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281 lines
8.8 KiB
C++
281 lines
8.8 KiB
C++
// SPDX-License-Identifier: GPL-2.0-or-later
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// included header files
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#include "tiffimage.hpp"
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#include "basicio.hpp"
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#include "config.h"
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#include "error.hpp"
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#include "futils.hpp"
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#include "image.hpp"
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#include "tiffcomposite_int.hpp"
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#include "tiffimage_int.hpp"
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#include "types.hpp"
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#include <array>
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#include <iostream>
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/* --------------------------------------------------------------------------
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Todo:
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+ CR2 Makernotes don't seem to have a next pointer but Canon Jpeg Makernotes
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do. What a mess. (That'll become an issue when it comes to writing to CR2)
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+ Sony makernotes in RAW files do not seem to have header like those in Jpegs.
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And maybe no next pointer either.
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in crwimage.* :
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+ Fix CiffHeader according to TiffHeader
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+ Combine Error(ErrorCode::kerNotAJpeg) and Error(kerNotACrwImage), add format argument %1
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+ Search crwimage for todos, fix writeMetadata comment
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+ rename loadStack to getPath for consistency
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-------------------------------------------------------------------------- */
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// *****************************************************************************
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// class member definitions
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namespace Exiv2 {
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using namespace Internal;
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TiffImage::TiffImage(BasicIo::UniquePtr io, bool /*create*/) :
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Image(ImageType::tiff, mdExif | mdIptc | mdXmp, std::move(io)) {
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} // TiffImage::TiffImage
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//! List of TIFF compression to MIME type mappings
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constexpr struct mimeType {
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int comp;
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const char* type;
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bool operator==(int c) const {
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return comp == c;
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}
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} mimeTypeList[] = {
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{32767, "image/x-sony-arw"}, {32769, "image/x-epson-erf"}, {32770, "image/x-samsung-srw"},
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{34713, "image/x-nikon-nef"}, {65000, "image/x-kodak-dcr"}, {65535, "image/x-pentax-pef"},
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};
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std::string TiffImage::mimeType() const {
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if (!mimeType_.empty())
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return mimeType_;
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mimeType_ = std::string("image/tiff");
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std::string key = "Exif." + primaryGroup() + ".Compression";
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auto md = exifData_.findKey(ExifKey(key));
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if (md != exifData_.end() && md->count() > 0) {
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auto mt = Exiv2::find(mimeTypeList, static_cast<int>(md->toInt64()));
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if (mt)
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mimeType_ = mt->type;
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}
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return mimeType_;
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}
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std::string TiffImage::primaryGroup() const {
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if (!primaryGroup_.empty())
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return primaryGroup_;
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static constexpr auto keys = std::array{
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"Exif.Image.NewSubfileType", "Exif.SubImage1.NewSubfileType", "Exif.SubImage2.NewSubfileType",
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"Exif.SubImage3.NewSubfileType", "Exif.SubImage4.NewSubfileType", "Exif.SubImage5.NewSubfileType",
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"Exif.SubImage6.NewSubfileType", "Exif.SubImage7.NewSubfileType", "Exif.SubImage8.NewSubfileType",
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"Exif.SubImage9.NewSubfileType",
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};
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// Find the group of the primary image, default to "Image"
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primaryGroup_ = std::string("Image");
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for (auto i : keys) {
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auto md = exifData_.findKey(ExifKey(i));
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// Is it the primary image?
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if (md != exifData_.end() && md->count() > 0 && md->toInt64() == 0) {
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// Sometimes there is a JPEG primary image; that's not our first choice
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primaryGroup_ = md->groupName();
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std::string key = "Exif." + primaryGroup_ + ".JPEGInterchangeFormat";
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if (exifData_.findKey(ExifKey(key)) == exifData_.end())
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break;
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}
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}
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return primaryGroup_;
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}
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uint32_t TiffImage::pixelWidth() const {
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if (pixelWidthPrimary_ != 0) {
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return pixelWidthPrimary_;
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}
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ExifKey key(std::string("Exif.") + primaryGroup() + std::string(".ImageWidth"));
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auto imageWidth = exifData_.findKey(key);
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if (imageWidth != exifData_.end() && imageWidth->count() > 0) {
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pixelWidthPrimary_ = imageWidth->toUint32();
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}
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return pixelWidthPrimary_;
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}
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uint32_t TiffImage::pixelHeight() const {
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if (pixelHeightPrimary_ != 0) {
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return pixelHeightPrimary_;
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}
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ExifKey key(std::string("Exif.") + primaryGroup() + std::string(".ImageLength"));
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auto imageHeight = exifData_.findKey(key);
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if (imageHeight != exifData_.end() && imageHeight->count() > 0) {
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pixelHeightPrimary_ = imageHeight->toUint32();
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}
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return pixelHeightPrimary_;
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}
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void TiffImage::setComment(const std::string&) {
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// not supported
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throw(Error(ErrorCode::kerInvalidSettingForImage, "Image comment", "TIFF"));
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}
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void TiffImage::readMetadata() {
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#ifdef EXIV2_DEBUG_MESSAGES
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std::cerr << "Reading TIFF file " << io_->path() << "\n";
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#endif
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if (io_->open() != 0) {
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throw Error(ErrorCode::kerDataSourceOpenFailed, io_->path(), strError());
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}
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IoCloser closer(*io_);
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// Ensure that this is the correct image type
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if (!isTiffType(*io_, false)) {
