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https://github.com/ClickHouse/ClickHouse.git
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532 lines
18 KiB
C++
532 lines
18 KiB
C++
#include <Coordination/KeeperSnapshotManager.h>
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#include <IO/WriteHelpers.h>
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#include <Compression/CompressedReadBuffer.h>
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#include <Compression/CompressedWriteBuffer.h>
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#include <IO/ReadHelpers.h>
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#include <Common/ZooKeeper/ZooKeeperIO.h>
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#include <Coordination/ReadBufferFromNuraftBuffer.h>
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#include <Coordination/WriteBufferFromNuraftBuffer.h>
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#include <IO/WriteBufferFromFile.h>
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#include <IO/ReadBufferFromFile.h>
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#include <IO/copyData.h>
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#include <filesystem>
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#include <memory>
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namespace DB
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{
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namespace ErrorCodes
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{
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extern const int UNKNOWN_FORMAT_VERSION;
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extern const int UNKNOWN_SNAPSHOT;
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extern const int LOGICAL_ERROR;
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}
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namespace
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{
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uint64_t getSnapshotPathUpToLogIdx(const String & snapshot_path)
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{
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std::filesystem::path path(snapshot_path);
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std::string filename = path.stem();
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Strings name_parts;
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splitInto<'_'>(name_parts, filename);
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return parse<uint64_t>(name_parts[1]);
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}
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std::string getSnapshotFileName(uint64_t up_to_log_idx, bool compress_zstd)
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{
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auto base = std::string{"snapshot_"} + std::to_string(up_to_log_idx) + ".bin";
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if (compress_zstd)
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base += ".zstd";
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return base;
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}
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std::string getBaseName(const String & path)
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{
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size_t basename_start = path.rfind('/');
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return std::string{&path[basename_start + 1], path.length() - basename_start - 1};
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}
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String parentPath(const String & path)
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{
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auto rslash_pos = path.rfind('/');
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if (rslash_pos > 0)
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return path.substr(0, rslash_pos);
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return "/";
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}
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void writeNode(const KeeperStorage::Node & node, WriteBuffer & out)
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{
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writeBinary(node.data, out);
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/// Serialize ACL
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writeBinary(node.acl_id, out);
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writeBinary(node.is_sequental, out);
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/// Serialize stat
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writeBinary(node.stat.czxid, out);
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writeBinary(node.stat.mzxid, out);
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writeBinary(node.stat.ctime, out);
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writeBinary(node.stat.mtime, out);
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writeBinary(node.stat.version, out);
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writeBinary(node.stat.cversion, out);
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writeBinary(node.stat.aversion, out);
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writeBinary(node.stat.ephemeralOwner, out);
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writeBinary(node.stat.dataLength, out);
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writeBinary(node.stat.numChildren, out);
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writeBinary(node.stat.pzxid, out);
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writeBinary(node.seq_num, out);
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}
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void readNode(KeeperStorage::Node & node, ReadBuffer & in, SnapshotVersion version, ACLMap & acl_map)
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{
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readBinary(node.data, in);
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if (version >= SnapshotVersion::V1)
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{
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readBinary(node.acl_id, in);
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}
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else if (version == SnapshotVersion::V0)
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{
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/// Deserialize ACL
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size_t acls_size;
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readBinary(acls_size, in);
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Coordination::ACLs acls;
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for (size_t i = 0; i < acls_size; ++i)
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{
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Coordination::ACL acl;
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readBinary(acl.permissions, in);
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readBinary(acl.scheme, in);
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readBinary(acl.id, in);
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acls.push_back(acl);
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}
