99.1M 1s
 36150K .......... .......... .......... .......... .......... 38%  101M 1s
 36200K .......... .......... .......... .......... .......... 38% 77.9M 1s
 36250K .......... .......... .......... .......... .......... 38% 98.0M 1s
 36300K .......... .......... .......... .......... .......... 38%  102M 1s
 36350K .......... .......... .......... .......... .......... 38%  103M 1s
 36400K .......... .......... .......... .......... .......... 38%  103M 1s
 36450K .......... .......... .......... .......... .......... 38%  102M 1s
 36500K .......... .......... .......... .......... .......... 38% 99.0M 1s
 36550K .......... .......... .......... .......... .......... 38%  102M 1s
 36600K .......... .......... .......... .......... .......... 38% 76.0M 1s
 36650K .......... .......... .......... .......... .......... 38%  102M 1s
 36700K .......... .......... .......... .......... .......... 38%  100M 1s
 36750K .......... .......... .......... .......... .......... 38% 99.6M 1s
 36800K .......... .......... .......... .......... .......... 38%  103M 1s
 36850K .......... .......... .......... .......... .......... 38%  103M 1s
 36900K .......... .......... .......... .......... .......... 38%  101M 1s
 36950K .......... .......... .......... .......... .......... 38%  103M 1s
 37000K .......... .......... .......... .......... .......... 38% 78.4M 1s
 37050K .......... .......... .......... .......... .......... 38% 93.8M 1s
 37100K .......... .......... .......... .......... .......... 39%  102M 1s
 37150K .......... .......... .......... .......... .......... 39%  101M 1s
 37200K .......... .......... .......... .......... .......... 39%  105M 1s
 37250K .......... .......... .......... .......... .......... 39%  103M 1s
 37300K .......... .......... .......... .......... .......... 39% 99.4M 1s
 37350K .......... .......... .......... .......... .......... 39%  106M 1s
 37400K .......... .......... .......... .......... .......... 39% 77.2M 1s
 37450K .......... .......... .......... .......... .......... 39% 98.1M 1s
 37500K .......... .......... .......... .......... .......... 39%  102M 1s
 37550K .......... .......... .......... .......... .......... 39% 99.7M 1s
 37600K .......... .......... .......... .......... .......... 39%  105M 1s
 37650K .......... .......... .......... .......... .......... 39%  104M 1s
 37700K .......... .......... .......... .......... .......... 39% 99.1M 1s
 37750K .......... .......... .......... .......... .......... 39% 99.6M 1s
 37800K .......... .......... .......... .......... .......... 39% 77.9M 1s
 37850K .......... .......... .......... .......... .......... 39% 97.6M 1s
 37900K .......... .......... .......... .......... .......... 39%  101M 1s
 37950K .......... .......... .......... .......... .......... 39%  106M 1s
 38000K .......... .......... .......... .......... .......... 39%  106M 1s
 38050K .......... .......... .......... .......... .......... 39% 99.3M 1s
 38100K .......... .......... .......... .......... .......... 40%  102M 1s
 38150K .......... .......... .......... .......... .......... 40%  102M 1s
 38200K .......... .......... .......... .......... .......... 40% 76.4M 1s
 38250K .......... .......... .......... .......... .......... 40% 89.3M 1s
 38300K .......... .......... .......... .......... .......... 40% 99.7M 1s
 38350K .......... .......... .......... .......... .......... 40%  100M 1s
 38400K .......... .......... .......... .......... .......... 40% 93.1M 1s
 38450K .......... .......... .......... .......... .......... 40% 95.1M 1s
 38500K .......... .......... .......... .......... .......... 40%  100M 1s
 38550K .......... .......... .......... .......... .......... 40%  102M 1s
 38600K .......... .......... .......... .......... .......... 40% 80.4M 1s
 38650K .......... .......... .......... .......... .......... 40% 96.3M 1s
 38700K .......... .......... .......... .......... .......... 40% 99.4M 1s
 38750K .......... .......... .......... .......... .......... 40%  103M 1s
 38800K .......... .......... .......... .......... .......... 40%  103M 1s
 38850K .......... .......... .......... .......... .......... 40% 99.5M 1s
 38900K .......... .......... .......... .......... .......... 40%  104M 1s
 38950K .......... .......... .......... .......... .......... 40%  102M 1s
 39000K .......... .......... .......... .......... .......... 40% 75.6M 1s
 39050K .......... .......... .......... .......... .......... 41%  104M 1s
 39100K .......... .......... .......... .......... .......... 41%  103M 1s
 39150K .......... .......... .......... .......... .......... 41%  100M 1s
 39200K .......... .......... .......... .......... .......... 41% 99.1M 1s
 39250K .......... .......... .......... .......... .......... 41% 99.5M 1s
 39300K .......... .......... .......... .......... .......... 41%  101M 1s
 39350K .......... .......... .......... .......... .......... 41%  106M 1s
 39400K .......... .......... .......... .......... .......... 41% 75.3M 1s
 39450K .......... .......... .......... .......... .......... 41%  101M 1s
 39500K .......... .......... .......... .......... .......... 41%  105M 1s
 39550K .......... .......... .......... .......... .......... 41%  105M 1s
 39600K .......... .......... .......... .......... .......... 41% 98.7M 1s
 39650K .......... .......... .......... .......... .......... 41%  104M 1s
 39700K .......... .......... .......... .......... .......... 41% 99.5M 1s
 39750K .......... .......... .......... .......... .......... 41%  102M 1s
 39800K .......... .......... .......... .......... .......... 41% 77.9M 1s
 39850K .......... .......... .......... .......... .......... 41% 96.4M 1s
 39900K .......... .......... .......... .......... .......... 41% 97.7M 1s
 39950K .......... .......... .......... .......... .......... 41% 99.7M 1s
 40000K .......... .......... .......... .......... .......... 42%  103M 1s
 40050K .......... .......... .......... .......... .......... 42%  102M 1s
 40100K .......... .......... .......... .......... .......... 42%  106M 1s
 40150K .......... .......... .......... .......... .......... 42%  105M 1s
 40200K .......... .......... .......... .......... .......... 42% 78.0M 1s
 40250K .......... .......... .......... .......... .......... 42% 97.2M 1s
 40300K .......... .......... .......... .......... .......... 42% 92.8M 1s
 40350K .......... .......... .......... .......... .......... 42%  105M 1s
 40400K .......... .......... .......... .......... .......... 42% 90.8M 1s
 40450K .......... .......... .......... .......... .......... 42% 98.5M 1s
 40500K .......... .......... .......... .......... .......... 42%  102M 1s
 40550K .......... .......... .......... .......... .......... 42% 99.0M 1s
 40600K .......... .......... .......... .......... .......... 42% 62.2M 1s
 40650K .......... .......... .......... .......... .......... 42% 96.0M 1s
 40700K .......... .......... .......... .......... .......... 42%  105M 1s
 40750K .......... .......... .......... .......... .......... 42%  105M 1s
 40800K .......... .......... .......... .......... .......... 42% 99.1M 1s
 40850K .......... .......... .......... .......... .......... 42% 98.8M 1s
 40900K .......... .......... .......... .......... .......... 42% 98.0M 1s
 40950K .......... .......... .......... .......... .......... 43% 98.5M 1s
 41000K .......... .......... .......... .......... .......... 43% 76.4M 1s
 41050K .......... .......... .......... .......... .......... 43%  106M 1s
 41100K .......... .......... .......... .......... .......... 43%  102M 1s
 41150K .......... .......... .......... .......... .......... 43% 95.2M 1s
 41200K .......... .......... .......... .......... .......... 43%  102M 1s
 41250K .......... .......... .......... .......... .......... 43%  103M 1s
 41300K .......... .......... .......... .......... .......... 43%  102M 1s
 41350K .......... .......... .......... .......... .......... 43%  101M 1s
 41400K .......... .......... .......... .......... .......... 43% 74.2M 1s
 41450K .......... .......... .......... .......... .......... 43%  105M 1s
 41500K .......... .......... .......... .......... .......... 43%  103M 1s
 41550K .......... .......... .......... .......... .......... 43% 98.5M 1s
 41600K .......... .......... .......... .......... .......... 43%  105M 1s
 41650K .......... .......... .......... .......... .......... 43%  105M 1s
 41700K .......... .......... .......... .......... .......... 43%  102M 1s
 41750K .......... .......... .......... .......... .......... 43% 99.7M 1s
 41800K .......... .......... .......... .......... .......... 43% 72.4M 1s
 41850K .......... .......... .......... .......... .......... 43% 98.8M 1s
 41900K .......... .......... .......... .......... .......... 44%  101M 1s
 41950K .......... .......... .......... .......... .......... 44% 99.1M 1s
 42000K .......... .......... .......... .......... .......... 44% 98.7M 1s
 42050K .......... .......... .......... .......... .......... 44%  105M 1s
 42100K .......... .......... .......... .......... .......... 44%  106M 1s
 42150K .......... .......... .......... .......... .......... 44% 99.4M 1s
 42200K .......... .......... .......... .......... .......... 44% 77.8M 1s
 42250K .......... .......... .......... .......... .......... 44%  100M 1s
 42300K .......... .......... .......... .......... .......... 44%  102M 1s
 42350K .......... .......... .......... .......... .......... 44%  102M 1s
 42400K .......... .......... .......... .......... .......... 44% 98.8M 1s
 42450K .......... .......... .......... .......... .......... 44%  103M 1s
 42500K .......... .......... .......... .......... .......... 44%  104M 1s
 42550K .......... .......... .......... .......... .......... 44%  102M 1s
 42600K .......... .......... .......... .......... .......... 44% 76.4M 1s
 42650K .......... .......... .......... .......... .......... 44%  101M 1s
 42700K .......... .......... .......... .......... .......... 44%  105M 1s
 42750K .......... .......... .......... .......... .......... 44%  102M 1s
 42800K .......... .......... .......... .......... .......... 44% 98.9M 1s
 42850K .......... .......... .......... .......... .......... 45% 99.4M 1s
 42900K .......... .......... .......... .......... .......... 45%  101M 1s
 42950K .......... .......... .......... .......... .......... 45%  101M 1s
 43000K .......... .......... .......... .......... .......... 45% 75.6M 1s
 43050K .......... .......... .......... .......... .......... 45% 99.5M 1s
 43100K .......... .......... .......... .......... .......... 45%  102M 1s
 43150K .......... .......... .......... .......... .......... 45% 98.6M 1s
 43200K .......... .......... .......... .......... .......... 45%  100M 1s
 43250K .......... .......... .......... .......... .......... 45%  106M 1s
 43300K .......... .......... .......... .......... .......... 45%  102M 1s
 43350K .......... .......... .......... .......... .......... 45% 99.1M 1s
 43400K .......... .......... .......... .......... .......... 45% 75.8M 1s
 43450K .......... .......... .......... .......... .......... 45%  102M 1s
 43500K .......... .......... .......... .......... .......... 45%  102M 1s
 43550K .......... .......... .......... .......... .......... 45% 99.2M 1s
 43600K .......... .......... .......... .......... .......... 45%  102M 1s
 43650K .......... .......... .......... .......... .......... 45% 99.6M 1s
 43700K .......... .......... .......... .......... .......... 45% 99.8M 1s
 43750K .......... .......... .......... .......... .......... 45% 99.2M 1s
 43800K .......... .......... .......... .......... .......... 46% 74.4M 1s
 43850K .......... .......... .......... .......... .......... 46%  102M 1s
 43900K .......... .......... .......... .......... .......... 46% 99.0M 1s
 43950K .......... .......... .......... .......... .......... 46% 98.0M 1s
 44000K .......... .......... .......... .......... .......... 46%  102M 1s
 44050K .......... .......... .......... .......... .......... 46%  103M 1s
 44100K .......... .......... .......... .......... .......... 46%  101M 1s
 44150K .......... .......... .......... .......... .......... 46%  105M 1s
 44200K .......... .......... .......... .......... .......... 46% 75.3M 1s
 44250K .......... .......... .......... .......... .......... 46% 95.9M 1s
 44300K .......... .......... .......... .......... .......... 46% 97.8M 1s
 44350K .......... .......... .......... .......... .......... 46%  102M 1s
 44400K .......... .......... .......... .......... .......... 46%  105M 1s
 44450K .......... .......... .......... .......... .......... 46% 98.4M 1s
 44500K .......... .......... .......... .......... .......... 46%  106M 1s
 44550K .......... .......... .......... .......... .......... 46% 98.5M 1s
 44600K .......... .......... .......... .......... .......... 46% 75.1M 1s
 44650K .......... .......... .......... .......... .......... 46% 99.4M 1s
 44700K .......... .......... .......... .......... .......... 46%  104M 1s
 44750K .......... .......... .......... .......... .......... 47%  103M 1s
 44800K .......... .......... .......... .......... .......... 47% 99.4M 1s
 44850K .......... .......... .......... .......... .......... 47%  106M 1s
 44900K .......... .......... .......... .......... .......... 47%  102M 1s
 44950K .......... .......... .......... .......... .......... 47% 98.3M 1s
 45000K .......... .......... .......... .......... .......... 47% 75.4M 1s
 45050K .......... .......... .......... .......... .......... 47% 99.0M 1s
 45100K .......... .......... .......... .......... .......... 47%  102M 1s
 45150K .......... .......... .......... .......... .......... 47%  105M 1s
 45200K .......... .......... .......... .......... .......... 47%  101M 1s
 45250K .......... .......... .......... .......... .......... 47%  102M 1s
 45300K .......... .......... .......... .......... .......... 47% 98.9M 1s
 45350K .......... .......... .......... .......... .......... 47% 98.9M 1s
 45400K .......... .......... .......... .......... .......... 47% 71.8M 1s
 45450K .......... .......... .......... .......... .......... 47%  100M 1s
 45500K .......... .......... .......... .......... .......... 47%  102M 1s
 45550K .......... .......... .......... .......... .......... 47% 99.2M 1s
 45600K .......... .......... .......... .......... .......... 47%  105M 1s
 45650K .......... .......... .......... .......... .......... 47%  106M 1s
 45700K .......... .......... .......... .......... .......... 48% 98.4M 1s
 45750K .......... .......... .......... .......... .......... 48%  100M 1s
 45800K .......... .......... .......... .......... .......... 48% 77.5M 1s
 45850K .......... .......... .......... .......... .......... 48%  105M 1s
 45900K .......... .......... .......... .......... .......... 48%  102M 1s
 45950K .......... .......... .......... .......... .......... 48% 98.2M 1s
 46000K .......... .......... .......... .......... .......... 48%  106M 1s
 46050K .......... .......... .......... .......... .......... 48%  100M 1s
 46100K .......... .......... .......... .......... .......... 48%  102M 1s
 46150K .......... .......... .......... .......... .......... 48% 98.4M 1s
 46200K .......... .......... .......... .......... .......... 48% 75.0M 1s
 46250K .......... .......... .......... .......... .......... 48%  102M 1s
 46300K .......... .......... .......... .......... .......... 48%  105M 1s
 46350K .......... .......... .......... .......... .......... 48%  100M 1s
 46400K .......... .......... .......... .......... .......... 48% 98.3M 1s
 46450K .......... .......... .......... .......... .......... 48% 98.1M 1s
 46500K .......... .......... .......... .......... .......... 48%  101M 1s
 46550K .......... .......... .......... .......... .......... 48% 94.3M 1s
 46600K .......... .......... .......... .......... .......... 48% 71.8M 1s
 46650K .......... .......... .......... .......... .......... 49%  101M 1s
 46700K .......... .......... .......... .......... .......... 49% 94.8M 1s
 46750K .......... .......... .......... .......... .......... 49% 94.9M 1s
 46800K .......... .......... .......... .......... .......... 49% 98.9M 1s
 46850K .......... .......... .......... .......... .......... 49%  103M 1s
 46900K .......... .......... .......... .......... .......... 49%  106M 1s
 46950K .......... .......... .......... .......... .......... 49% 98.8M 1s
 47000K .......... .......... .......... .......... .......... 49% 77.8M 1s
 47050K .......... .......... .......... .......... .......... 49%  102M 1s
 47100K .......... .......... .......... .......... .......... 49%  102M 1s
 47150K .......... .......... .......... .......... .......... 49%  103M 1s
 47200K .......... .......... .......... .......... .......... 49%  101M 1s
 47250K .......... .......... .......... .......... .......... 49%  103M 1s
 47300K .......... .......... .......... .......... .......... 49%  102M 1s
 47350K .......... .......... .......... .......... .......... 49% 97.6M 1s
 47400K .......... .......... .......... .......... .......... 49% 78.0M 1s
 47450K .......... .......... .......... .......... .......... 49%  101M 1s
 47500K .......... .......... .......... .......... .......... 49%  103M 1s
 47550K .......... .......... .......... .......... .......... 49%  103M 1s
 47600K .......... .......... .......... .......... .......... 50%  103M 1s
 47650K .......... .......... .......... .......... .......... 50%  102M 1s
 47700K .......... .......... .......... .......... .......... 50%  101M 1s
 47750K .......... .......... .......... .......... .......... 50% 96.9M 1s
 47800K .......... .......... .......... .......... .......... 50% 77.9M 1s
 47850K .......... .......... .......... .......... .......... 50%  103M 1s
 47900K .......... .......... .......... .......... .......... 50%  100M 1s
 47950K .......... .......... .......... .......... .......... 50%  100M 1s
 48000K .......... .......... .......... .......... .......... 50%  102M 1s
 48050K .......... .......... .......... .......... .......... 50%  101M 1s
 48100K .......... .......... .......... .......... .......... 50%  102M 1s
 48150K .......... .......... .......... .......... .......... 50% 97.8M 1s
 48200K .......... .......... .......... .......... .......... 50% 76.9M 1s
 48250K .......... .......... .......... .......... .......... 50%  106M 1s
 48300K .......... .......... .......... .......... .......... 50%  103M 1s
 48350K .......... .......... .......... .......... .......... 50% 98.7M 1s
 48400K .......... .......... .......... .......... .......... 50%  105M 1s
 48450K .......... .......... .......... .......... .......... 50%  106M 1s
 48500K .......... .......... .......... .......... .......... 50% 99.8M 1s
 48550K .......... .......... .......... .......... .......... 51%  103M 1s
 48600K .......... .......... .......... .......... .......... 51% 78.0M 1s
 48650K .......... .......... .......... .......... .......... 51% 99.1M 1s
 48700K .......... .......... .......... .......... .......... 51%  101M 1s
 48750K .......... .......... .......... .......... .......... 51% 99.7M 1s
 48800K .......... .......... .......... .......... .......... 51% 98.9M 1s
 48850K .......... .......... .......... .......... .......... 51%  105M 1s
 48900K .......... .......... .......... .......... .......... 51%  105M 1s
 48950K .......... .......... .......... .......... .......... 51% 97.4M 1s
 49000K .......... .......... .......... .......... .......... 51% 75.8M 1s
 49050K .......... .......... .......... .......... .......... 51% 99.6M 1s
 49100K .......... .......... .......... .......... .......... 51% 99.1M 1s
 49150K .......... .......... .......... .......... .......... 51% 98.1M 1s
 49200K .......... .......... .......... .......... .......... 51% 97.6M 1s
 49250K .......... .......... .......... .......... .......... 51%  105M 1s
 49300K .......... .......... .......... .......... .......... 51%  103M 1s
 49350K .......... .......... .......... .......... .......... 51%  100M 1s
 49400K .......... .......... .......... .......... .......... 51% 80.2M 1s
 49450K .......... .......... .......... .......... .......... 51% 98.7M 1s
 49500K .......... .......... .......... .......... .......... 52% 96.9M 1s
 49550K .......... .......... .......... .......... .......... 52%  103M 1s
 49600K .......... .......... .......... .......... .......... 52%  102M 1s
 49650K .......... .......... .......... .......... .......... 52%  101M 1s
 49700K .......... .......... .......... .......... .......... 52%  102M 1s
 49750K .......... .......... .......... .......... .......... 52%  102M 1s
 49800K .......... .......... .......... .......... .......... 52% 73.6M 1s
 49850K .......... .......... .......... .......... .......... 52%  102M 1s
 49900K .......... .......... .......... .......... .......... 52%  101M 1s
 49950K .......... .......... .......... .......... .......... 52%  104M 1s
 50000K .......... .......... .......... .......... .......... 52% 98.3M 1s
 50050K .......... .......... .......... .......... .......... 52%  105M 1s
 50100K .......... .......... .......... .......... .......... 52% 99.3M 1s
 50150K .......... .......... .......... .......... .......... 52% 93.1M 1s
 50200K .......... .......... .......... .......... .......... 52% 73.1M 1s
 50250K .......... .......... .......... .......... .......... 52% 95.8M 1s
 50300K .......... .......... .......... .......... .......... 52%  105M 1s
 50350K .......... .......... .......... .......... .......... 52% 99.4M 1s
 50400K .......... .......... .......... .......... .......... 52%  102M 1s
 50450K .......... .......... .......... .......... .......... 53%  106M 1s
 50500K .......... .......... .......... .......... .......... 53% 98.3M 1s
 50550K .......... .......... .......... .......... .......... 53%  100M 1s
 50600K .......... .......... .......... .......... .......... 53% 78.3M 1s
 50650K .......... .......... .......... .......... .......... 53% 99.9M 1s
 50700K .......... .......... .......... .......... .......... 53%  102M 1s
 50750K .......... .......... .......... .......... .......... 53%  102M 1s
 50800K .......... .......... .......... .......... .......... 53% 99.5M 1s
 50850K .......... .......... .......... .......... .......... 53%  106M 1s
 50900K .......... .......... .......... .......... .......... 53%  103M 1s
 50950K .......... .......... .......... .......... .......... 53% 97.2M 1s
 51000K .......... .......... .......... .......... .......... 53% 77.4M 1s
 51050K .......... .......... .......... .......... .......... 53%  102M 1s
 51100K .......... .......... .......... .......... .......... 53%  102M 1s
 51150K .......... .......... .......... .......... .......... 53% 99.9M 1s
 51200K .......... .......... .......... .......... .......... 53%  106M 1s
 51250K .......... .......... .......... .......... .......... 53%  101M 1s
 51300K .......... .......... .......... .......... .......... 53% 99.4M 1s
 51350K .......... .......... .......... .......... .......... 53% 89.9M 1s
 51400K .......... .......... .......... .......... .......... 54% 72.7M 1s
 51450K .......... .......... .......... .......... .......... 54% 98.0M 1s
 51500K .......... .......... .......... .......... .......... 54% 96.8M 1s
 51550K .......... .......... .......... .......... .......... 54% 99.6M 1s
 51600K .......... .......... .......... .......... .......... 54%  106M 1s
 51650K .......... .......... .......... .......... .......... 54%  106M 1s
 51700K .......... .......... .......... .......... .......... 54% 97.4M 1s
 51750K .......... .......... .......... .......... .......... 54% 98.0M 1s
 51800K .......... .......... .......... .......... .......... 54% 76.5M 1s
 51850K .......... .......... .......... .......... .......... 54% 99.1M 1s
 51900K .......... .......... .......... .......... .......... 54%  102M 1s
 51950K .......... .......... .......... .......... .......... 54%  101M 1s
 52000K .......... .......... .......... .......... .......... 54%  102M 1s
 52050K .......... .......... .......... .......... .......... 54%  106M 1s
 52100K .......... .......... .......... .......... .......... 54%  101M 1s
 52150K .......... .......... .......... .......... .......... 54%  102M 1s
 52200K .......... .......... .......... .......... .......... 54% 77.9M 1s
 52250K .......... .......... .......... .......... .......... 54% 95.5M 1s
 52300K .......... .......... .......... .......... .......... 54%  105M 1s
 52350K .......... .......... .......... .......... .......... 55%  102M 1s
 52400K .......... .......... .......... .......... .......... 55% 96.9M 1s
 52450K .......... .......... .......... .......... .......... 55%  102M 1s
 52500K .......... .......... .......... .......... .......... 55% 98.7M 1s
 52550K .......... .......... .......... .......... .......... 55%  101M 1s
 52600K .......... .......... .......... .......... .......... 55% 78.0M 1s
 52650K .......... .......... .......... .......... .......... 55%  102M 1s
 52700K .......... .......... .......... .......... .......... 55% 98.8M 1s
 52750K .......... .......... .......... .......... .......... 55%  100M 1s
 52800K .......... .......... .......... .......... .......... 55%  103M 1s
 52850K .......... .......... .......... .......... .......... 55%  104M 1s
 52900K .......... .......... .......... .......... .......... 55%  101M 1s
 52950K .......... .......... .......... .......... .......... 55%  102M 1s
 53000K .......... .......... .......... .......... .......... 55% 75.1M 1s
 53050K .......... .......... .......... .......... .......... 55%  103M 1s
 53100K .......... .......... .......... .......... .......... 55%  102M 1s
 53150K .......... .......... .......... .......... .......... 55% 99.9M 1s
 53200K .......... .......... .......... .......... .......... 55% 99.2M 1s
 53250K .......... .......... .......... .......... .......... 55% 96.4M 1s
 53300K .......... .......... .......... .......... .......... 56% 81.2M 1s
 53350K .......... .......... .......... .......... .......... 56% 97.8M 1s
 53400K .......... .......... .......... .......... .......... 56% 77.2M 1s
 53450K .......... .......... .......... .......... .......... 56% 98.7M 1s
 53500K .......... .......... .......... .......... .......... 56% 97.3M 1s
 53550K .......... .......... .......... .......... .......... 56% 98.9M 1s
 53600K .......... .......... .......... .......... .......... 56%  102M 1s
 53650K .......... .......... .......... .......... .......... 56%  103M 1s
 53700K .......... .......... .......... .......... .......... 56% 92.3M 1s
 53750K .......... .......... .......... .......... .......... 56% 93.5M 1s
 53800K .......... .......... .......... .......... .......... 56% 73.1M 1s
 53850K .......... .......... .......... .......... .......... 56% 96.6M 1s
 53900K .......... .......... .......... .......... .......... 56% 94.5M 1s
 53950K .......... .......... .......... .......... .......... 56% 96.7M 1s
 54000K .......... .......... .......... .......... .......... 56% 99.7M 1s
 54050K .......... .......... .......... .......... .......... 56% 96.1M 1s
 54100K .......... .......... .......... .......... .......... 56%  101M 1s
 54150K .......... .......... .......... .......... .......... 56%  105M 1s
 54200K .......... .......... .......... .......... .......... 56% 79.2M 1s
 54250K .......... .......... .......... .......... .......... 57% 99.4M 1s
 54300K .......... .......... .......... .......... .......... 57% 98.4M 1s
 54350K .......... .......... .......... .......... .......... 57%  105M 1s
 54400K .......... .......... .......... .......... .......... 57%  102M 1s
 54450K .......... .......... .......... .......... .......... 57% 99.6M 1s
 54500K .......... .......... .......... .......... .......... 57% 99.2M 1s
 54550K .......... .......... .......... .......... .......... 57% 97.1M 1s
 54600K .......... .......... .......... .......... .......... 57% 79.2M 1s
 54650K .......... .......... .......... .......... .......... 57% 99.8M 1s
 54700K .......... .......... .......... .......... .......... 57%  101M 1s
 54750K .......... .......... .......... .......... .......... 57%  105M 1s
 54800K .......... .......... .......... .......... .......... 57%  100M 1s
 54850K .......... .......... .......... .......... .......... 57% 99.7M 1s
 54900K .......... .......... .......... .......... .......... 57% 99.7M 1s
 54950K .......... .......... .......... .......... .......... 57% 97.8M 1s
 55000K .......... .......... .......... .......... .......... 57% 74.8M 1s
 55050K .......... .......... .......... .......... .......... 57% 99.8M 1s
 55100K .......... .......... .......... .......... .......... 57%  103M 1s
 55150K .......... .......... .......... .......... .......... 57%  104M 1s
 55200K .......... .......... .......... .......... .......... 58% 99.2M 1s
 55250K .......... .......... .......... .......... .......... 58% 99.8M 1s
 55300K .......... .......... .......... .......... .......... 58% 96.9M 1s
 55350K .......... .......... .......... .......... .......... 58%  102M 1s
 55400K .......... .......... .......... .......... .......... 58% 79.7M 1s
 55450K .......... .......... .......... .......... .......... 58%  103M 1s
 55500K .......... .......... .......... .......... .......... 58%  105M 1s
 55550K .......... .......... .......... .......... .......... 58%  101M 1s
 55600K .......... .......... .......... .......... .......... 58% 98.8M 0s
 55650K .......... .......... .......... .......... .......... 58%  101M 0s
 55700K .......... .......... .......... .......... .......... 58%  101M 0s
 55750K .......... .......... .......... .......... .......... 58%  106M 0s
 55800K .......... .......... .......... .......... .......... 58% 75.7M 0s
 55850K .......... .......... .......... .......... .......... 58% 99.8M 0s
 55900K .......... .......... .......... .......... .......... 58% 98.7M 0s
 55950K .......... .......... .......... .......... .......... 58%  101M 0s
 56000K .......... .......... .......... .......... .......... 58%  103M 0s
 56050K .......... .......... .......... .......... .......... 58% 92.4M 0s
 56100K .......... .......... .......... .......... .......... 58% 97.1M 0s
 56150K .......... .......... .......... .......... .......... 58% 99.2M 0s
 56200K .......... .......... .......... .......... .......... 59% 79.5M 0s
 56250K .......... .......... .......... .......... .......... 59%  102M 0s
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 56350K .......... .......... .......... .......... .......... 59%  103M 0s
 56400K .......... .......... .......... .......... .......... 59%  106M 0s
 56450K .......... .......... .......... .......... .......... 59%  104M 0s
 56500K .......... .......... .......... .......... .......... 59%  103M 0s
 56550K .......... .......... .......... .......... .......... 59% 98.1M 0s
 56600K .......... .......... .......... .......... .......... 59% 74.6M 0s
 56650K .......... .......... .......... .......... .......... 59%  105M 0s
 56700K .......... .......... .......... .......... .......... 59%  106M 0s
 56750K .......... .......... .......... .......... .......... 59% 99.1M 0s
 56800K .......... .......... .......... .......... .......... 59%  104M 0s
 56850K .......... .......... .......... .......... .......... 59% 98.7M 0s
 56900K .......... .......... .......... .......... .......... 59%  102M 0s
 56950K .......... .......... .......... .......... .......... 59% 86.9M 0s
 57000K .......... .......... .......... .......... .......... 59% 63.0M 0s
 57050K .......... .......... .......... .......... .......... 59% 99.8M 0s
 57100K .......... .......... .......... .......... .......... 59%  106M 0s
 57150K .......... .......... .......... .......... .......... 60%  103M 0s
 57200K .......... .......... .......... .......... .......... 60%  106M 0s
 57250K .......... .......... .......... .......... .......... 60%  102M 0s
 57300K .......... .......... .......... .......... .......... 60% 98.2M 0s
 57350K .......... .......... .......... .......... .......... 60% 99.3M 0s
 57400K .......... .......... .......... .......... .......... 60% 77.6M 0s
 57450K .......... .......... .......... .......... .......... 60% 99.5M 0s
 57500K .......... .......... .......... .......... .......... 60%  103M 0s
 57550K .......... .......... .......... .......... .......... 60%  102M 0s
 57600K .......... .......... .......... .......... .......... 60% 99.0M 0s
 57650K .......... .......... .......... .......... .......... 60%  103M 0s
 57700K .......... .......... .......... .......... .......... 60% 99.1M 0s
 57750K .......... .......... .......... .......... .......... 60%  105M 0s
 57800K .......... .......... .......... .......... .......... 60% 77.0M 0s
 57850K .......... .......... .......... .......... .......... 60%  102M 0s
 57900K .......... .......... .......... .......... .......... 60% 98.6M 0s
 57950K .......... .......... .......... .......... .......... 60% 99.3M 0s
 58000K .......... .......... .......... .......... .......... 60% 98.7M 0s
 58050K .......... .......... .......... .......... .......... 60% 98.4M 0s
 58100K .......... .......... .......... .......... .......... 61% 99.0M 0s
 58150K .......... .......... .......... .......... .......... 61%  105M 0s
 58200K .......... .......... .......... .......... .......... 61% 79.8M 0s
 58250K .......... .......... .......... .......... .......... 61%  102M 0s
 58300K .......... .......... .......... .......... .......... 61%  103M 0s
 58350K .......... .......... .......... .......... .......... 61%  102M 0s
 58400K .......... .......... .......... .......... .......... 61% 99.2M 0s
 58450K .......... .......... .......... .......... .......... 61% 94.0M 0s
 58500K .......... .......... .......... .......... .......... 61%  101M 0s
 58550K .......... .......... .......... .......... .......... 61%  101M 0s
 58600K .......... .......... .......... .......... .......... 61% 74.6M 0s
 58650K .......... .......... .......... .......... .......... 61%  102M 0s
 58700K .......... .......... .......... .......... .......... 61%  102M 0s
 58750K .......... .......... .......... .......... .......... 61% 99.5M 0s
 58800K .......... .......... .......... .......... .......... 61%  103M 0s
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 58900K .......... .......... .......... .......... .......... 61%  106M 0s
 58950K .......... .......... .......... .......... .......... 61%  102M 0s
 59000K .......... .......... .......... .......... .......... 61% 75.9M 0s
 59050K .......... .......... .......... .......... .......... 62% 96.9M 0s
 59100K .......... .......... .......... .......... .......... 62%  104M 0s
 59150K .......... .......... .......... .......... .......... 62%  101M 0s
 59200K .......... .......... .......... .......... .......... 62%  103M 0s
 59250K .......... .......... .......... .......... .......... 62% 97.2M 0s
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 59350K .......... .......... .......... .......... .......... 62% 97.6M 0s
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 59450K .......... .......... .......... .......... .......... 62%  104M 0s
 59500K .......... .......... .......... .......... .......... 62% 99.1M 0s
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 59600K .......... .......... .......... .......... .......... 62% 97.8M 0s
 59650K .......... .......... .......... .......... .......... 62%  102M 0s
 59700K .......... .......... .......... .......... .......... 62%  105M 0s
 59750K .......... .......... .......... .......... .......... 62% 99.7M 0s
 59800K .......... .......... .......... .......... .......... 62% 76.1M 0s
 59850K .......... .......... .......... .......... .......... 62%  104M 0s
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 60150K .......... .......... .......... .......... .......... 63% 98.8M 0s
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 60250K .......... .......... .......... .......... .......... 63%  103M 0s
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 60600K .......... .......... .......... .......... .......... 63% 76.8M 0s
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 61550K .......... .......... .......... .......... .......... 64% 99.3M 0s
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 62000K .......... .......... .......... .......... .......... 65% 94.6M 0s
 62050K .......... .......... .......... .......... .......... 65% 97.6M 0s
 62100K .......... .......... .......... .......... .......... 65% 95.2M 0s
 62150K .......... .......... .......... .......... .......... 65% 94.3M 0s
 62200K .......... .......... .......... .......... .......... 65% 71.5M 0s
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 63100K .......... .......... .......... .......... .......... 66% 98.3M 0s
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 63250K .......... .......... .......... .......... .......... 66% 99.6M 0s
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 63600K .......... .......... .......... .......... .......... 66% 97.5M 0s
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 64150K .......... .......... .......... .......... .......... 67%  106M 0s
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 64350K .......... .......... .......... .......... .......... 67% 98.5M 0s
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 64850K .......... .......... .......... .......... .......... 68% 97.9M 0s
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 64950K .......... .......... .......... .......... .......... 68% 99.2M 0s
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 65150K .......... .......... .......... .......... .......... 68% 97.8M 0s
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 65400K .......... .......... .......... .......... .......... 68% 75.1M 0s
 65450K .......... .......... .......... .......... .......... 68% 99.4M 0s
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 65600K .......... .......... .......... .......... .......... 68% 94.6M 0s
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 65750K .......... .......... .......... .......... .......... 69% 98.6M 0s
 65800K .......... .......... .......... .......... .......... 69% 75.1M 0s
 65850K .......... .......... .......... .......... .......... 69%  104M 0s
 65900K .......... .......... .......... .......... .......... 69% 99.7M 0s
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 66050K .......... .......... .......... .......... .......... 69% 98.7M 0s
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 66150K .......... .......... .......... .......... .......... 69%  104M 0s
 66200K .......... .......... .......... .......... .......... 69% 76.1M 0s
 66250K .......... .......... .......... .......... .......... 69%  102M 0s
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 66400K .......... .......... .......... .......... .......... 69% 98.6M 0s
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 66550K .......... .......... .......... .......... .......... 69%  105M 0s
 66600K .......... .......... .......... .......... .......... 69% 77.1M 0s
 66650K .......... .......... .......... .......... .......... 70%  102M 0s
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 66750K .......... .......... .......... .......... .......... 70% 93.4M 0s
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 66850K .......... .......... .......... .......... .......... 70% 97.2M 0s
 66900K .......... .......... .......... .......... .......... 70% 95.8M 0s
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 67000K .......... .......... .......... .......... .......... 70% 76.7M 0s
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 67150K .......... .......... .......... .......... .......... 70% 95.9M 0s
 67200K .......... .......... .......... .......... .......... 70%  102M 0s
 67250K .......... .......... .......... .......... .......... 70%  102M 0s
 67300K .......... .......... .......... .......... .......... 70%  106M 0s
 67350K .......... .......... .......... .......... .......... 70% 99.3M 0s
 67400K .......... .......... .......... .......... .......... 70% 75.1M 0s
 67450K .......... .......... .......... .......... .......... 70%  102M 0s
 67500K .......... .......... .......... .......... .......... 70%  102M 0s
 67550K .......... .......... .......... .......... .......... 70%  101M 0s
 67600K .......... .......... .......... .......... .......... 71% 98.7M 0s
 67650K .......... .......... .......... .......... .......... 71% 97.5M 0s
 67700K .......... .......... .......... .......... .......... 71%  105M 0s
 67750K .......... .......... .......... .......... .......... 71%  106M 0s
 67800K .......... .......... .......... .......... .......... 71% 77.5M 0s
 67850K .......... .......... .......... .......... .......... 71%  106M 0s
 67900K .......... .......... .......... .......... .......... 71% 98.4M 0s
 67950K .......... .......... .......... .......... .......... 71% 95.3M 0s
 68000K .......... .......... .......... .......... .......... 71% 98.0M 0s
 68050K .......... .......... .......... .......... .......... 71% 98.3M 0s
 68100K .......... .......... .......... .......... .......... 71%  103M 0s
 68150K .......... .......... .......... .......... .......... 71%  101M 0s
 68200K .......... .......... .......... .......... .......... 71% 77.8M 0s
 68250K .......... .......... .......... .......... .......... 71% 99.1M 0s
 68300K .......... .......... .......... .......... .......... 71%  102M 0s
 68350K .......... .......... .......... .......... .......... 71%  103M 0s
 68400K .......... .......... .......... .......... .......... 71%  105M 0s
 68450K .......... .......... .......... .......... .......... 71%  104M 0s
 68500K .......... .......... .......... .......... .......... 71% 99.2M 0s
 68550K .......... .......... .......... .......... .......... 72% 99.4M 0s
 68600K .......... .......... .......... .......... .......... 72% 77.6M 0s
 68650K .......... .......... .......... .......... .......... 72%  105M 0s
 68700K .......... .......... .......... .......... .......... 72%  107M 0s
 68750K .......... .......... .......... .......... .......... 72%  101M 0s
 68800K .......... .......... .......... .......... .......... 72%  102M 0s
 68850K .......... .......... .......... .......... .......... 72%  103M 0s
 68900K .......... .......... .......... .......... .......... 72% 95.0M 0s
 68950K .......... .......... .......... .......... .......... 72%  102M 0s
 69000K .......... .......... .......... .......... .......... 72% 78.1M 0s
 69050K .......... .......... .......... .......... .......... 72%  103M 0s
 69100K .......... .......... .......... .......... .......... 72%  106M 0s
 69150K .......... .......... .......... .......... .......... 72% 92.6M 0s
 69200K .......... .......... .......... .......... .......... 72% 97.3M 0s
 69250K .......... .......... .......... .......... .......... 72% 94.5M 0s
 69300K .......... .......... .......... .......... .......... 72% 94.7M 0s
 69350K .......... .......... .......... .......... .......... 72% 99.4M 0s
 69400K .......... .......... .......... .......... .......... 72% 74.1M 0s
 69450K .......... .......... .......... .......... .......... 72%  105M 0s
 69500K .......... .......... .......... .......... .......... 73% 97.2M 0s
 69550K .......... .......... .......... .......... .......... 73%  101M 0s
 69600K .......... .......... .......... .......... .......... 73%  106M 0s
 69650K .......... .......... .......... .......... .......... 73%  102M 0s
 69700K .......... .......... .......... .......... .......... 73%  102M 0s
 69750K .......... .......... .......... .......... .......... 73%  103M 0s
 69800K .......... .......... .......... .......... .......... 73% 77.7M 0s
 69850K .......... .......... .......... .......... .......... 73% 99.3M 0s
 69900K .......... .......... .......... .......... .......... 73% 97.3M 0s
 69950K .......... .......... .......... .......... .......... 73%  102M 0s
 70000K .......... .......... .......... .......... .......... 73% 99.4M 0s
 70050K .......... .......... .......... .......... .......... 73%  102M 0s
 70100K .......... .......... .......... .......... .......... 73%  103M 0s
 70150K .......... .......... .......... .......... .......... 73% 98.7M 0s
 70200K .......... .......... .......... .......... .......... 73% 76.2M 0s
 70250K .......... .......... .......... .......... .......... 73%  106M 0s
 70300K .......... .......... .......... .......... .......... 73% 99.3M 0s
 70350K .......... .......... .......... .......... .......... 73% 96.3M 0s
 70400K .......... .......... .......... .......... .......... 73% 96.0M 0s
 70450K .......... .......... .......... .......... .......... 74% 97.4M 0s
 70500K .......... .......... .......... .......... .......... 74%  103M 0s
 70550K .......... .......... .......... .......... .......... 74%  103M 0s
 70600K .......... .......... .......... .......... .......... 74% 75.7M 0s
 70650K .......... .......... .......... .......... .......... 74%  101M 0s
 70700K .......... .......... .......... .......... .......... 74%  101M 0s
 70750K .......... .......... .......... .......... .......... 74% 99.3M 0s
 70800K .......... .......... .......... .......... .......... 74%  103M 0s
 70850K .......... .......... .......... .......... .......... 74%  103M 0s
 70900K .......... .......... .......... .......... .......... 74%  102M 0s
 70950K .......... .......... .......... .......... .......... 74%  101M 0s
 71000K .......... .......... .......... .......... .......... 74% 76.2M 0s
 71050K .......... .......... .......... .......... .......... 74%  105M 0s
 71100K .......... .......... .......... .......... .......... 74%  101M 0s
 71150K .......... .......... .......... .......... .......... 74%  101M 0s
 71200K .......... .......... .......... .......... .......... 74% 96.9M 0s
 71250K .......... .......... .......... .......... .......... 74%  103M 0s
 71300K .......... .......... .......... .......... .......... 74%  104M 0s
 71350K .......... .......... .......... .......... .......... 74%  102M 0s
 71400K .......... .......... .......... .......... .......... 75% 74.1M 0s
 71450K .......... .......... .......... .......... .......... 75% 98.7M 0s
 71500K .......... .......... .......... .......... .......... 75% 89.7M 0s
 71550K .......... .......... .......... .......... .......... 75% 96.9M 0s
 71600K .......... .......... .......... .......... .......... 75% 95.9M 0s
 71650K .......... .......... .......... .......... .......... 75% 94.1M 0s
 71700K .......... .......... .......... .......... .......... 75% 98.9M 0s
 71750K .......... .......... .......... .......... .......... 75%  103M 0s
 71800K .......... .......... .......... .......... .......... 75% 79.5M 0s
 71850K .......... .......... .......... .......... .......... 75%  102M 0s
 71900K .......... .......... .......... .......... .......... 75% 96.7M 0s
 71950K .......... .......... .......... .......... .......... 75%  103M 0s
 72000K .......... .......... .......... .......... .......... 75%  105M 0s
 72050K .......... .......... .......... .......... .......... 75%  106M 0s
 72100K .......... .......... .......... .......... .......... 75% 99.3M 0s
 72150K .......... .......... .......... .......... .......... 75% 98.5M 0s
 72200K .......... .......... .......... .......... .......... 75% 76.9M 0s
 72250K .......... .......... .......... .......... .......... 75% 99.1M 0s
 72300K .......... .......... .......... .......... .......... 75%  101M 0s
 72350K .......... .......... .......... .......... .......... 76%  103M 0s
 72400K .......... .......... .......... .......... .......... 76%  102M 0s
 72450K .......... .......... .......... .......... .......... 76%  102M 0s
 72500K .......... .......... .......... .......... .......... 76%  106M 0s
 72550K .......... .......... .......... .......... .......... 76%  100M 0s
 72600K .......... .......... .......... .......... .......... 76% 76.1M 0s
 72650K .......... .......... .......... .......... .......... 76%  106M 0s
 72700K .......... .......... .......... .......... .......... 76% 92.9M 0s
 72750K .......... .......... .......... .......... .......... 76%  102M 0s
 72800K .......... .......... .......... .......... .......... 76%  102M 0s
 72850K .......... .......... .......... .......... .......... 76%  103M 0s
 72900K .......... .......... .......... .......... .......... 76%  106M 0s
 72950K .......... .......... .......... .......... .......... 76%  102M 0s
 73000K .......... .......... .......... .......... .......... 76% 78.3M 0s
 73050K .......... .......... .......... .......... .......... 76% 99.2M 0s
 73100K .......... .......... .......... .......... .......... 76% 99.9M 0s
 73150K .......... .......... .......... .......... .......... 76%  102M 0s
 73200K .......... .......... .......... .......... .......... 76% 97.9M 0s
 73250K .......... .......... .......... .......... .......... 76%  102M 0s
 73300K .......... .......... .......... .......... .......... 77%  105M 0s
 73350K .......... .......... .......... .......... .......... 77%  105M 0s
 73400K .......... .......... .......... .......... .......... 77% 77.8M 0s
 73450K .......... .......... .......... .......... .......... 77% 98.4M 0s
 73500K .......... .......... .......... .......... .......... 77%  102M 0s
 73550K .......... .......... .......... .......... .......... 77% 99.4M 0s
 73600K .......... .......... .......... .......... .......... 77% 99.3M 0s
 73650K .......... .......... .......... .......... .......... 77%  106M 0s
 73700K .......... .......... .......... .......... .......... 77% 98.4M 0s
 73750K .......... .......... .......... .......... .......... 77%  101M 0s
 73800K .......... .......... .......... .......... .......... 77% 78.0M 0s
 73850K .......... .......... .......... .......... .......... 77%  106M 0s
 73900K .......... .......... .......... .......... .......... 77% 92.8M 0s
 73950K .......... .......... .......... .......... .......... 77% 97.6M 0s
 74000K .......... .......... .......... .......... .......... 77%  102M 0s
 74050K .......... .......... .......... .......... .......... 77%  102M 0s
 74100K .......... .......... .......... .......... .......... 77%  102M 0s
 74150K .......... .......... .......... .......... .......... 77%  105M 0s
 74200K .......... .......... .......... .......... .......... 77% 75.6M 0s
 74250K .......... .......... .......... .......... .......... 78% 99.0M 0s
 74300K .......... .......... .......... .......... .......... 78% 96.8M 0s
 74350K .......... .......... .......... .......... .......... 78%  102M 0s
 74400K .......... .......... .......... .......... .......... 78%  103M 0s
 74450K .......... .......... .......... .......... .......... 78%  102M 0s
 74500K .......... .......... .......... .......... .......... 78%  106M 0s
 74550K .......... .......... .......... .......... .......... 78% 95.0M 0s
 74600K .......... .......... .......... .......... .......... 78% 75.6M 0s
 74650K .......... .......... .......... .......... .......... 78%  102M 0s
 74700K .......... .......... .......... .......... .......... 78% 97.0M 0s
 74750K .......... .......... .......... .......... .......... 78%  102M 0s
 74800K .......... .......... .......... .......... .......... 78% 99.4M 0s
 74850K .......... .......... .......... .......... .......... 78%  103M 0s
 74900K .......... .......... .......... .......... .......... 78% 99.4M 0s
 74950K .......... .......... .......... .......... .......... 78%  105M 0s
 75000K .......... .......... .......... .......... .......... 78% 78.1M 0s
 75050K .......... .......... .......... .......... .......... 78%  102M 0s
 75100K .......... .......... .......... .......... .......... 78% 89.9M 0s
 75150K .......... .......... .......... .......... .......... 78%  105M 0s
 75200K .......... .......... .......... .......... .......... 78% 98.8M 0s
 75250K .......... .......... .......... .......... .......... 79%  106M 0s
 75300K .......... .......... .......... .......... .......... 79%  102M 0s
 75350K .......... .......... .......... .......... .......... 79%  100M 0s
 75400K .......... .......... .......... .......... .......... 79% 76.7M 0s
 75450K .......... .......... .......... .......... .......... 79% 96.9M 0s
 75500K .......... .......... .......... .......... .......... 79% 98.5M 0s
 75550K .......... .......... .......... .......... .......... 79%  102M 0s
 75600K .......... .......... .......... .......... .......... 79%  105M 0s
 75650K .......... .......... .......... .......... .......... 79%  103M 0s
 75700K .......... .......... .......... .......... .......... 79% 98.5M 0s
 75750K .......... .......... .......... .......... .......... 79%  105M 0s
 75800K .......... .......... .......... .......... .......... 79% 78.1M 0s
 75850K .......... .......... .......... .......... .......... 79% 97.9M 0s
 75900K .......... .......... .......... .......... .......... 79% 98.1M 0s
 75950K .......... .......... .......... .......... .......... 79%  102M 0s
 76000K .......... .......... .......... .......... .......... 79%  105M 0s
 76050K .......... .......... .......... .......... .......... 79%  100M 0s
 76100K .......... .......... .......... .......... .......... 79% 99.0M 0s
 76150K .......... .......... .......... .......... .......... 79%  102M 0s
 76200K .......... .......... .......... .......... .......... 80% 77.0M 0s
 76250K .......... .......... .......... .......... .......... 80% 93.8M 0s
 76300K .......... .......... .......... .......... .......... 80%  100M 0s
 76350K .......... .......... .......... .......... .......... 80% 97.9M 0s
 76400K .......... .......... .......... .......... .......... 80% 97.7M 0s
 76450K .......... .......... .......... .......... .......... 80%  101M 0s
 76500K .......... .......... .......... .......... .......... 80% 97.2M 0s
 76550K .......... .......... .......... .......... .......... 80% 99.6M 0s
 76600K .......... .......... .......... .......... .......... 80% 79.9M 0s
 76650K .......... .......... .......... .......... .......... 80% 97.8M 0s
 76700K .......... .......... .......... .......... .......... 80%  101M 0s
 76750K .......... .......... .......... .......... .......... 80%  105M 0s
 76800K .......... .......... .......... .......... .......... 80% 99.3M 0s
 76850K .......... .......... .......... .......... .......... 80% 99.0M 0s
 76900K .......... .......... .......... .......... .......... 80%  105M 0s
 76950K .......... .......... .......... .......... .......... 80% 98.2M 0s
 77000K .......... .......... .......... .......... .......... 80% 77.9M 0s
 77050K .......... .......... .......... .......... .......... 80% 96.2M 0s
 77100K .......... .......... .......... .......... .......... 80% 84.0M 0s
 77150K .......... .......... .......... .......... .......... 81% 92.6M 0s
 77200K .......... .......... .......... .......... .......... 81%  101M 0s
 77250K .......... .......... .......... .......... .......... 81%  102M 0s
 77300K .......... .......... .......... .......... .......... 81%  102M 0s
 77350K .......... .......... .......... .......... .......... 81%  105M 0s
 77400K .......... .......... .......... .......... .......... 81% 79.9M 0s
 77450K .......... .......... .......... .......... .......... 81% 97.3M 0s
 77500K .......... .......... .......... .......... .......... 81% 94.8M 0s
 77550K .......... .......... .......... .......... .......... 81%  102M 0s
 77600K .......... .......... .......... .......... .......... 81% 99.9M 0s
 77650K .......... .......... .......... .......... .......... 81%  103M 0s
 77700K .......... .......... .......... .......... .......... 81%  105M 0s
 77750K .......... .......... .......... .......... .......... 81%  102M 0s
 77800K .......... .......... .......... .......... .......... 81% 75.0M 0s
 77850K .......... .......... .......... .......... .......... 81%  102M 0s
 77900K .......... .......... .......... .......... .......... 81%  102M 0s
 77950K .......... .......... .......... .......... .......... 81% 98.8M 0s
 78000K .......... .......... .......... .......... .......... 81% 97.8M 0s
 78050K .......... .......... .......... .......... .......... 81%  106M 0s
 78100K .......... .......... .......... .......... .......... 82%  105M 0s
 78150K .......... .......... .......... .......... .......... 82% 99.1M 0s
 78200K .......... .......... .......... .......... .......... 82% 75.7M 0s
 78250K .......... .......... .......... .......... .......... 82%  102M 0s
 78300K .......... .......... .......... .......... .......... 82%  102M 0s
 78350K .......... .......... .......... .......... .......... 82% 99.4M 0s
 78400K .......... .......... .......... .......... .......... 82% 99.8M 0s
 78450K .......... .......... .......... .......... .......... 82%  102M 0s
 78500K .......... .......... .......... .......... .......... 82%  101M 0s
 78550K .......... .......... .......... .......... .......... 82% 99.2M 0s
 78600K .......... .......... .......... .......... .......... 82% 75.1M 0s
 78650K .......... .......... .......... .......... .......... 82% 94.4M 0s
 78700K .......... .......... .......... .......... .......... 82% 97.4M 0s
 78750K .......... .......... .......... .......... .......... 82% 96.6M 0s
 78800K .......... .......... .......... .......... .......... 82%  105M 0s
 78850K .......... .......... .......... .......... .......... 82%  106M 0s
 78900K .......... .......... .......... .......... .......... 82% 99.6M 0s
 78950K .......... .......... .......... .......... .......... 82%  100M 0s
 79000K .......... .......... .......... .......... .......... 82% 75.3M 0s
 79050K .......... .......... .......... .......... .......... 83%  105M 0s
 79100K .......... .......... .......... .......... .......... 83%  106M 0s
 79150K .......... .......... .......... .......... .......... 83%  103M 0s
 79200K .......... .......... .......... .......... .......... 83%  102M 0s
 79250K .......... .......... .......... .......... .......... 83%  106M 0s
 79300K .......... .......... .......... .......... .......... 83%  106M 0s
 79350K .......... .......... .......... .......... .......... 83%  102M 0s
 79400K .......... .......... .......... .......... .......... 83% 76.6M 0s
 79450K .......... .......... .......... .......... .......... 83% 97.2M 0s
 79500K .......... .......... .......... .......... .......... 83%  101M 0s
 79550K .......... .......... .......... .......... .......... 83%  105M 0s
 79600K .......... .......... .......... .......... .......... 83% 99.4M 0s
 79650K .......... .......... .......... .......... .......... 83%  106M 0s
 79700K .......... .......... .......... .......... .......... 83%  100M 0s
 79750K .......... .......... .......... .......... .......... 83% 98.7M 0s
 79800K .......... .......... .......... .......... .......... 83% 77.7M 0s
 79850K .......... .......... .......... .......... .......... 83% 96.6M 0s
 79900K .......... .......... .......... .......... .......... 83%  103M 0s
 79950K .......... .......... .......... .......... .......... 83%  102M 0s
 80000K .......... .......... .......... .......... .......... 84%  102M 0s
 80050K .......... .......... .......... .......... .......... 84%  103M 0s
 80100K .......... .......... .......... .......... .......... 84%  102M 0s
 80150K .......... .......... .......... .......... .......... 84%  106M 0s
 80200K .......... .......... .......... .......... .......... 84% 78.1M 0s
 80250K .......... .......... .......... .......... .......... 84% 99.0M 0s
 80300K .......... .......... .......... .......... .......... 84%  102M 0s
 80350K .......... .......... .......... .......... .......... 84%  101M 0s
 80400K .......... .......... .......... .......... .......... 84%  104M 0s
 80450K .......... .......... .......... .......... .......... 84% 99.1M 0s
 80500K .......... .......... .......... .......... .......... 84%  102M 0s
 80550K .......... .......... .......... .......... .......... 84%  105M 0s
 80600K .......... .......... .......... .......... .......... 84% 77.9M 0s
 80650K .......... .......... .......... .......... .......... 84% 97.1M 0s
 80700K .......... .......... .......... .......... .......... 84%  102M 0s
 80750K .......... .......... .......... .......... .......... 84%  104M 0s
 80800K .......... .......... .......... .......... .......... 84%  103M 0s
 80850K .......... .......... .......... .......... .......... 84%  103M 0s
 80900K .......... .......... .......... .......... .......... 84%  102M 0s
 80950K .......... .......... .......... .......... .......... 85%  105M 0s
 81000K .......... .......... .......... .......... .......... 85% 76.1M 0s
 81050K .......... .......... .......... .......... .......... 85% 92.4M 0s
 81100K .......... .......... .......... .......... .......... 85% 99.3M 0s
 81150K .......... .......... .......... .......... .......... 85%  103M 0s
 81200K .......... .......... .......... .......... .......... 85%  102M 0s
 81250K .......... .......... .......... .......... .......... 85%  102M 0s
 81300K .......... .......... .......... .......... .......... 85%  101M 0s
 81350K .......... .......... .......... .......... .......... 85%  103M 0s
 81400K .......... .......... .......... .......... .......... 85% 76.0M 0s
 81450K .......... .......... .......... .......... .......... 85%  100M 0s
 81500K .......... .......... .......... .......... .......... 85%  101M 0s
 81550K .......... .......... .......... .......... .......... 85%  102M 0s
 81600K .......... .......... .......... .......... .......... 85%  103M 0s
 81650K .......... .......... .......... .......... .......... 85% 99.6M 0s
 81700K .......... .......... .......... .......... .......... 85%  102M 0s
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 95250K ....                                                  100% 8.15T=1.1s

