Merge pull request #8299 from JosJuice/volumeverifier-performance
VolumeVerifier: Performance improvements
This commit is contained in:
commit
2df522d4eb
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@ -76,6 +76,12 @@ public:
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}
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virtual std::vector<u8> GetContent(u16 index) const { return {}; }
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virtual std::vector<u64> GetContentOffsets() const { return {}; }
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virtual bool CheckContentIntegrity(const IOS::ES::Content& content,
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const std::vector<u8>& encrypted_data,
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const IOS::ES::TicketReader& ticket) const
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{
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return false;
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}
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virtual bool CheckContentIntegrity(const IOS::ES::Content& content, u64 content_offset,
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const IOS::ES::TicketReader& ticket) const
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{
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@ -109,6 +115,11 @@ public:
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virtual Platform GetVolumeType() const = 0;
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virtual bool SupportsIntegrityCheck() const { return false; }
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virtual bool CheckH3TableIntegrity(const Partition& partition) const { return false; }
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virtual bool CheckBlockIntegrity(u64 block_index, const std::vector<u8>& encrypted_data,
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const Partition& partition) const
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{
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return false;
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}
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virtual bool CheckBlockIntegrity(u64 block_index, const Partition& partition) const
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{
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return false;
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@ -6,7 +6,9 @@
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#include <algorithm>
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#include <cinttypes>
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#include <future>
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#include <limits>
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#include <mutex>
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#include <optional>
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#include <string>
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#include <unordered_set>
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@ -683,6 +685,34 @@ void VolumeVerifier::SetUpHashing()
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}
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}
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void VolumeVerifier::WaitForAsyncOperations() const
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{
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if (m_crc32_future.valid())
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m_crc32_future.wait();
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if (m_md5_future.valid())
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m_md5_future.wait();
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if (m_sha1_future.valid())
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m_sha1_future.wait();
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if (m_content_future.valid())
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m_content_future.wait();
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if (m_block_future.valid())
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m_block_future.wait();
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}
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bool VolumeVerifier::ReadChunkAndWaitForAsyncOperations(u64 bytes_to_read)
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{
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std::vector<u8> data(bytes_to_read);
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{
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std::lock_guard lk(m_volume_mutex);
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if (!m_volume.Read(m_progress, bytes_to_read, data.data(), PARTITION_NONE))
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return false;
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}
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WaitForAsyncOperations();
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m_data = std::move(data);
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return true;
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}
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void VolumeVerifier::Process()
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{
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ASSERT(m_started);
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@ -691,8 +721,9 @@ void VolumeVerifier::Process()
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if (m_progress == m_max_progress)
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return;
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IOS::ES::Content content;
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IOS::ES::Content content{};
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bool content_read = false;
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bool block_read = false;
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u64 bytes_to_read = BLOCK_SIZE;
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if (m_content_index < m_content_offsets.size() &&
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m_content_offsets[m_content_index] == m_progress)
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@ -709,6 +740,7 @@ void VolumeVerifier::Process()
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else if (m_block_index < m_blocks.size() && m_blocks[m_block_index].offset == m_progress)
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{
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bytes_to_read = VolumeWii::BLOCK_TOTAL_SIZE;
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block_read = true;
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}
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else if (m_block_index < m_blocks.size() && m_blocks[m_block_index].offset > m_progress)
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{
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@ -716,10 +748,12 @@ void VolumeVerifier::Process()
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}
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bytes_to_read = std::min(bytes_to_read, m_max_progress - m_progress);
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const bool is_data_needed = m_calculating_any_hash || content_read || block_read;
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const bool read_succeeded = is_data_needed && ReadChunkAndWaitForAsyncOperations(bytes_to_read);
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if (m_calculating_any_hash)
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{
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std::vector<u8> data(bytes_to_read);
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if (!m_volume.Read(m_progress, bytes_to_read, data.data(), PARTITION_NONE))
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if (!read_succeeded)
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{
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m_calculating_any_hash = false;
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}
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@ -727,52 +761,93 @@ void VolumeVerifier::Process()
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{
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if (m_hashes_to_calculate.crc32)
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{
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// It would be nice to use crc32_z here instead of crc32, but it isn't available on Android
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m_crc32_context =
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crc32(m_crc32_context, data.data(), static_cast<unsigned int>(bytes_to_read));
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m_crc32_future = std::async(std::launch::async, [this] {
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// Would be nice to use crc32_z here instead of crc32, but it isn't available on Android
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m_crc32_context =
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crc32(m_crc32_context, m_data.data(), static_cast<unsigned int>(m_data.size()));
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});
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}
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if (m_hashes_to_calculate.md5)
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mbedtls_md5_update_ret(&m_md5_context, data.data(), bytes_to_read);
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{