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node.acl_id = acl_map.convertACLs(acls);
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}
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/// Some strange ACLID during deserialization from ZooKeeper
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if (node.acl_id == std::numeric_limits<uint64_t>::max())
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node.acl_id = 0;
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acl_map.addUsage(node.acl_id);
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readBinary(node.is_sequental, in);
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/// Deserialize stat
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readBinary(node.stat.czxid, in);
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readBinary(node.stat.mzxid, in);
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readBinary(node.stat.ctime, in);
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readBinary(node.stat.mtime, in);
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readBinary(node.stat.version, in);
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readBinary(node.stat.cversion, in);
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readBinary(node.stat.aversion, in);
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readBinary(node.stat.ephemeralOwner, in);
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readBinary(node.stat.dataLength, in);
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readBinary(node.stat.numChildren, in);
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readBinary(node.stat.pzxid, in);
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readBinary(node.seq_num, in);
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}
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void serializeSnapshotMetadata(const SnapshotMetadataPtr & snapshot_meta, WriteBuffer & out)
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{
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auto buffer = snapshot_meta->serialize();
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writeVarUInt(buffer->size(), out);
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out.write(reinterpret_cast<const char *>(buffer->data_begin()), buffer->size());
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}
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SnapshotMetadataPtr deserializeSnapshotMetadata(ReadBuffer & in)
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{
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size_t data_size;
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readVarUInt(data_size, in);
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auto buffer = nuraft::buffer::alloc(data_size);
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in.readStrict(reinterpret_cast<char *>(buffer->data_begin()), data_size);
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buffer->pos(0);
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return SnapshotMetadata::deserialize(*buffer);
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}
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}
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void KeeperStorageSnapshot::serialize(const KeeperStorageSnapshot & snapshot, WriteBuffer & out)
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{
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writeBinary(static_cast<uint8_t>(snapshot.version), out);
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serializeSnapshotMetadata(snapshot.snapshot_meta, out);
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writeBinary(snapshot.session_id, out);
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/// Serialize ACLs MAP
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writeBinary(snapshot.acl_map.size(), out);
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for (const auto & [acl_id, acls] : snapshot.acl_map)
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{
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writeBinary(acl_id, out);
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writeBinary(acls.size(), out);
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for (const auto & acl : acls)
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{
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writeBinary(acl.permissions, out);
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writeBinary(acl.scheme, out);
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writeBinary(acl.id, out);
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}
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}
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/// Serialize data tree
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writeBinary(snapshot.snapshot_container_size, out);
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size_t counter = 0;
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for (auto it = snapshot.begin; counter < snapshot.snapshot_container_size; ++counter)
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{
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const auto & path = it->key;
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const auto & node = it->value;
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if (static_cast<size_t>(node.stat.mzxid) > snapshot.snapshot_meta->get_last_log_idx())
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throw Exception(ErrorCodes::LOGICAL_ERROR, "Trying to serialize node with mzxid {}, but last snapshot index {}", node.stat.mzxid, snapshot.snapshot_meta->get_last_log_idx());
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writeBinary(path, out);
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writeNode(node, out);
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/// Last iteration: check and exit here without iterator increment. Otherwise
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/// false positive race condition on list end is possible.
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if (counter == snapshot.snapshot_container_size - 1)
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break;
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++it;
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}
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/// Serialize sessions
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size_t size = snapshot.session_and_timeout.size();
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writeBinary(size, out);
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for (const auto & [session_id, timeout] : snapshot.session_and_timeout)
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{
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writeBinary(session_id, out);
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writeBinary(timeout, out);
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KeeperStorage::AuthIDs ids;
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if (snapshot.session_and_auth.count(session_id))
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ids = snapshot.session_and_auth.at(session_id);
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writeBinary(ids.size(), out);
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for (const auto & [scheme, id] : ids)
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{
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writeBinary(scheme, out);
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writeBinary(id, out);