2026-05-13 16:21:01 (84.5 MB/s) - ‘/tmp/tmpjm_4y80y/LUT.hdf’ saved [97540482/97540482]

(d) 16:21:01 Moving "/tmp/tmpjm_4y80y/LUT.hdf" to "/root/.cache/polymer/auxdata/static/generic/LUT.hdf"...
(i) 16:21:01 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/no2_climatology.hdf
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--2026-05-13 16:21:01--  http://download.hygeos.com/POLYMER/auxdata/common/no2_climatology.hdf
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HTTP request sent, awaiting response... 301 Moved Permanently
Location: https://download.hygeos.com/POLYMER/auxdata/common/no2_climatology.hdf [following]
--2026-05-13 16:21:01--  https://download.hygeos.com/POLYMER/auxdata/common/no2_climatology.hdf
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 14050K .......... .......... .......... .......... .......... 14%  100M 2s
 14100K .......... .......... .......... .......... .......... 14%  105M 2s
 14150K .......... .......... .......... .......... .......... 14%  105M 2s
 14200K .......... .......... .......... .......... .......... 14%  102M 2s
 14250K .......... .......... .......... .......... .......... 14%  105M 2s
 14300K .......... .......... .......... .......... .......... 14% 97.4M 2s
 14350K .......... .......... .......... .......... .......... 14% 74.4M 2s
 14400K .......... .......... .......... .......... .......... 14%  101M 2s
 14450K .......... .......... .......... .......... .......... 14% 99.5M 2s
 14500K .......... .......... .......... .......... .......... 14%  106M 2s
 14550K .......... .......... .......... .......... .......... 15% 98.9M 2s
 14600K .......... .......... .......... .......... .......... 15%  105M 2s
 14650K .......... .......... .......... .......... .......... 15%  101M 2s
 14700K .......... .......... .......... .......... .......... 15% 97.0M 2s
 14750K .......... .......... .......... .......... .......... 15% 73.8M 2s
 14800K .......... .......... .......... .......... .......... 15% 98.3M 2s
 14850K .......... .......... .......... .......... .......... 15% 98.7M 2s
 14900K .......... .......... .......... .......... .......... 15%  101M 2s
 14950K .......... .......... .......... .......... .......... 15%  106M 2s
 15000K .......... .......... .......... .......... .......... 15%  105M 2s
 15050K .......... .......... .......... .......... .......... 15% 98.2M 2s
 15100K .......... .......... .......... .......... .......... 15%  102M 2s
 15150K .......... .......... .......... .......... .......... 15% 76.2M 2s
 15200K .......... .......... .......... .......... .......... 15% 98.8M 2s
 15250K .......... .......... .......... .......... .......... 15% 99.3M 2s
 15300K .......... .......... .......... .......... .......... 15% 98.2M 2s
 15350K .......... .......... .......... .......... .......... 15%  105M 2s
 15400K .......... .......... .......... .......... .......... 15%  102M 2s
 15450K .......... .......... .......... .......... .......... 15%  103M 2s
 15500K .......... .......... .......... .......... .......... 15%  102M 2s
 15550K .......... .......... .......... .......... .......... 16% 79.2M 2s
 15600K .......... .......... .......... .......... .......... 16% 98.6M 2s
 15650K .......... .......... .......... .......... .......... 16% 95.1M 2s
 15700K .......... .......... .......... .......... .......... 16% 99.6M 2s
 15750K .......... .......... .......... .......... .......... 16%  102M 2s
 15800K .......... .......... .......... .......... .......... 16% 99.5M 2s
 15850K .......... .......... .......... .......... .......... 16% 98.9M 2s
 15900K .......... .......... .......... .......... .......... 16%  101M 2s
 15950K .......... .......... .......... .......... .......... 16% 79.6M 2s
 16000K .......... .......... .......... .......... .......... 16% 98.6M 2s
 16050K .......... .......... .......... .......... .......... 16% 96.6M 2s
 16100K .......... .......... .......... .......... .......... 16% 97.6M 2s
 16150K .......... .......... .......... .......... .......... 16% 99.1M 2s
 16200K .......... .......... .......... .......... .......... 16% 98.5M 2s
 16250K .......... .......... .......... .......... .......... 16% 98.8M 2s
 16300K .......... .......... .......... .......... .......... 16%  101M 2s
 16350K .......... .......... .......... .......... .......... 16% 77.3M 2s
 16400K .......... .......... .......... .......... .......... 16%  100M 2s
 16450K .......... .......... .......... .......... .......... 16% 91.7M 2s
 16500K .......... .......... .......... .......... .......... 17%  100M 2s
 16550K .......... .......... .......... .......... .......... 17%  101M 2s
 16600K .......... .......... .......... .......... .......... 17%  102M 2s
 16650K .......... .......... .......... .......... .......... 17%  100M 2s
 16700K .......... .......... .......... .......... .......... 17%  105M 2s
 16750K .......... .......... .......... .......... .......... 17% 75.5M 2s
 16800K .......... .......... .......... .......... .......... 17%  100M 2s
 16850K .......... .......... .......... .......... .......... 17% 99.6M 2s
 16900K .......... .......... .......... .......... .......... 17%  102M 2s
 16950K .......... .......... .......... .......... .......... 17%  102M 2s
 17000K .......... .......... .......... .......... .......... 17%  101M 2s
 17050K .......... .......... .......... .......... .......... 17% 98.3M 2s
 17100K .......... .......... .......... .......... .......... 17%  105M 2s
 17150K .......... .......... .......... .......... .......... 17% 79.4M 2s
 17200K .......... .......... .......... .......... .......... 17% 97.3M 2s
 17250K .......... .......... .......... .......... .......... 17% 81.0M 2s
 17300K .......... .......... .......... .......... .......... 17% 99.5M 2s
 17350K .......... .......... .......... .......... .......... 17%  104M 2s
 17400K .......... .......... .......... .......... .......... 17%  104M 2s
 17450K .......... .......... .......... .......... .......... 18% 97.7M 2s
 17500K .......... .......... .......... .......... .......... 18%  105M 2s
 17550K .......... .......... .......... .......... .......... 18% 77.0M 2s
 17600K .......... .......... .......... .......... .......... 18% 95.6M 2s
 17650K .......... .......... .......... .......... .......... 18% 97.3M 2s
 17700K .......... .......... .......... .......... .......... 18%  102M 2s
 17750K .......... .......... .......... .......... .......... 18%  102M 2s
 17800K .......... .......... .......... .......... .......... 18%  101M 2s
 17850K .......... .......... .......... .......... .......... 18%  101M 2s
 17900K .......... .......... .......... .......... .......... 18%  101M 2s
 17950K .......... .......... .......... .......... .......... 18% 75.9M 2s
 18000K .......... .......... .......... .......... .......... 18% 99.0M 2s
 18050K .......... .......... .......... .......... .......... 18%  104M 2s
 18100K .......... .......... .......... .......... .......... 18%  102M 2s
 18150K .......... .......... .......... .......... .......... 18%  102M 2s
 18200K .......... .......... .......... .......... .......... 18% 98.4M 2s
 18250K .......... .......... .......... .......... .......... 18%  101M 2s
 18300K .......... .......... .......... .......... .......... 18% 99.7M 2s
 18350K .......... .......... .......... .......... .......... 18% 75.4M 2s
 18400K .......... .......... .......... .......... .......... 18% 94.4M 2s
 18450K .......... .......... .......... .......... .......... 19% 98.6M 2s
 18500K .......... .......... .......... .......... .......... 19% 97.4M 2s
 18550K .......... .......... .......... .......... .......... 19%  101M 2s
 18600K .......... .......... .......... .......... .......... 19%  102M 2s
 18650K .......... .......... .......... .......... .......... 19%  101M 2s
 18700K .......... .......... .......... .......... .......... 19%  101M 2s
 18750K .......... .......... .......... .......... .......... 19% 75.8M 2s
 18800K .......... .......... .......... .......... .......... 19% 98.4M 2s
 18850K .......... .......... .......... .......... .......... 19%  102M 2s
 18900K .......... .......... .......... .......... .......... 19% 98.8M 2s
 18950K .......... .......... .......... .......... .......... 19% 98.7M 2s
 19000K .......... .......... .......... .......... .......... 19% 99.7M 2s
 19050K .......... .......... .......... .......... .......... 19%  101M 2s
 19100K .......... .......... .......... .......... .......... 19%  105M 2s
 19150K .......... .......... .......... .......... .......... 19% 75.0M 2s
 19200K .......... .......... .......... .......... .......... 19% 96.1M 2s
 19250K .......... .......... .......... .......... .......... 19%  104M 2s
 19300K .......... .......... .......... .......... .......... 19% 98.3M 2s
 19350K .......... .......... .......... .......... .......... 19%  104M 2s
 19400K .......... .......... .......... .......... .......... 20%  101M 2s
 19450K .......... .......... .......... .......... .......... 20%  102M 2s
 19500K .......... .......... .......... .......... .......... 20%  101M 2s
 19550K .......... .......... .......... .......... .......... 20% 77.3M 2s
 19600K .......... .......... .......... .......... .......... 20% 97.2M 2s
 19650K .......... .......... .......... .......... .......... 20% 99.1M 1s
 19700K .......... .......... .......... .......... .......... 20%  100M 1s
 19750K .......... .......... .......... .......... .......... 20%  102M 1s
 19800K .......... .......... .......... .......... .......... 20%  104M 1s
 19850K .......... .......... .......... .......... .......... 20%  101M 1s
 19900K .......... .......... .......... .......... .......... 20%  106M 1s
 19950K .......... .......... .......... .......... .......... 20% 75.3M 1s
 20000K .......... .......... .......... .......... .......... 20%  100M 1s
 20050K .......... .......... .......... .......... .......... 20%  100M 1s
 20100K .......... .......... .......... .......... .......... 20%  102M 1s
 20150K .......... .......... .......... .......... .......... 20%  105M 1s
 20200K .......... .......... .......... .......... .......... 20%  101M 1s
 20250K .......... .......... .......... .......... .......... 20%  101M 1s
 20300K .......... .......... .......... .......... .......... 20%  104M 1s
 20350K .......... .......... .......... .......... .......... 20% 75.8M 1s
 20400K .......... .......... .......... .......... .......... 21% 96.7M 1s
 20450K .......... .......... .......... .......... .......... 21%  101M 1s
 20500K .......... .......... .......... .......... .......... 21%  105M 1s
 20550K .......... .......... .......... .......... .......... 21% 98.2M 1s
 20600K .......... .......... .......... .......... .......... 21%  102M 1s
 20650K .......... .......... .......... .......... .......... 21%  105M 1s
 20700K .......... .......... .......... .......... .......... 21%  102M 1s
 20750K .......... .......... .......... .......... .......... 21% 74.1M 1s
 20800K .......... .......... .......... .......... .......... 21%  102M 1s
 20850K .......... .......... .......... .......... .......... 21%  102M 1s
 20900K .......... .......... .......... .......... .......... 21%  101M 1s
 20950K .......... .......... .......... .......... .......... 21%  102M 1s
 21000K .......... .......... .......... .......... .......... 21% 99.0M 1s
 21050K .......... .......... .......... .......... .......... 21%  102M 1s
 21100K .......... .......... .......... .......... .......... 21%  104M 1s
 21150K .......... .......... .......... .......... .......... 21% 76.3M 1s
 21200K .......... .......... .......... .......... .......... 21%  101M 1s
 21250K .......... .......... .......... .......... .......... 21%  105M 1s
 21300K .......... .......... .......... .......... .......... 21%  102M 1s
 21350K .......... .......... .......... .......... .......... 22% 98.8M 1s
 21400K .......... .......... .......... .......... .......... 22%  101M 1s
 21450K .......... .......... .......... .......... .......... 22%  102M 1s
 21500K .......... .......... .......... .......... .......... 22%  101M 1s
 21550K .......... .......... .......... .......... .......... 22% 73.8M 1s
 21600K .......... .......... .......... .......... .......... 22% 98.0M 1s
 21650K .......... .......... .......... .......... .......... 22% 98.9M 1s
 21700K .......... .......... .......... .......... .......... 22% 99.0M 1s
 21750K .......... .......... .......... .......... .......... 22%  106M 1s
 21800K .......... .......... .......... .......... .......... 22%  102M 1s
 21850K .......... .......... .......... .......... .......... 22% 98.6M 1s
 21900K .......... .......... .......... .......... .......... 22%  105M 1s
 21950K .......... .......... .......... .......... .......... 22% 75.8M 1s
 22000K .......... .......... .......... .......... .......... 22% 96.9M 1s
 22050K .......... .......... .......... .......... .......... 22%  105M 1s
 22100K .......... .......... .......... .......... .......... 22% 99.7M 1s
 22150K .......... .......... .......... .......... .......... 22% 98.9M 1s
 22200K .......... .......... .......... .......... .......... 22% 98.3M 1s
 22250K .......... .......... .......... .......... .......... 22%  104M 1s
 22300K .......... .......... .......... .......... .......... 22%  105M 1s
 22350K .......... .......... .......... .......... .......... 23% 66.0M 1s
 22400K .......... .......... .......... .......... .......... 23%  103M 1s
 22450K .......... .......... .......... .......... .......... 23%  101M 1s
 22500K .......... .......... .......... .......... .......... 23% 99.4M 1s
 22550K .......... .......... .......... .......... .......... 23% 98.7M 1s
 22600K .......... .......... .......... .......... .......... 23%  104M 1s
 22650K .......... .......... .......... .......... .......... 23% 99.6M 1s
 22700K .......... .......... .......... .......... .......... 23%  102M 1s
 22750K .......... .......... .......... .......... .......... 23% 76.3M 1s
 22800K .......... .......... .......... .......... .......... 23%  102M 1s
 22850K .......... .......... .......... .......... .......... 23%  100M 1s
 22900K .......... .......... .......... .......... .......... 23%  102M 1s
 22950K .......... .......... .......... .......... .......... 23%  102M 1s
 23000K .......... .......... .......... .......... .......... 23%  103M 1s
 23050K .......... .......... .......... .......... .......... 23%  105M 1s
 23100K .......... .......... .......... .......... .......... 23%  101M 1s
 23150K .......... .......... .......... .......... .......... 23% 73.0M 1s
 23200K .......... .......... .......... .......... .......... 23% 98.6M 1s
 23250K .......... .......... .......... .......... .......... 23%  102M 1s
 23300K .......... .......... .......... .......... .......... 24%  102M 1s
 23350K .......... .......... .......... .......... .......... 24% 98.7M 1s
 23400K .......... .......... .......... .......... .......... 24% 98.9M 1s
 23450K .......... .......... .......... .......... .......... 24%  101M 1s
 23500K .......... .......... .......... .......... .......... 24%  101M 1s
 23550K .......... .......... .......... .......... .......... 24% 78.0M 1s
 23600K .......... .......... .......... .......... .......... 24%  102M 1s
 23650K .......... .......... .......... .......... .......... 24%  102M 1s
 23700K .......... .......... .......... .......... .......... 24%  102M 1s
 23750K .......... .......... .......... .......... .......... 24%  103M 1s
 23800K .......... .......... .......... .......... .......... 24% 99.3M 1s
 23850K .......... .......... .......... .......... .......... 24%  101M 1s
 23900K .......... .......... .......... .......... .......... 24%  102M 1s
 23950K .......... .......... .......... .......... .......... 24% 76.3M 1s
 24000K .......... .......... .......... .......... .......... 24%  105M 1s
 24050K .......... .......... .......... .......... .......... 24%  101M 1s
 24100K .......... .......... .......... .......... .......... 24%  104M 1s
 24150K .......... .......... .......... .......... .......... 24%  105M 1s
 24200K .......... .......... .......... .......... .......... 24%  102M 1s
 24250K .......... .......... .......... .......... .......... 24%  102M 1s
 24300K .......... .......... .......... .......... .......... 25% 99.2M 1s
 24350K .......... .......... .......... .......... .......... 25% 73.7M 1s
 24400K .......... .......... .......... .......... .......... 25% 97.4M 1s
 24450K .......... .......... .......... .......... .......... 25%  105M 1s
 24500K .......... .......... .......... .......... .......... 25%  106M 1s
 24550K .......... .......... .......... .......... .......... 25% 99.4M 1s
 24600K .......... .......... .......... .......... .......... 25%  101M 1s
 24650K .......... .......... .......... .......... .......... 25%  101M 1s
 24700K .......... .......... .......... .......... .......... 25%  101M 1s
 24750K .......... .......... .......... .......... .......... 25% 75.9M 1s
 24800K .......... .......... .......... .......... .......... 25%  102M 1s
 24850K .......... .......... .......... .......... .......... 25%  101M 1s
 24900K .......... .......... .......... .......... .......... 25%  102M 1s
 24950K .......... .......... .......... .......... .......... 25%  102M 1s
 25000K .......... .......... .......... .......... .......... 25%  102M 1s
 25050K .......... .......... .......... .......... .......... 25%  102M 1s
 25100K .......... .......... .......... .......... .......... 25%  101M 1s
 25150K .......... .......... .......... .......... .......... 25% 70.7M 1s
 25200K .......... .......... .......... .......... .......... 25% 94.7M 1s
 25250K .......... .......... .......... .......... .......... 26%  104M 1s
 25300K .......... .......... .......... .......... .......... 26% 96.1M 1s
 25350K .......... .......... .......... .......... .......... 26% 97.6M 1s
 25400K .......... .......... .......... .......... .......... 26% 95.7M 1s
 25450K .......... .......... .......... .......... .......... 26% 90.2M 1s
 25500K .......... .......... .......... .......... .......... 26% 91.7M 1s
 25550K .......... .......... .......... .......... .......... 26% 67.7M 1s
 25600K .......... .......... .......... .......... .......... 26% 97.1M 1s
 25650K .......... .......... .......... .......... .......... 26% 94.9M 1s
 25700K .......... .......... .......... .......... .......... 26% 81.6M 1s
 25750K .......... .......... .......... .......... .......... 26%  105M 1s
 25800K .......... .......... .......... .......... .......... 26%  101M 1s
 25850K .......... .......... .......... .......... .......... 26%  100M 1s
 25900K .......... .......... .......... .......... .......... 26%  101M 1s
 25950K .......... .......... .......... .......... .......... 26% 74.9M 1s
 26000K .......... .......... .......... .......... .......... 26%  102M 1s
 26050K .......... .......... .......... .......... .......... 26% 98.9M 1s
 26100K .......... .......... .......... .......... .......... 26%  100M 1s
 26150K .......... .......... .......... .......... .......... 26%  102M 1s
 26200K .......... .......... .......... .......... .......... 27%  104M 1s
 26250K .......... .......... .......... .......... .......... 27%  102M 1s
 26300K .......... .......... .......... .......... .......... 27% 88.3M 1s
 26350K .......... .......... .......... .......... .......... 27% 78.8M 1s
 26400K .......... .......... .......... .......... .......... 27% 98.2M 1s
 26450K .......... .......... .......... .......... .......... 27%  100M 1s
 26500K .......... .......... .......... .......... .......... 27%  105M 1s
 26550K .......... .......... .......... .......... .......... 27% 97.7M 1s
 26600K .......... .......... .......... .......... .......... 27%  101M 1s
 26650K .......... .......... .......... .......... .......... 27% 97.8M 1s
 26700K .......... .......... .......... .......... .......... 27% 96.5M 1s
 26750K .......... .......... .......... .......... .......... 27% 75.6M 1s
 26800K .......... .......... .......... .......... .......... 27% 98.5M 1s
 26850K .......... .......... .......... .......... .......... 27%  103M 1s
 26900K .......... .......... .......... .......... .......... 27%  106M 1s
 26950K .......... .......... .......... .......... .......... 27% 98.7M 1s
 27000K .......... .......... .......... .......... .......... 27% 98.5M 1s
 27050K .......... .......... .......... .......... .......... 27%  106M 1s
 27100K .......... .......... .......... .......... .......... 27%  102M 1s
 27150K .......... .......... .......... .......... .......... 27% 74.1M 1s
 27200K .......... .......... .......... .......... .......... 28%  104M 1s
 27250K .......... .......... .......... .......... .......... 28%  102M 1s
 27300K .......... .......... .......... .......... .......... 28% 98.7M 1s
 27350K .......... .......... .......... .......... .......... 28%  101M 1s
 27400K .......... .......... .......... .......... .......... 28%  105M 1s
 27450K .......... .......... .......... .......... .......... 28%  102M 1s
 27500K .......... .......... .......... .......... .......... 28% 96.2M 1s
 27550K .......... .......... .......... .......... .......... 28% 75.9M 1s
 27600K .......... .......... .......... .......... .......... 28% 98.2M 1s
 27650K .......... .......... .......... .......... .......... 28%  102M 1s
 27700K .......... .......... .......... .......... .......... 28% 98.2M 1s
 27750K .......... .......... .......... .......... .......... 28%  105M 1s
 27800K .......... .......... .......... .......... .......... 28%  106M 1s
 27850K .......... .......... .......... .......... .......... 28% 99.9M 1s
 27900K .......... .......... .......... .......... .......... 28% 95.9M 1s
 27950K .......... .......... .......... .......... .......... 28% 77.6M 1s
 28000K .......... .......... .......... .......... .......... 28%  105M 1s
 28050K .......... .......... .......... .......... .......... 28%  105M 1s
 28100K .......... .......... .......... .......... .......... 28% 98.7M 1s
 28150K .......... .......... .......... .......... .......... 29% 98.7M 1s
 28200K .......... .......... .......... .......... .......... 29%  101M 1s
 28250K .......... .......... .......... .......... .......... 29%  101M 1s
 28300K .......... .......... .......... .......... .......... 29% 99.3M 1s
 28350K .......... .......... .......... .......... .......... 29% 75.5M 1s
 28400K .......... .......... .......... .......... .......... 29%  101M 1s
 28450K .......... .......... .......... .......... .......... 29% 99.0M 1s
 28500K .......... .......... .......... .......... .......... 29% 98.0M 1s
 28550K .......... .......... .......... .......... .......... 29%  105M 1s
 28600K .......... .......... .......... .......... .......... 29% 98.5M 1s
 28650K .......... .......... .......... .......... .......... 29%  102M 1s
 28700K .......... .......... .......... .......... .......... 29% 97.0M 1s
 28750K .......... .......... .......... .......... .......... 29% 73.5M 1s
 28800K .......... .......... .......... .......... .......... 29%  105M 1s
 28850K .......... .......... .......... .......... .......... 29% 97.8M 1s
 28900K .......... .......... .......... .......... .......... 29%  102M 1s
 28950K .......... .......... .......... .......... .......... 29%  102M 1s
 29000K .......... .......... .......... .......... .......... 29%  101M 1s
 29050K .......... .......... .......... .......... .......... 29%  102M 1s
 29100K .......... .......... .......... .......... .......... 29% 96.4M 1s
 29150K .......... .......... .......... .......... .......... 30% 79.0M 1s
 29200K .......... .......... .......... .......... .......... 30% 98.6M 1s
 29250K .......... .......... .......... .......... .......... 30% 97.9M 1s
 29300K .......... .......... .......... .......... .......... 30%  105M 1s
 29350K .......... .......... .......... .......... .......... 30% 91.9M 1s
 29400K .......... .......... .......... .......... .......... 30% 96.8M 1s
 29450K .......... .......... .......... .......... .......... 30% 99.9M 1s
 29500K .......... .......... .......... .......... .......... 30%  101M 1s
 29550K .......... .......... .......... .......... .......... 30% 54.2M 1s
 29600K .......... .......... .......... .......... .......... 30% 64.7M 1s
 29650K .......... .......... .......... .......... .......... 30% 89.7M 1s
 29700K .......... .......... .......... .......... .......... 30% 97.2M 1s
 29750K .......... .......... .......... .......... .......... 30%  102M 1s
 29800K .......... .......... .......... .......... .......... 30% 97.8M 1s
 29850K .......... .......... .......... .......... .......... 30% 98.5M 1s
 29900K .......... .......... .......... .......... .......... 30%  105M 1s
 29950K .......... .......... .......... .......... .......... 30% 75.9M 1s
 30000K .......... .......... .......... .......... .......... 30%  101M 1s
 30050K .......... .......... .......... .......... .......... 30%  102M 1s
 30100K .......... .......... .......... .......... .......... 31% 98.9M 1s
 30150K .......... .......... .......... .......... .......... 31%  102M 1s
 30200K .......... .......... .......... .......... .......... 31% 91.3M 1s
 30250K .......... .......... .......... .......... .......... 31%  103M 1s
 30300K .......... .......... .......... .......... .......... 31% 98.3M 1s
 30350K .......... .......... .......... .......... .......... 31% 76.9M 1s
 30400K .......... .......... .......... .......... .......... 31% 98.1M 1s
 30450K .......... .......... .......... .......... .......... 31%  102M 1s
 30500K .......... .......... .......... .......... .......... 31%  101M 1s
 30550K .......... .......... .......... .......... .......... 31%  102M 1s
 30600K .......... .......... .......... .......... .......... 31% 98.0M 1s
 30650K .......... .......... .......... .......... .......... 31% 99.2M 1s
 30700K .......... .......... .......... .......... .......... 31%  102M 1s
 30750K .......... .......... .......... .......... .......... 31% 73.6M 1s
 30800K .......... .......... .......... .......... .......... 31%  105M 1s
 30850K .......... .......... .......... .......... .......... 31%  103M 1s
 30900K .......... .......... .......... .......... .......... 31%  100M 1s
 30950K .......... .......... .......... .......... .......... 31%  101M 1s
 31000K .......... .......... .......... .......... .......... 31% 99.6M 1s
 31050K .......... .......... .......... .......... .......... 31%  102M 1s
 31100K .......... .......... .......... .......... .......... 32%  102M 1s
 31150K .......... .......... .......... .......... .......... 32% 75.7M 1s
 31200K .......... .......... .......... .......... .......... 32%  102M 1s
 31250K .......... .......... .......... .......... .......... 32%  101M 1s
 31300K .......... .......... .......... .......... .......... 32% 99.0M 1s
 31350K .......... .......... .......... .......... .......... 32%  101M 1s
 31400K .......... .......... .......... .......... .......... 32% 91.5M 1s
 31450K .......... .......... .......... .......... .......... 32%  105M 1s
 31500K .......... .......... .......... .......... .......... 32%  101M 1s
 31550K .......... .......... .......... .......... .......... 32% 77.4M 1s
 31600K .......... .......... .......... .......... .......... 32%  101M 1s
 31650K .......... .......... .......... .......... .......... 32%  101M 1s
 31700K .......... .......... .......... .......... .......... 32%  101M 1s
 31750K .......... .......... .......... .......... .......... 32%  100M 1s
 31800K .......... .......... .......... .......... .......... 32%  104M 1s
 31850K .......... .......... .......... .......... .......... 32%  102M 1s
 31900K .......... .......... .......... .......... .......... 32%  101M 1s
 31950K .......... .......... .......... .......... .......... 32% 75.3M 1s
 32000K .......... .......... .......... .......... .......... 32%  105M 1s
 32050K .......... .......... .......... .......... .......... 33%  105M 1s
 32100K .......... .......... .......... .......... .......... 33%  102M 1s
 32150K .......... .......... .......... .......... .......... 33% 96.7M 1s
 32200K .......... .......... .......... .......... .......... 33%  101M 1s
 32250K .......... .......... .......... .......... .......... 33%  105M 1s
 32300K .......... .......... .......... .......... .......... 33% 99.1M 1s
 32350K .......... .......... .......... .......... .......... 33% 76.9M 1s
 32400K .......... .......... .......... .......... .......... 33%  101M 1s
 32450K .......... .......... .......... .......... .......... 33%  105M 1s
 32500K .......... .......... .......... .......... .......... 33% 98.9M 1s
 32550K .......... .......... .......... .......... .......... 33% 99.4M 1s
 32600K .......... .......... .......... .......... .......... 33%  101M 1s
 32650K .......... .......... .......... .......... .......... 33%  105M 1s
 32700K .......... .......... .......... .......... .......... 33%  101M 1s
 32750K .......... .......... .......... .......... .......... 33% 77.7M 1s
 32800K .......... .......... .......... .......... .......... 33%  102M 1s
 32850K .......... .......... .......... .......... .......... 33%  105M 1s
 32900K .......... .......... .......... .......... .......... 33% 98.3M 1s
 32950K .......... .......... .......... .......... .......... 33%  102M 1s
 33000K .......... .......... .......... .......... .......... 33% 96.4M 1s
 33050K .......... .......... .......... .......... .......... 34%  105M 1s
 33100K .......... .......... .......... .......... .......... 34% 96.2M 1s
 33150K .......... .......... .......... .......... .......... 34% 78.3M 1s
 33200K .......... .......... .......... .......... .......... 34% 98.9M 1s
 33250K .......... .......... .......... .......... .......... 34%  105M 1s
 33300K .......... .......... .......... .......... .......... 34%  102M 1s
 33350K .......... .......... .......... .......... .......... 34%  100M 1s
 33400K .......... .......... .......... .......... .......... 34% 96.8M 1s
 33450K .......... .......... .......... .......... .......... 34% 98.5M 1s
 33500K .......... .......... .......... .......... .......... 34%  103M 1s
 33550K .......... .......... .......... .......... .......... 34% 75.4M 1s
 33600K .......... .......... .......... .......... .......... 34%  102M 1s
 33650K .......... .......... .......... .......... .......... 34%  103M 1s
 33700K .......... .......... .......... .......... .......... 34%  101M 1s
 33750K .......... .......... .......... .......... .......... 34%  103M 1s
 33800K .......... .......... .......... .......... .......... 34% 97.8M 1s
 33850K .......... .......... .......... .......... .......... 34%  102M 1s
 33900K .......... .......... .......... .......... .......... 34% 97.1M 1s
 33950K .......... .......... .......... .......... .......... 34% 73.9M 1s
 34000K .......... .......... .......... .......... .......... 35% 98.9M 1s
 34050K .......... .......... .......... .......... .......... 35%  105M 1s
 34100K .......... .......... .......... .......... .......... 35%  102M 1s
 34150K .......... .......... .......... .......... .......... 35%  102M 1s
 34200K .......... .......... .......... .......... .......... 35%  101M 1s
 34250K .......... .......... .......... .......... .......... 35%  104M 1s
 34300K .......... .......... .......... .......... .......... 35%  105M 1s
 34350K .......... .......... .......... .......... .......... 35% 75.6M 1s
 34400K .......... .......... .......... .......... .......... 35% 97.6M 1s
 34450K .......... .......... .......... .......... .......... 35%  102M 1s
 34500K .......... .......... .......... .......... .......... 35%  101M 1s
 34550K .......... .......... .......... .......... .......... 35% 78.2M 1s
 34600K .......... .......... .......... .......... .......... 35%  101M 1s
 34650K .......... .......... .......... .......... .......... 35% 97.1M 1s
 34700K .......... .......... .......... .......... .......... 35% 98.2M 1s
 34750K .......... .......... .......... .......... .......... 35% 76.8M 1s
 34800K .......... .......... .......... .......... .......... 35%  102M 1s
 34850K .......... .......... .......... .......... .......... 35%  101M 1s
 34900K .......... .......... .......... .......... .......... 35%  101M 1s
 34950K .......... .......... .......... .......... .......... 36% 97.4M 1s
 35000K .......... .......... .......... .......... .......... 36%  105M 1s
 35050K .......... .......... .......... .......... .......... 36% 98.7M 1s
 35100K .......... .......... .......... .......... .......... 36%  101M 1s
 35150K .......... .......... .......... .......... .......... 36% 77.3M 1s
 35200K .......... .......... .......... .......... .......... 36% 97.7M 1s
 35250K .......... .......... .......... .......... .......... 36%  100M 1s
 35300K .......... .......... .......... .......... .......... 36%  101M 1s
 35350K .......... .......... .......... .......... .......... 36%  100M 1s
 35400K .......... .......... .......... .......... .......... 36%  104M 1s
 35450K .......... .......... .......... .......... .......... 36% 98.8M 1s
 35500K .......... .......... .......... .......... .......... 36%  101M 1s
 35550K .......... .......... .......... .......... .......... 36% 79.3M 1s
 35600K .......... .......... .......... .......... .......... 36% 96.6M 1s
 35650K .......... .......... .......... .......... .......... 36%  101M 1s
 35700K .......... .......... .......... .......... .......... 36%  102M 1s
 35750K .......... .......... .......... .......... .......... 36% 99.8M 1s
 35800K .......... .......... .......... .......... .......... 36% 98.9M 1s
 35850K .......... .......... .......... .......... .......... 36% 98.2M 1s
 35900K .......... .......... .......... .......... .......... 36%  101M 1s
 35950K .......... .......... .......... .......... .......... 37% 79.2M 1s
 36000K .......... .......... .......... .......... .......... 37%  102M 1s
 36050K .......... .......... .......... .......... .......... 37%  105M 1s
 36100K .......... .......... .......... .......... .......... 37%  102M 1s
 36150K .......... .......... .......... .......... .......... 37% 97.1M 1s
 36200K .......... .......... .......... .......... .......... 37%  102M 1s
 36250K .......... .......... .......... .......... .......... 37%  104M 1s
 36300K .......... .......... .......... .......... .......... 37%  105M 1s
 36350K .......... .......... .......... .......... .......... 37% 75.8M 1s
 36400K .......... .......... .......... .......... .......... 37%  102M 1s
 36450K .......... .......... .......... .......... .......... 37%  101M 1s
 36500K .......... .......... .......... .......... .......... 37% 99.1M 1s
 36550K .......... .......... .......... .......... .......... 37% 97.3M 1s
 36600K .......... .......... .......... .......... .......... 37%  101M 1s
 36650K .......... .......... .......... .......... .......... 37%  104M 1s
 36700K .......... .......... .......... .......... .......... 37%  104M 1s
 36750K .......... .......... .......... .......... .......... 37% 74.0M 1s
 36800K .......... .......... .......... .......... .......... 37% 99.6M 1s
 36850K .......... .......... .......... .......... .......... 37%  101M 1s
 36900K .......... .......... .......... .......... .......... 38%  101M 1s
 36950K .......... .......... .......... .......... .......... 38% 96.5M 1s
 37000K .......... .......... .......... .......... .......... 38%  105M 1s
 37050K .......... .......... .......... .......... .......... 38%  105M 1s
 37100K .......... .......... .......... .......... .......... 38%  101M 1s
 37150K .......... .......... .......... .......... .......... 38% 74.6M 1s
 37200K .......... .......... .......... .......... .......... 38%  104M 1s
 37250K .......... .......... .......... .......... .......... 38%  102M 1s
 37300K .......... .......... .......... .......... .......... 38% 98.5M 1s
 37350K .......... .......... .......... .......... .......... 38% 91.0M 1s
 37400K .......... .......... .......... .......... .......... 38% 82.3M 1s
 37450K .......... .......... .......... .......... .......... 38%  103M 1s
 37500K .......... .......... .......... .......... .......... 38% 98.5M 1s
 37550K .......... .......... .......... .......... .......... 38% 77.4M 1s
 37600K .......... .......... .......... .......... .......... 38% 98.1M 1s
 37650K .......... .......... .......... .......... .......... 38% 98.1M 1s
 37700K .......... .......... .......... .......... .......... 38% 99.7M 1s
 37750K .......... .......... .......... .......... .......... 38% 99.2M 1s
 37800K .......... .......... .......... .......... .......... 38%  104M 1s
 37850K .......... .......... .......... .......... .......... 38%  106M 1s
 37900K .......... .......... .......... .......... .......... 39%  102M 1s
 37950K .......... .......... .......... .......... .......... 39% 75.0M 1s
 38000K .......... .......... .......... .......... .......... 39% 99.9M 1s
 38050K .......... .......... .......... .......... .......... 39%  101M 1s
 38100K .......... .......... .......... .......... .......... 39%  103M 1s
 38150K .......... .......... .......... .......... .......... 39%  104M 1s
 38200K .......... .......... .......... .......... .......... 39% 97.6M 1s
 38250K .......... .......... .......... .......... .......... 39% 98.6M 1s
 38300K .......... .......... .......... .......... .......... 39%  102M 1s
 38350K .......... .......... .......... .......... .......... 39% 75.6M 1s
 38400K .......... .......... .......... .......... .......... 39% 98.8M 1s
 38450K .......... .......... .......... .......... .......... 39%  104M 1s
 38500K .......... .......... .......... .......... .......... 39% 98.9M 1s
 38550K .......... .......... .......... .......... .......... 39% 97.3M 1s
 38600K .......... .......... .......... .......... .......... 39%  105M 1s
 38650K .......... .......... .......... .......... .......... 39% 98.5M 1s
 38700K .......... .......... .......... .......... .......... 39%  101M 1s
 38750K .......... .......... .......... .......... .......... 39% 75.7M 1s
 38800K .......... .......... .......... .......... .......... 39%  102M 1s
 38850K .......... .......... .......... .......... .......... 40%  103M 1s
 38900K .......... .......... .......... .......... .......... 40%  103M 1s
