| // 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/reader.h" |
| |
| #include <cstddef> |
| #include <cstdint> |
| #include <string> |
| #include <vector> |
| |
| #include "absl/status/status.h" |
| #include "absl/status/status_macros.h" |
| #include "absl/status/status_matchers.h" |
| #include "absl/status/statusor.h" |
| #include "absl/strings/str_cat.h" |
| #include "absl/strings/string_view.h" |
| #include "formats/riff/create_riff.h" |
| #include "gmock/gmock.h" |
| #include "gtest/gtest.h" |
| #include "riegeli/bytes/string_reader.h" |
| #include "riegeli/bytes/string_writer.h" |
| #include "riegeli/endian/endian_writing.h" |
| |
| namespace credentio { |
| namespace { |
| |
| using ::absl_testing::IsOk; |
| using ::absl_testing::IsOkAndHolds; |
| using ::absl_testing::StatusIs; |
| using ::testing::ElementsAre; |
| using ::testing::HasSubstr; |
| using ::testing::IsEmpty; |
| |
| constexpr uint64_t kMaxPayloadSize = 1024 * 1024 * 10; // 10 MiB |
| |
| std::string WriteRiffChunkMissingInvalidForm() { |
| riegeli::StringWriter writer; |
| writer.Write("RIFF"); |
| riegeli::WriteLittleEndian<uint32_t>(2, writer); |
| writer.Write("AB"); |
| writer.Close(); |
| return writer.dest(); |
| } |
| |
| absl::StatusOr<std::vector<RiffChunk>> GetChunks(riegeli::Reader& reader) { |
| std::vector<RiffChunk> chunks; |
| ABSL_RETURN_IF_ERROR( |
| IterateOverRiffChunks(reader, [&chunks](const RiffChunk& chunk) { |
| chunks.push_back(chunk); |
| return true; |
| })); |
| return chunks; |
| } |
| |
| absl::StatusOr<std::vector<std::string>> ReadChunkPayloads( |
| riegeli::Reader& reader, const std::vector<RiffChunk>& chunks) { |
| std::vector<std::string> payloads; |
| for (const auto& chunk : chunks) { |
| ABSL_ASSIGN_OR_RETURN(auto payload, ReadRiffChunkData(reader, chunk)); |
| payloads.push_back(payload); |
| } |
| return payloads; |
| } |
| |
| TEST(RiffReaderUnitTest, ReadsChunks) { |
| std::string contents = credentio_riff::RiffChunk( |
| "XYZW", absl::StrCat(credentio_riff::Chunk("ABCD", "first chunk"), |
| credentio_riff::Chunk("EFGH", "second chunk"), |
| credentio_riff::Chunk("IJKL", "third chunk"), |
| credentio_riff::Chunk("MNOP", "fourth chunk"))); |
| riegeli::StringReader<> input(contents); |
| auto chunks_or = GetChunks(input); |
| ASSERT_THAT(chunks_or.status(), IsOk()); |
| auto chunks = *chunks_or; |
| ASSERT_THAT(chunks, ElementsAre( |
| RiffChunk{ |
| .offset = 0, |
| .length = 92, |
| .id = "RIFF", |
| .type = "XYZW", |
| .data_offset = 12, |
| .data_length = 80, |
| }, |
| RiffChunk{ |
| .offset = 12, |
| .length = 20, |
| .id = "ABCD", |
| .type = "", |
| .data_offset = 20, |
| .data_length = 11, |
| }, |
| RiffChunk{ |
| .offset = 32, |
| .length = 20, |
| .id = "EFGH", |
| .type = "", |
| .data_offset = 40, |
| .data_length = 12, |
| }, |
| RiffChunk{ |
| .offset = 52, |
| .length = 20, |
| .id = "IJKL", |
| .type = "", |
| .data_offset = 60, |
| .data_length = 11, |
| }, |
| RiffChunk{ |
| .offset = 72, |
| .length = 20, |
| .id = "MNOP", |
| .type = "", |
| .data_offset = 80, |
