mirror of
https://github.com/Evolution-X/external_piex
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560 lines
19 KiB
C++
560 lines
19 KiB
C++
// Copyright 2020 Google Inc.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//
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////////////////////////////////////////////////////////////////////////////////
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#include "src/piex_cr3.h"
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#include <array>
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#include <cstddef>
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#include <cstdint>
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#include <limits>
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#include <unordered_set>
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#include "src/binary_parse/range_checked_byte_ptr.h"
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#include "src/piex_types.h"
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#include "src/tiff_directory/tiff_directory.h"
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#include "src/tiff_parser.h"
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namespace piex {
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namespace {
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constexpr size_t kUuidSize = 16;
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using Uuid = std::array<std::uint8_t, kUuidSize>;
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// Uuid of uuid box under the moov box.
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constexpr Uuid kUuidMoov = {0x85, 0xc0, 0xb6, 0x87, 0x82, 0x0f, 0x11, 0xe0,
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0x81, 0x11, 0xf4, 0xce, 0x46, 0x2b, 0x6a, 0x48};
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// Uuid of uuid box containing PRVW box.
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constexpr Uuid kUuidPrvw = {0xea, 0xf4, 0x2b, 0x5e, 0x1c, 0x98, 0x4b, 0x88,
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0xb9, 0xfb, 0xb7, 0xdc, 0x40, 0x6e, 0x4d, 0x16};
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constexpr size_t kTagSize = 4;
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using BoxTag = std::array<char, kTagSize>;
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constexpr BoxTag NewTag(const char s[kTagSize + 1]) {
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return BoxTag{s[0], s[1], s[2], s[3]};
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}
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constexpr BoxTag kUuidTag = NewTag("uuid");
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constexpr BoxTag kPrvwTag = NewTag("PRVW");
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constexpr BoxTag kThmbTag = NewTag("THMB");
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constexpr BoxTag kCmt1Tag = NewTag("CMT1");
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constexpr BoxTag kCmt2Tag = NewTag("CMT2");
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constexpr BoxTag kStblTag = NewTag("stbl");
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constexpr BoxTag kStsdTag = NewTag("stsd");
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constexpr BoxTag kCrawTag = NewTag("CRAW");
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constexpr BoxTag kStszTag = NewTag("stsz");
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constexpr BoxTag kCo64Tag = NewTag("co64");
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constexpr BoxTag kMdatTag = NewTag("mdat");
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// Convenience class for a box.
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class Box {
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public:
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Box()
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: is_valid_(false),
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tag_(BoxTag()),
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offset_(0),
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header_offset_(0),
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next_box_offset_(0) {}
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Box(const BoxTag& tag, size_t offset, size_t header_length, size_t length)
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: is_valid_(true),
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tag_(tag),
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offset_(offset),
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header_offset_(offset + header_length),
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next_box_offset_(offset + length) {}
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bool IsValid() const { return is_valid_ && next_box_offset_ > offset_; }
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const BoxTag& tag() const { return tag_; }
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// Returns offset from start of file.
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size_t offset() const { return offset_; }
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// Returns offset from start of file, including box's header.
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size_t header_offset() const { return header_offset_; }
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// Returns offset from start of file of the next box, accounting for size of
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// this box.
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size_t next_box_offset() const { return next_box_offset_; }
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private:
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bool is_valid_;
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BoxTag tag_;
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size_t offset_;
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size_t header_offset_;
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size_t next_box_offset_;
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};
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struct ProcessData {
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PreviewImageData* preview_image_data = nullptr;
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Image mdat_image;
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Image prvw_image;
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};
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// Wraps Get16u w/ assumption that CR3 is always big endian, based on
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// ISO/IEC 14496-12 specification that all box fields are big endian.
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bool Get16u(StreamInterface* stream, size_t offset, std::uint16_t* value) {
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return Get16u(stream, offset, tiff_directory::kBigEndian, value);
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}
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// Wraps Get32u w/ assumption that CR3 is always big endian, based on
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// ISO/IEC 14496-12 specification that all box fields are big endian.
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bool Get32u(StreamInterface* stream, size_t offset, std::uint32_t* value) {
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return Get32u(stream, offset, tiff_directory::kBigEndian, value);
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}
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// Always big endian, based on ISO/IEC 14496-12 specification that all box
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// fields are big endian.