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m_md5_future = std::async(std::launch::async, [this] {
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mbedtls_md5_update_ret(&m_md5_context, m_data.data(), m_data.size());
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});
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}
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if (m_hashes_to_calculate.sha1)
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mbedtls_sha1_update_ret(&m_sha1_context, data.data(), bytes_to_read);
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{
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m_sha1_future = std::async(std::launch::async, [this] {
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mbedtls_sha1_update_ret(&m_sha1_context, m_data.data(), m_data.size());
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});
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}
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}
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}
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m_progress += bytes_to_read;
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if (content_read)
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{
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if (!m_volume.CheckContentIntegrity(content, m_content_offsets[m_content_index], m_ticket))
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{
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AddProblem(
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Severity::High,
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StringFromFormat(Common::GetStringT("Content %08x is corrupt.").c_str(), content.id));
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}
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m_content_future = std::async(std::launch::async, [this, read_succeeded, content] {
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if (!read_succeeded || !m_volume.CheckContentIntegrity(content, m_data, m_ticket))
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{
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AddProblem(
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Severity::High,
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StringFromFormat(Common::GetStringT("Content %08x is corrupt.").c_str(), content.id));
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}
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});
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m_content_index++;
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}
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while (m_block_index < m_blocks.size() && m_blocks[m_block_index].offset < m_progress)
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if (m_block_index < m_blocks.size() &&
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m_blocks[m_block_index].offset < m_progress + bytes_to_read)
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{
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if (!m_volume.CheckBlockIntegrity(m_blocks[m_block_index].block_index,
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m_blocks[m_block_index].partition))
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m_md5_future = std::async(
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std::launch::async,
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[this, read_succeeded, bytes_to_read](size_t block_index, u64 progress) {
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while (block_index < m_blocks.size() &&
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m_blocks[block_index].offset < progress + bytes_to_read)
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{
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bool success;
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if (m_blocks[block_index].offset == progress)
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{
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success = read_succeeded &&
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m_volume.CheckBlockIntegrity(m_blocks[block_index].block_index, m_data,
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m_blocks[block_index].partition);
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}
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else
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{
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std::lock_guard lk(m_volume_mutex);
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success = m_volume.CheckBlockIntegrity(m_blocks[block_index].block_index,
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m_blocks[block_index].partition);
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}
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if (!success)
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{
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const u64 offset = m_blocks[block_index].offset;
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if (m_scrubber.CanBlockBeScrubbed(offset))
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{
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WARN_LOG(DISCIO, "Integrity check failed for unused block at 0x%" PRIx64, offset);
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m_unused_block_errors[m_blocks[block_index].partition]++;
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}
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else
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{
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WARN_LOG(DISCIO, "Integrity check failed for block at 0x%" PRIx64, offset);
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m_block_errors[m_blocks[block_index].partition]++;
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}
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}
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block_index++;
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}
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},
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m_block_index, m_progress);
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while (m_block_index < m_blocks.size() &&
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m_blocks[m_block_index].offset < m_progress + bytes_to_read)
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{
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const u64 offset = m_blocks[m_block_index].offset;
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if (m_scrubber.CanBlockBeScrubbed(offset))
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{
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WARN_LOG(DISCIO, "Integrity check failed for unused block at 0x%" PRIx64, offset);
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m_unused_block_errors[m_blocks[m_block_index].partition]++;
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}
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else
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{
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WARN_LOG(DISCIO, "Integrity check failed for block at 0x%" PRIx64, offset);
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m_block_errors[m_blocks[m_block_index].partition]++;
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}
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m_block_index++;
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}
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m_block_index++;
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}
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m_progress += bytes_to_read;
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}
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u64 VolumeVerifier::GetBytesProcessed() const
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@ -791,6 +866,11 @@ void VolumeVerifier::Finish()
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return;
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m_done = true;
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WaitForAsyncOperations();
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ASSERT(m_content_index == m_content_offsets.size());
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ASSERT(m_block_index == m_blocks.size());
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if (m_calculating_any_hash)
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{
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if (m_hashes_to_calculate.crc32)
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@ -4,7 +4,9 @@
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#pragma once
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#include <future>
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#include <map>
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#include <mutex>
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#include <optional>
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#include <string>
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#include <vector>
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@ -98,6 +100,8 @@ private:
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u64 GetBiggestUsedOffset(const FileInfo& file_info) const;
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void CheckMisc();
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void SetUpHashing();
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void WaitForAsyncOperations() const;
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bool ReadChunkAndWaitForAsyncOperations(u64 bytes_to_read);
