| // Copyright 2026 Google LLC |
| // |
| // Licensed under the Apache License, Version 2.0 (the "License"); |
| // you may not use this file except in compliance with the License. |
| // You may obtain a copy of the License at |
| // |
| // https://www.apache.org/licenses/LICENSE-2.0 |
| // |
| // Unless required by applicable law or agreed to in writing, software |
| // distributed under the License is distributed on an "AS IS" BASIS, |
| // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
| // See the License for the specific language governing permissions and |
| // limitations under the License. |
| // |
| |
| #include "formats/riff/extractor.h" |
| |
| #include <cstdint> |
| #include <optional> |
| #include <string> |
| #include <utility> |
| #include <vector> |
| |
| #include "absl/log/check.h" |
| #include "absl/status/status.h" |
| #include "absl/status/status_matchers.h" |
| #include "absl/strings/str_cat.h" |
| #include "absl/strings/string_view.h" |
| #include "formats/asset_box.h" |
| #include "formats/byte_range.h" |
| #include "formats/extractor_result.h" |
| #include "formats/riff/create_riff.h" |
| #include "gmock/gmock.h" |
| #include "gtest/gtest.h" |
| #include "riegeli/bytes/string_reader.h" |
| #include "testing/jumbf_utils.h" |
| |
| namespace credentio { |
| namespace { |
| |
| using ::absl_testing::IsOk; |
| using ::absl_testing::IsOkAndHolds; |
| using ::absl_testing::StatusIs; |
| using ::credentio_riff::Chunk; |
| using ::credentio_riff::ListChunk; |
| using ::credentio_riff::RiffChunk; |
| using ::testing::ElementsAre; |
| using ::testing::HasSubstr; |
| |
| constexpr absl::string_view kManifestStore = "1234567890"; |
| |
| std::vector<AssetBox> CreateBoxes( |
| std::vector<std::pair<std::string, uint32_t>> expected) { |
| uint64_t offset = 0; |
| std::vector<AssetBox> boxes; |
| for (const auto& name_and_size : expected) { |
| boxes.push_back(AssetBox{ |
| .identifier = name_and_size.first, |
| .byte_range = {.offset = offset, .length = name_and_size.second}, |
| }); |
| offset += name_and_size.second; |
| } |
| return boxes; |
| } |
| |
| struct TestCase { |
| std::string name; |
| std::string contents; |
| absl::StatusOr<ExtractorResult> result; |
| }; |
| |
| class ExtractorTest : public testing::TestWithParam<TestCase> {}; |
| |
| INSTANTIATE_TEST_SUITE_P( |
| ExtractorTests, ExtractorTest, |
| testing::ValuesIn({ |
| TestCase{ |
| .name = "EmptyContent", |
| .contents = "", |
| .result = absl::NotFoundError("No manifest store found"), |
| }, |
| TestCase{ |
| .name = "EmptyRiffChunk", |
| .contents = RiffChunk("ABCD", ""), |
| .result = absl::NotFoundError("No manifest store found"), |
| }, |
| TestCase{ |
| .name = "VariousChunksNoC2pa", |
| .contents = RiffChunk( |
| "WEBP", |
| absl::StrCat(Chunk("ABCD", "some data"), Chunk("HIJK", "etc"), |
| Chunk("DEFG", "more irrelevant data"))), |
| .result = absl::NotFoundError("No manifest store found"), |
| }, |
| TestCase{ |
| .name = "C2paChunkTooLarge", |
| .contents = RiffChunk( |
| "WEBP", |
| absl::StrCat(Chunk("ABCD", std::string(100000, 'X')), |
| Chunk("C2PA", |
| std::string((1024 * 1024 * 10) + 1, 'Z')))), |
| .result = absl::InvalidArgumentError( |
| "RIFF C2PA chunk is too large to extract"), |