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bool Get64u(StreamInterface* stream, size_t offset, std::uint64_t* value) {
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std::uint8_t data[8];
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if (stream->GetData(offset, 8, data) == kOk) {
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*value = (data[0] * 0x1000000u) | (data[1] * 0x10000u) |
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(data[2] * 0x100u) | data[3];
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*value <<= 32;
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*value = (data[4] * 0x1000000u) | (data[5] * 0x10000u) |
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(data[6] * 0x100u) | data[7];
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return true;
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} else {
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return false;
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}
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}
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// Jpeg box offsets based on the box tag. The expected layout is as follows:
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// Byte Offset Type Meaning
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// 0 [long] size of box
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// 4 [char[]] box tag
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// offset.width [short] width of jpeg
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// offset.height [short] height of jpeg
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// offset.jpeg_size [long] number of bytes in jpeg
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// offset.jpeg_data [byte[]] start of jpeg data
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struct JpegBoxOffset {
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size_t width = 0;
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size_t height = 0;
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size_t jpeg_size = 0;
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size_t jpeg_data = 0;
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};
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// Processes box w/ JPEG data. Box must be PRVW and THMB boxes.
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bool ProcessJpegBox(StreamInterface* stream, const Box& box, Image* image) {
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static constexpr JpegBoxOffset kPrvwJpegOffsets{14, 16, 20, 24};
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static constexpr JpegBoxOffset kThmbJpegOffsets{12, 14, 16, 24};
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if (box.tag() != kPrvwTag && box.tag() != kThmbTag) {
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return false;
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}
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const JpegBoxOffset& offsets =
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box.tag() == kPrvwTag ? kPrvwJpegOffsets : kThmbJpegOffsets;
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uint16_t width, height;
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uint32_t jpeg_size;
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if (!Get16u(stream, box.offset() + offsets.width, &width)) {
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return false;
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}
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if (!Get16u(stream, box.offset() + offsets.height, &height)) {
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return false;
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}
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if (!Get32u(stream, box.offset() + offsets.jpeg_size, &jpeg_size)) {
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return false;
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}
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image->format = Image::kJpegCompressed;
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image->width = width;
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image->height = height;
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image->offset = box.offset() + offsets.jpeg_data;
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image->length = jpeg_size;
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return true;
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}
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// Parses the Exif IFD0 tags at tiff_offset.
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bool ParseExifIfd0(StreamInterface* stream, size_t tiff_offset,
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PreviewImageData* preview_image_data) {
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static const TagSet kIfd0TagSet = {kTiffTagModel, kTiffTagMake,
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kTiffTagOrientation, kTiffTagImageWidth,
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kTiffTagImageLength};
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TiffContent content;
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TiffParser(stream, tiff_offset).Parse(kIfd0TagSet, 1, &content);
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if (content.tiff_directory.size() != 1) {
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return false;
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}
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content.tiff_directory[0].Get(kTiffTagModel, &preview_image_data->model);
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content.tiff_directory[0].Get(kTiffTagMake, &preview_image_data->maker);
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content.tiff_directory[0].Get(kTiffTagOrientation,
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&preview_image_data->exif_orientation);
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content.tiff_directory[0].Get(kTiffTagImageWidth,
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&preview_image_data->full_width);
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content.tiff_directory[0].Get(kTiffTagImageLength,
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&preview_image_data->full_height);
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return true;
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}
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// Parses the Exif Exif IFD tags at tiff_offset.
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bool ParseExifExifIfd(StreamInterface* stream, size_t tiff_offset,
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PreviewImageData* preview_image_data) {
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static const TagSet kExifIfdTagSet = {kExifTagDateTimeOriginal,
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kExifTagExposureTime, kExifTagFnumber,
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kExifTagFocalLength, kExifTagIsoSpeed};
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TiffContent content;
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TiffParser(stream, tiff_offset).Parse(kExifIfdTagSet, 1, &content);
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if (content.tiff_directory.size() != 1) {
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return false;
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}
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content.tiff_directory[0].Get(kExifTagDateTimeOriginal,
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&preview_image_data->date_time);
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GetRational(kExifTagExposureTime, content.tiff_directory[0], 1,
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&preview_image_data->exposure_time);
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GetRational(kExifTagFnumber, content.tiff_directory[0], 1,
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&preview_image_data->fnumber);
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GetRational(kExifTagFocalLength, content.tiff_directory[0], 1,
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&preview_image_data->focal_length);
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content.tiff_directory[0].Get(kExifTagIsoSpeed, &preview_image_data->iso);
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return true;
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}
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// Returns the next box or an invalid box.