| .data_length = 12, |
| })); |
| |
| // Re-reading payloads requires seeking, ReadRiffChunkData handles it. |
| EXPECT_THAT(ReadChunkPayloads(input, {chunks.begin() + 1, chunks.end()}), |
| IsOkAndHolds(ElementsAre("first chunk", "second chunk", |
| "third chunk", "fourth chunk"))); |
| } |
| |
| TEST(RiffReaderUnitTest, MissingChunkTypeForChunkWithSubchunks) { |
| std::string contents = WriteRiffChunkMissingInvalidForm(); |
| riegeli::StringReader<> input(contents); |
| |
| EXPECT_THAT(GetChunks(input), |
| StatusIs(absl::StatusCode::kInvalidArgument, |
| HasSubstr("RIFF/LIST chunk too short"))); |
| } |
| |
| TEST(ReadChunkDataTest, SuccessfulRead) { |
| std::string contents = "RIFF....WEBPVP8 ...."; |
| // 01234567890123456789 |
| riegeli::StringReader<> input(contents); |
| RiffChunk chunk = { |
| .offset = 12, |
| .length = 8, |
| .id = "VP8 ", |
| .type = "", |
| .data_offset = 12, |
| .data_length = 8, |
| }; |
| EXPECT_THAT(ReadRiffChunkData(input, chunk), IsOkAndHolds("VP8 ....")); |
| } |
| |
| TEST(ReadChunkDataTest, ReadBeyondEOF) { |
| std::string contents = "RIFF....WEBPVP8 ...."; |
| // 01234567890123456789 |
| riegeli::StringReader<> input(contents); |
| RiffChunk chunk = { |
| .offset = 12, |
| .length = 8, |
| .id = "VP8 ", |
| .type = "", |
| .data_offset = 12, |
| .data_length = 10, // Reads past end of contents |
| }; |
| EXPECT_THAT( |
| ReadRiffChunkData(input, chunk), |
| StatusIs(absl::StatusCode::kDataLoss, HasSubstr("kUnexpectedEof"))); |
| } |
| |
| TEST(ReadChunkDataTest, EmptyChunk) { |
| std::string contents = "RIFF....WEBPVP8 ...."; |
| riegeli::StringReader<> input(contents); |
| RiffChunk chunk = { |
| .offset = 12, |
| .length = 0, |
| .id = "VP8 ", |
| .type = "", |
| .data_offset = 12, |
| .data_length = 0, |
| }; |
| EXPECT_THAT(ReadRiffChunkData(input, chunk), IsOkAndHolds(IsEmpty())); |
| } |
| |
| TEST(ReadChunkDataTest, ReadAtEOF) { |
| std::string contents = "RIFF....WEBPVP8 ...."; |
| riegeli::StringReader<> input(contents); |
| RiffChunk chunk = { |
| .offset = 20, |
| .length = 0, |
| .id = "....", |
| .type = "", |
| .data_offset = 20, |
| .data_length = 0, |
| }; |
| EXPECT_THAT(ReadRiffChunkData(input, chunk), IsOkAndHolds(IsEmpty())); |
| } |
| |
| TEST(ReadChunkDataTest, InvalidDataOffset) { |
| std::string contents = "RIFF....WEBPVP8 ...."; |
| riegeli::StringReader<> input(contents); |
| RiffChunk chunk = { |
| .offset = 12, |
| .length = 8, |
| .id = "VP8 ", |
| .type = "", |
| .data_offset = 100, // Past EOF |
| .data_length = 1, |
| }; |
| EXPECT_THAT(ReadRiffChunkData(input, chunk), |
| StatusIs(absl::StatusCode::kInvalidArgument, |
| HasSubstr("Failed to seek to chunk data offset"))); |
| } |
| |
| TEST(ReadChunkDataTest, ChunkTooLarge) { |
| std::string contents = ""; // Not actually read in this test |
| riegeli::StringReader<> input(contents); |
| RiffChunk chunk = { |
| .offset = 12, |
| .length = kMaxPayloadSize + 9, |
| .id = "C2PA", |
| .type = "", |
| .data_offset = 20, |
| .data_length = kMaxPayloadSize + 1, |
| }; |