| }, |
| TestCase{ |
| .name = "SingleC2paChunk", |
| .contents = RiffChunk("WEBP", Chunk("C2PA", kManifestStore)), |
| .result = |
| ExtractorResult{ |
| .manifest_store = std::string(kManifestStore), |
| .asset_byte_info = |
| { |
| .manifest_store_location = ByteRange{.offset = 12, |
| .length = 18}, |
| .boxes = CreateBoxes({{"RIFF", /*size=*/12}, |
| {"C2PA", /*size=*/18}}), |
| }, |
| }, |
| }, |
| TestCase{ |
| .name = "VariousChunksIncludingC2pa", |
| .contents = |
| RiffChunk( |
| "WEBP", |
| absl::StrCat( |
| Chunk("ABCD", |
| "123456789"), // odd length, will have pad byte |
| Chunk("EFGH", std::string(100000, 'Z')), // large chunk |
| Chunk("C2PA", kManifestStore), Chunk("DEFG", "12"))), |
| .result = |
| ExtractorResult{ |
| .manifest_store = std::string(kManifestStore), |
| .asset_byte_info = |
| { |
| .manifest_store_location = |
| ByteRange{.offset = 100038, .length = 18}, |
| .boxes = CreateBoxes({{"RIFF", /*size=*/12}, |
| {"ABCD", /*size=*/18}, |
| {"EFGH", /*size=*/100008}, |
| {"C2PA", /*size=*/18}, |
| {"DEFG", /*size=*/10}}), |
| }}, |
| }, |
| TestCase{ |
| .name = "ContainingListChunk", |
| .contents = RiffChunk( |
| "WEBP", absl::StrCat(Chunk("ABCD", "1234"), |
| ListChunk("DATA", Chunk("HIJK", "1234")), |
| Chunk("DEFG", "1234"), |
| Chunk("C2PA", kManifestStore))), |
| .result = |
| ExtractorResult{ |
| .manifest_store = std::string(kManifestStore), |
| .asset_byte_info = |
| { |
| .manifest_store_location = ByteRange{.offset = 60, |
| .length = 18}, |
| .boxes = CreateBoxes({{"RIFF", /*size=*/12}, |
| {"ABCD", /*size=*/12}, |
| {"LIST", /*size=*/24}, |
| {"DEFG", /*size=*/12}, |
| {"C2PA", /*size=*/18}}), |
| }}, |
| }, |
| }), |
| [](const testing::TestParamInfo<ExtractorTest::ParamType>& info) { |
| return info.param.name; |
| }); |
| |
| TEST(ExtractorOverflowTest, DeeplyNestedRiffWithoutC2pa) { |
| std::string contents = Chunk("NMBR", "1234"); |
| for (int32_t i = 0; i < 200; ++i) { |
| contents = ListChunk("LAYR", contents); |
| } |
| contents = RiffChunk("WEBP", contents); |
| |
| riegeli::StringReader<> input(contents); |
| |
| EXPECT_THAT(RiffExtractor().ExtractManifestStore(input), |
| StatusIs(absl::StatusCode::kNotFound, |
| HasSubstr("No manifest store found"))); |
| } |
| |
| TEST_P(ExtractorTest, ExtractManifestStore) { |
| const TestCase& test_case = GetParam(); |
| riegeli::StringReader<absl::string_view> input(test_case.contents); |
| |
| absl::StatusOr<std::string> result = |
| RiffExtractor().ExtractManifestStore(input); |
| |
| const auto& expected_result = test_case.result; |
| if (expected_result.ok()) { |
| ASSERT_THAT(result, IsOk()); |
| EXPECT_EQ(*result, expected_result->manifest_store); |
| } else { |
| EXPECT_THAT(result.status(), |
| StatusIs(expected_result.status().code(), |
| HasSubstr(expected_result.status().message()))); |
| } |
| } |
| |
| TEST_P(ExtractorTest, ExtractWorksWhenPrefixPadded) { |
| const TestCase& test_case = GetParam(); |
| std::string contents = "padding" + test_case.contents; |
| riegeli::StringReader<> input(contents); |
| |
| ASSERT_TRUE(input.Seek(7)); |
| absl::StatusOr<std::string> result = |
| RiffExtractor().ExtractManifestStore(input); |
| |