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//
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// Based on ISO/IEC 14496-12: boxes start with a header: size and type. The size
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// can be compact (32-bits) or extended (64-bit, e.g. mdat box).
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// The type can be compact (32 bits) or extended (full UUID, e.g. uuid boxes).
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// values are stored after the compact size/type.
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//
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// Fields in a box are big-endian.
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Box GetNextBox(StreamInterface* stream, size_t offset) {
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uint32_t length_32;
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if (!Get32u(stream, offset, &length_32)) {
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return Box();
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}
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BoxTag tag;
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Error status = stream->GetData(offset + sizeof(length_32), kTagSize,
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reinterpret_cast<std::uint8_t*>(tag.data()));
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if (status != kOk) {
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return Box();
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}
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size_t length;
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size_t header_offset = sizeof(length_32) + sizeof(tag);
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if (length_32 == 1) {
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// Magic number of 1 implies extended size.
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uint64_t length_64 = 0;
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if (!Get64u(stream, offset + header_offset, &length_64)) {
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return Box();
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}
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length = length_64;
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header_offset += sizeof(length_64);
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} else {
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// Compact size.
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length = length_32;
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}
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return Box(tag, offset, header_offset, length);
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}
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// Searches for the next box with the given tag.
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Box GetNextBoxWithTag(StreamInterface* stream, size_t offset,
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const BoxTag& expected_tag) {
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while (true) {
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Box box = GetNextBox(stream, offset);
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if (!box.IsValid() || box.tag() == expected_tag) {
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return box;
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}
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offset = box.next_box_offset();
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}
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}
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// Returns the width, height, and content type from the CRAW box.
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bool ProcessCrawBox(StreamInterface* stream, const Box& craw_box,
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uint16_t* width, uint16_t* height, uint16_t* content_type) {
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constexpr size_t kWidthOffset = 32;
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if (!Get16u(stream, craw_box.offset() + kWidthOffset, width)) {
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return false;
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}
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constexpr size_t kHeightOffset = 34;
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if (!Get16u(stream, craw_box.offset() + kHeightOffset, height)) {
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return false;
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}
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constexpr size_t kTypeOffset = 86;
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if (!Get16u(stream, craw_box.offset() + kTypeOffset, content_type)) {
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return false;
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}
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return true;
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}
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// stsz box offset:
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// Byte Offset Type Meaning
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// 0 [long] size of box
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// 4 [char[]] box tag
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// 8 [long] version/flags
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// 12 [long] sample size
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// 16 [long] number of entries in sample table
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// 20 [long[]] sample table if samples size is 0
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bool ProcessStszBox(StreamInterface* stream, const Box& stsz_box,
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uint32_t* image_size) {
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uint32_t sample_size;
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if (!Get32u(stream, stsz_box.offset() + 12, &sample_size)) {
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return false;
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}
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if (sample_size > 0) {
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*image_size = sample_size;
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return true;
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}
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// sample_size of 0 implies the data is in the sample table. We expect only
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// one entry. This is true of Canon EOS RP Cr3 files.
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uint32_t count;
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if (!Get32u(stream, stsz_box.offset() + 16, &count)) {
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return false;
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}
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if (count != 1) {
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// Expect at most one entry in the table.
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return false;
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}
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return Get32u(stream, stsz_box.offset() + 20, image_size);
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}
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// co64 box offsets:
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// Byte Offset Type Meaning
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// 0 [long] size of box
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// 4 [char[]] box tag
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// 8 [long] version
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// 12 [long] count (expect to be value 1)
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// 16 [long] offset of image data in mdat
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bool ProcessCo64(StreamInterface* stream, const Box& co64_box,
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uint32_t* image_offset) {
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uint32_t count = 0;
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if (!Get32u(stream, co64_box.header_offset() + 4, &count)) {
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return false;
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}
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if (count != 1) {
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return false;
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}
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return Get32u(stream, co64_box.header_offset() + 8, image_offset);
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}
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// Process the stbl box. Expected box layout:
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// stbl
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// stsd
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// CRAW (embedded image (JPEG) information)
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// (0 or more skipped boxes)
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// stsz (embedded image byte size)
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// (0 or more skipped boxes)
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// co64 (offset of embedded image, relative to mdat box)
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bool ProcessStblBox(StreamInterface* stream, const Box& stbl_box,
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ProcessData* data) {
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Box stsd_box = GetNextBoxWithTag(stream, stbl_box.header_offset(), kStsdTag);
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if (!stsd_box.IsValid()) {
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return false;
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}
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// This is either CRAW or CTMD. Skip when CTMD.