| EXPECT_THAT(ReadRiffChunkData(input, chunk), |
| StatusIs(absl::StatusCode::kInvalidArgument, |
| HasSubstr("RIFF C2PA chunk is too large to extract"))); |
| } |
| |
| TEST(RiffReaderUnitTest, ProcessorConsumesDataOfContainer) { |
| std::string contents = |
| credentio_riff::RiffChunk("WAVE", credentio_riff::ListChunk("INFO", "x")); |
| riegeli::StringReader<> input(contents); |
| |
| auto processor = [&input](const RiffChunk& chunk) -> absl::StatusOr<bool> { |
| if (chunk.id == "LIST") { |
| std::string data; |
| if (!input.Read(1, data)) { |
| return absl::DataLossError("failed to read"); |
| } |
| EXPECT_EQ(data, "x"); |
| } |
| return true; |
| }; |
| |
| EXPECT_THAT(IterateOverRiffChunks(input, processor), IsOk()); |
| } |
| |
| TEST(RiffReaderUnitTest, OddContainerWithOddSubchunkAtEnd) { |
| riegeli::StringWriter writer; |
| writer.Write("RIFF"); |
| riegeli::WriteLittleEndian<uint32_t>(26, writer); |
| writer.Write("WAVE"); |
| writer.Write("LIST"); |
| riegeli::WriteLittleEndian<uint32_t>(13, writer); |
| writer.Write("INFO"); |
| writer.Write("ISFT"); |
| riegeli::WriteLittleEndian<uint32_t>(1, writer); |
| writer.Write("a"); |
| writer.Write('\0'); // LIST pad |
| writer.Close(); |
| std::string contents = writer.dest(); |
| |
| riegeli::StringReader<> input(contents); |
| auto chunks_or = GetChunks(input); |
| ASSERT_THAT(chunks_or.status(), IsOk()); |
| auto chunks = *chunks_or; |
| ASSERT_THAT(chunks, ElementsAre( |
| RiffChunk{ |
| .offset = 0, |
| .length = 34, |
| .id = "RIFF", |
| .type = "WAVE", |
| .data_offset = 12, |
| .data_length = 22, |
| }, |
| RiffChunk{ |
| .offset = 12, |
| .length = 22, |
| .id = "LIST", |
| .type = "INFO", |
| .data_offset = 24, |
| .data_length = 9, |
| }, |
| RiffChunk{ |
| .offset = 24, |
| .length = 10, |
| .id = "ISFT", |
| .type = "", |
| .data_offset = 32, |
| .data_length = 1, |
| })); |
| } |
| |
| class NoSizeReader : public riegeli::Reader { |
| public: |
| bool SupportsSize() override { return false; } |
| bool PullSlow(size_t min_length, size_t recommended_length) override { |
| return false; |
| } |
| }; |
| |
| TEST(RiffReaderTest, IterateOverRiffChunksRequiresSize) { |
| NoSizeReader reader; |
| EXPECT_THAT( |
| IterateOverRiffChunks(reader, [](const RiffChunk&) { return true; }), |
| StatusIs(absl::StatusCode::kInvalidArgument, |
| HasSubstr("reader size cannot be determined"))); |
| } |
| |
| TEST(RiffReaderTest, OverflowChunkSizeNoInfiniteLoop) { |
| riegeli::StringWriter writer; |
| writer.Write("RIFF"); |
| riegeli::WriteLittleEndian<uint32_t>(20, writer); |
| writer.Write("WAVE"); |
| writer.Write("JUNK"); |
| riegeli::WriteLittleEndian<uint32_t>(0xFFFFFFF8, writer); |
| writer.Close(); |
| std::string contents = writer.dest(); |
| |
| riegeli::StringReader<> input(contents); |
| EXPECT_THAT( |
| IterateOverRiffChunks(input, [](const RiffChunk&) { return true; }), |
| StatusIs(absl::StatusCode::kInvalidArgument, |
| HasSubstr("RIFF chunk extends beyond the end of the file"))); |
| } |
| |
| } // namespace |
| } // namespace credentio |