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}
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}
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/// Serialize cluster config
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if (snapshot.cluster_config)
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{
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auto buffer = snapshot.cluster_config->serialize();
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writeVarUInt(buffer->size(), out);
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out.write(reinterpret_cast<const char *>(buffer->data_begin()), buffer->size());
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}
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}
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void KeeperStorageSnapshot::deserialize(SnapshotDeserializationResult & deserialization_result, ReadBuffer & in)
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{
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uint8_t version;
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readBinary(version, in);
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SnapshotVersion current_version = static_cast<SnapshotVersion>(version);
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if (current_version > CURRENT_SNAPSHOT_VERSION)
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throw Exception(ErrorCodes::UNKNOWN_FORMAT_VERSION, "Unsupported snapshot version {}", version);
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deserialization_result.snapshot_meta = deserializeSnapshotMetadata(in);
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KeeperStorage & storage = *deserialization_result.storage;
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int64_t session_id;
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readBinary(session_id, in);
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storage.zxid = deserialization_result.snapshot_meta->get_last_log_idx();
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storage.session_id_counter = session_id;
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/// Before V1 we serialized ACL without acl_map
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if (current_version >= SnapshotVersion::V1)
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{
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size_t acls_map_size;
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readBinary(acls_map_size, in);
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size_t current_map_size = 0;
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while (current_map_size < acls_map_size)
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{
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uint64_t acl_id;
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readBinary(acl_id, in);
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size_t acls_size;
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readBinary(acls_size, in);
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Coordination::ACLs acls;
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for (size_t i = 0; i < acls_size; ++i)
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{
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Coordination::ACL acl;
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readBinary(acl.permissions, in);
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readBinary(acl.scheme, in);
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readBinary(acl.id, in);
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acls.push_back(acl);
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}
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storage.acl_map.addMapping(acl_id, acls);
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current_map_size++;
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}
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}
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size_t snapshot_container_size;
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readBinary(snapshot_container_size, in);
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size_t current_size = 0;
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while (current_size < snapshot_container_size)
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{
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std::string path;
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readBinary(path, in);
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KeeperStorage::Node node{};
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readNode(node, in, current_version, storage.acl_map);
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storage.container.insertOrReplace(path, node);
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if (node.stat.ephemeralOwner != 0)
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storage.ephemerals[node.stat.ephemeralOwner].insert(path);
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current_size++;
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}
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for (const auto & itr : storage.container)
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{
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if (itr.key != "/")
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{
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auto parent_path = parentPath(itr.key);
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storage.container.updateValue(parent_path, [&path = itr.key] (KeeperStorage::Node & value) { value.children.insert(getBaseName(path)); });
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}
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}
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size_t active_sessions_size;
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readBinary(active_sessions_size, in);
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size_t current_session_size = 0;
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while (current_session_size < active_sessions_size)
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{
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int64_t active_session_id, timeout;
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readBinary(active_session_id, in);
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readBinary(timeout, in);
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storage.addSessionID(active_session_id, timeout);
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if (current_version >= SnapshotVersion::V1)
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{
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size_t session_auths_size;
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readBinary(session_auths_size, in);
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KeeperStorage::AuthIDs ids;
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size_t session_auth_counter = 0;
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while (session_auth_counter < session_auths_size)
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{
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String scheme, id;
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readBinary(scheme, in);
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readBinary(id, in);