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 39050K .......... .......... .......... .......... .......... 40%  101M 1s
 39100K .......... .......... .......... .......... .......... 40%  102M 1s
 39150K .......... .......... .......... .......... .......... 40% 76.9M 1s
 39200K .......... .......... .......... .......... .......... 40%  105M 1s
 39250K .......... .......... .......... .......... .......... 40%  105M 1s
 39300K .......... .......... .......... .......... .......... 40%  103M 1s
 39350K .......... .......... .......... .......... .......... 40%  101M 1s
 39400K .......... .......... .......... .......... .......... 40% 98.6M 1s
 39450K .......... .......... .......... .......... .......... 40% 97.9M 1s
 39500K .......... .......... .......... .......... .......... 40%  102M 1s
 39550K .......... .......... .......... .......... .......... 40% 77.3M 1s
 39600K .......... .......... .......... .......... .......... 40%  102M 1s
 39650K .......... .......... .......... .......... .......... 40% 99.2M 1s
 39700K .......... .......... .......... .......... .......... 40% 99.1M 1s
 39750K .......... .......... .......... .......... .......... 40% 96.7M 1s
 39800K .......... .......... .......... .......... .......... 40%  103M 1s
 39850K .......... .......... .......... .......... .......... 41% 98.3M 1s
 39900K .......... .......... .......... .......... .......... 41%  102M 1s
 39950K .......... .......... .......... .......... .......... 41% 75.3M 1s
 40000K .......... .......... .......... .......... .......... 41%  104M 1s
 40050K .......... .......... .......... .......... .......... 41%  102M 1s
 40100K .......... .......... .......... .......... .......... 41% 99.6M 1s
 40150K .......... .......... .......... .......... .......... 41%  103M 1s
 40200K .......... .......... .......... .......... .......... 41%  104M 1s
 40250K .......... .......... .......... .......... .......... 41%  102M 1s
 40300K .......... .......... .......... .......... .......... 41%  102M 1s
 40350K .......... .......... .......... .......... .......... 41% 73.9M 1s
 40400K .......... .......... .......... .......... .......... 41%  105M 1s
 40450K .......... .......... .......... .......... .......... 41% 97.8M 1s
 40500K .......... .......... .......... .......... .......... 41%  103M 1s
 40550K .......... .......... .......... .......... .......... 41%  106M 1s
 40600K .......... .......... .......... .......... .......... 41% 97.2M 1s
 40650K .......... .......... .......... .......... .......... 41% 98.8M 1s
 40700K .......... .......... .......... .......... .......... 41%  100M 1s
 40750K .......... .......... .......... .......... .......... 41% 76.1M 1s
 40800K .......... .......... .......... .......... .......... 42%  101M 1s
 40850K .......... .......... .......... .......... .......... 42%  106M 1s
 40900K .......... .......... .......... .......... .......... 42% 89.7M 1s
 40950K .......... .......... .......... .......... .......... 42%  104M 1s
 41000K .......... .......... .......... .......... .......... 42%  101M 1s
 41050K .......... .......... .......... .......... .......... 42%  101M 1s
 41100K .......... .......... .......... .......... .......... 42%  103M 1s
 41150K .......... .......... .......... .......... .......... 42% 77.2M 1s
 41200K .......... .......... .......... .......... .......... 42% 90.8M 1s
 41250K .......... .......... .......... .......... .......... 42%  101M 1s
 41300K .......... .......... .......... .......... .......... 42%  101M 1s
 41350K .......... .......... .......... .......... .......... 42% 99.7M 1s
 41400K .......... .......... .......... .......... .......... 42%  101M 1s
 41450K .......... .......... .......... .......... .......... 42% 97.5M 1s
 41500K .......... .......... .......... .......... .......... 42%  101M 1s
 41550K .......... .......... .......... .......... .......... 42% 79.3M 1s
 41600K .......... .......... .......... .......... .......... 42% 93.2M 1s
 41650K .......... .......... .......... .......... .......... 42% 99.1M 1s
 41700K .......... .......... .......... .......... .......... 42% 97.2M 1s
 41750K .......... .......... .......... .......... .......... 42% 98.9M 1s
 41800K .......... .......... .......... .......... .......... 43%  101M 1s
 41850K .......... .......... .......... .......... .......... 43%  102M 1s
 41900K .......... .......... .......... .......... .......... 43% 65.0M 1s
 41950K .......... .......... .......... .......... .......... 43% 73.7M 1s
 42000K .......... .......... .......... .......... .......... 43% 76.3M 1s
 42050K .......... .......... .......... .......... .......... 43% 93.3M 1s
 42100K .......... .......... .......... .......... .......... 43%  104M 1s
 42150K .......... .......... .......... .......... .......... 43% 97.5M 1s
 42200K .......... .......... .......... .......... .......... 43%  100M 1s
 42250K .......... .......... .......... .......... .......... 43% 98.9M 1s
 42300K .......... .......... .......... .......... .......... 43% 98.1M 1s
 42350K .......... .......... .......... .......... .......... 43% 73.7M 1s
 42400K .......... .......... .......... .......... .......... 43% 97.8M 1s
 42450K .......... .......... .......... .......... .......... 43% 97.3M 1s
 42500K .......... .......... .......... .......... .......... 43%  104M 1s
 42550K .......... .......... .......... .......... .......... 43% 98.5M 1s
 42600K .......... .......... .......... .......... .......... 43%  105M 1s
 42650K .......... .......... .......... .......... .......... 43% 98.5M 1s
 42700K .......... .......... .......... .......... .......... 43% 97.0M 1s
 42750K .......... .......... .......... .......... .......... 44% 78.8M 1s
 42800K .......... .......... .......... .......... .......... 44% 98.6M 1s
 42850K .......... .......... .......... .......... .......... 44%  100M 1s
 42900K .......... .......... .......... .......... .......... 44%  105M 1s
 42950K .......... .......... .......... .......... .......... 44% 98.7M 1s
 43000K .......... .......... .......... .......... .......... 44% 98.5M 1s
 43050K .......... .......... .......... .......... .......... 44%  101M 1s
 43100K .......... .......... .......... .......... .......... 44%  102M 1s
 43150K .......... .......... .......... .......... .......... 44% 75.8M 1s
 43200K .......... .......... .......... .......... .......... 44% 95.4M 1s
 43250K .......... .......... .......... .......... .......... 44% 99.8M 1s
 43300K .......... .......... .......... .......... .......... 44% 97.0M 1s
 43350K .......... .......... .......... .......... .......... 44%  105M 1s
 43400K .......... .......... .......... .......... .......... 44%  102M 1s
 43450K .......... .......... .......... .......... .......... 44% 99.8M 1s
 43500K .......... .......... .......... .......... .......... 44%  104M 1s
 43550K .......... .......... .......... .......... .......... 44% 75.9M 1s
 43600K .......... .......... .......... .......... .......... 44% 96.9M 1s
 43650K .......... .......... .......... .......... .......... 44%  101M 1s
 43700K .......... .......... .......... .......... .......... 45%  101M 1s
 43750K .......... .......... .......... .......... .......... 45% 99.4M 1s
 43800K .......... .......... .......... .......... .......... 45%  102M 1s
 43850K .......... .......... .......... .......... .......... 45%  105M 1s
 43900K .......... .......... .......... .......... .......... 45%  102M 1s
 43950K .......... .......... .......... .......... .......... 45% 74.6M 1s
 44000K .......... .......... .......... .......... .......... 45%  102M 1s
 44050K .......... .......... .......... .......... .......... 45% 98.3M 1s
 44100K .......... .......... .......... .......... .......... 45%  101M 1s
 44150K .......... .......... .......... .......... .......... 45% 99.0M 1s
 44200K .......... .......... .......... .......... .......... 45%  100M 1s
 44250K .......... .......... .......... .......... .......... 45%  102M 1s
 44300K .......... .......... .......... .......... .......... 45%  101M 1s
 44350K .......... .......... .......... .......... .......... 45% 74.1M 1s
 44400K .......... .......... .......... .......... .......... 45% 96.7M 1s
 44450K .......... .......... .......... .......... .......... 45% 97.4M 1s
 44500K .......... .......... .......... .......... .......... 45% 98.7M 1s
 44550K .......... .......... .......... .......... .......... 45%  106M 1s
 44600K .......... .......... .......... .......... .......... 45% 98.5M 1s
 44650K .......... .......... .......... .......... .......... 45%  101M 1s
 44700K .......... .......... .......... .......... .......... 46%  106M 1s
 44750K .......... .......... .......... .......... .......... 46% 76.9M 1s
 44800K .......... .......... .......... .......... .......... 46%  103M 1s
 44850K .......... .......... .......... .......... .......... 46%  105M 1s
 44900K .......... .......... .......... .......... .......... 46% 98.5M 1s
 44950K .......... .......... .......... .......... .......... 46% 99.2M 1s
 45000K .......... .......... .......... .......... .......... 46%  102M 1s
 45050K .......... .......... .......... .......... .......... 46% 98.6M 1s
 45100K .......... .......... .......... .......... .......... 46% 98.6M 1s
 45150K .......... .......... .......... .......... .......... 46% 77.5M 1s
 45200K .......... .......... .......... .......... .......... 46%  102M 1s
 45250K .......... .......... .......... .......... .......... 46%  102M 1s
 45300K .......... .......... .......... .......... .......... 46%  102M 1s
 45350K .......... .......... .......... .......... .......... 46%  106M 1s
 45400K .......... .......... .......... .......... .......... 46%  102M 1s
 45450K .......... .......... .......... .......... .......... 46%  101M 1s
 45500K .......... .......... .......... .......... .......... 46%  101M 1s
 45550K .......... .......... .......... .......... .......... 46% 77.7M 1s
 45600K .......... .......... .......... .......... .......... 46% 96.5M 1s
 45650K .......... .......... .......... .......... .......... 47% 97.5M 1s
 45700K .......... .......... .......... .......... .......... 47%  104M 1s
 45750K .......... .......... .......... .......... .......... 47%  102M 1s
 45800K .......... .......... .......... .......... .......... 47%  101M 1s
 45850K .......... .......... .......... .......... .......... 47%  105M 1s
 45900K .......... .......... .......... .......... .......... 47%  103M 1s
 45950K .......... .......... .......... .......... .......... 47% 75.3M 1s
 46000K .......... .......... .......... .......... .......... 47% 99.4M 1s
 46050K .......... .......... .......... .......... .......... 47%  104M 1s
 46100K .......... .......... .......... .......... .......... 47%  105M 1s
 46150K .......... .......... .......... .......... .......... 47% 99.7M 1s
 46200K .......... .......... .......... .......... .......... 47% 99.7M 1s
 46250K .......... .......... .......... .......... .......... 47%  102M 1s
 46300K .......... .......... .......... .......... .......... 47%  102M 1s
 46350K .......... .......... .......... .......... .......... 47% 75.2M 1s
 46400K .......... .......... .......... .......... .......... 47%  100M 1s
 46450K .......... .......... .......... .......... .......... 47%  104M 1s
 46500K .......... .......... .......... .......... .......... 47%  101M 1s
 46550K .......... .......... .......... .......... .......... 47%  106M 1s
 46600K .......... .......... .......... .......... .......... 47%  101M 1s
 46650K .......... .......... .......... .......... .......... 48% 98.3M 1s
 46700K .......... .......... .......... .......... .......... 48%  102M 1s
 46750K .......... .......... .......... .......... .......... 48% 71.1M 1s
 46800K .......... .......... .......... .......... .......... 48% 95.9M 1s
 46850K .......... .......... .......... .......... .......... 48% 98.5M 1s
 46900K .......... .......... .......... .......... .......... 48%  102M 1s
 46950K .......... .......... .......... .......... .......... 48%  102M 1s
 47000K .......... .......... .......... .......... .......... 48% 98.2M 1s
 47050K .......... .......... .......... .......... .......... 48%  105M 1s
 47100K .......... .......... .......... .......... .......... 48%  101M 1s
 47150K .......... .......... .......... .......... .......... 48% 73.2M 1s
 47200K .......... .......... .......... .......... .......... 48%  102M 1s
 47250K .......... .......... .......... .......... .......... 48%  100M 1s
 47300K .......... .......... .......... .......... .......... 48% 98.5M 1s
 47350K .......... .......... .......... .......... .......... 48%  106M 1s
 47400K .......... .......... .......... .......... .......... 48%  105M 1s
 47450K .......... .......... .......... .......... .......... 48%  106M 1s
 47500K .......... .......... .......... .......... .......... 48%  100M 1s
 47550K .......... .......... .......... .......... .......... 48% 71.1M 1s
 47600K .......... .......... .......... .......... .......... 49% 98.0M 1s
 47650K .......... .......... .......... .......... .......... 49%  102M 1s
 47700K .......... .......... .......... .......... .......... 49%  102M 1s
 47750K .......... .......... .......... .......... .......... 49%  102M 1s
 47800K .......... .......... .......... .......... .......... 49% 99.3M 1s
 47850K .......... .......... .......... .......... .......... 49%  102M 1s
 47900K .......... .......... .......... .......... .......... 49%  104M 1s
 47950K .......... .......... .......... .......... .......... 49% 73.2M 1s
 48000K .......... .......... .......... .......... .......... 49% 97.9M 1s
 48050K .......... .......... .......... .......... .......... 49%  102M 1s
 48100K .......... .......... .......... .......... .......... 49%  102M 1s
 48150K .......... .......... .......... .......... .......... 49%  101M 1s
 48200K .......... .......... .......... .......... .......... 49%  102M 1s
 48250K .......... .......... .......... .......... .......... 49%  101M 1s
 48300K .......... .......... .......... .......... .......... 49%  101M 1s
 48350K .......... .......... .......... .......... .......... 49% 76.0M 1s
 48400K .......... .......... .......... .......... .......... 49% 98.7M 1s
 48450K .......... .......... .......... .......... .......... 49% 98.3M 1s
 48500K .......... .......... .......... .......... .......... 49%  104M 1s
 48550K .......... .......... .......... .......... .......... 49% 99.1M 1s
 48600K .......... .......... .......... .......... .......... 50%  104M 1s
 48650K .......... .......... .......... .......... .......... 50%  106M 1s
 48700K .......... .......... .......... .......... .......... 50%  101M 1s
 48750K .......... .......... .......... .......... .......... 50% 74.2M 1s
 48800K .......... .......... .......... .......... .......... 50%  104M 1s
 48850K .......... .......... .......... .......... .......... 50%  102M 1s
 48900K .......... .......... .......... .......... .......... 50%  102M 1s
 48950K .......... .......... .......... .......... .......... 50% 96.9M 1s
 49000K .......... .......... .......... .......... .......... 50% 98.7M 1s
 49050K .......... .......... .......... .......... .......... 50%  105M 1s
 49100K .......... .......... .......... .......... .......... 50% 98.4M 1s
 49150K .......... .......... .......... .......... .......... 50% 74.0M 1s
 49200K .......... .......... .......... .......... .......... 50% 99.6M 1s
 49250K .......... .......... .......... .......... .......... 50%  101M 1s
 49300K .......... .......... .......... .......... .......... 50%  101M 1s
 49350K .......... .......... .......... .......... .......... 50%  102M 1s
 49400K .......... .......... .......... .......... .......... 50% 98.6M 1s
 49450K .......... .......... .......... .......... .......... 50%  105M 1s
 49500K .......... .......... .......... .......... .......... 50%  101M 1s
 49550K .......... .......... .......... .......... .......... 51% 73.6M 1s
 49600K .......... .......... .......... .......... .......... 51%  102M 1s
 49650K .......... .......... .......... .......... .......... 51%  101M 1s
 49700K .......... .......... .......... .......... .......... 51%  106M 1s
 49750K .......... .......... .......... .......... .......... 51% 99.0M 1s
 49800K .......... .......... .......... .......... .......... 51%  101M 1s
 49850K .......... .......... .......... .......... .......... 51%  102M 1s
 49900K .......... .......... .......... .......... .......... 51%  105M 1s
 49950K .......... .......... .......... .......... .......... 51% 76.5M 1s
 50000K .......... .......... .......... .......... .......... 51%  101M 1s
 50050K .......... .......... .......... .......... .......... 51%  105M 1s
 50100K .......... .......... .......... .......... .......... 51%  105M 1s
 50150K .......... .......... .......... .......... .......... 51% 99.4M 1s
 50200K .......... .......... .......... .......... .......... 51% 98.8M 1s
 50250K .......... .......... .......... .......... .......... 51%  101M 1s
 50300K .......... .......... .......... .......... .......... 51%  102M 1s
 50350K .......... .......... .......... .......... .......... 51% 75.8M 1s
 50400K .......... .......... .......... .......... .......... 51% 96.8M 1s
 50450K .......... .......... .......... .......... .......... 51%  105M 1s
 50500K .......... .......... .......... .......... .......... 51%  105M 1s
 50550K .......... .......... .......... .......... .......... 52% 99.3M 1s
 50600K .......... .......... .......... .......... .......... 52%  101M 1s
 50650K .......... .......... .......... .......... .......... 52%  105M 1s
 50700K .......... .......... .......... .......... .......... 52% 98.7M 1s
 50750K .......... .......... .......... .......... .......... 52% 75.6M 1s
 50800K .......... .......... .......... .......... .......... 52%  101M 1s
 50850K .......... .......... .......... .......... .......... 52%  102M 1s
 50900K .......... .......... .......... .......... .......... 52%  103M 1s
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 51000K .......... .......... .......... .......... .......... 52%  104M 1s
 51050K .......... .......... .......... .......... .......... 52%  102M 1s
 51100K .......... .......... .......... .......... .......... 52%  102M 1s
 51150K .......... .......... .......... .......... .......... 52% 74.6M 1s
 51200K .......... .......... .......... .......... .......... 52% 98.0M 1s
 51250K .......... .......... .......... .......... .......... 52%  101M 1s
 51300K .......... .......... .......... .......... .......... 52%  101M 1s
 51350K .......... .......... .......... .......... .......... 52%  102M 1s
 51400K .......... .......... .......... .......... .......... 52%  106M 1s
 51450K .......... .......... .......... .......... .......... 52% 99.0M 1s
 51500K .......... .......... .......... .......... .......... 53% 97.7M 1s
 51550K .......... .......... .......... .......... .......... 53% 73.0M 1s
 51600K .......... .......... .......... .......... .......... 53%  104M 1s
 51650K .......... .......... .......... .......... .......... 53% 98.5M 1s
 51700K .......... .......... .......... .......... .......... 53% 98.7M 1s
 51750K .......... .......... .......... .......... .......... 53%  100M 1s
 51800K .......... .......... .......... .......... .......... 53%  106M 1s
 51850K .......... .......... .......... .......... .......... 53%  102M 1s
 51900K .......... .......... .......... .......... .......... 53% 99.1M 1s
 51950K .......... .......... .......... .......... .......... 53% 74.3M 1s
 52000K .......... .......... .......... .......... .......... 53% 98.1M 1s
 52050K .......... .......... .......... .......... .......... 53%  101M 1s
 52100K .......... .......... .......... .......... .......... 53%  103M 1s
 52150K .......... .......... .......... .......... .......... 53%  104M 1s
 52200K .......... .......... .......... .......... .......... 53% 99.1M 1s
 52250K .......... .......... .......... .......... .......... 53%  102M 1s
 52300K .......... .......... .......... .......... .......... 53%  104M 1s
 52350K .......... .......... .......... .......... .......... 53% 73.0M 1s
 52400K .......... .......... .......... .......... .......... 53%  105M 1s
 52450K .......... .......... .......... .......... .......... 54% 98.4M 1s
 52500K .......... .......... .......... .......... .......... 54% 98.6M 1s
 52550K .......... .......... .......... .......... .......... 54%  103M 1s
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 52750K .......... .......... .......... .......... .......... 54% 73.4M 1s
 52800K .......... .......... .......... .......... .......... 54%  101M 1s
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 53000K .......... .......... .......... .......... .......... 54%  102M 1s
 53050K .......... .......... .......... .......... .......... 54% 97.8M 1s
 53100K .......... .......... .......... .......... .......... 54%  101M 1s
 53150K .......... .......... .......... .......... .......... 54% 75.8M 1s
 53200K .......... .......... .......... .......... .......... 54%  105M 1s
 53250K .......... .......... .......... .......... .......... 54% 98.4M 1s
 53300K .......... .......... .......... .......... .......... 54%  100M 1s
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 53400K .......... .......... .......... .......... .......... 54%  106M 1s
 53450K .......... .......... .......... .......... .......... 55%  102M 1s
 53500K .......... .......... .......... .......... .......... 55% 97.4M 1s
 53550K .......... .......... .......... .......... .......... 55% 74.0M 1s
 53600K .......... .......... .......... .......... .......... 55% 98.5M 1s
 53650K .......... .......... .......... .......... .......... 55% 93.0M 1s
 53700K .......... .......... .......... .......... .......... 55% 82.8M 1s
 53750K .......... .......... .......... .......... .......... 55%  103M 1s
 53800K .......... .......... .......... .......... .......... 55% 95.6M 1s
 53850K .......... .......... .......... .......... .......... 55%  101M 1s
 53900K .......... .......... .......... .......... .......... 55% 95.2M 1s
 53950K .......... .......... .......... .......... .......... 55% 75.3M 1s
 54000K .......... .......... .......... .......... .......... 55%  101M 1s
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 54300K .......... .......... .......... .......... .......... 55% 96.3M 1s
 54350K .......... .......... .......... .......... .......... 55% 75.1M 1s
 54400K .......... .......... .......... .......... .......... 56%  101M 1s
 54450K .......... .......... .......... .......... .......... 56% 98.3M 1s
 54500K .......... .......... .......... .......... .......... 56% 98.6M 1s
 54550K .......... .......... .......... .......... .......... 56%  101M 1s
 54600K .......... .......... .......... .......... .......... 56% 99.0M 1s
 54650K .......... .......... .......... .......... .......... 56%  101M 1s
 54700K .......... .......... .......... .......... .......... 56% 99.1M 1s
 54750K .......... .......... .......... .......... .......... 56% 75.1M 1s
 54800K .......... .......... .......... .......... .......... 56% 97.5M 1s
 54850K .......... .......... .......... .......... .......... 56% 99.0M 1s
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 55100K .......... .......... .......... .......... .......... 56% 95.2M 1s
 55150K .......... .......... .......... .......... .......... 56% 75.9M 1s
 55200K .......... .......... .......... .......... .......... 56%  105M 1s
 55250K .......... .......... .......... .......... .......... 56% 97.9M 1s
 55300K .......... .......... .......... .......... .......... 56%  101M 1s
 55350K .......... .......... .......... .......... .......... 56% 98.5M 1s
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 55500K .......... .......... .......... .......... .......... 57% 96.4M 1s
 55550K .......... .......... .......... .......... .......... 57% 79.2M 1s
 55600K .......... .......... .......... .......... .......... 57%  102M 1s
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 55900K .......... .......... .......... .......... .......... 57% 97.6M 1s
 55950K .......... .......... .......... .......... .......... 57% 75.6M 1s
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 56300K .......... .......... .......... .......... .......... 57% 93.2M 1s
 56350K .......... .......... .......... .......... .......... 58% 77.0M 1s
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 56700K .......... .......... .......... .......... .......... 58% 99.5M 1s
 56750K .......... .......... .......... .......... .......... 58% 75.8M 1s
 56800K .......... .......... .......... .......... .......... 58%  100M 1s
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 57000K .......... .......... .......... .......... .......... 58% 98.8M 1s
 57050K .......... .......... .......... .......... .......... 58%  103M 1s
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 57150K .......... .......... .......... .......... .......... 58% 75.8M 1s
 57200K .......... .......... .......... .......... .......... 58% 98.3M 1s
 57250K .......... .......... .......... .......... .......... 58% 99.8M 1s
 57300K .......... .......... .......... .......... .......... 58% 93.7M 1s
 57350K .......... .......... .......... .......... .......... 59%  100M 1s
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 57500K .......... .......... .......... .......... .......... 59% 96.3M 1s
 57550K .......... .......... .......... .......... .......... 59% 76.9M 1s
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 57850K .......... .......... .......... .......... .......... 59% 96.6M 1s
 57900K .......... .......... .......... .......... .......... 59%  104M 1s
 57950K .......... .......... .......... .......... .......... 59% 77.9M 1s
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 58300K .......... .......... .......... .......... .......... 60% 96.4M 1s
 58350K .......... .......... .......... .......... .......... 60% 75.6M 1s
 58400K .......... .......... .......... .......... .......... 60%  105M 1s
 58450K .......... .......... .......... .......... .......... 60%  102M 1s
 58500K .......... .......... .......... .......... .......... 60% 98.6M 1s
 58550K .......... .......... .......... .......... .......... 60%  101M 1s
 58600K .......... .......... .......... .......... .......... 60%  102M 1s
 58650K .......... .......... .......... .......... .......... 60% 97.9M 1s
 58700K .......... .......... .......... .......... .......... 60% 98.1M 1s
 58750K .......... .......... .......... .......... .......... 60% 74.1M 1s
 58800K .......... .......... .......... .......... .......... 60% 97.1M 1s
 58850K .......... .......... .......... .......... .......... 60%  101M 1s
 58900K .......... .......... .......... .......... .......... 60%  101M 1s
 58950K .......... .......... .......... .......... .......... 60%  103M 1s
 59000K .......... .......... .......... .......... .......... 60%  101M 1s
 59050K .......... .......... .......... .......... .......... 60% 98.6M 1s
 59100K .......... .......... .......... .......... .......... 60% 98.5M 1s
 59150K .......... .......... .......... .......... .......... 60% 77.6M 1s
 59200K .......... .......... .......... .......... .......... 60%  105M 1s
 59250K .......... .......... .......... .......... .......... 60% 99.3M 1s
 59300K .......... .......... .......... .......... .......... 61%  101M 0s
 59350K .......... .......... .......... .......... .......... 61%  102M 0s
 59400K .......... .......... .......... .......... .......... 61%  101M 0s
 59450K .......... .......... .......... .......... .......... 61% 99.4M 0s
 59500K .......... .......... .......... .......... .......... 61%  102M 0s
 59550K .......... .......... .......... .......... .......... 61% 76.5M 0s
 59600K .......... .......... .......... .......... .......... 61%  102M 0s
 59650K .......... .......... .......... .......... .......... 61% 98.8M 0s
 59700K .......... .......... .......... .......... .......... 61%  105M 0s
 59750K .......... .......... .......... .......... .......... 61%  106M 0s
 59800K .......... .......... .......... .......... .......... 61% 98.1M 0s
 59850K .......... .......... .......... .......... .......... 61% 95.3M 0s
 59900K .......... .......... .......... .......... .......... 61%  101M 0s
 59950K .......... .......... .......... .......... .......... 61% 74.1M 0s
 60000K .......... .......... .......... .......... .......... 61%  104M 0s
 60050K .......... .......... .......... .......... .......... 61%  101M 0s
 60100K .......... .......... .......... .......... .......... 61%  100M 0s
 60150K .......... .......... .......... .......... .......... 61%  102M 0s
 60200K .......... .......... .......... .......... .......... 61%  102M 0s
 60250K .......... .......... .......... .......... .......... 62%  100M 0s
 60300K .......... .......... .......... .......... .......... 62%  101M 0s
 60350K .......... .......... .......... .......... .......... 62% 75.1M 0s
 60400K .......... .......... .......... .......... .......... 62%  102M 0s
 60450K .......... .......... .......... .......... .......... 62% 97.5M 0s
 60500K .......... .......... .......... .......... .......... 62%  102M 0s
 60550K .......... .......... .......... .......... .......... 62%  101M 0s
 60600K .......... .......... .......... .......... .......... 62% 98.3M 0s
 60650K .......... .......... .......... .......... .......... 62% 95.9M 0s
 60700K .......... .......... .......... .......... .......... 62%  102M 0s
 60750K .......... .......... .......... .......... .......... 62% 76.9M 0s
 60800K .......... .......... .......... .......... .......... 62%  101M 0s
 60850K .......... .......... .......... .......... .......... 62%  101M 0s
 60900K .......... .......... .......... .......... .......... 62%  102M 0s
 60950K .......... .......... .......... .......... .......... 62% 99.1M 0s
 61000K .......... .......... .......... .......... .......... 62%  101M 0s
 61050K .......... .......... .......... .......... .......... 62%  101M 0s
 61100K .......... .......... .......... .......... .......... 62%  105M 0s
 61150K .......... .......... .......... .......... .......... 62% 77.8M 0s
 61200K .......... .......... .......... .......... .......... 63%  102M 0s
 61250K .......... .......... .......... .......... .......... 63%  102M 0s
 61300K .......... .......... .......... .......... .......... 63%  101M 0s
 61350K .......... .......... .......... .......... .......... 63%  102M 0s
 61400K .......... .......... .......... .......... .......... 63%  102M 0s
 61450K .......... .......... .......... .......... .......... 63%  102M 0s
 61500K .......... .......... .......... .......... .......... 63%  101M 0s
 61550K .......... .......... .......... .......... .......... 63% 77.9M 0s
 61600K .......... .......... .......... .......... .......... 63% 98.0M 0s
 61650K .......... .......... .......... .......... .......... 63%  101M 0s
 61700K .......... .......... .......... .......... .......... 63%  106M 0s
 61750K .......... .......... .......... .......... .......... 63% 96.1M 0s
 61800K .......... .......... .......... .......... .......... 63% 97.6M 0s
 61850K .......... .......... .......... .......... .......... 63% 99.0M 0s
 61900K .......... .......... .......... .......... .......... 63%  100M 0s
 61950K .......... .......... .......... .......... .......... 63% 75.0M 0s
 62000K .......... .......... .......... .......... .......... 63% 98.3M 0s
 62050K .......... .......... .......... .......... .......... 63% 98.4M 0s
 62100K .......... .......... .......... .......... .......... 63%  104M 0s
 62150K .......... .......... .......... .......... .......... 63%  102M 0s
 62200K .......... .......... .......... .......... .......... 64% 98.6M 0s
 62250K .......... .......... .......... .......... .......... 64% 98.3M 0s
 62300K .......... .......... .......... .......... .......... 64%  101M 0s
 62350K .......... .......... .......... .......... .......... 64% 78.9M 0s
 62400K .......... .......... .......... .......... .......... 64%  102M 0s
 62450K .......... .......... .......... .......... .......... 64%  101M 0s
 62500K .......... .......... .......... .......... .......... 64%  102M 0s
 62550K .......... .......... .......... .......... .......... 64%  103M 0s
 62600K .......... .......... .......... .......... .......... 64%  101M 0s
 62650K .......... .......... .......... .......... .......... 64% 99.3M 0s
 62700K .......... .......... .......... .......... .......... 64% 98.2M 0s
 62750K .......... .......... .......... .......... .......... 64% 77.7M 0s
 62800K .......... .......... .......... .......... .......... 64%  102M 0s
 62850K .......... .......... .......... .......... .......... 64% 98.1M 0s
 62900K .......... .......... .......... .......... .......... 64%  105M 0s
 62950K .......... .......... .......... .......... .......... 64%  106M 0s
 63000K .......... .......... .......... .......... .......... 64%  102M 0s
 63050K .......... .......... .......... .......... .......... 64% 99.4M 0s
 63100K .......... .......... .......... .......... .......... 64%  103M 0s
 63150K .......... .......... .......... .......... .......... 65% 75.8M 0s
 63200K .......... .......... .......... .......... .......... 65%  105M 0s
 63250K .......... .......... .......... .......... .......... 65%  101M 0s
 63300K .......... .......... .......... .......... .......... 65% 99.6M 0s
 63350K .......... .......... .......... .......... .......... 65% 98.1M 0s
 63400K .......... .......... .......... .......... .......... 65%  101M 0s
 63450K .......... .......... .......... .......... .......... 65% 95.7M 0s
 63500K .......... .......... .......... .......... .......... 65%  102M 0s
 63550K .......... .......... .......... .......... .......... 65% 77.4M 0s
 63600K .......... .......... .......... .......... .......... 65% 98.1M 0s
 63650K .......... .......... .......... .......... .......... 65%  100M 0s
 63700K .......... .......... .......... .......... .......... 65%  102M 0s
 63750K .......... .......... .......... .......... .......... 65%  103M 0s
 63800K .......... .......... .......... .......... .......... 65%  105M 0s
 63850K .......... .......... .......... .......... .......... 65% 98.9M 0s
 63900K .......... .......... .......... .......... .......... 65%  103M 0s
 63950K .......... .......... .......... .......... .......... 65% 74.0M 0s
 64000K .......... .......... .......... .......... .......... 65%  100M 0s
 64050K .......... .......... .......... .......... .......... 65%  102M 0s
 64100K .......... .......... .......... .......... .......... 65%  104M 0s
 64150K .......... .......... .......... .......... .......... 66% 98.0M 0s
 64200K .......... .......... .......... .......... .......... 66%  102M 0s
 64250K .......... .......... .......... .......... .......... 66% 95.8M 0s
 64300K .......... .......... .......... .......... .......... 66%  105M 0s
 64350K .......... .......... .......... .......... .......... 66% 73.3M 0s
 64400K .......... .......... .......... .......... .......... 66%  102M 0s
 64450K .......... .......... .......... .......... .......... 66%  102M 0s
 64500K .......... .......... .......... .......... .......... 66% 98.0M 0s
 64550K .......... .......... .......... .......... .......... 66% 99.2M 0s
 64600K .......... .......... .......... .......... .......... 66% 97.0M 0s
 64650K .......... .......... .......... .......... .......... 66% 98.1M 0s
 64700K .......... .......... .......... .......... .......... 66%  101M 0s
 64750K .......... .......... .......... .......... .......... 66% 75.6M 0s
 64800K .......... .......... .......... .......... .......... 66%  105M 0s
 64850K .......... .......... .......... .......... .......... 66%  105M 0s
 64900K .......... .......... .......... .......... .......... 66% 98.8M 0s
 64950K .......... .......... .......... .......... .......... 66%  105M 0s
 65000K .......... .......... .......... .......... .......... 66%  100M 0s
 65050K .......... .......... .......... .......... .......... 66% 97.4M 0s
 65100K .......... .......... .......... .......... .......... 67%  104M 0s
 65150K .......... .......... .......... .......... .......... 67% 76.0M 0s
 65200K .......... .......... .......... .......... .......... 67% 98.9M 0s
 65250K .......... .......... .......... .......... .......... 67%  102M 0s
 65300K .......... .......... .......... .......... .......... 67% 98.7M 0s
 65350K .......... .......... .......... .......... .......... 67%  101M 0s
 65400K .......... .......... .......... .......... .......... 67% 99.1M 0s
 65450K .......... .......... .......... .......... .......... 67%  102M 0s
 65500K .......... .......... .......... .......... .......... 67%  105M 0s
 65550K .......... .......... .......... .......... .......... 67% 75.7M 0s
 65600K .......... .......... .......... .......... .......... 67%  101M 0s
 65650K .......... .......... .......... .......... .......... 67%  102M 0s
 65700K .......... .......... .......... .......... .......... 67%  105M 0s
 65750K .......... .......... .......... .......... .......... 67% 98.4M 0s
 65800K .......... .......... .......... .......... .......... 67% 95.8M 0s
 65850K .......... .......... .......... .......... .......... 67%  102M 0s
 65900K .......... .......... .......... .......... .......... 67%  102M 0s
 65950K .......... .......... .......... .......... .......... 67% 74.8M 0s
 66000K .......... .......... .......... .......... .......... 67% 99.0M 0s
 66050K .......... .......... .......... .......... .......... 67%  104M 0s
 66100K .......... .......... .......... .......... .......... 68%  102M 0s
 66150K .......... .......... .......... .......... .......... 68%  101M 0s
 66200K .......... .......... .......... .......... .......... 68%  103M 0s
 66250K .......... .......... .......... .......... .......... 68%  100M 0s
 66300K .......... .......... .......... .......... .......... 68%  101M 0s
 66350K .......... .......... .......... .......... .......... 68% 73.6M 0s
 66400K .......... .......... .......... .......... .......... 68%  102M 0s
 66450K .......... .......... .......... .......... .......... 68% 98.2M 0s
 66500K .......... .......... .......... .......... .......... 68%  102M 0s
 66550K .......... .......... .......... .......... .......... 68%  102M 0s