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if (io_->error() || io_->eof())
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throw Error(ErrorCode::kerFailedToReadImageData);
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throw Error(ErrorCode::kerNotAnImage, "TIFF");
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}
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clearMetadata();
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ByteOrder bo = TiffParser::decode(exifData_, iptcData_, xmpData_, io_->mmap(), io_->size());
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setByteOrder(bo);
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// read profile from the metadata
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Exiv2::ExifKey key("Exif.Image.InterColorProfile");
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auto pos = exifData_.findKey(key);
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if (pos != exifData_.end()) {
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size_t size = pos->count() * pos->typeSize();
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if (size == 0) {
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throw Error(ErrorCode::kerFailedToReadImageData);
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}
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iccProfile_.alloc(size);
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pos->copy(iccProfile_.data(), bo);
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}
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}
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void TiffImage::writeMetadata() {
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#ifdef EXIV2_DEBUG_MESSAGES
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std::cerr << "Writing TIFF file " << io_->path() << "\n";
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#endif
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ByteOrder bo = byteOrder();
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byte* pData = nullptr;
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size_t size = 0;
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IoCloser closer(*io_);
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// Ensure that this is the correct image type
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if (io_->open() == 0 && isTiffType(*io_, false)) {
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pData = io_->mmap(true);
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size = io_->size();
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TiffHeader tiffHeader;
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if (0 == tiffHeader.read(pData, 8)) {
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bo = tiffHeader.byteOrder();
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}
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}
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if (bo == invalidByteOrder) {
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bo = littleEndian;
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}
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setByteOrder(bo);
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// fixup ICC profile
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Exiv2::ExifKey key("Exif.Image.InterColorProfile");
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auto pos = exifData_.findKey(key);
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bool found = pos != exifData_.end();
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if (iccProfileDefined()) {
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Exiv2::DataValue value(iccProfile_.c_data(), iccProfile_.size());
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if (found)
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pos->setValue(&value);
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else
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exifData_.add(key, &value);
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} else {
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if (found)
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exifData_.erase(pos);
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}
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// set usePacket to influence TiffEncoder::encodeXmp() called by TiffVisitor.encode()
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xmpData().usePacket(writeXmpFromPacket());
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TiffParser::encode(*io_, pData, size, bo, exifData_, iptcData_, xmpData_); // may throw
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} // TiffImage::writeMetadata
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ByteOrder TiffParser::decode(ExifData& exifData, IptcData& iptcData, XmpData& xmpData, const byte* pData, size_t size) {
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uint32_t root = Tag::root;
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// #1402 Fujifilm RAF. Change root when parsing embedded tiff
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Exiv2::ExifKey key("Exif.Image.Make");
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if (exifData.findKey(key) != exifData.end() && exifData.findKey(key)->toString() == "FUJIFILM") {
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root = Tag::fuji;
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}
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return TiffParserWorker::decode(exifData, iptcData, xmpData, pData, size, root, TiffMapping::findDecoder);
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} // TiffParser::decode
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WriteMethod TiffParser::encode(BasicIo& io, const byte* pData, size_t size, ByteOrder byteOrder,
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const ExifData& exifData, const IptcData& iptcData, const XmpData& xmpData) {
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// Copy to be able to modify the Exif data
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ExifData ed = exifData;
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// Delete IFDs which do not occur in TIFF images
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static constexpr auto filteredIfds = std::array{
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IfdId::panaRawId,
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};
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for (auto filteredIfd : filteredIfds) {
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#ifdef EXIV2_DEBUG_MESSAGES
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std::cerr << "Warning: Exif IFD " << filteredIfd << " not encoded\n";
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#endif
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ed.erase(std::remove_if(ed.begin(), ed.end(), FindExifdatum(filteredIfd)), ed.end());
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}
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TiffHeader header(byteOrder);
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return TiffParserWorker::encode(io, pData, size, ed, iptcData, xmpData, Tag::root, TiffMapping::findEncoder, &header,
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nullptr);
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} // TiffParser::encode
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// *************************************************************************
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// free functions
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Image::UniquePtr newTiffInstance(BasicIo::UniquePtr io, bool create) {
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auto image = std::make_unique<TiffImage>(std::move(io), create);
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if (!image->good()) {
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return nullptr;
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}
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return image;
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}
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bool isTiffType(BasicIo& iIo, bool advance) {
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const int32_t len = 8;
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byte buf[len];
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iIo.read(buf, len);
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if (iIo.error() || iIo.eof()) {
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return false;
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}
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TiffHeader tiffHeader;
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bool rc = tiffHeader.read(buf, len);
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if (!advance || !rc) {
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iIo.seek(-len, BasicIo::cur);
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}
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return rc;
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}
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void TiffImage::printStructure(std::ostream& out, Exiv2::PrintStructureOption option, size_t depth) {
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if (io_->open() != 0)
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throw Error(ErrorCode::kerDataSourceOpenFailed, io_->path(), strError());
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// Ensure that this is the correct image type
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if (imageType() == ImageType::none && !isTiffType(*io_, false)) {
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if (io_->error() || io_->eof())
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throw Error(ErrorCode::kerFailedToReadImageData);
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throw Error(ErrorCode::kerNotAJpeg);
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}
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io_->seek(0, BasicIo::beg);
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printTiffStructure(io(), out, option, depth);
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}
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} // namespace Exiv2
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