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void AddProblem(Severity severity, std::string text);
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@ -113,6 +117,14 @@ private:
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mbedtls_md5_context m_md5_context;
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mbedtls_sha1_context m_sha1_context;
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std::vector<u8> m_data;
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std::mutex m_volume_mutex;
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std::future<void> m_crc32_future;
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std::future<void> m_md5_future;
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std::future<void> m_sha1_future;
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std::future<void> m_content_future;
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std::future<void> m_block_future;
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DiscScrubber m_scrubber;
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IOS::ES::TicketReader m_ticket;
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std::vector<u64> m_content_offsets;
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@ -156,6 +156,9 @@ bool VolumeWAD::CheckContentIntegrity(const IOS::ES::Content& content,
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const std::vector<u8>& encrypted_data,
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const IOS::ES::TicketReader& ticket) const
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{
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if (encrypted_data.size() != Common::AlignUp(content.size, 0x40))
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return false;
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mbedtls_aes_context context;
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const std::array<u8, 16> key = ticket.GetTitleKey();
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mbedtls_aes_setkey_dec(&context, key.data(), 128);
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@ -39,6 +39,8 @@ public:
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GetCertificateChain(const Partition& partition = PARTITION_NONE) const override;
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std::vector<u8> GetContent(u16 index) const override;
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std::vector<u64> GetContentOffsets() const override;
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bool CheckContentIntegrity(const IOS::ES::Content& content, const std::vector<u8>& encrypted_data,
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const IOS::ES::TicketReader& ticket) const override;
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bool CheckContentIntegrity(const IOS::ES::Content& content, u64 content_offset,
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const IOS::ES::TicketReader& ticket) const override;
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IOS::ES::TicketReader GetTicketWithFixedCommonKey() const override;
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@ -66,9 +68,6 @@ public:
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u64 GetRawSize() const override;
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private:
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bool CheckContentIntegrity(const IOS::ES::Content& content, const std::vector<u8>& encrypted_data,
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const IOS::ES::TicketReader& ticket) const;
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std::unique_ptr<BlobReader> m_reader;
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IOS::ES::TicketReader m_ticket;
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IOS::ES::TMDReader m_tmd;
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@ -447,8 +447,12 @@ bool VolumeWii::CheckH3TableIntegrity(const Partition& partition) const
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return h3_table_sha1 == contents[0].sha1;
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}
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bool VolumeWii::CheckBlockIntegrity(u64 block_index, const Partition& partition) const
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bool VolumeWii::CheckBlockIntegrity(u64 block_index, const std::vector<u8>& encrypted_data,
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const Partition& partition) const
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{
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if (encrypted_data.size() != BLOCK_TOTAL_SIZE)
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return false;
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auto it = m_partitions.find(partition);
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if (it == m_partitions.end())
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return false;
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@ -462,21 +466,15 @@ bool VolumeWii::CheckBlockIntegrity(u64 block_index, const Partition& partition)
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if (!aes_context)
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return false;
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const u64 cluster_offset =
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partition.offset + *partition_details.data_offset + block_index * BLOCK_TOTAL_SIZE;
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// Read and decrypt the cluster metadata
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u8 cluster_metadata_crypted[BLOCK_HEADER_SIZE];
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u8 cluster_metadata[BLOCK_HEADER_SIZE];
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u8 iv[16] = {0};
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if (!m_reader->Read(cluster_offset, BLOCK_HEADER_SIZE, cluster_metadata_crypted))
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return false;
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mbedtls_aes_crypt_cbc(aes_context, MBEDTLS_AES_DECRYPT, BLOCK_HEADER_SIZE, iv,
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cluster_metadata_crypted, cluster_metadata);
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encrypted_data.data(), cluster_metadata);
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u8 cluster_data[BLOCK_DATA_SIZE];
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if (!Read(block_index * BLOCK_DATA_SIZE, BLOCK_DATA_SIZE, cluster_data, partition))
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return false;
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std::memcpy(iv, encrypted_data.data() + 0x3D0, 16);
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mbedtls_aes_crypt_cbc(aes_context, MBEDTLS_AES_DECRYPT, BLOCK_DATA_SIZE, iv,
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encrypted_data.data() + BLOCK_HEADER_SIZE, cluster_data);
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for (u32 hash_index = 0; hash_index < 31; ++hash_index)
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{
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@ -504,4 +502,19 @@ bool VolumeWii::CheckBlockIntegrity(u64 block_index, const Partition& partition)
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return true;
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}
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bool VolumeWii::CheckBlockIntegrity(u64 block_index, const Partition& partition) const
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{
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auto it = m_partitions.find(partition);
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if (it == m_partitions.end())
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return false;
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const PartitionDetails& partition_details = it->second;
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const u64 cluster_offset =
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partition.offset + *partition_details.data_offset + block_index * BLOCK_TOTAL_SIZE;
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std::vector<u8> cluster(BLOCK_TOTAL_SIZE);
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if (!m_reader->Read(cluster_offset, cluster.size(), cluster.data()))
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return false;
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return CheckBlockIntegrity(block_index, cluster, partition);
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}
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} // namespace DiscIO
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@ -58,6 +58,8 @@ public:
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Platform GetVolumeType() const override;
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bool SupportsIntegrityCheck() const override { return m_encrypted; }
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bool CheckH3TableIntegrity(const Partition& partition) const override;
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bool CheckBlockIntegrity(u64 block_index, const std::vector<u8>& encrypted_data,
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const Partition& partition) const override;
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bool CheckBlockIntegrity(u64 block_index, const Partition& partition) const override;
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Region GetRegion() const override;
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