 66600K .......... .......... .......... .......... .......... 68% 99.3M 0s
 66650K .......... .......... .......... .......... .......... 68%  101M 0s
 66700K .......... .......... .......... .......... .......... 68%  102M 0s
 66750K .......... .......... .......... .......... .......... 68% 77.4M 0s
 66800K .......... .......... .......... .......... .......... 68%  105M 0s
 66850K .......... .......... .......... .......... .......... 68% 98.1M 0s
 66900K .......... .......... .......... .......... .......... 68%  101M 0s
 66950K .......... .......... .......... .......... .......... 68%  102M 0s
 67000K .......... .......... .......... .......... .......... 68% 93.0M 0s
 67050K .......... .......... .......... .......... .......... 69% 99.4M 0s
 67100K .......... .......... .......... .......... .......... 69%  101M 0s
 67150K .......... .......... .......... .......... .......... 69% 77.8M 0s
 67200K .......... .......... .......... .......... .......... 69% 99.1M 0s
 67250K .......... .......... .......... .......... .......... 69%  101M 0s
 67300K .......... .......... .......... .......... .......... 69%  102M 0s
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 67400K .......... .......... .......... .......... .......... 69% 97.1M 0s
 67450K .......... .......... .......... .......... .......... 69% 98.3M 0s
 67500K .......... .......... .......... .......... .......... 69%  105M 0s
 67550K .......... .......... .......... .......... .......... 69% 78.0M 0s
 67600K .......... .......... .......... .......... .......... 69%  101M 0s
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 67900K .......... .......... .......... .......... .......... 69% 98.0M 0s
 67950K .......... .......... .......... .......... .......... 69% 76.8M 0s
 68000K .......... .......... .......... .......... .......... 69%  106M 0s
 68050K .......... .......... .......... .......... .......... 70%  102M 0s
 68100K .......... .......... .......... .......... .......... 70%  101M 0s
 68150K .......... .......... .......... .......... .......... 70%  105M 0s
 68200K .......... .......... .......... .......... .......... 70% 97.3M 0s
 68250K .......... .......... .......... .......... .......... 70% 99.0M 0s
 68300K .......... .......... .......... .......... .......... 70%  101M 0s
 68350K .......... .......... .......... .......... .......... 70% 77.0M 0s
 68400K .......... .......... .......... .......... .......... 70% 99.8M 0s
 68450K .......... .......... .......... .......... .......... 70% 99.3M 0s
 68500K .......... .......... .......... .......... .......... 70%  101M 0s
 68550K .......... .......... .......... .......... .......... 70% 91.5M 0s
 68600K .......... .......... .......... .......... .......... 70% 78.8M 0s
 68650K .......... .......... .......... .......... .......... 70% 99.7M 0s
 68700K .......... .......... .......... .......... .......... 70%  102M 0s
 68750K .......... .......... .......... .......... .......... 70% 77.2M 0s
 68800K .......... .......... .......... .......... .......... 70% 99.1M 0s
 68850K .......... .......... .......... .......... .......... 70%  101M 0s
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 68950K .......... .......... .......... .......... .......... 70%  103M 0s
 69000K .......... .......... .......... .......... .......... 71%  101M 0s
 69050K .......... .......... .......... .......... .......... 71% 98.1M 0s
 69100K .......... .......... .......... .......... .......... 71%  102M 0s
 69150K .......... .......... .......... .......... .......... 71% 76.6M 0s
 69200K .......... .......... .......... .......... .......... 71% 98.9M 0s
 69250K .......... .......... .......... .......... .......... 71%  101M 0s
 69300K .......... .......... .......... .......... .......... 71%  101M 0s
 69350K .......... .......... .......... .......... .......... 71% 97.7M 0s
 69400K .......... .......... .......... .......... .......... 71% 96.2M 0s
 69450K .......... .......... .......... .......... .......... 71%  101M 0s
 69500K .......... .......... .......... .......... .......... 71%  104M 0s
 69550K .......... .......... .......... .......... .......... 71% 77.5M 0s
 69600K .......... .......... .......... .......... .......... 71%  102M 0s
 69650K .......... .......... .......... .......... .......... 71%  101M 0s
 69700K .......... .......... .......... .......... .......... 71%  104M 0s
 69750K .......... .......... .......... .......... .......... 71% 97.0M 0s
 69800K .......... .......... .......... .......... .......... 71%  102M 0s
 69850K .......... .......... .......... .......... .......... 71%  103M 0s
 69900K .......... .......... .......... .......... .......... 71% 87.1M 0s
 69950K .......... .......... .......... .......... .......... 72% 75.5M 0s
 70000K .......... .......... .......... .......... .......... 72%  101M 0s
 70050K .......... .......... .......... .......... .......... 72% 97.6M 0s
 70100K .......... .......... .......... .......... .......... 72%  101M 0s
 70150K .......... .......... .......... .......... .......... 72% 95.5M 0s
 70200K .......... .......... .......... .......... .......... 72% 98.0M 0s
 70250K .......... .......... .......... .......... .......... 72%  101M 0s
 70300K .......... .......... .......... .......... .......... 72% 98.6M 0s
 70350K .......... .......... .......... .......... .......... 72% 75.4M 0s
 70400K .......... .......... .......... .......... .......... 72%  104M 0s
 70450K .......... .......... .......... .......... .......... 72%  102M 0s
 70500K .......... .......... .......... .......... .......... 72% 96.4M 0s
 70550K .......... .......... .......... .......... .......... 72% 93.3M 0s
 70600K .......... .......... .......... .......... .......... 72% 97.5M 0s
 70650K .......... .......... .......... .......... .......... 72%  104M 0s
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 70750K .......... .......... .......... .......... .......... 72% 75.4M 0s
 70800K .......... .......... .......... .......... .......... 72%  101M 0s
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 70900K .......... .......... .......... .......... .......... 72%  101M 0s
 70950K .......... .......... .......... .......... .......... 73% 95.0M 0s
 71000K .......... .......... .......... .......... .......... 73% 98.6M 0s
 71050K .......... .......... .......... .......... .......... 73%  102M 0s
 71100K .......... .......... .......... .......... .......... 73%  101M 0s
 71150K .......... .......... .......... .......... .......... 73% 76.9M 0s
 71200K .......... .......... .......... .......... .......... 73% 98.5M 0s
 71250K .......... .......... .......... .......... .......... 73% 98.5M 0s
 71300K .......... .......... .......... .......... .......... 73% 97.6M 0s
 71350K .......... .......... .......... .......... .......... 73%  105M 0s
 71400K .......... .......... .......... .......... .......... 73%  101M 0s
 71450K .......... .......... .......... .......... .......... 73% 97.4M 0s
 71500K .......... .......... .......... .......... .......... 73%  105M 0s
 71550K .......... .......... .......... .......... .......... 73% 75.3M 0s
 71600K .......... .......... .......... .......... .......... 73%  101M 0s
 71650K .......... .......... .......... .......... .......... 73%  105M 0s
 71700K .......... .......... .......... .......... .......... 73% 95.8M 0s
 71750K .......... .......... .......... .......... .......... 73% 98.1M 0s
 71800K .......... .......... .......... .......... .......... 73% 98.7M 0s
 71850K .......... .......... .......... .......... .......... 73%  104M 0s
 71900K .......... .......... .......... .......... .......... 74% 98.7M 0s
 71950K .......... .......... .......... .......... .......... 74% 78.8M 0s
 72000K .......... .......... .......... .......... .......... 74% 98.5M 0s
 72050K .......... .......... .......... .......... .......... 74%  101M 0s
 72100K .......... .......... .......... .......... .......... 74% 99.8M 0s
 72150K .......... .......... .......... .......... .......... 74%  104M 0s
 72200K .......... .......... .......... .......... .......... 74%  102M 0s
 72250K .......... .......... .......... .......... .......... 74% 98.1M 0s
 72300K .......... .......... .......... .......... .......... 74%  101M 0s
 72350K .......... .......... .......... .......... .......... 74% 75.6M 0s
 72400K .......... .......... .......... .......... .......... 74%  100M 0s
 72450K .......... .......... .......... .......... .......... 74% 98.9M 0s
 72500K .......... .......... .......... .......... .......... 74% 97.6M 0s
 72550K .......... .......... .......... .......... .......... 74% 98.8M 0s
 72600K .......... .......... .......... .......... .......... 74%  101M 0s
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 72700K .......... .......... .......... .......... .......... 74%  105M 0s
 72750K .......... .......... .......... .......... .......... 74% 79.5M 0s
 72800K .......... .......... .......... .......... .......... 74% 98.8M 0s
 72850K .......... .......... .......... .......... .......... 74%  101M 0s
 72900K .......... .......... .......... .......... .......... 75% 97.4M 0s
 72950K .......... .......... .......... .......... .......... 75% 98.2M 0s
 73000K .......... .......... .......... .......... .......... 75%  104M 0s
 73050K .......... .......... .......... .......... .......... 75% 99.0M 0s
 73100K .......... .......... .......... .......... .......... 75% 98.6M 0s
 73150K .......... .......... .......... .......... .......... 75% 74.8M 0s
 73200K .......... .......... .......... .......... .......... 75%  106M 0s
 73250K .......... .......... .......... .......... .......... 75%  102M 0s
 73300K .......... .......... .......... .......... .......... 75% 98.7M 0s
 73350K .......... .......... .......... .......... .......... 75%  105M 0s
 73400K .......... .......... .......... .......... .......... 75%  101M 0s
 73450K .......... .......... .......... .......... .......... 75%  102M 0s
 73500K .......... .......... .......... .......... .......... 75%  102M 0s
 73550K .......... .......... .......... .......... .......... 75% 77.5M 0s
 73600K .......... .......... .......... .......... .......... 75%  102M 0s
 73650K .......... .......... .......... .......... .......... 75% 96.1M 0s
 73700K .......... .......... .......... .......... .......... 75% 96.0M 0s
 73750K .......... .......... .......... .......... .......... 75%  105M 0s
 73800K .......... .......... .......... .......... .......... 75% 97.3M 0s
 73850K .......... .......... .......... .......... .......... 76% 97.3M 0s
 73900K .......... .......... .......... .......... .......... 76% 99.4M 0s
 73950K .......... .......... .......... .......... .......... 76% 75.8M 0s
 74000K .......... .......... .......... .......... .......... 76%  101M 0s
 74050K .......... .......... .......... .......... .......... 76%  102M 0s
 74100K .......... .......... .......... .......... .......... 76%  100M 0s
 74150K .......... .......... .......... .......... .......... 76%  101M 0s
 74200K .......... .......... .......... .......... .......... 76%  101M 0s
 74250K .......... .......... .......... .......... .......... 76%  102M 0s
 74300K .......... .......... .......... .......... .......... 76%  102M 0s
 74350K .......... .......... .......... .......... .......... 76% 77.0M 0s
 74400K .......... .......... .......... .......... .......... 76%  101M 0s
 74450K .......... .......... .......... .......... .......... 76%  105M 0s
 74500K .......... .......... .......... .......... .......... 76% 96.3M 0s
 74550K .......... .......... .......... .......... .......... 76%  102M 0s
 74600K .......... .......... .......... .......... .......... 76%  101M 0s
 74650K .......... .......... .......... .......... .......... 76%  101M 0s
 74700K .......... .......... .......... .......... .......... 76%  105M 0s
 74750K .......... .......... .......... .......... .......... 76% 74.5M 0s
 74800K .......... .......... .......... .......... .......... 76% 98.7M 0s
 74850K .......... .......... .......... .......... .......... 77%  105M 0s
 74900K .......... .......... .......... .......... .......... 77% 97.8M 0s
 74950K .......... .......... .......... .......... .......... 77%  105M 0s
 75000K .......... .......... .......... .......... .......... 77% 98.3M 0s
 75050K .......... .......... .......... .......... .......... 77% 95.9M 0s
 75100K .......... .......... .......... .......... .......... 77% 99.8M 0s
 75150K .......... .......... .......... .......... .......... 77% 78.5M 0s
 75200K .......... .......... .......... .......... .......... 77% 99.1M 0s
 75250K .......... .......... .......... .......... .......... 77%  101M 0s
 75300K .......... .......... .......... .......... .......... 77% 92.2M 0s
 75350K .......... .......... .......... .......... .......... 77% 95.7M 0s
 75400K .......... .......... .......... .......... .......... 77%  101M 0s
 75450K .......... .......... .......... .......... .......... 77% 98.1M 0s
 75500K .......... .......... .......... .......... .......... 77% 98.3M 0s
 75550K .......... .......... .......... .......... .......... 77% 79.2M 0s
 75600K .......... .......... .......... .......... .......... 77% 99.2M 0s
 75650K .......... .......... .......... .......... .......... 77%  104M 0s
 75700K .......... .......... .......... .......... .......... 77% 96.8M 0s
 75750K .......... .......... .......... .......... .......... 77% 98.9M 0s
 75800K .......... .......... .......... .......... .......... 78% 99.5M 0s
 75850K .......... .......... .......... .......... .......... 78%  101M 0s
 75900K .......... .......... .......... .......... .......... 78% 97.9M 0s
 75950K .......... .......... .......... .......... .......... 78% 78.5M 0s
 76000K .......... .......... .......... .......... .......... 78%  101M 0s
 76050K .......... .......... .......... .......... .......... 78% 96.2M 0s
 76100K .......... .......... .......... .......... .......... 78%  100M 0s
 76150K .......... .......... .......... .......... .......... 78%  102M 0s
 76200K .......... .......... .......... .......... .......... 78%  100M 0s
 76250K .......... .......... .......... .......... .......... 78%  105M 0s
 76300K .......... .......... .......... .......... .......... 78% 98.2M 0s
 76350K .......... .......... .......... .......... .......... 78% 79.4M 0s
 76400K .......... .......... .......... .......... .......... 78%  101M 0s
 76450K .......... .......... .......... .......... .......... 78% 96.3M 0s
 76500K .......... .......... .......... .......... .......... 78% 92.7M 0s
 76550K .......... .......... .......... .......... .......... 78%  100M 0s
 76600K .......... .......... .......... .......... .......... 78%  101M 0s
 76650K .......... .......... .......... .......... .......... 78%  105M 0s
 76700K .......... .......... .......... .......... .......... 78%  102M 0s
 76750K .......... .......... .......... .......... .......... 78% 72.0M 0s
 76800K .......... .......... .......... .......... .......... 79%  101M 0s
 76850K .......... .......... .......... .......... .......... 79% 96.4M 0s
 76900K .......... .......... .......... .......... .......... 79%  101M 0s
 76950K .......... .......... .......... .......... .......... 79%  101M 0s
 77000K .......... .......... .......... .......... .......... 79%  105M 0s
 77050K .......... .......... .......... .......... .......... 79% 98.8M 0s
 77100K .......... .......... .......... .......... .......... 79%  103M 0s
 77150K .......... .......... .......... .......... .......... 79% 79.7M 0s
 77200K .......... .......... .......... .......... .......... 79% 98.5M 0s
 77250K .......... .......... .......... .......... .......... 79% 96.5M 0s
 77300K .......... .......... .......... .......... .......... 79% 98.0M 0s
 77350K .......... .......... .......... .......... .......... 79%  106M 0s
 77400K .......... .......... .......... .......... .......... 79%  105M 0s
 77450K .......... .......... .......... .......... .......... 79% 97.8M 0s
 77500K .......... .......... .......... .......... .......... 79%  101M 0s
 77550K .......... .......... .......... .......... .......... 79% 75.6M 0s
 77600K .......... .......... .......... .......... .......... 79%  105M 0s
 77650K .......... .......... .......... .......... .......... 79% 98.2M 0s
 77700K .......... .......... .......... .......... .......... 79% 97.5M 0s
 77750K .......... .......... .......... .......... .......... 80%  104M 0s
 77800K .......... .......... .......... .......... .......... 80% 99.3M 0s
 77850K .......... .......... .......... .......... .......... 80%  101M 0s
 77900K .......... .......... .......... .......... .......... 80%  105M 0s
 77950K .......... .......... .......... .......... .......... 80% 77.4M 0s
 78000K .......... .......... .......... .......... .......... 80% 98.6M 0s
 78050K .......... .......... .......... .......... .......... 80% 96.6M 0s
 78100K .......... .......... .......... .......... .......... 80%  105M 0s
 78150K .......... .......... .......... .......... .......... 80% 99.0M 0s
 78200K .......... .......... .......... .......... .......... 80% 99.9M 0s
 78250K .......... .......... .......... .......... .......... 80%  106M 0s
 78300K .......... .......... .......... .......... .......... 80% 97.2M 0s
 78350K .......... .......... .......... .......... .......... 80% 76.8M 0s
 78400K .......... .......... .......... .......... .......... 80%  101M 0s
 78450K .......... .......... .......... .......... .......... 80%  102M 0s
 78500K .......... .......... .......... .......... .......... 80%  102M 0s
 78550K .......... .......... .......... .......... .......... 80% 98.4M 0s
 78600K .......... .......... .......... .......... .......... 80%  102M 0s
 78650K .......... .......... .......... .......... .......... 80%  102M 0s
 78700K .......... .......... .......... .......... .......... 81%  101M 0s
 78750K .......... .......... .......... .......... .......... 81% 75.4M 0s
 78800K .......... .......... .......... .......... .......... 81%  101M 0s
 78850K .......... .......... .......... .......... .......... 81% 90.0M 0s
 78900K .......... .......... .......... .......... .......... 81%  105M 0s
 78950K .......... .......... .......... .......... .......... 81%  105M 0s
 79000K .......... .......... .......... .......... .......... 81%  105M 0s
 79050K .......... .......... .......... .......... .......... 81% 98.7M 0s
 79100K .......... .......... .......... .......... .......... 81%  101M 0s
 79150K .......... .......... .......... .......... .......... 81% 77.4M 0s
 79200K .......... .......... .......... .......... .......... 81%  101M 0s
 79250K .......... .......... .......... .......... .......... 81% 99.3M 0s
 79300K .......... .......... .......... .......... .......... 81%  104M 0s
 79350K .......... .......... .......... .......... .......... 81%  103M 0s
 79400K .......... .......... .......... .......... .......... 81% 98.9M 0s
 79450K .......... .......... .......... .......... .......... 81% 97.6M 0s
 79500K .......... .......... .......... .......... .......... 81%  102M 0s
 79550K .......... .......... .......... .......... .......... 81% 75.5M 0s
 79600K .......... .......... .......... .......... .......... 81%  102M 0s
 79650K .......... .......... .......... .......... .......... 81%  100M 0s
 79700K .......... .......... .......... .......... .......... 82% 99.4M 0s
 79750K .......... .......... .......... .......... .......... 82%  102M 0s
 79800K .......... .......... .......... .......... .......... 82% 99.4M 0s
 79850K .......... .......... .......... .......... .......... 82%  104M 0s
 79900K .......... .......... .......... .......... .......... 82%  102M 0s
 79950K .......... .......... .......... .......... .......... 82% 74.9M 0s
 80000K .......... .......... .......... .......... .......... 82%  101M 0s
 80050K .......... .......... .......... .......... .......... 82% 88.2M 0s
 80100K .......... .......... .......... .......... .......... 82%  102M 0s
 80150K .......... .......... .......... .......... .......... 82%  102M 0s
 80200K .......... .......... .......... .......... .......... 82%  101M 0s
 80250K .......... .......... .......... .......... .......... 82%  101M 0s
 80300K .......... .......... .......... .......... .......... 82%  105M 0s
 80350K .......... .......... .......... .......... .......... 82% 77.7M 0s
 80400K .......... .......... .......... .......... .......... 82%  102M 0s
 80450K .......... .......... .......... .......... .......... 82% 95.2M 0s
 80500K .......... .......... .......... .......... .......... 82%  105M 0s
 80550K .......... .......... .......... .......... .......... 82%  102M 0s
 80600K .......... .......... .......... .......... .......... 82%  101M 0s
 80650K .......... .......... .......... .......... .......... 83%  102M 0s
 80700K .......... .......... .......... .......... .......... 83%  101M 0s
 80750K .......... .......... .......... .......... .......... 83% 75.7M 0s
 80800K .......... .......... .......... .......... .......... 83%  101M 0s
 80850K .......... .......... .......... .......... .......... 83% 98.9M 0s
 80900K .......... .......... .......... .......... .......... 83%  101M 0s
 80950K .......... .......... .......... .......... .......... 83%  101M 0s
 81000K .......... .......... .......... .......... .......... 83%  105M 0s
 81050K .......... .......... .......... .......... .......... 83%  101M 0s
 81100K .......... .......... .......... .......... .......... 83%  101M 0s
 81150K .......... .......... .......... .......... .......... 83% 77.6M 0s
 81200K .......... .......... .......... .......... .......... 83% 95.2M 0s
 81250K .......... .......... .......... .......... .......... 83% 94.0M 0s
 81300K .......... .......... .......... .......... .......... 83% 72.9M 0s
 81350K .......... .......... .......... .......... .......... 83% 94.7M 0s
 81400K .......... .......... .......... .......... .......... 83%  101M 0s
 81450K .......... .......... .......... .......... .......... 83%  101M 0s
 81500K .......... .......... .......... .......... .......... 83% 98.0M 0s
 81550K .......... .......... .......... .......... .......... 83% 78.9M 0s
 81600K .......... .......... .......... .......... .......... 83% 96.5M 0s
 81650K .......... .......... .......... .......... .......... 84%  101M 0s
 81700K .......... .......... .......... .......... .......... 84%  104M 0s
 81750K .......... .......... .......... .......... .......... 84% 99.3M 0s
 81800K .......... .......... .......... .......... .......... 84%  101M 0s
 81850K .......... .......... .......... .......... .......... 84%  101M 0s
 81900K .......... .......... .......... .......... .......... 84%  103M 0s
 81950K .......... .......... .......... .......... .......... 84% 76.3M 0s
 82000K .......... .......... .......... .......... .......... 84% 70.1M 0s
 82050K .......... .......... .......... .......... .......... 84%  102M 0s
 82100K .......... .......... .......... .......... .......... 84% 98.7M 0s
 82150K .......... .......... .......... .......... .......... 84%  103M 0s
 82200K .......... .......... .......... .......... .......... 84% 94.2M 0s
 82250K .......... .......... .......... .......... .......... 84%  101M 0s
 82300K .......... .......... .......... .......... .......... 84% 95.8M 0s
 82350K .......... .......... .......... .......... .......... 84% 76.2M 0s
 82400K .......... .......... .......... .......... .......... 84% 98.9M 0s
 82450K .......... .......... .......... .......... .......... 84%  104M 0s
 82500K .......... .......... .......... .......... .......... 84%  105M 0s
 82550K .......... .......... .......... .......... .......... 84% 97.6M 0s
 82600K .......... .......... .......... .......... .......... 85%  101M 0s
 82650K .......... .......... .......... .......... .......... 85%  101M 0s
 82700K .......... .......... .......... .......... .......... 85%  101M 0s
 82750K .......... .......... .......... .......... .......... 85% 76.0M 0s
 82800K .......... .......... .......... .......... .......... 85%  100M 0s
 82850K .......... .......... .......... .......... .......... 85% 98.1M 0s
 82900K .......... .......... .......... .......... .......... 85% 98.6M 0s
 82950K .......... .......... .......... .......... .......... 85%  105M 0s
 83000K .......... .......... .......... .......... .......... 85%  102M 0s
 83050K .......... .......... .......... .......... .......... 85% 99.1M 0s
 83100K .......... .......... .......... .......... .......... 85%  101M 0s
 83150K .......... .......... .......... .......... .......... 85% 78.0M 0s
 83200K .......... .......... .......... .......... .......... 85%  101M 0s
 83250K .......... .......... .......... .......... .......... 85% 99.1M 0s
 83300K .......... .......... .......... .......... .......... 85% 98.0M 0s
 83350K .......... .......... .......... .......... .......... 85% 97.9M 0s
 83400K .......... .......... .......... .......... .......... 85%  101M 0s
 83450K .......... .......... .......... .......... .......... 85%  102M 0s
 83500K .......... .......... .......... .......... .......... 85% 97.5M 0s
 83550K .......... .......... .......... .......... .......... 85% 73.5M 0s
 83600K .......... .......... .......... .......... .......... 86% 98.4M 0s
 83650K .......... .......... .......... .......... .......... 86% 98.5M 0s
 83700K .......... .......... .......... .......... .......... 86% 97.6M 0s
 83750K .......... .......... .......... .......... .......... 86%  102M 0s
 83800K .......... .......... .......... .......... .......... 86%  105M 0s
 83850K .......... .......... .......... .......... .......... 86%  105M 0s
 83900K .......... .......... .......... .......... .......... 86% 98.6M 0s
 83950K .......... .......... .......... .......... .......... 86% 75.2M 0s
 84000K .......... .......... .......... .......... .......... 86%  104M 0s
 84050K .......... .......... .......... .......... .......... 86%  102M 0s
 84100K .......... .......... .......... .......... .......... 86%  102M 0s
 84150K .......... .......... .......... .......... .......... 86% 99.0M 0s
 84200K .......... .......... .......... .......... .......... 86% 98.7M 0s
 84250K .......... .......... .......... .......... .......... 86%  100M 0s
 84300K .......... .......... .......... .......... .......... 86%  101M 0s
 84350K .......... .......... .......... .......... .......... 86% 76.2M 0s
 84400K .......... .......... .......... .......... .......... 86%  102M 0s
 84450K .......... .......... .......... .......... .......... 86% 99.1M 0s
 84500K .......... .......... .......... .......... .......... 86% 97.4M 0s
 84550K .......... .......... .......... .......... .......... 87%  102M 0s
 84600K .......... .......... .......... .......... .......... 87% 96.1M 0s
 84650K .......... .......... .......... .......... .......... 87%  101M 0s
 84700K .......... .......... .......... .......... .......... 87% 98.2M 0s
 84750K .......... .......... .......... .......... .......... 87% 73.1M 0s
 84800K .......... .......... .......... .......... .......... 87%  101M 0s
 84850K .......... .......... .......... .......... .......... 87%  102M 0s
 84900K .......... .......... .......... .......... .......... 87% 98.5M 0s
 84950K .......... .......... .......... .......... .......... 87%  106M 0s
 85000K .......... .......... .......... .......... .......... 87%  101M 0s
 85050K .......... .......... .......... .......... .......... 87% 99.3M 0s
 85100K .......... .......... .......... .......... .......... 87%  105M 0s
 85150K .......... .......... .......... .......... .......... 87% 75.3M 0s
 85200K .......... .......... .......... .......... .......... 87%  105M 0s
 85250K .......... .......... .......... .......... .......... 87% 98.3M 0s
 85300K .......... .......... .......... .......... .......... 87% 98.4M 0s
 85350K .......... .......... .......... .......... .......... 87%  105M 0s
 85400K .......... .......... .......... .......... .......... 87% 98.2M 0s
 85450K .......... .......... .......... .......... .......... 87%  101M 0s
 85500K .......... .......... .......... .......... .......... 87%  100M 0s
 85550K .......... .......... .......... .......... .......... 88% 74.8M 0s
 85600K .......... .......... .......... .......... .......... 88%  105M 0s
 85650K .......... .......... .......... .......... .......... 88%  104M 0s
 85700K .......... .......... .......... .......... .......... 88%  102M 0s
 85750K .......... .......... .......... .......... .......... 88% 98.2M 0s
 85800K .......... .......... .......... .......... .......... 88%  101M 0s
 85850K .......... .......... .......... .......... .......... 88%  102M 0s
 85900K .......... .......... .......... .......... .......... 88%  105M 0s
 85950K .......... .......... .......... .......... .......... 88% 70.9M 0s
 86000K .......... .......... .......... .......... .......... 88%  100M 0s
 86050K .......... .......... .......... .......... .......... 88% 98.1M 0s
 86100K .......... .......... .......... .......... .......... 88%  102M 0s
 86150K .......... .......... .......... .......... .......... 88%  102M 0s
 86200K .......... .......... .......... .......... .......... 88%  102M 0s
 86250K .......... .......... .......... .......... .......... 88% 99.9M 0s
 86300K .......... .......... .......... .......... .......... 88%  105M 0s
 86350K .......... .......... .......... .......... .......... 88% 75.9M 0s
 86400K .......... .......... .......... .......... .......... 88% 96.2M 0s
 86450K .......... .......... .......... .......... .......... 88%  103M 0s
 86500K .......... .......... .......... .......... .......... 89%  100M 0s
 86550K .......... .......... .......... .......... .......... 89%  103M 0s
 86600K .......... .......... .......... .......... .......... 89% 97.8M 0s
 86650K .......... .......... .......... .......... .......... 89%  101M 0s
 86700K .......... .......... .......... .......... .......... 89%  102M 0s
 86750K .......... .......... .......... .......... .......... 89% 74.9M 0s
 86800K .......... .......... .......... .......... .......... 89%  102M 0s
 86850K .......... .......... .......... .......... .......... 89%  101M 0s
 86900K .......... .......... .......... .......... .......... 89%  101M 0s
 86950K .......... .......... .......... .......... .......... 89%  105M 0s
 87000K .......... .......... .......... .......... .......... 89%  101M 0s
 87050K .......... .......... .......... .......... .......... 89%  101M 0s
 87100K .......... .......... .......... .......... .......... 89%  101M 0s
 87150K .......... .......... .......... .......... .......... 89% 70.4M 0s
 87200K .......... .......... .......... .......... .......... 89%  102M 0s
 87250K .......... .......... .......... .......... .......... 89%  101M 0s
 87300K .......... .......... .......... .......... .......... 89% 98.5M 0s
 87350K .......... .......... .......... .......... .......... 89%  103M 0s
 87400K .......... .......... .......... .......... .......... 89% 98.4M 0s
 87450K .......... .......... .......... .......... .......... 90%  101M 0s
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 87550K .......... .......... .......... .......... .......... 90% 75.4M 0s
 87600K .......... .......... .......... .......... .......... 90%  102M 0s
 87650K .......... .......... .......... .......... .......... 90%  102M 0s
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 87750K .......... .......... .......... .......... .......... 90% 99.8M 0s
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 87950K .......... .......... .......... .......... .......... 90% 76.8M 0s
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 88050K .......... .......... .......... .......... .......... 90% 98.5M 0s
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 88300K .......... .......... .......... .......... .......... 90% 95.8M 0s
 88350K .......... .......... .......... .......... .......... 90% 73.1M 0s
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 88500K .......... .......... .......... .......... .......... 91% 98.4M 0s
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 88750K .......... .......... .......... .......... .......... 91% 76.6M 0s
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 89150K .......... .......... .......... .......... .......... 91% 75.8M 0s
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 89500K .......... .......... .......... .......... .......... 92% 90.9M 0s
 89550K .......... .......... .......... .......... .......... 92% 78.9M 0s
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 89750K .......... .......... .......... .......... .......... 92% 98.4M 0s
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 89900K .......... .......... .......... .......... .......... 92% 99.7M 0s
 89950K .......... .......... .......... .......... .......... 92% 77.3M 0s
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 90100K .......... .......... .......... .......... .......... 92%  101M 0s
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 90200K .......... .......... .......... .......... .......... 92%  105M 0s
 90250K .......... .......... .......... .......... .......... 92%  102M 0s
 90300K .......... .......... .......... .......... .......... 92% 99.2M 0s
 90350K .......... .......... .......... .......... .......... 92% 77.7M 0s
 90400K .......... .......... .......... .......... .......... 93% 79.5M 0s
 90450K .......... .......... .......... .......... .......... 93%  100M 0s
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 90550K .......... .......... .......... .......... .......... 93%  101M 0s
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 90700K .......... .......... .......... .......... .......... 93% 94.3M 0s
 90750K .......... .......... .......... .......... .......... 93% 74.9M 0s
 90800K .......... .......... .......... .......... .......... 93%  101M 0s
 90850K .......... .......... .......... .......... .......... 93% 75.8M 0s
 90900K .......... .......... .......... .......... .......... 93% 62.4M 0s
 90950K .......... .......... .......... .......... .......... 93% 97.2M 0s
 91000K .......... .......... .......... .......... .......... 93%  101M 0s
 91050K .......... .......... .......... .......... .......... 93% 99.1M 0s
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 91150K .......... .......... .......... .......... .......... 93% 77.1M 0s
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 91450K .......... .......... .......... .......... .......... 94% 98.1M 0s
 91500K .......... .......... .......... .......... .......... 94% 95.0M 0s
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 91800K .......... .......... .......... .......... .......... 94% 93.4M 0s
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 93150K .......... .......... .......... .......... .......... 95% 79.2M 0s
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 93950K .......... .......... .......... .......... .......... 96% 75.0M 0s
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 94350K .......... .......... .......... .......... .......... 97% 75.9M 0s
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 94450K .......... .......... .......... .......... .......... 97%  104M 0s
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 94750K .......... .......... .......... .......... .......... 97% 79.3M 0s
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 95150K .......... .......... .......... .......... .......... 97% 76.6M 0s
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 95350K .......... .......... .......... .......... .......... 98%  105M 0s
 95400K .......... .......... .......... .......... .......... 98% 94.2M 0s
 95450K .......... .......... .......... .......... .......... 98%  103M 0s
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 95550K .......... .......... .......... .......... .......... 98% 79.1M 0s
 95600K .......... .......... .......... .......... .......... 98%  105M 0s
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 95700K .......... .......... .......... .......... .......... 98%  105M 0s
 95750K .......... .......... .......... .......... .......... 98%  106M 0s
 95800K .......... .......... .......... .......... .......... 98%  100M 0s
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 95900K .......... .......... .......... .......... .......... 98%  105M 0s
 95950K .......... .......... .......... .......... .......... 98% 79.4M 0s
 96000K .......... .......... .......... .......... .......... 98%  105M 0s
 96050K .......... .......... .......... .......... .......... 98%  104M 0s
 96100K .......... .......... .......... .......... .......... 98%  106M 0s
 96150K .......... .......... .......... .......... .......... 98%  106M 0s
 96200K .......... .......... .......... .......... .......... 99%  103M 0s
 96250K .......... .......... .......... .......... .......... 99%  105M 0s
 96300K .......... .......... .......... .......... .......... 99%  104M 0s
 96350K .......... .......... .......... .......... .......... 99% 79.6M 0s
 96400K .......... .......... .......... .......... .......... 99%  106M 0s
 96450K .......... .......... .......... .......... .......... 99%  105M 0s
 96500K .......... .......... .......... .......... .......... 99%  106M 0s
 96550K .......... .......... .......... .......... .......... 99%  105M 0s
 96600K .......... .......... .......... .......... .......... 99%  101M 0s
 96650K .......... .......... .......... .......... .......... 99%  103M 0s
 96700K .......... .......... .......... .......... .......... 99%  106M 0s
 96750K .......... .......... .......... .......... .......... 99% 79.3M 0s
 96800K .......... .......... .......... .......... .......... 99%  104M 0s
 96850K .......... .......... .......... .......... .......... 99%  106M 0s
 96900K .......... .......... .......... .......... .......... 99%  105M 0s
 96950K .......... .......... .......... .......... .......... 99%  105M 0s
 97000K .......... .......... .......... .......... .......... 99%  104M 0s
 97050K .......... .......... .......... .......... .......... 99%  104M 0s
 97100K .......... .......... .......... .......... .......... 99%  105M 0s
 97150K .......... .......... .......... .......... .......... 99% 79.8M 0s
 97200K .......... ..........                                 100%  186M=1.2s