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ids.emplace_back(KeeperStorage::AuthID{scheme, id});
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session_auth_counter++;
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}
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if (!ids.empty())
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storage.session_and_auth[active_session_id] = ids;
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}
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current_session_size++;
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}
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/// Optional cluster config
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ClusterConfigPtr cluster_config = nullptr;
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if (!in.eof())
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{
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size_t data_size;
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readVarUInt(data_size, in);
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auto buffer = nuraft::buffer::alloc(data_size);
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in.readStrict(reinterpret_cast<char *>(buffer->data_begin()), data_size);
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buffer->pos(0);
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deserialization_result.cluster_config = ClusterConfig::deserialize(*buffer);
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}
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}
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KeeperStorageSnapshot::KeeperStorageSnapshot(KeeperStorage * storage_, uint64_t up_to_log_idx_, const ClusterConfigPtr & cluster_config_)
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: storage(storage_)
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, snapshot_meta(std::make_shared<SnapshotMetadata>(up_to_log_idx_, 0, std::make_shared<nuraft::cluster_config>()))
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, session_id(storage->session_id_counter)
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, cluster_config(cluster_config_)
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{
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storage->enableSnapshotMode();
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snapshot_container_size = storage->container.snapshotSize();
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begin = storage->getSnapshotIteratorBegin();
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session_and_timeout = storage->getActiveSessions();
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acl_map = storage->acl_map.getMapping();
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session_and_auth = storage->session_and_auth;
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}
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KeeperStorageSnapshot::KeeperStorageSnapshot(KeeperStorage * storage_, const SnapshotMetadataPtr & snapshot_meta_, const ClusterConfigPtr & cluster_config_)
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: storage(storage_)
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, snapshot_meta(snapshot_meta_)
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, session_id(storage->session_id_counter)
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, cluster_config(cluster_config_)
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{
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storage->enableSnapshotMode();
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snapshot_container_size = storage->container.snapshotSize();
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begin = storage->getSnapshotIteratorBegin();
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session_and_timeout = storage->getActiveSessions();
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acl_map = storage->acl_map.getMapping();
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session_and_auth = storage->session_and_auth;
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}
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KeeperStorageSnapshot::~KeeperStorageSnapshot()
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{
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storage->disableSnapshotMode();
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}
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KeeperSnapshotManager::KeeperSnapshotManager(
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const std::string & snapshots_path_, size_t snapshots_to_keep_,
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bool compress_snapshots_zstd_,
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const std::string & superdigest_, size_t storage_tick_time_)
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: snapshots_path(snapshots_path_)
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, snapshots_to_keep(snapshots_to_keep_)
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, compress_snapshots_zstd(compress_snapshots_zstd_)
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, superdigest(superdigest_)
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, storage_tick_time(storage_tick_time_)
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{
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namespace fs = std::filesystem;
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if (!fs::exists(snapshots_path))
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fs::create_directories(snapshots_path);
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for (const auto & p : fs::directory_iterator(snapshots_path))
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{
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const auto & path = p.path();
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if (!path.has_filename())
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continue;
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if (startsWith(path.filename(), "tmp_")) /// Unfinished tmp files
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{
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std::filesystem::remove(p);
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continue;
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}
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/// Not snapshot file
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if (!startsWith(path.filename(), "snapshot_"))
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{
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continue;
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}
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size_t snapshot_up_to = getSnapshotPathUpToLogIdx(p.path());
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existing_snapshots[snapshot_up_to] = p.path();
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}
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removeOutdatedSnapshotsIfNeeded();
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}
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std::string KeeperSnapshotManager::serializeSnapshotBufferToDisk(nuraft::buffer & buffer, uint64_t up_to_log_idx)
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{
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ReadBufferFromNuraftBuffer reader(buffer);
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auto snapshot_file_name = getSnapshotFileName(up_to_log_idx, compress_snapshots_zstd);