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Box craw_box = GetNextBox(stream, stsd_box.header_offset() + 8);
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if (!craw_box.IsValid()) {
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return false;
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}
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if (craw_box.tag() != kCrawTag) {
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return true;
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}
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// CRAW contains info about the full-size image embedded in the mdat box.
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// The image is either JPEG or HEVC.
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uint16_t image_width = 0;
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uint16_t image_height = 0;
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uint16_t content_type = 0;
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if (!ProcessCrawBox(stream, craw_box, &image_width, &image_height,
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&content_type)) {
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return false;
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}
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// Only continue if JPEG or HEVC content.
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constexpr uint16_t kJpegContentType = 3;
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constexpr uint16_t kHevcContentType = 4;
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if (content_type != kJpegContentType && content_type != kHevcContentType) {
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return true;
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}
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// Skip until we find stsz, contains the size (# of bytes) of image data.
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Box stsz_box =
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GetNextBoxWithTag(stream, stsd_box.next_box_offset(), kStszTag);
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if (!stsz_box.IsValid()) {
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return false;
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}
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uint32_t image_size;
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if (!ProcessStszBox(stream, stsz_box, &image_size)) {
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return false;
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}
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// Skip until we find co64, contains the offset of image data.
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Box co64_box =
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GetNextBoxWithTag(stream, stsz_box.next_box_offset(), kCo64Tag);
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if (!co64_box.IsValid()) {
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return false;
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}
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uint32_t image_offset = 0;
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if (!ProcessCo64(stream, co64_box, &image_offset)) {
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return false;
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}
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data->mdat_image.format = content_type == kJpegContentType
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? Image::kJpegCompressed
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: Image::kHevcCompressed;
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data->mdat_image.width = image_width;
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data->mdat_image.height = image_height;
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data->mdat_image.length = image_size;
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// This offset is relative to the position of the mdat box. The value will
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// be updated once mdat's offset is found.
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data->mdat_image.offset = image_offset;
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return true;
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}
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// Returns true if we should parse the children of the box.
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bool DoProcessChildren(const BoxTag& tag) {
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static const std::set<BoxTag> kTags = {NewTag("trak"), NewTag("moov"),
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NewTag("mdia"), NewTag("minf")};
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return kTags.find(tag) != kTags.end();
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}
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// Processes box and returns offset of the next box to process.
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// A return value of 0 indicates an error.
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//
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// Outline of hierarchy and important boxes:
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// ftyp
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// moov
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// uuid (id is kUuidMoov)
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// ... boxes we skip ...
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// CMT1 (EXIF data)
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// CMT2 (EXIF data)
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// ... boxes we skip ...
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// THMB (160x120 JPEG thumbnail, embedded in this box)
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// trak
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// tkhd
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// mdia
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// ... boxes we skip ...
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// minf
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// ... boxes we skip ...
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// stbl
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// stsd
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// CRAW (Full image preview, type (JPEG or HEVC), width, height. The
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// image data is found in mdat box, below.)
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// ... boxes we skip ...
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// stsz (Size of preview, in bytes)
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// ... boxes we skip ...
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// co64 (Location/offset of full preview data in mdat)
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// .. boxes we skip ...
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// uuid (id is kUuidPrvw)
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// PRVW (1620x1080 JPEG preview, embedded in this box)
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// mdat
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// Full image preview (JPEG or HEVC)
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// ... RAW image data ...
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size_t ProcessBox(StreamInterface* stream, const Box& box, ProcessData* data) {
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// Parse child boxes.
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if (box.tag() == kUuidTag) {
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// Uuid box have extended box types.