2026-05-13 16:21:02 (81.5 MB/s) - ‘/tmp/tmpqzrqjked/no2_climatology.hdf’ saved [99553985/99553985]

(d) 16:21:02 Moving "/tmp/tmpqzrqjked/no2_climatology.hdf" to "/root/.cache/polymer/auxdata/static/common/no2_climatology.hdf"...
(i) 16:21:02 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/trop_f_no2_200m.hdf
(i) 16:21:02 To: /root/.cache/polymer/auxdata/static/common/trop_f_no2_200m.hdf
--2026-05-13 16:21:02--  http://download.hygeos.com/POLYMER/auxdata/common/trop_f_no2_200m.hdf
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:80... connected.
HTTP request sent, awaiting response... 301 Moved Permanently
Location: https://download.hygeos.com/POLYMER/auxdata/common/trop_f_no2_200m.hdf [following]
--2026-05-13 16:21:02--  https://download.hygeos.com/POLYMER/auxdata/common/trop_f_no2_200m.hdf
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:443... connected.
HTTP request sent, awaiting response... 200 OK
Length: 70094 (68K) [application/x-hdf]
Saving to: ‘/tmp/tmpa7s2r_ez/trop_f_no2_200m.hdf’

     0K .......... .......... .......... .......... .......... 73% 1.10M 0s
    50K .......... ........                                   100% 43.0M=0.04s

2026-05-13 16:21:02 (1.50 MB/s) - ‘/tmp/tmpa7s2r_ez/trop_f_no2_200m.hdf’ saved [70094/70094]

(d) 16:21:02 Moving "/tmp/tmpa7s2r_ez/trop_f_no2_200m.hdf" to "/root/.cache/polymer/auxdata/static/common/trop_f_no2_200m.hdf"...
(i) 16:21:02 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/morel_fq.dat
(i) 16:21:02 To: /root/.cache/polymer/auxdata/static/common/morel_fq.dat
--2026-05-13 16:21:02--  http://download.hygeos.com/POLYMER/auxdata/common/morel_fq.dat
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:80... connected.
HTTP request sent, awaiting response... 301 Moved Permanently
Location: https://download.hygeos.com/POLYMER/auxdata/common/morel_fq.dat [following]
--2026-05-13 16:21:02--  https://download.hygeos.com/POLYMER/auxdata/common/morel_fq.dat
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:443... connected.
HTTP request sent, awaiting response... 200 OK
Length: 389844 (381K)
Saving to: ‘/tmp/tmpan2xoq45/morel_fq.dat’

     0K .......... .......... .......... .......... .......... 13% 1.31M 0s
    50K .......... .......... .......... .......... .......... 26% 2.65M 0s
   100K .......... .......... .......... .......... .......... 39% 2.66M 0s
   150K .......... .......... .......... .......... .......... 52% 57.4M 0s
   200K .......... .......... .......... .......... .......... 65% 41.5M 0s
   250K .......... .......... .......... .......... .......... 78% 54.8M 0s
   300K .......... .......... .......... .......... .......... 91% 3.05M 0s
   350K .......... .......... ..........                      100% 61.9M=0.09s

2026-05-13 16:21:02 (3.97 MB/s) - ‘/tmp/tmpan2xoq45/morel_fq.dat’ saved [389844/389844]

(d) 16:21:02 Moving "/tmp/tmpan2xoq45/morel_fq.dat" to "/root/.cache/polymer/auxdata/static/common/morel_fq.dat"...
(i) 16:21:02 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/AboveRrs_gCoef_w0.dat
(i) 16:21:02 To: /root/.cache/polymer/auxdata/static/common/AboveRrs_gCoef_w0.dat
--2026-05-13 16:21:02--  http://download.hygeos.com/POLYMER/auxdata/common/AboveRrs_gCoef_w0.dat
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:80... connected.
HTTP request sent, awaiting response... 301 Moved Permanently
Location: https://download.hygeos.com/POLYMER/auxdata/common/AboveRrs_gCoef_w0.dat [following]
--2026-05-13 16:21:02--  https://download.hygeos.com/POLYMER/auxdata/common/AboveRrs_gCoef_w0.dat
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:443... connected.
HTTP request sent, awaiting response... 200 OK
Length: 330565 (323K)
Saving to: ‘/tmp/tmp5r_aqmu5/AboveRrs_gCoef_w0.dat’

     0K .......... .......... .......... .......... .......... 15% 1.32M 0s
    50K .......... .......... .......... .......... .......... 30% 2.66M 0s
   100K .......... .......... .......... .......... .......... 46% 46.8M 0s
   150K .......... .......... .......... .......... .......... 61% 2.80M 0s
   200K .......... .......... .......... .......... .......... 77% 55.4M 0s
   250K .......... .......... .......... .......... .......... 92% 55.3M 0s
   300K .......... .......... ..                              100% 53.6M=0.08s

2026-05-13 16:21:03 (4.15 MB/s) - ‘/tmp/tmp5r_aqmu5/AboveRrs_gCoef_w0.dat’ saved [330565/330565]

(d) 16:21:03 Moving "/tmp/tmp5r_aqmu5/AboveRrs_gCoef_w0.dat" to "/root/.cache/polymer/auxdata/static/common/AboveRrs_gCoef_w0.dat"...
(i) 16:21:03 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/AboveRrs_gCoef_w10.dat
(i) 16:21:03 To: /root/.cache/polymer/auxdata/static/common/AboveRrs_gCoef_w10.dat
--2026-05-13 16:21:03--  http://download.hygeos.com/POLYMER/auxdata/common/AboveRrs_gCoef_w10.dat
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:80... connected.
HTTP request sent, awaiting response... 301 Moved Permanently
Location: https://download.hygeos.com/POLYMER/auxdata/common/AboveRrs_gCoef_w10.dat [following]
--2026-05-13 16:21:03--  https://download.hygeos.com/POLYMER/auxdata/common/AboveRrs_gCoef_w10.dat
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:443... connected.
HTTP request sent, awaiting response... 200 OK
Length: 330042 (322K)
Saving to: ‘/tmp/tmp32tnrxld/AboveRrs_gCoef_w10.dat’

     0K .......... .......... .......... .......... .......... 15% 1.02M 0s
    50K .......... .......... .......... .......... .......... 31% 2.04M 0s
   100K .......... .......... .......... .......... .......... 46% 47.4M 0s
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(d) 16:21:03 Moving "/tmp/tmp32tnrxld/AboveRrs_gCoef_w10.dat" to "/root/.cache/polymer/auxdata/static/common/AboveRrs_gCoef_w10.dat"...
(i) 16:21:03 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/AboveRrs_gCoef_w5.dat
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Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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(d) 16:21:03 Moving "/tmp/tmpy0hwuwxv/AboveRrs_gCoef_w5.dat" to "/root/.cache/polymer/auxdata/static/common/AboveRrs_gCoef_w5.dat"...
(i) 16:21:03 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/aph_bricaud_1995.txt
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(d) 16:21:03 Moving "/tmp/tmpc1x4ca8o/aph_bricaud_1995.txt" to "/root/.cache/polymer/auxdata/static/common/aph_bricaud_1995.txt"...
(i) 16:21:03 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/aph_bricaud_1998.txt
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--2026-05-13 16:21:03--  http://download.hygeos.com/POLYMER/auxdata/common/aph_bricaud_1998.txt
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(d) 16:21:04 Moving "/tmp/tmp7jmnyyar/aph_bricaud_1998.txt" to "/root/.cache/polymer/auxdata/static/common/aph_bricaud_1998.txt"...
(i) 16:21:04 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/morel_buiteveld_bsw.txt
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--2026-05-13 16:21:04--  http://download.hygeos.com/POLYMER/auxdata/common/morel_buiteveld_bsw.txt
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(d) 16:21:04 Moving "/tmp/tmpwdhgom6o/morel_buiteveld_bsw.txt" to "/root/.cache/polymer/auxdata/static/common/morel_buiteveld_bsw.txt"...
(i) 16:21:04 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/palmer74.dat
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--2026-05-13 16:21:04--  http://download.hygeos.com/POLYMER/auxdata/common/palmer74.dat
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(d) 16:21:04 Moving "/tmp/tmp9fqzat_6/palmer74.dat" to "/root/.cache/polymer/auxdata/static/common/palmer74.dat"...
(i) 16:21:04 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/pope97.dat
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Length: 2134 (2.1K)
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(d) 16:21:04 Moving "/tmp/tmpcpflhwyz/pope97.dat" to "/root/.cache/polymer/auxdata/static/common/pope97.dat"...
(i) 16:21:04 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/raman_westberry13.txt
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--2026-05-13 16:21:04--  http://download.hygeos.com/POLYMER/auxdata/common/raman_westberry13.txt
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--2026-05-13 16:21:04--  https://download.hygeos.com/POLYMER/auxdata/common/raman_westberry13.txt
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(d) 16:21:04 Moving "/tmp/tmp37l89ef8/raman_westberry13.txt" to "/root/.cache/polymer/auxdata/static/common/raman_westberry13.txt"...
(i) 16:21:04 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/astarmin_average_2015_SLSTR.txt
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(d) 16:21:04 Moving "/tmp/tmprsvqbmna/astarmin_average_2015_SLSTR.txt" to "/root/.cache/polymer/auxdata/static/common/astarmin_average_2015_SLSTR.txt"...
(i) 16:21:04 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/astarmin_average.txt
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--2026-05-13 16:21:04--  http://download.hygeos.com/POLYMER/auxdata/common/astarmin_average.txt
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--2026-05-13 16:21:04--  https://download.hygeos.com/POLYMER/auxdata/common/astarmin_average.txt
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(d) 16:21:05 Moving "/tmp/tmpf5l0blml/astarmin_average.txt" to "/root/.cache/polymer/auxdata/static/common/astarmin_average.txt"...
(i) 16:21:05 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/Matsuoka11_aphy_Table1_JGR.csv
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--2026-05-13 16:21:05--  http://download.hygeos.com/POLYMER/auxdata/common/Matsuoka11_aphy_Table1_JGR.csv
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--2026-05-13 16:21:05--  https://download.hygeos.com/POLYMER/auxdata/common/Matsuoka11_aphy_Table1_JGR.csv
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(d) 16:21:05 Moving "/tmp/tmpip0058rl/Matsuoka11_aphy_Table1_JGR.csv" to "/root/.cache/polymer/auxdata/static/common/Matsuoka11_aphy_Table1_JGR.csv"...
(i) 16:21:05 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/k_oz.csv
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--2026-05-13 16:21:05--  http://download.hygeos.com/POLYMER/auxdata/common/k_oz.csv
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--2026-05-13 16:21:05--  https://download.hygeos.com/POLYMER/auxdata/common/k_oz.csv
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(d) 16:21:05 Moving "/tmp/tmpq7nsyxza/k_oz.csv" to "/root/.cache/polymer/auxdata/static/common/k_oz.csv"...
(i) 16:21:05 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/SOLAR_SPECTRUM_WMO_86
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--2026-05-13 16:21:05--  http://download.hygeos.com/POLYMER/auxdata/common/SOLAR_SPECTRUM_WMO_86
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--2026-05-13 16:21:05--  https://download.hygeos.com/POLYMER/auxdata/common/SOLAR_SPECTRUM_WMO_86
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(d) 16:21:05 Moving "/tmp/tmp43dtxzpm/SOLAR_SPECTRUM_WMO_86" to "/root/.cache/polymer/auxdata/static/common/SOLAR_SPECTRUM_WMO_86"...
(i) 16:21:05 Downloading:http://download.hygeos.com/POLYMER/auxdata/common/vegetation.grass.avena.fatua.vswir.vh352.ucsb.asd.spectrum.txt
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--2026-05-13 16:21:05--  http://download.hygeos.com/POLYMER/auxdata/common/vegetation.grass.avena.fatua.vswir.vh352.ucsb.asd.spectrum.txt
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--2026-05-13 16:21:05--  https://download.hygeos.com/POLYMER/auxdata/common/vegetation.grass.avena.fatua.vswir.vh352.ucsb.asd.spectrum.txt
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(i) 16:21:05 Downloading:http://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/sun_spectral_flux_rr.txt
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--2026-05-13 16:21:05--  http://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/sun_spectral_flux_rr.txt
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:05--  https://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/sun_spectral_flux_rr.txt
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(d) 16:21:06 Moving "/tmp/tmp_qh87uar/sun_spectral_flux_rr.txt" to "/root/.cache/polymer/auxdata/static/meris/smile/v2/sun_spectral_flux_rr.txt"...
(i) 16:21:06 Downloading:http://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/central_wavelen_rr.txt
(i) 16:21:06 To: /root/.cache/polymer/auxdata/static/meris/smile/v2/central_wavelen_rr.txt
--2026-05-13 16:21:06--  http://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/central_wavelen_rr.txt
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:06--  https://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/central_wavelen_rr.txt
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Length: 165629 (162K) [text/plain]
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     0K .......... .......... .......... .......... .......... 30% 1.32M 0s
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   100K .......... .......... .......... .......... .......... 92% 2.66M 0s
   150K .......... .                                          100% 72.2M=0.07s

