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Jungfraujoch/tests/TIFFTest.cpp
Filip Leonarski 1c4dfd03e2
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v1.0.0-rc.123 (#30)
This is an UNSTABLE release.

* jfjoch_broker: Use newer version of Google Ceres for (potential) CUDA 13 compatibility
* jfjoch_broker: Improve performance of generating preview images, especially for large detectors (9M-16M)
* jfjoch_viewer: Improve performance of displaying images, especially for large detectors (9M-16M)
* jfjoch_viewer: Add more color schemes for better image readability
* HDF5: Common mutex for reading and writing HDF5 if both operations were to happen in the same executable
* HDF5: suppress warning if path (upstream group) doesn't exists when checking if leaf exists

Reviewed-on: #30
Co-authored-by: Filip Leonarski <filip.leonarski@psi.ch>
Co-committed-by: Filip Leonarski <filip.leonarski@psi.ch>
2026-01-30 13:43:09 +01:00

106 lines
3.1 KiB
C++

// SPDX-FileCopyrightText: 2024 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
// SPDX-License-Identifier: GPL-3.0-only
#include <catch2/catch_all.hpp>
#include <fstream>
#include "../preview/JFJochTIFF.h"
#include "../preview/PreviewImage.h"
#include "../writer/HDF5Objects.h"
#include "../common/RawToConvertedGeometry.h"
#include <iostream>
TEST_CASE("TIFFTest","[TIFF]") {
std::vector<uint16_t> values(512*1024);
CompressedImage image(values, 1024, 512);
REQUIRE_NOTHROW(WriteTIFFToString(image));
}
TEST_CASE("TIFFTest_Write_Read","[TIFF]") {
std::vector<uint32_t> values(512*1024), values_out;
for (int i = 0; i < values.size(); i++) {
values[i] = (i * 17 + 2);
}
CompressedImage image(values, 1024, 512);
std::string s;
REQUIRE_NOTHROW(s = WriteTIFFToString(image));
uint32_t lines, cols;
REQUIRE_NOTHROW(values_out = ReadTIFFFromString32(s, cols, lines));
REQUIRE(lines == 512);
REQUIRE(cols == 1024);
REQUIRE(values.size() == values_out.size());
REQUIRE(memcmp(values.data(), values_out.data(), cols * lines * sizeof(uint32_t)) == 0);
}
TEST_CASE("TIFFTest_File","[TIFF]") {
std::vector<uint16_t> values(512*1024);
for (auto &i: values)
i = 345;
CompressedImage image(values, 1024, 512);
REQUIRE_NOTHROW(WriteTIFFToFile("test_image.tiff", image));
}
TEST_CASE("TIFFTest_File_signed","[TIFF]") {
std::vector<int16_t> values(512 * 1024);
for (int i = 0; i < values.size(); i++)
values[i] = static_cast<int16_t>(((i % 2 == 0) ? 1 : -1) * i);
CompressedImage image(values, 1024, 512);
REQUIRE_NOTHROW(WriteTIFFToFile("test_image_signed.tiff", image));
}
rgb rainbowColor(float t) {
// Ensure t is in [0,1]
t = std::max(0.0f, std::min(1.0f, t));
// Convert to hue (0 to 6)
float hue = t * 6.0f;
int phase = static_cast<int>(hue);
float fract = hue - phase;
uint8_t p = static_cast<uint8_t>(255 * (1.0f - fract));
uint8_t q = static_cast<uint8_t>(255 * fract);
uint8_t full = 255;
switch (phase) {
case 0: return {full, q, 0}; // Red to Yellow
case 1: return {p, full, 0}; // Yellow to Green
case 2: return {0, full, q}; // Green to Cyan
case 3: return {0, p, full}; // Cyan to Blue
case 4: return {q, 0, full}; // Blue to Magenta
case 5: return {full, 0, p}; // Magenta to Red
default: return {full, 0, 0}; // Fallback (red)
}
}
TEST_CASE("TIFFTest_File_rgb","[TIFF]") {
std::vector<rgb> values(512 * 1024);
for (int i = 0; i < values.size(); i++) {
float t = static_cast<float>(i % 1024) / (1024 - 1);
values[i] = rainbowColor(t);
}
CompressedImage image(values, 1024, 512);
REQUIRE_NOTHROW(WriteTIFFToFile("test_image_rgb.tiff", image));
}
TEST_CASE("TIFFTest_File_float","[TIFF]") {
std::vector<float> values(512 * 1024);
for (int i = 0; i < values.size(); i++)
values[i] = i / 100.0;
CompressedImage image(values, 1024, 512);
REQUIRE_NOTHROW(WriteTIFFToFile("test_image_float.tiff", image));
}