| const auto& expected_result = test_case.result; |
| if (expected_result.ok()) { |
| ASSERT_THAT(result, IsOk()); |
| EXPECT_EQ(*result, expected_result->manifest_store); |
| } else { |
| EXPECT_THAT(result.status(), |
| StatusIs(expected_result.status().code(), |
| HasSubstr(expected_result.status().message()))); |
| } |
| } |
| |
| TEST_P(ExtractorTest, ExtractManifestStoreLocation) { |
| const TestCase& test_case = GetParam(); |
| riegeli::StringReader<absl::string_view> input(test_case.contents); |
| |
| absl::StatusOr<std::optional<ByteRange>> result = |
| RiffExtractor().ExtractManifestStoreLocation(input, {}); |
| |
| const auto& expected_result = test_case.result; |
| if (expected_result.ok()) { |
| ASSERT_THAT(result, IsOk()); |
| EXPECT_EQ(*result, |
| expected_result->asset_byte_info.manifest_store_location); |
| } else { |
| EXPECT_THAT(result.status(), |
| StatusIs(expected_result.status().code(), |
| HasSubstr(expected_result.status().message()))); |
| } |
| } |
| |
| TEST_P(ExtractorTest, ExtractBoxes) { |
| const TestCase& test_case = GetParam(); |
| riegeli::StringReader<absl::string_view> input(test_case.contents); |
| |
| absl::StatusOr<std::vector<AssetBox>> result = |
| RiffExtractor().ExtractBoxes(input, {}); |
| |
| const auto& expected_result = test_case.result; |
| if (expected_result.ok()) { |
| ASSERT_THAT(result, IsOk()); |
| EXPECT_THAT(*result, expected_result->asset_byte_info.boxes); |
| } else { |
| EXPECT_THAT(result.status(), |
| StatusIs(expected_result.status().code(), |
| HasSubstr(expected_result.status().message()))); |
| } |
| } |
| |
| TEST_P(ExtractorTest, ExtractManifestStoreLocationWithSuffixPadded) { |
| const TestCase& test_case = GetParam(); |
| std::string contents = test_case.contents + "padding8"; |
| riegeli::StringReader<> input(contents); |
| |
| absl::StatusOr<std::optional<ByteRange>> result = |
| RiffExtractor().ExtractManifestStoreLocation( |
| input, {.end_offset = static_cast<int64_t>(contents.size()) - 8}); |
| |
| const auto& expected_result = test_case.result; |
| if (expected_result.ok()) { |
| ASSERT_THAT(result, IsOk()); |
| EXPECT_EQ(*result, |
| expected_result->asset_byte_info.manifest_store_location); |
| } else { |
| EXPECT_THAT(result.status(), |
| StatusIs(expected_result.status().code(), |
| HasSubstr(expected_result.status().message()))); |
| } |
| } |
| |
| TEST_P(ExtractorTest, ExtractBoxesWithSuffixPadded) { |
| const TestCase& test_case = GetParam(); |
| std::string contents = test_case.contents + "padding8"; |
| riegeli::StringReader<> input(contents); |
| |
| absl::StatusOr<std::vector<AssetBox>> result = RiffExtractor().ExtractBoxes( |
| input, {.end_offset = static_cast<int64_t>(contents.size()) - 8}); |
| |
| const auto& expected_result = test_case.result; |
| if (expected_result.ok()) { |
| ASSERT_THAT(result, IsOk()); |
| EXPECT_THAT(*result, expected_result->asset_byte_info.boxes); |
| } else { |
| EXPECT_THAT(result.status(), |
| StatusIs(expected_result.status().code(), |
| HasSubstr(expected_result.status().message()))); |
| } |
| } |
| |
| TEST(RiffExtractorTest, IsManifestStore) { |
| EXPECT_TRUE(RiffExtractor().MightBeC2paManifestStore( |
| CreateStartOfManifestStorePayload())); |
| } |
| |