2026-05-13 16:21:06 (2.12 MB/s) - ‘/tmp/tmp8l5c5r32/central_wavelen_rr.txt’ saved [165629/165629]

(d) 16:21:06 Moving "/tmp/tmp8l5c5r32/central_wavelen_rr.txt" to "/root/.cache/polymer/auxdata/static/meris/smile/v2/central_wavelen_rr.txt"...
(i) 16:21:06 Downloading:http://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/sun_spectral_flux_fr.txt
(i) 16:21:06 To: /root/.cache/polymer/auxdata/static/meris/smile/v2/sun_spectral_flux_fr.txt
--2026-05-13 16:21:06--  http://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/sun_spectral_flux_fr.txt
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:06--  https://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/sun_spectral_flux_fr.txt
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Length: 1005439 (982K) [text/plain]
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   900K .......... .......... .......... .......... .......... 96% 76.7M 0s
   950K .......... .......... .......... .                    100%  138M=0.1s

2026-05-13 16:21:06 (8.53 MB/s) - ‘/tmp/tmpmj6bd5bh/sun_spectral_flux_fr.txt’ saved [1005439/1005439]

(d) 16:21:06 Moving "/tmp/tmpmj6bd5bh/sun_spectral_flux_fr.txt" to "/root/.cache/polymer/auxdata/static/meris/smile/v2/sun_spectral_flux_fr.txt"...
(i) 16:21:06 Downloading:http://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/central_wavelen_fr.txt
(i) 16:21:06 To: /root/.cache/polymer/auxdata/static/meris/smile/v2/central_wavelen_fr.txt
--2026-05-13 16:21:06--  http://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/central_wavelen_fr.txt
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:06--  https://download.hygeos.com/POLYMER/auxdata/meris/smile/v2/central_wavelen_fr.txt
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:443... connected.
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Length: 683554 (668K) [text/plain]
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     0K .......... .......... .......... .......... ..........  7% 1.19M 1s
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   600K .......... .......... .......... .......... .......... 97% 47.2M 0s
   650K .......... .......                                    100%  107M=0.1s

2026-05-13 16:21:06 (6.07 MB/s) - ‘/tmp/tmpu5vs28vm/central_wavelen_fr.txt’ saved [683554/683554]

(d) 16:21:06 Moving "/tmp/tmpu5vs28vm/central_wavelen_fr.txt" to "/root/.cache/polymer/auxdata/static/meris/smile/v2/central_wavelen_fr.txt"...
(i) 16:21:06 Downloading:http://download.hygeos.com/POLYMER/auxdata/modisa/HMODISA_RSRs.txt
(i) 16:21:06 To: /root/.cache/polymer/auxdata/static/modisa/HMODISA_RSRs.txt
--2026-05-13 16:21:06--  http://download.hygeos.com/POLYMER/auxdata/modisa/HMODISA_RSRs.txt
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:06--  https://download.hygeos.com/POLYMER/auxdata/modisa/HMODISA_RSRs.txt
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Length: 393564 (384K) [text/plain]
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     0K .......... .......... .......... .......... .......... 13% 1.31M 0s
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   350K .......... .......... .......... ....                 100% 70.9M=0.09s

2026-05-13 16:21:07 (4.03 MB/s) - ‘/tmp/tmp2mhhkxbr/HMODISA_RSRs.txt’ saved [393564/393564]

(d) 16:21:07 Moving "/tmp/tmp2mhhkxbr/HMODISA_RSRs.txt" to "/root/.cache/polymer/auxdata/static/modisa/HMODISA_RSRs.txt"...
(i) 16:21:07 Downloading:http://download.hygeos.com/POLYMER/auxdata/seawifs/SeaWiFS_RSRs.txt
(i) 16:21:07 To: /root/.cache/polymer/auxdata/static/seawifs/SeaWiFS_RSRs.txt
--2026-05-13 16:21:07--  http://download.hygeos.com/POLYMER/auxdata/seawifs/SeaWiFS_RSRs.txt
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:07--  https://download.hygeos.com/POLYMER/auxdata/seawifs/SeaWiFS_RSRs.txt
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:443... connected.
HTTP request sent, awaiting response... 200 OK
Length: 80249 (78K) [text/plain]
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     0K .......... .......... .......... .......... .......... 63% 1.31M 0s
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2026-05-13 16:21:07 (2.02 MB/s) - ‘/tmp/tmpudodu06h/SeaWiFS_RSRs.txt’ saved [80249/80249]

(d) 16:21:07 Moving "/tmp/tmpudodu06h/SeaWiFS_RSRs.txt" to "/root/.cache/polymer/auxdata/static/seawifs/SeaWiFS_RSRs.txt"...
(i) 16:21:07 Downloading:http://download.hygeos.com/POLYMER/auxdata/viirs/VIIRSN_IDPSv3_RSRs.txt
(i) 16:21:07 To: /root/.cache/polymer/auxdata/static/viirs/VIIRSN_IDPSv3_RSRs.txt
--2026-05-13 16:21:07--  http://download.hygeos.com/POLYMER/auxdata/viirs/VIIRSN_IDPSv3_RSRs.txt
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:07--  https://download.hygeos.com/POLYMER/auxdata/viirs/VIIRSN_IDPSv3_RSRs.txt
Connecting to download.hygeos.com (download.hygeos.com)|213.186.33.4|:443... connected.
HTTP request sent, awaiting response... 200 OK
Length: 317648 (310K) [text/plain]
Saving to: ‘/tmp/tmpum4yatld/VIIRSN_IDPSv3_RSRs.txt’

     0K .......... .......... .......... .......... .......... 16% 1.31M 0s
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   300K ..........                                            100% 55.3M=0.08s

2026-05-13 16:21:07 (3.97 MB/s) - ‘/tmp/tmpum4yatld/VIIRSN_IDPSv3_RSRs.txt’ saved [317648/317648]

(d) 16:21:07 Moving "/tmp/tmpum4yatld/VIIRSN_IDPSv3_RSRs.txt" to "/root/.cache/polymer/auxdata/static/viirs/VIIRSN_IDPSv3_RSRs.txt"...
(i) 16:21:07 Downloading:http://download.hygeos.com/POLYMER/auxdata/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2A.csv
(i) 16:21:07 To: /root/.cache/polymer/auxdata/static/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2A.csv
--2026-05-13 16:21:07--  http://download.hygeos.com/POLYMER/auxdata/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2A.csv
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:07--  https://download.hygeos.com/POLYMER/auxdata/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2A.csv
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2026-05-13 16:21:07 (2.10 MB/s) - ‘/tmp/tmpjr4i0kyk/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2A.csv’ saved [82446/82446]

(d) 16:21:07 Moving "/tmp/tmpjr4i0kyk/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2A.csv" to "/root/.cache/polymer/auxdata/static/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2A.csv"...
(i) 16:21:07 Downloading:http://download.hygeos.com/POLYMER/auxdata/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2B.csv
(i) 16:21:07 To: /root/.cache/polymer/auxdata/static/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2B.csv
--2026-05-13 16:21:07--  http://download.hygeos.com/POLYMER/auxdata/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2B.csv
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:07--  https://download.hygeos.com/POLYMER/auxdata/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2B.csv
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Length: 82356 (80K) [text/csv]
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2026-05-13 16:21:07 (2.10 MB/s) - ‘/tmp/tmph2i7zil_/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2B.csv’ saved [82356/82356]

(d) 16:21:07 Moving "/tmp/tmph2i7zil_/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2B.csv" to "/root/.cache/polymer/auxdata/static/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2B.csv"...
(i) 16:21:07 Downloading:http://download.hygeos.com/POLYMER/auxdata/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2C.csv
(i) 16:21:07 To: /root/.cache/polymer/auxdata/static/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2C.csv
--2026-05-13 16:21:07--  http://download.hygeos.com/POLYMER/auxdata/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2C.csv
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:07--  https://download.hygeos.com/POLYMER/auxdata/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2C.csv
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Length: 82189 (80K) [text/csv]
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(d) 16:21:08 Moving "/tmp/tmpglp5z984/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2C.csv" to "/root/.cache/polymer/auxdata/static/msi/S2-SRF_COPE-GSEG-EOPG-TN-15-0007_3.0_S2C.csv"...
(i) 16:21:08 Downloading:http://download.hygeos.com/POLYMER/auxdata/oli/Ball_BA_RSR.v1.2.xlsx
(i) 16:21:08 To: /root/.cache/polymer/auxdata/static/oli/Ball_BA_RSR.v1.2.xlsx
--2026-05-13 16:21:08--  http://download.hygeos.com/POLYMER/auxdata/oli/Ball_BA_RSR.v1.2.xlsx
Resolving download.hygeos.com (download.hygeos.com)... 213.186.33.4, 2001:41d0:1:1b00:213:186:33:4
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--2026-05-13 16:21:08--  https://download.hygeos.com/POLYMER/auxdata/oli/Ball_BA_RSR.v1.2.xlsx
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HTTP request sent, awaiting response... 200 OK
Length: 174535 (170K) [application/vnd.openxmlformats-officedocument.spreadsheetml.sheet]
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   150K .......... ..........                                 100% 43.8M=0.06s

2026-05-13 16:21:08 (2.87 MB/s) - ‘/tmp/tmp7t2a1w4y/Ball_BA_RSR.v1.2.xlsx’ saved [174535/174535]

(d) 16:21:08 Moving "/tmp/tmp7t2a1w4y/Ball_BA_RSR.v1.2.xlsx" to "/root/.cache/polymer/auxdata/static/oli/Ball_BA_RSR.v1.2.xlsx"...
2026-05-13 16:21:09,459 INFO [2025-12-11T00:00:00] Please note that a dedicated catalogue entry for this dataset, post-processed and stored in Analysis Ready Cloud Optimized (ARCO) format (Zarr), is available for optimised time-series retrievals (i.e. for retrieving data from selected variables for a single point over an extended period of time in an efficient way). You can discover it [here](https://cds.climate.copernicus.eu/datasets/reanalysis-era5-single-levels-timeseries?tab=overview)
2026-05-13 16:21:09,460 INFO Request ID is b5501fd9-7a8f-4210-a301-e8b9bb34b38c
2026-05-13 16:21:09,544 INFO status has been updated to accepted
2026-05-13 16:21:23,904 INFO status has been updated to successful

80cbf806b122f93568c6a27cca93a398.nc:   0%|          | 0.00/8.02M [00:00<?, ?B/s]
80cbf806b122f93568c6a27cca93a398.nc:  12%|█▏        | 1.00M/8.02M [00:00<00:04, 1.80MB/s]
80cbf806b122f93568c6a27cca93a398.nc:  50%|████▉     | 4.00M/8.02M [00:00<00:00, 7.55MB/s]
                                                                                         
2026-05-13 16:21:28,055 INFO [2025-12-11T00:00:00] Please note that a dedicated catalogue entry for this dataset, post-processed and stored in Analysis Ready Cloud Optimized (ARCO) format (Zarr), is available for optimised time-series retrievals (i.e. for retrieving data from selected variables for a single point over an extended period of time in an efficient way). You can discover it [here](https://cds.climate.copernicus.eu/datasets/reanalysis-era5-single-levels-timeseries?tab=overview)
2026-05-13 16:21:28,055 INFO Request ID is f3d5d736-525e-4ef1-8175-c0d19387caf5
2026-05-13 16:21:28,159 INFO status has been updated to accepted
2026-05-13 16:21:41,728 INFO status has been updated to running
2026-05-13 16:21:50,336 INFO status has been updated to successful

16ac8288617c46e4bb7e83dc0a068c60.nc:   0%|          | 0.00/8.13M [00:00<?, ?B/s]
16ac8288617c46e4bb7e83dc0a068c60.nc:  12%|█▏        | 1.00M/8.13M [00:00<00:03, 1.91MB/s]
16ac8288617c46e4bb7e83dc0a068c60.nc:  62%|██████▏   | 5.00M/8.13M [00:00<00:00, 10.1MB/s]
                                                                                         
Warning 1: Value -32768 in the source dataset has been changed to -32767 in the destination dataset to avoid being treated as NoData. To avoid this, select a different NoData value for the destination dataset.
Warning 1: Value -32768 in the source dataset has been changed to -32767 in the destination dataset to avoid being treated as NoData. To avoid this, select a different NoData value for the destination dataset.
2026/05/13 16:22:55:   Currently, L2A dead pixel masks cannot be saved yet.
2026/05/13 16:22:55:   The 'isofit_atm_state' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:22:55:   The 'isofit_uncertainty' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:22:55:   Currently, the L2A metadata XML file does not contain all relevant keys and contains not updated values!
Captured log call
INFO     ecmwf.datastores.legacy_client:legacy_client.py:192 [2025-12-11T00:00:00] Please note that a dedicated catalogue entry for this dataset, post-processed and stored in Analysis Ready Cloud Optimized (ARCO) format (Zarr), is available for optimised time-series retrievals (i.e. for retrieving data from selected variables for a single point over an extended period of time in an efficient way). You can discover it [here](https://cds.climate.copernicus.eu/datasets/reanalysis-era5-single-levels-timeseries?tab=overview)
INFO     ecmwf.datastores.legacy_client:legacy_client.py:192 Request ID is b5501fd9-7a8f-4210-a301-e8b9bb34b38c
INFO     ecmwf.datastores.legacy_client:legacy_client.py:192 status has been updated to accepted
INFO     ecmwf.datastores.legacy_client:legacy_client.py:192 status has been updated to successful
INFO     ecmwf.datastores.legacy_client:legacy_client.py:192 [2025-12-11T00:00:00] Please note that a dedicated catalogue entry for this dataset, post-processed and stored in Analysis Ready Cloud Optimized (ARCO) format (Zarr), is available for optimised time-series retrievals (i.e. for retrieving data from selected variables for a single point over an extended period of time in an efficient way). You can discover it [here](https://cds.climate.copernicus.eu/datasets/reanalysis-era5-single-levels-timeseries?tab=overview)
INFO     ecmwf.datastores.legacy_client:legacy_client.py:192 Request ID is f3d5d736-525e-4ef1-8175-c0d19387caf5
INFO     ecmwf.datastores.legacy_client:legacy_client.py:192 status has been updated to accepted
INFO     ecmwf.datastores.legacy_client:legacy_client.py:192 status has been updated to running
INFO     ecmwf.datastores.legacy_client:legacy_client.py:192 status has been updated to successful

Teardown

PASSED Test_EnPT_Controller_ACWater::test_run_all_processors_without_acwater_installed 0:00:19.068705

Test to run all processors while replacing polymer_ac_enmap with None using mock.patch.

Setup

Call

Captured stdout call
EnPT Controller received the following configuration:
{'general_opts': {'CPUs': 24,
                  'create_logfile': True,
                  'disable_progress_bars': False,
                  'drop_bad_bands': True,
                  'log_level': 'DEBUG',
                  'n_lines_to_append': None,
                  'path_dem': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z__tile2__DEM_ASTER.bsq',
                  'path_l1b_enmap_image': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/EnMAP_Level_1B/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z__rows700-730.zip',
                  'path_l1b_enmap_image_gapfill': '',
                  'path_l1b_snr_model': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/enpt/resources/EnMAP_Sensor/EnMAP_Level_1B_SNR.zip',
                  'working_dir': '/tmp/tmpivcqy4sa'},
 'output': {'output_dir': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs',
            'output_format': 'GTiff',
            'output_interleave': 'pixel',
            'output_nodata_value': -32768},
 'processors': {'atmospheric_correction': {'auto_download_ecmwf': True,
                                           'blocksize': 100,
                                           'enable_ac': True,
                                           'enable_segmentation': True,
                                           'isofit_surface_category': 'multicomponent_surface',
                                           'land_ac_alg': 'SICOR',
                                           'mode_ac': 'combined',
                                           'path_isofit_surface_config': '',
                                           'path_isofit_surface_priors': '',
                                           'polymer_additional_results': True,
                                           'polymer_root': '/opt/conda/envs/ci_env/lib/python3.13/site-packages',
                                           'scale_factor_boa_ref': 10000,
                                           'threads': -1},
                'dead_pixel': {'algorithm': 'spectral',
                               'interp_method_spatial': 'linear',
                               'interp_method_spectral': 'linear',
                               'run_processor': True},
                'geometry': {'enable_absolute_coreg': False,
                             'enable_keystone_correction': False,
                             'enable_vnir_swir_coreg': False,
                             'path_reference_image': ''},
                'orthorectification': {'resamp_alg': 'bilinear',
                                       'target_coord_grid': {'x': array([ 0, 30]),
                                                             'y': array([ 0, 30])},
                                       'target_epsg': None,
                                       'target_projection_type': 'UTM',
                                       'vswir_overlap_algorithm': 'swir_only'},
                'smile': {'run_processor': False},
                'toa_ref': {'path_earthSunDist': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/enpt/resources/earth_sun_distance/Earth_Sun_distances_per_day_edited__1980_2030.csv',
                            'path_solar_irr': '/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/enpt/resources/solar_irradiance/SUNp1fontenla__350-2500nm_@0.1nm_converted.txt',
                            'scale_factor_toa_ref': 10000}}}
2026/05/13 16:22:55:   Reading metadata for VNIR detector...
2026/05/13 16:22:56:   Calculating solar irradiance...
2026/05/13 16:22:56:   Reading metadata for SWIR detector...
2026/05/13 16:22:56:   Calculating solar irradiance...
2026/05/13 16:22:56:   Pre-processing user-provided DEM...
2026/05/13 16:22:56:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:22:56:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:22:56:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:22:56:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:22:56:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:22:56:   Computing VNIR geolayer...
2026/05/13 16:22:56:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:22:57:   Computing SWIR geolayer...
2026/05/13 16:22:57:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:22:57:   Correcting dead pixels of VNIR detector...
Used algorithm: linear interpolation in the spectral domain
2026/05/13 16:22:57:   Percentage of defective pixels: 0.49
2026/05/13 16:22:57:   Percentage of pixels with a defect in any band: 35.60
2026/05/13 16:22:57:   Correcting dead pixels of SWIR detector...
Used algorithm: linear interpolation in the spectral domain
2026/05/13 16:22:57:   Percentage of defective pixels: 0.50
2026/05/13 16:22:57:   Percentage of pixels with a defect in any band: 44.50
2026/05/13 16:22:57:   Transforming the 'mask_landwater' attribute from VNIR to SWIR sensor geometry.
2026/05/13 16:22:57:   Starting atmospheric correction for VNIR and SWIR detector in 'combined' mode. Source radiometric unit code is 'TOARad'.
2026/05/13 16:22:57:   Running atmospheric correction in 'land' mode, i.e., SICOR is applied to ALL surfaces. Uncertainty is expected for water surfaces because SICOR is designed for land only.
2026/05/13 16:22:57:   SICOR AC configuration: 
{'processing': {'Exception': None,
                'Exception_type': '',
                'clear_fraction': None,
                'interface': {'args': (), 'kwargs': {}},
                'status': 1,
                'tIO': 0.0,
                'tRT': 0.0,
                'uncertainties': {}},
 'retrieval': {'cpu': 24,
               'default_aot_value': 0.192,
               'disable_progressbars': False,
               'fn_LUT': '',
               'inversion': {'eps': 0.01,
                             'full': False,
                             'gnform': 'n',
                             'maxiter': 35},
               'land_only': False,
               'n_pca': 5,
               'segmentation': True,
               'segs': 200,
               'smoothing_sigma': 50,
               'sol_model': 'fontenla',
               'state_vector': {'ice': {'ll': 0.001,
                                        'prior_mean': 0.02,
                                        'prior_sigma': 1000.0,
                                        'ul': 0.499,
                                        'use_prior_mean': False},
                                'intercept': {'ll': 0.001,
                                              'prior_mean': 0.3,
                                              'prior_sigma': 1000.0,
                                              'ul': 0.999,
                                              'use_prior_mean': False},
                                'liquid_water': {'ll': 0.001,
                                                 'prior_mean': 0.02,
                                                 'prior_sigma': 1000.0,
                                                 'ul': 0.499,
                                                 'use_prior_mean': False},
                                'slope': {'ll': -0.0004,
                                          'prior_mean': 0.0002,
                                          'prior_sigma': 1000.0,
                                          'ul': 0.0004,
                                          'use_prior_mean': False},
                                'water_vapor': {'ll': 0.001,
                                                'prior_mean': 2.5,
                                                'prior_sigma': 1000.0,
                                                'ul': 4.999,
                                                'use_prior_mean': False}},
               'unknowns': {'ice_absorption_coefficients': {'sigma': 2.39e-07},
                            'liquid_water_absorption_coefficients': {'sigma': 2.43e-07},
                            'skyview': {'sigma': 0.1},
                            'water_vapor_absorption_coefficients': {'sigma': 0.01}}},
 'sensor': {'fit': {'idx': [14,
                            15,
                            16,
                            17,
                            18,
                            19,
                            20,
                            21,
                            22,
                            23,
                            24,
                            25,
                            26,
                            27,
                            28,
                            29,
                            30,
                            31],
                    'snr': [322.94254006,
                            313.45752342,
                            313.32464722,
                            306.19455173,
                            281.35641378,
                            227.9759974,
                            157.22390595,
                            148.93620623,
                            154.40197388,
                            182.60431866,
                            232.89644996,
                            250.1244036,
                            252.2267179,
                            272.16592448,
                            299.71964816,
                            316.11909184,
                            326.33202741,
                            312.28461288]},
            'name': 'EnMAP',
            'resamp_alg': 'nearest'}}
2026/05/13 16:22:57:   Setting up forward operator...
2026/05/13 16:22:57:   SICOR is applied to land AND water pixels.
2026/05/13 16:22:57:   Transforming VNIR data to SWIR sensor geometry to enable first guess retrievals for liquid water and ice...
2026/05/13 16:22:58:   Getting observation metadata...
2026/05/13 16:22:58:   Checking if observation metadata values are within LUT value ranges...
2026/05/13 16:22:58:   Loading solar irradiance model...
2026/05/13 16:22:58:   Loading RT LUT...
2026/05/13 16:22:58:   LUT file was properly downloaded and is available for AC!
2026/05/13 16:22:58:   Converting LUT to Fontenla solar model...
2026/05/13 16:22:59:   Resampling LUT to EnMAP wavelengths...
2026/05/13 16:23:01:   Reducing grid dimensionality of LUT to increase interpolation speed...
2026/05/13 16:23:01:   Calculating absorption coefficients of liquid water and ice...
2026/05/13 16:23:02:   Performing first guess water vapor retrieval based on a common band ratio using VNIR data...
2026/05/13 16:23:03:   Transforming CWV first guess map to SWIR sensor geometry to enable segmentation and 3 phases of water retrieval...
2026/05/13 16:23:03:   Performing first guess liquid water retrieval based on the NDWI...
2026/05/13 16:23:03:   Performing first guess ice retrieval based on the NDSI...
2026/05/13 16:23:03:   Calculating first guess for intercept and slope of absorption feature continuum...
2026/05/13 16:23:03:   Segmenting SWIR L1B spectra to enhance processing speed...
2026/05/13 16:23:03:   Preparing segmented SWIR L1B data cube...
2026/05/13 16:23:03:   Performing 3 phases of water retrieval...
2026/05/13 16:23:03:   Setting up multiprocessing...
2026/05/13 16:23:03:   Multiprocessing on 24 cpu's
2026/05/13 16:23:03:   Preparing optimal estimation input...
2026/05/13 16:23:03:   Optimization...
2026/05/13 16:23:06:   Done!
2026/05/13 16:23:06:   Runtime: 2.11 s
2026/05/13 16:23:06:   Smoothing segmented CWV retrieval map...
2026/05/13 16:23:06:   Transforming smoothed CWV retrieval map to VNIR sensor geometry to enable AC of VNIR data...
2026/05/13 16:23:06:   Starting surface reflectance retrieval...
2026/05/13 16:23:06:   Calculating surface reflectance for vnir detector...
2026/05/13 16:23:08:   Calculating surface reflectance for swir detector...
2026/05/13 16:23:09:   Smoothing segmented liquid water and ice maps...
2026/05/13 16:23:10:   SICOR atmospheric correction for EnMAP in land mode successfully finished!
2026/05/13 16:23:10:   Joining results of atmospheric correction.
2026/05/13 16:23:10:   Re-applying dead pixel correction to correct for spectral spikes due to fringe effect.
2026/05/13 16:23:10:   Correcting dead pixels of VNIR detector...
Used algorithm: linear interpolation in the spectral domain
2026/05/13 16:23:10:   Percentage of defective pixels: 0.49
2026/05/13 16:23:10:   Percentage of pixels with a defect in any band: 35.60
2026/05/13 16:23:10:   Correcting dead pixels of SWIR detector...
Used algorithm: linear interpolation in the spectral domain
2026/05/13 16:23:10:   Percentage of defective pixels: 0.50
2026/05/13 16:23:10:   Percentage of pixels with a defect in any band: 44.50
2026/05/13 16:23:10:   Starting orthorectification...
2026/05/13 16:23:10:   Computed common target extent of orthorectified image (xmin, ymin, xmax, ymax in EPSG 32630): (637410.0, 4942680.0, 666180.0, 4949340.0)
2026/05/13 16:23:10:   Orthorectifying VNIR data using 'bilinear' resampling algorithm...
2026/05/13 16:23:10:   Orthorectifying SWIR data using 'bilinear' resampling algorithm...
2026/05/13 16:23:11:   Merging VNIR and SWIR data...
2026/05/13 16:23:11:   Orthorectifying 'mask_landwater' attribute...
2026/05/13 16:23:11:   Orthorectifying 'mask_clouds' attribute...
2026/05/13 16:23:11:   Orthorectifying 'mask_cloudshadow' attribute...
2026/05/13 16:23:12:   Orthorectifying 'mask_haze' attribute...
2026/05/13 16:23:12:   Orthorectifying 'mask_snow' attribute...
2026/05/13 16:23:12:   Orthorectifying 'mask_cirrus' attribute...
2026/05/13 16:23:12:   Orthorectifying 'sicor_cwv' attribute...
2026/05/13 16:23:12:   Orthorectifying 'sicor_liq' attribute...
2026/05/13 16:23:12:   Orthorectifying 'sicor_ice' attribute...
2026/05/13 16:23:13:   Setting all pixels to nodata that have values in the VNIR or the SWIR only...
2026/05/13 16:23:13:   Generating L2A metadata...
2026/05/13 16:23:13:   Pre-processing DEM to match EnMAP grid...
2026/05/13 16:23:13:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (222, 959, 202) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (222, 959, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.TIF.
Writing GeoArray of size (222, 959, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_SICOR_CWV.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_SICOR_LIQ.TIF.
Writing GeoArray of size (222, 959) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-ACOUT_SICOR_ICE.TIF.
2026/05/13 16:23:14:   Writing metadata to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-METADATA.XML
2026/05/13 16:23:14:   L2A product successfully written!
2026/05/13 16:23:14:   Total runtime of the processing chain: 0:00:19.025659
Captured stderr call
2026/05/13 16:22:55:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:22:57:   Polymer is not callable. As a fallback, SICOR is applied to water surfaces instead.

	progress: |==------------------------------------------------| 3.6% Complete  => 0:00:00
	progress: |========------------------------------------------| 15.7% Complete  => 0:00:00
	progress: |============--------------------------------------| 24.1% Complete  => 0:00:00
	progress: |========================--------------------------| 48.2% Complete  => 0:00:00
	progress: |============================----------------------| 56.6% Complete  => 0:00:00
	progress: |==================================----------------| 68.1% Complete  => 0:00:00
	progress: |===========================================-------| 85.5% Complete  => 0:00:00
	progress: |==================================================| 99.4% Complete  => 0:00:01
	progress: |==================================================| 100.0% Complete  => 0:00:01
2026/05/13 16:23:10:   VNIR L2A data contain negative values indicating an overcorrection. Please check for errors in the input data, the options file, or the processing code.
2026/05/13 16:23:10:   SWIR L2A data contain negative values indicating an overcorrection. Please check for errors in the input data, the options file, or the processing code.
2026/05/13 16:23:14:   Currently, L2A dead pixel masks cannot be saved yet.
2026/05/13 16:23:14:   The 'isofit_atm_state' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:23:14:   The 'isofit_uncertainty' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:23:14:   The 'polymer_logchl' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:23:14:   The 'polymer_logfb' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:23:14:   The 'polymer_rgli' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:23:14:   The 'polymer_rnir' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:23:14:   The 'polymer_bitmask' attribute cannot be saved because it does not exist in the current EnMAP image.
2026/05/13 16:23:14:   Currently, the L2A metadata XML file does not contain all relevant keys and contains not updated values!

Teardown

tests/test_dead_pixel_correction.py 15 0:00:06.674235

PASSED Test_Dead_Pixel_Corrector::test_correct_using_2D_deadpixelmap_spatial 0:00:03.137861

Setup

Call

Teardown

PASSED Test_Dead_Pixel_Corrector::test_correct_using_2D_deadpixelmap_spectral 0:00:00.105937

Setup

Call

Teardown

PASSED Test_Dead_Pixel_Corrector::test_correct_using_3D_deadpixelmap_spatial 0:00:03.218283

Setup

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PASSED Test_Dead_Pixel_Corrector::test_correct_using_3D_deadpixelmap_spectral 0:00:00.181191

Setup

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PASSED Test_interp_nodata_along_axis_2d::test_axis_0 0:00:00.003257

Setup

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PASSED Test_interp_nodata_along_axis_2d::test_axis_1 0:00:00.002610

Setup

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PASSED Test_interp_nodata_along_axis_2d::test_bad_args 0:00:00.001251

Setup

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PASSED Test_interp_nodata_along_axis::test_2d 0:00:00.001969

Setup

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PASSED Test_interp_nodata_along_axis::test_3d_axis_0 0:00:00.002773

Setup

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PASSED Test_interp_nodata_along_axis::test_3d_axis_1 0:00:00.003454

Setup

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PASSED Test_interp_nodata_along_axis::test_3d_axis_2 0:00:00.004519

Setup

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PASSED Test_interp_nodata_along_axis::test_bad_args 0:00:00.001039

Setup

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PASSED Test_interp_nodata_spatially_2d::test_bad_args 0:00:00.001328

Setup

Call

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PASSED Test_interp_nodata_spatially_2d::test_interpolation_pandas 0:00:00.003435

Setup

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PASSED Test_interp_nodata_spatially_2d::test_interpolation_scipy 0:00:00.005328

Setup

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tests/test_dem_download.py 10 0:00:12.211066

PASSED Test_CopernicusDEMGenerator::test_run_equator_crossing 0:00:02.472076

Setup

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PASSED Test_CopernicusDEMGenerator::test_run_lonlat_glo30 0:00:01.114485

Setup

Call

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PASSED Test_CopernicusDEMGenerator::test_run_lonlat_glo30_res1px 0:00:01.116929

Setup

Call

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PASSED Test_CopernicusDEMGenerator::test_run_lonlat_glo90 0:00:00.562219

Setup

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Teardown

PASSED Test_CopernicusDEMGenerator::test_run_only_water 0:00:00.236071

Setup

Call

Captured log call
WARNING  enpt.processors.dem_preprocessing.dem_download:logging.py:253 Can't open https://copernicus-dem-30m.s3.amazonaws.com/Copernicus_DSM_COG_10_S01_00_W001_00_DEM/Copernicus_DSM_COG_10_S01_00_W001_00_DEM.tif. Skipping it
WARNING  enpt.processors.dem_preprocessing.dem_download:logging.py:253 Can't open https://copernicus-dem-30m.s3.amazonaws.com/Copernicus_DSM_COG_10_S01_00_E000_00_DEM/Copernicus_DSM_COG_10_S01_00_E000_00_DEM.tif. Skipping it
WARNING  enpt.processors.dem_preprocessing.dem_download:logging.py:253 Can't open https://copernicus-dem-30m.s3.amazonaws.com/Copernicus_DSM_COG_10_N00_00_W001_00_DEM/Copernicus_DSM_COG_10_N00_00_W001_00_DEM.tif. Skipping it
WARNING  enpt.processors.dem_preprocessing.dem_download:logging.py:253 Can't open https://copernicus-dem-30m.s3.amazonaws.com/Copernicus_DSM_COG_10_N00_00_E000_00_DEM/Copernicus_DSM_COG_10_N00_00_E000_00_DEM.tif. Skipping it

Teardown

PASSED Test_CopernicusDEMGenerator::test_run_utm_glo30 0:00:01.913385

Setup

Call

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PASSED Test_CopernicusDEMGenerator::test_run_utm_glo30_res30 0:00:01.740660

Setup

Call

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PASSED Test_CopernicusDEMGenerator::test_run_utm_glo90 0:00:00.935751

Setup

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PASSED Test_CopernicusDEMGenerator::test_run_zero_meridian_crossing 0:00:02.117776

Setup

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PASSED Test_CopernicusDEMGenerator::test_wrong_product 0:00:00.001715

Setup

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tests/test_dem_preprocessing.py 11 0:00:01.874182

PASSED Test_DEM_Processor::test_compute_aspect 0:00:00.050836

Setup

Call

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PASSED Test_DEM_Processor::test_compute_slopes 0:00:00.023463

Setup

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PASSED Test_DEM_Processor::test_fill_gaps 0:00:00.022293

Setup

Call

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PASSED Test_DEM_Processor::test_get_dem_in_map_geometry__no_resampling 0:00:00.026212

Setup

Call

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PASSED Test_DEM_Processor::test_get_dem_in_map_geometry__with_resampling 0:00:00.219978

Setup

Call

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PASSED Test_DEM_Processor::test_get_dem_in_map_geometry__with_resampling_big_array 0:00:01.241281

Setup

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PASSED Test_DEM_Processor::test_get_dem_in_sensor_geometry 0:00:00.174382

Setup

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PASSED Test_DEM_Processor::test_get_flat_dem 0:00:00.035413

Setup

Call

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PASSED Test_DEM_Processor::test_init_demTooSmall 0:00:00.031840

Setup

Call

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PASSED Test_DEM_Processor::test_init_noWGS84 0:00:00.024538

Setup

Call

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PASSED Test_DEM_Processor::test_init_nomapinfo 0:00:00.023946

Setup

Call

Teardown

tests/test_images_sensorgeo.py 6 0:00:30.093535

PASSED Test_EnMAPL1Product_SensorGeo::test_set_SWIRattr_with_transformedVNIRattr 0:00:03.839269

Setup

Captured stdout setup
2026/05/13 16:23:35:   Reading metadata for VNIR detector...
2026/05/13 16:23:36:   Calculating solar irradiance...
2026/05/13 16:23:36:   Reading metadata for SWIR detector...
2026/05/13 16:23:36:   Calculating solar irradiance...
2026/05/13 16:23:36:   Pre-processing user-provided DEM...
2026/05/13 16:23:36:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:23:37:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:23:37:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:23:37:   Computing VNIR geolayer...
2026/05/13 16:23:38:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:23:38:   Computing SWIR geolayer...
2026/05/13 16:23:38:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr setup
2026/05/13 16:23:35:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.