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auto tmp_snapshot_file_name = "tmp_" + snapshot_file_name;
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std::string tmp_snapshot_path = std::filesystem::path{snapshots_path} / tmp_snapshot_file_name;
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std::string new_snapshot_path = std::filesystem::path{snapshots_path} / snapshot_file_name;
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WriteBufferFromFile plain_buf(tmp_snapshot_path);
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copyData(reader, plain_buf);
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plain_buf.sync();
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std::filesystem::rename(tmp_snapshot_path, new_snapshot_path);
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existing_snapshots.emplace(up_to_log_idx, new_snapshot_path);
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removeOutdatedSnapshotsIfNeeded();
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return new_snapshot_path;
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}
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nuraft::ptr<nuraft::buffer> KeeperSnapshotManager::deserializeLatestSnapshotBufferFromDisk()
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{
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while (!existing_snapshots.empty())
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{
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auto latest_itr = existing_snapshots.rbegin();
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try
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{
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return deserializeSnapshotBufferFromDisk(latest_itr->first);
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}
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catch (const DB::Exception &)
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{
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std::filesystem::remove(latest_itr->second);
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existing_snapshots.erase(latest_itr->first);
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tryLogCurrentException(__PRETTY_FUNCTION__);
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}
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}
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return nullptr;
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}
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nuraft::ptr<nuraft::buffer> KeeperSnapshotManager::deserializeSnapshotBufferFromDisk(uint64_t up_to_log_idx) const
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{
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const std::string & snapshot_path = existing_snapshots.at(up_to_log_idx);
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WriteBufferFromNuraftBuffer writer;
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ReadBufferFromFile reader(snapshot_path);
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copyData(reader, writer);
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return writer.getBuffer();
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}
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nuraft::ptr<nuraft::buffer> KeeperSnapshotManager::serializeSnapshotToBuffer(const KeeperStorageSnapshot & snapshot) const
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{
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std::unique_ptr<WriteBufferFromNuraftBuffer> writer = std::make_unique<WriteBufferFromNuraftBuffer>();
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auto * buffer_raw_ptr = writer.get();
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std::unique_ptr<WriteBuffer> compressed_writer;
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if (compress_snapshots_zstd)
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compressed_writer = wrapWriteBufferWithCompressionMethod(std::move(writer), CompressionMethod::Zstd, 3);
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else
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compressed_writer = std::make_unique<CompressedWriteBuffer>(*writer);
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KeeperStorageSnapshot::serialize(snapshot, *compressed_writer);
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compressed_writer->finalize();
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return buffer_raw_ptr->getBuffer();
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}
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bool KeeperSnapshotManager::isZstdCompressed(nuraft::ptr<nuraft::buffer> buffer)
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{
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static constexpr uint32_t ZSTD_COMPRESSED_MAGIC = 0xFD2FB528;
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ReadBufferFromNuraftBuffer reader(buffer);
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uint32_t magic_from_buffer;
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reader.readStrict(reinterpret_cast<char *>(&magic_from_buffer), sizeof(magic_from_buffer));
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buffer->pos(0);
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return magic_from_buffer == ZSTD_COMPRESSED_MAGIC;
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}
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SnapshotDeserializationResult KeeperSnapshotManager::deserializeSnapshotFromBuffer(nuraft::ptr<nuraft::buffer> buffer) const
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{
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bool is_zstd_compressed = isZstdCompressed(buffer);
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std::unique_ptr<ReadBufferFromNuraftBuffer> reader = std::make_unique<ReadBufferFromNuraftBuffer>(buffer);
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std::unique_ptr<ReadBuffer> compressed_reader;
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if (is_zstd_compressed)
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compressed_reader = wrapReadBufferWithCompressionMethod(std::move(reader), CompressionMethod::Zstd);
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else
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compressed_reader = std::make_unique<CompressedReadBuffer>(*reader);
|
|
|
|
SnapshotDeserializationResult result;
|
|
result.storage = std::make_unique<KeeperStorage>(storage_tick_time, superdigest);
|
|
KeeperStorageSnapshot::deserialize(result, *compressed_reader);
|
|
return result;
|
|
}
|
|
|
|
SnapshotDeserializationResult KeeperSnapshotManager::restoreFromLatestSnapshot()
|
|
{
|
|
if (existing_snapshots.empty())
|
|
return {};
|
|
|
|
auto buffer = deserializeLatestSnapshotBufferFromDisk();
|
|
if (!buffer)
|
|
return {};
|
|
return deserializeSnapshotFromBuffer(buffer);
|
|
}
|
|
|
|
void KeeperSnapshotManager::removeOutdatedSnapshotsIfNeeded()
|
|
{
|
|
while (existing_snapshots.size() > snapshots_to_keep)
|
|
removeSnapshot(existing_snapshots.begin()->first);
|
|
}
|
|
|
|
void KeeperSnapshotManager::removeSnapshot(uint64_t log_idx)
|
|
{
|
|
auto itr = existing_snapshots.find(log_idx);
|
|
if (itr == existing_snapshots.end())
|
|
throw Exception(ErrorCodes::UNKNOWN_SNAPSHOT, "Unknown snapshot with log index {}", log_idx);
|
|
std::filesystem::remove(itr->second);
|
|
existing_snapshots.erase(itr);
|
|
}
|
|
|
|
|
|
}
|