metadata: make sure to include XResolution and YResolution when writing TIFFs
This is mandatory (according to http://dpfmanager.org), and in fact needed for Photoshop compatibility (cherry picked from commit 5d281810cc7a7f7dc563dde030cf90c78dbf55d0)
This commit is contained in:
committed by
Lawrence Lee
parent
939315f67b
commit
522f6f4473
@@ -1098,6 +1098,7 @@ int ImageIO::saveJPEG (const Glib::ustring &fname, int quality, int subSamp) con
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return IMIO_SUCCESS;
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}
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int ImageIO::saveTIFF (const Glib::ustring &fname, int bps, bool isFloat, bool uncompressed) const
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{
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if (getWidth() < 1 || getHeight() < 1) {
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@@ -1168,6 +1169,31 @@ int ImageIO::saveTIFF (const Glib::ustring &fname, int bps, bool isFloat, bool u
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}
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}();*/
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// somehow Exiv2 (tested with 0.27.3) doesn't seem to be able to update
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// XResolution and YResolution, so we do it ourselves here....
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constexpr float default_resolution = 300.f;
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float x_res = default_resolution;
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float y_res = default_resolution;
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int res_unit = RESUNIT_INCH;
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if (!metadataInfo.filename().empty()) {
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auto exif = metadataInfo.getOutputExifData();
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auto it = exif.findKey(Exiv2::ExifKey("Exif.Image.XResolution"));
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if (it != exif.end()) {
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x_res = it->toFloat();
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}
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it = exif.findKey(Exiv2::ExifKey("Exif.Image.YResolution"));
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if (it != exif.end()) {
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y_res = it->toFloat();
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}
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it = exif.findKey(Exiv2::ExifKey("Exif.Image.ResolutionUnit"));
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if (it != exif.end()) {
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res_unit = it->toLong();
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}
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}
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TIFFSetField(out, TIFFTAG_XRESOLUTION, x_res);
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TIFFSetField(out, TIFFTAG_YRESOLUTION, y_res);
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TIFFSetField(out, TIFFTAG_RESOLUTIONUNIT, res_unit);
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if (!uncompressed) {
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TIFFSetField (out, TIFFTAG_PREDICTOR, (bps == 16 || bps == 32) && isFloat ? PREDICTOR_FLOATINGPOINT : PREDICTOR_HORIZONTAL);
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}
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@@ -390,7 +390,12 @@ void Exiv2Metadata::import_exif_pairs(Exiv2::ExifData &out) const
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for (auto &p : *exif_) {
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try {
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out[p.first] = p.second;
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} catch (std::exception &exc) {}
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} catch (std::exception &exc) {
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if (settings->verbose) {
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std::cout << "Error setting " << p.first << " to " << p.second
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<< ": " << exc.what() << std::endl;
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}
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}
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}
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}
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@@ -408,7 +413,12 @@ void Exiv2Metadata::import_iptc_pairs(Exiv2::IptcData &out) const
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out.add(d);
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}
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}
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} catch (std::exception &exc) {}
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} catch (std::exception &exc) {
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if (settings->verbose) {
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std::cout << "Error setting " << p.first
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<< ": " << exc.what() << std::endl;
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}
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}
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}
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}
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@@ -515,4 +525,30 @@ void Exiv2Metadata::cleanup()
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Exiv2::XmpParser::terminate();
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}
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Exiv2::ExifData Exiv2Metadata::getOutputExifData() const
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{
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Exiv2::ExifData exif = exifData();
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try {
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auto xmp = getXmpSidecar(src_);
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Exiv2::moveXmpToExif(xmp, exif);
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} catch (std::exception &exc) {
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if (settings->verbose) {
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std::cerr << "Error loading metadata from XMP sidecar: "
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<< exc.what() << std::endl;
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}
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}
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remove_unwanted(exif);
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import_exif_pairs(exif);
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for (auto it = exif.begin(); it != exif.end(); ) {
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if (it->count() > 0) {
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++it;
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} else {
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it = exif.erase(it);
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}
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}
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return exif;
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}
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} // namespace rtengine
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@@ -60,6 +60,8 @@ public:
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void getDimensions(int &w, int &h) const;
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Exiv2::ExifData getOutputExifData() const;
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static Glib::ustring xmpSidecarPath(const Glib::ustring& path);
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static Exiv2::XmpData getXmpSidecar(const Glib::ustring& path);
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