Call

Captured stdout call
2026/05/13 16:23:38:   Transforming the 'mask_snow' attribute from VNIR to SWIR sensor geometry.
Captured stderr call
2026/05/13 16:23:38:   The mask_snow is not yet available in SWIR sensor geometry. Use EnMAP_SWIR_SensorGeo.transform_vnir_to_swir_raster() to set it with a transformed version of the one provided in VNIR sensor geometry.

Teardown

PASSED Test_EnMAPL1Product_SensorGeo::test_set_SWIRattr_with_transformedVNIRattr__attrIsNone 0:00:00.003177

Setup

Call

Captured stdout call
2026/05/13 16:23:39:   Transforming the 'mask_haze' attribute from VNIR to SWIR sensor geometry.

Teardown

PASSED Test_EnMAPL1Product_SensorGeo::test_transform_swir_to_vnir_raster__no_geolayer 0:00:00.002450

Setup

Call

Teardown

PASSED Test_EnMAPL1Product_SensorGeo::test_transform_swir_to_vnir_raster_no_keystone 0:00:02.772210

Setup

Call

Teardown

PASSED Test_EnMAPL1Product_SensorGeo::test_transform_vnir_to_swir_raster__no_geolayer 0:00:00.001741

Setup

Call

Teardown

PASSED Test_EnMAPL1Product_SensorGeo::test_transform_vnir_to_swir_raster_with_keystone 0:00:23.474689

Setup

Call

Teardown

tests/test_isofit_enmap.py 65 0:02:11.585196

PASSED Test_ISOFIT_EnMAP::test__compute_cos_i 0:00:09.662073

Setup

Call

Captured stdout call
2026/05/13 16:24:05:   Downloading EnPT-internal resources for ISOFIT...
2026/05/13 16:24:05:   ISOFIT surface spectra zipfile already downloaded. Proceeding.
2026/05/13 16:24:05:   LUT zipfile already downloaded. Proceeding.
2026/05/13 16:24:05:   Downloading ISOFIT extra-files...
Downloading ISOFIT data
Output as: /root/.isofit/data
Pulling release v1.0.5
Downloading file
Unzipping /root/.isofit/isofit-data.zip
Done, now available at: /root/.isofit/data
Downloading ISOFIT examples
Output as: /root/.isofit/examples
Pulling release v1.3.3
Downloading file
Unzipping /root/.isofit/isofit-tutorials.zip
Downloading NEON data for the example
Output as: /root/.isofit/examples/isotuts/NEON/data
Downloading file
Unzipping /root/.isofit/examples/isotuts/NEON/NEON-subset-data.zip
Done, now available at: /root/.isofit/examples
[!] Be sure to build the examples for your system via `isofit build`

Teardown

PASSED Test_ISOFIT_EnMAP::test__compute_solar_phase 0:00:00.262266

Setup

Call

Captured stdout call
2026/05/13 16:24:15:   Downloading EnPT-internal resources for ISOFIT...
2026/05/13 16:24:15:   ISOFIT surface spectra zipfile already downloaded. Proceeding.
2026/05/13 16:24:15:   LUT zipfile already downloaded. Proceeding.
2026/05/13 16:24:15:   Downloading ISOFIT extra-files...
Downloading ISOFIT data
Output as: /root/.isofit/data
Path already exists, please remove it or set the overwrite flag if you would like to redownload
Downloading ISOFIT examples
Output as: /root/.isofit/examples
Path already exists, please remove it or set the overwrite flag if you would like to redownload

Teardown

SKIPPED Test_ISOFIT_EnMAP::test__run__backtransformed_l2_spectra_6s 0:00:00.000744

4x3 spectra within 10x10 image. Lines: different forward sim.: #1: UVEG LUT; #2: Luis LUT, #3: MODTRAN.

Skipped: too slow for running in CI

Setup

('/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_isofit_enmap.py', 186, 'Skipped: too slow for running in CI')

Teardown

PASSED Test_ISOFIT_EnMAP::test__run__backtransformed_l2_spectra_lut_mod5 0:01:07.508743

4x3 spectra within 10x10 image. Lines: different forward sim.: #1: UVEG LUT; #2: Luis LUT, #3: MODTRAN.

Setup

Call

Captured stdout call
2026/05/13 16:24:15:   Downloading EnPT-internal resources for ISOFIT...
2026/05/13 16:24:15:   ISOFIT surface spectra zipfile already downloaded. Proceeding.
2026/05/13 16:24:15:   LUT zipfile already downloaded. Proceeding.
2026/05/13 16:24:15:   Downloading ISOFIT extra-files...
Downloading ISOFIT data
Output as: /root/.isofit/data
Path already exists, please remove it or set the overwrite flag if you would like to redownload
Downloading ISOFIT examples
Output as: /root/.isofit/examples
Path already exists, please remove it or set the overwrite flag if you would like to redownload
2026/05/13 16:24:15:   Generating LUT file...
2026/05/13 16:24:25:   Flightline ID: 20220717T110603Z
2026/05/13 16:24:25:   no noise path found, proceeding without
2026/05/13 16:24:25:   Running ISOFIT...
2026/05/13 16:24:25:   Loading config file: /tmp/tmpzj2eha60/workdir/config/isofit_config.json
2026/05/13 16:24:25:   Checking config sections for configuration issues
2026/05/13 16:24:25:   Configuration file checks complete, no errors found.
2026/05/13 16:24:34:   Building first forward model, will generate any necessary LUTs
2026/05/13 16:24:34:   Loading from wavelength_file: /tmp/tmpzj2eha60/extracted/backtransformed_l2_spectra_v9/enmap_wavelengths.txt
2026/05/13 16:24:34:   Prebuilt LUT provided
2026/05/13 16:24:46:   Loading LUT into memory
2026/05/13 16:24:47:   LUT grid loaded from file: OrderedDict({'AERFRAC_2': [0.05, 0.12, 0.2, 0.3, 0.4, 0.8], 'H2OSTR': [0.0, 1.0, 1.5, 2.0, 2.7, 3.5, 5.0], 'observer_zenith': [0, 10.0, 20.0, 30.0, 40.0], 'relative_azimuth': [0, 25.0, 50.0, 85.0, 120.0, 155.0, 180.0], 'solar_zenith': [0, 10.0, 20.0, 35.0, 50.0, 70.0], 'surface_elevation_km': [0, 0.7, 2.5, 8.0]})
2026/05/13 16:25:10:   Beginning 100 inversions in 100 chunks using 20 cores
2026/05/13 16:25:20:   Inversions complete.  9.15s total, 10.9268 spectra/s, 0.5463 spectra/s/core
2026/05/13 16:25:20:   ISOFIT finished.
2026/05/13 16:25:20:   Stopping ray.
Captured stderr call
2026/05/13 16:24:25:   
******************************************************************************************
! Number of threads is greater than 1 (currently: 24), this may greatly impact performance
! Please set this the environment variables 'MKL_NUM_THREADS' and 'OMP_NUM_THREADS' to '1'
******************************************************************************************
2026-05-13 16:24:30,677	WARNING services.py:2168 -- WARNING: The object store is using /tmp instead of /dev/shm because /dev/shm has only 66883584 bytes available. This will harm performance! You may be able to free up space by deleting files in /dev/shm. If you are inside a Docker container, you can increase /dev/shm size by passing '--shm-size=10.24gb' to 'docker run' (or add it to the run_options list in a Ray cluster config). Make sure to set this to more than 30% of available RAM.
2026-05-13 16:24:33,344	INFO worker.py:2013 -- Started a local Ray instance.
(raylet) WARNING: All log messages before absl::InitializeLog() is called are written to STDERR
(raylet) I0000 00:00:1778689520.051946    1142 chttp2_transport.cc:1182] ipv4:172.17.0.32:34683: Got goaway [2] err=UNAVAILABLE:GOAWAY received; Error code: 2; Debug Text: Cancelling all calls {grpc_status:14, http2_error:2, created_time:"2026-05-13T16:25:20.051939656+00:00"}
(raylet) I0000 00:00:1778689520.108602    1133 chttp2_transport.cc:1182] ipv4:172.17.0.32:42533: Got goaway [2] err=UNAVAILABLE:GOAWAY received; Error code: 2; Debug Text: Cancelling all calls {grpc_status:14, http2_error:2, created_time:"2026-05-13T16:25:20.108594801+00:00"} [repeated 19x across cluster] (Ray deduplicates logs by default. Set RAY_DEDUP_LOGS=0 to disable log deduplication, or see https://docs.ray.io/en/master/ray-observability/user-guides/configure-logging.html#log-deduplication for more options.)

Teardown

SKIPPED Test_ISOFIT_EnMAP::test_apply_oe__direct_call 0:00:00.000602

Skipped: too slow for running in CI

Setup

('/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_isofit_enmap.py', 120, 'Skipped: too slow for running in CI')

Teardown

SKIPPED Test_ISOFIT_EnMAP::test_apply_oe_on_map_geometry 0:00:00.000430

Skipped: too slow for running in CI

Setup

('/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_isofit_enmap.py', 154, 'Skipped: too slow for running in CI')

Teardown

PASSED Test_ISOFIT_EnMAP::test_download_isofit_resources 0:00:02.303401

Setup

Call

Captured stdout call
2026/05/13 16:25:23:   ISOFIT surface spectra zipfile successfully downloaded.
2026/05/13 16:25:25:   LUT zipfile successfully downloaded.
2026/05/13 16:25:25:   ISOFIT surface spectra zipfile already downloaded. Proceeding.
2026/05/13 16:25:25:   LUT zipfile already downloaded. Proceeding.
Captured log call
INFO     test_downloads:_isofit_downloads.py:83 ISOFIT surface spectra zipfile successfully downloaded.
INFO     test_downloads:_isofit_downloads.py:83 LUT zipfile successfully downloaded.
INFO     test_downloads:_isofit_downloads.py:87 ISOFIT surface spectra zipfile already downloaded. Proceeding.
INFO     test_downloads:_isofit_downloads.py:87 LUT zipfile already downloaded. Proceeding.

Teardown

PASSED Test_ISOFIT_EnMAP::test_generate_input_files 0:00:41.593190

Setup

Call

Captured stdout call
2026/05/13 16:25:25:   Downloading EnPT-internal resources for ISOFIT...
2026/05/13 16:25:25:   ISOFIT surface spectra zipfile already downloaded. Proceeding.
2026/05/13 16:25:25:   LUT zipfile already downloaded. Proceeding.
2026/05/13 16:25:25:   Downloading ISOFIT extra-files...
Downloading ISOFIT data
Output as: /root/.isofit/data
Path already exists, please remove it or set the overwrite flag if you would like to redownload
Downloading ISOFIT examples
Output as: /root/.isofit/examples
Path already exists, please remove it or set the overwrite flag if you would like to redownload
2026/05/13 16:25:25:   Reading Input Data
2026/05/13 16:25:25:   Reading metadata for VNIR detector...
2026/05/13 16:25:26:   Calculating solar irradiance...
2026/05/13 16:25:26:   Reading metadata for SWIR detector...
2026/05/13 16:25:26:   Calculating solar irradiance...
2026/05/13 16:25:26:   Pre-processing user-provided DEM...
2026/05/13 16:25:26:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:25:26:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:25:27:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:25:27:   Computing VNIR geolayer...
2026/05/13 16:25:27:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:25:27:   Computing SWIR geolayer...
2026/05/13 16:25:27:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:25:27:   Starting orthorectification...
2026/05/13 16:25:27:   Computed common target extent of orthorectified image (xmin, ymin, xmax, ymax in EPSG 32630): (636990.0, 4940640.0, 666180.0, 4949340.0)
2026/05/13 16:25:27:   Orthorectifying VNIR data using 'bilinear' resampling algorithm...
2026/05/13 16:25:28:   Orthorectifying SWIR data using 'bilinear' resampling algorithm...
2026/05/13 16:25:30:   Merging VNIR and SWIR data...
2026/05/13 16:25:30:   Orthorectifying 'mask_landwater' attribute...
2026/05/13 16:25:30:   Orthorectifying 'mask_clouds' attribute...
2026/05/13 16:25:30:   Orthorectifying 'mask_cloudshadow' attribute...
2026/05/13 16:25:30:   Orthorectifying 'mask_haze' attribute...
2026/05/13 16:25:31:   Orthorectifying 'mask_snow' attribute...
2026/05/13 16:25:31:   Orthorectifying 'mask_cirrus' attribute...
2026/05/13 16:25:31:   Setting all pixels to nodata that have values in the VNIR or the SWIR only...
2026/05/13 16:25:32:   Generating L2A metadata...
2026/05/13 16:25:33:   Pre-processing DEM to match EnMAP grid...
2026/05/13 16:25:33:   Generating radiance file...
Writing GeoArray of size (290, 973, 202) to /tmp/tmpgp2l7uzx/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z_rdn.
2026/05/13 16:25:34:   Generating location file...
Writing GeoArray of size (290, 973, 3) to /tmp/tmpgp2l7uzx/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z_loc.
2026/05/13 16:25:34:   Generating observation file...
Writing GeoArray of size (290, 973, 11) to /tmp/tmpgp2l7uzx/ENMAP01-____L2A-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z_obs.
2026/05/13 16:25:34:   Generating wavelength file...
2026/05/13 16:25:34:   Generating surface file for default set of surface coverage types...
0 ['filtered_other']
0 ['filtered_veg']
0 ['filtered_ocean']
0 ['surface_Liquids']
1 ['surface_Liquids']
2026/05/13 16:25:56:   Generating LUT file...
Captured stderr call
2026/05/13 16:25:25:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.

Teardown

SKIPPED Test_ISOFIT_EnMAP::test_run_on_map_geometry 0:00:00.000493

Skipped: too slow for running in CI

Setup

('/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_isofit_enmap.py', 214, 'Skipped: too slow for running in CI')

Teardown

SKIPPED Test_ISOFIT_EnMAP::test_run_on_map_geometry_no_segmentation 0:00:00.000690

Skipped: too slow for running in CI

Setup

('/builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/test_isofit_enmap.py', 218, 'Skipped: too slow for running in CI')

Teardown

PASSED Test_LUTTransformer::test_modtran_lut_to_netcdf 0:00:10.252565

Setup

Call

Teardown

tests/test_l1b_reader.py 11 0:03:39.707206

PASSED Test_L1B_Reader::test_append_100_lines 0:00:36.041445

Setup

Call

Captured stdout call
2026/05/13 16:26:17:   Reading Input Data
2026/05/13 16:26:17:   Reading metadata for VNIR detector...
2026/05/13 16:26:17:   Reading metadata for SWIR detector...
2026/05/13 16:26:18:   Pre-processing user-provided DEM...
2026/05/13 16:26:18:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:18:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:18:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:18:   Reading metadata for VNIR detector...
2026/05/13 16:26:19:   Reading metadata for SWIR detector...
2026/05/13 16:26:19:   Pre-processing user-provided DEM...
2026/05/13 16:26:19:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:19:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:19:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:19:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:26:19:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:26:20:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:26:20:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:26:20:   Computing VNIR geolayer...
2026/05/13 16:26:20:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:26:20:   Computing SWIR geolayer...
2026/05/13 16:26:21:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:26:21:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpdxb37xov/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:26:22:   L1B product successfully written!
2026/05/13 16:26:22:   Reading Input Data
2026/05/13 16:26:22:   Reading metadata for VNIR detector...
2026/05/13 16:26:22:   Reading metadata for SWIR detector...
2026/05/13 16:26:22:   Pre-processing user-provided DEM...
2026/05/13 16:26:22:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:23:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:23:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:23:   Computing VNIR geolayer...
2026/05/13 16:26:23:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:26:24:   Computing SWIR geolayer...
2026/05/13 16:26:24:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:26:25:   Reading Input Data
2026/05/13 16:26:25:   Reading metadata for VNIR detector...
2026/05/13 16:26:25:   Reading metadata for SWIR detector...
2026/05/13 16:26:25:   Pre-processing user-provided DEM...
2026/05/13 16:26:25:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:25:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:26:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:26:   Reading metadata for VNIR detector...
2026/05/13 16:26:26:   Reading metadata for SWIR detector...
2026/05/13 16:26:27:   Pre-processing user-provided DEM...
2026/05/13 16:26:27:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:27:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:27:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:27:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:26:27:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:26:27:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:26:27:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:26:28:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:26:29:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:26:29:   Computing VNIR geolayer...
2026/05/13 16:26:29:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:26:30:   Computing SWIR geolayer...
2026/05/13 16:26:30:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:26:30:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpow66m8of/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:26:31:   L1B product successfully written!
2026/05/13 16:26:31:   Reading Input Data
2026/05/13 16:26:31:   Reading metadata for VNIR detector...
2026/05/13 16:26:31:   Reading metadata for SWIR detector...
2026/05/13 16:26:32:   Pre-processing user-provided DEM...
2026/05/13 16:26:32:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:32:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:32:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:32:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:26:34:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:26:34:   Computing VNIR geolayer...
2026/05/13 16:26:34:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:26:35:   Computing SWIR geolayer...
2026/05/13 16:26:35:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:26:36:   Reading Input Data
2026/05/13 16:26:36:   Reading metadata for VNIR detector...
2026/05/13 16:26:37:   Reading metadata for SWIR detector...
2026/05/13 16:26:37:   Pre-processing user-provided DEM...
2026/05/13 16:26:37:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:37:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:38:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:38:   Reading metadata for VNIR detector...
2026/05/13 16:26:39:   Reading metadata for SWIR detector...
2026/05/13 16:26:39:   Pre-processing user-provided DEM...
2026/05/13 16:26:39:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:39:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:40:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:40:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:26:40:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:26:40:   Computing VNIR geolayer...
2026/05/13 16:26:40:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:26:41:   Computing SWIR geolayer...
2026/05/13 16:26:41:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:26:41:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxxx5dany/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:26:42:   L1B product successfully written!
2026/05/13 16:26:42:   Reading Input Data
2026/05/13 16:26:42:   Reading metadata for VNIR detector...
2026/05/13 16:26:42:   Reading metadata for SWIR detector...
2026/05/13 16:26:43:   Pre-processing user-provided DEM...
2026/05/13 16:26:43:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:43:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:43:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:43:   Computing VNIR geolayer...
2026/05/13 16:26:44:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:26:44:   Computing SWIR geolayer...
2026/05/13 16:26:44:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:26:44:   Reading Input Data
2026/05/13 16:26:45:   Reading metadata for VNIR detector...
2026/05/13 16:26:45:   Reading metadata for SWIR detector...
2026/05/13 16:26:45:   Pre-processing user-provided DEM...
2026/05/13 16:26:46:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:46:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:46:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:47:   Reading metadata for VNIR detector...
2026/05/13 16:26:47:   Reading metadata for SWIR detector...
2026/05/13 16:26:47:   Pre-processing user-provided DEM...
2026/05/13 16:26:47:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:48:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:48:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:48:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:26:48:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:26:48:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:26:49:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:26:49:   Computing VNIR geolayer...
2026/05/13 16:26:49:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:26:49:   Computing SWIR geolayer...
2026/05/13 16:26:50:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:26:50:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmprejywm_v/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:26:50:   L1B product successfully written!
2026/05/13 16:26:50:   Reading Input Data
2026/05/13 16:26:50:   Reading metadata for VNIR detector...
2026/05/13 16:26:51:   Reading metadata for SWIR detector...
2026/05/13 16:26:51:   Pre-processing user-provided DEM...
2026/05/13 16:26:51:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:51:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:51:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:51:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:26:52:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:26:52:   Computing VNIR geolayer...
2026/05/13 16:26:52:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:26:52:   Computing SWIR geolayer...
2026/05/13 16:26:53:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:26:17:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:18:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:22:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:25:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:26:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:31:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:36:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:38:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:40:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:26:40:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:26:42:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:45:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:47:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:48:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:26:48:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:26:50:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_L1B_Reader::test_append_10_lines 0:00:28.858659

Setup

Call

Captured stdout call
2026/05/13 16:26:53:   Reading Input Data
2026/05/13 16:26:53:   Reading metadata for VNIR detector...
2026/05/13 16:26:53:   Reading metadata for SWIR detector...
2026/05/13 16:26:54:   Pre-processing user-provided DEM...
2026/05/13 16:26:54:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:54:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:54:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:54:   Reading metadata for VNIR detector...
2026/05/13 16:26:55:   Reading metadata for SWIR detector...
2026/05/13 16:26:55:   Pre-processing user-provided DEM...
2026/05/13 16:26:55:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:55:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:55:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:56:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:26:56:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:26:56:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:26:56:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:26:56:   Computing VNIR geolayer...
2026/05/13 16:26:56:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:26:56:   Computing SWIR geolayer...
2026/05/13 16:26:57:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:26:57:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (150, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (150, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (150, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (150, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (150, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (150, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpks7mvebg/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:26:58:   L1B product successfully written!
2026/05/13 16:26:58:   Reading Input Data
2026/05/13 16:26:58:   Reading metadata for VNIR detector...
2026/05/13 16:26:58:   Reading metadata for SWIR detector...
2026/05/13 16:26:58:   Pre-processing user-provided DEM...
2026/05/13 16:26:58:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:26:58:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:26:58:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:26:59:   Computing VNIR geolayer...
2026/05/13 16:26:59:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:26:59:   Computing SWIR geolayer...
2026/05/13 16:27:00:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:00:   Reading Input Data
2026/05/13 16:27:00:   Reading metadata for VNIR detector...
2026/05/13 16:27:00:   Reading metadata for SWIR detector...
2026/05/13 16:27:00:   Pre-processing user-provided DEM...
2026/05/13 16:27:01:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:01:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:01:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:01:   Reading metadata for VNIR detector...
2026/05/13 16:27:02:   Reading metadata for SWIR detector...
2026/05/13 16:27:02:   Pre-processing user-provided DEM...
2026/05/13 16:27:02:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:02:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:02:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:02:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:27:02:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:27:03:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:27:03:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:27:03:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:27:04:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:27:04:   Computing VNIR geolayer...
2026/05/13 16:27:04:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:04:   Computing SWIR geolayer...
2026/05/13 16:27:05:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:05:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (150, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (150, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (150, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (150, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (150, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (150, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnq0orjad/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:27:06:   L1B product successfully written!
2026/05/13 16:27:06:   Reading Input Data
2026/05/13 16:27:06:   Reading metadata for VNIR detector...
2026/05/13 16:27:06:   Reading metadata for SWIR detector...
2026/05/13 16:27:06:   Pre-processing user-provided DEM...
2026/05/13 16:27:06:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:06:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:06:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:07:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:27:08:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:27:08:   Computing VNIR geolayer...
2026/05/13 16:27:08:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:08:   Computing SWIR geolayer...
2026/05/13 16:27:09:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:09:   Reading Input Data
2026/05/13 16:27:09:   Reading metadata for VNIR detector...
2026/05/13 16:27:09:   Reading metadata for SWIR detector...
2026/05/13 16:27:10:   Pre-processing user-provided DEM...
2026/05/13 16:27:10:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:10:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:10:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:11:   Reading metadata for VNIR detector...
2026/05/13 16:27:11:   Reading metadata for SWIR detector...
2026/05/13 16:27:11:   Pre-processing user-provided DEM...
2026/05/13 16:27:11:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:11:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:11:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:12:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:27:12:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:27:12:   Computing VNIR geolayer...
2026/05/13 16:27:12:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:12:   Computing SWIR geolayer...
2026/05/13 16:27:12:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:12:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphyqiyxw0/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:27:13:   L1B product successfully written!
2026/05/13 16:27:13:   Reading Input Data
2026/05/13 16:27:13:   Reading metadata for VNIR detector...
2026/05/13 16:27:13:   Reading metadata for SWIR detector...
2026/05/13 16:27:13:   Pre-processing user-provided DEM...
2026/05/13 16:27:13:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:13:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:14:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:14:   Computing VNIR geolayer...
2026/05/13 16:27:14:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:14:   Computing SWIR geolayer...
2026/05/13 16:27:14:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:14:   Reading Input Data
2026/05/13 16:27:15:   Reading metadata for VNIR detector...
2026/05/13 16:27:15:   Reading metadata for SWIR detector...
2026/05/13 16:27:15:   Pre-processing user-provided DEM...
2026/05/13 16:27:15:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:15:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:15:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:16:   Reading metadata for VNIR detector...
2026/05/13 16:27:16:   Reading metadata for SWIR detector...
2026/05/13 16:27:17:   Pre-processing user-provided DEM...
2026/05/13 16:27:17:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:17:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:17:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:17:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:27:17:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:27:17:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:27:18:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:27:18:   Computing VNIR geolayer...
2026/05/13 16:27:18:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:18:   Computing SWIR geolayer...
2026/05/13 16:27:19:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:19:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpu6ge01mz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:27:19:   L1B product successfully written!
2026/05/13 16:27:19:   Reading Input Data
2026/05/13 16:27:19:   Reading metadata for VNIR detector...
2026/05/13 16:27:20:   Reading metadata for SWIR detector...
2026/05/13 16:27:20:   Pre-processing user-provided DEM...
2026/05/13 16:27:20:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:20:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:20:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:20:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:27:21:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:27:21:   Computing VNIR geolayer...
2026/05/13 16:27:21:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:21:   Computing SWIR geolayer...
2026/05/13 16:27:21:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:26:53:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:54:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:26:56:   A minimum of 50 lines is required, only 10 were selected
2026/05/13 16:26:56:   Set the number of line to 50
2026/05/13 16:26:56:   A minimum of 50 lines is required, only 10 were selected
2026/05/13 16:26:56:   Set the number of line to 50
2026/05/13 16:26:58:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:00:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:01:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:02:   A minimum of 50 lines is required, only 10 were selected
2026/05/13 16:27:02:   Set the number of line to 50
2026/05/13 16:27:03:   A minimum of 50 lines is required, only 10 were selected
2026/05/13 16:27:03:   Set the number of line to 50
2026/05/13 16:27:06:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:09:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:10:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:12:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:27:12:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:27:13:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:15:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:16:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:17:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:27:17:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:27:19:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_L1B_Reader::test_append_150_lines 0:00:35.842420

Setup

Call

Captured stdout call
2026/05/13 16:27:22:   Reading Input Data
2026/05/13 16:27:22:   Reading metadata for VNIR detector...
2026/05/13 16:27:22:   Reading metadata for SWIR detector...
2026/05/13 16:27:22:   Pre-processing user-provided DEM...
2026/05/13 16:27:22:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:22:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:23:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:23:   Reading metadata for VNIR detector...
2026/05/13 16:27:23:   Reading metadata for SWIR detector...
2026/05/13 16:27:24:   Pre-processing user-provided DEM...
2026/05/13 16:27:24:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:24:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:24:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:24:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:27:24:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:27:24:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:27:24:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:27:25:   Computing VNIR geolayer...
2026/05/13 16:27:25:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:25:   Computing SWIR geolayer...
2026/05/13 16:27:25:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:26:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpw9cysevh/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:27:27:   L1B product successfully written!
2026/05/13 16:27:27:   Reading Input Data
2026/05/13 16:27:27:   Reading metadata for VNIR detector...
2026/05/13 16:27:27:   Reading metadata for SWIR detector...
2026/05/13 16:27:27:   Pre-processing user-provided DEM...
2026/05/13 16:27:27:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:27:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:28:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:28:   Computing VNIR geolayer...
2026/05/13 16:27:28:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:29:   Computing SWIR geolayer...
2026/05/13 16:27:29:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:29:   Reading Input Data
2026/05/13 16:27:30:   Reading metadata for VNIR detector...
2026/05/13 16:27:30:   Reading metadata for SWIR detector...
2026/05/13 16:27:30:   Pre-processing user-provided DEM...
2026/05/13 16:27:30:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:30:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:30:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:31:   Reading metadata for VNIR detector...
2026/05/13 16:27:31:   Reading metadata for SWIR detector...
2026/05/13 16:27:31:   Pre-processing user-provided DEM...
2026/05/13 16:27:31:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:31:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:32:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:32:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:27:32:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:27:32:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:27:32:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:27:32:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:27:34:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:27:34:   Computing VNIR geolayer...
2026/05/13 16:27:34:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:34:   Computing SWIR geolayer...
2026/05/13 16:27:35:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:35:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmphv2srl7m/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:27:36:   L1B product successfully written!
2026/05/13 16:27:36:   Reading Input Data
2026/05/13 16:27:37:   Reading metadata for VNIR detector...
2026/05/13 16:27:37:   Reading metadata for SWIR detector...
2026/05/13 16:27:37:   Pre-processing user-provided DEM...
2026/05/13 16:27:37:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:38:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:38:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:39:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:27:41:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:27:41:   Computing VNIR geolayer...
2026/05/13 16:27:42:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:42:   Computing SWIR geolayer...
2026/05/13 16:27:43:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:43:   Reading Input Data
2026/05/13 16:27:44:   Reading metadata for VNIR detector...
2026/05/13 16:27:44:   Reading metadata for SWIR detector...
2026/05/13 16:27:45:   Pre-processing user-provided DEM...
2026/05/13 16:27:45:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:45:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:45:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:46:   Reading metadata for VNIR detector...
2026/05/13 16:27:46:   Reading metadata for SWIR detector...
2026/05/13 16:27:47:   Pre-processing user-provided DEM...
2026/05/13 16:27:47:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:47:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:47:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:48:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:27:48:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:27:48:   Computing VNIR geolayer...
2026/05/13 16:27:48:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:48:   Computing SWIR geolayer...
2026/05/13 16:27:48:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:48:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpxstxael8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:27:49:   L1B product successfully written!
2026/05/13 16:27:49:   Reading Input Data
2026/05/13 16:27:49:   Reading metadata for VNIR detector...
2026/05/13 16:27:49:   Reading metadata for SWIR detector...
2026/05/13 16:27:49:   Pre-processing user-provided DEM...
2026/05/13 16:27:49:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:50:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:50:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:50:   Computing VNIR geolayer...
2026/05/13 16:27:50:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:50:   Computing SWIR geolayer...
2026/05/13 16:27:50:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:51:   Reading Input Data
2026/05/13 16:27:51:   Reading metadata for VNIR detector...
2026/05/13 16:27:51:   Reading metadata for SWIR detector...
2026/05/13 16:27:51:   Pre-processing user-provided DEM...
2026/05/13 16:27:51:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:51:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:52:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:52:   Reading metadata for VNIR detector...
2026/05/13 16:27:52:   Reading metadata for SWIR detector...
2026/05/13 16:27:52:   Pre-processing user-provided DEM...
2026/05/13 16:27:52:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:53:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:53:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:53:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:27:53:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:27:53:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:27:54:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:27:54:   Computing VNIR geolayer...
2026/05/13 16:27:54:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:54:   Computing SWIR geolayer...
2026/05/13 16:27:54:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:27:54:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptxr8mqga/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:27:55:   L1B product successfully written!
2026/05/13 16:27:55:   Reading Input Data
2026/05/13 16:27:55:   Reading metadata for VNIR detector...
2026/05/13 16:27:55:   Reading metadata for SWIR detector...
2026/05/13 16:27:56:   Pre-processing user-provided DEM...
2026/05/13 16:27:56:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:56:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:56:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:56:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:27:57:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:27:57:   Computing VNIR geolayer...
2026/05/13 16:27:57:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:27:57:   Computing SWIR geolayer...
2026/05/13 16:27:57:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:27:22:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:23:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:24:   n_lines (150) exceeds the total number of line of second image
2026/05/13 16:27:24:   Set to the image number of line
2026/05/13 16:27:24:   n_lines (150) exceeds the total number of line of second image
2026/05/13 16:27:24:   Set to the image number of line
2026/05/13 16:27:27:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:29:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:31:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:32:   n_lines (150) exceeds the total number of line of second image
2026/05/13 16:27:32:   Set to the image number of line
2026/05/13 16:27:32:   n_lines (150) exceeds the total number of line of second image
2026/05/13 16:27:32:   Set to the image number of line
2026/05/13 16:27:37:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:44:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:46:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:48:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:27:48:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:27:49:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:51:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:52:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:53:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:27:53:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:27:55:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_L1B_Reader::test_append_50_lines 0:00:28.410814