| TEST(RiffExtractorTest, ExtractManifestStoreMultipleRiffChunks) { |
| std::string contents = |
| absl::StrCat(RiffChunk("WEBP", Chunk("C2PA", kManifestStore)), |
| RiffChunk("BLAH", Chunk("ABCD", "second riff chunk data"))); |
| riegeli::StringReader<> input(contents); |
| |
| EXPECT_THAT(RiffExtractor().ExtractManifestStore(input), |
| IsOkAndHolds(kManifestStore)); |
| } |
| |
| TEST(RiffExtractorTest, ExtractManifestStoreC2paInSecondRiffChunk) { |
| std::string contents = |
| absl::StrCat(RiffChunk("WEBP", Chunk("ABCD", "first riff chunk data")), |
| RiffChunk("BLAH", Chunk("C2PA", kManifestStore))); |
| riegeli::StringReader<> input(contents); |
| |
| EXPECT_THAT(RiffExtractor().ExtractManifestStore(input), |
| StatusIs(absl::StatusCode::kNotFound, "No manifest store found")); |
| } |
| |
| TEST(RiffExtractorTest, ExtractBoxesNonRiffTopLevelChunk) { |
| std::string contents = |
| absl::StrCat(RiffChunk("WEBP", Chunk("ABCD", "first riff chunk data")), |
| Chunk("BLAH", "non-riff top-level chunk data")); |
| riegeli::StringReader<> input(contents); |
| |
| auto boxes_or = RiffExtractor().ExtractBoxes(input, {.requires_c2pa = false}); |
| ASSERT_THAT(boxes_or.status(), ::absl_testing::IsOk()); |
| std::vector<AssetBox> boxes = *boxes_or; |
| |
| std::vector<std::string> box_names; |
| for (const auto& box : boxes) { |
| box_names.push_back(box.identifier); |
| } |
| EXPECT_THAT(box_names, ElementsAre("RIFF", "ABCD", "BLAH")); |
| } |
| |
| TEST(RiffExtractorTest, MultipleC2paChunks) { |
| std::string contents = |
| RiffChunk("WEBP", absl::StrCat(Chunk("C2PA", kManifestStore), |
| Chunk("C2PA", kManifestStore))); |
| riegeli::StringReader<> input(contents); |
| |
| EXPECT_THAT( |
| RiffExtractor().ExtractBoxes(input, {.requires_c2pa = true}), |
| StatusIs(absl::StatusCode::kNotFound, "Multiple manifest stores found")); |
| } |
| |
| TEST(RiffExtractorTest, ExtractManifestStoreDoesNotStartWithRiff) { |
| std::string contents = Chunk("ABCD", "some data"); |
| riegeli::StringReader<> input(contents); |
| EXPECT_THAT(RiffExtractor().ExtractManifestStore(input), |
| StatusIs(absl::StatusCode::kInvalidArgument, |
| "Input does not start with RIFF chunk")); |
| } |
| |
| TEST(RiffExtractorTest, ExtractBoxesDoesNotStartWithRiff) { |
| std::string contents = Chunk("ABCD", "some data"); |
| riegeli::StringReader<> input(contents); |
| EXPECT_THAT( |
| RiffExtractor().ExtractBoxes(input, {}), |
| StatusIs(absl::StatusCode::kInvalidArgument, "RIFF chunk not found")); |
| } |
| |
| TEST(RiffExtractorTest, ExtractBoxesMultipleRiffChunks) { |
| std::string contents = |
| absl::StrCat(RiffChunk("WEBP", Chunk("ABCD", "first riff chunk data")), |
| RiffChunk("BLAH", Chunk("EFGH", "second riff chunk data"))); |
| riegeli::StringReader<> input(contents); |
| |
| auto boxes_or = RiffExtractor().ExtractBoxes(input, {.requires_c2pa = false}); |
| ASSERT_THAT(boxes_or.status(), ::absl_testing::IsOk()); |
| std::vector<AssetBox> boxes = *boxes_or; |
| |
| std::vector<std::string> box_names; |
| for (const auto& box : boxes) { |
| box_names.push_back(box.identifier); |
| } |
| EXPECT_THAT(box_names, ElementsAre("RIFF", "ABCD", "RIFF", "EFGH")); |
| } |
| |
| } // namespace |
| } // namespace credentio |