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Uuid uuid;
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if (stream->GetData(box.header_offset(), uuid.size(), uuid.data()) != kOk) {
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return 0;
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}
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if (uuid == kUuidPrvw) {
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return box.header_offset() + uuid.size() + 8;
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} else if (uuid == kUuidMoov) {
|
|
return box.header_offset() + uuid.size();
|
|
} // else skip the box, below.
|
|
} else if (DoProcessChildren(box.tag())) {
|
|
return box.header_offset();
|
|
}
|
|
|
|
// Potentially process the data contained in the box.
|
|
bool success;
|
|
if (box.tag() == kMdatTag) {
|
|
// mdat_image.offset is relative to mdat's header, update it to be absolute
|
|
// offset to the image data.
|
|
data->mdat_image.offset += box.header_offset();
|
|
success = true;
|
|
} else if (box.tag() == kStblTag) {
|
|
success = ProcessStblBox(stream, box, data);
|
|
} else if (box.tag() == kPrvwTag) {
|
|
// Preview jpeg. 1620x1080 for EOS R.
|
|
success = ProcessJpegBox(stream, box, &data->prvw_image);
|
|
} else if (box.tag() == kThmbTag) {
|
|
// Thumbnail jpeg. 160x120 for EOS R.
|
|
success = ProcessJpegBox(stream, box, &data->preview_image_data->thumbnail);
|
|
} else if (box.tag() == kCmt1Tag) {
|
|
success =
|
|
ParseExifIfd0(stream, box.header_offset(), data->preview_image_data);
|
|
} else if (box.tag() == kCmt2Tag) {
|
|
success =
|
|
ParseExifExifIfd(stream, box.header_offset(), data->preview_image_data);
|
|
} else {
|
|
// This box isn't interesting, skip it.
|
|
success = true;
|
|
}
|
|
return success ? box.next_box_offset() : 0;
|
|
}
|
|
|
|
bool ProcessStream(StreamInterface* stream, const BoxTag& last_chunk,
|
|
ProcessData* data) {
|
|
size_t offset = 0;
|
|
while (true) {
|
|
Box box = GetNextBox(stream, offset);
|
|
if (!box.IsValid()) {
|
|
return false;
|
|
}
|
|
size_t new_offset = ProcessBox(stream, box, data);
|
|
if (new_offset <= offset) {
|
|
return false;
|
|
}
|
|
if (box.tag() == last_chunk) {
|
|
return true;
|
|
}
|
|
offset = new_offset;
|
|
}
|
|
}
|
|
|
|
bool IsImage(StreamInterface* stream, const Image& image) {
|
|
if (image.format != Image::kJpegCompressed) {
|
|
// Pass responsibility to the caller.
|
|
return true;
|
|
}
|
|
// Check for JPEG magic number at start. This could be HEVC data.
|
|
constexpr std::array<uint8_t, 3> kJpegMagicNumber = {0xFF, 0xD8, 0xFF};
|
|
std::array<uint8_t, 3> magic_number;
|
|
if (stream->GetData(image.offset, magic_number.size(), magic_number.data()) !=
|
|
kOk) {
|
|
return false;
|
|
}
|
|
return magic_number == kJpegMagicNumber;
|
|
}
|
|
|
|
} // namespace
|
|
|
|
Error Cr3GetPreviewData(StreamInterface* stream,
|
|
PreviewImageData* preview_image_data) {
|
|
ProcessData data{.preview_image_data = preview_image_data};
|
|
if (!ProcessStream(stream, kMdatTag, &data)) {
|
|
return kFail;
|
|
}
|
|
// Prefer image in mdata box, as spec ensures it is the largest image.
|
|
if (data.mdat_image.length > 0 && IsImage(stream, data.mdat_image)) {
|
|
preview_image_data->preview = data.mdat_image;
|
|
} else if (data.prvw_image.length > 0 && IsImage(stream, data.prvw_image)) {
|
|
preview_image_data->preview = data.prvw_image;
|
|
} else {
|
|
return kFail;
|
|
}
|
|
return kOk;
|
|
}
|
|
|
|
bool Cr3GetOrientation(StreamInterface* stream, std::uint32_t* orientation) {
|
|
PreviewImageData preview_image_data;
|
|
ProcessData data{.preview_image_data = &preview_image_data};
|
|
if (ProcessStream(stream, kCmt1Tag, &data)) {
|
|
*orientation = preview_image_data.exif_orientation;
|
|
return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
} // namespace piex
|