Setup

Call

Captured stdout call
2026/05/13 16:27:57:   Reading Input Data
2026/05/13 16:27:58:   Reading metadata for VNIR detector...
2026/05/13 16:27:58:   Reading metadata for SWIR detector...
2026/05/13 16:27:58:   Pre-processing user-provided DEM...
2026/05/13 16:27:58:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:27:58:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:27:58:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:27:59:   Reading metadata for VNIR detector...
2026/05/13 16:27:59:   Reading metadata for SWIR detector...
2026/05/13 16:27:59:   Pre-processing user-provided DEM...
2026/05/13 16:27:59:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:00:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:00:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:00:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:28:00:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:28:00:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:28:00:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:28:00:   Computing VNIR geolayer...
2026/05/13 16:28:01:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:01:   Computing SWIR geolayer...
2026/05/13 16:28:01:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:01:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (150, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (150, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (150, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (150, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (150, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (150, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp4s769a7a/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:28:02:   L1B product successfully written!
2026/05/13 16:28:02:   Reading Input Data
2026/05/13 16:28:02:   Reading metadata for VNIR detector...
2026/05/13 16:28:02:   Reading metadata for SWIR detector...
2026/05/13 16:28:03:   Pre-processing user-provided DEM...
2026/05/13 16:28:03:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:03:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:03:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:03:   Computing VNIR geolayer...
2026/05/13 16:28:04:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:04:   Computing SWIR geolayer...
2026/05/13 16:28:04:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:04:   Reading Input Data
2026/05/13 16:28:05:   Reading metadata for VNIR detector...
2026/05/13 16:28:05:   Reading metadata for SWIR detector...
2026/05/13 16:28:05:   Pre-processing user-provided DEM...
2026/05/13 16:28:05:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:05:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:05:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:06:   Reading metadata for VNIR detector...
2026/05/13 16:28:06:   Reading metadata for SWIR detector...
2026/05/13 16:28:06:   Pre-processing user-provided DEM...
2026/05/13 16:28:06:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:07:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:07:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:07:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:28:07:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:28:07:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:28:07:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:28:07:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:28:08:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:28:08:   Computing VNIR geolayer...
2026/05/13 16:28:09:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:09:   Computing SWIR geolayer...
2026/05/13 16:28:09:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:09:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (150, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (150, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (150, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (150, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (150, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (150, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (150, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp5lxs2ioj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:28:10:   L1B product successfully written!
2026/05/13 16:28:10:   Reading Input Data
2026/05/13 16:28:10:   Reading metadata for VNIR detector...
2026/05/13 16:28:10:   Reading metadata for SWIR detector...
2026/05/13 16:28:11:   Pre-processing user-provided DEM...
2026/05/13 16:28:11:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:11:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:11:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:11:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:28:12:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:28:13:   Computing VNIR geolayer...
2026/05/13 16:28:13:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:13:   Computing SWIR geolayer...
2026/05/13 16:28:13:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:14:   Reading Input Data
2026/05/13 16:28:14:   Reading metadata for VNIR detector...
2026/05/13 16:28:14:   Reading metadata for SWIR detector...
2026/05/13 16:28:14:   Pre-processing user-provided DEM...
2026/05/13 16:28:14:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:14:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:15:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:15:   Reading metadata for VNIR detector...
2026/05/13 16:28:15:   Reading metadata for SWIR detector...
2026/05/13 16:28:16:   Pre-processing user-provided DEM...
2026/05/13 16:28:16:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:16:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:16:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:16:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:28:16:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:28:16:   Computing VNIR geolayer...
2026/05/13 16:28:16:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:16:   Computing SWIR geolayer...
2026/05/13 16:28:17:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:17:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnbpnpjsj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:28:17:   L1B product successfully written!
2026/05/13 16:28:17:   Reading Input Data
2026/05/13 16:28:17:   Reading metadata for VNIR detector...
2026/05/13 16:28:18:   Reading metadata for SWIR detector...
2026/05/13 16:28:18:   Pre-processing user-provided DEM...
2026/05/13 16:28:18:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:18:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:18:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:18:   Computing VNIR geolayer...
2026/05/13 16:28:18:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:19:   Computing SWIR geolayer...
2026/05/13 16:28:19:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:19:   Reading Input Data
2026/05/13 16:28:19:   Reading metadata for VNIR detector...
2026/05/13 16:28:19:   Reading metadata for SWIR detector...
2026/05/13 16:28:20:   Pre-processing user-provided DEM...
2026/05/13 16:28:20:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:20:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:20:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:21:   Reading metadata for VNIR detector...
2026/05/13 16:28:21:   Reading metadata for SWIR detector...
2026/05/13 16:28:21:   Pre-processing user-provided DEM...
2026/05/13 16:28:21:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:21:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:21:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:22:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:28:22:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:28:22:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:28:22:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:28:22:   Computing VNIR geolayer...
2026/05/13 16:28:23:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:23:   Computing SWIR geolayer...
2026/05/13 16:28:23:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:23:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpnts194kw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:28:23:   L1B product successfully written!
2026/05/13 16:28:23:   Reading Input Data
2026/05/13 16:28:24:   Reading metadata for VNIR detector...
2026/05/13 16:28:24:   Reading metadata for SWIR detector...
2026/05/13 16:28:24:   Pre-processing user-provided DEM...
2026/05/13 16:28:24:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:24:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:24:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:25:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:28:25:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:28:25:   Computing VNIR geolayer...
2026/05/13 16:28:25:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:26:   Computing SWIR geolayer...
2026/05/13 16:28:26:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:27:58:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:27:59:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:02:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:04:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:06:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:10:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:14:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:15:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:16:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:28:16:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:28:17:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:19:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:20:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:22:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:28:22:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:28:23:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_L1B_Reader::test_append_80_lines 0:00:35.400794

Setup

Call

Captured stdout call
2026/05/13 16:28:26:   Reading Input Data
2026/05/13 16:28:26:   Reading metadata for VNIR detector...
2026/05/13 16:28:26:   Reading metadata for SWIR detector...
2026/05/13 16:28:27:   Pre-processing user-provided DEM...
2026/05/13 16:28:27:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:27:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:27:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:28:   Reading metadata for VNIR detector...
2026/05/13 16:28:28:   Reading metadata for SWIR detector...
2026/05/13 16:28:28:   Pre-processing user-provided DEM...
2026/05/13 16:28:28:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:28:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:28:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:29:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:28:29:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:28:29:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:28:29:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:28:29:   Computing VNIR geolayer...
2026/05/13 16:28:29:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:30:   Computing SWIR geolayer...
2026/05/13 16:28:30:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:30:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (180, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (180, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (180, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (180, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (180, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (180, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp9p_dtqgx/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:28:31:   L1B product successfully written!
2026/05/13 16:28:31:   Reading Input Data
2026/05/13 16:28:31:   Reading metadata for VNIR detector...
2026/05/13 16:28:31:   Reading metadata for SWIR detector...
2026/05/13 16:28:31:   Pre-processing user-provided DEM...
2026/05/13 16:28:31:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:32:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:32:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:32:   Computing VNIR geolayer...
2026/05/13 16:28:32:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:33:   Computing SWIR geolayer...
2026/05/13 16:28:33:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:33:   Reading Input Data
2026/05/13 16:28:34:   Reading metadata for VNIR detector...
2026/05/13 16:28:34:   Reading metadata for SWIR detector...
2026/05/13 16:28:34:   Pre-processing user-provided DEM...
2026/05/13 16:28:35:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:35:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:35:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:36:   Reading metadata for VNIR detector...
2026/05/13 16:28:36:   Reading metadata for SWIR detector...
2026/05/13 16:28:36:   Pre-processing user-provided DEM...
2026/05/13 16:28:36:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:37:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:37:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:37:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:28:37:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:28:38:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:28:38:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:28:38:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:28:40:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:28:40:   Computing VNIR geolayer...
2026/05/13 16:28:41:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:41:   Computing SWIR geolayer...
2026/05/13 16:28:41:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:42:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (180, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (180, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (180, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (180, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (180, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (180, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (180, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpf8g72_al/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:28:43:   L1B product successfully written!
2026/05/13 16:28:43:   Reading Input Data
2026/05/13 16:28:43:   Reading metadata for VNIR detector...
2026/05/13 16:28:44:   Reading metadata for SWIR detector...
2026/05/13 16:28:44:   Pre-processing user-provided DEM...
2026/05/13 16:28:44:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:44:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:45:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:45:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:28:47:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:28:47:   Computing VNIR geolayer...
2026/05/13 16:28:48:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:48:   Computing SWIR geolayer...
2026/05/13 16:28:49:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:49:   Reading Input Data
2026/05/13 16:28:49:   Reading metadata for VNIR detector...
2026/05/13 16:28:49:   Reading metadata for SWIR detector...
2026/05/13 16:28:50:   Pre-processing user-provided DEM...
2026/05/13 16:28:50:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:50:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:50:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:51:   Reading metadata for VNIR detector...
2026/05/13 16:28:51:   Reading metadata for SWIR detector...
2026/05/13 16:28:51:   Pre-processing user-provided DEM...
2026/05/13 16:28:51:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:51:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:51:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:52:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:28:52:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:28:52:   Computing VNIR geolayer...
2026/05/13 16:28:52:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:52:   Computing SWIR geolayer...
2026/05/13 16:28:52:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:52:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmptd3excu9/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:28:53:   L1B product successfully written!
2026/05/13 16:28:53:   Reading Input Data
2026/05/13 16:28:53:   Reading metadata for VNIR detector...
2026/05/13 16:28:53:   Reading metadata for SWIR detector...
2026/05/13 16:28:53:   Pre-processing user-provided DEM...
2026/05/13 16:28:53:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:53:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:54:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:54:   Computing VNIR geolayer...
2026/05/13 16:28:54:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:54:   Computing SWIR geolayer...
2026/05/13 16:28:54:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:54:   Reading Input Data
2026/05/13 16:28:55:   Reading metadata for VNIR detector...
2026/05/13 16:28:55:   Reading metadata for SWIR detector...
2026/05/13 16:28:55:   Pre-processing user-provided DEM...
2026/05/13 16:28:55:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:55:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:55:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:56:   Reading metadata for VNIR detector...
2026/05/13 16:28:56:   Reading metadata for SWIR detector...
2026/05/13 16:28:56:   Pre-processing user-provided DEM...
2026/05/13 16:28:56:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:28:57:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:28:57:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:28:57:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:28:57:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:28:57:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:28:58:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:28:58:   Computing VNIR geolayer...
2026/05/13 16:28:58:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:28:58:   Computing SWIR geolayer...
2026/05/13 16:28:58:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:28:58:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp1v6gnetw/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:28:59:   L1B product successfully written!
2026/05/13 16:28:59:   Reading Input Data
2026/05/13 16:28:59:   Reading metadata for VNIR detector...
2026/05/13 16:28:59:   Reading metadata for SWIR detector...
2026/05/13 16:28:59:   Pre-processing user-provided DEM...
2026/05/13 16:28:59:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:00:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:00:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:00:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:29:00:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:29:01:   Computing VNIR geolayer...
2026/05/13 16:29:01:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:01:   Computing SWIR geolayer...
2026/05/13 16:29:01:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:28:26:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:27:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:31:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:34:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:35:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:43:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:49:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:50:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:52:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:28:52:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:28:53:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:55:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:56:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:28:57:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:28:57:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:28:59:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_L1B_Reader::test_append_all_lines 0:00:31.287440

Setup

Call

Captured stdout call
2026/05/13 16:29:01:   Reading Input Data
2026/05/13 16:29:01:   Reading metadata for VNIR detector...
2026/05/13 16:29:02:   Reading metadata for SWIR detector...
2026/05/13 16:29:02:   Pre-processing user-provided DEM...
2026/05/13 16:29:02:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:02:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:02:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:03:   Reading metadata for VNIR detector...
2026/05/13 16:29:03:   Reading metadata for SWIR detector...
2026/05/13 16:29:03:   Pre-processing user-provided DEM...
2026/05/13 16:29:03:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:04:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:04:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:04:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:29:04:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:29:04:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:29:04:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:29:04:   Computing VNIR geolayer...
2026/05/13 16:29:05:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:05:   Computing SWIR geolayer...
2026/05/13 16:29:05:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:29:06:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp6v9_oubj/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:29:06:   L1B product successfully written!
2026/05/13 16:29:06:   Reading Input Data
2026/05/13 16:29:06:   Reading metadata for VNIR detector...
2026/05/13 16:29:07:   Reading metadata for SWIR detector...
2026/05/13 16:29:07:   Pre-processing user-provided DEM...
2026/05/13 16:29:07:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:07:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:07:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:08:   Computing VNIR geolayer...
2026/05/13 16:29:08:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:09:   Computing SWIR geolayer...
2026/05/13 16:29:09:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:29:09:   Reading Input Data
2026/05/13 16:29:10:   Reading metadata for VNIR detector...
2026/05/13 16:29:10:   Reading metadata for SWIR detector...
2026/05/13 16:29:10:   Pre-processing user-provided DEM...
2026/05/13 16:29:10:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:10:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:11:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:11:   Reading metadata for VNIR detector...
2026/05/13 16:29:11:   Reading metadata for SWIR detector...
2026/05/13 16:29:11:   Pre-processing user-provided DEM...
2026/05/13 16:29:11:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:12:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:12:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:12:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:29:12:   Append new image to VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR
2026/05/13 16:29:12:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:29:12:   Append new image to SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR
2026/05/13 16:29:12:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:29:14:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:29:14:   Computing VNIR geolayer...
2026/05/13 16:29:14:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:14:   Computing SWIR geolayer...
2026/05/13 16:29:15:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:29:15:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (200, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (200, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (200, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (200, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp490zmzp6/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:29:16:   L1B product successfully written!
2026/05/13 16:29:16:   Reading Input Data
2026/05/13 16:29:16:   Reading metadata for VNIR detector...
2026/05/13 16:29:16:   Reading metadata for SWIR detector...
2026/05/13 16:29:16:   Pre-processing user-provided DEM...
2026/05/13 16:29:17:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:17:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:17:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:17:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:29:18:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:29:19:   Computing VNIR geolayer...
2026/05/13 16:29:19:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:20:   Computing SWIR geolayer...
2026/05/13 16:29:20:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:29:20:   Reading Input Data
2026/05/13 16:29:21:   Reading metadata for VNIR detector...
2026/05/13 16:29:21:   Reading metadata for SWIR detector...
2026/05/13 16:29:21:   Pre-processing user-provided DEM...
2026/05/13 16:29:21:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:21:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:21:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:22:   Reading metadata for VNIR detector...
2026/05/13 16:29:22:   Reading metadata for SWIR detector...
2026/05/13 16:29:22:   Pre-processing user-provided DEM...
2026/05/13 16:29:22:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:22:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:23:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:23:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:29:23:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:29:23:   Computing VNIR geolayer...
2026/05/13 16:29:23:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:23:   Computing SWIR geolayer...
2026/05/13 16:29:23:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:29:24:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpgelzk7r8/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:29:24:   L1B product successfully written!
2026/05/13 16:29:24:   Reading Input Data
2026/05/13 16:29:24:   Reading metadata for VNIR detector...
2026/05/13 16:29:24:   Reading metadata for SWIR detector...
2026/05/13 16:29:25:   Pre-processing user-provided DEM...
2026/05/13 16:29:25:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:25:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:25:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:25:   Computing VNIR geolayer...
2026/05/13 16:29:25:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:25:   Computing SWIR geolayer...
2026/05/13 16:29:25:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:29:26:   Reading Input Data
2026/05/13 16:29:26:   Reading metadata for VNIR detector...
2026/05/13 16:29:26:   Reading metadata for SWIR detector...
2026/05/13 16:29:26:   Pre-processing user-provided DEM...
2026/05/13 16:29:26:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:26:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:27:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:27:   Reading metadata for VNIR detector...
2026/05/13 16:29:27:   Reading metadata for SWIR detector...
2026/05/13 16:29:28:   Pre-processing user-provided DEM...
2026/05/13 16:29:28:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:28:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:28:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:28:   Check new image for VNIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR 
2026/05/13 16:29:28:   Check new image for SWIR: ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR 
2026/05/13 16:29:28:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:29:29:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:29:29:   Computing VNIR geolayer...
2026/05/13 16:29:29:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:29:   Computing SWIR geolayer...
2026/05/13 16:29:29:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:29:30:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpmhjmy9un/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:29:30:   L1B product successfully written!
2026/05/13 16:29:30:   Reading Input Data
2026/05/13 16:29:30:   Reading metadata for VNIR detector...
2026/05/13 16:29:30:   Reading metadata for SWIR detector...
2026/05/13 16:29:31:   Pre-processing user-provided DEM...
2026/05/13 16:29:31:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:31:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:31:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:31:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:29:32:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:29:32:   Computing VNIR geolayer...
2026/05/13 16:29:32:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:32:   Computing SWIR geolayer...
2026/05/13 16:29:32:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:29:01:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:03:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:06:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:10:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:11:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:16:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:20:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:22:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:23:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:29:23:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:29:24:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:26:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:27:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:28:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::VNIR don't fit to be appended.
2026/05/13 16:29:28:   ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR and ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z::SWIR don't fit to be appended.
2026/05/13 16:29:30:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_L1B_Reader::test_read_and_save_single_image_no_snr 0:00:05.061459

Test to read test image 1, save it and read the saved result again - without SNR.

Setup

Call

Captured stdout call
2026/05/13 16:29:33:   Reading Input Data
2026/05/13 16:29:33:   Reading metadata for VNIR detector...
2026/05/13 16:29:33:   Reading metadata for SWIR detector...
2026/05/13 16:29:33:   Pre-processing user-provided DEM...
2026/05/13 16:29:33:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:33:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:34:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:34:   Computing VNIR geolayer...
2026/05/13 16:29:34:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:34:   Computing SWIR geolayer...
2026/05/13 16:29:34:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:29:35:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmpns2pnvcz/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:29:35:   L1B product successfully written!
2026/05/13 16:29:35:   Reading Input Data
2026/05/13 16:29:35:   Reading metadata for VNIR detector...
2026/05/13 16:29:36:   Reading metadata for SWIR detector...
2026/05/13 16:29:36:   Pre-processing user-provided DEM...
2026/05/13 16:29:36:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:36:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:36:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:37:   Computing VNIR geolayer...
2026/05/13 16:29:37:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:37:   Computing SWIR geolayer...
2026/05/13 16:29:37:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:29:33:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:35:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_L1B_Reader::test_read_and_save_single_image_with_snr 0:00:08.976933

Test to read test image 1, save it and read the saved result again - with SNR.

Setup

Call

Captured stdout call
2026/05/13 16:29:38:   Reading Input Data
2026/05/13 16:29:38:   Reading metadata for VNIR detector...
2026/05/13 16:29:38:   Reading metadata for SWIR detector...
2026/05/13 16:29:39:   Pre-processing user-provided DEM...
2026/05/13 16:29:39:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:39:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:39:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:40:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:29:41:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:29:41:   Computing VNIR geolayer...
2026/05/13 16:29:41:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:42:   Computing SWIR geolayer...
2026/05/13 16:29:42:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:29:42:   Write product to: /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLASSES.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUD.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CLOUDSHADOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_HAZE.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_SNOW.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_CIRRUS.TIF.
Writing GeoArray of size (100, 1000, 88) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_VNIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_VNIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_VNIR.png.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-SPECTRAL_IMAGE_SWIR.TIF.
Writing GeoArray of size (100, 1000, 130) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_PIXELMASK_SWIR.TIF.
Writing GeoArray of size (100, 1000) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_QUALITY_TESTFLAGS_SWIR.TIF.
Writing GeoArray of size (100, 1000, 3) to /builds/EnMAP/GFZ_Tools_EnMAP_BOX/EnPT/tests/data/test_outputs/test_reader/tmp74jj8ee_/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z/ENMAP01-____L1B-DT000400126_20170218T110115Z_002_V000204_20200206T182719Z-QL_SWIR.png.
2026/05/13 16:29:43:   L1B product successfully written!
2026/05/13 16:29:43:   Reading Input Data
2026/05/13 16:29:43:   Reading metadata for VNIR detector...
2026/05/13 16:29:43:   Reading metadata for SWIR detector...
2026/05/13 16:29:44:   Pre-processing user-provided DEM...
2026/05/13 16:29:44:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:44:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:44:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:44:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:29:45:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:29:46:   Computing VNIR geolayer...
2026/05/13 16:29:46:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:46:   Computing SWIR geolayer...
2026/05/13 16:29:46:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:29:38:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:29:43:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_L1B_Reader::test_read_inputdata__download_dem__tgt_lonlat 0:00:04.171020

Setup

Call

Captured stdout call
2026/05/13 16:29:47:   Reading Input Data
2026/05/13 16:29:47:   Reading metadata for VNIR detector...
2026/05/13 16:29:47:   Reading metadata for SWIR detector...
2026/05/13 16:29:48:   Automatic download of Copernicus GLO-30 DEM (target EPSG: 4326)...
2026/05/13 16:29:48:   2 DEM tiles potentially required...
2026/05/13 16:29:49:   Subsetting DEM (native Copernicus grid retained)...
2026/05/13 16:29:50:   DEM download complete. Shape: (374, 1378)
2026/05/13 16:29:50:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:50:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:50:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:50:   Computing VNIR geolayer...
2026/05/13 16:29:50:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:50:   Computing SWIR geolayer...
2026/05/13 16:29:51:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:29:47:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_L1B_Reader::test_read_inputdata__download_dem__tgt_utm 0:00:03.559957

Setup

Call

Captured stdout call
2026/05/13 16:29:51:   Reading Input Data
2026/05/13 16:29:51:   Reading metadata for VNIR detector...
2026/05/13 16:29:51:   Reading metadata for SWIR detector...
2026/05/13 16:29:52:   Automatic download of Copernicus GLO-30 DEM (target EPSG: 4326)...
2026/05/13 16:29:52:   2 DEM tiles potentially required...
2026/05/13 16:29:52:   Subsetting DEM (native Copernicus grid retained)...
2026/05/13 16:29:53:   DEM download complete. Shape: (374, 1378)
2026/05/13 16:29:53:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:54:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:54:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:54:   Computing VNIR geolayer...
2026/05/13 16:29:54:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:54:   Computing SWIR geolayer...
2026/05/13 16:29:54:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:29:51:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_L1B_Reader::test_read_inputdata_dont_drop_bad_bands 0:00:02.096266

Setup

Call

Captured stdout call
2026/05/13 16:29:54:   Reading Input Data
2026/05/13 16:29:55:   Reading metadata for VNIR detector...
2026/05/13 16:29:55:   Reading metadata for SWIR detector...
2026/05/13 16:29:55:   Pre-processing user-provided DEM...
2026/05/13 16:29:55:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:55:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:55:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:56:   Computing VNIR geolayer...
2026/05/13 16:29:56:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:56:   Computing SWIR geolayer...
2026/05/13 16:29:56:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:29:54:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

tests/test_orthorectification.py 8 0:00:14.901814

PASSED Test_Orthorectifier::test_run_transformation_ll 0:00:07.463538

Setup

Call

Captured stdout call
2026/05/13 16:29:57:   Reading Input Data
2026/05/13 16:29:57:   Reading metadata for VNIR detector...
2026/05/13 16:29:57:   Calculating solar irradiance...
2026/05/13 16:29:57:   Reading metadata for SWIR detector...
2026/05/13 16:29:57:   Calculating solar irradiance...
2026/05/13 16:29:57:   Pre-processing user-provided DEM...
2026/05/13 16:29:57:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:29:58:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:29:58:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:29:58:   Computing VNIR geolayer...
2026/05/13 16:29:58:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:29:58:   Computing SWIR geolayer...
2026/05/13 16:29:58:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:29:59:   Starting orthorectification...
2026/05/13 16:29:59:   Computed common target extent of orthorectified image (xmin, ymin, xmax, ymax in EPSG 4326): (-1.2717290915354968, 44.60009471477741, -0.9054060033197534, 44.68406888113938)
2026/05/13 16:29:59:   Orthorectifying VNIR data using 'bilinear' resampling algorithm...
2026/05/13 16:30:00:   Orthorectifying SWIR data using 'bilinear' resampling algorithm...
2026/05/13 16:30:01:   Merging VNIR and SWIR data...
2026/05/13 16:30:01:   Orthorectifying 'mask_landwater' attribute...
2026/05/13 16:30:01:   Orthorectifying 'mask_clouds' attribute...
2026/05/13 16:30:02:   Orthorectifying 'mask_cloudshadow' attribute...
2026/05/13 16:30:02:   Orthorectifying 'mask_haze' attribute...
2026/05/13 16:30:02:   Orthorectifying 'mask_snow' attribute...
2026/05/13 16:30:02:   Orthorectifying 'mask_cirrus' attribute...
2026/05/13 16:30:02:   Setting all pixels to nodata that have values in the VNIR or the SWIR only...
2026/05/13 16:30:03:   Generating L2A metadata...
2026/05/13 16:30:04:   Pre-processing DEM to match EnMAP grid...
Captured stderr call
2026/05/13 16:29:57:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_Orthorectifier::test_run_transformation_utm 0:00:07.423441

Setup

Call

Captured stdout call
2026/05/13 16:30:04:   Reading Input Data
2026/05/13 16:30:04:   Reading metadata for VNIR detector...
2026/05/13 16:30:04:   Calculating solar irradiance...
2026/05/13 16:30:05:   Reading metadata for SWIR detector...
2026/05/13 16:30:05:   Calculating solar irradiance...
2026/05/13 16:30:05:   Pre-processing user-provided DEM...
2026/05/13 16:30:05:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:30:05:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:30:05:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:30:05:   Computing VNIR geolayer...
2026/05/13 16:30:06:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:30:06:   Computing SWIR geolayer...
2026/05/13 16:30:06:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:30:06:   Starting orthorectification...
2026/05/13 16:30:06:   Computed common target extent of orthorectified image (xmin, ymin, xmax, ymax in EPSG 32630): (636990.0, 4940640.0, 666180.0, 4949340.0)
2026/05/13 16:30:06:   Orthorectifying VNIR data using 'bilinear' resampling algorithm...
2026/05/13 16:30:07:   Orthorectifying SWIR data using 'bilinear' resampling algorithm...
2026/05/13 16:30:08:   Merging VNIR and SWIR data...
2026/05/13 16:30:08:   Orthorectifying 'mask_landwater' attribute...
2026/05/13 16:30:09:   Orthorectifying 'mask_clouds' attribute...
2026/05/13 16:30:09:   Orthorectifying 'mask_cloudshadow' attribute...
2026/05/13 16:30:09:   Orthorectifying 'mask_haze' attribute...
2026/05/13 16:30:09:   Orthorectifying 'mask_snow' attribute...
2026/05/13 16:30:10:   Orthorectifying 'mask_cirrus' attribute...
2026/05/13 16:30:10:   Setting all pixels to nodata that have values in the VNIR or the SWIR only...
2026/05/13 16:30:11:   Generating L2A metadata...
2026/05/13 16:30:11:   Pre-processing DEM to match EnMAP grid...
Captured stderr call
2026/05/13 16:30:04:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_VNIR_SWIR_Stacker::test_compute_stack 0:00:00.002201

Setup

Call

Teardown

PASSED Test_VNIR_SWIR_Stacker::test_get_stack_average 0:00:00.002862

Setup

Call

Teardown

PASSED Test_VNIR_SWIR_Stacker::test_get_stack_order_by_wvl 0:00:00.002154

Setup

Call

Teardown

PASSED Test_VNIR_SWIR_Stacker::test_get_stack_swir_only 0:00:00.002054

Setup

Call

Teardown

PASSED Test_VNIR_SWIR_Stacker::test_get_stack_vnir_only 0:00:00.001922

Setup

Call

Teardown

PASSED Test_VNIR_SWIR_Stacker::test_validate_input 0:00:00.003641

Setup

Call

Teardown

tests/test_radiometric_transform.py 1 0:00:03.049095

PASSED Test_Radiometric_Transformer::test_transform_TOARad2TOARef 0:00:03.049095

Setup

Call

Captured stdout call
Tmp dir: /tmp/tmppqoojgn5
2026/05/13 16:30:12:   Reading Input Data
2026/05/13 16:30:12:   Reading metadata for VNIR detector...
2026/05/13 16:30:12:   Calculating solar irradiance...
2026/05/13 16:30:12:   Reading metadata for SWIR detector...
2026/05/13 16:30:12:   Calculating solar irradiance...
2026/05/13 16:30:12:   Pre-processing user-provided DEM...
2026/05/13 16:30:12:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:30:13:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:30:13:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:30:13:   Computing SNR from VNIR TOA radiance.
2026/05/13 16:30:13:   Computing SNR from SWIR TOA radiance.
2026/05/13 16:30:14:   Computing VNIR geolayer...
2026/05/13 16:30:14:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:30:14:   Computing SWIR geolayer...
2026/05/13 16:30:14:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:30:14:   Converting TOA radiance to TOA reflectance for VNIR detector...
2026/05/13 16:30:14:   Converting TOA radiance to TOA reflectance for SWIR detector...
Captured stderr call
2026/05/13 16:30:12:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

tests/test_spatial_optimization.py 1 0:00:08.698004

PASSED Test_Spatial_Optimizer::test_optimize_geolayer 0:00:08.698004

Setup

Call

Captured stdout call
2026/05/13 16:30:15:   Reading Input Data
2026/05/13 16:30:15:   Reading metadata for VNIR detector...
2026/05/13 16:30:15:   Calculating solar irradiance...
2026/05/13 16:30:15:   Reading metadata for SWIR detector...
2026/05/13 16:30:15:   Calculating solar irradiance...
2026/05/13 16:30:15:   Pre-processing user-provided DEM...
2026/05/13 16:30:15:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:30:16:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:30:16:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:30:16:   Computing VNIR geolayer...
2026/05/13 16:30:16:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:30:16:   Computing SWIR geolayer...
2026/05/13 16:30:16:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
2026/05/13 16:30:17:   Temporarily transforming EnMAP band 40 to map geometry for co-registration.
2026/05/13 16:30:17:   Temporarily transforming EnMAP water mask to map geometry for co-registration.
2026/05/13 16:30:17:   Preparing reference image for co-registration.
2026/05/13 16:30:17:   Computing tie points between the EnMAP image and the given spatial reference image.
Calculating footprint polygon and actual data corner coordinates for reference image...
Bounding box of calculated footprint for reference image:
	(637005.0, 4940640.0, 666300.0, 4949895.0)
Bounding box of calculated footprint for image to be shifted:
	(637009.9236523756, 4940648.633479693, 666298.6703669054, 4949893.375184522)
Matching window position (X,Y): 651655.4222751356/4945271.096554121
Target window size (256, 256) not possible due to too small overlap area or window position too close to an image edge. New matching window size: (164, 164).
Initializing tie points grid...
With respect to the provided bad data mask(s) 81 points of initially 242 have been excluded.
Calculating tie point grid (161 points) using 24 CPU cores...
Found 131 matches.
Performing validity checks...
41 tie points flagged by level 1 filtering (reliability).
11 tie points flagged by level 2 filtering (SSIM).
9 tie points flagged by level 3 filtering (RANSAC)
81 valid tie points remain after filtering.
2026/05/13 16:30:22:   Generating misregistration array.
interpolation runtime: 0.22s
interpolation runtime: 0.22s
2026/05/13 16:30:23:   Transforming spatial optimization results back to sensor geometry.
2026/05/13 16:30:23:   Applying results of spatial optimization to geolayer.
Captured stderr call
2026/05/13 16:30:15:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
2026/05/13 16:30:17:   Statically using band 40 for co-registration.

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Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

tests/test_spatial_transform.py 17 0:00:44.103648

PASSED Test_Geometry_Transformer::test_to_map_geometry 0:00:02.894480

Setup

Call

Captured stdout call
2026/05/13 16:30:23:   Reading Input Data
2026/05/13 16:30:23:   Reading metadata for VNIR detector...
2026/05/13 16:30:24:   Calculating solar irradiance...
2026/05/13 16:30:24:   Reading metadata for SWIR detector...
2026/05/13 16:30:24:   Calculating solar irradiance...
2026/05/13 16:30:24:   Pre-processing user-provided DEM...
2026/05/13 16:30:24:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:30:25:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:30:25:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:30:25:   Computing VNIR geolayer...
2026/05/13 16:30:25:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:30:25:   Computing SWIR geolayer...
2026/05/13 16:30:25:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:30:23:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_Geometry_Transformer::test_to_sensor_geometry 0:00:02.347184

Setup

Call

Captured stdout call
2026/05/13 16:30:26:   Reading Input Data
2026/05/13 16:30:26:   Reading metadata for VNIR detector...
2026/05/13 16:30:27:   Calculating solar irradiance...
2026/05/13 16:30:27:   Reading metadata for SWIR detector...
2026/05/13 16:30:27:   Calculating solar irradiance...
2026/05/13 16:30:27:   Pre-processing user-provided DEM...
2026/05/13 16:30:27:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:30:27:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:30:27:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:30:28:   Computing VNIR geolayer...
2026/05/13 16:30:28:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:30:28:   Computing SWIR geolayer...
2026/05/13 16:30:28:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr call
2026/05/13 16:30:26:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log call
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Teardown

PASSED Test_VNIR_SWIR_SensorGeometryTransformer::test_transform_sensorgeo_SWIR_to_VNIR_2D 0:00:02.595420

Setup

Captured stdout setup
2026/05/13 16:30:29:   Reading Input Data
2026/05/13 16:30:29:   Reading metadata for VNIR detector...
2026/05/13 16:30:29:   Calculating solar irradiance...
2026/05/13 16:30:29:   Reading metadata for SWIR detector...
2026/05/13 16:30:29:   Calculating solar irradiance...
2026/05/13 16:30:29:   Pre-processing user-provided DEM...
2026/05/13 16:30:29:   Reading image masks in VNIR sensor geometry.
2026/05/13 16:30:30:   Converting DN values to radiance [mW/m^2/sr/nm] for VNIR detector...
2026/05/13 16:30:30:   Converting DN values to radiance [mW/m^2/sr/nm] for SWIR detector...
2026/05/13 16:30:30:   Computing VNIR geolayer...
2026/05/13 16:30:30:   Transforming DEM to VNIR sensor geometry (using first band of VNIR geolayer)...
2026/05/13 16:30:30:   Computing SWIR geolayer...
2026/05/13 16:30:30:   Transforming DEM to SWIR sensor geometry (using first band of SWIR geolayer)...
Captured stderr setup
2026/05/13 16:30:29:   The input EnMAP Level-1B image was processed with an old version of the ground segment processing system (version 00.02.04), which, e.g. did not include de-striping. It is highly recommended to re-download the dataset in the latest processing version from the archive via the EOWEB GeoPortal (www.eoweb.dlr.de) before passing it to EnPT.
Captured log setup
INFO     enpt.io.reader:reader.py:82 Reading Input Data

Call

Teardown

PASSED Test_VNIR_SWIR_SensorGeometryTransformer::test_transform_sensorgeo_SWIR_to_VNIR_2band3DInput_2DGeolayer 0:00:00.416016

Setup

Call

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PASSED Test_VNIR_SWIR_SensorGeometryTransformer::test_transform_sensorgeo_SWIR_to_VNIR_2band3DInput_3DGeolayer 0:00:00.431536

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PASSED Test_VNIR_SWIR_SensorGeometryTransformer::test_transform_sensorgeo_VNIR_to_SWIR_2D 0:00:00.392628

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PASSED Test_VNIR_SWIR_SensorGeometryTransformer::test_transform_sensorgeo_VNIR_to_SWIR_3D 0:00:28.162191

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PASSED Test_RPC_Geolayer_Generator::test_compute_geolayer 0:00:00.431481

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PASSED Test_RPC_Geolayer_Generator::test_compute_geolayer_average_elevation 0:00:00.383064

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PASSED Test_RPC_Geolayer_Generator::test_compute_normalized_image_coordinates 0:00:00.005514

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PASSED Test_RPC_Geolayer_Generator::test_normalize_coordinates 0:00:00.002978

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PASSED Test_RPC_Geolayer_Generator::test_transform_LonLatHeight_to_RowCol 0:00:00.003113

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PASSED Test_RPC_3D_Geolayer_Generator::test_compute_geolayer_average_elevation 0:00:01.903734

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PASSED Test_RPC_3D_Geolayer_Generator::test_compute_geolayer_faulty_coeff_set 0:00:00.493326

Test in case of a faulty/inaccurate coeff set the result really does not contain NaNs.

NOTE: NaNs should be filled automatically.

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PASSED Test_RPC_3D_Geolayer_Generator::test_compute_geolayer_multiple_coeff_sets_multiprocessing 0:00:01.840089

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PASSED Test_RPC_3D_Geolayer_Generator::test_compute_geolayer_multiple_coeff_sets_singleprocessing 0:00:01.372493

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PASSED Test_RPC_3D_Geolayer_Generator::test_compute_geolayer_one_unique_coeff_set 0:00:00.428400

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tests/test_srf.py 1 0:00:00.005290

PASSED Test_SRF::test_from_cwl_fwhm 0:00:00.005290

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