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authorVincent Rouvreau <10407034+VincentRouvreau@users.noreply.github.com>2020-03-22 11:02:36 +0100
committerGitHub <noreply@github.com>2020-03-22 11:02:36 +0100
commit49f9e5cc6bf933705500ad96d674df6a9df7f713 (patch)
tree665b6fcbdf6c951d31206852a2d356ef103ada18 /src/Persistence_representations/example/persistence_landscape_on_grid.cpp
parent2ec0ac1f006577d520accbe605a61fc10ede3352 (diff)
parentbb6f10aff11e05baec2d2d10c544a2ea1c302bc6 (diff)
Merge pull request #200 from VincentRouvreau/print_warnings_to_stderr
Print warnings to stderr
Diffstat (limited to 'src/Persistence_representations/example/persistence_landscape_on_grid.cpp')
-rw-r--r--src/Persistence_representations/example/persistence_landscape_on_grid.cpp22
1 files changed, 11 insertions, 11 deletions
diff --git a/src/Persistence_representations/example/persistence_landscape_on_grid.cpp b/src/Persistence_representations/example/persistence_landscape_on_grid.cpp
index 16a58e1d..6d58e167 100644
--- a/src/Persistence_representations/example/persistence_landscape_on_grid.cpp
+++ b/src/Persistence_representations/example/persistence_landscape_on_grid.cpp
@@ -37,31 +37,31 @@ int main(int argc, char** argv) {
Persistence_landscape_on_grid l2(persistence2, 0, 11, 20);
// This is how to compute integral of landscapes:
- std::cout << "Integral of the first landscape : " << l1.compute_integral_of_landscape() << std::endl;
- std::cout << "Integral of the second landscape : " << l2.compute_integral_of_landscape() << std::endl;
+ std::clog << "Integral of the first landscape : " << l1.compute_integral_of_landscape() << std::endl;
+ std::clog << "Integral of the second landscape : " << l2.compute_integral_of_landscape() << std::endl;
// And here how to write landscapes to stream:
- std::cout << "l1 : " << l1 << std::endl;
- std::cout << "l2 : " << l2 << std::endl;
+ std::clog << "l1 : " << l1 << std::endl;
+ std::clog << "l2 : " << l2 << std::endl;
// here are the maxima of the functions:
- std::cout << "Maximum of l1 : " << l1.compute_maximum() << std::endl;
- std::cout << "Maximum of l2 : " << l2.compute_maximum() << std::endl;
+ std::clog << "Maximum of l1 : " << l1.compute_maximum() << std::endl;
+ std::clog << "Maximum of l2 : " << l2.compute_maximum() << std::endl;
// here are the norms of landscapes:
- std::cout << "L^1 Norm of l1 : " << l1.compute_norm_of_landscape(1.) << std::endl;
- std::cout << "L^1 Norm of l2 : " << l2.compute_norm_of_landscape(1.) << std::endl;
+ std::clog << "L^1 Norm of l1 : " << l1.compute_norm_of_landscape(1.) << std::endl;
+ std::clog << "L^1 Norm of l2 : " << l2.compute_norm_of_landscape(1.) << std::endl;
// here is the average of landscapes:
Persistence_landscape_on_grid average;
average.compute_average({&l1, &l2});
- std::cout << "average : " << average << std::endl;
+ std::clog << "average : " << average << std::endl;
// here is the distance of landscapes:
- std::cout << "Distance : " << l1.distance(l2) << std::endl;
+ std::clog << "Distance : " << l1.distance(l2) << std::endl;
// here is the scalar product of landscapes:
- std::cout << "Scalar product : " << l1.compute_scalar_product(l2) << std::endl;
+ std::clog << "Scalar product : " << l1.compute_scalar_product(l2) << std::endl;
// here is how to create a file which is suitable for visualization via gnuplot:
average.plot("average_landscape");